3680848df2
* docs: Add CLAUDE_RULES.md with strict rebrand protection rules - Define immutable rebrand rules that cannot be violated - Prohibit reverting rebrand for cargo check convenience - Establish checkpoint and audit trail requirements - Document correct error handling approach * refactor: Complete kurdistan-sdk to pezkuwi-sdk rebrand - Update README.md with pezkuwi-sdk branding - Replace all kurdistan-sdk URL references with pezkuwi-sdk - Replace kurdistan-tech with pezkuwichain in workflows - Update email domains from @kurdistan-tech.io to @pezkuwichain.io - Rename tool references: kurdistan-tech-publish → pezkuwi-publish - Update runner names: kurdistan-tech-* → pezkuwichain-* - Update analytics/forum/matrix domains to pezkuwichain.io - Keep 'Kurdistan Tech Institute' as organization name - Keep tech@kurdistan.gov as official government contact
796 lines
25 KiB
Rust
796 lines
25 KiB
Rust
// Copyright (C) Parity Technologies (UK) Ltd.
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// This file is part of Pezcumulus.
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// SPDX-License-Identifier: GPL-3.0-or-later WITH Classpath-exception-2.0
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// Pezcumulus 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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// Pezcumulus 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 Pezcumulus. If not, see <https://www.gnu.org/licenses/>.
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use futures::channel::{
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mpsc::{Receiver, Sender},
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oneshot::Sender as OneshotSender,
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};
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use jsonrpsee::{
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core::{params::ArrayParams, ClientError as JsonRpseeError},
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rpc_params,
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};
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use prometheus::Registry;
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use serde::{de::DeserializeOwned, Serialize};
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use serde_json::Value as JsonValue;
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use std::collections::{btree_map::BTreeMap, VecDeque};
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use tokio::sync::mpsc::Sender as TokioSender;
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use codec::{Decode, Encode};
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use pezcumulus_primitives_core::{
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relay_chain::{
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async_backing::{AsyncBackingParams, BackingState, Constraints},
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slashing, ApprovalVotingParams, BlockNumber, CandidateCommitments, CandidateEvent,
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CandidateHash, CommittedCandidateReceiptV2 as CommittedCandidateReceipt, CoreIndex,
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CoreState, DisputeState, ExecutorParams, GroupRotationInfo, Hash as RelayHash,
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Header as RelayHeader, InboundHrmpMessage, NodeFeatures, OccupiedCoreAssumption,
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PvfCheckStatement, ScrapedOnChainVotes, SessionIndex, SessionInfo, ValidationCode,
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ValidationCodeHash, ValidatorId, ValidatorIndex, ValidatorSignature,
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},
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InboundDownwardMessage, ParaId, PersistedValidationData,
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};
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use pezcumulus_relay_chain_interface::{RelayChainError, RelayChainResult};
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use pezsc_client_api::StorageData;
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use pezsc_rpc_api::{state::ReadProof, system::Health};
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use pezsc_service::TaskManager;
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use pezsp_consensus_babe::Epoch;
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use pezsp_storage::StorageKey;
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use pezsp_version::RuntimeVersion;
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use crate::{metrics::RelaychainRpcMetrics, reconnecting_ws_client::ReconnectingWebsocketWorker};
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pub use url::Url;
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const LOG_TARGET: &str = "relay-chain-rpc-client";
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const NOTIFICATION_CHANNEL_SIZE_LIMIT: usize = 20;
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/// Messages for communication between [`RelayChainRpcClient`] and the RPC workers.
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#[derive(Debug)]
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pub enum RpcDispatcherMessage {
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/// Register new listener for the best headers stream. Contains a sender which will be used
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/// to send incoming headers.
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RegisterBestHeadListener(Sender<RelayHeader>),
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/// Register new listener for the import headers stream. Contains a sender which will be used
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/// to send incoming headers.
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RegisterImportListener(Sender<RelayHeader>),
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/// Register new listener for the finalized headers stream. Contains a sender which will be
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/// used to send incoming headers.
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RegisterFinalizationListener(Sender<RelayHeader>),
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/// Register new listener for the finalized headers stream.
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/// Contains the following:
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/// - [`String`] representing the RPC method to be called
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/// - [`ArrayParams`] for the parameters to the RPC call
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/// - [`OneshotSender`] for the return value of the request
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Request(String, ArrayParams, OneshotSender<Result<JsonValue, JsonRpseeError>>),
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}
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/// Entry point to create [`RelayChainRpcClient`] and start a worker that communicates
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/// to JsonRPC servers over the network.
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pub async fn create_client_and_start_worker(
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urls: Vec<Url>,
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task_manager: &mut TaskManager,
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prometheus_registry: Option<&Registry>,
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) -> RelayChainResult<RelayChainRpcClient> {
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let (worker, sender) = ReconnectingWebsocketWorker::new(urls).await;
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task_manager
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.spawn_essential_handle()
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.spawn("relay-chain-rpc-worker", None, worker.run());
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let client = RelayChainRpcClient::new(sender, prometheus_registry);
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Ok(client)
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}
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#[derive(Serialize)]
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struct PayloadToHex<'a>(#[serde(with = "pezsp_core::bytes")] &'a [u8]);
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/// Client that maps RPC methods and deserializes results
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#[derive(Clone)]
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pub struct RelayChainRpcClient {
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/// Sender to send messages to the worker.
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worker_channel: TokioSender<RpcDispatcherMessage>,
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metrics: Option<RelaychainRpcMetrics>,
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}
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impl RelayChainRpcClient {
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/// Initialize new RPC Client.
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///
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/// This client expects a channel connected to a worker that processes
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/// requests sent via this channel.
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pub(crate) fn new(
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worker_channel: TokioSender<RpcDispatcherMessage>,
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prometheus_registry: Option<&Registry>,
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) -> Self {
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RelayChainRpcClient {
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worker_channel,
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metrics: prometheus_registry
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.and_then(|inner| RelaychainRpcMetrics::register(inner).map_err(|err| {
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tracing::warn!(target: LOG_TARGET, error = %err, "Unable to instantiate the RPC client metrics, continuing w/o metrics setup.");
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}).ok()),
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}
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}
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/// Same as `call_remote_runtime_function` but work on encoded data
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pub async fn call_remote_runtime_function_encoded(
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&self,
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method_name: &str,
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hash: RelayHash,
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payload: &[u8],
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) -> RelayChainResult<pezsp_core::Bytes> {
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let payload = PayloadToHex(payload);
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let params = rpc_params! {
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method_name,
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payload,
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hash
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};
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self.request_tracing::<pezsp_core::Bytes, _>("state_call", params, |err| {
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tracing::trace!(
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target: LOG_TARGET,
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%method_name,
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%hash,
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error = %err,
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"Error during call to 'state_call'.",
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);
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})
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.await
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}
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/// Call a call to `state_call` rpc method.
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pub async fn call_remote_runtime_function<R: Decode>(
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&self,
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method_name: &str,
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hash: RelayHash,
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payload: Option<impl Encode>,
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) -> RelayChainResult<R> {
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let payload_bytes =
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payload.map_or(pezsp_core::Bytes(Vec::new()), |v| pezsp_core::Bytes(v.encode()));
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let res = self
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.call_remote_runtime_function_encoded(method_name, hash, &payload_bytes)
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.await?;
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Decode::decode(&mut &*res.0).map_err(Into::into)
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}
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/// Perform RPC request
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async fn request<'a, R>(
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&self,
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method: &'a str,
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params: ArrayParams,
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) -> Result<R, RelayChainError>
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where
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R: DeserializeOwned + std::fmt::Debug,
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{
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self.request_tracing(
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method,
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params,
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|e| tracing::trace!(target:LOG_TARGET, error = %e, %method, "Unable to complete RPC request"),
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)
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.await
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}
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/// Perform RPC request
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async fn request_tracing<'a, R, OR>(
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&self,
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method: &'a str,
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params: ArrayParams,
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trace_error: OR,
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) -> Result<R, RelayChainError>
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where
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R: DeserializeOwned + std::fmt::Debug,
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OR: Fn(&RelayChainError),
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{
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let _timer = self.metrics.as_ref().map(|inner| inner.start_request_timer(method));
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let (tx, rx) = futures::channel::oneshot::channel();
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let message = RpcDispatcherMessage::Request(method.into(), params, tx);
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self.worker_channel.send(message).await.map_err(|err| {
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RelayChainError::WorkerCommunicationError(format!(
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"Unable to send message to RPC worker: {}",
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err
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))
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})?;
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let value = rx.await.map_err(|err| {
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RelayChainError::WorkerCommunicationError(format!(
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"RPC worker channel closed. This can hint and connectivity issues with the supplied RPC endpoints. Message: {}",
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err
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))
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})??;
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serde_json::from_value(value).map_err(|_| {
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trace_error(&RelayChainError::GenericError("Unable to deserialize value".to_string()));
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RelayChainError::RpcCallError(method.to_string())
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})
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}
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/// Returns information regarding the current epoch.
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pub async fn babe_api_current_epoch(&self, at: RelayHash) -> Result<Epoch, RelayChainError> {
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self.call_remote_runtime_function("BabeApi_current_epoch", at, None::<()>).await
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}
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/// Scrape dispute relevant from on-chain, backing votes and resolved disputes.
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pub async fn teyrchain_host_on_chain_votes(
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&self,
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at: RelayHash,
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) -> Result<Option<ScrapedOnChainVotes<RelayHash>>, RelayChainError> {
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self.call_remote_runtime_function("TeyrchainHost_on_chain_votes", at, None::<()>)
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.await
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}
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/// Returns code hashes of PVFs that require pre-checking by validators in the active set.
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pub async fn teyrchain_host_pvfs_require_precheck(
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&self,
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at: RelayHash,
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) -> Result<Vec<ValidationCodeHash>, RelayChainError> {
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self.call_remote_runtime_function("TeyrchainHost_pvfs_require_precheck", at, None::<()>)
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.await
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}
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/// Submits a PVF pre-checking statement into the transaction pool.
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pub async fn teyrchain_host_submit_pvf_check_statement(
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&self,
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at: RelayHash,
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stmt: PvfCheckStatement,
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signature: ValidatorSignature,
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) -> Result<(), RelayChainError> {
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self.call_remote_runtime_function(
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"TeyrchainHost_submit_pvf_check_statement",
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at,
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Some((stmt, signature)),
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)
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.await
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}
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/// Get system health information
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pub async fn system_health(&self) -> Result<Health, RelayChainError> {
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self.request("system_health", rpc_params![]).await
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}
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/// Get read proof for `storage_keys`
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pub async fn state_get_read_proof(
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&self,
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storage_keys: Vec<StorageKey>,
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at: Option<RelayHash>,
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) -> Result<ReadProof<RelayHash>, RelayChainError> {
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let params = rpc_params![storage_keys, at];
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self.request("state_getReadProof", params).await
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}
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/// Retrieve storage item at `storage_key`
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pub async fn state_get_storage(
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&self,
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storage_key: StorageKey,
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at: Option<RelayHash>,
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) -> Result<Option<StorageData>, RelayChainError> {
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let params = rpc_params![storage_key, at];
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self.request("state_getStorage", params).await
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}
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/// Get hash of the n-th block in the canon chain.
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///
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/// By default returns latest block hash.
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pub async fn chain_get_head(&self, at: Option<u64>) -> Result<RelayHash, RelayChainError> {
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let params = rpc_params![at];
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self.request("chain_getHead", params).await
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}
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/// Returns the validator groups and rotation info localized based on the hypothetical child
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/// of a block whose state this is invoked on. Note that `now` in the `GroupRotationInfo`
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/// should be the successor of the number of the block.
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pub async fn teyrchain_host_validator_groups(
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&self,
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at: RelayHash,
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) -> Result<(Vec<Vec<ValidatorIndex>>, GroupRotationInfo), RelayChainError> {
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self.call_remote_runtime_function("TeyrchainHost_validator_groups", at, None::<()>)
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.await
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}
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/// Get a vector of events concerning candidates that occurred within a block.
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pub async fn teyrchain_host_candidate_events(
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&self,
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at: RelayHash,
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) -> Result<Vec<CandidateEvent>, RelayChainError> {
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self.call_remote_runtime_function("TeyrchainHost_candidate_events", at, None::<()>)
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.await
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}
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/// Checks if the given validation outputs pass the acceptance criteria.
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pub async fn teyrchain_host_check_validation_outputs(
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&self,
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at: RelayHash,
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para_id: ParaId,
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outputs: CandidateCommitments,
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) -> Result<bool, RelayChainError> {
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self.call_remote_runtime_function(
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"TeyrchainHost_check_validation_outputs",
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at,
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Some((para_id, outputs)),
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)
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.await
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}
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/// Returns the persisted validation data for the given `ParaId` along with the corresponding
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/// validation code hash. Instead of accepting assumption about the para, matches the validation
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/// data hash against an expected one and yields `None` if they're not equal.
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pub async fn teyrchain_host_assumed_validation_data(
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&self,
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at: RelayHash,
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para_id: ParaId,
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expected_hash: RelayHash,
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) -> Result<Option<(PersistedValidationData, ValidationCodeHash)>, RelayChainError> {
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self.call_remote_runtime_function(
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"TeyrchainHost_persisted_assumed_validation_data",
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at,
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Some((para_id, expected_hash)),
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)
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.await
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}
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/// Get hash of last finalized block.
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pub async fn chain_get_finalized_head(&self) -> Result<RelayHash, RelayChainError> {
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self.request("chain_getFinalizedHead", rpc_params![]).await
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}
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/// Get hash of n-th block.
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pub async fn chain_get_block_hash(
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&self,
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block_number: Option<BlockNumber>,
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) -> Result<Option<RelayHash>, RelayChainError> {
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let params = rpc_params![block_number];
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self.request("chain_getBlockHash", params).await
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}
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/// Yields the persisted validation data for the given `ParaId` along with an assumption that
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/// should be used if the para currently occupies a core.
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///
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/// Returns `None` if either the para is not registered or the assumption is `Freed`
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/// and the para already occupies a core.
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pub async fn teyrchain_host_persisted_validation_data(
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&self,
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at: RelayHash,
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para_id: ParaId,
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occupied_core_assumption: OccupiedCoreAssumption,
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) -> Result<Option<PersistedValidationData>, RelayChainError> {
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self.call_remote_runtime_function(
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"TeyrchainHost_persisted_validation_data",
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at,
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Some((para_id, occupied_core_assumption)),
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)
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.await
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}
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/// Get the validation code from its hash.
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pub async fn teyrchain_host_validation_code_by_hash(
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&self,
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at: RelayHash,
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validation_code_hash: ValidationCodeHash,
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) -> Result<Option<ValidationCode>, RelayChainError> {
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self.call_remote_runtime_function(
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"TeyrchainHost_validation_code_by_hash",
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at,
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Some(validation_code_hash),
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)
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.await
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}
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/// Yields information on all availability cores as relevant to the child block.
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/// Cores are either free or occupied. Free cores can have paras assigned to them.
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pub async fn teyrchain_host_availability_cores(
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&self,
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at: RelayHash,
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) -> Result<Vec<CoreState<RelayHash, BlockNumber>>, RelayChainError> {
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self.call_remote_runtime_function("TeyrchainHost_availability_cores", at, None::<()>)
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.await
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}
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/// Get runtime version
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pub async fn runtime_version(&self, at: RelayHash) -> Result<RuntimeVersion, RelayChainError> {
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let params = rpc_params![at];
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self.request("state_getRuntimeVersion", params).await
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}
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/// Returns all onchain disputes.
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pub async fn teyrchain_host_disputes(
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&self,
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at: RelayHash,
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) -> Result<Vec<(SessionIndex, CandidateHash, DisputeState<BlockNumber>)>, RelayChainError> {
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self.call_remote_runtime_function("TeyrchainHost_disputes", at, None::<()>)
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.await
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}
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/// Returns a list of validators that lost a past session dispute and need to be slashed.
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///
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/// This is a staging method! Do not use on production runtimes!
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pub async fn teyrchain_host_unapplied_slashes(
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&self,
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at: RelayHash,
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) -> Result<Vec<(SessionIndex, CandidateHash, slashing::LegacyPendingSlashes)>, RelayChainError>
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{
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self.call_remote_runtime_function("TeyrchainHost_unapplied_slashes", at, None::<()>)
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.await
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}
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/// Returns a list of validators that lost a past session dispute and need to be slashed.
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pub async fn teyrchain_host_unapplied_slashes_v2(
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&self,
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at: RelayHash,
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) -> Result<Vec<(SessionIndex, CandidateHash, slashing::PendingSlashes)>, RelayChainError> {
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self.call_remote_runtime_function("TeyrchainHost_unapplied_slashes_v2", at, None::<()>)
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.await
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}
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/// Returns a merkle proof of a validator session key in a past session.
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///
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/// This is a staging method! Do not use on production runtimes!
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pub async fn teyrchain_host_key_ownership_proof(
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&self,
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at: RelayHash,
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validator_id: ValidatorId,
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) -> Result<Option<slashing::OpaqueKeyOwnershipProof>, RelayChainError> {
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self.call_remote_runtime_function(
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"TeyrchainHost_key_ownership_proof",
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at,
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Some(validator_id),
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)
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.await
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}
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/// Submits an unsigned extrinsic to slash validators who lost a dispute about
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/// a candidate of a past session.
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///
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/// This is a staging method! Do not use on production runtimes!
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pub async fn teyrchain_host_submit_report_dispute_lost(
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&self,
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at: RelayHash,
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dispute_proof: slashing::DisputeProof,
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key_ownership_proof: slashing::OpaqueKeyOwnershipProof,
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) -> Result<Option<()>, RelayChainError> {
|
|
self.call_remote_runtime_function(
|
|
"TeyrchainHost_submit_report_dispute_lost",
|
|
at,
|
|
Some((dispute_proof, key_ownership_proof)),
|
|
)
|
|
.await
|
|
}
|
|
|
|
pub async fn authority_discovery_authorities(
|
|
&self,
|
|
at: RelayHash,
|
|
) -> Result<Vec<pezsp_authority_discovery::AuthorityId>, RelayChainError> {
|
|
self.call_remote_runtime_function("AuthorityDiscoveryApi_authorities", at, None::<()>)
|
|
.await
|
|
}
|
|
|
|
/// Fetch the validation code used by a para, making the given `OccupiedCoreAssumption`.
|
|
///
|
|
/// Returns `None` if either the para is not registered or the assumption is `Freed`
|
|
/// and the para already occupies a core.
|
|
pub async fn teyrchain_host_validation_code(
|
|
&self,
|
|
at: RelayHash,
|
|
para_id: ParaId,
|
|
occupied_core_assumption: OccupiedCoreAssumption,
|
|
) -> Result<Option<ValidationCode>, RelayChainError> {
|
|
self.call_remote_runtime_function(
|
|
"TeyrchainHost_validation_code",
|
|
at,
|
|
Some((para_id, occupied_core_assumption)),
|
|
)
|
|
.await
|
|
}
|
|
|
|
/// Fetch the hash of the validation code used by a para, making the given
|
|
/// `OccupiedCoreAssumption`.
|
|
pub async fn teyrchain_host_validation_code_hash(
|
|
&self,
|
|
at: RelayHash,
|
|
para_id: ParaId,
|
|
occupied_core_assumption: OccupiedCoreAssumption,
|
|
) -> Result<Option<ValidationCodeHash>, RelayChainError> {
|
|
self.call_remote_runtime_function(
|
|
"TeyrchainHost_validation_code_hash",
|
|
at,
|
|
Some((para_id, occupied_core_assumption)),
|
|
)
|
|
.await
|
|
}
|
|
|
|
/// Get the session info for the given session, if stored.
|
|
pub async fn teyrchain_host_session_info(
|
|
&self,
|
|
at: RelayHash,
|
|
index: SessionIndex,
|
|
) -> Result<Option<SessionInfo>, RelayChainError> {
|
|
self.call_remote_runtime_function("TeyrchainHost_session_info", at, Some(index))
|
|
.await
|
|
}
|
|
|
|
/// Get the executor parameters for the given session, if stored
|
|
pub async fn teyrchain_host_session_executor_params(
|
|
&self,
|
|
at: RelayHash,
|
|
session_index: SessionIndex,
|
|
) -> Result<Option<ExecutorParams>, RelayChainError> {
|
|
self.call_remote_runtime_function(
|
|
"TeyrchainHost_session_executor_params",
|
|
at,
|
|
Some(session_index),
|
|
)
|
|
.await
|
|
}
|
|
|
|
/// Get header at specified hash
|
|
pub async fn chain_get_header(
|
|
&self,
|
|
hash: Option<RelayHash>,
|
|
) -> Result<Option<RelayHeader>, RelayChainError> {
|
|
let params = rpc_params![hash];
|
|
self.request("chain_getHeader", params).await
|
|
}
|
|
|
|
/// Get the receipt of a candidate pending availability. This returns `Some` for any paras
|
|
/// assigned to occupied cores in `availability_cores` and `None` otherwise.
|
|
pub async fn teyrchain_host_candidate_pending_availability(
|
|
&self,
|
|
at: RelayHash,
|
|
para_id: ParaId,
|
|
) -> Result<Option<CommittedCandidateReceipt>, RelayChainError> {
|
|
self.call_remote_runtime_function(
|
|
"TeyrchainHost_candidate_pending_availability",
|
|
at,
|
|
Some(para_id),
|
|
)
|
|
.await
|
|
}
|
|
|
|
/// Returns the session index expected at a child of the block.
|
|
///
|
|
/// This can be used to instantiate a `SigningContext`.
|
|
pub async fn teyrchain_host_session_index_for_child(
|
|
&self,
|
|
at: RelayHash,
|
|
) -> Result<SessionIndex, RelayChainError> {
|
|
self.call_remote_runtime_function("TeyrchainHost_session_index_for_child", at, None::<()>)
|
|
.await
|
|
}
|
|
|
|
/// Get the current validators.
|
|
pub async fn teyrchain_host_validators(
|
|
&self,
|
|
at: RelayHash,
|
|
) -> Result<Vec<ValidatorId>, RelayChainError> {
|
|
self.call_remote_runtime_function("TeyrchainHost_validators", at, None::<()>)
|
|
.await
|
|
}
|
|
|
|
/// Get the contents of all channels addressed to the given recipient. Channels that have no
|
|
/// messages in them are also included.
|
|
pub async fn teyrchain_host_inbound_hrmp_channels_contents(
|
|
&self,
|
|
para_id: ParaId,
|
|
at: RelayHash,
|
|
) -> Result<BTreeMap<ParaId, Vec<InboundHrmpMessage>>, RelayChainError> {
|
|
self.call_remote_runtime_function(
|
|
"TeyrchainHost_inbound_hrmp_channels_contents",
|
|
at,
|
|
Some(para_id),
|
|
)
|
|
.await
|
|
}
|
|
|
|
/// Get all the pending inbound messages in the downward message queue for a para.
|
|
pub async fn teyrchain_host_dmq_contents(
|
|
&self,
|
|
para_id: ParaId,
|
|
at: RelayHash,
|
|
) -> Result<Vec<InboundDownwardMessage>, RelayChainError> {
|
|
self.call_remote_runtime_function("TeyrchainHost_dmq_contents", at, Some(para_id))
|
|
.await
|
|
}
|
|
|
|
/// Get the minimum number of backing votes for a candidate.
|
|
pub async fn teyrchain_host_minimum_backing_votes(
|
|
&self,
|
|
at: RelayHash,
|
|
_session_index: SessionIndex,
|
|
) -> Result<u32, RelayChainError> {
|
|
self.call_remote_runtime_function("TeyrchainHost_minimum_backing_votes", at, None::<()>)
|
|
.await
|
|
}
|
|
|
|
pub async fn teyrchain_host_node_features(
|
|
&self,
|
|
at: RelayHash,
|
|
) -> Result<NodeFeatures, RelayChainError> {
|
|
self.call_remote_runtime_function("TeyrchainHost_node_features", at, None::<()>)
|
|
.await
|
|
}
|
|
|
|
pub async fn teyrchain_host_disabled_validators(
|
|
&self,
|
|
at: RelayHash,
|
|
) -> Result<Vec<ValidatorIndex>, RelayChainError> {
|
|
self.call_remote_runtime_function("TeyrchainHost_disabled_validators", at, None::<()>)
|
|
.await
|
|
}
|
|
|
|
#[allow(missing_docs)]
|
|
pub async fn teyrchain_host_async_backing_params(
|
|
&self,
|
|
at: RelayHash,
|
|
) -> Result<AsyncBackingParams, RelayChainError> {
|
|
self.call_remote_runtime_function("TeyrchainHost_async_backing_params", at, None::<()>)
|
|
.await
|
|
}
|
|
|
|
#[allow(missing_docs)]
|
|
pub async fn teyrchain_host_staging_approval_voting_params(
|
|
&self,
|
|
at: RelayHash,
|
|
_session_index: SessionIndex,
|
|
) -> Result<ApprovalVotingParams, RelayChainError> {
|
|
self.call_remote_runtime_function(
|
|
"TeyrchainHost_staging_approval_voting_params",
|
|
at,
|
|
None::<()>,
|
|
)
|
|
.await
|
|
}
|
|
|
|
pub async fn teyrchain_host_para_backing_state(
|
|
&self,
|
|
at: RelayHash,
|
|
para_id: ParaId,
|
|
) -> Result<Option<BackingState>, RelayChainError> {
|
|
self.call_remote_runtime_function("TeyrchainHost_para_backing_state", at, Some(para_id))
|
|
.await
|
|
}
|
|
|
|
pub async fn teyrchain_host_claim_queue(
|
|
&self,
|
|
at: RelayHash,
|
|
) -> Result<BTreeMap<CoreIndex, VecDeque<ParaId>>, RelayChainError> {
|
|
self.call_remote_runtime_function("TeyrchainHost_claim_queue", at, None::<()>)
|
|
.await
|
|
}
|
|
|
|
/// Get the receipt of all candidates pending availability.
|
|
pub async fn teyrchain_host_candidates_pending_availability(
|
|
&self,
|
|
at: RelayHash,
|
|
para_id: ParaId,
|
|
) -> Result<Vec<CommittedCandidateReceipt>, RelayChainError> {
|
|
self.call_remote_runtime_function(
|
|
"TeyrchainHost_candidates_pending_availability",
|
|
at,
|
|
Some(para_id),
|
|
)
|
|
.await
|
|
}
|
|
|
|
pub async fn teyrchain_host_scheduling_lookahead(
|
|
&self,
|
|
at: RelayHash,
|
|
) -> Result<u32, RelayChainError> {
|
|
self.call_remote_runtime_function("TeyrchainHost_scheduling_lookahead", at, None::<()>)
|
|
.await
|
|
}
|
|
|
|
pub async fn teyrchain_host_validation_code_bomb_limit(
|
|
&self,
|
|
at: RelayHash,
|
|
) -> Result<u32, RelayChainError> {
|
|
self.call_remote_runtime_function(
|
|
"TeyrchainHost_validation_code_bomb_limit",
|
|
at,
|
|
None::<()>,
|
|
)
|
|
.await
|
|
}
|
|
|
|
pub async fn validation_code_hash(
|
|
&self,
|
|
at: RelayHash,
|
|
para_id: ParaId,
|
|
occupied_core_assumption: OccupiedCoreAssumption,
|
|
) -> Result<Option<ValidationCodeHash>, RelayChainError> {
|
|
self.call_remote_runtime_function(
|
|
"TeyrchainHost_validation_code_hash",
|
|
at,
|
|
Some((para_id, occupied_core_assumption)),
|
|
)
|
|
.await
|
|
}
|
|
|
|
pub async fn teyrchain_host_backing_constraints(
|
|
&self,
|
|
at: RelayHash,
|
|
para_id: ParaId,
|
|
) -> Result<Option<Constraints>, RelayChainError> {
|
|
self.call_remote_runtime_function("TeyrchainHost_backing_constraints", at, Some(para_id))
|
|
.await
|
|
}
|
|
|
|
fn send_register_message_to_worker(
|
|
&self,
|
|
message: RpcDispatcherMessage,
|
|
) -> Result<(), RelayChainError> {
|
|
self.worker_channel
|
|
.try_send(message)
|
|
.map_err(|e| RelayChainError::WorkerCommunicationError(e.to_string()))
|
|
}
|
|
|
|
/// Get a stream of all imported relay chain headers
|
|
pub fn get_imported_heads_stream(&self) -> Result<Receiver<RelayHeader>, RelayChainError> {
|
|
let (tx, rx) =
|
|
futures::channel::mpsc::channel::<RelayHeader>(NOTIFICATION_CHANNEL_SIZE_LIMIT);
|
|
self.send_register_message_to_worker(RpcDispatcherMessage::RegisterImportListener(tx))?;
|
|
Ok(rx)
|
|
}
|
|
|
|
/// Get a stream of new best relay chain headers
|
|
pub fn get_best_heads_stream(&self) -> Result<Receiver<RelayHeader>, RelayChainError> {
|
|
let (tx, rx) =
|
|
futures::channel::mpsc::channel::<RelayHeader>(NOTIFICATION_CHANNEL_SIZE_LIMIT);
|
|
self.send_register_message_to_worker(RpcDispatcherMessage::RegisterBestHeadListener(tx))?;
|
|
Ok(rx)
|
|
}
|
|
|
|
/// Get a stream of finalized relay chain headers
|
|
pub fn get_finalized_heads_stream(&self) -> Result<Receiver<RelayHeader>, RelayChainError> {
|
|
let (tx, rx) =
|
|
futures::channel::mpsc::channel::<RelayHeader>(NOTIFICATION_CHANNEL_SIZE_LIMIT);
|
|
self.send_register_message_to_worker(RpcDispatcherMessage::RegisterFinalizationListener(
|
|
tx,
|
|
))?;
|
|
Ok(rx)
|
|
}
|
|
|
|
pub async fn teyrchain_host_para_ids(
|
|
&self,
|
|
at: RelayHash,
|
|
) -> Result<Vec<ParaId>, RelayChainError> {
|
|
self.call_remote_runtime_function("TeyrchainHost_para_ids", at, None::<()>)
|
|
.await
|
|
}
|
|
}
|
|
|
|
/// Send `header` through all channels contained in `senders`.
|
|
/// If no one is listening to the sender, it is removed from the vector.
|
|
pub fn distribute_header(header: RelayHeader, senders: &mut Vec<Sender<RelayHeader>>) {
|
|
senders.retain_mut(|e| {
|
|
match e.try_send(header.clone()) {
|
|
// Receiver has been dropped, remove Sender from list.
|
|
Err(error) if error.is_disconnected() => false,
|
|
// Channel is full. This should not happen.
|
|
// TODO: Improve error handling here
|
|
// https://github.com/pezkuwichain/pezkuwi-sdk/issues/90
|
|
Err(error) => {
|
|
tracing::error!(target: LOG_TARGET, ?error, "Event distribution channel has reached its limit. This can lead to missed notifications.");
|
|
true
|
|
},
|
|
_ => true,
|
|
}
|
|
});
|
|
}
|