mirror of
https://github.com/pezkuwichain/pezkuwi-subxt.git
synced 2026-04-26 22:47:56 +00:00
46c36e5a4f
* Remove not required async calls
* Fixed missing renaming
* make_keystore can be sync
* More fixes
* Trivial nitpicks
* Cherry pick test fix from master
* Fixes after master merge
* update lockfile for {"substrate"}
---------
Co-authored-by: parity-processbot <>
346 lines
11 KiB
Rust
346 lines
11 KiB
Rust
// Copyright 2021 Parity Technologies (UK) Ltd.
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// This file is part of Polkadot.
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// Polkadot 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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// Polkadot 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 Polkadot. If not, see <http://www.gnu.org/licenses/>.
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//! Convenient interface to runtime information.
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use std::num::NonZeroUsize;
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use lru::LruCache;
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use parity_scale_codec::Encode;
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use sp_application_crypto::AppKey;
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use sp_core::crypto::ByteArray;
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use sp_keystore::{Keystore, KeystorePtr};
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use polkadot_node_subsystem::{messages::RuntimeApiMessage, overseer, SubsystemSender};
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use polkadot_primitives::{
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CandidateEvent, CoreState, EncodeAs, GroupIndex, GroupRotationInfo, Hash, IndexedVec,
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OccupiedCore, ScrapedOnChainVotes, SessionIndex, SessionInfo, Signed, SigningContext,
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UncheckedSigned, ValidationCode, ValidationCodeHash, ValidatorId, ValidatorIndex,
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};
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use crate::{
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request_availability_cores, request_candidate_events, request_on_chain_votes,
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request_session_index_for_child, request_session_info, request_validation_code_by_hash,
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request_validator_groups,
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};
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/// Errors that can happen on runtime fetches.
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mod error;
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use error::{recv_runtime, Result};
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pub use error::{Error, FatalError, JfyiError};
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/// Configuration for construction a `RuntimeInfo`.
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pub struct Config {
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/// Needed for retrieval of `ValidatorInfo`
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///
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/// Pass `None` if you are not interested.
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pub keystore: Option<KeystorePtr>,
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/// How many sessions should we keep in the cache?
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pub session_cache_lru_size: NonZeroUsize,
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}
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/// Caching of session info.
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///
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/// It should be ensured that a cached session stays live in the cache as long as we might need it.
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pub struct RuntimeInfo {
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/// Get the session index for a given relay parent.
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///
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/// We query this up to a 100 times per block, so caching it here without roundtrips over the
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/// overseer seems sensible.
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session_index_cache: LruCache<Hash, SessionIndex>,
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/// Look up cached sessions by `SessionIndex`.
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session_info_cache: LruCache<SessionIndex, ExtendedSessionInfo>,
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/// Key store for determining whether we are a validator and what `ValidatorIndex` we have.
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keystore: Option<KeystorePtr>,
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}
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/// `SessionInfo` with additional useful data for validator nodes.
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pub struct ExtendedSessionInfo {
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/// Actual session info as fetched from the runtime.
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pub session_info: SessionInfo,
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/// Contains useful information about ourselves, in case this node is a validator.
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pub validator_info: ValidatorInfo,
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}
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/// Information about ourselves, in case we are an `Authority`.
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///
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/// This data is derived from the `SessionInfo` and our key as found in the keystore.
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pub struct ValidatorInfo {
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/// The index this very validator has in `SessionInfo` vectors, if any.
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pub our_index: Option<ValidatorIndex>,
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/// The group we belong to, if any.
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pub our_group: Option<GroupIndex>,
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}
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impl Default for Config {
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fn default() -> Self {
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Self {
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keystore: None,
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// Usually we need to cache the current and the last session.
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session_cache_lru_size: NonZeroUsize::new(2).expect("2 is larger than 0; qed"),
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}
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}
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}
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impl RuntimeInfo {
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/// Create a new `RuntimeInfo` for convenient runtime fetches.
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pub fn new(keystore: Option<KeystorePtr>) -> Self {
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Self::new_with_config(Config { keystore, ..Default::default() })
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}
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/// Create with more elaborate configuration options.
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pub fn new_with_config(cfg: Config) -> Self {
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Self {
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session_index_cache: LruCache::new(
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cfg.session_cache_lru_size
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.max(NonZeroUsize::new(10).expect("10 is larger than 0; qed")),
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),
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session_info_cache: LruCache::new(cfg.session_cache_lru_size),
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keystore: cfg.keystore,
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}
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}
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/// Returns the session index expected at any child of the `parent` block.
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/// This does not return the session index for the `parent` block.
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pub async fn get_session_index_for_child<Sender>(
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&mut self,
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sender: &mut Sender,
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parent: Hash,
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) -> Result<SessionIndex>
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where
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Sender: SubsystemSender<RuntimeApiMessage>,
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{
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match self.session_index_cache.get(&parent) {
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Some(index) => Ok(*index),
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None => {
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let index =
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recv_runtime(request_session_index_for_child(parent, sender).await).await?;
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self.session_index_cache.put(parent, index);
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Ok(index)
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},
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}
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}
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/// Get `ExtendedSessionInfo` by relay parent hash.
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pub async fn get_session_info<'a, Sender>(
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&'a mut self,
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sender: &mut Sender,
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relay_parent: Hash,
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) -> Result<&'a ExtendedSessionInfo>
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where
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Sender: SubsystemSender<RuntimeApiMessage>,
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{
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let session_index = self.get_session_index_for_child(sender, relay_parent).await?;
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self.get_session_info_by_index(sender, relay_parent, session_index).await
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}
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/// Get `ExtendedSessionInfo` by session index.
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///
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/// `request_session_info` still requires the parent to be passed in, so we take the parent
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/// in addition to the `SessionIndex`.
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pub async fn get_session_info_by_index<'a, Sender>(
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&'a mut self,
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sender: &mut Sender,
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parent: Hash,
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session_index: SessionIndex,
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) -> Result<&'a ExtendedSessionInfo>
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where
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Sender: SubsystemSender<RuntimeApiMessage>,
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{
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if !self.session_info_cache.contains(&session_index) {
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let session_info =
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recv_runtime(request_session_info(parent, session_index, sender).await)
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.await?
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.ok_or(JfyiError::NoSuchSession(session_index))?;
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let validator_info = self.get_validator_info(&session_info)?;
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let full_info = ExtendedSessionInfo { session_info, validator_info };
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self.session_info_cache.put(session_index, full_info);
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}
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Ok(self
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.session_info_cache
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.get(&session_index)
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.expect("We just put the value there. qed."))
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}
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/// Convenience function for checking the signature of something signed.
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pub async fn check_signature<Sender, Payload, RealPayload>(
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&mut self,
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sender: &mut Sender,
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relay_parent: Hash,
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signed: UncheckedSigned<Payload, RealPayload>,
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) -> Result<
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std::result::Result<Signed<Payload, RealPayload>, UncheckedSigned<Payload, RealPayload>>,
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>
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where
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Sender: SubsystemSender<RuntimeApiMessage>,
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Payload: EncodeAs<RealPayload> + Clone,
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RealPayload: Encode + Clone,
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{
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let session_index = self.get_session_index_for_child(sender, relay_parent).await?;
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let info = self.get_session_info_by_index(sender, relay_parent, session_index).await?;
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Ok(check_signature(session_index, &info.session_info, relay_parent, signed))
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}
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/// Build `ValidatorInfo` for the current session.
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///
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///
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/// Returns: `None` if not a parachain validator.
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fn get_validator_info(&self, session_info: &SessionInfo) -> Result<ValidatorInfo> {
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if let Some(our_index) = self.get_our_index(&session_info.validators) {
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// Get our group index:
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let our_group =
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session_info.validator_groups.iter().enumerate().find_map(|(i, g)| {
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g.iter().find_map(|v| {
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if *v == our_index {
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Some(GroupIndex(i as u32))
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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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let info = ValidatorInfo { our_index: Some(our_index), our_group };
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return Ok(info)
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}
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return Ok(ValidatorInfo { our_index: None, our_group: None })
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}
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/// Get our `ValidatorIndex`.
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///
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/// Returns: None if we are not a validator.
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fn get_our_index(
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&self,
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validators: &IndexedVec<ValidatorIndex, ValidatorId>,
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) -> Option<ValidatorIndex> {
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let keystore = self.keystore.as_ref()?;
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for (i, v) in validators.iter().enumerate() {
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if Keystore::has_keys(&**keystore, &[(v.to_raw_vec(), ValidatorId::ID)]) {
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return Some(ValidatorIndex(i as u32))
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}
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}
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None
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}
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}
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/// Convenience function for quickly checking the signature on signed data.
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pub fn check_signature<Payload, RealPayload>(
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session_index: SessionIndex,
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session_info: &SessionInfo,
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relay_parent: Hash,
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signed: UncheckedSigned<Payload, RealPayload>,
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) -> std::result::Result<Signed<Payload, RealPayload>, UncheckedSigned<Payload, RealPayload>>
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where
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Payload: EncodeAs<RealPayload> + Clone,
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RealPayload: Encode + Clone,
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{
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let signing_context = SigningContext { session_index, parent_hash: relay_parent };
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session_info
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.validators
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.get(signed.unchecked_validator_index())
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.ok_or_else(|| signed.clone())
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.and_then(|v| signed.try_into_checked(&signing_context, v))
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}
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/// Request availability cores from the runtime.
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pub async fn get_availability_cores<Sender>(
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sender: &mut Sender,
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relay_parent: Hash,
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) -> Result<Vec<CoreState>>
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where
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Sender: overseer::SubsystemSender<RuntimeApiMessage>,
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{
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recv_runtime(request_availability_cores(relay_parent, sender).await).await
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}
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/// Variant of `request_availability_cores` that only returns occupied ones.
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pub async fn get_occupied_cores<Sender>(
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sender: &mut Sender,
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relay_parent: Hash,
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) -> Result<Vec<OccupiedCore>>
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where
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Sender: overseer::SubsystemSender<RuntimeApiMessage>,
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{
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let cores = get_availability_cores(sender, relay_parent).await?;
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Ok(cores
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.into_iter()
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.filter_map(|core_state| {
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if let CoreState::Occupied(occupied) = core_state {
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Some(occupied)
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} else {
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None
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}
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})
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.collect())
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}
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/// Get group rotation info based on the given `relay_parent`.
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pub async fn get_group_rotation_info<Sender>(
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sender: &mut Sender,
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relay_parent: Hash,
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) -> Result<GroupRotationInfo>
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where
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Sender: overseer::SubsystemSender<RuntimeApiMessage>,
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{
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// We drop `groups` here as we don't need them, because of `RuntimeInfo`. Ideally we would not
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// fetch them in the first place.
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let (_, info) = recv_runtime(request_validator_groups(relay_parent, sender).await).await?;
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Ok(info)
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}
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/// Get `CandidateEvent`s for the given `relay_parent`.
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pub async fn get_candidate_events<Sender>(
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sender: &mut Sender,
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relay_parent: Hash,
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) -> Result<Vec<CandidateEvent>>
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where
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Sender: SubsystemSender<RuntimeApiMessage>,
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{
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recv_runtime(request_candidate_events(relay_parent, sender).await).await
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}
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/// Get on chain votes.
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pub async fn get_on_chain_votes<Sender>(
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sender: &mut Sender,
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relay_parent: Hash,
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) -> Result<Option<ScrapedOnChainVotes>>
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where
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Sender: SubsystemSender<RuntimeApiMessage>,
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{
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recv_runtime(request_on_chain_votes(relay_parent, sender).await).await
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}
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/// Fetch `ValidationCode` by hash from the runtime.
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pub async fn get_validation_code_by_hash<Sender>(
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sender: &mut Sender,
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relay_parent: Hash,
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validation_code_hash: ValidationCodeHash,
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) -> Result<Option<ValidationCode>>
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where
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Sender: SubsystemSender<RuntimeApiMessage>,
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{
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recv_runtime(request_validation_code_by_hash(relay_parent, validation_code_hash, sender).await)
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.await
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}
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