mirror of
https://github.com/pezkuwichain/pezkuwi-subxt.git
synced 2026-05-31 20:21:03 +00:00
5896072b86
* Remove direct dependency of `sc-network` on `sc-network-light` * Move `WarpSyncProvider` trait and surrounding data structures into `sc-network-common` * Move `WarpSyncProvider` trait and surrounding data structures into `sc-network-common` * Create `sync` module in `sc-network-common`, create `ChainSync` trait there (not used yet), move a bunch of associated data structures from `sc-network-sync` * Switch from concrete implementation to `ChainSync` trait from `sc-network-common` * Introduce `OpaqueStateRequest`/`OpaqueStateResponse` to remove generics from `StateSync` trait * Introduce `OpaqueBlockRequest`/`OpaqueBlockResponse`, make `scheme` module of `sc-network-sync` private * Surface `sc-network-sync` into `sc-service` and make `sc-network` not depend on it anymore * Remove now unnecessary dependency from `sc-network` * Replace crate links with just text since dependencies are gone now * Remove `warp_sync` re-export from `sc-network-common` * Update copyright in network-related files * Address review comments about documentation * Apply review suggestion * Rename `extra_requests` module to `metrics` Co-authored-by: Bastian Köcher <info@kchr.de>
449 lines
15 KiB
Rust
449 lines
15 KiB
Rust
// Copyright 2021 Parity Technologies (UK) Ltd.
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// This file is part of Substrate.
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// Substrate 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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// Substrate 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 Substrate. If not, see <http://www.gnu.org/licenses/>.
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//! Utilities for generating and verifying GRANDPA warp sync proofs.
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use sp_runtime::codec::{self, Decode, Encode};
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use crate::{
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best_justification, find_scheduled_change, AuthoritySetChanges, AuthoritySetHardFork,
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BlockNumberOps, GrandpaJustification, SharedAuthoritySet,
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};
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use sc_client_api::Backend as ClientBackend;
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use sc_network_common::sync::warp::{EncodedProof, VerificationResult, WarpSyncProvider};
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use sp_blockchain::{Backend as BlockchainBackend, HeaderBackend};
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use sp_finality_grandpa::{AuthorityList, SetId, GRANDPA_ENGINE_ID};
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use sp_runtime::{
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generic::BlockId,
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traits::{Block as BlockT, Header as HeaderT, NumberFor, One},
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};
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use std::{collections::HashMap, sync::Arc};
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/// Warp proof processing error.
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#[derive(Debug, thiserror::Error)]
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pub enum Error {
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/// Decoding error.
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#[error("Failed to decode block hash: {0}.")]
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DecodeScale(#[from] codec::Error),
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/// Client backend error.
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#[error("{0}")]
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Client(#[from] sp_blockchain::Error),
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/// Invalid request data.
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#[error("{0}")]
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InvalidRequest(String),
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/// Invalid warp proof.
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#[error("{0}")]
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InvalidProof(String),
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/// Missing header or authority set change data.
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#[error("Missing required data to be able to answer request.")]
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MissingData,
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}
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/// The maximum size in bytes of the `WarpSyncProof`.
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pub(super) const MAX_WARP_SYNC_PROOF_SIZE: usize = 8 * 1024 * 1024;
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/// A proof of an authority set change.
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#[derive(Decode, Encode, Debug)]
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pub struct WarpSyncFragment<Block: BlockT> {
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/// The last block that the given authority set finalized. This block should contain a digest
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/// signaling an authority set change from which we can fetch the next authority set.
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pub header: Block::Header,
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/// A justification for the header above which proves its finality. In order to validate it the
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/// verifier must be aware of the authorities and set id for which the justification refers to.
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pub justification: GrandpaJustification<Block>,
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}
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/// An accumulated proof of multiple authority set changes.
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#[derive(Decode, Encode)]
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pub struct WarpSyncProof<Block: BlockT> {
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proofs: Vec<WarpSyncFragment<Block>>,
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is_finished: bool,
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}
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impl<Block: BlockT> WarpSyncProof<Block> {
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/// Generates a warp sync proof starting at the given block. It will generate authority set
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/// change proofs for all changes that happened from `begin` until the current authority set
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/// (capped by MAX_WARP_SYNC_PROOF_SIZE).
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fn generate<Backend>(
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backend: &Backend,
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begin: Block::Hash,
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set_changes: &AuthoritySetChanges<NumberFor<Block>>,
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) -> Result<WarpSyncProof<Block>, Error>
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where
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Backend: ClientBackend<Block>,
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{
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// TODO: cache best response (i.e. the one with lowest begin_number)
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let blockchain = backend.blockchain();
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let begin_number = blockchain
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.block_number_from_id(&BlockId::Hash(begin))?
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.ok_or_else(|| Error::InvalidRequest("Missing start block".to_string()))?;
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if begin_number > blockchain.info().finalized_number {
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return Err(Error::InvalidRequest("Start block is not finalized".to_string()))
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}
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let canon_hash = blockchain.hash(begin_number)?.expect(
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"begin number is lower than finalized number; \
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all blocks below finalized number must have been imported; \
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qed.",
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);
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if canon_hash != begin {
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return Err(Error::InvalidRequest(
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"Start block is not in the finalized chain".to_string(),
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))
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}
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let mut proofs = Vec::new();
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let mut proofs_encoded_len = 0;
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let mut proof_limit_reached = false;
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let set_changes = set_changes.iter_from(begin_number).ok_or(Error::MissingData)?;
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for (_, last_block) in set_changes {
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let header = blockchain.header(BlockId::Number(*last_block))?.expect(
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"header number comes from previously applied set changes; must exist in db; qed.",
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);
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// the last block in a set is the one that triggers a change to the next set,
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// therefore the block must have a digest that signals the authority set change
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if find_scheduled_change::<Block>(&header).is_none() {
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// if it doesn't contain a signal for standard change then the set must have changed
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// through a forced changed, in which case we stop collecting proofs as the chain of
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// trust in authority handoffs was broken.
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break
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}
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let justification = blockchain
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.justifications(BlockId::Number(*last_block))?
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.and_then(|just| just.into_justification(GRANDPA_ENGINE_ID))
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.expect(
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"header is last in set and contains standard change signal; \
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must have justification; \
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qed.",
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);
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let justification = GrandpaJustification::<Block>::decode(&mut &justification[..])?;
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let proof = WarpSyncFragment { header: header.clone(), justification };
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let proof_size = proof.encoded_size();
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// Check for the limit. We remove some bytes from the maximum size, because we're only
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// counting the size of the `WarpSyncFragment`s. The extra margin is here to leave
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// room for rest of the data (the size of the `Vec` and the boolean).
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if proofs_encoded_len + proof_size >= MAX_WARP_SYNC_PROOF_SIZE - 50 {
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proof_limit_reached = true;
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break
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}
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proofs_encoded_len += proof_size;
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proofs.push(proof);
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}
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let is_finished = if proof_limit_reached {
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false
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} else {
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let latest_justification = best_justification(backend)?.filter(|justification| {
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// the existing best justification must be for a block higher than the
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// last authority set change. if we didn't prove any authority set
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// change then we fallback to make sure it's higher or equal to the
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// initial warp sync block.
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let limit = proofs
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.last()
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.map(|proof| proof.justification.target().0 + One::one())
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.unwrap_or(begin_number);
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justification.target().0 >= limit
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});
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if let Some(latest_justification) = latest_justification {
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let header = blockchain.header(BlockId::Hash(latest_justification.target().1))?
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.expect("header hash corresponds to a justification in db; must exist in db as well; qed.");
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proofs.push(WarpSyncFragment { header, justification: latest_justification })
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}
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true
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};
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let final_outcome = WarpSyncProof { proofs, is_finished };
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debug_assert!(final_outcome.encoded_size() <= MAX_WARP_SYNC_PROOF_SIZE);
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Ok(final_outcome)
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}
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/// Verifies the warp sync proof starting at the given set id and with the given authorities.
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/// Verification stops when either the proof is exhausted or finality for the target header can
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/// be proven. If the proof is valid the new set id and authorities is returned.
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fn verify(
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&self,
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set_id: SetId,
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authorities: AuthorityList,
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hard_forks: &HashMap<(Block::Hash, NumberFor<Block>), (SetId, AuthorityList)>,
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) -> Result<(SetId, AuthorityList), Error>
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where
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NumberFor<Block>: BlockNumberOps,
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{
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let mut current_set_id = set_id;
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let mut current_authorities = authorities;
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for (fragment_num, proof) in self.proofs.iter().enumerate() {
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let hash = proof.header.hash();
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let number = *proof.header.number();
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if let Some((set_id, list)) = hard_forks.get(&(hash, number)) {
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current_set_id = *set_id;
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current_authorities = list.clone();
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} else {
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proof
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.justification
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.verify(current_set_id, ¤t_authorities)
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.map_err(|err| Error::InvalidProof(err.to_string()))?;
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if proof.justification.target().1 != hash {
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return Err(Error::InvalidProof(
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"Mismatch between header and justification".to_owned(),
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))
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}
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if let Some(scheduled_change) = find_scheduled_change::<Block>(&proof.header) {
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current_authorities = scheduled_change.next_authorities;
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current_set_id += 1;
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} else if fragment_num != self.proofs.len() - 1 || !self.is_finished {
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// Only the last fragment of the last proof message is allowed to be missing the
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// authority set change.
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return Err(Error::InvalidProof(
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"Header is missing authority set change digest".to_string(),
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))
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}
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}
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}
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Ok((current_set_id, current_authorities))
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}
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}
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/// Implements network API for warp sync.
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pub struct NetworkProvider<Block: BlockT, Backend: ClientBackend<Block>>
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where
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NumberFor<Block>: BlockNumberOps,
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{
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backend: Arc<Backend>,
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authority_set: SharedAuthoritySet<Block::Hash, NumberFor<Block>>,
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hard_forks: HashMap<(Block::Hash, NumberFor<Block>), (SetId, AuthorityList)>,
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}
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impl<Block: BlockT, Backend: ClientBackend<Block>> NetworkProvider<Block, Backend>
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where
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NumberFor<Block>: BlockNumberOps,
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{
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/// Create a new istance for a given backend and authority set.
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pub fn new(
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backend: Arc<Backend>,
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authority_set: SharedAuthoritySet<Block::Hash, NumberFor<Block>>,
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hard_forks: Vec<AuthoritySetHardFork<Block>>,
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) -> Self {
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NetworkProvider {
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backend,
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authority_set,
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hard_forks: hard_forks
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.into_iter()
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.map(|fork| (fork.block, (fork.set_id, fork.authorities)))
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.collect(),
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}
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}
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}
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impl<Block: BlockT, Backend: ClientBackend<Block>> WarpSyncProvider<Block>
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for NetworkProvider<Block, Backend>
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where
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NumberFor<Block>: BlockNumberOps,
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{
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fn generate(
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&self,
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start: Block::Hash,
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) -> Result<EncodedProof, Box<dyn std::error::Error + Send + Sync>> {
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let proof = WarpSyncProof::<Block>::generate(
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&*self.backend,
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start,
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&self.authority_set.authority_set_changes(),
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)
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.map_err(Box::new)?;
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Ok(EncodedProof(proof.encode()))
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}
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fn verify(
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&self,
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proof: &EncodedProof,
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set_id: SetId,
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authorities: AuthorityList,
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) -> Result<VerificationResult<Block>, Box<dyn std::error::Error + Send + Sync>> {
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let EncodedProof(proof) = proof;
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let proof = WarpSyncProof::<Block>::decode(&mut proof.as_slice())
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.map_err(|e| format!("Proof decoding error: {:?}", e))?;
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let last_header = proof
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.proofs
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.last()
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.map(|p| p.header.clone())
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.ok_or_else(|| "Empty proof".to_string())?;
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let (next_set_id, next_authorities) =
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proof.verify(set_id, authorities, &self.hard_forks).map_err(Box::new)?;
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if proof.is_finished {
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Ok(VerificationResult::<Block>::Complete(next_set_id, next_authorities, last_header))
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} else {
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Ok(VerificationResult::<Block>::Partial(
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next_set_id,
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next_authorities,
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last_header.hash(),
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))
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}
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}
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fn current_authorities(&self) -> AuthorityList {
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self.authority_set.inner().current_authorities.clone()
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}
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}
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#[cfg(test)]
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mod tests {
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use super::{codec::Encode, WarpSyncProof};
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use crate::{AuthoritySetChanges, GrandpaJustification};
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use rand::prelude::*;
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use sc_block_builder::BlockBuilderProvider;
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use sp_blockchain::HeaderBackend;
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use sp_consensus::BlockOrigin;
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use sp_finality_grandpa::GRANDPA_ENGINE_ID;
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use sp_keyring::Ed25519Keyring;
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use sp_runtime::{generic::BlockId, traits::Header as _};
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use std::sync::Arc;
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use substrate_test_runtime_client::{
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ClientBlockImportExt, ClientExt, DefaultTestClientBuilderExt, TestClientBuilder,
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TestClientBuilderExt,
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};
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#[test]
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fn warp_sync_proof_generate_verify() {
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let mut rng = rand::rngs::StdRng::from_seed([0; 32]);
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let builder = TestClientBuilder::new();
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let backend = builder.backend();
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let mut client = Arc::new(builder.build());
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let available_authorities = Ed25519Keyring::iter().collect::<Vec<_>>();
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let genesis_authorities = vec![(Ed25519Keyring::Alice.public().into(), 1)];
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let mut current_authorities = vec![Ed25519Keyring::Alice];
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let mut current_set_id = 0;
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let mut authority_set_changes = Vec::new();
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for n in 1..=100 {
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let mut block = client.new_block(Default::default()).unwrap().build().unwrap().block;
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let mut new_authorities = None;
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// we will trigger an authority set change every 10 blocks
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if n != 0 && n % 10 == 0 {
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// pick next authorities and add digest for the set change
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let n_authorities = rng.gen_range(1..available_authorities.len());
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let next_authorities = available_authorities
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.choose_multiple(&mut rng, n_authorities)
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.cloned()
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.collect::<Vec<_>>();
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new_authorities = Some(next_authorities.clone());
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let next_authorities = next_authorities
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.iter()
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.map(|keyring| (keyring.public().into(), 1))
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.collect::<Vec<_>>();
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let digest = sp_runtime::generic::DigestItem::Consensus(
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sp_finality_grandpa::GRANDPA_ENGINE_ID,
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sp_finality_grandpa::ConsensusLog::ScheduledChange(
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sp_finality_grandpa::ScheduledChange { delay: 0u64, next_authorities },
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)
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.encode(),
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);
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block.header.digest_mut().logs.push(digest);
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}
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futures::executor::block_on(client.import(BlockOrigin::Own, block)).unwrap();
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if let Some(new_authorities) = new_authorities {
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// generate a justification for this block, finalize it and note the authority set
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// change
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let (target_hash, target_number) = {
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let info = client.info();
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(info.best_hash, info.best_number)
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};
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let mut precommits = Vec::new();
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for keyring in ¤t_authorities {
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let precommit = finality_grandpa::Precommit { target_hash, target_number };
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let msg = finality_grandpa::Message::Precommit(precommit.clone());
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let encoded = sp_finality_grandpa::localized_payload(42, current_set_id, &msg);
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let signature = keyring.sign(&encoded[..]).into();
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let precommit = finality_grandpa::SignedPrecommit {
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precommit,
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signature,
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id: keyring.public().into(),
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};
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precommits.push(precommit);
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}
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let commit = finality_grandpa::Commit { target_hash, target_number, precommits };
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let justification = GrandpaJustification::from_commit(&client, 42, commit).unwrap();
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client
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.finalize_block(
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BlockId::Hash(target_hash),
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Some((GRANDPA_ENGINE_ID, justification.encode())),
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)
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.unwrap();
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authority_set_changes.push((current_set_id, n));
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current_set_id += 1;
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current_authorities = new_authorities;
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}
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}
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let authority_set_changes = AuthoritySetChanges::from(authority_set_changes);
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// generate a warp sync proof
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let genesis_hash = client.hash(0).unwrap().unwrap();
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let warp_sync_proof =
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WarpSyncProof::generate(&*backend, genesis_hash, &authority_set_changes).unwrap();
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// verifying the proof should yield the last set id and authorities
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let (new_set_id, new_authorities) =
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warp_sync_proof.verify(0, genesis_authorities, &Default::default()).unwrap();
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let expected_authorities = current_authorities
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.iter()
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.map(|keyring| (keyring.public().into(), 1))
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.collect::<Vec<_>>();
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assert_eq!(new_set_id, current_set_id);
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assert_eq!(new_authorities, expected_authorities);
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}
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}
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