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https://github.com/pezkuwichain/pezkuwi-subxt.git
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8349c8d18a
* restructure macro related exports * restructure macro related exports * wip * wip * update cargo lock * refactor RuntimeDebug on unincluded segment * fmt * Companion: restructure `benchmarking` macro related exports (#3039) * wip * wip * restructure benchmarking macro related exports * add cargo lock --------- Co-authored-by: parity-processbot <>
314 lines
12 KiB
Rust
314 lines
12 KiB
Rust
// Copyright 2021 Parity Technologies (UK) Ltd.
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// This file is part of Parity Bridges Common.
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// Parity Bridges Common is free software: you can redistribute it and/or modify
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// it under the terms of the GNU General Public License as published by
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// the Free Software Foundation, either version 3 of the License, or
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// (at your option) any later version.
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// Parity Bridges Common is distributed in the hope that it will be useful,
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// but WITHOUT ANY WARRANTY; without even the implied warranty of
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// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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// GNU General Public License for more details.
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// You should have received a copy of the GNU General Public License
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// along with Parity Bridges Common. If not, see <http://www.gnu.org/licenses/>.
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use crate::{weights::WeightInfo, BridgedBlockNumber, BridgedHeader, Config, Error, Pallet};
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use bp_header_chain::{justification::GrandpaJustification, ChainWithGrandpa};
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use bp_runtime::BlockNumberOf;
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use codec::Encode;
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use frame_support::{dispatch::CallableCallFor, traits::IsSubType, weights::Weight};
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use sp_runtime::{
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traits::{Header, Zero},
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transaction_validity::{InvalidTransaction, TransactionValidity, ValidTransaction},
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RuntimeDebug, SaturatedConversion,
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};
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/// Info about a `SubmitParachainHeads` call which tries to update a single parachain.
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#[derive(Copy, Clone, PartialEq, RuntimeDebug)]
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pub struct SubmitFinalityProofInfo<N> {
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/// Number of the finality target.
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pub block_number: N,
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/// Extra weight that we assume is included in the call.
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///
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/// We have some assumptions about headers and justifications of the bridged chain.
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/// We know that if our assumptions are correct, then the call must not have the
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/// weight above some limit. The fee paid for weight above that limit, is never refunded.
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pub extra_weight: Weight,
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/// Extra size (in bytes) that we assume are included in the call.
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///
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/// We have some assumptions about headers and justifications of the bridged chain.
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/// We know that if our assumptions are correct, then the call must not have the
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/// weight above some limit. The fee paid for bytes above that limit, is never refunded.
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pub extra_size: u32,
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}
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impl<N> SubmitFinalityProofInfo<N> {
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/// Returns `true` if call size/weight is below our estimations for regular calls.
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pub fn fits_limits(&self) -> bool {
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self.extra_weight.is_zero() && self.extra_size.is_zero()
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}
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}
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/// Helper struct that provides methods for working with the `SubmitFinalityProof` call.
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pub struct SubmitFinalityProofHelper<T: Config<I>, I: 'static> {
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_phantom_data: sp_std::marker::PhantomData<(T, I)>,
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}
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impl<T: Config<I>, I: 'static> SubmitFinalityProofHelper<T, I> {
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/// Check that the GRANDPA head provided by the `SubmitFinalityProof` is better than the best
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/// one we know.
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pub fn check_obsolete(
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finality_target: BlockNumberOf<T::BridgedChain>,
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) -> Result<(), Error<T, I>> {
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let best_finalized = crate::BestFinalized::<T, I>::get().ok_or_else(|| {
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log::trace!(
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target: crate::LOG_TARGET,
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"Cannot finalize header {:?} because pallet is not yet initialized",
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finality_target,
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);
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<Error<T, I>>::NotInitialized
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})?;
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if best_finalized.number() >= finality_target {
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log::trace!(
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target: crate::LOG_TARGET,
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"Cannot finalize obsolete header: bundled {:?}, best {:?}",
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finality_target,
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best_finalized,
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);
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return Err(Error::<T, I>::OldHeader)
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}
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Ok(())
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}
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/// Check if the `SubmitFinalityProof` was successfully executed.
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pub fn was_successful(finality_target: BlockNumberOf<T::BridgedChain>) -> bool {
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match crate::BestFinalized::<T, I>::get() {
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Some(best_finalized) => best_finalized.number() == finality_target,
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None => false,
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}
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}
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}
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/// Trait representing a call that is a sub type of this pallet's call.
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pub trait CallSubType<T: Config<I, RuntimeCall = Self>, I: 'static>:
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IsSubType<CallableCallFor<Pallet<T, I>, T>>
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{
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/// Extract finality proof info from a runtime call.
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fn submit_finality_proof_info(
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&self,
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) -> Option<SubmitFinalityProofInfo<BridgedBlockNumber<T, I>>> {
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if let Some(crate::Call::<T, I>::submit_finality_proof { finality_target, justification }) =
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self.is_sub_type()
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{
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return Some(submit_finality_proof_info_from_args::<T, I>(
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finality_target,
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justification,
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))
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}
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None
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}
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/// Validate Grandpa headers in order to avoid "mining" transactions that provide outdated
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/// bridged chain headers. Without this validation, even honest relayers may lose their funds
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/// if there are multiple relays running and submitting the same information.
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fn check_obsolete_submit_finality_proof(&self) -> TransactionValidity
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where
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Self: Sized,
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{
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let finality_target = match self.submit_finality_proof_info() {
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Some(finality_proof) => finality_proof,
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_ => return Ok(ValidTransaction::default()),
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};
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match SubmitFinalityProofHelper::<T, I>::check_obsolete(finality_target.block_number) {
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Ok(_) => Ok(ValidTransaction::default()),
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Err(Error::<T, I>::OldHeader) => InvalidTransaction::Stale.into(),
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Err(_) => InvalidTransaction::Call.into(),
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}
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}
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}
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impl<T: Config<I>, I: 'static> CallSubType<T, I> for T::RuntimeCall where
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T::RuntimeCall: IsSubType<CallableCallFor<Pallet<T, I>, T>>
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{
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}
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/// Extract finality proof info from the submitted header and justification.
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pub(crate) fn submit_finality_proof_info_from_args<T: Config<I>, I: 'static>(
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finality_target: &BridgedHeader<T, I>,
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justification: &GrandpaJustification<BridgedHeader<T, I>>,
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) -> SubmitFinalityProofInfo<BridgedBlockNumber<T, I>> {
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let block_number = *finality_target.number();
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// the `submit_finality_proof` call will reject justifications with invalid, duplicate,
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// unknown and extra signatures. It'll also reject justifications with less than necessary
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// signatures. So we do not care about extra weight because of additional signatures here.
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let precommits_len = justification.commit.precommits.len().saturated_into();
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let required_precommits = precommits_len;
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// We do care about extra weight because of more-than-expected headers in the votes
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// ancestries. But we have problems computing extra weight for additional headers (weight of
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// additional header is too small, so that our benchmarks aren't detecting that). So if there
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// are more than expected headers in votes ancestries, we will treat the whole call weight
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// as an extra weight.
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let votes_ancestries_len = justification.votes_ancestries.len().saturated_into();
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let extra_weight =
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if votes_ancestries_len > T::BridgedChain::REASONABLE_HEADERS_IN_JUSTIFICATON_ANCESTRY {
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T::WeightInfo::submit_finality_proof(precommits_len, votes_ancestries_len)
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} else {
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Weight::zero()
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};
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// we can estimate extra call size easily, without any additional significant overhead
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let actual_call_size: u32 = finality_target
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.encoded_size()
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.saturating_add(justification.encoded_size())
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.saturated_into();
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let max_expected_call_size = max_expected_call_size::<T, I>(required_precommits);
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let extra_size = actual_call_size.saturating_sub(max_expected_call_size);
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SubmitFinalityProofInfo { block_number, extra_weight, extra_size }
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}
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/// Returns maximal expected size of `submit_finality_proof` call arguments.
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fn max_expected_call_size<T: Config<I>, I: 'static>(required_precommits: u32) -> u32 {
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let max_expected_justification_size =
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GrandpaJustification::<BridgedHeader<T, I>>::max_reasonable_size::<T::BridgedChain>(
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required_precommits,
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);
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// call arguments are header and justification
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T::BridgedChain::MAX_HEADER_SIZE.saturating_add(max_expected_justification_size)
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}
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#[cfg(test)]
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mod tests {
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use crate::{
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call_ext::CallSubType,
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mock::{run_test, test_header, RuntimeCall, TestBridgedChain, TestNumber, TestRuntime},
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BestFinalized, Config, WeightInfo,
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};
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use bp_header_chain::ChainWithGrandpa;
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use bp_runtime::HeaderId;
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use bp_test_utils::{
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make_default_justification, make_justification_for_header, JustificationGeneratorParams,
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};
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use frame_support::weights::Weight;
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use sp_runtime::{testing::DigestItem, traits::Header as _, SaturatedConversion};
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fn validate_block_submit(num: TestNumber) -> bool {
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let bridge_grandpa_call = crate::Call::<TestRuntime, ()>::submit_finality_proof {
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finality_target: Box::new(test_header(num)),
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justification: make_default_justification(&test_header(num)),
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};
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RuntimeCall::check_obsolete_submit_finality_proof(&RuntimeCall::Grandpa(
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bridge_grandpa_call,
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))
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.is_ok()
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}
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fn sync_to_header_10() {
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let header10_hash = sp_core::H256::default();
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BestFinalized::<TestRuntime, ()>::put(HeaderId(10, header10_hash));
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}
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#[test]
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fn extension_rejects_obsolete_header() {
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run_test(|| {
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// when current best finalized is #10 and we're trying to import header#5 => tx is
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// rejected
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sync_to_header_10();
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assert!(!validate_block_submit(5));
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});
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}
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#[test]
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fn extension_rejects_same_header() {
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run_test(|| {
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// when current best finalized is #10 and we're trying to import header#10 => tx is
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// rejected
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sync_to_header_10();
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assert!(!validate_block_submit(10));
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});
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}
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#[test]
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fn extension_accepts_new_header() {
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run_test(|| {
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// when current best finalized is #10 and we're trying to import header#15 => tx is
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// accepted
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sync_to_header_10();
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assert!(validate_block_submit(15));
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});
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}
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#[test]
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fn extension_returns_correct_extra_size_if_call_arguments_are_too_large() {
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// when call arguments are below our limit => no refund
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let small_finality_target = test_header(1);
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let justification_params = JustificationGeneratorParams {
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header: small_finality_target.clone(),
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..Default::default()
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};
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let small_justification = make_justification_for_header(justification_params);
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let small_call = RuntimeCall::Grandpa(crate::Call::submit_finality_proof {
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finality_target: Box::new(small_finality_target),
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justification: small_justification,
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});
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assert_eq!(small_call.submit_finality_proof_info().unwrap().extra_size, 0);
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// when call arguments are too large => partial refund
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let mut large_finality_target = test_header(1);
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large_finality_target
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.digest_mut()
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.push(DigestItem::Other(vec![42u8; 1024 * 1024]));
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let justification_params = JustificationGeneratorParams {
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header: large_finality_target.clone(),
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..Default::default()
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};
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let large_justification = make_justification_for_header(justification_params);
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let large_call = RuntimeCall::Grandpa(crate::Call::submit_finality_proof {
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finality_target: Box::new(large_finality_target),
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justification: large_justification,
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});
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assert_ne!(large_call.submit_finality_proof_info().unwrap().extra_size, 0);
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}
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#[test]
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fn extension_returns_correct_extra_weight_if_there_are_too_many_headers_in_votes_ancestry() {
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let finality_target = test_header(1);
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let mut justification_params = JustificationGeneratorParams {
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header: finality_target.clone(),
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ancestors: TestBridgedChain::REASONABLE_HEADERS_IN_JUSTIFICATON_ANCESTRY,
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..Default::default()
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};
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// when there are `REASONABLE_HEADERS_IN_JUSTIFICATON_ANCESTRY` headers => no refund
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let justification = make_justification_for_header(justification_params.clone());
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let call = RuntimeCall::Grandpa(crate::Call::submit_finality_proof {
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finality_target: Box::new(finality_target.clone()),
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justification,
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});
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assert_eq!(call.submit_finality_proof_info().unwrap().extra_weight, Weight::zero());
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// when there are `REASONABLE_HEADERS_IN_JUSTIFICATON_ANCESTRY + 1` headers => full refund
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justification_params.ancestors += 1;
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let justification = make_justification_for_header(justification_params);
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let call_weight = <TestRuntime as Config>::WeightInfo::submit_finality_proof(
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justification.commit.precommits.len().saturated_into(),
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justification.votes_ancestries.len().saturated_into(),
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);
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let call = RuntimeCall::Grandpa(crate::Call::submit_finality_proof {
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finality_target: Box::new(finality_target),
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justification,
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});
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assert_eq!(call.submit_finality_proof_info().unwrap().extra_weight, call_weight);
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}
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}
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