use frame_support::traits::{Get, KeyOwnerProofSystem};
use sp_consensus_babe::{EquivocationProof, Slot};
use sp_runtime::{
transaction_validity::{
InvalidTransaction, TransactionPriority, TransactionSource, TransactionValidity,
TransactionValidityError, ValidTransaction,
},
DispatchResult, Perbill,
};
use sp_staking::{
offence::{Kind, Offence, OffenceError, ReportOffence},
SessionIndex,
};
use sp_std::prelude::*;
use crate::{Call, Config, Pallet, LOG_TARGET};
pub trait HandleEquivocation<T: Config> {
type ReportLongevity: Get<u64>;
fn report_offence(
reporters: Vec<T::AccountId>,
offence: BabeEquivocationOffence<T::KeyOwnerIdentification>,
) -> Result<(), OffenceError>;
fn is_known_offence(offenders: &[T::KeyOwnerIdentification], time_slot: &Slot) -> bool;
fn submit_unsigned_equivocation_report(
equivocation_proof: EquivocationProof<T::Header>,
key_owner_proof: T::KeyOwnerProof,
) -> DispatchResult;
fn block_author() -> Option<T::AccountId>;
}
impl<T: Config> HandleEquivocation<T> for () {
type ReportLongevity = ();
fn report_offence(
_reporters: Vec<T::AccountId>,
_offence: BabeEquivocationOffence<T::KeyOwnerIdentification>,
) -> Result<(), OffenceError> {
Ok(())
}
fn is_known_offence(_offenders: &[T::KeyOwnerIdentification], _time_slot: &Slot) -> bool {
true
}
fn submit_unsigned_equivocation_report(
_equivocation_proof: EquivocationProof<T::Header>,
_key_owner_proof: T::KeyOwnerProof,
) -> DispatchResult {
Ok(())
}
fn block_author() -> Option<T::AccountId> {
None
}
}
pub struct EquivocationHandler<I, R, L> {
_phantom: sp_std::marker::PhantomData<(I, R, L)>,
}
impl<I, R, L> Default for EquivocationHandler<I, R, L> {
fn default() -> Self {
Self { _phantom: Default::default() }
}
}
impl<T, R, L> HandleEquivocation<T> for EquivocationHandler<T::KeyOwnerIdentification, R, L>
where
T: Config + pallet_authorship::Config + frame_system::offchain::SendTransactionTypes<Call<T>>,
R: ReportOffence<
T::AccountId,
T::KeyOwnerIdentification,
BabeEquivocationOffence<T::KeyOwnerIdentification>,
>,
L: Get<u64>,
{
type ReportLongevity = L;
fn report_offence(
reporters: Vec<T::AccountId>,
offence: BabeEquivocationOffence<T::KeyOwnerIdentification>,
) -> Result<(), OffenceError> {
R::report_offence(reporters, offence)
}
fn is_known_offence(offenders: &[T::KeyOwnerIdentification], time_slot: &Slot) -> bool {
R::is_known_offence(offenders, time_slot)
}
fn submit_unsigned_equivocation_report(
equivocation_proof: EquivocationProof<T::Header>,
key_owner_proof: T::KeyOwnerProof,
) -> DispatchResult {
use frame_system::offchain::SubmitTransaction;
let call = Call::report_equivocation_unsigned {
equivocation_proof: Box::new(equivocation_proof),
key_owner_proof,
};
match SubmitTransaction::<T, Call<T>>::submit_unsigned_transaction(call.into()) {
Ok(()) => log::info!(target: LOG_TARGET, "Submitted BABE equivocation report.",),
Err(e) =>
log::error!(target: LOG_TARGET, "Error submitting equivocation report: {:?}", e,),
}
Ok(())
}
fn block_author() -> Option<T::AccountId> {
<pallet_authorship::Pallet<T>>::author()
}
}
impl<T: Config> Pallet<T> {
pub fn validate_unsigned(source: TransactionSource, call: &Call<T>) -> TransactionValidity {
if let Call::report_equivocation_unsigned { equivocation_proof, key_owner_proof } = call {
match source {
TransactionSource::Local | TransactionSource::InBlock => { },
_ => {
log::warn!(
target: LOG_TARGET,
"rejecting unsigned report equivocation transaction because it is not local/in-block.",
);
return InvalidTransaction::Call.into()
},
}
is_known_offence::<T>(equivocation_proof, key_owner_proof)?;
let longevity =
<T::HandleEquivocation as HandleEquivocation<T>>::ReportLongevity::get();
ValidTransaction::with_tag_prefix("BabeEquivocation")
.priority(TransactionPriority::max_value())
.and_provides((equivocation_proof.offender.clone(), *equivocation_proof.slot))
.longevity(longevity)
.propagate(false)
.build()
} else {
InvalidTransaction::Call.into()
}
}
pub fn pre_dispatch(call: &Call<T>) -> Result<(), TransactionValidityError> {
if let Call::report_equivocation_unsigned { equivocation_proof, key_owner_proof } = call {
is_known_offence::<T>(equivocation_proof, key_owner_proof)
} else {
Err(InvalidTransaction::Call.into())
}
}
}
fn is_known_offence<T: Config>(
equivocation_proof: &EquivocationProof<T::Header>,
key_owner_proof: &T::KeyOwnerProof,
) -> Result<(), TransactionValidityError> {
let key = (sp_consensus_babe::KEY_TYPE, equivocation_proof.offender.clone());
let offender = T::KeyOwnerProofSystem::check_proof(key, key_owner_proof.clone())
.ok_or(InvalidTransaction::BadProof)?;
if T::HandleEquivocation::is_known_offence(&[offender], &equivocation_proof.slot) {
Err(InvalidTransaction::Stale.into())
} else {
Ok(())
}
}
pub struct BabeEquivocationOffence<FullIdentification> {
pub slot: Slot,
pub session_index: SessionIndex,
pub validator_set_count: u32,
pub offender: FullIdentification,
}
impl<FullIdentification: Clone> Offence<FullIdentification>
for BabeEquivocationOffence<FullIdentification>
{
const ID: Kind = *b"babe:equivocatio";
type TimeSlot = Slot;
fn offenders(&self) -> Vec<FullIdentification> {
vec![self.offender.clone()]
}
fn session_index(&self) -> SessionIndex {
self.session_index
}
fn validator_set_count(&self) -> u32 {
self.validator_set_count
}
fn time_slot(&self) -> Self::TimeSlot {
self.slot
}
fn slash_fraction(&self, offenders_count: u32) -> Perbill {
let x = Perbill::from_rational(3 * offenders_count, self.validator_set_count);
x.square()
}
}