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// Copyright 2019-2021 Parity Technologies (UK) Ltd.
// This file is part of Parity Bridges Common.
// Parity Bridges Common is free software: you can redistribute it and/or modify
// it under the terms of the GNU General Public License as published by
// the Free Software Foundation, either version 3 of the License, or
// (at your option) any later version.
// Parity Bridges Common is distributed in the hope that it will be useful,
// but WITHOUT ANY WARRANTY; without even the implied warranty of
// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
// GNU General Public License for more details.
// You should have received a copy of the GNU General Public License
// along with Parity Bridges Common. If not, see <http://www.gnu.org/licenses/>.
use bp_runtime::{Chain as ChainBase, HashOf, TransactionEraOf};
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use frame_support::weights::WeightToFeePolynomial;
use jsonrpsee_ws_client::{DeserializeOwned, Serialize};
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use num_traits::Zero;
use sc_transaction_pool_api::TransactionStatus;
use sp_core::{storage::StorageKey, Pair};
use sp_runtime::{
generic::SignedBlock,
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traits::{Block as BlockT, Dispatchable, Member},
EncodedJustification,
use std::{fmt::Debug, time::Duration};
/// Substrate-based chain from minimal relay-client point of view.
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pub trait Chain: ChainBase + Clone {
/// Chain name.
const NAME: &'static str;
/// Average block interval.
///
/// How often blocks are produced on that chain. It's suggested to set this value
/// to match the block time of the chain.
const AVERAGE_BLOCK_INTERVAL: Duration;
/// Maximal expected storage proof overhead (in bytes).
const STORAGE_PROOF_OVERHEAD: u32;
/// Maximal size (in bytes) of SCALE-encoded account id on this chain.
const MAXIMAL_ENCODED_ACCOUNT_ID_SIZE: u32;
/// Block type.
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type SignedBlock: Member + Serialize + DeserializeOwned + BlockWithJustification<Self::Header>;
/// The aggregated `Call` type.
type Call: Clone + Dispatchable + Debug;
/// Type that is used by the chain, to convert from weight to fee.
type WeightToFee: WeightToFeePolynomial<Balance = Self::Balance>;
/// Call type used by the chain.
pub type CallOf<C> = <C as Chain>::Call;
/// Weight-to-Fee type used by the chain.
pub type WeightToFeeOf<C> = <C as Chain>::WeightToFee;
/// Transaction status of the chain.
pub type TransactionStatusOf<C> = TransactionStatus<HashOf<C>, HashOf<C>>;
/// Substrate-based chain with `frame_system::Config::AccountData` set to
/// the `pallet_balances::AccountData<Balance>`.
pub trait ChainWithBalances: Chain {
/// Return runtime storage key for getting `frame_system::AccountInfo` of given account.
fn account_info_storage_key(account_id: &Self::AccountId) -> StorageKey;
}
/// SCALE-encoded extrinsic.
pub type EncodedExtrinsic = Vec<u8>;
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pub trait BlockWithJustification<Header> {
/// Return block header.
fn header(&self) -> Header;
/// Return encoded block extrinsics.
fn extrinsics(&self) -> Vec<EncodedExtrinsic>;
/// Return block justification, if known.
fn justification(&self) -> Option<&EncodedJustification>;
/// Transaction before it is signed.
#[derive(Clone, Debug)]
pub struct UnsignedTransaction<C: Chain> {
/// Runtime call of this transaction.
pub call: C::Call,
/// Transaction nonce.
pub nonce: C::Index,
/// Tip included into transaction.
pub tip: C::Balance,
}
impl<C: Chain> UnsignedTransaction<C> {
/// Create new unsigned transaction with given call, nonce and zero tip.
pub fn new(call: C::Call, nonce: C::Index) -> Self {
}
/// Set transaction tip.
pub fn tip(mut self, tip: C::Balance) -> Self {
self.tip = tip;
self
}
}
/// Substrate-based chain transactions signing scheme.
pub trait TransactionSignScheme {
/// Chain that this scheme is to be used.
type Chain: Chain;
/// Type of key pairs used to sign transactions.
type AccountKeyPair: Pair;
/// Signed transaction.
type SignedTransaction: Clone + Debug + Codec + Send + 'static;
/// Create transaction for given runtime call, signed by given account.
fn sign_transaction(
genesis_hash: <Self::Chain as ChainBase>::Hash,
signer: &Self::AccountKeyPair,
era: TransactionEraOf<Self::Chain>,
unsigned: UnsignedTransaction<Self::Chain>,
) -> Self::SignedTransaction;
/// Returns true if transaction is signed.
fn is_signed(tx: &Self::SignedTransaction) -> bool;
/// Returns true if transaction is signed by given signer.
fn is_signed_by(signer: &Self::AccountKeyPair, tx: &Self::SignedTransaction) -> bool;
/// Parse signed transaction into its unsigned part.
///
/// Returns `None` if signed transaction has unsupported format.
fn parse_transaction(tx: Self::SignedTransaction) -> Option<UnsignedTransaction<Self::Chain>>;
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impl<Block: BlockT> BlockWithJustification<Block::Header> for SignedBlock<Block> {
fn header(&self) -> Block::Header {
self.block.header().clone()
fn extrinsics(&self) -> Vec<EncodedExtrinsic> {
self.block.extrinsics().iter().map(Encode::encode).collect()
}
fn justification(&self) -> Option<&EncodedJustification> {
self.justifications
.as_ref()
.and_then(|j| j.get(sp_finality_grandpa::GRANDPA_ENGINE_ID))