Files
pezkuwi-subxt/substrate/client/network/src/chain.rs
T
Benjamin Kampmann 927e13c13a The crate rename (#4223)
* Adding script for rename, could be applicable for nodes on top of it, too

* add stderr and gitlab ci features

* apply script

* fix now minor details in expected stderr

* Update the Cargo.lock

* fix name: sc-transaction -> sc-tracing

* fix rename in script, too
2019-12-02 11:23:53 +01:00

170 lines
5.8 KiB
Rust

// Copyright 2017-2019 Parity Technologies (UK) Ltd.
// This file is part of Substrate.
// Substrate 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.
// Substrate 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 Substrate. If not, see <http://www.gnu.org/licenses/>.
//! Blockchain access trait
use client::Client as SubstrateClient;
use sp_blockchain::Error;
use client_api::{ChangesProof, StorageProof, ClientInfo, CallExecutor};
use consensus::{BlockImport, BlockStatus, Error as ConsensusError};
use sp_runtime::traits::{Block as BlockT, Header as HeaderT};
use sp_runtime::generic::{BlockId};
use sp_runtime::Justification;
use primitives::{H256, Blake2Hasher, storage::StorageKey};
/// Local client abstraction for the network.
pub trait Client<Block: BlockT>: Send + Sync {
/// Get blockchain info.
fn info(&self) -> ClientInfo<Block>;
/// Get block status.
fn block_status(&self, id: &BlockId<Block>) -> Result<BlockStatus, Error>;
/// Get block hash by number.
fn block_hash(&self, block_number: <Block::Header as HeaderT>::Number) -> Result<Option<Block::Hash>, Error>;
/// Get block header.
fn header(&self, id: &BlockId<Block>) -> Result<Option<Block::Header>, Error>;
/// Get block body.
fn body(&self, id: &BlockId<Block>) -> Result<Option<Vec<Block::Extrinsic>>, Error>;
/// Get block justification.
fn justification(&self, id: &BlockId<Block>) -> Result<Option<Justification>, Error>;
/// Get block header proof.
fn header_proof(&self, block_number: <Block::Header as HeaderT>::Number)
-> Result<(Block::Header, StorageProof), Error>;
/// Get storage read execution proof.
fn read_proof(&self, block: &Block::Hash, keys: &[Vec<u8>]) -> Result<StorageProof, Error>;
/// Get child storage read execution proof.
fn read_child_proof(
&self,
block: &Block::Hash,
storage_key: &[u8],
keys: &[Vec<u8>],
) -> Result<StorageProof, Error>;
/// Get method execution proof.
fn execution_proof(&self, block: &Block::Hash, method: &str, data: &[u8]) -> Result<(Vec<u8>, StorageProof), Error>;
/// Get key changes proof.
fn key_changes_proof(
&self,
first: Block::Hash,
last: Block::Hash,
min: Block::Hash,
max: Block::Hash,
storage_key: Option<&StorageKey>,
key: &StorageKey
) -> Result<ChangesProof<Block::Header>, Error>;
/// Returns `true` if the given `block` is a descendent of `base`.
fn is_descendent_of(&self, base: &Block::Hash, block: &Block::Hash) -> Result<bool, Error>;
}
/// Finality proof provider.
pub trait FinalityProofProvider<Block: BlockT>: Send + Sync {
/// Prove finality of the block.
fn prove_finality(&self, for_block: Block::Hash, request: &[u8]) -> Result<Option<Vec<u8>>, Error>;
}
impl<Block: BlockT> FinalityProofProvider<Block> for () {
fn prove_finality(&self, _for_block: Block::Hash, _request: &[u8]) -> Result<Option<Vec<u8>>, Error> {
Ok(None)
}
}
impl<B, E, Block, RA> Client<Block> for SubstrateClient<B, E, Block, RA> where
B: client_api::backend::Backend<Block, Blake2Hasher> + Send + Sync + 'static,
E: CallExecutor<Block, Blake2Hasher> + Send + Sync + 'static,
Self: BlockImport<Block, Error=ConsensusError>,
Block: BlockT<Hash=H256>,
RA: Send + Sync
{
fn info(&self) -> ClientInfo<Block> {
(self as &SubstrateClient<B, E, Block, RA>).info()
}
fn block_status(&self, id: &BlockId<Block>) -> Result<BlockStatus, Error> {
(self as &SubstrateClient<B, E, Block, RA>).block_status(id)
}
fn block_hash(&self, block_number: <Block::Header as HeaderT>::Number) -> Result<Option<Block::Hash>, Error> {
(self as &SubstrateClient<B, E, Block, RA>).block_hash(block_number)
}
fn header(&self, id: &BlockId<Block>) -> Result<Option<Block::Header>, Error> {
(self as &SubstrateClient<B, E, Block, RA>).header(id)
}
fn body(&self, id: &BlockId<Block>) -> Result<Option<Vec<Block::Extrinsic>>, Error> {
(self as &SubstrateClient<B, E, Block, RA>).body(id)
}
fn justification(&self, id: &BlockId<Block>) -> Result<Option<Justification>, Error> {
(self as &SubstrateClient<B, E, Block, RA>).justification(id)
}
fn header_proof(&self, block_number: <Block::Header as HeaderT>::Number)
-> Result<(Block::Header, StorageProof), Error>
{
(self as &SubstrateClient<B, E, Block, RA>).header_proof(&BlockId::Number(block_number))
}
fn read_proof(&self, block: &Block::Hash, keys: &[Vec<u8>]) -> Result<StorageProof, Error> {
(self as &SubstrateClient<B, E, Block, RA>).read_proof(&BlockId::Hash(block.clone()), keys)
}
fn read_child_proof(
&self,
block: &Block::Hash,
storage_key: &[u8],
keys: &[Vec<u8>],
) -> Result<StorageProof, Error> {
(self as &SubstrateClient<B, E, Block, RA>)
.read_child_proof(&BlockId::Hash(block.clone()), storage_key, keys)
}
fn execution_proof(&self, block: &Block::Hash, method: &str, data: &[u8]) -> Result<(Vec<u8>, StorageProof), Error> {
(self as &SubstrateClient<B, E, Block, RA>).execution_proof(&BlockId::Hash(block.clone()), method, data)
}
fn key_changes_proof(
&self,
first: Block::Hash,
last: Block::Hash,
min: Block::Hash,
max: Block::Hash,
storage_key: Option<&StorageKey>,
key: &StorageKey,
) -> Result<ChangesProof<Block::Header>, Error> {
(self as &SubstrateClient<B, E, Block, RA>).key_changes_proof(first, last, min, max, storage_key, key)
}
fn is_descendent_of(&self, base: &Block::Hash, block: &Block::Hash) -> Result<bool, Error> {
if base == block {
return Ok(false);
}
let ancestor = sp_blockchain::lowest_common_ancestor(self, *block, *base)?;
Ok(ancestor.hash == *base)
}
}