Verification integrated into client/queue
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4dca2ff1d9
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0221d47544
@ -5,6 +5,7 @@ use error::*;
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use header::BlockNumber;
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use spec::Spec;
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use engine::Engine;
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use queue::BlockQueue;
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/// General block status
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pub enum BlockStatus {
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@ -18,9 +19,6 @@ pub enum BlockStatus {
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Unknown,
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}
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/// Result of import block operation.
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pub type ImportResult = Result<(), ImportError>;
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/// Information about the blockchain gthered together.
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pub struct BlockChainInfo {
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/// Blockchain difficulty.
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@ -95,28 +93,30 @@ pub trait BlockChainClient : Sync {
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/// Blockchain database client backed by a persistent database. Owns and manages a blockchain and a block queue.
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pub struct Client {
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chain: Arc<BlockChain>,
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chain: Arc<RwLock<BlockChain>>,
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_engine: Arc<Box<Engine>>,
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queue: BlockQueue,
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}
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impl Client {
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pub fn new(spec: Spec, path: &Path) -> Result<Client, Error> {
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let chain = Arc::new(BlockChain::new(&spec.genesis_block(), path));
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let chain = Arc::new(RwLock::new(BlockChain::new(&spec.genesis_block(), path)));
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let engine = Arc::new(try!(spec.to_engine()));
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Ok(Client {
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chain: chain.clone(),
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_engine: engine,
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_engine: engine.clone(),
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queue: BlockQueue::new(chain.clone(), engine.clone()),
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})
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}
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}
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impl BlockChainClient for Client {
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fn block_header(&self, hash: &H256) -> Option<Bytes> {
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self.chain.block(hash).map(|bytes| BlockView::new(&bytes).rlp().at(0).as_raw().to_vec())
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self.chain.read().unwrap().block(hash).map(|bytes| BlockView::new(&bytes).rlp().at(0).as_raw().to_vec())
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}
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fn block_body(&self, hash: &H256) -> Option<Bytes> {
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self.chain.block(hash).map(|bytes| {
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self.chain.read().unwrap().block(hash).map(|bytes| {
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let rlp = Rlp::new(&bytes);
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let mut body = RlpStream::new();
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body.append_raw(rlp.at(1).as_raw(), 1);
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@ -126,34 +126,34 @@ impl BlockChainClient for Client {
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}
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fn block(&self, hash: &H256) -> Option<Bytes> {
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self.chain.block(hash)
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self.chain.read().unwrap().block(hash)
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}
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fn block_status(&self, hash: &H256) -> BlockStatus {
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if self.chain.is_known(&hash) { BlockStatus::InChain } else { BlockStatus::Unknown }
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if self.chain.read().unwrap().is_known(&hash) { BlockStatus::InChain } else { BlockStatus::Unknown }
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}
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fn block_header_at(&self, n: BlockNumber) -> Option<Bytes> {
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self.chain.block_hash(n).and_then(|h| self.block_header(&h))
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self.chain.read().unwrap().block_hash(n).and_then(|h| self.block_header(&h))
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}
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fn block_body_at(&self, n: BlockNumber) -> Option<Bytes> {
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self.chain.block_hash(n).and_then(|h| self.block_body(&h))
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self.chain.read().unwrap().block_hash(n).and_then(|h| self.block_body(&h))
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}
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fn block_at(&self, n: BlockNumber) -> Option<Bytes> {
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self.chain.block_hash(n).and_then(|h| self.block(&h))
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self.chain.read().unwrap().block_hash(n).and_then(|h| self.block(&h))
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}
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fn block_status_at(&self, n: BlockNumber) -> BlockStatus {
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match self.chain.block_hash(n) {
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match self.chain.read().unwrap().block_hash(n) {
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Some(h) => self.block_status(&h),
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None => BlockStatus::Unknown
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}
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}
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fn tree_route(&self, from: &H256, to: &H256) -> Option<TreeRoute> {
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self.chain.tree_route(from.clone(), to.clone())
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self.chain.read().unwrap().tree_route(from.clone(), to.clone())
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}
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fn state_data(&self, _hash: &H256) -> Option<Bytes> {
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@ -165,17 +165,7 @@ impl BlockChainClient for Client {
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}
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fn import_block(&mut self, bytes: &[u8]) -> ImportResult {
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//TODO: verify block
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{
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let block = BlockView::new(bytes);
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let header = block.header_view();
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let hash = header.sha3();
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if self.chain.is_known(&hash) {
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return Err(ImportError::AlreadyInChain);
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}
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}
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self.chain.insert_block(bytes);
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Ok(())
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self.queue.import_block(bytes)
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}
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fn queue_status(&self) -> BlockQueueStatus {
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@ -188,12 +178,13 @@ impl BlockChainClient for Client {
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}
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fn chain_info(&self) -> BlockChainInfo {
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let chain = self.chain.read().unwrap();
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BlockChainInfo {
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total_difficulty: self.chain.best_block_total_difficulty(),
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pending_total_difficulty: self.chain.best_block_total_difficulty(),
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genesis_hash: self.chain.genesis_hash(),
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best_block_hash: self.chain.best_block_hash(),
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best_block_number: From::from(self.chain.best_block_number())
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total_difficulty: chain.best_block_total_difficulty(),
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pending_total_difficulty: chain.best_block_total_difficulty(),
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genesis_hash: chain.genesis_hash(),
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best_block_hash: chain.best_block_hash(),
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best_block_number: From::from(chain.best_block_number())
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}
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}
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}
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11
src/error.rs
11
src/error.rs
@ -45,11 +45,20 @@ pub enum BlockError {
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#[derive(Debug)]
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pub enum ImportError {
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Bad(BlockError),
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Bad(Error),
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AlreadyInChain,
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AlreadyQueued,
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}
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impl From<Error> for ImportError {
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fn from(err: Error) -> ImportError {
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ImportError::Bad(err)
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}
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}
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/// Result of import block operation.
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pub type ImportResult = Result<(), ImportError>;
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#[derive(Debug)]
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/// General error type which should be capable of representing all errors in ethcore.
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pub enum Error {
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@ -106,4 +106,5 @@ pub mod client;
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pub mod sync;
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pub mod block;
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pub mod verification;
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pub mod queue;
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pub mod ethereum;
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36
src/queue.rs
36
src/queue.rs
@ -1,16 +1,24 @@
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use std::sync::Arc;
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use util::*;
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use blockchain::BlockChain;
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use client::{QueueStatus, ImportResult};
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use views::{BlockView};
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use verification::*;
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use error::*;
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use engine::Engine;
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/// A queue of blocks. Sits between network or other I/O and the BlockChain.
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/// Sorts them ready for blockchain insertion.
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pub struct BlockQueue;
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pub struct BlockQueue {
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bc: Arc<RwLock<BlockChain>>,
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engine: Arc<Box<Engine>>,
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}
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impl BlockQueue {
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/// Creates a new queue instance.
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pub fn new() -> BlockQueue {
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pub fn new(bc: Arc<RwLock<BlockChain>>, engine: Arc<Box<Engine>>) -> BlockQueue {
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BlockQueue {
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bc: bc,
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engine: engine,
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}
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}
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/// Clear the queue and stop verification activity.
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@ -18,18 +26,16 @@ impl BlockQueue {
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}
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/// Add a block to the queue.
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pub fn import_block(&mut self, bytes: &[u8], bc: &mut BlockChain) -> ImportResult {
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//TODO: verify block
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{
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let block = BlockView::new(bytes);
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let header = block.header_view();
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let hash = header.sha3();
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if self.chain.is_known(&hash) {
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return ImportResult::Bad;
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pub fn import_block(&mut self, bytes: &[u8]) -> ImportResult {
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let header = BlockView::new(bytes).header();
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if self.bc.read().unwrap().is_known(&header.hash()) {
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return Err(ImportError::AlreadyInChain);
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}
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}
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bc.insert_block(bytes);
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ImportResult::Queued(QueueStatus::Known)
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try!(verify_block_basic(bytes, self.engine.deref().deref()));
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try!(verify_block_unordered(bytes, self.engine.deref().deref()));
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try!(verify_block_final(bytes, self.engine.deref().deref(), self.bc.read().unwrap().deref()));
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self.bc.write().unwrap().insert_block(bytes);
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Ok(())
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}
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}
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@ -1,13 +1,7 @@
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use std::collections::{HashMap, VecDeque};
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use util::bytes::Bytes;
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use util::hash::{H256, FixedHash};
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use util::uint::{U256};
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use util::sha3::Hashable;
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use util::rlp::{self, Rlp, RlpStream, View, Stream};
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use util::network::{PeerId, PacketId};
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use util::error::UtilError;
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use client::{BlockChainClient, BlockStatus, TreeRoute, BlockQueueStatus, BlockChainInfo, ImportResult};
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use util::*;
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use client::{BlockChainClient, BlockStatus, TreeRoute, BlockQueueStatus, BlockChainInfo};
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use header::{Header as BlockHeader, BlockNumber};
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use error::*;
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use sync::io::SyncIo;
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use sync::chain::ChainSync;
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@ -10,7 +10,7 @@ use engine::Engine;
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use blockchain::BlockChain;
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/// Phase 1 quick block verification. Only does checks that are cheap. Operates on a single block
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pub fn verify_block_basic(bytes: &[u8], engine: &mut Engine) -> Result<(), Error> {
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pub fn verify_block_basic(bytes: &[u8], engine: &Engine) -> Result<(), Error> {
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let block = BlockView::new(bytes);
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let header = block.header();
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try!(verify_header(&header));
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@ -26,7 +26,7 @@ pub fn verify_block_basic(bytes: &[u8], engine: &mut Engine) -> Result<(), Error
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/// Phase 2 verification. Perform costly checks such as transaction signatures and block nonce for ethash.
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/// Still operates on a individual block
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/// TODO: return cached transactions, header hash.
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pub fn verify_block_unordered(bytes: &[u8], engine: &mut Engine) -> Result<(), Error> {
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pub fn verify_block_unordered(bytes: &[u8], engine: &Engine) -> Result<(), Error> {
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let block = BlockView::new(bytes);
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let header = block.header();
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try!(engine.verify_block_unordered(&header, Some(bytes)));
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@ -37,7 +37,7 @@ pub fn verify_block_unordered(bytes: &[u8], engine: &mut Engine) -> Result<(), E
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}
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/// Phase 3 verification. Check block information against parents and uncles.
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pub fn verify_block_final(bytes: &[u8], engine: &mut Engine, bc: &BlockChain) -> Result<(), Error> {
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pub fn verify_block_final(bytes: &[u8], engine: &Engine, bc: &BlockChain) -> Result<(), Error> {
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let block = BlockView::new(bytes);
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let header = block.header();
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let parent = try!(bc.block_header(&header.parent_hash).ok_or::<Error>(From::from(BlockError::UnknownParent(header.parent_hash.clone()))));
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