Updating sealing when new transactions are received
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@ -92,7 +92,7 @@ pub trait MinerService : Send + Sync {
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fn chain_new_blocks(&self, chain: &BlockChainClient, imported: &[H256], invalid: &[H256], enacted: &[H256], retracted: &[H256]);
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/// New chain head event. Restart mining operation.
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fn prepare_sealing(&self, chain: &BlockChainClient);
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fn update_sealing(&self, chain: &BlockChainClient);
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/// Grab the `ClosedBlock` that we want to be sealed. Comes as a mutex that you have to lock.
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fn sealing_block(&self, chain: &BlockChainClient) -> &Mutex<Option<ClosedBlock>>;
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@ -93,13 +93,28 @@ impl Miner {
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pub fn set_minimal_gas_price(&self, min_gas_price: U256) {
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self.transaction_queue.lock().unwrap().set_minimal_gas_price(min_gas_price);
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}
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/// Prepares new block for sealing including top transactions from queue.
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pub fn prepare_sealing(&self, chain: &BlockChainClient) {
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let no_of_transactions = 128;
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// TODO: should select transactions orm queue according to gas limit of block.
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let transactions = self.transaction_queue.lock().unwrap().top_transactions(no_of_transactions);
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let b = chain.prepare_sealing(
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self.author(),
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self.gas_floor_target(),
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self.extra_data(),
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transactions,
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);
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*self.sealing_block.lock().unwrap() = b;
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}
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}
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impl MinerService for Miner {
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fn clear_and_reset(&self, chain: &BlockChainClient) {
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self.transaction_queue.lock().unwrap().clear();
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self.prepare_sealing(chain);
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self.update_sealing(chain);
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}
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fn status(&self) -> MinerStatus {
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@ -121,18 +136,10 @@ impl MinerService for Miner {
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transaction_queue.pending_hashes()
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}
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fn prepare_sealing(&self, chain: &BlockChainClient) {
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let no_of_transactions = 128;
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// TODO: should select transactions orm queue according to gas limit of block.
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let transactions = self.transaction_queue.lock().unwrap().top_transactions(no_of_transactions);
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let b = chain.prepare_sealing(
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self.author(),
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self.gas_floor_target(),
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self.extra_data(),
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transactions,
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);
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*self.sealing_block.lock().unwrap() = b;
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fn update_sealing(&self, chain: &BlockChainClient) {
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if self.sealing_enabled.load(atomic::Ordering::Relaxed) {
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self.prepare_sealing(chain);
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}
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}
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fn sealing_block(&self, chain: &BlockChainClient) -> &Mutex<Option<ClosedBlock>> {
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@ -199,8 +206,6 @@ impl MinerService for Miner {
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});
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}
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if self.sealing_enabled.load(atomic::Ordering::Relaxed) {
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self.prepare_sealing(chain);
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}
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self.update_sealing(chain);
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}
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}
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@ -54,7 +54,7 @@ impl MinerService for TestMinerService {
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fn chain_new_blocks(&self, _chain: &BlockChainClient, _imported: &[H256], _invalid: &[H256], _enacted: &[H256], _retracted: &[H256]) { unimplemented!(); }
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/// New chain head event. Restart mining operation.
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fn prepare_sealing(&self, _chain: &BlockChainClient) { unimplemented!(); }
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fn update_sealing(&self, _chain: &BlockChainClient) { unimplemented!(); }
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/// Grab the `ClosedBlock` that we want to be sealed. Comes as a mutex that you have to lock.
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fn sealing_block(&self, _chain: &BlockChainClient) -> &Mutex<Option<ClosedBlock>> {
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@ -403,7 +403,7 @@ impl ChainSync {
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self.remove_downloaded_blocks(number + 1);
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}
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if self.have_common_block && number < self.current_base_block() + 1 {
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// unkown header
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// unkown header
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debug!(target: "sync", "Old block header {:?} ({}) is unknown, restarting sync", hash, number);
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self.restart(io);
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return Ok(());
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@ -947,7 +947,10 @@ impl ChainSync {
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}
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let chain = io.chain();
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let fetch_nonce = |a: &Address| chain.nonce(a);
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let _ = self.miner.import_transactions(transactions, fetch_nonce);
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let res = self.miner.import_transactions(transactions, fetch_nonce);
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if res.is_ok() {
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self.miner.update_sealing(io.chain());
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}
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Ok(())
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}
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@ -1287,7 +1290,7 @@ impl ChainSync {
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}
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pub fn chain_new_head(&mut self, io: &mut SyncIo) {
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self.miner.prepare_sealing(io.chain());
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self.miner.update_sealing(io.chain());
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}
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}
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