* Revert #2172, pretty much. * Tidy up whitespace. [ci:skip] * Force CI.
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@ -202,6 +202,9 @@ impl SeedHashCompute {
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}
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}
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}
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}
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pub fn slow_get_seedhash(block_number: u64) -> H256 {
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SeedHashCompute::resume_compute_seedhash([0u8; 32], 0, block_number / ETHASH_EPOCH_LENGTH)
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}
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#[inline]
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#[inline]
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fn fnv_hash(x: u32, y: u32) -> u32 {
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fn fnv_hash(x: u32, y: u32) -> u32 {
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@ -26,7 +26,7 @@ mod compute;
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use std::mem;
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use std::mem;
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use compute::Light;
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use compute::Light;
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pub use compute::{ETHASH_EPOCH_LENGTH, H256, ProofOfWork, SeedHashCompute, quick_get_difficulty};
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pub use compute::{ETHASH_EPOCH_LENGTH, H256, ProofOfWork, SeedHashCompute, quick_get_difficulty, slow_get_seedhash};
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use std::sync::Arc;
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use std::sync::Arc;
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use parking_lot::Mutex;
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use parking_lot::Mutex;
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@ -70,7 +70,7 @@ impl Decodable for Block {
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}
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}
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}
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}
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/// Internal type for a block's common elements.
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/// An internal type for a block's common elements.
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#[derive(Clone)]
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#[derive(Clone)]
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pub struct ExecutedBlock {
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pub struct ExecutedBlock {
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base: Block,
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base: Block,
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@ -206,6 +206,7 @@ pub struct ClosedBlock {
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block: ExecutedBlock,
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block: ExecutedBlock,
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uncle_bytes: Bytes,
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uncle_bytes: Bytes,
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last_hashes: Arc<LastHashes>,
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last_hashes: Arc<LastHashes>,
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unclosed_state: State,
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}
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}
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/// Just like `ClosedBlock` except that we can't reopen it and it's faster.
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/// Just like `ClosedBlock` except that we can't reopen it and it's faster.
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@ -347,8 +348,7 @@ impl<'x> OpenBlock<'x> {
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pub fn close(self) -> ClosedBlock {
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pub fn close(self) -> ClosedBlock {
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let mut s = self;
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let mut s = self;
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// take a snapshot so the engine's changes can be rolled back.
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let unclosed_state = s.block.state.clone();
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s.block.state.snapshot();
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s.engine.on_close_block(&mut s.block);
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s.engine.on_close_block(&mut s.block);
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s.block.base.header.set_transactions_root(ordered_trie_root(s.block.base.transactions.iter().map(|e| e.rlp_bytes().to_vec())));
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s.block.base.header.set_transactions_root(ordered_trie_root(s.block.base.transactions.iter().map(|e| e.rlp_bytes().to_vec())));
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@ -363,6 +363,7 @@ impl<'x> OpenBlock<'x> {
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block: s.block,
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block: s.block,
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uncle_bytes: uncle_bytes,
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uncle_bytes: uncle_bytes,
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last_hashes: s.last_hashes,
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last_hashes: s.last_hashes,
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unclosed_state: unclosed_state,
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}
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}
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}
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}
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@ -370,9 +371,6 @@ impl<'x> OpenBlock<'x> {
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pub fn close_and_lock(self) -> LockedBlock {
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pub fn close_and_lock(self) -> LockedBlock {
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let mut s = self;
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let mut s = self;
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// take a snapshot so the engine's changes can be rolled back.
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s.block.state.snapshot();
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s.engine.on_close_block(&mut s.block);
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s.engine.on_close_block(&mut s.block);
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if s.block.base.header.transactions_root().is_zero() || s.block.base.header.transactions_root() == &SHA3_NULL_RLP {
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if s.block.base.header.transactions_root().is_zero() || s.block.base.header.transactions_root() == &SHA3_NULL_RLP {
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s.block.base.header.set_transactions_root(ordered_trie_root(s.block.base.transactions.iter().map(|e| e.rlp_bytes().to_vec())));
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s.block.base.header.set_transactions_root(ordered_trie_root(s.block.base.transactions.iter().map(|e| e.rlp_bytes().to_vec())));
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@ -389,11 +387,10 @@ impl<'x> OpenBlock<'x> {
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s.block.base.header.set_log_bloom(s.block.receipts.iter().fold(LogBloom::zero(), |mut b, r| {b = &b | &r.log_bloom; b})); //TODO: use |= operator
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s.block.base.header.set_log_bloom(s.block.receipts.iter().fold(LogBloom::zero(), |mut b, r| {b = &b | &r.log_bloom; b})); //TODO: use |= operator
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s.block.base.header.set_gas_used(s.block.receipts.last().map_or(U256::zero(), |r| r.gas_used));
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s.block.base.header.set_gas_used(s.block.receipts.last().map_or(U256::zero(), |r| r.gas_used));
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ClosedBlock {
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LockedBlock {
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block: s.block,
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block: s.block,
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uncle_bytes: uncle_bytes,
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uncle_bytes: uncle_bytes,
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last_hashes: s.last_hashes,
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}
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}.lock()
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}
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}
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}
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}
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@ -415,16 +412,6 @@ impl ClosedBlock {
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/// Turn this into a `LockedBlock`, unable to be reopened again.
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/// Turn this into a `LockedBlock`, unable to be reopened again.
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pub fn lock(mut self) -> LockedBlock {
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pub fn lock(mut self) -> LockedBlock {
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// finalize the changes made by the engine.
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self.block.state.clear_snapshot();
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if let Err(e) = self.block.state.commit() {
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warn!("Error committing closed block's state: {:?}", e);
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}
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// set the state root here, after commit recalculates with the block
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// rewards.
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self.block.base.header.set_state_root(self.block.state.root().clone());
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LockedBlock {
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LockedBlock {
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block: self.block,
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block: self.block,
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uncle_bytes: self.uncle_bytes,
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uncle_bytes: self.uncle_bytes,
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@ -432,12 +419,12 @@ impl ClosedBlock {
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}
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}
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/// Given an engine reference, reopen the `ClosedBlock` into an `OpenBlock`.
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/// Given an engine reference, reopen the `ClosedBlock` into an `OpenBlock`.
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pub fn reopen(mut self, engine: &Engine) -> OpenBlock {
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pub fn reopen(self, engine: &Engine) -> OpenBlock {
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// revert rewards (i.e. set state back at last transaction's state).
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// revert rewards (i.e. set state back at last transaction's state).
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self.block.state.revert_snapshot();
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let mut block = self.block;
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block.state = self.unclosed_state;
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OpenBlock {
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OpenBlock {
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block: self.block,
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block: block,
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engine: engine,
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engine: engine,
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last_hashes: self.last_hashes,
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last_hashes: self.last_hashes,
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}
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}
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@ -463,11 +450,11 @@ impl LockedBlock {
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/// Provide a valid seal in order to turn this into a `SealedBlock`.
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/// Provide a valid seal in order to turn this into a `SealedBlock`.
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/// This does check the validity of `seal` with the engine.
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/// This does check the validity of `seal` with the engine.
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/// Returns the `ClosedBlock` back again if the seal is no good.
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/// Returns the `ClosedBlock` back again if the seal is no good.
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pub fn try_seal(self, engine: &Engine, seal: Vec<Bytes>) -> Result<SealedBlock, LockedBlock> {
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pub fn try_seal(self, engine: &Engine, seal: Vec<Bytes>) -> Result<SealedBlock, (Error, LockedBlock)> {
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let mut s = self;
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let mut s = self;
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s.block.base.header.set_seal(seal);
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s.block.base.header.set_seal(seal);
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match engine.verify_block_seal(&s.block.base.header) {
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match engine.verify_block_seal(&s.block.base.header) {
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Err(_) => Err(s),
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Err(e) => Err((e, s)),
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_ => Ok(SealedBlock { block: s.block, uncle_bytes: s.uncle_bytes }),
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_ => Ok(SealedBlock { block: s.block, uncle_bytes: s.uncle_bytes }),
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}
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}
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}
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}
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@ -14,7 +14,7 @@
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// You should have received a copy of the GNU General Public License
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// You should have received a copy of the GNU General Public License
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// along with Parity. If not, see <http://www.gnu.org/licenses/>.
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// along with Parity. If not, see <http://www.gnu.org/licenses/>.
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use ethash::{quick_get_difficulty, EthashManager, H256 as EH256};
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use ethash::{quick_get_difficulty, slow_get_seedhash, EthashManager, H256 as EH256};
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use common::*;
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use common::*;
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use block::*;
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use block::*;
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use spec::CommonParams;
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use spec::CommonParams;
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@ -180,6 +180,10 @@ impl Engine for Ethash {
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fields.state.add_balance(u.author(), &(reward * U256::from(8 + u.number() - current_number) / U256::from(8)));
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fields.state.add_balance(u.author(), &(reward * U256::from(8 + u.number() - current_number) / U256::from(8)));
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}
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}
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// Commit state so that we can actually figure out the state root.
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if let Err(e) = fields.state.commit() {
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warn!("Encountered error on state commit: {}", e);
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}
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}
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}
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fn verify_block_basic(&self, header: &Header, _block: Option<&[u8]>) -> result::Result<(), Error> {
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fn verify_block_basic(&self, header: &Header, _block: Option<&[u8]>) -> result::Result<(), Error> {
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@ -229,6 +233,7 @@ impl Engine for Ethash {
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let result = self.pow.compute_light(header.number() as u64, &Ethash::to_ethash(header.bare_hash()), header.nonce().low_u64());
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let result = self.pow.compute_light(header.number() as u64, &Ethash::to_ethash(header.bare_hash()), header.nonce().low_u64());
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let mix = Ethash::from_ethash(result.mix_hash);
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let mix = Ethash::from_ethash(result.mix_hash);
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let difficulty = Ethash::boundary_to_difficulty(&Ethash::from_ethash(result.value));
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let difficulty = Ethash::boundary_to_difficulty(&Ethash::from_ethash(result.value));
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trace!(target: "miner", "num: {}, seed: {}, h: {}, non: {}, mix: {}, res: {}" , header.number() as u64, Ethash::from_ethash(slow_get_seedhash(header.number() as u64)), header.bare_hash(), header.nonce().low_u64(), Ethash::from_ethash(result.mix_hash), Ethash::from_ethash(result.value));
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if mix != header.mix_hash() {
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if mix != header.mix_hash() {
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return Err(From::from(BlockError::MismatchedH256SealElement(Mismatch { expected: mix, found: header.mix_hash() })));
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return Err(From::from(BlockError::MismatchedH256SealElement(Mismatch { expected: mix, found: header.mix_hash() })));
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}
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}
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@ -864,9 +864,18 @@ impl MinerService for Miner {
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}
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}
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fn submit_seal(&self, chain: &MiningBlockChainClient, pow_hash: H256, seal: Vec<Bytes>) -> Result<(), Error> {
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fn submit_seal(&self, chain: &MiningBlockChainClient, pow_hash: H256, seal: Vec<Bytes>) -> Result<(), Error> {
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let result = if let Some(b) = self.sealing_work.lock().queue.get_used_if(if self.options.enable_resubmission { GetAction::Clone } else { GetAction::Take }, |b| &b.hash() == &pow_hash) {
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let result =
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b.lock().try_seal(&*self.engine, seal).or_else(|_| {
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if let Some(b) = self.sealing_work.lock().queue.get_used_if(
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warn!(target: "miner", "Mined solution rejected: Invalid.");
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if self.options.enable_resubmission {
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GetAction::Clone
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} else {
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GetAction::Take
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},
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|b| &b.hash() == &pow_hash
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) {
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trace!(target: "miner", "Sealing block {}={}={} with seal {:?}", pow_hash, b.hash(), b.header().bare_hash(), seal);
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b.lock().try_seal(&*self.engine, seal).or_else(|(e, _)| {
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warn!(target: "miner", "Mined solution rejected: {}", e);
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Err(Error::PowInvalid)
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Err(Error::PowInvalid)
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})
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})
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} else {
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} else {
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@ -31,8 +31,8 @@ Operating Options:
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(default: {flag_mode_alarm}).
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(default: {flag_mode_alarm}).
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--chain CHAIN Specify the blockchain type. CHAIN may be either a
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--chain CHAIN Specify the blockchain type. CHAIN may be either a
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JSON chain specification file or olympic, frontier,
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JSON chain specification file or olympic, frontier,
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homestead, mainnet, morden, classic or testnet
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homestead, mainnet, morden, classic, expanse or
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(default: {flag_chain}).
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testnet (default: {flag_chain}).
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-d --db-path PATH Specify the database & configuration directory path
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-d --db-path PATH Specify the database & configuration directory path
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(default: {flag_db_path}).
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(default: {flag_db_path}).
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--keys-path PATH Specify the path for JSON key files to be found
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--keys-path PATH Specify the path for JSON key files to be found
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