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// Copyright 2015, 2016 Ethcore (UK) Ltd.
// This file is part of Parity.
// Parity 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 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. If not, see <http://www.gnu.org/licenses/>.
use rayon ::prelude ::* ;
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use std ::time ::{ Instant , Duration } ;
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use util ::* ;
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use util ::using_queue ::{ UsingQueue , GetAction } ;
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use account_provider ::AccountProvider ;
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use views ::{ BlockView , HeaderView } ;
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use state ::State ;
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use client ::{ MiningBlockChainClient , Executive , Executed , EnvInfo , TransactOptions , BlockID , CallAnalytics } ;
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use executive ::contract_address ;
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use block ::{ ClosedBlock , SealedBlock , IsBlock , Block } ;
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use error ::* ;
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use transaction ::{ Action , SignedTransaction } ;
use receipt ::{ Receipt , RichReceipt } ;
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use spec ::Spec ;
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use engines ::Engine ;
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use miner ::{ MinerService , MinerStatus , TransactionQueue , PrioritizationStrategy , AccountDetails , TransactionOrigin } ;
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use miner ::work_notify ::WorkPoster ;
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use client ::TransactionImportResult ;
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use miner ::price_info ::PriceInfo ;
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use header ::BlockNumber ;
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/// Different possible definitions for pending transaction set.
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#[ derive(Debug, PartialEq) ]
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pub enum PendingSet {
/// Always just the transactions in the queue. These have had only cheap checks.
AlwaysQueue ,
/// Always just the transactions in the sealing block. These have had full checks but
/// may be empty if the node is not actively mining or has force_sealing enabled.
AlwaysSealing ,
/// Try the sealing block, but if it is not currently sealing, fallback to the queue.
SealingOrElseQueue ,
}
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/// Type of the gas limit to apply to the transaction queue.
#[ derive(Debug, PartialEq) ]
pub enum GasLimit {
/// Depends on the block gas limit and is updated with every block.
Auto ,
/// No limit.
None ,
/// Set to a fixed gas value.
Fixed ( U256 ) ,
}
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/// Configures the behaviour of the miner.
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#[ derive(Debug, PartialEq) ]
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pub struct MinerOptions {
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/// URLs to notify when there is new work.
pub new_work_notify : Vec < String > ,
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/// Force the miner to reseal, even when nobody has asked for work.
pub force_sealing : bool ,
/// Reseal on receipt of new external transactions.
pub reseal_on_external_tx : bool ,
/// Reseal on receipt of new local transactions.
pub reseal_on_own_tx : bool ,
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/// Minimum period between transaction-inspired reseals.
pub reseal_min_period : Duration ,
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/// Maximum amount of gas to bother considering for block insertion.
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pub tx_gas_limit : U256 ,
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/// Maximum size of the transaction queue.
pub tx_queue_size : usize ,
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/// Strategy to use for prioritizing transactions in the queue.
pub tx_queue_strategy : PrioritizationStrategy ,
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/// Whether we should fallback to providing all the queue's transactions or just pending.
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pub pending_set : PendingSet ,
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/// How many historical work packages can we store before running out?
pub work_queue_size : usize ,
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/// Can we submit two different solutions for the same block and expect both to result in an import?
pub enable_resubmission : bool ,
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/// Global gas limit for all transaction in the queue except for local and retracted.
pub tx_queue_gas_limit : GasLimit ,
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}
impl Default for MinerOptions {
fn default ( ) -> Self {
MinerOptions {
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new_work_notify : vec ! [ ] ,
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force_sealing : false ,
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reseal_on_external_tx : false ,
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reseal_on_own_tx : true ,
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tx_gas_limit : ! U256 ::zero ( ) ,
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tx_queue_size : 1024 ,
tx_queue_gas_limit : GasLimit ::Auto ,
tx_queue_strategy : PrioritizationStrategy ::GasFactorAndGasPrice ,
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pending_set : PendingSet ::AlwaysQueue ,
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reseal_min_period : Duration ::from_secs ( 2 ) ,
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work_queue_size : 20 ,
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enable_resubmission : true ,
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}
}
}
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/// Options for the dynamic gas price recalibrator.
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#[ derive(Debug, PartialEq) ]
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pub struct GasPriceCalibratorOptions {
/// Base transaction price to match against.
pub usd_per_tx : f32 ,
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/// How frequently we should recalibrate.
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pub recalibration_period : Duration ,
}
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/// The gas price validator variant for a `GasPricer`.
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#[ derive(Debug, PartialEq) ]
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pub struct GasPriceCalibrator {
options : GasPriceCalibratorOptions ,
next_calibration : Instant ,
}
impl GasPriceCalibrator {
fn recalibrate < F : Fn ( U256 ) + Sync + Send + 'static > ( & mut self , set_price : F ) {
trace! ( target : " miner " , " Recalibrating {:?} versus {:?} " , Instant ::now ( ) , self . next_calibration ) ;
if Instant ::now ( ) > = self . next_calibration {
let usd_per_tx = self . options . usd_per_tx ;
trace! ( target : " miner " , " Getting price info " ) ;
if let Ok ( _ ) = PriceInfo ::get ( move | price : PriceInfo | {
trace! ( target : " miner " , " Price info arrived: {:?} " , price ) ;
let usd_per_eth = price . ethusd ;
let wei_per_usd : f32 = 1.0e18 / usd_per_eth ;
let gas_per_tx : f32 = 21000.0 ;
let wei_per_gas : f32 = wei_per_usd * usd_per_tx / gas_per_tx ;
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info! ( target : " miner " , " Updated conversion rate to Ξ1 = {} ({} wei/gas) " , Colour ::White . bold ( ) . paint ( format! ( " US$ {} " , usd_per_eth ) ) , Colour ::Yellow . bold ( ) . paint ( format! ( " {} " , wei_per_gas ) ) ) ;
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set_price ( U256 ::from ( wei_per_gas as u64 ) ) ;
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} ) {
self . next_calibration = Instant ::now ( ) + self . options . recalibration_period ;
} else {
warn! ( target : " miner " , " Unable to update Ether price. " ) ;
}
}
}
}
/// Struct to look after updating the acceptable gas price of a miner.
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#[ derive(Debug, PartialEq) ]
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pub enum GasPricer {
/// A fixed gas price in terms of Wei - always the argument given.
Fixed ( U256 ) ,
/// Gas price is calibrated according to a fixed amount of USD.
Calibrated ( GasPriceCalibrator ) ,
}
impl GasPricer {
/// Create a new Calibrated `GasPricer`.
pub fn new_calibrated ( options : GasPriceCalibratorOptions ) -> GasPricer {
GasPricer ::Calibrated ( GasPriceCalibrator {
options : options ,
next_calibration : Instant ::now ( ) ,
} )
}
/// Create a new Fixed `GasPricer`.
pub fn new_fixed ( gas_price : U256 ) -> GasPricer {
GasPricer ::Fixed ( gas_price )
}
fn recalibrate < F : Fn ( U256 ) + Sync + Send + 'static > ( & mut self , set_price : F ) {
match * self {
GasPricer ::Fixed ( ref max ) = > set_price ( max . clone ( ) ) ,
GasPricer ::Calibrated ( ref mut cal ) = > cal . recalibrate ( set_price ) ,
}
}
}
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struct SealingWork {
queue : UsingQueue < ClosedBlock > ,
enabled : bool ,
}
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/// Keeps track of transactions using priority queue and holds currently mined block.
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/// Handles preparing work for "work sealing" or seals "internally" if Engine does not require work.
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pub struct Miner {
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// NOTE [ToDr] When locking always lock in this order!
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transaction_queue : Arc < Mutex < TransactionQueue > > ,
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sealing_work : Mutex < SealingWork > ,
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next_allowed_reseal : Mutex < Instant > ,
sealing_block_last_request : Mutex < u64 > ,
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// for sealing...
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options : MinerOptions ,
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seals_internally : bool ,
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gas_range_target : RwLock < ( U256 , U256 ) > ,
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author : RwLock < Address > ,
extra_data : RwLock < Bytes > ,
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engine : Arc < Engine > ,
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accounts : Option < Arc < AccountProvider > > ,
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work_poster : Option < WorkPoster > ,
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gas_pricer : Mutex < GasPricer > ,
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}
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impl Miner {
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/// Creates new instance of miner.
fn new_raw ( options : MinerOptions , gas_pricer : GasPricer , spec : & Spec , accounts : Option < Arc < AccountProvider > > ) -> Miner {
let work_poster = match options . new_work_notify . is_empty ( ) {
true = > None ,
false = > Some ( WorkPoster ::new ( & options . new_work_notify ) )
} ;
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let gas_limit = match options . tx_queue_gas_limit {
GasLimit ::Fixed ( ref limit ) = > * limit ,
_ = > ! U256 ::zero ( ) ,
} ;
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let txq = Arc ::new ( Mutex ::new ( TransactionQueue ::with_limits (
options . tx_queue_strategy , options . tx_queue_size , gas_limit , options . tx_gas_limit
) ) ) ;
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Miner {
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transaction_queue : txq ,
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next_allowed_reseal : Mutex ::new ( Instant ::now ( ) ) ,
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sealing_block_last_request : Mutex ::new ( 0 ) ,
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sealing_work : Mutex ::new ( SealingWork {
queue : UsingQueue ::new ( options . work_queue_size ) ,
enabled : options . force_sealing
| | ! options . new_work_notify . is_empty ( )
| | spec . engine . is_default_sealer ( ) . unwrap_or ( false )
} ) ,
seals_internally : spec . engine . is_default_sealer ( ) . is_some ( ) ,
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gas_range_target : RwLock ::new ( ( U256 ::zero ( ) , U256 ::zero ( ) ) ) ,
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author : RwLock ::new ( Address ::default ( ) ) ,
extra_data : RwLock ::new ( Vec ::new ( ) ) ,
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options : options ,
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accounts : accounts ,
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engine : spec . engine . clone ( ) ,
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work_poster : work_poster ,
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gas_pricer : Mutex ::new ( gas_pricer ) ,
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}
}
/// Creates new instance of miner without accounts, but with given spec.
pub fn with_spec ( spec : & Spec ) -> Miner {
Miner ::new_raw ( Default ::default ( ) , GasPricer ::new_fixed ( 20_000_000_000 u64 . into ( ) ) , spec , None )
}
/// Creates new instance of a miner Arc.
pub fn new ( options : MinerOptions , gas_pricer : GasPricer , spec : & Spec , accounts : Option < Arc < AccountProvider > > ) -> Arc < Miner > {
Arc ::new ( Miner ::new_raw ( options , gas_pricer , spec , accounts ) )
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}
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fn forced_sealing ( & self ) -> bool {
self . options . force_sealing | | ! self . options . new_work_notify . is_empty ( )
}
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/// Clear all pending block states
pub fn clear ( & self ) {
self . sealing_work . lock ( ) . queue . reset ( ) ;
}
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/// Get `Some` `clone()` of the current pending block's state or `None` if we're not sealing.
pub fn pending_state ( & self ) -> Option < State > {
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self . sealing_work . lock ( ) . queue . peek_last_ref ( ) . map ( | b | b . block ( ) . fields ( ) . state . clone ( ) )
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}
/// Get `Some` `clone()` of the current pending block's state or `None` if we're not sealing.
pub fn pending_block ( & self ) -> Option < Block > {
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self . sealing_work . lock ( ) . queue . peek_last_ref ( ) . map ( | b | b . base ( ) . clone ( ) )
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}
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#[ cfg_attr(feature= " dev " , allow(match_same_arms)) ]
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/// Prepares new block for sealing including top transactions from queue.
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fn prepare_block ( & self , chain : & MiningBlockChainClient ) -> ( ClosedBlock , Option < H256 > ) {
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{
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trace! ( target : " miner " , " prepare_block: recalibrating... " ) ;
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let txq = self . transaction_queue . clone ( ) ;
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self . gas_pricer . lock ( ) . recalibrate ( move | price | {
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trace! ( target : " miner " , " prepare_block: Got gas price! {} " , price ) ;
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txq . lock ( ) . set_minimal_gas_price ( price ) ;
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} ) ;
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trace! ( target : " miner " , " prepare_block: done recalibration. " ) ;
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}
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let _timer = PerfTimer ::new ( " prepare_block " ) ;
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let ( transactions , mut open_block , original_work_hash ) = {
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let transactions = { self . transaction_queue . lock ( ) . top_transactions ( ) } ;
let mut sealing_work = self . sealing_work . lock ( ) ;
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let last_work_hash = sealing_work . queue . peek_last_ref ( ) . map ( | pb | pb . block ( ) . fields ( ) . header . hash ( ) ) ;
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let best_hash = chain . best_block_header ( ) . sha3 ( ) ;
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/*
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// check to see if last ClosedBlock in would_seals is actually same parent block.
// if so
// duplicate, re-open and push any new transactions.
// if at least one was pushed successfully, close and enqueue new ClosedBlock;
// otherwise, leave everything alone.
// otherwise, author a fresh block.
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* /
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let open_block = match sealing_work . queue . pop_if ( | b | b . block ( ) . fields ( ) . header . parent_hash ( ) = = & best_hash ) {
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Some ( old_block ) = > {
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trace! ( target : " miner " , " prepare_block: Already have previous work; updating and returning " ) ;
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// add transactions to old_block
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old_block . reopen ( & * self . engine )
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}
None = > {
// block not found - create it.
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trace! ( target : " miner " , " prepare_block: No existing work - making new block " ) ;
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chain . prepare_open_block (
self . author ( ) ,
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( self . gas_floor_target ( ) , self . gas_ceil_target ( ) ) ,
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self . extra_data ( )
)
}
} ;
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( transactions , open_block , last_work_hash )
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} ;
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let mut invalid_transactions = HashSet ::new ( ) ;
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let mut transactions_to_penalize = HashSet ::new ( ) ;
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let block_number = open_block . block ( ) . fields ( ) . header . number ( ) ;
// TODO: push new uncles, too.
for tx in transactions {
let hash = tx . hash ( ) ;
match open_block . push_transaction ( tx , None ) {
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Err ( Error ::Execution ( ExecutionError ::BlockGasLimitReached { gas_limit , gas_used , gas } ) ) = > {
debug! ( target : " miner " , " Skipping adding transaction to block because of gas limit: {:?} (limit: {:?}, used: {:?}, gas: {:?}) " , hash , gas_limit , gas_used , gas ) ;
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// Penalize transaction if it's above current gas limit
if gas > gas_limit {
transactions_to_penalize . insert ( hash ) ;
}
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// Exit early if gas left is smaller then min_tx_gas
let min_tx_gas : U256 = 21000. into ( ) ; // TODO: figure this out properly.
if gas_limit - gas_used < min_tx_gas {
break ;
}
} ,
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// Invalid nonce error can happen only if previous transaction is skipped because of gas limit.
// If there is errornous state of transaction queue it will be fixed when next block is imported.
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Err ( Error ::Execution ( ExecutionError ::InvalidNonce { expected , got } ) ) = > {
debug! ( target : " miner " , " Skipping adding transaction to block because of invalid nonce: {:?} (expected: {:?}, got: {:?}) " , hash , expected , got ) ;
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} ,
// already have transaction - ignore
Err ( Error ::Transaction ( TransactionError ::AlreadyImported ) ) = > { } ,
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Err ( e ) = > {
invalid_transactions . insert ( hash ) ;
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debug! ( target : " miner " ,
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" Error adding transaction to block: number={}. transaction_hash={:?}, Error: {:?} " ,
block_number , hash , e ) ;
} ,
_ = > { } // imported ok
}
}
let block = open_block . close ( ) ;
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let fetch_account = | a : & Address | AccountDetails {
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nonce : chain . latest_nonce ( a ) ,
balance : chain . latest_balance ( a ) ,
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} ;
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{
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let mut queue = self . transaction_queue . lock ( ) ;
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for hash in invalid_transactions {
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queue . remove_invalid ( & hash , & fetch_account ) ;
}
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for hash in transactions_to_penalize {
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queue . penalize ( & hash ) ;
}
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}
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( block , original_work_hash )
}
/// Check is reseal is allowed and necessary.
fn requires_reseal ( & self , best_block : BlockNumber ) -> bool {
let has_local_transactions = self . transaction_queue . lock ( ) . has_local_pending_transactions ( ) ;
let mut sealing_work = self . sealing_work . lock ( ) ;
if sealing_work . enabled {
trace! ( target : " miner " , " requires_reseal: sealing enabled " ) ;
let last_request = * self . sealing_block_last_request . lock ( ) ;
let should_disable_sealing = ! self . forced_sealing ( )
& & ! has_local_transactions
& & best_block > last_request
& & best_block - last_request > SEALING_TIMEOUT_IN_BLOCKS ;
trace! ( target : " miner " , " requires_reseal: should_disable_sealing={}; best_block={}, last_request={} " , should_disable_sealing , best_block , last_request ) ;
if should_disable_sealing {
trace! ( target : " miner " , " Miner sleeping (current {}, last {}) " , best_block , last_request ) ;
sealing_work . enabled = false ;
sealing_work . queue . reset ( ) ;
false
} else {
// sealing enabled and we don't want to sleep.
* self . next_allowed_reseal . lock ( ) = Instant ::now ( ) + self . options . reseal_min_period ;
true
}
} else {
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trace! ( target : " miner " , " requires_reseal: sealing is disabled " ) ;
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false
}
}
/// Attempts to perform internal sealing (one that does not require work) to return Ok(sealed),
/// Err(Some(block)) returns for unsuccesful sealing while Err(None) indicates misspecified engine.
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fn seal_block_internally ( & self , block : ClosedBlock ) -> Result < SealedBlock , Option < ClosedBlock > > {
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trace! ( target : " miner " , " seal_block_internally: block has transaction - attempting internal seal. " ) ;
let s = self . engine . generate_seal ( block . block ( ) , match self . accounts {
Some ( ref x ) = > Some ( & * * x ) ,
None = > None ,
} ) ;
if let Some ( seal ) = s {
trace! ( target : " miner " , " seal_block_internally: managed internal seal. importing... " ) ;
block . lock ( ) . try_seal ( & * self . engine , seal ) . or_else ( | _ | {
warn! ( " prepare_sealing: ERROR: try_seal failed when given internally generated seal. WTF? " ) ;
Err ( None )
} )
} else {
trace! ( target : " miner " , " seal_block_internally: unable to generate seal internally " ) ;
Err ( Some ( block ) )
}
}
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/// Uses Engine to seal the block internally and then imports it to chain.
fn seal_and_import_block_internally ( & self , chain : & MiningBlockChainClient , block : ClosedBlock ) -> bool {
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if ! block . transactions ( ) . is_empty ( ) {
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if let Ok ( sealed ) = self . seal_block_internally ( block ) {
if chain . import_block ( sealed . rlp_bytes ( ) ) . is_ok ( ) {
return true
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}
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}
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}
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false
}
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/// Prepares work which has to be done to seal.
fn prepare_work ( & self , block : ClosedBlock , original_work_hash : Option < H256 > ) {
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let ( work , is_new ) = {
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let mut sealing_work = self . sealing_work . lock ( ) ;
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let last_work_hash = sealing_work . queue . peek_last_ref ( ) . map ( | pb | pb . block ( ) . fields ( ) . header . hash ( ) ) ;
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trace! ( target : " miner " , " prepare_work: Checking whether we need to reseal: orig={:?} last={:?}, this={:?} " , original_work_hash , last_work_hash , block . block ( ) . fields ( ) . header . hash ( ) ) ;
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let ( work , is_new ) = if last_work_hash . map_or ( true , | h | h ! = block . block ( ) . fields ( ) . header . hash ( ) ) {
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trace! ( target : " miner " , " prepare_work: Pushing a new, refreshed or borrowed pending {}... " , block . block ( ) . fields ( ) . header . hash ( ) ) ;
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let pow_hash = block . block ( ) . fields ( ) . header . hash ( ) ;
let number = block . block ( ) . fields ( ) . header . number ( ) ;
let difficulty = * block . block ( ) . fields ( ) . header . difficulty ( ) ;
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let is_new = original_work_hash . map_or ( true , | h | block . block ( ) . fields ( ) . header . hash ( ) ! = h ) ;
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sealing_work . queue . push ( block ) ;
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// If push notifications are enabled we assume all work items are used.
if self . work_poster . is_some ( ) & & is_new {
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sealing_work . queue . use_last_ref ( ) ;
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}
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( Some ( ( pow_hash , difficulty , number ) ) , is_new )
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} else {
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( None , false )
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} ;
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trace! ( target : " miner " , " prepare_work: leaving (last={:?}) " , sealing_work . queue . peek_last_ref ( ) . map ( | b | b . block ( ) . fields ( ) . header . hash ( ) ) ) ;
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( work , is_new )
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} ;
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if is_new {
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work . map ( | ( pow_hash , difficulty , number ) | self . work_poster . as_ref ( ) . map ( | p | p . notify ( pow_hash , difficulty , number ) ) ) ;
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}
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}
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fn update_gas_limit ( & self , chain : & MiningBlockChainClient ) {
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let gas_limit = HeaderView ::new ( & chain . best_block_header ( ) ) . gas_limit ( ) ;
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let mut queue = self . transaction_queue . lock ( ) ;
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queue . set_gas_limit ( gas_limit ) ;
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if let GasLimit ::Auto = self . options . tx_queue_gas_limit {
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// Set total tx queue gas limit to be 20x the block gas limit.
queue . set_total_gas_limit ( gas_limit * 20. into ( ) ) ;
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}
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}
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/// Returns true if we had to prepare new pending block.
fn prepare_work_sealing ( & self , chain : & MiningBlockChainClient ) -> bool {
trace! ( target : " miner " , " prepare_work_sealing: entering " ) ;
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let prepare_new = {
let mut sealing_work = self . sealing_work . lock ( ) ;
let have_work = sealing_work . queue . peek_last_ref ( ) . is_some ( ) ;
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trace! ( target : " miner " , " prepare_work_sealing: have_work={} " , have_work ) ;
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if ! have_work {
sealing_work . enabled = true ;
true
} else {
false
}
} ;
if prepare_new {
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// --------------------------------------------------------------------------
// | NOTE Code below requires transaction_queue and sealing_work locks. |
// | Make sure to release the locks before calling that method. |
// --------------------------------------------------------------------------
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let ( block , original_work_hash ) = self . prepare_block ( chain ) ;
self . prepare_work ( block , original_work_hash ) ;
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}
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let mut sealing_block_last_request = self . sealing_block_last_request . lock ( ) ;
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let best_number = chain . chain_info ( ) . best_block_number ;
if * sealing_block_last_request ! = best_number {
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trace! ( target : " miner " , " prepare_work_sealing: Miner received request (was {}, now {}) - waking up. " , * sealing_block_last_request , best_number ) ;
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* sealing_block_last_request = best_number ;
}
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// Return if we restarted
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prepare_new
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}
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fn add_transactions_to_queue ( & self , chain : & MiningBlockChainClient , transactions : Vec < SignedTransaction > , origin : TransactionOrigin , transaction_queue : & mut TransactionQueue ) ->
Vec < Result < TransactionImportResult , Error > > {
let fetch_account = | a : & Address | AccountDetails {
nonce : chain . latest_nonce ( a ) ,
balance : chain . latest_balance ( a ) ,
} ;
transactions . into_iter ( )
. map ( | tx | transaction_queue . add ( tx , & fetch_account , origin ) )
. collect ( )
}
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/// Are we allowed to do a non-mandatory reseal?
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fn tx_reseal_allowed ( & self ) -> bool { Instant ::now ( ) > * self . next_allowed_reseal . lock ( ) }
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#[ cfg_attr(feature= " dev " , allow(wrong_self_convention)) ]
#[ cfg_attr(feature= " dev " , allow(redundant_closure)) ]
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fn from_pending_block < H , F , G > ( & self , latest_block_number : BlockNumber , from_chain : F , map_block : G ) -> H
where F : Fn ( ) -> H , G : Fn ( & ClosedBlock ) -> H {
let sealing_work = self . sealing_work . lock ( ) ;
sealing_work . queue . peek_last_ref ( ) . map_or_else (
| | from_chain ( ) ,
| b | {
if b . block ( ) . header ( ) . number ( ) > latest_block_number {
map_block ( b )
} else {
from_chain ( )
}
}
)
}
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}
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const SEALING_TIMEOUT_IN_BLOCKS : u64 = 5 ;
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impl MinerService for Miner {
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fn clear_and_reset ( & self , chain : & MiningBlockChainClient ) {
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self . transaction_queue . lock ( ) . clear ( ) ;
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// --------------------------------------------------------------------------
// | NOTE Code below requires transaction_queue and sealing_work locks. |
// | Make sure to release the locks before calling that method. |
// --------------------------------------------------------------------------
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self . update_sealing ( chain ) ;
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}
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fn status ( & self ) -> MinerStatus {
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let status = self . transaction_queue . lock ( ) . status ( ) ;
let sealing_work = self . sealing_work . lock ( ) ;
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MinerStatus {
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transactions_in_pending_queue : status . pending ,
transactions_in_future_queue : status . future ,
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transactions_in_pending_block : sealing_work . queue . peek_last_ref ( ) . map_or ( 0 , | b | b . transactions ( ) . len ( ) ) ,
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}
}
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fn call ( & self , chain : & MiningBlockChainClient , t : & SignedTransaction , analytics : CallAnalytics ) -> Result < Executed , CallError > {
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let sealing_work = self . sealing_work . lock ( ) ;
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match sealing_work . queue . peek_last_ref ( ) {
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Some ( work ) = > {
let block = work . block ( ) ;
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// TODO: merge this code with client.rs's fn call somwhow.
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let header = block . header ( ) ;
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let last_hashes = Arc ::new ( chain . last_hashes ( ) ) ;
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let env_info = EnvInfo {
number : header . number ( ) ,
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author : * header . author ( ) ,
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timestamp : header . timestamp ( ) ,
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difficulty : * header . difficulty ( ) ,
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last_hashes : last_hashes ,
gas_used : U256 ::zero ( ) ,
gas_limit : U256 ::max_value ( ) ,
} ;
// that's just a copy of the state.
let mut state = block . state ( ) . clone ( ) ;
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let original_state = if analytics . state_diffing { Some ( state . clone ( ) ) } else { None } ;
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let sender = try ! ( t . sender ( ) . map_err ( | e | {
let message = format! ( " Transaction malformed: {:?} " , e ) ;
ExecutionError ::TransactionMalformed ( message )
} ) ) ;
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let balance = state . balance ( & sender ) ;
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let needed_balance = t . value + t . gas * t . gas_price ;
if balance < needed_balance {
// give the sender a sufficient balance
state . add_balance ( & sender , & ( needed_balance - balance ) ) ;
}
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let options = TransactOptions { tracing : analytics . transaction_tracing , vm_tracing : analytics . vm_tracing , check_nonce : false } ;
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let mut ret = try ! ( Executive ::new ( & mut state , & env_info , & * self . engine , chain . vm_factory ( ) ) . transact ( t , options ) ) ;
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// TODO gav move this into Executive.
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ret . state_diff = original_state . map ( | original | state . diff_from ( original ) ) ;
Ok ( ret )
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} ,
None = > {
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chain . call ( t , BlockID ::Latest , analytics )
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}
}
}
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fn balance ( & self , chain : & MiningBlockChainClient , address : & Address ) -> U256 {
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self . from_pending_block (
chain . chain_info ( ) . best_block_number ,
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| | chain . latest_balance ( address ) ,
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| b | b . block ( ) . fields ( ) . state . balance ( address )
)
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}
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fn storage_at ( & self , chain : & MiningBlockChainClient , address : & Address , position : & H256 ) -> H256 {
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self . from_pending_block (
chain . chain_info ( ) . best_block_number ,
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| | chain . latest_storage_at ( address , position ) ,
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| b | b . block ( ) . fields ( ) . state . storage_at ( address , position )
)
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}
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fn nonce ( & self , chain : & MiningBlockChainClient , address : & Address ) -> U256 {
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self . from_pending_block (
chain . chain_info ( ) . best_block_number ,
| | chain . latest_nonce ( address ) ,
| b | b . block ( ) . fields ( ) . state . nonce ( address )
)
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}
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fn code ( & self , chain : & MiningBlockChainClient , address : & Address ) -> Option < Bytes > {
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self . from_pending_block (
chain . chain_info ( ) . best_block_number ,
| | chain . latest_code ( address ) ,
| b | b . block ( ) . fields ( ) . state . code ( address ) . map ( | c | ( * c ) . clone ( ) )
)
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}
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fn set_author ( & self , author : Address ) {
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if self . seals_internally {
let mut sealing_work = self . sealing_work . lock ( ) ;
sealing_work . enabled = self . engine . is_sealer ( & author ) . unwrap_or ( false ) ;
}
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* self . author . write ( ) = author ;
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}
fn set_extra_data ( & self , extra_data : Bytes ) {
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* self . extra_data . write ( ) = extra_data ;
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}
/// Set the gas limit we wish to target when sealing a new block.
fn set_gas_floor_target ( & self , target : U256 ) {
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self . gas_range_target . write ( ) . 0 = target ;
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}
fn set_gas_ceil_target ( & self , target : U256 ) {
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self . gas_range_target . write ( ) . 1 = target ;
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}
fn set_minimal_gas_price ( & self , min_gas_price : U256 ) {
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self . transaction_queue . lock ( ) . set_minimal_gas_price ( min_gas_price ) ;
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}
fn minimal_gas_price ( & self ) -> U256 {
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* self . transaction_queue . lock ( ) . minimal_gas_price ( )
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}
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fn sensible_gas_price ( & self ) -> U256 {
// 10% above our minimum.
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* self . transaction_queue . lock ( ) . minimal_gas_price ( ) * 110. into ( ) / 100. into ( )
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}
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fn sensible_gas_limit ( & self ) -> U256 {
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self . gas_range_target . read ( ) . 0 / 5. into ( )
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}
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fn transactions_limit ( & self ) -> usize {
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self . transaction_queue . lock ( ) . limit ( )
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}
fn set_transactions_limit ( & self , limit : usize ) {
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self . transaction_queue . lock ( ) . set_limit ( limit )
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}
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fn set_tx_gas_limit ( & self , limit : U256 ) {
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self . transaction_queue . lock ( ) . set_tx_gas_limit ( limit )
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}
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/// Get the author that we will seal blocks as.
2016-03-22 19:12:17 +01:00
fn author ( & self ) -> Address {
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* self . author . read ( )
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}
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/// Get the extra_data that we will seal blocks with.
2016-03-22 19:12:17 +01:00
fn extra_data ( & self ) -> Bytes {
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self . extra_data . read ( ) . clone ( )
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}
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/// Get the gas limit we wish to target when sealing a new block.
fn gas_floor_target ( & self ) -> U256 {
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self . gas_range_target . read ( ) . 0
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}
/// Get the gas limit we wish to target when sealing a new block.
fn gas_ceil_target ( & self ) -> U256 {
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self . gas_range_target . read ( ) . 1
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}
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fn import_external_transactions (
& self ,
chain : & MiningBlockChainClient ,
transactions : Vec < SignedTransaction >
) -> Vec < Result < TransactionImportResult , Error > > {
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let results = {
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let mut transaction_queue = self . transaction_queue . lock ( ) ;
2016-07-08 17:19:14 +02:00
self . add_transactions_to_queue (
chain , transactions , TransactionOrigin ::External , & mut transaction_queue
)
2016-07-08 17:26:06 +02:00
} ;
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if ! results . is_empty ( ) & & self . options . reseal_on_external_tx & & self . tx_reseal_allowed ( ) {
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// --------------------------------------------------------------------------
// | NOTE Code below requires transaction_queue and sealing_work locks. |
// | Make sure to release the locks before calling that method. |
// --------------------------------------------------------------------------
2016-06-21 16:00:34 +02:00
self . update_sealing ( chain ) ;
}
results
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}
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#[ cfg_attr(feature= " dev " , allow(collapsible_if)) ]
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fn import_own_transaction (
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& self ,
chain : & MiningBlockChainClient ,
transaction : SignedTransaction ,
2016-07-06 17:15:59 +02:00
) -> Result < TransactionImportResult , Error > {
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let hash = transaction . hash ( ) ;
trace! ( target : " own_tx " , " Importing transaction: {:?} " , transaction ) ;
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let imported = {
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// Be sure to release the lock before we call prepare_work_sealing
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let mut transaction_queue = self . transaction_queue . lock ( ) ;
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let import = self . add_transactions_to_queue (
chain , vec! [ transaction ] , TransactionOrigin ::Local , & mut transaction_queue
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) . pop ( ) . expect ( " one result returned per added transaction; one added => one result; qed " ) ;
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match import {
Ok ( ref res ) = > {
trace! ( target : " own_tx " , " Imported transaction to {:?} (hash: {:?}) " , res , hash ) ;
trace! ( target : " own_tx " , " Status: {:?} " , transaction_queue . status ( ) ) ;
} ,
Err ( ref e ) = > {
trace! ( target : " own_tx " , " Failed to import transaction {:?} (hash: {:?}) " , e , hash ) ;
trace! ( target : " own_tx " , " Status: {:?} " , transaction_queue . status ( ) ) ;
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warn! ( target : " own_tx " , " Error importing transaction: {:?} " , e ) ;
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} ,
}
import
} ;
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// --------------------------------------------------------------------------
// | NOTE Code below requires transaction_queue and sealing_work locks. |
// | Make sure to release the locks before calling that method. |
// --------------------------------------------------------------------------
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if imported . is_ok ( ) & & self . options . reseal_on_own_tx & & self . tx_reseal_allowed ( ) {
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// Make sure to do it after transaction is imported and lock is droped.
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// We need to create pending block and enable sealing.
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if self . seals_internally | | ! self . prepare_work_sealing ( chain ) {
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// If new block has not been prepared (means we already had one)
// or Engine might be able to seal internally,
// we need to update sealing.
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self . update_sealing ( chain ) ;
}
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}
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imported
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}
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fn all_transactions ( & self ) -> Vec < SignedTransaction > {
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let queue = self . transaction_queue . lock ( ) ;
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queue . top_transactions ( )
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}
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fn pending_transactions ( & self , best_block : BlockNumber ) -> Vec < SignedTransaction > {
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let queue = self . transaction_queue . lock ( ) ;
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match self . options . pending_set {
PendingSet ::AlwaysQueue = > queue . top_transactions ( ) ,
PendingSet ::SealingOrElseQueue = > {
self . from_pending_block (
best_block ,
| | queue . top_transactions ( ) ,
| sealing | sealing . transactions ( ) . to_owned ( )
)
} ,
PendingSet ::AlwaysSealing = > {
self . from_pending_block (
best_block ,
| | vec! [ ] ,
| sealing | sealing . transactions ( ) . to_owned ( )
)
} ,
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}
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}
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fn pending_transactions_hashes ( & self , best_block : BlockNumber ) -> Vec < H256 > {
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let queue = self . transaction_queue . lock ( ) ;
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match self . options . pending_set {
PendingSet ::AlwaysQueue = > queue . pending_hashes ( ) ,
PendingSet ::SealingOrElseQueue = > {
self . from_pending_block (
best_block ,
| | queue . pending_hashes ( ) ,
| sealing | sealing . transactions ( ) . iter ( ) . map ( | t | t . hash ( ) ) . collect ( )
)
} ,
PendingSet ::AlwaysSealing = > {
self . from_pending_block (
best_block ,
| | vec! [ ] ,
| sealing | sealing . transactions ( ) . iter ( ) . map ( | t | t . hash ( ) ) . collect ( )
)
} ,
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}
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}
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fn transaction ( & self , best_block : BlockNumber , hash : & H256 ) -> Option < SignedTransaction > {
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let queue = self . transaction_queue . lock ( ) ;
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match self . options . pending_set {
PendingSet ::AlwaysQueue = > queue . find ( hash ) ,
PendingSet ::SealingOrElseQueue = > {
self . from_pending_block (
best_block ,
| | queue . find ( hash ) ,
| sealing | sealing . transactions ( ) . iter ( ) . find ( | t | & t . hash ( ) = = hash ) . cloned ( )
)
} ,
PendingSet ::AlwaysSealing = > {
self . from_pending_block (
best_block ,
| | None ,
| sealing | sealing . transactions ( ) . iter ( ) . find ( | t | & t . hash ( ) = = hash ) . cloned ( )
)
} ,
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}
}
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fn pending_receipt ( & self , best_block : BlockNumber , hash : & H256 ) -> Option < RichReceipt > {
self . from_pending_block (
best_block ,
| | None ,
| pending | {
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let txs = pending . transactions ( ) ;
txs . iter ( )
. map ( | t | t . hash ( ) )
. position ( | t | t = = * hash )
. map ( | index | {
let prev_gas = if index = = 0 { Default ::default ( ) } else { pending . receipts ( ) [ index - 1 ] . gas_used } ;
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let tx = & txs [ index ] ;
let receipt = & pending . receipts ( ) [ index ] ;
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RichReceipt {
transaction_hash : hash . clone ( ) ,
transaction_index : index ,
cumulative_gas_used : receipt . gas_used ,
gas_used : receipt . gas_used - prev_gas ,
contract_address : match tx . action {
Action ::Call ( _ ) = > None ,
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Action ::Create = > {
let sender = tx . sender ( )
. expect ( " transactions in pending block have already been checked for valid sender; qed " ) ;
Some ( contract_address ( & sender , & tx . nonce ) )
}
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} ,
logs : receipt . logs . clone ( ) ,
}
} )
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}
)
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}
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fn pending_receipts ( & self , best_block : BlockNumber ) -> BTreeMap < H256 , Receipt > {
self . from_pending_block (
best_block ,
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BTreeMap ::new ,
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| pending | {
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let hashes = pending . transactions ( )
. iter ( )
. map ( | t | t . hash ( ) ) ;
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let receipts = pending . receipts ( ) . iter ( ) . cloned ( ) ;
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hashes . zip ( receipts ) . collect ( )
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}
)
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}
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fn last_nonce ( & self , address : & Address ) -> Option < U256 > {
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self . transaction_queue . lock ( ) . last_nonce ( address )
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}
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/// Update sealing if required.
/// Prepare the block and work if the Engine does not seal internally.
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fn update_sealing ( & self , chain : & MiningBlockChainClient ) {
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trace! ( target : " miner " , " update_sealing " ) ;
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if self . requires_reseal ( chain . chain_info ( ) . best_block_number ) {
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// --------------------------------------------------------------------------
// | NOTE Code below requires transaction_queue and sealing_work locks. |
// | Make sure to release the locks before calling that method. |
// --------------------------------------------------------------------------
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trace! ( target : " miner " , " update_sealing: preparing a block " ) ;
let ( block , original_work_hash ) = self . prepare_block ( chain ) ;
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if self . seals_internally {
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trace! ( target : " miner " , " update_sealing: engine indicates internal sealing " ) ;
self . seal_and_import_block_internally ( chain , block ) ;
} else {
trace! ( target : " miner " , " update_sealing: engine does not seal internally, preparing work " ) ;
self . prepare_work ( block , original_work_hash ) ;
}
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}
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}
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fn is_sealing ( & self ) -> bool {
self . sealing_work . lock ( ) . queue . is_in_use ( )
}
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fn map_sealing_work < F , T > ( & self , chain : & MiningBlockChainClient , f : F ) -> Option < T > where F : FnOnce ( & ClosedBlock ) -> T {
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trace! ( target : " miner " , " map_sealing_work: entering " ) ;
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self . prepare_work_sealing ( chain ) ;
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trace! ( target : " miner " , " map_sealing_work: sealing prepared " ) ;
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let mut sealing_work = self . sealing_work . lock ( ) ;
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let ret = sealing_work . queue . use_last_ref ( ) ;
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trace! ( target : " miner " , " map_sealing_work: leaving use_last_ref={:?} " , ret . as_ref ( ) . map ( | b | b . block ( ) . fields ( ) . header . hash ( ) ) ) ;
ret . map ( f )
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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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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
) {
trace! ( target : " miner " , " Sealing block {}={}={} with seal {:?} " , pow_hash , b . hash ( ) , b . header ( ) . bare_hash ( ) , seal ) ;
b . lock ( ) . try_seal ( & * self . engine , seal ) . or_else ( | ( e , _ ) | {
warn! ( target : " miner " , " Mined solution rejected: {} " , e ) ;
Err ( Error ::PowInvalid )
} )
} else {
warn! ( target : " miner " , " Mined solution rejected: Block unknown or out of date. " ) ;
Err ( Error ::PowHashInvalid )
} ;
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result . and_then ( | sealed | {
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let n = sealed . header ( ) . number ( ) ;
let h = sealed . header ( ) . hash ( ) ;
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try ! ( chain . import_sealed_block ( sealed ) ) ;
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info! ( target : " miner " , " Mined block imported OK. #{}: {} " , Colour ::White . bold ( ) . paint ( format! ( " {} " , n ) ) , Colour ::White . bold ( ) . paint ( h . hex ( ) ) ) ;
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Ok ( ( ) )
} )
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}
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fn chain_new_blocks ( & self , chain : & MiningBlockChainClient , _imported : & [ H256 ] , _invalid : & [ H256 ] , enacted : & [ H256 ] , retracted : & [ H256 ] ) {
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trace! ( target : " miner " , " chain_new_blocks " ) ;
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fn fetch_transactions ( chain : & MiningBlockChainClient , hash : & H256 ) -> Vec < SignedTransaction > {
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let block = chain
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. block ( BlockID ::Hash ( * hash ) )
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// Client should send message after commit to db and inserting to chain.
. expect ( " Expected in-chain blocks. " ) ;
let block = BlockView ::new ( & block ) ;
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let txs = block . transactions ( ) ;
// populate sender
for tx in & txs {
let _sender = tx . sender ( ) ;
}
txs
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}
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// 1. We ignore blocks that were `imported` (because it means that they are not in canon-chain, and transactions
// should be still available in the queue.
// 2. We ignore blocks that are `invalid` because it doesn't have any meaning in terms of the transactions that
// are in those blocks
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// First update gas limit in transaction queue
self . update_gas_limit ( chain ) ;
// Then import all transactions...
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{
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let out_of_chain = retracted
. par_iter ( )
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. map ( | h | fetch_transactions ( chain , h ) ) ;
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out_of_chain . for_each ( | txs | {
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let mut transaction_queue = self . transaction_queue . lock ( ) ;
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let _ = self . add_transactions_to_queue (
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chain , txs , TransactionOrigin ::RetractedBlock , & mut transaction_queue
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) ;
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} ) ;
}
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// ...and at the end remove old ones
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{
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let in_chain = enacted
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. par_iter ( )
. map ( | h : & H256 | fetch_transactions ( chain , h ) ) ;
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in_chain . for_each ( | mut txs | {
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let mut transaction_queue = self . transaction_queue . lock ( ) ;
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let to_remove = txs . drain ( .. )
. map ( | tx | {
tx . sender ( ) . expect ( " Transaction is in block, so sender has to be defined. " )
} )
. collect ::< HashSet < Address > > ( ) ;
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for sender in to_remove {
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transaction_queue . remove_all ( sender , chain . latest_nonce ( & sender ) ) ;
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}
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} ) ;
}
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if enacted . len ( ) > 0 {
// --------------------------------------------------------------------------
// | NOTE Code below requires transaction_queue and sealing_work locks. |
// | Make sure to release the locks before calling that method. |
// --------------------------------------------------------------------------
self . update_sealing ( chain ) ;
}
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}
}
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#[ cfg(test) ]
mod tests {
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use std ::time ::Duration ;
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use super ::super ::{ MinerService , PrioritizationStrategy } ;
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use super ::* ;
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use util ::* ;
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use ethkey ::{ Generator , Random } ;
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use client ::{ BlockChainClient , TestBlockChainClient , EachBlockWith , TransactionImportResult } ;
use header ::BlockNumber ;
use types ::transaction ::{ Transaction , SignedTransaction , Action } ;
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use block ::* ;
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use spec ::Spec ;
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use tests ::helpers ::{ generate_dummy_client } ;
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#[ test ]
fn should_prepare_block_to_seal ( ) {
// given
let client = TestBlockChainClient ::default ( ) ;
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let miner = Miner ::with_spec ( & Spec ::new_test ( ) ) ;
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// when
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let sealing_work = miner . map_sealing_work ( & client , | _ | ( ) ) ;
assert! ( sealing_work . is_some ( ) , " Expected closed block " ) ;
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}
#[ test ]
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fn should_still_work_after_a_couple_of_blocks ( ) {
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// given
let client = TestBlockChainClient ::default ( ) ;
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let miner = Miner ::with_spec ( & Spec ::new_test ( ) ) ;
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let res = miner . map_sealing_work ( & client , | b | b . block ( ) . fields ( ) . header . hash ( ) ) ;
assert! ( res . is_some ( ) ) ;
assert! ( miner . submit_seal ( & client , res . unwrap ( ) , vec! [ ] ) . is_ok ( ) ) ;
// two more blocks mined, work requested.
client . add_blocks ( 1 , EachBlockWith ::Uncle ) ;
miner . map_sealing_work ( & client , | b | b . block ( ) . fields ( ) . header . hash ( ) ) ;
client . add_blocks ( 1 , EachBlockWith ::Uncle ) ;
miner . map_sealing_work ( & client , | b | b . block ( ) . fields ( ) . header . hash ( ) ) ;
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// solution to original work submitted.
assert! ( miner . submit_seal ( & client , res . unwrap ( ) , vec! [ ] ) . is_ok ( ) ) ;
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}
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fn miner ( ) -> Miner {
Arc ::try_unwrap ( Miner ::new (
MinerOptions {
new_work_notify : Vec ::new ( ) ,
force_sealing : false ,
reseal_on_external_tx : false ,
reseal_on_own_tx : true ,
reseal_min_period : Duration ::from_secs ( 5 ) ,
tx_gas_limit : ! U256 ::zero ( ) ,
tx_queue_size : 1024 ,
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tx_queue_gas_limit : GasLimit ::None ,
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tx_queue_strategy : PrioritizationStrategy ::GasFactorAndGasPrice ,
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pending_set : PendingSet ::AlwaysSealing ,
work_queue_size : 5 ,
enable_resubmission : true ,
} ,
GasPricer ::new_fixed ( 0 u64 . into ( ) ) ,
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& Spec ::new_test ( ) ,
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None , // accounts provider
) ) . ok ( ) . expect ( " Miner was just created. " )
}
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fn transaction ( ) -> SignedTransaction {
let keypair = Random . generate ( ) . unwrap ( ) ;
Transaction {
action : Action ::Create ,
value : U256 ::zero ( ) ,
data : " 3331600055 " . from_hex ( ) . unwrap ( ) ,
gas : U256 ::from ( 100_000 ) ,
gas_price : U256 ::zero ( ) ,
nonce : U256 ::zero ( ) ,
} . sign ( keypair . secret ( ) )
}
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#[ test ]
fn should_make_pending_block_when_importing_own_transaction ( ) {
// given
let client = TestBlockChainClient ::default ( ) ;
let miner = miner ( ) ;
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let transaction = transaction ( ) ;
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let best_block = 0 ;
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// when
let res = miner . import_own_transaction ( & client , transaction ) ;
// then
assert_eq! ( res . unwrap ( ) , TransactionImportResult ::Current ) ;
assert_eq! ( miner . all_transactions ( ) . len ( ) , 1 ) ;
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assert_eq! ( miner . pending_transactions ( best_block ) . len ( ) , 1 ) ;
assert_eq! ( miner . pending_transactions_hashes ( best_block ) . len ( ) , 1 ) ;
assert_eq! ( miner . pending_receipts ( best_block ) . len ( ) , 1 ) ;
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// This method will let us know if pending block was created (before calling that method)
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assert! ( ! miner . prepare_work_sealing ( & client ) ) ;
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}
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#[ test ]
fn should_not_use_pending_block_if_best_block_is_higher ( ) {
// given
let client = TestBlockChainClient ::default ( ) ;
let miner = miner ( ) ;
let transaction = transaction ( ) ;
let best_block = 10 ;
// when
let res = miner . import_own_transaction ( & client , transaction ) ;
// then
assert_eq! ( res . unwrap ( ) , TransactionImportResult ::Current ) ;
assert_eq! ( miner . all_transactions ( ) . len ( ) , 1 ) ;
assert_eq! ( miner . pending_transactions ( best_block ) . len ( ) , 0 ) ;
assert_eq! ( miner . pending_transactions_hashes ( best_block ) . len ( ) , 0 ) ;
assert_eq! ( miner . pending_receipts ( best_block ) . len ( ) , 0 ) ;
}
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#[ test ]
fn should_import_external_transaction ( ) {
// given
let client = TestBlockChainClient ::default ( ) ;
let miner = miner ( ) ;
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let transaction = transaction ( ) ;
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let best_block = 0 ;
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// when
let res = miner . import_external_transactions ( & client , vec! [ transaction ] ) . pop ( ) . unwrap ( ) ;
// then
assert_eq! ( res . unwrap ( ) , TransactionImportResult ::Current ) ;
assert_eq! ( miner . all_transactions ( ) . len ( ) , 1 ) ;
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assert_eq! ( miner . pending_transactions_hashes ( best_block ) . len ( ) , 0 ) ;
assert_eq! ( miner . pending_transactions ( best_block ) . len ( ) , 0 ) ;
assert_eq! ( miner . pending_receipts ( best_block ) . len ( ) , 0 ) ;
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// This method will let us know if pending block was created (before calling that method)
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assert! ( miner . prepare_work_sealing ( & client ) ) ;
}
#[ test ]
fn should_not_seal_unless_enabled ( ) {
let miner = miner ( ) ;
let client = TestBlockChainClient ::default ( ) ;
// By default resealing is not required.
assert! ( ! miner . requires_reseal ( 1 u8 . into ( ) ) ) ;
miner . import_external_transactions ( & client , vec! [ transaction ( ) ] ) . pop ( ) . unwrap ( ) . unwrap ( ) ;
assert! ( miner . prepare_work_sealing ( & client ) ) ;
// Unless asked to prepare work.
assert! ( miner . requires_reseal ( 1 u8 . into ( ) ) ) ;
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}
#[ test ]
fn internal_seals_without_work ( ) {
let miner = Miner ::with_spec ( & Spec ::new_test_instant ( ) ) ;
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let c = generate_dummy_client ( 2 ) ;
let client = c . reference ( ) . as_ref ( ) ;
assert_eq! ( miner . import_external_transactions ( client , vec! [ transaction ( ) ] ) . pop ( ) . unwrap ( ) . unwrap ( ) , TransactionImportResult ::Current ) ;
miner . update_sealing ( client ) ;
client . flush_queue ( ) ;
assert! ( miner . pending_block ( ) . is_none ( ) ) ;
assert_eq! ( client . chain_info ( ) . best_block_number , 3 as BlockNumber ) ;
assert_eq! ( miner . import_own_transaction ( client , transaction ( ) ) . unwrap ( ) , TransactionImportResult ::Current ) ;
miner . update_sealing ( client ) ;
client . flush_queue ( ) ;
assert! ( miner . pending_block ( ) . is_none ( ) ) ;
assert_eq! ( client . chain_info ( ) . best_block_number , 4 as BlockNumber ) ;
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}
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}