539 lines
18 KiB
Rust
539 lines
18 KiB
Rust
// Copyright 2015-2017 Parity Technologies (UK) Ltd.
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// This file is part of Parity.
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// Parity is free software: you can redistribute it and/or modify
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// it under the terms of the GNU General Public License as published by
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// the Free Software Foundation, either version 3 of the License, or
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// (at your option) any later version.
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// Parity is distributed in the hope that it will be useful,
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// but WITHOUT ANY WARRANTY; without even the implied warranty of
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// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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// GNU General Public License for more details.
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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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//! Ethereum-like state machine definition.
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use std::collections::{BTreeMap, HashMap};
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use std::cmp;
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use std::sync::Arc;
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use block::ExecutedBlock;
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use builtin::Builtin;
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use client::BlockChainClient;
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use error::{Error, TransactionError};
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use executive::Executive;
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use header::{BlockNumber, Header};
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use spec::CommonParams;
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use state::{CleanupMode, Substate};
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use trace::{NoopTracer, NoopVMTracer, Tracer, ExecutiveTracer, RewardType};
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use transaction::{SYSTEM_ADDRESS, UnverifiedTransaction, SignedTransaction};
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use tx_filter::TransactionFilter;
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use bigint::prelude::U256;
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use bytes::BytesRef;
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use util::Address;
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use vm::{CallType, ActionParams, ActionValue};
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use vm::{EnvInfo, Schedule, CreateContractAddress};
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/// Parity tries to round block.gas_limit to multiple of this constant
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pub const PARITY_GAS_LIMIT_DETERMINANT: U256 = U256([37, 0, 0, 0]);
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/// Ethash-specific extensions.
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#[derive(Debug, Clone)]
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pub struct EthashExtensions {
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/// Homestead transition block number.
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pub homestead_transition: BlockNumber,
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/// EIP150 transition block number.
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pub eip150_transition: BlockNumber,
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/// Number of first block where EIP-160 rules begin.
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pub eip160_transition: u64,
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/// Number of first block where EIP-161.abc begin.
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pub eip161abc_transition: u64,
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/// Number of first block where EIP-161.d begins.
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pub eip161d_transition: u64,
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/// DAO hard-fork transition block (X).
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pub dao_hardfork_transition: u64,
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/// DAO hard-fork refund contract address (C).
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pub dao_hardfork_beneficiary: Address,
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/// DAO hard-fork DAO accounts list (L)
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pub dao_hardfork_accounts: Vec<Address>,
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}
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impl From<::ethjson::spec::EthashParams> for EthashExtensions {
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fn from(p: ::ethjson::spec::EthashParams) -> Self {
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EthashExtensions {
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homestead_transition: p.homestead_transition.map_or(0, Into::into),
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eip150_transition: p.eip150_transition.map_or(0, Into::into),
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eip160_transition: p.eip160_transition.map_or(0, Into::into),
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eip161abc_transition: p.eip161abc_transition.map_or(0, Into::into),
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eip161d_transition: p.eip161d_transition.map_or(u64::max_value(), Into::into),
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dao_hardfork_transition: p.dao_hardfork_transition.map_or(u64::max_value(), Into::into),
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dao_hardfork_beneficiary: p.dao_hardfork_beneficiary.map_or_else(Address::new, Into::into),
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dao_hardfork_accounts: p.dao_hardfork_accounts.unwrap_or_else(Vec::new).into_iter().map(Into::into).collect(),
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}
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}
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}
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/// Special rules to be applied to the schedule.
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pub type ScheduleCreationRules = Fn(&mut Schedule, BlockNumber) + Sync + Send;
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/// An ethereum-like state machine.
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pub struct EthereumMachine {
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params: CommonParams,
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builtins: Arc<BTreeMap<Address, Builtin>>,
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tx_filter: Option<Arc<TransactionFilter>>,
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ethash_extensions: Option<EthashExtensions>,
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schedule_rules: Option<Box<ScheduleCreationRules>>,
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}
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impl EthereumMachine {
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/// Regular ethereum machine.
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pub fn regular(params: CommonParams, builtins: BTreeMap<Address, Builtin>) -> EthereumMachine {
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let tx_filter = TransactionFilter::from_params(¶ms).map(Arc::new);
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EthereumMachine {
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params: params,
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builtins: Arc::new(builtins),
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tx_filter: tx_filter,
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ethash_extensions: None,
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schedule_rules: None,
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}
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}
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/// Ethereum machine with ethash extensions.
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// TODO: either unify or specify to mainnet specifically and include other specific-chain HFs?
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pub fn with_ethash_extensions(params: CommonParams, builtins: BTreeMap<Address, Builtin>, extensions: EthashExtensions) -> EthereumMachine {
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let mut machine = EthereumMachine::regular(params, builtins);
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machine.ethash_extensions = Some(extensions);
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machine
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}
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/// Attach special rules to the creation of schedule.
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pub fn set_schedule_creation_rules(&mut self, rules: Box<ScheduleCreationRules>) {
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self.schedule_rules = Some(rules);
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}
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/// Get a reference to the ethash-specific extensions.
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pub fn ethash_extensions(&self) -> Option<&EthashExtensions> {
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self.ethash_extensions.as_ref()
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}
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}
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impl EthereumMachine {
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/// Execute a call as the system address.
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pub fn execute_as_system(
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&self,
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block: &mut ExecutedBlock,
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contract_address: Address,
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gas: U256,
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data: Option<Vec<u8>>,
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) -> Result<Vec<u8>, Error> {
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let env_info = {
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let mut env_info = block.env_info();
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env_info.gas_limit = env_info.gas_used + gas;
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env_info
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};
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let mut state = block.fields_mut().state;
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let params = ActionParams {
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code_address: contract_address.clone(),
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address: contract_address.clone(),
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sender: SYSTEM_ADDRESS.clone(),
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origin: SYSTEM_ADDRESS.clone(),
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gas: gas,
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gas_price: 0.into(),
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value: ActionValue::Transfer(0.into()),
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code: state.code(&contract_address)?,
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code_hash: Some(state.code_hash(&contract_address)?),
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data: data,
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call_type: CallType::Call,
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};
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let mut ex = Executive::new(&mut state, &env_info, self);
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let mut substate = Substate::new();
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let mut output = Vec::new();
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if let Err(e) = ex.call(params, &mut substate, BytesRef::Flexible(&mut output), &mut NoopTracer, &mut NoopVMTracer) {
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warn!("Encountered error on making system call: {}", e);
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}
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Ok(output)
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}
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/// Push last known block hash to the state.
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fn push_last_hash(&self, block: &mut ExecutedBlock) -> Result<(), Error> {
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let params = self.params();
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if block.fields().header.number() == params.eip210_transition {
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let state = block.fields_mut().state;
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state.init_code(¶ms.eip210_contract_address, params.eip210_contract_code.clone())?;
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}
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if block.fields().header.number() >= params.eip210_transition {
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let parent_hash = block.fields().header.parent_hash().clone();
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let _ = self.execute_as_system(
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block,
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params.eip210_contract_address,
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params.eip210_contract_gas,
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Some(parent_hash.to_vec()),
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)?;
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}
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Ok(())
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}
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/// Logic to perform on a new block: updating last hashes and the DAO
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/// fork, for ethash.
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pub fn on_new_block(&self, block: &mut ExecutedBlock) -> Result<(), Error> {
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self.push_last_hash(block)?;
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if let Some(ref ethash_params) = self.ethash_extensions {
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if block.fields().header.number() == ethash_params.dao_hardfork_transition {
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let state = block.fields_mut().state;
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for child in ðash_params.dao_hardfork_accounts {
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let beneficiary = ðash_params.dao_hardfork_beneficiary;
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state.balance(child)
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.and_then(|b| state.transfer_balance(child, beneficiary, &b, CleanupMode::NoEmpty))?;
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}
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}
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}
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Ok(())
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}
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/// Populate a header's fields based on its parent's header.
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/// Usually implements the chain scoring rule based on weight.
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/// The gas floor target must not be lower than the engine's minimum gas limit.
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pub fn populate_from_parent(&self, header: &mut Header, parent: &Header, gas_floor_target: U256, gas_ceil_target: U256) {
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header.set_difficulty(parent.difficulty().clone());
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if let Some(ref ethash_params) = self.ethash_extensions {
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let gas_limit = {
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let gas_limit = parent.gas_limit().clone();
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let bound_divisor = self.params().gas_limit_bound_divisor;
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let lower_limit = gas_limit - gas_limit / bound_divisor + 1.into();
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let upper_limit = gas_limit + gas_limit / bound_divisor - 1.into();
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let gas_limit = if gas_limit < gas_floor_target {
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let gas_limit = cmp::min(gas_floor_target, upper_limit);
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round_block_gas_limit(gas_limit, lower_limit, upper_limit)
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} else if gas_limit > gas_ceil_target {
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let gas_limit = cmp::max(gas_ceil_target, lower_limit);
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round_block_gas_limit(gas_limit, lower_limit, upper_limit)
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} else {
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let total_lower_limit = cmp::max(lower_limit, gas_floor_target);
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let total_upper_limit = cmp::min(upper_limit, gas_ceil_target);
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let gas_limit = cmp::max(gas_floor_target, cmp::min(total_upper_limit,
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lower_limit + (header.gas_used().clone() * 6.into() / 5.into()) / bound_divisor));
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round_block_gas_limit(gas_limit, total_lower_limit, total_upper_limit)
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};
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// ensure that we are not violating protocol limits
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debug_assert!(gas_limit >= lower_limit);
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debug_assert!(gas_limit <= upper_limit);
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gas_limit
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};
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header.set_gas_limit(gas_limit);
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if header.number() >= ethash_params.dao_hardfork_transition &&
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header.number() <= ethash_params.dao_hardfork_transition + 9 {
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header.set_extra_data(b"dao-hard-fork"[..].to_owned());
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}
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return
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}
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header.set_gas_limit({
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let gas_limit = parent.gas_limit().clone();
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let bound_divisor = self.params().gas_limit_bound_divisor;
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if gas_limit < gas_floor_target {
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cmp::min(gas_floor_target, gas_limit + gas_limit / bound_divisor - 1.into())
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} else {
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cmp::max(gas_floor_target, gas_limit - gas_limit / bound_divisor + 1.into())
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}
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});
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}
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/// Get the general parameters of the chain.
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pub fn params(&self) -> &CommonParams {
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&self.params
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}
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/// Get the EVM schedule for the given block number.
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pub fn schedule(&self, block_number: BlockNumber) -> Schedule {
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let mut schedule = match self.ethash_extensions {
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None => self.params.schedule(block_number),
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Some(ref ext) => {
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if block_number < ext.homestead_transition {
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Schedule::new_frontier()
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} else if block_number < ext.eip150_transition {
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Schedule::new_homestead()
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} else {
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/// There's no max_code_size transition so we tie it to eip161abc
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let max_code_size = if block_number >= ext.eip161abc_transition {
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self.params.max_code_size as usize
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} else {
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usize::max_value()
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};
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let mut schedule = Schedule::new_post_eip150(
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max_code_size,
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block_number >= ext.eip160_transition,
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block_number >= ext.eip161abc_transition,
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block_number >= ext.eip161d_transition
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);
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self.params.update_schedule(block_number, &mut schedule);
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schedule
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}
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}
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};
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if let Some(ref rules) = self.schedule_rules {
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(rules)(&mut schedule, block_number)
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}
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schedule
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}
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/// Builtin-contracts for the chain..
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pub fn builtins(&self) -> &BTreeMap<Address, Builtin> {
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&*self.builtins
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}
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/// Attempt to get a handle to a built-in contract.
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/// Only returns references to activated built-ins.
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// TODO: builtin contract routing - to do this properly, it will require removing the built-in configuration-reading logic
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// from Spec into here and removing the Spec::builtins field.
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pub fn builtin(&self, a: &Address, block_number: BlockNumber) -> Option<&Builtin> {
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self.builtins()
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.get(a)
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.and_then(|b| if b.is_active(block_number) { Some(b) } else { None })
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}
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/// Some intrinsic operation parameters; by default they take their value from the `spec()`'s `engine_params`.
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pub fn maximum_extra_data_size(&self) -> usize { self.params().maximum_extra_data_size }
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/// The nonce with which accounts begin at given block.
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pub fn account_start_nonce(&self, block: u64) -> U256 {
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let params = self.params();
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if block >= params.dust_protection_transition {
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U256::from(params.nonce_cap_increment) * U256::from(block)
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} else {
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params.account_start_nonce
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}
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}
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/// The network ID that transactions should be signed with.
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pub fn signing_chain_id(&self, env_info: &EnvInfo) -> Option<u64> {
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let params = self.params();
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if env_info.number >= params.eip155_transition {
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Some(params.chain_id)
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} else {
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None
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}
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}
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/// Returns new contract address generation scheme at given block number.
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pub fn create_address_scheme(&self, number: BlockNumber) -> CreateContractAddress {
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if number >= self.params().eip86_transition {
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CreateContractAddress::FromCodeHash
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} else {
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CreateContractAddress::FromSenderAndNonce
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}
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}
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/// Verify a particular transaction is valid, regardless of order.
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pub fn verify_transaction_unordered(&self, t: UnverifiedTransaction, _header: &Header) -> Result<SignedTransaction, Error> {
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SignedTransaction::new(t)
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}
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/// Does basic verification of the transaction.
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pub fn verify_transaction_basic(&self, t: &UnverifiedTransaction, header: &Header) -> Result<(), Error> {
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let check_low_s = match self.ethash_extensions {
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Some(ref ext) => header.number() >= ext.homestead_transition,
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None => true,
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};
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let chain_id = if header.number() >= self.params().eip155_transition {
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Some(self.params().chain_id)
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} else {
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None
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};
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t.verify_basic(check_low_s, chain_id, false)?;
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Ok(())
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}
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/// Does verification of the transaction against the parent state.
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// TODO: refine the bound here to be a "state provider" or similar as opposed
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// to full client functionality.
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pub fn verify_transaction(&self, t: &SignedTransaction, header: &Header, client: &BlockChainClient) -> Result<(), Error> {
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if let Some(ref filter) = self.tx_filter.as_ref() {
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if !filter.transaction_allowed(header.parent_hash(), t, client) {
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return Err(TransactionError::NotAllowed.into())
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}
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}
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Ok(())
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}
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/// If this machine supports wasm.
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pub fn supports_wasm(&self) -> bool {
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self.params().wasm
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}
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/// Additional params.
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pub fn additional_params(&self) -> HashMap<String, String> {
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hash_map![
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"registrar".to_owned() => self.params.registrar.hex()
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]
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}
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}
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/// Auxiliary data fetcher for an Ethereum machine. In Ethereum-like machines
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/// there are two kinds of auxiliary data: bodies and receipts.
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#[derive(Default, Clone)]
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pub struct AuxiliaryData<'a> {
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/// The full block bytes, including the header.
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pub bytes: Option<&'a [u8]>,
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/// The block receipts.
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pub receipts: Option<&'a [::receipt::Receipt]>,
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}
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/// Type alias for a function we can make calls through synchronously.
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/// Returns the call result and state proof for each call.
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pub type Call<'a> = Fn(Address, Vec<u8>) -> Result<(Vec<u8>, Vec<Vec<u8>>), String> + 'a;
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/// Request for auxiliary data of a block.
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#[derive(Debug, Clone, Copy, PartialEq)]
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pub enum AuxiliaryRequest {
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/// Needs the body.
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Body,
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/// Needs the receipts.
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Receipts,
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/// Needs both body and receipts.
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Both,
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}
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impl ::parity_machine::Machine for EthereumMachine {
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type Header = Header;
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type LiveBlock = ExecutedBlock;
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type EngineClient = ::client::EngineClient;
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type AuxiliaryRequest = AuxiliaryRequest;
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type Error = Error;
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}
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impl<'a> ::parity_machine::LocalizedMachine<'a> for EthereumMachine {
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type StateContext = Call<'a>;
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type AuxiliaryData = AuxiliaryData<'a>;
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}
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impl ::parity_machine::WithBalances for EthereumMachine {
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fn balance(&self, live: &ExecutedBlock, address: &Address) -> Result<U256, Error> {
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live.fields().state.balance(address).map_err(Into::into)
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}
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fn add_balance(&self, live: &mut ExecutedBlock, address: &Address, amount: &U256) -> Result<(), Error> {
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live.fields_mut().state.add_balance(address, amount, CleanupMode::NoEmpty).map_err(Into::into)
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}
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fn note_rewards(
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&self,
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live: &mut Self::LiveBlock,
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direct: &[(Address, U256)],
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indirect: &[(Address, U256)],
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) -> Result<(), Self::Error> {
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use block::IsBlock;
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if !live.tracing_enabled() { return Ok(()) }
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let mut tracer = ExecutiveTracer::default();
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for &(address, amount) in direct {
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tracer.trace_reward(address, amount, RewardType::Block);
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}
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for &(address, amount) in indirect {
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tracer.trace_reward(address, amount, RewardType::Uncle);
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}
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live.fields_mut().push_traces(tracer);
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Ok(())
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}
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}
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// Try to round gas_limit a bit so that:
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// 1) it will still be in desired range
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// 2) it will be a nearest (with tendency to increase) multiple of PARITY_GAS_LIMIT_DETERMINANT
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fn round_block_gas_limit(gas_limit: U256, lower_limit: U256, upper_limit: U256) -> U256 {
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let increased_gas_limit = gas_limit + (PARITY_GAS_LIMIT_DETERMINANT - gas_limit % PARITY_GAS_LIMIT_DETERMINANT);
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if increased_gas_limit > upper_limit {
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let decreased_gas_limit = increased_gas_limit - PARITY_GAS_LIMIT_DETERMINANT;
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if decreased_gas_limit < lower_limit {
|
|
gas_limit
|
|
} else {
|
|
decreased_gas_limit
|
|
}
|
|
} else {
|
|
increased_gas_limit
|
|
}
|
|
}
|
|
|
|
|
|
#[cfg(test)]
|
|
mod tests {
|
|
use super::*;
|
|
|
|
#[test]
|
|
fn ethash_gas_limit_is_multiple_of_determinant() {
|
|
use bigint::prelude::U256;
|
|
|
|
let spec = ::ethereum::new_homestead_test();
|
|
let ethparams = ::tests::helpers::get_default_ethash_extensions();
|
|
|
|
let machine = EthereumMachine::with_ethash_extensions(
|
|
spec.params().clone(),
|
|
Default::default(),
|
|
ethparams,
|
|
);
|
|
|
|
let mut parent = ::header::Header::new();
|
|
let mut header = ::header::Header::new();
|
|
header.set_number(1);
|
|
|
|
// this test will work for this constant only
|
|
assert_eq!(PARITY_GAS_LIMIT_DETERMINANT, U256::from(37));
|
|
|
|
// when parent.gas_limit < gas_floor_target:
|
|
parent.set_gas_limit(U256::from(50_000));
|
|
machine.populate_from_parent(&mut header, &parent, U256::from(100_000), U256::from(200_000));
|
|
assert_eq!(*header.gas_limit(), U256::from(50_024));
|
|
|
|
// when parent.gas_limit > gas_ceil_target:
|
|
parent.set_gas_limit(U256::from(250_000));
|
|
machine.populate_from_parent(&mut header, &parent, U256::from(100_000), U256::from(200_000));
|
|
assert_eq!(*header.gas_limit(), U256::from(249_787));
|
|
|
|
// when parent.gas_limit is in miner's range
|
|
header.set_gas_used(U256::from(150_000));
|
|
parent.set_gas_limit(U256::from(150_000));
|
|
machine.populate_from_parent(&mut header, &parent, U256::from(100_000), U256::from(200_000));
|
|
assert_eq!(*header.gas_limit(), U256::from(150_035));
|
|
|
|
// when parent.gas_limit is in miner's range
|
|
// && we can NOT increase it to be multiple of constant
|
|
header.set_gas_used(U256::from(150_000));
|
|
parent.set_gas_limit(U256::from(150_000));
|
|
machine.populate_from_parent(&mut header, &parent, U256::from(100_000), U256::from(150_002));
|
|
assert_eq!(*header.gas_limit(), U256::from(149_998));
|
|
|
|
// when parent.gas_limit is in miner's range
|
|
// && we can NOT increase it to be multiple of constant
|
|
// && we can NOT decrease it to be multiple of constant
|
|
header.set_gas_used(U256::from(150_000));
|
|
parent.set_gas_limit(U256::from(150_000));
|
|
machine.populate_from_parent(&mut header, &parent, U256::from(150_000), U256::from(150_002));
|
|
assert_eq!(*header.gas_limit(), U256::from(150_002));
|
|
}
|
|
}
|