488 lines
14 KiB
Rust
488 lines
14 KiB
Rust
// Copyright 2015, 2016 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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//! Transaction Execution environment.
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use util::*;
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use action_params::{ActionParams, ActionValue};
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use state::{State, Substate};
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use engines::Engine;
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use env_info::EnvInfo;
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use executive::*;
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use evm::{self, Schedule, Ext, ContractCreateResult, MessageCallResult, Factory};
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use types::executed::CallType;
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use trace::{Tracer, VMTracer};
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/// Policy for handling output data on `RETURN` opcode.
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pub enum OutputPolicy<'a, 'b> {
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/// Return reference to fixed sized output.
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/// Used for message calls.
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Return(BytesRef<'a>, Option<&'b mut Bytes>),
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/// Init new contract as soon as `RETURN` is called.
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InitContract(Option<&'b mut Bytes>),
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}
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/// Transaction properties that externalities need to know about.
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pub struct OriginInfo {
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address: Address,
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origin: Address,
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gas_price: U256,
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value: U256
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}
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impl OriginInfo {
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/// Populates origin info from action params.
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pub fn from(params: &ActionParams) -> Self {
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OriginInfo {
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address: params.address.clone(),
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origin: params.origin.clone(),
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gas_price: params.gas_price,
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value: match params.value {
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ActionValue::Transfer(val) | ActionValue::Apparent(val) => val
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}
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}
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}
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}
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/// Implementation of evm Externalities.
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pub struct Externalities<'a, T, V> where T: 'a + Tracer, V: 'a + VMTracer {
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state: &'a mut State,
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env_info: &'a EnvInfo,
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engine: &'a Engine,
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vm_factory: &'a Factory,
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depth: usize,
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origin_info: OriginInfo,
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substate: &'a mut Substate,
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schedule: Schedule,
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output: OutputPolicy<'a, 'a>,
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tracer: &'a mut T,
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vm_tracer: &'a mut V,
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}
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impl<'a, T, V> Externalities<'a, T, V> where T: 'a + Tracer, V: 'a + VMTracer {
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#[cfg_attr(feature="dev", allow(too_many_arguments))]
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/// Basic `Externalities` constructor.
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pub fn new(state: &'a mut State,
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env_info: &'a EnvInfo,
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engine: &'a Engine,
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vm_factory: &'a Factory,
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depth: usize,
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origin_info: OriginInfo,
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substate: &'a mut Substate,
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output: OutputPolicy<'a, 'a>,
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tracer: &'a mut T,
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vm_tracer: &'a mut V,
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) -> Self {
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Externalities {
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state: state,
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env_info: env_info,
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engine: engine,
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vm_factory: vm_factory,
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depth: depth,
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origin_info: origin_info,
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substate: substate,
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schedule: engine.schedule(env_info),
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output: output,
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tracer: tracer,
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vm_tracer: vm_tracer,
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}
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}
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}
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impl<'a, T, V> Ext for Externalities<'a, T, V> where T: 'a + Tracer, V: 'a + VMTracer {
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fn storage_at(&self, key: &H256) -> H256 {
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self.state.storage_at(&self.origin_info.address, key)
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}
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fn set_storage(&mut self, key: H256, value: H256) {
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self.state.set_storage(&self.origin_info.address, key, value)
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}
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fn exists(&self, address: &Address) -> bool {
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self.state.exists(address)
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}
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fn exists_and_not_null(&self, address: &Address) -> bool {
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self.state.exists_and_not_null(address)
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}
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fn origin_balance(&self) -> U256 { self.balance(&self.origin_info.address) }
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fn balance(&self, address: &Address) -> U256 {
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self.state.balance(address)
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}
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fn blockhash(&self, number: &U256) -> H256 {
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// TODO: comment out what this function expects from env_info, since it will produce panics if the latter is inconsistent
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match *number < U256::from(self.env_info.number) && number.low_u64() >= cmp::max(256, self.env_info.number) - 256 {
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true => {
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let index = self.env_info.number - number.low_u64() - 1;
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assert!(index < self.env_info.last_hashes.len() as u64, format!("Inconsistent env_info, should contain at least {:?} last hashes", index+1));
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let r = self.env_info.last_hashes[index as usize].clone();
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trace!("ext: blockhash({}) -> {} self.env_info.number={}\n", number, r, self.env_info.number);
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r
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},
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false => {
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trace!("ext: blockhash({}) -> null self.env_info.number={}\n", number, self.env_info.number);
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H256::zero()
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},
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}
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}
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fn create(&mut self, gas: &U256, value: &U256, code: &[u8]) -> ContractCreateResult {
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// create new contract address
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let address = contract_address(&self.origin_info.address, &self.state.nonce(&self.origin_info.address));
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// prepare the params
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let params = ActionParams {
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code_address: address.clone(),
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address: address.clone(),
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sender: self.origin_info.address.clone(),
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origin: self.origin_info.origin.clone(),
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gas: *gas,
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gas_price: self.origin_info.gas_price,
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value: ActionValue::Transfer(*value),
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code: Some(Arc::new(code.to_vec())),
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code_hash: code.sha3(),
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data: None,
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call_type: CallType::None,
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};
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self.state.inc_nonce(&self.origin_info.address);
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let mut ex = Executive::from_parent(self.state, self.env_info, self.engine, self.vm_factory, self.depth);
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// TODO: handle internal error separately
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match ex.create(params, self.substate, self.tracer, self.vm_tracer) {
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Ok(gas_left) => {
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self.substate.contracts_created.push(address.clone());
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ContractCreateResult::Created(address, gas_left)
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},
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_ => ContractCreateResult::Failed
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}
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}
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fn call(&mut self,
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gas: &U256,
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sender_address: &Address,
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receive_address: &Address,
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value: Option<U256>,
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data: &[u8],
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code_address: &Address,
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output: &mut [u8],
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call_type: CallType
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) -> MessageCallResult {
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trace!(target: "externalities", "call");
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let mut params = ActionParams {
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sender: sender_address.clone(),
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address: receive_address.clone(),
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value: ActionValue::Apparent(self.origin_info.value),
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code_address: code_address.clone(),
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origin: self.origin_info.origin.clone(),
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gas: *gas,
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gas_price: self.origin_info.gas_price,
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code: self.state.code(code_address),
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code_hash: self.state.code_hash(code_address),
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data: Some(data.to_vec()),
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call_type: call_type,
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};
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if let Some(value) = value {
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params.value = ActionValue::Transfer(value);
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}
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let mut ex = Executive::from_parent(self.state, self.env_info, self.engine, self.vm_factory, self.depth);
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match ex.call(params, self.substate, BytesRef::Fixed(output), self.tracer, self.vm_tracer) {
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Ok(gas_left) => MessageCallResult::Success(gas_left),
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_ => MessageCallResult::Failed
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}
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}
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fn extcode(&self, address: &Address) -> Arc<Bytes> {
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self.state.code(address).unwrap_or_else(|| Arc::new(vec![]))
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}
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fn extcodesize(&self, address: &Address) -> usize {
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self.state.code_size(address).unwrap_or(0)
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}
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#[cfg_attr(feature="dev", allow(match_ref_pats))]
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fn ret(mut self, gas: &U256, data: &[u8]) -> evm::Result<U256>
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where Self: Sized {
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let handle_copy = |to: &mut Option<&mut Bytes>| {
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to.as_mut().map(|b| **b = data.to_owned());
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};
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match self.output {
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OutputPolicy::Return(BytesRef::Fixed(ref mut slice), ref mut copy) => {
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handle_copy(copy);
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let len = cmp::min(slice.len(), data.len());
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(&mut slice[..len]).copy_from_slice(&data[..len]);
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Ok(*gas)
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},
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OutputPolicy::Return(BytesRef::Flexible(ref mut vec), ref mut copy) => {
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handle_copy(copy);
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vec.clear();
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vec.extend_from_slice(data);
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Ok(*gas)
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},
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OutputPolicy::InitContract(ref mut copy) => {
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let return_cost = U256::from(data.len()) * U256::from(self.schedule.create_data_gas);
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if return_cost > *gas || data.len() > self.schedule.create_data_limit {
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return match self.schedule.exceptional_failed_code_deposit {
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true => Err(evm::Error::OutOfGas),
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false => Ok(*gas)
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}
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}
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handle_copy(copy);
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let mut code = vec![];
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code.extend_from_slice(data);
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self.state.init_code(&self.origin_info.address, code);
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Ok(*gas - return_cost)
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}
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}
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}
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fn log(&mut self, topics: Vec<H256>, data: &[u8]) {
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use log_entry::LogEntry;
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let address = self.origin_info.address.clone();
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self.substate.logs.push(LogEntry {
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address: address,
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topics: topics,
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data: data.to_vec()
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});
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}
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fn suicide(&mut self, refund_address: &Address) {
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let address = self.origin_info.address.clone();
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let balance = self.balance(&address);
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if &address == refund_address {
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// TODO [todr] To be consistent with CPP client we set balance to 0 in that case.
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self.state.sub_balance(&address, &balance);
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} else {
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trace!(target: "ext", "Suiciding {} -> {} (xfer: {})", address, refund_address, balance);
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self.state.transfer_balance(&address, refund_address, &balance, self.substate.to_cleanup_mode(&self.schedule));
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}
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self.tracer.trace_suicide(address, balance, refund_address.clone());
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self.substate.suicides.insert(address);
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}
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fn schedule(&self) -> &Schedule {
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&self.schedule
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}
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fn env_info(&self) -> &EnvInfo {
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self.env_info
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}
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fn depth(&self) -> usize {
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self.depth
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}
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fn inc_sstore_clears(&mut self) {
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self.substate.sstore_clears_count = self.substate.sstore_clears_count + U256::one();
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}
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fn trace_prepare_execute(&mut self, pc: usize, instruction: u8, gas_cost: &U256) -> bool {
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self.vm_tracer.trace_prepare_execute(pc, instruction, gas_cost)
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}
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fn trace_executed(&mut self, gas_used: U256, stack_push: &[U256], mem_diff: Option<(usize, &[u8])>, store_diff: Option<(U256, U256)>) {
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self.vm_tracer.trace_executed(gas_used, stack_push, mem_diff, store_diff)
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}
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}
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#[cfg(test)]
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mod tests {
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use util::*;
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use engines::Engine;
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use env_info::EnvInfo;
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use evm::Ext;
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use state::{State, Substate};
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use tests::helpers::*;
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use devtools::GuardedTempResult;
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use super::*;
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use trace::{NoopTracer, NoopVMTracer};
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use types::executed::CallType;
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fn get_test_origin() -> OriginInfo {
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OriginInfo {
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address: Address::zero(),
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origin: Address::zero(),
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gas_price: U256::zero(),
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value: U256::zero()
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}
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}
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fn get_test_env_info() -> EnvInfo {
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EnvInfo {
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number: 100,
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author: 0.into(),
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timestamp: 0,
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difficulty: 0.into(),
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last_hashes: Arc::new(vec![]),
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gas_used: 0.into(),
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gas_limit: 0.into(),
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}
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}
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struct TestSetup {
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state: GuardedTempResult<State>,
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engine: Arc<Engine>,
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sub_state: Substate,
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env_info: EnvInfo
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}
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impl Default for TestSetup {
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fn default() -> Self {
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TestSetup::new()
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}
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}
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impl TestSetup {
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fn new() -> Self {
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TestSetup {
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state: get_temp_state(),
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engine: get_test_spec().engine,
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sub_state: Substate::new(),
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env_info: get_test_env_info()
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}
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}
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}
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#[test]
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fn can_be_created() {
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let mut setup = TestSetup::new();
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let state = setup.state.reference_mut();
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let mut tracer = NoopTracer;
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let mut vm_tracer = NoopVMTracer;
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let vm_factory = Default::default();
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let ext = Externalities::new(state, &setup.env_info, &*setup.engine, &vm_factory, 0, get_test_origin(), &mut setup.sub_state, OutputPolicy::InitContract(None), &mut tracer, &mut vm_tracer);
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assert_eq!(ext.env_info().number, 100);
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}
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#[test]
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fn can_return_block_hash_no_env() {
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let mut setup = TestSetup::new();
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let state = setup.state.reference_mut();
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let mut tracer = NoopTracer;
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let mut vm_tracer = NoopVMTracer;
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let vm_factory = Default::default();
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let ext = Externalities::new(state, &setup.env_info, &*setup.engine, &vm_factory, 0, get_test_origin(), &mut setup.sub_state, OutputPolicy::InitContract(None), &mut tracer, &mut vm_tracer);
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let hash = ext.blockhash(&U256::from_str("0000000000000000000000000000000000000000000000000000000000120000").unwrap());
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assert_eq!(hash, H256::zero());
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}
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#[test]
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fn can_return_block_hash() {
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let test_hash = H256::from("afafafafafafafafafafafbcbcbcbcbcbcbcbcbcbeeeeeeeeeeeeedddddddddd");
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let test_env_number = 0x120001;
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let mut setup = TestSetup::new();
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{
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let env_info = &mut setup.env_info;
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env_info.number = test_env_number;
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let mut last_hashes = (*env_info.last_hashes).clone();
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last_hashes.push(test_hash.clone());
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env_info.last_hashes = Arc::new(last_hashes);
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}
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let state = setup.state.reference_mut();
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let mut tracer = NoopTracer;
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let mut vm_tracer = NoopVMTracer;
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let vm_factory = Default::default();
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let ext = Externalities::new(state, &setup.env_info, &*setup.engine, &vm_factory, 0, get_test_origin(), &mut setup.sub_state, OutputPolicy::InitContract(None), &mut tracer, &mut vm_tracer);
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let hash = ext.blockhash(&U256::from_str("0000000000000000000000000000000000000000000000000000000000120000").unwrap());
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assert_eq!(test_hash, hash);
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}
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#[test]
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#[should_panic]
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fn can_call_fail_empty() {
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let mut setup = TestSetup::new();
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let state = setup.state.reference_mut();
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let mut tracer = NoopTracer;
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let mut vm_tracer = NoopVMTracer;
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let vm_factory = Default::default();
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let mut ext = Externalities::new(state, &setup.env_info, &*setup.engine, &vm_factory, 0, get_test_origin(), &mut setup.sub_state, OutputPolicy::InitContract(None), &mut tracer, &mut vm_tracer);
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let mut output = vec![];
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// this should panic because we have no balance on any account
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ext.call(
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&U256::from_str("0000000000000000000000000000000000000000000000000000000000120000").unwrap(),
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&Address::new(),
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&Address::new(),
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Some(U256::from_str("0000000000000000000000000000000000000000000000000000000000150000").unwrap()),
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&[],
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&Address::new(),
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&mut output,
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CallType::Call
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);
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}
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#[test]
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fn can_log() {
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let log_data = vec![120u8, 110u8];
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let log_topics = vec![H256::from("af0fa234a6af46afa23faf23bcbc1c1cb4bcb7bcbe7e7e7ee3ee2edddddddddd")];
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let mut setup = TestSetup::new();
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let state = setup.state.reference_mut();
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let mut tracer = NoopTracer;
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let mut vm_tracer = NoopVMTracer;
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{
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let vm_factory = Default::default();
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let mut ext = Externalities::new(state, &setup.env_info, &*setup.engine, &vm_factory, 0, get_test_origin(), &mut setup.sub_state, OutputPolicy::InitContract(None), &mut tracer, &mut vm_tracer);
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ext.log(log_topics, &log_data);
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}
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assert_eq!(setup.sub_state.logs.len(), 1);
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}
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#[test]
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fn can_suicide() {
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let refund_account = &Address::new();
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let mut setup = TestSetup::new();
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let state = setup.state.reference_mut();
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let mut tracer = NoopTracer;
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let mut vm_tracer = NoopVMTracer;
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{
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let vm_factory = Default::default();
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let mut ext = Externalities::new(state, &setup.env_info, &*setup.engine, &vm_factory, 0, get_test_origin(), &mut setup.sub_state, OutputPolicy::InitContract(None), &mut tracer, &mut vm_tracer);
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ext.suicide(refund_account);
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}
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assert_eq!(setup.sub_state.suicides.len(), 1);
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}
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}
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