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use std::sync::Arc;
use std::collections::{HashMap, HashSet};
use ethereum_types::{U256, H256, Address};
use bytes::Bytes;
use {
CallType, Schedule, EnvInfo,
ReturnData, Ext, ContractCreateResult, MessageCallResult,
CreateContractAddress, Result, GasLeft,
};
pub struct FakeLogEntry {
pub topics: Vec<H256>,
pub data: Bytes
}
#[derive(PartialEq, Eq, Hash, Debug)]
pub enum FakeCallType {
Call, Create
}
#[derive(PartialEq, Eq, Hash, Debug)]
pub struct FakeCall {
pub call_type: FakeCallType,
pub gas: U256,
pub sender_address: Option<Address>,
pub receive_address: Option<Address>,
pub value: Option<U256>,
pub data: Bytes,
pub code_address: Option<Address>,
}
#[derive(Default)]
pub struct FakeExt {
pub store: HashMap<H256, H256>,
pub suicides: HashSet<Address>,
pub calls: HashSet<FakeCall>,
pub sstore_clears: usize,
pub depth: usize,
pub blockhashes: HashMap<U256, H256>,
pub codes: HashMap<Address, Arc<Bytes>>,
pub logs: Vec<FakeLogEntry>,
pub info: EnvInfo,
pub schedule: Schedule,
pub balances: HashMap<Address, U256>,
pub tracing: bool,
pub is_static: bool,
}
pub fn test_finalize(res: Result<GasLeft>) -> Result<U256> {
match res {
Ok(GasLeft::Known(gas)) => Ok(gas),
Ok(GasLeft::NeedsReturn{..}) => unimplemented!(),
Err(e) => Err(e),
}
}
impl FakeExt {
pub fn new() -> Self {
FakeExt::default()
}
pub fn new_byzantium() -> Self {
let mut ext = FakeExt::default();
ext.schedule = Schedule::new_byzantium();
ext
}
pub fn new_constantinople() -> Self {
let mut ext = FakeExt::default();
ext.schedule = Schedule::new_constantinople();
ext
}
pub fn with_wasm(mut self) -> Self {
self.schedule.wasm = Some(Default::default());
self
}
}
impl Ext for FakeExt {
fn storage_at(&self, key: &H256) -> Result<H256> {
Ok(self.store.get(key).unwrap_or(&H256::new()).clone())
}
fn set_storage(&mut self, key: H256, value: H256) -> Result<()> {
self.store.insert(key, value);
Ok(())
}
fn exists(&self, address: &Address) -> Result<bool> {
Ok(self.balances.contains_key(address))
}
fn exists_and_not_null(&self, address: &Address) -> Result<bool> {
Ok(self.balances.get(address).map_or(false, |b| !b.is_zero()))
}
fn origin_balance(&self) -> Result<U256> {
unimplemented!()
}
fn balance(&self, address: &Address) -> Result<U256> {
Ok(self.balances[address])
}
fn blockhash(&mut self, number: &U256) -> H256 {
self.blockhashes.get(number).unwrap_or(&H256::new()).clone()
}
fn create(&mut self, gas: &U256, value: &U256, code: &[u8], _address: CreateContractAddress) -> ContractCreateResult {
self.calls.insert(FakeCall {
call_type: FakeCallType::Create,
gas: *gas,
sender_address: None,
receive_address: None,
value: Some(*value),
data: code.to_vec(),
code_address: None
});
ContractCreateResult::Failed
}
fn call(&mut self,
gas: &U256,
sender_address: &Address,
receive_address: &Address,
value: Option<U256>,
data: &[u8],
code_address: &Address,
_output: &mut [u8],
_call_type: CallType
) -> MessageCallResult {
self.calls.insert(FakeCall {
call_type: FakeCallType::Call,
gas: *gas,
sender_address: Some(sender_address.clone()),
receive_address: Some(receive_address.clone()),
value: value,
data: data.to_vec(),
code_address: Some(code_address.clone())
});
MessageCallResult::Success(*gas, ReturnData::empty())
}
fn extcode(&self, address: &Address) -> Result<Arc<Bytes>> {
Ok(self.codes.get(address).unwrap_or(&Arc::new(Bytes::new())).clone())
}
fn extcodesize(&self, address: &Address) -> Result<usize> {
Ok(self.codes.get(address).map_or(0, |c| c.len()))
}
fn log(&mut self, topics: Vec<H256>, data: &[u8]) -> Result<()> {
self.logs.push(FakeLogEntry {
topics: topics,
data: data.to_vec()
});
Ok(())
}
fn ret(self, _gas: &U256, _data: &ReturnData, _apply_state: bool) -> Result<U256> {
unimplemented!();
}
fn suicide(&mut self, refund_address: &Address) -> Result<()> {
self.suicides.insert(refund_address.clone());
Ok(())
}
fn schedule(&self) -> &Schedule {
&self.schedule
}
fn env_info(&self) -> &EnvInfo {
&self.info
}
fn depth(&self) -> usize {
self.depth
}
fn is_static(&self) -> bool {
self.is_static
}
fn inc_sstore_clears(&mut self) {
self.sstore_clears += 1;
}
fn trace_next_instruction(&mut self, _pc: usize, _instruction: u8, _gas: U256) -> bool {
self.tracing
}
}