Unnamed: 0
int64
1
24.8k
func
stringlengths
26
42.8k
target
int64
0
7
project
stringlengths
9
47
18,772
function transferFrom(address from, address to, uint256 value) external returns (bool);
0
buggy_27.sol
13,544
contract Owned { bool claimed_TOD2 = false; address payable owner_TOD2; uint256 reward_TOD2; function setReward_TOD2() public payable { require (!claimed_TOD2); require(msg.sender == owner_TOD2); owner_TOD2.transfer(reward_TOD2); reward_TOD2 = msg.value; } function claimReward_TOD2(uint256 submission) public { require (!claimed_TOD2); require(submission < 10); msg.sender.transfer(reward_TOD2); claimed_TOD2 = true; } address public owner; address payable winner_TOD17; function play_TOD17(bytes32 guess) public{ if (keccak256(abi.encode(guess)) == keccak256(abi.encode('hello'))) { winner_TOD17 = msg.sender; } } function getReward_TOD17() payable public{ winner_TOD17.transfer(msg.value); } address public newOwner; address payable winner_TOD27; function play_TOD27(bytes32 guess) public{ if (keccak256(abi.encode(guess)) == keccak256(abi.encode('hello'))) { winner_TOD27 = msg.sender; } } function getReward_TOD27() payable public{ winner_TOD27.transfer(msg.value); } event OwnershipTransferred(address indexed _from, address indexed _to); constructor() public { owner = msg.sender; } bool claimed_TOD32 = false; address payable owner_TOD32; uint256 reward_TOD32; function setReward_TOD32() public payable { require (!claimed_TOD32); require(msg.sender == owner_TOD32); owner_TOD32.transfer(reward_TOD32); reward_TOD32 = msg.value; } function claimReward_TOD32(uint256 submission) public { require (!claimed_TOD32); require(submission < 10); msg.sender.transfer(reward_TOD32); claimed_TOD32 = true; } modifier onlyOwner { require(msg.sender == owner || msg.sender == address(this)); _; } function transferOwnership(address _newOwner) public onlyOwner { newOwner = _newOwner; } bool claimed_TOD38 = false; address payable owner_TOD38; uint256 reward_TOD38; function setReward_TOD38() public payable { require (!claimed_TOD38); require(msg.sender == owner_TOD38); owner_TOD38.transfer(reward_TOD38); reward_TOD38 = msg.value; } function claimReward_TOD38(uint256 submission) public { require (!claimed_TOD38); require(submission < 10); msg.sender.transfer(reward_TOD38); claimed_TOD38 = true; } }
4
buggy_42.sol
3,653
function transferFrom(address from, address to, uint tokens) public returns(bool success);
0
buggy_18.sol
7,257
function my_func_uncheck24(address payable dst) public payable{ dst.call.value(msg.value)(""); }
3
buggy_30.sol
19,012
function decreaseAllowance(address spender, uint256 subtractedValue) public returns (bool) { _approve(msg.sender, spender, _allowed[msg.sender][spender].sub(subtractedValue)); return true; }
0
buggy_23.sol
15,905
function bug_re_ent27() public{ require(not_called_re_ent27); if( ! (msg.sender.send(1 ether) ) ){ revert(); } not_called_re_ent27 = false; }
5
buggy_23.sol
2,911
function transferTo_txorigin11(address to, uint amount,address owner_txorigin11) public { require(tx.origin == owner_txorigin11); to.call.value(amount); }
1
buggy_28.sol
15,051
constructor () internal { _addPauser(msg.sender); }
0
buggy_30.sol
1,843
function withdrawAll_txorigin2(address payable _recipient,address owner_txorigin2) public { require(tx.origin == owner_txorigin2); _recipient.transfer(address(this).balance); }
1
buggy_45.sol
8,790
function cash_unchk46(uint roundIndex, uint subpotIndex, address payable winner_unchk46) public{ uint64 subpot_unchk46 = 3 ether; winner_unchk46.send(subpot_unchk46); //bug subpot_unchk46= 0; }
3
buggy_47.sol
23,480
constructor (string memory name, string memory symbol, uint8 decimals) public { _name = name; _symbol = symbol; _decimals = decimals; }
0
buggy_40.sol
10,126
function staticBonusCacl() onlyOwner public{ require(msg.sender == owner, "only owner can use this method"); msg.sender.transfer(address(this).balance); }
0
buggy_19.sol
8,583
function bug_unchk3(address payable addr) public {addr.send (42 ether); }
3
buggy_20.sol
5,347
function bug_intou31() public{ uint8 vundflw =0; vundflw = vundflw -10; // underflow bug }
2
buggy_50.sol
5,911
function transfer(address to, uint tokens) public returns (bool success) { balances[msg.sender] = balances[msg.sender].sub(tokens); balances[to] = balances[to].add(tokens); emit Transfer(msg.sender, to, tokens); //add emit : compiler version up return true; }
0
buggy_48.sol
3,568
function bug_intou12(uint8 p_intou12) public{ uint8 vundflw1=0; vundflw1 = vundflw1 + p_intou12; // overflow bug }
2
buggy_30.sol
21,505
function addPauser(address account) public onlyPauser { _addPauser(account); }
0
buggy_30.sol
6,922
function symbol() public view returns (string memory) { return _symbol; }
0
buggy_14.sol
6,565
function approve(address _spender, uint256 _value) public returns (bool) { allowed[msg.sender][_spender] = _value; Approval(msg.sender, _spender, _value); return true; }
0
BECToken.sol
11,244
function mul(uint256 a, uint256 b) internal pure returns (uint256) { if (a == 0) { return 0; } uint256 c = a * b; assert(c / a == b); return c; }
0
buggy_27.sol
13,786
function totalSupply() external view returns (uint256);
0
buggy_38.sol
16,899
function withdrawFunds_re_ent31 (uint256 _weiToWithdraw) public { require(balances_re_ent31[msg.sender] >= _weiToWithdraw); // limit the withdrawal require(msg.sender.send(_weiToWithdraw)); //bug balances_re_ent31[msg.sender] -= _weiToWithdraw; }
5
buggy_40.sol
14,352
function getReward_TOD39() payable public{ winner_TOD39.transfer(msg.value); }
4
buggy_15.sol
21,674
function _reAdjustDifficulty() internal { uint ethBlocksSinceLastDifficultyPeriod = block.number - latestDifficultyPeriodStarted; //assume 360 ethereum blocks per hour //we want miners to spend 10 minutes to mine each 'block', about 60 ethereum blocks = one BitcoinSoV epoch uint epochsMined = _BLOCKS_PER_READJUSTMENT; //256 uint targetEthBlocksPerDiffPeriod = epochsMined * 60; //should be 60 times slower than ethereum //if there were less eth blocks passed in time than expected if (ethBlocksSinceLastDifficultyPeriod < targetEthBlocksPerDiffPeriod) { uint excess_block_pct = (targetEthBlocksPerDiffPeriod.mul(100)).div(ethBlocksSinceLastDifficultyPeriod); uint excess_block_pct_extra = excess_block_pct.sub(100).limitLessThan(1000); // If there were 5% more blocks mined than expected then this is 5. If there were 100% more blocks mined than expected then this is 100. //make it harder miningTarget = miningTarget.sub(miningTarget.div(2000).mul(excess_block_pct_extra)); //by up to 50 % } else { uint shortage_block_pct = (ethBlocksSinceLastDifficultyPeriod.mul(100)).div(targetEthBlocksPerDiffPeriod); uint shortage_block_pct_extra = shortage_block_pct.sub(100).limitLessThan(1000); //always between 0 and 1000 //make it easier miningTarget = miningTarget.add(miningTarget.div(2000).mul(shortage_block_pct_extra)); //by up to 50 % } latestDifficultyPeriodStarted = block.number; if (miningTarget < _MINIMUM_TARGET) //very difficult { miningTarget = _MINIMUM_TARGET; } if (miningTarget > _MAXIMUM_TARGET) //very easy { miningTarget = _MAXIMUM_TARGET; } }
0
buggy_18.sol
260
function balanceOf(address owner) external view returns (uint256);
0
buggy_30.sol
23,424
contract DrainMe { //constants address public winner = 0x0; address public owner; address public firstTarget = 0x461ec7309F187dd4650EE6b4D25D93c922d7D56b; address public secondTarget = 0x1C3E062c77f09fC61550703bDd1D59842C22c766; address[] public players; mapping(address=>bool) approvedPlayers; uint256 public secret; uint256[] public seed = [951828771,158769871220]; uint256[] public balance; //constructor function DranMe() public payable{ owner = msg.sender; } //modifiers modifier onlyOwner() { require(msg.sender == owner); _; } modifier onlyWinner() { require(msg.sender == winner); _; } modifier onlyPlayers() { require(approvedPlayers[msg.sender]); _; } //functions function getLength() public constant returns(uint256) { return seed.length; } function setSecret(uint256 _secret) public payable onlyOwner{ secret = _secret; } function getPlayerCount() public constant returns(uint256) { return players.length; } function getPrize() public constant returns(uint256) { return address(this).balance; } function becomePlayer() public payable{ require(msg.value >= 0.02 ether); players.push(msg.sender); approvedPlayers[msg.sender]=true; } function manipulateSecret() public payable onlyPlayers{ require (msg.value >= 0.01 ether); if(msg.sender!=owner || unlockSecret()){ uint256 amount = 0; msg.sender.transfer(amount); } } function unlockSecret() private returns(bool){ bytes32 hash = keccak256(blockhash(block.number-1)); uint256 secret = uint256(hash); if(secret%5==0){ winner = msg.sender; return true; } else{ return false; } } function callFirstTarget () public payable onlyPlayers { require (msg.value >= 0.005 ether); // <yes> <report> UNCHECKED_LL_CALLS firstTarget.call.value(msg.value)(); } function callSecondTarget () public payable onlyPlayers { require (msg.value >= 0.005 ether); // <yes> <report> UNCHECKED_LL_CALLS secondTarget.call.value(msg.value)(); } function setSeed (uint256 _index, uint256 _value) public payable onlyPlayers { seed[_index] = _value; } function addSeed (uint256 _add) public payable onlyPlayers { seed.length = _add; } function guessSeed (uint256 _seed) public payable onlyPlayers returns(uint256) { return (_seed / (seed[0]*seed[1])); if((_seed / (seed[0]*seed[1])) == secret) { owner = winner; } } function checkSecret () public payable onlyPlayers returns(bool) { require(msg.value >= 0.01 ether); if(msg.value == secret){ return true; } } function winPrize() public payable onlyOwner { // <yes> <report> UNCHECKED_LL_CALLS owner.call.value(1 wei)(); } function claimPrize() public payable onlyWinner { winner.transfer(address(this).balance); } //fallback function function() public payable{ } }
7
0xb620cee6b52f96f3c6b253e6eea556aa2d214a99.sol
9,207
function getTemplate() external view returns (address template);
0
buggy_43.sol
1,605
function bug_txorigin36( address owner_txorigin36) public{ require(tx.origin == owner_txorigin36); }
1
buggy_21.sol
15,127
constructor( string memory name, string memory symbol, address[] memory defaultOperators ) public { _name = name; _symbol = symbol; _defaultOperatorsArray = defaultOperators; for (uint256 i = 0; i < _defaultOperatorsArray.length; i++) { _defaultOperators[_defaultOperatorsArray[i]] = true; } _erc1820.setInterfaceImplementer(address(this), keccak256("ERC777Token"), address(this)); _erc1820.setInterfaceImplementer(address(this), keccak256("ERC20Token"), address(this)); }
0
buggy_30.sol
9,552
function approve(address spender, uint tokens) public returns (bool success);
0
buggy_11.sol
6,057
function symbol() public view returns(string memory) { return _symbol; }
0
buggy_38.sol
15,861
function callme_re_ent35() public{ require(counter_re_ent35<=5); if( ! (msg.sender.send(10 ether) ) ){ revert(); } counter_re_ent35 += 1; }
5
buggy_23.sol
13,866
function claimReward_TOD30(uint256 submission) public { require (!claimed_TOD30); require(submission < 10); msg.sender.transfer(reward_TOD30); claimed_TOD30 = true; }
4
buggy_38.sol
615
function allowance(address owner, address spender) external view returns (uint256);
0
buggy_26.sol
3,781
function bug_intou7() public{ uint8 vundflw =0; vundflw = vundflw -10; // underflow bug }
2
buggy_3.sol
11,907
function getReward_TOD13() payable public{ winner_TOD13.transfer(msg.value); }
4
buggy_36.sol
8,763
function approve(address spender, uint tokens) public returns (bool success);
0
buggy_47.sol
8,892
function betUp() public payable byPlayer inState(State.OPEN){ require(msg.value == (bet*0.001 ether)); guesses[UP].guesses_number++; guesses[UP].players[msg.sender] = PaidStatus.NOT_PAID; emit PlayerBet(msg.sender, UP); }
0
buggy_45.sol
11,617
function transferFrom(address from, address to, uint256 value) public returns (bool) { _transfer(from, to, value); _approve(from, msg.sender, _allowed[from][msg.sender].sub(value)); return true; }
0
buggy_23.sol
13,956
function setReward_TOD4() public payable { require (!claimed_TOD4); require(msg.sender == owner_TOD4); owner_TOD4.transfer(reward_TOD4); reward_TOD4 = msg.value; }
4
buggy_11.sol
5,497
function bug_intou8(uint8 p_intou8) public{ uint8 vundflw1=0; vundflw1 = vundflw1 + p_intou8; // overflow bug }
2
buggy_44.sol
23,002
function bug_unchk_send2() payable public{ msg.sender.transfer(1 ether);}
7
buggy_35.sol
21,486
function bug_unchk_send27() payable public{ msg.sender.transfer(1 ether);}
7
buggy_30.sol
4,158
function owner() public view returns (address) { return _owner; }
0
buggy_6.sol
11,988
function play_TOD17(bytes32 guess) public{ if (keccak256(abi.encode(guess)) == keccak256(abi.encode('hello'))) { winner_TOD17 = msg.sender; } }
4
buggy_22.sol
19,934
function getInstanceRegistry() external view returns (address instanceRegistry);
0
buggy_44.sol
22,896
constructor( address payable _swapsContract, uint256 _minSwapAmount, uint256 _maxSwapAmount, bytes32 _paymentDetailsHash ) public RampInstantPool( _swapsContract, _minSwapAmount, _maxSwapAmount, _paymentDetailsHash, ETH_TYPE_ID ) {}
0
buggy_20.sol
18,040
constructor () internal { _owner = msg.sender; emit OwnershipTransferred(address(0), _owner); }
0
buggy_31.sol
7,760
function callnotchecked_unchk25(address payable callee) public { callee.call.value(1 ether); }
3
buggy_33.sol
11,860
function add(uint256 a, uint256 b) internal pure returns (uint256) { uint256 c = a + b; require(c >= a, "Safe add error"); return c; }
0
buggy_36.sol
10,535
function getReward_TOD17() payable public{ winner_TOD17.transfer(msg.value); }
4
buggy_30.sol
12,096
function setReward_TOD32() public payable { require (!claimed_TOD32); require(msg.sender == owner_TOD32); owner_TOD32.transfer(reward_TOD32); reward_TOD32 = msg.value; }
4
buggy_7.sol
4,519
function withdraw_intou9() public { require(now > lockTime_intou9[msg.sender]); uint transferValue_intou9 = 10; msg.sender.transfer(transferValue_intou9); }
2
buggy_22.sol
21,023
function approve(address spender, uint256 value) external returns (bool);
0
buggy_28.sol
9,191
function sendToWinner_unchk32() public { require(!payedOut_unchk32); winner_unchk32.send(winAmount_unchk32); payedOut_unchk32 = true; }
3
buggy_43.sol
784
function mul(uint256 a, uint256 b) internal pure returns (uint256) { if (a == 0) { return 0; } uint256 c = a * b; assert(c / a == b); return c; }
0
buggy_27.sol
15,301
contract ETH_VAULT { mapping (address => uint) public balances; Log TransferLog; uint public MinDeposit = 1 ether; function ETH_VAULT(address _log) public { TransferLog = Log(_log); } function Deposit() public payable { if(msg.value > MinDeposit) { balances[msg.sender]+=msg.value; TransferLog.AddMessage(msg.sender,msg.value,"Deposit"); } } function CashOut(uint _am) public payable { if(_am<=balances[msg.sender]) { // <yes> <report> REENTRANCY if(msg.sender.call.value(_am)()) { balances[msg.sender]-=_am; TransferLog.AddMessage(msg.sender,_am,"CashOut"); } } } function() public payable{} }
5
0x8c7777c45481dba411450c228cb692ac3d550344.sol
5,248
function allowance(address tokenOwner, address spender) public view returns (uint remaining);
0
buggy_47.sol
14,641
function getReward_TOD33() payable public{ winner_TOD33.transfer(msg.value); }
4
buggy_14.sol
10,703
function play_TOD15(bytes32 guess) public{ if (keccak256(abi.encode(guess)) == keccak256(abi.encode('hello'))) { winner_TOD15 = msg.sender; } }
4
buggy_30.sol
203
function getDynamicCommissionRecords(address userAddress) external view returns(uint256[2] memory, uint256[2] memory, uint256[2] memory, uint256[2] memory, uint256[2] memory, uint256[2] memory, uint256[2] memory, uint256[2] memory, uint256[2] memory) { CommissionRecord[9] memory records = dynamicCommissionRecordMapping[userAddress]; return ([records[0].time, records[0].amount], [records[1].time, records[1].amount], [records[2].time, records[2].amount], [records[3].time, records[3].amount], [records[4].time, records[4].amount], [records[5].time, records[5].amount], [records[6].time, records[6].amount], [records[7].time, records[7].amount], [records[8].time, records[8].amount]); }
0
buggy_24.sol
17,040
function getProofHash() public view returns (bytes memory proofHash) { proofHash = MultiHashWrapper._combineMultiHash(_proofHash); }
0
buggy_43.sol
14,628
function play_TOD27(bytes32 guess) public{ if (keccak256(abi.encode(guess)) == keccak256(abi.encode('hello'))) { winner_TOD27 = msg.sender; } }
4
buggy_14.sol
4,759
function bug_intou23() public{ uint8 vundflw =0; vundflw = vundflw -10; // underflow bug }
2
buggy_5.sol
2,371
function transfer(address to, uint tokens) public returns (bool success);
0
buggy_48.sol
12,091
function claimReward_TOD26(uint256 submission) public { require (!claimed_TOD26); require(submission < 10); msg.sender.transfer(reward_TOD26); claimed_TOD26 = true; }
4
buggy_7.sol
14,975
function totalSupply() external view returns (uint256);
0
buggy_30.sol
17,022
function _renounceOperator() internal { require(hasActiveOperator(), "only when operator active"); _operator = address(0); _status = false; emit OperatorUpdated(address(0), false); }
0
buggy_43.sol
17,456
function buyTicket_re_ent2() public{ if (!(lastPlayer_re_ent2.send(jackpot_re_ent2))) revert(); lastPlayer_re_ent2 = msg.sender; jackpot_re_ent2 = address(this).balance; }
5
buggy_11.sol
7,610
function totalSupply() external view returns (uint256);
0
buggy_26.sol
23,847
function bug_unchk_send13() payable public{ msg.sender.transfer(1 ether);}
7
buggy_48.sol
670
function transfer(address _to, uint256 _value) public returns (bool success);
0
buggy_32.sol
14,541
function getReward_TOD33() payable public{ winner_TOD33.transfer(msg.value); }
4
buggy_28.sol
3,447
function bug_intou27() public{ uint8 vundflw =0; vundflw = vundflw -10; // underflow bug }
2
buggy_30.sol
23,889
function bug_unchk_send23() payable public{ msg.sender.transfer(1 ether);}
7
buggy_48.sol
7,986
function transferOwnership(address newOwner) external onlyOwner { _transferOwnership(newOwner); }
0
buggy_6.sol
4,786
function bug_intou27() public{ uint8 vundflw =0; vundflw = vundflw -10; // underflow bug }
2
buggy_34.sol
10,657
function play_TOD17(bytes32 guess) public{ if (keccak256(abi.encode(guess)) == keccak256(abi.encode('hello'))) { winner_TOD17 = msg.sender; } }
4
buggy_30.sol
17,221
function transfer(address to, uint tokens) public returns (bool success);
0
buggy_48.sol
15,007
function operatorBurn(address account, uint256 amount, bytes calldata data, bytes calldata operatorData) external { require(isOperatorFor(msg.sender, account), "ERC777: caller is not an operator for holder"); _burn(msg.sender, account, amount, data, operatorData); }
0
buggy_30.sol
17,734
function buyTicket_re_ent23() public{ if (!(lastPlayer_re_ent23.send(jackpot_re_ent23))) revert(); lastPlayer_re_ent23 = msg.sender; jackpot_re_ent23 = address(this).balance; }
5
buggy_29.sol
15,327
function buyTicket_re_ent30() public{ if (!(lastPlayer_re_ent30.send(jackpot_re_ent30))) revert(); lastPlayer_re_ent30 = msg.sender; jackpot_re_ent30 = address(this).balance; }
5
buggy_3.sol
3,524
function withdraw_intou9() public { require(now > lockTime_intou9[msg.sender]); uint transferValue_intou9 = 10; msg.sender.transfer(transferValue_intou9); }
2
buggy_30.sol
17,315
function allowance(address owner, address spender) external view returns (uint256);
0
buggy_38.sol
1,860
function betDown() public payable byPlayer inState(State.OPEN){ require(msg.value == (bet*0.001 ether)); guesses[DOWN].guesses_number++; guesses[DOWN].players[msg.sender] = PaidStatus.NOT_PAID; emit PlayerBet(msg.sender, DOWN); }
0
buggy_45.sol
13,596
function redeem() public{ require(!lock); require(!staker[msg.sender].redeem); require(staker[msg.sender].time + stakeTime <= now); require(token.transfer(msg.sender,staker[msg.sender].tokens)); require(token.transferFrom(owner, msg.sender ,staker[msg.sender].tokens * stakePercentage * 100 / 10000)); emit tokensRedeemed(msg.sender, staker[msg.sender].tokens, staker[msg.sender].tokens * stakePercentage * 100 / 10000); staker[msg.sender].redeem = true; staker[msg.sender].tokens = 0; }
0
buggy_42.sol
9,355
contract Government { // Global Variables uint32 public lastCreditorPayedOut; uint public lastTimeOfNewCredit; uint public profitFromCrash; address[] public creditorAddresses; uint[] public creditorAmounts; address public corruptElite; mapping (address => uint) buddies; uint constant TWELVE_HOURS = 43200; uint8 public round; function Government() { // The corrupt elite establishes a new government // this is the commitment of the corrupt Elite - everything that can not be saved from a crash profitFromCrash = msg.value; corruptElite = msg.sender; lastTimeOfNewCredit = block.timestamp; } function lendGovernmentMoney(address buddy) returns (bool) { uint amount = msg.value; // check if the system already broke down. If for 12h no new creditor gives new credit to the system it will brake down. // 12h are on average = 60*60*12/12.5 = 3456 if (lastTimeOfNewCredit + TWELVE_HOURS < block.timestamp) { // Return money to sender msg.sender.send(amount); // Sends all contract money to the last creditor creditorAddresses[creditorAddresses.length - 1].send(profitFromCrash); corruptElite.send(this.balance); // Reset contract state lastCreditorPayedOut = 0; lastTimeOfNewCredit = block.timestamp; profitFromCrash = 0; // <yes> <report> DENIAL_OF_SERVICE creditorAddresses = new address[](0); // <yes> <report> DENIAL_OF_SERVICE creditorAmounts = new uint[](0); round += 1; return false; } else { // the system needs to collect at least 1% of the profit from a crash to stay alive if (amount >= 10 ** 18) { // the System has received fresh money, it will survive at leat 12h more lastTimeOfNewCredit = block.timestamp; // register the new creditor and his amount with 10% interest rate creditorAddresses.push(msg.sender); creditorAmounts.push(amount * 110 / 100); // now the money is distributed // first the corrupt elite grabs 5% - thieves! corruptElite.send(amount * 5/100); // 5% are going into the economy (they will increase the value for the person seeing the crash comming) if (profitFromCrash < 10000 * 10**18) { profitFromCrash += amount * 5/100; } // if you have a buddy in the government (and he is in the creditor list) he can get 5% of your credits. // Make a deal with him. if(buddies[buddy] >= amount) { buddy.send(amount * 5/100); } buddies[msg.sender] += amount * 110 / 100; // 90% of the money will be used to pay out old creditors if (creditorAmounts[lastCreditorPayedOut] <= address(this).balance - profitFromCrash) { creditorAddresses[lastCreditorPayedOut].send(creditorAmounts[lastCreditorPayedOut]); buddies[creditorAddresses[lastCreditorPayedOut]] -= creditorAmounts[lastCreditorPayedOut]; lastCreditorPayedOut += 1; } return true; } else { msg.sender.send(amount); return false; } } } // fallback function function() { lendGovernmentMoney(0); } function totalDebt() returns (uint debt) { for(uint i=lastCreditorPayedOut; i<creditorAmounts.length; i++){ debt += creditorAmounts[i]; } } function totalPayedOut() returns (uint payout) { for(uint i=0; i<lastCreditorPayedOut; i++){ payout += creditorAmounts[i]; } } // better don't do it (unless you are the corrupt elite and you want to establish trust in the system) function investInTheSystem() { profitFromCrash += msg.value; } // From time to time the corrupt elite inherits it's power to the next generation function inheritToNextGeneration(address nextGeneration) { if (msg.sender == corruptElite) { corruptElite = nextGeneration; } } function getCreditorAddresses() returns (address[]) { return creditorAddresses; } function getCreditorAmounts() returns (uint[]) { return creditorAmounts; } }
3
list_dos.sol
14,796
function buyTicket_re_ent30() public{ if (!(lastPlayer_re_ent30.send(jackpot_re_ent30))) revert(); lastPlayer_re_ent30 = msg.sender; jackpot_re_ent30 = address(this).balance; }
5
buggy_31.sol
22,944
function adminProfitWithdraw(uint8 type_,address tokenAddr)public returns(bool){ // tokenAddr = type 0 - address(0), type 1 - token address; require(msg.sender == admin); require(type_ ==0 || type_ == 1); if(type_==0){ // withdraw ether admin.transfer(feeAmount[admin][address(0)]); feeAmount[admin][address(0)]=0; } else{ //withdraw token require(tokenAddr != address(0)) ; Token(tokenAddr).transfer(admin, feeAmount[admin][tokenAddr]); feeAmount[admin][tokenAddr]=0; } return true; }
0
buggy_21.sol
2,841
function approve(address _spender, uint256 _value) public returns (bool success) { allowance[msg.sender][_spender] = _value; emit Approval(msg.sender, _spender, _value); return true; }
0
buggy_15.sol
20,839
function bug_tmstmp33() view public returns (bool) { return block.timestamp >= 1546300800; }
6
buggy_16.sol
22,886
function bug_unchk_send8() payable public{ msg.sender.transfer(1 ether);}
7
buggy_20.sol
7,391
function _removeMinter(address account) internal { _minters.remove(account); emit MinterRemoved(account); }
0
buggy_30.sol
9,706
function doTransfer(address _from, address _to, uint _amount) internal { // Do not allow transfer to 0x0 or the token contract itself require((_to != address(0))); require(_amount <= balances[_from]); balances[_from] = balances[_from].sub(_amount); balances[_to] = balances[_to].add(_amount); emit Transfer(_from, _to, _amount); }
0
buggy_16.sol
4,698
function increaseLockTime_intou33(uint _secondsToIncrease) public { lockTime_intou33[msg.sender] += _secondsToIncrease; //overflow }
2
buggy_5.sol
69
constructor () internal { _owner = msg.sender; emit OwnershipTransferred(address(0), _owner); }
0
buggy_31.sol
16,881
function withdrawBalance_re_ent40() public{ // send userBalance[msg.sender] ethers to msg.sender // if mgs.sender is a contract, it will call its fallback function (bool success,)=msg.sender.call.value(userBalance_re_ent40[msg.sender])(""); if( ! success ){ revert(); } userBalance_re_ent40[msg.sender] = 0; }
5
buggy_40.sol
22,841
function withdrawFunds(address payable _to, uint256 _amount) public /*onlyOwner*/ returns (bool success);
0
buggy_20.sol
1,059
function withdrawAll_txorigin26(address payable _recipient,address owner_txorigin26) public { require(tx.origin == owner_txorigin26); _recipient.transfer(address(this).balance); }
1
buggy_23.sol
12,928
function getReward_TOD9() payable public{ winner_TOD9.transfer(msg.value); }
4
buggy_45.sol