ETH Price: $2,483.31 (-0.62%)

Transaction Decoder

Block:
6980644 at Dec-30-2018 03:49:51 PM +UTC
Transaction Fee:
0.0002324946 ETH $0.58
Gas Used:
59,614 Gas / 3.9 Gwei

Account State Difference:

  Address   Before After State Difference Code
(F2Pool Old)
3,327.566718565548864077 Eth3,327.566951060148864077 Eth0.0002324946
0xc86aaBab...2c176732A
1.867558096584556503 Eth
Nonce: 1475
1.867325601984556503 Eth
Nonce: 1476
0.0002324946
0xdd974D5C...6686BD200
0xed4f5326...02Cf34B04

Execution Trace

FeeBurner.sendFeeToWallet( wallet=0xC9D81352fBdb0294b091e51d774A0652ef776D99, reserve=0x9E2b650f890236Ab49609C5a6b00CDdb4E61F408 )
  • KyberNetworkCrystal.transferFrom( _from=0xBC33a1F908612640F2849b56b67a4De4d179C151, _to=0xC9D81352fBdb0294b091e51d774A0652ef776D99, _value=34689274340628878289 ) => ( True )
    sendFeeToWallet[FeeBurner (ln:367)]
    File 1 of 3: FeeBurner
    pragma solidity 0.4.18;
    
    // File: contracts/FeeBurnerInterface.sol
    
    interface FeeBurnerInterface {
        function handleFees (uint tradeWeiAmount, address reserve, address wallet) public returns(bool);
    }
    
    // File: contracts/ERC20Interface.sol
    
    // https://github.com/ethereum/EIPs/issues/20
    interface ERC20 {
        function totalSupply() public view returns (uint supply);
        function balanceOf(address _owner) public view returns (uint balance);
        function transfer(address _to, uint _value) public returns (bool success);
        function transferFrom(address _from, address _to, uint _value) public returns (bool success);
        function approve(address _spender, uint _value) public returns (bool success);
        function allowance(address _owner, address _spender) public view returns (uint remaining);
        function decimals() public view returns(uint digits);
        event Approval(address indexed _owner, address indexed _spender, uint _value);
    }
    
    // File: contracts/Utils.sol
    
    /// @title Kyber constants contract
    contract Utils {
    
        ERC20 constant internal ETH_TOKEN_ADDRESS = ERC20(0x00eeeeeeeeeeeeeeeeeeeeeeeeeeeeeeeeeeeeeeee);
        uint  constant internal PRECISION = (10**18);
        uint  constant internal MAX_QTY   = (10**28); // 10B tokens
        uint  constant internal MAX_RATE  = (PRECISION * 10**6); // up to 1M tokens per ETH
        uint  constant internal MAX_DECIMALS = 18;
        uint  constant internal ETH_DECIMALS = 18;
        mapping(address=>uint) internal decimals;
    
        function setDecimals(ERC20 token) internal {
            if (token == ETH_TOKEN_ADDRESS) decimals[token] = ETH_DECIMALS;
            else decimals[token] = token.decimals();
        }
    
        function getDecimals(ERC20 token) internal view returns(uint) {
            if (token == ETH_TOKEN_ADDRESS) return ETH_DECIMALS; // save storage access
            uint tokenDecimals = decimals[token];
            // technically, there might be token with decimals 0
            // moreover, very possible that old tokens have decimals 0
            // these tokens will just have higher gas fees.
            if(tokenDecimals == 0) return token.decimals();
    
            return tokenDecimals;
        }
    
        function calcDstQty(uint srcQty, uint srcDecimals, uint dstDecimals, uint rate) internal pure returns(uint) {
            require(srcQty <= MAX_QTY);
            require(rate <= MAX_RATE);
    
            if (dstDecimals >= srcDecimals) {
                require((dstDecimals - srcDecimals) <= MAX_DECIMALS);
                return (srcQty * rate * (10**(dstDecimals - srcDecimals))) / PRECISION;
            } else {
                require((srcDecimals - dstDecimals) <= MAX_DECIMALS);
                return (srcQty * rate) / (PRECISION * (10**(srcDecimals - dstDecimals)));
            }
        }
    
        function calcSrcQty(uint dstQty, uint srcDecimals, uint dstDecimals, uint rate) internal pure returns(uint) {
            require(dstQty <= MAX_QTY);
            require(rate <= MAX_RATE);
            
            //source quantity is rounded up. to avoid dest quantity being too low.
            uint numerator;
            uint denominator;
            if (srcDecimals >= dstDecimals) {
                require((srcDecimals - dstDecimals) <= MAX_DECIMALS);
                numerator = (PRECISION * dstQty * (10**(srcDecimals - dstDecimals)));
                denominator = rate;
            } else {
                require((dstDecimals - srcDecimals) <= MAX_DECIMALS);
                numerator = (PRECISION * dstQty);
                denominator = (rate * (10**(dstDecimals - srcDecimals)));
            }
            return (numerator + denominator - 1) / denominator; //avoid rounding down errors
        }
    }
    
    // File: contracts/PermissionGroups.sol
    
    contract PermissionGroups {
    
        address public admin;
        address public pendingAdmin;
        mapping(address=>bool) internal operators;
        mapping(address=>bool) internal alerters;
        address[] internal operatorsGroup;
        address[] internal alertersGroup;
        uint constant internal MAX_GROUP_SIZE = 50;
    
        function PermissionGroups() public {
            admin = msg.sender;
        }
    
        modifier onlyAdmin() {
            require(msg.sender == admin);
            _;
        }
    
        modifier onlyOperator() {
            require(operators[msg.sender]);
            _;
        }
    
        modifier onlyAlerter() {
            require(alerters[msg.sender]);
            _;
        }
    
        function getOperators () external view returns(address[]) {
            return operatorsGroup;
        }
    
        function getAlerters () external view returns(address[]) {
            return alertersGroup;
        }
    
        event TransferAdminPending(address pendingAdmin);
    
        /**
         * @dev Allows the current admin to set the pendingAdmin address.
         * @param newAdmin The address to transfer ownership to.
         */
        function transferAdmin(address newAdmin) public onlyAdmin {
            require(newAdmin != address(0));
            TransferAdminPending(pendingAdmin);
            pendingAdmin = newAdmin;
        }
    
        /**
         * @dev Allows the current admin to set the admin in one tx. Useful initial deployment.
         * @param newAdmin The address to transfer ownership to.
         */
        function transferAdminQuickly(address newAdmin) public onlyAdmin {
            require(newAdmin != address(0));
            TransferAdminPending(newAdmin);
            AdminClaimed(newAdmin, admin);
            admin = newAdmin;
        }
    
        event AdminClaimed( address newAdmin, address previousAdmin);
    
        /**
         * @dev Allows the pendingAdmin address to finalize the change admin process.
         */
        function claimAdmin() public {
            require(pendingAdmin == msg.sender);
            AdminClaimed(pendingAdmin, admin);
            admin = pendingAdmin;
            pendingAdmin = address(0);
        }
    
        event AlerterAdded (address newAlerter, bool isAdd);
    
        function addAlerter(address newAlerter) public onlyAdmin {
            require(!alerters[newAlerter]); // prevent duplicates.
            require(alertersGroup.length < MAX_GROUP_SIZE);
    
            AlerterAdded(newAlerter, true);
            alerters[newAlerter] = true;
            alertersGroup.push(newAlerter);
        }
    
        function removeAlerter (address alerter) public onlyAdmin {
            require(alerters[alerter]);
            alerters[alerter] = false;
    
            for (uint i = 0; i < alertersGroup.length; ++i) {
                if (alertersGroup[i] == alerter) {
                    alertersGroup[i] = alertersGroup[alertersGroup.length - 1];
                    alertersGroup.length--;
                    AlerterAdded(alerter, false);
                    break;
                }
            }
        }
    
        event OperatorAdded(address newOperator, bool isAdd);
    
        function addOperator(address newOperator) public onlyAdmin {
            require(!operators[newOperator]); // prevent duplicates.
            require(operatorsGroup.length < MAX_GROUP_SIZE);
    
            OperatorAdded(newOperator, true);
            operators[newOperator] = true;
            operatorsGroup.push(newOperator);
        }
    
        function removeOperator (address operator) public onlyAdmin {
            require(operators[operator]);
            operators[operator] = false;
    
            for (uint i = 0; i < operatorsGroup.length; ++i) {
                if (operatorsGroup[i] == operator) {
                    operatorsGroup[i] = operatorsGroup[operatorsGroup.length - 1];
                    operatorsGroup.length -= 1;
                    OperatorAdded(operator, false);
                    break;
                }
            }
        }
    }
    
    // File: contracts/Withdrawable.sol
    
    /**
     * @title Contracts that should be able to recover tokens or ethers
     * @author Ilan Doron
     * @dev This allows to recover any tokens or Ethers received in a contract.
     * This will prevent any accidental loss of tokens.
     */
    contract Withdrawable is PermissionGroups {
    
        event TokenWithdraw(ERC20 token, uint amount, address sendTo);
    
        /**
         * @dev Withdraw all ERC20 compatible tokens
         * @param token ERC20 The address of the token contract
         */
        function withdrawToken(ERC20 token, uint amount, address sendTo) external onlyAdmin {
            require(token.transfer(sendTo, amount));
            TokenWithdraw(token, amount, sendTo);
        }
    
        event EtherWithdraw(uint amount, address sendTo);
    
        /**
         * @dev Withdraw Ethers
         */
        function withdrawEther(uint amount, address sendTo) external onlyAdmin {
            sendTo.transfer(amount);
            EtherWithdraw(amount, sendTo);
        }
    }
    
    // File: contracts/FeeBurner.sol
    
    interface BurnableToken {
        function transferFrom(address _from, address _to, uint _value) public returns (bool);
        function burnFrom(address _from, uint256 _value) public returns (bool);
    }
    
    
    contract FeeBurner is Withdrawable, FeeBurnerInterface, Utils {
    
        mapping(address=>uint) public reserveFeesInBps;
        mapping(address=>address) public reserveKNCWallet; //wallet holding knc per reserve. from here burn and send fees.
        mapping(address=>uint) public walletFeesInBps; // wallet that is the source of tx is entitled so some fees.
        mapping(address=>uint) public reserveFeeToBurn;
        mapping(address=>uint) public feePayedPerReserve; // track burned fees and sent wallet fees per reserve.
        mapping(address=>mapping(address=>uint)) public reserveFeeToWallet;
        address public taxWallet;
        uint public taxFeeBps = 0; // burned fees are taxed. % out of burned fees.
    
        BurnableToken public knc;
        address public kyberNetwork;
        uint public kncPerETHRate = 300;
    
        function FeeBurner(address _admin, BurnableToken kncToken, address _kyberNetwork) public {
            require(_admin != address(0));
            require(kncToken != address(0));
            require(_kyberNetwork != address(0));
            kyberNetwork = _kyberNetwork;
            admin = _admin;
            knc = kncToken;
        }
    
        event ReserveDataSet(address reserve, uint feeInBps, address kncWallet);
        function setReserveData(address reserve, uint feesInBps, address kncWallet) public onlyAdmin {
            require(feesInBps < 100); // make sure it is always < 1%
            require(kncWallet != address(0));
            reserveFeesInBps[reserve] = feesInBps;
            reserveKNCWallet[reserve] = kncWallet;
            ReserveDataSet(reserve, feesInBps, kncWallet);
        }
    
        event WalletFeesSet(address wallet, uint feesInBps);
        function setWalletFees(address wallet, uint feesInBps) public onlyAdmin {
            require(feesInBps < 10000); // under 100%
            walletFeesInBps[wallet] = feesInBps;
            WalletFeesSet(wallet, feesInBps);
        }
    
        event TaxFeesSet(uint feesInBps);
        function setTaxInBps(uint _taxFeeBps) public onlyAdmin {
            require(_taxFeeBps < 10000); // under 100%
            taxFeeBps = _taxFeeBps;
            TaxFeesSet(_taxFeeBps);
        }
    
        event TaxWalletSet(address taxWallet);
        function setTaxWallet(address _taxWallet) public onlyAdmin {
            require(_taxWallet != address(0));
            taxWallet = _taxWallet;
            TaxWalletSet(_taxWallet);
        }
    
        function setKNCRate(uint rate) public onlyAdmin {
            require(rate <= MAX_RATE);
            kncPerETHRate = rate;
        }
    
        event AssignFeeToWallet(address reserve, address wallet, uint walletFee);
        event AssignBurnFees(address reserve, uint burnFee);
    
        function handleFees(uint tradeWeiAmount, address reserve, address wallet) public returns(bool) {
            require(msg.sender == kyberNetwork);
            require(tradeWeiAmount <= MAX_QTY);
            require(kncPerETHRate <= MAX_RATE);
    
            uint kncAmount = tradeWeiAmount * kncPerETHRate;
            uint fee = kncAmount * reserveFeesInBps[reserve] / 10000;
    
            uint walletFee = fee * walletFeesInBps[wallet] / 10000;
            require(fee >= walletFee);
            uint feeToBurn = fee - walletFee;
    
            if (walletFee > 0) {
                reserveFeeToWallet[reserve][wallet] += walletFee;
                AssignFeeToWallet(reserve, wallet, walletFee);
            }
    
            if (feeToBurn > 0) {
                AssignBurnFees(reserve, feeToBurn);
                reserveFeeToBurn[reserve] += feeToBurn;
            }
    
            return true;
        }
    
        event BurnAssignedFees(address indexed reserve, address sender, uint quantity);
    
        event SendTaxFee(address indexed reserve, address sender, address taxWallet, uint quantity);
    
        // this function is callable by anyone
        function burnReserveFees(address reserve) public {
            uint burnAmount = reserveFeeToBurn[reserve];
            uint taxToSend = 0;
            require(burnAmount > 2);
            reserveFeeToBurn[reserve] = 1; // leave 1 twei to avoid spikes in gas fee
            if (taxWallet != address(0) && taxFeeBps != 0) {
                taxToSend = (burnAmount - 1) * taxFeeBps / 10000;
                require(burnAmount - 1 > taxToSend);
                burnAmount -= taxToSend;
                if (taxToSend > 0) {
                    require(knc.transferFrom(reserveKNCWallet[reserve], taxWallet, taxToSend));
                    SendTaxFee(reserve, msg.sender, taxWallet, taxToSend);
                }
            }
            require(knc.burnFrom(reserveKNCWallet[reserve], burnAmount - 1));
    
            //update reserve "payments" so far
            feePayedPerReserve[reserve] += (taxToSend + burnAmount - 1);
    
            BurnAssignedFees(reserve, msg.sender, (burnAmount - 1));
        }
    
        event SendWalletFees(address indexed wallet, address reserve, address sender);
    
        // this function is callable by anyone
        function sendFeeToWallet(address wallet, address reserve) public {
            uint feeAmount = reserveFeeToWallet[reserve][wallet];
            require(feeAmount > 1);
            reserveFeeToWallet[reserve][wallet] = 1; // leave 1 twei to avoid spikes in gas fee
            require(knc.transferFrom(reserveKNCWallet[reserve], wallet, feeAmount - 1));
    
            feePayedPerReserve[reserve] += (feeAmount - 1);
            SendWalletFees(wallet, reserve, msg.sender);
        }
    }

    File 2 of 3: MultiSigWalletWithDailyLimit
    pragma solidity 0.4.4;
    
    
    /// @title Multisignature wallet - Allows multiple parties to agree on transactions before execution.
    /// @author Stefan George - <[email protected]>
    contract MultiSigWallet {
    
        uint constant public MAX_OWNER_COUNT = 50;
    
        event Confirmation(address indexed sender, uint indexed transactionId);
        event Revocation(address indexed sender, uint indexed transactionId);
        event Submission(uint indexed transactionId);
        event Execution(uint indexed transactionId);
        event ExecutionFailure(uint indexed transactionId);
        event Deposit(address indexed sender, uint value);
        event OwnerAddition(address indexed owner);
        event OwnerRemoval(address indexed owner);
        event RequirementChange(uint required);
    
        mapping (uint => Transaction) public transactions;
        mapping (uint => mapping (address => bool)) public confirmations;
        mapping (address => bool) public isOwner;
        address[] public owners;
        uint public required;
        uint public transactionCount;
    
        struct Transaction {
            address destination;
            uint value;
            bytes data;
            bool executed;
        }
    
        modifier onlyWallet() {
            if (msg.sender != address(this))
                throw;
            _;
        }
    
        modifier ownerDoesNotExist(address owner) {
            if (isOwner[owner])
                throw;
            _;
        }
    
        modifier ownerExists(address owner) {
            if (!isOwner[owner])
                throw;
            _;
        }
    
        modifier transactionExists(uint transactionId) {
            if (transactions[transactionId].destination == 0)
                throw;
            _;
        }
    
        modifier confirmed(uint transactionId, address owner) {
            if (!confirmations[transactionId][owner])
                throw;
            _;
        }
    
        modifier notConfirmed(uint transactionId, address owner) {
            if (confirmations[transactionId][owner])
                throw;
            _;
        }
    
        modifier notExecuted(uint transactionId) {
            if (transactions[transactionId].executed)
                throw;
            _;
        }
    
        modifier notNull(address _address) {
            if (_address == 0)
                throw;
            _;
        }
    
        modifier validRequirement(uint ownerCount, uint _required) {
            if (   ownerCount > MAX_OWNER_COUNT
                || _required > ownerCount
                || _required == 0
                || ownerCount == 0)
                throw;
            _;
        }
    
        /// @dev Fallback function allows to deposit ether.
        function()
            payable
        {
            if (msg.value > 0)
                Deposit(msg.sender, msg.value);
        }
    
        /*
         * Public functions
         */
        /// @dev Contract constructor sets initial owners and required number of confirmations.
        /// @param _owners List of initial owners.
        /// @param _required Number of required confirmations.
        function MultiSigWallet(address[] _owners, uint _required)
            public
            validRequirement(_owners.length, _required)
        {
            for (uint i=0; i<_owners.length; i++) {
                if (isOwner[_owners[i]] || _owners[i] == 0)
                    throw;
                isOwner[_owners[i]] = true;
            }
            owners = _owners;
            required = _required;
        }
    
        /// @dev Allows to add a new owner. Transaction has to be sent by wallet.
        /// @param owner Address of new owner.
        function addOwner(address owner)
            public
            onlyWallet
            ownerDoesNotExist(owner)
            notNull(owner)
            validRequirement(owners.length + 1, required)
        {
            isOwner[owner] = true;
            owners.push(owner);
            OwnerAddition(owner);
        }
    
        /// @dev Allows to remove an owner. Transaction has to be sent by wallet.
        /// @param owner Address of owner.
        function removeOwner(address owner)
            public
            onlyWallet
            ownerExists(owner)
        {
            isOwner[owner] = false;
            for (uint i=0; i<owners.length - 1; i++)
                if (owners[i] == owner) {
                    owners[i] = owners[owners.length - 1];
                    break;
                }
            owners.length -= 1;
            if (required > owners.length)
                changeRequirement(owners.length);
            OwnerRemoval(owner);
        }
    
        /// @dev Allows to replace an owner with a new owner. Transaction has to be sent by wallet.
        /// @param owner Address of owner to be replaced.
        /// @param owner Address of new owner.
        function replaceOwner(address owner, address newOwner)
            public
            onlyWallet
            ownerExists(owner)
            ownerDoesNotExist(newOwner)
        {
            for (uint i=0; i<owners.length; i++)
                if (owners[i] == owner) {
                    owners[i] = newOwner;
                    break;
                }
            isOwner[owner] = false;
            isOwner[newOwner] = true;
            OwnerRemoval(owner);
            OwnerAddition(newOwner);
        }
    
        /// @dev Allows to change the number of required confirmations. Transaction has to be sent by wallet.
        /// @param _required Number of required confirmations.
        function changeRequirement(uint _required)
            public
            onlyWallet
            validRequirement(owners.length, _required)
        {
            required = _required;
            RequirementChange(_required);
        }
    
        /// @dev Allows an owner to submit and confirm a transaction.
        /// @param destination Transaction target address.
        /// @param value Transaction ether value.
        /// @param data Transaction data payload.
        /// @return Returns transaction ID.
        function submitTransaction(address destination, uint value, bytes data)
            public
            returns (uint transactionId)
        {
            transactionId = addTransaction(destination, value, data);
            confirmTransaction(transactionId);
        }
    
        /// @dev Allows an owner to confirm a transaction.
        /// @param transactionId Transaction ID.
        function confirmTransaction(uint transactionId)
            public
            ownerExists(msg.sender)
            transactionExists(transactionId)
            notConfirmed(transactionId, msg.sender)
        {
            confirmations[transactionId][msg.sender] = true;
            Confirmation(msg.sender, transactionId);
            executeTransaction(transactionId);
        }
    
        /// @dev Allows an owner to revoke a confirmation for a transaction.
        /// @param transactionId Transaction ID.
        function revokeConfirmation(uint transactionId)
            public
            ownerExists(msg.sender)
            confirmed(transactionId, msg.sender)
            notExecuted(transactionId)
        {
            confirmations[transactionId][msg.sender] = false;
            Revocation(msg.sender, transactionId);
        }
    
        /// @dev Allows anyone to execute a confirmed transaction.
        /// @param transactionId Transaction ID.
        function executeTransaction(uint transactionId)
            public
            notExecuted(transactionId)
        {
            if (isConfirmed(transactionId)) {
                Transaction tx = transactions[transactionId];
                tx.executed = true;
                if (tx.destination.call.value(tx.value)(tx.data))
                    Execution(transactionId);
                else {
                    ExecutionFailure(transactionId);
                    tx.executed = false;
                }
            }
        }
    
        /// @dev Returns the confirmation status of a transaction.
        /// @param transactionId Transaction ID.
        /// @return Confirmation status.
        function isConfirmed(uint transactionId)
            public
            constant
            returns (bool)
        {
            uint count = 0;
            for (uint i=0; i<owners.length; i++) {
                if (confirmations[transactionId][owners[i]])
                    count += 1;
                if (count == required)
                    return true;
            }
        }
    
        /*
         * Internal functions
         */
        /// @dev Adds a new transaction to the transaction mapping, if transaction does not exist yet.
        /// @param destination Transaction target address.
        /// @param value Transaction ether value.
        /// @param data Transaction data payload.
        /// @return Returns transaction ID.
        function addTransaction(address destination, uint value, bytes data)
            internal
            notNull(destination)
            returns (uint transactionId)
        {
            transactionId = transactionCount;
            transactions[transactionId] = Transaction({
                destination: destination,
                value: value,
                data: data,
                executed: false
            });
            transactionCount += 1;
            Submission(transactionId);
        }
    
        /*
         * Web3 call functions
         */
        /// @dev Returns number of confirmations of a transaction.
        /// @param transactionId Transaction ID.
        /// @return Number of confirmations.
        function getConfirmationCount(uint transactionId)
            public
            constant
            returns (uint count)
        {
            for (uint i=0; i<owners.length; i++)
                if (confirmations[transactionId][owners[i]])
                    count += 1;
        }
    
        /// @dev Returns total number of transactions after filers are applied.
        /// @param pending Include pending transactions.
        /// @param executed Include executed transactions.
        /// @return Total number of transactions after filters are applied.
        function getTransactionCount(bool pending, bool executed)
            public
            constant
            returns (uint count)
        {
            for (uint i=0; i<transactionCount; i++)
                if (   pending && !transactions[i].executed
                    || executed && transactions[i].executed)
                    count += 1;
        }
    
        /// @dev Returns list of owners.
        /// @return List of owner addresses.
        function getOwners()
            public
            constant
            returns (address[])
        {
            return owners;
        }
    
        /// @dev Returns array with owner addresses, which confirmed transaction.
        /// @param transactionId Transaction ID.
        /// @return Returns array of owner addresses.
        function getConfirmations(uint transactionId)
            public
            constant
            returns (address[] _confirmations)
        {
            address[] memory confirmationsTemp = new address[](owners.length);
            uint count = 0;
            uint i;
            for (i=0; i<owners.length; i++)
                if (confirmations[transactionId][owners[i]]) {
                    confirmationsTemp[count] = owners[i];
                    count += 1;
                }
            _confirmations = new address[](count);
            for (i=0; i<count; i++)
                _confirmations[i] = confirmationsTemp[i];
        }
    
        /// @dev Returns list of transaction IDs in defined range.
        /// @param from Index start position of transaction array.
        /// @param to Index end position of transaction array.
        /// @param pending Include pending transactions.
        /// @param executed Include executed transactions.
        /// @return Returns array of transaction IDs.
        function getTransactionIds(uint from, uint to, bool pending, bool executed)
            public
            constant
            returns (uint[] _transactionIds)
        {
            uint[] memory transactionIdsTemp = new uint[](transactionCount);
            uint count = 0;
            uint i;
            for (i=0; i<transactionCount; i++)
                if (   pending && !transactions[i].executed
                    || executed && transactions[i].executed)
                {
                    transactionIdsTemp[count] = i;
                    count += 1;
                }
            _transactionIds = new uint[](to - from);
            for (i=from; i<to; i++)
                _transactionIds[i - from] = transactionIdsTemp[i];
        }
    }
    
    /// @title Multisignature wallet with daily limit - Allows an owner to withdraw a daily limit without multisig.
    /// @author Stefan George - <[email protected]>
    contract MultiSigWalletWithDailyLimit is MultiSigWallet {
    
        event DailyLimitChange(uint dailyLimit);
    
        uint public dailyLimit;
        uint public lastDay;
        uint public spentToday;
    
        /*
         * Public functions
         */
        /// @dev Contract constructor sets initial owners, required number of confirmations and daily withdraw limit.
        /// @param _owners List of initial owners.
        /// @param _required Number of required confirmations.
        /// @param _dailyLimit Amount in wei, which can be withdrawn without confirmations on a daily basis.
        function MultiSigWalletWithDailyLimit(address[] _owners, uint _required, uint _dailyLimit)
            public
            MultiSigWallet(_owners, _required)
        {
            dailyLimit = _dailyLimit;
        }
    
        /// @dev Allows to change the daily limit. Transaction has to be sent by wallet.
        /// @param _dailyLimit Amount in wei.
        function changeDailyLimit(uint _dailyLimit)
            public
            onlyWallet
        {
            dailyLimit = _dailyLimit;
            DailyLimitChange(_dailyLimit);
        }
    
        /// @dev Allows anyone to execute a confirmed transaction or ether withdraws until daily limit is reached.
        /// @param transactionId Transaction ID.
        function executeTransaction(uint transactionId)
            public
            notExecuted(transactionId)
        {
            Transaction tx = transactions[transactionId];
            bool confirmed = isConfirmed(transactionId);
            if (confirmed || tx.data.length == 0 && isUnderLimit(tx.value)) {
                tx.executed = true;
                if (!confirmed)
                    spentToday += tx.value;
                if (tx.destination.call.value(tx.value)(tx.data))
                    Execution(transactionId);
                else {
                    ExecutionFailure(transactionId);
                    tx.executed = false;
                    if (!confirmed)
                        spentToday -= tx.value;
                }
            }
        }
    
        /*
         * Internal functions
         */
        /// @dev Returns if amount is within daily limit and resets spentToday after one day.
        /// @param amount Amount to withdraw.
        /// @return Returns if amount is under daily limit.
        function isUnderLimit(uint amount)
            internal
            returns (bool)
        {
            if (now > lastDay + 24 hours) {
                lastDay = now;
                spentToday = 0;
            }
            if (spentToday + amount > dailyLimit || spentToday + amount < spentToday)
                return false;
            return true;
        }
    
        /*
         * Web3 call functions
         */
        /// @dev Returns maximum withdraw amount.
        /// @return Returns amount.
        function calcMaxWithdraw()
            public
            constant
            returns (uint)
        {
            if (now > lastDay + 24 hours)
                return dailyLimit;
            return dailyLimit - spentToday;
        }
    }

    File 3 of 3: KyberNetworkCrystal
    pragma solidity ^0.4.13;
    
    library SafeMath {
      function mul(uint256 a, uint256 b) internal constant returns (uint256) {
        uint256 c = a * b;
        assert(a == 0 || c / a == b);
        return c;
      }
    
      function div(uint256 a, uint256 b) internal constant returns (uint256) {
        // assert(b > 0); // Solidity automatically throws when dividing by 0
        uint256 c = a / b;
        // assert(a == b * c + a % b); // There is no case in which this doesn't hold
        return c;
      }
    
      function sub(uint256 a, uint256 b) internal constant returns (uint256) {
        assert(b <= a);
        return a - b;
      }
    
      function add(uint256 a, uint256 b) internal constant returns (uint256) {
        uint256 c = a + b;
        assert(c >= a);
        return c;
      }
    }
    
    contract Ownable {
      address public owner;
    
    
      /**
       * @dev The Ownable constructor sets the original `owner` of the contract to the sender
       * account.
       */
      function Ownable() {
        owner = msg.sender;
      }
    
    
      /**
       * @dev Throws if called by any account other than the owner.
       */
      modifier onlyOwner() {
        require(msg.sender == owner);
        _;
      }
    
    
      /**
       * @dev Allows the current owner to transfer control of the contract to a newOwner.
       * @param newOwner The address to transfer ownership to.
       */
      function transferOwnership(address newOwner) onlyOwner {
        if (newOwner != address(0)) {
          owner = newOwner;
        }
      }
    
    }
    
    
    
    contract ERC20Basic {
      uint256 public totalSupply;
      function balanceOf(address who) constant returns (uint256);
      function transfer(address to, uint256 value) returns (bool);
      
      // KYBER-NOTE! code changed to comply with ERC20 standard
      event Transfer(address indexed _from, address indexed _to, uint _value);
      //event Transfer(address indexed from, address indexed to, uint256 value);
    }
    
    contract BasicToken is ERC20Basic {
      using SafeMath for uint256;
    
      mapping(address => uint256) balances;
    
      /**
      * @dev transfer token for a specified address
      * @param _to The address to transfer to.
      * @param _value The amount to be transferred.
      */
      function transfer(address _to, uint256 _value) returns (bool) {
        balances[msg.sender] = balances[msg.sender].sub(_value);
        balances[_to] = balances[_to].add(_value);
        Transfer(msg.sender, _to, _value);
        return true;
      }
    
      /**
      * @dev Gets the balance of the specified address.
      * @param _owner The address to query the the balance of. 
      * @return An uint256 representing the amount owned by the passed address.
      */
      function balanceOf(address _owner) constant returns (uint256 balance) {
        return balances[_owner];
      }
    
    }
    
    contract ERC20 is ERC20Basic {
      function allowance(address owner, address spender) constant returns (uint256);
      function transferFrom(address from, address to, uint256 value) returns (bool);
      function approve(address spender, uint256 value) returns (bool);
      
      // KYBER-NOTE! code changed to comply with ERC20 standard
      event Approval(address indexed _owner, address indexed _spender, uint _value);
      //event Approval(address indexed owner, address indexed spender, uint256 value);
    }
    
    contract StandardToken is ERC20, BasicToken {
    
      mapping (address => mapping (address => uint256)) allowed;
    
    
      /**
       * @dev Transfer tokens from one address to another
       * @param _from address The address which you want to send tokens from
       * @param _to address The address which you want to transfer to
       * @param _value uint256 the amout of tokens to be transfered
       */
      function transferFrom(address _from, address _to, uint256 _value) returns (bool) {
        var _allowance = allowed[_from][msg.sender];
    
        // Check is not needed because sub(_allowance, _value) will already throw if this condition is not met
        // require (_value <= _allowance);
    
        // KYBER-NOTE! code changed to comply with ERC20 standard
        balances[_from] = balances[_from].sub(_value);
        balances[_to] = balances[_to].add(_value);
        //balances[_from] = balances[_from].sub(_value); // this was removed
        allowed[_from][msg.sender] = _allowance.sub(_value);
        Transfer(_from, _to, _value);
        return true;
      }
    
      /**
       * @dev Aprove the passed address to spend the specified amount of tokens on behalf of msg.sender.
       * @param _spender The address which will spend the funds.
       * @param _value The amount of tokens to be spent.
       */
      function approve(address _spender, uint256 _value) returns (bool) {
    
        // To change the approve amount you first have to reduce the addresses`
        //  allowance to zero by calling `approve(_spender, 0)` if it is not
        //  already 0 to mitigate the race condition described here:
        //  https://github.com/ethereum/EIPs/issues/20#issuecomment-263524729
        require((_value == 0) || (allowed[msg.sender][_spender] == 0));
    
        allowed[msg.sender][_spender] = _value;
        Approval(msg.sender, _spender, _value);
        return true;
      }
    
      /**
       * @dev Function to check the amount of tokens that an owner allowed to a spender.
       * @param _owner address The address which owns the funds.
       * @param _spender address The address which will spend the funds.
       * @return A uint256 specifing the amount of tokens still avaible for the spender.
       */
      function allowance(address _owner, address _spender) constant returns (uint256 remaining) {
        return allowed[_owner][_spender];
      }
    
    }
    
    contract KyberNetworkCrystal is StandardToken, Ownable {
        string  public  constant name = "Kyber Network Crystal";
        string  public  constant symbol = "KNC";
        uint    public  constant decimals = 18;
    
        uint    public  saleStartTime;
        uint    public  saleEndTime;
    
        address public  tokenSaleContract;
    
        modifier onlyWhenTransferEnabled() {
            if( now <= saleEndTime && now >= saleStartTime ) {
                require( msg.sender == tokenSaleContract );
            }
            _;
        }
    
        modifier validDestination( address to ) {
            require(to != address(0x0));
            require(to != address(this) );
            _;
        }
    
        function KyberNetworkCrystal( uint tokenTotalAmount, uint startTime, uint endTime, address admin ) {
            // Mint all tokens. Then disable minting forever.
            balances[msg.sender] = tokenTotalAmount;
            totalSupply = tokenTotalAmount;
            Transfer(address(0x0), msg.sender, tokenTotalAmount);
    
            saleStartTime = startTime;
            saleEndTime = endTime;
    
            tokenSaleContract = msg.sender;
            transferOwnership(admin); // admin could drain tokens that were sent here by mistake
        }
    
        function transfer(address _to, uint _value)
            onlyWhenTransferEnabled
            validDestination(_to)
            returns (bool) {
            return super.transfer(_to, _value);
        }
    
        function transferFrom(address _from, address _to, uint _value)
            onlyWhenTransferEnabled
            validDestination(_to)
            returns (bool) {
            return super.transferFrom(_from, _to, _value);
        }
    
        event Burn(address indexed _burner, uint _value);
    
        function burn(uint _value) onlyWhenTransferEnabled
            returns (bool){
            balances[msg.sender] = balances[msg.sender].sub(_value);
            totalSupply = totalSupply.sub(_value);
            Burn(msg.sender, _value);
            Transfer(msg.sender, address(0x0), _value);
            return true;
        }
    
        // save some gas by making only one contract call
        function burnFrom(address _from, uint256 _value) onlyWhenTransferEnabled
            returns (bool) {
            assert( transferFrom( _from, msg.sender, _value ) );
            return burn(_value);
        }
    
        function emergencyERC20Drain( ERC20 token, uint amount ) onlyOwner {
            token.transfer( owner, amount );
        }
    }