xDAI Price: $1.00 (+0.01%)
Gas: 1 GWei

Contract

0xb7D311E2Eb55F2f68a9440da38e7989210b9A05e
Amount:Between 1-10k
Reset Filter
Transaction Hash
Method
Block
From
To
Transfer193534092021-12-01 12:35:201239 days ago1638362120IN
xDai: STAKE Token
499.31959814 xDAI0.000036891.7568
Transfer179235452021-09-04 14:41:401326 days ago1630766500IN
xDai: STAKE Token
2 xDAI0.0000422
Transfer179234942021-09-04 14:37:201326 days ago1630766240IN
xDai: STAKE Token
1 xDAI0.0000422
Transfer169235272021-07-05 14:31:101387 days ago1625495470IN
xDai: STAKE Token
1 xDAI0.0008440
Transfer169235212021-07-05 14:30:401387 days ago1625495440IN
xDai: STAKE Token
1 xDAI0.0008440
Transfer169235042021-07-05 14:29:101387 days ago1625495350IN
xDai: STAKE Token
1 xDAI0.0008440
Transfer169234862021-07-05 14:27:301387 days ago1625495250IN
xDai: STAKE Token
1 xDAI0.0008440
Transfer169234732021-07-05 14:26:201387 days ago1625495180IN
xDai: STAKE Token
1 xDAI0.0008440
Transfer169234642021-07-05 14:25:351387 days ago1625495135IN
xDai: STAKE Token
1 xDAI0.0008440
Transfer153529292021-04-03 21:04:551480 days ago1617483895IN
xDai: STAKE Token
10 xDAI0.0004220
Transfer153528972021-04-03 21:02:151480 days ago1617483735IN
xDai: STAKE Token
10 xDAI0.0004220
Transfer153528902021-04-03 21:01:401480 days ago1617483700IN
xDai: STAKE Token
10 xDAI0.0004220
0x746f6f6e138376122021-01-02 17:30:451571 days ago1609608645IN
xDai: STAKE Token
2 xDAI0.00559546235.222
Transfer137669332020-12-29 15:00:251575 days ago1609254025IN
xDai: STAKE Token
71.07850592 xDAI0.0018990
Transfer137669242020-12-29 14:59:401575 days ago1609253980IN
xDai: STAKE Token
71.08039592 xDAI0.0018990
Transfer137669022020-12-29 14:57:501575 days ago1609253870IN
xDai: STAKE Token
71.08228592 xDAI0.0018990
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Latest 1 internal transaction

Parent Transaction Hash Block From To
115822562020-08-20 19:01:551706 days ago1597950115  Contract Creation0 xDAI
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Similar Match Source Code
This contract matches the deployed Bytecode of the Source Code for Contract 0x4ECaBa58...32ed605C6
The constructor portion of the code might be different and could alter the actual behaviour of the contract

Contract Name:
TokenProxy

Compiler Version
v0.4.24+commit.e67f0147

Optimization Enabled:
Yes with 200 runs

Other Settings:
default evmVersion, GNU GPLv3 license
/**
 *Submitted for verification at gnosisscan.io on 2022-12-27
*/

pragma solidity 0.4.24;

/**
 * @title Proxy
 * @dev Gives the possibility to delegate any call to a foreign implementation.
 */
contract Proxy {
    /**
    * @dev Tells the address of the implementation where every call will be delegated.
    * @return address of the implementation to which it will be delegated
    */
    /* solcov ignore next */
    function implementation() public view returns (address);

    /**
    * @dev Fallback function allowing to perform a delegatecall to the given implementation.
    * This function will return whatever the implementation call returns
    */
    function() public payable {
        // solhint-disable-previous-line no-complex-fallback
        address _impl = implementation();
        require(_impl != address(0));
        assembly {
            /*
                0x40 is the "free memory slot", meaning a pointer to next slot of empty memory. mload(0x40)
                loads the data in the free memory slot, so `ptr` is a pointer to the next slot of empty
                memory. It's needed because we're going to write the return data of delegatecall to the
                free memory slot.
            */
            let ptr := mload(0x40)
            /*
                `calldatacopy` is copy calldatasize bytes from calldata
                First argument is the destination to which data is copied(ptr)
                Second argument specifies the start position of the copied data.
                    Since calldata is sort of its own unique location in memory,
                    0 doesn't refer to 0 in memory or 0 in storage - it just refers to the zeroth byte of calldata.
                    That's always going to be the zeroth byte of the function selector.
                Third argument, calldatasize, specifies how much data will be copied.
                    calldata is naturally calldatasize bytes long (same thing as msg.data.length)
            */
            calldatacopy(ptr, 0, calldatasize)
            /*
                delegatecall params explained:
                gas: the amount of gas to provide for the call. `gas` is an Opcode that gives
                    us the amount of gas still available to execution

                _impl: address of the contract to delegate to

                ptr: to pass copied data

                calldatasize: loads the size of `bytes memory data`, same as msg.data.length

                0, 0: These are for the `out` and `outsize` params. Because the output could be dynamic,
                        these are set to 0, 0 so the output data will not be written to memory. The output
                        data will be read using `returndatasize` and `returdatacopy` instead.

                result: This will be 0 if the call fails and 1 if it succeeds
            */
            let result := delegatecall(gas, _impl, ptr, calldatasize, 0, 0)
            /*

            */
            /*
                ptr current points to the value stored at 0x40,
                because we assigned it like ptr := mload(0x40).
                Because we use 0x40 as a free memory pointer,
                we want to make sure that the next time we want to allocate memory,
                we aren't overwriting anything important.
                So, by adding ptr and returndatasize,
                we get a memory location beyond the end of the data we will be copying to ptr.
                We place this in at 0x40, and any reads from 0x40 will now read from free memory
            */
            mstore(0x40, add(ptr, returndatasize))
            /*
                `returndatacopy` is an Opcode that copies the last return data to a slot. `ptr` is the
                    slot it will copy to, 0 means copy from the beginning of the return data, and size is
                    the amount of data to copy.
                `returndatasize` is an Opcode that gives us the size of the last return data. In this case, that is the size of the data returned from delegatecall
            */
            returndatacopy(ptr, 0, returndatasize)

            /*
                if `result` is 0, revert.
                if `result` is 1, return `size` amount of data from `ptr`. This is the data that was
                copied to `ptr` from the delegatecall return data
            */
            switch result
                case 0 {
                    revert(ptr, returndatasize)
                }
                default {
                    return(ptr, returndatasize)
                }
        }
    }
}

interface IPermittableTokenVersion {
    function version() external pure returns (string);
}

/**
* @title TokenProxy
* @dev Helps to reduces the size of the deployed bytecode for automatically created tokens, by using a proxy contract.
*/
contract TokenProxy is Proxy {
    // storage layout is copied from PermittableToken.sol
    string internal name;
    string internal symbol;
    uint8 internal decimals;
    mapping(address => uint256) internal balances;
    uint256 internal totalSupply;
    mapping(address => mapping(address => uint256)) internal allowed;
    address internal owner;
    bool internal mintingFinished;
    address internal bridgeContractAddr;
    // string public constant version = "1";
    bytes32 internal DOMAIN_SEPARATOR;
    // bytes32 public constant PERMIT_TYPEHASH = 0xea2aa0a1be11a07ed86d755c93467f4f82362b452371d1ba94d1715123511acb;
    mapping(address => uint256) internal nonces;
    mapping(address => mapping(address => uint256)) internal expirations;

    /**
    * @dev Creates a non-upgradeable token proxy for PermitableToken.sol, initializes its eternalStorage.
    * @param _tokenImage address of the token image used for mirrowing all functions.
    * @param _name token name.
    * @param _symbol token symbol.
    * @param _decimals token decimals.
    * @param _chainId chain id for current network.
    */
    constructor(address _tokenImage, string memory _name, string memory _symbol, uint8 _decimals, uint256 _chainId)
        public
    {
        string memory version = IPermittableTokenVersion(_tokenImage).version();

        assembly {
            // EIP 1967
            // bytes32(uint256(keccak256('eip1967.proxy.implementation')) - 1)
            sstore(0x360894a13ba1a3210667c828492db98dca3e2076cc3735a920a3ca505d382bbc, _tokenImage)
        }
        name = _name;
        symbol = _symbol;
        decimals = _decimals;
        owner = msg.sender; // msg.sender == HomeMultiAMBErc20ToErc677 mediator
        bridgeContractAddr = msg.sender;
        DOMAIN_SEPARATOR = keccak256(
            abi.encode(
                keccak256("EIP712Domain(string name,string version,uint256 chainId,address verifyingContract)"),
                keccak256(bytes(_name)),
                keccak256(bytes(version)),
                _chainId,
                address(this)
            )
        );
    }

    /**
    * @dev Retrieves the implementation contract address, mirrowed token image.
    * @return token image address.
    */
    function implementation() public view returns (address impl) {
        assembly {
            impl := sload(0x360894a13ba1a3210667c828492db98dca3e2076cc3735a920a3ca505d382bbc)
        }
    }
}

Contract Security Audit

Contract ABI

API
[{"constant":true,"inputs":[],"name":"implementation","outputs":[{"name":"impl","type":"address"}],"payable":false,"stateMutability":"view","type":"function"},{"inputs":[{"name":"_tokenImage","type":"address"},{"name":"_name","type":"string"},{"name":"_symbol","type":"string"},{"name":"_decimals","type":"uint8"},{"name":"_chainId","type":"uint256"}],"payable":false,"stateMutability":"nonpayable","type":"constructor"},{"payable":true,"stateMutability":"payable","type":"fallback"}]

Deployed Bytecode

0x608060405260043610603e5763ffffffff7c01000000000000000000000000000000000000000000000000000000006000350416635c60da1b81146092575b6000604660cd565b905073ffffffffffffffffffffffffffffffffffffffff81161515606957600080fd5b60405136600082376000803683855af43d82016040523d6000833e808015608e573d83f35b3d83fd5b348015609d57600080fd5b5060a460cd565b6040805173ffffffffffffffffffffffffffffffffffffffff9092168252519081900360200190f35b7f360894a13ba1a3210667c828492db98dca3e2076cc3735a920a3ca505d382bbc54905600a165627a7a723058205d442d0b224de4b205ca61128d615099ba3021d9d5d21bc18d96bc5e201685800029

Deployed Bytecode Sourcemap

4887:2504:0:-;;;;;;;;;;;;;;;;;;;;715:13;731:16;:14;:16::i;:::-;715:32;-1:-1:-1;766:19:0;;;;;758:28;;;;;;1224:4;1218:11;2005:12;2002:1;1997:3;1984:34;2936:1;2933;2919:12;2914:3;2907:5;2902:3;2889:49;3626:14;3621:3;3617:24;3611:4;3604:38;4136:14;4133:1;4128:3;4113:38;4418:6;4442:76;;;;4579:14;4574:3;4567:27;4442:76;4484:14;4479:3;4472:27;7193:195;;8:9:-1;5:2;;;30:1;27;20:12;5:2;7193:195:0;;;;;;;;;;;;;;;;;;;;;;;;7303:66;7297:73;;7274:107::o

Swarm Source

bzzr://5d442d0b224de4b205ca61128d615099ba3021d9d5d21bc18d96bc5e20168580

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OVERVIEW

STAKE is a new ERC20 token designed to secure the on-chain payment layer and provide a mechanism for validators to receive incentives.

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