ETH Price: $3,326.54 (-3.90%)

Token

Town Star ()
 

Overview

Max Total Supply

0

Holders

57,772

Market

Volume (24H)

1.7046 ETH

Min Price (24H)

$0.63 @ 0.000190 ETH

Max Price (24H)

$2,245.42 @ 0.675000 ETH
0x324FcB6e7ee9C8e3D71AA64F7c423c0b8896f265
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OVERVIEW

From one of the founders of Zynga and some of the creative minds behind FarmVille and Words With Friends comes Town Star. Blockchain is the next evolution of gaming and has the $148B industry buzzing with excitement. It’s gaming re-imagined to benefit creators and players, alike.

# Exchange Pair Price  24H Volume % Volume

Contract Source Code Verified (Exact Match)

Contract Name:
Gala

Compiler Version
v0.5.17+commit.d19bba13

Optimization Enabled:
Yes with 200 runs

Other Settings:
default evmVersion, None license

Contract Source Code (Solidity Multiple files format)

File 4 of 9: Gala.sol
import "./SafeMath.sol";
import "./Address.sol";
import "./Common.sol";
import "./IERC1155TokenReceiver.sol";
import "./IERC1155.sol";

pragma solidity ^0.5.0;


contract Gala is IERC1155, ERC165, CommonConstants {
    using SafeMath for uint256;
    using Address for address;

    uint256 constant TYPE_MASK = uint256(uint128(~0)) << 128;
    uint256 constant NF_INDEX_MASK = uint128(~0);
    uint256 constant TYPE_NF_BIT = 1 << 255;
    uint256 nonce;

    address public owner;

    mapping(uint256 => mapping(address => uint256)) internal balances; // id => (owner => balance)
    mapping(address => mapping(address => bool)) internal operatorApproval; // owner => (operator => approved)
    mapping(uint256 => address) nfOwners;
    mapping(uint256 => uint256) public maxIndex;
    mapping(address => mapping(address => mapping(uint256 => uint256))) allowances;
    mapping(uint256 => uint256) public tokenSupply;
    mapping(uint256 => uint256) public tokenSupplyLimit;
    mapping(address => bool) internal creators;

    event Approval(
        address indexed _owner,
        address indexed _spender,
        uint256 indexed _id,
        uint256 _oldValue,
        uint256 _value
    );
    event SupplyLimit(uint256 indexed _id, uint256 _supplyLimit);

    event TransferSingle(
        address indexed _operator,
        address indexed _from,
        address indexed _to,
        uint256 _id,
        uint256 _value
    );
    event ApprovalForAll(address indexed _owner, address indexed _operator, bool _approved);
    event URI(string _value, uint256 indexed _id);
    event TransferBatch(
        address indexed _operator,
        address indexed _from,
        address indexed _to,
        uint256[] _ids,
        uint256[] _values
    );

    event Creator(address _creator);

    constructor() public {
        owner = msg.sender;
        creators[msg.sender] = true;
    }

    modifier creatorOnly() {
        require(creators[msg.sender], "Creator permission required");
        _;
    }

    modifier ownerOnly() {
        require(msg.sender == owner);
        _;
    }

    function create(string calldata _uri, bool _isNF) external creatorOnly returns (uint256 _type) {
        _type = (++nonce << 128);

        if (_isNF) _type = _type | TYPE_NF_BIT;

        emit TransferSingle(msg.sender, address(0x0), address(0x0), _type, 0);

        if (bytes(_uri).length > 0) emit URI(_uri, _type);
        return _type;
    }

    function mintNonFungible(
        uint256 _type,
        address[] calldata _to,
        bytes calldata _data
    ) external creatorOnly {
        require(isNonFungible(_type));
        uint256 index = maxIndex[_type] + 1;
        maxIndex[_type] = _to.length.add(maxIndex[_type]);
        for (uint256 i = 0; i < _to.length; ++i) {
            address distributeTo = _to[i];
            uint256 id = _type | (index + i);
            require(
                tokenSupplyLimit[_type] == 0 ||
                    tokenSupply[_type].add(1) <= tokenSupplyLimit[_type],
                "Token supply limit exceeded"
            );
            nfOwners[id] = distributeTo;
            tokenSupply[_type] = tokenSupply[_type].add(1);
            balances[_type][distributeTo] = balances[_type][distributeTo].add(1);

            emit TransferSingle(msg.sender, address(0x0), distributeTo, id, 1);

            if (distributeTo.isContract()) {
                _doSafeTransferAcceptanceCheck(msg.sender, msg.sender, distributeTo, id, 1, _data);
            }
        }
    }

    function mintFungible(
        uint256 _id,
        address[] calldata _to,
        uint256[] calldata _quantities,
        bytes calldata _data
    ) external creatorOnly {
        require(isFungible(_id), "ID must be a non-fungible ID");
        for (uint256 i = 0; i < _to.length; ++i) {
            require(
                tokenSupplyLimit[_id] == 0 ||
                    tokenSupply[_id].add(_quantities[i]) <= tokenSupplyLimit[_id],
                "Token supply limit exceeded"
            );
            balances[_id][_to[i]] = _quantities[i].add(balances[_id][_to[i]]);
            tokenSupply[_id] = tokenSupply[_id].add(_quantities[i]);

            emit TransferSingle(msg.sender, address(0x0), _to[i], _id, _quantities[i]);

            if (_to[i].isContract()) {
                _doSafeTransferAcceptanceCheck(
                    msg.sender,
                    msg.sender,
                    _to[i],
                    _id,
                    _quantities[i],
                    _data
                );
            }
        }
    }

    function safeTransferFrom(
        address _from,
        address _to,
        uint256 _id,
        uint256 _value,
        bytes calldata _data
    ) external {
        require(_to != address(0x0), "cannot send to zero address");
        require(
            _from == msg.sender || operatorApproval[_from][msg.sender] == true,
            "Need operator approval for 3rd party transfers."
        );

        if (isNonFungible(_id)) {
            require(nfOwners[_id] == _from);
            nfOwners[_id] = _to;
            // You could keep balance of NF type in base type id like so:
            uint256 baseType = getNonFungibleBaseType(_id);
            balances[baseType][_from] = balances[baseType][_from].sub(_value);
            balances[baseType][_to] = balances[baseType][_to].add(_value);
        } else {
            balances[_id][_from] = balances[_id][_from].sub(_value);
            balances[_id][_to] = balances[_id][_to].add(_value);
        }

        emit TransferSingle(msg.sender, _from, _to, _id, _value);

        if (_to.isContract()) {
            _doSafeTransferAcceptanceCheck(msg.sender, _from, _to, _id, _value, _data);
        }
    }

    function safeBatchTransferFrom(
        address _from,
        address _to,
        uint256[] calldata _ids,
        uint256[] calldata _values,
        bytes calldata _data
    ) external {
        require(_to != address(0x0), "cannot send to zero address");
        require(_ids.length == _values.length, "Array length must match");
        require(
            _from == msg.sender || operatorApproval[_from][msg.sender] == true,
            "Need operator approval for 3rd party transfers."
        );

        for (uint256 i = 0; i < _ids.length; ++i) {
            if (isNonFungible(_ids[i])) {
                require(nfOwners[_ids[i]] == _from);
                nfOwners[_ids[i]] = _to;
                balances[getNonFungibleBaseType(_ids[i])][_from] = balances[getNonFungibleBaseType(
                    _ids[i]
                )][_from]
                    .sub(_values[i]);
                balances[getNonFungibleBaseType(_ids[i])][_to] = balances[getNonFungibleBaseType(
                    _ids[i]
                )][_to]
                    .add(_values[i]);
            } else {
                balances[_ids[i]][_from] = balances[_ids[i]][_from].sub(_values[i]);
                balances[_ids[i]][_to] = _values[i].add(balances[_ids[i]][_to]);
            }
        }

        emit TransferBatch(msg.sender, _from, _to, _ids, _values);

        if (_to.isContract()) {
            _doSafeBatchTransferAcceptanceCheck(msg.sender, _from, _to, _ids, _values, _data);
        }
    }

    function balanceOf(address _owner, uint256 _id) external view returns (uint256) {
        if (isNonFungibleItem(_id)) return nfOwners[_id] == _owner ? 1 : 0;
        return balances[_id][_owner];
    }

    function balanceOfBatch(address[] calldata _owners, uint256[] calldata _ids)
        external
        view
        returns (uint256[] memory)
    {
        require(_owners.length == _ids.length);
        uint256[] memory balances_ = new uint256[](_owners.length);
        for (uint256 i = 0; i < _owners.length; ++i) {
            uint256 id = _ids[i];
            if (isNonFungibleItem(id)) {
                balances_[i] = nfOwners[id] == _owners[i] ? 1 : 0;
            } else {
                balances_[i] = balances[id][_owners[i]];
            }
        }

        return balances_;
    }

    function setApprovalForAll(address _operator, bool _approved) external {
        operatorApproval[msg.sender][_operator] = _approved;
        emit ApprovalForAll(msg.sender, _operator, _approved);
    }

    function isApprovedForAll(address _owner, address _operator) external view returns (bool) {
        return operatorApproval[_owner][_operator];
    }

    function setSupplyLimit(uint256 _typeOrId, uint256 _supplyLimit) external creatorOnly {
        require(_supplyLimit > 0);
        if (isNonFungibleItem(_typeOrId)) {
            uint256 typeId = getNonFungibleBaseType(_typeOrId);
            require(tokenSupplyLimit[typeId] == 0);
            tokenSupplyLimit[typeId] = _supplyLimit;
            emit SupplyLimit(typeId, _supplyLimit);
        } else {
            require(tokenSupplyLimit[_typeOrId] == 0);
            tokenSupplyLimit[_typeOrId] = _supplyLimit;
            emit SupplyLimit(_typeOrId, _supplyLimit);
        }
    }

    function approveBatch(
        address _spender,
        uint256[] calldata _ids,
        uint256[] calldata _currentValues,
        uint256[] calldata _values
    ) external {
        require(_ids.length == _currentValues.length, "Arrays must be same length");
        require(_currentValues.length == _values.length, "Arrays must be same length");
        for (uint256 i = 0; i < _values.length; i++) {
            uint256 id = _ids[i];
            uint256 currentValue = _currentValues[i];
            uint256 value = _values[i];
            require(allowances[msg.sender][_spender][id] == currentValue);
            allowances[msg.sender][_spender][id] = value;
            emit Approval(msg.sender, _spender, id, currentValue, value);
        }
    }

    function isNonFungible(uint256 _id) public pure returns (bool) {
        return _id & TYPE_NF_BIT == TYPE_NF_BIT;
    }

    function isFungible(uint256 _id) public pure returns (bool) {
        return _id & TYPE_NF_BIT == 0;
    }

    function getNonFungibleIndex(uint256 _id) public pure returns (uint256) {
        return _id & NF_INDEX_MASK;
    }

    function getNonFungibleBaseType(uint256 _id) public pure returns (uint256) {
        return _id & TYPE_MASK;
    }

    function isNonFungibleBaseType(uint256 _id) public pure returns (bool) {
        // A base type has the NF bit but does not have an index.
        return (_id & TYPE_NF_BIT == TYPE_NF_BIT) && (_id & NF_INDEX_MASK == 0);
    }

    function isNonFungibleItem(uint256 _id) public pure returns (bool) {
        // A base type has the NF bit but does has an index.
        return (_id & TYPE_NF_BIT == TYPE_NF_BIT) && (_id & NF_INDEX_MASK != 0);
    }

    function ownerOf(uint256 _id) public view returns (address) {
        return nfOwners[_id];
    }

    /////////////////////////////////////////// ERC165 //////////////////////////////////////////////

    bytes4 private constant INTERFACE_SIGNATURE_ERC165 = 0x01ffc9a7;
    bytes4 private constant INTERFACE_SIGNATURE_ERC1155 = 0xd9b67a26;

    function supportsInterface(bytes4 _interfaceId) public view returns (bool) {
        if (
            _interfaceId == INTERFACE_SIGNATURE_ERC165 ||
            _interfaceId == INTERFACE_SIGNATURE_ERC1155
        ) {
            return true;
        }

        return false;
    }

    /////////////////////////////////////////// Internal //////////////////////////////////////////////

    function _doSafeTransferAcceptanceCheck(
        address _operator,
        address _from,
        address _to,
        uint256 _id,
        uint256 _value,
        bytes memory _data
    ) internal {
        require(
            ERC1155TokenReceiver(_to).onERC1155Received(_operator, _from, _id, _value, _data) ==
                ERC1155_ACCEPTED,
            "contract returned an unknown value from onERC1155Received"
        );
    }

    function _doSafeBatchTransferAcceptanceCheck(
        address _operator,
        address _from,
        address _to,
        uint256[] memory _ids,
        uint256[] memory _values,
        bytes memory _data
    ) internal {
        require(
            ERC1155TokenReceiver(_to).onERC1155BatchReceived(
                _operator,
                _from,
                _ids,
                _values,
                _data
            ) == ERC1155_BATCH_ACCEPTED,
            "contract returned an unknown value from onERC1155BatchReceived"
        );
    }

    /////////////////////////////////////////// ERC1155 //////////////////////////////////////////////

    function batchAuthorizeCreators(address[] calldata _addresses) external ownerOnly {
        for (uint256 i = 0; i < _addresses.length; ++i) {
            emit Creator(_addresses[i]);
            creators[_addresses[i]] = true;
        }
    }

    function batchDeauthorizeCreators(address[] calldata _addresses) external ownerOnly {
        for (uint256 i = 0; i < _addresses.length; ++i) {
            delete creators[_addresses[i]];
        }
    }

    function allowance(
        address _owner,
        address _spender,
        uint256 _id
    ) external view returns (uint256) {
        return allowances[_owner][_spender][_id];
    }

    function burn(
        address _from,
        uint256[] calldata _ids,
        uint256[] calldata _values
    ) external {
        require(
            _from == msg.sender || operatorApproval[_from][msg.sender] == true,
            "Need operator approval for 3rd party burn."
        );
        require(_ids.length > 0 && _ids.length == _values.length);
        for (uint256 i = 0; i < _ids.length; i++) {
            if (isFungible(_ids[i])) {
                require(balances[_ids[i]][_from] >= _values[i]);
                balances[_ids[i]][_from] = balances[_ids[i]][_from].sub(_values[i]);
            } else {
                require(isNonFungible(_ids[i]));
                require(_values[i] == 1);
                uint256 baseType = getNonFungibleBaseType(_ids[i]);
                // --totalSupply?
                balances[baseType][_from] = balances[baseType][_from].sub(1);
                delete nfOwners[_ids[i]];
            }
            emit TransferSingle(msg.sender, _from, address(0x0), _ids[i], _values[i]);
        }
    }

    function setNewUri(string calldata _uri, uint256 _id) external creatorOnly {
        require(bytes(_uri).length > 0);
        emit URI(_uri, _id);
    }
}

File 1 of 9: Address.sol
pragma solidity ^0.5.0;


library Address {
    function isContract(address account) internal view returns (bool) {
        uint256 size;
        assembly {
            size := extcodesize(account)
        }
        return size > 0;
    }
}

File 2 of 9: Common.sol
pragma solidity ^0.5.0;


contract CommonConstants {
    bytes4 internal constant ERC1155_ACCEPTED = 0xf23a6e61;
    bytes4 internal constant ERC1155_BATCH_ACCEPTED = 0xbc197c81;
}

File 3 of 9: ERC165.sol
pragma solidity ^0.5.0;


interface ERC165 {
    function supportsInterface(bytes4 _interfaceId) external view returns (bool);
}

File 5 of 9: IERC1155.sol
pragma solidity ^0.5.0;

import "./ERC165.sol";


/* is ERC165 */
interface IERC1155 {
    event TransferSingle(
        address indexed _operator,
        address indexed _from,
        address indexed _to,
        uint256 _id,
        uint256 _value
    );
    event TransferBatch(
        address indexed _operator,
        address indexed _from,
        address indexed _to,
        uint256[] _ids,
        uint256[] _values
    );
    event ApprovalForAll(address indexed _owner, address indexed _operator, bool _approved);
    event URI(string _value, uint256 indexed _id);

    function safeTransferFrom(
        address _from,
        address _to,
        uint256 _id,
        uint256 _value,
        bytes calldata _data
    ) external;

    function safeBatchTransferFrom(
        address _from,
        address _to,
        uint256[] calldata _ids,
        uint256[] calldata _values,
        bytes calldata _data
    ) external;

    function balanceOf(address _owner, uint256 _id) external view returns (uint256);

    function balanceOfBatch(address[] calldata _owners, uint256[] calldata _ids)
        external
        view
        returns (uint256[] memory);

    function setApprovalForAll(address _operator, bool _approved) external;

    function isApprovedForAll(address _owner, address _operator) external view returns (bool);
}

File 6 of 9: IERC1155TokenReceiver.sol
pragma solidity ^0.5.0;


interface ERC1155TokenReceiver {
    function onERC1155Received(
        address _operator,
        address _from,
        uint256 _id,
        uint256 _value,
        bytes calldata _data
    ) external returns (bytes4);

    function onERC1155BatchReceived(
        address _operator,
        address _from,
        uint256[] calldata _ids,
        uint256[] calldata _values,
        bytes calldata _data
    ) external returns (bytes4);
}

File 7 of 9: Migrations.sol
pragma solidity >=0.4.21 <0.7.0;


contract Migrations {
    address public owner;
    uint256 public last_completed_migration;

    constructor() public {
        owner = msg.sender;
    }

    modifier restricted() {
        if (msg.sender == owner) _;
    }

    function setCompleted(uint256 completed) public restricted {
        last_completed_migration = completed;
    }
}

File 8 of 9: SafeMath.sol
pragma solidity ^0.5.0;


library SafeMath {
    function mul(uint256 a, uint256 b) internal pure returns (uint256 c) {
        if (a == 0) {
            return 0;
        }
        c = a * b;
        assert(c / a == b);
        return c;
    }

    function div(uint256 a, uint256 b) internal pure returns (uint256) {
        return a / b;
    }

    function sub(uint256 a, uint256 b) internal pure returns (uint256) {
        assert(b <= a);
        return a - b;
    }

    function add(uint256 a, uint256 b) internal pure returns (uint256 c) {
        c = a + b;
        assert(c >= a);
        return c;
    }
}

File 9 of 9: SignatureVerifier.sol
pragma solidity ^0.5.0;


contract SignatureVerifier {
    function validateNodeSignature(
        string memory nodeHardwareLicenseId,
        uint256 sigNonce,
        bytes memory signature
    ) internal view returns (address signer) {
        bytes32 r;
        bytes32 s;
        uint8 v;
        (v, r, s) = splitSignature(signature);
        bytes32 hash = keccak256(abi.encodePacked(nodeHardwareLicenseId, sigNonce, this));
        bytes32 hashWithHeader = keccak256(
            abi.encodePacked("\x19Ethereum Signed Message:\n32", hash)
        );

        return ecrecover(hashWithHeader, v, r, s);
    }

    function splitSignature(bytes memory signature)
        internal
        pure
        returns (
            uint8,
            bytes32,
            bytes32
        )
    {
        require(signature.length == 65);

        bytes32 r;
        bytes32 s;
        uint8 v;

        assembly {
            // first 32 bytes, after the length prefix
            r := mload(add(signature, 32))
            // second 32 bytes
            s := mload(add(signature, 64))
            // final byte (first byte of the next 32 bytes)
            v := byte(0, mload(add(signature, 96)))
        }

        return (v, r, s);
    }
}

Contract Security Audit

Contract ABI

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Swarm Source

bzzr://e8a61d55a194b2f42d83bad5cb50743bb2cae21f6bc9f7b12d8f0056879d500e
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A token is a representation of an on-chain or off-chain asset. The token page shows information such as price, total supply, holders, transfers and social links. Learn more about this page in our Knowledge Base.