Token Kinguin Krowns

 

Overview [ERC-20]

Max Total Supply:
100,000,000 KRS

Holders:
24,996

Transfers:
-

 
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Contract Source Code Verified (Exact Match)

Contract Name:
KinguinKrowns

Compiler Version
v0.4.19+commit.c4cbbb05

Optimization Enabled:
No with 200 runs

Other Settings:
default evmVersion

Contract Source Code (Solidity)

/**
 *Submitted for verification at Etherscan.io on 2018-03-30
*/

pragma solidity ^0.4.18;

/// @title Kinguin Krowns [KRS]

 /* ERC223 additions to ERC20 */

 /*
  ERC223 additions to ERC20

  Interface wise is ERC20 + data parameter to transfer and transferFrom.
 */

/*
 * ERC20 interface
 * see https://github.com/ethereum/EIPs/issues/20
 */
contract ERC20 {
  uint public totalSupply;
  function balanceOf(address who) constant returns (uint);
  function allowance(address owner, address spender) constant returns (uint);

  function transfer(address to, uint value) returns (bool ok);
  function transferFrom(address from, address to, uint value) returns (bool ok);
  function approve(address spender, uint value) returns (bool ok);
  event Transfer(address indexed from, address indexed to, uint value);
  event Approval(address indexed owner, address indexed spender, uint value);
}


contract ERC223 is ERC20 {
  function transfer(address to, uint value, bytes data) returns (bool ok);
  function transferFrom(address from, address to, uint value, bytes data) returns (bool ok);
}

contract ERC223Receiver {
  function tokenFallback(address _sender, address _origin, uint _value, bytes _data) returns (bool ok);
}


/**
 * Math operations with safety checks
 */
contract SafeMath {
  function safeMul(uint a, uint b) internal returns (uint) {
    uint c = a * b;
    assert(a == 0 || c / a == b);
    return c;
  }

  function safeDiv(uint a, uint b) internal returns (uint) {
    assert(b > 0);
    uint c = a / b;
    assert(a == b * c + a % b);
    return c;
  }

  function safeSub(uint a, uint b) internal returns (uint) {
    assert(b <= a);
    return a - b;
  }

  function safeAdd(uint a, uint b) internal returns (uint) {
    uint c = a + b;
    assert(c>=a && c>=b);
    return c;
  }

  function max64(uint64 a, uint64 b) internal constant returns (uint64) {
    return a >= b ? a : b;
  }

  function min64(uint64 a, uint64 b) internal constant returns (uint64) {
    return a < b ? a : b;
  }

  function max256(uint256 a, uint256 b) internal constant returns (uint256) {
    return a >= b ? a : b;
  }

  function min256(uint256 a, uint256 b) internal constant returns (uint256) {
    return a < b ? a : b;
  }

  /*function assert(bool assertion) internal {
    if (!assertion) {
      throw;
    }
  }*/
}


/**
 * Standard ERC20 token
 *
 * https://github.com/ethereum/EIPs/issues/20
 * Based on code by FirstBlood:
 * https://github.com/Firstbloodio/token/blob/master/smart_contract/FirstBloodToken.sol
 */
contract StandardToken is ERC20, SafeMath {
  mapping(address => uint) balances;
  mapping (address => mapping (address => uint)) allowed;
  function transfer(address _to, uint _value) returns (bool success) {
    require(_to != address(0));
    require(_value <= balances[msg.sender]);
    balances[msg.sender] = safeSub(balances[msg.sender], _value);
    balances[_to] = safeAdd(balances[_to], _value);
    Transfer(msg.sender, _to, _value);
    return true;
  }
  function transferFrom(address _from, address _to, uint _value) returns (bool success) {
    var _allowance = allowed[_from][msg.sender];
    // Check is not needed because safeSub(_allowance, _value) will already throw if this condition is not met
    // if (_value > _allowance) throw;
    balances[_to] = safeAdd(balances[_to], _value);
    balances[_from] = safeSub(balances[_from], _value);
    allowed[_from][msg.sender] = safeSub(_allowance, _value);
    Transfer(_from, _to, _value);
    return true;
  }
  function balanceOf(address _owner) constant returns (uint balance) {
    return balances[_owner];
  }
  function approve(address _spender, uint _value) returns (bool success) {
    allowed[msg.sender][_spender] = _value;
    Approval(msg.sender, _spender, _value);
    return true;
  }
  function allowance(address _owner, address _spender) constant returns (uint remaining) {
    return allowed[_owner][_spender];
  }
}

contract KinguinKrowns is ERC223, StandardToken {
  address public owner;  // token owner adddres
  string public constant name = "Kinguin Krowns";
  string public constant symbol = "KRS";
  uint8 public constant decimals = 18;
  // uint256 public totalSupply; // defined in ERC20 contract
		
  function KinguinKrowns() {
	owner = msg.sender;
    totalSupply = 100000000 * (10**18); // 100 mln
    balances[msg.sender] = totalSupply;
  } 
  
  /*
  //only do if call is from owner modifier
  modifier onlyOwner() {
    if (msg.sender != owner) throw;
    _;
  }*/
  
  //function that is called when a user or another contract wants to transfer funds
  function transfer(address _to, uint _value, bytes _data) returns (bool success) {
    //filtering if the target is a contract with bytecode inside it
    if (!super.transfer(_to, _value)) throw; // do a normal token transfer
    if (isContract(_to)) return contractFallback(msg.sender, _to, _value, _data);
    return true;
  }

  function transferFrom(address _from, address _to, uint _value, bytes _data) returns (bool success) {
    if (!super.transferFrom(_from, _to, _value)) throw; // do a normal token transfer
    if (isContract(_to)) return contractFallback(_from, _to, _value, _data);
    return true;
  }

  function transfer(address _to, uint _value) returns (bool success) {
    return transfer(_to, _value, new bytes(0));
  }

  function transferFrom(address _from, address _to, uint _value) returns (bool success) {
    return transferFrom(_from, _to, _value, new bytes(0));
  }

  //function that is called when transaction target is a contract
  function contractFallback(address _origin, address _to, uint _value, bytes _data) private returns (bool success) {
    ERC223Receiver receiver = ERC223Receiver(_to);
    return receiver.tokenFallback(msg.sender, _origin, _value, _data);
  }

  //assemble the given address bytecode. If bytecode exists then the _addr is a contract.
  function isContract(address _addr) private returns (bool is_contract) {
    // retrieve the size of the code on target address, this needs assembly
    uint length;
    assembly { length := extcodesize(_addr) }
    return length > 0;
  }
  
  // returns krown balance of given address 	
  function balanceOf(address _owner) constant returns (uint balance) {
    return balances[_owner];
  }
	
}

Contract Security Audit

Contract ABI

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Swarm Source

bzzr://4be4449796f4cba06a2659e06963af3e0dec511ab7b72b10f82c9a35e7ab5076

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