pragma solidity 0.4.24;
/**
* @title SafeMath
* @dev Math operations with safety checks that throw on error
*/
library SafeMath {
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;
}
function div(uint256 a, uint256 b) internal pure 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 pure returns (uint256) {
assert(b <= a);
return a - b;
}
function add(uint256 a, uint256 b) internal pure returns (uint256) {
uint256 c = a + b;
assert(c >= a);
return c;
}
function percent(uint value,uint numerator, uint denominator, uint precision) internal pure returns(uint quotient) {
uint _numerator = numerator * 10 ** (precision+1);
uint _quotient = ((_numerator / denominator) + 5) / 10;
return (value*_quotient/1000000000000000000);
}
}
contract ERC20 {
function totalSupply()public view returns (uint total_Supply);
function balanceOf(address who)public view returns (uint256);
function allowance(address owner, address spender)public view returns (uint);
function transferFrom(address from, address to, uint value)public returns (bool ok);
function approve(address spender, uint value)public returns (bool ok);
function transfer(address to, uint value)public returns (bool ok);
event Transfer(address indexed from, address indexed to, uint value);
event Approval(address indexed owner, address indexed spender, uint value);
}
contract Minttk is ERC20 {
using SafeMath for uint256;
string public constant name = "Minttk"; // Name of the token
string public constant symbol = "MNT"; // Symbol of token
uint8 public constant decimals = 18; // Decimal of token
uint public _totalsupply = 500000000 * 10 ** 18; // 500 million total supply // muliplies dues to decimal precision
uint public crowdSale = 60000000 * 10 ** 18; // 60 million in Crowd Sale
uint public posMining = 350000000 * 10 ** 18; // 350 million in POS Mining
uint public corporateReserve = 80000000 * 10 ** 18; // 80 million in Corporate Reserve
uint public promotionBounty = 10000000 * 10 ** 18; // 10 million in Promotion & Bounty
uint public remainingToken = 150000000 * 10 ** 18; // 150 million in Remaining Token | Total Supply - POS
address public owner; // Owner of this contract
mapping(address => uint256) internal mintingDate;
mapping(address => uint) balances;
mapping(address => mapping(address => uint)) allowed;
modifier onlyOwner() {
if (msg.sender != owner) {
revert();
}
_;
}
function Minttk() public {
balances[msg.sender] = remainingToken;
Transfer(0, msg.sender, remainingToken);
}
// what is the total supply
function totalSupply() public view returns (uint256 total_Supply) {
total_Supply = _totalsupply;
}
// What is the balance of a particular account?
function balanceOf(address _owner) public view returns (uint256 balance) {
return balances[_owner];
}
// Token minting function
function mint() public {
address _customerAddress = msg.sender;
uint256 userBalance = balances[_customerAddress];
uint256 currentTs = now;
uint256 userMintingDate = mintingDate[_customerAddress] + 7 days;
require (userBalance > 0);
require (currentTs > userMintingDate);
mintingDate[_customerAddress] = currentTs;
uint256 _bonusAmount = SafeMath.percent(userBalance,2,100,18);
balances[_customerAddress] = (uint256)(balances[_customerAddress]).add(_bonusAmount);
}
// Send _value amount of tokens from address _from to address _to
// The transferFrom method is used for a withdraw workflow, allowing contracts to send
// tokens on your behalf, for example to "deposit" to a contract address and/or to charge
// fees in sub-currencies; the command should fail unless the _from account has
// deliberately authorized the sender of the message via some mechanism; we propose
// these standardized APIs for approval:
function transferFrom( address _from, address _to, uint256 _amount ) public returns (bool success) {
require( _to != 0x0);
require(balances[_from] >= _amount && allowed[_from][msg.sender] >= _amount && _amount >= 0);
balances[_from] = (balances[_from]).sub(_amount);
allowed[_from][msg.sender] = (allowed[_from][msg.sender]).sub(_amount);
balances[_to] = (balances[_to]).add(_amount);
Transfer(_from, _to, _amount);
return true;
}
// Allow _spender to withdraw from your account, multiple times, up to the _value amount.
// If this function is called again it overwrites the current allowance with _value.
function approve(address _spender, uint256 _amount) public returns (bool success) {
require( _spender != 0x0);
allowed[msg.sender][_spender] = _amount;
Approval(msg.sender, _spender, _amount);
return true;
}
function allowance(address _owner, address _spender) public view returns (uint256 remaining) {
require( _owner != 0x0 && _spender !=0x0);
return allowed[_owner][_spender];
}
// Transfer the balance from owner's account to another account
function transfer(address _to, uint256 _amount) public returns (bool success) {
require( _to != 0x0);
require(balances[msg.sender] >= _amount && _amount >= 0);
address _customerAddress = msg.sender;
uint256 currentTs = now;
uint256 userMintingDate = mintingDate[_customerAddress] + 7 days;
require (currentTs > userMintingDate);
balances[msg.sender] = (balances[msg.sender]).sub(_amount);
balances[_to] = (balances[_to]).add(_amount);
Transfer(msg.sender, _to, _amount);
return true;
}
// Transfer the balance from owner's account to another account
function transferTokens(address _to, uint256 _amount) private returns (bool success) {
require( _to != 0x0);
require(balances[address(this)] >= _amount && _amount > 0);
balances[address(this)] = (balances[address(this)]).sub(_amount);
balances[_to] = (balances[_to]).add(_amount);
Transfer(address(this), _to, _amount);
return true;
}
function drain() external onlyOwner {
owner.transfer(this.balance);
}
}
{
"compilationTarget": {
"Minttk.sol": "Minttk"
},
"evmVersion": "byzantium",
"libraries": {},
"optimizer": {
"enabled": false,
"runs": 200
},
"remappings": []
}
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