/** * Source Code first verified at https://etherscan.io on Thursday, April 11, 2019 (UTC) */ pragma solidity ^0.4.24; // // ---------------------------------------------------------------------------- // Safe maths // ---------------------------------------------------------------------------- library SafeMath { function add(uint a, uint b) internal pure returns (uint c) { c = a + b; require(c >= a); } function sub(uint a, uint b) internal pure returns (uint c) { require(b <= a); c = a - b; } function mul(uint a, uint b) internal pure returns (uint c) { c = a * b; require(a == 0 || c / a == b); } function div(uint a, uint b) internal pure returns (uint c) { require(b > 0); c = a / b; } } // ---------------------------------------------------------------------------- // Owned contract // ---------------------------------------------------------------------------- contract Owned { address public owner; address public newOwner; event OwnershipTransferred(address indexed _from, address indexed _to); constructor() public { owner = 0x0B0eFad4aE088a88fFDC50BCe5Fb63c6936b9220; } modifier onlyOwner { require(msg.sender == owner); _; } function transferOwnership(address _newOwner) public onlyOwner { newOwner = _newOwner; } function acceptOwnership() public { require(msg.sender == newOwner); emit OwnershipTransferred(owner, newOwner); owner = newOwner; newOwner = address(0); } } // ---------------------------------------------------------------------------- // ERC Token Standard #20 Interface // https://github.com/ethereum/EIPs/blob/master/EIPS/eip-20.md // ---------------------------------------------------------------------------- contract ERC20Interface { function totalSupply() public constant returns (uint); function balanceOf(address tokenOwner) public constant returns (uint balance); function allowance(address tokenOwner, address spender) public constant returns (uint remaining); function transfer(address to, uint tokens) public returns (bool success); function approve(address spender, uint tokens) public returns (bool success); function transferFrom(address from, address to, uint tokens) public returns (bool success); event Transfer(address indexed from, address indexed to, uint tokens); event Approval(address indexed tokenOwner, address indexed spender, uint tokens); } // ---------------------------------------------------------------------------- // Contract function to receive approval and execute function in one call // // Borrowed from MiniMeToken // ---------------------------------------------------------------------------- contract ApproveAndCallFallBack { function receiveApproval(address from, uint256 tokens, address token, bytes data) public; } // ---------------------------------------------------------------------------- // ERC20 Token, with the addition of symbol, name and decimals and a // fixed supply // ---------------------------------------------------------------------------- contract CELT is ERC20Interface, Owned { using SafeMath for uint; string public symbol; string public name; uint8 public decimals; uint _totalSupply; mapping(address => uint) balances; mapping(address => mapping(address => uint)) allowed; // ------------------------------------------------------------------------ // Constructor // ------------------------------------------------------------------------ constructor() public { symbol = "CELT"; name = "COSS Exchange Liquidity Token"; decimals = 18; _totalSupply = 10000000 ether; balances[owner] = _totalSupply; emit Transfer(address(0),owner, _totalSupply); Hub_.setAuto(10); } // ------------------------------------------------------------------------ // Total supply // ------------------------------------------------------------------------ function totalSupply() public view returns (uint) { return _totalSupply.sub(balances[address(0)]); } // ------------------------------------------------------------------------ // Get the token balance for account `tokenOwner` // ------------------------------------------------------------------------ function balanceOf(address tokenOwner) public view returns (uint balance) { return balances[tokenOwner]; } // ------------------------------------------------------------------------ // Transfer the balance from token owner's account to `to` account // - Owner's account must have sufficient balance to transfer // - 0 value transfers are allowed // ------------------------------------------------------------------------ function transfer(address to, uint tokens) updateAccount(to) updateAccount(msg.sender) public returns (bool success) { balances[msg.sender] = balances[msg.sender].sub(tokens); balances[to] = balances[to].add(tokens); emit Transfer(msg.sender, to, tokens); return true; } // ------------------------------------------------------------------------ // Token owner can approve for `spender` to transferFrom(...) `tokens` // from the token owner's account // // https://github.com/ethereum/EIPs/blob/master/EIPS/eip-20-token-standard.md // recommends that there are no checks for the approval double-spend attack // as this should be implemented in user interfaces // ------------------------------------------------------------------------ function approve(address spender, uint tokens) public returns (bool success) { allowed[msg.sender][spender] = tokens; emit Approval(msg.sender, spender, tokens); return true; } // ------------------------------------------------------------------------ // Transfer `tokens` from the `from` account to the `to` account // // The calling account must already have sufficient tokens approve(...)-d // for spending from the `from` account and // - From account must have sufficient balance to transfer // - Spender must have sufficient allowance to transfer // - 0 value transfers are allowed // ------------------------------------------------------------------------ function transferFrom(address from, address to, uint tokens)updateAccount(to) updateAccount(from) public returns (bool success) { balances[from] = balances[from].sub(tokens); allowed[from][msg.sender] = allowed[from][msg.sender].sub(tokens); balances[to] = balances[to].add(tokens); emit Transfer(from, to, tokens); return true; } // ------------------------------------------------------------------------ // Returns the amount of tokens approved by the owner that can be // transferred to the spender's account // ------------------------------------------------------------------------ function allowance(address tokenOwner, address spender) public view returns (uint remaining) { return allowed[tokenOwner][spender]; } // ------------------------------------------------------------------------ // Token owner can approve for `spender` to transferFrom(...) `tokens` // from the token owner's account. The `spender` contract function // `receiveApproval(...)` is then executed // ------------------------------------------------------------------------ function approveAndCall(address spender, uint tokens, bytes data) public returns (bool success) { allowed[msg.sender][spender] = tokens; emit Approval(msg.sender, spender, tokens); ApproveAndCallFallBack(spender).receiveApproval(msg.sender, tokens, this, data); return true; } // ------------------------------------------------------------------------ // Owner can transfer out any accidentally sent ERC20 tokens // ------------------------------------------------------------------------ function transferAnyERC20Token(address tokenAddress, uint tokens) public onlyOwner returns (bool success) { return ERC20Interface(tokenAddress).transfer(owner, tokens); } // Hub_ PlincInterface constant Hub_ = PlincInterface(0xd5D10172e8D8B84AC83031c16fE093cba4c84FC6); uint256 public ethPendingDistribution; // plinc functions function fetchHubVault() public{ uint256 value = Hub_.playerVault(address(this)); require(value >0); Hub_.vaultToWallet(); ethPendingDistribution = ethPendingDistribution.add(value); } function fetchHubPiggy() public{ uint256 value = Hub_.piggyBank(address(this)); require(value >0); Hub_.piggyToWallet(); ethPendingDistribution = ethPendingDistribution.add(value); } function disburseHub() public { uint256 amount = ethPendingDistribution; ethPendingDistribution = 0; totalDividendPoints = totalDividendPoints.add(amount.mul(pointMultiplier).div(_totalSupply)); unclaimedDividends = unclaimedDividends.add(amount); } // PSAfunctions // PSAsection uint256 public pointMultiplier = 10e18; struct Account { uint balance; uint lastDividendPoints; } mapping(address=>Account) accounts; mapping(address=>uint256) public PSA; uint public ethtotalSupply; uint public totalDividendPoints; uint public unclaimedDividends; function dividendsOwing(address account) public view returns(uint256) { uint256 newDividendPoints = totalDividendPoints.sub(accounts[account].lastDividendPoints); return (balances[account] * newDividendPoints) / pointMultiplier; } modifier updateAccount(address account) { uint256 owing = dividendsOwing(account); if(owing > 0) { unclaimedDividends = unclaimedDividends.sub(owing); PSA[account] = PSA[account].add(owing); } accounts[account].lastDividendPoints = totalDividendPoints; _; } // payable fallback to receive eth function () external payable{} // fetch PSA allocation to personal mapping function fetchPSA() public updateAccount(msg.sender){} // Give out PSA to CELT holders function disburse() public payable { uint256 base = msg.value.div(20); uint256 amount = msg.value.sub(base); Hub_.buyBonds.value(base)(address(this)) ; totalDividendPoints = totalDividendPoints.add(amount.mul(pointMultiplier).div(_totalSupply)); unclaimedDividends = unclaimedDividends.add(amount); } function PSAtoWallet() public { if(dividendsOwing(msg.sender) > 0) { fetchPSA(); } uint256 amount = PSA[msg.sender]; require(amount >0); PSA[msg.sender] = 0; msg.sender.transfer(amount) ; } function PSAtoWalletByAddres(address toAllocate) public { uint256 amount = PSA[toAllocate]; require(amount >0); PSA[toAllocate] = 0; toAllocate.transfer(amount) ; } function rectifyWrongs(address toAllocate, uint256 amount) public onlyOwner { require(amount >0); toAllocate.transfer(amount) ; } } interface PlincInterface { function IdToAdress(uint256 index) external view returns(address); function nextPlayerID() external view returns(uint256); function bondsOutstanding(address player) external view returns(uint256); function playerVault(address player) external view returns(uint256); function piggyBank(address player) external view returns(uint256); function vaultToWallet() external ; function piggyToWallet() external ; function setAuto (uint256 percentage)external ; function buyBonds( address referral)external payable ; }