function deposit(uint256 amount) external nonReentrant whenNotPaused validAmount(amount) {
_update();
rToken.safeTransferFrom(msg.sender, address(this), amount);
uint256 deCRVUSDAmount = calculateDeCRVUSDAmount(amount);
deToken.mint(msg.sender, deCRVUSDAmount);
userDeposits[msg.sender] += amount;
_mintRAACRewards();
emit Deposit(msg.sender, amount, deCRVUSDAmount);
}
function withdraw(uint256 deCRVUSDAmount) external nonReentrant whenNotPaused validAmount(deCRVUSDAmount) {
_update();
if (deToken.balanceOf(msg.sender) < deCRVUSDAmount) revert InsufficientBalance();
uint256 rcrvUSDAmount = calculateRcrvUSDAmount(deCRVUSDAmount);
@> uint256 raacRewards = calculateRaacRewards(msg.sender);
if (userDeposits[msg.sender] < rcrvUSDAmount) revert InsufficientBalance();
userDeposits[msg.sender] -= rcrvUSDAmount;
if (userDeposits[msg.sender] == 0) {
delete userDeposits[msg.sender];
}
deToken.burn(msg.sender, deCRVUSDAmount);
rToken.safeTransfer(msg.sender, rcrvUSDAmount);
if (raacRewards > 0) {
raacToken.safeTransfer(msg.sender, raacRewards);
}
emit Withdraw(msg.sender, rcrvUSDAmount, deCRVUSDAmount, raacRewards);
}
And when withdraw, reward will be calculated based on user deposit, total deposit and total reward like below:
function calculateRaacRewards(address user) public view returns (uint256) {
uint256 userDeposit = userDeposits[user];
uint256 totalDeposits = deToken.totalSupply();
uint256 totalRewards = raacToken.balanceOf(address(this));
if (totalDeposits < 1e6) return 0;
return (totalRewards * userDeposit) / totalDeposits;
}
So attacker can drain reward by continuously deposit and withdraw without contributing for protocol.
Reward should be distributed based on the time user contribute to protocol.