Puppy Raffle

AI First Flight #1
Beginner FriendlyFoundrySolidityNFT
EXP
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Submission Details
Severity: medium
Valid

DOS attack can happen while checking for duplicates in the enterRaffle function

Summary

Checking for duplicates in the enterRaffle function can cause a dos attack.

Vulnerability Details

for (uint256 i = 0; i < players.length - 1; i++) {
for (uint256 j = i + 1; j < players.length; j++) {
require(players\[i] != players\[j], "PuppyRaffle: Duplicate player");
}
}

Due to the nested for loops used inside the enterRaffle function a attacker can enter a large amount of his addressess in the raffle at the start of the raffle causing the players array length to increase in a large amount which would lead to high gas price for the users entering the raffle after the attacker has entered. Due to the high gas price other users won't be able to enter the raffle causing a dos.

Impact

Other players won't be able to enter the raffle due to high gas price.

Poc

function testGasCost() public {
vm.txGasPrice(1);
uint256 playersNum = 100;
address[] memory players = new address[](playersNum);
// Enter 100 players
for (uint i = 0; i < playersNum; i++) {
players[i] = address(i);
}
uint256 gasStart = gasleft();
puppyRaffle.enterRaffle{value:entranceFee * playersNum}(players);
uint256 gasEnd = gasleft();
uint256 gasUsedFirst = (gasStart - gasEnd) * tx.gasprice;
console.log("Gas cost for 1st 100 players : " , gasUsedFirst);
//Enter 100 more players
for (uint i = 0; i < playersNum; i++) {
players[i] = address(i+playersNum);
}
gasStart = gasleft();
puppyRaffle.enterRaffle{value:entranceFee * playersNum}(players);
gasEnd = gasleft();
uint256 gasUsedSecond = (gasStart - gasEnd) * tx.gasprice;
console.log("Gas cost for 2nd 100 players : " , gasUsedSecond);
assert(gasUsedFirst<gasUsedSecond);
}

Mitigation

Use mapping for checking for duplicates.

Updates

Lead Judging Commences

ai-first-flight-judge Lead Judge about 18 hours ago
Submission Judgement Published
Validated
Assigned finding tags:

[M-01] `PuppyRaffle: enterRaffle` Use of gas extensive duplicate check leads to Denial of Service, making subsequent participants to spend much more gas than prev ones to enter

## Description `enterRaffle` function uses gas inefficient duplicate check that causes leads to Denial of Service, making subsequent participants to spend much more gas than previous users to enter. ## Vulnerability Details In the `enterRaffle` function, to check duplicates, it loops through the `players` array. As the `player` array grows, it will make more checks, which leads the later user to pay more gas than the earlier one. More users in the Raffle, more checks a user have to make leads to pay more gas. ## Impact As the arrays grows significantly over time, it will make the function unusable due to block gas limit. This is not a fair approach and lead to bad user experience. ## POC In existing test suit, add this test to see the difference b/w gas for users. once added run `forge test --match-test testEnterRaffleIsGasInefficient -vvvvv` in terminal. you will be able to see logs in terminal. ```solidity function testEnterRaffleIsGasInefficient() public { vm.startPrank(owner); vm.txGasPrice(1); /// First we enter 100 participants uint256 firstBatch = 100; address[] memory firstBatchPlayers = new address[](firstBatch); for(uint256 i = 0; i < firstBatchPlayers; i++) { firstBatch[i] = address(i); } uint256 gasStart = gasleft(); puppyRaffle.enterRaffle{value: entranceFee * firstBatch}(firstBatchPlayers); uint256 gasEnd = gasleft(); uint256 gasUsedForFirstBatch = (gasStart - gasEnd) * txPrice; console.log("Gas cost of the first 100 partipants is:", gasUsedForFirstBatch); /// Now we enter 100 more participants uint256 secondBatch = 200; address[] memory secondBatchPlayers = new address[](secondBatch); for(uint256 i = 100; i < secondBatchPlayers; i++) { secondBatch[i] = address(i); } gasStart = gasleft(); puppyRaffle.enterRaffle{value: entranceFee * secondBatch}(secondBatchPlayers); gasEnd = gasleft(); uint256 gasUsedForSecondBatch = (gasStart - gasEnd) * txPrice; console.log("Gas cost of the next 100 participant is:", gasUsedForSecondBatch); vm.stopPrank(owner); } ``` ## Recommendations Here are some of recommendations, any one of that can be used to mitigate this risk. 1. User a mapping to check duplicates. For this approach you to declare a variable `uint256 raffleID`, that way each raffle will have unique id. Add a mapping from player address to raffle id to keep of users for particular round. ```diff + uint256 public raffleID; + mapping (address => uint256) public usersToRaffleId; . . function enterRaffle(address[] memory newPlayers) public payable { require(msg.value == entranceFee * newPlayers.length, "PuppyRaffle: Must send enough to enter raffle"); for (uint256 i = 0; i < newPlayers.length; i++) { players.push(newPlayers[i]); + usersToRaffleId[newPlayers[i]] = true; } // Check for duplicates + for (uint256 i = 0; i < newPlayers.length; i++){ + require(usersToRaffleId[i] != raffleID, "PuppyRaffle: Already a participant"); - for (uint256 i = 0; i < players.length - 1; i++) { - for (uint256 j = i + 1; j < players.length; j++) { - require(players[i] != players[j], "PuppyRaffle: Duplicate player"); - } } emit RaffleEnter(newPlayers); } . . . function selectWinner() external { //Existing code + raffleID = raffleID + 1; } ``` 2. Allow duplicates participants, As technically you can't stop people participants more than once. As players can use new address to enter. ```solidity function enterRaffle(address[] memory newPlayers) public payable { require(msg.value == entranceFee * newPlayers.length, "PuppyRaffle: Must send enough to enter raffle"); for (uint256 i = 0; i < newPlayers.length; i++) { players.push(newPlayers[i]); } emit RaffleEnter(newPlayers); } ```

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