Puppy Raffle

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

[Medium] enterRaffle() con check de duplicados O(n²) — DoS permanente por gas

Root + Impact

enterRaffle() runs a quadratic duplicate check over the whole players array:

@> 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");

The array only grows (refund leaves holes, never shrinks), so the gas cost of entering grows quadratically with the number of players. Impact: permanent DoS - no one can enter the raffle.

Description

Normal behavior: players enter the raffle by paying the entrance fee and being added to the players array; duplicates are rejected.

The issue: the duplicate check is O(n^2) over the whole array on every enter. Measured gas (forge): 100 players = 6.5M gas, 300 players = 73.6M gas (11x for 3x players - quadratic). An attacker can fill the array with cheap addresses; beyond ~400-600 players, enterRaffle() exceeds the block gas limit and nobody can ever enter again. Since the raffle cannot end without selectWinner() and the array cannot be shrunk, this is a permanent DoS.

Risk

Reason 1: O(n^2) duplicate check on an unbounded array.
Reason 2: array length never decreases (refund leaves holes).

Impact 1: permanent DoS - no one can enter the raffle.
Impact 2: attacker can grief the protocol for the cost of a few hundred entrance fees.

Proof of Concept

// forge test --match-test test_BUG4_quadraticGasDoS
// 100 players: 6,523,109 gas
// 300 players: 73,666,638 gas
// 3x players - 11x gas (quadratic growth)

Forge test test_BUG4_quadraticGasDoS PASS.

Recommended Mitigation

Replace the O(n^2) check with a mapping (mapping(address => bool) isPlayer) for O(1) duplicate detection, or bound the array length.

Updates

Lead Judging Commences

ai-first-flight-judge Lead Judge 1 day 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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