mirror of https://github.com/waku-org/nwaku.git
150 lines
6.0 KiB
Nim
150 lines
6.0 KiB
Nim
import
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chronos, nimcrypto, options, json, stint,
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test_utils,
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web3
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# the address of Ethereum client (ganache-cli for now)
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const ethClient = "ws://localhost:8540/"
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# poseidonHasherCode holds the bytecode of Poseidon hasher solidity smart contract:
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# https://github.com/kilic/rlnapp/blob/master/packages/contracts/contracts/crypto/PoseidonHasher.sol
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# the solidity contract is compiled separately and the resultant bytecode is copied here
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const poseidonHasherCode = readFile("tests/v2/poseidonHasher.txt")
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# membershipContractCode contains the bytecode of the membership solidity smart contract:
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# https://github.com/kilic/rlnapp/blob/master/packages/contracts/contracts/RLN.sol
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# the solidity contract is compiled separately and the resultant bytecode is copied here
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const membershipContractCode = readFile("tests/v2/membershipContract.txt")
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# the membership contract code in solidity
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# uint256 public immutable MEMBERSHIP_DEPOSIT;
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# uint256 public immutable DEPTH;
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# uint256 public immutable SET_SIZE;
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# uint256 public pubkeyIndex = 0;
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# mapping(uint256 => uint256) public members;
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# IPoseidonHasher public poseidonHasher;
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# event MemberRegistered(uint256 indexed pubkey, uint256 indexed index);
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# event MemberWithdrawn(uint256 indexed pubkey, uint256 indexed index);
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# constructor(
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# uint256 membershipDeposit,
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# uint256 depth,
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# address _poseidonHasher
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# ) public {
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# MEMBERSHIP_DEPOSIT = membershipDeposit;
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# DEPTH = depth;
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# SET_SIZE = 1 << depth;
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# poseidonHasher = IPoseidonHasher(_poseidonHasher);
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# }
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# function register(uint256 pubkey) external payable {
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# require(pubkeyIndex < SET_SIZE, "RLN, register: set is full");
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# require(msg.value == MEMBERSHIP_DEPOSIT, "RLN, register: membership deposit is not satisfied");
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# _register(pubkey);
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# }
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# function registerBatch(uint256[] calldata pubkeys) external payable {
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# require(pubkeyIndex + pubkeys.length <= SET_SIZE, "RLN, registerBatch: set is full");
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# require(msg.value == MEMBERSHIP_DEPOSIT * pubkeys.length, "RLN, registerBatch: membership deposit is not satisfied");
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# for (uint256 i = 0; i < pubkeys.length; i++) {
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# _register(pubkeys[i]);
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# }
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# }
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# function withdrawBatch(
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# uint256[] calldata secrets,
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# uint256[] calldata pubkeyIndexes,
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# address payable[] calldata receivers
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# ) external {
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# uint256 batchSize = secrets.length;
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# require(batchSize != 0, "RLN, withdrawBatch: batch size zero");
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# require(batchSize == pubkeyIndexes.length, "RLN, withdrawBatch: batch size mismatch pubkey indexes");
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# require(batchSize == receivers.length, "RLN, withdrawBatch: batch size mismatch receivers");
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# for (uint256 i = 0; i < batchSize; i++) {
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# _withdraw(secrets[i], pubkeyIndexes[i], receivers[i]);
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# }
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# }
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# function withdraw(
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# uint256 secret,
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# uint256 _pubkeyIndex,
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# address payable receiver
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# ) external {
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# _withdraw(secret, _pubkeyIndex, receiver);
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# }
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contract(MembershipContract):
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proc register(pubkey: Uint256) # external payable
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# proc registerBatch(pubkeys: seq[Uint256]) # external payable
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# TODO will add withdraw function after integrating the keyGeneration function (required to compute public keys from secret keys)
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# proc withdraw(secret: Uint256, pubkeyIndex: Uint256, receiver: Address)
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# proc withdrawBatch( secrets: seq[Uint256], pubkeyIndex: seq[Uint256], receiver: seq[Address])
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proc membershipTest() {.async.} =
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# connect to the eth client
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let web3 = await newWeb3(ethClient)
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echo "web3 connected"
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# fetch the list of registered accounts
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let accounts = await web3.provider.eth_accounts()
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web3.defaultAccount = accounts[1]
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echo "contract deployer account address ", web3.defaultAccount
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var balance = await web3.provider.eth_getBalance(web3.defaultAccount , "latest")
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echo "Initial account balance: ", balance
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# deploy the poseidon hash first
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let
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hasherReceipt = await web3.deployContract(poseidonHasherCode)
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hasherAddress = hasherReceipt.contractAddress.get
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echo "hasher address: ", hasherAddress
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# inputs of membership contract constructor
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let
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membershipFee = 5.u256
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depth = 5.u256
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# encode membership contract inputs to 32 bytes zero-padded
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let
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membershipFeeEncoded = encode(membershipFee).data
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depthEncoded = encode(depth).data
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hasherAddressEncoded = encode(hasherAddress).data
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# this is the contract constructor input
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contractInput = membershipFeeEncoded & depthEncoded & hasherAddressEncoded
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echo "encoded membership fee: ", membershipFeeEncoded
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echo "encoded depth: ", depthEncoded
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echo "encoded hasher address: ", hasherAddressEncoded
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echo "encoded contract input:" , contractInput
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# deploy membership contract with its constructor inputs
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let receipt = await web3.deployContract(membershipContractCode, contractInput = contractInput)
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var contractAddress = receipt.contractAddress.get
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echo "Address of the deployed membership contract: ", contractAddress
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# balance = await web3.provider.eth_getBalance(web3.defaultAccount , "latest")
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# echo "Account balance after the contract deployment: ", balance
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# prepare a contract sender to interact with it
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echo "registering a user..."
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var sender = web3.contractSender(MembershipContract, contractAddress) # creates a Sender object with a web3 field and contract address of type Address
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# send takes three parameters, c: ContractCallBase, value = 0.u256, gas = 3000000'u64 gasPrice = 0
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# should use send proc for the contract functions that update the state of the contract
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echo "The hash of registration tx: ", await sender.register(20.u256).send(value = membershipFee) # value is the membership fee
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# var members: array[2, uint256] = [20.u256, 21.u256]
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# echo "This is the batch registration result ", await sender.registerBatch(members).send(value = (members.len * membershipFee)) # value is the membership fee
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# balance = await web3.provider.eth_getBalance(web3.defaultAccount , "latest")
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# echo "Balance after registration: ", balance
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await web3.close()
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echo "closed"
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waitFor membershipTest()
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echo " rln-relay test ended"
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