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generateTestJetton.ts
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generateTestJetton.ts
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import { Address, beginCell, BitBuilder, Cell, Dictionary, DictionaryValue, exoticMerkleProof, exoticPruned, toNano, internal } from '@ton/core';
import {compile, NetworkProvider} from '@ton/blueprint';
//import { MnemonicProvider } from '@ton/blueprint';
import {jettonWalletCodeFromLibrary, promptUrl, promptUserFriendlyAddress} from "../wrappers/ui-utils";
import { WalletContractV3R2, WalletContractV4, WalletContractV5R1 } from "@ton/ton";
import { mnemonicNew, mnemonicToPrivateKey } from "@ton/crypto";
import '@ton/test-utils';
import {jettonContentToCell, JettonMinter} from '../wrappers/JettonMinter';
import { JettonWallet, jettonWalletConfigToCell } from '../wrappers/JettonWallet';
import { buff2bigint} from '../sandbox_tests/utils';
import { Errors, Op } from '../wrappers/JettonConstants';
const fs = require('fs');
const N = 20; // number of wallets of each kind to generate
const P = 6; // number of packages of wallets to generate
const AIRDROP_START = 1722366929;
const AIRDROP_END = 1724183052;
type AirdropData = {
amount: bigint,
start_from: number,
expire_at: number
};
const airDropValue: DictionaryValue<AirdropData> = {
serialize: (src, builder) => {
builder.storeCoins(src.amount);
builder.storeUint(src.start_from, 48);
builder.storeUint(src.expire_at, 48);
},
parse: (src) => {
return {
amount: src.loadCoins(),
start_from: src.loadUint(48),
expire_at: src.loadUint(48)
}
}
}
function convertToMerkleProof(c: Cell): Cell {
return beginCell()
.storeUint(3, 8)
.storeBuffer(c.hash(0))
.storeUint(c.depth(0), 16)
.storeRef(c)
.endCell({ exotic: true });
}
function convertToPrunedBranch(c: Cell): Cell {
return beginCell()
.storeUint(1, 8)
.storeUint(1, 8)
.storeBuffer(c.hash(0))
.storeUint(c.depth(0), 16)
.endCell({ exotic: true });
}
// for P packages it generates 3 * N wallets of each kind
// for each wallet it generates airdrop data with random amount from toNano("1") to toNano("23"), start_from = AIRDROP_START
// and expire_at linearly increased from AIRDROP_START to AIRDROP_END in each package and each wallet type
export async function generateWalletsWithAirdropData() {
const allWallets = [];
let workchain = 0;
let totalSupply = 0n;
let airdropData = Dictionary.empty(Dictionary.Keys.Address(), airDropValue);
for (let pack = 0; pack < P; pack++) {
let wallets = [];
for (let i = 0; i < N; i++) {
const mnemonic = await mnemonicNew();
const keyPair = await mnemonicToPrivateKey(mnemonic);
let wallet = WalletContractV3R2.create({ workchain, publicKey: keyPair.publicKey });
//generate airdrop data
let amount = toNano((Math.ceil(Math.random()*22) + 1).toString());
totalSupply += amount;
let start_from = AIRDROP_START;
let expire_at = Math.ceil(AIRDROP_START + (AIRDROP_END - AIRDROP_START) * (i + 1) / N);
airdropData.set(wallet.address, {amount, start_from, expire_at });
wallets.push([mnemonic, "v3r2", wallet.address.toString()]);
}
for (let i = 0; i < N; i++) {
const mnemonic = await mnemonicNew();
const keyPair = await mnemonicToPrivateKey(mnemonic);
let wallet = WalletContractV4.create({ workchain, publicKey: keyPair.publicKey });
//generate airdrop data
let amount = toNano((Math.ceil(Math.random()*22) + 1).toString());
totalSupply += amount;
let start_from = AIRDROP_START;
let expire_at = Math.ceil(AIRDROP_START + (AIRDROP_END - AIRDROP_START) * (i + 1) / N);
airdropData.set(wallet.address, {amount, start_from, expire_at });
wallets.push([mnemonic, "v4", wallet.address.toString()]);
}
for (let i = 0; i < N; i++) {
const mnemonic = await mnemonicNew();
const keyPair = await mnemonicToPrivateKey(mnemonic);
let wallet = WalletContractV5R1.create({ publicKey: keyPair.publicKey, walletId: { networkGlobalId: -3 } });
//generate airdrop data
let amount = toNano((Math.ceil(Math.random()*22) + 1).toString());
totalSupply += amount;
let start_from = AIRDROP_START;
let expire_at = Math.ceil(AIRDROP_START + (AIRDROP_END - AIRDROP_START) * (i + 1) / N);
airdropData.set(wallet.address, {amount, start_from, expire_at });
wallets.push([mnemonic, "v5r1", wallet.address.toString()]);
}
allWallets.push(wallets);
}
let airdropCell = beginCell().storeDictDirect(airdropData).endCell();
let merkleRoot = buff2bigint(airdropCell.hash(0));
//receiverProof = airdropData.generateMerkleProof(testReceiver.address);
// Now we want to iterate over all wallets and generate proof for each of them
// finally for each pack we want to store into csv file the following data
// mnemonic, wallet type, wallet address, airdrop amount, airdrop start_from, airdrop expire_at, receiver proof
for (let pack = 0; pack < P; pack++) {
let wallets = allWallets[pack];
let csvData = [];
for (let i = 0; i < wallets.length; i++) {
let mnemonic = wallets[i][0];
let type = wallets[i][1];
let address = wallets[i][2];
let airdrop = airdropData.get(Address.parse(address as string));
let amount = airdrop!.amount;
let start_from = airdrop!.start_from;
let expire_at = airdrop!.expire_at;
let receiverProof = airdropData.generateMerkleProof(Address.parse(address as string));
//serialize receiverProof: toBoc, then Buffer to base64
let serializedProof = receiverProof.toBoc().toString('base64');
csvData.push([mnemonic, type, address, amount, start_from, expire_at, serializedProof]);
}
// write csvData to csv file
// dont use csv libraries
// write csv header
let csv = "mnemonic, type, address, amount, start_from, expire_at, receiver_proof\n";
for (let i = 0; i < csvData.length; i++) {
csv += csvData[i].join(",") + "\n";
}
fs.writeFileSync(`wallets${pack}.csv`, csv);
}
// store serialized airdropCell to file as buffer
let serializedAirdropCell = airdropCell.toBoc();
fs.writeFileSync("airdropData.boc", serializedAirdropCell);
return {merkleRoot, allWallets, airdropData, totalSupply};
}
export async function run(provider: NetworkProvider) {
const isTestnet = provider.network() !== 'mainnet';
let data = await generateWalletsWithAirdropData();
const ui = provider.ui();
const adminAddress = await promptUserFriendlyAddress("Enter the address of the jetton owner (admin):", ui, isTestnet);
const jettonMetadataUri = await promptUrl("Enter jetton metadata uri (https://jettonowner.com/jetton.json)", ui)
let merkleRoot = data.merkleRoot;
let allWallets = data.allWallets;
let wallet_code_raw = await compile('JettonWallet');
const wallet_code = jettonWalletCodeFromLibrary(wallet_code_raw);
let minter_code = await compile('JettonMinter');
let minterContract = JettonMinter.createFromFullConfig({admin: adminAddress.address,
wallet_code:wallet_code,
merkle_root: merkleRoot,
jetton_content: jettonContentToCell({uri: jettonMetadataUri}),
supply: data.totalSupply,
transfer_admin: null,
}, minter_code);
let minter = provider.open(minterContract);
await minter.sendDeploy(provider.sender(), toNano("1.5"));
console.log("Minter deployed at address: ", minter.address.toString());
// save minter address to file minter.json
fs.writeFileSync("minter.json", JSON.stringify({address: minter.address.toString()}));
// now lets send 1 TON to first wallet of first package
let mnemonic = allWallets[0][0][0] as string[];
let keyPair = await mnemonicToPrivateKey(mnemonic);
let walletContract = WalletContractV3R2.create({ workchain: 0, publicKey: keyPair.publicKey });
let wallet = provider.open(walletContract);
// wait 40 seconds
console.log("Wallet address: ", wallet.address.toString());
await new Promise(resolve => setTimeout(resolve, 40000));
await provider.sender().send({
to: wallet.address,
value: toNano('1')
});
let walletSender = wallet.sender(keyPair.secretKey);
console.log("Wallet address: ", wallet.address.toString());
//now lets create jetton wallet owned by wallet
let jettonWalletContract = JettonWallet.createFromConfig({ownerAddress: wallet.address,
jettonMasterAddress: minter.address,
merkleRoot: merkleRoot,
}, wallet_code);
let jettonWallet = provider.open(jettonWalletContract);
//deserialize proof
let receiverProof = data.airdropData.generateMerkleProof(wallet.address);
const claimPayload = JettonWallet.claimPayload(receiverProof);
await jettonWallet.sendTransfer(walletSender, toNano('0.3'),
toNano('0.1'), wallet.address,
wallet.address, claimPayload, 1n);
}