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send_multigpu_meridian.ts
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send_multigpu_meridian.ts
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import { Address, BitReader, BitString, Cell, TupleReader, beginCell, external, internal, parseTuple, storeMessage, toNano } from '@ton/core'
import { KeyPair, getSecureRandomBytes, keyPairFromSeed, mnemonicToWalletKey } from '@ton/crypto'
import axios from 'axios'
// import { LiteClient, LiteRoundRobinEngine, LiteSingleEngine } from 'ton-lite-client'
import { TonClient4 } from '@ton/ton';
import { execSync, exec as exec_callback, spawn, ChildProcess } from 'child_process';
import fs from 'fs'
import { WalletContractV4 } from '@ton/ton';
import dotenv from 'dotenv'
import { givers100, givers1000, givers10000, givers100000 } from './givers_meridian'
import arg from 'arg'
import { LiteClient, LiteSingleEngine, LiteRoundRobinEngine } from 'ton-lite-client';
import { getLiteClient, getTon4Client, getTonCenterClient, getTonapiClient } from './client';
import { HighloadWalletV2 } from '@scaleton/highload-wallet';
import { OpenedContract } from '@ton/core';
import { Api } from 'tonapi-sdk-js';
import { promisify } from 'util'
const exec = promisify(exec_callback)
dotenv.config({ path: 'config.txt.txt' })
dotenv.config({ path: '.env.txt' })
dotenv.config()
dotenv.config({ path: 'config.txt' })
type ApiObj = LiteClient | TonClient4 | Api<unknown>
const args = arg({
'--givers': Number, // 100 1000 10000
'--api': String, // lite, tonhub, tonapi
'--bin': String, // cuda, opencl or path to miner
'--gpu-count': Number, // GPU COUNT!!!
'--timeout': Number, // Timeout for mining in seconds
'--allow-shards': Boolean, // if true - allows mining to other shards
'-c': String, // blockchain config
})
let givers = givers1000
if (args['--givers']) {
const val = args['--givers']
const allowed = [100, 1000, 10000, 100000]
if (!allowed.includes(val)) {
throw new Error('Invalid --givers argument')
}
switch (val) {
case 100:
givers = givers100
console.log('Using givers 100')
break
case 1000:
givers = givers1000
console.log('Using givers 1 000')
break
case 10000:
givers = givers10000
console.log('Using givers 10 000')
break
case 100000:
givers = givers100000
console.log('Using givers 100 000')
break
}
} else {
console.log('Using givers 1 000')
}
let bin = '.\\pow-miner-cuda.exe'
if (args['--bin']) {
const argBin = args['--bin']
if (argBin === 'cuda') {
bin = '.\\pow-miner-cuda.exe'
} else if (argBin === 'opencl' || argBin === 'amd') {
bin = '.\\pow-miner-opencl.exe'
} else {
bin = argBin
}
}
console.log('Using bin', bin)
const gpus = args['--gpu-count'] ?? 1
const timeout = args['--timeout'] ?? 5
const allowShards = args['--allow-shards'] ?? false
console.log('Using GPUs count', gpus)
console.log('Using timeout', timeout)
const mySeed = process.env.SEED as string
const totalDiff = BigInt('115792089237277217110272752943501742914102634520085823245724998868298727686144')
const envAddress = process.env.TARGET_ADDRESS
let TARGET_ADDRESS: string | undefined = undefined
if (envAddress) {
try {
TARGET_ADDRESS = Address.parse(envAddress).toString({ urlSafe: true, bounceable: false })
}
catch (e) {
console.log('Couldnt parse target address')
process.exit(1)
}
}
let bestGiver: { address: string, coins: number } = { address: '', coins: 0 }
async function updateBestGivers(liteClient: ApiObj, myAddress: Address) {
const giver = givers[Math.floor(Math.random() * givers.length)]
bestGiver = {
address: giver.address,
coins: giver.reward,
}
}
async function getPowInfo(liteClient: ApiObj, address: Address): Promise<[bigint, bigint, bigint]> {
if (liteClient instanceof TonClient4) {
const lastInfo = await CallForSuccess(() => liteClient.getLastBlock())
const powInfo = await CallForSuccess(() => liteClient.runMethod(lastInfo.last.seqno, address, 'get_mining_status', []))
// console.log('pow info', powInfo, powInfo.result)
const reader = new TupleReader(powInfo.result)
const complexity = reader.readBigNumber()
const iterations = reader.readBigNumber()
const seed = reader.readBigNumber()
const A = reader.readBigNumber()
const B = reader.readBigNumber()
const C = reader.readBigNumber()
const left = reader.readBigNumber()
// const left = BigInt(powInfo.stack[6].num as string)
if (left < BigInt(1)) {
throw new Error('no mrdn left')
}
return [seed, complexity, iterations]
} else if (liteClient instanceof LiteClient) {
const lastInfo = await liteClient.getMasterchainInfo()
const powInfo = await liteClient.runMethod(address, 'get_mining_status', Buffer.from([]), lastInfo.last)
const powStack = Cell.fromBase64(powInfo.result as string)
const stack = parseTuple(powStack)
// console.log('pow stack', stack)
const reader = new TupleReader(stack)
const complexity = reader.readBigNumber()
const iterations = reader.readBigNumber()
const seed = reader.readBigNumber()
const A = reader.readBigNumber()
const B = reader.readBigNumber()
const C = reader.readBigNumber()
const left = reader.readBigNumber()
// const left = BigInt(powInfo.stack[6].num as string)
if (left < BigInt(1)) {
throw new Error('no mrdn left')
}
return [seed, complexity, iterations]
} else if (liteClient instanceof Api) {
try {
const powInfo = await CallForSuccess(
() => liteClient.blockchain.execGetMethodForBlockchainAccount(address.toRawString(), 'get_mining_status', {}),
50,
300)
// console.log('pow', powInfo.stack)
const complexity = BigInt(powInfo.stack[0].num as string)
const seed = BigInt(powInfo.stack[2].num as string)
const iterations = BigInt(powInfo.stack[1].num as string)
const left = BigInt(powInfo.stack[6].num as string)
if (left < BigInt(1)) {
throw new Error('no mrdn left')
}
// console.log('pow stack', powInfo.stack)
return [seed, complexity, iterations]
} catch (e) {
console.log('ls error', e)
}
}
throw new Error('invalid client')
}
let go = true
let i = 0
let success = 0
let lastMinedSeed: bigint = BigInt(0)
let start = Date.now()
async function main() {
const minerOk = await testMiner(gpus)
if (!minerOk) {
console.log('Your miner is not working')
console.log('Check if you use correct bin (cuda, amd).')
console.log('If it doesn\'t help, try to run test_cuda or test_opencl script, to find out issue')
process.exit(1)
}
let liteClient: ApiObj
if (!args['--api']) {
console.log('Using TonHub API')
liteClient = await getTon4Client()
} else {
if (args['--api'] === 'lite') {
console.log('Using LiteServer API')
liteClient = await getLiteClient(args['-c'] ?? 'https://ton-blockchain.github.io/global.config.json')
} else if (args['--api'] === 'tonapi') {
console.log('Using TonApi')
liteClient = await getTonapiClient()
} else {
console.log('Using TonHub API')
liteClient = await getTon4Client()
}
}
const keyPair = await mnemonicToWalletKey(mySeed.split(' '))
const wallet = WalletContractV4.create({
workchain: 0,
publicKey: keyPair.publicKey
})
if (args['--wallet'] === 'highload') {
console.log('Using highload wallet', wallet.address.toString({ bounceable: false, urlSafe: true }))
} else {
console.log('Using v4r2 wallet', wallet.address.toString({ bounceable: false, urlSafe: true }))
}
const targetAddress = TARGET_ADDRESS ?? wallet.address.toString({ bounceable: false, urlSafe: true })
console.log('Target address:', targetAddress)
console.log('Date, time, status, seed, attempts, successes, timespent')
try {
await updateBestGivers(liteClient, wallet.address)
} catch (e) {
console.log('error', e)
throw Error('no givers')
}
setInterval(() => {
updateBestGivers(liteClient, wallet.address)
}, 5000)
while (go) {
const giverAddress = bestGiver.address
const [seed, complexity, iterations] = await getPowInfo(liteClient, Address.parse(giverAddress))
if (seed === lastMinedSeed) {
// console.log('Wating for a new seed')
updateBestGivers(liteClient, wallet.address)
await delay(200)
continue
}
const promises: any[] = []
let handlers: ChildProcess[] = []
const mined: Buffer | undefined = await new Promise(async (resolve, reject) => {
let rest = gpus
for (let i = 0; i < gpus; i++) {
const randomName = (await getSecureRandomBytes(8)).toString('hex') + '.boc'
const path = `bocs/${randomName}`
const command = `-g ${i} -F 128 -t ${timeout} ${targetAddress} ${seed} ${complexity} 999999999999 ${giverAddress} ${path}`
const procid = spawn(bin, command.split(' '), { stdio: "pipe" });
// procid.on('message', (m) => {
// console.log('message', m)
// })
// procid.stdout.on('data', (data) => {
// console.log(`stdout: ${data}`);
// })
// procid.stderr.on('data', (data) => {
// console.log(`err: ${data}`);
// })
handlers.push(procid)
procid.on('exit', () => {
let mined: Buffer | undefined = undefined
try {
const exists = fs.existsSync(path)
if (exists) {
mined = fs.readFileSync(path)
resolve(mined)
lastMinedSeed = seed
fs.rmSync(path)
for (const handle of handlers) {
handle.kill('SIGINT')
}
}
} catch (e) {
//
console.log('not mined', e)
} finally {
if (--rest === 0) {
resolve(undefined)
}
}
})
}
})
if (!mined) {
console.log(`${formatTime()}: not mined`, seed.toString(16).slice(0, 4), i++, success, Math.floor((Date.now() - start) / 1000))
}
if (mined) {
const [newSeed] = await getPowInfo(liteClient, Address.parse(giverAddress))
if (newSeed !== seed) {
console.log('Mined already too late seed')
continue
}
console.log(`${formatTime()}: mined`, seed.toString(16).slice(0, 4), i++, ++success, Math.floor((Date.now() - start) / 1000))
let seqno = 0
if (liteClient instanceof LiteClient || liteClient instanceof TonClient4) {
let w = liteClient.open(wallet)
try {
seqno = await CallForSuccess(() => w.getSeqno())
} catch (e) {
//
}
} else {
const res = await CallForSuccess(
() => (liteClient as Api<unknown>).blockchain.execGetMethodForBlockchainAccount(wallet.address.toRawString(), "seqno", {}),
50,
250
)
if (res.success) {
seqno = Number(BigInt(res.stack[0].num as string))
}
}
await sendMinedBoc(wallet, seqno, keyPair, giverAddress, Cell.fromBoc(mined)[0].asSlice().loadRef())
}
}
}
main()
async function sendMinedBoc(
wallet: WalletContractV4,
seqno: number,
keyPair: KeyPair,
giverAddress: string,
boc: Cell
) {
if (args['--api'] === 'tonapi') {
const tonapiClient = await getTonapiClient()
const transfer = wallet.createTransfer({
seqno,
secretKey: keyPair.secretKey,
messages: [internal({
to: giverAddress,
value: toNano('0.08'),
bounce: true,
body: boc,
})],
sendMode: 3 as any,
})
const msg = beginCell().store(storeMessage(external({
to: wallet.address,
body: transfer
}))).endCell()
let k = 0
let lastError: unknown
while (k < 20) {
try {
await tonapiClient.blockchain.sendBlockchainMessage({
boc: msg.toBoc().toString('base64'),
})
break
// return res
} catch (e: any) {
// lastError = err
k++
if (e.status === 429) {
await delay(200)
} else {
// console.log('tonapi error')
k = 20
break
}
}
}
return
}
const wallets: OpenedContract<WalletContractV4>[] = []
const ton4Client = await getTon4Client()
const w2 = ton4Client.open(wallet)
wallets.push(w2)
if (args['--api'] === 'lite') {
const liteServerClient = await getLiteClient(args['-c'] ?? 'https://ton-blockchain.github.io/global.config.json')
const w1 = liteServerClient.open(wallet)
wallets.push(w1)
}
for (let i = 0; i < 3; i++) {
for (const w of wallets) {
w.sendTransfer({
seqno,
secretKey: keyPair.secretKey,
messages: [internal({
to: giverAddress,
value: toNano('0.08'),
bounce: true,
body: boc,
})],
sendMode: 3 as any,
}).catch(e => {
//
})
}
}
}
async function testMiner(gpus: number): Promise<boolean> {
for (let i = 0; i < gpus; i++) {
const gpu = i
const randomName = (await getSecureRandomBytes(8)).toString('hex') + '.boc'
const path = `bocs/${randomName}`
const command = `${bin} -g ${gpu} -F 128 -t ${timeout} kQBWkNKqzCAwA9vjMwRmg7aY75Rf8lByPA9zKXoqGkHi8SM7 229760179690128740373110445116482216837 53919893334301279589334030174039261347274288845081144962207220498400000000000 10000000000 kQBWkNKqzCAwA9vjMwRmg7aY75Rf8lByPA9zKXoqGkHi8SM7 ${path}`
try {
const output = execSync(command, { encoding: 'utf-8', stdio: "pipe" }); // the default is 'buffer'
} catch (e) {
}
let mined: Buffer | undefined = undefined
try {
mined = fs.readFileSync(path)
fs.rmSync(path)
} catch (e) {
//
}
if (!mined) {
return false
}
}
return true
}
// Function to call ton api untill we get response.
// Because testnet is pretty unstable we need to make sure response is final
// eslint-disable-next-line @typescript-eslint/no-explicit-any
export async function CallForSuccess<T extends (...args: any[]) => any>(
toCall: T,
attempts = 20,
delayMs = 100
): Promise<ReturnType<T>> {
if (typeof toCall !== 'function') {
throw new Error('unknown input')
}
let i = 0
let lastError: unknown
while (i < attempts) {
try {
const res = await toCall()
return res
} catch (err) {
lastError = err
i++
await delay(delayMs)
}
}
console.log('error after attempts', i)
throw lastError
}
export function delay(ms: number) {
return new Promise((resolve) => {
setTimeout(resolve, ms)
})
}
function formatTime() {
return new Date().toLocaleTimeString('en-US', {
hour12: false,
hour: "numeric",
minute: "numeric",
day: "numeric",
month: "numeric",
year: "numeric",
second: "numeric"
});
}