869 lines
27 KiB
JavaScript
869 lines
27 KiB
JavaScript
#!/usr/bin/env node
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// <sigh>
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// when the native secp256k1 is missing, the eccrypto library decides TO PRINT A MESSAGE TO STDOUT:
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// https://github.com/bitchan/eccrypto/blob/a4f4a5f85ef5aa1776dfa1b7801cad808264a19c/index.js#L23
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//
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// do you use a CLI tool that depends on that library and try to pipe the output
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// of the tool into another? tough luck
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//
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// for lack of a better way to stop this, we patch the console.info function to
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// drop that particular message...
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// </sigh>
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const info = console.info;
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console.info = function(x){
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if (x != "secp256k1 unavailable, reverting to browser version") {
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info(x)
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}
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};
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import yargs from "yargs";
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import { hideBin } from "yargs/helpers";
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import { fromBech32, toHex } from "@cosmjs/encoding";
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import { CONTRACTS as SDK_CONTRACTS } from "@certusone/wormhole-sdk";
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import {
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isTerraChain,
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assertEVMChain,
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setDefaultWasm,
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hexToUint8Array,
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getEmitterAddressSolana,
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getEmitterAddressTerra,
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getEmitterAddressEth,
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getEmitterAddressAlgorand,
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getEmitterAddressNear,
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isCosmWasmChain,
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} from "@certusone/wormhole-sdk";
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import { execute_solana } from "./solana";
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import {
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execute_evm,
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getImplementation,
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hijack_evm,
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query_contract_evm,
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setStorageAt,
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} from "./evm";
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import { execute_terra } from "./terra";
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import { execute_aptos } from "./aptos";
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import { execute_near } from "./near";
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import * as vaa from "./vaa";
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import { impossible, Payload, serialiseVAA, VAA } from "./vaa";
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import {
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assertChain,
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ChainName,
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CHAINS,
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toChainName,
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isEVMChain,
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toChainId,
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tryNativeToHexString,
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} from "@certusone/wormhole-sdk";
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import { ethers } from "ethers";
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import { NETWORKS } from "./networks";
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import base58 from "bs58";
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import { execute_algorand } from "./algorand";
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import { execute_injective } from "./injective";
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import { execute_xpla } from "./xpla";
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import { isOutdated } from "./cmds/update";
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setDefaultWasm("node");
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if (isOutdated()) {
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console.error("\x1b[33m%s\x1b[0m", "WARNING: 'worm' is out of date. Run 'worm update' to update.");
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}
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const GOVERNANCE_CHAIN = 1;
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const GOVERNANCE_EMITTER =
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"0000000000000000000000000000000000000000000000000000000000000004";
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// TODO: put this into the sdk when things have finalised
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const OVERRIDES = {
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MAINNET: {
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aptos: {
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token_bridge: "0x576410486a2da45eee6c949c995670112ddf2fbeedab20350d506328eefc9d4f",
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core: "0x5bc11445584a763c1fa7ed39081f1b920954da14e04b32440cba863d03e19625"
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}
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},
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TESTNET: {
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aptos: {
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token_bridge: "0x576410486a2da45eee6c949c995670112ddf2fbeedab20350d506328eefc9d4f",
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core: "0x5bc11445584a763c1fa7ed39081f1b920954da14e04b32440cba863d03e19625"
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}
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},
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DEVNET: {
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aptos: {
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token_bridge: "0x84a5f374d29fc77e370014dce4fd6a55b58ad608de8074b0be5571701724da31",
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core: "0xde0036a9600559e295d5f6802ef6f3f802f510366e0c23912b0655d972166017"
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}
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}
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}
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export const CONTRACTS = {
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MAINNET: { ...SDK_CONTRACTS.MAINNET, ...OVERRIDES.MAINNET },
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TESTNET: { ...SDK_CONTRACTS.TESTNET, ...OVERRIDES.TESTNET },
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DEVNET: { ...SDK_CONTRACTS.DEVNET, ...OVERRIDES.DEVNET },
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};
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function makeVAA(
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emitterChain: number,
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emitterAddress: string,
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signers: string[],
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p: Payload
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): VAA<Payload> {
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let v: VAA<Payload> = {
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version: 1,
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guardianSetIndex: 0,
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signatures: [],
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timestamp: 1,
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nonce: 1,
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emitterChain: emitterChain,
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emitterAddress: emitterAddress,
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sequence: BigInt(Math.floor(Math.random() * 100000000)),
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consistencyLevel: 0,
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payload: p,
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};
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v.signatures = vaa.sign(signers, v);
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return v;
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}
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yargs(hideBin(process.argv))
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//TODO(csongor): refactor all commands into the directory structure.
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.commandDir('cmds')
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////////////////////////////////////////////////////////////////////////////////
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// Generate
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.command(
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"generate",
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"generate VAAs (devnet and testnet only)",
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(yargs) => {
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return (
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yargs
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.option("guardian-secret", {
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alias: "g",
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required: true,
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describe: "Guardians' secret keys (CSV)",
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type: "string",
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})
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// Registration
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.command(
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"registration",
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"Generate registration VAA",
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(yargs) => {
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return yargs
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.option("chain", {
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alias: "c",
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describe: "Chain to register",
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type: "string",
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choices: Object.keys(CHAINS),
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required: true,
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})
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.option("contract-address", {
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alias: "a",
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describe: "Contract to register",
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type: "string",
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required: true,
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})
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.option("module", {
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alias: "m",
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describe: "Module to upgrade",
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type: "string",
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choices: ["NFTBridge", "TokenBridge"],
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required: true,
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});
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},
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(argv) => {
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let module = argv["module"] as "NFTBridge" | "TokenBridge";
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assertChain(argv["chain"]);
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let payload: vaa.PortalRegisterChain<typeof module> = {
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module,
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type: "RegisterChain",
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chain: 0,
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emitterChain: toChainId(argv["chain"]),
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emitterAddress: parseAddress(
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argv["chain"],
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argv["contract-address"]
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),
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};
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let v = makeVAA(
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GOVERNANCE_CHAIN,
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GOVERNANCE_EMITTER,
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argv["guardian-secret"].split(","),
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payload
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);
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console.log(serialiseVAA(v));
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}
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)
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// Upgrade
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.command(
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"upgrade",
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"Generate contract upgrade VAA",
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(yargs) => {
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return yargs
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.option("chain", {
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alias: "c",
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describe: "Chain to upgrade",
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type: "string",
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choices: Object.keys(CHAINS),
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required: true,
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})
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.option("contract-address", {
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alias: "a",
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describe: "Contract to upgrade to",
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type: "string",
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required: true,
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})
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.option("module", {
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alias: "m",
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describe: "Module to upgrade",
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type: "string",
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choices: ["Core", "NFTBridge", "TokenBridge"],
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required: true,
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});
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},
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(argv) => {
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assertChain(argv["chain"]);
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let module = argv["module"] as
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| "Core"
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| "NFTBridge"
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| "TokenBridge";
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let payload: vaa.ContractUpgrade = {
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module,
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type: "ContractUpgrade",
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chain: toChainId(argv["chain"]),
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address: parseCodeAddress(
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argv["chain"],
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argv["contract-address"]
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),
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};
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let v = makeVAA(
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GOVERNANCE_CHAIN,
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GOVERNANCE_EMITTER,
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argv["guardian-secret"].split(","),
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payload
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);
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console.log(serialiseVAA(v));
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}
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)
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.command(
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"attestation",
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"Generate a token attestation VAA",
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// TODO: putting 'any' here is a workaround for the following error:
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//
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// Type instantiation is excessively deep and possibly infinite.
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//
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// The type of the yargs builder grows too big for typescript's
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// liking, and there's no way to increase the limit. So we
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// overapproximate with the 'any' type which reduces the typechecking stack.
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// This is not a great solution, and instead we should move toward
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// breaking up the commands into multiple modules in the 'cmds' folder.
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(yargs: any) => {
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return yargs
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.option("emitter-chain", {
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alias: "e",
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describe: "Emitter chain of the VAA",
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type: "string",
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choices: Object.keys(CHAINS),
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required: true,
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})
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.option("emitter-address", {
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alias: "f",
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describe: "Emitter address of the VAA",
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type: "string",
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required: true,
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})
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.option("chain", {
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alias: "c",
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describe: "Token's chain",
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type: "string",
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choices: Object.keys(CHAINS),
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required: true,
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})
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.option("token-address", {
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alias: "a",
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describe: "Token's address",
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type: "string",
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required: true,
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})
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.option("decimals", {
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alias: "d",
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describe: "Token's decimals",
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type: "number",
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required: true,
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})
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.option("symbol", {
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alias: "s",
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describe: "Token's symbol",
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type: "string",
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required: true,
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})
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.option("name", {
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alias: "n",
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describe: "Token's name",
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type: "string",
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required: true,
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});
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},
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(argv) => {
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let emitter_chain = argv["emitter-chain"] as string;
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assertChain(argv["chain"]);
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assertChain(emitter_chain);
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let payload: vaa.TokenBridgeAttestMeta = {
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module: "TokenBridge",
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type: "AttestMeta",
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chain: 0,
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// TODO: remove these casts (only here because of the workaround above)
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tokenAddress: parseAddress(argv["chain"], argv["token-address"] as string),
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tokenChain: toChainId(argv["chain"]),
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decimals: argv["decimals"] as number,
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symbol: argv["symbol"] as string,
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name: argv["name"] as string
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}
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let v = makeVAA(
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toChainId(emitter_chain),
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parseAddress(emitter_chain, argv["emitter-address"] as string),
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argv["guardian-secret"].split(","),
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payload
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);
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console.log(serialiseVAA(v));
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}
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)
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);
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},
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(_) => {
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yargs.showHelp();
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}
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)
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////////////////////////////////////////////////////////////////////////////////
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// Misc
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.command(
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"parse <vaa>",
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"Parse a VAA (can be in either hex or base64 format)",
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(yargs) => {
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return yargs.positional("vaa", {
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describe: "vaa",
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type: "string",
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});
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},
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async (argv) => {
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let buf: Buffer;
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try {
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buf = Buffer.from(String(argv.vaa), "hex");
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if (buf.length == 0) {
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throw Error("Couldn't parse VAA as hex");
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}
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} catch (e) {
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buf = Buffer.from(String(argv.vaa), "base64");
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if (buf.length == 0) {
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throw Error("Couldn't parse VAA as base64 or hex");
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}
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}
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const parsed_vaa = vaa.parse(buf);
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let parsed_vaa_with_digest = parsed_vaa;
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parsed_vaa_with_digest["digest"] = vaa.vaaDigest(parsed_vaa);
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console.log(parsed_vaa_with_digest);
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}
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)
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.command(
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"recover <digest> <signature>",
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"Recover an address from a signature",
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(yargs) => {
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return yargs
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.positional("digest", {
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describe: "digest",
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type: "string",
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})
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.positional("signature", {
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describe: "signature",
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type: "string",
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});
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},
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async (argv) => {
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console.log(
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ethers.utils.recoverAddress(hex(argv["digest"]), hex(argv["signature"]))
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);
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}
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)
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.command(
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"contract <network> <chain> <module>",
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"Print contract address",
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(yargs) => {
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return yargs
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.positional("network", {
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describe: "network",
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type: "string",
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choices: ["mainnet", "testnet", "devnet"],
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})
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.positional("chain", {
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describe: "Chain to query",
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type: "string",
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choices: Object.keys(CHAINS),
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})
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.positional("module", {
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describe: "Module to query",
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type: "string",
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choices: ["Core", "NFTBridge", "TokenBridge"],
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})
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.option("emitter", {
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alias: "e",
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describe: "Print in emitter address format",
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type: "boolean",
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default: false,
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required: false,
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});
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},
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async (argv) => {
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assertChain(argv["chain"]);
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const network = argv.network.toUpperCase();
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if (
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network !== "MAINNET" &&
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network !== "TESTNET" &&
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network !== "DEVNET"
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) {
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throw Error(`Unknown network: ${network}`);
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}
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let chain = argv["chain"];
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let module = argv["module"] as "Core" | "NFTBridge" | "TokenBridge";
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let addr = "";
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switch (module) {
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case "Core":
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addr = CONTRACTS[network][chain]["core"];
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break;
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case "NFTBridge":
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addr = CONTRACTS[network][chain]["nft_bridge"];
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break;
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case "TokenBridge":
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addr = CONTRACTS[network][chain]["token_bridge"];
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break;
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default:
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impossible(module);
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}
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if (argv["emitter"]) {
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if (chain === "solana" || chain === "pythnet") {
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// TODO: Create an isSolanaChain()
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addr = await getEmitterAddressSolana(addr);
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} else if (isCosmWasmChain(chain)) {
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addr = await getEmitterAddressTerra(addr);
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} else if (chain === "algorand") {
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addr = getEmitterAddressAlgorand(BigInt(addr));
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} else if (chain === "near") {
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addr = await getEmitterAddressNear(addr);
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} else {
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addr = getEmitterAddressEth(addr);
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}
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}
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console.log(addr);
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}
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)
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.command(
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"chain-id <chain>",
|
|
"Print the wormhole chain ID integer associated with the specified chain name",
|
|
(yargs) => {
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return yargs.positional("chain", {
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describe: "Chain to query",
|
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type: "string",
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choices: Object.keys(CHAINS),
|
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});
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},
|
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async (argv) => {
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assertChain(argv["chain"]);
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console.log(toChainId(argv["chain"]));
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}
|
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)
|
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.command(
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"rpc <network> <chain>",
|
|
"Print RPC address",
|
|
(yargs) => {
|
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return yargs
|
|
.positional("network", {
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describe: "network",
|
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type: "string",
|
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choices: ["mainnet", "testnet", "devnet"],
|
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})
|
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.positional("chain", {
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describe: "Chain to query",
|
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type: "string",
|
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choices: Object.keys(CHAINS),
|
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});
|
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},
|
|
async (argv) => {
|
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assertChain(argv["chain"]);
|
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const network = argv.network.toUpperCase();
|
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if (
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network !== "MAINNET" &&
|
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network !== "TESTNET" &&
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network !== "DEVNET"
|
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) {
|
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throw Error(`Unknown network: ${network}`);
|
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}
|
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console.log(NETWORKS[network][argv["chain"]].rpc);
|
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}
|
|
)
|
|
////////////////////////////////////////////////////////////////////////////////
|
|
// Evm utilities
|
|
.command(
|
|
"evm",
|
|
"EVM utilites",
|
|
(yargs) => {
|
|
return yargs
|
|
.option("rpc", {
|
|
describe: "RPC endpoint",
|
|
type: "string",
|
|
required: false,
|
|
})
|
|
.command(
|
|
"address-from-secret <secret>",
|
|
"Compute a 20 byte eth address from a 32 byte private key",
|
|
(yargs) => {
|
|
return yargs.positional("secret", {
|
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type: "string",
|
|
describe: "Secret key (32 bytes)",
|
|
});
|
|
},
|
|
(argv) => {
|
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console.log(ethers.utils.computeAddress(argv["secret"]));
|
|
}
|
|
)
|
|
.command(
|
|
"storage-update",
|
|
"Update a storage slot on an EVM fork during testing (anvil or hardhat)",
|
|
(yargs) => {
|
|
return yargs
|
|
.option("contract-address", {
|
|
alias: "a",
|
|
describe: "Contract address",
|
|
type: "string",
|
|
required: true,
|
|
})
|
|
.option("storage-slot", {
|
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alias: "k",
|
|
describe: "Storage slot to modify",
|
|
type: "string",
|
|
required: true,
|
|
})
|
|
.option("value", {
|
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alias: "v",
|
|
describe: "Value to write into the slot (32 bytes)",
|
|
type: "string",
|
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required: true,
|
|
});
|
|
},
|
|
async (argv) => {
|
|
const result = await setStorageAt(
|
|
argv["rpc"],
|
|
evm_address(argv["contract-address"]),
|
|
argv["storage-slot"],
|
|
["uint256"],
|
|
[argv["value"]]
|
|
);
|
|
console.log(result);
|
|
}
|
|
)
|
|
.command("chains", "Return all EVM chains", async (_) => {
|
|
console.log(
|
|
Object.values(CHAINS)
|
|
.map((id) => toChainName(id))
|
|
.filter((name) => isEVMChain(name))
|
|
.join(" ")
|
|
);
|
|
})
|
|
.command(
|
|
"info",
|
|
"Query info about the on-chain state of the contract",
|
|
(yargs) => {
|
|
return yargs
|
|
.option("chain", {
|
|
alias: "c",
|
|
describe: "Chain to query",
|
|
type: "string",
|
|
choices: Object.keys(CHAINS),
|
|
required: true,
|
|
})
|
|
.option("module", {
|
|
alias: "m",
|
|
describe: "Module to query",
|
|
type: "string",
|
|
choices: ["Core", "NFTBridge", "TokenBridge"],
|
|
required: true,
|
|
})
|
|
.option("network", {
|
|
alias: "n",
|
|
describe: "network",
|
|
type: "string",
|
|
choices: ["mainnet", "testnet", "devnet"],
|
|
required: true,
|
|
})
|
|
.option("contract-address", {
|
|
alias: "a",
|
|
describe: "Contract to query (override config)",
|
|
type: "string",
|
|
required: false,
|
|
})
|
|
.option("implementation-only", {
|
|
alias: "i",
|
|
describe: "Only query implementation (faster)",
|
|
type: "boolean",
|
|
default: false,
|
|
required: false,
|
|
});
|
|
},
|
|
async (argv) => {
|
|
assertChain(argv["chain"]);
|
|
assertEVMChain(argv["chain"]);
|
|
const network = argv.network.toUpperCase();
|
|
if (
|
|
network !== "MAINNET" &&
|
|
network !== "TESTNET" &&
|
|
network !== "DEVNET"
|
|
) {
|
|
throw Error(`Unknown network: ${network}`);
|
|
}
|
|
let module = argv["module"] as "Core" | "NFTBridge" | "TokenBridge";
|
|
let rpc = argv["rpc"] ?? NETWORKS[network][argv["chain"]].rpc;
|
|
if (argv["implementation-only"]) {
|
|
console.log(
|
|
await getImplementation(
|
|
network,
|
|
argv["chain"],
|
|
module,
|
|
argv["contract-address"],
|
|
rpc
|
|
)
|
|
);
|
|
} else {
|
|
console.log(
|
|
JSON.stringify(
|
|
await query_contract_evm(
|
|
network,
|
|
argv["chain"],
|
|
module,
|
|
argv["contract-address"],
|
|
rpc
|
|
),
|
|
null,
|
|
2
|
|
)
|
|
);
|
|
}
|
|
}
|
|
)
|
|
.command(
|
|
"hijack",
|
|
"Override the guardian set of the core bridge contract during testing (anvil or hardhat)",
|
|
(yargs) => {
|
|
return yargs
|
|
.option("core-contract-address", {
|
|
alias: "a",
|
|
describe: "Core contract address",
|
|
type: "string",
|
|
default: CONTRACTS.MAINNET.ethereum.core,
|
|
})
|
|
.option("guardian-address", {
|
|
alias: "g",
|
|
required: true,
|
|
describe: "Guardians' public addresses (CSV)",
|
|
type: "string",
|
|
})
|
|
.option("guardian-set-index", {
|
|
alias: "i",
|
|
required: false,
|
|
describe:
|
|
"New guardian set index (if unspecified, default to overriding the current index)",
|
|
type: "number",
|
|
});
|
|
},
|
|
async (argv) => {
|
|
const guardian_addresses = argv["guardian-address"].split(",");
|
|
let rpc = argv["rpc"] ?? NETWORKS.DEVNET.ethereum.rpc;
|
|
await hijack_evm(
|
|
rpc,
|
|
argv["core-contract-address"],
|
|
guardian_addresses,
|
|
argv["guardian-set-index"]
|
|
);
|
|
}
|
|
);
|
|
},
|
|
(_) => {
|
|
yargs.showHelp();
|
|
}
|
|
)
|
|
////////////////////////////////////////////////////////////////////////////////
|
|
// Submit
|
|
.command(
|
|
"submit <vaa>",
|
|
"Execute a VAA",
|
|
(yargs) => {
|
|
return yargs
|
|
.positional("vaa", {
|
|
describe: "vaa",
|
|
type: "string",
|
|
required: true,
|
|
})
|
|
.option("chain", {
|
|
alias: "c",
|
|
describe: "chain name",
|
|
type: "string",
|
|
choices: Object.keys(CHAINS),
|
|
required: false,
|
|
})
|
|
.option("network", {
|
|
alias: "n",
|
|
describe: "network",
|
|
type: "string",
|
|
choices: ["mainnet", "testnet", "devnet"],
|
|
required: true,
|
|
})
|
|
.option("contract-address", {
|
|
alias: "a",
|
|
describe: "Contract to submit VAA to (override config)",
|
|
type: "string",
|
|
required: false,
|
|
})
|
|
.option("rpc", {
|
|
describe: "RPC endpoint",
|
|
type: "string",
|
|
required: false,
|
|
});
|
|
},
|
|
async (argv) => {
|
|
const vaa_hex = String(argv.vaa);
|
|
const buf = Buffer.from(vaa_hex, "hex");
|
|
const parsed_vaa = vaa.parse(buf);
|
|
|
|
vaa.assertKnownPayload(parsed_vaa);
|
|
|
|
console.log(parsed_vaa.payload);
|
|
|
|
const network = argv.network.toUpperCase();
|
|
if (
|
|
network !== "MAINNET" &&
|
|
network !== "TESTNET" &&
|
|
network !== "DEVNET"
|
|
) {
|
|
throw Error(`Unknown network: ${network}`);
|
|
}
|
|
|
|
// We figure out the target chain to submit the VAA to.
|
|
// The VAA might specify this itself (for example a contract upgrade VAA
|
|
// or a token transfer VAA), in which case we just submit the VAA to
|
|
// that target chain.
|
|
//
|
|
// If the VAA does not have a target (e.g. chain registration VAAs or
|
|
// guardian set upgrade VAAs), we require the '--chain' argument to be
|
|
// set on the command line.
|
|
//
|
|
// As a sanity check, in the event that the VAA does specify a target
|
|
// and the '--chain' argument is also set, we issue an error if those
|
|
// two don't agree instead of silently taking the VAA's target chain.
|
|
|
|
// get VAA chain
|
|
const vaa_chain_id = parsed_vaa.payload.chain;
|
|
assertChain(vaa_chain_id);
|
|
const vaa_chain = toChainName(vaa_chain_id);
|
|
|
|
// get chain from command line arg
|
|
const cli_chain = argv["chain"];
|
|
|
|
let chain: ChainName;
|
|
if (cli_chain !== undefined) {
|
|
assertChain(cli_chain);
|
|
if (vaa_chain !== "unset" && cli_chain !== vaa_chain) {
|
|
throw Error(
|
|
`Specified target chain (${cli_chain}) does not match VAA target chain (${vaa_chain})`
|
|
);
|
|
}
|
|
chain = cli_chain;
|
|
} else {
|
|
chain = vaa_chain;
|
|
}
|
|
|
|
if (chain === "unset") {
|
|
throw Error(
|
|
"This VAA does not specify the target chain, please provide it by hand using the '--chain' flag."
|
|
);
|
|
} else if (isEVMChain(chain)) {
|
|
await execute_evm(
|
|
parsed_vaa.payload,
|
|
buf,
|
|
network,
|
|
chain,
|
|
argv["contract-address"],
|
|
argv["rpc"]
|
|
);
|
|
} else if (isTerraChain(chain)) {
|
|
await execute_terra(parsed_vaa.payload, buf, network, chain);
|
|
} else if (chain === "solana" || chain === "pythnet") {
|
|
await execute_solana(parsed_vaa, buf, network, chain);
|
|
} else if (chain === "algorand") {
|
|
await execute_algorand(
|
|
parsed_vaa.payload,
|
|
hexToUint8Array(vaa_hex),
|
|
network
|
|
);
|
|
} else if (chain === "near") {
|
|
await execute_near(parsed_vaa.payload, vaa_hex, network);
|
|
} else if (chain === "injective") {
|
|
await execute_injective(parsed_vaa.payload, buf, network);
|
|
} else if (chain === "xpla") {
|
|
await execute_xpla(parsed_vaa.payload, buf, network);
|
|
} else if (chain === "osmosis") {
|
|
throw Error("OSMOSIS is not supported yet");
|
|
} else if (chain === "sui") {
|
|
throw Error("SUI is not supported yet");
|
|
} else if (chain === "aptos") {
|
|
await execute_aptos(parsed_vaa.payload, buf, network, argv["contract-address"], argv["rpc"]);
|
|
} else if (chain === "wormholechain") {
|
|
throw Error("Wormhole Chain is not supported yet");
|
|
} else {
|
|
// If you get a type error here, hover over `chain`'s type and it tells you
|
|
// which cases are not handled
|
|
impossible(chain);
|
|
}
|
|
}
|
|
)
|
|
.strict()
|
|
.demandCommand()
|
|
.argv;
|
|
|
|
function hex(x: string): string {
|
|
return ethers.utils.hexlify(x, { allowMissingPrefix: true });
|
|
}
|
|
|
|
function evm_address(x: string): string {
|
|
return hex(x).substring(2).padStart(64, "0");
|
|
}
|
|
|
|
function parseAddress(chain: ChainName, address: string): string {
|
|
if (chain === "unset") {
|
|
throw Error("Chain unset");
|
|
} else if (isEVMChain(chain)) {
|
|
return "0x" + evm_address(address);
|
|
} else if (isCosmWasmChain(chain)) {
|
|
return "0x" + toHex(fromBech32(address).data).padStart(64, "0");
|
|
} else if (chain === "solana" || chain === "pythnet") {
|
|
return "0x" + toHex(base58.decode(address)).padStart(64, "0");
|
|
} else if (chain === "algorand") {
|
|
// TODO: is there a better native format for algorand?
|
|
return "0x" + evm_address(address);
|
|
} else if (chain === "near") {
|
|
return "0x" + hex(address).substring(2).padStart(64, "0");
|
|
} else if (chain === "osmosis") {
|
|
throw Error("OSMOSIS is not supported yet");
|
|
} else if (chain === "sui") {
|
|
throw Error("SUI is not supported yet");
|
|
} else if (chain === "aptos") {
|
|
// TODO: is there a better native format for aptos?
|
|
return "0x" + evm_address(address);
|
|
} else if (chain === "wormholechain") {
|
|
return "0x" + tryNativeToHexString(address, chain);
|
|
} else {
|
|
impossible(chain);
|
|
}
|
|
}
|
|
|
|
function parseCodeAddress(chain: ChainName, address: string): string {
|
|
if (isTerraChain(chain)) {
|
|
return "0x" + parseInt(address, 10).toString(16).padStart(64, "0");
|
|
} else {
|
|
return parseAddress(chain, address);
|
|
}
|
|
}
|