// event.ts import { schnorr as schnorr2 } from "@noble/curves/secp256k1"; import { sha256 } from "@noble/hashes/sha256"; import { bytesToHex as bytesToHex2 } from "@noble/hashes/utils"; // keys.ts import { schnorr } from "@noble/curves/secp256k1"; import { bytesToHex } from "@noble/hashes/utils"; function getPublicKey(privateKey) { return bytesToHex(schnorr.getPublicKey(privateKey)); } // utils.ts var utf8Decoder = new TextDecoder("utf-8"); var utf8Encoder = new TextEncoder(); // event.ts var verifiedSymbol = Symbol("verified"); function finishEvent(t, privateKey) { const event = t; event.pubkey = getPublicKey(privateKey); event.id = getEventHash(event); event.sig = getSignature(event, privateKey); event[verifiedSymbol] = true; return event; } function serializeEvent(evt) { if (!validateEvent(evt)) throw new Error("can't serialize event with wrong or missing properties"); return JSON.stringify([0, evt.pubkey, evt.created_at, evt.kind, evt.tags, evt.content]); } function getEventHash(event) { let eventHash = sha256(utf8Encoder.encode(serializeEvent(event))); return bytesToHex2(eventHash); } var isRecord = (obj) => obj instanceof Object; function validateEvent(event) { if (!isRecord(event)) return false; if (typeof event.kind !== "number") return false; if (typeof event.content !== "string") return false; if (typeof event.created_at !== "number") return false; if (typeof event.pubkey !== "string") return false; if (!event.pubkey.match(/^[a-f0-9]{64}$/)) return false; if (!Array.isArray(event.tags)) return false; for (let i = 0; i < event.tags.length; i++) { let tag = event.tags[i]; if (!Array.isArray(tag)) return false; for (let j = 0; j < tag.length; j++) { if (typeof tag[j] === "object") return false; } } return true; } function getSignature(event, key) { return bytesToHex2(schnorr2.sign(getEventHash(event), key)); } // nip04.ts import { randomBytes } from "@noble/hashes/utils"; import { secp256k1 } from "@noble/curves/secp256k1"; import { base64 } from "@scure/base"; if (typeof crypto !== "undefined" && !crypto.subtle && crypto.webcrypto) { crypto.subtle = crypto.webcrypto.subtle; } async function encrypt(privkey, pubkey, text) { const key = secp256k1.getSharedSecret(privkey, "02" + pubkey); const normalizedKey = getNormalizedX(key); let iv = Uint8Array.from(randomBytes(16)); let plaintext = utf8Encoder.encode(text); let cryptoKey = await crypto.subtle.importKey("raw", normalizedKey, { name: "AES-CBC" }, false, ["encrypt"]); let ciphertext = await crypto.subtle.encrypt({ name: "AES-CBC", iv }, cryptoKey, plaintext); let ctb64 = base64.encode(new Uint8Array(ciphertext)); let ivb64 = base64.encode(new Uint8Array(iv.buffer)); return `${ctb64}?iv=${ivb64}`; } function getNormalizedX(key) { return key.slice(1, 33); } // nip47.ts function parseConnectionString(connectionString) { const { pathname, searchParams } = new URL(connectionString); const pubkey = pathname; const relay = searchParams.get("relay"); const secret = searchParams.get("secret"); if (!pubkey || !relay || !secret) { throw new Error("invalid connection string"); } return { pubkey, relay, secret }; } async function makeNwcRequestEvent({ pubkey, secret, invoice }) { const content = { method: "pay_invoice", params: { invoice } }; const encryptedContent = await encrypt(secret, pubkey, JSON.stringify(content)); const eventTemplate = { kind: 23194 /* NwcRequest */, created_at: Math.round(Date.now() / 1e3), content: encryptedContent, tags: [["p", pubkey]] }; return finishEvent(eventTemplate, secret); } export { makeNwcRequestEvent, parseConnectionString };