mirror of
https://github.com/tutao/tutanota.git
synced 2025-10-19 16:03:43 +00:00
165 lines
6.1 KiB
JavaScript
165 lines
6.1 KiB
JavaScript
/**
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* Utility to codesign the finished Installers.
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* This enables the App to verify the authenticity of the Updates, and
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* enables the User to verify the authenticity of their manually downloaded
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* Installer with the openssl utility.
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*
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* ATTENTION MAC USERS: Safari started to automatically unpack zip files and then delete them,
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* so you'll have to look in your trash to get the original file.
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* once we switch to dmg this won't be necessary anymore, but:
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* https://github.com/electron-userland/electron-builder/issues/2199
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*
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* The installer signatures are created in the following files:
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* https://app.tuta.com/desktop/win-sig.bin (for Windows)
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* https://app.tuta.com/desktop/mac-sig-dmg.bin (for Mac .dmg installer)
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* https://app.tuta.com/desktop/mac-sig-zip.bin (for Mac .zip update file)
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* https://app.tuta.com/desktop/linux-sig.bin (for Linux)
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*
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* They allow verifying the initial download via
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*
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* # get public key from github
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* wget https://raw.githubusercontent.com/tutao/tutanota/master/tutao-pub.pem
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* or
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* curl https://raw.githubusercontent.com/tutao/tutanota/master/tutao-pub.pem > tutao-pub.pem
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* # validate the signature against public key
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* openssl dgst -sha512 -verify tutao-pub.pem -signature signature.bin tutanota.installer.ext
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*
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* openssl should Print 'Verified OK' after the second command if the signature matches the certificate
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*
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* This prevents an attacker from getting forged Installers/updates installed/applied
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*
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* get pem cert from pfx:
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* openssl pkcs12 -in comodo-codesign.pfx -clcerts -nokeys -out tutao-cert.pem
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*
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* get private key from pfx:
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* openssl pkcs12 -in comodo-codesign.pfx -nocerts -out tutao.pem
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*
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* get public key from pem cert:
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* openssl x509 -pubkey -noout -in tutao-cert.pem > tutao-pub.pem
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* */
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import path from "node:path"
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import fs from "node:fs"
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import { spawnSync } from "node:child_process"
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import jsyaml from "js-yaml"
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import crypto from "node:crypto"
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import { base64ToUint8Array } from "@tutao/tutanota-utils"
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const SIG_ALGO = "RSASSA-PKCS1-v1_5"
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const DIGEST = "SHA-512"
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/**
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* Creates a signature on the given application file, writes it to signatureFileName and adds the signature to the yaml file.
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* Requires environment variable HSM_USER_PIN to be set to the HSM user pin.
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*
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* if the env var DEBUG_SIGN is set to the path to a directory containing a non-encrypted PEM-encoded private key (filename test.key) and the
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* matching PEM-encoded public key (test.pubkey), it will be used instead of the HSM.
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*
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* @param filePath The application file to sign. Needs to be the full path to the file.
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* @param signatureFileName The signature will be written to that file. Must not contain any path.
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* @param ymlFileName This yaml file will be adapted to include the signature. Must not contain any path.
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*/
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export async function sign(filePath, signatureFileName, ymlFileName) {
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console.log("Signing", path.basename(filePath), "...")
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const dir = path.dirname(filePath)
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const sigOutPath = process.env.DEBUG_SIGN
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? await signWithOwnPrivateKey(filePath, path.join(process.env.DEBUG_SIGN, "test.key"), signatureFileName, dir)
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: await signWithHSM(filePath, signatureFileName, dir)
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if (ymlFileName) {
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console.log(`attaching signature to yml...`, ymlFileName)
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const ymlPath = path.join(dir, ymlFileName)
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let yml = jsyaml.load(fs.readFileSync(ymlPath, "utf8"))
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const signatureContent = fs.readFileSync(sigOutPath)
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yml.signature = signatureContent.toString("base64")
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fs.writeFileSync(ymlPath, jsyaml.dump(yml), "utf8")
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console.log("signing done")
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} else {
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console.log("Not attaching signature to yml")
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}
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}
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async function signWithHSM(filePath, signatureFileName, dir) {
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console.log("sign with HSM")
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const result = spawnSync(
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"/usr/bin/pkcs11-tool",
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[
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"-s",
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"-m",
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"SHA512-RSA-PKCS",
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"--token-label",
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"SmartCard-HSM (UserPIN)",
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"--id",
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"10", // this is the index of the installer verification key
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"--pin",
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"env:HSM_USER_PIN",
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"-i",
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path.basename(filePath),
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"-o",
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signatureFileName,
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],
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{
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cwd: dir,
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stdio: [process.stdin, process.stdout, process.stderr],
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},
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)
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if (result.status !== 0) {
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throw new Error("error during hsm signing process" + JSON.stringify(result))
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}
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return path.join(dir, signatureFileName)
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}
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/**
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* takes a pem-encoded private key and returns the raw der-encoded data
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* @param key {string} private key pem
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* @returns {ArrayBuffer} raw binary der-encoded private key
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*/
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function pemToBinaryDer(key) {
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const pemContentsB64 = key.replace("-----BEGIN PRIVATE KEY-----", "").replace("-----END PRIVATE KEY-----", "").replace(/\s/g, "")
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return base64ToUint8Array(pemContentsB64).buffer
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}
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/**
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* import a key from a pem-string and import it as a WebCrypto CryptoKey
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* that can be used for signing
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* @param pem
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* @returns {Promise<CryptoKey>}
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*/
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async function importPrivateKey(pem) {
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return crypto.webcrypto.subtle.importKey("pkcs8", pemToBinaryDer(pem), { name: SIG_ALGO, hash: DIGEST }, true, ["sign"])
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}
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/**
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* sign the contents of a file with a private key available in PEM format.
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*
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* a private key to use here can be created with:
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* import crypto from "node:crypto"
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*
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* const {privateKey, publicKey} = await crypto.webcrypto.subtle.generateKey({
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* name: 'RSASSA-PKCS1-v1_5',
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* modulusLength: 4096,
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* publicExponent: new Uint8Array([1, 0, 1]),
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* hash: "SHA-512",
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* }, true, ['sign', 'verify'])
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*
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* returns the full path to a file containing the signature in binary format
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*/
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async function signWithOwnPrivateKey(fileToSign, privateKeyPemFile, signatureOutFileName, dir) {
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console.log("sign with private key")
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const sigOutPath = path.join(dir, signatureOutFileName)
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try {
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const fileData = fs.readFileSync(fileToSign) // buffer
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const privateKeyPem = fs.readFileSync(privateKeyPemFile, { encoding: "utf-8" })
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const cryptoKey = await importPrivateKey(privateKeyPem)
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const sig = await crypto.webcrypto.subtle.sign({ name: SIG_ALGO, hash: DIGEST }, cryptoKey, fileData)
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fs.writeFileSync(sigOutPath, Buffer.from(sig), null)
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} catch (e) {
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console.log(`Error signing ${fileToSign}:`, e.message, e.stack)
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process.exit(1)
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}
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return sigOutPath
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}
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