Adds a "Generate a new key" button to the checkout SSH key section that creates an Ed25519 keypair entirely in the browser using Web Crypto API. The public key auto-fills the form field, and the private key is presented for download/copy with a clear "save now" warning. Co-Authored-By: Claude Opus 4.6 <noreply@anthropic.com>
125 lines
3.8 KiB
JavaScript
125 lines
3.8 KiB
JavaScript
/**
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* VirtFusion SSH Ed25519 Key Generator
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*
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* Client-side Ed25519 keypair generation using Web Crypto API.
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* Produces OpenSSH-format public and private keys.
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*/
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function vfConcatArrays() {
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var total = 0;
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for (var i = 0; i < arguments.length; i++) total += arguments[i].length;
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var result = new Uint8Array(total);
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var offset = 0;
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for (var i = 0; i < arguments.length; i++) {
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result.set(arguments[i], offset);
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offset += arguments[i].length;
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}
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return result;
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}
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function vfSshEncodeUint32(value) {
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return new Uint8Array([
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(value >>> 24) & 0xff,
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(value >>> 16) & 0xff,
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(value >>> 8) & 0xff,
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value & 0xff
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]);
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}
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function vfSshEncodeString(data) {
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if (typeof data === 'string') {
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data = new TextEncoder().encode(data);
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}
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return vfConcatArrays(vfSshEncodeUint32(data.length), data);
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}
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function vfArrayToBase64(uint8Array) {
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var binary = '';
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for (var i = 0; i < uint8Array.length; i++) {
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binary += String.fromCharCode(uint8Array[i]);
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}
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return btoa(binary);
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}
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function vfEncodeSSHPublicKey(pubKeyBytes) {
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var blob = vfConcatArrays(
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vfSshEncodeString('ssh-ed25519'),
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vfSshEncodeString(pubKeyBytes)
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);
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return 'ssh-ed25519 ' + vfArrayToBase64(blob);
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}
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function vfEncodeSSHPrivateKey(seed, pubKeyBytes) {
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var keyType = vfSshEncodeString('ssh-ed25519');
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var pubBlob = vfConcatArrays(keyType, vfSshEncodeString(pubKeyBytes));
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var checkInt = crypto.getRandomValues(new Uint8Array(4));
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var privKey = vfConcatArrays(seed, pubKeyBytes); // 64 bytes: seed || pubkey
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var privateSection = vfConcatArrays(
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checkInt,
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checkInt,
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vfSshEncodeString('ssh-ed25519'),
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vfSshEncodeString(pubKeyBytes),
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vfSshEncodeString(privKey),
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vfSshEncodeString('') // empty comment
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);
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// Pad to 8-byte boundary with 1,2,3,4,5...
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var padLen = 8 - (privateSection.length % 8);
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if (padLen < 8) {
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var padding = new Uint8Array(padLen);
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for (var i = 0; i < padLen; i++) padding[i] = i + 1;
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privateSection = vfConcatArrays(privateSection, padding);
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}
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var authMagic = new TextEncoder().encode('openssh-key-v1\0');
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var body = vfConcatArrays(
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authMagic,
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vfSshEncodeString('none'), // cipher
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vfSshEncodeString('none'), // kdf
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vfSshEncodeString(''), // kdf options
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vfSshEncodeUint32(1), // number of keys
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vfSshEncodeString(pubBlob),
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vfSshEncodeString(privateSection)
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);
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var b64 = vfArrayToBase64(body);
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var lines = ['-----BEGIN OPENSSH PRIVATE KEY-----'];
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for (var i = 0; i < b64.length; i += 70) {
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lines.push(b64.substring(i, i + 70));
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}
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lines.push('-----END OPENSSH PRIVATE KEY-----');
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lines.push('');
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return lines.join('\n');
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}
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async function vfGenerateSSHKey() {
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var keyPair = await crypto.subtle.generateKey('Ed25519', true, ['sign', 'verify']);
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var pubRaw = await crypto.subtle.exportKey('raw', keyPair.publicKey);
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var pubKeyBytes = new Uint8Array(pubRaw);
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// PKCS#8 for Ed25519 is exactly 48 bytes; bytes 16-47 are the 32-byte seed
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var privPkcs8 = await crypto.subtle.exportKey('pkcs8', keyPair.privateKey);
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var privBytes = new Uint8Array(privPkcs8);
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var seed = privBytes.slice(16, 48);
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return {
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publicKey: vfEncodeSSHPublicKey(pubKeyBytes),
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privateKey: vfEncodeSSHPrivateKey(seed, pubKeyBytes)
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};
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}
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function vfDownloadFile(filename, content) {
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var blob = new Blob([content], { type: 'application/octet-stream' });
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var url = URL.createObjectURL(blob);
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var a = document.createElement('a');
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a.href = url;
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a.download = filename;
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document.body.appendChild(a);
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a.click();
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document.body.removeChild(a);
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URL.revokeObjectURL(url);
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}
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