137 lines
5.3 KiB
JavaScript
137 lines
5.3 KiB
JavaScript
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const test = require("node:test");
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const assert = require("node:assert/strict");
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const {
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ENC_PREFIX,
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MIN_V10_V11_CIPHERTEXT_BYTES,
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MIN_DPAPI_CIPHERTEXT_BYTES,
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encryptCredentialValue,
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decryptCredentialValue,
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looksLikeEncryptedCredential,
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} = require("./credentialBridge.cjs");
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function fakeSafeStorage({ decryptThrows = false } = {}) {
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const blobs = new Map();
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let nextId = 1;
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return {
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isEncryptionAvailable: () => true,
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encryptString(plaintext) {
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const id = `cipher-${nextId++}`;
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// Pad to a complete CBC-sized blob (header + one AES block).
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const body = Buffer.alloc(MIN_V10_V11_CIPHERTEXT_BYTES, 0);
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Buffer.from("v10", "utf8").copy(body, 0);
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Buffer.from(id, "utf8").copy(body, 3);
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blobs.set(body.toString("base64"), plaintext);
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return body;
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},
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decryptString(buffer) {
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if (decryptThrows) throw new Error("decrypt failed");
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const key = Buffer.from(buffer).toString("base64");
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if (!blobs.has(key)) throw new Error("unknown cipher");
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return blobs.get(key);
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},
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};
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}
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function completeCiphertextPlaceholder(seed = "stale-key-material") {
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const body = Buffer.alloc(MIN_V10_V11_CIPHERTEXT_BYTES, 0);
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Buffer.from("v10", "utf8").copy(body, 0);
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Buffer.from(seed, "utf8").copy(body, 3);
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return `${ENC_PREFIX}${body.toString("base64")}`;
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}
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test("looksLikeEncryptedCredential accepts complete CBC-sized v10 payloads", () => {
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assert.equal(looksLikeEncryptedCredential(completeCiphertextPlaceholder()), true);
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});
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test("looksLikeEncryptedCredential rejects impossible intermediate v10 lengths", () => {
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// 20–30 bytes starting with v10 cannot be CBC (19+16n) or GCM (>=31).
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const body = Buffer.alloc(24, 0);
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Buffer.from("v10", "utf8").copy(body, 0);
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assert.equal(looksLikeEncryptedCredential(`${ENC_PREFIX}${body.toString("base64")}`), false);
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});
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test("looksLikeEncryptedCredential accepts GCM-sized v10 payloads", () => {
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const body = Buffer.alloc(31, 0);
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Buffer.from("v10", "utf8").copy(body, 0);
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assert.equal(looksLikeEncryptedCredential(`${ENC_PREFIX}${body.toString("base64")}`), true);
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});
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test("looksLikeEncryptedCredential accepts real Windows DPAPI base64 prefixes", () => {
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// Version + provider GUID {df9d8cd0-1501-11d1-8c7a-00c04fc297eb} + payload.
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const body = Buffer.from([
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0x01, 0x00, 0x00, 0x00,
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0xd0, 0x8c, 0x9d, 0xdf, 0x01, 0x15, 0xd1, 0x11,
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0x8c, 0x7a, 0x00, 0xc0, 0x4f, 0xc2, 0x97, 0xeb,
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0xaa,
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]);
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const encoded = body.toString("base64");
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assert.equal(encoded.startsWith("AQAAANCMnd8"), true);
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assert.equal(looksLikeEncryptedCredential(`${ENC_PREFIX}${encoded}`), true);
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});
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test("looksLikeEncryptedCredential rejects version-only DPAPI-looking blobs", () => {
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const body = Buffer.alloc(MIN_DPAPI_CIPHERTEXT_BYTES, 0);
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body[0] = 0x01;
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body[4] = 0xd0;
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body[5] = 0x8c;
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assert.equal(looksLikeEncryptedCredential(`${ENC_PREFIX}${body.toString("base64")}`), false);
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});
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test("looksLikeEncryptedCredential rejects header-only enc:v1 payloads", () => {
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assert.equal(looksLikeEncryptedCredential(`${ENC_PREFIX}djEw`), false);
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assert.equal(looksLikeEncryptedCredential(`${ENC_PREFIX}not-real-ciphertext`), false);
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assert.equal(looksLikeEncryptedCredential("password"), false);
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});
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test("encrypt leaves undecryptable DPAPI enc:v1 ciphertext unchanged", () => {
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const storage = fakeSafeStorage({ decryptThrows: true });
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const body = Buffer.from([
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0x01, 0x00, 0x00, 0x00,
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0xd0, 0x8c, 0x9d, 0xdf, 0x01, 0x15, 0xd1, 0x11,
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0x8c, 0x7a, 0x00, 0xc0, 0x4f, 0xc2, 0x97, 0xeb,
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0xaa,
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]);
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const stale = `${ENC_PREFIX}${body.toString("base64")}`;
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assert.equal(encryptCredentialValue(stale, storage), stale);
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});
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test("encrypt leaves undecryptable complete enc:v1 ciphertext unchanged instead of wrapping again", () => {
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const storage = fakeSafeStorage({ decryptThrows: true });
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const stale = completeCiphertextPlaceholder("stale-key-material");
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const result = encryptCredentialValue(stale, storage);
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assert.equal(result, stale);
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});
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test("encrypt encrypts header-only enc:v1 coincidence instead of leaving it plaintext", () => {
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const storage = fakeSafeStorage();
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const coincidence = `${ENC_PREFIX}djEw`;
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const result = encryptCredentialValue(coincidence, storage);
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assert.notEqual(result, coincidence);
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assert.ok(result.startsWith(ENC_PREFIX));
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assert.equal(decryptCredentialValue(result, storage), coincidence);
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});
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test("encrypt still encrypts coincidental plaintext that starts with enc:v1:", () => {
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const storage = fakeSafeStorage();
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const coincidence = `${ENC_PREFIX}totally-plain-password`;
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const result = encryptCredentialValue(coincidence, storage);
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assert.notEqual(result, coincidence);
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assert.ok(result.startsWith(ENC_PREFIX));
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assert.equal(decryptCredentialValue(result, storage), coincidence);
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});
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test("encrypt round-trips plaintext and does not double-encrypt", () => {
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const storage = fakeSafeStorage();
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const once = encryptCredentialValue("secret", storage);
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const twice = encryptCredentialValue(once, storage);
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assert.equal(twice, once);
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assert.equal(decryptCredentialValue(once, storage), "secret");
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});
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test("decrypt returns ciphertext unchanged when safeStorage cannot decrypt", () => {
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const storage = fakeSafeStorage({ decryptThrows: true });
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const stale = completeCiphertextPlaceholder("stale");
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assert.equal(decryptCredentialValue(stale, storage), stale);
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});
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