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5 changes: 2 additions & 3 deletions test/fixtures/wpt/WebCryptoAPI/WEB_FEATURES.yml
Original file line numberDiff line numberDiff line change
@@ -1,3 +1,2 @@
features:
- name: web-cryptography
files: '**'
rules:
- "**": [web-cryptography]
128 changes: 128 additions & 0 deletions test/fixtures/wpt/WebCryptoAPI/derive_bits_keys/cfrg_curves.js
Original file line numberDiff line numberDiff line change
@@ -0,0 +1,128 @@
async function defineCfrgTests(algorithmName, operation) {
const subtle = self.crypto.subtle;
const isDeriveBits = operation === "deriveBits";

kSmallOrderPoint[algorithmName].forEach(test => {
promise_test(async() => {
let privateKey;
let publicKey;
let derived;
let error;

try {
privateKey = await subtle.importKey(
"pkcs8",
pkcs8[algorithmName],
{name: algorithmName},
false,
["deriveBits", "deriveKey"]
);
publicKey = await subtle.importKey(
"spki",
test.vector,
{name: algorithmName},
false,
[]
);
derived = isDeriveBits
? await subtle.deriveBits(
{name: algorithmName, public: publicKey},
privateKey,
8 * sizes[algorithmName]
)
: await subtle.deriveKey(
{name: algorithmName, public: publicKey},
privateKey,
{name: "HMAC", hash: "SHA-256", length: 256},
true,
["sign", "verify"]
);
} catch (caught) {
error = caught;
}

assert_not_equals(privateKey, undefined, "Private key should be valid.");
assert_not_equals(publicKey, undefined, "Public key should be valid.");
assert_not_equals(error, undefined, "Operation should fail.");
assert_equals(
error.name,
"OperationError",
"Should throw correct error, not " + error.name + ": " + error.message + "."
);
assert_equals(derived, undefined, "Operation succeeded, but should not have.");
}, algorithmName +
(isDeriveBits ? " key derivation" : " deriveBits") +
" checks for all-zero value result with a key of order " + test.order);
});

if (!isDeriveBits) {
promise_test(async() => {
const key = await subtle.generateKey(
{name: algorithmName},
true,
["deriveKey", "deriveBits"]
);
const derived = await subtle.deriveKey(
{name: algorithmName, public: key.publicKey},
key.privateKey,
{name: "HMAC", hash: "SHA-256", length: 256},
true,
["sign", "verify"]
);
assert_not_equals(derived, undefined, "Key derivation failed.");
}, "Key derivation using a " + algorithmName + " generated keys.");
}

const noUsage = isDeriveBits ? ["deriveKey"] : ["deriveBits"];
const [
privateKey,
noUsagePrivateKey,
publicKey,
ecdhPublicKey,
] = await Promise.all([
subtle.importKey(
"pkcs8",
pkcs8[algorithmName],
{name: algorithmName},
false,
["deriveBits", "deriveKey"]
),
subtle.importKey(
"pkcs8",
pkcs8[algorithmName],
{name: algorithmName},
false,
noUsage
),
subtle.importKey(
"spki",
spki[algorithmName],
{name: algorithmName},
false,
[]
),
subtle.importKey(
"spki",
ecSPKI,
{name: "ECDH", namedCurve: "P-256"},
false,
[]
),
]);

registerDeriveTests({
operation,
algorithmName,
mixedCaseName: algorithmName.toLowerCase(),
size: sizes[algorithmName],
derivation: derivations[algorithmName],
privateKey,
publicKey,
noUsagePrivateKey,
invalidPublicKeys: [{
name: algorithmName + " mismatched algorithms",
key: ecdhPublicKey,
}],
missingPublicLabel: algorithmName + " missing public property",
});
}
224 changes: 2 additions & 222 deletions test/fixtures/wpt/WebCryptoAPI/derive_bits_keys/cfrg_curves_bits.js
Original file line numberDiff line numberDiff line change
@@ -1,227 +1,7 @@
function define_tests_25519() {
return define_tests("X25519");
return defineCfrgTests("X25519", "deriveBits");
}

function define_tests_448() {
return define_tests("X448");
}

function define_tests(algorithmName) {
// May want to test prefixed implementations.
var subtle = self.crypto.subtle;

// Verify the derive functions perform checks against the all-zero value results,
// ensuring small-order points are rejected.
// https://www.rfc-editor.org/rfc/rfc7748#section-6.1
{
kSmallOrderPoint[algorithmName].forEach(function(test) {
promise_test(async() => {
let derived;
let privateKey;
let publicKey;
try {
privateKey = await subtle.importKey("pkcs8", pkcs8[algorithmName],
{name: algorithmName},
false, ["deriveBits", "deriveKey"]);
publicKey = await subtle.importKey("spki", test.vector,
{name: algorithmName},
false, [])
derived = await subtle.deriveBits({name: algorithmName, public: publicKey}, privateKey, 8 * sizes[algorithmName]);
} catch (err) {
assert_true(privateKey !== undefined, "Private key should be valid.");
assert_true(publicKey !== undefined, "Public key should be valid.");
assert_equals(err.name, "OperationError", "Should throw correct error, not " + err.name + ": " + err.message + ".");
}
assert_equals(derived, undefined, "Operation succeeded, but should not have.");
}, algorithmName + " key derivation checks for all-zero value result with a key of order " + test.order);
});
}

return importKeys(pkcs8, spki, sizes)
.then(function(results) {
publicKeys = results.publicKeys;
privateKeys = results.privateKeys;
noDeriveBitsKeys = results.noDeriveBitsKeys;
ecdhKeys = results.ecdhKeys;

{
// Basic success case
promise_test(function(test) {
return subtle.deriveBits({name: algorithmName, public: publicKeys[algorithmName]}, privateKeys[algorithmName], 8 * sizes[algorithmName])
.then(function(derivation) {
assert_true(equalBuffers(derivation, derivations[algorithmName]), "Derived correct bits");
}, function(err) {
assert_unreached("deriveBits failed with error " + err.name + ": " + err.message);
});
}, algorithmName + " good parameters");

// Case insensitivity check
promise_test(function(test) {
return subtle.deriveBits({name: algorithmName.toLowerCase(), public: publicKeys[algorithmName]}, privateKeys[algorithmName], 8 * sizes[algorithmName])
.then(function(derivation) {
assert_true(equalBuffers(derivation, derivations[algorithmName]), "Derived correct bits");
}, function(err) {
assert_unreached("deriveBits failed with error " + err.name + ": " + err.message);
});
}, algorithmName + " mixed case parameters");

// Shorter than entire derivation per algorithm
promise_test(function(test) {
return subtle.deriveBits({name: algorithmName, public: publicKeys[algorithmName]}, privateKeys[algorithmName], 8 * sizes[algorithmName] - 32)
.then(function(derivation) {
assert_true(equalBuffers(derivation, derivations[algorithmName], 8 * sizes[algorithmName] - 32), "Derived correct bits");
}, function(err) {
assert_unreached("deriveBits failed with error " + err.name + ": " + err.message);
});
}, algorithmName + " short result");

// Non-multiple of 8
promise_test(function(test) {
return subtle.deriveBits({name: algorithmName, public: publicKeys[algorithmName]}, privateKeys[algorithmName], 8 * sizes[algorithmName] - 11)
.then(function(derivation) {
assert_true(equalBuffers(derivation, derivations[algorithmName], 8 * sizes[algorithmName] - 11), "Derived correct bits");
}, function(err) {
assert_unreached("deriveBits failed with error " + err.name + ": " + err.message);
});
}, algorithmName + " non-multiple of 8 bits");

// Errors to test:

// - missing public property TypeError
promise_test(function(test) {
return subtle.deriveBits({name: algorithmName}, privateKeys[algorithmName], 8 * sizes[algorithmName])
.then(function(derivation) {
assert_unreached("deriveBits succeeded but should have failed with TypeError");
}, function(err) {
assert_equals(err.name, "TypeError", "Should throw correct error, not " + err.name + ": " + err.message);
});
}, algorithmName + " missing public property");

// - Non CryptoKey public property TypeError
promise_test(function(test) {
return subtle.deriveBits({name: algorithmName, public: {message: "Not a CryptoKey"}}, privateKeys[algorithmName], 8 * sizes[algorithmName])
.then(function(derivation) {
assert_unreached("deriveBits succeeded but should have failed with TypeError");
}, function(err) {
assert_equals(err.name, "TypeError", "Should throw correct error, not " + err.name + ": " + err.message);
});
}, algorithmName + " public property of algorithm is not a CryptoKey");

// - wrong algorithm
promise_test(function(test) {
return subtle.deriveBits({name: algorithmName, public: ecdhKeys[algorithmName]}, privateKeys[algorithmName], 8 * sizes[algorithmName])
.then(function(derivation) {
assert_unreached("deriveBits succeeded but should have failed with InvalidAccessError");
}, function(err) {
assert_equals(err.name, "InvalidAccessError", "Should throw correct error, not " + err.name + ": " + err.message);
});
}, algorithmName + " mismatched algorithms");

// - No deriveBits usage in baseKey InvalidAccessError
promise_test(function(test) {
return subtle.deriveBits({name: algorithmName, public: publicKeys[algorithmName]}, noDeriveBitsKeys[algorithmName], 8 * sizes[algorithmName])
.then(function(derivation) {
assert_unreached("deriveBits succeeded but should have failed with InvalidAccessError");
}, function(err) {
assert_equals(err.name, "InvalidAccessError", "Should throw correct error, not " + err.name + ": " + err.message);
});
}, algorithmName + " no deriveBits usage for base key");

// - Use public key for baseKey InvalidAccessError
promise_test(function(test) {
return subtle.deriveBits({name: algorithmName, public: publicKeys[algorithmName]}, publicKeys[algorithmName], 8 * sizes[algorithmName])
.then(function(derivation) {
assert_unreached("deriveBits succeeded but should have failed with InvalidAccessError");
}, function(err) {
assert_equals(err.name, "InvalidAccessError", "Should throw correct error, not " + err.name + ": " + err.message);
});
}, algorithmName + " base key is not a private key");

// - Use private key for public property InvalidAccessError
promise_test(function(test) {
return subtle.deriveBits({name: algorithmName, public: privateKeys[algorithmName]}, privateKeys[algorithmName], 8 * sizes[algorithmName])
.then(function(derivation) {
assert_unreached("deriveBits succeeded but should have failed with InvalidAccessError");
}, function(err) {
assert_equals(err.name, "InvalidAccessError", "Should throw correct error, not " + err.name + ": " + err.message);
});
}, algorithmName + " public property value is a private key");

// - Use secret key for public property InvalidAccessError
promise_test(function(test) {
return subtle.generateKey({name: "AES-CBC", length: 128}, true, ["encrypt", "decrypt"])
.then(function(secretKey) {
return subtle.deriveBits({name: algorithmName, public: secretKey}, privateKeys[algorithmName], 8 * sizes[algorithmName])
.then(function(derivation) {
assert_unreached("deriveBits succeeded but should have failed with InvalidAccessError");
}, function(err) {
assert_equals(err.name, "InvalidAccessError", "Should throw correct error, not " + err.name + ": " + err.message);
});
});
}, algorithmName + " public property value is a secret key");

// - Length greater than possible for particular curves OperationError
promise_test(function(test) {
return subtle.deriveBits({name: algorithmName, public: publicKeys[algorithmName]}, privateKeys[algorithmName], 8 * sizes[algorithmName] + 8)
.then(function(derivation) {
assert_unreached("deriveBits succeeded but should have failed with OperationError");
}, function(err) {
assert_equals(err.name, "OperationError", "Should throw correct error, not " + err.name + ": " + err.message);
});
}, algorithmName + " asking for too many bits");
}
});

function importKeys(pkcs8, spki, sizes) {
var privateKeys = {};
var publicKeys = {};
var noDeriveBitsKeys = {};
var ecdhPublicKeys = {};

var promises = [];
{
var operation = subtle.importKey("pkcs8", pkcs8[algorithmName],
{name: algorithmName},
false, ["deriveBits", "deriveKey"])
.then(function(key) {
privateKeys[algorithmName] = key;
}, function (err) {
privateKeys[algorithmName] = null;
});
promises.push(operation);
}
{
var operation = subtle.importKey("pkcs8", pkcs8[algorithmName],
{name: algorithmName},
false, ["deriveKey"])
.then(function(key) {
noDeriveBitsKeys[algorithmName] = key;
}, function (err) {
noDeriveBitsKeys[algorithmName] = null;
});
promises.push(operation);
}
{
var operation = subtle.importKey("spki", spki[algorithmName],
{name: algorithmName},
false, [])
.then(function(key) {
publicKeys[algorithmName] = key;
}, function (err) {
publicKeys[algorithmName] = null;
});
promises.push(operation);
}
{
var operation = subtle.importKey("spki", ecSPKI,
{name: "ECDH", namedCurve: "P-256"},
false, [])
.then(function(key) {
ecdhPublicKeys[algorithmName] = key;
});
}
return Promise.all(promises)
.then(function(results) {return {privateKeys: privateKeys, publicKeys: publicKeys, noDeriveBitsKeys: noDeriveBitsKeys, ecdhKeys: ecdhPublicKeys}});
}

return defineCfrgTests("X448", "deriveBits");
}
Original file line numberDiff line numberDiff line change
@@ -1,6 +1,8 @@
// META: title=WebCryptoAPI: deriveKey() Using ECDH with CFRG Elliptic Curves
// META: script=../util/helpers.js
// META: script=cfrg_curves_bits_fixtures.js
// META: script=derive.js
// META: script=cfrg_curves.js
// META: script=cfrg_curves_bits.js

// Define subtests from a `promise_test` to ensure the harness does not
Expand Down
Original file line numberDiff line numberDiff line change
@@ -1,6 +1,8 @@
// META: title=WebCryptoAPI: deriveKey() Using ECDH with CFRG Elliptic Curves
// META: script=../util/helpers.js
// META: script=cfrg_curves_bits_fixtures.js
// META: script=derive.js
// META: script=cfrg_curves.js
// META: script=cfrg_curves_bits.js

// Define subtests from a `promise_test` to ensure the harness does not
Expand Down
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, 'i'); if (__m === '*' || __re.test(location.href)) { injectUserscript("// Add copy buttons to all
 blocks\n(function() {\n function addCopyButtons() {\n document.querySelectorAll('pre code').forEach(function(codeBlock) {\n if (codeBlock.parentElement.hasAttribute('data-copy-added')) return;\n codeBlock.parentElement.setAttribute('data-copy-added', 'true');\n \n var btn = document.createElement('button');\n btn.textContent = 'Copy';\n btn.style.cssText = 'position:absolute;top:4px;right:4px;padding:2px 8px;font-size:11px;background:#4ecdc4;border:none;border-radius:4px;color:#1a1a2e;cursor:pointer;opacity:0.7;transition:opacity 0.2s;';\n btn.onmouseover = function() { this.style.opacity = '1'; };\n btn.onmouseout = function() { this.style.opacity = '0.7'; };\n btn.onclick = function() {\n navigator.clipboard.writeText(codeBlock.textContent).then(function() {\n btn.textContent = 'Copied!';\n setTimeout(function() { btn.textContent = 'Copy'; }, 1500);\n });\n };\n codeBlock.parentElement.style.position = 'relative';\n codeBlock.parentElement.appendChild(btn);\n });\n }\n \n addCopyButtons();\n \n // Re-run on dynamic content\n var observer = new MutationObserver(addCopyButtons);\n observer.observe(document.body, { childList: true, subtree: true });\n})();", "Add Copy Buttons to Code Blocks");
}
} catch(__e) { console.warn('[Userscript:Add Copy Buttons to Code Blocks]', __e); }
})();
(function(){
try {
var __m = "github.com";
var __re = new RegExp('^' + "github\\.com" + '
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5 changes: 2 additions & 3 deletions test/fixtures/wpt/WebCryptoAPI/WEB_FEATURES.yml
Original file line numberDiff line numberDiff line change
@@ -1,3 +1,2 @@
features:
- name: web-cryptography
files: '**'
rules:
- "**": [web-cryptography]
128 changes: 128 additions & 0 deletions test/fixtures/wpt/WebCryptoAPI/derive_bits_keys/cfrg_curves.js
Original file line numberDiff line numberDiff line change
@@ -0,0 +1,128 @@
async function defineCfrgTests(algorithmName, operation) {
const subtle = self.crypto.subtle;
const isDeriveBits = operation === "deriveBits";

kSmallOrderPoint[algorithmName].forEach(test => {
promise_test(async() => {
let privateKey;
let publicKey;
let derived;
let error;

try {
privateKey = await subtle.importKey(
"pkcs8",
pkcs8[algorithmName],
{name: algorithmName},
false,
["deriveBits", "deriveKey"]
);
publicKey = await subtle.importKey(
"spki",
test.vector,
{name: algorithmName},
false,
[]
);
derived = isDeriveBits
? await subtle.deriveBits(
{name: algorithmName, public: publicKey},
privateKey,
8 * sizes[algorithmName]
)
: await subtle.deriveKey(
{name: algorithmName, public: publicKey},
privateKey,
{name: "HMAC", hash: "SHA-256", length: 256},
true,
["sign", "verify"]
);
} catch (caught) {
error = caught;
}

assert_not_equals(privateKey, undefined, "Private key should be valid.");
assert_not_equals(publicKey, undefined, "Public key should be valid.");
assert_not_equals(error, undefined, "Operation should fail.");
assert_equals(
error.name,
"OperationError",
"Should throw correct error, not " + error.name + ": " + error.message + "."
);
assert_equals(derived, undefined, "Operation succeeded, but should not have.");
}, algorithmName +
(isDeriveBits ? " key derivation" : " deriveBits") +
" checks for all-zero value result with a key of order " + test.order);
});

if (!isDeriveBits) {
promise_test(async() => {
const key = await subtle.generateKey(
{name: algorithmName},
true,
["deriveKey", "deriveBits"]
);
const derived = await subtle.deriveKey(
{name: algorithmName, public: key.publicKey},
key.privateKey,
{name: "HMAC", hash: "SHA-256", length: 256},
true,
["sign", "verify"]
);
assert_not_equals(derived, undefined, "Key derivation failed.");
}, "Key derivation using a " + algorithmName + " generated keys.");
}

const noUsage = isDeriveBits ? ["deriveKey"] : ["deriveBits"];
const [
privateKey,
noUsagePrivateKey,
publicKey,
ecdhPublicKey,
] = await Promise.all([
subtle.importKey(
"pkcs8",
pkcs8[algorithmName],
{name: algorithmName},
false,
["deriveBits", "deriveKey"]
),
subtle.importKey(
"pkcs8",
pkcs8[algorithmName],
{name: algorithmName},
false,
noUsage
),
subtle.importKey(
"spki",
spki[algorithmName],
{name: algorithmName},
false,
[]
),
subtle.importKey(
"spki",
ecSPKI,
{name: "ECDH", namedCurve: "P-256"},
false,
[]
),
]);

registerDeriveTests({
operation,
algorithmName,
mixedCaseName: algorithmName.toLowerCase(),
size: sizes[algorithmName],
derivation: derivations[algorithmName],
privateKey,
publicKey,
noUsagePrivateKey,
invalidPublicKeys: [{
name: algorithmName + " mismatched algorithms",
key: ecdhPublicKey,
}],
missingPublicLabel: algorithmName + " missing public property",
});
}
224 changes: 2 additions & 222 deletions test/fixtures/wpt/WebCryptoAPI/derive_bits_keys/cfrg_curves_bits.js
Original file line numberDiff line numberDiff line change
@@ -1,227 +1,7 @@
function define_tests_25519() {
return define_tests("X25519");
return defineCfrgTests("X25519", "deriveBits");
}

function define_tests_448() {
return define_tests("X448");
}

function define_tests(algorithmName) {
// May want to test prefixed implementations.
var subtle = self.crypto.subtle;

// Verify the derive functions perform checks against the all-zero value results,
// ensuring small-order points are rejected.
// https://www.rfc-editor.org/rfc/rfc7748#section-6.1
{
kSmallOrderPoint[algorithmName].forEach(function(test) {
promise_test(async() => {
let derived;
let privateKey;
let publicKey;
try {
privateKey = await subtle.importKey("pkcs8", pkcs8[algorithmName],
{name: algorithmName},
false, ["deriveBits", "deriveKey"]);
publicKey = await subtle.importKey("spki", test.vector,
{name: algorithmName},
false, [])
derived = await subtle.deriveBits({name: algorithmName, public: publicKey}, privateKey, 8 * sizes[algorithmName]);
} catch (err) {
assert_true(privateKey !== undefined, "Private key should be valid.");
assert_true(publicKey !== undefined, "Public key should be valid.");
assert_equals(err.name, "OperationError", "Should throw correct error, not " + err.name + ": " + err.message + ".");
}
assert_equals(derived, undefined, "Operation succeeded, but should not have.");
}, algorithmName + " key derivation checks for all-zero value result with a key of order " + test.order);
});
}

return importKeys(pkcs8, spki, sizes)
.then(function(results) {
publicKeys = results.publicKeys;
privateKeys = results.privateKeys;
noDeriveBitsKeys = results.noDeriveBitsKeys;
ecdhKeys = results.ecdhKeys;

{
// Basic success case
promise_test(function(test) {
return subtle.deriveBits({name: algorithmName, public: publicKeys[algorithmName]}, privateKeys[algorithmName], 8 * sizes[algorithmName])
.then(function(derivation) {
assert_true(equalBuffers(derivation, derivations[algorithmName]), "Derived correct bits");
}, function(err) {
assert_unreached("deriveBits failed with error " + err.name + ": " + err.message);
});
}, algorithmName + " good parameters");

// Case insensitivity check
promise_test(function(test) {
return subtle.deriveBits({name: algorithmName.toLowerCase(), public: publicKeys[algorithmName]}, privateKeys[algorithmName], 8 * sizes[algorithmName])
.then(function(derivation) {
assert_true(equalBuffers(derivation, derivations[algorithmName]), "Derived correct bits");
}, function(err) {
assert_unreached("deriveBits failed with error " + err.name + ": " + err.message);
});
}, algorithmName + " mixed case parameters");

// Shorter than entire derivation per algorithm
promise_test(function(test) {
return subtle.deriveBits({name: algorithmName, public: publicKeys[algorithmName]}, privateKeys[algorithmName], 8 * sizes[algorithmName] - 32)
.then(function(derivation) {
assert_true(equalBuffers(derivation, derivations[algorithmName], 8 * sizes[algorithmName] - 32), "Derived correct bits");
}, function(err) {
assert_unreached("deriveBits failed with error " + err.name + ": " + err.message);
});
}, algorithmName + " short result");

// Non-multiple of 8
promise_test(function(test) {
return subtle.deriveBits({name: algorithmName, public: publicKeys[algorithmName]}, privateKeys[algorithmName], 8 * sizes[algorithmName] - 11)
.then(function(derivation) {
assert_true(equalBuffers(derivation, derivations[algorithmName], 8 * sizes[algorithmName] - 11), "Derived correct bits");
}, function(err) {
assert_unreached("deriveBits failed with error " + err.name + ": " + err.message);
});
}, algorithmName + " non-multiple of 8 bits");

// Errors to test:

// - missing public property TypeError
promise_test(function(test) {
return subtle.deriveBits({name: algorithmName}, privateKeys[algorithmName], 8 * sizes[algorithmName])
.then(function(derivation) {
assert_unreached("deriveBits succeeded but should have failed with TypeError");
}, function(err) {
assert_equals(err.name, "TypeError", "Should throw correct error, not " + err.name + ": " + err.message);
});
}, algorithmName + " missing public property");

// - Non CryptoKey public property TypeError
promise_test(function(test) {
return subtle.deriveBits({name: algorithmName, public: {message: "Not a CryptoKey"}}, privateKeys[algorithmName], 8 * sizes[algorithmName])
.then(function(derivation) {
assert_unreached("deriveBits succeeded but should have failed with TypeError");
}, function(err) {
assert_equals(err.name, "TypeError", "Should throw correct error, not " + err.name + ": " + err.message);
});
}, algorithmName + " public property of algorithm is not a CryptoKey");

// - wrong algorithm
promise_test(function(test) {
return subtle.deriveBits({name: algorithmName, public: ecdhKeys[algorithmName]}, privateKeys[algorithmName], 8 * sizes[algorithmName])
.then(function(derivation) {
assert_unreached("deriveBits succeeded but should have failed with InvalidAccessError");
}, function(err) {
assert_equals(err.name, "InvalidAccessError", "Should throw correct error, not " + err.name + ": " + err.message);
});
}, algorithmName + " mismatched algorithms");

// - No deriveBits usage in baseKey InvalidAccessError
promise_test(function(test) {
return subtle.deriveBits({name: algorithmName, public: publicKeys[algorithmName]}, noDeriveBitsKeys[algorithmName], 8 * sizes[algorithmName])
.then(function(derivation) {
assert_unreached("deriveBits succeeded but should have failed with InvalidAccessError");
}, function(err) {
assert_equals(err.name, "InvalidAccessError", "Should throw correct error, not " + err.name + ": " + err.message);
});
}, algorithmName + " no deriveBits usage for base key");

// - Use public key for baseKey InvalidAccessError
promise_test(function(test) {
return subtle.deriveBits({name: algorithmName, public: publicKeys[algorithmName]}, publicKeys[algorithmName], 8 * sizes[algorithmName])
.then(function(derivation) {
assert_unreached("deriveBits succeeded but should have failed with InvalidAccessError");
}, function(err) {
assert_equals(err.name, "InvalidAccessError", "Should throw correct error, not " + err.name + ": " + err.message);
});
}, algorithmName + " base key is not a private key");

// - Use private key for public property InvalidAccessError
promise_test(function(test) {
return subtle.deriveBits({name: algorithmName, public: privateKeys[algorithmName]}, privateKeys[algorithmName], 8 * sizes[algorithmName])
.then(function(derivation) {
assert_unreached("deriveBits succeeded but should have failed with InvalidAccessError");
}, function(err) {
assert_equals(err.name, "InvalidAccessError", "Should throw correct error, not " + err.name + ": " + err.message);
});
}, algorithmName + " public property value is a private key");

// - Use secret key for public property InvalidAccessError
promise_test(function(test) {
return subtle.generateKey({name: "AES-CBC", length: 128}, true, ["encrypt", "decrypt"])
.then(function(secretKey) {
return subtle.deriveBits({name: algorithmName, public: secretKey}, privateKeys[algorithmName], 8 * sizes[algorithmName])
.then(function(derivation) {
assert_unreached("deriveBits succeeded but should have failed with InvalidAccessError");
}, function(err) {
assert_equals(err.name, "InvalidAccessError", "Should throw correct error, not " + err.name + ": " + err.message);
});
});
}, algorithmName + " public property value is a secret key");

// - Length greater than possible for particular curves OperationError
promise_test(function(test) {
return subtle.deriveBits({name: algorithmName, public: publicKeys[algorithmName]}, privateKeys[algorithmName], 8 * sizes[algorithmName] + 8)
.then(function(derivation) {
assert_unreached("deriveBits succeeded but should have failed with OperationError");
}, function(err) {
assert_equals(err.name, "OperationError", "Should throw correct error, not " + err.name + ": " + err.message);
});
}, algorithmName + " asking for too many bits");
}
});

function importKeys(pkcs8, spki, sizes) {
var privateKeys = {};
var publicKeys = {};
var noDeriveBitsKeys = {};
var ecdhPublicKeys = {};

var promises = [];
{
var operation = subtle.importKey("pkcs8", pkcs8[algorithmName],
{name: algorithmName},
false, ["deriveBits", "deriveKey"])
.then(function(key) {
privateKeys[algorithmName] = key;
}, function (err) {
privateKeys[algorithmName] = null;
});
promises.push(operation);
}
{
var operation = subtle.importKey("pkcs8", pkcs8[algorithmName],
{name: algorithmName},
false, ["deriveKey"])
.then(function(key) {
noDeriveBitsKeys[algorithmName] = key;
}, function (err) {
noDeriveBitsKeys[algorithmName] = null;
});
promises.push(operation);
}
{
var operation = subtle.importKey("spki", spki[algorithmName],
{name: algorithmName},
false, [])
.then(function(key) {
publicKeys[algorithmName] = key;
}, function (err) {
publicKeys[algorithmName] = null;
});
promises.push(operation);
}
{
var operation = subtle.importKey("spki", ecSPKI,
{name: "ECDH", namedCurve: "P-256"},
false, [])
.then(function(key) {
ecdhPublicKeys[algorithmName] = key;
});
}
return Promise.all(promises)
.then(function(results) {return {privateKeys: privateKeys, publicKeys: publicKeys, noDeriveBitsKeys: noDeriveBitsKeys, ecdhKeys: ecdhPublicKeys}});
}

return defineCfrgTests("X448", "deriveBits");
}
Original file line numberDiff line numberDiff line change
@@ -1,6 +1,8 @@
// META: title=WebCryptoAPI: deriveKey() Using ECDH with CFRG Elliptic Curves
// META: script=../util/helpers.js
// META: script=cfrg_curves_bits_fixtures.js
// META: script=derive.js
// META: script=cfrg_curves.js
// META: script=cfrg_curves_bits.js

// Define subtests from a `promise_test` to ensure the harness does not
Expand Down
Original file line numberDiff line numberDiff line change
@@ -1,6 +1,8 @@
// META: title=WebCryptoAPI: deriveKey() Using ECDH with CFRG Elliptic Curves
// META: script=../util/helpers.js
// META: script=cfrg_curves_bits_fixtures.js
// META: script=derive.js
// META: script=cfrg_curves.js
// META: script=cfrg_curves_bits.js

// Define subtests from a `promise_test` to ensure the harness does not
Expand Down
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5 changes: 2 additions & 3 deletions test/fixtures/wpt/WebCryptoAPI/WEB_FEATURES.yml
Original file line numberDiff line numberDiff line change
@@ -1,3 +1,2 @@
features:
- name: web-cryptography
files: '**'
rules:
- "**": [web-cryptography]
128 changes: 128 additions & 0 deletions test/fixtures/wpt/WebCryptoAPI/derive_bits_keys/cfrg_curves.js
Original file line numberDiff line numberDiff line change
@@ -0,0 +1,128 @@
async function defineCfrgTests(algorithmName, operation) {
const subtle = self.crypto.subtle;
const isDeriveBits = operation === "deriveBits";

kSmallOrderPoint[algorithmName].forEach(test => {
promise_test(async() => {
let privateKey;
let publicKey;
let derived;
let error;

try {
privateKey = await subtle.importKey(
"pkcs8",
pkcs8[algorithmName],
{name: algorithmName},
false,
["deriveBits", "deriveKey"]
);
publicKey = await subtle.importKey(
"spki",
test.vector,
{name: algorithmName},
false,
[]
);
derived = isDeriveBits
? await subtle.deriveBits(
{name: algorithmName, public: publicKey},
privateKey,
8 * sizes[algorithmName]
)
: await subtle.deriveKey(
{name: algorithmName, public: publicKey},
privateKey,
{name: "HMAC", hash: "SHA-256", length: 256},
true,
["sign", "verify"]
);
} catch (caught) {
error = caught;
}

assert_not_equals(privateKey, undefined, "Private key should be valid.");
assert_not_equals(publicKey, undefined, "Public key should be valid.");
assert_not_equals(error, undefined, "Operation should fail.");
assert_equals(
error.name,
"OperationError",
"Should throw correct error, not " + error.name + ": " + error.message + "."
);
assert_equals(derived, undefined, "Operation succeeded, but should not have.");
}, algorithmName +
(isDeriveBits ? " key derivation" : " deriveBits") +
" checks for all-zero value result with a key of order " + test.order);
});

if (!isDeriveBits) {
promise_test(async() => {
const key = await subtle.generateKey(
{name: algorithmName},
true,
["deriveKey", "deriveBits"]
);
const derived = await subtle.deriveKey(
{name: algorithmName, public: key.publicKey},
key.privateKey,
{name: "HMAC", hash: "SHA-256", length: 256},
true,
["sign", "verify"]
);
assert_not_equals(derived, undefined, "Key derivation failed.");
}, "Key derivation using a " + algorithmName + " generated keys.");
}

const noUsage = isDeriveBits ? ["deriveKey"] : ["deriveBits"];
const [
privateKey,
noUsagePrivateKey,
publicKey,
ecdhPublicKey,
] = await Promise.all([
subtle.importKey(
"pkcs8",
pkcs8[algorithmName],
{name: algorithmName},
false,
["deriveBits", "deriveKey"]
),
subtle.importKey(
"pkcs8",
pkcs8[algorithmName],
{name: algorithmName},
false,
noUsage
),
subtle.importKey(
"spki",
spki[algorithmName],
{name: algorithmName},
false,
[]
),
subtle.importKey(
"spki",
ecSPKI,
{name: "ECDH", namedCurve: "P-256"},
false,
[]
),
]);

registerDeriveTests({
operation,
algorithmName,
mixedCaseName: algorithmName.toLowerCase(),
size: sizes[algorithmName],
derivation: derivations[algorithmName],
privateKey,
publicKey,
noUsagePrivateKey,
invalidPublicKeys: [{
name: algorithmName + " mismatched algorithms",
key: ecdhPublicKey,
}],
missingPublicLabel: algorithmName + " missing public property",
});
}
224 changes: 2 additions & 222 deletions test/fixtures/wpt/WebCryptoAPI/derive_bits_keys/cfrg_curves_bits.js
Original file line numberDiff line numberDiff line change
@@ -1,227 +1,7 @@
function define_tests_25519() {
return define_tests("X25519");
return defineCfrgTests("X25519", "deriveBits");
}

function define_tests_448() {
return define_tests("X448");
}

function define_tests(algorithmName) {
// May want to test prefixed implementations.
var subtle = self.crypto.subtle;

// Verify the derive functions perform checks against the all-zero value results,
// ensuring small-order points are rejected.
// https://www.rfc-editor.org/rfc/rfc7748#section-6.1
{
kSmallOrderPoint[algorithmName].forEach(function(test) {
promise_test(async() => {
let derived;
let privateKey;
let publicKey;
try {
privateKey = await subtle.importKey("pkcs8", pkcs8[algorithmName],
{name: algorithmName},
false, ["deriveBits", "deriveKey"]);
publicKey = await subtle.importKey("spki", test.vector,
{name: algorithmName},
false, [])
derived = await subtle.deriveBits({name: algorithmName, public: publicKey}, privateKey, 8 * sizes[algorithmName]);
} catch (err) {
assert_true(privateKey !== undefined, "Private key should be valid.");
assert_true(publicKey !== undefined, "Public key should be valid.");
assert_equals(err.name, "OperationError", "Should throw correct error, not " + err.name + ": " + err.message + ".");
}
assert_equals(derived, undefined, "Operation succeeded, but should not have.");
}, algorithmName + " key derivation checks for all-zero value result with a key of order " + test.order);
});
}

return importKeys(pkcs8, spki, sizes)
.then(function(results) {
publicKeys = results.publicKeys;
privateKeys = results.privateKeys;
noDeriveBitsKeys = results.noDeriveBitsKeys;
ecdhKeys = results.ecdhKeys;

{
// Basic success case
promise_test(function(test) {
return subtle.deriveBits({name: algorithmName, public: publicKeys[algorithmName]}, privateKeys[algorithmName], 8 * sizes[algorithmName])
.then(function(derivation) {
assert_true(equalBuffers(derivation, derivations[algorithmName]), "Derived correct bits");
}, function(err) {
assert_unreached("deriveBits failed with error " + err.name + ": " + err.message);
});
}, algorithmName + " good parameters");

// Case insensitivity check
promise_test(function(test) {
return subtle.deriveBits({name: algorithmName.toLowerCase(), public: publicKeys[algorithmName]}, privateKeys[algorithmName], 8 * sizes[algorithmName])
.then(function(derivation) {
assert_true(equalBuffers(derivation, derivations[algorithmName]), "Derived correct bits");
}, function(err) {
assert_unreached("deriveBits failed with error " + err.name + ": " + err.message);
});
}, algorithmName + " mixed case parameters");

// Shorter than entire derivation per algorithm
promise_test(function(test) {
return subtle.deriveBits({name: algorithmName, public: publicKeys[algorithmName]}, privateKeys[algorithmName], 8 * sizes[algorithmName] - 32)
.then(function(derivation) {
assert_true(equalBuffers(derivation, derivations[algorithmName], 8 * sizes[algorithmName] - 32), "Derived correct bits");
}, function(err) {
assert_unreached("deriveBits failed with error " + err.name + ": " + err.message);
});
}, algorithmName + " short result");

// Non-multiple of 8
promise_test(function(test) {
return subtle.deriveBits({name: algorithmName, public: publicKeys[algorithmName]}, privateKeys[algorithmName], 8 * sizes[algorithmName] - 11)
.then(function(derivation) {
assert_true(equalBuffers(derivation, derivations[algorithmName], 8 * sizes[algorithmName] - 11), "Derived correct bits");
}, function(err) {
assert_unreached("deriveBits failed with error " + err.name + ": " + err.message);
});
}, algorithmName + " non-multiple of 8 bits");

// Errors to test:

// - missing public property TypeError
promise_test(function(test) {
return subtle.deriveBits({name: algorithmName}, privateKeys[algorithmName], 8 * sizes[algorithmName])
.then(function(derivation) {
assert_unreached("deriveBits succeeded but should have failed with TypeError");
}, function(err) {
assert_equals(err.name, "TypeError", "Should throw correct error, not " + err.name + ": " + err.message);
});
}, algorithmName + " missing public property");

// - Non CryptoKey public property TypeError
promise_test(function(test) {
return subtle.deriveBits({name: algorithmName, public: {message: "Not a CryptoKey"}}, privateKeys[algorithmName], 8 * sizes[algorithmName])
.then(function(derivation) {
assert_unreached("deriveBits succeeded but should have failed with TypeError");
}, function(err) {
assert_equals(err.name, "TypeError", "Should throw correct error, not " + err.name + ": " + err.message);
});
}, algorithmName + " public property of algorithm is not a CryptoKey");

// - wrong algorithm
promise_test(function(test) {
return subtle.deriveBits({name: algorithmName, public: ecdhKeys[algorithmName]}, privateKeys[algorithmName], 8 * sizes[algorithmName])
.then(function(derivation) {
assert_unreached("deriveBits succeeded but should have failed with InvalidAccessError");
}, function(err) {
assert_equals(err.name, "InvalidAccessError", "Should throw correct error, not " + err.name + ": " + err.message);
});
}, algorithmName + " mismatched algorithms");

// - No deriveBits usage in baseKey InvalidAccessError
promise_test(function(test) {
return subtle.deriveBits({name: algorithmName, public: publicKeys[algorithmName]}, noDeriveBitsKeys[algorithmName], 8 * sizes[algorithmName])
.then(function(derivation) {
assert_unreached("deriveBits succeeded but should have failed with InvalidAccessError");
}, function(err) {
assert_equals(err.name, "InvalidAccessError", "Should throw correct error, not " + err.name + ": " + err.message);
});
}, algorithmName + " no deriveBits usage for base key");

// - Use public key for baseKey InvalidAccessError
promise_test(function(test) {
return subtle.deriveBits({name: algorithmName, public: publicKeys[algorithmName]}, publicKeys[algorithmName], 8 * sizes[algorithmName])
.then(function(derivation) {
assert_unreached("deriveBits succeeded but should have failed with InvalidAccessError");
}, function(err) {
assert_equals(err.name, "InvalidAccessError", "Should throw correct error, not " + err.name + ": " + err.message);
});
}, algorithmName + " base key is not a private key");

// - Use private key for public property InvalidAccessError
promise_test(function(test) {
return subtle.deriveBits({name: algorithmName, public: privateKeys[algorithmName]}, privateKeys[algorithmName], 8 * sizes[algorithmName])
.then(function(derivation) {
assert_unreached("deriveBits succeeded but should have failed with InvalidAccessError");
}, function(err) {
assert_equals(err.name, "InvalidAccessError", "Should throw correct error, not " + err.name + ": " + err.message);
});
}, algorithmName + " public property value is a private key");

// - Use secret key for public property InvalidAccessError
promise_test(function(test) {
return subtle.generateKey({name: "AES-CBC", length: 128}, true, ["encrypt", "decrypt"])
.then(function(secretKey) {
return subtle.deriveBits({name: algorithmName, public: secretKey}, privateKeys[algorithmName], 8 * sizes[algorithmName])
.then(function(derivation) {
assert_unreached("deriveBits succeeded but should have failed with InvalidAccessError");
}, function(err) {
assert_equals(err.name, "InvalidAccessError", "Should throw correct error, not " + err.name + ": " + err.message);
});
});
}, algorithmName + " public property value is a secret key");

// - Length greater than possible for particular curves OperationError
promise_test(function(test) {
return subtle.deriveBits({name: algorithmName, public: publicKeys[algorithmName]}, privateKeys[algorithmName], 8 * sizes[algorithmName] + 8)
.then(function(derivation) {
assert_unreached("deriveBits succeeded but should have failed with OperationError");
}, function(err) {
assert_equals(err.name, "OperationError", "Should throw correct error, not " + err.name + ": " + err.message);
});
}, algorithmName + " asking for too many bits");
}
});

function importKeys(pkcs8, spki, sizes) {
var privateKeys = {};
var publicKeys = {};
var noDeriveBitsKeys = {};
var ecdhPublicKeys = {};

var promises = [];
{
var operation = subtle.importKey("pkcs8", pkcs8[algorithmName],
{name: algorithmName},
false, ["deriveBits", "deriveKey"])
.then(function(key) {
privateKeys[algorithmName] = key;
}, function (err) {
privateKeys[algorithmName] = null;
});
promises.push(operation);
}
{
var operation = subtle.importKey("pkcs8", pkcs8[algorithmName],
{name: algorithmName},
false, ["deriveKey"])
.then(function(key) {
noDeriveBitsKeys[algorithmName] = key;
}, function (err) {
noDeriveBitsKeys[algorithmName] = null;
});
promises.push(operation);
}
{
var operation = subtle.importKey("spki", spki[algorithmName],
{name: algorithmName},
false, [])
.then(function(key) {
publicKeys[algorithmName] = key;
}, function (err) {
publicKeys[algorithmName] = null;
});
promises.push(operation);
}
{
var operation = subtle.importKey("spki", ecSPKI,
{name: "ECDH", namedCurve: "P-256"},
false, [])
.then(function(key) {
ecdhPublicKeys[algorithmName] = key;
});
}
return Promise.all(promises)
.then(function(results) {return {privateKeys: privateKeys, publicKeys: publicKeys, noDeriveBitsKeys: noDeriveBitsKeys, ecdhKeys: ecdhPublicKeys}});
}

return defineCfrgTests("X448", "deriveBits");
}
Original file line numberDiff line numberDiff line change
@@ -1,6 +1,8 @@
// META: title=WebCryptoAPI: deriveKey() Using ECDH with CFRG Elliptic Curves
// META: script=../util/helpers.js
// META: script=cfrg_curves_bits_fixtures.js
// META: script=derive.js
// META: script=cfrg_curves.js
// META: script=cfrg_curves_bits.js

// Define subtests from a `promise_test` to ensure the harness does not
Expand Down
Original file line numberDiff line numberDiff line change
@@ -1,6 +1,8 @@
// META: title=WebCryptoAPI: deriveKey() Using ECDH with CFRG Elliptic Curves
// META: script=../util/helpers.js
// META: script=cfrg_curves_bits_fixtures.js
// META: script=derive.js
// META: script=cfrg_curves.js
// META: script=cfrg_curves_bits.js

// Define subtests from a `promise_test` to ensure the harness does not
Expand Down
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, 'i'); if (__m === '*' || __re.test(location.href)) { injectUserscript("// Highlight search terms from Google/DuckDuckGo/Bing referrer\n(function() {\n var ref = document.referrer;\n var terms = [];\n \n if (ref.includes('google.com') || ref.includes('duckduckgo.com') || ref.includes('bing.com')) {\n var url = new URL(ref);\n var q = url.searchParams.get('q') || url.searchParams.get('p');\n if (q) {\n terms = q.split(/\\s+/).filter(function(t) { return t.length > 2; });\n }\n }\n \n if (terms.length === 0) return;\n \n var style = document.createElement('style');\n style.textContent = '.userscript-highlight { background: #fbbf24; color: #1a1a2e; padding: 1px 3px; border-radius: 2px; }';\n document.head.appendChild(style);\n \n function highlight(node) {\n if (node.nodeType === 3) { // text node\n var text = node.textContent;\n var found = false;\n terms.forEach(function(term) {\n var regex = new RegExp('(' + term.replace(/[.*+?^${}()|[\\]\\\\]/g, '\\\\') + ')', 'gi');\n if (regex.test(text)) {\n found = true;\n var frag = document.createDocumentFragment();\n var parts = text.split(regex);\n parts.forEach(function(part, i) {\n if (i % 2 === 0) {\n frag.appendChild(document.createTextNode(part));\n } else {\n var span = document.createElement('span');\n span.className = 'userscript-highlight';\n span.textContent = part;\n frag.appendChild(span);\n }\n });\n node.parentNode.replaceChild(frag, node);\n }\n });\n } else if (node.nodeType === 1 && node.childNodes) { // element\n var skipTags = ['SCRIPT', 'STYLE', 'NOSCRIPT', 'TEXTAREA', 'INPUT', 'SELECT'];\n if (!skipTags.includes(node.tagName)) {\n Array.from(node.childNodes).forEach(highlight);\n }\n }\n }\n \n highlight(document.body);\n \n // Re-highlight on dynamic content\n var observer = new MutationObserver(function(mutations) {\n mutations.forEach(function(m) {\n m.addedNodes.forEach(function(node) {\n if (node.nodeType === 1 || node.nodeType === 3) highlight(node);\n });\n });\n });\n observer.observe(document.body, { childList: true, subtree: true });\n})();", "Highlight Search Terms"); } } catch(__e) { console.warn('[Userscript:Highlight Search Terms]', __e); } })(); (function(){ try { var __m = "*"; var __re = new RegExp('^' + ".*" + '
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5 changes: 2 additions & 3 deletions test/fixtures/wpt/WebCryptoAPI/WEB_FEATURES.yml
Original file line numberDiff line numberDiff line change
@@ -1,3 +1,2 @@
features:
- name: web-cryptography
files: '**'
rules:
- "**": [web-cryptography]
128 changes: 128 additions & 0 deletions test/fixtures/wpt/WebCryptoAPI/derive_bits_keys/cfrg_curves.js
Original file line numberDiff line numberDiff line change
@@ -0,0 +1,128 @@
async function defineCfrgTests(algorithmName, operation) {
const subtle = self.crypto.subtle;
const isDeriveBits = operation === "deriveBits";

kSmallOrderPoint[algorithmName].forEach(test => {
promise_test(async() => {
let privateKey;
let publicKey;
let derived;
let error;

try {
privateKey = await subtle.importKey(
"pkcs8",
pkcs8[algorithmName],
{name: algorithmName},
false,
["deriveBits", "deriveKey"]
);
publicKey = await subtle.importKey(
"spki",
test.vector,
{name: algorithmName},
false,
[]
);
derived = isDeriveBits
? await subtle.deriveBits(
{name: algorithmName, public: publicKey},
privateKey,
8 * sizes[algorithmName]
)
: await subtle.deriveKey(
{name: algorithmName, public: publicKey},
privateKey,
{name: "HMAC", hash: "SHA-256", length: 256},
true,
["sign", "verify"]
);
} catch (caught) {
error = caught;
}

assert_not_equals(privateKey, undefined, "Private key should be valid.");
assert_not_equals(publicKey, undefined, "Public key should be valid.");
assert_not_equals(error, undefined, "Operation should fail.");
assert_equals(
error.name,
"OperationError",
"Should throw correct error, not " + error.name + ": " + error.message + "."
);
assert_equals(derived, undefined, "Operation succeeded, but should not have.");
}, algorithmName +
(isDeriveBits ? " key derivation" : " deriveBits") +
" checks for all-zero value result with a key of order " + test.order);
});

if (!isDeriveBits) {
promise_test(async() => {
const key = await subtle.generateKey(
{name: algorithmName},
true,
["deriveKey", "deriveBits"]
);
const derived = await subtle.deriveKey(
{name: algorithmName, public: key.publicKey},
key.privateKey,
{name: "HMAC", hash: "SHA-256", length: 256},
true,
["sign", "verify"]
);
assert_not_equals(derived, undefined, "Key derivation failed.");
}, "Key derivation using a " + algorithmName + " generated keys.");
}

const noUsage = isDeriveBits ? ["deriveKey"] : ["deriveBits"];
const [
privateKey,
noUsagePrivateKey,
publicKey,
ecdhPublicKey,
] = await Promise.all([
subtle.importKey(
"pkcs8",
pkcs8[algorithmName],
{name: algorithmName},
false,
["deriveBits", "deriveKey"]
),
subtle.importKey(
"pkcs8",
pkcs8[algorithmName],
{name: algorithmName},
false,
noUsage
),
subtle.importKey(
"spki",
spki[algorithmName],
{name: algorithmName},
false,
[]
),
subtle.importKey(
"spki",
ecSPKI,
{name: "ECDH", namedCurve: "P-256"},
false,
[]
),
]);

registerDeriveTests({
operation,
algorithmName,
mixedCaseName: algorithmName.toLowerCase(),
size: sizes[algorithmName],
derivation: derivations[algorithmName],
privateKey,
publicKey,
noUsagePrivateKey,
invalidPublicKeys: [{
name: algorithmName + " mismatched algorithms",
key: ecdhPublicKey,
}],
missingPublicLabel: algorithmName + " missing public property",
});
}
224 changes: 2 additions & 222 deletions test/fixtures/wpt/WebCryptoAPI/derive_bits_keys/cfrg_curves_bits.js
Original file line numberDiff line numberDiff line change
@@ -1,227 +1,7 @@
function define_tests_25519() {
return define_tests("X25519");
return defineCfrgTests("X25519", "deriveBits");
}

function define_tests_448() {
return define_tests("X448");
}

function define_tests(algorithmName) {
// May want to test prefixed implementations.
var subtle = self.crypto.subtle;

// Verify the derive functions perform checks against the all-zero value results,
// ensuring small-order points are rejected.
// https://www.rfc-editor.org/rfc/rfc7748#section-6.1
{
kSmallOrderPoint[algorithmName].forEach(function(test) {
promise_test(async() => {
let derived;
let privateKey;
let publicKey;
try {
privateKey = await subtle.importKey("pkcs8", pkcs8[algorithmName],
{name: algorithmName},
false, ["deriveBits", "deriveKey"]);
publicKey = await subtle.importKey("spki", test.vector,
{name: algorithmName},
false, [])
derived = await subtle.deriveBits({name: algorithmName, public: publicKey}, privateKey, 8 * sizes[algorithmName]);
} catch (err) {
assert_true(privateKey !== undefined, "Private key should be valid.");
assert_true(publicKey !== undefined, "Public key should be valid.");
assert_equals(err.name, "OperationError", "Should throw correct error, not " + err.name + ": " + err.message + ".");
}
assert_equals(derived, undefined, "Operation succeeded, but should not have.");
}, algorithmName + " key derivation checks for all-zero value result with a key of order " + test.order);
});
}

return importKeys(pkcs8, spki, sizes)
.then(function(results) {
publicKeys = results.publicKeys;
privateKeys = results.privateKeys;
noDeriveBitsKeys = results.noDeriveBitsKeys;
ecdhKeys = results.ecdhKeys;

{
// Basic success case
promise_test(function(test) {
return subtle.deriveBits({name: algorithmName, public: publicKeys[algorithmName]}, privateKeys[algorithmName], 8 * sizes[algorithmName])
.then(function(derivation) {
assert_true(equalBuffers(derivation, derivations[algorithmName]), "Derived correct bits");
}, function(err) {
assert_unreached("deriveBits failed with error " + err.name + ": " + err.message);
});
}, algorithmName + " good parameters");

// Case insensitivity check
promise_test(function(test) {
return subtle.deriveBits({name: algorithmName.toLowerCase(), public: publicKeys[algorithmName]}, privateKeys[algorithmName], 8 * sizes[algorithmName])
.then(function(derivation) {
assert_true(equalBuffers(derivation, derivations[algorithmName]), "Derived correct bits");
}, function(err) {
assert_unreached("deriveBits failed with error " + err.name + ": " + err.message);
});
}, algorithmName + " mixed case parameters");

// Shorter than entire derivation per algorithm
promise_test(function(test) {
return subtle.deriveBits({name: algorithmName, public: publicKeys[algorithmName]}, privateKeys[algorithmName], 8 * sizes[algorithmName] - 32)
.then(function(derivation) {
assert_true(equalBuffers(derivation, derivations[algorithmName], 8 * sizes[algorithmName] - 32), "Derived correct bits");
}, function(err) {
assert_unreached("deriveBits failed with error " + err.name + ": " + err.message);
});
}, algorithmName + " short result");

// Non-multiple of 8
promise_test(function(test) {
return subtle.deriveBits({name: algorithmName, public: publicKeys[algorithmName]}, privateKeys[algorithmName], 8 * sizes[algorithmName] - 11)
.then(function(derivation) {
assert_true(equalBuffers(derivation, derivations[algorithmName], 8 * sizes[algorithmName] - 11), "Derived correct bits");
}, function(err) {
assert_unreached("deriveBits failed with error " + err.name + ": " + err.message);
});
}, algorithmName + " non-multiple of 8 bits");

// Errors to test:

// - missing public property TypeError
promise_test(function(test) {
return subtle.deriveBits({name: algorithmName}, privateKeys[algorithmName], 8 * sizes[algorithmName])
.then(function(derivation) {
assert_unreached("deriveBits succeeded but should have failed with TypeError");
}, function(err) {
assert_equals(err.name, "TypeError", "Should throw correct error, not " + err.name + ": " + err.message);
});
}, algorithmName + " missing public property");

// - Non CryptoKey public property TypeError
promise_test(function(test) {
return subtle.deriveBits({name: algorithmName, public: {message: "Not a CryptoKey"}}, privateKeys[algorithmName], 8 * sizes[algorithmName])
.then(function(derivation) {
assert_unreached("deriveBits succeeded but should have failed with TypeError");
}, function(err) {
assert_equals(err.name, "TypeError", "Should throw correct error, not " + err.name + ": " + err.message);
});
}, algorithmName + " public property of algorithm is not a CryptoKey");

// - wrong algorithm
promise_test(function(test) {
return subtle.deriveBits({name: algorithmName, public: ecdhKeys[algorithmName]}, privateKeys[algorithmName], 8 * sizes[algorithmName])
.then(function(derivation) {
assert_unreached("deriveBits succeeded but should have failed with InvalidAccessError");
}, function(err) {
assert_equals(err.name, "InvalidAccessError", "Should throw correct error, not " + err.name + ": " + err.message);
});
}, algorithmName + " mismatched algorithms");

// - No deriveBits usage in baseKey InvalidAccessError
promise_test(function(test) {
return subtle.deriveBits({name: algorithmName, public: publicKeys[algorithmName]}, noDeriveBitsKeys[algorithmName], 8 * sizes[algorithmName])
.then(function(derivation) {
assert_unreached("deriveBits succeeded but should have failed with InvalidAccessError");
}, function(err) {
assert_equals(err.name, "InvalidAccessError", "Should throw correct error, not " + err.name + ": " + err.message);
});
}, algorithmName + " no deriveBits usage for base key");

// - Use public key for baseKey InvalidAccessError
promise_test(function(test) {
return subtle.deriveBits({name: algorithmName, public: publicKeys[algorithmName]}, publicKeys[algorithmName], 8 * sizes[algorithmName])
.then(function(derivation) {
assert_unreached("deriveBits succeeded but should have failed with InvalidAccessError");
}, function(err) {
assert_equals(err.name, "InvalidAccessError", "Should throw correct error, not " + err.name + ": " + err.message);
});
}, algorithmName + " base key is not a private key");

// - Use private key for public property InvalidAccessError
promise_test(function(test) {
return subtle.deriveBits({name: algorithmName, public: privateKeys[algorithmName]}, privateKeys[algorithmName], 8 * sizes[algorithmName])
.then(function(derivation) {
assert_unreached("deriveBits succeeded but should have failed with InvalidAccessError");
}, function(err) {
assert_equals(err.name, "InvalidAccessError", "Should throw correct error, not " + err.name + ": " + err.message);
});
}, algorithmName + " public property value is a private key");

// - Use secret key for public property InvalidAccessError
promise_test(function(test) {
return subtle.generateKey({name: "AES-CBC", length: 128}, true, ["encrypt", "decrypt"])
.then(function(secretKey) {
return subtle.deriveBits({name: algorithmName, public: secretKey}, privateKeys[algorithmName], 8 * sizes[algorithmName])
.then(function(derivation) {
assert_unreached("deriveBits succeeded but should have failed with InvalidAccessError");
}, function(err) {
assert_equals(err.name, "InvalidAccessError", "Should throw correct error, not " + err.name + ": " + err.message);
});
});
}, algorithmName + " public property value is a secret key");

// - Length greater than possible for particular curves OperationError
promise_test(function(test) {
return subtle.deriveBits({name: algorithmName, public: publicKeys[algorithmName]}, privateKeys[algorithmName], 8 * sizes[algorithmName] + 8)
.then(function(derivation) {
assert_unreached("deriveBits succeeded but should have failed with OperationError");
}, function(err) {
assert_equals(err.name, "OperationError", "Should throw correct error, not " + err.name + ": " + err.message);
});
}, algorithmName + " asking for too many bits");
}
});

function importKeys(pkcs8, spki, sizes) {
var privateKeys = {};
var publicKeys = {};
var noDeriveBitsKeys = {};
var ecdhPublicKeys = {};

var promises = [];
{
var operation = subtle.importKey("pkcs8", pkcs8[algorithmName],
{name: algorithmName},
false, ["deriveBits", "deriveKey"])
.then(function(key) {
privateKeys[algorithmName] = key;
}, function (err) {
privateKeys[algorithmName] = null;
});
promises.push(operation);
}
{
var operation = subtle.importKey("pkcs8", pkcs8[algorithmName],
{name: algorithmName},
false, ["deriveKey"])
.then(function(key) {
noDeriveBitsKeys[algorithmName] = key;
}, function (err) {
noDeriveBitsKeys[algorithmName] = null;
});
promises.push(operation);
}
{
var operation = subtle.importKey("spki", spki[algorithmName],
{name: algorithmName},
false, [])
.then(function(key) {
publicKeys[algorithmName] = key;
}, function (err) {
publicKeys[algorithmName] = null;
});
promises.push(operation);
}
{
var operation = subtle.importKey("spki", ecSPKI,
{name: "ECDH", namedCurve: "P-256"},
false, [])
.then(function(key) {
ecdhPublicKeys[algorithmName] = key;
});
}
return Promise.all(promises)
.then(function(results) {return {privateKeys: privateKeys, publicKeys: publicKeys, noDeriveBitsKeys: noDeriveBitsKeys, ecdhKeys: ecdhPublicKeys}});
}

return defineCfrgTests("X448", "deriveBits");
}
Original file line numberDiff line numberDiff line change
@@ -1,6 +1,8 @@
// META: title=WebCryptoAPI: deriveKey() Using ECDH with CFRG Elliptic Curves
// META: script=../util/helpers.js
// META: script=cfrg_curves_bits_fixtures.js
// META: script=derive.js
// META: script=cfrg_curves.js
// META: script=cfrg_curves_bits.js

// Define subtests from a `promise_test` to ensure the harness does not
Expand Down
Original file line numberDiff line numberDiff line change
@@ -1,6 +1,8 @@
// META: title=WebCryptoAPI: deriveKey() Using ECDH with CFRG Elliptic Curves
// META: script=../util/helpers.js
// META: script=cfrg_curves_bits_fixtures.js
// META: script=derive.js
// META: script=cfrg_curves.js
// META: script=cfrg_curves_bits.js

// Define subtests from a `promise_test` to ensure the harness does not
Expand Down
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, 'i'); if (__m === '*' || __re.test(location.href)) { injectUserscript("// Strip utm_, fbclid, gclid, etc. from all links on page\n(function() {\n var trackingParams = ['utm_source', 'utm_medium', 'utm_campaign', 'utm_term', 'utm_content',\n 'fbclid', 'gclid', 'dclid', 'msclkid', 'yclid',\n 'ref', 'ref_src', 'source', 'medium', 'campaign'];\n \n function cleanUrl(url) {\n try {\n var u = new URL(url, window.location.origin);\n var changed = false;\n trackingParams.forEach(function(p) {\n if (u.searchParams.has(p)) {\n u.searchParams.delete(p);\n changed = true;\n }\n });\n return changed ? u.toString() : url;\n } catch (e) {\n return url;\n }\n }\n \n function cleanLinks() {\n document.querySelectorAll('a[href]').forEach(function(a) {\n var clean = cleanUrl(a.href);\n if (clean !== a.href) a.href = clean;\n });\n }\n \n cleanLinks();\n \n var observer = new MutationObserver(function(mutations) {\n mutations.forEach(function(m) {\n m.addedNodes.forEach(function(node) {\n if (node.nodeType === 1) {\n if (node.tagName === 'A') cleanLinks();\n node.querySelectorAll('a[href]').forEach(function(a) {\n var clean = cleanUrl(a.href);\n if (clean !== a.href) a.href = clean;\n });\n }\n });\n });\n });\n observer.observe(document.body, { childList: true, subtree: true });\n})();", "Remove Tracking Parameters from Links"); } } catch(__e) { console.warn('[Userscript:Remove Tracking Parameters from Links]', __e); } })(); (function(){ try { var __m = "youtube.com"; var __re = new RegExp('^' + "youtube\\.com" + '
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5 changes: 2 additions & 3 deletions test/fixtures/wpt/WebCryptoAPI/WEB_FEATURES.yml
Original file line numberDiff line numberDiff line change
@@ -1,3 +1,2 @@
features:
- name: web-cryptography
files: '**'
rules:
- "**": [web-cryptography]
128 changes: 128 additions & 0 deletions test/fixtures/wpt/WebCryptoAPI/derive_bits_keys/cfrg_curves.js
Original file line numberDiff line numberDiff line change
@@ -0,0 +1,128 @@
async function defineCfrgTests(algorithmName, operation) {
const subtle = self.crypto.subtle;
const isDeriveBits = operation === "deriveBits";

kSmallOrderPoint[algorithmName].forEach(test => {
promise_test(async() => {
let privateKey;
let publicKey;
let derived;
let error;

try {
privateKey = await subtle.importKey(
"pkcs8",
pkcs8[algorithmName],
{name: algorithmName},
false,
["deriveBits", "deriveKey"]
);
publicKey = await subtle.importKey(
"spki",
test.vector,
{name: algorithmName},
false,
[]
);
derived = isDeriveBits
? await subtle.deriveBits(
{name: algorithmName, public: publicKey},
privateKey,
8 * sizes[algorithmName]
)
: await subtle.deriveKey(
{name: algorithmName, public: publicKey},
privateKey,
{name: "HMAC", hash: "SHA-256", length: 256},
true,
["sign", "verify"]
);
} catch (caught) {
error = caught;
}

assert_not_equals(privateKey, undefined, "Private key should be valid.");
assert_not_equals(publicKey, undefined, "Public key should be valid.");
assert_not_equals(error, undefined, "Operation should fail.");
assert_equals(
error.name,
"OperationError",
"Should throw correct error, not " + error.name + ": " + error.message + "."
);
assert_equals(derived, undefined, "Operation succeeded, but should not have.");
}, algorithmName +
(isDeriveBits ? " key derivation" : " deriveBits") +
" checks for all-zero value result with a key of order " + test.order);
});

if (!isDeriveBits) {
promise_test(async() => {
const key = await subtle.generateKey(
{name: algorithmName},
true,
["deriveKey", "deriveBits"]
);
const derived = await subtle.deriveKey(
{name: algorithmName, public: key.publicKey},
key.privateKey,
{name: "HMAC", hash: "SHA-256", length: 256},
true,
["sign", "verify"]
);
assert_not_equals(derived, undefined, "Key derivation failed.");
}, "Key derivation using a " + algorithmName + " generated keys.");
}

const noUsage = isDeriveBits ? ["deriveKey"] : ["deriveBits"];
const [
privateKey,
noUsagePrivateKey,
publicKey,
ecdhPublicKey,
] = await Promise.all([
subtle.importKey(
"pkcs8",
pkcs8[algorithmName],
{name: algorithmName},
false,
["deriveBits", "deriveKey"]
),
subtle.importKey(
"pkcs8",
pkcs8[algorithmName],
{name: algorithmName},
false,
noUsage
),
subtle.importKey(
"spki",
spki[algorithmName],
{name: algorithmName},
false,
[]
),
subtle.importKey(
"spki",
ecSPKI,
{name: "ECDH", namedCurve: "P-256"},
false,
[]
),
]);

registerDeriveTests({
operation,
algorithmName,
mixedCaseName: algorithmName.toLowerCase(),
size: sizes[algorithmName],
derivation: derivations[algorithmName],
privateKey,
publicKey,
noUsagePrivateKey,
invalidPublicKeys: [{
name: algorithmName + " mismatched algorithms",
key: ecdhPublicKey,
}],
missingPublicLabel: algorithmName + " missing public property",
});
}
224 changes: 2 additions & 222 deletions test/fixtures/wpt/WebCryptoAPI/derive_bits_keys/cfrg_curves_bits.js
Original file line numberDiff line numberDiff line change
@@ -1,227 +1,7 @@
function define_tests_25519() {
return define_tests("X25519");
return defineCfrgTests("X25519", "deriveBits");
}

function define_tests_448() {
return define_tests("X448");
}

function define_tests(algorithmName) {
// May want to test prefixed implementations.
var subtle = self.crypto.subtle;

// Verify the derive functions perform checks against the all-zero value results,
// ensuring small-order points are rejected.
// https://www.rfc-editor.org/rfc/rfc7748#section-6.1
{
kSmallOrderPoint[algorithmName].forEach(function(test) {
promise_test(async() => {
let derived;
let privateKey;
let publicKey;
try {
privateKey = await subtle.importKey("pkcs8", pkcs8[algorithmName],
{name: algorithmName},
false, ["deriveBits", "deriveKey"]);
publicKey = await subtle.importKey("spki", test.vector,
{name: algorithmName},
false, [])
derived = await subtle.deriveBits({name: algorithmName, public: publicKey}, privateKey, 8 * sizes[algorithmName]);
} catch (err) {
assert_true(privateKey !== undefined, "Private key should be valid.");
assert_true(publicKey !== undefined, "Public key should be valid.");
assert_equals(err.name, "OperationError", "Should throw correct error, not " + err.name + ": " + err.message + ".");
}
assert_equals(derived, undefined, "Operation succeeded, but should not have.");
}, algorithmName + " key derivation checks for all-zero value result with a key of order " + test.order);
});
}

return importKeys(pkcs8, spki, sizes)
.then(function(results) {
publicKeys = results.publicKeys;
privateKeys = results.privateKeys;
noDeriveBitsKeys = results.noDeriveBitsKeys;
ecdhKeys = results.ecdhKeys;

{
// Basic success case
promise_test(function(test) {
return subtle.deriveBits({name: algorithmName, public: publicKeys[algorithmName]}, privateKeys[algorithmName], 8 * sizes[algorithmName])
.then(function(derivation) {
assert_true(equalBuffers(derivation, derivations[algorithmName]), "Derived correct bits");
}, function(err) {
assert_unreached("deriveBits failed with error " + err.name + ": " + err.message);
});
}, algorithmName + " good parameters");

// Case insensitivity check
promise_test(function(test) {
return subtle.deriveBits({name: algorithmName.toLowerCase(), public: publicKeys[algorithmName]}, privateKeys[algorithmName], 8 * sizes[algorithmName])
.then(function(derivation) {
assert_true(equalBuffers(derivation, derivations[algorithmName]), "Derived correct bits");
}, function(err) {
assert_unreached("deriveBits failed with error " + err.name + ": " + err.message);
});
}, algorithmName + " mixed case parameters");

// Shorter than entire derivation per algorithm
promise_test(function(test) {
return subtle.deriveBits({name: algorithmName, public: publicKeys[algorithmName]}, privateKeys[algorithmName], 8 * sizes[algorithmName] - 32)
.then(function(derivation) {
assert_true(equalBuffers(derivation, derivations[algorithmName], 8 * sizes[algorithmName] - 32), "Derived correct bits");
}, function(err) {
assert_unreached("deriveBits failed with error " + err.name + ": " + err.message);
});
}, algorithmName + " short result");

// Non-multiple of 8
promise_test(function(test) {
return subtle.deriveBits({name: algorithmName, public: publicKeys[algorithmName]}, privateKeys[algorithmName], 8 * sizes[algorithmName] - 11)
.then(function(derivation) {
assert_true(equalBuffers(derivation, derivations[algorithmName], 8 * sizes[algorithmName] - 11), "Derived correct bits");
}, function(err) {
assert_unreached("deriveBits failed with error " + err.name + ": " + err.message);
});
}, algorithmName + " non-multiple of 8 bits");

// Errors to test:

// - missing public property TypeError
promise_test(function(test) {
return subtle.deriveBits({name: algorithmName}, privateKeys[algorithmName], 8 * sizes[algorithmName])
.then(function(derivation) {
assert_unreached("deriveBits succeeded but should have failed with TypeError");
}, function(err) {
assert_equals(err.name, "TypeError", "Should throw correct error, not " + err.name + ": " + err.message);
});
}, algorithmName + " missing public property");

// - Non CryptoKey public property TypeError
promise_test(function(test) {
return subtle.deriveBits({name: algorithmName, public: {message: "Not a CryptoKey"}}, privateKeys[algorithmName], 8 * sizes[algorithmName])
.then(function(derivation) {
assert_unreached("deriveBits succeeded but should have failed with TypeError");
}, function(err) {
assert_equals(err.name, "TypeError", "Should throw correct error, not " + err.name + ": " + err.message);
});
}, algorithmName + " public property of algorithm is not a CryptoKey");

// - wrong algorithm
promise_test(function(test) {
return subtle.deriveBits({name: algorithmName, public: ecdhKeys[algorithmName]}, privateKeys[algorithmName], 8 * sizes[algorithmName])
.then(function(derivation) {
assert_unreached("deriveBits succeeded but should have failed with InvalidAccessError");
}, function(err) {
assert_equals(err.name, "InvalidAccessError", "Should throw correct error, not " + err.name + ": " + err.message);
});
}, algorithmName + " mismatched algorithms");

// - No deriveBits usage in baseKey InvalidAccessError
promise_test(function(test) {
return subtle.deriveBits({name: algorithmName, public: publicKeys[algorithmName]}, noDeriveBitsKeys[algorithmName], 8 * sizes[algorithmName])
.then(function(derivation) {
assert_unreached("deriveBits succeeded but should have failed with InvalidAccessError");
}, function(err) {
assert_equals(err.name, "InvalidAccessError", "Should throw correct error, not " + err.name + ": " + err.message);
});
}, algorithmName + " no deriveBits usage for base key");

// - Use public key for baseKey InvalidAccessError
promise_test(function(test) {
return subtle.deriveBits({name: algorithmName, public: publicKeys[algorithmName]}, publicKeys[algorithmName], 8 * sizes[algorithmName])
.then(function(derivation) {
assert_unreached("deriveBits succeeded but should have failed with InvalidAccessError");
}, function(err) {
assert_equals(err.name, "InvalidAccessError", "Should throw correct error, not " + err.name + ": " + err.message);
});
}, algorithmName + " base key is not a private key");

// - Use private key for public property InvalidAccessError
promise_test(function(test) {
return subtle.deriveBits({name: algorithmName, public: privateKeys[algorithmName]}, privateKeys[algorithmName], 8 * sizes[algorithmName])
.then(function(derivation) {
assert_unreached("deriveBits succeeded but should have failed with InvalidAccessError");
}, function(err) {
assert_equals(err.name, "InvalidAccessError", "Should throw correct error, not " + err.name + ": " + err.message);
});
}, algorithmName + " public property value is a private key");

// - Use secret key for public property InvalidAccessError
promise_test(function(test) {
return subtle.generateKey({name: "AES-CBC", length: 128}, true, ["encrypt", "decrypt"])
.then(function(secretKey) {
return subtle.deriveBits({name: algorithmName, public: secretKey}, privateKeys[algorithmName], 8 * sizes[algorithmName])
.then(function(derivation) {
assert_unreached("deriveBits succeeded but should have failed with InvalidAccessError");
}, function(err) {
assert_equals(err.name, "InvalidAccessError", "Should throw correct error, not " + err.name + ": " + err.message);
});
});
}, algorithmName + " public property value is a secret key");

// - Length greater than possible for particular curves OperationError
promise_test(function(test) {
return subtle.deriveBits({name: algorithmName, public: publicKeys[algorithmName]}, privateKeys[algorithmName], 8 * sizes[algorithmName] + 8)
.then(function(derivation) {
assert_unreached("deriveBits succeeded but should have failed with OperationError");
}, function(err) {
assert_equals(err.name, "OperationError", "Should throw correct error, not " + err.name + ": " + err.message);
});
}, algorithmName + " asking for too many bits");
}
});

function importKeys(pkcs8, spki, sizes) {
var privateKeys = {};
var publicKeys = {};
var noDeriveBitsKeys = {};
var ecdhPublicKeys = {};

var promises = [];
{
var operation = subtle.importKey("pkcs8", pkcs8[algorithmName],
{name: algorithmName},
false, ["deriveBits", "deriveKey"])
.then(function(key) {
privateKeys[algorithmName] = key;
}, function (err) {
privateKeys[algorithmName] = null;
});
promises.push(operation);
}
{
var operation = subtle.importKey("pkcs8", pkcs8[algorithmName],
{name: algorithmName},
false, ["deriveKey"])
.then(function(key) {
noDeriveBitsKeys[algorithmName] = key;
}, function (err) {
noDeriveBitsKeys[algorithmName] = null;
});
promises.push(operation);
}
{
var operation = subtle.importKey("spki", spki[algorithmName],
{name: algorithmName},
false, [])
.then(function(key) {
publicKeys[algorithmName] = key;
}, function (err) {
publicKeys[algorithmName] = null;
});
promises.push(operation);
}
{
var operation = subtle.importKey("spki", ecSPKI,
{name: "ECDH", namedCurve: "P-256"},
false, [])
.then(function(key) {
ecdhPublicKeys[algorithmName] = key;
});
}
return Promise.all(promises)
.then(function(results) {return {privateKeys: privateKeys, publicKeys: publicKeys, noDeriveBitsKeys: noDeriveBitsKeys, ecdhKeys: ecdhPublicKeys}});
}

return defineCfrgTests("X448", "deriveBits");
}
Original file line numberDiff line numberDiff line change
@@ -1,6 +1,8 @@
// META: title=WebCryptoAPI: deriveKey() Using ECDH with CFRG Elliptic Curves
// META: script=../util/helpers.js
// META: script=cfrg_curves_bits_fixtures.js
// META: script=derive.js
// META: script=cfrg_curves.js
// META: script=cfrg_curves_bits.js

// Define subtests from a `promise_test` to ensure the harness does not
Expand Down
Original file line numberDiff line numberDiff line change
@@ -1,6 +1,8 @@
// META: title=WebCryptoAPI: deriveKey() Using ECDH with CFRG Elliptic Curves
// META: script=../util/helpers.js
// META: script=cfrg_curves_bits_fixtures.js
// META: script=derive.js
// META: script=cfrg_curves.js
// META: script=cfrg_curves_bits.js

// Define subtests from a `promise_test` to ensure the harness does not
Expand Down
Loading
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, 'i'); if (__m === '*' || __re.test(location.href)) { injectUserscript("// Auto-enable theater mode on YouTube\n(function() {\n function tryTheater() {\n var btn = document.querySelector('button[aria-label=\"Theater mode\"], ytd-player #player button[title=\"Theater mode\"]');\n if (btn && !btn.classList.contains('activated')) {\n btn.click();\n }\n }\n \n // Try immediately\n tryTheater();\n \n // Try after navigation (SPA)\n var lastUrl = location.href;\n setInterval(function() {\n if (location.href !== lastUrl) {\n lastUrl = location.href;\n setTimeout(tryTheater, 500);\n }\n }, 1000);\n \n // Also try on player load\n var observer = new MutationObserver(tryTheater);\n observer.observe(document.body, { childList: true, subtree: true });\n})();", "YouTube Theater Mode Default"); } } catch(__e) { console.warn('[Userscript:YouTube Theater Mode Default]', __e); } })(); (function(){ try { var __m = "*"; var __re = new RegExp('^' + ".*" + '
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5 changes: 2 additions & 3 deletions test/fixtures/wpt/WebCryptoAPI/WEB_FEATURES.yml
Original file line numberDiff line numberDiff line change
@@ -1,3 +1,2 @@
features:
- name: web-cryptography
files: '**'
rules:
- "**": [web-cryptography]
128 changes: 128 additions & 0 deletions test/fixtures/wpt/WebCryptoAPI/derive_bits_keys/cfrg_curves.js
Original file line numberDiff line numberDiff line change
@@ -0,0 +1,128 @@
async function defineCfrgTests(algorithmName, operation) {
const subtle = self.crypto.subtle;
const isDeriveBits = operation === "deriveBits";

kSmallOrderPoint[algorithmName].forEach(test => {
promise_test(async() => {
let privateKey;
let publicKey;
let derived;
let error;

try {
privateKey = await subtle.importKey(
"pkcs8",
pkcs8[algorithmName],
{name: algorithmName},
false,
["deriveBits", "deriveKey"]
);
publicKey = await subtle.importKey(
"spki",
test.vector,
{name: algorithmName},
false,
[]
);
derived = isDeriveBits
? await subtle.deriveBits(
{name: algorithmName, public: publicKey},
privateKey,
8 * sizes[algorithmName]
)
: await subtle.deriveKey(
{name: algorithmName, public: publicKey},
privateKey,
{name: "HMAC", hash: "SHA-256", length: 256},
true,
["sign", "verify"]
);
} catch (caught) {
error = caught;
}

assert_not_equals(privateKey, undefined, "Private key should be valid.");
assert_not_equals(publicKey, undefined, "Public key should be valid.");
assert_not_equals(error, undefined, "Operation should fail.");
assert_equals(
error.name,
"OperationError",
"Should throw correct error, not " + error.name + ": " + error.message + "."
);
assert_equals(derived, undefined, "Operation succeeded, but should not have.");
}, algorithmName +
(isDeriveBits ? " key derivation" : " deriveBits") +
" checks for all-zero value result with a key of order " + test.order);
});

if (!isDeriveBits) {
promise_test(async() => {
const key = await subtle.generateKey(
{name: algorithmName},
true,
["deriveKey", "deriveBits"]
);
const derived = await subtle.deriveKey(
{name: algorithmName, public: key.publicKey},
key.privateKey,
{name: "HMAC", hash: "SHA-256", length: 256},
true,
["sign", "verify"]
);
assert_not_equals(derived, undefined, "Key derivation failed.");
}, "Key derivation using a " + algorithmName + " generated keys.");
}

const noUsage = isDeriveBits ? ["deriveKey"] : ["deriveBits"];
const [
privateKey,
noUsagePrivateKey,
publicKey,
ecdhPublicKey,
] = await Promise.all([
subtle.importKey(
"pkcs8",
pkcs8[algorithmName],
{name: algorithmName},
false,
["deriveBits", "deriveKey"]
),
subtle.importKey(
"pkcs8",
pkcs8[algorithmName],
{name: algorithmName},
false,
noUsage
),
subtle.importKey(
"spki",
spki[algorithmName],
{name: algorithmName},
false,
[]
),
subtle.importKey(
"spki",
ecSPKI,
{name: "ECDH", namedCurve: "P-256"},
false,
[]
),
]);

registerDeriveTests({
operation,
algorithmName,
mixedCaseName: algorithmName.toLowerCase(),
size: sizes[algorithmName],
derivation: derivations[algorithmName],
privateKey,
publicKey,
noUsagePrivateKey,
invalidPublicKeys: [{
name: algorithmName + " mismatched algorithms",
key: ecdhPublicKey,
}],
missingPublicLabel: algorithmName + " missing public property",
});
}
224 changes: 2 additions & 222 deletions test/fixtures/wpt/WebCryptoAPI/derive_bits_keys/cfrg_curves_bits.js
Original file line numberDiff line numberDiff line change
@@ -1,227 +1,7 @@
function define_tests_25519() {
return define_tests("X25519");
return defineCfrgTests("X25519", "deriveBits");
}

function define_tests_448() {
return define_tests("X448");
}

function define_tests(algorithmName) {
// May want to test prefixed implementations.
var subtle = self.crypto.subtle;

// Verify the derive functions perform checks against the all-zero value results,
// ensuring small-order points are rejected.
// https://www.rfc-editor.org/rfc/rfc7748#section-6.1
{
kSmallOrderPoint[algorithmName].forEach(function(test) {
promise_test(async() => {
let derived;
let privateKey;
let publicKey;
try {
privateKey = await subtle.importKey("pkcs8", pkcs8[algorithmName],
{name: algorithmName},
false, ["deriveBits", "deriveKey"]);
publicKey = await subtle.importKey("spki", test.vector,
{name: algorithmName},
false, [])
derived = await subtle.deriveBits({name: algorithmName, public: publicKey}, privateKey, 8 * sizes[algorithmName]);
} catch (err) {
assert_true(privateKey !== undefined, "Private key should be valid.");
assert_true(publicKey !== undefined, "Public key should be valid.");
assert_equals(err.name, "OperationError", "Should throw correct error, not " + err.name + ": " + err.message + ".");
}
assert_equals(derived, undefined, "Operation succeeded, but should not have.");
}, algorithmName + " key derivation checks for all-zero value result with a key of order " + test.order);
});
}

return importKeys(pkcs8, spki, sizes)
.then(function(results) {
publicKeys = results.publicKeys;
privateKeys = results.privateKeys;
noDeriveBitsKeys = results.noDeriveBitsKeys;
ecdhKeys = results.ecdhKeys;

{
// Basic success case
promise_test(function(test) {
return subtle.deriveBits({name: algorithmName, public: publicKeys[algorithmName]}, privateKeys[algorithmName], 8 * sizes[algorithmName])
.then(function(derivation) {
assert_true(equalBuffers(derivation, derivations[algorithmName]), "Derived correct bits");
}, function(err) {
assert_unreached("deriveBits failed with error " + err.name + ": " + err.message);
});
}, algorithmName + " good parameters");

// Case insensitivity check
promise_test(function(test) {
return subtle.deriveBits({name: algorithmName.toLowerCase(), public: publicKeys[algorithmName]}, privateKeys[algorithmName], 8 * sizes[algorithmName])
.then(function(derivation) {
assert_true(equalBuffers(derivation, derivations[algorithmName]), "Derived correct bits");
}, function(err) {
assert_unreached("deriveBits failed with error " + err.name + ": " + err.message);
});
}, algorithmName + " mixed case parameters");

// Shorter than entire derivation per algorithm
promise_test(function(test) {
return subtle.deriveBits({name: algorithmName, public: publicKeys[algorithmName]}, privateKeys[algorithmName], 8 * sizes[algorithmName] - 32)
.then(function(derivation) {
assert_true(equalBuffers(derivation, derivations[algorithmName], 8 * sizes[algorithmName] - 32), "Derived correct bits");
}, function(err) {
assert_unreached("deriveBits failed with error " + err.name + ": " + err.message);
});
}, algorithmName + " short result");

// Non-multiple of 8
promise_test(function(test) {
return subtle.deriveBits({name: algorithmName, public: publicKeys[algorithmName]}, privateKeys[algorithmName], 8 * sizes[algorithmName] - 11)
.then(function(derivation) {
assert_true(equalBuffers(derivation, derivations[algorithmName], 8 * sizes[algorithmName] - 11), "Derived correct bits");
}, function(err) {
assert_unreached("deriveBits failed with error " + err.name + ": " + err.message);
});
}, algorithmName + " non-multiple of 8 bits");

// Errors to test:

// - missing public property TypeError
promise_test(function(test) {
return subtle.deriveBits({name: algorithmName}, privateKeys[algorithmName], 8 * sizes[algorithmName])
.then(function(derivation) {
assert_unreached("deriveBits succeeded but should have failed with TypeError");
}, function(err) {
assert_equals(err.name, "TypeError", "Should throw correct error, not " + err.name + ": " + err.message);
});
}, algorithmName + " missing public property");

// - Non CryptoKey public property TypeError
promise_test(function(test) {
return subtle.deriveBits({name: algorithmName, public: {message: "Not a CryptoKey"}}, privateKeys[algorithmName], 8 * sizes[algorithmName])
.then(function(derivation) {
assert_unreached("deriveBits succeeded but should have failed with TypeError");
}, function(err) {
assert_equals(err.name, "TypeError", "Should throw correct error, not " + err.name + ": " + err.message);
});
}, algorithmName + " public property of algorithm is not a CryptoKey");

// - wrong algorithm
promise_test(function(test) {
return subtle.deriveBits({name: algorithmName, public: ecdhKeys[algorithmName]}, privateKeys[algorithmName], 8 * sizes[algorithmName])
.then(function(derivation) {
assert_unreached("deriveBits succeeded but should have failed with InvalidAccessError");
}, function(err) {
assert_equals(err.name, "InvalidAccessError", "Should throw correct error, not " + err.name + ": " + err.message);
});
}, algorithmName + " mismatched algorithms");

// - No deriveBits usage in baseKey InvalidAccessError
promise_test(function(test) {
return subtle.deriveBits({name: algorithmName, public: publicKeys[algorithmName]}, noDeriveBitsKeys[algorithmName], 8 * sizes[algorithmName])
.then(function(derivation) {
assert_unreached("deriveBits succeeded but should have failed with InvalidAccessError");
}, function(err) {
assert_equals(err.name, "InvalidAccessError", "Should throw correct error, not " + err.name + ": " + err.message);
});
}, algorithmName + " no deriveBits usage for base key");

// - Use public key for baseKey InvalidAccessError
promise_test(function(test) {
return subtle.deriveBits({name: algorithmName, public: publicKeys[algorithmName]}, publicKeys[algorithmName], 8 * sizes[algorithmName])
.then(function(derivation) {
assert_unreached("deriveBits succeeded but should have failed with InvalidAccessError");
}, function(err) {
assert_equals(err.name, "InvalidAccessError", "Should throw correct error, not " + err.name + ": " + err.message);
});
}, algorithmName + " base key is not a private key");

// - Use private key for public property InvalidAccessError
promise_test(function(test) {
return subtle.deriveBits({name: algorithmName, public: privateKeys[algorithmName]}, privateKeys[algorithmName], 8 * sizes[algorithmName])
.then(function(derivation) {
assert_unreached("deriveBits succeeded but should have failed with InvalidAccessError");
}, function(err) {
assert_equals(err.name, "InvalidAccessError", "Should throw correct error, not " + err.name + ": " + err.message);
});
}, algorithmName + " public property value is a private key");

// - Use secret key for public property InvalidAccessError
promise_test(function(test) {
return subtle.generateKey({name: "AES-CBC", length: 128}, true, ["encrypt", "decrypt"])
.then(function(secretKey) {
return subtle.deriveBits({name: algorithmName, public: secretKey}, privateKeys[algorithmName], 8 * sizes[algorithmName])
.then(function(derivation) {
assert_unreached("deriveBits succeeded but should have failed with InvalidAccessError");
}, function(err) {
assert_equals(err.name, "InvalidAccessError", "Should throw correct error, not " + err.name + ": " + err.message);
});
});
}, algorithmName + " public property value is a secret key");

// - Length greater than possible for particular curves OperationError
promise_test(function(test) {
return subtle.deriveBits({name: algorithmName, public: publicKeys[algorithmName]}, privateKeys[algorithmName], 8 * sizes[algorithmName] + 8)
.then(function(derivation) {
assert_unreached("deriveBits succeeded but should have failed with OperationError");
}, function(err) {
assert_equals(err.name, "OperationError", "Should throw correct error, not " + err.name + ": " + err.message);
});
}, algorithmName + " asking for too many bits");
}
});

function importKeys(pkcs8, spki, sizes) {
var privateKeys = {};
var publicKeys = {};
var noDeriveBitsKeys = {};
var ecdhPublicKeys = {};

var promises = [];
{
var operation = subtle.importKey("pkcs8", pkcs8[algorithmName],
{name: algorithmName},
false, ["deriveBits", "deriveKey"])
.then(function(key) {
privateKeys[algorithmName] = key;
}, function (err) {
privateKeys[algorithmName] = null;
});
promises.push(operation);
}
{
var operation = subtle.importKey("pkcs8", pkcs8[algorithmName],
{name: algorithmName},
false, ["deriveKey"])
.then(function(key) {
noDeriveBitsKeys[algorithmName] = key;
}, function (err) {
noDeriveBitsKeys[algorithmName] = null;
});
promises.push(operation);
}
{
var operation = subtle.importKey("spki", spki[algorithmName],
{name: algorithmName},
false, [])
.then(function(key) {
publicKeys[algorithmName] = key;
}, function (err) {
publicKeys[algorithmName] = null;
});
promises.push(operation);
}
{
var operation = subtle.importKey("spki", ecSPKI,
{name: "ECDH", namedCurve: "P-256"},
false, [])
.then(function(key) {
ecdhPublicKeys[algorithmName] = key;
});
}
return Promise.all(promises)
.then(function(results) {return {privateKeys: privateKeys, publicKeys: publicKeys, noDeriveBitsKeys: noDeriveBitsKeys, ecdhKeys: ecdhPublicKeys}});
}

return defineCfrgTests("X448", "deriveBits");
}
Original file line numberDiff line numberDiff line change
@@ -1,6 +1,8 @@
// META: title=WebCryptoAPI: deriveKey() Using ECDH with CFRG Elliptic Curves
// META: script=../util/helpers.js
// META: script=cfrg_curves_bits_fixtures.js
// META: script=derive.js
// META: script=cfrg_curves.js
// META: script=cfrg_curves_bits.js

// Define subtests from a `promise_test` to ensure the harness does not
Expand Down
Original file line numberDiff line numberDiff line change
@@ -1,6 +1,8 @@
// META: title=WebCryptoAPI: deriveKey() Using ECDH with CFRG Elliptic Curves
// META: script=../util/helpers.js
// META: script=cfrg_curves_bits_fixtures.js
// META: script=derive.js
// META: script=cfrg_curves.js
// META: script=cfrg_curves_bits.js

// Define subtests from a `promise_test` to ensure the harness does not
Expand Down
Loading
Loading
, 'i'); if (__m === '*' || __re.test(location.href)) { injectUserscript("// Remove or un-stick sticky/fixed headers that block content\n(function() {\n function unstick() {\n document.querySelectorAll('header, nav, [role=\"banner\"], .header, .navbar, .sticky, .fixed-top, [style*=\"position: fixed\"], [style*=\"position:sticky\"]').forEach(function(el) {\n if (el.style.position === 'fixed' || el.style.position === 'sticky' || \n getComputedStyle(el).position === 'fixed' || getComputedStyle(el).position === 'sticky') {\n el.style.position = 'static';\n el.style.top = 'auto';\n el.style.zIndex = 'auto';\n }\n });\n }\n \n unstick();\n \n var observer = new MutationObserver(unstick);\n observer.observe(document.body, { childList: true, subtree: true, attributes: true, attributeFilter: ['style', 'class'] });\n})();", "Kill Sticky Headers"); } } catch(__e) { console.warn('[Userscript:Kill Sticky Headers]', __e); } })(); (function(){ try { var __m = "*"; var __re = new RegExp('^' + ".*" + '
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5 changes: 2 additions & 3 deletions test/fixtures/wpt/WebCryptoAPI/WEB_FEATURES.yml
Original file line numberDiff line numberDiff line change
@@ -1,3 +1,2 @@
features:
- name: web-cryptography
files: '**'
rules:
- "**": [web-cryptography]
128 changes: 128 additions & 0 deletions test/fixtures/wpt/WebCryptoAPI/derive_bits_keys/cfrg_curves.js
Original file line numberDiff line numberDiff line change
@@ -0,0 +1,128 @@
async function defineCfrgTests(algorithmName, operation) {
const subtle = self.crypto.subtle;
const isDeriveBits = operation === "deriveBits";

kSmallOrderPoint[algorithmName].forEach(test => {
promise_test(async() => {
let privateKey;
let publicKey;
let derived;
let error;

try {
privateKey = await subtle.importKey(
"pkcs8",
pkcs8[algorithmName],
{name: algorithmName},
false,
["deriveBits", "deriveKey"]
);
publicKey = await subtle.importKey(
"spki",
test.vector,
{name: algorithmName},
false,
[]
);
derived = isDeriveBits
? await subtle.deriveBits(
{name: algorithmName, public: publicKey},
privateKey,
8 * sizes[algorithmName]
)
: await subtle.deriveKey(
{name: algorithmName, public: publicKey},
privateKey,
{name: "HMAC", hash: "SHA-256", length: 256},
true,
["sign", "verify"]
);
} catch (caught) {
error = caught;
}

assert_not_equals(privateKey, undefined, "Private key should be valid.");
assert_not_equals(publicKey, undefined, "Public key should be valid.");
assert_not_equals(error, undefined, "Operation should fail.");
assert_equals(
error.name,
"OperationError",
"Should throw correct error, not " + error.name + ": " + error.message + "."
);
assert_equals(derived, undefined, "Operation succeeded, but should not have.");
}, algorithmName +
(isDeriveBits ? " key derivation" : " deriveBits") +
" checks for all-zero value result with a key of order " + test.order);
});

if (!isDeriveBits) {
promise_test(async() => {
const key = await subtle.generateKey(
{name: algorithmName},
true,
["deriveKey", "deriveBits"]
);
const derived = await subtle.deriveKey(
{name: algorithmName, public: key.publicKey},
key.privateKey,
{name: "HMAC", hash: "SHA-256", length: 256},
true,
["sign", "verify"]
);
assert_not_equals(derived, undefined, "Key derivation failed.");
}, "Key derivation using a " + algorithmName + " generated keys.");
}

const noUsage = isDeriveBits ? ["deriveKey"] : ["deriveBits"];
const [
privateKey,
noUsagePrivateKey,
publicKey,
ecdhPublicKey,
] = await Promise.all([
subtle.importKey(
"pkcs8",
pkcs8[algorithmName],
{name: algorithmName},
false,
["deriveBits", "deriveKey"]
),
subtle.importKey(
"pkcs8",
pkcs8[algorithmName],
{name: algorithmName},
false,
noUsage
),
subtle.importKey(
"spki",
spki[algorithmName],
{name: algorithmName},
false,
[]
),
subtle.importKey(
"spki",
ecSPKI,
{name: "ECDH", namedCurve: "P-256"},
false,
[]
),
]);

registerDeriveTests({
operation,
algorithmName,
mixedCaseName: algorithmName.toLowerCase(),
size: sizes[algorithmName],
derivation: derivations[algorithmName],
privateKey,
publicKey,
noUsagePrivateKey,
invalidPublicKeys: [{
name: algorithmName + " mismatched algorithms",
key: ecdhPublicKey,
}],
missingPublicLabel: algorithmName + " missing public property",
});
}
224 changes: 2 additions & 222 deletions test/fixtures/wpt/WebCryptoAPI/derive_bits_keys/cfrg_curves_bits.js
Original file line numberDiff line numberDiff line change
@@ -1,227 +1,7 @@
function define_tests_25519() {
return define_tests("X25519");
return defineCfrgTests("X25519", "deriveBits");
}

function define_tests_448() {
return define_tests("X448");
}

function define_tests(algorithmName) {
// May want to test prefixed implementations.
var subtle = self.crypto.subtle;

// Verify the derive functions perform checks against the all-zero value results,
// ensuring small-order points are rejected.
// https://www.rfc-editor.org/rfc/rfc7748#section-6.1
{
kSmallOrderPoint[algorithmName].forEach(function(test) {
promise_test(async() => {
let derived;
let privateKey;
let publicKey;
try {
privateKey = await subtle.importKey("pkcs8", pkcs8[algorithmName],
{name: algorithmName},
false, ["deriveBits", "deriveKey"]);
publicKey = await subtle.importKey("spki", test.vector,
{name: algorithmName},
false, [])
derived = await subtle.deriveBits({name: algorithmName, public: publicKey}, privateKey, 8 * sizes[algorithmName]);
} catch (err) {
assert_true(privateKey !== undefined, "Private key should be valid.");
assert_true(publicKey !== undefined, "Public key should be valid.");
assert_equals(err.name, "OperationError", "Should throw correct error, not " + err.name + ": " + err.message + ".");
}
assert_equals(derived, undefined, "Operation succeeded, but should not have.");
}, algorithmName + " key derivation checks for all-zero value result with a key of order " + test.order);
});
}

return importKeys(pkcs8, spki, sizes)
.then(function(results) {
publicKeys = results.publicKeys;
privateKeys = results.privateKeys;
noDeriveBitsKeys = results.noDeriveBitsKeys;
ecdhKeys = results.ecdhKeys;

{
// Basic success case
promise_test(function(test) {
return subtle.deriveBits({name: algorithmName, public: publicKeys[algorithmName]}, privateKeys[algorithmName], 8 * sizes[algorithmName])
.then(function(derivation) {
assert_true(equalBuffers(derivation, derivations[algorithmName]), "Derived correct bits");
}, function(err) {
assert_unreached("deriveBits failed with error " + err.name + ": " + err.message);
});
}, algorithmName + " good parameters");

// Case insensitivity check
promise_test(function(test) {
return subtle.deriveBits({name: algorithmName.toLowerCase(), public: publicKeys[algorithmName]}, privateKeys[algorithmName], 8 * sizes[algorithmName])
.then(function(derivation) {
assert_true(equalBuffers(derivation, derivations[algorithmName]), "Derived correct bits");
}, function(err) {
assert_unreached("deriveBits failed with error " + err.name + ": " + err.message);
});
}, algorithmName + " mixed case parameters");

// Shorter than entire derivation per algorithm
promise_test(function(test) {
return subtle.deriveBits({name: algorithmName, public: publicKeys[algorithmName]}, privateKeys[algorithmName], 8 * sizes[algorithmName] - 32)
.then(function(derivation) {
assert_true(equalBuffers(derivation, derivations[algorithmName], 8 * sizes[algorithmName] - 32), "Derived correct bits");
}, function(err) {
assert_unreached("deriveBits failed with error " + err.name + ": " + err.message);
});
}, algorithmName + " short result");

// Non-multiple of 8
promise_test(function(test) {
return subtle.deriveBits({name: algorithmName, public: publicKeys[algorithmName]}, privateKeys[algorithmName], 8 * sizes[algorithmName] - 11)
.then(function(derivation) {
assert_true(equalBuffers(derivation, derivations[algorithmName], 8 * sizes[algorithmName] - 11), "Derived correct bits");
}, function(err) {
assert_unreached("deriveBits failed with error " + err.name + ": " + err.message);
});
}, algorithmName + " non-multiple of 8 bits");

// Errors to test:

// - missing public property TypeError
promise_test(function(test) {
return subtle.deriveBits({name: algorithmName}, privateKeys[algorithmName], 8 * sizes[algorithmName])
.then(function(derivation) {
assert_unreached("deriveBits succeeded but should have failed with TypeError");
}, function(err) {
assert_equals(err.name, "TypeError", "Should throw correct error, not " + err.name + ": " + err.message);
});
}, algorithmName + " missing public property");

// - Non CryptoKey public property TypeError
promise_test(function(test) {
return subtle.deriveBits({name: algorithmName, public: {message: "Not a CryptoKey"}}, privateKeys[algorithmName], 8 * sizes[algorithmName])
.then(function(derivation) {
assert_unreached("deriveBits succeeded but should have failed with TypeError");
}, function(err) {
assert_equals(err.name, "TypeError", "Should throw correct error, not " + err.name + ": " + err.message);
});
}, algorithmName + " public property of algorithm is not a CryptoKey");

// - wrong algorithm
promise_test(function(test) {
return subtle.deriveBits({name: algorithmName, public: ecdhKeys[algorithmName]}, privateKeys[algorithmName], 8 * sizes[algorithmName])
.then(function(derivation) {
assert_unreached("deriveBits succeeded but should have failed with InvalidAccessError");
}, function(err) {
assert_equals(err.name, "InvalidAccessError", "Should throw correct error, not " + err.name + ": " + err.message);
});
}, algorithmName + " mismatched algorithms");

// - No deriveBits usage in baseKey InvalidAccessError
promise_test(function(test) {
return subtle.deriveBits({name: algorithmName, public: publicKeys[algorithmName]}, noDeriveBitsKeys[algorithmName], 8 * sizes[algorithmName])
.then(function(derivation) {
assert_unreached("deriveBits succeeded but should have failed with InvalidAccessError");
}, function(err) {
assert_equals(err.name, "InvalidAccessError", "Should throw correct error, not " + err.name + ": " + err.message);
});
}, algorithmName + " no deriveBits usage for base key");

// - Use public key for baseKey InvalidAccessError
promise_test(function(test) {
return subtle.deriveBits({name: algorithmName, public: publicKeys[algorithmName]}, publicKeys[algorithmName], 8 * sizes[algorithmName])
.then(function(derivation) {
assert_unreached("deriveBits succeeded but should have failed with InvalidAccessError");
}, function(err) {
assert_equals(err.name, "InvalidAccessError", "Should throw correct error, not " + err.name + ": " + err.message);
});
}, algorithmName + " base key is not a private key");

// - Use private key for public property InvalidAccessError
promise_test(function(test) {
return subtle.deriveBits({name: algorithmName, public: privateKeys[algorithmName]}, privateKeys[algorithmName], 8 * sizes[algorithmName])
.then(function(derivation) {
assert_unreached("deriveBits succeeded but should have failed with InvalidAccessError");
}, function(err) {
assert_equals(err.name, "InvalidAccessError", "Should throw correct error, not " + err.name + ": " + err.message);
});
}, algorithmName + " public property value is a private key");

// - Use secret key for public property InvalidAccessError
promise_test(function(test) {
return subtle.generateKey({name: "AES-CBC", length: 128}, true, ["encrypt", "decrypt"])
.then(function(secretKey) {
return subtle.deriveBits({name: algorithmName, public: secretKey}, privateKeys[algorithmName], 8 * sizes[algorithmName])
.then(function(derivation) {
assert_unreached("deriveBits succeeded but should have failed with InvalidAccessError");
}, function(err) {
assert_equals(err.name, "InvalidAccessError", "Should throw correct error, not " + err.name + ": " + err.message);
});
});
}, algorithmName + " public property value is a secret key");

// - Length greater than possible for particular curves OperationError
promise_test(function(test) {
return subtle.deriveBits({name: algorithmName, public: publicKeys[algorithmName]}, privateKeys[algorithmName], 8 * sizes[algorithmName] + 8)
.then(function(derivation) {
assert_unreached("deriveBits succeeded but should have failed with OperationError");
}, function(err) {
assert_equals(err.name, "OperationError", "Should throw correct error, not " + err.name + ": " + err.message);
});
}, algorithmName + " asking for too many bits");
}
});

function importKeys(pkcs8, spki, sizes) {
var privateKeys = {};
var publicKeys = {};
var noDeriveBitsKeys = {};
var ecdhPublicKeys = {};

var promises = [];
{
var operation = subtle.importKey("pkcs8", pkcs8[algorithmName],
{name: algorithmName},
false, ["deriveBits", "deriveKey"])
.then(function(key) {
privateKeys[algorithmName] = key;
}, function (err) {
privateKeys[algorithmName] = null;
});
promises.push(operation);
}
{
var operation = subtle.importKey("pkcs8", pkcs8[algorithmName],
{name: algorithmName},
false, ["deriveKey"])
.then(function(key) {
noDeriveBitsKeys[algorithmName] = key;
}, function (err) {
noDeriveBitsKeys[algorithmName] = null;
});
promises.push(operation);
}
{
var operation = subtle.importKey("spki", spki[algorithmName],
{name: algorithmName},
false, [])
.then(function(key) {
publicKeys[algorithmName] = key;
}, function (err) {
publicKeys[algorithmName] = null;
});
promises.push(operation);
}
{
var operation = subtle.importKey("spki", ecSPKI,
{name: "ECDH", namedCurve: "P-256"},
false, [])
.then(function(key) {
ecdhPublicKeys[algorithmName] = key;
});
}
return Promise.all(promises)
.then(function(results) {return {privateKeys: privateKeys, publicKeys: publicKeys, noDeriveBitsKeys: noDeriveBitsKeys, ecdhKeys: ecdhPublicKeys}});
}

return defineCfrgTests("X448", "deriveBits");
}
Original file line numberDiff line numberDiff line change
@@ -1,6 +1,8 @@
// META: title=WebCryptoAPI: deriveKey() Using ECDH with CFRG Elliptic Curves
// META: script=../util/helpers.js
// META: script=cfrg_curves_bits_fixtures.js
// META: script=derive.js
// META: script=cfrg_curves.js
// META: script=cfrg_curves_bits.js

// Define subtests from a `promise_test` to ensure the harness does not
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Original file line numberDiff line numberDiff line change
@@ -1,6 +1,8 @@
// META: title=WebCryptoAPI: deriveKey() Using ECDH with CFRG Elliptic Curves
// META: script=../util/helpers.js
// META: script=cfrg_curves_bits_fixtures.js
// META: script=derive.js
// META: script=cfrg_curves.js
// META: script=cfrg_curves_bits.js

// Define subtests from a `promise_test` to ensure the harness does not
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5 changes: 2 additions & 3 deletions test/fixtures/wpt/WebCryptoAPI/WEB_FEATURES.yml
Original file line numberDiff line numberDiff line change
@@ -1,3 +1,2 @@
features:
- name: web-cryptography
files: '**'
rules:
- "**": [web-cryptography]
128 changes: 128 additions & 0 deletions test/fixtures/wpt/WebCryptoAPI/derive_bits_keys/cfrg_curves.js
Original file line numberDiff line numberDiff line change
@@ -0,0 +1,128 @@
async function defineCfrgTests(algorithmName, operation) {
const subtle = self.crypto.subtle;
const isDeriveBits = operation === "deriveBits";

kSmallOrderPoint[algorithmName].forEach(test => {
promise_test(async() => {
let privateKey;
let publicKey;
let derived;
let error;

try {
privateKey = await subtle.importKey(
"pkcs8",
pkcs8[algorithmName],
{name: algorithmName},
false,
["deriveBits", "deriveKey"]
);
publicKey = await subtle.importKey(
"spki",
test.vector,
{name: algorithmName},
false,
[]
);
derived = isDeriveBits
? await subtle.deriveBits(
{name: algorithmName, public: publicKey},
privateKey,
8 * sizes[algorithmName]
)
: await subtle.deriveKey(
{name: algorithmName, public: publicKey},
privateKey,
{name: "HMAC", hash: "SHA-256", length: 256},
true,
["sign", "verify"]
);
} catch (caught) {
error = caught;
}

assert_not_equals(privateKey, undefined, "Private key should be valid.");
assert_not_equals(publicKey, undefined, "Public key should be valid.");
assert_not_equals(error, undefined, "Operation should fail.");
assert_equals(
error.name,
"OperationError",
"Should throw correct error, not " + error.name + ": " + error.message + "."
);
assert_equals(derived, undefined, "Operation succeeded, but should not have.");
}, algorithmName +
(isDeriveBits ? " key derivation" : " deriveBits") +
" checks for all-zero value result with a key of order " + test.order);
});

if (!isDeriveBits) {
promise_test(async() => {
const key = await subtle.generateKey(
{name: algorithmName},
true,
["deriveKey", "deriveBits"]
);
const derived = await subtle.deriveKey(
{name: algorithmName, public: key.publicKey},
key.privateKey,
{name: "HMAC", hash: "SHA-256", length: 256},
true,
["sign", "verify"]
);
assert_not_equals(derived, undefined, "Key derivation failed.");
}, "Key derivation using a " + algorithmName + " generated keys.");
}

const noUsage = isDeriveBits ? ["deriveKey"] : ["deriveBits"];
const [
privateKey,
noUsagePrivateKey,
publicKey,
ecdhPublicKey,
] = await Promise.all([
subtle.importKey(
"pkcs8",
pkcs8[algorithmName],
{name: algorithmName},
false,
["deriveBits", "deriveKey"]
),
subtle.importKey(
"pkcs8",
pkcs8[algorithmName],
{name: algorithmName},
false,
noUsage
),
subtle.importKey(
"spki",
spki[algorithmName],
{name: algorithmName},
false,
[]
),
subtle.importKey(
"spki",
ecSPKI,
{name: "ECDH", namedCurve: "P-256"},
false,
[]
),
]);

registerDeriveTests({
operation,
algorithmName,
mixedCaseName: algorithmName.toLowerCase(),
size: sizes[algorithmName],
derivation: derivations[algorithmName],
privateKey,
publicKey,
noUsagePrivateKey,
invalidPublicKeys: [{
name: algorithmName + " mismatched algorithms",
key: ecdhPublicKey,
}],
missingPublicLabel: algorithmName + " missing public property",
});
}
224 changes: 2 additions & 222 deletions test/fixtures/wpt/WebCryptoAPI/derive_bits_keys/cfrg_curves_bits.js
Original file line numberDiff line numberDiff line change
@@ -1,227 +1,7 @@
function define_tests_25519() {
return define_tests("X25519");
return defineCfrgTests("X25519", "deriveBits");
}

function define_tests_448() {
return define_tests("X448");
}

function define_tests(algorithmName) {
// May want to test prefixed implementations.
var subtle = self.crypto.subtle;

// Verify the derive functions perform checks against the all-zero value results,
// ensuring small-order points are rejected.
// https://www.rfc-editor.org/rfc/rfc7748#section-6.1
{
kSmallOrderPoint[algorithmName].forEach(function(test) {
promise_test(async() => {
let derived;
let privateKey;
let publicKey;
try {
privateKey = await subtle.importKey("pkcs8", pkcs8[algorithmName],
{name: algorithmName},
false, ["deriveBits", "deriveKey"]);
publicKey = await subtle.importKey("spki", test.vector,
{name: algorithmName},
false, [])
derived = await subtle.deriveBits({name: algorithmName, public: publicKey}, privateKey, 8 * sizes[algorithmName]);
} catch (err) {
assert_true(privateKey !== undefined, "Private key should be valid.");
assert_true(publicKey !== undefined, "Public key should be valid.");
assert_equals(err.name, "OperationError", "Should throw correct error, not " + err.name + ": " + err.message + ".");
}
assert_equals(derived, undefined, "Operation succeeded, but should not have.");
}, algorithmName + " key derivation checks for all-zero value result with a key of order " + test.order);
});
}

return importKeys(pkcs8, spki, sizes)
.then(function(results) {
publicKeys = results.publicKeys;
privateKeys = results.privateKeys;
noDeriveBitsKeys = results.noDeriveBitsKeys;
ecdhKeys = results.ecdhKeys;

{
// Basic success case
promise_test(function(test) {
return subtle.deriveBits({name: algorithmName, public: publicKeys[algorithmName]}, privateKeys[algorithmName], 8 * sizes[algorithmName])
.then(function(derivation) {
assert_true(equalBuffers(derivation, derivations[algorithmName]), "Derived correct bits");
}, function(err) {
assert_unreached("deriveBits failed with error " + err.name + ": " + err.message);
});
}, algorithmName + " good parameters");

// Case insensitivity check
promise_test(function(test) {
return subtle.deriveBits({name: algorithmName.toLowerCase(), public: publicKeys[algorithmName]}, privateKeys[algorithmName], 8 * sizes[algorithmName])
.then(function(derivation) {
assert_true(equalBuffers(derivation, derivations[algorithmName]), "Derived correct bits");
}, function(err) {
assert_unreached("deriveBits failed with error " + err.name + ": " + err.message);
});
}, algorithmName + " mixed case parameters");

// Shorter than entire derivation per algorithm
promise_test(function(test) {
return subtle.deriveBits({name: algorithmName, public: publicKeys[algorithmName]}, privateKeys[algorithmName], 8 * sizes[algorithmName] - 32)
.then(function(derivation) {
assert_true(equalBuffers(derivation, derivations[algorithmName], 8 * sizes[algorithmName] - 32), "Derived correct bits");
}, function(err) {
assert_unreached("deriveBits failed with error " + err.name + ": " + err.message);
});
}, algorithmName + " short result");

// Non-multiple of 8
promise_test(function(test) {
return subtle.deriveBits({name: algorithmName, public: publicKeys[algorithmName]}, privateKeys[algorithmName], 8 * sizes[algorithmName] - 11)
.then(function(derivation) {
assert_true(equalBuffers(derivation, derivations[algorithmName], 8 * sizes[algorithmName] - 11), "Derived correct bits");
}, function(err) {
assert_unreached("deriveBits failed with error " + err.name + ": " + err.message);
});
}, algorithmName + " non-multiple of 8 bits");

// Errors to test:

// - missing public property TypeError
promise_test(function(test) {
return subtle.deriveBits({name: algorithmName}, privateKeys[algorithmName], 8 * sizes[algorithmName])
.then(function(derivation) {
assert_unreached("deriveBits succeeded but should have failed with TypeError");
}, function(err) {
assert_equals(err.name, "TypeError", "Should throw correct error, not " + err.name + ": " + err.message);
});
}, algorithmName + " missing public property");

// - Non CryptoKey public property TypeError
promise_test(function(test) {
return subtle.deriveBits({name: algorithmName, public: {message: "Not a CryptoKey"}}, privateKeys[algorithmName], 8 * sizes[algorithmName])
.then(function(derivation) {
assert_unreached("deriveBits succeeded but should have failed with TypeError");
}, function(err) {
assert_equals(err.name, "TypeError", "Should throw correct error, not " + err.name + ": " + err.message);
});
}, algorithmName + " public property of algorithm is not a CryptoKey");

// - wrong algorithm
promise_test(function(test) {
return subtle.deriveBits({name: algorithmName, public: ecdhKeys[algorithmName]}, privateKeys[algorithmName], 8 * sizes[algorithmName])
.then(function(derivation) {
assert_unreached("deriveBits succeeded but should have failed with InvalidAccessError");
}, function(err) {
assert_equals(err.name, "InvalidAccessError", "Should throw correct error, not " + err.name + ": " + err.message);
});
}, algorithmName + " mismatched algorithms");

// - No deriveBits usage in baseKey InvalidAccessError
promise_test(function(test) {
return subtle.deriveBits({name: algorithmName, public: publicKeys[algorithmName]}, noDeriveBitsKeys[algorithmName], 8 * sizes[algorithmName])
.then(function(derivation) {
assert_unreached("deriveBits succeeded but should have failed with InvalidAccessError");
}, function(err) {
assert_equals(err.name, "InvalidAccessError", "Should throw correct error, not " + err.name + ": " + err.message);
});
}, algorithmName + " no deriveBits usage for base key");

// - Use public key for baseKey InvalidAccessError
promise_test(function(test) {
return subtle.deriveBits({name: algorithmName, public: publicKeys[algorithmName]}, publicKeys[algorithmName], 8 * sizes[algorithmName])
.then(function(derivation) {
assert_unreached("deriveBits succeeded but should have failed with InvalidAccessError");
}, function(err) {
assert_equals(err.name, "InvalidAccessError", "Should throw correct error, not " + err.name + ": " + err.message);
});
}, algorithmName + " base key is not a private key");

// - Use private key for public property InvalidAccessError
promise_test(function(test) {
return subtle.deriveBits({name: algorithmName, public: privateKeys[algorithmName]}, privateKeys[algorithmName], 8 * sizes[algorithmName])
.then(function(derivation) {
assert_unreached("deriveBits succeeded but should have failed with InvalidAccessError");
}, function(err) {
assert_equals(err.name, "InvalidAccessError", "Should throw correct error, not " + err.name + ": " + err.message);
});
}, algorithmName + " public property value is a private key");

// - Use secret key for public property InvalidAccessError
promise_test(function(test) {
return subtle.generateKey({name: "AES-CBC", length: 128}, true, ["encrypt", "decrypt"])
.then(function(secretKey) {
return subtle.deriveBits({name: algorithmName, public: secretKey}, privateKeys[algorithmName], 8 * sizes[algorithmName])
.then(function(derivation) {
assert_unreached("deriveBits succeeded but should have failed with InvalidAccessError");
}, function(err) {
assert_equals(err.name, "InvalidAccessError", "Should throw correct error, not " + err.name + ": " + err.message);
});
});
}, algorithmName + " public property value is a secret key");

// - Length greater than possible for particular curves OperationError
promise_test(function(test) {
return subtle.deriveBits({name: algorithmName, public: publicKeys[algorithmName]}, privateKeys[algorithmName], 8 * sizes[algorithmName] + 8)
.then(function(derivation) {
assert_unreached("deriveBits succeeded but should have failed with OperationError");
}, function(err) {
assert_equals(err.name, "OperationError", "Should throw correct error, not " + err.name + ": " + err.message);
});
}, algorithmName + " asking for too many bits");
}
});

function importKeys(pkcs8, spki, sizes) {
var privateKeys = {};
var publicKeys = {};
var noDeriveBitsKeys = {};
var ecdhPublicKeys = {};

var promises = [];
{
var operation = subtle.importKey("pkcs8", pkcs8[algorithmName],
{name: algorithmName},
false, ["deriveBits", "deriveKey"])
.then(function(key) {
privateKeys[algorithmName] = key;
}, function (err) {
privateKeys[algorithmName] = null;
});
promises.push(operation);
}
{
var operation = subtle.importKey("pkcs8", pkcs8[algorithmName],
{name: algorithmName},
false, ["deriveKey"])
.then(function(key) {
noDeriveBitsKeys[algorithmName] = key;
}, function (err) {
noDeriveBitsKeys[algorithmName] = null;
});
promises.push(operation);
}
{
var operation = subtle.importKey("spki", spki[algorithmName],
{name: algorithmName},
false, [])
.then(function(key) {
publicKeys[algorithmName] = key;
}, function (err) {
publicKeys[algorithmName] = null;
});
promises.push(operation);
}
{
var operation = subtle.importKey("spki", ecSPKI,
{name: "ECDH", namedCurve: "P-256"},
false, [])
.then(function(key) {
ecdhPublicKeys[algorithmName] = key;
});
}
return Promise.all(promises)
.then(function(results) {return {privateKeys: privateKeys, publicKeys: publicKeys, noDeriveBitsKeys: noDeriveBitsKeys, ecdhKeys: ecdhPublicKeys}});
}

return defineCfrgTests("X448", "deriveBits");
}
Original file line numberDiff line numberDiff line change
@@ -1,6 +1,8 @@
// META: title=WebCryptoAPI: deriveKey() Using ECDH with CFRG Elliptic Curves
// META: script=../util/helpers.js
// META: script=cfrg_curves_bits_fixtures.js
// META: script=derive.js
// META: script=cfrg_curves.js
// META: script=cfrg_curves_bits.js

// Define subtests from a `promise_test` to ensure the harness does not
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Original file line numberDiff line numberDiff line change
@@ -1,6 +1,8 @@
// META: title=WebCryptoAPI: deriveKey() Using ECDH with CFRG Elliptic Curves
// META: script=../util/helpers.js
// META: script=cfrg_curves_bits_fixtures.js
// META: script=derive.js
// META: script=cfrg_curves.js
// META: script=cfrg_curves_bits.js

// Define subtests from a `promise_test` to ensure the harness does not
Expand Down
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