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2241e8c5b3
fixes: https://github.com/nodejs/node/issues/52188 PR-URL: https://github.com/nodejs/node/pull/52262 Fixes: https://github.com/nodejs/node/issues/52188 Reviewed-By: Luigi Pinca <luigipinca@gmail.com> Reviewed-By: Tobias Nießen <tniessen@tnie.de> Reviewed-By: Yagiz Nizipli <yagiz.nizipli@sentry.io>
246 lines
6.5 KiB
JavaScript
246 lines
6.5 KiB
JavaScript
'use strict';
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const common = require('../common');
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if (!common.hasCrypto)
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common.skip('missing crypto');
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const assert = require('assert');
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const { subtle } = globalThis.crypto;
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const rsa_pkcs = require('../fixtures/crypto/rsa_pkcs');
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const rsa_pss = require('../fixtures/crypto/rsa_pss');
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async function testVerify({
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algorithm,
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hash,
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publicKeyBuffer,
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privateKeyBuffer,
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signature,
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plaintext,
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}) {
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const [
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publicKey,
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noVerifyPublicKey,
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privateKey,
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hmacKey,
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ecdsaKeys,
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] = await Promise.all([
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subtle.importKey(
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'spki',
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publicKeyBuffer,
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{ name: algorithm.name, hash },
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false,
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['verify']),
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subtle.importKey(
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'spki',
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publicKeyBuffer,
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{ name: algorithm.name, hash },
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false,
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[ /* No usages */ ]),
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subtle.importKey(
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'pkcs8',
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privateKeyBuffer,
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{ name: algorithm.name, hash },
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false,
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['sign']),
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subtle.generateKey(
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{ name: 'HMAC', hash: 'SHA-256' },
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false,
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['sign']),
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subtle.generateKey(
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{
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name: 'ECDSA',
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namedCurve: 'P-521',
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hash: 'SHA-256',
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},
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false,
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['sign']),
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]);
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assert(await subtle.verify(algorithm, publicKey, signature, plaintext));
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// Test verification with altered buffers
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const copy = Buffer.from(plaintext);
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const sigcopy = Buffer.from(signature);
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const p = subtle.verify(algorithm, publicKey, sigcopy, copy);
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copy[0] = 255 - copy[0];
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sigcopy[0] = 255 - sigcopy[0];
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assert(await p);
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// Test failure when using wrong key
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await assert.rejects(
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subtle.verify(algorithm, privateKey, signature, plaintext), {
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message: /Unable to use this key to verify/
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});
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await assert.rejects(
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subtle.verify(algorithm, noVerifyPublicKey, signature, plaintext), {
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message: /Unable to use this key to verify/
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});
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// Test failure when using the wrong algorithms
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await assert.rejects(
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subtle.verify(algorithm, hmacKey, signature, plaintext), {
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message: /Unable to use this key to verify/
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});
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await assert.rejects(
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subtle.verify(algorithm, ecdsaKeys.publicKey, signature, plaintext), {
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message: /Unable to use this key to verify/
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});
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// Test failure when signature is altered
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{
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const copy = Buffer.from(signature);
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copy[0] = 255 - copy[0];
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assert(!(await subtle.verify(algorithm, publicKey, copy, plaintext)));
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assert(!(await subtle.verify(
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algorithm,
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publicKey,
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copy.slice(1),
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plaintext)));
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}
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// Test failure when data is altered
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{
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const copy = Buffer.from(plaintext);
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copy[0] = 255 - copy[0];
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assert(!(await subtle.verify(algorithm, publicKey, signature, copy)));
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}
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// Test failure when wrong hash is used
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{
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const otherhash = hash === 'SHA-1' ? 'SHA-256' : 'SHA-1';
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const keyWithOtherHash = await subtle.importKey(
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'spki',
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publicKeyBuffer,
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{ name: algorithm.name, hash: otherhash },
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false,
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['verify']);
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assert(!(await subtle.verify(algorithm, keyWithOtherHash, signature, plaintext)));
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}
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}
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async function testSign({
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algorithm,
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hash,
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publicKeyBuffer,
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privateKeyBuffer,
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signature,
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plaintext,
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}) {
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const [
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publicKey,
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privateKey,
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hmacKey,
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ecdsaKeys,
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] = await Promise.all([
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subtle.importKey(
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'spki',
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publicKeyBuffer,
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{ name: algorithm.name, hash },
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false,
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['verify']),
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subtle.importKey(
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'pkcs8',
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privateKeyBuffer,
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{ name: algorithm.name, hash },
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false,
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['sign']),
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subtle.generateKey(
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{ name: 'HMAC', hash: 'SHA-256' },
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false,
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['sign']),
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subtle.generateKey(
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{
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name: 'ECDSA',
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namedCurve: 'P-521',
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hash: 'SHA-256',
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},
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false,
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['sign']),
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]);
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{
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const sig = await subtle.sign(algorithm, privateKey, plaintext);
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assert.strictEqual(sig.byteLength, signature.byteLength);
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assert(await subtle.verify(algorithm, publicKey, sig, plaintext));
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}
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{
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const copy = Buffer.from(plaintext);
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const p = subtle.sign(algorithm, privateKey, copy);
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copy[0] = 255 - copy[0];
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const sig = await p;
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assert(await subtle.verify(algorithm, publicKey, sig, plaintext));
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}
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// Test failure when using wrong key
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await assert.rejects(
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subtle.sign(algorithm, publicKey, plaintext), {
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message: /Unable to use this key to sign/
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});
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// Test failure when using the wrong algorithms
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await assert.rejects(
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subtle.sign(algorithm, hmacKey, plaintext), {
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message: /Unable to use this key to sign/
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});
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await assert.rejects(
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subtle.sign(algorithm, ecdsaKeys.privateKey, plaintext), {
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message: /Unable to use this key to sign/
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});
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}
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async function testSaltLength(keyLength, hash, hLen) {
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const { publicKey, privateKey } = await subtle.generateKey({
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name: 'RSA-PSS',
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modulusLength: keyLength,
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publicExponent: new Uint8Array([1, 0, 1]),
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hash,
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}, false, ['sign', 'verify']);
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const data = Buffer.from('Hello, world!');
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const max = keyLength / 8 - hLen - 2;
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const signature = await subtle.sign({ name: 'RSA-PSS', saltLength: max }, privateKey, data);
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await assert.rejects(
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subtle.sign({ name: 'RSA-PSS', saltLength: max + 1 }, privateKey, data), (err) => {
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assert.strictEqual(err.name, 'OperationError');
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assert.strictEqual(err.cause?.code, 'ERR_OUT_OF_RANGE');
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assert.strictEqual(err.cause?.message, `The value of "algorithm.saltLength" is out of range. It must be >= 0 && <= ${max}. Received ${max + 1}`);
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return true;
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});
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await subtle.verify({ name: 'RSA-PSS', saltLength: max }, publicKey, signature, data);
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await assert.rejects(
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subtle.verify({ name: 'RSA-PSS', saltLength: max + 1 }, publicKey, signature, data), (err) => {
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assert.strictEqual(err.name, 'OperationError');
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assert.strictEqual(err.cause?.code, 'ERR_OUT_OF_RANGE');
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assert.strictEqual(err.cause?.message, `The value of "algorithm.saltLength" is out of range. It must be >= 0 && <= ${max}. Received ${max + 1}`);
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return true;
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});
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}
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(async function() {
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const variations = [];
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rsa_pkcs().forEach((vector) => {
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variations.push(testVerify(vector));
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variations.push(testSign(vector));
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});
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rsa_pss().forEach((vector) => {
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variations.push(testVerify(vector));
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variations.push(testSign(vector));
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});
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for (const keyLength of [1024, 2048]) {
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for (const [hash, hLen] of [['SHA-1', 20], ['SHA-256', 32], ['SHA-384', 48], ['SHA-512', 64]]) {
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variations.push(testSaltLength(keyLength, hash, hLen));
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}
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}
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await Promise.all(variations);
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})().then(common.mustCall());
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