зеркало из https://github.com/mozilla/gecko-dev.git
405 строки
12 KiB
HTML
405 строки
12 KiB
HTML
<!DOCTYPE html>
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<html>
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<head>
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<title>WebCrypto Test Suite</title>
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<meta http-equiv="Content-Type" content="text/html;charset=utf-8" />
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<link rel="stylesheet" href="./test_WebCrypto.css"/>
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<script src="/tests/SimpleTest/SimpleTest.js"></script>
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<!-- Utilities for manipulating ABVs -->
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<script src="util.js"></script>
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<!-- A simple wrapper around IndexedDB -->
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<script src="simpledb.js"></script>
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<!-- Test vectors drawn from the literature -->
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<script src="./test-vectors.js"></script>
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<!-- General testing framework -->
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<script src="./test-array.js"></script>
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<script>/*<![CDATA[*/
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"use strict";
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// Generating 2048-bit keys takes some time.
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SimpleTest.requestLongerTimeout(2);
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// -----------------------------------------------------------------------------
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TestArray.addTest(
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"RSA-PSS key generation (SHA-1, 1024-bit)",
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function () {
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var that = this;
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var alg = {
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name: "RSA-PSS",
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hash: "SHA-1",
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modulusLength: 1024,
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publicExponent: new Uint8Array([0x01, 0x00, 0x01])
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};
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crypto.subtle.generateKey(alg, false, ["sign", "verify"])
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.then(complete(that), error(that));
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}
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);
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// -----------------------------------------------------------------------------
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TestArray.addTest(
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"RSA-PSS key generation and sign/verify round-trip (SHA-256, 2048-bit)",
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function () {
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var that = this;
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var alg = {
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name: "RSA-PSS",
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hash: "SHA-256",
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modulusLength: 2048,
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publicExponent: new Uint8Array([0x01, 0x00, 0x01])
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};
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var privKey, pubKey;
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var data = crypto.getRandomValues(new Uint8Array(128));
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function setKey(x) { pubKey = x.publicKey; privKey = x.privateKey; }
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function doSign() {
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var alg = {name: "RSA-PSS", saltLength: 32};
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return crypto.subtle.sign(alg, privKey, data);
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}
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function doVerify(x) {
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var alg = {name: "RSA-PSS", saltLength: 32};
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return crypto.subtle.verify(alg, pubKey, x, data);
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}
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crypto.subtle.generateKey(alg, false, ["sign", "verify"])
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.then(setKey, error(that))
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.then(doSign, error(that))
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.then(doVerify, error(that))
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.then(complete(that, x => x), error(that))
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}
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);
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// -----------------------------------------------------------------------------
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TestArray.addTest(
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"RSA-PSS verify known signature (SHA-1, 1024-bit)",
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function () {
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var that = this;
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var alg = {name: "RSA-PSS", hash: "SHA-1"};
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var vec = tv.rsapss;
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function doVerify(x) {
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var alg = {name: "RSA-PSS", saltLength: vec.saltLength};
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return crypto.subtle.verify(alg, x, vec.sig, vec.data);
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}
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crypto.subtle.importKey("spki", vec.spki, alg, false, ["verify"])
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.then(doVerify, error(that))
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.then(complete(that, x => x), error(that));
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}
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);
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// -----------------------------------------------------------------------------
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TestArray.addTest(
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"Test invalid RSA-PSS signatures",
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function () {
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var that = this;
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var alg = {name: "RSA-PSS", hash: "SHA-1"};
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var vec = tv.rsapss;
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function doVerify(x) {
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var alg = {name: "RSA-PSS", saltLength: vec.saltLength};
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var clone1 = new Uint8Array(vec.data);
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var clone2 = new Uint8Array(vec.data);
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clone1[clone1.byteLength - 1] ^= 1;
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clone2[0] ^= 1;
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return Promise.all([
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crypto.subtle.verify(alg, x, vec.sig, clone1),
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crypto.subtle.verify(alg, x, vec.sig, clone2),
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crypto.subtle.verify(alg, x, vec.sig, vec.data.slice(1)),
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crypto.subtle.verify(alg, x, vec.sig, vec.data.slice(0, vec.data.byteLength - 1)),
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]);
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}
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crypto.subtle.importKey("spki", vec.spki, alg, false, ["verify"])
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.then(doVerify, error(that))
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.then(results => results.every(x => !x))
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.then(complete(that, x => x), error(that));
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}
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);
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// -----------------------------------------------------------------------------
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TestArray.addTest(
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"RSA-PSS verify known signature (SHA-1, 1024-bit, JWK)",
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function () {
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var that = this;
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var alg = {name: "RSA-PSS", hash: "SHA-1"};
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function doVerify(x) {
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var alg = {name: "RSA-PSS", saltLength: tv.rsapss.saltLength};
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return crypto.subtle.verify(alg, x, tv.rsapss.sig, tv.rsapss.data);
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}
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crypto.subtle.importKey("jwk", tv.rsapss.jwk_pub, alg, false, ["verify"])
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.then(doVerify, error(that))
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.then(complete(that, x => x), error(that));
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}
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);
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// -----------------------------------------------------------------------------
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TestArray.addTest(
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"RSA-PSS verify known signatures (SHA-1 to SHA-512, 1024-bit)",
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function () {
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var that = this;
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function verifyCase(hash, tv) {
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var alg = {name: "RSA-PSS", hash, saltLength: tv.saltLength};
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return crypto.subtle.importKey("spki", tv.spki, alg, false, ["verify"])
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.then(x => crypto.subtle.verify(alg, x, tv.sig, tv.data));
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}
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Promise.all([
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verifyCase("SHA-1", tv.rsapss2),
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verifyCase("SHA-256", tv.rsapss3),
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verifyCase("SHA-384", tv.rsapss4),
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verifyCase("SHA-512", tv.rsapss5),
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]).then(complete(that, x => x.every(y => y)), error(that));
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}
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);
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// -----------------------------------------------------------------------------
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TestArray.addTest(
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"RSA-PSS import SPKI/PKCS#8 keys and sign/verify (SHA-1, 1024-bit)",
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function () {
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var that = this;
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var alg = {name: "RSA-PSS", hash: "SHA-1"};
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var privKey, pubKey;
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function setKeys([pub, priv]) { pubKey = pub; privKey = priv; }
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function doSign() {
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var alg = {name: "RSA-PSS", saltLength: tv.rsapss.saltLength};
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return crypto.subtle.sign(alg, privKey, tv.rsapss.data);
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}
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function doVerify(x) {
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var alg = {name: "RSA-PSS", saltLength: tv.rsapss.saltLength};
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return crypto.subtle.verify(alg, pubKey, x, tv.rsapss.data);
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}
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var spki =
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crypto.subtle.importKey("spki", tv.rsapss.spki, alg, false, ["verify"]);
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var pkcs8 =
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crypto.subtle.importKey("pkcs8", tv.rsapss.pkcs8, alg, false, ["sign"]);
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Promise.all([spki, pkcs8])
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.then(setKeys, error(that))
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.then(doSign, error(that))
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.then(doVerify, error(that))
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.then(complete(that, x => x), error(that));
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}
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);
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// -----------------------------------------------------------------------------
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TestArray.addTest(
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"RSA-PSS import JWK keys and sign/verify (SHA-1, 1024-bit)",
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function () {
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var that = this;
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var alg = {name: "RSA-PSS", hash: "SHA-1"};
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var privKey, pubKey;
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function setKeys([pub, priv]) { pubKey = pub; privKey = priv; }
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function doSign() {
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var alg = {name: "RSA-PSS", saltLength: tv.rsapss.saltLength};
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return crypto.subtle.sign(alg, privKey, tv.rsapss.data);
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}
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function doVerify(x) {
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var alg = {name: "RSA-PSS", saltLength: tv.rsapss.saltLength};
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return crypto.subtle.verify(alg, pubKey, x, tv.rsapss.data);
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}
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var spki =
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crypto.subtle.importKey("jwk", tv.rsapss.jwk_pub, alg, false, ["verify"]);
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var pkcs8 =
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crypto.subtle.importKey("jwk", tv.rsapss.jwk_priv, alg, false, ["sign"]);
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Promise.all([spki, pkcs8])
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.then(setKeys, error(that))
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.then(doSign, error(that))
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.then(doVerify, error(that))
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.then(complete(that, x => x), error(that));
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}
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);
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// -----------------------------------------------------------------------------
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TestArray.addTest(
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"RSA-PSS SPKI import/export (SHA-1, 1024-bit)",
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function () {
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var that = this;
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var alg = {name: "RSA-PSS", hash: "SHA-1"};
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function doExport(x) {
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return crypto.subtle.exportKey("spki", x);
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}
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crypto.subtle.importKey("spki", tv.rsapss.spki, alg, true, ["verify"])
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.then(doExport, error(that))
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.then(memcmp_complete(that, tv.rsapss.spki), error(that));
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}
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);
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// -----------------------------------------------------------------------------
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TestArray.addTest(
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"RSA-PSS PKCS#8 import/export (SHA-1, 1024-bit)",
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function () {
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var that = this;
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var alg = {name: "RSA-PSS", hash: "SHA-1"};
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function doExport(x) {
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return crypto.subtle.exportKey("pkcs8", x);
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}
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crypto.subtle.importKey("pkcs8", tv.rsapss.pkcs8, alg, true, ["sign"])
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.then(doExport, error(that))
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.then(memcmp_complete(that, tv.rsapss.pkcs8), error(that));
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}
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);
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// -----------------------------------------------------------------------------
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TestArray.addTest(
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"RSA-PSS JWK export a public key",
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function () {
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var that = this;
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var alg = {name: "RSA-PSS", hash: "SHA-1"};
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var jwk = tv.rsapss.jwk_pub;
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function doExport(x) {
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return crypto.subtle.exportKey("jwk", x);
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}
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crypto.subtle.importKey("jwk", jwk, alg, true, ["verify"])
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.then(doExport)
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.then(
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complete(that, function(x) {
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return hasBaseJwkFields(x) &&
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hasFields(x, ["n", "e"]) &&
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x.kty == "RSA" &&
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x.alg == "PS1" &&
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x.ext &&
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shallowArrayEquals(x.key_ops, ["verify"]) &&
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x.n == jwk.n &&
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x.e == jwk.e;
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}),
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error(that)
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);
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}
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);
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// -----------------------------------------------------------------------------
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TestArray.addTest(
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"RSA-PSS JWK export a private key",
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function () {
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var that = this;
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var alg = {name: "RSA-PSS", hash: "SHA-1"};
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var jwk = tv.rsapss.jwk_priv;
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function doExport(x) {
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return crypto.subtle.exportKey("jwk", x);
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}
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crypto.subtle.importKey("jwk", jwk, alg, true, ["sign"])
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.then(doExport)
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.then(
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complete(that, function(x) {
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return hasBaseJwkFields(x) &&
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hasFields(x, ["n", "e", "d", "p", "q", "dp", "dq", "qi"]) &&
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x.kty == "RSA" &&
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x.alg == "PS1" &&
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x.ext &&
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shallowArrayEquals(x.key_ops, ["sign"]) &&
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x.n == jwk.n &&
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x.e == jwk.e &&
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x.d == jwk.d &&
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x.p == jwk.p &&
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x.q == jwk.q &&
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x.dp == jwk.dp &&
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x.dq == jwk.dq &&
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x.qi == jwk.qi;
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}),
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error(that)
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);
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}
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);
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// -----------------------------------------------------------------------------
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TestArray.addTest(
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"Deterministic RSA-PSS signatures with saltLength=0 (SHA-256, 2048-bit)",
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function () {
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var that = this;
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var alg = {
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name: "RSA-PSS",
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hash: "SHA-256",
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modulusLength: 2048,
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publicExponent: new Uint8Array([0x01, 0x00, 0x01])
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};
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var privKey, pubKey;
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var data = crypto.getRandomValues(new Uint8Array(128));
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function setKey(x) { pubKey = x.publicKey; privKey = x.privateKey; }
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function doSignTwice() {
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var alg = {name: "RSA-PSS", saltLength: 0};
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return Promise.all([
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crypto.subtle.sign(alg, privKey, data),
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crypto.subtle.sign(alg, privKey, data)
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]);
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}
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function doVerify(x) {
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var alg = {name: "RSA-PSS", saltLength: 0};
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return crypto.subtle.verify(alg, pubKey, x, data);
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}
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crypto.subtle.generateKey(alg, false, ["sign", "verify"])
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.then(setKey, error(that))
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.then(doSignTwice, error(that))
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.then(([sig1, sig2]) => {
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if (!util.memcmp(sig1, sig2)) {
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throw new Error("sig1 must be equal to sig2");
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}
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return sig1;
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}, error(that))
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.then(doVerify, error(that))
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.then(complete(that, x => x), error(that))
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}
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);
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/*]]>*/</script>
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</head>
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<body>
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<div id="content">
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<div id="head">
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<b>Web</b>Crypto<br>
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</div>
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<div id="start" onclick="start();">RUN ALL</div>
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<div id="resultDiv" class="content">
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Summary:
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<span class="pass"><span id="passN">0</span> passed, </span>
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<span class="fail"><span id="failN">0</span> failed, </span>
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<span class="pending"><span id="pendingN">0</span> pending.</span>
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<br/>
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<br/>
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<table id="results">
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<tr>
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<th>Test</th>
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<th>Result</th>
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<th>Time</th>
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</tr>
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</table>
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</div>
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<div id="foot"></div>
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</div>
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</body>
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</html>
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