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374 lines
11 KiB
374 lines
11 KiB
/* |
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* Copyright (C) 2017 The Android Open Source Project |
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* |
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* Licensed under the Apache License, Version 2.0 (the "License"); |
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* you may not use this file except in compliance with the License. |
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* You may obtain a copy of the License at |
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* |
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* http://www.apache.org/licenses/LICENSE-2.0 |
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* |
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* Unless required by applicable law or agreed to in writing, software |
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* distributed under the License is distributed on an "AS IS" BASIS, |
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* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. |
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* See the License for the specific language governing permissions and |
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* limitations under the License. |
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*/ |
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#include "dns_tls_frontend.h" |
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#include <netdb.h> |
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#include <stdio.h> |
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#include <unistd.h> |
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#include <sys/poll.h> |
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#include <sys/socket.h> |
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#include <sys/types.h> |
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#include <arpa/inet.h> |
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#include <openssl/err.h> |
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#include <openssl/evp.h> |
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#include <openssl/ssl.h> |
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#define LOG_TAG "DnsTlsFrontend" |
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#include <log/log.h> |
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#include <unistd.h> |
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namespace { |
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const int SHA256_SIZE = 32; |
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// Copied from DnsTlsTransport. |
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bool getSPKIDigest(const X509* cert, std::vector<uint8_t>* out) { |
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int spki_len = i2d_X509_PUBKEY(X509_get_X509_PUBKEY(cert), NULL); |
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unsigned char spki[spki_len]; |
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unsigned char* temp = spki; |
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if (spki_len != i2d_X509_PUBKEY(X509_get_X509_PUBKEY(cert), &temp)) { |
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ALOGE("SPKI length mismatch"); |
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return false; |
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} |
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out->resize(SHA256_SIZE); |
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unsigned int digest_len = 0; |
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int ret = EVP_Digest(spki, spki_len, out->data(), &digest_len, EVP_sha256(), NULL); |
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if (ret != 1) { |
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ALOGE("Server cert digest extraction failed"); |
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return false; |
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} |
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if (digest_len != out->size()) { |
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ALOGE("Wrong digest length: %d", digest_len); |
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return false; |
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} |
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return true; |
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} |
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std::string errno2str() { |
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char error_msg[512] = { 0 }; |
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if (strerror_r(errno, error_msg, sizeof(error_msg))) |
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return std::string(); |
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return std::string(error_msg); |
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} |
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#define APLOGI(fmt, ...) ALOGI(fmt ": [%d] %s", __VA_ARGS__, errno, errno2str().c_str()) |
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std::string addr2str(const sockaddr* sa, socklen_t sa_len) { |
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char host_str[NI_MAXHOST] = { 0 }; |
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int rv = getnameinfo(sa, sa_len, host_str, sizeof(host_str), nullptr, 0, |
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NI_NUMERICHOST); |
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if (rv == 0) return std::string(host_str); |
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return std::string(); |
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} |
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bssl::UniquePtr<EVP_PKEY> make_private_key() { |
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bssl::UniquePtr<BIGNUM> e(BN_new()); |
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if (!e) { |
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ALOGE("BN_new failed"); |
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return nullptr; |
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} |
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if (!BN_set_word(e.get(), RSA_F4)) { |
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ALOGE("BN_set_word failed"); |
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return nullptr; |
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} |
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bssl::UniquePtr<RSA> rsa(RSA_new()); |
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if (!rsa) { |
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ALOGE("RSA_new failed"); |
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return nullptr; |
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} |
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if (!RSA_generate_key_ex(rsa.get(), 2048, e.get(), NULL)) { |
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ALOGE("RSA_generate_key_ex failed"); |
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return nullptr; |
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} |
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bssl::UniquePtr<EVP_PKEY> privkey(EVP_PKEY_new()); |
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if (!privkey) { |
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ALOGE("EVP_PKEY_new failed"); |
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return nullptr; |
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} |
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if(!EVP_PKEY_assign_RSA(privkey.get(), rsa.get())) { |
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ALOGE("EVP_PKEY_assign_RSA failed"); |
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return nullptr; |
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} |
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// |rsa| is now owned by |privkey|, so no need to free it. |
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rsa.release(); |
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return privkey; |
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} |
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bssl::UniquePtr<X509> make_cert(EVP_PKEY* privkey) { |
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bssl::UniquePtr<X509> cert(X509_new()); |
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if (!cert) { |
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ALOGE("X509_new failed"); |
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return nullptr; |
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} |
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ASN1_INTEGER_set(X509_get_serialNumber(cert.get()), 1); |
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// Set one hour expiration. |
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X509_gmtime_adj(X509_get_notBefore(cert.get()), 0); |
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X509_gmtime_adj(X509_get_notAfter(cert.get()), 60 * 60); |
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X509_set_pubkey(cert.get(), privkey); |
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if (!X509_sign(cert.get(), privkey, EVP_sha256())) { |
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ALOGE("X509_sign failed"); |
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return nullptr; |
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} |
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return cert; |
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} |
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} |
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namespace test { |
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bool DnsTlsFrontend::startServer() { |
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SSL_load_error_strings(); |
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OpenSSL_add_ssl_algorithms(); |
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ctx_.reset(SSL_CTX_new(TLS_server_method())); |
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if (!ctx_) { |
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ALOGE("SSL context creation failed"); |
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return false; |
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} |
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SSL_CTX_set_ecdh_auto(ctx_.get(), 1); |
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bssl::UniquePtr<EVP_PKEY> key(make_private_key()); |
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bssl::UniquePtr<X509> cert(make_cert(key.get())); |
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if (SSL_CTX_use_certificate(ctx_.get(), cert.get()) <= 0) { |
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ALOGE("SSL_CTX_use_certificate failed"); |
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return false; |
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} |
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if (!getSPKIDigest(cert.get(), &fingerprint_)) { |
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ALOGE("getSPKIDigest failed"); |
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return false; |
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} |
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if (SSL_CTX_use_PrivateKey(ctx_.get(), key.get()) <= 0 ) { |
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ALOGE("SSL_CTX_use_PrivateKey failed"); |
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return false; |
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} |
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// Set up TCP server socket for clients. |
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addrinfo frontend_ai_hints{ |
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.ai_family = AF_UNSPEC, |
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.ai_socktype = SOCK_STREAM, |
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.ai_flags = AI_PASSIVE |
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}; |
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addrinfo* frontend_ai_res; |
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int rv = getaddrinfo(listen_address_.c_str(), listen_service_.c_str(), |
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&frontend_ai_hints, &frontend_ai_res); |
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if (rv) { |
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ALOGE("frontend getaddrinfo(%s, %s) failed: %s", listen_address_.c_str(), |
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listen_service_.c_str(), gai_strerror(rv)); |
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return false; |
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} |
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int s = -1; |
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for (const addrinfo* ai = frontend_ai_res ; ai ; ai = ai->ai_next) { |
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s = socket(ai->ai_family, ai->ai_socktype, ai->ai_protocol); |
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if (s < 0) continue; |
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const int one = 1; |
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setsockopt(s, SOL_SOCKET, SO_REUSEPORT, &one, sizeof(one)); |
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if (bind(s, ai->ai_addr, ai->ai_addrlen)) { |
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APLOGI("bind failed for socket %d", s); |
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close(s); |
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s = -1; |
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continue; |
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} |
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std::string host_str = addr2str(ai->ai_addr, ai->ai_addrlen); |
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ALOGI("bound to TCP %s:%s", host_str.c_str(), listen_service_.c_str()); |
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break; |
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} |
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freeaddrinfo(frontend_ai_res); |
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if (s < 0) { |
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ALOGE("server socket creation failed"); |
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return false; |
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} |
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if (listen(s, 1) < 0) { |
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ALOGE("listen failed"); |
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return false; |
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} |
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socket_ = s; |
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// Set up UDP client socket to backend. |
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addrinfo backend_ai_hints{ |
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.ai_family = AF_UNSPEC, |
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.ai_socktype = SOCK_DGRAM |
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}; |
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addrinfo* backend_ai_res; |
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rv = getaddrinfo(backend_address_.c_str(), backend_service_.c_str(), |
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&backend_ai_hints, &backend_ai_res); |
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if (rv) { |
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ALOGE("backend getaddrinfo(%s, %s) failed: %s", listen_address_.c_str(), |
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listen_service_.c_str(), gai_strerror(rv)); |
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return false; |
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} |
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backend_socket_ = socket(backend_ai_res->ai_family, backend_ai_res->ai_socktype, |
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backend_ai_res->ai_protocol); |
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if (backend_socket_ < 0) { |
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ALOGE("backend socket creation failed"); |
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return false; |
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} |
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connect(backend_socket_, backend_ai_res->ai_addr, backend_ai_res->ai_addrlen); |
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freeaddrinfo(backend_ai_res); |
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{ |
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std::lock_guard<std::mutex> lock(update_mutex_); |
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handler_thread_ = std::thread(&DnsTlsFrontend::requestHandler, this); |
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} |
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ALOGI("server started successfully"); |
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return true; |
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} |
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void DnsTlsFrontend::requestHandler() { |
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ALOGD("Request handler started"); |
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struct pollfd fds[1] = {{ .fd = socket_, .events = POLLIN }}; |
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while (!terminate_) { |
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int poll_code = poll(fds, 1, 10 /* ms */); |
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if (poll_code == 0) { |
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// Timeout. Poll again. |
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continue; |
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} else if (poll_code < 0) { |
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ALOGW("Poll failed with error %d", poll_code); |
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// Error. |
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break; |
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} |
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sockaddr_storage addr; |
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socklen_t len = sizeof(addr); |
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ALOGD("Trying to accept a client"); |
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int client = accept(socket_, reinterpret_cast<sockaddr*>(&addr), &len); |
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ALOGD("Got client socket %d", client); |
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if (client < 0) { |
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// Stop |
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break; |
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} |
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bssl::UniquePtr<SSL> ssl(SSL_new(ctx_.get())); |
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SSL_set_fd(ssl.get(), client); |
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ALOGD("Doing SSL handshake"); |
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bool success = false; |
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if (SSL_accept(ssl.get()) <= 0) { |
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ALOGI("SSL negotiation failure"); |
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} else { |
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ALOGD("SSL handshake complete"); |
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success = handleOneRequest(ssl.get()); |
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} |
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close(client); |
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if (success) { |
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// Increment queries_ as late as possible, because it represents |
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// a query that is fully processed, and the response returned to the |
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// client, including cleanup actions. |
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++queries_; |
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} |
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} |
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ALOGD("Request handler terminating"); |
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} |
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bool DnsTlsFrontend::handleOneRequest(SSL* ssl) { |
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uint8_t queryHeader[2]; |
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if (SSL_read(ssl, &queryHeader, 2) != 2) { |
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ALOGI("Not enough header bytes"); |
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return false; |
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} |
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const uint16_t qlen = (queryHeader[0] << 8) | queryHeader[1]; |
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uint8_t query[qlen]; |
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if (SSL_read(ssl, &query, qlen) != qlen) { |
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ALOGI("Not enough query bytes"); |
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return false; |
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} |
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int sent = send(backend_socket_, query, qlen, 0); |
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if (sent != qlen) { |
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ALOGI("Failed to send query"); |
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return false; |
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} |
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const int max_size = 4096; |
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uint8_t recv_buffer[max_size]; |
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int rlen = recv(backend_socket_, recv_buffer, max_size, 0); |
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if (rlen <= 0) { |
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ALOGI("Failed to receive response"); |
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return false; |
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} |
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uint8_t responseHeader[2]; |
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responseHeader[0] = rlen >> 8; |
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responseHeader[1] = rlen; |
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if (SSL_write(ssl, responseHeader, 2) != 2) { |
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ALOGI("Failed to write response header"); |
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return false; |
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} |
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if (SSL_write(ssl, recv_buffer, rlen) != rlen) { |
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ALOGI("Failed to write response body"); |
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return false; |
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} |
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return true; |
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} |
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bool DnsTlsFrontend::stopServer() { |
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std::lock_guard<std::mutex> lock(update_mutex_); |
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if (!running()) { |
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ALOGI("server not running"); |
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return false; |
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} |
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if (terminate_) { |
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ALOGI("LOGIC ERROR"); |
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return false; |
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} |
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ALOGI("stopping frontend"); |
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terminate_ = true; |
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handler_thread_.join(); |
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close(socket_); |
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close(backend_socket_); |
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terminate_ = false; |
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socket_ = -1; |
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backend_socket_ = -1; |
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ctx_.reset(); |
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fingerprint_.clear(); |
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ALOGI("frontend stopped successfully"); |
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return true; |
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} |
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bool DnsTlsFrontend::waitForQueries(int number, int timeoutMs) const { |
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constexpr int intervalMs = 20; |
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int limit = timeoutMs / intervalMs; |
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for (int count = 0; count <= limit; ++count) { |
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bool done = queries_ >= number; |
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// Always sleep at least one more interval after we are done, to wait for |
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// any immediate post-query actions that the client may take (such as |
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// marking this server as reachable during validation). |
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usleep(intervalMs * 1000); |
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if (done) { |
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// For ensuring that calls have sufficient headroom for slow machines |
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ALOGD("Query arrived in %d/%d of allotted time", count, limit); |
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return true; |
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} |
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} |
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return false; |
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} |
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} // namespace test
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