2 * Copyright (c) 2008, 2009, 2010, 2011 Nicira Networks.
4 * Licensed under the Apache License, Version 2.0 (the "License");
5 * you may not use this file except in compliance with the License.
6 * You may obtain a copy of the License at:
8 * http://www.apache.org/licenses/LICENSE-2.0
10 * Unless required by applicable law or agreed to in writing, software
11 * distributed under the License is distributed on an "AS IS" BASIS,
12 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
13 * See the License for the specific language governing permissions and
14 * limitations under the License.
18 #include "stream-ssl.h"
25 #include <netinet/tcp.h>
26 #include <openssl/err.h>
27 #include <openssl/ssl.h>
28 #include <openssl/x509v3.h>
30 #include <sys/fcntl.h>
34 #include "dynamic-string.h"
35 #include "leak-checker.h"
37 #include "openflow/openflow.h"
39 #include "poll-loop.h"
41 #include "socket-util.h"
43 #include "stream-provider.h"
48 VLOG_DEFINE_THIS_MODULE(stream_ssl);
50 COVERAGE_DEFINE(ssl_session);
51 COVERAGE_DEFINE(ssl_session_reused);
69 enum session_type type;
73 unsigned int session_nr;
75 /* rx_want and tx_want record the result of the last call to SSL_read()
76 * and SSL_write(), respectively:
78 * - If the call reported that data needed to be read from the file
79 * descriptor, the corresponding member is set to SSL_READING.
81 * - If the call reported that data needed to be written to the file
82 * descriptor, the corresponding member is set to SSL_WRITING.
84 * - Otherwise, the member is set to SSL_NOTHING, indicating that the
85 * call completed successfully (or with an error) and that there is no
88 * These are needed because there is no way to ask OpenSSL what a data read
89 * or write would require without giving it a buffer to receive into or
90 * data to send, respectively. (Note that the SSL_want() status is
91 * overwritten by each SSL_read() or SSL_write() call, so we can't rely on
94 * A single call to SSL_read() or SSL_write() can perform both reading
95 * and writing and thus invalidate not one of these values but actually
96 * both. Consider this situation, for example:
98 * - SSL_write() blocks on a read, so tx_want gets SSL_READING.
100 * - SSL_read() laters succeeds reading from 'fd' and clears out the
101 * whole receive buffer, so rx_want gets SSL_READING.
103 * - Client calls stream_wait(STREAM_RECV) and stream_wait(STREAM_SEND)
106 * - Now we're stuck blocking until the peer sends us data, even though
107 * SSL_write() could now succeed, which could easily be a deadlock
110 * On the other hand, we can't reset both tx_want and rx_want on every call
111 * to SSL_read() or SSL_write(), because that would produce livelock,
112 * e.g. in this situation:
114 * - SSL_write() blocks, so tx_want gets SSL_READING or SSL_WRITING.
116 * - SSL_read() blocks, so rx_want gets SSL_READING or SSL_WRITING,
117 * but tx_want gets reset to SSL_NOTHING.
119 * - Client calls stream_wait(STREAM_RECV) and stream_wait(STREAM_SEND)
122 * - Client wakes up immediately since SSL_NOTHING in tx_want indicates
123 * that no blocking is necessary.
125 * The solution we adopt here is to set tx_want to SSL_NOTHING after
126 * calling SSL_read() only if the SSL state of the connection changed,
127 * which indicates that an SSL-level renegotiation made some progress, and
128 * similarly for rx_want and SSL_write(). This prevents both the
129 * deadlock and livelock situations above.
131 int rx_want, tx_want;
133 /* A few bytes of header data in case SSL negotiation fails. */
138 /* SSL context created by ssl_init(). */
141 /* Maps from stream target (e.g. "127.0.0.1:1234") to SSL_SESSION *. The
142 * sessions are those from the last SSL connection to the given target.
143 * OpenSSL caches server-side sessions internally, so this cache is only used
144 * for client connections.
146 * The stream_ssl module owns a reference to each of the sessions in this
147 * table, so they must be freed with SSL_SESSION_free() when they are no
149 static struct shash client_sessions = SHASH_INITIALIZER(&client_sessions);
151 /* Maximum number of client sessions to cache. Ordinarily I'd expect that one
152 * session would be sufficient but this should cover it. */
153 #define MAX_CLIENT_SESSION_CACHE 16
155 struct ssl_config_file {
156 bool read; /* Whether the file was successfully read. */
157 char *file_name; /* Configured file name, if any. */
158 struct timespec mtime; /* File mtime as of last time we read it. */
161 /* SSL configuration files. */
162 static struct ssl_config_file private_key;
163 static struct ssl_config_file certificate;
164 static struct ssl_config_file ca_cert;
166 /* Ordinarily, the SSL client and server verify each other's certificates using
167 * a CA certificate. Setting this to false disables this behavior. (This is a
169 static bool verify_peer_cert = true;
171 /* Ordinarily, we require a CA certificate for the peer to be locally
172 * available. We can, however, bootstrap the CA certificate from the peer at
173 * the beginning of our first connection then use that certificate on all
174 * subsequent connections, saving it to a file for use in future runs also. In
175 * this case, 'bootstrap_ca_cert' is true. */
176 static bool bootstrap_ca_cert;
178 /* Session number. Used in debug logging messages to uniquely identify a
180 static unsigned int next_session_nr;
182 /* Who knows what can trigger various SSL errors, so let's throttle them down
184 static struct vlog_rate_limit rl = VLOG_RATE_LIMIT_INIT(10, 25);
186 static int ssl_init(void);
187 static int do_ssl_init(void);
188 static bool ssl_wants_io(int ssl_error);
189 static void ssl_close(struct stream *);
190 static void ssl_clear_txbuf(struct ssl_stream *);
191 static void interpret_queued_ssl_error(const char *function);
192 static int interpret_ssl_error(const char *function, int ret, int error,
194 static DH *tmp_dh_callback(SSL *ssl, int is_export OVS_UNUSED, int keylength);
195 static void log_ca_cert(const char *file_name, X509 *cert);
196 static void stream_ssl_set_ca_cert_file__(const char *file_name,
198 static void ssl_protocol_cb(int write_p, int version, int content_type,
199 const void *, size_t, SSL *, void *sslv_);
202 want_to_poll_events(int want)
220 new_ssl_stream(const char *name, int fd, enum session_type type,
221 enum ssl_state state, const struct sockaddr_in *remote,
222 struct stream **streamp)
224 struct sockaddr_in local;
225 socklen_t local_len = sizeof local;
226 struct ssl_stream *sslv;
231 /* Check for all the needful configuration. */
233 if (!private_key.read) {
234 VLOG_ERR("Private key must be configured to use SSL");
235 retval = ENOPROTOOPT;
237 if (!certificate.read) {
238 VLOG_ERR("Certificate must be configured to use SSL");
239 retval = ENOPROTOOPT;
241 if (!ca_cert.read && verify_peer_cert && !bootstrap_ca_cert) {
242 VLOG_ERR("CA certificate must be configured to use SSL");
243 retval = ENOPROTOOPT;
245 if (!SSL_CTX_check_private_key(ctx)) {
246 VLOG_ERR("Private key does not match certificate public key: %s",
247 ERR_error_string(ERR_get_error(), NULL));
248 retval = ENOPROTOOPT;
254 /* Get the local IP and port information */
255 retval = getsockname(fd, (struct sockaddr *) &local, &local_len);
257 memset(&local, 0, sizeof local);
261 retval = setsockopt(fd, IPPROTO_TCP, TCP_NODELAY, &on, sizeof on);
263 VLOG_ERR("%s: setsockopt(TCP_NODELAY): %s", name, strerror(errno));
268 /* Create and configure OpenSSL stream. */
271 VLOG_ERR("SSL_new: %s", ERR_error_string(ERR_get_error(), NULL));
272 retval = ENOPROTOOPT;
275 if (SSL_set_fd(ssl, fd) == 0) {
276 VLOG_ERR("SSL_set_fd: %s", ERR_error_string(ERR_get_error(), NULL));
277 retval = ENOPROTOOPT;
280 if (!verify_peer_cert || (bootstrap_ca_cert && type == CLIENT)) {
281 SSL_set_verify(ssl, SSL_VERIFY_NONE, NULL);
283 if (type == CLIENT) {
284 /* Grab SSL session information from the cache. */
285 SSL_SESSION *session = shash_find_data(&client_sessions, name);
286 if (session && SSL_set_session(ssl, session) != 1) {
287 interpret_queued_ssl_error("SSL_set_session");
291 /* Create and return the ssl_stream. */
292 sslv = xmalloc(sizeof *sslv);
293 stream_init(&sslv->stream, &ssl_stream_class, EAGAIN, name);
294 stream_set_remote_ip(&sslv->stream, remote->sin_addr.s_addr);
295 stream_set_remote_port(&sslv->stream, remote->sin_port);
296 stream_set_local_ip(&sslv->stream, local.sin_addr.s_addr);
297 stream_set_local_port(&sslv->stream, local.sin_port);
303 sslv->rx_want = sslv->tx_want = SSL_NOTHING;
304 sslv->session_nr = next_session_nr++;
307 if (VLOG_IS_DBG_ENABLED()) {
308 SSL_set_msg_callback(ssl, ssl_protocol_cb);
309 SSL_set_msg_callback_arg(ssl, sslv);
312 *streamp = &sslv->stream;
323 static struct ssl_stream *
324 ssl_stream_cast(struct stream *stream)
326 stream_assert_class(stream, &ssl_stream_class);
327 return CONTAINER_OF(stream, struct ssl_stream, stream);
331 ssl_open(const char *name, char *suffix, struct stream **streamp)
333 struct sockaddr_in sin;
341 error = inet_open_active(SOCK_STREAM, suffix, OFP_SSL_PORT, &sin, &fd);
343 int state = error ? STATE_TCP_CONNECTING : STATE_SSL_CONNECTING;
344 return new_ssl_stream(name, fd, CLIENT, state, &sin, streamp);
346 VLOG_ERR("%s: connect: %s", name, strerror(error));
352 do_ca_cert_bootstrap(struct stream *stream)
354 struct ssl_stream *sslv = ssl_stream_cast(stream);
355 STACK_OF(X509) *chain;
361 chain = SSL_get_peer_cert_chain(sslv->ssl);
362 if (!chain || !sk_X509_num(chain)) {
363 VLOG_ERR("could not bootstrap CA cert: no certificate presented by "
367 cert = sk_X509_value(chain, sk_X509_num(chain) - 1);
369 /* Check that 'cert' is self-signed. Otherwise it is not a CA
370 * certificate and we should not attempt to use it as one. */
371 error = X509_check_issued(cert, cert);
373 VLOG_ERR("could not bootstrap CA cert: obtained certificate is "
374 "not self-signed (%s)",
375 X509_verify_cert_error_string(error));
376 if (sk_X509_num(chain) < 2) {
377 VLOG_ERR("only one certificate was received, so probably the peer "
378 "is not configured to send its CA certificate");
383 fd = open(ca_cert.file_name, O_CREAT | O_EXCL | O_WRONLY, 0444);
385 if (errno == EEXIST) {
386 VLOG_INFO("reading CA cert %s created by another process",
388 stream_ssl_set_ca_cert_file(ca_cert.file_name, true);
391 VLOG_ERR("could not bootstrap CA cert: creating %s failed: %s",
392 ca_cert.file_name, strerror(errno));
397 file = fdopen(fd, "w");
400 VLOG_ERR("could not bootstrap CA cert: fdopen failed: %s",
402 unlink(ca_cert.file_name);
406 if (!PEM_write_X509(file, cert)) {
407 VLOG_ERR("could not bootstrap CA cert: PEM_write_X509 to %s failed: "
408 "%s", ca_cert.file_name,
409 ERR_error_string(ERR_get_error(), NULL));
411 unlink(ca_cert.file_name);
417 VLOG_ERR("could not bootstrap CA cert: writing %s failed: %s",
418 ca_cert.file_name, strerror(error));
419 unlink(ca_cert.file_name);
423 VLOG_INFO("successfully bootstrapped CA cert to %s", ca_cert.file_name);
424 log_ca_cert(ca_cert.file_name, cert);
425 bootstrap_ca_cert = false;
428 /* SSL_CTX_add_client_CA makes a copy of cert's relevant data. */
429 SSL_CTX_add_client_CA(ctx, cert);
431 /* SSL_CTX_use_certificate() takes ownership of the certificate passed in.
432 * 'cert' is owned by sslv->ssl, so we need to duplicate it. */
433 cert = X509_dup(cert);
437 if (SSL_CTX_load_verify_locations(ctx, ca_cert.file_name, NULL) != 1) {
438 VLOG_ERR("SSL_CTX_load_verify_locations: %s",
439 ERR_error_string(ERR_get_error(), NULL));
442 VLOG_INFO("killing successful connection to retry using CA cert");
447 ssl_delete_session(struct shash_node *node)
449 SSL_SESSION *session = node->data;
450 SSL_SESSION_free(session);
451 shash_delete(&client_sessions, node);
454 /* Find and free any previously cached session for 'stream''s target. */
456 ssl_flush_session(struct stream *stream)
458 struct shash_node *node;
460 node = shash_find(&client_sessions, stream_get_name(stream));
462 ssl_delete_session(node);
466 /* Add 'stream''s session to the cache for its target, so that it will be
467 * reused for future SSL connections to the same target. */
469 ssl_cache_session(struct stream *stream)
471 struct ssl_stream *sslv = ssl_stream_cast(stream);
472 SSL_SESSION *session;
474 /* Get session from stream. */
475 session = SSL_get1_session(sslv->ssl);
477 SSL_SESSION *old_session;
479 old_session = shash_replace(&client_sessions, stream_get_name(stream),
482 /* Free the session that we replaced. (We might actually have
483 * session == old_session, but either way we have to free it to
484 * avoid leaking a reference.) */
485 SSL_SESSION_free(old_session);
486 } else if (shash_count(&client_sessions) > MAX_CLIENT_SESSION_CACHE) {
488 struct shash_node *node = shash_random_node(&client_sessions);
489 if (node->data != session) {
490 ssl_delete_session(node);
499 ssl_connect(struct stream *stream)
501 struct ssl_stream *sslv = ssl_stream_cast(stream);
504 switch (sslv->state) {
505 case STATE_TCP_CONNECTING:
506 retval = check_connection_completion(sslv->fd);
510 sslv->state = STATE_SSL_CONNECTING;
513 case STATE_SSL_CONNECTING:
514 /* Capture the first few bytes of received data so that we can guess
515 * what kind of funny data we've been sent if SSL negotation fails. */
516 if (sslv->n_head <= 0) {
517 sslv->n_head = recv(sslv->fd, sslv->head, sizeof sslv->head,
521 retval = (sslv->type == CLIENT
522 ? SSL_connect(sslv->ssl) : SSL_accept(sslv->ssl));
524 int error = SSL_get_error(sslv->ssl, retval);
525 if (retval < 0 && ssl_wants_io(error)) {
530 if (sslv->type == CLIENT) {
531 /* Delete any cached session for this stream's target.
532 * Otherwise a single error causes recurring errors that
533 * don't resolve until the SSL client or server is
534 * restarted. (It can take dozens of reused connections to
535 * see this behavior, so this is difficult to test.) If we
536 * delete the session on the first error, though, the error
537 * only occurs once and then resolves itself. */
538 ssl_flush_session(stream);
541 interpret_ssl_error((sslv->type == CLIENT ? "SSL_connect"
542 : "SSL_accept"), retval, error, &unused);
543 shutdown(sslv->fd, SHUT_RDWR);
544 stream_report_content(sslv->head, sslv->n_head, STREAM_SSL,
545 THIS_MODULE, stream_get_name(stream));
548 } else if (bootstrap_ca_cert) {
549 return do_ca_cert_bootstrap(stream);
550 } else if (verify_peer_cert
551 && ((SSL_get_verify_mode(sslv->ssl)
552 & (SSL_VERIFY_NONE | SSL_VERIFY_PEER))
553 != SSL_VERIFY_PEER)) {
554 /* Two or more SSL connections completed at the same time while we
555 * were in bootstrap mode. Only one of these can finish the
556 * bootstrap successfully. The other one(s) must be rejected
557 * because they were not verified against the bootstrapped CA
558 * certificate. (Alternatively we could verify them against the CA
559 * certificate, but that's more trouble than it's worth. These
560 * connections will succeed the next time they retry, assuming that
561 * they have a certificate against the correct CA.) */
562 VLOG_ERR("rejecting SSL connection during bootstrap race window");
566 COVERAGE_INC(ssl_session);
567 if (SSL_session_reused(sslv->ssl)) {
568 COVERAGE_INC(ssl_session_reused);
578 ssl_close(struct stream *stream)
580 struct ssl_stream *sslv = ssl_stream_cast(stream);
581 ssl_clear_txbuf(sslv);
583 /* Attempt clean shutdown of the SSL connection. This will work most of
584 * the time, as long as the kernel send buffer has some free space and the
585 * SSL connection isn't renegotiating, etc. That has to be good enough,
586 * since we don't have any way to continue the close operation in the
588 SSL_shutdown(sslv->ssl);
590 ssl_cache_session(stream);
592 /* SSL_shutdown() might have signaled an error, in which case we need to
593 * flush it out of the OpenSSL error queue or the next OpenSSL operation
594 * will falsely signal an error. */
603 interpret_queued_ssl_error(const char *function)
605 int queued_error = ERR_get_error();
606 if (queued_error != 0) {
607 VLOG_WARN_RL(&rl, "%s: %s",
608 function, ERR_error_string(queued_error, NULL));
610 VLOG_ERR_RL(&rl, "%s: SSL_ERROR_SSL without queued error", function);
615 interpret_ssl_error(const char *function, int ret, int error,
622 VLOG_ERR_RL(&rl, "%s: unexpected SSL_ERROR_NONE", function);
625 case SSL_ERROR_ZERO_RETURN:
626 VLOG_ERR_RL(&rl, "%s: unexpected SSL_ERROR_ZERO_RETURN", function);
629 case SSL_ERROR_WANT_READ:
633 case SSL_ERROR_WANT_WRITE:
637 case SSL_ERROR_WANT_CONNECT:
638 VLOG_ERR_RL(&rl, "%s: unexpected SSL_ERROR_WANT_CONNECT", function);
641 case SSL_ERROR_WANT_ACCEPT:
642 VLOG_ERR_RL(&rl, "%s: unexpected SSL_ERROR_WANT_ACCEPT", function);
645 case SSL_ERROR_WANT_X509_LOOKUP:
646 VLOG_ERR_RL(&rl, "%s: unexpected SSL_ERROR_WANT_X509_LOOKUP",
650 case SSL_ERROR_SYSCALL: {
651 int queued_error = ERR_get_error();
652 if (queued_error == 0) {
655 VLOG_WARN_RL(&rl, "%s: system error (%s)",
656 function, strerror(status));
659 VLOG_WARN_RL(&rl, "%s: unexpected SSL connection close",
664 VLOG_WARN_RL(&rl, "%s: %s",
665 function, ERR_error_string(queued_error, NULL));
671 interpret_queued_ssl_error(function);
675 VLOG_ERR_RL(&rl, "%s: bad SSL error code %d", function, error);
682 ssl_recv(struct stream *stream, void *buffer, size_t n)
684 struct ssl_stream *sslv = ssl_stream_cast(stream);
688 /* Behavior of zero-byte SSL_read is poorly defined. */
691 old_state = SSL_get_state(sslv->ssl);
692 ret = SSL_read(sslv->ssl, buffer, n);
693 if (old_state != SSL_get_state(sslv->ssl)) {
694 sslv->tx_want = SSL_NOTHING;
696 sslv->rx_want = SSL_NOTHING;
701 int error = SSL_get_error(sslv->ssl, ret);
702 if (error == SSL_ERROR_ZERO_RETURN) {
705 return -interpret_ssl_error("SSL_read", ret, error,
712 ssl_clear_txbuf(struct ssl_stream *sslv)
714 ofpbuf_delete(sslv->txbuf);
719 ssl_do_tx(struct stream *stream)
721 struct ssl_stream *sslv = ssl_stream_cast(stream);
724 int old_state = SSL_get_state(sslv->ssl);
725 int ret = SSL_write(sslv->ssl, sslv->txbuf->data, sslv->txbuf->size);
726 if (old_state != SSL_get_state(sslv->ssl)) {
727 sslv->rx_want = SSL_NOTHING;
729 sslv->tx_want = SSL_NOTHING;
731 ofpbuf_pull(sslv->txbuf, ret);
732 if (sslv->txbuf->size == 0) {
736 int ssl_error = SSL_get_error(sslv->ssl, ret);
737 if (ssl_error == SSL_ERROR_ZERO_RETURN) {
738 VLOG_WARN_RL(&rl, "SSL_write: connection closed");
741 return interpret_ssl_error("SSL_write", ret, ssl_error,
749 ssl_send(struct stream *stream, const void *buffer, size_t n)
751 struct ssl_stream *sslv = ssl_stream_cast(stream);
758 sslv->txbuf = ofpbuf_clone_data(buffer, n);
759 error = ssl_do_tx(stream);
762 ssl_clear_txbuf(sslv);
765 leak_checker_claim(buffer);
775 ssl_run(struct stream *stream)
777 struct ssl_stream *sslv = ssl_stream_cast(stream);
779 if (sslv->txbuf && ssl_do_tx(stream) != EAGAIN) {
780 ssl_clear_txbuf(sslv);
785 ssl_run_wait(struct stream *stream)
787 struct ssl_stream *sslv = ssl_stream_cast(stream);
789 if (sslv->tx_want != SSL_NOTHING) {
790 poll_fd_wait(sslv->fd, want_to_poll_events(sslv->tx_want));
795 ssl_wait(struct stream *stream, enum stream_wait_type wait)
797 struct ssl_stream *sslv = ssl_stream_cast(stream);
801 if (stream_connect(stream) != EAGAIN) {
802 poll_immediate_wake();
804 switch (sslv->state) {
805 case STATE_TCP_CONNECTING:
806 poll_fd_wait(sslv->fd, POLLOUT);
809 case STATE_SSL_CONNECTING:
810 /* ssl_connect() called SSL_accept() or SSL_connect(), which
811 * set up the status that we test here. */
812 poll_fd_wait(sslv->fd,
813 want_to_poll_events(SSL_want(sslv->ssl)));
823 if (sslv->rx_want != SSL_NOTHING) {
824 poll_fd_wait(sslv->fd, want_to_poll_events(sslv->rx_want));
826 poll_immediate_wake();
832 /* We have room in our tx queue. */
833 poll_immediate_wake();
835 /* stream_run_wait() will do the right thing; don't bother with
845 struct stream_class ssl_stream_class = {
848 ssl_close, /* close */
849 ssl_connect, /* connect */
853 ssl_run_wait, /* run_wait */
861 struct pstream pstream;
865 struct pstream_class pssl_pstream_class;
867 static struct pssl_pstream *
868 pssl_pstream_cast(struct pstream *pstream)
870 pstream_assert_class(pstream, &pssl_pstream_class);
871 return CONTAINER_OF(pstream, struct pssl_pstream, pstream);
875 pssl_open(const char *name OVS_UNUSED, char *suffix, struct pstream **pstreamp)
877 struct pssl_pstream *pssl;
878 struct sockaddr_in sin;
879 char bound_name[128];
888 fd = inet_open_passive(SOCK_STREAM, suffix, OFP_SSL_PORT, &sin);
892 sprintf(bound_name, "pssl:%"PRIu16":"IP_FMT,
893 ntohs(sin.sin_port), IP_ARGS(&sin.sin_addr.s_addr));
895 pssl = xmalloc(sizeof *pssl);
896 pstream_init(&pssl->pstream, &pssl_pstream_class, bound_name);
898 *pstreamp = &pssl->pstream;
903 pssl_close(struct pstream *pstream)
905 struct pssl_pstream *pssl = pssl_pstream_cast(pstream);
911 pssl_accept(struct pstream *pstream, struct stream **new_streamp)
913 struct pssl_pstream *pssl = pssl_pstream_cast(pstream);
914 struct sockaddr_in sin;
915 socklen_t sin_len = sizeof sin;
920 new_fd = accept(pssl->fd, &sin, &sin_len);
923 if (error != EAGAIN) {
924 VLOG_DBG_RL(&rl, "accept: %s", strerror(error));
929 error = set_nonblocking(new_fd);
935 sprintf(name, "ssl:"IP_FMT, IP_ARGS(&sin.sin_addr));
936 if (sin.sin_port != htons(OFP_SSL_PORT)) {
937 sprintf(strchr(name, '\0'), ":%"PRIu16, ntohs(sin.sin_port));
939 return new_ssl_stream(name, new_fd, SERVER, STATE_SSL_CONNECTING, &sin,
944 pssl_wait(struct pstream *pstream)
946 struct pssl_pstream *pssl = pssl_pstream_cast(pstream);
947 poll_fd_wait(pssl->fd, POLLIN);
950 struct pstream_class pssl_pstream_class = {
959 * Returns true if OpenSSL error is WANT_READ or WANT_WRITE, indicating that
960 * OpenSSL is requesting that we call it back when the socket is ready for read
961 * or writing, respectively.
964 ssl_wants_io(int ssl_error)
966 return (ssl_error == SSL_ERROR_WANT_WRITE
967 || ssl_error == SSL_ERROR_WANT_READ);
973 static int init_status = -1;
974 if (init_status < 0) {
975 init_status = do_ssl_init();
976 assert(init_status >= 0);
987 SSL_load_error_strings();
989 /* New OpenSSL changed TLSv1_method() to return a "const" pointer, so the
990 * cast is needed to avoid a warning with those newer versions. */
991 method = (SSL_METHOD *) TLSv1_method();
992 if (method == NULL) {
993 VLOG_ERR("TLSv1_method: %s", ERR_error_string(ERR_get_error(), NULL));
997 ctx = SSL_CTX_new(method);
999 VLOG_ERR("SSL_CTX_new: %s", ERR_error_string(ERR_get_error(), NULL));
1002 SSL_CTX_set_options(ctx, SSL_OP_NO_SSLv2 | SSL_OP_NO_SSLv3);
1003 SSL_CTX_set_tmp_dh_callback(ctx, tmp_dh_callback);
1004 SSL_CTX_set_mode(ctx, SSL_MODE_ENABLE_PARTIAL_WRITE);
1005 SSL_CTX_set_mode(ctx, SSL_MODE_ACCEPT_MOVING_WRITE_BUFFER);
1006 SSL_CTX_set_verify(ctx, SSL_VERIFY_PEER | SSL_VERIFY_FAIL_IF_NO_PEER_CERT,
1009 /* We have to set a session context ID string in 'ctx' because OpenSSL
1010 * otherwise refuses to use a cached session on the server side when
1011 * SSL_VERIFY_PEER is set. And it not only refuses to use the cached
1012 * session, it actually generates an error and kills the connection.
1013 * According to a comment in ssl_get_prev_session() in OpenSSL's
1014 * ssl/ssl_sess.c, this is intentional behavior.
1016 * Any context string is OK, as long as one is set. */
1017 SSL_CTX_set_session_id_context(ctx, (const unsigned char *) PACKAGE,
1024 tmp_dh_callback(SSL *ssl OVS_UNUSED, int is_export OVS_UNUSED, int keylength)
1029 DH *(*constructor)(void);
1032 static struct dh dh_table[] = {
1033 {1024, NULL, get_dh1024},
1034 {2048, NULL, get_dh2048},
1035 {4096, NULL, get_dh4096},
1040 for (dh = dh_table; dh < &dh_table[ARRAY_SIZE(dh_table)]; dh++) {
1041 if (dh->keylength == keylength) {
1043 dh->dh = dh->constructor();
1045 ovs_fatal(ENOMEM, "out of memory constructing "
1046 "Diffie-Hellman parameters");
1052 VLOG_ERR_RL(&rl, "no Diffie-Hellman parameters for key length %d",
1057 /* Returns true if SSL is at least partially configured. */
1059 stream_ssl_is_configured(void)
1061 return private_key.file_name || certificate.file_name || ca_cert.file_name;
1065 update_ssl_config(struct ssl_config_file *config, const char *file_name)
1067 struct timespec mtime;
1069 if (ssl_init() || !file_name) {
1073 /* If the file name hasn't changed and neither has the file contents, stop
1075 get_mtime(file_name, &mtime);
1076 if (config->file_name
1077 && !strcmp(config->file_name, file_name)
1078 && mtime.tv_sec == config->mtime.tv_sec
1079 && mtime.tv_nsec == config->mtime.tv_nsec) {
1083 /* Update 'config'. */
1084 config->mtime = mtime;
1085 if (file_name != config->file_name) {
1086 free(config->file_name);
1087 config->file_name = xstrdup(file_name);
1093 stream_ssl_set_private_key_file__(const char *file_name)
1095 if (SSL_CTX_use_PrivateKey_file(ctx, file_name, SSL_FILETYPE_PEM) == 1) {
1096 private_key.read = true;
1098 VLOG_ERR("SSL_use_PrivateKey_file: %s",
1099 ERR_error_string(ERR_get_error(), NULL));
1104 stream_ssl_set_private_key_file(const char *file_name)
1106 if (update_ssl_config(&private_key, file_name)) {
1107 stream_ssl_set_private_key_file__(file_name);
1112 stream_ssl_set_certificate_file__(const char *file_name)
1114 if (SSL_CTX_use_certificate_chain_file(ctx, file_name) == 1) {
1115 certificate.read = true;
1117 VLOG_ERR("SSL_use_certificate_file: %s",
1118 ERR_error_string(ERR_get_error(), NULL));
1123 stream_ssl_set_certificate_file(const char *file_name)
1125 if (update_ssl_config(&certificate, file_name)) {
1126 stream_ssl_set_certificate_file__(file_name);
1130 /* Sets the private key and certificate files in one operation. Use this
1131 * interface, instead of calling stream_ssl_set_private_key_file() and
1132 * stream_ssl_set_certificate_file() individually, in the main loop of a
1133 * long-running program whose key and certificate might change at runtime.
1135 * This is important because of OpenSSL's behavior. If an OpenSSL context
1136 * already has a certificate, and stream_ssl_set_private_key_file() is called
1137 * to install a new private key, OpenSSL will report an error because the new
1138 * private key does not match the old certificate. The other order, of setting
1139 * a new certificate, then setting a new private key, does work.
1141 * If this were the only problem, calling stream_ssl_set_certificate_file()
1142 * before stream_ssl_set_private_key_file() would fix it. But, if the private
1143 * key is changed before the certificate (e.g. someone "scp"s or "mv"s the new
1144 * private key in place before the certificate), then OpenSSL would reject that
1145 * change, and then the change of certificate would succeed, but there would be
1146 * no associated private key (because it had only changed once and therefore
1147 * there was no point in re-reading it).
1149 * This function avoids both problems by, whenever either the certificate or
1150 * the private key file changes, re-reading both of them, in the correct order.
1153 stream_ssl_set_key_and_cert(const char *private_key_file,
1154 const char *certificate_file)
1156 if (update_ssl_config(&private_key, private_key_file)
1157 || update_ssl_config(&certificate, certificate_file)) {
1158 stream_ssl_set_certificate_file__(certificate_file);
1159 stream_ssl_set_private_key_file__(private_key_file);
1163 /* Reads the X509 certificate or certificates in file 'file_name'. On success,
1164 * stores the address of the first element in an array of pointers to
1165 * certificates in '*certs' and the number of certificates in the array in
1166 * '*n_certs', and returns 0. On failure, stores a null pointer in '*certs', 0
1167 * in '*n_certs', and returns a positive errno value.
1169 * The caller is responsible for freeing '*certs'. */
1171 read_cert_file(const char *file_name, X509 ***certs, size_t *n_certs)
1174 size_t allocated_certs = 0;
1179 file = fopen(file_name, "r");
1181 VLOG_ERR("failed to open %s for reading: %s",
1182 file_name, strerror(errno));
1190 /* Read certificate from file. */
1191 certificate = PEM_read_X509(file, NULL, NULL, NULL);
1195 VLOG_ERR("PEM_read_X509 failed reading %s: %s",
1196 file_name, ERR_error_string(ERR_get_error(), NULL));
1197 for (i = 0; i < *n_certs; i++) {
1198 X509_free((*certs)[i]);
1206 /* Add certificate to array. */
1207 if (*n_certs >= allocated_certs) {
1208 *certs = x2nrealloc(*certs, &allocated_certs, sizeof **certs);
1210 (*certs)[(*n_certs)++] = certificate;
1212 /* Are there additional certificates in the file? */
1215 } while (isspace(c));
1226 /* Sets 'file_name' as the name of a file containing one or more X509
1227 * certificates to send to the peer. Typical use in OpenFlow is to send the CA
1228 * certificate to the peer, which enables a switch to pick up the controller's
1229 * CA certificate on its first connection. */
1231 stream_ssl_set_peer_ca_cert_file(const char *file_name)
1241 if (!read_cert_file(file_name, &certs, &n_certs)) {
1242 for (i = 0; i < n_certs; i++) {
1243 if (SSL_CTX_add_extra_chain_cert(ctx, certs[i]) != 1) {
1244 VLOG_ERR("SSL_CTX_add_extra_chain_cert: %s",
1245 ERR_error_string(ERR_get_error(), NULL));
1252 /* Logs fingerprint of CA certificate 'cert' obtained from 'file_name'. */
1254 log_ca_cert(const char *file_name, X509 *cert)
1256 unsigned char digest[EVP_MAX_MD_SIZE];
1257 unsigned int n_bytes;
1262 if (!X509_digest(cert, EVP_sha1(), digest, &n_bytes)) {
1263 ds_put_cstr(&fp, "<out of memory>");
1266 for (i = 0; i < n_bytes; i++) {
1268 ds_put_char(&fp, ':');
1270 ds_put_format(&fp, "%02hhx", digest[i]);
1273 subject = X509_NAME_oneline(X509_get_subject_name(cert), NULL, 0);
1274 VLOG_INFO("Trusting CA cert from %s (%s) (fingerprint %s)", file_name,
1275 subject ? subject : "<out of memory>", ds_cstr(&fp));
1276 OPENSSL_free(subject);
1281 stream_ssl_set_ca_cert_file__(const char *file_name, bool bootstrap)
1287 if (!strcmp(file_name, "none")) {
1288 verify_peer_cert = false;
1289 VLOG_WARN("Peer certificate validation disabled "
1290 "(this is a security risk)");
1291 } else if (bootstrap && stat(file_name, &s) && errno == ENOENT) {
1292 bootstrap_ca_cert = true;
1293 } else if (!read_cert_file(file_name, &certs, &n_certs)) {
1296 /* Set up list of CAs that the server will accept from the client. */
1297 for (i = 0; i < n_certs; i++) {
1298 /* SSL_CTX_add_client_CA makes a copy of the relevant data. */
1299 if (SSL_CTX_add_client_CA(ctx, certs[i]) != 1) {
1300 VLOG_ERR("failed to add client certificate %zu from %s: %s",
1302 ERR_error_string(ERR_get_error(), NULL));
1304 log_ca_cert(file_name, certs[i]);
1306 X509_free(certs[i]);
1310 /* Set up CAs for OpenSSL to trust in verifying the peer's
1312 if (SSL_CTX_load_verify_locations(ctx, file_name, NULL) != 1) {
1313 VLOG_ERR("SSL_CTX_load_verify_locations: %s",
1314 ERR_error_string(ERR_get_error(), NULL));
1318 bootstrap_ca_cert = false;
1320 ca_cert.read = true;
1323 /* Sets 'file_name' as the name of the file from which to read the CA
1324 * certificate used to verify the peer within SSL connections. If 'bootstrap'
1325 * is false, the file must exist. If 'bootstrap' is false, then the file is
1326 * read if it is exists; if it does not, then it will be created from the CA
1327 * certificate received from the peer on the first SSL connection. */
1329 stream_ssl_set_ca_cert_file(const char *file_name, bool bootstrap)
1331 if (!update_ssl_config(&ca_cert, file_name)) {
1335 stream_ssl_set_ca_cert_file__(file_name, bootstrap);
1338 /* SSL protocol logging. */
1341 ssl_alert_level_to_string(uint8_t type)
1344 case 1: return "warning";
1345 case 2: return "fatal";
1346 default: return "<unknown>";
1351 ssl_alert_description_to_string(uint8_t type)
1354 case 0: return "close_notify";
1355 case 10: return "unexpected_message";
1356 case 20: return "bad_record_mac";
1357 case 21: return "decryption_failed";
1358 case 22: return "record_overflow";
1359 case 30: return "decompression_failure";
1360 case 40: return "handshake_failure";
1361 case 42: return "bad_certificate";
1362 case 43: return "unsupported_certificate";
1363 case 44: return "certificate_revoked";
1364 case 45: return "certificate_expired";
1365 case 46: return "certificate_unknown";
1366 case 47: return "illegal_parameter";
1367 case 48: return "unknown_ca";
1368 case 49: return "access_denied";
1369 case 50: return "decode_error";
1370 case 51: return "decrypt_error";
1371 case 60: return "export_restriction";
1372 case 70: return "protocol_version";
1373 case 71: return "insufficient_security";
1374 case 80: return "internal_error";
1375 case 90: return "user_canceled";
1376 case 100: return "no_renegotiation";
1377 default: return "<unknown>";
1382 ssl_handshake_type_to_string(uint8_t type)
1385 case 0: return "hello_request";
1386 case 1: return "client_hello";
1387 case 2: return "server_hello";
1388 case 11: return "certificate";
1389 case 12: return "server_key_exchange";
1390 case 13: return "certificate_request";
1391 case 14: return "server_hello_done";
1392 case 15: return "certificate_verify";
1393 case 16: return "client_key_exchange";
1394 case 20: return "finished";
1395 default: return "<unknown>";
1400 ssl_protocol_cb(int write_p, int version OVS_UNUSED, int content_type,
1401 const void *buf_, size_t len, SSL *ssl OVS_UNUSED, void *sslv_)
1403 const struct ssl_stream *sslv = sslv_;
1404 const uint8_t *buf = buf_;
1407 if (!VLOG_IS_DBG_ENABLED()) {
1412 if (content_type == 20) {
1413 ds_put_cstr(&details, "change_cipher_spec");
1414 } else if (content_type == 21) {
1415 ds_put_format(&details, "alert: %s, %s",
1416 ssl_alert_level_to_string(buf[0]),
1417 ssl_alert_description_to_string(buf[1]));
1418 } else if (content_type == 22) {
1419 ds_put_format(&details, "handshake: %s",
1420 ssl_handshake_type_to_string(buf[0]));
1422 ds_put_format(&details, "type %d", content_type);
1425 VLOG_DBG("%s%u%s%s %s (%zu bytes)",
1426 sslv->type == CLIENT ? "client" : "server",
1427 sslv->session_nr, write_p ? "-->" : "<--",
1428 stream_get_name(&sslv->stream), ds_cstr(&details), len);
1430 ds_destroy(&details);