tls.c
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/* GNU Mailutils -- a suite of utilities for electronic mail
Copyright (C) 2003, 2004, 2007, 2008, 2009, 2010, 2011 Free Software
Foundation, Inc.
This library is free software; you can redistribute it and/or
modify it under the terms of the GNU Lesser General Public
License as published by the Free Software Foundation; either
version 3 of the License, or (at your option) any later version.
This library is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
Lesser General Public License for more details.
You should have received a copy of the GNU Lesser General
Public License along with this library. If not, see
<http://www.gnu.org/licenses/>. */
#if HAVE_CONFIG_H
# include <config.h>
#endif
#include <stdio.h>
#include <stdlib.h>
#include <unistd.h>
#include <sys/types.h>
#include <sys/stat.h>
#include <string.h>
#include <mailutils/error.h>
#include <mailutils/mu_auth.h>
#include <mailutils/tls.h>
#include <mailutils/nls.h>
#include <mailutils/stream.h>
#include <mailutils/errno.h>
#include <mailutils/util.h>
struct mu_tls_module_config mu_tls_module_config = {
#ifdef WITH_TLS
1 /* enable by default */
#else
0
#endif
};
int
mu_tls_module_init (enum mu_gocs_op op, void *data)
{
switch (op)
{
case mu_gocs_op_set:
if (data)
memcpy (&mu_tls_module_config, data, sizeof mu_tls_module_config);
break;
case mu_gocs_op_flush:
#ifdef WITH_TLS
mu_init_tls_libs (0);
#endif
break;
}
return 0;
}
#ifdef WITH_TLS
#include <gnutls/gnutls.h>
#include <mailutils/sys/tls-stream.h>
static gnutls_certificate_server_credentials x509_cred;
/* Return: zero means NOT READY, one means READY */
int
mu_check_tls_environment (void)
{
if (!mu_tls_module_config.enable)
return 0;
if (mu_tls_module_config.ssl_cert && mu_tls_module_config.ssl_key)
{
int rc = mu_file_safety_check (mu_tls_module_config.ssl_cert,
mu_tls_module_config.ssl_cert_safety_checks,
-1, NULL);
if (rc)
{
mu_error ("%s: %s", mu_tls_module_config.ssl_cert,
mu_strerror (rc));
return 0;
}
rc = mu_file_safety_check (mu_tls_module_config.ssl_key,
mu_tls_module_config.ssl_key_safety_checks,
-1, NULL);
if (rc)
{
mu_error ("%s: %s", mu_tls_module_config.ssl_key,
mu_strerror (rc));
return 0;
}
if (mu_tls_module_config.ssl_cafile)
{
rc = mu_file_safety_check (mu_tls_module_config.ssl_cafile,
mu_tls_module_config.ssl_cafile_safety_checks,
-1, NULL);
if (rc)
{
mu_error ("%s: %s", mu_tls_module_config.ssl_cafile,
mu_strerror (rc));
return 0;
}
}
}
else
return 0;
return 1;
}
int mu_tls_enable = 0;
#ifdef DEBUG_TLS
void
_mu_gtls_logger(int level, const char *text)
{
mu_diag_output (MU_DIAG_DEBUG, "GnuTLS(%d): %s", level, text);
}
#endif
int
mu_init_tls_libs (int x509_setup)
{
if (!mu_tls_enable)
{
int rc;
if ((rc = gnutls_global_init ()) == GNUTLS_E_SUCCESS)
mu_tls_enable = 1;
else
{
mu_error ("gnutls_global_init: %s", gnutls_strerror (rc));
return 0;
}
}
if (x509_setup && !x509_cred)
{
gnutls_certificate_allocate_credentials (&x509_cred);
if (mu_tls_module_config.ssl_cafile)
gnutls_certificate_set_x509_trust_file (x509_cred,
mu_tls_module_config.ssl_cafile,
GNUTLS_X509_FMT_PEM);
gnutls_certificate_set_x509_key_file (x509_cred,
mu_tls_module_config.ssl_cert,
mu_tls_module_config.ssl_key,
GNUTLS_X509_FMT_PEM);
}
#ifdef DEBUG_TLS
gnutls_global_set_log_function (_mu_gtls_logger);
gnutls_global_set_log_level (110);
#endif
return mu_tls_enable;
}
void
mu_deinit_tls_libs (void)
{
if (mu_tls_enable)
{
if (x509_cred)
gnutls_certificate_free_credentials (x509_cred);
gnutls_global_deinit ();
}
mu_tls_enable = 0;
}
static gnutls_session
initialize_tls_session (void)
{
gnutls_session session = 0;
gnutls_init (&session, GNUTLS_SERVER);
gnutls_set_default_priority (session);
gnutls_credentials_set (session, GNUTLS_CRD_CERTIFICATE, x509_cred);
gnutls_certificate_server_set_request (session, GNUTLS_CERT_REQUEST);
return session;
}
/* ************************* TLS Stream Support **************************** */
static int
_tls_io_close (mu_stream_t stream)
{
struct _mu_tls_io_stream *sp = (struct _mu_tls_io_stream *) stream;
return mu_stream_close (sp->transport);
}
static void
_tls_io_done (struct _mu_stream *stream)
{
struct _mu_tls_io_stream *sp = (struct _mu_tls_io_stream *) stream;
mu_stream_unref (sp->transport);
}
static int
_tls_io_flush (struct _mu_stream *stream)
{
struct _mu_tls_io_stream *sp = (struct _mu_tls_io_stream *) stream;
return mu_stream_flush (sp->transport);
}
static int
_tls_io_read (struct _mu_stream *stream, char *buf, size_t bufsize,
size_t *pnread)
{
struct _mu_tls_io_stream *sp = (struct _mu_tls_io_stream *) stream;
int rc;
if (sp->up->state != state_open)
return EINVAL;
rc = gnutls_record_recv (sp->up->session, buf, bufsize);
if (rc >= 0)
{
*pnread = rc;
return 0;
}
sp->up->tls_err = rc;
return EIO;
}
static int
_tls_io_write (struct _mu_stream *stream, const char *buf, size_t bufsize,
size_t *pnwrite)
{
struct _mu_tls_io_stream *sp = (struct _mu_tls_io_stream *) stream;
int rc;
if (sp->up->state != state_open)
return EINVAL;
/* gnutls_record_send() docs say:
If the EINTR is returned by the internal push function (write())
then GNUTLS_E_INTERRUPTED, will be returned. If GNUTLS_E_INTERRUPTED or
GNUTLS_E_AGAIN is returned you must call this function again, with the
same parameters. Otherwise the write operation will be
corrupted and the connection will be terminated. */
do
rc = gnutls_record_send (sp->up->session, buf, bufsize);
while (rc == GNUTLS_E_INTERRUPTED || rc == GNUTLS_E_AGAIN);
if (rc < 0)
{
sp->up->tls_err = rc;
return EIO;
}
*pnwrite = rc;
return 0;
}
static int
_tls_rd_wait (struct _mu_stream *stream, int *pflags, struct timeval *tvp)
{
struct _mu_tls_io_stream *sp = (struct _mu_tls_io_stream *) stream;
int rc = EINVAL;
if (*pflags == MU_STREAM_READY_RD)
rc = mu_stream_wait (sp->transport, pflags, tvp);
return rc;
}
static int
_tls_wr_wait (struct _mu_stream *stream, int *pflags, struct timeval *tvp)
{
struct _mu_tls_io_stream *sp = (struct _mu_tls_io_stream *) stream;
int rc = EINVAL;
if (*pflags == MU_STREAM_READY_WR)
rc = mu_stream_wait (sp->transport, pflags, tvp);
return rc;
}
static int
_tls_io_ioctl (struct _mu_stream *stream, int code, int opcode, void *arg)
{
struct _mu_tls_io_stream *sp = (struct _mu_tls_io_stream *) stream;
switch (code)
{
case MU_IOCTL_TRANSPORT:
if (!arg)
return EINVAL;
else
{
mu_transport_t *ptrans = arg;
switch (opcode)
{
case MU_IOCTL_OP_GET:
ptrans[0] = (mu_transport_t) sp->transport;
ptrans[1] = NULL;
break;
case MU_IOCTL_OP_SET:
return ENOSYS;
default:
return EINVAL;
}
}
break;
default:
return ENOSYS;
}
return 0;
}
static int
_mu_tls_io_stream_create (mu_stream_t *pstream,
mu_stream_t transport, int flags,
struct _mu_tls_stream *master)
{
struct _mu_tls_io_stream *sp;
sp = (struct _mu_tls_io_stream *)
_mu_stream_create (sizeof (*sp), (flags & MU_STREAM_RDWR) | _MU_STR_OPEN);
if (!sp)
return ENOMEM;
if (flags & MU_STREAM_READ)
{
sp->stream.read = _tls_io_read;
sp->stream.wait = _tls_rd_wait;
mu_stream_set_buffer ((mu_stream_t) sp, mu_buffer_full, 0);
}
else
{
sp->stream.write = _tls_io_write;
sp->stream.wait = _tls_wr_wait;
mu_stream_set_buffer ((mu_stream_t) sp, mu_buffer_line, 0);
}
sp->stream.flush = _tls_io_flush;
sp->stream.close = _tls_io_close;
sp->stream.done = _tls_io_done;
sp->stream.ctl = _tls_io_ioctl;
mu_stream_ref (transport);
sp->transport = transport;
sp->up = master;
*pstream = (mu_stream_t) sp;
return 0;
}
static ssize_t
_tls_stream_pull (gnutls_transport_ptr fd, void *buf, size_t size)
{
mu_stream_t stream = fd;
int rc;
size_t rdbytes;
while ((rc = mu_stream_read (stream, buf, size, &rdbytes)) == EAGAIN)
;
if (rc)
return -1;
return rdbytes;
}
static ssize_t
_tls_stream_push (gnutls_transport_ptr fd, const void *buf, size_t size)
{
mu_stream_t stream = fd;
int rc;
rc = mu_stream_write (stream, buf, size, &size);
if (rc)
{
mu_error ("_tls_stream_push: %s",
mu_stream_strerror (stream, rc)); /* FIXME */
return -1;
}
mu_stream_flush (stream);
return size;
}
static int
_tls_server_open (mu_stream_t stream)
{
struct _mu_tls_stream *sp = (struct _mu_tls_stream *) stream;
int rc = 0;
mu_transport_t transport[2];
if (!mu_tls_module_config.enable)
return MU_ERR_DISABLED;
if (!stream || sp->state != state_init)
return EINVAL;
mu_init_tls_libs (1);
sp->session = initialize_tls_session ();
mu_stream_ioctl (stream, MU_IOCTL_TRANSPORT, MU_IOCTL_OP_GET, transport);
gnutls_transport_set_ptr2 (sp->session,
(gnutls_transport_ptr) transport[0],
(gnutls_transport_ptr) transport[1]);
gnutls_transport_set_pull_function (sp->session, _tls_stream_pull);
gnutls_transport_set_push_function (sp->session, _tls_stream_push);
rc = gnutls_handshake (sp->session);
if (rc < 0)
{
gnutls_deinit (sp->session);
sp->tls_err = rc;
return EIO;
}
sp->state = state_open;
return 0;
}
static int
prepare_client_session (mu_stream_t stream)
{
struct _mu_tls_stream *sp = (struct _mu_tls_stream *) stream;
int rc;
mu_transport_t transport[2];
static int protocol_priority[] = {GNUTLS_TLS1, GNUTLS_SSL3, 0};
static int kx_priority[] = {GNUTLS_KX_RSA, 0};
static int cipher_priority[] = {GNUTLS_CIPHER_3DES_CBC,
GNUTLS_CIPHER_ARCFOUR_128,
0};
static int comp_priority[] = {GNUTLS_COMP_NULL, 0};
static int mac_priority[] = {GNUTLS_MAC_SHA, GNUTLS_MAC_MD5, 0};
gnutls_init (&sp->session, GNUTLS_CLIENT);
gnutls_protocol_set_priority (sp->session, protocol_priority);
gnutls_cipher_set_priority (sp->session, cipher_priority);
gnutls_compression_set_priority (sp->session, comp_priority);
gnutls_kx_set_priority (sp->session, kx_priority);
gnutls_mac_set_priority (sp->session, mac_priority);
gnutls_certificate_allocate_credentials (&x509_cred);
if (mu_tls_module_config.ssl_cafile)
{
rc = gnutls_certificate_set_x509_trust_file (x509_cred,
mu_tls_module_config.ssl_cafile,
GNUTLS_X509_FMT_PEM);
if (rc < 0)
{
sp->tls_err = rc;
return -1;
}
}
gnutls_credentials_set (sp->session, GNUTLS_CRD_CERTIFICATE, x509_cred);
mu_stream_ioctl (stream, MU_IOCTL_TRANSPORT, MU_IOCTL_OP_GET, transport);
gnutls_transport_set_ptr2 (sp->session,
(gnutls_transport_ptr) transport[0],
(gnutls_transport_ptr) transport[1]);
gnutls_transport_set_pull_function (sp->session, _tls_stream_pull);
gnutls_transport_set_push_function (sp->session, _tls_stream_push);
return 0;
}
static int
_tls_client_open (mu_stream_t stream)
{
struct _mu_tls_stream *sp = (struct _mu_tls_stream *) stream;
int rc = 0;
switch (sp->state)
{
case state_closed:
if (sp->session)
gnutls_deinit (sp->session);
/* FALLTHROUGH */
case state_init:
mu_init_tls_libs (0);
prepare_client_session (stream);
rc = gnutls_handshake (sp->session);
if (rc < 0)
{
sp->tls_err = rc;
gnutls_deinit (sp->session);
sp->state = state_init;
return MU_ERR_FAILURE;
}
break;
default:
return MU_ERR_FAILURE;
}
/* FIXME: if (ssl_cafile) verify_certificate (s->session); */
sp->state = state_open;
return 0;
}
static int
_tls_read (struct _mu_stream *str, char *buf, size_t bufsize,
size_t *pnread)
{
struct _mu_tls_stream *sp = (struct _mu_tls_stream *)str;
return mu_stream_read (sp->transport[0], buf, bufsize, pnread);
}
static int
_tls_write (struct _mu_stream *str, const char *buf, size_t bufsize,
size_t *pnwrite)
{
struct _mu_tls_stream *sp = (struct _mu_tls_stream *)str;
return mu_stream_write (sp->transport[1], buf, bufsize, pnwrite);
}
static int
_tls_ioctl (struct _mu_stream *stream, int code, int opcode, void *arg)
{
struct _mu_tls_stream *sp = (struct _mu_tls_stream *) stream;
switch (code)
{
case MU_IOCTL_TRANSPORT:
switch (opcode)
{
case MU_IOCTL_OP_GET:
if (!arg)
return EINVAL;
else
{
mu_transport_t *ptrans, trans[2];
ptrans = arg;
mu_stream_ioctl (sp->transport[0], MU_IOCTL_TRANSPORT,
MU_IOCTL_OP_GET, trans);
ptrans[0] = trans[0];
mu_stream_ioctl (sp->transport[1], MU_IOCTL_TRANSPORT,
MU_IOCTL_OP_GET, trans);
ptrans[1] = trans[0];
}
break;
case MU_IOCTL_OP_SET:
return ENOSYS;
default:
return EINVAL;
}
break;
case MU_IOCTL_TRANSPORT_BUFFER:
if (!arg)
return EINVAL;
else
{
struct mu_buffer_query *qp = arg;
switch (opcode)
{
case MU_IOCTL_OP_GET:
if (!MU_TRANSPORT_VALID_TYPE (qp->type) ||
!sp->transport[qp->type])
return EINVAL;
return mu_stream_get_buffer (sp->transport[qp->type], qp);
case MU_IOCTL_OP_SET:
if (!MU_TRANSPORT_VALID_TYPE (qp->type) ||
!sp->transport[qp->type])
return EINVAL;
return mu_stream_set_buffer (sp->transport[qp->type],
qp->buftype, qp->bufsize);
default:
return EINVAL;
}
}
break;
default:
return ENOSYS;
}
return 0;
}
static int
_tls_wait (struct _mu_stream *stream, int *pflags, struct timeval *tvp)
{
struct _mu_tls_stream *sp = (struct _mu_tls_stream *) stream;
int rc = EINVAL;
if (*pflags == MU_STREAM_READY_RD)
rc = mu_stream_wait (sp->transport[0], pflags, tvp);
else if (*pflags == MU_STREAM_READY_WR)
rc = mu_stream_wait (sp->transport[1], pflags, tvp);
return rc;
}
static int
_tls_flush (struct _mu_stream *stream)
{
struct _mu_tls_stream *sp = (struct _mu_tls_stream *) stream;
return mu_stream_flush (sp->transport[1]);
}
static int
_tls_close (mu_stream_t stream)
{
struct _mu_tls_stream *sp = (struct _mu_tls_stream *) stream;
if (sp->session && sp->state == state_open)
{
gnutls_bye (sp->session, GNUTLS_SHUT_RDWR);
sp->state = state_closed;
}
mu_stream_close (sp->transport[0]);
mu_stream_close (sp->transport[1]);
return 0;
}
static void
_tls_done (struct _mu_stream *stream)
{
struct _mu_tls_stream *sp = (struct _mu_tls_stream *) stream;
if (sp->session && sp->state == state_closed)
{
gnutls_deinit (sp->session);
sp->state = state_destroyed;
}
mu_stream_destroy (&sp->transport[0]);
mu_stream_destroy (&sp->transport[1]);
}
static const char *
_tls_error_string (struct _mu_stream *stream, int rc)
{
if (rc == EIO)
{
struct _mu_tls_stream *sp = (struct _mu_tls_stream *) stream;
return gnutls_strerror (sp->tls_err);
}
return mu_strerror (rc);
}
static int
_mu_tls_stream_create (mu_stream_t *pstream,
int (*openfn) (mu_stream_t stream),
mu_stream_t strin, mu_stream_t strout, int flags)
{
struct _mu_tls_stream *sp;
int rc;
mu_stream_t stream;
sp = (struct _mu_tls_stream *)
_mu_stream_create (sizeof (*sp), MU_STREAM_RDWR);
if (!sp)
return ENOMEM;
sp->stream.read = _tls_read;
sp->stream.write = _tls_write;
sp->stream.flush = _tls_flush;
sp->stream.open = openfn;
sp->stream.close = _tls_close;
sp->stream.done = _tls_done;
sp->stream.ctl = _tls_ioctl;
sp->stream.wait = _tls_wait;
sp->stream.error_string = _tls_error_string;
mu_stream_set_buffer (strin, mu_buffer_none, 0);
mu_stream_set_buffer (strout, mu_buffer_none, 0);
rc = _mu_tls_io_stream_create (&sp->transport[0], strin, MU_STREAM_READ, sp);
if (rc)
{
free (sp);
return rc;
}
rc = _mu_tls_io_stream_create (&sp->transport[1], strout, MU_STREAM_WRITE,
sp);
if (rc)
{
free (sp);
free (sp->transport[0]);
return rc;
}
stream = (mu_stream_t) sp;
mu_stream_set_buffer (stream, mu_buffer_line, 0);
rc = mu_stream_open (stream);
if (rc)
mu_stream_destroy (&stream);
else
*pstream = stream;
return rc;
}
int
mu_tls_server_stream_create (mu_stream_t *pstream,
mu_stream_t strin, mu_stream_t strout, int flags)
{
return _mu_tls_stream_create (pstream,
_tls_server_open,
strin, strout, flags);
}
int
mu_tls_client_stream_create (mu_stream_t *pstream,
mu_stream_t strin, mu_stream_t strout, int flags)
{
return _mu_tls_stream_create (pstream,
_tls_client_open,
strin, strout, flags);
}
#endif /* WITH_TLS */
/* EOF */