Upgrade to OpenSSH 6.5p1.

This commit is contained in:
des 2014-01-31 13:12:02 +00:00
commit 7573e91b12
207 changed files with 13557 additions and 4441 deletions

File diff suppressed because it is too large Load Diff

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@ -1,4 +1,4 @@
# $Id: Makefile.in,v 1.340 2013/06/11 01:26:10 dtucker Exp $
# $Id: Makefile.in,v 1.352 2014/01/27 06:35:04 dtucker Exp $
# uncomment if you run a non bourne compatable shell. Ie. csh
#SHELL = @SH@
@ -73,7 +73,10 @@ LIBSSH_OBJS=authfd.o authfile.o bufaux.o bufbn.o buffer.o \
monitor_fdpass.o rijndael.o ssh-dss.o ssh-ecdsa.o ssh-rsa.o dh.o \
kexdh.o kexgex.o kexdhc.o kexgexc.o bufec.o kexecdh.o kexecdhc.o \
msg.o progressmeter.o dns.o entropy.o gss-genr.o umac.o umac128.o \
jpake.o schnorr.o ssh-pkcs11.o krl.o
jpake.o schnorr.o ssh-pkcs11.o krl.o smult_curve25519_ref.o \
kexc25519.o kexc25519c.o poly1305.o chacha.o cipher-chachapoly.o \
ssh-ed25519.o digest.o \
sc25519.o ge25519.o fe25519.o ed25519.o verify.o hash.o blocks.o
SSHOBJS= ssh.o readconf.o clientloop.o sshtty.o \
sshconnect.o sshconnect1.o sshconnect2.o mux.o \
@ -87,13 +90,13 @@ SSHDOBJS=sshd.o auth-rhosts.o auth-passwd.o auth-rsa.o auth-rh-rsa.o \
auth-skey.o auth-bsdauth.o auth2-hostbased.o auth2-kbdint.o \
auth2-none.o auth2-passwd.o auth2-pubkey.o auth2-jpake.o \
monitor_mm.o monitor.o monitor_wrap.o kexdhs.o kexgexs.o kexecdhs.o \
auth-krb5.o \
kexc25519s.o auth-krb5.o \
auth2-gss.o gss-serv.o gss-serv-krb5.o \
loginrec.o auth-pam.o auth-shadow.o auth-sia.o md5crypt.o \
sftp-server.o sftp-common.o \
roaming_common.o roaming_serv.o \
sandbox-null.o sandbox-rlimit.o sandbox-systrace.o sandbox-darwin.o \
sandbox-seccomp-filter.o
sandbox-seccomp-filter.o sandbox-capsicum.o
MANPAGES = moduli.5.out scp.1.out ssh-add.1.out ssh-agent.1.out ssh-keygen.1.out ssh-keyscan.1.out ssh.1.out sshd.8.out sftp-server.8.out sftp.1.out ssh-keysign.8.out ssh-pkcs11-helper.8.out sshd_config.5.out ssh_config.5.out
MANPAGES_IN = moduli.5 scp.1 ssh-add.1 ssh-agent.1 ssh-keygen.1 ssh-keyscan.1 ssh.1 sshd.8 sftp-server.8 sftp.1 ssh-keysign.8 ssh-pkcs11-helper.8 sshd_config.5 ssh_config.5
@ -112,6 +115,7 @@ PATHSUBS = \
-e 's|/etc/ssh/ssh_host_ecdsa_key|$(sysconfdir)/ssh_host_ecdsa_key|g' \
-e 's|/etc/ssh/ssh_host_dsa_key|$(sysconfdir)/ssh_host_dsa_key|g' \
-e 's|/etc/ssh/ssh_host_rsa_key|$(sysconfdir)/ssh_host_rsa_key|g' \
-e 's|/etc/ssh/ssh_host_ed25519_key|$(sysconfdir)/ssh_host_ed25519_key|g' \
-e 's|/var/run/sshd.pid|$(piddir)/sshd.pid|g' \
-e 's|/etc/moduli|$(sysconfdir)/moduli|g' \
-e 's|/etc/ssh/moduli|$(sysconfdir)/moduli|g' \
@ -332,6 +336,11 @@ host-key: ssh-keygen$(EXEEXT)
else \
./ssh-keygen -t rsa -f $(sysconfdir)/ssh_host_rsa_key -N "" ; \
fi ; \
if [ -f $(sysconfdir)/ssh_host_ed25519_key ] ; then \
echo "$(sysconfdir)/ssh_host_ed25519_key already exists, skipping." ; \
else \
./ssh-keygen -t ed25519 -f $(sysconfdir)/ssh_host_ed25519_key -N "" ; \
fi ; \
if [ -z "@COMMENT_OUT_ECC@" ] ; then \
if [ -f $(sysconfdir)/ssh_host_ecdsa_key ] ; then \
echo "$(sysconfdir)/ssh_host_ecdsa_key already exists, skipping." ; \
@ -345,6 +354,7 @@ host-key-force: ssh-keygen$(EXEEXT)
./ssh-keygen -t rsa1 -f $(DESTDIR)$(sysconfdir)/ssh_host_key -N ""
./ssh-keygen -t dsa -f $(DESTDIR)$(sysconfdir)/ssh_host_dsa_key -N ""
./ssh-keygen -t rsa -f $(DESTDIR)$(sysconfdir)/ssh_host_rsa_key -N ""
./ssh-keygen -t ed25519 -f $(DESTDIR)$(sysconfdir)/ssh_host_ed25519_key -N ""
test -z "@COMMENT_OUT_ECC@" && ./ssh-keygen -t ecdsa -f $(DESTDIR)$(sysconfdir)/ssh_host_ecdsa_key -N ""
uninstallall: uninstall
@ -391,9 +401,17 @@ regress/modpipe$(EXEEXT): $(srcdir)/regress/modpipe.c
$(CC) $(CFLAGS) $(CPPFLAGS) -o $@ $? \
$(LDFLAGS) -lssh -lopenbsd-compat -lssh -lopenbsd-compat $(LIBS)
regress/setuid-allowed$(EXEEXT): $(srcdir)/regress/setuid-allowed.c
[ -d `pwd`/regress ] || mkdir -p `pwd`/regress
[ -f `pwd`/regress/Makefile ] || \
ln -s `cd $(srcdir) && pwd`/regress/Makefile `pwd`/regress/Makefile
$(CC) $(CFLAGS) $(CPPFLAGS) -o $@ $? \
$(LDFLAGS) -lssh -lopenbsd-compat -lssh -lopenbsd-compat $(LIBS)
tests interop-tests: $(TARGETS) regress/modpipe$(EXEEXT)
BUILDDIR=`pwd`; \
TEST_SHELL="@TEST_SHELL@"; \
TEST_SSH_SCP="$${BUILDDIR}/scp"; \
TEST_SSH_SSH="$${BUILDDIR}/ssh"; \
TEST_SSH_SSHD="$${BUILDDIR}/sshd"; \
TEST_SSH_SSHAGENT="$${BUILDDIR}/ssh-agent"; \
@ -408,7 +426,6 @@ tests interop-tests: $(TARGETS) regress/modpipe$(EXEEXT)
TEST_SSH_CONCH="conch"; \
TEST_SSH_IPV6="@TEST_SSH_IPV6@" ; \
TEST_SSH_ECC="@TEST_SSH_ECC@" ; \
TEST_SSH_SHA256="@TEST_SSH_SHA256@" ; \
cd $(srcdir)/regress || exit $$?; \
$(MAKE) \
.OBJDIR="$${BUILDDIR}/regress" \
@ -416,7 +433,9 @@ tests interop-tests: $(TARGETS) regress/modpipe$(EXEEXT)
BUILDDIR="$${BUILDDIR}" \
OBJ="$${BUILDDIR}/regress/" \
PATH="$${BUILDDIR}:$${PATH}" \
TEST_ENV=MALLOC_OPTIONS="@TEST_MALLOC_OPTIONS@" \
TEST_SHELL="$${TEST_SHELL}" \
TEST_SSH_SCP="$${TEST_SSH_SCP}" \
TEST_SSH_SSH="$${TEST_SSH_SSH}" \
TEST_SSH_SSHD="$${TEST_SSH_SSHD}" \
TEST_SSH_SSHAGENT="$${TEST_SSH_SSHAGENT}" \
@ -431,7 +450,6 @@ tests interop-tests: $(TARGETS) regress/modpipe$(EXEEXT)
TEST_SSH_CONCH="$${TEST_SSH_CONCH}" \
TEST_SSH_IPV6="$${TEST_SSH_IPV6}" \
TEST_SSH_ECC="$${TEST_SSH_ECC}" \
TEST_SSH_SHA256="$${TEST_SSH_SHA256}" \
EXEEXT="$(EXEEXT)" \
$@ && echo all tests passed
@ -456,4 +474,3 @@ package: $(CONFIGFILES) $(MANPAGES) $(TARGETS)
if [ "@MAKE_PACKAGE_SUPPORTED@" = yes ]; then \
sh buildpkg.sh; \
fi

View File

@ -91,6 +91,17 @@ an MAC algorithm. Additionally, if AES-GCM is selected as the cipher
the exchanged MAC algorithms are ignored and there doesn't have to be
a matching MAC.
1.7 transport: chacha20-poly1305@openssh.com authenticated encryption
OpenSSH supports authenticated encryption using ChaCha20 and Poly1305
as described in PROTOCOL.chacha20poly1305.
1.8 transport: curve25519-sha256@libssh.org key exchange algorithm
OpenSSH supports the use of ECDH in Curve25519 for key exchange as
described at:
http://git.libssh.org/users/aris/libssh.git/plain/doc/curve25519-sha256@libssh.org.txt?h=curve25519
2. Connection protocol changes
2.1. connection: Channel write close extension "eow@openssh.com"
@ -331,4 +342,18 @@ link(oldpath, newpath) and will respond with a SSH_FXP_STATUS message.
This extension is advertised in the SSH_FXP_VERSION hello with version
"1".
$OpenBSD: PROTOCOL,v 1.20 2013/01/08 18:49:04 markus Exp $
10. sftp: Extension request "fsync@openssh.com"
This request asks the server to call fsync(2) on an open file handle.
uint32 id
string "fsync@openssh.com"
string handle
One receiving this request, a server will call fsync(handle_fd) and will
respond with a SSH_FXP_STATUS message.
This extension is advertised in the SSH_FXP_VERSION hello with version
"1".
$OpenBSD: PROTOCOL,v 1.23 2013/12/01 23:19:05 djm Exp $

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@ -0,0 +1,105 @@
This document describes the chacha20-poly1305@openssh.com authenticated
encryption cipher supported by OpenSSH.
Background
----------
ChaCha20 is a stream cipher designed by Daniel Bernstein and described
in [1]. It operates by permuting 128 fixed bits, 128 or 256 bits of key,
a 64 bit nonce and a 64 bit counter into 64 bytes of output. This output
is used as a keystream, with any unused bytes simply discarded.
Poly1305[2], also by Daniel Bernstein, is a one-time Carter-Wegman MAC
that computes a 128 bit integrity tag given a message and a single-use
256 bit secret key.
The chacha20-poly1305@openssh.com combines these two primitives into an
authenticated encryption mode. The construction used is based on that
proposed for TLS by Adam Langley in [3], but differs in the layout of
data passed to the MAC and in the addition of encyption of the packet
lengths.
Negotiation
-----------
The chacha20-poly1305@openssh.com offers both encryption and
authentication. As such, no separate MAC is required. If the
chacha20-poly1305@openssh.com cipher is selected in key exchange,
the offered MAC algorithms are ignored and no MAC is required to be
negotiated.
Detailed Construction
---------------------
The chacha20-poly1305@openssh.com cipher requires 512 bits of key
material as output from the SSH key exchange. This forms two 256 bit
keys (K_1 and K_2), used by two separate instances of chacha20.
The instance keyed by K_1 is a stream cipher that is used only
to encrypt the 4 byte packet length field. The second instance,
keyed by K_2, is used in conjunction with poly1305 to build an AEAD
(Authenticated Encryption with Associated Data) that is used to encrypt
and authenticate the entire packet.
Two separate cipher instances are used here so as to keep the packet
lengths confidential but not create an oracle for the packet payload
cipher by decrypting and using the packet length prior to checking
the MAC. By using an independently-keyed cipher instance to encrypt the
length, an active attacker seeking to exploit the packet input handling
as a decryption oracle can learn nothing about the payload contents or
its MAC (assuming key derivation, ChaCha20 and Poly1305 are secure).
The AEAD is constructed as follows: for each packet, generate a Poly1305
key by taking the first 256 bits of ChaCha20 stream output generated
using K_2, an IV consisting of the packet sequence number encoded as an
uint64 under the SSH wire encoding rules and a ChaCha20 block counter of
zero. The K_2 ChaCha20 block counter is then set to the little-endian
encoding of 1 (i.e. {1, 0, 0, 0, 0, 0, 0, 0}) and this instance is used
for encryption of the packet payload.
Packet Handling
---------------
When receiving a packet, the length must be decrypted first. When 4
bytes of ciphertext length have been received, they may be decrypted
using the K_1 key, a nonce consisting of the packet sequence number
encoded as a uint64 under the usual SSH wire encoding and a zero block
counter to obtain the plaintext length.
Once the entire packet has been received, the MAC MUST be checked
before decryption. A per-packet Poly1305 key is generated as described
above and the MAC tag calculated using Poly1305 with this key over the
ciphertext of the packet length and the payload together. The calculated
MAC is then compared in constant time with the one appended to the
packet and the packet decrypted using ChaCha20 as described above (with
K_2, the packet sequence number as nonce and a starting block counter of
1).
To send a packet, first encode the 4 byte length and encrypt it using
K_1. Encrypt the packet payload (using K_2) and append it to the
encrypted length. Finally, calculate a MAC tag and append it.
Rekeying
--------
ChaCha20 must never reuse a {key, nonce} for encryption nor may it be
used to encrypt more than 2^70 bytes under the same {key, nonce}. The
SSH Transport protocol (RFC4253) recommends a far more conservative
rekeying every 1GB of data sent or received. If this recommendation
is followed, then chacha20-poly1305@openssh.com requires no special
handling in this area.
References
----------
[1] "ChaCha, a variant of Salsa20", Daniel Bernstein
http://cr.yp.to/chacha/chacha-20080128.pdf
[2] "The Poly1305-AES message-authentication code", Daniel Bernstein
http://cr.yp.to/mac/poly1305-20050329.pdf
[3] "ChaCha20 and Poly1305 based Cipher Suites for TLS", Adam Langley
http://tools.ietf.org/html/draft-agl-tls-chacha20poly1305-03
$OpenBSD: PROTOCOL.chacha20poly1305,v 1.2 2013/12/02 02:50:27 djm Exp $

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@ -0,0 +1,68 @@
This document describes the private key format for OpenSSH.
1. Overall format
The key consists of a header, a list of public keys, and
an encrypted list of matching private keys.
#define AUTH_MAGIC "openssh-key-v1"
byte[] AUTH_MAGIC
string ciphername
string kdfname
string kdfoptions
int number of keys N
string publickey1
string publickey2
...
string publickeyN
string encrypted, padded list of private keys
2. KDF options for kdfname "bcrypt"
The options:
string salt
uint32 rounds
are concatenated and represented as a string.
3. Unencrypted list of N private keys
The list of privatekey/comment pairs is padded with the
bytes 1, 2, 3, ... until the total length is a multiple
of the cipher block size.
uint32 checkint
uint32 checkint
string privatekey1
string comment1
string privatekey2
string comment2
...
string privatekeyN
string commentN
char 1
char 2
char 3
...
char padlen % 255
Before the key is encrypted, a random integer is assigned
to both checkint fields so successful decryption can be
quickly checked by verifying that both checkint fields
hold the same value.
4. Encryption
The KDF is used to derive a key, IV (and other values required by
the cipher) from the passphrase. These values are then used to
encrypt the unencrypted list of private keys.
5. No encryption
For unencrypted keys the cipher "none" and the KDF "none"
are used with empty passphrases. The options if the KDF "none"
are the empty string.
$OpenBSD: PROTOCOL.key,v 1.1 2013/12/06 13:34:54 markus Exp $

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@ -1,4 +1,4 @@
See http://www.openssh.com/txt/release-6.4 for the release notes.
See http://www.openssh.com/txt/release-6.5 for the release notes.
- A Japanese translation of this document and of the OpenSSH FAQ is
- available at http://www.unixuser.org/~haruyama/security/openssh/index.html
@ -62,4 +62,4 @@ References -
[6] http://www.openbsd.org/cgi-bin/man.cgi?query=style&sektion=9
[7] http://www.openssh.com/faq.html
$Id: README,v 1.83.4.1 2013/11/08 01:36:17 djm Exp $
$Id: README,v 1.85 2014/01/16 07:51:45 djm Exp $

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@ -1,4 +1,4 @@
dnl $Id: aclocal.m4,v 1.9 2013/06/02 21:31:27 tim Exp $
dnl $Id: aclocal.m4,v 1.13 2014/01/22 10:30:12 djm Exp $
dnl
dnl OpenSSH-specific autoconf macros
dnl
@ -8,12 +8,24 @@ dnl Check that $CC accepts a flag 'check_flag'. If it is supported append
dnl 'define_flag' to $CFLAGS. If 'define_flag' is not specified, then append
dnl 'check_flag'.
AC_DEFUN([OSSH_CHECK_CFLAG_COMPILE], [{
AC_MSG_CHECKING([if $CC supports $1])
AC_MSG_CHECKING([if $CC supports compile flag $1])
saved_CFLAGS="$CFLAGS"
CFLAGS="$CFLAGS $1"
CFLAGS="$CFLAGS $WERROR $1"
_define_flag="$2"
test "x$_define_flag" = "x" && _define_flag="$1"
AC_COMPILE_IFELSE([AC_LANG_SOURCE([[int main(void) { return 0; }]])],
AC_COMPILE_IFELSE([AC_LANG_SOURCE([[
#include <stdlib.h>
#include <stdio.h>
int main(int argc, char **argv) {
/* Some math to catch -ftrapv problems in the toolchain */
int i = 123 * argc, j = 456 + argc, k = 789 - argc;
float l = i * 2.1;
double m = l / 0.5;
long long int n = argc * 12345LL, o = 12345LL * (long long int)argc;
printf("%d %d %d %f %f %lld %lld\n", i, j, k, l, m, n, o);
exit(0);
}
]])],
[
if `grep -i "unrecognized option" conftest.err >/dev/null`
then
@ -28,6 +40,72 @@ fi],
)
}])
dnl OSSH_CHECK_CFLAG_LINK(check_flag[, define_flag])
dnl Check that $CC accepts a flag 'check_flag'. If it is supported append
dnl 'define_flag' to $CFLAGS. If 'define_flag' is not specified, then append
dnl 'check_flag'.
AC_DEFUN([OSSH_CHECK_CFLAG_LINK], [{
AC_MSG_CHECKING([if $CC supports compile flag $1 and linking succeeds])
saved_CFLAGS="$CFLAGS"
CFLAGS="$CFLAGS $WERROR $1"
_define_flag="$2"
test "x$_define_flag" = "x" && _define_flag="$1"
AC_LINK_IFELSE([AC_LANG_SOURCE([[
#include <stdlib.h>
#include <stdio.h>
int main(int argc, char **argv) {
/* Some math to catch -ftrapv problems in the toolchain */
int i = 123 * argc, j = 456 + argc, k = 789 - argc;
float l = i * 2.1;
double m = l / 0.5;
long long int n = argc * 12345LL, o = 12345LL * (long long int)argc;
printf("%d %d %d %f %f %lld %lld\n", i, j, k, l, m, n, o);
exit(0);
}
]])],
[
if `grep -i "unrecognized option" conftest.err >/dev/null`
then
AC_MSG_RESULT([no])
CFLAGS="$saved_CFLAGS"
else
AC_MSG_RESULT([yes])
CFLAGS="$saved_CFLAGS $_define_flag"
fi],
[ AC_MSG_RESULT([no])
CFLAGS="$saved_CFLAGS" ]
)
}])
dnl OSSH_CHECK_LDFLAG_LINK(check_flag[, define_flag])
dnl Check that $LD accepts a flag 'check_flag'. If it is supported append
dnl 'define_flag' to $LDFLAGS. If 'define_flag' is not specified, then append
dnl 'check_flag'.
AC_DEFUN([OSSH_CHECK_LDFLAG_LINK], [{
AC_MSG_CHECKING([if $LD supports link flag $1])
saved_LDFLAGS="$LDFLAGS"
LDFLAGS="$LDFLAGS $WERROR $1"
_define_flag="$2"
test "x$_define_flag" = "x" && _define_flag="$1"
AC_LINK_IFELSE([AC_LANG_SOURCE([[
#include <stdlib.h>
#include <stdio.h>
int main(int argc, char **argv) {
/* Some math to catch -ftrapv problems in the toolchain */
int i = 123 * argc, j = 456 + argc, k = 789 - argc;
float l = i * 2.1;
double m = l / 0.5;
long long int n = argc * 12345LL, o = 12345LL * (long long int)argc;
printf("%d %d %d %f %f %lld %lld\n", i, j, k, l, m, n, o);
exit(0);
}
]])],
[ AC_MSG_RESULT([yes])
LDFLAGS="$saved_LDFLAGS $_define_flag"],
[ AC_MSG_RESULT([no])
LDFLAGS="$saved_LDFLAGS" ]
)
}])
dnl OSSH_CHECK_HEADER_FOR_FIELD(field, header, symbol)
dnl Does AC_EGREP_HEADER on 'header' for the string 'field'

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@ -1,4 +1,4 @@
/* $OpenBSD: addrmatch.c,v 1.7 2013/05/17 00:13:13 djm Exp $ */
/* $OpenBSD: addrmatch.c,v 1.9 2014/01/19 11:21:51 dtucker Exp $ */
/*
* Copyright (c) 2004-2008 Damien Miller <djm@mindrot.org>
@ -88,13 +88,13 @@ addr_sa_to_xaddr(struct sockaddr *sa, socklen_t slen, struct xaddr *xa)
switch (sa->sa_family) {
case AF_INET:
if (slen < sizeof(*in4))
if (slen < (socklen_t)sizeof(*in4))
return -1;
xa->af = AF_INET;
memcpy(&xa->v4, &in4->sin_addr, sizeof(xa->v4));
break;
case AF_INET6:
if (slen < sizeof(*in6))
if (slen < (socklen_t)sizeof(*in6))
return -1;
xa->af = AF_INET6;
memcpy(&xa->v6, &in6->sin6_addr, sizeof(xa->v6));

View File

@ -56,8 +56,10 @@ atomicio6(ssize_t (*f) (int, void *, size_t), int fd, void *_s, size_t n,
ssize_t res;
struct pollfd pfd;
#ifndef BROKEN_READ_COMPARISON
pfd.fd = fd;
pfd.events = f == read ? POLLIN : POLLOUT;
#endif
while (n > pos) {
res = (f) (fd, s + pos, n - pos);
switch (res) {
@ -65,7 +67,9 @@ atomicio6(ssize_t (*f) (int, void *, size_t), int fd, void *_s, size_t n,
if (errno == EINTR)
continue;
if (errno == EAGAIN || errno == EWOULDBLOCK) {
#ifndef BROKEN_READ_COMPARISON
(void)poll(&pfd, 1, -1);
#endif
continue;
}
return 0;

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@ -157,7 +157,8 @@ auth_krb5_password(Authctxt *authctxt, const char *password)
if (problem)
goto out;
if (!krb5_kuserok(authctxt->krb5_ctx, authctxt->krb5_user, client)) {
if (!krb5_kuserok(authctxt->krb5_ctx, authctxt->krb5_user,
authctxt->pw->pw_name)) {
problem = -1;
goto out;
}

View File

@ -1,4 +1,4 @@
/* $OpenBSD: auth-options.c,v 1.61 2013/11/08 00:39:14 djm Exp $ */
/* $OpenBSD: auth-options.c,v 1.62 2013/12/19 00:27:57 djm Exp $ */
/*
* Author: Tatu Ylonen <ylo@cs.hut.fi>
* Copyright (c) 1995 Tatu Ylonen <ylo@cs.hut.fi>, Espoo, Finland
@ -33,10 +33,6 @@
#include "auth-options.h"
#include "hostfile.h"
#include "auth.h"
#ifdef GSSAPI
#include "ssh-gss.h"
#endif
#include "monitor_wrap.h"
/* Flags set authorized_keys flags */
int no_port_forwarding_flag = 0;
@ -436,7 +432,7 @@ parse_option_list(u_char *optblob, size_t optblob_len, struct passwd *pw,
u_char *data_blob = NULL;
u_int nlen, dlen, clen;
Buffer c, data;
int ret = -1, found;
int ret = -1, result, found;
buffer_init(&data);
@ -505,11 +501,12 @@ parse_option_list(u_char *optblob, size_t optblob_len, struct passwd *pw,
goto out;
}
remote_ip = get_remote_ipaddr();
switch (addr_match_cidr_list(remote_ip,
allowed)) {
result = addr_match_cidr_list(remote_ip,
allowed);
free(allowed);
switch (result) {
case 1:
/* accepted */
free(allowed);
break;
case 0:
/* no match */
@ -522,12 +519,11 @@ parse_option_list(u_char *optblob, size_t optblob_len, struct passwd *pw,
"is not permitted to use this "
"certificate for login.",
remote_ip);
free(allowed);
goto out;
case -1:
default:
error("Certificate source-address "
"contents invalid");
free(allowed);
goto out;
}
found = 1;

View File

@ -438,8 +438,10 @@ sshpam_thread(void *ctxtp)
const char **ptr_pam_user = &pam_user;
char *tz = getenv("TZ");
pam_get_item(sshpam_handle, PAM_USER,
sshpam_err = pam_get_item(sshpam_handle, PAM_USER,
(sshpam_const void **)ptr_pam_user);
if (sshpam_err != PAM_SUCCESS)
goto auth_fail;
environ[0] = NULL;
if (tz != NULL)

View File

@ -1,4 +1,4 @@
/* $OpenBSD: auth2-hostbased.c,v 1.16 2013/06/21 00:34:49 djm Exp $ */
/* $OpenBSD: auth2-hostbased.c,v 1.17 2013/12/30 23:52:27 djm Exp $ */
/*
* Copyright (c) 2000 Markus Friedl. All rights reserved.
*
@ -100,6 +100,12 @@ userauth_hostbased(Authctxt *authctxt)
"(received %d, expected %d)", key->type, pktype);
goto done;
}
if (key_type_plain(key->type) == KEY_RSA &&
(datafellows & SSH_BUG_RSASIGMD5) != 0) {
error("Refusing RSA key because peer uses unsafe "
"signature format");
goto done;
}
service = datafellows & SSH_BUG_HBSERVICE ? "ssh-userauth" :
authctxt->service;
buffer_init(&b);

View File

@ -1,4 +1,4 @@
/* $OpenBSD: auth2-pubkey.c,v 1.38 2013/06/21 00:34:49 djm Exp $ */
/* $OpenBSD: auth2-pubkey.c,v 1.39 2013/12/30 23:52:27 djm Exp $ */
/*
* Copyright (c) 2000 Markus Friedl. All rights reserved.
*
@ -116,6 +116,12 @@ userauth_pubkey(Authctxt *authctxt)
"(received %d, expected %d)", key->type, pktype);
goto done;
}
if (key_type_plain(key->type) == KEY_RSA &&
(datafellows & SSH_BUG_RSASIGMD5) != 0) {
logit("Refusing RSA key because client uses unsafe "
"signature scheme");
goto done;
}
if (have_sig) {
sig = packet_get_string(&slen);
packet_check_eom();

View File

@ -1,4 +1,4 @@
/* $OpenBSD: authfd.c,v 1.88 2013/11/08 00:39:14 djm Exp $ */
/* $OpenBSD: authfd.c,v 1.91 2013/12/29 04:29:25 djm Exp $ */
/*
* Author: Tatu Ylonen <ylo@cs.hut.fi>
* Copyright (c) 1995 Tatu Ylonen <ylo@cs.hut.fi>, Espoo, Finland
@ -42,8 +42,8 @@
#include <sys/socket.h>
#include <openssl/evp.h>
#include <openssl/crypto.h>
#include <fcntl.h>
#include <stdlib.h>
#include <signal.h>
@ -474,58 +474,7 @@ ssh_encode_identity_rsa1(Buffer *b, RSA *key, const char *comment)
static void
ssh_encode_identity_ssh2(Buffer *b, Key *key, const char *comment)
{
buffer_put_cstring(b, key_ssh_name(key));
switch (key->type) {
case KEY_RSA:
buffer_put_bignum2(b, key->rsa->n);
buffer_put_bignum2(b, key->rsa->e);
buffer_put_bignum2(b, key->rsa->d);
buffer_put_bignum2(b, key->rsa->iqmp);
buffer_put_bignum2(b, key->rsa->p);
buffer_put_bignum2(b, key->rsa->q);
break;
case KEY_RSA_CERT_V00:
case KEY_RSA_CERT:
if (key->cert == NULL || buffer_len(&key->cert->certblob) == 0)
fatal("%s: no cert/certblob", __func__);
buffer_put_string(b, buffer_ptr(&key->cert->certblob),
buffer_len(&key->cert->certblob));
buffer_put_bignum2(b, key->rsa->d);
buffer_put_bignum2(b, key->rsa->iqmp);
buffer_put_bignum2(b, key->rsa->p);
buffer_put_bignum2(b, key->rsa->q);
break;
case KEY_DSA:
buffer_put_bignum2(b, key->dsa->p);
buffer_put_bignum2(b, key->dsa->q);
buffer_put_bignum2(b, key->dsa->g);
buffer_put_bignum2(b, key->dsa->pub_key);
buffer_put_bignum2(b, key->dsa->priv_key);
break;
case KEY_DSA_CERT_V00:
case KEY_DSA_CERT:
if (key->cert == NULL || buffer_len(&key->cert->certblob) == 0)
fatal("%s: no cert/certblob", __func__);
buffer_put_string(b, buffer_ptr(&key->cert->certblob),
buffer_len(&key->cert->certblob));
buffer_put_bignum2(b, key->dsa->priv_key);
break;
#ifdef OPENSSL_HAS_ECC
case KEY_ECDSA:
buffer_put_cstring(b, key_curve_nid_to_name(key->ecdsa_nid));
buffer_put_ecpoint(b, EC_KEY_get0_group(key->ecdsa),
EC_KEY_get0_public_key(key->ecdsa));
buffer_put_bignum2(b, EC_KEY_get0_private_key(key->ecdsa));
break;
case KEY_ECDSA_CERT:
if (key->cert == NULL || buffer_len(&key->cert->certblob) == 0)
fatal("%s: no cert/certblob", __func__);
buffer_put_string(b, buffer_ptr(&key->cert->certblob),
buffer_len(&key->cert->certblob));
buffer_put_bignum2(b, EC_KEY_get0_private_key(key->ecdsa));
break;
#endif
}
key_private_serialize(key, b);
buffer_put_cstring(b, comment);
}
@ -559,6 +508,8 @@ ssh_add_identity_constrained(AuthenticationConnection *auth, Key *key,
case KEY_DSA_CERT_V00:
case KEY_ECDSA:
case KEY_ECDSA_CERT:
case KEY_ED25519:
case KEY_ED25519_CERT:
type = constrained ?
SSH2_AGENTC_ADD_ID_CONSTRAINED :
SSH2_AGENTC_ADD_IDENTITY;
@ -606,9 +557,7 @@ ssh_remove_identity(AuthenticationConnection *auth, Key *key)
buffer_put_int(&msg, BN_num_bits(key->rsa->n));
buffer_put_bignum(&msg, key->rsa->e);
buffer_put_bignum(&msg, key->rsa->n);
} else if (key_type_plain(key->type) == KEY_DSA ||
key_type_plain(key->type) == KEY_RSA ||
key_type_plain(key->type) == KEY_ECDSA) {
} else if (key->type != KEY_UNSPEC) {
key_to_blob(key, &blob, &blen);
buffer_put_char(&msg, SSH2_AGENTC_REMOVE_IDENTITY);
buffer_put_string(&msg, blob, blen);

View File

@ -1,4 +1,4 @@
/* $OpenBSD: authfile.c,v 1.97 2013/05/17 00:13:13 djm Exp $ */
/* $OpenBSD: authfile.c,v 1.101 2013/12/29 04:35:50 djm Exp $ */
/*
* Author: Tatu Ylonen <ylo@cs.hut.fi>
* Copyright (c) 1995 Tatu Ylonen <ylo@cs.hut.fi>, Espoo, Finland
@ -13,7 +13,7 @@
* called by a name other than "ssh" or "Secure Shell".
*
*
* Copyright (c) 2000 Markus Friedl. All rights reserved.
* Copyright (c) 2000, 2013 Markus Friedl. All rights reserved.
*
* Redistribution and use in source and binary forms, with or without
* modification, are permitted provided that the following conditions
@ -50,6 +50,8 @@
/* compatibility with old or broken OpenSSL versions */
#include "openbsd-compat/openssl-compat.h"
#include "crypto_api.h"
#include <errno.h>
#include <fcntl.h>
#include <stdarg.h>
@ -58,6 +60,10 @@
#include <string.h>
#include <unistd.h>
#ifdef HAVE_UTIL_H
#include <util.h>
#endif
#include "xmalloc.h"
#include "cipher.h"
#include "buffer.h"
@ -68,6 +74,16 @@
#include "rsa.h"
#include "misc.h"
#include "atomicio.h"
#include "uuencode.h"
/* openssh private key file format */
#define MARK_BEGIN "-----BEGIN OPENSSH PRIVATE KEY-----\n"
#define MARK_END "-----END OPENSSH PRIVATE KEY-----\n"
#define KDFNAME "bcrypt"
#define AUTH_MAGIC "openssh-key-v1"
#define SALT_LEN 16
#define DEFAULT_CIPHERNAME "aes256-cbc"
#define DEFAULT_ROUNDS 16
#define MAX_KEY_FILE_SIZE (1024 * 1024)
@ -75,6 +91,333 @@
static const char authfile_id_string[] =
"SSH PRIVATE KEY FILE FORMAT 1.1\n";
static int
key_private_to_blob2(Key *prv, Buffer *blob, const char *passphrase,
const char *comment, const char *ciphername, int rounds)
{
u_char *key, *cp, salt[SALT_LEN];
size_t keylen, ivlen, blocksize, authlen;
u_int len, check;
int i, n;
const Cipher *c;
Buffer encoded, b, kdf;
CipherContext ctx;
const char *kdfname = KDFNAME;
if (rounds <= 0)
rounds = DEFAULT_ROUNDS;
if (passphrase == NULL || !strlen(passphrase)) {
ciphername = "none";
kdfname = "none";
} else if (ciphername == NULL)
ciphername = DEFAULT_CIPHERNAME;
else if (cipher_number(ciphername) != SSH_CIPHER_SSH2)
fatal("invalid cipher");
if ((c = cipher_by_name(ciphername)) == NULL)
fatal("unknown cipher name");
buffer_init(&kdf);
blocksize = cipher_blocksize(c);
keylen = cipher_keylen(c);
ivlen = cipher_ivlen(c);
authlen = cipher_authlen(c);
key = xcalloc(1, keylen + ivlen);
if (strcmp(kdfname, "none") != 0) {
arc4random_buf(salt, SALT_LEN);
if (bcrypt_pbkdf(passphrase, strlen(passphrase),
salt, SALT_LEN, key, keylen + ivlen, rounds) < 0)
fatal("bcrypt_pbkdf failed");
buffer_put_string(&kdf, salt, SALT_LEN);
buffer_put_int(&kdf, rounds);
}
cipher_init(&ctx, c, key, keylen, key + keylen , ivlen, 1);
memset(key, 0, keylen + ivlen);
free(key);
buffer_init(&encoded);
buffer_append(&encoded, AUTH_MAGIC, sizeof(AUTH_MAGIC));
buffer_put_cstring(&encoded, ciphername);
buffer_put_cstring(&encoded, kdfname);
buffer_put_string(&encoded, buffer_ptr(&kdf), buffer_len(&kdf));
buffer_put_int(&encoded, 1); /* number of keys */
key_to_blob(prv, &cp, &len); /* public key */
buffer_put_string(&encoded, cp, len);
memset(cp, 0, len);
free(cp);
buffer_free(&kdf);
/* set up the buffer that will be encrypted */
buffer_init(&b);
/* Random check bytes */
check = arc4random();
buffer_put_int(&b, check);
buffer_put_int(&b, check);
/* append private key and comment*/
key_private_serialize(prv, &b);
buffer_put_cstring(&b, comment);
/* padding */
i = 0;
while (buffer_len(&b) % blocksize)
buffer_put_char(&b, ++i & 0xff);
/* length */
buffer_put_int(&encoded, buffer_len(&b));
/* encrypt */
cp = buffer_append_space(&encoded, buffer_len(&b) + authlen);
if (cipher_crypt(&ctx, 0, cp, buffer_ptr(&b), buffer_len(&b), 0,
authlen) != 0)
fatal("%s: cipher_crypt failed", __func__);
buffer_free(&b);
cipher_cleanup(&ctx);
/* uuencode */
len = 2 * buffer_len(&encoded);
cp = xmalloc(len);
n = uuencode(buffer_ptr(&encoded), buffer_len(&encoded),
(char *)cp, len);
if (n < 0)
fatal("%s: uuencode", __func__);
buffer_clear(blob);
buffer_append(blob, MARK_BEGIN, sizeof(MARK_BEGIN) - 1);
for (i = 0; i < n; i++) {
buffer_put_char(blob, cp[i]);
if (i % 70 == 69)
buffer_put_char(blob, '\n');
}
if (i % 70 != 69)
buffer_put_char(blob, '\n');
buffer_append(blob, MARK_END, sizeof(MARK_END) - 1);
free(cp);
return buffer_len(blob);
}
static Key *
key_parse_private2(Buffer *blob, int type, const char *passphrase,
char **commentp)
{
u_char *key = NULL, *cp, *salt = NULL, pad, last;
char *comment = NULL, *ciphername = NULL, *kdfname = NULL, *kdfp;
u_int keylen = 0, ivlen, blocksize, slen, klen, len, rounds, nkeys;
u_int check1, check2, m1len, m2len;
size_t authlen;
const Cipher *c;
Buffer b, encoded, copy, kdf;
CipherContext ctx;
Key *k = NULL;
int dlen, ret, i;
buffer_init(&b);
buffer_init(&kdf);
buffer_init(&encoded);
buffer_init(&copy);
/* uudecode */
m1len = sizeof(MARK_BEGIN) - 1;
m2len = sizeof(MARK_END) - 1;
cp = buffer_ptr(blob);
len = buffer_len(blob);
if (len < m1len || memcmp(cp, MARK_BEGIN, m1len)) {
debug("%s: missing begin marker", __func__);
goto out;
}
cp += m1len;
len -= m1len;
while (len) {
if (*cp != '\n' && *cp != '\r')
buffer_put_char(&encoded, *cp);
last = *cp;
len--;
cp++;
if (last == '\n') {
if (len >= m2len && !memcmp(cp, MARK_END, m2len)) {
buffer_put_char(&encoded, '\0');
break;
}
}
}
if (!len) {
debug("%s: no end marker", __func__);
goto out;
}
len = buffer_len(&encoded);
if ((cp = buffer_append_space(&copy, len)) == NULL) {
error("%s: buffer_append_space", __func__);
goto out;
}
if ((dlen = uudecode(buffer_ptr(&encoded), cp, len)) < 0) {
error("%s: uudecode failed", __func__);
goto out;
}
if ((u_int)dlen > len) {
error("%s: crazy uudecode length %d > %u", __func__, dlen, len);
goto out;
}
buffer_consume_end(&copy, len - dlen);
if (buffer_len(&copy) < sizeof(AUTH_MAGIC) ||
memcmp(buffer_ptr(&copy), AUTH_MAGIC, sizeof(AUTH_MAGIC))) {
error("%s: bad magic", __func__);
goto out;
}
buffer_consume(&copy, sizeof(AUTH_MAGIC));
ciphername = buffer_get_cstring_ret(&copy, NULL);
if (ciphername == NULL ||
(c = cipher_by_name(ciphername)) == NULL) {
error("%s: unknown cipher name", __func__);
goto out;
}
if ((passphrase == NULL || !strlen(passphrase)) &&
strcmp(ciphername, "none") != 0) {
/* passphrase required */
goto out;
}
kdfname = buffer_get_cstring_ret(&copy, NULL);
if (kdfname == NULL ||
(!strcmp(kdfname, "none") && !strcmp(kdfname, "bcrypt"))) {
error("%s: unknown kdf name", __func__);
goto out;
}
if (!strcmp(kdfname, "none") && strcmp(ciphername, "none") != 0) {
error("%s: cipher %s requires kdf", __func__, ciphername);
goto out;
}
/* kdf options */
kdfp = buffer_get_string_ptr_ret(&copy, &klen);
if (kdfp == NULL) {
error("%s: kdf options not set", __func__);
goto out;
}
if (klen > 0) {
if ((cp = buffer_append_space(&kdf, klen)) == NULL) {
error("%s: kdf alloc failed", __func__);
goto out;
}
memcpy(cp, kdfp, klen);
}
/* number of keys */
if (buffer_get_int_ret(&nkeys, &copy) < 0) {
error("%s: key counter missing", __func__);
goto out;
}
if (nkeys != 1) {
error("%s: only one key supported", __func__);
goto out;
}
/* pubkey */
if ((cp = buffer_get_string_ret(&copy, &len)) == NULL) {
error("%s: pubkey not found", __func__);
goto out;
}
free(cp); /* XXX check pubkey against decrypted private key */
/* size of encrypted key blob */
len = buffer_get_int(&copy);
blocksize = cipher_blocksize(c);
authlen = cipher_authlen(c);
if (len < blocksize) {
error("%s: encrypted data too small", __func__);
goto out;
}
if (len % blocksize) {
error("%s: length not multiple of blocksize", __func__);
goto out;
}
/* setup key */
keylen = cipher_keylen(c);
ivlen = cipher_ivlen(c);
key = xcalloc(1, keylen + ivlen);
if (!strcmp(kdfname, "bcrypt")) {
if ((salt = buffer_get_string_ret(&kdf, &slen)) == NULL) {
error("%s: salt not set", __func__);
goto out;
}
if (buffer_get_int_ret(&rounds, &kdf) < 0) {
error("%s: rounds not set", __func__);
goto out;
}
if (bcrypt_pbkdf(passphrase, strlen(passphrase), salt, slen,
key, keylen + ivlen, rounds) < 0) {
error("%s: bcrypt_pbkdf failed", __func__);
goto out;
}
}
cp = buffer_append_space(&b, len);
cipher_init(&ctx, c, key, keylen, key + keylen, ivlen, 0);
ret = cipher_crypt(&ctx, 0, cp, buffer_ptr(&copy), len, 0, authlen);
cipher_cleanup(&ctx);
buffer_consume(&copy, len);
/* fail silently on decryption errors */
if (ret != 0) {
debug("%s: decrypt failed", __func__);
goto out;
}
if (buffer_len(&copy) != 0) {
error("%s: key blob has trailing data (len = %u)", __func__,
buffer_len(&copy));
goto out;
}
/* check bytes */
if (buffer_get_int_ret(&check1, &b) < 0 ||
buffer_get_int_ret(&check2, &b) < 0) {
error("check bytes missing");
goto out;
}
if (check1 != check2) {
debug("%s: decrypt failed: 0x%08x != 0x%08x", __func__,
check1, check2);
goto out;
}
k = key_private_deserialize(&b);
/* comment */
comment = buffer_get_cstring_ret(&b, NULL);
i = 0;
while (buffer_len(&b)) {
if (buffer_get_char_ret(&pad, &b) == -1 ||
pad != (++i & 0xff)) {
error("%s: bad padding", __func__);
key_free(k);
k = NULL;
goto out;
}
}
if (k && commentp) {
*commentp = comment;
comment = NULL;
}
/* XXX decode pubkey and check against private */
out:
free(ciphername);
free(kdfname);
free(salt);
free(comment);
if (key)
memset(key, 0, keylen + ivlen);
free(key);
buffer_free(&encoded);
buffer_free(&copy);
buffer_free(&kdf);
buffer_free(&b);
return k;
}
/*
* Serialises the authentication (private) key to a blob, encrypting it with
* passphrase. The identification of the blob (lowest 64 bits of n) will
@ -149,8 +492,9 @@ key_private_rsa1_to_blob(Key *key, Buffer *blob, const char *passphrase,
cipher_set_key_string(&ciphercontext, cipher, passphrase,
CIPHER_ENCRYPT);
cipher_crypt(&ciphercontext, cp,
buffer_ptr(&buffer), buffer_len(&buffer), 0, 0);
if (cipher_crypt(&ciphercontext, 0, cp,
buffer_ptr(&buffer), buffer_len(&buffer), 0, 0) != 0)
fatal("%s: cipher_crypt failed", __func__);
cipher_cleanup(&ciphercontext);
memset(&ciphercontext, 0, sizeof(ciphercontext));
@ -239,7 +583,8 @@ key_save_private_blob(Buffer *keybuf, const char *filename)
/* Serialise "key" to buffer "blob" */
static int
key_private_to_blob(Key *key, Buffer *blob, const char *passphrase,
const char *comment)
const char *comment, int force_new_format, const char *new_format_cipher,
int new_format_rounds)
{
switch (key->type) {
case KEY_RSA1:
@ -247,7 +592,14 @@ key_private_to_blob(Key *key, Buffer *blob, const char *passphrase,
case KEY_DSA:
case KEY_ECDSA:
case KEY_RSA:
if (force_new_format) {
return key_private_to_blob2(key, blob, passphrase,
comment, new_format_cipher, new_format_rounds);
}
return key_private_pem_to_blob(key, blob, passphrase, comment);
case KEY_ED25519:
return key_private_to_blob2(key, blob, passphrase,
comment, new_format_cipher, new_format_rounds);
default:
error("%s: cannot save key type %d", __func__, key->type);
return 0;
@ -256,13 +608,15 @@ key_private_to_blob(Key *key, Buffer *blob, const char *passphrase,
int
key_save_private(Key *key, const char *filename, const char *passphrase,
const char *comment)
const char *comment, int force_new_format, const char *new_format_cipher,
int new_format_rounds)
{
Buffer keyblob;
int success = 0;
buffer_init(&keyblob);
if (!key_private_to_blob(key, &keyblob, passphrase, comment))
if (!key_private_to_blob(key, &keyblob, passphrase, comment,
force_new_format, new_format_cipher, new_format_rounds))
goto out;
if (!key_save_private_blob(&keyblob, filename))
goto out;
@ -473,8 +827,9 @@ key_parse_private_rsa1(Buffer *blob, const char *passphrase, char **commentp)
/* Rest of the buffer is encrypted. Decrypt it using the passphrase. */
cipher_set_key_string(&ciphercontext, cipher, passphrase,
CIPHER_DECRYPT);
cipher_crypt(&ciphercontext, cp,
buffer_ptr(&copy), buffer_len(&copy), 0, 0);
if (cipher_crypt(&ciphercontext, 0, cp,
buffer_ptr(&copy), buffer_len(&copy), 0, 0) != 0)
fatal("%s: cipher_crypt failed", __func__);
cipher_cleanup(&ciphercontext);
memset(&ciphercontext, 0, sizeof(ciphercontext));
buffer_free(&copy);
@ -641,13 +996,20 @@ static Key *
key_parse_private_type(Buffer *blob, int type, const char *passphrase,
char **commentp)
{
Key *k;
switch (type) {
case KEY_RSA1:
return key_parse_private_rsa1(blob, passphrase, commentp);
case KEY_DSA:
case KEY_ECDSA:
case KEY_RSA:
return key_parse_private_pem(blob, type, passphrase, commentp);
case KEY_ED25519:
return key_parse_private2(blob, type, passphrase, commentp);
case KEY_UNSPEC:
if ((k = key_parse_private2(blob, type, passphrase, commentp)))
return k;
return key_parse_private_pem(blob, type, passphrase, commentp);
default:
error("%s: cannot parse key type %d", __func__, type);
@ -851,6 +1213,7 @@ key_load_private_cert(int type, const char *filename, const char *passphrase,
case KEY_RSA:
case KEY_DSA:
case KEY_ECDSA:
case KEY_ED25519:
break;
default:
error("%s: unsupported key type", __func__);
@ -943,4 +1306,3 @@ key_in_file(Key *key, const char *filename, int strict_type)
fclose(f);
return ret;
}

View File

@ -1,4 +1,4 @@
/* $OpenBSD: authfile.h,v 1.16 2011/05/04 21:15:29 djm Exp $ */
/* $OpenBSD: authfile.h,v 1.17 2013/12/06 13:34:54 markus Exp $ */
/*
* Author: Tatu Ylonen <ylo@cs.hut.fi>
@ -15,7 +15,8 @@
#ifndef AUTHFILE_H
#define AUTHFILE_H
int key_save_private(Key *, const char *, const char *, const char *);
int key_save_private(Key *, const char *, const char *, const char *,
int, const char *, int);
int key_load_file(int, const char *, Buffer *);
Key *key_load_cert(const char *);
Key *key_load_public(const char *, char **);

248
crypto/openssh/blocks.c Normal file
View File

@ -0,0 +1,248 @@
/* $OpenBSD: blocks.c,v 1.3 2013/12/09 11:03:45 markus Exp $ */
/*
* Public Domain, Author: Daniel J. Bernstein
* Copied from nacl-20110221/crypto_hashblocks/sha512/ref/blocks.c
*/
#include "includes.h"
#include "crypto_api.h"
typedef unsigned long long uint64;
static uint64 load_bigendian(const unsigned char *x)
{
return
(uint64) (x[7]) \
| (((uint64) (x[6])) << 8) \
| (((uint64) (x[5])) << 16) \
| (((uint64) (x[4])) << 24) \
| (((uint64) (x[3])) << 32) \
| (((uint64) (x[2])) << 40) \
| (((uint64) (x[1])) << 48) \
| (((uint64) (x[0])) << 56)
;
}
static void store_bigendian(unsigned char *x,uint64 u)
{
x[7] = u; u >>= 8;
x[6] = u; u >>= 8;
x[5] = u; u >>= 8;
x[4] = u; u >>= 8;
x[3] = u; u >>= 8;
x[2] = u; u >>= 8;
x[1] = u; u >>= 8;
x[0] = u;
}
#define SHR(x,c) ((x) >> (c))
#define ROTR(x,c) (((x) >> (c)) | ((x) << (64 - (c))))
#define Ch(x,y,z) ((x & y) ^ (~x & z))
#define Maj(x,y,z) ((x & y) ^ (x & z) ^ (y & z))
#define Sigma0(x) (ROTR(x,28) ^ ROTR(x,34) ^ ROTR(x,39))
#define Sigma1(x) (ROTR(x,14) ^ ROTR(x,18) ^ ROTR(x,41))
#define sigma0(x) (ROTR(x, 1) ^ ROTR(x, 8) ^ SHR(x,7))
#define sigma1(x) (ROTR(x,19) ^ ROTR(x,61) ^ SHR(x,6))
#define M(w0,w14,w9,w1) w0 = sigma1(w14) + w9 + sigma0(w1) + w0;
#define EXPAND \
M(w0 ,w14,w9 ,w1 ) \
M(w1 ,w15,w10,w2 ) \
M(w2 ,w0 ,w11,w3 ) \
M(w3 ,w1 ,w12,w4 ) \
M(w4 ,w2 ,w13,w5 ) \
M(w5 ,w3 ,w14,w6 ) \
M(w6 ,w4 ,w15,w7 ) \
M(w7 ,w5 ,w0 ,w8 ) \
M(w8 ,w6 ,w1 ,w9 ) \
M(w9 ,w7 ,w2 ,w10) \
M(w10,w8 ,w3 ,w11) \
M(w11,w9 ,w4 ,w12) \
M(w12,w10,w5 ,w13) \
M(w13,w11,w6 ,w14) \
M(w14,w12,w7 ,w15) \
M(w15,w13,w8 ,w0 )
#define F(w,k) \
T1 = h + Sigma1(e) + Ch(e,f,g) + k + w; \
T2 = Sigma0(a) + Maj(a,b,c); \
h = g; \
g = f; \
f = e; \
e = d + T1; \
d = c; \
c = b; \
b = a; \
a = T1 + T2;
int crypto_hashblocks_sha512(unsigned char *statebytes,const unsigned char *in,unsigned long long inlen)
{
uint64 state[8];
uint64 a;
uint64 b;
uint64 c;
uint64 d;
uint64 e;
uint64 f;
uint64 g;
uint64 h;
uint64 T1;
uint64 T2;
a = load_bigendian(statebytes + 0); state[0] = a;
b = load_bigendian(statebytes + 8); state[1] = b;
c = load_bigendian(statebytes + 16); state[2] = c;
d = load_bigendian(statebytes + 24); state[3] = d;
e = load_bigendian(statebytes + 32); state[4] = e;
f = load_bigendian(statebytes + 40); state[5] = f;
g = load_bigendian(statebytes + 48); state[6] = g;
h = load_bigendian(statebytes + 56); state[7] = h;
while (inlen >= 128) {
uint64 w0 = load_bigendian(in + 0);
uint64 w1 = load_bigendian(in + 8);
uint64 w2 = load_bigendian(in + 16);
uint64 w3 = load_bigendian(in + 24);
uint64 w4 = load_bigendian(in + 32);
uint64 w5 = load_bigendian(in + 40);
uint64 w6 = load_bigendian(in + 48);
uint64 w7 = load_bigendian(in + 56);
uint64 w8 = load_bigendian(in + 64);
uint64 w9 = load_bigendian(in + 72);
uint64 w10 = load_bigendian(in + 80);
uint64 w11 = load_bigendian(in + 88);
uint64 w12 = load_bigendian(in + 96);
uint64 w13 = load_bigendian(in + 104);
uint64 w14 = load_bigendian(in + 112);
uint64 w15 = load_bigendian(in + 120);
F(w0 ,0x428a2f98d728ae22ULL)
F(w1 ,0x7137449123ef65cdULL)
F(w2 ,0xb5c0fbcfec4d3b2fULL)
F(w3 ,0xe9b5dba58189dbbcULL)
F(w4 ,0x3956c25bf348b538ULL)
F(w5 ,0x59f111f1b605d019ULL)
F(w6 ,0x923f82a4af194f9bULL)
F(w7 ,0xab1c5ed5da6d8118ULL)
F(w8 ,0xd807aa98a3030242ULL)
F(w9 ,0x12835b0145706fbeULL)
F(w10,0x243185be4ee4b28cULL)
F(w11,0x550c7dc3d5ffb4e2ULL)
F(w12,0x72be5d74f27b896fULL)
F(w13,0x80deb1fe3b1696b1ULL)
F(w14,0x9bdc06a725c71235ULL)
F(w15,0xc19bf174cf692694ULL)
EXPAND
F(w0 ,0xe49b69c19ef14ad2ULL)
F(w1 ,0xefbe4786384f25e3ULL)
F(w2 ,0x0fc19dc68b8cd5b5ULL)
F(w3 ,0x240ca1cc77ac9c65ULL)
F(w4 ,0x2de92c6f592b0275ULL)
F(w5 ,0x4a7484aa6ea6e483ULL)
F(w6 ,0x5cb0a9dcbd41fbd4ULL)
F(w7 ,0x76f988da831153b5ULL)
F(w8 ,0x983e5152ee66dfabULL)
F(w9 ,0xa831c66d2db43210ULL)
F(w10,0xb00327c898fb213fULL)
F(w11,0xbf597fc7beef0ee4ULL)
F(w12,0xc6e00bf33da88fc2ULL)
F(w13,0xd5a79147930aa725ULL)
F(w14,0x06ca6351e003826fULL)
F(w15,0x142929670a0e6e70ULL)
EXPAND
F(w0 ,0x27b70a8546d22ffcULL)
F(w1 ,0x2e1b21385c26c926ULL)
F(w2 ,0x4d2c6dfc5ac42aedULL)
F(w3 ,0x53380d139d95b3dfULL)
F(w4 ,0x650a73548baf63deULL)
F(w5 ,0x766a0abb3c77b2a8ULL)
F(w6 ,0x81c2c92e47edaee6ULL)
F(w7 ,0x92722c851482353bULL)
F(w8 ,0xa2bfe8a14cf10364ULL)
F(w9 ,0xa81a664bbc423001ULL)
F(w10,0xc24b8b70d0f89791ULL)
F(w11,0xc76c51a30654be30ULL)
F(w12,0xd192e819d6ef5218ULL)
F(w13,0xd69906245565a910ULL)
F(w14,0xf40e35855771202aULL)
F(w15,0x106aa07032bbd1b8ULL)
EXPAND
F(w0 ,0x19a4c116b8d2d0c8ULL)
F(w1 ,0x1e376c085141ab53ULL)
F(w2 ,0x2748774cdf8eeb99ULL)
F(w3 ,0x34b0bcb5e19b48a8ULL)
F(w4 ,0x391c0cb3c5c95a63ULL)
F(w5 ,0x4ed8aa4ae3418acbULL)
F(w6 ,0x5b9cca4f7763e373ULL)
F(w7 ,0x682e6ff3d6b2b8a3ULL)
F(w8 ,0x748f82ee5defb2fcULL)
F(w9 ,0x78a5636f43172f60ULL)
F(w10,0x84c87814a1f0ab72ULL)
F(w11,0x8cc702081a6439ecULL)
F(w12,0x90befffa23631e28ULL)
F(w13,0xa4506cebde82bde9ULL)
F(w14,0xbef9a3f7b2c67915ULL)
F(w15,0xc67178f2e372532bULL)
EXPAND
F(w0 ,0xca273eceea26619cULL)
F(w1 ,0xd186b8c721c0c207ULL)
F(w2 ,0xeada7dd6cde0eb1eULL)
F(w3 ,0xf57d4f7fee6ed178ULL)
F(w4 ,0x06f067aa72176fbaULL)
F(w5 ,0x0a637dc5a2c898a6ULL)
F(w6 ,0x113f9804bef90daeULL)
F(w7 ,0x1b710b35131c471bULL)
F(w8 ,0x28db77f523047d84ULL)
F(w9 ,0x32caab7b40c72493ULL)
F(w10,0x3c9ebe0a15c9bebcULL)
F(w11,0x431d67c49c100d4cULL)
F(w12,0x4cc5d4becb3e42b6ULL)
F(w13,0x597f299cfc657e2aULL)
F(w14,0x5fcb6fab3ad6faecULL)
F(w15,0x6c44198c4a475817ULL)
a += state[0];
b += state[1];
c += state[2];
d += state[3];
e += state[4];
f += state[5];
g += state[6];
h += state[7];
state[0] = a;
state[1] = b;
state[2] = c;
state[3] = d;
state[4] = e;
state[5] = f;
state[6] = g;
state[7] = h;
in += 128;
inlen -= 128;
}
store_bigendian(statebytes + 0,state[0]);
store_bigendian(statebytes + 8,state[1]);
store_bigendian(statebytes + 16,state[2]);
store_bigendian(statebytes + 24,state[3]);
store_bigendian(statebytes + 32,state[4]);
store_bigendian(statebytes + 40,state[5]);
store_bigendian(statebytes + 48,state[6]);
store_bigendian(statebytes + 56,state[7]);
return inlen;
}

View File

@ -1,4 +1,4 @@
/* $OpenBSD: bufaux.c,v 1.52 2013/07/12 00:19:58 djm Exp $ */
/* $OpenBSD: bufaux.c,v 1.54 2014/01/12 08:13:13 djm Exp $ */
/*
* Author: Tatu Ylonen <ylo@cs.hut.fi>
* Copyright (c) 1995 Tatu Ylonen <ylo@cs.hut.fi>, Espoo, Finland
@ -45,6 +45,7 @@
#include <string.h>
#include <stdarg.h>
#include <stdlib.h>
#include "xmalloc.h"
#include "buffer.h"
@ -314,3 +315,76 @@ buffer_put_char(Buffer *buffer, int value)
buffer_append(buffer, &ch, 1);
}
/* Pseudo bignum functions */
void *
buffer_get_bignum2_as_string_ret(Buffer *buffer, u_int *length_ptr)
{
u_int len;
u_char *bin, *p, *ret;
if ((p = bin = buffer_get_string_ret(buffer, &len)) == NULL) {
error("%s: invalid bignum", __func__);
return NULL;
}
if (len > 0 && (bin[0] & 0x80)) {
error("%s: negative numbers not supported", __func__);
free(bin);
return NULL;
}
if (len > 8 * 1024) {
error("%s: cannot handle BN of size %d", __func__, len);
free(bin);
return NULL;
}
/* Skip zero prefix on numbers with the MSB set */
if (len > 1 && bin[0] == 0x00 && (bin[1] & 0x80) != 0) {
p++;
len--;
}
ret = xmalloc(len);
memcpy(ret, p, len);
memset(p, '\0', len);
free(bin);
return ret;
}
void *
buffer_get_bignum2_as_string(Buffer *buffer, u_int *l)
{
void *ret = buffer_get_bignum2_as_string_ret(buffer, l);
if (ret == NULL)
fatal("%s: buffer error", __func__);
return ret;
}
/*
* Stores a string using the bignum encoding rules (\0 pad if MSB set).
*/
void
buffer_put_bignum2_from_string(Buffer *buffer, const u_char *s, u_int l)
{
u_char *buf, *p;
int pad = 0;
if (l > 8 * 1024)
fatal("%s: length %u too long", __func__, l);
p = buf = xmalloc(l + 1);
/*
* If most significant bit is set then prepend a zero byte to
* avoid interpretation as a negative number.
*/
if (l > 0 && (s[0] & 0x80) != 0) {
*p++ = '\0';
pad = 1;
}
memcpy(p, s, l);
buffer_put_string(buffer, buf, l + pad);
memset(buf, '\0', l + pad);
free(buf);
}

View File

@ -1,4 +1,4 @@
/* $OpenBSD: bufbn.c,v 1.7 2013/05/17 00:13:13 djm Exp $*/
/* $OpenBSD: bufbn.c,v 1.8 2013/11/08 11:15:19 dtucker Exp $*/
/*
* Author: Tatu Ylonen <ylo@cs.hut.fi>
* Copyright (c) 1995 Tatu Ylonen <ylo@cs.hut.fi>, Espoo, Finland
@ -45,6 +45,7 @@
#include <string.h>
#include <stdarg.h>
#include <stdlib.h>
#include "xmalloc.h"
#include "buffer.h"

View File

@ -1,4 +1,4 @@
/* $OpenBSD: buffer.c,v 1.33 2013/05/17 00:13:13 djm Exp $ */
/* $OpenBSD: buffer.c,v 1.34 2013/11/08 11:15:19 dtucker Exp $ */
/* $FreeBSD$ */
/*
* Author: Tatu Ylonen <ylo@cs.hut.fi>
@ -20,6 +20,7 @@
#include <stdio.h>
#include <string.h>
#include <stdarg.h>
#include <stdlib.h>
#include "xmalloc.h"
#include "buffer.h"

View File

@ -1,4 +1,4 @@
/* $OpenBSD: buffer.h,v 1.22 2013/07/12 00:19:58 djm Exp $ */
/* $OpenBSD: buffer.h,v 1.23 2014/01/12 08:13:13 djm Exp $ */
/* $FreeBSD$ */
/*
@ -89,6 +89,10 @@ char *buffer_get_cstring_ret(Buffer *, u_int *);
void *buffer_get_string_ptr_ret(Buffer *, u_int *);
int buffer_get_char_ret(u_char *, Buffer *);
void *buffer_get_bignum2_as_string_ret(Buffer *, u_int *);
void *buffer_get_bignum2_as_string(Buffer *, u_int *);
void buffer_put_bignum2_from_string(Buffer *, const u_char *, u_int);
#ifdef OPENSSL_HAS_ECC
#include <openssl/ec.h>

View File

@ -1,4 +1,4 @@
/* $OpenBSD: canohost.c,v 1.67 2013/05/17 00:13:13 djm Exp $ */
/* $OpenBSD: canohost.c,v 1.70 2014/01/19 04:17:29 dtucker Exp $ */
/*
* Author: Tatu Ylonen <ylo@cs.hut.fi>
* Copyright (c) 1995 Tatu Ylonen <ylo@cs.hut.fi>, Espoo, Finland
@ -20,7 +20,6 @@
#include <netinet/in.h>
#include <arpa/inet.h>
#include <ctype.h>
#include <errno.h>
#include <netdb.h>
#include <stdio.h>
@ -48,7 +47,6 @@ static char *
get_remote_hostname(int sock, int use_dns)
{
struct sockaddr_storage from;
int i;
socklen_t fromlen;
struct addrinfo hints, *ai, *aitop;
char name[NI_MAXHOST], ntop[NI_MAXHOST], ntop2[NI_MAXHOST];
@ -99,13 +97,9 @@ get_remote_hostname(int sock, int use_dns)
return xstrdup(ntop);
}
/*
* Convert it to all lowercase (which is expected by the rest
* of this software).
*/
for (i = 0; name[i]; i++)
if (isupper(name[i]))
name[i] = (char)tolower(name[i]);
/* Names are stores in lowercase. */
lowercase(name);
/*
* Map it back to an IP address and check that the given
* address actually is an address of this host. This is
@ -160,8 +154,7 @@ check_ip_options(int sock, char *ipaddr)
#ifdef IP_OPTIONS
u_char options[200];
char text[sizeof(options) * 3 + 1];
socklen_t option_size;
u_int i;
socklen_t option_size, i;
int ipproto;
struct protoent *ip;

219
crypto/openssh/chacha.c Normal file
View File

@ -0,0 +1,219 @@
/*
chacha-merged.c version 20080118
D. J. Bernstein
Public domain.
*/
#include "includes.h"
#include "chacha.h"
/* $OpenBSD: chacha.c,v 1.1 2013/11/21 00:45:44 djm Exp $ */
typedef unsigned char u8;
typedef unsigned int u32;
typedef struct chacha_ctx chacha_ctx;
#define U8C(v) (v##U)
#define U32C(v) (v##U)
#define U8V(v) ((u8)(v) & U8C(0xFF))
#define U32V(v) ((u32)(v) & U32C(0xFFFFFFFF))
#define ROTL32(v, n) \
(U32V((v) << (n)) | ((v) >> (32 - (n))))
#define U8TO32_LITTLE(p) \
(((u32)((p)[0]) ) | \
((u32)((p)[1]) << 8) | \
((u32)((p)[2]) << 16) | \
((u32)((p)[3]) << 24))
#define U32TO8_LITTLE(p, v) \
do { \
(p)[0] = U8V((v) ); \
(p)[1] = U8V((v) >> 8); \
(p)[2] = U8V((v) >> 16); \
(p)[3] = U8V((v) >> 24); \
} while (0)
#define ROTATE(v,c) (ROTL32(v,c))
#define XOR(v,w) ((v) ^ (w))
#define PLUS(v,w) (U32V((v) + (w)))
#define PLUSONE(v) (PLUS((v),1))
#define QUARTERROUND(a,b,c,d) \
a = PLUS(a,b); d = ROTATE(XOR(d,a),16); \
c = PLUS(c,d); b = ROTATE(XOR(b,c),12); \
a = PLUS(a,b); d = ROTATE(XOR(d,a), 8); \
c = PLUS(c,d); b = ROTATE(XOR(b,c), 7);
static const char sigma[16] = "expand 32-byte k";
static const char tau[16] = "expand 16-byte k";
void
chacha_keysetup(chacha_ctx *x,const u8 *k,u32 kbits)
{
const char *constants;
x->input[4] = U8TO32_LITTLE(k + 0);
x->input[5] = U8TO32_LITTLE(k + 4);
x->input[6] = U8TO32_LITTLE(k + 8);
x->input[7] = U8TO32_LITTLE(k + 12);
if (kbits == 256) { /* recommended */
k += 16;
constants = sigma;
} else { /* kbits == 128 */
constants = tau;
}
x->input[8] = U8TO32_LITTLE(k + 0);
x->input[9] = U8TO32_LITTLE(k + 4);
x->input[10] = U8TO32_LITTLE(k + 8);
x->input[11] = U8TO32_LITTLE(k + 12);
x->input[0] = U8TO32_LITTLE(constants + 0);
x->input[1] = U8TO32_LITTLE(constants + 4);
x->input[2] = U8TO32_LITTLE(constants + 8);
x->input[3] = U8TO32_LITTLE(constants + 12);
}
void
chacha_ivsetup(chacha_ctx *x, const u8 *iv, const u8 *counter)
{
x->input[12] = counter == NULL ? 0 : U8TO32_LITTLE(counter + 0);
x->input[13] = counter == NULL ? 0 : U8TO32_LITTLE(counter + 4);
x->input[14] = U8TO32_LITTLE(iv + 0);
x->input[15] = U8TO32_LITTLE(iv + 4);
}
void
chacha_encrypt_bytes(chacha_ctx *x,const u8 *m,u8 *c,u32 bytes)
{
u32 x0, x1, x2, x3, x4, x5, x6, x7, x8, x9, x10, x11, x12, x13, x14, x15;
u32 j0, j1, j2, j3, j4, j5, j6, j7, j8, j9, j10, j11, j12, j13, j14, j15;
u8 *ctarget = NULL;
u8 tmp[64];
u_int i;
if (!bytes) return;
j0 = x->input[0];
j1 = x->input[1];
j2 = x->input[2];
j3 = x->input[3];
j4 = x->input[4];
j5 = x->input[5];
j6 = x->input[6];
j7 = x->input[7];
j8 = x->input[8];
j9 = x->input[9];
j10 = x->input[10];
j11 = x->input[11];
j12 = x->input[12];
j13 = x->input[13];
j14 = x->input[14];
j15 = x->input[15];
for (;;) {
if (bytes < 64) {
for (i = 0;i < bytes;++i) tmp[i] = m[i];
m = tmp;
ctarget = c;
c = tmp;
}
x0 = j0;
x1 = j1;
x2 = j2;
x3 = j3;
x4 = j4;
x5 = j5;
x6 = j6;
x7 = j7;
x8 = j8;
x9 = j9;
x10 = j10;
x11 = j11;
x12 = j12;
x13 = j13;
x14 = j14;
x15 = j15;
for (i = 20;i > 0;i -= 2) {
QUARTERROUND( x0, x4, x8,x12)
QUARTERROUND( x1, x5, x9,x13)
QUARTERROUND( x2, x6,x10,x14)
QUARTERROUND( x3, x7,x11,x15)
QUARTERROUND( x0, x5,x10,x15)
QUARTERROUND( x1, x6,x11,x12)
QUARTERROUND( x2, x7, x8,x13)
QUARTERROUND( x3, x4, x9,x14)
}
x0 = PLUS(x0,j0);
x1 = PLUS(x1,j1);
x2 = PLUS(x2,j2);
x3 = PLUS(x3,j3);
x4 = PLUS(x4,j4);
x5 = PLUS(x5,j5);
x6 = PLUS(x6,j6);
x7 = PLUS(x7,j7);
x8 = PLUS(x8,j8);
x9 = PLUS(x9,j9);
x10 = PLUS(x10,j10);
x11 = PLUS(x11,j11);
x12 = PLUS(x12,j12);
x13 = PLUS(x13,j13);
x14 = PLUS(x14,j14);
x15 = PLUS(x15,j15);
x0 = XOR(x0,U8TO32_LITTLE(m + 0));
x1 = XOR(x1,U8TO32_LITTLE(m + 4));
x2 = XOR(x2,U8TO32_LITTLE(m + 8));
x3 = XOR(x3,U8TO32_LITTLE(m + 12));
x4 = XOR(x4,U8TO32_LITTLE(m + 16));
x5 = XOR(x5,U8TO32_LITTLE(m + 20));
x6 = XOR(x6,U8TO32_LITTLE(m + 24));
x7 = XOR(x7,U8TO32_LITTLE(m + 28));
x8 = XOR(x8,U8TO32_LITTLE(m + 32));
x9 = XOR(x9,U8TO32_LITTLE(m + 36));
x10 = XOR(x10,U8TO32_LITTLE(m + 40));
x11 = XOR(x11,U8TO32_LITTLE(m + 44));
x12 = XOR(x12,U8TO32_LITTLE(m + 48));
x13 = XOR(x13,U8TO32_LITTLE(m + 52));
x14 = XOR(x14,U8TO32_LITTLE(m + 56));
x15 = XOR(x15,U8TO32_LITTLE(m + 60));
j12 = PLUSONE(j12);
if (!j12) {
j13 = PLUSONE(j13);
/* stopping at 2^70 bytes per nonce is user's responsibility */
}
U32TO8_LITTLE(c + 0,x0);
U32TO8_LITTLE(c + 4,x1);
U32TO8_LITTLE(c + 8,x2);
U32TO8_LITTLE(c + 12,x3);
U32TO8_LITTLE(c + 16,x4);
U32TO8_LITTLE(c + 20,x5);
U32TO8_LITTLE(c + 24,x6);
U32TO8_LITTLE(c + 28,x7);
U32TO8_LITTLE(c + 32,x8);
U32TO8_LITTLE(c + 36,x9);
U32TO8_LITTLE(c + 40,x10);
U32TO8_LITTLE(c + 44,x11);
U32TO8_LITTLE(c + 48,x12);
U32TO8_LITTLE(c + 52,x13);
U32TO8_LITTLE(c + 56,x14);
U32TO8_LITTLE(c + 60,x15);
if (bytes <= 64) {
if (bytes < 64) {
for (i = 0;i < bytes;++i) ctarget[i] = c[i];
}
x->input[12] = j12;
x->input[13] = j13;
return;
}
bytes -= 64;
c += 64;
m += 64;
}
}

35
crypto/openssh/chacha.h Normal file
View File

@ -0,0 +1,35 @@
/* $OpenBSD: chacha.h,v 1.1 2013/11/21 00:45:44 djm Exp $ */
/*
chacha-merged.c version 20080118
D. J. Bernstein
Public domain.
*/
#ifndef CHACHA_H
#define CHACHA_H
#include <sys/types.h>
struct chacha_ctx {
u_int input[16];
};
#define CHACHA_MINKEYLEN 16
#define CHACHA_NONCELEN 8
#define CHACHA_CTRLEN 8
#define CHACHA_STATELEN (CHACHA_NONCELEN+CHACHA_CTRLEN)
#define CHACHA_BLOCKLEN 64
void chacha_keysetup(struct chacha_ctx *x, const u_char *k, u_int kbits)
__attribute__((__bounded__(__minbytes__, 2, CHACHA_MINKEYLEN)));
void chacha_ivsetup(struct chacha_ctx *x, const u_char *iv, const u_char *ctr)
__attribute__((__bounded__(__minbytes__, 2, CHACHA_NONCELEN)))
__attribute__((__bounded__(__minbytes__, 3, CHACHA_CTRLEN)));
void chacha_encrypt_bytes(struct chacha_ctx *x, const u_char *m,
u_char *c, u_int bytes)
__attribute__((__bounded__(__buffer__, 2, 4)))
__attribute__((__bounded__(__buffer__, 3, 4)));
#endif /* CHACHA_H */

View File

@ -1,4 +1,4 @@
/* $OpenBSD: channels.c,v 1.327 2013/11/08 00:39:15 djm Exp $ */
/* $OpenBSD: channels.c,v 1.328 2013/12/19 01:04:36 djm Exp $ */
/* $FreeBSD$ */
/*
* Author: Tatu Ylonen <ylo@cs.hut.fi>
@ -1427,6 +1427,8 @@ port_open_helper(Channel *c, char *rtype)
{
int direct;
char buf[1024];
char *local_ipaddr = get_local_ipaddr(c->sock);
int local_port = get_sock_port(c->sock, 1);
char *remote_ipaddr = get_peer_ipaddr(c->sock);
int remote_port = get_peer_port(c->sock);
@ -1441,9 +1443,9 @@ port_open_helper(Channel *c, char *rtype)
snprintf(buf, sizeof buf,
"%s: listening port %d for %.100s port %d, "
"connect from %.200s port %d",
"connect from %.200s port %d to %.100s port %d",
rtype, c->listening_port, c->path, c->host_port,
remote_ipaddr, remote_port);
remote_ipaddr, remote_port, local_ipaddr, local_port);
free(c->remote_name);
c->remote_name = xstrdup(buf);
@ -1461,7 +1463,7 @@ port_open_helper(Channel *c, char *rtype)
} else {
/* listen address, port */
packet_put_cstring(c->path);
packet_put_int(c->listening_port);
packet_put_int(local_port);
}
/* originator host and port */
packet_put_cstring(remote_ipaddr);
@ -1478,6 +1480,7 @@ port_open_helper(Channel *c, char *rtype)
packet_send();
}
free(remote_ipaddr);
free(local_ipaddr);
}
static void
@ -2771,8 +2774,20 @@ channel_fwd_bind_addr(const char *listen_addr, int *wildcardp,
if (((datafellows & SSH_OLD_FORWARD_ADDR) &&
strcmp(listen_addr, "0.0.0.0") == 0 && is_client == 0) ||
*listen_addr == '\0' || strcmp(listen_addr, "*") == 0 ||
(!is_client && gateway_ports == 1))
(!is_client && gateway_ports == 1)) {
wildcard = 1;
/*
* Notify client if they requested a specific listen
* address and it was overridden.
*/
if (*listen_addr != '\0' &&
strcmp(listen_addr, "0.0.0.0") != 0 &&
strcmp(listen_addr, "*") != 0) {
packet_send_debug("Forwarding listen address "
"\"%s\" overridden by server "
"GatewayPorts", listen_addr);
}
}
else if (strcmp(listen_addr, "localhost") != 0)
addr = listen_addr;
}

View File

@ -0,0 +1,114 @@
/*
* Copyright (c) 2013 Damien Miller <djm@mindrot.org>
*
* Permission to use, copy, modify, and distribute this software for any
* purpose with or without fee is hereby granted, provided that the above
* copyright notice and this permission notice appear in all copies.
*
* THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES
* WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF
* MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR
* ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES
* WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN
* ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF
* OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE.
*/
/* $OpenBSD: cipher-chachapoly.c,v 1.3 2013/12/15 21:42:35 djm Exp $ */
#include "includes.h"
#include <sys/types.h>
#include <stdarg.h> /* needed for log.h */
#include <string.h>
#include <stdio.h> /* needed for misc.h */
#include "log.h"
#include "misc.h"
#include "cipher-chachapoly.h"
void chachapoly_init(struct chachapoly_ctx *ctx,
const u_char *key, u_int keylen)
{
if (keylen != (32 + 32)) /* 2 x 256 bit keys */
fatal("%s: invalid keylen %u", __func__, keylen);
chacha_keysetup(&ctx->main_ctx, key, 256);
chacha_keysetup(&ctx->header_ctx, key + 32, 256);
}
/*
* chachapoly_crypt() operates as following:
* En/decrypt with header key 'aadlen' bytes from 'src', storing result
* to 'dest'. The ciphertext here is treated as additional authenticated
* data for MAC calculation.
* En/decrypt 'len' bytes at offset 'aadlen' from 'src' to 'dest'. Use
* POLY1305_TAGLEN bytes at offset 'len'+'aadlen' as the authentication
* tag. This tag is written on encryption and verified on decryption.
*/
int
chachapoly_crypt(struct chachapoly_ctx *ctx, u_int seqnr, u_char *dest,
const u_char *src, u_int len, u_int aadlen, u_int authlen, int do_encrypt)
{
u_char seqbuf[8];
const u_char one[8] = { 1, 0, 0, 0, 0, 0, 0, 0 }; /* NB little-endian */
u_char expected_tag[POLY1305_TAGLEN], poly_key[POLY1305_KEYLEN];
int r = -1;
/*
* Run ChaCha20 once to generate the Poly1305 key. The IV is the
* packet sequence number.
*/
bzero(poly_key, sizeof(poly_key));
put_u64(seqbuf, seqnr);
chacha_ivsetup(&ctx->main_ctx, seqbuf, NULL);
chacha_encrypt_bytes(&ctx->main_ctx,
poly_key, poly_key, sizeof(poly_key));
/* Set Chacha's block counter to 1 */
chacha_ivsetup(&ctx->main_ctx, seqbuf, one);
/* If decrypting, check tag before anything else */
if (!do_encrypt) {
const u_char *tag = src + aadlen + len;
poly1305_auth(expected_tag, src, aadlen + len, poly_key);
if (timingsafe_bcmp(expected_tag, tag, POLY1305_TAGLEN) != 0)
goto out;
}
/* Crypt additional data */
if (aadlen) {
chacha_ivsetup(&ctx->header_ctx, seqbuf, NULL);
chacha_encrypt_bytes(&ctx->header_ctx, src, dest, aadlen);
}
chacha_encrypt_bytes(&ctx->main_ctx, src + aadlen,
dest + aadlen, len);
/* If encrypting, calculate and append tag */
if (do_encrypt) {
poly1305_auth(dest + aadlen + len, dest, aadlen + len,
poly_key);
}
r = 0;
out:
bzero(expected_tag, sizeof(expected_tag));
bzero(seqbuf, sizeof(seqbuf));
bzero(poly_key, sizeof(poly_key));
return r;
}
/* Decrypt and extract the encrypted packet length */
int
chachapoly_get_length(struct chachapoly_ctx *ctx,
u_int *plenp, u_int seqnr, const u_char *cp, u_int len)
{
u_char buf[4], seqbuf[8];
if (len < 4)
return -1; /* Insufficient length */
put_u64(seqbuf, seqnr);
chacha_ivsetup(&ctx->header_ctx, seqbuf, NULL);
chacha_encrypt_bytes(&ctx->header_ctx, cp, buf, 4);
*plenp = get_u32(buf);
return 0;
}

View File

@ -0,0 +1,41 @@
/* $OpenBSD: cipher-chachapoly.h,v 1.1 2013/11/21 00:45:44 djm Exp $ */
/*
* Copyright (c) Damien Miller 2013 <djm@mindrot.org>
*
* Permission to use, copy, modify, and distribute this software for any
* purpose with or without fee is hereby granted, provided that the above
* copyright notice and this permission notice appear in all copies.
*
* THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES
* WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF
* MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR
* ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES
* WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN
* ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF
* OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE.
*/
#ifndef CHACHA_POLY_AEAD_H
#define CHACHA_POLY_AEAD_H
#include <sys/types.h>
#include "chacha.h"
#include "poly1305.h"
#define CHACHA_KEYLEN 32 /* Only 256 bit keys used here */
struct chachapoly_ctx {
struct chacha_ctx main_ctx, header_ctx;
};
void chachapoly_init(struct chachapoly_ctx *cpctx,
const u_char *key, u_int keylen)
__attribute__((__bounded__(__buffer__, 2, 3)));
int chachapoly_crypt(struct chachapoly_ctx *cpctx, u_int seqnr,
u_char *dest, const u_char *src, u_int len, u_int aadlen, u_int authlen,
int do_encrypt);
int chachapoly_get_length(struct chachapoly_ctx *cpctx,
u_int *plenp, u_int seqnr, const u_char *cp, u_int len)
__attribute__((__bounded__(__buffer__, 4, 5)));
#endif /* CHACHA_POLY_AEAD_H */

View File

@ -1,4 +1,4 @@
/* $OpenBSD: cipher.c,v 1.89 2013/05/17 00:13:13 djm Exp $ */
/* $OpenBSD: cipher.c,v 1.94 2014/01/25 10:12:50 dtucker Exp $ */
/* $FreeBSD$ */
/*
* Author: Tatu Ylonen <ylo@cs.hut.fi>
@ -44,9 +44,11 @@
#include <string.h>
#include <stdarg.h>
#include <stdio.h>
#include "xmalloc.h"
#include "log.h"
#include "misc.h"
#include "cipher.h"
/* compatibility with old or broken OpenSSL versions */
@ -64,7 +66,9 @@ struct Cipher {
u_int iv_len; /* defaults to block_size */
u_int auth_len;
u_int discard_len;
u_int cbc_mode;
u_int flags;
#define CFLAG_CBC (1<<0)
#define CFLAG_CHACHAPOLY (1<<1)
const EVP_CIPHER *(*evptype)(void);
};
@ -96,14 +100,16 @@ static const struct Cipher ciphers[] = {
{ "aes256-gcm@openssh.com",
SSH_CIPHER_SSH2, 16, 32, 12, 16, 0, 0, EVP_aes_256_gcm },
#endif
{ "chacha20-poly1305@openssh.com",
SSH_CIPHER_SSH2, 8, 64, 0, 16, 0, CFLAG_CHACHAPOLY, NULL },
{ NULL, SSH_CIPHER_INVALID, 0, 0, 0, 0, 0, 0, NULL }
};
/*--*/
/* Returns a comma-separated list of supported ciphers. */
/* Returns a list of supported ciphers separated by the specified char. */
char *
cipher_alg_list(void)
cipher_alg_list(char sep, int auth_only)
{
char *ret = NULL;
size_t nlen, rlen = 0;
@ -112,8 +118,10 @@ cipher_alg_list(void)
for (c = ciphers; c->name != NULL; c++) {
if (c->number != SSH_CIPHER_SSH2)
continue;
if (auth_only && c->auth_len == 0)
continue;
if (ret != NULL)
ret[rlen++] = '\n';
ret[rlen++] = sep;
nlen = strlen(c->name);
ret = xrealloc(ret, 1, rlen + nlen + 2);
memcpy(ret + rlen, c->name, nlen + 1);
@ -134,6 +142,14 @@ cipher_keylen(const Cipher *c)
return (c->key_len);
}
u_int
cipher_seclen(const Cipher *c)
{
if (strcmp("3des-cbc", c->name) == 0)
return 14;
return cipher_keylen(c);
}
u_int
cipher_authlen(const Cipher *c)
{
@ -143,7 +159,12 @@ cipher_authlen(const Cipher *c)
u_int
cipher_ivlen(const Cipher *c)
{
return (c->iv_len ? c->iv_len : c->block_size);
/*
* Default is cipher block size, except for chacha20+poly1305 that
* needs no IV. XXX make iv_len == -1 default?
*/
return (c->iv_len != 0 || (c->flags & CFLAG_CHACHAPOLY) != 0) ?
c->iv_len : c->block_size;
}
u_int
@ -155,7 +176,7 @@ cipher_get_number(const Cipher *c)
u_int
cipher_is_cbc(const Cipher *c)
{
return (c->cbc_mode);
return (c->flags & CFLAG_CBC) != 0;
}
u_int
@ -280,8 +301,11 @@ cipher_init(CipherContext *cc, const Cipher *cipher,
ivlen, cipher->name);
cc->cipher = cipher;
if ((cc->cipher->flags & CFLAG_CHACHAPOLY) != 0) {
chachapoly_init(&cc->cp_ctx, key, keylen);
return;
}
type = (*cipher->evptype)();
EVP_CIPHER_CTX_init(&cc->evp);
#ifdef SSH_OLD_EVP
if (type->key_len > 0 && type->key_len != keylen) {
@ -334,11 +358,16 @@ cipher_init(CipherContext *cc, const Cipher *cipher,
* Use 'authlen' bytes at offset 'len'+'aadlen' as the authentication tag.
* This tag is written on encryption and verified on decryption.
* Both 'aadlen' and 'authlen' can be set to 0.
* cipher_crypt() returns 0 on success and -1 if the decryption integrity
* check fails.
*/
void
cipher_crypt(CipherContext *cc, u_char *dest, const u_char *src,
int
cipher_crypt(CipherContext *cc, u_int seqnr, u_char *dest, const u_char *src,
u_int len, u_int aadlen, u_int authlen)
{
if ((cc->cipher->flags & CFLAG_CHACHAPOLY) != 0)
return chachapoly_crypt(&cc->cp_ctx, seqnr, dest, src, len,
aadlen, authlen, cc->encrypt);
if (authlen) {
u_char lastiv[1];
@ -371,19 +400,36 @@ cipher_crypt(CipherContext *cc, u_char *dest, const u_char *src,
if (cc->encrypt)
fatal("%s: EVP_Cipher(final) failed", __func__);
else
fatal("Decryption integrity check failed");
return -1;
}
if (cc->encrypt &&
!EVP_CIPHER_CTX_ctrl(&cc->evp, EVP_CTRL_GCM_GET_TAG,
authlen, dest + aadlen + len))
fatal("%s: EVP_CTRL_GCM_GET_TAG", __func__);
}
return 0;
}
/* Extract the packet length, including any decryption necessary beforehand */
int
cipher_get_length(CipherContext *cc, u_int *plenp, u_int seqnr,
const u_char *cp, u_int len)
{
if ((cc->cipher->flags & CFLAG_CHACHAPOLY) != 0)
return chachapoly_get_length(&cc->cp_ctx, plenp, seqnr,
cp, len);
if (len < 4)
return -1;
*plenp = get_u32(cp);
return 0;
}
void
cipher_cleanup(CipherContext *cc)
{
if (EVP_CIPHER_CTX_cleanup(&cc->evp) == 0)
if ((cc->cipher->flags & CFLAG_CHACHAPOLY) != 0)
memset(&cc->cp_ctx, 0, sizeof(cc->cp_ctx));
else if (EVP_CIPHER_CTX_cleanup(&cc->evp) == 0)
error("cipher_cleanup: EVP_CIPHER_CTX_cleanup failed");
}
@ -423,6 +469,8 @@ cipher_get_keyiv_len(const CipherContext *cc)
if (c->number == SSH_CIPHER_3DES)
ivlen = 24;
else if ((cc->cipher->flags & CFLAG_CHACHAPOLY) != 0)
ivlen = 0;
else
ivlen = EVP_CIPHER_CTX_iv_length(&cc->evp);
return (ivlen);
@ -434,6 +482,12 @@ cipher_get_keyiv(CipherContext *cc, u_char *iv, u_int len)
const Cipher *c = cc->cipher;
int evplen;
if ((cc->cipher->flags & CFLAG_CHACHAPOLY) != 0) {
if (len != 0)
fatal("%s: wrong iv length %d != %d", __func__, len, 0);
return;
}
switch (c->number) {
#ifdef NONE_CIPHER_ENABLED
case SSH_CIPHER_NONE:
@ -473,6 +527,9 @@ cipher_set_keyiv(CipherContext *cc, u_char *iv)
const Cipher *c = cc->cipher;
int evplen = 0;
if ((cc->cipher->flags & CFLAG_CHACHAPOLY) != 0)
return;
switch (c->number) {
#ifdef NONE_CIPHER_ENABLED
case SSH_CIPHER_NONE:

View File

@ -1,4 +1,4 @@
/* $OpenBSD: cipher.h,v 1.40 2013/04/19 01:06:50 djm Exp $ */
/* $OpenBSD: cipher.h,v 1.44 2014/01/25 10:12:50 dtucker Exp $ */
/*
* Author: Tatu Ylonen <ylo@cs.hut.fi>
@ -38,6 +38,8 @@
#define CIPHER_H
#include <openssl/evp.h>
#include "cipher-chachapoly.h"
/*
* Cipher types for SSH-1. New types can be added, but old types should not
* be removed for compatibility. The maximum allowed value is 31.
@ -66,6 +68,7 @@ struct CipherContext {
int plaintext;
int encrypt;
EVP_CIPHER_CTX evp;
struct chachapoly_ctx cp_ctx; /* XXX union with evp? */
const Cipher *cipher;
};
@ -75,15 +78,18 @@ const Cipher *cipher_by_number(int);
int cipher_number(const char *);
char *cipher_name(int);
int ciphers_valid(const char *);
char *cipher_alg_list(void);
char *cipher_alg_list(char, int);
void cipher_init(CipherContext *, const Cipher *, const u_char *, u_int,
const u_char *, u_int, int);
void cipher_crypt(CipherContext *, u_char *, const u_char *,
int cipher_crypt(CipherContext *, u_int, u_char *, const u_char *,
u_int, u_int, u_int);
int cipher_get_length(CipherContext *, u_int *, u_int,
const u_char *, u_int);
void cipher_cleanup(CipherContext *);
void cipher_set_key_string(CipherContext *, const Cipher *, const char *, int);
u_int cipher_blocksize(const Cipher *);
u_int cipher_keylen(const Cipher *);
u_int cipher_seclen(const Cipher *);
u_int cipher_authlen(const Cipher *);
u_int cipher_ivlen(const Cipher *);
u_int cipher_is_cbc(const Cipher *);

View File

@ -1,4 +1,4 @@
/* $OpenBSD: clientloop.c,v 1.255 2013/11/08 00:39:15 djm Exp $ */
/* $OpenBSD: clientloop.c,v 1.256 2013/11/20 20:54:10 deraadt Exp $ */
/* $FreeBSD$ */
/*
* Author: Tatu Ylonen <ylo@cs.hut.fi>
@ -290,7 +290,7 @@ client_x11_display_valid(const char *display)
dlen = strlen(display);
for (i = 0; i < dlen; i++) {
if (!isalnum(display[i]) &&
if (!isalnum((u_char)display[i]) &&
strchr(SSH_X11_VALID_DISPLAY_CHARS, display[i]) == NULL) {
debug("Invalid character '%c' in DISPLAY", display[i]);
return 0;
@ -885,7 +885,7 @@ process_cmdline(void)
cmd = s = read_passphrase("\r\nssh> ", RP_ECHO);
if (s == NULL)
goto out;
while (isspace(*s))
while (isspace((u_char)*s))
s++;
if (*s == '-')
s++; /* Skip cmdline '-', if any */
@ -939,7 +939,7 @@ process_cmdline(void)
goto out;
}
while (isspace(*++s))
while (isspace((u_char)*++s))
;
/* XXX update list of forwards in options */
@ -1154,7 +1154,7 @@ process_escapes(Channel *c, Buffer *bin, Buffer *bout, Buffer *berr,
"%cB\r\n", escape_char);
buffer_append(berr, string,
strlen(string));
channel_request_start(session_ident,
channel_request_start(c->self,
"break", 0);
packet_put_int(1000);
packet_send();

View File

@ -1,4 +1,4 @@
/* $OpenBSD: compat.c,v 1.81 2013/05/17 00:13:13 djm Exp $ */
/* $OpenBSD: compat.c,v 1.82 2013/12/30 23:52:27 djm Exp $ */
/* $FreeBSD$ */
/*
* Copyright (c) 1999, 2000, 2001, 2002 Markus Friedl. All rights reserved.
@ -172,8 +172,9 @@ compat_datafellows(const char *version)
for (i = 0; check[i].pat; i++) {
if (match_pattern_list(version, check[i].pat,
strlen(check[i].pat), 0) == 1) {
debug("match: %s pat %s", version, check[i].pat);
datafellows = check[i].bugs;
debug("match: %s pat %s compat 0x%08x",
version, check[i].pat, datafellows);
/*
* Check to see if the remote side is OpenSSH and not
* HPN. It is utterly strange to check it from the
@ -219,33 +220,59 @@ proto_spec(const char *spec)
return ret;
}
char *
compat_cipher_proposal(char *cipher_prop)
/*
* Filters a proposal string, excluding any algorithm matching the 'filter'
* pattern list.
*/
static char *
filter_proposal(char *proposal, const char *filter)
{
Buffer b;
char *orig_prop, *fix_ciphers;
char *orig_prop, *fix_prop;
char *cp, *tmp;
if (!(datafellows & SSH_BUG_BIGENDIANAES))
return(cipher_prop);
buffer_init(&b);
tmp = orig_prop = xstrdup(cipher_prop);
tmp = orig_prop = xstrdup(proposal);
while ((cp = strsep(&tmp, ",")) != NULL) {
if (strncmp(cp, "aes", 3) != 0) {
if (match_pattern_list(cp, filter, strlen(cp), 0) != 1) {
if (buffer_len(&b) > 0)
buffer_append(&b, ",", 1);
buffer_append(&b, cp, strlen(cp));
}
} else
debug2("Compat: skipping algorithm \"%s\"", cp);
}
buffer_append(&b, "\0", 1);
fix_ciphers = xstrdup(buffer_ptr(&b));
fix_prop = xstrdup(buffer_ptr(&b));
buffer_free(&b);
free(orig_prop);
debug2("Original cipher proposal: %s", cipher_prop);
debug2("Compat cipher proposal: %s", fix_ciphers);
if (!*fix_ciphers)
fatal("No available ciphers found.");
return(fix_ciphers);
return fix_prop;
}
char *
compat_cipher_proposal(char *cipher_prop)
{
if (!(datafellows & SSH_BUG_BIGENDIANAES))
return cipher_prop;
debug2("%s: original cipher proposal: %s", __func__, cipher_prop);
cipher_prop = filter_proposal(cipher_prop, "aes*");
debug2("%s: compat cipher proposal: %s", __func__, cipher_prop);
if (*cipher_prop == '\0')
fatal("No supported ciphers found");
return cipher_prop;
}
char *
compat_pkalg_proposal(char *pkalg_prop)
{
if (!(datafellows & SSH_BUG_RSASIGMD5))
return pkalg_prop;
debug2("%s: original public key proposal: %s", __func__, pkalg_prop);
pkalg_prop = filter_proposal(pkalg_prop, "ssh-rsa");
debug2("%s: compat public key proposal: %s", __func__, pkalg_prop);
if (*pkalg_prop == '\0')
fatal("No supported PK algorithms found");
return pkalg_prop;
}

View File

@ -1,4 +1,4 @@
/* $OpenBSD: compat.h,v 1.43 2011/09/23 07:45:05 markus Exp $ */
/* $OpenBSD: compat.h,v 1.44 2013/12/30 23:52:27 djm Exp $ */
/* $FreeBSD$ */
/*
@ -67,6 +67,7 @@ void enable_compat20(void);
void compat_datafellows(const char *);
int proto_spec(const char *);
char *compat_cipher_proposal(char *);
char *compat_pkalg_proposal(char *);
extern int compat13;
extern int compat20;

View File

@ -48,6 +48,10 @@
/* Can't do comparisons on readv */
/* #undef BROKEN_READV_COMPARISON */
/* NetBSD read function is sometimes redirected, breaking atomicio comparisons
against it */
/* #undef BROKEN_READ_COMPARISON */
/* Define if you have a broken realpath. */
/* #undef BROKEN_REALPATH */
@ -75,7 +79,7 @@
/* Define if your snprintf is busted */
/* #undef BROKEN_SNPRINTF */
/* FreeBSD strnvis does not do what we need */
/* FreeBSD strnvis argument order is swapped compared to OpenBSD */
#define BROKEN_STRNVIS 1
/* tcgetattr with ICANON may hang */
@ -183,6 +187,9 @@
/* Define to 1 if you have the `arc4random_buf' function. */
#define HAVE_ARC4RANDOM_BUF 1
/* Define to 1 if you have the `arc4random_stir' function. */
#define HAVE_ARC4RANDOM_STIR 1
/* Define to 1 if you have the `arc4random_uniform' function. */
#define HAVE_ARC4RANDOM_UNIFORM 1
@ -213,9 +220,30 @@
/* Define to 1 if you have the `bcopy' function. */
#define HAVE_BCOPY 1
/* Define to 1 if you have the `bcrypt_pbkdf' function. */
/* #undef HAVE_BCRYPT_PBKDF */
/* Define to 1 if you have the `bindresvport_sa' function. */
#define HAVE_BINDRESVPORT_SA 1
/* Define to 1 if you have the `blf_enc' function. */
/* #undef HAVE_BLF_ENC */
/* Define to 1 if you have the <blf.h> header file. */
/* #undef HAVE_BLF_H */
/* Define to 1 if you have the `Blowfish_expand0state' function. */
/* #undef HAVE_BLOWFISH_EXPAND0STATE */
/* Define to 1 if you have the `Blowfish_expandstate' function. */
/* #undef HAVE_BLOWFISH_EXPANDSTATE */
/* Define to 1 if you have the `Blowfish_initstate' function. */
/* #undef HAVE_BLOWFISH_INITSTATE */
/* Define to 1 if you have the `Blowfish_stream2word' function. */
/* #undef HAVE_BLOWFISH_STREAM2WORD */
/* Define to 1 if you have the `BN_is_prime_ex' function. */
#define HAVE_BN_IS_PRIME_EX 1
@ -228,6 +256,9 @@
/* Define to 1 if you have the <bstring.h> header file. */
/* #undef HAVE_BSTRING_H */
/* Define to 1 if you have the `cap_rights_limit' function. */
#define HAVE_CAP_RIGHTS_LIMIT 1
/* Define to 1 if you have the `clock' function. */
#define HAVE_CLOCK 1
@ -375,6 +406,18 @@
/* Define if libcrypto has EVP_CIPHER_CTX_ctrl */
#define HAVE_EVP_CIPHER_CTX_CTRL 1
/* Define to 1 if you have the `EVP_DigestFinal_ex' function. */
#define HAVE_EVP_DIGESTFINAL_EX 1
/* Define to 1 if you have the `EVP_DigestInit_ex' function. */
#define HAVE_EVP_DIGESTINIT_EX 1
/* Define to 1 if you have the `EVP_MD_CTX_cleanup' function. */
#define HAVE_EVP_MD_CTX_CLEANUP 1
/* Define to 1 if you have the `EVP_MD_CTX_init' function. */
#define HAVE_EVP_MD_CTX_INIT 1
/* Define to 1 if you have the `EVP_sha256' function. */
#define HAVE_EVP_SHA256 1
@ -414,6 +457,9 @@
/* Define to 1 if the system has the type `fsfilcnt_t'. */
#define HAVE_FSFILCNT_T 1
/* Define to 1 if you have the `fstatfs' function. */
#define HAVE_FSTATFS 1
/* Define to 1 if you have the `fstatvfs' function. */
#define HAVE_FSTATVFS 1
@ -585,6 +631,9 @@
/* define if you have int64_t data type */
#define HAVE_INT64_T 1
/* Define to 1 if the system has the type `intmax_t'. */
#define HAVE_INTMAX_T 1
/* Define to 1 if you have the <inttypes.h> header file. */
#define HAVE_INTTYPES_H 1
@ -1084,6 +1133,9 @@
/* Define to 1 if you have the <sys/bsdtty.h> header file. */
/* #undef HAVE_SYS_BSDTTY_H */
/* Define to 1 if you have the <sys/capability.h> header file. */
#define HAVE_SYS_CAPABILITY_H 1
/* Define to 1 if you have the <sys/cdefs.h> header file. */
#define HAVE_SYS_CDEFS_H 1
@ -1198,6 +1250,9 @@
/* Define to 1 if you have the <ucred.h> header file. */
/* #undef HAVE_UCRED_H */
/* Define to 1 if the system has the type `uintmax_t'. */
#define HAVE_UINTMAX_T 1
/* define if you have uintxx_t data type */
#define HAVE_UINTXX_T 1
@ -1386,9 +1441,18 @@
/* Define if EVP_DigestUpdate returns void */
/* #undef OPENSSL_EVP_DIGESTUPDATE_VOID */
/* libcrypto includes complete ECC support */
/* OpenSSL has ECC */
#define OPENSSL_HAS_ECC 1
/* libcrypto has NID_X9_62_prime256v1 */
#define OPENSSL_HAS_NISTP256 1
/* libcrypto has NID_secp384r1 */
#define OPENSSL_HAS_NISTP384 1
/* libcrypto has NID_secp521r1 */
#define OPENSSL_HAS_NISTP521 1
/* libcrypto has EVP AES CTR */
#define OPENSSL_HAVE_EVPCTR 1
@ -1441,6 +1505,9 @@
/* read(1) can return 0 for a non-closed fd */
/* #undef PTY_ZEROREAD */
/* Sandbox using capsicum */
#define SANDBOX_CAPSICUM 1
/* Sandbox using Darwin sandbox_init(3) */
/* #undef SANDBOX_DARWIN */
@ -1448,7 +1515,7 @@
/* #undef SANDBOX_NULL */
/* Sandbox using setrlimit(2) */
#define SANDBOX_RLIMIT 1
/* #undef SANDBOX_RLIMIT */
/* Sandbox using seccomp filter */
/* #undef SANDBOX_SECCOMP_FILTER */
@ -1456,6 +1523,9 @@
/* setrlimit RLIMIT_FSIZE works */
/* #undef SANDBOX_SKIP_RLIMIT_FSIZE */
/* define if setrlimit RLIMIT_NOFILE breaks things */
#define SANDBOX_SKIP_RLIMIT_NOFILE 1
/* Sandbox using systrace(4) */
/* #undef SANDBOX_SYSTRACE */

View File

@ -47,6 +47,10 @@
/* Can't do comparisons on readv */
#undef BROKEN_READV_COMPARISON
/* NetBSD read function is sometimes redirected, breaking atomicio comparisons
against it */
#undef BROKEN_READ_COMPARISON
/* Define if you have a broken realpath. */
#undef BROKEN_REALPATH
@ -74,7 +78,7 @@
/* Define if your snprintf is busted */
#undef BROKEN_SNPRINTF
/* FreeBSD strnvis does not do what we need */
/* FreeBSD strnvis argument order is swapped compared to OpenBSD */
#undef BROKEN_STRNVIS
/* tcgetattr with ICANON may hang */
@ -182,6 +186,9 @@
/* Define to 1 if you have the `arc4random_buf' function. */
#undef HAVE_ARC4RANDOM_BUF
/* Define to 1 if you have the `arc4random_stir' function. */
#undef HAVE_ARC4RANDOM_STIR
/* Define to 1 if you have the `arc4random_uniform' function. */
#undef HAVE_ARC4RANDOM_UNIFORM
@ -212,9 +219,30 @@
/* Define to 1 if you have the `bcopy' function. */
#undef HAVE_BCOPY
/* Define to 1 if you have the `bcrypt_pbkdf' function. */
#undef HAVE_BCRYPT_PBKDF
/* Define to 1 if you have the `bindresvport_sa' function. */
#undef HAVE_BINDRESVPORT_SA
/* Define to 1 if you have the `blf_enc' function. */
#undef HAVE_BLF_ENC
/* Define to 1 if you have the <blf.h> header file. */
#undef HAVE_BLF_H
/* Define to 1 if you have the `Blowfish_expand0state' function. */
#undef HAVE_BLOWFISH_EXPAND0STATE
/* Define to 1 if you have the `Blowfish_expandstate' function. */
#undef HAVE_BLOWFISH_EXPANDSTATE
/* Define to 1 if you have the `Blowfish_initstate' function. */
#undef HAVE_BLOWFISH_INITSTATE
/* Define to 1 if you have the `Blowfish_stream2word' function. */
#undef HAVE_BLOWFISH_STREAM2WORD
/* Define to 1 if you have the `BN_is_prime_ex' function. */
#undef HAVE_BN_IS_PRIME_EX
@ -227,6 +255,9 @@
/* Define to 1 if you have the <bstring.h> header file. */
#undef HAVE_BSTRING_H
/* Define to 1 if you have the `cap_rights_limit' function. */
#undef HAVE_CAP_RIGHTS_LIMIT
/* Define to 1 if you have the `clock' function. */
#undef HAVE_CLOCK
@ -374,6 +405,18 @@
/* Define if libcrypto has EVP_CIPHER_CTX_ctrl */
#undef HAVE_EVP_CIPHER_CTX_CTRL
/* Define to 1 if you have the `EVP_DigestFinal_ex' function. */
#undef HAVE_EVP_DIGESTFINAL_EX
/* Define to 1 if you have the `EVP_DigestInit_ex' function. */
#undef HAVE_EVP_DIGESTINIT_EX
/* Define to 1 if you have the `EVP_MD_CTX_cleanup' function. */
#undef HAVE_EVP_MD_CTX_CLEANUP
/* Define to 1 if you have the `EVP_MD_CTX_init' function. */
#undef HAVE_EVP_MD_CTX_INIT
/* Define to 1 if you have the `EVP_sha256' function. */
#undef HAVE_EVP_SHA256
@ -413,6 +456,9 @@
/* Define to 1 if the system has the type `fsfilcnt_t'. */
#undef HAVE_FSFILCNT_T
/* Define to 1 if you have the `fstatfs' function. */
#undef HAVE_FSTATFS
/* Define to 1 if you have the `fstatvfs' function. */
#undef HAVE_FSTATVFS
@ -584,6 +630,9 @@
/* define if you have int64_t data type */
#undef HAVE_INT64_T
/* Define to 1 if the system has the type `intmax_t'. */
#undef HAVE_INTMAX_T
/* Define to 1 if you have the <inttypes.h> header file. */
#undef HAVE_INTTYPES_H
@ -1083,6 +1132,9 @@
/* Define to 1 if you have the <sys/bsdtty.h> header file. */
#undef HAVE_SYS_BSDTTY_H
/* Define to 1 if you have the <sys/capability.h> header file. */
#undef HAVE_SYS_CAPABILITY_H
/* Define to 1 if you have the <sys/cdefs.h> header file. */
#undef HAVE_SYS_CDEFS_H
@ -1197,6 +1249,9 @@
/* Define to 1 if you have the <ucred.h> header file. */
#undef HAVE_UCRED_H
/* Define to 1 if the system has the type `uintmax_t'. */
#undef HAVE_UINTMAX_T
/* define if you have uintxx_t data type */
#undef HAVE_UINTXX_T
@ -1385,9 +1440,18 @@
/* Define if EVP_DigestUpdate returns void */
#undef OPENSSL_EVP_DIGESTUPDATE_VOID
/* libcrypto includes complete ECC support */
/* OpenSSL has ECC */
#undef OPENSSL_HAS_ECC
/* libcrypto has NID_X9_62_prime256v1 */
#undef OPENSSL_HAS_NISTP256
/* libcrypto has NID_secp384r1 */
#undef OPENSSL_HAS_NISTP384
/* libcrypto has NID_secp521r1 */
#undef OPENSSL_HAS_NISTP521
/* libcrypto has EVP AES CTR */
#undef OPENSSL_HAVE_EVPCTR
@ -1440,6 +1504,9 @@
/* read(1) can return 0 for a non-closed fd */
#undef PTY_ZEROREAD
/* Sandbox using capsicum */
#undef SANDBOX_CAPSICUM
/* Sandbox using Darwin sandbox_init(3) */
#undef SANDBOX_DARWIN
@ -1455,6 +1522,9 @@
/* setrlimit RLIMIT_FSIZE works */
#undef SANDBOX_SKIP_RLIMIT_FSIZE
/* define if setrlimit RLIMIT_NOFILE breaks things */
#undef SANDBOX_SKIP_RLIMIT_NOFILE
/* Sandbox using systrace(4) */
#undef SANDBOX_SYSTRACE

1008
crypto/openssh/configure vendored

File diff suppressed because it is too large Load Diff

View File

@ -1,4 +1,4 @@
# $Id: configure.ac,v 1.536 2013/08/04 11:48:41 dtucker Exp $
# $Id: configure.ac,v 1.568 2014/01/30 00:26:46 djm Exp $
#
# Copyright (c) 1999-2004 Damien Miller
#
@ -15,7 +15,7 @@
# OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE.
AC_INIT([OpenSSH], [Portable], [openssh-unix-dev@mindrot.org])
AC_REVISION($Revision: 1.536 $)
AC_REVISION($Revision: 1.568 $)
AC_CONFIG_SRCDIR([ssh.c])
AC_LANG([C])
@ -120,19 +120,36 @@ AC_CHECK_DECL([PR_SET_NO_NEW_PRIVS], [have_linux_no_new_privs=1], , [
#include <sys/types.h>
#include <linux/prctl.h>
])
use_stack_protector=1
use_toolchain_hardening=1
AC_ARG_WITH([stackprotect],
[ --without-stackprotect Don't use compiler's stack protection], [
if test "x$withval" = "xno"; then
use_stack_protector=0
fi ])
AC_ARG_WITH([hardening],
[ --without-hardening Don't use toolchain hardening flags], [
if test "x$withval" = "xno"; then
use_toolchain_hardening=0
fi ])
# We use -Werror for the tests only so that we catch warnings like "this is
# on by default" for things like -fPIE.
AC_MSG_CHECKING([if $CC supports -Werror])
saved_CFLAGS="$CFLAGS"
CFLAGS="$CFLAGS -Werror"
AC_COMPILE_IFELSE([AC_LANG_SOURCE([[int main(void) { return 0; }]])],
[ AC_MSG_RESULT([yes])
WERROR="-Werror"],
[ AC_MSG_RESULT([no])
WERROR="" ]
)
CFLAGS="$saved_CFLAGS"
if test "$GCC" = "yes" || test "$GCC" = "egcs"; then
OSSH_CHECK_CFLAG_COMPILE([-Qunused-arguments -Werror],
[-Qunused-arguments])
OSSH_CHECK_CFLAG_COMPILE([-Wunknown-warning-option -Werror],
[-Wno-unknown-warning-option])
OSSH_CHECK_CFLAG_COMPILE([-Qunused-arguments])
OSSH_CHECK_CFLAG_COMPILE([-Wunknown-warning-option])
OSSH_CHECK_CFLAG_COMPILE([-Wall])
OSSH_CHECK_CFLAG_COMPILE([-Wpointer-arith])
OSSH_CHECK_CFLAG_COMPILE([-Wuninitialized])
@ -143,6 +160,17 @@ if test "$GCC" = "yes" || test "$GCC" = "egcs"; then
OSSH_CHECK_CFLAG_COMPILE([-Wunused-result], [-Wno-unused-result])
OSSH_CHECK_CFLAG_COMPILE([-fno-strict-aliasing])
OSSH_CHECK_CFLAG_COMPILE([-D_FORTIFY_SOURCE=2])
if test "x$use_toolchain_hardening" = "x1"; then
OSSH_CHECK_LDFLAG_LINK([-Wl,-z,relro])
OSSH_CHECK_LDFLAG_LINK([-Wl,-z,now])
OSSH_CHECK_LDFLAG_LINK([-Wl,-z,noexecstack])
# NB. -ftrapv expects certain support functions to be present in
# the compiler library (libgcc or similar) to detect integer operations
# that can overflow. We must check that the result of enabling it
# actually links. The test program compiled/linked includes a number
# of integer operations that should exercise this.
OSSH_CHECK_CFLAG_LINK([-ftrapv])
fi
AC_MSG_CHECKING([gcc version])
GCC_VER=`$CC -v 2>&1 | $AWK '/gcc version /{print $3}'`
case $GCC_VER in
@ -169,7 +197,8 @@ if test "$GCC" = "yes" || test "$GCC" = "egcs"; then
# and/or platforms, so we test if we can. If it's not supported
# on a given platform gcc will emit a warning so we use -Werror.
if test "x$use_stack_protector" = "x1"; then
for t in -fstack-protector-all -fstack-protector; do
for t in -fstack-protector-strong -fstack-protector-all \
-fstack-protector; do
AC_MSG_CHECKING([if $CC supports $t])
saved_CFLAGS="$CFLAGS"
saved_LDFLAGS="$LDFLAGS"
@ -296,6 +325,7 @@ AC_ARG_WITH([Werror],
)
AC_CHECK_HEADERS([ \
blf.h \
bstring.h \
crypt.h \
crypto/sha2.h \
@ -309,6 +339,7 @@ AC_CHECK_HEADERS([ \
glob.h \
ia.h \
iaf.h \
inttypes.h \
limits.h \
locale.h \
login.h \
@ -333,6 +364,7 @@ AC_CHECK_HEADERS([ \
sys/audit.h \
sys/bitypes.h \
sys/bsdtty.h \
sys/capability.h \
sys/cdefs.h \
sys/dir.h \
sys/mman.h \
@ -513,7 +545,10 @@ case "$host" in
[Define if your platform needs to skip post auth
file descriptor passing])
AC_DEFINE([SSH_IOBUFSZ], [65535], [Windows is sensitive to read buffer size])
AC_DEFINE([FILESYSTEM_NO_BACKSLASH], [1], [File names may not contain backslash characters])
AC_DEFINE([FILESYSTEM_NO_BACKSLASH], [1], [File names may not contain backslash characters])
# Cygwin defines optargs, optargs as declspec(dllimport) for historical
# reasons which cause compile warnings, so we disable those warnings.
OSSH_CHECK_CFLAG_COMPILE([-Wno-attributes])
;;
*-*-dgux*)
AC_DEFINE([IP_TOS_IS_BROKEN], [1],
@ -523,6 +558,7 @@ case "$host" in
AC_DEFINE([BROKEN_SETREGID])
;;
*-*-darwin*)
use_pie=auto
AC_MSG_CHECKING([if we have working getaddrinfo])
AC_RUN_IFELSE([AC_LANG_SOURCE([[ #include <mach-o/dyld.h>
main() { if (NSVersionOfRunTimeLibrary("System") >= (60 << 16))
@ -563,6 +599,7 @@ main() { if (NSVersionOfRunTimeLibrary("System") >= (60 << 16))
;;
*-*-dragonfly*)
SSHDLIBS="$SSHDLIBS -lcrypt"
TEST_MALLOC_OPTIONS="AFGJPRX"
;;
*-*-haiku*)
LIBS="$LIBS -lbsd "
@ -660,6 +697,7 @@ main() { if (NSVersionOfRunTimeLibrary("System") >= (60 << 16))
;;
*-*-linux*)
no_dev_ptmx=1
use_pie=auto
check_for_libcrypt_later=1
check_for_openpty_ctty_bug=1
AC_DEFINE([PAM_TTY_KLUDGE], [1],
@ -728,6 +766,11 @@ mips-sony-bsd|mips-sony-newsos4)
AC_DEFINE([SSH_TUN_NO_L2], [1], [No layer 2 tunnel support]))
AC_DEFINE([SSH_TUN_PREPEND_AF], [1],
[Prepend the address family to IP tunnel traffic])
TEST_MALLOC_OPTIONS="AJRX"
AC_DEFINE([BROKEN_STRNVIS], [1],
[NetBSD strnvis argument order is swapped compared to OpenBSD])
AC_DEFINE([BROKEN_READ_COMPARISON], [1],
[NetBSD read function is sometimes redirected, breaking atomicio comparisons against it])
;;
*-*-freebsd*)
check_for_libcrypt_later=1
@ -736,7 +779,13 @@ mips-sony-bsd|mips-sony-newsos4)
AC_CHECK_HEADER([net/if_tap.h], ,
AC_DEFINE([SSH_TUN_NO_L2], [1], [No layer 2 tunnel support]))
AC_DEFINE([BROKEN_GLOB], [1], [FreeBSD glob does not do what we need])
AC_DEFINE([BROKEN_STRNVIS], [1], [FreeBSD strnvis does not do what we need])
AC_DEFINE([BROKEN_STRNVIS], [1],
[FreeBSD strnvis argument order is swapped compared to OpenBSD])
TEST_MALLOC_OPTIONS="AJRX"
# Preauth crypto occasionally uses file descriptors for crypto offload
# and will crash if they cannot be opened.
AC_DEFINE([SANDBOX_SKIP_RLIMIT_NOFILE], [1],
[define if setrlimit RLIMIT_NOFILE breaks things])],
;;
*-*-bsdi*)
AC_DEFINE([SETEUID_BREAKS_SETUID])
@ -754,11 +803,13 @@ mips-sony-bsd|mips-sony-newsos4)
AC_DEFINE([BROKEN_SAVED_UIDS], [1], [Needed for NeXT])
;;
*-*-openbsd*)
use_pie=auto
AC_DEFINE([HAVE_ATTRIBUTE__SENTINEL__], [1], [OpenBSD's gcc has sentinel])
AC_DEFINE([HAVE_ATTRIBUTE__BOUNDED__], [1], [OpenBSD's gcc has bounded])
AC_DEFINE([SSH_TUN_OPENBSD], [1], [Open tunnel devices the OpenBSD way])
AC_DEFINE([SYSLOG_R_SAFE_IN_SIGHAND], [1],
[syslog_r function is safe to use in in a signal handler])
TEST_MALLOC_OPTIONS="AFGJPRX"
;;
*-*-solaris*)
if test "x$withval" != "xno" ; then
@ -1191,6 +1242,9 @@ AC_SEARCH_LIBS([openpty], [util bsd])
AC_SEARCH_LIBS([updwtmp], [util bsd])
AC_CHECK_FUNCS([fmt_scaled scan_scaled login logout openpty updwtmp logwtmp])
# On some platforms, inet_ntop may be found in libresolv or libnsl.
AC_SEARCH_LIBS([inet_ntop], [resolv nsl])
AC_FUNC_STRFTIME
# Check for ALTDIRFUNC glob() extension
@ -1442,7 +1496,7 @@ AC_ARG_WITH([libedit],
fi
fi
if test "x$use_pkgconfig_for_libedit" = "xyes"; then
LIBEDIT=`$PKGCONFIG --libs-only-l libedit`
LIBEDIT=`$PKGCONFIG --libs libedit`
CPPFLAGS="$CPPFLAGS `$PKGCONFIG --cflags libedit`"
else
LIBEDIT="-ledit -lcurses"
@ -1496,7 +1550,7 @@ AC_ARG_WITH([audit],
# These are optional
AC_CHECK_FUNCS([getaudit_addr aug_get_machine])
AC_DEFINE([USE_BSM_AUDIT], [1], [Use BSM audit module])
if test "$sol2ver" -eq 11; then
if test "$sol2ver" -ge 11; then
SSHDLIBS="$SSHDLIBS -lscf"
AC_DEFINE([BROKEN_BSM_API], [1],
[The system has incomplete BSM API])
@ -1524,10 +1578,62 @@ AC_ARG_WITH([audit],
esac ]
)
AC_ARG_WITH([pie],
[ --with-pie Build Position Independent Executables if possible], [
if test "x$withval" = "xno"; then
use_pie=no
fi
if test "x$withval" = "xyes"; then
use_pie=yes
fi
]
)
if test "x$use_pie" = "x"; then
use_pie=no
fi
if test "x$use_toolchain_hardening" != "x1" && test "x$use_pie" = "xauto"; then
# Turn off automatic PIE when toolchain hardening is off.
use_pie=no
fi
if test "x$use_pie" = "xauto"; then
# Automatic PIE requires gcc >= 4.x
AC_MSG_CHECKING([for gcc >= 4.x])
AC_COMPILE_IFELSE([AC_LANG_SOURCE([[
#if !defined(__GNUC__) || __GNUC__ < 4
#error gcc is too old
#endif
]])],
[ AC_MSG_RESULT([yes]) ],
[ AC_MSG_RESULT([no])
use_pie=no ]
)
fi
if test "x$use_pie" != "xno"; then
SAVED_CFLAGS="$CFLAGS"
SAVED_LDFLAGS="$LDFLAGS"
OSSH_CHECK_CFLAG_COMPILE([-fPIE])
OSSH_CHECK_LDFLAG_LINK([-pie])
# We use both -fPIE and -pie or neither.
AC_MSG_CHECKING([whether both -fPIE and -pie are supported])
if echo "x $CFLAGS" | grep ' -fPIE' >/dev/null 2>&1 && \
echo "x $LDFLAGS" | grep ' -pie' >/dev/null 2>&1 ; then
AC_MSG_RESULT([yes])
else
AC_MSG_RESULT([no])
CFLAGS="$SAVED_CFLAGS"
LDFLAGS="$SAVED_LDFLAGS"
fi
fi
dnl Checks for library functions. Please keep in alphabetical order
AC_CHECK_FUNCS([ \
Blowfish_initstate \
Blowfish_expandstate \
Blowfish_expand0state \
Blowfish_stream2word \
arc4random \
arc4random_buf \
arc4random_stir \
arc4random_uniform \
asprintf \
b64_ntop \
@ -1535,7 +1641,10 @@ AC_CHECK_FUNCS([ \
b64_pton \
__b64_pton \
bcopy \
bcrypt_pbkdf \
bindresvport_sa \
blf_enc \
cap_rights_limit \
clock \
closefrom \
dirfd \
@ -1543,6 +1652,7 @@ AC_CHECK_FUNCS([ \
fchmod \
fchown \
freeaddrinfo \
fstatfs \
fstatvfs \
futimes \
getaddrinfo \
@ -2312,7 +2422,17 @@ AC_LINK_IFELSE(
]
)
AC_CHECK_FUNCS([RSA_generate_key_ex DSA_generate_parameters_ex BN_is_prime_ex RSA_get_default_method HMAC_CTX_init])
AC_CHECK_FUNCS([ \
BN_is_prime_ex \
DSA_generate_parameters_ex \
EVP_DigestInit_ex \
EVP_DigestFinal_ex \
EVP_MD_CTX_init \
EVP_MD_CTX_cleanup \
HMAC_CTX_init \
RSA_generate_key_ex \
RSA_get_default_method \
])
AC_ARG_WITH([ssl-engine],
[ --with-ssl-engine Enable OpenSSL (hardware) ENGINE support ],
@ -2436,19 +2556,58 @@ fi
AC_CHECK_FUNCS([crypt DES_crypt])
# Search for SHA256 support in libc and/or OpenSSL
AC_CHECK_FUNCS([SHA256_Update EVP_sha256],
[TEST_SSH_SHA256=yes],
[TEST_SSH_SHA256=no
unsupported_algorithms="$unsupported_algorithms \
AC_CHECK_FUNCS([SHA256_Update EVP_sha256], ,
[unsupported_algorithms="$unsupported_algorithms \
hmac-sha2-256 hmac-sha2-512 \
diffie-hellman-group-exchange-sha256 \
hmac-sha2-256-etm@openssh.com hmac-sha2-512-etm@openssh.com"
]
)
AC_SUBST([TEST_SSH_SHA256])
# Check complete ECC support in OpenSSL
AC_MSG_CHECKING([whether OpenSSL has complete ECC support])
AC_MSG_CHECKING([whether OpenSSL has NID_X9_62_prime256v1])
AC_LINK_IFELSE(
[AC_LANG_PROGRAM([[
#include <openssl/ec.h>
#include <openssl/ecdh.h>
#include <openssl/ecdsa.h>
#include <openssl/evp.h>
#include <openssl/objects.h>
#include <openssl/opensslv.h>
#if OPENSSL_VERSION_NUMBER < 0x0090807f /* 0.9.8g */
# error "OpenSSL < 0.9.8g has unreliable ECC code"
#endif
]], [[
EC_KEY *e = EC_KEY_new_by_curve_name(NID_X9_62_prime256v1);
const EVP_MD *m = EVP_sha256(); /* We need this too */
]])],
[ AC_MSG_RESULT([yes])
enable_nistp256=1 ],
[ AC_MSG_RESULT([no]) ]
)
AC_MSG_CHECKING([whether OpenSSL has NID_secp384r1])
AC_LINK_IFELSE(
[AC_LANG_PROGRAM([[
#include <openssl/ec.h>
#include <openssl/ecdh.h>
#include <openssl/ecdsa.h>
#include <openssl/evp.h>
#include <openssl/objects.h>
#include <openssl/opensslv.h>
#if OPENSSL_VERSION_NUMBER < 0x0090807f /* 0.9.8g */
# error "OpenSSL < 0.9.8g has unreliable ECC code"
#endif
]], [[
EC_KEY *e = EC_KEY_new_by_curve_name(NID_secp384r1);
const EVP_MD *m = EVP_sha384(); /* We need this too */
]])],
[ AC_MSG_RESULT([yes])
enable_nistp384=1 ],
[ AC_MSG_RESULT([no]) ]
)
AC_MSG_CHECKING([whether OpenSSL has NID_secp521r1])
AC_LINK_IFELSE(
[AC_LANG_PROGRAM([[
#include <openssl/ec.h>
@ -2464,25 +2623,63 @@ AC_LINK_IFELSE(
EC_KEY *e = EC_KEY_new_by_curve_name(NID_secp521r1);
const EVP_MD *m = EVP_sha512(); /* We need this too */
]])],
[
AC_MSG_RESULT([yes])
AC_DEFINE([OPENSSL_HAS_ECC], [1],
[libcrypto includes complete ECC support])
TEST_SSH_ECC=yes
COMMENT_OUT_ECC=""
],
[
AC_MSG_RESULT([no])
TEST_SSH_ECC=no
COMMENT_OUT_ECC="#no ecc#"
unsupported_algorithms="$unsupported_algorithms \
ecdh-sha2-nistp256 ecdh-sha2-nistp384 ecdh-sha2-nistp521 \
ecdsa-sha2-nistp256-cert-v01@openssh.com \
ecdsa-sha2-nistp384-cert-v01@openssh.com \
ecdsa-sha2-nistp521-cert-v01@openssh.com \
ecdsa-sha2-nistp256 ecdsa-sha2-nistp384 ecdsa-sha2-nistp521"
]
[ AC_MSG_RESULT([yes])
AC_MSG_CHECKING([if OpenSSL's NID_secp521r1 is functional])
AC_RUN_IFELSE(
[AC_LANG_PROGRAM([[
#include <openssl/ec.h>
#include <openssl/ecdh.h>
#include <openssl/ecdsa.h>
#include <openssl/evp.h>
#include <openssl/objects.h>
#include <openssl/opensslv.h>
]],[[
EC_KEY *e = EC_KEY_new_by_curve_name(NID_secp521r1);
const EVP_MD *m = EVP_sha512(); /* We need this too */
exit(e == NULL || m == NULL);
]])],
[ AC_MSG_RESULT([yes])
enable_nistp521=1 ],
[ AC_MSG_RESULT([no]) ],
[ AC_MSG_WARN([cross-compiling: assuming yes])
enable_nistp521=1 ]
)],
AC_MSG_RESULT([no])
)
COMMENT_OUT_ECC="#no ecc#"
TEST_SSH_ECC=no
if test x$enable_nistp256 = x1 || test x$enable_nistp384 = x1 || \
test x$enable_nistp521 = x1; then
AC_DEFINE(OPENSSL_HAS_ECC, [1], [OpenSSL has ECC])
fi
if test x$enable_nistp256 = x1; then
AC_DEFINE([OPENSSL_HAS_NISTP256], [1],
[libcrypto has NID_X9_62_prime256v1])
TEST_SSH_ECC=yes
COMMENT_OUT_ECC=""
else
unsupported_algorithms="$unsupported_algorithms ecdsa-sha2-nistp256 \
ecdh-sha2-nistp256 ecdsa-sha2-nistp256-cert-v01@openssh.com"
fi
if test x$enable_nistp384 = x1; then
AC_DEFINE([OPENSSL_HAS_NISTP384], [1], [libcrypto has NID_secp384r1])
TEST_SSH_ECC=yes
COMMENT_OUT_ECC=""
else
unsupported_algorithms="$unsupported_algorithms ecdsa-sha2-nistp384 \
ecdh-sha2-nistp384 ecdsa-sha2-nistp384-cert-v01@openssh.com"
fi
if test x$enable_nistp521 = x1; then
AC_DEFINE([OPENSSL_HAS_NISTP521], [1], [libcrypto has NID_secp521r1])
TEST_SSH_ECC=yes
COMMENT_OUT_ECC=""
else
unsupported_algorithms="$unsupported_algorithms ecdh-sha2-nistp521 \
ecdsa-sha2-nistp521 ecdsa-sha2-nistp521-cert-v01@openssh.com"
fi
AC_SUBST([TEST_SSH_ECC])
AC_SUBST([COMMENT_OUT_ECC])
@ -2714,7 +2911,7 @@ fi
# Decide which sandbox style to use
sandbox_arg=""
AC_ARG_WITH([sandbox],
[ --with-sandbox=style Specify privilege separation sandbox (no, darwin, rlimit, systrace, seccomp_filter)],
[ --with-sandbox=style Specify privilege separation sandbox (no, darwin, rlimit, systrace, seccomp_filter, capsicum)],
[
if test "x$withval" = "xyes" ; then
sandbox_arg=""
@ -2843,6 +3040,16 @@ elif test "x$sandbox_arg" = "xseccomp_filter" || \
AC_MSG_ERROR([seccomp_filter sandbox requires prctl function])
SANDBOX_STYLE="seccomp_filter"
AC_DEFINE([SANDBOX_SECCOMP_FILTER], [1], [Sandbox using seccomp filter])
elif test "x$sandbox_arg" = "xcapsicum" || \
( test -z "$sandbox_arg" && \
test "x$ac_cv_header_sys_capability_h" = "xyes" && \
test "x$ac_cv_func_cap_rights_limit" = "xyes") ; then
test "x$ac_cv_header_sys_capability_h" != "xyes" && \
AC_MSG_ERROR([capsicum sandbox requires sys/capability.h header])
test "x$ac_cv_func_cap_rights_limit" != "xyes" && \
AC_MSG_ERROR([capsicum sandbox requires cap_rights_limit function])
SANDBOX_STYLE="capsicum"
AC_DEFINE([SANDBOX_CAPSICUM], [1], [Sandbox using capsicum])
elif test "x$sandbox_arg" = "xrlimit" || \
( test -z "$sandbox_arg" && test "x$ac_cv_func_setrlimit" = "xyes" && \
test "x$select_works_with_rlimit" = "xyes" && \
@ -3066,7 +3273,9 @@ if test "x$ac_cv_have_u_int64_t" = "xyes" ; then
have_u_int64_t=1
fi
if test -z "$have_u_int64_t" ; then
if (test -z "$have_u_int64_t" && \
test "x$ac_cv_header_sys_bitypes_h" = "xyes")
then
AC_MSG_CHECKING([for u_int64_t type in sys/bitypes.h])
AC_COMPILE_IFELSE([AC_LANG_PROGRAM([[ #include <sys/bitypes.h> ]],
[[ u_int64_t a; a = 1]])],
@ -3096,7 +3305,9 @@ if test -z "$have_u_intxx_t" ; then
fi
fi
if test -z "$have_uintxx_t" ; then
if (test -z "$have_uintxx_t" && \
test "x$ac_cv_header_stdint_h" = "xyes")
then
AC_MSG_CHECKING([for uintXX_t types in stdint.h])
AC_COMPILE_IFELSE([AC_LANG_PROGRAM([[ #include <stdint.h> ]],
[[ uint8_t a; uint16_t b; uint32_t c; a = b = c = 1;]])],
@ -3107,6 +3318,19 @@ if test -z "$have_uintxx_t" ; then
])
fi
if (test -z "$have_uintxx_t" && \
test "x$ac_cv_header_inttypes_h" = "xyes")
then
AC_MSG_CHECKING([for uintXX_t types in inttypes.h])
AC_COMPILE_IFELSE([AC_LANG_PROGRAM([[ #include <inttypes.h> ]],
[[ uint8_t a; uint16_t b; uint32_t c; a = b = c = 1;]])],
[
AC_DEFINE([HAVE_UINTXX_T])
AC_MSG_RESULT([yes])
], [ AC_MSG_RESULT([no])
])
fi
if (test -z "$have_u_intxx_t" || test -z "$have_intxx_t" && \
test "x$ac_cv_header_sys_bitypes_h" = "xyes")
then
@ -3137,6 +3361,11 @@ if test "x$ac_cv_have_u_char" = "xyes" ; then
AC_DEFINE([HAVE_U_CHAR], [1], [define if you have u_char data type])
fi
AC_CHECK_TYPES([intmax_t, uintmax_t], , , [
#include <sys/types.h>
#include <stdint.h>
])
TYPE_SOCKLEN_T
AC_CHECK_TYPES([sig_atomic_t], , , [#include <signal.h>])
@ -4561,6 +4790,7 @@ else
fi
AC_CHECK_DECL([BROKEN_GETADDRINFO], [TEST_SSH_IPV6=no])
AC_SUBST([TEST_SSH_IPV6], [$TEST_SSH_IPV6])
AC_SUBST([TEST_MALLOC_OPTIONS], [$TEST_MALLOC_OPTIONS])
AC_SUBST([UNSUPPORTED_ALGORITHMS], [$unsupported_algorithms])
AC_EXEEXT

View File

@ -16,7 +16,7 @@
#old cvs stuff. please update before use. may be deprecated.
%define use_stable 1
%define version 6.4p1
%define version 6.5p1
%if %{use_stable}
%define cvs %{nil}
%define release 1
@ -363,4 +363,4 @@ fi
* Mon Jan 01 1998 ...
Template Version: 1.31
$Id: openssh.spec,v 1.80.4.1 2013/11/08 01:36:19 djm Exp $
$Id: openssh.spec,v 1.82 2014/01/16 07:51:10 djm Exp $

View File

@ -67,54 +67,6 @@ user_account=
password_value=
opt_force=no
# ======================================================================
# Routine: create_host_keys
# ======================================================================
create_host_keys() {
local ret=0
if [ ! -f "${SYSCONFDIR}/ssh_host_key" ]
then
csih_inform "Generating ${SYSCONFDIR}/ssh_host_key"
if ! /usr/bin/ssh-keygen -t rsa1 -f ${SYSCONFDIR}/ssh_host_key -N '' > /dev/null
then
csih_warning "Generating ${SYSCONFDIR}/ssh_host_key failed!"
let ++ret
fi
fi
if [ ! -f "${SYSCONFDIR}/ssh_host_rsa_key" ]
then
csih_inform "Generating ${SYSCONFDIR}/ssh_host_rsa_key"
if ! /usr/bin/ssh-keygen -t rsa -f ${SYSCONFDIR}/ssh_host_rsa_key -N '' > /dev/null
then
csih_warning "Generating ${SYSCONFDIR}/ssh_host_key failed!"
let ++ret
fi
fi
if [ ! -f "${SYSCONFDIR}/ssh_host_dsa_key" ]
then
csih_inform "Generating ${SYSCONFDIR}/ssh_host_dsa_key"
if ! /usr/bin/ssh-keygen -t dsa -f ${SYSCONFDIR}/ssh_host_dsa_key -N '' > /dev/null
then
csih_warning "Generating ${SYSCONFDIR}/ssh_host_key failed!"
let ++ret
fi
fi
if [ ! -f "${SYSCONFDIR}/ssh_host_ecdsa_key" ]
then
csih_inform "Generating ${SYSCONFDIR}/ssh_host_ecdsa_key"
if ! /usr/bin/ssh-keygen -t ecdsa -f ${SYSCONFDIR}/ssh_host_ecdsa_key -N '' > /dev/null
then
csih_warning "Generating ${SYSCONFDIR}/ssh_host_key failed!"
let ++ret
fi
fi
return $ret
} # --- End of create_host_keys --- #
# ======================================================================
# Routine: update_services_file
# ======================================================================
@ -719,8 +671,8 @@ then
let ++warning_cnt
fi
# host keys
create_host_keys || let warning_cnt+=$?
# generate missing host keys
/usr/bin/ssh-keygen -A || let warning_cnt+=$?
# handle ssh_config
csih_install_config "${SYSCONFDIR}/ssh_config" "${SYSCONFDIR}/defaults" || let ++warning_cnt

View File

@ -1,4 +1,4 @@
%define ver 6.4p1
%define ver 6.5p1
%define rel 1
# OpenSSH privilege separation requires a user & group ID

View File

@ -13,7 +13,7 @@
Summary: OpenSSH, a free Secure Shell (SSH) protocol implementation
Name: openssh
Version: 6.4p1
Version: 6.5p1
URL: http://www.openssh.com/
Release: 1
Source0: openssh-%{version}.tar.gz

View File

@ -0,0 +1,44 @@
/* $OpenBSD: crypto_api.h,v 1.3 2013/12/17 10:36:38 markus Exp $ */
/*
* Assembled from generated headers and source files by Markus Friedl.
* Placed in the public domain.
*/
#ifndef crypto_api_h
#define crypto_api_h
#ifdef HAVE_STDINT_H
# include <stdint.h>
#endif
#include <stdlib.h>
typedef int32_t crypto_int32;
typedef uint32_t crypto_uint32;
#define randombytes(buf, buf_len) arc4random_buf((buf), (buf_len))
#define crypto_hashblocks_sha512_STATEBYTES 64U
#define crypto_hashblocks_sha512_BLOCKBYTES 128U
int crypto_hashblocks_sha512(unsigned char *, const unsigned char *,
unsigned long long);
#define crypto_hash_sha512_BYTES 64U
int crypto_hash_sha512(unsigned char *, const unsigned char *,
unsigned long long);
int crypto_verify_32(const unsigned char *, const unsigned char *);
#define crypto_sign_ed25519_SECRETKEYBYTES 64U
#define crypto_sign_ed25519_PUBLICKEYBYTES 32U
#define crypto_sign_ed25519_BYTES 64U
int crypto_sign_ed25519(unsigned char *, unsigned long long *,
const unsigned char *, unsigned long long, const unsigned char *);
int crypto_sign_ed25519_open(unsigned char *, unsigned long long *,
const unsigned char *, unsigned long long, const unsigned char *);
int crypto_sign_ed25519_keypair(unsigned char *, unsigned char *);
#endif /* crypto_api_h */

View File

@ -25,7 +25,7 @@
#ifndef _DEFINES_H
#define _DEFINES_H
/* $Id: defines.h,v 1.172 2013/06/01 21:18:48 dtucker Exp $ */
/* $Id: defines.h,v 1.176 2014/01/17 13:12:38 dtucker Exp $ */
/* Constants */
@ -269,6 +269,21 @@ typedef unsigned long long int u_int64_t;
# endif
#endif
#ifndef HAVE_UINTXX_T
typedef u_int8_t uint8_t;
typedef u_int16_t uint16_t;
typedef u_int32_t uint32_t;
typedef u_int64_t uint64_t;
#endif
#ifndef HAVE_INTMAX_T
typedef long long intmax_t;
#endif
#ifndef HAVE_UINTMAX_T
typedef unsigned long long uintmax_t;
#endif
#ifndef HAVE_U_CHAR
typedef unsigned char u_char;
# define HAVE_U_CHAR
@ -802,4 +817,13 @@ struct winsize {
# endif
#endif
/*
* Platforms that have arc4random_uniform() and not arc4random_stir()
* shouldn't need the latter.
*/
#if defined(HAVE_ARC4RANDOM) && defined(HAVE_ARC4RANDOM_UNIFORM) && \
!defined(HAVE_ARC4RANDOM_STIR)
# define arc4random_stir()
#endif
#endif /* _DEFINES_H */

View File

@ -1,4 +1,4 @@
/* $OpenBSD: dh.c,v 1.51 2013/07/02 12:31:43 markus Exp $ */
/* $OpenBSD: dh.c,v 1.53 2013/11/21 00:45:44 djm Exp $ */
/*
* Copyright (c) 2000 Niels Provos. All rights reserved.
*
@ -254,33 +254,19 @@ dh_pub_is_valid(DH *dh, BIGNUM *dh_pub)
void
dh_gen_key(DH *dh, int need)
{
int i, bits_set, tries = 0;
int pbits;
if (need < 0)
fatal("dh_gen_key: need < 0");
if (need <= 0)
fatal("%s: need <= 0", __func__);
if (dh->p == NULL)
fatal("dh_gen_key: dh->p == NULL");
if (need > INT_MAX / 2 || 2 * need >= BN_num_bits(dh->p))
fatal("dh_gen_key: group too small: %d (2*need %d)",
BN_num_bits(dh->p), 2*need);
do {
if (dh->priv_key != NULL)
BN_clear_free(dh->priv_key);
if ((dh->priv_key = BN_new()) == NULL)
fatal("dh_gen_key: BN_new failed");
/* generate a 2*need bits random private exponent */
if (!BN_rand(dh->priv_key, 2*need, 0, 0))
fatal("dh_gen_key: BN_rand failed");
if (DH_generate_key(dh) == 0)
fatal("DH_generate_key");
for (i = 0, bits_set = 0; i <= BN_num_bits(dh->priv_key); i++)
if (BN_is_bit_set(dh->priv_key, i))
bits_set++;
debug2("dh_gen_key: priv key bits set: %d/%d",
bits_set, BN_num_bits(dh->priv_key));
if (tries++ > 10)
fatal("dh_gen_key: too many bad keys: giving up");
} while (!dh_pub_is_valid(dh, dh->pub_key));
fatal("%s: dh->p == NULL", __func__);
if ((pbits = BN_num_bits(dh->p)) <= 0)
fatal("%s: bits(p) <= 0", __func__);
dh->length = MIN(need * 2, pbits - 1);
if (DH_generate_key(dh) == 0)
fatal("%s: key generation failed", __func__);
if (!dh_pub_is_valid(dh, dh->pub_key))
fatal("%s: generated invalid key", __func__);
}
DH *
@ -352,17 +338,20 @@ dh_new_group14(void)
/*
* Estimates the group order for a Diffie-Hellman group that has an
* attack complexity approximately the same as O(2**bits). Estimate
* with: O(exp(1.9223 * (ln q)^(1/3) (ln ln q)^(2/3)))
* attack complexity approximately the same as O(2**bits).
* Values from NIST Special Publication 800-57: Recommendation for Key
* Management Part 1 (rev 3) limited by the recommended maximum value
* from RFC4419 section 3.
*/
int
dh_estimate(int bits)
{
if (bits <= 112)
return 2048;
if (bits <= 128)
return (1024); /* O(2**86) */
return 3072;
if (bits <= 192)
return (2048); /* O(2**116) */
return (4096); /* O(2**156) */
return 7680;
return 8192;
}

View File

@ -1,4 +1,4 @@
/* $OpenBSD: dh.h,v 1.10 2008/06/26 09:19:40 djm Exp $ */
/* $OpenBSD: dh.h,v 1.11 2013/10/08 11:42:13 dtucker Exp $ */
/*
* Copyright (c) 2000 Niels Provos. All rights reserved.
@ -43,6 +43,7 @@ int dh_pub_is_valid(DH *, BIGNUM *);
int dh_estimate(int);
/* Min and max values from RFC4419. */
#define DH_GRP_MIN 1024
#define DH_GRP_MAX 8192

149
crypto/openssh/digest.c Normal file
View File

@ -0,0 +1,149 @@
/* $OpenBSD: digest.c,v 1.3 2014/01/20 00:08:48 djm Exp $ */
/*
* Copyright (c) 2013 Damien Miller <djm@mindrot.org>
*
* Permission to use, copy, modify, and distribute this software for any
* purpose with or without fee is hereby granted, provided that the above
* copyright notice and this permission notice appear in all copies.
*
* THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES
* WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF
* MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR
* ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES
* WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN
* ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF
* OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE.
*/
#include "includes.h"
#include <sys/types.h>
#include <limits.h>
#include <stdlib.h>
#include <string.h>
#include <openssl/evp.h>
#include "openbsd-compat/openssl-compat.h"
#include "buffer.h"
#include "digest.h"
struct ssh_digest_ctx {
int alg;
EVP_MD_CTX mdctx;
};
struct ssh_digest {
int id;
const char *name;
size_t digest_len;
const EVP_MD *(*mdfunc)(void);
};
/* NB. Indexed directly by algorithm number */
const struct ssh_digest digests[] = {
{ SSH_DIGEST_MD5, "MD5", 16, EVP_md5 },
{ SSH_DIGEST_RIPEMD160, "RIPEMD160", 20, EVP_ripemd160 },
{ SSH_DIGEST_SHA1, "SHA1", 20, EVP_sha1 },
#ifdef HAVE_EVP_SHA256 /* XXX replace with local if missing */
{ SSH_DIGEST_SHA256, "SHA256", 32, EVP_sha256 },
{ SSH_DIGEST_SHA384, "SHA384", 48, EVP_sha384 },
{ SSH_DIGEST_SHA512, "SHA512", 64, EVP_sha512 },
#endif
{ -1, NULL, 0, NULL },
};
static const struct ssh_digest *
ssh_digest_by_alg(int alg)
{
if (alg < 0 || alg >= SSH_DIGEST_MAX)
return NULL;
if (digests[alg].id != alg) /* sanity */
return NULL;
return &(digests[alg]);
}
size_t
ssh_digest_bytes(int alg)
{
const struct ssh_digest *digest = ssh_digest_by_alg(alg);
return digest == NULL ? 0 : digest->digest_len;
}
struct ssh_digest_ctx *
ssh_digest_start(int alg)
{
const struct ssh_digest *digest = ssh_digest_by_alg(alg);
struct ssh_digest_ctx *ret;
if (digest == NULL || ((ret = calloc(1, sizeof(*ret))) == NULL))
return NULL;
ret->alg = alg;
EVP_MD_CTX_init(&ret->mdctx);
if (EVP_DigestInit_ex(&ret->mdctx, digest->mdfunc(), NULL) != 1) {
free(ret);
return NULL;
}
return ret;
}
int
ssh_digest_update(struct ssh_digest_ctx *ctx, const void *m, size_t mlen)
{
if (EVP_DigestUpdate(&ctx->mdctx, m, mlen) != 1)
return -1;
return 0;
}
int
ssh_digest_update_buffer(struct ssh_digest_ctx *ctx, const Buffer *b)
{
return ssh_digest_update(ctx, buffer_ptr(b), buffer_len(b));
}
int
ssh_digest_final(struct ssh_digest_ctx *ctx, u_char *d, size_t dlen)
{
const struct ssh_digest *digest = ssh_digest_by_alg(ctx->alg);
u_int l = dlen;
if (dlen > UINT_MAX)
return -1;
if (dlen < digest->digest_len) /* No truncation allowed */
return -1;
if (EVP_DigestFinal_ex(&ctx->mdctx, d, &l) != 1)
return -1;
if (l != digest->digest_len) /* sanity */
return -1;
return 0;
}
void
ssh_digest_free(struct ssh_digest_ctx *ctx)
{
EVP_MD_CTX_cleanup(&ctx->mdctx);
memset(ctx, 0, sizeof(*ctx));
free(ctx);
}
int
ssh_digest_memory(int alg, const void *m, size_t mlen, u_char *d, size_t dlen)
{
struct ssh_digest_ctx *ctx = ssh_digest_start(alg);
if (ctx == NULL)
return -1;
if (ssh_digest_update(ctx, m, mlen) != 0 ||
ssh_digest_final(ctx, d, dlen) != 0)
return -1;
ssh_digest_free(ctx);
return 0;
}
int
ssh_digest_buffer(int alg, const Buffer *b, u_char *d, size_t dlen)
{
return ssh_digest_memory(alg, buffer_ptr(b), buffer_len(b), d, dlen);
}

55
crypto/openssh/digest.h Normal file
View File

@ -0,0 +1,55 @@
/* $OpenBSD: digest.h,v 1.1 2014/01/09 23:20:00 djm Exp $ */
/*
* Copyright (c) 2013 Damien Miller <djm@mindrot.org>
*
* Permission to use, copy, modify, and distribute this software for any
* purpose with or without fee is hereby granted, provided that the above
* copyright notice and this permission notice appear in all copies.
*
* THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES
* WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF
* MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR
* ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES
* WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN
* ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF
* OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE.
*/
#ifndef _DIGEST_H
#define _DIGEST_H
/* Maximum digest output length */
#define SSH_DIGEST_MAX_LENGTH 64
/* Digest algorithms */
#define SSH_DIGEST_MD5 0
#define SSH_DIGEST_RIPEMD160 1
#define SSH_DIGEST_SHA1 2
#define SSH_DIGEST_SHA256 3
#define SSH_DIGEST_SHA384 4
#define SSH_DIGEST_SHA512 5
#define SSH_DIGEST_MAX 6
/* Returns the algorithm's digest length in bytes or 0 for invalid algorithm */
size_t ssh_digest_bytes(int alg);
/* One-shot API */
int ssh_digest_memory(int alg, const void *m, size_t mlen,
u_char *d, size_t dlen)
__attribute__((__bounded__(__buffer__, 2, 3)))
__attribute__((__bounded__(__buffer__, 4, 5)));
int ssh_digest_buffer(int alg, const Buffer *b, u_char *d, size_t dlen)
__attribute__((__bounded__(__buffer__, 3, 4)));
/* Update API */
struct ssh_digest_ctx;
struct ssh_digest_ctx *ssh_digest_start(int alg);
int ssh_digest_update(struct ssh_digest_ctx *ctx, const void *m, size_t mlen)
__attribute__((__bounded__(__buffer__, 2, 3)));
int ssh_digest_update_buffer(struct ssh_digest_ctx *ctx, const Buffer *b);
int ssh_digest_final(struct ssh_digest_ctx *ctx, u_char *d, size_t dlen)
__attribute__((__bounded__(__buffer__, 2, 3)));
void ssh_digest_free(struct ssh_digest_ctx *ctx);
#endif /* _DIGEST_H */

144
crypto/openssh/ed25519.c Normal file
View File

@ -0,0 +1,144 @@
/* $OpenBSD: ed25519.c,v 1.3 2013/12/09 11:03:45 markus Exp $ */
/*
* Public Domain, Authors: Daniel J. Bernstein, Niels Duif, Tanja Lange,
* Peter Schwabe, Bo-Yin Yang.
* Copied from supercop-20130419/crypto_sign/ed25519/ref/ed25519.c
*/
#include "includes.h"
#include "crypto_api.h"
#include "ge25519.h"
static void get_hram(unsigned char *hram, const unsigned char *sm, const unsigned char *pk, unsigned char *playground, unsigned long long smlen)
{
unsigned long long i;
for (i = 0;i < 32;++i) playground[i] = sm[i];
for (i = 32;i < 64;++i) playground[i] = pk[i-32];
for (i = 64;i < smlen;++i) playground[i] = sm[i];
crypto_hash_sha512(hram,playground,smlen);
}
int crypto_sign_ed25519_keypair(
unsigned char *pk,
unsigned char *sk
)
{
sc25519 scsk;
ge25519 gepk;
unsigned char extsk[64];
int i;
randombytes(sk, 32);
crypto_hash_sha512(extsk, sk, 32);
extsk[0] &= 248;
extsk[31] &= 127;
extsk[31] |= 64;
sc25519_from32bytes(&scsk,extsk);
ge25519_scalarmult_base(&gepk, &scsk);
ge25519_pack(pk, &gepk);
for(i=0;i<32;i++)
sk[32 + i] = pk[i];
return 0;
}
int crypto_sign_ed25519(
unsigned char *sm,unsigned long long *smlen,
const unsigned char *m,unsigned long long mlen,
const unsigned char *sk
)
{
sc25519 sck, scs, scsk;
ge25519 ger;
unsigned char r[32];
unsigned char s[32];
unsigned char extsk[64];
unsigned long long i;
unsigned char hmg[crypto_hash_sha512_BYTES];
unsigned char hram[crypto_hash_sha512_BYTES];
crypto_hash_sha512(extsk, sk, 32);
extsk[0] &= 248;
extsk[31] &= 127;
extsk[31] |= 64;
*smlen = mlen+64;
for(i=0;i<mlen;i++)
sm[64 + i] = m[i];
for(i=0;i<32;i++)
sm[32 + i] = extsk[32+i];
crypto_hash_sha512(hmg, sm+32, mlen+32); /* Generate k as h(extsk[32],...,extsk[63],m) */
/* Computation of R */
sc25519_from64bytes(&sck, hmg);
ge25519_scalarmult_base(&ger, &sck);
ge25519_pack(r, &ger);
/* Computation of s */
for(i=0;i<32;i++)
sm[i] = r[i];
get_hram(hram, sm, sk+32, sm, mlen+64);
sc25519_from64bytes(&scs, hram);
sc25519_from32bytes(&scsk, extsk);
sc25519_mul(&scs, &scs, &scsk);
sc25519_add(&scs, &scs, &sck);
sc25519_to32bytes(s,&scs); /* cat s */
for(i=0;i<32;i++)
sm[32 + i] = s[i];
return 0;
}
int crypto_sign_ed25519_open(
unsigned char *m,unsigned long long *mlen,
const unsigned char *sm,unsigned long long smlen,
const unsigned char *pk
)
{
unsigned int i;
int ret;
unsigned char t2[32];
ge25519 get1, get2;
sc25519 schram, scs;
unsigned char hram[crypto_hash_sha512_BYTES];
*mlen = (unsigned long long) -1;
if (smlen < 64) return -1;
if (ge25519_unpackneg_vartime(&get1, pk)) return -1;
get_hram(hram,sm,pk,m,smlen);
sc25519_from64bytes(&schram, hram);
sc25519_from32bytes(&scs, sm+32);
ge25519_double_scalarmult_vartime(&get2, &get1, &schram, &ge25519_base, &scs);
ge25519_pack(t2, &get2);
ret = crypto_verify_32(sm, t2);
if (!ret)
{
for(i=0;i<smlen-64;i++)
m[i] = sm[i + 64];
*mlen = smlen-64;
}
else
{
for(i=0;i<smlen-64;i++)
m[i] = 0;
}
return ret;
}

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/* $OpenBSD: fe25519.c,v 1.3 2013/12/09 11:03:45 markus Exp $ */
/*
* Public Domain, Authors: Daniel J. Bernstein, Niels Duif, Tanja Lange,
* Peter Schwabe, Bo-Yin Yang.
* Copied from supercop-20130419/crypto_sign/ed25519/ref/fe25519.c
*/
#include "includes.h"
#define WINDOWSIZE 1 /* Should be 1,2, or 4 */
#define WINDOWMASK ((1<<WINDOWSIZE)-1)
#include "fe25519.h"
static crypto_uint32 equal(crypto_uint32 a,crypto_uint32 b) /* 16-bit inputs */
{
crypto_uint32 x = a ^ b; /* 0: yes; 1..65535: no */
x -= 1; /* 4294967295: yes; 0..65534: no */
x >>= 31; /* 1: yes; 0: no */
return x;
}
static crypto_uint32 ge(crypto_uint32 a,crypto_uint32 b) /* 16-bit inputs */
{
unsigned int x = a;
x -= (unsigned int) b; /* 0..65535: yes; 4294901761..4294967295: no */
x >>= 31; /* 0: yes; 1: no */
x ^= 1; /* 1: yes; 0: no */
return x;
}
static crypto_uint32 times19(crypto_uint32 a)
{
return (a << 4) + (a << 1) + a;
}
static crypto_uint32 times38(crypto_uint32 a)
{
return (a << 5) + (a << 2) + (a << 1);
}
static void reduce_add_sub(fe25519 *r)
{
crypto_uint32 t;
int i,rep;
for(rep=0;rep<4;rep++)
{
t = r->v[31] >> 7;
r->v[31] &= 127;
t = times19(t);
r->v[0] += t;
for(i=0;i<31;i++)
{
t = r->v[i] >> 8;
r->v[i+1] += t;
r->v[i] &= 255;
}
}
}
static void reduce_mul(fe25519 *r)
{
crypto_uint32 t;
int i,rep;
for(rep=0;rep<2;rep++)
{
t = r->v[31] >> 7;
r->v[31] &= 127;
t = times19(t);
r->v[0] += t;
for(i=0;i<31;i++)
{
t = r->v[i] >> 8;
r->v[i+1] += t;
r->v[i] &= 255;
}
}
}
/* reduction modulo 2^255-19 */
void fe25519_freeze(fe25519 *r)
{
int i;
crypto_uint32 m = equal(r->v[31],127);
for(i=30;i>0;i--)
m &= equal(r->v[i],255);
m &= ge(r->v[0],237);
m = -m;
r->v[31] -= m&127;
for(i=30;i>0;i--)
r->v[i] -= m&255;
r->v[0] -= m&237;
}
void fe25519_unpack(fe25519 *r, const unsigned char x[32])
{
int i;
for(i=0;i<32;i++) r->v[i] = x[i];
r->v[31] &= 127;
}
/* Assumes input x being reduced below 2^255 */
void fe25519_pack(unsigned char r[32], const fe25519 *x)
{
int i;
fe25519 y = *x;
fe25519_freeze(&y);
for(i=0;i<32;i++)
r[i] = y.v[i];
}
int fe25519_iszero(const fe25519 *x)
{
int i;
int r;
fe25519 t = *x;
fe25519_freeze(&t);
r = equal(t.v[0],0);
for(i=1;i<32;i++)
r &= equal(t.v[i],0);
return r;
}
int fe25519_iseq_vartime(const fe25519 *x, const fe25519 *y)
{
int i;
fe25519 t1 = *x;
fe25519 t2 = *y;
fe25519_freeze(&t1);
fe25519_freeze(&t2);
for(i=0;i<32;i++)
if(t1.v[i] != t2.v[i]) return 0;
return 1;
}
void fe25519_cmov(fe25519 *r, const fe25519 *x, unsigned char b)
{
int i;
crypto_uint32 mask = b;
mask = -mask;
for(i=0;i<32;i++) r->v[i] ^= mask & (x->v[i] ^ r->v[i]);
}
unsigned char fe25519_getparity(const fe25519 *x)
{
fe25519 t = *x;
fe25519_freeze(&t);
return t.v[0] & 1;
}
void fe25519_setone(fe25519 *r)
{
int i;
r->v[0] = 1;
for(i=1;i<32;i++) r->v[i]=0;
}
void fe25519_setzero(fe25519 *r)
{
int i;
for(i=0;i<32;i++) r->v[i]=0;
}
void fe25519_neg(fe25519 *r, const fe25519 *x)
{
fe25519 t;
int i;
for(i=0;i<32;i++) t.v[i]=x->v[i];
fe25519_setzero(r);
fe25519_sub(r, r, &t);
}
void fe25519_add(fe25519 *r, const fe25519 *x, const fe25519 *y)
{
int i;
for(i=0;i<32;i++) r->v[i] = x->v[i] + y->v[i];
reduce_add_sub(r);
}
void fe25519_sub(fe25519 *r, const fe25519 *x, const fe25519 *y)
{
int i;
crypto_uint32 t[32];
t[0] = x->v[0] + 0x1da;
t[31] = x->v[31] + 0xfe;
for(i=1;i<31;i++) t[i] = x->v[i] + 0x1fe;
for(i=0;i<32;i++) r->v[i] = t[i] - y->v[i];
reduce_add_sub(r);
}
void fe25519_mul(fe25519 *r, const fe25519 *x, const fe25519 *y)
{
int i,j;
crypto_uint32 t[63];
for(i=0;i<63;i++)t[i] = 0;
for(i=0;i<32;i++)
for(j=0;j<32;j++)
t[i+j] += x->v[i] * y->v[j];
for(i=32;i<63;i++)
r->v[i-32] = t[i-32] + times38(t[i]);
r->v[31] = t[31]; /* result now in r[0]...r[31] */
reduce_mul(r);
}
void fe25519_square(fe25519 *r, const fe25519 *x)
{
fe25519_mul(r, x, x);
}
void fe25519_invert(fe25519 *r, const fe25519 *x)
{
fe25519 z2;
fe25519 z9;
fe25519 z11;
fe25519 z2_5_0;
fe25519 z2_10_0;
fe25519 z2_20_0;
fe25519 z2_50_0;
fe25519 z2_100_0;
fe25519 t0;
fe25519 t1;
int i;
/* 2 */ fe25519_square(&z2,x);
/* 4 */ fe25519_square(&t1,&z2);
/* 8 */ fe25519_square(&t0,&t1);
/* 9 */ fe25519_mul(&z9,&t0,x);
/* 11 */ fe25519_mul(&z11,&z9,&z2);
/* 22 */ fe25519_square(&t0,&z11);
/* 2^5 - 2^0 = 31 */ fe25519_mul(&z2_5_0,&t0,&z9);
/* 2^6 - 2^1 */ fe25519_square(&t0,&z2_5_0);
/* 2^7 - 2^2 */ fe25519_square(&t1,&t0);
/* 2^8 - 2^3 */ fe25519_square(&t0,&t1);
/* 2^9 - 2^4 */ fe25519_square(&t1,&t0);
/* 2^10 - 2^5 */ fe25519_square(&t0,&t1);
/* 2^10 - 2^0 */ fe25519_mul(&z2_10_0,&t0,&z2_5_0);
/* 2^11 - 2^1 */ fe25519_square(&t0,&z2_10_0);
/* 2^12 - 2^2 */ fe25519_square(&t1,&t0);
/* 2^20 - 2^10 */ for (i = 2;i < 10;i += 2) { fe25519_square(&t0,&t1); fe25519_square(&t1,&t0); }
/* 2^20 - 2^0 */ fe25519_mul(&z2_20_0,&t1,&z2_10_0);
/* 2^21 - 2^1 */ fe25519_square(&t0,&z2_20_0);
/* 2^22 - 2^2 */ fe25519_square(&t1,&t0);
/* 2^40 - 2^20 */ for (i = 2;i < 20;i += 2) { fe25519_square(&t0,&t1); fe25519_square(&t1,&t0); }
/* 2^40 - 2^0 */ fe25519_mul(&t0,&t1,&z2_20_0);
/* 2^41 - 2^1 */ fe25519_square(&t1,&t0);
/* 2^42 - 2^2 */ fe25519_square(&t0,&t1);
/* 2^50 - 2^10 */ for (i = 2;i < 10;i += 2) { fe25519_square(&t1,&t0); fe25519_square(&t0,&t1); }
/* 2^50 - 2^0 */ fe25519_mul(&z2_50_0,&t0,&z2_10_0);
/* 2^51 - 2^1 */ fe25519_square(&t0,&z2_50_0);
/* 2^52 - 2^2 */ fe25519_square(&t1,&t0);
/* 2^100 - 2^50 */ for (i = 2;i < 50;i += 2) { fe25519_square(&t0,&t1); fe25519_square(&t1,&t0); }
/* 2^100 - 2^0 */ fe25519_mul(&z2_100_0,&t1,&z2_50_0);
/* 2^101 - 2^1 */ fe25519_square(&t1,&z2_100_0);
/* 2^102 - 2^2 */ fe25519_square(&t0,&t1);
/* 2^200 - 2^100 */ for (i = 2;i < 100;i += 2) { fe25519_square(&t1,&t0); fe25519_square(&t0,&t1); }
/* 2^200 - 2^0 */ fe25519_mul(&t1,&t0,&z2_100_0);
/* 2^201 - 2^1 */ fe25519_square(&t0,&t1);
/* 2^202 - 2^2 */ fe25519_square(&t1,&t0);
/* 2^250 - 2^50 */ for (i = 2;i < 50;i += 2) { fe25519_square(&t0,&t1); fe25519_square(&t1,&t0); }
/* 2^250 - 2^0 */ fe25519_mul(&t0,&t1,&z2_50_0);
/* 2^251 - 2^1 */ fe25519_square(&t1,&t0);
/* 2^252 - 2^2 */ fe25519_square(&t0,&t1);
/* 2^253 - 2^3 */ fe25519_square(&t1,&t0);
/* 2^254 - 2^4 */ fe25519_square(&t0,&t1);
/* 2^255 - 2^5 */ fe25519_square(&t1,&t0);
/* 2^255 - 21 */ fe25519_mul(r,&t1,&z11);
}
void fe25519_pow2523(fe25519 *r, const fe25519 *x)
{
fe25519 z2;
fe25519 z9;
fe25519 z11;
fe25519 z2_5_0;
fe25519 z2_10_0;
fe25519 z2_20_0;
fe25519 z2_50_0;
fe25519 z2_100_0;
fe25519 t;
int i;
/* 2 */ fe25519_square(&z2,x);
/* 4 */ fe25519_square(&t,&z2);
/* 8 */ fe25519_square(&t,&t);
/* 9 */ fe25519_mul(&z9,&t,x);
/* 11 */ fe25519_mul(&z11,&z9,&z2);
/* 22 */ fe25519_square(&t,&z11);
/* 2^5 - 2^0 = 31 */ fe25519_mul(&z2_5_0,&t,&z9);
/* 2^6 - 2^1 */ fe25519_square(&t,&z2_5_0);
/* 2^10 - 2^5 */ for (i = 1;i < 5;i++) { fe25519_square(&t,&t); }
/* 2^10 - 2^0 */ fe25519_mul(&z2_10_0,&t,&z2_5_0);
/* 2^11 - 2^1 */ fe25519_square(&t,&z2_10_0);
/* 2^20 - 2^10 */ for (i = 1;i < 10;i++) { fe25519_square(&t,&t); }
/* 2^20 - 2^0 */ fe25519_mul(&z2_20_0,&t,&z2_10_0);
/* 2^21 - 2^1 */ fe25519_square(&t,&z2_20_0);
/* 2^40 - 2^20 */ for (i = 1;i < 20;i++) { fe25519_square(&t,&t); }
/* 2^40 - 2^0 */ fe25519_mul(&t,&t,&z2_20_0);
/* 2^41 - 2^1 */ fe25519_square(&t,&t);
/* 2^50 - 2^10 */ for (i = 1;i < 10;i++) { fe25519_square(&t,&t); }
/* 2^50 - 2^0 */ fe25519_mul(&z2_50_0,&t,&z2_10_0);
/* 2^51 - 2^1 */ fe25519_square(&t,&z2_50_0);
/* 2^100 - 2^50 */ for (i = 1;i < 50;i++) { fe25519_square(&t,&t); }
/* 2^100 - 2^0 */ fe25519_mul(&z2_100_0,&t,&z2_50_0);
/* 2^101 - 2^1 */ fe25519_square(&t,&z2_100_0);
/* 2^200 - 2^100 */ for (i = 1;i < 100;i++) { fe25519_square(&t,&t); }
/* 2^200 - 2^0 */ fe25519_mul(&t,&t,&z2_100_0);
/* 2^201 - 2^1 */ fe25519_square(&t,&t);
/* 2^250 - 2^50 */ for (i = 1;i < 50;i++) { fe25519_square(&t,&t); }
/* 2^250 - 2^0 */ fe25519_mul(&t,&t,&z2_50_0);
/* 2^251 - 2^1 */ fe25519_square(&t,&t);
/* 2^252 - 2^2 */ fe25519_square(&t,&t);
/* 2^252 - 3 */ fe25519_mul(r,&t,x);
}

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/* $OpenBSD: fe25519.h,v 1.3 2013/12/09 11:03:45 markus Exp $ */
/*
* Public Domain, Authors: Daniel J. Bernstein, Niels Duif, Tanja Lange,
* Peter Schwabe, Bo-Yin Yang.
* Copied from supercop-20130419/crypto_sign/ed25519/ref/fe25519.h
*/
#ifndef FE25519_H
#define FE25519_H
#include "crypto_api.h"
#define fe25519 crypto_sign_ed25519_ref_fe25519
#define fe25519_freeze crypto_sign_ed25519_ref_fe25519_freeze
#define fe25519_unpack crypto_sign_ed25519_ref_fe25519_unpack
#define fe25519_pack crypto_sign_ed25519_ref_fe25519_pack
#define fe25519_iszero crypto_sign_ed25519_ref_fe25519_iszero
#define fe25519_iseq_vartime crypto_sign_ed25519_ref_fe25519_iseq_vartime
#define fe25519_cmov crypto_sign_ed25519_ref_fe25519_cmov
#define fe25519_setone crypto_sign_ed25519_ref_fe25519_setone
#define fe25519_setzero crypto_sign_ed25519_ref_fe25519_setzero
#define fe25519_neg crypto_sign_ed25519_ref_fe25519_neg
#define fe25519_getparity crypto_sign_ed25519_ref_fe25519_getparity
#define fe25519_add crypto_sign_ed25519_ref_fe25519_add
#define fe25519_sub crypto_sign_ed25519_ref_fe25519_sub
#define fe25519_mul crypto_sign_ed25519_ref_fe25519_mul
#define fe25519_square crypto_sign_ed25519_ref_fe25519_square
#define fe25519_invert crypto_sign_ed25519_ref_fe25519_invert
#define fe25519_pow2523 crypto_sign_ed25519_ref_fe25519_pow2523
typedef struct
{
crypto_uint32 v[32];
}
fe25519;
void fe25519_freeze(fe25519 *r);
void fe25519_unpack(fe25519 *r, const unsigned char x[32]);
void fe25519_pack(unsigned char r[32], const fe25519 *x);
int fe25519_iszero(const fe25519 *x);
int fe25519_iseq_vartime(const fe25519 *x, const fe25519 *y);
void fe25519_cmov(fe25519 *r, const fe25519 *x, unsigned char b);
void fe25519_setone(fe25519 *r);
void fe25519_setzero(fe25519 *r);
void fe25519_neg(fe25519 *r, const fe25519 *x);
unsigned char fe25519_getparity(const fe25519 *x);
void fe25519_add(fe25519 *r, const fe25519 *x, const fe25519 *y);
void fe25519_sub(fe25519 *r, const fe25519 *x, const fe25519 *y);
void fe25519_mul(fe25519 *r, const fe25519 *x, const fe25519 *y);
void fe25519_square(fe25519 *r, const fe25519 *x);
void fe25519_invert(fe25519 *r, const fe25519 *x);
void fe25519_pow2523(fe25519 *r, const fe25519 *x);
#endif

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/* $OpenBSD: ge25519.c,v 1.3 2013/12/09 11:03:45 markus Exp $ */
/*
* Public Domain, Authors: Daniel J. Bernstein, Niels Duif, Tanja Lange,
* Peter Schwabe, Bo-Yin Yang.
* Copied from supercop-20130419/crypto_sign/ed25519/ref/ge25519.c
*/
#include "includes.h"
#include "fe25519.h"
#include "sc25519.h"
#include "ge25519.h"
/*
* Arithmetic on the twisted Edwards curve -x^2 + y^2 = 1 + dx^2y^2
* with d = -(121665/121666) = 37095705934669439343138083508754565189542113879843219016388785533085940283555
* Base point: (15112221349535400772501151409588531511454012693041857206046113283949847762202,46316835694926478169428394003475163141307993866256225615783033603165251855960);
*/
/* d */
static const fe25519 ge25519_ecd = {{0xA3, 0x78, 0x59, 0x13, 0xCA, 0x4D, 0xEB, 0x75, 0xAB, 0xD8, 0x41, 0x41, 0x4D, 0x0A, 0x70, 0x00,
0x98, 0xE8, 0x79, 0x77, 0x79, 0x40, 0xC7, 0x8C, 0x73, 0xFE, 0x6F, 0x2B, 0xEE, 0x6C, 0x03, 0x52}};
/* 2*d */
static const fe25519 ge25519_ec2d = {{0x59, 0xF1, 0xB2, 0x26, 0x94, 0x9B, 0xD6, 0xEB, 0x56, 0xB1, 0x83, 0x82, 0x9A, 0x14, 0xE0, 0x00,
0x30, 0xD1, 0xF3, 0xEE, 0xF2, 0x80, 0x8E, 0x19, 0xE7, 0xFC, 0xDF, 0x56, 0xDC, 0xD9, 0x06, 0x24}};
/* sqrt(-1) */
static const fe25519 ge25519_sqrtm1 = {{0xB0, 0xA0, 0x0E, 0x4A, 0x27, 0x1B, 0xEE, 0xC4, 0x78, 0xE4, 0x2F, 0xAD, 0x06, 0x18, 0x43, 0x2F,
0xA7, 0xD7, 0xFB, 0x3D, 0x99, 0x00, 0x4D, 0x2B, 0x0B, 0xDF, 0xC1, 0x4F, 0x80, 0x24, 0x83, 0x2B}};
#define ge25519_p3 ge25519
typedef struct
{
fe25519 x;
fe25519 z;
fe25519 y;
fe25519 t;
} ge25519_p1p1;
typedef struct
{
fe25519 x;
fe25519 y;
fe25519 z;
} ge25519_p2;
typedef struct
{
fe25519 x;
fe25519 y;
} ge25519_aff;
/* Packed coordinates of the base point */
const ge25519 ge25519_base = {{{0x1A, 0xD5, 0x25, 0x8F, 0x60, 0x2D, 0x56, 0xC9, 0xB2, 0xA7, 0x25, 0x95, 0x60, 0xC7, 0x2C, 0x69,
0x5C, 0xDC, 0xD6, 0xFD, 0x31, 0xE2, 0xA4, 0xC0, 0xFE, 0x53, 0x6E, 0xCD, 0xD3, 0x36, 0x69, 0x21}},
{{0x58, 0x66, 0x66, 0x66, 0x66, 0x66, 0x66, 0x66, 0x66, 0x66, 0x66, 0x66, 0x66, 0x66, 0x66, 0x66,
0x66, 0x66, 0x66, 0x66, 0x66, 0x66, 0x66, 0x66, 0x66, 0x66, 0x66, 0x66, 0x66, 0x66, 0x66, 0x66}},
{{0x01, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00}},
{{0xA3, 0xDD, 0xB7, 0xA5, 0xB3, 0x8A, 0xDE, 0x6D, 0xF5, 0x52, 0x51, 0x77, 0x80, 0x9F, 0xF0, 0x20,
0x7D, 0xE3, 0xAB, 0x64, 0x8E, 0x4E, 0xEA, 0x66, 0x65, 0x76, 0x8B, 0xD7, 0x0F, 0x5F, 0x87, 0x67}}};
/* Multiples of the base point in affine representation */
static const ge25519_aff ge25519_base_multiples_affine[425] = {
#include "ge25519_base.data"
};
static void p1p1_to_p2(ge25519_p2 *r, const ge25519_p1p1 *p)
{
fe25519_mul(&r->x, &p->x, &p->t);
fe25519_mul(&r->y, &p->y, &p->z);
fe25519_mul(&r->z, &p->z, &p->t);
}
static void p1p1_to_p3(ge25519_p3 *r, const ge25519_p1p1 *p)
{
p1p1_to_p2((ge25519_p2 *)r, p);
fe25519_mul(&r->t, &p->x, &p->y);
}
static void ge25519_mixadd2(ge25519_p3 *r, const ge25519_aff *q)
{
fe25519 a,b,t1,t2,c,d,e,f,g,h,qt;
fe25519_mul(&qt, &q->x, &q->y);
fe25519_sub(&a, &r->y, &r->x); /* A = (Y1-X1)*(Y2-X2) */
fe25519_add(&b, &r->y, &r->x); /* B = (Y1+X1)*(Y2+X2) */
fe25519_sub(&t1, &q->y, &q->x);
fe25519_add(&t2, &q->y, &q->x);
fe25519_mul(&a, &a, &t1);
fe25519_mul(&b, &b, &t2);
fe25519_sub(&e, &b, &a); /* E = B-A */
fe25519_add(&h, &b, &a); /* H = B+A */
fe25519_mul(&c, &r->t, &qt); /* C = T1*k*T2 */
fe25519_mul(&c, &c, &ge25519_ec2d);
fe25519_add(&d, &r->z, &r->z); /* D = Z1*2 */
fe25519_sub(&f, &d, &c); /* F = D-C */
fe25519_add(&g, &d, &c); /* G = D+C */
fe25519_mul(&r->x, &e, &f);
fe25519_mul(&r->y, &h, &g);
fe25519_mul(&r->z, &g, &f);
fe25519_mul(&r->t, &e, &h);
}
static void add_p1p1(ge25519_p1p1 *r, const ge25519_p3 *p, const ge25519_p3 *q)
{
fe25519 a, b, c, d, t;
fe25519_sub(&a, &p->y, &p->x); /* A = (Y1-X1)*(Y2-X2) */
fe25519_sub(&t, &q->y, &q->x);
fe25519_mul(&a, &a, &t);
fe25519_add(&b, &p->x, &p->y); /* B = (Y1+X1)*(Y2+X2) */
fe25519_add(&t, &q->x, &q->y);
fe25519_mul(&b, &b, &t);
fe25519_mul(&c, &p->t, &q->t); /* C = T1*k*T2 */
fe25519_mul(&c, &c, &ge25519_ec2d);
fe25519_mul(&d, &p->z, &q->z); /* D = Z1*2*Z2 */
fe25519_add(&d, &d, &d);
fe25519_sub(&r->x, &b, &a); /* E = B-A */
fe25519_sub(&r->t, &d, &c); /* F = D-C */
fe25519_add(&r->z, &d, &c); /* G = D+C */
fe25519_add(&r->y, &b, &a); /* H = B+A */
}
/* See http://www.hyperelliptic.org/EFD/g1p/auto-twisted-extended-1.html#doubling-dbl-2008-hwcd */
static void dbl_p1p1(ge25519_p1p1 *r, const ge25519_p2 *p)
{
fe25519 a,b,c,d;
fe25519_square(&a, &p->x);
fe25519_square(&b, &p->y);
fe25519_square(&c, &p->z);
fe25519_add(&c, &c, &c);
fe25519_neg(&d, &a);
fe25519_add(&r->x, &p->x, &p->y);
fe25519_square(&r->x, &r->x);
fe25519_sub(&r->x, &r->x, &a);
fe25519_sub(&r->x, &r->x, &b);
fe25519_add(&r->z, &d, &b);
fe25519_sub(&r->t, &r->z, &c);
fe25519_sub(&r->y, &d, &b);
}
/* Constant-time version of: if(b) r = p */
static void cmov_aff(ge25519_aff *r, const ge25519_aff *p, unsigned char b)
{
fe25519_cmov(&r->x, &p->x, b);
fe25519_cmov(&r->y, &p->y, b);
}
static unsigned char equal(signed char b,signed char c)
{
unsigned char ub = b;
unsigned char uc = c;
unsigned char x = ub ^ uc; /* 0: yes; 1..255: no */
crypto_uint32 y = x; /* 0: yes; 1..255: no */
y -= 1; /* 4294967295: yes; 0..254: no */
y >>= 31; /* 1: yes; 0: no */
return y;
}
static unsigned char negative(signed char b)
{
unsigned long long x = b; /* 18446744073709551361..18446744073709551615: yes; 0..255: no */
x >>= 63; /* 1: yes; 0: no */
return x;
}
static void choose_t(ge25519_aff *t, unsigned long long pos, signed char b)
{
/* constant time */
fe25519 v;
*t = ge25519_base_multiples_affine[5*pos+0];
cmov_aff(t, &ge25519_base_multiples_affine[5*pos+1],equal(b,1) | equal(b,-1));
cmov_aff(t, &ge25519_base_multiples_affine[5*pos+2],equal(b,2) | equal(b,-2));
cmov_aff(t, &ge25519_base_multiples_affine[5*pos+3],equal(b,3) | equal(b,-3));
cmov_aff(t, &ge25519_base_multiples_affine[5*pos+4],equal(b,-4));
fe25519_neg(&v, &t->x);
fe25519_cmov(&t->x, &v, negative(b));
}
static void setneutral(ge25519 *r)
{
fe25519_setzero(&r->x);
fe25519_setone(&r->y);
fe25519_setone(&r->z);
fe25519_setzero(&r->t);
}
/* ********************************************************************
* EXPORTED FUNCTIONS
******************************************************************** */
/* return 0 on success, -1 otherwise */
int ge25519_unpackneg_vartime(ge25519_p3 *r, const unsigned char p[32])
{
unsigned char par;
fe25519 t, chk, num, den, den2, den4, den6;
fe25519_setone(&r->z);
par = p[31] >> 7;
fe25519_unpack(&r->y, p);
fe25519_square(&num, &r->y); /* x = y^2 */
fe25519_mul(&den, &num, &ge25519_ecd); /* den = dy^2 */
fe25519_sub(&num, &num, &r->z); /* x = y^2-1 */
fe25519_add(&den, &r->z, &den); /* den = dy^2+1 */
/* Computation of sqrt(num/den) */
/* 1.: computation of num^((p-5)/8)*den^((7p-35)/8) = (num*den^7)^((p-5)/8) */
fe25519_square(&den2, &den);
fe25519_square(&den4, &den2);
fe25519_mul(&den6, &den4, &den2);
fe25519_mul(&t, &den6, &num);
fe25519_mul(&t, &t, &den);
fe25519_pow2523(&t, &t);
/* 2. computation of r->x = t * num * den^3 */
fe25519_mul(&t, &t, &num);
fe25519_mul(&t, &t, &den);
fe25519_mul(&t, &t, &den);
fe25519_mul(&r->x, &t, &den);
/* 3. Check whether sqrt computation gave correct result, multiply by sqrt(-1) if not: */
fe25519_square(&chk, &r->x);
fe25519_mul(&chk, &chk, &den);
if (!fe25519_iseq_vartime(&chk, &num))
fe25519_mul(&r->x, &r->x, &ge25519_sqrtm1);
/* 4. Now we have one of the two square roots, except if input was not a square */
fe25519_square(&chk, &r->x);
fe25519_mul(&chk, &chk, &den);
if (!fe25519_iseq_vartime(&chk, &num))
return -1;
/* 5. Choose the desired square root according to parity: */
if(fe25519_getparity(&r->x) != (1-par))
fe25519_neg(&r->x, &r->x);
fe25519_mul(&r->t, &r->x, &r->y);
return 0;
}
void ge25519_pack(unsigned char r[32], const ge25519_p3 *p)
{
fe25519 tx, ty, zi;
fe25519_invert(&zi, &p->z);
fe25519_mul(&tx, &p->x, &zi);
fe25519_mul(&ty, &p->y, &zi);
fe25519_pack(r, &ty);
r[31] ^= fe25519_getparity(&tx) << 7;
}
int ge25519_isneutral_vartime(const ge25519_p3 *p)
{
int ret = 1;
if(!fe25519_iszero(&p->x)) ret = 0;
if(!fe25519_iseq_vartime(&p->y, &p->z)) ret = 0;
return ret;
}
/* computes [s1]p1 + [s2]p2 */
void ge25519_double_scalarmult_vartime(ge25519_p3 *r, const ge25519_p3 *p1, const sc25519 *s1, const ge25519_p3 *p2, const sc25519 *s2)
{
ge25519_p1p1 tp1p1;
ge25519_p3 pre[16];
unsigned char b[127];
int i;
/* precomputation s2 s1 */
setneutral(pre); /* 00 00 */
pre[1] = *p1; /* 00 01 */
dbl_p1p1(&tp1p1,(ge25519_p2 *)p1); p1p1_to_p3( &pre[2], &tp1p1); /* 00 10 */
add_p1p1(&tp1p1,&pre[1], &pre[2]); p1p1_to_p3( &pre[3], &tp1p1); /* 00 11 */
pre[4] = *p2; /* 01 00 */
add_p1p1(&tp1p1,&pre[1], &pre[4]); p1p1_to_p3( &pre[5], &tp1p1); /* 01 01 */
add_p1p1(&tp1p1,&pre[2], &pre[4]); p1p1_to_p3( &pre[6], &tp1p1); /* 01 10 */
add_p1p1(&tp1p1,&pre[3], &pre[4]); p1p1_to_p3( &pre[7], &tp1p1); /* 01 11 */
dbl_p1p1(&tp1p1,(ge25519_p2 *)p2); p1p1_to_p3( &pre[8], &tp1p1); /* 10 00 */
add_p1p1(&tp1p1,&pre[1], &pre[8]); p1p1_to_p3( &pre[9], &tp1p1); /* 10 01 */
dbl_p1p1(&tp1p1,(ge25519_p2 *)&pre[5]); p1p1_to_p3(&pre[10], &tp1p1); /* 10 10 */
add_p1p1(&tp1p1,&pre[3], &pre[8]); p1p1_to_p3(&pre[11], &tp1p1); /* 10 11 */
add_p1p1(&tp1p1,&pre[4], &pre[8]); p1p1_to_p3(&pre[12], &tp1p1); /* 11 00 */
add_p1p1(&tp1p1,&pre[1],&pre[12]); p1p1_to_p3(&pre[13], &tp1p1); /* 11 01 */
add_p1p1(&tp1p1,&pre[2],&pre[12]); p1p1_to_p3(&pre[14], &tp1p1); /* 11 10 */
add_p1p1(&tp1p1,&pre[3],&pre[12]); p1p1_to_p3(&pre[15], &tp1p1); /* 11 11 */
sc25519_2interleave2(b,s1,s2);
/* scalar multiplication */
*r = pre[b[126]];
for(i=125;i>=0;i--)
{
dbl_p1p1(&tp1p1, (ge25519_p2 *)r);
p1p1_to_p2((ge25519_p2 *) r, &tp1p1);
dbl_p1p1(&tp1p1, (ge25519_p2 *)r);
if(b[i]!=0)
{
p1p1_to_p3(r, &tp1p1);
add_p1p1(&tp1p1, r, &pre[b[i]]);
}
if(i != 0) p1p1_to_p2((ge25519_p2 *)r, &tp1p1);
else p1p1_to_p3(r, &tp1p1);
}
}
void ge25519_scalarmult_base(ge25519_p3 *r, const sc25519 *s)
{
signed char b[85];
int i;
ge25519_aff t;
sc25519_window3(b,s);
choose_t((ge25519_aff *)r, 0, b[0]);
fe25519_setone(&r->z);
fe25519_mul(&r->t, &r->x, &r->y);
for(i=1;i<85;i++)
{
choose_t(&t, (unsigned long long) i, b[i]);
ge25519_mixadd2(r, &t);
}
}

43
crypto/openssh/ge25519.h Normal file
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/* $OpenBSD: ge25519.h,v 1.3 2013/12/09 11:03:45 markus Exp $ */
/*
* Public Domain, Authors: Daniel J. Bernstein, Niels Duif, Tanja Lange,
* Peter Schwabe, Bo-Yin Yang.
* Copied from supercop-20130419/crypto_sign/ed25519/ref/ge25519.h
*/
#ifndef GE25519_H
#define GE25519_H
#include "fe25519.h"
#include "sc25519.h"
#define ge25519 crypto_sign_ed25519_ref_ge25519
#define ge25519_base crypto_sign_ed25519_ref_ge25519_base
#define ge25519_unpackneg_vartime crypto_sign_ed25519_ref_unpackneg_vartime
#define ge25519_pack crypto_sign_ed25519_ref_pack
#define ge25519_isneutral_vartime crypto_sign_ed25519_ref_isneutral_vartime
#define ge25519_double_scalarmult_vartime crypto_sign_ed25519_ref_double_scalarmult_vartime
#define ge25519_scalarmult_base crypto_sign_ed25519_ref_scalarmult_base
typedef struct
{
fe25519 x;
fe25519 y;
fe25519 z;
fe25519 t;
} ge25519;
const ge25519 ge25519_base;
int ge25519_unpackneg_vartime(ge25519 *r, const unsigned char p[32]);
void ge25519_pack(unsigned char r[32], const ge25519 *p);
int ge25519_isneutral_vartime(const ge25519 *p);
void ge25519_double_scalarmult_vartime(ge25519 *r, const ge25519 *p1, const sc25519 *s1, const ge25519 *p2, const sc25519 *s2);
void ge25519_scalarmult_base(ge25519 *r, const sc25519 *s);
#endif

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/* $OpenBSD: ge25519_base.data,v 1.3 2013/12/09 11:03:45 markus Exp $ */
/*
* Public Domain, Authors: Daniel J. Bernstein, Niels Duif, Tanja Lange,
* Peter Schwabe, Bo-Yin Yang.
* Copied from supercop-20130419/crypto_sign/ed25519/ref/ge25519_base.data
*/
{{{0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00}},
{{0x01, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00}}},
{{{0x1a, 0xd5, 0x25, 0x8f, 0x60, 0x2d, 0x56, 0xc9, 0xb2, 0xa7, 0x25, 0x95, 0x60, 0xc7, 0x2c, 0x69, 0x5c, 0xdc, 0xd6, 0xfd, 0x31, 0xe2, 0xa4, 0xc0, 0xfe, 0x53, 0x6e, 0xcd, 0xd3, 0x36, 0x69, 0x21}} ,
{{0x58, 0x66, 0x66, 0x66, 0x66, 0x66, 0x66, 0x66, 0x66, 0x66, 0x66, 0x66, 0x66, 0x66, 0x66, 0x66, 0x66, 0x66, 0x66, 0x66, 0x66, 0x66, 0x66, 0x66, 0x66, 0x66, 0x66, 0x66, 0x66, 0x66, 0x66, 0x66}}},
{{{0x0e, 0xce, 0x43, 0x28, 0x4e, 0xa1, 0xc5, 0x83, 0x5f, 0xa4, 0xd7, 0x15, 0x45, 0x8e, 0x0d, 0x08, 0xac, 0xe7, 0x33, 0x18, 0x7d, 0x3b, 0x04, 0x3d, 0x6c, 0x04, 0x5a, 0x9f, 0x4c, 0x38, 0xab, 0x36}} ,
{{0xc9, 0xa3, 0xf8, 0x6a, 0xae, 0x46, 0x5f, 0x0e, 0x56, 0x51, 0x38, 0x64, 0x51, 0x0f, 0x39, 0x97, 0x56, 0x1f, 0xa2, 0xc9, 0xe8, 0x5e, 0xa2, 0x1d, 0xc2, 0x29, 0x23, 0x09, 0xf3, 0xcd, 0x60, 0x22}}},
{{{0x5c, 0xe2, 0xf8, 0xd3, 0x5f, 0x48, 0x62, 0xac, 0x86, 0x48, 0x62, 0x81, 0x19, 0x98, 0x43, 0x63, 0x3a, 0xc8, 0xda, 0x3e, 0x74, 0xae, 0xf4, 0x1f, 0x49, 0x8f, 0x92, 0x22, 0x4a, 0x9c, 0xae, 0x67}} ,
{{0xd4, 0xb4, 0xf5, 0x78, 0x48, 0x68, 0xc3, 0x02, 0x04, 0x03, 0x24, 0x67, 0x17, 0xec, 0x16, 0x9f, 0xf7, 0x9e, 0x26, 0x60, 0x8e, 0xa1, 0x26, 0xa1, 0xab, 0x69, 0xee, 0x77, 0xd1, 0xb1, 0x67, 0x12}}},
{{{0x70, 0xf8, 0xc9, 0xc4, 0x57, 0xa6, 0x3a, 0x49, 0x47, 0x15, 0xce, 0x93, 0xc1, 0x9e, 0x73, 0x1a, 0xf9, 0x20, 0x35, 0x7a, 0xb8, 0xd4, 0x25, 0x83, 0x46, 0xf1, 0xcf, 0x56, 0xdb, 0xa8, 0x3d, 0x20}} ,
{{0x2f, 0x11, 0x32, 0xca, 0x61, 0xab, 0x38, 0xdf, 0xf0, 0x0f, 0x2f, 0xea, 0x32, 0x28, 0xf2, 0x4c, 0x6c, 0x71, 0xd5, 0x80, 0x85, 0xb8, 0x0e, 0x47, 0xe1, 0x95, 0x15, 0xcb, 0x27, 0xe8, 0xd0, 0x47}}},
{{{0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00}},
{{0x01, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00}}},
{{{0xc8, 0x84, 0xa5, 0x08, 0xbc, 0xfd, 0x87, 0x3b, 0x99, 0x8b, 0x69, 0x80, 0x7b, 0xc6, 0x3a, 0xeb, 0x93, 0xcf, 0x4e, 0xf8, 0x5c, 0x2d, 0x86, 0x42, 0xb6, 0x71, 0xd7, 0x97, 0x5f, 0xe1, 0x42, 0x67}} ,
{{0xb4, 0xb9, 0x37, 0xfc, 0xa9, 0x5b, 0x2f, 0x1e, 0x93, 0xe4, 0x1e, 0x62, 0xfc, 0x3c, 0x78, 0x81, 0x8f, 0xf3, 0x8a, 0x66, 0x09, 0x6f, 0xad, 0x6e, 0x79, 0x73, 0xe5, 0xc9, 0x00, 0x06, 0xd3, 0x21}}},
{{{0xf8, 0xf9, 0x28, 0x6c, 0x6d, 0x59, 0xb2, 0x59, 0x74, 0x23, 0xbf, 0xe7, 0x33, 0x8d, 0x57, 0x09, 0x91, 0x9c, 0x24, 0x08, 0x15, 0x2b, 0xe2, 0xb8, 0xee, 0x3a, 0xe5, 0x27, 0x06, 0x86, 0xa4, 0x23}} ,
{{0xeb, 0x27, 0x67, 0xc1, 0x37, 0xab, 0x7a, 0xd8, 0x27, 0x9c, 0x07, 0x8e, 0xff, 0x11, 0x6a, 0xb0, 0x78, 0x6e, 0xad, 0x3a, 0x2e, 0x0f, 0x98, 0x9f, 0x72, 0xc3, 0x7f, 0x82, 0xf2, 0x96, 0x96, 0x70}}},
{{{0x81, 0x6b, 0x88, 0xe8, 0x1e, 0xc7, 0x77, 0x96, 0x0e, 0xa1, 0xa9, 0x52, 0xe0, 0xd8, 0x0e, 0x61, 0x9e, 0x79, 0x2d, 0x95, 0x9c, 0x8d, 0x96, 0xe0, 0x06, 0x40, 0x5d, 0x87, 0x28, 0x5f, 0x98, 0x70}} ,
{{0xf1, 0x79, 0x7b, 0xed, 0x4f, 0x44, 0xb2, 0xe7, 0x08, 0x0d, 0xc2, 0x08, 0x12, 0xd2, 0x9f, 0xdf, 0xcd, 0x93, 0x20, 0x8a, 0xcf, 0x33, 0xca, 0x6d, 0x89, 0xb9, 0x77, 0xc8, 0x93, 0x1b, 0x4e, 0x60}}},
{{{0x26, 0x4f, 0x7e, 0x97, 0xf6, 0x40, 0xdd, 0x4f, 0xfc, 0x52, 0x78, 0xf9, 0x90, 0x31, 0x03, 0xe6, 0x7d, 0x56, 0x39, 0x0b, 0x1d, 0x56, 0x82, 0x85, 0xf9, 0x1a, 0x42, 0x17, 0x69, 0x6c, 0xcf, 0x39}} ,
{{0x69, 0xd2, 0x06, 0x3a, 0x4f, 0x39, 0x2d, 0xf9, 0x38, 0x40, 0x8c, 0x4c, 0xe7, 0x05, 0x12, 0xb4, 0x78, 0x8b, 0xf8, 0xc0, 0xec, 0x93, 0xde, 0x7a, 0x6b, 0xce, 0x2c, 0xe1, 0x0e, 0xa9, 0x34, 0x44}}},
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{{{0x1a, 0xea, 0xbf, 0xfd, 0x4a, 0x3c, 0x8e, 0xec, 0x29, 0x7e, 0x77, 0x77, 0x12, 0x99, 0xd7, 0x84, 0xf9, 0x55, 0x7f, 0xf1, 0x8b, 0xb4, 0xd2, 0x95, 0xa3, 0x8d, 0xf0, 0x8a, 0xa7, 0xeb, 0x82, 0x4b}} ,
{{0x2c, 0x28, 0xf4, 0x3a, 0xf6, 0xde, 0x0a, 0xe0, 0x41, 0x44, 0x23, 0xf8, 0x3f, 0x03, 0x64, 0x9f, 0xc3, 0x55, 0x4c, 0xc6, 0xc1, 0x94, 0x1c, 0x24, 0x5d, 0x5f, 0x92, 0x45, 0x96, 0x57, 0x37, 0x14}}},
{{{0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00}},
{{0x01, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00}}},
{{{0xc1, 0xcd, 0x90, 0x66, 0xb9, 0x76, 0xa0, 0x5b, 0xa5, 0x85, 0x75, 0x23, 0xf9, 0x89, 0xa5, 0x82, 0xb2, 0x6f, 0xb1, 0xeb, 0xc4, 0x69, 0x6f, 0x18, 0x5a, 0xed, 0x94, 0x3d, 0x9d, 0xd9, 0x2c, 0x1a}} ,
{{0x35, 0xb0, 0xe6, 0x73, 0x06, 0xb7, 0x37, 0xe0, 0xf8, 0xb0, 0x22, 0xe8, 0xd2, 0xed, 0x0b, 0xef, 0xe6, 0xc6, 0x5a, 0x99, 0x9e, 0x1a, 0x9f, 0x04, 0x97, 0xe4, 0x4d, 0x0b, 0xbe, 0xba, 0x44, 0x40}}},
{{{0xc1, 0x56, 0x96, 0x91, 0x5f, 0x1f, 0xbb, 0x54, 0x6f, 0x88, 0x89, 0x0a, 0xb2, 0xd6, 0x41, 0x42, 0x6a, 0x82, 0xee, 0x14, 0xaa, 0x76, 0x30, 0x65, 0x0f, 0x67, 0x39, 0xa6, 0x51, 0x7c, 0x49, 0x24}} ,
{{0x35, 0xa3, 0x78, 0xd1, 0x11, 0x0f, 0x75, 0xd3, 0x70, 0x46, 0xdb, 0x20, 0x51, 0xcb, 0x92, 0x80, 0x54, 0x10, 0x74, 0x36, 0x86, 0xa9, 0xd7, 0xa3, 0x08, 0x78, 0xf1, 0x01, 0x29, 0xf8, 0x80, 0x3b}}},
{{{0xdb, 0xa7, 0x9d, 0x9d, 0xbf, 0xa0, 0xcc, 0xed, 0x53, 0xa2, 0xa2, 0x19, 0x39, 0x48, 0x83, 0x19, 0x37, 0x58, 0xd1, 0x04, 0x28, 0x40, 0xf7, 0x8a, 0xc2, 0x08, 0xb7, 0xa5, 0x42, 0xcf, 0x53, 0x4c}} ,
{{0xa7, 0xbb, 0xf6, 0x8e, 0xad, 0xdd, 0xf7, 0x90, 0xdd, 0x5f, 0x93, 0x89, 0xae, 0x04, 0x37, 0xe6, 0x9a, 0xb7, 0xe8, 0xc0, 0xdf, 0x16, 0x2a, 0xbf, 0xc4, 0x3a, 0x3c, 0x41, 0xd5, 0x89, 0x72, 0x5a}}},
{{{0x1f, 0x96, 0xff, 0x34, 0x2c, 0x13, 0x21, 0xcb, 0x0a, 0x89, 0x85, 0xbe, 0xb3, 0x70, 0x9e, 0x1e, 0xde, 0x97, 0xaf, 0x96, 0x30, 0xf7, 0x48, 0x89, 0x40, 0x8d, 0x07, 0xf1, 0x25, 0xf0, 0x30, 0x58}} ,
{{0x1e, 0xd4, 0x93, 0x57, 0xe2, 0x17, 0xe7, 0x9d, 0xab, 0x3c, 0x55, 0x03, 0x82, 0x2f, 0x2b, 0xdb, 0x56, 0x1e, 0x30, 0x2e, 0x24, 0x47, 0x6e, 0xe6, 0xff, 0x33, 0x24, 0x2c, 0x75, 0x51, 0xd4, 0x67}}},
{{{0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00}},
{{0x01, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00}}},
{{{0x2b, 0x06, 0xd9, 0xa1, 0x5d, 0xe1, 0xf4, 0xd1, 0x1e, 0x3c, 0x9a, 0xc6, 0x29, 0x2b, 0x13, 0x13, 0x78, 0xc0, 0xd8, 0x16, 0x17, 0x2d, 0x9e, 0xa9, 0xc9, 0x79, 0x57, 0xab, 0x24, 0x91, 0x92, 0x19}} ,
{{0x69, 0xfb, 0xa1, 0x9c, 0xa6, 0x75, 0x49, 0x7d, 0x60, 0x73, 0x40, 0x42, 0xc4, 0x13, 0x0a, 0x95, 0x79, 0x1e, 0x04, 0x83, 0x94, 0x99, 0x9b, 0x1e, 0x0c, 0xe8, 0x1f, 0x54, 0xef, 0xcb, 0xc0, 0x52}}},
{{{0x14, 0x89, 0x73, 0xa1, 0x37, 0x87, 0x6a, 0x7a, 0xcf, 0x1d, 0xd9, 0x2e, 0x1a, 0x67, 0xed, 0x74, 0xc0, 0xf0, 0x9c, 0x33, 0xdd, 0xdf, 0x08, 0xbf, 0x7b, 0xd1, 0x66, 0xda, 0xe6, 0xc9, 0x49, 0x08}} ,
{{0xe9, 0xdd, 0x5e, 0x55, 0xb0, 0x0a, 0xde, 0x21, 0x4c, 0x5a, 0x2e, 0xd4, 0x80, 0x3a, 0x57, 0x92, 0x7a, 0xf1, 0xc4, 0x2c, 0x40, 0xaf, 0x2f, 0xc9, 0x92, 0x03, 0xe5, 0x5a, 0xbc, 0xdc, 0xf4, 0x09}}},
{{{0xf3, 0xe1, 0x2b, 0x7c, 0x05, 0x86, 0x80, 0x93, 0x4a, 0xad, 0xb4, 0x8f, 0x7e, 0x99, 0x0c, 0xfd, 0xcd, 0xef, 0xd1, 0xff, 0x2c, 0x69, 0x34, 0x13, 0x41, 0x64, 0xcf, 0x3b, 0xd0, 0x90, 0x09, 0x1e}} ,
{{0x9d, 0x45, 0xd6, 0x80, 0xe6, 0x45, 0xaa, 0xf4, 0x15, 0xaa, 0x5c, 0x34, 0x87, 0x99, 0xa2, 0x8c, 0x26, 0x84, 0x62, 0x7d, 0xb6, 0x29, 0xc0, 0x52, 0xea, 0xf5, 0x81, 0x18, 0x0f, 0x35, 0xa9, 0x0e}}},
{{{0xe7, 0x20, 0x72, 0x7c, 0x6d, 0x94, 0x5f, 0x52, 0x44, 0x54, 0xe3, 0xf1, 0xb2, 0xb0, 0x36, 0x46, 0x0f, 0xae, 0x92, 0xe8, 0x70, 0x9d, 0x6e, 0x79, 0xb1, 0xad, 0x37, 0xa9, 0x5f, 0xc0, 0xde, 0x03}} ,
{{0x15, 0x55, 0x37, 0xc6, 0x1c, 0x27, 0x1c, 0x6d, 0x14, 0x4f, 0xca, 0xa4, 0xc4, 0x88, 0x25, 0x46, 0x39, 0xfc, 0x5a, 0xe5, 0xfe, 0x29, 0x11, 0x69, 0xf5, 0x72, 0x84, 0x4d, 0x78, 0x9f, 0x94, 0x15}}},
{{{0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00}},
{{0x01, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00}}},
{{{0xec, 0xd3, 0xff, 0x57, 0x0b, 0xb0, 0xb2, 0xdc, 0xf8, 0x4f, 0xe2, 0x12, 0xd5, 0x36, 0xbe, 0x6b, 0x09, 0x43, 0x6d, 0xa3, 0x4d, 0x90, 0x2d, 0xb8, 0x74, 0xe8, 0x71, 0x45, 0x19, 0x8b, 0x0c, 0x6a}} ,
{{0xb8, 0x42, 0x1c, 0x03, 0xad, 0x2c, 0x03, 0x8e, 0xac, 0xd7, 0x98, 0x29, 0x13, 0xc6, 0x02, 0x29, 0xb5, 0xd4, 0xe7, 0xcf, 0xcc, 0x8b, 0x83, 0xec, 0x35, 0xc7, 0x9c, 0x74, 0xb7, 0xad, 0x85, 0x5f}}},
{{{0x78, 0x84, 0xe1, 0x56, 0x45, 0x69, 0x68, 0x5a, 0x4f, 0xb8, 0xb1, 0x29, 0xff, 0x33, 0x03, 0x31, 0xb7, 0xcb, 0x96, 0x25, 0xe6, 0xe6, 0x41, 0x98, 0x1a, 0xbb, 0x03, 0x56, 0xf2, 0xb2, 0x91, 0x34}} ,
{{0x2c, 0x6c, 0xf7, 0x66, 0xa4, 0x62, 0x6b, 0x39, 0xb3, 0xba, 0x65, 0xd3, 0x1c, 0xf8, 0x11, 0xaa, 0xbe, 0xdc, 0x80, 0x59, 0x87, 0xf5, 0x7b, 0xe5, 0xe3, 0xb3, 0x3e, 0x39, 0xda, 0xbe, 0x88, 0x09}}},
{{{0x8b, 0xf1, 0xa0, 0xf5, 0xdc, 0x29, 0xb4, 0xe2, 0x07, 0xc6, 0x7a, 0x00, 0xd0, 0x89, 0x17, 0x51, 0xd4, 0xbb, 0xd4, 0x22, 0xea, 0x7e, 0x7d, 0x7c, 0x24, 0xea, 0xf2, 0xe8, 0x22, 0x12, 0x95, 0x06}} ,
{{0xda, 0x7c, 0xa4, 0x0c, 0xf4, 0xba, 0x6e, 0xe1, 0x89, 0xb5, 0x59, 0xca, 0xf1, 0xc0, 0x29, 0x36, 0x09, 0x44, 0xe2, 0x7f, 0xd1, 0x63, 0x15, 0x99, 0xea, 0x25, 0xcf, 0x0c, 0x9d, 0xc0, 0x44, 0x6f}}},
{{{0x1d, 0x86, 0x4e, 0xcf, 0xf7, 0x37, 0x10, 0x25, 0x8f, 0x12, 0xfb, 0x19, 0xfb, 0xe0, 0xed, 0x10, 0xc8, 0xe2, 0xf5, 0x75, 0xb1, 0x33, 0xc0, 0x96, 0x0d, 0xfb, 0x15, 0x6c, 0x0d, 0x07, 0x5f, 0x05}} ,
{{0x69, 0x3e, 0x47, 0x97, 0x2c, 0xaf, 0x52, 0x7c, 0x78, 0x83, 0xad, 0x1b, 0x39, 0x82, 0x2f, 0x02, 0x6f, 0x47, 0xdb, 0x2a, 0xb0, 0xe1, 0x91, 0x99, 0x55, 0xb8, 0x99, 0x3a, 0xa0, 0x44, 0x11, 0x51}}}

View File

@ -132,10 +132,16 @@ ssh_gssapi_krb5_storecreds(ssh_gssapi_client *client)
return;
#ifdef HEIMDAL
# ifdef HAVE_KRB5_CC_NEW_UNIQUE
if ((problem = krb5_cc_new_unique(krb_context, krb5_fcc_ops.prefix,
NULL, &ccache)) != 0) {
errmsg = krb5_get_error_message(krb_context, problem);
logit("krb5_cc_new_unique(): %.100s", errmsg);
# else
if ((problem = krb5_cc_gen_new(krb_context, &krb5_fcc_ops, &ccache))) {
logit("krb5_cc_gen_new(): %.100s",
krb5_get_err_text(krb_context, problem));
# endif
krb5_free_error_message(krb_context, errmsg);
return;
}

76
crypto/openssh/hash.c Normal file
View File

@ -0,0 +1,76 @@
/* $OpenBSD: hash.c,v 1.3 2013/12/09 11:03:45 markus Exp $ */
/* Copied from nacl-20110221/crypto_hash/sha512/ref/hash.c */
/*
20080913
D. J. Bernstein
Public domain.
*/
#include "includes.h"
#include "crypto_api.h"
#define blocks crypto_hashblocks_sha512
static const unsigned char iv[64] = {
0x6a,0x09,0xe6,0x67,0xf3,0xbc,0xc9,0x08,
0xbb,0x67,0xae,0x85,0x84,0xca,0xa7,0x3b,
0x3c,0x6e,0xf3,0x72,0xfe,0x94,0xf8,0x2b,
0xa5,0x4f,0xf5,0x3a,0x5f,0x1d,0x36,0xf1,
0x51,0x0e,0x52,0x7f,0xad,0xe6,0x82,0xd1,
0x9b,0x05,0x68,0x8c,0x2b,0x3e,0x6c,0x1f,
0x1f,0x83,0xd9,0xab,0xfb,0x41,0xbd,0x6b,
0x5b,0xe0,0xcd,0x19,0x13,0x7e,0x21,0x79
} ;
typedef unsigned long long uint64;
int crypto_hash_sha512(unsigned char *out,const unsigned char *in,unsigned long long inlen)
{
unsigned char h[64];
unsigned char padded[256];
unsigned int i;
unsigned long long bytes = inlen;
for (i = 0;i < 64;++i) h[i] = iv[i];
blocks(h,in,inlen);
in += inlen;
inlen &= 127;
in -= inlen;
for (i = 0;i < inlen;++i) padded[i] = in[i];
padded[inlen] = 0x80;
if (inlen < 112) {
for (i = inlen + 1;i < 119;++i) padded[i] = 0;
padded[119] = bytes >> 61;
padded[120] = bytes >> 53;
padded[121] = bytes >> 45;
padded[122] = bytes >> 37;
padded[123] = bytes >> 29;
padded[124] = bytes >> 21;
padded[125] = bytes >> 13;
padded[126] = bytes >> 5;
padded[127] = bytes << 3;
blocks(h,padded,128);
} else {
for (i = inlen + 1;i < 247;++i) padded[i] = 0;
padded[247] = bytes >> 61;
padded[248] = bytes >> 53;
padded[249] = bytes >> 45;
padded[250] = bytes >> 37;
padded[251] = bytes >> 29;
padded[252] = bytes >> 21;
padded[253] = bytes >> 13;
padded[254] = bytes >> 5;
padded[255] = bytes << 3;
blocks(h,padded,256);
}
for (i = 0;i < 64;++i) out[i] = h[i];
return 0;
}

View File

@ -1,4 +1,4 @@
/* $OpenBSD: hostfile.c,v 1.52 2013/07/12 00:19:58 djm Exp $ */
/* $OpenBSD: hostfile.c,v 1.53 2014/01/09 23:20:00 djm Exp $ */
/*
* Author: Tatu Ylonen <ylo@cs.hut.fi>
* Copyright (c) 1995 Tatu Ylonen <ylo@cs.hut.fi>, Espoo, Finland
@ -57,6 +57,7 @@
#include "hostfile.h"
#include "log.h"
#include "misc.h"
#include "digest.h"
struct hostkeys {
struct hostkey_entry *entries;

View File

@ -1,4 +1,4 @@
/* $OpenBSD: kex.c,v 1.91 2013/05/17 00:13:13 djm Exp $ */
/* $OpenBSD: kex.c,v 1.97 2014/01/25 20:35:37 markus Exp $ */
/* $FreeBSD$ */
/*
* Copyright (c) 2000, 2001 Markus Friedl. All rights reserved.
@ -50,6 +50,7 @@
#include "dispatch.h"
#include "monitor.h"
#include "roaming.h"
#include "digest.h"
#if OPENSSL_VERSION_NUMBER >= 0x00907000L
# if defined(HAVE_EVP_SHA256)
@ -67,25 +68,34 @@ struct kexalg {
char *name;
int type;
int ec_nid;
const EVP_MD *(*mdfunc)(void);
int hash_alg;
};
static const struct kexalg kexalgs[] = {
{ KEX_DH1, KEX_DH_GRP1_SHA1, 0, EVP_sha1 },
{ KEX_DH14, KEX_DH_GRP14_SHA1, 0, EVP_sha1 },
{ KEX_DHGEX_SHA1, KEX_DH_GEX_SHA1, 0, EVP_sha1 },
{ KEX_DH1, KEX_DH_GRP1_SHA1, 0, SSH_DIGEST_SHA1 },
{ KEX_DH14, KEX_DH_GRP14_SHA1, 0, SSH_DIGEST_SHA1 },
{ KEX_DHGEX_SHA1, KEX_DH_GEX_SHA1, 0, SSH_DIGEST_SHA1 },
#ifdef HAVE_EVP_SHA256
{ KEX_DHGEX_SHA256, KEX_DH_GEX_SHA256, 0, EVP_sha256 },
{ KEX_DHGEX_SHA256, KEX_DH_GEX_SHA256, 0, SSH_DIGEST_SHA256 },
#endif
#ifdef OPENSSL_HAS_ECC
{ KEX_ECDH_SHA2_NISTP256, KEX_ECDH_SHA2, NID_X9_62_prime256v1, EVP_sha256 },
{ KEX_ECDH_SHA2_NISTP384, KEX_ECDH_SHA2, NID_secp384r1, EVP_sha384 },
{ KEX_ECDH_SHA2_NISTP521, KEX_ECDH_SHA2, NID_secp521r1, EVP_sha512 },
{ KEX_ECDH_SHA2_NISTP256, KEX_ECDH_SHA2,
NID_X9_62_prime256v1, SSH_DIGEST_SHA256 },
{ KEX_ECDH_SHA2_NISTP384, KEX_ECDH_SHA2, NID_secp384r1,
SSH_DIGEST_SHA384 },
# ifdef OPENSSL_HAS_NISTP521
{ KEX_ECDH_SHA2_NISTP521, KEX_ECDH_SHA2, NID_secp521r1,
SSH_DIGEST_SHA512 },
# endif
#endif
{ NULL, -1, -1, NULL},
{ KEX_DH1, KEX_DH_GRP1_SHA1, 0, SSH_DIGEST_SHA1 },
#ifdef HAVE_EVP_SHA256
{ KEX_CURVE25519_SHA256, KEX_C25519_SHA256, 0, SSH_DIGEST_SHA256 },
#endif
{ NULL, -1, -1, -1},
};
char *
kex_alg_list(void)
kex_alg_list(char sep)
{
char *ret = NULL;
size_t nlen, rlen = 0;
@ -93,7 +103,7 @@ kex_alg_list(void)
for (k = kexalgs; k->name != NULL; k++) {
if (ret != NULL)
ret[rlen++] = '\n';
ret[rlen++] = sep;
nlen = strlen(k->name);
ret = xrealloc(ret, 1, rlen + nlen + 2);
memcpy(ret + rlen, k->name, nlen + 1);
@ -407,7 +417,7 @@ choose_kex(Kex *k, char *client, char *server)
if ((kexalg = kex_alg_by_name(k->name)) == NULL)
fatal("unsupported kex alg %s", k->name);
k->kex_type = kexalg->type;
k->evp_md = kexalg->mdfunc();
k->hash_alg = kexalg->hash_alg;
k->ec_nid = kexalg->ec_nid;
}
@ -454,7 +464,7 @@ kex_choose_conf(Kex *kex)
char **my, **peer;
char **cprop, **sprop;
int nenc, nmac, ncomp;
u_int mode, ctos, need, authlen;
u_int mode, ctos, need, dh_need, authlen;
int first_kex_follows, type;
#ifdef NONE_CIPHER_ENABLED
int auth_flag;
@ -520,20 +530,21 @@ kex_choose_conf(Kex *kex)
choose_kex(kex, cprop[PROPOSAL_KEX_ALGS], sprop[PROPOSAL_KEX_ALGS]);
choose_hostkeyalg(kex, cprop[PROPOSAL_SERVER_HOST_KEY_ALGS],
sprop[PROPOSAL_SERVER_HOST_KEY_ALGS]);
need = 0;
need = dh_need = 0;
for (mode = 0; mode < MODE_MAX; mode++) {
newkeys = kex->newkeys[mode];
if (need < newkeys->enc.key_len)
need = newkeys->enc.key_len;
if (need < newkeys->enc.block_size)
need = newkeys->enc.block_size;
if (need < newkeys->enc.iv_len)
need = newkeys->enc.iv_len;
if (need < newkeys->mac.key_len)
need = newkeys->mac.key_len;
need = MAX(need, newkeys->enc.key_len);
need = MAX(need, newkeys->enc.block_size);
need = MAX(need, newkeys->enc.iv_len);
need = MAX(need, newkeys->mac.key_len);
dh_need = MAX(dh_need, cipher_seclen(newkeys->enc.cipher));
dh_need = MAX(dh_need, newkeys->enc.block_size);
dh_need = MAX(dh_need, newkeys->enc.iv_len);
dh_need = MAX(dh_need, newkeys->mac.key_len);
}
/* XXX need runden? */
kex->we_need = need;
kex->dh_need = dh_need;
/* ignore the next message if the proposals do not match */
if (first_kex_follows && !proposals_match(my, peer) &&
@ -548,30 +559,34 @@ kex_choose_conf(Kex *kex)
static u_char *
derive_key(Kex *kex, int id, u_int need, u_char *hash, u_int hashlen,
BIGNUM *shared_secret)
const u_char *shared_secret, u_int slen)
{
Buffer b;
EVP_MD_CTX md;
struct ssh_digest_ctx *hashctx;
char c = id;
u_int have;
int mdsz;
size_t mdsz;
u_char *digest;
if ((mdsz = EVP_MD_size(kex->evp_md)) <= 0)
fatal("bad kex md size %d", mdsz);
if ((mdsz = ssh_digest_bytes(kex->hash_alg)) == 0)
fatal("bad kex md size %zu", mdsz);
digest = xmalloc(roundup(need, mdsz));
buffer_init(&b);
buffer_put_bignum2(&b, shared_secret);
buffer_append(&b, shared_secret, slen);
/* K1 = HASH(K || H || "A" || session_id) */
EVP_DigestInit(&md, kex->evp_md);
if (!(datafellows & SSH_BUG_DERIVEKEY))
EVP_DigestUpdate(&md, buffer_ptr(&b), buffer_len(&b));
EVP_DigestUpdate(&md, hash, hashlen);
EVP_DigestUpdate(&md, &c, 1);
EVP_DigestUpdate(&md, kex->session_id, kex->session_id_len);
EVP_DigestFinal(&md, digest, NULL);
if ((hashctx = ssh_digest_start(kex->hash_alg)) == NULL)
fatal("%s: ssh_digest_start failed", __func__);
if (ssh_digest_update_buffer(hashctx, &b) != 0 ||
ssh_digest_update(hashctx, hash, hashlen) != 0 ||
ssh_digest_update(hashctx, &c, 1) != 0 ||
ssh_digest_update(hashctx, kex->session_id,
kex->session_id_len) != 0)
fatal("%s: ssh_digest_update failed", __func__);
if (ssh_digest_final(hashctx, digest, mdsz) != 0)
fatal("%s: ssh_digest_final failed", __func__);
ssh_digest_free(hashctx);
/*
* expand key:
@ -579,12 +594,15 @@ derive_key(Kex *kex, int id, u_int need, u_char *hash, u_int hashlen,
* Key = K1 || K2 || ... || Kn
*/
for (have = mdsz; need > have; have += mdsz) {
EVP_DigestInit(&md, kex->evp_md);
if (!(datafellows & SSH_BUG_DERIVEKEY))
EVP_DigestUpdate(&md, buffer_ptr(&b), buffer_len(&b));
EVP_DigestUpdate(&md, hash, hashlen);
EVP_DigestUpdate(&md, digest, have);
EVP_DigestFinal(&md, digest + have, NULL);
if ((hashctx = ssh_digest_start(kex->hash_alg)) == NULL)
fatal("%s: ssh_digest_start failed", __func__);
if (ssh_digest_update_buffer(hashctx, &b) != 0 ||
ssh_digest_update(hashctx, hash, hashlen) != 0 ||
ssh_digest_update(hashctx, digest, have) != 0)
fatal("%s: ssh_digest_update failed", __func__);
if (ssh_digest_final(hashctx, digest + have, mdsz) != 0)
fatal("%s: ssh_digest_final failed", __func__);
ssh_digest_free(hashctx);
}
buffer_free(&b);
#ifdef DEBUG_KEX
@ -598,14 +616,15 @@ Newkeys *current_keys[MODE_MAX];
#define NKEYS 6
void
kex_derive_keys(Kex *kex, u_char *hash, u_int hashlen, BIGNUM *shared_secret)
kex_derive_keys(Kex *kex, u_char *hash, u_int hashlen,
const u_char *shared_secret, u_int slen)
{
u_char *keys[NKEYS];
u_int i, mode, ctos;
for (i = 0; i < NKEYS; i++) {
keys[i] = derive_key(kex, 'A'+i, kex->we_need, hash, hashlen,
shared_secret);
shared_secret, slen);
}
debug2("kex_derive_keys");
@ -620,6 +639,18 @@ kex_derive_keys(Kex *kex, u_char *hash, u_int hashlen, BIGNUM *shared_secret)
}
}
void
kex_derive_keys_bn(Kex *kex, u_char *hash, u_int hashlen, const BIGNUM *secret)
{
Buffer shared_secret;
buffer_init(&shared_secret);
buffer_put_bignum2(&shared_secret, secret);
kex_derive_keys(kex, hash, hashlen,
buffer_ptr(&shared_secret), buffer_len(&shared_secret));
buffer_free(&shared_secret);
}
Newkeys *
kex_get_newkeys(int mode)
{
@ -634,33 +665,33 @@ void
derive_ssh1_session_id(BIGNUM *host_modulus, BIGNUM *server_modulus,
u_int8_t cookie[8], u_int8_t id[16])
{
const EVP_MD *evp_md = EVP_md5();
EVP_MD_CTX md;
u_int8_t nbuf[2048], obuf[EVP_MAX_MD_SIZE];
u_int8_t nbuf[2048], obuf[SSH_DIGEST_MAX_LENGTH];
int len;
struct ssh_digest_ctx *hashctx;
EVP_DigestInit(&md, evp_md);
if ((hashctx = ssh_digest_start(SSH_DIGEST_MD5)) == NULL)
fatal("%s: ssh_digest_start", __func__);
len = BN_num_bytes(host_modulus);
if (len < (512 / 8) || (u_int)len > sizeof(nbuf))
fatal("%s: bad host modulus (len %d)", __func__, len);
BN_bn2bin(host_modulus, nbuf);
EVP_DigestUpdate(&md, nbuf, len);
if (ssh_digest_update(hashctx, nbuf, len) != 0)
fatal("%s: ssh_digest_update failed", __func__);
len = BN_num_bytes(server_modulus);
if (len < (512 / 8) || (u_int)len > sizeof(nbuf))
fatal("%s: bad server modulus (len %d)", __func__, len);
BN_bn2bin(server_modulus, nbuf);
EVP_DigestUpdate(&md, nbuf, len);
EVP_DigestUpdate(&md, cookie, 8);
EVP_DigestFinal(&md, obuf, NULL);
memcpy(id, obuf, 16);
if (ssh_digest_update(hashctx, nbuf, len) != 0 ||
ssh_digest_update(hashctx, cookie, 8) != 0)
fatal("%s: ssh_digest_update failed", __func__);
if (ssh_digest_final(hashctx, obuf, sizeof(obuf)) != 0)
fatal("%s: ssh_digest_final failed", __func__);
memcpy(id, obuf, ssh_digest_bytes(SSH_DIGEST_MD5));
memset(nbuf, 0, sizeof(nbuf));
memset(obuf, 0, sizeof(obuf));
memset(&md, 0, sizeof(md));
}
#if defined(DEBUG_KEX) || defined(DEBUG_KEXDH) || defined(DEBUG_KEXECDH)

View File

@ -1,4 +1,4 @@
/* $OpenBSD: kex.h,v 1.56 2013/07/19 07:37:48 markus Exp $ */
/* $OpenBSD: kex.h,v 1.61 2014/01/25 10:12:50 dtucker Exp $ */
/* $FreeBSD$ */
/*
@ -44,6 +44,7 @@
#define KEX_ECDH_SHA2_NISTP256 "ecdh-sha2-nistp256"
#define KEX_ECDH_SHA2_NISTP384 "ecdh-sha2-nistp384"
#define KEX_ECDH_SHA2_NISTP521 "ecdh-sha2-nistp521"
#define KEX_CURVE25519_SHA256 "curve25519-sha256@libssh.org"
#define COMP_NONE 0
#define COMP_ZLIB 1
@ -75,6 +76,7 @@ enum kex_exchange {
KEX_DH_GEX_SHA1,
KEX_DH_GEX_SHA256,
KEX_ECDH_SHA2,
KEX_C25519_SHA256,
KEX_MAX
};
@ -123,6 +125,7 @@ struct Kex {
u_int session_id_len;
Newkeys *newkeys[MODE_MAX];
u_int we_need;
u_int dh_need;
int server;
char *name;
int hostkey_type;
@ -132,7 +135,7 @@ struct Kex {
Buffer peer;
sig_atomic_t done;
int flags;
const EVP_MD *evp_md;
int hash_alg;
int ec_nid;
char *client_version_string;
char *server_version_string;
@ -145,7 +148,7 @@ struct Kex {
};
int kex_names_valid(const char *);
char *kex_alg_list(void);
char *kex_alg_list(char);
#ifdef NONE_CIPHER_ENABLED
void kex_prop2buf(Buffer *, char *[PROPOSAL_MAX]);
@ -156,7 +159,8 @@ void kex_finish(Kex *);
void kex_send_kexinit(Kex *);
void kex_input_kexinit(int, u_int32_t, void *);
void kex_derive_keys(Kex *, u_char *, u_int, BIGNUM *);
void kex_derive_keys(Kex *, u_char *, u_int, const u_char *, u_int);
void kex_derive_keys_bn(Kex *, u_char *, u_int, const BIGNUM *);
Newkeys *kex_get_newkeys(int);
@ -166,20 +170,35 @@ void kexgex_client(Kex *);
void kexgex_server(Kex *);
void kexecdh_client(Kex *);
void kexecdh_server(Kex *);
void kexc25519_client(Kex *);
void kexc25519_server(Kex *);
void
kex_dh_hash(char *, char *, char *, int, char *, int, u_char *, int,
BIGNUM *, BIGNUM *, BIGNUM *, u_char **, u_int *);
void
kexgex_hash(const EVP_MD *, char *, char *, char *, int, char *,
kexgex_hash(int, char *, char *, char *, int, char *,
int, u_char *, int, int, int, int, BIGNUM *, BIGNUM *, BIGNUM *,
BIGNUM *, BIGNUM *, u_char **, u_int *);
#ifdef OPENSSL_HAS_ECC
void
kex_ecdh_hash(const EVP_MD *, const EC_GROUP *, char *, char *, char *, int,
kex_ecdh_hash(int, const EC_GROUP *, char *, char *, char *, int,
char *, int, u_char *, int, const EC_POINT *, const EC_POINT *,
const BIGNUM *, u_char **, u_int *);
#endif
void
kex_c25519_hash(int, char *, char *, char *, int,
char *, int, u_char *, int, const u_char *, const u_char *,
const u_char *, u_int, u_char **, u_int *);
#define CURVE25519_SIZE 32
void kexc25519_keygen(u_char[CURVE25519_SIZE], u_char[CURVE25519_SIZE])
__attribute__((__bounded__(__minbytes__, 1, CURVE25519_SIZE)))
__attribute__((__bounded__(__minbytes__, 2, CURVE25519_SIZE)));
void kexc25519_shared_key(const u_char key[CURVE25519_SIZE],
const u_char pub[CURVE25519_SIZE], Buffer *out)
__attribute__((__bounded__(__minbytes__, 1, CURVE25519_SIZE)))
__attribute__((__bounded__(__minbytes__, 2, CURVE25519_SIZE)));
void
derive_ssh1_session_id(BIGNUM *, BIGNUM *, u_int8_t[8], u_int8_t[16]);

122
crypto/openssh/kexc25519.c Normal file
View File

@ -0,0 +1,122 @@
/* $OpenBSD: kexc25519.c,v 1.4 2014/01/12 08:13:13 djm Exp $ */
/*
* Copyright (c) 2001, 2013 Markus Friedl. All rights reserved.
* Copyright (c) 2010 Damien Miller. All rights reserved.
* Copyright (c) 2013 Aris Adamantiadis. All rights reserved.
*
* Redistribution and use in source and binary forms, with or without
* modification, are permitted provided that the following conditions
* are met:
* 1. Redistributions of source code must retain the above copyright
* notice, this list of conditions and the following disclaimer.
* 2. Redistributions in binary form must reproduce the above copyright
* notice, this list of conditions and the following disclaimer in the
* documentation and/or other materials provided with the distribution.
*
* THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
* IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
* OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
* IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
* INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
* NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
* DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
* THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
* (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
* THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
*/
#include "includes.h"
#include <sys/types.h>
#include <signal.h>
#include <string.h>
#include <openssl/bn.h>
#include <openssl/evp.h>
#include "buffer.h"
#include "ssh2.h"
#include "key.h"
#include "cipher.h"
#include "kex.h"
#include "log.h"
#include "digest.h"
extern int crypto_scalarmult_curve25519(u_char a[CURVE25519_SIZE],
const u_char b[CURVE25519_SIZE], const u_char c[CURVE25519_SIZE])
__attribute__((__bounded__(__minbytes__, 1, CURVE25519_SIZE)))
__attribute__((__bounded__(__minbytes__, 2, CURVE25519_SIZE)))
__attribute__((__bounded__(__minbytes__, 3, CURVE25519_SIZE)));
void
kexc25519_keygen(u_char key[CURVE25519_SIZE], u_char pub[CURVE25519_SIZE])
{
static const u_char basepoint[CURVE25519_SIZE] = {9};
arc4random_buf(key, CURVE25519_SIZE);
crypto_scalarmult_curve25519(pub, key, basepoint);
}
void
kexc25519_shared_key(const u_char key[CURVE25519_SIZE],
const u_char pub[CURVE25519_SIZE], Buffer *out)
{
u_char shared_key[CURVE25519_SIZE];
crypto_scalarmult_curve25519(shared_key, key, pub);
#ifdef DEBUG_KEXECDH
dump_digest("shared secret", shared_key, CURVE25519_SIZE);
#endif
buffer_clear(out);
buffer_put_bignum2_from_string(out, shared_key, CURVE25519_SIZE);
memset(shared_key, 0, CURVE25519_SIZE); /* XXX explicit_bzero() */
}
void
kex_c25519_hash(
int hash_alg,
char *client_version_string,
char *server_version_string,
char *ckexinit, int ckexinitlen,
char *skexinit, int skexinitlen,
u_char *serverhostkeyblob, int sbloblen,
const u_char client_dh_pub[CURVE25519_SIZE],
const u_char server_dh_pub[CURVE25519_SIZE],
const u_char *shared_secret, u_int secretlen,
u_char **hash, u_int *hashlen)
{
Buffer b;
static u_char digest[SSH_DIGEST_MAX_LENGTH];
buffer_init(&b);
buffer_put_cstring(&b, client_version_string);
buffer_put_cstring(&b, server_version_string);
/* kexinit messages: fake header: len+SSH2_MSG_KEXINIT */
buffer_put_int(&b, ckexinitlen+1);
buffer_put_char(&b, SSH2_MSG_KEXINIT);
buffer_append(&b, ckexinit, ckexinitlen);
buffer_put_int(&b, skexinitlen+1);
buffer_put_char(&b, SSH2_MSG_KEXINIT);
buffer_append(&b, skexinit, skexinitlen);
buffer_put_string(&b, serverhostkeyblob, sbloblen);
buffer_put_string(&b, client_dh_pub, CURVE25519_SIZE);
buffer_put_string(&b, server_dh_pub, CURVE25519_SIZE);
buffer_append(&b, shared_secret, secretlen);
#ifdef DEBUG_KEX
buffer_dump(&b);
#endif
if (ssh_digest_buffer(hash_alg, &b, digest, sizeof(digest)) != 0)
fatal("%s: digest_buffer failed", __func__);
buffer_free(&b);
#ifdef DEBUG_KEX
dump_digest("hash", digest, ssh_digest_bytes(hash_alg));
#endif
*hash = digest;
*hashlen = ssh_digest_bytes(hash_alg);
}

129
crypto/openssh/kexc25519c.c Normal file
View File

@ -0,0 +1,129 @@
/* $OpenBSD: kexc25519c.c,v 1.4 2014/01/12 08:13:13 djm Exp $ */
/*
* Copyright (c) 2001 Markus Friedl. All rights reserved.
* Copyright (c) 2010 Damien Miller. All rights reserved.
* Copyright (c) 2013 Aris Adamantiadis. All rights reserved.
*
* Redistribution and use in source and binary forms, with or without
* modification, are permitted provided that the following conditions
* are met:
* 1. Redistributions of source code must retain the above copyright
* notice, this list of conditions and the following disclaimer.
* 2. Redistributions in binary form must reproduce the above copyright
* notice, this list of conditions and the following disclaimer in the
* documentation and/or other materials provided with the distribution.
*
* THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
* IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
* OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
* IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
* INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
* NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
* DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
* THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
* (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
* THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
*/
#include "includes.h"
#include <sys/types.h>
#include <stdio.h>
#include <string.h>
#include <signal.h>
#include "xmalloc.h"
#include "buffer.h"
#include "key.h"
#include "cipher.h"
#include "kex.h"
#include "log.h"
#include "packet.h"
#include "ssh2.h"
void
kexc25519_client(Kex *kex)
{
Key *server_host_key;
u_char client_key[CURVE25519_SIZE];
u_char client_pubkey[CURVE25519_SIZE];
u_char *server_pubkey = NULL;
u_char *server_host_key_blob = NULL, *signature = NULL;
u_char *hash;
u_int slen, sbloblen, hashlen;
Buffer shared_secret;
kexc25519_keygen(client_key, client_pubkey);
packet_start(SSH2_MSG_KEX_ECDH_INIT);
packet_put_string(client_pubkey, sizeof(client_pubkey));
packet_send();
debug("sending SSH2_MSG_KEX_ECDH_INIT");
#ifdef DEBUG_KEXECDH
dump_digest("client private key:", client_key, sizeof(client_key));
#endif
debug("expecting SSH2_MSG_KEX_ECDH_REPLY");
packet_read_expect(SSH2_MSG_KEX_ECDH_REPLY);
/* hostkey */
server_host_key_blob = packet_get_string(&sbloblen);
server_host_key = key_from_blob(server_host_key_blob, sbloblen);
if (server_host_key == NULL)
fatal("cannot decode server_host_key_blob");
if (server_host_key->type != kex->hostkey_type)
fatal("type mismatch for decoded server_host_key_blob");
if (kex->verify_host_key == NULL)
fatal("cannot verify server_host_key");
if (kex->verify_host_key(server_host_key) == -1)
fatal("server_host_key verification failed");
/* Q_S, server public key */
server_pubkey = packet_get_string(&slen);
if (slen != CURVE25519_SIZE)
fatal("Incorrect size for server Curve25519 pubkey: %d", slen);
#ifdef DEBUG_KEXECDH
dump_digest("server public key:", server_pubkey, CURVE25519_SIZE);
#endif
/* signed H */
signature = packet_get_string(&slen);
packet_check_eom();
buffer_init(&shared_secret);
kexc25519_shared_key(client_key, server_pubkey, &shared_secret);
/* calc and verify H */
kex_c25519_hash(
kex->hash_alg,
kex->client_version_string,
kex->server_version_string,
buffer_ptr(&kex->my), buffer_len(&kex->my),
buffer_ptr(&kex->peer), buffer_len(&kex->peer),
server_host_key_blob, sbloblen,
client_pubkey,
server_pubkey,
buffer_ptr(&shared_secret), buffer_len(&shared_secret),
&hash, &hashlen
);
free(server_host_key_blob);
free(server_pubkey);
if (key_verify(server_host_key, signature, slen, hash, hashlen) != 1)
fatal("key_verify failed for server_host_key");
key_free(server_host_key);
free(signature);
/* save session id */
if (kex->session_id == NULL) {
kex->session_id_len = hashlen;
kex->session_id = xmalloc(kex->session_id_len);
memcpy(kex->session_id, hash, kex->session_id_len);
}
kex_derive_keys(kex, hash, hashlen,
buffer_ptr(&shared_secret), buffer_len(&shared_secret));
buffer_free(&shared_secret);
kex_finish(kex);
}

126
crypto/openssh/kexc25519s.c Normal file
View File

@ -0,0 +1,126 @@
/* $OpenBSD: kexc25519s.c,v 1.4 2014/01/12 08:13:13 djm Exp $ */
/*
* Copyright (c) 2001 Markus Friedl. All rights reserved.
* Copyright (c) 2010 Damien Miller. All rights reserved.
* Copyright (c) 2013 Aris Adamantiadis. All rights reserved.
*
* modification, are permitted provided that the following conditions
* are met:
* 1. Redistributions of source code must retain the above copyright
* notice, this list of conditions and the following disclaimer.
* 2. Redistributions in binary form must reproduce the above copyright
* notice, this list of conditions and the following disclaimer in the
* documentation and/or other materials provided with the distribution.
*
* THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
* IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
* OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
* IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
* INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
* NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
* DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
* THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
* (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
* THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
*/
#include "includes.h"
#include <sys/types.h>
#include <string.h>
#include <signal.h>
#include "xmalloc.h"
#include "buffer.h"
#include "key.h"
#include "cipher.h"
#include "kex.h"
#include "log.h"
#include "packet.h"
#include "ssh2.h"
void
kexc25519_server(Kex *kex)
{
Key *server_host_private, *server_host_public;
u_char *server_host_key_blob = NULL, *signature = NULL;
u_char server_key[CURVE25519_SIZE];
u_char *client_pubkey = NULL;
u_char server_pubkey[CURVE25519_SIZE];
u_char *hash;
u_int slen, sbloblen, hashlen;
Buffer shared_secret;
/* generate private key */
kexc25519_keygen(server_key, server_pubkey);
#ifdef DEBUG_KEXECDH
dump_digest("server private key:", server_key, sizeof(server_key));
#endif
if (kex->load_host_public_key == NULL ||
kex->load_host_private_key == NULL)
fatal("Cannot load hostkey");
server_host_public = kex->load_host_public_key(kex->hostkey_type);
if (server_host_public == NULL)
fatal("Unsupported hostkey type %d", kex->hostkey_type);
server_host_private = kex->load_host_private_key(kex->hostkey_type);
debug("expecting SSH2_MSG_KEX_ECDH_INIT");
packet_read_expect(SSH2_MSG_KEX_ECDH_INIT);
client_pubkey = packet_get_string(&slen);
if (slen != CURVE25519_SIZE)
fatal("Incorrect size for server Curve25519 pubkey: %d", slen);
packet_check_eom();
#ifdef DEBUG_KEXECDH
dump_digest("client public key:", client_pubkey, CURVE25519_SIZE);
#endif
buffer_init(&shared_secret);
kexc25519_shared_key(server_key, client_pubkey, &shared_secret);
/* calc H */
key_to_blob(server_host_public, &server_host_key_blob, &sbloblen);
kex_c25519_hash(
kex->hash_alg,
kex->client_version_string,
kex->server_version_string,
buffer_ptr(&kex->peer), buffer_len(&kex->peer),
buffer_ptr(&kex->my), buffer_len(&kex->my),
server_host_key_blob, sbloblen,
client_pubkey,
server_pubkey,
buffer_ptr(&shared_secret), buffer_len(&shared_secret),
&hash, &hashlen
);
/* save session id := H */
if (kex->session_id == NULL) {
kex->session_id_len = hashlen;
kex->session_id = xmalloc(kex->session_id_len);
memcpy(kex->session_id, hash, kex->session_id_len);
}
/* sign H */
kex->sign(server_host_private, server_host_public, &signature, &slen,
hash, hashlen);
/* destroy_sensitive_data(); */
/* send server hostkey, ECDH pubkey 'Q_S' and signed H */
packet_start(SSH2_MSG_KEX_ECDH_REPLY);
packet_put_string(server_host_key_blob, sbloblen);
packet_put_string(server_pubkey, sizeof(server_pubkey));
packet_put_string(signature, slen);
packet_send();
free(signature);
free(server_host_key_blob);
/* have keys, free server key */
free(client_pubkey);
kex_derive_keys(kex, hash, hashlen,
buffer_ptr(&shared_secret), buffer_len(&shared_secret));
buffer_free(&shared_secret);
kex_finish(kex);
}

View File

@ -1,4 +1,4 @@
/* $OpenBSD: kexdh.c,v 1.23 2006/08/03 03:34:42 deraadt Exp $ */
/* $OpenBSD: kexdh.c,v 1.24 2014/01/09 23:20:00 djm Exp $ */
/*
* Copyright (c) 2001 Markus Friedl. All rights reserved.
*
@ -36,6 +36,8 @@
#include "key.h"
#include "cipher.h"
#include "kex.h"
#include "digest.h"
#include "log.h"
void
kex_dh_hash(
@ -50,9 +52,7 @@ kex_dh_hash(
u_char **hash, u_int *hashlen)
{
Buffer b;
static u_char digest[EVP_MAX_MD_SIZE];
const EVP_MD *evp_md = EVP_sha1();
EVP_MD_CTX md;
static u_char digest[SSH_DIGEST_MAX_LENGTH];
buffer_init(&b);
buffer_put_cstring(&b, client_version_string);
@ -74,15 +74,14 @@ kex_dh_hash(
#ifdef DEBUG_KEX
buffer_dump(&b);
#endif
EVP_DigestInit(&md, evp_md);
EVP_DigestUpdate(&md, buffer_ptr(&b), buffer_len(&b));
EVP_DigestFinal(&md, digest, NULL);
if (ssh_digest_buffer(SSH_DIGEST_SHA1, &b, digest, sizeof(digest)) != 0)
fatal("%s: ssh_digest_buffer failed", __func__);
buffer_free(&b);
#ifdef DEBUG_KEX
dump_digest("hash", digest, EVP_MD_size(evp_md));
dump_digest("hash", digest, ssh_digest_bytes(SSH_DIGEST_SHA1));
#endif
*hash = digest;
*hashlen = EVP_MD_size(evp_md);
*hashlen = ssh_digest_bytes(SSH_DIGEST_SHA1);
}

View File

@ -1,4 +1,4 @@
/* $OpenBSD: kexdhc.c,v 1.13 2013/05/17 00:13:13 djm Exp $ */
/* $OpenBSD: kexdhc.c,v 1.14 2014/01/12 08:13:13 djm Exp $ */
/*
* Copyright (c) 2001 Markus Friedl. All rights reserved.
*
@ -155,7 +155,7 @@ kexdh_client(Kex *kex)
memcpy(kex->session_id, hash, kex->session_id_len);
}
kex_derive_keys(kex, hash, hashlen, shared_secret);
kex_derive_keys_bn(kex, hash, hashlen, shared_secret);
BN_clear_free(shared_secret);
kex_finish(kex);
}

View File

@ -1,4 +1,4 @@
/* $OpenBSD: kexdhs.c,v 1.14 2013/07/19 07:37:48 markus Exp $ */
/* $OpenBSD: kexdhs.c,v 1.17 2014/01/12 08:13:13 djm Exp $ */
/*
* Copyright (c) 2001 Markus Friedl. All rights reserved.
*
@ -42,10 +42,6 @@
#include "packet.h"
#include "dh.h"
#include "ssh2.h"
#ifdef GSSAPI
#include "ssh-gss.h"
#endif
#include "monitor_wrap.h"
void
kexdh_server(Kex *kex)
@ -158,7 +154,7 @@ kexdh_server(Kex *kex)
/* have keys, free DH */
DH_free(dh);
kex_derive_keys(kex, hash, hashlen, shared_secret);
kex_derive_keys_bn(kex, hash, hashlen, shared_secret);
BN_clear_free(shared_secret);
kex_finish(kex);
}

View File

@ -1,4 +1,4 @@
/* $OpenBSD: kexecdh.c,v 1.4 2013/04/19 01:06:50 djm Exp $ */
/* $OpenBSD: kexecdh.c,v 1.5 2014/01/09 23:20:00 djm Exp $ */
/*
* Copyright (c) 2001 Markus Friedl. All rights reserved.
* Copyright (c) 2010 Damien Miller. All rights reserved.
@ -44,10 +44,11 @@
#include "cipher.h"
#include "kex.h"
#include "log.h"
#include "digest.h"
void
kex_ecdh_hash(
const EVP_MD *evp_md,
int hash_alg,
const EC_GROUP *ec_group,
char *client_version_string,
char *server_version_string,
@ -60,8 +61,7 @@ kex_ecdh_hash(
u_char **hash, u_int *hashlen)
{
Buffer b;
EVP_MD_CTX md;
static u_char digest[EVP_MAX_MD_SIZE];
static u_char digest[SSH_DIGEST_MAX_LENGTH];
buffer_init(&b);
buffer_put_cstring(&b, client_version_string);
@ -83,17 +83,15 @@ kex_ecdh_hash(
#ifdef DEBUG_KEX
buffer_dump(&b);
#endif
EVP_DigestInit(&md, evp_md);
EVP_DigestUpdate(&md, buffer_ptr(&b), buffer_len(&b));
EVP_DigestFinal(&md, digest, NULL);
if (ssh_digest_buffer(hash_alg, &b, digest, sizeof(digest)) != 0)
fatal("%s: ssh_digest_buffer failed", __func__);
buffer_free(&b);
#ifdef DEBUG_KEX
dump_digest("hash", digest, EVP_MD_size(evp_md));
dump_digest("hash", digest, ssh_digest_bytes(hash_alg));
#endif
*hash = digest;
*hashlen = EVP_MD_size(evp_md);
*hashlen = ssh_digest_bytes(hash_alg);
}
#endif /* OPENSSL_HAS_ECC */

View File

@ -1,4 +1,4 @@
/* $OpenBSD: kexecdhc.c,v 1.4 2013/05/17 00:13:13 djm Exp $ */
/* $OpenBSD: kexecdhc.c,v 1.6 2014/01/12 08:13:13 djm Exp $ */
/*
* Copyright (c) 2001 Markus Friedl. All rights reserved.
* Copyright (c) 2010 Damien Miller. All rights reserved.
@ -124,7 +124,7 @@ kexecdh_client(Kex *kex)
/* calc and verify H */
kex_ecdh_hash(
kex->evp_md,
kex->hash_alg,
group,
kex->client_version_string,
kex->server_version_string,
@ -152,7 +152,7 @@ kexecdh_client(Kex *kex)
memcpy(kex->session_id, hash, kex->session_id_len);
}
kex_derive_keys(kex, hash, hashlen, shared_secret);
kex_derive_keys_bn(kex, hash, hashlen, shared_secret);
BN_clear_free(shared_secret);
kex_finish(kex);
}

View File

@ -1,4 +1,4 @@
/* $OpenBSD: kexecdhs.c,v 1.5 2013/07/19 07:37:48 markus Exp $ */
/* $OpenBSD: kexecdhs.c,v 1.9 2014/01/12 08:13:13 djm Exp $ */
/*
* Copyright (c) 2001 Markus Friedl. All rights reserved.
* Copyright (c) 2010 Damien Miller. All rights reserved.
@ -37,12 +37,7 @@
#include "kex.h"
#include "log.h"
#include "packet.h"
#include "dh.h"
#include "ssh2.h"
#ifdef GSSAPI
#include "ssh-gss.h"
#endif
#include "monitor_wrap.h"
#ifdef OPENSSL_HAS_ECC
@ -114,7 +109,7 @@ kexecdh_server(Kex *kex)
/* calc H */
key_to_blob(server_host_public, &server_host_key_blob, &sbloblen);
kex_ecdh_hash(
kex->evp_md,
kex->hash_alg,
group,
kex->client_version_string,
kex->server_version_string,
@ -153,7 +148,7 @@ kexecdh_server(Kex *kex)
/* have keys, free server key */
EC_KEY_free(server_key);
kex_derive_keys(kex, hash, hashlen, shared_secret);
kex_derive_keys_bn(kex, hash, hashlen, shared_secret);
BN_clear_free(shared_secret);
kex_finish(kex);
}

View File

@ -1,4 +1,4 @@
/* $OpenBSD: kexgex.c,v 1.27 2006/08/03 03:34:42 deraadt Exp $ */
/* $OpenBSD: kexgex.c,v 1.28 2014/01/09 23:20:00 djm Exp $ */
/*
* Copyright (c) 2000 Niels Provos. All rights reserved.
* Copyright (c) 2001 Markus Friedl. All rights reserved.
@ -36,10 +36,12 @@
#include "cipher.h"
#include "kex.h"
#include "ssh2.h"
#include "digest.h"
#include "log.h"
void
kexgex_hash(
const EVP_MD *evp_md,
int hash_alg,
char *client_version_string,
char *server_version_string,
char *ckexinit, int ckexinitlen,
@ -52,8 +54,7 @@ kexgex_hash(
u_char **hash, u_int *hashlen)
{
Buffer b;
static u_char digest[EVP_MAX_MD_SIZE];
EVP_MD_CTX md;
static u_char digest[SSH_DIGEST_MAX_LENGTH];
buffer_init(&b);
buffer_put_cstring(&b, client_version_string);
@ -84,15 +85,14 @@ kexgex_hash(
#ifdef DEBUG_KEXDH
buffer_dump(&b);
#endif
EVP_DigestInit(&md, evp_md);
EVP_DigestUpdate(&md, buffer_ptr(&b), buffer_len(&b));
EVP_DigestFinal(&md, digest, NULL);
if (ssh_digest_buffer(hash_alg, &b, digest, sizeof(digest)) != 0)
fatal("%s: ssh_digest_buffer failed", __func__);
buffer_free(&b);
*hash = digest;
*hashlen = EVP_MD_size(evp_md);
#ifdef DEBUG_KEXDH
dump_digest("hash", digest, *hashlen);
#ifdef DEBUG_KEX
dump_digest("hash", digest, ssh_digest_bytes(hash_alg));
#endif
*hash = digest;
*hashlen = ssh_digest_bytes(hash_alg);
}

View File

@ -1,4 +1,4 @@
/* $OpenBSD: kexgexc.c,v 1.13 2013/05/17 00:13:13 djm Exp $ */
/* $OpenBSD: kexgexc.c,v 1.16 2014/01/25 10:12:50 dtucker Exp $ */
/*
* Copyright (c) 2000 Niels Provos. All rights reserved.
* Copyright (c) 2001 Markus Friedl. All rights reserved.
@ -58,7 +58,7 @@ kexgex_client(Kex *kex)
int min, max, nbits;
DH *dh;
nbits = dh_estimate(kex->we_need * 8);
nbits = dh_estimate(kex->dh_need * 8);
if (datafellows & SSH_OLD_DHGEX) {
/* Old GEX request */
@ -170,7 +170,7 @@ kexgex_client(Kex *kex)
/* calc and verify H */
kexgex_hash(
kex->evp_md,
kex->hash_alg,
kex->client_version_string,
kex->server_version_string,
buffer_ptr(&kex->my), buffer_len(&kex->my),
@ -200,7 +200,7 @@ kexgex_client(Kex *kex)
kex->session_id = xmalloc(kex->session_id_len);
memcpy(kex->session_id, hash, kex->session_id_len);
}
kex_derive_keys(kex, hash, hashlen, shared_secret);
kex_derive_keys_bn(kex, hash, hashlen, shared_secret);
BN_clear_free(shared_secret);
kex_finish(kex);

View File

@ -1,4 +1,4 @@
/* $OpenBSD: kexgexs.c,v 1.16 2013/07/19 07:37:48 markus Exp $ */
/* $OpenBSD: kexgexs.c,v 1.18 2014/01/12 08:13:13 djm Exp $ */
/*
* Copyright (c) 2000 Niels Provos. All rights reserved.
* Copyright (c) 2001 Markus Friedl. All rights reserved.
@ -160,7 +160,7 @@ kexgex_server(Kex *kex)
/* calc H */
kexgex_hash(
kex->evp_md,
kex->hash_alg,
kex->client_version_string,
kex->server_version_string,
buffer_ptr(&kex->peer), buffer_len(&kex->peer),
@ -201,7 +201,7 @@ kexgex_server(Kex *kex)
/* have keys, free DH */
DH_free(dh);
kex_derive_keys(kex, hash, hashlen, shared_secret);
kex_derive_keys_bn(kex, hash, hashlen, shared_secret);
BN_clear_free(shared_secret);
kex_finish(kex);

View File

@ -1,4 +1,4 @@
/* $OpenBSD: key.c,v 1.104 2013/05/19 02:42:42 djm Exp $ */
/* $OpenBSD: key.c,v 1.115 2014/01/09 23:20:00 djm Exp $ */
/*
* read_bignum():
* Copyright (c) 1995 Tatu Ylonen <ylo@cs.hut.fi>, Espoo, Finland
@ -39,6 +39,8 @@
#include <sys/param.h>
#include <sys/types.h>
#include "crypto_api.h"
#include <openssl/evp.h>
#include <openbsd-compat/openssl-compat.h>
@ -54,8 +56,10 @@
#include "log.h"
#include "misc.h"
#include "ssh2.h"
#include "digest.h"
static int to_blob(const Key *, u_char **, u_int *, int);
static Key *key_from_blob2(const u_char *, u_int, int);
static struct KeyCert *
cert_new(void)
@ -85,6 +89,8 @@ key_new(int type)
k->dsa = NULL;
k->rsa = NULL;
k->cert = NULL;
k->ed25519_sk = NULL;
k->ed25519_pk = NULL;
switch (k->type) {
case KEY_RSA1:
case KEY_RSA:
@ -119,6 +125,10 @@ key_new(int type)
/* Cannot do anything until we know the group */
break;
#endif
case KEY_ED25519:
case KEY_ED25519_CERT:
/* no need to prealloc */
break;
case KEY_UNSPEC:
break;
default:
@ -163,6 +173,10 @@ key_add_private(Key *k)
case KEY_ECDSA_CERT:
/* Cannot do anything until we know the group */
break;
case KEY_ED25519:
case KEY_ED25519_CERT:
/* no need to prealloc */
break;
case KEY_UNSPEC:
break;
default:
@ -225,6 +239,19 @@ key_free(Key *k)
k->ecdsa = NULL;
break;
#endif
case KEY_ED25519:
case KEY_ED25519_CERT:
if (k->ed25519_pk) {
memset(k->ed25519_pk, 0, ED25519_PK_SZ);
free(k->ed25519_pk);
k->ed25519_pk = NULL;
}
if (k->ed25519_sk) {
memset(k->ed25519_sk, 0, ED25519_SK_SZ);
free(k->ed25519_sk);
k->ed25519_sk = NULL;
}
break;
case KEY_UNSPEC:
break;
default:
@ -306,6 +333,10 @@ key_equal_public(const Key *a, const Key *b)
BN_CTX_free(bnctx);
return 1;
#endif /* OPENSSL_HAS_ECC */
case KEY_ED25519:
case KEY_ED25519_CERT:
return a->ed25519_pk != NULL && b->ed25519_pk != NULL &&
memcmp(a->ed25519_pk, b->ed25519_pk, ED25519_PK_SZ) == 0;
default:
fatal("key_equal: bad key type %d", a->type);
}
@ -328,30 +359,26 @@ u_char*
key_fingerprint_raw(const Key *k, enum fp_type dgst_type,
u_int *dgst_raw_length)
{
const EVP_MD *md = NULL;
EVP_MD_CTX ctx;
u_char *blob = NULL;
u_char *retval = NULL;
u_int len = 0;
int nlen, elen;
int nlen, elen, hash_alg = -1;
*dgst_raw_length = 0;
/* XXX switch to DIGEST_* directly? */
switch (dgst_type) {
case SSH_FP_MD5:
md = EVP_md5();
hash_alg = SSH_DIGEST_MD5;
break;
case SSH_FP_SHA1:
md = EVP_sha1();
hash_alg = SSH_DIGEST_SHA1;
break;
#ifdef HAVE_EVP_SHA256
case SSH_FP_SHA256:
md = EVP_sha256();
hash_alg = SSH_DIGEST_SHA256;
break;
#endif
default:
fatal("key_fingerprint_raw: bad digest type %d",
dgst_type);
fatal("%s: bad digest type %d", __func__, dgst_type);
}
switch (k->type) {
case KEY_RSA1:
@ -365,6 +392,7 @@ key_fingerprint_raw(const Key *k, enum fp_type dgst_type,
case KEY_DSA:
case KEY_ECDSA:
case KEY_RSA:
case KEY_ED25519:
key_to_blob(k, &blob, &len);
break;
case KEY_DSA_CERT_V00:
@ -372,24 +400,26 @@ key_fingerprint_raw(const Key *k, enum fp_type dgst_type,
case KEY_DSA_CERT:
case KEY_ECDSA_CERT:
case KEY_RSA_CERT:
case KEY_ED25519_CERT:
/* We want a fingerprint of the _key_ not of the cert */
to_blob(k, &blob, &len, 1);
break;
case KEY_UNSPEC:
return retval;
default:
fatal("key_fingerprint_raw: bad key type %d", k->type);
fatal("%s: bad key type %d", __func__, k->type);
break;
}
if (blob != NULL) {
retval = xmalloc(EVP_MAX_MD_SIZE);
EVP_DigestInit(&ctx, md);
EVP_DigestUpdate(&ctx, blob, len);
EVP_DigestFinal(&ctx, retval, dgst_raw_length);
retval = xmalloc(SSH_DIGEST_MAX_LENGTH);
if ((ssh_digest_memory(hash_alg, blob, len,
retval, SSH_DIGEST_MAX_LENGTH)) != 0)
fatal("%s: digest_memory failed", __func__);
memset(blob, 0, len);
free(blob);
*dgst_raw_length = ssh_digest_bytes(hash_alg);
} else {
fatal("key_fingerprint_raw: blob is null");
fatal("%s: blob is null", __func__);
}
return retval;
}
@ -698,11 +728,13 @@ key_read(Key *ret, char **cpp)
case KEY_RSA:
case KEY_DSA:
case KEY_ECDSA:
case KEY_ED25519:
case KEY_DSA_CERT_V00:
case KEY_RSA_CERT_V00:
case KEY_DSA_CERT:
case KEY_ECDSA_CERT:
case KEY_RSA_CERT:
case KEY_ED25519_CERT:
space = strchr(cp, ' ');
if (space == NULL) {
debug3("key_read: missing whitespace");
@ -804,6 +836,14 @@ key_read(Key *ret, char **cpp)
#endif
}
#endif
if (key_type_plain(ret->type) == KEY_ED25519) {
free(ret->ed25519_pk);
ret->ed25519_pk = k->ed25519_pk;
k->ed25519_pk = NULL;
#ifdef DEBUG_PK
/* XXX */
#endif
}
success = 1;
/*XXXX*/
key_free(k);
@ -867,6 +907,11 @@ key_write(const Key *key, FILE *f)
return 0;
break;
#endif
case KEY_ED25519:
case KEY_ED25519_CERT:
if (key->ed25519_pk == NULL)
return 0;
break;
case KEY_RSA:
case KEY_RSA_CERT_V00:
case KEY_RSA_CERT:
@ -914,10 +959,13 @@ static const struct keytype keytypes[] = {
{ NULL, "RSA1", KEY_RSA1, 0, 0 },
{ "ssh-rsa", "RSA", KEY_RSA, 0, 0 },
{ "ssh-dss", "DSA", KEY_DSA, 0, 0 },
{ "ssh-ed25519", "ED25519", KEY_ED25519, 0, 0 },
#ifdef OPENSSL_HAS_ECC
{ "ecdsa-sha2-nistp256", "ECDSA", KEY_ECDSA, NID_X9_62_prime256v1, 0 },
{ "ecdsa-sha2-nistp384", "ECDSA", KEY_ECDSA, NID_secp384r1, 0 },
# ifdef OPENSSL_HAS_NISTP521
{ "ecdsa-sha2-nistp521", "ECDSA", KEY_ECDSA, NID_secp521r1, 0 },
# endif
#endif /* OPENSSL_HAS_ECC */
{ "ssh-rsa-cert-v01@openssh.com", "RSA-CERT", KEY_RSA_CERT, 0, 1 },
{ "ssh-dss-cert-v01@openssh.com", "DSA-CERT", KEY_DSA_CERT, 0, 1 },
@ -926,13 +974,17 @@ static const struct keytype keytypes[] = {
KEY_ECDSA_CERT, NID_X9_62_prime256v1, 1 },
{ "ecdsa-sha2-nistp384-cert-v01@openssh.com", "ECDSA-CERT",
KEY_ECDSA_CERT, NID_secp384r1, 1 },
# ifdef OPENSSL_HAS_NISTP521
{ "ecdsa-sha2-nistp521-cert-v01@openssh.com", "ECDSA-CERT",
KEY_ECDSA_CERT, NID_secp521r1, 1 },
# endif
#endif /* OPENSSL_HAS_ECC */
{ "ssh-rsa-cert-v00@openssh.com", "RSA-CERT-V00",
KEY_RSA_CERT_V00, 0, 1 },
{ "ssh-dss-cert-v00@openssh.com", "DSA-CERT-V00",
KEY_DSA_CERT_V00, 0, 1 },
{ "ssh-ed25519-cert-v01@openssh.com", "ED25519-CERT",
KEY_ED25519_CERT, 0, 1 },
{ NULL, NULL, -1, -1, 0 }
};
@ -1004,7 +1056,7 @@ key_ecdsa_nid_from_name(const char *name)
}
char *
key_alg_list(void)
key_alg_list(int certs_only, int plain_only)
{
char *ret = NULL;
size_t nlen, rlen = 0;
@ -1013,6 +1065,8 @@ key_alg_list(void)
for (kt = keytypes; kt->type != -1; kt++) {
if (kt->name == NULL)
continue;
if ((certs_only && !kt->cert) || (plain_only && kt->cert))
continue;
if (ret != NULL)
ret[rlen++] = '\n';
nlen = strlen(kt->name);
@ -1023,6 +1077,32 @@ key_alg_list(void)
return ret;
}
int
key_type_is_cert(int type)
{
const struct keytype *kt;
for (kt = keytypes; kt->type != -1; kt++) {
if (kt->type == type)
return kt->cert;
}
return 0;
}
static int
key_type_is_valid_ca(int type)
{
switch (type) {
case KEY_RSA:
case KEY_DSA:
case KEY_ECDSA:
case KEY_ED25519:
return 1;
default:
return 0;
}
}
u_int
key_size(const Key *k)
{
@ -1036,6 +1116,8 @@ key_size(const Key *k)
case KEY_DSA_CERT_V00:
case KEY_DSA_CERT:
return BN_num_bits(k->dsa->p);
case KEY_ED25519:
return 256; /* XXX */
#ifdef OPENSSL_HAS_ECC
case KEY_ECDSA:
case KEY_ECDSA_CERT:
@ -1087,8 +1169,10 @@ key_ecdsa_bits_to_nid(int bits)
return NID_X9_62_prime256v1;
case 384:
return NID_secp384r1;
# ifdef OPENSSL_HAS_NISTP521
case 521:
return NID_secp521r1;
# endif
#endif
default:
return -1;
@ -1103,7 +1187,9 @@ key_ecdsa_key_to_nid(EC_KEY *k)
int nids[] = {
NID_X9_62_prime256v1,
NID_secp384r1,
# ifdef OPENSSL_HAS_NISTP521
NID_secp521r1,
# endif
-1
};
int nid;
@ -1175,6 +1261,11 @@ key_generate(int type, u_int bits)
case KEY_RSA1:
k->rsa = rsa_generate_private_key(bits);
break;
case KEY_ED25519:
k->ed25519_pk = xmalloc(ED25519_PK_SZ);
k->ed25519_sk = xmalloc(ED25519_SK_SZ);
crypto_sign_ed25519_keypair(k->ed25519_pk, k->ed25519_sk);
break;
case KEY_RSA_CERT_V00:
case KEY_DSA_CERT_V00:
case KEY_RSA_CERT:
@ -1268,6 +1359,14 @@ key_from_private(const Key *k)
(BN_copy(n->rsa->e, k->rsa->e) == NULL))
fatal("key_from_private: BN_copy failed");
break;
case KEY_ED25519:
case KEY_ED25519_CERT:
n = key_new(k->type);
if (k->ed25519_pk != NULL) {
n->ed25519_pk = xmalloc(ED25519_PK_SZ);
memcpy(n->ed25519_pk, k->ed25519_pk, ED25519_PK_SZ);
}
break;
default:
fatal("key_from_private: unknown type %d", k->type);
break;
@ -1387,14 +1486,12 @@ cert_parse(Buffer *b, Key *key, const u_char *blob, u_int blen)
}
buffer_clear(&tmp);
if ((key->cert->signature_key = key_from_blob(sig_key,
sklen)) == NULL) {
if ((key->cert->signature_key = key_from_blob2(sig_key, sklen, 0))
== NULL) {
error("%s: Signature key invalid", __func__);
goto out;
}
if (key->cert->signature_key->type != KEY_RSA &&
key->cert->signature_key->type != KEY_DSA &&
key->cert->signature_key->type != KEY_ECDSA) {
if (!key_type_is_valid_ca(key->cert->signature_key->type)) {
error("%s: Invalid signature key type %s (%d)", __func__,
key_type(key->cert->signature_key),
key->cert->signature_key->type);
@ -1425,12 +1522,14 @@ cert_parse(Buffer *b, Key *key, const u_char *blob, u_int blen)
return ret;
}
Key *
key_from_blob(const u_char *blob, u_int blen)
static Key *
key_from_blob2(const u_char *blob, u_int blen, int allow_cert)
{
Buffer b;
int rlen, type;
u_int len;
char *ktype = NULL, *curve = NULL;
u_char *pk = NULL;
Key *key = NULL;
#ifdef OPENSSL_HAS_ECC
EC_POINT *q = NULL;
@ -1452,7 +1551,10 @@ key_from_blob(const u_char *blob, u_int blen)
if (key_type_plain(type) == KEY_ECDSA)
nid = key_ecdsa_nid_from_name(ktype);
#endif
if (!allow_cert && key_type_is_cert(type)) {
error("key_from_blob: certificate not allowed in this context");
goto out;
}
switch (type) {
case KEY_RSA_CERT:
(void)buffer_get_string_ptr_ret(&b, NULL); /* Skip nonce */
@ -1526,6 +1628,23 @@ key_from_blob(const u_char *blob, u_int blen)
#endif
break;
#endif /* OPENSSL_HAS_ECC */
case KEY_ED25519_CERT:
(void)buffer_get_string_ptr_ret(&b, NULL); /* Skip nonce */
/* FALLTHROUGH */
case KEY_ED25519:
if ((pk = buffer_get_string_ret(&b, &len)) == NULL) {
error("key_from_blob: can't read ed25519 key");
goto badkey;
}
if (len != ED25519_PK_SZ) {
error("key_from_blob: ed25519 len %d != %d",
len, ED25519_PK_SZ);
goto badkey;
}
key = key_new(type);
key->ed25519_pk = pk;
pk = NULL;
break;
case KEY_UNSPEC:
key = key_new(type);
break;
@ -1543,6 +1662,7 @@ key_from_blob(const u_char *blob, u_int blen)
out:
free(ktype);
free(curve);
free(pk);
#ifdef OPENSSL_HAS_ECC
if (q != NULL)
EC_POINT_free(q);
@ -1551,12 +1671,22 @@ key_from_blob(const u_char *blob, u_int blen)
return key;
}
Key *
key_from_blob(const u_char *blob, u_int blen)
{
return key_from_blob2(blob, blen, 1);
}
static int
to_blob(const Key *key, u_char **blobp, u_int *lenp, int force_plain)
{
Buffer b;
int len, type;
if (blobp != NULL)
*blobp = NULL;
if (lenp != NULL)
*lenp = 0;
if (key == NULL) {
error("key_to_blob: key == NULL");
return 0;
@ -1569,6 +1699,7 @@ to_blob(const Key *key, u_char **blobp, u_int *lenp, int force_plain)
case KEY_DSA_CERT:
case KEY_ECDSA_CERT:
case KEY_RSA_CERT:
case KEY_ED25519_CERT:
/* Use the existing blob */
buffer_append(&b, buffer_ptr(&key->cert->certblob),
buffer_len(&key->cert->certblob));
@ -1596,6 +1727,11 @@ to_blob(const Key *key, u_char **blobp, u_int *lenp, int force_plain)
buffer_put_bignum2(&b, key->rsa->e);
buffer_put_bignum2(&b, key->rsa->n);
break;
case KEY_ED25519:
buffer_put_cstring(&b,
key_ssh_name_from_type_nid(type, key->ecdsa_nid));
buffer_put_string(&b, key->ed25519_pk, ED25519_PK_SZ);
break;
default:
error("key_to_blob: unsupported key type %d", key->type);
buffer_free(&b);
@ -1639,6 +1775,9 @@ key_sign(
case KEY_RSA_CERT:
case KEY_RSA:
return ssh_rsa_sign(key, sigp, lenp, data, datalen);
case KEY_ED25519:
case KEY_ED25519_CERT:
return ssh_ed25519_sign(key, sigp, lenp, data, datalen);
default:
error("key_sign: invalid key type %d", key->type);
return -1;
@ -1672,6 +1811,9 @@ key_verify(
case KEY_RSA_CERT:
case KEY_RSA:
return ssh_rsa_verify(key, signature, signaturelen, data, datalen);
case KEY_ED25519:
case KEY_ED25519_CERT:
return ssh_ed25519_verify(key, signature, signaturelen, data, datalen);
default:
error("key_verify: invalid key type %d", key->type);
return -1;
@ -1691,6 +1833,8 @@ key_demote(const Key *k)
pk->dsa = NULL;
pk->ecdsa = NULL;
pk->rsa = NULL;
pk->ed25519_pk = NULL;
pk->ed25519_sk = NULL;
switch (k->type) {
case KEY_RSA_CERT_V00:
@ -1734,8 +1878,17 @@ key_demote(const Key *k)
fatal("key_demote: EC_KEY_set_public_key failed");
break;
#endif
case KEY_ED25519_CERT:
key_cert_copy(k, pk);
/* FALLTHROUGH */
case KEY_ED25519:
if (k->ed25519_pk != NULL) {
pk->ed25519_pk = xmalloc(ED25519_PK_SZ);
memcpy(pk->ed25519_pk, k->ed25519_pk, ED25519_PK_SZ);
}
break;
default:
fatal("key_free: bad key type %d", k->type);
fatal("key_demote: bad key type %d", k->type);
break;
}
@ -1747,16 +1900,7 @@ key_is_cert(const Key *k)
{
if (k == NULL)
return 0;
switch (k->type) {
case KEY_RSA_CERT_V00:
case KEY_DSA_CERT_V00:
case KEY_RSA_CERT:
case KEY_DSA_CERT:
case KEY_ECDSA_CERT:
return 1;
default:
return 0;
}
return key_type_is_cert(k->type);
}
/* Return the cert-less equivalent to a certified key type */
@ -1772,12 +1916,14 @@ key_type_plain(int type)
return KEY_DSA;
case KEY_ECDSA_CERT:
return KEY_ECDSA;
case KEY_ED25519_CERT:
return KEY_ED25519;
default:
return type;
}
}
/* Convert a KEY_RSA or KEY_DSA to their _CERT equivalent */
/* Convert a plain key to their _CERT equivalent */
int
key_to_certified(Key *k, int legacy)
{
@ -1797,41 +1943,34 @@ key_to_certified(Key *k, int legacy)
k->cert = cert_new();
k->type = KEY_ECDSA_CERT;
return 0;
case KEY_ED25519:
if (legacy)
fatal("%s: legacy ED25519 certificates are not "
"supported", __func__);
k->cert = cert_new();
k->type = KEY_ED25519_CERT;
return 0;
default:
error("%s: key has incorrect type %s", __func__, key_type(k));
return -1;
}
}
/* Convert a KEY_RSA_CERT or KEY_DSA_CERT to their raw key equivalent */
/* Convert a certificate to its raw key equivalent */
int
key_drop_cert(Key *k)
{
switch (k->type) {
case KEY_RSA_CERT_V00:
case KEY_RSA_CERT:
cert_free(k->cert);
k->type = KEY_RSA;
return 0;
case KEY_DSA_CERT_V00:
case KEY_DSA_CERT:
cert_free(k->cert);
k->type = KEY_DSA;
return 0;
case KEY_ECDSA_CERT:
cert_free(k->cert);
k->type = KEY_ECDSA;
return 0;
default:
if (!key_type_is_cert(k->type)) {
error("%s: key has incorrect type %s", __func__, key_type(k));
return -1;
}
cert_free(k->cert);
k->cert = NULL;
k->type = key_type_plain(k->type);
return 0;
}
/*
* Sign a KEY_RSA_CERT, KEY_DSA_CERT or KEY_ECDSA_CERT, (re-)generating
* the signed certblob
*/
/* Sign a certified key, (re-)generating the signed certblob. */
int
key_certify(Key *k, Key *ca)
{
@ -1850,8 +1989,7 @@ key_certify(Key *k, Key *ca)
return -1;
}
if (ca->type != KEY_RSA && ca->type != KEY_DSA &&
ca->type != KEY_ECDSA) {
if (!key_type_is_valid_ca(ca->type)) {
error("%s: CA key has unsupported type %s", __func__,
key_type(ca));
return -1;
@ -1867,6 +2005,7 @@ key_certify(Key *k, Key *ca)
if (!key_cert_is_legacy(k))
buffer_put_string(&k->cert->certblob, nonce, sizeof(nonce));
/* XXX this substantially duplicates to_blob(); refactor */
switch (k->type) {
case KEY_DSA_CERT_V00:
case KEY_DSA_CERT:
@ -1889,6 +2028,10 @@ key_certify(Key *k, Key *ca)
buffer_put_bignum2(&k->cert->certblob, k->rsa->e);
buffer_put_bignum2(&k->cert->certblob, k->rsa->n);
break;
case KEY_ED25519_CERT:
buffer_put_string(&k->cert->certblob,
k->ed25519_pk, ED25519_PK_SZ);
break;
default:
error("%s: key has incorrect type %s", __func__, key_type(k));
buffer_clear(&k->cert->certblob);
@ -2018,8 +2161,10 @@ key_curve_name_to_nid(const char *name)
return NID_X9_62_prime256v1;
else if (strcmp(name, "nistp384") == 0)
return NID_secp384r1;
# ifdef OPENSSL_HAS_NISTP521
else if (strcmp(name, "nistp521") == 0)
return NID_secp521r1;
# endif
#endif
debug("%s: unsupported EC curve name \"%.100s\"", __func__, name);
@ -2035,8 +2180,10 @@ key_curve_nid_to_bits(int nid)
return 256;
case NID_secp384r1:
return 384;
# ifdef OPENSSL_HAS_NISTP521
case NID_secp521r1:
return 521;
# endif
#endif
default:
error("%s: unsupported EC curve nid %d", __func__, nid);
@ -2052,16 +2199,18 @@ key_curve_nid_to_name(int nid)
return "nistp256";
else if (nid == NID_secp384r1)
return "nistp384";
# ifdef OPENSSL_HAS_NISTP521
else if (nid == NID_secp521r1)
return "nistp521";
# endif
#endif
error("%s: unsupported EC curve nid %d", __func__, nid);
return NULL;
}
#ifdef OPENSSL_HAS_ECC
const EVP_MD *
key_ec_nid_to_evpmd(int nid)
int
key_ec_nid_to_hash_alg(int nid)
{
int kbits = key_curve_nid_to_bits(nid);
@ -2069,11 +2218,11 @@ key_ec_nid_to_evpmd(int nid)
fatal("%s: invalid nid %d", __func__, nid);
/* RFC5656 section 6.2.1 */
if (kbits <= 256)
return EVP_sha256();
return SSH_DIGEST_SHA256;
else if (kbits <= 384)
return EVP_sha384();
return SSH_DIGEST_SHA384;
else
return EVP_sha512();
return SSH_DIGEST_SHA512;
}
int
@ -2245,3 +2394,232 @@ key_dump_ec_key(const EC_KEY *key)
}
#endif /* defined(DEBUG_KEXECDH) || defined(DEBUG_PK) */
#endif /* OPENSSL_HAS_ECC */
void
key_private_serialize(const Key *key, Buffer *b)
{
buffer_put_cstring(b, key_ssh_name(key));
switch (key->type) {
case KEY_RSA:
buffer_put_bignum2(b, key->rsa->n);
buffer_put_bignum2(b, key->rsa->e);
buffer_put_bignum2(b, key->rsa->d);
buffer_put_bignum2(b, key->rsa->iqmp);
buffer_put_bignum2(b, key->rsa->p);
buffer_put_bignum2(b, key->rsa->q);
break;
case KEY_RSA_CERT_V00:
case KEY_RSA_CERT:
if (key->cert == NULL || buffer_len(&key->cert->certblob) == 0)
fatal("%s: no cert/certblob", __func__);
buffer_put_string(b, buffer_ptr(&key->cert->certblob),
buffer_len(&key->cert->certblob));
buffer_put_bignum2(b, key->rsa->d);
buffer_put_bignum2(b, key->rsa->iqmp);
buffer_put_bignum2(b, key->rsa->p);
buffer_put_bignum2(b, key->rsa->q);
break;
case KEY_DSA:
buffer_put_bignum2(b, key->dsa->p);
buffer_put_bignum2(b, key->dsa->q);
buffer_put_bignum2(b, key->dsa->g);
buffer_put_bignum2(b, key->dsa->pub_key);
buffer_put_bignum2(b, key->dsa->priv_key);
break;
case KEY_DSA_CERT_V00:
case KEY_DSA_CERT:
if (key->cert == NULL || buffer_len(&key->cert->certblob) == 0)
fatal("%s: no cert/certblob", __func__);
buffer_put_string(b, buffer_ptr(&key->cert->certblob),
buffer_len(&key->cert->certblob));
buffer_put_bignum2(b, key->dsa->priv_key);
break;
#ifdef OPENSSL_HAS_ECC
case KEY_ECDSA:
buffer_put_cstring(b, key_curve_nid_to_name(key->ecdsa_nid));
buffer_put_ecpoint(b, EC_KEY_get0_group(key->ecdsa),
EC_KEY_get0_public_key(key->ecdsa));
buffer_put_bignum2(b, EC_KEY_get0_private_key(key->ecdsa));
break;
case KEY_ECDSA_CERT:
if (key->cert == NULL || buffer_len(&key->cert->certblob) == 0)
fatal("%s: no cert/certblob", __func__);
buffer_put_string(b, buffer_ptr(&key->cert->certblob),
buffer_len(&key->cert->certblob));
buffer_put_bignum2(b, EC_KEY_get0_private_key(key->ecdsa));
break;
#endif /* OPENSSL_HAS_ECC */
case KEY_ED25519:
buffer_put_string(b, key->ed25519_pk, ED25519_PK_SZ);
buffer_put_string(b, key->ed25519_sk, ED25519_SK_SZ);
break;
case KEY_ED25519_CERT:
if (key->cert == NULL || buffer_len(&key->cert->certblob) == 0)
fatal("%s: no cert/certblob", __func__);
buffer_put_string(b, buffer_ptr(&key->cert->certblob),
buffer_len(&key->cert->certblob));
buffer_put_string(b, key->ed25519_pk, ED25519_PK_SZ);
buffer_put_string(b, key->ed25519_sk, ED25519_SK_SZ);
break;
}
}
Key *
key_private_deserialize(Buffer *blob)
{
char *type_name;
Key *k = NULL;
u_char *cert;
u_int len, pklen, sklen;
int type;
#ifdef OPENSSL_HAS_ECC
char *curve;
BIGNUM *exponent;
EC_POINT *q;
#endif
type_name = buffer_get_string(blob, NULL);
type = key_type_from_name(type_name);
switch (type) {
case KEY_DSA:
k = key_new_private(type);
buffer_get_bignum2(blob, k->dsa->p);
buffer_get_bignum2(blob, k->dsa->q);
buffer_get_bignum2(blob, k->dsa->g);
buffer_get_bignum2(blob, k->dsa->pub_key);
buffer_get_bignum2(blob, k->dsa->priv_key);
break;
case KEY_DSA_CERT_V00:
case KEY_DSA_CERT:
cert = buffer_get_string(blob, &len);
if ((k = key_from_blob(cert, len)) == NULL)
fatal("Certificate parse failed");
free(cert);
key_add_private(k);
buffer_get_bignum2(blob, k->dsa->priv_key);
break;
#ifdef OPENSSL_HAS_ECC
case KEY_ECDSA:
k = key_new_private(type);
k->ecdsa_nid = key_ecdsa_nid_from_name(type_name);
curve = buffer_get_string(blob, NULL);
if (k->ecdsa_nid != key_curve_name_to_nid(curve))
fatal("%s: curve names mismatch", __func__);
free(curve);
k->ecdsa = EC_KEY_new_by_curve_name(k->ecdsa_nid);
if (k->ecdsa == NULL)
fatal("%s: EC_KEY_new_by_curve_name failed",
__func__);
q = EC_POINT_new(EC_KEY_get0_group(k->ecdsa));
if (q == NULL)
fatal("%s: BN_new failed", __func__);
if ((exponent = BN_new()) == NULL)
fatal("%s: BN_new failed", __func__);
buffer_get_ecpoint(blob,
EC_KEY_get0_group(k->ecdsa), q);
buffer_get_bignum2(blob, exponent);
if (EC_KEY_set_public_key(k->ecdsa, q) != 1)
fatal("%s: EC_KEY_set_public_key failed",
__func__);
if (EC_KEY_set_private_key(k->ecdsa, exponent) != 1)
fatal("%s: EC_KEY_set_private_key failed",
__func__);
if (key_ec_validate_public(EC_KEY_get0_group(k->ecdsa),
EC_KEY_get0_public_key(k->ecdsa)) != 0)
fatal("%s: bad ECDSA public key", __func__);
if (key_ec_validate_private(k->ecdsa) != 0)
fatal("%s: bad ECDSA private key", __func__);
BN_clear_free(exponent);
EC_POINT_free(q);
break;
case KEY_ECDSA_CERT:
cert = buffer_get_string(blob, &len);
if ((k = key_from_blob(cert, len)) == NULL)
fatal("Certificate parse failed");
free(cert);
key_add_private(k);
if ((exponent = BN_new()) == NULL)
fatal("%s: BN_new failed", __func__);
buffer_get_bignum2(blob, exponent);
if (EC_KEY_set_private_key(k->ecdsa, exponent) != 1)
fatal("%s: EC_KEY_set_private_key failed",
__func__);
if (key_ec_validate_public(EC_KEY_get0_group(k->ecdsa),
EC_KEY_get0_public_key(k->ecdsa)) != 0 ||
key_ec_validate_private(k->ecdsa) != 0)
fatal("%s: bad ECDSA key", __func__);
BN_clear_free(exponent);
break;
#endif
case KEY_RSA:
k = key_new_private(type);
buffer_get_bignum2(blob, k->rsa->n);
buffer_get_bignum2(blob, k->rsa->e);
buffer_get_bignum2(blob, k->rsa->d);
buffer_get_bignum2(blob, k->rsa->iqmp);
buffer_get_bignum2(blob, k->rsa->p);
buffer_get_bignum2(blob, k->rsa->q);
/* Generate additional parameters */
rsa_generate_additional_parameters(k->rsa);
break;
case KEY_RSA_CERT_V00:
case KEY_RSA_CERT:
cert = buffer_get_string(blob, &len);
if ((k = key_from_blob(cert, len)) == NULL)
fatal("Certificate parse failed");
free(cert);
key_add_private(k);
buffer_get_bignum2(blob, k->rsa->d);
buffer_get_bignum2(blob, k->rsa->iqmp);
buffer_get_bignum2(blob, k->rsa->p);
buffer_get_bignum2(blob, k->rsa->q);
break;
case KEY_ED25519:
k = key_new_private(type);
k->ed25519_pk = buffer_get_string(blob, &pklen);
k->ed25519_sk = buffer_get_string(blob, &sklen);
if (pklen != ED25519_PK_SZ)
fatal("%s: ed25519 pklen %d != %d",
__func__, pklen, ED25519_PK_SZ);
if (sklen != ED25519_SK_SZ)
fatal("%s: ed25519 sklen %d != %d",
__func__, sklen, ED25519_SK_SZ);
break;
case KEY_ED25519_CERT:
cert = buffer_get_string(blob, &len);
if ((k = key_from_blob(cert, len)) == NULL)
fatal("Certificate parse failed");
free(cert);
key_add_private(k);
k->ed25519_pk = buffer_get_string(blob, &pklen);
k->ed25519_sk = buffer_get_string(blob, &sklen);
if (pklen != ED25519_PK_SZ)
fatal("%s: ed25519 pklen %d != %d",
__func__, pklen, ED25519_PK_SZ);
if (sklen != ED25519_SK_SZ)
fatal("%s: ed25519 sklen %d != %d",
__func__, sklen, ED25519_SK_SZ);
break;
default:
free(type_name);
buffer_clear(blob);
return NULL;
}
free(type_name);
/* enable blinding */
switch (k->type) {
case KEY_RSA:
case KEY_RSA_CERT_V00:
case KEY_RSA_CERT:
case KEY_RSA1:
if (RSA_blinding_on(k->rsa, NULL) != 1) {
error("%s: RSA_blinding_on failed", __func__);
key_free(k);
return NULL;
}
break;
}
return k;
}

View File

@ -1,4 +1,4 @@
/* $OpenBSD: key.h,v 1.37 2013/05/19 02:42:42 djm Exp $ */
/* $OpenBSD: key.h,v 1.41 2014/01/09 23:20:00 djm Exp $ */
/*
* Copyright (c) 2000, 2001 Markus Friedl. All rights reserved.
@ -39,9 +39,11 @@ enum types {
KEY_RSA,
KEY_DSA,
KEY_ECDSA,
KEY_ED25519,
KEY_RSA_CERT,
KEY_DSA_CERT,
KEY_ECDSA_CERT,
KEY_ED25519_CERT,
KEY_RSA_CERT_V00,
KEY_DSA_CERT_V00,
KEY_UNSPEC
@ -86,8 +88,13 @@ struct Key {
void *ecdsa;
#endif
struct KeyCert *cert;
u_char *ed25519_sk;
u_char *ed25519_pk;
};
#define ED25519_SK_SZ crypto_sign_ed25519_SECRETKEYBYTES
#define ED25519_PK_SZ crypto_sign_ed25519_PUBLICKEYBYTES
Key *key_new(int);
void key_add_private(Key *);
Key *key_new_private(int);
@ -107,6 +114,7 @@ Key *key_generate(int, u_int);
Key *key_from_private(const Key *);
int key_type_from_name(char *);
int key_is_cert(const Key *);
int key_type_is_cert(int);
int key_type_plain(int);
int key_to_certified(Key *, int);
int key_drop_cert(Key *);
@ -123,11 +131,11 @@ u_int key_curve_nid_to_bits(int);
int key_ecdsa_bits_to_nid(int);
#ifdef OPENSSL_HAS_ECC
int key_ecdsa_key_to_nid(EC_KEY *);
const EVP_MD *key_ec_nid_to_evpmd(int nid);
int key_ec_nid_to_hash_alg(int nid);
int key_ec_validate_public(const EC_GROUP *, const EC_POINT *);
int key_ec_validate_private(const EC_KEY *);
#endif
char *key_alg_list(void);
char *key_alg_list(int, int);
Key *key_from_blob(const u_char *, u_int);
int key_to_blob(const Key *, u_char **, u_int *);
@ -144,10 +152,15 @@ int ssh_ecdsa_sign(const Key *, u_char **, u_int *, const u_char *, u_int);
int ssh_ecdsa_verify(const Key *, const u_char *, u_int, const u_char *, u_int);
int ssh_rsa_sign(const Key *, u_char **, u_int *, const u_char *, u_int);
int ssh_rsa_verify(const Key *, const u_char *, u_int, const u_char *, u_int);
int ssh_ed25519_sign(const Key *, u_char **, u_int *, const u_char *, u_int);
int ssh_ed25519_verify(const Key *, const u_char *, u_int, const u_char *, u_int);
#if defined(OPENSSL_HAS_ECC) && (defined(DEBUG_KEXECDH) || defined(DEBUG_PK))
void key_dump_ec_point(const EC_GROUP *, const EC_POINT *);
void key_dump_ec_key(const EC_KEY *);
#endif
void key_private_serialize(const Key *, Buffer *);
Key *key_private_deserialize(Buffer *);
#endif

View File

@ -310,9 +310,13 @@ login_get_lastlog(struct logininfo *li, const uid_t uid)
fatal("%s: Cannot find account for uid %ld", __func__,
(long)uid);
/* No MIN_SIZEOF here - we absolutely *must not* truncate the
* username (XXX - so check for trunc!) */
strlcpy(li->username, pw->pw_name, sizeof(li->username));
if (strlcpy(li->username, pw->pw_name, sizeof(li->username)) >=
sizeof(li->username)) {
error("%s: username too long (%lu > max %lu)", __func__,
(unsigned long)strlen(pw->pw_name),
(unsigned long)sizeof(li->username) - 1);
return NULL;
}
if (getlast_entry(li))
return (li);
@ -320,7 +324,6 @@ login_get_lastlog(struct logininfo *li, const uid_t uid)
return (NULL);
}
/*
* login_alloc_entry(int, char*, char*, char*) - Allocate and initialise
* a logininfo structure

View File

@ -1,4 +1,4 @@
/* $OpenBSD: mac.c,v 1.24 2013/06/03 00:03:18 dtucker Exp $ */
/* $OpenBSD: mac.c,v 1.26 2014/01/04 17:50:55 tedu Exp $ */
/*
* Copyright (c) 2001 Markus Friedl. All rights reserved.
*
@ -91,9 +91,9 @@ static const struct macalg macs[] = {
{ NULL, 0, NULL, 0, 0, 0, 0 }
};
/* Returns a comma-separated list of supported MACs. */
/* Returns a list of supported MACs separated by the specified char. */
char *
mac_alg_list(void)
mac_alg_list(char sep)
{
char *ret = NULL;
size_t nlen, rlen = 0;
@ -101,7 +101,7 @@ mac_alg_list(void)
for (m = macs; m->name != NULL; m++) {
if (ret != NULL)
ret[rlen++] = '\n';
ret[rlen++] = sep;
nlen = strlen(m->name);
ret = xrealloc(ret, 1, rlen + nlen + 2);
memcpy(ret + rlen, m->name, nlen + 1);
@ -181,8 +181,8 @@ mac_compute(Mac *mac, u_int32_t seqno, u_char *data, int datalen)
u_char b[4], nonce[8];
if (mac->mac_len > sizeof(u))
fatal("mac_compute: mac too long %u %lu",
mac->mac_len, (u_long)sizeof(u));
fatal("mac_compute: mac too long %u %zu",
mac->mac_len, sizeof(u));
switch (mac->type) {
case SSH_EVP:

View File

@ -1,4 +1,4 @@
/* $OpenBSD: mac.h,v 1.7 2013/04/19 01:06:50 djm Exp $ */
/* $OpenBSD: mac.h,v 1.8 2013/11/07 11:58:27 dtucker Exp $ */
/*
* Copyright (c) 2001 Markus Friedl. All rights reserved.
*
@ -24,7 +24,7 @@
*/
int mac_valid(const char *);
char *mac_alg_list(void);
char *mac_alg_list(char);
int mac_setup(Mac *, char *);
int mac_init(Mac *);
u_char *mac_compute(Mac *, u_int32_t, u_char *, int);

View File

@ -1,4 +1,4 @@
/* $OpenBSD: match.c,v 1.28 2013/05/17 00:13:13 djm Exp $ */
/* $OpenBSD: match.c,v 1.29 2013/11/20 20:54:10 deraadt Exp $ */
/*
* Author: Tatu Ylonen <ylo@cs.hut.fi>
* Copyright (c) 1995 Tatu Ylonen <ylo@cs.hut.fi>, Espoo, Finland
@ -141,8 +141,8 @@ match_pattern_list(const char *string, const char *pattern, u_int len,
for (subi = 0;
i < len && subi < sizeof(sub) - 1 && pattern[i] != ',';
subi++, i++)
sub[subi] = dolower && isupper(pattern[i]) ?
(char)tolower(pattern[i]) : pattern[i];
sub[subi] = dolower && isupper((u_char)pattern[i]) ?
tolower((u_char)pattern[i]) : pattern[i];
/* If subpattern too long, return failure (no match). */
if (subi >= sizeof(sub) - 1)
return 0;

View File

@ -1,4 +1,4 @@
/* $OpenBSD: misc.c,v 1.91 2013/07/12 00:43:50 djm Exp $ */
/* $OpenBSD: misc.c,v 1.92 2013/10/14 23:28:23 djm Exp $ */
/* $FreeBSD$ */
/*
* Copyright (c) 2000 Markus Friedl. All rights reserved.
@ -44,6 +44,7 @@
#include <netinet/ip.h>
#include <netinet/tcp.h>
#include <ctype.h>
#include <errno.h>
#include <fcntl.h>
#include <netdb.h>
@ -1018,6 +1019,13 @@ iptos2str(int iptos)
snprintf(iptos_str, sizeof iptos_str, "0x%02x", iptos);
return iptos_str;
}
void
lowercase(char *s)
{
for (; *s; s++)
*s = tolower((u_char)*s);
}
void
sock_set_v6only(int s)
{

View File

@ -1,4 +1,4 @@
/* $OpenBSD: misc.h,v 1.49 2013/06/01 13:15:52 dtucker Exp $ */
/* $OpenBSD: misc.h,v 1.50 2013/10/14 23:28:23 djm Exp $ */
/* $FreeBSD$ */
/*
@ -37,6 +37,8 @@ void sanitise_stdfd(void);
void ms_subtract_diff(struct timeval *, int *);
void ms_to_timeval(struct timeval *, int);
time_t monotime(void);
void lowercase(char *s);
void sock_set_v6only(int);
void sock_get_rcvbuf(int *, int);

View File

@ -1,4 +1,4 @@
/* $OpenBSD: moduli.c,v 1.27 2013/05/17 00:13:13 djm Exp $ */
/* $OpenBSD: moduli.c,v 1.28 2013/10/24 00:49:49 dtucker Exp $ */
/*
* Copyright 1994 Phil Karn <karn@qualcomm.com>
* Copyright 1996-1998, 2003 William Allen Simpson <wsimpson@greendragon.com>
@ -56,6 +56,7 @@
#include "xmalloc.h"
#include "dh.h"
#include "log.h"
#include "misc.h"
#include "openbsd-compat/openssl-compat.h"
@ -488,6 +489,79 @@ read_checkpoint(char *cpfile)
return lineno;
}
static unsigned long
count_lines(FILE *f)
{
unsigned long count = 0;
char lp[QLINESIZE + 1];
if (fseek(f, 0, SEEK_SET) != 0) {
debug("input file is not seekable");
return ULONG_MAX;
}
while (fgets(lp, QLINESIZE + 1, f) != NULL)
count++;
rewind(f);
debug("input file has %lu lines", count);
return count;
}
static char *
fmt_time(time_t seconds)
{
int day, hr, min;
static char buf[128];
min = (seconds / 60) % 60;
hr = (seconds / 60 / 60) % 24;
day = seconds / 60 / 60 / 24;
if (day > 0)
snprintf(buf, sizeof buf, "%dd %d:%02d", day, hr, min);
else
snprintf(buf, sizeof buf, "%d:%02d", hr, min);
return buf;
}
static void
print_progress(unsigned long start_lineno, unsigned long current_lineno,
unsigned long end_lineno)
{
static time_t time_start, time_prev;
time_t time_now, elapsed;
unsigned long num_to_process, processed, remaining, percent, eta;
double time_per_line;
char *eta_str;
time_now = monotime();
if (time_start == 0) {
time_start = time_prev = time_now;
return;
}
/* print progress after 1m then once per 5m */
if (time_now - time_prev < 5 * 60)
return;
time_prev = time_now;
elapsed = time_now - time_start;
processed = current_lineno - start_lineno;
remaining = end_lineno - current_lineno;
num_to_process = end_lineno - start_lineno;
time_per_line = (double)elapsed / processed;
/* if we don't know how many we're processing just report count+time */
time(&time_now);
if (end_lineno == ULONG_MAX) {
logit("%.24s processed %lu in %s", ctime(&time_now),
processed, fmt_time(elapsed));
return;
}
percent = 100 * processed / num_to_process;
eta = time_per_line * remaining;
eta_str = xstrdup(fmt_time(eta));
logit("%.24s processed %lu of %lu (%lu%%) in %s, ETA %s",
ctime(&time_now), processed, num_to_process, percent,
fmt_time(elapsed), eta_str);
free(eta_str);
}
/*
* perform a Miller-Rabin primality test
* on the list of candidates
@ -512,6 +586,11 @@ prime_test(FILE *in, FILE *out, u_int32_t trials, u_int32_t generator_wanted,
return (-1);
}
if (num_lines == 0)
end_lineno = count_lines(in);
else
end_lineno = start_lineno + num_lines;
time(&time_start);
if ((p = BN_new()) == NULL)
@ -526,26 +605,25 @@ prime_test(FILE *in, FILE *out, u_int32_t trials, u_int32_t generator_wanted,
if (checkpoint_file != NULL)
last_processed = read_checkpoint(checkpoint_file);
if (start_lineno > last_processed)
last_processed = start_lineno;
if (num_lines == 0)
end_lineno = ULONG_MAX;
last_processed = start_lineno = MAX(last_processed, start_lineno);
if (end_lineno == ULONG_MAX)
debug("process from line %lu from pipe", last_processed);
else
end_lineno = last_processed + num_lines;
debug2("process line %lu to line %lu", last_processed, end_lineno);
debug("process from line %lu to line %lu", last_processed,
end_lineno);
res = 0;
lp = xmalloc(QLINESIZE + 1);
while (fgets(lp, QLINESIZE + 1, in) != NULL && count_in < end_lineno) {
count_in++;
if (checkpoint_file != NULL) {
if (count_in <= last_processed) {
debug3("skipping line %u, before checkpoint",
count_in);
continue;
}
write_checkpoint(checkpoint_file, count_in);
if (count_in <= last_processed) {
debug3("skipping line %u, before checkpoint or "
"specified start line", count_in);
continue;
}
if (checkpoint_file != NULL)
write_checkpoint(checkpoint_file, count_in);
print_progress(start_lineno, count_in, end_lineno);
if (strlen(lp) < 14 || *lp == '!' || *lp == '#') {
debug2("%10u: comment or short line", count_in);
continue;

View File

@ -1,4 +1,4 @@
/* $OpenBSD: monitor.c,v 1.127 2013/07/19 07:37:48 markus Exp $ */
/* $OpenBSD: monitor.c,v 1.128 2013/11/04 11:51:16 markus Exp $ */
/*
* Copyright 2002 Niels Provos <provos@citi.umich.edu>
* Copyright 2002 Markus Friedl <markus@openbsd.org>
@ -1855,6 +1855,7 @@ mm_get_kex(Buffer *m)
kex->kex[KEX_DH_GEX_SHA1] = kexgex_server;
kex->kex[KEX_DH_GEX_SHA256] = kexgex_server;
kex->kex[KEX_ECDH_SHA2] = kexecdh_server;
kex->kex[KEX_C25519_SHA256] = kexc25519_server;
kex->server = 1;
kex->hostkey_type = buffer_get_int(m);
kex->kex_type = buffer_get_int(m);

View File

@ -1,4 +1,4 @@
/* $OpenBSD: monitor_mm.c,v 1.18 2013/11/08 00:39:15 djm Exp $ */
/* $OpenBSD: monitor_mm.c,v 1.19 2014/01/04 17:50:55 tedu Exp $ */
/*
* Copyright 2002 Niels Provos <provos@citi.umich.edu>
* All rights reserved.
@ -35,6 +35,7 @@
#include <errno.h>
#include <stdarg.h>
#include <stddef.h>
#include <stdlib.h>
#include <string.h>
@ -46,7 +47,7 @@
static int
mm_compare(struct mm_share *a, struct mm_share *b)
{
long diff = (char *)a->address - (char *)b->address;
ptrdiff_t diff = (char *)a->address - (char *)b->address;
if (diff == 0)
return (0);
@ -73,8 +74,8 @@ mm_make_entry(struct mm_master *mm, struct mmtree *head,
tmp2 = RB_INSERT(mmtree, head, tmp);
if (tmp2 != NULL)
fatal("mm_make_entry(%p): double address %p->%p(%lu)",
mm, tmp2, address, (u_long)size);
fatal("mm_make_entry(%p): double address %p->%p(%zu)",
mm, tmp2, address, size);
return (tmp);
}
@ -101,7 +102,7 @@ mm_create(struct mm_master *mmalloc, size_t size)
address = xmmap(size);
if (address == (void *)MAP_FAILED)
fatal("mmap(%lu): %s", (u_long)size, strerror(errno));
fatal("mmap(%zu): %s", size, strerror(errno));
mm->address = address;
mm->size = size;
@ -141,7 +142,7 @@ mm_destroy(struct mm_master *mm)
#ifdef HAVE_MMAP
if (munmap(mm->address, mm->size) == -1)
fatal("munmap(%p, %lu): %s", mm->address, (u_long)mm->size,
fatal("munmap(%p, %zu): %s", mm->address, mm->size,
strerror(errno));
#else
fatal("%s: UsePrivilegeSeparation=yes and Compression=yes not supported",
@ -160,7 +161,7 @@ mm_xmalloc(struct mm_master *mm, size_t size)
address = mm_malloc(mm, size);
if (address == NULL)
fatal("%s: mm_malloc(%lu)", __func__, (u_long)size);
fatal("%s: mm_malloc(%zu)", __func__, size);
memset(address, 0, size);
return (address);
}
@ -195,7 +196,7 @@ mm_malloc(struct mm_master *mm, size_t size)
/* Does not change order in RB tree */
mms->size -= size;
mms->address = (u_char *)mms->address + size;
mms->address = (char *)mms->address + size;
if (mms->size == 0) {
RB_REMOVE(mmtree, &mm->rb_free, mms);
@ -248,8 +249,8 @@ mm_free(struct mm_master *mm, void *address)
/* Check if range does not overlap */
if (prev != NULL && MM_ADDRESS_END(prev) > address)
fatal("mm_free: memory corruption: %p(%lu) > %p",
prev->address, (u_long)prev->size, address);
fatal("mm_free: memory corruption: %p(%zu) > %p",
prev->address, prev->size, address);
/* See if we can merge backwards */
if (prev != NULL && MM_ADDRESS_END(prev) == address) {
@ -271,8 +272,8 @@ mm_free(struct mm_master *mm, void *address)
return;
if (MM_ADDRESS_END(prev) > mms->address)
fatal("mm_free: memory corruption: %p < %p(%lu)",
mms->address, prev->address, (u_long)prev->size);
fatal("mm_free: memory corruption: %p < %p(%zu)",
mms->address, prev->address, prev->size);
if (MM_ADDRESS_END(prev) != mms->address)
return;
@ -343,12 +344,12 @@ mm_share_sync(struct mm_master **pmm, struct mm_master **pmmalloc)
void
mm_memvalid(struct mm_master *mm, void *address, size_t size)
{
void *end = (u_char *)address + size;
void *end = (char *)address + size;
if (address < mm->address)
fatal("mm_memvalid: address too small: %p", address);
if (end < address)
fatal("mm_memvalid: end < address: %p < %p", end, address);
if (end > (void *)((u_char *)mm->address + mm->size))
if (end > MM_ADDRESS_END(mm))
fatal("mm_memvalid: address too large: %p", address);
}

View File

@ -1,4 +1,4 @@
/* $OpenBSD: monitor_mm.h,v 1.5 2008/04/29 11:20:31 otto Exp $ */
/* $OpenBSD: monitor_mm.h,v 1.6 2014/01/04 17:50:55 tedu Exp $ */
/*
* Copyright 2002 Niels Provos <provos@citi.umich.edu>
@ -47,7 +47,7 @@ RB_PROTOTYPE(mmtree, mm_share, next, mm_compare)
#define MM_MINSIZE 128
#define MM_ADDRESS_END(x) (void *)((u_char *)(x)->address + (x)->size)
#define MM_ADDRESS_END(x) (void *)((char *)(x)->address + (x)->size)
struct mm_master *mm_create(struct mm_master *, size_t);
void mm_destroy(struct mm_master *);

View File

@ -1,4 +1,4 @@
/* $OpenBSD: myproposal.h,v 1.32 2013/01/08 18:49:04 markus Exp $ */
/* $OpenBSD: myproposal.h,v 1.35 2013/12/06 13:39:49 markus Exp $ */
/* $FreeBSD$ */
/*
@ -30,6 +30,7 @@
/* conditional algorithm support */
#ifdef OPENSSL_HAS_ECC
#ifdef OPENSSL_HAS_NISTP521
# define KEX_ECDH_METHODS \
"ecdh-sha2-nistp256," \
"ecdh-sha2-nistp384," \
@ -43,6 +44,17 @@
"ecdsa-sha2-nistp384," \
"ecdsa-sha2-nistp521,"
#else
# define KEX_ECDH_METHODS \
"ecdh-sha2-nistp256," \
"ecdh-sha2-nistp384,"
# define HOSTKEY_ECDSA_CERT_METHODS \
"ecdsa-sha2-nistp256-cert-v01@openssh.com," \
"ecdsa-sha2-nistp384-cert-v01@openssh.com,"
# define HOSTKEY_ECDSA_METHODS \
"ecdsa-sha2-nistp256," \
"ecdsa-sha2-nistp384,"
#endif
#else
# define KEX_ECDH_METHODS
# define HOSTKEY_ECDSA_CERT_METHODS
# define HOSTKEY_ECDSA_METHODS
@ -58,15 +70,19 @@
#ifdef HAVE_EVP_SHA256
# define KEX_SHA256_METHODS \
"diffie-hellman-group-exchange-sha256,"
#define KEX_CURVE25519_METHODS \
"curve25519-sha256@libssh.org,"
#define SHA2_HMAC_MODES \
"hmac-sha2-256," \
"hmac-sha2-512,"
#else
# define KEX_SHA256_METHODS
# define KEX_CURVE25519_METHODS
# define SHA2_HMAC_MODES
#endif
# define KEX_DEFAULT_KEX \
KEX_CURVE25519_METHODS \
KEX_ECDH_METHODS \
KEX_SHA256_METHODS \
"diffie-hellman-group-exchange-sha1," \
@ -75,11 +91,13 @@
#define KEX_DEFAULT_PK_ALG \
HOSTKEY_ECDSA_CERT_METHODS \
"ssh-ed25519-cert-v01@openssh.com," \
"ssh-rsa-cert-v01@openssh.com," \
"ssh-dss-cert-v01@openssh.com," \
"ssh-rsa-cert-v00@openssh.com," \
"ssh-dss-cert-v00@openssh.com," \
HOSTKEY_ECDSA_METHODS \
"ssh-ed25519," \
"ssh-rsa," \
"ssh-dss"
@ -89,6 +107,7 @@
"aes128-ctr,aes192-ctr,aes256-ctr," \
"arcfour256,arcfour128," \
AESGCM_CIPHER_MODES \
"chacha20-poly1305@openssh.com," \
"aes128-cbc,3des-cbc,blowfish-cbc,cast128-cbc," \
"aes192-cbc,aes256-cbc,arcfour,rijndael-cbc@lysator.liu.se"
#ifdef NONE_CIPHER_ENABLED

View File

@ -1,4 +1,4 @@
# $Id: Makefile.in,v 1.51 2013/05/10 06:28:56 dtucker Exp $
# $Id: Makefile.in,v 1.54 2013/12/07 01:37:54 djm Exp $
sysconfdir=@sysconfdir@
piddir=@piddir@
@ -16,9 +16,9 @@ RANLIB=@RANLIB@
INSTALL=@INSTALL@
LDFLAGS=-L. @LDFLAGS@
OPENBSD=base64.o basename.o bindresvport.o daemon.o dirname.o fmt_scaled.o getcwd.o getgrouplist.o getopt_long.o getrrsetbyname.o glob.o inet_aton.o inet_ntoa.o inet_ntop.o mktemp.o pwcache.o readpassphrase.o realpath.o rresvport.o setenv.o setproctitle.o sha2.o sigact.o strlcat.o strlcpy.o strmode.o strnlen.o strptime.o strsep.o strtonum.o strtoll.o strtoul.o strtoull.o timingsafe_bcmp.o vis.o
OPENBSD=base64.o basename.o bcrypt_pbkdf.o bindresvport.o blowfish.o daemon.o dirname.o fmt_scaled.o getcwd.o getgrouplist.o getopt_long.o getrrsetbyname.o glob.o inet_aton.o inet_ntoa.o inet_ntop.o mktemp.o pwcache.o readpassphrase.o realpath.o rresvport.o setenv.o setproctitle.o sha2.o sigact.o strlcat.o strlcpy.o strmode.o strnlen.o strptime.o strsep.o strtonum.o strtoll.o strtoul.o strtoull.o timingsafe_bcmp.o vis.o blowfish.o bcrypt_pbkdf.o
COMPAT=bsd-arc4random.o bsd-asprintf.o bsd-closefrom.o bsd-cray.o bsd-cygwin_util.o bsd-getpeereid.o getrrsetbyname-ldns.o bsd-misc.o bsd-nextstep.o bsd-openpty.o bsd-poll.o bsd-setres_id.o bsd-snprintf.o bsd-statvfs.o bsd-waitpid.o fake-rfc2553.o openssl-compat.o xmmap.o xcrypt.o
COMPAT=arc4random.o bsd-asprintf.o bsd-closefrom.o bsd-cray.o bsd-cygwin_util.o bsd-getpeereid.o getrrsetbyname-ldns.o bsd-misc.o bsd-nextstep.o bsd-openpty.o bsd-poll.o bsd-setres_id.o bsd-snprintf.o bsd-statvfs.o bsd-waitpid.o fake-rfc2553.o openssl-compat.o xmmap.o xcrypt.o
PORTS=port-aix.o port-irix.o port-linux.o port-solaris.o port-tun.o port-uw.o

View File

@ -0,0 +1,294 @@
/* OPENBSD ORIGINAL: lib/libc/crypto/arc4random.c */
/* $OpenBSD: arc4random.c,v 1.25 2013/10/01 18:34:57 markus Exp $ */
/*
* Copyright (c) 1996, David Mazieres <dm@uun.org>
* Copyright (c) 2008, Damien Miller <djm@openbsd.org>
* Copyright (c) 2013, Markus Friedl <markus@openbsd.org>
*
* Permission to use, copy, modify, and distribute this software for any
* purpose with or without fee is hereby granted, provided that the above
* copyright notice and this permission notice appear in all copies.
*
* THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES
* WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF
* MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR
* ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES
* WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN
* ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF
* OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE.
*/
/*
* ChaCha based random number generator for OpenBSD.
*/
#include "includes.h"
#include <stdlib.h>
#include <string.h>
#include <unistd.h>
#include <sys/types.h>
#ifndef HAVE_ARC4RANDOM
#include <openssl/rand.h>
#include <openssl/err.h>
#include "log.h"
#define KEYSTREAM_ONLY
#include "chacha_private.h"
#ifdef __GNUC__
#define inline __inline
#else /* !__GNUC__ */
#define inline
#endif /* !__GNUC__ */
/* OpenSSH isn't multithreaded */
#define _ARC4_LOCK()
#define _ARC4_UNLOCK()
#define KEYSZ 32
#define IVSZ 8
#define BLOCKSZ 64
#define RSBUFSZ (16*BLOCKSZ)
static int rs_initialized;
static pid_t rs_stir_pid;
static chacha_ctx rs; /* chacha context for random keystream */
static u_char rs_buf[RSBUFSZ]; /* keystream blocks */
static size_t rs_have; /* valid bytes at end of rs_buf */
static size_t rs_count; /* bytes till reseed */
static inline void _rs_rekey(u_char *dat, size_t datlen);
static inline void
_rs_init(u_char *buf, size_t n)
{
if (n < KEYSZ + IVSZ)
return;
chacha_keysetup(&rs, buf, KEYSZ * 8, 0);
chacha_ivsetup(&rs, buf + KEYSZ);
}
static void
_rs_stir(void)
{
u_char rnd[KEYSZ + IVSZ];
if (RAND_bytes(rnd, sizeof(rnd)) <= 0)
fatal("Couldn't obtain random bytes (error %ld)",
ERR_get_error());
if (!rs_initialized) {
rs_initialized = 1;
_rs_init(rnd, sizeof(rnd));
} else
_rs_rekey(rnd, sizeof(rnd));
memset(rnd, 0, sizeof(rnd));
/* invalidate rs_buf */
rs_have = 0;
memset(rs_buf, 0, RSBUFSZ);
rs_count = 1600000;
}
static inline void
_rs_stir_if_needed(size_t len)
{
pid_t pid = getpid();
if (rs_count <= len || !rs_initialized || rs_stir_pid != pid) {
rs_stir_pid = pid;
_rs_stir();
} else
rs_count -= len;
}
static inline void
_rs_rekey(u_char *dat, size_t datlen)
{
#ifndef KEYSTREAM_ONLY
memset(rs_buf, 0,RSBUFSZ);
#endif
/* fill rs_buf with the keystream */
chacha_encrypt_bytes(&rs, rs_buf, rs_buf, RSBUFSZ);
/* mix in optional user provided data */
if (dat) {
size_t i, m;
m = MIN(datlen, KEYSZ + IVSZ);
for (i = 0; i < m; i++)
rs_buf[i] ^= dat[i];
}
/* immediately reinit for backtracking resistance */
_rs_init(rs_buf, KEYSZ + IVSZ);
memset(rs_buf, 0, KEYSZ + IVSZ);
rs_have = RSBUFSZ - KEYSZ - IVSZ;
}
static inline void
_rs_random_buf(void *_buf, size_t n)
{
u_char *buf = (u_char *)_buf;
size_t m;
_rs_stir_if_needed(n);
while (n > 0) {
if (rs_have > 0) {
m = MIN(n, rs_have);
memcpy(buf, rs_buf + RSBUFSZ - rs_have, m);
memset(rs_buf + RSBUFSZ - rs_have, 0, m);
buf += m;
n -= m;
rs_have -= m;
}
if (rs_have == 0)
_rs_rekey(NULL, 0);
}
}
static inline void
_rs_random_u32(u_int32_t *val)
{
_rs_stir_if_needed(sizeof(*val));
if (rs_have < sizeof(*val))
_rs_rekey(NULL, 0);
memcpy(val, rs_buf + RSBUFSZ - rs_have, sizeof(*val));
memset(rs_buf + RSBUFSZ - rs_have, 0, sizeof(*val));
rs_have -= sizeof(*val);
return;
}
void
arc4random_stir(void)
{
_ARC4_LOCK();
_rs_stir();
_ARC4_UNLOCK();
}
void
arc4random_addrandom(u_char *dat, int datlen)
{
int m;
_ARC4_LOCK();
if (!rs_initialized)
_rs_stir();
while (datlen > 0) {
m = MIN(datlen, KEYSZ + IVSZ);
_rs_rekey(dat, m);
dat += m;
datlen -= m;
}
_ARC4_UNLOCK();
}
u_int32_t
arc4random(void)
{
u_int32_t val;
_ARC4_LOCK();
_rs_random_u32(&val);
_ARC4_UNLOCK();
return val;
}
/*
* If we are providing arc4random, then we can provide a more efficient
* arc4random_buf().
*/
# ifndef HAVE_ARC4RANDOM_BUF
void
arc4random_buf(void *buf, size_t n)
{
_ARC4_LOCK();
_rs_random_buf(buf, n);
_ARC4_UNLOCK();
}
# endif /* !HAVE_ARC4RANDOM_BUF */
#endif /* !HAVE_ARC4RANDOM */
/* arc4random_buf() that uses platform arc4random() */
#if !defined(HAVE_ARC4RANDOM_BUF) && defined(HAVE_ARC4RANDOM)
void
arc4random_buf(void *_buf, size_t n)
{
size_t i;
u_int32_t r = 0;
char *buf = (char *)_buf;
for (i = 0; i < n; i++) {
if (i % 4 == 0)
r = arc4random();
buf[i] = r & 0xff;
r >>= 8;
}
i = r = 0;
}
#endif /* !defined(HAVE_ARC4RANDOM_BUF) && defined(HAVE_ARC4RANDOM) */
#ifndef HAVE_ARC4RANDOM_UNIFORM
/*
* Calculate a uniformly distributed random number less than upper_bound
* avoiding "modulo bias".
*
* Uniformity is achieved by generating new random numbers until the one
* returned is outside the range [0, 2**32 % upper_bound). This
* guarantees the selected random number will be inside
* [2**32 % upper_bound, 2**32) which maps back to [0, upper_bound)
* after reduction modulo upper_bound.
*/
u_int32_t
arc4random_uniform(u_int32_t upper_bound)
{
u_int32_t r, min;
if (upper_bound < 2)
return 0;
/* 2**32 % x == (2**32 - x) % x */
min = -upper_bound % upper_bound;
/*
* This could theoretically loop forever but each retry has
* p > 0.5 (worst case, usually far better) of selecting a
* number inside the range we need, so it should rarely need
* to re-roll.
*/
for (;;) {
r = arc4random();
if (r >= min)
break;
}
return r % upper_bound;
}
#endif /* !HAVE_ARC4RANDOM_UNIFORM */
#if 0
/*-------- Test code for i386 --------*/
#include <stdio.h>
#include <machine/pctr.h>
int
main(int argc, char **argv)
{
const int iter = 1000000;
int i;
pctrval v;
v = rdtsc();
for (i = 0; i < iter; i++)
arc4random();
v = rdtsc() - v;
v /= iter;
printf("%qd cycles\n", v);
exit(0);
}
#endif

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/* $OpenBSD: bcrypt_pbkdf.c,v 1.4 2013/07/29 00:55:53 tedu Exp $ */
/*
* Copyright (c) 2013 Ted Unangst <tedu@openbsd.org>
*
* Permission to use, copy, modify, and distribute this software for any
* purpose with or without fee is hereby granted, provided that the above
* copyright notice and this permission notice appear in all copies.
*
* THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES
* WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF
* MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR
* ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES
* WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN
* ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF
* OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE.
*/
#include "includes.h"
#ifndef HAVE_BCRYPT_PBKDF
#include <sys/types.h>
#include <sys/param.h>
#ifdef HAVE_STDLIB_H
# include <stdlib.h>
#endif
#include <string.h>
#ifdef HAVE_BLF_H
# include <blf.h>
#endif
#include "crypto_api.h"
#define SHA512_DIGEST_LENGTH crypto_hash_sha512_BYTES
/*
* pkcs #5 pbkdf2 implementation using the "bcrypt" hash
*
* The bcrypt hash function is derived from the bcrypt password hashing
* function with the following modifications:
* 1. The input password and salt are preprocessed with SHA512.
* 2. The output length is expanded to 256 bits.
* 3. Subsequently the magic string to be encrypted is lengthened and modifed
* to "OxychromaticBlowfishSwatDynamite"
* 4. The hash function is defined to perform 64 rounds of initial state
* expansion. (More rounds are performed by iterating the hash.)
*
* Note that this implementation pulls the SHA512 operations into the caller
* as a performance optimization.
*
* One modification from official pbkdf2. Instead of outputting key material
* linearly, we mix it. pbkdf2 has a known weakness where if one uses it to
* generate (i.e.) 512 bits of key material for use as two 256 bit keys, an
* attacker can merely run once through the outer loop below, but the user
* always runs it twice. Shuffling output bytes requires computing the
* entirety of the key material to assemble any subkey. This is something a
* wise caller could do; we just do it for you.
*/
#define BCRYPT_BLOCKS 8
#define BCRYPT_HASHSIZE (BCRYPT_BLOCKS * 4)
static void
bcrypt_hash(u_int8_t *sha2pass, u_int8_t *sha2salt, u_int8_t *out)
{
blf_ctx state;
u_int8_t ciphertext[BCRYPT_HASHSIZE] =
"OxychromaticBlowfishSwatDynamite";
uint32_t cdata[BCRYPT_BLOCKS];
int i;
uint16_t j;
size_t shalen = SHA512_DIGEST_LENGTH;
/* key expansion */
Blowfish_initstate(&state);
Blowfish_expandstate(&state, sha2salt, shalen, sha2pass, shalen);
for (i = 0; i < 64; i++) {
Blowfish_expand0state(&state, sha2salt, shalen);
Blowfish_expand0state(&state, sha2pass, shalen);
}
/* encryption */
j = 0;
for (i = 0; i < BCRYPT_BLOCKS; i++)
cdata[i] = Blowfish_stream2word(ciphertext, sizeof(ciphertext),
&j);
for (i = 0; i < 64; i++)
blf_enc(&state, cdata, sizeof(cdata) / sizeof(uint64_t));
/* copy out */
for (i = 0; i < BCRYPT_BLOCKS; i++) {
out[4 * i + 3] = (cdata[i] >> 24) & 0xff;
out[4 * i + 2] = (cdata[i] >> 16) & 0xff;
out[4 * i + 1] = (cdata[i] >> 8) & 0xff;
out[4 * i + 0] = cdata[i] & 0xff;
}
/* zap */
memset(ciphertext, 0, sizeof(ciphertext));
memset(cdata, 0, sizeof(cdata));
memset(&state, 0, sizeof(state));
}
int
bcrypt_pbkdf(const char *pass, size_t passlen, const u_int8_t *salt, size_t saltlen,
u_int8_t *key, size_t keylen, unsigned int rounds)
{
u_int8_t sha2pass[SHA512_DIGEST_LENGTH];
u_int8_t sha2salt[SHA512_DIGEST_LENGTH];
u_int8_t out[BCRYPT_HASHSIZE];
u_int8_t tmpout[BCRYPT_HASHSIZE];
u_int8_t *countsalt;
size_t i, j, amt, stride;
uint32_t count;
/* nothing crazy */
if (rounds < 1)
return -1;
if (passlen == 0 || saltlen == 0 || keylen == 0 ||
keylen > sizeof(out) * sizeof(out) || saltlen > 1<<20)
return -1;
if ((countsalt = calloc(1, saltlen + 4)) == NULL)
return -1;
stride = (keylen + sizeof(out) - 1) / sizeof(out);
amt = (keylen + stride - 1) / stride;
memcpy(countsalt, salt, saltlen);
/* collapse password */
crypto_hash_sha512(sha2pass, pass, passlen);
/* generate key, sizeof(out) at a time */
for (count = 1; keylen > 0; count++) {
countsalt[saltlen + 0] = (count >> 24) & 0xff;
countsalt[saltlen + 1] = (count >> 16) & 0xff;
countsalt[saltlen + 2] = (count >> 8) & 0xff;
countsalt[saltlen + 3] = count & 0xff;
/* first round, salt is salt */
crypto_hash_sha512(sha2salt, countsalt, saltlen + 4);
bcrypt_hash(sha2pass, sha2salt, tmpout);
memcpy(out, tmpout, sizeof(out));
for (i = 1; i < rounds; i++) {
/* subsequent rounds, salt is previous output */
crypto_hash_sha512(sha2salt, tmpout, sizeof(tmpout));
bcrypt_hash(sha2pass, sha2salt, tmpout);
for (j = 0; j < sizeof(out); j++)
out[j] ^= tmpout[j];
}
/*
* pbkdf2 deviation: ouput the key material non-linearly.
*/
amt = MIN(amt, keylen);
for (i = 0; i < amt; i++)
key[i * stride + (count - 1)] = out[i];
keylen -= amt;
}
/* zap */
memset(out, 0, sizeof(out));
memset(countsalt, 0, saltlen + 4);
free(countsalt);
return 0;
}
#endif /* HAVE_BCRYPT_PBKDF */

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/* $OpenBSD: blf.h,v 1.7 2007/03/14 17:59:41 grunk Exp $ */
/*
* Blowfish - a fast block cipher designed by Bruce Schneier
*
* Copyright 1997 Niels Provos <provos@physnet.uni-hamburg.de>
* All rights reserved.
*
* Redistribution and use in source and binary forms, with or without
* modification, are permitted provided that the following conditions
* are met:
* 1. Redistributions of source code must retain the above copyright
* notice, this list of conditions and the following disclaimer.
* 2. Redistributions in binary form must reproduce the above copyright
* notice, this list of conditions and the following disclaimer in the
* documentation and/or other materials provided with the distribution.
* 3. All advertising materials mentioning features or use of this software
* must display the following acknowledgement:
* This product includes software developed by Niels Provos.
* 4. The name of the author may not be used to endorse or promote products
* derived from this software without specific prior written permission.
*
* THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
* IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
* OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
* IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
* INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
* NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
* DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
* THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
* (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
* THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
*/
#ifndef _BLF_H_
#define _BLF_H_
#include "includes.h"
#if !defined(HAVE_BCRYPT_PBKDF) && !defined(HAVE_BLH_H)
/* Schneier specifies a maximum key length of 56 bytes.
* This ensures that every key bit affects every cipher
* bit. However, the subkeys can hold up to 72 bytes.
* Warning: For normal blowfish encryption only 56 bytes
* of the key affect all cipherbits.
*/
#define BLF_N 16 /* Number of Subkeys */
#define BLF_MAXKEYLEN ((BLF_N-2)*4) /* 448 bits */
#define BLF_MAXUTILIZED ((BLF_N+2)*4) /* 576 bits */
/* Blowfish context */
typedef struct BlowfishContext {
u_int32_t S[4][256]; /* S-Boxes */
u_int32_t P[BLF_N + 2]; /* Subkeys */
} blf_ctx;
/* Raw access to customized Blowfish
* blf_key is just:
* Blowfish_initstate( state )
* Blowfish_expand0state( state, key, keylen )
*/
void Blowfish_encipher(blf_ctx *, u_int32_t *, u_int32_t *);
void Blowfish_decipher(blf_ctx *, u_int32_t *, u_int32_t *);
void Blowfish_initstate(blf_ctx *);
void Blowfish_expand0state(blf_ctx *, const u_int8_t *, u_int16_t);
void Blowfish_expandstate
(blf_ctx *, const u_int8_t *, u_int16_t, const u_int8_t *, u_int16_t);
/* Standard Blowfish */
void blf_key(blf_ctx *, const u_int8_t *, u_int16_t);
void blf_enc(blf_ctx *, u_int32_t *, u_int16_t);
void blf_dec(blf_ctx *, u_int32_t *, u_int16_t);
void blf_ecb_encrypt(blf_ctx *, u_int8_t *, u_int32_t);
void blf_ecb_decrypt(blf_ctx *, u_int8_t *, u_int32_t);
void blf_cbc_encrypt(blf_ctx *, u_int8_t *, u_int8_t *, u_int32_t);
void blf_cbc_decrypt(blf_ctx *, u_int8_t *, u_int8_t *, u_int32_t);
/* Converts u_int8_t to u_int32_t */
u_int32_t Blowfish_stream2word(const u_int8_t *, u_int16_t , u_int16_t *);
#endif /* !defined(HAVE_BCRYPT_PBKDF) && !defined(HAVE_BLH_H) */
#endif /* _BLF_H */

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/* $OpenBSD: blowfish.c,v 1.18 2004/11/02 17:23:26 hshoexer Exp $ */
/*
* Blowfish block cipher for OpenBSD
* Copyright 1997 Niels Provos <provos@physnet.uni-hamburg.de>
* All rights reserved.
*
* Implementation advice by David Mazieres <dm@lcs.mit.edu>.
*
* Redistribution and use in source and binary forms, with or without
* modification, are permitted provided that the following conditions
* are met:
* 1. Redistributions of source code must retain the above copyright
* notice, this list of conditions and the following disclaimer.
* 2. Redistributions in binary form must reproduce the above copyright
* notice, this list of conditions and the following disclaimer in the
* documentation and/or other materials provided with the distribution.
* 3. All advertising materials mentioning features or use of this software
* must display the following acknowledgement:
* This product includes software developed by Niels Provos.
* 4. The name of the author may not be used to endorse or promote products
* derived from this software without specific prior written permission.
*
* THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
* IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
* OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
* IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
* INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
* NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
* DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
* THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
* (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
* THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
*/
/*
* This code is derived from section 14.3 and the given source
* in section V of Applied Cryptography, second edition.
* Blowfish is an unpatented fast block cipher designed by
* Bruce Schneier.
*/
#include "includes.h"
#if !defined(HAVE_BCRYPT_PBKDF) && (!defined(HAVE_BLOWFISH_INITSTATE) || \
!defined(HAVE_BLOWFISH_EXPAND0STATE) || !defined(HAVE_BLF_ENC))
#if 0
#include <stdio.h> /* used for debugging */
#include <string.h>
#endif
#include <sys/types.h>
#ifdef HAVE_BLF_H
#include <blf.h>
#endif
#undef inline
#ifdef __GNUC__
#define inline __inline
#else /* !__GNUC__ */
#define inline
#endif /* !__GNUC__ */
/* Function for Feistel Networks */
#define F(s, x) ((((s)[ (((x)>>24)&0xFF)] \
+ (s)[0x100 + (((x)>>16)&0xFF)]) \
^ (s)[0x200 + (((x)>> 8)&0xFF)]) \
+ (s)[0x300 + ( (x) &0xFF)])
#define BLFRND(s,p,i,j,n) (i ^= F(s,j) ^ (p)[n])
void
Blowfish_encipher(blf_ctx *c, u_int32_t *xl, u_int32_t *xr)
{
u_int32_t Xl;
u_int32_t Xr;
u_int32_t *s = c->S[0];
u_int32_t *p = c->P;
Xl = *xl;
Xr = *xr;
Xl ^= p[0];
BLFRND(s, p, Xr, Xl, 1); BLFRND(s, p, Xl, Xr, 2);
BLFRND(s, p, Xr, Xl, 3); BLFRND(s, p, Xl, Xr, 4);
BLFRND(s, p, Xr, Xl, 5); BLFRND(s, p, Xl, Xr, 6);
BLFRND(s, p, Xr, Xl, 7); BLFRND(s, p, Xl, Xr, 8);
BLFRND(s, p, Xr, Xl, 9); BLFRND(s, p, Xl, Xr, 10);
BLFRND(s, p, Xr, Xl, 11); BLFRND(s, p, Xl, Xr, 12);
BLFRND(s, p, Xr, Xl, 13); BLFRND(s, p, Xl, Xr, 14);
BLFRND(s, p, Xr, Xl, 15); BLFRND(s, p, Xl, Xr, 16);
*xl = Xr ^ p[17];
*xr = Xl;
}
void
Blowfish_decipher(blf_ctx *c, u_int32_t *xl, u_int32_t *xr)
{
u_int32_t Xl;
u_int32_t Xr;
u_int32_t *s = c->S[0];
u_int32_t *p = c->P;
Xl = *xl;
Xr = *xr;
Xl ^= p[17];
BLFRND(s, p, Xr, Xl, 16); BLFRND(s, p, Xl, Xr, 15);
BLFRND(s, p, Xr, Xl, 14); BLFRND(s, p, Xl, Xr, 13);
BLFRND(s, p, Xr, Xl, 12); BLFRND(s, p, Xl, Xr, 11);
BLFRND(s, p, Xr, Xl, 10); BLFRND(s, p, Xl, Xr, 9);
BLFRND(s, p, Xr, Xl, 8); BLFRND(s, p, Xl, Xr, 7);
BLFRND(s, p, Xr, Xl, 6); BLFRND(s, p, Xl, Xr, 5);
BLFRND(s, p, Xr, Xl, 4); BLFRND(s, p, Xl, Xr, 3);
BLFRND(s, p, Xr, Xl, 2); BLFRND(s, p, Xl, Xr, 1);
*xl = Xr ^ p[0];
*xr = Xl;
}
void
Blowfish_initstate(blf_ctx *c)
{
/* P-box and S-box tables initialized with digits of Pi */
static const blf_ctx initstate =
{ {
{
0xd1310ba6, 0x98dfb5ac, 0x2ffd72db, 0xd01adfb7,
0xb8e1afed, 0x6a267e96, 0xba7c9045, 0xf12c7f99,
0x24a19947, 0xb3916cf7, 0x0801f2e2, 0x858efc16,
0x636920d8, 0x71574e69, 0xa458fea3, 0xf4933d7e,
0x0d95748f, 0x728eb658, 0x718bcd58, 0x82154aee,
0x7b54a41d, 0xc25a59b5, 0x9c30d539, 0x2af26013,
0xc5d1b023, 0x286085f0, 0xca417918, 0xb8db38ef,
0x8e79dcb0, 0x603a180e, 0x6c9e0e8b, 0xb01e8a3e,
0xd71577c1, 0xbd314b27, 0x78af2fda, 0x55605c60,
0xe65525f3, 0xaa55ab94, 0x57489862, 0x63e81440,
0x55ca396a, 0x2aab10b6, 0xb4cc5c34, 0x1141e8ce,
0xa15486af, 0x7c72e993, 0xb3ee1411, 0x636fbc2a,
0x2ba9c55d, 0x741831f6, 0xce5c3e16, 0x9b87931e,
0xafd6ba33, 0x6c24cf5c, 0x7a325381, 0x28958677,
0x3b8f4898, 0x6b4bb9af, 0xc4bfe81b, 0x66282193,
0x61d809cc, 0xfb21a991, 0x487cac60, 0x5dec8032,
0xef845d5d, 0xe98575b1, 0xdc262302, 0xeb651b88,
0x23893e81, 0xd396acc5, 0x0f6d6ff3, 0x83f44239,
0x2e0b4482, 0xa4842004, 0x69c8f04a, 0x9e1f9b5e,
0x21c66842, 0xf6e96c9a, 0x670c9c61, 0xabd388f0,
0x6a51a0d2, 0xd8542f68, 0x960fa728, 0xab5133a3,
0x6eef0b6c, 0x137a3be4, 0xba3bf050, 0x7efb2a98,
0xa1f1651d, 0x39af0176, 0x66ca593e, 0x82430e88,
0x8cee8619, 0x456f9fb4, 0x7d84a5c3, 0x3b8b5ebe,
0xe06f75d8, 0x85c12073, 0x401a449f, 0x56c16aa6,
0x4ed3aa62, 0x363f7706, 0x1bfedf72, 0x429b023d,
0x37d0d724, 0xd00a1248, 0xdb0fead3, 0x49f1c09b,
0x075372c9, 0x80991b7b, 0x25d479d8, 0xf6e8def7,
0xe3fe501a, 0xb6794c3b, 0x976ce0bd, 0x04c006ba,
0xc1a94fb6, 0x409f60c4, 0x5e5c9ec2, 0x196a2463,
0x68fb6faf, 0x3e6c53b5, 0x1339b2eb, 0x3b52ec6f,
0x6dfc511f, 0x9b30952c, 0xcc814544, 0xaf5ebd09,
0xbee3d004, 0xde334afd, 0x660f2807, 0x192e4bb3,
0xc0cba857, 0x45c8740f, 0xd20b5f39, 0xb9d3fbdb,
0x5579c0bd, 0x1a60320a, 0xd6a100c6, 0x402c7279,
0x679f25fe, 0xfb1fa3cc, 0x8ea5e9f8, 0xdb3222f8,
0x3c7516df, 0xfd616b15, 0x2f501ec8, 0xad0552ab,
0x323db5fa, 0xfd238760, 0x53317b48, 0x3e00df82,
0x9e5c57bb, 0xca6f8ca0, 0x1a87562e, 0xdf1769db,
0xd542a8f6, 0x287effc3, 0xac6732c6, 0x8c4f5573,
0x695b27b0, 0xbbca58c8, 0xe1ffa35d, 0xb8f011a0,
0x10fa3d98, 0xfd2183b8, 0x4afcb56c, 0x2dd1d35b,
0x9a53e479, 0xb6f84565, 0xd28e49bc, 0x4bfb9790,
0xe1ddf2da, 0xa4cb7e33, 0x62fb1341, 0xcee4c6e8,
0xef20cada, 0x36774c01, 0xd07e9efe, 0x2bf11fb4,
0x95dbda4d, 0xae909198, 0xeaad8e71, 0x6b93d5a0,
0xd08ed1d0, 0xafc725e0, 0x8e3c5b2f, 0x8e7594b7,
0x8ff6e2fb, 0xf2122b64, 0x8888b812, 0x900df01c,
0x4fad5ea0, 0x688fc31c, 0xd1cff191, 0xb3a8c1ad,
0x2f2f2218, 0xbe0e1777, 0xea752dfe, 0x8b021fa1,
0xe5a0cc0f, 0xb56f74e8, 0x18acf3d6, 0xce89e299,
0xb4a84fe0, 0xfd13e0b7, 0x7cc43b81, 0xd2ada8d9,
0x165fa266, 0x80957705, 0x93cc7314, 0x211a1477,
0xe6ad2065, 0x77b5fa86, 0xc75442f5, 0xfb9d35cf,
0xebcdaf0c, 0x7b3e89a0, 0xd6411bd3, 0xae1e7e49,
0x00250e2d, 0x2071b35e, 0x226800bb, 0x57b8e0af,
0x2464369b, 0xf009b91e, 0x5563911d, 0x59dfa6aa,
0x78c14389, 0xd95a537f, 0x207d5ba2, 0x02e5b9c5,
0x83260376, 0x6295cfa9, 0x11c81968, 0x4e734a41,
0xb3472dca, 0x7b14a94a, 0x1b510052, 0x9a532915,
0xd60f573f, 0xbc9bc6e4, 0x2b60a476, 0x81e67400,
0x08ba6fb5, 0x571be91f, 0xf296ec6b, 0x2a0dd915,
0xb6636521, 0xe7b9f9b6, 0xff34052e, 0xc5855664,
0x53b02d5d, 0xa99f8fa1, 0x08ba4799, 0x6e85076a},
{
0x4b7a70e9, 0xb5b32944, 0xdb75092e, 0xc4192623,
0xad6ea6b0, 0x49a7df7d, 0x9cee60b8, 0x8fedb266,
0xecaa8c71, 0x699a17ff, 0x5664526c, 0xc2b19ee1,
0x193602a5, 0x75094c29, 0xa0591340, 0xe4183a3e,
0x3f54989a, 0x5b429d65, 0x6b8fe4d6, 0x99f73fd6,
0xa1d29c07, 0xefe830f5, 0x4d2d38e6, 0xf0255dc1,
0x4cdd2086, 0x8470eb26, 0x6382e9c6, 0x021ecc5e,
0x09686b3f, 0x3ebaefc9, 0x3c971814, 0x6b6a70a1,
0x687f3584, 0x52a0e286, 0xb79c5305, 0xaa500737,
0x3e07841c, 0x7fdeae5c, 0x8e7d44ec, 0x5716f2b8,
0xb03ada37, 0xf0500c0d, 0xf01c1f04, 0x0200b3ff,
0xae0cf51a, 0x3cb574b2, 0x25837a58, 0xdc0921bd,
0xd19113f9, 0x7ca92ff6, 0x94324773, 0x22f54701,
0x3ae5e581, 0x37c2dadc, 0xc8b57634, 0x9af3dda7,
0xa9446146, 0x0fd0030e, 0xecc8c73e, 0xa4751e41,
0xe238cd99, 0x3bea0e2f, 0x3280bba1, 0x183eb331,
0x4e548b38, 0x4f6db908, 0x6f420d03, 0xf60a04bf,
0x2cb81290, 0x24977c79, 0x5679b072, 0xbcaf89af,
0xde9a771f, 0xd9930810, 0xb38bae12, 0xdccf3f2e,
0x5512721f, 0x2e6b7124, 0x501adde6, 0x9f84cd87,
0x7a584718, 0x7408da17, 0xbc9f9abc, 0xe94b7d8c,
0xec7aec3a, 0xdb851dfa, 0x63094366, 0xc464c3d2,
0xef1c1847, 0x3215d908, 0xdd433b37, 0x24c2ba16,
0x12a14d43, 0x2a65c451, 0x50940002, 0x133ae4dd,
0x71dff89e, 0x10314e55, 0x81ac77d6, 0x5f11199b,
0x043556f1, 0xd7a3c76b, 0x3c11183b, 0x5924a509,
0xf28fe6ed, 0x97f1fbfa, 0x9ebabf2c, 0x1e153c6e,
0x86e34570, 0xeae96fb1, 0x860e5e0a, 0x5a3e2ab3,
0x771fe71c, 0x4e3d06fa, 0x2965dcb9, 0x99e71d0f,
0x803e89d6, 0x5266c825, 0x2e4cc978, 0x9c10b36a,
0xc6150eba, 0x94e2ea78, 0xa5fc3c53, 0x1e0a2df4,
0xf2f74ea7, 0x361d2b3d, 0x1939260f, 0x19c27960,
0x5223a708, 0xf71312b6, 0xebadfe6e, 0xeac31f66,
0xe3bc4595, 0xa67bc883, 0xb17f37d1, 0x018cff28,
0xc332ddef, 0xbe6c5aa5, 0x65582185, 0x68ab9802,
0xeecea50f, 0xdb2f953b, 0x2aef7dad, 0x5b6e2f84,
0x1521b628, 0x29076170, 0xecdd4775, 0x619f1510,
0x13cca830, 0xeb61bd96, 0x0334fe1e, 0xaa0363cf,
0xb5735c90, 0x4c70a239, 0xd59e9e0b, 0xcbaade14,
0xeecc86bc, 0x60622ca7, 0x9cab5cab, 0xb2f3846e,
0x648b1eaf, 0x19bdf0ca, 0xa02369b9, 0x655abb50,
0x40685a32, 0x3c2ab4b3, 0x319ee9d5, 0xc021b8f7,
0x9b540b19, 0x875fa099, 0x95f7997e, 0x623d7da8,
0xf837889a, 0x97e32d77, 0x11ed935f, 0x16681281,
0x0e358829, 0xc7e61fd6, 0x96dedfa1, 0x7858ba99,
0x57f584a5, 0x1b227263, 0x9b83c3ff, 0x1ac24696,
0xcdb30aeb, 0x532e3054, 0x8fd948e4, 0x6dbc3128,
0x58ebf2ef, 0x34c6ffea, 0xfe28ed61, 0xee7c3c73,
0x5d4a14d9, 0xe864b7e3, 0x42105d14, 0x203e13e0,
0x45eee2b6, 0xa3aaabea, 0xdb6c4f15, 0xfacb4fd0,
0xc742f442, 0xef6abbb5, 0x654f3b1d, 0x41cd2105,
0xd81e799e, 0x86854dc7, 0xe44b476a, 0x3d816250,
0xcf62a1f2, 0x5b8d2646, 0xfc8883a0, 0xc1c7b6a3,
0x7f1524c3, 0x69cb7492, 0x47848a0b, 0x5692b285,
0x095bbf00, 0xad19489d, 0x1462b174, 0x23820e00,
0x58428d2a, 0x0c55f5ea, 0x1dadf43e, 0x233f7061,
0x3372f092, 0x8d937e41, 0xd65fecf1, 0x6c223bdb,
0x7cde3759, 0xcbee7460, 0x4085f2a7, 0xce77326e,
0xa6078084, 0x19f8509e, 0xe8efd855, 0x61d99735,
0xa969a7aa, 0xc50c06c2, 0x5a04abfc, 0x800bcadc,
0x9e447a2e, 0xc3453484, 0xfdd56705, 0x0e1e9ec9,
0xdb73dbd3, 0x105588cd, 0x675fda79, 0xe3674340,
0xc5c43465, 0x713e38d8, 0x3d28f89e, 0xf16dff20,
0x153e21e7, 0x8fb03d4a, 0xe6e39f2b, 0xdb83adf7},
{
0xe93d5a68, 0x948140f7, 0xf64c261c, 0x94692934,
0x411520f7, 0x7602d4f7, 0xbcf46b2e, 0xd4a20068,
0xd4082471, 0x3320f46a, 0x43b7d4b7, 0x500061af,
0x1e39f62e, 0x97244546, 0x14214f74, 0xbf8b8840,
0x4d95fc1d, 0x96b591af, 0x70f4ddd3, 0x66a02f45,
0xbfbc09ec, 0x03bd9785, 0x7fac6dd0, 0x31cb8504,
0x96eb27b3, 0x55fd3941, 0xda2547e6, 0xabca0a9a,
0x28507825, 0x530429f4, 0x0a2c86da, 0xe9b66dfb,
0x68dc1462, 0xd7486900, 0x680ec0a4, 0x27a18dee,
0x4f3ffea2, 0xe887ad8c, 0xb58ce006, 0x7af4d6b6,
0xaace1e7c, 0xd3375fec, 0xce78a399, 0x406b2a42,
0x20fe9e35, 0xd9f385b9, 0xee39d7ab, 0x3b124e8b,
0x1dc9faf7, 0x4b6d1856, 0x26a36631, 0xeae397b2,
0x3a6efa74, 0xdd5b4332, 0x6841e7f7, 0xca7820fb,
0xfb0af54e, 0xd8feb397, 0x454056ac, 0xba489527,
0x55533a3a, 0x20838d87, 0xfe6ba9b7, 0xd096954b,
0x55a867bc, 0xa1159a58, 0xcca92963, 0x99e1db33,
0xa62a4a56, 0x3f3125f9, 0x5ef47e1c, 0x9029317c,
0xfdf8e802, 0x04272f70, 0x80bb155c, 0x05282ce3,
0x95c11548, 0xe4c66d22, 0x48c1133f, 0xc70f86dc,
0x07f9c9ee, 0x41041f0f, 0x404779a4, 0x5d886e17,
0x325f51eb, 0xd59bc0d1, 0xf2bcc18f, 0x41113564,
0x257b7834, 0x602a9c60, 0xdff8e8a3, 0x1f636c1b,
0x0e12b4c2, 0x02e1329e, 0xaf664fd1, 0xcad18115,
0x6b2395e0, 0x333e92e1, 0x3b240b62, 0xeebeb922,
0x85b2a20e, 0xe6ba0d99, 0xde720c8c, 0x2da2f728,
0xd0127845, 0x95b794fd, 0x647d0862, 0xe7ccf5f0,
0x5449a36f, 0x877d48fa, 0xc39dfd27, 0xf33e8d1e,
0x0a476341, 0x992eff74, 0x3a6f6eab, 0xf4f8fd37,
0xa812dc60, 0xa1ebddf8, 0x991be14c, 0xdb6e6b0d,
0xc67b5510, 0x6d672c37, 0x2765d43b, 0xdcd0e804,
0xf1290dc7, 0xcc00ffa3, 0xb5390f92, 0x690fed0b,
0x667b9ffb, 0xcedb7d9c, 0xa091cf0b, 0xd9155ea3,
0xbb132f88, 0x515bad24, 0x7b9479bf, 0x763bd6eb,
0x37392eb3, 0xcc115979, 0x8026e297, 0xf42e312d,
0x6842ada7, 0xc66a2b3b, 0x12754ccc, 0x782ef11c,
0x6a124237, 0xb79251e7, 0x06a1bbe6, 0x4bfb6350,
0x1a6b1018, 0x11caedfa, 0x3d25bdd8, 0xe2e1c3c9,
0x44421659, 0x0a121386, 0xd90cec6e, 0xd5abea2a,
0x64af674e, 0xda86a85f, 0xbebfe988, 0x64e4c3fe,
0x9dbc8057, 0xf0f7c086, 0x60787bf8, 0x6003604d,
0xd1fd8346, 0xf6381fb0, 0x7745ae04, 0xd736fccc,
0x83426b33, 0xf01eab71, 0xb0804187, 0x3c005e5f,
0x77a057be, 0xbde8ae24, 0x55464299, 0xbf582e61,
0x4e58f48f, 0xf2ddfda2, 0xf474ef38, 0x8789bdc2,
0x5366f9c3, 0xc8b38e74, 0xb475f255, 0x46fcd9b9,
0x7aeb2661, 0x8b1ddf84, 0x846a0e79, 0x915f95e2,
0x466e598e, 0x20b45770, 0x8cd55591, 0xc902de4c,
0xb90bace1, 0xbb8205d0, 0x11a86248, 0x7574a99e,
0xb77f19b6, 0xe0a9dc09, 0x662d09a1, 0xc4324633,
0xe85a1f02, 0x09f0be8c, 0x4a99a025, 0x1d6efe10,
0x1ab93d1d, 0x0ba5a4df, 0xa186f20f, 0x2868f169,
0xdcb7da83, 0x573906fe, 0xa1e2ce9b, 0x4fcd7f52,
0x50115e01, 0xa70683fa, 0xa002b5c4, 0x0de6d027,
0x9af88c27, 0x773f8641, 0xc3604c06, 0x61a806b5,
0xf0177a28, 0xc0f586e0, 0x006058aa, 0x30dc7d62,
0x11e69ed7, 0x2338ea63, 0x53c2dd94, 0xc2c21634,
0xbbcbee56, 0x90bcb6de, 0xebfc7da1, 0xce591d76,
0x6f05e409, 0x4b7c0188, 0x39720a3d, 0x7c927c24,
0x86e3725f, 0x724d9db9, 0x1ac15bb4, 0xd39eb8fc,
0xed545578, 0x08fca5b5, 0xd83d7cd3, 0x4dad0fc4,
0x1e50ef5e, 0xb161e6f8, 0xa28514d9, 0x6c51133c,
0x6fd5c7e7, 0x56e14ec4, 0x362abfce, 0xddc6c837,
0xd79a3234, 0x92638212, 0x670efa8e, 0x406000e0},
{
0x3a39ce37, 0xd3faf5cf, 0xabc27737, 0x5ac52d1b,
0x5cb0679e, 0x4fa33742, 0xd3822740, 0x99bc9bbe,
0xd5118e9d, 0xbf0f7315, 0xd62d1c7e, 0xc700c47b,
0xb78c1b6b, 0x21a19045, 0xb26eb1be, 0x6a366eb4,
0x5748ab2f, 0xbc946e79, 0xc6a376d2, 0x6549c2c8,
0x530ff8ee, 0x468dde7d, 0xd5730a1d, 0x4cd04dc6,
0x2939bbdb, 0xa9ba4650, 0xac9526e8, 0xbe5ee304,
0xa1fad5f0, 0x6a2d519a, 0x63ef8ce2, 0x9a86ee22,
0xc089c2b8, 0x43242ef6, 0xa51e03aa, 0x9cf2d0a4,
0x83c061ba, 0x9be96a4d, 0x8fe51550, 0xba645bd6,
0x2826a2f9, 0xa73a3ae1, 0x4ba99586, 0xef5562e9,
0xc72fefd3, 0xf752f7da, 0x3f046f69, 0x77fa0a59,
0x80e4a915, 0x87b08601, 0x9b09e6ad, 0x3b3ee593,
0xe990fd5a, 0x9e34d797, 0x2cf0b7d9, 0x022b8b51,
0x96d5ac3a, 0x017da67d, 0xd1cf3ed6, 0x7c7d2d28,
0x1f9f25cf, 0xadf2b89b, 0x5ad6b472, 0x5a88f54c,
0xe029ac71, 0xe019a5e6, 0x47b0acfd, 0xed93fa9b,
0xe8d3c48d, 0x283b57cc, 0xf8d56629, 0x79132e28,
0x785f0191, 0xed756055, 0xf7960e44, 0xe3d35e8c,
0x15056dd4, 0x88f46dba, 0x03a16125, 0x0564f0bd,
0xc3eb9e15, 0x3c9057a2, 0x97271aec, 0xa93a072a,
0x1b3f6d9b, 0x1e6321f5, 0xf59c66fb, 0x26dcf319,
0x7533d928, 0xb155fdf5, 0x03563482, 0x8aba3cbb,
0x28517711, 0xc20ad9f8, 0xabcc5167, 0xccad925f,
0x4de81751, 0x3830dc8e, 0x379d5862, 0x9320f991,
0xea7a90c2, 0xfb3e7bce, 0x5121ce64, 0x774fbe32,
0xa8b6e37e, 0xc3293d46, 0x48de5369, 0x6413e680,
0xa2ae0810, 0xdd6db224, 0x69852dfd, 0x09072166,
0xb39a460a, 0x6445c0dd, 0x586cdecf, 0x1c20c8ae,
0x5bbef7dd, 0x1b588d40, 0xccd2017f, 0x6bb4e3bb,
0xdda26a7e, 0x3a59ff45, 0x3e350a44, 0xbcb4cdd5,
0x72eacea8, 0xfa6484bb, 0x8d6612ae, 0xbf3c6f47,
0xd29be463, 0x542f5d9e, 0xaec2771b, 0xf64e6370,
0x740e0d8d, 0xe75b1357, 0xf8721671, 0xaf537d5d,
0x4040cb08, 0x4eb4e2cc, 0x34d2466a, 0x0115af84,
0xe1b00428, 0x95983a1d, 0x06b89fb4, 0xce6ea048,
0x6f3f3b82, 0x3520ab82, 0x011a1d4b, 0x277227f8,
0x611560b1, 0xe7933fdc, 0xbb3a792b, 0x344525bd,
0xa08839e1, 0x51ce794b, 0x2f32c9b7, 0xa01fbac9,
0xe01cc87e, 0xbcc7d1f6, 0xcf0111c3, 0xa1e8aac7,
0x1a908749, 0xd44fbd9a, 0xd0dadecb, 0xd50ada38,
0x0339c32a, 0xc6913667, 0x8df9317c, 0xe0b12b4f,
0xf79e59b7, 0x43f5bb3a, 0xf2d519ff, 0x27d9459c,
0xbf97222c, 0x15e6fc2a, 0x0f91fc71, 0x9b941525,
0xfae59361, 0xceb69ceb, 0xc2a86459, 0x12baa8d1,
0xb6c1075e, 0xe3056a0c, 0x10d25065, 0xcb03a442,
0xe0ec6e0e, 0x1698db3b, 0x4c98a0be, 0x3278e964,
0x9f1f9532, 0xe0d392df, 0xd3a0342b, 0x8971f21e,
0x1b0a7441, 0x4ba3348c, 0xc5be7120, 0xc37632d8,
0xdf359f8d, 0x9b992f2e, 0xe60b6f47, 0x0fe3f11d,
0xe54cda54, 0x1edad891, 0xce6279cf, 0xcd3e7e6f,
0x1618b166, 0xfd2c1d05, 0x848fd2c5, 0xf6fb2299,
0xf523f357, 0xa6327623, 0x93a83531, 0x56cccd02,
0xacf08162, 0x5a75ebb5, 0x6e163697, 0x88d273cc,
0xde966292, 0x81b949d0, 0x4c50901b, 0x71c65614,
0xe6c6c7bd, 0x327a140a, 0x45e1d006, 0xc3f27b9a,
0xc9aa53fd, 0x62a80f00, 0xbb25bfe2, 0x35bdd2f6,
0x71126905, 0xb2040222, 0xb6cbcf7c, 0xcd769c2b,
0x53113ec0, 0x1640e3d3, 0x38abbd60, 0x2547adf0,
0xba38209c, 0xf746ce76, 0x77afa1c5, 0x20756060,
0x85cbfe4e, 0x8ae88dd8, 0x7aaaf9b0, 0x4cf9aa7e,
0x1948c25c, 0x02fb8a8c, 0x01c36ae4, 0xd6ebe1f9,
0x90d4f869, 0xa65cdea0, 0x3f09252d, 0xc208e69f,
0xb74e6132, 0xce77e25b, 0x578fdfe3, 0x3ac372e6}
},
{
0x243f6a88, 0x85a308d3, 0x13198a2e, 0x03707344,
0xa4093822, 0x299f31d0, 0x082efa98, 0xec4e6c89,
0x452821e6, 0x38d01377, 0xbe5466cf, 0x34e90c6c,
0xc0ac29b7, 0xc97c50dd, 0x3f84d5b5, 0xb5470917,
0x9216d5d9, 0x8979fb1b
} };
*c = initstate;
}
u_int32_t
Blowfish_stream2word(const u_int8_t *data, u_int16_t databytes,
u_int16_t *current)
{
u_int8_t i;
u_int16_t j;
u_int32_t temp;
temp = 0x00000000;
j = *current;
for (i = 0; i < 4; i++, j++) {
if (j >= databytes)
j = 0;
temp = (temp << 8) | data[j];
}
*current = j;
return temp;
}
void
Blowfish_expand0state(blf_ctx *c, const u_int8_t *key, u_int16_t keybytes)
{
u_int16_t i;
u_int16_t j;
u_int16_t k;
u_int32_t temp;
u_int32_t datal;
u_int32_t datar;
j = 0;
for (i = 0; i < BLF_N + 2; i++) {
/* Extract 4 int8 to 1 int32 from keystream */
temp = Blowfish_stream2word(key, keybytes, &j);
c->P[i] = c->P[i] ^ temp;
}
j = 0;
datal = 0x00000000;
datar = 0x00000000;
for (i = 0; i < BLF_N + 2; i += 2) {
Blowfish_encipher(c, &datal, &datar);
c->P[i] = datal;
c->P[i + 1] = datar;
}
for (i = 0; i < 4; i++) {
for (k = 0; k < 256; k += 2) {
Blowfish_encipher(c, &datal, &datar);
c->S[i][k] = datal;
c->S[i][k + 1] = datar;
}
}
}
void
Blowfish_expandstate(blf_ctx *c, const u_int8_t *data, u_int16_t databytes,
const u_int8_t *key, u_int16_t keybytes)
{
u_int16_t i;
u_int16_t j;
u_int16_t k;
u_int32_t temp;
u_int32_t datal;
u_int32_t datar;
j = 0;
for (i = 0; i < BLF_N + 2; i++) {
/* Extract 4 int8 to 1 int32 from keystream */
temp = Blowfish_stream2word(key, keybytes, &j);
c->P[i] = c->P[i] ^ temp;
}
j = 0;
datal = 0x00000000;
datar = 0x00000000;
for (i = 0; i < BLF_N + 2; i += 2) {
datal ^= Blowfish_stream2word(data, databytes, &j);
datar ^= Blowfish_stream2word(data, databytes, &j);
Blowfish_encipher(c, &datal, &datar);
c->P[i] = datal;
c->P[i + 1] = datar;
}
for (i = 0; i < 4; i++) {
for (k = 0; k < 256; k += 2) {
datal ^= Blowfish_stream2word(data, databytes, &j);
datar ^= Blowfish_stream2word(data, databytes, &j);
Blowfish_encipher(c, &datal, &datar);
c->S[i][k] = datal;
c->S[i][k + 1] = datar;
}
}
}
void
blf_key(blf_ctx *c, const u_int8_t *k, u_int16_t len)
{
/* Initialize S-boxes and subkeys with Pi */
Blowfish_initstate(c);
/* Transform S-boxes and subkeys with key */
Blowfish_expand0state(c, k, len);
}
void
blf_enc(blf_ctx *c, u_int32_t *data, u_int16_t blocks)
{
u_int32_t *d;
u_int16_t i;
d = data;
for (i = 0; i < blocks; i++) {
Blowfish_encipher(c, d, d + 1);
d += 2;
}
}
void
blf_dec(blf_ctx *c, u_int32_t *data, u_int16_t blocks)
{
u_int32_t *d;
u_int16_t i;
d = data;
for (i = 0; i < blocks; i++) {
Blowfish_decipher(c, d, d + 1);
d += 2;
}
}
void
blf_ecb_encrypt(blf_ctx *c, u_int8_t *data, u_int32_t len)
{
u_int32_t l, r;
u_int32_t i;
for (i = 0; i < len; i += 8) {
l = data[0] << 24 | data[1] << 16 | data[2] << 8 | data[3];
r = data[4] << 24 | data[5] << 16 | data[6] << 8 | data[7];
Blowfish_encipher(c, &l, &r);
data[0] = l >> 24 & 0xff;
data[1] = l >> 16 & 0xff;
data[2] = l >> 8 & 0xff;
data[3] = l & 0xff;
data[4] = r >> 24 & 0xff;
data[5] = r >> 16 & 0xff;
data[6] = r >> 8 & 0xff;
data[7] = r & 0xff;
data += 8;
}
}
void
blf_ecb_decrypt(blf_ctx *c, u_int8_t *data, u_int32_t len)
{
u_int32_t l, r;
u_int32_t i;
for (i = 0; i < len; i += 8) {
l = data[0] << 24 | data[1] << 16 | data[2] << 8 | data[3];
r = data[4] << 24 | data[5] << 16 | data[6] << 8 | data[7];
Blowfish_decipher(c, &l, &r);
data[0] = l >> 24 & 0xff;
data[1] = l >> 16 & 0xff;
data[2] = l >> 8 & 0xff;
data[3] = l & 0xff;
data[4] = r >> 24 & 0xff;
data[5] = r >> 16 & 0xff;
data[6] = r >> 8 & 0xff;
data[7] = r & 0xff;
data += 8;
}
}
void
blf_cbc_encrypt(blf_ctx *c, u_int8_t *iv, u_int8_t *data, u_int32_t len)
{
u_int32_t l, r;
u_int32_t i, j;
for (i = 0; i < len; i += 8) {
for (j = 0; j < 8; j++)
data[j] ^= iv[j];
l = data[0] << 24 | data[1] << 16 | data[2] << 8 | data[3];
r = data[4] << 24 | data[5] << 16 | data[6] << 8 | data[7];
Blowfish_encipher(c, &l, &r);
data[0] = l >> 24 & 0xff;
data[1] = l >> 16 & 0xff;
data[2] = l >> 8 & 0xff;
data[3] = l & 0xff;
data[4] = r >> 24 & 0xff;
data[5] = r >> 16 & 0xff;
data[6] = r >> 8 & 0xff;
data[7] = r & 0xff;
iv = data;
data += 8;
}
}
void
blf_cbc_decrypt(blf_ctx *c, u_int8_t *iva, u_int8_t *data, u_int32_t len)
{
u_int32_t l, r;
u_int8_t *iv;
u_int32_t i, j;
iv = data + len - 16;
data = data + len - 8;
for (i = len - 8; i >= 8; i -= 8) {
l = data[0] << 24 | data[1] << 16 | data[2] << 8 | data[3];
r = data[4] << 24 | data[5] << 16 | data[6] << 8 | data[7];
Blowfish_decipher(c, &l, &r);
data[0] = l >> 24 & 0xff;
data[1] = l >> 16 & 0xff;
data[2] = l >> 8 & 0xff;
data[3] = l & 0xff;
data[4] = r >> 24 & 0xff;
data[5] = r >> 16 & 0xff;
data[6] = r >> 8 & 0xff;
data[7] = r & 0xff;
for (j = 0; j < 8; j++)
data[j] ^= iv[j];
iv -= 8;
data -= 8;
}
l = data[0] << 24 | data[1] << 16 | data[2] << 8 | data[3];
r = data[4] << 24 | data[5] << 16 | data[6] << 8 | data[7];
Blowfish_decipher(c, &l, &r);
data[0] = l >> 24 & 0xff;
data[1] = l >> 16 & 0xff;
data[2] = l >> 8 & 0xff;
data[3] = l & 0xff;
data[4] = r >> 24 & 0xff;
data[5] = r >> 16 & 0xff;
data[6] = r >> 8 & 0xff;
data[7] = r & 0xff;
for (j = 0; j < 8; j++)
data[j] ^= iva[j];
}
#if 0
void
report(u_int32_t data[], u_int16_t len)
{
u_int16_t i;
for (i = 0; i < len; i += 2)
printf("Block %0hd: %08lx %08lx.\n",
i / 2, data[i], data[i + 1]);
}
void
main(void)
{
blf_ctx c;
char key[] = "AAAAA";
char key2[] = "abcdefghijklmnopqrstuvwxyz";
u_int32_t data[10];
u_int32_t data2[] =
{0x424c4f57l, 0x46495348l};
u_int16_t i;
/* First test */
for (i = 0; i < 10; i++)
data[i] = i;
blf_key(&c, (u_int8_t *) key, 5);
blf_enc(&c, data, 5);
blf_dec(&c, data, 1);
blf_dec(&c, data + 2, 4);
printf("Should read as 0 - 9.\n");
report(data, 10);
/* Second test */
blf_key(&c, (u_int8_t *) key2, strlen(key2));
blf_enc(&c, data2, 1);
printf("\nShould read as: 0x324ed0fe 0xf413a203.\n");
report(data2, 2);
blf_dec(&c, data2, 1);
report(data2, 2);
}
#endif
#endif /* !defined(HAVE_BCRYPT_PBKDF) && (!defined(HAVE_BLOWFISH_INITSTATE) || \
!defined(HAVE_BLOWFISH_EXPAND0STATE) || !defined(HAVE_BLF_ENC)) */

View File

@ -1,150 +0,0 @@
/*
* Copyright (c) 1999,2000,2004 Damien Miller <djm@mindrot.org>
*
* Permission to use, copy, modify, and distribute this software for any
* purpose with or without fee is hereby granted, provided that the above
* copyright notice and this permission notice appear in all copies.
*
* THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES
* WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF
* MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR
* ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES
* WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN
* ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF
* OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE.
*/
#include "includes.h"
#include <sys/types.h>
#include <string.h>
#include <stdlib.h>
#include <stdarg.h>
#include "log.h"
#ifndef HAVE_ARC4RANDOM
#include <openssl/rand.h>
#include <openssl/rc4.h>
#include <openssl/err.h>
/* Size of key to use */
#define SEED_SIZE 20
/* Number of bytes to reseed after */
#define REKEY_BYTES (1 << 24)
static int rc4_ready = 0;
static RC4_KEY rc4;
unsigned int
arc4random(void)
{
unsigned int r = 0;
static int first_time = 1;
if (rc4_ready <= 0) {
if (first_time)
seed_rng();
first_time = 0;
arc4random_stir();
}
RC4(&rc4, sizeof(r), (unsigned char *)&r, (unsigned char *)&r);
rc4_ready -= sizeof(r);
return(r);
}
void
arc4random_stir(void)
{
unsigned char rand_buf[SEED_SIZE];
int i;
memset(&rc4, 0, sizeof(rc4));
if (RAND_bytes(rand_buf, sizeof(rand_buf)) <= 0)
fatal("Couldn't obtain random bytes (error %ld)",
ERR_get_error());
RC4_set_key(&rc4, sizeof(rand_buf), rand_buf);
/*
* Discard early keystream, as per recommendations in:
* http://www.wisdom.weizmann.ac.il/~itsik/RC4/Papers/Rc4_ksa.ps
*/
for(i = 0; i <= 256; i += sizeof(rand_buf))
RC4(&rc4, sizeof(rand_buf), rand_buf, rand_buf);
memset(rand_buf, 0, sizeof(rand_buf));
rc4_ready = REKEY_BYTES;
}
#endif /* !HAVE_ARC4RANDOM */
#ifndef HAVE_ARC4RANDOM_BUF
void
arc4random_buf(void *_buf, size_t n)
{
size_t i;
u_int32_t r = 0;
char *buf = (char *)_buf;
for (i = 0; i < n; i++) {
if (i % 4 == 0)
r = arc4random();
buf[i] = r & 0xff;
r >>= 8;
}
i = r = 0;
}
#endif /* !HAVE_ARC4RANDOM_BUF */
#ifndef HAVE_ARC4RANDOM_UNIFORM
/*
* Calculate a uniformly distributed random number less than upper_bound
* avoiding "modulo bias".
*
* Uniformity is achieved by generating new random numbers until the one
* returned is outside the range [0, 2**32 % upper_bound). This
* guarantees the selected random number will be inside
* [2**32 % upper_bound, 2**32) which maps back to [0, upper_bound)
* after reduction modulo upper_bound.
*/
u_int32_t
arc4random_uniform(u_int32_t upper_bound)
{
u_int32_t r, min;
if (upper_bound < 2)
return 0;
#if (ULONG_MAX > 0xffffffffUL)
min = 0x100000000UL % upper_bound;
#else
/* Calculate (2**32 % upper_bound) avoiding 64-bit math */
if (upper_bound > 0x80000000)
min = 1 + ~upper_bound; /* 2**32 - upper_bound */
else {
/* (2**32 - (x * 2)) % x == 2**32 % x when x <= 2**31 */
min = ((0xffffffff - (upper_bound * 2)) + 1) % upper_bound;
}
#endif
/*
* This could theoretically loop forever but each retry has
* p > 0.5 (worst case, usually far better) of selecting a
* number inside the range we need, so it should rarely need
* to re-roll.
*/
for (;;) {
r = arc4random();
if (r >= min)
break;
}
return r % upper_bound;
}
#endif /* !HAVE_ARC4RANDOM_UNIFORM */

View File

@ -1,4 +1,4 @@
/* $Id: bsd-cygwin_util.h,v 1.16 2013/04/01 01:40:49 dtucker Exp $ */
/* $Id: bsd-cygwin_util.h,v 1.17 2014/01/18 10:04:00 dtucker Exp $ */
/*
* Copyright (c) 2000, 2001, 2011, 2013 Corinna Vinschen <vinschen@redhat.com>
@ -40,9 +40,15 @@
typedef void *HANDLE;
#define INVALID_HANDLE_VALUE ((HANDLE) -1)
/* Cygwin functions for which declarations are only available when including
windows headers, so we have to define them here explicitely. */
extern HANDLE cygwin_logon_user (const struct passwd *, const char *);
extern void cygwin_set_impersonation_token (const HANDLE);
#include <sys/cygwin.h>
#include <io.h>
int binary_open(const char *, int , ...);
int check_ntsec(const char *);
char **fetch_windows_environment(void);

View File

@ -28,6 +28,7 @@
#include <string.h>
#include <signal.h>
#include <stdlib.h>
#include <time.h>
#include <unistd.h>
#include "xmalloc.h"

View File

@ -1,4 +1,4 @@
/* $Id: bsd-poll.c,v 1.4 2008/08/29 21:32:38 dtucker Exp $ */
/* $Id: bsd-poll.c,v 1.5 2013/11/08 10:12:58 dtucker Exp $ */
/*
* Copyright (c) 2004, 2005, 2007 Darren Tucker (dtucker at zip com au).
@ -19,12 +19,15 @@
#include "includes.h"
#if !defined(HAVE_POLL)
#include <sys/types.h>
#include <sys/time.h>
#ifdef HAVE_SYS_SELECT_H
# include <sys/select.h>
#endif
#include <stdlib.h>
#include <errno.h>
#include <stdlib.h>
#include <unistd.h>
#include "bsd-poll.h"
/*

View File

@ -1,4 +1,4 @@
/* $Id: bsd-setres_id.c,v 1.1 2012/11/05 06:04:37 dtucker Exp $ */
/* $Id: bsd-setres_id.c,v 1.2 2013/12/07 21:23:09 djm Exp $ */
/*
* Copyright (c) 2012 Darren Tucker (dtucker at zip com au).
@ -22,6 +22,7 @@
#include <stdarg.h>
#include <unistd.h>
#include <string.h>
#include "log.h"

View File

@ -160,6 +160,8 @@
#define DP_C_LONG 2
#define DP_C_LDOUBLE 3
#define DP_C_LLONG 4
#define DP_C_SIZE 5
#define DP_C_INTMAX 6
#define char_to_int(p) ((p)- '0')
#ifndef MAX
@ -182,7 +184,7 @@ static int dopr(char *buffer, size_t maxlen, const char *format,
static int fmtstr(char *buffer, size_t *currlen, size_t maxlen,
char *value, int flags, int min, int max);
static int fmtint(char *buffer, size_t *currlen, size_t maxlen,
LLONG value, int base, int min, int max, int flags);
intmax_t value, int base, int min, int max, int flags);
static int fmtfp(char *buffer, size_t *currlen, size_t maxlen,
LDOUBLE fvalue, int min, int max, int flags);
@ -190,7 +192,7 @@ static int
dopr(char *buffer, size_t maxlen, const char *format, va_list args_in)
{
char ch;
LLONG value;
intmax_t value;
LDOUBLE fvalue;
char *strvalue;
int min;
@ -287,6 +289,10 @@ dopr(char *buffer, size_t maxlen, const char *format, va_list args_in)
cflags = DP_C_SHORT;
ch = *format++;
break;
case 'j':
cflags = DP_C_INTMAX;
ch = *format++;
break;
case 'l':
cflags = DP_C_LONG;
ch = *format++;
@ -299,6 +305,10 @@ dopr(char *buffer, size_t maxlen, const char *format, va_list args_in)
cflags = DP_C_LDOUBLE;
ch = *format++;
break;
case 'z':
cflags = DP_C_SIZE;
ch = *format++;
break;
default:
break;
}
@ -314,6 +324,10 @@ dopr(char *buffer, size_t maxlen, const char *format, va_list args_in)
value = va_arg (args, long int);
else if (cflags == DP_C_LLONG)
value = va_arg (args, LLONG);
else if (cflags == DP_C_SIZE)
value = va_arg (args, ssize_t);
else if (cflags == DP_C_INTMAX)
value = va_arg (args, intmax_t);
else
value = va_arg (args, int);
if (fmtint(buffer, &currlen, maxlen,
@ -328,6 +342,12 @@ dopr(char *buffer, size_t maxlen, const char *format, va_list args_in)
value = (long)va_arg (args, unsigned long int);
else if (cflags == DP_C_LLONG)
value = (long)va_arg (args, unsigned LLONG);
else if (cflags == DP_C_SIZE)
value = va_arg (args, size_t);
#ifdef notyet
else if (cflags == DP_C_INTMAX)
value = va_arg (args, uintmax_t);
#endif
else
value = (long)va_arg (args, unsigned int);
if (fmtint(buffer, &currlen, maxlen, value,
@ -342,6 +362,12 @@ dopr(char *buffer, size_t maxlen, const char *format, va_list args_in)
value = (long)va_arg (args, unsigned long int);
else if (cflags == DP_C_LLONG)
value = (LLONG)va_arg (args, unsigned LLONG);
else if (cflags == DP_C_SIZE)
value = va_arg (args, size_t);
#ifdef notyet
else if (cflags == DP_C_INTMAX)
value = va_arg (args, uintmax_t);
#endif
else
value = (long)va_arg (args, unsigned int);
if (fmtint(buffer, &currlen, maxlen, value,
@ -358,6 +384,12 @@ dopr(char *buffer, size_t maxlen, const char *format, va_list args_in)
value = (long)va_arg (args, unsigned long int);
else if (cflags == DP_C_LLONG)
value = (LLONG)va_arg (args, unsigned LLONG);
else if (cflags == DP_C_SIZE)
value = va_arg (args, size_t);
#ifdef notyet
else if (cflags == DP_C_INTMAX)
value = va_arg (args, uintmax_t);
#endif
else
value = (long)va_arg (args, unsigned int);
if (fmtint(buffer, &currlen, maxlen, value,
@ -416,6 +448,7 @@ dopr(char *buffer, size_t maxlen, const char *format, va_list args_in)
(long) strvalue, 16, min, max, flags) == -1)
return -1;
break;
#if we_dont_want_this_in_openssh
case 'n':
if (cflags == DP_C_SHORT) {
short int *num;
@ -429,12 +462,21 @@ dopr(char *buffer, size_t maxlen, const char *format, va_list args_in)
LLONG *num;
num = va_arg (args, LLONG *);
*num = (LLONG)currlen;
} else if (cflags == DP_C_SIZE) {
ssize_t *num;
num = va_arg (args, ssize_t *);
*num = (ssize_t)currlen;
} else if (cflags == DP_C_INTMAX) {
intmax_t *num;
num = va_arg (args, intmax_t *);
*num = (intmax_t)currlen;
} else {
int *num;
num = va_arg (args, int *);
*num = currlen;
}
break;
#endif
case '%':
DOPR_OUTCH(buffer, currlen, maxlen, ch);
break;

View File

@ -1,7 +1,7 @@
/* $Id: bsd-statvfs.c,v 1.1 2008/06/08 17:32:29 dtucker Exp $ */
/* $Id: bsd-statvfs.c,v 1.2 2014/01/17 07:10:59 dtucker Exp $ */
/*
* Copyright (c) 2008 Darren Tucker <dtucker@zip.com.au>
* Copyright (c) 2008,2014 Darren Tucker <dtucker@zip.com.au>
*
* Permission to use, copy, modify, and distribute this software for any
* purpose with or without fee is hereby granted, provided that the above
@ -18,20 +18,65 @@
#include "includes.h"
#if !defined(HAVE_STATVFS) || !defined(HAVE_FSTATVFS)
#include <sys/param.h>
#ifdef HAVE_SYS_MOUNT_H
# include <sys/mount.h>
#endif
#include <errno.h>
#ifndef HAVE_STATVFS
static void
copy_statfs_to_statvfs(struct statvfs *to, struct statfs *from)
{
to->f_bsize = from->f_bsize;
to->f_frsize = from->f_bsize; /* no exact equivalent */
to->f_blocks = from->f_blocks;
to->f_bfree = from->f_bfree;
to->f_bavail = from->f_bavail;
to->f_files = from->f_files;
to->f_ffree = from->f_ffree;
to->f_favail = from->f_ffree; /* no exact equivalent */
to->f_fsid = 0; /* XXX fix me */
to->f_flag = from->f_flags;
to->f_namemax = MNAMELEN;
}
# ifndef HAVE_STATVFS
int statvfs(const char *path, struct statvfs *buf)
{
# ifdef HAVE_STATFS
struct statfs fs;
memset(&fs, 0, sizeof(fs));
if (statfs(path, &fs) == -1)
return -1;
copy_statfs_to_statvfs(buf, &fs);
return 0;
# else
errno = ENOSYS;
return -1;
# endif
}
#endif
# endif
#ifndef HAVE_FSTATVFS
# ifndef HAVE_FSTATVFS
int fstatvfs(int fd, struct statvfs *buf)
{
# ifdef HAVE_FSTATFS
struct statfs fs;
memset(&fs, 0, sizeof(fs));
if (fstatfs(fd, &fs) == -1)
return -1;
copy_statfs_to_statvfs(buf, &fs);
return 0;
# else
errno = ENOSYS;
return -1;
# endif
}
# endif
#endif

View File

@ -1,7 +1,7 @@
/* $Id: bsd-statvfs.h,v 1.1 2008/06/08 17:32:29 dtucker Exp $ */
/* $Id: bsd-statvfs.h,v 1.3 2014/01/17 07:48:22 dtucker Exp $ */
/*
* Copyright (c) 2008 Darren Tucker <dtucker@zip.com.au>
* Copyright (c) 2008,2014 Darren Tucker <dtucker@zip.com.au>
*
* Permission to use, copy, modify, and distribute this software for any
* purpose with or without fee is hereby granted, provided that the above
@ -18,14 +18,17 @@
#include "includes.h"
#if !defined(HAVE_STATVFS) || !defined(HAVE_FSTATVFS)
#include <sys/types.h>
#ifdef HAVE_SYS_MOUNT_H
#include <sys/mount.h>
#endif
#ifdef HAVE_SYS_STATFS_H
#include <sys/statfs.h>
#endif
#ifndef HAVE_STATVFS
#ifndef HAVE_FSBLKCNT_T
typedef unsigned long fsblkcnt_t;
#endif

View File

@ -0,0 +1,222 @@
/*
chacha-merged.c version 20080118
D. J. Bernstein
Public domain.
*/
/* $OpenBSD: chacha_private.h,v 1.2 2013/10/04 07:02:27 djm Exp $ */
typedef unsigned char u8;
typedef unsigned int u32;
typedef struct
{
u32 input[16]; /* could be compressed */
} chacha_ctx;
#define U8C(v) (v##U)
#define U32C(v) (v##U)
#define U8V(v) ((u8)(v) & U8C(0xFF))
#define U32V(v) ((u32)(v) & U32C(0xFFFFFFFF))
#define ROTL32(v, n) \
(U32V((v) << (n)) | ((v) >> (32 - (n))))
#define U8TO32_LITTLE(p) \
(((u32)((p)[0]) ) | \
((u32)((p)[1]) << 8) | \
((u32)((p)[2]) << 16) | \
((u32)((p)[3]) << 24))
#define U32TO8_LITTLE(p, v) \
do { \
(p)[0] = U8V((v) ); \
(p)[1] = U8V((v) >> 8); \
(p)[2] = U8V((v) >> 16); \
(p)[3] = U8V((v) >> 24); \
} while (0)
#define ROTATE(v,c) (ROTL32(v,c))
#define XOR(v,w) ((v) ^ (w))
#define PLUS(v,w) (U32V((v) + (w)))
#define PLUSONE(v) (PLUS((v),1))
#define QUARTERROUND(a,b,c,d) \
a = PLUS(a,b); d = ROTATE(XOR(d,a),16); \
c = PLUS(c,d); b = ROTATE(XOR(b,c),12); \
a = PLUS(a,b); d = ROTATE(XOR(d,a), 8); \
c = PLUS(c,d); b = ROTATE(XOR(b,c), 7);
static const char sigma[16] = "expand 32-byte k";
static const char tau[16] = "expand 16-byte k";
static void
chacha_keysetup(chacha_ctx *x,const u8 *k,u32 kbits,u32 ivbits)
{
const char *constants;
x->input[4] = U8TO32_LITTLE(k + 0);
x->input[5] = U8TO32_LITTLE(k + 4);
x->input[6] = U8TO32_LITTLE(k + 8);
x->input[7] = U8TO32_LITTLE(k + 12);
if (kbits == 256) { /* recommended */
k += 16;
constants = sigma;
} else { /* kbits == 128 */
constants = tau;
}
x->input[8] = U8TO32_LITTLE(k + 0);
x->input[9] = U8TO32_LITTLE(k + 4);
x->input[10] = U8TO32_LITTLE(k + 8);
x->input[11] = U8TO32_LITTLE(k + 12);
x->input[0] = U8TO32_LITTLE(constants + 0);
x->input[1] = U8TO32_LITTLE(constants + 4);
x->input[2] = U8TO32_LITTLE(constants + 8);
x->input[3] = U8TO32_LITTLE(constants + 12);
}
static void
chacha_ivsetup(chacha_ctx *x,const u8 *iv)
{
x->input[12] = 0;
x->input[13] = 0;
x->input[14] = U8TO32_LITTLE(iv + 0);
x->input[15] = U8TO32_LITTLE(iv + 4);
}
static void
chacha_encrypt_bytes(chacha_ctx *x,const u8 *m,u8 *c,u32 bytes)
{
u32 x0, x1, x2, x3, x4, x5, x6, x7, x8, x9, x10, x11, x12, x13, x14, x15;
u32 j0, j1, j2, j3, j4, j5, j6, j7, j8, j9, j10, j11, j12, j13, j14, j15;
u8 *ctarget = NULL;
u8 tmp[64];
u_int i;
if (!bytes) return;
j0 = x->input[0];
j1 = x->input[1];
j2 = x->input[2];
j3 = x->input[3];
j4 = x->input[4];
j5 = x->input[5];
j6 = x->input[6];
j7 = x->input[7];
j8 = x->input[8];
j9 = x->input[9];
j10 = x->input[10];
j11 = x->input[11];
j12 = x->input[12];
j13 = x->input[13];
j14 = x->input[14];
j15 = x->input[15];
for (;;) {
if (bytes < 64) {
for (i = 0;i < bytes;++i) tmp[i] = m[i];
m = tmp;
ctarget = c;
c = tmp;
}
x0 = j0;
x1 = j1;
x2 = j2;
x3 = j3;
x4 = j4;
x5 = j5;
x6 = j6;
x7 = j7;
x8 = j8;
x9 = j9;
x10 = j10;
x11 = j11;
x12 = j12;
x13 = j13;
x14 = j14;
x15 = j15;
for (i = 20;i > 0;i -= 2) {
QUARTERROUND( x0, x4, x8,x12)
QUARTERROUND( x1, x5, x9,x13)
QUARTERROUND( x2, x6,x10,x14)
QUARTERROUND( x3, x7,x11,x15)
QUARTERROUND( x0, x5,x10,x15)
QUARTERROUND( x1, x6,x11,x12)
QUARTERROUND( x2, x7, x8,x13)
QUARTERROUND( x3, x4, x9,x14)
}
x0 = PLUS(x0,j0);
x1 = PLUS(x1,j1);
x2 = PLUS(x2,j2);
x3 = PLUS(x3,j3);
x4 = PLUS(x4,j4);
x5 = PLUS(x5,j5);
x6 = PLUS(x6,j6);
x7 = PLUS(x7,j7);
x8 = PLUS(x8,j8);
x9 = PLUS(x9,j9);
x10 = PLUS(x10,j10);
x11 = PLUS(x11,j11);
x12 = PLUS(x12,j12);
x13 = PLUS(x13,j13);
x14 = PLUS(x14,j14);
x15 = PLUS(x15,j15);
#ifndef KEYSTREAM_ONLY
x0 = XOR(x0,U8TO32_LITTLE(m + 0));
x1 = XOR(x1,U8TO32_LITTLE(m + 4));
x2 = XOR(x2,U8TO32_LITTLE(m + 8));
x3 = XOR(x3,U8TO32_LITTLE(m + 12));
x4 = XOR(x4,U8TO32_LITTLE(m + 16));
x5 = XOR(x5,U8TO32_LITTLE(m + 20));
x6 = XOR(x6,U8TO32_LITTLE(m + 24));
x7 = XOR(x7,U8TO32_LITTLE(m + 28));
x8 = XOR(x8,U8TO32_LITTLE(m + 32));
x9 = XOR(x9,U8TO32_LITTLE(m + 36));
x10 = XOR(x10,U8TO32_LITTLE(m + 40));
x11 = XOR(x11,U8TO32_LITTLE(m + 44));
x12 = XOR(x12,U8TO32_LITTLE(m + 48));
x13 = XOR(x13,U8TO32_LITTLE(m + 52));
x14 = XOR(x14,U8TO32_LITTLE(m + 56));
x15 = XOR(x15,U8TO32_LITTLE(m + 60));
#endif
j12 = PLUSONE(j12);
if (!j12) {
j13 = PLUSONE(j13);
/* stopping at 2^70 bytes per nonce is user's responsibility */
}
U32TO8_LITTLE(c + 0,x0);
U32TO8_LITTLE(c + 4,x1);
U32TO8_LITTLE(c + 8,x2);
U32TO8_LITTLE(c + 12,x3);
U32TO8_LITTLE(c + 16,x4);
U32TO8_LITTLE(c + 20,x5);
U32TO8_LITTLE(c + 24,x6);
U32TO8_LITTLE(c + 28,x7);
U32TO8_LITTLE(c + 32,x8);
U32TO8_LITTLE(c + 36,x9);
U32TO8_LITTLE(c + 40,x10);
U32TO8_LITTLE(c + 44,x11);
U32TO8_LITTLE(c + 48,x12);
U32TO8_LITTLE(c + 52,x13);
U32TO8_LITTLE(c + 56,x14);
U32TO8_LITTLE(c + 60,x15);
if (bytes <= 64) {
if (bytes < 64) {
for (i = 0;i < bytes;++i) ctarget[i] = c[i];
}
x->input[12] = j12;
x->input[13] = j13;
return;
}
bytes -= 64;
c += 64;
#ifndef KEYSTREAM_ONLY
m += 64;
#endif
}
}

View File

@ -1,4 +1,4 @@
/* $Id: openbsd-compat.h,v 1.58 2013/06/05 22:30:21 dtucker Exp $ */
/* $Id: openbsd-compat.h,v 1.60 2013/12/07 00:51:54 djm Exp $ */
/*
* Copyright (c) 1999-2003 Damien Miller. All rights reserved.
@ -44,6 +44,7 @@
#include "vis.h"
#include "getrrsetbyname.h"
#include "sha2.h"
#include "blf.h"
#ifndef HAVE_BASENAME
char *basename(const char *path);
@ -161,9 +162,13 @@ int writev(int, struct iovec *, int);
#ifndef HAVE_GETPEEREID
int getpeereid(int , uid_t *, gid_t *);
#endif
#endif
#ifndef HAVE_ARC4RANDOM
#ifdef HAVE_ARC4RANDOM
# ifndef HAVE_ARC4RANDOM_STIR
# define arc4random_stir()
# endif
#else
unsigned int arc4random(void);
void arc4random_stir(void);
#endif /* !HAVE_ARC4RANDOM */
@ -236,6 +241,11 @@ char *group_from_gid(gid_t, int);
int timingsafe_bcmp(const void *, const void *, size_t);
#endif
#ifndef HAVE_BCRYPT_PBKDF
int bcrypt_pbkdf(const char *, size_t, const u_int8_t *, size_t,
u_int8_t *, size_t, unsigned int);
#endif
void *xmmap(size_t size);
char *xcrypt(const char *password, const char *salt);
char *shadow_pw(struct passwd *pw);

View File

@ -1,4 +1,4 @@
/* $Id: openssl-compat.c,v 1.14 2011/05/10 01:13:38 dtucker Exp $ */
/* $Id: openssl-compat.c,v 1.16 2014/01/17 07:00:41 dtucker Exp $ */
/*
* Copyright (c) 2005 Darren Tucker <dtucker@zip.com.au>
@ -59,6 +59,34 @@ ssh_EVP_CIPHER_CTX_cleanup(EVP_CIPHER_CTX *evp)
}
#endif
#ifndef HAVE_EVP_DIGESTINIT_EX
int
EVP_DigestInit_ex(EVP_MD_CTX *ctx, const EVP_MD *md, void *engine)
{
if (engine != NULL)
fatal("%s: ENGINE is not supported", __func__);
# ifdef OPENSSL_EVP_DIGESTUPDATE_VOID
EVP_DigestInit(ctx, md);
return 1;
# else
return EVP_DigestInit(ctx, md);
# endif
}
#endif
#ifndef HAVE_EVP_DIGESTFINAL_EX
int
EVP_DigestFinal_ex(EVP_MD_CTX *ctx, unsigned char *md, unsigned int *s)
{
# ifdef OPENSSL_EVP_DIGESTUPDATE_VOID
EVP_DigestFinal(ctx, md, s);
return 1;
# else
return EVP_DigestFinal(ctx, md, s);
# endif
}
#endif
#ifdef OPENSSL_EVP_DIGESTUPDATE_VOID
int
ssh_EVP_DigestUpdate(EVP_MD_CTX *ctx, const void *d, unsigned int cnt)

View File

@ -1,4 +1,4 @@
/* $Id: openssl-compat.h,v 1.24 2013/02/12 00:00:40 djm Exp $ */
/* $Id: openssl-compat.h,v 1.25 2014/01/17 06:32:31 dtucker Exp $ */
/*
* Copyright (c) 2005 Darren Tucker <dtucker@zip.com.au>
@ -148,6 +148,14 @@ int DSA_generate_parameters_ex(DSA *, int, const unsigned char *, int, int *,
int RSA_generate_key_ex(RSA *, int, BIGNUM *, void *);
# endif
# ifndef HAVE_EVP_DIGESTINIT_EX
int EVP_DigestInit_ex(EVP_MD_CTX *, const EVP_MD *, void *);
# endif
# ifndef HAVE_EVP_DISESTFINAL_EX
int EVP_DigestFinal_ex(EVP_MD_CTX *, unsigned char *, unsigned int *);
# endif
int ssh_EVP_CipherInit(EVP_CIPHER_CTX *, const EVP_CIPHER *, unsigned char *,
unsigned char *, int);
int ssh_EVP_Cipher(EVP_CIPHER_CTX *, char *, char *, int);
@ -158,5 +166,13 @@ void ssh_OpenSSL_add_all_algorithms(void);
# define HMAC_CTX_init(a)
# endif
# ifndef HAVE_EVP_MD_CTX_INIT
# define EVP_MD_CTX_init(a)
# endif
# ifndef HAVE_EVP_MD_CTX_CLEANUP
# define EVP_MD_CTX_cleanup(a)
# endif
#endif /* SSH_DONT_OVERLOAD_OPENSSL_FUNCS */

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