Index: head/crypto/openssh/README.hpn =================================================================== --- head/crypto/openssh/README.hpn (revision 291197) +++ head/crypto/openssh/README.hpn (revision 291198) @@ -1,120 +1,95 @@ Notes: -NONE CIPHER: - To use the NONE option you must have the NoneEnabled switch set on the server - and you MUST have *both* NoneEnabled and NoneSwitch set to yes on the client. - The NONE feature works with ALL ssh subsystems (as far as we can tell) - as long as there is no tty allocated. - If a user uses the -T switch to prevent a tty being created the NONE cipher - will be disabled. - - PERFORMANCE: The performance increase will only be as good as the network and TCP stack tuning on the reciever side of the connection allows. As a rule of thumb a user will need at least 10Mb/s connection with a 100ms RTT to see a doubling of performance. The HPN-SSH home page http://www.psc.edu/networking/projects/hpn-ssh describes this in greater detail. BUFFER SIZES: - if HPN is disabled the receive buffer size will be set to the OpenSSH default of 64K. - if a HPN system connects to a non-HPN system the receive buffer will be set to the HPNBufferSize value. The default is 2MB but user adjustable. - If a HPN to HPN connection is established a number of different things might happen based on the user options and conditions. Conditions: HPNBufferSize NOT Set, TCPRcvBufPoll enabled, TCPRcvBuf NOT Set Result: HPN Buffer Size = up to 64MB This is the default state. The HPN buffer size will grow to a maximum of 64MB as the TCP receive buffer grows. The maximum HPN Buffer size of 64MB is geared towards 10GigE transcontinental connections. Conditions: HPNBufferSize NOT Set, TCPRcvBufPoll disabled, TCPRcvBuf NOT Set Result: HPN Buffer Size = TCP receive buffer value. Users on non-autotuning systesm should disable TCPRcvBufPoll in the ssh_cofig and sshd_config Conditions: HPNBufferSize SET, TCPRcvBufPoll disabled, TCPRcvBuf NOT Set Result: HPN Buffer Size = minmum of TCP receive buffer and HPNBufferSize. This would be the system defined TCP receive buffer (RWIN). Conditions: HPNBufferSize SET, TCPRcvBufPoll disabled, TCPRcvBuf SET Result: HPN Buffer Size = minmum of TCPRcvBuf and HPNBufferSize. Generally there is no need to set both. Conditions: HPNBufferSize SET, TCPRcvBufPoll enabled, TCPRcvBuf NOT Set Result: HPN Buffer Size = grows to HPNBufferSize The buffer will grow up to the maximum size specified here. Conditions: HPNBufferSize SET, TCPRcvBufPoll enabled, TCPRcvBuf SET Result: HPN Buffer Size = minmum of TCPRcvBuf and HPNBufferSize. Generally there is no need to set both of these, especially on autotuning systems. However, if the users wishes to override the autotuning this would be one way to do it. Conditions: HPNBufferSize NOT Set, TCPRcvBufPoll enabled, TCPRcvBuf SET Result: HPN Buffer Size = TCPRcvBuf. This will override autotuning and set the TCP recieve buffer to the user defined value. HPN SPECIFIC CONFIGURATION OPTIONS: - HPNDisabled=[yes/no] client/server In some situations, such as transfers on a local area network, the impact of the HPN code produces a net decrease in performance. In these cases it is helpful to disable the HPN functionality. By default HPNDisabled is set to no. - HPNBufferSize=[int]KB client/server This is the default buffer size the HPN functionality uses when interacting with non-HPN SSH installations. Conceptually this is similar to the TcpRcvBuf option as applied to the internal SSH flow control. This value can range from 1KB to 64MB (1-65536). Use of oversized or undersized buffers can cause performance problems depending on the roud trip time of the network path. The default size of this buffer is 2MB. - TcpRcvBufPoll=[yes/no] client/server Enable or disable the polling of the TCP receive buffer through the life of the connection. You would want to make sure that this option is enabled for systems making use of autotuning kernels (linux 2.4.24+, 2.6, MS Vista, FreeBSD 7.x and later). Default is yes. - TcpRcvBuf=[int]KB client Set the TCP socket receive buffer to n Kilobytes. It can be set up to the maximum socket size allowed by the system. This is useful in situations where the TCP receive window is set low but the maximum buffer size is set higher (as is typical). This works on a per TCP connection basis. You can also use this to artifically limit the transfer rate of the connection. In these cases the throughput will be no more than n/RTT. The minimum buffer size is 1KB. Default is the current system wide TCP receive buffer size. - -- NoneEnabled=[yes/no] client/server - Enable or disable the use of the None cipher. Care must always be used when - enabling this as it will allow users to send data in the clear. However, it - is important to note that authentication information remains encrypted even - if this option is enabled. Set to no by default. - -- NoneSwitch=[yes/no] client - Switch the encryption cipher being used to the None cipher after - authentication takes place. NoneEnabled must be enabled on both the client - and server side of the connection. When the connection switches to the NONE - cipher a warning is sent to STDERR. The connection attempt will fail with an - error if a client requests a NoneSwitch from the server that does not - explicitly have NoneEnabled set to yes. - Note: The NONE cipher cannot be used in interactive (shell) sessions and it - will fail silently. Set to no by default. CREDITS: This patch was conceived, designed, and led by Chris Rapier (rapier@psc.edu) The majority of the actual coding for versions up to HPN12v1 was performed by Michael Stevens (mstevens@andrew.cmu.edu). The MT-AES-CTR cipher was implemented by Ben Bennet (ben@psc.edu). This work was financed, in part, by Cisco System, Inc., the National Library of Medicine, and the National Science Foundation. Index: head/crypto/openssh/cipher.c =================================================================== --- head/crypto/openssh/cipher.c (revision 291197) +++ head/crypto/openssh/cipher.c (revision 291198) @@ -1,584 +1,572 @@ /* $OpenBSD: cipher.c,v 1.97 2014/02/07 06:55:54 djm Exp $ */ /* * Author: Tatu Ylonen * Copyright (c) 1995 Tatu Ylonen , Espoo, Finland * All rights reserved * * As far as I am concerned, the code I have written for this software * can be used freely for any purpose. Any derived versions of this * software must be clearly marked as such, and if the derived work is * incompatible with the protocol description in the RFC file, it must be * called by a name other than "ssh" or "Secure Shell". * * * Copyright (c) 1999 Niels Provos. All rights reserved. * Copyright (c) 1999, 2000 Markus Friedl. 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" -__RCSID("$FreeBSD$"); #include #include #include #include #include "xmalloc.h" #include "log.h" #include "misc.h" #include "cipher.h" #include "buffer.h" #include "digest.h" /* compatibility with old or broken OpenSSL versions */ #include "openbsd-compat/openssl-compat.h" extern const EVP_CIPHER *evp_ssh1_bf(void); extern const EVP_CIPHER *evp_ssh1_3des(void); extern void ssh1_3des_iv(EVP_CIPHER_CTX *, int, u_char *, int); struct Cipher { char *name; int number; /* for ssh1 only */ u_int block_size; u_int key_len; u_int iv_len; /* defaults to block_size */ u_int auth_len; u_int discard_len; u_int flags; #define CFLAG_CBC (1<<0) #define CFLAG_CHACHAPOLY (1<<1) const EVP_CIPHER *(*evptype)(void); }; static const struct Cipher ciphers[] = { { "none", SSH_CIPHER_NONE, 8, 0, 0, 0, 0, 0, EVP_enc_null }, { "des", SSH_CIPHER_DES, 8, 8, 0, 0, 0, 1, EVP_des_cbc }, { "3des", SSH_CIPHER_3DES, 8, 16, 0, 0, 0, 1, evp_ssh1_3des }, { "blowfish", SSH_CIPHER_BLOWFISH, 8, 32, 0, 0, 0, 1, evp_ssh1_bf }, { "3des-cbc", SSH_CIPHER_SSH2, 8, 24, 0, 0, 0, 1, EVP_des_ede3_cbc }, { "blowfish-cbc", SSH_CIPHER_SSH2, 8, 16, 0, 0, 0, 1, EVP_bf_cbc }, { "cast128-cbc", SSH_CIPHER_SSH2, 8, 16, 0, 0, 0, 1, EVP_cast5_cbc }, { "arcfour", SSH_CIPHER_SSH2, 8, 16, 0, 0, 0, 0, EVP_rc4 }, { "arcfour128", SSH_CIPHER_SSH2, 8, 16, 0, 0, 1536, 0, EVP_rc4 }, { "arcfour256", SSH_CIPHER_SSH2, 8, 32, 0, 0, 1536, 0, EVP_rc4 }, { "aes128-cbc", SSH_CIPHER_SSH2, 16, 16, 0, 0, 0, 1, EVP_aes_128_cbc }, { "aes192-cbc", SSH_CIPHER_SSH2, 16, 24, 0, 0, 0, 1, EVP_aes_192_cbc }, { "aes256-cbc", SSH_CIPHER_SSH2, 16, 32, 0, 0, 0, 1, EVP_aes_256_cbc }, { "rijndael-cbc@lysator.liu.se", SSH_CIPHER_SSH2, 16, 32, 0, 0, 0, 1, EVP_aes_256_cbc }, { "aes128-ctr", SSH_CIPHER_SSH2, 16, 16, 0, 0, 0, 0, EVP_aes_128_ctr }, { "aes192-ctr", SSH_CIPHER_SSH2, 16, 24, 0, 0, 0, 0, EVP_aes_192_ctr }, { "aes256-ctr", SSH_CIPHER_SSH2, 16, 32, 0, 0, 0, 0, EVP_aes_256_ctr }, #ifdef OPENSSL_HAVE_EVPGCM { "aes128-gcm@openssh.com", SSH_CIPHER_SSH2, 16, 16, 12, 16, 0, 0, EVP_aes_128_gcm }, { "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 list of supported ciphers separated by the specified char. */ char * cipher_alg_list(char sep, int auth_only) { char *ret = NULL; size_t nlen, rlen = 0; const Cipher *c; 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++] = sep; nlen = strlen(c->name); ret = xrealloc(ret, 1, rlen + nlen + 2); memcpy(ret + rlen, c->name, nlen + 1); rlen += nlen; } return ret; } u_int cipher_blocksize(const Cipher *c) { return (c->block_size); } u_int 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) { return (c->auth_len); } u_int cipher_ivlen(const Cipher *c) { /* * 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 cipher_get_number(const Cipher *c) { return (c->number); } u_int cipher_is_cbc(const Cipher *c) { return (c->flags & CFLAG_CBC) != 0; } u_int cipher_mask_ssh1(int client) { u_int mask = 0; mask |= 1 << SSH_CIPHER_3DES; /* Mandatory */ mask |= 1 << SSH_CIPHER_BLOWFISH; if (client) { mask |= 1 << SSH_CIPHER_DES; } return mask; } const Cipher * cipher_by_name(const char *name) { const Cipher *c; for (c = ciphers; c->name != NULL; c++) if (strcmp(c->name, name) == 0) return c; return NULL; } const Cipher * cipher_by_number(int id) { const Cipher *c; for (c = ciphers; c->name != NULL; c++) if (c->number == id) return c; return NULL; } #define CIPHER_SEP "," int ciphers_valid(const char *names) { const Cipher *c; char *cipher_list, *cp; char *p; if (names == NULL || strcmp(names, "") == 0) return 0; cipher_list = cp = xstrdup(names); for ((p = strsep(&cp, CIPHER_SEP)); p && *p != '\0'; (p = strsep(&cp, CIPHER_SEP))) { c = cipher_by_name(p); -#ifdef NONE_CIPHER_ENABLED - if (c == NULL || (c->number != SSH_CIPHER_SSH2 && - c->number != SSH_CIPHER_NONE)) { -#else - if (c == NULL || (c->number != SSH_CIPHER_SSH2)) { -#endif + if (c == NULL || c->number != SSH_CIPHER_SSH2) { debug("bad cipher %s [%s]", p, names); free(cipher_list); return 0; } } debug3("ciphers ok: [%s]", names); free(cipher_list); return 1; } /* * Parses the name of the cipher. Returns the number of the corresponding * cipher, or -1 on error. */ int cipher_number(const char *name) { const Cipher *c; if (name == NULL) return -1; for (c = ciphers; c->name != NULL; c++) if (strcasecmp(c->name, name) == 0) return c->number; return -1; } char * cipher_name(int id) { const Cipher *c = cipher_by_number(id); return (c==NULL) ? "" : c->name; } void cipher_init(CipherContext *cc, const Cipher *cipher, const u_char *key, u_int keylen, const u_char *iv, u_int ivlen, int do_encrypt) { static int dowarn = 1; #ifdef SSH_OLD_EVP EVP_CIPHER *type; #else const EVP_CIPHER *type; int klen; #endif u_char *junk, *discard; if (cipher->number == SSH_CIPHER_DES) { if (dowarn) { error("Warning: use of DES is strongly discouraged " "due to cryptographic weaknesses"); dowarn = 0; } if (keylen > 8) keylen = 8; } cc->plaintext = (cipher->number == SSH_CIPHER_NONE); cc->encrypt = do_encrypt; if (keylen < cipher->key_len) fatal("cipher_init: key length %d is insufficient for %s.", keylen, cipher->name); if (iv != NULL && ivlen < cipher_ivlen(cipher)) fatal("cipher_init: iv length %d is insufficient for %s.", 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) { debug("cipher_init: set keylen (%d -> %d)", type->key_len, keylen); type->key_len = keylen; } EVP_CipherInit(&cc->evp, type, (u_char *)key, (u_char *)iv, (do_encrypt == CIPHER_ENCRYPT)); #else if (EVP_CipherInit(&cc->evp, type, NULL, (u_char *)iv, (do_encrypt == CIPHER_ENCRYPT)) == 0) fatal("cipher_init: EVP_CipherInit failed for %s", cipher->name); if (cipher_authlen(cipher) && !EVP_CIPHER_CTX_ctrl(&cc->evp, EVP_CTRL_GCM_SET_IV_FIXED, -1, (u_char *)iv)) fatal("cipher_init: EVP_CTRL_GCM_SET_IV_FIXED failed for %s", cipher->name); klen = EVP_CIPHER_CTX_key_length(&cc->evp); if (klen > 0 && keylen != (u_int)klen) { debug2("cipher_init: set keylen (%d -> %d)", klen, keylen); if (EVP_CIPHER_CTX_set_key_length(&cc->evp, keylen) == 0) fatal("cipher_init: set keylen failed (%d -> %d)", klen, keylen); } if (EVP_CipherInit(&cc->evp, NULL, (u_char *)key, NULL, -1) == 0) fatal("cipher_init: EVP_CipherInit: set key failed for %s", cipher->name); #endif if (cipher->discard_len > 0) { junk = xmalloc(cipher->discard_len); discard = xmalloc(cipher->discard_len); if (EVP_Cipher(&cc->evp, discard, junk, cipher->discard_len) == 0) fatal("evp_crypt: EVP_Cipher failed during discard"); explicit_bzero(discard, cipher->discard_len); free(junk); free(discard); } } /* * cipher_crypt() operates as following: * Copy 'aadlen' bytes (without en/decryption) from 'src' to 'dest'. * Theses bytes are treated as additional authenticated data for * authenticated encryption modes. * En/Decrypt 'len' bytes at offset 'aadlen' from 'src' to 'dest'. * 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. */ 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]; if (authlen != cipher_authlen(cc->cipher)) fatal("%s: authlen mismatch %d", __func__, authlen); /* increment IV */ if (!EVP_CIPHER_CTX_ctrl(&cc->evp, EVP_CTRL_GCM_IV_GEN, 1, lastiv)) fatal("%s: EVP_CTRL_GCM_IV_GEN", __func__); /* set tag on decyption */ if (!cc->encrypt && !EVP_CIPHER_CTX_ctrl(&cc->evp, EVP_CTRL_GCM_SET_TAG, authlen, (u_char *)src + aadlen + len)) fatal("%s: EVP_CTRL_GCM_SET_TAG", __func__); } if (aadlen) { if (authlen && EVP_Cipher(&cc->evp, NULL, (u_char *)src, aadlen) < 0) fatal("%s: EVP_Cipher(aad) failed", __func__); memcpy(dest, src, aadlen); } if (len % cc->cipher->block_size) fatal("%s: bad plaintext length %d", __func__, len); if (EVP_Cipher(&cc->evp, dest + aadlen, (u_char *)src + aadlen, len) < 0) fatal("%s: EVP_Cipher failed", __func__); if (authlen) { /* compute tag (on encrypt) or verify tag (on decrypt) */ if (EVP_Cipher(&cc->evp, NULL, NULL, 0) < 0) { if (cc->encrypt) fatal("%s: EVP_Cipher(final) failed", __func__); else 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 ((cc->cipher->flags & CFLAG_CHACHAPOLY) != 0) explicit_bzero(&cc->cp_ctx, sizeof(cc->cp_ctx)); else if (EVP_CIPHER_CTX_cleanup(&cc->evp) == 0) error("cipher_cleanup: EVP_CIPHER_CTX_cleanup failed"); } /* * Selects the cipher, and keys if by computing the MD5 checksum of the * passphrase and using the resulting 16 bytes as the key. */ void cipher_set_key_string(CipherContext *cc, const Cipher *cipher, const char *passphrase, int do_encrypt) { u_char digest[16]; if (ssh_digest_memory(SSH_DIGEST_MD5, passphrase, strlen(passphrase), digest, sizeof(digest)) < 0) fatal("%s: md5 failed", __func__); cipher_init(cc, cipher, digest, 16, NULL, 0, do_encrypt); explicit_bzero(digest, sizeof(digest)); } /* * Exports an IV from the CipherContext required to export the key * state back from the unprivileged child to the privileged parent * process. */ int cipher_get_keyiv_len(const CipherContext *cc) { const Cipher *c = cc->cipher; int ivlen; 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); } void 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: -#endif case SSH_CIPHER_SSH2: case SSH_CIPHER_DES: case SSH_CIPHER_BLOWFISH: evplen = EVP_CIPHER_CTX_iv_length(&cc->evp); if (evplen <= 0) return; if ((u_int)evplen != len) fatal("%s: wrong iv length %d != %d", __func__, evplen, len); #ifdef USE_BUILTIN_RIJNDAEL if (c->evptype == evp_rijndael) ssh_rijndael_iv(&cc->evp, 0, iv, len); else #endif #ifndef OPENSSL_HAVE_EVPCTR if (c->evptype == evp_aes_128_ctr) ssh_aes_ctr_iv(&cc->evp, 0, iv, len); else #endif memcpy(iv, cc->evp.iv, len); break; case SSH_CIPHER_3DES: ssh1_3des_iv(&cc->evp, 0, iv, 24); break; default: fatal("%s: bad cipher %d", __func__, c->number); } } void 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: -#endif case SSH_CIPHER_SSH2: case SSH_CIPHER_DES: case SSH_CIPHER_BLOWFISH: evplen = EVP_CIPHER_CTX_iv_length(&cc->evp); if (evplen == 0) return; #ifdef USE_BUILTIN_RIJNDAEL if (c->evptype == evp_rijndael) ssh_rijndael_iv(&cc->evp, 1, iv, evplen); else #endif #ifndef OPENSSL_HAVE_EVPCTR if (c->evptype == evp_aes_128_ctr) ssh_aes_ctr_iv(&cc->evp, 1, iv, evplen); else #endif memcpy(cc->evp.iv, iv, evplen); break; case SSH_CIPHER_3DES: ssh1_3des_iv(&cc->evp, 1, iv, 24); break; default: fatal("%s: bad cipher %d", __func__, c->number); } } int cipher_get_keycontext(const CipherContext *cc, u_char *dat) { const Cipher *c = cc->cipher; int plen = 0; if (c->evptype == EVP_rc4) { plen = EVP_X_STATE_LEN(cc->evp); if (dat == NULL) return (plen); memcpy(dat, EVP_X_STATE(cc->evp), plen); } return (plen); } void cipher_set_keycontext(CipherContext *cc, u_char *dat) { const Cipher *c = cc->cipher; int plen; if (c->evptype == EVP_rc4) { plen = EVP_X_STATE_LEN(cc->evp); memcpy(EVP_X_STATE(cc->evp), dat, plen); } } Index: head/crypto/openssh/kex.c =================================================================== --- head/crypto/openssh/kex.c (revision 291197) +++ head/crypto/openssh/kex.c (revision 291198) @@ -1,713 +1,689 @@ /* $OpenBSD: kex.c,v 1.98 2014/02/02 03:44:31 djm Exp $ */ /* * Copyright (c) 2000, 2001 Markus Friedl. 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" -__RCSID("$FreeBSD$"); #include #include #include #include #include #include #include #include "xmalloc.h" #include "ssh2.h" #include "buffer.h" #include "packet.h" #include "compat.h" #include "cipher.h" #include "key.h" #include "kex.h" #include "log.h" #include "mac.h" #include "match.h" #include "dispatch.h" #include "monitor.h" #include "roaming.h" #include "digest.h" #if OPENSSL_VERSION_NUMBER >= 0x00907000L # if defined(HAVE_EVP_SHA256) # define evp_ssh_sha256 EVP_sha256 # else extern const EVP_MD *evp_ssh_sha256(void); # endif #endif /* prototype */ static void kex_kexinit_finish(Kex *); static void kex_choose_conf(Kex *); struct kexalg { char *name; int type; int ec_nid; int hash_alg; }; static const struct kexalg kexalgs[] = { { 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, SSH_DIGEST_SHA256 }, #endif #ifdef OPENSSL_HAS_ECC { 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 { 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(char sep) { char *ret = NULL; size_t nlen, rlen = 0; const struct kexalg *k; for (k = kexalgs; k->name != NULL; k++) { if (ret != NULL) ret[rlen++] = sep; nlen = strlen(k->name); ret = xrealloc(ret, 1, rlen + nlen + 2); memcpy(ret + rlen, k->name, nlen + 1); rlen += nlen; } return ret; } static const struct kexalg * kex_alg_by_name(const char *name) { const struct kexalg *k; for (k = kexalgs; k->name != NULL; k++) { if (strcmp(k->name, name) == 0) return k; } return NULL; } /* Validate KEX method name list */ int kex_names_valid(const char *names) { char *s, *cp, *p; if (names == NULL || strcmp(names, "") == 0) return 0; s = cp = xstrdup(names); for ((p = strsep(&cp, ",")); p && *p != '\0'; (p = strsep(&cp, ","))) { if (kex_alg_by_name(p) == NULL) { error("Unsupported KEX algorithm \"%.100s\"", p); free(s); return 0; } } debug3("kex names ok: [%s]", names); free(s); return 1; } -/* put algorithm proposal into buffer. */ -#ifndef NONE_CIPHER_ENABLED +/* put algorithm proposal into buffer */ static void -#else -/* Also used in sshconnect2.c. */ -void -#endif kex_prop2buf(Buffer *b, char *proposal[PROPOSAL_MAX]) { u_int i; buffer_clear(b); /* * add a dummy cookie, the cookie will be overwritten by * kex_send_kexinit(), each time a kexinit is set */ for (i = 0; i < KEX_COOKIE_LEN; i++) buffer_put_char(b, 0); for (i = 0; i < PROPOSAL_MAX; i++) buffer_put_cstring(b, proposal[i]); buffer_put_char(b, 0); /* first_kex_packet_follows */ buffer_put_int(b, 0); /* uint32 reserved */ } /* parse buffer and return algorithm proposal */ static char ** kex_buf2prop(Buffer *raw, int *first_kex_follows) { Buffer b; u_int i; char **proposal; proposal = xcalloc(PROPOSAL_MAX, sizeof(char *)); buffer_init(&b); buffer_append(&b, buffer_ptr(raw), buffer_len(raw)); /* skip cookie */ for (i = 0; i < KEX_COOKIE_LEN; i++) buffer_get_char(&b); /* extract kex init proposal strings */ for (i = 0; i < PROPOSAL_MAX; i++) { proposal[i] = buffer_get_cstring(&b,NULL); debug2("kex_parse_kexinit: %s", proposal[i]); } /* first kex follows / reserved */ i = buffer_get_char(&b); if (first_kex_follows != NULL) *first_kex_follows = i; debug2("kex_parse_kexinit: first_kex_follows %d ", i); i = buffer_get_int(&b); debug2("kex_parse_kexinit: reserved %u ", i); buffer_free(&b); return proposal; } static void kex_prop_free(char **proposal) { u_int i; for (i = 0; i < PROPOSAL_MAX; i++) free(proposal[i]); free(proposal); } /* ARGSUSED */ static void kex_protocol_error(int type, u_int32_t seq, void *ctxt) { error("Hm, kex protocol error: type %d seq %u", type, seq); } static void kex_reset_dispatch(void) { dispatch_range(SSH2_MSG_TRANSPORT_MIN, SSH2_MSG_TRANSPORT_MAX, &kex_protocol_error); dispatch_set(SSH2_MSG_KEXINIT, &kex_input_kexinit); } void kex_finish(Kex *kex) { kex_reset_dispatch(); packet_start(SSH2_MSG_NEWKEYS); packet_send(); /* packet_write_wait(); */ debug("SSH2_MSG_NEWKEYS sent"); debug("expecting SSH2_MSG_NEWKEYS"); packet_read_expect(SSH2_MSG_NEWKEYS); packet_check_eom(); debug("SSH2_MSG_NEWKEYS received"); kex->done = 1; buffer_clear(&kex->peer); /* buffer_clear(&kex->my); */ kex->flags &= ~KEX_INIT_SENT; free(kex->name); kex->name = NULL; } void kex_send_kexinit(Kex *kex) { u_int32_t rnd = 0; u_char *cookie; u_int i; if (kex == NULL) { error("kex_send_kexinit: no kex, cannot rekey"); return; } if (kex->flags & KEX_INIT_SENT) { debug("KEX_INIT_SENT"); return; } kex->done = 0; /* generate a random cookie */ if (buffer_len(&kex->my) < KEX_COOKIE_LEN) fatal("kex_send_kexinit: kex proposal too short"); cookie = buffer_ptr(&kex->my); for (i = 0; i < KEX_COOKIE_LEN; i++) { if (i % 4 == 0) rnd = arc4random(); cookie[i] = rnd; rnd >>= 8; } packet_start(SSH2_MSG_KEXINIT); packet_put_raw(buffer_ptr(&kex->my), buffer_len(&kex->my)); packet_send(); debug("SSH2_MSG_KEXINIT sent"); kex->flags |= KEX_INIT_SENT; } /* ARGSUSED */ void kex_input_kexinit(int type, u_int32_t seq, void *ctxt) { char *ptr; u_int i, dlen; Kex *kex = (Kex *)ctxt; debug("SSH2_MSG_KEXINIT received"); if (kex == NULL) fatal("kex_input_kexinit: no kex, cannot rekey"); ptr = packet_get_raw(&dlen); buffer_append(&kex->peer, ptr, dlen); /* discard packet */ for (i = 0; i < KEX_COOKIE_LEN; i++) packet_get_char(); for (i = 0; i < PROPOSAL_MAX; i++) free(packet_get_string(NULL)); /* * XXX RFC4253 sec 7: "each side MAY guess" - currently no supported * KEX method has the server move first, but a server might be using * a custom method or one that we otherwise don't support. We should * be prepared to remember first_kex_follows here so we can eat a * packet later. * XXX2 - RFC4253 is kind of ambiguous on what first_kex_follows means * for cases where the server *doesn't* go first. I guess we should * ignore it when it is set for these cases, which is what we do now. */ (void) packet_get_char(); /* first_kex_follows */ (void) packet_get_int(); /* reserved */ packet_check_eom(); kex_kexinit_finish(kex); } Kex * kex_setup(char *proposal[PROPOSAL_MAX]) { Kex *kex; kex = xcalloc(1, sizeof(*kex)); buffer_init(&kex->peer); buffer_init(&kex->my); kex_prop2buf(&kex->my, proposal); kex->done = 0; kex_send_kexinit(kex); /* we start */ kex_reset_dispatch(); return kex; } static void kex_kexinit_finish(Kex *kex) { if (!(kex->flags & KEX_INIT_SENT)) kex_send_kexinit(kex); kex_choose_conf(kex); if (kex->kex_type >= 0 && kex->kex_type < KEX_MAX && kex->kex[kex->kex_type] != NULL) { (kex->kex[kex->kex_type])(kex); } else { fatal("Unsupported key exchange %d", kex->kex_type); } } static void choose_enc(Enc *enc, char *client, char *server) { char *name = match_list(client, server, NULL); if (name == NULL) fatal("no matching cipher found: client %s server %s", client, server); if ((enc->cipher = cipher_by_name(name)) == NULL) fatal("matching cipher is not supported: %s", name); enc->name = name; enc->enabled = 0; enc->iv = NULL; enc->iv_len = cipher_ivlen(enc->cipher); enc->key = NULL; enc->key_len = cipher_keylen(enc->cipher); enc->block_size = cipher_blocksize(enc->cipher); } static void choose_mac(Mac *mac, char *client, char *server) { char *name = match_list(client, server, NULL); if (name == NULL) fatal("no matching mac found: client %s server %s", client, server); if (mac_setup(mac, name) < 0) fatal("unsupported mac %s", name); /* truncate the key */ if (datafellows & SSH_BUG_HMAC) mac->key_len = 16; mac->name = name; mac->key = NULL; mac->enabled = 0; } static void choose_comp(Comp *comp, char *client, char *server) { char *name = match_list(client, server, NULL); if (name == NULL) fatal("no matching comp found: client %s server %s", client, server); if (strcmp(name, "zlib@openssh.com") == 0) { comp->type = COMP_DELAYED; } else if (strcmp(name, "zlib") == 0) { comp->type = COMP_ZLIB; } else if (strcmp(name, "none") == 0) { comp->type = COMP_NONE; } else { fatal("unsupported comp %s", name); } comp->name = name; } static void choose_kex(Kex *k, char *client, char *server) { const struct kexalg *kexalg; k->name = match_list(client, server, NULL); if (k->name == NULL) fatal("Unable to negotiate a key exchange method"); if ((kexalg = kex_alg_by_name(k->name)) == NULL) fatal("unsupported kex alg %s", k->name); k->kex_type = kexalg->type; k->hash_alg = kexalg->hash_alg; k->ec_nid = kexalg->ec_nid; } static void choose_hostkeyalg(Kex *k, char *client, char *server) { char *hostkeyalg = match_list(client, server, NULL); if (hostkeyalg == NULL) fatal("no hostkey alg"); k->hostkey_type = key_type_from_name(hostkeyalg); if (k->hostkey_type == KEY_UNSPEC) fatal("bad hostkey alg '%s'", hostkeyalg); free(hostkeyalg); } static int proposals_match(char *my[PROPOSAL_MAX], char *peer[PROPOSAL_MAX]) { static int check[] = { PROPOSAL_KEX_ALGS, PROPOSAL_SERVER_HOST_KEY_ALGS, -1 }; int *idx; char *p; for (idx = &check[0]; *idx != -1; idx++) { if ((p = strchr(my[*idx], ',')) != NULL) *p = '\0'; if ((p = strchr(peer[*idx], ',')) != NULL) *p = '\0'; if (strcmp(my[*idx], peer[*idx]) != 0) { debug2("proposal mismatch: my %s peer %s", my[*idx], peer[*idx]); return (0); } } debug2("proposals match"); return (1); } static void kex_choose_conf(Kex *kex) { Newkeys *newkeys; char **my, **peer; char **cprop, **sprop; int nenc, nmac, ncomp; u_int mode, ctos, need, dh_need, authlen; int first_kex_follows, type; -#ifdef NONE_CIPHER_ENABLED - int auth_flag; -#endif my = kex_buf2prop(&kex->my, NULL); peer = kex_buf2prop(&kex->peer, &first_kex_follows); if (kex->server) { cprop=peer; sprop=my; } else { cprop=my; sprop=peer; } /* Check whether server offers roaming */ if (!kex->server) { char *roaming; roaming = match_list(KEX_RESUME, peer[PROPOSAL_KEX_ALGS], NULL); if (roaming) { kex->roaming = 1; free(roaming); } } /* Algorithm Negotiation */ -#ifdef NONE_CIPHER_ENABLED - auth_flag = packet_get_authentication_state(); - debug ("AUTH STATE is %d", auth_flag); -#endif for (mode = 0; mode < MODE_MAX; mode++) { newkeys = xcalloc(1, sizeof(*newkeys)); kex->newkeys[mode] = newkeys; ctos = (!kex->server && mode == MODE_OUT) || (kex->server && mode == MODE_IN); nenc = ctos ? PROPOSAL_ENC_ALGS_CTOS : PROPOSAL_ENC_ALGS_STOC; nmac = ctos ? PROPOSAL_MAC_ALGS_CTOS : PROPOSAL_MAC_ALGS_STOC; ncomp = ctos ? PROPOSAL_COMP_ALGS_CTOS : PROPOSAL_COMP_ALGS_STOC; choose_enc(&newkeys->enc, cprop[nenc], sprop[nenc]); /* ignore mac for authenticated encryption */ authlen = cipher_authlen(newkeys->enc.cipher); if (authlen == 0) choose_mac(&newkeys->mac, cprop[nmac], sprop[nmac]); choose_comp(&newkeys->comp, cprop[ncomp], sprop[ncomp]); -#ifdef NONE_CIPHER_ENABLED - debug("REQUESTED ENC.NAME is '%s'", newkeys->enc.name); - if (strcmp(newkeys->enc.name, "none") == 0) { - debug("Requesting NONE. Authflag is %d", auth_flag); - if (auth_flag == 1) - debug("None requested post authentication."); - else - fatal("Pre-authentication none cipher requests " - "are not allowed."); - } -#endif debug("kex: %s %s %s %s", ctos ? "client->server" : "server->client", newkeys->enc.name, authlen == 0 ? newkeys->mac.name : "", newkeys->comp.name); } 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 = dh_need = 0; for (mode = 0; mode < MODE_MAX; mode++) { newkeys = kex->newkeys[mode]; 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) && !(datafellows & SSH_BUG_FIRSTKEX)) { type = packet_read(); debug2("skipping next packet (type %u)", type); } kex_prop_free(my); kex_prop_free(peer); } static u_char * derive_key(Kex *kex, int id, u_int need, u_char *hash, u_int hashlen, const u_char *shared_secret, u_int slen) { Buffer b; struct ssh_digest_ctx *hashctx; char c = id; u_int have; size_t mdsz; u_char *digest; 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_append(&b, shared_secret, slen); /* K1 = HASH(K || H || "A" || session_id) */ 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: * Kn = HASH(K || H || K1 || K2 || ... || Kn-1) * Key = K1 || K2 || ... || Kn */ for (have = mdsz; need > have; have += mdsz) { 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 fprintf(stderr, "key '%c'== ", c); dump_digest("key", digest, need); #endif return digest; } Newkeys *current_keys[MODE_MAX]; #define NKEYS 6 void 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, slen); } debug2("kex_derive_keys"); for (mode = 0; mode < MODE_MAX; mode++) { current_keys[mode] = kex->newkeys[mode]; kex->newkeys[mode] = NULL; ctos = (!kex->server && mode == MODE_OUT) || (kex->server && mode == MODE_IN); current_keys[mode]->enc.iv = keys[ctos ? 0 : 1]; current_keys[mode]->enc.key = keys[ctos ? 2 : 3]; current_keys[mode]->mac.key = keys[ctos ? 4 : 5]; } } 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) { Newkeys *ret; ret = current_keys[mode]; current_keys[mode] = NULL; return ret; } void derive_ssh1_session_id(BIGNUM *host_modulus, BIGNUM *server_modulus, u_int8_t cookie[8], u_int8_t id[16]) { u_int8_t nbuf[2048], obuf[SSH_DIGEST_MAX_LENGTH]; int len; struct ssh_digest_ctx *hashctx; 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); 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); 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)); explicit_bzero(nbuf, sizeof(nbuf)); explicit_bzero(obuf, sizeof(obuf)); } #if defined(DEBUG_KEX) || defined(DEBUG_KEXDH) || defined(DEBUG_KEXECDH) void dump_digest(char *msg, u_char *digest, int len) { int i; fprintf(stderr, "%s\n", msg); for (i = 0; i < len; i++) { fprintf(stderr, "%02x", digest[i]); if (i%32 == 31) fprintf(stderr, "\n"); else if (i%8 == 7) fprintf(stderr, " "); } fprintf(stderr, "\n"); } #endif Index: head/crypto/openssh/kex.h =================================================================== --- head/crypto/openssh/kex.h (revision 291197) +++ head/crypto/openssh/kex.h (revision 291198) @@ -1,209 +1,204 @@ /* $OpenBSD: kex.h,v 1.62 2014/01/27 18:58:14 markus Exp $ */ -/* $FreeBSD$ */ /* * Copyright (c) 2000, 2001 Markus Friedl. 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. */ #ifndef KEX_H #define KEX_H #include #include #include #ifdef OPENSSL_HAS_ECC #include #endif #define KEX_COOKIE_LEN 16 #define KEX_DH1 "diffie-hellman-group1-sha1" #define KEX_DH14 "diffie-hellman-group14-sha1" #define KEX_DHGEX_SHA1 "diffie-hellman-group-exchange-sha1" #define KEX_DHGEX_SHA256 "diffie-hellman-group-exchange-sha256" #define KEX_RESUME "resume@appgate.com" #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 #define COMP_DELAYED 2 enum kex_init_proposals { PROPOSAL_KEX_ALGS, PROPOSAL_SERVER_HOST_KEY_ALGS, PROPOSAL_ENC_ALGS_CTOS, PROPOSAL_ENC_ALGS_STOC, PROPOSAL_MAC_ALGS_CTOS, PROPOSAL_MAC_ALGS_STOC, PROPOSAL_COMP_ALGS_CTOS, PROPOSAL_COMP_ALGS_STOC, PROPOSAL_LANG_CTOS, PROPOSAL_LANG_STOC, PROPOSAL_MAX }; enum kex_modes { MODE_IN, MODE_OUT, MODE_MAX }; enum kex_exchange { KEX_DH_GRP1_SHA1, KEX_DH_GRP14_SHA1, KEX_DH_GEX_SHA1, KEX_DH_GEX_SHA256, KEX_ECDH_SHA2, KEX_C25519_SHA256, KEX_MAX }; #define KEX_INIT_SENT 0x0001 typedef struct Kex Kex; typedef struct Mac Mac; typedef struct Comp Comp; typedef struct Enc Enc; typedef struct Newkeys Newkeys; struct Enc { char *name; const Cipher *cipher; int enabled; u_int key_len; u_int iv_len; u_int block_size; u_char *key; u_char *iv; }; struct Mac { char *name; int enabled; u_int mac_len; u_char *key; u_int key_len; int type; int etm; /* Encrypt-then-MAC */ struct ssh_hmac_ctx *hmac_ctx; struct umac_ctx *umac_ctx; }; struct Comp { int type; int enabled; char *name; }; struct Newkeys { Enc enc; Mac mac; Comp comp; }; struct Kex { u_char *session_id; u_int session_id_len; Newkeys *newkeys[MODE_MAX]; u_int we_need; u_int dh_need; int server; char *name; int hostkey_type; int kex_type; int roaming; Buffer my; Buffer peer; sig_atomic_t done; int flags; int hash_alg; int ec_nid; char *client_version_string; char *server_version_string; int (*verify_host_key)(Key *); Key *(*load_host_public_key)(int); Key *(*load_host_private_key)(int); int (*host_key_index)(Key *); void (*sign)(Key *, Key *, u_char **, u_int *, u_char *, u_int); void (*kex[KEX_MAX])(Kex *); }; int kex_names_valid(const char *); char *kex_alg_list(char); - -#ifdef NONE_CIPHER_ENABLED -void kex_prop2buf(Buffer *, char *[PROPOSAL_MAX]); -#endif Kex *kex_setup(char *[PROPOSAL_MAX]); 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, const u_char *, u_int); void kex_derive_keys_bn(Kex *, u_char *, u_int, const BIGNUM *); Newkeys *kex_get_newkeys(int); void kexdh_client(Kex *); void kexdh_server(Kex *); 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(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(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]); #if defined(DEBUG_KEX) || defined(DEBUG_KEXDH) || defined(DEBUG_KEXECDH) void dump_digest(char *, u_char *, int); #endif #endif Index: head/crypto/openssh/myproposal.h =================================================================== --- head/crypto/openssh/myproposal.h (revision 291197) +++ head/crypto/openssh/myproposal.h (revision 291198) @@ -1,153 +1,148 @@ /* $OpenBSD: myproposal.h,v 1.35 2013/12/06 13:39:49 markus Exp $ */ -/* $FreeBSD$ */ /* * Copyright (c) 2000 Markus Friedl. 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 /* conditional algorithm support */ #ifdef OPENSSL_HAS_ECC #ifdef OPENSSL_HAS_NISTP521 # define KEX_ECDH_METHODS \ "ecdh-sha2-nistp256," \ "ecdh-sha2-nistp384," \ "ecdh-sha2-nistp521," # define HOSTKEY_ECDSA_CERT_METHODS \ "ecdsa-sha2-nistp256-cert-v01@openssh.com," \ "ecdsa-sha2-nistp384-cert-v01@openssh.com," \ "ecdsa-sha2-nistp521-cert-v01@openssh.com," # define HOSTKEY_ECDSA_METHODS \ "ecdsa-sha2-nistp256," \ "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 #endif #ifdef OPENSSL_HAVE_EVPGCM # define AESGCM_CIPHER_MODES \ "aes128-gcm@openssh.com,aes256-gcm@openssh.com," #else # define AESGCM_CIPHER_MODES #endif #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," \ "diffie-hellman-group14-sha1," \ "diffie-hellman-group1-sha1" #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" /* the actual algorithms */ #define KEX_DEFAULT_ENCRYPT \ "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 -#define KEX_ENCRYPT_INCLUDE_NONE KEX_DEFAULT_ENCRYPT \ - ",none" -#endif #define KEX_DEFAULT_MAC \ "hmac-md5-etm@openssh.com," \ "hmac-sha1-etm@openssh.com," \ "umac-64-etm@openssh.com," \ "umac-128-etm@openssh.com," \ "hmac-sha2-256-etm@openssh.com," \ "hmac-sha2-512-etm@openssh.com," \ "hmac-ripemd160-etm@openssh.com," \ "hmac-sha1-96-etm@openssh.com," \ "hmac-md5-96-etm@openssh.com," \ "hmac-md5," \ "hmac-sha1," \ "umac-64@openssh.com," \ "umac-128@openssh.com," \ SHA2_HMAC_MODES \ "hmac-ripemd160," \ "hmac-ripemd160@openssh.com," \ "hmac-sha1-96," \ "hmac-md5-96" #define KEX_DEFAULT_COMP "none,zlib@openssh.com,zlib" #define KEX_DEFAULT_LANG "" static char *myproposal[PROPOSAL_MAX] = { KEX_DEFAULT_KEX, KEX_DEFAULT_PK_ALG, KEX_DEFAULT_ENCRYPT, KEX_DEFAULT_ENCRYPT, KEX_DEFAULT_MAC, KEX_DEFAULT_MAC, KEX_DEFAULT_COMP, KEX_DEFAULT_COMP, KEX_DEFAULT_LANG, KEX_DEFAULT_LANG }; Index: head/crypto/openssh/openbsd-compat/bsd-misc.h =================================================================== --- head/crypto/openssh/openbsd-compat/bsd-misc.h (revision 291197) +++ head/crypto/openssh/openbsd-compat/bsd-misc.h (revision 291198) @@ -1,126 +1,125 @@ /* $Id: bsd-misc.h,v 1.25 2013/08/04 11:48:41 dtucker Exp $ */ /* * Copyright (c) 1999-2004 Damien Miller * * 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 _BSD_MISC_H #define _BSD_MISC_H #include "includes.h" -__RCSID("$FreeBSD$"); char *ssh_get_progname(char *); #ifndef HAVE_SETSID #define setsid() setpgrp(0, getpid()) #endif /* !HAVE_SETSID */ #ifndef HAVE_SETENV int setenv(const char *, const char *, int); #endif /* !HAVE_SETENV */ #ifndef HAVE_SETLOGIN int setlogin(const char *); #endif /* !HAVE_SETLOGIN */ #ifndef HAVE_INNETGR int innetgr(const char *, const char *, const char *, const char *); #endif /* HAVE_INNETGR */ #if !defined(HAVE_SETEUID) && defined(HAVE_SETREUID) int seteuid(uid_t); #endif /* !defined(HAVE_SETEUID) && defined(HAVE_SETREUID) */ #if !defined(HAVE_SETEGID) && defined(HAVE_SETRESGID) int setegid(uid_t); #endif /* !defined(HAVE_SETEGID) && defined(HAVE_SETRESGID) */ #if !defined(HAVE_STRERROR) && defined(HAVE_SYS_ERRLIST) && defined(HAVE_SYS_NERR) const char *strerror(int); #endif #if !defined(HAVE_SETLINEBUF) #define setlinebuf(a) (setvbuf((a), NULL, _IOLBF, 0)) #endif #ifndef HAVE_UTIMES #ifndef HAVE_STRUCT_TIMEVAL struct timeval { long tv_sec; long tv_usec; } #endif /* HAVE_STRUCT_TIMEVAL */ int utimes(char *, struct timeval *); #endif /* HAVE_UTIMES */ #ifndef HAVE_TRUNCATE int truncate (const char *, off_t); #endif /* HAVE_TRUNCATE */ #if !defined(HAVE_NANOSLEEP) && !defined(HAVE_NSLEEP) #ifndef HAVE_STRUCT_TIMESPEC struct timespec { time_t tv_sec; long tv_nsec; }; #endif int nanosleep(const struct timespec *, struct timespec *); #endif #ifndef HAVE_USLEEP int usleep(unsigned int useconds); #endif #ifndef HAVE_TCGETPGRP pid_t tcgetpgrp(int); #endif #ifndef HAVE_TCSENDBREAK int tcsendbreak(int, int); #endif #ifndef HAVE_UNSETENV int unsetenv(const char *); #endif /* wrapper for signal interface */ typedef void (*mysig_t)(int); mysig_t mysignal(int sig, mysig_t act); #define signal(a,b) mysignal(a,b) #ifndef HAVE_ISBLANK int isblank(int); #endif #ifndef HAVE_GETPGID pid_t getpgid(pid_t); #endif #ifndef HAVE_ENDGRENT # define endgrent() do { } while (0) #endif #ifndef HAVE_KRB5_GET_ERROR_MESSAGE # define krb5_get_error_message krb5_get_err_text #endif #ifndef HAVE_KRB5_FREE_ERROR_MESSAGE # define krb5_free_error_message(a,b) do { } while(0) #endif #endif /* _BSD_MISC_H */ Index: head/crypto/openssh/packet.c =================================================================== --- head/crypto/openssh/packet.c (revision 291197) +++ head/crypto/openssh/packet.c (revision 291198) @@ -1,2084 +1,2058 @@ /* $OpenBSD: packet.c,v 1.192 2014/02/02 03:44:31 djm Exp $ */ /* * Author: Tatu Ylonen * Copyright (c) 1995 Tatu Ylonen , Espoo, Finland * All rights reserved * This file contains code implementing the packet protocol and communication * with the other side. This same code is used both on client and server side. * * As far as I am concerned, the code I have written for this software * can be used freely for any purpose. Any derived versions of this * software must be clearly marked as such, and if the derived work is * incompatible with the protocol description in the RFC file, it must be * called by a name other than "ssh" or "Secure Shell". * * * SSH2 packet format added by Markus Friedl. * Copyright (c) 2000, 2001 Markus Friedl. 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" __RCSID("$FreeBSD$"); #include #include "openbsd-compat/sys-queue.h" #include #include #ifdef HAVE_SYS_TIME_H # include #endif #include #include #include #include #include #include #include #include #include #include #include #include "xmalloc.h" #include "buffer.h" #include "packet.h" #include "crc32.h" #include "compress.h" #include "deattack.h" #include "channels.h" #include "compat.h" #include "ssh1.h" #include "ssh2.h" #include "cipher.h" #include "key.h" #include "kex.h" #include "mac.h" #include "log.h" #include "canohost.h" #include "misc.h" #include "ssh.h" #include "roaming.h" #ifdef PACKET_DEBUG #define DBG(x) x #else #define DBG(x) #endif #define PACKET_MAX_SIZE (256 * 1024) struct packet_state { u_int32_t seqnr; u_int32_t packets; u_int64_t blocks; u_int64_t bytes; }; struct packet { TAILQ_ENTRY(packet) next; u_char type; Buffer payload; }; struct session_state { /* * This variable contains the file descriptors used for * communicating with the other side. connection_in is used for * reading; connection_out for writing. These can be the same * descriptor, in which case it is assumed to be a socket. */ int connection_in; int connection_out; /* Protocol flags for the remote side. */ u_int remote_protocol_flags; /* Encryption context for receiving data. Only used for decryption. */ CipherContext receive_context; /* Encryption context for sending data. Only used for encryption. */ CipherContext send_context; /* Buffer for raw input data from the socket. */ Buffer input; /* Buffer for raw output data going to the socket. */ Buffer output; /* Buffer for the partial outgoing packet being constructed. */ Buffer outgoing_packet; /* Buffer for the incoming packet currently being processed. */ Buffer incoming_packet; /* Scratch buffer for packet compression/decompression. */ Buffer compression_buffer; int compression_buffer_ready; /* * Flag indicating whether packet compression/decompression is * enabled. */ int packet_compression; /* default maximum packet size */ u_int max_packet_size; /* Flag indicating whether this module has been initialized. */ int initialized; /* Set to true if the connection is interactive. */ int interactive_mode; /* Set to true if we are the server side. */ int server_side; /* Set to true if we are authenticated. */ int after_authentication; int keep_alive_timeouts; /* The maximum time that we will wait to send or receive a packet */ int packet_timeout_ms; /* Session key information for Encryption and MAC */ Newkeys *newkeys[MODE_MAX]; struct packet_state p_read, p_send; /* Volume-based rekeying */ u_int64_t max_blocks_in, max_blocks_out; u_int32_t rekey_limit; /* Time-based rekeying */ time_t rekey_interval; /* how often in seconds */ time_t rekey_time; /* time of last rekeying */ /* Session key for protocol v1 */ u_char ssh1_key[SSH_SESSION_KEY_LENGTH]; u_int ssh1_keylen; /* roundup current message to extra_pad bytes */ u_char extra_pad; /* XXX discard incoming data after MAC error */ u_int packet_discard; Mac *packet_discard_mac; /* Used in packet_read_poll2() */ u_int packlen; /* Used in packet_send2 */ int rekeying; /* Used in packet_set_interactive */ int set_interactive_called; /* Used in packet_set_maxsize */ int set_maxsize_called; TAILQ_HEAD(, packet) outgoing; }; static struct session_state *active_state, *backup_state; -#ifdef NONE_CIPHER_ENABLED -static int rekey_requested = 0; -#endif static struct session_state * alloc_session_state(void) { struct session_state *s = xcalloc(1, sizeof(*s)); s->connection_in = -1; s->connection_out = -1; s->max_packet_size = 32768; s->packet_timeout_ms = -1; return s; } /* * Sets the descriptors used for communication. Disables encryption until * packet_set_encryption_key is called. */ void packet_set_connection(int fd_in, int fd_out) { const Cipher *none = cipher_by_name("none"); if (none == NULL) fatal("packet_set_connection: cannot load cipher 'none'"); if (active_state == NULL) active_state = alloc_session_state(); active_state->connection_in = fd_in; active_state->connection_out = fd_out; cipher_init(&active_state->send_context, none, (const u_char *)"", 0, NULL, 0, CIPHER_ENCRYPT); cipher_init(&active_state->receive_context, none, (const u_char *)"", 0, NULL, 0, CIPHER_DECRYPT); active_state->newkeys[MODE_IN] = active_state->newkeys[MODE_OUT] = NULL; if (!active_state->initialized) { active_state->initialized = 1; buffer_init(&active_state->input); buffer_init(&active_state->output); buffer_init(&active_state->outgoing_packet); buffer_init(&active_state->incoming_packet); TAILQ_INIT(&active_state->outgoing); active_state->p_send.packets = active_state->p_read.packets = 0; } } void packet_set_timeout(int timeout, int count) { if (timeout <= 0 || count <= 0) { active_state->packet_timeout_ms = -1; return; } if ((INT_MAX / 1000) / count < timeout) active_state->packet_timeout_ms = INT_MAX; else active_state->packet_timeout_ms = timeout * count * 1000; } static void packet_stop_discard(void) { if (active_state->packet_discard_mac) { char buf[1024]; memset(buf, 'a', sizeof(buf)); while (buffer_len(&active_state->incoming_packet) < PACKET_MAX_SIZE) buffer_append(&active_state->incoming_packet, buf, sizeof(buf)); (void) mac_compute(active_state->packet_discard_mac, active_state->p_read.seqnr, buffer_ptr(&active_state->incoming_packet), PACKET_MAX_SIZE); } logit("Finished discarding for %.200s", get_remote_ipaddr()); cleanup_exit(255); } static void packet_start_discard(Enc *enc, Mac *mac, u_int packet_length, u_int discard) { if (enc == NULL || !cipher_is_cbc(enc->cipher) || (mac && mac->etm)) packet_disconnect("Packet corrupt"); if (packet_length != PACKET_MAX_SIZE && mac && mac->enabled) active_state->packet_discard_mac = mac; if (buffer_len(&active_state->input) >= discard) packet_stop_discard(); active_state->packet_discard = discard - buffer_len(&active_state->input); } /* Returns 1 if remote host is connected via socket, 0 if not. */ int packet_connection_is_on_socket(void) { struct sockaddr_storage from, to; socklen_t fromlen, tolen; /* filedescriptors in and out are the same, so it's a socket */ if (active_state->connection_in == active_state->connection_out) return 1; fromlen = sizeof(from); memset(&from, 0, sizeof(from)); if (getpeername(active_state->connection_in, (struct sockaddr *)&from, &fromlen) < 0) return 0; tolen = sizeof(to); memset(&to, 0, sizeof(to)); if (getpeername(active_state->connection_out, (struct sockaddr *)&to, &tolen) < 0) return 0; if (fromlen != tolen || memcmp(&from, &to, fromlen) != 0) return 0; if (from.ss_family != AF_INET && from.ss_family != AF_INET6) return 0; return 1; } /* * Exports an IV from the CipherContext required to export the key * state back from the unprivileged child to the privileged parent * process. */ void packet_get_keyiv(int mode, u_char *iv, u_int len) { CipherContext *cc; if (mode == MODE_OUT) cc = &active_state->send_context; else cc = &active_state->receive_context; cipher_get_keyiv(cc, iv, len); } int packet_get_keycontext(int mode, u_char *dat) { CipherContext *cc; if (mode == MODE_OUT) cc = &active_state->send_context; else cc = &active_state->receive_context; return (cipher_get_keycontext(cc, dat)); } void packet_set_keycontext(int mode, u_char *dat) { CipherContext *cc; if (mode == MODE_OUT) cc = &active_state->send_context; else cc = &active_state->receive_context; cipher_set_keycontext(cc, dat); } int packet_get_keyiv_len(int mode) { CipherContext *cc; if (mode == MODE_OUT) cc = &active_state->send_context; else cc = &active_state->receive_context; return (cipher_get_keyiv_len(cc)); } void packet_set_iv(int mode, u_char *dat) { CipherContext *cc; if (mode == MODE_OUT) cc = &active_state->send_context; else cc = &active_state->receive_context; cipher_set_keyiv(cc, dat); } int packet_get_ssh1_cipher(void) { return (cipher_get_number(active_state->receive_context.cipher)); } void packet_get_state(int mode, u_int32_t *seqnr, u_int64_t *blocks, u_int32_t *packets, u_int64_t *bytes) { struct packet_state *state; state = (mode == MODE_IN) ? &active_state->p_read : &active_state->p_send; if (seqnr) *seqnr = state->seqnr; if (blocks) *blocks = state->blocks; if (packets) *packets = state->packets; if (bytes) *bytes = state->bytes; } void packet_set_state(int mode, u_int32_t seqnr, u_int64_t blocks, u_int32_t packets, u_int64_t bytes) { struct packet_state *state; state = (mode == MODE_IN) ? &active_state->p_read : &active_state->p_send; state->seqnr = seqnr; state->blocks = blocks; state->packets = packets; state->bytes = bytes; } static int packet_connection_af(void) { struct sockaddr_storage to; socklen_t tolen = sizeof(to); memset(&to, 0, sizeof(to)); if (getsockname(active_state->connection_out, (struct sockaddr *)&to, &tolen) < 0) return 0; #ifdef IPV4_IN_IPV6 if (to.ss_family == AF_INET6 && IN6_IS_ADDR_V4MAPPED(&((struct sockaddr_in6 *)&to)->sin6_addr)) return AF_INET; #endif return to.ss_family; } /* Sets the connection into non-blocking mode. */ void packet_set_nonblocking(void) { /* Set the socket into non-blocking mode. */ set_nonblock(active_state->connection_in); if (active_state->connection_out != active_state->connection_in) set_nonblock(active_state->connection_out); } /* Returns the socket used for reading. */ int packet_get_connection_in(void) { return active_state->connection_in; } /* Returns the descriptor used for writing. */ int packet_get_connection_out(void) { return active_state->connection_out; } /* Closes the connection and clears and frees internal data structures. */ void packet_close(void) { if (!active_state->initialized) return; active_state->initialized = 0; if (active_state->connection_in == active_state->connection_out) { shutdown(active_state->connection_out, SHUT_RDWR); close(active_state->connection_out); } else { close(active_state->connection_in); close(active_state->connection_out); } buffer_free(&active_state->input); buffer_free(&active_state->output); buffer_free(&active_state->outgoing_packet); buffer_free(&active_state->incoming_packet); if (active_state->compression_buffer_ready) { buffer_free(&active_state->compression_buffer); buffer_compress_uninit(); } cipher_cleanup(&active_state->send_context); cipher_cleanup(&active_state->receive_context); } /* Sets remote side protocol flags. */ void packet_set_protocol_flags(u_int protocol_flags) { active_state->remote_protocol_flags = protocol_flags; } /* Returns the remote protocol flags set earlier by the above function. */ u_int packet_get_protocol_flags(void) { return active_state->remote_protocol_flags; } /* * Starts packet compression from the next packet on in both directions. * Level is compression level 1 (fastest) - 9 (slow, best) as in gzip. */ static void packet_init_compression(void) { if (active_state->compression_buffer_ready == 1) return; active_state->compression_buffer_ready = 1; buffer_init(&active_state->compression_buffer); } void packet_start_compression(int level) { if (active_state->packet_compression && !compat20) fatal("Compression already enabled."); active_state->packet_compression = 1; packet_init_compression(); buffer_compress_init_send(level); buffer_compress_init_recv(); } /* * Causes any further packets to be encrypted using the given key. The same * key is used for both sending and reception. However, both directions are * encrypted independently of each other. */ void packet_set_encryption_key(const u_char *key, u_int keylen, int number) { const Cipher *cipher = cipher_by_number(number); if (cipher == NULL) fatal("packet_set_encryption_key: unknown cipher number %d", number); if (keylen < 20) fatal("packet_set_encryption_key: keylen too small: %d", keylen); if (keylen > SSH_SESSION_KEY_LENGTH) fatal("packet_set_encryption_key: keylen too big: %d", keylen); memcpy(active_state->ssh1_key, key, keylen); active_state->ssh1_keylen = keylen; cipher_init(&active_state->send_context, cipher, key, keylen, NULL, 0, CIPHER_ENCRYPT); cipher_init(&active_state->receive_context, cipher, key, keylen, NULL, 0, CIPHER_DECRYPT); } u_int packet_get_encryption_key(u_char *key) { if (key == NULL) return (active_state->ssh1_keylen); memcpy(key, active_state->ssh1_key, active_state->ssh1_keylen); return (active_state->ssh1_keylen); } /* Start constructing a packet to send. */ void packet_start(u_char type) { u_char buf[9]; int len; DBG(debug("packet_start[%d]", type)); len = compat20 ? 6 : 9; memset(buf, 0, len - 1); buf[len - 1] = type; buffer_clear(&active_state->outgoing_packet); buffer_append(&active_state->outgoing_packet, buf, len); } /* Append payload. */ void packet_put_char(int value) { char ch = value; buffer_append(&active_state->outgoing_packet, &ch, 1); } void packet_put_int(u_int value) { buffer_put_int(&active_state->outgoing_packet, value); } void packet_put_int64(u_int64_t value) { buffer_put_int64(&active_state->outgoing_packet, value); } void packet_put_string(const void *buf, u_int len) { buffer_put_string(&active_state->outgoing_packet, buf, len); } void packet_put_cstring(const char *str) { buffer_put_cstring(&active_state->outgoing_packet, str); } void packet_put_raw(const void *buf, u_int len) { buffer_append(&active_state->outgoing_packet, buf, len); } void packet_put_bignum(BIGNUM * value) { buffer_put_bignum(&active_state->outgoing_packet, value); } void packet_put_bignum2(BIGNUM * value) { buffer_put_bignum2(&active_state->outgoing_packet, value); } #ifdef OPENSSL_HAS_ECC void packet_put_ecpoint(const EC_GROUP *curve, const EC_POINT *point) { buffer_put_ecpoint(&active_state->outgoing_packet, curve, point); } #endif /* * Finalizes and sends the packet. If the encryption key has been set, * encrypts the packet before sending. */ static void packet_send1(void) { u_char buf[8], *cp; int i, padding, len; u_int checksum; u_int32_t rnd = 0; /* * If using packet compression, compress the payload of the outgoing * packet. */ if (active_state->packet_compression) { buffer_clear(&active_state->compression_buffer); /* Skip padding. */ buffer_consume(&active_state->outgoing_packet, 8); /* padding */ buffer_append(&active_state->compression_buffer, "\0\0\0\0\0\0\0\0", 8); buffer_compress(&active_state->outgoing_packet, &active_state->compression_buffer); buffer_clear(&active_state->outgoing_packet); buffer_append(&active_state->outgoing_packet, buffer_ptr(&active_state->compression_buffer), buffer_len(&active_state->compression_buffer)); } /* Compute packet length without padding (add checksum, remove padding). */ len = buffer_len(&active_state->outgoing_packet) + 4 - 8; /* Insert padding. Initialized to zero in packet_start1() */ padding = 8 - len % 8; if (!active_state->send_context.plaintext) { cp = buffer_ptr(&active_state->outgoing_packet); for (i = 0; i < padding; i++) { if (i % 4 == 0) rnd = arc4random(); cp[7 - i] = rnd & 0xff; rnd >>= 8; } } buffer_consume(&active_state->outgoing_packet, 8 - padding); /* Add check bytes. */ checksum = ssh_crc32(buffer_ptr(&active_state->outgoing_packet), buffer_len(&active_state->outgoing_packet)); put_u32(buf, checksum); buffer_append(&active_state->outgoing_packet, buf, 4); #ifdef PACKET_DEBUG fprintf(stderr, "packet_send plain: "); buffer_dump(&active_state->outgoing_packet); #endif /* Append to output. */ put_u32(buf, len); buffer_append(&active_state->output, buf, 4); cp = buffer_append_space(&active_state->output, buffer_len(&active_state->outgoing_packet)); if (cipher_crypt(&active_state->send_context, 0, cp, buffer_ptr(&active_state->outgoing_packet), buffer_len(&active_state->outgoing_packet), 0, 0) != 0) fatal("%s: cipher_crypt failed", __func__); #ifdef PACKET_DEBUG fprintf(stderr, "encrypted: "); buffer_dump(&active_state->output); #endif active_state->p_send.packets++; active_state->p_send.bytes += len + buffer_len(&active_state->outgoing_packet); buffer_clear(&active_state->outgoing_packet); /* * Note that the packet is now only buffered in output. It won't be * actually sent until packet_write_wait or packet_write_poll is * called. */ } void set_newkeys(int mode) { Enc *enc; Mac *mac; Comp *comp; CipherContext *cc; u_int64_t *max_blocks; int crypt_type; debug2("set_newkeys: mode %d", mode); if (mode == MODE_OUT) { cc = &active_state->send_context; crypt_type = CIPHER_ENCRYPT; active_state->p_send.packets = active_state->p_send.blocks = 0; max_blocks = &active_state->max_blocks_out; } else { cc = &active_state->receive_context; crypt_type = CIPHER_DECRYPT; active_state->p_read.packets = active_state->p_read.blocks = 0; max_blocks = &active_state->max_blocks_in; } if (active_state->newkeys[mode] != NULL) { debug("set_newkeys: rekeying"); cipher_cleanup(cc); enc = &active_state->newkeys[mode]->enc; mac = &active_state->newkeys[mode]->mac; comp = &active_state->newkeys[mode]->comp; mac_clear(mac); explicit_bzero(enc->iv, enc->iv_len); explicit_bzero(enc->key, enc->key_len); explicit_bzero(mac->key, mac->key_len); free(enc->name); free(enc->iv); free(enc->key); free(mac->name); free(mac->key); free(comp->name); free(active_state->newkeys[mode]); } active_state->newkeys[mode] = kex_get_newkeys(mode); if (active_state->newkeys[mode] == NULL) fatal("newkeys: no keys for mode %d", mode); enc = &active_state->newkeys[mode]->enc; mac = &active_state->newkeys[mode]->mac; comp = &active_state->newkeys[mode]->comp; if (cipher_authlen(enc->cipher) == 0 && mac_init(mac) == 0) mac->enabled = 1; DBG(debug("cipher_init_context: %d", mode)); cipher_init(cc, enc->cipher, enc->key, enc->key_len, enc->iv, enc->iv_len, crypt_type); /* Deleting the keys does not gain extra security */ /* explicit_bzero(enc->iv, enc->block_size); explicit_bzero(enc->key, enc->key_len); explicit_bzero(mac->key, mac->key_len); */ if ((comp->type == COMP_ZLIB || (comp->type == COMP_DELAYED && active_state->after_authentication)) && comp->enabled == 0) { packet_init_compression(); if (mode == MODE_OUT) buffer_compress_init_send(6); else buffer_compress_init_recv(); comp->enabled = 1; } /* * The 2^(blocksize*2) limit is too expensive for 3DES, * blowfish, etc, so enforce a 1GB limit for small blocksizes. */ if (enc->block_size >= 16) *max_blocks = (u_int64_t)1 << (enc->block_size*2); else *max_blocks = ((u_int64_t)1 << 30) / enc->block_size; if (active_state->rekey_limit) *max_blocks = MIN(*max_blocks, active_state->rekey_limit / enc->block_size); } /* * Delayed compression for SSH2 is enabled after authentication: * This happens on the server side after a SSH2_MSG_USERAUTH_SUCCESS is sent, * and on the client side after a SSH2_MSG_USERAUTH_SUCCESS is received. */ static void packet_enable_delayed_compress(void) { Comp *comp = NULL; int mode; /* * Remember that we are past the authentication step, so rekeying * with COMP_DELAYED will turn on compression immediately. */ active_state->after_authentication = 1; for (mode = 0; mode < MODE_MAX; mode++) { /* protocol error: USERAUTH_SUCCESS received before NEWKEYS */ if (active_state->newkeys[mode] == NULL) continue; comp = &active_state->newkeys[mode]->comp; if (comp && !comp->enabled && comp->type == COMP_DELAYED) { packet_init_compression(); if (mode == MODE_OUT) buffer_compress_init_send(6); else buffer_compress_init_recv(); comp->enabled = 1; } } } /* * Finalize packet in SSH2 format (compress, mac, encrypt, enqueue) */ static void packet_send2_wrapped(void) { u_char type, *cp, *macbuf = NULL; u_char padlen, pad = 0; u_int i, len, authlen = 0, aadlen = 0; u_int32_t rnd = 0; Enc *enc = NULL; Mac *mac = NULL; Comp *comp = NULL; int block_size; if (active_state->newkeys[MODE_OUT] != NULL) { enc = &active_state->newkeys[MODE_OUT]->enc; mac = &active_state->newkeys[MODE_OUT]->mac; comp = &active_state->newkeys[MODE_OUT]->comp; /* disable mac for authenticated encryption */ if ((authlen = cipher_authlen(enc->cipher)) != 0) mac = NULL; } block_size = enc ? enc->block_size : 8; aadlen = (mac && mac->enabled && mac->etm) || authlen ? 4 : 0; cp = buffer_ptr(&active_state->outgoing_packet); type = cp[5]; #ifdef PACKET_DEBUG fprintf(stderr, "plain: "); buffer_dump(&active_state->outgoing_packet); #endif if (comp && comp->enabled) { len = buffer_len(&active_state->outgoing_packet); /* skip header, compress only payload */ buffer_consume(&active_state->outgoing_packet, 5); buffer_clear(&active_state->compression_buffer); buffer_compress(&active_state->outgoing_packet, &active_state->compression_buffer); buffer_clear(&active_state->outgoing_packet); buffer_append(&active_state->outgoing_packet, "\0\0\0\0\0", 5); buffer_append(&active_state->outgoing_packet, buffer_ptr(&active_state->compression_buffer), buffer_len(&active_state->compression_buffer)); DBG(debug("compression: raw %d compressed %d", len, buffer_len(&active_state->outgoing_packet))); } /* sizeof (packet_len + pad_len + payload) */ len = buffer_len(&active_state->outgoing_packet); /* * calc size of padding, alloc space, get random data, * minimum padding is 4 bytes */ len -= aadlen; /* packet length is not encrypted for EtM modes */ padlen = block_size - (len % block_size); if (padlen < 4) padlen += block_size; if (active_state->extra_pad) { /* will wrap if extra_pad+padlen > 255 */ active_state->extra_pad = roundup(active_state->extra_pad, block_size); pad = active_state->extra_pad - ((len + padlen) % active_state->extra_pad); debug3("packet_send2: adding %d (len %d padlen %d extra_pad %d)", pad, len, padlen, active_state->extra_pad); padlen += pad; active_state->extra_pad = 0; } cp = buffer_append_space(&active_state->outgoing_packet, padlen); if (enc && !active_state->send_context.plaintext) { /* random padding */ for (i = 0; i < padlen; i++) { if (i % 4 == 0) rnd = arc4random(); cp[i] = rnd & 0xff; rnd >>= 8; } } else { /* clear padding */ explicit_bzero(cp, padlen); } /* sizeof (packet_len + pad_len + payload + padding) */ len = buffer_len(&active_state->outgoing_packet); cp = buffer_ptr(&active_state->outgoing_packet); /* packet_length includes payload, padding and padding length field */ put_u32(cp, len - 4); cp[4] = padlen; DBG(debug("send: len %d (includes padlen %d, aadlen %d)", len, padlen, aadlen)); /* compute MAC over seqnr and packet(length fields, payload, padding) */ if (mac && mac->enabled && !mac->etm) { macbuf = mac_compute(mac, active_state->p_send.seqnr, buffer_ptr(&active_state->outgoing_packet), len); DBG(debug("done calc MAC out #%d", active_state->p_send.seqnr)); } /* encrypt packet and append to output buffer. */ cp = buffer_append_space(&active_state->output, len + authlen); if (cipher_crypt(&active_state->send_context, active_state->p_send.seqnr, cp, buffer_ptr(&active_state->outgoing_packet), len - aadlen, aadlen, authlen) != 0) fatal("%s: cipher_crypt failed", __func__); /* append unencrypted MAC */ if (mac && mac->enabled) { if (mac->etm) { /* EtM: compute mac over aadlen + cipher text */ macbuf = mac_compute(mac, active_state->p_send.seqnr, cp, len); DBG(debug("done calc MAC(EtM) out #%d", active_state->p_send.seqnr)); } buffer_append(&active_state->output, macbuf, mac->mac_len); } #ifdef PACKET_DEBUG fprintf(stderr, "encrypted: "); buffer_dump(&active_state->output); #endif /* increment sequence number for outgoing packets */ if (++active_state->p_send.seqnr == 0) logit("outgoing seqnr wraps around"); if (++active_state->p_send.packets == 0) if (!(datafellows & SSH_BUG_NOREKEY)) fatal("XXX too many packets with same key"); active_state->p_send.blocks += len / block_size; active_state->p_send.bytes += len; buffer_clear(&active_state->outgoing_packet); if (type == SSH2_MSG_NEWKEYS) set_newkeys(MODE_OUT); else if (type == SSH2_MSG_USERAUTH_SUCCESS && active_state->server_side) packet_enable_delayed_compress(); } static void packet_send2(void) { struct packet *p; u_char type, *cp; cp = buffer_ptr(&active_state->outgoing_packet); type = cp[5]; /* during rekeying we can only send key exchange messages */ if (active_state->rekeying) { if ((type < SSH2_MSG_TRANSPORT_MIN) || (type > SSH2_MSG_TRANSPORT_MAX) || (type == SSH2_MSG_SERVICE_REQUEST) || (type == SSH2_MSG_SERVICE_ACCEPT)) { debug("enqueue packet: %u", type); p = xcalloc(1, sizeof(*p)); p->type = type; memcpy(&p->payload, &active_state->outgoing_packet, sizeof(Buffer)); buffer_init(&active_state->outgoing_packet); TAILQ_INSERT_TAIL(&active_state->outgoing, p, next); return; } } /* rekeying starts with sending KEXINIT */ if (type == SSH2_MSG_KEXINIT) active_state->rekeying = 1; packet_send2_wrapped(); /* after a NEWKEYS message we can send the complete queue */ if (type == SSH2_MSG_NEWKEYS) { active_state->rekeying = 0; active_state->rekey_time = monotime(); while ((p = TAILQ_FIRST(&active_state->outgoing))) { type = p->type; debug("dequeue packet: %u", type); buffer_free(&active_state->outgoing_packet); memcpy(&active_state->outgoing_packet, &p->payload, sizeof(Buffer)); TAILQ_REMOVE(&active_state->outgoing, p, next); free(p); packet_send2_wrapped(); } } } void packet_send(void) { if (compat20) packet_send2(); else packet_send1(); DBG(debug("packet_send done")); } /* * Waits until a packet has been received, and returns its type. Note that * no other data is processed until this returns, so this function should not * be used during the interactive session. */ int packet_read_seqnr(u_int32_t *seqnr_p) { int type, len, ret, cont, ms_remain = 0; fd_set *setp; char buf[8192]; struct timeval timeout, start, *timeoutp = NULL; DBG(debug("packet_read()")); setp = (fd_set *)xcalloc(howmany(active_state->connection_in + 1, NFDBITS), sizeof(fd_mask)); /* Since we are blocking, ensure that all written packets have been sent. */ packet_write_wait(); /* Stay in the loop until we have received a complete packet. */ for (;;) { /* Try to read a packet from the buffer. */ type = packet_read_poll_seqnr(seqnr_p); if (!compat20 && ( type == SSH_SMSG_SUCCESS || type == SSH_SMSG_FAILURE || type == SSH_CMSG_EOF || type == SSH_CMSG_EXIT_CONFIRMATION)) packet_check_eom(); /* If we got a packet, return it. */ if (type != SSH_MSG_NONE) { free(setp); return type; } /* * Otherwise, wait for some data to arrive, add it to the * buffer, and try again. */ memset(setp, 0, howmany(active_state->connection_in + 1, NFDBITS) * sizeof(fd_mask)); FD_SET(active_state->connection_in, setp); if (active_state->packet_timeout_ms > 0) { ms_remain = active_state->packet_timeout_ms; timeoutp = &timeout; } /* Wait for some data to arrive. */ for (;;) { if (active_state->packet_timeout_ms != -1) { ms_to_timeval(&timeout, ms_remain); gettimeofday(&start, NULL); } if ((ret = select(active_state->connection_in + 1, setp, NULL, NULL, timeoutp)) >= 0) break; if (errno != EAGAIN && errno != EINTR && errno != EWOULDBLOCK) break; if (active_state->packet_timeout_ms == -1) continue; ms_subtract_diff(&start, &ms_remain); if (ms_remain <= 0) { ret = 0; break; } } if (ret == 0) { logit("Connection to %.200s timed out while " "waiting to read", get_remote_ipaddr()); cleanup_exit(255); } /* Read data from the socket. */ do { cont = 0; len = roaming_read(active_state->connection_in, buf, sizeof(buf), &cont); } while (len == 0 && cont); if (len == 0) { logit("Connection closed by %.200s", get_remote_ipaddr()); cleanup_exit(255); } if (len < 0) fatal("Read from socket failed: %.100s", strerror(errno)); /* Append it to the buffer. */ packet_process_incoming(buf, len); } /* NOTREACHED */ } int packet_read(void) { return packet_read_seqnr(NULL); } /* * Waits until a packet has been received, verifies that its type matches * that given, and gives a fatal error and exits if there is a mismatch. */ void packet_read_expect(int expected_type) { int type; type = packet_read(); if (type != expected_type) packet_disconnect("Protocol error: expected packet type %d, got %d", expected_type, type); } /* Checks if a full packet is available in the data received so far via * packet_process_incoming. If so, reads the packet; otherwise returns * SSH_MSG_NONE. This does not wait for data from the connection. * * SSH_MSG_DISCONNECT is handled specially here. Also, * SSH_MSG_IGNORE messages are skipped by this function and are never returned * to higher levels. */ static int packet_read_poll1(void) { u_int len, padded_len; u_char *cp, type; u_int checksum, stored_checksum; /* Check if input size is less than minimum packet size. */ if (buffer_len(&active_state->input) < 4 + 8) return SSH_MSG_NONE; /* Get length of incoming packet. */ cp = buffer_ptr(&active_state->input); len = get_u32(cp); if (len < 1 + 2 + 2 || len > 256 * 1024) packet_disconnect("Bad packet length %u.", len); padded_len = (len + 8) & ~7; /* Check if the packet has been entirely received. */ if (buffer_len(&active_state->input) < 4 + padded_len) return SSH_MSG_NONE; /* The entire packet is in buffer. */ /* Consume packet length. */ buffer_consume(&active_state->input, 4); /* * Cryptographic attack detector for ssh * (C)1998 CORE-SDI, Buenos Aires Argentina * Ariel Futoransky(futo@core-sdi.com) */ if (!active_state->receive_context.plaintext) { switch (detect_attack(buffer_ptr(&active_state->input), padded_len)) { case DEATTACK_DETECTED: packet_disconnect("crc32 compensation attack: " "network attack detected"); case DEATTACK_DOS_DETECTED: packet_disconnect("deattack denial of " "service detected"); } } /* Decrypt data to incoming_packet. */ buffer_clear(&active_state->incoming_packet); cp = buffer_append_space(&active_state->incoming_packet, padded_len); if (cipher_crypt(&active_state->receive_context, 0, cp, buffer_ptr(&active_state->input), padded_len, 0, 0) != 0) fatal("%s: cipher_crypt failed", __func__); buffer_consume(&active_state->input, padded_len); #ifdef PACKET_DEBUG fprintf(stderr, "read_poll plain: "); buffer_dump(&active_state->incoming_packet); #endif /* Compute packet checksum. */ checksum = ssh_crc32(buffer_ptr(&active_state->incoming_packet), buffer_len(&active_state->incoming_packet) - 4); /* Skip padding. */ buffer_consume(&active_state->incoming_packet, 8 - len % 8); /* Test check bytes. */ if (len != buffer_len(&active_state->incoming_packet)) packet_disconnect("packet_read_poll1: len %d != buffer_len %d.", len, buffer_len(&active_state->incoming_packet)); cp = (u_char *)buffer_ptr(&active_state->incoming_packet) + len - 4; stored_checksum = get_u32(cp); if (checksum != stored_checksum) packet_disconnect("Corrupted check bytes on input."); buffer_consume_end(&active_state->incoming_packet, 4); if (active_state->packet_compression) { buffer_clear(&active_state->compression_buffer); buffer_uncompress(&active_state->incoming_packet, &active_state->compression_buffer); buffer_clear(&active_state->incoming_packet); buffer_append(&active_state->incoming_packet, buffer_ptr(&active_state->compression_buffer), buffer_len(&active_state->compression_buffer)); } active_state->p_read.packets++; active_state->p_read.bytes += padded_len + 4; type = buffer_get_char(&active_state->incoming_packet); if (type < SSH_MSG_MIN || type > SSH_MSG_MAX) packet_disconnect("Invalid ssh1 packet type: %d", type); return type; } static int packet_read_poll2(u_int32_t *seqnr_p) { u_int padlen, need; u_char *macbuf = NULL, *cp, type; u_int maclen, authlen = 0, aadlen = 0, block_size; Enc *enc = NULL; Mac *mac = NULL; Comp *comp = NULL; if (active_state->packet_discard) return SSH_MSG_NONE; if (active_state->newkeys[MODE_IN] != NULL) { enc = &active_state->newkeys[MODE_IN]->enc; mac = &active_state->newkeys[MODE_IN]->mac; comp = &active_state->newkeys[MODE_IN]->comp; /* disable mac for authenticated encryption */ if ((authlen = cipher_authlen(enc->cipher)) != 0) mac = NULL; } maclen = mac && mac->enabled ? mac->mac_len : 0; block_size = enc ? enc->block_size : 8; aadlen = (mac && mac->enabled && mac->etm) || authlen ? 4 : 0; if (aadlen && active_state->packlen == 0) { if (cipher_get_length(&active_state->receive_context, &active_state->packlen, active_state->p_read.seqnr, buffer_ptr(&active_state->input), buffer_len(&active_state->input)) != 0) return SSH_MSG_NONE; if (active_state->packlen < 1 + 4 || active_state->packlen > PACKET_MAX_SIZE) { #ifdef PACKET_DEBUG buffer_dump(&active_state->input); #endif logit("Bad packet length %u.", active_state->packlen); packet_disconnect("Packet corrupt"); } buffer_clear(&active_state->incoming_packet); } else if (active_state->packlen == 0) { /* * check if input size is less than the cipher block size, * decrypt first block and extract length of incoming packet */ if (buffer_len(&active_state->input) < block_size) return SSH_MSG_NONE; buffer_clear(&active_state->incoming_packet); cp = buffer_append_space(&active_state->incoming_packet, block_size); if (cipher_crypt(&active_state->receive_context, active_state->p_read.seqnr, cp, buffer_ptr(&active_state->input), block_size, 0, 0) != 0) fatal("Decryption integrity check failed"); cp = buffer_ptr(&active_state->incoming_packet); - active_state->packlen = get_u32(cp); if (active_state->packlen < 1 + 4 || active_state->packlen > PACKET_MAX_SIZE) { #ifdef PACKET_DEBUG buffer_dump(&active_state->incoming_packet); #endif logit("Bad packet length %u.", active_state->packlen); packet_start_discard(enc, mac, active_state->packlen, PACKET_MAX_SIZE); return SSH_MSG_NONE; } buffer_consume(&active_state->input, block_size); } DBG(debug("input: packet len %u", active_state->packlen+4)); if (aadlen) { /* only the payload is encrypted */ need = active_state->packlen; } else { /* * the payload size and the payload are encrypted, but we * have a partial packet of block_size bytes */ need = 4 + active_state->packlen - block_size; } DBG(debug("partial packet: block %d, need %d, maclen %d, authlen %d," " aadlen %d", block_size, need, maclen, authlen, aadlen)); if (need % block_size != 0) { logit("padding error: need %d block %d mod %d", need, block_size, need % block_size); packet_start_discard(enc, mac, active_state->packlen, PACKET_MAX_SIZE - block_size); return SSH_MSG_NONE; } /* * check if the entire packet has been received and * decrypt into incoming_packet: * 'aadlen' bytes are unencrypted, but authenticated. * 'need' bytes are encrypted, followed by either * 'authlen' bytes of authentication tag or * 'maclen' bytes of message authentication code. */ if (buffer_len(&active_state->input) < aadlen + need + authlen + maclen) return SSH_MSG_NONE; #ifdef PACKET_DEBUG fprintf(stderr, "read_poll enc/full: "); buffer_dump(&active_state->input); #endif /* EtM: compute mac over encrypted input */ if (mac && mac->enabled && mac->etm) macbuf = mac_compute(mac, active_state->p_read.seqnr, buffer_ptr(&active_state->input), aadlen + need); cp = buffer_append_space(&active_state->incoming_packet, aadlen + need); if (cipher_crypt(&active_state->receive_context, active_state->p_read.seqnr, cp, buffer_ptr(&active_state->input), need, aadlen, authlen) != 0) fatal("Decryption integrity check failed"); buffer_consume(&active_state->input, aadlen + need + authlen); /* * compute MAC over seqnr and packet, * increment sequence number for incoming packet */ if (mac && mac->enabled) { if (!mac->etm) macbuf = mac_compute(mac, active_state->p_read.seqnr, buffer_ptr(&active_state->incoming_packet), buffer_len(&active_state->incoming_packet)); if (timingsafe_bcmp(macbuf, buffer_ptr(&active_state->input), mac->mac_len) != 0) { logit("Corrupted MAC on input."); if (need > PACKET_MAX_SIZE) fatal("internal error need %d", need); packet_start_discard(enc, mac, active_state->packlen, PACKET_MAX_SIZE - need); return SSH_MSG_NONE; } DBG(debug("MAC #%d ok", active_state->p_read.seqnr)); buffer_consume(&active_state->input, mac->mac_len); } /* XXX now it's safe to use fatal/packet_disconnect */ if (seqnr_p != NULL) *seqnr_p = active_state->p_read.seqnr; if (++active_state->p_read.seqnr == 0) logit("incoming seqnr wraps around"); if (++active_state->p_read.packets == 0) if (!(datafellows & SSH_BUG_NOREKEY)) fatal("XXX too many packets with same key"); active_state->p_read.blocks += (active_state->packlen + 4) / block_size; active_state->p_read.bytes += active_state->packlen + 4; /* get padlen */ cp = buffer_ptr(&active_state->incoming_packet); padlen = cp[4]; DBG(debug("input: padlen %d", padlen)); if (padlen < 4) packet_disconnect("Corrupted padlen %d on input.", padlen); /* skip packet size + padlen, discard padding */ buffer_consume(&active_state->incoming_packet, 4 + 1); buffer_consume_end(&active_state->incoming_packet, padlen); DBG(debug("input: len before de-compress %d", buffer_len(&active_state->incoming_packet))); if (comp && comp->enabled) { buffer_clear(&active_state->compression_buffer); buffer_uncompress(&active_state->incoming_packet, &active_state->compression_buffer); buffer_clear(&active_state->incoming_packet); buffer_append(&active_state->incoming_packet, buffer_ptr(&active_state->compression_buffer), buffer_len(&active_state->compression_buffer)); DBG(debug("input: len after de-compress %d", buffer_len(&active_state->incoming_packet))); } /* * get packet type, implies consume. * return length of payload (without type field) */ type = buffer_get_char(&active_state->incoming_packet); if (type < SSH2_MSG_MIN || type >= SSH2_MSG_LOCAL_MIN) packet_disconnect("Invalid ssh2 packet type: %d", type); if (type == SSH2_MSG_NEWKEYS) set_newkeys(MODE_IN); else if (type == SSH2_MSG_USERAUTH_SUCCESS && !active_state->server_side) packet_enable_delayed_compress(); #ifdef PACKET_DEBUG fprintf(stderr, "read/plain[%d]:\r\n", type); buffer_dump(&active_state->incoming_packet); #endif /* reset for next packet */ active_state->packlen = 0; return type; } int packet_read_poll_seqnr(u_int32_t *seqnr_p) { u_int reason, seqnr; u_char type; char *msg; for (;;) { if (compat20) { type = packet_read_poll2(seqnr_p); if (type) { active_state->keep_alive_timeouts = 0; DBG(debug("received packet type %d", type)); } switch (type) { case SSH2_MSG_IGNORE: debug3("Received SSH2_MSG_IGNORE"); break; case SSH2_MSG_DEBUG: packet_get_char(); msg = packet_get_string(NULL); debug("Remote: %.900s", msg); free(msg); msg = packet_get_string(NULL); free(msg); break; case SSH2_MSG_DISCONNECT: reason = packet_get_int(); msg = packet_get_string(NULL); /* Ignore normal client exit notifications */ do_log2(active_state->server_side && reason == SSH2_DISCONNECT_BY_APPLICATION ? SYSLOG_LEVEL_INFO : SYSLOG_LEVEL_ERROR, "Received disconnect from %s: %u: %.400s", get_remote_ipaddr(), reason, msg); free(msg); cleanup_exit(255); break; case SSH2_MSG_UNIMPLEMENTED: seqnr = packet_get_int(); debug("Received SSH2_MSG_UNIMPLEMENTED for %u", seqnr); break; default: return type; } } else { type = packet_read_poll1(); switch (type) { case SSH_MSG_NONE: return SSH_MSG_NONE; case SSH_MSG_IGNORE: break; case SSH_MSG_DEBUG: msg = packet_get_string(NULL); debug("Remote: %.900s", msg); free(msg); break; case SSH_MSG_DISCONNECT: msg = packet_get_string(NULL); logit("Received disconnect from %s: %.400s", get_remote_ipaddr(), msg); cleanup_exit(255); break; default: DBG(debug("received packet type %d", type)); return type; } } } } /* * Buffers the given amount of input characters. This is intended to be used * together with packet_read_poll. */ void packet_process_incoming(const char *buf, u_int len) { if (active_state->packet_discard) { active_state->keep_alive_timeouts = 0; /* ?? */ if (len >= active_state->packet_discard) packet_stop_discard(); active_state->packet_discard -= len; return; } buffer_append(&active_state->input, buf, len); } /* Returns a character from the packet. */ u_int packet_get_char(void) { char ch; buffer_get(&active_state->incoming_packet, &ch, 1); return (u_char) ch; } /* Returns an integer from the packet data. */ u_int packet_get_int(void) { return buffer_get_int(&active_state->incoming_packet); } /* Returns an 64 bit integer from the packet data. */ u_int64_t packet_get_int64(void) { return buffer_get_int64(&active_state->incoming_packet); } /* * Returns an arbitrary precision integer from the packet data. The integer * must have been initialized before this call. */ void packet_get_bignum(BIGNUM * value) { buffer_get_bignum(&active_state->incoming_packet, value); } void packet_get_bignum2(BIGNUM * value) { buffer_get_bignum2(&active_state->incoming_packet, value); } #ifdef OPENSSL_HAS_ECC void packet_get_ecpoint(const EC_GROUP *curve, EC_POINT *point) { buffer_get_ecpoint(&active_state->incoming_packet, curve, point); } #endif void * packet_get_raw(u_int *length_ptr) { u_int bytes = buffer_len(&active_state->incoming_packet); if (length_ptr != NULL) *length_ptr = bytes; return buffer_ptr(&active_state->incoming_packet); } int packet_remaining(void) { return buffer_len(&active_state->incoming_packet); } /* * Returns a string from the packet data. The string is allocated using * xmalloc; it is the responsibility of the calling program to free it when * no longer needed. The length_ptr argument may be NULL, or point to an * integer into which the length of the string is stored. */ void * packet_get_string(u_int *length_ptr) { return buffer_get_string(&active_state->incoming_packet, length_ptr); } void * packet_get_string_ptr(u_int *length_ptr) { return buffer_get_string_ptr(&active_state->incoming_packet, length_ptr); } /* Ensures the returned string has no embedded \0 characters in it. */ char * packet_get_cstring(u_int *length_ptr) { return buffer_get_cstring(&active_state->incoming_packet, length_ptr); } /* * Sends a diagnostic message from the server to the client. This message * can be sent at any time (but not while constructing another message). The * message is printed immediately, but only if the client is being executed * in verbose mode. These messages are primarily intended to ease debugging * authentication problems. The length of the formatted message must not * exceed 1024 bytes. This will automatically call packet_write_wait. */ void packet_send_debug(const char *fmt,...) { char buf[1024]; va_list args; if (compat20 && (datafellows & SSH_BUG_DEBUG)) return; va_start(args, fmt); vsnprintf(buf, sizeof(buf), fmt, args); va_end(args); if (compat20) { packet_start(SSH2_MSG_DEBUG); packet_put_char(0); /* bool: always display */ packet_put_cstring(buf); packet_put_cstring(""); } else { packet_start(SSH_MSG_DEBUG); packet_put_cstring(buf); } packet_send(); packet_write_wait(); } /* * Logs the error plus constructs and sends a disconnect packet, closes the * connection, and exits. This function never returns. The error message * should not contain a newline. The length of the formatted message must * not exceed 1024 bytes. */ void packet_disconnect(const char *fmt,...) { char buf[1024]; va_list args; static int disconnecting = 0; if (disconnecting) /* Guard against recursive invocations. */ fatal("packet_disconnect called recursively."); disconnecting = 1; /* * Format the message. Note that the caller must make sure the * message is of limited size. */ va_start(args, fmt); vsnprintf(buf, sizeof(buf), fmt, args); va_end(args); /* Display the error locally */ logit("Disconnecting: %.100s", buf); /* Send the disconnect message to the other side, and wait for it to get sent. */ if (compat20) { packet_start(SSH2_MSG_DISCONNECT); packet_put_int(SSH2_DISCONNECT_PROTOCOL_ERROR); packet_put_cstring(buf); packet_put_cstring(""); } else { packet_start(SSH_MSG_DISCONNECT); packet_put_cstring(buf); } packet_send(); packet_write_wait(); /* Stop listening for connections. */ channel_close_all(); /* Close the connection. */ packet_close(); cleanup_exit(255); } /* Checks if there is any buffered output, and tries to write some of the output. */ void packet_write_poll(void) { int len = buffer_len(&active_state->output); int cont; if (len > 0) { cont = 0; len = roaming_write(active_state->connection_out, buffer_ptr(&active_state->output), len, &cont); if (len == -1) { if (errno == EINTR || errno == EAGAIN || errno == EWOULDBLOCK) return; fatal("Write failed: %.100s", strerror(errno)); } if (len == 0 && !cont) fatal("Write connection closed"); buffer_consume(&active_state->output, len); } } /* * Calls packet_write_poll repeatedly until all pending output data has been * written. */ void packet_write_wait(void) { fd_set *setp; int ret, ms_remain = 0; struct timeval start, timeout, *timeoutp = NULL; setp = (fd_set *)xcalloc(howmany(active_state->connection_out + 1, NFDBITS), sizeof(fd_mask)); packet_write_poll(); while (packet_have_data_to_write()) { memset(setp, 0, howmany(active_state->connection_out + 1, NFDBITS) * sizeof(fd_mask)); FD_SET(active_state->connection_out, setp); if (active_state->packet_timeout_ms > 0) { ms_remain = active_state->packet_timeout_ms; timeoutp = &timeout; } for (;;) { if (active_state->packet_timeout_ms != -1) { ms_to_timeval(&timeout, ms_remain); gettimeofday(&start, NULL); } if ((ret = select(active_state->connection_out + 1, NULL, setp, NULL, timeoutp)) >= 0) break; if (errno != EAGAIN && errno != EINTR && errno != EWOULDBLOCK) break; if (active_state->packet_timeout_ms == -1) continue; ms_subtract_diff(&start, &ms_remain); if (ms_remain <= 0) { ret = 0; break; } } if (ret == 0) { logit("Connection to %.200s timed out while " "waiting to write", get_remote_ipaddr()); cleanup_exit(255); } packet_write_poll(); } free(setp); } /* Returns true if there is buffered data to write to the connection. */ int packet_have_data_to_write(void) { return buffer_len(&active_state->output) != 0; } /* Returns true if there is not too much data to write to the connection. */ int packet_not_very_much_data_to_write(void) { if (active_state->interactive_mode) return buffer_len(&active_state->output) < 16384; else return buffer_len(&active_state->output) < 128 * 1024; } static void packet_set_tos(int tos) { #ifndef IP_TOS_IS_BROKEN if (!packet_connection_is_on_socket()) return; switch (packet_connection_af()) { # ifdef IP_TOS case AF_INET: debug3("%s: set IP_TOS 0x%02x", __func__, tos); if (setsockopt(active_state->connection_in, IPPROTO_IP, IP_TOS, &tos, sizeof(tos)) < 0) error("setsockopt IP_TOS %d: %.100s:", tos, strerror(errno)); break; # endif /* IP_TOS */ # ifdef IPV6_TCLASS case AF_INET6: debug3("%s: set IPV6_TCLASS 0x%02x", __func__, tos); if (setsockopt(active_state->connection_in, IPPROTO_IPV6, IPV6_TCLASS, &tos, sizeof(tos)) < 0) error("setsockopt IPV6_TCLASS %d: %.100s:", tos, strerror(errno)); break; # endif /* IPV6_TCLASS */ } #endif /* IP_TOS_IS_BROKEN */ } /* Informs that the current session is interactive. Sets IP flags for that. */ void packet_set_interactive(int interactive, int qos_interactive, int qos_bulk) { if (active_state->set_interactive_called) return; active_state->set_interactive_called = 1; /* Record that we are in interactive mode. */ active_state->interactive_mode = interactive; /* Only set socket options if using a socket. */ if (!packet_connection_is_on_socket()) return; set_nodelay(active_state->connection_in); packet_set_tos(interactive ? qos_interactive : qos_bulk); } /* Returns true if the current connection is interactive. */ int packet_is_interactive(void) { return active_state->interactive_mode; } int packet_set_maxsize(u_int s) { if (active_state->set_maxsize_called) { logit("packet_set_maxsize: called twice: old %d new %d", active_state->max_packet_size, s); return -1; } if (s < 4 * 1024 || s > 1024 * 1024) { logit("packet_set_maxsize: bad size %d", s); return -1; } active_state->set_maxsize_called = 1; debug("packet_set_maxsize: setting to %d", s); active_state->max_packet_size = s; return s; } int packet_inc_alive_timeouts(void) { return ++active_state->keep_alive_timeouts; } void packet_set_alive_timeouts(int ka) { active_state->keep_alive_timeouts = ka; } u_int packet_get_maxsize(void) { return active_state->max_packet_size; } /* roundup current message to pad bytes */ void packet_add_padding(u_char pad) { active_state->extra_pad = pad; } /* * 9.2. Ignored Data Message * * byte SSH_MSG_IGNORE * string data * * All implementations MUST understand (and ignore) this message at any * time (after receiving the protocol version). No implementation is * required to send them. This message can be used as an additional * protection measure against advanced traffic analysis techniques. */ void packet_send_ignore(int nbytes) { u_int32_t rnd = 0; int i; packet_start(compat20 ? SSH2_MSG_IGNORE : SSH_MSG_IGNORE); packet_put_int(nbytes); for (i = 0; i < nbytes; i++) { if (i % 4 == 0) rnd = arc4random(); packet_put_char((u_char)rnd & 0xff); rnd >>= 8; } } -#ifdef NONE_CIPHER_ENABLED -void -packet_request_rekeying(void) -{ - rekey_requested = 1; -} -#endif - #define MAX_PACKETS (1U<<31) int packet_need_rekeying(void) { if (datafellows & SSH_BUG_NOREKEY) return 0; -#ifdef NONE_CIPHER_ENABLED - if (rekey_requested == 1) { - rekey_requested = 0; - return 1; - } -#endif return (active_state->p_send.packets > MAX_PACKETS) || (active_state->p_read.packets > MAX_PACKETS) || (active_state->max_blocks_out && (active_state->p_send.blocks > active_state->max_blocks_out)) || (active_state->max_blocks_in && (active_state->p_read.blocks > active_state->max_blocks_in)) || (active_state->rekey_interval != 0 && active_state->rekey_time + active_state->rekey_interval <= monotime()); } void packet_set_rekey_limits(u_int32_t bytes, time_t seconds) { debug3("rekey after %lld bytes, %d seconds", (long long)bytes, (int)seconds); active_state->rekey_limit = bytes; active_state->rekey_interval = seconds; /* * We set the time here so that in post-auth privsep slave we count * from the completion of the authentication. */ active_state->rekey_time = monotime(); } time_t packet_get_rekey_timeout(void) { time_t seconds; seconds = active_state->rekey_time + active_state->rekey_interval - monotime(); return (seconds <= 0 ? 1 : seconds); } void packet_set_server(void) { active_state->server_side = 1; } void packet_set_authenticated(void) { active_state->after_authentication = 1; } void * packet_get_input(void) { return (void *)&active_state->input; } void * packet_get_output(void) { return (void *)&active_state->output; } void * packet_get_newkeys(int mode) { return (void *)active_state->newkeys[mode]; } /* * Save the state for the real connection, and use a separate state when * resuming a suspended connection. */ void packet_backup_state(void) { struct session_state *tmp; close(active_state->connection_in); active_state->connection_in = -1; close(active_state->connection_out); active_state->connection_out = -1; if (backup_state) tmp = backup_state; else tmp = alloc_session_state(); backup_state = active_state; active_state = tmp; } /* * Swap in the old state when resuming a connecion. */ void packet_restore_state(void) { struct session_state *tmp; void *buf; u_int len; tmp = backup_state; backup_state = active_state; active_state = tmp; active_state->connection_in = backup_state->connection_in; backup_state->connection_in = -1; active_state->connection_out = backup_state->connection_out; backup_state->connection_out = -1; len = buffer_len(&backup_state->input); if (len > 0) { buf = buffer_ptr(&backup_state->input); buffer_append(&active_state->input, buf, len); buffer_clear(&backup_state->input); add_recv_bytes(len); } } - -#ifdef NONE_CIPHER_ENABLED -int -packet_get_authentication_state(void) -{ - return (active_state->after_authentication); -} -#endif Index: head/crypto/openssh/packet.h =================================================================== --- head/crypto/openssh/packet.h (revision 291197) +++ head/crypto/openssh/packet.h (revision 291198) @@ -1,134 +1,127 @@ /* $OpenBSD: packet.h,v 1.59 2013/07/12 00:19:59 djm Exp $ */ -/* $FreeBSD$ */ /* * Author: Tatu Ylonen * Copyright (c) 1995 Tatu Ylonen , Espoo, Finland * All rights reserved * Interface for the packet protocol functions. * * As far as I am concerned, the code I have written for this software * can be used freely for any purpose. Any derived versions of this * software must be clearly marked as such, and if the derived work is * incompatible with the protocol description in the RFC file, it must be * called by a name other than "ssh" or "Secure Shell". */ #ifndef PACKET_H #define PACKET_H #include #include #ifdef OPENSSL_HAS_ECC #include #endif void packet_set_connection(int, int); void packet_set_timeout(int, int); void packet_set_nonblocking(void); int packet_get_connection_in(void); int packet_get_connection_out(void); void packet_close(void); void packet_set_encryption_key(const u_char *, u_int, int); u_int packet_get_encryption_key(u_char *); void packet_set_protocol_flags(u_int); u_int packet_get_protocol_flags(void); void packet_start_compression(int); void packet_set_interactive(int, int, int); int packet_is_interactive(void); void packet_set_server(void); void packet_set_authenticated(void); -#ifdef NONE_CIPHER_ENABLED -int packet_get_authentication_state(void); -#endif void packet_start(u_char); void packet_put_char(int ch); void packet_put_int(u_int value); void packet_put_int64(u_int64_t value); void packet_put_bignum(BIGNUM * value); void packet_put_bignum2(BIGNUM * value); #ifdef OPENSSL_HAS_ECC void packet_put_ecpoint(const EC_GROUP *, const EC_POINT *); #endif void packet_put_string(const void *buf, u_int len); void packet_put_cstring(const char *str); void packet_put_raw(const void *buf, u_int len); void packet_send(void); int packet_read(void); void packet_read_expect(int type); void packet_process_incoming(const char *buf, u_int len); int packet_read_seqnr(u_int32_t *seqnr_p); int packet_read_poll_seqnr(u_int32_t *seqnr_p); u_int packet_get_char(void); u_int packet_get_int(void); u_int64_t packet_get_int64(void); void packet_get_bignum(BIGNUM * value); void packet_get_bignum2(BIGNUM * value); #ifdef OPENSSL_HAS_ECC void packet_get_ecpoint(const EC_GROUP *, EC_POINT *); #endif void *packet_get_raw(u_int *length_ptr); void *packet_get_string(u_int *length_ptr); char *packet_get_cstring(u_int *length_ptr); void *packet_get_string_ptr(u_int *length_ptr); void packet_disconnect(const char *fmt,...) __attribute__((noreturn)) __attribute__((format(printf, 1, 2))); void packet_send_debug(const char *fmt,...) __attribute__((format(printf, 1, 2))); void set_newkeys(int mode); int packet_get_keyiv_len(int); void packet_get_keyiv(int, u_char *, u_int); int packet_get_keycontext(int, u_char *); void packet_set_keycontext(int, u_char *); void packet_get_state(int, u_int32_t *, u_int64_t *, u_int32_t *, u_int64_t *); void packet_set_state(int, u_int32_t, u_int64_t, u_int32_t, u_int64_t); int packet_get_ssh1_cipher(void); void packet_set_iv(int, u_char *); void *packet_get_newkeys(int); void packet_write_poll(void); void packet_write_wait(void); int packet_have_data_to_write(void); int packet_not_very_much_data_to_write(void); int packet_connection_is_on_socket(void); int packet_remaining(void); void packet_send_ignore(int); void packet_add_padding(u_char); void tty_make_modes(int, struct termios *); void tty_parse_modes(int, int *); void packet_set_alive_timeouts(int); int packet_inc_alive_timeouts(void); int packet_set_maxsize(u_int); u_int packet_get_maxsize(void); /* don't allow remaining bytes after the end of the message */ #define packet_check_eom() \ do { \ int _len = packet_remaining(); \ if (_len > 0) { \ logit("Packet integrity error (%d bytes remaining) at %s:%d", \ _len ,__FILE__, __LINE__); \ packet_disconnect("Packet integrity error."); \ } \ } while (0) int packet_need_rekeying(void); -#ifdef NONE_CIPHER_ENABLED -void packet_request_rekeying(void); -#endif void packet_set_rekey_limits(u_int32_t, time_t); time_t packet_get_rekey_timeout(void); void packet_backup_state(void); void packet_restore_state(void); void *packet_get_input(void); void *packet_get_output(void); #endif /* PACKET_H */ Index: head/crypto/openssh/pathnames.h =================================================================== --- head/crypto/openssh/pathnames.h (revision 291197) +++ head/crypto/openssh/pathnames.h (revision 291198) @@ -1,184 +1,183 @@ /* $OpenBSD: pathnames.h,v 1.24 2013/12/06 13:39:49 markus Exp $ */ -/* $FreeBSD$ */ /* * Author: Tatu Ylonen * Copyright (c) 1995 Tatu Ylonen , Espoo, Finland * All rights reserved * * As far as I am concerned, the code I have written for this software * can be used freely for any purpose. Any derived versions of this * software must be clearly marked as such, and if the derived work is * incompatible with the protocol description in the RFC file, it must be * called by a name other than "ssh" or "Secure Shell". */ #define ETCDIR "/etc" #ifndef SSHDIR #define SSHDIR ETCDIR "/ssh" #endif #ifndef _PATH_SSH_PIDDIR #define _PATH_SSH_PIDDIR "/var/run" #endif /* * System-wide file containing host keys of known hosts. This file should be * world-readable. */ #define _PATH_SSH_SYSTEM_HOSTFILE SSHDIR "/ssh_known_hosts" /* backward compat for protocol 2 */ #define _PATH_SSH_SYSTEM_HOSTFILE2 SSHDIR "/ssh_known_hosts2" /* * Of these, ssh_host_key must be readable only by root, whereas ssh_config * should be world-readable. */ #define _PATH_SERVER_CONFIG_FILE SSHDIR "/sshd_config" #define _PATH_HOST_CONFIG_FILE SSHDIR "/ssh_config" #define _PATH_HOST_KEY_FILE SSHDIR "/ssh_host_key" #define _PATH_HOST_DSA_KEY_FILE SSHDIR "/ssh_host_dsa_key" #define _PATH_HOST_ECDSA_KEY_FILE SSHDIR "/ssh_host_ecdsa_key" #define _PATH_HOST_ED25519_KEY_FILE SSHDIR "/ssh_host_ed25519_key" #define _PATH_HOST_RSA_KEY_FILE SSHDIR "/ssh_host_rsa_key" #define _PATH_DH_MODULI SSHDIR "/moduli" /* Backwards compatibility */ #define _PATH_DH_PRIMES SSHDIR "/primes" #ifndef _PATH_SSH_PROGRAM #define _PATH_SSH_PROGRAM "/usr/bin/ssh" #endif /* * The process id of the daemon listening for connections is saved here to * make it easier to kill the correct daemon when necessary. */ #define _PATH_SSH_DAEMON_PID_FILE _PATH_SSH_PIDDIR "/sshd.pid" /* * The directory in user's home directory in which the files reside. The * directory should be world-readable (though not all files are). */ #define _PATH_SSH_USER_DIR ".ssh" /* * Per-user file containing host keys of known hosts. This file need not be * readable by anyone except the user him/herself, though this does not * contain anything particularly secret. */ #define _PATH_SSH_USER_HOSTFILE "~/" _PATH_SSH_USER_DIR "/known_hosts" /* backward compat for protocol 2 */ #define _PATH_SSH_USER_HOSTFILE2 "~/" _PATH_SSH_USER_DIR "/known_hosts2" /* * Name of the default file containing client-side authentication key. This * file should only be readable by the user him/herself. */ #define _PATH_SSH_CLIENT_IDENTITY _PATH_SSH_USER_DIR "/identity" #define _PATH_SSH_CLIENT_ID_DSA _PATH_SSH_USER_DIR "/id_dsa" #define _PATH_SSH_CLIENT_ID_ECDSA _PATH_SSH_USER_DIR "/id_ecdsa" #define _PATH_SSH_CLIENT_ID_RSA _PATH_SSH_USER_DIR "/id_rsa" #define _PATH_SSH_CLIENT_ID_ED25519 _PATH_SSH_USER_DIR "/id_ed25519" /* * Configuration file in user's home directory. This file need not be * readable by anyone but the user him/herself, but does not contain anything * particularly secret. If the user's home directory resides on an NFS * volume where root is mapped to nobody, this may need to be world-readable. */ #define _PATH_SSH_USER_CONFFILE _PATH_SSH_USER_DIR "/config" /* * File containing a list of those rsa keys that permit logging in as this * user. This file need not be readable by anyone but the user him/herself, * but does not contain anything particularly secret. If the user's home * directory resides on an NFS volume where root is mapped to nobody, this * may need to be world-readable. (This file is read by the daemon which is * running as root.) */ #define _PATH_SSH_USER_PERMITTED_KEYS _PATH_SSH_USER_DIR "/authorized_keys" /* backward compat for protocol v2 */ #define _PATH_SSH_USER_PERMITTED_KEYS2 _PATH_SSH_USER_DIR "/authorized_keys2" /* * Per-user and system-wide ssh "rc" files. These files are executed with * /bin/sh before starting the shell or command if they exist. They will be * passed "proto cookie" as arguments if X11 forwarding with spoofing is in * use. xauth will be run if neither of these exists. */ #define _PATH_SSH_USER_RC _PATH_SSH_USER_DIR "/rc" #define _PATH_SSH_SYSTEM_RC SSHDIR "/sshrc" /* * Ssh-only version of /etc/hosts.equiv. Additionally, the daemon may use * ~/.rhosts and /etc/hosts.equiv if rhosts authentication is enabled. */ #define _PATH_SSH_HOSTS_EQUIV SSHDIR "/shosts.equiv" #define _PATH_RHOSTS_EQUIV "/etc/hosts.equiv" /* * Default location of askpass */ #ifndef _PATH_SSH_ASKPASS_DEFAULT -#define _PATH_SSH_ASKPASS_DEFAULT "/usr/local/bin/ssh-askpass" +#define _PATH_SSH_ASKPASS_DEFAULT "/usr/X11R6/bin/ssh-askpass" #endif /* Location of ssh-keysign for hostbased authentication */ #ifndef _PATH_SSH_KEY_SIGN #define _PATH_SSH_KEY_SIGN "/usr/libexec/ssh-keysign" #endif /* Location of ssh-pkcs11-helper to support keys in tokens */ #ifndef _PATH_SSH_PKCS11_HELPER #define _PATH_SSH_PKCS11_HELPER "/usr/libexec/ssh-pkcs11-helper" #endif /* xauth for X11 forwarding */ #ifndef _PATH_XAUTH -#define _PATH_XAUTH "/usr/local/bin/xauth" +#define _PATH_XAUTH "/usr/X11R6/bin/xauth" #endif /* UNIX domain socket for X11 server; displaynum will replace %u */ #ifndef _PATH_UNIX_X #define _PATH_UNIX_X "/tmp/.X11-unix/X%u" #endif /* for scp */ #ifndef _PATH_CP #define _PATH_CP "cp" #endif /* for sftp */ #ifndef _PATH_SFTP_SERVER #define _PATH_SFTP_SERVER "/usr/libexec/sftp-server" #endif /* chroot directory for unprivileged user when UsePrivilegeSeparation=yes */ #ifndef _PATH_PRIVSEP_CHROOT_DIR #define _PATH_PRIVSEP_CHROOT_DIR "/var/empty" #endif /* for passwd change */ #ifndef _PATH_PASSWD_PROG #define _PATH_PASSWD_PROG "/usr/bin/passwd" #endif #ifndef _PATH_LS #define _PATH_LS "ls" #endif /* path to login program */ #ifndef LOGIN_PROGRAM # ifdef LOGIN_PROGRAM_FALLBACK # define LOGIN_PROGRAM LOGIN_PROGRAM_FALLBACK # else # define LOGIN_PROGRAM "/usr/bin/login" # endif #endif /* LOGIN_PROGRAM */ /* Askpass program define */ #ifndef ASKPASS_PROGRAM #define ASKPASS_PROGRAM "/usr/lib/ssh/ssh-askpass" #endif /* ASKPASS_PROGRAM */ Index: head/crypto/openssh/readconf.c =================================================================== --- head/crypto/openssh/readconf.c (revision 291197) +++ head/crypto/openssh/readconf.c (revision 291198) @@ -1,1985 +1,1944 @@ /* $OpenBSD: readconf.c,v 1.218 2014/02/23 20:11:36 djm Exp $ */ /* * Author: Tatu Ylonen * Copyright (c) 1995 Tatu Ylonen , Espoo, Finland * All rights reserved * Functions for reading the configuration files. * * As far as I am concerned, the code I have written for this software * can be used freely for any purpose. Any derived versions of this * software must be clearly marked as such, and if the derived work is * incompatible with the protocol description in the RFC file, it must be * called by a name other than "ssh" or "Secure Shell". */ #include "includes.h" __RCSID("$FreeBSD$"); #include #include #include #include #include #include #include #include #include #include #include #include #include #ifdef HAVE_PATHS_H # include #endif #include #include #include #include #include #include #ifdef HAVE_UTIL_H #include #endif #include "xmalloc.h" #include "ssh.h" #include "compat.h" #include "cipher.h" #include "pathnames.h" #include "log.h" #include "key.h" #include "readconf.h" #include "match.h" #include "misc.h" #include "buffer.h" #include "kex.h" #include "mac.h" #include "uidswap.h" #include "version.h" /* Format of the configuration file: # Configuration data is parsed as follows: # 1. command line options # 2. user-specific file # 3. system-wide file # Any configuration value is only changed the first time it is set. # Thus, host-specific definitions should be at the beginning of the # configuration file, and defaults at the end. # Host-specific declarations. These may override anything above. A single # host may match multiple declarations; these are processed in the order # that they are given in. Host *.ngs.fi ngs.fi User foo Host fake.com HostName another.host.name.real.org User blaah Port 34289 ForwardX11 no ForwardAgent no Host books.com RemoteForward 9999 shadows.cs.hut.fi:9999 Cipher 3des Host fascist.blob.com Port 23123 User tylonen PasswordAuthentication no Host puukko.hut.fi User t35124p ProxyCommand ssh-proxy %h %p Host *.fr PublicKeyAuthentication no Host *.su Cipher none PasswordAuthentication no Host vpn.fake.com Tunnel yes TunnelDevice 3 # Defaults for various options Host * ForwardAgent no ForwardX11 no PasswordAuthentication yes RSAAuthentication yes RhostsRSAAuthentication yes StrictHostKeyChecking yes TcpKeepAlive no IdentityFile ~/.ssh/identity Port 22 EscapeChar ~ */ /* Keyword tokens. */ typedef enum { oBadOption, oHost, oMatch, oForwardAgent, oForwardX11, oForwardX11Trusted, oForwardX11Timeout, oGatewayPorts, oExitOnForwardFailure, oPasswordAuthentication, oRSAAuthentication, oChallengeResponseAuthentication, oXAuthLocation, oIdentityFile, oHostName, oPort, oCipher, oRemoteForward, oLocalForward, oUser, oEscapeChar, oRhostsRSAAuthentication, oProxyCommand, oGlobalKnownHostsFile, oUserKnownHostsFile, oConnectionAttempts, oBatchMode, oCheckHostIP, oStrictHostKeyChecking, oCompression, oCompressionLevel, oTCPKeepAlive, oNumberOfPasswordPrompts, oUsePrivilegedPort, oLogLevel, oCiphers, oProtocol, oMacs, oGlobalKnownHostsFile2, oUserKnownHostsFile2, oPubkeyAuthentication, oKbdInteractiveAuthentication, oKbdInteractiveDevices, oHostKeyAlias, oDynamicForward, oPreferredAuthentications, oHostbasedAuthentication, oHostKeyAlgorithms, oBindAddress, oPKCS11Provider, oClearAllForwardings, oNoHostAuthenticationForLocalhost, oEnableSSHKeysign, oRekeyLimit, oVerifyHostKeyDNS, oConnectTimeout, oAddressFamily, oGssAuthentication, oGssDelegateCreds, oServerAliveInterval, oServerAliveCountMax, oIdentitiesOnly, oSendEnv, oControlPath, oControlMaster, oControlPersist, oHashKnownHosts, oTunnel, oTunnelDevice, oLocalCommand, oPermitLocalCommand, oVisualHostKey, oUseRoaming, oKexAlgorithms, oIPQoS, oRequestTTY, oIgnoreUnknown, oProxyUseFdpass, oCanonicalDomains, oCanonicalizeHostname, oCanonicalizeMaxDots, oCanonicalizeFallbackLocal, oCanonicalizePermittedCNAMEs, oIgnoredUnknownOption, oHPNDisabled, oHPNBufferSize, oTcpRcvBufPoll, oTcpRcvBuf, -#ifdef NONE_CIPHER_ENABLED - oNoneEnabled, oNoneSwitch, -#endif oVersionAddendum, oDeprecated, oUnsupported } OpCodes; /* Textual representations of the tokens. */ static struct { const char *name; OpCodes opcode; } keywords[] = { { "forwardagent", oForwardAgent }, { "forwardx11", oForwardX11 }, { "forwardx11trusted", oForwardX11Trusted }, { "forwardx11timeout", oForwardX11Timeout }, { "exitonforwardfailure", oExitOnForwardFailure }, { "xauthlocation", oXAuthLocation }, { "gatewayports", oGatewayPorts }, { "useprivilegedport", oUsePrivilegedPort }, { "rhostsauthentication", oDeprecated }, { "passwordauthentication", oPasswordAuthentication }, { "kbdinteractiveauthentication", oKbdInteractiveAuthentication }, { "kbdinteractivedevices", oKbdInteractiveDevices }, { "rsaauthentication", oRSAAuthentication }, { "pubkeyauthentication", oPubkeyAuthentication }, { "dsaauthentication", oPubkeyAuthentication }, /* alias */ { "rhostsrsaauthentication", oRhostsRSAAuthentication }, { "hostbasedauthentication", oHostbasedAuthentication }, { "challengeresponseauthentication", oChallengeResponseAuthentication }, { "skeyauthentication", oChallengeResponseAuthentication }, /* alias */ { "tisauthentication", oChallengeResponseAuthentication }, /* alias */ { "kerberosauthentication", oUnsupported }, { "kerberostgtpassing", oUnsupported }, { "afstokenpassing", oUnsupported }, #if defined(GSSAPI) { "gssapiauthentication", oGssAuthentication }, { "gssapidelegatecredentials", oGssDelegateCreds }, #else { "gssapiauthentication", oUnsupported }, { "gssapidelegatecredentials", oUnsupported }, #endif { "fallbacktorsh", oDeprecated }, { "usersh", oDeprecated }, { "identityfile", oIdentityFile }, { "identityfile2", oIdentityFile }, /* obsolete */ { "identitiesonly", oIdentitiesOnly }, { "hostname", oHostName }, { "hostkeyalias", oHostKeyAlias }, { "proxycommand", oProxyCommand }, { "port", oPort }, { "cipher", oCipher }, { "ciphers", oCiphers }, { "macs", oMacs }, { "protocol", oProtocol }, { "remoteforward", oRemoteForward }, { "localforward", oLocalForward }, { "user", oUser }, { "host", oHost }, { "match", oMatch }, { "escapechar", oEscapeChar }, { "globalknownhostsfile", oGlobalKnownHostsFile }, { "globalknownhostsfile2", oDeprecated }, { "userknownhostsfile", oUserKnownHostsFile }, { "userknownhostsfile2", oDeprecated }, { "connectionattempts", oConnectionAttempts }, { "batchmode", oBatchMode }, { "checkhostip", oCheckHostIP }, { "stricthostkeychecking", oStrictHostKeyChecking }, { "compression", oCompression }, { "compressionlevel", oCompressionLevel }, { "tcpkeepalive", oTCPKeepAlive }, { "keepalive", oTCPKeepAlive }, /* obsolete */ { "numberofpasswordprompts", oNumberOfPasswordPrompts }, { "loglevel", oLogLevel }, { "dynamicforward", oDynamicForward }, { "preferredauthentications", oPreferredAuthentications }, { "hostkeyalgorithms", oHostKeyAlgorithms }, { "bindaddress", oBindAddress }, #ifdef ENABLE_PKCS11 { "smartcarddevice", oPKCS11Provider }, { "pkcs11provider", oPKCS11Provider }, #else { "smartcarddevice", oUnsupported }, { "pkcs11provider", oUnsupported }, #endif { "clearallforwardings", oClearAllForwardings }, { "enablesshkeysign", oEnableSSHKeysign }, { "verifyhostkeydns", oVerifyHostKeyDNS }, { "nohostauthenticationforlocalhost", oNoHostAuthenticationForLocalhost }, { "rekeylimit", oRekeyLimit }, { "connecttimeout", oConnectTimeout }, { "addressfamily", oAddressFamily }, { "serveraliveinterval", oServerAliveInterval }, { "serveralivecountmax", oServerAliveCountMax }, { "sendenv", oSendEnv }, { "controlpath", oControlPath }, { "controlmaster", oControlMaster }, { "controlpersist", oControlPersist }, { "hashknownhosts", oHashKnownHosts }, { "tunnel", oTunnel }, { "tunneldevice", oTunnelDevice }, { "localcommand", oLocalCommand }, { "permitlocalcommand", oPermitLocalCommand }, { "visualhostkey", oVisualHostKey }, { "useroaming", oUseRoaming }, { "kexalgorithms", oKexAlgorithms }, { "ipqos", oIPQoS }, { "requesttty", oRequestTTY }, { "proxyusefdpass", oProxyUseFdpass }, { "canonicaldomains", oCanonicalDomains }, { "canonicalizefallbacklocal", oCanonicalizeFallbackLocal }, { "canonicalizehostname", oCanonicalizeHostname }, { "canonicalizemaxdots", oCanonicalizeMaxDots }, { "canonicalizepermittedcnames", oCanonicalizePermittedCNAMEs }, { "ignoreunknown", oIgnoreUnknown }, { "hpndisabled", oHPNDisabled }, { "hpnbuffersize", oHPNBufferSize }, { "tcprcvbufpoll", oTcpRcvBufPoll }, { "tcprcvbuf", oTcpRcvBuf }, -#ifdef NONE_CIPHER_ENABLED - { "noneenabled", oNoneEnabled }, - { "noneswitch", oNoneSwitch }, -#endif { "versionaddendum", oVersionAddendum }, { NULL, oBadOption } }; /* * Adds a local TCP/IP port forward to options. Never returns if there is an * error. */ void add_local_forward(Options *options, const Forward *newfwd) { Forward *fwd; #ifndef NO_IPPORT_RESERVED_CONCEPT extern uid_t original_real_uid; int ipport_reserved; #ifdef __FreeBSD__ size_t len_ipport_reserved = sizeof(ipport_reserved); if (sysctlbyname("net.inet.ip.portrange.reservedhigh", &ipport_reserved, &len_ipport_reserved, NULL, 0) != 0) ipport_reserved = IPPORT_RESERVED; else ipport_reserved++; #else ipport_reserved = IPPORT_RESERVED; #endif if (newfwd->listen_port < ipport_reserved && original_real_uid != 0) fatal("Privileged ports can only be forwarded by root."); #endif options->local_forwards = xrealloc(options->local_forwards, options->num_local_forwards + 1, sizeof(*options->local_forwards)); fwd = &options->local_forwards[options->num_local_forwards++]; fwd->listen_host = newfwd->listen_host; fwd->listen_port = newfwd->listen_port; fwd->connect_host = newfwd->connect_host; fwd->connect_port = newfwd->connect_port; } /* * Adds a remote TCP/IP port forward to options. Never returns if there is * an error. */ void add_remote_forward(Options *options, const Forward *newfwd) { Forward *fwd; options->remote_forwards = xrealloc(options->remote_forwards, options->num_remote_forwards + 1, sizeof(*options->remote_forwards)); fwd = &options->remote_forwards[options->num_remote_forwards++]; fwd->listen_host = newfwd->listen_host; fwd->listen_port = newfwd->listen_port; fwd->connect_host = newfwd->connect_host; fwd->connect_port = newfwd->connect_port; fwd->handle = newfwd->handle; fwd->allocated_port = 0; } static void clear_forwardings(Options *options) { int i; for (i = 0; i < options->num_local_forwards; i++) { free(options->local_forwards[i].listen_host); free(options->local_forwards[i].connect_host); } if (options->num_local_forwards > 0) { free(options->local_forwards); options->local_forwards = NULL; } options->num_local_forwards = 0; for (i = 0; i < options->num_remote_forwards; i++) { free(options->remote_forwards[i].listen_host); free(options->remote_forwards[i].connect_host); } if (options->num_remote_forwards > 0) { free(options->remote_forwards); options->remote_forwards = NULL; } options->num_remote_forwards = 0; options->tun_open = SSH_TUNMODE_NO; } void add_identity_file(Options *options, const char *dir, const char *filename, int userprovided) { char *path; if (options->num_identity_files >= SSH_MAX_IDENTITY_FILES) fatal("Too many identity files specified (max %d)", SSH_MAX_IDENTITY_FILES); if (dir == NULL) /* no dir, filename is absolute */ path = xstrdup(filename); else (void)xasprintf(&path, "%.100s%.100s", dir, filename); options->identity_file_userprovided[options->num_identity_files] = userprovided; options->identity_files[options->num_identity_files++] = path; } int default_ssh_port(void) { static int port; struct servent *sp; if (port == 0) { sp = getservbyname(SSH_SERVICE_NAME, "tcp"); port = sp ? ntohs(sp->s_port) : SSH_DEFAULT_PORT; } return port; } /* * Execute a command in a shell. * Return its exit status or -1 on abnormal exit. */ static int execute_in_shell(const char *cmd) { char *shell, *command_string; pid_t pid; int devnull, status; extern uid_t original_real_uid; if ((shell = getenv("SHELL")) == NULL) shell = _PATH_BSHELL; /* * Use "exec" to avoid "sh -c" processes on some platforms * (e.g. Solaris) */ xasprintf(&command_string, "exec %s", cmd); /* Need this to redirect subprocess stdin/out */ if ((devnull = open(_PATH_DEVNULL, O_RDWR)) == -1) fatal("open(/dev/null): %s", strerror(errno)); debug("Executing command: '%.500s'", cmd); /* Fork and execute the command. */ if ((pid = fork()) == 0) { char *argv[4]; /* Child. Permanently give up superuser privileges. */ permanently_drop_suid(original_real_uid); /* Redirect child stdin and stdout. Leave stderr */ if (dup2(devnull, STDIN_FILENO) == -1) fatal("dup2: %s", strerror(errno)); if (dup2(devnull, STDOUT_FILENO) == -1) fatal("dup2: %s", strerror(errno)); if (devnull > STDERR_FILENO) close(devnull); closefrom(STDERR_FILENO + 1); argv[0] = shell; argv[1] = "-c"; argv[2] = command_string; argv[3] = NULL; execv(argv[0], argv); error("Unable to execute '%.100s': %s", cmd, strerror(errno)); /* Die with signal to make this error apparent to parent. */ signal(SIGTERM, SIG_DFL); kill(getpid(), SIGTERM); _exit(1); } /* Parent. */ if (pid < 0) fatal("%s: fork: %.100s", __func__, strerror(errno)); close(devnull); free(command_string); while (waitpid(pid, &status, 0) == -1) { if (errno != EINTR && errno != EAGAIN) fatal("%s: waitpid: %s", __func__, strerror(errno)); } if (!WIFEXITED(status)) { error("command '%.100s' exited abnormally", cmd); return -1; } debug3("command returned status %d", WEXITSTATUS(status)); return WEXITSTATUS(status); } /* * Parse and execute a Match directive. */ static int match_cfg_line(Options *options, char **condition, struct passwd *pw, const char *host_arg, const char *filename, int linenum) { char *arg, *attrib, *cmd, *cp = *condition, *host; const char *ruser; int r, port, result = 1, attributes = 0; size_t len; char thishost[NI_MAXHOST], shorthost[NI_MAXHOST], portstr[NI_MAXSERV]; /* * Configuration is likely to be incomplete at this point so we * must be prepared to use default values. */ port = options->port <= 0 ? default_ssh_port() : options->port; ruser = options->user == NULL ? pw->pw_name : options->user; if (options->hostname != NULL) { /* NB. Please keep in sync with ssh.c:main() */ host = percent_expand(options->hostname, "h", host_arg, (char *)NULL); } else host = xstrdup(host_arg); debug3("checking match for '%s' host %s", cp, host); while ((attrib = strdelim(&cp)) && *attrib != '\0') { attributes++; if (strcasecmp(attrib, "all") == 0) { if (attributes != 1 || ((arg = strdelim(&cp)) != NULL && *arg != '\0')) { error("'all' cannot be combined with other " "Match attributes"); result = -1; goto out; } *condition = cp; result = 1; goto out; } if ((arg = strdelim(&cp)) == NULL || *arg == '\0') { error("Missing Match criteria for %s", attrib); result = -1; goto out; } len = strlen(arg); if (strcasecmp(attrib, "host") == 0) { if (match_hostname(host, arg, len) != 1) result = 0; else debug("%.200s line %d: matched 'Host %.100s' ", filename, linenum, host); } else if (strcasecmp(attrib, "originalhost") == 0) { if (match_hostname(host_arg, arg, len) != 1) result = 0; else debug("%.200s line %d: matched " "'OriginalHost %.100s' ", filename, linenum, host_arg); } else if (strcasecmp(attrib, "user") == 0) { if (match_pattern_list(ruser, arg, len, 0) != 1) result = 0; else debug("%.200s line %d: matched 'User %.100s' ", filename, linenum, ruser); } else if (strcasecmp(attrib, "localuser") == 0) { if (match_pattern_list(pw->pw_name, arg, len, 0) != 1) result = 0; else debug("%.200s line %d: matched " "'LocalUser %.100s' ", filename, linenum, pw->pw_name); } else if (strcasecmp(attrib, "exec") == 0) { if (gethostname(thishost, sizeof(thishost)) == -1) fatal("gethostname: %s", strerror(errno)); strlcpy(shorthost, thishost, sizeof(shorthost)); shorthost[strcspn(thishost, ".")] = '\0'; snprintf(portstr, sizeof(portstr), "%d", port); cmd = percent_expand(arg, "L", shorthost, "d", pw->pw_dir, "h", host, "l", thishost, "n", host_arg, "p", portstr, "r", ruser, "u", pw->pw_name, (char *)NULL); if (result != 1) { /* skip execution if prior predicate failed */ debug("%.200s line %d: skipped exec \"%.100s\"", filename, linenum, cmd); } else { r = execute_in_shell(cmd); if (r == -1) { fatal("%.200s line %d: match exec " "'%.100s' error", filename, linenum, cmd); } else if (r == 0) { debug("%.200s line %d: matched " "'exec \"%.100s\"'", filename, linenum, cmd); } else { debug("%.200s line %d: no match " "'exec \"%.100s\"'", filename, linenum, cmd); result = 0; } } free(cmd); } else { error("Unsupported Match attribute %s", attrib); result = -1; goto out; } } if (attributes == 0) { error("One or more attributes required for Match"); result = -1; goto out; } debug3("match %sfound", result ? "" : "not "); *condition = cp; out: free(host); return result; } /* Check and prepare a domain name: removes trailing '.' and lowercases */ static void valid_domain(char *name, const char *filename, int linenum) { size_t i, l = strlen(name); u_char c, last = '\0'; if (l == 0) fatal("%s line %d: empty hostname suffix", filename, linenum); if (!isalpha((u_char)name[0]) && !isdigit((u_char)name[0])) fatal("%s line %d: hostname suffix \"%.100s\" " "starts with invalid character", filename, linenum, name); for (i = 0; i < l; i++) { c = tolower((u_char)name[i]); name[i] = (char)c; if (last == '.' && c == '.') fatal("%s line %d: hostname suffix \"%.100s\" contains " "consecutive separators", filename, linenum, name); if (c != '.' && c != '-' && !isalnum(c) && c != '_') /* technically invalid, but common */ fatal("%s line %d: hostname suffix \"%.100s\" contains " "invalid characters", filename, linenum, name); last = c; } if (name[l - 1] == '.') name[l - 1] = '\0'; } /* * Returns the number of the token pointed to by cp or oBadOption. */ static OpCodes parse_token(const char *cp, const char *filename, int linenum, const char *ignored_unknown) { int i; for (i = 0; keywords[i].name; i++) if (strcmp(cp, keywords[i].name) == 0) return keywords[i].opcode; if (ignored_unknown != NULL && match_pattern_list(cp, ignored_unknown, strlen(ignored_unknown), 1) == 1) return oIgnoredUnknownOption; error("%s: line %d: Bad configuration option: %s", filename, linenum, cp); return oBadOption; } /* Multistate option parsing */ struct multistate { char *key; int value; }; static const struct multistate multistate_flag[] = { { "true", 1 }, { "false", 0 }, { "yes", 1 }, { "no", 0 }, { NULL, -1 } }; static const struct multistate multistate_yesnoask[] = { { "true", 1 }, { "false", 0 }, { "yes", 1 }, { "no", 0 }, { "ask", 2 }, { NULL, -1 } }; static const struct multistate multistate_addressfamily[] = { { "inet", AF_INET }, { "inet6", AF_INET6 }, { "any", AF_UNSPEC }, { NULL, -1 } }; static const struct multistate multistate_controlmaster[] = { { "true", SSHCTL_MASTER_YES }, { "yes", SSHCTL_MASTER_YES }, { "false", SSHCTL_MASTER_NO }, { "no", SSHCTL_MASTER_NO }, { "auto", SSHCTL_MASTER_AUTO }, { "ask", SSHCTL_MASTER_ASK }, { "autoask", SSHCTL_MASTER_AUTO_ASK }, { NULL, -1 } }; static const struct multistate multistate_tunnel[] = { { "ethernet", SSH_TUNMODE_ETHERNET }, { "point-to-point", SSH_TUNMODE_POINTOPOINT }, { "true", SSH_TUNMODE_DEFAULT }, { "yes", SSH_TUNMODE_DEFAULT }, { "false", SSH_TUNMODE_NO }, { "no", SSH_TUNMODE_NO }, { NULL, -1 } }; static const struct multistate multistate_requesttty[] = { { "true", REQUEST_TTY_YES }, { "yes", REQUEST_TTY_YES }, { "false", REQUEST_TTY_NO }, { "no", REQUEST_TTY_NO }, { "force", REQUEST_TTY_FORCE }, { "auto", REQUEST_TTY_AUTO }, { NULL, -1 } }; static const struct multistate multistate_canonicalizehostname[] = { { "true", SSH_CANONICALISE_YES }, { "false", SSH_CANONICALISE_NO }, { "yes", SSH_CANONICALISE_YES }, { "no", SSH_CANONICALISE_NO }, { "always", SSH_CANONICALISE_ALWAYS }, { NULL, -1 } }; /* * Processes a single option line as used in the configuration files. This * only sets those values that have not already been set. */ #define WHITESPACE " \t\r\n" int process_config_line(Options *options, struct passwd *pw, const char *host, char *line, const char *filename, int linenum, int *activep, int userconfig) { char *s, **charptr, *endofnumber, *keyword, *arg, *arg2; char **cpptr, fwdarg[256]; u_int i, *uintptr, max_entries = 0; int negated, opcode, *intptr, value, value2, cmdline = 0; LogLevel *log_level_ptr; long long val64; size_t len; Forward fwd; const struct multistate *multistate_ptr; struct allowed_cname *cname; if (activep == NULL) { /* We are processing a command line directive */ cmdline = 1; activep = &cmdline; } /* Strip trailing whitespace */ for (len = strlen(line) - 1; len > 0; len--) { if (strchr(WHITESPACE, line[len]) == NULL) break; line[len] = '\0'; } s = line; /* Get the keyword. (Each line is supposed to begin with a keyword). */ if ((keyword = strdelim(&s)) == NULL) return 0; /* Ignore leading whitespace. */ if (*keyword == '\0') keyword = strdelim(&s); if (keyword == NULL || !*keyword || *keyword == '\n' || *keyword == '#') return 0; /* Match lowercase keyword */ lowercase(keyword); opcode = parse_token(keyword, filename, linenum, options->ignored_unknown); switch (opcode) { case oBadOption: /* don't panic, but count bad options */ return -1; /* NOTREACHED */ case oIgnoredUnknownOption: debug("%s line %d: Ignored unknown option \"%s\"", filename, linenum, keyword); return 0; case oConnectTimeout: intptr = &options->connection_timeout; parse_time: arg = strdelim(&s); if (!arg || *arg == '\0') fatal("%s line %d: missing time value.", filename, linenum); if ((value = convtime(arg)) == -1) fatal("%s line %d: invalid time value.", filename, linenum); if (*activep && *intptr == -1) *intptr = value; break; case oForwardAgent: intptr = &options->forward_agent; parse_flag: multistate_ptr = multistate_flag; parse_multistate: arg = strdelim(&s); if (!arg || *arg == '\0') fatal("%s line %d: missing argument.", filename, linenum); value = -1; for (i = 0; multistate_ptr[i].key != NULL; i++) { if (strcasecmp(arg, multistate_ptr[i].key) == 0) { value = multistate_ptr[i].value; break; } } if (value == -1) fatal("%s line %d: unsupported option \"%s\".", filename, linenum, arg); if (*activep && *intptr == -1) *intptr = value; break; case oForwardX11: intptr = &options->forward_x11; goto parse_flag; case oForwardX11Trusted: intptr = &options->forward_x11_trusted; goto parse_flag; case oForwardX11Timeout: intptr = &options->forward_x11_timeout; goto parse_time; case oGatewayPorts: intptr = &options->gateway_ports; goto parse_flag; case oExitOnForwardFailure: intptr = &options->exit_on_forward_failure; goto parse_flag; case oUsePrivilegedPort: intptr = &options->use_privileged_port; goto parse_flag; case oPasswordAuthentication: intptr = &options->password_authentication; goto parse_flag; case oKbdInteractiveAuthentication: intptr = &options->kbd_interactive_authentication; goto parse_flag; case oKbdInteractiveDevices: charptr = &options->kbd_interactive_devices; goto parse_string; case oPubkeyAuthentication: intptr = &options->pubkey_authentication; goto parse_flag; case oRSAAuthentication: intptr = &options->rsa_authentication; goto parse_flag; case oRhostsRSAAuthentication: intptr = &options->rhosts_rsa_authentication; goto parse_flag; case oHostbasedAuthentication: intptr = &options->hostbased_authentication; goto parse_flag; case oChallengeResponseAuthentication: intptr = &options->challenge_response_authentication; goto parse_flag; case oGssAuthentication: intptr = &options->gss_authentication; goto parse_flag; case oGssDelegateCreds: intptr = &options->gss_deleg_creds; goto parse_flag; case oBatchMode: intptr = &options->batch_mode; goto parse_flag; case oCheckHostIP: intptr = &options->check_host_ip; goto parse_flag; case oVerifyHostKeyDNS: intptr = &options->verify_host_key_dns; multistate_ptr = multistate_yesnoask; goto parse_multistate; case oStrictHostKeyChecking: intptr = &options->strict_host_key_checking; multistate_ptr = multistate_yesnoask; goto parse_multistate; case oCompression: intptr = &options->compression; goto parse_flag; case oTCPKeepAlive: intptr = &options->tcp_keep_alive; goto parse_flag; case oNoHostAuthenticationForLocalhost: intptr = &options->no_host_authentication_for_localhost; goto parse_flag; case oNumberOfPasswordPrompts: intptr = &options->number_of_password_prompts; goto parse_int; case oCompressionLevel: intptr = &options->compression_level; goto parse_int; case oRekeyLimit: arg = strdelim(&s); if (!arg || *arg == '\0') fatal("%.200s line %d: Missing argument.", filename, linenum); if (strcmp(arg, "default") == 0) { val64 = 0; } else { if (scan_scaled(arg, &val64) == -1) fatal("%.200s line %d: Bad number '%s': %s", filename, linenum, arg, strerror(errno)); /* check for too-large or too-small limits */ if (val64 > UINT_MAX) fatal("%.200s line %d: RekeyLimit too large", filename, linenum); if (val64 != 0 && val64 < 16) fatal("%.200s line %d: RekeyLimit too small", filename, linenum); } if (*activep && options->rekey_limit == -1) options->rekey_limit = (u_int32_t)val64; if (s != NULL) { /* optional rekey interval present */ if (strcmp(s, "none") == 0) { (void)strdelim(&s); /* discard */ break; } intptr = &options->rekey_interval; goto parse_time; } break; case oIdentityFile: arg = strdelim(&s); if (!arg || *arg == '\0') fatal("%.200s line %d: Missing argument.", filename, linenum); if (*activep) { intptr = &options->num_identity_files; if (*intptr >= SSH_MAX_IDENTITY_FILES) fatal("%.200s line %d: Too many identity files specified (max %d).", filename, linenum, SSH_MAX_IDENTITY_FILES); add_identity_file(options, NULL, arg, userconfig); } break; case oXAuthLocation: charptr=&options->xauth_location; goto parse_string; case oUser: charptr = &options->user; parse_string: arg = strdelim(&s); if (!arg || *arg == '\0') fatal("%.200s line %d: Missing argument.", filename, linenum); if (*activep && *charptr == NULL) *charptr = xstrdup(arg); break; case oGlobalKnownHostsFile: cpptr = (char **)&options->system_hostfiles; uintptr = &options->num_system_hostfiles; max_entries = SSH_MAX_HOSTS_FILES; parse_char_array: if (*activep && *uintptr == 0) { while ((arg = strdelim(&s)) != NULL && *arg != '\0') { if ((*uintptr) >= max_entries) fatal("%s line %d: " "too many authorized keys files.", filename, linenum); cpptr[(*uintptr)++] = xstrdup(arg); } } return 0; case oUserKnownHostsFile: cpptr = (char **)&options->user_hostfiles; uintptr = &options->num_user_hostfiles; max_entries = SSH_MAX_HOSTS_FILES; goto parse_char_array; case oHostName: charptr = &options->hostname; goto parse_string; case oHostKeyAlias: charptr = &options->host_key_alias; goto parse_string; case oPreferredAuthentications: charptr = &options->preferred_authentications; goto parse_string; case oBindAddress: charptr = &options->bind_address; goto parse_string; case oPKCS11Provider: charptr = &options->pkcs11_provider; goto parse_string; case oProxyCommand: charptr = &options->proxy_command; parse_command: if (s == NULL) fatal("%.200s line %d: Missing argument.", filename, linenum); len = strspn(s, WHITESPACE "="); if (*activep && *charptr == NULL) *charptr = xstrdup(s + len); return 0; case oPort: intptr = &options->port; parse_int: arg = strdelim(&s); if (!arg || *arg == '\0') fatal("%.200s line %d: Missing argument.", filename, linenum); if (arg[0] < '0' || arg[0] > '9') fatal("%.200s line %d: Bad number.", filename, linenum); /* Octal, decimal, or hex format? */ value = strtol(arg, &endofnumber, 0); if (arg == endofnumber) fatal("%.200s line %d: Bad number.", filename, linenum); if (*activep && *intptr == -1) *intptr = value; break; case oConnectionAttempts: intptr = &options->connection_attempts; goto parse_int; case oCipher: intptr = &options->cipher; arg = strdelim(&s); if (!arg || *arg == '\0') fatal("%.200s line %d: Missing argument.", filename, linenum); value = cipher_number(arg); if (value == -1) fatal("%.200s line %d: Bad cipher '%s'.", filename, linenum, arg ? arg : ""); if (*activep && *intptr == -1) *intptr = value; break; case oCiphers: arg = strdelim(&s); if (!arg || *arg == '\0') fatal("%.200s line %d: Missing argument.", filename, linenum); if (!ciphers_valid(arg)) fatal("%.200s line %d: Bad SSH2 cipher spec '%s'.", filename, linenum, arg ? arg : ""); if (*activep && options->ciphers == NULL) options->ciphers = xstrdup(arg); break; case oMacs: arg = strdelim(&s); if (!arg || *arg == '\0') fatal("%.200s line %d: Missing argument.", filename, linenum); if (!mac_valid(arg)) fatal("%.200s line %d: Bad SSH2 Mac spec '%s'.", filename, linenum, arg ? arg : ""); if (*activep && options->macs == NULL) options->macs = xstrdup(arg); break; case oKexAlgorithms: arg = strdelim(&s); if (!arg || *arg == '\0') fatal("%.200s line %d: Missing argument.", filename, linenum); if (!kex_names_valid(arg)) fatal("%.200s line %d: Bad SSH2 KexAlgorithms '%s'.", filename, linenum, arg ? arg : ""); if (*activep && options->kex_algorithms == NULL) options->kex_algorithms = xstrdup(arg); break; case oHostKeyAlgorithms: arg = strdelim(&s); if (!arg || *arg == '\0') fatal("%.200s line %d: Missing argument.", filename, linenum); if (!key_names_valid2(arg)) fatal("%.200s line %d: Bad protocol 2 host key algorithms '%s'.", filename, linenum, arg ? arg : ""); if (*activep && options->hostkeyalgorithms == NULL) options->hostkeyalgorithms = xstrdup(arg); break; case oProtocol: intptr = &options->protocol; arg = strdelim(&s); if (!arg || *arg == '\0') fatal("%.200s line %d: Missing argument.", filename, linenum); value = proto_spec(arg); if (value == SSH_PROTO_UNKNOWN) fatal("%.200s line %d: Bad protocol spec '%s'.", filename, linenum, arg ? arg : ""); if (*activep && *intptr == SSH_PROTO_UNKNOWN) *intptr = value; break; case oLogLevel: log_level_ptr = &options->log_level; arg = strdelim(&s); value = log_level_number(arg); if (value == SYSLOG_LEVEL_NOT_SET) fatal("%.200s line %d: unsupported log level '%s'", filename, linenum, arg ? arg : ""); if (*activep && *log_level_ptr == SYSLOG_LEVEL_NOT_SET) *log_level_ptr = (LogLevel) value; break; case oLocalForward: case oRemoteForward: case oDynamicForward: arg = strdelim(&s); if (arg == NULL || *arg == '\0') fatal("%.200s line %d: Missing port argument.", filename, linenum); if (opcode == oLocalForward || opcode == oRemoteForward) { arg2 = strdelim(&s); if (arg2 == NULL || *arg2 == '\0') fatal("%.200s line %d: Missing target argument.", filename, linenum); /* construct a string for parse_forward */ snprintf(fwdarg, sizeof(fwdarg), "%s:%s", arg, arg2); } else if (opcode == oDynamicForward) { strlcpy(fwdarg, arg, sizeof(fwdarg)); } if (parse_forward(&fwd, fwdarg, opcode == oDynamicForward ? 1 : 0, opcode == oRemoteForward ? 1 : 0) == 0) fatal("%.200s line %d: Bad forwarding specification.", filename, linenum); if (*activep) { if (opcode == oLocalForward || opcode == oDynamicForward) add_local_forward(options, &fwd); else if (opcode == oRemoteForward) add_remote_forward(options, &fwd); } break; case oClearAllForwardings: intptr = &options->clear_forwardings; goto parse_flag; case oHost: if (cmdline) fatal("Host directive not supported as a command-line " "option"); *activep = 0; arg2 = NULL; while ((arg = strdelim(&s)) != NULL && *arg != '\0') { negated = *arg == '!'; if (negated) arg++; if (match_pattern(host, arg)) { if (negated) { debug("%.200s line %d: Skipping Host " "block because of negated match " "for %.100s", filename, linenum, arg); *activep = 0; break; } if (!*activep) arg2 = arg; /* logged below */ *activep = 1; } } if (*activep) debug("%.200s line %d: Applying options for %.100s", filename, linenum, arg2); /* Avoid garbage check below, as strdelim is done. */ return 0; case oMatch: if (cmdline) fatal("Host directive not supported as a command-line " "option"); value = match_cfg_line(options, &s, pw, host, filename, linenum); if (value < 0) fatal("%.200s line %d: Bad Match condition", filename, linenum); *activep = value; break; case oEscapeChar: intptr = &options->escape_char; arg = strdelim(&s); if (!arg || *arg == '\0') fatal("%.200s line %d: Missing argument.", filename, linenum); if (arg[0] == '^' && arg[2] == 0 && (u_char) arg[1] >= 64 && (u_char) arg[1] < 128) value = (u_char) arg[1] & 31; else if (strlen(arg) == 1) value = (u_char) arg[0]; else if (strcmp(arg, "none") == 0) value = SSH_ESCAPECHAR_NONE; else { fatal("%.200s line %d: Bad escape character.", filename, linenum); /* NOTREACHED */ value = 0; /* Avoid compiler warning. */ } if (*activep && *intptr == -1) *intptr = value; break; case oAddressFamily: intptr = &options->address_family; multistate_ptr = multistate_addressfamily; goto parse_multistate; case oEnableSSHKeysign: intptr = &options->enable_ssh_keysign; goto parse_flag; case oIdentitiesOnly: intptr = &options->identities_only; goto parse_flag; case oServerAliveInterval: intptr = &options->server_alive_interval; goto parse_time; case oServerAliveCountMax: intptr = &options->server_alive_count_max; goto parse_int; case oSendEnv: while ((arg = strdelim(&s)) != NULL && *arg != '\0') { if (strchr(arg, '=') != NULL) fatal("%s line %d: Invalid environment name.", filename, linenum); if (!*activep) continue; if (options->num_send_env >= MAX_SEND_ENV) fatal("%s line %d: too many send env.", filename, linenum); options->send_env[options->num_send_env++] = xstrdup(arg); } break; case oControlPath: charptr = &options->control_path; goto parse_string; case oControlMaster: intptr = &options->control_master; multistate_ptr = multistate_controlmaster; goto parse_multistate; case oControlPersist: /* no/false/yes/true, or a time spec */ intptr = &options->control_persist; arg = strdelim(&s); if (!arg || *arg == '\0') fatal("%.200s line %d: Missing ControlPersist" " argument.", filename, linenum); value = 0; value2 = 0; /* timeout */ if (strcmp(arg, "no") == 0 || strcmp(arg, "false") == 0) value = 0; else if (strcmp(arg, "yes") == 0 || strcmp(arg, "true") == 0) value = 1; else if ((value2 = convtime(arg)) >= 0) value = 1; else fatal("%.200s line %d: Bad ControlPersist argument.", filename, linenum); if (*activep && *intptr == -1) { *intptr = value; options->control_persist_timeout = value2; } break; case oHashKnownHosts: intptr = &options->hash_known_hosts; goto parse_flag; case oTunnel: intptr = &options->tun_open; multistate_ptr = multistate_tunnel; goto parse_multistate; case oTunnelDevice: arg = strdelim(&s); if (!arg || *arg == '\0') fatal("%.200s line %d: Missing argument.", filename, linenum); value = a2tun(arg, &value2); if (value == SSH_TUNID_ERR) fatal("%.200s line %d: Bad tun device.", filename, linenum); if (*activep) { options->tun_local = value; options->tun_remote = value2; } break; case oLocalCommand: charptr = &options->local_command; goto parse_command; case oPermitLocalCommand: intptr = &options->permit_local_command; goto parse_flag; case oVisualHostKey: intptr = &options->visual_host_key; goto parse_flag; case oIPQoS: arg = strdelim(&s); if ((value = parse_ipqos(arg)) == -1) fatal("%s line %d: Bad IPQoS value: %s", filename, linenum, arg); arg = strdelim(&s); if (arg == NULL) value2 = value; else if ((value2 = parse_ipqos(arg)) == -1) fatal("%s line %d: Bad IPQoS value: %s", filename, linenum, arg); if (*activep) { options->ip_qos_interactive = value; options->ip_qos_bulk = value2; } break; case oUseRoaming: intptr = &options->use_roaming; goto parse_flag; case oRequestTTY: intptr = &options->request_tty; multistate_ptr = multistate_requesttty; goto parse_multistate; case oHPNDisabled: intptr = &options->hpn_disabled; goto parse_flag; case oHPNBufferSize: intptr = &options->hpn_buffer_size; goto parse_int; case oTcpRcvBufPoll: intptr = &options->tcp_rcv_buf_poll; goto parse_flag; case oTcpRcvBuf: intptr = &options->tcp_rcv_buf; goto parse_int; -#ifdef NONE_CIPHER_ENABLED - case oNoneEnabled: - intptr = &options->none_enabled; - goto parse_flag; - - /* - * We check to see if the command comes from the command line or not. - * If it does then enable it otherwise fail. NONE must never be a - * default configuration. - */ - case oNoneSwitch: - if (strcmp(filename,"command-line") == 0) { - intptr = &options->none_switch; - goto parse_flag; - } else { - debug("NoneSwitch directive found in %.200s.", - filename); - error("NoneSwitch is found in %.200s.\n" - "You may only use this configuration option " - "from the command line", filename); - error("Continuing..."); - return 0; - } -#endif - case oVersionAddendum: if (s == NULL) fatal("%.200s line %d: Missing argument.", filename, linenum); len = strspn(s, WHITESPACE); if (*activep && options->version_addendum == NULL) { if (strcasecmp(s + len, "none") == 0) options->version_addendum = xstrdup(""); else if (strchr(s + len, '\r') != NULL) fatal("%.200s line %d: Invalid argument", filename, linenum); else options->version_addendum = xstrdup(s + len); } return 0; case oIgnoreUnknown: charptr = &options->ignored_unknown; goto parse_string; case oProxyUseFdpass: intptr = &options->proxy_use_fdpass; goto parse_flag; case oCanonicalDomains: value = options->num_canonical_domains != 0; while ((arg = strdelim(&s)) != NULL && *arg != '\0') { valid_domain(arg, filename, linenum); if (!*activep || value) continue; if (options->num_canonical_domains >= MAX_CANON_DOMAINS) fatal("%s line %d: too many hostname suffixes.", filename, linenum); options->canonical_domains[ options->num_canonical_domains++] = xstrdup(arg); } break; case oCanonicalizePermittedCNAMEs: value = options->num_permitted_cnames != 0; while ((arg = strdelim(&s)) != NULL && *arg != '\0') { /* Either '*' for everything or 'list:list' */ if (strcmp(arg, "*") == 0) arg2 = arg; else { lowercase(arg); if ((arg2 = strchr(arg, ':')) == NULL || arg2[1] == '\0') { fatal("%s line %d: " "Invalid permitted CNAME \"%s\"", filename, linenum, arg); } *arg2 = '\0'; arg2++; } if (!*activep || value) continue; if (options->num_permitted_cnames >= MAX_CANON_DOMAINS) fatal("%s line %d: too many permitted CNAMEs.", filename, linenum); cname = options->permitted_cnames + options->num_permitted_cnames++; cname->source_list = xstrdup(arg); cname->target_list = xstrdup(arg2); } break; case oCanonicalizeHostname: intptr = &options->canonicalize_hostname; multistate_ptr = multistate_canonicalizehostname; goto parse_multistate; case oCanonicalizeMaxDots: intptr = &options->canonicalize_max_dots; goto parse_int; case oCanonicalizeFallbackLocal: intptr = &options->canonicalize_fallback_local; goto parse_flag; case oDeprecated: debug("%s line %d: Deprecated option \"%s\"", filename, linenum, keyword); return 0; case oUnsupported: error("%s line %d: Unsupported option \"%s\"", filename, linenum, keyword); return 0; default: fatal("process_config_line: Unimplemented opcode %d", opcode); } /* Check that there is no garbage at end of line. */ if ((arg = strdelim(&s)) != NULL && *arg != '\0') { fatal("%.200s line %d: garbage at end of line; \"%.200s\".", filename, linenum, arg); } return 0; } /* * Reads the config file and modifies the options accordingly. Options * should already be initialized before this call. This never returns if * there is an error. If the file does not exist, this returns 0. */ int read_config_file(const char *filename, struct passwd *pw, const char *host, Options *options, int flags) { FILE *f; char line[1024]; int active, linenum; int bad_options = 0; if ((f = fopen(filename, "r")) == NULL) return 0; if (flags & SSHCONF_CHECKPERM) { struct stat sb; if (fstat(fileno(f), &sb) == -1) fatal("fstat %s: %s", filename, strerror(errno)); if (((sb.st_uid != 0 && sb.st_uid != getuid()) || (sb.st_mode & 022) != 0)) fatal("Bad owner or permissions on %s", filename); } debug("Reading configuration data %.200s", filename); /* * Mark that we are now processing the options. This flag is turned * on/off by Host specifications. */ active = 1; linenum = 0; while (fgets(line, sizeof(line), f)) { /* Update line number counter. */ linenum++; if (process_config_line(options, pw, host, line, filename, linenum, &active, flags & SSHCONF_USERCONF) != 0) bad_options++; } fclose(f); if (bad_options > 0) fatal("%s: terminating, %d bad configuration options", filename, bad_options); return 1; } /* Returns 1 if a string option is unset or set to "none" or 0 otherwise. */ int option_clear_or_none(const char *o) { return o == NULL || strcasecmp(o, "none") == 0; } /* * Initializes options to special values that indicate that they have not yet * been set. Read_config_file will only set options with this value. Options * are processed in the following order: command line, user config file, * system config file. Last, fill_default_options is called. */ void initialize_options(Options * options) { memset(options, 'X', sizeof(*options)); options->forward_agent = -1; options->forward_x11 = -1; options->forward_x11_trusted = -1; options->forward_x11_timeout = -1; options->exit_on_forward_failure = -1; options->xauth_location = NULL; options->gateway_ports = -1; options->use_privileged_port = -1; options->rsa_authentication = -1; options->pubkey_authentication = -1; options->challenge_response_authentication = -1; options->gss_authentication = -1; options->gss_deleg_creds = -1; options->password_authentication = -1; options->kbd_interactive_authentication = -1; options->kbd_interactive_devices = NULL; options->rhosts_rsa_authentication = -1; options->hostbased_authentication = -1; options->batch_mode = -1; options->check_host_ip = -1; options->strict_host_key_checking = -1; options->compression = -1; options->tcp_keep_alive = -1; options->compression_level = -1; options->port = -1; options->address_family = -1; options->connection_attempts = -1; options->connection_timeout = -1; options->number_of_password_prompts = -1; options->cipher = -1; options->ciphers = NULL; options->macs = NULL; options->kex_algorithms = NULL; options->hostkeyalgorithms = NULL; options->protocol = SSH_PROTO_UNKNOWN; options->num_identity_files = 0; options->hostname = NULL; options->host_key_alias = NULL; options->proxy_command = NULL; options->user = NULL; options->escape_char = -1; options->num_system_hostfiles = 0; options->num_user_hostfiles = 0; options->local_forwards = NULL; options->num_local_forwards = 0; options->remote_forwards = NULL; options->num_remote_forwards = 0; options->clear_forwardings = -1; options->log_level = SYSLOG_LEVEL_NOT_SET; options->preferred_authentications = NULL; options->bind_address = NULL; options->pkcs11_provider = NULL; options->enable_ssh_keysign = - 1; options->no_host_authentication_for_localhost = - 1; options->identities_only = - 1; options->rekey_limit = - 1; options->rekey_interval = -1; options->verify_host_key_dns = -1; options->server_alive_interval = -1; options->server_alive_count_max = -1; options->num_send_env = 0; options->control_path = NULL; options->control_master = -1; options->control_persist = -1; options->control_persist_timeout = 0; options->hash_known_hosts = -1; options->tun_open = -1; options->tun_local = -1; options->tun_remote = -1; options->local_command = NULL; options->permit_local_command = -1; options->use_roaming = -1; options->visual_host_key = -1; options->ip_qos_interactive = -1; options->ip_qos_bulk = -1; options->request_tty = -1; options->proxy_use_fdpass = -1; options->ignored_unknown = NULL; options->num_canonical_domains = 0; options->num_permitted_cnames = 0; options->canonicalize_max_dots = -1; options->canonicalize_fallback_local = -1; options->canonicalize_hostname = -1; options->version_addendum = NULL; options->hpn_disabled = -1; options->hpn_buffer_size = -1; options->tcp_rcv_buf_poll = -1; options->tcp_rcv_buf = -1; -#ifdef NONE_CIPHER_ENABLED - options->none_enabled = -1; - options->none_switch = -1; -#endif } /* * A petite version of fill_default_options() that just fills the options * needed for hostname canonicalization to proceed. */ void fill_default_options_for_canonicalization(Options *options) { if (options->canonicalize_max_dots == -1) options->canonicalize_max_dots = 1; if (options->canonicalize_fallback_local == -1) options->canonicalize_fallback_local = 1; if (options->canonicalize_hostname == -1) options->canonicalize_hostname = SSH_CANONICALISE_NO; } /* * Called after processing other sources of option data, this fills those * options for which no value has been specified with their default values. */ void fill_default_options(Options * options) { if (options->forward_agent == -1) options->forward_agent = 0; if (options->forward_x11 == -1) options->forward_x11 = 0; if (options->forward_x11_trusted == -1) options->forward_x11_trusted = 0; if (options->forward_x11_timeout == -1) options->forward_x11_timeout = 1200; if (options->exit_on_forward_failure == -1) options->exit_on_forward_failure = 0; if (options->xauth_location == NULL) options->xauth_location = _PATH_XAUTH; if (options->gateway_ports == -1) options->gateway_ports = 0; if (options->use_privileged_port == -1) options->use_privileged_port = 0; if (options->rsa_authentication == -1) options->rsa_authentication = 1; if (options->pubkey_authentication == -1) options->pubkey_authentication = 1; if (options->challenge_response_authentication == -1) options->challenge_response_authentication = 1; if (options->gss_authentication == -1) options->gss_authentication = 0; if (options->gss_deleg_creds == -1) options->gss_deleg_creds = 0; if (options->password_authentication == -1) options->password_authentication = 1; if (options->kbd_interactive_authentication == -1) options->kbd_interactive_authentication = 1; if (options->rhosts_rsa_authentication == -1) options->rhosts_rsa_authentication = 0; if (options->hostbased_authentication == -1) options->hostbased_authentication = 0; if (options->batch_mode == -1) options->batch_mode = 0; if (options->check_host_ip == -1) options->check_host_ip = 0; if (options->strict_host_key_checking == -1) options->strict_host_key_checking = 2; /* 2 is default */ if (options->compression == -1) options->compression = 0; if (options->tcp_keep_alive == -1) options->tcp_keep_alive = 1; if (options->compression_level == -1) options->compression_level = 6; if (options->port == -1) options->port = 0; /* Filled in ssh_connect. */ if (options->address_family == -1) options->address_family = AF_UNSPEC; if (options->connection_attempts == -1) options->connection_attempts = 1; if (options->number_of_password_prompts == -1) options->number_of_password_prompts = 3; /* Selected in ssh_login(). */ if (options->cipher == -1) options->cipher = SSH_CIPHER_NOT_SET; /* options->ciphers, default set in myproposals.h */ /* options->macs, default set in myproposals.h */ /* options->kex_algorithms, default set in myproposals.h */ /* options->hostkeyalgorithms, default set in myproposals.h */ if (options->protocol == SSH_PROTO_UNKNOWN) options->protocol = SSH_PROTO_2; if (options->num_identity_files == 0) { if (options->protocol & SSH_PROTO_1) { add_identity_file(options, "~/", _PATH_SSH_CLIENT_IDENTITY, 0); } if (options->protocol & SSH_PROTO_2) { add_identity_file(options, "~/", _PATH_SSH_CLIENT_ID_RSA, 0); add_identity_file(options, "~/", _PATH_SSH_CLIENT_ID_DSA, 0); #ifdef OPENSSL_HAS_ECC add_identity_file(options, "~/", _PATH_SSH_CLIENT_ID_ECDSA, 0); #endif add_identity_file(options, "~/", _PATH_SSH_CLIENT_ID_ED25519, 0); } } if (options->escape_char == -1) options->escape_char = '~'; if (options->num_system_hostfiles == 0) { options->system_hostfiles[options->num_system_hostfiles++] = xstrdup(_PATH_SSH_SYSTEM_HOSTFILE); options->system_hostfiles[options->num_system_hostfiles++] = xstrdup(_PATH_SSH_SYSTEM_HOSTFILE2); } if (options->num_user_hostfiles == 0) { options->user_hostfiles[options->num_user_hostfiles++] = xstrdup(_PATH_SSH_USER_HOSTFILE); options->user_hostfiles[options->num_user_hostfiles++] = xstrdup(_PATH_SSH_USER_HOSTFILE2); } if (options->log_level == SYSLOG_LEVEL_NOT_SET) options->log_level = SYSLOG_LEVEL_INFO; if (options->clear_forwardings == 1) clear_forwardings(options); if (options->no_host_authentication_for_localhost == - 1) options->no_host_authentication_for_localhost = 0; if (options->identities_only == -1) options->identities_only = 0; if (options->enable_ssh_keysign == -1) options->enable_ssh_keysign = 0; if (options->rekey_limit == -1) options->rekey_limit = 0; if (options->rekey_interval == -1) options->rekey_interval = 0; #if HAVE_LDNS if (options->verify_host_key_dns == -1) /* automatically trust a verified SSHFP record */ options->verify_host_key_dns = 1; #else if (options->verify_host_key_dns == -1) options->verify_host_key_dns = 0; #endif if (options->server_alive_interval == -1) options->server_alive_interval = 0; if (options->server_alive_count_max == -1) options->server_alive_count_max = 3; if (options->control_master == -1) options->control_master = 0; if (options->control_persist == -1) { options->control_persist = 0; options->control_persist_timeout = 0; } if (options->hash_known_hosts == -1) options->hash_known_hosts = 0; if (options->tun_open == -1) options->tun_open = SSH_TUNMODE_NO; if (options->tun_local == -1) options->tun_local = SSH_TUNID_ANY; if (options->tun_remote == -1) options->tun_remote = SSH_TUNID_ANY; if (options->permit_local_command == -1) options->permit_local_command = 0; if (options->use_roaming == -1) options->use_roaming = 1; if (options->visual_host_key == -1) options->visual_host_key = 0; if (options->ip_qos_interactive == -1) options->ip_qos_interactive = IPTOS_LOWDELAY; if (options->ip_qos_bulk == -1) options->ip_qos_bulk = IPTOS_THROUGHPUT; if (options->request_tty == -1) options->request_tty = REQUEST_TTY_AUTO; if (options->proxy_use_fdpass == -1) options->proxy_use_fdpass = 0; if (options->canonicalize_max_dots == -1) options->canonicalize_max_dots = 1; if (options->canonicalize_fallback_local == -1) options->canonicalize_fallback_local = 1; if (options->canonicalize_hostname == -1) options->canonicalize_hostname = SSH_CANONICALISE_NO; #define CLEAR_ON_NONE(v) \ do { \ if (option_clear_or_none(v)) { \ free(v); \ v = NULL; \ } \ } while(0) CLEAR_ON_NONE(options->local_command); CLEAR_ON_NONE(options->proxy_command); CLEAR_ON_NONE(options->control_path); /* options->user will be set in the main program if appropriate */ /* options->hostname will be set in the main program if appropriate */ /* options->host_key_alias should not be set by default */ /* options->preferred_authentications will be set in ssh */ if (options->version_addendum == NULL) options->version_addendum = xstrdup(SSH_VERSION_FREEBSD); if (options->hpn_disabled == -1) options->hpn_disabled = 0; if (options->hpn_buffer_size > -1) { u_int maxlen; /* If a user tries to set the size to 0 set it to 1KB. */ if (options->hpn_buffer_size == 0) options->hpn_buffer_size = 1024; /* Limit the buffer to BUFFER_MAX_LEN. */ maxlen = buffer_get_max_len(); if (options->hpn_buffer_size > (maxlen / 1024)) { debug("User requested buffer larger than %ub: %ub. " "Request reverted to %ub", maxlen, options->hpn_buffer_size * 1024, maxlen); options->hpn_buffer_size = maxlen; } debug("hpn_buffer_size set to %d", options->hpn_buffer_size); } if (options->tcp_rcv_buf == 0) options->tcp_rcv_buf = 1; if (options->tcp_rcv_buf > -1) options->tcp_rcv_buf *= 1024; if (options->tcp_rcv_buf_poll == -1) options->tcp_rcv_buf_poll = 1; -#ifdef NONE_CIPHER_ENABLED - /* options->none_enabled must not be set by default */ - if (options->none_switch == -1) - options->none_switch = 0; -#endif } /* * parse_forward * parses a string containing a port forwarding specification of the form: * dynamicfwd == 0 * [listenhost:]listenport:connecthost:connectport * dynamicfwd == 1 * [listenhost:]listenport * returns number of arguments parsed or zero on error */ int parse_forward(Forward *fwd, const char *fwdspec, int dynamicfwd, int remotefwd) { int i; char *p, *cp, *fwdarg[4]; memset(fwd, '\0', sizeof(*fwd)); cp = p = xstrdup(fwdspec); /* skip leading spaces */ while (isspace((u_char)*cp)) cp++; for (i = 0; i < 4; ++i) if ((fwdarg[i] = hpdelim(&cp)) == NULL) break; /* Check for trailing garbage */ if (cp != NULL) i = 0; /* failure */ switch (i) { case 1: fwd->listen_host = NULL; fwd->listen_port = a2port(fwdarg[0]); fwd->connect_host = xstrdup("socks"); break; case 2: fwd->listen_host = xstrdup(cleanhostname(fwdarg[0])); fwd->listen_port = a2port(fwdarg[1]); fwd->connect_host = xstrdup("socks"); break; case 3: fwd->listen_host = NULL; fwd->listen_port = a2port(fwdarg[0]); fwd->connect_host = xstrdup(cleanhostname(fwdarg[1])); fwd->connect_port = a2port(fwdarg[2]); break; case 4: fwd->listen_host = xstrdup(cleanhostname(fwdarg[0])); fwd->listen_port = a2port(fwdarg[1]); fwd->connect_host = xstrdup(cleanhostname(fwdarg[2])); fwd->connect_port = a2port(fwdarg[3]); break; default: i = 0; /* failure */ } free(p); if (dynamicfwd) { if (!(i == 1 || i == 2)) goto fail_free; } else { if (!(i == 3 || i == 4)) goto fail_free; if (fwd->connect_port <= 0) goto fail_free; } if (fwd->listen_port < 0 || (!remotefwd && fwd->listen_port == 0)) goto fail_free; if (fwd->connect_host != NULL && strlen(fwd->connect_host) >= NI_MAXHOST) goto fail_free; if (fwd->listen_host != NULL && strlen(fwd->listen_host) >= NI_MAXHOST) goto fail_free; return (i); fail_free: free(fwd->connect_host); fwd->connect_host = NULL; free(fwd->listen_host); fwd->listen_host = NULL; return (0); } Index: head/crypto/openssh/readconf.h =================================================================== --- head/crypto/openssh/readconf.h (revision 291197) +++ head/crypto/openssh/readconf.h (revision 291198) @@ -1,207 +1,202 @@ /* $OpenBSD: readconf.h,v 1.101 2014/02/23 20:11:36 djm Exp $ */ -/* $FreeBSD$ */ /* * Author: Tatu Ylonen * Copyright (c) 1995 Tatu Ylonen , Espoo, Finland * All rights reserved * Functions for reading the configuration file. * * As far as I am concerned, the code I have written for this software * can be used freely for any purpose. Any derived versions of this * software must be clearly marked as such, and if the derived work is * incompatible with the protocol description in the RFC file, it must be * called by a name other than "ssh" or "Secure Shell". */ #ifndef READCONF_H #define READCONF_H /* Data structure for representing a forwarding request. */ typedef struct { char *listen_host; /* Host (address) to listen on. */ int listen_port; /* Port to forward. */ char *connect_host; /* Host to connect. */ int connect_port; /* Port to connect on connect_host. */ int allocated_port; /* Dynamically allocated listen port */ int handle; /* Handle for dynamic listen ports */ } Forward; /* Data structure for representing option data. */ #define MAX_SEND_ENV 256 #define SSH_MAX_HOSTS_FILES 32 #define MAX_CANON_DOMAINS 32 struct allowed_cname { char *source_list; char *target_list; }; typedef struct { int forward_agent; /* Forward authentication agent. */ int forward_x11; /* Forward X11 display. */ int forward_x11_timeout; /* Expiration for Cookies */ int forward_x11_trusted; /* Trust Forward X11 display. */ int exit_on_forward_failure; /* Exit if bind(2) fails for -L/-R */ char *xauth_location; /* Location for xauth program */ int gateway_ports; /* Allow remote connects to forwarded ports. */ int use_privileged_port; /* Don't use privileged port if false. */ int rhosts_rsa_authentication; /* Try rhosts with RSA * authentication. */ int rsa_authentication; /* Try RSA authentication. */ int pubkey_authentication; /* Try ssh2 pubkey authentication. */ int hostbased_authentication; /* ssh2's rhosts_rsa */ int challenge_response_authentication; /* Try S/Key or TIS, authentication. */ int gss_authentication; /* Try GSS authentication */ int gss_deleg_creds; /* Delegate GSS credentials */ int password_authentication; /* Try password * authentication. */ int kbd_interactive_authentication; /* Try keyboard-interactive auth. */ char *kbd_interactive_devices; /* Keyboard-interactive auth devices. */ int batch_mode; /* Batch mode: do not ask for passwords. */ int check_host_ip; /* Also keep track of keys for IP address */ int strict_host_key_checking; /* Strict host key checking. */ int compression; /* Compress packets in both directions. */ int compression_level; /* Compression level 1 (fast) to 9 * (best). */ int tcp_keep_alive; /* Set SO_KEEPALIVE. */ int ip_qos_interactive; /* IP ToS/DSCP/class for interactive */ int ip_qos_bulk; /* IP ToS/DSCP/class for bulk traffic */ LogLevel log_level; /* Level for logging. */ int port; /* Port to connect. */ int address_family; int connection_attempts; /* Max attempts (seconds) before * giving up */ int connection_timeout; /* Max time (seconds) before * aborting connection attempt */ int number_of_password_prompts; /* Max number of password * prompts. */ int cipher; /* Cipher to use. */ char *ciphers; /* SSH2 ciphers in order of preference. */ char *macs; /* SSH2 macs in order of preference. */ char *hostkeyalgorithms; /* SSH2 server key types in order of preference. */ char *kex_algorithms; /* SSH2 kex methods in order of preference. */ int protocol; /* Protocol in order of preference. */ char *hostname; /* Real host to connect. */ char *host_key_alias; /* hostname alias for .ssh/known_hosts */ char *proxy_command; /* Proxy command for connecting the host. */ char *user; /* User to log in as. */ int escape_char; /* Escape character; -2 = none */ u_int num_system_hostfiles; /* Paths for /etc/ssh/ssh_known_hosts */ char *system_hostfiles[SSH_MAX_HOSTS_FILES]; u_int num_user_hostfiles; /* Path for $HOME/.ssh/known_hosts */ char *user_hostfiles[SSH_MAX_HOSTS_FILES]; char *preferred_authentications; char *bind_address; /* local socket address for connection to sshd */ char *pkcs11_provider; /* PKCS#11 provider */ int verify_host_key_dns; /* Verify host key using DNS */ int num_identity_files; /* Number of files for RSA/DSA identities. */ char *identity_files[SSH_MAX_IDENTITY_FILES]; int identity_file_userprovided[SSH_MAX_IDENTITY_FILES]; Key *identity_keys[SSH_MAX_IDENTITY_FILES]; /* Local TCP/IP forward requests. */ int num_local_forwards; Forward *local_forwards; /* Remote TCP/IP forward requests. */ int num_remote_forwards; Forward *remote_forwards; int clear_forwardings; int enable_ssh_keysign; int64_t rekey_limit; int rekey_interval; int no_host_authentication_for_localhost; int identities_only; int server_alive_interval; int server_alive_count_max; int num_send_env; char *send_env[MAX_SEND_ENV]; char *control_path; int control_master; int control_persist; /* ControlPersist flag */ int control_persist_timeout; /* ControlPersist timeout (seconds) */ int hash_known_hosts; int tun_open; /* tun(4) */ int tun_local; /* force tun device (optional) */ int tun_remote; /* force tun device (optional) */ char *local_command; int permit_local_command; int visual_host_key; int use_roaming; int request_tty; int proxy_use_fdpass; int num_canonical_domains; char *canonical_domains[MAX_CANON_DOMAINS]; int canonicalize_hostname; int canonicalize_max_dots; int canonicalize_fallback_local; int num_permitted_cnames; struct allowed_cname permitted_cnames[MAX_CANON_DOMAINS]; char *ignored_unknown; /* Pattern list of unknown tokens to ignore */ char *version_addendum; /* Appended to SSH banner */ int hpn_disabled; /* Switch to disable HPN buffer management. */ int hpn_buffer_size; /* User definable size for HPN buffer * window. */ int tcp_rcv_buf_poll; /* Option to poll recv buf every window * transfer. */ int tcp_rcv_buf; /* User switch to set tcp recv buffer. */ -#ifdef NONE_CIPHER_ENABLED - int none_enabled; /* Allow none to be used */ - int none_switch; /* Use none cipher */ -#endif } Options; #define SSH_CANONICALISE_NO 0 #define SSH_CANONICALISE_YES 1 #define SSH_CANONICALISE_ALWAYS 2 #define SSHCTL_MASTER_NO 0 #define SSHCTL_MASTER_YES 1 #define SSHCTL_MASTER_AUTO 2 #define SSHCTL_MASTER_ASK 3 #define SSHCTL_MASTER_AUTO_ASK 4 #define REQUEST_TTY_AUTO 0 #define REQUEST_TTY_NO 1 #define REQUEST_TTY_YES 2 #define REQUEST_TTY_FORCE 3 #define SSHCONF_CHECKPERM 1 /* check permissions on config file */ #define SSHCONF_USERCONF 2 /* user provided config file not system */ void initialize_options(Options *); void fill_default_options(Options *); void fill_default_options_for_canonicalization(Options *); int process_config_line(Options *, struct passwd *, const char *, char *, const char *, int, int *, int); int read_config_file(const char *, struct passwd *, const char *, Options *, int); int parse_forward(Forward *, const char *, int, int); int default_ssh_port(void); int option_clear_or_none(const char *); void add_local_forward(Options *, const Forward *); void add_remote_forward(Options *, const Forward *); void add_identity_file(Options *, const char *, const char *, int); #endif /* READCONF_H */ Index: head/crypto/openssh/servconf.c =================================================================== --- head/crypto/openssh/servconf.c (revision 291197) +++ head/crypto/openssh/servconf.c (revision 291198) @@ -1,2150 +1,2135 @@ /* $OpenBSD: servconf.c,v 1.249 2014/01/29 06:18:35 djm Exp $ */ /* * Copyright (c) 1995 Tatu Ylonen , Espoo, Finland * All rights reserved * * As far as I am concerned, the code I have written for this software * can be used freely for any purpose. Any derived versions of this * software must be clearly marked as such, and if the derived work is * incompatible with the protocol description in the RFC file, it must be * called by a name other than "ssh" or "Secure Shell". */ #include "includes.h" __RCSID("$FreeBSD$"); #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #ifdef HAVE_UTIL_H #include #endif #include "openbsd-compat/sys-queue.h" #include "xmalloc.h" #include "ssh.h" #include "log.h" #include "buffer.h" #include "servconf.h" #include "compat.h" #include "pathnames.h" #include "misc.h" #include "cipher.h" #include "key.h" #include "kex.h" #include "mac.h" #include "match.h" #include "channels.h" #include "groupaccess.h" #include "canohost.h" #include "packet.h" #include "hostfile.h" #include "auth.h" #include "version.h" static void add_listen_addr(ServerOptions *, char *, int); static void add_one_listen_addr(ServerOptions *, char *, int); /* Use of privilege separation or not */ extern int use_privsep; extern Buffer cfg; /* Initializes the server options to their default values. */ void initialize_server_options(ServerOptions *options) { memset(options, 0, sizeof(*options)); /* Portable-specific options */ options->use_pam = -1; /* Standard Options */ options->num_ports = 0; options->ports_from_cmdline = 0; options->listen_addrs = NULL; options->address_family = -1; options->num_host_key_files = 0; options->num_host_cert_files = 0; options->host_key_agent = NULL; options->pid_file = NULL; options->server_key_bits = -1; options->login_grace_time = -1; options->key_regeneration_time = -1; options->permit_root_login = PERMIT_NOT_SET; options->ignore_rhosts = -1; options->ignore_user_known_hosts = -1; options->print_motd = -1; options->print_lastlog = -1; options->x11_forwarding = -1; options->x11_display_offset = -1; options->x11_use_localhost = -1; options->permit_tty = -1; options->xauth_location = NULL; options->strict_modes = -1; options->tcp_keep_alive = -1; options->log_facility = SYSLOG_FACILITY_NOT_SET; options->log_level = SYSLOG_LEVEL_NOT_SET; options->rhosts_rsa_authentication = -1; options->hostbased_authentication = -1; options->hostbased_uses_name_from_packet_only = -1; options->rsa_authentication = -1; options->pubkey_authentication = -1; options->kerberos_authentication = -1; options->kerberos_or_local_passwd = -1; options->kerberos_ticket_cleanup = -1; options->kerberos_get_afs_token = -1; options->gss_authentication=-1; options->gss_cleanup_creds = -1; options->password_authentication = -1; options->kbd_interactive_authentication = -1; options->challenge_response_authentication = -1; options->permit_empty_passwd = -1; options->permit_user_env = -1; options->use_login = -1; options->compression = -1; options->rekey_limit = -1; options->rekey_interval = -1; options->allow_tcp_forwarding = -1; options->allow_agent_forwarding = -1; options->num_allow_users = 0; options->num_deny_users = 0; options->num_allow_groups = 0; options->num_deny_groups = 0; options->ciphers = NULL; options->macs = NULL; options->kex_algorithms = NULL; options->protocol = SSH_PROTO_UNKNOWN; options->gateway_ports = -1; options->num_subsystems = 0; options->max_startups_begin = -1; options->max_startups_rate = -1; options->max_startups = -1; options->max_authtries = -1; options->max_sessions = -1; options->banner = NULL; options->use_dns = -1; options->client_alive_interval = -1; options->client_alive_count_max = -1; options->num_authkeys_files = 0; options->num_accept_env = 0; options->permit_tun = -1; options->num_permitted_opens = -1; options->adm_forced_command = NULL; options->chroot_directory = NULL; options->authorized_keys_command = NULL; options->authorized_keys_command_user = NULL; options->revoked_keys_file = NULL; options->trusted_user_ca_keys = NULL; options->authorized_principals_file = NULL; options->ip_qos_interactive = -1; options->ip_qos_bulk = -1; options->version_addendum = NULL; options->hpn_disabled = -1; options->hpn_buffer_size = -1; options->tcp_rcv_buf_poll = -1; -#ifdef NONE_CIPHER_ENABLED - options->none_enabled = -1; -#endif } void fill_default_server_options(ServerOptions *options) { /* Portable-specific options */ if (options->use_pam == -1) options->use_pam = 1; /* Standard Options */ if (options->protocol == SSH_PROTO_UNKNOWN) options->protocol = SSH_PROTO_2; if (options->num_host_key_files == 0) { /* fill default hostkeys for protocols */ if (options->protocol & SSH_PROTO_1) options->host_key_files[options->num_host_key_files++] = _PATH_HOST_KEY_FILE; if (options->protocol & SSH_PROTO_2) { options->host_key_files[options->num_host_key_files++] = _PATH_HOST_RSA_KEY_FILE; options->host_key_files[options->num_host_key_files++] = _PATH_HOST_DSA_KEY_FILE; #ifdef OPENSSL_HAS_ECC options->host_key_files[options->num_host_key_files++] = _PATH_HOST_ECDSA_KEY_FILE; #endif options->host_key_files[options->num_host_key_files++] = _PATH_HOST_ED25519_KEY_FILE; } } /* No certificates by default */ if (options->num_ports == 0) options->ports[options->num_ports++] = SSH_DEFAULT_PORT; if (options->listen_addrs == NULL) add_listen_addr(options, NULL, 0); if (options->pid_file == NULL) options->pid_file = _PATH_SSH_DAEMON_PID_FILE; if (options->server_key_bits == -1) options->server_key_bits = 1024; if (options->login_grace_time == -1) options->login_grace_time = 120; if (options->key_regeneration_time == -1) options->key_regeneration_time = 3600; if (options->permit_root_login == PERMIT_NOT_SET) options->permit_root_login = PERMIT_NO; if (options->ignore_rhosts == -1) options->ignore_rhosts = 1; if (options->ignore_user_known_hosts == -1) options->ignore_user_known_hosts = 0; if (options->print_motd == -1) options->print_motd = 1; if (options->print_lastlog == -1) options->print_lastlog = 1; if (options->x11_forwarding == -1) options->x11_forwarding = 1; if (options->x11_display_offset == -1) options->x11_display_offset = 10; if (options->x11_use_localhost == -1) options->x11_use_localhost = 1; if (options->xauth_location == NULL) options->xauth_location = _PATH_XAUTH; if (options->permit_tty == -1) options->permit_tty = 1; if (options->strict_modes == -1) options->strict_modes = 1; if (options->tcp_keep_alive == -1) options->tcp_keep_alive = 1; if (options->log_facility == SYSLOG_FACILITY_NOT_SET) options->log_facility = SYSLOG_FACILITY_AUTH; if (options->log_level == SYSLOG_LEVEL_NOT_SET) options->log_level = SYSLOG_LEVEL_INFO; if (options->rhosts_rsa_authentication == -1) options->rhosts_rsa_authentication = 0; if (options->hostbased_authentication == -1) options->hostbased_authentication = 0; if (options->hostbased_uses_name_from_packet_only == -1) options->hostbased_uses_name_from_packet_only = 0; if (options->rsa_authentication == -1) options->rsa_authentication = 1; if (options->pubkey_authentication == -1) options->pubkey_authentication = 1; if (options->kerberos_authentication == -1) options->kerberos_authentication = 0; if (options->kerberos_or_local_passwd == -1) options->kerberos_or_local_passwd = 1; if (options->kerberos_ticket_cleanup == -1) options->kerberos_ticket_cleanup = 1; if (options->kerberos_get_afs_token == -1) options->kerberos_get_afs_token = 0; if (options->gss_authentication == -1) options->gss_authentication = 0; if (options->gss_cleanup_creds == -1) options->gss_cleanup_creds = 1; if (options->password_authentication == -1) options->password_authentication = 0; if (options->kbd_interactive_authentication == -1) options->kbd_interactive_authentication = 0; if (options->challenge_response_authentication == -1) options->challenge_response_authentication = 1; if (options->permit_empty_passwd == -1) options->permit_empty_passwd = 0; if (options->permit_user_env == -1) options->permit_user_env = 0; if (options->use_login == -1) options->use_login = 0; if (options->compression == -1) options->compression = COMP_DELAYED; if (options->rekey_limit == -1) options->rekey_limit = 0; if (options->rekey_interval == -1) options->rekey_interval = 0; if (options->allow_tcp_forwarding == -1) options->allow_tcp_forwarding = FORWARD_ALLOW; if (options->allow_agent_forwarding == -1) options->allow_agent_forwarding = 1; if (options->gateway_ports == -1) options->gateway_ports = 0; if (options->max_startups == -1) options->max_startups = 100; if (options->max_startups_rate == -1) options->max_startups_rate = 30; /* 30% */ if (options->max_startups_begin == -1) options->max_startups_begin = 10; if (options->max_authtries == -1) options->max_authtries = DEFAULT_AUTH_FAIL_MAX; if (options->max_sessions == -1) options->max_sessions = DEFAULT_SESSIONS_MAX; if (options->use_dns == -1) options->use_dns = 1; if (options->client_alive_interval == -1) options->client_alive_interval = 0; if (options->client_alive_count_max == -1) options->client_alive_count_max = 3; if (options->num_authkeys_files == 0) { options->authorized_keys_files[options->num_authkeys_files++] = xstrdup(_PATH_SSH_USER_PERMITTED_KEYS); options->authorized_keys_files[options->num_authkeys_files++] = xstrdup(_PATH_SSH_USER_PERMITTED_KEYS2); } if (options->permit_tun == -1) options->permit_tun = SSH_TUNMODE_NO; if (options->ip_qos_interactive == -1) options->ip_qos_interactive = IPTOS_LOWDELAY; if (options->ip_qos_bulk == -1) options->ip_qos_bulk = IPTOS_THROUGHPUT; if (options->version_addendum == NULL) options->version_addendum = xstrdup(SSH_VERSION_FREEBSD); /* Turn privilege separation on by default */ if (use_privsep == -1) use_privsep = PRIVSEP_ON; #ifndef HAVE_MMAP if (use_privsep && options->compression == 1) { error("This platform does not support both privilege " "separation and compression"); error("Compression disabled"); options->compression = 0; } #endif if (options->hpn_disabled == -1) options->hpn_disabled = 0; if (options->hpn_buffer_size == -1) { /* * HPN buffer size option not explicitly set. Try to figure * out what value to use or resort to default. */ options->hpn_buffer_size = CHAN_SES_WINDOW_DEFAULT; if (!options->hpn_disabled) { sock_get_rcvbuf(&options->hpn_buffer_size, 0); debug ("HPN Buffer Size: %d", options->hpn_buffer_size); } } else { /* * In the case that the user sets both values in a * contradictory manner hpn_disabled overrrides hpn_buffer_size. */ if (options->hpn_disabled <= 0) { u_int maxlen; maxlen = buffer_get_max_len(); if (options->hpn_buffer_size == 0) options->hpn_buffer_size = 1; /* Limit the maximum buffer to BUFFER_MAX_LEN. */ if (options->hpn_buffer_size > maxlen / 1024) options->hpn_buffer_size = maxlen; else options->hpn_buffer_size *= 1024; } else { options->hpn_buffer_size = CHAN_TCP_WINDOW_DEFAULT; } } } /* Keyword tokens. */ typedef enum { sBadOption, /* == unknown option */ /* Portable-specific options */ sUsePAM, /* Standard Options */ sPort, sHostKeyFile, sServerKeyBits, sLoginGraceTime, sKeyRegenerationTime, sPermitRootLogin, sLogFacility, sLogLevel, sRhostsRSAAuthentication, sRSAAuthentication, sKerberosAuthentication, sKerberosOrLocalPasswd, sKerberosTicketCleanup, sKerberosGetAFSToken, sKerberosTgtPassing, sChallengeResponseAuthentication, sPasswordAuthentication, sKbdInteractiveAuthentication, sListenAddress, sAddressFamily, sPrintMotd, sPrintLastLog, sIgnoreRhosts, sX11Forwarding, sX11DisplayOffset, sX11UseLocalhost, sPermitTTY, sStrictModes, sEmptyPasswd, sTCPKeepAlive, sPermitUserEnvironment, sUseLogin, sAllowTcpForwarding, sCompression, sRekeyLimit, sAllowUsers, sDenyUsers, sAllowGroups, sDenyGroups, sIgnoreUserKnownHosts, sCiphers, sMacs, sProtocol, sPidFile, sGatewayPorts, sPubkeyAuthentication, sXAuthLocation, sSubsystem, sMaxStartups, sMaxAuthTries, sMaxSessions, sBanner, sUseDNS, sHostbasedAuthentication, sHostbasedUsesNameFromPacketOnly, sClientAliveInterval, sClientAliveCountMax, sAuthorizedKeysFile, sGssAuthentication, sGssCleanupCreds, sAcceptEnv, sPermitTunnel, sMatch, sPermitOpen, sForceCommand, sChrootDirectory, sUsePrivilegeSeparation, sAllowAgentForwarding, sHostCertificate, sRevokedKeys, sTrustedUserCAKeys, sAuthorizedPrincipalsFile, sKexAlgorithms, sIPQoS, sVersionAddendum, sAuthorizedKeysCommand, sAuthorizedKeysCommandUser, sAuthenticationMethods, sHostKeyAgent, sHPNDisabled, sHPNBufferSize, sTcpRcvBufPoll, -#ifdef NONE_CIPHER_ENABLED - sNoneEnabled, -#endif sDeprecated, sUnsupported } ServerOpCodes; #define SSHCFG_GLOBAL 0x01 /* allowed in main section of sshd_config */ #define SSHCFG_MATCH 0x02 /* allowed inside a Match section */ #define SSHCFG_ALL (SSHCFG_GLOBAL|SSHCFG_MATCH) /* Textual representation of the tokens. */ static struct { const char *name; ServerOpCodes opcode; u_int flags; } keywords[] = { /* Portable-specific options */ #ifdef USE_PAM { "usepam", sUsePAM, SSHCFG_GLOBAL }, #else { "usepam", sUnsupported, SSHCFG_GLOBAL }, #endif { "pamauthenticationviakbdint", sDeprecated, SSHCFG_GLOBAL }, /* Standard Options */ { "port", sPort, SSHCFG_GLOBAL }, { "hostkey", sHostKeyFile, SSHCFG_GLOBAL }, { "hostdsakey", sHostKeyFile, SSHCFG_GLOBAL }, /* alias */ { "hostkeyagent", sHostKeyAgent, SSHCFG_GLOBAL }, { "pidfile", sPidFile, SSHCFG_GLOBAL }, { "serverkeybits", sServerKeyBits, SSHCFG_GLOBAL }, { "logingracetime", sLoginGraceTime, SSHCFG_GLOBAL }, { "keyregenerationinterval", sKeyRegenerationTime, SSHCFG_GLOBAL }, { "permitrootlogin", sPermitRootLogin, SSHCFG_ALL }, { "syslogfacility", sLogFacility, SSHCFG_GLOBAL }, { "loglevel", sLogLevel, SSHCFG_GLOBAL }, { "rhostsauthentication", sDeprecated, SSHCFG_GLOBAL }, { "rhostsrsaauthentication", sRhostsRSAAuthentication, SSHCFG_ALL }, { "hostbasedauthentication", sHostbasedAuthentication, SSHCFG_ALL }, { "hostbasedusesnamefrompacketonly", sHostbasedUsesNameFromPacketOnly, SSHCFG_ALL }, { "rsaauthentication", sRSAAuthentication, SSHCFG_ALL }, { "pubkeyauthentication", sPubkeyAuthentication, SSHCFG_ALL }, { "dsaauthentication", sPubkeyAuthentication, SSHCFG_GLOBAL }, /* alias */ #ifdef KRB5 { "kerberosauthentication", sKerberosAuthentication, SSHCFG_ALL }, { "kerberosorlocalpasswd", sKerberosOrLocalPasswd, SSHCFG_GLOBAL }, { "kerberosticketcleanup", sKerberosTicketCleanup, SSHCFG_GLOBAL }, #ifdef USE_AFS { "kerberosgetafstoken", sKerberosGetAFSToken, SSHCFG_GLOBAL }, #else { "kerberosgetafstoken", sUnsupported, SSHCFG_GLOBAL }, #endif #else { "kerberosauthentication", sUnsupported, SSHCFG_ALL }, { "kerberosorlocalpasswd", sUnsupported, SSHCFG_GLOBAL }, { "kerberosticketcleanup", sUnsupported, SSHCFG_GLOBAL }, { "kerberosgetafstoken", sUnsupported, SSHCFG_GLOBAL }, #endif { "kerberostgtpassing", sUnsupported, SSHCFG_GLOBAL }, { "afstokenpassing", sUnsupported, SSHCFG_GLOBAL }, #ifdef GSSAPI { "gssapiauthentication", sGssAuthentication, SSHCFG_ALL }, { "gssapicleanupcredentials", sGssCleanupCreds, SSHCFG_GLOBAL }, #else { "gssapiauthentication", sUnsupported, SSHCFG_ALL }, { "gssapicleanupcredentials", sUnsupported, SSHCFG_GLOBAL }, #endif { "passwordauthentication", sPasswordAuthentication, SSHCFG_ALL }, { "kbdinteractiveauthentication", sKbdInteractiveAuthentication, SSHCFG_ALL }, { "challengeresponseauthentication", sChallengeResponseAuthentication, SSHCFG_GLOBAL }, { "skeyauthentication", sChallengeResponseAuthentication, SSHCFG_GLOBAL }, /* alias */ { "checkmail", sDeprecated, SSHCFG_GLOBAL }, { "listenaddress", sListenAddress, SSHCFG_GLOBAL }, { "addressfamily", sAddressFamily, SSHCFG_GLOBAL }, { "printmotd", sPrintMotd, SSHCFG_GLOBAL }, { "printlastlog", sPrintLastLog, SSHCFG_GLOBAL }, { "ignorerhosts", sIgnoreRhosts, SSHCFG_GLOBAL }, { "ignoreuserknownhosts", sIgnoreUserKnownHosts, SSHCFG_GLOBAL }, { "x11forwarding", sX11Forwarding, SSHCFG_ALL }, { "x11displayoffset", sX11DisplayOffset, SSHCFG_ALL }, { "x11uselocalhost", sX11UseLocalhost, SSHCFG_ALL }, { "xauthlocation", sXAuthLocation, SSHCFG_GLOBAL }, { "strictmodes", sStrictModes, SSHCFG_GLOBAL }, { "permitemptypasswords", sEmptyPasswd, SSHCFG_ALL }, { "permituserenvironment", sPermitUserEnvironment, SSHCFG_GLOBAL }, { "uselogin", sUseLogin, SSHCFG_GLOBAL }, { "compression", sCompression, SSHCFG_GLOBAL }, { "rekeylimit", sRekeyLimit, SSHCFG_ALL }, { "tcpkeepalive", sTCPKeepAlive, SSHCFG_GLOBAL }, { "keepalive", sTCPKeepAlive, SSHCFG_GLOBAL }, /* obsolete alias */ { "allowtcpforwarding", sAllowTcpForwarding, SSHCFG_ALL }, { "allowagentforwarding", sAllowAgentForwarding, SSHCFG_ALL }, { "allowusers", sAllowUsers, SSHCFG_ALL }, { "denyusers", sDenyUsers, SSHCFG_ALL }, { "allowgroups", sAllowGroups, SSHCFG_ALL }, { "denygroups", sDenyGroups, SSHCFG_ALL }, { "ciphers", sCiphers, SSHCFG_GLOBAL }, { "macs", sMacs, SSHCFG_GLOBAL }, { "protocol", sProtocol, SSHCFG_GLOBAL }, { "gatewayports", sGatewayPorts, SSHCFG_ALL }, { "subsystem", sSubsystem, SSHCFG_GLOBAL }, { "maxstartups", sMaxStartups, SSHCFG_GLOBAL }, { "maxauthtries", sMaxAuthTries, SSHCFG_ALL }, { "maxsessions", sMaxSessions, SSHCFG_ALL }, { "banner", sBanner, SSHCFG_ALL }, { "usedns", sUseDNS, SSHCFG_GLOBAL }, { "verifyreversemapping", sDeprecated, SSHCFG_GLOBAL }, { "reversemappingcheck", sDeprecated, SSHCFG_GLOBAL }, { "clientaliveinterval", sClientAliveInterval, SSHCFG_GLOBAL }, { "clientalivecountmax", sClientAliveCountMax, SSHCFG_GLOBAL }, { "authorizedkeysfile", sAuthorizedKeysFile, SSHCFG_ALL }, { "authorizedkeysfile2", sDeprecated, SSHCFG_ALL }, { "useprivilegeseparation", sUsePrivilegeSeparation, SSHCFG_GLOBAL}, { "acceptenv", sAcceptEnv, SSHCFG_ALL }, { "permittunnel", sPermitTunnel, SSHCFG_ALL }, { "permittty", sPermitTTY, SSHCFG_ALL }, { "match", sMatch, SSHCFG_ALL }, { "permitopen", sPermitOpen, SSHCFG_ALL }, { "forcecommand", sForceCommand, SSHCFG_ALL }, { "chrootdirectory", sChrootDirectory, SSHCFG_ALL }, { "hostcertificate", sHostCertificate, SSHCFG_GLOBAL }, { "revokedkeys", sRevokedKeys, SSHCFG_ALL }, { "trustedusercakeys", sTrustedUserCAKeys, SSHCFG_ALL }, { "authorizedprincipalsfile", sAuthorizedPrincipalsFile, SSHCFG_ALL }, { "kexalgorithms", sKexAlgorithms, SSHCFG_GLOBAL }, { "ipqos", sIPQoS, SSHCFG_ALL }, { "authorizedkeyscommand", sAuthorizedKeysCommand, SSHCFG_ALL }, { "authorizedkeyscommanduser", sAuthorizedKeysCommandUser, SSHCFG_ALL }, { "versionaddendum", sVersionAddendum, SSHCFG_GLOBAL }, { "authenticationmethods", sAuthenticationMethods, SSHCFG_ALL }, { "hpndisabled", sHPNDisabled, SSHCFG_ALL }, { "hpnbuffersize", sHPNBufferSize, SSHCFG_ALL }, { "tcprcvbufpoll", sTcpRcvBufPoll, SSHCFG_ALL }, -#ifdef NONE_CIPHER_ENABLED - { "noneenabled", sNoneEnabled, SSHCFG_ALL }, -#endif { NULL, sBadOption, 0 } }; static struct { int val; char *text; } tunmode_desc[] = { { SSH_TUNMODE_NO, "no" }, { SSH_TUNMODE_POINTOPOINT, "point-to-point" }, { SSH_TUNMODE_ETHERNET, "ethernet" }, { SSH_TUNMODE_YES, "yes" }, { -1, NULL } }; /* * Returns the number of the token pointed to by cp or sBadOption. */ static ServerOpCodes parse_token(const char *cp, const char *filename, int linenum, u_int *flags) { u_int i; for (i = 0; keywords[i].name; i++) if (strcasecmp(cp, keywords[i].name) == 0) { *flags = keywords[i].flags; return keywords[i].opcode; } error("%s: line %d: Bad configuration option: %s", filename, linenum, cp); return sBadOption; } char * derelativise_path(const char *path) { char *expanded, *ret, cwd[MAXPATHLEN]; expanded = tilde_expand_filename(path, getuid()); if (*expanded == '/') return expanded; if (getcwd(cwd, sizeof(cwd)) == NULL) fatal("%s: getcwd: %s", __func__, strerror(errno)); xasprintf(&ret, "%s/%s", cwd, expanded); free(expanded); return ret; } static void add_listen_addr(ServerOptions *options, char *addr, int port) { u_int i; if (options->num_ports == 0) options->ports[options->num_ports++] = SSH_DEFAULT_PORT; if (options->address_family == -1) options->address_family = AF_UNSPEC; if (port == 0) for (i = 0; i < options->num_ports; i++) add_one_listen_addr(options, addr, options->ports[i]); else add_one_listen_addr(options, addr, port); } static void add_one_listen_addr(ServerOptions *options, char *addr, int port) { struct addrinfo hints, *ai, *aitop; char strport[NI_MAXSERV]; int gaierr; memset(&hints, 0, sizeof(hints)); hints.ai_family = options->address_family; hints.ai_socktype = SOCK_STREAM; hints.ai_flags = (addr == NULL) ? AI_PASSIVE : 0; snprintf(strport, sizeof strport, "%d", port); if ((gaierr = getaddrinfo(addr, strport, &hints, &aitop)) != 0) fatal("bad addr or host: %s (%s)", addr ? addr : "", ssh_gai_strerror(gaierr)); for (ai = aitop; ai->ai_next; ai = ai->ai_next) ; ai->ai_next = options->listen_addrs; options->listen_addrs = aitop; } struct connection_info * get_connection_info(int populate, int use_dns) { static struct connection_info ci; if (!populate) return &ci; ci.host = get_canonical_hostname(use_dns); ci.address = get_remote_ipaddr(); ci.laddress = get_local_ipaddr(packet_get_connection_in()); ci.lport = get_local_port(); return &ci; } /* * The strategy for the Match blocks is that the config file is parsed twice. * * The first time is at startup. activep is initialized to 1 and the * directives in the global context are processed and acted on. Hitting a * Match directive unsets activep and the directives inside the block are * checked for syntax only. * * The second time is after a connection has been established but before * authentication. activep is initialized to 2 and global config directives * are ignored since they have already been processed. If the criteria in a * Match block is met, activep is set and the subsequent directives * processed and actioned until EOF or another Match block unsets it. Any * options set are copied into the main server config. * * Potential additions/improvements: * - Add Match support for pre-kex directives, eg Protocol, Ciphers. * * - Add a Tag directive (idea from David Leonard) ala pf, eg: * Match Address 192.168.0.* * Tag trusted * Match Group wheel * Tag trusted * Match Tag trusted * AllowTcpForwarding yes * GatewayPorts clientspecified * [...] * * - Add a PermittedChannelRequests directive * Match Group shell * PermittedChannelRequests session,forwarded-tcpip */ static int match_cfg_line_group(const char *grps, int line, const char *user) { int result = 0; struct passwd *pw; if (user == NULL) goto out; if ((pw = getpwnam(user)) == NULL) { debug("Can't match group at line %d because user %.100s does " "not exist", line, user); } else if (ga_init(pw->pw_name, pw->pw_gid) == 0) { debug("Can't Match group because user %.100s not in any group " "at line %d", user, line); } else if (ga_match_pattern_list(grps) != 1) { debug("user %.100s does not match group list %.100s at line %d", user, grps, line); } else { debug("user %.100s matched group list %.100s at line %d", user, grps, line); result = 1; } out: ga_free(); return result; } /* * All of the attributes on a single Match line are ANDed together, so we need * to check every attribute and set the result to zero if any attribute does * not match. */ static int match_cfg_line(char **condition, int line, struct connection_info *ci) { int result = 1, attributes = 0, port; char *arg, *attrib, *cp = *condition; size_t len; if (ci == NULL) debug3("checking syntax for 'Match %s'", cp); else debug3("checking match for '%s' user %s host %s addr %s " "laddr %s lport %d", cp, ci->user ? ci->user : "(null)", ci->host ? ci->host : "(null)", ci->address ? ci->address : "(null)", ci->laddress ? ci->laddress : "(null)", ci->lport); while ((attrib = strdelim(&cp)) && *attrib != '\0') { attributes++; if (strcasecmp(attrib, "all") == 0) { if (attributes != 1 || ((arg = strdelim(&cp)) != NULL && *arg != '\0')) { error("'all' cannot be combined with other " "Match attributes"); return -1; } *condition = cp; return 1; } if ((arg = strdelim(&cp)) == NULL || *arg == '\0') { error("Missing Match criteria for %s", attrib); return -1; } len = strlen(arg); if (strcasecmp(attrib, "user") == 0) { if (ci == NULL || ci->user == NULL) { result = 0; continue; } if (match_pattern_list(ci->user, arg, len, 0) != 1) result = 0; else debug("user %.100s matched 'User %.100s' at " "line %d", ci->user, arg, line); } else if (strcasecmp(attrib, "group") == 0) { if (ci == NULL || ci->user == NULL) { result = 0; continue; } switch (match_cfg_line_group(arg, line, ci->user)) { case -1: return -1; case 0: result = 0; } } else if (strcasecmp(attrib, "host") == 0) { if (ci == NULL || ci->host == NULL) { result = 0; continue; } if (match_hostname(ci->host, arg, len) != 1) result = 0; else debug("connection from %.100s matched 'Host " "%.100s' at line %d", ci->host, arg, line); } else if (strcasecmp(attrib, "address") == 0) { if (ci == NULL || ci->address == NULL) { result = 0; continue; } switch (addr_match_list(ci->address, arg)) { case 1: debug("connection from %.100s matched 'Address " "%.100s' at line %d", ci->address, arg, line); break; case 0: case -1: result = 0; break; case -2: return -1; } } else if (strcasecmp(attrib, "localaddress") == 0){ if (ci == NULL || ci->laddress == NULL) { result = 0; continue; } switch (addr_match_list(ci->laddress, arg)) { case 1: debug("connection from %.100s matched " "'LocalAddress %.100s' at line %d", ci->laddress, arg, line); break; case 0: case -1: result = 0; break; case -2: return -1; } } else if (strcasecmp(attrib, "localport") == 0) { if ((port = a2port(arg)) == -1) { error("Invalid LocalPort '%s' on Match line", arg); return -1; } if (ci == NULL || ci->lport == 0) { result = 0; continue; } /* TODO support port lists */ if (port == ci->lport) debug("connection from %.100s matched " "'LocalPort %d' at line %d", ci->laddress, port, line); else result = 0; } else { error("Unsupported Match attribute %s", attrib); return -1; } } if (attributes == 0) { error("One or more attributes required for Match"); return -1; } if (ci != NULL) debug3("match %sfound", result ? "" : "not "); *condition = cp; return result; } #define WHITESPACE " \t\r\n" /* Multistate option parsing */ struct multistate { char *key; int value; }; static const struct multistate multistate_addressfamily[] = { { "inet", AF_INET }, { "inet6", AF_INET6 }, { "any", AF_UNSPEC }, { NULL, -1 } }; static const struct multistate multistate_permitrootlogin[] = { { "without-password", PERMIT_NO_PASSWD }, { "forced-commands-only", PERMIT_FORCED_ONLY }, { "yes", PERMIT_YES }, { "no", PERMIT_NO }, { NULL, -1 } }; static const struct multistate multistate_compression[] = { { "delayed", COMP_DELAYED }, { "yes", COMP_ZLIB }, { "no", COMP_NONE }, { NULL, -1 } }; static const struct multistate multistate_gatewayports[] = { { "clientspecified", 2 }, { "yes", 1 }, { "no", 0 }, { NULL, -1 } }; static const struct multistate multistate_privsep[] = { { "yes", PRIVSEP_NOSANDBOX }, { "sandbox", PRIVSEP_ON }, { "nosandbox", PRIVSEP_NOSANDBOX }, { "no", PRIVSEP_OFF }, { NULL, -1 } }; static const struct multistate multistate_tcpfwd[] = { { "yes", FORWARD_ALLOW }, { "all", FORWARD_ALLOW }, { "no", FORWARD_DENY }, { "remote", FORWARD_REMOTE }, { "local", FORWARD_LOCAL }, { NULL, -1 } }; int process_server_config_line(ServerOptions *options, char *line, const char *filename, int linenum, int *activep, struct connection_info *connectinfo) { char *cp, **charptr, *arg, *p; int cmdline = 0, *intptr, value, value2, n, port; SyslogFacility *log_facility_ptr; LogLevel *log_level_ptr; ServerOpCodes opcode; u_int i, flags = 0; size_t len; long long val64; const struct multistate *multistate_ptr; cp = line; if ((arg = strdelim(&cp)) == NULL) return 0; /* Ignore leading whitespace */ if (*arg == '\0') arg = strdelim(&cp); if (!arg || !*arg || *arg == '#') return 0; intptr = NULL; charptr = NULL; opcode = parse_token(arg, filename, linenum, &flags); if (activep == NULL) { /* We are processing a command line directive */ cmdline = 1; activep = &cmdline; } if (*activep && opcode != sMatch) debug3("%s:%d setting %s %s", filename, linenum, arg, cp); if (*activep == 0 && !(flags & SSHCFG_MATCH)) { if (connectinfo == NULL) { fatal("%s line %d: Directive '%s' is not allowed " "within a Match block", filename, linenum, arg); } else { /* this is a directive we have already processed */ while (arg) arg = strdelim(&cp); return 0; } } switch (opcode) { /* Portable-specific options */ case sUsePAM: intptr = &options->use_pam; goto parse_flag; /* Standard Options */ case sBadOption: return -1; case sPort: /* ignore ports from configfile if cmdline specifies ports */ if (options->ports_from_cmdline) return 0; if (options->listen_addrs != NULL) fatal("%s line %d: ports must be specified before " "ListenAddress.", filename, linenum); if (options->num_ports >= MAX_PORTS) fatal("%s line %d: too many ports.", filename, linenum); arg = strdelim(&cp); if (!arg || *arg == '\0') fatal("%s line %d: missing port number.", filename, linenum); options->ports[options->num_ports++] = a2port(arg); if (options->ports[options->num_ports-1] <= 0) fatal("%s line %d: Badly formatted port number.", filename, linenum); break; case sServerKeyBits: intptr = &options->server_key_bits; parse_int: arg = strdelim(&cp); if (!arg || *arg == '\0') fatal("%s line %d: missing integer value.", filename, linenum); value = atoi(arg); if (*activep && *intptr == -1) *intptr = value; break; case sLoginGraceTime: intptr = &options->login_grace_time; parse_time: arg = strdelim(&cp); if (!arg || *arg == '\0') fatal("%s line %d: missing time value.", filename, linenum); if ((value = convtime(arg)) == -1) fatal("%s line %d: invalid time value.", filename, linenum); if (*intptr == -1) *intptr = value; break; case sKeyRegenerationTime: intptr = &options->key_regeneration_time; goto parse_time; case sListenAddress: arg = strdelim(&cp); if (arg == NULL || *arg == '\0') fatal("%s line %d: missing address", filename, linenum); /* check for bare IPv6 address: no "[]" and 2 or more ":" */ if (strchr(arg, '[') == NULL && (p = strchr(arg, ':')) != NULL && strchr(p+1, ':') != NULL) { add_listen_addr(options, arg, 0); break; } p = hpdelim(&arg); if (p == NULL) fatal("%s line %d: bad address:port usage", filename, linenum); p = cleanhostname(p); if (arg == NULL) port = 0; else if ((port = a2port(arg)) <= 0) fatal("%s line %d: bad port number", filename, linenum); add_listen_addr(options, p, port); break; case sAddressFamily: intptr = &options->address_family; multistate_ptr = multistate_addressfamily; if (options->listen_addrs != NULL) fatal("%s line %d: address family must be specified " "before ListenAddress.", filename, linenum); parse_multistate: arg = strdelim(&cp); if (!arg || *arg == '\0') fatal("%s line %d: missing argument.", filename, linenum); value = -1; for (i = 0; multistate_ptr[i].key != NULL; i++) { if (strcasecmp(arg, multistate_ptr[i].key) == 0) { value = multistate_ptr[i].value; break; } } if (value == -1) fatal("%s line %d: unsupported option \"%s\".", filename, linenum, arg); if (*activep && *intptr == -1) *intptr = value; break; case sHostKeyFile: intptr = &options->num_host_key_files; if (*intptr >= MAX_HOSTKEYS) fatal("%s line %d: too many host keys specified (max %d).", filename, linenum, MAX_HOSTKEYS); charptr = &options->host_key_files[*intptr]; parse_filename: arg = strdelim(&cp); if (!arg || *arg == '\0') fatal("%s line %d: missing file name.", filename, linenum); if (*activep && *charptr == NULL) { *charptr = derelativise_path(arg); /* increase optional counter */ if (intptr != NULL) *intptr = *intptr + 1; } break; case sHostKeyAgent: charptr = &options->host_key_agent; arg = strdelim(&cp); if (!arg || *arg == '\0') fatal("%s line %d: missing socket name.", filename, linenum); if (*activep && *charptr == NULL) *charptr = !strcmp(arg, SSH_AUTHSOCKET_ENV_NAME) ? xstrdup(arg) : derelativise_path(arg); break; case sHostCertificate: intptr = &options->num_host_cert_files; if (*intptr >= MAX_HOSTKEYS) fatal("%s line %d: too many host certificates " "specified (max %d).", filename, linenum, MAX_HOSTCERTS); charptr = &options->host_cert_files[*intptr]; goto parse_filename; break; case sPidFile: charptr = &options->pid_file; goto parse_filename; case sPermitRootLogin: intptr = &options->permit_root_login; multistate_ptr = multistate_permitrootlogin; goto parse_multistate; case sIgnoreRhosts: intptr = &options->ignore_rhosts; parse_flag: arg = strdelim(&cp); if (!arg || *arg == '\0') fatal("%s line %d: missing yes/no argument.", filename, linenum); value = 0; /* silence compiler */ if (strcmp(arg, "yes") == 0) value = 1; else if (strcmp(arg, "no") == 0) value = 0; else fatal("%s line %d: Bad yes/no argument: %s", filename, linenum, arg); if (*activep && *intptr == -1) *intptr = value; break; case sIgnoreUserKnownHosts: intptr = &options->ignore_user_known_hosts; goto parse_flag; case sRhostsRSAAuthentication: intptr = &options->rhosts_rsa_authentication; goto parse_flag; case sHostbasedAuthentication: intptr = &options->hostbased_authentication; goto parse_flag; case sHostbasedUsesNameFromPacketOnly: intptr = &options->hostbased_uses_name_from_packet_only; goto parse_flag; case sRSAAuthentication: intptr = &options->rsa_authentication; goto parse_flag; case sPubkeyAuthentication: intptr = &options->pubkey_authentication; goto parse_flag; case sKerberosAuthentication: intptr = &options->kerberos_authentication; goto parse_flag; case sKerberosOrLocalPasswd: intptr = &options->kerberos_or_local_passwd; goto parse_flag; case sKerberosTicketCleanup: intptr = &options->kerberos_ticket_cleanup; goto parse_flag; case sKerberosGetAFSToken: intptr = &options->kerberos_get_afs_token; goto parse_flag; case sGssAuthentication: intptr = &options->gss_authentication; goto parse_flag; case sGssCleanupCreds: intptr = &options->gss_cleanup_creds; goto parse_flag; case sPasswordAuthentication: intptr = &options->password_authentication; goto parse_flag; case sKbdInteractiveAuthentication: intptr = &options->kbd_interactive_authentication; goto parse_flag; case sChallengeResponseAuthentication: intptr = &options->challenge_response_authentication; goto parse_flag; case sPrintMotd: intptr = &options->print_motd; goto parse_flag; case sPrintLastLog: intptr = &options->print_lastlog; goto parse_flag; case sX11Forwarding: intptr = &options->x11_forwarding; goto parse_flag; case sX11DisplayOffset: intptr = &options->x11_display_offset; goto parse_int; case sX11UseLocalhost: intptr = &options->x11_use_localhost; goto parse_flag; case sXAuthLocation: charptr = &options->xauth_location; goto parse_filename; case sPermitTTY: intptr = &options->permit_tty; goto parse_flag; case sStrictModes: intptr = &options->strict_modes; goto parse_flag; case sTCPKeepAlive: intptr = &options->tcp_keep_alive; goto parse_flag; case sEmptyPasswd: intptr = &options->permit_empty_passwd; goto parse_flag; case sPermitUserEnvironment: intptr = &options->permit_user_env; goto parse_flag; case sUseLogin: intptr = &options->use_login; goto parse_flag; case sCompression: intptr = &options->compression; multistate_ptr = multistate_compression; goto parse_multistate; case sRekeyLimit: arg = strdelim(&cp); if (!arg || *arg == '\0') fatal("%.200s line %d: Missing argument.", filename, linenum); if (strcmp(arg, "default") == 0) { val64 = 0; } else { if (scan_scaled(arg, &val64) == -1) fatal("%.200s line %d: Bad number '%s': %s", filename, linenum, arg, strerror(errno)); /* check for too-large or too-small limits */ if (val64 > UINT_MAX) fatal("%.200s line %d: RekeyLimit too large", filename, linenum); if (val64 != 0 && val64 < 16) fatal("%.200s line %d: RekeyLimit too small", filename, linenum); } if (*activep && options->rekey_limit == -1) options->rekey_limit = (u_int32_t)val64; if (cp != NULL) { /* optional rekey interval present */ if (strcmp(cp, "none") == 0) { (void)strdelim(&cp); /* discard */ break; } intptr = &options->rekey_interval; goto parse_time; } break; case sGatewayPorts: intptr = &options->gateway_ports; multistate_ptr = multistate_gatewayports; goto parse_multistate; case sUseDNS: intptr = &options->use_dns; goto parse_flag; case sLogFacility: log_facility_ptr = &options->log_facility; arg = strdelim(&cp); value = log_facility_number(arg); if (value == SYSLOG_FACILITY_NOT_SET) fatal("%.200s line %d: unsupported log facility '%s'", filename, linenum, arg ? arg : ""); if (*log_facility_ptr == -1) *log_facility_ptr = (SyslogFacility) value; break; case sLogLevel: log_level_ptr = &options->log_level; arg = strdelim(&cp); value = log_level_number(arg); if (value == SYSLOG_LEVEL_NOT_SET) fatal("%.200s line %d: unsupported log level '%s'", filename, linenum, arg ? arg : ""); if (*log_level_ptr == -1) *log_level_ptr = (LogLevel) value; break; case sAllowTcpForwarding: intptr = &options->allow_tcp_forwarding; multistate_ptr = multistate_tcpfwd; goto parse_multistate; case sAllowAgentForwarding: intptr = &options->allow_agent_forwarding; goto parse_flag; case sUsePrivilegeSeparation: intptr = &use_privsep; multistate_ptr = multistate_privsep; goto parse_multistate; case sAllowUsers: while ((arg = strdelim(&cp)) && *arg != '\0') { if (options->num_allow_users >= MAX_ALLOW_USERS) fatal("%s line %d: too many allow users.", filename, linenum); if (!*activep) continue; options->allow_users[options->num_allow_users++] = xstrdup(arg); } break; case sDenyUsers: while ((arg = strdelim(&cp)) && *arg != '\0') { if (options->num_deny_users >= MAX_DENY_USERS) fatal("%s line %d: too many deny users.", filename, linenum); if (!*activep) continue; options->deny_users[options->num_deny_users++] = xstrdup(arg); } break; case sAllowGroups: while ((arg = strdelim(&cp)) && *arg != '\0') { if (options->num_allow_groups >= MAX_ALLOW_GROUPS) fatal("%s line %d: too many allow groups.", filename, linenum); if (!*activep) continue; options->allow_groups[options->num_allow_groups++] = xstrdup(arg); } break; case sDenyGroups: while ((arg = strdelim(&cp)) && *arg != '\0') { if (options->num_deny_groups >= MAX_DENY_GROUPS) fatal("%s line %d: too many deny groups.", filename, linenum); if (!*activep) continue; options->deny_groups[options->num_deny_groups++] = xstrdup(arg); } break; case sCiphers: arg = strdelim(&cp); if (!arg || *arg == '\0') fatal("%s line %d: Missing argument.", filename, linenum); if (!ciphers_valid(arg)) fatal("%s line %d: Bad SSH2 cipher spec '%s'.", filename, linenum, arg ? arg : ""); if (options->ciphers == NULL) options->ciphers = xstrdup(arg); break; case sMacs: arg = strdelim(&cp); if (!arg || *arg == '\0') fatal("%s line %d: Missing argument.", filename, linenum); if (!mac_valid(arg)) fatal("%s line %d: Bad SSH2 mac spec '%s'.", filename, linenum, arg ? arg : ""); if (options->macs == NULL) options->macs = xstrdup(arg); break; case sKexAlgorithms: arg = strdelim(&cp); if (!arg || *arg == '\0') fatal("%s line %d: Missing argument.", filename, linenum); if (!kex_names_valid(arg)) fatal("%s line %d: Bad SSH2 KexAlgorithms '%s'.", filename, linenum, arg ? arg : ""); if (options->kex_algorithms == NULL) options->kex_algorithms = xstrdup(arg); break; case sProtocol: intptr = &options->protocol; arg = strdelim(&cp); if (!arg || *arg == '\0') fatal("%s line %d: Missing argument.", filename, linenum); value = proto_spec(arg); if (value == SSH_PROTO_UNKNOWN) fatal("%s line %d: Bad protocol spec '%s'.", filename, linenum, arg ? arg : ""); if (*intptr == SSH_PROTO_UNKNOWN) *intptr = value; break; case sSubsystem: if (options->num_subsystems >= MAX_SUBSYSTEMS) { fatal("%s line %d: too many subsystems defined.", filename, linenum); } arg = strdelim(&cp); if (!arg || *arg == '\0') fatal("%s line %d: Missing subsystem name.", filename, linenum); if (!*activep) { arg = strdelim(&cp); break; } for (i = 0; i < options->num_subsystems; i++) if (strcmp(arg, options->subsystem_name[i]) == 0) fatal("%s line %d: Subsystem '%s' already defined.", filename, linenum, arg); options->subsystem_name[options->num_subsystems] = xstrdup(arg); arg = strdelim(&cp); if (!arg || *arg == '\0') fatal("%s line %d: Missing subsystem command.", filename, linenum); options->subsystem_command[options->num_subsystems] = xstrdup(arg); /* Collect arguments (separate to executable) */ p = xstrdup(arg); len = strlen(p) + 1; while ((arg = strdelim(&cp)) != NULL && *arg != '\0') { len += 1 + strlen(arg); p = xrealloc(p, 1, len); strlcat(p, " ", len); strlcat(p, arg, len); } options->subsystem_args[options->num_subsystems] = p; options->num_subsystems++; break; case sMaxStartups: arg = strdelim(&cp); if (!arg || *arg == '\0') fatal("%s line %d: Missing MaxStartups spec.", filename, linenum); if ((n = sscanf(arg, "%d:%d:%d", &options->max_startups_begin, &options->max_startups_rate, &options->max_startups)) == 3) { if (options->max_startups_begin > options->max_startups || options->max_startups_rate > 100 || options->max_startups_rate < 1) fatal("%s line %d: Illegal MaxStartups spec.", filename, linenum); } else if (n != 1) fatal("%s line %d: Illegal MaxStartups spec.", filename, linenum); else options->max_startups = options->max_startups_begin; break; case sMaxAuthTries: intptr = &options->max_authtries; goto parse_int; case sMaxSessions: intptr = &options->max_sessions; goto parse_int; case sBanner: charptr = &options->banner; goto parse_filename; /* * These options can contain %X options expanded at * connect time, so that you can specify paths like: * * AuthorizedKeysFile /etc/ssh_keys/%u */ case sAuthorizedKeysFile: if (*activep && options->num_authkeys_files == 0) { while ((arg = strdelim(&cp)) && *arg != '\0') { if (options->num_authkeys_files >= MAX_AUTHKEYS_FILES) fatal("%s line %d: " "too many authorized keys files.", filename, linenum); options->authorized_keys_files[ options->num_authkeys_files++] = tilde_expand_filename(arg, getuid()); } } return 0; case sAuthorizedPrincipalsFile: charptr = &options->authorized_principals_file; arg = strdelim(&cp); if (!arg || *arg == '\0') fatal("%s line %d: missing file name.", filename, linenum); if (*activep && *charptr == NULL) { *charptr = tilde_expand_filename(arg, getuid()); /* increase optional counter */ if (intptr != NULL) *intptr = *intptr + 1; } break; case sClientAliveInterval: intptr = &options->client_alive_interval; goto parse_time; case sClientAliveCountMax: intptr = &options->client_alive_count_max; goto parse_int; case sAcceptEnv: while ((arg = strdelim(&cp)) && *arg != '\0') { if (strchr(arg, '=') != NULL) fatal("%s line %d: Invalid environment name.", filename, linenum); if (options->num_accept_env >= MAX_ACCEPT_ENV) fatal("%s line %d: too many allow env.", filename, linenum); if (!*activep) continue; options->accept_env[options->num_accept_env++] = xstrdup(arg); } break; case sPermitTunnel: intptr = &options->permit_tun; arg = strdelim(&cp); if (!arg || *arg == '\0') fatal("%s line %d: Missing yes/point-to-point/" "ethernet/no argument.", filename, linenum); value = -1; for (i = 0; tunmode_desc[i].val != -1; i++) if (strcmp(tunmode_desc[i].text, arg) == 0) { value = tunmode_desc[i].val; break; } if (value == -1) fatal("%s line %d: Bad yes/point-to-point/ethernet/" "no argument: %s", filename, linenum, arg); if (*intptr == -1) *intptr = value; break; case sMatch: if (cmdline) fatal("Match directive not supported as a command-line " "option"); value = match_cfg_line(&cp, linenum, connectinfo); if (value < 0) fatal("%s line %d: Bad Match condition", filename, linenum); *activep = value; break; case sPermitOpen: arg = strdelim(&cp); if (!arg || *arg == '\0') fatal("%s line %d: missing PermitOpen specification", filename, linenum); n = options->num_permitted_opens; /* modified later */ if (strcmp(arg, "any") == 0) { if (*activep && n == -1) { channel_clear_adm_permitted_opens(); options->num_permitted_opens = 0; } break; } if (strcmp(arg, "none") == 0) { if (*activep && n == -1) { options->num_permitted_opens = 1; channel_disable_adm_local_opens(); } break; } if (*activep && n == -1) channel_clear_adm_permitted_opens(); for (; arg != NULL && *arg != '\0'; arg = strdelim(&cp)) { p = hpdelim(&arg); if (p == NULL) fatal("%s line %d: missing host in PermitOpen", filename, linenum); p = cleanhostname(p); if (arg == NULL || ((port = permitopen_port(arg)) < 0)) fatal("%s line %d: bad port number in " "PermitOpen", filename, linenum); if (*activep && n == -1) options->num_permitted_opens = channel_add_adm_permitted_opens(p, port); } break; case sForceCommand: if (cp == NULL) fatal("%.200s line %d: Missing argument.", filename, linenum); len = strspn(cp, WHITESPACE); if (*activep && options->adm_forced_command == NULL) options->adm_forced_command = xstrdup(cp + len); return 0; case sChrootDirectory: charptr = &options->chroot_directory; arg = strdelim(&cp); if (!arg || *arg == '\0') fatal("%s line %d: missing file name.", filename, linenum); if (*activep && *charptr == NULL) *charptr = xstrdup(arg); break; case sTrustedUserCAKeys: charptr = &options->trusted_user_ca_keys; goto parse_filename; case sRevokedKeys: charptr = &options->revoked_keys_file; goto parse_filename; case sIPQoS: arg = strdelim(&cp); if ((value = parse_ipqos(arg)) == -1) fatal("%s line %d: Bad IPQoS value: %s", filename, linenum, arg); arg = strdelim(&cp); if (arg == NULL) value2 = value; else if ((value2 = parse_ipqos(arg)) == -1) fatal("%s line %d: Bad IPQoS value: %s", filename, linenum, arg); if (*activep) { options->ip_qos_interactive = value; options->ip_qos_bulk = value2; } break; case sVersionAddendum: if (cp == NULL) fatal("%.200s line %d: Missing argument.", filename, linenum); len = strspn(cp, WHITESPACE); if (*activep && options->version_addendum == NULL) { if (strcasecmp(cp + len, "none") == 0) options->version_addendum = xstrdup(""); else if (strchr(cp + len, '\r') != NULL) fatal("%.200s line %d: Invalid argument", filename, linenum); else options->version_addendum = xstrdup(cp + len); } return 0; case sAuthorizedKeysCommand: len = strspn(cp, WHITESPACE); if (*activep && options->authorized_keys_command == NULL) { if (cp[len] != '/' && strcasecmp(cp + len, "none") != 0) fatal("%.200s line %d: AuthorizedKeysCommand " "must be an absolute path", filename, linenum); options->authorized_keys_command = xstrdup(cp + len); } return 0; case sAuthorizedKeysCommandUser: charptr = &options->authorized_keys_command_user; arg = strdelim(&cp); if (*activep && *charptr == NULL) *charptr = xstrdup(arg); break; case sAuthenticationMethods: if (*activep && options->num_auth_methods == 0) { while ((arg = strdelim(&cp)) && *arg != '\0') { if (options->num_auth_methods >= MAX_AUTH_METHODS) fatal("%s line %d: " "too many authentication methods.", filename, linenum); if (auth2_methods_valid(arg, 0) != 0) fatal("%s line %d: invalid " "authentication method list.", filename, linenum); options->auth_methods[ options->num_auth_methods++] = xstrdup(arg); } } return 0; case sHPNDisabled: intptr = &options->hpn_disabled; goto parse_flag; case sHPNBufferSize: intptr = &options->hpn_buffer_size; goto parse_int; case sTcpRcvBufPoll: intptr = &options->tcp_rcv_buf_poll; goto parse_flag; - -#ifdef NONE_CIPHER_ENABLED - case sNoneEnabled: - intptr = &options->none_enabled; - goto parse_flag; -#endif case sDeprecated: logit("%s line %d: Deprecated option %s", filename, linenum, arg); while (arg) arg = strdelim(&cp); break; case sUnsupported: logit("%s line %d: Unsupported option %s", filename, linenum, arg); while (arg) arg = strdelim(&cp); break; default: fatal("%s line %d: Missing handler for opcode %s (%d)", filename, linenum, arg, opcode); } if ((arg = strdelim(&cp)) != NULL && *arg != '\0') fatal("%s line %d: garbage at end of line; \"%.200s\".", filename, linenum, arg); return 0; } /* Reads the server configuration file. */ void load_server_config(const char *filename, Buffer *conf) { char line[4096], *cp; FILE *f; int lineno = 0; debug2("%s: filename %s", __func__, filename); if ((f = fopen(filename, "r")) == NULL) { perror(filename); exit(1); } buffer_clear(conf); while (fgets(line, sizeof(line), f)) { lineno++; if (strlen(line) == sizeof(line) - 1) fatal("%s line %d too long", filename, lineno); /* * Trim out comments and strip whitespace * NB - preserve newlines, they are needed to reproduce * line numbers later for error messages */ if ((cp = strchr(line, '#')) != NULL) memcpy(cp, "\n", 2); cp = line + strspn(line, " \t\r"); buffer_append(conf, cp, strlen(cp)); } buffer_append(conf, "\0", 1); fclose(f); debug2("%s: done config len = %d", __func__, buffer_len(conf)); } void parse_server_match_config(ServerOptions *options, struct connection_info *connectinfo) { ServerOptions mo; initialize_server_options(&mo); parse_server_config(&mo, "reprocess config", &cfg, connectinfo); copy_set_server_options(options, &mo, 0); } int parse_server_match_testspec(struct connection_info *ci, char *spec) { char *p; while ((p = strsep(&spec, ",")) && *p != '\0') { if (strncmp(p, "addr=", 5) == 0) { ci->address = xstrdup(p + 5); } else if (strncmp(p, "host=", 5) == 0) { ci->host = xstrdup(p + 5); } else if (strncmp(p, "user=", 5) == 0) { ci->user = xstrdup(p + 5); } else if (strncmp(p, "laddr=", 6) == 0) { ci->laddress = xstrdup(p + 6); } else if (strncmp(p, "lport=", 6) == 0) { ci->lport = a2port(p + 6); if (ci->lport == -1) { fprintf(stderr, "Invalid port '%s' in test mode" " specification %s\n", p+6, p); return -1; } } else { fprintf(stderr, "Invalid test mode specification %s\n", p); return -1; } } return 0; } /* * returns 1 for a complete spec, 0 for partial spec and -1 for an * empty spec. */ int server_match_spec_complete(struct connection_info *ci) { if (ci->user && ci->host && ci->address) return 1; /* complete */ if (!ci->user && !ci->host && !ci->address) return -1; /* empty */ return 0; /* partial */ } /* * Copy any supported values that are set. * * If the preauth flag is set, we do not bother copying the string or * array values that are not used pre-authentication, because any that we * do use must be explictly sent in mm_getpwnamallow(). */ void copy_set_server_options(ServerOptions *dst, ServerOptions *src, int preauth) { #define M_CP_INTOPT(n) do {\ if (src->n != -1) \ dst->n = src->n; \ } while (0) M_CP_INTOPT(password_authentication); M_CP_INTOPT(gss_authentication); M_CP_INTOPT(rsa_authentication); M_CP_INTOPT(pubkey_authentication); M_CP_INTOPT(kerberos_authentication); M_CP_INTOPT(hostbased_authentication); M_CP_INTOPT(hostbased_uses_name_from_packet_only); M_CP_INTOPT(kbd_interactive_authentication); M_CP_INTOPT(permit_root_login); M_CP_INTOPT(permit_empty_passwd); M_CP_INTOPT(allow_tcp_forwarding); M_CP_INTOPT(allow_agent_forwarding); M_CP_INTOPT(permit_tun); M_CP_INTOPT(gateway_ports); M_CP_INTOPT(x11_display_offset); M_CP_INTOPT(x11_forwarding); M_CP_INTOPT(x11_use_localhost); M_CP_INTOPT(permit_tty); M_CP_INTOPT(max_sessions); M_CP_INTOPT(max_authtries); M_CP_INTOPT(ip_qos_interactive); M_CP_INTOPT(ip_qos_bulk); M_CP_INTOPT(rekey_limit); M_CP_INTOPT(rekey_interval); /* M_CP_STROPT and M_CP_STRARRAYOPT should not appear before here */ #define M_CP_STROPT(n) do {\ if (src->n != NULL && dst->n != src->n) { \ free(dst->n); \ dst->n = src->n; \ } \ } while(0) #define M_CP_STRARRAYOPT(n, num_n) do {\ if (src->num_n != 0) { \ for (dst->num_n = 0; dst->num_n < src->num_n; dst->num_n++) \ dst->n[dst->num_n] = xstrdup(src->n[dst->num_n]); \ } \ } while(0) /* See comment in servconf.h */ COPY_MATCH_STRING_OPTS(); /* * The only things that should be below this point are string options * which are only used after authentication. */ if (preauth) return; M_CP_STROPT(adm_forced_command); M_CP_STROPT(chroot_directory); } #undef M_CP_INTOPT #undef M_CP_STROPT #undef M_CP_STRARRAYOPT void parse_server_config(ServerOptions *options, const char *filename, Buffer *conf, struct connection_info *connectinfo) { int active, linenum, bad_options = 0; char *cp, *obuf, *cbuf; debug2("%s: config %s len %d", __func__, filename, buffer_len(conf)); obuf = cbuf = xstrdup(buffer_ptr(conf)); active = connectinfo ? 0 : 1; linenum = 1; while ((cp = strsep(&cbuf, "\n")) != NULL) { if (process_server_config_line(options, cp, filename, linenum++, &active, connectinfo) != 0) bad_options++; } free(obuf); if (bad_options > 0) fatal("%s: terminating, %d bad configuration options", filename, bad_options); } static const char * fmt_multistate_int(int val, const struct multistate *m) { u_int i; for (i = 0; m[i].key != NULL; i++) { if (m[i].value == val) return m[i].key; } return "UNKNOWN"; } static const char * fmt_intarg(ServerOpCodes code, int val) { if (val == -1) return "unset"; switch (code) { case sAddressFamily: return fmt_multistate_int(val, multistate_addressfamily); case sPermitRootLogin: return fmt_multistate_int(val, multistate_permitrootlogin); case sGatewayPorts: return fmt_multistate_int(val, multistate_gatewayports); case sCompression: return fmt_multistate_int(val, multistate_compression); case sUsePrivilegeSeparation: return fmt_multistate_int(val, multistate_privsep); case sAllowTcpForwarding: return fmt_multistate_int(val, multistate_tcpfwd); case sProtocol: switch (val) { case SSH_PROTO_1: return "1"; case SSH_PROTO_2: return "2"; case (SSH_PROTO_1|SSH_PROTO_2): return "2,1"; default: return "UNKNOWN"; } default: switch (val) { case 0: return "no"; case 1: return "yes"; default: return "UNKNOWN"; } } } static const char * lookup_opcode_name(ServerOpCodes code) { u_int i; for (i = 0; keywords[i].name != NULL; i++) if (keywords[i].opcode == code) return(keywords[i].name); return "UNKNOWN"; } static void dump_cfg_int(ServerOpCodes code, int val) { printf("%s %d\n", lookup_opcode_name(code), val); } static void dump_cfg_fmtint(ServerOpCodes code, int val) { printf("%s %s\n", lookup_opcode_name(code), fmt_intarg(code, val)); } static void dump_cfg_string(ServerOpCodes code, const char *val) { if (val == NULL) return; printf("%s %s\n", lookup_opcode_name(code), val); } static void dump_cfg_strarray(ServerOpCodes code, u_int count, char **vals) { u_int i; for (i = 0; i < count; i++) printf("%s %s\n", lookup_opcode_name(code), vals[i]); } static void dump_cfg_strarray_oneline(ServerOpCodes code, u_int count, char **vals) { u_int i; printf("%s", lookup_opcode_name(code)); for (i = 0; i < count; i++) printf(" %s", vals[i]); printf("\n"); } void dump_config(ServerOptions *o) { u_int i; int ret; struct addrinfo *ai; char addr[NI_MAXHOST], port[NI_MAXSERV], *s = NULL; /* these are usually at the top of the config */ for (i = 0; i < o->num_ports; i++) printf("port %d\n", o->ports[i]); dump_cfg_fmtint(sProtocol, o->protocol); dump_cfg_fmtint(sAddressFamily, o->address_family); /* ListenAddress must be after Port */ for (ai = o->listen_addrs; ai; ai = ai->ai_next) { if ((ret = getnameinfo(ai->ai_addr, ai->ai_addrlen, addr, sizeof(addr), port, sizeof(port), NI_NUMERICHOST|NI_NUMERICSERV)) != 0) { error("getnameinfo failed: %.100s", (ret != EAI_SYSTEM) ? gai_strerror(ret) : strerror(errno)); } else { if (ai->ai_family == AF_INET6) printf("listenaddress [%s]:%s\n", addr, port); else printf("listenaddress %s:%s\n", addr, port); } } /* integer arguments */ #ifdef USE_PAM dump_cfg_int(sUsePAM, o->use_pam); #endif dump_cfg_int(sServerKeyBits, o->server_key_bits); dump_cfg_int(sLoginGraceTime, o->login_grace_time); dump_cfg_int(sKeyRegenerationTime, o->key_regeneration_time); dump_cfg_int(sX11DisplayOffset, o->x11_display_offset); dump_cfg_int(sMaxAuthTries, o->max_authtries); dump_cfg_int(sMaxSessions, o->max_sessions); dump_cfg_int(sClientAliveInterval, o->client_alive_interval); dump_cfg_int(sClientAliveCountMax, o->client_alive_count_max); /* formatted integer arguments */ dump_cfg_fmtint(sPermitRootLogin, o->permit_root_login); dump_cfg_fmtint(sIgnoreRhosts, o->ignore_rhosts); dump_cfg_fmtint(sIgnoreUserKnownHosts, o->ignore_user_known_hosts); dump_cfg_fmtint(sRhostsRSAAuthentication, o->rhosts_rsa_authentication); dump_cfg_fmtint(sHostbasedAuthentication, o->hostbased_authentication); dump_cfg_fmtint(sHostbasedUsesNameFromPacketOnly, o->hostbased_uses_name_from_packet_only); dump_cfg_fmtint(sRSAAuthentication, o->rsa_authentication); dump_cfg_fmtint(sPubkeyAuthentication, o->pubkey_authentication); #ifdef KRB5 dump_cfg_fmtint(sKerberosAuthentication, o->kerberos_authentication); dump_cfg_fmtint(sKerberosOrLocalPasswd, o->kerberos_or_local_passwd); dump_cfg_fmtint(sKerberosTicketCleanup, o->kerberos_ticket_cleanup); # ifdef USE_AFS dump_cfg_fmtint(sKerberosGetAFSToken, o->kerberos_get_afs_token); # endif #endif #ifdef GSSAPI dump_cfg_fmtint(sGssAuthentication, o->gss_authentication); dump_cfg_fmtint(sGssCleanupCreds, o->gss_cleanup_creds); #endif dump_cfg_fmtint(sPasswordAuthentication, o->password_authentication); dump_cfg_fmtint(sKbdInteractiveAuthentication, o->kbd_interactive_authentication); dump_cfg_fmtint(sChallengeResponseAuthentication, o->challenge_response_authentication); dump_cfg_fmtint(sPrintMotd, o->print_motd); dump_cfg_fmtint(sPrintLastLog, o->print_lastlog); dump_cfg_fmtint(sX11Forwarding, o->x11_forwarding); dump_cfg_fmtint(sX11UseLocalhost, o->x11_use_localhost); dump_cfg_fmtint(sPermitTTY, o->permit_tty); dump_cfg_fmtint(sStrictModes, o->strict_modes); dump_cfg_fmtint(sTCPKeepAlive, o->tcp_keep_alive); dump_cfg_fmtint(sEmptyPasswd, o->permit_empty_passwd); dump_cfg_fmtint(sPermitUserEnvironment, o->permit_user_env); dump_cfg_fmtint(sUseLogin, o->use_login); dump_cfg_fmtint(sCompression, o->compression); dump_cfg_fmtint(sGatewayPorts, o->gateway_ports); dump_cfg_fmtint(sUseDNS, o->use_dns); dump_cfg_fmtint(sAllowTcpForwarding, o->allow_tcp_forwarding); dump_cfg_fmtint(sUsePrivilegeSeparation, use_privsep); /* string arguments */ dump_cfg_string(sPidFile, o->pid_file); dump_cfg_string(sXAuthLocation, o->xauth_location); dump_cfg_string(sCiphers, o->ciphers ? o->ciphers : cipher_alg_list(',', 0)); dump_cfg_string(sMacs, o->macs ? o->macs : mac_alg_list(',')); dump_cfg_string(sBanner, o->banner); dump_cfg_string(sForceCommand, o->adm_forced_command); dump_cfg_string(sChrootDirectory, o->chroot_directory); dump_cfg_string(sTrustedUserCAKeys, o->trusted_user_ca_keys); dump_cfg_string(sRevokedKeys, o->revoked_keys_file); dump_cfg_string(sAuthorizedPrincipalsFile, o->authorized_principals_file); dump_cfg_string(sVersionAddendum, o->version_addendum); dump_cfg_string(sAuthorizedKeysCommand, o->authorized_keys_command); dump_cfg_string(sAuthorizedKeysCommandUser, o->authorized_keys_command_user); dump_cfg_string(sHostKeyAgent, o->host_key_agent); dump_cfg_string(sKexAlgorithms, o->kex_algorithms ? o->kex_algorithms : kex_alg_list(',')); /* string arguments requiring a lookup */ dump_cfg_string(sLogLevel, log_level_name(o->log_level)); dump_cfg_string(sLogFacility, log_facility_name(o->log_facility)); /* string array arguments */ dump_cfg_strarray_oneline(sAuthorizedKeysFile, o->num_authkeys_files, o->authorized_keys_files); dump_cfg_strarray(sHostKeyFile, o->num_host_key_files, o->host_key_files); dump_cfg_strarray(sHostKeyFile, o->num_host_cert_files, o->host_cert_files); dump_cfg_strarray(sAllowUsers, o->num_allow_users, o->allow_users); dump_cfg_strarray(sDenyUsers, o->num_deny_users, o->deny_users); dump_cfg_strarray(sAllowGroups, o->num_allow_groups, o->allow_groups); dump_cfg_strarray(sDenyGroups, o->num_deny_groups, o->deny_groups); dump_cfg_strarray(sAcceptEnv, o->num_accept_env, o->accept_env); dump_cfg_strarray_oneline(sAuthenticationMethods, o->num_auth_methods, o->auth_methods); /* other arguments */ for (i = 0; i < o->num_subsystems; i++) printf("subsystem %s %s\n", o->subsystem_name[i], o->subsystem_args[i]); printf("maxstartups %d:%d:%d\n", o->max_startups_begin, o->max_startups_rate, o->max_startups); for (i = 0; tunmode_desc[i].val != -1; i++) if (tunmode_desc[i].val == o->permit_tun) { s = tunmode_desc[i].text; break; } dump_cfg_string(sPermitTunnel, s); printf("ipqos %s ", iptos2str(o->ip_qos_interactive)); printf("%s\n", iptos2str(o->ip_qos_bulk)); printf("rekeylimit %lld %d\n", (long long)o->rekey_limit, o->rekey_interval); channel_print_adm_permitted_opens(); } Index: head/crypto/openssh/servconf.h =================================================================== --- head/crypto/openssh/servconf.h (revision 291197) +++ head/crypto/openssh/servconf.h (revision 291198) @@ -1,247 +1,242 @@ /* $OpenBSD: servconf.h,v 1.112 2014/01/29 06:18:35 djm Exp $ */ -/* $FreeBSD$ */ /* * Author: Tatu Ylonen * Copyright (c) 1995 Tatu Ylonen , Espoo, Finland * All rights reserved * Definitions for server configuration data and for the functions reading it. * * As far as I am concerned, the code I have written for this software * can be used freely for any purpose. Any derived versions of this * software must be clearly marked as such, and if the derived work is * incompatible with the protocol description in the RFC file, it must be * called by a name other than "ssh" or "Secure Shell". */ #ifndef SERVCONF_H #define SERVCONF_H #define MAX_PORTS 256 /* Max # ports. */ #define MAX_ALLOW_USERS 256 /* Max # users on allow list. */ #define MAX_DENY_USERS 256 /* Max # users on deny list. */ #define MAX_ALLOW_GROUPS 256 /* Max # groups on allow list. */ #define MAX_DENY_GROUPS 256 /* Max # groups on deny list. */ #define MAX_SUBSYSTEMS 256 /* Max # subsystems. */ #define MAX_HOSTKEYS 256 /* Max # hostkeys. */ #define MAX_HOSTCERTS 256 /* Max # host certificates. */ #define MAX_ACCEPT_ENV 256 /* Max # of env vars. */ #define MAX_MATCH_GROUPS 256 /* Max # of groups for Match. */ #define MAX_AUTHKEYS_FILES 256 /* Max # of authorized_keys files. */ #define MAX_AUTH_METHODS 256 /* Max # of AuthenticationMethods. */ /* permit_root_login */ #define PERMIT_NOT_SET -1 #define PERMIT_NO 0 #define PERMIT_FORCED_ONLY 1 #define PERMIT_NO_PASSWD 2 #define PERMIT_YES 3 /* use_privsep */ #define PRIVSEP_OFF 0 #define PRIVSEP_ON 1 #define PRIVSEP_NOSANDBOX 2 /* AllowTCPForwarding */ #define FORWARD_DENY 0 #define FORWARD_REMOTE (1) #define FORWARD_LOCAL (1<<1) #define FORWARD_ALLOW (FORWARD_REMOTE|FORWARD_LOCAL) #define DEFAULT_AUTH_FAIL_MAX 6 /* Default for MaxAuthTries */ #define DEFAULT_SESSIONS_MAX 10 /* Default for MaxSessions */ /* Magic name for internal sftp-server */ #define INTERNAL_SFTP_NAME "internal-sftp" typedef struct { u_int num_ports; u_int ports_from_cmdline; int ports[MAX_PORTS]; /* Port number to listen on. */ char *listen_addr; /* Address on which the server listens. */ struct addrinfo *listen_addrs; /* Addresses on which the server listens. */ int address_family; /* Address family used by the server. */ char *host_key_files[MAX_HOSTKEYS]; /* Files containing host keys. */ int num_host_key_files; /* Number of files for host keys. */ char *host_cert_files[MAX_HOSTCERTS]; /* Files containing host certs. */ int num_host_cert_files; /* Number of files for host certs. */ char *host_key_agent; /* ssh-agent socket for host keys. */ char *pid_file; /* Where to put our pid */ int server_key_bits;/* Size of the server key. */ int login_grace_time; /* Disconnect if no auth in this time * (sec). */ int key_regeneration_time; /* Server key lifetime (seconds). */ int permit_root_login; /* PERMIT_*, see above */ int ignore_rhosts; /* Ignore .rhosts and .shosts. */ int ignore_user_known_hosts; /* Ignore ~/.ssh/known_hosts * for RhostsRsaAuth */ int print_motd; /* If true, print /etc/motd. */ int print_lastlog; /* If true, print lastlog */ int x11_forwarding; /* If true, permit inet (spoofing) X11 fwd. */ int x11_display_offset; /* What DISPLAY number to start * searching at */ int x11_use_localhost; /* If true, use localhost for fake X11 server. */ char *xauth_location; /* Location of xauth program */ int permit_tty; /* If false, deny pty allocation */ int strict_modes; /* If true, require string home dir modes. */ int tcp_keep_alive; /* If true, set SO_KEEPALIVE. */ int ip_qos_interactive; /* IP ToS/DSCP/class for interactive */ int ip_qos_bulk; /* IP ToS/DSCP/class for bulk traffic */ char *ciphers; /* Supported SSH2 ciphers. */ char *macs; /* Supported SSH2 macs. */ char *kex_algorithms; /* SSH2 kex methods in order of preference. */ int protocol; /* Supported protocol versions. */ int gateway_ports; /* If true, allow remote connects to forwarded ports. */ SyslogFacility log_facility; /* Facility for system logging. */ LogLevel log_level; /* Level for system logging. */ int rhosts_rsa_authentication; /* If true, permit rhosts RSA * authentication. */ int hostbased_authentication; /* If true, permit ssh2 hostbased auth */ int hostbased_uses_name_from_packet_only; /* experimental */ int rsa_authentication; /* If true, permit RSA authentication. */ int pubkey_authentication; /* If true, permit ssh2 pubkey authentication. */ int kerberos_authentication; /* If true, permit Kerberos * authentication. */ int kerberos_or_local_passwd; /* If true, permit kerberos * and any other password * authentication mechanism, * such as SecurID or * /etc/passwd */ int kerberos_ticket_cleanup; /* If true, destroy ticket * file on logout. */ int kerberos_get_afs_token; /* If true, try to get AFS token if * authenticated with Kerberos. */ int gss_authentication; /* If true, permit GSSAPI authentication */ int gss_cleanup_creds; /* If true, destroy cred cache on logout */ int password_authentication; /* If true, permit password * authentication. */ int kbd_interactive_authentication; /* If true, permit */ int challenge_response_authentication; int permit_empty_passwd; /* If false, do not permit empty * passwords. */ int permit_user_env; /* If true, read ~/.ssh/environment */ int use_login; /* If true, login(1) is used */ int compression; /* If true, compression is allowed */ int allow_tcp_forwarding; /* One of FORWARD_* */ int allow_agent_forwarding; u_int num_allow_users; char *allow_users[MAX_ALLOW_USERS]; u_int num_deny_users; char *deny_users[MAX_DENY_USERS]; u_int num_allow_groups; char *allow_groups[MAX_ALLOW_GROUPS]; u_int num_deny_groups; char *deny_groups[MAX_DENY_GROUPS]; u_int num_subsystems; char *subsystem_name[MAX_SUBSYSTEMS]; char *subsystem_command[MAX_SUBSYSTEMS]; char *subsystem_args[MAX_SUBSYSTEMS]; u_int num_accept_env; char *accept_env[MAX_ACCEPT_ENV]; int max_startups_begin; int max_startups_rate; int max_startups; int max_authtries; int max_sessions; char *banner; /* SSH-2 banner message */ int use_dns; int client_alive_interval; /* * poke the client this often to * see if it's still there */ int client_alive_count_max; /* * If the client is unresponsive * for this many intervals above, * disconnect the session */ u_int num_authkeys_files; /* Files containing public keys */ char *authorized_keys_files[MAX_AUTHKEYS_FILES]; char *adm_forced_command; int use_pam; /* Enable auth via PAM */ int permit_tun; int num_permitted_opens; char *chroot_directory; char *revoked_keys_file; char *trusted_user_ca_keys; char *authorized_principals_file; char *authorized_keys_command; char *authorized_keys_command_user; int64_t rekey_limit; int rekey_interval; char *version_addendum; /* Appended to SSH banner */ int hpn_disabled; /* Disable HPN functionality. */ int hpn_buffer_size; /* Set HPN buffer size - default 2MB.*/ int tcp_rcv_buf_poll; /* Poll TCP rcv window in autotuning * kernels. */ u_int num_auth_methods; char *auth_methods[MAX_AUTH_METHODS]; - -#ifdef NONE_CIPHER_ENABLED - int none_enabled; /* Enable NONE cipher switch. */ -#endif } ServerOptions; /* Information about the incoming connection as used by Match */ struct connection_info { const char *user; const char *host; /* possibly resolved hostname */ const char *address; /* remote address */ const char *laddress; /* local address */ int lport; /* local port */ }; /* * These are string config options that must be copied between the * Match sub-config and the main config, and must be sent from the * privsep slave to the privsep master. We use a macro to ensure all * the options are copied and the copies are done in the correct order. * * NB. an option must appear in servconf.c:copy_set_server_options() or * COPY_MATCH_STRING_OPTS here but never both. */ #define COPY_MATCH_STRING_OPTS() do { \ M_CP_STROPT(banner); \ M_CP_STROPT(trusted_user_ca_keys); \ M_CP_STROPT(revoked_keys_file); \ M_CP_STROPT(authorized_principals_file); \ M_CP_STROPT(authorized_keys_command); \ M_CP_STROPT(authorized_keys_command_user); \ M_CP_STRARRAYOPT(authorized_keys_files, num_authkeys_files); \ M_CP_STRARRAYOPT(allow_users, num_allow_users); \ M_CP_STRARRAYOPT(deny_users, num_deny_users); \ M_CP_STRARRAYOPT(allow_groups, num_allow_groups); \ M_CP_STRARRAYOPT(deny_groups, num_deny_groups); \ M_CP_STRARRAYOPT(accept_env, num_accept_env); \ M_CP_STRARRAYOPT(auth_methods, num_auth_methods); \ } while (0) struct connection_info *get_connection_info(int, int); void initialize_server_options(ServerOptions *); void fill_default_server_options(ServerOptions *); int process_server_config_line(ServerOptions *, char *, const char *, int, int *, struct connection_info *); void load_server_config(const char *, Buffer *); void parse_server_config(ServerOptions *, const char *, Buffer *, struct connection_info *); void parse_server_match_config(ServerOptions *, struct connection_info *); int parse_server_match_testspec(struct connection_info *, char *); int server_match_spec_complete(struct connection_info *); void copy_set_server_options(ServerOptions *, ServerOptions *, int); void dump_config(ServerOptions *); char *derelativise_path(const char *); #endif /* SERVCONF_H */ Index: head/crypto/openssh/ssh.c =================================================================== --- head/crypto/openssh/ssh.c (revision 291197) +++ head/crypto/openssh/ssh.c (revision 291198) @@ -1,1927 +1,1918 @@ /* $OpenBSD: ssh.c,v 1.401 2014/02/26 20:18:37 djm Exp $ */ /* * Author: Tatu Ylonen * Copyright (c) 1995 Tatu Ylonen , Espoo, Finland * All rights reserved * Ssh client program. This program can be used to log into a remote machine. * The software supports strong authentication, encryption, and forwarding * of X11, TCP/IP, and authentication connections. * * As far as I am concerned, the code I have written for this software * can be used freely for any purpose. Any derived versions of this * software must be clearly marked as such, and if the derived work is * incompatible with the protocol description in the RFC file, it must be * called by a name other than "ssh" or "Secure Shell". * * Copyright (c) 1999 Niels Provos. All rights reserved. * Copyright (c) 2000, 2001, 2002, 2003 Markus Friedl. All rights reserved. * * Modified to work with SSL by Niels Provos * in Canada (German citizen). * * 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" __RCSID("$FreeBSD$"); #include #ifdef HAVE_SYS_STAT_H # include #endif #include #include #include #include #include #include #include #include #include #ifdef HAVE_PATHS_H #include #endif #include #include #include #include #include #include #include #include #include #include #include #include #include "openbsd-compat/openssl-compat.h" #include "openbsd-compat/sys-queue.h" #include "xmalloc.h" #include "ssh.h" #include "ssh1.h" #include "ssh2.h" #include "canohost.h" #include "compat.h" #include "cipher.h" #include "packet.h" #include "buffer.h" #include "channels.h" #include "key.h" #include "authfd.h" #include "authfile.h" #include "pathnames.h" #include "dispatch.h" #include "clientloop.h" #include "log.h" #include "readconf.h" #include "sshconnect.h" #include "misc.h" #include "kex.h" #include "mac.h" #include "sshpty.h" #include "match.h" #include "msg.h" #include "uidswap.h" #include "roaming.h" #include "version.h" #ifdef ENABLE_PKCS11 #include "ssh-pkcs11.h" #endif extern char *__progname; /* Saves a copy of argv for setproctitle emulation */ #ifndef HAVE_SETPROCTITLE static char **saved_av; #endif /* Flag indicating whether debug mode is on. May be set on the command line. */ int debug_flag = 0; /* Flag indicating whether a tty should be requested */ int tty_flag = 0; /* don't exec a shell */ int no_shell_flag = 0; /* * Flag indicating that nothing should be read from stdin. This can be set * on the command line. */ int stdin_null_flag = 0; /* * Flag indicating that the current process should be backgrounded and * a new slave launched in the foreground for ControlPersist. */ int need_controlpersist_detach = 0; /* Copies of flags for ControlPersist foreground slave */ int ostdin_null_flag, ono_shell_flag, otty_flag, orequest_tty; /* * Flag indicating that ssh should fork after authentication. This is useful * so that the passphrase can be entered manually, and then ssh goes to the * background. */ int fork_after_authentication_flag = 0; /* forward stdio to remote host and port */ char *stdio_forward_host = NULL; int stdio_forward_port = 0; /* * General data structure for command line options and options configurable * in configuration files. See readconf.h. */ Options options; /* optional user configfile */ char *config = NULL; /* * Name of the host we are connecting to. This is the name given on the * command line, or the HostName specified for the user-supplied name in a * configuration file. */ char *host; /* socket address the host resolves to */ struct sockaddr_storage hostaddr; /* Private host keys. */ Sensitive sensitive_data; /* Original real UID. */ uid_t original_real_uid; uid_t original_effective_uid; /* command to be executed */ Buffer command; /* Should we execute a command or invoke a subsystem? */ int subsystem_flag = 0; /* # of replies received for global requests */ static int remote_forward_confirms_received = 0; /* mux.c */ extern int muxserver_sock; extern u_int muxclient_command; /* Prints a help message to the user. This function never returns. */ static void usage(void) { fprintf(stderr, "usage: ssh [-1246AaCfgKkMNnqsTtVvXxYy] [-b bind_address] [-c cipher_spec]\n" " [-D [bind_address:]port] [-E log_file] [-e escape_char]\n" " [-F configfile] [-I pkcs11] [-i identity_file]\n" " [-L [bind_address:]port:host:hostport] [-l login_name] [-m mac_spec]\n" " [-O ctl_cmd] [-o option] [-p port]\n" " [-Q cipher | cipher-auth | mac | kex | key]\n" " [-R [bind_address:]port:host:hostport] [-S ctl_path] [-W host:port]\n" " [-w local_tun[:remote_tun]] [user@]hostname [command]\n" ); exit(255); } static int ssh_session(void); static int ssh_session2(void); static void load_public_identity_files(void); static void main_sigchld_handler(int); /* from muxclient.c */ void muxclient(const char *); void muxserver_listen(void); /* ~/ expand a list of paths. NB. assumes path[n] is heap-allocated. */ static void tilde_expand_paths(char **paths, u_int num_paths) { u_int i; char *cp; for (i = 0; i < num_paths; i++) { cp = tilde_expand_filename(paths[i], original_real_uid); free(paths[i]); paths[i] = cp; } } /* * Attempt to resolve a host name / port to a set of addresses and * optionally return any CNAMEs encountered along the way. * Returns NULL on failure. * NB. this function must operate with a options having undefined members. */ static struct addrinfo * resolve_host(const char *name, int port, int logerr, char *cname, size_t clen) { char strport[NI_MAXSERV]; struct addrinfo hints, *res; int gaierr, loglevel = SYSLOG_LEVEL_DEBUG1; if (port <= 0) port = default_ssh_port(); snprintf(strport, sizeof strport, "%u", port); memset(&hints, 0, sizeof(hints)); hints.ai_family = options.address_family == -1 ? AF_UNSPEC : options.address_family; hints.ai_socktype = SOCK_STREAM; if (cname != NULL) hints.ai_flags = AI_CANONNAME; if ((gaierr = getaddrinfo(name, strport, &hints, &res)) != 0) { if (logerr || (gaierr != EAI_NONAME && gaierr != EAI_NODATA)) loglevel = SYSLOG_LEVEL_ERROR; do_log2(loglevel, "%s: Could not resolve hostname %.100s: %s", __progname, name, ssh_gai_strerror(gaierr)); return NULL; } if (cname != NULL && res->ai_canonname != NULL) { if (strlcpy(cname, res->ai_canonname, clen) >= clen) { error("%s: host \"%s\" cname \"%s\" too long (max %lu)", __func__, name, res->ai_canonname, (u_long)clen); if (clen > 0) *cname = '\0'; } } return res; } /* * Check whether the cname is a permitted replacement for the hostname * and perform the replacement if it is. * NB. this function must operate with a options having undefined members. */ static int check_follow_cname(char **namep, const char *cname) { int i; struct allowed_cname *rule; if (*cname == '\0' || options.num_permitted_cnames == 0 || strcmp(*namep, cname) == 0) return 0; if (options.canonicalize_hostname == SSH_CANONICALISE_NO) return 0; /* * Don't attempt to canonicalize names that will be interpreted by * a proxy unless the user specifically requests so. */ if (!option_clear_or_none(options.proxy_command) && options.canonicalize_hostname != SSH_CANONICALISE_ALWAYS) return 0; debug3("%s: check \"%s\" CNAME \"%s\"", __func__, *namep, cname); for (i = 0; i < options.num_permitted_cnames; i++) { rule = options.permitted_cnames + i; if (match_pattern_list(*namep, rule->source_list, strlen(rule->source_list), 1) != 1 || match_pattern_list(cname, rule->target_list, strlen(rule->target_list), 1) != 1) continue; verbose("Canonicalized DNS aliased hostname " "\"%s\" => \"%s\"", *namep, cname); free(*namep); *namep = xstrdup(cname); return 1; } return 0; } /* * Attempt to resolve the supplied hostname after applying the user's * canonicalization rules. Returns the address list for the host or NULL * if no name was found after canonicalization. * NB. this function must operate with a options having undefined members. */ static struct addrinfo * resolve_canonicalize(char **hostp, int port) { int i, ndots; char *cp, *fullhost, cname_target[NI_MAXHOST]; struct addrinfo *addrs; if (options.canonicalize_hostname == SSH_CANONICALISE_NO) return NULL; /* * Don't attempt to canonicalize names that will be interpreted by * a proxy unless the user specifically requests so. */ if (!option_clear_or_none(options.proxy_command) && options.canonicalize_hostname != SSH_CANONICALISE_ALWAYS) return NULL; /* Don't apply canonicalization to sufficiently-qualified hostnames */ ndots = 0; for (cp = *hostp; *cp != '\0'; cp++) { if (*cp == '.') ndots++; } if (ndots > options.canonicalize_max_dots) { debug3("%s: not canonicalizing hostname \"%s\" (max dots %d)", __func__, *hostp, options.canonicalize_max_dots); return NULL; } /* Attempt each supplied suffix */ for (i = 0; i < options.num_canonical_domains; i++) { *cname_target = '\0'; xasprintf(&fullhost, "%s.%s.", *hostp, options.canonical_domains[i]); debug3("%s: attempting \"%s\" => \"%s\"", __func__, *hostp, fullhost); if ((addrs = resolve_host(fullhost, port, 0, cname_target, sizeof(cname_target))) == NULL) { free(fullhost); continue; } /* Remove trailing '.' */ fullhost[strlen(fullhost) - 1] = '\0'; /* Follow CNAME if requested */ if (!check_follow_cname(&fullhost, cname_target)) { debug("Canonicalized hostname \"%s\" => \"%s\"", *hostp, fullhost); } free(*hostp); *hostp = fullhost; return addrs; } if (!options.canonicalize_fallback_local) fatal("%s: Could not resolve host \"%s\"", __progname, *hostp); debug2("%s: host %s not found in any suffix", __func__, *hostp); return NULL; } /* * Read per-user configuration file. Ignore the system wide config * file if the user specifies a config file on the command line. */ static void process_config_files(struct passwd *pw) { char buf[MAXPATHLEN]; int r; if (config != NULL) { if (strcasecmp(config, "none") != 0 && !read_config_file(config, pw, host, &options, SSHCONF_USERCONF)) fatal("Can't open user config file %.100s: " "%.100s", config, strerror(errno)); } else { r = snprintf(buf, sizeof buf, "%s/%s", pw->pw_dir, _PATH_SSH_USER_CONFFILE); if (r > 0 && (size_t)r < sizeof(buf)) (void)read_config_file(buf, pw, host, &options, SSHCONF_CHECKPERM|SSHCONF_USERCONF); /* Read systemwide configuration file after user config. */ (void)read_config_file(_PATH_HOST_CONFIG_FILE, pw, host, &options, 0); } } /* * Main program for the ssh client. */ int main(int ac, char **av) { int i, r, opt, exit_status, use_syslog; char *p, *cp, *line, *argv0, buf[MAXPATHLEN], *host_arg, *logfile; char thishost[NI_MAXHOST], shorthost[NI_MAXHOST], portstr[NI_MAXSERV]; char cname[NI_MAXHOST]; struct stat st; struct passwd *pw; int timeout_ms; extern int optind, optreset; extern char *optarg; Forward fwd; struct addrinfo *addrs = NULL; /* Ensure that fds 0, 1 and 2 are open or directed to /dev/null */ sanitise_stdfd(); __progname = ssh_get_progname(av[0]); #ifndef HAVE_SETPROCTITLE /* Prepare for later setproctitle emulation */ /* Save argv so it isn't clobbered by setproctitle() emulation */ saved_av = xcalloc(ac + 1, sizeof(*saved_av)); for (i = 0; i < ac; i++) saved_av[i] = xstrdup(av[i]); saved_av[i] = NULL; compat_init_setproctitle(ac, av); av = saved_av; #endif /* * Discard other fds that are hanging around. These can cause problem * with backgrounded ssh processes started by ControlPersist. */ closefrom(STDERR_FILENO + 1); /* * Save the original real uid. It will be needed later (uid-swapping * may clobber the real uid). */ original_real_uid = getuid(); original_effective_uid = geteuid(); /* * Use uid-swapping to give up root privileges for the duration of * option processing. We will re-instantiate the rights when we are * ready to create the privileged port, and will permanently drop * them when the port has been created (actually, when the connection * has been made, as we may need to create the port several times). */ PRIV_END; #ifdef HAVE_SETRLIMIT /* If we are installed setuid root be careful to not drop core. */ if (original_real_uid != original_effective_uid) { struct rlimit rlim; rlim.rlim_cur = rlim.rlim_max = 0; if (setrlimit(RLIMIT_CORE, &rlim) < 0) fatal("setrlimit failed: %.100s", strerror(errno)); } #endif /* Get user data. */ pw = getpwuid(original_real_uid); if (!pw) { logit("No user exists for uid %lu", (u_long)original_real_uid); exit(255); } /* Take a copy of the returned structure. */ pw = pwcopy(pw); /* * Set our umask to something reasonable, as some files are created * with the default umask. This will make them world-readable but * writable only by the owner, which is ok for all files for which we * don't set the modes explicitly. */ umask(022); /* * Initialize option structure to indicate that no values have been * set. */ initialize_options(&options); /* Parse command-line arguments. */ host = NULL; use_syslog = 0; logfile = NULL; argv0 = av[0]; again: while ((opt = getopt(ac, av, "1246ab:c:e:fgi:kl:m:no:p:qstvx" "ACD:E:F:I:KL:MNO:PQ:R:S:TVw:W:XYy")) != -1) { switch (opt) { case '1': options.protocol = SSH_PROTO_1; break; case '2': options.protocol = SSH_PROTO_2; break; case '4': options.address_family = AF_INET; break; case '6': options.address_family = AF_INET6; break; case 'n': stdin_null_flag = 1; break; case 'f': fork_after_authentication_flag = 1; stdin_null_flag = 1; break; case 'x': options.forward_x11 = 0; break; case 'X': options.forward_x11 = 1; break; case 'y': use_syslog = 1; break; case 'E': logfile = xstrdup(optarg); break; case 'Y': options.forward_x11 = 1; options.forward_x11_trusted = 1; break; case 'g': options.gateway_ports = 1; break; case 'O': if (stdio_forward_host != NULL) fatal("Cannot specify multiplexing " "command with -W"); else if (muxclient_command != 0) fatal("Multiplexing command already specified"); if (strcmp(optarg, "check") == 0) muxclient_command = SSHMUX_COMMAND_ALIVE_CHECK; else if (strcmp(optarg, "forward") == 0) muxclient_command = SSHMUX_COMMAND_FORWARD; else if (strcmp(optarg, "exit") == 0) muxclient_command = SSHMUX_COMMAND_TERMINATE; else if (strcmp(optarg, "stop") == 0) muxclient_command = SSHMUX_COMMAND_STOP; else if (strcmp(optarg, "cancel") == 0) muxclient_command = SSHMUX_COMMAND_CANCEL_FWD; else fatal("Invalid multiplex command."); break; case 'P': /* deprecated */ options.use_privileged_port = 0; break; case 'Q': cp = NULL; if (strcmp(optarg, "cipher") == 0) cp = cipher_alg_list('\n', 0); else if (strcmp(optarg, "cipher-auth") == 0) cp = cipher_alg_list('\n', 1); else if (strcmp(optarg, "mac") == 0) cp = mac_alg_list('\n'); else if (strcmp(optarg, "kex") == 0) cp = kex_alg_list('\n'); else if (strcmp(optarg, "key") == 0) cp = key_alg_list(0, 0); else if (strcmp(optarg, "key-cert") == 0) cp = key_alg_list(1, 0); else if (strcmp(optarg, "key-plain") == 0) cp = key_alg_list(0, 1); if (cp == NULL) fatal("Unsupported query \"%s\"", optarg); printf("%s\n", cp); free(cp); exit(0); break; case 'a': options.forward_agent = 0; break; case 'A': options.forward_agent = 1; break; case 'k': options.gss_deleg_creds = 0; break; case 'K': options.gss_authentication = 1; options.gss_deleg_creds = 1; break; case 'i': if (stat(optarg, &st) < 0) { fprintf(stderr, "Warning: Identity file %s " "not accessible: %s.\n", optarg, strerror(errno)); break; } add_identity_file(&options, NULL, optarg, 1); break; case 'I': #ifdef ENABLE_PKCS11 options.pkcs11_provider = xstrdup(optarg); #else fprintf(stderr, "no support for PKCS#11.\n"); #endif break; case 't': if (options.request_tty == REQUEST_TTY_YES) options.request_tty = REQUEST_TTY_FORCE; else options.request_tty = REQUEST_TTY_YES; break; case 'v': if (debug_flag == 0) { debug_flag = 1; options.log_level = SYSLOG_LEVEL_DEBUG1; } else { if (options.log_level < SYSLOG_LEVEL_DEBUG3) options.log_level++; } break; case 'V': if (options.version_addendum && *options.version_addendum != '\0') fprintf(stderr, "%s%s %s, %s\n", SSH_RELEASE, options.hpn_disabled ? "" : SSH_VERSION_HPN, options.version_addendum, SSLeay_version(SSLEAY_VERSION)); else fprintf(stderr, "%s%s, %s\n", SSH_RELEASE, options.hpn_disabled ? "" : SSH_VERSION_HPN, SSLeay_version(SSLEAY_VERSION)); if (opt == 'V') exit(0); break; case 'w': if (options.tun_open == -1) options.tun_open = SSH_TUNMODE_DEFAULT; options.tun_local = a2tun(optarg, &options.tun_remote); if (options.tun_local == SSH_TUNID_ERR) { fprintf(stderr, "Bad tun device '%s'\n", optarg); exit(255); } break; case 'W': if (stdio_forward_host != NULL) fatal("stdio forward already specified"); if (muxclient_command != 0) fatal("Cannot specify stdio forward with -O"); if (parse_forward(&fwd, optarg, 1, 0)) { stdio_forward_host = fwd.listen_host; stdio_forward_port = fwd.listen_port; free(fwd.connect_host); } else { fprintf(stderr, "Bad stdio forwarding specification '%s'\n", optarg); exit(255); } options.request_tty = REQUEST_TTY_NO; no_shell_flag = 1; options.clear_forwardings = 1; options.exit_on_forward_failure = 1; break; case 'q': options.log_level = SYSLOG_LEVEL_QUIET; break; case 'e': if (optarg[0] == '^' && optarg[2] == 0 && (u_char) optarg[1] >= 64 && (u_char) optarg[1] < 128) options.escape_char = (u_char) optarg[1] & 31; else if (strlen(optarg) == 1) options.escape_char = (u_char) optarg[0]; else if (strcmp(optarg, "none") == 0) options.escape_char = SSH_ESCAPECHAR_NONE; else { fprintf(stderr, "Bad escape character '%s'.\n", optarg); exit(255); } break; case 'c': if (ciphers_valid(optarg)) { /* SSH2 only */ options.ciphers = xstrdup(optarg); options.cipher = SSH_CIPHER_INVALID; } else { /* SSH1 only */ options.cipher = cipher_number(optarg); if (options.cipher == -1) { fprintf(stderr, "Unknown cipher type '%s'\n", optarg); exit(255); } if (options.cipher == SSH_CIPHER_3DES) options.ciphers = "3des-cbc"; else if (options.cipher == SSH_CIPHER_BLOWFISH) options.ciphers = "blowfish-cbc"; else options.ciphers = (char *)-1; } break; case 'm': if (mac_valid(optarg)) options.macs = xstrdup(optarg); else { fprintf(stderr, "Unknown mac type '%s'\n", optarg); exit(255); } break; case 'M': if (options.control_master == SSHCTL_MASTER_YES) options.control_master = SSHCTL_MASTER_ASK; else options.control_master = SSHCTL_MASTER_YES; break; case 'p': options.port = a2port(optarg); if (options.port <= 0) { fprintf(stderr, "Bad port '%s'\n", optarg); exit(255); } break; case 'l': options.user = optarg; break; case 'L': if (parse_forward(&fwd, optarg, 0, 0)) add_local_forward(&options, &fwd); else { fprintf(stderr, "Bad local forwarding specification '%s'\n", optarg); exit(255); } break; case 'R': if (parse_forward(&fwd, optarg, 0, 1)) { add_remote_forward(&options, &fwd); } else { fprintf(stderr, "Bad remote forwarding specification " "'%s'\n", optarg); exit(255); } break; case 'D': if (parse_forward(&fwd, optarg, 1, 0)) { add_local_forward(&options, &fwd); } else { fprintf(stderr, "Bad dynamic forwarding specification " "'%s'\n", optarg); exit(255); } break; case 'C': options.compression = 1; break; case 'N': no_shell_flag = 1; options.request_tty = REQUEST_TTY_NO; break; case 'T': options.request_tty = REQUEST_TTY_NO; -#ifdef NONE_CIPHER_ENABLED - /* - * Ensure that the user does not try to backdoor a - * NONE cipher switch on an interactive session by - * explicitly disabling it if the user asks for a - * session without a tty. - */ - options.none_switch = 0; -#endif break; case 'o': line = xstrdup(optarg); if (process_config_line(&options, pw, host ? host : "", line, "command-line", 0, NULL, SSHCONF_USERCONF) != 0) exit(255); free(line); break; case 's': subsystem_flag = 1; break; case 'S': if (options.control_path != NULL) free(options.control_path); options.control_path = xstrdup(optarg); break; case 'b': options.bind_address = optarg; break; case 'F': config = optarg; break; default: usage(); } } ac -= optind; av += optind; if (ac > 0 && !host) { if (strrchr(*av, '@')) { p = xstrdup(*av); cp = strrchr(p, '@'); if (cp == NULL || cp == p) usage(); options.user = p; *cp = '\0'; host = xstrdup(++cp); } else host = xstrdup(*av); if (ac > 1) { optind = optreset = 1; goto again; } ac--, av++; } /* Check that we got a host name. */ if (!host) usage(); host_arg = xstrdup(host); OpenSSL_add_all_algorithms(); ERR_load_crypto_strings(); /* Initialize the command to execute on remote host. */ buffer_init(&command); /* * Save the command to execute on the remote host in a buffer. There * is no limit on the length of the command, except by the maximum * packet size. Also sets the tty flag if there is no command. */ if (!ac) { /* No command specified - execute shell on a tty. */ if (subsystem_flag) { fprintf(stderr, "You must specify a subsystem to invoke.\n"); usage(); } } else { /* A command has been specified. Store it into the buffer. */ for (i = 0; i < ac; i++) { if (i) buffer_append(&command, " ", 1); buffer_append(&command, av[i], strlen(av[i])); } } /* Cannot fork to background if no command. */ if (fork_after_authentication_flag && buffer_len(&command) == 0 && !no_shell_flag) fatal("Cannot fork into background without a command " "to execute."); /* * Initialize "log" output. Since we are the client all output * goes to stderr unless otherwise specified by -y or -E. */ if (use_syslog && logfile != NULL) fatal("Can't specify both -y and -E"); if (logfile != NULL) { log_redirect_stderr_to(logfile); free(logfile); } log_init(argv0, options.log_level == -1 ? SYSLOG_LEVEL_INFO : options.log_level, SYSLOG_FACILITY_USER, !use_syslog); if (debug_flag) logit("%s, %s", SSH_RELEASE, SSLeay_version(SSLEAY_VERSION)); /* Parse the configuration files */ process_config_files(pw); /* Hostname canonicalisation needs a few options filled. */ fill_default_options_for_canonicalization(&options); /* If the user has replaced the hostname then take it into use now */ if (options.hostname != NULL) { /* NB. Please keep in sync with readconf.c:match_cfg_line() */ cp = percent_expand(options.hostname, "h", host, (char *)NULL); free(host); host = cp; } /* If canonicalization requested then try to apply it */ lowercase(host); if (options.canonicalize_hostname != SSH_CANONICALISE_NO) addrs = resolve_canonicalize(&host, options.port); /* * If CanonicalizePermittedCNAMEs have been specified but * other canonicalization did not happen (by not being requested * or by failing with fallback) then the hostname may still be changed * as a result of CNAME following. * * Try to resolve the bare hostname name using the system resolver's * usual search rules and then apply the CNAME follow rules. * * Skip the lookup if a ProxyCommand is being used unless the user * has specifically requested canonicalisation for this case via * CanonicalizeHostname=always */ if (addrs == NULL && options.num_permitted_cnames != 0 && (option_clear_or_none(options.proxy_command) || options.canonicalize_hostname == SSH_CANONICALISE_ALWAYS)) { if ((addrs = resolve_host(host, options.port, 1, cname, sizeof(cname))) == NULL) cleanup_exit(255); /* resolve_host logs the error */ check_follow_cname(&host, cname); } /* * If the target hostname has changed as a result of canonicalisation * then re-parse the configuration files as new stanzas may match. */ if (strcasecmp(host_arg, host) != 0) { debug("Hostname has changed; re-reading configuration"); process_config_files(pw); } /* Fill configuration defaults. */ fill_default_options(&options); if (options.port == 0) options.port = default_ssh_port(); channel_set_af(options.address_family); /* Tidy and check options */ if (options.host_key_alias != NULL) lowercase(options.host_key_alias); if (options.proxy_command != NULL && strcmp(options.proxy_command, "-") == 0 && options.proxy_use_fdpass) fatal("ProxyCommand=- and ProxyUseFDPass are incompatible"); #ifndef HAVE_CYGWIN if (original_effective_uid != 0) options.use_privileged_port = 0; #endif /* reinit */ log_init(argv0, options.log_level, SYSLOG_FACILITY_USER, !use_syslog); if (options.request_tty == REQUEST_TTY_YES || options.request_tty == REQUEST_TTY_FORCE) tty_flag = 1; /* Allocate a tty by default if no command specified. */ if (buffer_len(&command) == 0) tty_flag = options.request_tty != REQUEST_TTY_NO; /* Force no tty */ if (options.request_tty == REQUEST_TTY_NO || muxclient_command != 0) tty_flag = 0; /* Do not allocate a tty if stdin is not a tty. */ if ((!isatty(fileno(stdin)) || stdin_null_flag) && options.request_tty != REQUEST_TTY_FORCE) { if (tty_flag) logit("Pseudo-terminal will not be allocated because " "stdin is not a terminal."); tty_flag = 0; } seed_rng(); if (options.user == NULL) options.user = xstrdup(pw->pw_name); if (gethostname(thishost, sizeof(thishost)) == -1) fatal("gethostname: %s", strerror(errno)); strlcpy(shorthost, thishost, sizeof(shorthost)); shorthost[strcspn(thishost, ".")] = '\0'; snprintf(portstr, sizeof(portstr), "%d", options.port); /* Find canonic host name. */ if (strchr(host, '.') == 0) { struct addrinfo hints; struct addrinfo *ai = NULL; int errgai; memset(&hints, 0, sizeof(hints)); hints.ai_family = options.address_family; hints.ai_flags = AI_CANONNAME; hints.ai_socktype = SOCK_STREAM; errgai = getaddrinfo(host, NULL, &hints, &ai); if (errgai == 0) { if (ai->ai_canonname != NULL) host = xstrdup(ai->ai_canonname); freeaddrinfo(ai); } } if (options.local_command != NULL) { debug3("expanding LocalCommand: %s", options.local_command); cp = options.local_command; options.local_command = percent_expand(cp, "d", pw->pw_dir, "h", host, "l", thishost, "n", host_arg, "r", options.user, "p", portstr, "u", pw->pw_name, "L", shorthost, (char *)NULL); debug3("expanded LocalCommand: %s", options.local_command); free(cp); } if (options.control_path != NULL) { cp = tilde_expand_filename(options.control_path, original_real_uid); free(options.control_path); options.control_path = percent_expand(cp, "h", host, "l", thishost, "n", host_arg, "r", options.user, "p", portstr, "u", pw->pw_name, "L", shorthost, (char *)NULL); free(cp); } if (muxclient_command != 0 && options.control_path == NULL) fatal("No ControlPath specified for \"-O\" command"); if (options.control_path != NULL) muxclient(options.control_path); /* * If hostname canonicalisation was not enabled, then we may not * have yet resolved the hostname. Do so now. */ if (addrs == NULL && options.proxy_command == NULL) { if ((addrs = resolve_host(host, options.port, 1, cname, sizeof(cname))) == NULL) cleanup_exit(255); /* resolve_host logs the error */ } timeout_ms = options.connection_timeout * 1000; /* Open a connection to the remote host. */ if (ssh_connect(host, addrs, &hostaddr, options.port, options.address_family, options.connection_attempts, &timeout_ms, options.tcp_keep_alive, options.use_privileged_port) != 0) exit(255); if (addrs != NULL) freeaddrinfo(addrs); packet_set_timeout(options.server_alive_interval, options.server_alive_count_max); if (timeout_ms > 0) debug3("timeout: %d ms remain after connect", timeout_ms); /* * If we successfully made the connection, load the host private key * in case we will need it later for combined rsa-rhosts * authentication. This must be done before releasing extra * privileges, because the file is only readable by root. * If we cannot access the private keys, load the public keys * instead and try to execute the ssh-keysign helper instead. */ sensitive_data.nkeys = 0; sensitive_data.keys = NULL; sensitive_data.external_keysign = 0; if (options.rhosts_rsa_authentication || options.hostbased_authentication) { sensitive_data.nkeys = 9; sensitive_data.keys = xcalloc(sensitive_data.nkeys, sizeof(Key)); for (i = 0; i < sensitive_data.nkeys; i++) sensitive_data.keys[i] = NULL; PRIV_START; sensitive_data.keys[0] = key_load_private_type(KEY_RSA1, _PATH_HOST_KEY_FILE, "", NULL, NULL); sensitive_data.keys[1] = key_load_private_cert(KEY_DSA, _PATH_HOST_DSA_KEY_FILE, "", NULL); #ifdef OPENSSL_HAS_ECC sensitive_data.keys[2] = key_load_private_cert(KEY_ECDSA, _PATH_HOST_ECDSA_KEY_FILE, "", NULL); #endif sensitive_data.keys[3] = key_load_private_cert(KEY_RSA, _PATH_HOST_RSA_KEY_FILE, "", NULL); sensitive_data.keys[4] = key_load_private_cert(KEY_ED25519, _PATH_HOST_ED25519_KEY_FILE, "", NULL); sensitive_data.keys[5] = key_load_private_type(KEY_DSA, _PATH_HOST_DSA_KEY_FILE, "", NULL, NULL); #ifdef OPENSSL_HAS_ECC sensitive_data.keys[6] = key_load_private_type(KEY_ECDSA, _PATH_HOST_ECDSA_KEY_FILE, "", NULL, NULL); #endif sensitive_data.keys[7] = key_load_private_type(KEY_RSA, _PATH_HOST_RSA_KEY_FILE, "", NULL, NULL); sensitive_data.keys[8] = key_load_private_type(KEY_ED25519, _PATH_HOST_ED25519_KEY_FILE, "", NULL, NULL); PRIV_END; if (options.hostbased_authentication == 1 && sensitive_data.keys[0] == NULL && sensitive_data.keys[5] == NULL && sensitive_data.keys[6] == NULL && sensitive_data.keys[7] == NULL && sensitive_data.keys[8] == NULL) { sensitive_data.keys[1] = key_load_cert( _PATH_HOST_DSA_KEY_FILE); #ifdef OPENSSL_HAS_ECC sensitive_data.keys[2] = key_load_cert( _PATH_HOST_ECDSA_KEY_FILE); #endif sensitive_data.keys[3] = key_load_cert( _PATH_HOST_RSA_KEY_FILE); sensitive_data.keys[4] = key_load_cert( _PATH_HOST_ED25519_KEY_FILE); sensitive_data.keys[5] = key_load_public( _PATH_HOST_DSA_KEY_FILE, NULL); #ifdef OPENSSL_HAS_ECC sensitive_data.keys[6] = key_load_public( _PATH_HOST_ECDSA_KEY_FILE, NULL); #endif sensitive_data.keys[7] = key_load_public( _PATH_HOST_RSA_KEY_FILE, NULL); sensitive_data.keys[8] = key_load_public( _PATH_HOST_ED25519_KEY_FILE, NULL); sensitive_data.external_keysign = 1; } } /* * Get rid of any extra privileges that we may have. We will no * longer need them. Also, extra privileges could make it very hard * to read identity files and other non-world-readable files from the * user's home directory if it happens to be on a NFS volume where * root is mapped to nobody. */ if (original_effective_uid == 0) { PRIV_START; permanently_set_uid(pw); } /* * Now that we are back to our own permissions, create ~/.ssh * directory if it doesn't already exist. */ if (config == NULL) { r = snprintf(buf, sizeof buf, "%s%s%s", pw->pw_dir, strcmp(pw->pw_dir, "/") ? "/" : "", _PATH_SSH_USER_DIR); if (r > 0 && (size_t)r < sizeof(buf) && stat(buf, &st) < 0) { #ifdef WITH_SELINUX ssh_selinux_setfscreatecon(buf); #endif if (mkdir(buf, 0700) < 0) error("Could not create directory '%.200s'.", buf); #ifdef WITH_SELINUX ssh_selinux_setfscreatecon(NULL); #endif } } /* load options.identity_files */ load_public_identity_files(); /* Expand ~ in known host file names. */ tilde_expand_paths(options.system_hostfiles, options.num_system_hostfiles); tilde_expand_paths(options.user_hostfiles, options.num_user_hostfiles); signal(SIGPIPE, SIG_IGN); /* ignore SIGPIPE early */ signal(SIGCHLD, main_sigchld_handler); /* Log into the remote system. Never returns if the login fails. */ ssh_login(&sensitive_data, host, (struct sockaddr *)&hostaddr, options.port, pw, timeout_ms); if (packet_connection_is_on_socket()) { verbose("Authenticated to %s ([%s]:%d).", host, get_remote_ipaddr(), get_remote_port()); } else { verbose("Authenticated to %s (via proxy).", host); } /* We no longer need the private host keys. Clear them now. */ if (sensitive_data.nkeys != 0) { for (i = 0; i < sensitive_data.nkeys; i++) { if (sensitive_data.keys[i] != NULL) { /* Destroys contents safely */ debug3("clear hostkey %d", i); key_free(sensitive_data.keys[i]); sensitive_data.keys[i] = NULL; } } free(sensitive_data.keys); } for (i = 0; i < options.num_identity_files; i++) { free(options.identity_files[i]); options.identity_files[i] = NULL; if (options.identity_keys[i]) { key_free(options.identity_keys[i]); options.identity_keys[i] = NULL; } } exit_status = compat20 ? ssh_session2() : ssh_session(); packet_close(); if (options.control_path != NULL && muxserver_sock != -1) unlink(options.control_path); /* Kill ProxyCommand if it is running. */ ssh_kill_proxy_command(); return exit_status; } static void control_persist_detach(void) { pid_t pid; int devnull; debug("%s: backgrounding master process", __func__); /* * master (current process) into the background, and make the * foreground process a client of the backgrounded master. */ switch ((pid = fork())) { case -1: fatal("%s: fork: %s", __func__, strerror(errno)); case 0: /* Child: master process continues mainloop */ break; default: /* Parent: set up mux slave to connect to backgrounded master */ debug2("%s: background process is %ld", __func__, (long)pid); stdin_null_flag = ostdin_null_flag; options.request_tty = orequest_tty; tty_flag = otty_flag; close(muxserver_sock); muxserver_sock = -1; options.control_master = SSHCTL_MASTER_NO; muxclient(options.control_path); /* muxclient() doesn't return on success. */ fatal("Failed to connect to new control master"); } if ((devnull = open(_PATH_DEVNULL, O_RDWR)) == -1) { error("%s: open(\"/dev/null\"): %s", __func__, strerror(errno)); } else { if (dup2(devnull, STDIN_FILENO) == -1 || dup2(devnull, STDOUT_FILENO) == -1) error("%s: dup2: %s", __func__, strerror(errno)); if (devnull > STDERR_FILENO) close(devnull); } daemon(1, 1); setproctitle("%s [mux]", options.control_path); } /* Do fork() after authentication. Used by "ssh -f" */ static void fork_postauth(void) { if (need_controlpersist_detach) control_persist_detach(); debug("forking to background"); fork_after_authentication_flag = 0; if (daemon(1, 1) < 0) fatal("daemon() failed: %.200s", strerror(errno)); } /* Callback for remote forward global requests */ static void ssh_confirm_remote_forward(int type, u_int32_t seq, void *ctxt) { Forward *rfwd = (Forward *)ctxt; /* XXX verbose() on failure? */ debug("remote forward %s for: listen %d, connect %s:%d", type == SSH2_MSG_REQUEST_SUCCESS ? "success" : "failure", rfwd->listen_port, rfwd->connect_host, rfwd->connect_port); if (rfwd->listen_port == 0) { if (type == SSH2_MSG_REQUEST_SUCCESS) { rfwd->allocated_port = packet_get_int(); logit("Allocated port %u for remote forward to %s:%d", rfwd->allocated_port, rfwd->connect_host, rfwd->connect_port); channel_update_permitted_opens(rfwd->handle, rfwd->allocated_port); } else { channel_update_permitted_opens(rfwd->handle, -1); } } if (type == SSH2_MSG_REQUEST_FAILURE) { if (options.exit_on_forward_failure) fatal("Error: remote port forwarding failed for " "listen port %d", rfwd->listen_port); else logit("Warning: remote port forwarding failed for " "listen port %d", rfwd->listen_port); } if (++remote_forward_confirms_received == options.num_remote_forwards) { debug("All remote forwarding requests processed"); if (fork_after_authentication_flag) fork_postauth(); } } static void client_cleanup_stdio_fwd(int id, void *arg) { debug("stdio forwarding: done"); cleanup_exit(0); } static void ssh_init_stdio_forwarding(void) { Channel *c; int in, out; if (stdio_forward_host == NULL) return; if (!compat20) fatal("stdio forwarding require Protocol 2"); debug3("%s: %s:%d", __func__, stdio_forward_host, stdio_forward_port); if ((in = dup(STDIN_FILENO)) < 0 || (out = dup(STDOUT_FILENO)) < 0) fatal("channel_connect_stdio_fwd: dup() in/out failed"); if ((c = channel_connect_stdio_fwd(stdio_forward_host, stdio_forward_port, in, out)) == NULL) fatal("%s: channel_connect_stdio_fwd failed", __func__); channel_register_cleanup(c->self, client_cleanup_stdio_fwd, 0); } static void ssh_init_forwarding(void) { int success = 0; int i; /* Initiate local TCP/IP port forwardings. */ for (i = 0; i < options.num_local_forwards; i++) { debug("Local connections to %.200s:%d forwarded to remote " "address %.200s:%d", (options.local_forwards[i].listen_host == NULL) ? (options.gateway_ports ? "*" : "LOCALHOST") : options.local_forwards[i].listen_host, options.local_forwards[i].listen_port, options.local_forwards[i].connect_host, options.local_forwards[i].connect_port); success += channel_setup_local_fwd_listener( options.local_forwards[i].listen_host, options.local_forwards[i].listen_port, options.local_forwards[i].connect_host, options.local_forwards[i].connect_port, options.gateway_ports); } if (i > 0 && success != i && options.exit_on_forward_failure) fatal("Could not request local forwarding."); if (i > 0 && success == 0) error("Could not request local forwarding."); /* Initiate remote TCP/IP port forwardings. */ for (i = 0; i < options.num_remote_forwards; i++) { debug("Remote connections from %.200s:%d forwarded to " "local address %.200s:%d", (options.remote_forwards[i].listen_host == NULL) ? "LOCALHOST" : options.remote_forwards[i].listen_host, options.remote_forwards[i].listen_port, options.remote_forwards[i].connect_host, options.remote_forwards[i].connect_port); options.remote_forwards[i].handle = channel_request_remote_forwarding( options.remote_forwards[i].listen_host, options.remote_forwards[i].listen_port, options.remote_forwards[i].connect_host, options.remote_forwards[i].connect_port); if (options.remote_forwards[i].handle < 0) { if (options.exit_on_forward_failure) fatal("Could not request remote forwarding."); else logit("Warning: Could not request remote " "forwarding."); } else { client_register_global_confirm(ssh_confirm_remote_forward, &options.remote_forwards[i]); } } /* Initiate tunnel forwarding. */ if (options.tun_open != SSH_TUNMODE_NO) { if (client_request_tun_fwd(options.tun_open, options.tun_local, options.tun_remote) == -1) { if (options.exit_on_forward_failure) fatal("Could not request tunnel forwarding."); else error("Could not request tunnel forwarding."); } } } static void check_agent_present(void) { if (options.forward_agent) { /* Clear agent forwarding if we don't have an agent. */ if (!ssh_agent_present()) options.forward_agent = 0; } } static int ssh_session(void) { int type; int interactive = 0; int have_tty = 0; struct winsize ws; char *cp; const char *display; /* Enable compression if requested. */ if (options.compression) { debug("Requesting compression at level %d.", options.compression_level); if (options.compression_level < 1 || options.compression_level > 9) fatal("Compression level must be from 1 (fast) to " "9 (slow, best)."); /* Send the request. */ packet_start(SSH_CMSG_REQUEST_COMPRESSION); packet_put_int(options.compression_level); packet_send(); packet_write_wait(); type = packet_read(); if (type == SSH_SMSG_SUCCESS) packet_start_compression(options.compression_level); else if (type == SSH_SMSG_FAILURE) logit("Warning: Remote host refused compression."); else packet_disconnect("Protocol error waiting for " "compression response."); } /* Allocate a pseudo tty if appropriate. */ if (tty_flag) { debug("Requesting pty."); /* Start the packet. */ packet_start(SSH_CMSG_REQUEST_PTY); /* Store TERM in the packet. There is no limit on the length of the string. */ cp = getenv("TERM"); if (!cp) cp = ""; packet_put_cstring(cp); /* Store window size in the packet. */ if (ioctl(fileno(stdin), TIOCGWINSZ, &ws) < 0) memset(&ws, 0, sizeof(ws)); packet_put_int((u_int)ws.ws_row); packet_put_int((u_int)ws.ws_col); packet_put_int((u_int)ws.ws_xpixel); packet_put_int((u_int)ws.ws_ypixel); /* Store tty modes in the packet. */ tty_make_modes(fileno(stdin), NULL); /* Send the packet, and wait for it to leave. */ packet_send(); packet_write_wait(); /* Read response from the server. */ type = packet_read(); if (type == SSH_SMSG_SUCCESS) { interactive = 1; have_tty = 1; } else if (type == SSH_SMSG_FAILURE) logit("Warning: Remote host failed or refused to " "allocate a pseudo tty."); else packet_disconnect("Protocol error waiting for pty " "request response."); } /* Request X11 forwarding if enabled and DISPLAY is set. */ display = getenv("DISPLAY"); if (options.forward_x11 && display != NULL) { char *proto, *data; /* Get reasonable local authentication information. */ client_x11_get_proto(display, options.xauth_location, options.forward_x11_trusted, options.forward_x11_timeout, &proto, &data); /* Request forwarding with authentication spoofing. */ debug("Requesting X11 forwarding with authentication " "spoofing."); x11_request_forwarding_with_spoofing(0, display, proto, data, 0); /* Read response from the server. */ type = packet_read(); if (type == SSH_SMSG_SUCCESS) { interactive = 1; } else if (type == SSH_SMSG_FAILURE) { logit("Warning: Remote host denied X11 forwarding."); } else { packet_disconnect("Protocol error waiting for X11 " "forwarding"); } } /* Tell the packet module whether this is an interactive session. */ packet_set_interactive(interactive, options.ip_qos_interactive, options.ip_qos_bulk); /* Request authentication agent forwarding if appropriate. */ check_agent_present(); if (options.forward_agent) { debug("Requesting authentication agent forwarding."); auth_request_forwarding(); /* Read response from the server. */ type = packet_read(); packet_check_eom(); if (type != SSH_SMSG_SUCCESS) logit("Warning: Remote host denied authentication agent forwarding."); } /* Initiate port forwardings. */ ssh_init_stdio_forwarding(); ssh_init_forwarding(); /* Execute a local command */ if (options.local_command != NULL && options.permit_local_command) ssh_local_cmd(options.local_command); /* * If requested and we are not interested in replies to remote * forwarding requests, then let ssh continue in the background. */ if (fork_after_authentication_flag) { if (options.exit_on_forward_failure && options.num_remote_forwards > 0) { debug("deferring postauth fork until remote forward " "confirmation received"); } else fork_postauth(); } /* * If a command was specified on the command line, execute the * command now. Otherwise request the server to start a shell. */ if (buffer_len(&command) > 0) { int len = buffer_len(&command); if (len > 900) len = 900; debug("Sending command: %.*s", len, (u_char *)buffer_ptr(&command)); packet_start(SSH_CMSG_EXEC_CMD); packet_put_string(buffer_ptr(&command), buffer_len(&command)); packet_send(); packet_write_wait(); } else { debug("Requesting shell."); packet_start(SSH_CMSG_EXEC_SHELL); packet_send(); packet_write_wait(); } /* Enter the interactive session. */ return client_loop(have_tty, tty_flag ? options.escape_char : SSH_ESCAPECHAR_NONE, 0); } /* request pty/x11/agent/tcpfwd/shell for channel */ static void ssh_session2_setup(int id, int success, void *arg) { extern char **environ; const char *display; int interactive = tty_flag; if (!success) return; /* No need for error message, channels code sens one */ display = getenv("DISPLAY"); if (options.forward_x11 && display != NULL) { char *proto, *data; /* Get reasonable local authentication information. */ client_x11_get_proto(display, options.xauth_location, options.forward_x11_trusted, options.forward_x11_timeout, &proto, &data); /* Request forwarding with authentication spoofing. */ debug("Requesting X11 forwarding with authentication " "spoofing."); x11_request_forwarding_with_spoofing(id, display, proto, data, 1); client_expect_confirm(id, "X11 forwarding", CONFIRM_WARN); /* XXX exit_on_forward_failure */ interactive = 1; } check_agent_present(); if (options.forward_agent) { debug("Requesting authentication agent forwarding."); channel_request_start(id, "auth-agent-req@openssh.com", 0); packet_send(); } /* Tell the packet module whether this is an interactive session. */ packet_set_interactive(interactive, options.ip_qos_interactive, options.ip_qos_bulk); client_session2_setup(id, tty_flag, subsystem_flag, getenv("TERM"), NULL, fileno(stdin), &command, environ); } /* open new channel for a session */ static int ssh_session2_open(void) { Channel *c; int window, packetmax, in, out, err; if (stdin_null_flag) { in = open(_PATH_DEVNULL, O_RDONLY); } else { in = dup(STDIN_FILENO); } out = dup(STDOUT_FILENO); err = dup(STDERR_FILENO); if (in < 0 || out < 0 || err < 0) fatal("dup() in/out/err failed"); /* enable nonblocking unless tty */ if (!isatty(in)) set_nonblock(in); if (!isatty(out)) set_nonblock(out); if (!isatty(err)) set_nonblock(err); /* * We need to check to see what to do about buffer sizes here. * - In an HPN to non-HPN connection we want to limit the window size to * something reasonable in case the far side has the large window bug. * - In an HPN to HPN connection we want to use the max window size but * allow the user to override it. * - Lastly if HPN is disabled then use the ssh standard window size. * * We cannot just do a getsockopt() here and set the ssh window to that * as in case of autotuning of socket buffers the window would get stuck * at the initial buffer size, generally less than 96k. Therefore we * need to set the maximum ssh window size to the maximum HPN buffer * size unless the user has set TcpRcvBufPoll to no. In that case we * can just set the window to the minimum of HPN buffer size and TCP * receive buffer size. */ if (tty_flag) options.hpn_buffer_size = CHAN_SES_WINDOW_DEFAULT; else options.hpn_buffer_size = CHAN_HPN_MIN_WINDOW_DEFAULT; if (datafellows & SSH_BUG_LARGEWINDOW) { debug("HPN to Non-HPN Connection"); } else if (options.tcp_rcv_buf_poll <= 0) { sock_get_rcvbuf(&options.hpn_buffer_size, 0); debug("HPNBufferSize set to TCP RWIN: %d", options.hpn_buffer_size); } else if (options.tcp_rcv_buf > 0) { sock_get_rcvbuf(&options.hpn_buffer_size, options.tcp_rcv_buf); debug("HPNBufferSize set to user TCPRcvBuf: %d", options.hpn_buffer_size); } debug("Final hpn_buffer_size = %d", options.hpn_buffer_size); channel_set_hpn(options.hpn_disabled, options.hpn_buffer_size); window = options.hpn_buffer_size; packetmax = CHAN_SES_PACKET_DEFAULT; if (tty_flag) { window = CHAN_SES_WINDOW_DEFAULT; window >>= 1; packetmax >>= 1; } c = channel_new( "session", SSH_CHANNEL_OPENING, in, out, err, window, packetmax, CHAN_EXTENDED_WRITE, "client-session", /*nonblock*/0); if (!options.hpn_disabled && options.tcp_rcv_buf_poll > 0) { c->dynamic_window = 1; debug("Enabled Dynamic Window Scaling\n"); } debug3("ssh_session2_open: channel_new: %d", c->self); channel_send_open(c->self); if (!no_shell_flag) channel_register_open_confirm(c->self, ssh_session2_setup, NULL); return c->self; } static int ssh_session2(void) { int id = -1; /* XXX should be pre-session */ if (!options.control_persist) ssh_init_stdio_forwarding(); ssh_init_forwarding(); /* Start listening for multiplex clients */ muxserver_listen(); /* * If we are in control persist mode and have a working mux listen * socket, then prepare to background ourselves and have a foreground * client attach as a control slave. * NB. we must save copies of the flags that we override for * the backgrounding, since we defer attachment of the slave until * after the connection is fully established (in particular, * async rfwd replies have been received for ExitOnForwardFailure). */ if (options.control_persist && muxserver_sock != -1) { ostdin_null_flag = stdin_null_flag; ono_shell_flag = no_shell_flag; orequest_tty = options.request_tty; otty_flag = tty_flag; stdin_null_flag = 1; no_shell_flag = 1; tty_flag = 0; if (!fork_after_authentication_flag) need_controlpersist_detach = 1; fork_after_authentication_flag = 1; } /* * ControlPersist mux listen socket setup failed, attempt the * stdio forward setup that we skipped earlier. */ if (options.control_persist && muxserver_sock == -1) ssh_init_stdio_forwarding(); if (!no_shell_flag || (datafellows & SSH_BUG_DUMMYCHAN)) id = ssh_session2_open(); else { packet_set_interactive( options.control_master == SSHCTL_MASTER_NO, options.ip_qos_interactive, options.ip_qos_bulk); } /* If we don't expect to open a new session, then disallow it */ if (options.control_master == SSHCTL_MASTER_NO && (datafellows & SSH_NEW_OPENSSH)) { debug("Requesting no-more-sessions@openssh.com"); packet_start(SSH2_MSG_GLOBAL_REQUEST); packet_put_cstring("no-more-sessions@openssh.com"); packet_put_char(0); packet_send(); } /* Execute a local command */ if (options.local_command != NULL && options.permit_local_command) ssh_local_cmd(options.local_command); /* * If requested and we are not interested in replies to remote * forwarding requests, then let ssh continue in the background. */ if (fork_after_authentication_flag) { if (options.exit_on_forward_failure && options.num_remote_forwards > 0) { debug("deferring postauth fork until remote forward " "confirmation received"); } else fork_postauth(); } if (options.use_roaming) request_roaming(); return client_loop(tty_flag, tty_flag ? options.escape_char : SSH_ESCAPECHAR_NONE, id); } static void load_public_identity_files(void) { char *filename, *cp, thishost[NI_MAXHOST]; char *pwdir = NULL, *pwname = NULL; int i = 0; Key *public; struct passwd *pw; u_int n_ids; char *identity_files[SSH_MAX_IDENTITY_FILES]; Key *identity_keys[SSH_MAX_IDENTITY_FILES]; #ifdef ENABLE_PKCS11 Key **keys; int nkeys; #endif /* PKCS11 */ n_ids = 0; memset(identity_files, 0, sizeof(identity_files)); memset(identity_keys, 0, sizeof(identity_keys)); #ifdef ENABLE_PKCS11 if (options.pkcs11_provider != NULL && options.num_identity_files < SSH_MAX_IDENTITY_FILES && (pkcs11_init(!options.batch_mode) == 0) && (nkeys = pkcs11_add_provider(options.pkcs11_provider, NULL, &keys)) > 0) { for (i = 0; i < nkeys; i++) { if (n_ids >= SSH_MAX_IDENTITY_FILES) { key_free(keys[i]); continue; } identity_keys[n_ids] = keys[i]; identity_files[n_ids] = xstrdup(options.pkcs11_provider); /* XXX */ n_ids++; } free(keys); } #endif /* ENABLE_PKCS11 */ if ((pw = getpwuid(original_real_uid)) == NULL) fatal("load_public_identity_files: getpwuid failed"); pwname = xstrdup(pw->pw_name); pwdir = xstrdup(pw->pw_dir); if (gethostname(thishost, sizeof(thishost)) == -1) fatal("load_public_identity_files: gethostname: %s", strerror(errno)); for (i = 0; i < options.num_identity_files; i++) { if (n_ids >= SSH_MAX_IDENTITY_FILES || strcasecmp(options.identity_files[i], "none") == 0) { free(options.identity_files[i]); continue; } cp = tilde_expand_filename(options.identity_files[i], original_real_uid); filename = percent_expand(cp, "d", pwdir, "u", pwname, "l", thishost, "h", host, "r", options.user, (char *)NULL); free(cp); public = key_load_public(filename, NULL); debug("identity file %s type %d", filename, public ? public->type : -1); free(options.identity_files[i]); identity_files[n_ids] = filename; identity_keys[n_ids] = public; if (++n_ids >= SSH_MAX_IDENTITY_FILES) continue; /* Try to add the certificate variant too */ xasprintf(&cp, "%s-cert", filename); public = key_load_public(cp, NULL); debug("identity file %s type %d", cp, public ? public->type : -1); if (public == NULL) { free(cp); continue; } if (!key_is_cert(public)) { debug("%s: key %s type %s is not a certificate", __func__, cp, key_type(public)); key_free(public); free(cp); continue; } identity_keys[n_ids] = public; /* point to the original path, most likely the private key */ identity_files[n_ids] = xstrdup(filename); n_ids++; } options.num_identity_files = n_ids; memcpy(options.identity_files, identity_files, sizeof(identity_files)); memcpy(options.identity_keys, identity_keys, sizeof(identity_keys)); explicit_bzero(pwname, strlen(pwname)); free(pwname); explicit_bzero(pwdir, strlen(pwdir)); free(pwdir); } static void main_sigchld_handler(int sig) { int save_errno = errno; pid_t pid; int status; while ((pid = waitpid(-1, &status, WNOHANG)) > 0 || (pid < 0 && errno == EINTR)) ; signal(sig, main_sigchld_handler); errno = save_errno; } Index: head/crypto/openssh/sshconnect2.c =================================================================== --- head/crypto/openssh/sshconnect2.c (revision 291197) +++ head/crypto/openssh/sshconnect2.c (revision 291198) @@ -1,1706 +1,1672 @@ /* $OpenBSD: sshconnect2.c,v 1.204 2014/02/02 03:44:32 djm Exp $ */ /* * Copyright (c) 2000 Markus Friedl. All rights reserved. * Copyright (c) 2008 Damien Miller. 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" -__RCSID("$FreeBSD$"); #include #include #include #include #include #include #include #include #include #include #include #include #include #if defined(HAVE_STRNVIS) && defined(HAVE_VIS_H) && !defined(BROKEN_STRNVIS) #include #endif #include "openbsd-compat/sys-queue.h" #include "xmalloc.h" #include "ssh.h" #include "ssh2.h" #include "buffer.h" #include "packet.h" #include "compat.h" #include "cipher.h" #include "key.h" #include "kex.h" #include "myproposal.h" #include "sshconnect.h" #include "authfile.h" #include "dh.h" #include "authfd.h" #include "log.h" #include "readconf.h" #include "misc.h" #include "match.h" #include "dispatch.h" #include "canohost.h" #include "msg.h" #include "pathnames.h" #include "uidswap.h" #include "hostfile.h" #ifdef GSSAPI #include "ssh-gss.h" #endif /* import */ extern char *client_version_string; extern char *server_version_string; extern Options options; -#ifdef NONE_CIPHER_ENABLED -extern Kex *xxx_kex; /* - * tty_flag is set in ssh.c so we can use it here. If set then prevent - * the switch to the null cipher. - */ - -extern int tty_flag; -#endif - -/* * SSH2 key exchange */ u_char *session_id2 = NULL; u_int session_id2_len = 0; char *xxx_host; struct sockaddr *xxx_hostaddr; Kex *xxx_kex = NULL; static int verify_host_key_callback(Key *hostkey) { if (verify_host_key(xxx_host, xxx_hostaddr, hostkey) == -1) fatal("Host key verification failed."); return 0; } static char * order_hostkeyalgs(char *host, struct sockaddr *hostaddr, u_short port) { char *oavail, *avail, *first, *last, *alg, *hostname, *ret; size_t maxlen; struct hostkeys *hostkeys; int ktype; u_int i; /* Find all hostkeys for this hostname */ get_hostfile_hostname_ipaddr(host, hostaddr, port, &hostname, NULL); hostkeys = init_hostkeys(); for (i = 0; i < options.num_user_hostfiles; i++) load_hostkeys(hostkeys, hostname, options.user_hostfiles[i]); for (i = 0; i < options.num_system_hostfiles; i++) load_hostkeys(hostkeys, hostname, options.system_hostfiles[i]); oavail = avail = xstrdup(KEX_DEFAULT_PK_ALG); maxlen = strlen(avail) + 1; first = xmalloc(maxlen); last = xmalloc(maxlen); *first = *last = '\0'; #define ALG_APPEND(to, from) \ do { \ if (*to != '\0') \ strlcat(to, ",", maxlen); \ strlcat(to, from, maxlen); \ } while (0) while ((alg = strsep(&avail, ",")) && *alg != '\0') { if ((ktype = key_type_from_name(alg)) == KEY_UNSPEC) fatal("%s: unknown alg %s", __func__, alg); if (lookup_key_in_hostkeys_by_type(hostkeys, key_type_plain(ktype), NULL)) ALG_APPEND(first, alg); else ALG_APPEND(last, alg); } #undef ALG_APPEND xasprintf(&ret, "%s%s%s", first, *first == '\0' ? "" : ",", last); if (*first != '\0') debug3("%s: prefer hostkeyalgs: %s", __func__, first); free(first); free(last); free(hostname); free(oavail); free_hostkeys(hostkeys); return ret; } void ssh_kex2(char *host, struct sockaddr *hostaddr, u_short port) { Kex *kex; xxx_host = host; xxx_hostaddr = hostaddr; if (options.ciphers == (char *)-1) { logit("No valid ciphers for protocol version 2 given, using defaults."); options.ciphers = NULL; } if (options.ciphers != NULL) { myproposal[PROPOSAL_ENC_ALGS_CTOS] = myproposal[PROPOSAL_ENC_ALGS_STOC] = options.ciphers; } myproposal[PROPOSAL_ENC_ALGS_CTOS] = compat_cipher_proposal(myproposal[PROPOSAL_ENC_ALGS_CTOS]); myproposal[PROPOSAL_ENC_ALGS_STOC] = compat_cipher_proposal(myproposal[PROPOSAL_ENC_ALGS_STOC]); if (options.compression) { myproposal[PROPOSAL_COMP_ALGS_CTOS] = myproposal[PROPOSAL_COMP_ALGS_STOC] = "zlib@openssh.com,zlib,none"; } else { myproposal[PROPOSAL_COMP_ALGS_CTOS] = myproposal[PROPOSAL_COMP_ALGS_STOC] = "none,zlib@openssh.com,zlib"; } if (options.macs != NULL) { myproposal[PROPOSAL_MAC_ALGS_CTOS] = myproposal[PROPOSAL_MAC_ALGS_STOC] = options.macs; } if (options.hostkeyalgorithms != NULL) myproposal[PROPOSAL_SERVER_HOST_KEY_ALGS] = compat_pkalg_proposal(options.hostkeyalgorithms); else { /* Prefer algorithms that we already have keys for */ myproposal[PROPOSAL_SERVER_HOST_KEY_ALGS] = compat_pkalg_proposal( order_hostkeyalgs(host, hostaddr, port)); } if (options.kex_algorithms != NULL) myproposal[PROPOSAL_KEX_ALGS] = options.kex_algorithms; myproposal[PROPOSAL_KEX_ALGS] = compat_kex_proposal( myproposal[PROPOSAL_KEX_ALGS]); if (options.rekey_limit || options.rekey_interval) packet_set_rekey_limits((u_int32_t)options.rekey_limit, (time_t)options.rekey_interval); /* start key exchange */ kex = kex_setup(myproposal); kex->kex[KEX_DH_GRP1_SHA1] = kexdh_client; kex->kex[KEX_DH_GRP14_SHA1] = kexdh_client; kex->kex[KEX_DH_GEX_SHA1] = kexgex_client; kex->kex[KEX_DH_GEX_SHA256] = kexgex_client; kex->kex[KEX_ECDH_SHA2] = kexecdh_client; kex->kex[KEX_C25519_SHA256] = kexc25519_client; kex->client_version_string=client_version_string; kex->server_version_string=server_version_string; kex->verify_host_key=&verify_host_key_callback; xxx_kex = kex; dispatch_run(DISPATCH_BLOCK, &kex->done, kex); if (options.use_roaming && !kex->roaming) { debug("Roaming not allowed by server"); options.use_roaming = 0; } session_id2 = kex->session_id; session_id2_len = kex->session_id_len; #ifdef DEBUG_KEXDH /* send 1st encrypted/maced/compressed message */ packet_start(SSH2_MSG_IGNORE); packet_put_cstring("markus"); packet_send(); packet_write_wait(); #endif } /* * Authenticate user */ typedef struct Authctxt Authctxt; typedef struct Authmethod Authmethod; typedef struct identity Identity; typedef struct idlist Idlist; struct identity { TAILQ_ENTRY(identity) next; AuthenticationConnection *ac; /* set if agent supports key */ Key *key; /* public/private key */ char *filename; /* comment for agent-only keys */ int tried; int isprivate; /* key points to the private key */ int userprovided; }; TAILQ_HEAD(idlist, identity); struct Authctxt { const char *server_user; const char *local_user; const char *host; const char *service; Authmethod *method; sig_atomic_t success; char *authlist; /* pubkey */ Idlist keys; AuthenticationConnection *agent; /* hostbased */ Sensitive *sensitive; /* kbd-interactive */ int info_req_seen; /* generic */ void *methoddata; }; struct Authmethod { char *name; /* string to compare against server's list */ int (*userauth)(Authctxt *authctxt); void (*cleanup)(Authctxt *authctxt); int *enabled; /* flag in option struct that enables method */ int *batch_flag; /* flag in option struct that disables method */ }; void input_userauth_success(int, u_int32_t, void *); void input_userauth_success_unexpected(int, u_int32_t, void *); void input_userauth_failure(int, u_int32_t, void *); void input_userauth_banner(int, u_int32_t, void *); void input_userauth_error(int, u_int32_t, void *); void input_userauth_info_req(int, u_int32_t, void *); void input_userauth_pk_ok(int, u_int32_t, void *); void input_userauth_passwd_changereq(int, u_int32_t, void *); int userauth_none(Authctxt *); int userauth_pubkey(Authctxt *); int userauth_passwd(Authctxt *); int userauth_kbdint(Authctxt *); int userauth_hostbased(Authctxt *); #ifdef GSSAPI int userauth_gssapi(Authctxt *authctxt); void input_gssapi_response(int type, u_int32_t, void *); void input_gssapi_token(int type, u_int32_t, void *); void input_gssapi_hash(int type, u_int32_t, void *); void input_gssapi_error(int, u_int32_t, void *); void input_gssapi_errtok(int, u_int32_t, void *); #endif void userauth(Authctxt *, char *); static int sign_and_send_pubkey(Authctxt *, Identity *); static void pubkey_prepare(Authctxt *); static void pubkey_cleanup(Authctxt *); static Key *load_identity_file(char *, int); static Authmethod *authmethod_get(char *authlist); static Authmethod *authmethod_lookup(const char *name); static char *authmethods_get(void); Authmethod authmethods[] = { #ifdef GSSAPI {"gssapi-with-mic", userauth_gssapi, NULL, &options.gss_authentication, NULL}, #endif {"hostbased", userauth_hostbased, NULL, &options.hostbased_authentication, NULL}, {"publickey", userauth_pubkey, NULL, &options.pubkey_authentication, NULL}, {"keyboard-interactive", userauth_kbdint, NULL, &options.kbd_interactive_authentication, &options.batch_mode}, {"password", userauth_passwd, NULL, &options.password_authentication, &options.batch_mode}, {"none", userauth_none, NULL, NULL, NULL}, {NULL, NULL, NULL, NULL, NULL} }; void ssh_userauth2(const char *local_user, const char *server_user, char *host, Sensitive *sensitive) { Authctxt authctxt; int type; if (options.challenge_response_authentication) options.kbd_interactive_authentication = 1; packet_start(SSH2_MSG_SERVICE_REQUEST); packet_put_cstring("ssh-userauth"); packet_send(); debug("SSH2_MSG_SERVICE_REQUEST sent"); packet_write_wait(); type = packet_read(); if (type != SSH2_MSG_SERVICE_ACCEPT) fatal("Server denied authentication request: %d", type); if (packet_remaining() > 0) { char *reply = packet_get_string(NULL); debug2("service_accept: %s", reply); free(reply); } else { debug2("buggy server: service_accept w/o service"); } packet_check_eom(); debug("SSH2_MSG_SERVICE_ACCEPT received"); if (options.preferred_authentications == NULL) options.preferred_authentications = authmethods_get(); /* setup authentication context */ memset(&authctxt, 0, sizeof(authctxt)); pubkey_prepare(&authctxt); authctxt.server_user = server_user; authctxt.local_user = local_user; authctxt.host = host; authctxt.service = "ssh-connection"; /* service name */ authctxt.success = 0; authctxt.method = authmethod_lookup("none"); authctxt.authlist = NULL; authctxt.methoddata = NULL; authctxt.sensitive = sensitive; authctxt.info_req_seen = 0; if (authctxt.method == NULL) fatal("ssh_userauth2: internal error: cannot send userauth none request"); /* initial userauth request */ userauth_none(&authctxt); dispatch_init(&input_userauth_error); dispatch_set(SSH2_MSG_USERAUTH_SUCCESS, &input_userauth_success); dispatch_set(SSH2_MSG_USERAUTH_FAILURE, &input_userauth_failure); dispatch_set(SSH2_MSG_USERAUTH_BANNER, &input_userauth_banner); dispatch_run(DISPATCH_BLOCK, &authctxt.success, &authctxt); /* loop until success */ pubkey_cleanup(&authctxt); dispatch_range(SSH2_MSG_USERAUTH_MIN, SSH2_MSG_USERAUTH_MAX, NULL); -#ifdef NONE_CIPHER_ENABLED - /* - * If the user explicitly requests to use the none cipher enable it - * post authentication and only if the right conditions are met: both - * of the NONE switches must be true and there must be no tty allocated. - */ - if (options.none_switch == 1 && options.none_enabled == 1) { - if (!tty_flag) { - debug("Requesting none cipher re-keying..."); - myproposal[PROPOSAL_ENC_ALGS_STOC] = "none"; - myproposal[PROPOSAL_ENC_ALGS_CTOS] = "none"; - kex_prop2buf(&xxx_kex->my, myproposal); - packet_request_rekeying(); - fprintf(stderr, "WARNING: enabled NONE cipher\n"); - } else { - /* Requested NONE cipher on an interactive session. */ - debug("Cannot switch to NONE cipher with tty " - "allocated"); - fprintf(stderr, "NONE cipher switch disabled given " - "a TTY is allocated\n"); - } - } -#endif debug("Authentication succeeded (%s).", authctxt.method->name); } void userauth(Authctxt *authctxt, char *authlist) { if (authctxt->method != NULL && authctxt->method->cleanup != NULL) authctxt->method->cleanup(authctxt); free(authctxt->methoddata); authctxt->methoddata = NULL; if (authlist == NULL) { authlist = authctxt->authlist; } else { free(authctxt->authlist); authctxt->authlist = authlist; } for (;;) { Authmethod *method = authmethod_get(authlist); if (method == NULL) fatal("Permission denied (%s).", authlist); authctxt->method = method; /* reset the per method handler */ dispatch_range(SSH2_MSG_USERAUTH_PER_METHOD_MIN, SSH2_MSG_USERAUTH_PER_METHOD_MAX, NULL); /* and try new method */ if (method->userauth(authctxt) != 0) { debug2("we sent a %s packet, wait for reply", method->name); break; } else { debug2("we did not send a packet, disable method"); method->enabled = NULL; } } } /* ARGSUSED */ void input_userauth_error(int type, u_int32_t seq, void *ctxt) { fatal("input_userauth_error: bad message during authentication: " "type %d", type); } /* ARGSUSED */ void input_userauth_banner(int type, u_int32_t seq, void *ctxt) { char *msg, *raw, *lang; u_int len; debug3("input_userauth_banner"); raw = packet_get_string(&len); lang = packet_get_string(NULL); if (len > 0 && options.log_level >= SYSLOG_LEVEL_INFO) { if (len > 65536) len = 65536; msg = xmalloc(len * 4 + 1); /* max expansion from strnvis() */ strnvis(msg, raw, len * 4 + 1, VIS_SAFE|VIS_OCTAL|VIS_NOSLASH); fprintf(stderr, "%s", msg); free(msg); } free(raw); free(lang); } /* ARGSUSED */ void input_userauth_success(int type, u_int32_t seq, void *ctxt) { Authctxt *authctxt = ctxt; if (authctxt == NULL) fatal("input_userauth_success: no authentication context"); free(authctxt->authlist); authctxt->authlist = NULL; if (authctxt->method != NULL && authctxt->method->cleanup != NULL) authctxt->method->cleanup(authctxt); free(authctxt->methoddata); authctxt->methoddata = NULL; authctxt->success = 1; /* break out */ } void input_userauth_success_unexpected(int type, u_int32_t seq, void *ctxt) { Authctxt *authctxt = ctxt; if (authctxt == NULL) fatal("%s: no authentication context", __func__); fatal("Unexpected authentication success during %s.", authctxt->method->name); } /* ARGSUSED */ void input_userauth_failure(int type, u_int32_t seq, void *ctxt) { Authctxt *authctxt = ctxt; char *authlist = NULL; int partial; if (authctxt == NULL) fatal("input_userauth_failure: no authentication context"); authlist = packet_get_string(NULL); partial = packet_get_char(); packet_check_eom(); if (partial != 0) { logit("Authenticated with partial success."); /* reset state */ pubkey_cleanup(authctxt); pubkey_prepare(authctxt); } debug("Authentications that can continue: %s", authlist); userauth(authctxt, authlist); } /* ARGSUSED */ void input_userauth_pk_ok(int type, u_int32_t seq, void *ctxt) { Authctxt *authctxt = ctxt; Key *key = NULL; Identity *id = NULL; Buffer b; int pktype, sent = 0; u_int alen, blen; char *pkalg, *fp; u_char *pkblob; if (authctxt == NULL) fatal("input_userauth_pk_ok: no authentication context"); if (datafellows & SSH_BUG_PKOK) { /* this is similar to SSH_BUG_PKAUTH */ debug2("input_userauth_pk_ok: SSH_BUG_PKOK"); pkblob = packet_get_string(&blen); buffer_init(&b); buffer_append(&b, pkblob, blen); pkalg = buffer_get_string(&b, &alen); buffer_free(&b); } else { pkalg = packet_get_string(&alen); pkblob = packet_get_string(&blen); } packet_check_eom(); debug("Server accepts key: pkalg %s blen %u", pkalg, blen); if ((pktype = key_type_from_name(pkalg)) == KEY_UNSPEC) { debug("unknown pkalg %s", pkalg); goto done; } if ((key = key_from_blob(pkblob, blen)) == NULL) { debug("no key from blob. pkalg %s", pkalg); goto done; } if (key->type != pktype) { error("input_userauth_pk_ok: type mismatch " "for decoded key (received %d, expected %d)", key->type, pktype); goto done; } fp = key_fingerprint(key, SSH_FP_MD5, SSH_FP_HEX); debug2("input_userauth_pk_ok: fp %s", fp); free(fp); /* * search keys in the reverse order, because last candidate has been * moved to the end of the queue. this also avoids confusion by * duplicate keys */ TAILQ_FOREACH_REVERSE(id, &authctxt->keys, idlist, next) { if (key_equal(key, id->key)) { sent = sign_and_send_pubkey(authctxt, id); break; } } done: if (key != NULL) key_free(key); free(pkalg); free(pkblob); /* try another method if we did not send a packet */ if (sent == 0) userauth(authctxt, NULL); } #ifdef GSSAPI int userauth_gssapi(Authctxt *authctxt) { Gssctxt *gssctxt = NULL; static gss_OID_set gss_supported = NULL; static u_int mech = 0; OM_uint32 min; int ok = 0; /* Try one GSSAPI method at a time, rather than sending them all at * once. */ if (gss_supported == NULL) gss_indicate_mechs(&min, &gss_supported); /* Check to see if the mechanism is usable before we offer it */ while (mech < gss_supported->count && !ok) { /* My DER encoding requires length<128 */ if (gss_supported->elements[mech].length < 128 && ssh_gssapi_check_mechanism(&gssctxt, &gss_supported->elements[mech], authctxt->host)) { ok = 1; /* Mechanism works */ } else { mech++; } } if (!ok) return 0; authctxt->methoddata=(void *)gssctxt; packet_start(SSH2_MSG_USERAUTH_REQUEST); packet_put_cstring(authctxt->server_user); packet_put_cstring(authctxt->service); packet_put_cstring(authctxt->method->name); packet_put_int(1); packet_put_int((gss_supported->elements[mech].length) + 2); packet_put_char(SSH_GSS_OIDTYPE); packet_put_char(gss_supported->elements[mech].length); packet_put_raw(gss_supported->elements[mech].elements, gss_supported->elements[mech].length); packet_send(); dispatch_set(SSH2_MSG_USERAUTH_GSSAPI_RESPONSE, &input_gssapi_response); dispatch_set(SSH2_MSG_USERAUTH_GSSAPI_TOKEN, &input_gssapi_token); dispatch_set(SSH2_MSG_USERAUTH_GSSAPI_ERROR, &input_gssapi_error); dispatch_set(SSH2_MSG_USERAUTH_GSSAPI_ERRTOK, &input_gssapi_errtok); mech++; /* Move along to next candidate */ return 1; } static OM_uint32 process_gssapi_token(void *ctxt, gss_buffer_t recv_tok) { Authctxt *authctxt = ctxt; Gssctxt *gssctxt = authctxt->methoddata; gss_buffer_desc send_tok = GSS_C_EMPTY_BUFFER; gss_buffer_desc mic = GSS_C_EMPTY_BUFFER; gss_buffer_desc gssbuf; OM_uint32 status, ms, flags; Buffer b; status = ssh_gssapi_init_ctx(gssctxt, options.gss_deleg_creds, recv_tok, &send_tok, &flags); if (send_tok.length > 0) { if (GSS_ERROR(status)) packet_start(SSH2_MSG_USERAUTH_GSSAPI_ERRTOK); else packet_start(SSH2_MSG_USERAUTH_GSSAPI_TOKEN); packet_put_string(send_tok.value, send_tok.length); packet_send(); gss_release_buffer(&ms, &send_tok); } if (status == GSS_S_COMPLETE) { /* send either complete or MIC, depending on mechanism */ if (!(flags & GSS_C_INTEG_FLAG)) { packet_start(SSH2_MSG_USERAUTH_GSSAPI_EXCHANGE_COMPLETE); packet_send(); } else { ssh_gssapi_buildmic(&b, authctxt->server_user, authctxt->service, "gssapi-with-mic"); gssbuf.value = buffer_ptr(&b); gssbuf.length = buffer_len(&b); status = ssh_gssapi_sign(gssctxt, &gssbuf, &mic); if (!GSS_ERROR(status)) { packet_start(SSH2_MSG_USERAUTH_GSSAPI_MIC); packet_put_string(mic.value, mic.length); packet_send(); } buffer_free(&b); gss_release_buffer(&ms, &mic); } } return status; } /* ARGSUSED */ void input_gssapi_response(int type, u_int32_t plen, void *ctxt) { Authctxt *authctxt = ctxt; Gssctxt *gssctxt; int oidlen; char *oidv; if (authctxt == NULL) fatal("input_gssapi_response: no authentication context"); gssctxt = authctxt->methoddata; /* Setup our OID */ oidv = packet_get_string(&oidlen); if (oidlen <= 2 || oidv[0] != SSH_GSS_OIDTYPE || oidv[1] != oidlen - 2) { free(oidv); debug("Badly encoded mechanism OID received"); userauth(authctxt, NULL); return; } if (!ssh_gssapi_check_oid(gssctxt, oidv + 2, oidlen - 2)) fatal("Server returned different OID than expected"); packet_check_eom(); free(oidv); if (GSS_ERROR(process_gssapi_token(ctxt, GSS_C_NO_BUFFER))) { /* Start again with next method on list */ debug("Trying to start again"); userauth(authctxt, NULL); return; } } /* ARGSUSED */ void input_gssapi_token(int type, u_int32_t plen, void *ctxt) { Authctxt *authctxt = ctxt; gss_buffer_desc recv_tok; OM_uint32 status; u_int slen; if (authctxt == NULL) fatal("input_gssapi_response: no authentication context"); recv_tok.value = packet_get_string(&slen); recv_tok.length = slen; /* safe typecast */ packet_check_eom(); status = process_gssapi_token(ctxt, &recv_tok); free(recv_tok.value); if (GSS_ERROR(status)) { /* Start again with the next method in the list */ userauth(authctxt, NULL); return; } } /* ARGSUSED */ void input_gssapi_errtok(int type, u_int32_t plen, void *ctxt) { Authctxt *authctxt = ctxt; Gssctxt *gssctxt; gss_buffer_desc send_tok = GSS_C_EMPTY_BUFFER; gss_buffer_desc recv_tok; OM_uint32 ms; u_int len; if (authctxt == NULL) fatal("input_gssapi_response: no authentication context"); gssctxt = authctxt->methoddata; recv_tok.value = packet_get_string(&len); recv_tok.length = len; packet_check_eom(); /* Stick it into GSSAPI and see what it says */ (void)ssh_gssapi_init_ctx(gssctxt, options.gss_deleg_creds, &recv_tok, &send_tok, NULL); free(recv_tok.value); gss_release_buffer(&ms, &send_tok); /* Server will be returning a failed packet after this one */ } /* ARGSUSED */ void input_gssapi_error(int type, u_int32_t plen, void *ctxt) { char *msg; char *lang; /* maj */(void)packet_get_int(); /* min */(void)packet_get_int(); msg=packet_get_string(NULL); lang=packet_get_string(NULL); packet_check_eom(); debug("Server GSSAPI Error:\n%s", msg); free(msg); free(lang); } #endif /* GSSAPI */ int userauth_none(Authctxt *authctxt) { /* initial userauth request */ packet_start(SSH2_MSG_USERAUTH_REQUEST); packet_put_cstring(authctxt->server_user); packet_put_cstring(authctxt->service); packet_put_cstring(authctxt->method->name); packet_send(); return 1; } int userauth_passwd(Authctxt *authctxt) { static int attempt = 0; char prompt[150]; char *password; const char *host = options.host_key_alias ? options.host_key_alias : authctxt->host; if (attempt++ >= options.number_of_password_prompts) return 0; if (attempt != 1) error("Permission denied, please try again."); snprintf(prompt, sizeof(prompt), "%.30s@%.128s's password: ", authctxt->server_user, host); password = read_passphrase(prompt, 0); packet_start(SSH2_MSG_USERAUTH_REQUEST); packet_put_cstring(authctxt->server_user); packet_put_cstring(authctxt->service); packet_put_cstring(authctxt->method->name); packet_put_char(0); packet_put_cstring(password); explicit_bzero(password, strlen(password)); free(password); packet_add_padding(64); packet_send(); dispatch_set(SSH2_MSG_USERAUTH_PASSWD_CHANGEREQ, &input_userauth_passwd_changereq); return 1; } /* * parse PASSWD_CHANGEREQ, prompt user and send SSH2_MSG_USERAUTH_REQUEST */ /* ARGSUSED */ void input_userauth_passwd_changereq(int type, u_int32_t seqnr, void *ctxt) { Authctxt *authctxt = ctxt; char *info, *lang, *password = NULL, *retype = NULL; char prompt[150]; const char *host = options.host_key_alias ? options.host_key_alias : authctxt->host; debug2("input_userauth_passwd_changereq"); if (authctxt == NULL) fatal("input_userauth_passwd_changereq: " "no authentication context"); info = packet_get_string(NULL); lang = packet_get_string(NULL); if (strlen(info) > 0) logit("%s", info); free(info); free(lang); packet_start(SSH2_MSG_USERAUTH_REQUEST); packet_put_cstring(authctxt->server_user); packet_put_cstring(authctxt->service); packet_put_cstring(authctxt->method->name); packet_put_char(1); /* additional info */ snprintf(prompt, sizeof(prompt), "Enter %.30s@%.128s's old password: ", authctxt->server_user, host); password = read_passphrase(prompt, 0); packet_put_cstring(password); explicit_bzero(password, strlen(password)); free(password); password = NULL; while (password == NULL) { snprintf(prompt, sizeof(prompt), "Enter %.30s@%.128s's new password: ", authctxt->server_user, host); password = read_passphrase(prompt, RP_ALLOW_EOF); if (password == NULL) { /* bail out */ return; } snprintf(prompt, sizeof(prompt), "Retype %.30s@%.128s's new password: ", authctxt->server_user, host); retype = read_passphrase(prompt, 0); if (strcmp(password, retype) != 0) { explicit_bzero(password, strlen(password)); free(password); logit("Mismatch; try again, EOF to quit."); password = NULL; } explicit_bzero(retype, strlen(retype)); free(retype); } packet_put_cstring(password); explicit_bzero(password, strlen(password)); free(password); packet_add_padding(64); packet_send(); dispatch_set(SSH2_MSG_USERAUTH_PASSWD_CHANGEREQ, &input_userauth_passwd_changereq); } static int identity_sign(Identity *id, u_char **sigp, u_int *lenp, u_char *data, u_int datalen) { Key *prv; int ret; /* the agent supports this key */ if (id->ac) return (ssh_agent_sign(id->ac, id->key, sigp, lenp, data, datalen)); /* * we have already loaded the private key or * the private key is stored in external hardware */ if (id->isprivate || (id->key->flags & KEY_FLAG_EXT)) return (key_sign(id->key, sigp, lenp, data, datalen)); /* load the private key from the file */ if ((prv = load_identity_file(id->filename, id->userprovided)) == NULL) return (-1); ret = key_sign(prv, sigp, lenp, data, datalen); key_free(prv); return (ret); } static int sign_and_send_pubkey(Authctxt *authctxt, Identity *id) { Buffer b; u_char *blob, *signature; u_int bloblen, slen; u_int skip = 0; int ret = -1; int have_sig = 1; char *fp; fp = key_fingerprint(id->key, SSH_FP_MD5, SSH_FP_HEX); debug3("sign_and_send_pubkey: %s %s", key_type(id->key), fp); free(fp); if (key_to_blob(id->key, &blob, &bloblen) == 0) { /* we cannot handle this key */ debug3("sign_and_send_pubkey: cannot handle key"); return 0; } /* data to be signed */ buffer_init(&b); if (datafellows & SSH_OLD_SESSIONID) { buffer_append(&b, session_id2, session_id2_len); skip = session_id2_len; } else { buffer_put_string(&b, session_id2, session_id2_len); skip = buffer_len(&b); } buffer_put_char(&b, SSH2_MSG_USERAUTH_REQUEST); buffer_put_cstring(&b, authctxt->server_user); buffer_put_cstring(&b, datafellows & SSH_BUG_PKSERVICE ? "ssh-userauth" : authctxt->service); if (datafellows & SSH_BUG_PKAUTH) { buffer_put_char(&b, have_sig); } else { buffer_put_cstring(&b, authctxt->method->name); buffer_put_char(&b, have_sig); buffer_put_cstring(&b, key_ssh_name(id->key)); } buffer_put_string(&b, blob, bloblen); /* generate signature */ ret = identity_sign(id, &signature, &slen, buffer_ptr(&b), buffer_len(&b)); if (ret == -1) { free(blob); buffer_free(&b); return 0; } #ifdef DEBUG_PK buffer_dump(&b); #endif if (datafellows & SSH_BUG_PKSERVICE) { buffer_clear(&b); buffer_append(&b, session_id2, session_id2_len); skip = session_id2_len; buffer_put_char(&b, SSH2_MSG_USERAUTH_REQUEST); buffer_put_cstring(&b, authctxt->server_user); buffer_put_cstring(&b, authctxt->service); buffer_put_cstring(&b, authctxt->method->name); buffer_put_char(&b, have_sig); if (!(datafellows & SSH_BUG_PKAUTH)) buffer_put_cstring(&b, key_ssh_name(id->key)); buffer_put_string(&b, blob, bloblen); } free(blob); /* append signature */ buffer_put_string(&b, signature, slen); free(signature); /* skip session id and packet type */ if (buffer_len(&b) < skip + 1) fatal("userauth_pubkey: internal error"); buffer_consume(&b, skip + 1); /* put remaining data from buffer into packet */ packet_start(SSH2_MSG_USERAUTH_REQUEST); packet_put_raw(buffer_ptr(&b), buffer_len(&b)); buffer_free(&b); packet_send(); return 1; } static int send_pubkey_test(Authctxt *authctxt, Identity *id) { u_char *blob; u_int bloblen, have_sig = 0; debug3("send_pubkey_test"); if (key_to_blob(id->key, &blob, &bloblen) == 0) { /* we cannot handle this key */ debug3("send_pubkey_test: cannot handle key"); return 0; } /* register callback for USERAUTH_PK_OK message */ dispatch_set(SSH2_MSG_USERAUTH_PK_OK, &input_userauth_pk_ok); packet_start(SSH2_MSG_USERAUTH_REQUEST); packet_put_cstring(authctxt->server_user); packet_put_cstring(authctxt->service); packet_put_cstring(authctxt->method->name); packet_put_char(have_sig); if (!(datafellows & SSH_BUG_PKAUTH)) packet_put_cstring(key_ssh_name(id->key)); packet_put_string(blob, bloblen); free(blob); packet_send(); return 1; } static Key * load_identity_file(char *filename, int userprovided) { Key *private; char prompt[300], *passphrase; int perm_ok = 0, quit, i; struct stat st; if (stat(filename, &st) < 0) { (userprovided ? logit : debug3)("no such identity: %s: %s", filename, strerror(errno)); return NULL; } private = key_load_private_type(KEY_UNSPEC, filename, "", NULL, &perm_ok); if (!perm_ok) { if (private != NULL) key_free(private); return NULL; } if (private == NULL) { if (options.batch_mode) return NULL; snprintf(prompt, sizeof prompt, "Enter passphrase for key '%.100s': ", filename); for (i = 0; i < options.number_of_password_prompts; i++) { passphrase = read_passphrase(prompt, 0); if (strcmp(passphrase, "") != 0) { private = key_load_private_type(KEY_UNSPEC, filename, passphrase, NULL, NULL); quit = 0; } else { debug2("no passphrase given, try next key"); quit = 1; } explicit_bzero(passphrase, strlen(passphrase)); free(passphrase); if (private != NULL || quit) break; debug2("bad passphrase given, try again..."); } } return private; } /* * try keys in the following order: * 1. agent keys that are found in the config file * 2. other agent keys * 3. keys that are only listed in the config file */ static void pubkey_prepare(Authctxt *authctxt) { Identity *id, *id2, *tmp; Idlist agent, files, *preferred; Key *key; AuthenticationConnection *ac; char *comment; int i, found; TAILQ_INIT(&agent); /* keys from the agent */ TAILQ_INIT(&files); /* keys from the config file */ preferred = &authctxt->keys; TAILQ_INIT(preferred); /* preferred order of keys */ /* list of keys stored in the filesystem and PKCS#11 */ for (i = 0; i < options.num_identity_files; i++) { key = options.identity_keys[i]; if (key && key->type == KEY_RSA1) continue; if (key && key->cert && key->cert->type != SSH2_CERT_TYPE_USER) continue; options.identity_keys[i] = NULL; id = xcalloc(1, sizeof(*id)); id->key = key; id->filename = xstrdup(options.identity_files[i]); id->userprovided = options.identity_file_userprovided[i]; TAILQ_INSERT_TAIL(&files, id, next); } /* Prefer PKCS11 keys that are explicitly listed */ TAILQ_FOREACH_SAFE(id, &files, next, tmp) { if (id->key == NULL || (id->key->flags & KEY_FLAG_EXT) == 0) continue; found = 0; TAILQ_FOREACH(id2, &files, next) { if (id2->key == NULL || (id2->key->flags & KEY_FLAG_EXT) != 0) continue; if (key_equal(id->key, id2->key)) { TAILQ_REMOVE(&files, id, next); TAILQ_INSERT_TAIL(preferred, id, next); found = 1; break; } } /* If IdentitiesOnly set and key not found then don't use it */ if (!found && options.identities_only) { TAILQ_REMOVE(&files, id, next); explicit_bzero(id, sizeof(*id)); free(id); } } /* list of keys supported by the agent */ if ((ac = ssh_get_authentication_connection())) { for (key = ssh_get_first_identity(ac, &comment, 2); key != NULL; key = ssh_get_next_identity(ac, &comment, 2)) { found = 0; TAILQ_FOREACH(id, &files, next) { /* agent keys from the config file are preferred */ if (key_equal(key, id->key)) { key_free(key); free(comment); TAILQ_REMOVE(&files, id, next); TAILQ_INSERT_TAIL(preferred, id, next); id->ac = ac; found = 1; break; } } if (!found && !options.identities_only) { id = xcalloc(1, sizeof(*id)); id->key = key; id->filename = comment; id->ac = ac; TAILQ_INSERT_TAIL(&agent, id, next); } } /* append remaining agent keys */ for (id = TAILQ_FIRST(&agent); id; id = TAILQ_FIRST(&agent)) { TAILQ_REMOVE(&agent, id, next); TAILQ_INSERT_TAIL(preferred, id, next); } authctxt->agent = ac; } /* append remaining keys from the config file */ for (id = TAILQ_FIRST(&files); id; id = TAILQ_FIRST(&files)) { TAILQ_REMOVE(&files, id, next); TAILQ_INSERT_TAIL(preferred, id, next); } TAILQ_FOREACH(id, preferred, next) { debug2("key: %s (%p),%s", id->filename, id->key, id->userprovided ? " explicit" : ""); } } static void pubkey_cleanup(Authctxt *authctxt) { Identity *id; if (authctxt->agent != NULL) ssh_close_authentication_connection(authctxt->agent); for (id = TAILQ_FIRST(&authctxt->keys); id; id = TAILQ_FIRST(&authctxt->keys)) { TAILQ_REMOVE(&authctxt->keys, id, next); if (id->key) key_free(id->key); free(id->filename); free(id); } } int userauth_pubkey(Authctxt *authctxt) { Identity *id; int sent = 0; while ((id = TAILQ_FIRST(&authctxt->keys))) { if (id->tried++) return (0); /* move key to the end of the queue */ TAILQ_REMOVE(&authctxt->keys, id, next); TAILQ_INSERT_TAIL(&authctxt->keys, id, next); /* * send a test message if we have the public key. for * encrypted keys we cannot do this and have to load the * private key instead */ if (id->key != NULL) { if (key_type_plain(id->key->type) == KEY_RSA && (datafellows & SSH_BUG_RSASIGMD5) != 0) { debug("Skipped %s key %s for RSA/MD5 server", key_type(id->key), id->filename); } else if (id->key->type != KEY_RSA1) { debug("Offering %s public key: %s", key_type(id->key), id->filename); sent = send_pubkey_test(authctxt, id); } } else { debug("Trying private key: %s", id->filename); id->key = load_identity_file(id->filename, id->userprovided); if (id->key != NULL) { id->isprivate = 1; if (key_type_plain(id->key->type) == KEY_RSA && (datafellows & SSH_BUG_RSASIGMD5) != 0) { debug("Skipped %s key %s for RSA/MD5 " "server", key_type(id->key), id->filename); } else { sent = sign_and_send_pubkey( authctxt, id); } key_free(id->key); id->key = NULL; } } if (sent) return (sent); } return (0); } /* * Send userauth request message specifying keyboard-interactive method. */ int userauth_kbdint(Authctxt *authctxt) { static int attempt = 0; if (attempt++ >= options.number_of_password_prompts) return 0; /* disable if no SSH2_MSG_USERAUTH_INFO_REQUEST has been seen */ if (attempt > 1 && !authctxt->info_req_seen) { debug3("userauth_kbdint: disable: no info_req_seen"); dispatch_set(SSH2_MSG_USERAUTH_INFO_REQUEST, NULL); return 0; } debug2("userauth_kbdint"); packet_start(SSH2_MSG_USERAUTH_REQUEST); packet_put_cstring(authctxt->server_user); packet_put_cstring(authctxt->service); packet_put_cstring(authctxt->method->name); packet_put_cstring(""); /* lang */ packet_put_cstring(options.kbd_interactive_devices ? options.kbd_interactive_devices : ""); packet_send(); dispatch_set(SSH2_MSG_USERAUTH_INFO_REQUEST, &input_userauth_info_req); return 1; } /* * parse INFO_REQUEST, prompt user and send INFO_RESPONSE */ void input_userauth_info_req(int type, u_int32_t seq, void *ctxt) { Authctxt *authctxt = ctxt; char *name, *inst, *lang, *prompt, *response; u_int num_prompts, i; int echo = 0; debug2("input_userauth_info_req"); if (authctxt == NULL) fatal("input_userauth_info_req: no authentication context"); authctxt->info_req_seen = 1; name = packet_get_string(NULL); inst = packet_get_string(NULL); lang = packet_get_string(NULL); if (strlen(name) > 0) logit("%s", name); if (strlen(inst) > 0) logit("%s", inst); free(name); free(inst); free(lang); num_prompts = packet_get_int(); /* * Begin to build info response packet based on prompts requested. * We commit to providing the correct number of responses, so if * further on we run into a problem that prevents this, we have to * be sure and clean this up and send a correct error response. */ packet_start(SSH2_MSG_USERAUTH_INFO_RESPONSE); packet_put_int(num_prompts); debug2("input_userauth_info_req: num_prompts %d", num_prompts); for (i = 0; i < num_prompts; i++) { prompt = packet_get_string(NULL); echo = packet_get_char(); response = read_passphrase(prompt, echo ? RP_ECHO : 0); packet_put_cstring(response); explicit_bzero(response, strlen(response)); free(response); free(prompt); } packet_check_eom(); /* done with parsing incoming message. */ packet_add_padding(64); packet_send(); } static int ssh_keysign(Key *key, u_char **sigp, u_int *lenp, u_char *data, u_int datalen) { Buffer b; struct stat st; pid_t pid; int to[2], from[2], status, version = 2; debug2("ssh_keysign called"); if (stat(_PATH_SSH_KEY_SIGN, &st) < 0) { error("ssh_keysign: not installed: %s", strerror(errno)); return -1; } if (fflush(stdout) != 0) error("ssh_keysign: fflush: %s", strerror(errno)); if (pipe(to) < 0) { error("ssh_keysign: pipe: %s", strerror(errno)); return -1; } if (pipe(from) < 0) { error("ssh_keysign: pipe: %s", strerror(errno)); return -1; } if ((pid = fork()) < 0) { error("ssh_keysign: fork: %s", strerror(errno)); return -1; } if (pid == 0) { /* keep the socket on exec */ fcntl(packet_get_connection_in(), F_SETFD, 0); permanently_drop_suid(getuid()); close(from[0]); if (dup2(from[1], STDOUT_FILENO) < 0) fatal("ssh_keysign: dup2: %s", strerror(errno)); close(to[1]); if (dup2(to[0], STDIN_FILENO) < 0) fatal("ssh_keysign: dup2: %s", strerror(errno)); close(from[1]); close(to[0]); execl(_PATH_SSH_KEY_SIGN, _PATH_SSH_KEY_SIGN, (char *) 0); fatal("ssh_keysign: exec(%s): %s", _PATH_SSH_KEY_SIGN, strerror(errno)); } close(from[1]); close(to[0]); buffer_init(&b); buffer_put_int(&b, packet_get_connection_in()); /* send # of socket */ buffer_put_string(&b, data, datalen); if (ssh_msg_send(to[1], version, &b) == -1) fatal("ssh_keysign: couldn't send request"); if (ssh_msg_recv(from[0], &b) < 0) { error("ssh_keysign: no reply"); buffer_free(&b); return -1; } close(from[0]); close(to[1]); while (waitpid(pid, &status, 0) < 0) if (errno != EINTR) break; if (buffer_get_char(&b) != version) { error("ssh_keysign: bad version"); buffer_free(&b); return -1; } *sigp = buffer_get_string(&b, lenp); buffer_free(&b); return 0; } int userauth_hostbased(Authctxt *authctxt) { Key *private = NULL; Sensitive *sensitive = authctxt->sensitive; Buffer b; u_char *signature, *blob; char *chost, *pkalg, *p; const char *service; u_int blen, slen; int ok, i, found = 0; /* check for a useful key */ for (i = 0; i < sensitive->nkeys; i++) { private = sensitive->keys[i]; if (private && private->type != KEY_RSA1) { found = 1; /* we take and free the key */ sensitive->keys[i] = NULL; break; } } if (!found) { debug("No more client hostkeys for hostbased authentication."); return 0; } if (key_to_blob(private, &blob, &blen) == 0) { key_free(private); return 0; } /* figure out a name for the client host */ p = get_local_name(packet_get_connection_in()); if (p == NULL) { error("userauth_hostbased: cannot get local ipaddr/name"); key_free(private); free(blob); return 0; } xasprintf(&chost, "%s.", p); debug2("userauth_hostbased: chost %s", chost); free(p); service = datafellows & SSH_BUG_HBSERVICE ? "ssh-userauth" : authctxt->service; pkalg = xstrdup(key_ssh_name(private)); buffer_init(&b); /* construct data */ buffer_put_string(&b, session_id2, session_id2_len); buffer_put_char(&b, SSH2_MSG_USERAUTH_REQUEST); buffer_put_cstring(&b, authctxt->server_user); buffer_put_cstring(&b, service); buffer_put_cstring(&b, authctxt->method->name); buffer_put_cstring(&b, pkalg); buffer_put_string(&b, blob, blen); buffer_put_cstring(&b, chost); buffer_put_cstring(&b, authctxt->local_user); #ifdef DEBUG_PK buffer_dump(&b); #endif if (sensitive->external_keysign) ok = ssh_keysign(private, &signature, &slen, buffer_ptr(&b), buffer_len(&b)); else ok = key_sign(private, &signature, &slen, buffer_ptr(&b), buffer_len(&b)); key_free(private); buffer_free(&b); if (ok != 0) { error("key_sign failed"); free(chost); free(pkalg); free(blob); return 0; } packet_start(SSH2_MSG_USERAUTH_REQUEST); packet_put_cstring(authctxt->server_user); packet_put_cstring(authctxt->service); packet_put_cstring(authctxt->method->name); packet_put_cstring(pkalg); packet_put_string(blob, blen); packet_put_cstring(chost); packet_put_cstring(authctxt->local_user); packet_put_string(signature, slen); explicit_bzero(signature, slen); free(signature); free(chost); free(pkalg); free(blob); packet_send(); return 1; } /* find auth method */ /* * given auth method name, if configurable options permit this method fill * in auth_ident field and return true, otherwise return false. */ static int authmethod_is_enabled(Authmethod *method) { if (method == NULL) return 0; /* return false if options indicate this method is disabled */ if (method->enabled == NULL || *method->enabled == 0) return 0; /* return false if batch mode is enabled but method needs interactive mode */ if (method->batch_flag != NULL && *method->batch_flag != 0) return 0; return 1; } static Authmethod * authmethod_lookup(const char *name) { Authmethod *method = NULL; if (name != NULL) for (method = authmethods; method->name != NULL; method++) if (strcmp(name, method->name) == 0) return method; debug2("Unrecognized authentication method name: %s", name ? name : "NULL"); return NULL; } /* XXX internal state */ static Authmethod *current = NULL; static char *supported = NULL; static char *preferred = NULL; /* * Given the authentication method list sent by the server, return the * next method we should try. If the server initially sends a nil list, * use a built-in default list. */ static Authmethod * authmethod_get(char *authlist) { char *name = NULL; u_int next; /* Use a suitable default if we're passed a nil list. */ if (authlist == NULL || strlen(authlist) == 0) authlist = options.preferred_authentications; if (supported == NULL || strcmp(authlist, supported) != 0) { debug3("start over, passed a different list %s", authlist); free(supported); supported = xstrdup(authlist); preferred = options.preferred_authentications; debug3("preferred %s", preferred); current = NULL; } else if (current != NULL && authmethod_is_enabled(current)) return current; for (;;) { if ((name = match_list(preferred, supported, &next)) == NULL) { debug("No more authentication methods to try."); current = NULL; return NULL; } preferred += next; debug3("authmethod_lookup %s", name); debug3("remaining preferred: %s", preferred); if ((current = authmethod_lookup(name)) != NULL && authmethod_is_enabled(current)) { debug3("authmethod_is_enabled %s", name); debug("Next authentication method: %s", name); free(name); return current; } free(name); } } static char * authmethods_get(void) { Authmethod *method = NULL; Buffer b; char *list; buffer_init(&b); for (method = authmethods; method->name != NULL; method++) { if (authmethod_is_enabled(method)) { if (buffer_len(&b) > 0) buffer_append(&b, ",", 1); buffer_append(&b, method->name, strlen(method->name)); } } buffer_append(&b, "\0", 1); list = xstrdup(buffer_ptr(&b)); buffer_free(&b); return list; } Index: head/crypto/openssh/sshd.c =================================================================== --- head/crypto/openssh/sshd.c (revision 291197) +++ head/crypto/openssh/sshd.c (revision 291198) @@ -1,2593 +1,2587 @@ /* $OpenBSD: sshd.c,v 1.420 2014/02/26 21:53:37 markus Exp $ */ /* * Author: Tatu Ylonen * Copyright (c) 1995 Tatu Ylonen , Espoo, Finland * All rights reserved * This program is the ssh daemon. It listens for connections from clients, * and performs authentication, executes use commands or shell, and forwards * information to/from the application to the user client over an encrypted * connection. This can also handle forwarding of X11, TCP/IP, and * authentication agent connections. * * As far as I am concerned, the code I have written for this software * can be used freely for any purpose. Any derived versions of this * software must be clearly marked as such, and if the derived work is * incompatible with the protocol description in the RFC file, it must be * called by a name other than "ssh" or "Secure Shell". * * SSH2 implementation: * Privilege Separation: * * Copyright (c) 2000, 2001, 2002 Markus Friedl. All rights reserved. * Copyright (c) 2002 Niels Provos. 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" __RCSID("$FreeBSD$"); #include #include #include #include #ifdef HAVE_SYS_STAT_H # include #endif #ifdef HAVE_SYS_TIME_H # include #endif #include "openbsd-compat/sys-tree.h" #include "openbsd-compat/sys-queue.h" #include #include #include #include #ifdef HAVE_PATHS_H #include #endif #include #include #include #include #include #include #include #include #include #include #include #include "openbsd-compat/openssl-compat.h" #ifdef HAVE_SECUREWARE #include #include #endif #ifdef __FreeBSD__ #include #if defined(GSSAPI) && defined(HAVE_GSSAPI_GSSAPI_H) #include #elif defined(GSSAPI) && defined(HAVE_GSSAPI_H) #include #endif #endif #include "xmalloc.h" #include "ssh.h" #include "ssh1.h" #include "ssh2.h" #include "rsa.h" #include "sshpty.h" #include "packet.h" #include "log.h" #include "buffer.h" #include "servconf.h" #include "uidswap.h" #include "compat.h" #include "cipher.h" #include "digest.h" #include "key.h" #include "kex.h" #include "dh.h" #include "myproposal.h" #include "authfile.h" #include "pathnames.h" #include "atomicio.h" #include "canohost.h" #include "hostfile.h" #include "auth.h" #include "authfd.h" #include "misc.h" #include "msg.h" #include "dispatch.h" #include "channels.h" #include "session.h" #include "monitor_mm.h" #include "monitor.h" #ifdef GSSAPI #include "ssh-gss.h" #endif #include "monitor_wrap.h" #include "roaming.h" #include "ssh-sandbox.h" #include "version.h" #ifdef LIBWRAP #include #include int allow_severity; int deny_severity; #endif /* LIBWRAP */ #ifndef O_NOCTTY #define O_NOCTTY 0 #endif /* Re-exec fds */ #define REEXEC_DEVCRYPTO_RESERVED_FD (STDERR_FILENO + 1) #define REEXEC_STARTUP_PIPE_FD (STDERR_FILENO + 2) #define REEXEC_CONFIG_PASS_FD (STDERR_FILENO + 3) #define REEXEC_MIN_FREE_FD (STDERR_FILENO + 4) extern char *__progname; /* Server configuration options. */ ServerOptions options; /* Name of the server configuration file. */ char *config_file_name = _PATH_SERVER_CONFIG_FILE; /* * Debug mode flag. This can be set on the command line. If debug * mode is enabled, extra debugging output will be sent to the system * log, the daemon will not go to background, and will exit after processing * the first connection. */ int debug_flag = 0; /* Flag indicating that the daemon should only test the configuration and keys. */ int test_flag = 0; /* Flag indicating that the daemon is being started from inetd. */ int inetd_flag = 0; /* Flag indicating that sshd should not detach and become a daemon. */ int no_daemon_flag = 0; /* debug goes to stderr unless inetd_flag is set */ int log_stderr = 0; /* Saved arguments to main(). */ char **saved_argv; int saved_argc; /* re-exec */ int rexeced_flag = 0; int rexec_flag = 1; int rexec_argc = 0; char **rexec_argv; /* * The sockets that the server is listening; this is used in the SIGHUP * signal handler. */ #define MAX_LISTEN_SOCKS 16 int listen_socks[MAX_LISTEN_SOCKS]; int num_listen_socks = 0; /* * the client's version string, passed by sshd2 in compat mode. if != NULL, * sshd will skip the version-number exchange */ char *client_version_string = NULL; char *server_version_string = NULL; /* for rekeying XXX fixme */ Kex *xxx_kex; /* Daemon's agent connection */ AuthenticationConnection *auth_conn = NULL; int have_agent = 0; /* * Any really sensitive data in the application is contained in this * structure. The idea is that this structure could be locked into memory so * that the pages do not get written into swap. However, there are some * problems. The private key contains BIGNUMs, and we do not (in principle) * have access to the internals of them, and locking just the structure is * not very useful. Currently, memory locking is not implemented. */ struct { Key *server_key; /* ephemeral server key */ Key *ssh1_host_key; /* ssh1 host key */ Key **host_keys; /* all private host keys */ Key **host_pubkeys; /* all public host keys */ Key **host_certificates; /* all public host certificates */ int have_ssh1_key; int have_ssh2_key; u_char ssh1_cookie[SSH_SESSION_KEY_LENGTH]; } sensitive_data; /* * Flag indicating whether the RSA server key needs to be regenerated. * Is set in the SIGALRM handler and cleared when the key is regenerated. */ static volatile sig_atomic_t key_do_regen = 0; /* This is set to true when a signal is received. */ static volatile sig_atomic_t received_sighup = 0; static volatile sig_atomic_t received_sigterm = 0; /* session identifier, used by RSA-auth */ u_char session_id[16]; /* same for ssh2 */ u_char *session_id2 = NULL; u_int session_id2_len = 0; /* record remote hostname or ip */ u_int utmp_len = MAXHOSTNAMELEN; /* options.max_startup sized array of fd ints */ int *startup_pipes = NULL; int startup_pipe; /* in child */ /* variables used for privilege separation */ int use_privsep = -1; struct monitor *pmonitor = NULL; int privsep_is_preauth = 1; /* global authentication context */ Authctxt *the_authctxt = NULL; /* sshd_config buffer */ Buffer cfg; /* message to be displayed after login */ Buffer loginmsg; /* Unprivileged user */ struct passwd *privsep_pw = NULL; /* Prototypes for various functions defined later in this file. */ void destroy_sensitive_data(void); void demote_sensitive_data(void); static void do_ssh1_kex(void); static void do_ssh2_kex(void); /* * Close all listening sockets */ static void close_listen_socks(void) { int i; for (i = 0; i < num_listen_socks; i++) close(listen_socks[i]); num_listen_socks = -1; } static void close_startup_pipes(void) { int i; if (startup_pipes) for (i = 0; i < options.max_startups; i++) if (startup_pipes[i] != -1) close(startup_pipes[i]); } /* * Signal handler for SIGHUP. Sshd execs itself when it receives SIGHUP; * the effect is to reread the configuration file (and to regenerate * the server key). */ /*ARGSUSED*/ static void sighup_handler(int sig) { int save_errno = errno; received_sighup = 1; signal(SIGHUP, sighup_handler); errno = save_errno; } /* * Called from the main program after receiving SIGHUP. * Restarts the server. */ static void sighup_restart(void) { logit("Received SIGHUP; restarting."); platform_pre_restart(); close_listen_socks(); close_startup_pipes(); alarm(0); /* alarm timer persists across exec */ signal(SIGHUP, SIG_IGN); /* will be restored after exec */ execv(saved_argv[0], saved_argv); logit("RESTART FAILED: av[0]='%.100s', error: %.100s.", saved_argv[0], strerror(errno)); exit(1); } /* * Generic signal handler for terminating signals in the master daemon. */ /*ARGSUSED*/ static void sigterm_handler(int sig) { received_sigterm = sig; } /* * SIGCHLD handler. This is called whenever a child dies. This will then * reap any zombies left by exited children. */ /*ARGSUSED*/ static void main_sigchld_handler(int sig) { int save_errno = errno; pid_t pid; int status; while ((pid = waitpid(-1, &status, WNOHANG)) > 0 || (pid < 0 && errno == EINTR)) ; signal(SIGCHLD, main_sigchld_handler); errno = save_errno; } /* * Signal handler for the alarm after the login grace period has expired. */ /*ARGSUSED*/ static void grace_alarm_handler(int sig) { if (use_privsep && pmonitor != NULL && pmonitor->m_pid > 0) kill(pmonitor->m_pid, SIGALRM); /* * Try to kill any processes that we have spawned, E.g. authorized * keys command helpers. */ if (getpgid(0) == getpid()) { signal(SIGTERM, SIG_IGN); kill(0, SIGTERM); } /* Log error and exit. */ sigdie("Timeout before authentication for %s", get_remote_ipaddr()); } /* * Signal handler for the key regeneration alarm. Note that this * alarm only occurs in the daemon waiting for connections, and it does not * do anything with the private key or random state before forking. * Thus there should be no concurrency control/asynchronous execution * problems. */ static void generate_ephemeral_server_key(void) { verbose("Generating %s%d bit RSA key.", sensitive_data.server_key ? "new " : "", options.server_key_bits); if (sensitive_data.server_key != NULL) key_free(sensitive_data.server_key); sensitive_data.server_key = key_generate(KEY_RSA1, options.server_key_bits); verbose("RSA key generation complete."); arc4random_buf(sensitive_data.ssh1_cookie, SSH_SESSION_KEY_LENGTH); } /*ARGSUSED*/ static void key_regeneration_alarm(int sig) { int save_errno = errno; signal(SIGALRM, SIG_DFL); errno = save_errno; key_do_regen = 1; } static void sshd_exchange_identification(int sock_in, int sock_out) { u_int i; int mismatch; int remote_major, remote_minor; int major, minor; char *s, *newline = "\n"; char buf[256]; /* Must not be larger than remote_version. */ char remote_version[256]; /* Must be at least as big as buf. */ if ((options.protocol & SSH_PROTO_1) && (options.protocol & SSH_PROTO_2)) { major = PROTOCOL_MAJOR_1; minor = 99; } else if (options.protocol & SSH_PROTO_2) { major = PROTOCOL_MAJOR_2; minor = PROTOCOL_MINOR_2; newline = "\r\n"; } else { major = PROTOCOL_MAJOR_1; minor = PROTOCOL_MINOR_1; } xasprintf(&server_version_string, "SSH-%d.%d-%.100s%s%s%s%s", major, minor, SSH_VERSION, options.hpn_disabled ? "" : SSH_VERSION_HPN, *options.version_addendum == '\0' ? "" : " ", options.version_addendum, newline); /* Send our protocol version identification. */ if (roaming_atomicio(vwrite, sock_out, server_version_string, strlen(server_version_string)) != strlen(server_version_string)) { logit("Could not write ident string to %s", get_remote_ipaddr()); cleanup_exit(255); } /* Read other sides version identification. */ memset(buf, 0, sizeof(buf)); for (i = 0; i < sizeof(buf) - 1; i++) { if (roaming_atomicio(read, sock_in, &buf[i], 1) != 1) { logit("Did not receive identification string from %s", get_remote_ipaddr()); cleanup_exit(255); } if (buf[i] == '\r') { buf[i] = 0; /* Kludge for F-Secure Macintosh < 1.0.2 */ if (i == 12 && strncmp(buf, "SSH-1.5-W1.0", 12) == 0) break; continue; } if (buf[i] == '\n') { buf[i] = 0; break; } } buf[sizeof(buf) - 1] = 0; client_version_string = xstrdup(buf); /* * Check that the versions match. In future this might accept * several versions and set appropriate flags to handle them. */ if (sscanf(client_version_string, "SSH-%d.%d-%[^\n]\n", &remote_major, &remote_minor, remote_version) != 3) { s = "Protocol mismatch.\n"; (void) atomicio(vwrite, sock_out, s, strlen(s)); logit("Bad protocol version identification '%.100s' " "from %s port %d", client_version_string, get_remote_ipaddr(), get_remote_port()); close(sock_in); close(sock_out); cleanup_exit(255); } debug("Client protocol version %d.%d; client software version %.100s", remote_major, remote_minor, remote_version); compat_datafellows(remote_version); if ((datafellows & SSH_BUG_PROBE) != 0) { logit("probed from %s with %s. Don't panic.", get_remote_ipaddr(), client_version_string); cleanup_exit(255); } if ((datafellows & SSH_BUG_SCANNER) != 0) { logit("scanned from %s with %s. Don't panic.", get_remote_ipaddr(), client_version_string); cleanup_exit(255); } if ((datafellows & SSH_BUG_RSASIGMD5) != 0) { logit("Client version \"%.100s\" uses unsafe RSA signature " "scheme; disabling use of RSA keys", remote_version); } if ((datafellows & SSH_BUG_DERIVEKEY) != 0) { fatal("Client version \"%.100s\" uses unsafe key agreement; " "refusing connection", remote_version); } mismatch = 0; switch (remote_major) { case 1: if (remote_minor == 99) { if (options.protocol & SSH_PROTO_2) enable_compat20(); else mismatch = 1; break; } if (!(options.protocol & SSH_PROTO_1)) { mismatch = 1; break; } if (remote_minor < 3) { packet_disconnect("Your ssh version is too old and " "is no longer supported. Please install a newer version."); } else if (remote_minor == 3) { /* note that this disables agent-forwarding */ enable_compat13(); } break; case 2: if (options.protocol & SSH_PROTO_2) { enable_compat20(); break; } /* FALLTHROUGH */ default: mismatch = 1; break; } chop(server_version_string); debug("Local version string %.200s", server_version_string); if (mismatch) { s = "Protocol major versions differ.\n"; (void) atomicio(vwrite, sock_out, s, strlen(s)); close(sock_in); close(sock_out); logit("Protocol major versions differ for %s: %.200s vs. %.200s", get_remote_ipaddr(), server_version_string, client_version_string); cleanup_exit(255); } } /* Destroy the host and server keys. They will no longer be needed. */ void destroy_sensitive_data(void) { int i; if (sensitive_data.server_key) { key_free(sensitive_data.server_key); sensitive_data.server_key = NULL; } for (i = 0; i < options.num_host_key_files; i++) { if (sensitive_data.host_keys[i]) { key_free(sensitive_data.host_keys[i]); sensitive_data.host_keys[i] = NULL; } if (sensitive_data.host_certificates[i]) { key_free(sensitive_data.host_certificates[i]); sensitive_data.host_certificates[i] = NULL; } } sensitive_data.ssh1_host_key = NULL; explicit_bzero(sensitive_data.ssh1_cookie, SSH_SESSION_KEY_LENGTH); } /* Demote private to public keys for network child */ void demote_sensitive_data(void) { Key *tmp; int i; if (sensitive_data.server_key) { tmp = key_demote(sensitive_data.server_key); key_free(sensitive_data.server_key); sensitive_data.server_key = tmp; } for (i = 0; i < options.num_host_key_files; i++) { if (sensitive_data.host_keys[i]) { tmp = key_demote(sensitive_data.host_keys[i]); key_free(sensitive_data.host_keys[i]); sensitive_data.host_keys[i] = tmp; if (tmp->type == KEY_RSA1) sensitive_data.ssh1_host_key = tmp; } /* Certs do not need demotion */ } /* We do not clear ssh1_host key and cookie. XXX - Okay Niels? */ } static void privsep_preauth_child(void) { u_int32_t rnd[256]; gid_t gidset[1]; /* Enable challenge-response authentication for privilege separation */ privsep_challenge_enable(); #ifdef GSSAPI /* Cache supported mechanism OIDs for later use */ if (options.gss_authentication) ssh_gssapi_prepare_supported_oids(); #endif arc4random_stir(); arc4random_buf(rnd, sizeof(rnd)); RAND_seed(rnd, sizeof(rnd)); explicit_bzero(rnd, sizeof(rnd)); /* Demote the private keys to public keys. */ demote_sensitive_data(); /* Change our root directory */ if (chroot(_PATH_PRIVSEP_CHROOT_DIR) == -1) fatal("chroot(\"%s\"): %s", _PATH_PRIVSEP_CHROOT_DIR, strerror(errno)); if (chdir("/") == -1) fatal("chdir(\"/\"): %s", strerror(errno)); /* Drop our privileges */ debug3("privsep user:group %u:%u", (u_int)privsep_pw->pw_uid, (u_int)privsep_pw->pw_gid); #if 0 /* XXX not ready, too heavy after chroot */ do_setusercontext(privsep_pw); #else gidset[0] = privsep_pw->pw_gid; if (setgroups(1, gidset) < 0) fatal("setgroups: %.100s", strerror(errno)); permanently_set_uid(privsep_pw); #endif } static int privsep_preauth(Authctxt *authctxt) { int status; pid_t pid; struct ssh_sandbox *box = NULL; /* Set up unprivileged child process to deal with network data */ pmonitor = monitor_init(); /* Store a pointer to the kex for later rekeying */ pmonitor->m_pkex = &xxx_kex; if (use_privsep == PRIVSEP_ON) box = ssh_sandbox_init(pmonitor); pid = fork(); if (pid == -1) { fatal("fork of unprivileged child failed"); } else if (pid != 0) { debug2("Network child is on pid %ld", (long)pid); pmonitor->m_pid = pid; if (have_agent) auth_conn = ssh_get_authentication_connection(); if (box != NULL) ssh_sandbox_parent_preauth(box, pid); monitor_child_preauth(authctxt, pmonitor); /* Sync memory */ monitor_sync(pmonitor); /* Wait for the child's exit status */ while (waitpid(pid, &status, 0) < 0) { if (errno == EINTR) continue; pmonitor->m_pid = -1; fatal("%s: waitpid: %s", __func__, strerror(errno)); } privsep_is_preauth = 0; pmonitor->m_pid = -1; if (WIFEXITED(status)) { if (WEXITSTATUS(status) != 0) fatal("%s: preauth child exited with status %d", __func__, WEXITSTATUS(status)); } else if (WIFSIGNALED(status)) fatal("%s: preauth child terminated by signal %d", __func__, WTERMSIG(status)); if (box != NULL) ssh_sandbox_parent_finish(box); return 1; } else { /* child */ close(pmonitor->m_sendfd); close(pmonitor->m_log_recvfd); /* Arrange for logging to be sent to the monitor */ set_log_handler(mm_log_handler, pmonitor); /* Demote the child */ if (getuid() == 0 || geteuid() == 0) privsep_preauth_child(); setproctitle("%s", "[net]"); if (box != NULL) ssh_sandbox_child(box); return 0; } } static void privsep_postauth(Authctxt *authctxt) { u_int32_t rnd[256]; #ifdef DISABLE_FD_PASSING if (1) { #else if (authctxt->pw->pw_uid == 0 || options.use_login) { #endif /* File descriptor passing is broken or root login */ use_privsep = 0; goto skip; } /* New socket pair */ monitor_reinit(pmonitor); pmonitor->m_pid = fork(); if (pmonitor->m_pid == -1) fatal("fork of unprivileged child failed"); else if (pmonitor->m_pid != 0) { verbose("User child is on pid %ld", (long)pmonitor->m_pid); buffer_clear(&loginmsg); monitor_child_postauth(pmonitor); /* NEVERREACHED */ exit(0); } /* child */ close(pmonitor->m_sendfd); pmonitor->m_sendfd = -1; /* Demote the private keys to public keys. */ demote_sensitive_data(); arc4random_stir(); arc4random_buf(rnd, sizeof(rnd)); RAND_seed(rnd, sizeof(rnd)); explicit_bzero(rnd, sizeof(rnd)); /* Drop privileges */ do_setusercontext(authctxt->pw); skip: /* It is safe now to apply the key state */ monitor_apply_keystate(pmonitor); /* * Tell the packet layer that authentication was successful, since * this information is not part of the key state. */ packet_set_authenticated(); } static char * list_hostkey_types(void) { Buffer b; const char *p; char *ret; int i; Key *key; buffer_init(&b); for (i = 0; i < options.num_host_key_files; i++) { key = sensitive_data.host_keys[i]; if (key == NULL) key = sensitive_data.host_pubkeys[i]; if (key == NULL) continue; switch (key->type) { case KEY_RSA: case KEY_DSA: case KEY_ECDSA: case KEY_ED25519: if (buffer_len(&b) > 0) buffer_append(&b, ",", 1); p = key_ssh_name(key); buffer_append(&b, p, strlen(p)); break; } /* If the private key has a cert peer, then list that too */ key = sensitive_data.host_certificates[i]; if (key == NULL) continue; switch (key->type) { case KEY_RSA_CERT_V00: case KEY_DSA_CERT_V00: case KEY_RSA_CERT: case KEY_DSA_CERT: case KEY_ECDSA_CERT: case KEY_ED25519_CERT: if (buffer_len(&b) > 0) buffer_append(&b, ",", 1); p = key_ssh_name(key); buffer_append(&b, p, strlen(p)); break; } } buffer_append(&b, "\0", 1); ret = xstrdup(buffer_ptr(&b)); buffer_free(&b); debug("list_hostkey_types: %s", ret); return ret; } static Key * get_hostkey_by_type(int type, int need_private) { int i; Key *key; for (i = 0; i < options.num_host_key_files; i++) { switch (type) { case KEY_RSA_CERT_V00: case KEY_DSA_CERT_V00: case KEY_RSA_CERT: case KEY_DSA_CERT: case KEY_ECDSA_CERT: case KEY_ED25519_CERT: key = sensitive_data.host_certificates[i]; break; default: key = sensitive_data.host_keys[i]; if (key == NULL && !need_private) key = sensitive_data.host_pubkeys[i]; break; } if (key != NULL && key->type == type) return need_private ? sensitive_data.host_keys[i] : key; } return NULL; } Key * get_hostkey_public_by_type(int type) { return get_hostkey_by_type(type, 0); } Key * get_hostkey_private_by_type(int type) { return get_hostkey_by_type(type, 1); } Key * get_hostkey_by_index(int ind) { if (ind < 0 || ind >= options.num_host_key_files) return (NULL); return (sensitive_data.host_keys[ind]); } Key * get_hostkey_public_by_index(int ind) { if (ind < 0 || ind >= options.num_host_key_files) return (NULL); return (sensitive_data.host_pubkeys[ind]); } int get_hostkey_index(Key *key) { int i; for (i = 0; i < options.num_host_key_files; i++) { if (key_is_cert(key)) { if (key == sensitive_data.host_certificates[i]) return (i); } else { if (key == sensitive_data.host_keys[i]) return (i); if (key == sensitive_data.host_pubkeys[i]) return (i); } } return (-1); } /* * returns 1 if connection should be dropped, 0 otherwise. * dropping starts at connection #max_startups_begin with a probability * of (max_startups_rate/100). the probability increases linearly until * all connections are dropped for startups > max_startups */ static int drop_connection(int startups) { int p, r; if (startups < options.max_startups_begin) return 0; if (startups >= options.max_startups) return 1; if (options.max_startups_rate == 100) return 1; p = 100 - options.max_startups_rate; p *= startups - options.max_startups_begin; p /= options.max_startups - options.max_startups_begin; p += options.max_startups_rate; r = arc4random_uniform(100); debug("drop_connection: p %d, r %d", p, r); return (r < p) ? 1 : 0; } static void usage(void) { if (options.version_addendum && *options.version_addendum != '\0') fprintf(stderr, "%s%s %s, %s\n", SSH_RELEASE, options.hpn_disabled ? "" : SSH_VERSION_HPN, options.version_addendum, SSLeay_version(SSLEAY_VERSION)); else fprintf(stderr, "%s%s, %s\n", SSH_RELEASE, options.hpn_disabled ? "" : SSH_VERSION_HPN, SSLeay_version(SSLEAY_VERSION)); fprintf(stderr, "usage: sshd [-46DdeiqTt] [-b bits] [-C connection_spec] [-c host_cert_file]\n" " [-E log_file] [-f config_file] [-g login_grace_time]\n" " [-h host_key_file] [-k key_gen_time] [-o option] [-p port]\n" " [-u len]\n" ); exit(1); } static void send_rexec_state(int fd, Buffer *conf) { Buffer m; debug3("%s: entering fd = %d config len %d", __func__, fd, buffer_len(conf)); /* * Protocol from reexec master to child: * string configuration * u_int ephemeral_key_follows * bignum e (only if ephemeral_key_follows == 1) * bignum n " * bignum d " * bignum iqmp " * bignum p " * bignum q " * string rngseed (only if OpenSSL is not self-seeded) */ buffer_init(&m); buffer_put_cstring(&m, buffer_ptr(conf)); if (sensitive_data.server_key != NULL && sensitive_data.server_key->type == KEY_RSA1) { buffer_put_int(&m, 1); buffer_put_bignum(&m, sensitive_data.server_key->rsa->e); buffer_put_bignum(&m, sensitive_data.server_key->rsa->n); buffer_put_bignum(&m, sensitive_data.server_key->rsa->d); buffer_put_bignum(&m, sensitive_data.server_key->rsa->iqmp); buffer_put_bignum(&m, sensitive_data.server_key->rsa->p); buffer_put_bignum(&m, sensitive_data.server_key->rsa->q); } else buffer_put_int(&m, 0); #ifndef OPENSSL_PRNG_ONLY rexec_send_rng_seed(&m); #endif if (ssh_msg_send(fd, 0, &m) == -1) fatal("%s: ssh_msg_send failed", __func__); buffer_free(&m); debug3("%s: done", __func__); } static void recv_rexec_state(int fd, Buffer *conf) { Buffer m; char *cp; u_int len; debug3("%s: entering fd = %d", __func__, fd); buffer_init(&m); if (ssh_msg_recv(fd, &m) == -1) fatal("%s: ssh_msg_recv failed", __func__); if (buffer_get_char(&m) != 0) fatal("%s: rexec version mismatch", __func__); cp = buffer_get_string(&m, &len); if (conf != NULL) buffer_append(conf, cp, len + 1); free(cp); if (buffer_get_int(&m)) { if (sensitive_data.server_key != NULL) key_free(sensitive_data.server_key); sensitive_data.server_key = key_new_private(KEY_RSA1); buffer_get_bignum(&m, sensitive_data.server_key->rsa->e); buffer_get_bignum(&m, sensitive_data.server_key->rsa->n); buffer_get_bignum(&m, sensitive_data.server_key->rsa->d); buffer_get_bignum(&m, sensitive_data.server_key->rsa->iqmp); buffer_get_bignum(&m, sensitive_data.server_key->rsa->p); buffer_get_bignum(&m, sensitive_data.server_key->rsa->q); rsa_generate_additional_parameters( sensitive_data.server_key->rsa); } #ifndef OPENSSL_PRNG_ONLY rexec_recv_rng_seed(&m); #endif buffer_free(&m); debug3("%s: done", __func__); } /* Accept a connection from inetd */ static void server_accept_inetd(int *sock_in, int *sock_out) { int fd; startup_pipe = -1; if (rexeced_flag) { close(REEXEC_CONFIG_PASS_FD); *sock_in = *sock_out = dup(STDIN_FILENO); if (!debug_flag) { startup_pipe = dup(REEXEC_STARTUP_PIPE_FD); close(REEXEC_STARTUP_PIPE_FD); } } else { *sock_in = dup(STDIN_FILENO); *sock_out = dup(STDOUT_FILENO); } /* * We intentionally do not close the descriptors 0, 1, and 2 * as our code for setting the descriptors won't work if * ttyfd happens to be one of those. */ if ((fd = open(_PATH_DEVNULL, O_RDWR, 0)) != -1) { dup2(fd, STDIN_FILENO); dup2(fd, STDOUT_FILENO); if (!log_stderr) dup2(fd, STDERR_FILENO); if (fd > (log_stderr ? STDERR_FILENO : STDOUT_FILENO)) close(fd); } debug("inetd sockets after dupping: %d, %d", *sock_in, *sock_out); } /* * Listen for TCP connections */ static void server_listen(void) { int ret, listen_sock, on = 1; struct addrinfo *ai; char ntop[NI_MAXHOST], strport[NI_MAXSERV]; int socksize; socklen_t len; for (ai = options.listen_addrs; ai; ai = ai->ai_next) { if (ai->ai_family != AF_INET && ai->ai_family != AF_INET6) continue; if (num_listen_socks >= MAX_LISTEN_SOCKS) fatal("Too many listen sockets. " "Enlarge MAX_LISTEN_SOCKS"); if ((ret = getnameinfo(ai->ai_addr, ai->ai_addrlen, ntop, sizeof(ntop), strport, sizeof(strport), NI_NUMERICHOST|NI_NUMERICSERV)) != 0) { error("getnameinfo failed: %.100s", ssh_gai_strerror(ret)); continue; } /* Create socket for listening. */ listen_sock = socket(ai->ai_family, ai->ai_socktype, ai->ai_protocol); if (listen_sock < 0) { /* kernel may not support ipv6 */ verbose("socket: %.100s", strerror(errno)); continue; } if (set_nonblock(listen_sock) == -1) { close(listen_sock); continue; } /* * Set socket options. * Allow local port reuse in TIME_WAIT. */ if (setsockopt(listen_sock, SOL_SOCKET, SO_REUSEADDR, &on, sizeof(on)) == -1) error("setsockopt SO_REUSEADDR: %s", strerror(errno)); /* Only communicate in IPv6 over AF_INET6 sockets. */ if (ai->ai_family == AF_INET6) sock_set_v6only(listen_sock); debug("Bind to port %s on %s.", strport, ntop); len = sizeof(socksize); getsockopt(listen_sock, SOL_SOCKET, SO_RCVBUF, &socksize, &len); debug("Server TCP RWIN socket size: %d", socksize); debug("HPN Buffer Size: %d", options.hpn_buffer_size); /* Bind the socket to the desired port. */ if (bind(listen_sock, ai->ai_addr, ai->ai_addrlen) < 0) { error("Bind to port %s on %s failed: %.200s.", strport, ntop, strerror(errno)); close(listen_sock); continue; } listen_socks[num_listen_socks] = listen_sock; num_listen_socks++; /* Start listening on the port. */ if (listen(listen_sock, SSH_LISTEN_BACKLOG) < 0) fatal("listen on [%s]:%s: %.100s", ntop, strport, strerror(errno)); logit("Server listening on %s port %s.", ntop, strport); } freeaddrinfo(options.listen_addrs); if (!num_listen_socks) fatal("Cannot bind any address."); } /* * The main TCP accept loop. Note that, for the non-debug case, returns * from this function are in a forked subprocess. */ static void server_accept_loop(int *sock_in, int *sock_out, int *newsock, int *config_s) { fd_set *fdset; int i, j, ret, maxfd; int key_used = 0, startups = 0; int startup_p[2] = { -1 , -1 }; struct sockaddr_storage from; socklen_t fromlen; pid_t pid; u_char rnd[256]; /* setup fd set for accept */ fdset = NULL; maxfd = 0; for (i = 0; i < num_listen_socks; i++) if (listen_socks[i] > maxfd) maxfd = listen_socks[i]; /* pipes connected to unauthenticated childs */ startup_pipes = xcalloc(options.max_startups, sizeof(int)); for (i = 0; i < options.max_startups; i++) startup_pipes[i] = -1; /* * Stay listening for connections until the system crashes or * the daemon is killed with a signal. */ for (;;) { if (received_sighup) sighup_restart(); if (fdset != NULL) free(fdset); fdset = (fd_set *)xcalloc(howmany(maxfd + 1, NFDBITS), sizeof(fd_mask)); for (i = 0; i < num_listen_socks; i++) FD_SET(listen_socks[i], fdset); for (i = 0; i < options.max_startups; i++) if (startup_pipes[i] != -1) FD_SET(startup_pipes[i], fdset); /* Wait in select until there is a connection. */ ret = select(maxfd+1, fdset, NULL, NULL, NULL); if (ret < 0 && errno != EINTR) error("select: %.100s", strerror(errno)); if (received_sigterm) { logit("Received signal %d; terminating.", (int) received_sigterm); close_listen_socks(); unlink(options.pid_file); exit(received_sigterm == SIGTERM ? 0 : 255); } if (key_used && key_do_regen) { generate_ephemeral_server_key(); key_used = 0; key_do_regen = 0; } if (ret < 0) continue; for (i = 0; i < options.max_startups; i++) if (startup_pipes[i] != -1 && FD_ISSET(startup_pipes[i], fdset)) { /* * the read end of the pipe is ready * if the child has closed the pipe * after successful authentication * or if the child has died */ close(startup_pipes[i]); startup_pipes[i] = -1; startups--; } for (i = 0; i < num_listen_socks; i++) { if (!FD_ISSET(listen_socks[i], fdset)) continue; fromlen = sizeof(from); *newsock = accept(listen_socks[i], (struct sockaddr *)&from, &fromlen); if (*newsock < 0) { if (errno != EINTR && errno != EWOULDBLOCK && errno != ECONNABORTED && errno != EAGAIN) error("accept: %.100s", strerror(errno)); if (errno == EMFILE || errno == ENFILE) usleep(100 * 1000); continue; } if (unset_nonblock(*newsock) == -1) { close(*newsock); continue; } if (drop_connection(startups) == 1) { debug("drop connection #%d", startups); close(*newsock); continue; } if (pipe(startup_p) == -1) { close(*newsock); continue; } if (rexec_flag && socketpair(AF_UNIX, SOCK_STREAM, 0, config_s) == -1) { error("reexec socketpair: %s", strerror(errno)); close(*newsock); close(startup_p[0]); close(startup_p[1]); continue; } for (j = 0; j < options.max_startups; j++) if (startup_pipes[j] == -1) { startup_pipes[j] = startup_p[0]; if (maxfd < startup_p[0]) maxfd = startup_p[0]; startups++; break; } /* * Got connection. Fork a child to handle it, unless * we are in debugging mode. */ if (debug_flag) { /* * In debugging mode. Close the listening * socket, and start processing the * connection without forking. */ debug("Server will not fork when running in debugging mode."); close_listen_socks(); *sock_in = *newsock; *sock_out = *newsock; close(startup_p[0]); close(startup_p[1]); startup_pipe = -1; pid = getpid(); if (rexec_flag) { send_rexec_state(config_s[0], &cfg); close(config_s[0]); } break; } /* * Normal production daemon. Fork, and have * the child process the connection. The * parent continues listening. */ platform_pre_fork(); if ((pid = fork()) == 0) { /* * Child. Close the listening and * max_startup sockets. Start using * the accepted socket. Reinitialize * logging (since our pid has changed). * We break out of the loop to handle * the connection. */ platform_post_fork_child(); startup_pipe = startup_p[1]; close_startup_pipes(); close_listen_socks(); *sock_in = *newsock; *sock_out = *newsock; log_init(__progname, options.log_level, options.log_facility, log_stderr); if (rexec_flag) close(config_s[0]); break; } /* Parent. Stay in the loop. */ platform_post_fork_parent(pid); if (pid < 0) error("fork: %.100s", strerror(errno)); else debug("Forked child %ld.", (long)pid); close(startup_p[1]); if (rexec_flag) { send_rexec_state(config_s[0], &cfg); close(config_s[0]); close(config_s[1]); } /* * Mark that the key has been used (it * was "given" to the child). */ if ((options.protocol & SSH_PROTO_1) && key_used == 0) { /* Schedule server key regeneration alarm. */ signal(SIGALRM, key_regeneration_alarm); alarm(options.key_regeneration_time); key_used = 1; } close(*newsock); /* * Ensure that our random state differs * from that of the child */ arc4random_stir(); arc4random_buf(rnd, sizeof(rnd)); RAND_seed(rnd, sizeof(rnd)); explicit_bzero(rnd, sizeof(rnd)); } /* child process check (or debug mode) */ if (num_listen_socks < 0) break; } } /* * Main program for the daemon. */ int main(int ac, char **av) { extern char *optarg; extern int optind; int opt, i, j, on = 1; int sock_in = -1, sock_out = -1, newsock = -1; const char *remote_ip; int remote_port; char *line, *logfile = NULL; int config_s[2] = { -1 , -1 }; u_int n; u_int64_t ibytes, obytes; mode_t new_umask; Key *key; Key *pubkey; int keytype; Authctxt *authctxt; struct connection_info *connection_info = get_connection_info(0, 0); #ifdef HAVE_SECUREWARE (void)set_auth_parameters(ac, av); #endif __progname = ssh_get_progname(av[0]); /* Save argv. Duplicate so setproctitle emulation doesn't clobber it */ saved_argc = ac; rexec_argc = ac; saved_argv = xcalloc(ac + 1, sizeof(*saved_argv)); for (i = 0; i < ac; i++) saved_argv[i] = xstrdup(av[i]); saved_argv[i] = NULL; #ifndef HAVE_SETPROCTITLE /* Prepare for later setproctitle emulation */ compat_init_setproctitle(ac, av); av = saved_argv; #endif if (geteuid() == 0 && setgroups(0, NULL) == -1) debug("setgroups(): %.200s", strerror(errno)); /* Ensure that fds 0, 1 and 2 are open or directed to /dev/null */ sanitise_stdfd(); /* Initialize configuration options to their default values. */ initialize_server_options(&options); /* Parse command-line arguments. */ while ((opt = getopt(ac, av, "f:p:b:k:h:g:u:o:C:dDeE:iqrtQRT46")) != -1) { switch (opt) { case '4': options.address_family = AF_INET; break; case '6': options.address_family = AF_INET6; break; case 'f': config_file_name = optarg; break; case 'c': if (options.num_host_cert_files >= MAX_HOSTCERTS) { fprintf(stderr, "too many host certificates.\n"); exit(1); } options.host_cert_files[options.num_host_cert_files++] = derelativise_path(optarg); break; case 'd': if (debug_flag == 0) { debug_flag = 1; options.log_level = SYSLOG_LEVEL_DEBUG1; } else if (options.log_level < SYSLOG_LEVEL_DEBUG3) options.log_level++; break; case 'D': no_daemon_flag = 1; break; case 'E': logfile = xstrdup(optarg); /* FALLTHROUGH */ case 'e': log_stderr = 1; break; case 'i': inetd_flag = 1; break; case 'r': rexec_flag = 0; break; case 'R': rexeced_flag = 1; inetd_flag = 1; break; case 'Q': /* ignored */ break; case 'q': options.log_level = SYSLOG_LEVEL_QUIET; break; case 'b': options.server_key_bits = (int)strtonum(optarg, 256, 32768, NULL); break; case 'p': options.ports_from_cmdline = 1; if (options.num_ports >= MAX_PORTS) { fprintf(stderr, "too many ports.\n"); exit(1); } options.ports[options.num_ports++] = a2port(optarg); if (options.ports[options.num_ports-1] <= 0) { fprintf(stderr, "Bad port number.\n"); exit(1); } break; case 'g': if ((options.login_grace_time = convtime(optarg)) == -1) { fprintf(stderr, "Invalid login grace time.\n"); exit(1); } break; case 'k': if ((options.key_regeneration_time = convtime(optarg)) == -1) { fprintf(stderr, "Invalid key regeneration interval.\n"); exit(1); } break; case 'h': if (options.num_host_key_files >= MAX_HOSTKEYS) { fprintf(stderr, "too many host keys.\n"); exit(1); } options.host_key_files[options.num_host_key_files++] = derelativise_path(optarg); break; case 't': test_flag = 1; break; case 'T': test_flag = 2; break; case 'C': if (parse_server_match_testspec(connection_info, optarg) == -1) exit(1); break; case 'u': utmp_len = (u_int)strtonum(optarg, 0, MAXHOSTNAMELEN+1, NULL); if (utmp_len > MAXHOSTNAMELEN) { fprintf(stderr, "Invalid utmp length.\n"); exit(1); } break; case 'o': line = xstrdup(optarg); if (process_server_config_line(&options, line, "command-line", 0, NULL, NULL) != 0) exit(1); free(line); break; case '?': default: usage(); break; } } if (rexeced_flag || inetd_flag) rexec_flag = 0; if (!test_flag && (rexec_flag && (av[0] == NULL || *av[0] != '/'))) fatal("sshd re-exec requires execution with an absolute path"); if (rexeced_flag) closefrom(REEXEC_MIN_FREE_FD); else closefrom(REEXEC_DEVCRYPTO_RESERVED_FD); OpenSSL_add_all_algorithms(); /* If requested, redirect the logs to the specified logfile. */ if (logfile != NULL) { log_redirect_stderr_to(logfile); free(logfile); } /* * Force logging to stderr until we have loaded the private host * key (unless started from inetd) */ log_init(__progname, options.log_level == SYSLOG_LEVEL_NOT_SET ? SYSLOG_LEVEL_INFO : options.log_level, options.log_facility == SYSLOG_FACILITY_NOT_SET ? SYSLOG_FACILITY_AUTH : options.log_facility, log_stderr || !inetd_flag); /* * Unset KRB5CCNAME, otherwise the user's session may inherit it from * root's environment */ if (getenv("KRB5CCNAME") != NULL) (void) unsetenv("KRB5CCNAME"); #ifdef _UNICOS /* Cray can define user privs drop all privs now! * Not needed on PRIV_SU systems! */ drop_cray_privs(); #endif sensitive_data.server_key = NULL; sensitive_data.ssh1_host_key = NULL; sensitive_data.have_ssh1_key = 0; sensitive_data.have_ssh2_key = 0; /* * If we're doing an extended config test, make sure we have all of * the parameters we need. If we're not doing an extended test, * do not silently ignore connection test params. */ if (test_flag >= 2 && server_match_spec_complete(connection_info) == 0) fatal("user, host and addr are all required when testing " "Match configs"); if (test_flag < 2 && server_match_spec_complete(connection_info) >= 0) fatal("Config test connection parameter (-C) provided without " "test mode (-T)"); /* Fetch our configuration */ buffer_init(&cfg); if (rexeced_flag) recv_rexec_state(REEXEC_CONFIG_PASS_FD, &cfg); else load_server_config(config_file_name, &cfg); parse_server_config(&options, rexeced_flag ? "rexec" : config_file_name, &cfg, NULL); seed_rng(); /* Fill in default values for those options not explicitly set. */ fill_default_server_options(&options); /* challenge-response is implemented via keyboard interactive */ if (options.challenge_response_authentication) options.kbd_interactive_authentication = 1; /* Check that options are sensible */ if (options.authorized_keys_command_user == NULL && (options.authorized_keys_command != NULL && strcasecmp(options.authorized_keys_command, "none") != 0)) fatal("AuthorizedKeysCommand set without " "AuthorizedKeysCommandUser"); /* * Check whether there is any path through configured auth methods. * Unfortunately it is not possible to verify this generally before * daemonisation in the presence of Match block, but this catches * and warns for trivial misconfigurations that could break login. */ if (options.num_auth_methods != 0) { if ((options.protocol & SSH_PROTO_1)) fatal("AuthenticationMethods is not supported with " "SSH protocol 1"); for (n = 0; n < options.num_auth_methods; n++) { if (auth2_methods_valid(options.auth_methods[n], 1) == 0) break; } if (n >= options.num_auth_methods) fatal("AuthenticationMethods cannot be satisfied by " "enabled authentication methods"); } /* set default channel AF */ channel_set_af(options.address_family); /* Check that there are no remaining arguments. */ if (optind < ac) { fprintf(stderr, "Extra argument %s.\n", av[optind]); exit(1); } debug("sshd version %.100s%.100s%s%.100s, %.100s", SSH_RELEASE, options.hpn_disabled ? "" : SSH_VERSION_HPN, *options.version_addendum == '\0' ? "" : " ", options.version_addendum, SSLeay_version(SSLEAY_VERSION)); /* Store privilege separation user for later use if required. */ if ((privsep_pw = getpwnam(SSH_PRIVSEP_USER)) == NULL) { if (use_privsep || options.kerberos_authentication) fatal("Privilege separation user %s does not exist", SSH_PRIVSEP_USER); } else { explicit_bzero(privsep_pw->pw_passwd, strlen(privsep_pw->pw_passwd)); privsep_pw = pwcopy(privsep_pw); free(privsep_pw->pw_passwd); privsep_pw->pw_passwd = xstrdup("*"); } endpwent(); /* load host keys */ sensitive_data.host_keys = xcalloc(options.num_host_key_files, sizeof(Key *)); sensitive_data.host_pubkeys = xcalloc(options.num_host_key_files, sizeof(Key *)); for (i = 0; i < options.num_host_key_files; i++) { sensitive_data.host_keys[i] = NULL; sensitive_data.host_pubkeys[i] = NULL; } if (options.host_key_agent) { if (strcmp(options.host_key_agent, SSH_AUTHSOCKET_ENV_NAME)) setenv(SSH_AUTHSOCKET_ENV_NAME, options.host_key_agent, 1); have_agent = ssh_agent_present(); } for (i = 0; i < options.num_host_key_files; i++) { key = key_load_private(options.host_key_files[i], "", NULL); pubkey = key_load_public(options.host_key_files[i], NULL); sensitive_data.host_keys[i] = key; sensitive_data.host_pubkeys[i] = pubkey; if (key == NULL && pubkey != NULL && pubkey->type != KEY_RSA1 && have_agent) { debug("will rely on agent for hostkey %s", options.host_key_files[i]); keytype = pubkey->type; } else if (key != NULL) { keytype = key->type; } else { error("Could not load host key: %s", options.host_key_files[i]); sensitive_data.host_keys[i] = NULL; sensitive_data.host_pubkeys[i] = NULL; continue; } switch (keytype) { case KEY_RSA1: sensitive_data.ssh1_host_key = key; sensitive_data.have_ssh1_key = 1; break; case KEY_RSA: case KEY_DSA: case KEY_ECDSA: case KEY_ED25519: sensitive_data.have_ssh2_key = 1; break; } debug("private host key: #%d type %d %s", i, keytype, key_type(key ? key : pubkey)); } if ((options.protocol & SSH_PROTO_1) && !sensitive_data.have_ssh1_key) { logit("Disabling protocol version 1. Could not load host key"); options.protocol &= ~SSH_PROTO_1; } if ((options.protocol & SSH_PROTO_2) && !sensitive_data.have_ssh2_key) { logit("Disabling protocol version 2. Could not load host key"); options.protocol &= ~SSH_PROTO_2; } if (!(options.protocol & (SSH_PROTO_1|SSH_PROTO_2))) { logit("sshd: no hostkeys available -- exiting."); exit(1); } /* * Load certificates. They are stored in an array at identical * indices to the public keys that they relate to. */ sensitive_data.host_certificates = xcalloc(options.num_host_key_files, sizeof(Key *)); for (i = 0; i < options.num_host_key_files; i++) sensitive_data.host_certificates[i] = NULL; for (i = 0; i < options.num_host_cert_files; i++) { key = key_load_public(options.host_cert_files[i], NULL); if (key == NULL) { error("Could not load host certificate: %s", options.host_cert_files[i]); continue; } if (!key_is_cert(key)) { error("Certificate file is not a certificate: %s", options.host_cert_files[i]); key_free(key); continue; } /* Find matching private key */ for (j = 0; j < options.num_host_key_files; j++) { if (key_equal_public(key, sensitive_data.host_keys[j])) { sensitive_data.host_certificates[j] = key; break; } } if (j >= options.num_host_key_files) { error("No matching private key for certificate: %s", options.host_cert_files[i]); key_free(key); continue; } sensitive_data.host_certificates[j] = key; debug("host certificate: #%d type %d %s", j, key->type, key_type(key)); } /* Check certain values for sanity. */ if (options.protocol & SSH_PROTO_1) { if (options.server_key_bits < 512 || options.server_key_bits > 32768) { fprintf(stderr, "Bad server key size.\n"); exit(1); } /* * Check that server and host key lengths differ sufficiently. This * is necessary to make double encryption work with rsaref. Oh, I * hate software patents. I dont know if this can go? Niels */ if (options.server_key_bits > BN_num_bits(sensitive_data.ssh1_host_key->rsa->n) - SSH_KEY_BITS_RESERVED && options.server_key_bits < BN_num_bits(sensitive_data.ssh1_host_key->rsa->n) + SSH_KEY_BITS_RESERVED) { options.server_key_bits = BN_num_bits(sensitive_data.ssh1_host_key->rsa->n) + SSH_KEY_BITS_RESERVED; debug("Forcing server key to %d bits to make it differ from host key.", options.server_key_bits); } } if (use_privsep) { struct stat st; if ((stat(_PATH_PRIVSEP_CHROOT_DIR, &st) == -1) || (S_ISDIR(st.st_mode) == 0)) fatal("Missing privilege separation directory: %s", _PATH_PRIVSEP_CHROOT_DIR); #ifdef HAVE_CYGWIN if (check_ntsec(_PATH_PRIVSEP_CHROOT_DIR) && (st.st_uid != getuid () || (st.st_mode & (S_IWGRP|S_IWOTH)) != 0)) #else if (st.st_uid != 0 || (st.st_mode & (S_IWGRP|S_IWOTH)) != 0) #endif fatal("%s must be owned by root and not group or " "world-writable.", _PATH_PRIVSEP_CHROOT_DIR); } if (test_flag > 1) { if (server_match_spec_complete(connection_info) == 1) parse_server_match_config(&options, connection_info); dump_config(&options); } /* Configuration looks good, so exit if in test mode. */ if (test_flag) exit(0); /* * Clear out any supplemental groups we may have inherited. This * prevents inadvertent creation of files with bad modes (in the * portable version at least, it's certainly possible for PAM * to create a file, and we can't control the code in every * module which might be used). */ if (setgroups(0, NULL) < 0) debug("setgroups() failed: %.200s", strerror(errno)); if (rexec_flag) { rexec_argv = xcalloc(rexec_argc + 2, sizeof(char *)); for (i = 0; i < rexec_argc; i++) { debug("rexec_argv[%d]='%s'", i, saved_argv[i]); rexec_argv[i] = saved_argv[i]; } rexec_argv[rexec_argc] = "-R"; rexec_argv[rexec_argc + 1] = NULL; } /* Ensure that umask disallows at least group and world write */ new_umask = umask(0077) | 0022; (void) umask(new_umask); /* Initialize the log (it is reinitialized below in case we forked). */ if (debug_flag && (!inetd_flag || rexeced_flag)) log_stderr = 1; log_init(__progname, options.log_level, options.log_facility, log_stderr); /* * If not in debugging mode, and not started from inetd, disconnect * from the controlling terminal, and fork. The original process * exits. */ if (!(debug_flag || inetd_flag || no_daemon_flag)) { #ifdef TIOCNOTTY int fd; #endif /* TIOCNOTTY */ if (daemon(0, 0) < 0) fatal("daemon() failed: %.200s", strerror(errno)); /* Disconnect from the controlling tty. */ #ifdef TIOCNOTTY fd = open(_PATH_TTY, O_RDWR | O_NOCTTY); if (fd >= 0) { (void) ioctl(fd, TIOCNOTTY, NULL); close(fd); } #endif /* TIOCNOTTY */ } /* Reinitialize the log (because of the fork above). */ log_init(__progname, options.log_level, options.log_facility, log_stderr); /* Avoid killing the process in high-pressure swapping environments. */ if (!inetd_flag && madvise(NULL, 0, MADV_PROTECT) != 0) debug("madvise(): %.200s", strerror(errno)); /* Chdir to the root directory so that the current disk can be unmounted if desired. */ if (chdir("/") == -1) error("chdir(\"/\"): %s", strerror(errno)); /* ignore SIGPIPE */ signal(SIGPIPE, SIG_IGN); /* Get a connection, either from inetd or a listening TCP socket */ if (inetd_flag) { server_accept_inetd(&sock_in, &sock_out); } else { platform_pre_listen(); server_listen(); if (options.protocol & SSH_PROTO_1) generate_ephemeral_server_key(); signal(SIGHUP, sighup_handler); signal(SIGCHLD, main_sigchld_handler); signal(SIGTERM, sigterm_handler); signal(SIGQUIT, sigterm_handler); /* * Write out the pid file after the sigterm handler * is setup and the listen sockets are bound */ if (!debug_flag) { FILE *f = fopen(options.pid_file, "w"); if (f == NULL) { error("Couldn't create pid file \"%s\": %s", options.pid_file, strerror(errno)); } else { fprintf(f, "%ld\n", (long) getpid()); fclose(f); } } /* Accept a connection and return in a forked child */ server_accept_loop(&sock_in, &sock_out, &newsock, config_s); } /* This is the child processing a new connection. */ setproctitle("%s", "[accepted]"); /* * Create a new session and process group since the 4.4BSD * setlogin() affects the entire process group. We don't * want the child to be able to affect the parent. */ #if !defined(SSHD_ACQUIRES_CTTY) /* * If setsid is called, on some platforms sshd will later acquire a * controlling terminal which will result in "could not set * controlling tty" errors. */ if (!debug_flag && !inetd_flag && setsid() < 0) error("setsid: %.100s", strerror(errno)); #endif if (rexec_flag) { int fd; debug("rexec start in %d out %d newsock %d pipe %d sock %d", sock_in, sock_out, newsock, startup_pipe, config_s[0]); dup2(newsock, STDIN_FILENO); dup2(STDIN_FILENO, STDOUT_FILENO); if (startup_pipe == -1) close(REEXEC_STARTUP_PIPE_FD); else if (startup_pipe != REEXEC_STARTUP_PIPE_FD) { dup2(startup_pipe, REEXEC_STARTUP_PIPE_FD); close(startup_pipe); startup_pipe = REEXEC_STARTUP_PIPE_FD; } dup2(config_s[1], REEXEC_CONFIG_PASS_FD); close(config_s[1]); execv(rexec_argv[0], rexec_argv); /* Reexec has failed, fall back and continue */ error("rexec of %s failed: %s", rexec_argv[0], strerror(errno)); recv_rexec_state(REEXEC_CONFIG_PASS_FD, NULL); log_init(__progname, options.log_level, options.log_facility, log_stderr); /* Clean up fds */ close(REEXEC_CONFIG_PASS_FD); newsock = sock_out = sock_in = dup(STDIN_FILENO); if ((fd = open(_PATH_DEVNULL, O_RDWR, 0)) != -1) { dup2(fd, STDIN_FILENO); dup2(fd, STDOUT_FILENO); if (fd > STDERR_FILENO) close(fd); } debug("rexec cleanup in %d out %d newsock %d pipe %d sock %d", sock_in, sock_out, newsock, startup_pipe, config_s[0]); } /* Executed child processes don't need these. */ fcntl(sock_out, F_SETFD, FD_CLOEXEC); fcntl(sock_in, F_SETFD, FD_CLOEXEC); /* * Disable the key regeneration alarm. We will not regenerate the * key since we are no longer in a position to give it to anyone. We * will not restart on SIGHUP since it no longer makes sense. */ alarm(0); signal(SIGALRM, SIG_DFL); signal(SIGHUP, SIG_DFL); signal(SIGTERM, SIG_DFL); signal(SIGQUIT, SIG_DFL); signal(SIGCHLD, SIG_DFL); signal(SIGINT, SIG_DFL); #ifdef __FreeBSD__ /* * Initialize the resolver. This may not happen automatically * before privsep chroot(). */ if ((_res.options & RES_INIT) == 0) { debug("res_init()"); res_init(); } #ifdef GSSAPI /* * Force GSS-API to parse its configuration and load any * mechanism plugins. */ { gss_OID_set mechs; OM_uint32 minor_status; gss_indicate_mechs(&minor_status, &mechs); gss_release_oid_set(&minor_status, &mechs); } #endif #endif /* * Register our connection. This turns encryption off because we do * not have a key. */ packet_set_connection(sock_in, sock_out); packet_set_server(); /* Set SO_KEEPALIVE if requested. */ if (options.tcp_keep_alive && packet_connection_is_on_socket() && setsockopt(sock_in, SOL_SOCKET, SO_KEEPALIVE, &on, sizeof(on)) < 0) error("setsockopt SO_KEEPALIVE: %.100s", strerror(errno)); if ((remote_port = get_remote_port()) < 0) { debug("get_remote_port failed"); cleanup_exit(255); } /* * We use get_canonical_hostname with usedns = 0 instead of * get_remote_ipaddr here so IP options will be checked. */ (void) get_canonical_hostname(0); /* * The rest of the code depends on the fact that * get_remote_ipaddr() caches the remote ip, even if * the socket goes away. */ remote_ip = get_remote_ipaddr(); #ifdef SSH_AUDIT_EVENTS audit_connection_from(remote_ip, remote_port); #endif #ifdef LIBWRAP allow_severity = options.log_facility|LOG_INFO; deny_severity = options.log_facility|LOG_WARNING; /* Check whether logins are denied from this host. */ if (packet_connection_is_on_socket()) { struct request_info req; request_init(&req, RQ_DAEMON, __progname, RQ_FILE, sock_in, 0); fromhost(&req); if (!hosts_access(&req)) { debug("Connection refused by tcp wrapper"); refuse(&req); /* NOTREACHED */ fatal("libwrap refuse returns"); } } #endif /* LIBWRAP */ /* Log the connection. */ verbose("Connection from %s port %d on %s port %d", remote_ip, remote_port, get_local_ipaddr(sock_in), get_local_port()); /* Set HPN options for the child. */ channel_set_hpn(options.hpn_disabled, options.hpn_buffer_size); /* * We don't want to listen forever unless the other side * successfully authenticates itself. So we set up an alarm which is * cleared after successful authentication. A limit of zero * indicates no limit. Note that we don't set the alarm in debugging * mode; it is just annoying to have the server exit just when you * are about to discover the bug. */ signal(SIGALRM, grace_alarm_handler); if (!debug_flag) alarm(options.login_grace_time); sshd_exchange_identification(sock_in, sock_out); /* In inetd mode, generate ephemeral key only for proto 1 connections */ if (!compat20 && inetd_flag && sensitive_data.server_key == NULL) generate_ephemeral_server_key(); packet_set_nonblocking(); /* allocate authentication context */ authctxt = xcalloc(1, sizeof(*authctxt)); authctxt->loginmsg = &loginmsg; /* XXX global for cleanup, access from other modules */ the_authctxt = authctxt; /* prepare buffer to collect messages to display to user after login */ buffer_init(&loginmsg); auth_debug_reset(); if (use_privsep) { if (privsep_preauth(authctxt) == 1) goto authenticated; } else if (compat20 && have_agent) auth_conn = ssh_get_authentication_connection(); /* perform the key exchange */ /* authenticate user and start session */ if (compat20) { do_ssh2_kex(); do_authentication2(authctxt); } else { do_ssh1_kex(); do_authentication(authctxt); } /* * If we use privilege separation, the unprivileged child transfers * the current keystate and exits */ if (use_privsep) { mm_send_keystate(pmonitor); exit(0); } authenticated: /* * Cancel the alarm we set to limit the time taken for * authentication. */ alarm(0); signal(SIGALRM, SIG_DFL); authctxt->authenticated = 1; if (startup_pipe != -1) { close(startup_pipe); startup_pipe = -1; } #ifdef SSH_AUDIT_EVENTS audit_event(SSH_AUTH_SUCCESS); #endif #ifdef GSSAPI if (options.gss_authentication) { temporarily_use_uid(authctxt->pw); ssh_gssapi_storecreds(); restore_uid(); } #endif #ifdef USE_PAM if (options.use_pam) { do_pam_setcred(1); do_pam_session(); } #endif /* * In privilege separation, we fork another child and prepare * file descriptor passing. */ if (use_privsep) { privsep_postauth(authctxt); /* the monitor process [priv] will not return */ if (!compat20) destroy_sensitive_data(); } packet_set_timeout(options.client_alive_interval, options.client_alive_count_max); /* Start session. */ do_authenticated(authctxt); /* The connection has been terminated. */ packet_get_state(MODE_IN, NULL, NULL, NULL, &ibytes); packet_get_state(MODE_OUT, NULL, NULL, NULL, &obytes); verbose("Transferred: sent %llu, received %llu bytes", (unsigned long long)obytes, (unsigned long long)ibytes); verbose("Closing connection to %.500s port %d", remote_ip, remote_port); #ifdef USE_PAM if (options.use_pam) finish_pam(); #endif /* USE_PAM */ #ifdef SSH_AUDIT_EVENTS PRIVSEP(audit_event(SSH_CONNECTION_CLOSE)); #endif packet_close(); if (use_privsep) mm_terminate(); exit(0); } /* * Decrypt session_key_int using our private server key and private host key * (key with larger modulus first). */ int ssh1_session_key(BIGNUM *session_key_int) { int rsafail = 0; if (BN_cmp(sensitive_data.server_key->rsa->n, sensitive_data.ssh1_host_key->rsa->n) > 0) { /* Server key has bigger modulus. */ if (BN_num_bits(sensitive_data.server_key->rsa->n) < BN_num_bits(sensitive_data.ssh1_host_key->rsa->n) + SSH_KEY_BITS_RESERVED) { fatal("do_connection: %s: " "server_key %d < host_key %d + SSH_KEY_BITS_RESERVED %d", get_remote_ipaddr(), BN_num_bits(sensitive_data.server_key->rsa->n), BN_num_bits(sensitive_data.ssh1_host_key->rsa->n), SSH_KEY_BITS_RESERVED); } if (rsa_private_decrypt(session_key_int, session_key_int, sensitive_data.server_key->rsa) <= 0) rsafail++; if (rsa_private_decrypt(session_key_int, session_key_int, sensitive_data.ssh1_host_key->rsa) <= 0) rsafail++; } else { /* Host key has bigger modulus (or they are equal). */ if (BN_num_bits(sensitive_data.ssh1_host_key->rsa->n) < BN_num_bits(sensitive_data.server_key->rsa->n) + SSH_KEY_BITS_RESERVED) { fatal("do_connection: %s: " "host_key %d < server_key %d + SSH_KEY_BITS_RESERVED %d", get_remote_ipaddr(), BN_num_bits(sensitive_data.ssh1_host_key->rsa->n), BN_num_bits(sensitive_data.server_key->rsa->n), SSH_KEY_BITS_RESERVED); } if (rsa_private_decrypt(session_key_int, session_key_int, sensitive_data.ssh1_host_key->rsa) < 0) rsafail++; if (rsa_private_decrypt(session_key_int, session_key_int, sensitive_data.server_key->rsa) < 0) rsafail++; } return (rsafail); } /* * SSH1 key exchange */ static void do_ssh1_kex(void) { int i, len; int rsafail = 0; BIGNUM *session_key_int; u_char session_key[SSH_SESSION_KEY_LENGTH]; u_char cookie[8]; u_int cipher_type, auth_mask, protocol_flags; /* * Generate check bytes that the client must send back in the user * packet in order for it to be accepted; this is used to defy ip * spoofing attacks. Note that this only works against somebody * doing IP spoofing from a remote machine; any machine on the local * network can still see outgoing packets and catch the random * cookie. This only affects rhosts authentication, and this is one * of the reasons why it is inherently insecure. */ arc4random_buf(cookie, sizeof(cookie)); /* * Send our public key. We include in the packet 64 bits of random * data that must be matched in the reply in order to prevent IP * spoofing. */ packet_start(SSH_SMSG_PUBLIC_KEY); for (i = 0; i < 8; i++) packet_put_char(cookie[i]); /* Store our public server RSA key. */ packet_put_int(BN_num_bits(sensitive_data.server_key->rsa->n)); packet_put_bignum(sensitive_data.server_key->rsa->e); packet_put_bignum(sensitive_data.server_key->rsa->n); /* Store our public host RSA key. */ packet_put_int(BN_num_bits(sensitive_data.ssh1_host_key->rsa->n)); packet_put_bignum(sensitive_data.ssh1_host_key->rsa->e); packet_put_bignum(sensitive_data.ssh1_host_key->rsa->n); /* Put protocol flags. */ packet_put_int(SSH_PROTOFLAG_HOST_IN_FWD_OPEN); /* Declare which ciphers we support. */ packet_put_int(cipher_mask_ssh1(0)); /* Declare supported authentication types. */ auth_mask = 0; if (options.rhosts_rsa_authentication) auth_mask |= 1 << SSH_AUTH_RHOSTS_RSA; if (options.rsa_authentication) auth_mask |= 1 << SSH_AUTH_RSA; if (options.challenge_response_authentication == 1) auth_mask |= 1 << SSH_AUTH_TIS; if (options.password_authentication) auth_mask |= 1 << SSH_AUTH_PASSWORD; packet_put_int(auth_mask); /* Send the packet and wait for it to be sent. */ packet_send(); packet_write_wait(); debug("Sent %d bit server key and %d bit host key.", BN_num_bits(sensitive_data.server_key->rsa->n), BN_num_bits(sensitive_data.ssh1_host_key->rsa->n)); /* Read clients reply (cipher type and session key). */ packet_read_expect(SSH_CMSG_SESSION_KEY); /* Get cipher type and check whether we accept this. */ cipher_type = packet_get_char(); if (!(cipher_mask_ssh1(0) & (1 << cipher_type))) packet_disconnect("Warning: client selects unsupported cipher."); /* Get check bytes from the packet. These must match those we sent earlier with the public key packet. */ for (i = 0; i < 8; i++) if (cookie[i] != packet_get_char()) packet_disconnect("IP Spoofing check bytes do not match."); debug("Encryption type: %.200s", cipher_name(cipher_type)); /* Get the encrypted integer. */ if ((session_key_int = BN_new()) == NULL) fatal("do_ssh1_kex: BN_new failed"); packet_get_bignum(session_key_int); protocol_flags = packet_get_int(); packet_set_protocol_flags(protocol_flags); packet_check_eom(); /* Decrypt session_key_int using host/server keys */ rsafail = PRIVSEP(ssh1_session_key(session_key_int)); /* * Extract session key from the decrypted integer. The key is in the * least significant 256 bits of the integer; the first byte of the * key is in the highest bits. */ if (!rsafail) { (void) BN_mask_bits(session_key_int, sizeof(session_key) * 8); len = BN_num_bytes(session_key_int); if (len < 0 || (u_int)len > sizeof(session_key)) { error("do_ssh1_kex: bad session key len from %s: " "session_key_int %d > sizeof(session_key) %lu", get_remote_ipaddr(), len, (u_long)sizeof(session_key)); rsafail++; } else { explicit_bzero(session_key, sizeof(session_key)); BN_bn2bin(session_key_int, session_key + sizeof(session_key) - len); derive_ssh1_session_id( sensitive_data.ssh1_host_key->rsa->n, sensitive_data.server_key->rsa->n, cookie, session_id); /* * Xor the first 16 bytes of the session key with the * session id. */ for (i = 0; i < 16; i++) session_key[i] ^= session_id[i]; } } if (rsafail) { int bytes = BN_num_bytes(session_key_int); u_char *buf = xmalloc(bytes); struct ssh_digest_ctx *md; logit("do_connection: generating a fake encryption key"); BN_bn2bin(session_key_int, buf); if ((md = ssh_digest_start(SSH_DIGEST_MD5)) == NULL || ssh_digest_update(md, buf, bytes) < 0 || ssh_digest_update(md, sensitive_data.ssh1_cookie, SSH_SESSION_KEY_LENGTH) < 0 || ssh_digest_final(md, session_key, sizeof(session_key)) < 0) fatal("%s: md5 failed", __func__); ssh_digest_free(md); if ((md = ssh_digest_start(SSH_DIGEST_MD5)) == NULL || ssh_digest_update(md, session_key, 16) < 0 || ssh_digest_update(md, sensitive_data.ssh1_cookie, SSH_SESSION_KEY_LENGTH) < 0 || ssh_digest_final(md, session_key + 16, sizeof(session_key) - 16) < 0) fatal("%s: md5 failed", __func__); ssh_digest_free(md); explicit_bzero(buf, bytes); free(buf); for (i = 0; i < 16; i++) session_id[i] = session_key[i] ^ session_key[i + 16]; } /* Destroy the private and public keys. No longer. */ destroy_sensitive_data(); if (use_privsep) mm_ssh1_session_id(session_id); /* Destroy the decrypted integer. It is no longer needed. */ BN_clear_free(session_key_int); /* Set the session key. From this on all communications will be encrypted. */ packet_set_encryption_key(session_key, SSH_SESSION_KEY_LENGTH, cipher_type); /* Destroy our copy of the session key. It is no longer needed. */ explicit_bzero(session_key, sizeof(session_key)); debug("Received session key; encryption turned on."); /* Send an acknowledgment packet. Note that this packet is sent encrypted. */ packet_start(SSH_SMSG_SUCCESS); packet_send(); packet_write_wait(); } void sshd_hostkey_sign(Key *privkey, Key *pubkey, u_char **signature, u_int *slen, u_char *data, u_int dlen) { if (privkey) { if (PRIVSEP(key_sign(privkey, signature, slen, data, dlen) < 0)) fatal("%s: key_sign failed", __func__); } else if (use_privsep) { if (mm_key_sign(pubkey, signature, slen, data, dlen) < 0) fatal("%s: pubkey_sign failed", __func__); } else { if (ssh_agent_sign(auth_conn, pubkey, signature, slen, data, dlen)) fatal("%s: ssh_agent_sign failed", __func__); } } /* * SSH2 key exchange: diffie-hellman-group1-sha1 */ static void do_ssh2_kex(void) { Kex *kex; if (options.ciphers != NULL) { myproposal[PROPOSAL_ENC_ALGS_CTOS] = myproposal[PROPOSAL_ENC_ALGS_STOC] = options.ciphers; -#ifdef NONE_CIPHER_ENABLED - } else if (options.none_enabled == 1) { - debug ("WARNING: None cipher enabled"); - myproposal[PROPOSAL_ENC_ALGS_CTOS] = - myproposal[PROPOSAL_ENC_ALGS_STOC] = KEX_ENCRYPT_INCLUDE_NONE; -#endif } myproposal[PROPOSAL_ENC_ALGS_CTOS] = compat_cipher_proposal(myproposal[PROPOSAL_ENC_ALGS_CTOS]); myproposal[PROPOSAL_ENC_ALGS_STOC] = compat_cipher_proposal(myproposal[PROPOSAL_ENC_ALGS_STOC]); if (options.macs != NULL) { myproposal[PROPOSAL_MAC_ALGS_CTOS] = myproposal[PROPOSAL_MAC_ALGS_STOC] = options.macs; } if (options.compression == COMP_NONE) { myproposal[PROPOSAL_COMP_ALGS_CTOS] = myproposal[PROPOSAL_COMP_ALGS_STOC] = "none"; } else if (options.compression == COMP_DELAYED) { myproposal[PROPOSAL_COMP_ALGS_CTOS] = myproposal[PROPOSAL_COMP_ALGS_STOC] = "none,zlib@openssh.com"; } if (options.kex_algorithms != NULL) myproposal[PROPOSAL_KEX_ALGS] = options.kex_algorithms; myproposal[PROPOSAL_KEX_ALGS] = compat_kex_proposal( myproposal[PROPOSAL_KEX_ALGS]); if (options.rekey_limit || options.rekey_interval) packet_set_rekey_limits((u_int32_t)options.rekey_limit, (time_t)options.rekey_interval); myproposal[PROPOSAL_SERVER_HOST_KEY_ALGS] = compat_pkalg_proposal( list_hostkey_types()); /* start key exchange */ kex = kex_setup(myproposal); kex->kex[KEX_DH_GRP1_SHA1] = kexdh_server; kex->kex[KEX_DH_GRP14_SHA1] = kexdh_server; 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->client_version_string=client_version_string; kex->server_version_string=server_version_string; kex->load_host_public_key=&get_hostkey_public_by_type; kex->load_host_private_key=&get_hostkey_private_by_type; kex->host_key_index=&get_hostkey_index; kex->sign = sshd_hostkey_sign; xxx_kex = kex; dispatch_run(DISPATCH_BLOCK, &kex->done, kex); session_id2 = kex->session_id; session_id2_len = kex->session_id_len; #ifdef DEBUG_KEXDH /* send 1st encrypted/maced/compressed message */ packet_start(SSH2_MSG_IGNORE); packet_put_cstring("markus"); packet_send(); packet_write_wait(); #endif debug("KEX done"); } /* server specific fatal cleanup */ void cleanup_exit(int i) { if (the_authctxt) { do_cleanup(the_authctxt); if (use_privsep && privsep_is_preauth && pmonitor->m_pid > 1) { debug("Killing privsep child %d", pmonitor->m_pid); if (kill(pmonitor->m_pid, SIGKILL) != 0 && errno != ESRCH) error("%s: kill(%d): %s", __func__, pmonitor->m_pid, strerror(errno)); } } #ifdef SSH_AUDIT_EVENTS /* done after do_cleanup so it can cancel the PAM auth 'thread' */ if (!use_privsep || mm_is_monitor()) audit_event(SSH_CONNECTION_ABANDON); #endif _exit(i); } Index: head/secure/lib/libssh/Makefile =================================================================== --- head/secure/lib/libssh/Makefile (revision 291197) +++ head/secure/lib/libssh/Makefile (revision 291198) @@ -1,61 +1,57 @@ # $FreeBSD$ .include LIB= ssh PRIVATELIB= true SHLIB_MAJOR= 5 SRCS= authfd.c authfile.c bufaux.c bufbn.c buffer.c \ canohost.c channels.c cipher.c cipher-aes.c \ cipher-bf1.c cipher-ctr.c cipher-3des1.c cleanup.c \ compat.c compress.c crc32.c deattack.c fatal.c hostfile.c \ log.c match.c md-sha256.c moduli.c nchan.c packet.c \ readpass.c rsa.c ttymodes.c xmalloc.c addrmatch.c \ atomicio.c key.c dispatch.c kex.c mac.c uidswap.c uuencode.c misc.c \ monitor_fdpass.c rijndael.c ssh-dss.c ssh-ecdsa.c ssh-rsa.c dh.c \ kexdh.c kexgex.c kexdhc.c kexgexc.c bufec.c kexecdh.c kexecdhc.c \ msg.c progressmeter.c dns.c entropy.c umac.c umac128.c \ ssh-pkcs11.c krl.c smult_curve25519_ref.c \ kexc25519.c kexc25519c.c poly1305.c chacha.c cipher-chachapoly.c \ ssh-ed25519.c digest-openssl.c hmac.c \ sc25519.c ge25519.c fe25519.c ed25519.c verify.c hash.c blocks.c # gss-genr.c should be in $SRCS but causes linking problems, so it is # compiled directly into sshd instead. # Portability layer SRCS+= bcrypt_pbkdf.c blowfish.c bsd-misc.c explicit_bzero.c fmt_scaled.c \ glob.c openssl-compat.c port-tun.c strtonum.c timingsafe_bcmp.c \ vis.c xcrypt.c xmmap.c .if ${MK_LDNS} == "no" SRCS+= getrrsetbyname.c .else LDNSDIR= ${.CURDIR}/../../../contrib/ldns CFLAGS+= -DHAVE_LDNS=1 -I${LDNSDIR} SRCS+= getrrsetbyname-ldns.c LIBADD+= ldns .endif CFLAGS+= -I${SSHDIR} -include ssh_namespace.h .if ${MK_KERBEROS_SUPPORT} != "no" CFLAGS+= -include krb5_config.h .endif -.if ${MK_OPENSSH_NONE_CIPHER} != "no" -CFLAGS+= -DNONE_CIPHER_ENABLED -.endif - NO_LINT= LIBADD+= crypto crypt z .include .PATH: ${SSHDIR} ${SSHDIR}/openbsd-compat ${OBJS} ${POBJS} ${SOBJS}: ssh_namespace.h .if ${MK_KERBEROS_SUPPORT} != "no" ${OBJS} ${POBJS} ${SOBJS}: krb5_config.h .endif Index: head/secure/usr.bin/ssh/Makefile =================================================================== --- head/secure/usr.bin/ssh/Makefile (revision 291197) +++ head/secure/usr.bin/ssh/Makefile (revision 291198) @@ -1,46 +1,42 @@ # $FreeBSD$ .include PROG= ssh CFLAGS+=-I${SSHDIR} -include ssh_namespace.h LINKS= ${BINDIR}/ssh ${BINDIR}/slogin MAN= ssh.1 ssh_config.5 MLINKS= ssh.1 slogin.1 SRCS= ssh.c readconf.c clientloop.c sshtty.c \ sshconnect.c sshconnect1.c sshconnect2.c mux.c \ roaming_common.c roaming_client.c # gss-genr.c really belongs in libssh; see src/secure/lib/libssh/Makefile SRCS+= gss-genr.c LIBADD= ssh .if ${MK_LDNS} != "no" CFLAGS+= -DHAVE_LDNS=1 .endif .if ${MK_KERBEROS_SUPPORT} != "no" CFLAGS+= -include krb5_config.h LIBADD+= gssapi .endif -.if ${MK_OPENSSH_NONE_CIPHER} != "no" -CFLAGS+= -DNONE_CIPHER_ENABLED -.endif - LIBADD+= crypto .if defined(LOCALBASE) CFLAGS+= -DXAUTH_PATH=\"${LOCALBASE}/bin/xauth\" .endif .include .PATH: ${SSHDIR} ${OBJS} ${POBJS} ${SOBJS}: ssh_namespace.h .if ${MK_KERBEROS_SUPPORT} != "no" ${OBJS} ${POBJS} ${SOBJS}: krb5_config.h .endif Index: head/secure/usr.sbin/sshd/Makefile =================================================================== --- head/secure/usr.sbin/sshd/Makefile (revision 291197) +++ head/secure/usr.sbin/sshd/Makefile (revision 291198) @@ -1,64 +1,60 @@ # $FreeBSD$ .include PROG= sshd SRCS= sshd.c auth-rhosts.c auth-passwd.c auth-rsa.c auth-rh-rsa.c \ audit.c audit-bsm.c audit-linux.c platform.c \ sshpty.c sshlogin.c servconf.c serverloop.c \ auth.c auth1.c auth2.c auth-options.c session.c \ auth-chall.c auth2-chall.c groupaccess.c \ auth-skey.c auth-bsdauth.c auth2-hostbased.c auth2-kbdint.c \ auth2-none.c auth2-passwd.c auth2-pubkey.c \ monitor_mm.c monitor.c monitor_wrap.c kexdhs.c kexgexs.c kexecdhs.c \ kexc25519s.c auth-krb5.c \ auth2-gss.c gss-serv.c gss-serv-krb5.c \ loginrec.c auth-pam.c auth-shadow.c auth-sia.c md5crypt.c \ sftp-server.c sftp-common.c \ roaming_common.c roaming_serv.c \ sandbox-null.c sandbox-rlimit.c sandbox-systrace.c sandbox-darwin.c \ sandbox-seccomp-filter.c sandbox-capsicum.c # gss-genr.c really belongs in libssh; see src/secure/lib/libssh/Makefile SRCS+= gss-genr.c MAN= sshd.8 sshd_config.5 CFLAGS+=-I${SSHDIR} -include ssh_namespace.h # pam should always happen before ssh here for static linking LIBADD= pam ssh util wrap .if ${MK_LDNS} != "no" CFLAGS+= -DHAVE_LDNS=1 #DPADD+= ${LIBLDNS} #LDADD+= -lldns .endif .if ${MK_AUDIT} != "no" CFLAGS+= -DUSE_BSM_AUDIT -DHAVE_GETAUDIT_ADDR LIBADD+= bsm .endif .if ${MK_KERBEROS_SUPPORT} != "no" CFLAGS+= -include krb5_config.h LIBADD+= gssapi_krb5 gssapi krb5 .endif -.if ${MK_OPENSSH_NONE_CIPHER} != "no" -CFLAGS+= -DNONE_CIPHER_ENABLED -.endif - LIBADD+= crypto .if defined(LOCALBASE) CFLAGS+= -DXAUTH_PATH=\"${LOCALBASE}/bin/xauth\" .endif .include .PATH: ${SSHDIR} ${OBJS} ${POBJS} ${SOBJS}: ssh_namespace.h .if ${MK_KERBEROS_SUPPORT} != "no" ${OBJS} ${POBJS} ${SOBJS}: krb5_config.h .endif Index: head/share/mk/src.opts.mk =================================================================== --- head/share/mk/src.opts.mk (revision 291197) +++ head/share/mk/src.opts.mk (revision 291198) @@ -1,403 +1,402 @@ # $FreeBSD$ # # Option file for FreeBSD /usr/src builds. # # Users define WITH_FOO and WITHOUT_FOO on the command line or in /etc/src.conf # and /etc/make.conf files. These translate in the build system to MK_FOO={yes,no} # with sensible (usually) defaults. # # Makefiles must include bsd.opts.mk after defining specific MK_FOO options that # are applicable for that Makefile (typically there are none, but sometimes there # are exceptions). Recursive makes usually add MK_FOO=no for options that they wish # to omit from that make. # # Makefiles must include bsd.mkopt.mk before they test the value of any MK_FOO # variable. # # Makefiles may also assume that this file is included by src.opts.mk should it # need variables defined there prior to the end of the Makefile where # bsd.{subdir,lib.bin}.mk is traditionally included. # # The old-style YES_FOO and NO_FOO are being phased out. No new instances of them # should be added. Old instances should be removed since they were just to # bridge the gap between FreeBSD 4 and FreeBSD 5. # # Makefiles should never test WITH_FOO or WITHOUT_FOO directly (although an # exception is made for _WITHOUT_SRCONF which turns off this mechanism # completely inside bsd.*.mk files). # .if !target(____) ____: .include # # Define MK_* variables (which are either "yes" or "no") for users # to set via WITH_*/WITHOUT_* in /etc/src.conf and override in the # make(1) environment. # These should be tested with `== "no"' or `!= "no"' in makefiles. # The NO_* variables should only be set by makefiles for variables # that haven't been converted over. # # These options are used by src the builds __DEFAULT_YES_OPTIONS = \ ACCT \ ACPI \ AMD \ APM \ AT \ ATM \ AUDIT \ AUTHPF \ AUTOFS \ BHYVE \ BINUTILS \ BINUTILS_BOOTSTRAP \ BLUETOOTH \ BOOT \ BOOTPARAMD \ BOOTPD \ BSD_CPIO \ BSDINSTALL \ BSNMP \ BZIP2 \ CALENDAR \ CAPSICUM \ CASPER \ CCD \ CDDL \ CPP \ CROSS_COMPILER \ CRYPT \ CTM \ CUSE \ CXX \ DICT \ DMAGENT \ DYNAMICROOT \ ED_CRYPTO \ EE \ ELFTOOLCHAIN_BOOTSTRAP \ EXAMPLES \ FDT \ FILE \ FINGER \ FLOPPY \ FMTREE \ FORTH \ FP_LIBC \ FREEBSD_UPDATE \ FTP \ GAMES \ GCOV \ GDB \ GNU \ GNU_GREP_COMPAT \ GPIO \ GPL_DTC \ GROFF \ HAST \ HTML \ HYPERV \ ICONV \ INET \ INET6 \ INETD \ IPFILTER \ IPFW \ ISCSI \ JAIL \ KDUMP \ KVM \ LDNS \ LDNS_UTILS \ LEGACY_CONSOLE \ LIB32 \ LIBPTHREAD \ LIBTHR \ LOCALES \ LOCATE \ LPR \ LS_COLORS \ LZMA_SUPPORT \ MAIL \ MAILWRAPPER \ MAKE \ MANDOCDB \ NDIS \ NETCAT \ NETGRAPH \ NLS_CATALOGS \ NS_CACHING \ NTP \ OPENSSL \ PAM \ PC_SYSINSTALL \ PF \ PKGBOOTSTRAP \ PMC \ PORTSNAP \ PPP \ QUOTAS \ RADIUS_SUPPORT \ RCMDS \ RBOOTD \ RCS \ RESCUE \ ROUTED \ SENDMAIL \ SETUID_LOGIN \ SHAREDOCS \ SOURCELESS \ SOURCELESS_HOST \ SOURCELESS_UCODE \ SVNLITE \ SYSCONS \ TALK \ TCP_WRAPPERS \ TCSH \ TELNET \ TESTS \ TEXTPROC \ TFTP \ TIMED \ UNBOUND \ USB \ UTMPX \ VI \ VT \ WIRELESS \ WPA_SUPPLICANT_EAPOL \ ZFS \ ZONEINFO __DEFAULT_NO_OPTIONS = \ BSD_GREP \ CLANG_EXTRAS \ DTRACE_TESTS \ EISA \ HESIOD \ LLDB \ NAND \ OFED \ OPENLDAP \ - OPENSSH_NONE_CIPHER \ SHARED_TOOLCHAIN \ SORT_THREADS \ SVN # # Default behaviour of some options depends on the architecture. Unfortunately # this means that we have to test TARGET_ARCH (the buildworld case) as well # as MACHINE_ARCH (the non-buildworld case). Normally TARGET_ARCH is not # used at all in bsd.*.mk, but we have to make an exception here if we want # to allow defaults for some things like clang to vary by target architecture. # Additional, per-target behavior should be rarely added only after much # gnashing of teeth and grinding of gears. # .if defined(TARGET_ARCH) __T=${TARGET_ARCH} .else __T=${MACHINE_ARCH} .endif .if defined(TARGET) __TT=${TARGET} .else __TT=${MACHINE} .endif .include # If the compiler is not C++11 capable, disable Clang and use GCC instead. # This means that architectures that have GCC 4.2 as default can not # build Clang without using an external compiler. .if ${COMPILER_FEATURES:Mc++11} && (${__T} == "aarch64" || \ ${__T} == "amd64" || ${__TT} == "arm" || ${__T} == "i386") # Clang is enabled, and will be installed as the default /usr/bin/cc. __DEFAULT_YES_OPTIONS+=CLANG CLANG_BOOTSTRAP CLANG_FULL CLANG_IS_CC __DEFAULT_NO_OPTIONS+=GCC GCC_BOOTSTRAP GNUCXX .elif ${COMPILER_FEATURES:Mc++11} && ${__T:Mpowerpc*} # On powerpc, if an external compiler that supports C++11 is used as ${CC}, # then Clang is enabled, but GCC is installed as the default /usr/bin/cc. __DEFAULT_YES_OPTIONS+=CLANG CLANG_FULL GCC GCC_BOOTSTRAP GNUCXX __DEFAULT_NO_OPTIONS+=CLANG_BOOTSTRAP CLANG_IS_CC .else # Everything else disables Clang, and uses GCC instead. __DEFAULT_YES_OPTIONS+=GCC GCC_BOOTSTRAP GNUCXX __DEFAULT_NO_OPTIONS+=CLANG CLANG_BOOTSTRAP CLANG_FULL CLANG_IS_CC .endif .if ${__T} == "aarch64" BROKEN_OPTIONS+=BINUTILS BINUTILS_BOOTSTRAP GCC GCC_BOOTSTRAP GDB __DEFAULT_YES_OPTIONS+=ELFCOPY_AS_OBJCOPY .else __DEFAULT_NO_OPTIONS+=ELFCOPY_AS_OBJCOPY .endif # LLVM lacks support for FreeBSD 64-bit atomic operations for ARMv4/ARMv5 .if ${__T} == "arm" || ${__T} == "armeb" BROKEN_OPTIONS+=LLDB .endif .include # # MK_* options that default to "yes" if the compiler is a C++11 compiler. # .for var in \ LIBCPLUSPLUS .if !defined(MK_${var}) .if ${COMPILER_FEATURES:Mc++11} .if defined(WITHOUT_${var}) MK_${var}:= no .else MK_${var}:= yes .endif .else .if defined(WITH_${var}) MK_${var}:= yes .else MK_${var}:= no .endif .endif .endif .endfor # # Force some options off if their dependencies are off. # Order is somewhat important. # .if ${MK_LIBPTHREAD} == "no" MK_LIBTHR:= no .endif .if ${MK_LDNS} == "no" MK_LDNS_UTILS:= no MK_UNBOUND:= no .endif .if ${MK_SOURCELESS} == "no" MK_SOURCELESS_HOST:= no MK_SOURCELESS_UCODE:= no .endif .if ${MK_CDDL} == "no" MK_ZFS:= no MK_CTF:= no .endif .if ${MK_CRYPT} == "no" MK_OPENSSL:= no MK_OPENSSH:= no MK_KERBEROS:= no .endif .if ${MK_CXX} == "no" MK_CLANG:= no MK_GROFF:= no MK_GNUCXX:= no .endif .if ${MK_MAIL} == "no" MK_MAILWRAPPER:= no MK_SENDMAIL:= no MK_DMAGENT:= no .endif .if ${MK_NETGRAPH} == "no" MK_ATM:= no MK_BLUETOOTH:= no .endif .if ${MK_OPENSSL} == "no" MK_OPENSSH:= no MK_KERBEROS:= no .endif .if ${MK_PF} == "no" MK_AUTHPF:= no .endif .if ${MK_TESTS} == "no" MK_DTRACE_TESTS:= no .endif .if ${MK_TEXTPROC} == "no" MK_GROFF:= no .endif .if ${MK_CROSS_COMPILER} == "no" MK_BINUTILS_BOOTSTRAP:= no MK_CLANG_BOOTSTRAP:= no MK_ELFTOOLCHAIN_BOOTSTRAP:= no MK_GCC_BOOTSTRAP:= no .endif .if ${MK_TOOLCHAIN} == "no" MK_BINUTILS:= no MK_CLANG:= no MK_GCC:= no MK_GDB:= no MK_INCLUDES:= no .endif .if ${MK_CLANG} == "no" MK_CLANG_EXTRAS:= no MK_CLANG_FULL:= no .endif # # Set defaults for the MK_*_SUPPORT variables. # # # MK_*_SUPPORT options which default to "yes" unless their corresponding # MK_* variable is set to "no". # .for var in \ BZIP2 \ GNU \ INET \ INET6 \ KERBEROS \ KVM \ NETGRAPH \ PAM \ TESTS \ WIRELESS .if defined(WITHOUT_${var}_SUPPORT) || ${MK_${var}} == "no" MK_${var}_SUPPORT:= no .else MK_${var}_SUPPORT:= yes .endif .endfor # # MK_* options whose default value depends on another option. # .for vv in \ GSSAPI/KERBEROS \ MAN_UTILS/MAN .if defined(WITH_${vv:H}) MK_${vv:H}:= yes .elif defined(WITHOUT_${vv:H}) MK_${vv:H}:= no .else MK_${vv:H}:= ${MK_${vv:T}} .endif .endfor .if !${COMPILER_FEATURES:Mc++11} MK_LLDB:= no .endif # gcc 4.8 and newer supports libc++, so suppress gnuc++ in that case. # while in theory we could build it with that, we don't want to do # that since it creates too much confusion for too little gain. .if ${COMPILER_TYPE} == "gcc" && ${COMPILER_VERSION} >= 40800 MK_GNUCXX:=no MK_GCC:=no .endif .endif # !target(____) Index: head/tools/build/options/WITH_OPENSSH_NONE_CIPHER =================================================================== --- head/tools/build/options/WITH_OPENSSH_NONE_CIPHER (revision 291197) +++ head/tools/build/options/WITH_OPENSSH_NONE_CIPHER (nonexistent) @@ -1,9 +0,0 @@ -.\" $FreeBSD$ -Set to include the "None" cipher support in OpenSSH and its libraries. -Additional adjustments may need to be done to system configuration -files, such as -.Xr sshd_config 5 , -to enable this cipher. -Please see -.Pa /usr/src/crypto/openssh/README.hpn -for full details. Property changes on: head/tools/build/options/WITH_OPENSSH_NONE_CIPHER ___________________________________________________________________ Deleted: svn:keywords ## -1 +0,0 ## -FreeBSD=%H \ No newline at end of property