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/*

auth-rsa.c

Author: Tatu Ylonen <ylo@cs.hut.fi>

Copyright (c) 1995 Tatu Ylonen <ylo@cs.hut.fi>, Espoo, Finland
                   All rights reserved

Created: Mon Mar 27 01:46:52 1995 ylo

RSA-based authentication.  This code determines whether to admit a login
based on RSA authentication.  This file also contains functions to check
validity of the host key.

*/

#include "includes.h"
RCSID("$Id: auth-rsa.c,v 1.1.1.1 1999/10/27 03:42:43 damien Exp $");

#include "rsa.h"
#include "packet.h"
#include "xmalloc.h"
#include "ssh.h"
#include "mpaux.h"
#include "uidswap.h"

#include <openssl/rsa.h>
#include <openssl/md5.h>

/* Flags that may be set in authorized_keys options. */
extern int no_port_forwarding_flag;
extern int no_agent_forwarding_flag;
extern int no_x11_forwarding_flag;
extern int no_pty_flag;
extern char *forced_command;
extern struct envstring *custom_environment;

/* Session identifier that is used to bind key exchange and authentication
   responses to a particular session. */
extern unsigned char session_id[16];

/* The .ssh/authorized_keys file contains public keys, one per line, in the
   following format:
     options bits e n comment
   where bits, e and n are decimal numbers, 
   and comment is any string of characters up to newline.  The maximum
   length of a line is 8000 characters.  See the documentation for a
   description of the options.
*/

/* Performs the RSA authentication challenge-response dialog with the client,
   and returns true (non-zero) if the client gave the correct answer to
   our challenge; returns zero if the client gives a wrong answer. */

int
auth_rsa_challenge_dialog(unsigned int bits, BIGNUM *e, BIGNUM *n)
{
  BIGNUM *challenge, *encrypted_challenge, *aux;
  RSA *pk;
  BN_CTX *ctx = BN_CTX_new();
  unsigned char buf[32], mdbuf[16], response[16];
  MD5_CTX md;
  unsigned int i;
  int plen, len;

  encrypted_challenge = BN_new();
  challenge = BN_new();
  aux = BN_new();

  /* Generate a random challenge. */
  BN_rand(challenge, 256, 0, 0);
  BN_mod(challenge, challenge, n, ctx);
  
  /* Create the public key data structure. */
  pk = RSA_new();
  pk->e = BN_new();
  BN_copy(pk->e, e);
  pk->n = BN_new();
  BN_copy(pk->n, n);

  /* Encrypt the challenge with the public key. */
  rsa_public_encrypt(encrypted_challenge, challenge, pk);
  RSA_free(pk);

  /* Send the encrypted challenge to the client. */
  packet_start(SSH_SMSG_AUTH_RSA_CHALLENGE);
  packet_put_bignum(encrypted_challenge);
  packet_send();
  packet_write_wait();

  /* The response is MD5 of decrypted challenge plus session id. */
  len = BN_num_bytes(challenge);
  assert(len <= 32 && len);
  memset(buf, 0, 32);
  BN_bn2bin(challenge, buf + 32 - len);
  MD5_Init(&md);
  MD5_Update(&md, buf, 32);
  MD5_Update(&md, session_id, 16);
  MD5_Final(mdbuf, &md);

  /* We will no longer need these. */
  BN_clear_free(encrypted_challenge);
  BN_clear_free(challenge);
  BN_clear_free(aux);
  BN_CTX_free(ctx);
  
  /* Wait for a response. */
  packet_read_expect(&plen, SSH_CMSG_AUTH_RSA_RESPONSE);
  packet_integrity_check(plen, 16, SSH_CMSG_AUTH_RSA_RESPONSE);
  for (i = 0; i < 16; i++)
    response[i] = packet_get_char();

  /* Verify that the response is the original challenge. */
  if (memcmp(response, mdbuf, 16) != 0)
    {
      /* Wrong answer. */
      return 0;
    }

  /* Correct answer. */
  return 1;
}

/* Performs the RSA authentication dialog with the client.  This returns
   0 if the client could not be authenticated, and 1 if authentication was
   successful.  This may exit if there is a serious protocol violation. */

int
auth_rsa(struct passwd *pw, BIGNUM *client_n, int strict_modes)
{
  char line[8192];
  int authenticated;
  unsigned int bits;
  FILE *f;
  unsigned long linenum = 0;
  struct stat st;
  BIGNUM *e, *n;

  /* Temporarily use the user's uid. */
  temporarily_use_uid(pw->pw_uid);

  /* The authorized keys. */
  snprintf(line, sizeof line, "%.500s/%.100s", pw->pw_dir,
    SSH_USER_PERMITTED_KEYS);
  
  /* Fail quietly if file does not exist */
  if (stat(line, &st) < 0)
    {
      /* Restore the privileged uid. */
      restore_uid();
      return 0;
    }

  /* Open the file containing the authorized keys. */
  f = fopen(line, "r");
  if (!f)
    {
      /* Restore the privileged uid. */
      restore_uid();
      packet_send_debug("Could not open %.900s for reading.", line);
      packet_send_debug("If your home is on an NFS volume, it may need to be world-readable.");
      return 0;
    }

  if (strict_modes) {
    int fail=0;
    char buf[1024];
    /* Check open file in order to avoid open/stat races */
    if (fstat(fileno(f), &st) < 0 ||
        (st.st_uid != 0 && st.st_uid != pw->pw_uid) ||
        (st.st_mode & 022) != 0) {
      snprintf(buf, sizeof buf, "RSA authentication refused for %.100s: "
               "bad ownership or modes for '%s'.", pw->pw_name, line);
      fail=1;
    }else{
      /* Check path to SSH_USER_PERMITTED_KEYS */
      int i;
      static const char *check[] = {
            "", SSH_USER_DIR, NULL
      };
      for (i=0; check[i]; i++) {
        snprintf(line, sizeof line, "%.500s/%.100s", pw->pw_dir, check[i]);
        if (stat(line, &st) < 0 ||
            (st.st_uid != 0 && st.st_uid != pw->pw_uid) ||
            (st.st_mode & 022) != 0) {
          snprintf(buf, sizeof buf, "RSA authentication refused for %.100s: "
                   "bad ownership or modes for '%s'.", pw->pw_name, line);
          fail=1;
          break;
        }
      }
    }
    if (fail) {
      log(buf);
      packet_send_debug(buf);
      restore_uid();
      return 0;
    }
  } 

  /* Flag indicating whether authentication has succeeded. */
  authenticated = 0;
  
  /* Initialize mp-int variables. */
  e = BN_new();
  n = BN_new();

  /* Go though the accepted keys, looking for the current key.  If found,
     perform a challenge-response dialog to verify that the user really has
     the corresponding private key. */
  while (fgets(line, sizeof(line), f))
    {
      char *cp;
      char *options;

      linenum++;

      /* Skip leading whitespace. */
      for (cp = line; *cp == ' ' || *cp == '\t'; cp++)
	;

      /* Skip empty and comment lines. */
      if (!*cp || *cp == '\n' || *cp == '#')
	continue;

      /* Check if there are options for this key, and if so, save their 
	 starting address and skip the option part for now.  If there are no 
	 options, set the starting address to NULL. */
      if (*cp < '0' || *cp > '9')
	{
	  int quoted = 0;
	  options = cp;
	  for (; *cp && (quoted || (*cp != ' ' && *cp != '\t')); cp++)
	    {
	      if (*cp == '\\' && cp[1] == '"')
		cp++; /* Skip both */
	      else
		if (*cp == '"')
		  quoted = !quoted;
	    }
	}
      else
	options = NULL;
      
      /* Parse the key from the line. */
      if (!auth_rsa_read_key(&cp, &bits, e, n))
	{
	  debug("%.100s, line