mu_auth.c 13.3 KB
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/* GNU Mailutils -- a suite of utilities for electronic mail
   Copyright (C) 2002, 2004, 2005, 2006, 2007 Free Software Foundation, Inc.

   This library is free software; you can redistribute it and/or
   modify it under the terms of the GNU Lesser General Public
   License as published by the Free Software Foundation; either
   version 3 of the License, or (at your option) any later version.

   This library is distributed in the hope that it will be useful,
   but WITHOUT ANY WARRANTY; without even the implied warranty of
   MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU
   Lesser General Public License for more details.

   You should have received a copy of the GNU Lesser General
   Public License along with this library; if not, write to the
   Free Software Foundation, Inc., 51 Franklin Street, Fifth Floor,
   Boston, MA 02110-1301 USA */

#ifdef HAVE_CONFIG_H
# include <config.h>
#endif

#include <unistd.h>
#include <sys/types.h>
#include <pwd.h>
#ifdef HAVE_SHADOW_H
# include <shadow.h>
#endif
#include <errno.h>
#include <stdio.h>
#include <stdlib.h>
#include <string.h>
#ifdef HAVE_STRINGS_H
# include <strings.h>
#endif
#ifdef HAVE_SECURITY_PAM_APPL_H
# include <security/pam_appl.h>
#endif
#ifdef HAVE_CRYPT_H
# include <crypt.h>
#endif

#include <mailutils/list.h>
#include <mailutils/iterator.h>
#include <mailutils/mailbox.h>
#include <mailutils/argp.h>
#include <mailutils/mu_auth.h>
#include <mailutils/error.h>
#include <mailutils/errno.h>
#include <mailutils/nls.h>

/* FIXME: The functions from this module assign values to errno and 
   use ENOENT instead of MU_ERR_NOENT */
/*#define DEBUG(c) do { printf c; printf("\n"); } while (0)*/
#define DEBUG(c)

static void mu_auth_begin_setup (void);
static void mu_auth_finish_setup (void);

/* memory allocation */
int 
mu_auth_data_alloc (struct mu_auth_data **ptr,
		    const char *name,
		    const char *passwd,
		    uid_t uid,
		    gid_t gid,
		    const char *gecos,
		    const char *dir,
		    const char *shell,
		    const char *mailbox,
		    int change_uid)
{
  size_t size = sizeof (**ptr) +
                strlen (name) + 1 +
                strlen (passwd) + 1 +
                strlen (gecos) + 1 +
                strlen (dir) + 1 +
                strlen (shell) + 1 +
                strlen (mailbox) + 1;
  char *p;
  
  *ptr = calloc (1, size);
  if (!*ptr)
    return ENOMEM;

  p = (char *)(*ptr + 1);
  
#define COPY(f) \
  (*ptr)->f = p; \
  strcpy (p, f); \
  p += strlen (f) + 1
  
  COPY (name);
  COPY (passwd);
  COPY (gecos);
  COPY (dir);
  COPY (shell);
  COPY (mailbox);
  (*ptr)->uid = uid;
  (*ptr)->gid = gid;
  (*ptr)->change_uid = change_uid;
  return 0;
}

void
mu_auth_data_set_quota (struct mu_auth_data *ptr, mu_off_t q)
{
  ptr->flags |= MU_AF_QUOTA;
  ptr->quota = q;
}

void
mu_auth_data_free (struct mu_auth_data *ptr)
{
  free (ptr);
}

void
mu_auth_data_destroy (struct mu_auth_data **pptr)
{
  if (pptr)
    {
      mu_auth_data_free (*pptr);
      *pptr = NULL;
    }
}

/* Generic functions */

struct auth_stack_entry {
  char *name;        /* for diagnostics purposes */
  mu_auth_fp fun;
  void *func_data;
};

void
mu_insert_stack_entry (mu_list_t *pflist, struct auth_stack_entry *entry)
{
  if (!*pflist && mu_list_create (pflist))
    return;
  mu_list_append (*pflist, entry);
}

int
mu_auth_runlist (mu_list_t flist, struct mu_auth_data **return_data,
		 const void *key, void *data)
{
  int status = MU_ERR_AUTH_FAILURE;
  int rc;
  mu_iterator_t itr;

  if (mu_list_get_iterator (flist, &itr) == 0)
    {
      struct auth_stack_entry *ep;
      
      for (mu_iterator_first (itr); !mu_iterator_is_done (itr);
	   mu_iterator_next (itr))
	{
	  mu_iterator_current (itr, (void **)&ep);
	  DEBUG(("trying %s", ep->name));
	  rc = ep->fun (return_data, key, ep->func_data, data);
	  DEBUG(("Result: %d", rc));
	  if (rc == 0)
	    {
	      status = rc;
	      break;
	    }
	  else if (status != EAGAIN)
	    status = rc;
	}

      mu_iterator_destroy (&itr);
    }
  return status;
}

int
mu_auth_nosupport (struct mu_auth_data **return_data MU_ARG_UNUSED,
		   const void *key MU_ARG_UNUSED,
		   void *func_data MU_ARG_UNUSED,
		   void *call_data MU_ARG_UNUSED)
{
  return ENOSYS;
}

/* II. Authorization: retrieving information about user */

static mu_list_t mu_auth_by_name_list, _tmp_auth_by_name_list;
static mu_list_t mu_auth_by_uid_list, _tmp_auth_by_uid_list;

int
mu_get_auth (struct mu_auth_data **auth, enum mu_auth_key_type type,
	     const void *key)
{
  mu_list_t list;
  
  if (!mu_auth_by_name_list)
    mu_auth_begin_setup ();
  switch (type)
    {
    case mu_auth_key_name:
      list = mu_auth_by_name_list;
      break;

    case mu_auth_key_uid:
      list = mu_auth_by_uid_list;
      break;

    default:
      return EINVAL;
    }
  return mu_auth_runlist (list, auth, key, NULL);
}

struct mu_auth_data *
mu_get_auth_by_name (const char *username)
{
  struct mu_auth_data *auth = NULL;
  mu_get_auth (&auth, mu_auth_key_name, username);
  return auth;
}

struct mu_auth_data *
mu_get_auth_by_uid (uid_t uid)
{
  struct mu_auth_data *auth = NULL;
  mu_get_auth (&auth, mu_auth_key_uid, &uid);
  return auth;
}

/* III. Authentication: determining the authenticity of a user */

static mu_list_t mu_authenticate_list, _tmp_authenticate_list;

int
mu_authenticate (struct mu_auth_data *auth_data, char *pass)
{
  DEBUG(("mu_authenticate"));
  if (!mu_authenticate_list)
    mu_auth_begin_setup ();
  return mu_auth_runlist (mu_authenticate_list, NULL, auth_data, pass);
}


/* ************************************************************************* */
/* Traditional configuration                                                 */
/* ************************************************************************* */

#define ARG_AUTHORIZATION 1
#define ARG_AUTHENTICATION 2

static error_t mu_auth_argp_parser (int key, char *arg,
				    struct argp_state *state);

/* Options used by programs that use extended authentication mechanisms. */
static struct argp_option mu_auth_argp_option[] = {
  { "authentication", ARG_AUTHENTICATION, N_("MODLIST"), OPTION_HIDDEN,
    N_("Set the list of modules to be used for authentication"), 0 },
  { "authorization", ARG_AUTHORIZATION, N_("MODLIST"), OPTION_HIDDEN,
    N_("Set list of modules to be used for authorization"), 0 },
  { NULL,      0, NULL, 0, NULL, 0 }
};

static struct argp mu_auth_argp = {
  mu_auth_argp_option,
  mu_auth_argp_parser,
};

static struct argp_child mu_auth_argp_child = {
  &mu_auth_argp,
  0,
  NULL,
  0
};

static error_t
mu_auth_argp_parser (int key, char *arg, struct argp_state *state)
{
  switch (key)
    {
    case ARGP_KEY_FINI:
      mu_auth_finish_setup ();
      break;

      /* authentication */
    case ARG_AUTHORIZATION:
      mu_authorization_add_module_list (arg);
      break;
      
    case ARG_AUTHENTICATION:
      mu_authentication_add_module_list (arg);
      break;
      
    default:
      return ARGP_ERR_UNKNOWN;
    }
  return 0;
}


/* ************************************************************************* */
/* Resource-style configuration                                              */
/* ************************************************************************* */
static int
cb_authentication (mu_cfg_locus_t *locus, void *data, char *arg)
{
  mu_authentication_add_module_list (arg);/*FIXME: error reporting*/
  return 0;
}

static int
cb_authorization (mu_cfg_locus_t *locus, void *data, char *arg)
{
  mu_authorization_add_module_list (arg);
  return 0;
}

static struct mu_cfg_param mu_auth_param[] = {
  { "authentication", mu_cfg_callback, NULL, cb_authentication },
  { "authorization", mu_cfg_callback, NULL, cb_authorization },
  { NULL }
};


void
mu_auth_init ()
{
  if (mu_register_capa ("auth", &mu_auth_argp_child, mu_auth_param))
    {
      mu_error (_("INTERNAL ERROR: cannot register argp capability auth (please report)"));
      abort ();
    }
}


/* ************************************************************************* */

struct _module_handler {
  struct auth_stack_entry authenticate;
  struct auth_stack_entry auth_by_name;
  struct auth_stack_entry auth_by_uid;
};

static mu_list_t module_handler_list;

void
mu_auth_register_module (struct mu_auth_module *mod)
{
  struct _module_handler *entry;
  
  if (mod->argp)
    {
      int i;
      struct argp_child *cp;
      
      if (mu_auth_argp.children)
	{
	  struct argp_child *tmp;
	  for (i = 0; mu_auth_argp.children[i].argp; i++)
	    ;
	  tmp = realloc ((void*) mu_auth_argp.children,
			 (i + 2) * sizeof(mu_auth_argp.children[0]));
	  mu_auth_argp.children = tmp;
	}
      else
	{
	  mu_auth_argp.children = calloc (2, sizeof(mu_auth_argp.children[0]));
	  i = 0;
	}
	  
      if (!mu_auth_argp.children)
	{
	  mu_error ("not enough memory");
	  exit (1);
	}
      cp = (struct argp_child *) &mu_auth_argp.children[i];
      cp->argp = mod->argp;
      cp->flags = 0;
      cp->header = NULL;
      cp->group = 0; /* FIXME */
      cp++;
      cp->argp = NULL;
    }
  
  if (mod->cfg)
    mu_config_register_plain_section (NULL, mod->name, mod->cfg);
  
  if (!module_handler_list && mu_list_create (&module_handler_list))
    abort ();

  entry = malloc (sizeof (*entry));
  if (!entry)
    {
      mu_error ("not enough memory");
      exit (1);
    }
  entry->authenticate.name = mod->name;
  entry->authenticate.fun  = mod->authenticate;
  entry->authenticate.func_data = mod->authenticate_data;
  entry->auth_by_name.name = mod->name;
  entry->auth_by_name.fun = mod->auth_by_name;
  entry->auth_by_name.func_data = mod->auth_by_name_data;
  entry->auth_by_uid.name = mod->name;
  entry->auth_by_uid.fun = mod->auth_by_uid;
  entry->auth_by_uid.func_data = mod->auth_by_uid_data;
    
  mu_list_append (module_handler_list, entry);
  
}

static struct _module_handler *
_locate (const char *name)
{
  struct _module_handler *rp = NULL;
  mu_iterator_t itr;

  if (mu_list_get_iterator (module_handler_list, &itr) == 0)
    {
      struct _module_handler *p;
      
      for (mu_iterator_first (itr); !rp && !mu_iterator_is_done (itr);
	   mu_iterator_next (itr))
	{
	  mu_iterator_current (itr, (void **)&p);
	  if (strcmp (p->authenticate.name, name) == 0)
	    rp = p;
	}

      mu_iterator_destroy (&itr);
    }
  return rp;
}

static void
_add_module_list (const char *modlist, int (*fun)(const char *name))
{
  char *sp, *name;
  
  for (name = strtok_r ((char *)modlist, ":", &sp); name;
       name = strtok_r (NULL, ":", &sp))
    {
      if (fun (name))
	{
	  if (errno == ENOENT)
	    mu_error ("no such module: %s", name);
	  else
	    mu_error ("failed to add module %s: %s",
		      name, strerror (errno));
	  exit (1);
	}
    }
}

int
mu_authorization_add_module (const char *name)
{
  struct _module_handler *mod = _locate (name);
  
  if (!mod)
    {
      errno = ENOENT;
      return 1;
    }
  mu_insert_stack_entry (&_tmp_auth_by_name_list, &mod->auth_by_name);
  mu_insert_stack_entry (&_tmp_auth_by_uid_list, &mod->auth_by_uid);
  return 0;
}

void
mu_authorization_add_module_list (const char *modlist)
{
  _add_module_list (modlist, mu_authorization_add_module);
}

int
mu_authentication_add_module (const char *name)
{
  struct _module_handler *mod = _locate (name);

  if (!mod)
    {
      errno = ENOENT;
      return 1;
    }
  mu_insert_stack_entry (&_tmp_authenticate_list, &mod->authenticate);
  return 0;
}

void
mu_authentication_add_module_list (const char *modlist)
{
  _add_module_list (modlist, mu_authentication_add_module);
}

/* ************************************************************************ */

/* Setup functions. Note that:
   1) If libmuath is not linked in, then "generic" and "system" modules
      are used unconditionally. This provides compatibility with the
      standard getpw.* functions.
   2) --authentication and --authorization modify only temporary lists,
      which get flushed to the main ones when mu_auth_finish_setup() is
      run. Thus, the default "generic:system" remain in force until
      argp_parse() exits. */
   
void
mu_auth_begin_setup ()
{
  mu_iterator_t itr;

  if (!module_handler_list)
    {
      mu_auth_register_module (&mu_auth_generic_module); 
      mu_auth_register_module (&mu_auth_system_module);
    }
  
  if (!mu_authenticate_list)
    {
      if (mu_list_get_iterator (module_handler_list, &itr) == 0)
	{
	  struct _module_handler *mod;
	  
	  for (mu_iterator_first (itr); !mu_iterator_is_done (itr);
	       mu_iterator_next (itr))
	    {
	      mu_iterator_current (itr, (void **)&mod);
	      mu_insert_stack_entry (&mu_authenticate_list,
				     &mod->authenticate);
	    }
	  mu_iterator_destroy (&itr);
	}
    }

  if (!mu_auth_by_name_list)
    {
      if (mu_list_get_iterator (module_handler_list, &itr) == 0)
	{
	  struct _module_handler *mod;
	  
	  for (mu_iterator_first (itr); !mu_iterator_is_done (itr);
	       mu_iterator_next (itr))
	    {
	      mu_iterator_current (itr, (void **)&mod);
	      mu_insert_stack_entry (&mu_auth_by_name_list, &mod->auth_by_name);
	      mu_insert_stack_entry (&mu_auth_by_uid_list, &mod->auth_by_uid);
	    }
	  mu_iterator_destroy (&itr);
	}
    }
}

void
mu_auth_finish_setup ()
{
  mu_list_destroy (&mu_authenticate_list);
  mu_list_destroy (&mu_auth_by_name_list);
  mu_list_destroy (&mu_auth_by_uid_list);
  
  mu_authenticate_list = _tmp_authenticate_list;
  _tmp_authenticate_list = NULL;
  mu_auth_by_name_list = _tmp_auth_by_name_list;
  _tmp_auth_by_name_list = NULL;
  mu_auth_by_uid_list = _tmp_auth_by_uid_list;
  _tmp_auth_by_uid_list = NULL;
  
  mu_auth_begin_setup ();
}