#ifndef _OPENPAM_IMPL_H_INCLUDED
#define _OPENPAM_IMPL_H_INCLUDED
#ifdef HAVE_CONFIG_H
# include <config.h>
#endif
#include <security/openpam.h>
extern const char *_pam_func_name[PAM_NUM_PRIMITIVES];
extern const char *_pam_sm_func_name[PAM_NUM_PRIMITIVES];
extern const char *_pam_err_name[PAM_NUM_ERRORS];
extern const char *_pam_item_name[PAM_NUM_ITEMS];
extern int _openpam_debug;
typedef enum {
PAM_BINDING,
PAM_REQUIRED,
PAM_REQUISITE,
PAM_SUFFICIENT,
PAM_OPTIONAL,
PAM_NUM_CONTROL_FLAGS
} pam_control_t;
typedef enum {
PAM_FACILITY_ANY = -1,
PAM_AUTH = 0,
PAM_ACCOUNT,
PAM_SESSION,
PAM_PASSWORD,
PAM_NUM_FACILITIES
} pam_facility_t;
typedef struct pam_chain pam_chain_t;
struct pam_chain {
pam_module_t *module;
int flag;
int optc;
char **optv;
pam_chain_t *next;
};
typedef struct pam_data pam_data_t;
struct pam_data {
char *name;
void *data;
void (*cleanup)(pam_handle_t *, void *, int);
pam_data_t *next;
};
struct pam_handle {
char *service;
pam_chain_t *chains[PAM_NUM_FACILITIES];
pam_chain_t *current;
int primitive;
void *item[PAM_NUM_ITEMS];
pam_data_t *module_data;
char **env;
int env_count;
int env_size;
};
#ifdef NGROUPS_MAX
#define PAM_SAVED_CRED "pam_saved_cred"
struct pam_saved_cred {
uid_t euid;
gid_t egid;
gid_t groups[NGROUPS_MAX];
int ngroups;
};
#endif
#define PAM_OTHER "other"
int openpam_configure(pam_handle_t *, const char *);
int openpam_dispatch(pam_handle_t *, int, int);
int openpam_findenv(pam_handle_t *, const char *, size_t);
pam_module_t *openpam_load_module(const char *);
void openpam_clear_chains(pam_chain_t **);
#ifdef OPENPAM_STATIC_MODULES
pam_module_t *openpam_static(const char *);
#endif
pam_module_t *openpam_dynamic(const char *);
#define FREE(p) do { free((p)); (p) = NULL; } while (0)
#ifdef DEBUG
#define ENTER() openpam_log(PAM_LOG_DEBUG, "entering")
#define ENTERI(i) do { \
int _i = (i); \
if (_i > 0 && _i < PAM_NUM_ITEMS) \
openpam_log(PAM_LOG_DEBUG, "entering: %s", _pam_item_name[_i]); \
else \
openpam_log(PAM_LOG_DEBUG, "entering: %d", _i); \
} while (0)
#define ENTERN(n) do { \
int _n = (n); \
openpam_log(PAM_LOG_DEBUG, "entering: %d", _n); \
} while (0)
#define ENTERS(s) do { \
const char *_s = (s); \
if (_s == NULL) \
openpam_log(PAM_LOG_DEBUG, "entering: NULL"); \
else \
openpam_log(PAM_LOG_DEBUG, "entering: '%s'", _s); \
} while (0)
#define RETURNV() openpam_log(PAM_LOG_DEBUG, "returning")
#define RETURNC(c) do { \
int _c = (c); \
if (_c >= 0 && _c < PAM_NUM_ERRORS) \
openpam_log(PAM_LOG_DEBUG, "returning %s", _pam_err_name[_c]); \
else \
openpam_log(PAM_LOG_DEBUG, "returning %d!", _c); \
return (_c); \
} while (0)
#define RETURNN(n) do { \
int _n = (n); \
openpam_log(PAM_LOG_DEBUG, "returning %d", _n); \
return (_n); \
} while (0)
#define RETURNP(p) do { \
const void *_p = (p); \
if (_p == NULL) \
openpam_log(PAM_LOG_DEBUG, "returning NULL"); \
else \
openpam_log(PAM_LOG_DEBUG, "returning %p", _p); \
return (p); \
} while (0)
#define RETURNS(s) do { \
const char *_s = (s); \
if (_s == NULL) \
openpam_log(PAM_LOG_DEBUG, "returning NULL"); \
else \
openpam_log(PAM_LOG_DEBUG, "returning '%s'", _s); \
return (_s); \
} while (0)
#else
#define ENTER()
#define ENTERI(i)
#define ENTERN(n)
#define ENTERS(s)
#define RETURNV() return
#define RETURNC(c) return (c)
#define RETURNN(n) return (n)
#define RETURNP(p) return (p)
#define RETURNS(s) return (s)
#endif
#endif