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[secnet] / secnet.h
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1/* Core interface of secnet, to be used by all modules */
2
3#ifndef secnet_h
4#define secnet_h
5
6#include "config.h"
7#include <stdlib.h>
8#include <stdarg.h>
9#include <stdio.h>
10#include <string.h>
11#include <assert.h>
12#include <sys/poll.h>
13#include <sys/types.h>
14#include <sys/time.h>
15#include <netinet/in.h>
16
17typedef char *string_t;
18typedef const char *cstring_t;
19
20#define False (_Bool)0
21#define True (_Bool)1
22typedef _Bool bool_t;
23
24#define ASSERT(x) do { if (!(x)) { fatal("assertion failed line %d file " \
25 __FILE__,__LINE__); } } while(0)
26
27/* from version.c */
28
29extern char version[];
30
31/* from logmsg.c */
32extern uint32_t message_level;
33extern bool_t secnet_is_daemon;
34extern struct log_if *system_log;
35
36/* from process.c */
37extern void start_signal_handling(void);
38
39/***** CONFIGURATION support *****/
40
41extern bool_t just_check_config; /* If True then we're going to exit after
42 reading the configuration file */
43extern bool_t background; /* If True then we'll eventually run as a daemon */
44
45typedef struct dict dict_t; /* Configuration dictionary */
46typedef struct closure closure_t;
47typedef struct item item_t;
48typedef struct list list_t; /* A list of items */
49
50/* Configuration file location, for error-reporting */
51struct cloc {
52 cstring_t file;
53 int line;
54};
55
56/* Modules export closures, which can be invoked from the configuration file.
57 "Invoking" a closure usually returns another closure (of a different
58 type), but can actually return any configuration object. */
59typedef list_t *(apply_fn)(closure_t *self, struct cloc loc,
60 dict_t *context, list_t *data);
61struct closure {
62 cstring_t description; /* For debugging */
63 uint32_t type; /* Central registry... */
64 apply_fn *apply;
65 void *interface; /* Interface for use inside secnet; depends on type */
66};
67
68enum types { t_null, t_bool, t_string, t_number, t_dict, t_closure };
69struct item {
70 enum types type;
71 union {
72 bool_t bool;
73 string_t string;
74 uint32_t number;
75 dict_t *dict;
76 closure_t *closure;
77 } data;
78 struct cloc loc;
79};
80
81/* Note that it is unwise to use this structure directly; use the list
82 manipulation functions instead. */
83struct list {
84 item_t *item;
85 struct list *next;
86};
87
88/* In the following two lookup functions, NULL means 'not found' */
89/* Lookup a value in the specified dictionary, or its parents */
90extern list_t *dict_lookup(dict_t *dict, cstring_t key);
91/* Lookup a value in just the specified dictionary */
92extern list_t *dict_lookup_primitive(dict_t *dict, cstring_t key);
93/* Add a value to the specified dictionary */
94extern void dict_add(dict_t *dict, cstring_t key, list_t *val);
95/* Obtain an array of keys in the dictionary. malloced; caller frees */
96extern cstring_t *dict_keys(dict_t *dict);
97
98/* List-manipulation functions */
99extern list_t *list_new(void);
100extern int32_t list_length(list_t *a);
101extern list_t *list_append(list_t *a, item_t *i);
102extern list_t *list_append_list(list_t *a, list_t *b);
103/* Returns an item from the list (index starts at 0), or NULL */
104extern item_t *list_elem(list_t *l, int32_t index);
105
106/* Convenience functions */
107extern list_t *new_closure(closure_t *cl);
108extern void add_closure(dict_t *dict, cstring_t name, apply_fn apply);
109extern void *find_cl_if(dict_t *dict, cstring_t name, uint32_t type,
110 bool_t fail_if_invalid, cstring_t desc,
111 struct cloc loc);
112extern item_t *dict_find_item(dict_t *dict, cstring_t key, bool_t required,
113 cstring_t desc, struct cloc loc);
114extern string_t dict_read_string(dict_t *dict, cstring_t key, bool_t required,
115 cstring_t desc, struct cloc loc);
116extern uint32_t dict_read_number(dict_t *dict, cstring_t key, bool_t required,
117 cstring_t desc, struct cloc loc,
118 uint32_t def);
119 /* return value can safely be assigned to int32_t */
120extern bool_t dict_read_bool(dict_t *dict, cstring_t key, bool_t required,
121 cstring_t desc, struct cloc loc, bool_t def);
122struct flagstr {
123 cstring_t name;
124 uint32_t value;
125};
126extern uint32_t string_to_word(cstring_t s, struct cloc loc,
127 struct flagstr *f, cstring_t desc);
128extern uint32_t string_list_to_word(list_t *l, struct flagstr *f,
129 cstring_t desc);
130
131/***** END of configuration support *****/
132
133/***** UTILITY functions *****/
134
135extern char *safe_strdup(const char *string, const char *message);
136extern void *safe_malloc(size_t size, const char *message);
137extern void *safe_malloc_ary(size_t size, size_t count, const char *message);
138
139extern int sys_cmd(const char *file, const char *argc, ...);
140
141extern uint64_t now_global;
142extern struct timeval tv_now_global;
143
144static const uint64_t *const now = &now_global;
145static const struct timeval *const tv_now = &tv_now_global;
146
147/* "now" is current program time, in milliseconds. It is derived
148 from tv_now. Both are provided by the event loop. */
149
150/***** END of utility functions *****/
151
152/***** START of max_start_pad handling *****/
153
154extern int32_t site_max_start_pad, transform_max_start_pad,
155 comm_max_start_pad;
156
157void update_max_start_pad(int32_t *our_module_global, int32_t our_instance);
158int32_t calculate_max_start_pad(void);
159
160/***** END of max_start_pad handling *****/
161
162/***** SCHEDULING support */
163
164/* If nfds_io is insufficient for your needs, set it to the required
165 number and return ERANGE. timeout is in milliseconds; if it is too
166 high then lower it. It starts at -1 (==infinite) */
167typedef int beforepoll_fn(void *st, struct pollfd *fds, int *nfds_io,
168 int *timeout_io);
169typedef void afterpoll_fn(void *st, struct pollfd *fds, int nfds);
170
171/* Register interest in the main loop of the program. Before a call
172 to poll() your supplied beforepoll function will be called. After
173 the call to poll() the supplied afterpoll function will be called.
174 max_nfds is a _hint_ about the maximum number of struct pollfd
175 structures you may require - you can always ask for more in
176 *nfds_io. */
177extern void register_for_poll(void *st, beforepoll_fn *before,
178 afterpoll_fn *after, int32_t max_nfds,
179 cstring_t desc);
180
181/***** END of scheduling support */
182
183/***** PROGRAM LIFETIME support */
184
185/* The secnet program goes through a number of phases in its lifetime.
186 Module code may arrange to be called just as various phases are
187 entered.
188
189 Remember to update the table in util.c if changing the set of
190 phases. */
191
192enum phase {
193 PHASE_INIT,
194 PHASE_GETOPTS, /* Process command-line arguments */
195 PHASE_READCONFIG, /* Parse and process configuration file */
196 PHASE_SETUP, /* Process information in configuration */
197 PHASE_DAEMONIZE, /* Become a daemon (if necessary) */
198 PHASE_GETRESOURCES, /* Obtain all external resources */
199 PHASE_DROPPRIV, /* Last chance for privileged operations */
200 PHASE_RUN,
201 PHASE_SHUTDOWN, /* About to die; delete key material, etc. */
202 /* Keep this last: */
203 NR_PHASES,
204};
205
206typedef void hook_fn(void *self, uint32_t newphase);
207bool_t add_hook(uint32_t phase, hook_fn *f, void *state);
208bool_t remove_hook(uint32_t phase, hook_fn *f, void *state);
209
210extern uint32_t current_phase;
211extern void enter_phase(uint32_t new_phase);
212
213/* Some features (like netlink 'soft' routes) require that secnet
214 retain root privileges. They should indicate that here when
215 appropriate. */
216extern bool_t require_root_privileges;
217extern cstring_t require_root_privileges_explanation;
218
219/***** END of program lifetime support *****/
220
221/***** MODULE support *****/
222
223/* Module initialisation function type - modules export one function of
224 this type which is called to initialise them. For dynamically loaded
225 modules it's called "secnet_module". */
226typedef void init_module(dict_t *dict);
227
228extern void init_builtin_modules(dict_t *dict);
229
230extern init_module resolver_module;
231extern init_module random_module;
232extern init_module udp_module;
233extern init_module util_module;
234extern init_module site_module;
235extern init_module transform_eax_module;
236extern init_module transform_cbcmac_module;
237extern init_module netlink_module;
238extern init_module rsa_module;
239extern init_module dh_module;
240extern init_module md5_module;
241extern init_module slip_module;
242extern init_module tun_module;
243extern init_module sha1_module;
244extern init_module log_module;
245
246/***** END of module support *****/
247
248/***** CLOSURE TYPES and interface definitions *****/
249
250#define CL_PURE 0
251#define CL_RESOLVER 1
252#define CL_RANDOMSRC 2
253#define CL_RSAPUBKEY 3
254#define CL_RSAPRIVKEY 4
255#define CL_COMM 5
256#define CL_IPIF 6
257#define CL_LOG 7
258#define CL_SITE 8
259#define CL_TRANSFORM 9
260#define CL_DH 11
261#define CL_HASH 12
262#define CL_BUFFER 13
263#define CL_NETLINK 14
264
265struct buffer_if;
266
267/* PURE closure requires no interface */
268
269/* RESOLVER interface */
270
271/* Answers to queries are delivered to a function of this
272 type. 'address' will be NULL if there was a problem with the query. It
273 will be freed once resolve_answer_fn returns. It is in network byte
274 order. */
275/* XXX extend to be able to provide multiple answers */
276typedef void resolve_answer_fn(void *st, struct in_addr *addr);
277typedef bool_t resolve_request_fn(void *st, cstring_t name,
278 resolve_answer_fn *cb, void *cst);
279struct resolver_if {
280 void *st;
281 resolve_request_fn *request;
282};
283
284/* RANDOMSRC interface */
285
286/* Return some random data. Returns TRUE for success. */
287typedef bool_t random_fn(void *st, int32_t bytes, uint8_t *buff);
288
289struct random_if {
290 void *st;
291 bool_t blocking;
292 random_fn *generate;
293};
294
295/* RSAPUBKEY interface */
296
297typedef bool_t rsa_checksig_fn(void *st, uint8_t *data, int32_t datalen,
298 cstring_t signature);
299struct rsapubkey_if {
300 void *st;
301 rsa_checksig_fn *check;
302};
303
304/* RSAPRIVKEY interface */
305
306typedef string_t rsa_makesig_fn(void *st, uint8_t *data, int32_t datalen);
307struct rsaprivkey_if {
308 void *st;
309 rsa_makesig_fn *sign;
310};
311
312/* COMM interface */
313
314struct comm_addr {
315 /* This struct is pure data; in particular comm's clients may
316 freely copy it. */
317 /* Everyone is also guaranteed that all padding is set to zero, ie
318 that comm_addrs referring to semantically identical peers will
319 compare equal with memcmp. Anyone who constructs a comm_addr
320 must start by memsetting it with FILLZERO, or some
321 equivalent. */
322 struct comm_if *comm;
323 struct sockaddr_in sin;
324};
325
326/* Return True if the packet was processed, and shouldn't be passed to
327 any other potential receivers. */
328typedef bool_t comm_notify_fn(void *state, struct buffer_if *buf,
329 const struct comm_addr *source);
330typedef void comm_request_notify_fn(void *commst, void *nst,
331 comm_notify_fn *fn);
332typedef void comm_release_notify_fn(void *commst, void *nst,
333 comm_notify_fn *fn);
334typedef bool_t comm_sendmsg_fn(void *commst, struct buffer_if *buf,
335 const struct comm_addr *dest);
336typedef const char *comm_addr_to_string_fn(void *commst,
337 const struct comm_addr *ca);
338 /* Returned string is in a static buffer. */
339struct comm_if {
340 void *st;
341 comm_request_notify_fn *request_notify;
342 comm_release_notify_fn *release_notify;
343 comm_sendmsg_fn *sendmsg;
344 comm_addr_to_string_fn *addr_to_string;
345};
346
347static inline const char *comm_addr_to_string(const struct comm_addr *ca)
348{
349 return ca->comm->addr_to_string(ca->comm->st, ca);
350}
351
352/* LOG interface */
353
354#define LOG_MESSAGE_BUFLEN 1023
355
356typedef void log_msg_fn(void *st, int class, const char *message, ...);
357typedef void log_vmsg_fn(void *st, int class, const char *message,
358 va_list args);
359struct log_if {
360 void *st;
361 log_vmsg_fn *vlogfn; /* printf format checking. Use [v]slilog instead */
362 char buff[LOG_MESSAGE_BUFLEN+1];
363};
364/* (convenience functions, defined in util.c) */
365extern void slilog(struct log_if *lf, int class, const char *message, ...)
366FORMAT(printf,3,4);
367extern void vslilog(struct log_if *lf, int class, const char *message, va_list)
368FORMAT(printf,3,0);
369
370/* Versions which take (parts of) (multiple) messages, using \n to
371 * distinguish one message from another. */
372extern void slilog_part(struct log_if *lf, int class, const char *message, ...)
373FORMAT(printf,3,4);
374extern void vslilog_part(struct log_if *lf, int class, const char *message,
375 va_list) FORMAT(printf,3,0);
376
377/* SITE interface */
378
379/* Pretty much a placeholder; allows starting and stopping of processing,
380 key expiry, etc. */
381typedef void site_control_fn(void *st, bool_t run);
382typedef uint32_t site_status_fn(void *st);
383struct site_if {
384 void *st;
385 site_control_fn *control;
386 site_status_fn *status;
387};
388
389/* TRANSFORM interface */
390
391/* A reversable transformation. Transforms buffer in-place; may add
392 data to start or end. (Reverse transformations decrease
393 length, of course.) Transformations may be key-dependent, in which
394 case key material is passed in at initialisation time. They may
395 also depend on internal factors (eg. time) and keep internal
396 state. A struct transform_if only represents a particular type of
397 transformation; instances of the transformation (eg. with
398 particular key material) have a different C type. The same
399 secret key will be used in opposite directions between a pair of
400 secnets; one of these pairs will get direction==False, the other True. */
401
402typedef struct transform_inst_if *transform_createinstance_fn(void *st);
403typedef bool_t transform_setkey_fn(void *st, uint8_t *key, int32_t keylen,
404 bool_t direction);
405typedef bool_t transform_valid_fn(void *st); /* 0: no key; 1: ok */
406typedef void transform_delkey_fn(void *st);
407typedef void transform_destroyinstance_fn(void *st);
408/* Returns:
409 * 0: all is well
410 * 1: for any other problem
411 * 2: message decrypted but sequence number was out of range
412 */
413typedef uint32_t transform_apply_fn(void *st, struct buffer_if *buf,
414 const char **errmsg);
415
416struct transform_inst_if {
417 void *st;
418 transform_setkey_fn *setkey;
419 transform_valid_fn *valid;
420 transform_delkey_fn *delkey;
421 transform_apply_fn *forwards;
422 transform_apply_fn *reverse;
423 transform_destroyinstance_fn *destroy;
424};
425
426struct transform_if {
427 void *st;
428 int capab_transformnum;
429 int32_t keylen; /* <<< INT_MAX */
430 transform_createinstance_fn *create;
431};
432
433/* NETLINK interface */
434
435/* Used by netlink to deliver to site, and by site to deliver to
436 netlink. cid is the client identifier returned by
437 netlink_regnets_fn. If buf has size 0 then the function is just
438 being called for its site-effects (eg. making the site code attempt
439 to bring up a network link) */
440typedef void netlink_deliver_fn(void *st, struct buffer_if *buf);
441/* site code can tell netlink when outgoing packets will be dropped,
442 so netlink can generate appropriate ICMP and make routing decisions */
443#define LINK_QUALITY_UNUSED 0 /* This link is unused, do not make this netlink */
444#define LINK_QUALITY_DOWN 1 /* No chance of a packet being delivered right away*/
445#define LINK_QUALITY_DOWN_STALE_ADDRESS 2 /* Link down, old address information */
446#define LINK_QUALITY_DOWN_CURRENT_ADDRESS 3 /* Link down, current address information */
447#define LINK_QUALITY_UP 4 /* Link active */
448#define MAXIMUM_LINK_QUALITY 3
449typedef void netlink_link_quality_fn(void *st, uint32_t quality);
450typedef void netlink_register_fn(void *st, netlink_deliver_fn *deliver,
451 void *dst, uint32_t *localmtu_r /* NULL ok */);
452typedef void netlink_output_config_fn(void *st, struct buffer_if *buf);
453typedef bool_t netlink_check_config_fn(void *st, struct buffer_if *buf);
454typedef void netlink_set_mtu_fn(void *st, int32_t new_mtu);
455struct netlink_if {
456 void *st;
457 netlink_register_fn *reg;
458 netlink_deliver_fn *deliver;
459 netlink_link_quality_fn *set_quality;
460 netlink_set_mtu_fn *set_mtu;
461};
462
463/* DH interface */
464
465/* Returns public key as a malloced hex string */
466typedef string_t dh_makepublic_fn(void *st, uint8_t *secret,
467 int32_t secretlen);
468/* Fills buffer (up to buflen) with shared secret */
469typedef void dh_makeshared_fn(void *st, uint8_t *secret,
470 int32_t secretlen, cstring_t rempublic,
471 uint8_t *sharedsecret, int32_t buflen);
472struct dh_if {
473 void *st;
474 int32_t len; /* Approximate size of modulus in bytes */
475 int32_t ceil_len; /* Number of bytes just sufficient to contain modulus */
476 dh_makepublic_fn *makepublic;
477 dh_makeshared_fn *makeshared;
478};
479
480/* HASH interface */
481
482typedef void *hash_init_fn(void);
483typedef void hash_update_fn(void *st, const void *buf, int32_t len);
484typedef void hash_final_fn(void *st, uint8_t *digest);
485struct hash_if {
486 int32_t len; /* Hash output length in bytes */
487 hash_init_fn *init;
488 hash_update_fn *update;
489 hash_final_fn *final;
490};
491
492/* BUFFER interface */
493
494struct buffer_if {
495 bool_t free;
496 cstring_t owner; /* Set to constant string */
497 uint32_t flags; /* How paranoid should we be? */
498 struct cloc loc; /* Where we were defined */
499 uint8_t *base;
500 uint8_t *start;
501 int32_t size; /* Size of buffer contents */
502 int32_t len; /* Total length allocated at base */
503};
504
505/***** LOG functions *****/
506
507#define M_DEBUG_CONFIG 0x001
508#define M_DEBUG_PHASE 0x002
509#define M_DEBUG 0x004
510#define M_INFO 0x008
511#define M_NOTICE 0x010
512#define M_WARNING 0x020
513#define M_ERR 0x040
514#define M_SECURITY 0x080
515#define M_FATAL 0x100
516
517/* The fatal() family of functions require messages that do not end in '\n' */
518extern NORETURN(fatal(const char *message, ...)) FORMAT(printf,1,2);
519extern NORETURN(fatal_perror(const char *message, ...)) FORMAT(printf,1,2);
520extern NORETURN(fatal_status(int status, const char *message, ...))
521 FORMAT(printf,2,3);
522extern NORETURN(fatal_perror_status(int status, const char *message, ...))
523 FORMAT(printf,2,3);
524
525/* The cfgfatal() family of functions require messages that end in '\n' */
526extern NORETURN(cfgfatal(struct cloc loc, cstring_t facility,
527 const char *message, ...)) FORMAT(printf,3,4);
528extern void cfgfile_postreadcheck(struct cloc loc, FILE *f);
529extern NORETURN(vcfgfatal_maybefile(FILE *maybe_f, struct cloc loc,
530 cstring_t facility, const char *message,
531 va_list))
532 FORMAT(printf,4,0);
533extern NORETURN(cfgfatal_maybefile(FILE *maybe_f, struct cloc loc,
534 cstring_t facility,
535 const char *message, ...))
536 FORMAT(printf,4,5);
537
538extern void Message(uint32_t class, const char *message, ...)
539 FORMAT(printf,2,3);
540extern void log_from_fd(int fd, cstring_t prefix, struct log_if *log);
541
542/***** END of log functions *****/
543
544#define STRING2(x) #x
545#define STRING(x) STRING2(x)
546
547#define FILLZERO(obj) (memset(&(obj),0,sizeof((obj))))
548
549#endif /* secnet_h */