xref: /dragonfly/contrib/ldns/tsig.c (revision cf89a63b)
1 /*
2  * tsig.c
3  *
4  * contains the functions needed for TSIG [RFC2845]
5  *
6  * (c) 2005-2006 NLnet Labs
7  * See the file LICENSE for the license
8  */
9 
10 #include <ldns/config.h>
11 
12 #include <ldns/ldns.h>
13 
14 #include <strings.h>
15 
16 #ifdef HAVE_SSL
17 #include <openssl/hmac.h>
18 #include <openssl/md5.h>
19 #endif /* HAVE_SSL */
20 
21 char *
22 ldns_tsig_algorithm(ldns_tsig_credentials *tc)
23 {
24 	return tc->algorithm;
25 }
26 
27 char *
28 ldns_tsig_keyname(ldns_tsig_credentials *tc)
29 {
30 	return tc->keyname;
31 }
32 
33 char *
34 ldns_tsig_keydata(ldns_tsig_credentials *tc)
35 {
36 	return tc->keydata;
37 }
38 
39 char *
40 ldns_tsig_keyname_clone(ldns_tsig_credentials *tc)
41 {
42 	return strdup(tc->keyname);
43 }
44 
45 char *
46 ldns_tsig_keydata_clone(ldns_tsig_credentials *tc)
47 {
48 	return strdup(tc->keydata);
49 }
50 
51 /*
52  *  Makes an exact copy of the wire, but with the tsig rr removed
53  */
54 uint8_t *
55 ldns_tsig_prepare_pkt_wire(uint8_t *wire, size_t wire_len, size_t *result_len)
56 {
57 	uint8_t *wire2 = NULL;
58 	uint16_t qd_count;
59 	uint16_t an_count;
60 	uint16_t ns_count;
61 	uint16_t ar_count;
62 	ldns_rr *rr;
63 
64 	size_t pos;
65 	uint16_t i;
66 
67 	ldns_status status;
68 
69 	if(wire_len < LDNS_HEADER_SIZE) {
70 		return NULL;
71 	}
72 	/* fake parse the wire */
73 	qd_count = LDNS_QDCOUNT(wire);
74 	an_count = LDNS_ANCOUNT(wire);
75 	ns_count = LDNS_NSCOUNT(wire);
76 	ar_count = LDNS_ARCOUNT(wire);
77 
78 	if (ar_count > 0) {
79 		ar_count--;
80 	} else {
81 		return NULL;
82 	}
83 
84 	pos = LDNS_HEADER_SIZE;
85 
86 	for (i = 0; i < qd_count; i++) {
87 		status = ldns_wire2rr(&rr, wire, wire_len, &pos, LDNS_SECTION_QUESTION);
88 		if (status != LDNS_STATUS_OK) {
89 			return NULL;
90 		}
91 		ldns_rr_free(rr);
92 	}
93 
94 	for (i = 0; i < an_count; i++) {
95 		status = ldns_wire2rr(&rr, wire, wire_len, &pos, LDNS_SECTION_ANSWER);
96 		if (status != LDNS_STATUS_OK) {
97 			return NULL;
98 		}
99 		ldns_rr_free(rr);
100 	}
101 
102 	for (i = 0; i < ns_count; i++) {
103 		status = ldns_wire2rr(&rr, wire, wire_len, &pos, LDNS_SECTION_AUTHORITY);
104 		if (status != LDNS_STATUS_OK) {
105 			return NULL;
106 		}
107 		ldns_rr_free(rr);
108 	}
109 
110 	for (i = 0; i < ar_count; i++) {
111 		status = ldns_wire2rr(&rr, wire, wire_len, &pos,
112 				LDNS_SECTION_ADDITIONAL);
113 		if (status != LDNS_STATUS_OK) {
114 			return NULL;
115 		}
116 		ldns_rr_free(rr);
117 	}
118 
119 	*result_len = pos;
120 	wire2 = LDNS_XMALLOC(uint8_t, *result_len);
121 	if(!wire2) {
122 		return NULL;
123 	}
124 	memcpy(wire2, wire, *result_len);
125 
126 	ldns_write_uint16(wire2 + LDNS_ARCOUNT_OFF, ar_count);
127 
128 	return wire2;
129 }
130 
131 #ifdef HAVE_SSL
132 static const EVP_MD *
133 ldns_digest_function(char *name)
134 {
135 	/* these are the mandatory algorithms from RFC4635 */
136 	/* The optional algorithms are not yet implemented */
137 	if (strlen(name) == 12
138 			&& strncasecmp(name, "hmac-sha256.", 11) == 0) {
139 #ifdef HAVE_EVP_SHA256
140 		return EVP_sha256();
141 #else
142 		return NULL;
143 #endif
144 	} else if (strlen(name) == 10
145 			&& strncasecmp(name, "hmac-sha1.", 9) == 0) {
146 		return EVP_sha1();
147 	} else if (strlen(name) == 25
148 			&& strncasecmp(name, "hmac-md5.sig-alg.reg.int.", 25)
149 			== 0) {
150 		return EVP_md5();
151 	} else {
152 		return NULL;
153 	}
154 }
155 #endif
156 
157 #ifdef HAVE_SSL
158 static ldns_status
159 ldns_tsig_mac_new(ldns_rdf **tsig_mac, uint8_t *pkt_wire, size_t pkt_wire_size,
160 		const char *key_data, ldns_rdf *key_name_rdf, ldns_rdf *fudge_rdf,
161 		ldns_rdf *algorithm_rdf, ldns_rdf *time_signed_rdf, ldns_rdf *error_rdf,
162 		ldns_rdf *other_data_rdf, ldns_rdf *orig_mac_rdf, int tsig_timers_only)
163 {
164 	ldns_status status;
165 	char *wireformat;
166 	int wiresize;
167 	unsigned char *mac_bytes = NULL;
168 	unsigned char *key_bytes = NULL;
169 	int key_size;
170 	const EVP_MD *digester;
171 	char *algorithm_name = NULL;
172 	unsigned int md_len = EVP_MAX_MD_SIZE;
173 	ldns_rdf *result = NULL;
174 	ldns_buffer *data_buffer = NULL;
175 	ldns_rdf *canonical_key_name_rdf = NULL;
176 	ldns_rdf *canonical_algorithm_rdf = NULL;
177 
178 	if (key_name_rdf == NULL || algorithm_rdf == NULL) {
179 		return LDNS_STATUS_NULL;
180 	}
181 	canonical_key_name_rdf  = ldns_rdf_clone(key_name_rdf);
182 	canonical_algorithm_rdf = ldns_rdf_clone(algorithm_rdf);
183 
184 	if (canonical_key_name_rdf == NULL
185 			|| canonical_algorithm_rdf  == NULL) {
186 		return LDNS_STATUS_MEM_ERR;
187 	}
188 	/*
189 	 * prepare the digestable information
190 	 */
191 	data_buffer = ldns_buffer_new(LDNS_MAX_PACKETLEN);
192 	if (!data_buffer) {
193 		status = LDNS_STATUS_MEM_ERR;
194 		goto clean;
195 	}
196 	/* if orig_mac is not NULL, add it too */
197 	if (orig_mac_rdf) {
198 		(void) ldns_rdf2buffer_wire(data_buffer, orig_mac_rdf);
199  	}
200 	ldns_buffer_write(data_buffer, pkt_wire, pkt_wire_size);
201 	if (!tsig_timers_only) {
202 		ldns_dname2canonical(canonical_key_name_rdf);
203 		(void)ldns_rdf2buffer_wire(data_buffer,
204 				canonical_key_name_rdf);
205 		ldns_buffer_write_u16(data_buffer, LDNS_RR_CLASS_ANY);
206 		ldns_buffer_write_u32(data_buffer, 0);
207 		ldns_dname2canonical(canonical_algorithm_rdf);
208 		(void)ldns_rdf2buffer_wire(data_buffer,
209 				canonical_algorithm_rdf);
210 	}
211 	(void)ldns_rdf2buffer_wire(data_buffer, time_signed_rdf);
212 	(void)ldns_rdf2buffer_wire(data_buffer, fudge_rdf);
213 	if (!tsig_timers_only) {
214 		(void)ldns_rdf2buffer_wire(data_buffer, error_rdf);
215 		(void)ldns_rdf2buffer_wire(data_buffer, other_data_rdf);
216 	}
217 
218 	wireformat = (char *) data_buffer->_data;
219 	wiresize = (int) ldns_buffer_position(data_buffer);
220 
221 	algorithm_name = ldns_rdf2str(algorithm_rdf);
222 	if(!algorithm_name) {
223 		status = LDNS_STATUS_MEM_ERR;
224 		goto clean;
225 	}
226 
227 	/* prepare the key */
228 	key_bytes = LDNS_XMALLOC(unsigned char,
229 			ldns_b64_pton_calculate_size(strlen(key_data)));
230 	if(!key_bytes) {
231 		status = LDNS_STATUS_MEM_ERR;
232 		goto clean;
233 	}
234 	key_size = ldns_b64_pton(key_data, key_bytes,
235 	ldns_b64_pton_calculate_size(strlen(key_data)));
236 	if (key_size < 0) {
237 		status = LDNS_STATUS_INVALID_B64;
238 		goto clean;
239 	}
240 	/* hmac it */
241 	/* 2 spare bytes for the length */
242 	mac_bytes = LDNS_XMALLOC(unsigned char, md_len+2);
243 	if(!mac_bytes) {
244 		status = LDNS_STATUS_MEM_ERR;
245 		goto clean;
246 	}
247 	memset(mac_bytes, 0, md_len+2);
248 
249 	digester = ldns_digest_function(algorithm_name);
250 
251 	if (digester) {
252 		(void) HMAC(digester, key_bytes, key_size, (void *)wireformat,
253 		            (size_t) wiresize, mac_bytes + 2, &md_len);
254 
255 		ldns_write_uint16(mac_bytes, md_len);
256 		result = ldns_rdf_new_frm_data(LDNS_RDF_TYPE_INT16_DATA, md_len + 2,
257 				mac_bytes);
258 	} else {
259 		status = LDNS_STATUS_CRYPTO_UNKNOWN_ALGO;
260 		goto clean;
261 	}
262 	*tsig_mac = result;
263 	status = LDNS_STATUS_OK;
264   clean:
265 	LDNS_FREE(mac_bytes);
266 	LDNS_FREE(key_bytes);
267 	LDNS_FREE(algorithm_name);
268 	ldns_buffer_free(data_buffer);
269 	ldns_rdf_free(canonical_algorithm_rdf);
270 	ldns_rdf_free(canonical_key_name_rdf);
271 	return status;
272 }
273 #endif /*  HAVE_SSL */
274 
275 
276 #ifdef HAVE_SSL
277 bool
278 ldns_pkt_tsig_verify(ldns_pkt *pkt, uint8_t *wire, size_t wirelen, const char *key_name,
279 	const char *key_data, ldns_rdf *orig_mac_rdf)
280 {
281 	return ldns_pkt_tsig_verify_next(pkt, wire, wirelen, key_name, key_data, orig_mac_rdf, 0);
282 }
283 
284 bool
285 ldns_pkt_tsig_verify_next(ldns_pkt *pkt, uint8_t *wire, size_t wirelen, const char* key_name,
286 	const char *key_data, ldns_rdf *orig_mac_rdf, int tsig_timers_only)
287 {
288 	ldns_rdf *fudge_rdf;
289 	ldns_rdf *algorithm_rdf;
290 	ldns_rdf *time_signed_rdf;
291 	ldns_rdf *orig_id_rdf;
292 	ldns_rdf *error_rdf;
293 	ldns_rdf *other_data_rdf;
294 	ldns_rdf *pkt_mac_rdf;
295 	ldns_rdf *my_mac_rdf;
296 	ldns_rdf *key_name_rdf = ldns_rdf_new_frm_str(LDNS_RDF_TYPE_DNAME, key_name);
297 	uint16_t pkt_id, orig_pkt_id;
298 	ldns_status status;
299 
300 	uint8_t *prepared_wire = NULL;
301 	size_t prepared_wire_size = 0;
302 
303 	ldns_rr *orig_tsig = ldns_pkt_tsig(pkt);
304 
305 	if (!orig_tsig || ldns_rr_rd_count(orig_tsig) <= 6) {
306 		ldns_rdf_deep_free(key_name_rdf);
307 		return false;
308 	}
309 	algorithm_rdf = ldns_rr_rdf(orig_tsig, 0);
310 	time_signed_rdf = ldns_rr_rdf(orig_tsig, 1);
311 	fudge_rdf = ldns_rr_rdf(orig_tsig, 2);
312 	pkt_mac_rdf = ldns_rr_rdf(orig_tsig, 3);
313 	orig_id_rdf = ldns_rr_rdf(orig_tsig, 4);
314 	error_rdf = ldns_rr_rdf(orig_tsig, 5);
315 	other_data_rdf = ldns_rr_rdf(orig_tsig, 6);
316 
317 	/* remove temporarily */
318 	ldns_pkt_set_tsig(pkt, NULL);
319 	/* temporarily change the id to the original id */
320 	pkt_id = ldns_pkt_id(pkt);
321 	orig_pkt_id = ldns_rdf2native_int16(orig_id_rdf);
322 	ldns_pkt_set_id(pkt, orig_pkt_id);
323 
324 	prepared_wire = ldns_tsig_prepare_pkt_wire(wire, wirelen, &prepared_wire_size);
325 
326 	status = ldns_tsig_mac_new(&my_mac_rdf, prepared_wire, prepared_wire_size,
327 			key_data, key_name_rdf, fudge_rdf, algorithm_rdf,
328 			time_signed_rdf, error_rdf, other_data_rdf, orig_mac_rdf, tsig_timers_only);
329 
330 	LDNS_FREE(prepared_wire);
331 
332 	if (status != LDNS_STATUS_OK) {
333 		ldns_rdf_deep_free(key_name_rdf);
334 		return false;
335 	}
336 	/* Put back the values */
337 	ldns_pkt_set_tsig(pkt, orig_tsig);
338 	ldns_pkt_set_id(pkt, pkt_id);
339 
340 	ldns_rdf_deep_free(key_name_rdf);
341 
342 	if (ldns_rdf_compare(pkt_mac_rdf, my_mac_rdf) == 0) {
343 		ldns_rdf_deep_free(my_mac_rdf);
344 		return true;
345 	} else {
346 		ldns_rdf_deep_free(my_mac_rdf);
347 		return false;
348 	}
349 }
350 #endif /* HAVE_SSL */
351 
352 #ifdef HAVE_SSL
353 ldns_status
354 ldns_pkt_tsig_sign(ldns_pkt *pkt, const char *key_name, const char *key_data,
355 	uint16_t fudge, const char *algorithm_name, ldns_rdf *query_mac)
356 {
357 	return ldns_pkt_tsig_sign_next(pkt, key_name, key_data, fudge, algorithm_name, query_mac, 0);
358 }
359 
360 ldns_status
361 ldns_pkt_tsig_sign_next(ldns_pkt *pkt, const char *key_name, const char *key_data,
362 	uint16_t fudge, const char *algorithm_name, ldns_rdf *query_mac, int tsig_timers_only)
363 {
364 	ldns_rr *tsig_rr;
365 	ldns_rdf *key_name_rdf = ldns_rdf_new_frm_str(LDNS_RDF_TYPE_DNAME, key_name);
366 	ldns_rdf *fudge_rdf = NULL;
367 	ldns_rdf *orig_id_rdf = NULL;
368 	ldns_rdf *algorithm_rdf;
369 	ldns_rdf *error_rdf = NULL;
370 	ldns_rdf *mac_rdf = NULL;
371 	ldns_rdf *other_data_rdf = NULL;
372 
373 	ldns_status status = LDNS_STATUS_OK;
374 
375 	uint8_t *pkt_wire = NULL;
376 	size_t pkt_wire_len;
377 
378 	struct timeval tv_time_signed;
379 	uint8_t *time_signed = NULL;
380 	ldns_rdf *time_signed_rdf = NULL;
381 
382 	algorithm_rdf = ldns_rdf_new_frm_str(LDNS_RDF_TYPE_DNAME, algorithm_name);
383 	if(!key_name_rdf || !algorithm_rdf) {
384 		status = LDNS_STATUS_MEM_ERR;
385 		goto clean;
386 	}
387 
388 	/* eww don't have create tsigtime rdf yet :( */
389 	/* bleh :p */
390 	if (gettimeofday(&tv_time_signed, NULL) == 0) {
391 		time_signed = LDNS_XMALLOC(uint8_t, 6);
392 		if(!time_signed) {
393 			status = LDNS_STATUS_MEM_ERR;
394 			goto clean;
395 		}
396 		ldns_write_uint64_as_uint48(time_signed,
397 				(uint64_t)tv_time_signed.tv_sec);
398 	} else {
399 		status = LDNS_STATUS_INTERNAL_ERR;
400 		goto clean;
401 	}
402 
403 	time_signed_rdf = ldns_rdf_new(LDNS_RDF_TYPE_TSIGTIME, 6, time_signed);
404 	if(!time_signed_rdf) {
405 		LDNS_FREE(time_signed);
406 		status = LDNS_STATUS_MEM_ERR;
407 		goto clean;
408 	}
409 
410 	fudge_rdf = ldns_native2rdf_int16(LDNS_RDF_TYPE_INT16, fudge);
411 
412 	orig_id_rdf = ldns_native2rdf_int16(LDNS_RDF_TYPE_INT16, ldns_pkt_id(pkt));
413 
414 	error_rdf = ldns_native2rdf_int16(LDNS_RDF_TYPE_INT16, 0);
415 
416 	other_data_rdf = ldns_native2rdf_int16_data(0, NULL);
417 
418 	if(!fudge_rdf || !orig_id_rdf || !error_rdf || !other_data_rdf) {
419 		status = LDNS_STATUS_MEM_ERR;
420 		goto clean;
421 	}
422 
423 	if (ldns_pkt2wire(&pkt_wire, pkt, &pkt_wire_len) != LDNS_STATUS_OK) {
424 		status = LDNS_STATUS_ERR;
425 		goto clean;
426 	}
427 
428 	status = ldns_tsig_mac_new(&mac_rdf, pkt_wire, pkt_wire_len,
429 			key_data, key_name_rdf, fudge_rdf, algorithm_rdf,
430 			time_signed_rdf, error_rdf, other_data_rdf, query_mac, tsig_timers_only);
431 
432 	if (!mac_rdf) {
433 		goto clean;
434 	}
435 
436 	LDNS_FREE(pkt_wire);
437 
438 	/* Create the TSIG RR */
439 	tsig_rr = ldns_rr_new();
440 	if(!tsig_rr) {
441 		status = LDNS_STATUS_MEM_ERR;
442 		goto clean;
443 	}
444 	ldns_rr_set_owner(tsig_rr, key_name_rdf);
445 	ldns_rr_set_class(tsig_rr, LDNS_RR_CLASS_ANY);
446 	ldns_rr_set_type(tsig_rr, LDNS_RR_TYPE_TSIG);
447 	ldns_rr_set_ttl(tsig_rr, 0);
448 
449 	ldns_rr_push_rdf(tsig_rr, algorithm_rdf);
450 	ldns_rr_push_rdf(tsig_rr, time_signed_rdf);
451 	ldns_rr_push_rdf(tsig_rr, fudge_rdf);
452 	ldns_rr_push_rdf(tsig_rr, mac_rdf);
453 	ldns_rr_push_rdf(tsig_rr, orig_id_rdf);
454 	ldns_rr_push_rdf(tsig_rr, error_rdf);
455 	ldns_rr_push_rdf(tsig_rr, other_data_rdf);
456 
457 	ldns_pkt_set_tsig(pkt, tsig_rr);
458 
459 	return status;
460 
461   clean:
462 	LDNS_FREE(pkt_wire);
463 	ldns_rdf_free(key_name_rdf);
464 	ldns_rdf_free(algorithm_rdf);
465 	ldns_rdf_free(time_signed_rdf);
466 	ldns_rdf_free(fudge_rdf);
467 	ldns_rdf_free(orig_id_rdf);
468 	ldns_rdf_free(error_rdf);
469 	ldns_rdf_free(other_data_rdf);
470 	return status;
471 }
472 #endif /* HAVE_SSL */
473