1 /*
2 * testcode/fake_event.c - fake event handling that replays existing scenario.
3 *
4 * Copyright (c) 2007, NLnet Labs. All rights reserved.
5 *
6 * This software is open source.
7 *
8 * Redistribution and use in source and binary forms, with or without
9 * modification, are permitted provided that the following conditions
10 * are met:
11 *
12 * Redistributions of source code must retain the above copyright notice,
13 * this list of conditions and the following disclaimer.
14 *
15 * Redistributions in binary form must reproduce the above copyright notice,
16 * this list of conditions and the following disclaimer in the documentation
17 * and/or other materials provided with the distribution.
18 *
19 * Neither the name of the NLNET LABS nor the names of its contributors may
20 * be used to endorse or promote products derived from this software without
21 * specific prior written permission.
22 *
23 * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
24 * "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
25 * LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
26 * A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
27 * HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
28 * SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED
29 * TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR
30 * PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF
31 * LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING
32 * NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
33 * SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
34 */
35
36 /**
37 * \file
38 * Event service that replays a scenario.
39 * This implements the same exported symbols as the files:
40 * util/netevent.c
41 * services/listen_dnsport.c
42 * services/outside_network.c
43 * But these do not actually access the network or events, instead
44 * the scenario is played.
45 */
46
47 #include "config.h"
48 #include "testcode/fake_event.h"
49 #include "util/netevent.h"
50 #include "util/net_help.h"
51 #include "util/data/msgparse.h"
52 #include "util/data/msgreply.h"
53 #include "util/data/msgencode.h"
54 #include "util/data/dname.h"
55 #include "util/edns.h"
56 #include "util/config_file.h"
57 #include "services/listen_dnsport.h"
58 #include "services/outside_network.h"
59 #include "services/cache/infra.h"
60 #include "testcode/replay.h"
61 #include "testcode/testpkts.h"
62 #include "util/log.h"
63 #include "util/fptr_wlist.h"
64 #include "sldns/sbuffer.h"
65 #include "sldns/wire2str.h"
66 #include "sldns/str2wire.h"
67 #include "daemon/remote.h"
68 #include "util/timeval_func.h"
69 #include <signal.h>
70 struct worker;
71 struct daemon_remote;
72
73 /** unique code to check that fake_commpoint is that structure */
74 #define FAKE_COMMPOINT_TYPECODE 97347923
75 /** fake commpoint, stores information */
76 struct fake_commpoint {
77 /** typecode */
78 int typecode;
79 /** if this is a udp outgoing type of commpoint */
80 int type_udp_out;
81 /** if this is a tcp outgoing type of commpoint */
82 int type_tcp_out;
83 /** if this is a http outgoing type of commpoint. */
84 int type_http_out;
85
86 /** the callback, stored for usage */
87 comm_point_callback_type* cb;
88 /** the callback userarg, stored for usage */
89 void* cb_arg;
90 /** runtime ptr */
91 struct replay_runtime* runtime;
92 /** the pending entry for this commpoint (if any) */
93 struct fake_pending* pending;
94 };
95
96 /** Global variable: the scenario. Saved here for when event_init is done. */
97 static struct replay_scenario* saved_scenario = NULL;
98
99 void
fake_temp_file(const char * adj,const char * id,char * buf,size_t len)100 fake_temp_file(const char* adj, const char* id, char* buf, size_t len)
101 {
102 #ifdef USE_WINSOCK
103 snprintf(buf, len, "testbound_%u%s%s.tmp",
104 (unsigned)getpid(), adj, id);
105 #else
106 snprintf(buf, len, "/tmp/testbound_%u%s%s.tmp",
107 (unsigned)getpid(), adj, id);
108 #endif
109 }
110
111 void
fake_event_init(struct replay_scenario * scen)112 fake_event_init(struct replay_scenario* scen)
113 {
114 saved_scenario = scen;
115 }
116
117 void
fake_event_cleanup(void)118 fake_event_cleanup(void)
119 {
120 replay_scenario_delete(saved_scenario);
121 saved_scenario = NULL;
122 }
123
124 /** helper function that logs a sldns_pkt packet to logfile */
125 static void
log_pkt(const char * desc,uint8_t * pkt,size_t len)126 log_pkt(const char* desc, uint8_t* pkt, size_t len)
127 {
128 char* str = sldns_wire2str_pkt(pkt, len);
129 if(!str)
130 fatal_exit("%s: (failed out of memory wire2str_pkt)", desc);
131 else {
132 log_info("%s%s", desc, str);
133 free(str);
134 }
135 }
136
137 /**
138 * Returns a string describing the event type.
139 */
140 static const char*
repevt_string(enum replay_event_type t)141 repevt_string(enum replay_event_type t)
142 {
143 switch(t) {
144 case repevt_nothing: return "NOTHING";
145 case repevt_front_query: return "QUERY";
146 case repevt_front_reply: return "CHECK_ANSWER";
147 case repevt_timeout: return "TIMEOUT";
148 case repevt_time_passes: return "TIME_PASSES";
149 case repevt_back_reply: return "REPLY";
150 case repevt_back_query: return "CHECK_OUT_QUERY";
151 case repevt_autotrust_check: return "CHECK_AUTOTRUST";
152 case repevt_tempfile_check: return "CHECK_TEMPFILE";
153 case repevt_error: return "ERROR";
154 case repevt_assign: return "ASSIGN";
155 case repevt_traffic: return "TRAFFIC";
156 case repevt_infra_rtt: return "INFRA_RTT";
157 default: return "UNKNOWN";
158 }
159 }
160
161 /** delete a fake pending */
162 static void
delete_fake_pending(struct fake_pending * pend)163 delete_fake_pending(struct fake_pending* pend)
164 {
165 if(!pend)
166 return;
167 free(pend->zone);
168 sldns_buffer_free(pend->buffer);
169 free(pend->pkt);
170 free(pend);
171 }
172
173 /** delete a replay answer */
174 static void
delete_replay_answer(struct replay_answer * a)175 delete_replay_answer(struct replay_answer* a)
176 {
177 if(!a)
178 return;
179 if(a->repinfo.c) {
180 sldns_buffer_free(a->repinfo.c->buffer);
181 free(a->repinfo.c);
182 }
183 free(a->pkt);
184 free(a);
185 }
186
187 /**
188 * return: true if pending query matches the now event.
189 */
190 static int
pending_matches_current(struct replay_runtime * runtime,struct entry ** entry,struct fake_pending ** pend)191 pending_matches_current(struct replay_runtime* runtime,
192 struct entry** entry, struct fake_pending **pend)
193 {
194 struct fake_pending* p;
195 struct entry* e;
196 if(!runtime->now || runtime->now->evt_type != repevt_back_query
197 || !runtime->pending_list)
198 return 0;
199 /* see if any of the pending queries matches */
200 for(p = runtime->pending_list; p; p = p->next) {
201 if(runtime->now->addrlen != 0 &&
202 sockaddr_cmp(&p->addr, p->addrlen, &runtime->now->addr,
203 runtime->now->addrlen) != 0)
204 continue;
205 if((e=find_match(runtime->now->match, p->pkt, p->pkt_len,
206 p->transport))) {
207 *entry = e;
208 *pend = p;
209 return 1;
210 }
211 }
212 return 0;
213 }
214
215 /**
216 * Find the range that matches this pending message.
217 * @param runtime: runtime with current moment, and range list.
218 * @param entry: returns the pointer to entry that matches.
219 * @param pend: the pending that the entry must match.
220 * @return: true if a match is found.
221 */
222 static int
pending_find_match(struct replay_runtime * runtime,struct entry ** entry,struct fake_pending * pend)223 pending_find_match(struct replay_runtime* runtime, struct entry** entry,
224 struct fake_pending* pend)
225 {
226 int timenow = runtime->now->time_step;
227 struct replay_range* p = runtime->scenario->range_list;
228 while(p) {
229 if(p->start_step <= timenow && timenow <= p->end_step &&
230 (p->addrlen == 0 || sockaddr_cmp(&p->addr, p->addrlen,
231 &pend->addr, pend->addrlen) == 0) &&
232 (*entry = find_match(p->match, pend->pkt, pend->pkt_len,
233 pend->transport))) {
234 log_info("matched query time %d in range [%d, %d] "
235 "with entry line %d", timenow,
236 p->start_step, p->end_step, (*entry)->lineno);
237 if(p->addrlen != 0)
238 log_addr(0, "matched ip", &p->addr, p->addrlen);
239 log_pkt("matched pkt: ",
240 (*entry)->reply_list->reply_pkt,
241 (*entry)->reply_list->reply_len);
242 return 1;
243 }
244 p = p->next_range;
245 }
246 return 0;
247 }
248
249 /**
250 * See if outgoing pending query matches an entry.
251 * @param runtime: runtime.
252 * @param entry: if true, the entry that matches is returned.
253 * @param pend: if true, the outgoing message that matches is returned.
254 * @return: true if pending query matches the now event.
255 */
256 static int
pending_matches_range(struct replay_runtime * runtime,struct entry ** entry,struct fake_pending ** pend)257 pending_matches_range(struct replay_runtime* runtime,
258 struct entry** entry, struct fake_pending** pend)
259 {
260 struct fake_pending* p = runtime->pending_list;
261 /* slow, O(N*N), but it works as advertised with weird matching */
262 while(p) {
263 if(p->tcp_pkt_counter != 0) {
264 /* continue tcp transfer */
265 *pend = p;
266 return 1;
267 }
268 if(pending_find_match(runtime, entry, p)) {
269 *pend = p;
270 return 1;
271 }
272 p = p->next;
273 }
274 return 0;
275 }
276
277 /**
278 * Remove the item from the pending list.
279 */
280 static void
pending_list_delete(struct replay_runtime * runtime,struct fake_pending * pend)281 pending_list_delete(struct replay_runtime* runtime, struct fake_pending* pend)
282 {
283 struct fake_pending** prev = &runtime->pending_list;
284 struct fake_pending* p = runtime->pending_list;
285
286 while(p) {
287 if(p == pend) {
288 *prev = p->next;
289 delete_fake_pending(pend);
290 return;
291 }
292
293 prev = &p->next;
294 p = p->next;
295 }
296 }
297
298 /** number of replies in entry */
299 static int
count_reply_packets(struct entry * entry)300 count_reply_packets(struct entry* entry)
301 {
302 int count = 0;
303 struct reply_packet* reppkt = entry->reply_list;
304 while(reppkt) {
305 count++;
306 reppkt = reppkt->next;
307 }
308 return count;
309 }
310
311 /**
312 * Fill buffer with reply from the entry.
313 */
314 static void
fill_buffer_with_reply(sldns_buffer * buffer,struct entry * entry,uint8_t * q,size_t qlen,int tcp_pkt_counter)315 fill_buffer_with_reply(sldns_buffer* buffer, struct entry* entry, uint8_t* q,
316 size_t qlen, int tcp_pkt_counter)
317 {
318 struct reply_packet* reppkt;
319 uint8_t* c;
320 size_t clen;
321 log_assert(entry && entry->reply_list);
322 sldns_buffer_clear(buffer);
323 reppkt = entry->reply_list;
324 if(tcp_pkt_counter > 0) {
325 int i = tcp_pkt_counter;
326 while(reppkt && i--)
327 reppkt = reppkt->next;
328 if(!reppkt) fatal_exit("extra packet read from TCP stream but none is available");
329 log_pkt("extra_packet ", reppkt->reply_pkt, reppkt->reply_len);
330 }
331 if(reppkt->reply_from_hex) {
332 c = sldns_buffer_begin(reppkt->reply_from_hex);
333 clen = sldns_buffer_limit(reppkt->reply_from_hex);
334 if(!c) fatal_exit("out of memory");
335 } else {
336 c = reppkt->reply_pkt;
337 clen = reppkt->reply_len;
338 }
339 if(c) {
340 if(q) adjust_packet(entry, &c, &clen, q, qlen);
341 sldns_buffer_write(buffer, c, clen);
342 if(q) free(c);
343 }
344 sldns_buffer_flip(buffer);
345 }
346
347 /**
348 * Perform range entry on pending message.
349 * @param runtime: runtime buffer size preference.
350 * @param entry: entry that codes for the reply to do.
351 * @param pend: pending query that is answered, callback called.
352 */
353 static void
answer_callback_from_entry(struct replay_runtime * runtime,struct entry * entry,struct fake_pending * pend)354 answer_callback_from_entry(struct replay_runtime* runtime,
355 struct entry* entry, struct fake_pending* pend)
356 {
357 struct comm_point c;
358 struct comm_reply repinfo;
359 void* cb_arg = pend->cb_arg;
360 comm_point_callback_type* cb = pend->callback;
361
362 memset(&c, 0, sizeof(c));
363 c.fd = -1;
364 c.buffer = sldns_buffer_new(runtime->bufsize);
365 c.type = comm_udp;
366 if(pend->transport == transport_tcp) {
367 c.type = comm_tcp;
368 c.tcp_timeout_msec = 30000;
369 c.tcp_keepalive = runtime->tcp_seen_keepalive;
370 }
371 fill_buffer_with_reply(c.buffer, entry, pend->pkt, pend->pkt_len,
372 pend->tcp_pkt_counter);
373 repinfo.c = &c;
374 repinfo.remote_addrlen = pend->addrlen;
375 memcpy(&repinfo.remote_addr, &pend->addr, pend->addrlen);
376 if(!pend->serviced) {
377 if(entry && entry->reply_list->next &&
378 pend->tcp_pkt_counter < count_reply_packets(entry)) {
379 /* go to next packet next time */
380 pend->tcp_pkt_counter++;
381 } else {
382 pending_list_delete(runtime, pend);
383 }
384 }
385 if((*cb)(&c, cb_arg, NETEVENT_NOERROR, &repinfo)) {
386 fatal_exit("testbound: unexpected: callback returned 1");
387 }
388 sldns_buffer_free(c.buffer);
389 }
390
391 /** Check the now moment answer check event */
392 static void
answer_check_it(struct replay_runtime * runtime)393 answer_check_it(struct replay_runtime* runtime)
394 {
395 struct replay_answer* ans = runtime->answer_list,
396 *prev = NULL;
397 log_assert(runtime && runtime->now &&
398 runtime->now->evt_type == repevt_front_reply);
399 while(ans) {
400 enum transport_type tr = transport_tcp;
401 if(ans->repinfo.c->type == comm_udp)
402 tr = transport_udp;
403 if((runtime->now->addrlen == 0 || sockaddr_cmp(
404 &runtime->now->addr, runtime->now->addrlen,
405 &ans->repinfo.remote_addr, ans->repinfo.remote_addrlen) == 0) &&
406 find_match(runtime->now->match, ans->pkt,
407 ans->pkt_len, tr)) {
408 log_info("testbound matched event entry from line %d",
409 runtime->now->match->lineno);
410 log_info("testbound: do STEP %d %s",
411 runtime->now->time_step,
412 repevt_string(runtime->now->evt_type));
413 if(prev)
414 prev->next = ans->next;
415 else runtime->answer_list = ans->next;
416 if(!ans->next)
417 runtime->answer_last = prev;
418 if(ans->repinfo.c->tcp_keepalive)
419 runtime->tcp_seen_keepalive = 1;
420 delete_replay_answer(ans);
421 return;
422 } else {
423 prev = ans;
424 ans = ans->next;
425 }
426 }
427 log_info("testbound: do STEP %d %s", runtime->now->time_step,
428 repevt_string(runtime->now->evt_type));
429 fatal_exit("testbound: not matched");
430 }
431
432 /**
433 * Create commpoint (as return address) for a fake incoming query.
434 */
435 static void
fake_front_query(struct replay_runtime * runtime,struct replay_moment * todo)436 fake_front_query(struct replay_runtime* runtime, struct replay_moment *todo)
437 {
438 struct comm_reply repinfo;
439 memset(&repinfo, 0, sizeof(repinfo));
440 repinfo.c = (struct comm_point*)calloc(1, sizeof(struct comm_point));
441 if(!repinfo.c)
442 fatal_exit("out of memory in fake_front_query");
443 repinfo.remote_addrlen = (socklen_t)sizeof(struct sockaddr_in);
444 if(todo->addrlen != 0) {
445 repinfo.remote_addrlen = todo->addrlen;
446 memcpy(&repinfo.remote_addr, &todo->addr, todo->addrlen);
447 repinfo.client_addrlen = todo->addrlen;
448 memcpy(&repinfo.client_addr, &todo->addr, todo->addrlen);
449 }
450 repinfo.c->fd = -1;
451 repinfo.c->ev = (struct internal_event*)runtime;
452 repinfo.c->buffer = sldns_buffer_new(runtime->bufsize);
453 if(todo->match->match_transport == transport_tcp) {
454 repinfo.c->type = comm_tcp;
455 repinfo.c->tcp_timeout_msec = 30000;
456 repinfo.c->tcp_keepalive = runtime->tcp_seen_keepalive;
457 } else
458 repinfo.c->type = comm_udp;
459 fill_buffer_with_reply(repinfo.c->buffer, todo->match, NULL, 0, 0);
460 log_info("testbound: incoming QUERY");
461 log_pkt("query pkt", todo->match->reply_list->reply_pkt,
462 todo->match->reply_list->reply_len);
463 /* call the callback for incoming queries */
464 if((*runtime->callback_query)(repinfo.c, runtime->cb_arg,
465 NETEVENT_NOERROR, &repinfo)) {
466 /* send immediate reply */
467 comm_point_send_reply(&repinfo);
468 }
469 /* clear it again, in case copy not done properly */
470 memset(&repinfo, 0, sizeof(repinfo));
471 }
472
473 /**
474 * Perform callback for fake pending message.
475 */
476 static void
fake_pending_callback(struct replay_runtime * runtime,struct replay_moment * todo,int error)477 fake_pending_callback(struct replay_runtime* runtime,
478 struct replay_moment* todo, int error)
479 {
480 struct fake_pending* p = runtime->pending_list;
481 struct comm_reply repinfo;
482 struct comm_point c;
483 void* cb_arg;
484 comm_point_callback_type* cb;
485
486 memset(&c, 0, sizeof(c));
487 if(!p) fatal_exit("No pending queries.");
488 cb_arg = p->cb_arg;
489 cb = p->callback;
490 c.buffer = sldns_buffer_new(runtime->bufsize);
491 c.type = comm_udp;
492 if(p->transport == transport_tcp) {
493 c.type = comm_tcp;
494 c.tcp_timeout_msec = 30000;
495 c.tcp_keepalive = runtime->tcp_seen_keepalive;
496 }
497 if(todo->evt_type == repevt_back_reply && todo->match) {
498 fill_buffer_with_reply(c.buffer, todo->match, p->pkt,
499 p->pkt_len, p->tcp_pkt_counter);
500 }
501 repinfo.c = &c;
502 repinfo.remote_addrlen = p->addrlen;
503 memcpy(&repinfo.remote_addr, &p->addr, p->addrlen);
504 if(!p->serviced) {
505 if(todo->match && todo->match->reply_list->next && !error &&
506 p->tcp_pkt_counter < count_reply_packets(todo->match)) {
507 /* go to next packet next time */
508 p->tcp_pkt_counter++;
509 } else {
510 pending_list_delete(runtime, p);
511 }
512 }
513 if((*cb)(&c, cb_arg, error, &repinfo)) {
514 fatal_exit("unexpected: pending callback returned 1");
515 }
516 /* delete the pending item. */
517 sldns_buffer_free(c.buffer);
518 }
519
520 /** pass time */
521 static void
moment_assign(struct replay_runtime * runtime,struct replay_moment * mom)522 moment_assign(struct replay_runtime* runtime, struct replay_moment* mom)
523 {
524 char* value = macro_process(runtime->vars, runtime, mom->string);
525 if(!value)
526 fatal_exit("could not process macro step %d", mom->time_step);
527 log_info("assign %s = %s", mom->variable, value);
528 if(!macro_assign(runtime->vars, mom->variable, value))
529 fatal_exit("out of memory storing macro");
530 free(value);
531 if(verbosity >= VERB_ALGO)
532 macro_print_debug(runtime->vars);
533 }
534
535 /** pass time */
536 static void
time_passes(struct replay_runtime * runtime,struct replay_moment * mom)537 time_passes(struct replay_runtime* runtime, struct replay_moment* mom)
538 {
539 struct fake_timer *t;
540 struct timeval tv = mom->elapse;
541 if(mom->string) {
542 char* xp = macro_process(runtime->vars, runtime, mom->string);
543 double sec;
544 if(!xp) fatal_exit("could not macro expand %s", mom->string);
545 verbose(VERB_ALGO, "EVAL %s", mom->string);
546 sec = atof(xp);
547 free(xp);
548 #ifndef S_SPLINT_S
549 tv.tv_sec = sec;
550 tv.tv_usec = (int)((sec - (double)tv.tv_sec) *1000000. + 0.5);
551 #endif
552 }
553 timeval_add(&runtime->now_tv, &tv);
554 runtime->now_secs = (time_t)runtime->now_tv.tv_sec;
555 #ifndef S_SPLINT_S
556 log_info("elapsed %d.%6.6d now %d.%6.6d",
557 (int)tv.tv_sec, (int)tv.tv_usec,
558 (int)runtime->now_tv.tv_sec, (int)runtime->now_tv.tv_usec);
559 #endif
560 /* see if any timers have fired; and run them */
561 while( (t=replay_get_oldest_timer(runtime)) ) {
562 t->enabled = 0;
563 log_info("fake_timer callback");
564 fptr_ok(fptr_whitelist_comm_timer(t->cb));
565 (*t->cb)(t->cb_arg);
566 }
567 }
568
569 /** check autotrust file contents */
570 static void
autotrust_check(struct replay_runtime * runtime,struct replay_moment * mom)571 autotrust_check(struct replay_runtime* runtime, struct replay_moment* mom)
572 {
573 char name[1024], line[1024];
574 FILE *in;
575 int lineno = 0, oke=1;
576 char* expanded;
577 struct config_strlist* p;
578 line[sizeof(line)-1] = 0;
579 log_assert(mom->autotrust_id);
580 fake_temp_file("_auto_", mom->autotrust_id, name, sizeof(name));
581 in = fopen(name, "r");
582 if(!in) fatal_exit("could not open %s: %s", name, strerror(errno));
583 for(p=mom->file_content; p; p=p->next) {
584 lineno++;
585 if(!fgets(line, (int)sizeof(line)-1, in)) {
586 log_err("autotrust check failed, could not read line");
587 log_err("file %s, line %d", name, lineno);
588 log_err("should be: %s", p->str);
589 fatal_exit("autotrust_check failed");
590 }
591 strip_end_white(line);
592 expanded = macro_process(runtime->vars, runtime, p->str);
593 if(!expanded)
594 fatal_exit("could not expand macro line %d", lineno);
595 if(verbosity >= 7 && strcmp(p->str, expanded) != 0)
596 log_info("expanded '%s' to '%s'", p->str, expanded);
597 if(strcmp(expanded, line) != 0) {
598 log_err("mismatch in file %s, line %d", name, lineno);
599 log_err("file has : %s", line);
600 log_err("should be: %s", expanded);
601 free(expanded);
602 oke = 0;
603 continue;
604 }
605 free(expanded);
606 fprintf(stderr, "%s:%2d ok : %s\n", name, lineno, line);
607 }
608 if(fgets(line, (int)sizeof(line)-1, in)) {
609 log_err("autotrust check failed, extra lines in %s after %d",
610 name, lineno);
611 do {
612 fprintf(stderr, "file has: %s", line);
613 } while(fgets(line, (int)sizeof(line)-1, in));
614 oke = 0;
615 }
616 fclose(in);
617 if(!oke)
618 fatal_exit("autotrust_check STEP %d failed", mom->time_step);
619 log_info("autotrust %s is OK", mom->autotrust_id);
620 }
621
622 /** check tempfile file contents */
623 static void
tempfile_check(struct replay_runtime * runtime,struct replay_moment * mom)624 tempfile_check(struct replay_runtime* runtime, struct replay_moment* mom)
625 {
626 char name[1024], line[1024];
627 FILE *in;
628 int lineno = 0, oke=1;
629 char* expanded;
630 struct config_strlist* p;
631 line[sizeof(line)-1] = 0;
632 log_assert(mom->autotrust_id);
633 fake_temp_file("_temp_", mom->autotrust_id, name, sizeof(name));
634 in = fopen(name, "r");
635 if(!in) fatal_exit("could not open %s: %s", name, strerror(errno));
636 for(p=mom->file_content; p; p=p->next) {
637 lineno++;
638 if(!fgets(line, (int)sizeof(line)-1, in)) {
639 log_err("tempfile check failed, could not read line");
640 log_err("file %s, line %d", name, lineno);
641 log_err("should be: %s", p->str);
642 fatal_exit("tempfile_check failed");
643 }
644 strip_end_white(line);
645 expanded = macro_process(runtime->vars, runtime, p->str);
646 if(!expanded)
647 fatal_exit("could not expand macro line %d", lineno);
648 if(verbosity >= 7 && strcmp(p->str, expanded) != 0)
649 log_info("expanded '%s' to '%s'", p->str, expanded);
650 if(strcmp(expanded, line) != 0) {
651 log_err("mismatch in file %s, line %d", name, lineno);
652 log_err("file has : %s", line);
653 log_err("should be: %s", expanded);
654 free(expanded);
655 oke = 0;
656 continue;
657 }
658 free(expanded);
659 fprintf(stderr, "%s:%2d ok : %s\n", name, lineno, line);
660 }
661 if(fgets(line, (int)sizeof(line)-1, in)) {
662 log_err("tempfile check failed, extra lines in %s after %d",
663 name, lineno);
664 do {
665 fprintf(stderr, "file has: %s", line);
666 } while(fgets(line, (int)sizeof(line)-1, in));
667 oke = 0;
668 }
669 fclose(in);
670 if(!oke)
671 fatal_exit("tempfile_check STEP %d failed", mom->time_step);
672 log_info("tempfile %s is OK", mom->autotrust_id);
673 }
674
675 /** Store RTT in infra cache */
676 static void
do_infra_rtt(struct replay_runtime * runtime)677 do_infra_rtt(struct replay_runtime* runtime)
678 {
679 struct replay_moment* now = runtime->now;
680 int rto;
681 size_t dplen = 0;
682 uint8_t* dp = sldns_str2wire_dname(now->variable, &dplen);
683 if(!dp) fatal_exit("cannot parse %s", now->variable);
684 rto = infra_rtt_update(runtime->infra, &now->addr, now->addrlen,
685 dp, dplen, LDNS_RR_TYPE_A, atoi(now->string),
686 -1, runtime->now_secs);
687 log_addr(0, "INFRA_RTT for", &now->addr, now->addrlen);
688 log_info("INFRA_RTT(%s roundtrip %d): rto of %d", now->variable,
689 atoi(now->string), rto);
690 if(rto == 0) fatal_exit("infra_rtt_update failed");
691 free(dp);
692 }
693
694 /** perform exponential backoff on the timeout */
695 static void
expon_timeout_backoff(struct replay_runtime * runtime)696 expon_timeout_backoff(struct replay_runtime* runtime)
697 {
698 struct fake_pending* p = runtime->pending_list;
699 int rtt, vs;
700 uint8_t edns_lame_known;
701 int last_rtt, rto;
702 if(!p) return; /* no pending packet to backoff */
703 if(!infra_host(runtime->infra, &p->addr, p->addrlen, p->zone,
704 p->zonelen, runtime->now_secs, &vs, &edns_lame_known, &rtt))
705 return;
706 last_rtt = rtt;
707 rto = infra_rtt_update(runtime->infra, &p->addr, p->addrlen, p->zone,
708 p->zonelen, p->qtype, -1, last_rtt, runtime->now_secs);
709 log_info("infra_rtt_update returned rto %d", rto);
710 }
711
712 /**
713 * Advance to the next moment.
714 */
715 static void
advance_moment(struct replay_runtime * runtime)716 advance_moment(struct replay_runtime* runtime)
717 {
718 if(!runtime->now)
719 runtime->now = runtime->scenario->mom_first;
720 else runtime->now = runtime->now->mom_next;
721 }
722
723 /**
724 * Perform actions or checks determined by the moment.
725 * Also advances the time by one step.
726 * @param runtime: scenario runtime information.
727 */
728 static void
do_moment_and_advance(struct replay_runtime * runtime)729 do_moment_and_advance(struct replay_runtime* runtime)
730 {
731 struct replay_moment* mom;
732 if(!runtime->now) {
733 advance_moment(runtime);
734 return;
735 }
736 log_info("testbound: do STEP %d %s", runtime->now->time_step,
737 repevt_string(runtime->now->evt_type));
738 switch(runtime->now->evt_type) {
739 case repevt_nothing:
740 advance_moment(runtime);
741 break;
742 case repevt_front_query:
743 /* advance moment before doing the step, so that the next
744 moment which may check some result of the mom step
745 can catch those results. */
746 mom = runtime->now;
747 advance_moment(runtime);
748 fake_front_query(runtime, mom);
749 break;
750 case repevt_front_reply:
751 if(runtime->answer_list)
752 log_err("testbound: There are unmatched answers.");
753 fatal_exit("testbound: query answer not matched");
754 break;
755 case repevt_timeout:
756 mom = runtime->now;
757 advance_moment(runtime);
758 expon_timeout_backoff(runtime);
759 fake_pending_callback(runtime, mom, NETEVENT_TIMEOUT);
760 break;
761 case repevt_back_reply:
762 mom = runtime->now;
763 advance_moment(runtime);
764 fake_pending_callback(runtime, mom, NETEVENT_NOERROR);
765 break;
766 case repevt_back_query:
767 /* Back queries are matched when they are sent out. */
768 log_err("No query matching the current moment was sent.");
769 fatal_exit("testbound: back query not matched");
770 break;
771 case repevt_error:
772 mom = runtime->now;
773 advance_moment(runtime);
774 fake_pending_callback(runtime, mom, NETEVENT_CLOSED);
775 break;
776 case repevt_time_passes:
777 time_passes(runtime, runtime->now);
778 advance_moment(runtime);
779 break;
780 case repevt_autotrust_check:
781 autotrust_check(runtime, runtime->now);
782 advance_moment(runtime);
783 break;
784 case repevt_tempfile_check:
785 tempfile_check(runtime, runtime->now);
786 advance_moment(runtime);
787 break;
788 case repevt_assign:
789 moment_assign(runtime, runtime->now);
790 advance_moment(runtime);
791 break;
792 case repevt_traffic:
793 advance_moment(runtime);
794 break;
795 case repevt_infra_rtt:
796 do_infra_rtt(runtime);
797 advance_moment(runtime);
798 break;
799 default:
800 fatal_exit("testbound: unknown event type %d",
801 runtime->now->evt_type);
802 }
803 }
804
805 /** run the scenario in event callbacks */
806 static void
run_scenario(struct replay_runtime * runtime)807 run_scenario(struct replay_runtime* runtime)
808 {
809 struct entry* entry = NULL;
810 struct fake_pending* pending = NULL;
811 int max_rounds = 5000;
812 int rounds = 0;
813 runtime->now = runtime->scenario->mom_first;
814 log_info("testbound: entering fake runloop");
815 do {
816 /* if moment matches pending query do it. */
817 /* else if moment matches given answer, do it */
818 /* else if precoded_range matches pending, do it */
819 /* else do the current moment */
820 if(pending_matches_current(runtime, &entry, &pending)) {
821 log_info("testbound: do STEP %d CHECK_OUT_QUERY",
822 runtime->now->time_step);
823 advance_moment(runtime);
824 if(entry->copy_id)
825 answer_callback_from_entry(runtime, entry,
826 pending);
827 } else if(runtime->answer_list && runtime->now &&
828 runtime->now->evt_type == repevt_front_reply) {
829 answer_check_it(runtime);
830 advance_moment(runtime);
831 } else if(pending_matches_range(runtime, &entry, &pending)) {
832 answer_callback_from_entry(runtime, entry, pending);
833 } else {
834 do_moment_and_advance(runtime);
835 }
836 log_info("testbound: end of event stage");
837 rounds++;
838 if(rounds > max_rounds)
839 fatal_exit("testbound: too many rounds, it loops.");
840 } while(runtime->now);
841
842 if(runtime->pending_list) {
843 struct fake_pending* p;
844 log_err("testbound: there are still messages pending.");
845 for(p = runtime->pending_list; p; p=p->next) {
846 log_pkt("pending msg", p->pkt, p->pkt_len);
847 log_addr(0, "pending to", &p->addr, p->addrlen);
848 }
849 fatal_exit("testbound: there are still messages pending.");
850 }
851 if(runtime->answer_list) {
852 fatal_exit("testbound: there are unmatched answers.");
853 }
854 log_info("testbound: exiting fake runloop.");
855 runtime->exit_cleanly = 1;
856 }
857
858 /*********** Dummy routines ***********/
859
860 struct listen_dnsport*
listen_create(struct comm_base * base,struct listen_port * ATTR_UNUSED (ports),size_t bufsize,int ATTR_UNUSED (tcp_accept_count),int ATTR_UNUSED (tcp_idle_timeout),int ATTR_UNUSED (harden_large_queries),uint32_t ATTR_UNUSED (http_max_streams),char * ATTR_UNUSED (http_endpoint),int ATTR_UNUSED (http_notls),struct tcl_list * ATTR_UNUSED (tcp_conn_limit),void * ATTR_UNUSED (sslctx),struct dt_env * ATTR_UNUSED (dtenv),comm_point_callback_type * cb,void * cb_arg)861 listen_create(struct comm_base* base, struct listen_port* ATTR_UNUSED(ports),
862 size_t bufsize, int ATTR_UNUSED(tcp_accept_count),
863 int ATTR_UNUSED(tcp_idle_timeout),
864 int ATTR_UNUSED(harden_large_queries),
865 uint32_t ATTR_UNUSED(http_max_streams),
866 char* ATTR_UNUSED(http_endpoint),
867 int ATTR_UNUSED(http_notls),
868 struct tcl_list* ATTR_UNUSED(tcp_conn_limit),
869 void* ATTR_UNUSED(sslctx), struct dt_env* ATTR_UNUSED(dtenv),
870 comm_point_callback_type* cb, void *cb_arg)
871 {
872 struct replay_runtime* runtime = (struct replay_runtime*)base;
873 struct listen_dnsport* l= calloc(1, sizeof(struct listen_dnsport));
874 if(!l)
875 return NULL;
876 l->base = base;
877 l->udp_buff = sldns_buffer_new(bufsize);
878 if(!l->udp_buff) {
879 free(l);
880 return NULL;
881 }
882 runtime->callback_query = cb;
883 runtime->cb_arg = cb_arg;
884 runtime->bufsize = bufsize;
885 return l;
886 }
887
888 void
listen_delete(struct listen_dnsport * listen)889 listen_delete(struct listen_dnsport* listen)
890 {
891 if(!listen)
892 return;
893 sldns_buffer_free(listen->udp_buff);
894 free(listen);
895 }
896
897 struct comm_base*
comm_base_create(int ATTR_UNUSED (sigs))898 comm_base_create(int ATTR_UNUSED(sigs))
899 {
900 /* we return the runtime structure instead. */
901 struct replay_runtime* runtime = (struct replay_runtime*)
902 calloc(1, sizeof(struct replay_runtime));
903 if(!runtime)
904 fatal_exit("out of memory in fake_event.c:comm_base_create");
905 runtime->scenario = saved_scenario;
906 runtime->vars = macro_store_create();
907 if(!runtime->vars) fatal_exit("out of memory");
908 return (struct comm_base*)runtime;
909 }
910
911 void
comm_base_delete(struct comm_base * b)912 comm_base_delete(struct comm_base* b)
913 {
914 struct replay_runtime* runtime = (struct replay_runtime*)b;
915 struct fake_pending* p, *np;
916 struct replay_answer* a, *na;
917 struct fake_timer* t, *nt;
918 if(!runtime)
919 return;
920 runtime->scenario= NULL;
921 p = runtime->pending_list;
922 while(p) {
923 np = p->next;
924 delete_fake_pending(p);
925 p = np;
926 }
927 a = runtime->answer_list;
928 while(a) {
929 na = a->next;
930 delete_replay_answer(a);
931 a = na;
932 }
933 t = runtime->timer_list;
934 while(t) {
935 nt = t->next;
936 free(t);
937 t = nt;
938 }
939 macro_store_delete(runtime->vars);
940 free(runtime);
941 }
942
943 void
comm_base_timept(struct comm_base * b,time_t ** tt,struct timeval ** tv)944 comm_base_timept(struct comm_base* b, time_t** tt, struct timeval** tv)
945 {
946 struct replay_runtime* runtime = (struct replay_runtime*)b;
947 *tt = &runtime->now_secs;
948 *tv = &runtime->now_tv;
949 }
950
951 void
comm_base_dispatch(struct comm_base * b)952 comm_base_dispatch(struct comm_base* b)
953 {
954 struct replay_runtime* runtime = (struct replay_runtime*)b;
955 run_scenario(runtime);
956 if(runtime->sig_cb)
957 (*runtime->sig_cb)(SIGTERM, runtime->sig_cb_arg);
958 else exit(0); /* OK exit when LIBEVENT_SIGNAL_PROBLEM exists */
959 }
960
961 void
comm_base_exit(struct comm_base * b)962 comm_base_exit(struct comm_base* b)
963 {
964 struct replay_runtime* runtime = (struct replay_runtime*)b;
965 if(!runtime->exit_cleanly) {
966 /* some sort of failure */
967 fatal_exit("testbound: comm_base_exit was called.");
968 }
969 }
970
971 struct comm_signal*
comm_signal_create(struct comm_base * base,void (* callback)(int,void *),void * cb_arg)972 comm_signal_create(struct comm_base* base,
973 void (*callback)(int, void*), void* cb_arg)
974 {
975 struct replay_runtime* runtime = (struct replay_runtime*)base;
976 runtime->sig_cb = callback;
977 runtime->sig_cb_arg = cb_arg;
978 return calloc(1, sizeof(struct comm_signal));
979 }
980
981 int
comm_signal_bind(struct comm_signal * ATTR_UNUSED (comsig),int ATTR_UNUSED (sig))982 comm_signal_bind(struct comm_signal* ATTR_UNUSED(comsig), int
983 ATTR_UNUSED(sig))
984 {
985 return 1;
986 }
987
988 void
comm_signal_delete(struct comm_signal * comsig)989 comm_signal_delete(struct comm_signal* comsig)
990 {
991 free(comsig);
992 }
993
994 void
comm_point_send_reply(struct comm_reply * repinfo)995 comm_point_send_reply(struct comm_reply* repinfo)
996 {
997 struct replay_answer* ans = (struct replay_answer*)calloc(1,
998 sizeof(struct replay_answer));
999 struct replay_runtime* runtime = (struct replay_runtime*)repinfo->c->ev;
1000 log_info("testbound: comm_point_send_reply fake");
1001 /* dump it into the todo list */
1002 log_assert(ans);
1003 memcpy(&ans->repinfo, repinfo, sizeof(struct comm_reply));
1004 ans->next = NULL;
1005 if(runtime->answer_last)
1006 runtime->answer_last->next = ans;
1007 else runtime->answer_list = ans;
1008 runtime->answer_last = ans;
1009
1010 /* try to parse packet */
1011 ans->pkt = memdup(sldns_buffer_begin(ans->repinfo.c->buffer),
1012 sldns_buffer_limit(ans->repinfo.c->buffer));
1013 ans->pkt_len = sldns_buffer_limit(ans->repinfo.c->buffer);
1014 if(!ans->pkt) fatal_exit("out of memory");
1015 log_pkt("reply pkt: ", ans->pkt, ans->pkt_len);
1016 }
1017
1018 void
comm_point_drop_reply(struct comm_reply * repinfo)1019 comm_point_drop_reply(struct comm_reply* repinfo)
1020 {
1021 log_info("comm_point_drop_reply fake");
1022 if(repinfo->c) {
1023 sldns_buffer_free(repinfo->c->buffer);
1024 free(repinfo->c);
1025 }
1026 }
1027
1028 struct outside_network*
outside_network_create(struct comm_base * base,size_t bufsize,size_t ATTR_UNUSED (num_ports),char ** ATTR_UNUSED (ifs),int ATTR_UNUSED (num_ifs),int ATTR_UNUSED (do_ip4),int ATTR_UNUSED (do_ip6),size_t ATTR_UNUSED (num_tcp),int ATTR_UNUSED (dscp),struct infra_cache * infra,struct ub_randstate * ATTR_UNUSED (rnd),int ATTR_UNUSED (use_caps_for_id),int * ATTR_UNUSED (availports),int ATTR_UNUSED (numavailports),size_t ATTR_UNUSED (unwanted_threshold),int ATTR_UNUSED (outgoing_tcp_mss),void (* unwanted_action)(void *),void * ATTR_UNUSED (unwanted_param),int ATTR_UNUSED (do_udp),void * ATTR_UNUSED (sslctx),int ATTR_UNUSED (delayclose),int ATTR_UNUSED (tls_use_sni),struct dt_env * ATTR_UNUSED (dtenv),int ATTR_UNUSED (udp_connect),int ATTR_UNUSED (max_reuse_tcp_queries),int ATTR_UNUSED (tcp_reuse_timeout),int ATTR_UNUSED (tcp_auth_query_timeout))1029 outside_network_create(struct comm_base* base, size_t bufsize,
1030 size_t ATTR_UNUSED(num_ports), char** ATTR_UNUSED(ifs),
1031 int ATTR_UNUSED(num_ifs), int ATTR_UNUSED(do_ip4),
1032 int ATTR_UNUSED(do_ip6), size_t ATTR_UNUSED(num_tcp),
1033 int ATTR_UNUSED(dscp),
1034 struct infra_cache* infra,
1035 struct ub_randstate* ATTR_UNUSED(rnd),
1036 int ATTR_UNUSED(use_caps_for_id), int* ATTR_UNUSED(availports),
1037 int ATTR_UNUSED(numavailports), size_t ATTR_UNUSED(unwanted_threshold),
1038 int ATTR_UNUSED(outgoing_tcp_mss),
1039 void (*unwanted_action)(void*), void* ATTR_UNUSED(unwanted_param),
1040 int ATTR_UNUSED(do_udp), void* ATTR_UNUSED(sslctx),
1041 int ATTR_UNUSED(delayclose), int ATTR_UNUSED(tls_use_sni),
1042 struct dt_env* ATTR_UNUSED(dtenv), int ATTR_UNUSED(udp_connect),
1043 int ATTR_UNUSED(max_reuse_tcp_queries), int ATTR_UNUSED(tcp_reuse_timeout),
1044 int ATTR_UNUSED(tcp_auth_query_timeout))
1045 {
1046 struct replay_runtime* runtime = (struct replay_runtime*)base;
1047 struct outside_network* outnet = calloc(1,
1048 sizeof(struct outside_network));
1049 (void)unwanted_action;
1050 if(!outnet)
1051 return NULL;
1052 runtime->infra = infra;
1053 outnet->base = base;
1054 outnet->udp_buff = sldns_buffer_new(bufsize);
1055 if(!outnet->udp_buff) {
1056 free(outnet);
1057 return NULL;
1058 }
1059 return outnet;
1060 }
1061
1062 void
outside_network_delete(struct outside_network * outnet)1063 outside_network_delete(struct outside_network* outnet)
1064 {
1065 if(!outnet)
1066 return;
1067 sldns_buffer_free(outnet->udp_buff);
1068 free(outnet);
1069 }
1070
1071 void
outside_network_quit_prepare(struct outside_network * ATTR_UNUSED (outnet))1072 outside_network_quit_prepare(struct outside_network* ATTR_UNUSED(outnet))
1073 {
1074 }
1075
1076 struct pending*
pending_udp_query(struct serviced_query * sq,sldns_buffer * packet,int timeout,comm_point_callback_type * callback,void * callback_arg)1077 pending_udp_query(struct serviced_query* sq, sldns_buffer* packet,
1078 int timeout, comm_point_callback_type* callback, void* callback_arg)
1079 {
1080 struct replay_runtime* runtime = (struct replay_runtime*)
1081 sq->outnet->base;
1082 struct fake_pending* pend = (struct fake_pending*)calloc(1,
1083 sizeof(struct fake_pending));
1084 log_assert(pend);
1085 pend->buffer = sldns_buffer_new(sldns_buffer_capacity(packet));
1086 log_assert(pend->buffer);
1087 sldns_buffer_write(pend->buffer, sldns_buffer_begin(packet),
1088 sldns_buffer_limit(packet));
1089 sldns_buffer_flip(pend->buffer);
1090 memcpy(&pend->addr, &sq->addr, sq->addrlen);
1091 pend->addrlen = sq->addrlen;
1092 pend->callback = callback;
1093 pend->cb_arg = callback_arg;
1094 pend->timeout = timeout/1000;
1095 pend->transport = transport_udp;
1096 pend->pkt = NULL;
1097 pend->zone = NULL;
1098 pend->serviced = 0;
1099 pend->runtime = runtime;
1100 pend->pkt_len = sldns_buffer_limit(packet);
1101 pend->pkt = memdup(sldns_buffer_begin(packet), pend->pkt_len);
1102 if(!pend->pkt) fatal_exit("out of memory");
1103 log_pkt("pending udp pkt: ", pend->pkt, pend->pkt_len);
1104
1105 /* see if it matches the current moment */
1106 if(runtime->now && runtime->now->evt_type == repevt_back_query &&
1107 (runtime->now->addrlen == 0 || sockaddr_cmp(
1108 &runtime->now->addr, runtime->now->addrlen,
1109 &pend->addr, pend->addrlen) == 0) &&
1110 find_match(runtime->now->match, pend->pkt, pend->pkt_len,
1111 pend->transport)) {
1112 log_info("testbound: matched pending to event. "
1113 "advance time between events.");
1114 log_info("testbound: do STEP %d %s", runtime->now->time_step,
1115 repevt_string(runtime->now->evt_type));
1116 advance_moment(runtime);
1117 /* still create the pending, because we need it to callback */
1118 }
1119 log_info("testbound: created fake pending");
1120 /* add to list */
1121 pend->next = runtime->pending_list;
1122 runtime->pending_list = pend;
1123 return (struct pending*)pend;
1124 }
1125
1126 struct waiting_tcp*
pending_tcp_query(struct serviced_query * sq,sldns_buffer * packet,int timeout,comm_point_callback_type * callback,void * callback_arg)1127 pending_tcp_query(struct serviced_query* sq, sldns_buffer* packet,
1128 int timeout, comm_point_callback_type* callback, void* callback_arg)
1129 {
1130 struct replay_runtime* runtime = (struct replay_runtime*)
1131 sq->outnet->base;
1132 struct fake_pending* pend = (struct fake_pending*)calloc(1,
1133 sizeof(struct fake_pending));
1134 log_assert(pend);
1135 pend->buffer = sldns_buffer_new(sldns_buffer_capacity(packet));
1136 log_assert(pend->buffer);
1137 sldns_buffer_write(pend->buffer, sldns_buffer_begin(packet),
1138 sldns_buffer_limit(packet));
1139 sldns_buffer_flip(pend->buffer);
1140 memcpy(&pend->addr, &sq->addr, sq->addrlen);
1141 pend->addrlen = sq->addrlen;
1142 pend->callback = callback;
1143 pend->cb_arg = callback_arg;
1144 pend->timeout = timeout/1000;
1145 pend->transport = transport_tcp;
1146 pend->pkt = NULL;
1147 pend->zone = NULL;
1148 pend->runtime = runtime;
1149 pend->serviced = 0;
1150 pend->pkt_len = sldns_buffer_limit(packet);
1151 pend->pkt = memdup(sldns_buffer_begin(packet), pend->pkt_len);
1152 if(!pend->pkt) fatal_exit("out of memory");
1153 log_pkt("pending tcp pkt: ", pend->pkt, pend->pkt_len);
1154
1155 /* see if it matches the current moment */
1156 if(runtime->now && runtime->now->evt_type == repevt_back_query &&
1157 (runtime->now->addrlen == 0 || sockaddr_cmp(
1158 &runtime->now->addr, runtime->now->addrlen,
1159 &pend->addr, pend->addrlen) == 0) &&
1160 find_match(runtime->now->match, pend->pkt, pend->pkt_len,
1161 pend->transport)) {
1162 log_info("testbound: matched pending to event. "
1163 "advance time between events.");
1164 log_info("testbound: do STEP %d %s", runtime->now->time_step,
1165 repevt_string(runtime->now->evt_type));
1166 advance_moment(runtime);
1167 /* still create the pending, because we need it to callback */
1168 }
1169 log_info("testbound: created fake pending");
1170 /* add to list */
1171 pend->next = runtime->pending_list;
1172 runtime->pending_list = pend;
1173 return (struct waiting_tcp*)pend;
1174 }
1175
outnet_serviced_query(struct outside_network * outnet,struct query_info * qinfo,uint16_t flags,int dnssec,int ATTR_UNUSED (want_dnssec),int ATTR_UNUSED (nocaps),int ATTR_UNUSED (check_ratelimit),int ATTR_UNUSED (tcp_upstream),int ATTR_UNUSED (ssl_upstream),char * ATTR_UNUSED (tls_auth_name),struct sockaddr_storage * addr,socklen_t addrlen,uint8_t * zone,size_t zonelen,struct module_qstate * qstate,comm_point_callback_type * callback,void * callback_arg,sldns_buffer * ATTR_UNUSED (buff),struct module_env * env,int * ATTR_UNUSED (was_ratelimited))1176 struct serviced_query* outnet_serviced_query(struct outside_network* outnet,
1177 struct query_info* qinfo, uint16_t flags, int dnssec,
1178 int ATTR_UNUSED(want_dnssec), int ATTR_UNUSED(nocaps),
1179 int ATTR_UNUSED(check_ratelimit),
1180 int ATTR_UNUSED(tcp_upstream), int ATTR_UNUSED(ssl_upstream),
1181 char* ATTR_UNUSED(tls_auth_name), struct sockaddr_storage* addr,
1182 socklen_t addrlen, uint8_t* zone, size_t zonelen,
1183 struct module_qstate* qstate, comm_point_callback_type* callback,
1184 void* callback_arg, sldns_buffer* ATTR_UNUSED(buff),
1185 struct module_env* env, int* ATTR_UNUSED(was_ratelimited))
1186 {
1187 struct replay_runtime* runtime = (struct replay_runtime*)outnet->base;
1188 struct fake_pending* pend = (struct fake_pending*)calloc(1,
1189 sizeof(struct fake_pending));
1190 char z[256];
1191 log_assert(pend);
1192 log_nametypeclass(VERB_OPS, "pending serviced query",
1193 qinfo->qname, qinfo->qtype, qinfo->qclass);
1194 dname_str(zone, z);
1195 verbose(VERB_OPS, "pending serviced query zone %s flags%s%s%s%s",
1196 z, (flags&BIT_RD)?" RD":"", (flags&BIT_CD)?" CD":"",
1197 (flags&~(BIT_RD|BIT_CD))?" MORE":"", (dnssec)?" DO":"");
1198
1199 /* create packet with EDNS */
1200 pend->buffer = sldns_buffer_new(512);
1201 log_assert(pend->buffer);
1202 sldns_buffer_write_u16(pend->buffer, 0); /* id */
1203 sldns_buffer_write_u16(pend->buffer, flags);
1204 sldns_buffer_write_u16(pend->buffer, 1); /* qdcount */
1205 sldns_buffer_write_u16(pend->buffer, 0); /* ancount */
1206 sldns_buffer_write_u16(pend->buffer, 0); /* nscount */
1207 sldns_buffer_write_u16(pend->buffer, 0); /* arcount */
1208 sldns_buffer_write(pend->buffer, qinfo->qname, qinfo->qname_len);
1209 sldns_buffer_write_u16(pend->buffer, qinfo->qtype);
1210 sldns_buffer_write_u16(pend->buffer, qinfo->qclass);
1211 sldns_buffer_flip(pend->buffer);
1212 if(1) {
1213 struct edns_data edns;
1214 struct edns_string_addr* client_string_addr;
1215 struct edns_option* backed_up_opt_list =
1216 qstate->edns_opts_back_out;
1217 struct edns_option* per_upstream_opt_list = NULL;
1218 /* If we have an already populated EDNS option list make a copy
1219 * since we may now add upstream specific EDNS options. */
1220 if(qstate->edns_opts_back_out) {
1221 per_upstream_opt_list = edns_opt_copy_region(
1222 qstate->edns_opts_back_out, qstate->region);
1223 if(!per_upstream_opt_list) {
1224 free(pend);
1225 fatal_exit("out of memory");
1226 }
1227 qstate->edns_opts_back_out = per_upstream_opt_list;
1228 }
1229 if(!inplace_cb_query_call(env, qinfo, flags, addr, addrlen,
1230 zone, zonelen, qstate, qstate->region)) {
1231 free(pend);
1232 return NULL;
1233 }
1234 /* Restore the option list; we can explicitly use the copied
1235 * one from now on. */
1236 per_upstream_opt_list = qstate->edns_opts_back_out;
1237 qstate->edns_opts_back_out = backed_up_opt_list;
1238 if((client_string_addr = edns_string_addr_lookup(
1239 &env->edns_strings->client_strings,
1240 addr, addrlen))) {
1241 edns_opt_list_append(&per_upstream_opt_list,
1242 env->edns_strings->client_string_opcode,
1243 client_string_addr->string_len,
1244 client_string_addr->string, qstate->region);
1245 }
1246 /* add edns */
1247 edns.edns_present = 1;
1248 edns.ext_rcode = 0;
1249 edns.edns_version = EDNS_ADVERTISED_VERSION;
1250 edns.udp_size = EDNS_ADVERTISED_SIZE;
1251 edns.bits = 0;
1252 if((dnssec & EDNS_DO))
1253 edns.bits = EDNS_DO;
1254 edns.padding_block_size = 0;
1255 edns.cookie_present = 0;
1256 edns.cookie_valid = 0;
1257 edns.opt_list_in = NULL;
1258 edns.opt_list_out = per_upstream_opt_list;
1259 edns.opt_list_inplace_cb_out = NULL;
1260 attach_edns_record(pend->buffer, &edns);
1261 }
1262 memcpy(&pend->addr, addr, addrlen);
1263 pend->addrlen = addrlen;
1264 pend->zone = memdup(zone, zonelen);
1265 pend->zonelen = zonelen;
1266 pend->qtype = (int)qinfo->qtype;
1267 log_assert(pend->zone);
1268 pend->callback = callback;
1269 pend->cb_arg = callback_arg;
1270 pend->timeout = UDP_AUTH_QUERY_TIMEOUT/1000;
1271 pend->transport = transport_udp; /* pretend UDP */
1272 pend->pkt = NULL;
1273 pend->runtime = runtime;
1274 pend->serviced = 1;
1275 pend->pkt_len = sldns_buffer_limit(pend->buffer);
1276 pend->pkt = memdup(sldns_buffer_begin(pend->buffer), pend->pkt_len);
1277 if(!pend->pkt) fatal_exit("out of memory");
1278 /*log_pkt("pending serviced query: ", pend->pkt, pend->pkt_len);*/
1279
1280 /* see if it matches the current moment */
1281 if(runtime->now && runtime->now->evt_type == repevt_back_query &&
1282 (runtime->now->addrlen == 0 || sockaddr_cmp(
1283 &runtime->now->addr, runtime->now->addrlen,
1284 &pend->addr, pend->addrlen) == 0) &&
1285 find_match(runtime->now->match, pend->pkt, pend->pkt_len,
1286 pend->transport)) {
1287 log_info("testbound: matched pending to event. "
1288 "advance time between events.");
1289 log_info("testbound: do STEP %d %s", runtime->now->time_step,
1290 repevt_string(runtime->now->evt_type));
1291 advance_moment(runtime);
1292 /* still create the pending, because we need it to callback */
1293 }
1294 log_info("testbound: created fake pending");
1295 /* add to list */
1296 pend->next = runtime->pending_list;
1297 runtime->pending_list = pend;
1298 return (struct serviced_query*)pend;
1299 }
1300
outnet_serviced_query_stop(struct serviced_query * sq,void * cb_arg)1301 void outnet_serviced_query_stop(struct serviced_query* sq, void* cb_arg)
1302 {
1303 struct fake_pending* pend = (struct fake_pending*)sq;
1304 struct replay_runtime* runtime = pend->runtime;
1305 /* delete from the list */
1306 struct fake_pending* p = runtime->pending_list, *prev=NULL;
1307 while(p) {
1308 if(p == pend) {
1309 log_assert(p->cb_arg == cb_arg);
1310 (void)cb_arg;
1311 log_info("serviced pending delete");
1312 if(prev)
1313 prev->next = p->next;
1314 else runtime->pending_list = p->next;
1315 sldns_buffer_free(p->buffer);
1316 free(p->pkt);
1317 free(p->zone);
1318 free(p);
1319 return;
1320 }
1321 prev = p;
1322 p = p->next;
1323 }
1324 log_info("double delete of pending serviced query");
1325 }
1326
resolve_interface_names(char ** ATTR_UNUSED (ifs),int ATTR_UNUSED (num_ifs),struct config_strlist * ATTR_UNUSED (list),char *** ATTR_UNUSED (resif),int * ATTR_UNUSED (num_resif))1327 int resolve_interface_names(char** ATTR_UNUSED(ifs), int ATTR_UNUSED(num_ifs),
1328 struct config_strlist* ATTR_UNUSED(list), char*** ATTR_UNUSED(resif),
1329 int* ATTR_UNUSED(num_resif))
1330 {
1331 return 1;
1332 }
1333
listening_ports_open(struct config_file * ATTR_UNUSED (cfg),char ** ATTR_UNUSED (ifs),int ATTR_UNUSED (num_ifs),int * ATTR_UNUSED (reuseport))1334 struct listen_port* listening_ports_open(struct config_file* ATTR_UNUSED(cfg),
1335 char** ATTR_UNUSED(ifs), int ATTR_UNUSED(num_ifs),
1336 int* ATTR_UNUSED(reuseport))
1337 {
1338 return calloc(1, sizeof(struct listen_port));
1339 }
1340
listening_ports_free(struct listen_port * list)1341 void listening_ports_free(struct listen_port* list)
1342 {
1343 free(list);
1344 }
1345
comm_point_create_local(struct comm_base * ATTR_UNUSED (base),int ATTR_UNUSED (fd),size_t ATTR_UNUSED (bufsize),comm_point_callback_type * ATTR_UNUSED (callback),void * ATTR_UNUSED (callback_arg))1346 struct comm_point* comm_point_create_local(struct comm_base* ATTR_UNUSED(base),
1347 int ATTR_UNUSED(fd), size_t ATTR_UNUSED(bufsize),
1348 comm_point_callback_type* ATTR_UNUSED(callback),
1349 void* ATTR_UNUSED(callback_arg))
1350 {
1351 struct fake_commpoint* fc = (struct fake_commpoint*)calloc(1,
1352 sizeof(*fc));
1353 if(!fc) return NULL;
1354 fc->typecode = FAKE_COMMPOINT_TYPECODE;
1355 return (struct comm_point*)fc;
1356 }
1357
comm_point_create_raw(struct comm_base * ATTR_UNUSED (base),int ATTR_UNUSED (fd),int ATTR_UNUSED (writing),comm_point_callback_type * ATTR_UNUSED (callback),void * ATTR_UNUSED (callback_arg))1358 struct comm_point* comm_point_create_raw(struct comm_base* ATTR_UNUSED(base),
1359 int ATTR_UNUSED(fd), int ATTR_UNUSED(writing),
1360 comm_point_callback_type* ATTR_UNUSED(callback),
1361 void* ATTR_UNUSED(callback_arg))
1362 {
1363 /* no pipe comm possible */
1364 struct fake_commpoint* fc = (struct fake_commpoint*)calloc(1,
1365 sizeof(*fc));
1366 if(!fc) return NULL;
1367 fc->typecode = FAKE_COMMPOINT_TYPECODE;
1368 return (struct comm_point*)fc;
1369 }
1370
comm_point_start_listening(struct comm_point * ATTR_UNUSED (c),int ATTR_UNUSED (newfd),int ATTR_UNUSED (sec))1371 void comm_point_start_listening(struct comm_point* ATTR_UNUSED(c),
1372 int ATTR_UNUSED(newfd), int ATTR_UNUSED(sec))
1373 {
1374 /* no bg write pipe comm possible */
1375 }
1376
comm_point_stop_listening(struct comm_point * ATTR_UNUSED (c))1377 void comm_point_stop_listening(struct comm_point* ATTR_UNUSED(c))
1378 {
1379 /* no bg write pipe comm possible */
1380 }
1381
1382 /* only cmd com _local gets deleted */
comm_point_delete(struct comm_point * c)1383 void comm_point_delete(struct comm_point* c)
1384 {
1385 struct fake_commpoint* fc = (struct fake_commpoint*)c;
1386 if(c == NULL) return;
1387 log_assert(fc->typecode == FAKE_COMMPOINT_TYPECODE);
1388 if(fc->type_tcp_out) {
1389 /* remove tcp pending, so no more callbacks to it */
1390 pending_list_delete(fc->runtime, fc->pending);
1391 }
1392 free(c);
1393 }
1394
listen_get_mem(struct listen_dnsport * ATTR_UNUSED (listen))1395 size_t listen_get_mem(struct listen_dnsport* ATTR_UNUSED(listen))
1396 {
1397 return 0;
1398 }
1399
outnet_get_mem(struct outside_network * ATTR_UNUSED (outnet))1400 size_t outnet_get_mem(struct outside_network* ATTR_UNUSED(outnet))
1401 {
1402 return 0;
1403 }
1404
comm_point_get_mem(struct comm_point * ATTR_UNUSED (c))1405 size_t comm_point_get_mem(struct comm_point* ATTR_UNUSED(c))
1406 {
1407 return 0;
1408 }
1409
serviced_get_mem(struct serviced_query * ATTR_UNUSED (c))1410 size_t serviced_get_mem(struct serviced_query* ATTR_UNUSED(c))
1411 {
1412 return 0;
1413 }
1414
1415 /* fake for fptr wlist */
outnet_udp_cb(struct comm_point * ATTR_UNUSED (c),void * ATTR_UNUSED (arg),int ATTR_UNUSED (error),struct comm_reply * ATTR_UNUSED (reply_info))1416 int outnet_udp_cb(struct comm_point* ATTR_UNUSED(c),
1417 void* ATTR_UNUSED(arg), int ATTR_UNUSED(error),
1418 struct comm_reply *ATTR_UNUSED(reply_info))
1419 {
1420 log_assert(0);
1421 return 0;
1422 }
1423
outnet_tcp_cb(struct comm_point * ATTR_UNUSED (c),void * ATTR_UNUSED (arg),int ATTR_UNUSED (error),struct comm_reply * ATTR_UNUSED (reply_info))1424 int outnet_tcp_cb(struct comm_point* ATTR_UNUSED(c),
1425 void* ATTR_UNUSED(arg), int ATTR_UNUSED(error),
1426 struct comm_reply *ATTR_UNUSED(reply_info))
1427 {
1428 log_assert(0);
1429 return 0;
1430 }
1431
pending_udp_timer_cb(void * ATTR_UNUSED (arg))1432 void pending_udp_timer_cb(void *ATTR_UNUSED(arg))
1433 {
1434 log_assert(0);
1435 }
1436
serviced_timer_cb(void * ATTR_UNUSED (arg))1437 void serviced_timer_cb(void *ATTR_UNUSED(arg))
1438 {
1439 log_assert(0);
1440 }
1441
pending_udp_timer_delay_cb(void * ATTR_UNUSED (arg))1442 void pending_udp_timer_delay_cb(void *ATTR_UNUSED(arg))
1443 {
1444 log_assert(0);
1445 }
1446
outnet_tcptimer(void * ATTR_UNUSED (arg))1447 void outnet_tcptimer(void* ATTR_UNUSED(arg))
1448 {
1449 log_assert(0);
1450 }
1451
comm_point_udp_callback(int ATTR_UNUSED (fd),short ATTR_UNUSED (event),void * ATTR_UNUSED (arg))1452 void comm_point_udp_callback(int ATTR_UNUSED(fd), short ATTR_UNUSED(event),
1453 void* ATTR_UNUSED(arg))
1454 {
1455 log_assert(0);
1456 }
1457
comm_point_udp_ancil_callback(int ATTR_UNUSED (fd),short ATTR_UNUSED (event),void * ATTR_UNUSED (arg))1458 void comm_point_udp_ancil_callback(int ATTR_UNUSED(fd),
1459 short ATTR_UNUSED(event), void* ATTR_UNUSED(arg))
1460 {
1461 log_assert(0);
1462 }
1463
comm_point_tcp_accept_callback(int ATTR_UNUSED (fd),short ATTR_UNUSED (event),void * ATTR_UNUSED (arg))1464 void comm_point_tcp_accept_callback(int ATTR_UNUSED(fd),
1465 short ATTR_UNUSED(event), void* ATTR_UNUSED(arg))
1466 {
1467 log_assert(0);
1468 }
1469
comm_point_tcp_handle_callback(int ATTR_UNUSED (fd),short ATTR_UNUSED (event),void * ATTR_UNUSED (arg))1470 void comm_point_tcp_handle_callback(int ATTR_UNUSED(fd),
1471 short ATTR_UNUSED(event), void* ATTR_UNUSED(arg))
1472 {
1473 log_assert(0);
1474 }
1475
comm_timer_callback(int ATTR_UNUSED (fd),short ATTR_UNUSED (event),void * ATTR_UNUSED (arg))1476 void comm_timer_callback(int ATTR_UNUSED(fd),
1477 short ATTR_UNUSED(event), void* ATTR_UNUSED(arg))
1478 {
1479 log_assert(0);
1480 }
1481
comm_signal_callback(int ATTR_UNUSED (fd),short ATTR_UNUSED (event),void * ATTR_UNUSED (arg))1482 void comm_signal_callback(int ATTR_UNUSED(fd),
1483 short ATTR_UNUSED(event), void* ATTR_UNUSED(arg))
1484 {
1485 log_assert(0);
1486 }
1487
comm_point_http_handle_callback(int ATTR_UNUSED (fd),short ATTR_UNUSED (event),void * ATTR_UNUSED (arg))1488 void comm_point_http_handle_callback(int ATTR_UNUSED(fd),
1489 short ATTR_UNUSED(event), void* ATTR_UNUSED(arg))
1490 {
1491 log_assert(0);
1492 }
1493
comm_point_local_handle_callback(int ATTR_UNUSED (fd),short ATTR_UNUSED (event),void * ATTR_UNUSED (arg))1494 void comm_point_local_handle_callback(int ATTR_UNUSED(fd),
1495 short ATTR_UNUSED(event), void* ATTR_UNUSED(arg))
1496 {
1497 log_assert(0);
1498 }
1499
comm_point_raw_handle_callback(int ATTR_UNUSED (fd),short ATTR_UNUSED (event),void * ATTR_UNUSED (arg))1500 void comm_point_raw_handle_callback(int ATTR_UNUSED(fd),
1501 short ATTR_UNUSED(event), void* ATTR_UNUSED(arg))
1502 {
1503 log_assert(0);
1504 }
1505
comm_base_handle_slow_accept(int ATTR_UNUSED (fd),short ATTR_UNUSED (event),void * ATTR_UNUSED (arg))1506 void comm_base_handle_slow_accept(int ATTR_UNUSED(fd),
1507 short ATTR_UNUSED(event), void* ATTR_UNUSED(arg))
1508 {
1509 log_assert(0);
1510 }
1511
serviced_udp_callback(struct comm_point * ATTR_UNUSED (c),void * ATTR_UNUSED (arg),int ATTR_UNUSED (error),struct comm_reply * ATTR_UNUSED (reply_info))1512 int serviced_udp_callback(struct comm_point* ATTR_UNUSED(c),
1513 void* ATTR_UNUSED(arg), int ATTR_UNUSED(error),
1514 struct comm_reply* ATTR_UNUSED(reply_info))
1515 {
1516 log_assert(0);
1517 return 0;
1518 }
1519
serviced_tcp_callback(struct comm_point * ATTR_UNUSED (c),void * ATTR_UNUSED (arg),int ATTR_UNUSED (error),struct comm_reply * ATTR_UNUSED (reply_info))1520 int serviced_tcp_callback(struct comm_point* ATTR_UNUSED(c),
1521 void* ATTR_UNUSED(arg), int ATTR_UNUSED(error),
1522 struct comm_reply* ATTR_UNUSED(reply_info))
1523 {
1524 log_assert(0);
1525 return 0;
1526 }
1527
pending_cmp(const void * ATTR_UNUSED (a),const void * ATTR_UNUSED (b))1528 int pending_cmp(const void* ATTR_UNUSED(a), const void* ATTR_UNUSED(b))
1529 {
1530 log_assert(0);
1531 return 0;
1532 }
1533
serviced_cmp(const void * ATTR_UNUSED (a),const void * ATTR_UNUSED (b))1534 int serviced_cmp(const void* ATTR_UNUSED(a), const void* ATTR_UNUSED(b))
1535 {
1536 log_assert(0);
1537 return 0;
1538 }
1539
reuse_cmp(const void * ATTR_UNUSED (a),const void * ATTR_UNUSED (b))1540 int reuse_cmp(const void* ATTR_UNUSED(a), const void* ATTR_UNUSED(b))
1541 {
1542 log_assert(0);
1543 return 0;
1544 }
1545
reuse_id_cmp(const void * ATTR_UNUSED (a),const void * ATTR_UNUSED (b))1546 int reuse_id_cmp(const void* ATTR_UNUSED(a), const void* ATTR_UNUSED(b))
1547 {
1548 log_assert(0);
1549 return 0;
1550 }
1551
1552 /* timers in testbound for autotrust. statistics tested in tdir. */
comm_timer_create(struct comm_base * base,void (* cb)(void *),void * cb_arg)1553 struct comm_timer* comm_timer_create(struct comm_base* base,
1554 void (*cb)(void*), void* cb_arg)
1555 {
1556 struct replay_runtime* runtime = (struct replay_runtime*)base;
1557 struct fake_timer* t = (struct fake_timer*)calloc(1, sizeof(*t));
1558 if(!t)
1559 fatal_exit("out of memory in fake_event.c:comm_timer_create");
1560 t->cb = cb;
1561 t->cb_arg = cb_arg;
1562 fptr_ok(fptr_whitelist_comm_timer(t->cb)); /* check in advance */
1563 t->runtime = runtime;
1564 t->next = runtime->timer_list;
1565 runtime->timer_list = t;
1566 return (struct comm_timer*)t;
1567 }
1568
comm_timer_disable(struct comm_timer * timer)1569 void comm_timer_disable(struct comm_timer* timer)
1570 {
1571 struct fake_timer* t = (struct fake_timer*)timer;
1572 log_info("fake timer disabled");
1573 t->enabled = 0;
1574 }
1575
comm_timer_set(struct comm_timer * timer,struct timeval * tv)1576 void comm_timer_set(struct comm_timer* timer, struct timeval* tv)
1577 {
1578 struct fake_timer* t = (struct fake_timer*)timer;
1579 t->enabled = 1;
1580 t->tv = *tv;
1581 log_info("fake timer set %d.%6.6d",
1582 (int)t->tv.tv_sec, (int)t->tv.tv_usec);
1583 timeval_add(&t->tv, &t->runtime->now_tv);
1584 }
1585
comm_timer_delete(struct comm_timer * timer)1586 void comm_timer_delete(struct comm_timer* timer)
1587 {
1588 struct fake_timer* t = (struct fake_timer*)timer;
1589 struct fake_timer** pp, *p;
1590 if(!t) return;
1591
1592 /* remove from linked list */
1593 pp = &t->runtime->timer_list;
1594 p = t->runtime->timer_list;
1595 while(p) {
1596 if(p == t) {
1597 /* snip from list */
1598 *pp = p->next;
1599 break;
1600 }
1601 pp = &p->next;
1602 p = p->next;
1603 }
1604
1605 free(timer);
1606 }
1607
comm_base_set_slow_accept_handlers(struct comm_base * ATTR_UNUSED (b),void (* stop_acc)(void *),void (* start_acc)(void *),void * ATTR_UNUSED (arg))1608 void comm_base_set_slow_accept_handlers(struct comm_base* ATTR_UNUSED(b),
1609 void (*stop_acc)(void*), void (*start_acc)(void*),
1610 void* ATTR_UNUSED(arg))
1611 {
1612 /* ignore this */
1613 (void)stop_acc;
1614 (void)start_acc;
1615 }
1616
comm_base_internal(struct comm_base * ATTR_UNUSED (b))1617 struct ub_event_base* comm_base_internal(struct comm_base* ATTR_UNUSED(b))
1618 {
1619 /* no pipe comm possible in testbound */
1620 return NULL;
1621 }
1622
daemon_remote_exec(struct worker * ATTR_UNUSED (worker))1623 void daemon_remote_exec(struct worker* ATTR_UNUSED(worker))
1624 {
1625 }
1626
listen_start_accept(struct listen_dnsport * ATTR_UNUSED (listen))1627 void listen_start_accept(struct listen_dnsport* ATTR_UNUSED(listen))
1628 {
1629 }
1630
listen_stop_accept(struct listen_dnsport * ATTR_UNUSED (listen))1631 void listen_stop_accept(struct listen_dnsport* ATTR_UNUSED(listen))
1632 {
1633 }
1634
daemon_remote_start_accept(struct daemon_remote * ATTR_UNUSED (rc))1635 void daemon_remote_start_accept(struct daemon_remote* ATTR_UNUSED(rc))
1636 {
1637 }
1638
daemon_remote_stop_accept(struct daemon_remote * ATTR_UNUSED (rc))1639 void daemon_remote_stop_accept(struct daemon_remote* ATTR_UNUSED(rc))
1640 {
1641 }
1642
create_udp_sock(int ATTR_UNUSED (family),int ATTR_UNUSED (socktype),struct sockaddr * ATTR_UNUSED (addr),socklen_t ATTR_UNUSED (addrlen),int ATTR_UNUSED (v6only),int * ATTR_UNUSED (inuse),int * ATTR_UNUSED (noproto),int ATTR_UNUSED (rcv),int ATTR_UNUSED (snd),int ATTR_UNUSED (listen),int * ATTR_UNUSED (reuseport),int ATTR_UNUSED (transparent),int ATTR_UNUSED (freebind),int ATTR_UNUSED (use_systemd),int ATTR_UNUSED (dscp))1643 int create_udp_sock(int ATTR_UNUSED(family), int ATTR_UNUSED(socktype),
1644 struct sockaddr* ATTR_UNUSED(addr), socklen_t ATTR_UNUSED(addrlen),
1645 int ATTR_UNUSED(v6only), int* ATTR_UNUSED(inuse),
1646 int* ATTR_UNUSED(noproto), int ATTR_UNUSED(rcv), int ATTR_UNUSED(snd),
1647 int ATTR_UNUSED(listen), int* ATTR_UNUSED(reuseport),
1648 int ATTR_UNUSED(transparent), int ATTR_UNUSED(freebind),
1649 int ATTR_UNUSED(use_systemd), int ATTR_UNUSED(dscp))
1650 {
1651 /* if you actually print to this, it'll be stdout during test */
1652 return 1;
1653 }
1654
comm_point_create_udp(struct comm_base * ATTR_UNUSED (base),int ATTR_UNUSED (fd),sldns_buffer * ATTR_UNUSED (buffer),int ATTR_UNUSED (pp2_enabled),comm_point_callback_type * ATTR_UNUSED (callback),void * ATTR_UNUSED (callback_arg),struct unbound_socket * ATTR_UNUSED (socket))1655 struct comm_point* comm_point_create_udp(struct comm_base *ATTR_UNUSED(base),
1656 int ATTR_UNUSED(fd), sldns_buffer* ATTR_UNUSED(buffer),
1657 int ATTR_UNUSED(pp2_enabled),
1658 comm_point_callback_type* ATTR_UNUSED(callback),
1659 void* ATTR_UNUSED(callback_arg),
1660 struct unbound_socket* ATTR_UNUSED(socket))
1661 {
1662 log_assert(0);
1663 return NULL;
1664 }
1665
comm_point_create_tcp_out(struct comm_base * ATTR_UNUSED (base),size_t ATTR_UNUSED (bufsize),comm_point_callback_type * ATTR_UNUSED (callback),void * ATTR_UNUSED (callback_arg))1666 struct comm_point* comm_point_create_tcp_out(struct comm_base*
1667 ATTR_UNUSED(base), size_t ATTR_UNUSED(bufsize),
1668 comm_point_callback_type* ATTR_UNUSED(callback),
1669 void* ATTR_UNUSED(callback_arg))
1670 {
1671 log_assert(0);
1672 return NULL;
1673 }
1674
outnet_comm_point_for_udp(struct outside_network * outnet,comm_point_callback_type * cb,void * cb_arg,struct sockaddr_storage * ATTR_UNUSED (to_addr),socklen_t ATTR_UNUSED (to_addrlen))1675 struct comm_point* outnet_comm_point_for_udp(struct outside_network* outnet,
1676 comm_point_callback_type* cb, void* cb_arg,
1677 struct sockaddr_storage* ATTR_UNUSED(to_addr),
1678 socklen_t ATTR_UNUSED(to_addrlen))
1679 {
1680 struct replay_runtime* runtime = (struct replay_runtime*)
1681 outnet->base;
1682 struct fake_commpoint* fc = (struct fake_commpoint*)calloc(1,
1683 sizeof(*fc));
1684 if(!fc) return NULL;
1685 fc->typecode = FAKE_COMMPOINT_TYPECODE;
1686 fc->type_udp_out = 1;
1687 fc->cb = cb;
1688 fc->cb_arg = cb_arg;
1689 fc->runtime = runtime;
1690 /* used by authzone transfers */
1691 return (struct comm_point*)fc;
1692 }
1693
outnet_comm_point_for_tcp(struct outside_network * outnet,comm_point_callback_type * cb,void * cb_arg,struct sockaddr_storage * to_addr,socklen_t to_addrlen,struct sldns_buffer * query,int timeout,int ATTR_UNUSED (ssl),char * ATTR_UNUSED (host))1694 struct comm_point* outnet_comm_point_for_tcp(struct outside_network* outnet,
1695 comm_point_callback_type* cb, void* cb_arg,
1696 struct sockaddr_storage* to_addr, socklen_t to_addrlen,
1697 struct sldns_buffer* query, int timeout, int ATTR_UNUSED(ssl),
1698 char* ATTR_UNUSED(host))
1699 {
1700 struct replay_runtime* runtime = (struct replay_runtime*)
1701 outnet->base;
1702 struct fake_commpoint* fc = (struct fake_commpoint*)calloc(1,
1703 sizeof(*fc));
1704 struct fake_pending* pend = (struct fake_pending*)calloc(1,
1705 sizeof(struct fake_pending));
1706 if(!fc || !pend) {
1707 free(fc);
1708 free(pend);
1709 return NULL;
1710 }
1711 fc->typecode = FAKE_COMMPOINT_TYPECODE;
1712 fc->type_tcp_out = 1;
1713 fc->cb = cb;
1714 fc->cb_arg = cb_arg;
1715 fc->runtime = runtime;
1716 fc->pending = pend;
1717
1718 /* used by authzone transfers */
1719 /* create pending item */
1720 pend->buffer = sldns_buffer_new(sldns_buffer_limit(query)+10);
1721 if(!pend->buffer) {
1722 free(fc);
1723 free(pend);
1724 return NULL;
1725 }
1726 sldns_buffer_copy(pend->buffer, query);
1727 memcpy(&pend->addr, to_addr, to_addrlen);
1728 pend->addrlen = to_addrlen;
1729 pend->zone = NULL;
1730 pend->zonelen = 0;
1731 if(LDNS_QDCOUNT(sldns_buffer_begin(query)) > 0) {
1732 char buf[512];
1733 char addrbuf[128];
1734 (void)sldns_wire2str_rrquestion_buf(sldns_buffer_at(query, LDNS_HEADER_SIZE), sldns_buffer_limit(query)-LDNS_HEADER_SIZE, buf, sizeof(buf));
1735 addr_to_str((struct sockaddr_storage*)to_addr, to_addrlen,
1736 addrbuf, sizeof(addrbuf));
1737 if(verbosity >= VERB_ALGO) {
1738 strip_end_white(buf);
1739 log_info("tcp to %s: %s", addrbuf, buf);
1740 }
1741 log_assert(sldns_buffer_limit(query)-LDNS_HEADER_SIZE >= 2);
1742 pend->qtype = (int)sldns_buffer_read_u16_at(query,
1743 LDNS_HEADER_SIZE+
1744 dname_valid(sldns_buffer_at(query, LDNS_HEADER_SIZE),
1745 sldns_buffer_limit(query)-LDNS_HEADER_SIZE));
1746 }
1747 pend->callback = cb;
1748 pend->cb_arg = cb_arg;
1749 pend->timeout = timeout;
1750 pend->transport = transport_tcp;
1751 pend->pkt = NULL;
1752 pend->runtime = runtime;
1753 pend->serviced = 0;
1754 pend->pkt_len = sldns_buffer_limit(pend->buffer);
1755 pend->pkt = memdup(sldns_buffer_begin(pend->buffer), pend->pkt_len);
1756 if(!pend->pkt) fatal_exit("out of memory");
1757
1758 log_info("testbound: created fake pending for tcp_out");
1759
1760 /* add to list */
1761 pend->next = runtime->pending_list;
1762 runtime->pending_list = pend;
1763
1764 return (struct comm_point*)fc;
1765 }
1766
outnet_comm_point_for_http(struct outside_network * outnet,comm_point_callback_type * cb,void * cb_arg,struct sockaddr_storage * to_addr,socklen_t to_addrlen,int timeout,int ssl,char * host,char * path,struct config_file * cfg)1767 struct comm_point* outnet_comm_point_for_http(struct outside_network* outnet,
1768 comm_point_callback_type* cb, void* cb_arg,
1769 struct sockaddr_storage* to_addr, socklen_t to_addrlen, int timeout,
1770 int ssl, char* host, char* path, struct config_file* cfg)
1771 {
1772 struct replay_runtime* runtime = (struct replay_runtime*)
1773 outnet->base;
1774 struct fake_commpoint* fc = (struct fake_commpoint*)calloc(1,
1775 sizeof(*fc));
1776 if(!fc) {
1777 return NULL;
1778 }
1779 fc->typecode = FAKE_COMMPOINT_TYPECODE;
1780 fc->type_http_out = 1;
1781 fc->cb = cb;
1782 fc->cb_arg = cb_arg;
1783 fc->runtime = runtime;
1784
1785 (void)to_addr;
1786 (void)to_addrlen;
1787 (void)timeout;
1788
1789 (void)ssl;
1790 (void)host;
1791 (void)path;
1792 (void)cfg;
1793
1794 /* handle http comm point and return contents from test script */
1795 return (struct comm_point*)fc;
1796 }
1797
comm_point_send_udp_msg(struct comm_point * c,sldns_buffer * packet,struct sockaddr * addr,socklen_t addrlen,int ATTR_UNUSED (is_connected))1798 int comm_point_send_udp_msg(struct comm_point *c, sldns_buffer* packet,
1799 struct sockaddr* addr, socklen_t addrlen, int ATTR_UNUSED(is_connected))
1800 {
1801 struct fake_commpoint* fc = (struct fake_commpoint*)c;
1802 struct replay_runtime* runtime = fc->runtime;
1803 struct fake_pending* pend = (struct fake_pending*)calloc(1,
1804 sizeof(struct fake_pending));
1805 if(!pend) {
1806 log_err("malloc failure");
1807 return 0;
1808 }
1809 fc->pending = pend;
1810 /* used by authzone transfers */
1811 /* create pending item */
1812 pend->buffer = sldns_buffer_new(sldns_buffer_limit(packet) + 10);
1813 if(!pend->buffer) {
1814 free(pend);
1815 return 0;
1816 }
1817 sldns_buffer_copy(pend->buffer, packet);
1818 memcpy(&pend->addr, addr, addrlen);
1819 pend->addrlen = addrlen;
1820 pend->zone = NULL;
1821 pend->zonelen = 0;
1822 if(LDNS_QDCOUNT(sldns_buffer_begin(packet)) > 0) {
1823 char buf[512];
1824 char addrbuf[128];
1825 (void)sldns_wire2str_rrquestion_buf(sldns_buffer_at(packet, LDNS_HEADER_SIZE), sldns_buffer_limit(packet)-LDNS_HEADER_SIZE, buf, sizeof(buf));
1826 addr_to_str((struct sockaddr_storage*)addr, addrlen,
1827 addrbuf, sizeof(addrbuf));
1828 if(verbosity >= VERB_ALGO) {
1829 strip_end_white(buf);
1830 log_info("udp to %s: %s", addrbuf, buf);
1831 }
1832 log_assert(sldns_buffer_limit(packet)-LDNS_HEADER_SIZE >= 2);
1833 pend->qtype = (int)sldns_buffer_read_u16_at(packet,
1834 LDNS_HEADER_SIZE+
1835 dname_valid(sldns_buffer_at(packet, LDNS_HEADER_SIZE),
1836 sldns_buffer_limit(packet)-LDNS_HEADER_SIZE));
1837 }
1838 pend->callback = fc->cb;
1839 pend->cb_arg = fc->cb_arg;
1840 pend->timeout = UDP_AUTH_QUERY_TIMEOUT/1000;
1841 pend->transport = transport_udp;
1842 pend->pkt = NULL;
1843 pend->runtime = runtime;
1844 pend->serviced = 0;
1845 pend->pkt_len = sldns_buffer_limit(pend->buffer);
1846 pend->pkt = memdup(sldns_buffer_begin(pend->buffer), pend->pkt_len);
1847 if(!pend->pkt) fatal_exit("out of memory");
1848
1849 log_info("testbound: created fake pending for send_udp_msg");
1850
1851 /* add to list */
1852 pend->next = runtime->pending_list;
1853 runtime->pending_list = pend;
1854
1855 return 1;
1856 }
1857
outnet_get_tcp_fd(struct sockaddr_storage * ATTR_UNUSED (addr),socklen_t ATTR_UNUSED (addrlen),int ATTR_UNUSED (tcp_mss),int ATTR_UNUSED (dscp))1858 int outnet_get_tcp_fd(struct sockaddr_storage* ATTR_UNUSED(addr),
1859 socklen_t ATTR_UNUSED(addrlen), int ATTR_UNUSED(tcp_mss), int ATTR_UNUSED(dscp))
1860 {
1861 log_assert(0);
1862 return -1;
1863 }
1864
outnet_tcp_connect(int ATTR_UNUSED (s),struct sockaddr_storage * ATTR_UNUSED (addr),socklen_t ATTR_UNUSED (addrlen))1865 int outnet_tcp_connect(int ATTR_UNUSED(s), struct sockaddr_storage* ATTR_UNUSED(addr),
1866 socklen_t ATTR_UNUSED(addrlen))
1867 {
1868 log_assert(0);
1869 return 0;
1870 }
1871
tcp_req_info_add_meshstate(struct tcp_req_info * ATTR_UNUSED (req),struct mesh_area * ATTR_UNUSED (mesh),struct mesh_state * ATTR_UNUSED (m))1872 int tcp_req_info_add_meshstate(struct tcp_req_info* ATTR_UNUSED(req),
1873 struct mesh_area* ATTR_UNUSED(mesh), struct mesh_state* ATTR_UNUSED(m))
1874 {
1875 log_assert(0);
1876 return 0;
1877 }
1878
1879 void
tcp_req_info_remove_mesh_state(struct tcp_req_info * ATTR_UNUSED (req),struct mesh_state * ATTR_UNUSED (m))1880 tcp_req_info_remove_mesh_state(struct tcp_req_info* ATTR_UNUSED(req),
1881 struct mesh_state* ATTR_UNUSED(m))
1882 {
1883 log_assert(0);
1884 }
1885
1886 size_t
tcp_req_info_get_stream_buffer_size(void)1887 tcp_req_info_get_stream_buffer_size(void)
1888 {
1889 return 0;
1890 }
1891
1892 size_t
http2_get_query_buffer_size(void)1893 http2_get_query_buffer_size(void)
1894 {
1895 return 0;
1896 }
1897
1898 size_t
http2_get_response_buffer_size(void)1899 http2_get_response_buffer_size(void)
1900 {
1901 return 0;
1902 }
1903
http2_stream_add_meshstate(struct http2_stream * ATTR_UNUSED (h2_stream),struct mesh_area * ATTR_UNUSED (mesh),struct mesh_state * ATTR_UNUSED (m))1904 void http2_stream_add_meshstate(struct http2_stream* ATTR_UNUSED(h2_stream),
1905 struct mesh_area* ATTR_UNUSED(mesh), struct mesh_state* ATTR_UNUSED(m))
1906 {
1907 }
1908
1909 /*********** End of Dummy routines ***********/
1910