src/addrfam.c, src/...: Abstract out address-family-specific details.
[adns] / src / internal.h
CommitLineData
e576be50 1/*
2 * internal.h
3 * - declarations of private objects with external linkage (adns__*)
4 * - definitons of internal macros
5 * - comments regarding library data structures
6 */
7/*
ae8cc977 8 * This file is part of adns, which is
9 * Copyright (C) 1997-2000,2003,2006 Ian Jackson
10 * Copyright (C) 1999-2000,2003,2006 Tony Finch
11 * Copyright (C) 1991 Massachusetts Institute of Technology
12 * (See the file INSTALL for full details.)
f7f83b4a 13 *
e576be50 14 * This program is free software; you can redistribute it and/or modify
15 * it under the terms of the GNU General Public License as published by
16 * the Free Software Foundation; either version 2, or (at your option)
17 * any later version.
f7f83b4a 18 *
e576be50 19 * This program is distributed in the hope that it will be useful,
20 * but WITHOUT ANY WARRANTY; without even the implied warranty of
21 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
22 * GNU General Public License for more details.
f7f83b4a 23 *
e576be50 24 * You should have received a copy of the GNU General Public License
25 * along with this program; if not, write to the Free Software Foundation,
f7f83b4a 26 * Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA.
e576be50 27 */
37e28fde 28
29#ifndef ADNS_INTERNAL_H_INCLUDED
30#define ADNS_INTERNAL_H_INCLUDED
31
11b35193 32#include "config.h"
4353a5c4 33typedef unsigned char byte;
34
35#include <stdarg.h>
36#include <assert.h>
37#include <unistd.h>
ac868fa8 38#include <signal.h>
620c146d 39#include <errno.h>
b365d68a 40#include <string.h>
0d66e373 41#include <stdlib.h>
4353a5c4 42
37e28fde 43#include <sys/time.h>
44
45#include "adns.h"
70ad7a2a 46#include "dlist.h"
37e28fde 47
0ebff22d 48#ifdef ADNS_REGRESS_TEST
49# include "hredirect.h"
50#endif
51
37e28fde 52/* Configuration and constants */
53
54#define MAXSERVERS 5
09957b1c 55#define MAXSORTLIST 15
4b707d8b 56#define UDPMAXRETRIES 15
37e28fde 57#define UDPRETRYMS 2000
f7f83b4a 58#define TCPWAITMS 30000
59#define TCPCONNMS 14000
60#define TCPIDLEMS 30000
73dba56e 61#define MAXTTLBELIEVE (7*86400) /* any TTL > 7 days is capped */
b9de380c 62
98a3f706 63#define DNS_PORT 53
b9de380c 64#define DNS_MAXUDP 512
5b9dd636 65#define DNS_MAXLABEL 63
b9de380c 66#define DNS_MAXDOMAIN 255
67#define DNS_HDRSIZE 12
660d7d3b 68#define DNS_IDOFFSET 0
b9de380c 69#define DNS_CLASS_IN 1
37e28fde 70
a6536d8b 71#define DNS_INADDR_ARPA "in-addr", "arpa"
72
620c146d 73#define MAX_POLLFDS ADNS_POLLFDS_RECOMMENDED
74
c5fd1fbb
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75/* Some preprocessor hackery */
76
77#define GLUE(x, y) GLUE_(x, y)
78#define GLUE_(x, y) x##y
79
80/* C99 macro `...' must match at least one argument, so the naive definition
81 * `#define CAR(car, ...) car' won't work. But it's easy to arrange for the
82 * tail to be nonempty if we're just going to discard it anyway. */
83#define CAR(...) CAR_(__VA_ARGS__, _)
84#define CAR_(car, ...) car
85
86/* Extracting the tail of an argument list is rather more difficult. The
87 * following trick is based on one by Laurent Deniau to count the number of
88 * arguments to a macro, simplified in two ways: (a) it only handles up to
89 * eight arguments, and (b) it only needs to distinguish the one-argument
90 * case from many arguments. */
91#define CDR(...) CDR_(__VA_ARGS__, m, m, m, m, m, m, m, 1, _)(__VA_ARGS__)
92#define CDR_(_1, _2, _3, _4, _5, _6, _7, _8, n, ...) CDR_##n
93#define CDR_1(_)
94#define CDR_m(_, ...) __VA_ARGS__
95
98a3f706 96typedef enum {
3e2e5fab 97 cc_user,
98 cc_entex,
99 cc_freq
100} consistency_checks;
101
102typedef enum {
98a3f706 103 rcode_noerror,
104 rcode_formaterror,
105 rcode_servfail,
106 rcode_nxdomain,
107 rcode_notimp,
108 rcode_refused
109} dns_rcode;
110
37e28fde 111/* Shared data structures */
112
4353a5c4 113typedef struct {
114 int used, avail;
115 byte *buf;
116} vbuf;
117
0ba0614a 118typedef struct {
1dfe95d8 119 adns_state ads;
c7836bc9 120 adns_query qu;
1dfe95d8 121 int serv;
c7836bc9 122 const byte *dgram;
1dfe95d8 123 int dglen, nsstart, nscount, arcount;
7da21070 124 struct timeval now;
c7836bc9 125} parseinfo;
126
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127union gen_addr {
128 struct in_addr v4;
129 struct in6_addr v6;
130};
131
132struct af_addr { int af; union gen_addr addr; };
133
e8e5aeac 134union checklabel_state {
938b0228 135 struct { byte ipv[4]; } ptr;
e8e5aeac
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136};
137
e1d3be7e
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138typedef struct {
139 void *ext;
140 void (*callback)(adns_query parent, adns_query child);
141
142 union {
ac5a2748 143 struct {
f930c455 144 struct af_addr addr;
ac5a2748 145 } ptr;
e1d3be7e
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146 } tinfo; /* type-specific state for the query itself: zero-init if you
147 * don't know better. */
148
149 union {
150 adns_rr_hostaddr *hostaddr;
151 } pinfo; /* state for use by parent's callback function */
152} qcontext;
153
d19b03d0 154typedef struct typeinfo {
2c6eb096 155 adns_rrtype typekey;
86e7b8d9 156 const char *rrtname;
157 const char *fmtname;
042b0909 158 int fixed_rrsz;
8e5b0abb 159
86e7b8d9 160 void (*makefinal)(adns_query qu, void *data);
161 /* Change memory management of *data.
162 * Previously, used alloc_interim, now use alloc_final.
163 */
164
165 adns_status (*convstring)(vbuf *vb, const void *data);
166 /* Converts the RR data to a string representation in vbuf.
167 * vbuf will be appended to (it must have been initialised),
168 * and will not be null-terminated by convstring.
169 */
170
609133ee 171 adns_status (*parse)(const parseinfo *pai, int cbyte,
172 int max, void *store_r);
31144a72 173 /* Parse one RR, in dgram of length dglen, starting at cbyte and
174 * extending until at most max.
175 *
042b0909 176 * The RR should be stored at *store_r, of length qu->typei->getrrsz().
31144a72 177 *
178 * If there is an overrun which might indicate truncation, it should set
179 * *rdstart to -1; otherwise it may set it to anything else positive.
88372443 180 *
c7836bc9 181 * nsstart is the offset of the authority section.
8e5b0abb 182 */
e062dcae 183
609133ee 184 int (*diff_needswap)(adns_state ads,const void *datap_a,const void *datap_b);
88372443 185 /* Returns !0 if RR a should be strictly after RR b in the sort order,
e062dcae 186 * 0 otherwise. Must not fail.
187 */
d19b03d0 188
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189 adns_status (*checklabel)(adns_state ads, adns_queryflags flags,
190 union checklabel_state *cls, qcontext *ctx,
191 int labnum, const char *label, int lablen);
192 /* Check a label from the query domain string. The label is not
193 * necessarily null-terminated. The hook can refuse the query's submission
194 * by returning a nonzero status. State can be stored in *cls between
195 * calls, and useful information can be stashed in ctx->tinfo, to be stored
196 * with the query (e.g., it will be available to the parse hook). This
197 * hook can detect a first call because labnum is zero, and a final call
198 * because lablen is zero.
199 */
d19b03d0 200
042b0909 201 void (*postsort)(adns_state ads, void *array, int nrrs,int rrsz,
d24e2a7e 202 const struct typeinfo *typei);
203 /* Called immediately after the RRs have been sorted, and may rearrange
204 * them. (This is really for the benefit of SRV's bizarre weighting
205 * stuff.) May be 0 to mean nothing needs to be done.
206 */
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207
208 int (*getrrsz)(const struct typeinfo *typei, adns_rrtype type);
209 /* Return the output resource-record element size; if this is null, then
210 * the rrsz member can be used.
211 */
0ba0614a 212} typeinfo;
213
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214adns_status adns__ckl_hostname(adns_state ads, adns_queryflags flags,
215 union checklabel_state *cls,
216 qcontext *ctx, int labnum,
217 const char *label, int lablen);
218 /* implemented in query.c, used by types.c as default
219 * and as part of implementation for some fancier types
220 * doesn't require any state */
d19b03d0 221
8e5b0abb 222typedef struct allocnode {
551ff40f 223 struct allocnode *next, *back;
8e5b0abb 224} allocnode;
225
226union maxalign {
227 byte d[1];
228 struct in_addr ia;
229 long l;
230 void *p;
231 void (*fp)(void);
232 union maxalign *up;
233} data;
234
37e28fde 235struct adns__query {
3955725c 236 adns_state ads;
f7f83b4a 237 enum { query_tosend, query_tcpw, query_childw, query_done } state;
4353a5c4 238 adns_query back, next, parent;
37e28fde 239 struct { adns_query head, tail; } children;
240 struct { adns_query back, next; } siblings;
551ff40f 241 struct { allocnode *head, *tail; } allocations;
8b3d55e3 242 int interim_allocd, preserved_allocd;
68442019 243 void *final_allocspace;
8ce38e76 244
0ba0614a 245 const typeinfo *typei;
e062dcae 246 byte *query_dgram;
8e5b0abb 247 int query_dglen;
f7f83b4a 248
8e5b0abb 249 vbuf vb;
250 /* General-purpose messing-about buffer.
251 * Wherever a `big' interface is crossed, this may be corrupted/changed
252 * unless otherwise specified.
253 */
254
255 adns_answer *answer;
256 /* This is allocated when a query is submitted, to avoid being unable
257 * to relate errors to queries if we run out of memory. During
258 * query processing status, rrs is 0. cname is set if
259 * we found a cname (this corresponds to cname_dgram in the query
260 * structure). type is set from the word go. nrrs and rrs
261 * are set together, when we find how many rrs there are.
22181a31 262 * owner is set during querying unless we're doing searchlist,
263 * in which case it is set only when we find an answer.
8e5b0abb 264 */
f7f83b4a 265
31144a72 266 byte *cname_dgram;
267 int cname_dglen, cname_begin;
3955725c 268 /* If non-0, has been allocated using . */
32af6b2a 269
270 vbuf search_vb;
271 int search_origlen, search_pos, search_doneabs;
272 /* Used by the searching algorithm. The query domain in textual form
273 * is copied into the vbuf, and _origlen set to its length. Then
274 * we walk the searchlist, if we want to. _pos says where we are
275 * (next entry to try), and _doneabs says whether we've done the
660d7d3b 276 * absolute query yet (0=not yet, 1=done, -1=must do straight away,
277 * but not done yet). If flags doesn't have adns_qf_search then
32af6b2a 278 * the vbuf is initialised but empty and everything else is zero.
32af6b2a 279 */
f7f83b4a 280
281 int id, flags, retries;
4353a5c4 282 int udpnextserver;
f7f83b4a 283 unsigned long udpsent; /* bitmap indexed by server */
37e28fde 284 struct timeval timeout;
73dba56e 285 time_t expires; /* Earliest expiry time of any record we used. */
a6536d8b 286
287 qcontext ctx;
ddfda861 288
37e28fde 289 /* Possible states:
ddfda861 290 *
3e2e5fab 291 * state Queue child id nextudpserver udpsent tcpfailed
f7f83b4a 292 *
d8c062fa 293 * tosend NONE null >=0 0 zero zero
f7f83b4a 294 * tosend udpw null >=0 any nonzero zero
d8c062fa 295 * tosend NONE null >=0 any nonzero zero
f7f83b4a 296 *
297 * tcpw tcpw null >=0 irrelevant any any
298 *
8e5b0abb 299 * child childw set >=0 irrelevant irrelevant irrelevant
dcc8e442 300 * child NONE null >=0 irrelevant irrelevant irrelevant
8e5b0abb 301 * done output null -1 irrelevant irrelevant irrelevant
ddfda861 302 *
dcc8e442 303 * Queries are only not on a queue when they are actually being processed.
f7f83b4a 304 * Queries in state tcpw/tcpw have been sent (or are in the to-send buffer)
305 * iff the tcp connection is in state server_ok.
dcc8e442 306 *
ddfda861 307 * +------------------------+
f7f83b4a 308 * START -----> | tosend/NONE |
ddfda861 309 * +------------------------+
310 * / |\ \
311 * too big for UDP / UDP timeout \ \ send via UDP
f7f83b4a 312 * send via TCP / more retries \ \
313 * when conn'd / desired \ \
314 * | | |
315 * v | v
316 * +-----------+ +-------------+
317 * | tcpw/tcpw | ________ | tosend/udpw |
318 * +-----------+ \ +-------------+
319 * | | | UDP timeout | |
320 * | | | no more | |
321 * | | | retries | |
322 * \ | TCP died | desired | |
323 * \ \ no more | | |
324 * \ \ servers | TCP / |
325 * \ \ to try | timeout / |
326 * got \ \ v |_ | got
ddfda861 327 * reply \ _| +------------------+ / reply
328 * \ | done/output FAIL | /
329 * \ +------------------+ /
330 * \ /
331 * _| |_
332 * (..... got reply ....)
333 * / \
334 * need child query/ies / \ no child query
335 * / \
336 * |_ _|
f7f83b4a 337 * +---------------+ +----------------+
338 * | childw/childw | ----------------> | done/output OK |
339 * +---------------+ children done +----------------+
37e28fde 340 */
341};
342
f7f83b4a 343struct query_queue { adns_query head, tail; };
344
37e28fde 345struct adns__state {
37e28fde 346 adns_initflags iflags;
d3a102c4 347 adns_logcallbackfn *logfn;
348 void *logfndata;
36369543 349 int configerrno;
f7f83b4a 350 struct query_queue udpw, tcpw, childw, output;
8ce38e76 351 adns_query forallnext;
4353a5c4 352 int nextid, udpsocket, tcpsocket;
8e5b0abb 353 vbuf tcpsend, tcprecv;
70ad7a2a 354 int nservers, nsortlist, nsearchlist, searchndots, tcpserver, tcprecv_skip;
f7f83b4a 355 enum adns__tcpstate {
356 server_disconnected, server_connecting,
357 server_ok, server_broken
358 } tcpstate;
37e28fde 359 struct timeval tcptimeout;
4fad263d 360 /* This will have tv_sec==0 if it is not valid. It will always be
361 * valid if tcpstate _connecting. When _ok, it will be nonzero if
362 * we are idle (ie, tcpw queue is empty), in which case it is the
363 * absolute time when we will close the connection.
f7f83b4a 364 */
ac868fa8 365 struct sigaction stdsigpipe;
366 sigset_t stdsigmask;
620c146d 367 struct pollfd pollfds_buf[MAX_POLLFDS];
f930c455 368 adns_rr_addr servers[MAXSERVERS];
09957b1c 369 struct sortlist {
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370 int af;
371 union gen_addr base, mask;
09957b1c 372 } sortlist[MAXSORTLIST];
32af6b2a 373 char **searchlist;
0e45654b 374 unsigned short rand48xsubi[3];
37e28fde 375};
376
07554ccd
MW
377/* From addrfam.c: */
378
379extern int adns__af_supported_p(int af);
380/* Return nonzero if the address family af known to the library and supported
381 * by the other addrfam operations. Note that the other operations will
382 * abort on an unrecognized address family rather than returning an error
383 * code.
384 */
385
386extern int adns__genaddr_equal_p(int af, const union gen_addr *a,
387 int bf, const void *b);
388/* b should point to a `struct in_addr' or equivalent for the address family
389 * bf. Returns nonzero if the two addresses are equal.
390 */
391
392extern int adns__sockaddr_equal_p(const struct sockaddr *sa,
393 const struct sockaddr *sb);
394/* Return nonzero if the two socket addresses are equal (in all significant
395 * respects).
396 */
397
398extern int adns__addr_width(int af);
399/* Return the width of addresses of family af, in bits. */
400
401extern void adns__prefix_mask(int af, int len, union gen_addr *mask_r);
402/* Store in mask_r an address mask for address family af, whose first len
403 * bits are set and the remainder are clear. This is what you want for
404 * converting a prefix length into a netmask.
405 */
406
407extern int adns__guess_prefix_length(int af, const union gen_addr *addr);
408/* Given a network base address, guess the appropriate prefix length based on
409 * the appropriate rules for the address family (e.g., for IPv4, this uses
410 * the old address classes).
411 */
412
413extern int adns__addr_match_p(int addraf, const union gen_addr *addr,
414 int netaf, const union gen_addr *base,
415 const union gen_addr *mask);
416/* Given an address af (with family addraf) and a network (with family netaf,
417 * base address base, and netmask mask), return nonzero if the address lies
418 * within the network.
419 */
420
421extern void adns__sockaddr_extract(const struct sockaddr *sa,
422 union gen_addr *a_r, int *port_r);
423/* Extract fields from the socket address, filling in *a_r and *port_r with
424 * the address and (integer, host byte-order) port number, respectively.
425 * Either (or, pointlessly, both) of a_r and port_r may be null to mean
426 * `don't care'.
427 */
428
429extern void adns__sockaddr_inject(const union gen_addr *a, int port,
430 struct sockaddr *sa);
431/* Inject fields into the socket adress sa. If a is not null, copy the
432 * address in; if port is not -1, then copy the port (converting from host
433 * byte-order). Assumes that sa->sa_family is already set correctly.
434 */
435
37e28fde 436/* From setup.c: */
437
e576be50 438int adns__setnonblock(adns_state ads, int fd); /* => errno value */
439
440/* From general.c: */
441
d3a102c4 442void adns__vlprintf(adns_state ads, const char *fmt, va_list al);
443void adns__lprintf(adns_state ads, const char *fmt,
444 ...) PRINTFFORMAT(2,3);
445
4353a5c4 446void adns__vdiag(adns_state ads, const char *pfx, adns_initflags prevent,
68442019 447 int serv, adns_query qu, const char *fmt, va_list al);
31144a72 448
449void adns__debug(adns_state ads, int serv, adns_query qu,
68442019 450 const char *fmt, ...) PRINTFFORMAT(4,5);
31144a72 451void adns__warn(adns_state ads, int serv, adns_query qu,
68442019 452 const char *fmt, ...) PRINTFFORMAT(4,5);
31144a72 453void adns__diag(adns_state ads, int serv, adns_query qu,
68442019 454 const char *fmt, ...) PRINTFFORMAT(4,5);
37e28fde 455
4353a5c4 456int adns__vbuf_ensure(vbuf *vb, int want);
609133ee 457int adns__vbuf_appendstr(vbuf *vb, const char *data); /* doesn't include nul */
4353a5c4 458int adns__vbuf_append(vbuf *vb, const byte *data, int len);
ddfda861 459/* 1=>success, 0=>realloc failed */
4353a5c4 460void adns__vbuf_appendq(vbuf *vb, const byte *data, int len);
461void adns__vbuf_init(vbuf *vb);
8e5b0abb 462void adns__vbuf_free(vbuf *vb);
4353a5c4 463
828d89bd 464const char *adns__diag_domain(adns_state ads, int serv, adns_query qu,
609133ee 465 vbuf *vb,
466 const byte *dgram, int dglen, int cbyte);
e576be50 467/* Unpicks a domain in a datagram and returns a string suitable for
468 * printing it as. Never fails - if an error occurs, it will
469 * return some kind of string describing the error.
470 *
3955725c 471 * serv may be -1 and qu may be 0. vb must have been initialised,
e576be50 472 * and will be left in an arbitrary consistent state.
473 *
474 * Returns either vb->buf, or a pointer to a string literal. Do not modify
475 * vb before using the return value.
476 */
f7f83b4a 477
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478int adns__getrrsz_default(const typeinfo *typei, adns_rrtype type);
479/* Default function for the `getrrsz' type hook; returns the `fixed_rrsz'
480 * value from the typeinfo entry.
481 */
482
88372443 483void adns__isort(void *array, int nobjs, int sz, void *tempbuf,
09957b1c 484 int (*needswap)(void *context, const void *a, const void *b),
485 void *context);
88372443 486/* Does an insertion sort of array which must contain nobjs objects
487 * each sz bytes long. tempbuf must point to a buffer at least
488 * sz bytes long. needswap should return !0 if a>b (strictly, ie
489 * wrong order) 0 if a<=b (ie, order is fine).
490 */
ac868fa8 491
492void adns__sigpipe_protect(adns_state);
493void adns__sigpipe_unprotect(adns_state);
494/* If SIGPIPE protection is not disabled, will block all signals except
495 * SIGPIPE, and set SIGPIPE's disposition to SIG_IGN. (And then restore.)
496 * Each call to _protect must be followed by a call to _unprotect before
1f2ababa 497 * any significant amount of code gets to run, since the old signal mask
498 * is stored in the adns structure.
ac868fa8 499 */
500
e576be50 501/* From transmit.c: */
ddfda861 502
3955725c 503adns_status adns__mkquery(adns_state ads, vbuf *vb, int *id_r,
504 const char *owner, int ol,
2c6eb096 505 const typeinfo *typei, adns_rrtype type,
506 adns_queryflags flags);
660d7d3b 507/* Assembles a query packet in vb. A new id is allocated and returned.
508 */
e576be50 509
e062dcae 510adns_status adns__mkquery_frdgram(adns_state ads, vbuf *vb, int *id_r,
609133ee 511 const byte *qd_dgram, int qd_dglen,
512 int qd_begin,
e062dcae 513 adns_rrtype type, adns_queryflags flags);
514/* Same as adns__mkquery, but takes the owner domain from an existing datagram.
515 * That domain must be correct and untruncated.
516 */
517
f7f83b4a 518void adns__querysend_tcp(adns_query qu, struct timeval now);
519/* Query must be in state tcpw/tcpw; it will be sent if possible and
520 * no further processing can be done on it for now. The connection
521 * might be broken, but no reconnect will be attempted.
e576be50 522 */
523
d8c062fa 524void adns__query_send(adns_query qu, struct timeval now);
525/* Query must be in state tosend/NONE; it will be moved to a new state,
e576be50 526 * and no further processing can be done on it for now.
609133ee 527 * (Resulting state is one of udp/timew, tcpwait/timew (if server not
528 * connected), tcpsent/timew, child/childw or done/output.)
d8c062fa 529 * __query_send may decide to use either UDP or TCP depending whether
530 * _qf_usevc is set (or has become set) and whether the query is too
531 * large.
e576be50 532 */
533
534/* From query.c: */
37e28fde 535
660d7d3b 536adns_status adns__internal_submit(adns_state ads, adns_query *query_r,
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537 const typeinfo *typei, adns_rrtype type,
538 vbuf *qumsg_vb, int id,
660d7d3b 539 adns_queryflags flags, struct timeval now,
be4d66dc 540 qcontext *ctx);
8e5b0abb 541/* Submits a query (for internal use, called during external submits).
542 *
543 * The new query is returned in *query_r, or we return adns_s_nomemory.
544 *
68442019 545 * The query datagram should already have been assembled in qumsg_vb;
546 * the memory for it is _taken over_ by this routine whether it
547 * succeeds or fails (if it succeeds, the vbuf is reused for qu->vb).
8e5b0abb 548 *
be4d66dc
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549 * *ctx is copied byte-for-byte into the query. Before doing this, its tinfo
550 * field may be modified by type hooks.
dcc8e442 551 *
552 * When the child query is done, ctx->callback will be called. The
553 * child will already have been taken off both the global list of
554 * queries in ads and the list of children in the parent. The child
555 * will be freed when the callback returns. The parent will have been
4218fb9a 556 * taken off the global childw queue.
557 *
558 * The callback should either call adns__query_done, if it is
559 * complete, or adns__query_fail, if an error has occurred, in which
560 * case the other children (if any) will be cancelled. If the parent
561 * has more unfinished children (or has just submitted more) then the
562 * callback may choose to wait for them - it must then put the parent
563 * back on the childw queue.
8e5b0abb 564 */
565
660d7d3b 566void adns__search_next(adns_state ads, adns_query qu, struct timeval now);
567/* Walks down the searchlist for a query with adns_qf_search.
568 * The query should have just had a negative response, or not had
569 * any queries sent yet, and should not be on any queue.
570 * The query_dgram if any will be freed and forgotten and a new
571 * one constructed from the search_* members of the query.
572 *
573 * Cannot fail (in case of error, calls adns__query_fail).
574 */
575
8e5b0abb 576void *adns__alloc_interim(adns_query qu, size_t sz);
8b3d55e3 577void *adns__alloc_preserved(adns_query qu, size_t sz);
8e5b0abb 578/* Allocates some memory, and records which query it came from
579 * and how much there was.
580 *
8b3d55e3 581 * If an error occurs in the query, all the memory from _interim is
582 * simply freed. If the query succeeds, one large buffer will be made
583 * which is big enough for all these allocations, and then
584 * adns__alloc_final will get memory from this buffer.
8e5b0abb 585 *
e062dcae 586 * _alloc_interim can fail (and return 0).
587 * The caller must ensure that the query is failed.
a49a6d7b 588 *
8b3d55e3 589 * The memory from _preserved is is kept and transferred into the
590 * larger buffer - unless we run out of memory, in which case it too
591 * is freed. When you use _preserved you have to add code to the
592 * x_nomem error exit case in adns__makefinal_query to clear out the
593 * pointers you made to those allocations, because that's when they're
594 * thrown away; you should also make a note in the declaration of
595 * those pointer variables, to note that they are _preserved rather
596 * than _interim. If they're in the answer, note it here:
597 * answer->cname and answer->owner are _preserved.
8e5b0abb 598 */
599
609133ee 600void adns__transfer_interim(adns_query from, adns_query to,
601 void *block, size_t sz);
551ff40f 602/* Transfers an interim allocation from one query to another, so that
603 * the `to' query will have room for the data when we get to makefinal
604 * and so that the free will happen when the `to' query is freed
605 * rather than the `from' query.
606 *
607 * It is legal to call adns__transfer_interim with a null pointer; this
608 * has no effect.
73dba56e 609 *
610 * _transfer_interim also ensures that the expiry time of the `to' query
611 * is no later than that of the `from' query, so that child queries'
612 * TTLs get inherited by their parents.
551ff40f 613 */
614
3955725c 615void *adns__alloc_mine(adns_query qu, size_t sz);
616/* Like _interim, but does not record the length for later
617 * copying into the answer. This just ensures that the memory
618 * will be freed when we're done with the query.
619 */
620
8e5b0abb 621void *adns__alloc_final(adns_query qu, size_t sz);
a49a6d7b 622/* Cannot fail, and cannot return 0.
8e5b0abb 623 */
37e28fde 624
68442019 625void adns__makefinal_block(adns_query qu, void **blpp, size_t sz);
626void adns__makefinal_str(adns_query qu, char **strp);
627
8b3d55e3 628void adns__reset_preserved(adns_query qu);
629/* Resets all of the memory management stuff etc. to take account of
630 * only the _preserved stuff from _alloc_preserved. Used when we find
631 * an error somewhere and want to just report the error (with perhaps
632 * CNAME, owner, etc. info), and also when we're halfway through RRs
633 * in a datagram and discover that we need to retry the query.
68442019 634 */
e576be50 635
3955725c 636void adns__query_done(adns_query qu);
637void adns__query_fail(adns_query qu, adns_status stat);
f7f83b4a 638
4353a5c4 639/* From reply.c: */
640
98a3f706 641void adns__procdgram(adns_state ads, const byte *dgram, int len,
ebf4877a 642 int serv, int viatcp, struct timeval now);
1f2ababa 643/* This function is allowed to cause new datagrams to be constructed
644 * and sent, or even new queries to be started. However,
645 * query-sending functions are not allowed to call any general event
646 * loop functions in case they accidentally call this.
f7f83b4a 647 *
648 * Ie, receiving functions may call sending functions.
649 * Sending functions may NOT call receiving functions.
1f2ababa 650 */
98a3f706 651
652/* From types.c: */
653
654const typeinfo *adns__findtype(adns_rrtype type);
655
656/* From parse.c: */
657
f1e474dd 658typedef struct {
68442019 659 adns_state ads;
3955725c 660 adns_query qu;
68442019 661 int serv;
f1e474dd 662 const byte *dgram;
663 int dglen, max, cbyte, namelen;
3955725c 664 int *dmend_r;
f1e474dd 665} findlabel_state;
666
3955725c 667void adns__findlabel_start(findlabel_state *fls, adns_state ads,
668 int serv, adns_query qu,
f1e474dd 669 const byte *dgram, int dglen, int max,
670 int dmbegin, int *dmend_rlater);
671/* Finds labels in a domain in a datagram.
672 *
673 * Call this routine first.
3955725c 674 * dmend_rlater may be null. ads (and of course fls) may not be.
675 * serv may be -1, qu may be null - they are for error reporting.
f1e474dd 676 */
677
609133ee 678adns_status adns__findlabel_next(findlabel_state *fls,
679 int *lablen_r, int *labstart_r);
f1e474dd 680/* Then, call this one repeatedly.
681 *
682 * It will return adns_s_ok if all is well, and tell you the length
683 * and start of successive labels. labstart_r may be null, but
684 * lablen_r must not be.
685 *
686 * After the last label, it will return with *lablen_r zero.
687 * Do not then call it again; instead, just throw away the findlabel_state.
688 *
689 * *dmend_rlater will have been set to point to the next part of
690 * the datagram after the label (or after the uncompressed part,
691 * if compression was used). *namelen_rlater will have been set
692 * to the length of the domain name (total length of labels plus
693 * 1 for each intervening dot).
694 *
695 * If the datagram appears to be truncated, *lablen_r will be -1.
696 * *dmend_rlater, *labstart_r and *namelen_r may contain garbage.
697 * Do not call _next again.
698 *
699 * There may also be errors, in which case *dmend_rlater,
700 * *namelen_rlater, *lablen_r and *labstart_r may contain garbage.
701 * Do not then call findlabel_next again.
702 */
703
828d89bd 704typedef enum {
705 pdf_quoteok= 0x001
706} parsedomain_flags;
707
3955725c 708adns_status adns__parse_domain(adns_state ads, int serv, adns_query qu,
828d89bd 709 vbuf *vb, parsedomain_flags flags,
609133ee 710 const byte *dgram, int dglen, int *cbyte_io,
711 int max);
f1e474dd 712/* vb must already have been initialised; it will be reset if necessary.
713 * If there is truncation, vb->used will be set to 0; otherwise
714 * (if there is no error) vb will be null-terminated.
715 * If there is an error vb and *cbyte_io may be left indeterminate.
3955725c 716 *
717 * serv may be -1 and qu may be 0 - they are used for error reporting only.
f1e474dd 718 */
719
eaa44731 720adns_status adns__parse_domain_more(findlabel_state *fls, adns_state ads,
609133ee 721 adns_query qu, vbuf *vb,
722 parsedomain_flags flags,
eaa44731 723 const byte *dgram);
724/* Like adns__parse_domain, but you pass it a pre-initialised findlabel_state,
725 * for continuing an existing domain or some such of some kind. Also, unlike
726 * _parse_domain, the domain data will be appended to vb, rather than replacing
727 * the existing contents.
728 */
729
3955725c 730adns_status adns__findrr(adns_query qu, int serv,
f1e474dd 731 const byte *dgram, int dglen, int *cbyte_io,
73dba56e 732 int *type_r, int *class_r, unsigned long *ttl_r,
733 int *rdlen_r, int *rdstart_r,
3955725c 734 int *ownermatchedquery_r);
c7836bc9 735/* Finds the extent and some of the contents of an RR in a datagram
736 * and does some checks. The datagram is *dgram, length dglen, and
737 * the RR starts at *cbyte_io (which is updated afterwards to point
738 * to the end of the RR).
739 *
73dba56e 740 * The type, class, TTL and RRdata length and start are returned iff
741 * the corresponding pointer variables are not null. type_r, class_r
742 * and ttl_r may not be null. The TTL will be capped.
c7836bc9 743 *
744 * If ownermatchedquery_r != 0 then the owner domain of this
745 * RR will be compared with that in the query (or, if the query
746 * has gone to a CNAME lookup, with the canonical name).
747 * In this case, *ownermatchedquery_r will be set to 0 or 1.
748 * The query datagram (or CNAME datagram) MUST be valid and not truncated.
749 *
750 * If there is truncation then *type_r will be set to -1 and
751 * *cbyte_io, *class_r, *rdlen_r, *rdstart_r and *eo_matched_r will be
752 * undefined.
753 *
754 * qu must obviously be non-null.
755 *
756 * If an error is returned then *type_r will be undefined too.
757 */
758
1dfe95d8 759adns_status adns__findrr_anychk(adns_query qu, int serv,
760 const byte *dgram, int dglen, int *cbyte_io,
609133ee 761 int *type_r, int *class_r,
762 unsigned long *ttl_r,
73dba56e 763 int *rdlen_r, int *rdstart_r,
609133ee 764 const byte *eo_dgram, int eo_dglen,
765 int eo_cbyte, int *eo_matched_r);
c7836bc9 766/* Like adns__findrr_checked, except that the datagram and
767 * owner to compare with can be specified explicitly.
768 *
769 * If the caller thinks they know what the owner of the RR ought to
770 * be they can pass in details in eo_*: this is another (or perhaps
771 * the same datagram), and a pointer to where the putative owner
772 * starts in that datagram. In this case *eo_matched_r will be set
773 * to 1 if the datagram matched or 0 if it did not. Either
774 * both eo_dgram and eo_matched_r must both be non-null, or they
775 * must both be null (in which case eo_dglen and eo_cbyte will be ignored).
776 * The eo datagram and contained owner domain MUST be valid and
777 * untruncated.
778 */
98a3f706 779
609133ee 780void adns__update_expires(adns_query qu, unsigned long ttl,
781 struct timeval now);
73dba56e 782/* Updates the `expires' field in the query, so that it doesn't exceed
783 * now + ttl.
784 */
785
f1e474dd 786int vbuf__append_quoted1035(vbuf *vb, const byte *buf, int len);
8402e34c 787
788/* From event.c: */
4353a5c4 789
8402e34c 790void adns__tcp_broken(adns_state ads, const char *what, const char *why);
f7f83b4a 791/* what and why may be both 0, or both non-0. */
792
4353a5c4 793void adns__tcp_tryconnect(adns_state ads, struct timeval now);
e576be50 794
4353a5c4 795void adns__autosys(adns_state ads, struct timeval now);
70ad7a2a 796/* Make all the system calls we want to if the application wants us to.
797 * Must not be called from within adns internal processing functions,
798 * lest we end up in recursive descent !
799 */
37e28fde 800
620c146d 801void adns__must_gettimeofday(adns_state ads, const struct timeval **now_io,
802 struct timeval *tv_buf);
f7f83b4a 803
620c146d 804int adns__pollfds(adns_state ads, struct pollfd pollfds_buf[MAX_POLLFDS]);
805void adns__fdevents(adns_state ads,
806 const struct pollfd *pollfds, int npollfds,
807 int maxfd, const fd_set *readfds,
808 const fd_set *writefds, const fd_set *exceptfds,
809 struct timeval now, int *r_r);
940356bd 810int adns__internal_check(adns_state ads,
811 adns_query *query_io,
812 adns_answer **answer,
813 void **context_r);
620c146d 814
f7f83b4a 815void adns__timeouts(adns_state ads, int act,
816 struct timeval **tv_io, struct timeval *tvbuf,
817 struct timeval now);
818/* If act is !0, then this will also deal with the TCP connection
819 * if previous events broke it or require it to be connected.
820 */
821
3e2e5fab 822/* From check.c: */
823
28de6442 824void adns__consistency(adns_state ads, adns_query qu, consistency_checks cc);
3e2e5fab 825
37e28fde 826/* Useful static inline functions: */
827
609133ee 828static inline int ctype_whitespace(int c) {
829 return c==' ' || c=='\n' || c=='\t';
830}
37e28fde 831static inline int ctype_digit(int c) { return c>='0' && c<='9'; }
98a3f706 832static inline int ctype_alpha(int c) {
9da4a044 833 return (c >= 'a' && c <= 'z') || (c >= 'A' && c <= 'Z');
98a3f706 834}
609133ee 835static inline int ctype_822special(int c) {
836 return strchr("()<>@,;:\\\".[]",c) != 0;
837}
8af5175d 838static inline int ctype_domainunquoted(int c) {
839 return ctype_alpha(c) || ctype_digit(c) || (strchr("-_/+",c) != 0);
840}
37e28fde 841
620c146d 842static inline int errno_resources(int e) { return e==ENOMEM || e==ENOBUFS; }
843
37e28fde 844/* Useful macros */
845
609133ee 846#define MEM_ROUND(sz) \
847 (( ((sz)+sizeof(union maxalign)-1) / sizeof(union maxalign) ) \
8e5b0abb 848 * sizeof(union maxalign) )
849
86e7b8d9 850#define GETIL_B(cb) (((dgram)[(cb)++]) & 0x0ff)
98a3f706 851#define GET_B(cb,tv) ((tv)= GETIL_B((cb)))
609133ee 852#define GET_W(cb,tv) ((tv)=0,(tv)|=(GETIL_B((cb))<<8), (tv)|=GETIL_B(cb), (tv))
853#define GET_L(cb,tv) ( (tv)=0, \
854 (tv)|=(GETIL_B((cb))<<24), \
855 (tv)|=(GETIL_B((cb))<<16), \
856 (tv)|=(GETIL_B((cb))<<8), \
857 (tv)|=GETIL_B(cb), \
73dba56e 858 (tv) )
98a3f706 859
37e28fde 860#endif