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Revision: 1.35
Committed: Wed Mar 16 14:56:32 2005 UTC (19 years, 2 months ago) by pcg
Content type: text/plain
Branch: MAIN
Changes since 1.34: +1 -1 lines
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File Contents

# User Rev Content
1 pcg 1.1 /*
2     vpn_dns.C -- handle the dns tunnel part of the protocol.
3 pcg 1.7 Copyright (C) 2003-2005 Marc Lehmann <gvpe@schmorp.de>
4 pcg 1.1
5 pcg 1.7 This file is part of GVPE.
6    
7     GVPE is free software; you can redistribute it and/or modify
8 pcg 1.1 it under the terms of the GNU General Public License as published by
9     the Free Software Foundation; either version 2 of the License, or
10     (at your option) any later version.
11    
12     This program is distributed in the hope that it will be useful,
13     but WITHOUT ANY WARRANTY; without even the implied warranty of
14     MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
15     GNU General Public License for more details.
16    
17     You should have received a copy of the GNU General Public License
18 pcg 1.7 along with gvpe; if not, write to the Free Software
19 pcg 1.1 Foundation, Inc. 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
20     */
21    
22     #include "config.h"
23    
24     #if ENABLE_DNS
25    
26     // dns processing is EXTREMELY ugly. For obvious(?) reasons.
27     // it's a hack, use only in emergency situations please.
28    
29     #include <cstring>
30 pcg 1.20 #include <cassert>
31 pcg 1.1
32     #include <sys/types.h>
33     #include <sys/socket.h>
34     #include <sys/wait.h>
35     #include <sys/uio.h>
36     #include <errno.h>
37     #include <time.h>
38     #include <unistd.h>
39     #include <fcntl.h>
40    
41     #include <map>
42    
43 pcg 1.8 #include <gmp.h>
44    
45 pcg 1.1 #include "netcompat.h"
46    
47     #include "vpn.h"
48    
49 pcg 1.30 #define MAX_POLL_INTERVAL 5. // how often to poll minimally when the server has no data
50 pcg 1.10 #define ACTIVITY_INTERVAL 5.
51    
52 pcg 1.34 #define TIMEOUT_FACTOR 2.
53 pcg 1.31
54 pcg 1.17 #define INITIAL_TIMEOUT 0.1 // retry timeouts
55     #define INITIAL_SYN_TIMEOUT 10. // retry timeout for initial syn
56 pcg 1.10
57 pcg 1.30 #define MIN_SEND_INTERVAL 0.001 // wait at least this time between sending requests
58 pcg 1.27 #define MAX_SEND_INTERVAL 2. // optimistic?
59 pcg 1.1
60 pcg 1.25 #define LATENCY_FACTOR 0.5 // RTT * LATENCY_FACTOR == sending rate
61 pcg 1.31 #define MAX_OUTSTANDING 100 // max. outstanding requests
62 pcg 1.17 #define MAX_WINDOW 1000 // max. for MAX_OUTSTANDING, and backlog
63 pcg 1.35 #define MAX_BACKLOG (64*1024) // size of gvpe protocol backlog (bytes), must be > MAXSIZE
64 pcg 1.5
65 pcg 1.34 #define MAX_DOMAIN_SIZE 240 // 255 is legal limit, but bind doesn't compress well
66 pcg 1.5 // 240 leaves about 4 bytes of server reply data
67 pcg 1.33 // every request byte less give room for two reply bytes
68 pcg 1.5
69 pcg 1.32 #define SEQNO_MASK 0x3fff
70 pcg 1.8 #define SEQNO_EQ(a,b) ( 0 == ( ((a) ^ (b)) & SEQNO_MASK) )
71 pcg 1.1
72 pcg 1.8 #define MAX_LBL_SIZE 63
73     #define MAX_PKT_SIZE 512
74 pcg 1.1
75 pcg 1.10 #define RR_TYPE_A 1
76     #define RR_TYPE_NULL 10
77     #define RR_TYPE_TXT 16
78 pcg 1.8 #define RR_TYPE_ANY 255
79 pcg 1.10
80     #define RR_CLASS_IN 1
81    
82     #define CMD_IP_1 207
83     #define CMD_IP_2 46
84     #define CMD_IP_3 236
85     #define CMD_IP_RST 29
86     #define CMD_IP_SYN 113
87     #define CMD_IP_REJ 32
88 pcg 1.1
89 pcg 1.8 // works for cmaps up to 255 (not 256!)
90     struct charmap
91     {
92     enum { INVALID = (u8)255 };
93 pcg 1.1
94 pcg 1.8 char encode [256]; // index => char
95     u8 decode [256]; // char => index
96     unsigned int size;
97 pcg 1.2
98 pcg 1.8 charmap (const char *cmap);
99     };
100    
101     charmap::charmap (const char *cmap)
102     {
103     char *enc = encode;
104     u8 *dec = decode;
105 pcg 1.2
106 pcg 1.8 memset (enc, (char) 0, 256);
107     memset (dec, (char)INVALID, 256);
108 pcg 1.1
109 pcg 1.8 for (size = 0; cmap [size]; size++)
110     {
111     enc [size] = cmap [size];
112     dec [(u8)enc [size]] = size;
113     }
114 pcg 1.1
115 pcg 1.8 assert (size < 256);
116     }
117 pcg 1.2
118 pcg 1.8 #define MAX_DEC_LEN 500
119     #define MAX_ENC_LEN (MAX_DEC_LEN * 2)
120     #define MAX_LIMBS ((MAX_DEC_LEN * 8 + GMP_NUMB_BITS - 1) / GMP_NUMB_BITS)
121 pcg 1.2
122 pcg 1.8 // ugly. minimum base is 16(!)
123     struct basecoder
124 pcg 1.2 {
125 pcg 1.8 charmap cmap;
126     unsigned int enc_len [MAX_DEC_LEN];
127     unsigned int dec_len [MAX_ENC_LEN];
128 pcg 1.2
129 pcg 1.8 unsigned int encode_len (unsigned int len);
130     unsigned int decode_len (unsigned int len);
131    
132     unsigned int encode (char *dst, u8 *src, unsigned int len);
133     unsigned int decode (u8 *dst, char *src, unsigned int len);
134    
135     basecoder (const char *cmap);
136     };
137    
138     basecoder::basecoder (const char *cmap)
139     : cmap (cmap)
140     {
141     for (unsigned int len = 0; len < MAX_DEC_LEN; ++len)
142     {
143     u8 src [MAX_DEC_LEN];
144     u8 dst [MAX_ENC_LEN];
145 pcg 1.2
146 pcg 1.8 memset (src, 255, len);
147 pcg 1.2
148 pcg 1.8 mp_limb_t m [MAX_LIMBS];
149     mp_size_t n;
150    
151     n = mpn_set_str (m, src, len, 256);
152     n = mpn_get_str (dst, this->cmap.size, m, n);
153    
154     for (int i = 0; !dst [i]; ++i)
155     n--;
156    
157     enc_len [len] = n;
158     dec_len [n] = len;
159     }
160     }
161    
162     unsigned int basecoder::encode_len (unsigned int len)
163     {
164     return enc_len [len];
165     }
166 pcg 1.2
167 pcg 1.8 unsigned int basecoder::decode_len (unsigned int len)
168 pcg 1.2 {
169 pcg 1.8 while (len && !dec_len [len])
170     --len;
171    
172     return dec_len [len];
173 pcg 1.2 }
174    
175 pcg 1.8 unsigned int basecoder::encode (char *dst, u8 *src, unsigned int len)
176 pcg 1.2 {
177 pcg 1.10 if (!len || len > MAX_DEC_LEN)
178 pcg 1.8 return 0;
179    
180     int elen = encode_len (len);
181    
182     mp_limb_t m [MAX_LIMBS];
183     mp_size_t n;
184    
185     u8 dst_ [MAX_ENC_LEN];
186    
187     n = mpn_set_str (m, src, len, 256);
188     n = mpn_get_str (dst_, cmap.size, m, n);
189    
190     int plen = elen; // for padding
191 pcg 1.2
192 pcg 1.8 while (n < plen)
193 pcg 1.2 {
194 pcg 1.8 *dst++ = cmap.encode [0];
195     plen--;
196 pcg 1.2 }
197    
198 pcg 1.8 for (unsigned int i = n - plen; i < n; ++i)
199     *dst++ = cmap.encode [dst_ [i]];
200 pcg 1.4
201 pcg 1.8 return elen;
202 pcg 1.2 }
203    
204 pcg 1.8 unsigned int basecoder::decode (u8 *dst, char *src, unsigned int len)
205 pcg 1.2 {
206 pcg 1.10 if (!len || len > MAX_ENC_LEN)
207 pcg 1.8 return 0;
208    
209     u8 src_ [MAX_ENC_LEN];
210     unsigned int elen = 0;
211 pcg 1.2
212     while (len--)
213     {
214 pcg 1.8 u8 val = cmap.decode [(u8)*src++];
215 pcg 1.2
216 pcg 1.8 if (val != charmap::INVALID)
217     src_ [elen++] = val;
218     }
219    
220     int dlen = decode_len (elen);
221    
222     mp_limb_t m [MAX_LIMBS];
223     mp_size_t n;
224    
225     u8 dst_ [MAX_DEC_LEN];
226 pcg 1.2
227 pcg 1.8 n = mpn_set_str (m, src_, elen, cmap.size);
228     n = mpn_get_str (dst_, 256, m, n);
229 pcg 1.2
230 pcg 1.8 if (n < dlen)
231     {
232     memset (dst, 0, dlen - n);
233     memcpy (dst + dlen - n, dst_, n);
234 pcg 1.2 }
235 pcg 1.8 else
236     memcpy (dst, dst_ + n - dlen, dlen);
237 pcg 1.4
238 pcg 1.8 return dlen;
239     }
240    
241     #if 0
242     struct test { test (); } test;
243    
244     test::test ()
245     {
246     basecoder cdc ("0123456789abcdefghijklmnopqrstuvwxyz");
247    
248     u8 in[] = "0123456789abcdefghijklmnopqrstuvwxyz";
249     static char enc[200];
250     static u8 dec[200];
251    
252     for (int i = 1; i < 20; i++)
253     {
254     int elen = cdc.encode (enc, in, i);
255     int dlen = cdc.decode (dec, enc, elen);
256    
257     printf ("%d>%d>%d (%s>%s)\n", i, elen, dlen, enc, dec);
258     }
259     abort ();
260     }
261     #endif
262    
263 pcg 1.10 //static basecoder cdc64 ("_dDpPhHzZrR06QqMmjJkKBb34TtSsvVlL81xXaAeEFf92WwGgYyoO57UucCNniI-");
264 pcg 1.8 //static basecoder cdc63 ("_dDpPhHzZrR06QqMmjJkKBb34TtSsvVlL81xXaAeEFf92WwGgYyoO57UucCNniI");
265     static basecoder cdc62 ("dDpPhHzZrR06QqMmjJkKBb34TtSsvVlL81xXaAeEFf92WwGgYyoO57UucCNniI");
266     //static basecoder cdc36 ("dphzr06qmjkb34tsvl81xaef92wgyo57ucni"); // unused as of yet
267     static basecoder cdc26 ("dPhZrQmJkBtSvLxAeFwGyO");
268    
269     /////////////////////////////////////////////////////////////////////////////
270    
271     #define HDRSIZE 6
272 pcg 1.24
273 pcg 1.17 inline void encode_header (char *data, int clientid, int seqno, int retry = 0)
274 pcg 1.8 {
275 pcg 1.17 seqno &= SEQNO_MASK;
276    
277     u8 hdr[3] = {
278     clientid,
279     (seqno >> 8) | (retry << 6),
280     seqno,
281     };
282 pcg 1.8
283     assert (clientid < 256);
284    
285     cdc26.encode (data, hdr, 3);
286     }
287    
288     inline void decode_header (char *data, int &clientid, int &seqno)
289     {
290     u8 hdr[3];
291    
292     cdc26.decode (hdr, data, HDRSIZE);
293    
294     clientid = hdr[0];
295 pcg 1.17 seqno = ((hdr[1] << 8) | hdr[2]) & SEQNO_MASK;
296 pcg 1.4 }
297    
298     /////////////////////////////////////////////////////////////////////////////
299    
300     struct byte_stream
301     {
302     u8 *data;
303     int maxsize;
304     int fill;
305    
306     byte_stream (int maxsize);
307     ~byte_stream ();
308    
309     bool empty () { return !fill; }
310     int size () { return fill; }
311    
312 pcg 1.5 bool put (u8 *data, unsigned int datalen);
313 pcg 1.4 bool put (vpn_packet *pkt);
314     vpn_packet *get ();
315    
316     u8 *begin () { return data; }
317     void remove (int count);
318     };
319    
320     byte_stream::byte_stream (int maxsize)
321     : maxsize (maxsize), fill (0)
322     {
323     data = new u8 [maxsize];
324     }
325    
326     byte_stream::~byte_stream ()
327     {
328     delete data;
329     }
330    
331     void byte_stream::remove (int count)
332     {
333     if (count > fill)
334 pcg 1.17 assert (count <= fill);
335 pcg 1.4
336     memmove (data, data + count, fill -= count);
337     }
338    
339 pcg 1.5 bool byte_stream::put (u8 *data, unsigned int datalen)
340     {
341     if (maxsize - fill < datalen)
342     return false;
343    
344     memcpy (this->data + fill, data, datalen); fill += datalen;
345    
346     return true;
347     }
348    
349 pcg 1.4 bool byte_stream::put (vpn_packet *pkt)
350     {
351     if (maxsize - fill < pkt->len + 2)
352     return false;
353    
354     data [fill++] = pkt->len >> 8;
355     data [fill++] = pkt->len;
356    
357 pcg 1.10 memcpy (data + fill, pkt->at (0), pkt->len); fill += pkt->len;
358 pcg 1.4
359     return true;
360     }
361    
362     vpn_packet *byte_stream::get ()
363     {
364 pcg 1.18 unsigned int len;
365    
366     for (;;)
367     {
368     len = (data [0] << 8) | data [1];
369 pcg 1.4
370 pcg 1.18 if (len <= MAXSIZE || fill < 2)
371     break;
372 pcg 1.5
373 pcg 1.18 // TODO: handle this better than skipping, e.g. by reset
374     slog (L_DEBUG, _("DNS: corrupted packet stream skipping a byte..."));
375     remove (1);
376     }
377    
378 pcg 1.4 if (fill < len + 2)
379     return 0;
380    
381     vpn_packet *pkt = new vpn_packet;
382 pcg 1.5
383     pkt->len = len;
384 pcg 1.10 memcpy (pkt->at (0), data + 2, len);
385 pcg 1.4 remove (len + 2);
386    
387     return pkt;
388 pcg 1.2 }
389    
390 pcg 1.3 /////////////////////////////////////////////////////////////////////////////
391    
392 pcg 1.2 #define FLAG_QUERY ( 0 << 15)
393     #define FLAG_RESPONSE ( 1 << 15)
394 pcg 1.9 #define FLAG_OP_MASK (15 << 11)
395 pcg 1.2 #define FLAG_OP_QUERY ( 0 << 11)
396     #define FLAG_AA ( 1 << 10)
397     #define FLAG_TC ( 1 << 9)
398     #define FLAG_RD ( 1 << 8)
399     #define FLAG_RA ( 1 << 7)
400 pcg 1.5 #define FLAG_AUTH ( 1 << 5)
401 pcg 1.2 #define FLAG_RCODE_MASK (15 << 0)
402     #define FLAG_RCODE_OK ( 0 << 0)
403     #define FLAG_RCODE_FORMERR ( 1 << 0)
404     #define FLAG_RCODE_SERVFAIL ( 2 << 0)
405     #define FLAG_RCODE_NXDOMAIN ( 3 << 0)
406     #define FLAG_RCODE_REFUSED ( 5 << 0)
407    
408     #define DEFAULT_CLIENT_FLAGS (FLAG_QUERY | FLAG_OP_QUERY | FLAG_RD)
409 pcg 1.5 #define DEFAULT_SERVER_FLAGS (FLAG_RESPONSE | FLAG_OP_QUERY | FLAG_AA | FLAG_RD | FLAG_RA)
410 pcg 1.2
411 pcg 1.10 struct dns_cfg
412     {
413     static int next_uid;
414    
415     u8 id1, id2, id3, id4;
416 pcg 1.24
417 pcg 1.10 u8 version;
418 pcg 1.24 u8 flags;
419 pcg 1.10 u8 rrtype;
420     u8 def_ttl;
421 pcg 1.24
422 pcg 1.10 u16 client;
423     u16 uid; // to make request unique
424    
425 pcg 1.24 u16 max_size;
426     u8 seq_cdc;
427     u8 req_cdc;
428    
429     u8 rep_cdc;
430 pcg 1.30 u8 delay; // time in 0.01s units that the server may delay replying packets
431     u8 r3, r4;
432 pcg 1.24
433     u8 r5, r6, r7, r8;
434 pcg 1.10
435     void reset (int clientid);
436     bool valid ();
437     };
438    
439     int dns_cfg::next_uid;
440    
441     void dns_cfg::reset (int clientid)
442     {
443     id1 = 'G';
444     id2 = 'V';
445     id3 = 'P';
446     id4 = 'E';
447    
448     version = 1;
449    
450     rrtype = RR_TYPE_TXT;
451     flags = 0;
452 pcg 1.24 def_ttl = 0;
453     seq_cdc = 26;
454     req_cdc = 62;
455     rep_cdc = 0;
456 pcg 1.27 max_size = htons (MAX_PKT_SIZE);
457     client = htons (clientid);
458 pcg 1.10 uid = next_uid++;
459 pcg 1.30 delay = 0;
460 pcg 1.10
461 pcg 1.30 r3 = r4 = 0;
462 pcg 1.24 r4 = r5 = r6 = r7 = 0;
463 pcg 1.10 }
464    
465     bool dns_cfg::valid ()
466     {
467     return id1 == 'G'
468     && id2 == 'V'
469     && id3 == 'P'
470     && id4 == 'E'
471 pcg 1.24 && seq_cdc == 26
472     && req_cdc == 62
473     && rep_cdc == 0
474 pcg 1.27 && version == 1;
475 pcg 1.10 }
476    
477 pcg 1.2 struct dns_packet : net_packet
478     {
479     u16 id;
480     u16 flags; // QR:1 Opcode:4 AA:1 TC:1 RD:1 RA:1 Z:3 RCODE:4
481     u16 qdcount, ancount, nscount, arcount;
482    
483 pcg 1.24 u8 data [MAXSIZE - 6 * 2];
484 pcg 1.2
485     int decode_label (char *data, int size, int &offs);
486     };
487    
488     int dns_packet::decode_label (char *data, int size, int &offs)
489     {
490     char *orig = data;
491    
492     memset (data, 0, size);
493    
494     while (offs < size - 1)
495     {
496     u8 len = (*this)[offs++];
497    
498     if (!len)
499     break;
500     else if (len < 64)
501     {
502     if (size < len + 1 || offs + len >= MAXSIZE - 1)
503     break;
504    
505     memcpy (data, &((*this)[offs]), len);
506    
507     data += len; size -= len; offs += len;
508     *data++ = '.'; size--;
509     }
510     else
511     {
512     int offs2 = ((len & 63) << 8) + (*this)[offs++];
513    
514     data += decode_label (data, size, offs2);
515     break;
516     }
517     }
518    
519     return data - orig;
520     }
521    
522 pcg 1.3 /////////////////////////////////////////////////////////////////////////////
523    
524 pcg 1.18 static u16 dns_id = 0; // TODO: should be per-vpn
525    
526     static u16 next_id ()
527     {
528     if (!dns_id)
529     dns_id = time (0);
530    
531     // the simplest lsfr with periodicity 65535 i could find
532     dns_id = (dns_id << 1)
533     | (((dns_id >> 1)
534     ^ (dns_id >> 2)
535     ^ (dns_id >> 4)
536     ^ (dns_id >> 15)) & 1);
537    
538     return dns_id;
539     }
540    
541     struct dns_rcv;
542     struct dns_snd;
543    
544     struct dns_connection
545     {
546     connection *c;
547     struct vpn *vpn;
548    
549     dns_cfg cfg;
550    
551     bool established;
552    
553     tstamp last_received;
554     tstamp last_sent;
555 pcg 1.25 double min_latency;
556 pcg 1.18 double poll_interval, send_interval;
557    
558     vector<dns_rcv *> rcvpq;
559    
560 pcg 1.31 byte_stream rcvdq; int rcvseq; int repseq;
561 pcg 1.18 byte_stream snddq; int sndseq;
562    
563     void time_cb (time_watcher &w); time_watcher tw;
564     void receive_rep (dns_rcv *r);
565    
566     dns_connection (connection *c);
567     ~dns_connection ();
568     };
569    
570 pcg 1.10 struct dns_snd
571 pcg 1.3 {
572     dns_packet *pkt;
573 pcg 1.10 tstamp timeout, sent;
574 pcg 1.3 int retry;
575 pcg 1.9 struct dns_connection *dns;
576 pcg 1.5 int seqno;
577 pcg 1.17 bool stdhdr;
578 pcg 1.3
579 pcg 1.9 void gen_stream_req (int seqno, byte_stream &stream);
580 pcg 1.18 void gen_syn_req ();
581 pcg 1.11
582     dns_snd (dns_connection *dns);
583     ~dns_snd ();
584 pcg 1.3 };
585    
586 pcg 1.10 dns_snd::dns_snd (dns_connection *dns)
587 pcg 1.9 : dns (dns)
588 pcg 1.3 {
589 pcg 1.10 timeout = 0;
590 pcg 1.3 retry = 0;
591 pcg 1.10 seqno = 0;
592 pcg 1.11 sent = NOW;
593 pcg 1.17 stdhdr = false;
594 pcg 1.3
595     pkt = new dns_packet;
596    
597 pcg 1.5 pkt->id = next_id ();
598     }
599    
600 pcg 1.11 dns_snd::~dns_snd ()
601     {
602     delete pkt;
603     }
604    
605 pcg 1.10 static void append_domain (dns_packet &pkt, int &offs, const char *domain)
606     {
607     // add tunnel domain
608     for (;;)
609     {
610     const char *end = strchr (domain, '.');
611    
612     if (!end)
613     end = domain + strlen (domain);
614    
615     int len = end - domain;
616    
617     pkt [offs++] = len;
618     memcpy (pkt.at (offs), domain, len);
619     offs += len;
620    
621     if (!*end)
622     break;
623    
624     domain = end + 1;
625     }
626     }
627    
628     void dns_snd::gen_stream_req (int seqno, byte_stream &stream)
629 pcg 1.5 {
630 pcg 1.17 stdhdr = true;
631 pcg 1.5 this->seqno = seqno;
632    
633 pcg 1.10 timeout = NOW + INITIAL_TIMEOUT;
634    
635 pcg 1.5 pkt->flags = htons (DEFAULT_CLIENT_FLAGS);
636 pcg 1.4 pkt->qdcount = htons (1);
637 pcg 1.3
638 pcg 1.4 int offs = 6*2;
639 pcg 1.19 int dlen = MAX_DOMAIN_SIZE - (strlen (dns->c->conf->domain) + 2);
640 pcg 1.5 // MAX_DOMAIN_SIZE is technically 255, but bind doesn't compress responses well,
641     // so we need to have space for 2*MAX_DOMAIN_SIZE + header + extra
642    
643 pcg 1.8 char enc[256], *encp = enc;
644     encode_header (enc, THISNODE->id, seqno);
645 pcg 1.4
646 pcg 1.8 int datalen = cdc62.decode_len (dlen - (dlen + MAX_LBL_SIZE - 1) / MAX_LBL_SIZE - HDRSIZE);
647 pcg 1.4
648 pcg 1.9 if (datalen > stream.size ())
649     datalen = stream.size ();
650 pcg 1.8
651 pcg 1.9 int enclen = cdc62.encode (enc + HDRSIZE, stream.begin (), datalen) + HDRSIZE;
652     stream.remove (datalen);
653 pcg 1.4
654 pcg 1.5 while (enclen)
655     {
656     int lbllen = enclen < MAX_LBL_SIZE ? enclen : MAX_LBL_SIZE;
657    
658     (*pkt)[offs++] = lbllen;
659     memcpy (pkt->at (offs), encp, lbllen);
660 pcg 1.4
661 pcg 1.5 offs += lbllen;
662     encp += lbllen;
663 pcg 1.4
664 pcg 1.5 enclen -= lbllen;
665 pcg 1.4 }
666    
667 pcg 1.19 append_domain (*pkt, offs, dns->c->conf->domain);
668 pcg 1.3
669 pcg 1.10 (*pkt)[offs++] = 0;
670     (*pkt)[offs++] = RR_TYPE_ANY >> 8; (*pkt)[offs++] = RR_TYPE_ANY;
671     (*pkt)[offs++] = RR_CLASS_IN >> 8; (*pkt)[offs++] = RR_CLASS_IN;
672    
673     pkt->len = offs;
674     }
675    
676 pcg 1.18 void dns_snd::gen_syn_req ()
677 pcg 1.10 {
678     timeout = NOW + INITIAL_SYN_TIMEOUT;
679 pcg 1.4
680 pcg 1.10 pkt->flags = htons (DEFAULT_CLIENT_FLAGS);
681     pkt->qdcount = htons (1);
682 pcg 1.4
683 pcg 1.18 int offs = 6 * 2;
684 pcg 1.4
685 pcg 1.18 int elen = cdc26.encode ((char *)pkt->at (offs + 1), (u8 *)&dns->cfg, sizeof (dns_cfg));
686 pcg 1.4
687 pcg 1.10 assert (elen <= MAX_LBL_SIZE);
688 pcg 1.4
689 pcg 1.10 (*pkt)[offs] = elen;
690     offs += elen + 1;
691 pcg 1.19 append_domain (*pkt, offs, dns->c->conf->domain);
692 pcg 1.4
693     (*pkt)[offs++] = 0;
694 pcg 1.10 (*pkt)[offs++] = RR_TYPE_A >> 8; (*pkt)[offs++] = RR_TYPE_A;
695 pcg 1.4 (*pkt)[offs++] = RR_CLASS_IN >> 8; (*pkt)[offs++] = RR_CLASS_IN;
696    
697     pkt->len = offs;
698 pcg 1.5 }
699    
700     struct dns_rcv
701     {
702     int seqno;
703     dns_packet *pkt; // reply packet
704     u8 data [MAXSIZE]; // actually part of the reply packet...
705     int datalen;
706    
707 pcg 1.6 dns_rcv (int seqno, u8 *data, int datalen);
708 pcg 1.5 ~dns_rcv ();
709     };
710    
711 pcg 1.6 dns_rcv::dns_rcv (int seqno, u8 *data, int datalen)
712 pcg 1.5 : seqno (seqno), pkt (new dns_packet), datalen (datalen)
713     {
714     memcpy (this->data, data, datalen);
715     }
716 pcg 1.4
717 pcg 1.5 dns_rcv::~dns_rcv ()
718     {
719     delete pkt;
720 pcg 1.3 }
721    
722     /////////////////////////////////////////////////////////////////////////////
723 pcg 1.9
724     dns_connection::dns_connection (connection *c)
725     : c (c)
726     , rcvdq (MAX_BACKLOG * 2)
727 pcg 1.31 , snddq (MAX_BACKLOG)
728 pcg 1.9 , tw (this, &dns_connection::time_cb)
729     {
730     vpn = c->vpn;
731    
732 pcg 1.10 established = false;
733    
734 pcg 1.31 rcvseq = repseq = sndseq = 0;
735 pcg 1.10
736     last_sent = last_received = 0;
737 pcg 1.30 poll_interval = 0.5; // starting here
738 pcg 1.17 send_interval = 0.5; // starting rate
739 pcg 1.25 min_latency = INITIAL_TIMEOUT;
740 pcg 1.9 }
741    
742     dns_connection::~dns_connection ()
743     {
744     for (vector<dns_rcv *>::iterator i = rcvpq.begin ();
745     i != rcvpq.end ();
746     ++i)
747     delete *i;
748     }
749 pcg 1.3
750 pcg 1.10 void dns_connection::receive_rep (dns_rcv *r)
751 pcg 1.2 {
752 pcg 1.10 if (r->datalen)
753     {
754     last_received = NOW;
755     tw.trigger ();
756    
757 pcg 1.12 poll_interval = send_interval;
758 pcg 1.10 }
759     else
760     {
761 pcg 1.17 poll_interval *= 1.5;
762 pcg 1.25
763 pcg 1.10 if (poll_interval > MAX_POLL_INTERVAL)
764     poll_interval = MAX_POLL_INTERVAL;
765     }
766 pcg 1.2
767 pcg 1.9 rcvpq.push_back (r);
768 pcg 1.5
769     redo:
770    
771 pcg 1.8 // find next packet
772 pcg 1.9 for (vector<dns_rcv *>::iterator i = rcvpq.end (); i-- != rcvpq.begin (); )
773     if (SEQNO_EQ (rcvseq, (*i)->seqno))
774 pcg 1.5 {
775 pcg 1.8 // enter the packet into our input stream
776     r = *i;
777    
778     // remove the oldest packet, look forward, as it's oldest first
779 pcg 1.9 for (vector<dns_rcv *>::iterator j = rcvpq.begin (); j != rcvpq.end (); ++j)
780     if (SEQNO_EQ ((*j)->seqno, rcvseq - MAX_WINDOW))
781 pcg 1.8 {
782     delete *j;
783 pcg 1.9 rcvpq.erase (j);
784 pcg 1.8 break;
785     }
786 pcg 1.5
787 pcg 1.9 rcvseq = (rcvseq + 1) & SEQNO_MASK;
788 pcg 1.5
789 pcg 1.9 if (!rcvdq.put (r->data, r->datalen))
790 pcg 1.17 {
791     slog (L_ERR, "DNS: !rcvdq.put (r->data, r->datalen)");
792     abort (); // MUST never overflow, can be caused by data corruption, TODO
793     }
794 pcg 1.5
795 pcg 1.9 while (vpn_packet *pkt = rcvdq.get ())
796 pcg 1.5 {
797     sockinfo si;
798 pcg 1.33 si.host = htonl (c->conf->id); si.port = 0; si.prot = PROT_DNSv4;
799 pcg 1.5
800     vpn->recv_vpn_packet (pkt, si);
801 pcg 1.11
802     delete pkt;
803 pcg 1.5 }
804 pcg 1.8
805     // check for further packets
806 pcg 1.5 goto redo;
807     }
808     }
809    
810 pcg 1.10 void
811     vpn::dnsv4_server (dns_packet &pkt)
812 pcg 1.2 {
813 pcg 1.10 u16 flags = ntohs (pkt.flags);
814 pcg 1.2
815 pcg 1.4 int offs = 6 * 2; // skip header
816 pcg 1.2
817 pcg 1.10 pkt.flags = htons (DEFAULT_SERVER_FLAGS | FLAG_RCODE_FORMERR);
818 pcg 1.2
819 pcg 1.10 if (0 == (flags & (FLAG_RESPONSE | FLAG_OP_MASK))
820     && pkt.qdcount == htons (1))
821 pcg 1.4 {
822 pcg 1.24 char qname [MAXSIZE];
823 pcg 1.10 int qlen = pkt.decode_label ((char *)qname, MAXSIZE - offs, offs);
824 pcg 1.4
825 pcg 1.10 u16 qtype = pkt [offs++] << 8; qtype |= pkt [offs++];
826     u16 qclass = pkt [offs++] << 8; qclass |= pkt [offs++];
827 pcg 1.2
828 pcg 1.10 pkt.qdcount = htons (1);
829     pkt.ancount = 0;
830     pkt.nscount = 0; // should be self, as other nameservers reply like this
831     pkt.arcount = 0; // a record for self, as other nameservers reply like this
832 pcg 1.2
833 pcg 1.16 pkt.flags = htons (DEFAULT_SERVER_FLAGS | FLAG_RCODE_SERVFAIL);
834 pcg 1.2
835 pcg 1.4 int dlen = strlen (THISNODE->domain);
836 pcg 1.2
837 pcg 1.4 if (qclass == RR_CLASS_IN
838 pcg 1.10 && qlen > dlen + 1
839 pcg 1.24 && !memcmp (qname + qlen - (dlen + 1), THISNODE->domain, dlen))
840 pcg 1.2 {
841 pcg 1.10 // now generate reply
842     pkt.ancount = htons (1); // one answer RR
843     pkt.flags = htons (DEFAULT_SERVER_FLAGS | FLAG_RCODE_OK);
844    
845     if ((qtype == RR_TYPE_ANY
846     || qtype == RR_TYPE_TXT
847     || qtype == RR_TYPE_NULL)
848     && qlen > dlen + 1 + HDRSIZE)
849 pcg 1.5 {
850 pcg 1.10 // correct class, domain: parse
851     int client, seqno;
852     decode_header (qname, client, seqno);
853 pcg 1.5
854 pcg 1.10 u8 data[MAXSIZE];
855     int datalen = cdc62.decode (data, qname + HDRSIZE, qlen - (dlen + 1 + HDRSIZE));
856 pcg 1.9
857 pcg 1.10 if (0 < client && client <= conns.size ())
858     {
859     connection *c = conns [client - 1];
860     dns_connection *dns = c->dns;
861     dns_rcv *rcv;
862    
863     if (dns)
864     {
865     for (vector<dns_rcv *>::iterator i = dns->rcvpq.end (); i-- != dns->rcvpq.begin (); )
866     if (SEQNO_EQ ((*i)->seqno, seqno))
867     {
868     // already seen that request: simply reply with the cached reply
869     dns_rcv *r = *i;
870    
871 pcg 1.17 slog (L_DEBUG, "DNS: duplicate packet received ID %d, SEQ %d", htons (r->pkt->id), seqno);
872    
873     // refresh header & id, as the retry count could have changed
874     memcpy (r->pkt->at (6 * 2 + 1), pkt.at (6 * 2 + 1), HDRSIZE);
875     r->pkt->id = pkt.id;
876 pcg 1.10
877     memcpy (pkt.at (0), r->pkt->at (0), offs = r->pkt->len);
878 pcg 1.17
879 pcg 1.10 goto duplicate_request;
880     }
881    
882     // new packet, queue
883     rcv = new dns_rcv (seqno, data, datalen);
884     dns->receive_rep (rcv);
885     }
886    
887 pcg 1.21 {
888     pkt [offs++] = 0xc0; pkt [offs++] = 6 * 2; // refer to name in query section
889    
890     int rtype = dns ? dns->cfg.rrtype : RR_TYPE_A;
891     pkt [offs++] = rtype >> 8; pkt [offs++] = rtype; // type
892     pkt [offs++] = RR_CLASS_IN >> 8; pkt [offs++] = RR_CLASS_IN; // class
893     pkt [offs++] = 0; pkt [offs++] = 0;
894     pkt [offs++] = 0; pkt [offs++] = dns ? dns->cfg.def_ttl : 0; // TTL
895    
896     int rdlen_offs = offs += 2;
897 pcg 1.10
898 pcg 1.21 if (dns)
899     {
900 pcg 1.27 int dlen = ntohs (dns->cfg.max_size) - offs;
901    
902     // bind doesn't compress well, so reduce further by one label length
903     dlen -= qlen;
904    
905 pcg 1.21 // only put data into in-order sequence packets, if
906     // we receive out-of-order packets we generate empty
907     // replies
908 pcg 1.31 //printf ("%d - %d & %x (=%d) < %d\n", seqno, dns->repseq, SEQNO_MASK, (seqno - dns->repseq) & SEQNO_MASK, MAX_WINDOW);//D
909     if (((seqno - dns->repseq) & SEQNO_MASK) <= MAX_WINDOW)
910 pcg 1.21 {
911 pcg 1.31 dns->repseq = seqno;
912 pcg 1.10
913 pcg 1.31 while (dlen > 1 && !dns->snddq.empty ())
914     {
915     int txtlen = dlen <= 255 ? dlen - 1 : 255;
916    
917     if (txtlen > dns->snddq.size ())
918     txtlen = dns->snddq.size ();
919    
920     pkt[offs++] = txtlen;
921     memcpy (pkt.at (offs), dns->snddq.begin (), txtlen);
922     offs += txtlen;
923     dns->snddq.remove (txtlen);
924 pcg 1.10
925 pcg 1.31 dlen -= txtlen + 1;
926     }
927 pcg 1.21 }
928    
929 pcg 1.31 // avoid completely empty TXT rdata
930 pcg 1.21 if (offs == rdlen_offs)
931     pkt[offs++] = 0;
932 pcg 1.15
933 pcg 1.21 slog (L_NOISE, "DNS: snddq %d", dns->snddq.size ());
934     }
935     else
936     {
937     // send RST
938     pkt [offs++] = CMD_IP_1; pkt [offs++] = CMD_IP_2; pkt [offs++] = CMD_IP_3;
939     pkt [offs++] = CMD_IP_RST;
940     }
941 pcg 1.10
942 pcg 1.21 int rdlen = offs - rdlen_offs;
943 pcg 1.10
944 pcg 1.21 pkt [rdlen_offs - 2] = rdlen >> 8;
945     pkt [rdlen_offs - 1] = rdlen;
946 pcg 1.10
947 pcg 1.21 if (dns)
948     {
949     // now update dns_rcv copy
950     rcv->pkt->len = offs;
951     memcpy (rcv->pkt->at (0), pkt.at (0), offs);
952     }
953     }
954 pcg 1.9
955 pcg 1.10 duplicate_request: ;
956     }
957     else
958     pkt.flags = htons (DEFAULT_SERVER_FLAGS | FLAG_RCODE_FORMERR);
959     }
960     else if (qtype == RR_TYPE_A
961     && qlen > dlen + 1 + cdc26.encode_len (sizeof (dns_cfg)))
962     {
963     dns_cfg cfg;
964     cdc26.decode ((u8 *)&cfg, qname, cdc26.encode_len (sizeof (dns_cfg)));
965     int client = ntohs (cfg.client);
966 pcg 1.4
967 pcg 1.10 pkt [offs++] = 0xc0; pkt [offs++] = 6 * 2; // refer to name in query section
968 pcg 1.2
969 pcg 1.10 pkt [offs++] = RR_TYPE_A >> 8; pkt [offs++] = RR_TYPE_A; // type
970     pkt [offs++] = RR_CLASS_IN >> 8; pkt [offs++] = RR_CLASS_IN; // class
971     pkt [offs++] = 0; pkt [offs++] = 0;
972     pkt [offs++] = 0; pkt [offs++] = cfg.def_ttl; // TTL
973     pkt [offs++] = 0; pkt [offs++] = 4; // rdlength
974 pcg 1.2
975 pcg 1.24 slog (L_INFO, _("DNS: client %d connects"), client);
976 pcg 1.2
977 pcg 1.10 pkt [offs++] = CMD_IP_1; pkt [offs++] = CMD_IP_2; pkt [offs++] = CMD_IP_3;
978     pkt [offs++] = CMD_IP_REJ;
979 pcg 1.2
980 pcg 1.10 if (0 < client && client <= conns.size ())
981 pcg 1.5 {
982 pcg 1.10 connection *c = conns [client - 1];
983 pcg 1.2
984 pcg 1.10 if (cfg.valid ())
985     {
986     pkt [offs - 1] = CMD_IP_SYN;
987    
988     delete c->dns;
989     c->dns = new dns_connection (c);
990     c->dns->cfg = cfg;
991     }
992 pcg 1.5 }
993     }
994 pcg 1.2 }
995 pcg 1.6
996 pcg 1.10 pkt.len = offs;
997 pcg 1.4 }
998     }
999    
1000     void
1001 pcg 1.10 vpn::dnsv4_client (dns_packet &pkt)
1002 pcg 1.4 {
1003 pcg 1.10 u16 flags = ntohs (pkt.flags);
1004 pcg 1.4 int offs = 6 * 2; // skip header
1005    
1006 pcg 1.10 pkt.qdcount = ntohs (pkt.qdcount);
1007     pkt.ancount = ntohs (pkt.ancount);
1008 pcg 1.4
1009 pcg 1.5 // go through our request list and find the corresponding request
1010 pcg 1.10 for (vector<dns_snd *>::iterator i = dns_sndpq.begin ();
1011 pcg 1.4 i != dns_sndpq.end ();
1012     ++i)
1013 pcg 1.10 if ((*i)->pkt->id == pkt.id)
1014 pcg 1.4 {
1015 pcg 1.9 dns_connection *dns = (*i)->dns;
1016 pcg 1.12 connection *c = dns->c;
1017 pcg 1.5 int seqno = (*i)->seqno;
1018     u8 data[MAXSIZE], *datap = data;
1019    
1020 pcg 1.10 if ((*i)->retry)
1021     {
1022 pcg 1.17 dns->send_interval *= 1.01;
1023 pcg 1.12 if (dns->send_interval > MAX_SEND_INTERVAL)
1024 pcg 1.10 dns->send_interval = MAX_SEND_INTERVAL;
1025     }
1026     else
1027     {
1028 pcg 1.26 #if 0
1029 pcg 1.17 dns->send_interval *= 0.999;
1030 pcg 1.12 #endif
1031 pcg 1.10 // the latency surely puts an upper bound on
1032     // the minimum send interval
1033 pcg 1.12 double latency = NOW - (*i)->sent;
1034    
1035 pcg 1.25 if (latency < dns->min_latency)
1036     dns->min_latency = latency;
1037    
1038     if (dns->send_interval > dns->min_latency * LATENCY_FACTOR)
1039     dns->send_interval = dns->min_latency * LATENCY_FACTOR;
1040 pcg 1.27
1041     if (dns->send_interval < MIN_SEND_INTERVAL)
1042     dns->send_interval = MIN_SEND_INTERVAL;
1043 pcg 1.10 }
1044    
1045 pcg 1.4 delete *i;
1046     dns_sndpq.erase (i);
1047    
1048 pcg 1.10 if (flags & FLAG_RESPONSE && !(flags & FLAG_OP_MASK))
1049 pcg 1.4 {
1050     char qname[MAXSIZE];
1051    
1052 pcg 1.10 while (pkt.qdcount-- && offs < MAXSIZE - 4)
1053 pcg 1.4 {
1054 pcg 1.10 int qlen = pkt.decode_label ((char *)qname, MAXSIZE - offs, offs);
1055 pcg 1.4 offs += 4; // skip qtype, qclass
1056     }
1057    
1058 pcg 1.10 while (pkt.ancount-- && offs < MAXSIZE - 10 && datap)
1059 pcg 1.4 {
1060 pcg 1.10 int qlen = pkt.decode_label ((char *)qname, MAXSIZE - offs, offs);
1061    
1062     u16 qtype = pkt [offs++] << 8; qtype |= pkt [offs++];
1063     u16 qclass = pkt [offs++] << 8; qclass |= pkt [offs++];
1064     u32 ttl = pkt [offs++] << 24;
1065     ttl |= pkt [offs++] << 16;
1066     ttl |= pkt [offs++] << 8;
1067     ttl |= pkt [offs++];
1068     u16 rdlen = pkt [offs++] << 8; rdlen |= pkt [offs++];
1069 pcg 1.8
1070 pcg 1.10 if (qtype == RR_TYPE_NULL || qtype == RR_TYPE_TXT)
1071     {
1072     if (rdlen <= MAXSIZE - offs)
1073     {
1074     // decode bytes, finally
1075    
1076     while (rdlen)
1077     {
1078     int txtlen = pkt [offs++];
1079 pcg 1.4
1080 pcg 1.10 assert (txtlen + offs < MAXSIZE - 1);
1081 pcg 1.4
1082 pcg 1.10 memcpy (datap, pkt.at (offs), txtlen);
1083     datap += txtlen; offs += txtlen;
1084    
1085     rdlen -= txtlen + 1;
1086     }
1087     }
1088     }
1089     else if (qtype == RR_TYPE_A)
1090 pcg 1.5 {
1091 pcg 1.10 u8 ip [4];
1092 pcg 1.5
1093 pcg 1.10 ip [0] = pkt [offs++];
1094     ip [1] = pkt [offs++];
1095     ip [2] = pkt [offs++];
1096     ip [3] = pkt [offs++];
1097    
1098     if (ip [0] == CMD_IP_1
1099     && ip [1] == CMD_IP_2
1100     && ip [2] == CMD_IP_3)
1101 pcg 1.5 {
1102 pcg 1.17 slog (L_TRACE, _("DNS: got tunnel meta command %02x"), ip [3]);
1103 pcg 1.5
1104 pcg 1.10 if (ip [3] == CMD_IP_RST)
1105     {
1106 pcg 1.17 slog (L_DEBUG, _("DNS: got tunnel RST request"));
1107 pcg 1.10
1108 pcg 1.12 delete dns; c->dns = 0;
1109 pcg 1.10
1110     return;
1111     }
1112     else if (ip [3] == CMD_IP_SYN)
1113 pcg 1.12 {
1114 pcg 1.17 slog (L_DEBUG, _("DNS: got tunnel SYN reply, server likes us."));
1115 pcg 1.12 dns->established = true;
1116     }
1117     else if (ip [3] == CMD_IP_REJ)
1118     {
1119 pcg 1.17 slog (L_DEBUG, _("DNS: got tunnel REJ reply, server does not like us, aborting."));
1120 pcg 1.12 abort ();
1121     }
1122 pcg 1.10 else
1123 pcg 1.17 slog (L_INFO, _("DNS: got unknown meta command %02x"), ip [3]);
1124 pcg 1.10 }
1125     else
1126 pcg 1.17 slog (L_INFO, _("DNS: got spurious a record %d.%d.%d.%d"),
1127 pcg 1.10 ip [0], ip [1], ip [2], ip [3]);
1128 pcg 1.5
1129 pcg 1.10 return;
1130 pcg 1.9 }
1131 pcg 1.4
1132 pcg 1.9 int client, rseqno;
1133     decode_header (qname, client, rseqno);
1134    
1135     if (client != THISNODE->id)
1136     {
1137 pcg 1.17 slog (L_INFO, _("DNS: got dns tunnel response with wrong clientid, ignoring"));
1138 pcg 1.9 datap = 0;
1139     }
1140     else if (rseqno != seqno)
1141     {
1142 pcg 1.17 slog (L_DEBUG, _("DNS: got dns tunnel response with wrong seqno, badly caching nameserver?"));
1143 pcg 1.9 datap = 0;
1144 pcg 1.4 }
1145     }
1146     }
1147    
1148 pcg 1.6 // todo: pkt now used
1149 pcg 1.9 if (datap)
1150     dns->receive_rep (new dns_rcv (seqno, data, datap - data));
1151 pcg 1.5
1152 pcg 1.4 break;
1153     }
1154     }
1155    
1156     void
1157     vpn::dnsv4_ev (io_watcher &w, short revents)
1158     {
1159     if (revents & EVENT_READ)
1160     {
1161     dns_packet *pkt = new dns_packet;
1162     struct sockaddr_in sa;
1163     socklen_t sa_len = sizeof (sa);
1164    
1165 pcg 1.10 pkt->len = recvfrom (w.fd, pkt->at (0), MAXSIZE, 0, (sockaddr *)&sa, &sa_len);
1166 pcg 1.4
1167     if (pkt->len > 0)
1168 pcg 1.5 {
1169 pcg 1.24 if (ntohs (pkt->flags) & FLAG_RESPONSE)
1170     dnsv4_client (*pkt);
1171     else
1172 pcg 1.5 {
1173 pcg 1.10 dnsv4_server (*pkt);
1174     sendto (w.fd, pkt->at (0), pkt->len, 0, (sockaddr *)&sa, sa_len);
1175 pcg 1.5 }
1176 pcg 1.10
1177     delete pkt;
1178 pcg 1.5 }
1179 pcg 1.1 }
1180     }
1181    
1182     bool
1183 pcg 1.18 vpn::send_dnsv4_packet (vpn_packet *pkt, const sockinfo &si, int tos)
1184 pcg 1.3 {
1185 pcg 1.33 int client = ntohl (si.host);
1186 pcg 1.18
1187     assert (0 < client && client <= conns.size ());
1188    
1189     connection *c = conns [client - 1];
1190    
1191     if (!c->dns)
1192     c->dns = new dns_connection (c);
1193 pcg 1.4
1194 pcg 1.31 if (c->dns->snddq.put (pkt))
1195     c->dns->tw.trigger ();
1196 pcg 1.3
1197 pcg 1.31 // always return true even if the buffer overflows
1198 pcg 1.3 return true;
1199     }
1200    
1201 pcg 1.12 void
1202     connection::dnsv4_reset_connection ()
1203     {
1204     //delete dns; dns = 0; //TODO
1205     }
1206    
1207 pcg 1.10 #define NEXT(w) do { if (next > (w)) next = w; } while (0)
1208    
1209 pcg 1.3 void
1210 pcg 1.9 dns_connection::time_cb (time_watcher &w)
1211 pcg 1.1 {
1212 pcg 1.10 // servers have to be polled
1213     if (THISNODE->dns_port)
1214     return;
1215    
1216 pcg 1.3 // check for timeouts and (re)transmit
1217 pcg 1.10 tstamp next = NOW + poll_interval;
1218     dns_snd *send = 0;
1219 pcg 1.3
1220 pcg 1.10 for (vector<dns_snd *>::iterator i = vpn->dns_sndpq.begin ();
1221 pcg 1.4 i != vpn->dns_sndpq.end ();
1222 pcg 1.3 ++i)
1223     {
1224 pcg 1.10 dns_snd *r = *i;
1225 pcg 1.3
1226 pcg 1.10 if (r->timeout <= NOW)
1227 pcg 1.3 {
1228 pcg 1.4 if (!send)
1229     {
1230     send = r;
1231    
1232     r->retry++;
1233 pcg 1.31 r->timeout = NOW + (r->retry * min_latency * TIMEOUT_FACTOR);
1234 pcg 1.17
1235     // the following code changes the query section a bit, forcing
1236     // the forwarder to generate a new request
1237     if (r->stdhdr)
1238     {
1239 pcg 1.27 //printf ("reencoded header for ID %d retry %d:%d:%d (%p)\n", htons (r->pkt->id), THISNODE->id, r->seqno, r->retry);
1240 pcg 1.17 //encode_header ((char *)r->pkt->at (6 * 2 + 1), THISNODE->id, r->seqno, r->retry);
1241     }
1242 pcg 1.4 }
1243 pcg 1.3 }
1244 pcg 1.11 else
1245 pcg 1.10 NEXT (r->timeout);
1246 pcg 1.3 }
1247    
1248 pcg 1.28 if (!send)
1249 pcg 1.5 {
1250 pcg 1.29 // generate a new packet, if wise
1251    
1252     if (!established)
1253 pcg 1.10 {
1254 pcg 1.29 if (vpn->dns_sndpq.empty ())
1255 pcg 1.10 {
1256 pcg 1.29 send = new dns_snd (this);
1257 pcg 1.10
1258 pcg 1.29 cfg.reset (THISNODE->id);
1259     send->gen_syn_req ();
1260 pcg 1.10 }
1261 pcg 1.29 }
1262     else if (vpn->dns_sndpq.size () < MAX_OUTSTANDING
1263     && !SEQNO_EQ (rcvseq, sndseq - (MAX_WINDOW - 1)))
1264     {
1265     if (last_sent + send_interval <= NOW)
1266 pcg 1.10 {
1267 pcg 1.18 //printf ("sending data request etc.\n"); //D
1268 pcg 1.25 if (!snddq.empty () || last_received + 1. > NOW)
1269 pcg 1.17 {
1270     poll_interval = send_interval;
1271     NEXT (NOW + send_interval);
1272     }
1273    
1274 pcg 1.10 send = new dns_snd (this);
1275     send->gen_stream_req (sndseq, snddq);
1276 pcg 1.31 send->timeout = NOW + min_latency * TIMEOUT_FACTOR;
1277 pcg 1.5
1278 pcg 1.10 sndseq = (sndseq + 1) & SEQNO_MASK;
1279     }
1280 pcg 1.29 else
1281     NEXT (last_sent + send_interval);
1282     }
1283 pcg 1.4
1284 pcg 1.29 if (send)
1285     vpn->dns_sndpq.push_back (send);
1286 pcg 1.28 }
1287 pcg 1.4
1288 pcg 1.28 if (send)
1289     {
1290     last_sent = NOW;
1291     sendto (vpn->dnsv4_fd,
1292     send->pkt->at (0), send->pkt->len, 0,
1293     vpn->dns_forwarder.sav4 (), vpn->dns_forwarder.salenv4 ());
1294 pcg 1.4 }
1295 pcg 1.10
1296 pcg 1.27 slog (L_NOISE, "DNS: pi %f si %f N %f (%d:%d %d)",
1297 pcg 1.12 poll_interval, send_interval, next - NOW,
1298 pcg 1.27 vpn->dns_sndpq.size (), snddq.size (),
1299     rcvpq.size ());
1300 pcg 1.11
1301     // TODO: no idea when this happens, but when next < NOW, we have a problem
1302 pcg 1.29 if (next < NOW + 0.001)
1303 pcg 1.11 next = NOW + 0.1;
1304 pcg 1.4
1305 pcg 1.3 w.start (next);
1306 pcg 1.1 }
1307    
1308     #endif
1309