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1 /*
2 * DEBUG: section 12 Internet Cache Protocol (ICP)
3 * AUTHOR: Duane Wessels
4 *
5 * SQUID Web Proxy Cache http://www.squid-cache.org/
6 * ----------------------------------------------------------
7 *
8 * Squid is the result of efforts by numerous individuals from
9 * the Internet community; see the CONTRIBUTORS file for full
10 * details. Many organizations have provided support for Squid's
11 * development; see the SPONSORS file for full details. Squid is
12 * Copyrighted (C) 2001 by the Regents of the University of
13 * California; see the COPYRIGHT file for full details. Squid
14 * incorporates software developed and/or copyrighted by other
15 * sources; see the CREDITS file for full details.
16 *
17 * This program is free software; you can redistribute it and/or modify
18 * it under the terms of the GNU General Public License as published by
19 * the Free Software Foundation; either version 2 of the License, or
20 * (at your option) any later version.
21 *
22 * This program is distributed in the hope that it will be useful,
23 * but WITHOUT ANY WARRANTY; without even the implied warranty of
24 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
25 * GNU General Public License for more details.
26 *
27 * You should have received a copy of the GNU General Public License
28 * along with this program; if not, write to the Free Software
29 * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111, USA.
30 *
31 */
32
33 /**
34 \defgroup ServerProtocolICPInternal2 ICPv2 Internals
35 \ingroup ServerProtocolICPAPI
36 */
37
38 #include "squid.h"
39 #include "AccessLogEntry.h"
40 #include "acl/Acl.h"
41 #include "acl/FilledChecklist.h"
42 #include "client_db.h"
43 #include "comm.h"
44 #include "comm/Connection.h"
45 #include "comm/Loops.h"
46 #include "comm/UdpOpenDialer.h"
47 #include "fd.h"
48 #include "HttpRequest.h"
49 #include "icmp/net_db.h"
50 #include "ICP.h"
51 #include "ip/Address.h"
52 #include "ip/tools.h"
53 #include "ipcache.h"
54 #include "md5.h"
55 #include "multicast.h"
56 #include "neighbors.h"
57 #include "refresh.h"
58 #include "rfc1738.h"
59 #include "SquidConfig.h"
60 #include "SquidTime.h"
61 #include "StatCounters.h"
62 #include "Store.h"
63 #include "store_key_md5.h"
64 #include "SwapDir.h"
65 #include "tools.h"
66 #include "wordlist.h"
67
68 #if HAVE_ERRNO_H
69 #include <errno.h>
70 #endif
71
72 static void icpIncomingConnectionOpened(const Comm::ConnectionPointer &conn, int errNo);
73
74 /// \ingroup ServerProtocolICPInternal2
75 static void icpLogIcp(const Ip::Address &, LogTags, int, const char *, int);
76
77 /// \ingroup ServerProtocolICPInternal2
78 static void icpHandleIcpV2(int, Ip::Address &, char *, int);
79
80 /// \ingroup ServerProtocolICPInternal2
81 static void icpCount(void *, int, size_t, int);
82
83 /**
84 \ingroup ServerProtocolICPInternal2
85 * IcpQueueHead is global so comm_incoming() knows whether or not
86 * to call icpUdpSendQueue.
87 */
88 static icpUdpData *IcpQueueHead = NULL;
89 /// \ingroup ServerProtocolICPInternal2
90 static icpUdpData *IcpQueueTail = NULL;
91
92 /// \ingroup ServerProtocolICPInternal2
93 Comm::ConnectionPointer icpIncomingConn = NULL;
94 /// \ingroup ServerProtocolICPInternal2
95 Comm::ConnectionPointer icpOutgoingConn = NULL;
96
97 /* icp_common_t */
98 _icp_common_t::_icp_common_t() :
99 opcode(ICP_INVALID), version(0), length(0), reqnum(0),
100 flags(0), pad(0), shostid(0)
101 {}
102
103 _icp_common_t::_icp_common_t(char *buf, unsigned int len) :
104 opcode(ICP_INVALID), version(0), reqnum(0), flags(0), pad(0), shostid(0)
105 {
106 if (len < sizeof(_icp_common_t)) {
107 /* mark as invalid */
108 length = len + 1;
109 return;
110 }
111
112 memcpy(this, buf, sizeof(icp_common_t));
113 /*
114 * Convert network order sensitive fields
115 */
116 length = ntohs(length);
117 reqnum = ntohl(reqnum);
118 flags = ntohl(flags);
119 pad = ntohl(pad);
120 }
121
122 icp_opcode
123 _icp_common_t::getOpCode() const
124 {
125 if (opcode > (char)ICP_END)
126 return ICP_INVALID;
127
128 return (icp_opcode)opcode;
129 }
130
131 /* ICPState */
132
133 ICPState::ICPState(icp_common_t &aHeader, HttpRequest *aRequest):
134 header(aHeader),
135 request(aRequest),
136 fd(-1),
137 url(NULL)
138 {
139 HTTPMSGLOCK(request);
140 }
141
142 ICPState::~ICPState()
143 {
144 safe_free(url);
145 HTTPMSGUNLOCK(request);
146 }
147
148 /* End ICPState */
149
150 /* ICP2State */
151
152 /// \ingroup ServerProtocolICPInternal2
153 class ICP2State : public ICPState, public StoreClient
154 {
155
156 public:
157 ICP2State(icp_common_t & aHeader, HttpRequest *aRequest):
158 ICPState(aHeader, aRequest),rtt(0),src_rtt(0),flags(0) {}
159
160 ~ICP2State();
161 void created(StoreEntry * newEntry);
162
163 int rtt;
164 int src_rtt;
165 uint32_t flags;
166 };
167
168 ICP2State::~ICP2State()
169 {}
170
171 void
172 ICP2State::created(StoreEntry *newEntry)
173 {
174 StoreEntry *entry = newEntry->isNull () ? NULL : newEntry;
175 debugs(12, 5, "icpHandleIcpV2: OPCODE " << icp_opcode_str[header.opcode]);
176 icp_opcode codeToSend;
177
178 if (icpCheckUdpHit(entry, request)) {
179 codeToSend = ICP_HIT;
180 } else {
181 #if USE_ICMP
182 if (Config.onoff.test_reachability && rtt == 0) {
183 if ((rtt = netdbHostRtt(request->GetHost())) == 0)
184 netdbPingSite(request->GetHost());
185 }
186 #endif /* USE_ICMP */
187
188 if (icpGetCommonOpcode() != ICP_ERR)
189 codeToSend = icpGetCommonOpcode();
190 else if (Config.onoff.test_reachability && rtt == 0)
191 codeToSend = ICP_MISS_NOFETCH;
192 else
193 codeToSend = ICP_MISS;
194 }
195
196 icpCreateAndSend(codeToSend, flags, url, header.reqnum, src_rtt, fd, from);
197 delete this;
198 }
199
200 /* End ICP2State */
201
202 /// \ingroup ServerProtocolICPInternal2
203 static void
204 icpLogIcp(const Ip::Address &caddr, LogTags logcode, int len, const char *url, int delay)
205 {
206 AccessLogEntry::Pointer al = new AccessLogEntry();
207
208 if (LOG_TAG_NONE == logcode)
209 return;
210
211 if (LOG_ICP_QUERY == logcode)
212 return;
213
214 clientdbUpdate(caddr, logcode, AnyP::PROTO_ICP, len);
215
216 if (!Config.onoff.log_udp)
217 return;
218
219 al->icp.opcode = ICP_QUERY;
220
221 al->url = url;
222
223 al->cache.caddr = caddr;
224
225 al->cache.replySize = len;
226
227 al->cache.code = logcode;
228
229 al->cache.msec = delay;
230
231 accessLogLog(al, NULL);
232 }
233
234 /// \ingroup ServerProtocolICPInternal2
235 void
236 icpUdpSendQueue(int fd, void *unused)
237 {
238 icpUdpData *q;
239
240 while ((q = IcpQueueHead) != NULL) {
241 int delay = tvSubUsec(q->queue_time, current_time);
242 /* increment delay to prevent looping */
243 const int x = icpUdpSend(fd, q->address, (icp_common_t *) q->msg, q->logcode, ++delay);
244 IcpQueueHead = q->next;
245 xfree(q);
246
247 if (x < 0)
248 break;
249 }
250 }
251
252 _icp_common_t *
253 _icp_common_t::createMessage(
254 icp_opcode opcode,
255 int flags,
256 const char *url,
257 int reqnum,
258 int pad)
259 {
260 char *buf = NULL;
261 icp_common_t *headerp = NULL;
262 char *urloffset = NULL;
263 int buf_len;
264 buf_len = sizeof(icp_common_t) + strlen(url) + 1;
265
266 if (opcode == ICP_QUERY)
267 buf_len += sizeof(uint32_t);
268
269 buf = (char *) xcalloc(buf_len, 1);
270
271 headerp = (icp_common_t *) (void *) buf;
272
273 headerp->opcode = (char) opcode;
274
275 headerp->version = ICP_VERSION_CURRENT;
276
277 headerp->length = (uint16_t) htons(buf_len);
278
279 headerp->reqnum = htonl(reqnum);
280
281 headerp->flags = htonl(flags);
282
283 headerp->pad = htonl(pad);
284
285 headerp->shostid = 0;
286
287 urloffset = buf + sizeof(icp_common_t);
288
289 if (opcode == ICP_QUERY)
290 urloffset += sizeof(uint32_t);
291
292 memcpy(urloffset, url, strlen(url));
293
294 return (icp_common_t *)buf;
295 }
296
297 int
298 icpUdpSend(int fd,
299 const Ip::Address &to,
300 icp_common_t * msg,
301 LogTags logcode,
302 int delay)
303 {
304 icpUdpData *queue;
305 int x;
306 int len;
307 len = (int) ntohs(msg->length);
308 debugs(12, 5, "icpUdpSend: FD " << fd << " sending " <<
309 icp_opcode_str[msg->opcode] << ", " << len << " bytes to " << to);
310
311 x = comm_udp_sendto(fd, to, msg, len);
312
313 if (x >= 0) {
314 /* successfully written */
315 icpLogIcp(to, logcode, len, (char *) (msg + 1), delay);
316 icpCount(msg, SENT, (size_t) len, delay);
317 safe_free(msg);
318 } else if (0 == delay) {
319 /* send failed, but queue it */
320 queue = (icpUdpData *) xcalloc(1, sizeof(icpUdpData));
321 queue->address = to;
322 queue->msg = msg;
323 queue->len = (int) ntohs(msg->length);
324 queue->queue_time = current_time;
325 queue->logcode = logcode;
326
327 if (IcpQueueHead == NULL) {
328 IcpQueueHead = queue;
329 IcpQueueTail = queue;
330 } else if (IcpQueueTail == IcpQueueHead) {
331 IcpQueueTail = queue;
332 IcpQueueHead->next = queue;
333 } else {
334 IcpQueueTail->next = queue;
335 IcpQueueTail = queue;
336 }
337
338 Comm::SetSelect(fd, COMM_SELECT_WRITE, icpUdpSendQueue, NULL, 0);
339 ++statCounter.icp.replies_queued;
340 } else {
341 /* don't queue it */
342 ++statCounter.icp.replies_dropped;
343 }
344
345 return x;
346 }
347
348 int
349 icpCheckUdpHit(StoreEntry * e, HttpRequest * request)
350 {
351 if (e == NULL)
352 return 0;
353
354 if (!e->validToSend())
355 return 0;
356
357 if (Config.onoff.icp_hit_stale)
358 return 1;
359
360 if (refreshCheckICP(e, request))
361 return 0;
362
363 return 1;
364 }
365
366 /**
367 * This routine selects an ICP opcode for ICP misses.
368 *
369 \retval ICP_ERR no opcode selected here
370 \retval ICP_MISS_NOFETCH store is rebuilding, no fetch is possible yet
371 */
372 icp_opcode
373 icpGetCommonOpcode()
374 {
375 /* if store is rebuilding, return a UDP_MISS_NOFETCH */
376
377 if ((StoreController::store_dirs_rebuilding && opt_reload_hit_only) ||
378 hit_only_mode_until > squid_curtime) {
379 return ICP_MISS_NOFETCH;
380 }
381
382 return ICP_ERR;
383 }
384
385 LogTags
386 icpLogFromICPCode(icp_opcode opcode)
387 {
388 if (opcode == ICP_ERR)
389 return LOG_UDP_INVALID;
390
391 if (opcode == ICP_DENIED)
392 return LOG_UDP_DENIED;
393
394 if (opcode == ICP_HIT)
395 return LOG_UDP_HIT;
396
397 if (opcode == ICP_MISS)
398 return LOG_UDP_MISS;
399
400 if (opcode == ICP_MISS_NOFETCH)
401 return LOG_UDP_MISS_NOFETCH;
402
403 fatal("expected ICP opcode\n");
404
405 return LOG_UDP_INVALID;
406 }
407
408 void
409 icpCreateAndSend(icp_opcode opcode, int flags, char const *url, int reqnum, int pad, int fd, const Ip::Address &from)
410 {
411 icp_common_t *reply = _icp_common_t::createMessage(opcode, flags, url, reqnum, pad);
412 icpUdpSend(fd, from, reply, icpLogFromICPCode(opcode), 0);
413 }
414
415 void
416 icpDenyAccess(Ip::Address &from, char *url, int reqnum, int fd)
417 {
418 debugs(12, 2, "icpDenyAccess: Access Denied for " << from << " by " << AclMatchedName << ".");
419
420 if (clientdbCutoffDenied(from)) {
421 /*
422 * count this DENIED query in the clientdb, even though
423 * we're not sending an ICP reply...
424 */
425 clientdbUpdate(from, LOG_UDP_DENIED, AnyP::PROTO_ICP, 0);
426 } else {
427 icpCreateAndSend(ICP_DENIED, 0, url, reqnum, 0, fd, from);
428 }
429 }
430
431 bool
432 icpAccessAllowed(Ip::Address &from, HttpRequest * icp_request)
433 {
434 /* absent an explicit allow, we deny all */
435 if (!Config.accessList.icp)
436 return true;
437
438 ACLFilledChecklist checklist(Config.accessList.icp, icp_request, NULL);
439 checklist.src_addr = from;
440 checklist.my_addr.SetNoAddr();
441 return (checklist.fastCheck() == ACCESS_ALLOWED);
442 }
443
444 char const *
445 icpGetUrlToSend(char *url)
446 {
447 if (strpbrk(url, w_space))
448 return rfc1738_escape(url);
449 else
450 return url;
451 }
452
453 HttpRequest *
454 icpGetRequest(char *url, int reqnum, int fd, Ip::Address &from)
455 {
456 if (strpbrk(url, w_space)) {
457 url = rfc1738_escape(url);
458 icpCreateAndSend(ICP_ERR, 0, rfc1738_escape(url), reqnum, 0, fd, from);
459 return NULL;
460 }
461
462 HttpRequest *result;
463
464 if ((result = HttpRequest::CreateFromUrl(url)) == NULL)
465 icpCreateAndSend(ICP_ERR, 0, url, reqnum, 0, fd, from);
466
467 return result;
468
469 }
470
471 static void
472 doV2Query(int fd, Ip::Address &from, char *buf, icp_common_t header)
473 {
474 int rtt = 0;
475 int src_rtt = 0;
476 uint32_t flags = 0;
477 /* We have a valid packet */
478 char *url = buf + sizeof(icp_common_t) + sizeof(uint32_t);
479 HttpRequest *icp_request = icpGetRequest(url, header.reqnum, fd, from);
480
481 if (!icp_request)
482 return;
483
484 HTTPMSGLOCK(icp_request);
485
486 if (!icpAccessAllowed(from, icp_request)) {
487 icpDenyAccess(from, url, header.reqnum, fd);
488 HTTPMSGUNLOCK(icp_request);
489 return;
490 }
491 #if USE_ICMP
492 if (header.flags & ICP_FLAG_SRC_RTT) {
493 rtt = netdbHostRtt(icp_request->GetHost());
494 int hops = netdbHostHops(icp_request->GetHost());
495 src_rtt = ((hops & 0xFFFF) << 16) | (rtt & 0xFFFF);
496
497 if (rtt)
498 flags |= ICP_FLAG_SRC_RTT;
499 }
500 #endif /* USE_ICMP */
501
502 /* The peer is allowed to use this cache */
503 ICP2State *state = new ICP2State (header, icp_request);
504
505 state->fd = fd;
506
507 state->from = from;
508
509 state->url = xstrdup (url);
510
511 state->flags = flags;
512
513 state->rtt = rtt;
514
515 state->src_rtt = src_rtt;
516
517 StoreEntry::getPublic (state, url, Http::METHOD_GET);
518
519 HTTPMSGUNLOCK(icp_request);
520 }
521
522 void
523 _icp_common_t::handleReply(char *buf, Ip::Address &from)
524 {
525 if (neighbors_do_private_keys && reqnum == 0) {
526 debugs(12, DBG_CRITICAL, "icpHandleIcpV2: Neighbor " << from << " returned reqnum = 0");
527 debugs(12, DBG_CRITICAL, "icpHandleIcpV2: Disabling use of private keys");
528 neighbors_do_private_keys = 0;
529 }
530
531 char *url = buf + sizeof(icp_common_t);
532 debugs(12, 3, "icpHandleIcpV2: " << icp_opcode_str[opcode] << " from " << from << " for '" << url << "'");
533
534 const cache_key *key = icpGetCacheKey(url, (int) reqnum);
535 /* call neighborsUdpAck even if ping_status != PING_WAITING */
536 neighborsUdpAck(key, this, from);
537 }
538
539 static void
540 icpHandleIcpV2(int fd, Ip::Address &from, char *buf, int len)
541 {
542 if (len <= 0) {
543 debugs(12, 3, "icpHandleIcpV2: ICP message is too small");
544 return;
545 }
546
547 icp_common_t header(buf, len);
548 /*
549 * Length field should match the number of bytes read
550 */
551
552 if (len != header.length) {
553 debugs(12, 3, "icpHandleIcpV2: ICP message is too small");
554 return;
555 }
556
557 switch (header.opcode) {
558
559 case ICP_QUERY:
560 /* We have a valid packet */
561 doV2Query(fd, from, buf, header);
562 break;
563
564 case ICP_HIT:
565
566 case ICP_DECHO:
567
568 case ICP_MISS:
569
570 case ICP_DENIED:
571
572 case ICP_MISS_NOFETCH:
573 header.handleReply(buf, from);
574 break;
575
576 case ICP_INVALID:
577
578 case ICP_ERR:
579 break;
580
581 default:
582 debugs(12, DBG_CRITICAL, "icpHandleIcpV2: UNKNOWN OPCODE: " << header.opcode << " from " << from);
583
584 break;
585 }
586 }
587
588 #ifdef ICP_PKT_DUMP
589 static void
590 icpPktDump(icp_common_t * pkt)
591 {
592 Ip::Address a;
593
594 debugs(12, 9, "opcode: " << std::setw(3) << pkt->opcode << " " << icp_opcode_str[pkt->opcode]);
595 debugs(12, 9, "version: "<< std::left << std::setw(8) << pkt->version);
596 debugs(12, 9, "length: "<< std::left << std::setw(8) << ntohs(pkt->length));
597 debugs(12, 9, "reqnum: "<< std::left << std::setw(8) << ntohl(pkt->reqnum));
598 debugs(12, 9, "flags: "<< std::left << std::hex << std::setw(8) << ntohl(pkt->flags));
599 a = (struct in_addr)pkt->shostid;
600 debugs(12, 9, "shostid: " << a );
601 debugs(12, 9, "payload: " << (char *) pkt + sizeof(icp_common_t));
602 }
603
604 #endif
605
606 void
607 icpHandleUdp(int sock, void *data)
608 {
609 int *N = &incoming_sockets_accepted;
610
611 Ip::Address from;
612 LOCAL_ARRAY(char, buf, SQUID_UDP_SO_RCVBUF);
613 int len;
614 int icp_version;
615 int max = INCOMING_UDP_MAX;
616 Comm::SetSelect(sock, COMM_SELECT_READ, icpHandleUdp, NULL, 0);
617
618 while (max) {
619 --max;
620 len = comm_udp_recvfrom(sock,
621 buf,
622 SQUID_UDP_SO_RCVBUF - 1,
623 0,
624 from);
625
626 if (len == 0)
627 break;
628
629 if (len < 0) {
630 if (ignoreErrno(errno))
631 break;
632
633 #if _SQUID_LINUX_
634 /* Some Linux systems seem to set the FD for reading and then
635 * return ECONNREFUSED when sendto() fails and generates an ICMP
636 * port unreachable message. */
637 /* or maybe an EHOSTUNREACH "No route to host" message */
638 if (errno != ECONNREFUSED && errno != EHOSTUNREACH)
639 #endif
640
641 debugs(50, DBG_IMPORTANT, "icpHandleUdp: FD " << sock << " recvfrom: " << xstrerror());
642
643 break;
644 }
645
646 ++(*N);
647 icpCount(buf, RECV, (size_t) len, 0);
648 buf[len] = '\0';
649 debugs(12, 4, "icpHandleUdp: FD " << sock << ": received " <<
650 (unsigned long int)len << " bytes from " << from);
651
652 #ifdef ICP_PACKET_DUMP
653
654 icpPktDump(buf);
655 #endif
656
657 if ((size_t) len < sizeof(icp_common_t)) {
658 debugs(12, 4, "icpHandleUdp: Ignoring too-small UDP packet");
659 break;
660 }
661
662 icp_version = (int) buf[1]; /* cheat! */
663
664 if (icpOutgoingConn->local == from)
665 // ignore ICP packets which loop back (multicast usually)
666 debugs(12, 4, "icpHandleUdp: Ignoring UDP packet sent by myself");
667 else if (icp_version == ICP_VERSION_2)
668 icpHandleIcpV2(sock, from, buf, len);
669 else if (icp_version == ICP_VERSION_3)
670 icpHandleIcpV3(sock, from, buf, len);
671 else
672 debugs(12, DBG_IMPORTANT, "WARNING: Unused ICP version " << icp_version <<
673 " received from " << from);
674 }
675 }
676
677 void
678 icpOpenPorts(void)
679 {
680 uint16_t port;
681
682 if ((port = Config.Port.icp) <= 0)
683 return;
684
685 icpIncomingConn = new Comm::Connection;
686 icpIncomingConn->local = Config.Addrs.udp_incoming;
687 icpIncomingConn->local.SetPort(port);
688
689 if (!Ip::EnableIpv6 && !icpIncomingConn->local.SetIPv4()) {
690 debugs(12, DBG_CRITICAL, "ERROR: IPv6 is disabled. " << icpIncomingConn->local << " is not an IPv4 address.");
691 fatal("ICP port cannot be opened.");
692 }
693 /* split-stack for now requires default IPv4-only ICP */
694 if (Ip::EnableIpv6&IPV6_SPECIAL_SPLITSTACK && icpIncomingConn->local.IsAnyAddr()) {
695 icpIncomingConn->local.SetIPv4();
696 }
697
698 AsyncCall::Pointer call = asyncCall(12, 2,
699 "icpIncomingConnectionOpened",
700 Comm::UdpOpenDialer(&icpIncomingConnectionOpened));
701
702 Ipc::StartListening(SOCK_DGRAM,
703 IPPROTO_UDP,
704 icpIncomingConn,
705 Ipc::fdnInIcpSocket, call);
706
707 if ( !Config.Addrs.udp_outgoing.IsNoAddr() ) {
708 icpOutgoingConn = new Comm::Connection;
709 icpOutgoingConn->local = Config.Addrs.udp_outgoing;
710 icpOutgoingConn->local.SetPort(port);
711
712 if (!Ip::EnableIpv6 && !icpOutgoingConn->local.SetIPv4()) {
713 debugs(49, DBG_CRITICAL, "ERROR: IPv6 is disabled. " << icpOutgoingConn->local << " is not an IPv4 address.");
714 fatal("ICP port cannot be opened.");
715 }
716 /* split-stack for now requires default IPv4-only ICP */
717 if (Ip::EnableIpv6&IPV6_SPECIAL_SPLITSTACK && icpOutgoingConn->local.IsAnyAddr()) {
718 icpOutgoingConn->local.SetIPv4();
719 }
720
721 enter_suid();
722 comm_open_listener(SOCK_DGRAM, IPPROTO_UDP, icpOutgoingConn, "Outgoing ICP Port");
723 leave_suid();
724
725 if (!Comm::IsConnOpen(icpOutgoingConn))
726 fatal("Cannot open Outgoing ICP Port");
727
728 debugs(12, DBG_CRITICAL, "Sending ICP messages from " << icpOutgoingConn->local);
729
730 Comm::SetSelect(icpOutgoingConn->fd, COMM_SELECT_READ, icpHandleUdp, NULL, 0);
731 fd_note(icpOutgoingConn->fd, "Outgoing ICP socket");
732 }
733 }
734
735 static void
736 icpIncomingConnectionOpened(const Comm::ConnectionPointer &conn, int errNo)
737 {
738 if (!Comm::IsConnOpen(conn))
739 fatal("Cannot open ICP Port");
740
741 Comm::SetSelect(conn->fd, COMM_SELECT_READ, icpHandleUdp, NULL, 0);
742
743 for (const wordlist *s = Config.mcast_group_list; s; s = s->next)
744 ipcache_nbgethostbyname(s->key, mcastJoinGroups, NULL); // XXX: pass the conn for mcastJoinGroups usage.
745
746 debugs(12, DBG_IMPORTANT, "Accepting ICP messages on " << conn->local);
747
748 fd_note(conn->fd, "Incoming ICP port");
749
750 if (Config.Addrs.udp_outgoing.IsNoAddr()) {
751 icpOutgoingConn = conn;
752 debugs(12, DBG_IMPORTANT, "Sending ICP messages from " << icpOutgoingConn->local);
753 }
754 }
755
756 /**
757 * icpConnectionShutdown only closes the 'in' socket if it is
758 * different than the 'out' socket.
759 */
760 void
761 icpConnectionShutdown(void)
762 {
763 if (!Comm::IsConnOpen(icpIncomingConn))
764 return;
765
766 debugs(12, DBG_IMPORTANT, "Stop receiving ICP on " << icpIncomingConn->local);
767
768 /** Release the 'in' socket for lazy closure.
769 * in and out sockets may be sharing one same FD.
770 * This prevents this function from executing repeatedly.
771 */
772 icpIncomingConn = NULL;
773
774 /**
775 * Normally we only write to the outgoing ICP socket, but
776 * we also have a read handler there to catch messages sent
777 * to that specific interface. During shutdown, we must
778 * disable reading on the outgoing socket.
779 */
780 assert(Comm::IsConnOpen(icpOutgoingConn));
781
782 Comm::SetSelect(icpOutgoingConn->fd, COMM_SELECT_READ, NULL, NULL, 0);
783 }
784
785 void
786 icpClosePorts(void)
787 {
788 icpConnectionShutdown();
789
790 if (icpOutgoingConn != NULL) {
791 debugs(12, DBG_IMPORTANT, "Stop sending ICP from " << icpOutgoingConn->local);
792 icpOutgoingConn = NULL;
793 }
794 }
795
796 static void
797 icpCount(void *buf, int which, size_t len, int delay)
798 {
799 icp_common_t *icp = (icp_common_t *) buf;
800
801 if (len < sizeof(*icp))
802 return;
803
804 if (SENT == which) {
805 ++statCounter.icp.pkts_sent;
806 kb_incr(&statCounter.icp.kbytes_sent, len);
807
808 if (ICP_QUERY == icp->opcode) {
809 ++statCounter.icp.queries_sent;
810 kb_incr(&statCounter.icp.q_kbytes_sent, len);
811 } else {
812 ++statCounter.icp.replies_sent;
813 kb_incr(&statCounter.icp.r_kbytes_sent, len);
814 /* this is the sent-reply service time */
815 statCounter.icp.replySvcTime.count(delay);
816 }
817
818 if (ICP_HIT == icp->opcode)
819 ++statCounter.icp.hits_sent;
820 } else if (RECV == which) {
821 ++statCounter.icp.pkts_recv;
822 kb_incr(&statCounter.icp.kbytes_recv, len);
823
824 if (ICP_QUERY == icp->opcode) {
825 ++statCounter.icp.queries_recv;
826 kb_incr(&statCounter.icp.q_kbytes_recv, len);
827 } else {
828 ++statCounter.icp.replies_recv;
829 kb_incr(&statCounter.icp.r_kbytes_recv, len);
830 /* statCounter.icp.querySvcTime set in clientUpdateCounters */
831 }
832
833 if (ICP_HIT == icp->opcode)
834 ++statCounter.icp.hits_recv;
835 }
836 }
837
838 #define N_QUERIED_KEYS 8192
839 #define N_QUERIED_KEYS_MASK 8191
840 static cache_key queried_keys[N_QUERIED_KEYS][SQUID_MD5_DIGEST_LENGTH];
841
842 int
843 icpSetCacheKey(const cache_key * key)
844 {
845 static int reqnum = 0;
846
847 if (++reqnum < 0)
848 reqnum = 1;
849
850 storeKeyCopy(queried_keys[reqnum & N_QUERIED_KEYS_MASK], key);
851
852 return reqnum;
853 }
854
855 const cache_key *
856 icpGetCacheKey(const char *url, int reqnum)
857 {
858 if (neighbors_do_private_keys && reqnum)
859 return queried_keys[reqnum & N_QUERIED_KEYS_MASK];
860
861 return storeKeyPublic(url, Http::METHOD_GET);
862 }