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da2b3a17 1
30a4f2a8 2/*
262a0e14 3 * $Id$
30a4f2a8 4 *
5 * DEBUG: section 11 Hypertext Transfer Protocol (HTTP)
6 * AUTHOR: Harvest Derived
7 *
2b6662ba 8 * SQUID Web Proxy Cache http://www.squid-cache.org/
e25c139f 9 * ----------------------------------------------------------
30a4f2a8 10 *
2b6662ba 11 * Squid is the result of efforts by numerous individuals from
12 * the Internet community; see the CONTRIBUTORS file for full
13 * details. Many organizations have provided support for Squid's
14 * development; see the SPONSORS file for full details. Squid is
15 * Copyrighted (C) 2001 by the Regents of the University of
16 * California; see the COPYRIGHT file for full details. Squid
17 * incorporates software developed and/or copyrighted by other
18 * sources; see the CREDITS file for full details.
30a4f2a8 19 *
20 * This program is free software; you can redistribute it and/or modify
21 * it under the terms of the GNU General Public License as published by
22 * the Free Software Foundation; either version 2 of the License, or
23 * (at your option) any later version.
9e008dda 24 *
30a4f2a8 25 * This program is distributed in the hope that it will be useful,
26 * but WITHOUT ANY WARRANTY; without even the implied warranty of
27 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
28 * GNU General Public License for more details.
9e008dda 29 *
30a4f2a8 30 * You should have received a copy of the GNU General Public License
31 * along with this program; if not, write to the Free Software
cbdec147 32 * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111, USA.
e25c139f 33 *
30a4f2a8 34 */
019dd986 35
4a83b852 36/*
37 * Anonymizing patch by lutz@as-node.jena.thur.de
de3bdb4c 38 * have a look into http-anon.c to get more informations.
4a83b852 39 */
40
44a47c6e 41#include "squid.h"
9ca29d23
AJ
42
43#include "acl/FilledChecklist.h"
44#include "auth/UserRequest.h"
3d93a84d 45#include "base/TextException.h"
9ca29d23
AJ
46#if DELAY_POOLS
47#include "DelayPools.h"
48#endif
aa839030 49#include "errorpage.h"
9ca29d23 50#include "fde.h"
e6ccf245 51#include "http.h"
528b2c61 52#include "HttpHdrContRange.h"
b19dd748 53#include "HttpHdrSc.h"
54#include "HttpHdrScTarget.h"
9ca29d23
AJ
55#include "HttpReply.h"
56#include "HttpRequest.h"
57#include "MemBuf.h"
58#include "MemObject.h"
59#include "protos.h"
1fa9b1a7 60#include "rfc1738.h"
985c86bc 61#include "SquidTime.h"
9ca29d23 62#include "Store.h"
af0bb8e5 63
9ca29d23 64
af0bb8e5 65#define SQUID_ENTER_THROWING_CODE() try {
66#define SQUID_EXIT_THROWING_CODE(status) \
67 status = true; \
68 } \
0a8bbeeb
AR
69 catch (const std::exception &e) { \
70 debugs (11, 1, "Exception error:" << e.what()); \
af0bb8e5 71 status = false; \
9e008dda 72 }
e6ccf245 73
2afaba07 74CBDATA_CLASS_INIT(HttpStateData);
090089c4 75
6bf8443a 76static const char *const crlf = "\r\n";
4db43fab 77
f9cece6e 78static void httpMaybeRemovePublic(StoreEntry *, http_status);
9e498bfb
AJ
79static void copyOneHeaderFromClientsideRequestToUpstreamRequest(const HttpHeaderEntry *e, const String strConnection, HttpRequest * request, const HttpRequest * orig_request,
80 HttpHeader * hdr_out, const int we_do_ranges, const http_state_flags);
528b2c61 81
dc56a9b1 82HttpStateData::HttpStateData(FwdState *theFwdState) : AsyncJob("HttpStateData"), ServerStateData(theFwdState),
e1381638
AJ
83 lastChunk(0), header_bytes_read(0), reply_bytes_read(0),
84 body_bytes_truncated(0), httpChunkDecoder(NULL)
2bb867b5 85{
86 debugs(11,5,HERE << "HttpStateData " << this << " created");
a3d50c30 87 ignoreCacheControl = false;
88 surrogateNoStore = false;
a3d50c30 89 fd = fwd->server_fd;
90 readBuf = new MemBuf;
4b6af349 91 readBuf->init();
6dd9f4bd 92 orig_request = HTTPMSGLOCK(fwd->request);
a3d50c30 93
3ff65596
AR
94 // reset peer response time stats for %<pt
95 orig_request->hier.peer_http_request_sent.tv_sec = 0;
96 orig_request->hier.peer_http_request_sent.tv_usec = 0;
97
a3d50c30 98 if (fwd->servers)
99 _peer = fwd->servers->_peer; /* might be NULL */
100
101 if (_peer) {
102 const char *url;
103
104 if (_peer->options.originserver)
d53b3f6d 105 url = orig_request->urlpath.termedBuf();
a3d50c30 106 else
3900307b 107 url = entry->url();
a3d50c30 108
5cafad19 109 HttpRequest * proxy_req = new HttpRequest(orig_request->method,
9e008dda 110 orig_request->protocol, url);
a3d50c30 111
cc192b50 112 proxy_req->SetHost(_peer->host);
a3d50c30 113
114 proxy_req->port = _peer->http_port;
115
116 proxy_req->flags = orig_request->flags;
117
118 proxy_req->lastmod = orig_request->lastmod;
119
120 proxy_req->flags.proxying = 1;
121
6dd9f4bd 122 HTTPMSGUNLOCK(request);
253caccb 123
6dd9f4bd 124 request = HTTPMSGLOCK(proxy_req);
a3d50c30 125
126 /*
127 * This NEIGHBOR_PROXY_ONLY check probably shouldn't be here.
128 * We might end up getting the object from somewhere else if,
129 * for example, the request to this neighbor fails.
130 */
131 if (_peer->options.proxy_only)
d88e3c49 132 entry->releaseRequest();
a3d50c30 133
134#if DELAY_POOLS
135
136 entry->setNoDelay(_peer->options.no_delay);
137
138#endif
a3d50c30 139 }
140
141 /*
142 * register the handler to free HTTP state data when the FD closes
143 */
dc56a9b1 144 typedef CommCbMemFunT<HttpStateData, CommCloseCbParams> Dialer;
145 closeHandler = asyncCall(9, 5, "httpStateData::httpStateConnClosed",
9e008dda 146 Dialer(this,&HttpStateData::httpStateConnClosed));
dc56a9b1 147 comm_add_close_handler(fd, closeHandler);
2bb867b5 148}
b8d8561b 149
2afaba07 150HttpStateData::~HttpStateData()
f5558c95 151{
253caccb 152 /*
3b299123 153 * don't forget that ~ServerStateData() gets called automatically
253caccb 154 */
155
2afaba07 156 if (!readBuf->isNull())
157 readBuf->clean();
62e76326 158
2afaba07 159 delete readBuf;
160
9e008dda
AJ
161 if (httpChunkDecoder)
162 delete httpChunkDecoder;
af0bb8e5 163
6dd9f4bd 164 HTTPMSGUNLOCK(orig_request);
2afaba07 165
5f8252d2 166 debugs(11,5, HERE << "HttpStateData " << this << " destroyed; FD " << fd);
167}
168
169int
fc68f6b1 170HttpStateData::dataDescriptor() const
171{
5f8252d2 172 return fd;
2afaba07 173}
dc56a9b1 174/*
2afaba07 175static void
176httpStateFree(int fd, void *data)
177{
178 HttpStateData *httpState = static_cast<HttpStateData *>(data);
bf8fe701 179 debugs(11, 5, "httpStateFree: FD " << fd << ", httpState=" << data);
5f8252d2 180 delete httpState;
dc56a9b1 181}*/
182
9e008dda 183void
dc56a9b1 184HttpStateData::httpStateConnClosed(const CommCloseCbParams &params)
185{
186 debugs(11, 5, "httpStateFree: FD " << params.fd << ", httpState=" << params.data);
187 deleteThis("HttpStateData::httpStateConnClosed");
f5558c95 188}
189
b8d8561b 190int
60745f24 191httpCachable(const HttpRequestMethod& method)
090089c4 192{
090089c4 193 /* GET and HEAD are cachable. Others are not. */
62e76326 194
9e008dda 195 // TODO: replase to HttpRequestMethod::isCachable() ?
6eb42cae 196 if (method != METHOD_GET && method != METHOD_HEAD)
62e76326 197 return 0;
198
090089c4 199 /* else cachable */
200 return 1;
201}
202
dc56a9b1 203void
204HttpStateData::httpTimeout(const CommTimeoutCbParams &params)
090089c4 205{
bf8fe701 206 debugs(11, 4, "httpTimeout: FD " << fd << ": '" << entry->url() << "'" );
62e76326 207
12158bdc 208 if (entry->store_status == STORE_PENDING) {
dc56a9b1 209 fwd->fail(errorCon(ERR_READ_TIMEOUT, HTTP_GATEWAY_TIMEOUT, fwd->request));
9b312a19 210 }
62e76326 211
0d4d4170 212 comm_close(fd);
090089c4 213}
214
f9cece6e 215static void
216httpMaybeRemovePublic(StoreEntry * e, http_status status)
217{
914b89a2 218 int remove = 0;
7e3ce7b9 219 int forbidden = 0;
f9cece6e 220 StoreEntry *pe;
62e76326 221
d46a87a8 222 if (!EBIT_TEST(e->flags, KEY_PRIVATE))
62e76326 223 return;
224
f9cece6e 225 switch (status) {
62e76326 226
f9cece6e 227 case HTTP_OK:
62e76326 228
f9cece6e 229 case HTTP_NON_AUTHORITATIVE_INFORMATION:
62e76326 230
f9cece6e 231 case HTTP_MULTIPLE_CHOICES:
62e76326 232
f9cece6e 233 case HTTP_MOVED_PERMANENTLY:
62e76326 234
f9cece6e 235 case HTTP_MOVED_TEMPORARILY:
62e76326 236
f9cece6e 237 case HTTP_GONE:
62e76326 238
7e3ce7b9 239 case HTTP_NOT_FOUND:
914b89a2 240 remove = 1;
62e76326 241
242 break;
243
7e3ce7b9 244 case HTTP_FORBIDDEN:
62e76326 245
7e3ce7b9 246 case HTTP_METHOD_NOT_ALLOWED:
62e76326 247 forbidden = 1;
248
249 break;
250
f9cece6e 251#if WORK_IN_PROGRESS
62e76326 252
c8fd0193 253 case HTTP_UNAUTHORIZED:
62e76326 254 forbidden = 1;
255
256 break;
257
f9cece6e 258#endif
62e76326 259
f9cece6e 260 default:
7e3ce7b9 261#if QUESTIONABLE
62e76326 262 /*
263 * Any 2xx response should eject previously cached entities...
264 */
abb929f0 265
62e76326 266 if (status >= 200 && status < 300)
914b89a2 267 remove = 1;
62e76326 268
7e3ce7b9 269#endif
62e76326 270
271 break;
f9cece6e 272 }
62e76326 273
914b89a2 274 if (!remove && !forbidden)
62e76326 275 return;
276
f9cece6e 277 assert(e->mem_obj);
62e76326 278
f66a9ef4 279 if (e->mem_obj->request)
62e76326 280 pe = storeGetPublicByRequest(e->mem_obj->request);
f66a9ef4 281 else
62e76326 282 pe = storeGetPublic(e->mem_obj->url, e->mem_obj->method);
283
f66a9ef4 284 if (pe != NULL) {
62e76326 285 assert(e != pe);
d9129474 286#if USE_HTCP
8dceeee3 287 neighborsHtcpClear(e, NULL, e->mem_obj->request, e->mem_obj->method, HTCP_CLR_INVALIDATION);
d9129474 288#endif
5f33b71d 289 pe->release();
0856d155 290 }
62e76326 291
914b89a2 292 /** \par
7e3ce7b9 293 * Also remove any cached HEAD response in case the object has
294 * changed.
295 */
f66a9ef4 296 if (e->mem_obj->request)
62e76326 297 pe = storeGetPublicByRequestMethod(e->mem_obj->request, METHOD_HEAD);
f66a9ef4 298 else
62e76326 299 pe = storeGetPublic(e->mem_obj->url, METHOD_HEAD);
300
f66a9ef4 301 if (pe != NULL) {
62e76326 302 assert(e != pe);
d9129474 303#if USE_HTCP
8dceeee3 304 neighborsHtcpClear(e, NULL, e->mem_obj->request, HttpRequestMethod(METHOD_HEAD), HTCP_CLR_INVALIDATION);
d9129474 305#endif
5f33b71d 306 pe->release();
7e3ce7b9 307 }
f9cece6e 308}
309
43ae1d95 310void
311HttpStateData::processSurrogateControl(HttpReply *reply)
312{
43ae1d95 313 if (request->flags.accelerated && reply->surrogate_control) {
45cca89d 314 HttpHdrScTarget *sctusable = httpHdrScGetMergedTarget(reply->surrogate_control, Config.Accel.surrogate_id);
43ae1d95 315
316 if (sctusable) {
317 if (EBIT_TEST(sctusable->mask, SC_NO_STORE) ||
318 (Config.onoff.surrogate_is_remote
319 && EBIT_TEST(sctusable->mask, SC_NO_STORE_REMOTE))) {
320 surrogateNoStore = true;
5ed72359 321 entry->makePrivate();
43ae1d95 322 }
323
324 /* The HttpHeader logic cannot tell if the header it's parsing is a reply to an
325 * accelerated request or not...
45cca89d 326 * Still, this is an abstraction breach. - RC
43ae1d95 327 */
328 if (sctusable->max_age != -1) {
329 if (sctusable->max_age < sctusable->max_stale)
330 reply->expires = reply->date + sctusable->max_age;
331 else
332 reply->expires = reply->date + sctusable->max_stale;
333
334 /* And update the timestamps */
3900307b 335 entry->timestampsSet();
43ae1d95 336 }
337
338 /* We ignore cache-control directives as per the Surrogate specification */
339 ignoreCacheControl = true;
340
341 httpHdrScTargetDestroy(sctusable);
342 }
343 }
43ae1d95 344}
345
924f73bc 346int
347HttpStateData::cacheableReply()
c54e9052 348{
585ab260 349 HttpReply const *rep = finalReply();
528b2c61 350 HttpHeader const *hdr = &rep->header;
d8b249ef 351 const int cc_mask = (rep->cache_control) ? rep->cache_control->mask : 0;
c68e9c6b 352 const char *v;
38f9c547 353#if HTTP_VIOLATIONS
62e76326 354
38f9c547 355 const refresh_t *R = NULL;
b6445726 356
346be6ad 357 /* This strange looking define first looks up the refresh pattern
b6445726 358 * and then checks if the specified flag is set. The main purpose
359 * of this is to simplify the refresh pattern lookup and HTTP_VIOLATIONS
360 * condition
361 */
362#define REFRESH_OVERRIDE(flag) \
5f8252d2 363 ((R = (R ? R : refreshLimits(entry->mem_obj->url))) , \
364 (R && R->flags.flag))
b445957e 365#else
366#define REFRESH_OVERRIDE(flag) 0
38f9c547 367#endif
43ae1d95 368
38f9c547 369 if (surrogateNoStore)
62e76326 370 return 0;
371
924f73bc 372 if (!ignoreCacheControl) {
38f9c547 373 if (EBIT_TEST(cc_mask, CC_PRIVATE)) {
b6445726 374 if (!REFRESH_OVERRIDE(ignore_private))
38f9c547 375 return 0;
376 }
377
378 if (EBIT_TEST(cc_mask, CC_NO_CACHE)) {
b6445726 379 if (!REFRESH_OVERRIDE(ignore_no_cache))
38f9c547 380 return 0;
381 }
382
383 if (EBIT_TEST(cc_mask, CC_NO_STORE)) {
b6445726 384 if (!REFRESH_OVERRIDE(ignore_no_store))
38f9c547 385 return 0;
386 }
43ae1d95 387 }
388
d67acb4e 389 if (request->flags.auth || request->flags.auth_sent) {
62e76326 390 /*
391 * Responses to requests with authorization may be cached
392 * only if a Cache-Control: public reply header is present.
393 * RFC 2068, sec 14.9.4
394 */
395
38f9c547 396 if (!EBIT_TEST(cc_mask, CC_PUBLIC)) {
b6445726 397 if (!REFRESH_OVERRIDE(ignore_auth))
38f9c547 398 return 0;
399 }
a6dfe2d9 400 }
62e76326 401
c68e9c6b 402 /* Pragma: no-cache in _replies_ is not documented in HTTP,
403 * but servers like "Active Imaging Webcast/2.0" sure do use it */
a9925b40 404 if (hdr->has(HDR_PRAGMA)) {
30abd221 405 String s = hdr->getList(HDR_PRAGMA);
62e76326 406 const int no_cache = strListIsMember(&s, "no-cache", ',');
30abd221 407 s.clean();
62e76326 408
38f9c547 409 if (no_cache) {
b6445726 410 if (!REFRESH_OVERRIDE(ignore_no_cache))
38f9c547 411 return 0;
412 }
c68e9c6b 413 }
62e76326 414
c68e9c6b 415 /*
416 * The "multipart/x-mixed-replace" content type is used for
417 * continuous push replies. These are generally dynamic and
418 * probably should not be cachable
419 */
a9925b40 420 if ((v = hdr->getStr(HDR_CONTENT_TYPE)))
62e76326 421 if (!strncasecmp(v, "multipart/x-mixed-replace", 25))
422 return 0;
423
585ab260 424 switch (rep->sline.status) {
62e76326 425 /* Responses that are cacheable */
426
19a04dac 427 case HTTP_OK:
62e76326 428
19a04dac 429 case HTTP_NON_AUTHORITATIVE_INFORMATION:
62e76326 430
19a04dac 431 case HTTP_MULTIPLE_CHOICES:
62e76326 432
19a04dac 433 case HTTP_MOVED_PERMANENTLY:
62e76326 434
19a04dac 435 case HTTP_GONE:
62e76326 436 /*
437 * Don't cache objects that need to be refreshed on next request,
438 * unless we know how to refresh it.
439 */
440
1b5358c3 441 if (!refreshIsCachable(entry)) {
bf8fe701 442 debugs(22, 3, "refreshIsCachable() returned non-cacheable..");
62e76326 443 return 0;
fc68f6b1 444 }
62e76326 445
446 /* don't cache objects from peers w/o LMT, Date, or Expires */
447 /* check that is it enough to check headers @?@ */
448 if (rep->date > -1)
449 return 1;
450 else if (rep->last_modified > -1)
451 return 1;
924f73bc 452 else if (!_peer)
62e76326 453 return 1;
454
455 /* @?@ (here and 302): invalid expires header compiles to squid_curtime */
456 else if (rep->expires > -1)
457 return 1;
458 else
459 return 0;
460
461 /* NOTREACHED */
462 break;
463
464 /* Responses that only are cacheable if the server says so */
465
19a04dac 466 case HTTP_MOVED_TEMPORARILY:
f18c86fd 467 case HTTP_TEMPORARY_REDIRECT:
6a2bf8f4 468 if (rep->expires > rep->date && rep->date > 0)
62e76326 469 return 1;
470 else
471 return 0;
472
473 /* NOTREACHED */
474 break;
475
476 /* Errors can be negatively cached */
477
19a04dac 478 case HTTP_NO_CONTENT:
62e76326 479
19a04dac 480 case HTTP_USE_PROXY:
62e76326 481
19a04dac 482 case HTTP_BAD_REQUEST:
62e76326 483
19a04dac 484 case HTTP_FORBIDDEN:
62e76326 485
19a04dac 486 case HTTP_NOT_FOUND:
62e76326 487
19a04dac 488 case HTTP_METHOD_NOT_ALLOWED:
62e76326 489
19a04dac 490 case HTTP_REQUEST_URI_TOO_LARGE:
62e76326 491
19a04dac 492 case HTTP_INTERNAL_SERVER_ERROR:
62e76326 493
19a04dac 494 case HTTP_NOT_IMPLEMENTED:
62e76326 495
19a04dac 496 case HTTP_BAD_GATEWAY:
62e76326 497
19a04dac 498 case HTTP_SERVICE_UNAVAILABLE:
62e76326 499
19a04dac 500 case HTTP_GATEWAY_TIMEOUT:
62e76326 501 return -1;
502
503 /* NOTREACHED */
504 break;
505
506 /* Some responses can never be cached */
507
0cdcddb9 508 case HTTP_PARTIAL_CONTENT: /* Not yet supported */
62e76326 509
19a04dac 510 case HTTP_SEE_OTHER:
62e76326 511
19a04dac 512 case HTTP_NOT_MODIFIED:
62e76326 513
19a04dac 514 case HTTP_UNAUTHORIZED:
62e76326 515
19a04dac 516 case HTTP_PROXY_AUTHENTICATION_REQUIRED:
62e76326 517
0cdcddb9 518 case HTTP_INVALID_HEADER: /* Squid header parsing error */
4eb368f9 519
520 case HTTP_HEADER_TOO_LARGE:
b004a7fc 521
522 case HTTP_PAYMENT_REQUIRED:
523 case HTTP_NOT_ACCEPTABLE:
524 case HTTP_REQUEST_TIMEOUT:
525 case HTTP_CONFLICT:
526 case HTTP_LENGTH_REQUIRED:
527 case HTTP_PRECONDITION_FAILED:
528 case HTTP_REQUEST_ENTITY_TOO_LARGE:
529 case HTTP_UNSUPPORTED_MEDIA_TYPE:
530 case HTTP_UNPROCESSABLE_ENTITY:
531 case HTTP_LOCKED:
532 case HTTP_FAILED_DEPENDENCY:
533 case HTTP_INSUFFICIENT_STORAGE:
cc7c3c84 534 case HTTP_REQUESTED_RANGE_NOT_SATISFIABLE:
535 case HTTP_EXPECTATION_FAILED:
b004a7fc 536
62e76326 537 return 0;
538
41217979
AJ
539 default:
540 /* RFC 2616 section 6.1.1: an unrecognized response MUST NOT be cached. */
541 debugs (11, 3, HERE << "Unknown HTTP status code " << rep->sline.status << ". Not cacheable.");
62e76326 542
543 return 0;
544
545 /* NOTREACHED */
546 break;
c54e9052 547 }
62e76326 548
79d39a72 549 /* NOTREACHED */
c54e9052 550}
090089c4 551
f66a9ef4 552/*
9e008dda 553 * For Vary, store the relevant request headers as
f66a9ef4 554 * virtual headers in the reply
555 * Returns false if the variance cannot be stored
556 */
557const char *
190154cf 558httpMakeVaryMark(HttpRequest * request, HttpReply const * reply)
f66a9ef4 559{
30abd221 560 String vary, hdr;
f66a9ef4 561 const char *pos = NULL;
562 const char *item;
563 const char *value;
564 int ilen;
30abd221 565 static String vstr;
f66a9ef4 566
30abd221 567 vstr.clean();
a9925b40 568 vary = reply->header.getList(HDR_VARY);
62e76326 569
f66a9ef4 570 while (strListGetItem(&vary, ',', &item, &ilen, &pos)) {
62e76326 571 char *name = (char *)xmalloc(ilen + 1);
572 xstrncpy(name, item, ilen + 1);
573 Tolower(name);
9776e3cc 574
575 if (strcmp(name, "*") == 0) {
576 /* Can not handle "Vary: *" withtout ETag support */
577 safe_free(name);
30abd221 578 vstr.clean();
9776e3cc 579 break;
580 }
581
62e76326 582 strListAdd(&vstr, name, ',');
a9925b40 583 hdr = request->header.getByName(name);
62e76326 584 safe_free(name);
d53b3f6d 585 value = hdr.termedBuf();
62e76326 586
587 if (value) {
588 value = rfc1738_escape_part(value);
589 vstr.append("=\"", 2);
590 vstr.append(value);
591 vstr.append("\"", 1);
592 }
593
30abd221 594 hdr.clean();
f66a9ef4 595 }
62e76326 596
30abd221 597 vary.clean();
f66a9ef4 598#if X_ACCELERATOR_VARY
62e76326 599
aa38be4a 600 pos = NULL;
a9925b40 601 vary = reply->header.getList(HDR_X_ACCELERATOR_VARY);
62e76326 602
f66a9ef4 603 while (strListGetItem(&vary, ',', &item, &ilen, &pos)) {
62e76326 604 char *name = (char *)xmalloc(ilen + 1);
605 xstrncpy(name, item, ilen + 1);
606 Tolower(name);
607 strListAdd(&vstr, name, ',');
a9925b40 608 hdr = request->header.getByName(name);
62e76326 609 safe_free(name);
d53b3f6d 610 value = hdr.termedBuf();
62e76326 611
612 if (value) {
613 value = rfc1738_escape_part(value);
614 vstr.append("=\"", 2);
615 vstr.append(value);
616 vstr.append("\"", 1);
617 }
618
30abd221 619 hdr.clean();
f66a9ef4 620 }
62e76326 621
30abd221 622 vary.clean();
f66a9ef4 623#endif
62e76326 624
d53b3f6d
FC
625 debugs(11, 3, "httpMakeVaryMark: " << vstr);
626 return vstr.termedBuf();
f66a9ef4 627}
628
2afaba07 629void
630HttpStateData::keepaliveAccounting(HttpReply *reply)
631{
632 if (flags.keepalive)
633 if (_peer)
634 _peer->stats.n_keepalives_sent++;
635
636 if (reply->keep_alive) {
637 if (_peer)
638 _peer->stats.n_keepalives_recv++;
639
af6a12ee
AJ
640 if (Config.onoff.detect_broken_server_pconns
641 && reply->bodySize(request->method) == -1 && !flags.chunked) {
bf8fe701 642 debugs(11, 1, "keepaliveAccounting: Impossible keep-alive header from '" << entry->url() << "'" );
643 // debugs(11, 2, "GOT HTTP REPLY HDR:\n---------\n" << readBuf->content() << "\n----------" );
2afaba07 644 flags.keepalive_broken = 1;
645 }
646 }
647}
648
649void
650HttpStateData::checkDateSkew(HttpReply *reply)
651{
652 if (reply->date > -1 && !_peer) {
653 int skew = abs((int)(reply->date - squid_curtime));
654
655 if (skew > 86400)
cc192b50 656 debugs(11, 3, "" << request->GetHost() << "'s clock is skewed by " << skew << " seconds!");
2afaba07 657 }
658}
659
073ba374 660/**
4eb368f9 661 * This creates the error page itself.. its likely
662 * that the forward ported reply header max size patch
663 * generates non http conformant error pages - in which
664 * case the errors where should be 'BAD_GATEWAY' etc
665 */
b8d8561b 666void
2afaba07 667HttpStateData::processReplyHeader()
f5558c95 668{
073ba374 669 /** Creates a blank header. If this routine is made incremental, this will not do */
82384411 670 Ctx ctx = ctx_enter(entry->mem_obj->url);
bf8fe701 671 debugs(11, 3, "processReplyHeader: key '" << entry->getMD5Text() << "'");
62e76326 672
1a98175f 673 assert(!flags.headers_parsed);
62e76326 674
2afaba07 675 http_status error = HTTP_STATUS_NONE;
62e76326 676
585ab260 677 HttpReply *newrep = new HttpReply;
4a56ee8d 678 const bool parsed = newrep->parse(readBuf, eof, &error);
62e76326 679
e77d7ef0 680 if (!parsed && readBuf->contentSize() > 5 && strncmp(readBuf->content(), "HTTP/", 5) != 0 && strncmp(readBuf->content(), "ICY", 3) != 0) {
9e008dda
AJ
681 MemBuf *mb;
682 HttpReply *tmprep = new HttpReply;
11992b6f 683 tmprep->setHeaders(HTTP_OK, "Gatewaying", NULL, -1, -1, -1);
9e008dda
AJ
684 tmprep->header.putExt("X-Transformed-From", "HTTP/0.9");
685 mb = tmprep->pack();
686 newrep->parse(mb, eof, &error);
687 delete tmprep;
688 } else {
689 if (!parsed && error > 0) { // unrecoverable parsing error
690 debugs(11, 3, "processReplyHeader: Non-HTTP-compliant header: '" << readBuf->content() << "'");
691 flags.headers_parsed = 1;
871c031f 692 newrep->sline.version = HttpVersion(1,1);
9e008dda
AJ
693 newrep->sline.status = error;
694 HttpReply *vrep = setVirginReply(newrep);
695 entry->replaceHttpReply(vrep);
696 ctx_exit(ctx);
697 return;
698 }
699
700 if (!parsed) { // need more data
701 assert(!error);
702 assert(!eof);
703 delete newrep;
704 ctx_exit(ctx);
705 return;
706 }
707
708 debugs(11, 9, "GOT HTTP REPLY HDR:\n---------\n" << readBuf->content() << "\n----------");
709
710 header_bytes_read = headersEnd(readBuf->content(), readBuf->contentSize());
711 readBuf->consume(header_bytes_read);
f5558c95 712 }
62e76326 713
3d9e71e6
AJ
714 /* Skip 1xx messages for now. Advertised in Via as an internal 1.0 hop */
715 if (newrep->sline.protocol == PROTO_HTTP && newrep->sline.status >= 100 && newrep->sline.status < 200) {
716
871c031f 717#if WHEN_HTTP11_EXPECT_HANDLED
3d9e71e6
AJ
718 /* When HTTP/1.1 check if the client is expecting a 1xx reply and maybe pass it on */
719 if (orig_request->header.has(HDR_EXPECT)) {
720 // TODO: pass to the client anyway?
721 }
722#endif
723 delete newrep;
724 debugs(11, 2, HERE << "1xx headers consume " << header_bytes_read << " bytes header.");
725 header_bytes_read = 0;
726 if (reply_bytes_read > 0)
727 debugs(11, 2, HERE << "1xx headers consume " << reply_bytes_read << " bytes reply.");
728 reply_bytes_read = 0;
729 ctx_exit(ctx);
730 processReplyHeader();
731 return;
732 }
733
af0bb8e5 734 flags.chunked = 0;
ca8ef94f 735 if (newrep->sline.protocol == PROTO_HTTP && newrep->header.hasListMember(HDR_TRANSFER_ENCODING, "chunked", ',')) {
9e008dda
AJ
736 flags.chunked = 1;
737 httpChunkDecoder = new ChunkedCodingParser;
af0bb8e5 738 }
739
9e008dda
AJ
740 if (!peerSupportsConnectionPinning())
741 orig_request->flags.connection_auth_disabled = 1;
d67acb4e 742
585ab260 743 HttpReply *vrep = setVirginReply(newrep);
6965ab28 744 flags.headers_parsed = 1;
745
585ab260 746 keepaliveAccounting(vrep);
47ac2ebe 747
585ab260 748 checkDateSkew(vrep);
47ac2ebe 749
585ab260 750 processSurrogateControl (vrep);
528b2c61 751
073ba374 752 /** \todo IF the reply is a 1.0 reply, AND it has a Connection: Header
528b2c61 753 * Parse the header and remove all referenced headers
754 */
755
3ff65596
AR
756 orig_request->hier.peer_reply_status = newrep->sline.status;
757
2afaba07 758 ctx_exit(ctx);
7dc79973 759
2afaba07 760}
761
d67acb4e
AJ
762/**
763 * returns true if the peer can support connection pinning
764*/
765bool HttpStateData::peerSupportsConnectionPinning() const
766{
767 const HttpReply *rep = entry->mem_obj->getReply();
768 const HttpHeader *hdr = &rep->header;
769 bool rc;
770 String header;
771
772 if (!_peer)
9e008dda
AJ
773 return true;
774
775 /*If this peer does not support connection pinning (authenticated
d67acb4e
AJ
776 connections) return false
777 */
778 if (!_peer->connection_auth)
9e008dda 779 return false;
d67acb4e 780
9e008dda 781 /*The peer supports connection pinning and the http reply status
d67acb4e
AJ
782 is not unauthorized, so the related connection can be pinned
783 */
784 if (rep->sline.status != HTTP_UNAUTHORIZED)
9e008dda
AJ
785 return true;
786
787 /*The server respond with HTTP_UNAUTHORIZED and the peer configured
788 with "connection-auth=on" we know that the peer supports pinned
d67acb4e
AJ
789 connections
790 */
791 if (_peer->connection_auth == 1)
9e008dda 792 return true;
d67acb4e 793
9e008dda
AJ
794 /*At this point peer has configured with "connection-auth=auto"
795 parameter so we need some extra checks to decide if we are going
d67acb4e
AJ
796 to allow pinned connections or not
797 */
798
9e008dda 799 /*if the peer configured with originserver just allow connection
d67acb4e
AJ
800 pinning (squid 2.6 behaviour)
801 */
802 if (_peer->options.originserver)
9e008dda 803 return true;
d67acb4e
AJ
804
805 /*if the connections it is already pinned it is OK*/
806 if (request->flags.pinned)
9e008dda
AJ
807 return true;
808
809 /*Allow pinned connections only if the Proxy-support header exists in
810 reply and has in its list the "Session-Based-Authentication"
d67acb4e
AJ
811 which means that the peer supports connection pinning.
812 */
813 if (!hdr->has(HDR_PROXY_SUPPORT))
9e008dda 814 return false;
d67acb4e
AJ
815
816 header = hdr->getStrOrList(HDR_PROXY_SUPPORT);
817 /* XXX This ought to be done in a case-insensitive manner */
d53b3f6d 818 rc = (strstr(header.termedBuf(), "Session-Based-Authentication") != NULL);
d67acb4e
AJ
819
820 return rc;
821}
822
5f8252d2 823// Called when we parsed (and possibly adapted) the headers but
824// had not starting storing (a.k.a., sending) the body yet.
2afaba07 825void
826HttpStateData::haveParsedReplyHeaders()
827{
c1520b67
AJ
828 ServerStateData::haveParsedReplyHeaders();
829
2afaba07 830 Ctx ctx = ctx_enter(entry->mem_obj->url);
585ab260 831 HttpReply *rep = finalReply();
2afaba07 832
585ab260 833 if (rep->sline.status == HTTP_PARTIAL_CONTENT &&
834 rep->content_range)
835 currentOffset = rep->content_range->spec.offset;
62e76326 836
3900307b 837 entry->timestampsSet();
62e76326 838
9bc73deb 839 /* Check if object is cacheable or not based on reply code */
585ab260 840 debugs(11, 3, "haveParsedReplyHeaders: HTTP CODE: " << rep->sline.status);
62e76326 841
9bc73deb 842 if (neighbors_do_private_keys)
585ab260 843 httpMaybeRemovePublic(entry, rep->sline.status);
e6ccf245 844
585ab260 845 if (rep->header.has(HDR_VARY)
f66a9ef4 846#if X_ACCELERATOR_VARY
585ab260 847 || rep->header.has(HDR_X_ACCELERATOR_VARY)
f66a9ef4 848#endif
4b44c907 849 ) {
585ab260 850 const char *vary = httpMakeVaryMark(orig_request, rep);
4b44c907 851
852 if (!vary) {
5ed72359 853 entry->makePrivate();
d7d3253b
AJ
854 if (!fwd->reforwardableStatus(rep->sline.status))
855 EBIT_CLR(entry->flags, ENTRY_FWD_HDR_WAIT);
4b44c907 856 goto no_cache;
62e76326 857 }
858
4b44c907 859 entry->mem_obj->vary_headers = xstrdup(vary);
860 }
861
2afaba07 862#if WIP_FWD_LOG
863 fwdStatus(fwd, s);
864
865#endif
866 /*
867 * If its not a reply that we will re-forward, then
868 * allow the client to get it.
869 */
585ab260 870 if (!fwd->reforwardableStatus(rep->sline.status))
2afaba07 871 EBIT_CLR(entry->flags, ENTRY_FWD_HDR_WAIT);
872
4b44c907 873 switch (cacheableReply()) {
874
875 case 1:
5ed72359 876 entry->makePublic();
62e76326 877 break;
878
9bc73deb 879 case 0:
5ed72359 880 entry->makePrivate();
62e76326 881 break;
882
9bc73deb 883 case -1:
4b44c907 884
ac9cc053 885#if HTTP_VIOLATIONS
4b44c907 886 if (Config.negativeTtl > 0)
5ed72359 887 entry->cacheNegatively();
4b44c907 888 else
ac9cc053 889#endif
5ed72359 890 entry->makePrivate();
4b44c907 891
62e76326 892 break;
893
9bc73deb 894 default:
62e76326 895 assert(0);
4b44c907 896
62e76326 897 break;
9bc73deb 898 }
62e76326 899
4b44c907 900no_cache:
901
585ab260 902 if (!ignoreCacheControl && rep->cache_control) {
903 if (EBIT_TEST(rep->cache_control->mask, CC_PROXY_REVALIDATE))
62e76326 904 EBIT_SET(entry->flags, ENTRY_REVALIDATE);
585ab260 905 else if (EBIT_TEST(rep->cache_control->mask, CC_MUST_REVALIDATE))
62e76326 906 EBIT_SET(entry->flags, ENTRY_REVALIDATE);
9bc73deb 907 }
62e76326 908
c3609322 909#if HEADERS_LOG
585ab260 910 headersLog(1, 0, request->method, rep);
fc68f6b1 911
c3609322 912#endif
5f8252d2 913
914 ctx_exit(ctx);
f5558c95 915}
916
528b2c61 917HttpStateData::ConnectionStatus
918HttpStateData::statusIfComplete() const
603a02fd 919{
585ab260 920 const HttpReply *rep = virginReply();
073ba374
AJ
921 /** \par
922 * If the reply wants to close the connection, it takes precedence */
62e76326 923
2afaba07 924 if (httpHeaderHasConnDir(&rep->header, "close"))
62e76326 925 return COMPLETE_NONPERSISTENT_MSG;
926
073ba374
AJ
927 /** \par
928 * If we didn't send a keep-alive request header, then this
978e455f 929 * can not be a persistent connection.
930 */
528b2c61 931 if (!flags.keepalive)
62e76326 932 return COMPLETE_NONPERSISTENT_MSG;
933
073ba374 934 /** \par
72b63f06 935 * If we haven't sent the whole request then this can not be a persistent
936 * connection.
937 */
938 if (!flags.request_sent) {
60745f24 939 debugs(11, 1, "statusIfComplete: Request not yet fully sent \"" << RequestMethodStr(orig_request->method) << " " << entry->url() << "\"" );
72b63f06 940 return COMPLETE_NONPERSISTENT_MSG;
941 }
942
073ba374 943 /** \par
9f5a2895 944 * What does the reply have to say about keep-alive?
945 */
073ba374
AJ
946 /**
947 \bug XXX BUG?
b6a2f15e 948 * If the origin server (HTTP/1.0) does not send a keep-alive
949 * header, but keeps the connection open anyway, what happens?
950 * We'll return here and http.c waits for an EOF before changing
951 * store_status to STORE_OK. Combine this with ENTRY_FWD_HDR_WAIT
952 * and an error status code, and we might have to wait until
953 * the server times out the socket.
954 */
2afaba07 955 if (!rep->keep_alive)
528b2c61 956 return COMPLETE_NONPERSISTENT_MSG;
62e76326 957
528b2c61 958 return COMPLETE_PERSISTENT_MSG;
959}
960
961HttpStateData::ConnectionStatus
962HttpStateData::persistentConnStatus() const
963{
ba82c452 964 debugs(11, 3, "persistentConnStatus: FD " << fd << " eof=" << eof);
585ab260 965 const HttpReply *vrep = virginReply();
966 debugs(11, 5, "persistentConnStatus: content_length=" << vrep->content_length);
62e76326 967
5f8252d2 968 /* If we haven't seen the end of reply headers, we are not done */
bf8fe701 969 debugs(11, 5, "persistentConnStatus: flags.headers_parsed=" << flags.headers_parsed);
fc68f6b1 970
1a98175f 971 if (!flags.headers_parsed)
62e76326 972 return INCOMPLETE_MSG;
973
839291ac
AJ
974 if (eof) // already reached EOF
975 return COMPLETE_NONPERSISTENT_MSG;
976
9035d1d5
AJ
977 /** \par
978 * In chunked response we do not know the content length but we are absolutely
af0bb8e5 979 * sure about the end of response, so we are calling the statusIfComplete to
9e008dda 980 * decide if we can be persistant
af0bb8e5 981 */
839291ac 982 if (lastChunk && flags.chunked)
9e008dda 983 return statusIfComplete();
af0bb8e5 984
47f6e231 985 const int64_t clen = vrep->bodySize(request->method);
fc68f6b1 986
bf8fe701 987 debugs(11, 5, "persistentConnStatus: clen=" << clen);
2afaba07 988
35282fbf 989 /* If the body size is unknown we must wait for EOF */
990 if (clen < 0)
62e76326 991 return INCOMPLETE_MSG;
992
9035d1d5
AJ
993 /** \par
994 * If the body size is known, we must wait until we've gotten all of it. */
5f8252d2 995 if (clen > 0) {
996 // old technique:
585ab260 997 // if (entry->mem_obj->endOffset() < vrep->content_length + vrep->hdr_sz)
47f6e231 998 const int64_t body_bytes_read = reply_bytes_read - header_bytes_read;
5f8252d2 999 debugs(11,5, "persistentConnStatus: body_bytes_read=" <<
585ab260 1000 body_bytes_read << " content_length=" << vrep->content_length);
2afaba07 1001
585ab260 1002 if (body_bytes_read < vrep->content_length)
5f8252d2 1003 return INCOMPLETE_MSG;
821beb5e
AR
1004
1005 if (body_bytes_truncated > 0) // already read more than needed
1006 return COMPLETE_NONPERSISTENT_MSG; // disable pconns
5f8252d2 1007 }
62e76326 1008
9035d1d5
AJ
1009 /** \par
1010 * If there is no message body or we got it all, we can be persistent */
5f8252d2 1011 return statusIfComplete();
603a02fd 1012}
090089c4 1013
2afaba07 1014/*
1015 * This is the callback after some data has been read from the network
1016 */
dc56a9b1 1017/*
e5ee81f0 1018void
d53b3f6d 1019HttpStateData::ReadReplyWrapper(int fd, char *buf, size_t len, comm_err_t flag, int xerrno, void *data)
c4b7a5a9 1020{
1021 HttpStateData *httpState = static_cast<HttpStateData *>(data);
7194987f 1022 assert (fd == httpState->fd);
d53b3f6d 1023 // assert(buf == readBuf->content());
1d5161bd 1024 PROF_start(HttpStateData_readReply);
e6edd8df 1025 httpState->readReply(len, flag, xerrno);
1d5161bd 1026 PROF_stop(HttpStateData_readReply);
c4b7a5a9 1027}
dc56a9b1 1028*/
073ba374 1029
2afdbf48 1030/* XXX this function is too long! */
c4b7a5a9 1031void
e6edd8df 1032HttpStateData::readReply(const CommIoCbParams &io)
090089c4 1033{
30a4f2a8 1034 int bin;
090089c4 1035 int clen;
dc56a9b1 1036 int len = io.size;
c4b7a5a9 1037
dc56a9b1 1038 assert(fd == io.fd);
1039
1040 flags.do_next_read = 0;
9e008dda 1041
7a7cc03f 1042 debugs(11, 5, "httpReadReply: FD " << fd << ": len " << len << ".");
62e76326 1043
7a7cc03f 1044 // Bail out early on COMM_ERR_CLOSING - close handlers will tidy up for us
dc56a9b1 1045 if (io.flag == COMM_ERR_CLOSING) {
bf8fe701 1046 debugs(11, 3, "http socket closing");
c4b7a5a9 1047 return;
1048 }
1049
e92e4e44 1050 if (EBIT_TEST(entry->flags, ENTRY_ABORTED)) {
5f8252d2 1051 maybeReadVirginBody();
62e76326 1052 return;
e92e4e44 1053 }
c4b7a5a9 1054
fdf55365 1055 // handle I/O errors
dc56a9b1 1056 if (io.flag != COMM_OK || len < 0) {
7a7cc03f 1057 debugs(11, 2, "httpReadReply: FD " << fd << ": read failure: " << xstrerror() << ".");
fdf55365 1058
dc56a9b1 1059 if (ignoreErrno(io.xerrno)) {
fdf55365 1060 flags.do_next_read = 1;
1061 } else {
1062 ErrorState *err;
1063 err = errorCon(ERR_READ_ERROR, HTTP_BAD_GATEWAY, fwd->request);
dc56a9b1 1064 err->xerrno = io.xerrno;
fdf55365 1065 fwd->fail(err);
1066 flags.do_next_read = 0;
1067 comm_close(fd);
1068 }
1069
1070 return;
1071 }
1072
7a7cc03f 1073 // update I/O stats
fdf55365 1074 if (len > 0) {
2afaba07 1075 readBuf->appended(len);
5f8252d2 1076 reply_bytes_read += len;
447e176b 1077#if DELAY_POOLS
2afaba07 1078
1079 DelayId delayId = entry->mem_obj->mostBytesAllowed();
62e76326 1080 delayId.bytesIn(len);
447e176b 1081#endif
62e76326 1082
1083 kb_incr(&statCounter.server.all.kbytes_in, len);
1084 kb_incr(&statCounter.server.http.kbytes_in, len);
62e76326 1085 IOStats.Http.reads++;
1086
1087 for (clen = len - 1, bin = 0; clen; bin++)
1088 clen >>= 1;
1089
1090 IOStats.Http.read_hist[bin]++;
3ff65596
AR
1091
1092 // update peer response time stats (%<pt)
1093 const timeval &sent = orig_request->hier.peer_http_request_sent;
1094 orig_request->hier.peer_response_time =
1095 sent.tv_sec ? tvSubMsec(sent, current_time) : -1;
30a4f2a8 1096 }
62e76326 1097
073ba374
AJ
1098 /** \par
1099 * Here the RFC says we should ignore whitespace between replies, but we can't as
5fa061b8 1100 * doing so breaks HTTP/0.9 replies beginning with witespace, and in addition
1101 * the response splitting countermeasures is extremely likely to trigger on this,
1102 * not allowing connection reuse in the first place.
1103 */
1104#if DONT_DO_THIS
fdf55365 1105 if (!flags.headers_parsed && len > 0 && fd_table[fd].uses > 1) {
5fa061b8 1106 /* Skip whitespace between replies */
62e76326 1107
d53b3f6d
FC
1108 while (len > 0 && xisspace(*buf))
1109 xmemmove(buf, buf + 1, len--);
62e76326 1110
1111 if (len == 0) {
1112 /* Continue to read... */
21b92762 1113 /* Timeout NOT increased. This whitespace was from previous reply */
f61f0107 1114 flags.do_next_read = 1;
5f8252d2 1115 maybeReadVirginBody();
62e76326 1116 return;
1117 }
5ede6c8f 1118 }
62e76326 1119
5fa061b8 1120#endif
1121
ba82c452 1122 if (len == 0) { // reached EOF?
62e76326 1123 eof = 1;
f61f0107 1124 flags.do_next_read = 0;
da6c8415
AJ
1125
1126 /* Bug 2789: Replies may terminate with \r\n then EOF instead of \r\n\r\n
1127 * Ensure here that we have at minimum two \r\n when EOF is seen.
1128 * TODO: When headersEnd() is cleaned up to only be called once we can merge
1129 * this as a special case there where it belongs.
1130 */
1131 if (!flags.headers_parsed) {
1132 /*
1133 * Yes Henrik, there is a point to doing this. When we
1134 * called httpProcessReplyHeader() before, we didn't find
1135 * the end of headers, but now we are definately at EOF, so
1136 * we want to process the reply headers.
1137 */
1138 /* Fake an "end-of-headers" to work around such broken servers */
1139 readBuf->append("\r\n", 2);
1140 len = 2;
1141 }
ba82c452 1142 }
62e76326 1143
ba82c452 1144 if (!flags.headers_parsed) { // have not parsed headers yet?
1145 PROF_start(HttpStateData_processReplyHeader);
1146 processReplyHeader();
1147 PROF_stop(HttpStateData_processReplyHeader);
1148
1149 if (!continueAfterParsingHeader()) // parsing error or need more data
1150 return; // TODO: send errors to ICAP
1151
585ab260 1152 adaptOrFinalizeReply();
ba82c452 1153 }
1154
1155 // kick more reads if needed and/or process the response body, if any
1156 PROF_start(HttpStateData_processReplyBody);
1157 processReplyBody(); // may call serverComplete()
1158 PROF_stop(HttpStateData_processReplyBody);
1159}
1160
073ba374
AJ
1161/**
1162 \retval true if we can continue with processing the body or doing ICAP.
1163 */
ba82c452 1164bool
1165HttpStateData::continueAfterParsingHeader()
1166{
073ba374 1167 if (!flags.headers_parsed && !eof) {
ba82c452 1168 debugs(11, 9, HERE << "needs more at " << readBuf->contentSize());
1169 flags.do_next_read = 1;
073ba374
AJ
1170 /** \retval false If we have not finished parsing the headers and may get more data.
1171 * Schedules more reads to retrieve the missing data.
1172 */
ba82c452 1173 maybeReadVirginBody(); // schedules all kinds of reads; TODO: rename
073ba374 1174 return false;
ba82c452 1175 }
1176
073ba374 1177 /** If we are done with parsing, check for errors */
ba82c452 1178
1179 err_type error = ERR_NONE;
1180
1181 if (flags.headers_parsed) { // parsed headers, possibly with errors
1182 // check for header parsing errors
585ab260 1183 if (HttpReply *vrep = virginReply()) {
1184 const http_status s = vrep->sline.status;
1185 const HttpVersion &v = vrep->sline.version;
ba82c452 1186 if (s == HTTP_INVALID_HEADER && v != HttpVersion(0,9)) {
9121eba6 1187 debugs(11, DBG_IMPORTANT, "WARNING: HTTP: Invalid Response: Bad header encountered from " << entry->url() << " AKA " << orig_request->GetHost() << orig_request->urlpath.termedBuf() );
ba82c452 1188 error = ERR_INVALID_RESP;
e1381638
AJ
1189 } else if (s == HTTP_HEADER_TOO_LARGE) {
1190 fwd->dontRetry(true);
1191 error = ERR_TOO_BIG;
1192 } else {
1193 return true; // done parsing, got reply, and no error
1194 }
ba82c452 1195 } else {
1196 // parsed headers but got no reply
9121eba6 1197 debugs(11, DBG_IMPORTANT, "WARNING: HTTP: Invalid Response: No reply at all for " << entry->url() << " AKA " << orig_request->GetHost() << orig_request->urlpath.termedBuf() );
ba82c452 1198 error = ERR_INVALID_RESP;
62e76326 1199 }
090089c4 1200 } else {
ba82c452 1201 assert(eof);
9121eba6
AJ
1202 if (readBuf->hasContent()) {
1203 error = ERR_INVALID_RESP;
1204 debugs(11, DBG_IMPORTANT, "WARNING: HTTP: Invalid Response: Headers did not parse at all for " << entry->url() << " AKA " << orig_request->GetHost() << orig_request->urlpath.termedBuf() );
1205 } else {
1206 error = ERR_ZERO_SIZE_OBJECT;
1207 debugs(11, DBG_IMPORTANT, "WARNING: HTTP: Invalid Response: No object data received for " << entry->url() << " AKA " << orig_request->GetHost() << orig_request->urlpath.termedBuf() );
1208 }
2afaba07 1209 }
ba82c452 1210
1211 assert(error != ERR_NONE);
1212 entry->reset();
1213 fwd->fail(errorCon(error, HTTP_BAD_GATEWAY, fwd->request));
1214 flags.do_next_read = 0;
1215 comm_close(fd);
1216 return false; // quit on error
2afaba07 1217}
1218
821beb5e
AR
1219/** truncate what we read if we read too much so that writeReplyBody()
1220 writes no more than what we should have read */
1221void
1222HttpStateData::truncateVirginBody()
1223{
1224 assert(flags.headers_parsed);
1225
1226 HttpReply *vrep = virginReply();
1227 int64_t clen = -1;
1228 if (!vrep->expectingBody(request->method, clen) || clen < 0)
1229 return; // no body or a body of unknown size, including chunked
1230
1231 const int64_t body_bytes_read = reply_bytes_read - header_bytes_read;
e1381638 1232 if (body_bytes_read - body_bytes_truncated <= clen)
821beb5e
AR
1233 return; // we did not read too much or already took care of the extras
1234
1235 if (const int64_t extras = body_bytes_read - body_bytes_truncated - clen) {
1236 // server sent more that the advertised content length
e1381638
AJ
1237 debugs(11,5, HERE << "body_bytes_read=" << body_bytes_read <<
1238 " clen=" << clen << '/' << vrep->content_length <<
1239 " body_bytes_truncated=" << body_bytes_truncated << '+' << extras);
821beb5e
AR
1240
1241 readBuf->truncate(extras);
1242 body_bytes_truncated += extras;
1243 }
1244}
1245
073ba374 1246/**
2afaba07 1247 * Call this when there is data from the origin server
1248 * which should be sent to either StoreEntry, or to ICAP...
1249 */
1250void
5f8252d2 1251HttpStateData::writeReplyBody()
2afaba07 1252{
821beb5e 1253 truncateVirginBody(); // if needed
5f8252d2 1254 const char *data = readBuf->content();
1255 int len = readBuf->contentSize();
bc81cb2b 1256 addVirginReplyBody(data, len);
5f8252d2 1257 readBuf->consume(len);
af0bb8e5 1258}
fc68f6b1 1259
af0bb8e5 1260bool
1261HttpStateData::decodeAndWriteReplyBody()
1262{
1263 const char *data = NULL;
1264 int len;
e053c141 1265 bool wasThereAnException = false;
af0bb8e5 1266 assert(flags.chunked);
1267 assert(httpChunkDecoder);
1268 SQUID_ENTER_THROWING_CODE();
1269 MemBuf decodedData;
1270 decodedData.init();
e053c141 1271 const bool doneParsing = httpChunkDecoder->parse(readBuf,&decodedData);
af0bb8e5 1272 len = decodedData.contentSize();
1273 data=decodedData.content();
1274 addVirginReplyBody(data, len);
e053c141 1275 if (doneParsing) {
839291ac
AJ
1276 lastChunk = 1;
1277 flags.do_next_read = 0;
af0bb8e5 1278 }
e053c141
FC
1279 SQUID_EXIT_THROWING_CODE(wasThereAnException);
1280 return wasThereAnException;
e6ccf245 1281}
1282
073ba374 1283/**
2afaba07 1284 * processReplyBody has two purposes:
1285 * 1 - take the reply body data, if any, and put it into either
1286 * the StoreEntry, or give it over to ICAP.
1287 * 2 - see if we made it to the end of the response (persistent
1288 * connections and such)
1289 */
e6ccf245 1290void
2afaba07 1291HttpStateData::processReplyBody()
e6ccf245 1292{
dc56a9b1 1293 AsyncCall::Pointer call;
b7ac5457 1294 Ip::Address client_addr;
d67acb4e 1295 bool ispinned = false;
fc68f6b1 1296
1a98175f 1297 if (!flags.headers_parsed) {
f61f0107 1298 flags.do_next_read = 1;
5f8252d2 1299 maybeReadVirginBody();
62e76326 1300 return;
528b2c61 1301 }
62e76326 1302
a83c6ed6 1303#if USE_ADAPTATION
c30ac6ea 1304 debugs(11,5, HERE << "adaptationAccessCheckPending=" << adaptationAccessCheckPending);
a83c6ed6 1305 if (adaptationAccessCheckPending)
2afaba07 1306 return;
fc68f6b1 1307
2afaba07 1308#endif
62e76326 1309
2afaba07 1310 /*
1311 * At this point the reply headers have been parsed and consumed.
1312 * That means header content has been removed from readBuf and
1313 * it contains only body data.
1314 */
9e008dda
AJ
1315 if (flags.chunked) {
1316 if (!decodeAndWriteReplyBody()) {
1317 flags.do_next_read = 0;
1318 serverComplete();
1319 return;
1320 }
1321 } else
1322 writeReplyBody();
528b2c61 1323
e6ccf245 1324 if (EBIT_TEST(entry->flags, ENTRY_ABORTED)) {
62e76326 1325 /*
073ba374 1326 * The above writeReplyBody() call could ABORT this entry,
62e76326 1327 * in that case, the server FD should already be closed.
1328 * there's nothing for us to do.
1329 */
1330 (void) 0;
1331 } else
1332 switch (persistentConnStatus()) {
62e76326 1333 case INCOMPLETE_MSG:
bf8fe701 1334 debugs(11, 5, "processReplyBody: INCOMPLETE_MSG");
21b92762 1335 /* Wait for more data or EOF condition */
21b92762 1336 if (flags.keepalive_broken) {
9e008dda 1337 call = NULL;
dc56a9b1 1338 commSetTimeout(fd, 10, call);
21b92762 1339 } else {
9e008dda 1340 call = NULL;
dc56a9b1 1341 commSetTimeout(fd, Config.Timeout.read, call);
21b92762 1342 }
1343
f61f0107 1344 flags.do_next_read = 1;
62e76326 1345 break;
1346
1347 case COMPLETE_PERSISTENT_MSG:
bf8fe701 1348 debugs(11, 5, "processReplyBody: COMPLETE_PERSISTENT_MSG");
62e76326 1349 /* yes we have to clear all these! */
9e008dda 1350 call = NULL;
dc56a9b1 1351 commSetTimeout(fd, -1, call);
f61f0107 1352 flags.do_next_read = 0;
62e76326 1353
9e008dda 1354 comm_remove_close_handler(fd, closeHandler);
dc56a9b1 1355 closeHandler = NULL;
b6b6f466 1356 fwd->unregister(fd);
fc68f6b1 1357
f165d2fb 1358 if (orig_request->flags.spoof_client_ip)
cc192b50 1359 client_addr = orig_request->client_addr;
fc68f6b1 1360
d67acb4e 1361
9e008dda
AJ
1362 if (request->flags.pinned) {
1363 ispinned = true;
1364 } else if (request->flags.connection_auth && request->flags.auth_sent) {
1365 ispinned = true;
1366 }
1367
1368 if (orig_request->pinnedConnection() && ispinned) {
1369 orig_request->pinnedConnection()->pinConnection(fd, orig_request, _peer,
1370 (request->flags.connection_auth != 0));
bd0723ad 1371 } else {
06093389 1372 fwd->pconnPush(fd, _peer, request, orig_request->GetHost(), client_addr);
bd0723ad 1373 }
1374
62e76326 1375 fd = -1;
2afaba07 1376
5f8252d2 1377 serverComplete();
62e76326 1378 return;
1379
1380 case COMPLETE_NONPERSISTENT_MSG:
bf8fe701 1381 debugs(11, 5, "processReplyBody: COMPLETE_NONPERSISTENT_MSG");
5f8252d2 1382 serverComplete();
62e76326 1383 return;
1384 }
1385
5f8252d2 1386 maybeReadVirginBody();
c4b7a5a9 1387}
1388
1389void
5f8252d2 1390HttpStateData::maybeReadVirginBody()
c4b7a5a9 1391{
52edecde 1392 // we may need to grow the buffer if headers do not fit
1c9605c5 1393 const int minRead = flags.headers_parsed ? 0 :1024;
d5f8d05f 1394 const int read_size = replyBodySpace(*readBuf, minRead);
2afaba07 1395
5f8252d2 1396 debugs(11,9, HERE << (flags.do_next_read ? "may" : "wont") <<
d5f8d05f 1397 " read up to " << read_size << " bytes from FD " << fd);
2afaba07 1398
1399 /*
1400 * why <2? Because delayAwareRead() won't actually read if
1401 * you ask it to read 1 byte. The delayed read request
1402 * just gets re-queued until the client side drains, then
1403 * the I/O thread hangs. Better to not register any read
1404 * handler until we get a notification from someone that
1405 * its okay to read again.
1406 */
d5f8d05f 1407 if (read_size < 2)
52edecde 1408 return;
2afaba07 1409
f61f0107 1410 if (flags.do_next_read) {
dc56a9b1 1411 flags.do_next_read = 0;
1412 typedef CommCbMemFunT<HttpStateData, CommIoCbParams> Dialer;
d5f8d05f 1413 entry->delayAwareRead(fd, readBuf->space(read_size), read_size,
9e008dda
AJ
1414 asyncCall(11, 5, "HttpStateData::readReply",
1415 Dialer(this, &HttpStateData::readReply)));
528b2c61 1416 }
090089c4 1417}
1418
2afaba07 1419/*
1420 * This will be called when request write is complete.
1421 */
d576a6a6 1422void
dc56a9b1 1423HttpStateData::sendComplete(const CommIoCbParams &io)
090089c4 1424{
dc56a9b1 1425 debugs(11, 5, "httpSendComplete: FD " << fd << ": size " << io.size << ": errflag " << io.flag << ".");
bc87dc25 1426#if URL_CHECKSUM_DEBUG
62e76326 1427
528b2c61 1428 entry->mem_obj->checkUrlChecksum();
bc87dc25 1429#endif
62e76326 1430
dc56a9b1 1431 if (io.size > 0) {
1432 fd_bytes(fd, io.size, FD_WRITE);
1433 kb_incr(&statCounter.server.all.kbytes_out, io.size);
1434 kb_incr(&statCounter.server.http.kbytes_out, io.size);
ee1679df 1435 }
62e76326 1436
dc56a9b1 1437 if (io.flag == COMM_ERR_CLOSING)
62e76326 1438 return;
1439
dc56a9b1 1440 if (io.flag) {
6cae5db1 1441 ErrorState *err;
dc56a9b1 1442 err = errorCon(ERR_WRITE_ERROR, HTTP_BAD_GATEWAY, fwd->request);
1443 err->xerrno = io.xerrno;
1444 fwd->fail(err);
62e76326 1445 comm_close(fd);
1446 return;
090089c4 1447 }
72b63f06 1448
2afaba07 1449 /*
1450 * Set the read timeout here because it hasn't been set yet.
1451 * We only set the read timeout after the request has been
1452 * fully written to the server-side. If we start the timeout
1453 * after connection establishment, then we are likely to hit
1454 * the timeout for POST/PUT requests that have very large
1455 * request bodies.
1456 */
dc56a9b1 1457 typedef CommCbMemFunT<HttpStateData, CommTimeoutCbParams> TimeoutDialer;
1458 AsyncCall::Pointer timeoutCall = asyncCall(11, 5, "HttpStateData::httpTimeout",
9e008dda 1459 TimeoutDialer(this,&HttpStateData::httpTimeout));
2afaba07 1460
dc56a9b1 1461 commSetTimeout(fd, Config.Timeout.read, timeoutCall);
1462
1463 flags.request_sent = 1;
e1381638 1464
3ff65596 1465 orig_request->hier.peer_http_request_sent = current_time;
090089c4 1466}
1467
5f8252d2 1468// Close the HTTP server connection. Used by serverComplete().
2afaba07 1469void
5f8252d2 1470HttpStateData::closeServer()
2afaba07 1471{
5f8252d2 1472 debugs(11,5, HERE << "closing HTTP server FD " << fd << " this " << this);
fc68f6b1 1473
2afaba07 1474 if (fd >= 0) {
b6b6f466 1475 fwd->unregister(fd);
9e008dda 1476 comm_remove_close_handler(fd, closeHandler);
dc56a9b1 1477 closeHandler = NULL;
2afaba07 1478 comm_close(fd);
1479 fd = -1;
1480 }
5f8252d2 1481}
2afaba07 1482
5f8252d2 1483bool
1484HttpStateData::doneWithServer() const
1485{
1486 return fd < 0;
2afaba07 1487}
1488
ee0b94f4
HN
1489
1490/*
1491 * Fixup authentication request headers for special cases
1492 */
1493static void
1494httpFixupAuthentication(HttpRequest * request, HttpRequest * orig_request, const HttpHeader * hdr_in, HttpHeader * hdr_out, http_state_flags flags)
1495{
1496 http_hdr_type header = flags.originpeer ? HDR_AUTHORIZATION : HDR_PROXY_AUTHORIZATION;
1497
1498 /* Nothing to do unless we are forwarding to a peer */
1499 if (!request->flags.proxying)
f54f527e 1500 return;
ee0b94f4
HN
1501
1502 /* Needs to be explicitly enabled */
dcde39a7 1503 if (!orig_request->peer_login)
f54f527e 1504 return;
ee0b94f4
HN
1505
1506 /* Maybe already dealt with? */
1507 if (hdr_out->has(header))
f54f527e 1508 return;
ee0b94f4
HN
1509
1510 /* Nothing to do here for PASSTHRU */
1511 if (strcmp(orig_request->peer_login, "PASSTHRU") == 0)
f54f527e 1512 return;
ee0b94f4
HN
1513
1514 /* PROXYPASS is a special case, single-signon to servers with the proxy password (basic only) */
1515 if (flags.originpeer && strcmp(orig_request->peer_login, "PROXYPASS") == 0 && hdr_in->has(HDR_PROXY_AUTHORIZATION)) {
f54f527e 1516 const char *auth = hdr_in->getStr(HDR_PROXY_AUTHORIZATION);
ee0b94f4 1517
f54f527e
AJ
1518 if (auth && strncasecmp(auth, "basic ", 6) == 0) {
1519 hdr_out->putStr(header, auth);
1520 return;
1521 }
ee0b94f4
HN
1522 }
1523
1524 /* Special mode to pass the username to the upstream cache */
1525 if (*orig_request->peer_login == '*') {
f54f527e
AJ
1526 char loginbuf[256];
1527 const char *username = "-";
ee0b94f4 1528
f54f527e
AJ
1529 if (orig_request->extacl_user.size())
1530 username = orig_request->extacl_user.termedBuf();
1531 else if (orig_request->auth_user_request)
1532 username = orig_request->auth_user_request->username();
ee0b94f4 1533
f54f527e 1534 snprintf(loginbuf, sizeof(loginbuf), "%s%s", username, orig_request->peer_login + 1);
ee0b94f4 1535
f54f527e
AJ
1536 httpHeaderPutStrf(hdr_out, header, "Basic %s",
1537 base64_encode(loginbuf));
1538 return;
ee0b94f4
HN
1539 }
1540
1541 /* external_acl provided credentials */
1542 if (orig_request->extacl_user.size() && orig_request->extacl_passwd.size() &&
f54f527e
AJ
1543 (strcmp(orig_request->peer_login, "PASS") == 0 ||
1544 strcmp(orig_request->peer_login, "PROXYPASS") == 0)) {
1545 char loginbuf[256];
1546 snprintf(loginbuf, sizeof(loginbuf), SQUIDSTRINGPH ":" SQUIDSTRINGPH,
1547 SQUIDSTRINGPRINT(orig_request->extacl_user),
1548 SQUIDSTRINGPRINT(orig_request->extacl_passwd));
1549 httpHeaderPutStrf(hdr_out, header, "Basic %s",
1550 base64_encode(loginbuf));
1551 return;
ee0b94f4
HN
1552 }
1553
9ca29d23
AJ
1554 /* Kerberos login to peer */
1555#if HAVE_KRB5 && HAVE_GSSAPI
1556 if (strncmp(orig_request->peer_login, "NEGOTIATE",strlen("NEGOTIATE")) == 0) {
1557 char *Token=NULL;
1558 char *PrincipalName=NULL,*p;
1559 if ((p=strchr(orig_request->peer_login,':')) != NULL ) {
1560 PrincipalName=++p;
1561 }
1562 Token = peer_proxy_negotiate_auth(PrincipalName,request->peer_host);
1563 if (Token) {
1564 httpHeaderPutStrf(hdr_out, HDR_PROXY_AUTHORIZATION, "Negotiate %s",Token);
1565 }
1566 return;
1567 }
1568#endif /* HAVE_KRB5 && HAVE_GSSAPI */
1569
0606266f 1570 httpHeaderPutStrf(hdr_out, header, "Basic %s",
f54f527e 1571 base64_encode(orig_request->peer_login));
ee0b94f4
HN
1572 return;
1573}
1574
99edd1c3 1575/*
9e008dda 1576 * build request headers and append them to a given MemBuf
e5ee81f0 1577 * used by buildRequestPrefix()
818c6c9e 1578 * note: initialised the HttpHeader, the caller is responsible for Clean()-ing
99edd1c3 1579 */
e1e72f06 1580void
e5ee81f0 1581HttpStateData::httpBuildRequestHeader(HttpRequest * request,
1582 HttpRequest * orig_request,
1583 StoreEntry * entry,
1584 HttpHeader * hdr_out,
1585 http_state_flags flags)
6bf8443a 1586{
99edd1c3 1587 /* building buffer for complex strings */
5999b776 1588#define BBUF_SZ (MAX_URL+32)
99edd1c3 1589 LOCAL_ARRAY(char, bbuf, BBUF_SZ);
67c06f0d 1590 LOCAL_ARRAY(char, ntoabuf, MAX_IPSTRLEN);
99edd1c3 1591 const HttpHeader *hdr_in = &orig_request->header;
67c06f0d 1592 const HttpHeaderEntry *e = NULL;
99edd1c3 1593 HttpHeaderPos pos = HttpHeaderInitPos;
75faaa7a 1594 assert (hdr_out->owner == hoRequest);
62e76326 1595
262a0e14 1596 /* append our IMS header */
fa3e249f 1597 if (request->lastmod > -1)
a9925b40 1598 hdr_out->putTime(HDR_IF_MODIFIED_SINCE, request->lastmod);
99edd1c3 1599
528b2c61 1600 bool we_do_ranges = decideIfWeDoRanges (orig_request);
1601
30abd221 1602 String strConnection (hdr_in->getList(HDR_CONNECTION));
62e76326 1603
a9925b40 1604 while ((e = hdr_in->getEntry(&pos)))
62e76326 1605 copyOneHeaderFromClientsideRequestToUpstreamRequest(e, strConnection, request, orig_request, hdr_out, we_do_ranges, flags);
528b2c61 1606
43ae1d95 1607 /* Abstraction break: We should interpret multipart/byterange responses
528b2c61 1608 * into offset-length data, and this works around our inability to do so.
1609 */
62e76326 1610 if (!we_do_ranges && orig_request->multipartRangeRequest()) {
1611 /* don't cache the result */
1612 orig_request->flags.cachable = 0;
1613 /* pretend it's not a range request */
00d77d6b 1614 delete orig_request->range;
62e76326 1615 orig_request->range = NULL;
1616 orig_request->flags.range = 0;
1617 }
528b2c61 1618
99edd1c3 1619 /* append Via */
736cb6aa 1620 if (Config.onoff.via) {
30abd221 1621 String strVia;
a9925b40 1622 strVia = hdr_in->getList(HDR_VIA);
62e76326 1623 snprintf(bbuf, BBUF_SZ, "%d.%d %s",
1624 orig_request->http_ver.major,
1625 orig_request->http_ver.minor, ThisCache);
1626 strListAdd(&strVia, bbuf, ',');
d53b3f6d 1627 hdr_out->putStr(HDR_VIA, strVia.termedBuf());
30abd221 1628 strVia.clean();
736cb6aa 1629 }
62e76326 1630
432bc83c 1631 if (orig_request->flags.accelerated) {
43ae1d95 1632 /* Append Surrogate-Capabilities */
45cca89d
AJ
1633 String strSurrogate(hdr_in->getList(HDR_SURROGATE_CAPABILITY));
1634#if USE_SQUID_ESI
1635 snprintf(bbuf, BBUF_SZ, "%s=\"Surrogate/1.0 ESI/1.0\"", Config.Accel.surrogate_id);
1636#else
1637 snprintf(bbuf, BBUF_SZ, "%s=\"Surrogate/1.0\"", Config.Accel.surrogate_id);
1638#endif
43ae1d95 1639 strListAdd(&strSurrogate, bbuf, ',');
d53b3f6d 1640 hdr_out->putStr(HDR_SURROGATE_CAPABILITY, strSurrogate.termedBuf());
43ae1d95 1641 }
43ae1d95 1642
67c06f0d 1643 /** \pre Handle X-Forwarded-For */
9e008dda 1644 if (strcmp(opt_forwarded_for, "delete") != 0) {
c4f30223
AR
1645
1646 String strFwd = hdr_in->getList(HDR_X_FORWARDED_FOR);
1647
1648 if (strFwd.size() > 65536/2) {
1649 // There is probably a forwarding loop with Via detection disabled.
1650 // If we do nothing, String will assert on overflow soon.
1651 // TODO: Terminate all transactions with huge XFF?
1652 strFwd = "error";
1653
1654 static int warnedCount = 0;
1655 if (warnedCount++ < 100) {
1656 const char *url = entry ? entry->url() : urlCanonical(orig_request);
1657 debugs(11, 1, "Warning: likely forwarding loop with " << url);
1658 }
1659 }
1660
9e008dda 1661 if (strcmp(opt_forwarded_for, "on") == 0) {
67c06f0d 1662 /** If set to ON - append client IP or 'unknown'. */
9e008dda 1663 if ( orig_request->client_addr.IsNoAddr() )
67c06f0d
AJ
1664 strListAdd(&strFwd, "unknown", ',');
1665 else
1666 strListAdd(&strFwd, orig_request->client_addr.NtoA(ntoabuf, MAX_IPSTRLEN), ',');
9e008dda 1667 } else if (strcmp(opt_forwarded_for, "off") == 0) {
67c06f0d 1668 /** If set to OFF - append 'unknown'. */
67c06f0d 1669 strListAdd(&strFwd, "unknown", ',');
9e008dda 1670 } else if (strcmp(opt_forwarded_for, "transparent") == 0) {
67c06f0d 1671 /** If set to TRANSPARENT - pass through unchanged. */
9e008dda 1672 } else if (strcmp(opt_forwarded_for, "truncate") == 0) {
67c06f0d 1673 /** If set to TRUNCATE - drop existing list and replace with client IP or 'unknown'. */
9e008dda 1674 if ( orig_request->client_addr.IsNoAddr() )
67c06f0d
AJ
1675 strFwd = "unknown";
1676 else
1677 strFwd = orig_request->client_addr.NtoA(ntoabuf, MAX_IPSTRLEN);
1678 }
9e008dda 1679 if (strFwd.size() > 0)
d53b3f6d 1680 hdr_out->putStr(HDR_X_FORWARDED_FOR, strFwd.termedBuf());
cc192b50 1681 }
67c06f0d 1682 /** If set to DELETE - do not copy through. */
6bccf575 1683
99edd1c3 1684 /* append Host if not there already */
a9925b40 1685 if (!hdr_out->has(HDR_HOST)) {
62e76326 1686 if (orig_request->peer_domain) {
a9925b40 1687 hdr_out->putStr(HDR_HOST, orig_request->peer_domain);
62e76326 1688 } else if (orig_request->port == urlDefaultPort(orig_request->protocol)) {
1689 /* use port# only if not default */
cc192b50 1690 hdr_out->putStr(HDR_HOST, orig_request->GetHost());
62e76326 1691 } else {
1692 httpHeaderPutStrf(hdr_out, HDR_HOST, "%s:%d",
cc192b50 1693 orig_request->GetHost(),
1694 (int) orig_request->port);
62e76326 1695 }
6bf8443a 1696 }
62e76326 1697
c68e9c6b 1698 /* append Authorization if known in URL, not in header and going direct */
a9925b40 1699 if (!hdr_out->has(HDR_AUTHORIZATION)) {
62e76326 1700 if (!request->flags.proxying && *request->login) {
1701 httpHeaderPutStrf(hdr_out, HDR_AUTHORIZATION, "Basic %s",
1702 base64_encode(request->login));
1703 }
c68e9c6b 1704 }
62e76326 1705
ee0b94f4
HN
1706 /* Fixup (Proxy-)Authorization special cases. Plain relaying dealt with above */
1707 httpFixupAuthentication(request, orig_request, hdr_in, hdr_out, flags);
62e76326 1708
ee0b94f4
HN
1709 /* append Cache-Control, add max-age if not there already */
1710 {
a9925b40 1711 HttpHdrCc *cc = hdr_in->getCc();
62e76326 1712
1713 if (!cc)
1714 cc = httpHdrCcCreate();
1715
7dc5c309
AJ
1716#if 0 /* see bug 2330 */
1717 /* Set no-cache if determined needed but not found */
1718 if (orig_request->flags.nocache)
1719 EBIT_SET(cc->mask, CC_NO_CACHE);
1720#endif
1721
af6a12ee
AJ
1722 /* Add max-age only without no-cache */
1723 if (!EBIT_TEST(cc->mask, CC_MAX_AGE) && !EBIT_TEST(cc->mask, CC_NO_CACHE)) {
43ae1d95 1724 const char *url =
3900307b 1725 entry ? entry->url() : urlCanonical(orig_request);
62e76326 1726 httpHdrCcSetMaxAge(cc, getMaxAge(url));
1727
1728 if (request->urlpath.size())
e8466ea9 1729 assert(strstr(url, request->urlpath.termedBuf()));
62e76326 1730 }
1731
ce2d6441 1732 /* Enforce sibling relations */
62e76326 1733 if (flags.only_if_cached)
1734 EBIT_SET(cc->mask, CC_ONLY_IF_CACHED);
1735
a9925b40 1736 hdr_out->putCc(cc);
62e76326 1737
1738 httpHdrCcDestroy(cc);
6bf8443a 1739 }
62e76326 1740
99edd1c3 1741 /* maybe append Connection: keep-alive */
b515fc11 1742 if (flags.keepalive) {
62e76326 1743 if (flags.proxying) {
a9925b40 1744 hdr_out->putStr(HDR_PROXY_CONNECTION, "keep-alive");
62e76326 1745 } else {
a9925b40 1746 hdr_out->putStr(HDR_CONNECTION, "keep-alive");
62e76326 1747 }
603a02fd 1748 }
62e76326 1749
a7ad6e4e 1750 /* append Front-End-Https */
1751 if (flags.front_end_https) {
62e76326 1752 if (flags.front_end_https == 1 || request->protocol == PROTO_HTTPS)
a9925b40 1753 hdr_out->putStr(HDR_FRONT_END_HTTPS, "On");
a7ad6e4e 1754 }
1755
6bccf575 1756 /* Now mangle the headers. */
4f56514c 1757 if (Config2.onoff.mangle_request_headers)
5967c0bf 1758 httpHdrMangleList(hdr_out, request, ROR_REQUEST);
62e76326 1759
30abd221 1760 strConnection.clean();
99edd1c3 1761}
1762
9e498bfb
AJ
1763/**
1764 * Decides whether a particular header may be cloned from the received Clients request
1765 * to our outgoing fetch request.
1766 */
528b2c61 1767void
9e498bfb 1768copyOneHeaderFromClientsideRequestToUpstreamRequest(const HttpHeaderEntry *e, const String strConnection, HttpRequest * request, const HttpRequest * orig_request, HttpHeader * hdr_out, const int we_do_ranges, const http_state_flags flags)
528b2c61 1769{
e8466ea9 1770 debugs(11, 5, "httpBuildRequestHeader: " << e->name << ": " << e->value );
62e76326 1771
528b2c61 1772 switch (e->id) {
62e76326 1773
af6a12ee 1774 /** \par RFC 2616 sect 13.5.1 - Hop-by-Hop headers which Squid should not pass on. */
9e498bfb 1775
be753325 1776 case HDR_PROXY_AUTHORIZATION:
9e498bfb
AJ
1777 /** \par Proxy-Authorization:
1778 * Only pass on proxy authentication to peers for which
62e76326 1779 * authentication forwarding is explicitly enabled
1780 */
ee0b94f4 1781 if (!flags.originpeer && flags.proxying && orig_request->peer_login &&
f54f527e
AJ
1782 (strcmp(orig_request->peer_login, "PASS") == 0 ||
1783 strcmp(orig_request->peer_login, "PROXYPASS") == 0 ||
1784 strcmp(orig_request->peer_login, "PASSTHRU") == 0)) {
eede25e7 1785 hdr_out->addEntry(e->clone());
62e76326 1786 }
62e76326 1787 break;
1788
af6a12ee 1789 /** \par RFC 2616 sect 13.5.1 - Hop-by-Hop headers which Squid does not pass on. */
9e498bfb
AJ
1790
1791 case HDR_CONNECTION: /** \par Connection: */
1792 case HDR_TE: /** \par TE: */
1793 case HDR_KEEP_ALIVE: /** \par Keep-Alive: */
1794 case HDR_PROXY_AUTHENTICATE: /** \par Proxy-Authenticate: */
1795 case HDR_TRAILERS: /** \par Trailers: */
1796 case HDR_UPGRADE: /** \par Upgrade: */
1797 case HDR_TRANSFER_ENCODING: /** \par Transfer-Encoding: */
1798 break;
1799
1800
af6a12ee 1801 /** \par OTHER headers I haven't bothered to track down yet. */
9e498bfb 1802
be753325 1803 case HDR_AUTHORIZATION:
9e498bfb
AJ
1804 /** \par WWW-Authorization:
1805 * Pass on WWW authentication */
62e76326 1806
1807 if (!flags.originpeer) {
eede25e7 1808 hdr_out->addEntry(e->clone());
62e76326 1809 } else {
9e498bfb 1810 /** \note In accelerators, only forward authentication if enabled
ee0b94f4 1811 * (see also httpFixupAuthentication for special cases)
62e76326 1812 */
abb929f0 1813 if (orig_request->peer_login &&
1814 (strcmp(orig_request->peer_login, "PASS") == 0 ||
11e4c5e5 1815 strcmp(orig_request->peer_login, "PASSTHRU") == 0 ||
abb929f0 1816 strcmp(orig_request->peer_login, "PROXYPASS") == 0)) {
eede25e7 1817 hdr_out->addEntry(e->clone());
62e76326 1818 }
1819 }
1820
1821 break;
1822
be753325 1823 case HDR_HOST:
9e498bfb 1824 /** \par Host:
b883b594 1825 * Normally Squid rewrites the Host: header.
1826 * However, there is one case when we don't: If the URL
62e76326 1827 * went through our redirector and the admin configured
1828 * 'redir_rewrites_host' to be off.
1829 */
9e008dda 1830 if (orig_request->peer_domain)
488b27c5
HN
1831 hdr_out->putStr(HDR_HOST, orig_request->peer_domain);
1832 else if (request->flags.redirected && !Config.onoff.redir_rewrites_host)
eede25e7 1833 hdr_out->addEntry(e->clone());
b883b594 1834 else {
1835 /* use port# only if not default */
1836
1837 if (orig_request->port == urlDefaultPort(orig_request->protocol)) {
cc192b50 1838 hdr_out->putStr(HDR_HOST, orig_request->GetHost());
b883b594 1839 } else {
1840 httpHeaderPutStrf(hdr_out, HDR_HOST, "%s:%d",
cc192b50 1841 orig_request->GetHost(),
1842 (int) orig_request->port);
b883b594 1843 }
1844 }
62e76326 1845
1846 break;
1847
be753325 1848 case HDR_IF_MODIFIED_SINCE:
9e498bfb 1849 /** \par If-Modified-Since:
af6a12ee 1850 * append unless we added our own;
9e498bfb 1851 * \note at most one client's ims header can pass through */
b883b594 1852
a9925b40 1853 if (!hdr_out->has(HDR_IF_MODIFIED_SINCE))
eede25e7 1854 hdr_out->addEntry(e->clone());
62e76326 1855
1856 break;
1857
be753325 1858 case HDR_MAX_FORWARDS:
9e498bfb 1859 /** \par Max-Forwards:
fc90edc3
AJ
1860 * pass only on TRACE or OPTIONS requests */
1861 if (orig_request->method == METHOD_TRACE || orig_request->method == METHOD_OPTIONS) {
1862 const int64_t hops = e->getInt64();
62e76326 1863
1864 if (hops > 0)
fc90edc3 1865 hdr_out->putInt64(HDR_MAX_FORWARDS, hops - 1);
62e76326 1866 }
1867
1868 break;
1869
be753325 1870 case HDR_VIA:
9e498bfb
AJ
1871 /** \par Via:
1872 * If Via is disabled then forward any received header as-is.
1873 * Otherwise leave for explicit updated addition later. */
62e76326 1874
1875 if (!Config.onoff.via)
eede25e7 1876 hdr_out->addEntry(e->clone());
62e76326 1877
1878 break;
1879
be753325 1880 case HDR_RANGE:
62e76326 1881
be753325 1882 case HDR_IF_RANGE:
62e76326 1883
be753325 1884 case HDR_REQUEST_RANGE:
9e498bfb
AJ
1885 /** \par Range:, If-Range:, Request-Range:
1886 * Only pass if we accept ranges */
62e76326 1887 if (!we_do_ranges)
eede25e7 1888 hdr_out->addEntry(e->clone());
62e76326 1889
1890 break;
1891
be753325 1892 case HDR_PROXY_CONNECTION:
62e76326 1893
be753325 1894 case HDR_X_FORWARDED_FOR:
62e76326 1895
be753325 1896 case HDR_CACHE_CONTROL:
9e498bfb
AJ
1897 /** \par Proxy-Connaction:, X-Forwarded-For:, Cache-Control:
1898 * handled specially by Squid, so leave off for now.
1899 * append these after the loop if needed */
62e76326 1900 break;
1901
be753325 1902 case HDR_FRONT_END_HTTPS:
9e498bfb
AJ
1903 /** \par Front-End-Https:
1904 * Pass thru only if peer is configured with front-end-https */
62e76326 1905 if (!flags.front_end_https)
eede25e7 1906 hdr_out->addEntry(e->clone());
62e76326 1907
1908 break;
1909
be753325 1910 default:
9e498bfb
AJ
1911 /** \par default.
1912 * pass on all other header fields
1913 * which are NOT listed by the special Connection: header. */
1914
a7a42b14 1915 if (strConnection.size()>0 && strListIsMember(&strConnection, e->name.termedBuf(), ',')) {
e1ea7456 1916 debugs(11, 2, "'" << e->name << "' header cropped by Connection: definition");
9e498bfb
AJ
1917 return;
1918 }
1919
eede25e7 1920 hdr_out->addEntry(e->clone());
528b2c61 1921 }
1922}
1923
e5ee81f0 1924bool
1925HttpStateData::decideIfWeDoRanges (HttpRequest * orig_request)
528b2c61 1926{
e5ee81f0 1927 bool result = true;
62e76326 1928 /* decide if we want to do Ranges ourselves
1929 * and fetch the whole object now)
1930 * We want to handle Ranges ourselves iff
1931 * - we can actually parse client Range specs
1932 * - the specs are expected to be simple enough (e.g. no out-of-order ranges)
1933 * - reply will be cachable
1934 * (If the reply will be uncachable we have to throw it away after
1935 * serving this request, so it is better to forward ranges to
1936 * the server and fetch only the requested content)
1937 */
1938
11e3fa1c
AJ
1939 int64_t roffLimit = orig_request->getRangeOffsetLimit();
1940
62e76326 1941 if (NULL == orig_request->range || !orig_request->flags.cachable
11e3fa1c 1942 || orig_request->range->offsetLimitExceeded(roffLimit) || orig_request->flags.connection_auth)
e5ee81f0 1943 result = false;
62e76326 1944
9e008dda
AJ
1945 debugs(11, 8, "decideIfWeDoRanges: range specs: " <<
1946 orig_request->range << ", cachable: " <<
1947 orig_request->flags.cachable << "; we_do_ranges: " << result);
62e76326 1948
1949 return result;
528b2c61 1950}
1951
62e76326 1952/* build request prefix and append it to a given MemBuf;
99edd1c3 1953 * return the length of the prefix */
9bc73deb 1954mb_size_t
e053c141
FC
1955HttpStateData::buildRequestPrefix(HttpRequest * aRequest,
1956 HttpRequest * original_request,
1957 StoreEntry * sentry,
e5ee81f0 1958 MemBuf * mb,
e053c141 1959 http_state_flags stateFlags)
99edd1c3 1960{
1961 const int offset = mb->size;
3872be7c 1962 HttpVersion httpver(1,1);
2fe7eff9 1963 mb->Printf("%s %s HTTP/%d.%d\r\n",
e053c141
FC
1964 RequestMethodStr(aRequest->method),
1965 aRequest->urlpath.size() ? aRequest->urlpath.termedBuf() : "/",
2fe7eff9 1966 httpver.major,httpver.minor);
99edd1c3 1967 /* build and pack headers */
1968 {
75faaa7a 1969 HttpHeader hdr(hoRequest);
62e76326 1970 Packer p;
e053c141 1971 httpBuildRequestHeader(aRequest, original_request, sentry, &hdr, stateFlags);
9e008dda 1972
e053c141
FC
1973 if (aRequest->flags.pinned && aRequest->flags.connection_auth)
1974 aRequest->flags.auth_sent = 1;
d67acb4e 1975 else if (hdr.has(HDR_AUTHORIZATION))
e053c141 1976 aRequest->flags.auth_sent = 1;
d67acb4e 1977
62e76326 1978 packerToMemInit(&p, mb);
a9925b40 1979 hdr.packInto(&p);
519e0948 1980 hdr.clean();
62e76326 1981 packerClean(&p);
9d9d144b 1982 }
99edd1c3 1983 /* append header terminator */
2fe7eff9 1984 mb->append(crlf, 2);
99edd1c3 1985 return mb->size - offset;
6bf8443a 1986}
62e76326 1987
090089c4 1988/* This will be called when connect completes. Write request. */
5f8252d2 1989bool
2bb867b5 1990HttpStateData::sendRequest()
090089c4 1991{
99edd1c3 1992 MemBuf mb;
090089c4 1993
bf8fe701 1994 debugs(11, 5, "httpSendRequest: FD " << fd << ", request " << request << ", this " << this << ".");
dc56a9b1 1995 typedef CommCbMemFunT<HttpStateData, CommTimeoutCbParams> TimeoutDialer;
1996 AsyncCall::Pointer timeoutCall = asyncCall(11, 5, "HttpStateData::httpTimeout",
9e008dda 1997 TimeoutDialer(this,&HttpStateData::httpTimeout));
dc56a9b1 1998 commSetTimeout(fd, Config.Timeout.lifetime, timeoutCall);
2bb867b5 1999 flags.do_next_read = 1;
5f8252d2 2000 maybeReadVirginBody();
2001
2002 if (orig_request->body_pipe != NULL) {
123ec4de 2003 if (!startRequestBodyFlow()) // register to receive body data
5f8252d2 2004 return false;
9e008dda 2005 typedef CommCbMemFunT<HttpStateData, CommIoCbParams> Dialer;
dc56a9b1 2006 Dialer dialer(this, &HttpStateData::sentRequestBody);
9e008dda 2007 requestSender = asyncCall(11,5, "HttpStateData::sentRequestBody", dialer);
5f8252d2 2008 } else {
2009 assert(!requestBodySource);
9e008dda 2010 typedef CommCbMemFunT<HttpStateData, CommIoCbParams> Dialer;
dc56a9b1 2011 Dialer dialer(this, &HttpStateData::sendComplete);
9e008dda 2012 requestSender = asyncCall(11,5, "HttpStateData::SendComplete", dialer);
5f8252d2 2013 }
54220df8 2014
2bb867b5 2015 if (_peer != NULL) {
2016 if (_peer->options.originserver) {
2017 flags.proxying = 0;
2018 flags.originpeer = 1;
62e76326 2019 } else {
2bb867b5 2020 flags.proxying = 1;
2021 flags.originpeer = 0;
62e76326 2022 }
be753325 2023 } else {
2bb867b5 2024 flags.proxying = 0;
2025 flags.originpeer = 0;
be753325 2026 }
62e76326 2027
efb9218c 2028 /*
99edd1c3 2029 * Is keep-alive okay for all request methods?
efb9218c 2030 */
d67acb4e 2031 if (orig_request->flags.must_keepalive)
9e008dda 2032 flags.keepalive = 1;
d67acb4e 2033 else if (!Config.onoff.server_pconns)
2bb867b5 2034 flags.keepalive = 0;
2035 else if (_peer == NULL)
2036 flags.keepalive = 1;
2037 else if (_peer->stats.n_keepalives_sent < 10)
2038 flags.keepalive = 1;
2039 else if ((double) _peer->stats.n_keepalives_recv /
2040 (double) _peer->stats.n_keepalives_sent > 0.50)
2041 flags.keepalive = 1;
2042
2043 if (_peer) {
2044 if (neighborType(_peer, request) == PEER_SIBLING &&
2045 !_peer->options.allow_miss)
2046 flags.only_if_cached = 1;
2047
2048 flags.front_end_https = _peer->front_end_https;
a7ad6e4e 2049 }
62e76326 2050
2fe7eff9 2051 mb.init();
9ca29d23 2052 request->peer_host=_peer?_peer->host:NULL;
e5ee81f0 2053 buildRequestPrefix(request, orig_request, entry, &mb, flags);
bf8fe701 2054 debugs(11, 6, "httpSendRequest: FD " << fd << ":\n" << mb.buf);
dc56a9b1 2055 comm_write_mbuf(fd, &mb, requestSender);
5f8252d2 2056
2057 return true;
090089c4 2058}
b6a2f15e 2059
910169e5 2060void
b6b6f466 2061httpStart(FwdState *fwd)
603a02fd 2062{
60745f24 2063 debugs(11, 3, "httpStart: \"" << RequestMethodStr(fwd->request->method) << " " << fwd->entry->url() << "\"" );
a3d50c30 2064 HttpStateData *httpState = new HttpStateData(fwd);
62e76326 2065
5f8252d2 2066 if (!httpState->sendRequest()) {
bf8fe701 2067 debugs(11, 3, "httpStart: aborted");
5f8252d2 2068 delete httpState;
2069 return;
2070 }
62e76326 2071
5f8252d2 2072 statCounter.server.all.requests++;
83704487 2073 statCounter.server.http.requests++;
62e76326 2074
b6a2f15e 2075 /*
2076 * We used to set the read timeout here, but not any more.
2077 * Now its set in httpSendComplete() after the full request,
2078 * including request body, has been written to the server.
2079 */
090089c4 2080}
2081
2bb867b5 2082void
5f8252d2 2083HttpStateData::doneSendingRequestBody()
2bb867b5 2084{
5f8252d2 2085 debugs(11,5, HERE << "doneSendingRequestBody: FD " << fd);
aa49962c
AJ
2086
2087#if HTTP_VIOLATIONS
aa49962c 2088 if (Config.accessList.brokenPosts) {
af6a12ee 2089 ACLFilledChecklist ch(Config.accessList.brokenPosts, request, NULL);
aa49962c
AJ
2090 if (!ch.fastCheck()) {
2091 debugs(11, 5, "doneSendingRequestBody: didn't match brokenPosts");
2092 CommIoCbParams io(NULL);
2093 io.fd=fd;
2094 io.flag=COMM_OK;
2095 sendComplete(io);
2096 } else {
2097 debugs(11, 2, "doneSendingRequestBody: matched brokenPosts");
2098 typedef CommCbMemFunT<HttpStateData, CommIoCbParams> Dialer;
2099 Dialer dialer(this, &HttpStateData::sendComplete);
2100 AsyncCall::Pointer call= asyncCall(11,5, "HttpStateData::SendComplete", dialer);
2101 comm_write(fd, "\r\n", 2, call);
2102 }
2103 return;
54220df8 2104 }
aa49962c
AJ
2105 debugs(11, 5, "doneSendingRequestBody: No brokenPosts list");
2106#endif /* HTTP_VIOLATIONS */
2107
2108 CommIoCbParams io(NULL);
2109 io.fd=fd;
2110 io.flag=COMM_OK;
2111 sendComplete(io);
94439e4e 2112}
2113
5f8252d2 2114// more origin request body data is available
2bb867b5 2115void
5f8252d2 2116HttpStateData::handleMoreRequestBodyAvailable()
2bb867b5 2117{
2bb867b5 2118 if (eof || fd < 0) {
5f8252d2 2119 // XXX: we should check this condition in other callbacks then!
2120 // TODO: Check whether this can actually happen: We should unsubscribe
2121 // as a body consumer when the above condition(s) are detected.
2bb867b5 2122 debugs(11, 1, HERE << "Transaction aborted while reading HTTP body");
2bb867b5 2123 return;
2124 }
62e76326 2125
5f8252d2 2126 assert(requestBodySource != NULL);
fc68f6b1 2127
5f8252d2 2128 if (requestBodySource->buf().hasContent()) {
2129 // XXX: why does not this trigger a debug message on every request?
fc68f6b1 2130
2bb867b5 2131 if (flags.headers_parsed && !flags.abuse_detected) {
2132 flags.abuse_detected = 1;
cc192b50 2133 debugs(11, 1, "http handleMoreRequestBodyAvailable: Likely proxy abuse detected '" << orig_request->client_addr << "' -> '" << entry->url() << "'" );
21b92762 2134
585ab260 2135 if (virginReply()->sline.status == HTTP_INVALID_HEADER) {
2bb867b5 2136 comm_close(fd);
21b92762 2137 return;
2138 }
2139 }
b6a2f15e 2140 }
5f8252d2 2141
2142 HttpStateData::handleMoreRequestBodyAvailable();
376bb137 2143}
2144
5f8252d2 2145// premature end of the request body
2bb867b5 2146void
5f8252d2 2147HttpStateData::handleRequestBodyProducerAborted()
376bb137 2148{
5f8252d2 2149 ServerStateData::handleRequestBodyProducerAborted();
2150 // XXX: SendComplete(COMM_ERR_CLOSING) does little. Is it enough?
dc56a9b1 2151 CommIoCbParams io(NULL);
2152 io.fd=fd;
2153 io.flag=COMM_ERR_CLOSING;
2154 sendComplete(io);
2bb867b5 2155}
2156
5f8252d2 2157// called when we wrote request headers(!) or a part of the body
2bb867b5 2158void
dc56a9b1 2159HttpStateData::sentRequestBody(const CommIoCbParams &io)
2bb867b5 2160{
dc56a9b1 2161 if (io.size > 0)
2162 kb_incr(&statCounter.server.http.kbytes_out, io.size);
fc68f6b1 2163
dc56a9b1 2164 ServerStateData::sentRequestBody(io);
5f8252d2 2165}
3b299123 2166
5f8252d2 2167// Quickly abort the transaction
2168// TODO: destruction should be sufficient as the destructor should cleanup,
2169// including canceling close handlers
2170void
2171HttpStateData::abortTransaction(const char *reason)
2172{
2173 debugs(11,5, HERE << "aborting transaction for " << reason <<
2174 "; FD " << fd << ", this " << this);
fc68f6b1 2175
3e8c047e 2176 if (fd >= 0) {
62e76326 2177 comm_close(fd);
3e8c047e 2178 return;
c23f0c74 2179 }
3e8c047e 2180
2181 fwd->handleUnregisteredServerEnd();
dc56a9b1 2182 deleteThis("HttpStateData::abortTransaction");
54220df8 2183}
ccf44862 2184
7c4e4e7f 2185HttpRequest *
2186HttpStateData::originalRequest()
2afaba07 2187{
7c4e4e7f 2188 return orig_request;
2afaba07 2189}