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1// -*- mode: cpp; mode: fold -*-
2// Description /*{{{*/
3// $Id: http.cc,v 1.59 2004/05/08 19:42:35 mdz Exp $
4/* ######################################################################
5
6 HTTP Acquire Method - This is the HTTP acquire method for APT.
7
8 It uses HTTP/1.1 and many of the fancy options there-in, such as
9 pipelining, range, if-range and so on.
10
11 It is based on a doubly buffered select loop. A groupe of requests are
12 fed into a single output buffer that is constantly fed out the
13 socket. This provides ideal pipelining as in many cases all of the
14 requests will fit into a single packet. The input socket is buffered
15 the same way and fed into the fd for the file (may be a pipe in future).
16
17 This double buffering provides fairly substantial transfer rates,
18 compared to wget the http method is about 4% faster. Most importantly,
19 when HTTP is compared with FTP as a protocol the speed difference is
20 huge. In tests over the internet from two sites to llug (via ATM) this
21 program got 230k/s sustained http transfer rates. FTP on the other
22 hand topped out at 170k/s. That combined with the time to setup the
23 FTP connection makes HTTP a vastly superior protocol.
24
25 ##################################################################### */
26 /*}}}*/
27// Include Files /*{{{*/
28#include <config.h>
29
30#include <apt-pkg/fileutl.h>
31#include <apt-pkg/configuration.h>
32#include <apt-pkg/error.h>
33#include <apt-pkg/hashes.h>
34#include <apt-pkg/netrc.h>
35#include <apt-pkg/strutl.h>
36#include <apt-pkg/proxy.h>
37
38#include <stddef.h>
39#include <stdlib.h>
40#include <sys/select.h>
41#include <cstring>
42#include <sys/stat.h>
43#include <sys/time.h>
44#include <unistd.h>
45#include <stdio.h>
46#include <errno.h>
47#include <iostream>
48#include <sstream>
49
50#include "config.h"
51#include "connect.h"
52#include "http.h"
53
54#include <apti18n.h>
55 /*}}}*/
56using namespace std;
57
58unsigned long long CircleBuf::BwReadLimit=0;
59unsigned long long CircleBuf::BwTickReadData=0;
60struct timeval CircleBuf::BwReadTick={0,0};
61const unsigned int CircleBuf::BW_HZ=10;
62
63// CircleBuf::CircleBuf - Circular input buffer /*{{{*/
64// ---------------------------------------------------------------------
65/* */
66CircleBuf::CircleBuf(unsigned long long Size)
67 : Size(Size), Hash(NULL), TotalWriten(0)
68{
69 Buf = new unsigned char[Size];
70 Reset();
71
72 CircleBuf::BwReadLimit = _config->FindI("Acquire::http::Dl-Limit",0)*1024;
73}
74 /*}}}*/
75// CircleBuf::Reset - Reset to the default state /*{{{*/
76// ---------------------------------------------------------------------
77/* */
78void CircleBuf::Reset()
79{
80 InP = 0;
81 OutP = 0;
82 StrPos = 0;
83 TotalWriten = 0;
84 MaxGet = (unsigned long long)-1;
85 OutQueue = string();
86 if (Hash != NULL)
87 {
88 delete Hash;
89 Hash = NULL;
90 }
91}
92 /*}}}*/
93// CircleBuf::Read - Read from a FD into the circular buffer /*{{{*/
94// ---------------------------------------------------------------------
95/* This fills up the buffer with as much data as is in the FD, assuming it
96 is non-blocking.. */
97bool CircleBuf::Read(int Fd)
98{
99 while (1)
100 {
101 // Woops, buffer is full
102 if (InP - OutP == Size)
103 return true;
104
105 // what's left to read in this tick
106 unsigned long long const BwReadMax = CircleBuf::BwReadLimit/BW_HZ;
107
108 if(CircleBuf::BwReadLimit) {
109 struct timeval now;
110 gettimeofday(&now,0);
111
112 unsigned long long d = (now.tv_sec-CircleBuf::BwReadTick.tv_sec)*1000000 +
113 now.tv_usec-CircleBuf::BwReadTick.tv_usec;
114 if(d > 1000000/BW_HZ) {
115 CircleBuf::BwReadTick = now;
116 CircleBuf::BwTickReadData = 0;
117 }
118
119 if(CircleBuf::BwTickReadData >= BwReadMax) {
120 usleep(1000000/BW_HZ);
121 return true;
122 }
123 }
124
125 // Write the buffer segment
126 ssize_t Res;
127 if(CircleBuf::BwReadLimit) {
128 Res = read(Fd,Buf + (InP%Size),
129 BwReadMax > LeftRead() ? LeftRead() : BwReadMax);
130 } else
131 Res = read(Fd,Buf + (InP%Size),LeftRead());
132
133 if(Res > 0 && BwReadLimit > 0)
134 CircleBuf::BwTickReadData += Res;
135
136 if (Res == 0)
137 return false;
138 if (Res < 0)
139 {
140 if (errno == EAGAIN)
141 return true;
142 return false;
143 }
144
145 if (InP == 0)
146 gettimeofday(&Start,0);
147 InP += Res;
148 }
149}
150 /*}}}*/
151// CircleBuf::Read - Put the string into the buffer /*{{{*/
152// ---------------------------------------------------------------------
153/* This will hold the string in and fill the buffer with it as it empties */
154bool CircleBuf::Read(string Data)
155{
156 OutQueue += Data;
157 FillOut();
158 return true;
159}
160 /*}}}*/
161// CircleBuf::FillOut - Fill the buffer from the output queue /*{{{*/
162// ---------------------------------------------------------------------
163/* */
164void CircleBuf::FillOut()
165{
166 if (OutQueue.empty() == true)
167 return;
168 while (1)
169 {
170 // Woops, buffer is full
171 if (InP - OutP == Size)
172 return;
173
174 // Write the buffer segment
175 unsigned long long Sz = LeftRead();
176 if (OutQueue.length() - StrPos < Sz)
177 Sz = OutQueue.length() - StrPos;
178 memcpy(Buf + (InP%Size),OutQueue.c_str() + StrPos,Sz);
179
180 // Advance
181 StrPos += Sz;
182 InP += Sz;
183 if (OutQueue.length() == StrPos)
184 {
185 StrPos = 0;
186 OutQueue = "";
187 return;
188 }
189 }
190}
191 /*}}}*/
192// CircleBuf::Write - Write from the buffer into a FD /*{{{*/
193// ---------------------------------------------------------------------
194/* This empties the buffer into the FD. */
195bool CircleBuf::Write(int Fd)
196{
197 while (1)
198 {
199 FillOut();
200
201 // Woops, buffer is empty
202 if (OutP == InP)
203 return true;
204
205 if (OutP == MaxGet)
206 return true;
207
208 // Write the buffer segment
209 ssize_t Res;
210 Res = write(Fd,Buf + (OutP%Size),LeftWrite());
211
212 if (Res == 0)
213 return false;
214 if (Res < 0)
215 {
216 if (errno == EAGAIN)
217 return true;
218
219 return false;
220 }
221
222 TotalWriten += Res;
223
224 if (Hash != NULL)
225 Hash->Add(Buf + (OutP%Size),Res);
226
227 OutP += Res;
228 }
229}
230 /*}}}*/
231// CircleBuf::WriteTillEl - Write from the buffer to a string /*{{{*/
232// ---------------------------------------------------------------------
233/* This copies till the first empty line */
234bool CircleBuf::WriteTillEl(string &Data,bool Single)
235{
236 // We cheat and assume it is unneeded to have more than one buffer load
237 for (unsigned long long I = OutP; I < InP; I++)
238 {
239 if (Buf[I%Size] != '\n')
240 continue;
241 ++I;
242
243 if (Single == false)
244 {
245 if (I < InP && Buf[I%Size] == '\r')
246 ++I;
247 if (I >= InP || Buf[I%Size] != '\n')
248 continue;
249 ++I;
250 }
251
252 Data = "";
253 while (OutP < I)
254 {
255 unsigned long long Sz = LeftWrite();
256 if (Sz == 0)
257 return false;
258 if (I - OutP < Sz)
259 Sz = I - OutP;
260 Data += string((char *)(Buf + (OutP%Size)),Sz);
261 OutP += Sz;
262 }
263 return true;
264 }
265 return false;
266}
267 /*}}}*/
268// CircleBuf::Stats - Print out stats information /*{{{*/
269// ---------------------------------------------------------------------
270/* */
271void CircleBuf::Stats()
272{
273 if (InP == 0)
274 return;
275
276 struct timeval Stop;
277 gettimeofday(&Stop,0);
278/* float Diff = Stop.tv_sec - Start.tv_sec +
279 (float)(Stop.tv_usec - Start.tv_usec)/1000000;
280 clog << "Got " << InP << " in " << Diff << " at " << InP/Diff << endl;*/
281}
282 /*}}}*/
283CircleBuf::~CircleBuf()
284{
285 delete [] Buf;
286 delete Hash;
287}
288
289// HttpServerState::HttpServerState - Constructor /*{{{*/
290HttpServerState::HttpServerState(URI Srv,HttpMethod *Owner) : ServerState(Srv, Owner), In(64*1024), Out(4*1024)
291{
292 TimeOut = _config->FindI("Acquire::http::Timeout",TimeOut);
293 Reset();
294}
295 /*}}}*/
296// HttpServerState::Open - Open a connection to the server /*{{{*/
297// ---------------------------------------------------------------------
298/* This opens a connection to the server. */
299bool HttpServerState::Open()
300{
301 // Use the already open connection if possible.
302 if (ServerFd != -1)
303 return true;
304
305 Close();
306 In.Reset();
307 Out.Reset();
308 Persistent = true;
309
310 // Determine the proxy setting
311 AutoDetectProxy(ServerName);
312 string SpecificProxy = _config->Find("Acquire::http::Proxy::" + ServerName.Host);
313 if (!SpecificProxy.empty())
314 {
315 if (SpecificProxy == "DIRECT")
316 Proxy = "";
317 else
318 Proxy = SpecificProxy;
319 }
320 else
321 {
322 string DefProxy = _config->Find("Acquire::http::Proxy");
323 if (!DefProxy.empty())
324 {
325 Proxy = DefProxy;
326 }
327 else
328 {
329 char* result = getenv("http_proxy");
330 Proxy = result ? result : "";
331 }
332 }
333
334 // Parse no_proxy, a , separated list of domains
335 if (getenv("no_proxy") != 0)
336 {
337 if (CheckDomainList(ServerName.Host,getenv("no_proxy")) == true)
338 Proxy = "";
339 }
340
341 // Determine what host and port to use based on the proxy settings
342 int Port = 0;
343 string Host;
344 if (Proxy.empty() == true || Proxy.Host.empty() == true)
345 {
346 if (ServerName.Port != 0)
347 Port = ServerName.Port;
348 Host = ServerName.Host;
349 }
350 else if (Proxy.Access != "http")
351 return _error->Error("Unsupported proxy configured: %s", URI::SiteOnly(Proxy).c_str());
352 else
353 {
354 if (Proxy.Port != 0)
355 Port = Proxy.Port;
356 Host = Proxy.Host;
357 }
358
359 // Connect to the remote server
360 if (Connect(Host,Port,"http",80,ServerFd,TimeOut,Owner) == false)
361 return false;
362
363 return true;
364}
365 /*}}}*/
366// HttpServerState::Close - Close a connection to the server /*{{{*/
367// ---------------------------------------------------------------------
368/* */
369bool HttpServerState::Close()
370{
371 close(ServerFd);
372 ServerFd = -1;
373 return true;
374}
375 /*}}}*/
376// HttpServerState::RunData - Transfer the data from the socket /*{{{*/
377bool HttpServerState::RunData(FileFd * const File)
378{
379 State = Data;
380
381 // Chunked transfer encoding is fun..
382 if (Encoding == Chunked)
383 {
384 while (1)
385 {
386 // Grab the block size
387 bool Last = true;
388 string Data;
389 In.Limit(-1);
390 do
391 {
392 if (In.WriteTillEl(Data,true) == true)
393 break;
394 }
395 while ((Last = Go(false, File)) == true);
396
397 if (Last == false)
398 return false;
399
400 // See if we are done
401 unsigned long long Len = strtoull(Data.c_str(),0,16);
402 if (Len == 0)
403 {
404 In.Limit(-1);
405
406 // We have to remove the entity trailer
407 Last = true;
408 do
409 {
410 if (In.WriteTillEl(Data,true) == true && Data.length() <= 2)
411 break;
412 }
413 while ((Last = Go(false, File)) == true);
414 if (Last == false)
415 return false;
416 return !_error->PendingError();
417 }
418
419 // Transfer the block
420 In.Limit(Len);
421 while (Go(true, File) == true)
422 if (In.IsLimit() == true)
423 break;
424
425 // Error
426 if (In.IsLimit() == false)
427 return false;
428
429 // The server sends an extra new line before the next block specifier..
430 In.Limit(-1);
431 Last = true;
432 do
433 {
434 if (In.WriteTillEl(Data,true) == true)
435 break;
436 }
437 while ((Last = Go(false, File)) == true);
438 if (Last == false)
439 return false;
440 }
441 }
442 else
443 {
444 /* Closes encoding is used when the server did not specify a size, the
445 loss of the connection means we are done */
446 if (JunkSize != 0)
447 In.Limit(JunkSize);
448 else if (DownloadSize != 0)
449 In.Limit(DownloadSize);
450 else if (Persistent == false)
451 In.Limit(-1);
452
453 // Just transfer the whole block.
454 do
455 {
456 if (In.IsLimit() == false)
457 continue;
458
459 In.Limit(-1);
460 return !_error->PendingError();
461 }
462 while (Go(true, File) == true);
463 }
464
465 return Owner->Flush() && !_error->PendingError();
466}
467 /*}}}*/
468bool HttpServerState::ReadHeaderLines(std::string &Data) /*{{{*/
469{
470 return In.WriteTillEl(Data);
471}
472 /*}}}*/
473bool HttpServerState::LoadNextResponse(bool const ToFile, FileFd * const File)/*{{{*/
474{
475 return Go(ToFile, File);
476}
477 /*}}}*/
478bool HttpServerState::WriteResponse(const std::string &Data) /*{{{*/
479{
480 return Out.Read(Data);
481}
482 /*}}}*/
483APT_PURE bool HttpServerState::IsOpen() /*{{{*/
484{
485 return (ServerFd != -1);
486}
487 /*}}}*/
488bool HttpServerState::InitHashes(HashStringList const &ExpectedHashes) /*{{{*/
489{
490 delete In.Hash;
491 In.Hash = new Hashes(ExpectedHashes);
492 return true;
493}
494 /*}}}*/
495
496APT_PURE Hashes * HttpServerState::GetHashes() /*{{{*/
497{
498 return In.Hash;
499}
500 /*}}}*/
501// HttpServerState::Die - The server has closed the connection. /*{{{*/
502bool HttpServerState::Die(FileFd * const File)
503{
504 unsigned int LErrno = errno;
505
506 // Dump the buffer to the file
507 if (State == ServerState::Data)
508 {
509 if (File == nullptr)
510 return true;
511 // on GNU/kFreeBSD, apt dies on /dev/null because non-blocking
512 // can't be set
513 if (File->Name() != "/dev/null")
514 SetNonBlock(File->Fd(),false);
515 while (In.WriteSpace() == true)
516 {
517 if (In.Write(File->Fd()) == false)
518 return _error->Errno("write",_("Error writing to the file"));
519
520 // Done
521 if (In.IsLimit() == true)
522 return true;
523 }
524 }
525
526 // See if this is because the server finished the data stream
527 if (In.IsLimit() == false && State != HttpServerState::Header &&
528 Persistent == true)
529 {
530 Close();
531 if (LErrno == 0)
532 return _error->Error(_("Error reading from server. Remote end closed connection"));
533 errno = LErrno;
534 return _error->Errno("read",_("Error reading from server"));
535 }
536 else
537 {
538 In.Limit(-1);
539
540 // Nothing left in the buffer
541 if (In.WriteSpace() == false)
542 return false;
543
544 // We may have got multiple responses back in one packet..
545 Close();
546 return true;
547 }
548
549 return false;
550}
551 /*}}}*/
552// HttpServerState::Flush - Dump the buffer into the file /*{{{*/
553// ---------------------------------------------------------------------
554/* This takes the current input buffer from the Server FD and writes it
555 into the file */
556bool HttpServerState::Flush(FileFd * const File)
557{
558 if (File != NULL)
559 {
560 // on GNU/kFreeBSD, apt dies on /dev/null because non-blocking
561 // can't be set
562 if (File->Name() != "/dev/null")
563 SetNonBlock(File->Fd(),false);
564 if (In.WriteSpace() == false)
565 return true;
566
567 while (In.WriteSpace() == true)
568 {
569 if (In.Write(File->Fd()) == false)
570 return _error->Errno("write",_("Error writing to file"));
571 if (In.IsLimit() == true)
572 return true;
573 }
574
575 if (In.IsLimit() == true || Persistent == false)
576 return true;
577 }
578 return false;
579}
580 /*}}}*/
581// HttpServerState::Go - Run a single loop /*{{{*/
582// ---------------------------------------------------------------------
583/* This runs the select loop over the server FDs, Output file FDs and
584 stdin. */
585bool HttpServerState::Go(bool ToFile, FileFd * const File)
586{
587 // Server has closed the connection
588 if (ServerFd == -1 && (In.WriteSpace() == false ||
589 ToFile == false))
590 return false;
591
592 fd_set rfds,wfds;
593 FD_ZERO(&rfds);
594 FD_ZERO(&wfds);
595
596 /* Add the server. We only send more requests if the connection will
597 be persisting */
598 if (Out.WriteSpace() == true && ServerFd != -1
599 && Persistent == true)
600 FD_SET(ServerFd,&wfds);
601 if (In.ReadSpace() == true && ServerFd != -1)
602 FD_SET(ServerFd,&rfds);
603
604 // Add the file
605 int FileFD = -1;
606 if (File != NULL)
607 FileFD = File->Fd();
608
609 if (In.WriteSpace() == true && ToFile == true && FileFD != -1)
610 FD_SET(FileFD,&wfds);
611
612 // Add stdin
613 if (_config->FindB("Acquire::http::DependOnSTDIN", true) == true)
614 FD_SET(STDIN_FILENO,&rfds);
615
616 // Figure out the max fd
617 int MaxFd = FileFD;
618 if (MaxFd < ServerFd)
619 MaxFd = ServerFd;
620
621 // Select
622 struct timeval tv;
623 tv.tv_sec = TimeOut;
624 tv.tv_usec = 0;
625 int Res = 0;
626 if ((Res = select(MaxFd+1,&rfds,&wfds,0,&tv)) < 0)
627 {
628 if (errno == EINTR)
629 return true;
630 return _error->Errno("select",_("Select failed"));
631 }
632
633 if (Res == 0)
634 {
635 _error->Error(_("Connection timed out"));
636 return Die(File);
637 }
638
639 // Handle server IO
640 if (ServerFd != -1 && FD_ISSET(ServerFd,&rfds))
641 {
642 errno = 0;
643 if (In.Read(ServerFd) == false)
644 return Die(File);
645 }
646
647 if (ServerFd != -1 && FD_ISSET(ServerFd,&wfds))
648 {
649 errno = 0;
650 if (Out.Write(ServerFd) == false)
651 return Die(File);
652 }
653
654 // Send data to the file
655 if (FileFD != -1 && FD_ISSET(FileFD,&wfds))
656 {
657 if (In.Write(FileFD) == false)
658 return _error->Errno("write",_("Error writing to output file"));
659 }
660
661 if (MaximumSize > 0 && File && File->Tell() > MaximumSize)
662 {
663 Owner->SetFailReason("MaximumSizeExceeded");
664 return _error->Error("Writing more data than expected (%llu > %llu)",
665 File->Tell(), MaximumSize);
666 }
667
668 // Handle commands from APT
669 if (FD_ISSET(STDIN_FILENO,&rfds))
670 {
671 if (Owner->Run(true) != -1)
672 exit(100);
673 }
674
675 return true;
676}
677 /*}}}*/
678
679// HttpMethod::SendReq - Send the HTTP request /*{{{*/
680// ---------------------------------------------------------------------
681/* This places the http request in the outbound buffer */
682void HttpMethod::SendReq(FetchItem *Itm)
683{
684 URI Uri = Itm->Uri;
685
686 // The HTTP server expects a hostname with a trailing :port
687 std::stringstream Req;
688 string ProperHost;
689
690 if (Uri.Host.find(':') != string::npos)
691 ProperHost = '[' + Uri.Host + ']';
692 else
693 ProperHost = Uri.Host;
694
695 /* RFC 2616 ยง5.1.2 requires absolute URIs for requests to proxies,
696 but while its a must for all servers to accept absolute URIs,
697 it is assumed clients will sent an absolute path for non-proxies */
698 std::string requesturi;
699 if (Server->Proxy.empty() == true || Server->Proxy.Host.empty())
700 requesturi = Uri.Path;
701 else
702 requesturi = Itm->Uri;
703
704 // The "+" is encoded as a workaround for a amazon S3 bug
705 // see LP bugs #1003633 and #1086997.
706 requesturi = QuoteString(requesturi, "+~ ");
707
708 /* Build the request. No keep-alive is included as it is the default
709 in 1.1, can cause problems with proxies, and we are an HTTP/1.1
710 client anyway.
711 C.f. https://tools.ietf.org/wg/httpbis/trac/ticket/158 */
712 Req << "GET " << requesturi << " HTTP/1.1\r\n";
713 if (Uri.Port != 0)
714 Req << "Host: " << ProperHost << ":" << std::to_string(Uri.Port) << "\r\n";
715 else
716 Req << "Host: " << ProperHost << "\r\n";
717
718 // generate a cache control header (if needed)
719 if (_config->FindB("Acquire::http::No-Cache",false) == true)
720 Req << "Cache-Control: no-cache\r\n"
721 << "Pragma: no-cache\r\n";
722 else if (Itm->IndexFile == true)
723 Req << "Cache-Control: max-age=" << std::to_string(_config->FindI("Acquire::http::Max-Age",0)) << "\r\n";
724 else if (_config->FindB("Acquire::http::No-Store",false) == true)
725 Req << "Cache-Control: no-store\r\n";
726
727 // If we ask for uncompressed files servers might respond with content-
728 // negotiation which lets us end up with compressed files we do not support,
729 // see 657029, 657560 and co, so if we have no extension on the request
730 // ask for text only. As a sidenote: If there is nothing to negotate servers
731 // seem to be nice and ignore it.
732 if (_config->FindB("Acquire::http::SendAccept", true) == true)
733 {
734 size_t const filepos = Itm->Uri.find_last_of('/');
735 string const file = Itm->Uri.substr(filepos + 1);
736 if (flExtension(file) == file)
737 Req << "Accept: text/*\r\n";
738 }
739
740 // Check for a partial file and send if-queries accordingly
741 struct stat SBuf;
742 if (stat(Itm->DestFile.c_str(),&SBuf) >= 0 && SBuf.st_size > 0)
743 Req << "Range: bytes=" << std::to_string(SBuf.st_size) << "-\r\n"
744 << "If-Range: " << TimeRFC1123(SBuf.st_mtime, false) << "\r\n";
745 else if (Itm->LastModified != 0)
746 Req << "If-Modified-Since: " << TimeRFC1123(Itm->LastModified, false).c_str() << "\r\n";
747
748 if (Server->Proxy.User.empty() == false || Server->Proxy.Password.empty() == false)
749 Req << "Proxy-Authorization: Basic "
750 << Base64Encode(Server->Proxy.User + ":" + Server->Proxy.Password) << "\r\n";
751
752 maybe_add_auth (Uri, _config->FindFile("Dir::Etc::netrc"));
753 if (Uri.User.empty() == false || Uri.Password.empty() == false)
754 Req << "Authorization: Basic "
755 << Base64Encode(Uri.User + ":" + Uri.Password) << "\r\n";
756
757 Req << "User-Agent: " << _config->Find("Acquire::http::User-Agent",
758 "Debian APT-HTTP/1.3 (" PACKAGE_VERSION ")") << "\r\n";
759
760 Req << "\r\n";
761
762 if (Debug == true)
763 cerr << Req.str() << endl;
764
765 Server->WriteResponse(Req.str());
766}
767 /*}}}*/
768// HttpMethod::Configuration - Handle a configuration message /*{{{*/
769// ---------------------------------------------------------------------
770/* We stash the desired pipeline depth */
771bool HttpMethod::Configuration(string Message)
772{
773 if (ServerMethod::Configuration(Message) == false)
774 return false;
775
776 AllowRedirect = _config->FindB("Acquire::http::AllowRedirect",true);
777 PipelineDepth = _config->FindI("Acquire::http::Pipeline-Depth",
778 PipelineDepth);
779 Debug = _config->FindB("Debug::Acquire::http",false);
780
781 return true;
782}
783 /*}}}*/
784std::unique_ptr<ServerState> HttpMethod::CreateServerState(URI const &uri)/*{{{*/
785{
786 return std::unique_ptr<ServerState>(new HttpServerState(uri, this));
787}
788 /*}}}*/
789void HttpMethod::RotateDNS() /*{{{*/
790{
791 ::RotateDNS();
792}
793 /*}}}*/