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1 // -*- mode: cpp; mode: fold -*-
2 // Description /*{{{*/
3 // $Id: fileutl.cc,v 1.42 2002/09/14 05:29:22 jgg Exp $
4 /* ######################################################################
5
6 File Utilities
7
8 CopyFile - Buffered copy of a single file
9 GetLock - dpkg compatible lock file manipulation (fcntl)
10
11 Most of this source is placed in the Public Domain, do with it what
12 you will
13 It was originally written by Jason Gunthorpe <jgg@debian.org>.
14 FileFd gzip support added by Martin Pitt <martin.pitt@canonical.com>
15
16 The exception is RunScripts() it is under the GPLv2
17
18 ##################################################################### */
19 /*}}}*/
20 // Include Files /*{{{*/
21 #include <config.h>
22
23 #include <apt-pkg/fileutl.h>
24 #include <apt-pkg/strutl.h>
25 #include <apt-pkg/error.h>
26 #include <apt-pkg/sptr.h>
27 #include <apt-pkg/aptconfiguration.h>
28 #include <apt-pkg/configuration.h>
29
30 #include <cstdlib>
31 #include <cstring>
32 #include <cstdio>
33
34 #include <iostream>
35 #include <unistd.h>
36 #include <fcntl.h>
37 #include <sys/stat.h>
38 #include <sys/types.h>
39 #include <sys/time.h>
40 #include <sys/wait.h>
41 #include <dirent.h>
42 #include <signal.h>
43 #include <errno.h>
44 #include <set>
45 #include <algorithm>
46
47 #ifdef HAVE_ZLIB
48 #include <zlib.h>
49 #endif
50
51 #ifdef WORDS_BIGENDIAN
52 #include <inttypes.h>
53 #endif
54
55 #include <apti18n.h>
56 /*}}}*/
57
58 using namespace std;
59
60 class FileFdPrivate {
61 public:
62 #ifdef HAVE_ZLIB
63 gzFile gz;
64 #else
65 void* gz;
66 #endif
67 int compressed_fd;
68 pid_t compressor_pid;
69 bool pipe;
70 APT::Configuration::Compressor compressor;
71 unsigned int openmode;
72 unsigned long long seekpos;
73 FileFdPrivate() : gz(NULL), compressed_fd(-1), compressor_pid(-1), pipe(false),
74 openmode(0), seekpos(0) {};
75 };
76
77 // RunScripts - Run a set of scripts from a configuration subtree /*{{{*/
78 // ---------------------------------------------------------------------
79 /* */
80 bool RunScripts(const char *Cnf)
81 {
82 Configuration::Item const *Opts = _config->Tree(Cnf);
83 if (Opts == 0 || Opts->Child == 0)
84 return true;
85 Opts = Opts->Child;
86
87 // Fork for running the system calls
88 pid_t Child = ExecFork();
89
90 // This is the child
91 if (Child == 0)
92 {
93 if (_config->FindDir("DPkg::Chroot-Directory","/") != "/")
94 {
95 std::cerr << "Chrooting into "
96 << _config->FindDir("DPkg::Chroot-Directory")
97 << std::endl;
98 if (chroot(_config->FindDir("DPkg::Chroot-Directory","/").c_str()) != 0)
99 _exit(100);
100 }
101
102 if (chdir("/tmp/") != 0)
103 _exit(100);
104
105 unsigned int Count = 1;
106 for (; Opts != 0; Opts = Opts->Next, Count++)
107 {
108 if (Opts->Value.empty() == true)
109 continue;
110
111 if (system(Opts->Value.c_str()) != 0)
112 _exit(100+Count);
113 }
114 _exit(0);
115 }
116
117 // Wait for the child
118 int Status = 0;
119 while (waitpid(Child,&Status,0) != Child)
120 {
121 if (errno == EINTR)
122 continue;
123 return _error->Errno("waitpid","Couldn't wait for subprocess");
124 }
125
126 // Restore sig int/quit
127 signal(SIGQUIT,SIG_DFL);
128 signal(SIGINT,SIG_DFL);
129
130 // Check for an error code.
131 if (WIFEXITED(Status) == 0 || WEXITSTATUS(Status) != 0)
132 {
133 unsigned int Count = WEXITSTATUS(Status);
134 if (Count > 100)
135 {
136 Count -= 100;
137 for (; Opts != 0 && Count != 1; Opts = Opts->Next, Count--);
138 _error->Error("Problem executing scripts %s '%s'",Cnf,Opts->Value.c_str());
139 }
140
141 return _error->Error("Sub-process returned an error code");
142 }
143
144 return true;
145 }
146 /*}}}*/
147
148 // CopyFile - Buffered copy of a file /*{{{*/
149 // ---------------------------------------------------------------------
150 /* The caller is expected to set things so that failure causes erasure */
151 bool CopyFile(FileFd &From,FileFd &To)
152 {
153 if (From.IsOpen() == false || To.IsOpen() == false)
154 return false;
155
156 // Buffered copy between fds
157 SPtrArray<unsigned char> Buf = new unsigned char[64000];
158 unsigned long long Size = From.Size();
159 while (Size != 0)
160 {
161 unsigned long long ToRead = Size;
162 if (Size > 64000)
163 ToRead = 64000;
164
165 if (From.Read(Buf,ToRead) == false ||
166 To.Write(Buf,ToRead) == false)
167 return false;
168
169 Size -= ToRead;
170 }
171
172 return true;
173 }
174 /*}}}*/
175 // GetLock - Gets a lock file /*{{{*/
176 // ---------------------------------------------------------------------
177 /* This will create an empty file of the given name and lock it. Once this
178 is done all other calls to GetLock in any other process will fail with
179 -1. The return result is the fd of the file, the call should call
180 close at some time. */
181 int GetLock(string File,bool Errors)
182 {
183 // GetLock() is used in aptitude on directories with public-write access
184 // Use O_NOFOLLOW here to prevent symlink traversal attacks
185 int FD = open(File.c_str(),O_RDWR | O_CREAT | O_NOFOLLOW,0640);
186 if (FD < 0)
187 {
188 // Read only .. cant have locking problems there.
189 if (errno == EROFS)
190 {
191 _error->Warning(_("Not using locking for read only lock file %s"),File.c_str());
192 return dup(0); // Need something for the caller to close
193 }
194
195 if (Errors == true)
196 _error->Errno("open",_("Could not open lock file %s"),File.c_str());
197
198 // Feh.. We do this to distinguish the lock vs open case..
199 errno = EPERM;
200 return -1;
201 }
202 SetCloseExec(FD,true);
203
204 // Aquire a write lock
205 struct flock fl;
206 fl.l_type = F_WRLCK;
207 fl.l_whence = SEEK_SET;
208 fl.l_start = 0;
209 fl.l_len = 0;
210 if (fcntl(FD,F_SETLK,&fl) == -1)
211 {
212 if (errno == ENOLCK)
213 {
214 _error->Warning(_("Not using locking for nfs mounted lock file %s"),File.c_str());
215 return dup(0); // Need something for the caller to close
216 }
217 if (Errors == true)
218 _error->Errno("open",_("Could not get lock %s"),File.c_str());
219
220 int Tmp = errno;
221 close(FD);
222 errno = Tmp;
223 return -1;
224 }
225
226 return FD;
227 }
228 /*}}}*/
229 // FileExists - Check if a file exists /*{{{*/
230 // ---------------------------------------------------------------------
231 /* Beware: Directories are also files! */
232 bool FileExists(string File)
233 {
234 struct stat Buf;
235 if (stat(File.c_str(),&Buf) != 0)
236 return false;
237 return true;
238 }
239 /*}}}*/
240 // RealFileExists - Check if a file exists and if it is really a file /*{{{*/
241 // ---------------------------------------------------------------------
242 /* */
243 bool RealFileExists(string File)
244 {
245 struct stat Buf;
246 if (stat(File.c_str(),&Buf) != 0)
247 return false;
248 return ((Buf.st_mode & S_IFREG) != 0);
249 }
250 /*}}}*/
251 // DirectoryExists - Check if a directory exists and is really one /*{{{*/
252 // ---------------------------------------------------------------------
253 /* */
254 bool DirectoryExists(string const &Path)
255 {
256 struct stat Buf;
257 if (stat(Path.c_str(),&Buf) != 0)
258 return false;
259 return ((Buf.st_mode & S_IFDIR) != 0);
260 }
261 /*}}}*/
262 // CreateDirectory - poor man's mkdir -p guarded by a parent directory /*{{{*/
263 // ---------------------------------------------------------------------
264 /* This method will create all directories needed for path in good old
265 mkdir -p style but refuses to do this if Parent is not a prefix of
266 this Path. Example: /var/cache/ and /var/cache/apt/archives are given,
267 so it will create apt/archives if /var/cache exists - on the other
268 hand if the parent is /var/lib the creation will fail as this path
269 is not a parent of the path to be generated. */
270 bool CreateDirectory(string const &Parent, string const &Path)
271 {
272 if (Parent.empty() == true || Path.empty() == true)
273 return false;
274
275 if (DirectoryExists(Path) == true)
276 return true;
277
278 if (DirectoryExists(Parent) == false)
279 return false;
280
281 // we are not going to create directories "into the blue"
282 if (Path.find(Parent, 0) != 0)
283 return false;
284
285 vector<string> const dirs = VectorizeString(Path.substr(Parent.size()), '/');
286 string progress = Parent;
287 for (vector<string>::const_iterator d = dirs.begin(); d != dirs.end(); ++d)
288 {
289 if (d->empty() == true)
290 continue;
291
292 progress.append("/").append(*d);
293 if (DirectoryExists(progress) == true)
294 continue;
295
296 if (mkdir(progress.c_str(), 0755) != 0)
297 return false;
298 }
299 return true;
300 }
301 /*}}}*/
302 // CreateAPTDirectoryIfNeeded - ensure that the given directory exists /*{{{*/
303 // ---------------------------------------------------------------------
304 /* a small wrapper around CreateDirectory to check if it exists and to
305 remove the trailing "/apt/" from the parent directory if needed */
306 bool CreateAPTDirectoryIfNeeded(string const &Parent, string const &Path)
307 {
308 if (DirectoryExists(Path) == true)
309 return true;
310
311 size_t const len = Parent.size();
312 if (len > 5 && Parent.find("/apt/", len - 6, 5) == len - 5)
313 {
314 if (CreateDirectory(Parent.substr(0,len-5), Path) == true)
315 return true;
316 }
317 else if (CreateDirectory(Parent, Path) == true)
318 return true;
319
320 return false;
321 }
322 /*}}}*/
323 // GetListOfFilesInDir - returns a vector of files in the given dir /*{{{*/
324 // ---------------------------------------------------------------------
325 /* If an extension is given only files with this extension are included
326 in the returned vector, otherwise every "normal" file is included. */
327 std::vector<string> GetListOfFilesInDir(string const &Dir, string const &Ext,
328 bool const &SortList, bool const &AllowNoExt)
329 {
330 std::vector<string> ext;
331 ext.reserve(2);
332 if (Ext.empty() == false)
333 ext.push_back(Ext);
334 if (AllowNoExt == true && ext.empty() == false)
335 ext.push_back("");
336 return GetListOfFilesInDir(Dir, ext, SortList);
337 }
338 std::vector<string> GetListOfFilesInDir(string const &Dir, std::vector<string> const &Ext,
339 bool const &SortList)
340 {
341 // Attention debuggers: need to be set with the environment config file!
342 bool const Debug = _config->FindB("Debug::GetListOfFilesInDir", false);
343 if (Debug == true)
344 {
345 std::clog << "Accept in " << Dir << " only files with the following " << Ext.size() << " extensions:" << std::endl;
346 if (Ext.empty() == true)
347 std::clog << "\tNO extension" << std::endl;
348 else
349 for (std::vector<string>::const_iterator e = Ext.begin();
350 e != Ext.end(); ++e)
351 std::clog << '\t' << (e->empty() == true ? "NO" : *e) << " extension" << std::endl;
352 }
353
354 std::vector<string> List;
355
356 if (DirectoryExists(Dir.c_str()) == false)
357 {
358 _error->Error(_("List of files can't be created as '%s' is not a directory"), Dir.c_str());
359 return List;
360 }
361
362 Configuration::MatchAgainstConfig SilentIgnore("Dir::Ignore-Files-Silently");
363 DIR *D = opendir(Dir.c_str());
364 if (D == 0)
365 {
366 _error->Errno("opendir",_("Unable to read %s"),Dir.c_str());
367 return List;
368 }
369
370 for (struct dirent *Ent = readdir(D); Ent != 0; Ent = readdir(D))
371 {
372 // skip "hidden" files
373 if (Ent->d_name[0] == '.')
374 continue;
375
376 // Make sure it is a file and not something else
377 string const File = flCombine(Dir,Ent->d_name);
378 #ifdef _DIRENT_HAVE_D_TYPE
379 if (Ent->d_type != DT_REG)
380 #endif
381 {
382 if (RealFileExists(File.c_str()) == false)
383 {
384 // do not show ignoration warnings for directories
385 if (
386 #ifdef _DIRENT_HAVE_D_TYPE
387 Ent->d_type == DT_DIR ||
388 #endif
389 DirectoryExists(File.c_str()) == true)
390 continue;
391 if (SilentIgnore.Match(Ent->d_name) == false)
392 _error->Notice(_("Ignoring '%s' in directory '%s' as it is not a regular file"), Ent->d_name, Dir.c_str());
393 continue;
394 }
395 }
396
397 // check for accepted extension:
398 // no extension given -> periods are bad as hell!
399 // extensions given -> "" extension allows no extension
400 if (Ext.empty() == false)
401 {
402 string d_ext = flExtension(Ent->d_name);
403 if (d_ext == Ent->d_name) // no extension
404 {
405 if (std::find(Ext.begin(), Ext.end(), "") == Ext.end())
406 {
407 if (Debug == true)
408 std::clog << "Bad file: " << Ent->d_name << " → no extension" << std::endl;
409 if (SilentIgnore.Match(Ent->d_name) == false)
410 _error->Notice(_("Ignoring file '%s' in directory '%s' as it has no filename extension"), Ent->d_name, Dir.c_str());
411 continue;
412 }
413 }
414 else if (std::find(Ext.begin(), Ext.end(), d_ext) == Ext.end())
415 {
416 if (Debug == true)
417 std::clog << "Bad file: " << Ent->d_name << " → bad extension »" << flExtension(Ent->d_name) << "«" << std::endl;
418 if (SilentIgnore.Match(Ent->d_name) == false)
419 _error->Notice(_("Ignoring file '%s' in directory '%s' as it has an invalid filename extension"), Ent->d_name, Dir.c_str());
420 continue;
421 }
422 }
423
424 // Skip bad filenames ala run-parts
425 const char *C = Ent->d_name;
426 for (; *C != 0; ++C)
427 if (isalpha(*C) == 0 && isdigit(*C) == 0
428 && *C != '_' && *C != '-') {
429 // no required extension -> dot is a bad character
430 if (*C == '.' && Ext.empty() == false)
431 continue;
432 break;
433 }
434
435 // we don't reach the end of the name -> bad character included
436 if (*C != 0)
437 {
438 if (Debug == true)
439 std::clog << "Bad file: " << Ent->d_name << " → bad character »"
440 << *C << "« in filename (period allowed: " << (Ext.empty() ? "no" : "yes") << ")" << std::endl;
441 continue;
442 }
443
444 // skip filenames which end with a period. These are never valid
445 if (*(C - 1) == '.')
446 {
447 if (Debug == true)
448 std::clog << "Bad file: " << Ent->d_name << " → Period as last character" << std::endl;
449 continue;
450 }
451
452 if (Debug == true)
453 std::clog << "Accept file: " << Ent->d_name << " in " << Dir << std::endl;
454 List.push_back(File);
455 }
456 closedir(D);
457
458 if (SortList == true)
459 std::sort(List.begin(),List.end());
460 return List;
461 }
462 std::vector<string> GetListOfFilesInDir(string const &Dir, bool SortList)
463 {
464 bool const Debug = _config->FindB("Debug::GetListOfFilesInDir", false);
465 if (Debug == true)
466 std::clog << "Accept in " << Dir << " all regular files" << std::endl;
467
468 std::vector<string> List;
469
470 if (DirectoryExists(Dir.c_str()) == false)
471 {
472 _error->Error(_("List of files can't be created as '%s' is not a directory"), Dir.c_str());
473 return List;
474 }
475
476 DIR *D = opendir(Dir.c_str());
477 if (D == 0)
478 {
479 _error->Errno("opendir",_("Unable to read %s"),Dir.c_str());
480 return List;
481 }
482
483 for (struct dirent *Ent = readdir(D); Ent != 0; Ent = readdir(D))
484 {
485 // skip "hidden" files
486 if (Ent->d_name[0] == '.')
487 continue;
488
489 // Make sure it is a file and not something else
490 string const File = flCombine(Dir,Ent->d_name);
491 #ifdef _DIRENT_HAVE_D_TYPE
492 if (Ent->d_type != DT_REG)
493 #endif
494 {
495 if (RealFileExists(File.c_str()) == false)
496 {
497 if (Debug == true)
498 std::clog << "Bad file: " << Ent->d_name << " → it is not a real file" << std::endl;
499 continue;
500 }
501 }
502
503 // Skip bad filenames ala run-parts
504 const char *C = Ent->d_name;
505 for (; *C != 0; ++C)
506 if (isalpha(*C) == 0 && isdigit(*C) == 0
507 && *C != '_' && *C != '-' && *C != '.')
508 break;
509
510 // we don't reach the end of the name -> bad character included
511 if (*C != 0)
512 {
513 if (Debug == true)
514 std::clog << "Bad file: " << Ent->d_name << " → bad character »" << *C << "« in filename" << std::endl;
515 continue;
516 }
517
518 // skip filenames which end with a period. These are never valid
519 if (*(C - 1) == '.')
520 {
521 if (Debug == true)
522 std::clog << "Bad file: " << Ent->d_name << " → Period as last character" << std::endl;
523 continue;
524 }
525
526 if (Debug == true)
527 std::clog << "Accept file: " << Ent->d_name << " in " << Dir << std::endl;
528 List.push_back(File);
529 }
530 closedir(D);
531
532 if (SortList == true)
533 std::sort(List.begin(),List.end());
534 return List;
535 }
536 /*}}}*/
537 // SafeGetCWD - This is a safer getcwd that returns a dynamic string /*{{{*/
538 // ---------------------------------------------------------------------
539 /* We return / on failure. */
540 string SafeGetCWD()
541 {
542 // Stash the current dir.
543 char S[300];
544 S[0] = 0;
545 if (getcwd(S,sizeof(S)-2) == 0)
546 return "/";
547 unsigned int Len = strlen(S);
548 S[Len] = '/';
549 S[Len+1] = 0;
550 return S;
551 }
552 /*}}}*/
553 // GetModificationTime - Get the mtime of the given file or -1 on error /*{{{*/
554 // ---------------------------------------------------------------------
555 /* We return / on failure. */
556 time_t GetModificationTime(string const &Path)
557 {
558 struct stat St;
559 if (stat(Path.c_str(), &St) < 0)
560 return -1;
561 return St.st_mtime;
562 }
563 /*}}}*/
564 // flNotDir - Strip the directory from the filename /*{{{*/
565 // ---------------------------------------------------------------------
566 /* */
567 string flNotDir(string File)
568 {
569 string::size_type Res = File.rfind('/');
570 if (Res == string::npos)
571 return File;
572 Res++;
573 return string(File,Res,Res - File.length());
574 }
575 /*}}}*/
576 // flNotFile - Strip the file from the directory name /*{{{*/
577 // ---------------------------------------------------------------------
578 /* Result ends in a / */
579 string flNotFile(string File)
580 {
581 string::size_type Res = File.rfind('/');
582 if (Res == string::npos)
583 return "./";
584 Res++;
585 return string(File,0,Res);
586 }
587 /*}}}*/
588 // flExtension - Return the extension for the file /*{{{*/
589 // ---------------------------------------------------------------------
590 /* */
591 string flExtension(string File)
592 {
593 string::size_type Res = File.rfind('.');
594 if (Res == string::npos)
595 return File;
596 Res++;
597 return string(File,Res,Res - File.length());
598 }
599 /*}}}*/
600 // flNoLink - If file is a symlink then deref it /*{{{*/
601 // ---------------------------------------------------------------------
602 /* If the name is not a link then the returned path is the input. */
603 string flNoLink(string File)
604 {
605 struct stat St;
606 if (lstat(File.c_str(),&St) != 0 || S_ISLNK(St.st_mode) == 0)
607 return File;
608 if (stat(File.c_str(),&St) != 0)
609 return File;
610
611 /* Loop resolving the link. There is no need to limit the number of
612 loops because the stat call above ensures that the symlink is not
613 circular */
614 char Buffer[1024];
615 string NFile = File;
616 while (1)
617 {
618 // Read the link
619 int Res;
620 if ((Res = readlink(NFile.c_str(),Buffer,sizeof(Buffer))) <= 0 ||
621 (unsigned)Res >= sizeof(Buffer))
622 return File;
623
624 // Append or replace the previous path
625 Buffer[Res] = 0;
626 if (Buffer[0] == '/')
627 NFile = Buffer;
628 else
629 NFile = flNotFile(NFile) + Buffer;
630
631 // See if we are done
632 if (lstat(NFile.c_str(),&St) != 0)
633 return File;
634 if (S_ISLNK(St.st_mode) == 0)
635 return NFile;
636 }
637 }
638 /*}}}*/
639 // flCombine - Combine a file and a directory /*{{{*/
640 // ---------------------------------------------------------------------
641 /* If the file is an absolute path then it is just returned, otherwise
642 the directory is pre-pended to it. */
643 string flCombine(string Dir,string File)
644 {
645 if (File.empty() == true)
646 return string();
647
648 if (File[0] == '/' || Dir.empty() == true)
649 return File;
650 if (File.length() >= 2 && File[0] == '.' && File[1] == '/')
651 return File;
652 if (Dir[Dir.length()-1] == '/')
653 return Dir + File;
654 return Dir + '/' + File;
655 }
656 /*}}}*/
657 // SetCloseExec - Set the close on exec flag /*{{{*/
658 // ---------------------------------------------------------------------
659 /* */
660 void SetCloseExec(int Fd,bool Close)
661 {
662 if (fcntl(Fd,F_SETFD,(Close == false)?0:FD_CLOEXEC) != 0)
663 {
664 cerr << "FATAL -> Could not set close on exec " << strerror(errno) << endl;
665 exit(100);
666 }
667 }
668 /*}}}*/
669 // SetNonBlock - Set the nonblocking flag /*{{{*/
670 // ---------------------------------------------------------------------
671 /* */
672 void SetNonBlock(int Fd,bool Block)
673 {
674 int Flags = fcntl(Fd,F_GETFL) & (~O_NONBLOCK);
675 if (fcntl(Fd,F_SETFL,Flags | ((Block == false)?0:O_NONBLOCK)) != 0)
676 {
677 cerr << "FATAL -> Could not set non-blocking flag " << strerror(errno) << endl;
678 exit(100);
679 }
680 }
681 /*}}}*/
682 // WaitFd - Wait for a FD to become readable /*{{{*/
683 // ---------------------------------------------------------------------
684 /* This waits for a FD to become readable using select. It is useful for
685 applications making use of non-blocking sockets. The timeout is
686 in seconds. */
687 bool WaitFd(int Fd,bool write,unsigned long timeout)
688 {
689 fd_set Set;
690 struct timeval tv;
691 FD_ZERO(&Set);
692 FD_SET(Fd,&Set);
693 tv.tv_sec = timeout;
694 tv.tv_usec = 0;
695 if (write == true)
696 {
697 int Res;
698 do
699 {
700 Res = select(Fd+1,0,&Set,0,(timeout != 0?&tv:0));
701 }
702 while (Res < 0 && errno == EINTR);
703
704 if (Res <= 0)
705 return false;
706 }
707 else
708 {
709 int Res;
710 do
711 {
712 Res = select(Fd+1,&Set,0,0,(timeout != 0?&tv:0));
713 }
714 while (Res < 0 && errno == EINTR);
715
716 if (Res <= 0)
717 return false;
718 }
719
720 return true;
721 }
722 /*}}}*/
723 // ExecFork - Magical fork that sanitizes the context before execing /*{{{*/
724 // ---------------------------------------------------------------------
725 /* This is used if you want to cleanse the environment for the forked
726 child, it fixes up the important signals and nukes all of the fds,
727 otherwise acts like normal fork. */
728 pid_t ExecFork()
729 {
730 // Fork off the process
731 pid_t Process = fork();
732 if (Process < 0)
733 {
734 cerr << "FATAL -> Failed to fork." << endl;
735 exit(100);
736 }
737
738 // Spawn the subprocess
739 if (Process == 0)
740 {
741 // Setup the signals
742 signal(SIGPIPE,SIG_DFL);
743 signal(SIGQUIT,SIG_DFL);
744 signal(SIGINT,SIG_DFL);
745 signal(SIGWINCH,SIG_DFL);
746 signal(SIGCONT,SIG_DFL);
747 signal(SIGTSTP,SIG_DFL);
748
749 set<int> KeepFDs;
750 Configuration::Item const *Opts = _config->Tree("APT::Keep-Fds");
751 if (Opts != 0 && Opts->Child != 0)
752 {
753 Opts = Opts->Child;
754 for (; Opts != 0; Opts = Opts->Next)
755 {
756 if (Opts->Value.empty() == true)
757 continue;
758 int fd = atoi(Opts->Value.c_str());
759 KeepFDs.insert(fd);
760 }
761 }
762
763 // Close all of our FDs - just in case
764 for (int K = 3; K != 40; K++)
765 {
766 if(KeepFDs.find(K) == KeepFDs.end())
767 fcntl(K,F_SETFD,FD_CLOEXEC);
768 }
769 }
770
771 return Process;
772 }
773 /*}}}*/
774 // ExecWait - Fancy waitpid /*{{{*/
775 // ---------------------------------------------------------------------
776 /* Waits for the given sub process. If Reap is set then no errors are
777 generated. Otherwise a failed subprocess will generate a proper descriptive
778 message */
779 bool ExecWait(pid_t Pid,const char *Name,bool Reap)
780 {
781 if (Pid <= 1)
782 return true;
783
784 // Wait and collect the error code
785 int Status;
786 while (waitpid(Pid,&Status,0) != Pid)
787 {
788 if (errno == EINTR)
789 continue;
790
791 if (Reap == true)
792 return false;
793
794 return _error->Error(_("Waited for %s but it wasn't there"),Name);
795 }
796
797
798 // Check for an error code.
799 if (WIFEXITED(Status) == 0 || WEXITSTATUS(Status) != 0)
800 {
801 if (Reap == true)
802 return false;
803 if (WIFSIGNALED(Status) != 0)
804 {
805 if( WTERMSIG(Status) == SIGSEGV)
806 return _error->Error(_("Sub-process %s received a segmentation fault."),Name);
807 else
808 return _error->Error(_("Sub-process %s received signal %u."),Name, WTERMSIG(Status));
809 }
810
811 if (WIFEXITED(Status) != 0)
812 return _error->Error(_("Sub-process %s returned an error code (%u)"),Name,WEXITSTATUS(Status));
813
814 return _error->Error(_("Sub-process %s exited unexpectedly"),Name);
815 }
816
817 return true;
818 }
819 /*}}}*/
820
821 // FileFd::Open - Open a file /*{{{*/
822 // ---------------------------------------------------------------------
823 /* The most commonly used open mode combinations are given with Mode */
824 bool FileFd::Open(string FileName,unsigned int const Mode,CompressMode Compress, unsigned long const Perms)
825 {
826 if (Mode == ReadOnlyGzip)
827 return Open(FileName, ReadOnly, Gzip, Perms);
828
829 if (Compress == Auto && (Mode & WriteOnly) == WriteOnly)
830 return _error->Error("Autodetection on %s only works in ReadOnly openmode!", FileName.c_str());
831
832 std::vector<APT::Configuration::Compressor> const compressors = APT::Configuration::getCompressors();
833 std::vector<APT::Configuration::Compressor>::const_iterator compressor = compressors.begin();
834 if (Compress == Auto)
835 {
836 for (; compressor != compressors.end(); ++compressor)
837 {
838 std::string file = std::string(FileName).append(compressor->Extension);
839 if (FileExists(file) == false)
840 continue;
841 FileName = file;
842 break;
843 }
844 }
845 else if (Compress == Extension)
846 {
847 std::string::size_type const found = FileName.find_last_of('.');
848 std::string ext;
849 if (found != std::string::npos)
850 {
851 ext = FileName.substr(found);
852 if (ext == ".new" || ext == ".bak")
853 {
854 std::string::size_type const found2 = FileName.find_last_of('.', found - 1);
855 if (found2 != std::string::npos)
856 ext = FileName.substr(found2, found - found2);
857 else
858 ext.clear();
859 }
860 }
861 for (; compressor != compressors.end(); ++compressor)
862 if (ext == compressor->Extension)
863 break;
864 // no matching extension - assume uncompressed (imagine files like 'example.org_Packages')
865 if (compressor == compressors.end())
866 for (compressor = compressors.begin(); compressor != compressors.end(); ++compressor)
867 if (compressor->Name == ".")
868 break;
869 }
870 else
871 {
872 std::string name;
873 switch (Compress)
874 {
875 case None: name = "."; break;
876 case Gzip: name = "gzip"; break;
877 case Bzip2: name = "bzip2"; break;
878 case Lzma: name = "lzma"; break;
879 case Xz: name = "xz"; break;
880 case Auto:
881 case Extension:
882 // Unreachable
883 return _error->Error("Opening File %s in None, Auto or Extension should be already handled?!?", FileName.c_str());
884 }
885 for (; compressor != compressors.end(); ++compressor)
886 if (compressor->Name == name)
887 break;
888 if (compressor == compressors.end())
889 return _error->Error("Can't find a configured compressor %s for file %s", name.c_str(), FileName.c_str());
890 }
891
892 if (compressor == compressors.end())
893 return _error->Error("Can't find a match for specified compressor mode for file %s", FileName.c_str());
894 return Open(FileName, Mode, *compressor, Perms);
895 }
896 bool FileFd::Open(string FileName,unsigned int const Mode,APT::Configuration::Compressor const &compressor, unsigned long const Perms)
897 {
898 Close();
899 d = new FileFdPrivate;
900 d->openmode = Mode;
901 Flags = AutoClose;
902
903 if ((Mode & WriteOnly) != WriteOnly && (Mode & (Atomic | Create | Empty | Exclusive)) != 0)
904 return _error->Error("ReadOnly mode for %s doesn't accept additional flags!", FileName.c_str());
905 if ((Mode & ReadWrite) == 0)
906 return _error->Error("No openmode provided in FileFd::Open for %s", FileName.c_str());
907
908 if ((Mode & Atomic) == Atomic)
909 {
910 Flags |= Replace;
911 char *name = strdup((FileName + ".XXXXXX").c_str());
912 TemporaryFileName = string(mktemp(name));
913 free(name);
914 }
915 else if ((Mode & (Exclusive | Create)) == (Exclusive | Create))
916 {
917 // for atomic, this will be done by rename in Close()
918 unlink(FileName.c_str());
919 }
920 if ((Mode & Empty) == Empty)
921 {
922 struct stat Buf;
923 if (lstat(FileName.c_str(),&Buf) == 0 && S_ISLNK(Buf.st_mode))
924 unlink(FileName.c_str());
925 }
926
927 int fileflags = 0;
928 #define if_FLAGGED_SET(FLAG, MODE) if ((Mode & FLAG) == FLAG) fileflags |= MODE
929 if_FLAGGED_SET(ReadWrite, O_RDWR);
930 else if_FLAGGED_SET(ReadOnly, O_RDONLY);
931 else if_FLAGGED_SET(WriteOnly, O_WRONLY);
932
933 if_FLAGGED_SET(Create, O_CREAT);
934 if_FLAGGED_SET(Empty, O_TRUNC);
935 if_FLAGGED_SET(Exclusive, O_EXCL);
936 else if_FLAGGED_SET(Atomic, O_EXCL);
937 #undef if_FLAGGED_SET
938
939 if (TemporaryFileName.empty() == false)
940 iFd = open(TemporaryFileName.c_str(), fileflags, Perms);
941 else
942 iFd = open(FileName.c_str(), fileflags, Perms);
943
944 this->FileName = FileName;
945 if (iFd == -1 || OpenInternDescriptor(Mode, compressor) == false)
946 {
947 if (iFd != -1)
948 {
949 close (iFd);
950 iFd = -1;
951 }
952 return _error->Errno("open",_("Could not open file %s"), FileName.c_str());
953 }
954
955 SetCloseExec(iFd,true);
956 return true;
957 }
958 /*}}}*/
959 // FileFd::OpenDescriptor - Open a filedescriptor /*{{{*/
960 // ---------------------------------------------------------------------
961 /* */
962 bool FileFd::OpenDescriptor(int Fd, unsigned int const Mode, CompressMode Compress, bool AutoClose)
963 {
964 std::vector<APT::Configuration::Compressor> const compressors = APT::Configuration::getCompressors();
965 std::vector<APT::Configuration::Compressor>::const_iterator compressor = compressors.begin();
966 std::string name;
967
968 // compat with the old API
969 if (Mode == ReadOnlyGzip && Compress == None)
970 Compress = Gzip;
971
972 switch (Compress)
973 {
974 case None: name = "."; break;
975 case Gzip: name = "gzip"; break;
976 case Bzip2: name = "bzip2"; break;
977 case Lzma: name = "lzma"; break;
978 case Xz: name = "xz"; break;
979 case Auto:
980 case Extension:
981 return _error->Error("Opening Fd %d in Auto or Extension compression mode is not supported", Fd);
982 }
983 for (; compressor != compressors.end(); ++compressor)
984 if (compressor->Name == name)
985 break;
986 if (compressor == compressors.end())
987 return _error->Error("Can't find a configured compressor %s for file %s", name.c_str(), FileName.c_str());
988
989 return OpenDescriptor(Fd, Mode, *compressor, AutoClose);
990 }
991 bool FileFd::OpenDescriptor(int Fd, unsigned int const Mode, APT::Configuration::Compressor const &compressor, bool AutoClose)
992 {
993 Close();
994 d = new FileFdPrivate;
995 d->openmode = Mode;
996 Flags = (AutoClose) ? FileFd::AutoClose : 0;
997 iFd = Fd;
998 this->FileName = "";
999 if (OpenInternDescriptor(Mode, compressor) == false)
1000 {
1001 if (AutoClose)
1002 close (iFd);
1003 return _error->Errno("gzdopen",_("Could not open file descriptor %d"), Fd);
1004 }
1005 return true;
1006 }
1007 bool FileFd::OpenInternDescriptor(unsigned int const Mode, APT::Configuration::Compressor const &compressor)
1008 {
1009 d->compressor = compressor;
1010 if (compressor.Name == "." || compressor.Binary.empty() == true)
1011 return true;
1012 #ifdef HAVE_ZLIB
1013 else if (compressor.Name == "gzip")
1014 {
1015 if ((Mode & ReadWrite) == ReadWrite)
1016 d->gz = gzdopen(iFd, "r+");
1017 else if ((Mode & WriteOnly) == WriteOnly)
1018 d->gz = gzdopen(iFd, "w");
1019 else
1020 d->gz = gzdopen (iFd, "r");
1021 if (d->gz == NULL)
1022 return false;
1023 Flags |= Compressed;
1024 return true;
1025 }
1026 #endif
1027
1028 if ((Mode & ReadWrite) == ReadWrite)
1029 return _error->Error("ReadWrite mode is not supported for file %s", FileName.c_str());
1030
1031 bool const Comp = (Mode & WriteOnly) == WriteOnly;
1032 // Handle 'decompression' of empty files
1033 if (Comp == false)
1034 {
1035 struct stat Buf;
1036 fstat(iFd, &Buf);
1037 if (Buf.st_size == 0 && S_ISFIFO(Buf.st_mode) == false)
1038 return true;
1039
1040 // We don't need the file open - instead let the compressor open it
1041 // as he properly knows better how to efficiently read from 'his' file
1042 if (FileName.empty() == false)
1043 close(iFd);
1044 }
1045
1046 // Create a data pipe
1047 int Pipe[2] = {-1,-1};
1048 if (pipe(Pipe) != 0)
1049 return _error->Errno("pipe",_("Failed to create subprocess IPC"));
1050 for (int J = 0; J != 2; J++)
1051 SetCloseExec(Pipe[J],true);
1052
1053 d->compressed_fd = iFd;
1054 d->pipe = true;
1055
1056 if (Comp == true)
1057 iFd = Pipe[1];
1058 else
1059 iFd = Pipe[0];
1060
1061 // The child..
1062 d->compressor_pid = ExecFork();
1063 if (d->compressor_pid == 0)
1064 {
1065 if (Comp == true)
1066 {
1067 dup2(d->compressed_fd,STDOUT_FILENO);
1068 dup2(Pipe[0],STDIN_FILENO);
1069 }
1070 else
1071 {
1072 if (FileName.empty() == true)
1073 dup2(d->compressed_fd,STDIN_FILENO);
1074 dup2(Pipe[1],STDOUT_FILENO);
1075 }
1076
1077 SetCloseExec(STDOUT_FILENO,false);
1078 SetCloseExec(STDIN_FILENO,false);
1079
1080 std::vector<char const*> Args;
1081 Args.push_back(compressor.Binary.c_str());
1082 std::vector<std::string> const * const addArgs =
1083 (Comp == true) ? &(compressor.CompressArgs) : &(compressor.UncompressArgs);
1084 for (std::vector<std::string>::const_iterator a = addArgs->begin();
1085 a != addArgs->end(); ++a)
1086 Args.push_back(a->c_str());
1087 if (Comp == false && FileName.empty() == false)
1088 {
1089 Args.push_back("--stdout");
1090 if (TemporaryFileName.empty() == false)
1091 Args.push_back(TemporaryFileName.c_str());
1092 else
1093 Args.push_back(FileName.c_str());
1094 }
1095 Args.push_back(NULL);
1096
1097 execvp(Args[0],(char **)&Args[0]);
1098 cerr << _("Failed to exec compressor ") << Args[0] << endl;
1099 _exit(100);
1100 }
1101 if (Comp == true)
1102 close(Pipe[0]);
1103 else
1104 close(Pipe[1]);
1105 if (Comp == true || FileName.empty() == true)
1106 close(d->compressed_fd);
1107
1108 return true;
1109 }
1110 /*}}}*/
1111 // FileFd::~File - Closes the file /*{{{*/
1112 // ---------------------------------------------------------------------
1113 /* If the proper modes are selected then we close the Fd and possibly
1114 unlink the file on error. */
1115 FileFd::~FileFd()
1116 {
1117 Close();
1118 }
1119 /*}}}*/
1120 // FileFd::Read - Read a bit of the file /*{{{*/
1121 // ---------------------------------------------------------------------
1122 /* We are carefull to handle interruption by a signal while reading
1123 gracefully. */
1124 bool FileFd::Read(void *To,unsigned long long Size,unsigned long long *Actual)
1125 {
1126 int Res;
1127 errno = 0;
1128 if (Actual != 0)
1129 *Actual = 0;
1130 *((char *)To) = '\0';
1131 do
1132 {
1133 #ifdef HAVE_ZLIB
1134 if (d->gz != NULL)
1135 Res = gzread(d->gz,To,Size);
1136 else
1137 #endif
1138 Res = read(iFd,To,Size);
1139
1140 if (Res < 0)
1141 {
1142 if (errno == EINTR)
1143 continue;
1144 Flags |= Fail;
1145 #ifdef HAVE_ZLIB
1146 if (d->gz != NULL)
1147 {
1148 int err;
1149 char const * const errmsg = gzerror(d->gz, &err);
1150 if (err != Z_ERRNO)
1151 return _error->Error("gzread: %s (%d: %s)", _("Read error"), err, errmsg);
1152 }
1153 #endif
1154 return _error->Errno("read",_("Read error"));
1155 }
1156
1157 To = (char *)To + Res;
1158 Size -= Res;
1159 d->seekpos += Res;
1160 if (Actual != 0)
1161 *Actual += Res;
1162 }
1163 while (Res > 0 && Size > 0);
1164
1165 if (Size == 0)
1166 return true;
1167
1168 // Eof handling
1169 if (Actual != 0)
1170 {
1171 Flags |= HitEof;
1172 return true;
1173 }
1174
1175 Flags |= Fail;
1176 return _error->Error(_("read, still have %llu to read but none left"), Size);
1177 }
1178 /*}}}*/
1179 // FileFd::ReadLine - Read a complete line from the file /*{{{*/
1180 // ---------------------------------------------------------------------
1181 /* Beware: This method can be quiet slow for big buffers on UNcompressed
1182 files because of the naive implementation! */
1183 char* FileFd::ReadLine(char *To, unsigned long long const Size)
1184 {
1185 *To = '\0';
1186 #ifdef HAVE_ZLIB
1187 if (d->gz != NULL)
1188 return gzgets(d->gz, To, Size);
1189 #endif
1190
1191 unsigned long long read = 0;
1192 while ((Size - 1) != read)
1193 {
1194 unsigned long long done = 0;
1195 if (Read(To + read, 1, &done) == false)
1196 return NULL;
1197 if (done == 0)
1198 break;
1199 if (To[read++] == '\n')
1200 break;
1201 }
1202 if (read == 0)
1203 return NULL;
1204 To[read] = '\0';
1205 return To;
1206 }
1207 /*}}}*/
1208 // FileFd::Write - Write to the file /*{{{*/
1209 // ---------------------------------------------------------------------
1210 /* */
1211 bool FileFd::Write(const void *From,unsigned long long Size)
1212 {
1213 int Res;
1214 errno = 0;
1215 do
1216 {
1217 #ifdef HAVE_ZLIB
1218 if (d->gz != NULL)
1219 Res = gzwrite(d->gz,From,Size);
1220 else
1221 #endif
1222 Res = write(iFd,From,Size);
1223 if (Res < 0 && errno == EINTR)
1224 continue;
1225 if (Res < 0)
1226 {
1227 Flags |= Fail;
1228 return _error->Errno("write",_("Write error"));
1229 }
1230
1231 From = (char *)From + Res;
1232 Size -= Res;
1233 d->seekpos += Res;
1234 }
1235 while (Res > 0 && Size > 0);
1236
1237 if (Size == 0)
1238 return true;
1239
1240 Flags |= Fail;
1241 return _error->Error(_("write, still have %llu to write but couldn't"), Size);
1242 }
1243 /*}}}*/
1244 // FileFd::Seek - Seek in the file /*{{{*/
1245 // ---------------------------------------------------------------------
1246 /* */
1247 bool FileFd::Seek(unsigned long long To)
1248 {
1249 if (d->pipe == true)
1250 {
1251 // Our poor man seeking in pipes is costly, so try to avoid it
1252 unsigned long long seekpos = Tell();
1253 if (seekpos == To)
1254 return true;
1255 else if (seekpos < To)
1256 return Skip(To - seekpos);
1257
1258 if ((d->openmode & ReadOnly) != ReadOnly)
1259 return _error->Error("Reopen is only implemented for read-only files!");
1260 close(iFd);
1261 iFd = 0;
1262 if (TemporaryFileName.empty() == false)
1263 iFd = open(TemporaryFileName.c_str(), O_RDONLY);
1264 else if (FileName.empty() == false)
1265 iFd = open(FileName.c_str(), O_RDONLY);
1266 else
1267 {
1268 if (d->compressed_fd > 0)
1269 if (lseek(d->compressed_fd, 0, SEEK_SET) != 0)
1270 iFd = d->compressed_fd;
1271 if (iFd <= 0)
1272 return _error->Error("Reopen is not implemented for pipes opened with FileFd::OpenDescriptor()!");
1273 }
1274
1275 if (OpenInternDescriptor(d->openmode, d->compressor) == false)
1276 return _error->Error("Seek on file %s because it couldn't be reopened", FileName.c_str());
1277
1278 if (To != 0)
1279 return Skip(To);
1280
1281 d->seekpos = To;
1282 return true;
1283 }
1284 int res;
1285 #ifdef HAVE_ZLIB
1286 if (d->gz)
1287 res = gzseek(d->gz,To,SEEK_SET);
1288 else
1289 #endif
1290 res = lseek(iFd,To,SEEK_SET);
1291 if (res != (signed)To)
1292 {
1293 Flags |= Fail;
1294 return _error->Error("Unable to seek to %llu", To);
1295 }
1296
1297 d->seekpos = To;
1298 return true;
1299 }
1300 /*}}}*/
1301 // FileFd::Skip - Seek in the file /*{{{*/
1302 // ---------------------------------------------------------------------
1303 /* */
1304 bool FileFd::Skip(unsigned long long Over)
1305 {
1306 if (d->pipe == true)
1307 {
1308 d->seekpos += Over;
1309 char buffer[1024];
1310 while (Over != 0)
1311 {
1312 unsigned long long toread = std::min((unsigned long long) sizeof(buffer), Over);
1313 if (Read(buffer, toread) == false)
1314 return _error->Error("Unable to seek ahead %llu",Over);
1315 Over -= toread;
1316 }
1317 return true;
1318 }
1319
1320 int res;
1321 #ifdef HAVE_ZLIB
1322 if (d->gz != NULL)
1323 res = gzseek(d->gz,Over,SEEK_CUR);
1324 else
1325 #endif
1326 res = lseek(iFd,Over,SEEK_CUR);
1327 if (res < 0)
1328 {
1329 Flags |= Fail;
1330 return _error->Error("Unable to seek ahead %llu",Over);
1331 }
1332 d->seekpos = res;
1333
1334 return true;
1335 }
1336 /*}}}*/
1337 // FileFd::Truncate - Truncate the file /*{{{*/
1338 // ---------------------------------------------------------------------
1339 /* */
1340 bool FileFd::Truncate(unsigned long long To)
1341 {
1342 if (d->gz != NULL)
1343 {
1344 Flags |= Fail;
1345 return _error->Error("Truncating gzipped files is not implemented (%s)", FileName.c_str());
1346 }
1347 if (ftruncate(iFd,To) != 0)
1348 {
1349 Flags |= Fail;
1350 return _error->Error("Unable to truncate to %llu",To);
1351 }
1352
1353 return true;
1354 }
1355 /*}}}*/
1356 // FileFd::Tell - Current seek position /*{{{*/
1357 // ---------------------------------------------------------------------
1358 /* */
1359 unsigned long long FileFd::Tell()
1360 {
1361 // In theory, we could just return seekpos here always instead of
1362 // seeking around, but not all users of FileFd use always Seek() and co
1363 // so d->seekpos isn't always true and we can just use it as a hint if
1364 // we have nothing else, but not always as an authority…
1365 if (d->pipe == true)
1366 return d->seekpos;
1367
1368 off_t Res;
1369 #ifdef HAVE_ZLIB
1370 if (d->gz != NULL)
1371 Res = gztell(d->gz);
1372 else
1373 #endif
1374 Res = lseek(iFd,0,SEEK_CUR);
1375 if (Res == (off_t)-1)
1376 _error->Errno("lseek","Failed to determine the current file position");
1377 d->seekpos = Res;
1378 return Res;
1379 }
1380 /*}}}*/
1381 // FileFd::FileSize - Return the size of the file /*{{{*/
1382 // ---------------------------------------------------------------------
1383 /* */
1384 unsigned long long FileFd::FileSize()
1385 {
1386 struct stat Buf;
1387 if (d->pipe == false && fstat(iFd,&Buf) != 0)
1388 return _error->Errno("fstat","Unable to determine the file size");
1389
1390 // for compressor pipes st_size is undefined and at 'best' zero
1391 if (d->pipe == true || S_ISFIFO(Buf.st_mode))
1392 {
1393 // we set it here, too, as we get the info here for free
1394 // in theory the Open-methods should take care of it already
1395 d->pipe = true;
1396 if (stat(FileName.c_str(), &Buf) != 0)
1397 return _error->Errno("stat","Unable to determine the file size");
1398 }
1399
1400 return Buf.st_size;
1401 }
1402 /*}}}*/
1403 // FileFd::Size - Return the size of the content in the file /*{{{*/
1404 // ---------------------------------------------------------------------
1405 /* */
1406 unsigned long long FileFd::Size()
1407 {
1408 unsigned long long size = FileSize();
1409
1410 // for compressor pipes st_size is undefined and at 'best' zero,
1411 // so we 'read' the content and 'seek' back - see there
1412 if (d->pipe == true)
1413 {
1414 unsigned long long const oldSeek = Tell();
1415 char ignore[1000];
1416 unsigned long long read = 0;
1417 do {
1418 Read(ignore, sizeof(ignore), &read);
1419 } while(read != 0);
1420 size = Tell();
1421 Seek(oldSeek);
1422 }
1423 #ifdef HAVE_ZLIB
1424 // only check gzsize if we are actually a gzip file, just checking for
1425 // "gz" is not sufficient as uncompressed files could be opened with
1426 // gzopen in "direct" mode as well
1427 else if (d->gz && !gzdirect(d->gz) && size > 0)
1428 {
1429 off_t const oldPos = lseek(iFd,0,SEEK_CUR);
1430 /* unfortunately zlib.h doesn't provide a gzsize(), so we have to do
1431 * this ourselves; the original (uncompressed) file size is the last 32
1432 * bits of the file */
1433 // FIXME: Size for gz-files is limited by 32bit… no largefile support
1434 if (lseek(iFd, -4, SEEK_END) < 0)
1435 return _error->Errno("lseek","Unable to seek to end of gzipped file");
1436 size = 0L;
1437 if (read(iFd, &size, 4) != 4)
1438 return _error->Errno("read","Unable to read original size of gzipped file");
1439
1440 #ifdef WORDS_BIGENDIAN
1441 uint32_t tmp_size = size;
1442 uint8_t const * const p = (uint8_t const * const) &tmp_size;
1443 tmp_size = (p[3] << 24) | (p[2] << 16) | (p[1] << 8) | p[0];
1444 size = tmp_size;
1445 #endif
1446
1447 if (lseek(iFd, oldPos, SEEK_SET) < 0)
1448 return _error->Errno("lseek","Unable to seek in gzipped file");
1449
1450 return size;
1451 }
1452 #endif
1453
1454 return size;
1455 }
1456 /*}}}*/
1457 // FileFd::ModificationTime - Return the time of last touch /*{{{*/
1458 // ---------------------------------------------------------------------
1459 /* */
1460 time_t FileFd::ModificationTime()
1461 {
1462 struct stat Buf;
1463 if (d->pipe == false && fstat(iFd,&Buf) != 0)
1464 {
1465 _error->Errno("fstat","Unable to determine the modification time of file %s", FileName.c_str());
1466 return 0;
1467 }
1468
1469 // for compressor pipes st_size is undefined and at 'best' zero
1470 if (d->pipe == true || S_ISFIFO(Buf.st_mode))
1471 {
1472 // we set it here, too, as we get the info here for free
1473 // in theory the Open-methods should take care of it already
1474 d->pipe = true;
1475 if (stat(FileName.c_str(), &Buf) != 0)
1476 {
1477 _error->Errno("fstat","Unable to determine the modification time of file %s", FileName.c_str());
1478 return 0;
1479 }
1480 }
1481
1482 return Buf.st_mtime;
1483 }
1484 /*}}}*/
1485 // FileFd::Close - Close the file if the close flag is set /*{{{*/
1486 // ---------------------------------------------------------------------
1487 /* */
1488 bool FileFd::Close()
1489 {
1490 if (iFd == -1)
1491 return true;
1492
1493 bool Res = true;
1494 if ((Flags & AutoClose) == AutoClose)
1495 {
1496 #ifdef HAVE_ZLIB
1497 if (d != NULL && d->gz != NULL) {
1498 int const e = gzclose(d->gz);
1499 // gzdclose() on empty files always fails with "buffer error" here, ignore that
1500 if (e != 0 && e != Z_BUF_ERROR)
1501 Res &= _error->Errno("close",_("Problem closing the gzip file %s"), FileName.c_str());
1502 } else
1503 #endif
1504 if (iFd > 0 && close(iFd) != 0)
1505 Res &= _error->Errno("close",_("Problem closing the file %s"), FileName.c_str());
1506 }
1507
1508 if ((Flags & Replace) == Replace && iFd >= 0) {
1509 if (rename(TemporaryFileName.c_str(), FileName.c_str()) != 0)
1510 Res &= _error->Errno("rename",_("Problem renaming the file %s to %s"), TemporaryFileName.c_str(), FileName.c_str());
1511
1512 FileName = TemporaryFileName; // for the unlink() below.
1513 TemporaryFileName.clear();
1514 }
1515
1516 iFd = -1;
1517
1518 if ((Flags & Fail) == Fail && (Flags & DelOnFail) == DelOnFail &&
1519 FileName.empty() == false)
1520 if (unlink(FileName.c_str()) != 0)
1521 Res &= _error->WarningE("unlnk",_("Problem unlinking the file %s"), FileName.c_str());
1522
1523 if (d != NULL)
1524 {
1525 if (d->compressor_pid > 0)
1526 ExecWait(d->compressor_pid, "FileFdCompressor", true);
1527 delete d;
1528 d = NULL;
1529 }
1530
1531 return Res;
1532 }
1533 /*}}}*/
1534 // FileFd::Sync - Sync the file /*{{{*/
1535 // ---------------------------------------------------------------------
1536 /* */
1537 bool FileFd::Sync()
1538 {
1539 #ifdef _POSIX_SYNCHRONIZED_IO
1540 if (fsync(iFd) != 0)
1541 return _error->Errno("sync",_("Problem syncing the file"));
1542 #endif
1543 return true;
1544 }
1545 /*}}}*/
1546
1547 gzFile FileFd::gzFd() { return (gzFile) d->gz; }