]> git.saurik.com Git - apt.git/blob - apt-pkg/deb/dpkgpm.cc
d76b59449dff268f3f9086fa731ca7f530d7c63d
[apt.git] / apt-pkg / deb / dpkgpm.cc
1 // -*- mode: cpp; mode: fold -*-
2 // Description /*{{{*/
3 /* ######################################################################
4
5 DPKG Package Manager - Provide an interface to dpkg
6
7 ##################################################################### */
8 /*}}}*/
9 // Includes /*{{{*/
10 #include <config.h>
11
12 #include <apt-pkg/cachefile.h>
13 #include <apt-pkg/configuration.h>
14 #include <apt-pkg/depcache.h>
15 #include <apt-pkg/dpkgpm.h>
16 #include <apt-pkg/debsystem.h>
17 #include <apt-pkg/error.h>
18 #include <apt-pkg/fileutl.h>
19 #include <apt-pkg/install-progress.h>
20 #include <apt-pkg/packagemanager.h>
21 #include <apt-pkg/strutl.h>
22 #include <apt-pkg/statechanges.h>
23 #include <apt-pkg/cacheiterators.h>
24 #include <apt-pkg/macros.h>
25 #include <apt-pkg/pkgcache.h>
26 #include <apt-pkg/version.h>
27
28 #include <errno.h>
29 #include <fcntl.h>
30 #include <grp.h>
31 #include <pwd.h>
32 #include <signal.h>
33 #include <stddef.h>
34 #include <stdio.h>
35 #include <stdlib.h>
36 #include <sys/ioctl.h>
37 #include <sys/select.h>
38 #include <sys/stat.h>
39 #include <sys/time.h>
40 #include <sys/wait.h>
41 #include <sys/types.h>
42 #include <dirent.h>
43 #include <termios.h>
44 #include <time.h>
45 #include <unistd.h>
46
47 #include <algorithm>
48 #include <array>
49 #include <cstring>
50 #include <iostream>
51 #include <map>
52 #include <set>
53 #include <string>
54 #include <type_traits>
55 #include <utility>
56 #include <unordered_set>
57 #include <vector>
58 #include <sstream>
59 #include <numeric>
60
61 #include <apti18n.h>
62 /*}}}*/
63
64 extern char **environ;
65
66 using namespace std;
67
68 APT_PURE static string AptHistoryRequestingUser() /*{{{*/
69 {
70 const char* EnvKeys[]{"SUDO_UID", "PKEXEC_UID", "PACKAGEKIT_CALLER_UID"};
71
72 for (const auto &Key: EnvKeys)
73 {
74 if (getenv(Key) != nullptr)
75 {
76 int uid = atoi(getenv(Key));
77 if (uid > 0) {
78 struct passwd pwd;
79 struct passwd *result;
80 char buf[255];
81 if (getpwuid_r(uid, &pwd, buf, sizeof(buf), &result) == 0 && result != NULL) {
82 std::string res;
83 strprintf(res, "%s (%d)", pwd.pw_name, uid);
84 return res;
85 }
86 }
87 }
88 }
89 return "";
90 }
91 /*}}}*/
92 APT_PURE static unsigned int EnvironmentSize() /*{{{*/
93 {
94 unsigned int size = 0;
95 char **envp = environ;
96
97 while (*envp != NULL)
98 size += strlen (*envp++) + 1;
99
100 return size;
101 }
102 /*}}}*/
103 class pkgDPkgPMPrivate /*{{{*/
104 {
105 public:
106 pkgDPkgPMPrivate() : stdin_is_dev_null(false), dpkgbuf_pos(0),
107 term_out(NULL), history_out(NULL),
108 progress(NULL), tt_is_valid(false), master(-1),
109 slave(NULL), protect_slave_from_dying(-1),
110 direct_stdin(false)
111 {
112 dpkgbuf[0] = '\0';
113 }
114 ~pkgDPkgPMPrivate()
115 {
116 }
117 bool stdin_is_dev_null;
118 // the buffer we use for the dpkg status-fd reading
119 char dpkgbuf[1024];
120 size_t dpkgbuf_pos;
121 FILE *term_out;
122 FILE *history_out;
123 string dpkg_error;
124 APT::Progress::PackageManager *progress;
125
126 // pty stuff
127 struct termios tt;
128 bool tt_is_valid;
129 int master;
130 char * slave;
131 int protect_slave_from_dying;
132
133 // signals
134 sigset_t sigmask;
135 sigset_t original_sigmask;
136
137 bool direct_stdin;
138 };
139 /*}}}*/
140 namespace
141 {
142 // Maps the dpkg "processing" info to human readable names. Entry 0
143 // of each array is the key, entry 1 is the value.
144 const std::pair<const char *, const char *> PackageProcessingOps[] = {
145 std::make_pair("install", N_("Installing %s")),
146 // we don't care for the difference
147 std::make_pair("upgrade", N_("Installing %s")),
148 std::make_pair("configure", N_("Configuring %s")),
149 std::make_pair("remove", N_("Removing %s")),
150 std::make_pair("purge", N_("Completely removing %s")),
151 std::make_pair("disappear", N_("Noting disappearance of %s")),
152 std::make_pair("trigproc", N_("Running post-installation trigger %s"))
153 };
154
155 const std::pair<const char *, const char *> * const PackageProcessingOpsBegin = PackageProcessingOps;
156 const std::pair<const char *, const char *> * const PackageProcessingOpsEnd = PackageProcessingOps + sizeof(PackageProcessingOps) / sizeof(PackageProcessingOps[0]);
157
158 // Predicate to test whether an entry in the PackageProcessingOps
159 // array matches a string.
160 class MatchProcessingOp
161 {
162 const char *target;
163
164 public:
165 explicit MatchProcessingOp(const char *the_target)
166 : target(the_target)
167 {
168 }
169
170 bool operator()(const std::pair<const char *, const char *> &pair) const
171 {
172 return strcmp(pair.first, target) == 0;
173 }
174 };
175 }
176
177 // ionice - helper function to ionice the given PID /*{{{*/
178 /* there is no C header for ionice yet - just the syscall interface
179 so we use the binary from util-linux */
180 static bool ionice(int PID)
181 {
182 if (!FileExists("/usr/bin/ionice"))
183 return false;
184 pid_t Process = ExecFork();
185 if (Process == 0)
186 {
187 char buf[32];
188 snprintf(buf, sizeof(buf), "-p%d", PID);
189 const char *Args[4];
190 Args[0] = "/usr/bin/ionice";
191 Args[1] = "-c3";
192 Args[2] = buf;
193 Args[3] = 0;
194 execv(Args[0], (char **)Args);
195 }
196 return ExecWait(Process, "ionice");
197 }
198 /*}}}*/
199 // FindNowVersion - Helper to find a Version in "now" state /*{{{*/
200 // ---------------------------------------------------------------------
201 /* This is helpful when a package is no longer installed but has residual
202 * config files
203 */
204 static
205 pkgCache::VerIterator FindNowVersion(const pkgCache::PkgIterator &Pkg)
206 {
207 pkgCache::VerIterator Ver;
208 for (Ver = Pkg.VersionList(); Ver.end() == false; ++Ver)
209 for (pkgCache::VerFileIterator Vf = Ver.FileList(); Vf.end() == false; ++Vf)
210 for (pkgCache::PkgFileIterator F = Vf.File(); F.end() == false; ++F)
211 {
212 if (F.Archive() != 0 && strcmp(F.Archive(), "now") == 0)
213 return Ver;
214 }
215 return Ver;
216 }
217 /*}}}*/
218 static pkgCache::VerIterator FindToBeRemovedVersion(pkgCache::PkgIterator const &Pkg)/*{{{*/
219 {
220 auto const PV = Pkg.CurrentVer();
221 if (PV.end() == false)
222 return PV;
223 return FindNowVersion(Pkg);
224 }
225 /*}}}*/
226
227 // DPkgPM::pkgDPkgPM - Constructor /*{{{*/
228 // ---------------------------------------------------------------------
229 /* */
230 pkgDPkgPM::pkgDPkgPM(pkgDepCache *Cache)
231 : pkgPackageManager(Cache),d(new pkgDPkgPMPrivate()), pkgFailures(0), PackagesDone(0), PackagesTotal(0)
232 {
233 }
234 /*}}}*/
235 // DPkgPM::pkgDPkgPM - Destructor /*{{{*/
236 // ---------------------------------------------------------------------
237 /* */
238 pkgDPkgPM::~pkgDPkgPM()
239 {
240 delete d;
241 }
242 /*}}}*/
243 // DPkgPM::Install - Install a package /*{{{*/
244 // ---------------------------------------------------------------------
245 /* Add an install operation to the sequence list */
246 bool pkgDPkgPM::Install(PkgIterator Pkg,string File)
247 {
248 if (File.empty() == true || Pkg.end() == true)
249 return _error->Error("Internal Error, No file name for %s",Pkg.FullName().c_str());
250
251 // If the filename string begins with DPkg::Chroot-Directory, return the
252 // substr that is within the chroot so dpkg can access it.
253 string const chrootdir = _config->FindDir("DPkg::Chroot-Directory","/");
254 if (chrootdir != "/" && File.find(chrootdir) == 0)
255 {
256 size_t len = chrootdir.length();
257 if (chrootdir.at(len - 1) == '/')
258 len--;
259 List.push_back(Item(Item::Install,Pkg,File.substr(len)));
260 }
261 else
262 List.push_back(Item(Item::Install,Pkg,File));
263
264 return true;
265 }
266 /*}}}*/
267 // DPkgPM::Configure - Configure a package /*{{{*/
268 // ---------------------------------------------------------------------
269 /* Add a configure operation to the sequence list */
270 bool pkgDPkgPM::Configure(PkgIterator Pkg)
271 {
272 if (Pkg.end() == true)
273 return false;
274
275 List.push_back(Item(Item::Configure, Pkg));
276
277 // Use triggers for config calls if we configure "smart"
278 // as otherwise Pre-Depends will not be satisfied, see #526774
279 if (_config->FindB("DPkg::TriggersPending", false) == true)
280 List.push_back(Item(Item::TriggersPending, PkgIterator()));
281
282 return true;
283 }
284 /*}}}*/
285 // DPkgPM::Remove - Remove a package /*{{{*/
286 // ---------------------------------------------------------------------
287 /* Add a remove operation to the sequence list */
288 bool pkgDPkgPM::Remove(PkgIterator Pkg,bool Purge)
289 {
290 if (Pkg.end() == true)
291 return false;
292
293 if (Purge == true)
294 List.push_back(Item(Item::Purge,Pkg));
295 else
296 List.push_back(Item(Item::Remove,Pkg));
297 return true;
298 }
299 /*}}}*/
300 // DPkgPM::SendPkgInfo - Send info for install-pkgs hook /*{{{*/
301 // ---------------------------------------------------------------------
302 /* This is part of the helper script communication interface, it sends
303 very complete information down to the other end of the pipe.*/
304 bool pkgDPkgPM::SendV2Pkgs(FILE *F)
305 {
306 return SendPkgsInfo(F, 2);
307 }
308 bool pkgDPkgPM::SendPkgsInfo(FILE * const F, unsigned int const &Version)
309 {
310 // This version of APT supports only v3, so don't sent higher versions
311 if (Version <= 3)
312 fprintf(F,"VERSION %u\n", Version);
313 else
314 fprintf(F,"VERSION 3\n");
315
316 /* Write out all of the configuration directives by walking the
317 configuration tree */
318 const Configuration::Item *Top = _config->Tree(0);
319 for (; Top != 0;)
320 {
321 if (Top->Value.empty() == false)
322 {
323 fprintf(F,"%s=%s\n",
324 QuoteString(Top->FullTag(),"=\"\n").c_str(),
325 QuoteString(Top->Value,"\n").c_str());
326 }
327
328 if (Top->Child != 0)
329 {
330 Top = Top->Child;
331 continue;
332 }
333
334 while (Top != 0 && Top->Next == 0)
335 Top = Top->Parent;
336 if (Top != 0)
337 Top = Top->Next;
338 }
339 fprintf(F,"\n");
340
341 // Write out the package actions in order.
342 for (vector<Item>::iterator I = List.begin(); I != List.end(); ++I)
343 {
344 if(I->Pkg.end() == true)
345 continue;
346
347 pkgDepCache::StateCache &S = Cache[I->Pkg];
348
349 fprintf(F,"%s ",I->Pkg.Name());
350
351 // Current version which we are going to replace
352 pkgCache::VerIterator CurVer = I->Pkg.CurrentVer();
353 if (CurVer.end() == true && (I->Op == Item::Remove || I->Op == Item::Purge))
354 CurVer = FindNowVersion(I->Pkg);
355
356 if (CurVer.end() == true)
357 {
358 if (Version <= 2)
359 fprintf(F, "- ");
360 else
361 fprintf(F, "- - none ");
362 }
363 else
364 {
365 fprintf(F, "%s ", CurVer.VerStr());
366 if (Version >= 3)
367 fprintf(F, "%s %s ", CurVer.Arch(), CurVer.MultiArchType());
368 }
369
370 // Show the compare operator between current and install version
371 if (S.InstallVer != 0)
372 {
373 pkgCache::VerIterator const InstVer = S.InstVerIter(Cache);
374 int Comp = 2;
375 if (CurVer.end() == false)
376 Comp = InstVer.CompareVer(CurVer);
377 if (Comp < 0)
378 fprintf(F,"> ");
379 else if (Comp == 0)
380 fprintf(F,"= ");
381 else if (Comp > 0)
382 fprintf(F,"< ");
383 fprintf(F, "%s ", InstVer.VerStr());
384 if (Version >= 3)
385 fprintf(F, "%s %s ", InstVer.Arch(), InstVer.MultiArchType());
386 }
387 else
388 {
389 if (Version <= 2)
390 fprintf(F, "> - ");
391 else
392 fprintf(F, "> - - none ");
393 }
394
395 // Show the filename/operation
396 if (I->Op == Item::Install)
397 {
398 // No errors here..
399 if (I->File[0] != '/')
400 fprintf(F,"**ERROR**\n");
401 else
402 fprintf(F,"%s\n",I->File.c_str());
403 }
404 else if (I->Op == Item::Configure)
405 fprintf(F,"**CONFIGURE**\n");
406 else if (I->Op == Item::Remove ||
407 I->Op == Item::Purge)
408 fprintf(F,"**REMOVE**\n");
409
410 if (ferror(F) != 0)
411 return false;
412 }
413 return true;
414 }
415 /*}}}*/
416 // DPkgPM::RunScriptsWithPkgs - Run scripts with package names on stdin /*{{{*/
417 // ---------------------------------------------------------------------
418 /* This looks for a list of scripts to run from the configuration file
419 each one is run and is fed on standard input a list of all .deb files
420 that are due to be installed. */
421 bool pkgDPkgPM::RunScriptsWithPkgs(const char *Cnf)
422 {
423 bool result = true;
424
425 Configuration::Item const *Opts = _config->Tree(Cnf);
426 if (Opts == 0 || Opts->Child == 0)
427 return true;
428 Opts = Opts->Child;
429
430 sighandler_t old_sigpipe = signal(SIGPIPE, SIG_IGN);
431 sighandler_t old_sigint = signal(SIGINT, SIG_IGN);
432 sighandler_t old_sigquit = signal(SIGQUIT, SIG_IGN);
433
434 unsigned int Count = 1;
435 for (; Opts != 0; Opts = Opts->Next, Count++)
436 {
437 if (Opts->Value.empty() == true)
438 continue;
439
440 if(_config->FindB("Debug::RunScripts", false) == true)
441 std::clog << "Running external script with list of all .deb file: '"
442 << Opts->Value << "'" << std::endl;
443
444 // Determine the protocol version
445 string OptSec = Opts->Value;
446 string::size_type Pos;
447 if ((Pos = OptSec.find(' ')) == string::npos || Pos == 0)
448 Pos = OptSec.length();
449 OptSec = "DPkg::Tools::Options::" + string(Opts->Value.c_str(),Pos);
450
451 unsigned int Version = _config->FindI(OptSec+"::Version",1);
452 unsigned int InfoFD = _config->FindI(OptSec + "::InfoFD", STDIN_FILENO);
453
454 // Create the pipes
455 std::set<int> KeepFDs;
456 MergeKeepFdsFromConfiguration(KeepFDs);
457 int Pipes[2];
458 if (pipe(Pipes) != 0) {
459 result = _error->Errno("pipe","Failed to create IPC pipe to subprocess");
460 break;
461 }
462 if (InfoFD != (unsigned)Pipes[0])
463 SetCloseExec(Pipes[0],true);
464 else
465 KeepFDs.insert(Pipes[0]);
466
467
468 SetCloseExec(Pipes[1],true);
469
470 // Purified Fork for running the script
471 pid_t Process = ExecFork(KeepFDs);
472 if (Process == 0)
473 {
474 // Setup the FDs
475 dup2(Pipes[0], InfoFD);
476 SetCloseExec(STDOUT_FILENO,false);
477 SetCloseExec(STDIN_FILENO,false);
478 SetCloseExec(STDERR_FILENO,false);
479
480 string hookfd;
481 strprintf(hookfd, "%d", InfoFD);
482 setenv("APT_HOOK_INFO_FD", hookfd.c_str(), 1);
483
484 debSystem::DpkgChrootDirectory();
485 const char *Args[4];
486 Args[0] = "/bin/sh";
487 Args[1] = "-c";
488 Args[2] = Opts->Value.c_str();
489 Args[3] = 0;
490 execv(Args[0],(char **)Args);
491 _exit(100);
492 }
493 close(Pipes[0]);
494 FILE *F = fdopen(Pipes[1],"w");
495 if (F == 0) {
496 result = _error->Errno("fdopen","Failed to open new FD");
497 break;
498 }
499
500 // Feed it the filenames.
501 if (Version <= 1)
502 {
503 for (vector<Item>::iterator I = List.begin(); I != List.end(); ++I)
504 {
505 // Only deal with packages to be installed from .deb
506 if (I->Op != Item::Install)
507 continue;
508
509 // No errors here..
510 if (I->File[0] != '/')
511 continue;
512
513 /* Feed the filename of each package that is pending install
514 into the pipe. */
515 fprintf(F,"%s\n",I->File.c_str());
516 if (ferror(F) != 0)
517 break;
518 }
519 }
520 else
521 SendPkgsInfo(F, Version);
522
523 fclose(F);
524
525 // Clean up the sub process
526 if (ExecWait(Process,Opts->Value.c_str()) == false) {
527 result = _error->Error("Failure running script %s",Opts->Value.c_str());
528 break;
529 }
530 }
531 signal(SIGINT, old_sigint);
532 signal(SIGPIPE, old_sigpipe);
533 signal(SIGQUIT, old_sigquit);
534
535 return result;
536 }
537 /*}}}*/
538 // DPkgPM::DoStdin - Read stdin and pass to master pty /*{{{*/
539 // ---------------------------------------------------------------------
540 /*
541 */
542 void pkgDPkgPM::DoStdin(int master)
543 {
544 unsigned char input_buf[256] = {0,};
545 ssize_t len = read(STDIN_FILENO, input_buf, sizeof(input_buf));
546 if (len)
547 FileFd::Write(master, input_buf, len);
548 else
549 d->stdin_is_dev_null = true;
550 }
551 /*}}}*/
552 // DPkgPM::DoTerminalPty - Read the terminal pty and write log /*{{{*/
553 // ---------------------------------------------------------------------
554 /*
555 * read the terminal pty and write log
556 */
557 void pkgDPkgPM::DoTerminalPty(int master)
558 {
559 unsigned char term_buf[1024] = {0,0, };
560
561 ssize_t len=read(master, term_buf, sizeof(term_buf));
562 if(len == -1 && errno == EIO)
563 {
564 // this happens when the child is about to exit, we
565 // give it time to actually exit, otherwise we run
566 // into a race so we sleep for half a second.
567 struct timespec sleepfor = { 0, 500000000 };
568 nanosleep(&sleepfor, NULL);
569 return;
570 }
571 if(len <= 0)
572 return;
573 FileFd::Write(1, term_buf, len);
574 if(d->term_out)
575 fwrite(term_buf, len, sizeof(char), d->term_out);
576 }
577 /*}}}*/
578 // DPkgPM::ProcessDpkgStatusBuf /*{{{*/
579 void pkgDPkgPM::ProcessDpkgStatusLine(char *line)
580 {
581 bool const Debug = _config->FindB("Debug::pkgDPkgProgressReporting",false);
582 if (Debug == true)
583 std::clog << "got from dpkg '" << line << "'" << std::endl;
584
585 /* dpkg sends strings like this:
586 'status: <pkg>: <pkg qstate>'
587 'status: <pkg>:<arch>: <pkg qstate>'
588
589 'processing: {install,upgrade,configure,remove,purge,disappear,trigproc}: pkg'
590 'processing: {install,upgrade,configure,remove,purge,disappear,trigproc}: trigger'
591 */
592
593 // we need to split on ": " (note the appended space) as the ':' is
594 // part of the pkgname:arch information that dpkg sends
595 //
596 // A dpkg error message may contain additional ":" (like
597 // "failed in buffer_write(fd) (10, ret=-1): backend dpkg-deb ..."
598 // so we need to ensure to not split too much
599 std::vector<std::string> list = StringSplit(line, ": ", 4);
600 if(list.size() < 3)
601 {
602 if (Debug == true)
603 std::clog << "ignoring line: not enough ':'" << std::endl;
604 return;
605 }
606
607 // build the (prefix, pkgname, action) tuple, position of this
608 // is different for "processing" or "status" messages
609 std::string prefix = APT::String::Strip(list[0]);
610 std::string pkgname;
611 std::string action;
612
613 // "processing" has the form "processing: action: pkg or trigger"
614 // with action = ["install", "upgrade", "configure", "remove", "purge",
615 // "disappear", "trigproc"]
616 if (prefix == "processing")
617 {
618 pkgname = APT::String::Strip(list[2]);
619 action = APT::String::Strip(list[1]);
620 }
621 // "status" has the form: "status: pkg: state"
622 // with state in ["half-installed", "unpacked", "half-configured",
623 // "installed", "config-files", "not-installed"]
624 else if (prefix == "status")
625 {
626 pkgname = APT::String::Strip(list[1]);
627 action = APT::String::Strip(list[2]);
628
629 /* handle the special cases first:
630
631 errors look like this:
632 'status: /var/cache/apt/archives/krecipes_0.8.1-0ubuntu1_i386.deb : error : trying to overwrite `/usr/share/doc/kde/HTML/en/krecipes/krectip.png', which is also in package krecipes-data
633 and conffile-prompt like this
634 'status:/etc/compiz.conf/compiz.conf : conffile-prompt: 'current-conffile' 'new-conffile' useredited distedited
635 */
636 if(action == "error")
637 {
638 d->progress->Error(pkgname, PackagesDone, PackagesTotal, list[3]);
639 ++pkgFailures;
640 WriteApportReport(pkgname.c_str(), list[3].c_str());
641 return;
642 }
643 else if(action == "conffile-prompt")
644 {
645 d->progress->ConffilePrompt(pkgname, PackagesDone, PackagesTotal, list[3]);
646 return;
647 }
648 } else {
649 if (Debug == true)
650 std::clog << "unknown prefix '" << prefix << "'" << std::endl;
651 return;
652 }
653
654 // At this point we have a pkgname, but it might not be arch-qualified !
655 if (pkgname.find(":") == std::string::npos)
656 {
657 pkgCache::GrpIterator Grp = Cache.FindGrp(pkgname);
658 /* No arch means that dpkg believes there can only be one package
659 this can refer to so lets see what could be candidates here: */
660 std::vector<pkgCache::PkgIterator> candset;
661 for (auto P = Grp.PackageList(); P.end() != true; P = Grp.NextPkg(P))
662 {
663 if (PackageOps.find(P.FullName()) != PackageOps.end())
664 candset.push_back(P);
665 // packages can disappear without them having any interaction itself
666 // so we have to consider these as candidates, too
667 else if (P->CurrentVer != 0 && action == "disappear")
668 candset.push_back(P);
669 }
670 if (unlikely(candset.empty()))
671 {
672 if (Debug == true)
673 std::clog << "unable to figure out which package is dpkg refering to with '" << pkgname << "'! (1)" << std::endl;
674 return;
675 }
676 else if (candset.size() == 1) // we are lucky
677 pkgname = candset.cbegin()->FullName();
678 else
679 {
680 /* here be dragons^Wassumptions about dpkg:
681 - an M-A:same version is always arch-qualified
682 - a package from a foreign arch is (in newer versions) */
683 size_t installedInstances = 0, wannabeInstances = 0;
684 for (auto const &P: candset)
685 {
686 if (P->CurrentVer != 0)
687 {
688 ++installedInstances;
689 if (Cache[P].Delete() == false)
690 ++wannabeInstances;
691 }
692 else if (Cache[P].Install())
693 ++wannabeInstances;
694 }
695 // the package becomes M-A:same, so we are still talking about current
696 if (installedInstances == 1 && wannabeInstances >= 2)
697 {
698 for (auto const &P: candset)
699 {
700 if (P->CurrentVer == 0)
701 continue;
702 pkgname = P.FullName();
703 break;
704 }
705 }
706 // the package was M-A:same, it isn't now, so we can only talk about that
707 else if (installedInstances >= 2 && wannabeInstances == 1)
708 {
709 for (auto const &P: candset)
710 {
711 auto const IV = Cache[P].InstVerIter(Cache);
712 if (IV.end())
713 continue;
714 pkgname = P.FullName();
715 break;
716 }
717 }
718 // that is a crossgrade
719 else if (installedInstances == 1 && wannabeInstances == 1 && candset.size() == 2)
720 {
721 auto const PkgHasCurrentVersion = [](pkgCache::PkgIterator const &P) { return P->CurrentVer != 0; };
722 auto const P = std::find_if(candset.begin(), candset.end(), PkgHasCurrentVersion);
723 if (unlikely(P == candset.end()))
724 {
725 if (Debug == true)
726 std::clog << "situation for '" << pkgname << "' looked like a crossgrade, but no current version?!" << std::endl;
727 return;
728 }
729 auto fullname = P->FullName();
730 if (PackageOps[fullname].size() != PackageOpsDone[fullname])
731 pkgname = std::move(fullname);
732 else
733 pkgname = std::find_if_not(candset.begin(), candset.end(), PkgHasCurrentVersion)->FullName();
734 }
735 // we are desperate: so "just" take the native one, but that might change mid-air,
736 // so we have to ask dpkg what it believes native is at the moment… all the time
737 else
738 {
739 std::vector<std::string> sArgs = debSystem::GetDpkgBaseCommand();
740 sArgs.push_back("--print-architecture");
741 int outputFd = -1;
742 pid_t const dpkgNativeArch = debSystem::ExecDpkg(sArgs, nullptr, &outputFd, true);
743 if (unlikely(dpkgNativeArch == -1))
744 {
745 if (Debug == true)
746 std::clog << "calling dpkg failed to ask it for its current native architecture to expand '" << pkgname << "'!" << std::endl;
747 return;
748 }
749 FILE *dpkg = fdopen(outputFd, "r");
750 if(dpkg != NULL)
751 {
752 char* buf = NULL;
753 size_t bufsize = 0;
754 if (getline(&buf, &bufsize, dpkg) != -1)
755 pkgname += ':' + bufsize;
756 free(buf);
757 fclose(dpkg);
758 }
759 ExecWait(dpkgNativeArch, "dpkg --print-architecture", true);
760 if (pkgname.find(':') != std::string::npos)
761 {
762 if (Debug == true)
763 std::clog << "unable to figure out which package is dpkg refering to with '" << pkgname << "'! (2)" << std::endl;
764 return;
765 }
766 }
767 }
768 }
769
770 std::string arch = "";
771 if (pkgname.find(":") != string::npos)
772 arch = StringSplit(pkgname, ":")[1];
773 std::string i18n_pkgname = pkgname;
774 if (arch.size() != 0)
775 strprintf(i18n_pkgname, "%s (%s)", StringSplit(pkgname, ":")[0].c_str(), arch.c_str());
776
777 // 'processing' from dpkg looks like
778 // 'processing: action: pkg'
779 if(prefix == "processing")
780 {
781 auto const iter = std::find_if(PackageProcessingOpsBegin, PackageProcessingOpsEnd, MatchProcessingOp(action.c_str()));
782 if(iter == PackageProcessingOpsEnd)
783 {
784 if (Debug == true)
785 std::clog << "ignoring unknown action: " << action << std::endl;
786 return;
787 }
788 std::string msg;
789 strprintf(msg, _(iter->second), i18n_pkgname.c_str());
790 d->progress->StatusChanged(pkgname, PackagesDone, PackagesTotal, msg);
791
792 // FIXME: this needs a muliarch testcase
793 // FIXME2: is "pkgname" here reliable with dpkg only sending us
794 // short pkgnames?
795 if (action == "disappear")
796 handleDisappearAction(pkgname);
797 else if (action == "upgrade")
798 handleCrossUpgradeAction(pkgname);
799 return;
800 }
801
802 if (prefix == "status")
803 {
804 std::vector<struct DpkgState> &states = PackageOps[pkgname];
805 if(PackageOpsDone[pkgname] < states.size())
806 {
807 char const * next_action = states[PackageOpsDone[pkgname]].state;
808 if (next_action)
809 {
810 /*
811 if (action == "half-installed" && strcmp("half-configured", next_action) == 0 &&
812 PackageOpsDone[pkg] + 2 < states.size() && action == states[PackageOpsDone[pkg] + 2].state)
813 {
814 if (Debug == true)
815 std::clog << "(parsed from dpkg) pkg: " << short_pkgname << " action: " << action
816 << " pending trigger defused by unpack" << std::endl;
817 // unpacking a package defuses the pending trigger
818 PackageOpsDone[pkg] += 2;
819 PackagesDone += 2;
820 next_action = states[PackageOpsDone[pkg]].state;
821 }
822 */
823 if (Debug == true)
824 std::clog << "(parsed from dpkg) pkg: " << pkgname
825 << " action: " << action << " (expected: '" << next_action << "' "
826 << PackageOpsDone[pkgname] << " of " << states.size() << ")" << endl;
827
828 // check if the package moved to the next dpkg state
829 if(action == next_action)
830 {
831 // only read the translation if there is actually a next action
832 char const * const translation = _(states[PackageOpsDone[pkgname]].str);
833
834 // we moved from one dpkg state to a new one, report that
835 ++PackageOpsDone[pkgname];
836 ++PackagesDone;
837
838 std::string msg;
839 strprintf(msg, translation, i18n_pkgname.c_str());
840 d->progress->StatusChanged(pkgname, PackagesDone, PackagesTotal, msg);
841 }
842 }
843 }
844 else if (action == "triggers-pending")
845 {
846 if (Debug == true)
847 std::clog << "(parsed from dpkg) pkg: " << pkgname
848 << " action: " << action << " (prefix 2 to "
849 << PackageOpsDone[pkgname] << " of " << states.size() << ")" << endl;
850
851 states.insert(states.begin(), {"installed", N_("Installed %s")});
852 states.insert(states.begin(), {"half-configured", N_("Configuring %s")});
853 PackagesTotal += 2;
854 }
855 }
856 }
857 /*}}}*/
858 // DPkgPM::handleDisappearAction /*{{{*/
859 void pkgDPkgPM::handleDisappearAction(string const &pkgname)
860 {
861 pkgCache::PkgIterator Pkg = Cache.FindPkg(pkgname);
862 if (unlikely(Pkg.end() == true))
863 return;
864
865 // a disappeared package has no further actions
866 auto const ROps = PackageOps[Pkg.FullName()].size();
867 auto && ROpsDone = PackageOpsDone[Pkg.FullName()];
868 PackagesDone += ROps - ROpsDone;
869 ROpsDone = ROps;
870
871 // record the package name for display and stuff later
872 disappearedPkgs.insert(Pkg.FullName(true));
873
874 // the disappeared package was auto-installed - nothing to do
875 if ((Cache[Pkg].Flags & pkgCache::Flag::Auto) == pkgCache::Flag::Auto)
876 return;
877 pkgCache::VerIterator PkgVer = Cache[Pkg].InstVerIter(Cache);
878 if (unlikely(PkgVer.end() == true))
879 return;
880 /* search in the list of dependencies for (Pre)Depends,
881 check if this dependency has a Replaces on our package
882 and if so transfer the manual installed flag to it */
883 for (pkgCache::DepIterator Dep = PkgVer.DependsList(); Dep.end() != true; ++Dep)
884 {
885 if (Dep->Type != pkgCache::Dep::Depends &&
886 Dep->Type != pkgCache::Dep::PreDepends)
887 continue;
888 pkgCache::PkgIterator Tar = Dep.TargetPkg();
889 if (unlikely(Tar.end() == true))
890 continue;
891 // the package is already marked as manual
892 if ((Cache[Tar].Flags & pkgCache::Flag::Auto) != pkgCache::Flag::Auto)
893 continue;
894 pkgCache::VerIterator TarVer = Cache[Tar].InstVerIter(Cache);
895 if (TarVer.end() == true)
896 continue;
897 for (pkgCache::DepIterator Rep = TarVer.DependsList(); Rep.end() != true; ++Rep)
898 {
899 if (Rep->Type != pkgCache::Dep::Replaces)
900 continue;
901 if (Pkg != Rep.TargetPkg())
902 continue;
903 // okay, they are strongly connected - transfer manual-bit
904 if (Debug == true)
905 std::clog << "transfer manual-bit from disappeared »" << pkgname << "« to »" << Tar.FullName() << "«" << std::endl;
906 Cache[Tar].Flags &= ~Flag::Auto;
907 break;
908 }
909 }
910 }
911 /*}}}*/
912 void pkgDPkgPM::handleCrossUpgradeAction(string const &pkgname) /*{{{*/
913 {
914 // in a crossgrade what looked like a remove first is really an unpack over it
915 auto const Pkg = Cache.FindPkg(pkgname);
916 if (likely(Pkg.end() == false) && Cache[Pkg].Delete())
917 {
918 auto const Grp = Pkg.Group();
919 if (likely(Grp.end() == false))
920 {
921 for (auto P = Grp.PackageList(); P.end() != true; P = Grp.NextPkg(P))
922 if(Cache[P].Install())
923 {
924 auto && Ops = PackageOps[P.FullName()];
925 auto const unpackOp = std::find_if(Ops.cbegin(), Ops.cend(), [](DpkgState const &s) { return strcmp(s.state, "unpacked") == 0; });
926 if (unpackOp != Ops.cend())
927 {
928 // skip ahead in the crossgraded packages
929 auto const skipped = std::distance(Ops.cbegin(), unpackOp);
930 PackagesDone += skipped;
931 PackageOpsDone[P.FullName()] += skipped;
932 // finish the crossremoved package
933 auto const ROps = PackageOps[Pkg.FullName()].size();
934 auto && ROpsDone = PackageOpsDone[Pkg.FullName()];
935 PackagesDone += ROps - ROpsDone;
936 ROpsDone = ROps;
937 break;
938 }
939 }
940 }
941 }
942 }
943 /*}}}*/
944 // DPkgPM::DoDpkgStatusFd /*{{{*/
945 void pkgDPkgPM::DoDpkgStatusFd(int statusfd)
946 {
947 ssize_t const len = read(statusfd, &d->dpkgbuf[d->dpkgbuf_pos],
948 (sizeof(d->dpkgbuf)/sizeof(d->dpkgbuf[0])) - d->dpkgbuf_pos);
949 if(len <= 0)
950 return;
951 d->dpkgbuf_pos += (len / sizeof(d->dpkgbuf[0]));
952
953 // process line by line from the buffer
954 char *p = d->dpkgbuf, *q = nullptr;
955 while((q=(char*)memchr(p, '\n', (d->dpkgbuf + d->dpkgbuf_pos) - p)) != nullptr)
956 {
957 *q = '\0';
958 ProcessDpkgStatusLine(p);
959 p = q + 1; // continue with next line
960 }
961
962 // check if we stripped the buffer clean
963 if (p > (d->dpkgbuf + d->dpkgbuf_pos))
964 {
965 d->dpkgbuf_pos = 0;
966 return;
967 }
968
969 // otherwise move the unprocessed tail to the start and update pos
970 memmove(d->dpkgbuf, p, (p - d->dpkgbuf));
971 d->dpkgbuf_pos = (d->dpkgbuf + d->dpkgbuf_pos) - p;
972 }
973 /*}}}*/
974 // DPkgPM::WriteHistoryTag /*{{{*/
975 void pkgDPkgPM::WriteHistoryTag(string const &tag, string value)
976 {
977 size_t const length = value.length();
978 if (length == 0)
979 return;
980 // poor mans rstrip(", ")
981 if (value[length-2] == ',' && value[length-1] == ' ')
982 value.erase(length - 2, 2);
983 fprintf(d->history_out, "%s: %s\n", tag.c_str(), value.c_str());
984 } /*}}}*/
985 // DPkgPM::OpenLog /*{{{*/
986 bool pkgDPkgPM::OpenLog()
987 {
988 string const logdir = _config->FindDir("Dir::Log");
989 if(CreateAPTDirectoryIfNeeded(logdir, logdir) == false)
990 // FIXME: use a better string after freeze
991 return _error->Error(_("Directory '%s' missing"), logdir.c_str());
992
993 // get current time
994 char timestr[200];
995 time_t const t = time(NULL);
996 struct tm tm_buf;
997 struct tm const * const tmp = localtime_r(&t, &tm_buf);
998 strftime(timestr, sizeof(timestr), "%F %T", tmp);
999
1000 // open terminal log
1001 string const logfile_name = flCombine(logdir,
1002 _config->Find("Dir::Log::Terminal"));
1003 if (!logfile_name.empty())
1004 {
1005 d->term_out = fopen(logfile_name.c_str(),"a");
1006 if (d->term_out == NULL)
1007 return _error->WarningE("OpenLog", _("Could not open file '%s'"), logfile_name.c_str());
1008 setvbuf(d->term_out, NULL, _IONBF, 0);
1009 SetCloseExec(fileno(d->term_out), true);
1010 if (getuid() == 0) // if we aren't root, we can't chown a file, so don't try it
1011 {
1012 struct passwd *pw = getpwnam("root");
1013 struct group *gr = getgrnam("adm");
1014 if (pw != NULL && gr != NULL && chown(logfile_name.c_str(), pw->pw_uid, gr->gr_gid) != 0)
1015 _error->WarningE("OpenLog", "chown to root:adm of file %s failed", logfile_name.c_str());
1016 }
1017 if (chmod(logfile_name.c_str(), 0640) != 0)
1018 _error->WarningE("OpenLog", "chmod 0640 of file %s failed", logfile_name.c_str());
1019 fprintf(d->term_out, "\nLog started: %s\n", timestr);
1020 }
1021
1022 // write your history
1023 string const history_name = flCombine(logdir,
1024 _config->Find("Dir::Log::History"));
1025 if (!history_name.empty())
1026 {
1027 d->history_out = fopen(history_name.c_str(),"a");
1028 if (d->history_out == NULL)
1029 return _error->WarningE("OpenLog", _("Could not open file '%s'"), history_name.c_str());
1030 SetCloseExec(fileno(d->history_out), true);
1031 chmod(history_name.c_str(), 0644);
1032 fprintf(d->history_out, "\nStart-Date: %s\n", timestr);
1033 string remove, purge, install, reinstall, upgrade, downgrade;
1034 for (pkgCache::PkgIterator I = Cache.PkgBegin(); I.end() == false; ++I)
1035 {
1036 enum { CANDIDATE, CANDIDATE_AUTO, CURRENT_CANDIDATE, CURRENT } infostring;
1037 string *line = NULL;
1038 #define HISTORYINFO(X, Y) { line = &X; infostring = Y; }
1039 if (Cache[I].NewInstall() == true)
1040 HISTORYINFO(install, CANDIDATE_AUTO)
1041 else if (Cache[I].ReInstall() == true)
1042 HISTORYINFO(reinstall, CANDIDATE)
1043 else if (Cache[I].Upgrade() == true)
1044 HISTORYINFO(upgrade, CURRENT_CANDIDATE)
1045 else if (Cache[I].Downgrade() == true)
1046 HISTORYINFO(downgrade, CURRENT_CANDIDATE)
1047 else if (Cache[I].Delete() == true)
1048 HISTORYINFO((Cache[I].Purge() ? purge : remove), CURRENT)
1049 else
1050 continue;
1051 #undef HISTORYINFO
1052 line->append(I.FullName(false)).append(" (");
1053 switch (infostring) {
1054 case CANDIDATE: line->append(Cache[I].CandVersion); break;
1055 case CANDIDATE_AUTO:
1056 line->append(Cache[I].CandVersion);
1057 if ((Cache[I].Flags & pkgCache::Flag::Auto) == pkgCache::Flag::Auto)
1058 line->append(", automatic");
1059 break;
1060 case CURRENT_CANDIDATE: line->append(Cache[I].CurVersion).append(", ").append(Cache[I].CandVersion); break;
1061 case CURRENT: line->append(Cache[I].CurVersion); break;
1062 }
1063 line->append("), ");
1064 }
1065 if (_config->Exists("Commandline::AsString") == true)
1066 WriteHistoryTag("Commandline", _config->Find("Commandline::AsString"));
1067 std::string RequestingUser = AptHistoryRequestingUser();
1068 if (RequestingUser != "")
1069 WriteHistoryTag("Requested-By", RequestingUser);
1070 WriteHistoryTag("Install", install);
1071 WriteHistoryTag("Reinstall", reinstall);
1072 WriteHistoryTag("Upgrade", upgrade);
1073 WriteHistoryTag("Downgrade",downgrade);
1074 WriteHistoryTag("Remove",remove);
1075 WriteHistoryTag("Purge",purge);
1076 fflush(d->history_out);
1077 }
1078
1079 return true;
1080 }
1081 /*}}}*/
1082 // DPkg::CloseLog /*{{{*/
1083 bool pkgDPkgPM::CloseLog()
1084 {
1085 char timestr[200];
1086 time_t t = time(NULL);
1087 struct tm tm_buf;
1088 struct tm *tmp = localtime_r(&t, &tm_buf);
1089 strftime(timestr, sizeof(timestr), "%F %T", tmp);
1090
1091 if(d->term_out)
1092 {
1093 fprintf(d->term_out, "Log ended: ");
1094 fprintf(d->term_out, "%s", timestr);
1095 fprintf(d->term_out, "\n");
1096 fclose(d->term_out);
1097 }
1098 d->term_out = NULL;
1099
1100 if(d->history_out)
1101 {
1102 if (disappearedPkgs.empty() == false)
1103 {
1104 string disappear;
1105 for (std::set<std::string>::const_iterator d = disappearedPkgs.begin();
1106 d != disappearedPkgs.end(); ++d)
1107 {
1108 pkgCache::PkgIterator P = Cache.FindPkg(*d);
1109 disappear.append(*d);
1110 if (P.end() == true)
1111 disappear.append(", ");
1112 else
1113 disappear.append(" (").append(Cache[P].CurVersion).append("), ");
1114 }
1115 WriteHistoryTag("Disappeared", disappear);
1116 }
1117 if (d->dpkg_error.empty() == false)
1118 fprintf(d->history_out, "Error: %s\n", d->dpkg_error.c_str());
1119 fprintf(d->history_out, "End-Date: %s\n", timestr);
1120 fclose(d->history_out);
1121 }
1122 d->history_out = NULL;
1123
1124 return true;
1125 }
1126 /*}}}*/
1127
1128 // DPkgPM::BuildPackagesProgressMap /*{{{*/
1129 void pkgDPkgPM::BuildPackagesProgressMap()
1130 {
1131 // map the dpkg states to the operations that are performed
1132 // (this is sorted in the same way as Item::Ops)
1133 static const std::array<std::array<DpkgState, 3>, 4> DpkgStatesOpMap = {{
1134 // Install operation
1135 {{
1136 {"half-installed", N_("Preparing %s")},
1137 {"unpacked", N_("Unpacking %s") },
1138 {nullptr, nullptr}
1139 }},
1140 // Configure operation
1141 {{
1142 {"unpacked",N_("Preparing to configure %s") },
1143 {"half-configured", N_("Configuring %s") },
1144 { "installed", N_("Installed %s")},
1145 }},
1146 // Remove operation
1147 {{
1148 {"half-configured", N_("Preparing for removal of %s")},
1149 {"half-installed", N_("Removing %s")},
1150 {"config-files", N_("Removed %s")},
1151 }},
1152 // Purge operation
1153 {{
1154 {"config-files", N_("Preparing to completely remove %s")},
1155 {"not-installed", N_("Completely removed %s")},
1156 {nullptr, nullptr}
1157 }},
1158 }};
1159 static_assert(Item::Purge == 3, "Enum item has unexpected index for mapping array");
1160
1161 // init the PackageOps map, go over the list of packages that
1162 // that will be [installed|configured|removed|purged] and add
1163 // them to the PackageOps map (the dpkg states it goes through)
1164 // and the PackageOpsTranslations (human readable strings)
1165 for (auto &&I : List)
1166 {
1167 if(I.Pkg.end() == true)
1168 continue;
1169
1170 string const name = I.Pkg.FullName();
1171 PackageOpsDone[name] = 0;
1172 auto AddToPackageOps = std::back_inserter(PackageOps[name]);
1173 if (I.Op == Item::Purge && I.Pkg->CurrentVer != 0)
1174 {
1175 // purging a package which is installed first passes through remove states
1176 auto const DpkgOps = DpkgStatesOpMap[Item::Remove];
1177 std::copy(DpkgOps.begin(), DpkgOps.end(), AddToPackageOps);
1178 PackagesTotal += DpkgOps.size();
1179 }
1180 auto const DpkgOps = DpkgStatesOpMap[I.Op];
1181 std::copy_if(DpkgOps.begin(), DpkgOps.end(), AddToPackageOps, [&](DpkgState const &state) {
1182 if (state.state == nullptr)
1183 return false;
1184 ++PackagesTotal;
1185 return true;
1186 });
1187 }
1188 /* one extra: We don't want the progress bar to reach 100%, especially not
1189 if we call dpkg --configure --pending and process a bunch of triggers
1190 while showing 100%. Also, spindown takes a while, so never reaching 100%
1191 is way more correct than reaching 100% while still doing stuff even if
1192 doing it this way is slightly bending the rules */
1193 ++PackagesTotal;
1194 }
1195 /*}}}*/
1196 bool pkgDPkgPM::Go(int StatusFd) /*{{{*/
1197 {
1198 APT::Progress::PackageManager *progress = NULL;
1199 if (StatusFd == -1)
1200 progress = APT::Progress::PackageManagerProgressFactory();
1201 else
1202 progress = new APT::Progress::PackageManagerProgressFd(StatusFd);
1203
1204 return Go(progress);
1205 }
1206 /*}}}*/
1207 void pkgDPkgPM::StartPtyMagic() /*{{{*/
1208 {
1209 if (_config->FindB("Dpkg::Use-Pty", true) == false)
1210 {
1211 d->master = -1;
1212 if (d->slave != NULL)
1213 free(d->slave);
1214 d->slave = NULL;
1215 return;
1216 }
1217
1218 if (isatty(STDIN_FILENO) == 0)
1219 d->direct_stdin = true;
1220
1221 _error->PushToStack();
1222
1223 d->master = posix_openpt(O_RDWR | O_NOCTTY);
1224 if (d->master == -1)
1225 _error->Errno("posix_openpt", _("Can not write log (%s)"), _("Is /dev/pts mounted?"));
1226 else if (unlockpt(d->master) == -1)
1227 _error->Errno("unlockpt", "Unlocking the slave of master fd %d failed!", d->master);
1228 else
1229 {
1230 #ifdef HAVE_PTSNAME_R
1231 char slave_name[64]; // 64 is used by bionic
1232 if (ptsname_r(d->master, slave_name, sizeof(slave_name)) != 0)
1233 #else
1234 char const * const slave_name = ptsname(d->master);
1235 if (slave_name == NULL)
1236 #endif
1237 _error->Errno("ptsname", "Getting name for slave of master fd %d failed!", d->master);
1238 else
1239 {
1240 d->slave = strdup(slave_name);
1241 if (d->slave == NULL)
1242 _error->Errno("strdup", "Copying name %s for slave of master fd %d failed!", slave_name, d->master);
1243 else if (grantpt(d->master) == -1)
1244 _error->Errno("grantpt", "Granting access to slave %s based on master fd %d failed!", slave_name, d->master);
1245 else if (tcgetattr(STDIN_FILENO, &d->tt) == 0)
1246 {
1247 d->tt_is_valid = true;
1248 struct termios raw_tt;
1249 // copy window size of stdout if its a 'good' terminal
1250 if (tcgetattr(STDOUT_FILENO, &raw_tt) == 0)
1251 {
1252 struct winsize win;
1253 if (ioctl(STDOUT_FILENO, TIOCGWINSZ, &win) < 0)
1254 _error->Errno("ioctl", "Getting TIOCGWINSZ from stdout failed!");
1255 if (ioctl(d->master, TIOCSWINSZ, &win) < 0)
1256 _error->Errno("ioctl", "Setting TIOCSWINSZ for master fd %d failed!", d->master);
1257 }
1258 if (tcsetattr(d->master, TCSANOW, &d->tt) == -1)
1259 _error->Errno("tcsetattr", "Setting in Start via TCSANOW for master fd %d failed!", d->master);
1260
1261 raw_tt = d->tt;
1262 cfmakeraw(&raw_tt);
1263 raw_tt.c_lflag &= ~ECHO;
1264 raw_tt.c_lflag |= ISIG;
1265 // block SIGTTOU during tcsetattr to prevent a hang if
1266 // the process is a member of the background process group
1267 // http://www.opengroup.org/onlinepubs/000095399/functions/tcsetattr.html
1268 sigemptyset(&d->sigmask);
1269 sigaddset(&d->sigmask, SIGTTOU);
1270 sigprocmask(SIG_BLOCK,&d->sigmask, &d->original_sigmask);
1271 if (tcsetattr(STDIN_FILENO, TCSAFLUSH, &raw_tt) == -1)
1272 _error->Errno("tcsetattr", "Setting in Start via TCSAFLUSH for stdin failed!");
1273 sigprocmask(SIG_SETMASK, &d->original_sigmask, NULL);
1274
1275 }
1276 if (d->slave != NULL)
1277 {
1278 /* on linux, closing (and later reopening) all references to the slave
1279 makes the slave a death end, so we open it here to have one open all
1280 the time. We could use this fd in SetupSlavePtyMagic() for linux, but
1281 on kfreebsd we get an incorrect ("step like") output then while it has
1282 no problem with closing all references… so to avoid platform specific
1283 code here we combine both and be happy once more */
1284 d->protect_slave_from_dying = open(d->slave, O_RDWR | O_CLOEXEC | O_NOCTTY);
1285 }
1286 }
1287 }
1288
1289 if (_error->PendingError() == true)
1290 {
1291 if (d->master != -1)
1292 {
1293 close(d->master);
1294 d->master = -1;
1295 }
1296 if (d->slave != NULL)
1297 {
1298 free(d->slave);
1299 d->slave = NULL;
1300 }
1301 _error->DumpErrors(std::cerr, GlobalError::DEBUG, false);
1302 }
1303 _error->RevertToStack();
1304 }
1305 /*}}}*/
1306 void pkgDPkgPM::SetupSlavePtyMagic() /*{{{*/
1307 {
1308 if(d->master == -1 || d->slave == NULL)
1309 return;
1310
1311 if (close(d->master) == -1)
1312 _error->FatalE("close", "Closing master %d in child failed!", d->master);
1313 d->master = -1;
1314 if (setsid() == -1)
1315 _error->FatalE("setsid", "Starting a new session for child failed!");
1316
1317 int const slaveFd = open(d->slave, O_RDWR | O_NOCTTY);
1318 if (slaveFd == -1)
1319 _error->FatalE("open", _("Can not write log (%s)"), _("Is /dev/pts mounted?"));
1320 else if (ioctl(slaveFd, TIOCSCTTY, 0) < 0)
1321 _error->FatalE("ioctl", "Setting TIOCSCTTY for slave fd %d failed!", slaveFd);
1322 else
1323 {
1324 unsigned short i = 0;
1325 if (d->direct_stdin == true)
1326 ++i;
1327 for (; i < 3; ++i)
1328 if (dup2(slaveFd, i) == -1)
1329 _error->FatalE("dup2", "Dupping %d to %d in child failed!", slaveFd, i);
1330
1331 if (d->tt_is_valid == true && tcsetattr(STDIN_FILENO, TCSANOW, &d->tt) < 0)
1332 _error->FatalE("tcsetattr", "Setting in Setup via TCSANOW for slave fd %d failed!", slaveFd);
1333 }
1334
1335 if (slaveFd != -1)
1336 close(slaveFd);
1337 }
1338 /*}}}*/
1339 void pkgDPkgPM::StopPtyMagic() /*{{{*/
1340 {
1341 if (d->slave != NULL)
1342 free(d->slave);
1343 d->slave = NULL;
1344 if (d->protect_slave_from_dying != -1)
1345 {
1346 close(d->protect_slave_from_dying);
1347 d->protect_slave_from_dying = -1;
1348 }
1349 if(d->master >= 0)
1350 {
1351 if (d->tt_is_valid == true && tcsetattr(STDIN_FILENO, TCSAFLUSH, &d->tt) == -1)
1352 _error->FatalE("tcsetattr", "Setting in Stop via TCSAFLUSH for stdin failed!");
1353 close(d->master);
1354 d->master = -1;
1355 }
1356 }
1357 /*}}}*/
1358 static void cleanUpTmpDir(char * const tmpdir) /*{{{*/
1359 {
1360 if (tmpdir == nullptr)
1361 return;
1362 DIR * const D = opendir(tmpdir);
1363 if (D == nullptr)
1364 _error->Errno("opendir", _("Unable to read %s"), tmpdir);
1365 else
1366 {
1367 auto const dfd = dirfd(D);
1368 for (struct dirent *Ent = readdir(D); Ent != nullptr; Ent = readdir(D))
1369 {
1370 if (Ent->d_name[0] == '.')
1371 continue;
1372 #ifdef _DIRENT_HAVE_D_TYPE
1373 if (unlikely(Ent->d_type != DT_LNK && Ent->d_type != DT_UNKNOWN))
1374 continue;
1375 #endif
1376 if (unlikely(unlinkat(dfd, Ent->d_name, 0) != 0))
1377 break;
1378 }
1379 closedir(D);
1380 rmdir(tmpdir);
1381 }
1382 free(tmpdir);
1383 }
1384 /*}}}*/
1385
1386 // DPkgPM::Go - Run the sequence /*{{{*/
1387 // ---------------------------------------------------------------------
1388 /* This globs the operations and calls dpkg
1389 *
1390 * If it is called with a progress object apt will report the install
1391 * progress to this object. It maps the dpkg states a package goes
1392 * through to human readable (and i10n-able)
1393 * names and calculates a percentage for each step.
1394 */
1395 static bool ItemIsEssential(pkgDPkgPM::Item const &I)
1396 {
1397 static auto const cachegen = _config->Find("pkgCacheGen::Essential");
1398 if (cachegen == "none" || cachegen == "native")
1399 return true;
1400 if (unlikely(I.Pkg.end()))
1401 return true;
1402 return (I.Pkg->Flags & pkgCache::Flag::Essential) != 0;
1403 }
1404 bool pkgDPkgPM::ExpandPendingCalls(std::vector<Item> &List, pkgDepCache &Cache)
1405 {
1406 {
1407 std::unordered_set<decltype(pkgCache::Package::ID)> alreadyRemoved;
1408 for (auto && I : List)
1409 if (I.Op == Item::Remove || I.Op == Item::Purge)
1410 alreadyRemoved.insert(I.Pkg->ID);
1411 std::remove_reference<decltype(List)>::type AppendList;
1412 for (auto Pkg = Cache.PkgBegin(); Pkg.end() == false; ++Pkg)
1413 if (Cache[Pkg].Delete() && alreadyRemoved.insert(Pkg->ID).second == true)
1414 AppendList.emplace_back(Cache[Pkg].Purge() ? Item::Purge : Item::Remove, Pkg);
1415 std::move(AppendList.begin(), AppendList.end(), std::back_inserter(List));
1416 }
1417 {
1418 std::unordered_set<decltype(pkgCache::Package::ID)> alreadyConfigured;
1419 for (auto && I : List)
1420 if (I.Op == Item::Configure)
1421 alreadyConfigured.insert(I.Pkg->ID);
1422 std::remove_reference<decltype(List)>::type AppendList;
1423 for (auto && I : List)
1424 if (I.Op == Item::Install && alreadyConfigured.insert(I.Pkg->ID).second == true)
1425 AppendList.emplace_back(Item::Configure, I.Pkg);
1426 for (auto Pkg = Cache.PkgBegin(); Pkg.end() == false; ++Pkg)
1427 if (Pkg.State() == pkgCache::PkgIterator::NeedsConfigure && alreadyConfigured.insert(Pkg->ID).second == true)
1428 AppendList.emplace_back(Item::Configure, Pkg);
1429 std::move(AppendList.begin(), AppendList.end(), std::back_inserter(List));
1430 }
1431 return true;
1432 }
1433 bool pkgDPkgPM::Go(APT::Progress::PackageManager *progress)
1434 {
1435 // explicitely remove&configure everything for hookscripts and progress building
1436 // we need them only temporarily through, so keep the length and erase afterwards
1437 decltype(List)::const_iterator::difference_type explicitIdx =
1438 std::distance(List.cbegin(), List.cend());
1439 ExpandPendingCalls(List, Cache);
1440
1441 /* if dpkg told us that it has already done everything to the package we wanted it to do,
1442 we shouldn't ask it for "more" later. That can e.g. happen if packages without conffiles
1443 are purged as they will have pass through the purge states on remove already */
1444 auto const StripAlreadyDoneFrom = [&](APT::VersionVector & Pending) {
1445 Pending.erase(std::remove_if(Pending.begin(), Pending.end(), [&](pkgCache::VerIterator const &Ver) {
1446 auto const PN = Ver.ParentPkg().FullName();
1447 auto const POD = PackageOpsDone.find(PN);
1448 if (POD == PackageOpsDone.end())
1449 return false;
1450 return PackageOps[PN].size() <= POD->second;
1451 }), Pending.end());
1452 };
1453
1454 pkgPackageManager::SigINTStop = false;
1455 d->progress = progress;
1456
1457 // Generate the base argument list for dpkg
1458 std::vector<std::string> const sArgs = debSystem::GetDpkgBaseCommand();
1459 std::vector<const char *> Args(sArgs.size(), NULL);
1460 std::transform(sArgs.begin(), sArgs.end(), Args.begin(),
1461 [](std::string const &s) { return s.c_str(); });
1462 unsigned long long const StartSize = std::accumulate(sArgs.begin(), sArgs.end(), 0llu,
1463 [](unsigned long long const i, std::string const &s) { return i + s.length(); });
1464 size_t const BaseArgs = Args.size();
1465
1466 fd_set rfds;
1467 struct timespec tv;
1468
1469 // try to figure out the max environment size
1470 int OSArgMax = sysconf(_SC_ARG_MAX);
1471 if(OSArgMax < 0)
1472 OSArgMax = 32*1024;
1473 OSArgMax -= EnvironmentSize() - 2*1024;
1474 unsigned int const MaxArgBytes = _config->FindI("Dpkg::MaxArgBytes", OSArgMax);
1475 bool const NoTriggers = _config->FindB("DPkg::NoTriggers", true);
1476
1477 if (RunScripts("DPkg::Pre-Invoke") == false)
1478 return false;
1479
1480 if (RunScriptsWithPkgs("DPkg::Pre-Install-Pkgs") == false)
1481 return false;
1482
1483 auto const noopDPkgInvocation = _config->FindB("Debug::pkgDPkgPM",false);
1484 // store auto-bits as they are supposed to be after dpkg is run
1485 if (noopDPkgInvocation == false)
1486 Cache.writeStateFile(NULL);
1487
1488 bool dpkg_recursive_install = _config->FindB("dpkg::install::recursive", false);
1489 if (_config->FindB("dpkg::install::recursive::force", false) == false)
1490 {
1491 // dpkg uses a sorted treewalk since that version which enables the workaround to work
1492 auto const dpkgpkg = Cache.FindPkg("dpkg");
1493 if (likely(dpkgpkg.end() == false && dpkgpkg->CurrentVer != 0))
1494 dpkg_recursive_install = Cache.VS().CmpVersion("1.18.5", dpkgpkg.CurrentVer().VerStr()) <= 0;
1495 }
1496 // no point in doing this dance for a handful of packages only
1497 unsigned int const dpkg_recursive_install_min = _config->FindB("dpkg::install::recursive::minimum", 5);
1498 // FIXME: workaround for dpkg bug, see our ./test-bug-740843-versioned-up-down-breaks test
1499 bool const dpkg_recursive_install_numbered = _config->FindB("dpkg::install::recursive::numbered", true);
1500
1501 // for the progress
1502 BuildPackagesProgressMap();
1503
1504 APT::StateChanges approvedStates;
1505 if (_config->FindB("dpkg::selection::remove::approved", true))
1506 {
1507 for (auto && I : List)
1508 if (I.Op == Item::Purge)
1509 approvedStates.Purge(FindToBeRemovedVersion(I.Pkg));
1510 else if (I.Op == Item::Remove)
1511 approvedStates.Remove(FindToBeRemovedVersion(I.Pkg));
1512 }
1513
1514 // Skip removes if we install another architecture of this package soon (crossgrade)
1515 // We can't just skip them all the time as it could be an ordering requirement [of another package]
1516 if ((approvedStates.Remove().empty() == false || approvedStates.Purge().empty() == false) &&
1517 _config->FindB("dpkg::remove::crossgrade::implicit", true) == true)
1518 {
1519 std::unordered_set<decltype(pkgCache::Package::ID)> crossgraded;
1520 std::vector<std::pair<Item*, std::string>> toCrossgrade;
1521 auto const PlanedEnd = std::next(List.begin(), explicitIdx);
1522 for (auto I = List.begin(); I != PlanedEnd; ++I)
1523 {
1524 if (I->Op != Item::Remove && I->Op != Item::Purge)
1525 continue;
1526
1527 auto const Grp = I->Pkg.Group();
1528 size_t installedInstances = 0, wannabeInstances = 0;
1529 bool multiArchInstances = false;
1530 for (auto Pkg = Grp.PackageList(); Pkg.end() == false; Pkg = Grp.NextPkg(Pkg))
1531 {
1532 if (Pkg->CurrentVer != 0)
1533 {
1534 ++installedInstances;
1535 if (Cache[Pkg].Delete() == false)
1536 ++wannabeInstances;
1537 }
1538 else if (PackageOps.find(Pkg.FullName()) != PackageOps.end())
1539 ++wannabeInstances;
1540 if (multiArchInstances == false)
1541 {
1542 auto const V = Cache[Pkg].InstVerIter(Cache);
1543 if (V.end() == false && (Pkg->CurrentVer == 0 || V != Pkg.CurrentVer()))
1544 multiArchInstances = ((V->MultiArch & pkgCache::Version::Same) == pkgCache::Version::Same);
1545 }
1546 }
1547 /* theoretically the installed check would be enough as some wannabe will
1548 be first and hence be the crossgrade we were looking for, but #844300
1549 prevents this so we keep these situations explicit removes.
1550 It is also the reason why neither of them can be a M-A:same package */
1551 if (installedInstances == 1 && wannabeInstances == 1 && multiArchInstances == false)
1552 {
1553 auto const FirstInstall = std::find_if_not(I, List.end(),
1554 [](Item const &i) { return i.Op == Item::Remove || i.Op == Item::Purge; });
1555 auto const LastInstall = std::find_if_not(FirstInstall, List.end(),
1556 [](Item const &i) { return i.Op == Item::Install; });
1557 auto const crosser = std::find_if(FirstInstall, LastInstall,
1558 [&I](Item const &i) { return i.Pkg->Group == I->Pkg->Group; });
1559 if (crosser != LastInstall)
1560 {
1561 crossgraded.insert(I->Pkg->ID);
1562 toCrossgrade.emplace_back(&(*I), crosser->Pkg.FullName());
1563 }
1564 }
1565 }
1566 for (auto I = PlanedEnd; I != List.end(); ++I)
1567 {
1568 if (I->Op != Item::Remove && I->Op != Item::Purge)
1569 continue;
1570
1571 auto const Grp = I->Pkg.Group();
1572 for (auto Pkg = Grp.PackageList(); Pkg.end() == false; Pkg = Grp.NextPkg(Pkg))
1573 {
1574 if (Pkg == I->Pkg || Cache[Pkg].Install() == false)
1575 continue;
1576 toCrossgrade.emplace_back(&(*I), Pkg.FullName());
1577 break;
1578 }
1579 }
1580 for (auto C : toCrossgrade)
1581 {
1582 // we never do purges on packages which are crossgraded, even if "requested"
1583 if (C.first->Op == Item::Purge)
1584 {
1585 C.first->Op = Item::Remove; // crossgrades should never be purged
1586 auto && Purges = approvedStates.Purge();
1587 auto const Ver = std::find_if(
1588 #if __GNUC__ >= 5 || (__GNUC_MINOR__ >= 9 && __GNUC__ >= 4)
1589 Purges.cbegin(), Purges.cend(),
1590 #else
1591 Purges.begin(), Purges.end(),
1592 #endif
1593 [&C](pkgCache::VerIterator const &V) { return V.ParentPkg() == C.first->Pkg; });
1594 approvedStates.Remove(*Ver);
1595 Purges.erase(Ver);
1596 auto && RemOp = PackageOps[C.first->Pkg.FullName()];
1597 if (RemOp.size() == 5)
1598 {
1599 RemOp.erase(std::next(RemOp.begin(), 3), RemOp.end());
1600 PackagesTotal -= 2;
1601 }
1602 else
1603 _error->Warning("Unexpected amount of planned ops for package %s: %lu", C.first->Pkg.FullName().c_str(), RemOp.size());
1604 }
1605 }
1606 if (crossgraded.empty() == false)
1607 {
1608 auto const oldsize = List.size();
1609 List.erase(std::remove_if(List.begin(), PlanedEnd,
1610 [&crossgraded](Item const &i){
1611 return (i.Op == Item::Remove || i.Op == Item::Purge) &&
1612 crossgraded.find(i.Pkg->ID) != crossgraded.end();
1613 }), PlanedEnd);
1614 explicitIdx -= (oldsize - List.size());
1615 }
1616 }
1617
1618 APT::StateChanges currentStates;
1619 if (_config->FindB("dpkg::selection::current::saveandrestore", true))
1620 {
1621 for (auto Pkg = Cache.PkgBegin(); Pkg.end() == false; ++Pkg)
1622 if (Pkg->CurrentVer == 0)
1623 continue;
1624 else if (Pkg->SelectedState == pkgCache::State::Purge)
1625 currentStates.Purge(FindToBeRemovedVersion(Pkg));
1626 else if (Pkg->SelectedState == pkgCache::State::DeInstall)
1627 currentStates.Remove(FindToBeRemovedVersion(Pkg));
1628 if (currentStates.empty() == false)
1629 {
1630 APT::StateChanges cleanStates;
1631 for (auto && P: currentStates.Remove())
1632 cleanStates.Install(P);
1633 for (auto && P: currentStates.Purge())
1634 cleanStates.Install(P);
1635 if (cleanStates.Save(false) == false)
1636 return _error->Error("Couldn't clean the currently selected dpkg states");
1637 }
1638 }
1639
1640 if (_config->FindB("dpkg::selection::remove::approved", true))
1641 {
1642 if (approvedStates.Save(false) == false)
1643 {
1644 _error->Error("Couldn't record the approved state changes as dpkg selection states");
1645 if (currentStates.Save(false) == false)
1646 _error->Error("Couldn't restore dpkg selection states which were present before this interaction!");
1647 return false;
1648 }
1649
1650 List.erase(std::next(List.begin(), explicitIdx), List.end());
1651
1652 std::vector<bool> toBeRemoved(Cache.Head().PackageCount, false);
1653 for (auto && I: approvedStates.Remove())
1654 toBeRemoved[I.ParentPkg()->ID] = true;
1655 for (auto && I: approvedStates.Purge())
1656 toBeRemoved[I.ParentPkg()->ID] = true;
1657
1658 for (auto && I: List)
1659 if (I.Op == Item::Remove || I.Op == Item::Purge)
1660 toBeRemoved[I.Pkg->ID] = false;
1661
1662 bool const RemovePending = std::find(toBeRemoved.begin(), toBeRemoved.end(), true) != toBeRemoved.end();
1663 bool const PurgePending = approvedStates.Purge().empty() == false;
1664 if (RemovePending != false || PurgePending != false)
1665 List.emplace_back(Item::ConfigurePending, pkgCache::PkgIterator());
1666 if (RemovePending)
1667 List.emplace_back(Item::RemovePending, pkgCache::PkgIterator());
1668 if (PurgePending)
1669 List.emplace_back(Item::PurgePending, pkgCache::PkgIterator());
1670
1671 // support subpressing of triggers processing for special
1672 // cases like d-i that runs the triggers handling manually
1673 if (_config->FindB("DPkg::ConfigurePending", true))
1674 List.emplace_back(Item::ConfigurePending, pkgCache::PkgIterator());
1675 }
1676 bool const TriggersPending = _config->FindB("DPkg::TriggersPending", false);
1677
1678 d->stdin_is_dev_null = false;
1679
1680 // create log
1681 OpenLog();
1682
1683 bool dpkgMultiArch = debSystem::SupportsMultiArch();
1684
1685 // start pty magic before the loop
1686 StartPtyMagic();
1687
1688 // Tell the progress that its starting and fork dpkg
1689 d->progress->Start(d->master);
1690
1691 // this loop is runs once per dpkg operation
1692 vector<Item>::const_iterator I = List.cbegin();
1693 while (I != List.end())
1694 {
1695 // Do all actions with the same Op in one run
1696 vector<Item>::const_iterator J = I;
1697 if (TriggersPending == true)
1698 for (; J != List.end(); ++J)
1699 {
1700 if (J->Op == I->Op)
1701 continue;
1702 if (J->Op != Item::TriggersPending)
1703 break;
1704 vector<Item>::const_iterator T = J + 1;
1705 if (T != List.end() && T->Op == I->Op)
1706 continue;
1707 break;
1708 }
1709 else if (J->Op == Item::Remove || J->Op == Item::Purge)
1710 J = std::find_if(J, List.cend(), [](Item const &I) { return I.Op != Item::Remove && I.Op != Item::Purge; });
1711 else
1712 J = std::find_if(J, List.cend(), [&J](Item const &I) { return I.Op != J->Op; });
1713
1714 auto const size = (J - I) + 10;
1715
1716 // start with the baseset of arguments
1717 auto Size = StartSize;
1718 Args.erase(Args.begin() + BaseArgs, Args.end());
1719 Args.reserve(size);
1720 // keep track of allocated strings for multiarch package names
1721 std::vector<char *> Packages(size, nullptr);
1722
1723 int fd[2];
1724 if (pipe(fd) != 0)
1725 return _error->Errno("pipe","Failed to create IPC pipe to dpkg");
1726
1727 #define ADDARG(X) Args.push_back(X); Size += strlen(X)
1728 #define ADDARGC(X) Args.push_back(X); Size += sizeof(X) - 1
1729
1730 ADDARGC("--status-fd");
1731 char status_fd_buf[20];
1732 snprintf(status_fd_buf,sizeof(status_fd_buf),"%i", fd[1]);
1733 ADDARG(status_fd_buf);
1734 unsigned long const Op = I->Op;
1735
1736 if (NoTriggers == true && I->Op != Item::TriggersPending &&
1737 (I->Op != Item::ConfigurePending || std::next(I) != List.end()))
1738 {
1739 ADDARGC("--no-triggers");
1740 }
1741
1742 switch (I->Op)
1743 {
1744 case Item::Remove:
1745 case Item::Purge:
1746 ADDARGC("--force-depends");
1747 if (std::any_of(I, J, ItemIsEssential))
1748 ADDARGC("--force-remove-essential");
1749 ADDARGC("--remove");
1750 break;
1751
1752 case Item::Configure:
1753 ADDARGC("--configure");
1754 break;
1755
1756 case Item::ConfigurePending:
1757 ADDARGC("--configure");
1758 ADDARGC("--pending");
1759 break;
1760
1761 case Item::TriggersPending:
1762 ADDARGC("--triggers-only");
1763 ADDARGC("--pending");
1764 break;
1765
1766 case Item::RemovePending:
1767 ADDARGC("--remove");
1768 ADDARGC("--pending");
1769 break;
1770
1771 case Item::PurgePending:
1772 ADDARGC("--purge");
1773 ADDARGC("--pending");
1774 break;
1775
1776 case Item::Install:
1777 ADDARGC("--unpack");
1778 ADDARGC("--auto-deconfigure");
1779 break;
1780 }
1781
1782 char * tmpdir_to_free = nullptr;
1783
1784 // Write in the file or package names
1785 if (I->Op == Item::Install)
1786 {
1787 auto const installsToDo = J - I;
1788 if (dpkg_recursive_install == true && dpkg_recursive_install_min < installsToDo)
1789 {
1790 std::string tmpdir;
1791 strprintf(tmpdir, "%s/apt-dpkg-install-XXXXXX", GetTempDir().c_str());
1792 tmpdir_to_free = strndup(tmpdir.data(), tmpdir.length());
1793 if (mkdtemp(tmpdir_to_free) == nullptr)
1794 return _error->Errno("DPkg::Go", "mkdtemp of %s failed in preparation of calling dpkg unpack", tmpdir_to_free);
1795
1796 char p = 1;
1797 for (auto c = installsToDo - 1; (c = c/10) != 0; ++p);
1798 for (unsigned long n = 0; I != J; ++n, ++I)
1799 {
1800 if (I->File[0] != '/')
1801 return _error->Error("Internal Error, Pathname to install is not absolute '%s'",I->File.c_str());
1802 auto file = flNotDir(I->File);
1803 if (flExtension(file) != "deb")
1804 file.append(".deb");
1805 std::string linkpath;
1806 if (dpkg_recursive_install_numbered)
1807 strprintf(linkpath, "%s/%.*lu-%s", tmpdir_to_free, p, n, file.c_str());
1808 else
1809 strprintf(linkpath, "%s/%s", tmpdir_to_free, file.c_str());
1810 if (symlink(I->File.c_str(), linkpath.c_str()) != 0)
1811 return _error->Errno("DPkg::Go", "Symlinking %s to %s failed!", I->File.c_str(), linkpath.c_str());
1812 }
1813 ADDARGC("--recursive");
1814 ADDARG(tmpdir_to_free);
1815 }
1816 else
1817 {
1818 for (;I != J && Size < MaxArgBytes; ++I)
1819 {
1820 if (I->File[0] != '/')
1821 return _error->Error("Internal Error, Pathname to install is not absolute '%s'",I->File.c_str());
1822 Args.push_back(I->File.c_str());
1823 Size += I->File.length();
1824 }
1825 }
1826 }
1827 else if (I->Op == Item::RemovePending)
1828 {
1829 ++I;
1830 StripAlreadyDoneFrom(approvedStates.Remove());
1831 if (approvedStates.Remove().empty())
1832 continue;
1833 }
1834 else if (I->Op == Item::PurgePending)
1835 {
1836 ++I;
1837 // explicit removes of packages without conffiles passthrough the purge states instantly, too.
1838 // Setting these non-installed packages up for purging generates 'unknown pkg' warnings from dpkg
1839 StripAlreadyDoneFrom(approvedStates.Purge());
1840 if (approvedStates.Purge().empty())
1841 continue;
1842 std::remove_reference<decltype(approvedStates.Remove())>::type approvedRemoves;
1843 std::swap(approvedRemoves, approvedStates.Remove());
1844 // we apply it again here as an explicit remove in the ordering will have cleared the purge state
1845 if (approvedStates.Save(false) == false)
1846 {
1847 _error->Error("Couldn't record the approved purges as dpkg selection states");
1848 if (currentStates.Save(false) == false)
1849 _error->Error("Couldn't restore dpkg selection states which were present before this interaction!");
1850 return false;
1851 }
1852 std::swap(approvedRemoves, approvedStates.Remove());
1853 }
1854 else
1855 {
1856 string const nativeArch = _config->Find("APT::Architecture");
1857 unsigned long const oldSize = I->Pkg.end() == false ? Size : 0;
1858 for (;I != J && Size < MaxArgBytes; ++I)
1859 {
1860 if((*I).Pkg.end() == true)
1861 continue;
1862 if (I->Op == Item::Configure && disappearedPkgs.find(I->Pkg.FullName(true)) != disappearedPkgs.end())
1863 continue;
1864 // We keep this here to allow "smooth" transitions from e.g. multiarch dpkg/ubuntu to dpkg/debian
1865 if (dpkgMultiArch == false && (I->Pkg.Arch() == nativeArch ||
1866 strcmp(I->Pkg.Arch(), "all") == 0 ||
1867 strcmp(I->Pkg.Arch(), "none") == 0))
1868 {
1869 char const * const name = I->Pkg.Name();
1870 ADDARG(name);
1871 }
1872 else
1873 {
1874 pkgCache::VerIterator PkgVer;
1875 std::string name = I->Pkg.Name();
1876 if (Op == Item::Remove)
1877 PkgVer = I->Pkg.CurrentVer();
1878 else if (Op == Item::Purge)
1879 {
1880 // we purge later with --purge --pending, so if it isn't installed (aka rc-only), skip it here
1881 PkgVer = I->Pkg.CurrentVer();
1882 if (PkgVer.end() == true)
1883 continue;
1884 }
1885 else
1886 PkgVer = Cache[I->Pkg].InstVerIter(Cache);
1887 if (strcmp(I->Pkg.Arch(), "none") == 0)
1888 ; // never arch-qualify a package without an arch
1889 else if (PkgVer.end() == false)
1890 name.append(":").append(PkgVer.Arch());
1891 else
1892 _error->Warning("Can not find PkgVer for '%s'", name.c_str());
1893 char * const fullname = strdup(name.c_str());
1894 Packages.push_back(fullname);
1895 ADDARG(fullname);
1896 }
1897 }
1898 // skip configure action if all sheduled packages disappeared
1899 if (oldSize == Size)
1900 continue;
1901 }
1902 #undef ADDARGC
1903 #undef ADDARG
1904
1905 J = I;
1906
1907 if (noopDPkgInvocation == true)
1908 {
1909 for (std::vector<const char *>::const_iterator a = Args.begin();
1910 a != Args.end(); ++a)
1911 clog << *a << ' ';
1912 clog << endl;
1913 for (std::vector<char *>::const_iterator p = Packages.begin();
1914 p != Packages.end(); ++p)
1915 free(*p);
1916 Packages.clear();
1917 close(fd[0]);
1918 close(fd[1]);
1919 cleanUpTmpDir(tmpdir_to_free);
1920 continue;
1921 }
1922 Args.push_back(NULL);
1923
1924 cout << flush;
1925 clog << flush;
1926 cerr << flush;
1927
1928 /* Mask off sig int/quit. We do this because dpkg also does when
1929 it forks scripts. What happens is that when you hit ctrl-c it sends
1930 it to all processes in the group. Since dpkg ignores the signal
1931 it doesn't die but we do! So we must also ignore it */
1932 sighandler_t old_SIGQUIT = signal(SIGQUIT,SIG_IGN);
1933 sighandler_t old_SIGINT = signal(SIGINT,SigINT);
1934
1935 // Check here for any SIGINT
1936 if (pkgPackageManager::SigINTStop && (Op == Item::Remove || Op == Item::Purge || Op == Item::Install))
1937 break;
1938
1939 // ignore SIGHUP as well (debian #463030)
1940 sighandler_t old_SIGHUP = signal(SIGHUP,SIG_IGN);
1941
1942 // now run dpkg
1943 d->progress->StartDpkg();
1944 std::set<int> KeepFDs;
1945 KeepFDs.insert(fd[1]);
1946 MergeKeepFdsFromConfiguration(KeepFDs);
1947 pid_t Child = ExecFork(KeepFDs);
1948 if (Child == 0)
1949 {
1950 // This is the child
1951 SetupSlavePtyMagic();
1952 close(fd[0]); // close the read end of the pipe
1953
1954 debSystem::DpkgChrootDirectory();
1955
1956 if (chdir(_config->FindDir("DPkg::Run-Directory","/").c_str()) != 0)
1957 _exit(100);
1958
1959 if (_config->FindB("DPkg::FlushSTDIN",true) == true && isatty(STDIN_FILENO))
1960 {
1961 int Flags;
1962 int dummy = 0;
1963 if ((Flags = fcntl(STDIN_FILENO,F_GETFL,dummy)) < 0)
1964 _exit(100);
1965
1966 // Discard everything in stdin before forking dpkg
1967 if (fcntl(STDIN_FILENO,F_SETFL,Flags | O_NONBLOCK) < 0)
1968 _exit(100);
1969
1970 while (read(STDIN_FILENO,&dummy,1) == 1);
1971
1972 if (fcntl(STDIN_FILENO,F_SETFL,Flags & (~(long)O_NONBLOCK)) < 0)
1973 _exit(100);
1974 }
1975
1976 // if color support isn't enabled/disabled explicitly tell
1977 // dpkg to use the same state apt is using for its color support
1978 if (_config->FindB("APT::Color", false) == true)
1979 setenv("DPKG_COLORS", "always", 0);
1980 else
1981 setenv("DPKG_COLORS", "never", 0);
1982
1983 execvp(Args[0], (char**) &Args[0]);
1984 cerr << "Could not exec dpkg!" << endl;
1985 _exit(100);
1986 }
1987
1988 // we read from dpkg here
1989 int const _dpkgin = fd[0];
1990 close(fd[1]); // close the write end of the pipe
1991
1992 // apply ionice
1993 if (_config->FindB("DPkg::UseIoNice", false) == true)
1994 ionice(Child);
1995
1996 // setups fds
1997 sigemptyset(&d->sigmask);
1998 sigprocmask(SIG_BLOCK,&d->sigmask,&d->original_sigmask);
1999
2000 /* free vectors (and therefore memory) as we don't need the included data anymore */
2001 for (std::vector<char *>::const_iterator p = Packages.begin();
2002 p != Packages.end(); ++p)
2003 free(*p);
2004 Packages.clear();
2005
2006 // the result of the waitpid call
2007 int Status = 0;
2008 int res;
2009 bool waitpid_failure = false;
2010 while ((res=waitpid(Child,&Status, WNOHANG)) != Child) {
2011 if(res < 0) {
2012 // error handling, waitpid returned -1
2013 if (errno == EINTR)
2014 continue;
2015 waitpid_failure = true;
2016 break;
2017 }
2018
2019 // wait for input or output here
2020 FD_ZERO(&rfds);
2021 if (d->master >= 0 && d->direct_stdin == false && d->stdin_is_dev_null == false)
2022 FD_SET(STDIN_FILENO, &rfds);
2023 FD_SET(_dpkgin, &rfds);
2024 if(d->master >= 0)
2025 FD_SET(d->master, &rfds);
2026 tv.tv_sec = 0;
2027 tv.tv_nsec = d->progress->GetPulseInterval();
2028 auto const select_ret = pselect(max(d->master, _dpkgin)+1, &rfds, NULL, NULL,
2029 &tv, &d->original_sigmask);
2030 d->progress->Pulse();
2031 if (select_ret == 0)
2032 continue;
2033 else if (select_ret < 0 && errno == EINTR)
2034 continue;
2035 else if (select_ret < 0)
2036 {
2037 perror("select() returned error");
2038 continue;
2039 }
2040
2041 if(d->master >= 0 && FD_ISSET(d->master, &rfds))
2042 DoTerminalPty(d->master);
2043 if(d->master >= 0 && FD_ISSET(0, &rfds))
2044 DoStdin(d->master);
2045 if(FD_ISSET(_dpkgin, &rfds))
2046 DoDpkgStatusFd(_dpkgin);
2047 }
2048 close(_dpkgin);
2049
2050 // Restore sig int/quit
2051 signal(SIGQUIT,old_SIGQUIT);
2052 signal(SIGINT,old_SIGINT);
2053 signal(SIGHUP,old_SIGHUP);
2054
2055 cleanUpTmpDir(tmpdir_to_free);
2056
2057 if (waitpid_failure == true)
2058 {
2059 strprintf(d->dpkg_error, "Sub-process %s couldn't be waited for.",Args[0]);
2060 _error->Error("%s", d->dpkg_error.c_str());
2061 break;
2062 }
2063
2064 // Check for an error code.
2065 if (WIFEXITED(Status) == 0 || WEXITSTATUS(Status) != 0)
2066 {
2067 // if it was set to "keep-dpkg-running" then we won't return
2068 // here but keep the loop going and just report it as a error
2069 // for later
2070 bool const stopOnError = _config->FindB("Dpkg::StopOnError",true);
2071
2072 if (WIFSIGNALED(Status) != 0 && WTERMSIG(Status) == SIGSEGV)
2073 strprintf(d->dpkg_error, "Sub-process %s received a segmentation fault.",Args[0]);
2074 else if (WIFEXITED(Status) != 0)
2075 strprintf(d->dpkg_error, "Sub-process %s returned an error code (%u)",Args[0],WEXITSTATUS(Status));
2076 else
2077 strprintf(d->dpkg_error, "Sub-process %s exited unexpectedly",Args[0]);
2078 _error->Error("%s", d->dpkg_error.c_str());
2079
2080 if(stopOnError)
2081 break;
2082 }
2083 }
2084 // dpkg is done at this point
2085 StopPtyMagic();
2086 CloseLog();
2087
2088 if (d->dpkg_error.empty() == false)
2089 {
2090 // no point in reseting packages we already completed removal for
2091 StripAlreadyDoneFrom(approvedStates.Remove());
2092 StripAlreadyDoneFrom(approvedStates.Purge());
2093 APT::StateChanges undo;
2094 auto && undoRem = approvedStates.Remove();
2095 std::move(undoRem.begin(), undoRem.end(), std::back_inserter(undo.Install()));
2096 auto && undoPur = approvedStates.Purge();
2097 std::move(undoPur.begin(), undoPur.end(), std::back_inserter(undo.Install()));
2098 approvedStates.clear();
2099 if (undo.Save(false) == false)
2100 _error->Error("Couldn't revert dpkg selection for approved remove/purge after an error was encountered!");
2101 }
2102
2103 StripAlreadyDoneFrom(currentStates.Remove());
2104 StripAlreadyDoneFrom(currentStates.Purge());
2105 if (currentStates.Save(false) == false)
2106 _error->Error("Couldn't restore dpkg selection states which were present before this interaction!");
2107
2108 if (pkgPackageManager::SigINTStop)
2109 _error->Warning(_("Operation was interrupted before it could finish"));
2110
2111 if (noopDPkgInvocation == false)
2112 {
2113 if (d->dpkg_error.empty() && (PackagesDone + 1) != PackagesTotal)
2114 {
2115 std::string pkglist;
2116 for (auto const &PO: PackageOps)
2117 if (PO.second.size() != PackageOpsDone[PO.first])
2118 {
2119 if (pkglist.empty() == false)
2120 pkglist.append(" ");
2121 pkglist.append(PO.first);
2122 }
2123 /* who cares about correct progress? As we depend on it for skipping actions
2124 our parsing should be correct. People will no doubt be confused if they see
2125 this message, but the dpkg warning about unknown packages isn't much better
2126 from a user POV and combined we might have a chance to figure out what is wrong */
2127 _error->Warning("APT had planned for dpkg to do more than it reported back (%u vs %u).\n"
2128 "Affected packages: %s", PackagesDone, PackagesTotal, pkglist.c_str());
2129 }
2130
2131 std::string const oldpkgcache = _config->FindFile("Dir::cache::pkgcache");
2132 if (oldpkgcache.empty() == false && RealFileExists(oldpkgcache) == true &&
2133 RemoveFile("pkgDPkgPM::Go", oldpkgcache))
2134 {
2135 std::string const srcpkgcache = _config->FindFile("Dir::cache::srcpkgcache");
2136 if (srcpkgcache.empty() == false && RealFileExists(srcpkgcache) == true)
2137 {
2138 _error->PushToStack();
2139 pkgCacheFile CacheFile;
2140 CacheFile.BuildCaches(NULL, true);
2141 _error->RevertToStack();
2142 }
2143 }
2144 }
2145
2146 // disappearing packages can forward their auto-bit
2147 if (disappearedPkgs.empty() == false)
2148 Cache.writeStateFile(NULL);
2149
2150 d->progress->Stop();
2151
2152 if (RunScripts("DPkg::Post-Invoke") == false)
2153 return false;
2154
2155 return d->dpkg_error.empty();
2156 }
2157
2158 void SigINT(int /*sig*/) {
2159 pkgPackageManager::SigINTStop = true;
2160 }
2161 /*}}}*/
2162 // pkgDpkgPM::Reset - Dump the contents of the command list /*{{{*/
2163 // ---------------------------------------------------------------------
2164 /* */
2165 void pkgDPkgPM::Reset()
2166 {
2167 List.erase(List.begin(),List.end());
2168 }
2169 /*}}}*/
2170 // pkgDpkgPM::WriteApportReport - write out error report pkg failure /*{{{*/
2171 // ---------------------------------------------------------------------
2172 /* */
2173 void pkgDPkgPM::WriteApportReport(const char *pkgpath, const char *errormsg)
2174 {
2175 // If apport doesn't exist or isn't installed do nothing
2176 // This e.g. prevents messages in 'universes' without apport
2177 pkgCache::PkgIterator apportPkg = Cache.FindPkg("apport");
2178 if (apportPkg.end() == true || apportPkg->CurrentVer == 0)
2179 return;
2180
2181 string pkgname, reportfile, pkgver, arch;
2182 string::size_type pos;
2183 FILE *report;
2184
2185 if (_config->FindB("Dpkg::ApportFailureReport", true) == false)
2186 {
2187 std::clog << "configured to not write apport reports" << std::endl;
2188 return;
2189 }
2190
2191 // only report the first errors
2192 if(pkgFailures > _config->FindI("APT::Apport::MaxReports", 3))
2193 {
2194 std::clog << _("No apport report written because MaxReports is reached already") << std::endl;
2195 return;
2196 }
2197
2198 // check if its not a follow up error
2199 const char *needle = dgettext("dpkg", "dependency problems - leaving unconfigured");
2200 if(strstr(errormsg, needle) != NULL) {
2201 std::clog << _("No apport report written because the error message indicates its a followup error from a previous failure.") << std::endl;
2202 return;
2203 }
2204
2205 // do not report disk-full failures
2206 if(strstr(errormsg, strerror(ENOSPC)) != NULL) {
2207 std::clog << _("No apport report written because the error message indicates a disk full error") << std::endl;
2208 return;
2209 }
2210
2211 // do not report out-of-memory failures
2212 if(strstr(errormsg, strerror(ENOMEM)) != NULL ||
2213 strstr(errormsg, "failed to allocate memory") != NULL) {
2214 std::clog << _("No apport report written because the error message indicates a out of memory error") << std::endl;
2215 return;
2216 }
2217
2218 // do not report bugs regarding inaccessible local files
2219 if(strstr(errormsg, strerror(ENOENT)) != NULL ||
2220 strstr(errormsg, "cannot access archive") != NULL) {
2221 std::clog << _("No apport report written because the error message indicates an issue on the local system") << std::endl;
2222 return;
2223 }
2224
2225 // do not report errors encountered when decompressing packages
2226 if(strstr(errormsg, "--fsys-tarfile returned error exit status 2") != NULL) {
2227 std::clog << _("No apport report written because the error message indicates an issue on the local system") << std::endl;
2228 return;
2229 }
2230
2231 // do not report dpkg I/O errors, this is a format string, so we compare
2232 // the prefix and the suffix of the error with the dpkg error message
2233 vector<string> io_errors;
2234 io_errors.push_back(string("failed to read"));
2235 io_errors.push_back(string("failed to write"));
2236 io_errors.push_back(string("failed to seek"));
2237 io_errors.push_back(string("unexpected end of file or stream"));
2238
2239 for (vector<string>::iterator I = io_errors.begin(); I != io_errors.end(); ++I)
2240 {
2241 vector<string> list = VectorizeString(dgettext("dpkg", (*I).c_str()), '%');
2242 if (list.size() > 1) {
2243 // we need to split %s, VectorizeString only allows char so we need
2244 // to kill the "s" manually
2245 if (list[1].size() > 1) {
2246 list[1].erase(0, 1);
2247 if(strstr(errormsg, list[0].c_str()) &&
2248 strstr(errormsg, list[1].c_str())) {
2249 std::clog << _("No apport report written because the error message indicates a dpkg I/O error") << std::endl;
2250 return;
2251 }
2252 }
2253 }
2254 }
2255
2256 // get the pkgname and reportfile
2257 pkgname = flNotDir(pkgpath);
2258 pos = pkgname.find('_');
2259 if(pos != string::npos)
2260 pkgname = pkgname.substr(0, pos);
2261
2262 // find the package version and source package name
2263 pkgCache::PkgIterator Pkg = Cache.FindPkg(pkgname);
2264 if (Pkg.end() == true)
2265 {
2266 if (pos == std::string::npos || _config->FindB("dpkg::install::recursive::numbered", true) == false)
2267 return;
2268 auto const dash = pkgname.find_first_not_of("0123456789");
2269 if (dash == std::string::npos || pkgname[dash] != '-')
2270 return;
2271 pkgname.erase(0, dash + 1);
2272 Pkg = Cache.FindPkg(pkgname);
2273 if (Pkg.end() == true)
2274 return;
2275 }
2276 pkgCache::VerIterator Ver = Cache.GetCandidateVersion(Pkg);
2277 if (Ver.end() == true)
2278 return;
2279 pkgver = Ver.VerStr() == NULL ? "unknown" : Ver.VerStr();
2280
2281 // if the file exists already, we check:
2282 // - if it was reported already (touched by apport).
2283 // If not, we do nothing, otherwise
2284 // we overwrite it. This is the same behaviour as apport
2285 // - if we have a report with the same pkgversion already
2286 // then we skip it
2287 _config->CndSet("Dir::Apport", "var/crash");
2288 reportfile = flCombine(_config->FindDir("Dir::Apport", "var/crash"), pkgname+".0.crash");
2289 if(FileExists(reportfile))
2290 {
2291 struct stat buf;
2292 char strbuf[255];
2293
2294 // check atime/mtime
2295 stat(reportfile.c_str(), &buf);
2296 if(buf.st_mtime > buf.st_atime)
2297 return;
2298
2299 // check if the existing report is the same version
2300 report = fopen(reportfile.c_str(),"r");
2301 while(fgets(strbuf, sizeof(strbuf), report) != NULL)
2302 {
2303 if(strstr(strbuf,"Package:") == strbuf)
2304 {
2305 char pkgname[255], version[255];
2306 if(sscanf(strbuf, "Package: %254s %254s", pkgname, version) == 2)
2307 if(strcmp(pkgver.c_str(), version) == 0)
2308 {
2309 fclose(report);
2310 return;
2311 }
2312 }
2313 }
2314 fclose(report);
2315 }
2316
2317 // now write the report
2318 arch = _config->Find("APT::Architecture");
2319 report = fopen(reportfile.c_str(),"w");
2320 if(report == NULL)
2321 return;
2322 if(_config->FindB("DPkgPM::InitialReportOnly",false) == true)
2323 chmod(reportfile.c_str(), 0);
2324 else
2325 chmod(reportfile.c_str(), 0600);
2326 fprintf(report, "ProblemType: Package\n");
2327 fprintf(report, "Architecture: %s\n", arch.c_str());
2328 time_t now = time(NULL);
2329 char ctime_buf[26]; // need at least 26 bytes according to ctime(3)
2330 fprintf(report, "Date: %s" , ctime_r(&now, ctime_buf));
2331 fprintf(report, "Package: %s %s\n", pkgname.c_str(), pkgver.c_str());
2332 fprintf(report, "SourcePackage: %s\n", Ver.SourcePkgName());
2333 fprintf(report, "ErrorMessage:\n %s\n", errormsg);
2334
2335 // ensure that the log is flushed
2336 if(d->term_out)
2337 fflush(d->term_out);
2338
2339 // attach terminal log it if we have it
2340 string logfile_name = _config->FindFile("Dir::Log::Terminal");
2341 if (!logfile_name.empty())
2342 {
2343 FILE *log = NULL;
2344
2345 fprintf(report, "DpkgTerminalLog:\n");
2346 log = fopen(logfile_name.c_str(),"r");
2347 if(log != NULL)
2348 {
2349 char buf[1024];
2350 while( fgets(buf, sizeof(buf), log) != NULL)
2351 fprintf(report, " %s", buf);
2352 fprintf(report, " \n");
2353 fclose(log);
2354 }
2355 }
2356
2357 // attach history log it if we have it
2358 string histfile_name = _config->FindFile("Dir::Log::History");
2359 if (!histfile_name.empty())
2360 {
2361 fprintf(report, "DpkgHistoryLog:\n");
2362 FILE* log = fopen(histfile_name.c_str(),"r");
2363 if(log != NULL)
2364 {
2365 char buf[1024];
2366 while( fgets(buf, sizeof(buf), log) != NULL)
2367 fprintf(report, " %s", buf);
2368 fclose(log);
2369 }
2370 }
2371
2372 // log the ordering, see dpkgpm.h and the "Ops" enum there
2373 fprintf(report, "AptOrdering:\n");
2374 for (auto && I : List)
2375 {
2376 char const * opstr = nullptr;
2377 switch (I.Op)
2378 {
2379 case Item::Install: opstr = "Install"; break;
2380 case Item::Configure: opstr = "Configure"; break;
2381 case Item::Remove: opstr = "Remove"; break;
2382 case Item::Purge: opstr = "Purge"; break;
2383 case Item::ConfigurePending: opstr = "ConfigurePending"; break;
2384 case Item::TriggersPending: opstr = "TriggersPending"; break;
2385 case Item::RemovePending: opstr = "RemovePending"; break;
2386 case Item::PurgePending: opstr = "PurgePending"; break;
2387 }
2388 auto const pkgname = I.Pkg.end() ? "NULL" : I.Pkg.FullName();
2389 fprintf(report, " %s: %s\n", pkgname.c_str(), opstr);
2390 }
2391
2392 // attach dmesg log (to learn about segfaults)
2393 if (FileExists("/bin/dmesg"))
2394 {
2395 fprintf(report, "Dmesg:\n");
2396 FILE *log = popen("/bin/dmesg","r");
2397 if(log != NULL)
2398 {
2399 char buf[1024];
2400 while( fgets(buf, sizeof(buf), log) != NULL)
2401 fprintf(report, " %s", buf);
2402 pclose(log);
2403 }
2404 }
2405
2406 // attach df -l log (to learn about filesystem status)
2407 if (FileExists("/bin/df"))
2408 {
2409
2410 fprintf(report, "Df:\n");
2411 FILE *log = popen("/bin/df -l","r");
2412 if(log != NULL)
2413 {
2414 char buf[1024];
2415 while( fgets(buf, sizeof(buf), log) != NULL)
2416 fprintf(report, " %s", buf);
2417 pclose(log);
2418 }
2419 }
2420
2421 fclose(report);
2422
2423 }
2424 /*}}}*/