Applied DonKult (David)'s excellent fix for inproving the loop management. Now both...
[ntk/apt.git] / apt-pkg / packagemanager.cc
1 // -*- mode: cpp; mode: fold -*-
2 // Description /*{{{*/
3 // $Id: packagemanager.cc,v 1.30 2003/04/27 03:04:15 doogie Exp $
4 /* ######################################################################
5
6 Package Manager - Abstacts the package manager
7
8 More work is needed in the area of transitioning provides, ie exim
9 replacing smail. This can cause interesing side effects.
10
11 Other cases involving conflicts+replaces should be tested.
12
13 ##################################################################### */
14 /*}}}*/
15 // Include Files /*{{{*/
16 #include <apt-pkg/packagemanager.h>
17 #include <apt-pkg/orderlist.h>
18 #include <apt-pkg/depcache.h>
19 #include <apt-pkg/error.h>
20 #include <apt-pkg/version.h>
21 #include <apt-pkg/acquire-item.h>
22 #include <apt-pkg/algorithms.h>
23 #include <apt-pkg/configuration.h>
24 #include <apt-pkg/sptr.h>
25
26 #include <apti18n.h>
27 #include <iostream>
28 #include <fcntl.h>
29 /*}}}*/
30 using namespace std;
31
32 bool pkgPackageManager::SigINTStop = false;
33
34 // PM::PackageManager - Constructor /*{{{*/
35 // ---------------------------------------------------------------------
36 /* */
37 pkgPackageManager::pkgPackageManager(pkgDepCache *pCache) : Cache(*pCache)
38 {
39 FileNames = new string[Cache.Head().PackageCount];
40 List = 0;
41 Debug = _config->FindB("Debug::pkgPackageManager",false);
42 }
43 /*}}}*/
44 // PM::PackageManager - Destructor /*{{{*/
45 // ---------------------------------------------------------------------
46 /* */
47 pkgPackageManager::~pkgPackageManager()
48 {
49 delete List;
50 delete [] FileNames;
51 }
52 /*}}}*/
53 // PM::GetArchives - Queue the archives for download /*{{{*/
54 // ---------------------------------------------------------------------
55 /* */
56 bool pkgPackageManager::GetArchives(pkgAcquire *Owner,pkgSourceList *Sources,
57 pkgRecords *Recs)
58 {
59 if (CreateOrderList() == false)
60 return false;
61
62 bool const ordering =
63 _config->FindB("PackageManager::UnpackAll",true) ?
64 List->OrderUnpack() : List->OrderCritical();
65 if (ordering == false)
66 return _error->Error("Internal ordering error");
67
68 for (pkgOrderList::iterator I = List->begin(); I != List->end(); I++)
69 {
70 PkgIterator Pkg(Cache,*I);
71 FileNames[Pkg->ID] = string();
72
73 // Skip packages to erase
74 if (Cache[Pkg].Delete() == true)
75 continue;
76
77 // Skip Packages that need configure only.
78 if (Pkg.State() == pkgCache::PkgIterator::NeedsConfigure &&
79 Cache[Pkg].Keep() == true)
80 continue;
81
82 // Skip already processed packages
83 if (List->IsNow(Pkg) == false)
84 continue;
85
86 new pkgAcqArchive(Owner,Sources,Recs,Cache[Pkg].InstVerIter(Cache),
87 FileNames[Pkg->ID]);
88 }
89
90 return true;
91 }
92 /*}}}*/
93 // PM::FixMissing - Keep all missing packages /*{{{*/
94 // ---------------------------------------------------------------------
95 /* This is called to correct the installation when packages could not
96 be downloaded. */
97 bool pkgPackageManager::FixMissing()
98 {
99 pkgDepCache::ActionGroup group(Cache);
100 pkgProblemResolver Resolve(&Cache);
101 List->SetFileList(FileNames);
102
103 bool Bad = false;
104 for (PkgIterator I = Cache.PkgBegin(); I.end() == false; I++)
105 {
106 if (List->IsMissing(I) == false)
107 continue;
108
109 // Okay, this file is missing and we need it. Mark it for keep
110 Bad = true;
111 Cache.MarkKeep(I, false, false);
112 }
113
114 // We have to empty the list otherwise it will not have the new changes
115 delete List;
116 List = 0;
117
118 if (Bad == false)
119 return true;
120
121 // Now downgrade everything that is broken
122 return Resolve.ResolveByKeep() == true && Cache.BrokenCount() == 0;
123 }
124 /*}}}*/
125 // PM::ImmediateAdd - Add the immediate flag recursivly /*{{{*/
126 // ---------------------------------------------------------------------
127 /* This adds the immediate flag to the pkg and recursively to the
128 dependendies
129 */
130 void pkgPackageManager::ImmediateAdd(PkgIterator I, bool UseInstallVer, unsigned const int &Depth)
131 {
132 DepIterator D;
133
134 if(UseInstallVer)
135 {
136 if(Cache[I].InstallVer == 0)
137 return;
138 D = Cache[I].InstVerIter(Cache).DependsList();
139 } else {
140 if (I->CurrentVer == 0)
141 return;
142 D = I.CurrentVer().DependsList();
143 }
144
145 for ( /* nothing */ ; D.end() == false; D++)
146 if (D->Type == pkgCache::Dep::Depends || D->Type == pkgCache::Dep::PreDepends)
147 {
148 if(!List->IsFlag(D.TargetPkg(), pkgOrderList::Immediate))
149 {
150 if(Debug)
151 clog << OutputInDepth(Depth) << "ImmediateAdd(): Adding Immediate flag to " << D.TargetPkg() << " cause of " << D.DepType() << " " << I.Name() << endl;
152 List->Flag(D.TargetPkg(),pkgOrderList::Immediate);
153 ImmediateAdd(D.TargetPkg(), UseInstallVer, Depth + 1);
154 }
155 }
156 return;
157 }
158 /*}}}*/
159 // PM::CreateOrderList - Create the ordering class /*{{{*/
160 // ---------------------------------------------------------------------
161 /* This populates the ordering list with all the packages that are
162 going to change. */
163 bool pkgPackageManager::CreateOrderList()
164 {
165 if (List != 0)
166 return true;
167
168 delete List;
169 List = new pkgOrderList(&Cache);
170
171 NoImmConfigure = !_config->FindB("APT::Immediate-Configure",true);
172 ImmConfigureAll = _config->FindB("APT::Immediate-Configure-All",false);
173
174 if (Debug && ImmConfigureAll)
175 clog << "CreateOrderList(): Adding Immediate flag for all packages because of APT::Immediate-Configure-All" << endl;
176
177 // Generate the list of affected packages and sort it
178 for (PkgIterator I = Cache.PkgBegin(); I.end() == false; I++)
179 {
180 // Ignore no-version packages
181 if (I->VersionList == 0)
182 continue;
183
184 // Mark the package and its dependends for immediate configuration
185 if ((((I->Flags & pkgCache::Flag::Essential) == pkgCache::Flag::Essential ||
186 (I->Flags & pkgCache::Flag::Important) == pkgCache::Flag::Important) &&
187 NoImmConfigure == false) || ImmConfigureAll)
188 {
189 if(Debug && !ImmConfigureAll)
190 clog << "CreateOrderList(): Adding Immediate flag for " << I.Name() << endl;
191 List->Flag(I,pkgOrderList::Immediate);
192
193 if (!ImmConfigureAll) {
194 // Look for other install packages to make immediate configurea
195 ImmediateAdd(I, true);
196
197 // And again with the current version.
198 ImmediateAdd(I, false);
199 }
200 }
201
202 // Not interesting
203 if ((Cache[I].Keep() == true ||
204 Cache[I].InstVerIter(Cache) == I.CurrentVer()) &&
205 I.State() == pkgCache::PkgIterator::NeedsNothing &&
206 (Cache[I].iFlags & pkgDepCache::ReInstall) != pkgDepCache::ReInstall &&
207 (I.Purge() != false || Cache[I].Mode != pkgDepCache::ModeDelete ||
208 (Cache[I].iFlags & pkgDepCache::Purge) != pkgDepCache::Purge))
209 continue;
210
211 // Append it to the list
212 List->push_back(I);
213 }
214
215 return true;
216 }
217 /*}}}*/
218 // PM::DepAlwaysTrue - Returns true if this dep is irrelevent /*{{{*/
219 // ---------------------------------------------------------------------
220 /* The restriction on provides is to eliminate the case when provides
221 are transitioning between valid states [ie exim to smail] */
222 bool pkgPackageManager::DepAlwaysTrue(DepIterator D)
223 {
224 if (D.TargetPkg()->ProvidesList != 0)
225 return false;
226
227 if ((Cache[D] & pkgDepCache::DepInstall) != 0 &&
228 (Cache[D] & pkgDepCache::DepNow) != 0)
229 return true;
230 return false;
231 }
232 /*}}}*/
233 // PM::CheckRConflicts - Look for reverse conflicts /*{{{*/
234 // ---------------------------------------------------------------------
235 /* This looks over the reverses for a conflicts line that needs early
236 removal. */
237 bool pkgPackageManager::CheckRConflicts(PkgIterator Pkg,DepIterator D,
238 const char *Ver)
239 {
240 for (;D.end() == false; D++)
241 {
242 if (D->Type != pkgCache::Dep::Conflicts &&
243 D->Type != pkgCache::Dep::Obsoletes)
244 continue;
245
246 // The package hasnt been changed
247 if (List->IsNow(Pkg) == false)
248 continue;
249
250 // Ignore self conflicts, ignore conflicts from irrelevent versions
251 if (D.ParentPkg() == Pkg || D.ParentVer() != D.ParentPkg().CurrentVer())
252 continue;
253
254 if (Cache.VS().CheckDep(Ver,D->CompareOp,D.TargetVer()) == false)
255 continue;
256
257 if (EarlyRemove(D.ParentPkg()) == false)
258 return _error->Error("Reverse conflicts early remove for package '%s' failed",
259 Pkg.Name());
260 }
261 return true;
262 }
263 /*}}}*/
264 // PM::ConfigureAll - Run the all out configuration /*{{{*/
265 // ---------------------------------------------------------------------
266 /* This configures every package. It is assumed they are all unpacked and
267 that the final configuration is valid. This is also used to catch packages
268 that have not been configured when using ImmConfigureAll */
269 bool pkgPackageManager::ConfigureAll()
270 {
271 pkgOrderList OList(&Cache);
272
273 // Populate the order list
274 for (pkgOrderList::iterator I = List->begin(); I != List->end(); I++)
275 if (List->IsFlag(pkgCache::PkgIterator(Cache,*I),
276 pkgOrderList::UnPacked) == true)
277 OList.push_back(*I);
278
279 if (OList.OrderConfigure() == false)
280 return false;
281
282 std::string const conf = _config->Find("PackageManager::Configure","all");
283 bool const ConfigurePkgs = (conf == "all");
284
285 // Perform the configuring
286 for (pkgOrderList::iterator I = OList.begin(); I != OList.end(); I++)
287 {
288 PkgIterator Pkg(Cache,*I);
289
290 /* Check if the package has been configured, this can happen if SmartConfigure
291 calls its self */
292 if (List->IsFlag(Pkg,pkgOrderList::Configured)) continue;
293
294 if (ConfigurePkgs == true && SmartConfigure(Pkg) == false) {
295 if (ImmConfigureAll)
296 _error->Error(_("Could not perform immediate configuration on '%s'. "
297 "Please see man 5 apt.conf under APT::Immediate-Configure for details. (%d)"),Pkg.Name(),1);
298 else
299 _error->Error("Internal error, packages left unconfigured. %s",Pkg.Name());
300 return false;
301 }
302
303 List->Flag(Pkg,pkgOrderList::Configured,pkgOrderList::States);
304 }
305
306 return true;
307 }
308 /*}}}*/
309 // PM::SmartConfigure - Perform immediate configuration of the pkg /*{{{*/
310 // ---------------------------------------------------------------------
311 /* This function tries to put the system in a state where Pkg can be configured.
312 This involves checking each of Pkg's dependanies and unpacking and
313 configuring packages where needed.
314
315 Note on failure: This method can fail, without causing any problems.
316 This can happen when using Immediate-Configure-All, SmartUnPack may call
317 SmartConfigure, it may fail because of a complex dependancy situation, but
318 a error will only be reported if ConfigureAll fails. This is why some of the
319 messages this function reports on failure (return false;) as just warnings
320 only shown when debuging*/
321 bool pkgPackageManager::SmartConfigure(PkgIterator Pkg)
322 {
323 if (Debug) {
324 VerIterator InstallVer = VerIterator(Cache,Cache[Pkg].InstallVer);
325 clog << "SmartConfigure " << Pkg.Name() << " " << InstallVer.VerStr() << endl;
326 }
327
328 // If this is true, only check and correct and dependancies without the Loop flag
329 bool PkgLoop = List->IsFlag(Pkg,pkgOrderList::Loop);
330
331 VerIterator const instVer = Cache[Pkg].InstVerIter(Cache);
332
333 /* Because of the ordered list, most dependancies should be unpacked,
334 however if there is a loop (A depends on B, B depends on A) this will not
335 be the case, so check for dependancies before configuring. */
336 bool Bad = false;
337 for (DepIterator D = instVer.DependsList();
338 D.end() == false; )
339 {
340 // Compute a single dependency element (glob or)
341 pkgCache::DepIterator Start;
342 pkgCache::DepIterator End;
343 D.GlobOr(Start,End);
344
345 if (End->Type == pkgCache::Dep::Depends)
346 Bad = true;
347
348 // Check for dependanices that have not been unpacked, probably due to loops.
349 while (End->Type == pkgCache::Dep::Depends) {
350 PkgIterator DepPkg;
351 VerIterator InstallVer;
352 SPtrArray<Version *> VList = Start.AllTargets();
353
354 // Check through each version of each package that could satisfy this dependancy
355 for (Version **I = VList; *I != 0; I++) {
356 VerIterator Ver(Cache,*I);
357 DepPkg = Ver.ParentPkg();
358 InstallVer = VerIterator(Cache,Cache[DepPkg].InstallVer);
359
360 // Check if the current version of the package is avalible and will satisfy this dependancy
361 if (DepPkg.CurrentVer() == Ver && List->IsNow(DepPkg) == true &&
362 !List->IsFlag(DepPkg,pkgOrderList::Removed) && DepPkg.State() == PkgIterator::NeedsNothing)
363 {
364 Bad = false;
365 break;
366 }
367
368 // Check if the version that is going to be installed will satisfy the dependancy
369 if (Cache[DepPkg].InstallVer == *I) {
370 if (List->IsFlag(DepPkg,pkgOrderList::UnPacked)) {
371 if (PkgLoop && List->IsFlag(DepPkg,pkgOrderList::Loop)) {
372 // This dependancy has already been dealt with by another SmartConfigure on Pkg
373 Bad = false;
374 break;
375 }
376 /* Check for a loop to prevent one forming
377 If A depends on B and B depends on A, SmartConfigure will
378 just hop between them if this is not checked */
379 List->Flag(Pkg,pkgOrderList::Loop);
380 // If SmartConfigure was succesfull, Bad is false, so break
381 Bad = !SmartConfigure(DepPkg);
382 List->RmFlag(Pkg,pkgOrderList::Loop);
383 if (!Bad) break;
384 } else if (List->IsFlag(DepPkg,pkgOrderList::Configured)) {
385 Bad = false;
386 break;
387 }
388 }
389 }
390
391 /* If the dependany is still not satisfied, try, if possible, unpacking a package to satisfy it */
392 if (InstallVer != 0 && Bad) {
393 Bad = false;
394 if (List->IsNow(DepPkg) && !List->IsFlag(DepPkg,pkgOrderList::Loop)) {
395 List->Flag(Pkg,pkgOrderList::Loop);
396 if (Debug)
397 cout << " Unpacking " << DepPkg.Name() << " to avoid loop" << endl;
398 SmartUnPack(DepPkg, true);
399 List->RmFlag(Pkg,pkgOrderList::Loop);
400 }
401 }
402
403 if (Start==End) {
404 if (Bad && Debug) {
405 if (!List->IsFlag(DepPkg,pkgOrderList::Loop)) {
406 _error->Warning("Could not satisfy dependancies for %s",Pkg.Name());
407 }
408 }
409 break;
410 } else {
411 Start++;
412 }
413 }
414 }
415
416 if (Bad) {
417 if (Debug)
418 _error->Warning(_("Could not configure '%s'. "),Pkg.Name());
419 return false;
420 }
421
422 if (PkgLoop) return true;
423
424 static std::string const conf = _config->Find("PackageManager::Configure","all");
425 static bool const ConfigurePkgs = (conf == "all" || conf == "smart");
426
427 if (List->IsFlag(Pkg,pkgOrderList::Configured))
428 return _error->Error("Internal configure error on '%s'. ",Pkg.Name(),1);
429
430 if (ConfigurePkgs == true && Configure(Pkg) == false)
431 return false;
432
433 List->Flag(Pkg,pkgOrderList::Configured,pkgOrderList::States);
434
435 if (Cache[Pkg].InstVerIter(Cache)->MultiArch == pkgCache::Version::Same)
436 for (PkgIterator P = Pkg.Group().PackageList();
437 P.end() == false; P = Pkg.Group().NextPkg(P))
438 {
439 if (Pkg == P || List->IsFlag(P,pkgOrderList::Configured) == true ||
440 Cache[P].InstallVer == 0 || (P.CurrentVer() == Cache[P].InstallVer &&
441 (Cache[Pkg].iFlags & pkgDepCache::ReInstall) != pkgDepCache::ReInstall))
442 continue;
443 SmartConfigure(P);
444 }
445
446 // Sanity Check
447 if (List->IsFlag(Pkg,pkgOrderList::Configured) == false)
448 return _error->Error(_("Could not configure '%s'. "),Pkg.Name());
449
450 return true;
451 }
452 /*}}}*/
453 // PM::EarlyRemove - Perform removal of packages before their time /*{{{*/
454 // ---------------------------------------------------------------------
455 /* This is called to deal with conflicts arising from unpacking */
456 bool pkgPackageManager::EarlyRemove(PkgIterator Pkg)
457 {
458 if (List->IsNow(Pkg) == false)
459 return true;
460
461 // Already removed it
462 if (List->IsFlag(Pkg,pkgOrderList::Removed) == true)
463 return true;
464
465 // Woops, it will not be re-installed!
466 if (List->IsFlag(Pkg,pkgOrderList::InList) == false)
467 return false;
468
469 // Essential packages get special treatment
470 bool IsEssential = false;
471 if ((Pkg->Flags & pkgCache::Flag::Essential) != 0)
472 IsEssential = true;
473
474 /* Check for packages that are the dependents of essential packages and
475 promote them too */
476 if (Pkg->CurrentVer != 0)
477 {
478 for (DepIterator D = Pkg.RevDependsList(); D.end() == false &&
479 IsEssential == false; D++)
480 if (D->Type == pkgCache::Dep::Depends || D->Type == pkgCache::Dep::PreDepends)
481 if ((D.ParentPkg()->Flags & pkgCache::Flag::Essential) != 0)
482 IsEssential = true;
483 }
484
485 if (IsEssential == true)
486 {
487 if (_config->FindB("APT::Force-LoopBreak",false) == false)
488 return _error->Error(_("This installation run will require temporarily "
489 "removing the essential package %s due to a "
490 "Conflicts/Pre-Depends loop. This is often bad, "
491 "but if you really want to do it, activate the "
492 "APT::Force-LoopBreak option."),Pkg.Name());
493 }
494
495 bool Res = SmartRemove(Pkg);
496 if (Cache[Pkg].Delete() == false)
497 List->Flag(Pkg,pkgOrderList::Removed,pkgOrderList::States);
498
499 return Res;
500 }
501 /*}}}*/
502 // PM::SmartRemove - Removal Helper /*{{{*/
503 // ---------------------------------------------------------------------
504 /* */
505 bool pkgPackageManager::SmartRemove(PkgIterator Pkg)
506 {
507 if (List->IsNow(Pkg) == false)
508 return true;
509
510 List->Flag(Pkg,pkgOrderList::Configured,pkgOrderList::States);
511
512 return Remove(Pkg,(Cache[Pkg].iFlags & pkgDepCache::Purge) == pkgDepCache::Purge);
513 return true;
514 }
515 /*}}}*/
516 // PM::SmartUnPack - Install helper /*{{{*/
517 // ---------------------------------------------------------------------
518 /* This puts the system in a state where it can Unpack Pkg, if Pkg is allready
519 unpacked, or when it has been unpacked, if Immediate==true it configures it. */
520 bool pkgPackageManager::SmartUnPack(PkgIterator Pkg)
521 {
522 return SmartUnPack(Pkg, true);
523 }
524 bool pkgPackageManager::SmartUnPack(PkgIterator Pkg, bool const Immediate)
525 {
526 if (Debug) {
527 clog << "SmartUnPack " << Pkg.Name();
528 VerIterator InstallVer = VerIterator(Cache,Cache[Pkg].InstallVer);
529 if (Pkg.CurrentVer() == 0)
530 cout << " (install version " << InstallVer.VerStr() << ")" << endl;
531 else
532 cout << " (replace version " << Pkg.CurrentVer().VerStr() << " with " << InstallVer.VerStr() << ")" << endl;
533 }
534
535 // Check if it is already unpacked
536 if (Pkg.State() == pkgCache::PkgIterator::NeedsConfigure &&
537 Cache[Pkg].Keep() == true)
538 {
539 cout << "SmartUnPack called on Package " << Pkg.Name() << " but its unpacked" << endl;
540 return false;
541 }
542
543 bool PkgLoop = List->IsFlag(Pkg,pkgOrderList::Loop);
544
545 VerIterator const instVer = Cache[Pkg].InstVerIter(Cache);
546
547 /* PreUnpack Checks: This loop checks and attempts to rectify and problems that would prevent the package being unpacked.
548 It addresses: PreDepends, Conflicts, Obsoletes and Breaks (DpkgBreaks). Any resolutions that do not require it should
549 avoid configuration (calling SmartUnpack with Immediate=true), this is because when unpacking some packages with
550 complex dependancy structures, trying to configure some packages while breaking the loops can complicate things .
551 This will be either dealt with if the package is configured as a dependency of Pkg (if and when Pkg is configured),
552 or by the ConfigureAll call at the end of the for loop in OrderInstall. */
553 for (DepIterator D = instVer.DependsList();
554 D.end() == false; )
555 {
556 // Compute a single dependency element (glob or)
557 pkgCache::DepIterator Start;
558 pkgCache::DepIterator End;
559 D.GlobOr(Start,End);
560
561 while (End->Type == pkgCache::Dep::PreDepends)
562 {
563 if (Debug)
564 clog << "PreDepends order for " << Pkg.Name() << std::endl;
565
566 // Look for possible ok targets.
567 SPtrArray<Version *> VList = Start.AllTargets();
568 bool Bad = true;
569 for (Version **I = VList; *I != 0 && Bad == true; I++)
570 {
571 VerIterator Ver(Cache,*I);
572 PkgIterator Pkg = Ver.ParentPkg();
573
574 // See if the current version is ok
575 if (Pkg.CurrentVer() == Ver && List->IsNow(Pkg) == true &&
576 Pkg.State() == PkgIterator::NeedsNothing)
577 {
578 Bad = false;
579 if (Debug)
580 clog << "Found ok package " << Pkg.Name() << endl;
581 continue;
582 }
583 }
584
585 // Look for something that could be configured.
586 for (Version **I = VList; *I != 0 && Bad == true; I++)
587 {
588 VerIterator Ver(Cache,*I);
589 PkgIterator Pkg = Ver.ParentPkg();
590
591 // Not the install version
592 if (Cache[Pkg].InstallVer != *I ||
593 (Cache[Pkg].Keep() == true && Pkg.State() == PkgIterator::NeedsNothing))
594 continue;
595
596 if (List->IsFlag(Pkg,pkgOrderList::Configured)) {
597 Bad = false;
598 continue;
599 }
600
601 if (Debug)
602 clog << "Trying to SmartConfigure " << Pkg.Name() << endl;
603 Bad = !SmartConfigure(Pkg);
604 }
605
606 /* If this or element did not match then continue on to the
607 next or element until a matching element is found */
608 if (Bad == true)
609 {
610 // This triggers if someone make a pre-depends/depend loop.
611 if (Start == End)
612 return _error->Error("Couldn't configure pre-depend %s for %s, "
613 "probably a dependency cycle.",
614 End.TargetPkg().Name(),Pkg.Name());
615 Start++;
616 }
617 else
618 break;
619 }
620
621 if (End->Type == pkgCache::Dep::Conflicts ||
622 End->Type == pkgCache::Dep::Obsoletes)
623 {
624 /* Look for conflicts. Two packages that are both in the install
625 state cannot conflict so we don't check.. */
626 SPtrArray<Version *> VList = End.AllTargets();
627 for (Version **I = VList; *I != 0; I++)
628 {
629 VerIterator Ver(Cache,*I);
630 PkgIterator ConflictPkg = Ver.ParentPkg();
631 VerIterator InstallVer(Cache,Cache[ConflictPkg].InstallVer);
632
633 // See if the current version is conflicting
634 if (ConflictPkg.CurrentVer() == Ver && List->IsNow(ConflictPkg))
635 {
636 cout << Pkg.Name() << " conflicts with " << ConflictPkg.Name() << endl;
637 /* If a loop is not present or has not yet been detected, attempt to unpack packages
638 to resolve this conflict. If there is a loop present, remove packages to resolve this conflict */
639 if (!List->IsFlag(ConflictPkg,pkgOrderList::Loop)) {
640 if (Cache[ConflictPkg].Keep() == 0 && Cache[ConflictPkg].InstallVer != 0) {
641 if (Debug)
642 cout << "Unpacking " << ConflictPkg.Name() << " to prevent conflict" << endl;
643 List->Flag(Pkg,pkgOrderList::Loop);
644 SmartUnPack(ConflictPkg,false);
645 // Remove loop to allow it to be used later if needed
646 List->RmFlag(Pkg,pkgOrderList::Loop);
647 } else {
648 if (EarlyRemove(ConflictPkg) == false)
649 return _error->Error("Internal Error, Could not early remove %s",ConflictPkg.Name());
650 }
651 } else {
652 if (!List->IsFlag(ConflictPkg,pkgOrderList::Removed)) {
653 if (Debug)
654 cout << "Because of conficts knot, removing " << ConflictPkg.Name() << " to conflict violation" << endl;
655 if (EarlyRemove(ConflictPkg) == false)
656 return _error->Error("Internal Error, Could not early remove %s",ConflictPkg.Name());
657 }
658 }
659 }
660 }
661 }
662
663 // Check for breaks
664 if (End->Type == pkgCache::Dep::DpkgBreaks) {
665 SPtrArray<Version *> VList = End.AllTargets();
666 for (Version **I = VList; *I != 0; I++)
667 {
668 VerIterator Ver(Cache,*I);
669 PkgIterator BrokenPkg = Ver.ParentPkg();
670 VerIterator InstallVer(Cache,Cache[BrokenPkg].InstallVer);
671
672 // Check if it needs to be unpacked
673 if (List->IsFlag(BrokenPkg,pkgOrderList::InList) && Cache[BrokenPkg].Delete() == false &&
674 List->IsNow(BrokenPkg)) {
675 if (PkgLoop && List->IsFlag(BrokenPkg,pkgOrderList::Loop)) {
676 // This dependancy has already been dealt with by another SmartUnPack on Pkg
677 break;
678 }
679 List->Flag(Pkg,pkgOrderList::Loop);
680 // Found a break, so unpack the package
681 if (Debug)
682 cout << " Unpacking " << BrokenPkg.Name() << " to avoid break" << endl;
683
684 SmartUnPack(BrokenPkg, false);
685 List->RmFlag(Pkg,pkgOrderList::Loop);
686 }
687 // Check if a package needs to be removed
688 if (Cache[BrokenPkg].Delete() == true && !List->IsFlag(BrokenPkg,pkgOrderList::Configured)) {
689 if (Debug)
690 cout << " Removing " << BrokenPkg.Name() << " to avoid break" << endl;
691 SmartRemove(BrokenPkg);
692 }
693 }
694 }
695 }
696
697 // Check for reverse conflicts.
698 if (CheckRConflicts(Pkg,Pkg.RevDependsList(),
699 instVer.VerStr()) == false)
700 return false;
701
702 for (PrvIterator P = instVer.ProvidesList();
703 P.end() == false; P++)
704 CheckRConflicts(Pkg,P.ParentPkg().RevDependsList(),P.ProvideVersion());
705
706 if (PkgLoop) return true;
707
708 List->Flag(Pkg,pkgOrderList::UnPacked,pkgOrderList::States);
709
710 if (instVer->MultiArch == pkgCache::Version::Same)
711 for (PkgIterator P = Pkg.Group().PackageList();
712 P.end() == false; P = Pkg.Group().NextPkg(P))
713 {
714 if (Pkg == P || List->IsFlag(P,pkgOrderList::UnPacked) == true ||
715 Cache[P].InstallVer == 0 || (P.CurrentVer() == Cache[P].InstallVer &&
716 (Cache[Pkg].iFlags & pkgDepCache::ReInstall) != pkgDepCache::ReInstall))
717 continue;
718 SmartUnPack(P, false);
719 }
720
721 if(Install(Pkg,FileNames[Pkg->ID]) == false)
722 return false;
723
724 if (Immediate == true && List->IsFlag(Pkg,pkgOrderList::Immediate) == true) {
725
726 // Perform immedate configuration of the package.
727 if (SmartConfigure(Pkg) == false)
728 _error->Warning(_("Could not perform immediate configuration on '%s'. "
729 "Please see man 5 apt.conf under APT::Immediate-Configure for details. (%d)"),Pkg.Name(),2);
730 }
731
732 return true;
733 }
734 /*}}}*/
735 // PM::OrderInstall - Installation ordering routine /*{{{*/
736 // ---------------------------------------------------------------------
737 /* */
738 pkgPackageManager::OrderResult pkgPackageManager::OrderInstall()
739 {
740 if (CreateOrderList() == false)
741 return Failed;
742
743 Reset();
744
745 if (Debug == true)
746 clog << "Beginning to order" << endl;
747
748 bool const ordering =
749 _config->FindB("PackageManager::UnpackAll",true) ?
750 List->OrderUnpack(FileNames) : List->OrderCritical();
751 if (ordering == false)
752 {
753 _error->Error("Internal ordering error");
754 return Failed;
755 }
756
757 if (Debug == true)
758 clog << "Done ordering" << endl;
759
760 bool DoneSomething = false;
761 for (pkgOrderList::iterator I = List->begin(); I != List->end(); I++)
762 {
763 PkgIterator Pkg(Cache,*I);
764
765 if (List->IsNow(Pkg) == false)
766 {
767 if (!List->IsFlag(Pkg,pkgOrderList::Configured) && !NoImmConfigure) {
768 if (SmartConfigure(Pkg) == false && Debug)
769 _error->Warning("Internal Error, Could not configure %s",Pkg.Name());
770 // FIXME: The above warning message might need changing
771 } else {
772 if (Debug == true)
773 clog << "Skipping already done " << Pkg.Name() << endl;
774 }
775 continue;
776
777 }
778
779 if (List->IsMissing(Pkg) == true)
780 {
781 if (Debug == true)
782 clog << "Sequence completed at " << Pkg.Name() << endl;
783 if (DoneSomething == false)
784 {
785 _error->Error("Internal Error, ordering was unable to handle the media swap");
786 return Failed;
787 }
788 return Incomplete;
789 }
790
791 // Sanity check
792 if (Cache[Pkg].Keep() == true &&
793 Pkg.State() == pkgCache::PkgIterator::NeedsNothing &&
794 (Cache[Pkg].iFlags & pkgDepCache::ReInstall) != pkgDepCache::ReInstall)
795 {
796 _error->Error("Internal Error, trying to manipulate a kept package (%s)",Pkg.Name());
797 return Failed;
798 }
799
800 // Perform a delete or an install
801 if (Cache[Pkg].Delete() == true)
802 {
803 if (SmartRemove(Pkg) == false)
804 return Failed;
805 }
806 else
807 if (SmartUnPack(Pkg) == false)
808 return Failed;
809 DoneSomething = true;
810
811 if (ImmConfigureAll) {
812 /* ConfigureAll here to pick up and packages left unconfigured becuase they were unpacked in the
813 "PreUnpack Checks" section */
814 if (!ConfigureAll())
815 return Failed;
816 }
817 }
818
819 // Final run through the configure phase
820 if (ConfigureAll() == false)
821 return Failed;
822
823 // Sanity check
824 for (pkgOrderList::iterator I = List->begin(); I != List->end(); I++)
825 {
826 if (List->IsFlag(*I,pkgOrderList::Configured) == false)
827 {
828 _error->Error("Internal error, packages left unconfigured. %s",
829 PkgIterator(Cache,*I).Name());
830 return Failed;
831 }
832 }
833
834 return Completed;
835 }
836 /*}}}*/
837 // PM::DoInstallPostFork - Does install part that happens after the fork /*{{{*/
838 // ---------------------------------------------------------------------
839 pkgPackageManager::OrderResult
840 pkgPackageManager::DoInstallPostFork(int statusFd)
841 {
842 if(statusFd > 0)
843 // FIXME: use SetCloseExec here once it taught about throwing
844 // exceptions instead of doing _exit(100) on failure
845 fcntl(statusFd,F_SETFD,FD_CLOEXEC);
846 bool goResult = Go(statusFd);
847 if(goResult == false)
848 return Failed;
849
850 return Res;
851 };
852
853 // PM::DoInstall - Does the installation /*{{{*/
854 // ---------------------------------------------------------------------
855 /* This uses the filenames in FileNames and the information in the
856 DepCache to perform the installation of packages.*/
857 pkgPackageManager::OrderResult pkgPackageManager::DoInstall(int statusFd)
858 {
859 if(DoInstallPreFork() == Failed)
860 return Failed;
861
862 return DoInstallPostFork(statusFd);
863 }
864 /*}}}*/