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1// -*- mode: cpp; mode: fold -*-
2// Description /*{{{*/
3// $Id: algorithms.cc,v 1.23 1999/07/30 02:54:25 jgg Exp $
4/* ######################################################################
5
6 Algorithms - A set of misc algorithms
7
8 The pkgProblemResolver class has become insanely complex and
9 very sophisticated, it handles every test case I have thrown at it
10 to my satisfaction. Understanding exactly why all the steps the class
11 does are required is difficult and changing though not very risky
12 may result in other cases not working.
13
14 ##################################################################### */
15 /*}}}*/
16// Include Files /*{{{*/
17#ifdef __GNUG__
18#pragma implementation "apt-pkg/algorithms.h"
19#endif
20#include <apt-pkg/algorithms.h>
21#include <apt-pkg/error.h>
22#include <apt-pkg/configuration.h>
23#include <iostream.h>
24 /*}}}*/
25
26pkgProblemResolver *pkgProblemResolver::This = 0;
27
28// Simulate::Simulate - Constructor /*{{{*/
29// ---------------------------------------------------------------------
30/* */
31pkgSimulate::pkgSimulate(pkgDepCache &Cache) : pkgPackageManager(Cache),
32 Sim(Cache.GetMap())
33{
34 Flags = new unsigned char[Cache.HeaderP->PackageCount];
35 memset(Flags,0,sizeof(*Flags)*Cache.HeaderP->PackageCount);
36
37 // Fake a filename so as not to activate the media swapping
38 string Jnk = "SIMULATE";
39 for (unsigned int I = 0; I != Cache.Head().PackageCount; I++)
40 FileNames[I] = Jnk;
41}
42 /*}}}*/
43// Simulate::Install - Simulate unpacking of a package /*{{{*/
44// ---------------------------------------------------------------------
45/* */
46bool pkgSimulate::Install(PkgIterator iPkg,string /*File*/)
47{
48 // Adapt the iterator
49 PkgIterator Pkg = Sim.FindPkg(iPkg.Name());
50 Flags[Pkg->ID] = 1;
51
52 cout << "Inst " << Pkg.Name();
53 Sim.MarkInstall(Pkg,false);
54
55 // Look for broken conflicts+predepends.
56 for (PkgIterator I = Sim.PkgBegin(); I.end() == false; I++)
57 {
58 if (Sim[I].InstallVer == 0)
59 continue;
60
61 for (DepIterator D = Sim[I].InstVerIter(Sim).DependsList(); D.end() == false; D++)
62 if (D->Type == pkgCache::Dep::Conflicts || D->Type == pkgCache::Dep::PreDepends)
63 {
64 if ((Sim[D] & pkgDepCache::DepInstall) == 0)
65 {
66 cout << " [" << I.Name() << " on " << D.TargetPkg().Name() << ']';
67 if (D->Type == pkgCache::Dep::Conflicts)
68 _error->Error("Fatal, conflicts violated %s",I.Name());
69 }
70 }
71 }
72
73 if (Sim.BrokenCount() != 0)
74 ShortBreaks();
75 else
76 cout << endl;
77 return true;
78}
79 /*}}}*/
80// Simulate::Configure - Simulate configuration of a Package /*{{{*/
81// ---------------------------------------------------------------------
82/* This is not an acurate simulation of relatity, we should really not
83 install the package.. For some investigations it may be necessary
84 however. */
85bool pkgSimulate::Configure(PkgIterator iPkg)
86{
87 // Adapt the iterator
88 PkgIterator Pkg = Sim.FindPkg(iPkg.Name());
89
90 Flags[Pkg->ID] = 2;
91// Sim.MarkInstall(Pkg,false);
92 if (Sim[Pkg].InstBroken() == true)
93 {
94 cout << "Conf " << Pkg.Name() << " broken" << endl;
95
96 Sim.Update();
97
98 // Print out each package and the failed dependencies
99 for (pkgCache::DepIterator D = Sim[Pkg].InstVerIter(Sim).DependsList(); D.end() == false; D++)
100 {
101 if (Sim.IsImportantDep(D) == false ||
102 (Sim[D] & pkgDepCache::DepInstall) != 0)
103 continue;
104
105 if (D->Type == pkgCache::Dep::Conflicts)
106 cout << " Conflicts:" << D.TargetPkg().Name();
107 else
108 cout << " Depends:" << D.TargetPkg().Name();
109 }
110 cout << endl;
111
112 _error->Error("Conf Broken %s",Pkg.Name());
113 }
114 else
115 cout << "Conf " << Pkg.Name();
116
117 if (Sim.BrokenCount() != 0)
118 ShortBreaks();
119 else
120 cout << endl;
121
122 return true;
123}
124 /*}}}*/
125// Simulate::Remove - Simulate the removal of a package /*{{{*/
126// ---------------------------------------------------------------------
127/* */
128bool pkgSimulate::Remove(PkgIterator iPkg,bool Purge)
129{
130 // Adapt the iterator
131 PkgIterator Pkg = Sim.FindPkg(iPkg.Name());
132
133 Flags[Pkg->ID] = 3;
134 Sim.MarkDelete(Pkg);
135 if (Purge == true)
136 cout << "Purg " << Pkg.Name();
137 else
138 cout << "Remv " << Pkg.Name();
139
140 if (Sim.BrokenCount() != 0)
141 ShortBreaks();
142 else
143 cout << endl;
144
145 return true;
146}
147 /*}}}*/
148// Simulate::ShortBreaks - Print out a short line describing all breaks /*{{{*/
149// ---------------------------------------------------------------------
150/* */
151void pkgSimulate::ShortBreaks()
152{
153 cout << " [";
154 for (PkgIterator I = Sim.PkgBegin(); I.end() == false; I++)
155 {
156 if (Sim[I].InstBroken() == true)
157 {
158 if (Flags[I->ID] == 0)
159 cout << I.Name() << ' ';
160/* else
161 cout << I.Name() << "! ";*/
162 }
163 }
164 cout << ']' << endl;
165}
166 /*}}}*/
167// ApplyStatus - Adjust for non-ok packages /*{{{*/
168// ---------------------------------------------------------------------
169/* We attempt to change the state of the all packages that have failed
170 installation toward their real state. The ordering code will perform
171 the necessary calculations to deal with the problems. */
172bool pkgApplyStatus(pkgDepCache &Cache)
173{
174 for (pkgCache::PkgIterator I = Cache.PkgBegin(); I.end() == false; I++)
175 {
176 // Only choice for a ReInstReq package is to reinstall
177 if (I->InstState == pkgCache::State::ReInstReq ||
178 I->InstState == pkgCache::State::HoldReInstReq)
179 {
180 if (I.CurrentVer().Downloadable() == true)
181 Cache.MarkKeep(I);
182 else
183 {
184 // Is this right? Will dpkg choke on an upgrade?
185 if (Cache[I].CandidateVerIter(Cache).Downloadable() == true)
186 Cache.MarkInstall(I);
187 else
188 return _error->Error("The package %s needs to be reinstalled, "
189 "but I can't find an archive for it.",I.Name());
190 }
191
192 continue;
193 }
194
195 switch (I->CurrentState)
196 {
197 /* This means installation failed somehow - it does not need to be
198 re-unpacked (probably) */
199 case pkgCache::State::UnPacked:
200 case pkgCache::State::HalfConfigured:
201 if (I.CurrentVer().Downloadable() == true ||
202 I.State() != pkgCache::PkgIterator::NeedsUnpack)
203 Cache.MarkKeep(I);
204 else
205 {
206 if (Cache[I].CandidateVerIter(Cache).Downloadable() == true)
207 Cache.MarkInstall(I);
208 else
209 Cache.MarkDelete(I);
210 }
211 break;
212
213 // This means removal failed
214 case pkgCache::State::HalfInstalled:
215 Cache.MarkDelete(I);
216 break;
217
218 default:
219 if (I->InstState != pkgCache::State::Ok)
220 return _error->Error("The package %s is not ok and I "
221 "don't know how to fix it!",I.Name());
222 }
223 }
224 return true;
225}
226 /*}}}*/
227// FixBroken - Fix broken packages /*{{{*/
228// ---------------------------------------------------------------------
229/* This autoinstalls every broken package and then runs the problem resolver
230 on the result. */
231bool pkgFixBroken(pkgDepCache &Cache)
232{
233 // Auto upgrade all broken packages
234 for (pkgCache::PkgIterator I = Cache.PkgBegin(); I.end() == false; I++)
235 if (Cache[I].NowBroken() == true)
236 Cache.MarkInstall(I,true);
237
238 /* Fix packages that are in a NeedArchive state but don't have a
239 downloadable install version */
240 for (pkgCache::PkgIterator I = Cache.PkgBegin(); I.end() == false; I++)
241 {
242 if (I.State() != pkgCache::PkgIterator::NeedsUnpack ||
243 Cache[I].Delete() == true)
244 continue;
245
246 if (Cache[I].InstVerIter(Cache).Downloadable() == false)
247 continue;
248
249 Cache.MarkInstall(I,true);
250 }
251
252 pkgProblemResolver Fix(Cache);
253 return Fix.Resolve(true);
254}
255 /*}}}*/
256// DistUpgrade - Distribution upgrade /*{{{*/
257// ---------------------------------------------------------------------
258/* This autoinstalls every package and then force installs every
259 pre-existing package. This creates the initial set of conditions which
260 most likely contain problems because too many things were installed.
261
262 The problem resolver is used to resolve the problems.
263 */
264bool pkgDistUpgrade(pkgDepCache &Cache)
265{
266 /* Auto upgrade all installed packages, this provides the basis
267 for the installation */
268 for (pkgCache::PkgIterator I = Cache.PkgBegin(); I.end() == false; I++)
269 if (I->CurrentVer != 0)
270 Cache.MarkInstall(I,true);
271
272 /* Now, auto upgrade all essential packages - this ensures that
273 the essential packages are present and working */
274 for (pkgCache::PkgIterator I = Cache.PkgBegin(); I.end() == false; I++)
275 if ((I->Flags & pkgCache::Flag::Essential) == pkgCache::Flag::Essential)
276 Cache.MarkInstall(I,true);
277
278 /* We do it again over all previously installed packages to force
279 conflict resolution on them all. */
280 for (pkgCache::PkgIterator I = Cache.PkgBegin(); I.end() == false; I++)
281 if (I->CurrentVer != 0)
282 Cache.MarkInstall(I,false);
283
284 pkgProblemResolver Fix(Cache);
285
286 // Hold back held packages.
287 if (_config->FindB("APT::Ingore-Hold",false) == false)
288 {
289 for (pkgCache::PkgIterator I = Cache.PkgBegin(); I.end() == false; I++)
290 {
291 if (I->SelectedState == pkgCache::State::Hold)
292 {
293 Fix.Protect(I);
294 Cache.MarkKeep(I);
295 }
296 }
297 }
298
299 return Fix.Resolve();
300}
301 /*}}}*/
302// AllUpgrade - Upgrade as many packages as possible /*{{{*/
303// ---------------------------------------------------------------------
304/* Right now the system must be consistent before this can be called.
305 It also will not change packages marked for install, it only tries
306 to install packages not marked for install */
307bool pkgAllUpgrade(pkgDepCache &Cache)
308{
309 pkgProblemResolver Fix(Cache);
310
311 if (Cache.BrokenCount() != 0)
312 return false;
313
314 // Upgrade all installed packages
315 for (pkgCache::PkgIterator I = Cache.PkgBegin(); I.end() == false; I++)
316 {
317 if (Cache[I].Install() == true)
318 Fix.Protect(I);
319
320 if (_config->FindB("APT::Ingore-Hold",false) == false)
321 if (I->SelectedState == pkgCache::State::Hold)
322 continue;
323
324 if (I->CurrentVer != 0 && Cache[I].InstallVer != 0)
325 Cache.MarkInstall(I,false);
326 }
327
328 return Fix.ResolveByKeep();
329}
330 /*}}}*/
331// MinimizeUpgrade - Minimizes the set of packages to be upgraded /*{{{*/
332// ---------------------------------------------------------------------
333/* This simply goes over the entire set of packages and tries to keep
334 each package marked for upgrade. If a conflict is generated then
335 the package is restored. */
336bool pkgMinimizeUpgrade(pkgDepCache &Cache)
337{
338 if (Cache.BrokenCount() != 0)
339 return false;
340
341 // We loop indefinately to get the minimal set size.
342 bool Change = false;
343 unsigned int Count = 0;
344 do
345 {
346 Change = false;
347 for (pkgCache::PkgIterator I = Cache.PkgBegin(); I.end() == false; I++)
348 {
349 // Not interesting
350 if (Cache[I].Upgrade() == false || Cache[I].NewInstall() == true)
351 continue;
352
353 // Keep it and see if that is OK
354 Cache.MarkKeep(I);
355 if (Cache.BrokenCount() != 0)
356 Cache.MarkInstall(I,false);
357 else
358 {
359 // If keep didnt actually do anything then there was no change..
360 if (Cache[I].Upgrade() == false)
361 Change = true;
362 }
363 }
364 Count++;
365 }
366 while (Change == true && Count < 10);
367
368 if (Cache.BrokenCount() != 0)
369 return _error->Error("Internal Error in pkgMinimizeUpgrade");
370
371 return true;
372}
373 /*}}}*/
374
375// ProblemResolver::pkgProblemResolver - Constructor /*{{{*/
376// ---------------------------------------------------------------------
377/* */
378pkgProblemResolver::pkgProblemResolver(pkgDepCache &Cache) : Cache(Cache)
379{
380 // Allocate memory
381 unsigned long Size = Cache.HeaderP->PackageCount;
382 Scores = new signed short[Size];
383 Flags = new unsigned char[Size];
384 memset(Flags,0,sizeof(*Flags)*Size);
385
386 // Set debug to true to see its decision logic
387 Debug = _config->FindB("Debug::pkgProblemResolver",false);
388}
389 /*}}}*/
390// ProblemResolver::ScoreSort - Sort the list by score /*{{{*/
391// ---------------------------------------------------------------------
392/* */
393int pkgProblemResolver::ScoreSort(const void *a,const void *b)
394{
395 Package const **A = (Package const **)a;
396 Package const **B = (Package const **)b;
397 if (This->Scores[(*A)->ID] > This->Scores[(*B)->ID])
398 return -1;
399 if (This->Scores[(*A)->ID] < This->Scores[(*B)->ID])
400 return 1;
401 return 0;
402}
403 /*}}}*/
404// ProblemResolver::MakeScores - Make the score table /*{{{*/
405// ---------------------------------------------------------------------
406/* */
407void pkgProblemResolver::MakeScores()
408{
409 unsigned long Size = Cache.HeaderP->PackageCount;
410 memset(Scores,0,sizeof(*Scores)*Size);
411
412 // Generate the base scores for a package based on its properties
413 for (pkgCache::PkgIterator I = Cache.PkgBegin(); I.end() == false; I++)
414 {
415 if (Cache[I].InstallVer == 0)
416 continue;
417
418 signed short &Score = Scores[I->ID];
419
420 /* This is arbitary, it should be high enough to elevate an
421 essantial package above most other packages but low enough
422 to allow an obsolete essential packages to be removed by
423 a conflicts on a powerfull normal package (ie libc6) */
424 if ((I->Flags & pkgCache::Flag::Essential) == pkgCache::Flag::Essential)
425 Score += 100;
426
427 // We transform the priority
428 // Important Required Standard Optional Extra
429 signed short PrioMap[] = {0,3,2,1,-1,-2};
430 if (Cache[I].InstVerIter(Cache)->Priority <= 5)
431 Score += PrioMap[Cache[I].InstVerIter(Cache)->Priority];
432
433 /* This helps to fix oddball problems with conflicting packages
434 on the same level. We enhance the score of installed packages */
435 if (I->CurrentVer != 0)
436 Score += 1;
437 }
438
439 // Now that we have the base scores we go and propogate dependencies
440 for (pkgCache::PkgIterator I = Cache.PkgBegin(); I.end() == false; I++)
441 {
442 if (Cache[I].InstallVer == 0)
443 continue;
444
445 for (pkgCache::DepIterator D = Cache[I].InstVerIter(Cache).DependsList(); D.end() == false; D++)
446 {
447 if (D->Type == pkgCache::Dep::Depends || D->Type == pkgCache::Dep::PreDepends)
448 Scores[D.TargetPkg()->ID]++;
449 }
450 }
451
452 // Copy the scores to advoid additive looping
453 signed short *OldScores = new signed short[Size];
454 memcpy(OldScores,Scores,sizeof(*Scores)*Size);
455
456 /* Now we cause 1 level of dependency inheritance, that is we add the
457 score of the packages that depend on the target Package. This
458 fortifies high scoring packages */
459 for (pkgCache::PkgIterator I = Cache.PkgBegin(); I.end() == false; I++)
460 {
461 if (Cache[I].InstallVer == 0)
462 continue;
463
464 for (pkgCache::DepIterator D = I.RevDependsList(); D.end() == false; D++)
465 {
466 // Only do it for the install version
467 if ((pkgCache::Version *)D.ParentVer() != Cache[D.ParentPkg()].InstallVer ||
468 (D->Type != pkgCache::Dep::Depends && D->Type != pkgCache::Dep::PreDepends))
469 continue;
470
471 Scores[I->ID] += abs(OldScores[D.ParentPkg()->ID]);
472 }
473 }
474
475 /* Now we propogate along provides. This makes the packages that
476 provide important packages extremely important */
477 for (pkgCache::PkgIterator I = Cache.PkgBegin(); I.end() == false; I++)
478 {
479 for (pkgCache::PrvIterator P = I.ProvidesList(); P.end() == false; P++)
480 {
481 // Only do it once per package
482 if ((pkgCache::Version *)P.OwnerVer() != Cache[P.OwnerPkg()].InstallVer)
483 continue;
484 Scores[P.OwnerPkg()->ID] += abs(Scores[I->ID] - OldScores[I->ID]);
485 }
486 }
487
488 /* Protected things are pushed really high up. This number should put them
489 ahead of everything */
490 for (pkgCache::PkgIterator I = Cache.PkgBegin(); I.end() == false; I++)
491 {
492 if ((Flags[I->ID] & Protected) != 0)
493 Scores[I->ID] += 10000;
494 if ((I->Flags & pkgCache::Flag::Essential) == pkgCache::Flag::Essential)
495 Scores[I->ID] += 5000;
496 }
497
498 delete [] OldScores;
499}
500 /*}}}*/
501// ProblemResolver::DoUpgrade - Attempt to upgrade this package /*{{{*/
502// ---------------------------------------------------------------------
503/* This goes through and tries to reinstall packages to make this package
504 installable */
505bool pkgProblemResolver::DoUpgrade(pkgCache::PkgIterator Pkg)
506{
507 if ((Flags[Pkg->ID] & Upgradable) == 0 || Cache[Pkg].Upgradable() == false)
508 return false;
509
510 Flags[Pkg->ID] &= ~Upgradable;
511
512 bool WasKept = Cache[Pkg].Keep();
513 Cache.MarkInstall(Pkg,false);
514
515 // This must be a virtual package or something like that.
516 if (Cache[Pkg].InstVerIter(Cache).end() == true)
517 return false;
518
519 // Isolate the problem dependency
520 bool Fail = false;
521 for (pkgCache::DepIterator D = Cache[Pkg].InstVerIter(Cache).DependsList(); D.end() == false;)
522 {
523 // Compute a single dependency element (glob or)
524 pkgCache::DepIterator Start = D;
525 pkgCache::DepIterator End = D;
526 unsigned char State = 0;
527 for (bool LastOR = true; D.end() == false && LastOR == true; D++)
528 {
529 State |= Cache[D];
530 LastOR = (D->CompareOp & pkgCache::Dep::Or) == pkgCache::Dep::Or;
531 if (LastOR == true)
532 End = D;
533 }
534
535 // We only worry about critical deps.
536 if (End.IsCritical() != true)
537 continue;
538
539 // Dep is ok
540 if ((Cache[End] & pkgDepCache::DepGInstall) == pkgDepCache::DepGInstall)
541 continue;
542
543 // Hm, the group is broken.. I have no idea how to handle this
544 if (Start != End)
545 {
546 clog << "Note, a broken or group was found in " << Pkg.Name() << "." << endl;
547 Fail = true;
548 break;
549 }
550
551 // Do not change protected packages
552 PkgIterator P = Start.SmartTargetPkg();
553 if ((Flags[P->ID] & Protected) == Protected)
554 {
555 if (Debug == true)
556 clog << " Reinet Failed because of protected " << P.Name() << endl;
557 Fail = true;
558 break;
559 }
560
561 // Upgrade the package if the candidate version will fix the problem.
562 if ((Cache[Start] & pkgDepCache::DepCVer) == pkgDepCache::DepCVer)
563 {
564 if (DoUpgrade(P) == false)
565 {
566 if (Debug == true)
567 clog << " Reinst Failed because of " << P.Name() << endl;
568 Fail = true;
569 break;
570 }
571 }
572 else
573 {
574 /* We let the algorithm deal with conflicts on its next iteration,
575 it is much smarter than us */
576 if (End->Type == pkgCache::Dep::Conflicts)
577 continue;
578
579 if (Debug == true)
580 clog << " Reinst Failed early because of " << Start.TargetPkg().Name() << endl;
581 Fail = true;
582 break;
583 }
584 }
585
586 // Undo our operations - it might be smart to undo everything this did..
587 if (Fail == true)
588 {
589 if (WasKept == true)
590 Cache.MarkKeep(Pkg);
591 else
592 Cache.MarkDelete(Pkg);
593 return false;
594 }
595
596 if (Debug == true)
597 clog << " Re-Instated " << Pkg.Name() << endl;
598 return true;
599}
600 /*}}}*/
601// ProblemResolver::Resolve - Run the resolution pass /*{{{*/
602// ---------------------------------------------------------------------
603/* This routines works by calculating a score for each package. The score
604 is derived by considering the package's priority and all reverse
605 dependents giving an integer that reflects the amount of breakage that
606 adjusting the package will inflict.
607
608 It goes from highest score to lowest and corrects all of the breaks by
609 keeping or removing the dependant packages. If that fails then it removes
610 the package itself and goes on. The routine should be able to intelligently
611 go from any broken state to a fixed state.
612
613 The BrokenFix flag enables a mode where the algorithm tries to
614 upgrade packages to advoid problems. */
615bool pkgProblemResolver::Resolve(bool BrokenFix)
616{
617 unsigned long Size = Cache.HeaderP->PackageCount;
618
619 // Record which packages are marked for install
620 bool Again = false;
621 do
622 {
623 Again = false;
624 for (pkgCache::PkgIterator I = Cache.PkgBegin(); I.end() == false; I++)
625 {
626 if (Cache[I].Install() == true)
627 Flags[I->ID] |= PreInstalled;
628 else
629 {
630 if (Cache[I].InstBroken() == true && BrokenFix == true)
631 {
632 Cache.MarkInstall(I,false);
633 if (Cache[I].Install() == true)
634 Again = true;
635 }
636
637 Flags[I->ID] &= ~PreInstalled;
638 }
639 Flags[I->ID] |= Upgradable;
640 }
641 }
642 while (Again == true);
643
644 if (Debug == true)
645 clog << "Starting" << endl;
646
647 MakeScores();
648
649 /* We have to order the packages so that the broken fixing pass
650 operates from highest score to lowest. This prevents problems when
651 high score packages cause the removal of lower score packages that
652 would cause the removal of even lower score packages. */
653 pkgCache::Package **PList = new pkgCache::Package *[Size];
654 pkgCache::Package **PEnd = PList;
655 for (pkgCache::PkgIterator I = Cache.PkgBegin(); I.end() == false; I++)
656 *PEnd++ = I;
657 This = this;
658 qsort(PList,PEnd - PList,sizeof(*PList),&ScoreSort);
659
660/* for (pkgCache::Package **K = PList; K != PEnd; K++)
661 if (Scores[(*K)->ID] != 0)
662 {
663 pkgCache::PkgIterator Pkg(Cache,*K);
664 clog << Scores[(*K)->ID] << ' ' << Pkg.Name() <<
665 ' ' << (pkgCache::Version *)Pkg.CurrentVer() << ' ' <<
666 Cache[Pkg].InstallVer << ' ' << Cache[Pkg].CandidateVer << endl;
667 } */
668
669 if (Debug == true)
670 clog << "Starting 2" << endl;
671
672 /* Now consider all broken packages. For each broken package we either
673 remove the package or fix it's problem. We do this once, it should
674 not be possible for a loop to form (that is a < b < c and fixing b by
675 changing a breaks c) */
676 bool Change = true;
677 for (int Counter = 0; Counter != 10 && Change == true; Counter++)
678 {
679 Change = false;
680 for (pkgCache::Package **K = PList; K != PEnd; K++)
681 {
682 pkgCache::PkgIterator I(Cache,*K);
683
684 /* We attempt to install this and see if any breaks result,
685 this takes care of some strange cases */
686 if (Cache[I].CandidateVer != Cache[I].InstallVer &&
687 I->CurrentVer != 0 && Cache[I].InstallVer != 0 &&
688 (Flags[I->ID] & PreInstalled) != 0 &&
689 (Flags[I->ID] & Protected) == 0 &&
690 (Flags[I->ID] & ReInstateTried) == 0)
691 {
692 if (Debug == true)
693 clog << " Try to Re-Instate " << I.Name() << endl;
694 unsigned long OldBreaks = Cache.BrokenCount();
695 pkgCache::Version *OldVer = Cache[I].InstallVer;
696 Flags[I->ID] &= ReInstateTried;
697
698 Cache.MarkInstall(I,false);
699 if (Cache[I].InstBroken() == true ||
700 OldBreaks < Cache.BrokenCount())
701 {
702 if (OldVer == 0)
703 Cache.MarkDelete(I);
704 else
705 Cache.MarkKeep(I);
706 }
707 else
708 if (Debug == true)
709 clog << "Re-Instated " << I.Name() << " (" << OldBreaks << " vs " << Cache.BrokenCount() << ')' << endl;
710 }
711
712 if (Cache[I].InstallVer == 0 || Cache[I].InstBroken() == false)
713 continue;
714
715 // Isolate the problem dependency
716 PackageKill KillList[100];
717 PackageKill *LEnd = KillList;
718 for (pkgCache::DepIterator D = Cache[I].InstVerIter(Cache).DependsList(); D.end() == false;)
719 {
720 // Compute a single dependency element (glob or)
721 pkgCache::DepIterator Start;
722 pkgCache::DepIterator End;
723 D.GlobOr(Start,End);
724
725 // We only worry about critical deps.
726 if (End.IsCritical() != true)
727 continue;
728
729 // Dep is ok
730 if ((Cache[End] & pkgDepCache::DepGInstall) == pkgDepCache::DepGInstall)
731 continue;
732
733 // Hm, the group is broken.. I have no idea how to handle this
734 if (Start != End)
735 {
736 if (Debug == true)
737 clog << "Note, a broken or group was found in " << I.Name() << "." << endl;
738 if ((Flags[I->ID] & Protected) != Protected)
739 Cache.MarkDelete(I);
740 break;
741 }
742
743 if (Debug == true)
744 clog << "Package " << I.Name() << " has broken dep on " << End.TargetPkg().Name() << endl;
745
746 /* Look across the version list. If there are no possible
747 targets then we keep the package and bail. This is necessary
748 if a package has a dep on another package that cant be found */
749 pkgCache::Version **VList = End.AllTargets();
750 if (*VList == 0 && (Flags[I->ID] & Protected) != Protected &&
751 End->Type != pkgCache::Dep::Conflicts &&
752 Cache[I].NowBroken() == false)
753 {
754 Change = true;
755 Cache.MarkKeep(I);
756 break;
757 }
758
759 bool Done = false;
760 for (pkgCache::Version **V = VList; *V != 0; V++)
761 {
762 pkgCache::VerIterator Ver(Cache,*V);
763 pkgCache::PkgIterator Pkg = Ver.ParentPkg();
764
765 if (Debug == true)
766 clog << " Considering " << Pkg.Name() << ' ' << (int)Scores[Pkg->ID] <<
767 " as a solution to " << I.Name() << ' ' << (int)Scores[I->ID] << endl;
768 if (Scores[I->ID] <= Scores[Pkg->ID] ||
769 ((Cache[End] & pkgDepCache::DepGNow) == 0 &&
770 End->Type != pkgCache::Dep::Conflicts))
771 {
772 // Try a little harder to fix protected packages..
773 if ((Flags[I->ID] & Protected) == Protected)
774 {
775 if (DoUpgrade(Pkg) == true)
776 Scores[Pkg->ID] = Scores[I->ID];
777 continue;
778 }
779
780 /* See if a keep will do, unless the package is protected,
781 then installing it will be necessary */
782 Cache.MarkKeep(I);
783 if (Cache[I].InstBroken() == false)
784 {
785 if (Debug == true)
786 clog << " Holding Back " << I.Name() << " rather than change " << End.TargetPkg().Name() << endl;
787 }
788 else
789 {
790 if (BrokenFix == false || DoUpgrade(I) == false)
791 {
792 if (Debug == true)
793 clog << " Removing " << I.Name() << " rather than change " << End.TargetPkg().Name() << endl;
794 Cache.MarkDelete(I);
795 if (Counter > 1)
796 Scores[I->ID] = Scores[Pkg->ID];
797 }
798 }
799
800 Change = true;
801 Done = true;
802 break;
803 }
804 else
805 {
806 // Skip this if it is protected
807 if ((Flags[Pkg->ID] & Protected) != 0)
808 continue;
809
810 LEnd->Pkg = Pkg;
811 LEnd->Dep = End;
812 LEnd++;
813
814 if (End->Type != pkgCache::Dep::Conflicts)
815 break;
816 }
817 }
818
819 // Hm, nothing can possibly satisify this dep. Nuke it.
820 if (VList[0] == 0 && End->Type != pkgCache::Dep::Conflicts &&
821 (Flags[I->ID] & Protected) != Protected)
822 {
823 Cache.MarkKeep(I);
824 if (Cache[I].InstBroken() == false)
825 {
826 if (Debug == true)
827 clog << " Holding Back " << I.Name() << " because I can't find " << End.TargetPkg().Name() << endl;
828 }
829 else
830 {
831 if (Debug == true)
832 clog << " Removing " << I.Name() << " because I can't find " << End.TargetPkg().Name() << endl;
833 Cache.MarkDelete(I);
834 }
835
836 Change = true;
837 Done = true;
838 }
839
840 delete [] VList;
841 if (Done == true)
842 break;
843 }
844
845 // Apply the kill list now
846 if (Cache[I].InstallVer != 0)
847 for (PackageKill *J = KillList; J != LEnd; J++)
848 {
849 Change = true;
850 if ((Cache[J->Dep] & pkgDepCache::DepGNow) == 0)
851 {
852 if (J->Dep->Type == pkgCache::Dep::Conflicts)
853 {
854 if (Debug == true)
855 clog << " Fixing " << I.Name() << " via remove of " << J->Pkg.Name() << endl;
856 Cache.MarkDelete(J->Pkg);
857 }
858 }
859 else
860 {
861 if (Debug == true)
862 clog << " Fixing " << I.Name() << " via keep of " << J->Pkg.Name() << endl;
863 Cache.MarkKeep(J->Pkg);
864 }
865
866 if (Counter > 1)
867 Scores[J->Pkg->ID] = Scores[I->ID];
868 }
869 }
870 }
871
872 if (Debug == true)
873 clog << "Done" << endl;
874
875 delete [] Scores;
876 delete [] PList;
877
878 if (Cache.BrokenCount() != 0)
879 {
880 // See if this is the result of a hold
881 pkgCache::PkgIterator I = Cache.PkgBegin();
882 for (;I.end() != true; I++)
883 {
884 if (Cache[I].InstBroken() == false)
885 continue;
886 if ((Flags[I->ID] & Protected) != Protected)
887 return _error->Error("Error, pkgProblemResolver::Resolve generated breaks, this may be caused by held packages.");
888 }
889 return _error->Error("Unable to correct problems, you have held broken packages.");
890 }
891
892 return true;
893}
894 /*}}}*/
895// ProblemResolver::ResolveByKeep - Resolve problems using keep /*{{{*/
896// ---------------------------------------------------------------------
897/* This is the work horse of the soft upgrade routine. It is very gental
898 in that it does not install or remove any packages. It is assumed that the
899 system was non-broken previously. */
900bool pkgProblemResolver::ResolveByKeep()
901{
902 unsigned long Size = Cache.HeaderP->PackageCount;
903
904 if (Debug == true)
905 clog << "Entering ResolveByKeep" << endl;
906
907 MakeScores();
908
909 /* We have to order the packages so that the broken fixing pass
910 operates from highest score to lowest. This prevents problems when
911 high score packages cause the removal of lower score packages that
912 would cause the removal of even lower score packages. */
913 pkgCache::Package **PList = new pkgCache::Package *[Size];
914 pkgCache::Package **PEnd = PList;
915 for (pkgCache::PkgIterator I = Cache.PkgBegin(); I.end() == false; I++)
916 *PEnd++ = I;
917 This = this;
918 qsort(PList,PEnd - PList,sizeof(*PList),&ScoreSort);
919
920 // Consider each broken package
921 pkgCache::Package **LastStop = 0;
922 for (pkgCache::Package **K = PList; K != PEnd; K++)
923 {
924 pkgCache::PkgIterator I(Cache,*K);
925
926 if (Cache[I].InstallVer == 0 || Cache[I].InstBroken() == false)
927 continue;
928
929 /* Keep the package. If this works then great, otherwise we have
930 to be significantly more agressive and manipulate its dependencies */
931 if ((Flags[I->ID] & Protected) == 0)
932 {
933 if (Debug == true)
934 clog << "Keeping package " << I.Name() << endl;
935 Cache.MarkKeep(I);
936 if (Cache[I].InstBroken() == false)
937 {
938 K = PList;
939 continue;
940 }
941 }
942
943 // Isolate the problem dependencies
944 for (pkgCache::DepIterator D = Cache[I].InstVerIter(Cache).DependsList(); D.end() == false;)
945 {
946 // Compute a single dependency element (glob or)
947 pkgCache::DepIterator Start = D;
948 pkgCache::DepIterator End = D;
949 unsigned char State = 0;
950 for (bool LastOR = true; D.end() == false && LastOR == true; D++)
951 {
952 State |= Cache[D];
953 LastOR = (D->CompareOp & pkgCache::Dep::Or) == pkgCache::Dep::Or;
954 if (LastOR == true)
955 End = D;
956 }
957
958 // We only worry about critical deps.
959 if (End.IsCritical() != true)
960 continue;
961
962 // Dep is ok
963 if ((Cache[End] & pkgDepCache::DepGInstall) == pkgDepCache::DepGInstall)
964 continue;
965
966 // Hm, the group is broken.. I have no idea how to handle this
967 if (Start != End)
968 {
969 clog << "Note, a broken or group was found in " << I.Name() << "." << endl;
970 if ((Flags[I->ID] & Protected) == 0)
971 Cache.MarkKeep(I);
972 break;
973 }
974
975 if (Debug == true)
976 clog << "Package " << I.Name() << " has broken dep on " << End.TargetPkg().Name() << endl;
977
978 // Look at all the possible provides on this package
979 pkgCache::Version **VList = End.AllTargets();
980 for (pkgCache::Version **V = VList; *V != 0; V++)
981 {
982 pkgCache::VerIterator Ver(Cache,*V);
983 pkgCache::PkgIterator Pkg = Ver.ParentPkg();
984
985 // It is not keepable
986 if (Cache[Pkg].InstallVer == 0 ||
987 Pkg->CurrentVer == 0)
988 continue;
989
990 if ((Flags[I->ID] & Protected) == 0)
991 {
992 if (Debug == true)
993 clog << " Keeping Package " << Pkg.Name() << " due to dep" << endl;
994 Cache.MarkKeep(Pkg);
995 }
996
997 if (Cache[I].InstBroken() == false)
998 break;
999 }
1000
1001 if (Cache[I].InstBroken() == false)
1002 break;
1003 }
1004
1005 if (Cache[I].InstBroken() == true)
1006 continue;
1007
1008 // Restart again.
1009 if (K == LastStop)
1010 return _error->Error("Internal Error, pkgProblemResolver::ResolveByKeep is looping on package %s.",I.Name());
1011 LastStop = K;
1012 K = PList;
1013 }
1014
1015 return true;
1016}
1017 /*}}}*/
1018// ProblemResolver::InstallProtect - Install all protected packages /*{{{*/
1019// ---------------------------------------------------------------------
1020/* This is used to make sure protected packages are installed */
1021void pkgProblemResolver::InstallProtect()
1022{
1023 for (pkgCache::PkgIterator I = Cache.PkgBegin(); I.end() == false; I++)
1024 {
1025 if ((Flags[I->ID] & Protected) == Protected)
1026 {
1027 if ((Flags[I->ID] & ToRemove) == ToRemove)
1028 Cache.MarkDelete(I);
1029 else
1030 Cache.MarkInstall(I,false);
1031 }
1032 }
1033}
1034 /*}}}*/