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1// -*- mode: cpp; mode: fold -*-
2// Description /*{{{*/
3// $Id: algorithms.h,v 1.10 2001/05/22 04:17:41 jgg Exp $
4/* ######################################################################
5
6 Algorithms - A set of misc algorithms
7
8 This simulate class displays what the ordering code has done and
9 analyses it with a fresh new dependency cache. In this way we can
10 see all of the effects of an upgrade run.
11
12 pkgDistUpgrade computes an upgrade that causes as many packages as
13 possible to move to the newest verison.
14
15 pkgApplyStatus sets the target state based on the content of the status
16 field in the status file. It is important to get proper crash recovery.
17
18 pkgFixBroken corrects a broken system so that it is in a sane state.
19
20 pkgAllUpgrade attempts to upgade as many packages as possible but
21 without installing new packages.
22
23 The problem resolver class contains a number of complex algorithms
24 to try to best-guess an upgrade state. It solves the problem of
25 maximizing the number of install state packages while having no broken
26 packages.
27
28 ##################################################################### */
29 /*}}}*/
30#ifndef PKGLIB_ALGORITHMS_H
31#define PKGLIB_ALGORITHMS_H
32
33
34#include <apt-pkg/packagemanager.h>
35#include <apt-pkg/depcache.h>
36#include <apt-pkg/acquire.h>
37
38#include <iostream>
39
40using std::ostream;
41
42class pkgSimulate : public pkgPackageManager /*{{{*/
43{
44 protected:
45
46 class Policy : public pkgDepCache::Policy
47 {
48 pkgDepCache *Cache;
49 public:
50
51 virtual VerIterator GetCandidateVer(PkgIterator Pkg)
52 {
53 return (*Cache)[Pkg].CandidateVerIter(*Cache);
54 }
55
56 Policy(pkgDepCache *Cache) : Cache(Cache) {};
57 };
58
59 unsigned char *Flags;
60
61 Policy iPolicy;
62 pkgDepCache Sim;
63 pkgDepCache::ActionGroup group;
64
65 // The Actuall installation implementation
66 virtual bool Install(PkgIterator Pkg,string File);
67 virtual bool Configure(PkgIterator Pkg);
68 virtual bool Remove(PkgIterator Pkg,bool Purge);
69
70private:
71 void ShortBreaks();
72 void Describe(PkgIterator iPkg,ostream &out,bool Current,bool Candidate);
73
74 public:
75
76 pkgSimulate(pkgDepCache *Cache);
77};
78 /*}}}*/
79class pkgProblemResolver /*{{{*/
80{
81 pkgDepCache &Cache;
82 typedef pkgCache::PkgIterator PkgIterator;
83 typedef pkgCache::VerIterator VerIterator;
84 typedef pkgCache::DepIterator DepIterator;
85 typedef pkgCache::PrvIterator PrvIterator;
86 typedef pkgCache::Version Version;
87 typedef pkgCache::Package Package;
88
89 enum Flags {Protected = (1 << 0), PreInstalled = (1 << 1),
90 Upgradable = (1 << 2), ReInstateTried = (1 << 3),
91 ToRemove = (1 << 4)};
92 signed short *Scores;
93 unsigned char *Flags;
94 bool Debug;
95
96 // Sort stuff
97 static pkgProblemResolver *This;
98 static int ScoreSort(const void *a,const void *b);
99
100 struct PackageKill
101 {
102 PkgIterator Pkg;
103 DepIterator Dep;
104 };
105
106 void MakeScores();
107 bool DoUpgrade(pkgCache::PkgIterator Pkg);
108
109 public:
110
111 inline void Protect(pkgCache::PkgIterator Pkg) {Flags[Pkg->ID] |= Protected;};
112 inline void Remove(pkgCache::PkgIterator Pkg) {Flags[Pkg->ID] |= ToRemove;};
113 inline void Clear(pkgCache::PkgIterator Pkg) {Flags[Pkg->ID] &= ~(Protected | ToRemove);};
114
115 // Try to intelligently resolve problems by installing and removing packages
116 bool Resolve(bool BrokenFix = false);
117
118 // Try to resolve problems only by using keep
119 bool ResolveByKeep();
120
121 // Install all protected packages
122 void InstallProtect();
123
124 pkgProblemResolver(pkgDepCache *Cache);
125 ~pkgProblemResolver();
126};
127 /*}}}*/
128bool pkgDistUpgrade(pkgDepCache &Cache);
129bool pkgApplyStatus(pkgDepCache &Cache);
130bool pkgFixBroken(pkgDepCache &Cache);
131bool pkgAllUpgrade(pkgDepCache &Cache);
132bool pkgMinimizeUpgrade(pkgDepCache &Cache);
133
134void pkgPrioSortList(pkgCache &Cache,pkgCache::Version **List);
135
136bool ListUpdate(pkgAcquireStatus &progress, pkgSourceList &List, int PulseInterval=0);
137
138#endif