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   1 // -*- mode: cpp; mode: fold -*- 
   3 // $Id: pkgcache.cc,v 1.37 2003/02/10 01:40:58 doogie Exp $ 
   4 /* ###################################################################### 
   6    Package Cache - Accessor code for the cache 
   8    Please see doc/apt-pkg/cache.sgml for a more detailed description of  
   9    this format. Also be sure to keep that file up-to-date!! 
  11    This is the general utility functions for cache managment. They provide 
  12    a complete set of accessor functions for the cache. The cacheiterators 
  13    header contains the STL-like iterators that can be used to easially 
  14    navigate the cache as well as seemlessly dereference the mmap'd  
  15    indexes. Use these always. 
  17    The main class provides for ways to get package indexes and some 
  18    general lookup functions to start the iterators. 
  20    ##################################################################### */ 
  22 // Include Files                                                        /*{{{*/ 
  25 #include <apt-pkg/pkgcache.h> 
  26 #include <apt-pkg/policy.h> 
  27 #include <apt-pkg/version.h> 
  28 #include <apt-pkg/error.h> 
  29 #include <apt-pkg/strutl.h> 
  30 #include <apt-pkg/configuration.h> 
  31 #include <apt-pkg/aptconfiguration.h> 
  32 #include <apt-pkg/macros.h> 
  45 // Cache::Header::Header - Constructor                                  /*{{{*/ 
  46 // --------------------------------------------------------------------- 
  47 /* Simply initialize the header */ 
  48 pkgCache::Header::Header() 
  50    Signature 
= 0x98FE76DC; 
  52    /* Whenever the structures change the major version should be bumped, 
  53       whenever the generator changes the minor version should be bumped. */ 
  58    HeaderSz 
= sizeof(pkgCache::Header
); 
  59    GroupSz 
= sizeof(pkgCache::Group
); 
  60    PackageSz 
= sizeof(pkgCache::Package
); 
  61    PackageFileSz 
= sizeof(pkgCache::PackageFile
); 
  62    VersionSz 
= sizeof(pkgCache::Version
); 
  63    DescriptionSz 
= sizeof(pkgCache::Description
); 
  64    DependencySz 
= sizeof(pkgCache::Dependency
); 
  65    ProvidesSz 
= sizeof(pkgCache::Provides
); 
  66    VerFileSz 
= sizeof(pkgCache::VerFile
); 
  67    DescFileSz 
= sizeof(pkgCache::DescFile
); 
  85    memset(PkgHashTable
,0,sizeof(PkgHashTable
)); 
  86    memset(GrpHashTable
,0,sizeof(GrpHashTable
)); 
  87    memset(Pools
,0,sizeof(Pools
)); 
  92 // Cache::Header::CheckSizes - Check if the two headers have same *sz   /*{{{*/ 
  93 // --------------------------------------------------------------------- 
  95 bool pkgCache::Header::CheckSizes(Header 
&Against
) const 
  97    if (HeaderSz 
== Against
.HeaderSz 
&& 
  98        GroupSz 
== Against
.GroupSz 
&& 
  99        PackageSz 
== Against
.PackageSz 
&& 
 100        PackageFileSz 
== Against
.PackageFileSz 
&& 
 101        VersionSz 
== Against
.VersionSz 
&& 
 102        DescriptionSz 
== Against
.DescriptionSz 
&& 
 103        DependencySz 
== Against
.DependencySz 
&& 
 104        VerFileSz 
== Against
.VerFileSz 
&& 
 105        DescFileSz 
== Against
.DescFileSz 
&& 
 106        ProvidesSz 
== Against
.ProvidesSz
) 
 112 // Cache::pkgCache - Constructor                                        /*{{{*/ 
 113 // --------------------------------------------------------------------- 
 115 pkgCache::pkgCache(MMap 
*Map
, bool DoMap
) : Map(*Map
) 
 117    // call getArchitectures() with cached=false to ensure that the  
 118    // architectures cache is re-evaulated. this is needed in cases 
 119    // when the APT::Architecture field changes between two cache creations 
 120    MultiArchEnabled 
= APT::Configuration::getArchitectures(false).size() > 1; 
 125 // Cache::ReMap - Reopen the cache file                                 /*{{{*/ 
 126 // --------------------------------------------------------------------- 
 127 /* If the file is already closed then this will open it open it. */ 
 128 bool pkgCache::ReMap(bool const &Errorchecks
) 
 130    // Apply the typecasts. 
 131    HeaderP 
= (Header 
*)Map
.Data(); 
 132    GrpP 
= (Group 
*)Map
.Data(); 
 133    PkgP 
= (Package 
*)Map
.Data(); 
 134    VerFileP 
= (VerFile 
*)Map
.Data(); 
 135    DescFileP 
= (DescFile 
*)Map
.Data(); 
 136    PkgFileP 
= (PackageFile 
*)Map
.Data(); 
 137    VerP 
= (Version 
*)Map
.Data(); 
 138    DescP 
= (Description 
*)Map
.Data(); 
 139    ProvideP 
= (Provides 
*)Map
.Data(); 
 140    DepP 
= (Dependency 
*)Map
.Data(); 
 141    StringItemP 
= (StringItem 
*)Map
.Data(); 
 142    StrP 
= (char *)Map
.Data(); 
 144    if (Errorchecks 
== false) 
 147    if (Map
.Size() == 0 || HeaderP 
== 0) 
 148       return _error
->Error(_("Empty package cache")); 
 152    if (HeaderP
->Signature 
!= DefHeader
.Signature 
|| 
 153        HeaderP
->Dirty 
== true) 
 154       return _error
->Error(_("The package cache file is corrupted")); 
 156    if (HeaderP
->MajorVersion 
!= DefHeader
.MajorVersion 
|| 
 157        HeaderP
->MinorVersion 
!= DefHeader
.MinorVersion 
|| 
 158        HeaderP
->CheckSizes(DefHeader
) == false) 
 159       return _error
->Error(_("The package cache file is an incompatible version")); 
 161    if (Map
.Size() < HeaderP
->CacheFileSize
) 
 162       return _error
->Error(_("The package cache file is corrupted, it is too small")); 
 165    if (HeaderP
->VerSysName 
== 0 || 
 166        (VS 
= pkgVersioningSystem::GetVS(StrP 
+ HeaderP
->VerSysName
)) == 0) 
 167       return _error
->Error(_("This APT does not support the versioning system '%s'"),StrP 
+ HeaderP
->VerSysName
); 
 169    // Chcek the arhcitecture 
 170    if (HeaderP
->Architecture 
== 0 || 
 171        _config
->Find("APT::Architecture") != StrP 
+ HeaderP
->Architecture
) 
 172       return _error
->Error(_("The package cache was built for a different architecture")); 
 176 // Cache::Hash - Hash a string                                          /*{{{*/ 
 177 // --------------------------------------------------------------------- 
 178 /* This is used to generate the hash entries for the HashTable. With my 
 179    package list from bo this function gets 94% table usage on a 512 item 
 180    table (480 used items) */ 
 181 unsigned long pkgCache::sHash(const string 
&Str
) const 
 183    unsigned long Hash 
= 0; 
 184    for (string::const_iterator I 
= Str
.begin(); I 
!= Str
.end(); ++I
) 
 185       Hash 
= 5*Hash 
+ tolower_ascii(*I
); 
 186    return Hash 
% _count(HeaderP
->PkgHashTable
); 
 189 unsigned long pkgCache::sHash(const char *Str
) const 
 191    unsigned long Hash 
= 0; 
 192    for (const char *I 
= Str
; *I 
!= 0; ++I
) 
 193       Hash 
= 5*Hash 
+ tolower_ascii(*I
); 
 194    return Hash 
% _count(HeaderP
->PkgHashTable
); 
 198 // Cache::SingleArchFindPkg - Locate a package by name                  /*{{{*/ 
 199 // --------------------------------------------------------------------- 
 200 /* Returns 0 on error, pointer to the package otherwise 
 201    The multiArch enabled methods will fallback to this one as it is (a bit) 
 202    faster for single arch environments and realworld is mostly singlearch… */ 
 203 pkgCache::PkgIterator 
pkgCache::SingleArchFindPkg(const string 
&Name
) 
 205    // Look at the hash bucket 
 206    Package 
*Pkg 
= PkgP 
+ HeaderP
->PkgHashTable
[Hash(Name
)]; 
 207    for (; Pkg 
!= PkgP
; Pkg 
= PkgP 
+ Pkg
->NextPackage
) 
 209       if (Pkg
->Name 
!= 0 && StrP
[Pkg
->Name
] == Name
[0] && 
 210           stringcasecmp(Name
,StrP 
+ Pkg
->Name
) == 0) 
 211          return PkgIterator(*this,Pkg
); 
 213    return PkgIterator(*this,0); 
 216 // Cache::FindPkg - Locate a package by name                            /*{{{*/ 
 217 // --------------------------------------------------------------------- 
 218 /* Returns 0 on error, pointer to the package otherwise */ 
 219 pkgCache::PkgIterator 
pkgCache::FindPkg(const string 
&Name
) { 
 220         size_t const found 
= Name
.find(':'); 
 221         if (found 
== string::npos
) 
 223                 if (MultiArchCache() == false) 
 224                         return SingleArchFindPkg(Name
); 
 226                         return FindPkg(Name
, "native"); 
 228         string 
const Arch 
= Name
.substr(found
+1); 
 229         /* Beware: This is specialcased to handle pkg:any in dependencies as 
 230            these are linked to virtual pkg:any named packages with all archs. 
 231            If you want any arch from a given pkg, use FindPkg(pkg,arch) */ 
 233                 return FindPkg(Name
, "any"); 
 234         return FindPkg(Name
.substr(0, found
), Arch
); 
 237 // Cache::FindPkg - Locate a package by name                            /*{{{*/ 
 238 // --------------------------------------------------------------------- 
 239 /* Returns 0 on error, pointer to the package otherwise */ 
 240 pkgCache::PkgIterator 
pkgCache::FindPkg(const string 
&Name
, string 
const &Arch
) { 
 241         if (MultiArchCache() == false) { 
 242                 if (Arch 
== "native" || Arch 
== "all" || Arch 
== "any" || 
 243                     Arch 
== NativeArch()) 
 244                         return SingleArchFindPkg(Name
); 
 246                         return PkgIterator(*this,0); 
 248         /* We make a detour via the GrpIterator here as 
 249            on a multi-arch environment a group is easier to 
 250            find than a package (less entries in the buckets) */ 
 251         pkgCache::GrpIterator Grp 
= FindGrp(Name
); 
 252         if (Grp
.end() == true) 
 253                 return PkgIterator(*this,0); 
 255         return Grp
.FindPkg(Arch
); 
 258 // Cache::FindGrp - Locate a group by name                              /*{{{*/ 
 259 // --------------------------------------------------------------------- 
 260 /* Returns End-Pointer on error, pointer to the group otherwise */ 
 261 pkgCache::GrpIterator 
pkgCache::FindGrp(const string 
&Name
) { 
 262         if (unlikely(Name
.empty() == true)) 
 263                 return GrpIterator(*this,0); 
 265         // Look at the hash bucket for the group 
 266         Group 
*Grp 
= GrpP 
+ HeaderP
->GrpHashTable
[sHash(Name
)]; 
 267         for (; Grp 
!= GrpP
; Grp 
= GrpP 
+ Grp
->Next
) { 
 268                 if (Grp
->Name 
!= 0 && StrP
[Grp
->Name
] == Name
[0] && 
 269                     stringcasecmp(Name
, StrP 
+ Grp
->Name
) == 0) 
 270                         return GrpIterator(*this, Grp
); 
 273         return GrpIterator(*this,0); 
 276 // Cache::CompTypeDeb - Return a string describing the compare type     /*{{{*/ 
 277 // --------------------------------------------------------------------- 
 278 /* This returns a string representation of the dependency compare  
 279    type in the weird debian style.. */ 
 280 const char *pkgCache::CompTypeDeb(unsigned char Comp
) 
 282    const char *Ops
[] = {"","<=",">=","<<",">>","=","!="}; 
 283    if ((unsigned)(Comp 
& 0xF) < 7) 
 284       return Ops
[Comp 
& 0xF]; 
 288 // Cache::CompType - Return a string describing the compare type        /*{{{*/ 
 289 // --------------------------------------------------------------------- 
 290 /* This returns a string representation of the dependency compare  
 292 const char *pkgCache::CompType(unsigned char Comp
) 
 294    const char *Ops
[] = {"","<=",">=","<",">","=","!="}; 
 295    if ((unsigned)(Comp 
& 0xF) < 7) 
 296       return Ops
[Comp 
& 0xF]; 
 300 // Cache::DepType - Return a string describing the dep type             /*{{{*/ 
 301 // --------------------------------------------------------------------- 
 303 const char *pkgCache::DepType(unsigned char Type
) 
 305    const char *Types
[] = {"",_("Depends"),_("PreDepends"),_("Suggests"), 
 306                           _("Recommends"),_("Conflicts"),_("Replaces"), 
 307                           _("Obsoletes"),_("Breaks"), _("Enhances")}; 
 308    if (Type 
< sizeof(Types
)/sizeof(*Types
)) 
 313 // Cache::Priority - Convert a priority value to a string               /*{{{*/ 
 314 // --------------------------------------------------------------------- 
 316 const char *pkgCache::Priority(unsigned char Prio
) 
 318    const char *Mapping
[] = {0,_("important"),_("required"),_("standard"), 
 319                             _("optional"),_("extra")}; 
 320    if (Prio 
< _count(Mapping
)) 
 321       return Mapping
[Prio
]; 
 325 // GrpIterator::FindPkg - Locate a package by arch                      /*{{{*/ 
 326 // --------------------------------------------------------------------- 
 327 /* Returns an End-Pointer on error, pointer to the package otherwise */ 
 328 pkgCache::PkgIterator 
pkgCache::GrpIterator::FindPkg(string Arch
) const { 
 329         if (unlikely(IsGood() == false || S
->FirstPackage 
== 0)) 
 330                 return PkgIterator(*Owner
, 0); 
 332         /* If we accept any package we simply return the "first" 
 333            package in this group (the last one added). */ 
 335                 return PkgIterator(*Owner
, Owner
->PkgP 
+ S
->FirstPackage
); 
 337         char const* const myArch 
= Owner
->NativeArch(); 
 338         /* Most of the time the package for our native architecture is 
 339            the one we add at first to the cache, but this would be the 
 340            last one we check, so we do it now. */ 
 341         if (Arch 
== "native" || Arch 
== myArch 
|| Arch 
== "all") { 
 342                 pkgCache::Package 
*Pkg 
= Owner
->PkgP 
+ S
->LastPackage
; 
 343                 if (strcasecmp(myArch
, Owner
->StrP 
+ Pkg
->Arch
) == 0) 
 344                         return PkgIterator(*Owner
, Pkg
); 
 348         /* Iterate over the list to find the matching arch 
 349            unfortunately this list includes "package noise" 
 350            (= different packages with same calculated hash), 
 351            so we need to check the name also */ 
 352         for (pkgCache::Package 
*Pkg 
= PackageList(); Pkg 
!= Owner
->PkgP
; 
 353              Pkg 
= Owner
->PkgP 
+ Pkg
->NextPackage
) { 
 354                 if (S
->Name 
== Pkg
->Name 
&& 
 355                     stringcasecmp(Arch
, Owner
->StrP 
+ Pkg
->Arch
) == 0) 
 356                         return PkgIterator(*Owner
, Pkg
); 
 357                 if ((Owner
->PkgP 
+ S
->LastPackage
) == Pkg
) 
 361         return PkgIterator(*Owner
, 0); 
 364 // GrpIterator::FindPreferredPkg - Locate the "best" package            /*{{{*/ 
 365 // --------------------------------------------------------------------- 
 366 /* Returns an End-Pointer on error, pointer to the package otherwise */ 
 367 pkgCache::PkgIterator 
pkgCache::GrpIterator::FindPreferredPkg(bool const &PreferNonVirtual
) const { 
 368         pkgCache::PkgIterator Pkg 
= FindPkg("native"); 
 369         if (Pkg
.end() == false && (PreferNonVirtual 
== false || Pkg
->VersionList 
!= 0)) 
 372         std::vector
<std::string
> const archs 
= APT::Configuration::getArchitectures(); 
 373         for (std::vector
<std::string
>::const_iterator a 
= archs
.begin(); 
 374              a 
!= archs
.end(); ++a
) { 
 376                 if (Pkg
.end() == false && (PreferNonVirtual 
== false || Pkg
->VersionList 
!= 0)) 
 380         if (PreferNonVirtual 
== true) 
 381                 return FindPreferredPkg(false); 
 382         return PkgIterator(*Owner
, 0); 
 385 // GrpIterator::NextPkg - Locate the next package in the group          /*{{{*/ 
 386 // --------------------------------------------------------------------- 
 387 /* Returns an End-Pointer on error, pointer to the package otherwise. 
 388    We can't simply ++ to the next as the next package of the last will 
 389    be from a different group (with the same hash value) */ 
 390 pkgCache::PkgIterator 
pkgCache::GrpIterator::NextPkg(pkgCache::PkgIterator 
const &LastPkg
) const { 
 391         if (unlikely(IsGood() == false || S
->FirstPackage 
== 0 || 
 392             LastPkg
.end() == true)) 
 393                 return PkgIterator(*Owner
, 0); 
 395         if (S
->LastPackage 
== LastPkg
.Index()) 
 396                 return PkgIterator(*Owner
, 0); 
 398         return PkgIterator(*Owner
, Owner
->PkgP 
+ LastPkg
->NextPackage
); 
 401 // GrpIterator::operator ++ - Postfix incr                              /*{{{*/ 
 402 // --------------------------------------------------------------------- 
 403 /* This will advance to the next logical group in the hash table. */ 
 404 void pkgCache::GrpIterator::operator ++(int)  
 406    // Follow the current links 
 407    if (S 
!= Owner
->GrpP
) 
 408       S 
= Owner
->GrpP 
+ S
->Next
; 
 410    // Follow the hash table 
 411    while (S 
== Owner
->GrpP 
&& (HashIndex
+1) < (signed)_count(Owner
->HeaderP
->GrpHashTable
)) 
 414       S 
= Owner
->GrpP 
+ Owner
->HeaderP
->GrpHashTable
[HashIndex
]; 
 418 // PkgIterator::operator ++ - Postfix incr                              /*{{{*/ 
 419 // --------------------------------------------------------------------- 
 420 /* This will advance to the next logical package in the hash table. */ 
 421 void pkgCache::PkgIterator::operator ++(int)  
 423    // Follow the current links 
 424    if (S 
!= Owner
->PkgP
) 
 425       S 
= Owner
->PkgP 
+ S
->NextPackage
; 
 427    // Follow the hash table 
 428    while (S 
== Owner
->PkgP 
&& (HashIndex
+1) < (signed)_count(Owner
->HeaderP
->PkgHashTable
)) 
 431       S 
= Owner
->PkgP 
+ Owner
->HeaderP
->PkgHashTable
[HashIndex
]; 
 435 // PkgIterator::State - Check the State of the package                  /*{{{*/ 
 436 // --------------------------------------------------------------------- 
 437 /* By this we mean if it is either cleanly installed or cleanly removed. */ 
 438 pkgCache::PkgIterator::OkState 
pkgCache::PkgIterator::State() const 
 440    if (S
->InstState 
== pkgCache::State::ReInstReq 
|| 
 441        S
->InstState 
== pkgCache::State::HoldReInstReq
) 
 444    if (S
->CurrentState 
== pkgCache::State::UnPacked 
|| 
 445        S
->CurrentState 
== pkgCache::State::HalfConfigured
) 
 446       // we leave triggers alone complettely. dpkg deals with 
 447       // them in a hard-to-predict manner and if they get  
 448       // resolved by dpkg before apt run dpkg --configure on  
 449       // the TriggersPending package dpkg returns a error 
 450       //Pkg->CurrentState == pkgCache::State::TriggersAwaited 
 451       //Pkg->CurrentState == pkgCache::State::TriggersPending) 
 452       return NeedsConfigure
; 
 454    if (S
->CurrentState 
== pkgCache::State::HalfInstalled 
|| 
 455        S
->InstState 
!= pkgCache::State::Ok
) 
 461 // PkgIterator::CandVersion - Returns the candidate version string      /*{{{*/ 
 462 // --------------------------------------------------------------------- 
 463 /* Return string representing of the candidate version. */ 
 465 pkgCache::PkgIterator::CandVersion() const  
 467   //TargetVer is empty, so don't use it. 
 468   VerIterator version 
= pkgPolicy(Owner
).GetCandidateVer(*this); 
 469   if (version
.IsGood()) 
 470     return version
.VerStr(); 
 474 // PkgIterator::CurVersion - Returns the current version string         /*{{{*/ 
 475 // --------------------------------------------------------------------- 
 476 /* Return string representing of the current version. */ 
 478 pkgCache::PkgIterator::CurVersion() const  
 480   VerIterator version 
= CurrentVer(); 
 481   if (version
.IsGood()) 
 482     return CurrentVer().VerStr(); 
 486 // ostream operator to handle string representation of a package        /*{{{*/ 
 487 // --------------------------------------------------------------------- 
 488 /* Output name < cur.rent.version -> candid.ate.version | new.est.version > (section) 
 489    Note that the characters <|>() are all literal above. Versions will be ommited 
 490    if they provide no new information (e.g. there is no newer version than candidate) 
 491    If no version and/or section can be found "none" is used. */ 
 493 operator<<(std::ostream
& out
, pkgCache::PkgIterator Pkg
)  
 495    if (Pkg
.end() == true) 
 496       return out 
<< "invalid package"; 
 498    string current 
= string(Pkg
.CurVersion() == 0 ? "none" : Pkg
.CurVersion()); 
 499    string candidate 
= string(Pkg
.CandVersion() == 0 ? "none" : Pkg
.CandVersion()); 
 500    string newest 
= string(Pkg
.VersionList().end() ? "none" : Pkg
.VersionList().VerStr()); 
 502    out 
<< Pkg
.Name() << " [ " << Pkg
.Arch() << " ] < " << current
; 
 503    if (current 
!= candidate
) 
 504       out 
<< " -> " << candidate
; 
 505    if ( newest 
!= "none" && candidate 
!= newest
) 
 506       out 
<< " | " << newest
; 
 507    out 
<< " > ( " << string(Pkg
.Section()==0?"none":Pkg
.Section()) << " )"; 
 511 // PkgIterator::FullName - Returns Name and (maybe) Architecture        /*{{{*/ 
 512 // --------------------------------------------------------------------- 
 513 /* Returns a name:arch string */ 
 514 std::string 
pkgCache::PkgIterator::FullName(bool const &Pretty
) const 
 516    string fullname 
= Name(); 
 517    if (Pretty 
== false || 
 518        (strcmp(Arch(), "all") != 0 && 
 519         strcmp(Owner
->NativeArch(), Arch()) != 0)) 
 520       return fullname
.append(":").append(Arch()); 
 524 // DepIterator::IsCritical - Returns true if the dep is important       /*{{{*/ 
 525 // --------------------------------------------------------------------- 
 526 /* Currently critical deps are defined as depends, predepends and 
 527    conflicts (including dpkg's Breaks fields). */ 
 528 bool pkgCache::DepIterator::IsCritical() const 
 530    if (IsNegative() == true || 
 531        S
->Type 
== pkgCache::Dep::Depends 
|| 
 532        S
->Type 
== pkgCache::Dep::PreDepends
) 
 537 // DepIterator::IsNegative - Returns true if the dep is a negative one  /*{{{*/ 
 538 // --------------------------------------------------------------------- 
 539 /* Some dependencies are positive like Depends and Recommends, others 
 540    are negative like Conflicts which can and should be handled differently */ 
 541 bool pkgCache::DepIterator::IsNegative() const 
 543    return S
->Type 
== Dep::DpkgBreaks 
|| 
 544           S
->Type 
== Dep::Conflicts 
|| 
 545           S
->Type 
== Dep::Obsoletes
; 
 548 // DepIterator::SmartTargetPkg - Resolve dep target pointers w/provides /*{{{*/ 
 549 // --------------------------------------------------------------------- 
 550 /* This intellegently looks at dep target packages and tries to figure 
 551    out which package should be used. This is needed to nicely handle 
 552    provide mapping. If the target package has no other providing packages 
 553    then it returned. Otherwise the providing list is looked at to  
 554    see if there is one one unique providing package if so it is returned. 
 555    Otherwise true is returned and the target package is set. The return 
 556    result indicates whether the node should be expandable  
 558    In Conjunction with the DepCache the value of Result may not be  
 559    super-good since the policy may have made it uninstallable. Using 
 560    AllTargets is better in this case. */ 
 561 bool pkgCache::DepIterator::SmartTargetPkg(PkgIterator 
&Result
) const 
 563    Result 
= TargetPkg(); 
 565    // No provides at all 
 566    if (Result
->ProvidesList 
== 0) 
 569    // There is the Base package and the providing ones which is at least 2 
 570    if (Result
->VersionList 
!= 0) 
 573    /* We have to skip over indirect provisions of the package that 
 574       owns the dependency. For instance, if libc5-dev depends on the 
 575       virtual package libc-dev which is provided by libc5-dev and libc6-dev 
 576       we must ignore libc5-dev when considering the provides list. */  
 577    PrvIterator PStart 
= Result
.ProvidesList(); 
 578    for (; PStart
.end() != true && PStart
.OwnerPkg() == ParentPkg(); ++PStart
); 
 580    // Nothing but indirect self provides 
 581    if (PStart
.end() == true) 
 584    // Check for single packages in the provides list 
 585    PrvIterator P 
= PStart
; 
 586    for (; P
.end() != true; ++P
) 
 588       // Skip over self provides 
 589       if (P
.OwnerPkg() == ParentPkg()) 
 591       if (PStart
.OwnerPkg() != P
.OwnerPkg()) 
 595    Result 
= PStart
.OwnerPkg(); 
 597    // Check for non dups 
 604 // DepIterator::AllTargets - Returns the set of all possible targets    /*{{{*/ 
 605 // --------------------------------------------------------------------- 
 606 /* This is a more useful version of TargetPkg() that follows versioned 
 607    provides. It includes every possible package-version that could satisfy 
 608    the dependency. The last item in the list has a 0. The resulting pointer 
 609    must be delete [] 'd */ 
 610 pkgCache::Version 
**pkgCache::DepIterator::AllTargets() const 
 613    unsigned long Size 
=0; 
 617       PkgIterator DPkg 
= TargetPkg(); 
 619       // Walk along the actual package providing versions 
 620       for (VerIterator I 
= DPkg
.VersionList(); I
.end() == false; ++I
) 
 622          if (IsIgnorable(I
.ParentPkg()) == true) 
 625          if (Owner
->VS
->CheckDep(I
.VerStr(),S
->CompareOp
,TargetVer()) == false) 
 633       // Follow all provides 
 634       for (PrvIterator I 
= DPkg
.ProvidesList(); I
.end() == false; ++I
) 
 636          if (IsIgnorable(I
) == true) 
 639          if (Owner
->VS
->CheckDep(I
.ProvideVersion(),S
->CompareOp
,TargetVer()) == false) 
 644             *End
++ = I
.OwnerVer(); 
 647       // Do it again and write it into the array 
 650          Res 
= new Version 
*[Size
+1]; 
 663 // DepIterator::GlobOr - Compute an OR group                            /*{{{*/ 
 664 // --------------------------------------------------------------------- 
 665 /* This Takes an iterator, iterates past the current dependency grouping 
 666    and returns Start and End so that so End is the final element 
 667    in the group, if End == Start then D is End++ and End is the 
 668    dependency D was pointing to. Use in loops to iterate sensibly. */ 
 669 void pkgCache::DepIterator::GlobOr(DepIterator 
&Start
,DepIterator 
&End
) 
 671    // Compute a single dependency element (glob or) 
 674    for (bool LastOR 
= true; end() == false && LastOR 
== true;) 
 676       LastOR 
= (S
->CompareOp 
& pkgCache::Dep::Or
) == pkgCache::Dep::Or
; 
 683 // DepIterator::IsIgnorable - should this packag/providr be ignored?    /*{{{*/ 
 684 // --------------------------------------------------------------------- 
 685 /* Deps like self-conflicts should be ignored as well as implicit conflicts 
 686    on virtual packages. */ 
 687 bool pkgCache::DepIterator::IsIgnorable(PkgIterator 
const &Pkg
) const 
 689    if (ParentPkg() == TargetPkg()) 
 694 bool pkgCache::DepIterator::IsIgnorable(PrvIterator 
const &Prv
) const 
 696    if (IsNegative() == false) 
 699    PkgIterator 
const Pkg 
= ParentPkg(); 
 700    /* Provides may never be applied against the same package (or group) 
 701       if it is a conflicts. See the comment above. */ 
 702    if (Prv
.OwnerPkg()->Group 
== Pkg
->Group
) 
 704    // Implicit group-conflicts should not be applied on providers of other groups 
 705    if (Pkg
->Group 
== TargetPkg()->Group 
&& Prv
.OwnerPkg()->Group 
!= Pkg
->Group
) 
 711 // ostream operator to handle string representation of a dependecy      /*{{{*/ 
 712 // --------------------------------------------------------------------- 
 714 std::ostream
& operator<<(std::ostream
& out
, pkgCache::DepIterator D
) 
 717       return out 
<< "invalid dependency"; 
 719    pkgCache::PkgIterator P 
= D
.ParentPkg(); 
 720    pkgCache::PkgIterator T 
= D
.TargetPkg(); 
 722    out 
<< (P
.end() ? "invalid pkg" : P
.FullName(false)) << " " << D
.DepType() 
 725       out 
<< "invalid pkg"; 
 730       out 
<< " (" << D
.CompType() << " " << D
.TargetVer() << ")"; 
 735 // VerIterator::CompareVer - Fast version compare for same pkgs         /*{{{*/ 
 736 // --------------------------------------------------------------------- 
 737 /* This just looks over the version list to see if B is listed before A. In 
 738    most cases this will return in under 4 checks, ver lists are short. */ 
 739 int pkgCache::VerIterator::CompareVer(const VerIterator 
&B
) const 
 741    // Check if they are equal 
 749    /* Start at A and look for B. If B is found then A > B otherwise 
 750       B was before A so A < B */ 
 751    VerIterator I 
= *this; 
 752    for (;I
.end() == false; ++I
) 
 758 // VerIterator::Downloadable - Checks if the version is downloadable    /*{{{*/ 
 759 // --------------------------------------------------------------------- 
 761 bool pkgCache::VerIterator::Downloadable() const 
 763    VerFileIterator Files 
= FileList(); 
 764    for (; Files
.end() == false; ++Files
) 
 765       if ((Files
.File()->Flags 
& pkgCache::Flag::NotSource
) != pkgCache::Flag::NotSource
) 
 770 // VerIterator::Automatic - Check if this version is 'automatic'        /*{{{*/ 
 771 // --------------------------------------------------------------------- 
 772 /* This checks to see if any of the versions files are not NotAutomatic.  
 773    True if this version is selectable for automatic installation. */ 
 774 bool pkgCache::VerIterator::Automatic() const 
 776    VerFileIterator Files 
= FileList(); 
 777    for (; Files
.end() == false; ++Files
) 
 778       // Do not check ButAutomaticUpgrades here as it is kind of automatic… 
 779       if ((Files
.File()->Flags 
& pkgCache::Flag::NotAutomatic
) != pkgCache::Flag::NotAutomatic
) 
 784 // VerIterator::NewestFile - Return the newest file version relation    /*{{{*/ 
 785 // --------------------------------------------------------------------- 
 786 /* This looks at the version numbers associated with all of the sources 
 787    this version is in and returns the highest.*/ 
 788 pkgCache::VerFileIterator 
pkgCache::VerIterator::NewestFile() const 
 790    VerFileIterator Files 
= FileList(); 
 791    VerFileIterator Highest 
= Files
; 
 792    for (; Files
.end() == false; ++Files
) 
 794       if (Owner
->VS
->CmpReleaseVer(Files
.File().Version(),Highest
.File().Version()) > 0) 
 801 // VerIterator::RelStr - Release description string                     /*{{{*/ 
 802 // --------------------------------------------------------------------- 
 803 /* This describes the version from a release-centric manner. The output is a  
 804    list of Label:Version/Archive */ 
 805 string 
pkgCache::VerIterator::RelStr() const 
 809    for (pkgCache::VerFileIterator I 
= this->FileList(); I
.end() == false; ++I
) 
 811       // Do not print 'not source' entries' 
 812       pkgCache::PkgFileIterator File 
= I
.File(); 
 813       if ((File
->Flags 
& pkgCache::Flag::NotSource
) == pkgCache::Flag::NotSource
) 
 816       // See if we have already printed this out.. 
 818       for (pkgCache::VerFileIterator J 
= this->FileList(); I 
!= J
; ++J
) 
 820          pkgCache::PkgFileIterator File2 
= J
.File(); 
 821          if (File2
->Label 
== 0 || File
->Label 
== 0) 
 824          if (strcmp(File
.Label(),File2
.Label()) != 0) 
 827          if (File2
->Version 
== File
->Version
) 
 832          if (File2
->Version 
== 0 || File
->Version 
== 0) 
 834          if (strcmp(File
.Version(),File2
.Version()) == 0) 
 846       if (File
->Label 
!= 0) 
 847          Res 
= Res 
+ File
.Label() + ':'; 
 849       if (File
->Archive 
!= 0) 
 851          if (File
->Version 
== 0) 
 852             Res 
+= File
.Archive(); 
 854             Res 
= Res 
+ File
.Version() + '/' +  File
.Archive(); 
 858          // No release file, print the host name that this came from 
 859          if (File
->Site 
== 0 || File
.Site()[0] == 0) 
 865    if (S
->ParentPkg 
!= 0) 
 866       Res
.append(" [").append(Arch()).append("]"); 
 870 // PkgFileIterator::IsOk - Checks if the cache is in sync with the file /*{{{*/ 
 871 // --------------------------------------------------------------------- 
 872 /* This stats the file and compares its stats with the ones that were 
 873    stored during generation. Date checks should probably also be  
 875 bool pkgCache::PkgFileIterator::IsOk() 
 878    if (stat(FileName(),&Buf
) != 0) 
 881    if (Buf
.st_size 
!= (signed)S
->Size 
|| Buf
.st_mtime 
!= S
->mtime
) 
 887 // PkgFileIterator::RelStr - Return the release string                  /*{{{*/ 
 888 // --------------------------------------------------------------------- 
 890 string 
pkgCache::PkgFileIterator::RelStr() 
 894       Res 
= Res 
+ (Res
.empty() == true?"v=":",v=") + Version(); 
 896       Res 
= Res 
+ (Res
.empty() == true?"o=":",o=")  + Origin(); 
 898       Res 
= Res 
+ (Res
.empty() == true?"a=":",a=")  + Archive(); 
 900       Res 
= Res 
+ (Res
.empty() == true?"n=":",n=")  + Codename(); 
 902       Res 
= Res 
+ (Res
.empty() == true?"l=":",l=")  + Label(); 
 903    if (Component() != 0) 
 904       Res 
= Res 
+ (Res
.empty() == true?"c=":",c=")  + Component(); 
 905    if (Architecture() != 0) 
 906       Res 
= Res 
+ (Res
.empty() == true?"b=":",b=")  + Architecture(); 
 910 // VerIterator::TranslatedDescription - Return the a DescIter for locale/*{{{*/ 
 911 // --------------------------------------------------------------------- 
 912 /* return a DescIter for the current locale or the default if none is  
 915 pkgCache::DescIterator 
pkgCache::VerIterator::TranslatedDescription() const 
 917    std::vector
<string
> const lang 
= APT::Configuration::getLanguages(); 
 918    for (std::vector
<string
>::const_iterator l 
= lang
.begin(); 
 919         l 
!= lang
.end(); ++l
) 
 921       pkgCache::DescIterator Desc 
= DescriptionList(); 
 922       for (; Desc
.end() == false; ++Desc
) 
 923          if (*l 
== Desc
.LanguageCode()) 
 925       if (Desc
.end() == true) 
 929             Desc 
= DescriptionList(); 
 930             for (; Desc
.end() == false; ++Desc
) 
 931                if (strcmp(Desc
.LanguageCode(), "") == 0) 
 933             if (Desc
.end() == true) 
 941    for (pkgCache::DescIterator Desc 
= DescriptionList(); 
 942         Desc
.end() == false; ++Desc
) 
 943       if (strcmp(Desc
.LanguageCode(), "") == 0) 
 945    return DescriptionList();