578 lines
25 KiB
C++
578 lines
25 KiB
C++
// -*- mode: cpp; mode: fold -*-
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// Description /*{{{*/
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/* ######################################################################
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Cache Iterators - Iterators for navigating the cache structure
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The iterators all provides ++,==,!=,->,* and end for their type.
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The end function can be used to tell if the list has been fully
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traversed.
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Unlike STL iterators these contain helper functions to access the data
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that is being iterated over. This is because the data structures can't
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be formed in a manner that is intuitive to use and also mmapable.
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For each variable in the target structure that would need a translation
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to be accessed correctly a translating function of the same name is
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present in the iterator. If applicable the translating function will
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return an iterator.
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The DepIterator can iterate over two lists, a list of 'version depends'
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or a list of 'package reverse depends'. The type is determined by the
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structure passed to the constructor, which should be the structure
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that has the depends pointer as a member. The provide iterator has the
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same system.
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This header is not user includable, please use apt-pkg/pkgcache.h
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##################################################################### */
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/*}}}*/
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#ifndef PKGLIB_CACHEITERATORS_H
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#define PKGLIB_CACHEITERATORS_H
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#ifndef __PKGLIB_IN_PKGCACHE_H
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#warning apt-pkg/cacheiterators.h should not be included directly, include apt-pkg/pkgcache.h instead
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#endif
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#include <apt-pkg/macros.h>
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#include <iosfwd>
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#include <iterator>
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#include <string>
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#include <string_view>
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#include <cstring>
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// abstract Iterator template /*{{{*/
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/* This template provides the very basic iterator methods we
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need to have for doing some walk-over-the-cache magic */
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template<typename Str, typename Itr> class APT_PUBLIC pkgCache::Iterator {
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/** \brief Returns the Pointer for this struct in the owner
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* The implementation of this method should be pretty short
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* as it will only return the Pointer into the mmap stored
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* in the owner but the name of this pointer is different for
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* each structure and we want to abstract here at least for the
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* basic methods from the actual structure.
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* \return Pointer to the first structure of this type
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*/
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Str* OwnerPointer() const { return static_cast<Itr const*>(this)->OwnerPointer(); }
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protected:
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Str *S;
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pkgCache *Owner;
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public:
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// iterator_traits
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using iterator_category = std::forward_iterator_tag;
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using value_type = Str;
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using difference_type = std::ptrdiff_t;
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using pointer = Str*;
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using reference = Str&;
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// Iteration
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inline bool end() const {return Owner == 0 || S == OwnerPointer();}
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// Comparison
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inline bool operator ==(const Itr &B) const {return S == B.S;}
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inline bool operator !=(const Itr &B) const {return S != B.S;}
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// Accessors
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inline Str *operator ->() {return S;}
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inline Str const *operator ->() const {return S;}
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inline operator Str *() {return S == OwnerPointer() ? 0 : S;}
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inline operator Str const *() const {return S == OwnerPointer() ? 0 : S;}
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inline Str &operator *() {return *S;}
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inline Str const &operator *() const {return *S;}
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inline pkgCache *Cache() const {return Owner;}
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// Mixed stuff
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inline bool IsGood() const { return S && Owner && ! end();}
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inline unsigned long Index() const {return S - OwnerPointer();}
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inline map_pointer<Str> MapPointer() const {return map_pointer<Str>(Index()) ;}
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void ReMap(void const * const oldMap, void * const newMap) {
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if (Owner == 0 || S == 0)
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return;
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S = static_cast<Str *>(newMap) + (S - static_cast<Str const *>(oldMap));
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}
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// Constructors - look out for the variable assigning
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inline Iterator() : S(0), Owner(0) {}
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inline Iterator(pkgCache &Owner,Str *T = 0) : S(T), Owner(&Owner) {}
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};
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/*}}}*/
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// Group Iterator /*{{{*/
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/* Packages with the same name are collected in a Group so someone only
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interest in package names can iterate easily over the names, so the
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different architectures can be treated as of the "same" package
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(apt internally treat them as totally different packages) */
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class APT_PUBLIC pkgCache::GrpIterator: public Iterator<Group, GrpIterator> {
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long HashIndex;
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public:
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inline Group* OwnerPointer() const {
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return (Owner != 0) ? Owner->GrpP : 0;
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}
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// This constructor is the 'begin' constructor, never use it.
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explicit inline GrpIterator(pkgCache &Owner) : Iterator<Group, GrpIterator>(Owner), HashIndex(-1) {
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S = OwnerPointer();
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operator++();
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}
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GrpIterator& operator++();
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inline GrpIterator operator++(int) { GrpIterator const tmp(*this); operator++(); return tmp; }
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inline const char *Name() const {return S->Name == 0?0:Owner->StrP + S->Name;}
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inline PkgIterator PackageList() const;
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inline VerIterator VersionsInSource() const;
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PkgIterator FindPkg(std::string_view Arch = {"any", 3}) const;
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/** \brief find the package with the "best" architecture
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The best architecture is either the "native" or the first
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in the list of Architectures which is not an end-Pointer
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\param PreferNonVirtual tries to respond with a non-virtual package
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and only if this fails returns the best virtual package */
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PkgIterator FindPreferredPkg(bool const &PreferNonVirtual = true) const;
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PkgIterator NextPkg(PkgIterator const &Pkg) const;
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// Constructors
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inline GrpIterator(pkgCache &Owner, Group *Trg) : Iterator<Group, GrpIterator>(Owner, Trg), HashIndex(0) {
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if (S == 0)
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S = OwnerPointer();
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}
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inline GrpIterator() : Iterator<Group, GrpIterator>(), HashIndex(0) {}
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};
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/*}}}*/
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// Package Iterator /*{{{*/
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class APT_PUBLIC pkgCache::PkgIterator: public Iterator<Package, PkgIterator> {
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long HashIndex;
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public:
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inline Package* OwnerPointer() const {
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return (Owner != 0) ? Owner->PkgP : 0;
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}
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// This constructor is the 'begin' constructor, never use it.
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explicit inline PkgIterator(pkgCache &Owner) : Iterator<Package, PkgIterator>(Owner), HashIndex(-1) {
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S = OwnerPointer();
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operator++();
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}
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PkgIterator& operator++();
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inline PkgIterator operator++(int) { PkgIterator const tmp(*this); operator++(); return tmp; }
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enum OkState {NeedsNothing,NeedsUnpack,NeedsConfigure};
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// Accessors
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inline const char *Name() const { return Group().Name(); }
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inline bool Purge() const {return S->CurrentState == pkgCache::State::Purge ||
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(S->CurrentVer == 0 && S->CurrentState == pkgCache::State::NotInstalled);}
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inline const char *Arch() const {return S->Arch == 0?0:Owner->StrP + S->Arch;}
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inline APT_PURE GrpIterator Group() const { return GrpIterator(*Owner, Owner->GrpP + S->Group);}
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inline VerIterator VersionList() const APT_PURE;
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inline VerIterator CurrentVer() const APT_PURE;
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inline DepIterator RevDependsList() const APT_PURE;
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inline PrvIterator ProvidesList() const APT_PURE;
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OkState State() const APT_PURE;
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const char *CurVersion() const APT_PURE;
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// for a nice printable representation you likely want APT::PrettyPkg instead
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friend std::ostream& operator<<(std::ostream& out, PkgIterator i);
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std::string FullName(bool const &Pretty = false) const;
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// Constructors
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inline PkgIterator(pkgCache &Owner,Package *Trg) : Iterator<Package, PkgIterator>(Owner, Trg), HashIndex(0) {
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if (S == 0)
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S = OwnerPointer();
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}
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inline PkgIterator() : Iterator<Package, PkgIterator>(), HashIndex(0) {}
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};
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/*}}}*/
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// SourceVersion Iterator /*{{{*/
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class APT_PUBLIC pkgCache::SrcVerIterator : public Iterator<SourceVersion, SrcVerIterator>
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{
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public:
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inline SourceVersion *OwnerPointer() const
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{
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return (Owner != 0) ? Owner->SrcVerP : 0;
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}
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#if 0
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// Iteration
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inline SrcVerIterator& operator++() {if (S != Owner->SrcVerP) S = Owner->SrcVerP + S->NextSourceVersion; return *this;}
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inline SrcVerIterator operator++(int) { SrcVerIterator const tmp(*this); operator++(); return tmp; }
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#endif
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inline APT_PURE GrpIterator Group() const { return GrpIterator(*Owner, Owner->GrpP + S->Group); }
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inline const char *VerStr() const { return S->VerStr == 0 ? 0 : Owner->StrP + S->VerStr; }
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inline SrcVerIterator(pkgCache &Owner, SourceVersion *Trg = 0) : Iterator<SourceVersion, SrcVerIterator>(Owner, Trg)
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{
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if (S == 0)
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S = OwnerPointer();
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}
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inline SrcVerIterator() : Iterator<SourceVersion, SrcVerIterator>() {}
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};
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/*}}}*/
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// Version Iterator /*{{{*/
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class APT_PUBLIC pkgCache::VerIterator : public Iterator<Version, VerIterator> {
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public:
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inline Version* OwnerPointer() const {
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return (Owner != 0) ? Owner->VerP : 0;
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}
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// Iteration
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inline VerIterator& operator++() {if (S != Owner->VerP) S = Owner->VerP + S->NextVer; return *this;}
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inline VerIterator operator++(int) { VerIterator const tmp(*this); operator++(); return tmp; }
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inline VerIterator NextInSource()
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{
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if (S != Owner->VerP)
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S = Owner->VerP + S->NextInSource;
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return *this;
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}
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// Comparison
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int CompareVer(const VerIterator &B) const;
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/** \brief compares two version and returns if they are similar
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This method should be used to identify if two pseudo versions are
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referring to the same "real" version */
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inline bool SimilarVer(const VerIterator &B) const {
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return (B.end() == false && S->Hash == B->Hash && strcmp(VerStr(), B.VerStr()) == 0);
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}
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// Accessors
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inline const char *VerStr() const {return S->VerStr == 0?0:Owner->StrP + S->VerStr;}
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inline const char *Section() const {return S->Section == 0?0:Owner->StrP + S->Section;}
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/** \brief source version this version comes from
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Always contains the version string, even if it is the same as the binary version */
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SrcVerIterator SourceVersion() const { return SrcVerIterator(*Owner, Owner->SrcVerP + S->SourceVersion); }
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/** \brief source package name this version comes from
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Always contains the name, even if it is the same as the binary name */
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inline const char *SourcePkgName() const { return SourceVersion().Group().Name(); }
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/** \brief source version this version comes from
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Always contains the version string, even if it is the same as the binary version */
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inline const char *SourceVerStr() const { return SourceVersion().VerStr(); }
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inline const char *Arch() const {
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if ((S->MultiArch & pkgCache::Version::All) == pkgCache::Version::All)
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return "all";
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return S->ParentPkg == 0?0:Owner->StrP + ParentPkg()->Arch;
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}
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inline PkgIterator ParentPkg() const {return PkgIterator(*Owner,Owner->PkgP + S->ParentPkg);}
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inline DescIterator DescriptionList() const;
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DescIterator TranslatedDescriptionForLanguage(std::string_view lang) const;
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DescIterator TranslatedDescription() const;
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inline DepIterator DependsList() const;
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inline PrvIterator ProvidesList() const;
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inline VerFileIterator FileList() const;
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bool Downloadable() const;
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inline const char *PriorityType() const {return Owner->Priority(S->Priority);}
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const char *MultiArchType() const APT_PURE;
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std::string RelStr() const;
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bool Automatic() const;
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VerFileIterator NewestFile() const;
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bool IsSecurityUpdate() const;
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#ifdef APT_COMPILING_APT
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inline unsigned int PhasedUpdatePercentage() const
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{
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return (static_cast<Version::Extra *>(Owner->Map.Data()) + S->d)->PhasedUpdatePercentage;
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}
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inline bool PhasedUpdatePercentage(unsigned int percentage)
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{
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if (percentage > 100)
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return false;
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(static_cast<Version::Extra *>(Owner->Map.Data()) + S->d)->PhasedUpdatePercentage = static_cast<uint8_t>(percentage);
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return true;
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}
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#endif
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inline VerIterator(pkgCache &Owner,Version *Trg = 0) : Iterator<Version, VerIterator>(Owner, Trg) {
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if (S == 0)
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S = OwnerPointer();
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}
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inline VerIterator() : Iterator<Version, VerIterator>() {}
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};
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/*}}}*/
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// Description Iterator /*{{{*/
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class APT_PUBLIC pkgCache::DescIterator : public Iterator<Description, DescIterator> {
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public:
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inline Description* OwnerPointer() const {
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return (Owner != 0) ? Owner->DescP : 0;
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}
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// Iteration
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inline DescIterator& operator++() {if (S != Owner->DescP) S = Owner->DescP + S->NextDesc; return *this;}
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inline DescIterator operator++(int) { DescIterator const tmp(*this); operator++(); return tmp; }
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// Comparison
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int CompareDesc(const DescIterator &B) const;
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// Accessors
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inline const char *LanguageCode() const {return Owner->StrP + S->language_code;}
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inline const char *md5() const {return Owner->StrP + S->md5sum;}
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inline DescFileIterator FileList() const;
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inline DescIterator() : Iterator<Description, DescIterator>() {}
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inline DescIterator(pkgCache &Owner,Description *Trg = 0) : Iterator<Description, DescIterator>(Owner, Trg) {
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if (S == 0)
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S = Owner.DescP;
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}
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};
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/*}}}*/
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// Dependency iterator /*{{{*/
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class APT_PUBLIC pkgCache::DepIterator : public Iterator<Dependency, DepIterator> {
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enum {DepVer, DepRev} Type;
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DependencyData * S2;
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public:
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inline Dependency* OwnerPointer() const {
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return (Owner != 0) ? Owner->DepP : 0;
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}
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// Iteration
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DepIterator& operator++();
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inline DepIterator operator++(int) { DepIterator const tmp(*this); operator++(); return tmp; }
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// Accessors
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inline const char *TargetVer() const {return S2->Version == 0?0:Owner->StrP + S2->Version;}
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inline PkgIterator TargetPkg() const {return PkgIterator(*Owner,Owner->PkgP + S2->Package);}
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inline PkgIterator SmartTargetPkg() const {PkgIterator R(*Owner,0);SmartTargetPkg(R);return R;}
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inline VerIterator ParentVer() const {return VerIterator(*Owner,Owner->VerP + S->ParentVer);}
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inline PkgIterator ParentPkg() const {return PkgIterator(*Owner,Owner->PkgP + Owner->VerP[uint32_t(S->ParentVer)].ParentPkg);}
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inline bool Reverse() const {return Type == DepRev;}
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bool IsCritical() const APT_PURE;
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bool IsNegative() const APT_PURE;
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bool IsIgnorable(PrvIterator const &Prv) const APT_PURE;
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bool IsIgnorable(PkgIterator const &Pkg) const APT_PURE;
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/* MultiArch can be translated to SingleArch for an resolver and we did so,
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by adding dependencies to help the resolver understand the problem, but
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sometimes it is needed to identify these to ignore them… */
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inline bool IsMultiArchImplicit() const APT_PURE {
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return (S2->CompareOp & pkgCache::Dep::MultiArchImplicit) == pkgCache::Dep::MultiArchImplicit;
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}
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/* This covers additionally negative dependencies, which aren't arch-specific,
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but change architecture nonetheless as a Conflicts: foo does applies for all archs */
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bool IsImplicit() const APT_PURE;
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bool IsSatisfied(PkgIterator const &Pkg) const APT_PURE;
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bool IsSatisfied(VerIterator const &Ver) const APT_PURE;
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bool IsSatisfied(PrvIterator const &Prv) const APT_PURE;
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void GlobOr(DepIterator &Start,DepIterator &End);
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Version **AllTargets() const;
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bool SmartTargetPkg(PkgIterator &Result) const;
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inline const char *CompType() const {return Owner->CompType(S2->CompareOp);}
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inline const char *DepType() const {return Owner->DepType(S2->Type);}
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// overrides because we are special
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struct DependencyProxy
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{
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map_stringitem_t &Version;
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map_pointer<pkgCache::Package> &Package;
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map_id_t &ID;
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unsigned char &Type;
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unsigned char &CompareOp;
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map_pointer<pkgCache::Version> &ParentVer;
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map_pointer<pkgCache::DependencyData> &DependencyData;
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map_pointer<Dependency> &NextRevDepends;
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map_pointer<Dependency> &NextDepends;
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map_pointer<pkgCache::DependencyData> &NextData;
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DependencyProxy const * operator->() const { return this; }
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DependencyProxy * operator->() { return this; }
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};
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inline DependencyProxy operator->() const {return (DependencyProxy) { S2->Version, S2->Package, S->ID, S2->Type, S2->CompareOp, S->ParentVer, S->DependencyData, S->NextRevDepends, S->NextDepends, S2->NextData };}
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inline DependencyProxy operator->() {return (DependencyProxy) { S2->Version, S2->Package, S->ID, S2->Type, S2->CompareOp, S->ParentVer, S->DependencyData, S->NextRevDepends, S->NextDepends, S2->NextData };}
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void ReMap(void const * const oldMap, void * const newMap)
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{
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Iterator<Dependency, DepIterator>::ReMap(oldMap, newMap);
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if (Owner == 0 || S == 0 || S2 == 0)
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return;
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S2 = static_cast<DependencyData *>(newMap) + (S2 - static_cast<DependencyData const *>(oldMap));
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}
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// for a nice printable representation you likely want APT::PrettyDep instead
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friend std::ostream& operator<<(std::ostream& out, DepIterator D);
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inline DepIterator(pkgCache &Owner, Dependency *Trg, Version* = 0) :
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Iterator<Dependency, DepIterator>(Owner, Trg), Type(DepVer), S2(Trg == 0 ? Owner.DepDataP : (Owner.DepDataP + Trg->DependencyData)) {
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if (S == 0)
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S = Owner.DepP;
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}
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inline DepIterator(pkgCache &Owner, Dependency *Trg, Package*) :
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Iterator<Dependency, DepIterator>(Owner, Trg), Type(DepRev), S2(Trg == 0 ? Owner.DepDataP : (Owner.DepDataP + Trg->DependencyData)) {
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if (S == 0)
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S = Owner.DepP;
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}
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inline DepIterator() : Iterator<Dependency, DepIterator>(), Type(DepVer), S2(0) {}
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};
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/*}}}*/
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// Provides iterator /*{{{*/
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class APT_PUBLIC pkgCache::PrvIterator : public Iterator<Provides, PrvIterator> {
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enum {PrvVer, PrvPkg} Type;
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public:
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inline Provides* OwnerPointer() const {
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return (Owner != 0) ? Owner->ProvideP : 0;
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}
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// Iteration
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inline PrvIterator& operator ++() {if (S != Owner->ProvideP) S = Owner->ProvideP +
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(Type == PrvVer?S->NextPkgProv:S->NextProvides); return *this;}
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inline PrvIterator operator++(int) { PrvIterator const tmp(*this); operator++(); return tmp; }
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// Accessors
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inline const char *Name() const {return ParentPkg().Name();}
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inline const char *ProvideVersion() const {return S->ProvideVersion == 0?0:Owner->StrP + S->ProvideVersion;}
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inline PkgIterator ParentPkg() const {return PkgIterator(*Owner,Owner->PkgP + S->ParentPkg);}
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inline VerIterator OwnerVer() const {return VerIterator(*Owner,Owner->VerP + S->Version);}
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inline PkgIterator OwnerPkg() const {return PkgIterator(*Owner,Owner->PkgP + Owner->VerP[uint32_t(S->Version)].ParentPkg);}
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/* MultiArch can be translated to SingleArch for an resolver and we did so,
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by adding provides to help the resolver understand the problem, but
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sometimes it is needed to identify these to ignore them… */
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bool IsMultiArchImplicit() const APT_PURE
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{ return (S->Flags & pkgCache::Flag::MultiArchImplicit) == pkgCache::Flag::MultiArchImplicit; }
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inline PrvIterator() : Iterator<Provides, PrvIterator>(), Type(PrvVer) {}
|
|
inline PrvIterator(pkgCache &Owner, Provides *Trg, Version*) :
|
|
Iterator<Provides, PrvIterator>(Owner, Trg), Type(PrvVer) {
|
|
if (S == 0)
|
|
S = Owner.ProvideP;
|
|
}
|
|
inline PrvIterator(pkgCache &Owner, Provides *Trg, Package*) :
|
|
Iterator<Provides, PrvIterator>(Owner, Trg), Type(PrvPkg) {
|
|
if (S == 0)
|
|
S = Owner.ProvideP;
|
|
}
|
|
};
|
|
/*}}}*/
|
|
// Release file /*{{{*/
|
|
class APT_PUBLIC pkgCache::RlsFileIterator : public Iterator<ReleaseFile, RlsFileIterator> {
|
|
public:
|
|
inline ReleaseFile* OwnerPointer() const {
|
|
return (Owner != 0) ? Owner->RlsFileP : 0;
|
|
}
|
|
|
|
// Iteration
|
|
inline RlsFileIterator& operator++() {if (S != Owner->RlsFileP) S = Owner->RlsFileP + S->NextFile;return *this;}
|
|
inline RlsFileIterator operator++(int) { RlsFileIterator const tmp(*this); operator++(); return tmp; }
|
|
|
|
// Accessors
|
|
inline const char *FileName() const {return S->FileName == 0?0:Owner->StrP + S->FileName;}
|
|
inline const char *Archive() const {return S->Archive == 0?0:Owner->StrP + S->Archive;}
|
|
inline const char *Version() const {return S->Version == 0?0:Owner->StrP + S->Version;}
|
|
inline const char *Origin() const {return S->Origin == 0?0:Owner->StrP + S->Origin;}
|
|
inline const char *Codename() const {return S->Codename ==0?0:Owner->StrP + S->Codename;}
|
|
inline const char *Label() const {return S->Label == 0?0:Owner->StrP + S->Label;}
|
|
inline const char *Site() const {return S->Site == 0?0:Owner->StrP + S->Site;}
|
|
inline bool Flagged(pkgCache::Flag::ReleaseFileFlags const flag) const {return (S->Flags & flag) == flag; }
|
|
|
|
std::string RelStr();
|
|
|
|
// Constructors
|
|
inline RlsFileIterator() : Iterator<ReleaseFile, RlsFileIterator>() {}
|
|
explicit inline RlsFileIterator(pkgCache &Owner) : Iterator<ReleaseFile, RlsFileIterator>(Owner, Owner.RlsFileP) {}
|
|
inline RlsFileIterator(pkgCache &Owner,ReleaseFile *Trg) : Iterator<ReleaseFile, RlsFileIterator>(Owner, Trg) {}
|
|
};
|
|
/*}}}*/
|
|
// Package file /*{{{*/
|
|
class APT_PUBLIC pkgCache::PkgFileIterator : public Iterator<PackageFile, PkgFileIterator> {
|
|
public:
|
|
inline PackageFile* OwnerPointer() const {
|
|
return (Owner != 0) ? Owner->PkgFileP : 0;
|
|
}
|
|
|
|
// Iteration
|
|
inline PkgFileIterator& operator++() {if (S != Owner->PkgFileP) S = Owner->PkgFileP + S->NextFile; return *this;}
|
|
inline PkgFileIterator operator++(int) { PkgFileIterator const tmp(*this); operator++(); return tmp; }
|
|
|
|
// Accessors
|
|
inline const char *FileName() const {return S->FileName == 0?0:Owner->StrP + S->FileName;}
|
|
inline pkgCache::RlsFileIterator ReleaseFile() const {return RlsFileIterator(*Owner, Owner->RlsFileP + S->Release);}
|
|
inline const char *Archive() const {return S->Release == 0 ? Component() : ReleaseFile().Archive();}
|
|
inline const char *Version() const {return S->Release == 0 ? NULL : ReleaseFile().Version();}
|
|
inline const char *Origin() const {return S->Release == 0 ? NULL : ReleaseFile().Origin();}
|
|
inline const char *Codename() const {return S->Release == 0 ? NULL : ReleaseFile().Codename();}
|
|
inline const char *Label() const {return S->Release == 0 ? NULL : ReleaseFile().Label();}
|
|
inline const char *Site() const {return S->Release == 0 ? NULL : ReleaseFile().Site();}
|
|
inline bool Flagged(pkgCache::Flag::ReleaseFileFlags const flag) const {return S->Release== 0 ? false : ReleaseFile().Flagged(flag);}
|
|
inline bool Flagged(pkgCache::Flag::PkgFFlags const flag) const {return (S->Flags & flag) == flag;}
|
|
inline const char *Component() const {return S->Component == 0?0:Owner->StrP + S->Component;}
|
|
inline const char *Architecture() const {return S->Architecture == 0?0:Owner->StrP + S->Architecture;}
|
|
inline const char *IndexType() const {return S->IndexType == 0?0:Owner->StrP + S->IndexType;}
|
|
|
|
std::string RelStr();
|
|
|
|
// Constructors
|
|
inline PkgFileIterator() : Iterator<PackageFile, PkgFileIterator>() {}
|
|
explicit inline PkgFileIterator(pkgCache &Owner) : Iterator<PackageFile, PkgFileIterator>(Owner, Owner.PkgFileP) {}
|
|
inline PkgFileIterator(pkgCache &Owner,PackageFile *Trg) : Iterator<PackageFile, PkgFileIterator>(Owner, Trg) {}
|
|
};
|
|
/*}}}*/
|
|
// Version File /*{{{*/
|
|
class APT_PUBLIC pkgCache::VerFileIterator : public pkgCache::Iterator<VerFile, VerFileIterator> {
|
|
public:
|
|
inline VerFile* OwnerPointer() const {
|
|
return (Owner != 0) ? Owner->VerFileP : 0;
|
|
}
|
|
|
|
// Iteration
|
|
inline VerFileIterator& operator++() {if (S != Owner->VerFileP) S = Owner->VerFileP + S->NextFile; return *this;}
|
|
inline VerFileIterator operator++(int) { VerFileIterator const tmp(*this); operator++(); return tmp; }
|
|
|
|
// Accessors
|
|
inline PkgFileIterator File() const {return PkgFileIterator(*Owner, Owner->PkgFileP + S->File);}
|
|
|
|
inline VerFileIterator() : Iterator<VerFile, VerFileIterator>() {}
|
|
inline VerFileIterator(pkgCache &Owner,VerFile *Trg) : Iterator<VerFile, VerFileIterator>(Owner, Trg) {}
|
|
};
|
|
/*}}}*/
|
|
// Description File /*{{{*/
|
|
class APT_PUBLIC pkgCache::DescFileIterator : public Iterator<DescFile, DescFileIterator> {
|
|
public:
|
|
inline DescFile* OwnerPointer() const {
|
|
return (Owner != 0) ? Owner->DescFileP : 0;
|
|
}
|
|
|
|
// Iteration
|
|
inline DescFileIterator& operator++() {if (S != Owner->DescFileP) S = Owner->DescFileP + S->NextFile; return *this;}
|
|
inline DescFileIterator operator++(int) { DescFileIterator const tmp(*this); operator++(); return tmp; }
|
|
|
|
// Accessors
|
|
inline PkgFileIterator File() const {return PkgFileIterator(*Owner, Owner->PkgFileP + S->File);}
|
|
|
|
inline DescFileIterator() : Iterator<DescFile, DescFileIterator>() {}
|
|
inline DescFileIterator(pkgCache &Owner,DescFile *Trg) : Iterator<DescFile, DescFileIterator>(Owner, Trg) {}
|
|
};
|
|
/*}}}*/
|
|
// Inlined Begin functions can't be in the class because of order problems /*{{{*/
|
|
inline pkgCache::PkgIterator pkgCache::GrpIterator::PackageList() const
|
|
{return PkgIterator(*Owner,Owner->PkgP + S->FirstPackage);}
|
|
inline pkgCache::VerIterator pkgCache::GrpIterator::VersionsInSource() const
|
|
{
|
|
return VerIterator(*Owner, Owner->VerP + S->VersionsInSource);
|
|
}
|
|
inline pkgCache::VerIterator pkgCache::PkgIterator::VersionList() const
|
|
{return VerIterator(*Owner,Owner->VerP + S->VersionList);}
|
|
inline pkgCache::VerIterator pkgCache::PkgIterator::CurrentVer() const
|
|
{return VerIterator(*Owner,Owner->VerP + S->CurrentVer);}
|
|
inline pkgCache::DepIterator pkgCache::PkgIterator::RevDependsList() const
|
|
{return DepIterator(*Owner,Owner->DepP + S->RevDepends,S);}
|
|
inline pkgCache::PrvIterator pkgCache::PkgIterator::ProvidesList() const
|
|
{return PrvIterator(*Owner,Owner->ProvideP + S->ProvidesList,S);}
|
|
inline pkgCache::DescIterator pkgCache::VerIterator::DescriptionList() const
|
|
{return DescIterator(*Owner,Owner->DescP + S->DescriptionList);}
|
|
inline pkgCache::PrvIterator pkgCache::VerIterator::ProvidesList() const
|
|
{return PrvIterator(*Owner,Owner->ProvideP + S->ProvidesList,S);}
|
|
inline pkgCache::DepIterator pkgCache::VerIterator::DependsList() const
|
|
{return DepIterator(*Owner,Owner->DepP + S->DependsList,S);}
|
|
inline pkgCache::VerFileIterator pkgCache::VerIterator::FileList() const
|
|
{return VerFileIterator(*Owner,Owner->VerFileP + S->FileList);}
|
|
inline pkgCache::DescFileIterator pkgCache::DescIterator::FileList() const
|
|
{return DescFileIterator(*Owner,Owner->DescFileP + S->FileList);}
|
|
/*}}}*/
|
|
#endif
|