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1 // -*- mode: cpp; mode: fold -*-
3 // $Id: mmap.cc,v 1.10 1998/11/23 07:03:08 jgg Exp $
4 /* ######################################################################
6 MMap Class - Provides 'real' mmap or a faked mmap using read().
10 Some broken versions of glibc2 (libc6) have a broken definition
11 of mmap that accepts a char * -- all other systems (and libc5) use
12 void *. We can't safely do anything here that would be portable, so
13 libc6 generates warnings -- which should be errors, g++ isn't properly
16 The configure test notes that some OS's have broken private mmap's
17 so on those OS's we can't use mmap. This means we have to use
18 configure to test mmap and can't rely on the POSIX
19 _POSIX_MAPPED_FILES test.
21 ##################################################################### */
23 // Include Files /*{{{*/
25 #pragma implementation "apt-pkg/mmap.h"
29 #include <apt-pkg/mmap.h>
30 #include <apt-pkg/error.h>
39 // MMap::MMap - Constructor /*{{{*/
40 // ---------------------------------------------------------------------
42 MMap::MMap(FileFd
&F
,unsigned long Flags
) : Fd(F
), Flags(Flags
), iSize(0),
45 if ((Flags
& NoImmMap
) != NoImmMap
)
49 // MMap::~MMap - Destructor /*{{{*/
50 // ---------------------------------------------------------------------
57 // MMap::Map - Perform the mapping /*{{{*/
58 // ---------------------------------------------------------------------
64 // Set the permissions.
67 if ((Flags
& ReadOnly
) != ReadOnly
)
69 if ((Flags
& Public
) != Public
)
73 return _error
->Error("Can't mmap an empty file");
76 Base
= mmap(0,iSize
,Prot
,Map
,Fd
.Fd(),0);
77 if (Base
== (void *)-1)
78 return _error
->Errno("mmap","Couldn't make mmap of %u bytes",iSize
);
83 // MMap::Close - Close the map /*{{{*/
84 // ---------------------------------------------------------------------
86 bool MMap::Close(bool DoClose
, bool DoSync
)
88 if (Fd
.IsOpen() == false)
94 if (munmap((char *)Base
,iSize
) != 0)
95 _error
->Warning("Unable to munmap");
103 // MMap::Sync - Syncronize the map with the disk /*{{{*/
104 // ---------------------------------------------------------------------
105 /* This is done in syncronous mode - the docs indicate that this will
106 not return till all IO is complete */
109 if ((Flags
& ReadOnly
) != ReadOnly
)
110 if (msync((char *)Base
,iSize
,MS_SYNC
) != 0)
111 return _error
->Error("msync","Unable to write mmap");
115 // MMap::Sync - Syncronize a section of the file to disk /*{{{*/
116 // ---------------------------------------------------------------------
118 bool MMap::Sync(unsigned long Start
,unsigned long Stop
)
120 if ((Flags
& ReadOnly
) != ReadOnly
)
121 if (msync((char *)Base
+(int)(Start
/PAGE_SIZE
)*PAGE_SIZE
,Stop
- Start
,MS_SYNC
) != 0)
122 return _error
->Error("msync","Unable to write mmap");
127 // DynamicMMap::DynamicMMap - Constructor /*{{{*/
128 // ---------------------------------------------------------------------
130 DynamicMMap::DynamicMMap(FileFd
&F
,unsigned long Flags
,unsigned long WorkSpace
) :
131 MMap(F
,Flags
| NoImmMap
), WorkSpace(WorkSpace
)
133 if (_error
->PendingError() == true)
136 unsigned long EndOfFile
= Fd
.Size();
139 Fd
.Write(&C
,sizeof(C
));
144 // DynamicMMap::~DynamicMMap - Destructor /*{{{*/
145 // ---------------------------------------------------------------------
146 /* We truncate the file to the size of the memory data set */
147 DynamicMMap::~DynamicMMap()
149 unsigned long EndOfFile
= iSize
;
153 ftruncate(Fd
.Fd(),EndOfFile
);
157 // DynamicMMap::RawAllocate - Allocate a raw chunk of unaligned space /*{{{*/
158 // ---------------------------------------------------------------------
159 /* This allocates a block of memory aligned to the given size */
160 unsigned long DynamicMMap::RawAllocate(unsigned long Size
,unsigned long Aln
)
162 unsigned long Result
= iSize
;
164 Result
+= Aln
- (iSize%Aln
);
166 iSize
= Result
+ Size
;
168 // Just in case error check
169 if (Result
+ Size
> WorkSpace
)
171 _error
->Error("Dynamic MMap ran out of room");
177 // DynamicMMap::Allocate - Pooled aligned allocation /*{{{*/
178 // ---------------------------------------------------------------------
179 /* This allocates an Item of size ItemSize so that it is aligned to its
181 unsigned long DynamicMMap::Allocate(unsigned long ItemSize
)
183 // Look for a matching pool entry
186 for (I
= Pools
; I
!= Pools
+ PoolCount
; I
++)
188 if (I
->ItemSize
== 0)
190 if (I
->ItemSize
== ItemSize
)
194 // No pool is allocated, use an unallocated one
195 if (I
== Pools
+ PoolCount
)
197 // Woops, we ran out, the calling code should allocate more.
200 _error
->Error("Ran out of allocation pools");
205 I
->ItemSize
= ItemSize
;
209 // Out of space, allocate some more
212 I
->Count
= 20*1024/ItemSize
;
213 I
->Start
= RawAllocate(I
->Count
*ItemSize
,ItemSize
);
217 unsigned long Result
= I
->Start
;
218 I
->Start
+= ItemSize
;
219 return Result
/ItemSize
;
222 // DynamicMMap::WriteString - Write a string to the file /*{{{*/
223 // ---------------------------------------------------------------------
224 /* Strings are not aligned to anything */
225 unsigned long DynamicMMap::WriteString(const char *String
,
228 unsigned long Result
= iSize
;
229 // Just in case error check
230 if (Result
> WorkSpace
)
232 _error
->Error("Dynamic MMap ran out of room");
237 Len
= strlen(String
);
239 memcpy((char *)Base
+ Result
,String
,Len
);
240 ((char *)Base
)[Result
+ Len
] = 0;