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git.saurik.com Git - apt.git/blob - apt-pkg/tagfile.cc
1 // -*- mode: cpp; mode: fold -*-
3 // $Id: tagfile.cc,v 1.37.2.2 2003/12/31 16:02:30 mdz Exp $
4 /* ######################################################################
6 Fast scanner for RFC-822 type header information
8 This uses a rotating buffer to load the package information into.
9 The scanner runs over it and isolates and indexes a single section.
11 ##################################################################### */
13 // Include Files /*{{{*/
14 #include <apt-pkg/tagfile.h>
15 #include <apt-pkg/error.h>
16 #include <apt-pkg/strutl.h>
27 // TagFile::pkgTagFile - Constructor /*{{{*/
28 // ---------------------------------------------------------------------
30 pkgTagFile::pkgTagFile(FileFd
*pFd
,unsigned long Size
) :
34 if (Fd
.IsOpen() == false)
37 Start
= End
= Buffer
= 0;
43 Buffer
= new char[Size
];
50 // TagFile::~pkgTagFile - Destructor /*{{{*/
51 // ---------------------------------------------------------------------
53 pkgTagFile::~pkgTagFile()
58 // TagFile::Resize - Resize the internal buffer /*{{{*/
59 // ---------------------------------------------------------------------
60 /* Resize the internal buffer (double it in size). Fail if a maximum size
63 bool pkgTagFile::Resize()
66 unsigned long EndSize
= End
- Start
;
68 // fail is the buffer grows too big
69 if(Size
> 1024*1024+1)
72 // get new buffer and use it
73 tmp
= new char[2*Size
];
74 memcpy(tmp
, Buffer
, Size
);
79 // update the start/end pointers to the new buffer
81 End
= Start
+ EndSize
;
85 // TagFile::Step - Advance to the next section /*{{{*/
86 // ---------------------------------------------------------------------
87 /* If the Section Scanner fails we refill the buffer and try again.
88 * If that fails too, double the buffer size and try again until a
89 * maximum buffer is reached.
91 bool pkgTagFile::Step(pkgTagSection
&Tag
)
93 while (Tag
.Scan(Start
,End
- Start
) == false)
98 if(Tag
.Scan(Start
,End
- Start
))
101 if (Resize() == false)
102 return _error
->Error(_("Unable to parse package file %s (1)"),
106 iOffset
+= Tag
.size();
112 // TagFile::Fill - Top up the buffer /*{{{*/
113 // ---------------------------------------------------------------------
114 /* This takes the bit at the end of the buffer and puts it at the start
115 then fills the rest from the file */
116 bool pkgTagFile::Fill()
118 unsigned long EndSize
= End
- Start
;
119 unsigned long Actual
= 0;
121 memmove(Buffer
,Start
,EndSize
);
123 End
= Buffer
+ EndSize
;
127 // See if only a bit of the file is left
128 if (Fd
.Read(End
,Size
- (End
- Buffer
),&Actual
) == false)
130 if (Actual
!= Size
- (End
- Buffer
))
137 if (EndSize
<= 3 && Actual
== 0)
139 if (Size
- (End
- Buffer
) < 4)
142 // Append a double new line if one does not exist
143 unsigned int LineCount
= 0;
144 for (const char *E
= End
- 1; E
- End
< 6 && (*E
== '\n' || *E
== '\r'); E
--)
147 for (; LineCount
< 2; LineCount
++)
156 // TagFile::Jump - Jump to a pre-recorded location in the file /*{{{*/
157 // ---------------------------------------------------------------------
158 /* This jumps to a pre-recorded file location and reads the record
160 bool pkgTagFile::Jump(pkgTagSection
&Tag
,unsigned long Offset
)
162 // We are within a buffer space of the next hit..
163 if (Offset
>= iOffset
&& iOffset
+ (End
- Start
) > Offset
)
165 unsigned long Dist
= Offset
- iOffset
;
171 // Reposition and reload..
174 if (Fd
.Seek(Offset
) == false)
176 End
= Start
= Buffer
;
181 if (Tag
.Scan(Start
,End
- Start
) == true)
184 // This appends a double new line (for the real eof handling)
188 if (Tag
.Scan(Start
,End
- Start
) == false)
189 return _error
->Error(_("Unable to parse package file %s (2)"),Fd
.Name().c_str());
194 // TagSection::Scan - Scan for the end of the header information /*{{{*/
195 // ---------------------------------------------------------------------
196 /* This looks for the first double new line in the data stream.
197 It also indexes the tags in the section. */
198 bool pkgTagSection::Scan(const char *Start
,unsigned long MaxLength
)
200 const char *End
= Start
+ MaxLength
;
201 Stop
= Section
= Start
;
202 memset(AlphaIndexes
,0,sizeof(AlphaIndexes
));
208 while (TagCount
+1 < sizeof(Indexes
)/sizeof(Indexes
[0]) && Stop
< End
)
210 TrimRecord(true,End
);
212 // Start a new index and add it to the hash
213 if (isspace(Stop
[0]) == 0)
215 Indexes
[TagCount
++] = Stop
- Section
;
216 AlphaIndexes
[AlphaHash(Stop
,End
)] = TagCount
;
219 Stop
= (const char *)memchr(Stop
,'\n',End
- Stop
);
224 for (; Stop
+1 < End
&& Stop
[1] == '\r'; Stop
++);
226 // Double newline marks the end of the record
227 if (Stop
+1 < End
&& Stop
[1] == '\n')
229 Indexes
[TagCount
] = Stop
- Section
;
230 TrimRecord(false,End
);
240 // TagSection::TrimRecord - Trim off any garbage before/after a record /*{{{*/
241 // ---------------------------------------------------------------------
242 /* There should be exactly 2 newline at the end of the record, no more. */
243 void pkgTagSection::TrimRecord(bool BeforeRecord
, const char*& End
)
245 if (BeforeRecord
== true)
247 for (; Stop
< End
&& (Stop
[0] == '\n' || Stop
[0] == '\r'); Stop
++);
250 // TagSection::Trim - Trim off any trailing garbage /*{{{*/
251 // ---------------------------------------------------------------------
252 /* There should be exactly 1 newline at the end of the buffer, no more. */
253 void pkgTagSection::Trim()
255 for (; Stop
> Section
+ 2 && (Stop
[-2] == '\n' || Stop
[-2] == '\r'); Stop
--);
258 // TagSection::Find - Locate a tag /*{{{*/
259 // ---------------------------------------------------------------------
260 /* This searches the section for a tag that matches the given string. */
261 bool pkgTagSection::Find(const char *Tag
,unsigned &Pos
) const
263 unsigned int Length
= strlen(Tag
);
264 unsigned int I
= AlphaIndexes
[AlphaHash(Tag
)];
269 for (unsigned int Counter
= 0; Counter
!= TagCount
; Counter
++,
273 St
= Section
+ Indexes
[I
];
274 if (strncasecmp(Tag
,St
,Length
) != 0)
277 // Make sure the colon is in the right place
278 const char *C
= St
+ Length
;
279 for (; isspace(*C
) != 0; C
++);
290 // TagSection::Find - Locate a tag /*{{{*/
291 // ---------------------------------------------------------------------
292 /* This searches the section for a tag that matches the given string. */
293 bool pkgTagSection::Find(const char *Tag
,const char *&Start
,
294 const char *&End
) const
296 unsigned int Length
= strlen(Tag
);
297 unsigned int I
= AlphaIndexes
[AlphaHash(Tag
)];
302 for (unsigned int Counter
= 0; Counter
!= TagCount
; Counter
++,
306 St
= Section
+ Indexes
[I
];
307 if (strncasecmp(Tag
,St
,Length
) != 0)
310 // Make sure the colon is in the right place
311 const char *C
= St
+ Length
;
312 for (; isspace(*C
) != 0; C
++);
316 // Strip off the gunk from the start end
318 End
= Section
+ Indexes
[I
+1];
320 return _error
->Error("Internal parsing error");
322 for (; (isspace(*Start
) != 0 || *Start
== ':') && Start
< End
; Start
++);
323 for (; isspace(End
[-1]) != 0 && End
> Start
; End
--);
332 // TagSection::FindS - Find a string /*{{{*/
333 // ---------------------------------------------------------------------
335 string
pkgTagSection::FindS(const char *Tag
) const
339 if (Find(Tag
,Start
,End
) == false)
341 return string(Start
,End
);
344 // TagSection::FindI - Find an integer /*{{{*/
345 // ---------------------------------------------------------------------
347 signed int pkgTagSection::FindI(const char *Tag
,signed long Default
) const
351 if (Find(Tag
,Start
,Stop
) == false)
354 // Copy it into a temp buffer so we can use strtol
356 if ((unsigned)(Stop
- Start
) >= sizeof(S
))
358 strncpy(S
,Start
,Stop
-Start
);
362 signed long Result
= strtol(S
,&End
,10);
368 // TagSection::FindULL - Find an unsigned long long integer /*{{{*/
369 // ---------------------------------------------------------------------
371 unsigned long long pkgTagSection::FindULL(const char *Tag
, unsigned long long const &Default
) const
375 if (Find(Tag
,Start
,Stop
) == false)
378 // Copy it into a temp buffer so we can use strtoull
380 if ((unsigned)(Stop
- Start
) >= sizeof(S
))
382 strncpy(S
,Start
,Stop
-Start
);
386 unsigned long long Result
= strtoull(S
,&End
,10);
392 // TagSection::FindFlag - Locate a yes/no type flag /*{{{*/
393 // ---------------------------------------------------------------------
394 /* The bits marked in Flag are masked on/off in Flags */
395 bool pkgTagSection::FindFlag(const char *Tag
,unsigned long &Flags
,
396 unsigned long Flag
) const
400 if (Find(Tag
,Start
,Stop
) == false)
402 return FindFlag(Flags
, Flag
, Start
, Stop
);
404 bool const pkgTagSection::FindFlag(unsigned long &Flags
, unsigned long Flag
,
405 char const* Start
, char const* Stop
)
407 switch (StringToBool(string(Start
, Stop
)))
418 _error
->Warning("Unknown flag value: %s",string(Start
,Stop
).c_str());
424 // TFRewrite - Rewrite a control record /*{{{*/
425 // ---------------------------------------------------------------------
426 /* This writes the control record to stdout rewriting it as necessary. The
427 override map item specificies the rewriting rules to follow. This also
428 takes the time to sort the feild list. */
430 /* The order of this list is taken from dpkg source lib/parse.c the fieldinfos
432 static const char *iTFRewritePackageOrder
[] = {
440 "Original-Maintainer",
444 "Revision", // Obsolete
445 "Config-Version", // Obsolete
460 "MSDOS-Filename", // Obsolete
463 static const char *iTFRewriteSourceOrder
[] = {"Package",
470 "Original-Maintainer",
472 "Build-Depends-Indep",
474 "Build-Conflicts-Indep",
482 /* Two levels of initialization are used because gcc will set the symbol
483 size of an array to the length of the array, causing dynamic relinking
484 errors. Doing this makes the symbol size constant */
485 const char **TFRewritePackageOrder
= iTFRewritePackageOrder
;
486 const char **TFRewriteSourceOrder
= iTFRewriteSourceOrder
;
488 bool TFRewrite(FILE *Output
,pkgTagSection
const &Tags
,const char *Order
[],
489 TFRewriteData
*Rewrite
)
491 unsigned char Visited
[256]; // Bit 1 is Order, Bit 2 is Rewrite
492 for (unsigned I
= 0; I
!= 256; I
++)
495 // Set new tag up as necessary.
496 for (unsigned int J
= 0; Rewrite
!= 0 && Rewrite
[J
].Tag
!= 0; J
++)
498 if (Rewrite
[J
].NewTag
== 0)
499 Rewrite
[J
].NewTag
= Rewrite
[J
].Tag
;
502 // Write all all of the tags, in order.
503 for (unsigned int I
= 0; Order
[I
] != 0; I
++)
505 bool Rewritten
= false;
507 // See if this is a field that needs to be rewritten
508 for (unsigned int J
= 0; Rewrite
!= 0 && Rewrite
[J
].Tag
!= 0; J
++)
510 if (strcasecmp(Rewrite
[J
].Tag
,Order
[I
]) == 0)
513 if (Rewrite
[J
].Rewrite
!= 0 && Rewrite
[J
].Rewrite
[0] != 0)
515 if (isspace(Rewrite
[J
].Rewrite
[0]))
516 fprintf(Output
,"%s:%s\n",Rewrite
[J
].NewTag
,Rewrite
[J
].Rewrite
);
518 fprintf(Output
,"%s: %s\n",Rewrite
[J
].NewTag
,Rewrite
[J
].Rewrite
);
526 // See if it is in the fragment
528 if (Tags
.Find(Order
[I
],Pos
) == false)
532 if (Rewritten
== true)
535 /* Write out this element, taking a moment to rewrite the tag
536 in case of changes of case. */
539 Tags
.Get(Start
,Stop
,Pos
);
541 if (fputs(Order
[I
],Output
) < 0)
542 return _error
->Errno("fputs","IO Error to output");
543 Start
+= strlen(Order
[I
]);
544 if (fwrite(Start
,Stop
- Start
,1,Output
) != 1)
545 return _error
->Errno("fwrite","IO Error to output");
546 if (Stop
[-1] != '\n')
547 fprintf(Output
,"\n");
550 // Now write all the old tags that were missed.
551 for (unsigned int I
= 0; I
!= Tags
.Count(); I
++)
553 if ((Visited
[I
] & 1) == 1)
558 Tags
.Get(Start
,Stop
,I
);
559 const char *End
= Start
;
560 for (; End
< Stop
&& *End
!= ':'; End
++);
562 // See if this is a field that needs to be rewritten
563 bool Rewritten
= false;
564 for (unsigned int J
= 0; Rewrite
!= 0 && Rewrite
[J
].Tag
!= 0; J
++)
566 if (stringcasecmp(Start
,End
,Rewrite
[J
].Tag
) == 0)
569 if (Rewrite
[J
].Rewrite
!= 0 && Rewrite
[J
].Rewrite
[0] != 0)
571 if (isspace(Rewrite
[J
].Rewrite
[0]))
572 fprintf(Output
,"%s:%s\n",Rewrite
[J
].NewTag
,Rewrite
[J
].Rewrite
);
574 fprintf(Output
,"%s: %s\n",Rewrite
[J
].NewTag
,Rewrite
[J
].Rewrite
);
582 if (Rewritten
== true)
585 // Write out this element
586 if (fwrite(Start
,Stop
- Start
,1,Output
) != 1)
587 return _error
->Errno("fwrite","IO Error to output");
588 if (Stop
[-1] != '\n')
589 fprintf(Output
,"\n");
592 // Now write all the rewrites that were missed
593 for (unsigned int J
= 0; Rewrite
!= 0 && Rewrite
[J
].Tag
!= 0; J
++)
595 if ((Visited
[J
] & 2) == 2)
598 if (Rewrite
[J
].Rewrite
!= 0 && Rewrite
[J
].Rewrite
[0] != 0)
600 if (isspace(Rewrite
[J
].Rewrite
[0]))
601 fprintf(Output
,"%s:%s\n",Rewrite
[J
].NewTag
,Rewrite
[J
].Rewrite
);
603 fprintf(Output
,"%s: %s\n",Rewrite
[J
].NewTag
,Rewrite
[J
].Rewrite
);