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1// -*- mode: cpp; mode: fold -*-
2// Description /*{{{*/
d48c6a7d 3// $Id: strutl.cc,v 1.48 2003/07/18 14:15:11 mdz Exp $
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4/* ######################################################################
5
b2e465d6 6 String Util - Some useful string functions.
6c139d6e 7
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8 These have been collected from here and there to do all sorts of useful
9 things to strings. They are useful in file parsers, URI handlers and
24231681 10 especially in APT methods.
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11
12 This source is placed in the Public Domain, do with it what you will
24231681 13 It was originally written by Jason Gunthorpe <jgg@gpu.srv.ualberta.ca>
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14
15 ##################################################################### */
16 /*}}}*/
17// Includes /*{{{*/
cdcc6d34 18#include <apt-pkg/strutl.h>
7049d16d 19#include <apt-pkg/fileutl.h>
b2e465d6 20#include <apt-pkg/error.h>
0a8a80e5 21
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22#include <apti18n.h>
23
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24#include <ctype.h>
25#include <string.h>
26#include <stdio.h>
152ab79e 27#include <algorithm>
2b154e53 28#include <unistd.h>
b2e465d6 29#include <regex.h>
b0db36b1 30#include <errno.h>
b2e465d6 31#include <stdarg.h>
a52f938b 32#include <iconv.h>
0db4a45b 33
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34#include "config.h"
35
0db4a45b 36using namespace std;
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37 /*}}}*/
38
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39// UTF8ToCodeset - Convert some UTF-8 string for some codeset /*{{{*/
40// ---------------------------------------------------------------------
41/* This is handy to use before display some information for enduser */
42bool UTF8ToCodeset(const char *codeset, const string &orig, string *dest)
43{
44 iconv_t cd;
45 const char *inbuf;
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46 char *inptr, *outbuf;
47 size_t insize, bufsize;
48 dest->clear();
49
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50 cd = iconv_open(codeset, "UTF-8");
51 if (cd == (iconv_t)(-1)) {
52 // Something went wrong
53 if (errno == EINVAL)
54 _error->Error("conversion from 'UTF-8' to '%s' not available",
55 codeset);
56 else
57 perror("iconv_open");
58
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59 return false;
60 }
61
b39c1859 62 insize = bufsize = orig.size();
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63 inbuf = orig.data();
64 inptr = (char *)inbuf;
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65 outbuf = new char[bufsize];
66 size_t lastError = -1;
a52f938b 67
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68 while (insize != 0)
69 {
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70 char *outptr = outbuf;
71 size_t outsize = bufsize;
1f99b6d3 72 size_t const err = iconv(cd, &inptr, &insize, &outptr, &outsize);
b39c1859 73 dest->append(outbuf, outptr - outbuf);
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74 if (err == (size_t)(-1))
75 {
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76 switch (errno)
77 {
78 case EILSEQ:
79 insize--;
80 inptr++;
81 // replace a series of unknown multibytes with a single "?"
82 if (lastError != insize) {
83 lastError = insize - 1;
84 dest->append("?");
85 }
86 break;
87 case EINVAL:
88 insize = 0;
89 break;
90 case E2BIG:
91 if (outptr == outbuf)
92 {
93 bufsize *= 2;
94 delete[] outbuf;
95 outbuf = new char[bufsize];
96 }
97 break;
98 }
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99 }
100 }
a52f938b 101
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102 delete[] outbuf;
103
104 iconv_close(cd);
105
106 return true;
107}
108 /*}}}*/
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109// strstrip - Remove white space from the front and back of a string /*{{{*/
110// ---------------------------------------------------------------------
111/* This is handy to use when parsing a file. It also removes \n's left
112 over from fgets and company */
113char *_strstrip(char *String)
114{
115 for (;*String != 0 && (*String == ' ' || *String == '\t'); String++);
116
117 if (*String == 0)
118 return String;
119
120 char *End = String + strlen(String) - 1;
121 for (;End != String - 1 && (*End == ' ' || *End == '\t' || *End == '\n' ||
122 *End == '\r'); End--);
123 End++;
124 *End = 0;
125 return String;
126};
127 /*}}}*/
128// strtabexpand - Converts tabs into 8 spaces /*{{{*/
129// ---------------------------------------------------------------------
130/* */
131char *_strtabexpand(char *String,size_t Len)
132{
133 for (char *I = String; I != I + Len && *I != 0; I++)
134 {
135 if (*I != '\t')
136 continue;
137 if (I + 8 > String + Len)
138 {
139 *I = 0;
140 return String;
141 }
142
143 /* Assume the start of the string is 0 and find the next 8 char
144 division */
145 int Len;
146 if (String == I)
147 Len = 1;
148 else
149 Len = 8 - ((String - I) % 8);
150 Len -= 2;
151 if (Len <= 0)
152 {
153 *I = ' ';
154 continue;
155 }
156
157 memmove(I + Len,I + 1,strlen(I) + 1);
158 for (char *J = I; J + Len != I; *I = ' ', I++);
159 }
160 return String;
161}
162 /*}}}*/
163// ParseQuoteWord - Parse a single word out of a string /*{{{*/
164// ---------------------------------------------------------------------
165/* This grabs a single word, converts any % escaped characters to their
166 proper values and advances the pointer. Double quotes are understood
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167 and striped out as well. This is for URI/URL parsing. It also can
168 understand [] brackets.*/
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169bool ParseQuoteWord(const char *&String,string &Res)
170{
171 // Skip leading whitespace
172 const char *C = String;
173 for (;*C != 0 && *C == ' '; C++);
174 if (*C == 0)
175 return false;
176
177 // Jump to the next word
36f610f1 178 for (;*C != 0 && isspace(*C) == 0; C++)
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179 {
180 if (*C == '"')
181 {
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182 for (C++; *C != 0 && *C != '"'; C++);
183 if (*C == 0)
184 return false;
185 }
186 if (*C == '[')
187 {
188 for (C++; *C != 0 && *C != ']'; C++);
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189 if (*C == 0)
190 return false;
191 }
192 }
193
194 // Now de-quote characters
195 char Buffer[1024];
196 char Tmp[3];
197 const char *Start = String;
198 char *I;
199 for (I = Buffer; I < Buffer + sizeof(Buffer) && Start != C; I++)
200 {
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201 if (*Start == '%' && Start + 2 < C &&
202 isxdigit(Start[1]) && isxdigit(Start[2]))
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203 {
204 Tmp[0] = Start[1];
205 Tmp[1] = Start[2];
1bc849af 206 Tmp[2] = 0;
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207 *I = (char)strtol(Tmp,0,16);
208 Start += 3;
209 continue;
210 }
211 if (*Start != '"')
212 *I = *Start;
213 else
214 I--;
215 Start++;
216 }
217 *I = 0;
218 Res = Buffer;
219
220 // Skip ending white space
36f610f1 221 for (;*C != 0 && isspace(*C) != 0; C++);
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222 String = C;
223 return true;
224}
225 /*}}}*/
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226// ParseCWord - Parses a string like a C "" expression /*{{{*/
227// ---------------------------------------------------------------------
b2e465d6 228/* This expects a series of space separated strings enclosed in ""'s.
08e8f724 229 It concatenates the ""'s into a single string. */
b2e465d6 230bool ParseCWord(const char *&String,string &Res)
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231{
232 // Skip leading whitespace
233 const char *C = String;
234 for (;*C != 0 && *C == ' '; C++);
235 if (*C == 0)
236 return false;
237
238 char Buffer[1024];
239 char *Buf = Buffer;
240 if (strlen(String) >= sizeof(Buffer))
241 return false;
242
243 for (; *C != 0; C++)
244 {
245 if (*C == '"')
246 {
247 for (C++; *C != 0 && *C != '"'; C++)
248 *Buf++ = *C;
249
250 if (*C == 0)
251 return false;
252
253 continue;
254 }
255
256 if (C != String && isspace(*C) != 0 && isspace(C[-1]) != 0)
257 continue;
258 if (isspace(*C) == 0)
259 return false;
260 *Buf++ = ' ';
b2e465d6 261 }
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262 *Buf = 0;
263 Res = Buffer;
b2e465d6 264 String = C;
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265 return true;
266}
267 /*}}}*/
6d5dd02a 268// QuoteString - Convert a string into quoted from /*{{{*/
1bc849af 269// ---------------------------------------------------------------------
6d5dd02a 270/* */
171c75f1 271string QuoteString(const string &Str, const char *Bad)
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272{
273 string Res;
171c75f1 274 for (string::const_iterator I = Str.begin(); I != Str.end(); I++)
1bc849af 275 {
6d5dd02a 276 if (strchr(Bad,*I) != 0 || isprint(*I) == 0 ||
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277 *I == 0x25 || // percent '%' char
278 *I <= 0x20 || *I >= 0x7F) // control chars
1bc849af 279 {
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280 char Buf[10];
281 sprintf(Buf,"%%%02x",(int)*I);
282 Res += Buf;
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283 }
284 else
285 Res += *I;
286 }
287 return Res;
288}
289 /*}}}*/
6d5dd02a 290// DeQuoteString - Convert a string from quoted from /*{{{*/
6c139d6e 291// ---------------------------------------------------------------------
6d5dd02a 292/* This undoes QuoteString */
171c75f1 293string DeQuoteString(const string &Str)
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294{
295 return DeQuoteString(Str.begin(),Str.end());
296}
297string DeQuoteString(string::const_iterator const &begin,
298 string::const_iterator const &end)
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299{
300 string Res;
436d7eab 301 for (string::const_iterator I = begin; I != end; I++)
6c139d6e 302 {
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303 if (*I == '%' && I + 2 < end &&
304 isxdigit(I[1]) && isxdigit(I[2]))
6c139d6e 305 {
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306 char Tmp[3];
307 Tmp[0] = I[1];
308 Tmp[1] = I[2];
309 Tmp[2] = 0;
310 Res += (char)strtol(Tmp,0,16);
311 I += 2;
312 continue;
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313 }
314 else
315 Res += *I;
316 }
6d5dd02a 317 return Res;
6c139d6e 318}
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319
320 /*}}}*/
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321// SizeToStr - Convert a long into a human readable size /*{{{*/
322// ---------------------------------------------------------------------
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323/* A max of 4 digits are shown before conversion to the next highest unit.
324 The max length of the string will be 5 chars unless the size is > 10
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325 YottaBytes (E24) */
326string SizeToStr(double Size)
327{
328 char S[300];
329 double ASize;
330 if (Size >= 0)
331 ASize = Size;
332 else
333 ASize = -1*Size;
334
335 /* bytes, KiloBytes, MegaBytes, GigaBytes, TeraBytes, PetaBytes,
336 ExaBytes, ZettaBytes, YottaBytes */
7f25bdff 337 char Ext[] = {'\0','k','M','G','T','P','E','Z','Y'};
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338 int I = 0;
339 while (I <= 8)
340 {
341 if (ASize < 100 && I != 0)
342 {
4d8d8112 343 sprintf(S,"%'.1f %c",ASize,Ext[I]);
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344 break;
345 }
346
347 if (ASize < 10000)
348 {
4d8d8112 349 sprintf(S,"%'.0f %c",ASize,Ext[I]);
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350 break;
351 }
352 ASize /= 1000.0;
353 I++;
354 }
355
356 return S;
357}
358 /*}}}*/
359// TimeToStr - Convert the time into a string /*{{{*/
360// ---------------------------------------------------------------------
361/* Converts a number of seconds to a hms format */
362string TimeToStr(unsigned long Sec)
363{
364 char S[300];
365
366 while (1)
367 {
368 if (Sec > 60*60*24)
369 {
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370 //d means days, h means hours, min means minutes, s means seconds
371 sprintf(S,_("%lid %lih %limin %lis"),Sec/60/60/24,(Sec/60/60) % 24,(Sec/60) % 60,Sec % 60);
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372 break;
373 }
374
375 if (Sec > 60*60)
376 {
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377 //h means hours, min means minutes, s means seconds
378 sprintf(S,_("%lih %limin %lis"),Sec/60/60,(Sec/60) % 60,Sec % 60);
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379 break;
380 }
381
382 if (Sec > 60)
383 {
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384 //min means minutes, s means seconds
385 sprintf(S,_("%limin %lis"),Sec/60,Sec % 60);
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386 break;
387 }
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388
389 //s means seconds
390 sprintf(S,_("%lis"),Sec);
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391 break;
392 }
393
394 return S;
395}
396 /*}}}*/
397// SubstVar - Substitute a string for another string /*{{{*/
398// ---------------------------------------------------------------------
399/* This replaces all occurances of Subst with Contents in Str. */
171c75f1 400string SubstVar(const string &Str,const string &Subst,const string &Contents)
6c139d6e 401{
8efa2a3b 402 string::size_type Pos = 0;
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403 string::size_type OldPos = 0;
404 string Temp;
405
406 while (OldPos < Str.length() &&
407 (Pos = Str.find(Subst,OldPos)) != string::npos)
408 {
409 Temp += string(Str,OldPos,Pos) + Contents;
410 OldPos = Pos + Subst.length();
411 }
412
413 if (OldPos == 0)
414 return Str;
415
416 return Temp + string(Str,OldPos);
417}
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418
419string SubstVar(string Str,const struct SubstVar *Vars)
420{
421 for (; Vars->Subst != 0; Vars++)
422 Str = SubstVar(Str,Vars->Subst,*Vars->Contents);
423 return Str;
424}
6c139d6e 425 /*}}}*/
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426// OutputInDepth - return a string with separator multiplied with depth /*{{{*/
427// ---------------------------------------------------------------------
428/* Returns a string with the supplied separator depth + 1 times in it */
429std::string OutputInDepth(const unsigned long Depth, const char* Separator)
430{
431 std::string output = "";
432 for(unsigned long d=Depth+1; d > 0; d--)
433 output.append(Separator);
434 return output;
435}
436 /*}}}*/
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437// URItoFileName - Convert the uri into a unique file name /*{{{*/
438// ---------------------------------------------------------------------
439/* This converts a URI into a safe filename. It quotes all unsafe characters
440 and converts / to _ and removes the scheme identifier. The resulting
441 file name should be unique and never occur again for a different file */
171c75f1 442string URItoFileName(const string &URI)
ad00ae81 443{
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444 // Nuke 'sensitive' items
445 ::URI U(URI);
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446 U.User.clear();
447 U.Password.clear();
448 U.Access.clear();
54cf15cb 449
ad00ae81 450 // "\x00-\x20{}|\\\\^\\[\\]<>\"\x7F-\xFF";
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451 string NewURI = QuoteString(U,"\\|{}[]<>\"^~_=!@#$%^&*");
452 replace(NewURI.begin(),NewURI.end(),'/','_');
453 return NewURI;
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454}
455 /*}}}*/
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456// Base64Encode - Base64 Encoding routine for short strings /*{{{*/
457// ---------------------------------------------------------------------
458/* This routine performs a base64 transformation on a string. It was ripped
459 from wget and then patched and bug fixed.
460
461 This spec can be found in rfc2045 */
171c75f1 462string Base64Encode(const string &S)
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463{
464 // Conversion table.
465 static char tbl[64] = {'A','B','C','D','E','F','G','H',
466 'I','J','K','L','M','N','O','P',
467 'Q','R','S','T','U','V','W','X',
468 'Y','Z','a','b','c','d','e','f',
469 'g','h','i','j','k','l','m','n',
470 'o','p','q','r','s','t','u','v',
471 'w','x','y','z','0','1','2','3',
472 '4','5','6','7','8','9','+','/'};
473
474 // Pre-allocate some space
475 string Final;
476 Final.reserve((4*S.length() + 2)/3 + 2);
477
478 /* Transform the 3x8 bits to 4x6 bits, as required by
479 base64. */
5933aab2 480 for (string::const_iterator I = S.begin(); I < S.end(); I += 3)
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481 {
482 char Bits[3] = {0,0,0};
483 Bits[0] = I[0];
5933aab2 484 if (I + 1 < S.end())
6c139d6e 485 Bits[1] = I[1];
5933aab2 486 if (I + 2 < S.end())
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487 Bits[2] = I[2];
488
489 Final += tbl[Bits[0] >> 2];
490 Final += tbl[((Bits[0] & 3) << 4) + (Bits[1] >> 4)];
491
5933aab2 492 if (I + 1 >= S.end())
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493 break;
494
495 Final += tbl[((Bits[1] & 0xf) << 2) + (Bits[2] >> 6)];
496
5933aab2 497 if (I + 2 >= S.end())
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498 break;
499
500 Final += tbl[Bits[2] & 0x3f];
501 }
502
503 /* Apply the padding elements, this tells how many bytes the remote
504 end should discard */
505 if (S.length() % 3 == 2)
506 Final += '=';
507 if (S.length() % 3 == 1)
508 Final += "==";
509
510 return Final;
511}
512 /*}}}*/
0da8987a 513// stringcmp - Arbitrary string compare /*{{{*/
6c139d6e 514// ---------------------------------------------------------------------
7365ff46 515/* This safely compares two non-null terminated strings of arbitrary
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516 length */
517int stringcmp(const char *A,const char *AEnd,const char *B,const char *BEnd)
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518{
519 for (; A != AEnd && B != BEnd; A++, B++)
520 if (*A != *B)
521 break;
522
523 if (A == AEnd && B == BEnd)
524 return 0;
525 if (A == AEnd)
526 return 1;
527 if (B == BEnd)
528 return -1;
529 if (*A < *B)
530 return -1;
531 return 1;
532}
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533
534#if __GNUC__ >= 3
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535int stringcmp(string::const_iterator A,string::const_iterator AEnd,
536 const char *B,const char *BEnd)
537{
538 for (; A != AEnd && B != BEnd; A++, B++)
539 if (*A != *B)
540 break;
541
542 if (A == AEnd && B == BEnd)
543 return 0;
544 if (A == AEnd)
545 return 1;
546 if (B == BEnd)
547 return -1;
548 if (*A < *B)
549 return -1;
550 return 1;
551}
552int stringcmp(string::const_iterator A,string::const_iterator AEnd,
553 string::const_iterator B,string::const_iterator BEnd)
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554{
555 for (; A != AEnd && B != BEnd; A++, B++)
556 if (*A != *B)
557 break;
558
559 if (A == AEnd && B == BEnd)
560 return 0;
561 if (A == AEnd)
562 return 1;
563 if (B == BEnd)
564 return -1;
565 if (*A < *B)
566 return -1;
567 return 1;
568}
ae0b19f5 569#endif
6c139d6e 570 /*}}}*/
0da8987a 571// stringcasecmp - Arbitrary case insensitive string compare /*{{{*/
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572// ---------------------------------------------------------------------
573/* */
574int stringcasecmp(const char *A,const char *AEnd,const char *B,const char *BEnd)
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575{
576 for (; A != AEnd && B != BEnd; A++, B++)
6dc60370 577 if (tolower_ascii(*A) != tolower_ascii(*B))
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578 break;
579
580 if (A == AEnd && B == BEnd)
581 return 0;
582 if (A == AEnd)
583 return 1;
584 if (B == BEnd)
585 return -1;
6dc60370 586 if (tolower_ascii(*A) < tolower_ascii(*B))
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587 return -1;
588 return 1;
589}
ae0b19f5 590#if __GNUC__ >= 3
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591int stringcasecmp(string::const_iterator A,string::const_iterator AEnd,
592 const char *B,const char *BEnd)
593{
594 for (; A != AEnd && B != BEnd; A++, B++)
6dc60370 595 if (tolower_ascii(*A) != tolower_ascii(*B))
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596 break;
597
598 if (A == AEnd && B == BEnd)
599 return 0;
600 if (A == AEnd)
601 return 1;
602 if (B == BEnd)
603 return -1;
6dc60370 604 if (tolower_ascii(*A) < tolower_ascii(*B))
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605 return -1;
606 return 1;
607}
608int stringcasecmp(string::const_iterator A,string::const_iterator AEnd,
609 string::const_iterator B,string::const_iterator BEnd)
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610{
611 for (; A != AEnd && B != BEnd; A++, B++)
6dc60370 612 if (tolower_ascii(*A) != tolower_ascii(*B))
6c139d6e 613 break;
3b5421b4 614
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615 if (A == AEnd && B == BEnd)
616 return 0;
617 if (A == AEnd)
618 return 1;
619 if (B == BEnd)
620 return -1;
6dc60370 621 if (tolower_ascii(*A) < tolower_ascii(*B))
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622 return -1;
623 return 1;
624}
ae0b19f5 625#endif
6c139d6e 626 /*}}}*/
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627// LookupTag - Lookup the value of a tag in a taged string /*{{{*/
628// ---------------------------------------------------------------------
629/* The format is like those used in package files and the method
630 communication system */
171c75f1 631string LookupTag(const string &Message,const char *Tag,const char *Default)
3b5421b4
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632{
633 // Look for a matching tag.
634 int Length = strlen(Tag);
171c75f1 635 for (string::const_iterator I = Message.begin(); I + Length < Message.end(); I++)
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636 {
637 // Found the tag
638 if (I[Length] == ':' && stringcasecmp(I,I+Length,Tag) == 0)
639 {
640 // Find the end of line and strip the leading/trailing spaces
171c75f1 641 string::const_iterator J;
3b5421b4 642 I += Length + 1;
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643 for (; isspace(*I) != 0 && I < Message.end(); I++);
644 for (J = I; *J != '\n' && J < Message.end(); J++);
3b5421b4
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645 for (; J > I && isspace(J[-1]) != 0; J--);
646
0db4a45b 647 return string(I,J);
3b5421b4
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648 }
649
47db8997 650 for (; *I != '\n' && I < Message.end(); I++);
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651 }
652
653 // Failed to find a match
654 if (Default == 0)
655 return string();
656 return Default;
657}
658 /*}}}*/
659// StringToBool - Converts a string into a boolean /*{{{*/
660// ---------------------------------------------------------------------
661/* This inspects the string to see if it is true or if it is false and
662 then returns the result. Several varients on true/false are checked. */
171c75f1 663int StringToBool(const string &Text,int Default)
3b5421b4
AL
664{
665 char *End;
666 int Res = strtol(Text.c_str(),&End,0);
667 if (End != Text.c_str() && Res >= 0 && Res <= 1)
668 return Res;
669
670 // Check for positives
671 if (strcasecmp(Text.c_str(),"no") == 0 ||
672 strcasecmp(Text.c_str(),"false") == 0 ||
673 strcasecmp(Text.c_str(),"without") == 0 ||
7f25bdff 674 strcasecmp(Text.c_str(),"off") == 0 ||
3b5421b4
AL
675 strcasecmp(Text.c_str(),"disable") == 0)
676 return 0;
677
678 // Check for negatives
679 if (strcasecmp(Text.c_str(),"yes") == 0 ||
680 strcasecmp(Text.c_str(),"true") == 0 ||
681 strcasecmp(Text.c_str(),"with") == 0 ||
7f25bdff 682 strcasecmp(Text.c_str(),"on") == 0 ||
3b5421b4
AL
683 strcasecmp(Text.c_str(),"enable") == 0)
684 return 1;
685
686 return Default;
687}
688 /*}}}*/
0a8a80e5
AL
689// TimeRFC1123 - Convert a time_t into RFC1123 format /*{{{*/
690// ---------------------------------------------------------------------
691/* This converts a time_t into a string time representation that is
692 year 2000 complient and timezone neutral */
693string TimeRFC1123(time_t Date)
694{
695 struct tm Conv = *gmtime(&Date);
696 char Buf[300];
697
698 const char *Day[] = {"Sun","Mon","Tue","Wed","Thu","Fri","Sat"};
699 const char *Month[] = {"Jan","Feb","Mar","Apr","May","Jun","Jul",
700 "Aug","Sep","Oct","Nov","Dec"};
701
702 sprintf(Buf,"%s, %02i %s %i %02i:%02i:%02i GMT",Day[Conv.tm_wday],
703 Conv.tm_mday,Month[Conv.tm_mon],Conv.tm_year+1900,Conv.tm_hour,
704 Conv.tm_min,Conv.tm_sec);
705 return Buf;
706}
707 /*}}}*/
708// ReadMessages - Read messages from the FD /*{{{*/
709// ---------------------------------------------------------------------
710/* This pulls full messages from the input FD into the message buffer.
711 It assumes that messages will not pause during transit so no
ffc36991
DB
712 fancy buffering is used.
713
714 In particular: this reads blocks from the input until it believes
715 that it's run out of input text. Each block is terminated by a
716 double newline ('\n' followed by '\n'). As noted below, there is a
717 bug in this code: it assumes that all the blocks have been read if
718 it doesn't see additional text in the buffer after the last one is
719 parsed, which will cause it to lose blocks if the last block
720 coincides with the end of the buffer.
721 */
0a8a80e5
AL
722bool ReadMessages(int Fd, vector<string> &List)
723{
aee70518 724 char Buffer[64000];
0a8a80e5 725 char *End = Buffer;
ffc36991
DB
726 // Represents any left-over from the previous iteration of the
727 // parse loop. (i.e., if a message is split across the end
728 // of the buffer, it goes here)
729 string PartialMessage;
0a8a80e5
AL
730
731 while (1)
732 {
733 int Res = read(Fd,End,sizeof(Buffer) - (End-Buffer));
b0db36b1
AL
734 if (Res < 0 && errno == EINTR)
735 continue;
0a8a80e5
AL
736
737 // Process is dead, this is kind of bad..
738 if (Res == 0)
739 return false;
740
741 // No data
b2e465d6 742 if (Res < 0 && errno == EAGAIN)
0a8a80e5 743 return true;
b2e465d6
AL
744 if (Res < 0)
745 return false;
746
0a8a80e5
AL
747 End += Res;
748
749 // Look for the end of the message
c88edf1d 750 for (char *I = Buffer; I + 1 < End; I++)
0a8a80e5
AL
751 {
752 if (I[0] != '\n' || I[1] != '\n')
753 continue;
754
755 // Pull the message out
d48c6a7d 756 string Message(Buffer,I-Buffer);
ffc36991 757 PartialMessage += Message;
0a8a80e5
AL
758
759 // Fix up the buffer
760 for (; I < End && *I == '\n'; I++);
761 End -= I-Buffer;
762 memmove(Buffer,I,End-Buffer);
763 I = Buffer;
764
ffc36991
DB
765 List.push_back(PartialMessage);
766 PartialMessage.clear();
0a8a80e5 767 }
ffc36991
DB
768 if (End != Buffer)
769 {
770 // If there's text left in the buffer, store it
771 // in PartialMessage and throw the rest of the buffer
772 // away. This allows us to handle messages that
773 // are longer than the static buffer size.
774 PartialMessage += string(Buffer, End);
775 End = Buffer;
776 }
777 else
778 {
779 // BUG ALERT: if a message block happens to end at a
780 // multiple of 64000 characters, this will cause it to
781 // terminate early, leading to a badly formed block and
782 // probably crashing the method. However, this is the only
783 // way we have to find the end of the message block. I have
784 // an idea of how to fix this, but it will require changes
785 // to the protocol (essentially to mark the beginning and
786 // end of the block).
787 //
788 // -- dburrows 2008-04-02
789 return true;
790 }
0a8a80e5
AL
791
792 if (WaitFd(Fd) == false)
793 return false;
794 }
795}
796 /*}}}*/
24231681
AL
797// MonthConv - Converts a month string into a number /*{{{*/
798// ---------------------------------------------------------------------
799/* This was lifted from the boa webserver which lifted it from 'wn-v1.07'
6dc60370 800 Made it a bit more robust with a few tolower_ascii though. */
24231681
AL
801static int MonthConv(char *Month)
802{
6dc60370 803 switch (tolower_ascii(*Month))
24231681 804 {
6dc60370
DK
805 case 'a':
806 return tolower_ascii(Month[1]) == 'p'?3:7;
807 case 'd':
24231681 808 return 11;
6dc60370 809 case 'f':
24231681 810 return 1;
6dc60370
DK
811 case 'j':
812 if (tolower_ascii(Month[1]) == 'a')
24231681 813 return 0;
6dc60370
DK
814 return tolower_ascii(Month[2]) == 'n'?5:6;
815 case 'm':
816 return tolower_ascii(Month[2]) == 'r'?2:4;
817 case 'n':
24231681 818 return 10;
6dc60370 819 case 'o':
24231681 820 return 9;
6dc60370 821 case 's':
24231681
AL
822 return 8;
823
824 // Pretend it is January..
825 default:
826 return 0;
827 }
828}
829 /*}}}*/
55089145 830// timegm - Internal timegm if the gnu version is not available /*{{{*/
6d5dd02a 831// ---------------------------------------------------------------------
55089145 832/* Converts struct tm to time_t, assuming the data in tm is UTC rather
6d5dd02a 833 than local timezone (mktime assumes the latter).
41b6caf4 834
55089145
DK
835 This function is a nonstandard GNU extension that is also present on
836 the BSDs and maybe other systems. For others we follow the advice of
837 the manpage of timegm and use his portable replacement. */
838#ifndef HAVE_TIMEGM
6d5dd02a
AL
839static time_t timegm(struct tm *t)
840{
55089145
DK
841 char *tz = getenv("TZ");
842 setenv("TZ", "", 1);
843 tzset();
844 time_t ret = mktime(t);
845 if (tz)
846 setenv("TZ", tz, 1);
847 else
848 unsetenv("TZ");
849 tzset();
850 return ret;
6d5dd02a
AL
851}
852#endif
853 /*}}}*/
cd8cf88f
DK
854// FullDateToTime - Converts a HTTP1.1 full date strings into a time_t /*{{{*/
855// ---------------------------------------------------------------------
856/* tries to parses a full date as specified in RFC2616 Section 3.3.1
857 with one exception: All timezones (%Z) are accepted but the protocol
858 says that it MUST be GMT, but this one is equal to UTC which we will
859 encounter from time to time (e.g. in Release files) so we accept all
860 here and just assume it is GMT (or UTC) later on */
861bool RFC1123StrToTime(const char* const str,time_t &time)
862{
863 struct tm Tm;
24d7b626
DK
864 setlocale (LC_ALL,"C");
865 bool const invalid =
cd8cf88f 866 // Sun, 06 Nov 1994 08:49:37 GMT ; RFC 822, updated by RFC 1123
24d7b626 867 (strptime(str, "%a, %d %b %Y %H:%M:%S %Z", &Tm) == NULL &&
cd8cf88f
DK
868 // Sunday, 06-Nov-94 08:49:37 GMT ; RFC 850, obsoleted by RFC 1036
869 strptime(str, "%A, %d-%b-%y %H:%M:%S %Z", &Tm) == NULL &&
870 // Sun Nov 6 08:49:37 1994 ; ANSI C's asctime() format
24d7b626
DK
871 strptime(str, "%a %b %d %H:%M:%S %Y", &Tm) == NULL);
872 setlocale (LC_ALL,"");
873 if (invalid == true)
cd8cf88f
DK
874 return false;
875
876 time = timegm(&Tm);
877 return true;
878}
879 /*}}}*/
880// FTPMDTMStrToTime - Converts a ftp modification date into a time_t /*{{{*/
881// ---------------------------------------------------------------------
882/* */
883bool FTPMDTMStrToTime(const char* const str,time_t &time)
884{
885 struct tm Tm;
886 // MDTM includes no whitespaces but recommend and ignored by strptime
887 if (strptime(str, "%Y %m %d %H %M %S", &Tm) == NULL)
888 return false;
889
890 time = timegm(&Tm);
891 return true;
892}
893 /*}}}*/
24231681
AL
894// StrToTime - Converts a string into a time_t /*{{{*/
895// ---------------------------------------------------------------------
896/* This handles all 3 populare time formats including RFC 1123, RFC 1036
897 and the C library asctime format. It requires the GNU library function
898 'timegm' to convert a struct tm in UTC to a time_t. For some bizzar
f58a97d3
AL
899 reason the C library does not provide any such function :< This also
900 handles the weird, but unambiguous FTP time format*/
171c75f1 901bool StrToTime(const string &Val,time_t &Result)
24231681
AL
902{
903 struct tm Tm;
904 char Month[10];
905 const char *I = Val.c_str();
906
907 // Skip the day of the week
908 for (;*I != 0 && *I != ' '; I++);
909
910 // Handle RFC 1123 time
f58a97d3 911 Month[0] = 0;
24231681
AL
912 if (sscanf(I," %d %3s %d %d:%d:%d GMT",&Tm.tm_mday,Month,&Tm.tm_year,
913 &Tm.tm_hour,&Tm.tm_min,&Tm.tm_sec) != 6)
914 {
915 // Handle RFC 1036 time
916 if (sscanf(I," %d-%3s-%d %d:%d:%d GMT",&Tm.tm_mday,Month,
917 &Tm.tm_year,&Tm.tm_hour,&Tm.tm_min,&Tm.tm_sec) == 6)
918 Tm.tm_year += 1900;
919 else
920 {
921 // asctime format
922 if (sscanf(I," %3s %d %d:%d:%d %d",Month,&Tm.tm_mday,
923 &Tm.tm_hour,&Tm.tm_min,&Tm.tm_sec,&Tm.tm_year) != 6)
f58a97d3
AL
924 {
925 // 'ftp' time
7ef72446 926 if (sscanf(Val.c_str(),"%4d%2d%2d%2d%2d%2d",&Tm.tm_year,&Tm.tm_mon,
f58a97d3
AL
927 &Tm.tm_mday,&Tm.tm_hour,&Tm.tm_min,&Tm.tm_sec) != 6)
928 return false;
929 Tm.tm_mon--;
930 }
24231681
AL
931 }
932 }
933
934 Tm.tm_isdst = 0;
f58a97d3
AL
935 if (Month[0] != 0)
936 Tm.tm_mon = MonthConv(Month);
24231681
AL
937 Tm.tm_year -= 1900;
938
939 // Convert to local time and then to GMT
940 Result = timegm(&Tm);
941 return true;
942}
943 /*}}}*/
ddc1d8d0
AL
944// StrToNum - Convert a fixed length string to a number /*{{{*/
945// ---------------------------------------------------------------------
946/* This is used in decoding the crazy fixed length string headers in
947 tar and ar files. */
948bool StrToNum(const char *Str,unsigned long &Res,unsigned Len,unsigned Base)
949{
950 char S[30];
951 if (Len >= sizeof(S))
952 return false;
953 memcpy(S,Str,Len);
954 S[Len] = 0;
955
956 // All spaces is a zero
957 Res = 0;
958 unsigned I;
959 for (I = 0; S[I] == ' '; I++);
960 if (S[I] == 0)
961 return true;
962
963 char *End;
964 Res = strtoul(S,&End,Base);
965 if (End == S)
966 return false;
967
968 return true;
969}
970 /*}}}*/
54f2f0a3
NH
971// Base256ToNum - Convert a fixed length binary to a number /*{{{*/
972// ---------------------------------------------------------------------
973/* This is used in decoding the 256bit encoded fixed length fields in
974 tar files */
f688d1d3 975bool Base256ToNum(const char *Str,unsigned long &Res,unsigned int Len)
54f2f0a3 976{
54f2f0a3
NH
977 if ((Str[0] & 0x80) == 0)
978 return false;
979 else
980 {
981 Res = Str[0] & 0x7F;
f688d1d3 982 for(unsigned int i = 1; i < Len; ++i)
54f2f0a3
NH
983 Res = (Res<<8) + Str[i];
984 return true;
985 }
986}
987 /*}}}*/
6e52073f
AL
988// HexDigit - Convert a hex character into an integer /*{{{*/
989// ---------------------------------------------------------------------
990/* Helper for Hex2Num */
991static int HexDigit(int c)
992{
993 if (c >= '0' && c <= '9')
994 return c - '0';
995 if (c >= 'a' && c <= 'f')
996 return c - 'a' + 10;
997 if (c >= 'A' && c <= 'F')
998 return c - 'A' + 10;
999 return 0;
1000}
1001 /*}}}*/
1002// Hex2Num - Convert a long hex number into a buffer /*{{{*/
1003// ---------------------------------------------------------------------
1004/* The length of the buffer must be exactly 1/2 the length of the string. */
171c75f1 1005bool Hex2Num(const string &Str,unsigned char *Num,unsigned int Length)
6e52073f 1006{
0db4a45b 1007 if (Str.length() != Length*2)
6e52073f
AL
1008 return false;
1009
1010 // Convert each digit. We store it in the same order as the string
1011 int J = 0;
0db4a45b 1012 for (string::const_iterator I = Str.begin(); I != Str.end();J++, I += 2)
6e52073f
AL
1013 {
1014 if (isxdigit(*I) == 0 || isxdigit(I[1]) == 0)
1015 return false;
1016
1017 Num[J] = HexDigit(I[0]) << 4;
1018 Num[J] += HexDigit(I[1]);
1019 }
1020
1021 return true;
1022}
1023 /*}}}*/
b2e465d6
AL
1024// TokSplitString - Split a string up by a given token /*{{{*/
1025// ---------------------------------------------------------------------
1026/* This is intended to be a faster splitter, it does not use dynamic
1027 memories. Input is changed to insert nulls at each token location. */
1028bool TokSplitString(char Tok,char *Input,char **List,
1029 unsigned long ListMax)
1030{
1031 // Strip any leading spaces
1032 char *Start = Input;
1033 char *Stop = Start + strlen(Start);
1034 for (; *Start != 0 && isspace(*Start) != 0; Start++);
1035
1036 unsigned long Count = 0;
1037 char *Pos = Start;
1038 while (Pos != Stop)
1039 {
1040 // Skip to the next Token
1041 for (; Pos != Stop && *Pos != Tok; Pos++);
1042
1043 // Back remove spaces
1044 char *End = Pos;
1045 for (; End > Start && (End[-1] == Tok || isspace(End[-1]) != 0); End--);
1046 *End = 0;
1047
1048 List[Count++] = Start;
1049 if (Count >= ListMax)
1050 {
1051 List[Count-1] = 0;
1052 return false;
1053 }
1054
1055 // Advance pos
1056 for (; Pos != Stop && (*Pos == Tok || isspace(*Pos) != 0 || *Pos == 0); Pos++);
1057 Start = Pos;
1058 }
1059
1060 List[Count] = 0;
1061 return true;
1062}
1063 /*}}}*/
3f42500d 1064// VectorizeString - Split a string up into a vector of strings /*{{{*/
d7cf5923
DK
1065// ---------------------------------------------------------------------
1066/* This can be used to split a given string up into a vector, so the
1067 propose is the same as in the method above and this one is a bit slower
3f42500d
DK
1068 also, but the advantage is that we have an iteratable vector */
1069vector<string> VectorizeString(string const &haystack, char const &split)
d7cf5923
DK
1070{
1071 string::const_iterator start = haystack.begin();
1072 string::const_iterator end = start;
1073 vector<string> exploded;
1074 do {
1075 for (; end != haystack.end() && *end != split; ++end);
1076 exploded.push_back(string(start, end));
1077 start = end + 1;
1078 } while (end != haystack.end() && (++end) != haystack.end());
1079 return exploded;
1080}
1081 /*}}}*/
b2e465d6
AL
1082// RegexChoice - Simple regex list/list matcher /*{{{*/
1083// ---------------------------------------------------------------------
1084/* */
1085unsigned long RegexChoice(RxChoiceList *Rxs,const char **ListBegin,
1086 const char **ListEnd)
1087{
1088 for (RxChoiceList *R = Rxs; R->Str != 0; R++)
1089 R->Hit = false;
1090
1091 unsigned long Hits = 0;
1092 for (; ListBegin != ListEnd; ListBegin++)
1093 {
1094 // Check if the name is a regex
1095 const char *I;
1096 bool Regex = true;
1097 for (I = *ListBegin; *I != 0; I++)
1098 if (*I == '.' || *I == '?' || *I == '*' || *I == '|')
1099 break;
1100 if (*I == 0)
1101 Regex = false;
1102
1103 // Compile the regex pattern
1104 regex_t Pattern;
1105 if (Regex == true)
1106 if (regcomp(&Pattern,*ListBegin,REG_EXTENDED | REG_ICASE |
1107 REG_NOSUB) != 0)
1108 Regex = false;
1109
1110 // Search the list
1111 bool Done = false;
1112 for (RxChoiceList *R = Rxs; R->Str != 0; R++)
1113 {
1114 if (R->Str[0] == 0)
1115 continue;
1116
1117 if (strcasecmp(R->Str,*ListBegin) != 0)
1118 {
1119 if (Regex == false)
1120 continue;
1121 if (regexec(&Pattern,R->Str,0,0,0) != 0)
1122 continue;
1123 }
1124 Done = true;
1125
1126 if (R->Hit == false)
1127 Hits++;
1128
1129 R->Hit = true;
1130 }
1131
1132 if (Regex == true)
1133 regfree(&Pattern);
1134
1135 if (Done == false)
1136 _error->Warning(_("Selection %s not found"),*ListBegin);
1137 }
1138
1139 return Hits;
1140}
1141 /*}}}*/
1142// ioprintf - C format string outputter to C++ iostreams /*{{{*/
1143// ---------------------------------------------------------------------
1168596f
AL
1144/* This is used to make the internationalization strings easier to translate
1145 and to allow reordering of parameters */
b2e465d6
AL
1146void ioprintf(ostream &out,const char *format,...)
1147{
1148 va_list args;
1149 va_start(args,format);
1150
1151 // sprintf the description
aebe158d 1152 char S[4096];
b2e465d6 1153 vsnprintf(S,sizeof(S),format,args);
e7b470ee 1154 out << S;
1168596f
AL
1155}
1156 /*}}}*/
d4cd303e
MV
1157// strprintf - C format string outputter to C++ strings /*{{{*/
1158// ---------------------------------------------------------------------
1159/* This is used to make the internationalization strings easier to translate
1160 and to allow reordering of parameters */
1161void strprintf(string &out,const char *format,...)
1162{
1163 va_list args;
1164 va_start(args,format);
1165
1166 // sprintf the description
aebe158d 1167 char S[4096];
d4cd303e
MV
1168 vsnprintf(S,sizeof(S),format,args);
1169 out = string(S);
1170}
1171 /*}}}*/
1168596f
AL
1172// safe_snprintf - Safer snprintf /*{{{*/
1173// ---------------------------------------------------------------------
1174/* This is a snprintf that will never (ever) go past 'End' and returns a
1175 pointer to the end of the new string. The returned string is always null
1176 terminated unless Buffer == end. This is a better alterantive to using
1177 consecutive snprintfs. */
1178char *safe_snprintf(char *Buffer,char *End,const char *Format,...)
1179{
1180 va_list args;
ea6db08d 1181 int Did;
1168596f
AL
1182
1183 va_start(args,Format);
1184
1185 if (End <= Buffer)
1186 return End;
1187
1188 Did = vsnprintf(Buffer,End - Buffer,Format,args);
1189 if (Did < 0 || Buffer + Did > End)
1190 return End;
1191 return Buffer + Did;
b2e465d6
AL
1192}
1193 /*}}}*/
cdb9307c
MV
1194// StripEpoch - Remove the version "epoch" from a version string /*{{{*/
1195// ---------------------------------------------------------------------
1196string StripEpoch(const string &VerStr)
1197{
1198 size_t i = VerStr.find(":");
1199 if (i == string::npos)
1200 return VerStr;
1201 return VerStr.substr(i+1);
1202}
93bf083d 1203
4e86942a
MV
1204// tolower_ascii - tolower() function that ignores the locale /*{{{*/
1205// ---------------------------------------------------------------------
6dc60370
DK
1206/* This little function is the most called method we have and tries
1207 therefore to do the absolut minimum - and is noteable faster than
1208 standard tolower/toupper and as a bonus avoids problems with different
1209 locales - we only operate on ascii chars anyway. */
1210int tolower_ascii(int const c)
4e86942a 1211{
6dc60370 1212 if (c >= 'A' && c <= 'Z')
4e86942a
MV
1213 return c + 32;
1214 return c;
1215}
1216 /*}}}*/
1217
f8081133
AL
1218// CheckDomainList - See if Host is in a , seperate list /*{{{*/
1219// ---------------------------------------------------------------------
1220/* The domain list is a comma seperate list of domains that are suffix
1221 matched against the argument */
171c75f1 1222bool CheckDomainList(const string &Host,const string &List)
f8081133 1223{
47db8997
AL
1224 string::const_iterator Start = List.begin();
1225 for (string::const_iterator Cur = List.begin(); Cur <= List.end(); Cur++)
f8081133 1226 {
47db8997 1227 if (Cur < List.end() && *Cur != ',')
f8081133
AL
1228 continue;
1229
1230 // Match the end of the string..
e2c7e6b5 1231 if ((Host.size() >= (unsigned)(Cur - Start)) &&
f8081133 1232 Cur - Start != 0 &&
47db8997 1233 stringcasecmp(Host.end() - (Cur - Start),Host.end(),Start,Cur) == 0)
f8081133
AL
1234 return true;
1235
1236 Start = Cur + 1;
1237 }
1238 return false;
1239}
1240 /*}}}*/
1241
be4401bf 1242// URI::CopyFrom - Copy from an object /*{{{*/
93bf083d
AL
1243// ---------------------------------------------------------------------
1244/* This parses the URI into all of its components */
171c75f1 1245void URI::CopyFrom(const string &U)
93bf083d 1246{
5933aab2 1247 string::const_iterator I = U.begin();
93bf083d 1248
b2e465d6 1249 // Locate the first colon, this separates the scheme
5933aab2
AL
1250 for (; I < U.end() && *I != ':' ; I++);
1251 string::const_iterator FirstColon = I;
93bf083d 1252
bfd22fc0
AL
1253 /* Determine if this is a host type URI with a leading double //
1254 and then search for the first single / */
5933aab2
AL
1255 string::const_iterator SingleSlash = I;
1256 if (I + 3 < U.end() && I[1] == '/' && I[2] == '/')
bfd22fc0 1257 SingleSlash += 3;
67ff87bf
AL
1258
1259 /* Find the / indicating the end of the hostname, ignoring /'s in the
1260 square brackets */
1261 bool InBracket = false;
5933aab2 1262 for (; SingleSlash < U.end() && (*SingleSlash != '/' || InBracket == true); SingleSlash++)
67ff87bf
AL
1263 {
1264 if (*SingleSlash == '[')
1265 InBracket = true;
1266 if (InBracket == true && *SingleSlash == ']')
1267 InBracket = false;
1268 }
1269
5933aab2
AL
1270 if (SingleSlash > U.end())
1271 SingleSlash = U.end();
93bf083d
AL
1272
1273 // We can now write the access and path specifiers
171c75f1 1274 Access.assign(U.begin(),FirstColon);
5933aab2 1275 if (SingleSlash != U.end())
171c75f1 1276 Path.assign(SingleSlash,U.end());
92e889c8
AL
1277 if (Path.empty() == true)
1278 Path = "/";
1279
93bf083d 1280 // Now we attempt to locate a user:pass@host fragment
d48c6a7d 1281 if (FirstColon + 2 <= U.end() && FirstColon[1] == '/' && FirstColon[2] == '/')
f46e7681
AL
1282 FirstColon += 3;
1283 else
1284 FirstColon += 1;
5933aab2 1285 if (FirstColon >= U.end())
93bf083d
AL
1286 return;
1287
1288 if (FirstColon > SingleSlash)
1289 FirstColon = SingleSlash;
1290
3856756b
AL
1291 // Find the colon...
1292 I = FirstColon + 1;
1d38d0e9
AL
1293 if (I > SingleSlash)
1294 I = SingleSlash;
3856756b 1295 for (; I < SingleSlash && *I != ':'; I++);
5933aab2 1296 string::const_iterator SecondColon = I;
3856756b
AL
1297
1298 // Search for the @ after the colon
93bf083d 1299 for (; I < SingleSlash && *I != '@'; I++);
5933aab2 1300 string::const_iterator At = I;
93bf083d 1301
93bf083d
AL
1302 // Now write the host and user/pass
1303 if (At == SingleSlash)
1304 {
1305 if (FirstColon < SingleSlash)
171c75f1 1306 Host.assign(FirstColon,SingleSlash);
93bf083d
AL
1307 }
1308 else
1309 {
171c75f1 1310 Host.assign(At+1,SingleSlash);
436d7eab
DK
1311 // username and password must be encoded (RFC 3986)
1312 User.assign(DeQuoteString(FirstColon,SecondColon));
93bf083d 1313 if (SecondColon < At)
436d7eab 1314 Password.assign(DeQuoteString(SecondColon+1,At));
93bf083d
AL
1315 }
1316
67ff87bf
AL
1317 // Now we parse the RFC 2732 [] hostnames.
1318 unsigned long PortEnd = 0;
1319 InBracket = false;
1320 for (unsigned I = 0; I != Host.length();)
1321 {
1322 if (Host[I] == '[')
1323 {
1324 InBracket = true;
1325 Host.erase(I,1);
1326 continue;
1327 }
1328
1329 if (InBracket == true && Host[I] == ']')
1330 {
1331 InBracket = false;
1332 Host.erase(I,1);
1333 PortEnd = I;
1334 continue;
1335 }
1336 I++;
1337 }
1338
1339 // Tsk, weird.
1340 if (InBracket == true)
1341 {
171c75f1 1342 Host.clear();
67ff87bf
AL
1343 return;
1344 }
1345
1d38d0e9 1346 // Now we parse off a port number from the hostname
93bf083d
AL
1347 Port = 0;
1348 string::size_type Pos = Host.rfind(':');
67ff87bf 1349 if (Pos == string::npos || Pos < PortEnd)
93bf083d
AL
1350 return;
1351
1352 Port = atoi(string(Host,Pos+1).c_str());
171c75f1 1353 Host.assign(Host,0,Pos);
93bf083d
AL
1354}
1355 /*}}}*/
1356// URI::operator string - Convert the URI to a string /*{{{*/
1357// ---------------------------------------------------------------------
1358/* */
1359URI::operator string()
1360{
54cf15cb
AL
1361 string Res;
1362
1363 if (Access.empty() == false)
1364 Res = Access + ':';
1365
93bf083d 1366 if (Host.empty() == false)
7834cb57 1367 {
54cf15cb
AL
1368 if (Access.empty() == false)
1369 Res += "//";
7834cb57 1370
93bf083d
AL
1371 if (User.empty() == false)
1372 {
54cf15cb 1373 Res += User;
93bf083d
AL
1374 if (Password.empty() == false)
1375 Res += ":" + Password;
1376 Res += "@";
1377 }
54cf15cb 1378
7834cb57
AL
1379 // Add RFC 2732 escaping characters
1380 if (Access.empty() == false &&
1381 (Host.find('/') != string::npos || Host.find(':') != string::npos))
1382 Res += '[' + Host + ']';
1383 else
1384 Res += Host;
1385
492f957a
AL
1386 if (Port != 0)
1387 {
1388 char S[30];
1389 sprintf(S,":%u",Port);
1390 Res += S;
1391 }
93bf083d
AL
1392 }
1393
1394 if (Path.empty() == false)
492f957a
AL
1395 {
1396 if (Path[0] != '/')
1397 Res += "/" + Path;
1398 else
1399 Res += Path;
1400 }
93bf083d
AL
1401
1402 return Res;
1403}
1404 /*}}}*/
b2e465d6
AL
1405// URI::SiteOnly - Return the schema and site for the URI /*{{{*/
1406// ---------------------------------------------------------------------
1407/* */
171c75f1 1408string URI::SiteOnly(const string &URI)
b2e465d6
AL
1409{
1410 ::URI U(URI);
171c75f1
MV
1411 U.User.clear();
1412 U.Password.clear();
1413 U.Path.clear();
b2e465d6
AL
1414 U.Port = 0;
1415 return U;
1416}
1417 /*}}}*/
5e02df82
MV
1418// URI::NoUserPassword - Return the schema, site and path for the URI /*{{{*/
1419// ---------------------------------------------------------------------
1420/* */
1421string URI::NoUserPassword(const string &URI)
1422{
1423 ::URI U(URI);
1424 U.User.clear();
1425 U.Password.clear();
1426 U.Port = 0;
1427 return U;
1428}
1429 /*}}}*/