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curl/src/urlglob.c

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/*****************************************************************************
* _ _ ____ _
* Project ___| | | | _ \| |
* / __| | | | |_) | |
* | (__| |_| | _ <| |___
* \___|\___/|_| \_\_____|
*
* The contents of this file are subject to the Mozilla Public License
* Version 1.0 (the "License"); you may not use this file except in
* compliance with the License. You may obtain a copy of the License at
* http://www.mozilla.org/MPL/
*
* Software distributed under the License is distributed on an "AS IS"
* basis, WITHOUT WARRANTY OF ANY KIND, either express or implied. See the
* License for the specific language governing rights and limitations
* under the License.
*
* The Original Code is Curl.
*
* The Initial Developer of the Original Code is Daniel Stenberg.
*
* Portions created by the Initial Developer are Copyright (C) 1998.
* All Rights Reserved.
*
* ------------------------------------------------------------
* Main author:
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* - Daniel Stenberg <daniel@haxx.se>
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*
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* http://curl.haxx.se
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*
* $Source$
* $Revision$
* $Date$
* $Author$
* $State$
* $Locker$
*
* ------------------------------------------------------------
****************************************************************************/
#include <stdio.h>
#include <stdlib.h>
#include <string.h>
#include <ctype.h>
#include <curl/curl.h>
#include "urlglob.h"
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#ifdef MALLOCDEBUG
#include "../lib/memdebug.h"
#endif
int glob_word(URLGlob *, char*, int);
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int glob_set(URLGlob *glob, char *pattern, int pos)
{
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/* processes a set expression with the point behind the opening '{'
','-separated elements are collected until the next closing '}'
*/
char* buf = glob->glob_buffer;
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URLPattern *pat;
pat = (URLPattern*)&glob->pattern[glob->size / 2];
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/* patterns 0,1,2,... correspond to size=1,3,5,... */
pat->type = UPTSet;
pat->content.Set.size = 0;
pat->content.Set.ptr_s = 0;
pat->content.Set.elements = (char**)malloc(0);
++glob->size;
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while (1) {
switch (*pattern) {
case '\0': /* URL ended while set was still open */
printf("error: unmatched brace at pos %d\n", pos);
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exit (CURLE_URL_MALFORMAT);
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case '{':
case '[': /* no nested expressions at this time */
printf("error: nested braces not supported %d\n", pos);
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exit (CURLE_URL_MALFORMAT);
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case ',':
case '}': /* set element completed */
*buf = '\0';
pat->content.Set.elements =
realloc(pat->content.Set.elements,
(pat->content.Set.size + 1) * sizeof(char*));
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if (!pat->content.Set.elements) {
printf("out of memory in set pattern\n");
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exit(CURLE_OUT_OF_MEMORY);
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}
pat->content.Set.elements[pat->content.Set.size] =
strdup(glob->glob_buffer);
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++pat->content.Set.size;
if (*pattern == '}') /* entire set pattern completed */
/* always check for a literal (may be "") between patterns */
return pat->content.Set.size * glob_word(glob, ++pattern, ++pos);
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buf = glob->glob_buffer;
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++pattern;
++pos;
break;
case ']': /* illegal closing bracket */
printf("error: illegal pattern at pos %d\n", pos);
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exit (CURLE_URL_MALFORMAT);
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case '\\': /* escaped character, skip '\' */
if (*(buf+1) == '\0') { /* but no escaping of '\0'! */
printf("error: illegal pattern at pos %d\n", pos);
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exit (CURLE_URL_MALFORMAT);
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}
++pattern;
++pos; /* intentional fallthrough */
default:
*buf++ = *pattern++; /* copy character to set element */
++pos;
}
}
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exit (CURLE_FAILED_INIT);
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}
int glob_range(URLGlob *glob, char *pattern, int pos)
{
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/* processes a range expression with the point behind the opening '['
- char range: e.g. "a-z]", "B-Q]"
- num range: e.g. "0-9]", "17-2000]"
- num range with leading zeros: e.g. "001-999]"
expression is checked for well-formedness and collected until the next ']'
*/
URLPattern *pat;
char *c;
pat = (URLPattern*)&glob->pattern[glob->size / 2];
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/* patterns 0,1,2,... correspond to size=1,3,5,... */
++glob->size;
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if (isalpha((int)*pattern)) { /* character range detected */
pat->type = UPTCharRange;
if (sscanf(pattern, "%c-%c]", &pat->content.CharRange.min_c, &pat->content.CharRange.max_c) != 2 ||
pat->content.CharRange.min_c >= pat->content.CharRange.max_c ||
pat->content.CharRange.max_c - pat->content.CharRange.min_c > 'z' - 'a') {
/* the pattern is not well-formed */
printf("error: illegal pattern or range specification after pos %d\n", pos);
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exit (CURLE_URL_MALFORMAT);
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}
pat->content.CharRange.ptr_c = pat->content.CharRange.min_c;
/* always check for a literal (may be "") between patterns */
return (pat->content.CharRange.max_c - pat->content.CharRange.min_c + 1) *
glob_word(glob, pattern + 4, pos + 4);
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}
if (isdigit((int)*pattern)) { /* numeric range detected */
pat->type = UPTNumRange;
pat->content.NumRange.padlength = 0;
if (sscanf(pattern, "%d-%d]", &pat->content.NumRange.min_n, &pat->content.NumRange.max_n) != 2 ||
pat->content.NumRange.min_n >= pat->content.NumRange.max_n) {
/* the pattern is not well-formed */
printf("error: illegal pattern or range specification after pos %d\n", pos);
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exit (CURLE_URL_MALFORMAT);
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}
if (*pattern == '0') { /* leading zero specified */
c = pattern;
while (isdigit((int)*c++))
++pat->content.NumRange.padlength; /* padding length is set for all instances
of this pattern */
}
pat->content.NumRange.ptr_n = pat->content.NumRange.min_n;
c = (char*)(strchr(pattern, ']') + 1); /* continue after next ']' */
/* always check for a literal (may be "") between patterns */
return (pat->content.NumRange.max_n - pat->content.NumRange.min_n + 1) *
glob_word(glob, c, pos + (c - pattern));
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}
printf("error: illegal character in range specification at pos %d\n", pos);
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exit (CURLE_URL_MALFORMAT);
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}
int glob_word(URLGlob *glob, char *pattern, int pos)
{
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/* processes a literal string component of a URL
special characters '{' and '[' branch to set/range processing functions
*/
char* buf = glob->glob_buffer;
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int litindex;
while (*pattern != '\0' && *pattern != '{' && *pattern != '[') {
if (*pattern == '}' || *pattern == ']') {
printf("illegal character at position %d\n", pos);
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exit (CURLE_URL_MALFORMAT);
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}
if (*pattern == '\\') { /* escape character, skip '\' */
++pattern;
++pos;
if (*pattern == '\0') { /* but no escaping of '\0'! */
printf("illegal character at position %d\n", pos);
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exit (CURLE_URL_MALFORMAT);
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}
}
*buf++ = *pattern++; /* copy character to literal */
++pos;
}
*buf = '\0';
litindex = glob->size / 2;
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/* literals 0,1,2,... correspond to size=0,2,4,... */
glob->literal[litindex] = strdup(glob->glob_buffer);
++glob->size;
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if (*pattern == '\0')
return 1; /* singular URL processed */
if (*pattern == '{') {
return glob_set(glob, ++pattern, ++pos); /* process set pattern */
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}
if (*pattern == '[') {
return glob_range(glob, ++pattern, ++pos);/* process range pattern */
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}
printf("internal error\n");
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exit (CURLE_FAILED_INIT);
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}
int glob_url(URLGlob** glob, char* url, int *urlnum)
{
/*
* We can deal with any-size, just make a buffer with the same length
* as the specified URL!
*/
URLGlob *glob_expand;
char *glob_buffer=(char *)malloc(strlen(url)+1);
if(NULL == glob_buffer)
return CURLE_OUT_OF_MEMORY;
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glob_expand = (URLGlob*)malloc(sizeof(URLGlob));
if(NULL == glob_expand) {
free(glob_buffer);
return CURLE_OUT_OF_MEMORY;
}
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glob_expand->size = 0;
glob_expand->urllen = strlen(url);
glob_expand->glob_buffer = glob_buffer;
*urlnum = glob_word(glob_expand, url, 1);
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*glob = glob_expand;
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return CURLE_OK;
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}
void glob_cleanup(URLGlob* glob)
{
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int i, elem;
for (i = glob->size - 1; i >= 0; --i) {
if (!(i & 1)) { /* even indexes contain literals */
free(glob->literal[i/2]);
} else { /* odd indexes contain sets or ranges */
if (glob->pattern[i/2].type == UPTSet) {
for (elem = glob->pattern[i/2].content.Set.size - 1; elem >= 0; --elem) {
free(glob->pattern[i/2].content.Set.elements[elem]);
}
free(glob->pattern[i/2].content.Set.elements);
}
}
}
free(glob->glob_buffer);
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free(glob);
}
char *next_url(URLGlob *glob)
{
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static int beenhere = 0;
char *buf = glob->glob_buffer;
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URLPattern *pat;
char *lit;
signed int i;
int carry;
if (!beenhere)
beenhere = 1;
else {
carry = 1;
/* implement a counter over the index ranges of all patterns,
starting with the rightmost pattern */
for (i = glob->size / 2 - 1; carry && i >= 0; --i) {
carry = 0;
pat = &glob->pattern[i];
switch (pat->type) {
case UPTSet:
if (++pat->content.Set.ptr_s == pat->content.Set.size) {
pat->content.Set.ptr_s = 0;
carry = 1;
}
break;
case UPTCharRange:
if (++pat->content.CharRange.ptr_c > pat->content.CharRange.max_c) {
pat->content.CharRange.ptr_c = pat->content.CharRange.min_c;
carry = 1;
}
break;
case UPTNumRange:
if (++pat->content.NumRange.ptr_n > pat->content.NumRange.max_n) {
pat->content.NumRange.ptr_n = pat->content.NumRange.min_n;
carry = 1;
}
break;
default:
printf("internal error: invalid pattern type (%d)\n", pat->type);
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exit (CURLE_FAILED_INIT);
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}
}
if (carry) /* first pattern ptr has run into overflow, done! */
return NULL;
}
for (i = 0; i < glob->size; ++i) {
if (!(i % 2)) { /* every other term (i even) is a literal */
lit = glob->literal[i/2];
strcpy(buf, lit);
buf += strlen(lit);
}
else { /* the rest (i odd) are patterns */
pat = &glob->pattern[i/2];
switch(pat->type) {
case UPTSet:
strcpy(buf, pat->content.Set.elements[pat->content.Set.ptr_s]);
buf += strlen(pat->content.Set.elements[pat->content.Set.ptr_s]);
break;
case UPTCharRange:
*buf++ = pat->content.CharRange.ptr_c;
break;
case UPTNumRange:
sprintf(buf, "%0*d", pat->content.NumRange.padlength, pat->content.NumRange.ptr_n);
buf += strlen(buf); /* make no sprint() return code assumptions */
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break;
default:
printf("internal error: invalid pattern type (%d)\n", pat->type);
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exit (CURLE_FAILED_INIT);
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}
}
}
*buf = '\0';
return strdup(glob->glob_buffer);
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}
char *match_url(char *filename, URLGlob *glob)
{
char *target;
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URLPattern pat;
int i;
int allocsize;
int stringlen=0;
char numbuf[18];
char *appendthis;
size_t appendlen;
/* We cannot use the glob_buffer for storage here since the filename may
* be longer than the URL we use. We allocate a good start size, then
* we need to realloc in case of need.
*/
allocsize=strlen(filename);
target = malloc(allocsize);
if(NULL == target)
return NULL; /* major failure */
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while (*filename != '\0') {
if (*filename == '#') {
if (!isdigit((int)*++filename) ||
*filename == '0') { /* only '#1' ... '#9' allowed */
/* printf("illegal matching expression\n");
exit(CURLE_URL_MALFORMAT);*/
continue;
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}
i = *filename - '1';
if (i + 1 > glob->size / 2) {
/*printf("match against nonexisting pattern\n");
exit(CURLE_URL_MALFORMAT);*/
continue;
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}
pat = glob->pattern[i];
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switch (pat.type) {
case UPTSet:
appendthis = pat.content.Set.elements[pat.content.Set.ptr_s];
appendlen = strlen(pat.content.Set.elements[pat.content.Set.ptr_s]);
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break;
case UPTCharRange:
numbuf[0]=pat.content.CharRange.ptr_c;
numbuf[1]=0;
appendthis=numbuf;
appendlen=1;
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break;
case UPTNumRange:
sprintf(numbuf, "%0*d", pat.content.NumRange.padlength, pat.content.NumRange.ptr_n);
appendthis = numbuf;
appendlen = strlen(numbuf);
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break;
default:
printf("internal error: invalid pattern type (%d)\n", pat.type);
return NULL;
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}
++filename;
}
else {
appendthis=filename++;
appendlen=1;
}
if(appendlen + stringlen >= allocsize) {
char *newstr;
allocsize = (appendlen + stringlen)*2;
newstr=realloc(target, allocsize);
if(NULL ==newstr) {
free(target);
return NULL;
}
target=newstr;
}
memcpy(&target[stringlen], appendthis, appendlen);
stringlen += appendlen;
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}
target[stringlen]= '\0';
return target;
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}