mirror of
https://github.com/netsurf-browser/netsurf
synced 2024-11-29 17:53:09 +03:00
517 lines
12 KiB
C
517 lines
12 KiB
C
/*
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* Copyright 2006 Richard Wilson <info@tinct.net>
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* Copyright 2005 James Bursa <bursa@users.sourceforge.net>
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* Copyright 2005 John M Bell <jmb202@ecs.soton.ac.uk>
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*
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* This file is part of NetSurf, http://www.netsurf-browser.org/
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*
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* NetSurf is free software; you can redistribute it and/or modify
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* it under the terms of the GNU General Public License as published by
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* the Free Software Foundation; version 2 of the License.
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*
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* NetSurf is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU General Public License for more details.
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*
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* You should have received a copy of the GNU General Public License
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* along with this program. If not, see <http://www.gnu.org/licenses/>.
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*/
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/** \file
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* \brief Implementation of URL parsing and joining operations.
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*/
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#include <ctype.h>
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#include <string.h>
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#include <curl/curl.h>
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#include "utils/config.h"
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#include "utils/log.h"
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#include "utils/utils.h"
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#include "utils/url.h"
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struct url_components_internal {
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char *buffer; /* buffer used for all the following data */
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char *scheme;
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char *authority;
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char *path;
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char *query;
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char *fragment;
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};
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regex_t url_re, url_up_re;
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/* exported interface documented in utils/url.h */
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void url_init(void)
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{
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/* regex from RFC 2396 */
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regcomp_wrapper(&url_re, "^[[:space:]]*"
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#define URL_RE_SCHEME 2
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"(([a-zA-Z][-a-zA-Z0-9+.]*):)?"
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#define URL_RE_AUTHORITY 4
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"(//([^/?#[:space:]]*))?"
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#define URL_RE_PATH 5
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"([^?#[:space:]]*)"
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#define URL_RE_QUERY 7
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"(\\?([^#[:space:]]*))?"
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#define URL_RE_FRAGMENT 9
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"(#([^[:space:]]*))?"
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"[[:space:]]*$", REG_EXTENDED);
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regcomp_wrapper(&url_up_re,
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"/([^/]?|[.][^./]|[^./][.]|[^./][^./]|[^/][^/][^/]+)"
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"/[.][.](/|$)",
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REG_EXTENDED);
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}
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/* exported interface documented in utils/url.h */
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bool url_host_is_ip_address(const char *host)
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{
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struct in_addr ipv4;
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size_t host_len = strlen(host);
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const char *sane_host;
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const char *slash;
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#ifndef NO_IPV6
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struct in6_addr ipv6;
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char ipv6_addr[64];
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#endif
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/** @todo FIXME Some parts of urldb.c (and perhaps other parts of
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* NetSurf) make confusions between hosts and "prefixes", we can
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* sometimes be erroneously passed more than just a host. Sometimes
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* we may be passed trailing slashes, or even whole path segments.
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* A specific criminal in this class is urldb_iterate_partial, which
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* takes a prefix to search for, but passes that prefix to functions
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* that expect only hosts.
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*
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* For the time being, we will accept such calls; we check if there
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* is a / in the host parameter, and if there is, we take a copy and
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* replace the / with a \0. This is not a permanent solution; we
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* should search through NetSurf and find all the callers that are
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* in error and fix them. When doing this task, it might be wise
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* to replace the hideousness below with code that doesn't have to do
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* this, and add assert(strchr(host, '/') == NULL); somewhere.
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* -- rjek - 2010-11-04
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*/
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slash = strchr(host, '/');
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if (slash == NULL) {
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sane_host = host;
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} else {
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char *c = strdup(host);
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c[slash - host] = '\0';
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sane_host = c;
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host_len = slash - host - 1;
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LOG(("WARNING: called with non-host '%s'", host));
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}
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if (strspn(sane_host, "0123456789abcdefABCDEF[].:") < host_len)
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goto out_false;
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if (inet_aton(sane_host, &ipv4) != 0) {
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/* This can only be a sane IPv4 address if it contains 3 dots.
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* Helpfully, inet_aton is happy to treat "a", "a.b", "a.b.c",
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* and "a.b.c.d" as valid IPv4 address strings where we only
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* support the full, dotted-quad, form.
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*/
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int num_dots = 0;
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size_t index;
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for (index = 0; index < host_len; index++) {
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if (sane_host[index] == '.')
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num_dots++;
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}
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if (num_dots == 3)
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goto out_true;
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else
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goto out_false;
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}
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#ifndef NO_IPV6
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if (sane_host[0] != '[' || sane_host[host_len] != ']')
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goto out_false;
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strncpy(ipv6_addr, sane_host + 1, sizeof(ipv6_addr));
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ipv6_addr[sizeof(ipv6_addr) - 1] = '\0';
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if (inet_pton(AF_INET6, ipv6_addr, &ipv6) == 1)
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goto out_true;
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#endif
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out_false:
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if (slash != NULL) free((void *)sane_host);
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return false;
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out_true:
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if (slash != NULL) free((void *)sane_host);
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return true;
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}
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/**
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* Split a URL into separate components
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*
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* URLs passed to this function are assumed to be valid and no error checking
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* or recovery is attempted.
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*
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* See RFC 3986 for reference.
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*
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* \param url A valid absolute or relative URL.
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* \param result Pointer to buffer to hold components.
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* \return NSERROR_OK on success
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*/
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static nserror
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url_get_components(const char *url, struct url_components *result)
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{
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int storage_length;
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char *storage_end;
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const char *scheme;
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const char *authority;
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const char *path;
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const char *query;
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const char *fragment;
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struct url_components_internal *internal;
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assert(url);
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/* clear our return value */
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internal = (struct url_components_internal *)result;
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memset(result, 0x00, sizeof(struct url_components));
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/* get enough storage space for a URL with termination at each node */
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storage_length = strlen(url) + 8;
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internal->buffer = malloc(storage_length);
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if (!internal->buffer)
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return NSERROR_NOMEM;
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storage_end = internal->buffer;
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/* look for a valid scheme */
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scheme = url;
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if (isalpha(*scheme)) {
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for (scheme = url + 1;
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((*scheme != ':') && (*scheme != '\0'));
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scheme++) {
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if (!isalnum(*scheme) && (*scheme != '+') &&
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(*scheme != '-') && (*scheme != '.'))
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break;
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}
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if (*scheme == ':') {
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memcpy(storage_end, url, scheme - url);
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storage_end[scheme - url] = '\0';
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result->scheme = storage_end;
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storage_end += scheme - url + 1;
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scheme++;
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} else {
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scheme = url;
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}
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}
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/* look for an authority */
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authority = scheme;
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if ((authority[0] == '/') && (authority[1] == '/')) {
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authority = strpbrk(scheme + 2, "/?#");
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if (!authority)
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authority = scheme + strlen(scheme);
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memcpy(storage_end, scheme + 2, authority - scheme - 2);
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storage_end[authority - scheme - 2] = '\0';
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result->authority = storage_end;
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storage_end += authority - scheme - 1;
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}
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/* look for a path */
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path = authority;
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if ((*path != '?') && (*path != '#') && (*path != '\0')) {
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path = strpbrk(path, "?#");
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if (!path)
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path = authority + strlen(authority);
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memcpy(storage_end, authority, path - authority);
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storage_end[path - authority] = '\0';
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result->path = storage_end;
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storage_end += path - authority + 1;
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}
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/* look for a query */
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query = path;
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if (*query == '?') {
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query = strchr(query, '#');
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if (!query)
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query = path + strlen(path);
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memcpy(storage_end, path + 1, query - path - 1);
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storage_end[query - path - 1] = '\0';
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result->query = storage_end;
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storage_end += query - path;
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}
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/* look for a fragment */
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fragment = query;
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if (*fragment == '#') {
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fragment = query + strlen(query);
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/* make a copy of the result for the caller */
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memcpy(storage_end, query + 1, fragment - query - 1);
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storage_end[fragment - query - 1] = '\0';
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result->fragment = storage_end;
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storage_end += fragment - query;
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}
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assert((result->buffer + storage_length) >= storage_end);
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return NSERROR_OK;
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}
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/**
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* Release some url components from memory
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*
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* \param result pointer to buffer containing components
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*/
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static void url_destroy_components(const struct url_components *components)
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{
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const struct url_components_internal *internal;
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assert(components);
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internal = (const struct url_components_internal *)components;
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if (internal->buffer)
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free(internal->buffer);
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}
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/* exported interface documented in utils/url.h */
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nserror url_scheme(const char *url, char **result)
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{
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nserror status;
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struct url_components components;
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assert(url);
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status = url_get_components(url, &components);
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if (status == NSERROR_OK) {
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if (!components.scheme) {
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status = NSERROR_NOT_FOUND;
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} else {
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*result = strdup(components.scheme);
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if (!(*result))
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status = NSERROR_NOMEM;
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}
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}
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url_destroy_components(&components);
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return status;
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}
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/* exported interface documented in utils/url.h */
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nserror url_path(const char *url, char **result)
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{
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nserror status;
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struct url_components components;
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assert(url);
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status = url_get_components(url, &components);
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if (status == NSERROR_OK) {
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if (!components.path) {
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status = NSERROR_NOT_FOUND;
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} else {
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*result = strdup(components.path);
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if (!(*result))
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status = NSERROR_NOMEM;
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}
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}
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url_destroy_components(&components);
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return status;
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}
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/* exported interface documented in utils/url.h */
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nserror url_nice(const char *url, char **result,
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bool remove_extensions)
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{
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int m;
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regmatch_t match[10];
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regoff_t start, end;
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size_t i;
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char *dot;
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*result = 0;
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m = regexec(&url_re, url, 10, match, 0);
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if (m) {
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LOG(("url '%s' failed to match regex", url));
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return NSERROR_NOT_FOUND;
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}
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/* extract the last component of the path, if possible */
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if (match[URL_RE_PATH].rm_so == -1 || match[URL_RE_PATH].rm_so ==
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match[URL_RE_PATH].rm_eo)
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goto no_path; /* no path, or empty */
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for (end = match[URL_RE_PATH].rm_eo - 1;
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end != match[URL_RE_PATH].rm_so && url[end] == '/';
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end--)
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;
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if (end == match[URL_RE_PATH].rm_so)
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goto no_path; /* path is a string of '/' */
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end++;
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for (start = end - 1;
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start != match[URL_RE_PATH].rm_so && url[start] != '/';
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start--)
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;
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if (url[start] == '/')
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start++;
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if (!strncasecmp(url + start, "index.", 6) ||
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!strncasecmp(url + start, "default.", 8)) {
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/* try again */
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if (start == match[URL_RE_PATH].rm_so)
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goto no_path;
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for (end = start - 1;
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end != match[URL_RE_PATH].rm_so &&
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url[end] == '/';
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end--)
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;
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if (end == match[URL_RE_PATH].rm_so)
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goto no_path;
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end++;
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for (start = end - 1;
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start != match[URL_RE_PATH].rm_so &&
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url[start] != '/';
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start--)
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;
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if (url[start] == '/')
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start++;
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}
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*result = malloc(end - start + 1);
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if (!*result) {
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LOG(("malloc failed"));
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return NSERROR_NOMEM;
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}
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strncpy(*result, url + start, end - start);
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(*result)[end - start] = 0;
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if (remove_extensions) {
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dot = strchr(*result, '.');
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if (dot && dot != *result)
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*dot = 0;
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}
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return NSERROR_OK;
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no_path:
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/* otherwise, use the host name, with '.' replaced by '_' */
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if (match[URL_RE_AUTHORITY].rm_so != -1 &&
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match[URL_RE_AUTHORITY].rm_so !=
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match[URL_RE_AUTHORITY].rm_eo) {
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*result = malloc(match[URL_RE_AUTHORITY].rm_eo -
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match[URL_RE_AUTHORITY].rm_so + 1);
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if (!*result) {
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LOG(("malloc failed"));
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return NSERROR_NOMEM;
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}
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strncpy(*result, url + match[URL_RE_AUTHORITY].rm_so,
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match[URL_RE_AUTHORITY].rm_eo -
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match[URL_RE_AUTHORITY].rm_so);
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(*result)[match[URL_RE_AUTHORITY].rm_eo -
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match[URL_RE_AUTHORITY].rm_so] = 0;
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for (i = 0; (*result)[i]; i++)
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if ((*result)[i] == '.')
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(*result)[i] = '_';
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return NSERROR_OK;
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}
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return NSERROR_NOT_FOUND;
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}
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/* exported interface documented in utils/url.h */
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nserror url_unescape(const char *str, char **result)
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{
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char *curlstr;
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char *retstr;
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curlstr = curl_unescape(str, 0);
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if (curlstr == NULL) {
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return NSERROR_NOMEM;
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}
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retstr = strdup(curlstr);
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curl_free(curlstr);
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if (retstr == NULL) {
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return NSERROR_NOMEM;
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}
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*result = retstr;
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return NSERROR_OK;
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}
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/* exported interface documented in utils/url.h */
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nserror url_escape(const char *unescaped, size_t toskip,
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bool sptoplus, const char *escexceptions, char **result)
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{
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size_t len;
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char *escaped, *d, *tmpres;
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const char *c;
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if (!unescaped || !result)
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return NSERROR_NOT_FOUND;
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*result = NULL;
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len = strlen(unescaped);
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if (len < toskip)
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return NSERROR_NOT_FOUND;
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len -= toskip;
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escaped = malloc(len * 3 + 1);
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if (!escaped)
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return NSERROR_NOMEM;
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for (c = unescaped + toskip, d = escaped; *c; c++) {
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/* Check if we should escape this byte.
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* '~' is unreserved and should not be percent encoded, if
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* you believe the spec; however, leaving it unescaped
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* breaks a bunch of websites, so we escape it anyway. */
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if (!isascii(*c)
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|| (strchr(":/?#[]@" /* gen-delims */
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"!$&'()*+,;=" /* sub-delims */
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"<>%\"{}|\\^`~" /* others */, *c)
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&& (!escexceptions || !strchr(escexceptions, *c)))
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|| *c <= 0x20 || *c == 0x7f) {
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if (*c == 0x20 && sptoplus) {
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*d++ = '+';
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} else {
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*d++ = '%';
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*d++ = "0123456789ABCDEF"[((*c >> 4) & 0xf)];
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*d++ = "0123456789ABCDEF"[(*c & 0xf)];
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}
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} else {
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/* unreserved characters: [a-zA-Z0-9-._] */
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*d++ = *c;
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}
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}
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*d++ = '\0';
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tmpres = malloc(d - escaped + toskip);
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if (!tmpres) {
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free(escaped);
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return NSERROR_NOMEM;
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}
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memcpy(tmpres, unescaped, toskip);
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memcpy(tmpres + toskip, escaped, d - escaped);
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*result = tmpres;
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free(escaped);
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return NSERROR_OK;
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}
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