mirror of
https://github.com/netsurf-browser/netsurf
synced 2024-11-24 15:29:45 +03:00
402c4ca66c
Removed a chunk of Norcroft compiler warnings. Re-ident some pieces. svn path=/import/netsurf/; revision=1231
441 lines
12 KiB
C
441 lines
12 KiB
C
/*
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* This file is part of NetSurf, http://netsurf.sourceforge.net/
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* Licensed under the GNU General Public License,
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* http://www.opensource.org/licenses/gpl-license
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* Copyright 2004 James Bursa <bursa@users.sourceforge.net>
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*/
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/** \file
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* High-level fetching, caching and conversion (implementation).
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*
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* The implementation checks the cache for the requested URL. If it is not
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* present, a content is created and a fetch is initiated. As the status of the
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* fetch changes and data is received, the content is updated appropriately.
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*/
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#include <assert.h>
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#include <string.h>
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#include <sys/types.h>
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#include <regex.h>
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#include "netsurf/utils/config.h"
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#include "netsurf/content/content.h"
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#include "netsurf/content/fetchcache.h"
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#include "netsurf/content/fetch.h"
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#include "netsurf/utils/log.h"
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#include "netsurf/utils/messages.h"
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#include "netsurf/utils/url.h"
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#include "netsurf/utils/utils.h"
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static char error_page[1000];
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static regex_t re_content_type;
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static void fetchcache_callback(fetch_msg msg, void *p, const char *data,
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unsigned long size);
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static char *fetchcache_parse_type(const char *s, char **params[]);
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static void fetchcache_error_page(struct content *c, const char *error);
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/**
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* Retrieve a URL or prepare to fetch, convert, and cache it.
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*
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* The caller must supply a callback function which is called when anything
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* interesting happens to the content which is returned. See content.h.
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*
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* \param url address to fetch
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* \param callback function to call when anything interesting happens to
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* the new content
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* \param p1 user parameter for callback
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* \param p2 user parameter for callback
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* \param width available space
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* \param height available space
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* \param no_error_pages if an error occurs, send CONTENT_MSG_ERROR instead
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* of generating an error page
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* \param post_urlenc url encoded post data, or 0 if none
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* \param post_multipart multipart post data, or 0 if none
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* \param cookies send and accept cookies
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* \return a new content, or 0 on memory exhaustion
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*
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* On success, call fetchcache_go() to start work on the new content.
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*/
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struct content * fetchcache(const char *url,
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void (*callback)(content_msg msg, struct content *c, void *p1,
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void *p2, union content_msg_data data),
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void *p1, void *p2,
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int width, int height,
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bool no_error_pages,
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char *post_urlenc,
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struct form_successful_control *post_multipart,
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bool cookies)
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{
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struct content *c;
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char *url1;
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char *hash;
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if ((url1 = strdup(url)) == NULL)
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return NULL;
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/* strip fragment identifier */
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if ((hash = strchr(url1, '#')) != NULL)
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*hash = NULL;
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LOG(("url %s", url1));
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if (!post_urlenc && !post_multipart) {
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if ((c = content_get(url1)) != NULL) {
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free(url1);
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content_add_user(c, callback, p1, p2);
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return c;
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}
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}
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c = content_create(url1);
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free(url1);
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if (!c)
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return NULL;
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content_add_user(c, callback, p1, p2);
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if (!post_urlenc && !post_multipart)
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c->fresh = true;
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c->width = width;
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c->height = height;
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c->no_error_pages = no_error_pages;
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return c;
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}
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/**
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* Start fetching and converting a content.
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*
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* \param content content to fetch, as returned by fetchcache()
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* \param referer referring URL, or 0
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* \param callback function to call when anything interesting happens to
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* the new content
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* \param p1 user parameter for callback
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* \param p2 user parameter for callback
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* \param post_urlenc url encoded post data, or 0 if none
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* \param post_multipart multipart post data, or 0 if none
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* \param cookies send and accept cookies
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*
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* Errors will be sent back through the callback.
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*/
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void fetchcache_go(struct content *content, char *referer,
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void (*callback)(content_msg msg, struct content *c, void *p1,
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void *p2, union content_msg_data data),
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void *p1, void *p2,
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char *post_urlenc,
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struct form_successful_control *post_multipart,
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bool cookies)
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{
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char error_message[500];
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union content_msg_data msg_data;
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LOG(("url %s, status %s", content->url,
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content_status_name[content->status]));
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if (content->status == CONTENT_STATUS_TYPE_UNKNOWN && content->fetch) {
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/* fetching, but not yet received any response:
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* no action required */
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} else if (content->status == CONTENT_STATUS_TYPE_UNKNOWN) {
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/* brand new content: start fetch */
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content->fetch = fetch_start(content->url, referer,
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fetchcache_callback, content,
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content->no_error_pages,
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post_urlenc, post_multipart, cookies);
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if (!content->fetch) {
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LOG(("warning: fetch_start failed"));
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snprintf(error_message, sizeof error_message,
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messages_get("InvalidURL"),
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content->url);
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if (content->no_error_pages) {
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content->status = CONTENT_STATUS_ERROR;
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msg_data.error = error_message;
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content_broadcast(content, CONTENT_MSG_ERROR,
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msg_data);
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} else {
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fetchcache_error_page(content, error_message);
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}
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}
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/* in these remaining cases, we have to 'catch up' with the content's
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* status, ie. send the same messages as if the content was
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* gradually getting to the current status from TYPE_UNKNOWN */
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} else if (content->status == CONTENT_STATUS_LOADING) {
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callback(CONTENT_MSG_LOADING, content, p1, p2, msg_data);
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} else if (content->status == CONTENT_STATUS_READY) {
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callback(CONTENT_MSG_LOADING, content, p1, p2, msg_data);
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if (content_find_user(content, callback, p1, p2))
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callback(CONTENT_MSG_READY, content, p1, p2, msg_data);
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} else if (content->status == CONTENT_STATUS_DONE) {
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callback(CONTENT_MSG_LOADING, content, p1, p2, msg_data);
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if (content_find_user(content, callback, p1, p2))
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callback(CONTENT_MSG_READY, content, p1, p2, msg_data);
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if (content_find_user(content, callback, p1, p2))
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callback(CONTENT_MSG_DONE, content, p1, p2, msg_data);
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} else if (content->status == CONTENT_STATUS_ERROR) {
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/* shouldn't usually occur */
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msg_data.error = messages_get("MiscError");
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callback(CONTENT_MSG_ERROR, content, p1, p2, msg_data);
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}
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}
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/**
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* Callback function for fetch.
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*
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* This is called when the status of a fetch changes.
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*/
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void fetchcache_callback(fetch_msg msg, void *p, const char *data,
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unsigned long size)
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{
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bool res;
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struct content *c = p;
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content_type type;
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char *mime_type, *url;
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char **params;
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unsigned int i;
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union content_msg_data msg_data;
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url_func_result result;
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switch (msg) {
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case FETCH_TYPE:
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c->total_size = size;
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mime_type = fetchcache_parse_type(data, ¶ms);
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type = content_lookup(mime_type);
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LOG(("FETCH_TYPE, type %u", type));
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res = content_set_type(c, type, mime_type, params);
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free(mime_type);
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for (i = 0; params[i]; i++)
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free(params[i]);
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free(params);
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if (!res) {
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fetch_abort(c->fetch);
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c->fetch = 0;
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}
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break;
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case FETCH_PROGRESS:
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if (size)
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content_set_status(c,
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messages_get("RecPercent"),
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data, (unsigned int)size);
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else
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content_set_status(c,
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messages_get("Received"),
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data);
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content_broadcast(c, CONTENT_MSG_STATUS, msg_data);
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break;
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case FETCH_DATA:
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LOG(("FETCH_DATA"));
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/* if (c->total_size)
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content_set_status(c,
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messages_get("RecPercent"),
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human_friendly_bytesize(c->source_size + size),
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human_friendly_bytesize(c->total_size),
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(unsigned int) ((c->source_size + size) * 100 / c->total_size));
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else
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content_set_status(c,
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messages_get("Received"),
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human_friendly_bytesize(c->source_size + size));
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content_broadcast(c, CONTENT_MSG_STATUS, msg_data);
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*/ if (!content_process_data(c, data, size)) {
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fetch_abort(c->fetch);
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c->fetch = 0;
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}
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break;
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case FETCH_FINISHED:
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LOG(("FETCH_FINISHED"));
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c->fetch = 0;
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content_set_status(c, messages_get("Converting"),
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c->source_size);
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content_broadcast(c, CONTENT_MSG_STATUS, msg_data);
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content_convert(c, c->width, c->height);
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break;
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case FETCH_ERROR:
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LOG(("FETCH_ERROR, '%s'", data));
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c->fetch = 0;
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if (c->no_error_pages) {
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c->status = CONTENT_STATUS_ERROR;
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msg_data.error = data;
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content_broadcast(c, CONTENT_MSG_ERROR,
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msg_data);
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} else {
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content_reset(c);
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fetchcache_error_page(c, data);
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}
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break;
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case FETCH_REDIRECT:
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LOG(("FETCH_REDIRECT, '%s'", data));
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c->fetch = 0;
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/* redirect URLs must be absolute by HTTP/1.1, but many sites send
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* relative ones: treat them as relative to requested URL */
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result = url_join(data, c->url, &url);
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if (result == URL_FUNC_OK) {
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msg_data.redirect = url;
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content_broadcast(c, CONTENT_MSG_REDIRECT, msg_data);
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free(url);
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} else {
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msg_data.error = messages_get("BadRedirect");
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content_broadcast(c, CONTENT_MSG_ERROR, msg_data);
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}
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/* set the status to ERROR so that the content is
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* destroyed in content_clean() */
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c->status = CONTENT_STATUS_ERROR;
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break;
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#ifdef WITH_AUTH
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case FETCH_AUTH:
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/* data -> string containing the Realm */
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LOG(("FETCH_AUTH, '%s'", data));
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c->fetch = 0;
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msg_data.auth_realm = data;
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content_broadcast(c, CONTENT_MSG_AUTH, msg_data);
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/* set the status to ERROR so that the content is
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* destroyed in content_clean() */
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c->status = CONTENT_STATUS_ERROR;
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break;
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#endif
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default:
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assert(0);
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}
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}
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/**
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* Initialise the fetchcache module.
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*/
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void fetchcache_init(void)
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{
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regcomp_wrapper(&re_content_type,
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"^([-0-9a-zA-Z_.]+/[-0-9a-zA-Z_.]+)[ \t]*"
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"(;[ \t]*([-0-9a-zA-Z_.]+)="
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"([-0-9a-zA-Z_.]+|\"([^\"]|[\\].)*\")[ \t]*)*$",
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REG_EXTENDED);
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}
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/**
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* Parse a Content-Type header.
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*
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* \param s a Content-Type header
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* \param params updated to point to an array of strings, ordered attribute,
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* value, attribute, ..., 0
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* \return a new string containing the MIME-type
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*/
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#define MAX_ATTRS 10
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char *fetchcache_parse_type(const char *s, char **params[])
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{
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char *type;
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unsigned int i;
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int r;
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regmatch_t pmatch[2 + MAX_ATTRS * 3];
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*params = xcalloc(MAX_ATTRS * 2 + 2, sizeof (*params)[0]);
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r = regexec(&re_content_type, s, 2 + MAX_ATTRS * 3, pmatch, 0);
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if (r) {
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LOG(("failed to parse content-type '%s'", s));
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return xstrdup(s);
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}
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type = strndup(s + pmatch[1].rm_so, pmatch[1].rm_eo - pmatch[1].rm_so);
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assert(type);
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/* parameters */
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for (i = 0; i != MAX_ATTRS && pmatch[2 + 3 * i].rm_so != -1; i++) {
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(*params)[2 * i] = strndup(s + pmatch[2 + 3 * i + 1].rm_so,
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pmatch[2 + 3 * i + 1].rm_eo - pmatch[2 + 3 * i + 1].rm_so);
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(*params)[2 * i + 1] = strndup(s + pmatch[2 + 3 * i + 2].rm_so,
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pmatch[2 + 3 * i + 2].rm_eo - pmatch[2 + 3 * i + 2].rm_so);
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assert((*params)[2 * i] && (*params)[2 * i + 1]);
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}
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(*params)[2 * i] = 0;
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return type;
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}
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/**
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* Generate an error page.
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*
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* \param c empty content to generate the page in
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* \param error message to display
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*/
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void fetchcache_error_page(struct content *c, const char *error)
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{
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const char *params[] = { 0 };
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int length;
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if ((length = snprintf(error_page, sizeof(error_page),
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messages_get("ErrorPage"), error)) < 0)
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length = 0;
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if (!content_set_type(c, CONTENT_HTML, "text/html", params))
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return;
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if (!content_process_data(c, error_page, length))
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return;
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content_convert(c, c->width, c->height);
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}
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#ifdef TEST
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#include <unistd.h>
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void callback(fetchcache_msg msg, struct content *c, void *p, char *error)
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{
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switch (msg) {
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case FETCHCACHE_OK:
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LOG(("FETCHCACHE_OK, url '%s'", p));
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break;
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case FETCHCACHE_BADTYPE:
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LOG(("FETCHCACHE_BADTYPE, url '%s'", p));
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break;
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case FETCHCACHE_ERROR:
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LOG(("FETCHCACHE_ERROR, url '%s', error '%s'", p, error));
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break;
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default:
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assert(0);
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}
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}
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char *test[] = {"http://www.google.co.uk/", "http://www.ox.ac.uk/", "blah://blah/"};
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int main(void)
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{
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int i;
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cache_init();
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fetch_init();
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for (i = 0; i != sizeof(test) / sizeof(test[0]); i++)
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fetchcache(test[i], 0, callback, test[i], 800, 0);
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for (i = 0; i != 5; i++) {
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fetch_poll();
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sleep(1);
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}
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for (i = 0; i != sizeof(test) / sizeof(test[0]); i++)
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fetchcache(test[i], 0, callback, test[i], 800, 0);
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for (i = 0; i != 20; i++) {
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fetch_poll();
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sleep(1);
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}
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return 0;
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}
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#endif
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