websrvr.c 110 KB
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/* websrvr.c */

/* Synchronet Web Server */

/* $Id$ */

/****************************************************************************
 * @format.tab-size 4		(Plain Text/Source Code File Header)			*
 * @format.use-tabs true	(see http://www.synchro.net/ptsc_hdr.html)		*
 *																			*
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 * Copyright 2005 Rob Swindell - http://www.synchro.net/copyright.html		*
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 *																			*
 * This program is free software; you can redistribute it and/or			*
 * modify it under the terms of the GNU General Public License				*
 * as published by the Free Software Foundation; either version 2			*
 * of the License, or (at your option) any later version.					*
 * See the GNU General Public License for more details: gpl.txt or			*
 * http://www.fsf.org/copyleft/gpl.html										*
 *																			*
 * Anonymous FTP access to the most recent released source is available at	*
 * ftp://vert.synchro.net, ftp://cvs.synchro.net and ftp://ftp.synchro.net	*
 *																			*
 * Anonymous CVS access to the development source and modification history	*
 * is available at cvs.synchro.net:/cvsroot/sbbs, example:					*
 * cvs -d :pserver:anonymous@cvs.synchro.net:/cvsroot/sbbs login			*
 *     (just hit return, no password is necessary)							*
 * cvs -d :pserver:anonymous@cvs.synchro.net:/cvsroot/sbbs checkout src		*
 *																			*
 * For Synchronet coding style and modification guidelines, see				*
 * http://www.synchro.net/source.html										*
 *																			*
 * You are encouraged to submit any modifications (preferably in Unix diff	*
 * format) via e-mail to mods@synchro.net									*
 *																			*
 * Note: If this box doesn't appear square, then you need to fix your tabs.	*
 ****************************************************************************/

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/*
 * General notes: (ToDo stuff)
 *
 * Currently, all SSJS requests for a session are ran in the same context without clearing the context in
 * any way.  This behaviour should not be relied on as it may disappear in the future... this will require
 * some thought as it COULD be handy in some circumstances and COULD cause weird bugs in others.
 *
 * Dynamic content is always resent on an If-Modified-Since request... this may not be optimal behaviour
 * for GET requests...
 *
 * Should support RFC2617 Digest auth.
 *
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 * Support the ident protocol... the standard log format supports it.
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 *
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 * SSJS stuff should support chunked transfer for HTTP/1.1 and fast mode.
 *		(Would allow keep-alives to stay erm... alive)
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 *
 * Add in support to pass connections through to a different webserver...
 *      probobly in access.ars... with like a simplified mod_rewrite.
 *      This would allow people to run apache and Synchronet as the same site.
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 */

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/* Headers for CGI stuff */
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#if defined(__unix__)
	#include <sys/wait.h>		/* waitpid() */
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	#include <sys/types.h>
	#include <signal.h>			/* kill() */
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#endif

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#ifndef JAVASCRIPT
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#define JAVASCRIPT
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#endif

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#undef SBBS	/* this shouldn't be defined unless building sbbs.dll/libsbbs.so */
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#include "sbbs.h"
#include "sockwrap.h"		/* sendfilesocket() */
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#include "threadwrap.h"
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#include "semwrap.h"
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#include "websrvr.h"
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#include "base64.h"
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static const char*	server_name="Synchronet Web Server";
static const char*	newline="\r\n";
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static const char*	http_scheme="http://";
static const size_t	http_scheme_len=7;
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static const char*	error_301="301 Moved Permanently";
static const char*	error_302="302 Moved Temporarily";
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static const char*	error_404="404 Not Found";
static const char*	error_500="500 Internal Server Error";
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static const char*	unknown="<unknown>";
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#define TIMEOUT_THREAD_WAIT		60		/* Seconds */
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#define MAX_REQUEST_LINE		1024	/* NOT including terminator */
#define MAX_HEADERS_SIZE		16384	/* Maximum total size of all headers 
										   (Including terminator )*/
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#define MAX_REDIR_LOOPS			20		/* Max. times to follow internal redirects for a single request */
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#define MAX_POST_LEN			1048576	/* Max size of body for POSTS */
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enum {
	 CLEANUP_SSJS_TMP_FILE
	,CLEANUP_POST_DATA
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	,MAX_CLEANUPS
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};
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static scfg_t	scfg;
static BOOL		scfg_reloaded=TRUE;
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static BOOL		http_logging_thread_running=FALSE;
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static ulong	active_clients=0;
static ulong	sockets=0;
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static BOOL		terminate_server=FALSE;
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static BOOL		terminate_http_logging_thread=FALSE;
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static uint		thread_count=0;
static SOCKET	server_socket=INVALID_SOCKET;
static char		revision[16];
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static char		root_dir[MAX_PATH+1];
static char		error_dir[MAX_PATH+1];
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static char		temp_dir[MAX_PATH+1];
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static char		cgi_dir[MAX_PATH+1];
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static time_t	uptime=0;
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static DWORD	served=0;
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static web_startup_t* startup=NULL;
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static js_server_props_t js_server_props;
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static str_list_t recycle_semfiles;
static str_list_t shutdown_semfiles;
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static named_string_t** mime_types;
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static named_string_t** cgi_handlers;
static named_string_t** xjs_handlers;
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/* Logging stuff */
sem_t	log_sem;
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link_list_t	log_list;
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struct log_data {
	char	*hostname;
	char	*ident;
	char	*user;
	char	*request;
	char	*referrer;
	char	*agent;
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	char	*vhost;
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	int		status;
	unsigned int	size;
	struct tm completed;
};

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typedef struct  {
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	int			method;
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	char		virtual_path[MAX_PATH+1];
	char		physical_path[MAX_PATH+1];
	BOOL		parsed_headers;
	BOOL    	expect_go_ahead;
	time_t		if_modified_since;
	BOOL		keep_alive;
	char		ars[256];
	char    	auth[128];				/* UserID:Password */
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	char		host[128];				/* The requested host. (as used for self-referencing URLs) */
	char		vhost[128];				/* The requested host. (virtual host) */
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	int			send_location;
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	const char*	mime_type;
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	str_list_t	headers;
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	char		status[MAX_REQUEST_LINE+1];
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	char *		post_data;
	size_t		post_len;
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	int			dynamic;
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	char		xjs_handler[MAX_PATH+1];
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	struct log_data	*ld;
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	char		request_line[MAX_REQUEST_LINE+1];
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	BOOL		finished;				/* Done processing request. */
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	/* CGI parameters */
	char		query_str[MAX_REQUEST_LINE+1];
	char		extra_path_info[MAX_REQUEST_LINE+1];
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	str_list_t	cgi_env;
	str_list_t	dynamic_heads;
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	/* Dynamically (sever-side JS) generated HTML parameters */
	FILE*	fp;
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	char		*cleanup_file[MAX_CLEANUPS];
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	BOOL	sent_headers;
	BOOL	prev_write;
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} http_request_t;

typedef struct  {
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	SOCKET			socket;
	SOCKADDR_IN		addr;
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	http_request_t	req;
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	char			host_ip[64];
	char			host_name[128];	/* Resolved remote host */
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	int				http_ver;       /* HTTP version.  0 = HTTP/0.9, 1=HTTP/1.0, 2=HTTP/1.1 */
	BOOL			finished;		/* Do not accept any more imput from client */
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	user_t			user;
	int				last_user_num;
	time_t			logon_time;
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	char			username[LEN_NAME+1];
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	int				last_js_user_num;
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	/* JavaScript parameters */
	JSRuntime*		js_runtime;
	JSContext*		js_cx;
	JSObject*		js_glob;
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	JSObject*		js_query;
	JSObject*		js_header;
	JSObject*		js_request;
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	js_branch_t		js_branch;
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	subscan_t		*subscan;
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	/* Client info */
	client_t		client;
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} http_session_t;

enum { 
	 HTTP_0_9
	,HTTP_1_0
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	,HTTP_1_1
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};
static char* http_vers[] = {
	 ""
	,"HTTP/1.0"
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	,"HTTP/1.1"
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	,NULL	/* terminator */
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};

enum { 
	 HTTP_HEAD
	,HTTP_GET
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	,HTTP_POST
	,HTTP_OPTIONS
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};
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static char* methods[] = {
	 "HEAD"
	,"GET"
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	,"POST"
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	,"OPTIONS"
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	,NULL	/* terminator */
};
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enum {
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	 IS_STATIC
	,IS_CGI
	,IS_JS
	,IS_SSJS
};

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enum { 
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	 HEAD_DATE
	,HEAD_HOST
	,HEAD_IFMODIFIED
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	,HEAD_LENGTH
	,HEAD_TYPE
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	,HEAD_AUTH
	,HEAD_CONNECTION
	,HEAD_WWWAUTH
	,HEAD_STATUS
	,HEAD_ALLOW
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	,HEAD_EXPIRES
	,HEAD_LASTMODIFIED
	,HEAD_LOCATION
	,HEAD_PRAGMA
	,HEAD_SERVER
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	,HEAD_REFERER
	,HEAD_AGENT
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};

static struct {
	int		id;
	char*	text;
} headers[] = {
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	{ HEAD_DATE,			"Date"					},
	{ HEAD_HOST,			"Host"					},
	{ HEAD_IFMODIFIED,		"If-Modified-Since"		},
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	{ HEAD_LENGTH,			"Content-Length"		},
	{ HEAD_TYPE,			"Content-Type"			},
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	{ HEAD_AUTH,			"Authorization"			},
	{ HEAD_CONNECTION,		"Connection"			},
	{ HEAD_WWWAUTH,			"WWW-Authenticate"		},
	{ HEAD_STATUS,			"Status"				},
	{ HEAD_ALLOW,			"Allow"					},
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	{ HEAD_EXPIRES,			"Expires"				},
	{ HEAD_LASTMODIFIED,	"Last-Modified"			},
	{ HEAD_LOCATION,		"Location"				},
	{ HEAD_PRAGMA,			"Pragma"				},
	{ HEAD_SERVER,			"Server"				},
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	{ HEAD_REFERER,			"Referer"				},
	{ HEAD_AGENT,			"User-Agent"			},
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	{ -1,					NULL /* terminator */	},
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};

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/* Everything MOVED_TEMP and everything after is a magical internal redirect */
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enum  {
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	 NO_LOCATION
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	,MOVED_PERM
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	,MOVED_TEMP
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	,MOVED_STAT
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};

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static char	*days[]={"Sun","Mon","Tue","Wed","Thu","Fri","Sat"};
static char	*months[]={"Jan","Feb","Mar","Apr","May","Jun","Jul","Aug","Sep","Oct","Nov","Dec"};

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static void respond(http_session_t * session);
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static BOOL js_setup(http_session_t* session);
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static char *find_last_slash(char *str);
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static BOOL check_extra_path(http_session_t * session);
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static BOOL exec_ssjs(http_session_t* session, char* script);
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static BOOL ssjs_send_headers(http_session_t* session);
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static time_t
sub_mkgmt(struct tm *tm)
{
        int y, nleapdays;
        time_t t;
        /* days before the month */
        static const unsigned short moff[12] = {
                0, 31, 59, 90, 120, 151, 181, 212, 243, 273, 304, 334
        };

        /*
         * XXX: This code assumes the given time to be normalized.
         * Normalizing here is impossible in case the given time is a leap
         * second but the local time library is ignorant of leap seconds.
         */

        /* minimal sanity checking not to access outside of the array */
        if ((unsigned) tm->tm_mon >= 12)
                return (time_t) -1;
        if (tm->tm_year < 1970 - 1900)
                return (time_t) -1;

        y = tm->tm_year + 1900 - (tm->tm_mon < 2);
        nleapdays = y / 4 - y / 100 + y / 400 -
            ((1970-1) / 4 - (1970-1) / 100 + (1970-1) / 400);
        t = ((((time_t) (tm->tm_year - (1970 - 1900)) * 365 +
                        moff[tm->tm_mon] + tm->tm_mday - 1 + nleapdays) * 24 +
                tm->tm_hour) * 60 + tm->tm_min) * 60 + tm->tm_sec;

        return (t < 0 ? (time_t) -1 : t);
}

time_t
time_gm(struct tm *tm)
{
        time_t t, t2;
        struct tm *tm2;
        int sec;

        /* Do the first guess. */
        if ((t = sub_mkgmt(tm)) == (time_t) -1)
                return (time_t) -1;

        /* save value in case *tm is overwritten by gmtime() */
        sec = tm->tm_sec;

        tm2 = gmtime(&t);
        if ((t2 = sub_mkgmt(tm2)) == (time_t) -1)
                return (time_t) -1;

        if (t2 < t || tm2->tm_sec != sec) {
                /*
                 * Adjust for leap seconds.
                 *
                 *     real time_t time
                 *           |
                 *          tm
                 *         /        ... (a) first sub_mkgmt() conversion
                 *       t
                 *       |
                 *      tm2
                 *     /        ... (b) second sub_mkgmt() conversion
                 *   t2
                 *                        --->time
                 */
                /*
                 * Do the second guess, assuming (a) and (b) are almost equal.
                 */
                t += t - t2;
                tm2 = gmtime(&t);

                /*
                 * Either (a) or (b), may include one or two extra
                 * leap seconds.  Try t, t + 2, t - 2, t + 1, and t - 1.
                 */
                if (tm2->tm_sec == sec
                    || (t += 2, tm2 = gmtime(&t), tm2->tm_sec == sec)
                    || (t -= 4, tm2 = gmtime(&t), tm2->tm_sec == sec)
                    || (t += 3, tm2 = gmtime(&t), tm2->tm_sec == sec)
                    || (t -= 2, tm2 = gmtime(&t), tm2->tm_sec == sec))
                        ;        /* found */
                else {
                        /*
                         * Not found.
                         */
                        if (sec >= 60)
                                /*
                                 * The given time is a leap second
                                 * (sec 60 or 61), but the time library
                                 * is ignorant of the leap second.
                                 */
                                ;        /* treat sec 60 as 59,
                                           sec 61 as 0 of the next minute */
                        else
                                /* The given time may not be normalized. */
                                t++;        /* restore t */
                }
        }

        return (t < 0 ? (time_t) -1 : t);
}
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static int lprintf(int level, char *fmt, ...)
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{
	va_list argptr;
	char sbuf[1024];

    if(startup==NULL || startup->lputs==NULL)
        return(0);

	va_start(argptr,fmt);
    vsnprintf(sbuf,sizeof(sbuf),fmt,argptr);
	sbuf[sizeof(sbuf)-1]=0;
    va_end(argptr);
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    return(startup->lputs(startup->cbdata,level,sbuf));
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}

#ifdef _WINSOCKAPI_

static WSADATA WSAData;
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#define SOCKLIB_DESC WSAData.szDescription
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static BOOL WSAInitialized=FALSE;

static BOOL winsock_startup(void)
{
	int		status;             /* Status Code */

    if((status = WSAStartup(MAKEWORD(1,1), &WSAData))==0) {
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		lprintf(LOG_INFO,"%s %s",WSAData.szDescription, WSAData.szSystemStatus);
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		WSAInitialized=TRUE;
		return (TRUE);
	}

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    lprintf(LOG_ERR,"!WinSock startup ERROR %d", status);
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	return (FALSE);
}

#else /* No WINSOCK */

#define winsock_startup()	(TRUE)
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#define SOCKLIB_DESC NULL
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#endif

static void status(char* str)
{
	if(startup!=NULL && startup->status!=NULL)
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	    startup->status(startup->cbdata,str);
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}

static void update_clients(void)
{
	if(startup!=NULL && startup->clients!=NULL)
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		startup->clients(startup->cbdata,active_clients);
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}

static void client_on(SOCKET sock, client_t* client, BOOL update)
{
	if(startup!=NULL && startup->client_on!=NULL)
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		startup->client_on(startup->cbdata,TRUE,sock,client,update);
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}

static void client_off(SOCKET sock)
{
	if(startup!=NULL && startup->client_on!=NULL)
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		startup->client_on(startup->cbdata,FALSE,sock,NULL,FALSE);
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}

static void thread_up(BOOL setuid)
{
	thread_count++;
	if(startup!=NULL && startup->thread_up!=NULL)
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		startup->thread_up(startup->cbdata,TRUE, setuid);
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}

static void thread_down(void)
{
	if(thread_count>0)
		thread_count--;
	if(startup!=NULL && startup->thread_up!=NULL)
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		startup->thread_up(startup->cbdata,FALSE, FALSE);
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}

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/*********************************************************************/
/* Adds an environment variable to the sessions  cgi_env linked list */
/*********************************************************************/
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static void add_env(http_session_t *session, const char *name,const char *value)  {
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	char	newname[129];
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	char	*p;
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	if(name==NULL || value==NULL)  {
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		lprintf(LOG_WARNING,"%04d Attempt to set NULL env variable", session->socket);
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		return;
	}
	SAFECOPY(newname,name);

	for(p=newname;*p;p++)  {
		*p=toupper(*p);
		if(*p=='-')
			*p='_';
	}
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	p=(char *)malloc(strlen(name)+strlen(value)+2);
	if(p==NULL) {
		lprintf(LOG_WARNING,"%04d Cannot allocate memory for string", session->socket);
		return;
	}
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#if 0	/* this is way too verbose for every request */
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	lprintf(LOG_DEBUG,"%04d Adding CGI environment variable %s=%s",session->socket,newname,value);
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#endif
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	sprintf(p,"%s=%s",newname,value);
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	strListPush(&session->req.cgi_env,p);
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	free(p);
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}

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/***************************************/
/* Initializes default CGI envirnoment */
/***************************************/
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static void init_enviro(http_session_t *session)  {
	char	str[128];

	add_env(session,"SERVER_SOFTWARE",VERSION_NOTICE);
	sprintf(str,"%d",startup->port);
	add_env(session,"SERVER_PORT",str);
	add_env(session,"GATEWAY_INTERFACE","CGI/1.1");
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	if(!strcmp(session->host_name,session->host_ip))
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		add_env(session,"REMOTE_HOST",session->host_name);
	add_env(session,"REMOTE_ADDR",session->host_ip);
}

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/*
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 * Sends string str to socket sock... returns number of bytes written, or 0 on an error
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 * Can not close the socket since it can not set it to INVALID_SOCKET
 */
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static int sockprint(SOCKET sock, const char *str)
{
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	int len;
	int	result;
	int written=0;
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	BOOL	wr;
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	if(sock==INVALID_SOCKET)
		return(0);
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	if(startup->options&WEB_OPT_DEBUG_TX)
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		lprintf(LOG_DEBUG,"%04d TX: %s", sock, str);
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	len=strlen(str);
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	while(socket_check(sock,NULL,&wr,startup->max_inactivity*1000) && wr && written<len)  {
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		result=sendsocket(sock,str+written,len-written);
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		if(result==SOCKET_ERROR) {
			if(ERROR_VALUE==ECONNRESET) 
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				lprintf(LOG_NOTICE,"%04d Connection reset by peer on send",sock);
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			else if(ERROR_VALUE==ECONNABORTED) 
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				lprintf(LOG_NOTICE,"%04d Connection aborted by peer on send",sock);
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			else
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				lprintf(LOG_WARNING,"%04d !ERROR %d sending on socket",sock,ERROR_VALUE);
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			return(0);
		}
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		written+=result;
	}
	if(written != len) {
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		lprintf(LOG_WARNING,"%04d !ERROR %d sending on socket",sock,ERROR_VALUE);
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		return(0);
	}
	return(len);
}

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/**********************************************************/
/* Converts a month name/abbr to the 0-based month number */
/* ToDo: This probobly exists somewhere else already	  */
/**********************************************************/
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static int getmonth(char *mon)
{
	int	i;
	for(i=0;i<12;i++)
		if(!stricmp(mon,months[i]))
			return(i);

	return 0;
}

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/*******************************************************************/
/* Converts a date string in any of the common formats to a time_t */
/*******************************************************************/
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static time_t decode_date(char *date)
{
	struct	tm	ti;
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	char	*token;
	time_t	t;
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	ti.tm_sec=0;		/* seconds (0 - 60) */
	ti.tm_min=0;		/* minutes (0 - 59) */
	ti.tm_hour=0;		/* hours (0 - 23) */
	ti.tm_mday=1;		/* day of month (1 - 31) */
	ti.tm_mon=0;		/* month of year (0 - 11) */
	ti.tm_year=0;		/* year - 1900 */
	ti.tm_isdst=0;		/* is summer time in effect? */

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	token=strtok(date,",");
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	if(token==NULL)
		return(0);
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	/* This probobly only needs to be 9, but the extra one is for luck. */
	if(strlen(date)>15) {
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		/* asctime() */
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		/* Toss away week day */
		token=strtok(date," ");
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		if(token==NULL)
			return(0);
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		token=strtok(NULL," ");
		if(token==NULL)
			return(0);
		ti.tm_mon=getmonth(token);
		token=strtok(NULL," ");
		if(token==NULL)
			return(0);
		ti.tm_mday=atoi(token);
		token=strtok(NULL,":");
		if(token==NULL)
			return(0);
		ti.tm_hour=atoi(token);
		token=strtok(NULL,":");
		if(token==NULL)
			return(0);
		ti.tm_min=atoi(token);
		token=strtok(NULL," ");
		if(token==NULL)
			return(0);
		ti.tm_sec=atoi(token);
		token=strtok(NULL,"");
		if(token==NULL)
			return(0);
		ti.tm_year=atoi(token)-1900;
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	}
	else  {
		/* RFC 1123 or RFC 850 */
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		token=strtok(NULL," -");
		if(token==NULL)
			return(0);
		ti.tm_mday=atoi(token);
		token=strtok(NULL," -");
		if(token==NULL)
			return(0);
		ti.tm_mon=getmonth(token);
		token=strtok(NULL," ");
		if(token==NULL)
			return(0);
		ti.tm_year=atoi(token);
		token=strtok(NULL,":");
		if(token==NULL)
			return(0);
		ti.tm_hour=atoi(token);
		token=strtok(NULL,":");
		if(token==NULL)
			return(0);
		ti.tm_min=atoi(token);
		token=strtok(NULL," ");
		if(token==NULL)
			return(0);
		ti.tm_sec=atoi(token);
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		if(ti.tm_year>1900)
			ti.tm_year -= 1900;
	}
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	t=time_gm(&ti);
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	return(t);
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}

static SOCKET open_socket(int type)
{
	char	error[256];
	SOCKET	sock;

	sock=socket(AF_INET, type, IPPROTO_IP);
	if(sock!=INVALID_SOCKET && startup!=NULL && startup->socket_open!=NULL) 
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		startup->socket_open(startup->cbdata,TRUE);
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	if(sock!=INVALID_SOCKET) {
		if(set_socket_options(&scfg, sock,error))
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			lprintf(LOG_ERR,"%04d !ERROR %s",sock,error);
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		sockets++;
	}
	return(sock);
}

static int close_socket(SOCKET sock)
{
	int		result;

	if(sock==INVALID_SOCKET)
		return(-1);

	shutdown(sock,SHUT_RDWR);	/* required on Unix */
	result=closesocket(sock);
	if(startup!=NULL && startup->socket_open!=NULL) {
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		startup->socket_open(startup->cbdata,FALSE);
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	}
	sockets--;
	if(result!=0) {
		if(ERROR_VALUE!=ENOTSOCK)
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			lprintf(LOG_WARNING,"%04d !ERROR %d closing socket",sock, ERROR_VALUE);
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	}

	return(result);
}

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/**************************************************/
/* End of a single request...					  */
/* This is called at the end of EVERY request	  */
/*  Log the request       						  */
/*  Free request-specific data ie: dynamic stuff  */
/*  Close socket unless it's being kept alive     */
/*   If the socket is closed, the session is done */
/**************************************************/
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static void close_request(http_session_t * session)
{
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	time_t		now;
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	int			i;
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	if(session->req.ld!=NULL) {
		now=time(NULL);
		localtime_r(&now,&session->req.ld->completed);
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		listPushNode(&log_list,session->req.ld);
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		sem_post(&log_sem);
		session->req.ld=NULL;
	}
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	strListFree(&session->req.headers);
	strListFree(&session->req.dynamic_heads);
	strListFree(&session->req.cgi_env);
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	FREE_AND_NULL(session->req.post_data);
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	if(!session->req.keep_alive) {
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		close_socket(session->socket);
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		session->socket=INVALID_SOCKET;
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	}
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	if(session->socket==INVALID_SOCKET)
		session->finished=TRUE;

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	if(session->js_cx!=NULL && (session->req.dynamic==IS_SSJS || session->req.dynamic==IS_JS)) {
		JS_GC(session->js_cx);
	}
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	if(session->subscan!=NULL)
		putmsgptrs(&scfg, session->user.number, session->subscan);
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	if(session->req.fp!=NULL)
		fclose(session->req.fp);

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	for(i=0;i<MAX_CLEANUPS;i++) {
		if(session->req.cleanup_file[i]!=NULL) {
			if(!(startup->options&WEB_OPT_DEBUG_SSJS))
				remove(session->req.cleanup_file[i]);
			free(session->req.cleanup_file[i]);
		}
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	}

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	memset(&session->req,0,sizeof(session->req));
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}

static int get_header_type(char *header)
{
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	int i;
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	for(i=0; headers[i].text!=NULL; i++) {
		if(!stricmp(header,headers[i].text)) {
			return(headers[i].id);
		}
	}
	return(-1);
}

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/* Opposite of get_header_type() */
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static char *get_header(int id) 
{
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	int i;
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	if(headers[id].id==id)
		return(headers[id].text);
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	for(i=0;headers[i].text!=NULL;i++) {
		if(headers[i].id==id) {
			return(headers[i].text);
		}
	}
	return(NULL);
}

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static const char* unknown_mime_type="application/octet-stream";

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static const char* get_mime_type(char *ext)
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{
	uint i;

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	if(ext==NULL || mime_types==NULL)
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		return(unknown_mime_type);

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	for(i=0;mime_types[i]!=NULL;i++)
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		if(stricmp(ext+1,mime_types[i]->name)==0)
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			return(mime_types[i]->value);
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	return(unknown_mime_type);
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}

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static BOOL get_cgi_handler(char* cmdline, size_t maxlen)
{
	char	fname[MAX_PATH+1];
	char*	ext;
	size_t	i;

	if(cgi_handlers==NULL || (ext=getfext(cmdline))==NULL)
		return(FALSE);

	for(i=0;cgi_handlers[i]!=NULL;i++) {
		if(stricmp(cgi_handlers[i]->name, ext+1)==0) {
			SAFECOPY(fname,cmdline);
			safe_snprintf(cmdline,maxlen,"%s %s",cgi_handlers[i]->value,fname);
			return(TRUE);
		}
	}
	return(FALSE);
}

static BOOL get_xjs_handler(char* ext, http_session_t* session)
{
	size_t	i;

	if(ext==NULL || xjs_handlers==NULL)
		return(FALSE);

	for(i=0;xjs_handlers[i]!=NULL;i++) {
		if(stricmp(xjs_handlers[i]->name, ext+1)==0) {
			if(getfname(xjs_handlers[i]->value)==xjs_handlers[i]->value)	/* no path specified */
				SAFEPRINTF2(session->req.xjs_handler,"%s%s",scfg.exec_dir,xjs_handlers[i]->value);
			else
				SAFECOPY(session->req.xjs_handler,xjs_handlers[i]->value);
			return(TRUE);
		}
	}
	return(FALSE);
}

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/* This function appends append plus a newline IF the final dst string would have a length less than maxlen */
static void safecat(char *dst, const char *append, size_t maxlen) {
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	size_t dstlen,appendlen;
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	dstlen=strlen(dst);
	appendlen=strlen(append);
	if(dstlen+appendlen+2 < maxlen) {
		strcat(dst,append);
		strcat(dst,newline);
	}
}

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/*************************************************/
/* Sends headers for the reply.					 */
/* HTTP/0.9 doesn't use headers, so just returns */
/*************************************************/
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static BOOL send_headers(http_session_t *session, const char *status)
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{
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	int		ret;
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	BOOL	send_file=TRUE;
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	time_t	ti;
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	size_t	idx;
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	const char	*status_line;
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	struct stat	stats;
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	struct tm	tm;
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	char	*headers;
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	char	header[MAX_REQUEST_LINE+1];
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	if(session->socket==INVALID_SOCKET)
		return(FALSE);
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	lprintf(LOG_DEBUG,"%04d Request resolved to: %s"
		,session->socket,session->req.physical_path);
	if(session->http_ver <= HTTP_0_9) {
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		if(session->req.ld != NULL)
			session->req.ld->status=atoi(status);
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		return(TRUE);
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	}
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	status_line=status;
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	ret=stat(session->req.physical_path,&stats);
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	if(session->req.method==HTTP_OPTIONS)
		ret=-1;
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	if(!ret && session->req.if_modified_since && (stats.st_mtime <= session->req.if_modified_since) && !session->req.dynamic) {
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		status_line="304 Not Modified";
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		ret=-1;
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		send_file=FALSE;
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	}
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	if(session->req.send_location==MOVED_PERM)  {
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		status_line=error_301;
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		ret=-1;
		send_file=FALSE;
	}
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	if(session->req.send_location==MOVED_TEMP)  {
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		status_line=error_302;
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		ret=-1;
		send_file=FALSE;
	}
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	if(session->req.ld!=NULL)
		session->req.ld->status=atoi(status_line);

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	headers=malloc(MAX_HEADERS_SIZE);
	if(headers==NULL)  {
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		lprintf(LOG_CRIT,"Could not allocate memory for response headers.");
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		return(FALSE);
	}
	*headers=0;
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	/* Status-Line */
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	safe_snprintf(header,sizeof(header),"%s %s",http_vers[session->http_ver],status_line);
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	lprintf(LOG_DEBUG,"%04d Result: %s",session->socket,header);

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	safecat(headers,header,MAX_HEADERS_SIZE);
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	/* General Headers */
	ti=time(NULL);
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	if(gmtime_r(&ti,&tm)==NULL)
		memset(&tm,0,sizeof(tm));
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	safe_snprintf(header,sizeof(header),"%s: %s, %02d %s %04d %02d:%02d:%02d GMT"
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		,get_header(HEAD_DATE)
		,days[tm.tm_wday],tm.tm_mday,months[tm.tm_mon]
		,tm.tm_year+1900,tm.tm_hour,tm.tm_min,tm.tm_sec);
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	safecat(headers,header,MAX_HEADERS_SIZE);
	if(session->req.keep_alive) {
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		safe_snprintf(header,sizeof(header),"%s: %s",get_header(HEAD_CONNECTION),"Keep-Alive");
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		safecat(headers,header,MAX_HEADERS_SIZE);
	}
	else {
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		safe_snprintf(header,sizeof(header),"%s: %s",get_header(HEAD_CONNECTION),"Close");
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		safecat(headers,header,MAX_HEADERS_SIZE);
	}
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	/* Response Headers */
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	safe_snprintf(header,sizeof(header),"%s: %s",get_header(HEAD_SERVER),VERSION_NOTICE);
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	safecat(headers,header,MAX_HEADERS_SIZE);
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	/* Entity Headers */
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	if(session->req.dynamic) {
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		safe_snprintf(header,sizeof(header),"%s: %s",get_header(HEAD_ALLOW),"GET, HEAD, POST, OPTIONS");
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		safecat(headers,header,MAX_HEADERS_SIZE);
	}
	else {
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		safe_snprintf(header,sizeof(header),"%s: %s",get_header(HEAD_ALLOW),"GET, HEAD, OPTIONS");
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		safecat(headers,header,MAX_HEADERS_SIZE);
	}
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	if(session->req.send_location) {
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		safe_snprintf(header,sizeof(header),"%s: %s",get_header(HEAD_LOCATION),(session->req.virtual_path));
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		safecat(headers,header,MAX_HEADERS_SIZE);
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	}
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	if(session->req.keep_alive) {
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		if(ret)  {
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			safe_snprintf(header,sizeof(header),"%s: %s",get_header(HEAD_LENGTH),"0");
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			safecat(headers,header,MAX_HEADERS_SIZE);
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		}
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		else  {
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			safe_snprintf(header,sizeof(header),"%s: %d",get_header(HEAD_LENGTH),(int)stats.st_size);
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			safecat(headers,header,MAX_HEADERS_SIZE);
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		}
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	}
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	if(!ret && !session->req.dynamic)  {
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		safe_snprintf(header,sizeof(header),"%s: %s",get_header(HEAD_TYPE),session->req.mime_type);
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		safecat(headers,header,MAX_HEADERS_SIZE);
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		gmtime_r(&stats.st_mtime,&tm);
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		safe_snprintf(header,sizeof(header),"%s: %s, %02d %s %04d %02d:%02d:%02d GMT"
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			,get_header(HEAD_LASTMODIFIED)
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			,days[tm.tm_wday],tm.tm_mday,months[tm.tm_mon]
			,tm.tm_year+1900,tm.tm_hour,tm.tm_min,tm.tm_sec);
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		safecat(headers,header,MAX_HEADERS_SIZE);
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	} 
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	if(session->req.dynamic)  {
		/* Dynamic headers */
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		/* Set up environment */
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		for(idx=0;session->req.dynamic_heads[idx]!=NULL;idx++)
			safecat(headers,session->req.dynamic_heads[idx],MAX_HEADERS_SIZE);
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	}
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	safecat(headers,"",MAX_HEADERS_SIZE);
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	send_file = (sockprint(session->socket,headers) && send_file);
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	FREE_AND_NULL(headers);
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	return(send_file);
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}

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static int sock_sendfile(SOCKET socket,char *path)
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{
	int		file;
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	long	offset=0;
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	int		ret=0;
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	if(startup->options&WEB_OPT_DEBUG_TX)
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		lprintf(LOG_DEBUG,"%04d Sending %s",socket,path);
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	if((file=open(path,O_RDONLY|O_BINARY))==-1)
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		lprintf(LOG_WARNING,"%04d !ERROR %d opening %s",socket,errno,path);
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	else {
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		if((ret=sendfilesocket(socket, file, &offset, 0)) < 0) {
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			lprintf(LOG_DEBUG,"%04d !ERROR %d sending %s"
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				, socket, errno, path);
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			ret=0;
		}
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		close(file);
	}
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	return(ret);
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}

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/********************************************************/
/* Sends a specified error message, closes the request, */
/* and marks the session to be closed 					*/
/********************************************************/
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static void send_error(http_session_t * session, const char* message)
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{
	char	error_code[4];
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	struct stat	sb;
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	char	sbuf[1024];
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	BOOL	sent_ssjs=FALSE;
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	if(session->socket==INVALID_SOCKET)
		return;
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	session->req.if_modified_since=0;
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	lprintf(LOG_INFO,"%04d !ERROR: %s",session->socket,message);
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	session->req.keep_alive=FALSE;
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	session->req.send_location=NO_LOCATION;
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	SAFECOPY(error_code,message);
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	SAFECOPY(session->req.status,message);
	if(atoi(error_code)<500) {
		/*
		 * Attempt to run SSJS error pages
		 * If this fails, do the standard error page instead,
		 * ie: Don't "upgrade" to a 500 error
		 */

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		sprintf(sbuf,"%s%s%s",error_dir,error_code,startup->ssjs_ext);
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		if(!stat(sbuf,&sb)) {
			lprintf(LOG_INFO,"%04d Using SSJS error page",session->socket);
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			session->req.dynamic=IS_SSJS;
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			if(js_setup(session)) {
				sent_ssjs=exec_ssjs(session,sbuf);
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				if(sent_ssjs) {
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					int	snt=0;

					lprintf(LOG_INFO,"%04d Sending generated error page",session->socket);
					snt=sock_sendfile(session->socket,session->req.physical_path);
					if(snt<0)
						snt=0;
					if(session->req.ld!=NULL)
						session->req.ld->size=snt;
				}
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				else
					 session->req.dynamic=IS_STATIC;
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			}
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			else
				session->req.dynamic=IS_STATIC;
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		}
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	}
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	if(!sent_ssjs) {
		sprintf(session->req.physical_path,"%s%s.html",error_dir,error_code);
		session->req.mime_type=get_mime_type(strrchr(session->req.physical_path,'.'));
		send_headers(session,