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ntpq.c revision 1.16.2.2
      1  1.16.2.2  pgoyette /*	$NetBSD: ntpq.c,v 1.16.2.2 2017/04/26 02:52:44 pgoyette Exp $	*/
      2       1.1    kardel 
      3       1.1    kardel /*
      4       1.1    kardel  * ntpq - query an NTP server using mode 6 commands
      5       1.1    kardel  */
      6       1.9  christos #include <config.h>
      7       1.1    kardel #include <stdio.h>
      8       1.1    kardel #include <ctype.h>
      9       1.1    kardel #include <signal.h>
     10       1.1    kardel #include <setjmp.h>
     11       1.1    kardel #include <sys/types.h>
     12       1.1    kardel #include <sys/time.h>
     13       1.9  christos #ifdef HAVE_UNISTD_H
     14       1.9  christos # include <unistd.h>
     15       1.9  christos #endif
     16       1.9  christos #ifdef HAVE_FCNTL_H
     17       1.9  christos # include <fcntl.h>
     18       1.9  christos #endif
     19       1.9  christos #ifdef SYS_WINNT
     20       1.9  christos # include <mswsock.h>
     21       1.9  christos #endif
     22       1.9  christos #include <isc/net.h>
     23       1.9  christos #include <isc/result.h>
     24       1.1    kardel 
     25       1.1    kardel #include "ntpq.h"
     26      1.12  christos #include "ntp_assert.h"
     27       1.9  christos #include "ntp_stdlib.h"
     28       1.1    kardel #include "ntp_unixtime.h"
     29       1.1    kardel #include "ntp_calendar.h"
     30       1.1    kardel #include "ntp_select.h"
     31       1.1    kardel #include "ntp_assert.h"
     32       1.9  christos #include "lib_strbuf.h"
     33       1.1    kardel #include "ntp_lineedit.h"
     34       1.1    kardel #include "ntp_debug.h"
     35       1.9  christos #ifdef OPENSSL
     36       1.9  christos #include "openssl/evp.h"
     37       1.9  christos #include "openssl/objects.h"
     38      1.12  christos #include "openssl/err.h"
     39  1.16.2.1  pgoyette #include "libssl_compat.h"
     40       1.9  christos #endif
     41       1.1    kardel #include <ssl_applink.c>
     42       1.1    kardel 
     43       1.4    kardel #include "ntp_libopts.h"
     44      1.14  christos #include "safecast.h"
     45       1.1    kardel 
     46       1.9  christos #ifdef SYS_VXWORKS		/* vxWorks needs mode flag -casey*/
     47       1.1    kardel # define open(name, flags)   open(name, flags, 0777)
     48       1.1    kardel # define SERVER_PORT_NUM     123
     49       1.1    kardel #endif
     50       1.1    kardel 
     51       1.1    kardel /* we use COMMAND as an autogen keyword */
     52       1.1    kardel #ifdef COMMAND
     53       1.1    kardel # undef COMMAND
     54       1.1    kardel #endif
     55       1.1    kardel 
     56       1.1    kardel /*
     57       1.1    kardel  * Because we potentially understand a lot of commands we will run
     58       1.1    kardel  * interactive if connected to a terminal.
     59       1.1    kardel  */
     60       1.1    kardel int interactive = 0;		/* set to 1 when we should prompt */
     61       1.1    kardel const char *prompt = "ntpq> ";	/* prompt to ask him about */
     62       1.1    kardel 
     63       1.1    kardel /*
     64       1.1    kardel  * use old readvars behavior?  --old-rv processing in ntpq resets
     65       1.1    kardel  * this value based on the presence or absence of --old-rv.  It is
     66       1.1    kardel  * initialized to 1 here to maintain backward compatibility with
     67       1.1    kardel  * libntpq clients such as ntpsnmpd, which are free to reset it as
     68       1.1    kardel  * desired.
     69       1.1    kardel  */
     70       1.1    kardel int	old_rv = 1;
     71       1.1    kardel 
     72      1.15  christos /*
     73      1.15  christos  * How should we display the refid?
     74      1.15  christos  * REFID_HASH, REFID_IPV4
     75      1.15  christos  */
     76      1.15  christos te_Refid drefid = -1;
     77       1.1    kardel 
     78       1.1    kardel /*
     79       1.1    kardel  * for get_systime()
     80       1.1    kardel  */
     81       1.1    kardel s_char	sys_precision;		/* local clock precision (log2 s) */
     82       1.1    kardel 
     83       1.1    kardel /*
     84       1.1    kardel  * Keyid used for authenticated requests.  Obtained on the fly.
     85       1.1    kardel  */
     86       1.1    kardel u_long info_auth_keyid = 0;
     87       1.1    kardel 
     88       1.1    kardel static	int	info_auth_keytype = NID_md5;	/* MD5 */
     89       1.1    kardel static	size_t	info_auth_hashlen = 16;		/* MD5 */
     90       1.1    kardel u_long	current_time;		/* needed by authkeys; not used */
     91       1.1    kardel 
     92       1.1    kardel /*
     93       1.1    kardel  * Flag which indicates we should always send authenticated requests
     94       1.1    kardel  */
     95       1.1    kardel int always_auth = 0;
     96       1.1    kardel 
     97       1.1    kardel /*
     98       1.1    kardel  * Flag which indicates raw mode output.
     99       1.1    kardel  */
    100       1.1    kardel int rawmode = 0;
    101       1.1    kardel 
    102       1.1    kardel /*
    103       1.1    kardel  * Packet version number we use
    104       1.1    kardel  */
    105       1.1    kardel u_char pktversion = NTP_OLDVERSION + 1;
    106       1.1    kardel 
    107       1.1    kardel /*
    108       1.1    kardel  * Don't jump if no set jmp.
    109       1.1    kardel  */
    110       1.1    kardel volatile int jump = 0;
    111       1.1    kardel 
    112       1.1    kardel /*
    113       1.1    kardel  * Format values
    114       1.1    kardel  */
    115       1.1    kardel #define	PADDING	0
    116       1.9  christos #define	HA	1	/* host address */
    117       1.9  christos #define	NA	2	/* network address */
    118       1.9  christos #define	LP	3	/* leap (print in binary) */
    119       1.9  christos #define	RF	4	/* refid (sometimes string, sometimes not) */
    120       1.9  christos #define	AR	5	/* array of times */
    121       1.9  christos #define FX	6	/* test flags */
    122       1.9  christos #define TS	7	/* l_fp timestamp in hex */
    123       1.9  christos #define	OC	8	/* integer, print in octal */
    124       1.1    kardel #define	EOV	255	/* end of table */
    125       1.1    kardel 
    126       1.1    kardel /*
    127       1.9  christos  * For the most part ntpq simply displays what ntpd provides in the
    128       1.9  christos  * mostly plain-text mode 6 responses.  A few variable names are by
    129       1.9  christos  * default "cooked" to provide more human-friendly output.
    130       1.9  christos  */
    131       1.9  christos const var_format cookedvars[] = {
    132       1.9  christos 	{ "leap",		LP },
    133       1.9  christos 	{ "reach",		OC },
    134       1.9  christos 	{ "refid",		RF },
    135       1.9  christos 	{ "reftime",		TS },
    136       1.9  christos 	{ "clock",		TS },
    137       1.9  christos 	{ "org",		TS },
    138       1.9  christos 	{ "rec",		TS },
    139       1.9  christos 	{ "xmt",		TS },
    140       1.9  christos 	{ "flash",		FX },
    141       1.9  christos 	{ "srcadr",		HA },
    142       1.9  christos 	{ "peeradr",		HA },	/* compat with others */
    143       1.9  christos 	{ "dstadr",		NA },
    144       1.9  christos 	{ "filtdelay",		AR },
    145       1.9  christos 	{ "filtoffset",		AR },
    146       1.9  christos 	{ "filtdisp",		AR },
    147       1.9  christos 	{ "filterror",		AR },	/* compat with others */
    148       1.1    kardel };
    149       1.1    kardel 
    150       1.1    kardel 
    151       1.1    kardel 
    152       1.1    kardel /*
    153       1.1    kardel  * flasher bits
    154       1.1    kardel  */
    155       1.1    kardel static const char *tstflagnames[] = {
    156       1.1    kardel 	"pkt_dup",		/* TEST1 */
    157       1.1    kardel 	"pkt_bogus",		/* TEST2 */
    158       1.1    kardel 	"pkt_unsync",		/* TEST3 */
    159       1.1    kardel 	"pkt_denied",		/* TEST4 */
    160       1.1    kardel 	"pkt_auth",		/* TEST5 */
    161       1.1    kardel 	"pkt_stratum",		/* TEST6 */
    162       1.1    kardel 	"pkt_header",		/* TEST7 */
    163       1.1    kardel 	"pkt_autokey",		/* TEST8 */
    164       1.1    kardel 	"pkt_crypto",		/* TEST9 */
    165       1.1    kardel 	"peer_stratum",		/* TEST10 */
    166       1.1    kardel 	"peer_dist",		/* TEST11 */
    167       1.1    kardel 	"peer_loop",		/* TEST12 */
    168       1.1    kardel 	"peer_unreach"		/* TEST13 */
    169       1.1    kardel };
    170       1.1    kardel 
    171       1.1    kardel 
    172       1.1    kardel int		ntpqmain	(int,	char **);
    173       1.1    kardel /*
    174       1.1    kardel  * Built in command handler declarations
    175       1.1    kardel  */
    176       1.9  christos static	int	openhost	(const char *, int);
    177       1.9  christos static	void	dump_hex_printable(const void *, size_t);
    178       1.1    kardel static	int	sendpkt		(void *, size_t);
    179      1.14  christos static	int	getresponse	(int, int, u_short *, size_t *, const char **, int);
    180      1.14  christos static	int	sendrequest	(int, associd_t, int, size_t, const char *);
    181       1.1    kardel static	char *	tstflags	(u_long);
    182       1.1    kardel #ifndef BUILD_AS_LIB
    183       1.1    kardel static	void	getcmds		(void);
    184       1.1    kardel #ifndef SYS_WINNT
    185      1.14  christos static	int	abortcmd	(void);
    186       1.1    kardel #endif	/* SYS_WINNT */
    187       1.1    kardel static	void	docmd		(const char *);
    188       1.1    kardel static	void	tokenize	(const char *, char **, int *);
    189       1.9  christos static	int	getarg		(const char *, int, arg_v *);
    190       1.1    kardel #endif	/* BUILD_AS_LIB */
    191       1.9  christos static	int	findcmd		(const char *, struct xcmd *,
    192       1.9  christos 				 struct xcmd *, struct xcmd **);
    193       1.1    kardel static	int	rtdatetolfp	(char *, l_fp *);
    194       1.1    kardel static	int	decodearr	(char *, int *, l_fp *);
    195       1.1    kardel static	void	help		(struct parse *, FILE *);
    196       1.1    kardel static	int	helpsort	(const void *, const void *);
    197       1.1    kardel static	void	printusage	(struct xcmd *, FILE *);
    198       1.1    kardel static	void	timeout		(struct parse *, FILE *);
    199       1.1    kardel static	void	auth_delay	(struct parse *, FILE *);
    200       1.1    kardel static	void	host		(struct parse *, FILE *);
    201       1.1    kardel static	void	ntp_poll	(struct parse *, FILE *);
    202       1.1    kardel static	void	keyid		(struct parse *, FILE *);
    203       1.1    kardel static	void	keytype		(struct parse *, FILE *);
    204       1.1    kardel static	void	passwd		(struct parse *, FILE *);
    205       1.1    kardel static	void	hostnames	(struct parse *, FILE *);
    206       1.1    kardel static	void	setdebug	(struct parse *, FILE *);
    207       1.1    kardel static	void	quit		(struct parse *, FILE *);
    208      1.15  christos static	void	showdrefid	(struct parse *, FILE *);
    209       1.1    kardel static	void	version		(struct parse *, FILE *);
    210       1.1    kardel static	void	raw		(struct parse *, FILE *);
    211       1.1    kardel static	void	cooked		(struct parse *, FILE *);
    212       1.1    kardel static	void	authenticate	(struct parse *, FILE *);
    213       1.1    kardel static	void	ntpversion	(struct parse *, FILE *);
    214       1.3  christos static	void	warning		(const char *, ...)
    215       1.3  christos     __attribute__((__format__(__printf__, 1, 2)));
    216       1.3  christos static	void	error		(const char *, ...)
    217       1.3  christos     __attribute__((__format__(__printf__, 1, 2)));
    218       1.1    kardel static	u_long	getkeyid	(const char *);
    219       1.1    kardel static	void	atoascii	(const char *, size_t, char *, size_t);
    220      1.14  christos static	void	cookedprint	(int, size_t, const char *, int, int, FILE *);
    221      1.14  christos static	void	rawprint	(int, size_t, const char *, int, int, FILE *);
    222       1.1    kardel static	void	startoutput	(void);
    223       1.9  christos static	void	output		(FILE *, const char *, const char *);
    224       1.1    kardel static	void	endoutput	(FILE *);
    225       1.1    kardel static	void	outputarr	(FILE *, char *, int, l_fp *);
    226       1.1    kardel static	int	assoccmp	(const void *, const void *);
    227      1.14  christos static	void	on_ctrlc	(void);
    228       1.9  christos 	u_short	varfmt		(const char *);
    229      1.15  christos static	int	my_easprintf	(char**, const char *, ...) NTP_PRINTF(2, 3);
    230       1.1    kardel void	ntpq_custom_opt_handler	(tOptions *, tOptDesc *);
    231       1.1    kardel 
    232      1.12  christos #ifdef OPENSSL
    233      1.12  christos # ifdef HAVE_EVP_MD_DO_ALL_SORTED
    234      1.12  christos static void list_md_fn(const EVP_MD *m, const char *from,
    235      1.12  christos 		       const char *to, void *arg );
    236      1.12  christos # endif
    237      1.12  christos #endif
    238      1.12  christos static char *list_digest_names(void);
    239       1.1    kardel 
    240       1.1    kardel /*
    241       1.1    kardel  * Built-in commands we understand
    242       1.1    kardel  */
    243       1.1    kardel struct xcmd builtins[] = {
    244       1.1    kardel 	{ "?",		help,		{  OPT|NTP_STR, NO, NO, NO },
    245       1.1    kardel 	  { "command", "", "", "" },
    246       1.1    kardel 	  "tell the use and syntax of commands" },
    247       1.1    kardel 	{ "help",	help,		{  OPT|NTP_STR, NO, NO, NO },
    248       1.1    kardel 	  { "command", "", "", "" },
    249       1.1    kardel 	  "tell the use and syntax of commands" },
    250       1.1    kardel 	{ "timeout",	timeout,	{ OPT|NTP_UINT, NO, NO, NO },
    251       1.1    kardel 	  { "msec", "", "", "" },
    252       1.1    kardel 	  "set the primary receive time out" },
    253       1.1    kardel 	{ "delay",	auth_delay,	{ OPT|NTP_INT, NO, NO, NO },
    254       1.1    kardel 	  { "msec", "", "", "" },
    255       1.1    kardel 	  "set the delay added to encryption time stamps" },
    256       1.1    kardel 	{ "host",	host,		{ OPT|NTP_STR, OPT|NTP_STR, NO, NO },
    257       1.1    kardel 	  { "-4|-6", "hostname", "", "" },
    258       1.1    kardel 	  "specify the host whose NTP server we talk to" },
    259       1.1    kardel 	{ "poll",	ntp_poll,	{ OPT|NTP_UINT, OPT|NTP_STR, NO, NO },
    260       1.1    kardel 	  { "n", "verbose", "", "" },
    261       1.1    kardel 	  "poll an NTP server in client mode `n' times" },
    262       1.9  christos 	{ "passwd",	passwd,		{ OPT|NTP_STR, NO, NO, NO },
    263       1.1    kardel 	  { "", "", "", "" },
    264       1.1    kardel 	  "specify a password to use for authenticated requests"},
    265       1.1    kardel 	{ "hostnames",	hostnames,	{ OPT|NTP_STR, NO, NO, NO },
    266       1.1    kardel 	  { "yes|no", "", "", "" },
    267       1.1    kardel 	  "specify whether hostnames or net numbers are printed"},
    268       1.1    kardel 	{ "debug",	setdebug,	{ OPT|NTP_STR, NO, NO, NO },
    269       1.1    kardel 	  { "no|more|less", "", "", "" },
    270       1.1    kardel 	  "set/change debugging level" },
    271       1.1    kardel 	{ "quit",	quit,		{ NO, NO, NO, NO },
    272       1.1    kardel 	  { "", "", "", "" },
    273       1.1    kardel 	  "exit ntpq" },
    274       1.1    kardel 	{ "exit",	quit,		{ NO, NO, NO, NO },
    275       1.1    kardel 	  { "", "", "", "" },
    276       1.1    kardel 	  "exit ntpq" },
    277       1.1    kardel 	{ "keyid",	keyid,		{ OPT|NTP_UINT, NO, NO, NO },
    278       1.1    kardel 	  { "key#", "", "", "" },
    279       1.1    kardel 	  "set keyid to use for authenticated requests" },
    280      1.15  christos 	{ "drefid",	showdrefid,	{ OPT|NTP_STR, NO, NO, NO },
    281      1.15  christos 	  { "hash|ipv4", "", "", "" },
    282      1.15  christos 	  "display refid's as IPv4 or hash" },
    283       1.1    kardel 	{ "version",	version,	{ NO, NO, NO, NO },
    284       1.1    kardel 	  { "", "", "", "" },
    285       1.1    kardel 	  "print version number" },
    286       1.1    kardel 	{ "raw",	raw,		{ NO, NO, NO, NO },
    287       1.1    kardel 	  { "", "", "", "" },
    288       1.1    kardel 	  "do raw mode variable output" },
    289       1.1    kardel 	{ "cooked",	cooked,		{ NO, NO, NO, NO },
    290       1.1    kardel 	  { "", "", "", "" },
    291       1.1    kardel 	  "do cooked mode variable output" },
    292       1.1    kardel 	{ "authenticate", authenticate,	{ OPT|NTP_STR, NO, NO, NO },
    293       1.1    kardel 	  { "yes|no", "", "", "" },
    294       1.1    kardel 	  "always authenticate requests to this server" },
    295       1.1    kardel 	{ "ntpversion",	ntpversion,	{ OPT|NTP_UINT, NO, NO, NO },
    296       1.1    kardel 	  { "version number", "", "", "" },
    297       1.1    kardel 	  "set the NTP version number to use for requests" },
    298       1.1    kardel 	{ "keytype",	keytype,	{ OPT|NTP_STR, NO, NO, NO },
    299      1.12  christos 	  { "key type %s", "", "", "" },
    300      1.12  christos 	  NULL },
    301       1.1    kardel 	{ 0,		0,		{ NO, NO, NO, NO },
    302       1.1    kardel 	  { "", "", "", "" }, "" }
    303       1.1    kardel };
    304       1.1    kardel 
    305       1.1    kardel 
    306       1.1    kardel /*
    307       1.1    kardel  * Default values we use.
    308       1.1    kardel  */
    309       1.1    kardel #define	DEFHOST		"localhost"	/* default host name */
    310       1.9  christos #define	DEFTIMEOUT	5		/* wait 5 seconds for 1st pkt */
    311       1.9  christos #define	DEFSTIMEOUT	3		/* and 3 more for each additional */
    312       1.9  christos /*
    313       1.9  christos  * Requests are automatically retried once, so total timeout with no
    314       1.9  christos  * response is a bit over 2 * DEFTIMEOUT, or 10 seconds.  At the other
    315       1.9  christos  * extreme, a request eliciting 32 packets of responses each for some
    316       1.9  christos  * reason nearly DEFSTIMEOUT seconds after the prior in that series,
    317       1.9  christos  * with a single packet dropped, would take around 32 * DEFSTIMEOUT, or
    318       1.9  christos  * 93 seconds to fail each of two times, or 186 seconds.
    319       1.9  christos  * Some commands involve a series of requests, such as "peers" and
    320       1.9  christos  * "mrulist", so the cumulative timeouts are even longer for those.
    321       1.9  christos  */
    322       1.1    kardel #define	DEFDELAY	0x51EB852	/* 20 milliseconds, l_fp fraction */
    323       1.1    kardel #define	LENHOSTNAME	256		/* host name is 256 characters long */
    324       1.1    kardel #define	MAXCMDS		100		/* maximum commands on cmd line */
    325       1.1    kardel #define	MAXHOSTS	200		/* maximum hosts on cmd line */
    326       1.1    kardel #define	MAXLINE		512		/* maximum line length */
    327       1.1    kardel #define	MAXTOKENS	(1+MAXARGS+2)	/* maximum number of usable tokens */
    328       1.1    kardel #define	MAXVARLEN	256		/* maximum length of a variable name */
    329       1.9  christos #define	MAXVALLEN	2048		/* maximum length of a variable value */
    330       1.1    kardel #define	MAXOUTLINE	72		/* maximum length of an output line */
    331       1.1    kardel #define SCREENWIDTH	76		/* nominal screen width in columns */
    332       1.1    kardel 
    333       1.1    kardel /*
    334       1.1    kardel  * Some variables used and manipulated locally
    335       1.1    kardel  */
    336       1.1    kardel struct sock_timeval tvout = { DEFTIMEOUT, 0 };	/* time out for reads */
    337       1.1    kardel struct sock_timeval tvsout = { DEFSTIMEOUT, 0 };/* secondary time out */
    338       1.1    kardel l_fp delay_time;				/* delay time */
    339       1.1    kardel char currenthost[LENHOSTNAME];			/* current host name */
    340       1.4    kardel int currenthostisnum;				/* is prior text from IP? */
    341       1.5    kardel struct sockaddr_in hostaddr;			/* host address */
    342       1.1    kardel int showhostnames = 1;				/* show host names by default */
    343      1.10  christos int wideremote = 0;				/* show wide remote names? */
    344       1.1    kardel 
    345       1.1    kardel int ai_fam_templ;				/* address family */
    346       1.1    kardel int ai_fam_default;				/* default address family */
    347       1.1    kardel SOCKET sockfd;					/* fd socket is opened on */
    348       1.1    kardel int havehost = 0;				/* set to 1 when host open */
    349       1.1    kardel int s_port = 0;
    350       1.1    kardel struct servent *server_entry = NULL;		/* server entry for ntp */
    351       1.1    kardel 
    352       1.1    kardel 
    353       1.1    kardel /*
    354       1.1    kardel  * Sequence number used for requests.  It is incremented before
    355       1.1    kardel  * it is used.
    356       1.1    kardel  */
    357       1.1    kardel u_short sequence;
    358       1.1    kardel 
    359       1.1    kardel /*
    360       1.1    kardel  * Holds data returned from queries.  Declare buffer long to be sure of
    361       1.1    kardel  * alignment.
    362       1.1    kardel  */
    363       1.1    kardel #define	DATASIZE	(MAXFRAGS*480)	/* maximum amount of data */
    364       1.1    kardel long pktdata[DATASIZE/sizeof(long)];
    365       1.1    kardel 
    366       1.1    kardel /*
    367       1.9  christos  * assoc_cache[] is a dynamic array which allows references to
    368       1.9  christos  * associations using &1 ... &N for n associations, avoiding manual
    369       1.9  christos  * lookup of the current association IDs for a given ntpd.  It also
    370       1.9  christos  * caches the status word for each association, retrieved incidentally.
    371       1.9  christos  */
    372       1.9  christos struct association *	assoc_cache;
    373       1.9  christos u_int assoc_cache_slots;/* count of allocated array entries */
    374       1.9  christos u_int numassoc;		/* number of cached associations */
    375       1.1    kardel 
    376       1.1    kardel /*
    377       1.1    kardel  * For commands typed on the command line (with the -c option)
    378       1.1    kardel  */
    379      1.12  christos size_t numcmds = 0;
    380       1.1    kardel const char *ccmds[MAXCMDS];
    381       1.1    kardel #define	ADDCMD(cp)	if (numcmds < MAXCMDS) ccmds[numcmds++] = (cp)
    382       1.1    kardel 
    383       1.1    kardel /*
    384       1.1    kardel  * When multiple hosts are specified.
    385       1.1    kardel  */
    386       1.1    kardel 
    387       1.9  christos u_int numhosts;
    388       1.9  christos 
    389       1.9  christos chost chosts[MAXHOSTS];
    390       1.9  christos #define	ADDHOST(cp)						\
    391       1.9  christos 	do {							\
    392       1.9  christos 		if (numhosts < MAXHOSTS) {			\
    393       1.9  christos 			chosts[numhosts].name = (cp);		\
    394       1.9  christos 			chosts[numhosts].fam = ai_fam_templ;	\
    395       1.9  christos 			numhosts++;				\
    396       1.9  christos 		}						\
    397       1.9  christos 	} while (0)
    398       1.1    kardel 
    399       1.1    kardel /*
    400       1.1    kardel  * Macro definitions we use
    401       1.1    kardel  */
    402       1.1    kardel #define	ISSPACE(c)	((c) == ' ' || (c) == '\t')
    403       1.1    kardel #define	ISEOL(c)	((c) == '\n' || (c) == '\r' || (c) == '\0')
    404       1.1    kardel #define	STREQ(a, b)	(*(a) == *(b) && strcmp((a), (b)) == 0)
    405       1.1    kardel 
    406       1.1    kardel /*
    407       1.1    kardel  * Jump buffer for longjumping back to the command level
    408       1.1    kardel  */
    409       1.1    kardel jmp_buf interrupt_buf;
    410       1.1    kardel 
    411       1.1    kardel /*
    412       1.1    kardel  * Points at file being currently printed into
    413       1.1    kardel  */
    414       1.1    kardel FILE *current_output;
    415       1.1    kardel 
    416       1.1    kardel /*
    417       1.1    kardel  * Command table imported from ntpdc_ops.c
    418       1.1    kardel  */
    419       1.1    kardel extern struct xcmd opcmds[];
    420       1.1    kardel 
    421      1.13  christos char const *progname;
    422       1.1    kardel 
    423       1.1    kardel #ifdef NO_MAIN_ALLOWED
    424       1.1    kardel #ifndef BUILD_AS_LIB
    425       1.1    kardel CALL(ntpq,"ntpq",ntpqmain);
    426       1.1    kardel 
    427       1.1    kardel void clear_globals(void)
    428       1.1    kardel {
    429       1.1    kardel 	extern int ntp_optind;
    430       1.1    kardel 	showhostnames = 0;	/* don'tshow host names by default */
    431       1.1    kardel 	ntp_optind = 0;
    432       1.1    kardel 	server_entry = NULL;	/* server entry for ntp */
    433       1.1    kardel 	havehost = 0;		/* set to 1 when host open */
    434       1.1    kardel 	numassoc = 0;		/* number of cached associations */
    435       1.1    kardel 	numcmds = 0;
    436       1.1    kardel 	numhosts = 0;
    437       1.1    kardel }
    438       1.1    kardel #endif /* !BUILD_AS_LIB */
    439       1.1    kardel #endif /* NO_MAIN_ALLOWED */
    440       1.1    kardel 
    441       1.1    kardel /*
    442       1.1    kardel  * main - parse arguments and handle options
    443       1.1    kardel  */
    444       1.1    kardel #ifndef NO_MAIN_ALLOWED
    445       1.1    kardel int
    446       1.1    kardel main(
    447       1.1    kardel 	int argc,
    448       1.1    kardel 	char *argv[]
    449       1.1    kardel 	)
    450       1.1    kardel {
    451       1.1    kardel 	return ntpqmain(argc, argv);
    452       1.1    kardel }
    453       1.1    kardel #endif
    454       1.1    kardel 
    455       1.1    kardel #ifndef BUILD_AS_LIB
    456       1.1    kardel int
    457       1.1    kardel ntpqmain(
    458       1.1    kardel 	int argc,
    459       1.1    kardel 	char *argv[]
    460       1.1    kardel 	)
    461       1.1    kardel {
    462       1.9  christos 	u_int ihost;
    463      1.12  christos 	size_t icmd;
    464       1.9  christos 
    465       1.1    kardel 
    466       1.1    kardel #ifdef SYS_VXWORKS
    467       1.1    kardel 	clear_globals();
    468       1.1    kardel 	taskPrioritySet(taskIdSelf(), 100 );
    469       1.1    kardel #endif
    470       1.1    kardel 
    471       1.1    kardel 	delay_time.l_ui = 0;
    472       1.1    kardel 	delay_time.l_uf = DEFDELAY;
    473       1.1    kardel 
    474       1.1    kardel 	init_lib();	/* sets up ipv4_works, ipv6_works */
    475       1.1    kardel 	ssl_applink();
    476       1.9  christos 	init_auth();
    477       1.1    kardel 
    478       1.1    kardel 	/* Check to see if we have IPv6. Otherwise default to IPv4 */
    479       1.1    kardel 	if (!ipv6_works)
    480       1.1    kardel 		ai_fam_default = AF_INET;
    481       1.1    kardel 
    482      1.12  christos 	/* Fixup keytype's help based on available digest names */
    483      1.12  christos 
    484      1.12  christos 	{
    485      1.12  christos 	    char *list;
    486      1.12  christos 	    char *msg;
    487      1.12  christos 
    488      1.12  christos 	    list = list_digest_names();
    489      1.12  christos 	    for (icmd = 0; icmd < sizeof(builtins)/sizeof(builtins[0]); icmd++) {
    490      1.12  christos 		if (strcmp("keytype", builtins[icmd].keyword) == 0)
    491      1.12  christos 		    break;
    492      1.12  christos 	    }
    493      1.12  christos 
    494      1.12  christos 	    /* CID: 1295478 */
    495      1.12  christos 	    /* This should only "trip" if "keytype" is removed from builtins */
    496      1.12  christos 	    INSIST(icmd < sizeof(builtins)/sizeof(builtins[0]));
    497      1.12  christos 
    498      1.12  christos #ifdef OPENSSL
    499      1.12  christos 	    builtins[icmd].desc[0] = "digest-name";
    500      1.15  christos 	    my_easprintf(&msg,
    501      1.15  christos 			 "set key type to use for authenticated requests, one of:%s",
    502      1.15  christos 			 list);
    503      1.12  christos #else
    504      1.12  christos 	    builtins[icmd].desc[0] = "md5";
    505      1.15  christos 	    my_easprintf(&msg,
    506      1.15  christos 			 "set key type to use for authenticated requests (%s)",
    507      1.15  christos 			 list);
    508      1.12  christos #endif
    509      1.12  christos 	    builtins[icmd].comment = msg;
    510      1.12  christos 	    free(list);
    511      1.12  christos 	}
    512      1.12  christos 
    513       1.1    kardel 	progname = argv[0];
    514       1.1    kardel 
    515       1.1    kardel 	{
    516       1.4    kardel 		int optct = ntpOptionProcess(&ntpqOptions, argc, argv);
    517       1.1    kardel 		argc -= optct;
    518       1.1    kardel 		argv += optct;
    519       1.1    kardel 	}
    520       1.1    kardel 
    521       1.1    kardel 	/*
    522       1.1    kardel 	 * Process options other than -c and -p, which are specially
    523       1.1    kardel 	 * handled by ntpq_custom_opt_handler().
    524       1.1    kardel 	 */
    525       1.1    kardel 
    526       1.9  christos 	debug = OPT_VALUE_SET_DEBUG_LEVEL;
    527       1.1    kardel 
    528       1.1    kardel 	if (HAVE_OPT(IPV4))
    529       1.1    kardel 		ai_fam_templ = AF_INET;
    530       1.1    kardel 	else if (HAVE_OPT(IPV6))
    531       1.1    kardel 		ai_fam_templ = AF_INET6;
    532       1.1    kardel 	else
    533       1.1    kardel 		ai_fam_templ = ai_fam_default;
    534       1.1    kardel 
    535       1.1    kardel 	if (HAVE_OPT(INTERACTIVE))
    536       1.1    kardel 		interactive = 1;
    537       1.1    kardel 
    538       1.1    kardel 	if (HAVE_OPT(NUMERIC))
    539       1.1    kardel 		showhostnames = 0;
    540       1.1    kardel 
    541      1.10  christos 	if (HAVE_OPT(WIDE))
    542      1.10  christos 		wideremote = 1;
    543      1.10  christos 
    544       1.1    kardel 	old_rv = HAVE_OPT(OLD_RV);
    545       1.1    kardel 
    546      1.15  christos 	drefid = OPT_VALUE_REFID;
    547      1.15  christos 
    548       1.9  christos 	if (0 == argc) {
    549       1.1    kardel 		ADDHOST(DEFHOST);
    550       1.1    kardel 	} else {
    551       1.9  christos 		for (ihost = 0; ihost < (u_int)argc; ihost++) {
    552       1.9  christos 			if ('-' == *argv[ihost]) {
    553       1.9  christos 				//
    554       1.9  christos 				// If I really cared I'd also check:
    555       1.9  christos 				// 0 == argv[ihost][2]
    556       1.9  christos 				//
    557       1.9  christos 				// and there are other cases as well...
    558       1.9  christos 				//
    559       1.9  christos 				if ('4' == argv[ihost][1]) {
    560       1.9  christos 					ai_fam_templ = AF_INET;
    561       1.9  christos 					continue;
    562       1.9  christos 				} else if ('6' == argv[ihost][1]) {
    563       1.9  christos 					ai_fam_templ = AF_INET6;
    564       1.9  christos 					continue;
    565       1.9  christos 				} else {
    566       1.9  christos 					// XXX Throw a usage error
    567       1.9  christos 				}
    568       1.9  christos 			}
    569       1.9  christos 			ADDHOST(argv[ihost]);
    570       1.9  christos 		}
    571       1.1    kardel 	}
    572       1.1    kardel 
    573       1.1    kardel 	if (numcmds == 0 && interactive == 0
    574       1.1    kardel 	    && isatty(fileno(stdin)) && isatty(fileno(stderr))) {
    575       1.1    kardel 		interactive = 1;
    576       1.1    kardel 	}
    577       1.1    kardel 
    578      1.14  christos 	set_ctrl_c_hook(on_ctrlc);
    579       1.1    kardel #ifndef SYS_WINNT /* Under NT cannot handle SIGINT, WIN32 spawns a handler */
    580       1.1    kardel 	if (interactive)
    581      1.14  christos 		push_ctrl_c_handler(abortcmd);
    582       1.1    kardel #endif /* SYS_WINNT */
    583       1.1    kardel 
    584       1.1    kardel 	if (numcmds == 0) {
    585       1.9  christos 		(void) openhost(chosts[0].name, chosts[0].fam);
    586       1.1    kardel 		getcmds();
    587       1.1    kardel 	} else {
    588       1.1    kardel 		for (ihost = 0; ihost < numhosts; ihost++) {
    589       1.9  christos 			if (openhost(chosts[ihost].name, chosts[ihost].fam))
    590       1.1    kardel 				for (icmd = 0; icmd < numcmds; icmd++)
    591       1.1    kardel 					docmd(ccmds[icmd]);
    592       1.1    kardel 		}
    593       1.1    kardel 	}
    594       1.1    kardel #ifdef SYS_WINNT
    595       1.1    kardel 	WSACleanup();
    596       1.1    kardel #endif /* SYS_WINNT */
    597       1.1    kardel 	return 0;
    598       1.1    kardel }
    599       1.1    kardel #endif /* !BUILD_AS_LIB */
    600       1.1    kardel 
    601       1.1    kardel /*
    602       1.1    kardel  * openhost - open a socket to a host
    603       1.1    kardel  */
    604       1.1    kardel static	int
    605       1.1    kardel openhost(
    606       1.9  christos 	const char *hname,
    607       1.9  christos 	int	    fam
    608       1.1    kardel 	)
    609       1.1    kardel {
    610       1.9  christos 	const char svc[] = "ntp";
    611       1.1    kardel 	char temphost[LENHOSTNAME];
    612       1.1    kardel 	int a_info, i;
    613       1.9  christos 	struct addrinfo hints, *ai;
    614       1.9  christos 	sockaddr_u addr;
    615       1.9  christos 	size_t octets;
    616       1.1    kardel 	register const char *cp;
    617       1.1    kardel 	char name[LENHOSTNAME];
    618       1.1    kardel 
    619       1.1    kardel 	/*
    620       1.1    kardel 	 * We need to get by the [] if they were entered
    621       1.1    kardel 	 */
    622       1.9  christos 
    623       1.1    kardel 	cp = hname;
    624       1.9  christos 
    625       1.1    kardel 	if (*cp == '[') {
    626       1.1    kardel 		cp++;
    627       1.1    kardel 		for (i = 0; *cp && *cp != ']'; cp++, i++)
    628       1.1    kardel 			name[i] = *cp;
    629       1.1    kardel 		if (*cp == ']') {
    630       1.1    kardel 			name[i] = '\0';
    631       1.1    kardel 			hname = name;
    632       1.1    kardel 		} else {
    633       1.1    kardel 			return 0;
    634       1.1    kardel 		}
    635       1.1    kardel 	}
    636       1.1    kardel 
    637       1.1    kardel 	/*
    638       1.1    kardel 	 * First try to resolve it as an ip address and if that fails,
    639       1.1    kardel 	 * do a fullblown (dns) lookup. That way we only use the dns
    640       1.1    kardel 	 * when it is needed and work around some implementations that
    641       1.1    kardel 	 * will return an "IPv4-mapped IPv6 address" address if you
    642       1.1    kardel 	 * give it an IPv4 address to lookup.
    643       1.1    kardel 	 */
    644       1.4    kardel 	ZERO(hints);
    645       1.9  christos 	hints.ai_family = fam;
    646       1.1    kardel 	hints.ai_protocol = IPPROTO_UDP;
    647       1.1    kardel 	hints.ai_socktype = SOCK_DGRAM;
    648       1.4    kardel 	hints.ai_flags = Z_AI_NUMERICHOST;
    649       1.9  christos 	ai = NULL;
    650       1.1    kardel 
    651       1.9  christos 	a_info = getaddrinfo(hname, svc, &hints, &ai);
    652       1.1    kardel 	if (a_info == EAI_NONAME
    653       1.1    kardel #ifdef EAI_NODATA
    654       1.1    kardel 	    || a_info == EAI_NODATA
    655       1.1    kardel #endif
    656       1.1    kardel 	   ) {
    657       1.1    kardel 		hints.ai_flags = AI_CANONNAME;
    658       1.1    kardel #ifdef AI_ADDRCONFIG
    659       1.1    kardel 		hints.ai_flags |= AI_ADDRCONFIG;
    660       1.1    kardel #endif
    661       1.9  christos 		a_info = getaddrinfo(hname, svc, &hints, &ai);
    662       1.1    kardel 	}
    663       1.1    kardel #ifdef AI_ADDRCONFIG
    664       1.1    kardel 	/* Some older implementations don't like AI_ADDRCONFIG. */
    665       1.1    kardel 	if (a_info == EAI_BADFLAGS) {
    666       1.9  christos 		hints.ai_flags &= ~AI_ADDRCONFIG;
    667       1.9  christos 		a_info = getaddrinfo(hname, svc, &hints, &ai);
    668       1.1    kardel 	}
    669       1.1    kardel #endif
    670       1.1    kardel 	if (a_info != 0) {
    671       1.9  christos 		fprintf(stderr, "%s\n", gai_strerror(a_info));
    672       1.1    kardel 		return 0;
    673       1.1    kardel 	}
    674       1.1    kardel 
    675       1.9  christos 	INSIST(ai != NULL);
    676       1.9  christos 	ZERO(addr);
    677       1.9  christos 	octets = min(sizeof(addr), ai->ai_addrlen);
    678       1.9  christos 	memcpy(&addr, ai->ai_addr, octets);
    679       1.9  christos 
    680       1.9  christos 	if (ai->ai_canonname == NULL) {
    681       1.9  christos 		strlcpy(temphost, stoa(&addr), sizeof(temphost));
    682       1.4    kardel 		currenthostisnum = TRUE;
    683       1.1    kardel 	} else {
    684       1.9  christos 		strlcpy(temphost, ai->ai_canonname, sizeof(temphost));
    685       1.4    kardel 		currenthostisnum = FALSE;
    686       1.1    kardel 	}
    687       1.1    kardel 
    688       1.1    kardel 	if (debug > 2)
    689       1.9  christos 		printf("Opening host %s (%s)\n",
    690       1.9  christos 			temphost,
    691       1.9  christos 			(ai->ai_family == AF_INET)
    692       1.9  christos 			? "AF_INET"
    693       1.9  christos 			: (ai->ai_family == AF_INET6)
    694       1.9  christos 			  ? "AF_INET6"
    695       1.9  christos 			  : "AF-???"
    696       1.9  christos 			);
    697       1.1    kardel 
    698       1.1    kardel 	if (havehost == 1) {
    699       1.1    kardel 		if (debug > 2)
    700       1.1    kardel 			printf("Closing old host %s\n", currenthost);
    701       1.9  christos 		closesocket(sockfd);
    702       1.1    kardel 		havehost = 0;
    703       1.1    kardel 	}
    704       1.9  christos 	strlcpy(currenthost, temphost, sizeof(currenthost));
    705       1.1    kardel 
    706       1.1    kardel 	/* port maps to the same location in both families */
    707       1.9  christos 	s_port = NSRCPORT(&addr);
    708       1.1    kardel #ifdef SYS_VXWORKS
    709       1.1    kardel 	((struct sockaddr_in6 *)&hostaddr)->sin6_port = htons(SERVER_PORT_NUM);
    710       1.1    kardel 	if (ai->ai_family == AF_INET)
    711       1.1    kardel 		*(struct sockaddr_in *)&hostaddr=
    712       1.1    kardel 			*((struct sockaddr_in *)ai->ai_addr);
    713       1.1    kardel 	else
    714       1.1    kardel 		*(struct sockaddr_in6 *)&hostaddr=
    715       1.1    kardel 			*((struct sockaddr_in6 *)ai->ai_addr);
    716       1.1    kardel #endif /* SYS_VXWORKS */
    717       1.1    kardel 
    718       1.1    kardel #ifdef SYS_WINNT
    719       1.1    kardel 	{
    720       1.1    kardel 		int optionValue = SO_SYNCHRONOUS_NONALERT;
    721       1.1    kardel 		int err;
    722       1.1    kardel 
    723       1.1    kardel 		err = setsockopt(INVALID_SOCKET, SOL_SOCKET, SO_OPENTYPE,
    724       1.1    kardel 				 (char *)&optionValue, sizeof(optionValue));
    725       1.1    kardel 		if (err) {
    726       1.9  christos 			mfprintf(stderr,
    727       1.9  christos 				 "setsockopt(SO_SYNCHRONOUS_NONALERT)"
    728       1.9  christos 				 " error: %m\n");
    729       1.9  christos 			freeaddrinfo(ai);
    730       1.1    kardel 			exit(1);
    731       1.1    kardel 		}
    732       1.1    kardel 	}
    733       1.1    kardel #endif /* SYS_WINNT */
    734       1.1    kardel 
    735       1.9  christos 	sockfd = socket(ai->ai_family, ai->ai_socktype,
    736       1.9  christos 			ai->ai_protocol);
    737       1.1    kardel 	if (sockfd == INVALID_SOCKET) {
    738       1.3  christos 		error("socket");
    739       1.9  christos 		freeaddrinfo(ai);
    740       1.9  christos 		return 0;
    741       1.1    kardel 	}
    742       1.1    kardel 
    743       1.9  christos 
    744       1.1    kardel #ifdef NEED_RCVBUF_SLOP
    745       1.1    kardel # ifdef SO_RCVBUF
    746       1.1    kardel 	{ int rbufsize = DATASIZE + 2048;	/* 2K for slop */
    747       1.1    kardel 	if (setsockopt(sockfd, SOL_SOCKET, SO_RCVBUF,
    748       1.1    kardel 		       &rbufsize, sizeof(int)) == -1)
    749       1.9  christos 		error("setsockopt");
    750       1.1    kardel 	}
    751       1.1    kardel # endif
    752       1.1    kardel #endif
    753       1.1    kardel 
    754       1.9  christos 	if
    755       1.1    kardel #ifdef SYS_VXWORKS
    756       1.9  christos 	   (connect(sockfd, (struct sockaddr *)&hostaddr,
    757       1.1    kardel 		    sizeof(hostaddr)) == -1)
    758       1.1    kardel #else
    759       1.9  christos 	   (connect(sockfd, (struct sockaddr *)ai->ai_addr,
    760      1.14  christos 		ai->ai_addrlen) == -1)
    761       1.1    kardel #endif /* SYS_VXWORKS */
    762      1.14  christos 	{
    763       1.9  christos 		error("connect");
    764       1.1    kardel 		freeaddrinfo(ai);
    765       1.9  christos 		return 0;
    766       1.9  christos 	}
    767       1.9  christos 	freeaddrinfo(ai);
    768       1.1    kardel 	havehost = 1;
    769       1.9  christos 	numassoc = 0;
    770       1.9  christos 
    771       1.1    kardel 	return 1;
    772       1.1    kardel }
    773       1.1    kardel 
    774       1.1    kardel 
    775       1.9  christos static void
    776       1.9  christos dump_hex_printable(
    777       1.9  christos 	const void *	data,
    778       1.9  christos 	size_t		len
    779       1.9  christos 	)
    780       1.9  christos {
    781  1.16.2.2  pgoyette 	/* every line shows at most 16 bytes, so we need a buffer of
    782  1.16.2.2  pgoyette 	 *   4 * 16 (2 xdigits, 1 char, one sep for xdigits)
    783  1.16.2.2  pgoyette 	 * + 2 * 1  (block separators)
    784  1.16.2.2  pgoyette 	 * + <LF> + <NUL>
    785  1.16.2.2  pgoyette 	 *---------------
    786  1.16.2.2  pgoyette 	 *  68 bytes
    787  1.16.2.2  pgoyette 	 */
    788  1.16.2.2  pgoyette 	static const char s_xdig[16] = "0123456789ABCDEF";
    789  1.16.2.2  pgoyette 
    790  1.16.2.2  pgoyette 	char lbuf[68];
    791  1.16.2.2  pgoyette 	int  ch, rowlen;
    792  1.16.2.2  pgoyette 	const u_char * cdata = data;
    793  1.16.2.2  pgoyette 	char *xptr, *pptr;
    794  1.16.2.2  pgoyette 
    795  1.16.2.2  pgoyette 	while (len) {
    796  1.16.2.2  pgoyette 		memset(lbuf, ' ', sizeof(lbuf));
    797  1.16.2.2  pgoyette 		xptr = lbuf;
    798  1.16.2.2  pgoyette 		pptr = lbuf + 3*16 + 2;
    799  1.16.2.2  pgoyette 
    800  1.16.2.2  pgoyette 		rowlen = (len > 16) ? 16 : (int)len;
    801       1.9  christos 		len -= rowlen;
    802  1.16.2.2  pgoyette 
    803  1.16.2.2  pgoyette 		do {
    804  1.16.2.2  pgoyette 			ch = *cdata++;
    805  1.16.2.2  pgoyette 
    806  1.16.2.2  pgoyette 			*xptr++ = s_xdig[ch >> 4  ];
    807  1.16.2.2  pgoyette 			*xptr++ = s_xdig[ch & 0x0F];
    808  1.16.2.2  pgoyette 			if (++xptr == lbuf + 3*8)
    809  1.16.2.2  pgoyette 				++xptr;
    810  1.16.2.2  pgoyette 
    811  1.16.2.2  pgoyette 			*pptr++ = isprint(ch) ? (char)ch : '.';
    812  1.16.2.2  pgoyette 		} while (--rowlen);
    813  1.16.2.2  pgoyette 
    814  1.16.2.2  pgoyette 		*pptr++ = '\n';
    815  1.16.2.2  pgoyette 		*pptr   = '\0';
    816  1.16.2.2  pgoyette 		fputs(lbuf, stdout);
    817       1.9  christos 	}
    818       1.9  christos }
    819       1.9  christos 
    820       1.9  christos 
    821       1.1    kardel /* XXX ELIMINATE sendpkt similar in ntpq.c, ntpdc.c, ntp_io.c, ntptrace.c */
    822       1.1    kardel /*
    823       1.1    kardel  * sendpkt - send a packet to the remote host
    824       1.1    kardel  */
    825       1.1    kardel static int
    826       1.1    kardel sendpkt(
    827       1.1    kardel 	void *	xdata,
    828       1.1    kardel 	size_t	xdatalen
    829       1.1    kardel 	)
    830       1.1    kardel {
    831       1.1    kardel 	if (debug >= 3)
    832       1.2  christos 		printf("Sending %zu octets\n", xdatalen);
    833       1.1    kardel 
    834      1.14  christos 	if (send(sockfd, xdata, xdatalen, 0) == -1) {
    835       1.3  christos 		warning("write to %s failed", currenthost);
    836       1.1    kardel 		return -1;
    837       1.1    kardel 	}
    838       1.1    kardel 
    839       1.1    kardel 	if (debug >= 4) {
    840       1.9  christos 		printf("Request packet:\n");
    841       1.9  christos 		dump_hex_printable(xdata, xdatalen);
    842       1.1    kardel 	}
    843       1.1    kardel 	return 0;
    844       1.1    kardel }
    845       1.1    kardel 
    846       1.1    kardel /*
    847       1.1    kardel  * getresponse - get a (series of) response packet(s) and return the data
    848       1.1    kardel  */
    849       1.1    kardel static int
    850       1.1    kardel getresponse(
    851       1.1    kardel 	int opcode,
    852       1.1    kardel 	int associd,
    853       1.1    kardel 	u_short *rstatus,
    854      1.14  christos 	size_t *rsize,
    855       1.4    kardel 	const char **rdata,
    856       1.1    kardel 	int timeo
    857       1.1    kardel 	)
    858       1.1    kardel {
    859       1.1    kardel 	struct ntp_control rpkt;
    860       1.1    kardel 	struct sock_timeval tvo;
    861       1.1    kardel 	u_short offsets[MAXFRAGS+1];
    862       1.1    kardel 	u_short counts[MAXFRAGS+1];
    863       1.1    kardel 	u_short offset;
    864       1.1    kardel 	u_short count;
    865       1.4    kardel 	size_t numfrags;
    866       1.4    kardel 	size_t f;
    867       1.4    kardel 	size_t ff;
    868       1.1    kardel 	int seenlastfrag;
    869       1.1    kardel 	int shouldbesize;
    870       1.1    kardel 	fd_set fds;
    871       1.1    kardel 	int n;
    872       1.9  christos 	int errcode;
    873      1.15  christos 	/* absolute timeout checks. Not 'time_t' by intention! */
    874      1.15  christos 	uint32_t tobase;	/* base value for timeout */
    875      1.15  christos 	uint32_t tospan;	/* timeout span (max delay) */
    876      1.15  christos 	uint32_t todiff;	/* current delay */
    877       1.1    kardel 
    878  1.16.2.2  pgoyette 	memset(offsets, 0, sizeof(offsets));
    879  1.16.2.2  pgoyette 	memset(counts , 0, sizeof(counts ));
    880  1.16.2.2  pgoyette 
    881       1.1    kardel 	/*
    882       1.1    kardel 	 * This is pretty tricky.  We may get between 1 and MAXFRAG packets
    883       1.1    kardel 	 * back in response to the request.  We peel the data out of
    884       1.1    kardel 	 * each packet and collect it in one long block.  When the last
    885       1.1    kardel 	 * packet in the sequence is received we'll know how much data we
    886       1.1    kardel 	 * should have had.  Note we use one long time out, should reconsider.
    887       1.1    kardel 	 */
    888       1.1    kardel 	*rsize = 0;
    889       1.1    kardel 	if (rstatus)
    890       1.4    kardel 		*rstatus = 0;
    891       1.1    kardel 	*rdata = (char *)pktdata;
    892       1.1    kardel 
    893       1.1    kardel 	numfrags = 0;
    894       1.1    kardel 	seenlastfrag = 0;
    895       1.1    kardel 
    896      1.15  christos 	tobase = (uint32_t)time(NULL);
    897      1.15  christos 
    898       1.1    kardel 	FD_ZERO(&fds);
    899       1.1    kardel 
    900       1.1    kardel 	/*
    901       1.1    kardel 	 * Loop until we have an error or a complete response.  Nearly all
    902       1.4    kardel 	 * code paths to loop again use continue.
    903       1.1    kardel 	 */
    904       1.1    kardel 	for (;;) {
    905       1.1    kardel 
    906       1.1    kardel 		if (numfrags == 0)
    907       1.4    kardel 			tvo = tvout;
    908       1.1    kardel 		else
    909       1.4    kardel 			tvo = tvsout;
    910      1.15  christos 		tospan = (uint32_t)tvo.tv_sec + (tvo.tv_usec != 0);
    911       1.9  christos 
    912       1.1    kardel 		FD_SET(sockfd, &fds);
    913      1.14  christos 		n = select(sockfd+1, &fds, NULL, NULL, &tvo);
    914       1.1    kardel 		if (n == -1) {
    915      1.15  christos #if !defined(SYS_WINNT) && defined(EINTR)
    916      1.15  christos 			/* Windows does not know about EINTR (until very
    917      1.15  christos 			 * recently) and the handling of console events
    918      1.15  christos 			 * is *very* different from POSIX/UNIX signal
    919      1.15  christos 			 * handling anyway.
    920      1.15  christos 			 *
    921      1.15  christos 			 * Under non-windows targets we map EINTR as
    922      1.15  christos 			 * 'last packet was received' and try to exit
    923      1.15  christos 			 * the receive sequence.
    924      1.15  christos 			 */
    925      1.15  christos 			if (errno == EINTR) {
    926      1.15  christos 				seenlastfrag = 1;
    927      1.15  christos 				goto maybe_final;
    928      1.15  christos 			}
    929      1.15  christos #endif
    930       1.3  christos 			warning("select fails");
    931       1.1    kardel 			return -1;
    932       1.1    kardel 		}
    933      1.15  christos 
    934      1.15  christos 		/*
    935      1.15  christos 		 * Check if this is already too late. Trash the data and
    936      1.15  christos 		 * fake a timeout if this is so.
    937      1.15  christos 		 */
    938      1.15  christos 		todiff = (((uint32_t)time(NULL)) - tobase) & 0x7FFFFFFFu;
    939      1.15  christos 		if ((n > 0) && (todiff > tospan)) {
    940      1.15  christos 			n = recv(sockfd, (char *)&rpkt, sizeof(rpkt), 0);
    941  1.16.2.2  pgoyette 			n -= n; /* faked timeout return from 'select()',
    942  1.16.2.2  pgoyette 				 * execute RMW cycle on 'n'
    943  1.16.2.2  pgoyette 				 */
    944      1.15  christos 		}
    945      1.15  christos 
    946  1.16.2.2  pgoyette 		if (n <= 0) {
    947       1.1    kardel 			/*
    948       1.1    kardel 			 * Timed out.  Return what we have
    949       1.1    kardel 			 */
    950       1.1    kardel 			if (numfrags == 0) {
    951       1.1    kardel 				if (timeo)
    952       1.4    kardel 					fprintf(stderr,
    953       1.4    kardel 						"%s: timed out, nothing received\n",
    954       1.4    kardel 						currenthost);
    955       1.1    kardel 				return ERR_TIMEOUT;
    956       1.1    kardel 			}
    957       1.4    kardel 			if (timeo)
    958       1.4    kardel 				fprintf(stderr,
    959       1.4    kardel 					"%s: timed out with incomplete data\n",
    960       1.4    kardel 					currenthost);
    961       1.4    kardel 			if (debug) {
    962       1.4    kardel 				fprintf(stderr,
    963       1.4    kardel 					"ERR_INCOMPLETE: Received fragments:\n");
    964       1.4    kardel 				for (f = 0; f < numfrags; f++)
    965       1.4    kardel 					fprintf(stderr,
    966       1.9  christos 						"%2u: %5d %5d\t%3d octets\n",
    967       1.9  christos 						(u_int)f, offsets[f],
    968       1.4    kardel 						offsets[f] +
    969       1.4    kardel 						counts[f],
    970       1.4    kardel 						counts[f]);
    971       1.4    kardel 				fprintf(stderr,
    972       1.4    kardel 					"last fragment %sreceived\n",
    973       1.4    kardel 					(seenlastfrag)
    974       1.4    kardel 					    ? ""
    975       1.4    kardel 					    : "not ");
    976       1.4    kardel 			}
    977       1.4    kardel 			return ERR_INCOMPLETE;
    978       1.1    kardel 		}
    979       1.1    kardel 
    980       1.1    kardel 		n = recv(sockfd, (char *)&rpkt, sizeof(rpkt), 0);
    981  1.16.2.2  pgoyette 		if (n < 0) {
    982       1.3  christos 			warning("read");
    983       1.1    kardel 			return -1;
    984       1.1    kardel 		}
    985       1.1    kardel 
    986       1.1    kardel 		if (debug >= 4) {
    987       1.9  christos 			printf("Response packet:\n");
    988       1.9  christos 			dump_hex_printable(&rpkt, n);
    989       1.1    kardel 		}
    990       1.1    kardel 
    991       1.1    kardel 		/*
    992       1.1    kardel 		 * Check for format errors.  Bug proofing.
    993       1.1    kardel 		 */
    994       1.5    kardel 		if (n < (int)CTL_HEADER_LEN) {
    995       1.1    kardel 			if (debug)
    996       1.4    kardel 				printf("Short (%d byte) packet received\n", n);
    997       1.1    kardel 			continue;
    998       1.1    kardel 		}
    999       1.1    kardel 		if (PKT_VERSION(rpkt.li_vn_mode) > NTP_VERSION
   1000       1.1    kardel 		    || PKT_VERSION(rpkt.li_vn_mode) < NTP_OLDVERSION) {
   1001       1.1    kardel 			if (debug)
   1002       1.4    kardel 				printf("Packet received with version %d\n",
   1003       1.4    kardel 				       PKT_VERSION(rpkt.li_vn_mode));
   1004       1.1    kardel 			continue;
   1005       1.1    kardel 		}
   1006       1.1    kardel 		if (PKT_MODE(rpkt.li_vn_mode) != MODE_CONTROL) {
   1007       1.1    kardel 			if (debug)
   1008       1.4    kardel 				printf("Packet received with mode %d\n",
   1009       1.4    kardel 				       PKT_MODE(rpkt.li_vn_mode));
   1010       1.1    kardel 			continue;
   1011       1.1    kardel 		}
   1012       1.1    kardel 		if (!CTL_ISRESPONSE(rpkt.r_m_e_op)) {
   1013       1.1    kardel 			if (debug)
   1014       1.4    kardel 				printf("Received request packet, wanted response\n");
   1015       1.1    kardel 			continue;
   1016       1.1    kardel 		}
   1017       1.1    kardel 
   1018       1.1    kardel 		/*
   1019       1.1    kardel 		 * Check opcode and sequence number for a match.
   1020       1.1    kardel 		 * Could be old data getting to us.
   1021       1.1    kardel 		 */
   1022       1.1    kardel 		if (ntohs(rpkt.sequence) != sequence) {
   1023       1.1    kardel 			if (debug)
   1024       1.4    kardel 				printf("Received sequnce number %d, wanted %d\n",
   1025       1.4    kardel 				       ntohs(rpkt.sequence), sequence);
   1026       1.1    kardel 			continue;
   1027       1.1    kardel 		}
   1028       1.1    kardel 		if (CTL_OP(rpkt.r_m_e_op) != opcode) {
   1029       1.1    kardel 			if (debug)
   1030       1.1    kardel 			    printf(
   1031       1.1    kardel 				    "Received opcode %d, wanted %d (sequence number okay)\n",
   1032       1.1    kardel 				    CTL_OP(rpkt.r_m_e_op), opcode);
   1033       1.1    kardel 			continue;
   1034       1.1    kardel 		}
   1035       1.1    kardel 
   1036       1.1    kardel 		/*
   1037       1.1    kardel 		 * Check the error code.  If non-zero, return it.
   1038       1.1    kardel 		 */
   1039       1.1    kardel 		if (CTL_ISERROR(rpkt.r_m_e_op)) {
   1040       1.1    kardel 			errcode = (ntohs(rpkt.status) >> 8) & 0xff;
   1041       1.9  christos 			if (CTL_ISMORE(rpkt.r_m_e_op))
   1042       1.9  christos 				TRACE(1, ("Error code %d received on not-final packet\n",
   1043       1.9  christos 					  errcode));
   1044       1.1    kardel 			if (errcode == CERR_UNSPEC)
   1045       1.9  christos 				return ERR_UNSPEC;
   1046       1.1    kardel 			return errcode;
   1047       1.1    kardel 		}
   1048       1.1    kardel 
   1049       1.1    kardel 		/*
   1050       1.1    kardel 		 * Check the association ID to make sure it matches what
   1051       1.1    kardel 		 * we sent.
   1052       1.1    kardel 		 */
   1053       1.1    kardel 		if (ntohs(rpkt.associd) != associd) {
   1054       1.9  christos 			TRACE(1, ("Association ID %d doesn't match expected %d\n",
   1055       1.9  christos 				  ntohs(rpkt.associd), associd));
   1056       1.1    kardel 			/*
   1057       1.1    kardel 			 * Hack for silly fuzzballs which, at the time of writing,
   1058       1.1    kardel 			 * return an assID of sys.peer when queried for system variables.
   1059       1.1    kardel 			 */
   1060       1.1    kardel #ifdef notdef
   1061       1.1    kardel 			continue;
   1062       1.1    kardel #endif
   1063       1.1    kardel 		}
   1064       1.1    kardel 
   1065       1.1    kardel 		/*
   1066       1.1    kardel 		 * Collect offset and count.  Make sure they make sense.
   1067       1.1    kardel 		 */
   1068       1.1    kardel 		offset = ntohs(rpkt.offset);
   1069       1.1    kardel 		count = ntohs(rpkt.count);
   1070       1.1    kardel 
   1071       1.1    kardel 		/*
   1072       1.1    kardel 		 * validate received payload size is padded to next 32-bit
   1073       1.1    kardel 		 * boundary and no smaller than claimed by rpkt.count
   1074       1.1    kardel 		 */
   1075       1.1    kardel 		if (n & 0x3) {
   1076       1.9  christos 			TRACE(1, ("Response packet not padded, size = %d\n",
   1077       1.9  christos 				  n));
   1078       1.1    kardel 			continue;
   1079       1.1    kardel 		}
   1080       1.1    kardel 
   1081       1.1    kardel 		shouldbesize = (CTL_HEADER_LEN + count + 3) & ~3;
   1082       1.1    kardel 
   1083       1.1    kardel 		if (n < shouldbesize) {
   1084       1.9  christos 			printf("Response packet claims %u octets payload, above %ld received\n",
   1085      1.16  christos 			       count, (long)(n - CTL_HEADER_LEN));
   1086       1.1    kardel 			return ERR_INCOMPLETE;
   1087       1.1    kardel 		}
   1088       1.1    kardel 
   1089       1.1    kardel 		if (debug >= 3 && shouldbesize > n) {
   1090       1.1    kardel 			u_int32 key;
   1091       1.1    kardel 			u_int32 *lpkt;
   1092       1.1    kardel 			int maclen;
   1093       1.1    kardel 
   1094       1.1    kardel 			/*
   1095       1.1    kardel 			 * Usually we ignore authentication, but for debugging purposes
   1096       1.1    kardel 			 * we watch it here.
   1097       1.1    kardel 			 */
   1098       1.1    kardel 			/* round to 8 octet boundary */
   1099       1.1    kardel 			shouldbesize = (shouldbesize + 7) & ~7;
   1100       1.1    kardel 
   1101       1.1    kardel 			maclen = n - shouldbesize;
   1102       1.2  christos 			if (maclen >= (int)MIN_MAC_LEN) {
   1103       1.1    kardel 				printf(
   1104       1.1    kardel 					"Packet shows signs of authentication (total %d, data %d, mac %d)\n",
   1105       1.1    kardel 					n, shouldbesize, maclen);
   1106       1.1    kardel 				lpkt = (u_int32 *)&rpkt;
   1107       1.1    kardel 				printf("%08lx %08lx %08lx %08lx %08lx %08lx\n",
   1108       1.1    kardel 				       (u_long)ntohl(lpkt[(n - maclen)/sizeof(u_int32) - 3]),
   1109       1.1    kardel 				       (u_long)ntohl(lpkt[(n - maclen)/sizeof(u_int32) - 2]),
   1110       1.1    kardel 				       (u_long)ntohl(lpkt[(n - maclen)/sizeof(u_int32) - 1]),
   1111       1.1    kardel 				       (u_long)ntohl(lpkt[(n - maclen)/sizeof(u_int32)]),
   1112       1.1    kardel 				       (u_long)ntohl(lpkt[(n - maclen)/sizeof(u_int32) + 1]),
   1113       1.1    kardel 				       (u_long)ntohl(lpkt[(n - maclen)/sizeof(u_int32) + 2]));
   1114       1.1    kardel 				key = ntohl(lpkt[(n - maclen) / sizeof(u_int32)]);
   1115       1.1    kardel 				printf("Authenticated with keyid %lu\n", (u_long)key);
   1116       1.1    kardel 				if (key != 0 && key != info_auth_keyid) {
   1117       1.1    kardel 					printf("We don't know that key\n");
   1118       1.1    kardel 				} else {
   1119       1.1    kardel 					if (authdecrypt(key, (u_int32 *)&rpkt,
   1120       1.1    kardel 					    n - maclen, maclen)) {
   1121       1.1    kardel 						printf("Auth okay!\n");
   1122       1.1    kardel 					} else {
   1123       1.1    kardel 						printf("Auth failed!\n");
   1124       1.1    kardel 					}
   1125       1.1    kardel 				}
   1126       1.1    kardel 			}
   1127       1.1    kardel 		}
   1128       1.1    kardel 
   1129       1.9  christos 		TRACE(2, ("Got packet, size = %d\n", n));
   1130       1.9  christos 		if (count > (n - CTL_HEADER_LEN)) {
   1131       1.9  christos 			TRACE(1, ("Received count of %u octets, data in packet is %ld\n",
   1132       1.9  christos 				  count, (long)n - CTL_HEADER_LEN));
   1133       1.1    kardel 			continue;
   1134       1.1    kardel 		}
   1135       1.1    kardel 		if (count == 0 && CTL_ISMORE(rpkt.r_m_e_op)) {
   1136       1.9  christos 			TRACE(1, ("Received count of 0 in non-final fragment\n"));
   1137       1.1    kardel 			continue;
   1138       1.1    kardel 		}
   1139       1.1    kardel 		if (offset + count > sizeof(pktdata)) {
   1140       1.9  christos 			TRACE(1, ("Offset %u, count %u, too big for buffer\n",
   1141       1.9  christos 				  offset, count));
   1142       1.1    kardel 			return ERR_TOOMUCH;
   1143       1.1    kardel 		}
   1144       1.1    kardel 		if (seenlastfrag && !CTL_ISMORE(rpkt.r_m_e_op)) {
   1145       1.9  christos 			TRACE(1, ("Received second last fragment packet\n"));
   1146       1.1    kardel 			continue;
   1147       1.1    kardel 		}
   1148       1.1    kardel 
   1149       1.1    kardel 		/*
   1150       1.1    kardel 		 * So far, so good.  Record this fragment, making sure it doesn't
   1151       1.1    kardel 		 * overlap anything.
   1152       1.1    kardel 		 */
   1153       1.9  christos 		TRACE(2, ("Packet okay\n"));
   1154       1.1    kardel 
   1155       1.1    kardel 		if (numfrags > (MAXFRAGS - 1)) {
   1156       1.9  christos 			TRACE(2, ("Number of fragments exceeds maximum %d\n",
   1157       1.9  christos 				  MAXFRAGS - 1));
   1158       1.1    kardel 			return ERR_TOOMUCH;
   1159       1.1    kardel 		}
   1160       1.1    kardel 
   1161       1.1    kardel 		/*
   1162       1.1    kardel 		 * Find the position for the fragment relative to any
   1163       1.1    kardel 		 * previously received.
   1164       1.1    kardel 		 */
   1165       1.9  christos 		for (f = 0;
   1166       1.9  christos 		     f < numfrags && offsets[f] < offset;
   1167       1.4    kardel 		     f++) {
   1168       1.1    kardel 			/* empty body */ ;
   1169       1.1    kardel 		}
   1170       1.1    kardel 
   1171       1.4    kardel 		if (f < numfrags && offset == offsets[f]) {
   1172       1.9  christos 			TRACE(1, ("duplicate %u octets at %u ignored, prior %u at %u\n",
   1173       1.9  christos 				  count, offset, counts[f], offsets[f]));
   1174       1.1    kardel 			continue;
   1175       1.1    kardel 		}
   1176       1.1    kardel 
   1177       1.4    kardel 		if (f > 0 && (offsets[f-1] + counts[f-1]) > offset) {
   1178       1.9  christos 			TRACE(1, ("received frag at %u overlaps with %u octet frag at %u\n",
   1179       1.9  christos 				  offset, counts[f-1], offsets[f-1]));
   1180       1.1    kardel 			continue;
   1181       1.1    kardel 		}
   1182       1.1    kardel 
   1183       1.4    kardel 		if (f < numfrags && (offset + count) > offsets[f]) {
   1184       1.9  christos 			TRACE(1, ("received %u octet frag at %u overlaps with frag at %u\n",
   1185       1.9  christos 				  count, offset, offsets[f]));
   1186       1.1    kardel 			continue;
   1187       1.1    kardel 		}
   1188       1.1    kardel 
   1189       1.4    kardel 		for (ff = numfrags; ff > f; ff--) {
   1190       1.4    kardel 			offsets[ff] = offsets[ff-1];
   1191       1.4    kardel 			counts[ff] = counts[ff-1];
   1192       1.1    kardel 		}
   1193       1.4    kardel 		offsets[f] = offset;
   1194       1.4    kardel 		counts[f] = count;
   1195       1.1    kardel 		numfrags++;
   1196       1.1    kardel 
   1197       1.1    kardel 		/*
   1198       1.1    kardel 		 * Got that stuffed in right.  Figure out if this was the last.
   1199       1.1    kardel 		 * Record status info out of the last packet.
   1200       1.1    kardel 		 */
   1201       1.1    kardel 		if (!CTL_ISMORE(rpkt.r_m_e_op)) {
   1202       1.1    kardel 			seenlastfrag = 1;
   1203       1.1    kardel 			if (rstatus != 0)
   1204       1.4    kardel 				*rstatus = ntohs(rpkt.status);
   1205       1.1    kardel 		}
   1206       1.1    kardel 
   1207       1.1    kardel 		/*
   1208      1.15  christos 		 * Copy the data into the data buffer, and bump the
   1209      1.15  christos 		 * timout base in case we need more.
   1210       1.1    kardel 		 */
   1211       1.9  christos 		memcpy((char *)pktdata + offset, &rpkt.u, count);
   1212      1.15  christos 		tobase = (uint32_t)time(NULL);
   1213      1.15  christos 
   1214       1.1    kardel 		/*
   1215       1.1    kardel 		 * If we've seen the last fragment, look for holes in the sequence.
   1216       1.1    kardel 		 * If there aren't any, we're done.
   1217       1.1    kardel 		 */
   1218      1.16  christos #if !defined(SYS_WINNT) && defined(EINTR)
   1219      1.16  christos 		maybe_final:
   1220      1.16  christos #endif
   1221      1.16  christos 
   1222       1.1    kardel 		if (seenlastfrag && offsets[0] == 0) {
   1223       1.4    kardel 			for (f = 1; f < numfrags; f++)
   1224       1.4    kardel 				if (offsets[f-1] + counts[f-1] !=
   1225       1.4    kardel 				    offsets[f])
   1226       1.1    kardel 					break;
   1227       1.4    kardel 			if (f == numfrags) {
   1228       1.4    kardel 				*rsize = offsets[f-1] + counts[f-1];
   1229       1.9  christos 				TRACE(1, ("%lu packets reassembled into response\n",
   1230       1.9  christos 					  (u_long)numfrags));
   1231       1.1    kardel 				return 0;
   1232       1.1    kardel 			}
   1233       1.1    kardel 		}
   1234       1.1    kardel 	}  /* giant for (;;) collecting response packets */
   1235       1.1    kardel }  /* getresponse() */
   1236       1.1    kardel 
   1237       1.1    kardel 
   1238       1.1    kardel /*
   1239       1.1    kardel  * sendrequest - format and send a request packet
   1240       1.1    kardel  */
   1241       1.1    kardel static int
   1242       1.1    kardel sendrequest(
   1243       1.1    kardel 	int opcode,
   1244       1.9  christos 	associd_t associd,
   1245       1.1    kardel 	int auth,
   1246      1.14  christos 	size_t qsize,
   1247       1.9  christos 	const char *qdata
   1248       1.1    kardel 	)
   1249       1.1    kardel {
   1250       1.1    kardel 	struct ntp_control qpkt;
   1251      1.14  christos 	size_t	pktsize;
   1252       1.1    kardel 	u_long	key_id;
   1253       1.1    kardel 	char *	pass;
   1254      1.14  christos 	size_t	maclen;
   1255       1.1    kardel 
   1256       1.1    kardel 	/*
   1257       1.1    kardel 	 * Check to make sure the data will fit in one packet
   1258       1.1    kardel 	 */
   1259       1.1    kardel 	if (qsize > CTL_MAX_DATA_LEN) {
   1260       1.1    kardel 		fprintf(stderr,
   1261      1.14  christos 			"***Internal error!  qsize (%zu) too large\n",
   1262       1.1    kardel 			qsize);
   1263       1.1    kardel 		return 1;
   1264       1.1    kardel 	}
   1265       1.1    kardel 
   1266       1.1    kardel 	/*
   1267       1.1    kardel 	 * Fill in the packet
   1268       1.1    kardel 	 */
   1269       1.1    kardel 	qpkt.li_vn_mode = PKT_LI_VN_MODE(0, pktversion, MODE_CONTROL);
   1270       1.1    kardel 	qpkt.r_m_e_op = (u_char)(opcode & CTL_OP_MASK);
   1271       1.1    kardel 	qpkt.sequence = htons(sequence);
   1272       1.1    kardel 	qpkt.status = 0;
   1273       1.1    kardel 	qpkt.associd = htons((u_short)associd);
   1274       1.1    kardel 	qpkt.offset = 0;
   1275       1.1    kardel 	qpkt.count = htons((u_short)qsize);
   1276       1.1    kardel 
   1277       1.1    kardel 	pktsize = CTL_HEADER_LEN;
   1278       1.1    kardel 
   1279       1.1    kardel 	/*
   1280       1.1    kardel 	 * If we have data, copy and pad it out to a 32-bit boundary.
   1281       1.1    kardel 	 */
   1282       1.1    kardel 	if (qsize > 0) {
   1283       1.9  christos 		memcpy(&qpkt.u, qdata, (size_t)qsize);
   1284       1.1    kardel 		pktsize += qsize;
   1285       1.1    kardel 		while (pktsize & (sizeof(u_int32) - 1)) {
   1286       1.9  christos 			qpkt.u.data[qsize++] = 0;
   1287       1.1    kardel 			pktsize++;
   1288       1.1    kardel 		}
   1289       1.1    kardel 	}
   1290       1.1    kardel 
   1291       1.1    kardel 	/*
   1292       1.1    kardel 	 * If it isn't authenticated we can just send it.  Otherwise
   1293       1.1    kardel 	 * we're going to have to think about it a little.
   1294       1.1    kardel 	 */
   1295       1.1    kardel 	if (!auth && !always_auth) {
   1296       1.1    kardel 		return sendpkt(&qpkt, pktsize);
   1297       1.9  christos 	}
   1298       1.1    kardel 
   1299       1.1    kardel 	/*
   1300       1.1    kardel 	 * Pad out packet to a multiple of 8 octets to be sure
   1301       1.1    kardel 	 * receiver can handle it.
   1302       1.1    kardel 	 */
   1303       1.1    kardel 	while (pktsize & 7) {
   1304       1.9  christos 		qpkt.u.data[qsize++] = 0;
   1305       1.1    kardel 		pktsize++;
   1306       1.1    kardel 	}
   1307       1.1    kardel 
   1308       1.1    kardel 	/*
   1309       1.1    kardel 	 * Get the keyid and the password if we don't have one.
   1310       1.1    kardel 	 */
   1311       1.1    kardel 	if (info_auth_keyid == 0) {
   1312       1.1    kardel 		key_id = getkeyid("Keyid: ");
   1313       1.1    kardel 		if (key_id == 0 || key_id > NTP_MAXKEY) {
   1314       1.9  christos 			fprintf(stderr,
   1315       1.1    kardel 				"Invalid key identifier\n");
   1316       1.1    kardel 			return 1;
   1317       1.1    kardel 		}
   1318       1.1    kardel 		info_auth_keyid = key_id;
   1319       1.1    kardel 	}
   1320       1.1    kardel 	if (!authistrusted(info_auth_keyid)) {
   1321       1.4    kardel 		pass = getpass_keytype(info_auth_keytype);
   1322       1.1    kardel 		if ('\0' == pass[0]) {
   1323       1.1    kardel 			fprintf(stderr, "Invalid password\n");
   1324       1.1    kardel 			return 1;
   1325       1.1    kardel 		}
   1326       1.1    kardel 		authusekey(info_auth_keyid, info_auth_keytype,
   1327       1.1    kardel 			   (u_char *)pass);
   1328       1.1    kardel 		authtrust(info_auth_keyid, 1);
   1329       1.1    kardel 	}
   1330       1.1    kardel 
   1331       1.1    kardel 	/*
   1332       1.1    kardel 	 * Do the encryption.
   1333       1.1    kardel 	 */
   1334       1.1    kardel 	maclen = authencrypt(info_auth_keyid, (void *)&qpkt, pktsize);
   1335       1.9  christos 	if (!maclen) {
   1336       1.1    kardel 		fprintf(stderr, "Key not found\n");
   1337       1.1    kardel 		return 1;
   1338       1.1    kardel 	} else if ((size_t)maclen != (info_auth_hashlen + sizeof(keyid_t))) {
   1339       1.1    kardel 		fprintf(stderr,
   1340      1.14  christos 			"%zu octet MAC, %zu expected with %zu octet digest\n",
   1341       1.1    kardel 			maclen, (info_auth_hashlen + sizeof(keyid_t)),
   1342       1.1    kardel 			info_auth_hashlen);
   1343       1.1    kardel 		return 1;
   1344       1.1    kardel 	}
   1345       1.9  christos 
   1346       1.1    kardel 	return sendpkt((char *)&qpkt, pktsize + maclen);
   1347       1.1    kardel }
   1348       1.1    kardel 
   1349       1.1    kardel 
   1350       1.1    kardel /*
   1351       1.4    kardel  * show_error_msg - display the error text for a mode 6 error response.
   1352       1.4    kardel  */
   1353       1.4    kardel void
   1354       1.4    kardel show_error_msg(
   1355       1.4    kardel 	int		m6resp,
   1356       1.4    kardel 	associd_t	associd
   1357       1.4    kardel 	)
   1358       1.4    kardel {
   1359       1.4    kardel 	if (numhosts > 1)
   1360       1.4    kardel 		fprintf(stderr, "server=%s ", currenthost);
   1361       1.4    kardel 
   1362      1.15  christos 	switch (m6resp) {
   1363       1.4    kardel 
   1364       1.4    kardel 	case CERR_BADFMT:
   1365       1.4    kardel 		fprintf(stderr,
   1366       1.4    kardel 		    "***Server reports a bad format request packet\n");
   1367       1.4    kardel 		break;
   1368       1.4    kardel 
   1369       1.4    kardel 	case CERR_PERMISSION:
   1370       1.4    kardel 		fprintf(stderr,
   1371       1.4    kardel 		    "***Server disallowed request (authentication?)\n");
   1372       1.4    kardel 		break;
   1373       1.4    kardel 
   1374       1.4    kardel 	case CERR_BADOP:
   1375       1.4    kardel 		fprintf(stderr,
   1376       1.4    kardel 		    "***Server reports a bad opcode in request\n");
   1377       1.4    kardel 		break;
   1378       1.4    kardel 
   1379       1.4    kardel 	case CERR_BADASSOC:
   1380       1.4    kardel 		fprintf(stderr,
   1381       1.4    kardel 		    "***Association ID %d unknown to server\n",
   1382       1.4    kardel 		    associd);
   1383       1.4    kardel 		break;
   1384       1.4    kardel 
   1385       1.4    kardel 	case CERR_UNKNOWNVAR:
   1386       1.4    kardel 		fprintf(stderr,
   1387       1.4    kardel 		    "***A request variable unknown to the server\n");
   1388       1.4    kardel 		break;
   1389       1.4    kardel 
   1390       1.4    kardel 	case CERR_BADVALUE:
   1391       1.4    kardel 		fprintf(stderr,
   1392       1.4    kardel 		    "***Server indicates a request variable was bad\n");
   1393       1.4    kardel 		break;
   1394       1.4    kardel 
   1395       1.4    kardel 	case ERR_UNSPEC:
   1396       1.4    kardel 		fprintf(stderr,
   1397       1.4    kardel 		    "***Server returned an unspecified error\n");
   1398       1.4    kardel 		break;
   1399       1.4    kardel 
   1400       1.4    kardel 	case ERR_TIMEOUT:
   1401       1.4    kardel 		fprintf(stderr, "***Request timed out\n");
   1402       1.4    kardel 		break;
   1403       1.4    kardel 
   1404       1.4    kardel 	case ERR_INCOMPLETE:
   1405       1.4    kardel 		fprintf(stderr,
   1406       1.4    kardel 		    "***Response from server was incomplete\n");
   1407       1.4    kardel 		break;
   1408       1.4    kardel 
   1409       1.4    kardel 	case ERR_TOOMUCH:
   1410       1.4    kardel 		fprintf(stderr,
   1411       1.4    kardel 		    "***Buffer size exceeded for returned data\n");
   1412       1.4    kardel 		break;
   1413       1.4    kardel 
   1414       1.4    kardel 	default:
   1415       1.4    kardel 		fprintf(stderr,
   1416       1.4    kardel 		    "***Server returns unknown error code %d\n",
   1417       1.4    kardel 		    m6resp);
   1418       1.4    kardel 	}
   1419       1.4    kardel }
   1420       1.4    kardel 
   1421       1.4    kardel /*
   1422       1.4    kardel  * doquery - send a request and process the response, displaying
   1423       1.4    kardel  *	     error messages for any error responses.
   1424       1.1    kardel  */
   1425       1.1    kardel int
   1426       1.1    kardel doquery(
   1427       1.1    kardel 	int opcode,
   1428       1.4    kardel 	associd_t associd,
   1429       1.4    kardel 	int auth,
   1430      1.14  christos 	size_t qsize,
   1431       1.9  christos 	const char *qdata,
   1432       1.4    kardel 	u_short *rstatus,
   1433      1.14  christos 	size_t *rsize,
   1434       1.4    kardel 	const char **rdata
   1435       1.4    kardel 	)
   1436       1.4    kardel {
   1437       1.4    kardel 	return doqueryex(opcode, associd, auth, qsize, qdata, rstatus,
   1438       1.4    kardel 			 rsize, rdata, FALSE);
   1439       1.4    kardel }
   1440       1.4    kardel 
   1441       1.4    kardel 
   1442       1.4    kardel /*
   1443       1.4    kardel  * doqueryex - send a request and process the response, optionally
   1444       1.4    kardel  *	       displaying error messages for any error responses.
   1445       1.4    kardel  */
   1446       1.4    kardel int
   1447       1.4    kardel doqueryex(
   1448       1.4    kardel 	int opcode,
   1449       1.4    kardel 	associd_t associd,
   1450       1.1    kardel 	int auth,
   1451      1.14  christos 	size_t qsize,
   1452       1.9  christos 	const char *qdata,
   1453       1.1    kardel 	u_short *rstatus,
   1454      1.14  christos 	size_t *rsize,
   1455       1.4    kardel 	const char **rdata,
   1456       1.4    kardel 	int quiet
   1457       1.1    kardel 	)
   1458       1.1    kardel {
   1459       1.1    kardel 	int res;
   1460       1.1    kardel 	int done;
   1461       1.1    kardel 
   1462       1.1    kardel 	/*
   1463       1.1    kardel 	 * Check to make sure host is open
   1464       1.1    kardel 	 */
   1465       1.1    kardel 	if (!havehost) {
   1466       1.4    kardel 		fprintf(stderr, "***No host open, use `host' command\n");
   1467       1.1    kardel 		return -1;
   1468       1.1    kardel 	}
   1469       1.1    kardel 
   1470       1.1    kardel 	done = 0;
   1471       1.1    kardel 	sequence++;
   1472       1.1    kardel 
   1473       1.1    kardel     again:
   1474       1.1    kardel 	/*
   1475       1.1    kardel 	 * send a request
   1476       1.1    kardel 	 */
   1477       1.1    kardel 	res = sendrequest(opcode, associd, auth, qsize, qdata);
   1478       1.1    kardel 	if (res != 0)
   1479       1.4    kardel 		return res;
   1480       1.9  christos 
   1481       1.1    kardel 	/*
   1482       1.1    kardel 	 * Get the response.  If we got a standard error, print a message
   1483       1.1    kardel 	 */
   1484       1.1    kardel 	res = getresponse(opcode, associd, rstatus, rsize, rdata, done);
   1485       1.1    kardel 
   1486       1.1    kardel 	if (res > 0) {
   1487       1.1    kardel 		if (!done && (res == ERR_TIMEOUT || res == ERR_INCOMPLETE)) {
   1488       1.1    kardel 			if (res == ERR_INCOMPLETE) {
   1489       1.1    kardel 				/*
   1490       1.1    kardel 				 * better bump the sequence so we don't
   1491       1.1    kardel 				 * get confused about differing fragments.
   1492       1.1    kardel 				 */
   1493       1.1    kardel 				sequence++;
   1494       1.1    kardel 			}
   1495       1.1    kardel 			done = 1;
   1496       1.1    kardel 			goto again;
   1497       1.1    kardel 		}
   1498       1.4    kardel 		if (!quiet)
   1499       1.4    kardel 			show_error_msg(res, associd);
   1500       1.4    kardel 
   1501       1.1    kardel 	}
   1502       1.1    kardel 	return res;
   1503       1.1    kardel }
   1504       1.1    kardel 
   1505       1.1    kardel 
   1506       1.1    kardel #ifndef BUILD_AS_LIB
   1507       1.1    kardel /*
   1508       1.1    kardel  * getcmds - read commands from the standard input and execute them
   1509       1.1    kardel  */
   1510       1.1    kardel static void
   1511       1.1    kardel getcmds(void)
   1512       1.1    kardel {
   1513       1.1    kardel 	char *	line;
   1514       1.1    kardel 	int	count;
   1515       1.1    kardel 
   1516       1.1    kardel 	ntp_readline_init(interactive ? prompt : NULL);
   1517       1.1    kardel 
   1518       1.1    kardel 	for (;;) {
   1519       1.1    kardel 		line = ntp_readline(&count);
   1520       1.1    kardel 		if (NULL == line)
   1521       1.1    kardel 			break;
   1522       1.1    kardel 		docmd(line);
   1523       1.1    kardel 		free(line);
   1524       1.1    kardel 	}
   1525       1.1    kardel 
   1526       1.1    kardel 	ntp_readline_uninit();
   1527       1.1    kardel }
   1528       1.1    kardel #endif /* !BUILD_AS_LIB */
   1529       1.1    kardel 
   1530       1.1    kardel 
   1531       1.1    kardel #if !defined(SYS_WINNT) && !defined(BUILD_AS_LIB)
   1532       1.1    kardel /*
   1533       1.1    kardel  * abortcmd - catch interrupts and abort the current command
   1534       1.1    kardel  */
   1535      1.14  christos static int
   1536      1.14  christos abortcmd(void)
   1537       1.1    kardel {
   1538       1.1    kardel 	if (current_output == stdout)
   1539      1.14  christos 		(void) fflush(stdout);
   1540       1.1    kardel 	putc('\n', stderr);
   1541       1.1    kardel 	(void) fflush(stderr);
   1542      1.14  christos 	if (jump) {
   1543      1.14  christos 		jump = 0;
   1544      1.14  christos 		longjmp(interrupt_buf, 1);
   1545      1.14  christos 	}
   1546      1.14  christos 	return TRUE;
   1547       1.1    kardel }
   1548       1.1    kardel #endif	/* !SYS_WINNT && !BUILD_AS_LIB */
   1549       1.1    kardel 
   1550       1.1    kardel 
   1551       1.1    kardel #ifndef	BUILD_AS_LIB
   1552       1.1    kardel /*
   1553       1.1    kardel  * docmd - decode the command line and execute a command
   1554       1.1    kardel  */
   1555       1.1    kardel static void
   1556       1.1    kardel docmd(
   1557       1.1    kardel 	const char *cmdline
   1558       1.1    kardel 	)
   1559       1.1    kardel {
   1560       1.1    kardel 	char *tokens[1+MAXARGS+2];
   1561       1.1    kardel 	struct parse pcmd;
   1562       1.1    kardel 	int ntok;
   1563       1.1    kardel 	static int i;
   1564       1.1    kardel 	struct xcmd *xcmd;
   1565       1.1    kardel 
   1566       1.1    kardel 	/*
   1567       1.1    kardel 	 * Tokenize the command line.  If nothing on it, return.
   1568       1.1    kardel 	 */
   1569       1.1    kardel 	tokenize(cmdline, tokens, &ntok);
   1570       1.1    kardel 	if (ntok == 0)
   1571       1.1    kardel 	    return;
   1572       1.9  christos 
   1573       1.1    kardel 	/*
   1574       1.1    kardel 	 * Find the appropriate command description.
   1575       1.1    kardel 	 */
   1576       1.1    kardel 	i = findcmd(tokens[0], builtins, opcmds, &xcmd);
   1577       1.1    kardel 	if (i == 0) {
   1578       1.1    kardel 		(void) fprintf(stderr, "***Command `%s' unknown\n",
   1579       1.1    kardel 			       tokens[0]);
   1580       1.1    kardel 		return;
   1581       1.1    kardel 	} else if (i >= 2) {
   1582       1.1    kardel 		(void) fprintf(stderr, "***Command `%s' ambiguous\n",
   1583       1.1    kardel 			       tokens[0]);
   1584       1.1    kardel 		return;
   1585       1.1    kardel 	}
   1586       1.9  christos 
   1587       1.9  christos 	/* Warn about ignored extra args */
   1588       1.9  christos 	for (i = MAXARGS + 1; i < ntok ; ++i) {
   1589       1.9  christos 		fprintf(stderr, "***Extra arg `%s' ignored\n", tokens[i]);
   1590       1.9  christos 	}
   1591       1.9  christos 
   1592       1.1    kardel 	/*
   1593       1.1    kardel 	 * Save the keyword, then walk through the arguments, interpreting
   1594       1.1    kardel 	 * as we go.
   1595       1.1    kardel 	 */
   1596       1.1    kardel 	pcmd.keyword = tokens[0];
   1597       1.1    kardel 	pcmd.nargs = 0;
   1598       1.1    kardel 	for (i = 0; i < MAXARGS && xcmd->arg[i] != NO; i++) {
   1599       1.1    kardel 		if ((i+1) >= ntok) {
   1600       1.1    kardel 			if (!(xcmd->arg[i] & OPT)) {
   1601       1.1    kardel 				printusage(xcmd, stderr);
   1602       1.1    kardel 				return;
   1603       1.1    kardel 			}
   1604       1.1    kardel 			break;
   1605       1.1    kardel 		}
   1606       1.1    kardel 		if ((xcmd->arg[i] & OPT) && (*tokens[i+1] == '>'))
   1607       1.1    kardel 			break;
   1608       1.1    kardel 		if (!getarg(tokens[i+1], (int)xcmd->arg[i], &pcmd.argval[i]))
   1609       1.1    kardel 			return;
   1610       1.1    kardel 		pcmd.nargs++;
   1611       1.1    kardel 	}
   1612       1.1    kardel 
   1613       1.1    kardel 	i++;
   1614       1.1    kardel 	if (i < ntok && *tokens[i] == '>') {
   1615       1.1    kardel 		char *fname;
   1616       1.1    kardel 
   1617       1.1    kardel 		if (*(tokens[i]+1) != '\0')
   1618       1.1    kardel 			fname = tokens[i]+1;
   1619       1.1    kardel 		else if ((i+1) < ntok)
   1620       1.1    kardel 			fname = tokens[i+1];
   1621       1.1    kardel 		else {
   1622       1.1    kardel 			(void) fprintf(stderr, "***No file for redirect\n");
   1623       1.1    kardel 			return;
   1624       1.1    kardel 		}
   1625       1.1    kardel 
   1626       1.1    kardel 		current_output = fopen(fname, "w");
   1627       1.1    kardel 		if (current_output == NULL) {
   1628       1.1    kardel 			(void) fprintf(stderr, "***Error opening %s: ", fname);
   1629       1.1    kardel 			perror("");
   1630       1.1    kardel 			return;
   1631       1.1    kardel 		}
   1632       1.1    kardel 		i = 1;		/* flag we need a close */
   1633       1.1    kardel 	} else {
   1634       1.1    kardel 		current_output = stdout;
   1635       1.1    kardel 		i = 0;		/* flag no close */
   1636       1.1    kardel 	}
   1637       1.1    kardel 
   1638       1.1    kardel 	if (interactive && setjmp(interrupt_buf)) {
   1639       1.1    kardel 		jump = 0;
   1640       1.1    kardel 		return;
   1641       1.1    kardel 	} else {
   1642       1.1    kardel 		jump++;
   1643       1.1    kardel 		(xcmd->handler)(&pcmd, current_output);
   1644       1.1    kardel 		jump = 0;	/* HMS: 961106: was after fclose() */
   1645       1.1    kardel 		if (i) (void) fclose(current_output);
   1646       1.1    kardel 	}
   1647       1.9  christos 
   1648       1.9  christos 	return;
   1649       1.1    kardel }
   1650       1.1    kardel 
   1651       1.1    kardel 
   1652       1.1    kardel /*
   1653       1.1    kardel  * tokenize - turn a command line into tokens
   1654       1.1    kardel  *
   1655       1.9  christos  * SK: Modified to allow a quoted string
   1656       1.1    kardel  *
   1657       1.1    kardel  * HMS: If the first character of the first token is a ':' then (after
   1658       1.1    kardel  * eating inter-token whitespace) the 2nd token is the rest of the line.
   1659       1.1    kardel  */
   1660       1.1    kardel 
   1661       1.1    kardel static void
   1662       1.1    kardel tokenize(
   1663       1.1    kardel 	const char *line,
   1664       1.1    kardel 	char **tokens,
   1665       1.1    kardel 	int *ntok
   1666       1.1    kardel 	)
   1667       1.1    kardel {
   1668       1.1    kardel 	register const char *cp;
   1669       1.1    kardel 	register char *sp;
   1670       1.1    kardel 	static char tspace[MAXLINE];
   1671       1.1    kardel 
   1672       1.1    kardel 	sp = tspace;
   1673       1.1    kardel 	cp = line;
   1674       1.1    kardel 	for (*ntok = 0; *ntok < MAXTOKENS; (*ntok)++) {
   1675       1.1    kardel 		tokens[*ntok] = sp;
   1676       1.1    kardel 
   1677       1.1    kardel 		/* Skip inter-token whitespace */
   1678       1.1    kardel 		while (ISSPACE(*cp))
   1679       1.1    kardel 		    cp++;
   1680       1.1    kardel 
   1681       1.1    kardel 		/* If we're at EOL we're done */
   1682       1.1    kardel 		if (ISEOL(*cp))
   1683       1.1    kardel 		    break;
   1684       1.1    kardel 
   1685       1.1    kardel 		/* If this is the 2nd token and the first token begins
   1686       1.1    kardel 		 * with a ':', then just grab to EOL.
   1687       1.1    kardel 		 */
   1688       1.1    kardel 
   1689       1.1    kardel 		if (*ntok == 1 && tokens[0][0] == ':') {
   1690       1.1    kardel 			do {
   1691      1.10  christos 				if (sp - tspace >= MAXLINE)
   1692      1.10  christos 					goto toobig;
   1693       1.1    kardel 				*sp++ = *cp++;
   1694       1.1    kardel 			} while (!ISEOL(*cp));
   1695       1.1    kardel 		}
   1696       1.1    kardel 
   1697       1.1    kardel 		/* Check if this token begins with a double quote.
   1698       1.1    kardel 		 * If yes, continue reading till the next double quote
   1699       1.1    kardel 		 */
   1700       1.1    kardel 		else if (*cp == '\"') {
   1701       1.1    kardel 			++cp;
   1702       1.1    kardel 			do {
   1703      1.10  christos 				if (sp - tspace >= MAXLINE)
   1704      1.10  christos 					goto toobig;
   1705       1.1    kardel 				*sp++ = *cp++;
   1706       1.1    kardel 			} while ((*cp != '\"') && !ISEOL(*cp));
   1707       1.1    kardel 			/* HMS: a missing closing " should be an error */
   1708       1.1    kardel 		}
   1709       1.1    kardel 		else {
   1710       1.1    kardel 			do {
   1711      1.10  christos 				if (sp - tspace >= MAXLINE)
   1712      1.10  christos 					goto toobig;
   1713       1.1    kardel 				*sp++ = *cp++;
   1714       1.1    kardel 			} while ((*cp != '\"') && !ISSPACE(*cp) && !ISEOL(*cp));
   1715       1.1    kardel 			/* HMS: Why check for a " in the previous line? */
   1716       1.1    kardel 		}
   1717       1.1    kardel 
   1718      1.10  christos 		if (sp - tspace >= MAXLINE)
   1719      1.10  christos 			goto toobig;
   1720       1.1    kardel 		*sp++ = '\0';
   1721       1.1    kardel 	}
   1722      1.10  christos 	return;
   1723      1.10  christos 
   1724      1.10  christos   toobig:
   1725      1.10  christos 	*ntok = 0;
   1726      1.10  christos 	fprintf(stderr,
   1727      1.10  christos 		"***Line `%s' is too big\n",
   1728      1.10  christos 		line);
   1729      1.10  christos 	return;
   1730       1.1    kardel }
   1731       1.1    kardel 
   1732       1.1    kardel 
   1733       1.1    kardel /*
   1734       1.1    kardel  * getarg - interpret an argument token
   1735       1.1    kardel  */
   1736       1.1    kardel static int
   1737       1.1    kardel getarg(
   1738       1.9  christos 	const char *str,
   1739       1.1    kardel 	int code,
   1740       1.1    kardel 	arg_v *argp
   1741       1.1    kardel 	)
   1742       1.1    kardel {
   1743       1.9  christos 	u_long ul;
   1744       1.1    kardel 
   1745       1.1    kardel 	switch (code & ~OPT) {
   1746       1.9  christos 	case NTP_STR:
   1747       1.1    kardel 		argp->string = str;
   1748       1.1    kardel 		break;
   1749       1.9  christos 
   1750       1.9  christos 	case NTP_ADD:
   1751       1.9  christos 		if (!getnetnum(str, &argp->netnum, NULL, 0))
   1752       1.1    kardel 			return 0;
   1753       1.1    kardel 		break;
   1754       1.9  christos 
   1755       1.9  christos 	case NTP_UINT:
   1756       1.9  christos 		if ('&' == str[0]) {
   1757       1.9  christos 			if (!atouint(&str[1], &ul)) {
   1758       1.9  christos 				fprintf(stderr,
   1759       1.9  christos 					"***Association index `%s' invalid/undecodable\n",
   1760       1.9  christos 					str);
   1761       1.1    kardel 				return 0;
   1762       1.1    kardel 			}
   1763       1.9  christos 			if (0 == numassoc) {
   1764       1.9  christos 				dogetassoc(stdout);
   1765       1.9  christos 				if (0 == numassoc) {
   1766       1.9  christos 					fprintf(stderr,
   1767       1.9  christos 						"***No associations found, `%s' unknown\n",
   1768       1.9  christos 						str);
   1769       1.1    kardel 					return 0;
   1770       1.1    kardel 				}
   1771       1.1    kardel 			}
   1772       1.9  christos 			ul = min(ul, numassoc);
   1773       1.9  christos 			argp->uval = assoc_cache[ul - 1].assid;
   1774       1.1    kardel 			break;
   1775       1.1    kardel 		}
   1776       1.9  christos 		if (!atouint(str, &argp->uval)) {
   1777       1.9  christos 			fprintf(stderr, "***Illegal unsigned value %s\n",
   1778       1.9  christos 				str);
   1779       1.9  christos 			return 0;
   1780       1.1    kardel 		}
   1781       1.9  christos 		break;
   1782       1.1    kardel 
   1783       1.9  christos 	case NTP_INT:
   1784       1.9  christos 		if (!atoint(str, &argp->ival)) {
   1785       1.9  christos 			fprintf(stderr, "***Illegal integer value %s\n",
   1786       1.9  christos 				str);
   1787       1.9  christos 			return 0;
   1788       1.1    kardel 		}
   1789       1.1    kardel 		break;
   1790       1.9  christos 
   1791       1.9  christos 	case IP_VERSION:
   1792       1.9  christos 		if (!strcmp("-6", str)) {
   1793       1.9  christos 			argp->ival = 6;
   1794       1.9  christos 		} else if (!strcmp("-4", str)) {
   1795       1.9  christos 			argp->ival = 4;
   1796       1.9  christos 		} else {
   1797       1.9  christos 			fprintf(stderr, "***Version must be either 4 or 6\n");
   1798       1.1    kardel 			return 0;
   1799       1.1    kardel 		}
   1800       1.1    kardel 		break;
   1801       1.1    kardel 	}
   1802       1.1    kardel 
   1803       1.1    kardel 	return 1;
   1804       1.1    kardel }
   1805       1.1    kardel #endif	/* !BUILD_AS_LIB */
   1806       1.1    kardel 
   1807       1.1    kardel 
   1808       1.1    kardel /*
   1809       1.1    kardel  * findcmd - find a command in a command description table
   1810       1.1    kardel  */
   1811       1.1    kardel static int
   1812       1.1    kardel findcmd(
   1813       1.9  christos 	const char *	str,
   1814       1.9  christos 	struct xcmd *	clist1,
   1815       1.9  christos 	struct xcmd *	clist2,
   1816       1.9  christos 	struct xcmd **	cmd
   1817       1.1    kardel 	)
   1818       1.1    kardel {
   1819       1.9  christos 	struct xcmd *cl;
   1820      1.14  christos 	size_t clen;
   1821       1.1    kardel 	int nmatch;
   1822       1.1    kardel 	struct xcmd *nearmatch = NULL;
   1823       1.1    kardel 	struct xcmd *clist;
   1824       1.1    kardel 
   1825       1.1    kardel 	clen = strlen(str);
   1826       1.1    kardel 	nmatch = 0;
   1827       1.1    kardel 	if (clist1 != 0)
   1828       1.1    kardel 	    clist = clist1;
   1829       1.1    kardel 	else if (clist2 != 0)
   1830       1.1    kardel 	    clist = clist2;
   1831       1.1    kardel 	else
   1832       1.1    kardel 	    return 0;
   1833       1.1    kardel 
   1834       1.1    kardel     again:
   1835       1.1    kardel 	for (cl = clist; cl->keyword != 0; cl++) {
   1836       1.1    kardel 		/* do a first character check, for efficiency */
   1837       1.1    kardel 		if (*str != *(cl->keyword))
   1838       1.1    kardel 		    continue;
   1839       1.1    kardel 		if (strncmp(str, cl->keyword, (unsigned)clen) == 0) {
   1840       1.1    kardel 			/*
   1841       1.1    kardel 			 * Could be extact match, could be approximate.
   1842       1.1    kardel 			 * Is exact if the length of the keyword is the
   1843       1.1    kardel 			 * same as the str.
   1844       1.1    kardel 			 */
   1845       1.1    kardel 			if (*((cl->keyword) + clen) == '\0') {
   1846       1.1    kardel 				*cmd = cl;
   1847       1.1    kardel 				return 1;
   1848       1.1    kardel 			}
   1849       1.1    kardel 			nmatch++;
   1850       1.1    kardel 			nearmatch = cl;
   1851       1.1    kardel 		}
   1852       1.1    kardel 	}
   1853       1.1    kardel 
   1854       1.1    kardel 	/*
   1855       1.1    kardel 	 * See if there is more to do.  If so, go again.  Sorry about the
   1856       1.1    kardel 	 * goto, too much looking at BSD sources...
   1857       1.1    kardel 	 */
   1858       1.1    kardel 	if (clist == clist1 && clist2 != 0) {
   1859       1.1    kardel 		clist = clist2;
   1860       1.1    kardel 		goto again;
   1861       1.1    kardel 	}
   1862       1.1    kardel 
   1863       1.1    kardel 	/*
   1864       1.1    kardel 	 * If we got extactly 1 near match, use it, else return number
   1865       1.1    kardel 	 * of matches.
   1866       1.1    kardel 	 */
   1867       1.1    kardel 	if (nmatch == 1) {
   1868       1.1    kardel 		*cmd = nearmatch;
   1869       1.1    kardel 		return 1;
   1870       1.1    kardel 	}
   1871       1.1    kardel 	return nmatch;
   1872       1.1    kardel }
   1873       1.1    kardel 
   1874       1.1    kardel 
   1875       1.1    kardel /*
   1876       1.1    kardel  * getnetnum - given a host name, return its net number
   1877       1.1    kardel  *	       and (optional) full name
   1878       1.1    kardel  */
   1879       1.1    kardel int
   1880       1.1    kardel getnetnum(
   1881       1.1    kardel 	const char *hname,
   1882       1.1    kardel 	sockaddr_u *num,
   1883       1.1    kardel 	char *fullhost,
   1884       1.1    kardel 	int af
   1885       1.1    kardel 	)
   1886       1.1    kardel {
   1887       1.1    kardel 	struct addrinfo hints, *ai = NULL;
   1888       1.1    kardel 
   1889       1.4    kardel 	ZERO(hints);
   1890       1.1    kardel 	hints.ai_flags = AI_CANONNAME;
   1891       1.1    kardel #ifdef AI_ADDRCONFIG
   1892       1.1    kardel 	hints.ai_flags |= AI_ADDRCONFIG;
   1893       1.1    kardel #endif
   1894       1.9  christos 
   1895       1.4    kardel 	/*
   1896       1.4    kardel 	 * decodenetnum only works with addresses, but handles syntax
   1897       1.4    kardel 	 * that getaddrinfo doesn't:  [2001::1]:1234
   1898       1.4    kardel 	 */
   1899       1.1    kardel 	if (decodenetnum(hname, num)) {
   1900       1.4    kardel 		if (fullhost != NULL)
   1901       1.4    kardel 			getnameinfo(&num->sa, SOCKLEN(num), fullhost,
   1902       1.4    kardel 				    LENHOSTNAME, NULL, 0, 0);
   1903       1.1    kardel 		return 1;
   1904       1.1    kardel 	} else if (getaddrinfo(hname, "ntp", &hints, &ai) == 0) {
   1905       1.9  christos 		INSIST(sizeof(*num) >= ai->ai_addrlen);
   1906       1.4    kardel 		memcpy(num, ai->ai_addr, ai->ai_addrlen);
   1907       1.4    kardel 		if (fullhost != NULL) {
   1908       1.9  christos 			if (ai->ai_canonname != NULL)
   1909       1.9  christos 				strlcpy(fullhost, ai->ai_canonname,
   1910       1.4    kardel 					LENHOSTNAME);
   1911       1.9  christos 			else
   1912       1.4    kardel 				getnameinfo(&num->sa, SOCKLEN(num),
   1913       1.4    kardel 					    fullhost, LENHOSTNAME, NULL,
   1914       1.4    kardel 					    0, 0);
   1915       1.4    kardel 		}
   1916       1.9  christos 		freeaddrinfo(ai);
   1917       1.1    kardel 		return 1;
   1918       1.1    kardel 	}
   1919       1.4    kardel 	fprintf(stderr, "***Can't find host %s\n", hname);
   1920       1.4    kardel 
   1921       1.4    kardel 	return 0;
   1922       1.1    kardel }
   1923       1.1    kardel 
   1924       1.9  christos 
   1925       1.1    kardel /*
   1926       1.1    kardel  * nntohost - convert network number to host name.  This routine enforces
   1927       1.1    kardel  *	       the showhostnames setting.
   1928       1.1    kardel  */
   1929       1.4    kardel const char *
   1930       1.1    kardel nntohost(
   1931       1.1    kardel 	sockaddr_u *netnum
   1932       1.1    kardel 	)
   1933       1.1    kardel {
   1934       1.4    kardel 	return nntohost_col(netnum, LIB_BUFLENGTH - 1, FALSE);
   1935       1.4    kardel }
   1936       1.4    kardel 
   1937       1.4    kardel 
   1938       1.4    kardel /*
   1939       1.4    kardel  * nntohost_col - convert network number to host name in fixed width.
   1940       1.4    kardel  *		  This routine enforces the showhostnames setting.
   1941       1.4    kardel  *		  When displaying hostnames longer than the width,
   1942       1.4    kardel  *		  the first part of the hostname is displayed.  When
   1943       1.4    kardel  *		  displaying numeric addresses longer than the width,
   1944       1.4    kardel  *		  Such as IPv6 addresses, the caller decides whether
   1945       1.4    kardel  *		  the first or last of the numeric address is used.
   1946       1.4    kardel  */
   1947       1.4    kardel const char *
   1948       1.4    kardel nntohost_col(
   1949       1.4    kardel 	sockaddr_u *	addr,
   1950       1.4    kardel 	size_t		width,
   1951       1.4    kardel 	int		preserve_lowaddrbits
   1952       1.4    kardel 	)
   1953       1.4    kardel {
   1954       1.4    kardel 	const char *	out;
   1955       1.4    kardel 
   1956       1.9  christos 	if (!showhostnames || SOCK_UNSPEC(addr)) {
   1957       1.4    kardel 		if (preserve_lowaddrbits)
   1958       1.4    kardel 			out = trunc_left(stoa(addr), width);
   1959       1.4    kardel 		else
   1960       1.4    kardel 			out = trunc_right(stoa(addr), width);
   1961       1.4    kardel 	} else if (ISREFCLOCKADR(addr)) {
   1962       1.4    kardel 		out = refnumtoa(addr);
   1963       1.4    kardel 	} else {
   1964       1.4    kardel 		out = trunc_right(socktohost(addr), width);
   1965       1.4    kardel 	}
   1966       1.4    kardel 	return out;
   1967       1.1    kardel }
   1968       1.1    kardel 
   1969       1.1    kardel 
   1970       1.1    kardel /*
   1971       1.9  christos  * nntohostp() is the same as nntohost() plus a :port suffix
   1972       1.9  christos  */
   1973       1.9  christos const char *
   1974       1.9  christos nntohostp(
   1975       1.9  christos 	sockaddr_u *netnum
   1976       1.9  christos 	)
   1977       1.9  christos {
   1978       1.9  christos 	const char *	hostn;
   1979       1.9  christos 	char *		buf;
   1980       1.9  christos 
   1981       1.9  christos 	if (!showhostnames || SOCK_UNSPEC(netnum))
   1982       1.9  christos 		return sptoa(netnum);
   1983       1.9  christos 	else if (ISREFCLOCKADR(netnum))
   1984       1.9  christos 		return refnumtoa(netnum);
   1985       1.9  christos 
   1986       1.9  christos 	hostn = socktohost(netnum);
   1987       1.9  christos 	LIB_GETBUF(buf);
   1988       1.9  christos 	snprintf(buf, LIB_BUFLENGTH, "%s:%u", hostn, SRCPORT(netnum));
   1989       1.9  christos 
   1990       1.9  christos 	return buf;
   1991       1.9  christos }
   1992       1.9  christos 
   1993       1.9  christos /*
   1994       1.1    kardel  * rtdatetolfp - decode an RT-11 date into an l_fp
   1995       1.1    kardel  */
   1996       1.1    kardel static int
   1997       1.1    kardel rtdatetolfp(
   1998       1.1    kardel 	char *str,
   1999       1.1    kardel 	l_fp *lfp
   2000       1.1    kardel 	)
   2001       1.1    kardel {
   2002       1.1    kardel 	register char *cp;
   2003       1.1    kardel 	register int i;
   2004       1.1    kardel 	struct calendar cal;
   2005       1.1    kardel 	char buf[4];
   2006       1.1    kardel 
   2007       1.1    kardel 	cal.yearday = 0;
   2008       1.1    kardel 
   2009       1.1    kardel 	/*
   2010       1.1    kardel 	 * An RT-11 date looks like:
   2011       1.1    kardel 	 *
   2012       1.1    kardel 	 * d[d]-Mth-y[y] hh:mm:ss
   2013       1.1    kardel 	 *
   2014       1.1    kardel 	 * (No docs, but assume 4-digit years are also legal...)
   2015       1.1    kardel 	 *
   2016       1.1    kardel 	 * d[d]-Mth-y[y[y[y]]] hh:mm:ss
   2017       1.1    kardel 	 */
   2018       1.1    kardel 	cp = str;
   2019       1.1    kardel 	if (!isdigit((int)*cp)) {
   2020       1.1    kardel 		if (*cp == '-') {
   2021       1.1    kardel 			/*
   2022       1.1    kardel 			 * Catch special case
   2023       1.1    kardel 			 */
   2024       1.1    kardel 			L_CLR(lfp);
   2025       1.1    kardel 			return 1;
   2026       1.1    kardel 		}
   2027       1.1    kardel 		return 0;
   2028       1.1    kardel 	}
   2029       1.1    kardel 
   2030       1.1    kardel 	cal.monthday = (u_char) (*cp++ - '0');	/* ascii dependent */
   2031       1.1    kardel 	if (isdigit((int)*cp)) {
   2032       1.1    kardel 		cal.monthday = (u_char)((cal.monthday << 3) + (cal.monthday << 1));
   2033       1.1    kardel 		cal.monthday = (u_char)(cal.monthday + *cp++ - '0');
   2034       1.1    kardel 	}
   2035       1.1    kardel 
   2036       1.1    kardel 	if (*cp++ != '-')
   2037       1.1    kardel 	    return 0;
   2038       1.9  christos 
   2039       1.1    kardel 	for (i = 0; i < 3; i++)
   2040       1.1    kardel 	    buf[i] = *cp++;
   2041       1.1    kardel 	buf[3] = '\0';
   2042       1.1    kardel 
   2043       1.1    kardel 	for (i = 0; i < 12; i++)
   2044       1.1    kardel 	    if (STREQ(buf, months[i]))
   2045       1.1    kardel 		break;
   2046       1.1    kardel 	if (i == 12)
   2047       1.1    kardel 	    return 0;
   2048       1.1    kardel 	cal.month = (u_char)(i + 1);
   2049       1.1    kardel 
   2050       1.1    kardel 	if (*cp++ != '-')
   2051       1.1    kardel 	    return 0;
   2052       1.9  christos 
   2053       1.1    kardel 	if (!isdigit((int)*cp))
   2054       1.1    kardel 	    return 0;
   2055       1.1    kardel 	cal.year = (u_short)(*cp++ - '0');
   2056       1.1    kardel 	if (isdigit((int)*cp)) {
   2057       1.1    kardel 		cal.year = (u_short)((cal.year << 3) + (cal.year << 1));
   2058       1.1    kardel 		cal.year = (u_short)(*cp++ - '0');
   2059       1.1    kardel 	}
   2060       1.1    kardel 	if (isdigit((int)*cp)) {
   2061       1.1    kardel 		cal.year = (u_short)((cal.year << 3) + (cal.year << 1));
   2062       1.1    kardel 		cal.year = (u_short)(cal.year + *cp++ - '0');
   2063       1.1    kardel 	}
   2064       1.1    kardel 	if (isdigit((int)*cp)) {
   2065       1.1    kardel 		cal.year = (u_short)((cal.year << 3) + (cal.year << 1));
   2066       1.1    kardel 		cal.year = (u_short)(cal.year + *cp++ - '0');
   2067       1.1    kardel 	}
   2068       1.1    kardel 
   2069       1.1    kardel 	/*
   2070       1.1    kardel 	 * Catch special case.  If cal.year == 0 this is a zero timestamp.
   2071       1.1    kardel 	 */
   2072       1.1    kardel 	if (cal.year == 0) {
   2073       1.1    kardel 		L_CLR(lfp);
   2074       1.1    kardel 		return 1;
   2075       1.1    kardel 	}
   2076       1.1    kardel 
   2077       1.1    kardel 	if (*cp++ != ' ' || !isdigit((int)*cp))
   2078       1.1    kardel 	    return 0;
   2079       1.1    kardel 	cal.hour = (u_char)(*cp++ - '0');
   2080       1.1    kardel 	if (isdigit((int)*cp)) {
   2081       1.1    kardel 		cal.hour = (u_char)((cal.hour << 3) + (cal.hour << 1));
   2082       1.1    kardel 		cal.hour = (u_char)(cal.hour + *cp++ - '0');
   2083       1.1    kardel 	}
   2084       1.1    kardel 
   2085       1.1    kardel 	if (*cp++ != ':' || !isdigit((int)*cp))
   2086       1.1    kardel 	    return 0;
   2087       1.1    kardel 	cal.minute = (u_char)(*cp++ - '0');
   2088       1.1    kardel 	if (isdigit((int)*cp)) {
   2089       1.1    kardel 		cal.minute = (u_char)((cal.minute << 3) + (cal.minute << 1));
   2090       1.1    kardel 		cal.minute = (u_char)(cal.minute + *cp++ - '0');
   2091       1.1    kardel 	}
   2092       1.1    kardel 
   2093       1.1    kardel 	if (*cp++ != ':' || !isdigit((int)*cp))
   2094       1.1    kardel 	    return 0;
   2095       1.1    kardel 	cal.second = (u_char)(*cp++ - '0');
   2096       1.1    kardel 	if (isdigit((int)*cp)) {
   2097       1.1    kardel 		cal.second = (u_char)((cal.second << 3) + (cal.second << 1));
   2098       1.1    kardel 		cal.second = (u_char)(cal.second + *cp++ - '0');
   2099       1.1    kardel 	}
   2100       1.1    kardel 
   2101       1.1    kardel 	/*
   2102       1.1    kardel 	 * For RT-11, 1972 seems to be the pivot year
   2103       1.1    kardel 	 */
   2104       1.1    kardel 	if (cal.year < 72)
   2105       1.1    kardel 		cal.year += 2000;
   2106       1.1    kardel 	if (cal.year < 100)
   2107       1.1    kardel 		cal.year += 1900;
   2108       1.1    kardel 
   2109       1.1    kardel 	lfp->l_ui = caltontp(&cal);
   2110       1.1    kardel 	lfp->l_uf = 0;
   2111       1.1    kardel 	return 1;
   2112       1.1    kardel }
   2113       1.1    kardel 
   2114       1.1    kardel 
   2115       1.1    kardel /*
   2116       1.1    kardel  * decodets - decode a timestamp into an l_fp format number, with
   2117       1.1    kardel  *	      consideration of fuzzball formats.
   2118       1.1    kardel  */
   2119       1.1    kardel int
   2120       1.1    kardel decodets(
   2121       1.1    kardel 	char *str,
   2122       1.1    kardel 	l_fp *lfp
   2123       1.1    kardel 	)
   2124       1.1    kardel {
   2125       1.4    kardel 	char *cp;
   2126       1.4    kardel 	char buf[30];
   2127       1.4    kardel 	size_t b;
   2128       1.4    kardel 
   2129       1.1    kardel 	/*
   2130       1.1    kardel 	 * If it starts with a 0x, decode as hex.
   2131       1.1    kardel 	 */
   2132       1.1    kardel 	if (*str == '0' && (*(str+1) == 'x' || *(str+1) == 'X'))
   2133       1.1    kardel 		return hextolfp(str+2, lfp);
   2134       1.1    kardel 
   2135       1.1    kardel 	/*
   2136       1.1    kardel 	 * If it starts with a '"', try it as an RT-11 date.
   2137       1.1    kardel 	 */
   2138       1.1    kardel 	if (*str == '"') {
   2139       1.4    kardel 		cp = str + 1;
   2140       1.4    kardel 		b = 0;
   2141       1.4    kardel 		while ('"' != *cp && '\0' != *cp &&
   2142       1.4    kardel 		       b < COUNTOF(buf) - 1)
   2143       1.4    kardel 			buf[b++] = *cp++;
   2144       1.4    kardel 		buf[b] = '\0';
   2145       1.1    kardel 		return rtdatetolfp(buf, lfp);
   2146       1.1    kardel 	}
   2147       1.1    kardel 
   2148       1.1    kardel 	/*
   2149       1.1    kardel 	 * Might still be hex.  Check out the first character.  Talk
   2150       1.1    kardel 	 * about heuristics!
   2151       1.1    kardel 	 */
   2152       1.1    kardel 	if ((*str >= 'A' && *str <= 'F') || (*str >= 'a' && *str <= 'f'))
   2153       1.1    kardel 		return hextolfp(str, lfp);
   2154       1.1    kardel 
   2155       1.1    kardel 	/*
   2156       1.1    kardel 	 * Try it as a decimal.  If this fails, try as an unquoted
   2157       1.1    kardel 	 * RT-11 date.  This code should go away eventually.
   2158       1.1    kardel 	 */
   2159       1.1    kardel 	if (atolfp(str, lfp))
   2160       1.1    kardel 		return 1;
   2161       1.1    kardel 
   2162       1.1    kardel 	return rtdatetolfp(str, lfp);
   2163       1.1    kardel }
   2164       1.1    kardel 
   2165       1.1    kardel 
   2166       1.1    kardel /*
   2167       1.1    kardel  * decodetime - decode a time value.  It should be in milliseconds
   2168       1.1    kardel  */
   2169       1.1    kardel int
   2170       1.1    kardel decodetime(
   2171       1.1    kardel 	char *str,
   2172       1.1    kardel 	l_fp *lfp
   2173       1.1    kardel 	)
   2174       1.1    kardel {
   2175       1.1    kardel 	return mstolfp(str, lfp);
   2176       1.1    kardel }
   2177       1.1    kardel 
   2178       1.1    kardel 
   2179       1.1    kardel /*
   2180       1.1    kardel  * decodeint - decode an integer
   2181       1.1    kardel  */
   2182       1.1    kardel int
   2183       1.1    kardel decodeint(
   2184       1.1    kardel 	char *str,
   2185       1.1    kardel 	long *val
   2186       1.1    kardel 	)
   2187       1.1    kardel {
   2188       1.1    kardel 	if (*str == '0') {
   2189       1.1    kardel 		if (*(str+1) == 'x' || *(str+1) == 'X')
   2190       1.1    kardel 		    return hextoint(str+2, (u_long *)val);
   2191       1.1    kardel 		return octtoint(str, (u_long *)val);
   2192       1.1    kardel 	}
   2193       1.1    kardel 	return atoint(str, val);
   2194       1.1    kardel }
   2195       1.1    kardel 
   2196       1.1    kardel 
   2197       1.1    kardel /*
   2198       1.1    kardel  * decodeuint - decode an unsigned integer
   2199       1.1    kardel  */
   2200       1.1    kardel int
   2201       1.1    kardel decodeuint(
   2202       1.1    kardel 	char *str,
   2203       1.1    kardel 	u_long *val
   2204       1.1    kardel 	)
   2205       1.1    kardel {
   2206       1.1    kardel 	if (*str == '0') {
   2207       1.1    kardel 		if (*(str + 1) == 'x' || *(str + 1) == 'X')
   2208       1.1    kardel 			return (hextoint(str + 2, val));
   2209       1.1    kardel 		return (octtoint(str, val));
   2210       1.1    kardel 	}
   2211       1.1    kardel 	return (atouint(str, val));
   2212       1.1    kardel }
   2213       1.1    kardel 
   2214       1.1    kardel 
   2215       1.1    kardel /*
   2216       1.1    kardel  * decodearr - decode an array of time values
   2217       1.1    kardel  */
   2218       1.1    kardel static int
   2219       1.1    kardel decodearr(
   2220       1.1    kardel 	char *str,
   2221       1.1    kardel 	int *narr,
   2222       1.1    kardel 	l_fp *lfparr
   2223       1.1    kardel 	)
   2224       1.1    kardel {
   2225       1.1    kardel 	register char *cp, *bp;
   2226       1.1    kardel 	register l_fp *lfp;
   2227       1.1    kardel 	char buf[60];
   2228       1.1    kardel 
   2229       1.1    kardel 	lfp = lfparr;
   2230       1.1    kardel 	cp = str;
   2231       1.1    kardel 	*narr = 0;
   2232       1.1    kardel 
   2233       1.1    kardel 	while (*narr < 8) {
   2234       1.1    kardel 		while (isspace((int)*cp))
   2235       1.1    kardel 		    cp++;
   2236       1.1    kardel 		if (*cp == '\0')
   2237       1.1    kardel 		    break;
   2238       1.1    kardel 
   2239       1.1    kardel 		bp = buf;
   2240       1.1    kardel 		while (!isspace((int)*cp) && *cp != '\0')
   2241       1.1    kardel 		    *bp++ = *cp++;
   2242       1.1    kardel 		*bp++ = '\0';
   2243       1.1    kardel 
   2244       1.1    kardel 		if (!decodetime(buf, lfp))
   2245       1.1    kardel 		    return 0;
   2246       1.1    kardel 		(*narr)++;
   2247       1.1    kardel 		lfp++;
   2248       1.1    kardel 	}
   2249       1.1    kardel 	return 1;
   2250       1.1    kardel }
   2251       1.1    kardel 
   2252       1.1    kardel 
   2253       1.1    kardel /*
   2254       1.1    kardel  * Finally, the built in command handlers
   2255       1.1    kardel  */
   2256       1.1    kardel 
   2257       1.1    kardel /*
   2258       1.1    kardel  * help - tell about commands, or details of a particular command
   2259       1.1    kardel  */
   2260       1.1    kardel static void
   2261       1.1    kardel help(
   2262       1.1    kardel 	struct parse *pcmd,
   2263       1.1    kardel 	FILE *fp
   2264       1.1    kardel 	)
   2265       1.1    kardel {
   2266       1.1    kardel 	struct xcmd *xcp = NULL;	/* quiet warning */
   2267       1.9  christos 	const char *cmd;
   2268       1.1    kardel 	const char *list[100];
   2269       1.4    kardel 	size_t word, words;
   2270       1.4    kardel 	size_t row, rows;
   2271       1.4    kardel 	size_t col, cols;
   2272       1.4    kardel 	size_t length;
   2273       1.1    kardel 
   2274       1.1    kardel 	if (pcmd->nargs == 0) {
   2275       1.1    kardel 		words = 0;
   2276       1.4    kardel 		for (xcp = builtins; xcp->keyword != NULL; xcp++) {
   2277       1.9  christos 			if (*(xcp->keyword) != '?' &&
   2278       1.9  christos 			    words < COUNTOF(list))
   2279       1.1    kardel 				list[words++] = xcp->keyword;
   2280       1.1    kardel 		}
   2281       1.4    kardel 		for (xcp = opcmds; xcp->keyword != NULL; xcp++)
   2282       1.9  christos 			if (words < COUNTOF(list))
   2283       1.9  christos 				list[words++] = xcp->keyword;
   2284       1.1    kardel 
   2285       1.9  christos 		qsort((void *)list, words, sizeof(list[0]), helpsort);
   2286       1.1    kardel 		col = 0;
   2287       1.1    kardel 		for (word = 0; word < words; word++) {
   2288       1.9  christos 			length = strlen(list[word]);
   2289       1.4    kardel 			col = max(col, length);
   2290       1.1    kardel 		}
   2291       1.1    kardel 
   2292       1.1    kardel 		cols = SCREENWIDTH / ++col;
   2293       1.1    kardel 		rows = (words + cols - 1) / cols;
   2294       1.1    kardel 
   2295       1.4    kardel 		fprintf(fp, "ntpq commands:\n");
   2296       1.1    kardel 
   2297       1.1    kardel 		for (row = 0; row < rows; row++) {
   2298       1.4    kardel 			for (word = row; word < words; word += rows)
   2299       1.9  christos 				fprintf(fp, "%-*.*s", (int)col,
   2300       1.9  christos 					(int)col - 1, list[word]);
   2301       1.4    kardel 			fprintf(fp, "\n");
   2302       1.1    kardel 		}
   2303       1.1    kardel 	} else {
   2304       1.1    kardel 		cmd = pcmd->argval[0].string;
   2305       1.1    kardel 		words = findcmd(cmd, builtins, opcmds, &xcp);
   2306       1.1    kardel 		if (words == 0) {
   2307       1.4    kardel 			fprintf(stderr,
   2308       1.4    kardel 				"Command `%s' is unknown\n", cmd);
   2309       1.1    kardel 			return;
   2310       1.1    kardel 		} else if (words >= 2) {
   2311       1.4    kardel 			fprintf(stderr,
   2312       1.4    kardel 				"Command `%s' is ambiguous\n", cmd);
   2313       1.1    kardel 			return;
   2314       1.1    kardel 		}
   2315       1.4    kardel 		fprintf(fp, "function: %s\n", xcp->comment);
   2316       1.1    kardel 		printusage(xcp, fp);
   2317       1.1    kardel 	}
   2318       1.1    kardel }
   2319       1.1    kardel 
   2320       1.1    kardel 
   2321       1.1    kardel /*
   2322       1.1    kardel  * helpsort - do hostname qsort comparisons
   2323       1.1    kardel  */
   2324       1.1    kardel static int
   2325       1.1    kardel helpsort(
   2326       1.1    kardel 	const void *t1,
   2327       1.1    kardel 	const void *t2
   2328       1.1    kardel 	)
   2329       1.1    kardel {
   2330       1.4    kardel 	const char * const *	name1 = t1;
   2331       1.4    kardel 	const char * const *	name2 = t2;
   2332       1.1    kardel 
   2333       1.1    kardel 	return strcmp(*name1, *name2);
   2334       1.1    kardel }
   2335       1.1    kardel 
   2336       1.1    kardel 
   2337       1.1    kardel /*
   2338       1.1    kardel  * printusage - print usage information for a command
   2339       1.1    kardel  */
   2340       1.1    kardel static void
   2341       1.1    kardel printusage(
   2342       1.1    kardel 	struct xcmd *xcp,
   2343       1.1    kardel 	FILE *fp
   2344       1.1    kardel 	)
   2345       1.1    kardel {
   2346       1.1    kardel 	register int i;
   2347       1.1    kardel 
   2348       1.9  christos 	/* XXX: Do we need to warn about extra args here too? */
   2349       1.9  christos 
   2350       1.1    kardel 	(void) fprintf(fp, "usage: %s", xcp->keyword);
   2351       1.1    kardel 	for (i = 0; i < MAXARGS && xcp->arg[i] != NO; i++) {
   2352       1.1    kardel 		if (xcp->arg[i] & OPT)
   2353       1.1    kardel 		    (void) fprintf(fp, " [ %s ]", xcp->desc[i]);
   2354       1.1    kardel 		else
   2355       1.1    kardel 		    (void) fprintf(fp, " %s", xcp->desc[i]);
   2356       1.1    kardel 	}
   2357       1.1    kardel 	(void) fprintf(fp, "\n");
   2358       1.1    kardel }
   2359       1.1    kardel 
   2360       1.1    kardel 
   2361       1.1    kardel /*
   2362       1.1    kardel  * timeout - set time out time
   2363       1.1    kardel  */
   2364       1.1    kardel static void
   2365       1.1    kardel timeout(
   2366       1.1    kardel 	struct parse *pcmd,
   2367       1.1    kardel 	FILE *fp
   2368       1.1    kardel 	)
   2369       1.1    kardel {
   2370       1.1    kardel 	int val;
   2371       1.1    kardel 
   2372       1.1    kardel 	if (pcmd->nargs == 0) {
   2373       1.1    kardel 		val = (int)tvout.tv_sec * 1000 + tvout.tv_usec / 1000;
   2374       1.1    kardel 		(void) fprintf(fp, "primary timeout %d ms\n", val);
   2375       1.1    kardel 	} else {
   2376       1.1    kardel 		tvout.tv_sec = pcmd->argval[0].uval / 1000;
   2377       1.1    kardel 		tvout.tv_usec = (pcmd->argval[0].uval - ((long)tvout.tv_sec * 1000))
   2378       1.1    kardel 			* 1000;
   2379       1.1    kardel 	}
   2380       1.1    kardel }
   2381       1.1    kardel 
   2382       1.1    kardel 
   2383       1.1    kardel /*
   2384       1.1    kardel  * auth_delay - set delay for auth requests
   2385       1.1    kardel  */
   2386       1.1    kardel static void
   2387       1.1    kardel auth_delay(
   2388       1.1    kardel 	struct parse *pcmd,
   2389       1.1    kardel 	FILE *fp
   2390       1.1    kardel 	)
   2391       1.1    kardel {
   2392       1.1    kardel 	int isneg;
   2393       1.1    kardel 	u_long val;
   2394       1.1    kardel 
   2395       1.1    kardel 	if (pcmd->nargs == 0) {
   2396       1.1    kardel 		val = delay_time.l_ui * 1000 + delay_time.l_uf / 4294967;
   2397       1.1    kardel 		(void) fprintf(fp, "delay %lu ms\n", val);
   2398       1.1    kardel 	} else {
   2399       1.1    kardel 		if (pcmd->argval[0].ival < 0) {
   2400       1.1    kardel 			isneg = 1;
   2401       1.1    kardel 			val = (u_long)(-pcmd->argval[0].ival);
   2402       1.1    kardel 		} else {
   2403       1.1    kardel 			isneg = 0;
   2404       1.1    kardel 			val = (u_long)pcmd->argval[0].ival;
   2405       1.1    kardel 		}
   2406       1.1    kardel 
   2407       1.1    kardel 		delay_time.l_ui = val / 1000;
   2408       1.1    kardel 		val %= 1000;
   2409       1.1    kardel 		delay_time.l_uf = val * 4294967;	/* 2**32/1000 */
   2410       1.1    kardel 
   2411       1.1    kardel 		if (isneg)
   2412       1.1    kardel 		    L_NEG(&delay_time);
   2413       1.1    kardel 	}
   2414       1.1    kardel }
   2415       1.1    kardel 
   2416       1.1    kardel 
   2417       1.1    kardel /*
   2418       1.1    kardel  * host - set the host we are dealing with.
   2419       1.1    kardel  */
   2420       1.1    kardel static void
   2421       1.1    kardel host(
   2422       1.1    kardel 	struct parse *pcmd,
   2423       1.1    kardel 	FILE *fp
   2424       1.1    kardel 	)
   2425       1.1    kardel {
   2426       1.1    kardel 	int i;
   2427       1.1    kardel 
   2428       1.1    kardel 	if (pcmd->nargs == 0) {
   2429       1.1    kardel 		if (havehost)
   2430       1.1    kardel 			(void) fprintf(fp, "current host is %s\n",
   2431       1.1    kardel 					   currenthost);
   2432       1.1    kardel 		else
   2433       1.1    kardel 			(void) fprintf(fp, "no current host\n");
   2434       1.1    kardel 		return;
   2435       1.1    kardel 	}
   2436       1.1    kardel 
   2437       1.1    kardel 	i = 0;
   2438       1.1    kardel 	ai_fam_templ = ai_fam_default;
   2439       1.1    kardel 	if (pcmd->nargs == 2) {
   2440       1.1    kardel 		if (!strcmp("-4", pcmd->argval[i].string))
   2441       1.1    kardel 			ai_fam_templ = AF_INET;
   2442       1.1    kardel 		else if (!strcmp("-6", pcmd->argval[i].string))
   2443       1.1    kardel 			ai_fam_templ = AF_INET6;
   2444       1.9  christos 		else
   2445       1.9  christos 			goto no_change;
   2446       1.1    kardel 		i = 1;
   2447       1.1    kardel 	}
   2448       1.9  christos 	if (openhost(pcmd->argval[i].string, ai_fam_templ)) {
   2449       1.9  christos 		fprintf(fp, "current host set to %s\n", currenthost);
   2450       1.1    kardel 	} else {
   2451       1.9  christos     no_change:
   2452       1.1    kardel 		if (havehost)
   2453       1.9  christos 			fprintf(fp, "current host remains %s\n",
   2454       1.9  christos 				currenthost);
   2455       1.1    kardel 		else
   2456       1.9  christos 			fprintf(fp, "still no current host\n");
   2457       1.1    kardel 	}
   2458       1.1    kardel }
   2459       1.1    kardel 
   2460       1.1    kardel 
   2461       1.1    kardel /*
   2462       1.1    kardel  * poll - do one (or more) polls of the host via NTP
   2463       1.1    kardel  */
   2464       1.1    kardel /*ARGSUSED*/
   2465       1.1    kardel static void
   2466       1.1    kardel ntp_poll(
   2467       1.1    kardel 	struct parse *pcmd,
   2468       1.1    kardel 	FILE *fp
   2469       1.1    kardel 	)
   2470       1.1    kardel {
   2471       1.1    kardel 	(void) fprintf(fp, "poll not implemented yet\n");
   2472       1.1    kardel }
   2473       1.1    kardel 
   2474       1.1    kardel 
   2475       1.1    kardel /*
   2476      1.15  christos  * showdrefid2str - return a string explanation of the value of drefid
   2477      1.15  christos  */
   2478      1.15  christos static const char *
   2479      1.15  christos showdrefid2str(void)
   2480      1.15  christos {
   2481      1.15  christos 	switch (drefid) {
   2482      1.15  christos 	    case REFID_HASH:
   2483      1.15  christos 	    	return "hash";
   2484      1.15  christos 	    case REFID_IPV4:
   2485      1.15  christos 	    	return "ipv4";
   2486      1.15  christos 	    default:
   2487      1.15  christos 	    	return "Unknown";
   2488      1.15  christos 	}
   2489      1.15  christos }
   2490      1.15  christos 
   2491      1.15  christos 
   2492      1.15  christos /*
   2493      1.15  christos  * drefid - display/change "display hash"
   2494      1.15  christos  */
   2495      1.15  christos static void
   2496      1.15  christos showdrefid(
   2497      1.15  christos 	struct parse *pcmd,
   2498      1.15  christos 	FILE *fp
   2499      1.15  christos 	)
   2500      1.15  christos {
   2501      1.15  christos 	if (pcmd->nargs == 0) {
   2502      1.15  christos 		(void) fprintf(fp, "drefid value is %s\n", showdrefid2str());
   2503      1.15  christos 		return;
   2504      1.15  christos 	} else if (STREQ(pcmd->argval[0].string, "hash")) {
   2505      1.15  christos 		drefid = REFID_HASH;
   2506      1.15  christos 	} else if (STREQ(pcmd->argval[0].string, "ipv4")) {
   2507      1.15  christos 		drefid = REFID_IPV4;
   2508      1.15  christos 	} else {
   2509      1.15  christos 		(void) fprintf(fp, "What?\n");
   2510      1.15  christos 		return;
   2511      1.15  christos 	}
   2512      1.15  christos 	(void) fprintf(fp, "drefid value set to %s\n", showdrefid2str());
   2513      1.15  christos }
   2514      1.15  christos 
   2515      1.15  christos 
   2516      1.15  christos /*
   2517       1.1    kardel  * keyid - get a keyid to use for authenticating requests
   2518       1.1    kardel  */
   2519       1.1    kardel static void
   2520       1.1    kardel keyid(
   2521       1.1    kardel 	struct parse *pcmd,
   2522       1.1    kardel 	FILE *fp
   2523       1.1    kardel 	)
   2524       1.1    kardel {
   2525       1.1    kardel 	if (pcmd->nargs == 0) {
   2526       1.1    kardel 		if (info_auth_keyid == 0)
   2527       1.1    kardel 		    (void) fprintf(fp, "no keyid defined\n");
   2528       1.1    kardel 		else
   2529       1.1    kardel 		    (void) fprintf(fp, "keyid is %lu\n", (u_long)info_auth_keyid);
   2530       1.1    kardel 	} else {
   2531       1.1    kardel 		/* allow zero so that keyid can be cleared. */
   2532       1.1    kardel 		if(pcmd->argval[0].uval > NTP_MAXKEY)
   2533       1.1    kardel 		    (void) fprintf(fp, "Invalid key identifier\n");
   2534       1.1    kardel 		info_auth_keyid = pcmd->argval[0].uval;
   2535       1.1    kardel 	}
   2536       1.1    kardel }
   2537       1.1    kardel 
   2538       1.1    kardel /*
   2539       1.1    kardel  * keytype - get type of key to use for authenticating requests
   2540       1.1    kardel  */
   2541       1.1    kardel static void
   2542       1.1    kardel keytype(
   2543       1.1    kardel 	struct parse *pcmd,
   2544       1.1    kardel 	FILE *fp
   2545       1.1    kardel 	)
   2546       1.1    kardel {
   2547       1.1    kardel 	const char *	digest_name;
   2548       1.1    kardel 	size_t		digest_len;
   2549       1.1    kardel 	int		key_type;
   2550       1.1    kardel 
   2551       1.1    kardel 	if (!pcmd->nargs) {
   2552       1.6    kardel 		fprintf(fp, "keytype is %s with %lu octet digests\n",
   2553       1.1    kardel 			keytype_name(info_auth_keytype),
   2554       1.4    kardel 			(u_long)info_auth_hashlen);
   2555       1.1    kardel 		return;
   2556       1.1    kardel 	}
   2557       1.1    kardel 
   2558       1.1    kardel 	digest_name = pcmd->argval[0].string;
   2559       1.1    kardel 	digest_len = 0;
   2560       1.1    kardel 	key_type = keytype_from_text(digest_name, &digest_len);
   2561       1.1    kardel 
   2562       1.1    kardel 	if (!key_type) {
   2563      1.12  christos 		fprintf(fp, "keytype is not valid. "
   2564       1.1    kardel #ifdef OPENSSL
   2565      1.12  christos 			"Type \"help keytype\" for the available digest types.\n");
   2566       1.1    kardel #else
   2567      1.12  christos 			"Only \"md5\" is available.\n");
   2568       1.1    kardel #endif
   2569       1.1    kardel 		return;
   2570       1.1    kardel 	}
   2571       1.1    kardel 
   2572       1.1    kardel 	info_auth_keytype = key_type;
   2573       1.1    kardel 	info_auth_hashlen = digest_len;
   2574       1.1    kardel }
   2575       1.1    kardel 
   2576       1.1    kardel 
   2577       1.1    kardel /*
   2578       1.1    kardel  * passwd - get an authentication key
   2579       1.1    kardel  */
   2580       1.1    kardel /*ARGSUSED*/
   2581       1.1    kardel static void
   2582       1.1    kardel passwd(
   2583       1.1    kardel 	struct parse *pcmd,
   2584       1.1    kardel 	FILE *fp
   2585       1.1    kardel 	)
   2586       1.1    kardel {
   2587       1.9  christos 	const char *pass;
   2588       1.1    kardel 
   2589       1.1    kardel 	if (info_auth_keyid == 0) {
   2590       1.9  christos 		info_auth_keyid = getkeyid("Keyid: ");
   2591       1.9  christos 		if (info_auth_keyid == 0) {
   2592       1.9  christos 			(void)fprintf(fp, "Keyid must be defined\n");
   2593       1.1    kardel 			return;
   2594       1.1    kardel 		}
   2595       1.1    kardel 	}
   2596       1.4    kardel 	if (pcmd->nargs >= 1)
   2597       1.4    kardel 		pass = pcmd->argval[0].string;
   2598       1.1    kardel 	else {
   2599       1.4    kardel 		pass = getpass_keytype(info_auth_keytype);
   2600       1.4    kardel 		if ('\0' == pass[0]) {
   2601       1.4    kardel 			fprintf(fp, "Password unchanged\n");
   2602       1.4    kardel 			return;
   2603       1.4    kardel 		}
   2604       1.1    kardel 	}
   2605       1.9  christos 	authusekey(info_auth_keyid, info_auth_keytype,
   2606       1.9  christos 		   (const u_char *)pass);
   2607       1.4    kardel 	authtrust(info_auth_keyid, 1);
   2608       1.1    kardel }
   2609       1.1    kardel 
   2610       1.1    kardel 
   2611       1.1    kardel /*
   2612       1.1    kardel  * hostnames - set the showhostnames flag
   2613       1.1    kardel  */
   2614       1.1    kardel static void
   2615       1.1    kardel hostnames(
   2616       1.1    kardel 	struct parse *pcmd,
   2617       1.1    kardel 	FILE *fp
   2618       1.1    kardel 	)
   2619       1.1    kardel {
   2620       1.1    kardel 	if (pcmd->nargs == 0) {
   2621       1.1    kardel 		if (showhostnames)
   2622       1.1    kardel 		    (void) fprintf(fp, "hostnames being shown\n");
   2623       1.1    kardel 		else
   2624       1.1    kardel 		    (void) fprintf(fp, "hostnames not being shown\n");
   2625       1.1    kardel 	} else {
   2626       1.1    kardel 		if (STREQ(pcmd->argval[0].string, "yes"))
   2627       1.1    kardel 		    showhostnames = 1;
   2628       1.1    kardel 		else if (STREQ(pcmd->argval[0].string, "no"))
   2629       1.1    kardel 		    showhostnames = 0;
   2630       1.1    kardel 		else
   2631       1.1    kardel 		    (void)fprintf(stderr, "What?\n");
   2632       1.1    kardel 	}
   2633       1.1    kardel }
   2634       1.1    kardel 
   2635       1.1    kardel 
   2636       1.1    kardel 
   2637       1.1    kardel /*
   2638       1.1    kardel  * setdebug - set/change debugging level
   2639       1.1    kardel  */
   2640       1.1    kardel static void
   2641       1.1    kardel setdebug(
   2642       1.1    kardel 	struct parse *pcmd,
   2643       1.1    kardel 	FILE *fp
   2644       1.1    kardel 	)
   2645       1.1    kardel {
   2646       1.1    kardel 	if (pcmd->nargs == 0) {
   2647       1.1    kardel 		(void) fprintf(fp, "debug level is %d\n", debug);
   2648       1.1    kardel 		return;
   2649       1.1    kardel 	} else if (STREQ(pcmd->argval[0].string, "no")) {
   2650       1.1    kardel 		debug = 0;
   2651       1.1    kardel 	} else if (STREQ(pcmd->argval[0].string, "more")) {
   2652       1.1    kardel 		debug++;
   2653       1.1    kardel 	} else if (STREQ(pcmd->argval[0].string, "less")) {
   2654       1.1    kardel 		debug--;
   2655       1.1    kardel 	} else {
   2656       1.1    kardel 		(void) fprintf(fp, "What?\n");
   2657       1.1    kardel 		return;
   2658       1.1    kardel 	}
   2659       1.1    kardel 	(void) fprintf(fp, "debug level set to %d\n", debug);
   2660       1.1    kardel }
   2661       1.1    kardel 
   2662       1.1    kardel 
   2663       1.1    kardel /*
   2664       1.1    kardel  * quit - stop this nonsense
   2665       1.1    kardel  */
   2666       1.1    kardel /*ARGSUSED*/
   2667       1.1    kardel static void
   2668       1.1    kardel quit(
   2669       1.1    kardel 	struct parse *pcmd,
   2670       1.1    kardel 	FILE *fp
   2671       1.1    kardel 	)
   2672       1.1    kardel {
   2673       1.1    kardel 	if (havehost)
   2674       1.1    kardel 	    closesocket(sockfd);	/* cleanliness next to godliness */
   2675       1.1    kardel 	exit(0);
   2676       1.1    kardel }
   2677       1.1    kardel 
   2678       1.1    kardel 
   2679       1.1    kardel /*
   2680       1.1    kardel  * version - print the current version number
   2681       1.1    kardel  */
   2682       1.1    kardel /*ARGSUSED*/
   2683       1.1    kardel static void
   2684       1.1    kardel version(
   2685       1.1    kardel 	struct parse *pcmd,
   2686       1.1    kardel 	FILE *fp
   2687       1.1    kardel 	)
   2688       1.1    kardel {
   2689       1.1    kardel 
   2690       1.1    kardel 	(void) fprintf(fp, "%s\n", Version);
   2691       1.1    kardel 	return;
   2692       1.1    kardel }
   2693       1.1    kardel 
   2694       1.1    kardel 
   2695       1.1    kardel /*
   2696       1.1    kardel  * raw - set raw mode output
   2697       1.1    kardel  */
   2698       1.1    kardel /*ARGSUSED*/
   2699       1.1    kardel static void
   2700       1.1    kardel raw(
   2701       1.1    kardel 	struct parse *pcmd,
   2702       1.1    kardel 	FILE *fp
   2703       1.1    kardel 	)
   2704       1.1    kardel {
   2705       1.1    kardel 	rawmode = 1;
   2706       1.1    kardel 	(void) fprintf(fp, "Output set to raw\n");
   2707       1.1    kardel }
   2708       1.1    kardel 
   2709       1.1    kardel 
   2710       1.1    kardel /*
   2711       1.1    kardel  * cooked - set cooked mode output
   2712       1.1    kardel  */
   2713       1.1    kardel /*ARGSUSED*/
   2714       1.1    kardel static void
   2715       1.1    kardel cooked(
   2716       1.1    kardel 	struct parse *pcmd,
   2717       1.1    kardel 	FILE *fp
   2718       1.1    kardel 	)
   2719       1.1    kardel {
   2720       1.1    kardel 	rawmode = 0;
   2721       1.1    kardel 	(void) fprintf(fp, "Output set to cooked\n");
   2722       1.1    kardel 	return;
   2723       1.1    kardel }
   2724       1.1    kardel 
   2725       1.1    kardel 
   2726       1.1    kardel /*
   2727       1.1    kardel  * authenticate - always authenticate requests to this host
   2728       1.1    kardel  */
   2729       1.1    kardel static void
   2730       1.1    kardel authenticate(
   2731       1.1    kardel 	struct parse *pcmd,
   2732       1.1    kardel 	FILE *fp
   2733       1.1    kardel 	)
   2734       1.1    kardel {
   2735       1.1    kardel 	if (pcmd->nargs == 0) {
   2736       1.1    kardel 		if (always_auth) {
   2737       1.1    kardel 			(void) fprintf(fp,
   2738       1.1    kardel 				       "authenticated requests being sent\n");
   2739       1.1    kardel 		} else
   2740       1.1    kardel 		    (void) fprintf(fp,
   2741       1.1    kardel 				   "unauthenticated requests being sent\n");
   2742       1.1    kardel 	} else {
   2743       1.1    kardel 		if (STREQ(pcmd->argval[0].string, "yes")) {
   2744       1.1    kardel 			always_auth = 1;
   2745       1.1    kardel 		} else if (STREQ(pcmd->argval[0].string, "no")) {
   2746       1.1    kardel 			always_auth = 0;
   2747       1.1    kardel 		} else
   2748       1.1    kardel 		    (void)fprintf(stderr, "What?\n");
   2749       1.1    kardel 	}
   2750       1.1    kardel }
   2751       1.1    kardel 
   2752       1.1    kardel 
   2753       1.1    kardel /*
   2754       1.1    kardel  * ntpversion - choose the NTP version to use
   2755       1.1    kardel  */
   2756       1.1    kardel static void
   2757       1.1    kardel ntpversion(
   2758       1.1    kardel 	struct parse *pcmd,
   2759       1.1    kardel 	FILE *fp
   2760       1.1    kardel 	)
   2761       1.1    kardel {
   2762       1.1    kardel 	if (pcmd->nargs == 0) {
   2763       1.1    kardel 		(void) fprintf(fp,
   2764       1.1    kardel 			       "NTP version being claimed is %d\n", pktversion);
   2765       1.1    kardel 	} else {
   2766       1.1    kardel 		if (pcmd->argval[0].uval < NTP_OLDVERSION
   2767       1.1    kardel 		    || pcmd->argval[0].uval > NTP_VERSION) {
   2768       1.1    kardel 			(void) fprintf(stderr, "versions %d to %d, please\n",
   2769       1.1    kardel 				       NTP_OLDVERSION, NTP_VERSION);
   2770       1.1    kardel 		} else {
   2771       1.1    kardel 			pktversion = (u_char) pcmd->argval[0].uval;
   2772       1.1    kardel 		}
   2773       1.1    kardel 	}
   2774       1.1    kardel }
   2775       1.1    kardel 
   2776       1.1    kardel 
   2777       1.3  christos static void __attribute__((__format__(__printf__, 1, 0)))
   2778       1.3  christos vwarning(const char *fmt, va_list ap)
   2779       1.3  christos {
   2780       1.3  christos 	int serrno = errno;
   2781       1.3  christos 	(void) fprintf(stderr, "%s: ", progname);
   2782       1.3  christos 	vfprintf(stderr, fmt, ap);
   2783      1.14  christos 	(void) fprintf(stderr, ": %s\n", strerror(serrno));
   2784       1.3  christos }
   2785       1.3  christos 
   2786       1.1    kardel /*
   2787       1.1    kardel  * warning - print a warning message
   2788       1.1    kardel  */
   2789       1.3  christos static void __attribute__((__format__(__printf__, 1, 2)))
   2790       1.1    kardel warning(
   2791       1.1    kardel 	const char *fmt,
   2792       1.3  christos 	...
   2793       1.1    kardel 	)
   2794       1.1    kardel {
   2795       1.3  christos 	va_list ap;
   2796       1.3  christos 	va_start(ap, fmt);
   2797       1.3  christos 	vwarning(fmt, ap);
   2798       1.3  christos 	va_end(ap);
   2799       1.1    kardel }
   2800       1.1    kardel 
   2801       1.1    kardel 
   2802       1.1    kardel /*
   2803       1.1    kardel  * error - print a message and exit
   2804       1.1    kardel  */
   2805       1.3  christos static void __attribute__((__format__(__printf__, 1, 2)))
   2806       1.1    kardel error(
   2807       1.1    kardel 	const char *fmt,
   2808       1.3  christos 	...
   2809       1.1    kardel 	)
   2810       1.1    kardel {
   2811       1.3  christos 	va_list ap;
   2812       1.3  christos 	va_start(ap, fmt);
   2813       1.3  christos 	vwarning(fmt, ap);
   2814       1.3  christos 	va_end(ap);
   2815       1.1    kardel 	exit(1);
   2816       1.1    kardel }
   2817       1.1    kardel /*
   2818       1.1    kardel  * getkeyid - prompt the user for a keyid to use
   2819       1.1    kardel  */
   2820       1.1    kardel static u_long
   2821       1.1    kardel getkeyid(
   2822       1.1    kardel 	const char *keyprompt
   2823       1.1    kardel 	)
   2824       1.1    kardel {
   2825       1.4    kardel 	int c;
   2826       1.1    kardel 	FILE *fi;
   2827       1.1    kardel 	char pbuf[20];
   2828       1.4    kardel 	size_t i;
   2829       1.4    kardel 	size_t ilim;
   2830       1.1    kardel 
   2831       1.1    kardel #ifndef SYS_WINNT
   2832       1.1    kardel 	if ((fi = fdopen(open("/dev/tty", 2), "r")) == NULL)
   2833       1.1    kardel #else
   2834       1.1    kardel 	if ((fi = _fdopen(open("CONIN$", _O_TEXT), "r")) == NULL)
   2835       1.1    kardel #endif /* SYS_WINNT */
   2836       1.1    kardel 		fi = stdin;
   2837       1.4    kardel 	else
   2838       1.1    kardel 		setbuf(fi, (char *)NULL);
   2839       1.1    kardel 	fprintf(stderr, "%s", keyprompt); fflush(stderr);
   2840       1.4    kardel 	for (i = 0, ilim = COUNTOF(pbuf) - 1;
   2841       1.4    kardel 	     i < ilim && (c = getc(fi)) != '\n' && c != EOF;
   2842       1.4    kardel 	     )
   2843       1.4    kardel 		pbuf[i++] = (char)c;
   2844       1.4    kardel 	pbuf[i] = '\0';
   2845       1.1    kardel 	if (fi != stdin)
   2846       1.4    kardel 		fclose(fi);
   2847       1.1    kardel 
   2848       1.1    kardel 	return (u_long) atoi(pbuf);
   2849       1.1    kardel }
   2850       1.1    kardel 
   2851       1.1    kardel 
   2852       1.1    kardel /*
   2853       1.1    kardel  * atoascii - printable-ize possibly ascii data using the character
   2854       1.1    kardel  *	      transformations cat -v uses.
   2855       1.1    kardel  */
   2856       1.1    kardel static void
   2857       1.1    kardel atoascii(
   2858       1.1    kardel 	const char *in,
   2859       1.1    kardel 	size_t in_octets,
   2860       1.1    kardel 	char *out,
   2861       1.1    kardel 	size_t out_octets
   2862       1.1    kardel 	)
   2863       1.1    kardel {
   2864       1.9  christos 	const u_char *	pchIn;
   2865       1.9  christos 	const u_char *	pchInLimit;
   2866       1.9  christos 	u_char *	pchOut;
   2867       1.9  christos 	u_char		c;
   2868       1.1    kardel 
   2869       1.1    kardel 	pchIn = (const u_char *)in;
   2870       1.1    kardel 	pchInLimit = pchIn + in_octets;
   2871       1.1    kardel 	pchOut = (u_char *)out;
   2872       1.1    kardel 
   2873       1.1    kardel 	if (NULL == pchIn) {
   2874       1.1    kardel 		if (0 < out_octets)
   2875       1.1    kardel 			*pchOut = '\0';
   2876       1.1    kardel 		return;
   2877       1.1    kardel 	}
   2878       1.1    kardel 
   2879       1.1    kardel #define	ONEOUT(c)					\
   2880       1.1    kardel do {							\
   2881       1.1    kardel 	if (0 == --out_octets) {			\
   2882       1.1    kardel 		*pchOut = '\0';				\
   2883       1.1    kardel 		return;					\
   2884       1.1    kardel 	}						\
   2885       1.1    kardel 	*pchOut++ = (c);				\
   2886       1.1    kardel } while (0)
   2887       1.1    kardel 
   2888       1.1    kardel 	for (	; pchIn < pchInLimit; pchIn++) {
   2889       1.1    kardel 		c = *pchIn;
   2890       1.1    kardel 		if ('\0' == c)
   2891       1.1    kardel 			break;
   2892       1.1    kardel 		if (c & 0x80) {
   2893       1.1    kardel 			ONEOUT('M');
   2894       1.1    kardel 			ONEOUT('-');
   2895       1.1    kardel 			c &= 0x7f;
   2896       1.1    kardel 		}
   2897       1.1    kardel 		if (c < ' ') {
   2898       1.1    kardel 			ONEOUT('^');
   2899       1.1    kardel 			ONEOUT((u_char)(c + '@'));
   2900       1.1    kardel 		} else if (0x7f == c) {
   2901       1.1    kardel 			ONEOUT('^');
   2902       1.1    kardel 			ONEOUT('?');
   2903       1.1    kardel 		} else
   2904       1.1    kardel 			ONEOUT(c);
   2905       1.1    kardel 	}
   2906       1.1    kardel 	ONEOUT('\0');
   2907       1.1    kardel 
   2908       1.1    kardel #undef ONEOUT
   2909       1.1    kardel }
   2910       1.1    kardel 
   2911       1.1    kardel 
   2912       1.1    kardel /*
   2913       1.1    kardel  * makeascii - print possibly ascii data using the character
   2914       1.1    kardel  *	       transformations that cat -v uses.
   2915       1.1    kardel  */
   2916       1.4    kardel void
   2917       1.1    kardel makeascii(
   2918      1.14  christos 	size_t length,
   2919       1.4    kardel 	const char *data,
   2920       1.1    kardel 	FILE *fp
   2921       1.1    kardel 	)
   2922       1.1    kardel {
   2923       1.4    kardel 	const u_char *data_u_char;
   2924       1.4    kardel 	const u_char *cp;
   2925       1.4    kardel 	int c;
   2926       1.4    kardel 
   2927       1.4    kardel 	data_u_char = (const u_char *)data;
   2928       1.1    kardel 
   2929       1.4    kardel 	for (cp = data_u_char; cp < data_u_char + length; cp++) {
   2930       1.1    kardel 		c = (int)*cp;
   2931       1.1    kardel 		if (c & 0x80) {
   2932       1.1    kardel 			putc('M', fp);
   2933       1.1    kardel 			putc('-', fp);
   2934       1.1    kardel 			c &= 0x7f;
   2935       1.1    kardel 		}
   2936       1.1    kardel 
   2937       1.1    kardel 		if (c < ' ') {
   2938       1.1    kardel 			putc('^', fp);
   2939       1.1    kardel 			putc(c + '@', fp);
   2940       1.1    kardel 		} else if (0x7f == c) {
   2941       1.1    kardel 			putc('^', fp);
   2942       1.1    kardel 			putc('?', fp);
   2943       1.1    kardel 		} else
   2944       1.1    kardel 			putc(c, fp);
   2945       1.1    kardel 	}
   2946       1.1    kardel }
   2947       1.1    kardel 
   2948       1.1    kardel 
   2949       1.1    kardel /*
   2950       1.1    kardel  * asciize - same thing as makeascii except add a newline
   2951       1.1    kardel  */
   2952       1.1    kardel void
   2953       1.1    kardel asciize(
   2954       1.1    kardel 	int length,
   2955       1.1    kardel 	char *data,
   2956       1.1    kardel 	FILE *fp
   2957       1.1    kardel 	)
   2958       1.1    kardel {
   2959       1.1    kardel 	makeascii(length, data, fp);
   2960       1.1    kardel 	putc('\n', fp);
   2961       1.1    kardel }
   2962       1.1    kardel 
   2963       1.1    kardel 
   2964       1.1    kardel /*
   2965       1.4    kardel  * truncate string to fit clipping excess at end.
   2966       1.4    kardel  *	"too long"	->	"too l"
   2967       1.4    kardel  * Used for hostnames.
   2968       1.4    kardel  */
   2969       1.4    kardel const char *
   2970       1.4    kardel trunc_right(
   2971       1.4    kardel 	const char *	src,
   2972       1.4    kardel 	size_t		width
   2973       1.4    kardel 	)
   2974       1.4    kardel {
   2975       1.4    kardel 	size_t	sl;
   2976       1.4    kardel 	char *	out;
   2977       1.4    kardel 
   2978       1.9  christos 
   2979       1.4    kardel 	sl = strlen(src);
   2980       1.4    kardel 	if (sl > width && LIB_BUFLENGTH - 1 > width && width > 0) {
   2981       1.4    kardel 		LIB_GETBUF(out);
   2982       1.4    kardel 		memcpy(out, src, width);
   2983       1.4    kardel 		out[width] = '\0';
   2984       1.4    kardel 
   2985       1.4    kardel 		return out;
   2986       1.4    kardel 	}
   2987       1.4    kardel 
   2988       1.4    kardel 	return src;
   2989       1.4    kardel }
   2990       1.4    kardel 
   2991       1.4    kardel 
   2992       1.4    kardel /*
   2993       1.4    kardel  * truncate string to fit by preserving right side and using '_' to hint
   2994       1.4    kardel  *	"too long"	->	"_long"
   2995       1.4    kardel  * Used for local IPv6 addresses, where low bits differentiate.
   2996       1.4    kardel  */
   2997       1.4    kardel const char *
   2998       1.4    kardel trunc_left(
   2999       1.4    kardel 	const char *	src,
   3000       1.4    kardel 	size_t		width
   3001       1.4    kardel 	)
   3002       1.4    kardel {
   3003       1.4    kardel 	size_t	sl;
   3004       1.4    kardel 	char *	out;
   3005       1.4    kardel 
   3006       1.4    kardel 
   3007       1.4    kardel 	sl = strlen(src);
   3008       1.4    kardel 	if (sl > width && LIB_BUFLENGTH - 1 > width && width > 1) {
   3009       1.4    kardel 		LIB_GETBUF(out);
   3010       1.4    kardel 		out[0] = '_';
   3011       1.4    kardel 		memcpy(&out[1], &src[sl + 1 - width], width);
   3012       1.4    kardel 
   3013       1.4    kardel 		return out;
   3014       1.4    kardel 	}
   3015       1.4    kardel 
   3016       1.4    kardel 	return src;
   3017       1.4    kardel }
   3018       1.4    kardel 
   3019       1.4    kardel 
   3020       1.4    kardel /*
   3021       1.1    kardel  * Some circular buffer space
   3022       1.1    kardel  */
   3023       1.1    kardel #define	CBLEN	80
   3024       1.1    kardel #define	NUMCB	6
   3025       1.1    kardel 
   3026       1.1    kardel char circ_buf[NUMCB][CBLEN];
   3027       1.1    kardel int nextcb = 0;
   3028       1.1    kardel 
   3029       1.1    kardel /*
   3030       1.1    kardel  * nextvar - find the next variable in the buffer
   3031       1.1    kardel  */
   3032       1.1    kardel int
   3033       1.1    kardel nextvar(
   3034      1.14  christos 	size_t *datalen,
   3035       1.4    kardel 	const char **datap,
   3036       1.1    kardel 	char **vname,
   3037       1.1    kardel 	char **vvalue
   3038       1.1    kardel 	)
   3039       1.1    kardel {
   3040       1.4    kardel 	const char *cp;
   3041       1.9  christos 	const char *np;
   3042       1.4    kardel 	const char *cpend;
   3043       1.9  christos 	size_t srclen;
   3044       1.9  christos 	size_t len;
   3045       1.1    kardel 	static char name[MAXVARLEN];
   3046       1.1    kardel 	static char value[MAXVALLEN];
   3047       1.1    kardel 
   3048       1.1    kardel 	cp = *datap;
   3049       1.1    kardel 	cpend = cp + *datalen;
   3050       1.1    kardel 
   3051       1.1    kardel 	/*
   3052       1.1    kardel 	 * Space past commas and white space
   3053       1.1    kardel 	 */
   3054       1.1    kardel 	while (cp < cpend && (*cp == ',' || isspace((int)*cp)))
   3055       1.4    kardel 		cp++;
   3056       1.9  christos 	if (cp >= cpend)
   3057       1.4    kardel 		return 0;
   3058       1.9  christos 
   3059       1.1    kardel 	/*
   3060       1.1    kardel 	 * Copy name until we hit a ',', an '=', a '\r' or a '\n'.  Backspace
   3061       1.1    kardel 	 * over any white space and terminate it.
   3062       1.1    kardel 	 */
   3063       1.9  christos 	srclen = strcspn(cp, ",=\r\n");
   3064       1.9  christos 	srclen = min(srclen, (size_t)(cpend - cp));
   3065       1.9  christos 	len = srclen;
   3066       1.9  christos 	while (len > 0 && isspace((unsigned char)cp[len - 1]))
   3067       1.9  christos 		len--;
   3068      1.15  christos 	if (len >= sizeof(name))
   3069      1.15  christos 	    return 0;
   3070       1.9  christos 	if (len > 0)
   3071       1.9  christos 		memcpy(name, cp, len);
   3072       1.9  christos 	name[len] = '\0';
   3073       1.1    kardel 	*vname = name;
   3074       1.9  christos 	cp += srclen;
   3075       1.1    kardel 
   3076       1.1    kardel 	/*
   3077       1.1    kardel 	 * Check if we hit the end of the buffer or a ','.  If so we are done.
   3078       1.1    kardel 	 */
   3079       1.9  christos 	if (cp >= cpend || *cp == ',' || *cp == '\r' || *cp == '\n') {
   3080       1.9  christos 		if (cp < cpend)
   3081       1.9  christos 			cp++;
   3082       1.1    kardel 		*datap = cp;
   3083      1.14  christos 		*datalen = size2int_sat(cpend - cp);
   3084       1.9  christos 		*vvalue = NULL;
   3085       1.1    kardel 		return 1;
   3086       1.1    kardel 	}
   3087       1.1    kardel 
   3088       1.1    kardel 	/*
   3089       1.1    kardel 	 * So far, so good.  Copy out the value
   3090       1.1    kardel 	 */
   3091       1.1    kardel 	cp++;	/* past '=' */
   3092       1.9  christos 	while (cp < cpend && (isspace((unsigned char)*cp) && *cp != '\r' && *cp != '\n'))
   3093       1.9  christos 		cp++;
   3094       1.9  christos 	np = cp;
   3095       1.9  christos 	if ('"' == *np) {
   3096       1.9  christos 		do {
   3097       1.9  christos 			np++;
   3098       1.9  christos 		} while (np < cpend && '"' != *np);
   3099       1.9  christos 		if (np < cpend && '"' == *np)
   3100       1.9  christos 			np++;
   3101       1.9  christos 	} else {
   3102       1.9  christos 		while (np < cpend && ',' != *np && '\r' != *np)
   3103       1.9  christos 			np++;
   3104       1.1    kardel 	}
   3105       1.9  christos 	len = np - cp;
   3106       1.9  christos 	if (np > cpend || len >= sizeof(value) ||
   3107       1.9  christos 	    (np < cpend && ',' != *np && '\r' != *np))
   3108       1.9  christos 		return 0;
   3109       1.9  christos 	memcpy(value, cp, len);
   3110       1.1    kardel 	/*
   3111       1.1    kardel 	 * Trim off any trailing whitespace
   3112       1.1    kardel 	 */
   3113       1.9  christos 	while (len > 0 && isspace((unsigned char)value[len - 1]))
   3114       1.9  christos 		len--;
   3115       1.9  christos 	value[len] = '\0';
   3116       1.1    kardel 
   3117       1.1    kardel 	/*
   3118       1.1    kardel 	 * Return this.  All done.
   3119       1.1    kardel 	 */
   3120       1.9  christos 	if (np < cpend && ',' == *np)
   3121       1.9  christos 		np++;
   3122       1.9  christos 	*datap = np;
   3123      1.14  christos 	*datalen = size2int_sat(cpend - np);
   3124       1.1    kardel 	*vvalue = value;
   3125       1.1    kardel 	return 1;
   3126       1.1    kardel }
   3127       1.1    kardel 
   3128       1.1    kardel 
   3129       1.9  christos u_short
   3130       1.9  christos varfmt(const char * varname)
   3131       1.9  christos {
   3132       1.9  christos 	u_int n;
   3133       1.9  christos 
   3134       1.9  christos 	for (n = 0; n < COUNTOF(cookedvars); n++)
   3135       1.9  christos 		if (!strcmp(varname, cookedvars[n].varname))
   3136       1.9  christos 			return cookedvars[n].fmt;
   3137       1.9  christos 
   3138       1.9  christos 	return PADDING;
   3139       1.1    kardel }
   3140       1.1    kardel 
   3141       1.1    kardel 
   3142       1.1    kardel /*
   3143       1.1    kardel  * printvars - print variables returned in response packet
   3144       1.1    kardel  */
   3145       1.1    kardel void
   3146       1.1    kardel printvars(
   3147      1.14  christos 	size_t length,
   3148       1.4    kardel 	const char *data,
   3149       1.1    kardel 	int status,
   3150       1.1    kardel 	int sttype,
   3151       1.1    kardel 	int quiet,
   3152       1.1    kardel 	FILE *fp
   3153       1.1    kardel 	)
   3154       1.1    kardel {
   3155       1.1    kardel 	if (rawmode)
   3156       1.1    kardel 	    rawprint(sttype, length, data, status, quiet, fp);
   3157       1.1    kardel 	else
   3158       1.1    kardel 	    cookedprint(sttype, length, data, status, quiet, fp);
   3159       1.1    kardel }
   3160       1.1    kardel 
   3161       1.1    kardel 
   3162       1.1    kardel /*
   3163       1.1    kardel  * rawprint - do a printout of the data in raw mode
   3164       1.1    kardel  */
   3165       1.1    kardel static void
   3166       1.1    kardel rawprint(
   3167       1.1    kardel 	int datatype,
   3168      1.14  christos 	size_t length,
   3169       1.4    kardel 	const char *data,
   3170       1.1    kardel 	int status,
   3171       1.1    kardel 	int quiet,
   3172       1.1    kardel 	FILE *fp
   3173       1.1    kardel 	)
   3174       1.1    kardel {
   3175       1.4    kardel 	const char *cp;
   3176       1.4    kardel 	const char *cpend;
   3177       1.1    kardel 
   3178       1.1    kardel 	/*
   3179       1.1    kardel 	 * Essentially print the data as is.  We reformat unprintables, though.
   3180       1.1    kardel 	 */
   3181       1.1    kardel 	cp = data;
   3182       1.1    kardel 	cpend = data + length;
   3183       1.1    kardel 
   3184       1.1    kardel 	if (!quiet)
   3185       1.1    kardel 		(void) fprintf(fp, "status=0x%04x,\n", status);
   3186       1.1    kardel 
   3187       1.1    kardel 	while (cp < cpend) {
   3188       1.1    kardel 		if (*cp == '\r') {
   3189       1.1    kardel 			/*
   3190       1.1    kardel 			 * If this is a \r and the next character is a
   3191       1.1    kardel 			 * \n, supress this, else pretty print it.  Otherwise
   3192       1.1    kardel 			 * just output the character.
   3193       1.1    kardel 			 */
   3194       1.1    kardel 			if (cp == (cpend - 1) || *(cp + 1) != '\n')
   3195       1.1    kardel 			    makeascii(1, cp, fp);
   3196       1.2  christos 		} else if (isspace((unsigned char)*cp) || isprint((unsigned char)*cp))
   3197       1.1    kardel 			putc(*cp, fp);
   3198       1.1    kardel 		else
   3199       1.1    kardel 			makeascii(1, cp, fp);
   3200       1.1    kardel 		cp++;
   3201       1.1    kardel 	}
   3202       1.1    kardel }
   3203       1.1    kardel 
   3204       1.1    kardel 
   3205       1.1    kardel /*
   3206       1.1    kardel  * Global data used by the cooked output routines
   3207       1.1    kardel  */
   3208       1.1    kardel int out_chars;		/* number of characters output */
   3209       1.1    kardel int out_linecount;	/* number of characters output on this line */
   3210       1.1    kardel 
   3211       1.1    kardel 
   3212       1.1    kardel /*
   3213       1.1    kardel  * startoutput - get ready to do cooked output
   3214       1.1    kardel  */
   3215       1.1    kardel static void
   3216       1.1    kardel startoutput(void)
   3217       1.1    kardel {
   3218       1.1    kardel 	out_chars = 0;
   3219       1.1    kardel 	out_linecount = 0;
   3220       1.1    kardel }
   3221       1.1    kardel 
   3222       1.1    kardel 
   3223       1.1    kardel /*
   3224       1.1    kardel  * output - output a variable=value combination
   3225       1.1    kardel  */
   3226       1.1    kardel static void
   3227       1.1    kardel output(
   3228       1.1    kardel 	FILE *fp,
   3229       1.9  christos 	const char *name,
   3230       1.4    kardel 	const char *value
   3231       1.1    kardel 	)
   3232       1.1    kardel {
   3233      1.14  christos 	int len;
   3234       1.1    kardel 
   3235       1.1    kardel 	/* strlen of "name=value" */
   3236      1.14  christos 	len = size2int_sat(strlen(name) + 1 + strlen(value));
   3237       1.1    kardel 
   3238       1.1    kardel 	if (out_chars != 0) {
   3239       1.1    kardel 		out_chars += 2;
   3240       1.1    kardel 		if ((out_linecount + len + 2) > MAXOUTLINE) {
   3241       1.1    kardel 			fputs(",\n", fp);
   3242       1.1    kardel 			out_linecount = 0;
   3243       1.1    kardel 		} else {
   3244       1.1    kardel 			fputs(", ", fp);
   3245       1.1    kardel 			out_linecount += 2;
   3246       1.1    kardel 		}
   3247       1.1    kardel 	}
   3248       1.1    kardel 
   3249       1.1    kardel 	fputs(name, fp);
   3250       1.1    kardel 	putc('=', fp);
   3251       1.1    kardel 	fputs(value, fp);
   3252       1.1    kardel 	out_chars += len;
   3253       1.1    kardel 	out_linecount += len;
   3254       1.1    kardel }
   3255       1.1    kardel 
   3256       1.1    kardel 
   3257       1.1    kardel /*
   3258       1.1    kardel  * endoutput - terminate a block of cooked output
   3259       1.1    kardel  */
   3260       1.1    kardel static void
   3261       1.1    kardel endoutput(
   3262       1.1    kardel 	FILE *fp
   3263       1.1    kardel 	)
   3264       1.1    kardel {
   3265       1.1    kardel 	if (out_chars != 0)
   3266       1.1    kardel 		putc('\n', fp);
   3267       1.1    kardel }
   3268       1.1    kardel 
   3269       1.1    kardel 
   3270       1.1    kardel /*
   3271       1.1    kardel  * outputarr - output an array of values
   3272       1.1    kardel  */
   3273       1.1    kardel static void
   3274       1.1    kardel outputarr(
   3275       1.1    kardel 	FILE *fp,
   3276       1.1    kardel 	char *name,
   3277       1.1    kardel 	int narr,
   3278       1.1    kardel 	l_fp *lfp
   3279       1.1    kardel 	)
   3280       1.1    kardel {
   3281      1.14  christos 	char *bp;
   3282      1.14  christos 	char *cp;
   3283      1.14  christos 	size_t i;
   3284      1.14  christos 	size_t len;
   3285       1.1    kardel 	char buf[256];
   3286       1.1    kardel 
   3287       1.1    kardel 	bp = buf;
   3288       1.1    kardel 	/*
   3289       1.1    kardel 	 * Hack to align delay and offset values
   3290       1.1    kardel 	 */
   3291       1.1    kardel 	for (i = (int)strlen(name); i < 11; i++)
   3292       1.1    kardel 	    *bp++ = ' ';
   3293       1.9  christos 
   3294       1.1    kardel 	for (i = narr; i > 0; i--) {
   3295      1.14  christos 		if (i != (size_t)narr)
   3296       1.1    kardel 		    *bp++ = ' ';
   3297       1.1    kardel 		cp = lfptoms(lfp, 2);
   3298       1.1    kardel 		len = strlen(cp);
   3299       1.1    kardel 		if (len > 7) {
   3300       1.1    kardel 			cp[7] = '\0';
   3301       1.1    kardel 			len = 7;
   3302       1.1    kardel 		}
   3303       1.1    kardel 		while (len < 7) {
   3304       1.1    kardel 			*bp++ = ' ';
   3305       1.1    kardel 			len++;
   3306       1.1    kardel 		}
   3307       1.1    kardel 		while (*cp != '\0')
   3308       1.1    kardel 		    *bp++ = *cp++;
   3309       1.1    kardel 		lfp++;
   3310       1.1    kardel 	}
   3311       1.1    kardel 	*bp = '\0';
   3312       1.1    kardel 	output(fp, name, buf);
   3313       1.1    kardel }
   3314       1.1    kardel 
   3315       1.1    kardel static char *
   3316       1.1    kardel tstflags(
   3317       1.1    kardel 	u_long val
   3318       1.1    kardel 	)
   3319       1.1    kardel {
   3320       1.4    kardel 	register char *cp, *s;
   3321       1.4    kardel 	size_t cb;
   3322       1.1    kardel 	register int i;
   3323       1.1    kardel 	register const char *sep;
   3324       1.1    kardel 
   3325       1.1    kardel 	sep = "";
   3326       1.4    kardel 	s = cp = circ_buf[nextcb];
   3327       1.1    kardel 	if (++nextcb >= NUMCB)
   3328       1.4    kardel 		nextcb = 0;
   3329       1.4    kardel 	cb = sizeof(circ_buf[0]);
   3330       1.1    kardel 
   3331       1.4    kardel 	snprintf(cp, cb, "%02lx", val);
   3332       1.4    kardel 	cp += strlen(cp);
   3333       1.4    kardel 	cb -= strlen(cp);
   3334       1.1    kardel 	if (!val) {
   3335       1.9  christos 		strlcat(cp, " ok", cb);
   3336       1.4    kardel 		cp += strlen(cp);
   3337       1.4    kardel 		cb -= strlen(cp);
   3338       1.1    kardel 	} else {
   3339       1.4    kardel 		if (cb) {
   3340       1.4    kardel 			*cp++ = ' ';
   3341       1.4    kardel 			cb--;
   3342       1.4    kardel 		}
   3343       1.5    kardel 		for (i = 0; i < (int)COUNTOF(tstflagnames); i++) {
   3344       1.1    kardel 			if (val & 0x1) {
   3345       1.4    kardel 				snprintf(cp, cb, "%s%s", sep,
   3346       1.4    kardel 					 tstflagnames[i]);
   3347       1.1    kardel 				sep = ", ";
   3348       1.4    kardel 				cp += strlen(cp);
   3349       1.4    kardel 				cb -= strlen(cp);
   3350       1.1    kardel 			}
   3351       1.1    kardel 			val >>= 1;
   3352       1.1    kardel 		}
   3353       1.1    kardel 	}
   3354       1.4    kardel 	if (cb)
   3355       1.4    kardel 		*cp = '\0';
   3356       1.4    kardel 
   3357       1.1    kardel 	return s;
   3358       1.1    kardel }
   3359       1.1    kardel 
   3360       1.1    kardel /*
   3361       1.1    kardel  * cookedprint - output variables in cooked mode
   3362       1.1    kardel  */
   3363       1.1    kardel static void
   3364       1.1    kardel cookedprint(
   3365       1.1    kardel 	int datatype,
   3366      1.14  christos 	size_t length,
   3367       1.4    kardel 	const char *data,
   3368       1.1    kardel 	int status,
   3369       1.1    kardel 	int quiet,
   3370       1.1    kardel 	FILE *fp
   3371       1.1    kardel 	)
   3372       1.1    kardel {
   3373       1.1    kardel 	char *name;
   3374       1.1    kardel 	char *value;
   3375       1.1    kardel 	char output_raw;
   3376       1.1    kardel 	int fmt;
   3377       1.1    kardel 	l_fp lfp;
   3378       1.1    kardel 	sockaddr_u hval;
   3379       1.1    kardel 	u_long uval;
   3380       1.9  christos 	int narr;
   3381       1.9  christos 	size_t len;
   3382       1.1    kardel 	l_fp lfparr[8];
   3383       1.9  christos 	char b[12];
   3384       1.9  christos 	char bn[2 * MAXVARLEN];
   3385       1.9  christos 	char bv[2 * MAXVALLEN];
   3386       1.1    kardel 
   3387       1.9  christos 	UNUSED_ARG(datatype);
   3388       1.1    kardel 
   3389       1.1    kardel 	if (!quiet)
   3390       1.1    kardel 		fprintf(fp, "status=%04x %s,\n", status,
   3391       1.1    kardel 			statustoa(datatype, status));
   3392       1.1    kardel 
   3393       1.1    kardel 	startoutput();
   3394       1.1    kardel 	while (nextvar(&length, &data, &name, &value)) {
   3395       1.9  christos 		fmt = varfmt(name);
   3396       1.9  christos 		output_raw = 0;
   3397       1.9  christos 		switch (fmt) {
   3398       1.9  christos 
   3399       1.9  christos 		case PADDING:
   3400       1.1    kardel 			output_raw = '*';
   3401       1.9  christos 			break;
   3402       1.9  christos 
   3403       1.9  christos 		case TS:
   3404       1.9  christos 			if (!decodets(value, &lfp))
   3405       1.9  christos 				output_raw = '?';
   3406       1.9  christos 			else
   3407       1.9  christos 				output(fp, name, prettydate(&lfp));
   3408       1.9  christos 			break;
   3409       1.9  christos 
   3410       1.9  christos 		case HA:	/* fallthru */
   3411       1.9  christos 		case NA:
   3412       1.9  christos 			if (!decodenetnum(value, &hval)) {
   3413       1.9  christos 				output_raw = '?';
   3414       1.9  christos 			} else if (fmt == HA){
   3415       1.9  christos 				output(fp, name, nntohost(&hval));
   3416       1.9  christos 			} else {
   3417       1.9  christos 				output(fp, name, stoa(&hval));
   3418       1.9  christos 			}
   3419       1.9  christos 			break;
   3420       1.1    kardel 
   3421       1.9  christos 		case RF:
   3422       1.9  christos 			if (decodenetnum(value, &hval)) {
   3423       1.9  christos 				if (ISREFCLOCKADR(&hval))
   3424       1.9  christos 					output(fp, name,
   3425       1.9  christos 					       refnumtoa(&hval));
   3426       1.1    kardel 				else
   3427       1.9  christos 					output(fp, name, stoa(&hval));
   3428       1.9  christos 			} else if (strlen(value) <= 4) {
   3429       1.9  christos 				output(fp, name, value);
   3430       1.9  christos 			} else {
   3431       1.9  christos 				output_raw = '?';
   3432       1.9  christos 			}
   3433       1.9  christos 			break;
   3434       1.1    kardel 
   3435       1.9  christos 		case LP:
   3436       1.9  christos 			if (!decodeuint(value, &uval) || uval > 3) {
   3437       1.9  christos 				output_raw = '?';
   3438       1.9  christos 			} else {
   3439       1.9  christos 				b[0] = (0x2 & uval)
   3440       1.9  christos 					   ? '1'
   3441       1.9  christos 					   : '0';
   3442       1.9  christos 				b[1] = (0x1 & uval)
   3443       1.9  christos 					   ? '1'
   3444       1.9  christos 					   : '0';
   3445       1.9  christos 				b[2] = '\0';
   3446       1.9  christos 				output(fp, name, b);
   3447       1.9  christos 			}
   3448       1.9  christos 			break;
   3449       1.1    kardel 
   3450       1.9  christos 		case OC:
   3451       1.9  christos 			if (!decodeuint(value, &uval)) {
   3452       1.9  christos 				output_raw = '?';
   3453       1.9  christos 			} else {
   3454       1.9  christos 				snprintf(b, sizeof(b), "%03lo", uval);
   3455       1.9  christos 				output(fp, name, b);
   3456       1.9  christos 			}
   3457       1.9  christos 			break;
   3458       1.1    kardel 
   3459       1.9  christos 		case AR:
   3460       1.9  christos 			if (!decodearr(value, &narr, lfparr))
   3461       1.9  christos 				output_raw = '?';
   3462       1.9  christos 			else
   3463       1.9  christos 				outputarr(fp, name, narr, lfparr);
   3464       1.9  christos 			break;
   3465       1.1    kardel 
   3466       1.9  christos 		case FX:
   3467       1.9  christos 			if (!decodeuint(value, &uval))
   3468       1.9  christos 				output_raw = '?';
   3469       1.9  christos 			else
   3470       1.9  christos 				output(fp, name, tstflags(uval));
   3471       1.9  christos 			break;
   3472       1.1    kardel 
   3473       1.9  christos 		default:
   3474       1.9  christos 			fprintf(stderr, "Internal error in cookedprint, %s=%s, fmt %d\n",
   3475       1.9  christos 				name, value, fmt);
   3476       1.9  christos 			output_raw = '?';
   3477       1.9  christos 			break;
   3478       1.1    kardel 		}
   3479       1.9  christos 
   3480       1.1    kardel 		if (output_raw != 0) {
   3481      1.13  christos 			/* TALOS-CAN-0063: avoid buffer overrun */
   3482       1.1    kardel 			atoascii(name, MAXVARLEN, bn, sizeof(bn));
   3483       1.1    kardel 			if (output_raw != '*') {
   3484      1.13  christos 				atoascii(value, MAXVALLEN,
   3485      1.13  christos 					 bv, sizeof(bv) - 1);
   3486       1.1    kardel 				len = strlen(bv);
   3487       1.1    kardel 				bv[len] = output_raw;
   3488       1.1    kardel 				bv[len+1] = '\0';
   3489      1.13  christos 			} else {
   3490      1.13  christos 				atoascii(value, MAXVALLEN,
   3491      1.13  christos 					 bv, sizeof(bv));
   3492       1.1    kardel 			}
   3493       1.1    kardel 			output(fp, bn, bv);
   3494       1.1    kardel 		}
   3495       1.1    kardel 	}
   3496       1.1    kardel 	endoutput(fp);
   3497       1.1    kardel }
   3498       1.1    kardel 
   3499       1.1    kardel 
   3500       1.1    kardel /*
   3501       1.1    kardel  * sortassoc - sort associations in the cache into ascending order
   3502       1.1    kardel  */
   3503       1.1    kardel void
   3504       1.1    kardel sortassoc(void)
   3505       1.1    kardel {
   3506       1.1    kardel 	if (numassoc > 1)
   3507       1.9  christos 		qsort(assoc_cache, (size_t)numassoc,
   3508       1.9  christos 		      sizeof(assoc_cache[0]), &assoccmp);
   3509       1.1    kardel }
   3510       1.1    kardel 
   3511       1.1    kardel 
   3512       1.1    kardel /*
   3513       1.1    kardel  * assoccmp - compare two associations
   3514       1.1    kardel  */
   3515       1.1    kardel static int
   3516       1.1    kardel assoccmp(
   3517       1.1    kardel 	const void *t1,
   3518       1.1    kardel 	const void *t2
   3519       1.1    kardel 	)
   3520       1.1    kardel {
   3521       1.4    kardel 	const struct association *ass1 = t1;
   3522       1.4    kardel 	const struct association *ass2 = t2;
   3523       1.1    kardel 
   3524       1.1    kardel 	if (ass1->assid < ass2->assid)
   3525       1.1    kardel 		return -1;
   3526       1.1    kardel 	if (ass1->assid > ass2->assid)
   3527       1.1    kardel 		return 1;
   3528       1.1    kardel 	return 0;
   3529       1.1    kardel }
   3530       1.4    kardel 
   3531       1.1    kardel 
   3532       1.1    kardel /*
   3533       1.9  christos  * grow_assoc_cache() - enlarge dynamic assoc_cache array
   3534       1.9  christos  *
   3535       1.9  christos  * The strategy is to add an assumed 4k page size at a time, leaving
   3536       1.9  christos  * room for malloc() bookkeeping overhead equivalent to 4 pointers.
   3537       1.9  christos  */
   3538       1.9  christos void
   3539       1.9  christos grow_assoc_cache(void)
   3540       1.9  christos {
   3541       1.9  christos 	static size_t	prior_sz;
   3542       1.9  christos 	size_t		new_sz;
   3543       1.9  christos 
   3544       1.9  christos 	new_sz = prior_sz + 4 * 1024;
   3545       1.9  christos 	if (0 == prior_sz) {
   3546       1.9  christos 		new_sz -= 4 * sizeof(void *);
   3547       1.9  christos 	}
   3548       1.9  christos 	assoc_cache = erealloc_zero(assoc_cache, new_sz, prior_sz);
   3549       1.9  christos 	prior_sz = new_sz;
   3550      1.14  christos 	assoc_cache_slots = (u_int)(new_sz / sizeof(assoc_cache[0]));
   3551       1.9  christos }
   3552       1.9  christos 
   3553       1.9  christos 
   3554       1.9  christos /*
   3555       1.1    kardel  * ntpq_custom_opt_handler - autoopts handler for -c and -p
   3556       1.1    kardel  *
   3557       1.1    kardel  * By default, autoopts loses the relative order of -c and -p options
   3558       1.1    kardel  * on the command line.  This routine replaces the default handler for
   3559       1.1    kardel  * those routines and builds a list of commands to execute preserving
   3560       1.1    kardel  * the order.
   3561       1.1    kardel  */
   3562       1.1    kardel void
   3563       1.1    kardel ntpq_custom_opt_handler(
   3564       1.1    kardel 	tOptions *pOptions,
   3565       1.1    kardel 	tOptDesc *pOptDesc
   3566       1.1    kardel 	)
   3567       1.1    kardel {
   3568       1.1    kardel 	switch (pOptDesc->optValue) {
   3569       1.9  christos 
   3570       1.1    kardel 	default:
   3571       1.9  christos 		fprintf(stderr,
   3572       1.1    kardel 			"ntpq_custom_opt_handler unexpected option '%c' (%d)\n",
   3573       1.1    kardel 			pOptDesc->optValue, pOptDesc->optValue);
   3574       1.9  christos 		exit(1);
   3575       1.1    kardel 
   3576       1.1    kardel 	case 'c':
   3577       1.1    kardel 		ADDCMD(pOptDesc->pzLastArg);
   3578       1.1    kardel 		break;
   3579       1.1    kardel 
   3580       1.1    kardel 	case 'p':
   3581       1.1    kardel 		ADDCMD("peers");
   3582       1.1    kardel 		break;
   3583       1.1    kardel 	}
   3584       1.1    kardel }
   3585      1.12  christos /*
   3586      1.12  christos  * Obtain list of digest names
   3587      1.12  christos  */
   3588      1.12  christos 
   3589      1.12  christos #ifdef OPENSSL
   3590      1.12  christos # ifdef HAVE_EVP_MD_DO_ALL_SORTED
   3591      1.12  christos struct hstate {
   3592      1.12  christos    char *list;
   3593      1.12  christos    const char **seen;
   3594      1.12  christos    int idx;
   3595      1.12  christos };
   3596      1.12  christos #define K_PER_LINE 8
   3597      1.12  christos #define K_NL_PFX_STR "\n    "
   3598      1.12  christos #define K_DELIM_STR ", "
   3599      1.12  christos static void list_md_fn(const EVP_MD *m, const char *from, const char *to, void *arg )
   3600      1.12  christos {
   3601      1.12  christos     size_t len, n;
   3602      1.12  christos     const char *name, *cp, **seen;
   3603      1.12  christos     struct hstate *hstate = arg;
   3604  1.16.2.1  pgoyette     EVP_MD_CTX *ctx;
   3605      1.12  christos     u_int digest_len;
   3606      1.12  christos     u_char digest[EVP_MAX_MD_SIZE];
   3607      1.12  christos 
   3608      1.12  christos     if (!m)
   3609      1.12  christos         return; /* Ignore aliases */
   3610      1.12  christos 
   3611      1.12  christos     name = EVP_MD_name(m);
   3612      1.12  christos 
   3613      1.12  christos     /* Lowercase names aren't accepted by keytype_from_text in ssl_init.c */
   3614      1.12  christos 
   3615      1.12  christos     for( cp = name; *cp; cp++ ) {
   3616      1.12  christos 	if( islower((unsigned char)*cp) )
   3617      1.12  christos 	    return;
   3618      1.12  christos     }
   3619      1.12  christos     len = (cp - name) + 1;
   3620      1.12  christos 
   3621      1.12  christos     /* There are duplicates.  Discard if name has been seen. */
   3622      1.12  christos 
   3623      1.12  christos     for (seen = hstate->seen; *seen; seen++)
   3624      1.12  christos         if (!strcmp(*seen, name))
   3625      1.12  christos 	    return;
   3626      1.12  christos     n = (seen - hstate->seen) + 2;
   3627      1.13  christos     hstate->seen = erealloc(hstate->seen, n * sizeof(*seen));
   3628      1.12  christos     hstate->seen[n-2] = name;
   3629      1.12  christos     hstate->seen[n-1] = NULL;
   3630      1.12  christos 
   3631      1.12  christos     /* Discard MACs that NTP won't accept.
   3632      1.12  christos      * Keep this consistent with keytype_from_text() in ssl_init.c.
   3633      1.12  christos      */
   3634      1.12  christos 
   3635  1.16.2.1  pgoyette     ctx = EVP_MD_CTX_new();
   3636  1.16.2.1  pgoyette     EVP_DigestInit(ctx, EVP_get_digestbyname(name));
   3637  1.16.2.1  pgoyette     EVP_DigestFinal(ctx, digest, &digest_len);
   3638  1.16.2.1  pgoyette     EVP_MD_CTX_free(ctx);
   3639      1.12  christos     if (digest_len > (MAX_MAC_LEN - sizeof(keyid_t)))
   3640      1.12  christos         return;
   3641      1.12  christos 
   3642      1.12  christos     if (hstate->list != NULL)
   3643      1.12  christos 	len += strlen(hstate->list);
   3644      1.12  christos     len += (hstate->idx >= K_PER_LINE)? strlen(K_NL_PFX_STR): strlen(K_DELIM_STR);
   3645      1.12  christos 
   3646      1.12  christos     if (hstate->list == NULL) {
   3647      1.13  christos 	hstate->list = (char *)emalloc(len);
   3648      1.12  christos 	hstate->list[0] = '\0';
   3649      1.12  christos     } else
   3650      1.13  christos 	hstate->list = (char *)erealloc(hstate->list, len);
   3651      1.12  christos 
   3652      1.12  christos     sprintf(hstate->list + strlen(hstate->list), "%s%s",
   3653      1.12  christos 	    ((hstate->idx >= K_PER_LINE)? K_NL_PFX_STR : K_DELIM_STR),
   3654      1.12  christos 	    name);
   3655      1.12  christos     if (hstate->idx >= K_PER_LINE)
   3656      1.12  christos 	hstate->idx = 1;
   3657      1.12  christos     else
   3658      1.12  christos 	hstate->idx++;
   3659      1.12  christos }
   3660      1.12  christos # endif
   3661      1.12  christos #endif
   3662      1.12  christos 
   3663      1.12  christos static char *list_digest_names(void)
   3664      1.12  christos {
   3665      1.12  christos     char *list = NULL;
   3666      1.12  christos 
   3667      1.12  christos #ifdef OPENSSL
   3668      1.12  christos # ifdef HAVE_EVP_MD_DO_ALL_SORTED
   3669      1.12  christos     struct hstate hstate = { NULL, NULL, K_PER_LINE+1 };
   3670      1.12  christos 
   3671      1.13  christos     hstate.seen = (const char **) emalloc_zero(1*sizeof( const char * )); // replaces -> calloc(1, sizeof( const char * ));
   3672      1.12  christos 
   3673      1.12  christos     INIT_SSL();
   3674      1.12  christos     EVP_MD_do_all_sorted(list_md_fn, &hstate);
   3675      1.12  christos     list = hstate.list;
   3676      1.12  christos     free(hstate.seen);
   3677      1.12  christos # else
   3678      1.13  christos     list = (char *)emalloc(sizeof("md5, others (upgrade to OpenSSL-1.0 for full list)"));
   3679      1.12  christos     strcpy(list, "md5, others (upgrade to OpenSSL-1.0 for full list)");
   3680      1.12  christos # endif
   3681      1.12  christos #else
   3682      1.13  christos     list = (char *)emalloc(sizeof("md5"));
   3683      1.12  christos     strcpy(list, "md5");
   3684      1.12  christos #endif
   3685      1.12  christos 
   3686      1.12  christos     return list;
   3687      1.12  christos }
   3688      1.14  christos 
   3689      1.14  christos #define CTRLC_STACK_MAX 4
   3690      1.14  christos static volatile size_t		ctrlc_stack_len = 0;
   3691      1.14  christos static volatile Ctrl_C_Handler	ctrlc_stack[CTRLC_STACK_MAX];
   3692      1.14  christos 
   3693      1.14  christos 
   3694      1.14  christos 
   3695      1.14  christos int/*BOOL*/
   3696      1.14  christos push_ctrl_c_handler(
   3697      1.14  christos 	Ctrl_C_Handler func
   3698      1.14  christos 	)
   3699      1.14  christos {
   3700      1.14  christos 	size_t size = ctrlc_stack_len;
   3701      1.14  christos 	if (func && (size < CTRLC_STACK_MAX)) {
   3702      1.14  christos 		ctrlc_stack[size] = func;
   3703      1.14  christos 		ctrlc_stack_len = size + 1;
   3704      1.14  christos 		return TRUE;
   3705      1.14  christos 	}
   3706      1.14  christos 	return FALSE;
   3707      1.14  christos }
   3708      1.14  christos 
   3709      1.14  christos int/*BOOL*/
   3710      1.14  christos pop_ctrl_c_handler(
   3711      1.14  christos 	Ctrl_C_Handler func
   3712      1.14  christos 	)
   3713      1.14  christos {
   3714      1.14  christos 	size_t size = ctrlc_stack_len;
   3715      1.14  christos 	if (size) {
   3716      1.14  christos 		--size;
   3717      1.14  christos 		if (func == NULL || func == ctrlc_stack[size]) {
   3718      1.14  christos 			ctrlc_stack_len = size;
   3719      1.14  christos 			return TRUE;
   3720      1.14  christos 		}
   3721      1.14  christos 	}
   3722      1.14  christos 	return FALSE;
   3723      1.14  christos }
   3724      1.14  christos 
   3725      1.14  christos static void
   3726      1.14  christos on_ctrlc(void)
   3727      1.14  christos {
   3728      1.14  christos 	size_t size = ctrlc_stack_len;
   3729      1.14  christos 	while (size)
   3730      1.14  christos 		if ((*ctrlc_stack[--size])())
   3731      1.14  christos 			break;
   3732      1.14  christos }
   3733      1.15  christos 
   3734      1.15  christos static int
   3735      1.15  christos my_easprintf(
   3736      1.15  christos 	char ** 	ppinto,
   3737      1.15  christos 	const char *	fmt   ,
   3738      1.15  christos 	...
   3739      1.15  christos 	)
   3740      1.15  christos {
   3741      1.15  christos 	va_list	va;
   3742      1.15  christos 	int	prc;
   3743      1.15  christos 	size_t	len = 128;
   3744      1.15  christos 	char *	buf = emalloc(len);
   3745      1.15  christos 
   3746      1.15  christos   again:
   3747      1.15  christos 	/* Note: we expect the memory allocation to fail long before the
   3748      1.15  christos 	 * increment in buffer size actually overflows.
   3749      1.15  christos 	 */
   3750      1.15  christos 	buf = (buf) ? erealloc(buf, len) : emalloc(len);
   3751      1.15  christos 
   3752      1.15  christos 	va_start(va, fmt);
   3753      1.15  christos 	prc = vsnprintf(buf, len, fmt, va);
   3754      1.15  christos 	va_end(va);
   3755      1.15  christos 
   3756      1.15  christos 	if (prc < 0) {
   3757      1.15  christos 		/* might be very old vsnprintf. Or actually MSVC... */
   3758      1.15  christos 		len += len >> 1;
   3759      1.15  christos 		goto again;
   3760      1.15  christos 	}
   3761      1.15  christos 	if ((size_t)prc >= len) {
   3762      1.15  christos 		/* at least we have the proper size now... */
   3763      1.15  christos 		len = (size_t)prc + 1;
   3764      1.15  christos 		goto again;
   3765      1.15  christos 	}
   3766      1.15  christos 	if ((size_t)prc < (len - 32))
   3767      1.15  christos 		buf = erealloc(buf, (size_t)prc + 1);
   3768      1.15  christos 	*ppinto = buf;
   3769      1.15  christos 	return prc;
   3770      1.15  christos }
   3771