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wiconfig.c revision 1.45
      1  1.45  riastrad /*	$NetBSD: wiconfig.c,v 1.45 2016/06/15 13:47:26 riastradh Exp $	*/
      2   1.1  sommerfe /*
      3   1.1  sommerfe  * Copyright (c) 1997, 1998, 1999
      4   1.1  sommerfe  *	Bill Paul <wpaul (at) ctr.columbia.edu>.  All rights reserved.
      5   1.1  sommerfe  *
      6   1.1  sommerfe  * Redistribution and use in source and binary forms, with or without
      7   1.1  sommerfe  * modification, are permitted provided that the following conditions
      8   1.1  sommerfe  * are met:
      9   1.1  sommerfe  * 1. Redistributions of source code must retain the above copyright
     10   1.1  sommerfe  *    notice, this list of conditions and the following disclaimer.
     11   1.1  sommerfe  * 2. Redistributions in binary form must reproduce the above copyright
     12   1.1  sommerfe  *    notice, this list of conditions and the following disclaimer in the
     13   1.1  sommerfe  *    documentation and/or other materials provided with the distribution.
     14   1.1  sommerfe  * 3. All advertising materials mentioning features or use of this software
     15   1.1  sommerfe  *    must display the following acknowledgement:
     16   1.1  sommerfe  *	This product includes software developed by Bill Paul.
     17   1.1  sommerfe  * 4. Neither the name of the author nor the names of any co-contributors
     18   1.1  sommerfe  *    may be used to endorse or promote products derived from this software
     19   1.1  sommerfe  *    without specific prior written permission.
     20   1.1  sommerfe  *
     21   1.1  sommerfe  * THIS SOFTWARE IS PROVIDED BY Bill Paul AND CONTRIBUTORS ``AS IS'' AND
     22   1.1  sommerfe  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
     23   1.1  sommerfe  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
     24   1.1  sommerfe  * ARE DISCLAIMED.  IN NO EVENT SHALL Bill Paul OR THE VOICES IN HIS HEAD
     25   1.1  sommerfe  * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
     26   1.1  sommerfe  * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
     27   1.1  sommerfe  * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
     28   1.1  sommerfe  * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
     29   1.1  sommerfe  * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
     30   1.1  sommerfe  * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF
     31   1.1  sommerfe  * THE POSSIBILITY OF SUCH DAMAGE.
     32   1.1  sommerfe  *
     33   1.8     enami  *	From: Id: wicontrol.c,v 1.6 1999/05/22 16:12:49 wpaul Exp $
     34   1.1  sommerfe  */
     35   1.1  sommerfe 
     36   1.1  sommerfe #include <sys/types.h>
     37   1.1  sommerfe #include <sys/cdefs.h>
     38   1.1  sommerfe #include <sys/param.h>
     39   1.1  sommerfe #include <sys/socket.h>
     40   1.1  sommerfe #include <sys/ioctl.h>
     41   1.1  sommerfe 
     42   1.1  sommerfe #include <net/if.h>
     43   1.2  explorer #ifdef __FreeBSD__
     44   1.2  explorer #include <net/if_var.h>
     45   1.2  explorer #include <net/ethernet.h>
     46   1.2  explorer 
     47   1.2  explorer #include <machine/if_wavelan_ieee.h>
     48   1.2  explorer #else
     49   1.2  explorer #include <netinet/in.h>
     50   1.2  explorer #include <netinet/if_ether.h>
     51   1.2  explorer #ifdef __NetBSD__
     52  1.31    dyoung #include <net80211/ieee80211.h>
     53  1.31    dyoung #include <net80211/ieee80211_ioctl.h>
     54  1.12    ichiro #include <dev/ic/wi_ieee.h>
     55   1.2  explorer #else
     56   1.2  explorer #include <dev/pcmcia/if_wavelan_ieee.h>
     57   1.2  explorer #endif
     58   1.2  explorer #endif
     59   1.1  sommerfe 
     60   1.1  sommerfe #include <stdio.h>
     61   1.1  sommerfe #include <string.h>
     62   1.2  explorer #include <ctype.h>
     63   1.1  sommerfe #include <stdlib.h>
     64   1.1  sommerfe #include <unistd.h>
     65   1.1  sommerfe #include <errno.h>
     66   1.1  sommerfe #include <err.h>
     67   1.1  sommerfe 
     68   1.1  sommerfe #if !defined(lint)
     69  1.41     lukem __COPYRIGHT("@(#) Copyright (c) 1997, 1998, 1999\
     70  1.41     lukem  Bill Paul.  All rights reserved.");
     71  1.45  riastrad __RCSID("$NetBSD: wiconfig.c,v 1.45 2016/06/15 13:47:26 riastradh Exp $");
     72   1.1  sommerfe #endif
     73   1.1  sommerfe 
     74   1.7     enami struct wi_table {
     75   1.7     enami 	int wi_type;
     76   1.7     enami 	int wi_code;
     77   1.7     enami #define	WI_NONE			0x00
     78   1.7     enami #define	WI_STRING		0x01
     79   1.7     enami #define	WI_BOOL			0x02
     80   1.7     enami #define	WI_WORDS		0x03
     81   1.7     enami #define	WI_HEXBYTES		0x04
     82   1.7     enami #define	WI_KEYSTRUCT		0x05
     83  1.22       dbj #define	WI_BITS			0x06
     84  1.29     perry #define	WI_VENDOR		0x07
     85  1.42     lukem 	const char *wi_label;		/* label used to print info */
     86   1.7     enami 	int wi_opt;			/* option character to set this */
     87  1.42     lukem 	const char *wi_desc;
     88   1.7     enami 	char *wi_optval;
     89   1.7     enami };
     90   1.7     enami 
     91  1.15    ichiro /* already define in wireg.h XXX */
     92  1.15    ichiro #define	WI_APRATE_0		0x00	/* NONE */
     93  1.15    ichiro #define WI_APRATE_1		0x0A	/* 1 Mbps */
     94  1.15    ichiro #define WI_APRATE_2		0x14	/* 2 Mbps */
     95  1.15    ichiro #define WI_APRATE_5		0x37	/* 5.5 Mbps */
     96  1.15    ichiro #define WI_APRATE_11		0x6E	/* 11 Mbps */
     97  1.15    ichiro 
     98  1.18  christos #ifdef WI_RID_SCAN_APS
     99  1.43     joerg static void wi_apscan(char *);
    100  1.43     joerg static int  get_if_flags(int, const char *);
    101  1.43     joerg static int  set_if_flags(int, const char *, int);
    102  1.18  christos #endif
    103  1.43     joerg static int  wi_getval(char *, struct wi_req *);
    104  1.43     joerg static void wi_setval(char *, struct wi_req *);
    105  1.43     joerg static void wi_printstr(struct wi_req *);
    106  1.43     joerg static void wi_setstr(char *, int, char *);
    107  1.43     joerg static void wi_setbytes(char *, int, char *, int);
    108  1.43     joerg static void wi_setword(char *, int, int);
    109  1.43     joerg static void wi_sethex(char *, int, char *);
    110  1.43     joerg static void wi_printwords(struct wi_req *);
    111  1.43     joerg static void wi_printbool(struct wi_req *);
    112  1.43     joerg static void wi_printhex(struct wi_req *);
    113  1.43     joerg static void wi_printbits(struct wi_req *);
    114  1.43     joerg static void wi_checkwifi(char *);
    115  1.43     joerg static void wi_dumpinfo(char *);
    116  1.43     joerg static void wi_printkeys(struct wi_req *);
    117  1.43     joerg static void wi_printvendor(struct wi_req *);
    118  1.43     joerg static void wi_dumpstats(char *);
    119  1.43     joerg __dead static void usage(void);
    120  1.43     joerg static struct wi_table *wi_optlookup(struct wi_table *, int);
    121   1.1  sommerfe 
    122  1.18  christos #ifdef WI_RID_SCAN_APS
    123  1.43     joerg static int
    124  1.43     joerg get_if_flags(int s, const char *name)
    125  1.17    ichiro {
    126  1.17    ichiro 	struct ifreq	ifreq;
    127  1.17    ichiro 	int		flags;
    128  1.17    ichiro 
    129  1.17    ichiro 	strncpy(ifreq.ifr_name, name, sizeof(ifreq.ifr_name));
    130  1.17    ichiro 	if (ioctl(s, SIOCGIFFLAGS, (caddr_t)&ifreq) == -1)
    131  1.17    ichiro 		  err(1, "SIOCGIFFLAGS");
    132  1.17    ichiro 	flags = ifreq.ifr_flags;
    133  1.17    ichiro 
    134  1.17    ichiro 	return flags;
    135  1.17    ichiro }
    136  1.17    ichiro 
    137  1.43     joerg static int
    138  1.43     joerg set_if_flags(int s, const char *name, int flags)
    139  1.17    ichiro {
    140  1.17    ichiro 	struct ifreq ifreq;
    141  1.17    ichiro 
    142  1.17    ichiro 	ifreq.ifr_flags = flags;
    143  1.17    ichiro 	strncpy(ifreq.ifr_name, name, sizeof(ifreq.ifr_name));
    144  1.17    ichiro 	if (ioctl(s, SIOCSIFFLAGS, (caddr_t)&ifreq) == -1)
    145  1.17    ichiro 		  err(1, "SIOCSIFFLAGS");
    146  1.17    ichiro 
    147  1.17    ichiro 	return 0;
    148  1.17    ichiro }
    149  1.17    ichiro 
    150  1.43     joerg static void
    151  1.43     joerg wi_apscan(char *iface)
    152  1.15    ichiro {
    153  1.15    ichiro 	struct wi_req		wreq;
    154  1.15    ichiro 	struct ifreq		ifr;
    155  1.15    ichiro 	int			s;
    156  1.15    ichiro 	int			naps, rate;
    157  1.15    ichiro 	int			retries = 10;
    158  1.17    ichiro 	int			flags;
    159  1.45  riastrad 	struct wi_apinfo	aps[howmany(WI_MAX_DATALEN,
    160  1.45  riastrad 				    sizeof(struct wi_apinfo))];
    161  1.15    ichiro 	int			i, j;
    162  1.15    ichiro 
    163  1.15    ichiro 	if (iface == NULL)
    164  1.15    ichiro 		errx(1, "must specify interface name");
    165  1.17    ichiro 
    166  1.17    ichiro 	s = socket(AF_INET, SOCK_DGRAM, 0);
    167  1.17    ichiro 	if (s == -1)
    168  1.17    ichiro 		err(1, "socket");
    169  1.17    ichiro 	flags = get_if_flags(s, iface);
    170  1.17    ichiro 	if ((flags & IFF_UP) == 0)
    171  1.17    ichiro 		flags = set_if_flags(s, iface, flags | IFF_UP);
    172  1.17    ichiro 
    173  1.15    ichiro 	memset((char *)&wreq, 0, sizeof(wreq));
    174  1.15    ichiro 
    175  1.15    ichiro 	wreq.wi_type = WI_RID_SCAN_APS;
    176  1.15    ichiro 	wreq.wi_len = 4;
    177  1.15    ichiro 	/* note chan. 1 is the least significant bit */
    178  1.32    dyoung 	wreq.wi_val[0] = htole16(0x3fff);	/* 1 bit per channel, 1-14 */
    179  1.32    dyoung 	wreq.wi_val[1] = htole16(0xf);		/* tx rate */
    180  1.15    ichiro 
    181  1.15    ichiro 	/* write the request */
    182  1.15    ichiro 	wi_setval(iface, &wreq);
    183  1.15    ichiro 
    184  1.15    ichiro 	/* now poll for a result */
    185  1.15    ichiro 	memset((char *)&wreq, 0, sizeof(wreq));
    186  1.15    ichiro 
    187  1.15    ichiro 	wreq.wi_type = WI_RID_READ_APS;
    188  1.15    ichiro 	wreq.wi_len = WI_MAX_DATALEN;
    189  1.15    ichiro 
    190  1.15    ichiro 	/* we have to do this ourself as opposed to
    191  1.19    ichiro 	 * using getval, because we cannot bail if
    192  1.15    ichiro  	 * the ioctl fails
    193  1.15    ichiro 	 */
    194  1.15    ichiro 	memset((char *)&ifr, 0, sizeof(ifr));
    195  1.30    itojun         strncpy(ifr.ifr_name, iface, sizeof(ifr.ifr_name));
    196  1.15    ichiro         ifr.ifr_data = (caddr_t)&wreq;
    197  1.15    ichiro 
    198  1.15    ichiro 	printf("scanning ...");
    199  1.17    ichiro 	fflush(stdout);
    200  1.15    ichiro 	while (ioctl(s, SIOCGWAVELAN, &ifr) == -1) {
    201  1.15    ichiro 		retries--;
    202  1.15    ichiro 		if (retries >= 0) {
    203  1.19    ichiro 			printf("."); fflush(stdout);
    204  1.15    ichiro 			sleep(1);
    205  1.15    ichiro 		} else
    206  1.15    ichiro 			break;
    207  1.15    ichiro 		errno = 0;
    208  1.15    ichiro 	}
    209  1.15    ichiro 
    210  1.15    ichiro 	if (errno) {
    211  1.17    ichiro 		set_if_flags(s, iface, flags);
    212  1.17    ichiro 		close(s);
    213  1.15    ichiro 		err(1, "ioctl");
    214  1.15    ichiro 	}
    215  1.15    ichiro 
    216  1.45  riastrad 	memcpy(&naps, wreq.wi_val, sizeof(int));
    217  1.23       dbj 
    218  1.23       dbj 	if (naps > 0)
    219  1.23       dbj 		printf("\nAP Information\n");
    220  1.23       dbj 	else
    221  1.23       dbj 		printf("\nNo APs available\n");
    222  1.23       dbj 
    223  1.45  riastrad 	naps = MIN((unsigned)naps,
    224  1.45  riastrad 	    howmany(sizeof(wreq.wi_val) - sizeof(int), sizeof(*aps)));
    225  1.45  riastrad 	memcpy(aps, (const char *)wreq.wi_val + sizeof(int),
    226  1.45  riastrad 	    (unsigned)naps * sizeof(*aps));
    227  1.45  riastrad 
    228  1.45  riastrad 	for (i = 0; i < naps; i++) {
    229  1.45  riastrad 		const struct wi_apinfo *const w = &aps[i];
    230  1.45  riastrad 
    231  1.15    ichiro 		printf("ap[%d]:\n", i);
    232  1.15    ichiro 		if (w->scanreason) {
    233  1.42     lukem 			static const char *scanm[] = {
    234  1.15    ichiro 				"Host initiated",
    235  1.15    ichiro 				"Firmware initiated",
    236  1.15    ichiro 				"Inquiry request from host"
    237  1.15    ichiro 			};
    238  1.15    ichiro 			printf("\tScanReason:\t\t\t[ %s ]\n",
    239  1.15    ichiro 				scanm[w->scanreason - 1]);
    240  1.15    ichiro 		}
    241  1.15    ichiro 		printf("\tnetname (SSID):\t\t\t[ ");
    242  1.15    ichiro 			for (j = 0; j < w->namelen; j++) {
    243  1.15    ichiro 				printf("%c", w->name[j]);
    244  1.15    ichiro 			}
    245  1.15    ichiro 			printf(" ]\n");
    246  1.15    ichiro 		printf("\tBSSID:\t\t\t\t[ %02x:%02x:%02x:%02x:%02x:%02x ]\n",
    247  1.15    ichiro 			w->bssid[0]&0xff, w->bssid[1]&0xff,
    248  1.15    ichiro 			w->bssid[2]&0xff, w->bssid[3]&0xff,
    249  1.15    ichiro 			w->bssid[4]&0xff, w->bssid[5]&0xff);
    250  1.15    ichiro 		printf("\tChannel:\t\t\t[ %d ]\n", w->channel);
    251  1.15    ichiro 		printf("\tQuality/Signal/Noise [signal]:\t[ %d / %d / %d ]\n"
    252  1.15    ichiro 		       "\t                        [dBm]:\t[ %d / %d / %d ]\n",
    253  1.15    ichiro 			w->quality, w->signal, w->noise,
    254  1.15    ichiro 			w->quality, w->signal - 149, w->noise - 149);
    255  1.21       dbj 		printf("\tBSS Beacon Interval [msec]:\t[ %d ]\n", w->interval);
    256  1.15    ichiro 		printf("\tCapinfo:\t\t\t[ ");
    257  1.15    ichiro 			if (w->capinfo & IEEE80211_CAPINFO_ESS)
    258  1.15    ichiro 				printf("ESS ");
    259  1.15    ichiro 			if (w->capinfo & IEEE80211_CAPINFO_PRIVACY)
    260  1.15    ichiro 				printf("WEP ");
    261  1.15    ichiro 			printf("]\n");
    262  1.15    ichiro 
    263  1.15    ichiro 		switch (w->rate) {
    264  1.15    ichiro 		case WI_APRATE_1:
    265  1.15    ichiro 			rate = 1;
    266  1.15    ichiro 			break;
    267  1.15    ichiro 		case WI_APRATE_2:
    268  1.15    ichiro 			rate = 2;
    269  1.15    ichiro 			break;
    270  1.15    ichiro 		case WI_APRATE_5:
    271  1.44     joerg 			rate = 5;
    272  1.15    ichiro 			break;
    273  1.15    ichiro 		case WI_APRATE_11:
    274  1.15    ichiro 			rate = 11;
    275  1.15    ichiro 			break;
    276  1.15    ichiro 		case WI_APRATE_0:
    277  1.15    ichiro 		default:
    278  1.15    ichiro 			rate = 0;
    279  1.15    ichiro 			break;
    280  1.15    ichiro 		}
    281  1.15    ichiro 		if (rate) printf("\tDataRate [Mbps]:\t\t[ %d ]\n", rate);
    282  1.15    ichiro 	}
    283  1.17    ichiro 
    284  1.17    ichiro 	set_if_flags(s, iface, flags);
    285  1.17    ichiro 	close(s);
    286  1.15    ichiro }
    287  1.18  christos #endif
    288  1.15    ichiro 
    289  1.43     joerg static int
    290  1.43     joerg wi_getval(char *iface, struct wi_req *wreq)
    291   1.1  sommerfe {
    292   1.1  sommerfe 	struct ifreq		ifr;
    293  1.39      elad 	int			s, error;
    294   1.1  sommerfe 
    295  1.39      elad 	error = 0;
    296   1.1  sommerfe 	bzero((char *)&ifr, sizeof(ifr));
    297   1.1  sommerfe 
    298  1.30    itojun 	strncpy(ifr.ifr_name, iface, sizeof(ifr.ifr_name));
    299   1.1  sommerfe 	ifr.ifr_data = (caddr_t)wreq;
    300   1.1  sommerfe 
    301   1.1  sommerfe 	s = socket(AF_INET, SOCK_DGRAM, 0);
    302   1.1  sommerfe 
    303   1.1  sommerfe 	if (s == -1)
    304   1.1  sommerfe 		err(1, "socket");
    305   1.1  sommerfe 
    306  1.39      elad 	if (ioctl(s, SIOCGWAVELAN, &ifr) == -1) {
    307  1.39      elad 		warn("SIOCGWAVELAN(wreq %04x)", wreq->wi_type);
    308  1.39      elad 		error = 1;
    309  1.39      elad 	}
    310   1.1  sommerfe 
    311   1.1  sommerfe 	close(s);
    312   1.1  sommerfe 
    313  1.39      elad 	return error;
    314   1.1  sommerfe }
    315   1.1  sommerfe 
    316  1.43     joerg static void
    317  1.43     joerg wi_setval(char *iface, struct wi_req *wreq)
    318   1.1  sommerfe {
    319   1.1  sommerfe 	struct ifreq		ifr;
    320   1.1  sommerfe 	int			s;
    321   1.1  sommerfe 
    322   1.1  sommerfe 	bzero((char *)&ifr, sizeof(ifr));
    323   1.1  sommerfe 
    324  1.30    itojun 	strncpy(ifr.ifr_name, iface, sizeof(ifr.ifr_name));
    325   1.1  sommerfe 	ifr.ifr_data = (caddr_t)wreq;
    326   1.1  sommerfe 
    327   1.1  sommerfe 	s = socket(AF_INET, SOCK_DGRAM, 0);
    328   1.1  sommerfe 
    329   1.1  sommerfe 	if (s == -1)
    330   1.1  sommerfe 		err(1, "socket");
    331   1.1  sommerfe 
    332   1.1  sommerfe 	if (ioctl(s, SIOCSWAVELAN, &ifr) == -1)
    333   1.1  sommerfe 		err(1, "SIOCSWAVELAN");
    334   1.1  sommerfe 
    335   1.1  sommerfe 	close(s);
    336   1.1  sommerfe 
    337   1.1  sommerfe 	return;
    338   1.1  sommerfe }
    339   1.1  sommerfe 
    340  1.43     joerg static void
    341  1.43     joerg wi_printstr(struct wi_req *wreq)
    342   1.1  sommerfe {
    343   1.1  sommerfe 	char			*ptr;
    344   1.1  sommerfe 	int			i;
    345   1.1  sommerfe 
    346   1.1  sommerfe 	if (wreq->wi_type == WI_RID_SERIALNO) {
    347   1.1  sommerfe 		ptr = (char *)&wreq->wi_val;
    348   1.1  sommerfe 		for (i = 0; i < (wreq->wi_len - 1) * 2; i++) {
    349   1.1  sommerfe 			if (ptr[i] == '\0')
    350   1.1  sommerfe 				ptr[i] = ' ';
    351   1.1  sommerfe 		}
    352   1.1  sommerfe 	} else {
    353  1.14    tsubai 		int len = le16toh(wreq->wi_val[0]);
    354  1.14    tsubai 
    355   1.1  sommerfe 		ptr = (char *)&wreq->wi_val[1];
    356  1.14    tsubai 		for (i = 0; i < len; i++) {
    357   1.1  sommerfe 			if (ptr[i] == '\0')
    358   1.1  sommerfe 				ptr[i] = ' ';
    359   1.1  sommerfe 		}
    360   1.1  sommerfe 	}
    361   1.1  sommerfe 
    362   1.1  sommerfe 	ptr[i] = '\0';
    363   1.1  sommerfe 	printf("[ %s ]", ptr);
    364   1.1  sommerfe 
    365   1.1  sommerfe 	return;
    366   1.1  sommerfe }
    367   1.1  sommerfe 
    368  1.43     joerg static void
    369  1.43     joerg wi_setstr(char *iface, int code, char *str)
    370   1.1  sommerfe {
    371   1.1  sommerfe 	struct wi_req		wreq;
    372   1.1  sommerfe 
    373   1.1  sommerfe 	bzero((char *)&wreq, sizeof(wreq));
    374   1.1  sommerfe 
    375   1.1  sommerfe 	if (strlen(str) > 30)
    376   1.1  sommerfe 		errx(1, "string too long");
    377   1.1  sommerfe 
    378   1.1  sommerfe 	wreq.wi_type = code;
    379   1.1  sommerfe 	wreq.wi_len = 18;
    380  1.14    tsubai 	wreq.wi_val[0] = htole16(strlen(str));
    381   1.1  sommerfe 	bcopy(str, (char *)&wreq.wi_val[1], strlen(str));
    382   1.1  sommerfe 
    383   1.1  sommerfe 	wi_setval(iface, &wreq);
    384   1.1  sommerfe 
    385   1.1  sommerfe 	return;
    386   1.1  sommerfe }
    387   1.1  sommerfe 
    388  1.43     joerg static void
    389  1.43     joerg wi_setbytes(char *iface, int code, char *bytes, int len)
    390   1.1  sommerfe {
    391   1.1  sommerfe 	struct wi_req		wreq;
    392   1.1  sommerfe 
    393   1.1  sommerfe 	bzero((char *)&wreq, sizeof(wreq));
    394   1.1  sommerfe 
    395   1.1  sommerfe 	wreq.wi_type = code;
    396   1.1  sommerfe 	wreq.wi_len = (len / 2) + 1;
    397   1.1  sommerfe 	bcopy(bytes, (char *)&wreq.wi_val[0], len);
    398   1.1  sommerfe 
    399   1.1  sommerfe 	wi_setval(iface, &wreq);
    400   1.1  sommerfe 
    401   1.1  sommerfe 	return;
    402   1.1  sommerfe }
    403   1.1  sommerfe 
    404  1.43     joerg static void
    405  1.43     joerg wi_setword(char *iface, int code, int word)
    406   1.1  sommerfe {
    407   1.1  sommerfe 	struct wi_req		wreq;
    408   1.1  sommerfe 
    409   1.1  sommerfe 	bzero((char *)&wreq, sizeof(wreq));
    410   1.1  sommerfe 
    411   1.1  sommerfe 	wreq.wi_type = code;
    412   1.1  sommerfe 	wreq.wi_len = 2;
    413  1.14    tsubai 	wreq.wi_val[0] = htole16(word);
    414   1.1  sommerfe 
    415   1.1  sommerfe 	wi_setval(iface, &wreq);
    416   1.1  sommerfe 
    417   1.1  sommerfe 	return;
    418   1.1  sommerfe }
    419   1.1  sommerfe 
    420  1.43     joerg static void
    421  1.43     joerg wi_sethex(char *iface, int code, char *str)
    422   1.1  sommerfe {
    423   1.1  sommerfe 	struct ether_addr	*addr;
    424   1.1  sommerfe 
    425   1.1  sommerfe 	addr = ether_aton(str);
    426   1.1  sommerfe 	if (addr == NULL)
    427   1.1  sommerfe 		errx(1, "badly formatted address");
    428   1.1  sommerfe 
    429   1.1  sommerfe 	wi_setbytes(iface, code, (char *)addr, ETHER_ADDR_LEN);
    430   1.1  sommerfe 
    431   1.1  sommerfe 	return;
    432   1.1  sommerfe }
    433   1.1  sommerfe 
    434  1.43     joerg static void
    435  1.43     joerg wi_printkeys(struct wi_req *wreq)
    436   1.2  explorer {
    437   1.2  explorer         int                     i, j, bn;
    438   1.2  explorer         struct wi_key           *k;
    439   1.2  explorer         struct wi_ltv_keys      *keys;
    440   1.2  explorer         char                    *ptr;
    441   1.2  explorer 
    442   1.2  explorer 	keys = (struct wi_ltv_keys *)wreq;
    443   1.2  explorer 
    444   1.2  explorer 	for (i = 0, bn = 0; i < 4; i++, bn = 0) {
    445   1.2  explorer                 k = &keys->wi_keys[i];
    446   1.2  explorer                 ptr = (char *)k->wi_keydat;
    447  1.14    tsubai                 for (j = 0; j < le16toh(k->wi_keylen); j++) {
    448  1.10  jdolecek 		        if (!isprint((unsigned char) ptr[j])) {
    449   1.2  explorer 			        bn = 1;
    450   1.2  explorer 				break;
    451   1.2  explorer 			}
    452   1.2  explorer 		}
    453   1.2  explorer 
    454   1.2  explorer 		if (bn)	{
    455   1.2  explorer 		        printf("[ 0x");
    456  1.14    tsubai 		        for (j = 0; j < le16toh(k->wi_keylen); j++)
    457   1.2  explorer 			      printf("%02x", ((unsigned char *) ptr)[j]);
    458   1.2  explorer 			printf(" ]");
    459   1.2  explorer 		} else {
    460   1.2  explorer 		        ptr[j] = '\0';
    461   1.2  explorer 			printf("[ %s ]", ptr);
    462   1.2  explorer 		}
    463   1.2  explorer         }
    464   1.2  explorer 
    465   1.2  explorer         return;
    466   1.2  explorer };
    467   1.2  explorer 
    468  1.43     joerg static void
    469  1.43     joerg wi_printvendor(struct wi_req *wreq)
    470  1.29     perry {
    471  1.29     perry 	/* id
    472  1.29     perry 	 * vendor
    473  1.29     perry 	 * firmware major
    474  1.29     perry 	 *          minor
    475  1.29     perry 	 */
    476  1.29     perry #define WI_RID_STA_IDENTITY_LUCENT	0x1
    477  1.29     perry #define WI_RID_STA_IDENTITY_PRISMII	0x2
    478  1.29     perry #define WI_RID_STA_IDENTITY_SAMSUNG	0x3
    479  1.29     perry #define WI_RID_STA_IDENTITY_DLINK	0x6
    480  1.29     perry 
    481  1.29     perry 	const char *vendor = "Unknown";
    482  1.29     perry 
    483  1.29     perry 	if (wreq->wi_len < 4)
    484  1.29     perry 		return;
    485  1.29     perry 
    486  1.32    dyoung 	switch (le16toh(wreq->wi_val[1])) {
    487  1.29     perry 	case WI_RID_STA_IDENTITY_LUCENT:
    488  1.29     perry 		vendor = "Lucent";
    489  1.29     perry 		break;
    490  1.29     perry 	case WI_RID_STA_IDENTITY_PRISMII:
    491  1.29     perry 		vendor = "generic PRISM II";
    492  1.29     perry 		break;
    493  1.29     perry 	case WI_RID_STA_IDENTITY_SAMSUNG:
    494  1.29     perry 		vendor = "Samsung";
    495  1.29     perry 		break;
    496  1.29     perry 	case WI_RID_STA_IDENTITY_DLINK:
    497  1.29     perry 		vendor = "D-Link";
    498  1.29     perry 		break;
    499  1.29     perry 	}
    500  1.32    dyoung 	printf("[ %s ID: %d version: %d.%d ]", vendor, le16toh(wreq->wi_val[0]),
    501  1.32    dyoung 	    le16toh(wreq->wi_val[2]), le16toh(wreq->wi_val[3]));
    502  1.29     perry 	return;
    503  1.29     perry }
    504  1.29     perry 
    505  1.43     joerg static void
    506  1.43     joerg wi_printwords(struct wi_req *wreq)
    507   1.1  sommerfe {
    508   1.1  sommerfe 	int			i;
    509   1.1  sommerfe 
    510   1.1  sommerfe 	printf("[ ");
    511   1.1  sommerfe 	for (i = 0; i < wreq->wi_len - 1; i++)
    512  1.14    tsubai 		printf("%d ", le16toh(wreq->wi_val[i]));
    513   1.1  sommerfe 	printf("]");
    514   1.1  sommerfe 
    515   1.1  sommerfe 	return;
    516   1.1  sommerfe }
    517   1.1  sommerfe 
    518  1.43     joerg static void
    519  1.43     joerg wi_printbool(struct wi_req *wreq)
    520   1.1  sommerfe {
    521  1.14    tsubai 	if (le16toh(wreq->wi_val[0]))
    522   1.1  sommerfe 		printf("[ On ]");
    523   1.1  sommerfe 	else
    524   1.1  sommerfe 		printf("[ Off ]");
    525   1.1  sommerfe 
    526   1.1  sommerfe 	return;
    527   1.1  sommerfe }
    528   1.1  sommerfe 
    529  1.43     joerg static void
    530  1.43     joerg wi_printhex(struct wi_req *wreq)
    531   1.1  sommerfe {
    532   1.1  sommerfe 	int			i;
    533   1.1  sommerfe 	unsigned char		*c;
    534   1.1  sommerfe 
    535   1.1  sommerfe 	c = (unsigned char *)&wreq->wi_val;
    536   1.1  sommerfe 
    537   1.1  sommerfe 	printf("[ ");
    538   1.1  sommerfe 	for (i = 0; i < (wreq->wi_len - 1) * 2; i++) {
    539   1.1  sommerfe 		printf("%02x", c[i]);
    540   1.1  sommerfe 		if (i < ((wreq->wi_len - 1) * 2) - 1)
    541   1.1  sommerfe 			printf(":");
    542   1.1  sommerfe 	}
    543   1.1  sommerfe 
    544   1.1  sommerfe 	printf(" ]");
    545   1.1  sommerfe 	return;
    546   1.1  sommerfe }
    547   1.1  sommerfe 
    548  1.43     joerg static void
    549  1.43     joerg wi_printbits(struct wi_req *wreq)
    550  1.22       dbj {
    551  1.22       dbj 	int			i;
    552  1.22       dbj 	int bits = le16toh(wreq->wi_val[0]);
    553  1.22       dbj 
    554  1.22       dbj 	printf("[");
    555  1.22       dbj 	for (i = 0; i < 16; i++) {
    556  1.22       dbj 		if (bits & 0x1) {
    557  1.22       dbj 			printf(" %d", i+1);
    558  1.22       dbj 		}
    559  1.22       dbj 		bits >>= 1;
    560  1.22       dbj 	}
    561  1.22       dbj 	printf(" ]");
    562  1.22       dbj 	return;
    563  1.22       dbj }
    564  1.22       dbj 
    565   1.1  sommerfe static struct wi_table wi_table[] = {
    566  1.42     lukem 	{ WI_RID_SERIALNO, WI_STRING, "NIC serial number:\t\t\t", 0, 0, 0 },
    567   1.7     enami 	{ WI_RID_NODENAME, WI_STRING, "Station name:\t\t\t\t",
    568  1.42     lukem 	    's', "station name", 0, },
    569  1.42     lukem 	{ WI_RID_OWN_SSID, WI_STRING, "SSID for IBSS creation:\t\t\t", 0, 0, 0 },
    570  1.42     lukem 	{ WI_RID_CURRENT_SSID, WI_STRING, "Current netname (SSID):\t\t\t", 0, 0, 0 },
    571  1.42     lukem 	{ WI_RID_DESIRED_SSID, WI_STRING, "Desired netname (SSID):\t\t\t", 0, 0, 0 },
    572  1.42     lukem 	{ WI_RID_CURRENT_BSSID, WI_HEXBYTES, "Current BSSID:\t\t\t\t", 0, 0, 0 },
    573  1.42     lukem 	{ WI_RID_CHANNEL_LIST, WI_BITS, "Channel list:\t\t\t\t", 0, 0, 0 },
    574  1.42     lukem 	{ WI_RID_OWN_CHNL, WI_WORDS, "IBSS channel:\t\t\t\t", 0, 0, 0 },
    575  1.42     lukem 	{ WI_RID_CURRENT_CHAN, WI_WORDS, "Current channel:\t\t\t", 0, 0, 0 },
    576  1.42     lukem 	{ WI_RID_COMMS_QUALITY, WI_WORDS, "Comms quality/signal/noise:\t\t", 0, 0, 0 },
    577  1.42     lukem 	{ WI_RID_PROMISC, WI_BOOL, "Promiscuous mode:\t\t\t", 0, 0, 0 },
    578  1.42     lukem 	{ WI_RID_PORTTYPE, WI_WORDS, "Port type:\t\t\t\t", 0, 0, 0 },
    579   1.7     enami 	{ WI_RID_MAC_NODE, WI_HEXBYTES, "MAC address:\t\t\t\t",
    580  1.42     lukem 	    'm', "MAC address", 0, },
    581  1.42     lukem 	{ WI_RID_TX_RATE, WI_WORDS, "TX rate (selection):\t\t\t", 0, 0, 0 },
    582  1.42     lukem 	{ WI_RID_CUR_TX_RATE, WI_WORDS, "TX rate (actual speed):\t\t\t", 0, 0, 0 },
    583  1.42     lukem 	{ WI_RID_CUR_BEACON_INT, WI_WORDS, "Beacon Interval (current) [msec]:\t", 0, 0, 0 },
    584   1.7     enami 	{ WI_RID_MAX_DATALEN, WI_WORDS, "Maximum data length:\t\t\t",
    585  1.42     lukem 	    'd', "maximum data length", 0 },
    586   1.7     enami 	{ WI_RID_RTS_THRESH, WI_WORDS, "RTS/CTS handshake threshold:\t\t",
    587  1.42     lukem 	    'r', "RTS threshold", 0 },
    588  1.28    dyoung 	{ WI_RID_FRAG_THRESH, WI_WORDS, "fragmentation threshold:\t\t",
    589  1.42     lukem 	    'g', "fragmentation threshold", 0, },
    590  1.42     lukem 	{ WI_RID_DBM_ADJUST, WI_WORDS, "RSSI -> dBm adjustment:\t\t\t", 0, 0, 0 },
    591  1.42     lukem 	{ WI_RID_CREATE_IBSS, WI_BOOL, "Create IBSS:\t\t\t\t", 0, 0, 0 },
    592  1.13    ichiro 	{ WI_RID_MICROWAVE_OVEN, WI_WORDS, "Microwave oven robustness:\t\t",
    593  1.42     lukem 	    'M', "microwave oven robustness enabled", 0 },
    594  1.13    ichiro 	{ WI_RID_ROAMING_MODE, WI_WORDS, "Roaming mode(1:firm,3:disable):\t\t",
    595  1.42     lukem 	    'R', "roaming mode", 0 },
    596   1.7     enami 	{ WI_RID_SYSTEM_SCALE, WI_WORDS, "Access point density:\t\t\t",
    597  1.42     lukem 	    'a', "system scale", 0 },
    598  1.42     lukem 	{ WI_RID_PM_ENABLED, WI_WORDS, "Power Mgmt (1=on, 0=off):\t\t", 0, 0, 0 },
    599  1.42     lukem 	{ WI_RID_MAX_SLEEP, WI_WORDS, "Max sleep time (msec):\t\t\t", 0, 0, 0 },
    600  1.42     lukem  	{ WI_RID_STA_IDENTITY, WI_VENDOR, "Vendor info:\t\t\t\t", 0, 0, 0 },
    601  1.42     lukem 	{ 0, WI_NONE, 0, 0, 0, 0 }
    602   1.1  sommerfe };
    603   1.1  sommerfe 
    604   1.2  explorer static struct wi_table wi_crypt_table[] = {
    605  1.42     lukem 	{ WI_RID_ENCRYPTION, WI_BOOL, "WEP encryption:\t\t\t\t", 0, 0, 0 },
    606  1.33  wrstuden 	{ WI_RID_CNFAUTHMODE, WI_WORDS, "Authentication type \n(1=OpenSys, 2=Shared Key):\t\t",
    607  1.42     lukem 	    'A', "authentication type", 0 },
    608  1.42     lukem         { WI_RID_TX_CRYPT_KEY, WI_WORDS, "TX encryption key:\t\t\t", 0, 0, 0 },
    609  1.42     lukem         { WI_RID_DEFLT_CRYPT_KEYS, WI_KEYSTRUCT, "Encryption keys:\t\t\t", 0, 0, 0 },
    610  1.42     lukem 	{ 0, WI_NONE, 0, 0, 0, 0 }
    611   1.7     enami };
    612   1.7     enami 
    613   1.7     enami static struct wi_table *wi_tables[] = {
    614   1.7     enami 	wi_table,
    615   1.7     enami 	wi_crypt_table,
    616   1.7     enami 	NULL
    617   1.2  explorer };
    618   1.2  explorer 
    619   1.7     enami static struct wi_table *
    620  1.43     joerg wi_optlookup(struct wi_table *table, int opt)
    621   1.7     enami {
    622   1.7     enami 	struct wi_table *wt;
    623   1.7     enami 
    624   1.7     enami 	for (wt = table; wt->wi_type != 0; wt++)
    625   1.7     enami 		if (wt->wi_opt == opt)
    626   1.7     enami 			return (wt);
    627   1.7     enami 	return (NULL);
    628   1.7     enami }
    629   1.7     enami 
    630  1.43     joerg static void
    631  1.43     joerg wi_checkwifi(char *iface)
    632  1.40  sborrill {
    633  1.40  sborrill 	struct ifreq		ifr;
    634  1.40  sborrill 	struct ieee80211_nwid	nwid;
    635  1.40  sborrill 	int			s;
    636  1.40  sborrill 
    637  1.40  sborrill 	bzero((char *)&ifr, sizeof(ifr));
    638  1.40  sborrill 
    639  1.40  sborrill 	strncpy(ifr.ifr_name, iface, sizeof(ifr.ifr_name));
    640  1.40  sborrill 	ifr.ifr_data = (void *)&nwid;
    641  1.40  sborrill 
    642  1.40  sborrill 	s = socket(AF_INET, SOCK_DGRAM, 0);
    643  1.40  sborrill 
    644  1.40  sborrill 	if (s == -1)
    645  1.40  sborrill 		err(1, "socket");
    646  1.40  sborrill 
    647  1.40  sborrill 	/* Choice of ioctl inspired by ifconfig/ieee80211.c */
    648  1.40  sborrill 	if (ioctl(s, SIOCG80211NWID, &ifr) == -1)
    649  1.40  sborrill 		err(1, "SIOCG80211NWID");
    650  1.40  sborrill 
    651  1.40  sborrill 	close(s);
    652  1.40  sborrill }
    653  1.40  sborrill 
    654  1.43     joerg static void
    655  1.43     joerg wi_dumpinfo(char *iface)
    656   1.1  sommerfe {
    657   1.1  sommerfe 	struct wi_req		wreq;
    658   1.2  explorer 	int			i, has_wep;
    659   1.1  sommerfe 	struct wi_table		*w;
    660   1.1  sommerfe 
    661   1.2  explorer 	bzero((char *)&wreq, sizeof(wreq));
    662   1.2  explorer 
    663   1.2  explorer 	wreq.wi_len = WI_MAX_DATALEN;
    664   1.2  explorer 	wreq.wi_type = WI_RID_WEP_AVAIL;
    665   1.2  explorer 
    666   1.2  explorer 	wi_getval(iface, &wreq);
    667  1.14    tsubai 	has_wep = le16toh(wreq.wi_val[0]);
    668   1.2  explorer 
    669   1.1  sommerfe 	w = wi_table;
    670   1.1  sommerfe 
    671   1.7     enami 	for (i = 0; w[i].wi_code != WI_NONE; i++) {
    672   1.1  sommerfe 		bzero((char *)&wreq, sizeof(wreq));
    673   1.1  sommerfe 
    674   1.1  sommerfe 		wreq.wi_len = WI_MAX_DATALEN;
    675   1.7     enami 		wreq.wi_type = w[i].wi_type;
    676   1.1  sommerfe 
    677   1.7     enami 		printf("%s", w[i].wi_label);
    678  1.39      elad 		if (wi_getval(iface, &wreq)) {
    679  1.39      elad 			printf("[ Unknown ]\n");
    680  1.39      elad 			continue;
    681  1.39      elad 		}
    682   1.7     enami 		switch (w[i].wi_code) {
    683   1.1  sommerfe 		case WI_STRING:
    684   1.1  sommerfe 			wi_printstr(&wreq);
    685   1.1  sommerfe 			break;
    686   1.1  sommerfe 		case WI_WORDS:
    687   1.1  sommerfe 			wi_printwords(&wreq);
    688   1.1  sommerfe 			break;
    689   1.1  sommerfe 		case WI_BOOL:
    690   1.1  sommerfe 			wi_printbool(&wreq);
    691   1.1  sommerfe 			break;
    692   1.1  sommerfe 		case WI_HEXBYTES:
    693   1.1  sommerfe 			wi_printhex(&wreq);
    694  1.22       dbj 			break;
    695  1.22       dbj 		case WI_BITS:
    696  1.22       dbj 			wi_printbits(&wreq);
    697  1.29     perry 			break;
    698  1.29     perry 		case WI_VENDOR:
    699  1.29     perry 			wi_printvendor(&wreq);
    700   1.1  sommerfe 			break;
    701   1.1  sommerfe 		default:
    702   1.1  sommerfe 			break;
    703   1.1  sommerfe 		}
    704   1.1  sommerfe 		printf("\n");
    705   1.1  sommerfe 	}
    706   1.1  sommerfe 
    707   1.2  explorer 	if (has_wep) {
    708   1.2  explorer 		w = wi_crypt_table;
    709   1.7     enami 		for (i = 0; w[i].wi_code != WI_NONE; i++) {
    710   1.2  explorer 			bzero((char *)&wreq, sizeof(wreq));
    711   1.2  explorer 
    712   1.2  explorer 			wreq.wi_len = WI_MAX_DATALEN;
    713   1.7     enami 			wreq.wi_type = w[i].wi_type;
    714   1.2  explorer 
    715   1.2  explorer 			wi_getval(iface, &wreq);
    716   1.7     enami 			printf("%s", w[i].wi_label);
    717   1.7     enami 			switch (w[i].wi_code) {
    718   1.2  explorer 			case WI_STRING:
    719   1.2  explorer 				wi_printstr(&wreq);
    720   1.2  explorer 				break;
    721   1.2  explorer 			case WI_WORDS:
    722   1.2  explorer 				if (wreq.wi_type == WI_RID_TX_CRYPT_KEY)
    723  1.14    tsubai 					wreq.wi_val[0] =
    724  1.14    tsubai 					  htole16(le16toh(wreq.wi_val[0]) + 1);
    725   1.2  explorer 				wi_printwords(&wreq);
    726   1.2  explorer 				break;
    727   1.2  explorer 			case WI_BOOL:
    728   1.2  explorer 				wi_printbool(&wreq);
    729   1.2  explorer 				break;
    730   1.2  explorer 			case WI_HEXBYTES:
    731   1.2  explorer 				wi_printhex(&wreq);
    732   1.2  explorer 				break;
    733   1.2  explorer 			case WI_KEYSTRUCT:
    734   1.2  explorer 				wi_printkeys(&wreq);
    735   1.2  explorer 				break;
    736   1.2  explorer 			default:
    737   1.2  explorer 				break;
    738   1.2  explorer 			}
    739   1.2  explorer 			printf("\n");
    740   1.2  explorer 		}
    741   1.2  explorer 	}
    742   1.2  explorer 
    743   1.1  sommerfe 	return;
    744   1.1  sommerfe }
    745   1.1  sommerfe 
    746  1.43     joerg static void
    747  1.43     joerg wi_dumpstats(char *iface)
    748   1.1  sommerfe {
    749   1.1  sommerfe 	struct wi_req		wreq;
    750   1.1  sommerfe 	struct wi_counters	*c;
    751   1.1  sommerfe 
    752   1.1  sommerfe 	bzero((char *)&wreq, sizeof(wreq));
    753   1.1  sommerfe 	wreq.wi_len = WI_MAX_DATALEN;
    754   1.1  sommerfe 	wreq.wi_type = WI_RID_IFACE_STATS;
    755   1.1  sommerfe 
    756   1.1  sommerfe 	wi_getval(iface, &wreq);
    757   1.1  sommerfe 
    758   1.1  sommerfe 	c = (struct wi_counters *)&wreq.wi_val;
    759   1.1  sommerfe 
    760  1.14    tsubai 	/* XXX native byte order */
    761   1.1  sommerfe 	printf("Transmitted unicast frames:\t\t%d\n",
    762   1.1  sommerfe 	    c->wi_tx_unicast_frames);
    763   1.1  sommerfe 	printf("Transmitted multicast frames:\t\t%d\n",
    764   1.1  sommerfe 	    c->wi_tx_multicast_frames);
    765   1.1  sommerfe 	printf("Transmitted fragments:\t\t\t%d\n",
    766   1.1  sommerfe 	    c->wi_tx_fragments);
    767   1.1  sommerfe 	printf("Transmitted unicast octets:\t\t%d\n",
    768   1.1  sommerfe 	    c->wi_tx_unicast_octets);
    769   1.1  sommerfe 	printf("Transmitted multicast octets:\t\t%d\n",
    770   1.1  sommerfe 	    c->wi_tx_multicast_octets);
    771   1.1  sommerfe 	printf("Single transmit retries:\t\t%d\n",
    772   1.1  sommerfe 	    c->wi_tx_single_retries);
    773   1.1  sommerfe 	printf("Multiple transmit retries:\t\t%d\n",
    774   1.1  sommerfe 	    c->wi_tx_multi_retries);
    775   1.1  sommerfe 	printf("Transmit retry limit exceeded:\t\t%d\n",
    776   1.1  sommerfe 	    c->wi_tx_retry_limit);
    777   1.1  sommerfe 	printf("Transmit discards:\t\t\t%d\n",
    778   1.1  sommerfe 	    c->wi_tx_discards);
    779   1.1  sommerfe 	printf("Transmit discards due to wrong SA:\t%d\n",
    780   1.1  sommerfe 	    c->wi_tx_discards_wrong_sa);
    781   1.1  sommerfe 	printf("Received unicast frames:\t\t%d\n",
    782   1.1  sommerfe 	    c->wi_rx_unicast_frames);
    783   1.1  sommerfe 	printf("Received multicast frames:\t\t%d\n",
    784   1.1  sommerfe 	    c->wi_rx_multicast_frames);
    785   1.1  sommerfe 	printf("Received fragments:\t\t\t%d\n",
    786   1.1  sommerfe 	    c->wi_rx_fragments);
    787   1.1  sommerfe 	printf("Received unicast octets:\t\t%d\n",
    788   1.1  sommerfe 	    c->wi_rx_unicast_octets);
    789   1.1  sommerfe 	printf("Received multicast octets:\t\t%d\n",
    790   1.1  sommerfe 	    c->wi_rx_multicast_octets);
    791   1.1  sommerfe 	printf("Receive FCS errors:\t\t\t%d\n",
    792   1.1  sommerfe 	    c->wi_rx_fcs_errors);
    793   1.1  sommerfe 	printf("Receive discards due to no buffer:\t%d\n",
    794   1.1  sommerfe 	    c->wi_rx_discards_nobuf);
    795   1.1  sommerfe 	printf("Can't decrypt WEP frame:\t\t%d\n",
    796   1.1  sommerfe 	    c->wi_rx_WEP_cant_decrypt);
    797   1.1  sommerfe 	printf("Received message fragments:\t\t%d\n",
    798   1.1  sommerfe 	    c->wi_rx_msg_in_msg_frags);
    799   1.1  sommerfe 	printf("Received message bad fragments:\t\t%d\n",
    800   1.1  sommerfe 	    c->wi_rx_msg_in_bad_msg_frags);
    801   1.1  sommerfe 
    802   1.1  sommerfe 	return;
    803   1.1  sommerfe }
    804   1.1  sommerfe 
    805   1.7     enami static void
    806  1.43     joerg usage(void)
    807   1.1  sommerfe {
    808   1.7     enami 
    809   1.2  explorer 	fprintf(stderr,
    810  1.35       wiz 	    "usage: %s interface [-Dho] [-A 1|2] [-a access point density]\n"
    811  1.35       wiz 	    "                [-d max data length] [-g fragmentation threshold] [-M 0|1]\n"
    812  1.35       wiz 	    "                [-m MAC address] [-R 1|3] [-r RTS threshold] [-s station name]\n"
    813   1.9     jhawk 	    ,
    814  1.11       cgd 	    getprogname());
    815   1.1  sommerfe 	exit(1);
    816   1.1  sommerfe }
    817   1.1  sommerfe 
    818  1.43     joerg int
    819  1.43     joerg main(int argc, char *argv[])
    820   1.1  sommerfe {
    821   1.7     enami 	struct wi_table *wt, **table;
    822  1.28    dyoung 	char *iface;
    823  1.28    dyoung 	int ch, dumpinfo, dumpstats, apscan;
    824   1.7     enami 
    825   1.7     enami #define	SET_OPERAND(opr, desc) do {				\
    826   1.7     enami 	if ((opr) == NULL)					\
    827   1.7     enami 		(opr) = optarg;					\
    828   1.7     enami 	else							\
    829   1.7     enami 		warnx("%s is already specified to %s",		\
    830   1.7     enami 		    desc, (opr));				\
    831   1.7     enami } while (0)
    832   1.7     enami 
    833   1.7     enami 	dumpinfo = 1;
    834   1.7     enami 	dumpstats = 0;
    835  1.15    ichiro 	apscan = 0;
    836  1.28    dyoung 	iface = NULL;
    837   1.2  explorer 
    838   1.2  explorer 	if (argc > 1 && argv[1][0] != '-') {
    839   1.2  explorer 		iface = argv[1];
    840   1.5     enami 		optind++;
    841   1.2  explorer 	}
    842   1.1  sommerfe 
    843   1.3    itojun 	while ((ch = getopt(argc, argv,
    844  1.33  wrstuden 	    "a:d:g:hi:m:or:s:A:M:R:D")) != -1) {
    845   1.7     enami 		if (ch != 'i')
    846   1.7     enami 			dumpinfo = 0;
    847   1.7     enami 		/*
    848  1.35       wiz 		 * Lookup generic options and remember operand if found.
    849   1.7     enami 		 */
    850  1.37     lukem 		wt = NULL;	/* XXXGCC -Wuninitialized */
    851   1.7     enami 		for (table = wi_tables; *table != NULL; table++)
    852   1.7     enami 			if ((wt = wi_optlookup(*table, ch)) != NULL) {
    853   1.7     enami 				SET_OPERAND(wt->wi_optval, wt->wi_desc);
    854   1.7     enami 				break;
    855   1.7     enami 			}
    856   1.7     enami 		if (wt == NULL)
    857   1.7     enami 			/*
    858   1.7     enami 			 * Handle special options.
    859   1.7     enami 			 */
    860   1.7     enami 			switch (ch) {
    861   1.7     enami 			case 'o':
    862   1.7     enami 				dumpstats = 1;
    863   1.7     enami 				break;
    864   1.7     enami 			case 'i':
    865   1.7     enami 				SET_OPERAND(iface, "interface");
    866   1.7     enami 				break;
    867  1.15    ichiro 			case 'D':
    868  1.15    ichiro 				apscan = 1;
    869  1.15    ichiro 				break;
    870   1.7     enami 			case 'h':
    871   1.7     enami 			default:
    872   1.7     enami 				usage();
    873   1.7     enami 				break;
    874   1.7     enami 			}
    875   1.1  sommerfe 	}
    876   1.1  sommerfe 
    877   1.1  sommerfe 	if (iface == NULL)
    878   1.7     enami 		usage();
    879   1.2  explorer 
    880  1.40  sborrill 	/* Check interface is wireless. Will not return on error */
    881  1.40  sborrill 	wi_checkwifi(iface);
    882  1.40  sborrill 
    883   1.7     enami 	for (table = wi_tables; *table != NULL; table++)
    884   1.7     enami 		for (wt = *table; wt->wi_code != WI_NONE; wt++)
    885   1.7     enami 			if (wt->wi_optval != NULL) {
    886   1.7     enami 				switch (wt->wi_code) {
    887   1.7     enami 				case WI_BOOL:
    888   1.7     enami 				case WI_WORDS:
    889   1.7     enami 					wi_setword(iface, wt->wi_type,
    890   1.7     enami 					    atoi(wt->wi_optval));
    891   1.7     enami 					break;
    892   1.7     enami 				case WI_STRING:
    893   1.7     enami 					wi_setstr(iface, wt->wi_type,
    894   1.7     enami 					    wt->wi_optval);
    895   1.7     enami 					break;
    896   1.7     enami 				case WI_HEXBYTES:
    897   1.7     enami 					wi_sethex(iface, wt->wi_type,
    898   1.7     enami 					    wt->wi_optval);
    899   1.7     enami 					break;
    900   1.7     enami 				}
    901   1.7     enami 			}
    902   1.7     enami 
    903   1.7     enami 	if (dumpstats)
    904   1.7     enami 		wi_dumpstats(iface);
    905   1.7     enami 	if (dumpinfo)
    906   1.7     enami 		wi_dumpinfo(iface);
    907  1.18  christos 
    908  1.15    ichiro 	if (apscan)
    909  1.18  christos #ifdef WI_RID_SCAN_APS
    910  1.15    ichiro 		wi_apscan(iface);
    911  1.18  christos #else
    912  1.18  christos 		errx(1, "AP scan mode is not available.");
    913  1.18  christos #endif
    914   1.1  sommerfe 
    915   1.1  sommerfe 	exit(0);
    916   1.1  sommerfe }
    917