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ieee80211.c revision 1.11.4.2
      1  1.11.4.1       mjf /*	$NetBSD: ieee80211.c,v 1.11.4.2 2008/09/28 11:17:11 mjf Exp $	*/
      2       1.1   thorpej 
      3       1.1   thorpej /*
      4       1.1   thorpej  * Copyright (c) 1983, 1993
      5       1.1   thorpej  *      The Regents of the University of California.  All rights reserved.
      6       1.1   thorpej  *
      7       1.1   thorpej  * Redistribution and use in source and binary forms, with or without
      8       1.1   thorpej  * modification, are permitted provided that the following conditions
      9       1.1   thorpej  * are met:
     10       1.1   thorpej  * 1. Redistributions of source code must retain the above copyright
     11       1.1   thorpej  *    notice, this list of conditions and the following disclaimer.
     12       1.1   thorpej  * 2. Redistributions in binary form must reproduce the above copyright
     13       1.1   thorpej  *    notice, this list of conditions and the following disclaimer in the
     14       1.1   thorpej  *    documentation and/or other materials provided with the distribution.
     15       1.1   thorpej  * 3. Neither the name of the University nor the names of its contributors
     16       1.1   thorpej  *    may be used to endorse or promote products derived from this software
     17       1.1   thorpej  *    without specific prior written permission.
     18       1.1   thorpej  *
     19       1.1   thorpej  * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
     20       1.1   thorpej  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
     21       1.1   thorpej  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
     22       1.1   thorpej  * ARE DISCLAIMED.  IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
     23       1.1   thorpej  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
     24       1.1   thorpej  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
     25       1.1   thorpej  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
     26       1.1   thorpej  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
     27       1.1   thorpej  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
     28  1.11.4.1       mjf  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
     29       1.1   thorpej  * SUCH DAMAGE.
     30       1.1   thorpej  */
     31       1.1   thorpej 
     32       1.1   thorpej #include <sys/cdefs.h>
     33       1.1   thorpej #ifndef lint
     34  1.11.4.1       mjf __RCSID("$NetBSD: ieee80211.c,v 1.11.4.2 2008/09/28 11:17:11 mjf Exp $");
     35       1.1   thorpej #endif /* not lint */
     36       1.1   thorpej 
     37  1.11.4.1       mjf #include <sys/param.h>
     38  1.11.4.1       mjf #include <sys/ioctl.h>
     39       1.1   thorpej #include <sys/socket.h>
     40       1.1   thorpej 
     41  1.11.4.1       mjf #include <net/if.h>
     42       1.1   thorpej #include <net/if_ether.h>
     43       1.5    rpaulo #include <net/if_media.h>
     44      1.11  degroote #include <net/route.h>
     45       1.1   thorpej #include <net80211/ieee80211.h>
     46       1.1   thorpej #include <net80211/ieee80211_ioctl.h>
     47      1.11  degroote #include <net80211/ieee80211_netbsd.h>
     48       1.1   thorpej 
     49  1.11.4.1       mjf #include <assert.h>
     50       1.1   thorpej #include <ctype.h>
     51       1.1   thorpej #include <err.h>
     52  1.11.4.1       mjf #include <errno.h>
     53       1.1   thorpej #include <netdb.h>
     54       1.1   thorpej #include <string.h>
     55      1.11  degroote #include <stddef.h>
     56       1.1   thorpej #include <stdlib.h>
     57       1.1   thorpej #include <stdio.h>
     58      1.11  degroote #include <unistd.h>
     59       1.7  christos #include <util.h>
     60       1.1   thorpej 
     61       1.1   thorpej #include "extern.h"
     62  1.11.4.1       mjf #include "parse.h"
     63  1.11.4.1       mjf #include "env.h"
     64  1.11.4.1       mjf #include "util.h"
     65       1.1   thorpej 
     66  1.11.4.2       mjf static void ieee80211_statistics(prop_dictionary_t);
     67  1.11.4.2       mjf static void ieee80211_status(prop_dictionary_t, prop_dictionary_t);
     68  1.11.4.2       mjf static void ieee80211_constructor(void) __attribute__((constructor));
     69  1.11.4.1       mjf static int set80211(prop_dictionary_t env, uint16_t, int16_t, int16_t,
     70  1.11.4.1       mjf     u_int8_t *);
     71      1.11  degroote static u_int ieee80211_mhz2ieee(u_int, u_int);
     72      1.11  degroote static int getmaxrate(const uint8_t [15], u_int8_t);
     73      1.11  degroote static const char * getcaps(int);
     74      1.11  degroote static void printie(const char*, const uint8_t *, size_t, int);
     75      1.11  degroote static int copy_essid(char [], size_t, const u_int8_t *, size_t);
     76  1.11.4.1       mjf static void scan_and_wait(prop_dictionary_t);
     77  1.11.4.1       mjf static void list_scan(prop_dictionary_t);
     78      1.11  degroote static int mappsb(u_int , u_int);
     79      1.11  degroote static int mapgsm(u_int , u_int);
     80      1.11  degroote 
     81  1.11.4.2       mjf static int sethidessid(prop_dictionary_t, prop_dictionary_t);
     82  1.11.4.2       mjf static int setapbridge(prop_dictionary_t, prop_dictionary_t);
     83  1.11.4.2       mjf static int setifssid(prop_dictionary_t, prop_dictionary_t);
     84  1.11.4.2       mjf static int setifnwkey(prop_dictionary_t, prop_dictionary_t);
     85  1.11.4.2       mjf static int unsetifnwkey(prop_dictionary_t, prop_dictionary_t);
     86  1.11.4.2       mjf static int unsetifbssid(prop_dictionary_t, prop_dictionary_t);
     87  1.11.4.2       mjf static int setifbssid(prop_dictionary_t, prop_dictionary_t);
     88  1.11.4.2       mjf static int setifchan(prop_dictionary_t, prop_dictionary_t);
     89  1.11.4.2       mjf static int setiffrag(prop_dictionary_t, prop_dictionary_t);
     90  1.11.4.2       mjf static int setifpowersave(prop_dictionary_t, prop_dictionary_t);
     91  1.11.4.2       mjf static int setifpowersavesleep(prop_dictionary_t, prop_dictionary_t);
     92  1.11.4.2       mjf static int setifrts(prop_dictionary_t, prop_dictionary_t);
     93  1.11.4.2       mjf static int scan_exec(prop_dictionary_t, prop_dictionary_t);
     94  1.11.4.2       mjf 
     95      1.11  degroote static void printies(const u_int8_t *, int, int);
     96      1.11  degroote static void printie(const char* , const uint8_t *, size_t , int);
     97      1.11  degroote static void printwmeparam(const char *, const u_int8_t *, size_t , int);
     98      1.11  degroote static void printwmeinfo(const char *, const u_int8_t *, size_t , int);
     99      1.11  degroote static const char * wpa_cipher(const u_int8_t *);
    100      1.11  degroote static const char * wpa_keymgmt(const u_int8_t *);
    101      1.11  degroote static void printwpaie(const char *, const u_int8_t *, size_t , int);
    102      1.11  degroote static const char * rsn_cipher(const u_int8_t *);
    103      1.11  degroote static const char * rsn_keymgmt(const u_int8_t *);
    104      1.11  degroote static void printrsnie(const char *, const u_int8_t *, size_t , int);
    105      1.11  degroote static void printssid(const char *, const u_int8_t *, size_t , int);
    106      1.11  degroote static void printrates(const char *, const u_int8_t *, size_t , int);
    107      1.11  degroote static void printcountry(const char *, const u_int8_t *, size_t , int);
    108      1.11  degroote static int iswpaoui(const u_int8_t *);
    109      1.11  degroote static int iswmeinfo(const u_int8_t *);
    110      1.11  degroote static int iswmeparam(const u_int8_t *);
    111      1.11  degroote static const char * iename(int);
    112      1.11  degroote 
    113  1.11.4.2       mjf extern struct pinteger parse_chan, parse_frag, parse_rts;
    114  1.11.4.2       mjf extern struct pstr parse_bssid, parse_ssid, parse_nwkey;
    115  1.11.4.2       mjf extern struct pinteger parse_powersavesleep;
    116       1.5    rpaulo 
    117  1.11.4.1       mjf static const struct kwinst ieee80211boolkw[] = {
    118  1.11.4.1       mjf 	  {.k_word = "hidessid", .k_key = "hidessid", .k_neg = true,
    119  1.11.4.1       mjf 	   .k_type = KW_T_BOOL, .k_bool = true, .k_negbool = false,
    120  1.11.4.1       mjf 	   .k_exec = sethidessid}
    121  1.11.4.1       mjf 	, {.k_word = "apbridge", .k_key = "apbridge", .k_neg = true,
    122  1.11.4.1       mjf 	   .k_type = KW_T_BOOL, .k_bool = true, .k_negbool = false,
    123  1.11.4.1       mjf 	   .k_exec = setapbridge}
    124  1.11.4.1       mjf 	, {.k_word = "powersave", .k_key = "powersave", .k_neg = true,
    125  1.11.4.1       mjf 	   .k_type = KW_T_BOOL, .k_bool = true, .k_negbool = false,
    126  1.11.4.1       mjf 	   .k_exec = setifpowersave}
    127  1.11.4.1       mjf };
    128  1.11.4.1       mjf 
    129  1.11.4.1       mjf static const struct kwinst listskw[] = {
    130  1.11.4.1       mjf 	{.k_word = "scan", .k_exec = scan_exec}
    131  1.11.4.1       mjf };
    132  1.11.4.1       mjf 
    133  1.11.4.1       mjf static struct pkw lists = PKW_INITIALIZER(&lists, "ieee80211 lists", NULL,
    134  1.11.4.1       mjf     "list", listskw, __arraycount(listskw), &command_root.pb_parser);
    135  1.11.4.1       mjf 
    136  1.11.4.1       mjf static const struct kwinst kw80211kw[] = {
    137  1.11.4.1       mjf 	  {.k_word = "bssid", .k_nextparser = &parse_bssid.ps_parser}
    138  1.11.4.1       mjf 	, {.k_word = "-bssid", .k_exec = unsetifbssid,
    139  1.11.4.1       mjf 	   .k_nextparser = &command_root.pb_parser}
    140  1.11.4.1       mjf 	, {.k_word = "chan", .k_nextparser = &parse_chan.pi_parser}
    141  1.11.4.1       mjf 	, {.k_word = "-chan", .k_key = "chan", .k_type = KW_T_UINT,
    142  1.11.4.1       mjf 	   .k_uint = IEEE80211_CHAN_ANY, .k_exec = setifchan,
    143  1.11.4.1       mjf 	   .k_nextparser = &command_root.pb_parser}
    144  1.11.4.1       mjf 	, {.k_word = "frag", .k_nextparser = &parse_frag.pi_parser}
    145  1.11.4.1       mjf 	, {.k_word = "-frag", .k_key = "frag", .k_type = KW_T_INT,
    146  1.11.4.1       mjf 	   .k_int = IEEE80211_FRAG_MAX, .k_exec = setiffrag,
    147  1.11.4.1       mjf 	   .k_nextparser = &command_root.pb_parser}
    148  1.11.4.1       mjf 	, {.k_word = "list", .k_nextparser = &lists.pk_parser}
    149  1.11.4.1       mjf 	, {.k_word = "nwid", .k_nextparser = &parse_ssid.ps_parser}
    150  1.11.4.1       mjf 	, {.k_word = "nwkey", .k_nextparser = &parse_nwkey.ps_parser}
    151  1.11.4.1       mjf 	, {.k_word = "-nwkey", .k_exec = unsetifnwkey,
    152  1.11.4.1       mjf 	   .k_nextparser = &command_root.pb_parser}
    153  1.11.4.2       mjf 	, {.k_word = "rts", .k_nextparser = &parse_rts.pi_parser}
    154  1.11.4.2       mjf 	, {.k_word = "-rts", .k_key = "rts", .k_type = KW_T_INT,
    155  1.11.4.2       mjf 	   .k_int = IEEE80211_RTS_MAX, .k_exec = setifrts,
    156  1.11.4.2       mjf 	   .k_nextparser = &command_root.pb_parser}
    157  1.11.4.1       mjf 	, {.k_word = "ssid", .k_nextparser = &parse_ssid.ps_parser}
    158  1.11.4.1       mjf 	, {.k_word = "powersavesleep",
    159  1.11.4.1       mjf 	   .k_nextparser = &parse_powersavesleep.pi_parser}
    160  1.11.4.1       mjf };
    161  1.11.4.1       mjf 
    162  1.11.4.1       mjf struct pkw kw80211 = PKW_INITIALIZER(&kw80211, "802.11 keywords", NULL, NULL,
    163  1.11.4.1       mjf     kw80211kw, __arraycount(kw80211kw), NULL);
    164  1.11.4.1       mjf 
    165  1.11.4.1       mjf struct pkw ieee80211bool = PKW_INITIALIZER(&ieee80211bool, "ieee80211 boolean",
    166  1.11.4.1       mjf     NULL, NULL, ieee80211boolkw, __arraycount(ieee80211boolkw),
    167  1.11.4.1       mjf     &command_root.pb_parser);
    168  1.11.4.1       mjf 
    169  1.11.4.1       mjf struct pinteger parse_chan = PINTEGER_INITIALIZER1(&parse_chan, "chan",
    170  1.11.4.1       mjf     0, UINT16_MAX, 10, setifchan, "chan", &command_root.pb_parser);
    171  1.11.4.1       mjf 
    172  1.11.4.2       mjf struct pinteger parse_rts = PINTEGER_INITIALIZER1(&parse_rts, "rts",
    173  1.11.4.2       mjf     IEEE80211_RTS_MIN, IEEE80211_RTS_MAX, 10,
    174  1.11.4.2       mjf     setifrts, "rts", &command_root.pb_parser);
    175  1.11.4.2       mjf 
    176  1.11.4.1       mjf struct pinteger parse_frag = PINTEGER_INITIALIZER1(&parse_frag, "frag",
    177  1.11.4.1       mjf     IEEE80211_FRAG_MIN, IEEE80211_FRAG_MAX, 10,
    178  1.11.4.1       mjf     setiffrag, "frag", &command_root.pb_parser);
    179  1.11.4.1       mjf 
    180  1.11.4.1       mjf struct pstr parse_ssid = PSTR_INITIALIZER(&parse_pass, "ssid", setifssid,
    181  1.11.4.1       mjf     "ssid", &command_root.pb_parser);
    182  1.11.4.1       mjf 
    183  1.11.4.1       mjf struct pinteger parse_powersavesleep =
    184  1.11.4.1       mjf     PINTEGER_INITIALIZER1(&parse_powersavesleep, "powersavesleep",
    185  1.11.4.1       mjf     0, INT_MAX, 10, setifpowersavesleep, "powersavesleep",
    186  1.11.4.1       mjf     &command_root.pb_parser);
    187  1.11.4.1       mjf 
    188  1.11.4.1       mjf struct pstr parse_nwkey = PSTR_INITIALIZER(&parse_nwkey, "nwkey", setifnwkey,
    189  1.11.4.1       mjf     "nwkey", &command_root.pb_parser);
    190  1.11.4.1       mjf 
    191  1.11.4.1       mjf struct pstr parse_bssid = PSTR_INITIALIZER(&parse_bssid, "bssid", setifbssid,
    192  1.11.4.1       mjf     "bssid", &command_root.pb_parser);
    193  1.11.4.1       mjf 
    194  1.11.4.1       mjf static int
    195  1.11.4.1       mjf set80211(prop_dictionary_t env, uint16_t type, int16_t val, int16_t len,
    196  1.11.4.1       mjf     u_int8_t *data)
    197  1.11.4.1       mjf {
    198  1.11.4.1       mjf 	struct ieee80211req	ireq;
    199  1.11.4.1       mjf 
    200  1.11.4.1       mjf 	memset(&ireq, 0, sizeof(ireq));
    201       1.5    rpaulo 	ireq.i_type = type;
    202       1.5    rpaulo 	ireq.i_val = val;
    203       1.5    rpaulo 	ireq.i_len = len;
    204       1.5    rpaulo 	ireq.i_data = data;
    205  1.11.4.1       mjf 	if (direct_ioctl(env, SIOCS80211, &ireq) == -1) {
    206  1.11.4.1       mjf 		warn("SIOCS80211");
    207  1.11.4.1       mjf 		return -1;
    208  1.11.4.1       mjf 	}
    209  1.11.4.1       mjf 	return 0;
    210  1.11.4.1       mjf }
    211       1.5    rpaulo 
    212  1.11.4.2       mjf static int
    213  1.11.4.2       mjf sethidessid(prop_dictionary_t env, prop_dictionary_t oenv)
    214       1.5    rpaulo {
    215  1.11.4.1       mjf 	bool on, rc;
    216  1.11.4.1       mjf 
    217  1.11.4.1       mjf 	rc = prop_dictionary_get_bool(env, "hidessid", &on);
    218  1.11.4.1       mjf 	assert(rc);
    219  1.11.4.1       mjf 	return set80211(env, IEEE80211_IOC_HIDESSID, on ? 1 : 0, 0, NULL);
    220       1.5    rpaulo }
    221       1.5    rpaulo 
    222  1.11.4.2       mjf static int
    223  1.11.4.2       mjf setapbridge(prop_dictionary_t env, prop_dictionary_t oenv)
    224       1.5    rpaulo {
    225  1.11.4.1       mjf 	bool on, rc;
    226  1.11.4.1       mjf 
    227  1.11.4.1       mjf 	rc = prop_dictionary_get_bool(env, "apbridge", &on);
    228  1.11.4.1       mjf 	assert(rc);
    229  1.11.4.1       mjf 	return set80211(env, IEEE80211_IOC_APBRIDGE, on ? 1 : 0, 0, NULL);
    230       1.5    rpaulo }
    231       1.5    rpaulo 
    232       1.5    rpaulo static enum ieee80211_opmode
    233  1.11.4.1       mjf get80211opmode(prop_dictionary_t env)
    234       1.5    rpaulo {
    235       1.5    rpaulo 	struct ifmediareq ifmr;
    236       1.5    rpaulo 
    237  1.11.4.1       mjf 	memset(&ifmr, 0, sizeof(ifmr));
    238  1.11.4.1       mjf 	if (direct_ioctl(env, SIOCGIFMEDIA, &ifmr) == -1)
    239  1.11.4.1       mjf 		;
    240  1.11.4.1       mjf 	else if (ifmr.ifm_current & IFM_IEEE80211_ADHOC)
    241  1.11.4.1       mjf 		return IEEE80211_M_IBSS;        /* XXX ahdemo */
    242  1.11.4.1       mjf 	else if (ifmr.ifm_current & IFM_IEEE80211_HOSTAP)
    243  1.11.4.1       mjf 		return IEEE80211_M_HOSTAP;
    244  1.11.4.1       mjf 	else if (ifmr.ifm_current & IFM_IEEE80211_MONITOR)
    245  1.11.4.1       mjf 		return IEEE80211_M_MONITOR;
    246  1.11.4.1       mjf 
    247  1.11.4.1       mjf 	return IEEE80211_M_STA;
    248       1.5    rpaulo }
    249       1.5    rpaulo 
    250  1.11.4.2       mjf static int
    251  1.11.4.2       mjf setifssid(prop_dictionary_t env, prop_dictionary_t oenv)
    252       1.1   thorpej {
    253       1.1   thorpej 	struct ieee80211_nwid nwid;
    254  1.11.4.1       mjf 	ssize_t len;
    255       1.1   thorpej 
    256  1.11.4.1       mjf 	memset(&nwid, 0, sizeof(nwid));
    257  1.11.4.1       mjf 	if ((len = getargdata(env, "ssid", nwid.i_nwid,
    258  1.11.4.1       mjf 	    sizeof(nwid.i_nwid))) == -1)
    259  1.11.4.1       mjf 		errx(EXIT_FAILURE, "%s: SSID too long", __func__);
    260  1.11.4.1       mjf 	nwid.i_len = (uint8_t)len;
    261  1.11.4.1       mjf 	if (indirect_ioctl(env, SIOCS80211NWID, &nwid) == -1)
    262       1.9    dyoung 		err(EXIT_FAILURE, "SIOCS80211NWID");
    263  1.11.4.1       mjf 	return 0;
    264       1.1   thorpej }
    265       1.1   thorpej 
    266  1.11.4.2       mjf static int
    267  1.11.4.2       mjf unsetifbssid(prop_dictionary_t env, prop_dictionary_t oenv)
    268       1.1   thorpej {
    269       1.1   thorpej 	struct ieee80211_bssid bssid;
    270       1.1   thorpej 
    271  1.11.4.1       mjf 	memset(&bssid, 0, sizeof(bssid));
    272  1.11.4.1       mjf 
    273  1.11.4.1       mjf 	if (direct_ioctl(env, SIOCS80211BSSID, &bssid) == -1)
    274       1.9    dyoung 		err(EXIT_FAILURE, "SIOCS80211BSSID");
    275  1.11.4.1       mjf 	return 0;
    276       1.1   thorpej }
    277       1.1   thorpej 
    278  1.11.4.2       mjf static int
    279  1.11.4.2       mjf setifbssid(prop_dictionary_t env, prop_dictionary_t oenv)
    280       1.8    dyoung {
    281  1.11.4.1       mjf 	char buf[24];
    282  1.11.4.1       mjf 	struct ieee80211_bssid bssid;
    283  1.11.4.1       mjf 	struct ether_addr *ea;
    284       1.8    dyoung 
    285  1.11.4.1       mjf 	if (getargstr(env, "bssid", buf, sizeof(buf)) == -1)
    286  1.11.4.1       mjf 		errx(EXIT_FAILURE, "%s: BSSID too long", __func__);
    287  1.11.4.1       mjf 
    288  1.11.4.1       mjf 	ea = ether_aton(buf);
    289  1.11.4.1       mjf 	if (ea == NULL) {
    290  1.11.4.1       mjf 		errx(EXIT_FAILURE, "malformed BSSID: %s", buf);
    291  1.11.4.1       mjf 		return -1;
    292       1.8    dyoung 	}
    293  1.11.4.1       mjf 	memcpy(&bssid.i_bssid, ea->ether_addr_octet,
    294  1.11.4.1       mjf 	    sizeof(bssid.i_bssid));
    295       1.8    dyoung 
    296  1.11.4.1       mjf 	if (direct_ioctl(env, SIOCS80211BSSID, &bssid) == -1)
    297  1.11.4.1       mjf 		err(EXIT_FAILURE, "SIOCS80211BSSID");
    298  1.11.4.1       mjf 	return 0;
    299  1.11.4.1       mjf }
    300  1.11.4.1       mjf 
    301  1.11.4.2       mjf static int
    302  1.11.4.2       mjf setifrts(prop_dictionary_t env, prop_dictionary_t oenv)
    303  1.11.4.2       mjf {
    304  1.11.4.2       mjf 	bool rc;
    305  1.11.4.2       mjf 	int16_t val;
    306  1.11.4.2       mjf 
    307  1.11.4.2       mjf 	rc = prop_dictionary_get_int16(env, "rts", &val);
    308  1.11.4.2       mjf 	assert(rc);
    309  1.11.4.2       mjf 	if (set80211(env, IEEE80211_IOC_RTSTHRESHOLD, val, 0, NULL) == -1)
    310  1.11.4.2       mjf 		err(EXIT_FAILURE, "IEEE80211_IOC_RTSTHRESHOLD");
    311  1.11.4.2       mjf 	return 0;
    312  1.11.4.2       mjf }
    313  1.11.4.2       mjf 
    314  1.11.4.2       mjf static int
    315  1.11.4.2       mjf setiffrag(prop_dictionary_t env, prop_dictionary_t oenv)
    316  1.11.4.1       mjf {
    317  1.11.4.1       mjf 	bool rc;
    318  1.11.4.1       mjf 	int16_t val;
    319  1.11.4.1       mjf 
    320  1.11.4.1       mjf 	rc = prop_dictionary_get_int16(env, "frag", &val);
    321  1.11.4.1       mjf 	assert(rc);
    322  1.11.4.1       mjf 	if (set80211(env, IEEE80211_IOC_FRAGTHRESHOLD, val, 0, NULL) == -1)
    323       1.8    dyoung 		err(EXIT_FAILURE, "IEEE80211_IOC_FRAGTHRESHOLD");
    324  1.11.4.1       mjf 	return 0;
    325       1.8    dyoung }
    326       1.8    dyoung 
    327  1.11.4.2       mjf static int
    328  1.11.4.2       mjf setifchan(prop_dictionary_t env, prop_dictionary_t oenv)
    329       1.1   thorpej {
    330  1.11.4.1       mjf 	bool rc;
    331       1.1   thorpej 	struct ieee80211chanreq channel;
    332       1.1   thorpej 
    333  1.11.4.1       mjf 	rc = prop_dictionary_get_uint16(env, "chan", &channel.i_channel);
    334  1.11.4.1       mjf 	assert(rc);
    335  1.11.4.1       mjf 	if (direct_ioctl(env, SIOCS80211CHANNEL, &channel) == -1)
    336       1.9    dyoung 		err(EXIT_FAILURE, "SIOCS80211CHANNEL");
    337  1.11.4.1       mjf 	return 0;
    338       1.1   thorpej }
    339       1.1   thorpej 
    340  1.11.4.2       mjf static int
    341  1.11.4.2       mjf setifnwkey(prop_dictionary_t env, prop_dictionary_t oenv)
    342       1.1   thorpej {
    343  1.11.4.1       mjf 	const char *val;
    344  1.11.4.1       mjf 	char buf[256];
    345       1.1   thorpej 	struct ieee80211_nwkey nwkey;
    346       1.1   thorpej 	int i;
    347       1.1   thorpej 	u_int8_t keybuf[IEEE80211_WEP_NKID][16];
    348       1.1   thorpej 
    349  1.11.4.1       mjf 	if (getargstr(env, "nwkey", buf, sizeof(buf)) == -1)
    350  1.11.4.1       mjf 		errx(EXIT_FAILURE, "%s: nwkey too long", __func__);
    351  1.11.4.1       mjf 
    352  1.11.4.1       mjf 	val = buf;
    353  1.11.4.1       mjf 
    354       1.1   thorpej 	nwkey.i_wepon = IEEE80211_NWKEY_WEP;
    355       1.1   thorpej 	nwkey.i_defkid = 1;
    356       1.1   thorpej 	for (i = 0; i < IEEE80211_WEP_NKID; i++) {
    357       1.1   thorpej 		nwkey.i_key[i].i_keylen = sizeof(keybuf[i]);
    358       1.1   thorpej 		nwkey.i_key[i].i_keydat = keybuf[i];
    359       1.1   thorpej 	}
    360  1.11.4.1       mjf 	if (strcasecmp("persist", val) == 0) {
    361       1.1   thorpej 		/* use all values from persistent memory */
    362       1.1   thorpej 		nwkey.i_wepon |= IEEE80211_NWKEY_PERSIST;
    363       1.1   thorpej 		nwkey.i_defkid = 0;
    364       1.1   thorpej 		for (i = 0; i < IEEE80211_WEP_NKID; i++)
    365       1.1   thorpej 			nwkey.i_key[i].i_keylen = -1;
    366       1.1   thorpej 	} else if (strncasecmp("persist:", val, 8) == 0) {
    367       1.1   thorpej 		val += 8;
    368       1.1   thorpej 		/* program keys in persistent memory */
    369       1.1   thorpej 		nwkey.i_wepon |= IEEE80211_NWKEY_PERSIST;
    370       1.1   thorpej 		goto set_nwkey;
    371       1.1   thorpej 	} else {
    372       1.1   thorpej   set_nwkey:
    373       1.1   thorpej 		if (isdigit((unsigned char)val[0]) && val[1] == ':') {
    374       1.1   thorpej 			/* specifying a full set of four keys */
    375       1.1   thorpej 			nwkey.i_defkid = val[0] - '0';
    376       1.1   thorpej 			val += 2;
    377       1.1   thorpej 			for (i = 0; i < IEEE80211_WEP_NKID; i++) {
    378       1.1   thorpej 				val = get_string(val, ",", keybuf[i],
    379       1.1   thorpej 				    &nwkey.i_key[i].i_keylen);
    380  1.11.4.1       mjf 				if (val == NULL) {
    381  1.11.4.1       mjf 					errno = EINVAL;
    382  1.11.4.1       mjf 					return -1;
    383  1.11.4.1       mjf 				}
    384       1.1   thorpej 			}
    385       1.1   thorpej 			if (*val != '\0') {
    386       1.9    dyoung 				errx(EXIT_FAILURE, "SIOCS80211NWKEY: too many keys.");
    387       1.1   thorpej 			}
    388       1.1   thorpej 		} else {
    389       1.1   thorpej 			val = get_string(val, NULL, keybuf[0],
    390       1.1   thorpej 			    &nwkey.i_key[0].i_keylen);
    391  1.11.4.1       mjf 			if (val == NULL) {
    392  1.11.4.1       mjf 				errno = EINVAL;
    393  1.11.4.1       mjf 				return -1;
    394  1.11.4.1       mjf 			}
    395       1.1   thorpej 			i = 1;
    396       1.1   thorpej 		}
    397       1.1   thorpej 	}
    398       1.1   thorpej 	for (; i < IEEE80211_WEP_NKID; i++)
    399       1.1   thorpej 		nwkey.i_key[i].i_keylen = 0;
    400  1.11.4.1       mjf 
    401  1.11.4.1       mjf 	if (direct_ioctl(env, SIOCS80211NWKEY, &nwkey) == -1)
    402       1.9    dyoung 		err(EXIT_FAILURE, "SIOCS80211NWKEY");
    403  1.11.4.1       mjf 	return 0;
    404       1.1   thorpej }
    405       1.1   thorpej 
    406  1.11.4.2       mjf static int
    407  1.11.4.2       mjf unsetifnwkey(prop_dictionary_t env, prop_dictionary_t oenv)
    408       1.1   thorpej {
    409  1.11.4.1       mjf 	struct ieee80211_nwkey nwkey;
    410  1.11.4.1       mjf 	int i;
    411       1.1   thorpej 
    412  1.11.4.1       mjf 	nwkey.i_wepon = 0;
    413  1.11.4.1       mjf 	nwkey.i_defkid = 1;
    414  1.11.4.1       mjf 	for (i = 0; i < IEEE80211_WEP_NKID; i++) {
    415  1.11.4.1       mjf 		nwkey.i_key[i].i_keylen = 0;
    416  1.11.4.1       mjf 		nwkey.i_key[i].i_keydat = NULL;
    417       1.1   thorpej 	}
    418       1.1   thorpej 
    419  1.11.4.1       mjf 	if (direct_ioctl(env, SIOCS80211NWKEY, &nwkey) == -1)
    420  1.11.4.1       mjf 		err(EXIT_FAILURE, "SIOCS80211NWKEY");
    421  1.11.4.1       mjf 	return 0;
    422       1.1   thorpej }
    423       1.1   thorpej 
    424  1.11.4.2       mjf static int
    425  1.11.4.2       mjf setifpowersave(prop_dictionary_t env, prop_dictionary_t oenv)
    426       1.1   thorpej {
    427       1.1   thorpej 	struct ieee80211_power power;
    428  1.11.4.1       mjf 	bool on, rc;
    429       1.1   thorpej 
    430  1.11.4.1       mjf 	if (direct_ioctl(env, SIOCG80211POWER, &power) == -1)
    431       1.9    dyoung 		err(EXIT_FAILURE, "SIOCG80211POWER");
    432  1.11.4.1       mjf 
    433  1.11.4.1       mjf 	rc = prop_dictionary_get_bool(env, "powersave", &on);
    434  1.11.4.1       mjf 	assert(rc);
    435  1.11.4.1       mjf 
    436  1.11.4.1       mjf 	power.i_enabled = on ? 1 : 0;
    437  1.11.4.1       mjf 	if (direct_ioctl(env, SIOCS80211POWER, &power) == -1) {
    438  1.11.4.1       mjf 		warn("SIOCS80211POWER");
    439  1.11.4.1       mjf 		return -1;
    440       1.1   thorpej 	}
    441  1.11.4.1       mjf 	return 0;
    442  1.11.4.1       mjf }
    443  1.11.4.1       mjf 
    444  1.11.4.2       mjf static int
    445  1.11.4.2       mjf setifpowersavesleep(prop_dictionary_t env, prop_dictionary_t oenv)
    446  1.11.4.1       mjf {
    447  1.11.4.1       mjf 	struct ieee80211_power power;
    448  1.11.4.1       mjf 	int64_t maxsleep;
    449  1.11.4.1       mjf 	bool rc;
    450  1.11.4.1       mjf 
    451  1.11.4.1       mjf 	rc = prop_dictionary_get_int64(env, "powersavesleep", &maxsleep);
    452  1.11.4.1       mjf 	assert(rc);
    453  1.11.4.1       mjf 
    454  1.11.4.1       mjf 	if (direct_ioctl(env, SIOCG80211POWER, &power) == -1)
    455  1.11.4.1       mjf 		err(EXIT_FAILURE, "SIOCG80211POWER");
    456       1.1   thorpej 
    457  1.11.4.1       mjf 	power.i_maxsleep = maxsleep;
    458  1.11.4.1       mjf 	if (direct_ioctl(env, SIOCS80211POWER, &power) == -1)
    459       1.9    dyoung 		err(EXIT_FAILURE, "SIOCS80211POWER");
    460  1.11.4.1       mjf 	return 0;
    461       1.1   thorpej }
    462       1.1   thorpej 
    463  1.11.4.2       mjf static int
    464  1.11.4.2       mjf scan_exec(prop_dictionary_t env, prop_dictionary_t oenv)
    465      1.11  degroote {
    466  1.11.4.1       mjf 	scan_and_wait(env);
    467  1.11.4.1       mjf 	list_scan(env);
    468  1.11.4.1       mjf 	return 0;
    469      1.11  degroote }
    470      1.11  degroote 
    471  1.11.4.2       mjf static void
    472  1.11.4.1       mjf ieee80211_statistics(prop_dictionary_t env)
    473       1.1   thorpej {
    474       1.1   thorpej 	struct ieee80211_stats stats;
    475  1.11.4.1       mjf 	struct ifreq ifr;
    476       1.1   thorpej 
    477       1.1   thorpej 	memset(&ifr, 0, sizeof(ifr));
    478       1.3    dyoung 	ifr.ifr_buflen = sizeof(stats);
    479       1.3    dyoung 	ifr.ifr_buf = (caddr_t)&stats;
    480  1.11.4.1       mjf 	if (direct_ioctl(env, (zflag) ? SIOCG80211ZSTATS : SIOCG80211STATS,
    481  1.11.4.1       mjf 	    &ifr) == -1)
    482       1.1   thorpej 		return;
    483       1.2    dyoung #define	STAT_PRINT(_member, _desc)	\
    484       1.2    dyoung 	printf("\t" _desc ": %" PRIu32 "\n", stats._member)
    485       1.1   thorpej 
    486       1.2    dyoung 	STAT_PRINT(is_rx_badversion, "rx frame with bad version");
    487       1.2    dyoung 	STAT_PRINT(is_rx_tooshort, "rx frame too short");
    488       1.2    dyoung 	STAT_PRINT(is_rx_wrongbss, "rx from wrong bssid");
    489       1.2    dyoung 	STAT_PRINT(is_rx_dup, "rx discard 'cuz dup");
    490       1.2    dyoung 	STAT_PRINT(is_rx_wrongdir, "rx w/ wrong direction");
    491       1.2    dyoung 	STAT_PRINT(is_rx_mcastecho, "rx discard 'cuz mcast echo");
    492       1.2    dyoung 	STAT_PRINT(is_rx_notassoc, "rx discard 'cuz sta !assoc");
    493       1.2    dyoung 	STAT_PRINT(is_rx_noprivacy, "rx w/ wep but privacy off");
    494       1.2    dyoung 	STAT_PRINT(is_rx_unencrypted, "rx w/o wep and privacy on");
    495       1.2    dyoung 	STAT_PRINT(is_rx_wepfail, "rx wep processing failed");
    496       1.2    dyoung 	STAT_PRINT(is_rx_decap, "rx decapsulation failed");
    497       1.2    dyoung 	STAT_PRINT(is_rx_mgtdiscard, "rx discard mgt frames");
    498       1.2    dyoung 	STAT_PRINT(is_rx_ctl, "rx discard ctrl frames");
    499       1.2    dyoung 	STAT_PRINT(is_rx_beacon, "rx beacon frames");
    500       1.2    dyoung 	STAT_PRINT(is_rx_rstoobig, "rx rate set truncated");
    501      1.10    dyoung 	STAT_PRINT(is_rx_elem_missing, "rx required element missing");
    502       1.2    dyoung 	STAT_PRINT(is_rx_elem_toobig, "rx element too big");
    503       1.2    dyoung 	STAT_PRINT(is_rx_elem_toosmall, "rx element too small");
    504       1.2    dyoung 	STAT_PRINT(is_rx_elem_unknown, "rx element unknown");
    505       1.2    dyoung 	STAT_PRINT(is_rx_badchan, "rx frame w/ invalid chan");
    506       1.2    dyoung 	STAT_PRINT(is_rx_chanmismatch, "rx frame chan mismatch");
    507       1.2    dyoung 	STAT_PRINT(is_rx_nodealloc, "rx frame dropped");
    508       1.2    dyoung 	STAT_PRINT(is_rx_ssidmismatch, "rx frame ssid mismatch ");
    509       1.2    dyoung 	STAT_PRINT(is_rx_auth_unsupported, "rx w/ unsupported auth alg");
    510       1.2    dyoung 	STAT_PRINT(is_rx_auth_fail, "rx sta auth failure");
    511       1.2    dyoung 	STAT_PRINT(is_rx_auth_countermeasures, "rx auth discard 'cuz CM");
    512       1.2    dyoung 	STAT_PRINT(is_rx_assoc_bss, "rx assoc from wrong bssid");
    513       1.2    dyoung 	STAT_PRINT(is_rx_assoc_notauth, "rx assoc w/o auth");
    514       1.2    dyoung 	STAT_PRINT(is_rx_assoc_capmismatch, "rx assoc w/ cap mismatch");
    515       1.2    dyoung 	STAT_PRINT(is_rx_assoc_norate, "rx assoc w/ no rate match");
    516       1.2    dyoung 	STAT_PRINT(is_rx_assoc_badwpaie, "rx assoc w/ bad WPA IE");
    517       1.2    dyoung 	STAT_PRINT(is_rx_deauth, "rx deauthentication");
    518       1.2    dyoung 	STAT_PRINT(is_rx_disassoc, "rx disassociation");
    519       1.2    dyoung 	STAT_PRINT(is_rx_badsubtype, "rx frame w/ unknown subtyp");
    520       1.2    dyoung 	STAT_PRINT(is_rx_nobuf, "rx failed for lack of buf");
    521       1.2    dyoung 	STAT_PRINT(is_rx_decryptcrc, "rx decrypt failed on crc");
    522       1.2    dyoung 	STAT_PRINT(is_rx_ahdemo_mgt, "rx discard ahdemo mgt fram");
    523       1.2    dyoung 	STAT_PRINT(is_rx_bad_auth, "rx bad auth request");
    524       1.2    dyoung 	STAT_PRINT(is_rx_unauth, "rx on unauthorized port");
    525       1.2    dyoung 	STAT_PRINT(is_rx_badkeyid, "rx w/ incorrect keyid");
    526       1.2    dyoung 	STAT_PRINT(is_rx_ccmpreplay, "rx seq# violation (CCMP)");
    527       1.2    dyoung 	STAT_PRINT(is_rx_ccmpformat, "rx format bad (CCMP)");
    528       1.2    dyoung 	STAT_PRINT(is_rx_ccmpmic, "rx MIC check failed (CCMP)");
    529       1.2    dyoung 	STAT_PRINT(is_rx_tkipreplay, "rx seq# violation (TKIP)");
    530       1.2    dyoung 	STAT_PRINT(is_rx_tkipformat, "rx format bad (TKIP)");
    531       1.2    dyoung 	STAT_PRINT(is_rx_tkipmic, "rx MIC check failed (TKIP)");
    532       1.2    dyoung 	STAT_PRINT(is_rx_tkipicv, "rx ICV check failed (TKIP)");
    533       1.2    dyoung 	STAT_PRINT(is_rx_badcipher, "rx failed 'cuz key type");
    534       1.2    dyoung 	STAT_PRINT(is_rx_nocipherctx, "rx failed 'cuz key !setup");
    535       1.2    dyoung 	STAT_PRINT(is_rx_acl, "rx discard 'cuz acl policy");
    536       1.2    dyoung 
    537       1.2    dyoung 	STAT_PRINT(is_tx_nobuf, "tx failed for lack of buf");
    538       1.2    dyoung 	STAT_PRINT(is_tx_nonode, "tx failed for no node");
    539       1.2    dyoung 	STAT_PRINT(is_tx_unknownmgt, "tx of unknown mgt frame");
    540       1.2    dyoung 	STAT_PRINT(is_tx_badcipher, "tx failed 'cuz key type");
    541       1.2    dyoung 	STAT_PRINT(is_tx_nodefkey, "tx failed 'cuz no defkey");
    542       1.2    dyoung 	STAT_PRINT(is_tx_noheadroom, "tx failed 'cuz no space");
    543      1.10    dyoung 	STAT_PRINT(is_tx_fragframes, "tx frames fragmented");
    544      1.10    dyoung 	STAT_PRINT(is_tx_frags, "tx fragments created");
    545       1.2    dyoung 
    546       1.2    dyoung 	STAT_PRINT(is_scan_active, "active scans started");
    547       1.2    dyoung 	STAT_PRINT(is_scan_passive, "passive scans started");
    548       1.2    dyoung 	STAT_PRINT(is_node_timeout, "nodes timed out inactivity");
    549       1.2    dyoung 	STAT_PRINT(is_crypto_nomem, "no memory for crypto ctx");
    550       1.2    dyoung 	STAT_PRINT(is_crypto_tkip, "tkip crypto done in s/w");
    551       1.2    dyoung 	STAT_PRINT(is_crypto_tkipenmic, "tkip en-MIC done in s/w");
    552       1.2    dyoung 	STAT_PRINT(is_crypto_tkipdemic, "tkip de-MIC done in s/w");
    553       1.2    dyoung 	STAT_PRINT(is_crypto_tkipcm, "tkip counter measures");
    554       1.2    dyoung 	STAT_PRINT(is_crypto_ccmp, "ccmp crypto done in s/w");
    555       1.2    dyoung 	STAT_PRINT(is_crypto_wep, "wep crypto done in s/w");
    556       1.2    dyoung 	STAT_PRINT(is_crypto_setkey_cipher, "cipher rejected key");
    557       1.2    dyoung 	STAT_PRINT(is_crypto_setkey_nokey, "no key index for setkey");
    558       1.2    dyoung 	STAT_PRINT(is_crypto_delkey, "driver key delete failed");
    559       1.2    dyoung 	STAT_PRINT(is_crypto_badcipher, "unknown cipher");
    560       1.2    dyoung 	STAT_PRINT(is_crypto_nocipher, "cipher not available");
    561       1.2    dyoung 	STAT_PRINT(is_crypto_attachfail, "cipher attach failed");
    562       1.2    dyoung 	STAT_PRINT(is_crypto_swfallback, "cipher fallback to s/w");
    563       1.2    dyoung 	STAT_PRINT(is_crypto_keyfail, "driver key alloc failed");
    564       1.2    dyoung 	STAT_PRINT(is_crypto_enmicfail, "en-MIC failed");
    565       1.2    dyoung 	STAT_PRINT(is_ibss_capmismatch, "merge failed-cap mismatch");
    566       1.2    dyoung 	STAT_PRINT(is_ibss_norate, "merge failed-rate mismatch");
    567       1.2    dyoung 	STAT_PRINT(is_ps_unassoc, "ps-poll for unassoc. sta");
    568       1.2    dyoung 	STAT_PRINT(is_ps_badaid, "ps-poll w/ incorrect aid");
    569       1.2    dyoung 	STAT_PRINT(is_ps_qempty, "ps-poll w/ nothing to send");
    570      1.10    dyoung 	STAT_PRINT(is_ff_badhdr, "fast frame rx'd w/ bad hdr");
    571      1.10    dyoung 	STAT_PRINT(is_ff_tooshort, "fast frame rx decap error");
    572      1.10    dyoung 	STAT_PRINT(is_ff_split, "fast frame rx split error");
    573      1.10    dyoung 	STAT_PRINT(is_ff_decap, "fast frames decap'd");
    574      1.10    dyoung 	STAT_PRINT(is_ff_encap, "fast frames encap'd for tx");
    575      1.10    dyoung 	STAT_PRINT(is_rx_badbintval, "rx frame w/ bogus bintval");
    576       1.1   thorpej }
    577       1.1   thorpej 
    578  1.11.4.2       mjf static void
    579  1.11.4.1       mjf ieee80211_status(prop_dictionary_t env, prop_dictionary_t oenv)
    580       1.1   thorpej {
    581       1.1   thorpej 	int i, nwkey_verbose;
    582       1.1   thorpej 	struct ieee80211_nwid nwid;
    583       1.1   thorpej 	struct ieee80211_nwkey nwkey;
    584       1.1   thorpej 	struct ieee80211_power power;
    585       1.1   thorpej 	u_int8_t keybuf[IEEE80211_WEP_NKID][16];
    586       1.1   thorpej 	struct ieee80211_bssid bssid;
    587       1.1   thorpej 	struct ieee80211chanreq channel;
    588       1.5    rpaulo 	struct ieee80211req ireq;
    589       1.1   thorpej 	struct ether_addr ea;
    590       1.1   thorpej 	static const u_int8_t zero_macaddr[IEEE80211_ADDR_LEN];
    591  1.11.4.1       mjf 	enum ieee80211_opmode opmode = get80211opmode(env);
    592       1.1   thorpej 
    593  1.11.4.1       mjf 	memset(&bssid, 0, sizeof(bssid));
    594  1.11.4.1       mjf 	memset(&nwkey, 0, sizeof(nwkey));
    595  1.11.4.1       mjf 	memset(&nwid, 0, sizeof(nwid));
    596  1.11.4.1       mjf 	memset(&nwid, 0, sizeof(nwid));
    597  1.11.4.1       mjf 
    598  1.11.4.1       mjf 	if (indirect_ioctl(env, SIOCG80211NWID, &nwid) == -1)
    599       1.1   thorpej 		return;
    600       1.1   thorpej 	if (nwid.i_len > IEEE80211_NWID_LEN) {
    601       1.9    dyoung 		errx(EXIT_FAILURE, "SIOCG80211NWID: wrong length of nwid (%d)", nwid.i_len);
    602       1.1   thorpej 	}
    603       1.1   thorpej 	printf("\tssid ");
    604       1.1   thorpej 	print_string(nwid.i_nwid, nwid.i_len);
    605       1.5    rpaulo 
    606       1.5    rpaulo 	if (opmode == IEEE80211_M_HOSTAP) {
    607       1.5    rpaulo 		ireq.i_type = IEEE80211_IOC_HIDESSID;
    608  1.11.4.1       mjf 		if (direct_ioctl(env, SIOCG80211, &ireq) != -1) {
    609       1.5    rpaulo                         if (ireq.i_val)
    610       1.5    rpaulo                                 printf(" [hidden]");
    611       1.5    rpaulo                         else if (vflag)
    612       1.5    rpaulo                                 printf(" [shown]");
    613       1.5    rpaulo                 }
    614       1.5    rpaulo 
    615       1.5    rpaulo 		ireq.i_type = IEEE80211_IOC_APBRIDGE;
    616  1.11.4.1       mjf 		if (direct_ioctl(env, SIOCG80211, &ireq) != -1) {
    617       1.5    rpaulo 			if (ireq.i_val)
    618       1.5    rpaulo 				printf(" apbridge");
    619       1.5    rpaulo 			else if (vflag)
    620       1.5    rpaulo 				printf(" -apbridge");
    621       1.5    rpaulo 		}
    622       1.5    rpaulo         }
    623       1.5    rpaulo 
    624  1.11.4.2       mjf 	ireq.i_type = IEEE80211_IOC_RTSTHRESHOLD;
    625  1.11.4.2       mjf 	if (direct_ioctl(env, SIOCG80211, &ireq) == -1)
    626  1.11.4.2       mjf 		;
    627  1.11.4.2       mjf 	else if (ireq.i_val < IEEE80211_RTS_MAX)
    628  1.11.4.2       mjf 		printf(" rts %d", ireq.i_val);
    629  1.11.4.2       mjf 	else if (vflag)
    630  1.11.4.2       mjf 		printf(" -rts");
    631  1.11.4.2       mjf 
    632       1.8    dyoung 	ireq.i_type = IEEE80211_IOC_FRAGTHRESHOLD;
    633  1.11.4.1       mjf 	if (direct_ioctl(env, SIOCG80211, &ireq) == -1)
    634       1.8    dyoung 		;
    635       1.8    dyoung 	else if (ireq.i_val < IEEE80211_FRAG_MAX)
    636       1.8    dyoung 		printf(" frag %d", ireq.i_val);
    637       1.8    dyoung 	else if (vflag)
    638       1.8    dyoung 		printf(" -frag");
    639       1.8    dyoung 
    640       1.1   thorpej 	memset(&nwkey, 0, sizeof(nwkey));
    641       1.1   thorpej 	/* show nwkey only when WEP is enabled */
    642  1.11.4.1       mjf 	if (direct_ioctl(env, SIOCG80211NWKEY, &nwkey) == -1 ||
    643       1.1   thorpej 	    nwkey.i_wepon == 0) {
    644       1.1   thorpej 		printf("\n");
    645       1.1   thorpej 		goto skip_wep;
    646       1.1   thorpej 	}
    647       1.1   thorpej 
    648       1.1   thorpej 	printf(" nwkey ");
    649       1.1   thorpej 	/* try to retrieve WEP keys */
    650       1.1   thorpej 	for (i = 0; i < IEEE80211_WEP_NKID; i++) {
    651       1.1   thorpej 		nwkey.i_key[i].i_keydat = keybuf[i];
    652       1.1   thorpej 		nwkey.i_key[i].i_keylen = sizeof(keybuf[i]);
    653       1.1   thorpej 	}
    654  1.11.4.1       mjf 	if (direct_ioctl(env, SIOCG80211NWKEY, &nwkey) == -1) {
    655       1.1   thorpej 		printf("*****");
    656       1.1   thorpej 	} else {
    657       1.1   thorpej 		nwkey_verbose = 0;
    658       1.1   thorpej 		/* check to see non default key or multiple keys defined */
    659       1.1   thorpej 		if (nwkey.i_defkid != 1) {
    660       1.1   thorpej 			nwkey_verbose = 1;
    661       1.1   thorpej 		} else {
    662       1.1   thorpej 			for (i = 1; i < IEEE80211_WEP_NKID; i++) {
    663       1.1   thorpej 				if (nwkey.i_key[i].i_keylen != 0) {
    664       1.1   thorpej 					nwkey_verbose = 1;
    665       1.1   thorpej 					break;
    666       1.1   thorpej 				}
    667       1.1   thorpej 			}
    668       1.1   thorpej 		}
    669       1.1   thorpej 		/* check extra ambiguity with keywords */
    670       1.1   thorpej 		if (!nwkey_verbose) {
    671       1.1   thorpej 			if (nwkey.i_key[0].i_keylen >= 2 &&
    672       1.1   thorpej 			    isdigit(nwkey.i_key[0].i_keydat[0]) &&
    673       1.1   thorpej 			    nwkey.i_key[0].i_keydat[1] == ':')
    674       1.1   thorpej 				nwkey_verbose = 1;
    675       1.1   thorpej 			else if (nwkey.i_key[0].i_keylen >= 7 &&
    676       1.4  christos 			    strncasecmp("persist",
    677       1.4  christos 			    (const char *)nwkey.i_key[0].i_keydat, 7) == 0)
    678       1.1   thorpej 				nwkey_verbose = 1;
    679       1.1   thorpej 		}
    680       1.1   thorpej 		if (nwkey_verbose)
    681       1.1   thorpej 			printf("%d:", nwkey.i_defkid);
    682       1.1   thorpej 		for (i = 0; i < IEEE80211_WEP_NKID; i++) {
    683       1.1   thorpej 			if (i > 0)
    684       1.1   thorpej 				printf(",");
    685       1.1   thorpej 			if (nwkey.i_key[i].i_keylen < 0)
    686       1.1   thorpej 				printf("persist");
    687       1.1   thorpej 			else
    688       1.1   thorpej 				print_string(nwkey.i_key[i].i_keydat,
    689       1.1   thorpej 				    nwkey.i_key[i].i_keylen);
    690       1.1   thorpej 			if (!nwkey_verbose)
    691       1.1   thorpej 				break;
    692       1.1   thorpej 		}
    693       1.1   thorpej 	}
    694       1.1   thorpej 	printf("\n");
    695       1.1   thorpej 
    696       1.1   thorpej  skip_wep:
    697  1.11.4.1       mjf 	if (direct_ioctl(env, SIOCG80211POWER, &power) == -1)
    698       1.1   thorpej 		goto skip_power;
    699       1.1   thorpej 	printf("\tpowersave ");
    700       1.1   thorpej 	if (power.i_enabled)
    701       1.1   thorpej 		printf("on (%dms sleep)", power.i_maxsleep);
    702       1.1   thorpej 	else
    703       1.1   thorpej 		printf("off");
    704       1.1   thorpej 	printf("\n");
    705       1.1   thorpej 
    706       1.1   thorpej  skip_power:
    707  1.11.4.1       mjf 	if (direct_ioctl(env, SIOCG80211BSSID, &bssid) == -1)
    708       1.1   thorpej 		return;
    709  1.11.4.1       mjf 	if (direct_ioctl(env, SIOCG80211CHANNEL, &channel) == -1)
    710       1.1   thorpej 		return;
    711       1.1   thorpej 	if (memcmp(bssid.i_bssid, zero_macaddr, IEEE80211_ADDR_LEN) == 0) {
    712       1.1   thorpej 		if (channel.i_channel != (u_int16_t)-1)
    713       1.1   thorpej 			printf("\tchan %d\n", channel.i_channel);
    714       1.1   thorpej 	} else {
    715       1.1   thorpej 		memcpy(ea.ether_addr_octet, bssid.i_bssid,
    716       1.1   thorpej 		    sizeof(ea.ether_addr_octet));
    717       1.1   thorpej 		printf("\tbssid %s", ether_ntoa(&ea));
    718       1.1   thorpej 		if (channel.i_channel != IEEE80211_CHAN_ANY)
    719       1.1   thorpej 			printf(" chan %d", channel.i_channel);
    720       1.1   thorpej 		printf("\n");
    721       1.1   thorpej 	}
    722       1.1   thorpej }
    723      1.11  degroote 
    724      1.11  degroote static void
    725  1.11.4.1       mjf scan_and_wait(prop_dictionary_t env)
    726      1.11  degroote {
    727      1.11  degroote 	int sroute;
    728      1.11  degroote 
    729      1.11  degroote 	sroute = socket(PF_ROUTE, SOCK_RAW, 0);
    730      1.11  degroote 	if (sroute < 0) {
    731      1.11  degroote 		perror("socket(PF_ROUTE,SOCK_RAW)");
    732      1.11  degroote 		return;
    733      1.11  degroote 	}
    734      1.11  degroote 	/* NB: only root can trigger a scan so ignore errors */
    735  1.11.4.1       mjf 	if (set80211(env, IEEE80211_IOC_SCAN_REQ, 0, 0, NULL) >= 0) {
    736      1.11  degroote 		char buf[2048];
    737      1.11  degroote 		struct if_announcemsghdr *ifan;
    738      1.11  degroote 		struct rt_msghdr *rtm;
    739      1.11  degroote 
    740      1.11  degroote 		do {
    741      1.11  degroote 			if (read(sroute, buf, sizeof(buf)) < 0) {
    742      1.11  degroote 				perror("read(PF_ROUTE)");
    743      1.11  degroote 				break;
    744      1.11  degroote 			}
    745      1.11  degroote 			rtm = (struct rt_msghdr *) buf;
    746      1.11  degroote 			if (rtm->rtm_version != RTM_VERSION)
    747      1.11  degroote 				break;
    748      1.11  degroote 			ifan = (struct if_announcemsghdr *) rtm;
    749      1.11  degroote 		} while (rtm->rtm_type != RTM_IEEE80211 ||
    750      1.11  degroote 		    ifan->ifan_what != RTM_IEEE80211_SCAN);
    751      1.11  degroote 	}
    752      1.11  degroote 	close(sroute);
    753      1.11  degroote }
    754      1.11  degroote 
    755      1.11  degroote static void
    756  1.11.4.1       mjf list_scan(prop_dictionary_t env)
    757      1.11  degroote {
    758      1.11  degroote 	u_int8_t buf[24*1024];
    759      1.11  degroote 	struct ieee80211req ireq;
    760      1.11  degroote 	char ssid[IEEE80211_NWID_LEN+1];
    761      1.11  degroote 	const u_int8_t *cp;
    762      1.11  degroote 	int len, ssidmax;
    763      1.11  degroote 
    764  1.11.4.1       mjf 	memset(&ireq, 0, sizeof(ireq));
    765      1.11  degroote 	ireq.i_type = IEEE80211_IOC_SCAN_RESULTS;
    766      1.11  degroote 	ireq.i_data = buf;
    767      1.11  degroote 	ireq.i_len = sizeof(buf);
    768  1.11.4.1       mjf 	if (direct_ioctl(env, SIOCG80211, &ireq) < 0)
    769  1.11.4.1       mjf 		errx(EXIT_FAILURE, "unable to get scan results");
    770      1.11  degroote 	len = ireq.i_len;
    771      1.11  degroote 	if (len < sizeof(struct ieee80211req_scan_result))
    772      1.11  degroote 		return;
    773      1.11  degroote 
    774      1.11  degroote 	ssidmax = IEEE80211_NWID_LEN;
    775      1.11  degroote 	printf("%-*.*s  %-17.17s  %4s %4s  %-7s %3s %4s\n"
    776      1.11  degroote 		, ssidmax, ssidmax, "SSID"
    777      1.11  degroote 		, "BSSID"
    778      1.11  degroote 		, "CHAN"
    779      1.11  degroote 		, "RATE"
    780      1.11  degroote 		, "S:N"
    781      1.11  degroote 		, "INT"
    782      1.11  degroote 		, "CAPS"
    783      1.11  degroote 	);
    784      1.11  degroote 	cp = buf;
    785      1.11  degroote 	do {
    786      1.11  degroote 		const struct ieee80211req_scan_result *sr;
    787      1.11  degroote 		const uint8_t *vp;
    788      1.11  degroote 
    789      1.11  degroote 		sr = (const struct ieee80211req_scan_result *) cp;
    790      1.11  degroote 		vp = (const u_int8_t *)(sr+1);
    791      1.11  degroote 		printf("%-*.*s  %s  %3d  %3dM %3d:%-3d  %3d %-4.4s"
    792      1.11  degroote 			, ssidmax
    793      1.11  degroote 			  , copy_essid(ssid, ssidmax, vp, sr->isr_ssid_len)
    794      1.11  degroote 			  , ssid
    795      1.11  degroote 			, ether_ntoa((const struct ether_addr *) sr->isr_bssid)
    796      1.11  degroote 			, ieee80211_mhz2ieee(sr->isr_freq, sr->isr_flags)
    797      1.11  degroote 			, getmaxrate(sr->isr_rates, sr->isr_nrates)
    798      1.11  degroote 			, sr->isr_rssi, sr->isr_noise
    799      1.11  degroote 			, sr->isr_intval
    800      1.11  degroote 			, getcaps(sr->isr_capinfo)
    801      1.11  degroote 		);
    802      1.11  degroote 		printies(vp + sr->isr_ssid_len, sr->isr_ie_len, 24);;
    803      1.11  degroote 		printf("\n");
    804      1.11  degroote 		cp += sr->isr_len, len -= sr->isr_len;
    805      1.11  degroote 	} while (len >= sizeof(struct ieee80211req_scan_result));
    806      1.11  degroote }
    807      1.11  degroote /*
    808      1.11  degroote  * Convert MHz frequency to IEEE channel number.
    809      1.11  degroote  */
    810      1.11  degroote static u_int
    811      1.11  degroote ieee80211_mhz2ieee(u_int isrfreq, u_int isrflags)
    812      1.11  degroote {
    813      1.11  degroote 	if ((isrflags & IEEE80211_CHAN_GSM) || (907 <= isrfreq && isrfreq <= 922))
    814      1.11  degroote 		return mapgsm(isrfreq, isrflags);
    815      1.11  degroote 	if (isrfreq == 2484)
    816      1.11  degroote 		return 14;
    817      1.11  degroote 	if (isrfreq < 2484)
    818      1.11  degroote 		return (isrfreq - 2407) / 5;
    819      1.11  degroote 	if (isrfreq < 5000) {
    820      1.11  degroote 		if (isrflags & (IEEE80211_CHAN_HALF|IEEE80211_CHAN_QUARTER))
    821      1.11  degroote 			return mappsb(isrfreq, isrflags);
    822      1.11  degroote 		else if (isrfreq > 4900)
    823      1.11  degroote 			return (isrfreq - 4000) / 5;
    824      1.11  degroote 		else
    825      1.11  degroote 			return 15 + ((isrfreq - 2512) / 20);
    826      1.11  degroote 	}
    827      1.11  degroote 	return (isrfreq - 5000) / 5;
    828      1.11  degroote }
    829      1.11  degroote 
    830      1.11  degroote static int
    831      1.11  degroote getmaxrate(const u_int8_t rates[15], u_int8_t nrates)
    832      1.11  degroote {
    833      1.11  degroote 	int i, maxrate = -1;
    834      1.11  degroote 
    835      1.11  degroote 	for (i = 0; i < nrates; i++) {
    836      1.11  degroote 		int rate = rates[i] & IEEE80211_RATE_VAL;
    837      1.11  degroote 		if (rate > maxrate)
    838      1.11  degroote 			maxrate = rate;
    839      1.11  degroote 	}
    840      1.11  degroote 	return maxrate / 2;
    841      1.11  degroote }
    842      1.11  degroote 
    843      1.11  degroote static const char *
    844      1.11  degroote getcaps(int capinfo)
    845      1.11  degroote {
    846      1.11  degroote 	static char capstring[32];
    847      1.11  degroote 	char *cp = capstring;
    848      1.11  degroote 
    849      1.11  degroote 	if (capinfo & IEEE80211_CAPINFO_ESS)
    850      1.11  degroote 		*cp++ = 'E';
    851      1.11  degroote 	if (capinfo & IEEE80211_CAPINFO_IBSS)
    852      1.11  degroote 		*cp++ = 'I';
    853      1.11  degroote 	if (capinfo & IEEE80211_CAPINFO_CF_POLLABLE)
    854      1.11  degroote 		*cp++ = 'c';
    855      1.11  degroote 	if (capinfo & IEEE80211_CAPINFO_CF_POLLREQ)
    856      1.11  degroote 		*cp++ = 'C';
    857      1.11  degroote 	if (capinfo & IEEE80211_CAPINFO_PRIVACY)
    858      1.11  degroote 		*cp++ = 'P';
    859      1.11  degroote 	if (capinfo & IEEE80211_CAPINFO_SHORT_PREAMBLE)
    860      1.11  degroote 		*cp++ = 'S';
    861      1.11  degroote 	if (capinfo & IEEE80211_CAPINFO_PBCC)
    862      1.11  degroote 		*cp++ = 'B';
    863      1.11  degroote 	if (capinfo & IEEE80211_CAPINFO_CHNL_AGILITY)
    864      1.11  degroote 		*cp++ = 'A';
    865      1.11  degroote 	if (capinfo & IEEE80211_CAPINFO_SHORT_SLOTTIME)
    866      1.11  degroote 		*cp++ = 's';
    867      1.11  degroote 	if (capinfo & IEEE80211_CAPINFO_RSN)
    868      1.11  degroote 		*cp++ = 'R';
    869      1.11  degroote 	if (capinfo & IEEE80211_CAPINFO_DSSSOFDM)
    870      1.11  degroote 		*cp++ = 'D';
    871      1.11  degroote 	*cp = '\0';
    872      1.11  degroote 	return capstring;
    873      1.11  degroote }
    874      1.11  degroote 
    875      1.11  degroote static void
    876      1.11  degroote printie(const char* tag, const uint8_t *ie, size_t ielen, int maxlen)
    877      1.11  degroote {
    878      1.11  degroote 	printf("%s", tag);
    879      1.11  degroote 
    880      1.11  degroote 	maxlen -= strlen(tag)+2;
    881      1.11  degroote 	if (2*ielen > maxlen)
    882      1.11  degroote 		maxlen--;
    883      1.11  degroote 	printf("<");
    884      1.11  degroote 	for (; ielen > 0; ie++, ielen--) {
    885      1.11  degroote 		if (maxlen-- <= 0)
    886      1.11  degroote 			break;
    887      1.11  degroote 		printf("%02x", *ie);
    888      1.11  degroote 	}
    889      1.11  degroote 	if (ielen != 0)
    890      1.11  degroote 		printf("-");
    891      1.11  degroote 	printf(">");
    892      1.11  degroote }
    893      1.11  degroote 
    894      1.11  degroote #define LE_READ_2(p)					\
    895      1.11  degroote 	((u_int16_t)					\
    896      1.11  degroote 	 ((((const u_int8_t *)(p))[0]      ) |		\
    897      1.11  degroote 	  (((const u_int8_t *)(p))[1] <<  8)))
    898      1.11  degroote #define LE_READ_4(p)					\
    899      1.11  degroote 	((u_int32_t)					\
    900      1.11  degroote 	 ((((const u_int8_t *)(p))[0]      ) |		\
    901      1.11  degroote 	  (((const u_int8_t *)(p))[1] <<  8) |		\
    902      1.11  degroote 	  (((const u_int8_t *)(p))[2] << 16) |		\
    903      1.11  degroote 	  (((const u_int8_t *)(p))[3] << 24)))
    904      1.11  degroote 
    905      1.11  degroote /*
    906      1.11  degroote  * NB: The decoding routines assume a properly formatted ie
    907      1.11  degroote  *     which should be safe as the kernel only retains them
    908      1.11  degroote  *     if they parse ok.
    909      1.11  degroote  */
    910      1.11  degroote 
    911      1.11  degroote static void
    912      1.11  degroote printwmeparam(const char *tag, const u_int8_t *ie, size_t ielen, int maxlen)
    913      1.11  degroote {
    914      1.11  degroote #define	MS(_v, _f)	(((_v) & _f) >> _f##_S)
    915      1.11  degroote 	static const char *acnames[] = { "BE", "BK", "VO", "VI" };
    916      1.11  degroote 	const struct ieee80211_wme_param *wme =
    917      1.11  degroote 	    (const struct ieee80211_wme_param *) ie;
    918      1.11  degroote 	int i;
    919      1.11  degroote 
    920      1.11  degroote 	printf("%s", tag);
    921      1.11  degroote 	if (!vflag)
    922      1.11  degroote 		return;
    923      1.11  degroote 	printf("<qosinfo 0x%x", wme->param_qosInfo);
    924      1.11  degroote 	ie += offsetof(struct ieee80211_wme_param, params_acParams);
    925      1.11  degroote 	for (i = 0; i < WME_NUM_AC; i++) {
    926      1.11  degroote 		const struct ieee80211_wme_acparams *ac =
    927      1.11  degroote 		    &wme->params_acParams[i];
    928      1.11  degroote 
    929      1.11  degroote 		printf(" %s[%saifsn %u cwmin %u cwmax %u txop %u]"
    930      1.11  degroote 			, acnames[i]
    931      1.11  degroote 			, MS(ac->acp_aci_aifsn, WME_PARAM_ACM) ? "acm " : ""
    932      1.11  degroote 			, MS(ac->acp_aci_aifsn, WME_PARAM_AIFSN)
    933      1.11  degroote 			, MS(ac->acp_logcwminmax, WME_PARAM_LOGCWMIN)
    934      1.11  degroote 			, MS(ac->acp_logcwminmax, WME_PARAM_LOGCWMAX)
    935      1.11  degroote 			, LE_READ_2(&ac->acp_txop)
    936      1.11  degroote 		);
    937      1.11  degroote 	}
    938      1.11  degroote 	printf(">");
    939      1.11  degroote #undef MS
    940      1.11  degroote }
    941      1.11  degroote 
    942      1.11  degroote static void
    943      1.11  degroote printwmeinfo(const char *tag, const u_int8_t *ie, size_t ielen, int maxlen)
    944      1.11  degroote {
    945      1.11  degroote 	printf("%s", tag);
    946      1.11  degroote 	if (vflag) {
    947      1.11  degroote 		const struct ieee80211_wme_info *wme =
    948      1.11  degroote 		    (const struct ieee80211_wme_info *) ie;
    949      1.11  degroote 		printf("<version 0x%x info 0x%x>",
    950      1.11  degroote 		    wme->wme_version, wme->wme_info);
    951      1.11  degroote 	}
    952      1.11  degroote }
    953      1.11  degroote 
    954      1.11  degroote static const char *
    955      1.11  degroote wpa_cipher(const u_int8_t *sel)
    956      1.11  degroote {
    957      1.11  degroote #define	WPA_SEL(x)	(((x)<<24)|WPA_OUI)
    958      1.11  degroote 	u_int32_t w = LE_READ_4(sel);
    959      1.11  degroote 
    960      1.11  degroote 	switch (w) {
    961      1.11  degroote 	case WPA_SEL(WPA_CSE_NULL):
    962      1.11  degroote 		return "NONE";
    963      1.11  degroote 	case WPA_SEL(WPA_CSE_WEP40):
    964      1.11  degroote 		return "WEP40";
    965      1.11  degroote 	case WPA_SEL(WPA_CSE_WEP104):
    966      1.11  degroote 		return "WEP104";
    967      1.11  degroote 	case WPA_SEL(WPA_CSE_TKIP):
    968      1.11  degroote 		return "TKIP";
    969      1.11  degroote 	case WPA_SEL(WPA_CSE_CCMP):
    970      1.11  degroote 		return "AES-CCMP";
    971      1.11  degroote 	}
    972      1.11  degroote 	return "?";		/* NB: so 1<< is discarded */
    973      1.11  degroote #undef WPA_SEL
    974      1.11  degroote }
    975      1.11  degroote 
    976      1.11  degroote static const char *
    977      1.11  degroote wpa_keymgmt(const u_int8_t *sel)
    978      1.11  degroote {
    979      1.11  degroote #define	WPA_SEL(x)	(((x)<<24)|WPA_OUI)
    980      1.11  degroote 	u_int32_t w = LE_READ_4(sel);
    981      1.11  degroote 
    982      1.11  degroote 	switch (w) {
    983      1.11  degroote 	case WPA_SEL(WPA_ASE_8021X_UNSPEC):
    984      1.11  degroote 		return "8021X-UNSPEC";
    985      1.11  degroote 	case WPA_SEL(WPA_ASE_8021X_PSK):
    986      1.11  degroote 		return "8021X-PSK";
    987      1.11  degroote 	case WPA_SEL(WPA_ASE_NONE):
    988      1.11  degroote 		return "NONE";
    989      1.11  degroote 	}
    990      1.11  degroote 	return "?";
    991      1.11  degroote #undef WPA_SEL
    992      1.11  degroote }
    993      1.11  degroote 
    994      1.11  degroote static void
    995      1.11  degroote printwpaie(const char *tag, const u_int8_t *ie, size_t ielen, int maxlen)
    996      1.11  degroote {
    997      1.11  degroote 	u_int8_t len = ie[1];
    998      1.11  degroote 
    999      1.11  degroote 	printf("%s", tag);
   1000      1.11  degroote 	if (vflag) {
   1001      1.11  degroote 		const char *sep;
   1002      1.11  degroote 		int n;
   1003      1.11  degroote 
   1004      1.11  degroote 		ie += 6, len -= 4;		/* NB: len is payload only */
   1005      1.11  degroote 
   1006      1.11  degroote 		printf("<v%u", LE_READ_2(ie));
   1007      1.11  degroote 		ie += 2, len -= 2;
   1008      1.11  degroote 
   1009      1.11  degroote 		printf(" mc:%s", wpa_cipher(ie));
   1010      1.11  degroote 		ie += 4, len -= 4;
   1011      1.11  degroote 
   1012      1.11  degroote 		/* unicast ciphers */
   1013      1.11  degroote 		n = LE_READ_2(ie);
   1014      1.11  degroote 		ie += 2, len -= 2;
   1015      1.11  degroote 		sep = " uc:";
   1016      1.11  degroote 		for (; n > 0; n--) {
   1017      1.11  degroote 			printf("%s%s", sep, wpa_cipher(ie));
   1018      1.11  degroote 			ie += 4, len -= 4;
   1019      1.11  degroote 			sep = "+";
   1020      1.11  degroote 		}
   1021      1.11  degroote 
   1022      1.11  degroote 		/* key management algorithms */
   1023      1.11  degroote 		n = LE_READ_2(ie);
   1024      1.11  degroote 		ie += 2, len -= 2;
   1025      1.11  degroote 		sep = " km:";
   1026      1.11  degroote 		for (; n > 0; n--) {
   1027      1.11  degroote 			printf("%s%s", sep, wpa_keymgmt(ie));
   1028      1.11  degroote 			ie += 4, len -= 4;
   1029      1.11  degroote 			sep = "+";
   1030      1.11  degroote 		}
   1031      1.11  degroote 
   1032      1.11  degroote 		if (len > 2)		/* optional capabilities */
   1033      1.11  degroote 			printf(", caps 0x%x", LE_READ_2(ie));
   1034      1.11  degroote 		printf(">");
   1035      1.11  degroote 	}
   1036      1.11  degroote }
   1037      1.11  degroote 
   1038      1.11  degroote static const char *
   1039      1.11  degroote rsn_cipher(const u_int8_t *sel)
   1040      1.11  degroote {
   1041      1.11  degroote #define	RSN_SEL(x)	(((x)<<24)|RSN_OUI)
   1042      1.11  degroote 	u_int32_t w = LE_READ_4(sel);
   1043      1.11  degroote 
   1044      1.11  degroote 	switch (w) {
   1045      1.11  degroote 	case RSN_SEL(RSN_CSE_NULL):
   1046      1.11  degroote 		return "NONE";
   1047      1.11  degroote 	case RSN_SEL(RSN_CSE_WEP40):
   1048      1.11  degroote 		return "WEP40";
   1049      1.11  degroote 	case RSN_SEL(RSN_CSE_WEP104):
   1050      1.11  degroote 		return "WEP104";
   1051      1.11  degroote 	case RSN_SEL(RSN_CSE_TKIP):
   1052      1.11  degroote 		return "TKIP";
   1053      1.11  degroote 	case RSN_SEL(RSN_CSE_CCMP):
   1054      1.11  degroote 		return "AES-CCMP";
   1055      1.11  degroote 	case RSN_SEL(RSN_CSE_WRAP):
   1056      1.11  degroote 		return "AES-OCB";
   1057      1.11  degroote 	}
   1058      1.11  degroote 	return "?";
   1059      1.11  degroote #undef WPA_SEL
   1060      1.11  degroote }
   1061      1.11  degroote 
   1062      1.11  degroote static const char *
   1063      1.11  degroote rsn_keymgmt(const u_int8_t *sel)
   1064      1.11  degroote {
   1065      1.11  degroote #define	RSN_SEL(x)	(((x)<<24)|RSN_OUI)
   1066      1.11  degroote 	u_int32_t w = LE_READ_4(sel);
   1067      1.11  degroote 
   1068      1.11  degroote 	switch (w) {
   1069      1.11  degroote 	case RSN_SEL(RSN_ASE_8021X_UNSPEC):
   1070      1.11  degroote 		return "8021X-UNSPEC";
   1071      1.11  degroote 	case RSN_SEL(RSN_ASE_8021X_PSK):
   1072      1.11  degroote 		return "8021X-PSK";
   1073      1.11  degroote 	case RSN_SEL(RSN_ASE_NONE):
   1074      1.11  degroote 		return "NONE";
   1075      1.11  degroote 	}
   1076      1.11  degroote 	return "?";
   1077      1.11  degroote #undef RSN_SEL
   1078      1.11  degroote }
   1079      1.11  degroote 
   1080      1.11  degroote static void
   1081      1.11  degroote printrsnie(const char *tag, const u_int8_t *ie, size_t ielen, int maxlen)
   1082      1.11  degroote {
   1083  1.11.4.2       mjf 	const char *sep;
   1084  1.11.4.2       mjf 	int n;
   1085      1.11  degroote 
   1086  1.11.4.2       mjf 	printf("%s", tag);
   1087  1.11.4.2       mjf 	if (!vflag)
   1088  1.11.4.2       mjf 		return;
   1089      1.11  degroote 
   1090  1.11.4.2       mjf 	ie += 2, ielen -= 2;
   1091      1.11  degroote 
   1092  1.11.4.2       mjf 	printf("<v%u", LE_READ_2(ie));
   1093  1.11.4.2       mjf 	ie += 2, ielen -= 2;
   1094      1.11  degroote 
   1095  1.11.4.2       mjf 	printf(" mc:%s", rsn_cipher(ie));
   1096  1.11.4.2       mjf 	ie += 4, ielen -= 4;
   1097      1.11  degroote 
   1098  1.11.4.2       mjf 	/* unicast ciphers */
   1099  1.11.4.2       mjf 	n = LE_READ_2(ie);
   1100  1.11.4.2       mjf 	ie += 2, ielen -= 2;
   1101  1.11.4.2       mjf 	sep = " uc:";
   1102  1.11.4.2       mjf 	for (; n > 0; n--) {
   1103  1.11.4.2       mjf 		printf("%s%s", sep, rsn_cipher(ie));
   1104  1.11.4.2       mjf 		ie += 4, ielen -= 4;
   1105  1.11.4.2       mjf 		sep = "+";
   1106  1.11.4.2       mjf 	}
   1107      1.11  degroote 
   1108  1.11.4.2       mjf 	/* key management algorithms */
   1109  1.11.4.2       mjf 	n = LE_READ_2(ie);
   1110  1.11.4.2       mjf 	ie += 2, ielen -= 2;
   1111  1.11.4.2       mjf 	sep = " km:";
   1112  1.11.4.2       mjf 	for (; n > 0; n--) {
   1113  1.11.4.2       mjf 		printf("%s%s", sep, rsn_keymgmt(ie));
   1114  1.11.4.2       mjf 		ie += 4, ielen -= 4;
   1115  1.11.4.2       mjf 		sep = "+";
   1116      1.11  degroote 	}
   1117  1.11.4.2       mjf 
   1118  1.11.4.2       mjf 	if (ielen > 2)		/* optional capabilities */
   1119  1.11.4.2       mjf 		printf(", caps 0x%x", LE_READ_2(ie));
   1120  1.11.4.2       mjf 	/* XXXPMKID */
   1121  1.11.4.2       mjf 	printf(">");
   1122      1.11  degroote }
   1123      1.11  degroote 
   1124      1.11  degroote /*
   1125      1.11  degroote  * Copy the ssid string contents into buf, truncating to fit.  If the
   1126      1.11  degroote  * ssid is entirely printable then just copy intact.  Otherwise convert
   1127      1.11  degroote  * to hexadecimal.  If the result is truncated then replace the last
   1128      1.11  degroote  * three characters with "...".
   1129      1.11  degroote  */
   1130      1.11  degroote static int
   1131      1.11  degroote copy_essid(char buf[], size_t bufsize, const u_int8_t *essid, size_t essid_len)
   1132      1.11  degroote {
   1133  1.11.4.1       mjf 	const u_int8_t *p;
   1134      1.11  degroote 	size_t maxlen;
   1135      1.11  degroote 	int i;
   1136      1.11  degroote 
   1137      1.11  degroote 	if (essid_len > bufsize)
   1138      1.11  degroote 		maxlen = bufsize;
   1139      1.11  degroote 	else
   1140      1.11  degroote 		maxlen = essid_len;
   1141      1.11  degroote 	/* determine printable or not */
   1142      1.11  degroote 	for (i = 0, p = essid; i < maxlen; i++, p++) {
   1143      1.11  degroote 		if (*p < ' ' || *p > 0x7e)
   1144      1.11  degroote 			break;
   1145      1.11  degroote 	}
   1146      1.11  degroote 	if (i != maxlen) {		/* not printable, print as hex */
   1147      1.11  degroote 		if (bufsize < 3)
   1148      1.11  degroote 			return 0;
   1149      1.11  degroote 		strlcpy(buf, "0x", bufsize);
   1150      1.11  degroote 		bufsize -= 2;
   1151      1.11  degroote 		p = essid;
   1152      1.11  degroote 		for (i = 0; i < maxlen && bufsize >= 2; i++) {
   1153      1.11  degroote 			sprintf(&buf[2+2*i], "%02x", p[i]);
   1154      1.11  degroote 			bufsize -= 2;
   1155      1.11  degroote 		}
   1156      1.11  degroote 		if (i != essid_len)
   1157      1.11  degroote 			memcpy(&buf[2+2*i-3], "...", 3);
   1158      1.11  degroote 	} else {			/* printable, truncate as needed */
   1159      1.11  degroote 		memcpy(buf, essid, maxlen);
   1160      1.11  degroote 		if (maxlen != essid_len)
   1161      1.11  degroote 			memcpy(&buf[maxlen-3], "...", 3);
   1162      1.11  degroote 	}
   1163      1.11  degroote 	return maxlen;
   1164      1.11  degroote }
   1165      1.11  degroote 
   1166      1.11  degroote static void
   1167      1.11  degroote printssid(const char *tag, const u_int8_t *ie, size_t ielen, int maxlen)
   1168      1.11  degroote {
   1169      1.11  degroote 	char ssid[2*IEEE80211_NWID_LEN+1];
   1170      1.11  degroote 
   1171      1.11  degroote 	printf("%s<%.*s>", tag, copy_essid(ssid, maxlen, ie+2, ie[1]), ssid);
   1172      1.11  degroote }
   1173      1.11  degroote 
   1174      1.11  degroote static void
   1175      1.11  degroote printrates(const char *tag, const u_int8_t *ie, size_t ielen, int maxlen)
   1176      1.11  degroote {
   1177      1.11  degroote 	const char *sep;
   1178      1.11  degroote 	int i;
   1179      1.11  degroote 
   1180      1.11  degroote 	printf("%s", tag);
   1181      1.11  degroote 	sep = "<";
   1182      1.11  degroote 	for (i = 2; i < ielen; i++) {
   1183      1.11  degroote 		printf("%s%s%d", sep,
   1184      1.11  degroote 		    ie[i] & IEEE80211_RATE_BASIC ? "B" : "",
   1185      1.11  degroote 		    ie[i] & IEEE80211_RATE_VAL);
   1186      1.11  degroote 		sep = ",";
   1187      1.11  degroote 	}
   1188      1.11  degroote 	printf(">");
   1189      1.11  degroote }
   1190      1.11  degroote 
   1191      1.11  degroote static void
   1192      1.11  degroote printcountry(const char *tag, const u_int8_t *ie, size_t ielen, int maxlen)
   1193      1.11  degroote {
   1194      1.11  degroote 	const struct ieee80211_country_ie *cie =
   1195      1.11  degroote 	   (const struct ieee80211_country_ie *) ie;
   1196      1.11  degroote 	int i, nbands, schan, nchan;
   1197      1.11  degroote 
   1198      1.11  degroote 	printf("%s<%c%c%c", tag, cie->cc[0], cie->cc[1], cie->cc[2]);
   1199      1.11  degroote 	nbands = (cie->len - 3) / sizeof(cie->band[0]);
   1200      1.11  degroote 	for (i = 0; i < nbands; i++) {
   1201      1.11  degroote 		schan = cie->band[i].schan;
   1202      1.11  degroote 		nchan = cie->band[i].nchan;
   1203      1.11  degroote 		if (nchan != 1)
   1204      1.11  degroote 			printf(" %u-%u,%u", schan, schan + nchan-1,
   1205      1.11  degroote 			    cie->band[i].maxtxpwr);
   1206      1.11  degroote 		else
   1207      1.11  degroote 			printf(" %u,%u", schan, cie->band[i].maxtxpwr);
   1208      1.11  degroote 	}
   1209      1.11  degroote 	printf(">");
   1210      1.11  degroote }
   1211      1.11  degroote 
   1212  1.11.4.1       mjf /* unaligned little endian access */
   1213      1.11  degroote #define LE_READ_4(p)					\
   1214      1.11  degroote 	((u_int32_t)					\
   1215      1.11  degroote 	 ((((const u_int8_t *)(p))[0]      ) |		\
   1216      1.11  degroote 	  (((const u_int8_t *)(p))[1] <<  8) |		\
   1217      1.11  degroote 	  (((const u_int8_t *)(p))[2] << 16) |		\
   1218      1.11  degroote 	  (((const u_int8_t *)(p))[3] << 24)))
   1219      1.11  degroote 
   1220  1.11.4.1       mjf static int
   1221      1.11  degroote iswpaoui(const u_int8_t *frm)
   1222      1.11  degroote {
   1223      1.11  degroote 	return frm[1] > 3 && LE_READ_4(frm+2) == ((WPA_OUI_TYPE<<24)|WPA_OUI);
   1224      1.11  degroote }
   1225      1.11  degroote 
   1226  1.11.4.1       mjf static int
   1227      1.11  degroote iswmeinfo(const u_int8_t *frm)
   1228      1.11  degroote {
   1229      1.11  degroote 	return frm[1] > 5 && LE_READ_4(frm+2) == ((WME_OUI_TYPE<<24)|WME_OUI) &&
   1230      1.11  degroote 		frm[6] == WME_INFO_OUI_SUBTYPE;
   1231      1.11  degroote }
   1232      1.11  degroote 
   1233      1.11  degroote static int
   1234      1.11  degroote iswmeparam(const u_int8_t *frm)
   1235      1.11  degroote {
   1236      1.11  degroote 	return frm[1] > 5 && LE_READ_4(frm+2) == ((WME_OUI_TYPE<<24)|WME_OUI) &&
   1237      1.11  degroote 		frm[6] == WME_PARAM_OUI_SUBTYPE;
   1238      1.11  degroote }
   1239      1.11  degroote 
   1240      1.11  degroote static const char *
   1241      1.11  degroote iename(int elemid)
   1242      1.11  degroote {
   1243      1.11  degroote 	switch (elemid) {
   1244      1.11  degroote 	case IEEE80211_ELEMID_FHPARMS:	return " FHPARMS";
   1245      1.11  degroote 	case IEEE80211_ELEMID_CFPARMS:	return " CFPARMS";
   1246      1.11  degroote 	case IEEE80211_ELEMID_TIM:	return " TIM";
   1247      1.11  degroote 	case IEEE80211_ELEMID_IBSSPARMS:return " IBSSPARMS";
   1248      1.11  degroote 	case IEEE80211_ELEMID_CHALLENGE:return " CHALLENGE";
   1249      1.11  degroote 	case IEEE80211_ELEMID_PWRCNSTR:	return " PWRCNSTR";
   1250      1.11  degroote 	case IEEE80211_ELEMID_PWRCAP:	return " PWRCAP";
   1251      1.11  degroote 	case IEEE80211_ELEMID_TPCREQ:	return " TPCREQ";
   1252      1.11  degroote 	case IEEE80211_ELEMID_TPCREP:	return " TPCREP";
   1253      1.11  degroote 	case IEEE80211_ELEMID_SUPPCHAN:	return " SUPPCHAN";
   1254      1.11  degroote 	case IEEE80211_ELEMID_CHANSWITCHANN:return " CSA";
   1255      1.11  degroote 	case IEEE80211_ELEMID_MEASREQ:	return " MEASREQ";
   1256      1.11  degroote 	case IEEE80211_ELEMID_MEASREP:	return " MEASREP";
   1257      1.11  degroote 	case IEEE80211_ELEMID_QUIET:	return " QUIET";
   1258      1.11  degroote 	case IEEE80211_ELEMID_IBSSDFS:	return " IBSSDFS";
   1259      1.11  degroote 	case IEEE80211_ELEMID_TPC:	return " TPC";
   1260      1.11  degroote 	case IEEE80211_ELEMID_CCKM:	return " CCKM";
   1261      1.11  degroote 	}
   1262      1.11  degroote 	return " ???";
   1263      1.11  degroote }
   1264      1.11  degroote 
   1265      1.11  degroote static void
   1266      1.11  degroote printies(const u_int8_t *vp, int ielen, int maxcols)
   1267      1.11  degroote {
   1268      1.11  degroote 	while (ielen > 0) {
   1269      1.11  degroote 		switch (vp[0]) {
   1270      1.11  degroote 		case IEEE80211_ELEMID_SSID:
   1271      1.11  degroote 			if (vflag)
   1272      1.11  degroote 				printssid(" SSID", vp, 2+vp[1], maxcols);
   1273      1.11  degroote 			break;
   1274      1.11  degroote 		case IEEE80211_ELEMID_RATES:
   1275      1.11  degroote 		case IEEE80211_ELEMID_XRATES:
   1276      1.11  degroote 			if (vflag)
   1277      1.11  degroote 				printrates(vp[0] == IEEE80211_ELEMID_RATES ?
   1278      1.11  degroote 				    " RATES" : " XRATES", vp, 2+vp[1], maxcols);
   1279      1.11  degroote 			break;
   1280      1.11  degroote 		case IEEE80211_ELEMID_DSPARMS:
   1281      1.11  degroote 			if (vflag)
   1282      1.11  degroote 				printf(" DSPARMS<%u>", vp[2]);
   1283      1.11  degroote 			break;
   1284      1.11  degroote 		case IEEE80211_ELEMID_COUNTRY:
   1285      1.11  degroote 			if (vflag)
   1286      1.11  degroote 				printcountry(" COUNTRY", vp, 2+vp[1], maxcols);
   1287      1.11  degroote 			break;
   1288      1.11  degroote 		case IEEE80211_ELEMID_ERP:
   1289      1.11  degroote 			if (vflag)
   1290      1.11  degroote 				printf(" ERP<0x%x>", vp[2]);
   1291      1.11  degroote 			break;
   1292      1.11  degroote 		case IEEE80211_ELEMID_VENDOR:
   1293      1.11  degroote 			if (iswpaoui(vp))
   1294      1.11  degroote 				printwpaie(" WPA", vp, 2+vp[1], maxcols);
   1295      1.11  degroote 			else if (iswmeinfo(vp))
   1296      1.11  degroote 				printwmeinfo(" WME", vp, 2+vp[1], maxcols);
   1297      1.11  degroote 			else if (iswmeparam(vp))
   1298      1.11  degroote 				printwmeparam(" WME", vp, 2+vp[1], maxcols);
   1299      1.11  degroote 			else if (vflag)
   1300      1.11  degroote 				printie(" VEN", vp, 2+vp[1], maxcols);
   1301      1.11  degroote 			break;
   1302      1.11  degroote 		case IEEE80211_ELEMID_RSN:
   1303      1.11  degroote 			printrsnie(" RSN", vp, 2+vp[1], maxcols);
   1304      1.11  degroote 			break;
   1305      1.11  degroote 		default:
   1306      1.11  degroote 			if (vflag)
   1307      1.11  degroote 				printie(iename(vp[0]), vp, 2+vp[1], maxcols);
   1308      1.11  degroote 			break;
   1309      1.11  degroote 		}
   1310      1.11  degroote 		ielen -= 2+vp[1];
   1311      1.11  degroote 		vp += 2+vp[1];
   1312      1.11  degroote 	}
   1313      1.11  degroote }
   1314      1.11  degroote 
   1315      1.11  degroote static int
   1316      1.11  degroote mapgsm(u_int isrfreq, u_int isrflags)
   1317      1.11  degroote {
   1318      1.11  degroote 	isrfreq *= 10;
   1319      1.11  degroote 	if (isrflags & IEEE80211_CHAN_QUARTER)
   1320      1.11  degroote 		isrfreq += 5;
   1321      1.11  degroote 	else if (isrflags & IEEE80211_CHAN_HALF)
   1322      1.11  degroote 		isrfreq += 10;
   1323      1.11  degroote 	else
   1324      1.11  degroote 		isrfreq += 20;
   1325      1.11  degroote 	/* NB: there is no 907/20 wide but leave room */
   1326      1.11  degroote 	return (isrfreq - 906*10) / 5;
   1327      1.11  degroote }
   1328      1.11  degroote 
   1329      1.11  degroote static int
   1330      1.11  degroote mappsb(u_int isrfreq, u_int isrflags)
   1331      1.11  degroote {
   1332      1.11  degroote 	return 37 + ((isrfreq * 10) + ((isrfreq % 5) == 2 ? 5 : 0) - 49400) / 5;
   1333      1.11  degroote }
   1334  1.11.4.2       mjf 
   1335  1.11.4.2       mjf static status_func_t status;
   1336  1.11.4.2       mjf static usage_func_t usage;
   1337  1.11.4.2       mjf static statistics_func_t statistics;
   1338  1.11.4.2       mjf static cmdloop_branch_t branch[2];
   1339  1.11.4.2       mjf 
   1340  1.11.4.2       mjf static void
   1341  1.11.4.2       mjf ieee80211_usage(prop_dictionary_t env)
   1342  1.11.4.2       mjf {
   1343  1.11.4.2       mjf 	fprintf(stderr,
   1344  1.11.4.2       mjf 	    "\t[ nwid network_id ] [ nwkey network_key | -nwkey ]\n"
   1345  1.11.4.2       mjf 	    "\t[ list scan ]\n"
   1346  1.11.4.2       mjf 	    "\t[ powersave | -powersave ] [ powersavesleep duration ]\n"
   1347  1.11.4.2       mjf 	    "\t[ hidessid | -hidessid ] [ apbridge | -apbridge ]\n");
   1348  1.11.4.2       mjf }
   1349  1.11.4.2       mjf 
   1350  1.11.4.2       mjf static void
   1351  1.11.4.2       mjf ieee80211_constructor(void)
   1352  1.11.4.2       mjf {
   1353  1.11.4.2       mjf 	cmdloop_branch_init(&branch[0], &ieee80211bool.pk_parser);
   1354  1.11.4.2       mjf 	cmdloop_branch_init(&branch[1], &kw80211.pk_parser);
   1355  1.11.4.2       mjf 	register_cmdloop_branch(&branch[0]);
   1356  1.11.4.2       mjf 	register_cmdloop_branch(&branch[1]);
   1357  1.11.4.2       mjf 	status_func_init(&status, ieee80211_status);
   1358  1.11.4.2       mjf 	statistics_func_init(&statistics, ieee80211_statistics);
   1359  1.11.4.2       mjf 	usage_func_init(&usage, ieee80211_usage);
   1360  1.11.4.2       mjf 	register_status(&status);
   1361  1.11.4.2       mjf 	register_statistics(&statistics);
   1362  1.11.4.2       mjf 	register_usage(&usage);
   1363  1.11.4.2       mjf }
   1364