15b9c547cSRui Paulo /* 25b9c547cSRui Paulo * Common hostapd/wpa_supplicant HW features 35b9c547cSRui Paulo * Copyright (c) 2002-2013, Jouni Malinen <j@w1.fi> 45b9c547cSRui Paulo * Copyright (c) 2015, Qualcomm Atheros, Inc. 55b9c547cSRui Paulo * 65b9c547cSRui Paulo * This software may be distributed under the terms of the BSD license. 75b9c547cSRui Paulo * See README for more details. 85b9c547cSRui Paulo */ 95b9c547cSRui Paulo 105b9c547cSRui Paulo #include "includes.h" 115b9c547cSRui Paulo 125b9c547cSRui Paulo #include "common.h" 135b9c547cSRui Paulo #include "defs.h" 145b9c547cSRui Paulo #include "ieee802_11_defs.h" 155b9c547cSRui Paulo #include "ieee802_11_common.h" 165b9c547cSRui Paulo #include "hw_features_common.h" 175b9c547cSRui Paulo 185b9c547cSRui Paulo 195b9c547cSRui Paulo struct hostapd_channel_data * hw_get_channel_chan(struct hostapd_hw_modes *mode, 205b9c547cSRui Paulo int chan, int *freq) 215b9c547cSRui Paulo { 225b9c547cSRui Paulo int i; 235b9c547cSRui Paulo 245b9c547cSRui Paulo if (freq) 255b9c547cSRui Paulo *freq = 0; 265b9c547cSRui Paulo 275b9c547cSRui Paulo if (!mode) 285b9c547cSRui Paulo return NULL; 295b9c547cSRui Paulo 305b9c547cSRui Paulo for (i = 0; i < mode->num_channels; i++) { 315b9c547cSRui Paulo struct hostapd_channel_data *ch = &mode->channels[i]; 325b9c547cSRui Paulo if (ch->chan == chan) { 335b9c547cSRui Paulo if (freq) 345b9c547cSRui Paulo *freq = ch->freq; 355b9c547cSRui Paulo return ch; 365b9c547cSRui Paulo } 375b9c547cSRui Paulo } 385b9c547cSRui Paulo 395b9c547cSRui Paulo return NULL; 405b9c547cSRui Paulo } 415b9c547cSRui Paulo 425b9c547cSRui Paulo 43c1d255d3SCy Schubert struct hostapd_channel_data * 44c1d255d3SCy Schubert hw_mode_get_channel(struct hostapd_hw_modes *mode, int freq, int *chan) 455b9c547cSRui Paulo { 465b9c547cSRui Paulo int i; 475b9c547cSRui Paulo 485b9c547cSRui Paulo for (i = 0; i < mode->num_channels; i++) { 495b9c547cSRui Paulo struct hostapd_channel_data *ch = &mode->channels[i]; 50c1d255d3SCy Schubert 515b9c547cSRui Paulo if (ch->freq == freq) { 525b9c547cSRui Paulo if (chan) 535b9c547cSRui Paulo *chan = ch->chan; 545b9c547cSRui Paulo return ch; 555b9c547cSRui Paulo } 565b9c547cSRui Paulo } 575b9c547cSRui Paulo 585b9c547cSRui Paulo return NULL; 595b9c547cSRui Paulo } 605b9c547cSRui Paulo 615b9c547cSRui Paulo 62c1d255d3SCy Schubert struct hostapd_channel_data * 63c1d255d3SCy Schubert hw_get_channel_freq(enum hostapd_hw_mode mode, int freq, int *chan, 64c1d255d3SCy Schubert struct hostapd_hw_modes *hw_features, int num_hw_features) 65c1d255d3SCy Schubert { 66c1d255d3SCy Schubert struct hostapd_channel_data *chan_data; 67c1d255d3SCy Schubert int i; 68c1d255d3SCy Schubert 69c1d255d3SCy Schubert if (chan) 70c1d255d3SCy Schubert *chan = 0; 71c1d255d3SCy Schubert 72c1d255d3SCy Schubert if (!hw_features) 73c1d255d3SCy Schubert return NULL; 74c1d255d3SCy Schubert 75c1d255d3SCy Schubert for (i = 0; i < num_hw_features; i++) { 76c1d255d3SCy Schubert struct hostapd_hw_modes *curr_mode = &hw_features[i]; 77c1d255d3SCy Schubert 78c1d255d3SCy Schubert if (curr_mode->mode != mode) 79c1d255d3SCy Schubert continue; 80c1d255d3SCy Schubert 81c1d255d3SCy Schubert chan_data = hw_mode_get_channel(curr_mode, freq, chan); 82c1d255d3SCy Schubert if (chan_data) 83c1d255d3SCy Schubert return chan_data; 84c1d255d3SCy Schubert } 85c1d255d3SCy Schubert 86c1d255d3SCy Schubert return NULL; 87c1d255d3SCy Schubert } 88c1d255d3SCy Schubert 89c1d255d3SCy Schubert 905b9c547cSRui Paulo int hw_get_freq(struct hostapd_hw_modes *mode, int chan) 915b9c547cSRui Paulo { 925b9c547cSRui Paulo int freq; 935b9c547cSRui Paulo 945b9c547cSRui Paulo hw_get_channel_chan(mode, chan, &freq); 955b9c547cSRui Paulo 965b9c547cSRui Paulo return freq; 975b9c547cSRui Paulo } 985b9c547cSRui Paulo 995b9c547cSRui Paulo 100c1d255d3SCy Schubert int hw_get_chan(enum hostapd_hw_mode mode, int freq, 101c1d255d3SCy Schubert struct hostapd_hw_modes *hw_features, int num_hw_features) 1025b9c547cSRui Paulo { 1035b9c547cSRui Paulo int chan; 1045b9c547cSRui Paulo 105c1d255d3SCy Schubert hw_get_channel_freq(mode, freq, &chan, hw_features, num_hw_features); 1065b9c547cSRui Paulo 1075b9c547cSRui Paulo return chan; 1085b9c547cSRui Paulo } 1095b9c547cSRui Paulo 1105b9c547cSRui Paulo 111c1d255d3SCy Schubert int allowed_ht40_channel_pair(enum hostapd_hw_mode mode, 112c1d255d3SCy Schubert struct hostapd_channel_data *p_chan, 113c1d255d3SCy Schubert struct hostapd_channel_data *s_chan) 1145b9c547cSRui Paulo { 1154bc52338SCy Schubert int ok, first; 116325151a3SRui Paulo int allowed[] = { 36, 44, 52, 60, 100, 108, 116, 124, 132, 140, 1174b72b91aSCy Schubert 149, 157, 165, 173, 184, 192 }; 1185b9c547cSRui Paulo size_t k; 119c1d255d3SCy Schubert int ht40_plus, pri_chan, sec_chan; 1205b9c547cSRui Paulo 121c1d255d3SCy Schubert if (!p_chan || !s_chan) 1224bc52338SCy Schubert return 0; 123c1d255d3SCy Schubert pri_chan = p_chan->chan; 124c1d255d3SCy Schubert sec_chan = s_chan->chan; 125c1d255d3SCy Schubert 126c1d255d3SCy Schubert ht40_plus = pri_chan < sec_chan; 1274bc52338SCy Schubert 1284bc52338SCy Schubert if (pri_chan == sec_chan || !sec_chan) { 1294bc52338SCy Schubert if (chan_pri_allowed(p_chan)) 1305b9c547cSRui Paulo return 1; /* HT40 not used */ 1315b9c547cSRui Paulo 1324bc52338SCy Schubert wpa_printf(MSG_ERROR, "Channel %d is not allowed as primary", 1334bc52338SCy Schubert pri_chan); 1344bc52338SCy Schubert return 0; 1354bc52338SCy Schubert } 1364bc52338SCy Schubert 1375b9c547cSRui Paulo wpa_printf(MSG_DEBUG, 138c1d255d3SCy Schubert "HT40: control channel: %d (%d MHz), secondary channel: %d (%d MHz)", 139c1d255d3SCy Schubert pri_chan, p_chan->freq, sec_chan, s_chan->freq); 1405b9c547cSRui Paulo 1415b9c547cSRui Paulo /* Verify that HT40 secondary channel is an allowed 20 MHz 1425b9c547cSRui Paulo * channel */ 1434bc52338SCy Schubert if ((s_chan->flag & HOSTAPD_CHAN_DISABLED) || 1444bc52338SCy Schubert (ht40_plus && !(p_chan->allowed_bw & HOSTAPD_CHAN_WIDTH_40P)) || 1454bc52338SCy Schubert (!ht40_plus && !(p_chan->allowed_bw & HOSTAPD_CHAN_WIDTH_40M))) { 1465b9c547cSRui Paulo wpa_printf(MSG_ERROR, "HT40 secondary channel %d not allowed", 1475b9c547cSRui Paulo sec_chan); 1485b9c547cSRui Paulo return 0; 1495b9c547cSRui Paulo } 1505b9c547cSRui Paulo 1515b9c547cSRui Paulo /* 1525b9c547cSRui Paulo * Verify that HT40 primary,secondary channel pair is allowed per 1535b9c547cSRui Paulo * IEEE 802.11n Annex J. This is only needed for 5 GHz band since 1545b9c547cSRui Paulo * 2.4 GHz rules allow all cases where the secondary channel fits into 1555b9c547cSRui Paulo * the list of allowed channels (already checked above). 1565b9c547cSRui Paulo */ 157c1d255d3SCy Schubert if (mode != HOSTAPD_MODE_IEEE80211A) 1585b9c547cSRui Paulo return 1; 1595b9c547cSRui Paulo 1605b9c547cSRui Paulo first = pri_chan < sec_chan ? pri_chan : sec_chan; 1615b9c547cSRui Paulo 1625b9c547cSRui Paulo ok = 0; 1635b9c547cSRui Paulo for (k = 0; k < ARRAY_SIZE(allowed); k++) { 1645b9c547cSRui Paulo if (first == allowed[k]) { 1655b9c547cSRui Paulo ok = 1; 1665b9c547cSRui Paulo break; 1675b9c547cSRui Paulo } 1685b9c547cSRui Paulo } 1695b9c547cSRui Paulo if (!ok) { 1705b9c547cSRui Paulo wpa_printf(MSG_ERROR, "HT40 channel pair (%d, %d) not allowed", 1715b9c547cSRui Paulo pri_chan, sec_chan); 1725b9c547cSRui Paulo return 0; 1735b9c547cSRui Paulo } 1745b9c547cSRui Paulo 1755b9c547cSRui Paulo return 1; 1765b9c547cSRui Paulo } 1775b9c547cSRui Paulo 1785b9c547cSRui Paulo 1795b9c547cSRui Paulo void get_pri_sec_chan(struct wpa_scan_res *bss, int *pri_chan, int *sec_chan) 1805b9c547cSRui Paulo { 1815b9c547cSRui Paulo struct ieee80211_ht_operation *oper; 1825b9c547cSRui Paulo struct ieee802_11_elems elems; 1835b9c547cSRui Paulo 1845b9c547cSRui Paulo *pri_chan = *sec_chan = 0; 1855b9c547cSRui Paulo 186*a90b9d01SCy Schubert if (ieee802_11_parse_elems((u8 *) (bss + 1), bss->ie_len, &elems, 0) != 187*a90b9d01SCy Schubert ParseFailed && elems.ht_operation) { 1885b9c547cSRui Paulo oper = (struct ieee80211_ht_operation *) elems.ht_operation; 1895b9c547cSRui Paulo *pri_chan = oper->primary_chan; 1905b9c547cSRui Paulo if (oper->ht_param & HT_INFO_HT_PARAM_STA_CHNL_WIDTH) { 1915b9c547cSRui Paulo int sec = oper->ht_param & 1925b9c547cSRui Paulo HT_INFO_HT_PARAM_SECONDARY_CHNL_OFF_MASK; 1935b9c547cSRui Paulo if (sec == HT_INFO_HT_PARAM_SECONDARY_CHNL_ABOVE) 1945b9c547cSRui Paulo *sec_chan = *pri_chan + 4; 1955b9c547cSRui Paulo else if (sec == HT_INFO_HT_PARAM_SECONDARY_CHNL_BELOW) 1965b9c547cSRui Paulo *sec_chan = *pri_chan - 4; 1975b9c547cSRui Paulo } 1985b9c547cSRui Paulo } 1995b9c547cSRui Paulo } 2005b9c547cSRui Paulo 2015b9c547cSRui Paulo 202c1d255d3SCy Schubert int check_40mhz_5g(struct wpa_scan_results *scan_res, 203c1d255d3SCy Schubert struct hostapd_channel_data *pri_chan, 204c1d255d3SCy Schubert struct hostapd_channel_data *sec_chan) 2055b9c547cSRui Paulo { 206c1d255d3SCy Schubert int pri_bss, sec_bss; 2075b9c547cSRui Paulo int bss_pri_chan, bss_sec_chan; 2085b9c547cSRui Paulo size_t i; 2095b9c547cSRui Paulo int match; 2105b9c547cSRui Paulo 211c1d255d3SCy Schubert if (!scan_res || !pri_chan || !sec_chan || 212c1d255d3SCy Schubert pri_chan->freq == sec_chan->freq) 2135b9c547cSRui Paulo return 0; 2145b9c547cSRui Paulo 2155b9c547cSRui Paulo /* 2165b9c547cSRui Paulo * Switch PRI/SEC channels if Beacons were detected on selected SEC 2175b9c547cSRui Paulo * channel, but not on selected PRI channel. 2185b9c547cSRui Paulo */ 2195b9c547cSRui Paulo pri_bss = sec_bss = 0; 2205b9c547cSRui Paulo for (i = 0; i < scan_res->num; i++) { 2215b9c547cSRui Paulo struct wpa_scan_res *bss = scan_res->res[i]; 222c1d255d3SCy Schubert if (bss->freq == pri_chan->freq) 2235b9c547cSRui Paulo pri_bss++; 224c1d255d3SCy Schubert else if (bss->freq == sec_chan->freq) 2255b9c547cSRui Paulo sec_bss++; 2265b9c547cSRui Paulo } 2275b9c547cSRui Paulo if (sec_bss && !pri_bss) { 2285b9c547cSRui Paulo wpa_printf(MSG_INFO, 2295b9c547cSRui Paulo "Switch own primary and secondary channel to get secondary channel with no Beacons from other BSSes"); 2305b9c547cSRui Paulo return 2; 2315b9c547cSRui Paulo } 2325b9c547cSRui Paulo 2335b9c547cSRui Paulo /* 2345b9c547cSRui Paulo * Match PRI/SEC channel with any existing HT40 BSS on the same 2355b9c547cSRui Paulo * channels that we are about to use (if already mixed order in 2365b9c547cSRui Paulo * existing BSSes, use own preference). 2375b9c547cSRui Paulo */ 2385b9c547cSRui Paulo match = 0; 2395b9c547cSRui Paulo for (i = 0; i < scan_res->num; i++) { 2405b9c547cSRui Paulo struct wpa_scan_res *bss = scan_res->res[i]; 2415b9c547cSRui Paulo get_pri_sec_chan(bss, &bss_pri_chan, &bss_sec_chan); 242c1d255d3SCy Schubert if (pri_chan->chan == bss_pri_chan && 243c1d255d3SCy Schubert sec_chan->chan == bss_sec_chan) { 2445b9c547cSRui Paulo match = 1; 2455b9c547cSRui Paulo break; 2465b9c547cSRui Paulo } 2475b9c547cSRui Paulo } 2485b9c547cSRui Paulo if (!match) { 2495b9c547cSRui Paulo for (i = 0; i < scan_res->num; i++) { 2505b9c547cSRui Paulo struct wpa_scan_res *bss = scan_res->res[i]; 2515b9c547cSRui Paulo get_pri_sec_chan(bss, &bss_pri_chan, &bss_sec_chan); 252c1d255d3SCy Schubert if (pri_chan->chan == bss_sec_chan && 253c1d255d3SCy Schubert sec_chan->chan == bss_pri_chan) { 2545b9c547cSRui Paulo wpa_printf(MSG_INFO, "Switch own primary and " 2555b9c547cSRui Paulo "secondary channel due to BSS " 2565b9c547cSRui Paulo "overlap with " MACSTR, 2575b9c547cSRui Paulo MAC2STR(bss->bssid)); 2585b9c547cSRui Paulo return 2; 2595b9c547cSRui Paulo } 2605b9c547cSRui Paulo } 2615b9c547cSRui Paulo } 2625b9c547cSRui Paulo 2635b9c547cSRui Paulo return 1; 2645b9c547cSRui Paulo } 2655b9c547cSRui Paulo 2665b9c547cSRui Paulo 267325151a3SRui Paulo static int check_20mhz_bss(struct wpa_scan_res *bss, int pri_freq, int start, 268325151a3SRui Paulo int end) 2695b9c547cSRui Paulo { 2705b9c547cSRui Paulo struct ieee802_11_elems elems; 2715b9c547cSRui Paulo struct ieee80211_ht_operation *oper; 2725b9c547cSRui Paulo 2735b9c547cSRui Paulo if (bss->freq < start || bss->freq > end || bss->freq == pri_freq) 2745b9c547cSRui Paulo return 0; 2755b9c547cSRui Paulo 276*a90b9d01SCy Schubert if (ieee802_11_parse_elems((u8 *) (bss + 1), bss->ie_len, &elems, 0) == 277*a90b9d01SCy Schubert ParseFailed) 278*a90b9d01SCy Schubert return 0; 279*a90b9d01SCy Schubert 2805b9c547cSRui Paulo if (!elems.ht_capabilities) { 2815b9c547cSRui Paulo wpa_printf(MSG_DEBUG, "Found overlapping legacy BSS: " 2825b9c547cSRui Paulo MACSTR " freq=%d", MAC2STR(bss->bssid), bss->freq); 2835b9c547cSRui Paulo return 1; 2845b9c547cSRui Paulo } 2855b9c547cSRui Paulo 286325151a3SRui Paulo if (elems.ht_operation) { 2875b9c547cSRui Paulo oper = (struct ieee80211_ht_operation *) elems.ht_operation; 2885b9c547cSRui Paulo if (oper->ht_param & HT_INFO_HT_PARAM_SECONDARY_CHNL_OFF_MASK) 2895b9c547cSRui Paulo return 0; 2905b9c547cSRui Paulo 2915b9c547cSRui Paulo wpa_printf(MSG_DEBUG, "Found overlapping 20 MHz HT BSS: " 2925b9c547cSRui Paulo MACSTR " freq=%d", MAC2STR(bss->bssid), bss->freq); 2935b9c547cSRui Paulo return 1; 2945b9c547cSRui Paulo } 2955b9c547cSRui Paulo return 0; 2965b9c547cSRui Paulo } 2975b9c547cSRui Paulo 2985b9c547cSRui Paulo 29932a95656SCy Schubert int check_40mhz_2g4(struct hostapd_hw_modes *mode, 30032a95656SCy Schubert struct wpa_scan_results *scan_res, int pri_chan, 30132a95656SCy Schubert int sec_chan) 3025b9c547cSRui Paulo { 30332a95656SCy Schubert int pri_freq, sec_freq; 3045b9c547cSRui Paulo int affected_start, affected_end; 30532a95656SCy Schubert size_t i; 3065b9c547cSRui Paulo 30732a95656SCy Schubert if (!mode || !scan_res || !pri_chan || !sec_chan || 30832a95656SCy Schubert pri_chan == sec_chan) 30932a95656SCy Schubert return 0; 31032a95656SCy Schubert 31132a95656SCy Schubert pri_freq = hw_get_freq(mode, pri_chan); 31232a95656SCy Schubert sec_freq = hw_get_freq(mode, sec_chan); 3135b9c547cSRui Paulo 3145b9c547cSRui Paulo affected_start = (pri_freq + sec_freq) / 2 - 25; 3155b9c547cSRui Paulo affected_end = (pri_freq + sec_freq) / 2 + 25; 31632a95656SCy Schubert wpa_printf(MSG_DEBUG, "40 MHz affected channel range: [%d,%d] MHz", 31732a95656SCy Schubert affected_start, affected_end); 31832a95656SCy Schubert for (i = 0; i < scan_res->num; i++) { 31932a95656SCy Schubert struct wpa_scan_res *bss = scan_res->res[i]; 32032a95656SCy Schubert int pri = bss->freq; 32132a95656SCy Schubert int sec = pri; 32232a95656SCy Schubert struct ieee802_11_elems elems; 3235b9c547cSRui Paulo 3245b9c547cSRui Paulo /* Check for overlapping 20 MHz BSS */ 32532a95656SCy Schubert if (check_20mhz_bss(bss, pri_freq, affected_start, 32632a95656SCy Schubert affected_end)) { 32732a95656SCy Schubert wpa_printf(MSG_DEBUG, 32832a95656SCy Schubert "Overlapping 20 MHz BSS is found"); 32932a95656SCy Schubert return 0; 3305b9c547cSRui Paulo } 3315b9c547cSRui Paulo 3325b9c547cSRui Paulo get_pri_sec_chan(bss, &pri_chan, &sec_chan); 3335b9c547cSRui Paulo 3345b9c547cSRui Paulo if (sec_chan) { 3355b9c547cSRui Paulo if (sec_chan < pri_chan) 3365b9c547cSRui Paulo sec = pri - 20; 3375b9c547cSRui Paulo else 3385b9c547cSRui Paulo sec = pri + 20; 3395b9c547cSRui Paulo } 3405b9c547cSRui Paulo 3415b9c547cSRui Paulo if ((pri < affected_start || pri > affected_end) && 3425b9c547cSRui Paulo (sec < affected_start || sec > affected_end)) 34332a95656SCy Schubert continue; /* not within affected channel range */ 3445b9c547cSRui Paulo 3455b9c547cSRui Paulo wpa_printf(MSG_DEBUG, "Neighboring BSS: " MACSTR 3465b9c547cSRui Paulo " freq=%d pri=%d sec=%d", 3475b9c547cSRui Paulo MAC2STR(bss->bssid), bss->freq, pri_chan, sec_chan); 3485b9c547cSRui Paulo 3495b9c547cSRui Paulo if (sec_chan) { 3505b9c547cSRui Paulo if (pri_freq != pri || sec_freq != sec) { 3515b9c547cSRui Paulo wpa_printf(MSG_DEBUG, 3525b9c547cSRui Paulo "40 MHz pri/sec mismatch with BSS " 3535b9c547cSRui Paulo MACSTR 3545b9c547cSRui Paulo " <%d,%d> (chan=%d%c) vs. <%d,%d>", 3555b9c547cSRui Paulo MAC2STR(bss->bssid), 3565b9c547cSRui Paulo pri, sec, pri_chan, 3575b9c547cSRui Paulo sec > pri ? '+' : '-', 3585b9c547cSRui Paulo pri_freq, sec_freq); 35932a95656SCy Schubert return 0; 3605b9c547cSRui Paulo } 3615b9c547cSRui Paulo } 3625b9c547cSRui Paulo 363*a90b9d01SCy Schubert if (ieee802_11_parse_elems((u8 *) (bss + 1), bss->ie_len, 364*a90b9d01SCy Schubert &elems, 0) != ParseFailed && 365*a90b9d01SCy Schubert elems.ht_capabilities) { 3665b9c547cSRui Paulo struct ieee80211_ht_capabilities *ht_cap = 3675b9c547cSRui Paulo (struct ieee80211_ht_capabilities *) 3685b9c547cSRui Paulo elems.ht_capabilities; 3695b9c547cSRui Paulo 3705b9c547cSRui Paulo if (le_to_host16(ht_cap->ht_capabilities_info) & 3715b9c547cSRui Paulo HT_CAP_INFO_40MHZ_INTOLERANT) { 3725b9c547cSRui Paulo wpa_printf(MSG_DEBUG, 3735b9c547cSRui Paulo "40 MHz Intolerant is set on channel %d in BSS " 3745b9c547cSRui Paulo MACSTR, pri, MAC2STR(bss->bssid)); 3755b9c547cSRui Paulo return 0; 3765b9c547cSRui Paulo } 37732a95656SCy Schubert } 3785b9c547cSRui Paulo } 3795b9c547cSRui Paulo 3805b9c547cSRui Paulo return 1; 3815b9c547cSRui Paulo } 3825b9c547cSRui Paulo 3835b9c547cSRui Paulo 384*a90b9d01SCy Schubert static void punct_update_legacy_bw_80(u8 bitmap, u8 pri_chan, u8 *seg0) 385*a90b9d01SCy Schubert { 386*a90b9d01SCy Schubert u8 first_chan = *seg0 - 6, sec_chan; 387*a90b9d01SCy Schubert 388*a90b9d01SCy Schubert switch (bitmap) { 389*a90b9d01SCy Schubert case 0x6: 390*a90b9d01SCy Schubert *seg0 = 0; 391*a90b9d01SCy Schubert return; 392*a90b9d01SCy Schubert case 0x8: 393*a90b9d01SCy Schubert case 0x4: 394*a90b9d01SCy Schubert case 0x2: 395*a90b9d01SCy Schubert case 0x1: 396*a90b9d01SCy Schubert case 0xC: 397*a90b9d01SCy Schubert case 0x3: 398*a90b9d01SCy Schubert if (pri_chan < *seg0) 399*a90b9d01SCy Schubert *seg0 -= 4; 400*a90b9d01SCy Schubert else 401*a90b9d01SCy Schubert *seg0 += 4; 402*a90b9d01SCy Schubert break; 403*a90b9d01SCy Schubert } 404*a90b9d01SCy Schubert 405*a90b9d01SCy Schubert if (pri_chan < *seg0) 406*a90b9d01SCy Schubert sec_chan = pri_chan + 4; 407*a90b9d01SCy Schubert else 408*a90b9d01SCy Schubert sec_chan = pri_chan - 4; 409*a90b9d01SCy Schubert 410*a90b9d01SCy Schubert if (bitmap & BIT((sec_chan - first_chan) / 4)) 411*a90b9d01SCy Schubert *seg0 = 0; 412*a90b9d01SCy Schubert } 413*a90b9d01SCy Schubert 414*a90b9d01SCy Schubert 415*a90b9d01SCy Schubert static void punct_update_legacy_bw_160(u8 bitmap, u8 pri, 416*a90b9d01SCy Schubert enum oper_chan_width *width, u8 *seg0) 417*a90b9d01SCy Schubert { 418*a90b9d01SCy Schubert if (pri < *seg0) { 419*a90b9d01SCy Schubert *seg0 -= 8; 420*a90b9d01SCy Schubert if (bitmap & 0x0F) { 421*a90b9d01SCy Schubert *width = 0; 422*a90b9d01SCy Schubert punct_update_legacy_bw_80(bitmap & 0xF, pri, seg0); 423*a90b9d01SCy Schubert } 424*a90b9d01SCy Schubert } else { 425*a90b9d01SCy Schubert *seg0 += 8; 426*a90b9d01SCy Schubert if (bitmap & 0xF0) { 427*a90b9d01SCy Schubert *width = 0; 428*a90b9d01SCy Schubert punct_update_legacy_bw_80((bitmap & 0xF0) >> 4, pri, 429*a90b9d01SCy Schubert seg0); 430*a90b9d01SCy Schubert } 431*a90b9d01SCy Schubert } 432*a90b9d01SCy Schubert } 433*a90b9d01SCy Schubert 434*a90b9d01SCy Schubert 435*a90b9d01SCy Schubert void punct_update_legacy_bw(u16 bitmap, u8 pri, enum oper_chan_width *width, 436*a90b9d01SCy Schubert u8 *seg0, u8 *seg1) 437*a90b9d01SCy Schubert { 438*a90b9d01SCy Schubert if (*width == CONF_OPER_CHWIDTH_80MHZ && (bitmap & 0xF)) { 439*a90b9d01SCy Schubert *width = CONF_OPER_CHWIDTH_USE_HT; 440*a90b9d01SCy Schubert punct_update_legacy_bw_80(bitmap & 0xF, pri, seg0); 441*a90b9d01SCy Schubert } 442*a90b9d01SCy Schubert 443*a90b9d01SCy Schubert if (*width == CONF_OPER_CHWIDTH_160MHZ && (bitmap & 0xFF)) { 444*a90b9d01SCy Schubert *width = CONF_OPER_CHWIDTH_80MHZ; 445*a90b9d01SCy Schubert *seg1 = 0; 446*a90b9d01SCy Schubert punct_update_legacy_bw_160(bitmap & 0xFF, pri, width, seg0); 447*a90b9d01SCy Schubert } 448*a90b9d01SCy Schubert 449*a90b9d01SCy Schubert /* TODO: 320 MHz */ 450*a90b9d01SCy Schubert } 451*a90b9d01SCy Schubert 452*a90b9d01SCy Schubert 4535b9c547cSRui Paulo int hostapd_set_freq_params(struct hostapd_freq_params *data, 4545b9c547cSRui Paulo enum hostapd_hw_mode mode, 455c1d255d3SCy Schubert int freq, int channel, int enable_edmg, 456c1d255d3SCy Schubert u8 edmg_channel, int ht_enabled, 457206b73d0SCy Schubert int vht_enabled, int he_enabled, 458*a90b9d01SCy Schubert bool eht_enabled, int sec_channel_offset, 459*a90b9d01SCy Schubert enum oper_chan_width oper_chwidth, 460*a90b9d01SCy Schubert int center_segment0, 461206b73d0SCy Schubert int center_segment1, u32 vht_caps, 462*a90b9d01SCy Schubert struct he_capabilities *he_cap, 463*a90b9d01SCy Schubert struct eht_capabilities *eht_cap, 464*a90b9d01SCy Schubert u16 punct_bitmap) 4655b9c547cSRui Paulo { 466*a90b9d01SCy Schubert enum oper_chan_width oper_chwidth_legacy; 467*a90b9d01SCy Schubert u8 seg0_legacy, seg1_legacy; 468*a90b9d01SCy Schubert 4694b72b91aSCy Schubert if (!he_cap || !he_cap->he_supported) 470206b73d0SCy Schubert he_enabled = 0; 471*a90b9d01SCy Schubert if (!eht_cap || !eht_cap->eht_supported) 472*a90b9d01SCy Schubert eht_enabled = 0; 4735b9c547cSRui Paulo os_memset(data, 0, sizeof(*data)); 4745b9c547cSRui Paulo data->mode = mode; 4755b9c547cSRui Paulo data->freq = freq; 4765b9c547cSRui Paulo data->channel = channel; 4775b9c547cSRui Paulo data->ht_enabled = ht_enabled; 4785b9c547cSRui Paulo data->vht_enabled = vht_enabled; 479206b73d0SCy Schubert data->he_enabled = he_enabled; 480*a90b9d01SCy Schubert data->eht_enabled = eht_enabled; 4815b9c547cSRui Paulo data->sec_channel_offset = sec_channel_offset; 4825b9c547cSRui Paulo data->center_freq1 = freq + sec_channel_offset * 10; 4835b9c547cSRui Paulo data->center_freq2 = 0; 484*a90b9d01SCy Schubert if (oper_chwidth == CONF_OPER_CHWIDTH_80MHZ) 4854b72b91aSCy Schubert data->bandwidth = 80; 486*a90b9d01SCy Schubert else if (oper_chwidth == CONF_OPER_CHWIDTH_160MHZ || 487*a90b9d01SCy Schubert oper_chwidth == CONF_OPER_CHWIDTH_80P80MHZ) 4884b72b91aSCy Schubert data->bandwidth = 160; 489*a90b9d01SCy Schubert else if (oper_chwidth == CONF_OPER_CHWIDTH_320MHZ) 490*a90b9d01SCy Schubert data->bandwidth = 320; 4914b72b91aSCy Schubert else if (sec_channel_offset) 4924b72b91aSCy Schubert data->bandwidth = 40; 4934b72b91aSCy Schubert else 4944b72b91aSCy Schubert data->bandwidth = 20; 4954b72b91aSCy Schubert 4965b9c547cSRui Paulo 497c1d255d3SCy Schubert hostapd_encode_edmg_chan(enable_edmg, edmg_channel, channel, 498c1d255d3SCy Schubert &data->edmg); 499c1d255d3SCy Schubert 500c1d255d3SCy Schubert if (is_6ghz_freq(freq)) { 501*a90b9d01SCy Schubert if (!data->he_enabled && !data->eht_enabled) { 502c1d255d3SCy Schubert wpa_printf(MSG_ERROR, 503*a90b9d01SCy Schubert "Can't set 6 GHz mode - HE or EHT aren't enabled"); 5045b9c547cSRui Paulo return -1; 505c1d255d3SCy Schubert } 506c1d255d3SCy Schubert 507c1d255d3SCy Schubert if (center_idx_to_bw_6ghz(channel) < 0) { 508c1d255d3SCy Schubert wpa_printf(MSG_ERROR, 509c1d255d3SCy Schubert "Invalid control channel for 6 GHz band"); 510c1d255d3SCy Schubert return -1; 511c1d255d3SCy Schubert } 512c1d255d3SCy Schubert 513c1d255d3SCy Schubert if (!center_segment0) { 514c1d255d3SCy Schubert if (center_segment1) { 515c1d255d3SCy Schubert wpa_printf(MSG_ERROR, 516c1d255d3SCy Schubert "Segment 0 center frequency isn't set"); 517c1d255d3SCy Schubert return -1; 518c1d255d3SCy Schubert } 5194b72b91aSCy Schubert if (!sec_channel_offset) 520c1d255d3SCy Schubert data->center_freq1 = data->freq; 521c1d255d3SCy Schubert } else { 522c1d255d3SCy Schubert int freq1, freq2 = 0; 523c1d255d3SCy Schubert int bw = center_idx_to_bw_6ghz(center_segment0); 524*a90b9d01SCy Schubert int opclass; 525c1d255d3SCy Schubert 526c1d255d3SCy Schubert if (bw < 0) { 527c1d255d3SCy Schubert wpa_printf(MSG_ERROR, 528c1d255d3SCy Schubert "Invalid center frequency index for 6 GHz"); 529c1d255d3SCy Schubert return -1; 530c1d255d3SCy Schubert } 531c1d255d3SCy Schubert 532*a90b9d01SCy Schubert /* The 6 GHz channel 2 uses a different operating class 533*a90b9d01SCy Schubert */ 534*a90b9d01SCy Schubert opclass = center_segment0 == 2 ? 136 : 131; 535*a90b9d01SCy Schubert freq1 = ieee80211_chan_to_freq(NULL, opclass, 536c1d255d3SCy Schubert center_segment0); 537c1d255d3SCy Schubert if (freq1 < 0) { 538c1d255d3SCy Schubert wpa_printf(MSG_ERROR, 539c1d255d3SCy Schubert "Invalid segment 0 center frequency for 6 GHz"); 540c1d255d3SCy Schubert return -1; 541c1d255d3SCy Schubert } 542c1d255d3SCy Schubert 543c1d255d3SCy Schubert if (center_segment1) { 544c1d255d3SCy Schubert if (center_idx_to_bw_6ghz(center_segment1) != 2 || 545c1d255d3SCy Schubert bw != 2) { 546c1d255d3SCy Schubert wpa_printf(MSG_ERROR, 547c1d255d3SCy Schubert "6 GHz 80+80 MHz configuration doesn't use valid 80 MHz channels"); 548c1d255d3SCy Schubert return -1; 549c1d255d3SCy Schubert } 550c1d255d3SCy Schubert 551c1d255d3SCy Schubert freq2 = ieee80211_chan_to_freq(NULL, 131, 552c1d255d3SCy Schubert center_segment1); 553c1d255d3SCy Schubert if (freq2 < 0) { 554c1d255d3SCy Schubert wpa_printf(MSG_ERROR, 555c1d255d3SCy Schubert "Invalid segment 1 center frequency for UHB"); 556c1d255d3SCy Schubert return -1; 557c1d255d3SCy Schubert } 558c1d255d3SCy Schubert } 559c1d255d3SCy Schubert 560c1d255d3SCy Schubert data->bandwidth = (1 << (u8) bw) * 20; 561c1d255d3SCy Schubert data->center_freq1 = freq1; 562c1d255d3SCy Schubert data->center_freq2 = freq2; 563c1d255d3SCy Schubert } 564c1d255d3SCy Schubert data->ht_enabled = 0; 565c1d255d3SCy Schubert data->vht_enabled = 0; 566c1d255d3SCy Schubert 567c1d255d3SCy Schubert return 0; 568c1d255d3SCy Schubert } 569c1d255d3SCy Schubert 570*a90b9d01SCy Schubert if (data->eht_enabled) switch (oper_chwidth) { 571*a90b9d01SCy Schubert case CONF_OPER_CHWIDTH_320MHZ: 572*a90b9d01SCy Schubert if (!(eht_cap->phy_cap[EHT_PHYCAP_320MHZ_IN_6GHZ_SUPPORT_IDX] & 573*a90b9d01SCy Schubert EHT_PHYCAP_320MHZ_IN_6GHZ_SUPPORT_MASK)) { 574*a90b9d01SCy Schubert wpa_printf(MSG_ERROR, 575*a90b9d01SCy Schubert "320 MHz channel width is not supported in 5 or 6 GHz"); 576*a90b9d01SCy Schubert return -1; 577*a90b9d01SCy Schubert } 578*a90b9d01SCy Schubert break; 579*a90b9d01SCy Schubert default: 580*a90b9d01SCy Schubert break; 581*a90b9d01SCy Schubert } 582*a90b9d01SCy Schubert 583*a90b9d01SCy Schubert if (data->he_enabled || data->eht_enabled) switch (oper_chwidth) { 584*a90b9d01SCy Schubert case CONF_OPER_CHWIDTH_USE_HT: 5854b72b91aSCy Schubert if (sec_channel_offset == 0) 5864b72b91aSCy Schubert break; 5874b72b91aSCy Schubert 5884b72b91aSCy Schubert if (mode == HOSTAPD_MODE_IEEE80211G) { 589*a90b9d01SCy Schubert if (he_cap && 590*a90b9d01SCy Schubert !(he_cap->phy_cap[HE_PHYCAP_CHANNEL_WIDTH_SET_IDX] & 591c1d255d3SCy Schubert HE_PHYCAP_CHANNEL_WIDTH_SET_40MHZ_IN_2G)) { 592c1d255d3SCy Schubert wpa_printf(MSG_ERROR, 593c1d255d3SCy Schubert "40 MHz channel width is not supported in 2.4 GHz"); 594c1d255d3SCy Schubert return -1; 595c1d255d3SCy Schubert } 596c1d255d3SCy Schubert break; 597c1d255d3SCy Schubert } 598c1d255d3SCy Schubert /* fall through */ 599*a90b9d01SCy Schubert case CONF_OPER_CHWIDTH_80MHZ: 600c1d255d3SCy Schubert if (mode == HOSTAPD_MODE_IEEE80211A) { 601*a90b9d01SCy Schubert if (he_cap && 602*a90b9d01SCy Schubert !(he_cap->phy_cap[HE_PHYCAP_CHANNEL_WIDTH_SET_IDX] & 603c1d255d3SCy Schubert HE_PHYCAP_CHANNEL_WIDTH_SET_40MHZ_80MHZ_IN_5G)) { 604c1d255d3SCy Schubert wpa_printf(MSG_ERROR, 605c1d255d3SCy Schubert "40/80 MHz channel width is not supported in 5/6 GHz"); 606c1d255d3SCy Schubert return -1; 607c1d255d3SCy Schubert } 608c1d255d3SCy Schubert } 609c1d255d3SCy Schubert break; 610*a90b9d01SCy Schubert case CONF_OPER_CHWIDTH_80P80MHZ: 611*a90b9d01SCy Schubert if (he_cap && 612*a90b9d01SCy Schubert !(he_cap->phy_cap[HE_PHYCAP_CHANNEL_WIDTH_SET_IDX] & 613c1d255d3SCy Schubert HE_PHYCAP_CHANNEL_WIDTH_SET_80PLUS80MHZ_IN_5G)) { 614c1d255d3SCy Schubert wpa_printf(MSG_ERROR, 615c1d255d3SCy Schubert "80+80 MHz channel width is not supported in 5/6 GHz"); 616c1d255d3SCy Schubert return -1; 617c1d255d3SCy Schubert } 618c1d255d3SCy Schubert break; 619*a90b9d01SCy Schubert case CONF_OPER_CHWIDTH_160MHZ: 620*a90b9d01SCy Schubert if (he_cap && 621*a90b9d01SCy Schubert !(he_cap->phy_cap[HE_PHYCAP_CHANNEL_WIDTH_SET_IDX] & 622c1d255d3SCy Schubert HE_PHYCAP_CHANNEL_WIDTH_SET_160MHZ_IN_5G)) { 623c1d255d3SCy Schubert wpa_printf(MSG_ERROR, 624c1d255d3SCy Schubert "160 MHz channel width is not supported in 5 / 6GHz"); 625c1d255d3SCy Schubert return -1; 626c1d255d3SCy Schubert } 627c1d255d3SCy Schubert break; 628*a90b9d01SCy Schubert default: 6295b9c547cSRui Paulo break; 630*a90b9d01SCy Schubert } else if (data->vht_enabled) switch (oper_chwidth) { 631*a90b9d01SCy Schubert case CONF_OPER_CHWIDTH_USE_HT: 632*a90b9d01SCy Schubert break; 633*a90b9d01SCy Schubert case CONF_OPER_CHWIDTH_80P80MHZ: 6345b9c547cSRui Paulo if (!(vht_caps & VHT_CAP_SUPP_CHAN_WIDTH_160_80PLUS80MHZ)) { 6355b9c547cSRui Paulo wpa_printf(MSG_ERROR, 6365b9c547cSRui Paulo "80+80 channel width is not supported!"); 6375b9c547cSRui Paulo return -1; 6385b9c547cSRui Paulo } 639c1d255d3SCy Schubert /* fall through */ 640*a90b9d01SCy Schubert case CONF_OPER_CHWIDTH_80MHZ: 641c1d255d3SCy Schubert break; 642*a90b9d01SCy Schubert case CONF_OPER_CHWIDTH_160MHZ: 643c1d255d3SCy Schubert if (!(vht_caps & (VHT_CAP_SUPP_CHAN_WIDTH_160MHZ | 644c1d255d3SCy Schubert VHT_CAP_SUPP_CHAN_WIDTH_160_80PLUS80MHZ))) { 645c1d255d3SCy Schubert wpa_printf(MSG_ERROR, 646c1d255d3SCy Schubert "160 MHz channel width is not supported!"); 6475b9c547cSRui Paulo return -1; 648c1d255d3SCy Schubert } 649c1d255d3SCy Schubert break; 650*a90b9d01SCy Schubert default: 651*a90b9d01SCy Schubert break; 652c1d255d3SCy Schubert } 653c1d255d3SCy Schubert 654*a90b9d01SCy Schubert oper_chwidth_legacy = oper_chwidth; 655*a90b9d01SCy Schubert seg0_legacy = center_segment0; 656*a90b9d01SCy Schubert seg1_legacy = center_segment1; 657*a90b9d01SCy Schubert if (punct_bitmap) 658*a90b9d01SCy Schubert punct_update_legacy_bw(punct_bitmap, channel, 659*a90b9d01SCy Schubert &oper_chwidth_legacy, 660*a90b9d01SCy Schubert &seg0_legacy, &seg1_legacy); 661*a90b9d01SCy Schubert 662*a90b9d01SCy Schubert if (data->eht_enabled || data->he_enabled || 663*a90b9d01SCy Schubert data->vht_enabled) switch (oper_chwidth) { 664*a90b9d01SCy Schubert case CONF_OPER_CHWIDTH_USE_HT: 665c1d255d3SCy Schubert if (center_segment1 || 666c1d255d3SCy Schubert (center_segment0 != 0 && 667c1d255d3SCy Schubert 5000 + center_segment0 * 5 != data->center_freq1 && 668c1d255d3SCy Schubert 2407 + center_segment0 * 5 != data->center_freq1)) { 669c1d255d3SCy Schubert wpa_printf(MSG_ERROR, 670c1d255d3SCy Schubert "20/40 MHz: center segment 0 (=%d) and center freq 1 (=%d) not in sync", 671c1d255d3SCy Schubert center_segment0, data->center_freq1); 672c1d255d3SCy Schubert return -1; 673c1d255d3SCy Schubert } 674c1d255d3SCy Schubert break; 675*a90b9d01SCy Schubert case CONF_OPER_CHWIDTH_80P80MHZ: 676c1d255d3SCy Schubert if (center_segment1 == center_segment0 + 4 || 677c1d255d3SCy Schubert center_segment1 == center_segment0 - 4) { 678c1d255d3SCy Schubert wpa_printf(MSG_ERROR, 679c1d255d3SCy Schubert "80+80 MHz: center segment 1 only 20 MHz apart"); 680c1d255d3SCy Schubert return -1; 681c1d255d3SCy Schubert } 6825b9c547cSRui Paulo data->center_freq2 = 5000 + center_segment1 * 5; 6835b9c547cSRui Paulo /* fall through */ 684*a90b9d01SCy Schubert case CONF_OPER_CHWIDTH_80MHZ: 6855b9c547cSRui Paulo data->bandwidth = 80; 686*a90b9d01SCy Schubert if (!sec_channel_offset && 687*a90b9d01SCy Schubert oper_chwidth_legacy != CONF_OPER_CHWIDTH_USE_HT) { 688c1d255d3SCy Schubert wpa_printf(MSG_ERROR, 689c1d255d3SCy Schubert "80/80+80 MHz: no second channel offset"); 6905b9c547cSRui Paulo return -1; 691c1d255d3SCy Schubert } 692*a90b9d01SCy Schubert if (oper_chwidth == CONF_OPER_CHWIDTH_80MHZ && 693*a90b9d01SCy Schubert center_segment1) { 694c1d255d3SCy Schubert wpa_printf(MSG_ERROR, 695c1d255d3SCy Schubert "80 MHz: center segment 1 configured"); 696c1d255d3SCy Schubert return -1; 697c1d255d3SCy Schubert } 698*a90b9d01SCy Schubert if (oper_chwidth == CONF_OPER_CHWIDTH_80P80MHZ && 699*a90b9d01SCy Schubert !center_segment1) { 700c1d255d3SCy Schubert wpa_printf(MSG_ERROR, 701c1d255d3SCy Schubert "80+80 MHz: center segment 1 not configured"); 702c1d255d3SCy Schubert return -1; 703c1d255d3SCy Schubert } 704325151a3SRui Paulo if (!center_segment0) { 705325151a3SRui Paulo if (channel <= 48) 706325151a3SRui Paulo center_segment0 = 42; 707325151a3SRui Paulo else if (channel <= 64) 708325151a3SRui Paulo center_segment0 = 58; 709325151a3SRui Paulo else if (channel <= 112) 710325151a3SRui Paulo center_segment0 = 106; 711325151a3SRui Paulo else if (channel <= 128) 712325151a3SRui Paulo center_segment0 = 122; 713325151a3SRui Paulo else if (channel <= 144) 714325151a3SRui Paulo center_segment0 = 138; 715325151a3SRui Paulo else if (channel <= 161) 716325151a3SRui Paulo center_segment0 = 155; 717c1d255d3SCy Schubert else if (channel <= 177) 718c1d255d3SCy Schubert center_segment0 = 171; 7195b9c547cSRui Paulo data->center_freq1 = 5000 + center_segment0 * 5; 720325151a3SRui Paulo } else { 721325151a3SRui Paulo /* 722325151a3SRui Paulo * Note: HT/VHT config and params are coupled. Check if 723325151a3SRui Paulo * HT40 channel band is in VHT80 Pri channel band 724325151a3SRui Paulo * configuration. 725325151a3SRui Paulo */ 726325151a3SRui Paulo if (center_segment0 == channel + 6 || 727325151a3SRui Paulo center_segment0 == channel + 2 || 728325151a3SRui Paulo center_segment0 == channel - 2 || 729325151a3SRui Paulo center_segment0 == channel - 6) 730325151a3SRui Paulo data->center_freq1 = 5000 + center_segment0 * 5; 731c1d255d3SCy Schubert else { 732c1d255d3SCy Schubert wpa_printf(MSG_ERROR, 733c1d255d3SCy Schubert "Wrong coupling between HT and VHT/HE channel setting"); 734325151a3SRui Paulo return -1; 735325151a3SRui Paulo } 736c1d255d3SCy Schubert } 7375b9c547cSRui Paulo break; 738*a90b9d01SCy Schubert case CONF_OPER_CHWIDTH_160MHZ: 7395b9c547cSRui Paulo data->bandwidth = 160; 740c1d255d3SCy Schubert if (center_segment1) { 7415b9c547cSRui Paulo wpa_printf(MSG_ERROR, 742c1d255d3SCy Schubert "160 MHz: center segment 1 should not be set"); 7435b9c547cSRui Paulo return -1; 7445b9c547cSRui Paulo } 745*a90b9d01SCy Schubert if (!sec_channel_offset && 746*a90b9d01SCy Schubert oper_chwidth_legacy != CONF_OPER_CHWIDTH_USE_HT) { 747c1d255d3SCy Schubert wpa_printf(MSG_ERROR, 748c1d255d3SCy Schubert "160 MHz: second channel offset not set"); 7495b9c547cSRui Paulo return -1; 750c1d255d3SCy Schubert } 751325151a3SRui Paulo /* 752325151a3SRui Paulo * Note: HT/VHT config and params are coupled. Check if 753325151a3SRui Paulo * HT40 channel band is in VHT160 channel band configuration. 754325151a3SRui Paulo */ 755325151a3SRui Paulo if (center_segment0 == channel + 14 || 756325151a3SRui Paulo center_segment0 == channel + 10 || 757325151a3SRui Paulo center_segment0 == channel + 6 || 758325151a3SRui Paulo center_segment0 == channel + 2 || 759325151a3SRui Paulo center_segment0 == channel - 2 || 760325151a3SRui Paulo center_segment0 == channel - 6 || 761325151a3SRui Paulo center_segment0 == channel - 10 || 762325151a3SRui Paulo center_segment0 == channel - 14) 7635b9c547cSRui Paulo data->center_freq1 = 5000 + center_segment0 * 5; 764c1d255d3SCy Schubert else { 765c1d255d3SCy Schubert wpa_printf(MSG_ERROR, 766c1d255d3SCy Schubert "160 MHz: HT40 channel band is not in 160 MHz band"); 767325151a3SRui Paulo return -1; 768c1d255d3SCy Schubert } 7695b9c547cSRui Paulo break; 770*a90b9d01SCy Schubert case CONF_OPER_CHWIDTH_320MHZ: 771*a90b9d01SCy Schubert data->bandwidth = 320; 772*a90b9d01SCy Schubert if (!data->eht_enabled || !is_6ghz_freq(freq)) { 773*a90b9d01SCy Schubert wpa_printf(MSG_ERROR, 774*a90b9d01SCy Schubert "320 MHz: EHT not enabled or not a 6 GHz channel"); 775*a90b9d01SCy Schubert return -1; 776*a90b9d01SCy Schubert } 777*a90b9d01SCy Schubert if (center_segment1) { 778*a90b9d01SCy Schubert wpa_printf(MSG_ERROR, 779*a90b9d01SCy Schubert "320 MHz: center segment 1 should not be set"); 780*a90b9d01SCy Schubert return -1; 781*a90b9d01SCy Schubert } 782*a90b9d01SCy Schubert if (center_segment0 == channel + 30 || 783*a90b9d01SCy Schubert center_segment0 == channel + 26 || 784*a90b9d01SCy Schubert center_segment0 == channel + 22 || 785*a90b9d01SCy Schubert center_segment0 == channel + 18 || 786*a90b9d01SCy Schubert center_segment0 == channel + 14 || 787*a90b9d01SCy Schubert center_segment0 == channel + 10 || 788*a90b9d01SCy Schubert center_segment0 == channel + 6 || 789*a90b9d01SCy Schubert center_segment0 == channel + 2 || 790*a90b9d01SCy Schubert center_segment0 == channel - 2 || 791*a90b9d01SCy Schubert center_segment0 == channel - 6 || 792*a90b9d01SCy Schubert center_segment0 == channel - 10 || 793*a90b9d01SCy Schubert center_segment0 == channel - 14 || 794*a90b9d01SCy Schubert center_segment0 == channel - 18 || 795*a90b9d01SCy Schubert center_segment0 == channel - 22 || 796*a90b9d01SCy Schubert center_segment0 == channel - 26 || 797*a90b9d01SCy Schubert center_segment0 == channel - 30) 798*a90b9d01SCy Schubert data->center_freq1 = 5000 + center_segment0 * 5; 799*a90b9d01SCy Schubert else { 800*a90b9d01SCy Schubert wpa_printf(MSG_ERROR, 801*a90b9d01SCy Schubert "320 MHz: wrong center segment 0"); 802*a90b9d01SCy Schubert return -1; 803*a90b9d01SCy Schubert } 804*a90b9d01SCy Schubert break; 805*a90b9d01SCy Schubert default: 806*a90b9d01SCy Schubert break; 8075b9c547cSRui Paulo } 8085b9c547cSRui Paulo 8095b9c547cSRui Paulo return 0; 8105b9c547cSRui Paulo } 81185732ac8SCy Schubert 81285732ac8SCy Schubert 81385732ac8SCy Schubert void set_disable_ht40(struct ieee80211_ht_capabilities *htcaps, 81485732ac8SCy Schubert int disabled) 81585732ac8SCy Schubert { 81685732ac8SCy Schubert /* Masking these out disables HT40 */ 81785732ac8SCy Schubert le16 msk = host_to_le16(HT_CAP_INFO_SUPP_CHANNEL_WIDTH_SET | 81885732ac8SCy Schubert HT_CAP_INFO_SHORT_GI40MHZ); 81985732ac8SCy Schubert 82085732ac8SCy Schubert if (disabled) 82185732ac8SCy Schubert htcaps->ht_capabilities_info &= ~msk; 82285732ac8SCy Schubert else 82385732ac8SCy Schubert htcaps->ht_capabilities_info |= msk; 82485732ac8SCy Schubert } 82585732ac8SCy Schubert 82685732ac8SCy Schubert 82785732ac8SCy Schubert #ifdef CONFIG_IEEE80211AC 82885732ac8SCy Schubert 82985732ac8SCy Schubert static int _ieee80211ac_cap_check(u32 hw, u32 conf, u32 cap, 83085732ac8SCy Schubert const char *name) 83185732ac8SCy Schubert { 83285732ac8SCy Schubert u32 req_cap = conf & cap; 83385732ac8SCy Schubert 83485732ac8SCy Schubert /* 83585732ac8SCy Schubert * Make sure we support all requested capabilities. 83685732ac8SCy Schubert * NOTE: We assume that 'cap' represents a capability mask, 83785732ac8SCy Schubert * not a discrete value. 83885732ac8SCy Schubert */ 83985732ac8SCy Schubert if ((hw & req_cap) != req_cap) { 84085732ac8SCy Schubert wpa_printf(MSG_ERROR, 84185732ac8SCy Schubert "Driver does not support configured VHT capability [%s]", 84285732ac8SCy Schubert name); 84385732ac8SCy Schubert return 0; 84485732ac8SCy Schubert } 84585732ac8SCy Schubert return 1; 84685732ac8SCy Schubert } 84785732ac8SCy Schubert 84885732ac8SCy Schubert 84985732ac8SCy Schubert static int ieee80211ac_cap_check_max(u32 hw, u32 conf, u32 mask, 85085732ac8SCy Schubert unsigned int shift, 85185732ac8SCy Schubert const char *name) 85285732ac8SCy Schubert { 85385732ac8SCy Schubert u32 hw_max = hw & mask; 85485732ac8SCy Schubert u32 conf_val = conf & mask; 85585732ac8SCy Schubert 85685732ac8SCy Schubert if (conf_val > hw_max) { 85785732ac8SCy Schubert wpa_printf(MSG_ERROR, 85885732ac8SCy Schubert "Configured VHT capability [%s] exceeds max value supported by the driver (%d > %d)", 85985732ac8SCy Schubert name, conf_val >> shift, hw_max >> shift); 86085732ac8SCy Schubert return 0; 86185732ac8SCy Schubert } 86285732ac8SCy Schubert return 1; 86385732ac8SCy Schubert } 86485732ac8SCy Schubert 86585732ac8SCy Schubert 86685732ac8SCy Schubert int ieee80211ac_cap_check(u32 hw, u32 conf) 86785732ac8SCy Schubert { 86885732ac8SCy Schubert #define VHT_CAP_CHECK(cap) \ 86985732ac8SCy Schubert do { \ 87085732ac8SCy Schubert if (!_ieee80211ac_cap_check(hw, conf, cap, #cap)) \ 87185732ac8SCy Schubert return 0; \ 87285732ac8SCy Schubert } while (0) 87385732ac8SCy Schubert 87485732ac8SCy Schubert #define VHT_CAP_CHECK_MAX(cap) \ 87585732ac8SCy Schubert do { \ 87685732ac8SCy Schubert if (!ieee80211ac_cap_check_max(hw, conf, cap, cap ## _SHIFT, \ 87785732ac8SCy Schubert #cap)) \ 87885732ac8SCy Schubert return 0; \ 87985732ac8SCy Schubert } while (0) 88085732ac8SCy Schubert 88185732ac8SCy Schubert VHT_CAP_CHECK_MAX(VHT_CAP_MAX_MPDU_LENGTH_MASK); 88285732ac8SCy Schubert VHT_CAP_CHECK_MAX(VHT_CAP_SUPP_CHAN_WIDTH_MASK); 88385732ac8SCy Schubert VHT_CAP_CHECK(VHT_CAP_RXLDPC); 88485732ac8SCy Schubert VHT_CAP_CHECK(VHT_CAP_SHORT_GI_80); 88585732ac8SCy Schubert VHT_CAP_CHECK(VHT_CAP_SHORT_GI_160); 88685732ac8SCy Schubert VHT_CAP_CHECK(VHT_CAP_TXSTBC); 88785732ac8SCy Schubert VHT_CAP_CHECK_MAX(VHT_CAP_RXSTBC_MASK); 88885732ac8SCy Schubert VHT_CAP_CHECK(VHT_CAP_SU_BEAMFORMER_CAPABLE); 88985732ac8SCy Schubert VHT_CAP_CHECK(VHT_CAP_SU_BEAMFORMEE_CAPABLE); 89085732ac8SCy Schubert VHT_CAP_CHECK_MAX(VHT_CAP_BEAMFORMEE_STS_MAX); 89185732ac8SCy Schubert VHT_CAP_CHECK_MAX(VHT_CAP_SOUNDING_DIMENSION_MAX); 89285732ac8SCy Schubert VHT_CAP_CHECK(VHT_CAP_MU_BEAMFORMER_CAPABLE); 89385732ac8SCy Schubert VHT_CAP_CHECK(VHT_CAP_MU_BEAMFORMEE_CAPABLE); 89485732ac8SCy Schubert VHT_CAP_CHECK(VHT_CAP_VHT_TXOP_PS); 89585732ac8SCy Schubert VHT_CAP_CHECK(VHT_CAP_HTC_VHT); 89685732ac8SCy Schubert VHT_CAP_CHECK_MAX(VHT_CAP_MAX_A_MPDU_LENGTH_EXPONENT_MAX); 89785732ac8SCy Schubert VHT_CAP_CHECK(VHT_CAP_VHT_LINK_ADAPTATION_VHT_UNSOL_MFB); 89885732ac8SCy Schubert VHT_CAP_CHECK(VHT_CAP_VHT_LINK_ADAPTATION_VHT_MRQ_MFB); 89985732ac8SCy Schubert VHT_CAP_CHECK(VHT_CAP_RX_ANTENNA_PATTERN); 90085732ac8SCy Schubert VHT_CAP_CHECK(VHT_CAP_TX_ANTENNA_PATTERN); 90185732ac8SCy Schubert 90285732ac8SCy Schubert #undef VHT_CAP_CHECK 90385732ac8SCy Schubert #undef VHT_CAP_CHECK_MAX 90485732ac8SCy Schubert 90585732ac8SCy Schubert return 1; 90685732ac8SCy Schubert } 90785732ac8SCy Schubert 90885732ac8SCy Schubert #endif /* CONFIG_IEEE80211AC */ 9094bc52338SCy Schubert 9104bc52338SCy Schubert 9114bc52338SCy Schubert u32 num_chan_to_bw(int num_chans) 9124bc52338SCy Schubert { 9134bc52338SCy Schubert switch (num_chans) { 9144bc52338SCy Schubert case 2: 9154bc52338SCy Schubert case 4: 9164bc52338SCy Schubert case 8: 917*a90b9d01SCy Schubert case 16: 9184bc52338SCy Schubert return num_chans * 20; 9194bc52338SCy Schubert default: 9204bc52338SCy Schubert return 20; 9214bc52338SCy Schubert } 9224bc52338SCy Schubert } 9234bc52338SCy Schubert 9244bc52338SCy Schubert 9254bc52338SCy Schubert /* check if BW is applicable for channel */ 9264bc52338SCy Schubert int chan_bw_allowed(const struct hostapd_channel_data *chan, u32 bw, 9274bc52338SCy Schubert int ht40_plus, int pri) 9284bc52338SCy Schubert { 9294bc52338SCy Schubert u32 bw_mask; 9304bc52338SCy Schubert 9314bc52338SCy Schubert switch (bw) { 9324bc52338SCy Schubert case 20: 9334bc52338SCy Schubert bw_mask = HOSTAPD_CHAN_WIDTH_20; 9344bc52338SCy Schubert break; 9354bc52338SCy Schubert case 40: 9364bc52338SCy Schubert /* HT 40 MHz support declared only for primary channel, 9374bc52338SCy Schubert * just skip 40 MHz secondary checking */ 9384bc52338SCy Schubert if (pri && ht40_plus) 9394bc52338SCy Schubert bw_mask = HOSTAPD_CHAN_WIDTH_40P; 9404bc52338SCy Schubert else if (pri && !ht40_plus) 9414bc52338SCy Schubert bw_mask = HOSTAPD_CHAN_WIDTH_40M; 9424bc52338SCy Schubert else 9434bc52338SCy Schubert bw_mask = 0; 9444bc52338SCy Schubert break; 9454bc52338SCy Schubert case 80: 9464bc52338SCy Schubert bw_mask = HOSTAPD_CHAN_WIDTH_80; 9474bc52338SCy Schubert break; 9484bc52338SCy Schubert case 160: 9494bc52338SCy Schubert bw_mask = HOSTAPD_CHAN_WIDTH_160; 9504bc52338SCy Schubert break; 951*a90b9d01SCy Schubert case 320: 952*a90b9d01SCy Schubert bw_mask = HOSTAPD_CHAN_WIDTH_320; 953*a90b9d01SCy Schubert break; 9544bc52338SCy Schubert default: 9554bc52338SCy Schubert bw_mask = 0; 9564bc52338SCy Schubert break; 9574bc52338SCy Schubert } 9584bc52338SCy Schubert 9594bc52338SCy Schubert return (chan->allowed_bw & bw_mask) == bw_mask; 9604bc52338SCy Schubert } 9614bc52338SCy Schubert 9624bc52338SCy Schubert 9634bc52338SCy Schubert /* check if channel is allowed to be used as primary */ 9644bc52338SCy Schubert int chan_pri_allowed(const struct hostapd_channel_data *chan) 9654bc52338SCy Schubert { 9664bc52338SCy Schubert return !(chan->flag & HOSTAPD_CHAN_DISABLED) && 9674bc52338SCy Schubert (chan->allowed_bw & HOSTAPD_CHAN_WIDTH_20); 9684bc52338SCy Schubert } 969*a90b9d01SCy Schubert 970*a90b9d01SCy Schubert 971*a90b9d01SCy Schubert /* IEEE P802.11be/D3.0, Table 36-30 - Definition of the Punctured Channel 972*a90b9d01SCy Schubert * Information field in the U-SIG for an EHT MU PPDU using non-OFDMA 973*a90b9d01SCy Schubert * transmissions */ 974*a90b9d01SCy Schubert static const u16 punct_bitmap_80[] = { 0xF, 0xE, 0xD, 0xB, 0x7 }; 975*a90b9d01SCy Schubert static const u16 punct_bitmap_160[] = { 976*a90b9d01SCy Schubert 0xFF, 0xFE, 0xFD, 0xFB, 0xF7, 0xEF, 0xDF, 0xBF, 977*a90b9d01SCy Schubert 0x7F, 0xFC, 0xF3, 0xCF, 0x3F 978*a90b9d01SCy Schubert }; 979*a90b9d01SCy Schubert static const u16 punct_bitmap_320[] = { 980*a90b9d01SCy Schubert 0xFFFF, 0xFFFC, 0xFFF3, 0xFFCF, 0xFF3F, 0xFCFF, 0xF3FF, 0xCFFF, 981*a90b9d01SCy Schubert 0x3FFF, 0xFFF0, 0xFF0F, 0xF0FF, 0x0FFF, 0xFFC0, 0xFF30, 0xFCF0, 982*a90b9d01SCy Schubert 0xF3F0, 0xCFF0, 0x3FF0, 0x0FFC, 0x0FF3, 0x0FCF, 0x0F3F, 0x0CFF, 983*a90b9d01SCy Schubert 0x03FF 984*a90b9d01SCy Schubert }; 985*a90b9d01SCy Schubert 986*a90b9d01SCy Schubert 987*a90b9d01SCy Schubert bool is_punct_bitmap_valid(u16 bw, u16 pri_ch_bit_pos, u16 punct_bitmap) 988*a90b9d01SCy Schubert { 989*a90b9d01SCy Schubert u8 i, count; 990*a90b9d01SCy Schubert u16 bitmap; 991*a90b9d01SCy Schubert const u16 *valid_bitmaps; 992*a90b9d01SCy Schubert 993*a90b9d01SCy Schubert if (!punct_bitmap) /* All channels active */ 994*a90b9d01SCy Schubert return true; 995*a90b9d01SCy Schubert 996*a90b9d01SCy Schubert bitmap = ~punct_bitmap; 997*a90b9d01SCy Schubert 998*a90b9d01SCy Schubert switch (bw) { 999*a90b9d01SCy Schubert case 80: 1000*a90b9d01SCy Schubert bitmap &= 0xF; 1001*a90b9d01SCy Schubert valid_bitmaps = punct_bitmap_80; 1002*a90b9d01SCy Schubert count = ARRAY_SIZE(punct_bitmap_80); 1003*a90b9d01SCy Schubert break; 1004*a90b9d01SCy Schubert 1005*a90b9d01SCy Schubert case 160: 1006*a90b9d01SCy Schubert bitmap &= 0xFF; 1007*a90b9d01SCy Schubert valid_bitmaps = punct_bitmap_160; 1008*a90b9d01SCy Schubert count = ARRAY_SIZE(punct_bitmap_160); 1009*a90b9d01SCy Schubert break; 1010*a90b9d01SCy Schubert 1011*a90b9d01SCy Schubert case 320: 1012*a90b9d01SCy Schubert bitmap &= 0xFFFF; 1013*a90b9d01SCy Schubert valid_bitmaps = punct_bitmap_320; 1014*a90b9d01SCy Schubert count = ARRAY_SIZE(punct_bitmap_320); 1015*a90b9d01SCy Schubert break; 1016*a90b9d01SCy Schubert 1017*a90b9d01SCy Schubert default: 1018*a90b9d01SCy Schubert return false; 1019*a90b9d01SCy Schubert } 1020*a90b9d01SCy Schubert 1021*a90b9d01SCy Schubert if (!bitmap) /* No channel active */ 1022*a90b9d01SCy Schubert return false; 1023*a90b9d01SCy Schubert 1024*a90b9d01SCy Schubert if (!(bitmap & BIT(pri_ch_bit_pos))) { 1025*a90b9d01SCy Schubert wpa_printf(MSG_DEBUG, "Primary channel cannot be punctured"); 1026*a90b9d01SCy Schubert return false; 1027*a90b9d01SCy Schubert } 1028*a90b9d01SCy Schubert 1029*a90b9d01SCy Schubert for (i = 0; i < count; i++) { 1030*a90b9d01SCy Schubert if (valid_bitmaps[i] == bitmap) 1031*a90b9d01SCy Schubert return true; 1032*a90b9d01SCy Schubert } 1033*a90b9d01SCy Schubert 1034*a90b9d01SCy Schubert return false; 1035*a90b9d01SCy Schubert } 1036