mirror of
https://github.com/Telecominfraproject/ols-ucentral-schema.git
synced 2025-10-30 01:32:26 +00:00
171 lines
4.3 KiB
Ucode
171 lines
4.3 KiB
Ucode
let fs = require('fs');
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let uci = require("uci");
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let cursor = uci ? uci.cursor() : null;
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let nl = require("nl80211");
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let def = nl.const;
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function freq2channel(freq) {
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if (freq == 2484)
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return 14;
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else if (freq < 2484)
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return (freq - 2407) / 5;
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else if (freq >= 4910 && freq <= 4980)
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return (freq - 4000) / 5;
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else if(freq >= 56160 + 2160 * 1 && freq <= 56160 + 2160 * 6)
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return (freq - 56160) / 2160;
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else if (freq >= 5955 && freq <= 7115)
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return (freq - 5950) / 5;
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else
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return (freq - 5000) / 5;
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}
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function phy_get(wdev) {
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let res = nl.request(def.NL80211_CMD_GET_WIPHY, def.NLM_F_DUMP, { split_wiphy_dump: true });
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if (res === false)
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warn("Unable to lookup phys: " + nl.error() + "\n");
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return res;
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}
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let paths = {};
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function add_path(path, phy, index) {
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if (!phy)
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return;
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phy = fs.basename(phy);
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paths[phy] = path;
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if (index)
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paths[phy] += '+' + index;
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}
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function lookup_paths() {
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let wireless = cursor.get_all('wireless');
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for (let k, section in wireless) {
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if (section['.type'] != 'wifi-device' || !section.path)
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continue;
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let phys = fs.glob(sprintf('/sys/devices/%s/ieee80211/phy*', section.path));
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if (!length(phys))
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phys = fs.glob(sprintf('/sys/devices/platform/%s/ieee80211/phy*', section.path));
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if (!length(phys))
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continue;
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sort(phys);
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let index = 0;
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for (let phy in phys)
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add_path(section.path, phy, index++);
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}
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}
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function get_hwmon(phy) {
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let hwmon = fs.glob(sprintf('/sys/class/ieee80211/%s/hwmon*/temp*_input', phy));
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if (!hwmon)
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return 0;
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let file = fs.open(hwmon[0], 'r');
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if (!file)
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return 0;
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let temp = +file.read('all');
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file.close();
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return temp;
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}
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function lookup_phys() {
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lookup_paths();
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let phys = phy_get();
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let ret = {};
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for (let phy in phys) {
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let phyname = 'phy' + phy.wiphy;
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let path = paths[phyname];
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if (!path)
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continue;
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let p = {};
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let temp = get_hwmon('phy' + phy.wiphy);
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if (temp)
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p.temperature = temp / 1000;
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p.tx_ant = phy.wiphy_antenna_tx;
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p.rx_ant = phy.wiphy_antenna_rx;
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p.tx_ant_avail = phy.wiphy_antenna_avail_tx;
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p.rx_ant_avail = phy.wiphy_antenna_avail_rx;
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p.frequencies = [];
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p.channels = [];
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p.dfs_channels = [];
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p.htmode = [];
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p.band = [];
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for (let band in phy.wiphy_bands) {
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for (let freq in band?.freqs) {
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if (freq.disabled)
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continue;
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push(p.frequencies, freq.freq);
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push(p.channels, freq2channel(freq.freq));
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if (freq.radar)
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push(p.dfs_channels, freq2channel(freq.freq));
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if (freq.freq >= 6000)
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push(p.band, '6G');
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else if (freq.freq <= 2484)
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push(p.band, '2G');
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else if (freq.freq >= 5160 && freq.freq <= 5885)
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push(p.band, '5G');
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}
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if (band?.ht_capa) {
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p.ht_capa = band.ht_capa;
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push(p.htmode, 'HT20');
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if (band.ht_capa & 0x2)
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push(p.htmode, 'HT40');
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}
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if (band?.vht_capa) {
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p.vht_capa = band.vht_capa;
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push(p.htmode, 'VHT20', 'VHT40', 'VHT80');
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let chwidth = (band?.vht_capa >> 2) & 0x3;
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switch(chwidth) {
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case 2:
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push(p.htmode, 'VHT80+80');
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/* fall through */
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case 1:
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push(p.htmode, 'VHT160');
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}
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}
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for (let iftype in band?.iftype_data) {
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if (iftype.iftypes?.ap) {
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p.he_phy_capa = iftype?.he_cap_phy;
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p.he_mac_capa = iftype?.he_cap_mac;
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push(p.htmode, 'HE20');
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let chwidth = (iftype?.he_cap_phy[0] || 0) & 0xff;
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if (chwidth & 0x2 || chwidth & 0x4)
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push(p.htmode, 'HE40');
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if (chwidth & 0x4)
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push(p.htmode, 'HE80');
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if (chwidth & 0x8 || chwidth & 0x10)
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push(p.htmode, 'HE160');
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if (chwidth & 0x10)
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push(p.htmode, 'HE80+80');
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if (iftype.eht_cap_phy) {
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p.eht_phy_capa = iftype?.eht_cap_phy;
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p.eht_mac_capa = iftype?.eht_cap_mac;
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push(p.htmode, 'EHT20');
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if (chwidth & 0x2 || chwidth & 0x4)
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push(p.htmode, 'EHT40');
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if (chwidth & 0x4)
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push(p.htmode, 'EHT80');
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if (chwidth & 0x8 || chwidth & 0x10)
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push(p.htmode, 'EHT160');
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if (chwidth & 0x10)
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push(p.htmode, 'EHT80+80');
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if ('6G' in p.band)
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push(p.htmode, 'EHT320');
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}
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}
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}
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}
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p.band = uniq(p.band);
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if (!length(p.dfs_channels))
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delete p.dfs_channels;
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ret[path] = p;
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}
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return ret;
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}
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return lookup_phys();
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