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@@ -0,0 +1,154 @@
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+#!/usr/bin/env ucode
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+'use strict';
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+import { readfile, writefile, realpath, glob, basename, unlink, open, rename } from "fs";
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+import { is_equal } from "/usr/share/hostap/common.uc";
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+let nl = require("nl80211");
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+
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+let board_file = "/etc/board.json";
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+let prev_board_data = json(readfile(board_file));
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+let board_data = json(readfile(board_file));
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+
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+function phy_idx(name) {
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+ return +rtrim(readfile(`/sys/class/ieee80211/${name}/index`));
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+}
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+
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+function phy_path(name) {
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+ let devpath = realpath(`/sys/class/ieee80211/${name}/device`);
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+
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+ devpath = replace(devpath, /^\/sys\/devices\//, "");
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+ if (match(devpath, /^platform\/.*\/pci/))
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+ devpath = replace(devpath, /^platform\//, "");
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+ let dev_phys = map(glob(`/sys/class/ieee80211/${name}/device/ieee80211/*`), basename);
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+ sort(dev_phys, (a, b) => phy_idx(a) - phy_idx(b));
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+
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+ let ofs = index(dev_phys, name);
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+ if (ofs > 0)
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+ devpath += `+${ofs}`;
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+
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+ return devpath;
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+}
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+
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+function cleanup() {
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+ let wlan = board_data.wlan;
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+
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+ for (let name in wlan)
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+ if (substr(name, 0, 3) == "phy")
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+ delete wlan[name];
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+ else
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+ delete wlan[name].info;
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+}
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+
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+function wiphy_get_entry(phy, path) {
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+ let wlan = board_data.wlan;
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+
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+ for (let name in wlan)
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+ if (wlan[name].path == path)
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+ return wlan[name];
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+
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+ wlan[phy] = {
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+ path: path
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+ };
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+
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+ return wlan[phy];
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+}
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+
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+function wiphy_detect() {
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+ let phys = nl.request(nl.const.NL80211_CMD_GET_WIPHY, nl.const.NLM_F_DUMP, { split_wiphy_dump: true });
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+ if (!phys)
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+ return;
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+
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+ for (let phy in phys) {
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+ let name = phy.wiphy_name;
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+ let path = phy_path(name);
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+ let info = {
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+ antenna_rx: phy.wiphy_antenna_avail_rx,
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+ antenna_tx: phy.wiphy_antenna_avail_tx,
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+ bands: {},
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+ };
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+
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+ let bands = info.bands;
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+ for (let band in phy.wiphy_bands) {
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+ if (!band || !band.freqs)
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+ continue;
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+ let freq = band.freqs[0].freq;
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+ let band_info = {};
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+ let band_name;
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+ if (freq > 50000)
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+ band_name = "60G";
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+ else if (freq > 5900)
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+ band_name = "6G";
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+ else if (freq > 4000)
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+ band_name = "5G";
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+ else
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+ band_name = "2G";
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+ bands[band_name] = band_info;
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+ if (band.ht_capa > 0)
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+ band_info.ht = true;
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+ if (band.vht_capa > 0)
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+ band_info.vht = true;
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+ let he_phy_cap = 0;
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+
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+ for (let ift in band.iftype_data) {
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+ if (!ift.he_cap_phy)
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+ continue;
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+
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+ band_info.he = true;
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+ he_phy_cap |= ift.he_cap_phy[0];
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+ /* TODO: EHT */
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+ }
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+
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+ if (band_name != "2G" &&
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+ (he_phy_cap & 0x18) || ((band.vht_capa >> 2) & 0x3))
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+ band_info.max_width = 160;
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+ else if (band_name != "2G" &&
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+ (he_phy_cap & 4) || band.vht_capa > 0)
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+ band_info.max_width = 80;
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+ else if ((band.ht_capa & 0x2) || (he_phy_cap & 0x2))
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+ band_info.max_width = 40;
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+ else
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+ band_info.max_width = 20;
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+
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+ let modes = band_info.modes = [ "NOHT" ];
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+ if (band_info.ht)
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+ push(modes, "HT20");
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+ if (band_info.vht)
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+ push(modes, "VHT20");
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+ if (band_info.he)
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+ push(modes, "HE20");
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+ if (band.ht_capa & 0x2) {
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+ push(modes, "HT40");
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+ if (band_info.vht)
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+ push(modes, "VHT40")
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+ }
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+ if (he_phy_cap & 0x2)
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+ push(modes, "HE40");
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+
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+ if (band_name == "2G")
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+ continue;
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+ if (band_info.vht)
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+ push(modes, "VHT80");
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+ if (he_phy_cap & 4)
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+ push(modes, "HE80");
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+ if ((band.vht_capa >> 2) & 0x3)
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+ push(modes, "VHT160");
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+ if (he_phy_cap & 0x18)
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+ push(modes, "HE160");
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+ }
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+
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+ let entry = wiphy_get_entry(name, path);
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+ entry.info = info;
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+ }
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+}
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+
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+cleanup();
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+wiphy_detect();
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+if (!is_equal(prev_board_data, board_data)) {
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+ let new_file = board_file + ".new";
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+ unlink(new_file);
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+ let f = open(new_file, "wx");
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+ if (!f)
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+ exit(1);
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+ f.write(sprintf("%.J\n", board_data));
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+ f.close();
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+ rename(new_file, board_file);
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+}
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