363 lines
11 KiB
JavaScript
363 lines
11 KiB
JavaScript
function parseNetworkStatus(raw) {
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var parts = String(raw || "disconnected\t\t\t").replace(/\r?\n+$/, "").split("\t")
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return {
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kind: parts[0] || "disconnected",
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label: parts[1] || "",
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signalStrength: parts[2] ? parseInt(parts[2], 10) : -1,
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frequency: parts[3] || ""
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}
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}
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function wifiIconFor(strength) {
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var icons = ["", "", "", "", ""]
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var index = Math.max(0, Math.min(4, Math.ceil(strength / 20) - 1))
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return icons[index]
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}
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function connectionIcon(kind, signalStrength) {
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if (kind === "wifi") return wifiIconFor(signalStrength)
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if (kind === "ethernet") return ""
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return ""
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}
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function formatHeaderSpeed(mbps) {
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var v = parseInt(mbps, 10)
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if (!v || v < 0) return ""
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if (v >= 1000) return (v / 1000).toFixed(v % 1000 === 0 ? 0 : 1) + "gbit"
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return v + "mbit"
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}
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function formatHeaderFreq(mhz) {
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var v = parseFloat(mhz)
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if (!v) return ""
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if (v >= 2400 && v < 2500) return "2.4ghz"
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if (v >= 4900 && v < 5925) return "5ghz"
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if (v >= 5925 && v < 7125) return "6ghz"
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if (v >= 57000 && v < 71000) return "60ghz"
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var ghz = v / 1000
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return ghz.toFixed(ghz % 1 === 0 ? 0 : 1) + "ghz"
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}
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// `hideWifiBand` is set when the band toggle is on screen: the band is already
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// spelled out there, so repeating it in "York (5ghz)" is noise. A single-band
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// network hides the toggle, and then the header stays the only place it shows.
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function headerDetail(info, hideWifiBand) {
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var value = info || {}
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if (value.type === "ethernet") return formatHeaderSpeed(value.speed || "")
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if (value.type === "wifi") return hideWifiBand ? "" : formatHeaderFreq(value.freq || "")
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return ""
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}
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function bandLabel(band) {
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if (band === "auto") return "Auto"
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if (!band) return ""
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return band + "ghz"
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}
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// Under Automatic the pills are hidden, so the header carries the live band
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// instead -- "WI-FI BAND: 2.4GHZ". Once a band is pinned the pills are on
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// screen and say it themselves, so the header drops back to a plain label.
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function bandSectionTitle(selected, current) {
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if (selected !== "auto") return "WI-FI BAND"
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var label = bandLabel(current)
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if (label === "") return "WI-FI BAND"
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return "WI-FI BAND: " + label.toUpperCase()
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}
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function bandTooltip(band) {
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if (band === "auto") return "Let Wi-Fi pick the band"
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if (!band) return ""
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return "Stay on " + bandLabel(band)
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}
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function parseBandStatus(raw) {
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var next = parseKeyValue(raw)
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var tokens = String(next.available || "").split(" ")
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var available = []
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for (var i = 0; i < tokens.length; i++) {
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if (tokens[i] !== "") available.push(tokens[i])
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}
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return {
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band: next.band || "",
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selected: next.selected || "auto",
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available: available
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}
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}
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function decodeIwSsid(value) {
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var raw = String(value || "")
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try {
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var encoded = ""
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for (var i = 0; i < raw.length; i++) {
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if (raw[i] === "\\" && raw[i + 1] === "x" && /^[0-9a-f]{2}$/i.test(raw.substring(i + 2, i + 4))) {
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var hex = raw.substring(i + 2, i + 4)
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var byte = parseInt(hex, 16)
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encoded += byte < 32 || byte === 127 ? encodeURIComponent(raw.substring(i, i + 4)) : "%" + hex
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i += 3
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} else {
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encoded += encodeURIComponent(raw[i])
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}
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}
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return decodeURIComponent(encoded)
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} catch (error) {
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return raw
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}
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}
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function parseKeyValue(raw) {
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var next = {}
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var lines = String(raw || "").split("\n")
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for (var i = 0; i < lines.length; i++) {
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var line = lines[i]
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if (!line) continue
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var idx = line.indexOf("\t")
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if (idx === -1) continue
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var key = line.substring(0, idx)
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var value = line.substring(idx + 1)
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next[key] = key === "ssid" ? decodeIwSsid(value) : value.trim()
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}
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return next
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}
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function throughputState(previous, next, now) {
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var prev = previous || {}
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var sample = next || {}
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var iface = sample.iface || ""
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var rx = parseFloat(sample.rx_bytes || "0")
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var tx = parseFloat(sample.tx_bytes || "0")
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var previousTime = Number(prev.prevSampleTime || 0)
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if (iface !== (prev.prevIface || "") || previousTime === 0) {
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return {
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prevIface: iface,
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prevRxBytes: rx,
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prevTxBytes: tx,
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prevSampleTime: now,
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downloadRate: 0,
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uploadRate: 0
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}
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}
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var downloadRate = Number(prev.downloadRate || 0)
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var uploadRate = Number(prev.uploadRate || 0)
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var dt = now - previousTime
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if (dt > 0) {
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downloadRate = Math.max(0, (rx - Number(prev.prevRxBytes || 0)) / dt)
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uploadRate = Math.max(0, (tx - Number(prev.prevTxBytes || 0)) / dt)
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}
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return {
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prevIface: iface,
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prevRxBytes: rx,
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prevTxBytes: tx,
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prevSampleTime: now,
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downloadRate: downloadRate,
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uploadRate: uploadRate
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}
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}
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function pingSampleValue(raw) {
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var value = parseFloat(raw)
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if (!isFinite(value) || value < 0) return null
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return value
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}
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function appendPingSample(samples, raw, limit) {
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var values = Array.isArray(samples) ? samples.slice() : []
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values.push(pingSampleValue(raw))
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while (values.length > limit) values.shift()
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return values
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}
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function averagePingLatency(samples, limit) {
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var values = Array.isArray(samples) ? samples : []
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var sampleLimit = Math.max(1, parseInt(limit, 10) || values.length || 1)
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var total = 0
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var count = 0
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for (var i = Math.max(0, values.length - sampleLimit); i < values.length; i++) {
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var value = values[i]
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if (typeof value !== "number" || !isFinite(value) || value < 0) continue
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total += value
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count++
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}
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return count > 0 ? total / count : -1
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}
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function pingPacketLossPercent(samples) {
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var values = Array.isArray(samples) ? samples : []
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if (values.length === 0) return 0
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var lost = 0
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for (var i = 0; i < values.length; i++) {
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if (values[i] === null) lost++
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}
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return Math.round((lost / values.length) * 100)
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}
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function formatPacketLoss(percent, hasSamples) {
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if (hasSamples === false) return "--"
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var value = parseInt(percent, 10)
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if (!value || value < 0) return "0%"
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return value + "%"
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}
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function pingLatencyState(previous, next, limit, averageLimit) {
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var prev = previous || {}
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var sample = next || {}
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var iface = sample.iface || ""
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var window = Math.max(1, parseInt(limit, 10) || 5)
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var averageWindow = Math.max(1, parseInt(averageLimit, 10) || window)
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var reset = iface === "" || iface !== (prev.pingIface || "")
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var routerSamples = reset ? [] : prev.routerPingSamples
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var internetSamples = reset ? [] : prev.internetPingSamples
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routerSamples = sample.router_ping_ms === undefined ? [] : appendPingSample(routerSamples, sample.router_ping_ms, window)
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internetSamples = sample.internet_ping_ms === undefined ? [] : appendPingSample(internetSamples, sample.internet_ping_ms, window)
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return {
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pingIface: iface,
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routerPingSamples: routerSamples,
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internetPingSamples: internetSamples,
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routerPingLatency: averagePingLatency(routerSamples, averageWindow),
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internetPingLatency: averagePingLatency(internetSamples, averageWindow),
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internetPingPacketLoss: pingPacketLossPercent(internetSamples)
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}
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}
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function formatBytes(bytes) {
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var n = Number(bytes)
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if (!isFinite(n) || n < 0) n = 0
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if (n < 1024) return Math.round(n) + " B"
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if (n < 1024 * 1024) return (n / 1024).toFixed(1) + " KB"
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if (n < 1024 * 1024 * 1024) return (n / (1024 * 1024)).toFixed(1) + " MB"
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return (n / (1024 * 1024 * 1024)).toFixed(2) + " GB"
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}
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function formatRate(bytesPerSec) {
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return formatBytes(bytesPerSec) + "/s"
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}
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function formatSpeedMbps(mbps) {
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var value = parseFloat(mbps)
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if (!isFinite(value) || value <= 0) return "--"
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return value.toFixed(value > 0 && value < 10 ? 1 : 0) + " Mbps"
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}
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// `hasSamples` false means no probe has come back yet, which is different from
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// a probe that timed out. The rows stay mounted through that gap and read "--"
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// so the grid doesn't reflow a second after the panel opens.
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function formatPingLatency(ms, hasSamples) {
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if (hasSamples === false) return "--"
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var value = parseFloat(ms)
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if (!isFinite(value) || value < 0) return "Timeout"
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return value.toFixed(value > 0 && value < 10 ? 1 : 0) + " ms"
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}
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function wifiRow(network) {
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if (!network) return null
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return {
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network: network,
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connected: !!network.connected,
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known: !!network.known,
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ssid: network.name || "",
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signal: Math.round((network.signalStrength || 0) * 100),
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security: network.security
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}
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}
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function sortWifiRows(rows) {
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var nets = Array.isArray(rows) ? rows.slice() : []
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nets.sort(function(a, b) {
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if (a.connected !== b.connected) return a.connected ? -1 : 1
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if (a.known !== b.known) return a.known ? -1 : 1
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return b.signal - a.signal
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})
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return nets
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}
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function wifiSectionTitle(wifiNetworks, index) {
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var networks = Array.isArray(wifiNetworks) ? wifiNetworks : []
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if (index < 0 || index >= networks.length) return ""
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var net = networks[index]
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if (!net) return ""
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if (net.known && index === 0) return "KNOWN NETWORKS"
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if (!net.known && (index === 0 || (networks[index - 1] && networks[index - 1].known))) return "OTHER NETWORKS"
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return ""
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}
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function isProtected(security, openSecurity) {
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return security !== openSecurity
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}
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// The password arrives on stdin and reaches nmcli through the scriptable
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// `connection edit` editor -- argv is world-readable in /proc, so the secret
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// must never be an argument (printf is a bash builtin, so no process spawns
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// with it either).
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var enterpriseConnectScript =
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"u=$(uuidgen); IFS= read -r pw;" +
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" nmcli connection add type wifi con-name \"$1\" ssid \"$1\" connection.uuid \"$u\"" +
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" wifi-sec.key-mgmt wpa-eap 802-1x.eap peap 802-1x.phase2-auth mschapv2" +
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" 802-1x.identity \"$2\" 802-1x.auth-timeout 8 >/dev/null" +
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" && printf 'set 802-1x.password %s\\nsave\\nquit\\n' \"$pw\" | nmcli connection edit uuid \"$u\" >/dev/null" +
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" && nmcli connection up uuid \"$u\"" +
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" || { nmcli connection delete uuid \"$u\" >/dev/null 2>&1; false; }"
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function networkFailureReason(reason, reasons) {
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var r = reasons || {}
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if (reason === r.NoSecrets) return "Passphrase required"
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if (reason === r.WifiAuthTimeout) return "Wrong password"
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if (reason === r.WifiNetworkLost) return "Network lost"
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if (reason === r.WifiClientDisconnected) return "Disconnected"
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if (reason === r.WifiClientFailed) return "Connection failed"
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return "Failed to connect"
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}
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if (typeof module !== "undefined") {
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module.exports = {
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parseNetworkStatus: parseNetworkStatus,
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wifiIconFor: wifiIconFor,
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connectionIcon: connectionIcon,
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formatHeaderSpeed: formatHeaderSpeed,
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formatHeaderFreq: formatHeaderFreq,
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headerDetail: headerDetail,
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bandLabel: bandLabel,
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bandSectionTitle: bandSectionTitle,
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bandTooltip: bandTooltip,
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parseBandStatus: parseBandStatus,
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decodeIwSsid: decodeIwSsid,
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parseKeyValue: parseKeyValue,
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throughputState: throughputState,
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pingLatencyState: pingLatencyState,
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pingPacketLossPercent: pingPacketLossPercent,
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formatPacketLoss: formatPacketLoss,
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formatBytes: formatBytes,
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formatRate: formatRate,
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formatSpeedMbps: formatSpeedMbps,
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formatPingLatency: formatPingLatency,
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wifiRow: wifiRow,
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sortWifiRows: sortWifiRows,
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wifiSectionTitle: wifiSectionTitle,
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isProtected: isProtected,
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enterpriseConnectScript: enterpriseConnectScript,
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networkFailureReason: networkFailureReason
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}
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}
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