#!/bin/bash set -euo pipefail source "$(cd -- "$(dirname -- "${BASH_SOURCE[0]}")" && pwd)/base-test.sh" run_node_test <<'JS' const fs = require('fs') const network = requireFromRoot('shell/plugins/panels/network/Model.js') const panelSource = fs.readFileSync(root + '/shell/plugins/panels/network/Panel.qml', 'utf8') assert(/IpcHandler[\s\S]*?function toggleNetwork\(\) \{ root\.toggleNetwork\(\) \}/.test(panelSource), 'network exposes the Wi-Fi radio toggle over IPC') assert(/manageIpc: false/.test(panelSource), 'network owns its IPC handler so it can extend the target methods') // Opening from the bar must call open() and nothing else. open() runs // refresh(true), which defers the PHY scan; a second bare refresh() defaults // scanWifi to false, sets scannerEnabled synchronously, and stalls the open on // NetworkManager's access-point flood. const barPress = panelSource.match(/onPressed: function\(b\) \{[\s\S]*?\n {4}\}/) assert(barPress, 'network bar button has an onPressed handler') const barPressCode = barPress[0].replace(/\/\/.*$/gm, '') assert(!/refresh\(/.test(barPressCode), 'network bar click opens the panel without a second refresh that would undo the deferred scan') // A row is a primitive snapshot that can outlive its WifiNetwork, and // disconnect() falls back to the live connection when handed null, so row // activation must go through the guarded disconnectRow(). assert( /function disconnectRow\(ssid\) \{\s*var network = networkForSsid\(ssid\)\s*if \(network\) disconnect\(network\)/.test(panelSource), 'network guards row disconnects so a stale row cannot drop an unrelated connection' ) assert(!/disconnect\(\s*(root\.)?networkForSsid\(/.test(panelSource), 'network never passes an unguarded networkForSsid() lookup to disconnect()') assertDeepEqual( network.parseNetworkStatus('wifi\tCafe WiFi\t78\t5200\n'), { kind: 'wifi', label: 'Cafe WiFi', signalStrength: 78, frequency: '5200' }, 'network parses bar status' ) assertEqual(network.connectionIcon('wifi', 80), network.wifiIconFor(80), 'network maps wifi icon from signal') assertEqual(network.formatHeaderSpeed('1000'), '1gbit', 'network formats gigabit speed') assertEqual(network.formatHeaderSpeed('2500'), '2.5gbit', 'network formats fractional gigabit speed') assertEqual(network.formatHeaderFreq('2462'), '2.4ghz', 'network formats 2.4GHz wifi band') assertEqual(network.formatHeaderFreq('5200'), '5ghz', 'network formats 5GHz wifi band') assertEqual(network.formatHeaderFreq('6455.0'), '6ghz', 'network formats 6GHz wifi band') assertEqual(network.formatHeaderFreq('18300'), '18.3ghz', 'network falls back to exact GHz for unknown bands') assertEqual(network.headerDetail({ type: 'ethernet', speed: '100' }), '100mbit', 'network header uses ethernet speed') assertDeepEqual( network.parseKeyValue('iface\twlan0\nrx_bytes\t100\ntx_bytes\t50\n'), { iface: 'wlan0', rx_bytes: '100', tx_bytes: '50' }, 'network parses detail key values' ) assertEqual(network.decodeIwSsid('Cafe\\xe2\\x80\\x99'), 'Cafe’', 'network decodes UTF-8 SSID bytes') assertEqual(network.decodeIwSsid('Smile \\xf0\\x9f\\x98\\x80'), 'Smile 😀', 'network decodes emoji SSID bytes') assertEqual(network.decodeIwSsid('\\x20Cafe\\x20'), ' Cafe ', 'network preserves edge spaces in SSIDs') assertEqual(network.decodeIwSsid('slash\\x5cname'), 'slash\\name', 'network decodes SSID backslashes once') assertEqual(network.decodeIwSsid('invalid\\xff'), 'invalid\\xff', 'network preserves invalid UTF-8 escapes') assertEqual(network.decodeIwSsid('already 😀'), 'already 😀', 'network safely preserves unexpected non-BMP input') assertDeepEqual( network.parseKeyValue('ssid\tline\\x0abreak\\x09tab\\x00nul\nsignal_dbm\t-40\n'), { ssid: 'line\\x0abreak\\x09tab\\x00nul', signal_dbm: '-40' }, 'network leaves control-byte escapes safe for single-line display' ) assertDeepEqual( network.throughputState({ prevIface: '', prevSampleTime: 0 }, { iface: 'wlan0', rx_bytes: '100', tx_bytes: '50' }, 10), { prevIface: 'wlan0', prevRxBytes: 100, prevTxBytes: 50, prevSampleTime: 10, downloadRate: 0, uploadRate: 0 }, 'network seeds throughput state on first sample' ) assertDeepEqual( network.throughputState({ prevIface: 'wlan0', prevRxBytes: 100, prevTxBytes: 50, prevSampleTime: 10 }, { iface: 'wlan0', rx_bytes: '300', tx_bytes: '90' }, 12), { prevIface: 'wlan0', prevRxBytes: 300, prevTxBytes: 90, prevSampleTime: 12, downloadRate: 100, uploadRate: 20 }, 'network computes throughput deltas' ) let ping = network.pingLatencyState( { pingIface: '', routerPingSamples: [], internetPingSamples: [] }, { iface: 'wlan0', router_ping_ms: '2.0', internet_ping_ms: '20.0' }, 4 ) assertDeepEqual( ping, { pingIface: 'wlan0', routerPingSamples: [2], internetPingSamples: [20], routerPingLatency: 2, internetPingLatency: 20, internetPingPacketLoss: 0 }, 'network seeds ping latency samples' ) ping = network.pingLatencyState(ping, { iface: 'wlan0', router_ping_ms: '4.0', internet_ping_ms: '' }, 4) assertDeepEqual( ping, { pingIface: 'wlan0', routerPingSamples: [2, 4], internetPingSamples: [20, null], routerPingLatency: 3, internetPingLatency: 20, internetPingPacketLoss: 50 }, 'network averages recent successful ping samples' ) assertDeepEqual( network.pingLatencyState(ping, { iface: 'eth0', router_ping_ms: '1.5', internet_ping_ms: '10.0' }, 4), { pingIface: 'eth0', routerPingSamples: [1.5], internetPingSamples: [10], routerPingLatency: 1.5, internetPingLatency: 10, internetPingPacketLoss: 0 }, 'network resets ping samples when interface changes' ) assertDeepEqual( network.pingLatencyState(ping, { iface: 'wlan0', internet_ping_ms: '22.0' }, 4), { pingIface: 'wlan0', routerPingSamples: [], internetPingSamples: [20, null, 22], routerPingLatency: -1, internetPingLatency: 21, internetPingPacketLoss: 33 }, 'network clears ping samples when a target is unavailable' ) assertEqual(network.formatBytes(1536), '1.5 KB', 'network formats bytes') assertEqual(network.formatRate(1536), '1.5 KB/s', 'network formats rates') assertEqual(network.formatPingLatency('2.54'), '2.5 ms', 'network formats low ping with precision') assertEqual(network.formatPingLatency('25.4'), '25 ms', 'network formats ping') assertEqual(network.formatPingLatency(''), 'Timeout', 'network formats missing ping as timeout') assertEqual(network.formatPingLatency(-1, false), '--', 'network holds the ping row before the first sample') assertEqual(network.formatPingLatency('25.4', true), '25 ms', 'network formats ping once samples exist') assertEqual(network.formatPingLatency('', true), 'Timeout', 'network still reports a timeout among real samples') assertEqual(network.formatPacketLoss(2), '2%', 'network formats packet loss') assertEqual(network.formatPacketLoss(0), '0%', 'network formats zero packet loss') assertEqual(network.formatPacketLoss(0, false), '--', 'network holds the packet loss row before the first sample') assertEqual(network.formatPacketLoss(0, true), '0%', 'network reports zero loss once samples exist') const rows = network.sortWifiRows([ { ssid: 'Open', connected: false, known: false, signal: 95 }, { ssid: 'Known', connected: false, known: true, signal: 10 }, { ssid: 'Connected', connected: true, known: true, signal: 20 } ]) assertDeepEqual(rows.map(row => row.ssid), ['Connected', 'Known', 'Open'], 'network sorts wifi rows by connection and known state') assertEqual(network.wifiSectionTitle(rows, 0), 'KNOWN NETWORKS', 'network labels known wifi section') assertEqual(network.wifiSectionTitle(rows, 2), 'OTHER NETWORKS', 'network labels other wifi section') const wifiRow = network.wifiRow({ connected: true, known: true, name: 'Home', signalStrength: 0.8, security: 1 }) assertDeepEqual( wifiRow, { connected: true, known: true, ssid: 'Home', signal: 80, security: 1 }, 'network projects wifi rows with primitives so delegates never hold the live WifiNetwork object' ) assertDeepEqual( Object.keys(wifiRow).sort(), ['connected', 'known', 'security', 'signal', 'ssid'], 'network wifi rows project exactly the primitive fields, so each delegate stores no live QObject' ) const reasons = { NoSecrets: 1, WifiAuthTimeout: 2, WifiNetworkLost: 3, WifiClientDisconnected: 4, WifiClientFailed: 5 } assertEqual(network.networkFailureReason(1, reasons), 'Passphrase required', 'network maps missing passphrase failures') assertEqual(network.networkFailureReason(2, reasons), 'Wrong password', 'network maps auth timeout failures') assertEqual(network.networkFailureReason(99, reasons), 'Failed to connect', 'network maps unknown failures') assertEqual(network.shouldRepromptPassphrase(reasons.NoSecrets, false, reasons), true, 'network reprompts when secrets are missing') assertEqual(network.shouldRepromptPassphrase(reasons.WifiAuthTimeout, true, reasons), true, 'network reprompts a protected network after a wrong password') assertEqual(network.shouldRepromptPassphrase(reasons.WifiAuthTimeout, false, reasons), false, 'network does not reprompt an open network on auth timeout') assertEqual(network.shouldRepromptPassphrase(reasons.WifiClientFailed, true, reasons), false, 'network does not reprompt on generic connection failures') assertEqual(network.bandLabel('2.4'), '2.4ghz', 'network labels the 2.4GHz band') assertEqual(network.bandLabel('6'), '6ghz', 'network labels the 6GHz band') assertEqual(network.bandLabel('auto'), 'Auto', 'network labels the automatic band choice') assertEqual(network.bandSectionTitle('auto', '2.4'), 'WI-FI BAND: 2.4GHZ', 'network names the live band in the header under automatic') assertEqual(network.bandSectionTitle('auto', ''), 'WI-FI BAND', 'network omits an unknown band from the header') assertEqual(network.bandSectionTitle('5', '5'), 'WI-FI BAND', 'network drops the header band once the pills are showing') assertEqual(network.bandSectionTitle('5', '2.4'), 'WI-FI BAND', 'network keeps a plain header while a pin is settling') assertDeepEqual( network.parseBandStatus('band\t5\navailable\t2.4 5 6\nselected\tauto\n'), { band: '5', selected: 'auto', available: ['2.4', '5', '6'] }, 'network parses band status' ) assertDeepEqual( network.parseBandStatus(''), { band: '', selected: 'auto', available: [] }, 'network parses empty band status without a wifi connection' ) assertEqual(network.headerDetail({ type: 'wifi', freq: '5745' }), '', 'network keeps wifi band state out of the hero') assertEqual(network.headerDetail({ type: 'ethernet', speed: '100' }), '100mbit', 'network keeps ethernet speed in the hero') JS