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|
#!/usr/bin/env luajit
-- Emit {cpu, ram, net, sound} as JSON.
--
-- Single-threaded LuaJIT port of the original Python script. Instead of
-- OS threads, a single supervisor loop schedules the periodic cpu/ram and
-- sound refreshes and polls an inotifywait child for link-state changes.
local cjson = require("cjson")
local posix = require("posix")
local unistd = require("posix.unistd")
local gettimeofday = require("posix.sys.time").gettimeofday
local poll = require("posix.poll").poll
local NULL = cjson.null
local function nonnull(v)
if v == nil then
return NULL
end
return v
end
-- Throughput deltas between cpu/ram refreshes
local net_last_time = nil
local net_last_bytes = {}
-- TIME
local function mono_sec()
local g = gettimeofday()
return g.tv_sec + g.tv_usec / 1e6
end
-- PROCESS HELPERS
local function sh(cmd)
local h = io.popen(cmd)
if not h then
return nil
end
local out = h:read("*a")
h:close()
return out
end
-- FORMATTING
local function format_rate(bytes_per_sec)
if bytes_per_sec == nil or bytes_per_sec < 0 then
return "0B"
end
local units = { "B", "K", "M", "G", "T" }
local val = bytes_per_sec
local unit_idx = 1
while val >= 1024 and unit_idx < #units do
val = val / 1024.0
unit_idx = unit_idx + 1
end
local unit = units[unit_idx]
if val >= 100 or unit == "B" then
return string.format("%d%s", math.floor(val + 0.5), unit)
end
return string.format("%.1f%s", val, unit)
end
local function format_bytes(kib)
if kib == nil or kib < 0 then
return "0B"
end
local units = { "K", "M", "G", "T" }
local val = kib
local unit_idx = 1
while val >= 1024 and unit_idx < #units do
val = val / 1024.0
unit_idx = unit_idx + 1
end
local unit = units[unit_idx]
if val >= 100 or unit == "K" then
return string.format("%d%s", math.floor(val + 0.5), unit)
end
return string.format("%.1f%s", val, unit)
end
-- /proc READERS
local function read_cpu_times()
local times = {}
local f = io.open("/proc/stat")
if not f then
return times
end
for line in f:lines() do
if not line:match("^cpu") then
break
end
local parts = {}
for w in line:gmatch("%S+") do
parts[#parts + 1] = w
end
local label = parts[1]
local total, idle = 0, 0
for j = 2, #parts do
local v = tonumber(parts[j]) or 0
total = total + v
if j == 4 or j == 5 then
idle = idle + v
end
end
times[label] = { idle = idle, total = total }
end
f:close()
return times
end
local function get_cpu_freq_mhz()
local count, sum, ok = 0, 0, false
local f = io.open("/proc/cpuinfo")
if not f then
return nil
end
for line in f:lines() do
local low = line:lower()
if low:find("^cpu mhz") then
local val = line:match(":%s*([%d%.]+)")
if val then
sum = sum + tonumber(val)
count = count + 1
ok = true
end
end
end
f:close()
if not ok then
return nil
end
return math.floor(sum / count + 0.5)
end
local function get_load_avg()
local f = io.open("/proc/loadavg")
if not f then
return nil
end
local line = f:read("*l")
f:close()
if not line then
return nil
end
local a, b, c = line:match("^([%d%.]+)%s+([%d%.]+)%s+([%d%.]+)")
if not a then
return nil
end
return { tonumber(a), tonumber(b), tonumber(c) }
end
local function get_ram_speed_mhz()
local out = sh("dmidecode -t 17 2>/dev/null")
if not out then
return nil
end
local speeds = {}
for line in out:gmatch("[^\n]+") do
local s = line:match("^%s*Configured Memory Speed:%s*(.-)%s*$")
if s then
local low = s:lower()
if low ~= "unknown" and low ~= "no module installed" then
local num = s:match("^(%d+)")
if num then
speeds[#speeds + 1] = tonumber(num)
end
end
end
end
if #speeds == 0 then
for line in out:gmatch("[^\n]+") do
local s = line:match("^%s*Speed:%s*(.-)%s*$")
if s then
local low = s:lower()
if low ~= "unknown" and low ~= "no module installed" then
local num = s:match("^(%d+)")
if num then
speeds[#speeds + 1] = tonumber(num)
end
end
end
end
end
if #speeds == 0 then
return nil
end
local mx = speeds[1]
for j = 2, #speeds do
if speeds[j] > mx then
mx = speeds[j]
end
end
return mx
end
-- NETWORK HELPERS
local function get_all_default_ifaces()
local out = sh("ip -o route show default 2>/dev/null")
if not out then
return {}
end
local ifaces = {}
local seen = {}
for line in out:gmatch("[^\n]+") do
local iface = line:match("dev (%S+)")
if iface and not seen[iface] then
seen[iface] = true
ifaces[#ifaces + 1] = iface
end
end
return ifaces
end
local function get_iface_ip(iface)
if not iface or iface == "" then
return nil
end
local out = sh("ip -o -4 addr show dev " .. iface .. " 2>/dev/null")
if not out then
return nil
end
local ip = out:match("inet (%d+%.%d+%.%d+%.%d+)")
return ip
end
local function get_operstate(iface)
local f = io.open("/sys/class/net/" .. iface .. "/operstate")
if not f then
return "down"
end
local s = f:read("*l")
f:close()
return (s and s:match("^%s*(.-)%s*$")) or "down"
end
local function get_iface_type(iface)
if posix.stat("/sys/class/net/" .. iface .. "/wireless") then
return "wifi"
end
local st = posix.stat("/sys/class/net/" .. iface .. "/bridge")
if st and st.type == "directory" then
return "bridge"
end
if posix.stat("/sys/class/net/" .. iface .. "/tun_flags") then
return "tun"
end
return "ethernet"
end
local function get_speed_mbps(iface, iftype)
if iftype == "ethernet" then
local f = io.open("/sys/class/net/" .. iface .. "/speed")
if f then
local s = f:read("*l")
f:close()
local num = s and tonumber(s:match("^%s*(-?%d+)"))
if num and num >= 0 then
return num
end
end
return nil
end
if iftype == "wifi" then
local out = sh("iw dev " .. iface .. " link 2>/dev/null")
if not out then
return nil
end
for line in out:gmatch("[^\n]+") do
local l = line:match("^%s*tx bitrate:%s*(.-)%s*$")
if l then
local num = tonumber(l:match("^([%d%.]+)"))
if num then
return math.floor(num + 0.5)
end
end
end
end
return nil
end
local function get_iface_io_bytes(iface)
if not iface or iface == "" then
return nil, nil
end
local f = io.open("/proc/net/dev")
if not f then
return nil, nil
end
local rx, tx
for line in f:lines() do
local colon = line:find(":")
if colon then
local dev = line:sub(1, colon - 1):match("^%s*(.-)%s*$")
if dev == iface then
local fields = {}
for w in line:sub(colon + 1):gmatch("%S+") do
fields[#fields + 1] = w
end
rx = tonumber(fields[1]) or nil
tx = tonumber(fields[9]) or nil
break
end
end
end
f:close()
return rx, tx
end
-- TOOLTIPS
local function build_cpu_tooltip(overall_pct, per_core_list, freq_mhz, load_avg)
local lines = { string.format("CPU: %d%%", overall_pct) }
if freq_mhz ~= nil then
lines[#lines + 1] = string.format("Freq: %d MHz", freq_mhz)
end
if load_avg ~= nil then
lines[#lines + 1] = string.format("Load: %.2f %.2f %.2f", load_avg[1], load_avg[2], load_avg[3])
end
for i, pct in ipairs(per_core_list) do
lines[#lines + 1] = string.format("Core %d: %d%%", i - 1, pct)
end
return table.concat(lines, "\n")
end
local function build_ram_tooltip(ram_pct, used, total, available, swap_pct, swap_used, swap_total, speed_mhz)
local lines = { string.format("RAM: %d%% (%s / %s)", ram_pct, used, total) }
lines[#lines + 1] = "Available: " .. available
lines[#lines + 1] = string.format("Swap: %d%% (%s / %s)", swap_pct, swap_used, swap_total)
if speed_mhz ~= nil then
lines[#lines + 1] = string.format("Speed: %d MHz", speed_mhz)
else
lines[#lines + 1] = "Speed: unknown"
end
return table.concat(lines, "\n")
end
-- STATE COLLECTORS
-- get_all_default_ifaces (`ip route`), get_iface_ip (`ip addr`), and the
-- wifi branch of get_speed_mbps (`iw dev link`) each spawn a subprocess.
-- Those three rarely change second-to-second, so they're only re-probed
-- every NET_SLOW_REFRESH_INTERVAL instead of on every check_net_status()
-- call. operstate, iface type, ethernet speed, and rx/tx byte counters are
-- all plain sysfs/proc reads with no subprocess involved, so they stay
-- live on every call regardless -- rx/tx throughput in particular needs
-- to stay frequent to be useful.
local NET_SLOW_REFRESH_INTERVAL = 15.0
local net_slow_ifaces = nil
local net_slow_ip = {}
local net_slow_wifi_speed = {}
local net_slow_expires_at = 0
local function refresh_net_slow_cache(now)
net_slow_ifaces = get_all_default_ifaces()
local ip_cache, wifi_speed_cache = {}, {}
for _, iface in ipairs(net_slow_ifaces) do
ip_cache[iface] = get_iface_ip(iface)
if get_iface_type(iface) == "wifi" then
wifi_speed_cache[iface] = get_speed_mbps(iface, "wifi")
end
end
net_slow_ip = ip_cache
net_slow_wifi_speed = wifi_speed_cache
net_slow_expires_at = now + NET_SLOW_REFRESH_INTERVAL
end
-- Pass force=true to bypass the timer and re-probe immediately (used for
-- the initial call and whenever inotify reports an actual link change).
local function check_net_status(force)
local now = mono_sec()
if force or net_slow_ifaces == nil or now >= net_slow_expires_at then
refresh_net_slow_cache(now)
end
local ifaces = net_slow_ifaces
if ifaces == nil or #ifaces == 0 then
return { status = "down", tooltip = "Network Offline", routes = {} }
end
local routes = {}
local any_up = false
local any_limited = false
for _, iface in ipairs(ifaces) do
local oper = get_operstate(iface)
if oper == "up" then
any_up = true
elseif oper == "dormant" then
any_limited = true
end
local iftype = get_iface_type(iface)
local ip_addr = net_slow_ip[iface]
local speed
if oper == "up" then
if iftype == "wifi" then
speed = net_slow_wifi_speed[iface]
else
-- Ethernet speed is a plain sysfs read (no subprocess), so it
-- stays live every call rather than going through the slow cache.
speed = get_speed_mbps(iface, iftype)
end
end
local rx_bytes, tx_bytes = get_iface_io_bytes(iface)
local rx_str, tx_str = nil, nil
if oper ~= "down" and rx_bytes ~= nil and tx_bytes ~= nil then
if net_last_time ~= nil and net_last_bytes[iface] then
local dt = now - net_last_time
if dt > 0 then
local prev = net_last_bytes[iface]
local rx_rate = math.max(0, (rx_bytes - prev[1]) / dt)
local tx_rate = math.max(0, (tx_bytes - prev[2]) / dt)
rx_str = format_rate(rx_rate)
tx_str = format_rate(tx_rate)
end
end
net_last_bytes[iface] = { rx_bytes, tx_bytes }
else
rx_str, tx_str = nil, nil
end
routes[#routes + 1] = {
iface = iface,
ip = nonnull(ip_addr),
["type"] = iftype,
speed = nonnull(speed),
rx = nonnull(rx_str),
tx = nonnull(tx_str),
}
end
net_last_time = now
local overall_status
if any_up then
overall_status = "up"
elseif any_limited then
overall_status = "limited"
else
overall_status = "down"
end
local tooltip
if overall_status == "down" or #routes == 0 then
tooltip = "Network Offline"
else
local first = routes[1]
local rx = first.rx
local tx = first.tx
if rx == NULL or rx == nil then
rx = "-"
end
if tx == NULL or tx == nil then
tx = "-"
end
tooltip = string.format("\u{2193}%s \u{2191}%s", rx, tx)
for _, r in ipairs(routes) do
local iface = r.iface or "unknown"
local ip = r.ip
if ip == NULL or ip == nil then
ip = "no ip"
end
tooltip = tooltip .. "\n" .. iface .. ": " .. ip
end
end
return { status = overall_status, tooltip = tooltip, routes = routes }
end
local function get_sound_state()
local function pamixer_flag(flag)
local out = sh("pamixer " .. flag .. " 2>/dev/null")
if not out then
return nil
end
return out:gsub("^%s+", ""):gsub("%s+$", "")
end
local percent, mute, sink = nil, nil, nil
local pout = pamixer_flag("--get-volume")
if pout then
local num = tonumber(pout:match("^(%-?%d+)"))
if num then
percent = math.max(0, math.min(100, num))
end
end
local mout = pamixer_flag("--get-mute")
if mout ~= nil then
mute = (mout:lower() == "true")
end
local sout = pamixer_flag("--get-default-sink")
if sout then
-- Output ends with: INDEX "name" "description"
local names = {}
for q in sout:gmatch('"([^"]*)"') do
names[#names + 1] = q
end
if #names > 0 then
sink = names[#names]
else
local last = sout:match("([^\n]+)$")
sink = last or sout
end
end
local vol = tostring(percent) .. "%"
local supp = {}
if mute then
supp[#supp + 1] = string.format("Muted (%s)", vol)
else
supp[#supp + 1] = "Volume: " .. vol
end
if sink then
supp[#supp + 1] = "Sink: " .. sink
end
return {
percent = nonnull(percent),
mute = mute or false,
sink = nonnull(sink),
tooltip = table.concat(supp, "\n"),
}
end
-- BATTERY
local function find_battery_path()
local handle = io.popen("ls /sys/class/power_supply/ 2>/dev/null")
if not handle then
return nil
end
local out = handle:read("*a")
handle:close()
for name in out:gmatch("[^\n]+") do
if posix.stat("/sys/class/power_supply/" .. name .. "/capacity") then
return "/sys/class/power_supply/" .. name
end
end
return nil
end
local function get_battery_state(path)
if not path then
return { percent = 0, present = false, charging = false, tooltip = "No battery", status = "none" }
end
local function read_file(subpath)
local f = io.open(path .. "/" .. subpath)
if not f then
return nil
end
local s = f:read("*l")
f:close()
return s and s:match("^%s*(.-)%s*$")
end
local capacity_str = read_file("capacity")
local capacity = capacity_str and tonumber(capacity_str)
if not capacity then
return { percent = 0, present = false, charging = false, tooltip = "No battery", status = "none" }
end
local status_str = read_file("status")
local charging = (status_str == "Charging" or status_str == "Full")
local time_to_empty = read_file("time_to_empty_now")
local time_to_full = read_file("time_to_full_now")
local time_str = nil
if not charging and time_to_empty then
local secs = tonumber(time_to_empty)
if secs and secs > 0 then
local h = math.floor(secs / 3600)
local m = math.floor((secs % 3600) / 60)
time_str = string.format("%dh%dm remaining", h, m)
end
elseif charging and time_to_full then
local secs = tonumber(time_to_full)
if secs and secs > 0 then
local h = math.floor(secs / 3600)
local m = math.floor((secs % 3600) / 60)
time_str = string.format("%dh%dm until full", h, m)
end
end
local lines = { string.format("Battery: %d%%", capacity) }
if status_str then
lines[#lines + 1] = "Status: " .. status_str
end
if time_str then
lines[#lines + 1] = time_str
end
return {
percent = capacity,
present = true,
charging = charging,
status = nonnull(status_str),
tooltip = table.concat(lines, "\n"),
}
end
local battery_path = find_battery_path()
-- state + emit
local state = {
cpu = {
percent = 0,
per_core = {},
freq_mhz = NULL,
load_avg = NULL,
tooltip = "CPU: 0%",
},
ram = {
percent = 0,
used = "0B",
total = "0B",
available = "0B",
swap_percent = 0,
swap_used = "0B",
swap_total = "0B",
speed_mhz = NULL,
tooltip = "RAM: 0%",
},
net = {
status = "down",
tooltip = "Network Offline",
routes = {},
},
sound = {
percent = NULL,
mute = false,
sink = NULL,
tooltip = "Volume: unknown",
},
battery = {
percent = 0,
present = false,
charging = false,
status = "none",
tooltip = "No battery",
},
}
local function emit()
io.write(cjson.encode(state) .. "\n")
io.stdout:flush()
end
local CPU_INTERVAL = 2.0
local SOUND_INTERVAL = 1.0
local INOTIFY_RETRY_INTERVAL = 30.0 -- backoff between (re)spawn attempts
-- inotifywait child
-- Returns pid, read_fd on success, or nil, nil if the fork/exec setup
-- itself failed outright (pipe/fork syscall failure, not inotifywait
-- failing later).
local function spawn_inotify()
local r, w = posix.pipe()
if not r or not w then
return nil, nil
end
local pid = posix.fork()
if pid == nil then
posix.close(r)
posix.close(w)
return nil, nil
end
if pid == 0 then
posix.dup2(w, unistd.STDOUT_FILENO)
local nullfd = posix.open("/dev/null", posix.O_WRONLY)
if nullfd then
posix.dup2(nullfd, unistd.STDERR_FILENO)
posix.close(nullfd)
end
posix.close(r)
posix.close(w)
local ok, err = posix.execp("inotifywait", { "inotifywait", "-m", "-e", "modify", "/run/systemd/netif/state" })
if not ok then
io.stderr:write("inotifywait: " .. tostring(err) .. "\n")
os.exit(1)
end
end
posix.close(w)
return pid, r
end
-- MAIN LOOP
local function main()
local ram_speed_mhz = get_ram_speed_mhz()
-- seed global state copy with all keys (null defaults)
local prev_cpu_times = read_cpu_times()
-- initial emission
state.net = check_net_status(true)
emit()
-- net_fd is nil whenever we have no live inotifywait child to poll on.
-- We (re)spawn opportunistically, but never more often than
-- INOTIFY_RETRY_INTERVAL, so a persistently-failing child (missing
-- binary, watched path doesn't exist, permissions, ...) can never turn
-- into a tight loop -- it just falls back to picking up network
-- changes on the regular CPU_INTERVAL cadence below instead.
local inotify_pid = nil
local net_fd = nil
local next_inotify_attempt = 0 -- attempt immediately on first iteration
local next_cpu = mono_sec() + CPU_INTERVAL
local next_sound = mono_sec() + SOUND_INTERVAL
while true do
local now = mono_sec()
if net_fd == nil and now >= next_inotify_attempt then
inotify_pid, net_fd = spawn_inotify()
-- Whether this attempt succeeded or not, don't try again for a
-- while: a child that exits immediately (e.g. because the watched
-- path doesn't exist) would otherwise cause an attempt-per-loop
-- storm identical to the original bug.
next_inotify_attempt = mono_sec() + INOTIFY_RETRY_INTERVAL
end
if now >= next_cpu then
local cur_times = read_cpu_times()
local overall_pct = 0
local per_core = {}
for label, cur in pairs(cur_times) do
local prev = prev_cpu_times[label] or cur
local d_idle = cur.idle - prev.idle
local d_total = cur.total - prev.total
local pct = 0
if d_total > 0 then
pct = math.floor((1 - d_idle / d_total) * 100 + 0.5)
end
if label == "cpu" then
overall_pct = pct
else
per_core[tonumber(label:match("^cpu(.*)$")) or -1] = pct
end
end
prev_cpu_times = cur_times
local keys = {}
for k in pairs(per_core) do
keys[#keys + 1] = k
end
table.sort(keys)
local per_core_list = {}
for _, k in ipairs(keys) do
per_core_list[#per_core_list + 1] = per_core[k]
end
local freq_mhz = get_cpu_freq_mhz()
local load_avg = get_load_avg()
local cpu_state = {
percent = overall_pct,
per_core = per_core_list,
freq_mhz = nonnull(freq_mhz),
load_avg = nonnull(load_avg),
tooltip = build_cpu_tooltip(overall_pct, per_core_list, freq_mhz, load_avg),
}
-- RAM
local meminfo = {}
local f = io.open("/proc/meminfo")
if f then
for line in f:lines() do
local k, v = line:match("^([^:]+):%s*(%d+)")
if k and v then
meminfo[k] = tonumber(v)
end
end
f:close()
end
local total_kb = meminfo.MemTotal or 0
local avail_kb = meminfo.MemAvailable or 0
local used_kb = math.max(0, total_kb - avail_kb)
local ram_pct = 0
if total_kb > 0 then
ram_pct = math.floor((1 - avail_kb / total_kb) * 100 + 0.5)
end
local swap_total_kb = meminfo.SwapTotal or 0
local swap_free_kb = meminfo.SwapFree or 0
local swap_used_kb = math.max(0, swap_total_kb - swap_free_kb)
local swap_pct = 0
if swap_total_kb > 0 then
swap_pct = math.floor(swap_used_kb / swap_total_kb * 100 + 0.5)
end
local used_fmt = format_bytes(used_kb)
local total_fmt = format_bytes(total_kb)
local avail_fmt = format_bytes(avail_kb)
local swap_used_fmt = format_bytes(swap_used_kb)
local swap_total_fmt = format_bytes(swap_total_kb)
local ram_state = {
percent = ram_pct,
used = used_fmt,
total = total_fmt,
available = avail_fmt,
swap_percent = swap_pct,
swap_used = swap_used_fmt,
swap_total = swap_total_fmt,
speed_mhz = nonnull(ram_speed_mhz),
tooltip = build_ram_tooltip(
ram_pct,
used_fmt,
total_fmt,
avail_fmt,
swap_pct,
swap_used_fmt,
swap_total_fmt,
ram_speed_mhz
),
}
state.cpu = cpu_state
state.ram = ram_state
state.battery = get_battery_state(battery_path)
-- Net status is always refreshed here too, so even with inotify
-- permanently unavailable we still pick up link changes within
-- CPU_INTERVAL seconds.
state.net = check_net_status()
emit()
next_cpu = mono_sec() + CPU_INTERVAL
end
if now >= next_sound then
state.sound = get_sound_state()
emit()
next_sound = mono_sec() + SOUND_INTERVAL
end
-- Poll inotifywait for link-state changes (timeout in ms). If we
-- have no live child right now, still sleep until the next
-- scheduled piece of work (or the next respawn attempt) instead of
-- busy-looping.
local wake_at = math.min(next_cpu, next_sound)
if net_fd == nil then
wake_at = math.min(wake_at, next_inotify_attempt)
end
local until_next = wake_at - mono_sec()
if until_next < 0 then
until_next = 0
end
local timeout_ms = math.floor(until_next * 1000 + 0.5)
local fds = {}
if net_fd ~= nil then
fds[net_fd] = { events = { IN = true } }
end
local nready = poll(fds, timeout_ms)
if net_fd ~= nil and nready and nready > 0 then
local revents = fds[net_fd].revents
if revents and (revents.IN or revents.HUP or revents.ERR) then
local data = unistd.read(net_fd, 8192)
if data and #data > 0 then
-- An actual link-state change: force a full re-probe rather
-- than waiting out the slow-refresh timer, since this is
-- exactly the moment the cached IP/speed could be stale.
state.net = check_net_status(true)
emit()
else
-- Empty read on a "ready" fd means the write end closed, i.e.
-- the inotifywait child exited (crashed, watched path missing,
-- binary not found, etc). Reap it, drop the fd, and don't
-- touch it again until the next backed-off retry; this is
-- the fix for the tight busy-loop: without this branch, poll()
-- would report this dead fd as "ready" forever, on every
-- single iteration, with an effectively-zero timeout.
unistd.close(net_fd)
if inotify_pid then
pcall(posix.wait, inotify_pid)
end
net_fd = nil
inotify_pid = nil
next_inotify_attempt = mono_sec() + INOTIFY_RETRY_INTERVAL
end
end
end
end
end
main()
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