fix xmrig pause
This commit is contained in:
@@ -63,6 +63,7 @@
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./services/monero.nix
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./services/p2pool.nix
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./services/xmrig.nix
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./services/xmrig-auto-pause.nix
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./services/graphing-calculator.nix
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@@ -1,6 +1,5 @@
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{
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imports = [
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./llama-cpp.nix
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./llama-cpp-xmrig-pause.nix
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];
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}
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@@ -1,123 +0,0 @@
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#!/usr/bin/env python3
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"""
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Pause xmrig while llama-cpp is processing inference requests.
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Checks if the llama-server process is actively using CPU by reading
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/proc/<pid>/stat. When CPU usage exceeds the threshold, stops xmrig.
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When CPU drops below threshold for GRACE_PERIOD seconds, restarts xmrig.
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"""
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import glob
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import os
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import subprocess
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import sys
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import time
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POLL_INTERVAL = int(os.environ.get("POLL_INTERVAL", "3"))
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GRACE_PERIOD = float(os.environ.get("GRACE_PERIOD", "10"))
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# CPU percentage (per-core) above which llama-server is considered busy.
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# Idle llama-server uses ~0% CPU; active inference saturates multiple cores.
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CPU_THRESHOLD = float(os.environ.get("CPU_THRESHOLD", "50"))
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def log(msg):
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print(f"[llama-cpp-xmrig-pause] {msg}", file=sys.stderr, flush=True)
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def find_llama_pid():
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"""Find the PID of the llama-server process."""
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for path in glob.glob("/proc/[0-9]*/comm"):
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try:
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with open(path) as f:
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if f.read().strip() == "llama-server":
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return int(path.split("/")[2])
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except (OSError, ValueError):
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continue
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return None
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def get_cpu_times(pid):
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"""Read utime + stime from /proc/<pid>/stat. Returns total ticks or None."""
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try:
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with open(f"/proc/{pid}/stat") as f:
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fields = f.read().split(")")[-1].split()
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# fields[11] = utime, fields[12] = stime (0-indexed after ')')
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return int(fields[11]) + int(fields[12])
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except (OSError, IndexError, ValueError):
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return None
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def systemctl(action, unit):
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result = subprocess.run(
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["systemctl", action, unit],
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capture_output=True,
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text=True,
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)
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if result.returncode != 0:
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log(f"systemctl {action} {unit} failed (rc={result.returncode}): {result.stderr.strip()}")
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return result.returncode == 0
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def main():
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xmrig_paused = False
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idle_since = None
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prev_ticks = None
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prev_time = None
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hz = os.sysconf("SC_CLK_TCK")
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log(f"Starting: poll={POLL_INTERVAL}s grace={GRACE_PERIOD}s threshold={CPU_THRESHOLD}%")
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while True:
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pid = find_llama_pid()
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if pid is None:
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# llama-server not running
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idle_since = None
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prev_ticks = None
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prev_time = None
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time.sleep(POLL_INTERVAL)
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continue
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ticks = get_cpu_times(pid)
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now = time.monotonic()
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if ticks is None or prev_ticks is None or prev_time is None:
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prev_ticks = ticks
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prev_time = now
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time.sleep(POLL_INTERVAL)
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continue
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dt = now - prev_time
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if dt <= 0:
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prev_ticks = ticks
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prev_time = now
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time.sleep(POLL_INTERVAL)
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continue
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# CPU% = (delta_ticks / hz) / delta_seconds * 100
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cpu_pct = ((ticks - prev_ticks) / hz) / dt * 100
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prev_ticks = ticks
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prev_time = now
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busy = cpu_pct > CPU_THRESHOLD
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if busy:
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idle_since = None
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if not xmrig_paused:
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log(f"llama-server busy ({cpu_pct:.0f}% CPU) — stopping xmrig")
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if systemctl("stop", "xmrig"):
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xmrig_paused = True
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else:
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if xmrig_paused:
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if idle_since is None:
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idle_since = now
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elif now - idle_since >= GRACE_PERIOD:
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log(f"llama-server idle ({cpu_pct:.0f}% CPU) past grace period — starting xmrig")
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if systemctl("start", "xmrig"):
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xmrig_paused = False
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idle_since = None
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time.sleep(POLL_INTERVAL)
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if __name__ == "__main__":
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main()
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@@ -4,19 +4,15 @@
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pkgs,
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...
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}:
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lib.mkIf config.services.llama-cpp.enable {
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systemd.services.llama-cpp-xmrig-pause = {
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description = "Pause xmrig while llama-cpp is processing requests";
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after = [
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"llama-cpp.service"
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"xmrig.service"
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];
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lib.mkIf config.services.xmrig.enable {
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systemd.services.xmrig-auto-pause = {
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description = "Auto-pause xmrig when other services need CPU";
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after = [ "xmrig.service" ];
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wantedBy = [ "multi-user.target" ];
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serviceConfig = {
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ExecStart = "${pkgs.python3}/bin/python3 ${./llama-cpp-xmrig-pause.py}";
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ExecStart = "${pkgs.python3}/bin/python3 ${./xmrig-auto-pause.py}";
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Restart = "always";
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RestartSec = "10s";
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# Needs /proc access (default) and AF_UNIX for systemctl
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NoNewPrivileges = true;
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ProtectHome = true;
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ProtectSystem = "strict";
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@@ -28,8 +24,8 @@ lib.mkIf config.services.llama-cpp.enable {
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};
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environment = {
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POLL_INTERVAL = "3";
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GRACE_PERIOD = "10";
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CPU_THRESHOLD = "50";
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GRACE_PERIOD = "15";
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CPU_THRESHOLD = "5";
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};
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};
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}
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131
services/xmrig-auto-pause.py
Normal file
131
services/xmrig-auto-pause.py
Normal file
@@ -0,0 +1,131 @@
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#!/usr/bin/env python3
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"""
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Auto-pause xmrig when other services need CPU.
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Monitors non-nice CPU usage from /proc/stat. Since xmrig runs at Nice=19,
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its CPU time lands in the 'nice' column and is excluded from the metric.
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When real workload (user + system + irq + softirq) exceeds the threshold,
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stops xmrig. When it drops below threshold for GRACE_PERIOD seconds,
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restarts xmrig.
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This replaces per-service pause scripts with a single general-purpose
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monitor that handles any CPU-intensive workload (gitea workers, llama-cpp
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inference, etc.) without needing to know about specific processes.
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Why scheduler priority alone isn't enough:
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Nice=19 / SCHED_IDLE only affects which thread gets the next time slice.
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RandomX's 2MB-per-thread scratchpad (24MB across 12 threads) pollutes
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the shared 32MB L3 cache, and its memory access pattern saturates DRAM
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bandwidth. Other services run slower even though they aren't denied CPU
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time. The only fix is to stop xmrig entirely when real work is happening.
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"""
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import os
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import subprocess
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import sys
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import time
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POLL_INTERVAL = int(os.environ.get("POLL_INTERVAL", "3"))
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GRACE_PERIOD = float(os.environ.get("GRACE_PERIOD", "15"))
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# Percentage of total CPU ticks that non-nice processes must use to trigger
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# a pause. On a 12-thread system, one fully loaded core ≈ 8.3% of total.
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# Default 5% catches anything using more than ~60% of a single core.
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CPU_THRESHOLD = float(os.environ.get("CPU_THRESHOLD", "5"))
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def log(msg):
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print(f"[xmrig-auto-pause] {msg}", file=sys.stderr, flush=True)
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def read_cpu_ticks():
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"""Read CPU tick counters from /proc/stat.
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Returns (total_ticks, real_work_ticks) where real_work excludes the
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'nice' column (xmrig) and idle/iowait.
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"""
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with open("/proc/stat") as f:
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parts = f.readline().split()
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# cpu user nice system idle iowait irq softirq steal
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user, nice, system, idle, iowait, irq, softirq, steal = (
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int(x) for x in parts[1:9]
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)
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total = user + nice + system + idle + iowait + irq + softirq + steal
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real_work = user + system + irq + softirq
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return total, real_work
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def is_active(unit):
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"""Check if a systemd unit is currently active."""
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result = subprocess.run(
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["systemctl", "is-active", "--quiet", unit],
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capture_output=True,
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)
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return result.returncode == 0
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def systemctl(action, unit):
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result = subprocess.run(
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["systemctl", action, unit],
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capture_output=True,
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text=True,
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)
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if result.returncode != 0:
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log(f"systemctl {action} {unit} failed (rc={result.returncode}): {result.stderr.strip()}")
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return result.returncode == 0
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def main():
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paused_by_us = False
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idle_since = None
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prev_total = None
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prev_work = None
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log(f"Starting: poll={POLL_INTERVAL}s grace={GRACE_PERIOD}s threshold={CPU_THRESHOLD}%")
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while True:
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total, work = read_cpu_ticks()
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if prev_total is None:
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prev_total = total
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prev_work = work
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time.sleep(POLL_INTERVAL)
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continue
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dt = total - prev_total
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if dt <= 0:
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prev_total = total
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prev_work = work
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time.sleep(POLL_INTERVAL)
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continue
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real_work_pct = ((work - prev_work) / dt) * 100
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prev_total = total
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prev_work = work
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busy = real_work_pct > CPU_THRESHOLD
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if busy:
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idle_since = None
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if not paused_by_us:
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# Only claim ownership if xmrig is actually running.
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# If something else stopped it (e.g. UPS battery hook),
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# don't interfere — we'd wrongly restart it later.
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if is_active("xmrig.service"):
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log(f"Real workload detected ({real_work_pct:.1f}% CPU) — stopping xmrig")
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if systemctl("stop", "xmrig.service"):
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paused_by_us = True
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else:
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if paused_by_us:
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if idle_since is None:
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idle_since = time.monotonic()
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elif time.monotonic() - idle_since >= GRACE_PERIOD:
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log(f"Workload ended ({real_work_pct:.1f}% CPU) past grace period — starting xmrig")
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if systemctl("start", "xmrig.service"):
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paused_by_us = False
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idle_since = None
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time.sleep(POLL_INTERVAL)
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if __name__ == "__main__":
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main()
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@@ -1,162 +0,0 @@
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{
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pkgs,
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...
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}:
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let
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script = ../services/llama-cpp/llama-cpp-xmrig-pause.py;
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python = pkgs.python3;
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# SmolLM-135M Q2_K: 85MB, modern GGUFv3, generates ~30 tok/s on one CPU
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# thread — slow enough that a 200-token request keeps the process busy for
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# several seconds, fast enough that tests don't crawl.
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tinyModel = pkgs.fetchurl {
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url = "https://huggingface.co/QuantFactory/SmolLM-135M-GGUF/resolve/main/SmolLM-135M.Q2_K.gguf";
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hash = "sha256-DX46drPNJILNba21xfY2tyE0/yPWgOhz43gJdeSYKh4=";
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};
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in
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pkgs.testers.runNixOSTest {
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name = "llama-cpp-xmrig-pause";
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nodes.machine =
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{ pkgs, ... }:
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{
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environment.systemPackages = [
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pkgs.python3
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pkgs.procps
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pkgs.curl
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pkgs.llama-cpp
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];
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# Mock xmrig as a simple sleep process that can be stopped/started.
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systemd.services.xmrig = {
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description = "Mock xmrig miner";
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serviceConfig = {
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ExecStart = "${pkgs.coreutils}/bin/sleep infinity";
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Type = "simple";
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};
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wantedBy = [ "multi-user.target" ];
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};
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};
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testScript = ''
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import time
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PORT = 18088
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MODEL = "${tinyModel}"
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PYTHON = "${python}/bin/python3"
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SCRIPT = "${script}"
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# Tuned for test speed while remaining realistic.
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# POLL_INTERVAL=1 keeps detection latency low.
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# GRACE_PERIOD=5 is long enough to verify "stays stopped" but short enough
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# that the full test completes in ~2 minutes.
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# CPU_THRESHOLD=10 is low because the VM has limited cores and the model
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# is small — but any active inference still saturates a core.
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POLL_INTERVAL = "1"
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GRACE_PERIOD = "5"
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CPU_THRESHOLD = "10"
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infer_counter = 0
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def send_completion(n_predict=200):
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"""Fire a completion request in the background via a transient systemd unit."""
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global infer_counter
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infer_counter += 1
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name = f"infer-{infer_counter}"
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machine.succeed(
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f"systemd-run --unit={name} --property=Type=exec "
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f"curl -sf -X POST http://127.0.0.1:{PORT}/completion "
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f"-H 'Content-Type: application/json' "
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f"-d '{{\"prompt\": \"Once upon a time in a land far away there lived\", \"n_predict\": {n_predict}}}'"
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)
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return name
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def wait_inference_done(unit_name, timeout=60):
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"""Wait for a background inference request to finish."""
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machine.wait_until_fails(
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f"systemctl is-active {unit_name}",
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timeout=timeout,
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)
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start_all()
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machine.wait_for_unit("multi-user.target")
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machine.wait_for_unit("xmrig.service")
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with subtest("Start llama-server"):
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machine.succeed(
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f"systemd-run --unit=llama-server "
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# Single inference thread to maximise per-core CPU%, which is
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# what the monitor measures. Keeps token generation slow enough
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# (~30 tok/s) that a 200-token request sustains load for seconds.
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f"llama-server --model {MODEL} --port {PORT} --ctx-size 512 -t 1 -np 1"
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)
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machine.wait_until_succeeds(
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f"curl -sf http://127.0.0.1:{PORT}/health",
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timeout=30,
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)
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machine.succeed("pgrep -x llama-server")
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with subtest("Start pause monitor"):
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machine.succeed(
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f"systemd-run --unit=llama-xmrig-pause "
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f"--setenv=POLL_INTERVAL={POLL_INTERVAL} "
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f"--setenv=GRACE_PERIOD={GRACE_PERIOD} "
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f"--setenv=CPU_THRESHOLD={CPU_THRESHOLD} "
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f"{PYTHON} {SCRIPT}"
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)
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# The monitor needs two consecutive polls to compute a CPU delta.
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# Wait for baseline to stabilise.
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time.sleep(3)
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with subtest("xmrig stays running while llama-server is idle"):
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machine.succeed("systemctl is-active xmrig")
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with subtest("xmrig stopped during prompt processing"):
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unit = send_completion(n_predict=200)
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machine.wait_until_fails("systemctl is-active xmrig", timeout=20)
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with subtest("xmrig remains stopped during grace period after inference ends"):
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wait_inference_done(unit)
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# Inference just finished. The monitor will need 1-2 polls to detect
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# idle, then the grace period starts. Checking 2s after completion
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# is well within the 5s grace window.
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time.sleep(2)
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machine.fail("systemctl is-active xmrig")
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with subtest("xmrig resumes after grace period expires"):
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# Already idle since previous subtest. Grace period (5s) plus
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# detection delay (~2 polls) means xmrig should restart within ~8s.
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machine.wait_until_succeeds("systemctl is-active xmrig", timeout=15)
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with subtest("Sequential prompts do not cause xmrig flapping"):
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# First prompt — stop xmrig
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unit1 = send_completion(n_predict=200)
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machine.wait_until_fails("systemctl is-active xmrig", timeout=20)
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wait_inference_done(unit1)
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# Brief idle gap — shorter than grace period
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time.sleep(2)
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# Second prompt arrives before grace period expires, resetting it
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unit2 = send_completion(n_predict=200)
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time.sleep(3)
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# xmrig must still be stopped
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machine.fail("systemctl is-active xmrig")
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wait_inference_done(unit2)
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machine.wait_until_succeeds("systemctl is-active xmrig", timeout=15)
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with subtest("xmrig stays stopped during sustained inference"):
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unit = send_completion(n_predict=500)
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machine.wait_until_fails("systemctl is-active xmrig", timeout=20)
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# Stay busy longer than the grace period to prove continuous
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# activity keeps xmrig stopped indefinitely.
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time.sleep(8)
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machine.fail("systemctl is-active xmrig")
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|
||||
wait_inference_done(unit)
|
||||
machine.wait_until_succeeds("systemctl is-active xmrig", timeout=15)
|
||||
'';
|
||||
}
|
||||
@@ -30,7 +30,9 @@ in
|
||||
|
||||
# llama-cpp tests
|
||||
llamaCppAnnotationsTest = handleTest ./llama-cpp-annotations.nix;
|
||||
llamaCppXmrigPauseTest = handleTest ./llama-cpp-xmrig-pause.nix;
|
||||
|
||||
# xmrig auto-pause test
|
||||
xmrigAutoPauseTest = handleTest ./xmrig-auto-pause.nix;
|
||||
# ntfy alerts test
|
||||
ntfyAlertsTest = handleTest ./ntfy-alerts.nix;
|
||||
|
||||
|
||||
121
tests/xmrig-auto-pause.nix
Normal file
121
tests/xmrig-auto-pause.nix
Normal file
@@ -0,0 +1,121 @@
|
||||
{
|
||||
pkgs,
|
||||
...
|
||||
}:
|
||||
let
|
||||
script = ../services/xmrig-auto-pause.py;
|
||||
python = pkgs.python3;
|
||||
in
|
||||
pkgs.testers.runNixOSTest {
|
||||
name = "xmrig-auto-pause";
|
||||
|
||||
nodes.machine =
|
||||
{ pkgs, ... }:
|
||||
{
|
||||
environment.systemPackages = [
|
||||
pkgs.python3
|
||||
pkgs.procps
|
||||
];
|
||||
|
||||
# Mock xmrig as a nice'd sleep process that can be stopped/started.
|
||||
systemd.services.xmrig = {
|
||||
description = "Mock xmrig miner";
|
||||
serviceConfig = {
|
||||
ExecStart = "${pkgs.coreutils}/bin/sleep infinity";
|
||||
Type = "simple";
|
||||
Nice = 19;
|
||||
};
|
||||
wantedBy = [ "multi-user.target" ];
|
||||
};
|
||||
};
|
||||
|
||||
testScript = ''
|
||||
import time
|
||||
|
||||
PYTHON = "${python}/bin/python3"
|
||||
SCRIPT = "${script}"
|
||||
|
||||
# Tuned for test VMs (1-2 cores).
|
||||
# POLL_INTERVAL=1 keeps detection latency low.
|
||||
# GRACE_PERIOD=5 is long enough to verify "stays stopped" but short
|
||||
# enough that the full test completes in reasonable time.
|
||||
# CPU_THRESHOLD=10 catches a single busy-loop on a 1-2 core VM.
|
||||
POLL_INTERVAL = "1"
|
||||
GRACE_PERIOD = "5"
|
||||
CPU_THRESHOLD = "10"
|
||||
|
||||
def start_cpu_load(name):
|
||||
"""Start a non-nice CPU burn as a transient systemd unit."""
|
||||
machine.succeed(
|
||||
f"systemd-run --unit={name} --property=Type=exec "
|
||||
f"bash -c 'while true; do :; done'"
|
||||
)
|
||||
|
||||
def stop_cpu_load(name):
|
||||
machine.succeed(f"systemctl stop {name}")
|
||||
|
||||
start_all()
|
||||
machine.wait_for_unit("multi-user.target")
|
||||
machine.wait_for_unit("xmrig.service")
|
||||
|
||||
with subtest("Start auto-pause monitor"):
|
||||
machine.succeed(
|
||||
f"systemd-run --unit=xmrig-auto-pause "
|
||||
f"--setenv=POLL_INTERVAL={POLL_INTERVAL} "
|
||||
f"--setenv=GRACE_PERIOD={GRACE_PERIOD} "
|
||||
f"--setenv=CPU_THRESHOLD={CPU_THRESHOLD} "
|
||||
f"{PYTHON} {SCRIPT}"
|
||||
)
|
||||
# Monitor needs two consecutive polls to compute a CPU delta.
|
||||
time.sleep(3)
|
||||
|
||||
with subtest("xmrig stays running while system is idle"):
|
||||
machine.succeed("systemctl is-active xmrig")
|
||||
|
||||
with subtest("xmrig stopped when CPU load appears"):
|
||||
start_cpu_load("cpu-load")
|
||||
machine.wait_until_fails("systemctl is-active xmrig", timeout=20)
|
||||
|
||||
with subtest("xmrig remains stopped during grace period after load ends"):
|
||||
stop_cpu_load("cpu-load")
|
||||
# Load just stopped. Grace period is 5s. Check at 2s — well within.
|
||||
time.sleep(2)
|
||||
machine.fail("systemctl is-active xmrig")
|
||||
|
||||
with subtest("xmrig resumes after grace period expires"):
|
||||
# Already idle since previous subtest. Grace period (5s) plus
|
||||
# detection delay (~2 polls) means xmrig should restart within ~8s.
|
||||
machine.wait_until_succeeds("systemctl is-active xmrig", timeout=15)
|
||||
|
||||
with subtest("Intermittent load does not cause flapping"):
|
||||
# First load — stop xmrig
|
||||
start_cpu_load("cpu-load-1")
|
||||
machine.wait_until_fails("systemctl is-active xmrig", timeout=20)
|
||||
stop_cpu_load("cpu-load-1")
|
||||
|
||||
# Brief idle gap — shorter than grace period
|
||||
time.sleep(2)
|
||||
|
||||
# Second load arrives before grace period expires
|
||||
start_cpu_load("cpu-load-2")
|
||||
time.sleep(3)
|
||||
|
||||
# xmrig must still be stopped
|
||||
machine.fail("systemctl is-active xmrig")
|
||||
|
||||
stop_cpu_load("cpu-load-2")
|
||||
machine.wait_until_succeeds("systemctl is-active xmrig", timeout=15)
|
||||
|
||||
with subtest("Sustained load keeps xmrig stopped"):
|
||||
start_cpu_load("cpu-load-3")
|
||||
machine.wait_until_fails("systemctl is-active xmrig", timeout=20)
|
||||
|
||||
# Stay busy longer than the grace period to prove continuous
|
||||
# activity keeps xmrig stopped indefinitely.
|
||||
time.sleep(8)
|
||||
machine.fail("systemctl is-active xmrig")
|
||||
|
||||
stop_cpu_load("cpu-load-3")
|
||||
machine.wait_until_succeeds("systemctl is-active xmrig", timeout=15)
|
||||
'';
|
||||
}
|
||||
Reference in New Issue
Block a user