Files
NexusOS/management/ncp.py
T
jonandClaude Opus 4.8 97d7c3cb14 fix(ncp): find Ollama on PATH, not only the bundled copy
'ncp doctor' reported a missing Ollama binary on Windows, where winget installs
it to %LOCALAPPDATA%\Programs and on PATH rather than into the repo; the same
assumption made 'ncp models install' refuse to run there. Adds ollama_bin()
mirroring _ollama_bin() in ollama_manager.py.

Also renames wait_for_port's early message to READY - 'already running' for a
service the same command just started reads like a stale process.

Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
2026-07-22 15:49:18 -05:00

758 lines
29 KiB
Python

#!/usr/bin/env python3
"""ncp - the NexusOS management CLI, one implementation for Linux and Windows.
This replaces the logic that lived in management/nexus-cli.sh. That script was
bash + pkill + fuser + /proc, so the Windows box had no `ncp` at all - the same
split that made bin/install.sh rot until it was rsyncing from a path retired
months earlier. Same fix as bin/sync.py: the portable half is Python, and the
per-platform pieces are small and explicit.
nexus-cli.sh is now a two-line wrapper, so `ncp`, launch_nexus.sh,
bin/restore-linux.sh, controlpanel.py, nexus-popup.py and nexus-app.sh all keep
calling what they always called.
psutil does the process work (cmdlines, pattern sweeps, port owners). It is
declared in requirements-base.txt AND requirements-windows.txt, so both boxes have
it - but it is imported lazily so `ncp backup`/`restore` still run before the
venv exists, exactly as they did when they shelled out to sync.py.
"""
from __future__ import annotations
import json
import os
import shutil
import subprocess
import sys
import time
import urllib.request
from pathlib import Path
ROOT = Path(__file__).resolve().parent.parent
PID_DIR = ROOT / "runtime" / "pids"
LOG_DIR = ROOT / "runtime"
FRONTEND_DIR = ROOT / "interface" / "web"
OLLAMA_BIN = ROOT / "ollama" / "bin" / ("ollama.exe" if os.name == "nt" else "ollama")
OLLAMA_MODELS_DIR = ROOT / "models"
WINDOWS = os.name == "nt"
PYTHON = ROOT / "Promethean" / ("Scripts/python.exe" if WINDOWS else "bin/python3")
PID_DIR.mkdir(parents=True, exist_ok=True)
LOG_DIR.mkdir(parents=True, exist_ok=True)
# The output carries em-dashes and check marks (matching what nexus-cli.sh
# printed). On Windows a redirected stdout defaults to cp1252, which raises
# UnicodeEncodeError on both - so pin UTF-8 rather than degrade the output.
for _stream in (sys.stdout, sys.stderr):
try:
_stream.reconfigure(encoding="utf-8", errors="replace")
except (AttributeError, ValueError):
pass
# -- small helpers -------------------------------------------------------------
def http_ok(url: str, timeout: float = 1.0) -> bool:
"""True if the URL answers at all. Any HTTP status counts - a 404 still
proves something is listening, which is all the port checks care about."""
try:
urllib.request.urlopen(url, timeout=timeout).read(1)
return True
except urllib.error.HTTPError:
return True
except Exception:
return False
def ollama_bin() -> str | None:
"""The bundled binary if we have one, else whatever is on PATH.
Only Linux ships a copy in the repo (bin/fetch-ollama.sh); on Windows the
installer gets Ollama from winget, which puts it in %LOCALAPPDATA%\\Programs
and on PATH. Checking only the bundled path made `ncp doctor` report a red
"Ollama binary missing" on every Windows box, and made `ncp models install`
refuse to run there at all. Mirrors _ollama_bin() in ollama_manager.py."""
if OLLAMA_BIN.exists():
return str(OLLAMA_BIN)
return shutil.which("ollama")
def npm() -> str | None:
"""npm, resolving through nvm. The bash version sourced ~/.nvm/nvm.sh; a
non-login shell has neither, so fall back to globbing the nvm install."""
found = shutil.which("npm") # resolves npm.cmd on Windows
if found:
return found
versions = sorted((Path.home() / ".nvm" / "versions" / "node").glob("*/bin/npm"))
return str(versions[-1]) if versions else None
def _psutil():
try:
import psutil
return psutil
except ImportError:
sys.exit("psutil is missing - run ./install.sh (or install-windows.ps1) to rebuild the venv.")
# -- services ------------------------------------------------------------------
class Service:
def __init__(self, key, label, port, cwd, patterns, argv=None):
self.key, self.label, self.port = key, label, port
self.cwd, self.patterns, self._argv = cwd, patterns, argv
self.pid_file = PID_DIR / f"{key}.pid"
self.log_file = LOG_DIR / f"{key}.log"
@property
def url(self) -> str:
return f"http://localhost:{self.port}/"
def argv(self):
return self._argv() if callable(self._argv) else self._argv
def _uvicorn(app: str, port: int):
# No --reload. It is a dev-loop flag: uvicorn's reloader runs a supervisor
# that spawns the real server as a CHILD, so every service became two
# processes - and on Windows that child, spawned from a parent with no
# console, got handed a brand new console WINDOW. `ncp web` popped two black
# terminals for what should have been a silent start. launch_nexus.sh still
# passes --reload for the Linux dev loop, where a visible console is the
# point; this launcher is the one users run.
return [str(PYTHON), "-m", "uvicorn", app, "--host", "0.0.0.0",
"--port", str(port)]
SERVICES = {
"memory": Service("memory", "NEXUS MEMORY SERVICE", 8001, ROOT,
["uvicorn synapse.memory"],
lambda: _uvicorn("synapse.memory.service:app", 8001)),
"backend": Service("backend", "NEXUS BACKEND SERVICE", 8000, ROOT,
["uvicorn synapse.main"],
lambda: _uvicorn("synapse.main:sio_app", 8000)),
"frontend": Service("frontend", "NEXUS FRONTEND SERVICE", 5173, FRONTEND_DIR,
["vite --host", "npm run dev"],
lambda: [npm(), "run", "dev", "--", "--host", "0.0.0.0"]),
}
def read_pid(svc: Service):
try:
return int(svc.pid_file.read_text().strip())
except (OSError, ValueError):
return None
def alive(pid) -> bool:
ps = _psutil()
return pid is not None and ps.pid_exists(pid)
def pid_is_ours(pid, patterns) -> bool:
"""True only if the live PID's command line matches one of the service
patterns. PID files outlive reboots and the OS recycles the number onto an
unrelated process - often a desktop-session one - so a bare liveness check
is not enough. TERMing a recycled PID can log the user out."""
ps = _psutil()
try:
cmd = " ".join(ps.Process(pid).cmdline())
except Exception:
return False
return any(p in cmd for p in patterns)
def launch(svc: Service) -> None:
pid = read_pid(svc)
if alive(pid) and pid_is_ours(pid, svc.patterns):
return
argv = svc.argv()
if argv[0] is None:
print(f" {svc.label}: npm not found - install Node, or run ./install.sh")
return
svc.log_file.write_text("")
with open(svc.log_file, "ab") as log:
# Detach so the service outlives this process, on both platforms.
# CREATE_NO_WINDOW, not DETACHED_PROCESS: detached means the process has
# NO console, and Windows then gives a console window to any console
# program it starts in turn. CREATE_NO_WINDOW gives it a console that is
# never shown, which its children inherit - so nothing flashes up.
kwargs = ({"creationflags": subprocess.CREATE_NEW_PROCESS_GROUP
| getattr(subprocess, "CREATE_NO_WINDOW", 0)}
if WINDOWS else {"start_new_session": True})
proc = subprocess.Popen(argv, cwd=str(svc.cwd), stdout=log,
stderr=subprocess.STDOUT, stdin=subprocess.DEVNULL,
**kwargs)
svc.pid_file.write_text(str(proc.pid))
def check(svc: Service) -> bool:
pid = read_pid(svc)
if alive(pid):
print(f"{svc.label} STARTED")
return True
print(f"{svc.label} FAILED TO START")
try:
tail = svc.log_file.read_text(errors="replace").splitlines()[-8:]
for line in tail:
print(f" {line}")
except OSError:
pass
svc.pid_file.unlink(missing_ok=True)
return False
def wait_for_port(svc: Service, timeout: int = 30) -> bool:
if http_ok(svc.url):
# "READY", not "already running": `ncp start` launches memory and backend
# together and only then waits on each, so by the time the backend's turn
# comes it is normally up - and reporting "already running" for a service
# this same command started two seconds ago reads like a stale process.
print(f" {svc.label} READY (:{svc.port})")
return True
for _ in range(timeout):
time.sleep(1)
if http_ok(svc.url):
print(f"{svc.label} STARTED")
return True
print(f" {svc.label} timed out after {timeout}s")
return check(svc)
def wait_for_port_close(port: int, timeout: int = 15) -> bool:
for _ in range(timeout):
if not http_ok(f"http://localhost:{port}/"):
return True
time.sleep(1)
return False
def kill_matching(patterns, force=False) -> int:
"""The pkill -f sweep: catches reparented grandchildren (npm -> sh -> node
vite), uvicorn --reload workers, and instances started outside this CLI.
Returns how many processes it signalled, so callers can stay quiet when
there was nothing to kill."""
ps = _psutil()
me = os.getpid()
hit = 0
for proc in ps.process_iter(["pid", "cmdline"]):
if proc.info["pid"] == me:
continue
cmd = " ".join(proc.info["cmdline"] or [])
if any(p in cmd for p in patterns):
try:
proc.kill() if force else proc.terminate()
hit += 1
except Exception:
pass
return hit
def kill_port(port: int) -> bool:
"""Whatever holds the port IS the service - this is the backstop that makes
stop reliable regardless of process-tree shape or PID-file accuracy."""
ps = _psutil()
killed = False
try:
conns = ps.net_connections(kind="inet")
except Exception:
return False
for conn in conns:
if conn.laddr and conn.laddr.port == port and conn.status == "LISTEN" and conn.pid:
try:
ps.Process(conn.pid).kill()
killed = True
except Exception:
pass
return killed
def stop_service(svc: Service) -> bool:
"""Three escalating passes, with the PORT as the source of truth for
whether the service is actually down."""
pid = read_pid(svc)
if pid is not None:
if alive(pid) and pid_is_ours(pid, svc.patterns):
ps = _psutil()
try:
proc = ps.Process(pid)
for child in proc.children(recursive=True):
try:
child.terminate()
except Exception:
pass
proc.terminate()
except Exception:
pass
svc.pid_file.unlink(missing_ok=True)
kill_matching(svc.patterns)
if not wait_for_port_close(svc.port):
kill_port(svc.port)
kill_matching(svc.patterns, force=True)
wait_for_port_close(svc.port)
if http_ok(svc.url):
print(f"{svc.label} STILL RUNNING (:{svc.port}) — try 'ncp kill'")
return False
print(f"{svc.label} STOPPED")
return True
# -- ollama --------------------------------------------------------------------
def start_ollama() -> None:
"""Driven through the backend endpoint (the path the control panel uses)
rather than launching the binary, because OllamaManager owns model and GPU
selection. Requires the backend to be up."""
print("Starting OLLAMA...")
req = urllib.request.Request("http://localhost:8000/ollama/start", method="POST")
try:
urllib.request.urlopen(req, timeout=30).read(1)
print("NEXUS OLLAMA STARTED")
except Exception:
print(" OLLAMA start request failed (backend not reachable on :8000)")
def stop_ollama() -> None:
"""Prefer the backend endpoint for a clean OllamaManager shutdown; if the
backend is already down, kill `ollama serve` directly so it never lingers
holding VRAM/RAM. Must run BEFORE the backend is torn down."""
req = urllib.request.Request("http://localhost:8000/ollama/stop", method="POST")
try:
urllib.request.urlopen(req, timeout=5).read(1)
print("NEXUS OLLAMA STOPPED")
return
except Exception:
pass
# Silent when there was nothing to stop - the bash version only announced a
# direct kill if `pgrep ollama serve` actually matched, and claiming to have
# stopped a service that was never running is worse than saying nothing.
if kill_matching(["ollama serve"]):
print("NEXUS OLLAMA STOPPED (direct)")
# -- commands ------------------------------------------------------------------
def cmd_start(target) -> None:
if target in ("--memory", "-m"):
launch(SERVICES["memory"]); wait_for_port(SERVICES["memory"])
elif target in ("--backend", "-b"):
launch(SERVICES["backend"]); wait_for_port(SERVICES["backend"])
elif target in ("--frontend", "-f"):
launch(SERVICES["frontend"]); wait_for_port(SERVICES["frontend"])
elif target in ("--ai", "-a"):
start_ollama()
elif target in (None, "", "all"):
# Memory + backend in parallel, both ready before the frontend starts.
launch(SERVICES["memory"])
launch(SERVICES["backend"])
wait_for_port(SERVICES["memory"])
wait_for_port(SERVICES["backend"])
launch(SERVICES["frontend"])
wait_for_port(SERVICES["frontend"])
else:
show_help()
def cmd_stop(target) -> None:
if target in ("--memory", "-m"):
stop_service(SERVICES["memory"])
elif target in ("--backend", "-b"):
stop_ollama(); stop_service(SERVICES["backend"])
elif target in ("--frontend", "-f"):
stop_service(SERVICES["frontend"])
elif target in (None, "", "all"):
stop_service(SERVICES["memory"])
stop_ollama()
stop_service(SERVICES["backend"])
stop_service(SERVICES["frontend"])
else:
show_help()
def cmd_kill() -> None:
print("Force-killing all Nexus processes...")
for port, name in ((8000, "SYNAPSE"), (8001, "MEMORY"),
(5173, "INTERFACE"), (11434, "OLLAMA")):
if kill_port(port):
print(f" KILLED: {name} (:{port})")
else:
print(f" NOT RUNNING: {name} (:{port})")
kill_matching(["uvicorn synapse", "npm run dev", "vite --host", "ollama serve"],
force=True)
for pid_file in PID_DIR.glob("*.pid"):
pid_file.unlink(missing_ok=True)
print("Done.")
def cmd_status() -> None:
print("Nexus Service Status:\n")
def one(name, svc):
pid = read_pid(svc)
if alive(pid):
print(f" {name}: RUNNING (PID {pid})")
elif http_ok(svc.url):
print(f" {name}: RUNNING (port :{svc.port}, PID stale — consider ncp kill)")
else:
print(f" {name}: STOPPED")
print("Backend:")
one("Synapse ", SERVICES["backend"])
one("Memory service", SERVICES["memory"])
print("\nFrontend:")
one("Vite ", SERVICES["frontend"])
print("\nModel server:")
running = http_ok("http://localhost:11434/api/tags")
print(f" Ollama : {'RUNNING (:11434)' if running else 'STOPPED'}")
def _tail(path: Path, n: int) -> None:
try:
for line in path.read_text(errors="replace").splitlines()[-n:]:
print(line)
except OSError:
print(f" (no log at {path})")
LOG_HEADINGS = {"memory": "MEMORY SERVICE", "backend": "BACKEND", "frontend": "FRONTEND"}
def cmd_logs(target) -> None:
named = {"--frontend": "frontend", "-f": "frontend",
"--backend": "backend", "-b": "backend",
"--memory": "memory", "-m": "memory"}
if target in named:
key = named[target]
print(f"=== {LOG_HEADINGS[key]} LOGS ===")
_tail(SERVICES[key].log_file, 50)
elif target in (None, "", "all"):
for i, key in enumerate(("memory", "backend", "frontend")):
if i:
print()
print(f"=== {LOG_HEADINGS[key]} LOGS ===")
_tail(SERVICES[key].log_file, 30)
else:
print(f"Unknown logs target: '{target}'")
print("Usage: ncp logs [frontend|backend|memory|all]")
def cmd_doctor() -> None:
def mark(ok, good, bad):
print(f" {'✔' if ok else '✘'} {good if ok else bad}")
print("Running Nexus Diagnostics...\n")
print("Checking directories...")
mark(ROOT.is_dir(), "Nexus root found", "Missing Nexus root")
mark(FRONTEND_DIR.is_dir(), "Frontend directory found", "Missing frontend directory")
print("\nChecking Python venv...")
if PYTHON.exists():
ver = subprocess.run([str(PYTHON), "--version"], capture_output=True,
text=True).stdout.strip()
mark(True, f"Promethean venv found ({ver})", "")
else:
mark(False, "", f"Promethean venv missing at {PYTHON}")
print("\nChecking Node & npm...")
def version(exe):
if not exe:
return ""
try:
return subprocess.run([exe, "-v"], capture_output=True, text=True).stdout.strip()
except OSError:
return ""
node, npm_path = shutil.which("node"), npm()
mark(bool(node), f"Node installed ({version(node)})", "Node missing")
mark(bool(npm_path), f"npm installed ({version(npm_path)})", "npm missing")
mark((FRONTEND_DIR / "node_modules").is_dir(),
"Frontend node_modules installed",
"Frontend node_modules missing (run: ncp update)")
print("\nChecking Uvicorn...")
uvicorn_ok = subprocess.run([str(PYTHON), "-m", "uvicorn", "--version"],
capture_output=True).returncode == 0
mark(uvicorn_ok, "Uvicorn installed", "Uvicorn missing")
def importable(stmt):
return subprocess.run([str(PYTHON), "-c", stmt], cwd=str(ROOT),
capture_output=True).returncode == 0
print("\nChecking backend service...")
mark(importable("from synapse.main import sio_app"),
"Backend module importable", "Backend module failed to import")
print("\nChecking memory service...")
mark((ROOT / "synapse" / "memory").is_dir(),
"Memory module directory found", "Missing memory module directory")
mark(importable("from synapse.memory.service import app"),
"Memory service module importable", "Memory service module failed to import")
mark(os.access(ROOT / "synapse" / "memory", os.W_OK),
"Memory database directory writable", "Memory database directory not writable")
print("\nChecking Ollama...")
_obin = ollama_bin()
mark(bool(_obin), f"Ollama binary found ({_obin})",
f"Ollama binary missing (not at {OLLAMA_BIN}, not on PATH)")
mark(OLLAMA_MODELS_DIR.is_dir(), f"Ollama models directory found ({OLLAMA_MODELS_DIR})",
f"Ollama models directory missing at {OLLAMA_MODELS_DIR}")
print()
cmd_status()
def cmd_update() -> None:
print("Updating Project Nexus...\n")
print("Skipping git pull — update only refreshes dependencies.\n")
# Same overlay choice sync.py makes, so update and restore cannot install
# different PyTorch builds on the same host.
sys.path.insert(0, str(ROOT / "bin"))
import importlib.util
spec = importlib.util.spec_from_file_location("sync", ROOT / "bin" / "sync.py")
sync = importlib.util.module_from_spec(spec)
spec.loader.exec_module(sync)
req = sync.requirements()
print(f"Updating backend Python dependencies ({req})...")
subprocess.run([str(PYTHON), "-m", "pip", "install", "-r", req], cwd=str(ROOT))
print("\nUpdating frontend dependencies...")
npm_path = npm()
if npm_path and FRONTEND_DIR.is_dir():
subprocess.run([npm_path, "install"], cwd=str(FRONTEND_DIR))
else:
print("npm or frontend directory missing — skipping npm install.")
print("\nRunning post-update diagnostics...")
cmd_doctor()
def cmd_clean() -> None:
print("Cleaning Nexus runtime files...\n")
print("Removing PID files...")
for f in PID_DIR.glob("*.pid"):
f.unlink(missing_ok=True)
print("Removing logs...")
for f in LOG_DIR.glob("*.log"):
f.unlink(missing_ok=True)
print("Removing Python cache...")
for d in ROOT.rglob("__pycache__"):
shutil.rmtree(d, ignore_errors=True)
print("Removing Node/Vite cache...")
for d in FRONTEND_DIR.rglob(".vite"):
shutil.rmtree(d, ignore_errors=True)
print("\nCleanup complete.")
MODEL_CATALOG = [
("gemma3:1b", "~815 MB", "Google Gemma 3 — fast, lightweight"),
("gemma3:4b", "~3.3 GB", "Google Gemma 3 — balanced"),
("gemma3:12b", "~8.1 GB", "Google Gemma 3 — capable"),
("llama3.2:1b", "~1.3 GB", "Meta Llama 3.2 — fast, lightweight"),
("llama3.2:3b", "~2.0 GB", "Meta Llama 3.2 — compact, capable"),
("llama3.1:8b", "~4.7 GB", "Meta Llama 3.1 — strong general use"),
("mistral:latest", "~4.1 GB", "Mistral 7B — solid all-rounder"),
("mistral-nemo", "~7.1 GB", "Mistral Nemo 12B — strong reasoning"),
("qwen2.5:3b", "~2.0 GB", "Alibaba Qwen 2.5 — great at code"),
("qwen2.5:7b", "~4.7 GB", "Alibaba Qwen 2.5 — strong coder"),
("phi4-mini", "~2.5 GB", "Microsoft Phi-4 Mini — efficient"),
("phi4:14b", "~8.9 GB", "Microsoft Phi-4 — strong reasoning"),
("deepseek-r1:7b", "~4.7 GB", "DeepSeek R1 — reasoning model"),
("deepseek-r1:14b", "~9.0 GB", "DeepSeek R1 — strong reasoning"),
("codellama:7b", "~3.8 GB", "Meta Code Llama — code focused"),
("nomic-embed-text", "~274 MB", "Text embeddings model"),
]
def cmd_models(action, name) -> None:
if action == "list":
if not http_ok("http://localhost:11434/api/tags"):
print("Ollama is not running. Start the backend first with: ncp start -b")
return
raw = urllib.request.urlopen("http://localhost:11434/api/tags", timeout=5).read()
models = json.loads(raw).get("models", [])
print("Installed models:\n")
if not models:
print(" No models installed.")
return
for m in models:
mb = m["size"] // 1024 // 1024
size = f"{mb / 1024:.1f} GB" if mb >= 1024 else f"{mb} MB"
print(f" {m['name']:<35} {size}")
elif action in ("available", "search"):
print("Available models (via Ollama library):\n")
print(f" {'MODEL':<30} {'SIZE':<10} DESCRIPTION")
print(f" {'-----':<30} {'----':<10} -----------")
for model, size, desc in MODEL_CATALOG:
print(f" {model:<30} {size:<10} {desc}")
print("\nInstall any model with: ncp models install <model>")
print("Browse more at: https://ollama.com/library")
elif action == "install":
if not name:
print("Usage: ncp models install <model>")
print("Run 'ncp models available' to see options.")
return
obin = ollama_bin()
if not obin:
print(f"Ollama binary not found at {OLLAMA_BIN}, and no 'ollama' on PATH")
return
print(f"Pulling '{name}' into {OLLAMA_MODELS_DIR} ...\n")
subprocess.run([obin, "pull", name],
env={**os.environ, "OLLAMA_MODELS": str(OLLAMA_MODELS_DIR)})
print("\nDone. Run 'ncp models list' to verify.")
else:
print("Usage: ncp models <list|available|install <model>>")
def sync_py(*args) -> int:
"""sync.py is stdlib-only, so system python works before the venv exists."""
py = str(PYTHON) if PYTHON.exists() else sys.executable
return subprocess.run([py, str(ROOT / "bin" / "sync.py"), *args]).returncode
def cmd_restore(flag) -> int:
if flag in ("-c", "--claude", "check"):
return sync_py("restore", "--check") # dry run: no prompt, changes nothing
print("This pulls the latest backup from Gitea and rebuilds the environment")
print("(venv, npm, theme, panel). Local commits must be pushed or stashed first.")
if input("Continue? [y/N] ").strip().lower() != "y":
print("Restore cancelled.")
return 0
return sync_py("restore")
def cmd_web() -> int:
"""Per-platform UI launcher. On Linux nexus-app.sh already raises an existing
window, acts as a viewer when the stack is up, and only stops services it
started. Windows uses the pywebview window launch_nexus.ps1 opens."""
if WINDOWS:
if not http_ok(SERVICES["backend"].url):
launch(SERVICES["memory"])
launch(SERVICES["backend"])
wait_for_port(SERVICES["backend"])
return subprocess.run([str(PYTHON), str(ROOT / "bin" / "nexus_window.py")]).returncode
return subprocess.run([str(ROOT / "management" / "nexus-app.sh")]).returncode
def show_help() -> None:
print("""Nexus Command Tree
Usage: ncp <command> [options]
Commands:
panel Launch the Nexus Control Panel (tkinter)
web Open the web interface (starts the stack if needed)
chat <message> Send a message, stream the reply
memory list List memory facts
add <text> Add a fact (--section <name>)
rm <id> Delete a fact by id
playbook list List playbooks (* = active)
show <id> Print a playbook's goal + instructions
history [query] Recent conversations (optional keyword)
start Start ALL Nexus services (memory + backend + frontend)
--memory, -m Start only the memory service
--frontend,-f Start only the frontend
--backend, -b Start only the backend
--ai, -a Start the AI (Ollama) — manual; not started by default
stop Stop ALL Nexus services
--memory, -m Stop only the memory service
--frontend,-f Stop only the frontend
--backend, -b Stop only the backend
kill Force-kill all Nexus processes by port (nuclear option)
refresh Restart all services
status Show service status
logs Show logs for all services
--memory, -m Memory service logs
--frontend,-f Frontend logs
--backend, -b Backend logs
doctor Run Nexus diagnostics
update Update Nexus dependencies
clean Remove runtime files and caches
models
list List installed models
available Show models available to install
install <name> Pull a model into Nexus
backup Backup Nexus to Gitea (git commit + push)
backup -f, full Backup + snapshot live desktop wiring/notes
backup -c Dry run: what a backup would commit/push
restore Restore Nexus from Gitea (git pull + rebuild)
restore -c Dry run: what a restore would apply
help, -h Show this help message""")
def main(argv) -> int:
cmd = argv[0] if argv else ""
rest = argv[1:]
arg = rest[0] if rest else None
if cmd in ("help", "-h", ""):
show_help()
elif cmd == "panel":
return subprocess.run([str(PYTHON), str(ROOT / "management" / "controlpanel.py")]).returncode
elif cmd == "web":
return cmd_web()
elif cmd in ("chat", "memory", "playbook", "history"):
return subprocess.run([str(PYTHON), str(ROOT / "management" / "nexus_api.py"),
cmd, *rest]).returncode
elif cmd == "start":
cmd_start(arg)
elif cmd == "stop":
cmd_stop(arg)
elif cmd == "refresh":
cmd_stop(None)
cmd_start(None)
elif cmd == "kill":
cmd_kill()
elif cmd == "status":
cmd_status()
elif cmd == "logs":
cmd_logs(arg)
elif cmd == "doctor":
cmd_doctor()
elif cmd == "update":
cmd_update()
elif cmd == "clean":
cmd_clean()
elif cmd == "nvidia-reqs":
return subprocess.run([str(PYTHON), str(ROOT / "bin" / "gen-nvidia-reqs.py")]).returncode
elif cmd == "backup":
if arg in ("-f", "full"):
return sync_py("backup", "--full")
if arg in ("-c", "--claude", "check"):
return sync_py("backup", "--check")
if arg in (None, ""):
return sync_py("backup")
print("Usage: ncp backup [-f|full|-c]")
elif cmd == "restore":
if arg in (None, "", "-f", "full", "-c", "--claude", "check"):
return cmd_restore(arg)
print("Usage: ncp restore [-c]")
elif cmd == "models":
cmd_models(arg, rest[1] if len(rest) > 1 else None)
else:
print(f"Unknown Nexus command: '{cmd}'")
print("Use 'ncp help' for available commands.")
return 0
if __name__ == "__main__":
try:
sys.exit(main(sys.argv[1:]))
except KeyboardInterrupt:
# Ctrl+C is how you quit `ncp web` - it waits on the UI window. Without
# this it printed a six-frame traceback ending in WaitForSingleObject,
# which reads as a crash rather than "you pressed Ctrl+C". 130 is the
# conventional exit status for SIGINT.
print()
sys.exit(130)