owpengram-server/server-panel.py
2026-07-28 02:21:10 +03:00

839 lines
31 KiB
Python

#!/usr/bin/env python3
"""Interactive TUI control panel for the OwpenGram server.
Wraps the same operations as start-server.sh / start-server.bat (Docker
naming migration, Postgres naming migration, docker compose up, Go build,
launching owpengram-server / owpengram-admin-panel) behind a menu you can
navigate instead of re-running a script from scratch each time.
Starting the server launches both binaries as fully detached background
processes and writes their PIDs to .server_panel.json next to .env; closing
the panel (Exit) does NOT stop them -- only the Stop action does. Reopening
the panel later picks the same PIDs back up and reports live status.
Requires: pip install textual
Run: python server-panel.py
"""
from __future__ import annotations
import json
import os
import platform
import signal
import subprocess
import time
from dataclasses import dataclass
from pathlib import Path
import psutil
from cryptography.hazmat.primitives.serialization import Encoding, PublicFormat, load_pem_private_key
from textual import work
from textual.app import App, ComposeResult
from textual.binding import Binding
from textual.containers import Horizontal, Vertical
from textual.screen import Screen
from textual.widgets import DataTable, Footer, Header, Label, OptionList, ProgressBar, RichLog, Static
from textual.widgets.option_list import Option
IS_WINDOWS = platform.system() == "Windows"
# psutil.cpu_percent()'s first call always returns a meaningless 0.0 baseline
# (it measures against process start); priming it once here means the first
# real reading in the stats timer is already a proper since-last-call delta.
psutil.cpu_percent(interval=None)
ROOT = Path(__file__).resolve().parent
DEPLOY_DIR = ROOT / "deploy"
BIN_DIR = ROOT / "bin"
LOG_DIR = ROOT / "logs"
ENV_FILE = ROOT / ".env"
COMPOSE_FILE = DEPLOY_DIR / "docker-compose.yml"
STATE_FILE = ROOT / ".server_panel.json"
SERVER_EXE = BIN_DIR / ("owpengram-server.exe" if IS_WINDOWS else "owpengram-server")
ADMIN_EXE = BIN_DIR / ("owpengram-admin-panel.exe" if IS_WINDOWS else "owpengram-admin-panel")
SERVER_LOG = LOG_DIR / "owpengram-server.log"
ADMIN_LOG = LOG_DIR / "owpengram-admin-panel.log"
BANNER = r"""
_____ _____ ___ _ _ ___ ___ _ __ __
/ _ \ \ / / _ \ __| \| |/ __| _ \ /_\ | \/ |
| (_) \ \/\/ /| _/ _|| .` | (_ | / / _ \| |\/| |
\___/ \_/\_/ |_| |___|_|\_|\___|_|_\/_/ \_\_| |_|
""".strip("\n")
# --- Process/state management -----------------------------------------------
def load_state() -> dict:
if STATE_FILE.exists():
try:
return json.loads(STATE_FILE.read_text())
except (OSError, json.JSONDecodeError):
return {}
return {}
def save_state(state: dict) -> None:
STATE_FILE.write_text(json.dumps(state))
def pid_alive(pid: int | None) -> bool:
if not pid:
return False
if IS_WINDOWS:
out = subprocess.run(
["tasklist", "/FI", f"PID eq {pid}"],
capture_output=True, text=True,
).stdout
return str(pid) in out
try:
os.kill(pid, 0)
except OSError:
return False
return True
def kill_pid(pid: int | None) -> None:
if not pid:
return
if IS_WINDOWS:
# /T kills the whole process tree, not just this PID -- matters when
# the process was launched via a shell wrapper.
subprocess.run(["taskkill", "/PID", str(pid), "/T", "/F"], capture_output=True)
return
try:
os.killpg(pid, signal.SIGTERM)
except OSError:
try:
os.kill(pid, signal.SIGTERM)
except OSError:
pass
time.sleep(1)
try:
os.killpg(pid, signal.SIGKILL)
except OSError:
try:
os.kill(pid, signal.SIGKILL)
except OSError:
pass
@dataclass
class Status:
server_pid: int | None
server_alive: bool
admin_pid: int | None
admin_alive: bool
containers: list[tuple[str, str | None]]
@property
def running(self) -> bool:
return self.server_alive or self.admin_alive
class ServerManager:
"""Owns the actual start/stop/build/launch mechanics. No Textual
dependency in here on purpose, so it stays easy to reason about /
reuse outside the TUI if that's ever useful."""
def container_status(self, name: str) -> str | None:
"""Returns Docker's own State.Status (running/exited/created/...),
or None if the container doesn't exist at all."""
r = subprocess.run(
["docker", "inspect", "-f", "{{.State.Status}}", name],
capture_output=True, text=True,
)
if r.returncode != 0:
return None
return r.stdout.strip() or None
def status(self) -> Status:
state = load_state()
server_pid = state.get("server_pid")
admin_pid = state.get("admin_pid")
# Falls back to the cached naming decision (or the "owpengram"
# default for a never-started, fresh install) so the container list
# shows something sensible even before Start has ever run.
prefix = self.cached_docker_naming() or state.get("docker_prefix") or "owpengram"
containers = [
(f"{prefix}-{service}", self.container_status(f"{prefix}-{service}"))
for service in ("postgres", "redis")
]
return Status(
server_pid=server_pid,
server_alive=pid_alive(server_pid),
admin_pid=admin_pid,
admin_alive=pid_alive(admin_pid),
containers=containers,
)
# -- naming migrations (interactive, must run with the real terminal) --
#
# Both migrations cache their decision in a plain state file the first
# time they run. Reading that file directly and skipping the subprocess
# (and the app.suspend()/resume dance it needs) whenever a decision is
# already cached keeps suspend() out of the hot path for every ordinary
# Start/Restart -- suspending and resuming Textual's terminal driver
# repeatedly is what was leaving the menu unresponsive until the app was
# fully restarted. It's now only exercised once per machine, the first
# time there's an actual prompt to show.
def cached_docker_naming(self) -> str | None:
state_file = ROOT / ".docker_naming"
if not state_file.exists():
return None
value = state_file.read_text().strip()
return value if value in ("owpengram", "telesrv") else None
def cached_db_naming(self) -> str | None:
state_file = ROOT / ".db_naming"
if not state_file.exists():
return None
value = state_file.read_text().strip()
return value if value in ("owpengram", "telesrv") else None
def resolve_docker_naming(self, run_interactive) -> tuple[str, str]:
if IS_WINDOWS:
cmd = [
"powershell", "-NoProfile", "-ExecutionPolicy", "Bypass",
"-File", str(DEPLOY_DIR / "migrate-docker-naming.ps1"),
]
else:
cmd = [
"bash", str(DEPLOY_DIR / "migrate-docker-naming.sh"),
str(COMPOSE_FILE), str(ROOT / ".docker_naming"),
]
out = run_interactive(cmd)
lines = [l.strip() for l in out.splitlines() if l.strip()]
if len(lines) >= 2:
return lines[0], lines[1]
return "owpengram", "owpengram"
def resolve_db_naming(self, run_interactive, container_name: str) -> None:
if IS_WINDOWS:
cmd = [
"powershell", "-NoProfile", "-ExecutionPolicy", "Bypass",
"-File", str(DEPLOY_DIR / "migrate-db-naming.ps1"),
"-ContainerName", container_name,
]
else:
cmd = [
"bash", str(DEPLOY_DIR / "migrate-db-naming.sh"),
container_name, str(ENV_FILE), str(ROOT / ".db_naming"),
]
run_interactive(cmd)
# -- non-interactive steps (safe to run off the UI thread) --
def docker_compose_up(self, project: str, prefix: str) -> tuple[bool, str]:
env = os.environ.copy()
env["TELESRV_DOCKER_PROJECT"] = project
env["TELESRV_DOCKER_PREFIX"] = prefix
r = subprocess.run(
["docker", "compose", "-f", str(COMPOSE_FILE), "up", "-d"],
cwd=ROOT, env=env, capture_output=True, text=True,
)
return r.returncode == 0, (r.stdout + r.stderr)
def docker_compose_stop(self, project: str, prefix: str) -> None:
env = os.environ.copy()
env["TELESRV_DOCKER_PROJECT"] = project
env["TELESRV_DOCKER_PREFIX"] = prefix
subprocess.run(
["docker", "compose", "-f", str(COMPOSE_FILE), "stop"],
cwd=ROOT, env=env, capture_output=True,
)
def wait_postgres(self, prefix: str, timeout: float = 60) -> bool:
deadline = time.time() + timeout
while time.time() < deadline:
r = subprocess.run(
["docker", "exec", f"{prefix}-postgres", "pg_isready", "-U", "telesrv", "-d", "telesrv"],
capture_output=True,
)
if r.returncode == 0:
return True
time.sleep(2)
return False
def build(self) -> tuple[bool, str]:
BIN_DIR.mkdir(exist_ok=True)
log = []
for out_path, pkg in ((SERVER_EXE, "./cmd/telesrv"), (ADMIN_EXE, "./cmd/telesrv-admin")):
r = subprocess.run(
["go", "build", "-o", str(out_path), pkg],
cwd=ROOT, capture_output=True, text=True,
)
log.append(f"$ go build -o {out_path.name} {pkg}\n{r.stdout}{r.stderr}")
if r.returncode != 0:
return False, "\n".join(log)
return True, "\n".join(log)
def launch(self, exe_path: Path, log_path: Path) -> int:
LOG_DIR.mkdir(exist_ok=True)
logf = open(log_path, "ab")
kwargs: dict = {}
if IS_WINDOWS:
kwargs["creationflags"] = subprocess.CREATE_NEW_PROCESS_GROUP | subprocess.DETACHED_PROCESS
else:
kwargs["start_new_session"] = True
proc = subprocess.Popen(
[str(exe_path)], cwd=ROOT,
stdout=logf, stderr=subprocess.STDOUT, stdin=subprocess.DEVNULL,
**kwargs,
)
logf.close()
return proc.pid
def stop(self) -> None:
state = load_state()
kill_pid(state.get("server_pid"))
kill_pid(state.get("admin_pid"))
project = state.get("docker_project", "owpengram")
prefix = state.get("docker_prefix", "owpengram")
self.docker_compose_stop(project, prefix)
state["server_pid"] = None
state["admin_pid"] = None
save_state(state)
MANAGER = ServerManager()
# --- .env / clipboard / system stats helpers --------------------------------
def read_env_value(key: str) -> str | None:
if not ENV_FILE.exists():
return None
prefix = f"{key}="
for line in ENV_FILE.read_text(encoding="utf-8", errors="replace").splitlines():
line = line.strip()
if line.startswith(prefix):
return line[len(prefix):].strip()
return None
def admin_ui_info() -> tuple[str, str | None] | None:
"""Returns (url, password) for the admin UI, or None if it isn't
configured at all. password is None when TELESRV_ADMIN_UI_PASSWORD is
empty (token-only auth)."""
addr = read_env_value("TELESRV_ADMIN_UI_ADDR")
if not addr:
return None
url = addr if addr.startswith(("http://", "https://")) else f"http://{addr}"
return url, (read_env_value("TELESRV_ADMIN_UI_PASSWORD") or None)
def server_address() -> str | None:
"""The MTProto address clients connect to (advertise IP + listen port).
Present as soon as .env is configured, even before the first Start."""
ip = read_env_value("TELESRV_ADVERTISE_IP")
listen = read_env_value("TELESRV_LISTEN")
if not ip or not listen:
return None
port = listen.rsplit(":", 1)[-1]
if not port.isdigit():
return None
return f"{ip}:{port}"
def server_public_key_pem() -> str | None:
"""The server's RSA public key (PKCS1 "RSA PUBLIC KEY" PEM, the format
patched into client builds), derived from the private key file. That
file is only generated the first time telesrv actually starts, so this
is legitimately absent on a never-started install -- and returns None
rather than raising on a missing/corrupt/unparseable file instead of
crashing the panel over it."""
key_path_value = read_env_value("TELESRV_RSA_KEY") or "data/server_rsa.pem"
key_path = Path(key_path_value)
if not key_path.is_absolute():
key_path = ROOT / key_path
if not key_path.exists():
return None
try:
private_key = load_pem_private_key(key_path.read_bytes(), password=None)
public_pem = private_key.public_key().public_bytes(Encoding.PEM, PublicFormat.PKCS1)
return public_pem.decode("ascii").strip()
except Exception: # noqa: BLE001 - any parse/format issue just means "unavailable"
return None
def copy_to_clipboard(text: str) -> bool:
if IS_WINDOWS:
candidates = [["clip"]]
elif platform.system() == "Darwin":
candidates = [["pbcopy"]]
else:
candidates = [
["xclip", "-selection", "clipboard"],
["xsel", "--clipboard", "--input"],
["wl-copy"],
]
for cmd in candidates:
try:
subprocess.run(cmd, input=text.encode("utf-8"), check=True, capture_output=True)
return True
except (FileNotFoundError, subprocess.CalledProcessError):
continue
return False
def system_stats() -> tuple[float, float, float]:
"""Returns (cpu_percent, ram_percent, disk_percent) for the drive this
project lives on."""
cpu = psutil.cpu_percent(interval=None)
ram = psutil.virtual_memory().percent
disk = psutil.disk_usage(str(ROOT)).percent
return cpu, ram, disk
# --- UI -----------------------------------------------------------------
class CopyButton(Static):
"""A clickable label that copies `value` to the clipboard on click. The
actual value is never shown on screen -- just the label and a "click to
copy" hint (optionally masked with dots for secret-looking fields, purely
cosmetic since nothing is ever displayed either way). value=None renders
as "not available" and isn't clickable -- used before the first Start,
when e.g. the RSA public key file doesn't exist yet."""
def __init__(self, label: str, value: str | None, on_copy_callback, *, masked: bool = False, **kwargs):
super().__init__(**kwargs)
self.label = label
self.value = value
self.masked = masked
self._on_copy_callback = on_copy_callback
def on_mount(self) -> None:
if self.value is None:
self.update(f"{self.label}: [dim]not available[/]")
elif self.masked:
self.update(f"{self.label}: [dim]{'' * 10}[/] [i](click to copy)[/]")
else:
self.update(f"{self.label}: [dim](click to copy)[/]")
def on_click(self, event) -> None:
if self.value is not None:
self._on_copy_callback(self)
class LogTailScreen(Screen):
"""Live-tails one or two log files. Escape/b goes back to the main menu."""
BINDINGS = [
Binding("escape", "back", "Back"),
Binding("b", "back", "Back"),
]
def __init__(self, panes: list[tuple[str, Path]]):
super().__init__()
self._panes = panes
self._offsets: dict[Path, int] = {path: 0 for _, path in panes}
self._logs: dict[Path, RichLog] = {}
def compose(self) -> ComposeResult:
yield Header()
with Horizontal():
for title, path in self._panes:
with Vertical():
yield Label(f" {title} ({path.name}) ")
log = RichLog(highlight=False, markup=False, wrap=True)
self._logs[path] = log
yield log
yield Footer()
def on_mount(self) -> None:
for title, path in self._panes:
self._prime(path)
self.set_interval(0.5, self._poll)
def _prime(self, path: Path) -> None:
# Seed each pane with the tail of the file instead of starting empty.
if not path.exists():
self._logs[path].write("(no logs yet)")
return
size = path.stat().st_size
with open(path, "rb") as f:
f.seek(max(0, size - 8000))
data = f.read()
self._offsets[path] = size
text = data.decode("utf-8", errors="replace")
if text:
self._logs[path].write(text)
def _poll(self) -> None:
for _, path in self._panes:
if not path.exists():
continue
size = path.stat().st_size
offset = self._offsets[path]
if size < offset:
# Log file got rotated/truncated (e.g. new run started).
offset = 0
if size > offset:
with open(path, "rb") as f:
f.seek(offset)
data = f.read()
self._offsets[path] = size
self._logs[path].write(data.decode("utf-8", errors="replace"))
def action_back(self) -> None:
self.app.pop_screen()
class LogPickerScreen(Screen):
BINDINGS = [Binding("escape", "back", "Back")]
def compose(self) -> ComposeResult:
yield Header()
yield OptionList(
Option("owpengram-server logs", id="server"),
Option("owpengram-admin-panel logs", id="admin"),
Option("Both (split view)", id="both"),
Option("Back", id="back"),
)
yield Footer()
def action_back(self) -> None:
self.app.pop_screen()
def on_option_list_option_selected(self, event: OptionList.OptionSelected) -> None:
option_id = event.option.id
if option_id == "server":
self.app.push_screen(LogTailScreen([("owpengram-server", SERVER_LOG)]))
elif option_id == "admin":
self.app.push_screen(LogTailScreen([("owpengram-admin-panel", ADMIN_LOG)]))
elif option_id == "both":
self.app.push_screen(LogTailScreen([
("owpengram-server", SERVER_LOG),
("owpengram-admin-panel", ADMIN_LOG),
]))
else:
self.app.pop_screen()
class MainScreen(Screen):
BINDINGS = [
Binding("1", "start", "Start"),
Binding("2", "stop", "Stop"),
Binding("3", "restart", "Restart"),
Binding("4", "logs", "Logs"),
Binding("q", "quit_panel", "Exit"),
]
def compose(self) -> ComposeResult:
yield Header()
yield Static(BANNER, id="banner")
with Horizontal(id="main-body"):
with Vertical(id="services-panel"):
yield Label("Services", classes="panel-title")
yield DataTable(id="services-table", cursor_type="none")
with Vertical(id="sidebar"):
yield Label("System", classes="panel-title")
yield Label("CPU", id="cpu-label", classes="stat-label")
yield ProgressBar(total=100, id="cpu-bar", show_eta=False)
yield Label("RAM", id="ram-label", classes="stat-label")
yield ProgressBar(total=100, id="ram-bar", show_eta=False)
yield Label("Disk", id="disk-label", classes="stat-label")
yield ProgressBar(total=100, id="disk-bar", show_eta=False)
yield Label("Server", classes="panel-title")
yield CopyButton("Address", server_address(), self._handle_copy_click, id="server-address")
yield CopyButton("Public key", server_public_key_pem(), self._handle_copy_click, masked=True, id="server-public-key")
yield Label("Admin UI", classes="panel-title")
yield Static(id="admin-link")
yield self._admin_password_widget()
yield OptionList(
Option("Start server", id="start"),
Option("Stop server", id="stop"),
Option("Restart server", id="restart"),
Option("View logs", id="logs"),
Option("Exit panel (server keeps running)", id="exit"),
)
yield Footer()
def _admin_password_widget(self) -> Static:
info = admin_ui_info()
password = info[1] if info else None
if password:
return CopyButton("Password", password, self._handle_copy_click, masked=True, id="admin-password")
return Static("Password: [dim]not set (token auth)[/]", id="admin-password")
def _handle_copy_click(self, widget: CopyButton) -> None:
if copy_to_clipboard(widget.value):
self.notify(f"{widget.label} copied to clipboard")
else:
self.notify(f"{widget.label} copy failed", severity="warning")
def on_mount(self) -> None:
self.query_one("#services-table", DataTable).add_columns("Service", "Type", "Status")
self.refresh_status()
self.refresh_stats()
self.refresh_admin_link()
self.set_interval(3, self.refresh_status)
self.set_interval(2, self.refresh_stats)
def refresh_status(self) -> None:
status = MANAGER.status()
table = self.query_one("#services-table", DataTable)
table.clear()
table.add_row(
"owpengram-server", "binary",
"[b green]● RUNNING[/]" if status.server_alive else "[dim]○ stopped[/]",
)
table.add_row(
"owpengram-admin-panel", "binary",
"[b green]● RUNNING[/]" if status.admin_alive else "[dim]○ stopped[/]",
)
for name, state in status.containers:
if state == "running":
cell = "[b green]● RUNNING[/]"
elif state is None:
cell = "[dim]○ not created[/]"
else:
cell = f"[b red]● {state.upper()}[/]"
table.add_row(name, "container", cell)
def refresh_stats(self) -> None:
cpu, ram, disk = system_stats()
self.query_one("#cpu-bar", ProgressBar).update(progress=cpu)
self.query_one("#ram-bar", ProgressBar).update(progress=ram)
self.query_one("#disk-bar", ProgressBar).update(progress=disk)
self.query_one("#cpu-label", Label).update(f"CPU {cpu:5.1f}%")
self.query_one("#ram-label", Label).update(f"RAM {ram:5.1f}%")
self.query_one("#disk-label", Label).update(f"Disk {disk:5.1f}%")
def refresh_admin_link(self) -> None:
info = admin_ui_info()
widget = self.query_one("#admin-link", Static)
if info:
url, _ = info
widget.update(f'[link="{url}"]{url}[/link]')
else:
widget.update("[dim]not configured[/]")
def on_option_list_option_selected(self, event: OptionList.OptionSelected) -> None:
option_id = event.option.id
if option_id == "start":
self.action_start()
elif option_id == "stop":
self.action_stop()
elif option_id == "restart":
self.action_restart()
elif option_id == "logs":
self.action_logs()
elif option_id == "exit":
self.action_quit_panel()
def action_logs(self) -> None:
self.app.push_screen(LogPickerScreen())
def action_quit_panel(self) -> None:
self.app.exit()
def _run_interactive(self, cmd: list[str]) -> str:
"""Runs an interactive helper (the naming migration scripts) with the
real terminal handed back to it via suspend(), capturing only its
stdout (the scripts write prompts to stderr specifically so this
works). Must be called from the main thread -- suspend() manipulates
the app's terminal driver directly."""
with self.app.suspend():
proc = subprocess.run(cmd, cwd=ROOT, stdout=subprocess.PIPE, text=True)
return proc.stdout or ""
def _resolve_naming(self) -> tuple[str, str]:
"""Resolves Docker/DB naming, preferring the cached decision so
repeated Start/Restart never touches app.suspend() once a machine
has answered the prompt once. suspend()/resume is only exercised the
very first time, when there's an actual decision to make."""
cached = MANAGER.cached_docker_naming()
if cached is not None:
project, prefix = cached, cached
else:
self.notify("Resolving Docker naming...")
project, prefix = MANAGER.resolve_docker_naming(self._run_interactive)
if prefix == "owpengram" and MANAGER.cached_db_naming() is None:
MANAGER.resolve_db_naming(self._run_interactive, f"{prefix}-postgres")
return project, prefix
def action_start(self) -> None:
status = MANAGER.status()
if status.running:
self.notify("Already running", severity="warning")
return
if not ENV_FILE.exists():
self.notify(".env not found — copy .env.example to .env and configure it first", severity="error")
return
self.query_one(OptionList).disabled = True
self._begin_start()
def _begin_start(self) -> None:
"""Runs on the main thread: naming resolution may need suspend()."""
try:
project, prefix = self._resolve_naming()
except Exception as exc: # noqa: BLE001 - never leave the menu stuck
self.notify(f"Naming resolution failed: {exc}", severity="error", timeout=10)
self._unlock_menu()
return
self._start_rest(project, prefix)
@work(thread=True, exclusive=True)
def _start_rest(self, project: str, prefix: str) -> None:
try:
self.app.call_from_thread(self.notify, "Starting Docker infrastructure...")
ok, out = MANAGER.docker_compose_up(project, prefix)
if not ok:
self.app.call_from_thread(self.notify, f"docker compose up failed:\n{out[-500:]}", severity="error", timeout=10)
return
self.app.call_from_thread(self.notify, "Waiting for PostgreSQL...")
if not MANAGER.wait_postgres(prefix):
self.app.call_from_thread(self.notify, "PostgreSQL not ready after 60s", severity="error")
return
self.app.call_from_thread(self.notify, "Building binaries...")
ok, out = MANAGER.build()
if not ok:
self.app.call_from_thread(self.notify, f"Build failed:\n{out[-500:]}", severity="error", timeout=10)
return
server_pid = MANAGER.launch(SERVER_EXE, SERVER_LOG)
admin_pid = MANAGER.launch(ADMIN_EXE, ADMIN_LOG)
save_state({
"server_pid": server_pid,
"admin_pid": admin_pid,
"docker_project": project,
"docker_prefix": prefix,
})
self.app.call_from_thread(self.notify, "Server started")
except Exception as exc: # noqa: BLE001 - never leave the menu stuck
self.app.call_from_thread(self.notify, f"Start failed: {exc}", severity="error", timeout=10)
finally:
self.app.call_from_thread(self._unlock_menu)
def _unlock_menu(self) -> None:
option_list = self.query_one(OptionList)
option_list.disabled = False
# Disabling a widget blurs it, and Textual doesn't automatically
# restore focus when it's re-enabled: the number-key/q bindings
# (screen-level) kept working regardless, but arrow-key navigation,
# Enter-to-select and mouse clicks on the list all silently stopped
# doing anything until something explicitly refocused it.
option_list.focus()
self.refresh_status()
def action_stop(self) -> None:
status = MANAGER.status()
if not status.running:
self.notify("Not running", severity="warning")
return
self.query_one(OptionList).disabled = True
self.notify("Stopping...")
self._stop_worker()
@work(thread=True, exclusive=True)
def _stop_worker(self) -> None:
try:
MANAGER.stop()
self.app.call_from_thread(self.notify, "Stopped")
except Exception as exc: # noqa: BLE001 - never leave the menu stuck
self.app.call_from_thread(self.notify, f"Stop failed: {exc}", severity="error", timeout=10)
finally:
self.app.call_from_thread(self._unlock_menu)
def action_restart(self) -> None:
self.query_one(OptionList).disabled = True
self._restart_worker()
@work(thread=True, exclusive=True)
def _restart_worker(self) -> None:
try:
status = MANAGER.status()
if status.running:
self.app.call_from_thread(self.notify, "Restarting: stopping...")
MANAGER.stop()
except Exception as exc: # noqa: BLE001 - never leave the menu stuck
self.app.call_from_thread(self.notify, f"Restart (stop phase) failed: {exc}", severity="error", timeout=10)
self.app.call_from_thread(self._unlock_menu)
return
# Hand off to the main thread: starting back up needs to run there
# (naming resolution may call suspend()), and _start_rest takes over
# unlocking the menu once it's done.
self.app.call_from_thread(self._begin_start)
class ServerPanelApp(App):
TITLE = "OwpenGram Server Panel"
CSS = """
#banner {
width: 100%;
/* content-align centers the whole multi-line block as one unit;
text-align would instead justify each line independently by its own
width, which staggers hand-aligned ASCII art like this banner. */
content-align: center middle;
color: cyan;
text-style: bold;
margin: 1 1 0 1;
}
#main-body {
height: 1fr;
margin: 1 1 0 1;
}
.panel-title {
text-style: bold;
color: $accent;
margin-bottom: 1;
}
#services-panel {
width: 2fr;
height: 100%;
border: round $accent;
padding: 1 2;
margin-right: 1;
}
#services-table {
height: 1fr;
}
#sidebar {
width: 1fr;
height: 100%;
border: round $accent;
padding: 1 2;
overflow-y: auto;
}
.stat-label {
margin-top: 1;
}
#sidebar ProgressBar {
width: 100%;
}
#admin-link {
margin-top: 1;
}
#admin-password, #server-address, #server-public-key {
margin-top: 1;
height: auto;
}
LogTailScreen Horizontal {
height: 1fr;
}
LogTailScreen Vertical {
width: 1fr;
height: 1fr;
}
RichLog {
border: round $accent;
height: 1fr;
}
"""
def on_mount(self) -> None:
self.push_screen(MainScreen())
if __name__ == "__main__":
ServerPanelApp().run()