erplibre/script/todo/todo.py
Mathieu Benoit babe69dbf7 [IMP] script todo: QEMU — commande « Tester une VM » (ouvre Odoo en navigateur CLI)
Nouvelle entrée [10] dans « Gérer » du menu QEMU/KVM : 🧪 Tester une VM.
Elle liste les VM, demande laquelle, résout son IP puis ouvre
http://IP:8069 (Odoo) dans un navigateur web EN LIGNE DE COMMANDE choisi
par l'utilisateur.

- _qemu_test_vm : résolution d'IP (_qemu_vm_ip), lancement du navigateur,
  message d'aide si la page ne s'affiche pas (Odoo pas démarré / réseau).
- _qemu_choose_cli_browser : liste les navigateurs CLI installés et laisse
  choisir ; si aucun, propose d'en installer un (réutilise CLI_BROWSERS /
  INSTALLABLE_BROWSERS / browser_install_command de qemu_install_monitor).
- « Lister les images » passe de [10] à [11] ; les entrées de config
  suivent à 12+ (branche else inchangée via la liste `real`).

Validé : rendu du menu, choix du navigateur ([2]->elinks, vide->w3m).

Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
2026-07-30 03:17:58 +00:00

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#!/usr/bin/env python3
# © 2021-2026 TechnoLibre (http://www.technolibre.ca)
# License AGPL-3.0 or later (http://www.gnu.org/licenses/agpl)
import configparser
import datetime
import getpass
import inspect
import json
import logging
import os
import re
import shlex
import shutil
import subprocess
import sys
import time
import xml.etree.ElementTree as ET
import zipfile
new_path = os.path.normpath(
os.path.join(os.path.dirname(__file__), "..", "..")
)
sys.path.append(new_path)
from script.config import config_file
from script.execute import execute
from script.todo.database_manager import DatabaseManager
from script.todo.kdbx_manager import KdbxManager
from script.todo.todo_i18n import lang_is_configured, set_lang, t
from script.todo.version_manager import get_odoo_version
ERROR_LOG_PATH = ".erplibre.error.txt"
VENV_ERPLIBRE = ".venv.erplibre"
ENABLE_CRASH = False
CRASH_E = None
# Support mobile ERPLibre
ANDROID_DIR = "android"
MOBILE_HOME_PATH = "./mobile/erplibre_home_mobile"
STRINGS_FILE = os.path.join(
MOBILE_HOME_PATH, ANDROID_DIR, "app/src/main/res/values/strings.xml"
)
GRADLE_FILE = os.path.join(MOBILE_HOME_PATH, ANDROID_DIR, "app/build.gradle")
try:
import click
import dotenv
import humanize
import openai
import todo_file_browser
# import urwid
# TODO implement rich for beautiful print and table
# import rich
import todo_upgrade
from pykeepass import PyKeePass
except ModuleNotFoundError as e:
humanize = None
ENABLE_CRASH = True
CRASH_E = e
if not ENABLE_CRASH:
print(t("Importation success!"))
logging.basicConfig(
format=(
"%(asctime)s,%(msecs)d %(levelname)-8s [%(filename)s:%(lineno)d]"
" %(message)s"
),
datefmt="%Y-%m-%d:%H:%M:%S",
level=logging.INFO,
)
_logger = logging.getLogger(__name__)
CONFIG_FILE = "./script/todo/todo.json"
CONFIG_OVERRIDE_FILE = "./private/todo/todo.json"
LOGO_ASCII_FILE = "./script/todo/logo_ascii.txt"
class TODO:
def __init__(self):
self.dir_path = None
self.selected_file_path = None
self.config_file = config_file.ConfigFile()
self.execute = execute.Execute()
self.kdbx_manager = KdbxManager(self.config_file)
self.db_manager = DatabaseManager(self.execute, self.fill_help_info)
def _ask_language(self):
if not lang_is_configured():
print()
print("Choisir la langue / Choose language:")
print("[1] Francais")
print("[2] English")
choice = ""
while choice not in ("1", "2"):
choice = input("Select / Choisir : ").strip()
if choice == "1":
set_lang("fr")
else:
set_lang("en")
def _change_language(self):
print()
print(t("Choose language / Choisir la langue") + ":")
print(f"[1] {t('French')}")
print(f"[2] {t('English')}")
print(f"[0] {t('Back')}")
choice = ""
while choice not in ("0", "1", "2"):
choice = input(t("Select: ")).strip()
if choice == "0":
return False
elif choice == "1":
set_lang("fr")
else:
set_lang("en")
print(t("Language changed to: English"))
def run(self):
with open(self.config_file.get_logo_ascii_file_path()) as my_file:
print(my_file.read())
self._ask_language()
print(t("Opening TODO ..."))
print(f"🤖 {t('=> Enter your choice by number and press Enter!')}")
help_info = f"""{self._menu_header()}
[1] {t("Execute")}
[2] {t("Install")}
[3] {t("Question")}
[4] {t("Fork - Open TODO in a new tab")}
[5] {t("Navigation telemetry (TUI)")}
[0] {t("Quit")}
"""
while True:
try:
status = click.prompt(help_info)
except NameError:
print("Do")
print(f"source ./{VENV_ERPLIBRE}/bin/activate && make")
sys.exit(1)
except ImportError:
print("Do")
print(f"source ./{VENV_ERPLIBRE}/bin/activate && make")
sys.exit(1)
except click.exceptions.Abort:
sys.exit(0)
print()
if status == "0":
break
elif status == "1":
self.prompt_execute()
elif status == "2":
self.prompt_install()
elif status == "3":
self.execute_prompt_ia()
elif status == "4":
# cmd = (
# f"gnome-terminal --tab -- bash -c 'source"
# f" ./{VENV_ERPLIBRE}/bin/activate;make todo'"
# )
cmd = "make todo"
self.execute.exec_command_live(cmd, source_erplibre=True)
elif status == "5":
self._todo_telemetry_tui()
# elif status == "3" or status == "install":
# print("install")
else:
print(t("Command not found !"))
print(status)
# manipuler()
def execute_prompt_ia(self):
while True:
help_info = f"""{self._menu_header()}
[0] {t("Back")}
{t("Write your question ")}"""
status = click.prompt(help_info)
print()
if status == "0":
return
kp = self.kdbx_manager.get_kdbx()
if not kp:
return
config_name = self.config_file.get_config_value(
["kdbx_config", "openai", "kdbx_key"]
)
entry = kp.find_entries_by_title(config_name, first=True)
client = openai.OpenAI(api_key=entry.password)
prompt_update = status
completion = client.chat.completions.create(
model="gpt-4o",
messages=[{"role": "user", "content": prompt_update}],
)
print(completion.choices[0].message.content)
print()
def prompt_execute(self):
help_info = f"""{self._menu_header()}
── {t("Development")} ──
[1] {t("Code - Developer tools")}
[2] {t("Config - Configuration file management")}
[3] {t("Run - Execute and install an instance")}
[4] {t("Test - Test an Odoo module")}
[5] {t("Process - Execution tools")}
── {t("Data")} ──
[6] {t("Database - Database tools")}
── {t("Sources & documentation")} ──
[7] {t("Git - Git tools")}
[8] {t("Update - Update all developed staging source code")}
[9] {t("Doc - Documentation search")}
── {t("AI & automation")} ──
[10] {t("GPT code - AI assistant tools")}
[11] {t("Automation - Demonstration of developed features")}
── {t("Deployment, network & security")} ──
[12] {t("Deploy - Deploy ERPLibre locally")}
[13] {t("Network - Network tools")}
[14] {t("Security - Dependency security audit")}
── {t("Preferences")} ──
[15] {t("Language - Change language / Changer la langue")}
[0] {t("Back")}
"""
while True:
status = click.prompt(help_info)
print()
if status == "0":
return
elif status == "1":
status = self.prompt_execute_code()
if status is not False:
return
elif status == "2":
status = self.prompt_execute_config()
if status is not False:
return
elif status == "3":
status = self.prompt_execute_instance()
if status is not False:
return
elif status == "4":
status = self.prompt_execute_test()
if status is not False:
return
elif status == "5":
status = self.prompt_execute_process()
if status is not False:
return
elif status == "6":
status = self.prompt_execute_database()
if status is not False:
return
elif status == "7":
status = self.prompt_execute_git()
if status is not False:
return
elif status == "8":
status = self.prompt_execute_update()
if status is not False:
return
elif status == "9":
status = self.prompt_execute_doc()
if status is not False:
return
elif status == "10":
status = self.prompt_execute_gpt_code()
if status is not False:
return
elif status == "11":
status = self.prompt_execute_function()
if status is not False:
return
elif status == "12":
status = self.prompt_execute_deploy()
if status is not False:
return
elif status == "13":
status = self.prompt_execute_network()
if status is not False:
return
elif status == "14":
status = self.prompt_execute_security()
if status is not False:
return
elif status == "15":
status = self._change_language()
if status is not False:
return
else:
print(t("Command not found !"))
def prompt_install(self):
print("Detect first installation from code source.")
first_installation_input = (
input(
"💬 First system installation? This will process system installation"
" before (Y/N): "
)
.strip()
.lower()
)
if self._is_yes(first_installation_input):
cmd = "./script/version/update_env_version.py --install"
self.execute.exec_command_live(cmd, source_erplibre=True)
print("Wait after OS installation before continue.")
# First detect pycharm, need to be open before installation and close to increase speed
has_pycharm = False
has_pycharm_community = False
result = subprocess.run(
["which", "pycharm"],
stdout=subprocess.PIPE,
stderr=subprocess.PIPE,
text=True,
)
if result.returncode == 0:
has_pycharm = True
else:
result = subprocess.run(
["which", "pycharm-community"],
stdout=subprocess.PIPE,
stderr=subprocess.PIPE,
text=True,
)
has_pycharm_community = result.returncode == 0
if (has_pycharm or has_pycharm_community) and not os.path.exists(
".idea"
):
pycharm_configuration_input = (
input("💬 Open Pycharm? (Y/N): ").strip().lower()
)
if self._is_yes(pycharm_configuration_input):
pycharm_bin = "pycharm" if has_pycharm else "pycharm-community"
cmd = f"cd {os.getcwd()} && {pycharm_bin} ./"
self.execute.exec_command_live(
cmd,
source_erplibre=False,
single_source_erplibre=False,
new_window=True,
)
print(
"👹 WAIT and Close Pycharm when processing is done before continue"
" this guide."
)
# TODO detect last version supported
# cmd_intern = "./script/install/install_erplibre.sh"
# TODO maybe update q to only install erplibre from install_locally
# TODO problem installing with q, the script depend on odoo
key_i = 0
commands_begin = {
"q": (
"q",
"q: ERPLibre only with system python without Odoo",
"./script/install/install_erplibre.sh",
),
"w": (
"w",
"w: Install all Odoo version with ERPLibre",
"make install_odoo_all_version",
),
"m": (
"m",
"m: ERPLibre with mobile home",
"./mobile/install_and_run.sh",
),
"0": (
"0",
f"0: {t('Quit')}",
),
}
commands_end = {}
versions, installed_versions, odoo_installed_version = (
get_odoo_version()
)
for version_info in versions[::-1]:
key_i += 1
key_s = str(key_i)
label = f"{key_s}: Odoo {version_info.get('odoo_version')}"
odoo_version = f"odoo{version_info.get('odoo_version')}"
if odoo_version in installed_versions:
label += " - Installed"
if odoo_version == odoo_installed_version:
label += " - Actual"
if version_info.get("Default"):
label += " - Default"
if version_info.get("is_deprecated"):
label += " - Deprecated"
erplibre_version = version_info.get("erplibre_version")
commands_begin[key_s] = (
key_s,
label,
f"./script/version/update_env_version.py --erplibre_version {erplibre_version} --install_dev",
)
# Add final command
install_commands = {**commands_begin, **commands_end}
# Show command
odoo_version_input = ""
while odoo_version_input not in install_commands:
if odoo_version_input:
print(
f"{t('Error, cannot understand value')} '{odoo_version_input}'"
)
str_input_dyn_odoo_version = (
f"💬 {t('Choose a version:')}\n\t"
+ "\n\t".join([a[1] for a in install_commands.values()])
+ f"\n{t('Select: ')}"
)
odoo_version_input = (
input(str_input_dyn_odoo_version).strip().lower()
)
if odoo_version_input == "0":
return
cmd_intern = install_commands.get(odoo_version_input)[2]
# For numbered version selections, offer extra modules sub-menu
if odoo_version_input.isdigit():
extra_choices = {
"1": (
"1",
f"1: {t('Standard install (without extra modules)')}",
),
"2": (
"2",
f"2: {t('Install with extra modules (CybroOdoo - large, slow)')}",
),
"0": ("0", f"0: {t('Back')}"),
}
extra_input = ""
while extra_input not in extra_choices:
if extra_input:
print(
f"{t('Error, cannot understand value')} '{extra_input}'"
)
str_extra = (
f"💬 {t('Install type:')}\n\t"
+ "\n\t".join([a[1] for a in extra_choices.values()])
+ f"\n{t('Select: ')}"
)
extra_input = input(str_extra).strip()
if extra_input == "0":
return
if extra_input == "2":
cmd_intern = cmd_intern + " --with_extra"
print(f"{t('Will execute:')}\n{cmd_intern}")
# TODO use external script to detect terminal to use on system
# TODO check script open_terminal_code_generator.sh
# cmd_extern = f"gnome-terminal -- bash -c '{cmd_intern};bash'"
try:
subprocess.run(
cmd_intern, shell=True, executable="/bin/bash", check=True
)
except subprocess.CalledProcessError as e:
print(
f"{t('The Bash script failed with return code')} {e.returncode}."
)
print("Wait after installation and open projects by terminal.")
print("make open_terminal")
self.restart_script(str(e))
def execute_from_configuration(
self, instance, exec_run_db=False, ignore_makefile=False
):
# exec_run_db need argument database
kdbx_key = instance.get("kdbx_key")
odoo_user = instance.get("user")
odoo_password = instance.get("password")
if kdbx_key:
extra_cmd_web_login = self.kdbx_manager.get_extra_command_user(
kdbx_key
)
elif odoo_user and odoo_password:
extra_cmd_web_login = (
f" --default_email_auth {odoo_user} --default_password_auth"
f" '{odoo_password}'"
)
else:
extra_cmd_web_login = ""
makefile_cmd = instance.get("makefile_cmd")
if makefile_cmd and not ignore_makefile:
status = self.execute.exec_command_live(
f"make {makefile_cmd}",
source_erplibre=False,
single_source_erplibre=True,
)
if status:
_logger.error(
f"Status {status} - exit execute_from_configuration"
)
return
if exec_run_db:
db_name = instance.get("database")
self.prompt_execute_selenium_and_run_db(
db_name, extra_cmd_web_login=extra_cmd_web_login
)
bash_command = instance.get("bash_command")
if bash_command:
print(f"{t('Will execute:')} {bash_command}")
self.execute.exec_command_live(bash_command, source_erplibre=False)
command = instance.get("Command:")
if command:
self.prompt_execute_selenium(
command=command, extra_cmd_web_login=extra_cmd_web_login
)
callback = instance.get("callback")
if callback:
callback(instance)
# Étiquettes du fil d'Ariane par méthode de menu. Le fil est dérivé de la
# pile d'appels (aucune méthode de menu à modifier). Labels courts et
# stables, pensés pour être copiés afin de situer précisément un menu.
_MENU_LABELS = {
"run": "TODO",
"prompt_execute": "Execute",
"execute_prompt_ia": "Question",
"prompt_install": "Install",
"prompt_execute_function": "Automation",
"prompt_execute_code": "Code",
"prompt_execute_config": "Config",
"prompt_execute_database": "Database",
"prompt_execute_doc": "Doc",
"prompt_execute_git": "Git",
"prompt_execute_git_local_server": "Git local server",
"prompt_execute_gpt_code": "GPT code",
"prompt_execute_process": "Process",
"prompt_execute_instance": "Run",
"prompt_execute_rtk": "RTK",
"prompt_execute_update": "Update",
"prompt_execute_deploy": "Deploy",
"prompt_execute_deploy_ssh": "SSH",
"prompt_execute_qemu": "QEMU/KVM",
}
def _menu_header(self):
"""En-tête de menu : fil d'Ariane (dérivé de la pile d'appels) suivi de
la ligne « Commande : ». Le fil situe le menu courant et se copie pour
décrire sans ambiguïté où l'on se trouve."""
crumbs = []
for frame_info in reversed(inspect.stack()):
if frame_info.frame.f_locals.get("self") is not self:
continue
label = self._MENU_LABELS.get(frame_info.function)
if label and (not crumbs or crumbs[-1] != label):
crumbs.append(label)
header = ""
if crumbs:
header = "📍 " + " ".join(crumbs) + "\n"
# Télémétrie de navigation (best-effort, ne casse jamais le menu).
try:
from script.todo import todo_telemetry
todo_telemetry.record(" ".join(crumbs))
except Exception:
pass
return header + t("Command:")
def _todo_telemetry_tui(self):
"""Ouvre le TUI de télémétrie (arbre/Kanban). Une commande choisie est
exécutée au retour (hors du TUI) ; on propose ensuite de REVENIR (l'état
et la position du curseur sont restaurés) ou de quitter."""
from script.todo.todo_telemetry import run_tui
state = None
while True:
try:
result = run_tui(state=state)
except ImportError:
print(t("Install textual for the telemetry TUI (pip)."))
return
if not result:
return
action, state = result
if not action:
return # quitté sans choisir de commande
method, kwargs = action
# Fil d'Ariane : la commande étant lancée DEPUIS la télémétrie (et
# non via la navigation), aucun menu n'a affiché le chemin. On le
# montre ici (dernier segment traduit + icône) et on l'enregistre.
path = state.get("path") if isinstance(state, dict) else None
if path:
segs = path.split(" ")
segs[-1] = t(segs[-1])
print(f"\n📍 {' '.join(segs)}")
try:
from script.todo import todo_telemetry
todo_telemetry.record(path)
except Exception:
pass
fn = getattr(self, method, None)
if not callable(fn):
print(f"{t('Command not found !')} ({method})")
else:
try:
fn(**(kwargs or {}))
except Exception as exc:
print(f"{t('Command failed: ')}{exc}")
# Revenir (curseur restauré) ou quitter ?
ans = input(
f"\n{t('Back to telemetry (r) or quit (Enter)? ')}"
)
if ans.strip().lower() not in ("r", "revenir", "o", "oui", "y"):
return
def fill_help_info(self, choices):
# Une entrée {"section": "..."} affiche un titre de section SANS
# consommer de numéro : la numérotation reste continue sur les vraies
# commandes (compatible avec les elif codés en dur des menus).
help_info = self._menu_header() + "\n"
help_end = f"[0] {t('Back')}\n"
n = 0
for instance in choices:
section = instance.get("section")
if section:
help_info += f"\n── {section} ──\n"
continue
n += 1
desc_key = instance.get("prompt_description_key")
if desc_key:
desc = t(desc_key)
else:
desc = instance["prompt_description"]
help_info += f"[{n}] " + desc + "\n"
help_info += help_end
return help_info
def prompt_execute_instance(self):
# TODO proposer le déploiement à distance
# TODO proposer l'exécution de docker
# TODO proposer la création de docker
choices = self.config_file.get_config("instance")
init_len = len(choices)
# Support mobile ERPLibre
if os.path.exists(MOBILE_HOME_PATH):
menu_entry = {
"prompt_description": t("Mobile - Compile and run software"),
"callback": self.callback_make_mobile_home,
}
choices.append(menu_entry)
# Support custom database to execute
menu_entry = {
"prompt_description": t("Choose your database"),
"callback": self.callback_execute_custom_database,
}
choices.insert(0, menu_entry)
help_info = self.fill_help_info(choices)
while True:
status = click.prompt(help_info)
print()
if status == "0":
return False
else:
cmd_no_found = True
try:
int_cmd = int(status)
if 1 < int_cmd <= init_len:
cmd_no_found = False
status = click.confirm(
t("Do you want a new instance?")
)
instance = choices[int_cmd - 1]
self.execute_from_configuration(
instance,
exec_run_db=True,
ignore_makefile=not bool(status),
)
elif int_cmd <= len(choices) or 1 == int_cmd:
cmd_no_found = False
# Execute dynamic instance
instance = choices[int_cmd - 1]
self.execute_from_configuration(
instance,
)
except ValueError:
pass
if cmd_no_found:
print(t("Command not found !"))
def prompt_execute_function(self):
choices = self.config_file.get_config("function")
help_info = self.fill_help_info(choices)
while True:
status = click.prompt(help_info)
print()
if status == "0":
return False
else:
cmd_no_found = True
try:
int_cmd = int(status)
if 0 < int_cmd <= len(choices):
cmd_no_found = False
instance = choices[int_cmd - 1]
self.execute_from_configuration(instance)
except ValueError:
pass
if cmd_no_found:
print(t("Command not found !"))
def prompt_execute_update(self):
# self.execute.exec_command_live(f"make {makefile_cmd}")
print(f"🤖 {t('Development update')}")
# TODO détecter les modules en modification pour faire la mise à jour en cours
# TODO demander sur quel BD faire la mise à jour
# TODO proposer les modules manuelles selon la configuration à mettre à jour
# TODO proposer la mise à jour de l'IDE
# TODO proposer la mise à jour des git-repo
# TODO faire la mise à jour de ERPLibre
# TODO faire l'upgrade d'un odoo vers un autre
choices = self.config_file.get_config("update_from_makefile")
menu_entry = {
"prompt_description": t("Upgrade Odoo - Migration Database"),
}
choices.append(menu_entry)
poetry_entry = {
"prompt_description": t("Upgrade Poetry - Dependency of Odoo"),
}
choices.append(poetry_entry)
help_info = self.fill_help_info(choices)
while True:
status = click.prompt(help_info)
print()
if status == "0":
return False
elif status == str(len(choices) - 1):
upgrade = todo_upgrade.TodoUpgrade(self)
upgrade.execute_odoo_upgrade()
elif status == str(len(choices)):
self.upgrade_poetry()
else:
cmd_no_found = True
try:
int_cmd = int(status) - 1
if 0 < int_cmd <= len(choices):
cmd_no_found = False
instance = choices[int_cmd - 1]
self.execute_from_configuration(instance)
except ValueError:
pass
if cmd_no_found:
print(t("Command not found !"))
def prompt_execute_deploy(self):
print(f"🤖 {t('Deploy ERPLibre to a local directory!')}")
choices = [
{"section": t("Local")},
{"prompt_description": t("Clone ERPLibre locally (git clone)")},
{"prompt_description": t("Configure sshfs")},
{"section": t("Remote & services")},
{"prompt_description": t("SSH (remote host)...")},
{
"prompt_description": t(
"Deploy - Install NTFY notification server"
)
},
{
"prompt_description": t(
"QEMU/KVM - Deploy an Ubuntu VM (libvirt)"
)
},
]
help_info = self.fill_help_info(choices)
while True:
status = click.prompt(help_info)
print()
if status == "0":
return False
elif status == "1":
self._deploy_clone_erplibre()
elif status == "2":
self._configure_sshfs()
elif status == "3":
self.prompt_execute_deploy_ssh()
elif status == "4":
self._deploy_ntfy_server()
elif status == "5":
self.prompt_execute_qemu()
else:
print(t("Command not found !"))
def prompt_execute_deploy_ssh(self):
"""Sous-menu : opérations de déploiement sur un hôte distant via SSH."""
print(f"🤖 {t('Deploy ERPLibre to a remote host over SSH!')}")
choices = [
{"prompt_description": t("SSH - Check connection")},
{"prompt_description": t("SSH - Sync files (rsync)")},
{"prompt_description": t("SSH - Install ERPLibre")},
{"prompt_description": t("SSH - Start Odoo")},
{"prompt_description": t("SSH - Stop Odoo")},
{"prompt_description": t("SSH - Restart Odoo")},
{"prompt_description": t("SSH - Service status")},
{"prompt_description": t("SSH - View logs")},
{"prompt_description": t("SSH - Run make target")},
{"prompt_description": t("SSH - Install systemd service")},
{"prompt_description": t("SSH - Configure nginx + SSL")},
]
help_info = self.fill_help_info(choices)
while True:
status = click.prompt(help_info)
print()
if status == "0":
return False
elif status == "1":
self._deploy_ssh_check()
elif status == "2":
self._deploy_ssh_push()
elif status == "3":
self._deploy_ssh_install()
elif status == "4":
self._deploy_ssh_run()
elif status == "5":
self._deploy_ssh_stop()
elif status == "6":
self._deploy_ssh_restart()
elif status == "7":
self._deploy_ssh_status()
elif status == "8":
self._deploy_ssh_logs()
elif status == "9":
self._deploy_ssh_make()
elif status == "10":
self._deploy_ssh_install_systemd()
elif status == "11":
self._deploy_ssh_install_nginx()
else:
print(t("Command not found !"))
# ------------------------------------------------------------------ #
# QEMU / KVM (libvirt) VM deployment
# ------------------------------------------------------------------ #
def _qemu_script_path(self):
"""Chemin absolu vers script/qemu/deploy_qemu.py."""
path = os.path.join(
os.path.dirname(os.path.abspath(__file__)),
"..",
"qemu",
"deploy_qemu.py",
)
return os.path.realpath(path)
def _qemu_default_ssh_key(self):
"""Première clé publique SSH trouvée dans ~/.ssh, sinon ''."""
for name in ("id_ed25519.pub", "id_rsa.pub"):
path = os.path.expanduser(f"~/.ssh/{name}")
if os.path.exists(path):
return path
return ""
# distro -> (versions affichées, version par défaut). Source de vérité =
# deploy_qemu.py ; ceci ne sert qu'au sélecteur interactif.
_QEMU_DISTROS = {
"ubuntu": (
["20.04", "22.04", "24.04", "25.10", "26.04"],
"24.04",
),
"debian": (["11", "12", "13"], "12"),
"fedora": (["41", "42", "43", "44"], "42"),
"arch": (["latest"], "latest"),
}
def _qemu_prompt_distro(self):
"""Demande la distribution (défaut : ubuntu)."""
distros = list(self._QEMU_DISTROS)
print(f"\n{t('Distribution:')}")
for i, d in enumerate(distros, 1):
print(f" [{i}] {d}")
sel = input(t("Choice (number or name, default: ubuntu): ")).strip()
if not sel:
return "ubuntu"
try:
idx = int(sel) - 1
if 0 <= idx < len(distros):
return distros[idx]
except ValueError:
if sel in distros:
return sel
print(t("Invalid selection, using ubuntu"))
return "ubuntu"
def _qemu_prompt_version(self, distro):
"""Demande la version pour la distro (défaut = version par défaut)."""
versions, default = self._QEMU_DISTROS.get(distro, ([], ""))
print(f"\n{t('Version for')} {distro.capitalize()} :")
for i, v in enumerate(versions, 1):
suffix = " *" if v == default else ""
stat = self._qemu_stat_avg("version", v, distro)
print(f" [{i}] {v}{suffix}{stat}")
sel = input(
f"{t('Choice (number or version, blank = default):')} "
).strip()
if not sel:
return default
try:
idx = int(sel) - 1
if 0 <= idx < len(versions):
return versions[idx]
except ValueError:
if sel in versions:
return sel
print(f"{t('Invalid selection, using')} {default}")
return default
# Distros publiant des images cloud par architecture (cohérent avec
# S390X_DISTROS / ARM64_DISTROS de deploy_qemu.py). amd64 : toutes.
_QEMU_S390X_DISTROS = ("ubuntu",)
_QEMU_ARM64_DISTROS = ("ubuntu", "debian", "fedora")
# Alias distro pour l'affichage (jeton générique -> nom courant).
_QEMU_ARCH_ALIAS = {"amd64": "x86_64", "arm64": "aarch64"}
@staticmethod
def _native_arch():
"""Architecture native de l'hôte, en jeton de deploy_qemu.py
(amd64/arm64/s390x). Défaut amd64 si indéterminée."""
try:
machine = os.uname().machine
except (AttributeError, OSError):
machine = ""
return {
"x86_64": "amd64",
"amd64": "amd64",
"aarch64": "arm64",
"arm64": "arm64",
"s390x": "s390x",
}.get(machine, "amd64")
def _qemu_arch_distros(self, arch):
"""Distros supportant `arch` (None = toutes, cas amd64)."""
if arch == "s390x":
return self._QEMU_S390X_DISTROS
if arch == "arm64":
return self._QEMU_ARM64_DISTROS
return None
def _qemu_last_run_line(self):
"""Ligne « dernière install » (distro version [arch] en durée), depuis
l'historique (.venv.erplibre) ; '' si aucune donnée."""
try:
from script.todo import qemu_install_monitor as mon
r = mon.last_run()
if r:
return (
f" {t('Last install:')} {r.get('distro')} "
f"{r.get('version')} [{r.get('arch')}] — "
f"{mon._fmt_secs(r.get('seconds', 0))}"
)
except Exception:
pass
return ""
def _qemu_stat_avg(self, field, value, distro=None):
"""Suffixe « · ~5m moy (3) » : durée d'install MOYENNE historique pour
cette archi/distro/version (fichier .venv.erplibre), ou '' si aucune
donnée. Pour field='version', `distro` est requis."""
try:
from script.todo import qemu_install_monitor as mon
if field == "arch":
secs, n = mon.avg_by_arch(value)
elif field == "version":
secs, n = mon.avg_by_version(distro, value)
else:
secs, n = mon.avg_by_distro(value)
if secs:
return f" · ~{mon._fmt_secs(secs)} {t('avg')} ({n})"
except Exception:
pass
return ""
def _qemu_ask_arch(self, opts, native, allow_all=False):
"""Affiche les architectures `opts` (natif marqué d'un *) et renvoie le
choix. Si `allow_all`, propose aussi [all] = toutes les archis (renvoie
« all »). Toute arch non native est ÉMULÉE (TCG, lente)."""
print(f"\n{t('Architecture:')}")
for i, a in enumerate(opts, 1):
alias = self._QEMU_ARCH_ALIAS.get(a)
label = f"{a} ({alias})" if alias else a
if a == native:
label += f"{t('native')} *"
elif a == "s390x":
label += f" ({t('IBM Z — emulated, slow; Ubuntu only')})"
elif a == "arm64":
label += f" ({t('ARM 64-bit — emulated, slow')})"
else:
label += f" ({t('emulated, slow')})"
print(f" [{i}] {label}{self._qemu_stat_avg('arch', a)}")
if allow_all:
print(f" [all] {t('All supported architectures')}")
sel = (
input(f"{t('Choice (number or name, blank = native):')} ")
.strip()
.lower()
)
if not sel:
return native
if allow_all and sel in ("all", "*"):
note = t("(includes emulated architectures — some VMs are slow)")
print(f"{note}")
return "all"
chosen = None
for i, a in enumerate(opts, 1):
if sel in (str(i), a, self._QEMU_ARCH_ALIAS.get(a)):
chosen = a
break
if chosen is None:
print(f"{t('Invalid selection, using')} {native}")
return native
if chosen != native:
warn = t(
"This architecture is emulated (TCG): boot and install are"
" much slower than the native one."
)
print(f"{warn}")
return chosen
def _qemu_prompt_infra_arch(self):
"""Architecture du parc (défaut : native de l'hôte, marquée d'un *).
Toute arch non native est émulée ; le catalogue est ensuite restreint
aux distros publiant cette arch."""
native = self._native_arch()
opts = ["amd64", "arm64", "s390x"]
if native not in opts: # hôte exotique : garder le natif en tête
opts.insert(0, native)
return self._qemu_ask_arch(opts, native, allow_all=True)
def _qemu_list_images(self):
"""Affiche la liste des distros/versions et leurs specs."""
cmd = f"{self._qemu_script_path()} --list-images"
print(f"{t('Will execute:')} {cmd}")
self.execute.exec_command_live(cmd, source_erplibre=False)
def prompt_execute_qemu(self):
print(f"🤖 {t('Deploy a QEMU/KVM virtual machine (libvirt)!')}")
script_path = self._qemu_script_path()
if not os.path.isfile(script_path):
print(f"{t('QEMU deploy script not found: ')}{script_path}")
return False
choices = [
{"section": t("Deployment")},
{"prompt_description": t("Deploy VM(s) (one or many)")},
{
"prompt_description": t(
"Preview a deployment (dry-run, no sudo)"
)
},
{"prompt_description": t("Download a cloud image only")},
{"section": t("Manage")},
{"prompt_description": t("List VMs (virsh list --all)")},
{"prompt_description": t("Show a VM IP address")},
{"prompt_description": t("Open the console on a VM")},
{"prompt_description": t("Resize a VM disk")},
{"prompt_description": t("Delete VM(s)")},
{"prompt_description": t("Clean up QEMU (orphan files)")},
{
"prompt_description": t(
"Test a VM (open Odoo in a CLI browser)"
)
},
{"section": t("Catalog")},
{"prompt_description": t("List available images and specs")},
]
config_entries = self.config_file.get_config("qemu_from_makefile")
if config_entries:
choices.extend(config_entries)
help_info = self.fill_help_info(choices)
while True:
status = click.prompt(help_info)
print()
if status == "0":
return False
elif status == "1":
self._qemu_deploy(dry_run=False)
elif status == "2":
self._qemu_deploy(dry_run=True)
elif status == "3":
self._qemu_download_image()
elif status == "4":
self._qemu_list_vms(ask_advanced=True)
elif status == "5":
self._qemu_show_ip()
elif status == "6":
self._qemu_console()
elif status == "7":
self._qemu_resize_disk()
elif status == "8":
self._qemu_delete_vm()
elif status == "9":
self._qemu_cleanup()
elif status == "10":
self._qemu_test_vm()
elif status == "11":
self._qemu_list_images()
else:
cmd_no_found = True
try:
int_cmd = int(status)
# Ignore les entrées de section pour mapper le numéro
# affiché sur la bonne commande (config incluse).
real = [c for c in choices if not c.get("section")]
if 0 < int_cmd <= len(real):
cmd_no_found = False
self.execute_from_configuration(real[int_cmd - 1])
except ValueError:
pass
if cmd_no_found:
print(t("Command not found !"))
def _qemu_download_image(self):
script_path = self._qemu_script_path()
distro = self._qemu_prompt_distro()
version = self._qemu_prompt_version(distro)
ans = input(t("Verify SHA256 after download? (y/N): "))
parts = [
"sudo",
script_path,
"--download-only",
"--distro",
distro,
"--version",
version,
]
if self._is_yes(ans):
parts.append("--verify")
cmd = " ".join(shlex.quote(p) for p in parts)
print(f"{t('Will execute:')} {cmd}")
self.execute.exec_command_live(cmd, source_erplibre=False)
def _qemu_list_vms(self, ask_advanced=False):
cmd = "sudo virsh list --all"
print(f"{t('Will execute:')} {cmd}")
self.execute.exec_command_live(cmd, source_erplibre=False)
if not ask_advanced:
return
# Menu contextuel : infos avancées, ou changer l'état de VM.
print(f"\n{t('What do you want to do?')}")
print(f" [1] {t('Advanced info (vCPU, RAM, disk)')}")
print(f" [2] {t('Change the state of one or more VMs')}")
print(f" [{t('Enter')}] {t('Nothing')}")
choice = input(t("Choice: ")).strip()
if choice == "1":
self._qemu_list_vms_advanced()
elif choice == "2":
self._qemu_change_state()
def _qemu_change_state(self):
"""Démarre (« ouvrir ») ou éteint (« fermer ») une liste de VM saisie
séparée par des virgules, avec DOUBLE validation."""
names = self._qemu_list_domains()
if not names:
print(f"\n{t('No VM found.')}")
return
print(f"\n{t('Available VMs:')} {', '.join(names)}")
raw = input(t("VMs to change (comma-separated): ")).strip()
targets = [n.strip() for n in raw.split(",") if n.strip()]
if not targets:
print(t("Nothing selected."))
return
# Résoudre les ID -> noms et valider l'existence.
resolved, unknown = [], []
known = set(names)
for tgt in targets:
real = self._qemu_domname(tgt)
(resolved if real in known else unknown).append(real)
if unknown:
print(f"{t('Unknown VM(s):')} {', '.join(unknown)}")
return
# Choix de l'état cible : ouvrir (démarrer) ou fermer (éteindre).
print(f"\n{t('Target state:')}")
print(f" [1] {t('Open (start)')}")
print(f" [2] {t('Close (shut down)')}")
st = input(t("Choice: ")).strip()
if st == "1":
action, verb = "start", t("start")
elif st == "2":
action, verb = "shutdown", t("shut down")
else:
print(t("Cancelled."))
return
# DOUBLE validation avant d'appliquer.
summary = f"{verb} -> {', '.join(resolved)}"
if not self._is_yes(
input(f"{t('Apply:')} {summary} ? (o/N) : ")
):
print(t("Cancelled."))
return
if not self._is_yes(
input(t("Confirm for real? (y/N): "))
):
print(t("Cancelled."))
return
for real in resolved:
cmd = f"sudo virsh {action} {shlex.quote(real)}"
print(f"\n{t('Will execute:')} {cmd}")
self.execute.exec_command_live(cmd, source_erplibre=False)
@staticmethod
def _qemu_dominfo(name):
"""(vcpus, max_mem_kib) via « virsh dominfo », ou (0, 0)."""
try:
res = subprocess.run(
["sudo", "virsh", "dominfo", name],
capture_output=True,
text=True,
timeout=15,
)
except (OSError, subprocess.SubprocessError):
return 0, 0
vcpus, mem = 0, 0
for line in res.stdout.splitlines():
if line.startswith("CPU(s):"):
try:
vcpus = int(line.split(":", 1)[1].strip())
except ValueError:
pass
elif line.startswith("Max memory:"):
# « 4194304 KiB »
try:
mem = int(line.split(":", 1)[1].split()[0])
except (ValueError, IndexError):
pass
return vcpus, mem
@staticmethod
def _qemu_disk_sizes(disk):
"""(taille virtuelle, taille réelle sur disque) en octets, via
qemu-img info -U (lit même VM allumée). (0, 0) si échec."""
try:
res = subprocess.run(
["sudo", "qemu-img", "info", "-U", "--output=json", disk],
capture_output=True,
text=True,
timeout=20,
)
data = json.loads(res.stdout)
return (
int(data.get("virtual-size", 0)),
int(data.get("actual-size", 0)),
)
except (OSError, subprocess.SubprocessError, ValueError):
return 0, 0
def _qemu_list_vms_advanced(self):
"""Tableau détaillé par VM : état, vCPU, RAM allouée, disque (virtuel
+ réel), plus l'espace total disponible du stockage des images."""
names = self._qemu_list_domains()
if not names:
print(f"\n{t('No VM found.')}")
return
g = 1 << 30
header = (
f"\n{'VM':<28} {'État':<10} {'vCPU':>4} {'RAM':>8} "
f"{'Disque':>9} {'Réel':>9}"
)
print(header)
print("" * len(header.strip()))
disk_dirs = set()
for name in names:
state = self._qemu_domstate(name) or "?"
vcpus, mem_kib = self._qemu_dominfo(name)
disk = self._qemu_main_disk(name)
virt, actual = self._qemu_disk_sizes(disk) if disk else (0, 0)
if disk:
disk_dirs.add(os.path.dirname(disk))
ram_g = (mem_kib * 1024) / g if mem_kib else 0
print(
f"{name:<28.28} {state:<10.10} {vcpus:>4} "
f"{ram_g:>7.1f}G {virt / g:>8.1f}G {actual / g:>8.1f}G"
)
# Espace total disponible sur le(s) stockage(s) des disques.
for d in sorted(disk_dirs) or ["/var/lib/libvirt/images"]:
try:
usage = shutil.disk_usage(d)
except OSError:
continue
print(
f"\n{t('Storage')} {d} : "
f"{usage.free / g:.1f}G {t('free')} / "
f"{usage.total / g:.1f}G {t('total')} "
f"({usage.used / g:.1f}G {t('used')})"
)
def _qemu_show_ip(self):
# Affiche d'abord les VM (avec leur ID) pour que l'utilisateur sache
# quel nom/ID saisir, puis demande lequel (ou « all » pour toutes).
self._qemu_list_vms()
print()
name = input(t("VM name or ID (or 'all'): ")).strip()
if not name:
print(t("VM name is required!"))
return
if name.lower() in ("all", "tous", "*"):
targets = self._qemu_list_domains()
if not targets:
print(t("No VM found."))
return
else:
targets = [name]
for tgt in targets:
cmd = f"sudo virsh domifaddr {shlex.quote(tgt)} --source lease"
print(f"\n{t('Will execute:')} {cmd}")
self.execute.exec_command_live(cmd, source_erplibre=False)
def _qemu_console(self):
# Liste les VM, demande laquelle, rappelle comment quitter (Ctrl+])
# puis ouvre la console série interactive.
self._qemu_list_vms()
print()
name = input(t("VM name or ID: ")).strip()
if not name:
print(t("VM name is required!"))
return
print(f"\n💡 {t('To leave the console, press Ctrl+] (then Enter).')}")
print(
f"👤 {t('Default login (if set at deploy): erplibre / erplibre')}"
)
cmd = f"sudo virsh console {shlex.quote(name)}"
print(f"{t('Will execute:')} {cmd}")
self.execute.exec_command_live(cmd, source_erplibre=False)
def _qemu_test_vm(self):
"""Teste une VM : résout son IP puis ouvre Odoo (:8069) dans un
navigateur web EN LIGNE DE COMMANDE choisi par l'utilisateur."""
self._qemu_list_vms()
print()
name = input(t("VM name or ID: ")).strip()
if not name:
print(t("VM name is required!"))
return
real = self._qemu_domname(name)
if not self._qemu_domain_exists(real):
print(f"{real}: {t('VM not found.')}")
return
print(f"\n{t('Resolving VM IP...')}")
ip = self._qemu_vm_ip(real, timeout=120)
if not ip:
print(t("No IP found for this VM."))
return
browser = self._qemu_choose_cli_browser()
if not browser:
return
url = f"http://{ip}:8069"
print(f"{browser} {url}")
rc = self.execute.exec_command_live(
f"{browser} {shlex.quote(url)}", source_erplibre=False
)
if rc != 0:
msg = t(
"Page may not have loaded: Odoo not started on :8069, "
"or network/firewall."
)
print(f"{msg}")
def _qemu_choose_cli_browser(self):
"""Offre la LISTE des navigateurs CLI installés (ou propose d'en
installer un) et renvoie celui choisi, sinon None."""
from script.todo.qemu_install_monitor import (
CLI_BROWSERS,
INSTALLABLE_BROWSERS,
browser_install_command,
)
available = [b for b in CLI_BROWSERS if shutil.which(b)]
if not available:
print(t("No CLI browser installed. Which to install?"))
for i, (b, desc) in enumerate(INSTALLABLE_BROWSERS, 1):
print(f" [{i}] {desc}{' *' if i == 1 else ''}")
sel = input(t("Choice (number, blank = w3m): ")).strip()
browser = INSTALLABLE_BROWSERS[0][0]
try:
idx = int(sel) - 1
if 0 <= idx < len(INSTALLABLE_BROWSERS):
browser = INSTALLABLE_BROWSERS[idx][0]
except ValueError:
pass
cmd = browser_install_command(browser)
if not cmd:
print(t("Unknown package manager; install it manually."))
return None
printable = " ".join(cmd)
print(f"{t('Command:')} {printable}")
if not self._is_yes(input(t("Install now? (y/N): "))):
return None
os.system(printable)
return browser if shutil.which(browser) else None
if len(available) == 1:
return available[0]
print(f"\n{t('Which browser to view the page?')}")
for i, b in enumerate(available, 1):
print(f" [{i}] {b}{' *' if i == 1 else ''}")
sel = input(t("Choice (number, blank = first): ")).strip()
if not sel:
return available[0]
try:
idx = int(sel) - 1
if 0 <= idx < len(available):
return available[idx]
except ValueError:
pass
return available[0]
# ------------------------------------------------------------------ #
# Redimensionnement du disque d'une VM
# ------------------------------------------------------------------ #
@staticmethod
def _qemu_domstate(name):
"""État libvirt de la VM (« running », « shut off », …) ou ''."""
try:
res = subprocess.run(
["sudo", "virsh", "domstate", name],
capture_output=True,
text=True,
timeout=15,
)
except (OSError, subprocess.SubprocessError):
return ""
return res.stdout.strip() if res.returncode == 0 else ""
@staticmethod
def _qemu_domname(name):
"""Nom canonique de la VM (si on a fourni un ID numérique, le
résout ; sinon renvoie tel quel). Utile car un ID disparaît une
fois la VM éteinte."""
if not str(name).isdigit():
return name
try:
res = subprocess.run(
["sudo", "virsh", "domname", str(name)],
capture_output=True,
text=True,
timeout=15,
)
except (OSError, subprocess.SubprocessError):
return name
out = res.stdout.strip()
return out if res.returncode == 0 and out else name
def _qemu_shutdown_wait(self, name, timeout=120):
"""Arrête la VM par SIGNAL (ACPI power-button, puis agent invité) et
attend qu'elle soit « shut off » en affichant le temps restant du
timeout. Si l'arrêt gracieux traîne, propose un arrêt forcé (destroy).
Renvoie True si la VM est bien éteinte."""
name = self._qemu_domname(name)
if self._qemu_domstate(name) == "shut off":
return True
# --mode acpi,agent : envoie le SIGNAL d'extinction (bouton ACPI) puis
# tente l'agent invité si présent — plus fiable qu'un arrêt brutal.
cmd = f"sudo virsh shutdown {shlex.quote(name)} --mode acpi,agent"
print(f"{t('Will execute:')} {cmd}")
self.execute.exec_command_live(cmd, source_erplibre=False)
print(f"{t('Waiting for the VM to shut down...')} "
f"({t('timeout')}: {timeout} s)")
deadline = time.time() + timeout
while time.time() < deadline:
if self._qemu_domstate(name) == "shut off":
# Efface la ligne de compte à rebours puis confirme.
print(f"\r{' ' * 40}\r{name}: {t('VM is off.')}")
return True
remaining = int(deadline - time.time())
print(f"\r{t('shutting down')}"
f"{remaining:>3d} s {t('remaining')}",
end="", flush=True)
time.sleep(2)
print() # newline après le compte à rebours
# Arrêt gracieux trop long : proposer un arrêt forcé.
if self._is_yes(
input(t("Graceful shutdown timed out. Force off (destroy)? "
"(y/N): "))
):
cmd = f"sudo virsh destroy {shlex.quote(name)}"
print(f"{t('Will execute:')} {cmd}")
self.execute.exec_command_live(cmd, source_erplibre=False)
time.sleep(2)
return self._qemu_domstate(name) == "shut off"
return False
@staticmethod
def _qemu_main_disk(name):
"""Chemin du disque PRINCIPAL (qcow2) de la VM via domblklist. On
ignore le seed cloud-init (…-seed.iso, en lecture seule)."""
try:
res = subprocess.run(
["sudo", "virsh", "domblklist", name, "--details"],
capture_output=True,
text=True,
timeout=15,
)
except (OSError, subprocess.SubprocessError):
return None
disks = []
for line in res.stdout.splitlines():
parts = line.split()
# Colonnes : Type Device Target Source
if len(parts) >= 4 and parts[1] == "disk" and parts[3] != "-":
disks.append(parts[3])
# Le disque de travail est le .qcow2 (le seed est un .iso).
for d in disks:
if d.endswith(".qcow2"):
return d
return disks[0] if disks else None
@staticmethod
def _qemu_disk_virtual_bytes(disk):
"""Taille VIRTUELLE (octets) du disque via « qemu-img info --json »."""
try:
# -U (--force-share) : lit même si la VM tourne (libvirt tient le
# lock d'écriture). Sans ça : « Failed to get shared write lock ».
res = subprocess.run(
["sudo", "qemu-img", "info", "-U", "--output=json", disk],
capture_output=True,
text=True,
timeout=20,
)
data = json.loads(res.stdout)
return int(data.get("virtual-size", 0))
except (OSError, subprocess.SubprocessError, ValueError):
return 0
def _qemu_resize_disk(self):
"""Redimensionne le disque d'une VM : affiche l'espace actuel, demande
+NG / -NG / taille cible, applique (à chaud si possible pour agrandir),
puis propose d'étendre le système de fichiers invité."""
self._qemu_list_vms()
print()
name = input(t("VM name to resize: ")).strip()
if not name:
print(t("VM name is required!"))
return
if not self._qemu_domain_exists(name):
print(f"{name}: {t('VM not found.')}")
return
disk = self._qemu_main_disk(name)
if not disk:
print(t("Main disk not found for this VM."))
return
# 1) Espace actuel (virtuel + réel) + df invité si joignable.
print(f"\n{t('Current disk:')} {disk}")
# -U : lecture sûre même VM allumée (sinon « shared write lock »).
self.execute.exec_command_live(
f"sudo qemu-img info -U {shlex.quote(disk)}", source_erplibre=False
)
cur_bytes = self._qemu_disk_virtual_bytes(disk)
cur_gb = cur_bytes / (1 << 30)
state = self._qemu_domstate(name)
if cur_bytes <= 0:
print(t("Could not read current disk size; aborting."))
print(f"{t('VM state:')} {state or '?'}")
return
print(f"{t('Current virtual size:')} {cur_gb:.1f} G")
print(f"{t('VM state:')} {state or '?'}")
# 2) Nouvelle taille : +NG (agrandir), -NG (réduire) ou NG (cible).
guide = t(
"Enter +NG to grow, -NG to shrink, or NG for a target size "
"(e.g. +20G, -10G, 60G)."
)
print(f"\n{guide}")
raw = input(t("Resize: ")).strip().upper().replace("G", "")
try:
if raw.startswith("+"):
new_gb = cur_gb + float(raw[1:])
elif raw.startswith("-"):
new_gb = cur_gb - float(raw[1:])
else:
new_gb = float(raw)
except ValueError:
print(t("Invalid size."))
return
if new_gb <= 0:
print(t("Invalid size."))
return
new_gb = round(new_gb, 1)
if abs(new_gb - cur_gb) < 0.05:
print(t("No change."))
return
shrink = new_gb < cur_gb
print(
f"\n{t('New virtual size:')} {cur_gb:.1f} G -> {new_gb:.1f} G"
)
# 3) Application selon agrandir/réduire et l'état de la VM.
was_shut_down = False # la VM a-t-elle été éteinte pour l'occasion ?
if shrink:
# DANGER : qcow2 --shrink ne réduit PAS le FS invité -> perte de
# données si le FS dépasse la cible. VM éteinte obligatoire.
danger = t(
"SHRINKING is DANGEROUS: the guest filesystem is NOT shrunk. "
"Data beyond the new size is LOST. Shrink the guest FS FIRST, "
"and only then shrink here."
)
print(f"{danger}")
if state != "shut off":
if not self._is_yes(
input(t("The VM must be off. Shut it down and retry? "
"(y/N): "))
):
print(t("Cancelled."))
return
if not self._qemu_shutdown_wait(name):
print(t("VM is still not off; aborting."))
return
state = "shut off"
was_shut_down = True
if not self._is_yes(
input(t("Type y to confirm you understand the risk (y/N): "))
):
print(t("Cancelled."))
return
cmd = (
f"sudo qemu-img resize --shrink {shlex.quote(disk)} "
f"{new_gb:g}G"
)
elif state == "running":
# Agrandissement À CHAUD : le disque virtuel grossit, le FS invité
# devra être étendu ensuite.
cmd = (
f"sudo virsh blockresize {shlex.quote(name)} "
f"{shlex.quote(disk)} {new_gb:g}G"
)
else:
cmd = f"sudo qemu-img resize {shlex.quote(disk)} {new_gb:g}G"
print(f"{t('Will execute:')} {cmd}")
if self.execute.exec_command_live(cmd, source_erplibre=False) != 0:
print(f"{t('Resize failed (see error above).')}")
return
print(f"{t('Virtual disk resized.')}")
# 4) Étendre le FS invité (agrandissement seulement, VM joignable).
if not shrink and self._is_yes(
input(t("Grow the guest filesystem now (over SSH)? (y/N): "))
):
self._qemu_grow_guest_fs(name)
# 5) La VM a été éteinte pour l'opération : le noter et proposer de la
# redémarrer (sinon, on ne demande rien).
if was_shut_down:
print(f"\n {t('The VM was shut down for the resize.')}")
if self._is_yes(
input(t("Start the VM now? (y/N): "))
):
real = self._qemu_domname(name)
cmd = f"sudo virsh start {shlex.quote(real)}"
print(f"{t('Will execute:')} {cmd}")
self.execute.exec_command_live(cmd, source_erplibre=False)
# Commande d'extension du FS racine (partition + FS) réutilisée par SSH
# et par le repli console série.
_GROW_FS_REMOTE = (
"set -e; "
"root=$(findmnt -no SOURCE /); "
"dev=$(lsblk -no PKNAME \"$root\" | head -1); "
"part=$(echo \"$root\" | grep -oE '[0-9]+$'); "
"sudo growpart /dev/$dev $part || true; "
"fstype=$(findmnt -no FSTYPE /); "
'case "$fstype" in '
"ext*) sudo resize2fs \"$root\";; "
"xfs) sudo xfs_growfs /;; "
"btrfs) sudo btrfs filesystem resize max /;; "
'esac; '
"df -h /"
)
def _qemu_grow_guest_fs(self, name):
"""Étend la partition racine + le FS invité. Essaie SSH (IP résolue
avec BATTEMENT, le boot émulé étant lent) ; en cas d'absence d'IP ou
d'échec SSH, propose le repli par CONSOLE SÉRIE (commande à coller)."""
remote = self._GROW_FS_REMOTE
real = self._qemu_domname(name)
# 1) SSH : IP résolue avec BATTEMENT (parallèle, boot émulé lent)
# plutôt qu'un simple timeout court qui abandonnait trop tôt.
ip = self._qemu_resolve_ips([real], timeout=300).get(real)
if ip:
opts = (
"-o StrictHostKeyChecking=no -o UserKnownHostsFile=/dev/null "
"-o ConnectTimeout=15"
)
cmd = f"ssh {opts} erplibre@{ip} {shlex.quote(remote)}"
print(f"{t('Will execute:')} {cmd}")
if self.execute.exec_command_live(cmd, source_erplibre=False) == 0:
return
print(f"{t('SSH grow failed; trying the guest agent.')}")
else:
print(t("No IP; trying the guest agent (no network)."))
# 2) Agent invité (virtio, SANS réseau) — nécessite qemu-guest-agent
# dans la VM (installé au déploiement) + guest-exec autorisé.
res = self._qemu_guest_exec(real, remote)
if res is not None:
rc, out = res
if out.strip():
print(out.rstrip())
if rc == 0:
print(f"{t('Guest filesystem grown via guest agent.')}")
return
print(f"{t('Guest agent grow failed; falling back to console.')}")
else:
print(t("Guest agent unavailable; falling back to serial console."))
# 3) Console série (commande prête à coller, login interactif).
self._qemu_grow_via_console(real, remote)
def _qemu_guest_exec(self, name, script, wait=180):
"""Exécute `script` (sh -c) DANS la VM via l'AGENT INVITÉ (canal
virtio, sans réseau). Renvoie (code_sortie, sortie) ou None si l'agent
est indisponible / guest-exec refusé."""
import base64
def agent(payload):
try:
res = subprocess.run(
[
"sudo", "virsh", "qemu-agent-command",
name, json.dumps(payload),
],
capture_output=True,
text=True,
timeout=30,
)
except (OSError, subprocess.SubprocessError):
return None
if res.returncode != 0:
return None
try:
return json.loads(res.stdout).get("return")
except ValueError:
return None
if agent({"execute": "guest-ping"}) is None:
return None
start = agent(
{
"execute": "guest-exec",
"arguments": {
"path": "/bin/sh",
"arg": ["-c", script],
"capture-output": True,
},
}
)
if not start or "pid" not in start:
return None
pid = start["pid"]
deadline = time.time() + wait
print(t("Running via guest agent (no network)…"))
while time.time() < deadline:
st = agent(
{"execute": "guest-exec-status", "arguments": {"pid": pid}}
)
if st and st.get("exited"):
out = ""
for k in ("out-data", "err-data"):
if st.get(k):
try:
out += base64.b64decode(st[k]).decode(
errors="replace"
)
except Exception:
pass
return st.get("exitcode", 0), out
time.sleep(2)
return None
def _qemu_grow_via_console(self, name, remote):
"""Repli console série : affiche la commande prête à coller puis ouvre
la console (login interactif erplibre/erplibre — pas d'automatisation
fiable de la saisie)."""
print(f"\n{t('Serial console fallback. Log in, then paste:')}")
print(f"\n {remote}\n")
print(f"💡 {t('To leave the console, press Ctrl+] (then Enter).')}")
print(
f"👤 {t('Default login (if set at deploy): erplibre / erplibre')}"
)
if not self._is_yes(
input(t("Open the serial console now? (y/N): "))
):
return
cmd = f"sudo virsh console {shlex.quote(name)}"
print(f"{t('Will execute:')} {cmd}")
self.execute.exec_command_live(cmd, source_erplibre=False)
def _write_ssh_config_entry(self, host, user, ip):
"""Écrit/remplace un bloc « Host <host> » dans ~/.ssh/config."""
cfg = os.path.expanduser("~/.ssh/config")
os.makedirs(os.path.dirname(cfg), exist_ok=True)
existing = ""
if os.path.exists(cfg):
with open(cfg, encoding="utf-8") as fh:
existing = fh.read()
# Retire un ancien bloc du même Host (ses lignes indentées). Pas de
# drapeau DOTALL : « . » ne doit PAS traverser les sauts de ligne,
# sinon .* engloutirait tout jusqu'à la fin du fichier et effacerait
# les entrées suivantes.
pattern = re.compile(
rf"(?m)^[ \t]*Host[ \t]+{re.escape(host)}[ \t]*\n"
r"(?:[ \t]+[^\n]*\n?)*"
)
existing = pattern.sub("", existing).rstrip("\n")
block = (
f"Host {host}\n"
f" HostName {ip}\n"
f" User {user}\n"
# IP DHCP réutilisées entre VM -> on évite l'erreur de clé d'hôte.
f" StrictHostKeyChecking no\n"
f" UserKnownHostsFile /dev/null\n"
)
content = (existing + "\n\n" + block) if existing else block
with open(cfg, "w", encoding="utf-8") as fh:
fh.write(content)
os.chmod(cfg, 0o600)
print(f"{t('Added to ~/.ssh/config:')} ssh {host}")
def _qemu_list_domains(self):
"""Noms des VM libvirt définies (via virsh)."""
try:
res = subprocess.run(
["sudo", "virsh", "list", "--all", "--name"],
capture_output=True,
text=True,
timeout=15,
)
except (OSError, subprocess.SubprocessError):
return []
return [n for n in res.stdout.split() if n.strip()]
def _qemu_delete_vm(self):
"""Efface une ou plusieurs VM (arrêt + undefine), disques en option."""
self._qemu_list_vms()
print()
names = self._qemu_list_domains()
if not names:
print(t("No VM found."))
return
print(f"\n{t('Select VMs to delete:')}")
for i, n in enumerate(names, 1):
print(f" [{i}] {n}")
print(f" [all] {t('select all')}")
raw = input(t("Selection (numbers, or 'all'): ")).strip()
if not raw:
print(t("Nothing selected."))
return
if raw.lower() in ("all", "*"):
chosen = list(names)
else:
chosen = self._parse_index_selection(raw.lower(), names)
if not chosen:
print(t("Nothing selected."))
return
del_disks = self._is_yes(
input(t("Also delete disk images (qcow2 + seed ISO)? (y/N): "))
)
print(f"\n{t('Will delete:')} {', '.join(chosen)}")
if del_disks:
print(f" + {t('disk images and seed ISOs')}")
else:
print(f" ({t('disks kept')})")
if not self._is_yes(input(t("Confirm deletion? (y/N): "))):
print(t("Cancelled."))
return
disk_dir = "/var/lib/libvirt/images"
seed_dir = "/var/lib/libvirt/images/iso"
for name in chosen:
q = shlex.quote(name)
# Éteindre si en cours, puis retirer la définition (+ nvram si
# UEFI ; repli sans l'option pour les vieilles versions de virsh).
cmd = (
f"sudo virsh destroy {q} 2>/dev/null; "
f"sudo virsh undefine {q} --nvram 2>/dev/null "
f"|| sudo virsh undefine {q}"
)
if del_disks:
disk = shlex.quote(f"{disk_dir}/{name}.qcow2")
seed = shlex.quote(f"{seed_dir}/{name}-seed.iso")
cmd += f"; sudo rm -f {disk} {seed}"
print(f"\n{name}: {cmd}")
self.execute.exec_command_live(cmd, source_erplibre=False)
print(f"\n{t('Deletion done.')}")
@staticmethod
def _human_size(n):
"""Octets -> taille lisible (Ko/Mo/Go…)."""
size = float(n)
for unit in ("o", "Ko", "Mo", "Go", "To"):
if size < 1024:
return f"{size:.0f} {unit}"
size /= 1024
return f"{size:.0f} Po"
@staticmethod
def _qemu_find_files(directory, pattern):
"""(taille, chemin) des fichiers du répertoire (via sudo find)."""
try:
res = subprocess.run(
[
"sudo",
"find",
directory,
"-maxdepth",
"1",
"-type",
"f",
"-name",
pattern,
"-printf",
"%s\t%p\n",
],
capture_output=True,
text=True,
timeout=20,
)
except (OSError, subprocess.SubprocessError):
return []
out = []
for line in res.stdout.splitlines():
if "\t" in line:
size, path = line.split("\t", 1)
out.append((int(size), path))
return out
def _cleanup_delete_files(self, title, items, prompt):
"""items : [(taille, chemin)]. Liste, confirme, puis « sudo rm -f »."""
if not items:
return
total = sum(s for s, _ in items)
print(
f"\n{title}{self._human_size(total)}, "
f"{len(items)} {t('files')} :"
)
for size, path in sorted(items, key=lambda o: -o[0]):
print(f" {self._human_size(size):>9} {path}")
if not self._is_yes(input(prompt)):
print(t("Cancelled."))
return
paths = " ".join(shlex.quote(p) for _, p in items)
cmd = f"sudo rm -f {paths}"
print(f"{t('Will execute:')} {cmd}")
self.execute.exec_command_live(cmd, source_erplibre=False)
print(f"{t('Cleanup done.')}")
def _qemu_domain_macs(self):
"""MACs de toutes les VM définies (pour repérer les baux périmés)."""
macs = set()
for name in self._qemu_list_domains():
try:
res = subprocess.run(
["sudo", "virsh", "domiflist", name],
capture_output=True,
text=True,
timeout=15,
)
except (OSError, subprocess.SubprocessError):
continue
macs.update(
m.lower()
for m in re.findall(
r"[0-9a-f]{2}(?::[0-9a-f]{2}){5}", res.stdout
)
)
return macs
def _qemu_cleanup(self):
"""Repère les restes QEMU orphelins et propose de les effacer."""
print(f"🧹 {t('Scanning for orphan QEMU files...')}")
disk_dir = "/var/lib/libvirt/images"
seed_dir = "/var/lib/libvirt/images/iso"
nvram_dir = "/var/lib/libvirt/qemu/nvram"
domains = set(self._qemu_list_domains())
# 1) Fichiers orphelins : disques / seeds / .part / nvram.
orphans = [] # (taille, chemin, motif)
for size, path in self._qemu_find_files(disk_dir, "*.qcow2"):
if os.path.basename(path)[: -len(".qcow2")] not in domains:
orphans.append((size, path, t("orphan disk")))
for size, path in self._qemu_find_files(seed_dir, "*-seed.iso"):
if os.path.basename(path)[: -len("-seed.iso")] not in domains:
orphans.append((size, path, t("orphan seed")))
for size, path in self._qemu_find_files(seed_dir, "*.part"):
orphans.append((size, path, t("partial download")))
for size, path in self._qemu_find_files(nvram_dir, "*"):
stem = re.sub(r"(_VARS)?\.fd$", "", os.path.basename(path))
if stem not in domains:
orphans.append((size, path, t("orphan UEFI nvram")))
if orphans:
total = sum(o[0] for o in orphans)
print(f"\n{t('Orphan files:')}")
for size, path, reason in sorted(orphans, key=lambda o: -o[0]):
print(f" {self._human_size(size):>9} {path} [{reason}]")
print(
f"\n {t('Total:')} {self._human_size(total)} "
f"({len(orphans)} {t('files')})"
)
if self._is_yes(input(t("Delete these orphan files? (y/N): "))):
paths = " ".join(shlex.quote(o[1]) for o in orphans)
cmd = f"sudo rm -f {paths}"
print(f"{t('Will execute:')} {cmd}")
self.execute.exec_command_live(cmd, source_erplibre=False)
print(f"{t('Cleanup done.')}")
else:
print(t("Cancelled."))
else:
print(f"{t('No orphan files found.')}")
# 2) Domaines fantômes (définis mais disque manquant).
self._cleanup_ghost_domains()
# 3) Doublons d'images nommées par codename (avant /releases/).
dups = [
(s, p)
for s, p in self._qemu_find_files(
seed_dir, "*-server-cloudimg-*.img"
)
if not os.path.basename(p).startswith("ubuntu-")
]
self._cleanup_delete_files(
t("Stale codename-named Ubuntu images (duplicates):"),
dups,
t("Delete these duplicate images? (y/N): "),
)
# 4) Entrées ~/.ssh/config orphelines (erplibre-* sans VM).
self._cleanup_ssh_config(domains)
# 5) Baux DHCP périmés.
self._cleanup_stale_leases()
# 6) Tout le cache d'images de base (option lourde : re-téléchargement).
cached = [
(s, p)
for s, p in self._qemu_find_files(seed_dir, "*")
if not p.endswith("-seed.iso") and not p.endswith(".part")
]
self._cleanup_delete_files(
t("All cached base images (reusable):"),
cached,
t("Delete ALL cached base images? (y/N): "),
)
def _cleanup_ghost_domains(self):
"""VM définies dont plus aucun disque n'existe -> propose undefine."""
ghosts = []
for name in self._qemu_list_domains():
try:
res = subprocess.run(
["sudo", "virsh", "domblklist", name, "--details"],
capture_output=True,
text=True,
timeout=15,
)
except (OSError, subprocess.SubprocessError):
continue
srcs = []
for line in res.stdout.splitlines():
p = line.split()
if len(p) >= 4 and p[1] == "disk" and p[3] not in ("-", ""):
srcs.append(p[3])
if srcs and all(
subprocess.run(
["sudo", "test", "-e", s], timeout=10
).returncode
!= 0
for s in srcs
):
ghosts.append(name)
if not ghosts:
return
print(
f"\n{t('Ghost domains (defined but disk missing):')} "
f"{', '.join(ghosts)}"
)
if not self._is_yes(input(t("Undefine these ghost domains? (y/N): "))):
print(t("Cancelled."))
return
for name in ghosts:
q = shlex.quote(name)
cmd = (
f"sudo virsh destroy {q} 2>/dev/null; "
f"sudo virsh undefine {q} --nvram 2>/dev/null "
f"|| sudo virsh undefine {q}"
)
print(f"{t('Will execute:')} {cmd}")
self.execute.exec_command_live(cmd, source_erplibre=False)
print(f"{t('Cleanup done.')}")
def _cleanup_ssh_config(self, domains):
"""Retire les blocs « Host erplibre-* » sans VM correspondante (on ne
touche jamais aux autres hôtes SSH personnels)."""
cfg = os.path.expanduser("~/.ssh/config")
if not os.path.exists(cfg):
return
with open(cfg, encoding="utf-8") as fh:
content = fh.read()
hosts = re.findall(r"(?m)^[ \t]*Host[ \t]+(\S+)", content)
orphans = [
h for h in hosts if h.startswith("erplibre-") and h not in domains
]
if not orphans:
return
print(f"\n{t('Orphan ~/.ssh/config entries:')} {', '.join(orphans)}")
if not self._is_yes(
input(t("Remove these ~/.ssh/config entries? (y/N): "))
):
print(t("Cancelled."))
return
for h in orphans:
pat = re.compile(
rf"(?m)^[ \t]*Host[ \t]+{re.escape(h)}[ \t]*\n"
r"(?:[ \t]+[^\n]*\n?)*"
)
content = pat.sub("", content)
content = content.strip("\n")
content = content + "\n" if content else ""
with open(cfg, "w", encoding="utf-8") as fh:
fh.write(content)
os.chmod(cfg, 0o600)
print(f"{t('Cleanup done.')}")
def _cleanup_stale_leases(self):
"""Baux DHCP libvirt dont la MAC n'appartient à aucune VM (best-effort :
les baux expirent d'eux-mêmes)."""
status = "/var/lib/libvirt/dnsmasq/virbr0.status"
try:
res = subprocess.run(
["sudo", "cat", status],
capture_output=True,
text=True,
timeout=15,
)
leases = json.loads(res.stdout or "[]")
except (OSError, subprocess.SubprocessError, ValueError):
return
if not isinstance(leases, list) or not leases:
return
macs = self._qemu_domain_macs()
stale = [
ln
for ln in leases
if str(ln.get("mac-address", "")).lower() not in macs
]
if not stale:
return
print(f"\n{t('Stale DHCP leases (no matching VM):')}")
for ln in stale:
print(
f" {ln.get('ip-address', '?'):<16} "
f"{ln.get('mac-address', '?')} {ln.get('hostname', '')}"
)
if not self._is_yes(input(t("Clear these stale leases? (y/N): "))):
print(t("Cancelled."))
return
kept = [ln for ln in leases if ln not in stale]
tmp = os.path.join("/tmp", f"virbr0.status.{os.getpid()}.json")
with open(tmp, "w", encoding="utf-8") as fh:
json.dump(kept, fh)
cmd = (
f"sudo cp {shlex.quote(tmp)} {status} && "
"sudo pkill -HUP -F /var/lib/libvirt/dnsmasq/virbr0.pid "
"2>/dev/null || true"
)
print(f"{t('Will execute:')} {cmd}")
self.execute.exec_command_live(cmd, source_erplibre=False)
try:
os.unlink(tmp)
except OSError:
pass
print(f"{t('Cleanup done.')}")
# ------------------------------------------------------------------ #
# QEMU : déploiement d'un parc « infra ERPLibre »
# ------------------------------------------------------------------ #
ERPLIBRE_GIT_URL = "https://github.com/erplibre/erplibre"
def _qemu_import_module(self):
"""Importe deploy_qemu.py comme module (source de vérité des specs)."""
import importlib.util
path = self._qemu_script_path()
spec = importlib.util.spec_from_file_location("deploy_qemu", path)
mod = importlib.util.module_from_spec(spec)
spec.loader.exec_module(mod)
return mod
@classmethod
def _qemu_infra_name(cls, distro, version, arch=None):
"""Nom de VM stable pour le parc, ex. erplibre-ubuntu-2404. Ajoute un
suffixe d'architecture quand elle diffère de la native de l'hôte (ex.
erplibre-ubuntu-2604-s390x sur un hôte amd64) pour éviter les collisions
de noms entre archis et rendre l'archi visible."""
base = f"erplibre-{distro}-{version.replace('.', '')}"
if arch and arch != cls._native_arch():
base += f"-{arch}"
return base
@staticmethod
def _parse_disk_gb(size):
"""« 20G » -> 20 (Go, best effort)."""
m = re.match(r"\s*(\d+)", str(size))
return int(m.group(1)) if m else 0
@staticmethod
def _is_yes(ans):
"""Réponse affirmative, FR et EN (o/oui/y/yes)."""
return ans.strip().lower() in ("y", "yes", "o", "oui")
@staticmethod
def _is_no(ans):
"""Réponse négative explicite, FR et EN (n/no/non). Utile pour les
invites « défaut oui » où tout sauf « non » vaut oui."""
return ans.strip().lower() in ("n", "no", "non")
@staticmethod
def _host_free_ram_mb():
"""RAM disponible de l'hôte en Mo (MemAvailable), 0 si inconnu."""
try:
with open("/proc/meminfo") as fh:
for line in fh:
if line.startswith("MemAvailable:"):
return int(line.split()[1]) // 1024
except OSError:
pass
return 0
@staticmethod
def _parse_index_selection(raw, options):
"""« 1 3 » ou « 1,3 » -> sous-liste d'options (indices 1-based)."""
chosen = []
for tok in re.split(r"[\s,]+", raw.strip()):
if not tok:
continue
try:
idx = int(tok) - 1
except ValueError:
if tok in options and tok not in chosen:
chosen.append(tok)
continue
if 0 <= idx < len(options) and options[idx] not in chosen:
chosen.append(options[idx])
return chosen
def _qemu_domain_exists(self, name):
"""Vrai si une VM libvirt de ce nom est déjà définie."""
try:
res = subprocess.run(
["sudo", "virsh", "dominfo", name],
capture_output=True,
text=True,
timeout=15,
)
return res.returncode == 0
except (OSError, subprocess.SubprocessError):
return False
@staticmethod
def _qemu_lease_candidates(name):
"""Toutes les IPv4 candidates de la VM, agrégées de PLUSIEURS sources :
- lease : base DHCP de dnsmasq (peut manquer sous forte charge, ou
contenir plusieurs baux : bail précoce « ubuntu » périmé + bail
définitif) ;
- agent : qemu-guest-agent DANS la VM (voit l'IP réelle même quand le
bail dnsmasq est absent) ;
- arp : table ARP de l'hôte (VM active sur le réseau).
On combine pour ne jamais rater une IP que le bail seul manquerait
(cas observé : 30 VM émulées, bail dnsmasq vide alors que la VM a une
IP)."""
ips = []
for source in ("lease", "agent", "arp"):
try:
res = subprocess.run(
["sudo", "virsh", "domifaddr", name, "--source", source],
capture_output=True,
text=True,
timeout=15,
)
except (OSError, subprocess.SubprocessError):
continue
for ip in re.findall(r"(\d+\.\d+\.\d+\.\d+)", res.stdout):
# Ignore la loopback (remontée par --source agent).
if ip != "127.0.0.1" and ip not in ips:
ips.append(ip)
return ips
@staticmethod
def _qemu_ip_reachable(ip, port=22, timeout=2):
"""Vrai si la VM répond sur cette IP (bail ACTIF, pas périmé). On teste
le PING d'abord : il répond dès que le réseau de la VM est up, BIEN
AVANT sshd — sinon on attendait le sshd (lent en émulation) et la
résolution semblait « bloquée » alors que la VM a déjà son IP. Repli
TCP:port si l'ICMP est filtré."""
try:
res = subprocess.run(
["ping", "-c", "1", "-W", str(int(timeout)), ip],
capture_output=True,
timeout=timeout + 1,
)
if res.returncode == 0:
return True
except (OSError, subprocess.SubprocessError):
pass
import socket
try:
with socket.create_connection((ip, port), timeout=timeout):
return True
except OSError:
return False
@staticmethod
def _qemu_lease_ip_for_host(name, candidates):
"""Parmi `candidates`, l'IP dont le bail dnsmasq porte le hostname de la
VM (le bail DÉFINITIF, pas le bail précoce « ubuntu »). None sinon."""
try:
res = subprocess.run(
[
"sudo",
"sh",
"-c",
"cat /var/lib/libvirt/dnsmasq/*.status 2>/dev/null",
],
capture_output=True,
text=True,
timeout=10,
)
except (OSError, subprocess.SubprocessError):
return None
# Plusieurs tableaux JSON concaténés : on parse chaque objet {...}.
for obj in re.findall(r"\{[^{}]*\}", res.stdout or ""):
if re.search(rf'"hostname":\s*"{re.escape(name)}"', obj):
m = re.search(r'"ip-address":\s*"([\d.]+)"', obj)
if m and m.group(1) in candidates:
return m.group(1)
return None
def _qemu_vm_ip(self, name, timeout=600):
"""IPv4 utilisable d'une VM. Gère le cas des baux multiples (hostname
changé au boot) : renvoie en priorité le bail dont le hostname == nom
de la VM, sinon une IP JOIGNABLE (sshd up), pour ne jamais retenir le
bail précoce périmé. Attend jusqu'à `timeout` (boot émulé lent)."""
deadline = time.time() + timeout
cands = []
while time.time() < deadline:
cands = self._qemu_lease_candidates(name)
if cands:
# 1) bail définitif (hostname == nom de la VM)
host_ip = self._qemu_lease_ip_for_host(name, cands)
if host_ip:
return host_ip
# 2) sinon, une IP déjà joignable (sshd up)
for ip in cands:
if self._qemu_ip_reachable(ip):
return ip
time.sleep(3)
# Meilleur effort : le dernier bail (le plus récent) plutôt que le 1er.
return cands[-1] if cands else None
@staticmethod
def _fmt_dur(secs):
"""Durée lisible : « 45s » ou « 2m05s »."""
secs = int(secs)
if secs < 60:
return f"{secs}s"
return f"{secs // 60}m{secs % 60:02d}s"
def _qemu_resolve_ips(self, names, labels=None, timeout=300):
"""Résout les IP de plusieurs VM EN PARALLÈLE (le boot émulé est lent),
en affichant la progression au fur et à mesure. Renvoie {nom: ip|None}.
`labels` : {nom: « k/N »} pour préfixer chaque ligne d'un ID de suivi.
`timeout` : délai max PAR VM (borne l'attente d'une VM sans IP). Un
BATTEMENT toutes les 30 s liste les VM encore en attente -> jamais de
silence prolongé qui donne l'impression d'un blocage."""
from concurrent.futures import ThreadPoolExecutor, as_completed
from concurrent.futures import TimeoutError as _FTimeout
labels = labels or {}
print(f"\n{t('Resolving VM IPs (parallel, emulated boot is slow)...')}")
result = {}
t0 = time.time()
starts = {}
workers = min(len(names), (os.cpu_count() or 4)) or 1
with ThreadPoolExecutor(max_workers=workers) as pool:
futs = {}
for n in names:
starts[n] = time.time()
futs[pool.submit(self._qemu_vm_ip, n, timeout)] = n
pending = set(futs)
done = 0
while pending:
try:
for fut in as_completed(list(pending), timeout=30):
pending.discard(fut)
n = futs[fut]
try:
ip = fut.result()
except Exception:
ip = None
result[n] = ip
done += 1
tag = f"[{labels[n]}] " if n in labels else ""
dur = self._fmt_dur(time.time() - starts[n])
print(
f" [{done}/{len(names)}] {tag}{n}: "
f"{ip or t('no IP')} ({dur})"
)
except _FTimeout:
# Battement : VM encore en attente (boot/DHCP lent).
waiting = [futs[f] for f in pending]
shown = ", ".join(waiting[:5])
if len(waiting) > 5:
shown += ""
print(
f"{t('still waiting for')} {len(waiting)} VM "
f"({self._fmt_dur(time.time() - t0)}): {shown}"
)
got = sum(1 for ip in result.values() if ip)
print(
f" {t('IPs resolved:')} {got}/{len(names)} "
f"({self._fmt_dur(time.time() - t0)})"
)
return result
def _qemu_vm_arch(self, name):
"""Architecture d'une VM (jeton amd64/arm64/s390x) via virsh dumpxml."""
try:
res = subprocess.run(
["sudo", "virsh", "dumpxml", name],
capture_output=True,
text=True,
timeout=15,
)
except (OSError, subprocess.SubprocessError):
return None
m = re.search(r"<type[^>]*\barch='([^']+)'", res.stdout)
if not m:
return None
return {
"x86_64": "amd64",
"aarch64": "arm64",
"s390x": "s390x",
}.get(m.group(1), m.group(1))
def _qemu_vm_meta(self, name, mod):
"""(distro, version, arch) d'une VM déduits de son nom + son arch. Le
nom suit _qemu_infra_name(distro, version, arch) : on retrouve donc
(distro, version) en testant les combinaisons du catalogue."""
arch = self._qemu_vm_arch(name) or "amd64"
try:
for d, (versions, _default) in mod.DISTROS.items():
for v in versions:
if self._qemu_infra_name(d, v, arch) == name:
return d, v, arch
except Exception:
pass
return None, None, arch
def _qemu_pick_branch(self):
"""Liste les branches distantes d'ERPLibre et en fait choisir une."""
print(f"\n{t('Fetching ERPLibre branch list...')}")
branches = []
try:
res = subprocess.run(
["git", "ls-remote", "--heads", self.ERPLIBRE_GIT_URL],
capture_output=True,
text=True,
timeout=30,
)
for line in res.stdout.splitlines():
ref = line.split("\t")[-1]
if ref.startswith("refs/heads/"):
branches.append(ref[len("refs/heads/") :])
except (OSError, subprocess.SubprocessError):
pass
default = (
"master"
if "master" in branches
else (branches[0] if branches else "master")
)
if not branches:
return (
input(f"{t('Branch (default:')} {default}): ").strip()
or default
)
branches.sort()
print(f"{t('Branches:')}")
for i, b in enumerate(branches, 1):
star = " *" if b == default else ""
print(f" [{i}] {b}{star}")
sel = input(f"{t('Choice (number or name, default:')} {default}): ")
sel = sel.strip()
if not sel:
return default
try:
idx = int(sel) - 1
if 0 <= idx < len(branches):
return branches[idx]
except ValueError:
if sel in branches:
return sel
return default
# Cible d'installation Odoo exécutée dans la VM (défaut ERPLibre 1.6.0).
ERPLIBRE_ODOO_TARGET = "install_odoo_18"
# Go ajoutés au disque quand on installe ERPLibre (le minimum d'image ne
# laisse que ~97 Mo libres après l'installation).
ERPLIBRE_EXTRA_DISK_GB = 5
@staticmethod
def _qemu_wait_ssh(ip, user="erplibre", timeout=1200):
"""Attend que sshd réponde ET que cloud-init soit TERMINÉ, via des
connexions COURTES successives. Au 1er boot, cloud-init régénère les
clés d'hôte et REDÉMARRE sshd : attendre la fin de cloud-init AVANT de
lancer l'install évite qu'une session longue soit tuée (« Connection
closed by remote host », exit 255 — cas Fedora). True si prête."""
opts = (
"-o StrictHostKeyChecking=no -o UserKnownHostsFile=/dev/null "
"-o ConnectTimeout=8 -o BatchMode=yes"
)
# On imprime toujours l'état (|| true) pour matcher sur le TEXTE :
# « status: running » n'a pas de code de sortie fiable selon la version.
probe = (
"if command -v cloud-init >/dev/null 2>&1; then "
"cloud-init status 2>/dev/null || true; else echo nocloudinit; fi"
)
ready = ("done", "disabled", "error", "degraded", "nocloudinit")
deadline = time.time() + timeout
ssh_up = False
while time.time() < deadline:
try:
res = subprocess.run(
f"ssh {opts} {user}@{ip} {shlex.quote(probe)}",
shell=True,
capture_output=True,
timeout=20,
text=True,
)
out = res.stdout or ""
except (OSError, subprocess.SubprocessError):
out = ""
if out.strip():
ssh_up = True # sshd a répondu
if any(k in out for k in ready):
return True
time.sleep(5)
# cloud-init pas confirmé fini dans le délai : on tente quand même si
# sshd répondait au moins (mieux qu'un abandon silencieux).
return ssh_up
# Paquets QEMU/libvirt pour le profil « Déploiement » (nos 3 gestionnaires).
_QEMU_QEMU_PKGS = (
"(sudo apt-get install -y qemu-kvm libvirt-daemon-system virtinst "
"cloud-image-utils 2>/dev/null || sudo dnf install -y qemu-kvm "
"libvirt virt-install cloud-utils 2>/dev/null || sudo pacman -S "
"--needed --noconfirm qemu-desktop libvirt virt-install 2>/dev/null "
"|| true)"
)
def _qemu_pick_install_profile(self):
"""Choix de CE QU'ON installe sur la VM. Renvoie (label, commande
finale exécutée dans ~/git/erplibre)."""
profiles = [
(
f"ERPLibre + Odoo {v}",
f"make install_os && make install_odoo_{v}",
)
for v in ("18", "17", "16", "15", "14", "13", "12")
]
profiles += [
(
t("ERPLibre + all Odoo versions"),
"make install_os && make install_odoo_all_version",
),
(
t("ERPLibre only (no Odoo)"),
"make install_os && ./script/install/install_erplibre.sh",
),
(
t("ERPLibre mobile (home)"),
"make install_os && ./mobile/install_and_run.sh",
),
(
t("ERPLibre Deployment (+ QEMU + dev)"),
"make install_os && make install_dev && "
+ self._QEMU_QEMU_PKGS,
),
]
print(f"\n{t('What to install on the VM(s)?')}")
for i, (label, _cmd) in enumerate(profiles, 1):
print(f" [{i}] {label}{' *' if i == 1 else ''}")
sel = input(t("Choice (number, blank = Odoo 18): ")).strip()
try:
idx = int(sel) - 1
if 0 <= idx < len(profiles):
return profiles[idx]
except ValueError:
pass
return profiles[0] # défaut : ERPLibre + Odoo 18
@staticmethod
def _qemu_odoo_service_cmd():
"""Snippet shell (exécuté dans la VM) qui installe ERPLibre/Odoo comme
service systemd (inspiré de script/systemd/install_daemon.sh) puis
l'active + démarre. N'est ajouté QUE pour les profils avec Odoo."""
return (
'SVC_USER=$(whoami); SVC_GROUP=$(id -gn); '
'SVC_DIR="$HOME/git/erplibre"; '
"sudo tee /etc/systemd/system/erplibre.service >/dev/null <<UNIT\n"
"[Unit]\n"
"Description=ERPLibre\n"
"Requires=postgresql.service\n"
"After=network.target network-online.target postgresql.service\n"
"\n"
"[Service]\n"
"Type=simple\n"
"User=$SVC_USER\n"
"Group=$SVC_GROUP\n"
"Restart=always\n"
"RestartSec=5\n"
"ExecStart=$SVC_DIR/run.sh\n"
"WorkingDirectory=$SVC_DIR\n"
"StandardOutput=journal+console\n"
"\n"
"[Install]\n"
"WantedBy=multi-user.target\n"
"UNIT\n"
"sudo systemctl daemon-reload; "
"sudo systemctl enable --now erplibre.service"
)
def _qemu_erplibre_remote_cmd(self, branch, final_cmd=None):
"""Script d'installation ERPLibre exécuté DANS la VM (curl/git/make
puis clone + `final_cmd` dans ~/git/erplibre). `final_cmd` par défaut :
install_os + install_odoo_18."""
if not final_cmd:
final_cmd = f"make install_os && make {self.ERPLIBRE_ODOO_TARGET}"
# Profils AVEC Odoo (install_odoo*) uniquement : après l'install, on
# enregistre Odoo comme service systemd (enable + start). Pas pour
# « ERPLibre seul », « mobile » ni « Déploiement ».
if "install_odoo" in final_cmd:
final_cmd = f"{final_cmd} && {self._qemu_odoo_service_cmd()}"
return (
"set -e; "
# Attendre la FIN de cloud-init : pendant sa phase « paquets » il
# tient le verrou apt/dnf/pacman -> sinon « unable to lock
# database » (Arch) / « Could not get lock » (apt). timeout pour ne
# pas bloquer indéfiniment si cloud-init traîne.
"command -v cloud-init >/dev/null 2>&1 && "
"sudo timeout 900 cloud-init status --wait >/dev/null 2>&1 "
"|| true; "
# Outils d'amorçage (absents des images cloud minimales) : curl,
# git, make. Chaque branche RAFRAÎCHIT d'abord les dépôts pour que
# la VM soit la plus rapide possible (miroirs à jour / les plus
# rapides), puis installe. Supporte apt (Debian/Ubuntu), dnf/yum
# (Fedora) et pacman (Arch).
"PKGS='curl git make'; "
"if command -v apt-get >/dev/null 2>&1; then "
# update best-effort (|| true) puis install OBLIGATOIRE : sans le
# « || true », un « apt-get update » en échec (réseau) sautait
# l'install sans erreur (liste &&) -> git/make absents ensuite.
"sudo apt-get update -qq || true; "
"sudo apt-get install -y $PKGS; "
"elif command -v dnf >/dev/null 2>&1; then "
# makecache (dnf5 choisit les miroirs les plus rapides) puis
# install --refresh ; retry avec « clean all » car les images
# cloud fraîches ratent parfois la vérif GPG/checksum d'un miroir.
"sudo dnf -q makecache || true; "
"sudo dnf install -y --refresh $PKGS || "
"{ sudo dnf clean all; sudo dnf install -y --refresh $PKGS; }; "
"elif command -v pacman >/dev/null 2>&1; then "
# Verrou pacman périmé (cloud-init interrompu) : le retirer SEULEMENT
# si aucun pacman ne tourne, sinon on attend qu'il se libère.
"pgrep -x pacman >/dev/null 2>&1 "
"|| sudo rm -f /var/lib/pacman/db.lck; "
# Arch : reflector sélectionne les miroirs HTTPS les plus rapides,
# puis MISE À JOUR COMPLÈTE (-Syu) : Arch (rolling) ne supporte pas
# les màj partielles ; sur une image cloud à la glibc ancienne, un
# « pacman -S <paquet récent> » casse avec « GLIBC_x.yy not found ».
"sudo pacman -Sy --needed --noconfirm reflector || true; "
"sudo reflector --latest 20 --protocol https --sort rate "
"--save /etc/pacman.d/mirrorlist || true; "
"sudo pacman -Syu --noconfirm || true; "
"sudo pacman -S --needed --noconfirm $PKGS; "
"elif command -v yum >/dev/null 2>&1; then "
"sudo yum makecache -q || true; sudo yum install -y $PKGS; "
"else echo 'Aucun gestionnaire de paquets "
"(apt/dnf/pacman/yum)'; exit 1; fi; "
# Vérifie explicitement que tout est là : erreur nette plutôt
# qu'un « command not found » cryptique plus loin.
"for t in curl git make; do command -v $t >/dev/null 2>&1 || "
'{ echo "Outil manquant apres installation: $t '
'(reseau de la VM ?)"; exit 1; }; done; '
"mkdir -p ~/git; "
"if [ ! -d ~/git/erplibre/.git ]; then "
f"git clone --branch {shlex.quote(branch)} "
f"{self.ERPLIBRE_GIT_URL} ~/git/erplibre; fi; "
# Installation : commande finale selon le profil choisi.
f"cd ~/git/erplibre && {final_cmd}"
)
def _qemu_install_erplibre_monitored(
self, names, branch, ip_map=None, final_cmd=None
):
"""Lance l'install ERPLibre en parallèle DÉTACHÉE sur les VM et ouvre
le dashboard Textual. Quitter le dashboard n'arrête pas les installs.
`ip_map` : IP déjà résolues (sinon on résout ici, EN PARALLÈLE).
`final_cmd` : commande d'install selon le profil choisi."""
from script.todo.qemu_install_monitor import (
launch_installs,
run_monitor,
)
remote = self._qemu_erplibre_remote_cmd(branch, final_cmd)
try:
mod = self._qemu_import_module()
except Exception:
mod = None
if ip_map is None:
ip_map = self._qemu_resolve_ips(names)
vms = []
for name in names:
ip = ip_map.get(name)
if ip:
d, v, a = (
self._qemu_vm_meta(name, mod)
if mod
else (None, None, None)
)
vms.append(
{
"name": name,
"ip": ip,
"distro": d,
"version": v,
"arch": a,
}
)
else:
print(f" {name}: {t('no IP, skipped.')}")
if not vms:
print(t("No VM to install."))
return
manifest = launch_installs(vms, branch, remote)
print(f"\n🖥 {t('Opening the interactive monitor...')}")
# Affiche tous les chemins de log (pour les consulter/partager même si
# on quitte le dashboard avant la fin).
print(f" {t('Log files:')}")
with open(manifest, encoding="utf-8") as _fh:
for entry in json.load(_fh)["vms"]:
print(f" {entry['log']}")
try:
run_monitor(manifest)
except ImportError:
# textual absent : les installs tournent déjà (détachées), on ne
# plante pas — on indique juste où sont les logs.
print(f" {t('Install textual for the dashboard (pip).')}")
print(
f"\n{t('Monitor closed. Installs keep running in the background.')}"
)
logdir = os.path.dirname(manifest)
print(f" {t('Logs:')} {logdir}")
# Commande prête à copier pour relire/partager tous les logs.
print(f" {t('Read the logs:')} tail -n +1 {logdir}/*.log")
def _qemu_install_erplibre_vm(
self, name, ssh_key, branch, ip=None, final_cmd=None
):
"""Clone ERPLibre (branche donnée) dans ~/git/erplibre de la VM puis
exécute la commande d'install du profil choisi (streamé). `ip` : IP
déjà résolue ; `final_cmd` : commande d'install."""
if ip is None:
ip = self._qemu_vm_ip(name)
if not ip:
print(
f" {name}: {t('no IP obtained, ERPLibre install skipped.')}"
)
return
# Attend que le SSH soit prêt (évite « Connection refused » quand
# l'install démarre avant le sshd de la VM).
print(f" {name} ({ip}): {t('waiting for SSH...')}")
if not self._qemu_wait_ssh(ip):
print(
f" {name} ({ip}): "
f"{t('SSH not reachable, ERPLibre install skipped.')}"
)
return
remote = self._qemu_erplibre_remote_cmd(branch, final_cmd)
ssh_opts = (
"-o StrictHostKeyChecking=no -o UserKnownHostsFile=/dev/null "
"-o ConnectTimeout=15"
)
cmd = f"ssh {ssh_opts} erplibre@{ip} {shlex.quote(remote)}"
print(
f"\n 📦 {name} ({ip}): {t('installing ERPLibre')} "
f"({branch})"
)
print(f" {t('Will execute:')} {cmd}")
self.execute.exec_command_live(cmd, source_erplibre=False)
# vCPU de base (x1) par VM. Le multiplicateur monte de là.
_QEMU_BASE_VCPUS = 2
def _qemu_prompt_resource_mult(self, selected, host_cpu, free_ram):
"""Multiplicateur de ressources par VM : x1 (minimum catalogue) .. x4.
Multiplie la RAM (base = minimum de la version) et les vCPU (base
_QEMU_BASE_VCPUS), en bornant les vCPU au nombre de cœurs de l'hôte et
en signalant si la RAM totale dépasse la RAM libre. Renvoie (mult,
base_vcpus)."""
base_ram = sum(s[2] for s in selected) # RAM min totale (x1)
base_vcpus = self._QEMU_BASE_VCPUS
print(f"\n{t('Resources per VM (x1 = catalog minimum):')}")
cpu_txt = f"{host_cpu} vCPU"
ram_txt = (
f"~{free_ram} Mo {t('free')}"
if free_ram
else t("free RAM unknown")
)
print(f" {t('Host:')} {cpu_txt}, {ram_txt}")
for n in (1, 2, 3, 4):
vcpus = min(base_vcpus * n, host_cpu)
total = base_ram * n
star = " *" if n == 1 else ""
warn = ""
if free_ram and total > free_ram:
warn = f"{t('> host free RAM')}"
print(
f" [{n}] x{n}{star} {vcpus} vCPU/VM, "
f"{t('total RAM')} ~{total} Mo{warn}"
)
sel = input(f"{t('Choice (1-4, default 1):')} ").strip()
try:
n = int(sel)
if 1 <= n <= 4:
return n, base_vcpus
except ValueError:
pass
return 1, base_vcpus
def _qemu_customize_names(self, selected):
"""Noms des VM (liste parallèle à `selected`). Défaut = nom auto
(_qemu_infra_name) ; on peut en renommer certains À LA DEMANDE, par
leurs numéros séparés de virgules (vide = garder tous les noms auto)."""
names = [
self._qemu_infra_name(d, v, a) for d, v, _r, _dk, a in selected
]
print(f"\n{t('VM names (default = auto):')}")
for i, (nm, s) in enumerate(zip(names, selected), 1):
d, v, _r, _dk, a = s
print(f" [{i}] {nm} ({d} {v} [{a}])")
raw = input(
t("Rename which VMs? (numbers, comma-separated; blank = none): ")
).strip()
for tok in re.split(r"[\s,]+", raw):
if not tok:
continue
try:
i = int(tok) - 1
except ValueError:
continue
if 0 <= i < len(names):
new = input(f" {names[i]} {t('->')} ").strip()
if new:
names[i] = new
if len(set(names)) != len(names):
print(f"{t('Duplicate names detected; keeping as entered.')}")
return names
def _qemu_build_deploy_parts(
self, d, v, arch, name, eram, evcpus, disk, ssh_key, branch, dry_run
):
"""Construit la commande deploy_qemu.py d'UNE VM (utilisée pour l'aperçu
dry-run ET le déploiement réel)."""
parts = [] if dry_run else ["sudo"]
parts += [
self._qemu_script_path(),
"--distro", d, "--version", v, "--name", name,
"--memory", str(eram), "--vcpus", str(evcpus),
"--password", "erplibre",
]
if not dry_run:
# --no-wait-ip : ne bloque pas 90s/VM, l'IP est collectée après.
parts.append("--no-wait-ip")
if arch and arch != "amd64":
parts += ["--arch", arch]
if ssh_key:
parts += ["--ssh-key", ssh_key]
if branch:
# ERPLibre dépasse le minimum : +5 Go de disque.
bigger = self._parse_disk_gb(disk) + self.ERPLIBRE_EXTRA_DISK_GB
parts += ["--disk-size", f"{bigger}G"]
parts.append("--dry-run" if dry_run else "-y")
return parts
def _qemu_deploy(self, dry_run=False):
print(f"🚀 {t('Deploy ERPLibre VM(s)!')}")
try:
mod = self._qemu_import_module()
except Exception as exc:
print(f"{t('Cannot load QEMU catalog: ')}{exc}")
return
distros = list(mod.DISTROS)
# Rappel de la dernière installation enregistrée (si historique).
last = self._qemu_last_run_line()
if last:
print(last)
# 0) Architecture du parc (défaut : native ; [all] = TOUTES les archis
# supportées). Pour une arch précise non-amd64, on restreint le
# catalogue aux distros qui la publient ; pour [all], chaque distro
# reçoit uniquement les archis QU'ELLE publie.
arch = self._qemu_prompt_infra_arch() # amd64/arm64/s390x/all
if arch != "all":
allowed = self._qemu_arch_distros(arch)
if allowed is not None:
keep = [d for d in distros if d in allowed]
dropped = [d for d in distros if d not in keep]
if dropped:
print(
f"{t('images for this arch only exist for:')} "
f"{', '.join(allowed)} "
f"({t('ignored:')} {', '.join(dropped)})"
)
distros = keep
if not distros:
print(t("Nothing selected."))
return
def arches_for(distro):
"""Architectures à déployer pour cette distro selon le choix."""
if arch != "all":
return [arch]
out = ["amd64"]
if distro in self._QEMU_ARM64_DISTROS:
out.append("arm64")
if distro in self._QEMU_S390X_DISTROS:
out.append("s390x")
return out
# 1) Distributions : multi-sélection, catalogue complet, principal (la
# version par défaut de chaque distro, marquée d'un *), ou granulaire
# (liste à plat de TOUTES les versions × archis, choix par virgules).
# Avec [all] archis, chaque version se décline en une VM par archi.
print(f"\n{t('Distributions:')}")
for i, d in enumerate(distros, 1):
default_v = mod.DISTROS[d][1]
vers = ", ".join(
(v + " *" if v == default_v else v) for v in mod.DISTROS[d][0]
)
print(f" [{i}] {d} ({vers}){self._qemu_stat_avg('distro', d)}")
print(f" [all] {t('Whole catalog (every version)')}")
print(
f" [principal] {t('The main version of each distro (marked *)')}"
)
print(
f" [granulaire] {t('Pick exact versions (comma-separated list)')}"
)
raw = (
input(
t(
"Selection (numbers, 'all', 'principal' or 'granulaire',"
" default: all): "
)
)
.strip()
.lower()
)
catalog_all = raw in ("", "all", "*")
principal = raw in ("principal", "each", "p")
granular = raw in ("granulaire", "granular", "g")
selected = [] # (distro, version, ram_mb, disk_str, arch)
if granular:
# Liste APLATIE distro + version + ARCHITECTURE : on choisit des
# combinaisons précises par numéros séparés de virgules.
flat = [] # (distro, version, ram, disk, is_default, arch)
for d in distros:
versions_map, default_v = mod.DISTROS[d]
for v, (_c, _o, ram, disk) in versions_map.items():
for a in arches_for(d):
flat.append((d, v, ram, disk, v == default_v, a))
print(f"\n{t('All versions:')}")
for i, (d, v, ram, disk, isdef, a) in enumerate(flat, 1):
star = " *" if isdef else ""
print(f" [{i}] {d} {v}{star} [{a}] (RAM≥{ram}Mo, {disk})")
r = (
input(t("Selection (comma-separated numbers): "))
.strip()
.lower()
)
for d, v, ram, disk, _isdef, a in self._parse_index_selection(
r, flat
):
selected.append((d, v, ram, disk, a))
elif principal:
# Une VM par distro (version par défaut) × chaque archi supportée.
for d in distros:
versions_map, default_v = mod.DISTROS[d]
_c, _o, ram, disk = versions_map[default_v]
for a in arches_for(d):
selected.append((d, default_v, ram, disk, a))
else:
sel_distros = (
distros
if catalog_all
else self._parse_index_selection(raw, distros)
)
if not sel_distros:
print(t("Nothing selected."))
return
# 2) Versions par distro (multi-sélection) ; « all » si catalogue.
for d in sel_distros:
versions_map = mod.DISTROS[d][0]
vlist = list(versions_map)
if catalog_all:
chosen = vlist
else:
print(f"\n{t('Versions for')} {d.capitalize()} :")
for i, v in enumerate(vlist, 1):
_c, _o, ram, disk = versions_map[v]
stat = self._qemu_stat_avg("version", v, d)
print(f" [{i}] {v} (RAM≥{ram}Mo, {disk}){stat}")
print(f" [all] {t('select all')}")
r = input(
t("Selection (numbers, or 'all', default: all): ")
).strip()
chosen = (
vlist
if r.lower() in ("", "all", "*")
else self._parse_index_selection(r.lower(), vlist)
)
for v in chosen:
_c, _o, ram, disk = versions_map[v]
for a in arches_for(d):
selected.append((d, v, ram, disk, a))
if not selected:
print(t("Nothing selected."))
return
# 2b) Multiplicateur de ressources par VM (x1 = minimum .. x4) : monte
# la RAM et les vCPU selon ce que l'hôte peut fournir.
host_cpu = os.cpu_count() or 2
free_ram = self._host_free_ram_mb()
res_mult, base_vcpus = self._qemu_prompt_resource_mult(
selected, host_cpu, free_ram
)
def eff_res(ram):
"""(RAM effective, vCPU) pour une VM selon le multiplicateur."""
return ram * res_mult, min(base_vcpus * res_mult, host_cpu)
# 2c) Noms des VM (auto par défaut, renommage granulaire à la demande).
names = self._qemu_customize_names(selected)
# 3) Plan + estimation des ressources (avec le multiplicateur appliqué).
total_ram = sum(s[2] * res_mult for s in selected)
total_disk = sum(self._parse_disk_gb(s[3]) for s in selected)
print(f"\n{t('Deployment plan')} ({len(selected)} VM, x{res_mult}) :")
for i, (d, v, ram, disk, a) in enumerate(selected):
eram, evcpus = eff_res(ram)
print(
f" - {names[i]:<30} {d} {v:<7} [{a:<5}] "
f"{evcpus} vCPU RAM {eram}Mo {t('disk')} {disk}"
)
print(f"\n {t('Total RAM (all running):')} {total_ram} Mo")
print(f" {t('Total virtual disk (thin qcow2):')} ~{total_disk} G")
if free_ram:
print(f" {t('Host RAM available:')} {free_ram} Mo")
if total_ram > free_ram:
warn = t(
"Total RAM exceeds host free RAM: not all VMs will run"
" at once."
)
print(f"{warn}")
# Aperçu (dry-run) : montre les commandes deploy_qemu sans rien créer
# (ni sudo, ni installation), puis on s'arrête.
if dry_run:
default_key = self._qemu_default_ssh_key()
print(f"\n{t('Preview (dry-run):')}")
for i, (d, v, ram, disk, a) in enumerate(selected):
eram, evcpus = eff_res(ram)
parts = self._qemu_build_deploy_parts(
d, v, a, names[i], eram, evcpus, disk,
default_key, None, dry_run=True,
)
print(" " + " ".join(shlex.quote(p) for p in parts))
return
# Clé SSH (partagée par tout le parc).
default_key = self._qemu_default_ssh_key()
key_hint = default_key or t("none")
ssh_key = input(f"{t('SSH public key path')} ({key_hint}): ").strip()
if not ssh_key:
ssh_key = default_key
if ssh_key:
ssh_key = os.path.expanduser(ssh_key)
# 4) Option : installer ERPLibre dans ~/git/erplibre de chaque VM.
install_branch = None
install_monitor = False
install_cmd = None # commande finale selon le profil choisi
ans = input(
t("Install ERPLibre into ~/git/erplibre on each VM? (y/N): ")
)
if self._is_yes(ans):
install_branch = self._qemu_pick_branch()
_label, install_cmd = self._qemu_pick_install_profile()
install_monitor = self._is_yes(
input(t("Interactive monitoring dashboard? (y/N): "))
)
add_ssh_config = self._is_yes(
input(t("Add each VM to ~/.ssh/config? (y/N): "))
)
# 5) Sépare les VM à CRÉER des déjà existantes AVANT de proposer le
# parallélisme : on connaît alors le vrai nombre à déployer (affiché
# dans le prompt) et on peut numéroter chaque tâche.
pending = [] # (name, d, v, ram, disk, a)
deployed = []
for i, (d, v, ram, disk, a) in enumerate(selected):
name = names[i]
if self._qemu_domain_exists(name):
print(f"{name}: {t('already exists, skipped.')}")
deployed.append(name)
else:
pending.append((name, d, v, ram, disk, a))
n_jobs = len(pending)
# Nombre de déploiements en parallèle. Défaut = nombre de CPU de l'hôte
# (borné par le nombre de VM). On affiche aussi le NB DE VM à déployer.
default_par = min(n_jobs, os.cpu_count() or 4) or 1
raw = input(
f"{t('Parallel deployments (default:')} {default_par}, "
f"{n_jobs} {t('VMs')}): "
).strip()
try:
parallelism = max(1, int(raw)) if raw else default_par
except ValueError:
parallelism = default_par
# Confirmation puis déploiement (en parallèle).
ans = input(f"\n{t('Deploy these VMs now? (y/N): ')}")
if not self._is_yes(ans):
print(t("Cancelled."))
return
# Jobs numérotés (k/N) : l'ID suit l'ORDRE de préparation, stable même
# si les résultats reviennent dans le désordre (exécution parallèle).
jobs = [] # (id, name, parts)
for k, (name, d, v, ram, disk, a) in enumerate(pending, 1):
eram, evcpus = eff_res(ram)
parts = self._qemu_build_deploy_parts(
d, v, a, name, eram, evcpus, disk,
ssh_key, install_branch, dry_run=False,
)
jobs.append((f"{k}/{n_jobs}", name, parts))
deploy_start = time.time()
n_ok = 0
if jobs:
from concurrent.futures import (
ThreadPoolExecutor,
as_completed,
)
workers = min(parallelism, len(jobs))
print(
f"\n{t('Deploying')} {len(jobs)} VM "
f"({t('parallel jobs:')} {workers})…"
)
def _run(job):
jid, jname, jparts = job
j0 = time.time()
res = subprocess.run(jparts, capture_output=True, text=True)
out = (res.stdout or "") + (res.stderr or "")
return jid, jname, res.returncode, out, time.time() - j0
with ThreadPoolExecutor(max_workers=workers) as pool:
futures = [pool.submit(_run, j) for j in jobs]
# done = ordre de COMPLÉTION (les résultats reviennent dans le
# désordre) ; jid = ordre de préparation (stable). Durée par VM.
for done, fut in enumerate(as_completed(futures), 1):
jid, jname, rc, out, secs = fut.result()
mark = "" if rc == 0 else ""
print(
f"\n[{done}/{len(jobs)}] {mark} [{jid}] {jname} "
f"(rc={rc}, {self._fmt_dur(secs)})"
)
tail = [ln for ln in out.strip().splitlines() if ln][-4:]
for ln in tail:
print(f" {ln}")
if rc == 0:
deployed.append(jname)
n_ok += 1
print(
f"\n{t('Deploy summary:')} {n_ok} OK, "
f"{len(jobs) - n_ok} {t('failed')}, "
f"{len(jobs)} {t('VMs')}, {self._fmt_dur(time.time() - deploy_start)}"
)
# 6) Résolution des IP EN PARALLÈLE (réutilisée pour ssh_config +
# install) : une boucle EN SÉRIE bloquait plusieurs minutes par VM
# émulée SANS sortie -> le dashboard « n'ouvrait jamais ».
ip_map = {}
if deployed and (add_ssh_config or install_branch):
labels = {
nm: f"{k}/{len(deployed)}"
for k, nm in enumerate(deployed, 1)
}
ip_map = self._qemu_resolve_ips(deployed, labels)
if add_ssh_config:
for name in deployed:
ip = ip_map.get(name)
if ip:
self._write_ssh_config_entry(name, "erplibre", ip)
# 7) Installation ERPLibre (clone + make) si demandée.
if install_branch:
if install_monitor:
# Installs détachées en parallèle + dashboard Textual.
self._qemu_install_erplibre_monitored(
deployed, install_branch, ip_map, install_cmd
)
else:
print(
f"\n{t('Installing ERPLibre on each VM')} "
f"({install_branch})…"
)
for name in deployed:
self._qemu_install_erplibre_vm(
name,
ssh_key,
install_branch,
ip_map.get(name),
install_cmd,
)
# Sommaire TOTAL (déploiement + résolution IP + ssh_config + install
# synchrone ; l'install monitorée est détachée, non comptée ici).
print(f"\n{'' * 60}")
print(f" {t('TOTAL summary')}")
print(f" {t('VMs deployed:')} {n_ok}/{len(jobs) if jobs else 0}"
f" ({t('total incl. existing:')} {len(deployed)})")
print(f" {t('Total time:')} {self._fmt_dur(time.time() - deploy_start)}")
print(f"{'' * 60}")
print(f"\n{t('ERPLibre infra deployment done.')}")
print(f" {t('Default login:')} erplibre / erplibre")
print(f" {t('Manage with:')} sudo virsh list --all")
def _deploy_clone_erplibre(self):
default_path = os.path.expanduser("~/erplibre")
target_path = (
input(t("Target directory path (default: ~/erplibre): ")).strip()
or default_path
)
target_path = os.path.expanduser(target_path)
if os.path.exists(target_path):
print(f"{t('Directory already exists: ')}{target_path}")
return
print(t("Cloning ERPLibre..."))
cmd = (
"git clone"
" https://github.com/erplibre/erplibre"
f" {target_path}"
)
print(f"{t('Will execute:')} {cmd}")
try:
self.execute.exec_command_live(cmd, source_erplibre=False)
print(f"{t('ERPLibre cloned successfully to: ')}" f"{target_path}")
except Exception as e:
print(f"{t('Error cloning ERPLibre: ')}{e}")
def _deploy_ntfy_server(self):
print(
f"\n{t('Deploy a local NTFY push notification server (Ubuntu/Arch)')}"
)
port = input(t("NTFY server port (default: 8080): ")).strip() or "8080"
import socket
hostname = socket.gethostname()
try:
local_ip = socket.gethostbyname(hostname)
except Exception:
local_ip = "127.0.0.1"
default_url = f"http://{local_ip}:{port}"
base_url = (
input(f"{t('NTFY base URL')} (default: {default_url}): ").strip()
or default_url
)
script_path = os.path.join(
os.path.dirname(os.path.abspath(__file__)),
"..",
"install",
"install_ntfy.sh",
)
script_path = os.path.realpath(script_path)
if not os.path.isfile(script_path):
print(f"{t('NTFY install script not found: ')}{script_path}")
return
print(f"\n{t('Installing NTFY server (requires sudo)...')}")
cmd = (
f"sudo NTFY_PORT={port}"
f" NTFY_BASE_URL={base_url}"
f" bash {script_path}"
)
print(f"{t('Will execute:')} {cmd}\n")
try:
self.execute.exec_command_live(cmd, source_erplibre=False)
print(f"\n{t('NTFY server installed and started successfully!')}")
except Exception as e:
print(f"{t('Error installing NTFY server: ')}{e}")
def _configure_sshfs(self):
import getpass
import re
from datetime import datetime
print(f"\n{t('SSH address input method')}")
print(f"[1] {t('Manual entry')}")
print(f"[2] {t('From ~/.ssh/config')}")
choice = input(t("Your choice (1/2): ")).strip()
user = None
hostname = None
ssh_name = None
if choice == "2":
ssh_config_path = os.path.expanduser("~/.ssh/config")
hosts = []
if os.path.exists(ssh_config_path):
current_host = None
current_info = {}
with open(ssh_config_path) as f:
for line in f:
line = line.strip()
if line.lower().startswith("host "):
host_val = line.split(None, 1)[1].strip()
if host_val != "*":
if current_host:
hosts.append((current_host, current_info))
current_host = host_val
current_info = {}
elif current_host:
key = line.split(None, 1)
if len(key) == 2:
k = key[0].lower()
v = key[1].strip()
if k == "hostname":
current_info["hostname"] = v
elif k == "user":
current_info["user"] = v
if current_host:
hosts.append((current_host, current_info))
if not hosts:
print(t("No SSH hosts found in ~/.ssh/config"))
return
print()
for i, (host, info) in enumerate(hosts, 1):
hn = info.get("hostname", host)
u = info.get("user", "")
desc = host
if hn != host:
desc += f" ({hn})"
if u:
desc += f" [{u}]"
print(f"[{i}] {desc}")
sel = input(t("Select SSH host number: ")).strip()
try:
idx = int(sel) - 1
if idx < 0 or idx >= len(hosts):
print(t("Invalid selection!"))
return
except ValueError:
print(t("Invalid selection!"))
return
host_name, host_info = hosts[idx]
hostname = host_info.get("hostname", host_name)
user = host_info.get("user", getpass.getuser())
ssh_name = host_name
target = f"{host_name}:/"
else:
ssh_host = input(
t("SSH host (e.g.: user@192.168.1.100): ")
).strip()
if not ssh_host:
print(t("SSH host is required!"))
return
if "@" in ssh_host:
user, hostname = ssh_host.split("@", 1)
else:
hostname = ssh_host
user = getpass.getuser()
ssh_name = hostname
target = f"{user}@{hostname}:/"
safe_name = re.sub(r"[^a-zA-Z0-9_-]", "_", ssh_name)
timestamp = datetime.now().strftime("%Y%m%d_%H%M%S")
mount_point = f"/tmp/sshfs_{safe_name}_{timestamp}"
os.makedirs(mount_point, exist_ok=True)
cmd = f"sshfs {target} {mount_point}"
print(f"{t('Mounting sshfs on: ')}{mount_point}")
print(f"{t('Will execute:')} {cmd}")
try:
self.execute.exec_command_live(cmd, source_erplibre=False)
print(f"{t('Mounted on: ')}{mount_point}")
print(f"mount | grep sshfs")
print(f"{t('To unmount: ')}" f"fusermount -u {mount_point}")
print(f"nautilus {mount_point}/home/{user}")
except Exception as e:
print(f"{t('Error mounting sshfs: ')}{e}")
def _get_ssh_params(self):
"""Prompt for SSH connection parameters. Returns dict or None on cancel."""
host = click.prompt(
t("Remote host (user@hostname or hostname): ")
).strip()
if not host:
print(t("SSH host is required!"))
return None
user = (
click.prompt(t("SSH user (default: erplibre): ")).strip()
or "erplibre"
)
port = click.prompt(t("SSH port (default: 22): ")).strip() or "22"
key = click.prompt(
t("SSH key path (default: ~/.ssh/id_rsa, empty for none): ")
).strip()
path = (
click.prompt(
t("Remote path (default: ~/erplibre_deploy_2): ")
).strip()
or "~/erplibre_deploy_2"
)
return {
"SSH_HOST": host,
"SSH_USER": user,
"SSH_PORT": port,
"SSH_KEY": key,
"SSH_PATH": path,
}
def _build_ssh_make_cmd(self, target, params, extra=None):
"""Build a make SSH command string from params dict."""
parts = [f"make {target}"]
for k, v in params.items():
if v:
parts.append(f'{k}="{v}"')
if extra:
for k, v in extra.items():
if v:
parts.append(f'{k}="{v}"')
return " ".join(parts)
def _deploy_ssh_check(self):
params = self._get_ssh_params()
if not params:
return
cmd = self._build_ssh_make_cmd("ssh_check", params)
print(f"{t('Will execute:')} {cmd}")
self.execute.exec_command_live(
cmd, source_erplibre=False, single_source_erplibre=True
)
def _deploy_ssh_push(self):
params = self._get_ssh_params()
if not params:
return
cmd = self._build_ssh_make_cmd("ssh_push", params)
print(f"{t('Will execute:')} {cmd}")
self.execute.exec_command_live(
cmd, source_erplibre=False, single_source_erplibre=True
)
def _deploy_ssh_install(self):
params = self._get_ssh_params()
if not params:
return
cmd = self._build_ssh_make_cmd("ssh_install", params)
print(f"{t('Will execute:')} {cmd}")
self.execute.exec_command_live(
cmd, source_erplibre=False, single_source_erplibre=True
)
def _deploy_ssh_run(self):
params = self._get_ssh_params()
if not params:
return
cmd = self._build_ssh_make_cmd("ssh_run", params)
print(f"{t('Will execute:')} {cmd}")
self.execute.exec_command_live(
cmd, source_erplibre=False, single_source_erplibre=True
)
def _deploy_ssh_stop(self):
params = self._get_ssh_params()
if not params:
return
cmd = self._build_ssh_make_cmd("ssh_stop", params)
print(f"{t('Will execute:')} {cmd}")
self.execute.exec_command_live(
cmd, source_erplibre=False, single_source_erplibre=True
)
def _deploy_ssh_restart(self):
params = self._get_ssh_params()
if not params:
return
cmd = self._build_ssh_make_cmd("ssh_restart", params)
print(f"{t('Will execute:')} {cmd}")
self.execute.exec_command_live(
cmd, source_erplibre=False, single_source_erplibre=True
)
def _deploy_ssh_status(self):
params = self._get_ssh_params()
if not params:
return
cmd = self._build_ssh_make_cmd("ssh_status", params)
print(f"{t('Will execute:')} {cmd}")
self.execute.exec_command_live(
cmd, source_erplibre=False, single_source_erplibre=True
)
def _deploy_ssh_logs(self):
params = self._get_ssh_params()
if not params:
return
cmd = self._build_ssh_make_cmd("ssh_logs", params)
print(f"{t('Will execute:')} {cmd}")
self.execute.exec_command_live(
cmd, source_erplibre=False, single_source_erplibre=True
)
def _deploy_ssh_make(self):
params = self._get_ssh_params()
if not params:
return
target = click.prompt(t("Make target to run remotely: ")).strip()
if not target:
print(t("SSH host is required!"))
return
cmd = self._build_ssh_make_cmd(
"ssh_make", params, extra={"SSH_TARGET": target}
)
print(f"{t('Will execute:')} {cmd}")
self.execute.exec_command_live(
cmd, source_erplibre=False, single_source_erplibre=True
)
def _deploy_ssh_install_systemd(self):
params = self._get_ssh_params()
if not params:
return
cmd = self._build_ssh_make_cmd("ssh_install_systemd", params)
print(f"{t('Will execute:')} {cmd}")
self.execute.exec_command_live(
cmd, source_erplibre=False, single_source_erplibre=True
)
def _deploy_ssh_install_nginx(self):
params = self._get_ssh_params()
if not params:
return
domain = click.prompt(t("Domain name (e.g.: example.com): ")).strip()
if not domain:
print(t("SSH host is required!"))
return
email = click.prompt(t("Admin email for SSL certificate: ")).strip()
cmd = self._build_ssh_make_cmd(
"ssh_install_nginx",
params,
extra={"SSH_DOMAIN": domain, "SSH_ADMIN_EMAIL": email},
)
print(f"{t('Will execute:')} {cmd}")
self.execute.exec_command_live(
cmd, source_erplibre=False, single_source_erplibre=True
)
def prompt_execute_code(self):
print(f"🤖 {t('What do you need for development?')}")
# help_info = """Commande :
# [1] Status Git local et distant
# [2] Démarrer le générateur de code
# [3] Format - Formatage automatique selon changement [ou manuelle]
# [4] Qualité - Qualité logiciel, détecter les fichiers qui manquent les licences AGPLv3
# [0] Retour
# """
# help_info = """Commande :
# [1] Status Git local et distant
# [0] Retour
# """
choices = self.config_file.get_config("code_from_makefile")
menu_entry = {
"prompt_description": t("Open SHELL"),
}
choices.append(menu_entry)
menu_entry = {
"prompt_description": t("Upgrade Module"),
}
choices.append(menu_entry)
choices.append(
{
"prompt_description": t("Debug"),
}
)
help_info = self.fill_help_info(choices)
while True:
status = click.prompt(help_info)
print()
if status == "0":
return False
elif status == str(len(choices)):
self.debug_ide()
elif status == str(len(choices) - 1):
self.upgrade_module()
elif status == str(len(choices) - 2):
self.open_shell_on_database()
else:
cmd_no_found = True
try:
int_cmd = int(status)
if 0 < int_cmd <= len(choices):
cmd_no_found = False
instance = choices[int_cmd - 1]
self.execute_from_configuration(instance)
except ValueError:
pass
if cmd_no_found:
print(t("Command not found !"))
def prompt_execute_git(self):
print(f"🤖 {t('Git management tools!')}")
choices = [
{"prompt_description": t("Local git server")},
{"prompt_description": t("Add a remote to a local repository")},
]
# Append config-driven entries
config_entries = self.config_file.get_config("git_from_makefile")
if config_entries:
choices.extend(config_entries)
help_info = self.fill_help_info(choices)
while True:
status = click.prompt(help_info)
print()
if status == "0":
return False
elif status == "1":
self.prompt_execute_git_local_server()
elif status == "2":
self._git_add_remote()
else:
cmd_no_found = True
try:
int_cmd = int(status)
if 0 < int_cmd <= len(choices):
cmd_no_found = False
instance = choices[int_cmd - 1]
self.execute_from_configuration(instance)
except ValueError:
pass
if cmd_no_found:
print(t("Command not found !"))
def _git_add_remote(self):
remote_name = (
input(t("Remote name (default: localhost): ")).strip()
or "localhost"
)
remote_url = input(
t("Repository address (e.g.: git://192.168.1.100/my-repo.git): ")
).strip()
if not remote_url:
print(t("Repository address is required!"))
return
cmd = f"git remote add {remote_name} {remote_url}"
print(f"{t('Will execute:')} {cmd}")
try:
self.execute.exec_command_live(cmd, source_erplibre=False)
print(t("Remote added successfully!"))
except Exception as e:
print(f"{t('Error adding remote: ')}{e}")
def prompt_execute_git_local_server(self):
print(f"🤖 {t('Manage local git repository server!')}")
choices = [
{
"prompt_description": t(
"Deploy a local git server (~/.git-server)"
)
},
{
"prompt_description": t(
"Deploy a production git server (/srv/git, root required)"
)
},
]
help_info = self.fill_help_info(choices)
while True:
status = click.prompt(help_info)
print()
if status == "0":
return False
elif status == "1":
self._prompt_git_server_actions(production_ready=False)
elif status == "2":
self._prompt_git_server_actions(production_ready=True)
else:
print(t("Command not found !"))
def _prompt_git_server_actions(self, production_ready=False):
mode = (
t("Production mode (/srv/git, root required)")
if production_ready
else t("Local mode (~/.git-server)")
)
print(f"🤖 {mode}")
choices = [
{
"prompt_description": t(
"Run all (init + remote + push + serve)"
)
},
{"prompt_description": t("Init - Create bare repos")},
{"prompt_description": t("Remote - Add local remotes")},
{"prompt_description": t("Push - Push to local server")},
{"prompt_description": t("Serve - Start git daemon")},
]
help_info = self.fill_help_info(choices)
while True:
status = click.prompt(help_info)
print()
if status == "0":
return False
elif status == "1":
self._deploy_git_server(
production_ready=production_ready,
action="all",
)
elif status == "2":
self._deploy_git_server(
production_ready=production_ready,
action="init",
)
elif status == "3":
self._deploy_git_server(
production_ready=production_ready,
action="remote",
)
elif status == "4":
self._deploy_git_server(
production_ready=production_ready,
action="push",
)
elif status == "5":
self._deploy_git_server(
production_ready=production_ready,
action="serve",
)
else:
print(t("Command not found !"))
def _deploy_git_server(self, production_ready=False, action="all"):
print(t("Starting git server deployment..."))
cmd = (
"python3 ./script/git/git_local_server.py -v" f" --action {action}"
)
if production_ready:
cmd += " --production-ready"
self.execute.exec_command_live(
cmd,
source_erplibre=False,
)
def prompt_execute_gpt_code(self):
print(f"🤖 {t('AI assistant tools for development!')}")
choices = [
{"prompt_description": t("Configure Claude Code configurations")},
{
"prompt_description": t(
"Add an automation with Claude in todo.py"
)
},
{
"prompt_description": t(
"RTK - CLI proxy to reduce LLM token consumption"
)
},
]
help_info = self.fill_help_info(choices)
while True:
status = click.prompt(help_info)
print()
if status == "0":
return False
elif status == "1":
self._prompt_claude_configs()
elif status == "2":
self._claude_add_automation()
elif status == "3":
self.prompt_execute_rtk()
else:
print(t("Command not found !"))
def _prompt_claude_configs(self):
print(f"🤖 {t('Deploy Claude Code commands!')}")
choices = [
{"prompt_description": t("Commit - OCA/Odoo commit command")},
{
"prompt_description": t(
"Todo Add Command - Add a command to todo.py menu"
)
},
{"prompt_description": t("Show installed custom commands")},
]
help_info = self.fill_help_info(choices)
while True:
status = click.prompt(help_info)
print()
if status == "0":
return False
elif status == "1":
self._setup_claude_command(
"commit",
"template_claude_commands_commit.md",
personalize=True,
)
elif status == "2":
self._setup_claude_command(
"todo_add_command",
"template_claude_commands_todo_add_command.md",
)
elif status == "3":
self._list_claude_commands()
else:
print(t("Command not found !"))
def _list_claude_commands(self):
commands_dir = os.path.expanduser("~/.claude/commands")
if not os.path.isdir(commands_dir):
print(t("No custom commands found in ~/.claude/commands/"))
return
files = sorted(
f for f in os.listdir(commands_dir) if f.endswith(".md")
)
if not files:
print(t("No custom commands found in ~/.claude/commands/"))
return
print(t("Claude Code custom commands:"))
print("-" * 50)
for f in files:
filepath = os.path.join(commands_dir, f)
mtime = os.path.getmtime(filepath)
date_str = datetime.datetime.fromtimestamp(mtime).strftime(
"%Y-%m-%d %H:%M"
)
name = f[:-3] # remove .md
print(f" /{name:<30} {date_str}")
print("-" * 50)
print(f"{t('Total:')}" f" {len(files)}")
def _setup_claude_command(
self, command_name, template_filename, personalize=False
):
dest_dir = os.path.expanduser("~/.claude/commands")
dest_file = os.path.join(dest_dir, f"{command_name}.md")
if os.path.exists(dest_file):
print(f"{t('File already exists: ')}{dest_file}")
overwrite = input(t("Do you want to overwrite the file? (y/Y): "))
if not self._is_yes(overwrite):
print(t("Nothing to do."))
return
template_path = os.path.join(
os.path.dirname(__file__),
"..",
"..",
"conf",
template_filename,
)
try:
with open(template_path) as f:
content = f.read()
if personalize:
name = input(t("Enter your full name: ")).strip()
email = input(t("Enter your email: ")).strip()
content = content.replace(
"Your Name <your@email.com>",
f"{name} <{email}>",
)
content = content.replace(
"Your Name ",
f"{name} ",
)
os.makedirs(dest_dir, exist_ok=True)
with open(dest_file, "w") as f:
f.write(content)
print(f"{t('File created successfully: ')}{dest_file}")
except Exception as e:
print(f"{t('Error creating file: ')}{e}")
def _claude_add_automation(self):
description = input(t("Description of the command to add: ")).strip()
if not description:
return
command = input(t("Bash command to execute: ")).strip()
if not command:
return
section = (
input(
t("Menu section (git/code/config/network/process): ")
).strip()
or "git"
)
section_key = f"{section}_from_makefile"
config_path = os.path.join(os.path.dirname(__file__), "todo.json")
try:
with open(config_path) as f:
config = json.load(f)
if section_key not in config:
config[section_key] = []
config[section_key].append(
{
"prompt_description": description,
"bash_command": command,
}
)
with open(config_path, "w") as f:
json.dump(config, f, indent=4, ensure_ascii=False)
f.write("\n")
print(t("Automation added successfully in todo.json!"))
except Exception as e:
print(f"{t('Error adding automation: ')}{e}")
def prompt_execute_doc(self):
print(f"🤖 {t('Looking for documentation?')}")
choices = [
{"prompt_description": t("Migration module coverage")},
{"prompt_description": t("What change between version")},
{"prompt_description": t("OCA guidelines")},
{"prompt_description": t("OCA migration Odoo 19 milestone")},
]
help_info = self.fill_help_info(choices)
while True:
status = click.prompt(help_info)
print()
if status == "0":
return False
elif status == "1":
str_version = input(
"Select version to upgrade Odoo CE (5-17) : "
)
try:
int_version = int(str_version)
print(
"https://oca.github.io/OpenUpgrade/coverage_analysis/modules"
f"{int_version * 10}-{(int_version + 1) * 10}.html"
)
except ValueError:
print(
"https://oca.github.io/OpenUpgrade/030_coverage_analysis.html"
)
elif status == "2":
str_version = input(
"Select version to show what change for Odoo CE version 8-18) : "
)
try:
int_version = int(str_version)
print(
f"https://github.com/OCA/maintainer-tools/wiki/Migration-to-version-{int_version}.0"
)
except ValueError:
print("https://github.com/OCA/maintainer-tools/wiki")
elif status == "3":
print(
"https://github.com/OCA/odoo-community.org/blob/master/website/Contribution/CONTRIBUTING.rst"
)
elif status == "4":
print("https://github.com/OCA/maintainer-tools/issues/658")
else:
print(t("Command not found !"))
def prompt_execute_database(self):
print(f"🤖 {t('Make changes to databases!')}")
choices = [
{"section": t("Backup")},
{"prompt_description": t("Create backup (.zip)")},
{
"prompt_description": t(
"Download database to create backup (.zip)"
)
},
{"section": t("Restore")},
{"prompt_description": t("Restore from backup (.zip)")},
{"section": t("Danger zone")},
{"prompt_description": t("Erase a database")},
]
help_info = self.fill_help_info(choices)
while True:
status = click.prompt(help_info)
print()
if status == "0":
return False
elif status == "1":
self.db_manager.create_backup_from_database()
elif status == "2":
self.db_manager.download_database_backup_cli()
elif status == "3":
self.db_manager.restore_from_database()
elif status == "4":
self.db_manager.drop_database()
else:
print(t("Command not found !"))
def prompt_execute_process(self):
print(f"🤖 {t('Manage execution processes!')}")
choices = [
{"prompt_description": t("Kill Odoo process from actual port")},
{"prompt_description": t("Kill git daemon server process")},
]
help_info = self.fill_help_info(choices)
while True:
status = click.prompt(help_info)
print()
if status == "0":
return False
elif status == "1":
self.process_kill_from_port()
elif status == "2":
self.process_kill_git_daemon()
else:
print(t("Command not found !"))
def process_kill_git_daemon(self):
self.execute.exec_command_live(
"pkill -f 'git daemon'",
source_erplibre=False,
)
print(t("Git daemon process killed."))
def prompt_execute_rtk(self):
print(
f"🤖 {t('Manage RTK (Rust Token Killer) for token optimization!')}"
)
choices = [
{"section": t("Setup")},
{"prompt_description": t("Install RTK")},
{"prompt_description": t("Initialize global auto-rewrite hook")},
{"section": t("Status")},
{"prompt_description": t("Check RTK version")},
{"prompt_description": t("Check RTK status")},
{"prompt_description": t("Show cumulative token savings")},
{"section": t("Optimize")},
{"prompt_description": t("Discover optimization opportunities")},
]
help_info = self.fill_help_info(choices)
while True:
status = click.prompt(help_info)
print()
if status == "0":
return False
elif status == "1":
self.rtk_install()
elif status == "2":
self.rtk_init_global()
elif status == "3":
self.rtk_check_version()
elif status == "4":
self.rtk_check_status()
elif status == "5":
self.rtk_show_gain()
elif status == "6":
self.rtk_discover()
else:
print(t("Command not found !"))
def rtk_install(self):
print(f"🤖 {t('Installation method:')}")
choices = [
{"prompt_description": t("curl - Automatic install script")},
{"prompt_description": t("brew - Homebrew (macOS/Linux)")},
{
"prompt_description": t(
"cargo - Build from source (Rust required)"
)
},
]
help_info = self.fill_help_info(choices)
status = click.prompt(help_info)
print()
if status == "0":
return
elif status == "1":
self.execute.exec_command_live(
"curl -fsSL https://raw.githubusercontent.com/rtk-ai/rtk/refs/heads/master/install.sh | sh",
source_erplibre=False,
)
elif status == "2":
self.execute.exec_command_live(
"brew install rtk",
source_erplibre=False,
)
elif status == "3":
self.execute.exec_command_live(
"cargo install --git https://github.com/rtk-ai/rtk",
source_erplibre=False,
)
else:
print(t("Command not found !"))
def rtk_check_version(self):
self.execute.exec_command_live(
"rtk --version",
source_erplibre=False,
)
def rtk_show_gain(self):
self.execute.exec_command_live(
"rtk gain",
source_erplibre=False,
)
def rtk_discover(self):
self.execute.exec_command_live(
"rtk discover",
source_erplibre=False,
)
def rtk_init_global(self):
self.execute.exec_command_live(
"rtk init --global",
source_erplibre=False,
)
def rtk_check_status(self):
rtk_path = shutil.which("rtk")
if rtk_path is None:
print(t("RTK is not installed. Use option 1 to install it."))
return
result = self.execute.exec_command_live(
"rtk --version",
source_erplibre=False,
quiet=True,
return_status_and_output=True,
)
if isinstance(result, tuple) and result[0] == 0:
version_output = " ".join(result[1]).strip()
print(f"{t('RTK is installed, version: ')}{version_output}")
else:
print(f"{t('RTK is installed, version: ')}?")
config_path = os.path.expanduser("~/.config/rtk/config.toml")
if os.path.exists(config_path):
print(t("Global auto-rewrite hook: active"))
else:
print(t("Global auto-rewrite hook: inactive"))
def prompt_execute_config(self):
print(f"🤖 {t('Manage ERPLibre and Odoo configuration!')}")
choices = [
{"section": t("Generate")},
{"prompt_description": t("Generate all configuration")},
{"prompt_description": t("Generate from pre-configuration")},
{"prompt_description": t("Generate from backup file")},
{"prompt_description": t("Generate from database")},
{"section": t("Advanced")},
{"prompt_description": t("Setup queue job for parallelism")},
]
help_info = self.fill_help_info(choices)
while True:
status = click.prompt(help_info)
print()
if status == "0":
return False
elif status == "1":
self.generate_config()
elif status == "2":
self.generate_config_from_preconfiguration()
elif status == "3":
self.generate_config_from_backup()
elif status == "4":
self.generate_config_from_database()
elif status == "5":
self.generate_config_queue_job()
else:
print(t("Command not found !"))
def prompt_execute_network(self):
print(f"🤖 {t('Network tools!')}")
choices = [
{"prompt_description": t("SSH port-forwarding")},
{
"prompt_description": t(
"Network performance request per second"
)
},
]
help_info = self.fill_help_info(choices)
while True:
status = click.prompt(help_info)
print()
if status == "0":
return False
elif status == "1":
self.generate_network_port_forwarding()
elif status == "2":
self.generate_network_performance_test()
else:
print(t("Command not found !"))
def generate_network_port_forwarding(self, add_arg=None):
# ssh -L local_port:localhost:remote_port SSH_connection
ssh_connection = click.prompt(
"SSH connection, check ~/.ssh/config or user@address"
)
local_port = click.prompt("local port (8069)")
remote_port = click.prompt("remote port (8069)")
cmd = f"ssh -L {local_port}:localhost:{remote_port} {ssh_connection}"
self.execute.exec_command_live(
cmd,
source_erplibre=False,
single_source_erplibre=False,
)
def generate_network_performance_test(self, add_arg=None):
# ./script/performance/test_performance.sh
address = click.prompt("https address, like https://erplibre.com")
cmd = f"./script/performance/test_performance.sh {address}"
self.execute.exec_command_live(
cmd,
source_erplibre=False,
single_source_erplibre=True,
)
def prompt_execute_security(self):
print(f"🤖 {t('Dependency security audit!')}")
choices = [
{
"prompt_description": t(
"pip-audit - Check vulnerabilities on Python environments"
)
},
]
help_info = self.fill_help_info(choices)
while True:
status = click.prompt(help_info)
print()
if status == "0":
return False
elif status == "1":
self.execute_pip_audit()
else:
print(t("Command not found !"))
def prompt_execute_test(self):
print(f"🤖 {t('Test an Odoo module on a temporary database!')}")
choices = [
{"prompt_description": t("Test a module")},
{"prompt_description": t("Test a module with code coverage")},
{"prompt_description": t("ERPLibre unit tests")},
]
help_info = self.fill_help_info(choices)
while True:
status = click.prompt(help_info)
print()
if status == "0":
return False
elif status == "1":
self.execute_test_module(coverage=False)
elif status == "2":
self.execute_test_module(coverage=True)
elif status == "3":
self.execute_unit_tests()
else:
print(t("Command not found !"))
def execute_test_module(self, coverage=False):
# Module name
module_name = input(t("Module name to test: ")).strip()
if not module_name:
print(t("Module name is required!"))
return
# Database name
db_name = input(
t("Temporary database name (default: test_todo_tmp): ")
).strip()
if not db_name:
db_name = "test_todo_tmp"
# Extra modules
extra_modules = input(
t("Extra modules to install (comma-separated, empty for none): ")
).strip()
# Log level
log_level = input(t("Log level (default: test): ")).strip()
if not log_level:
log_level = "test"
# Build module list
modules_to_install = module_name
if extra_modules:
modules_to_install += f",{extra_modules}"
# Step 1: Create temp DB
print(f"\n--- {t('Creating temporary database')} '{db_name}' ---")
cmd_restore = f"./script/database/db_restore.py --database {db_name}"
self.execute.exec_command_live(
cmd_restore,
source_erplibre=False,
single_source_erplibre=True,
)
# Step 2: Install modules
print(f"\n--- {t('Installing modules')}: {modules_to_install} ---")
cmd_install = (
f"./script/addons/install_addons.sh"
f" {db_name} {modules_to_install}"
)
self.execute.exec_command_live(
cmd_install,
source_erplibre=False,
single_source_erplibre=True,
)
# Step 3: Run tests
print(f"\n--- {t('Running tests')}: {module_name} ---")
cmd_test = (
f"ODOO_MODE_TEST=true"
f" ./run.sh"
f" -d {db_name}"
f" -u {module_name}"
f" --log-level={log_level}"
)
if coverage:
cmd_test = f"ODOO_MODE_COVERAGE=true {cmd_test}"
status_code, output = self.execute.exec_command_live(
cmd_test,
return_status_and_output=True,
source_erplibre=False,
single_source_erplibre=True,
)
if status_code == 0:
print(f"\n{t('Tests completed successfully!')}")
else:
print(f"\n{t('Tests failed with return code')} {status_code}")
# Step 4: Cleanup
keep_input = input(t("Keep the temporary database? (y/N): "))
keep = self._is_yes(keep_input)
if keep:
print(f"{t('Database kept')}: {db_name}")
else:
print(
f"\n--- {t('Cleaning up temporary database')} '{db_name}' ---"
)
cmd_drop = f"./odoo_bin.sh db --drop --database {db_name}"
self.execute.exec_command_live(
cmd_drop,
source_erplibre=False,
single_source_erplibre=True,
)
def execute_unit_tests(self):
print(f"\n--- {t('Running unit tests')} ---")
cmd = (
".venv.erplibre/bin/python -m unittest discover"
" -s test -p 'test_*.py' -v"
)
status_code, output = self.execute.exec_command_live(
cmd,
source_erplibre=False,
return_status_and_output=True,
)
if status_code == 0:
print(f"\n{t('All unit tests passed')}")
else:
print(
f"\n{t('Some unit tests failed, exit code')}: {status_code}"
)
def execute_pip_audit(self):
versions, installed_versions, odoo_installed_version = (
get_odoo_version()
)
# Build list of installed environments
environments = {}
key_i = 0
for version_info in versions[::-1]:
erplibre_version = version_info.get("erplibre_version")
venv_path = f".venv.{erplibre_version}"
req_path = f"requirement/requirements.{erplibre_version}.txt"
odoo_version = f"odoo{version_info.get('odoo_version')}"
if not os.path.isdir(venv_path):
continue
key_i += 1
key_s = str(key_i)
label = f"{key_s}: {erplibre_version}"
if odoo_version == odoo_installed_version:
label += f" - {t('Current')}"
if version_info.get("Default"):
label += f" - {t('Default')}"
environments[key_s] = {
"label": label,
"venv_path": venv_path,
"req_path": req_path,
"erplibre_version": erplibre_version,
}
if not environments:
print(
t(
"No installed environment found. Install an Odoo version first."
)
)
return
# Show selection menu
str_input = (
f"💬 {t('Choose an environment for the audit:')}\n\t"
+ "\n\t".join([v["label"] for v in environments.values()])
+ f"\n\t0: {t('Back')}"
+ f"\n{t('Select: ')}"
)
env_input = ""
while env_input not in environments and env_input != "0":
if env_input:
print(
f"{t('Error, cannot understand value')}" f" '{env_input}'"
)
env_input = input(str_input).strip()
if env_input == "0":
return
selected = environments[env_input]
venv_path = selected["venv_path"]
req_path = selected["req_path"]
if not os.path.isfile(req_path):
print(f"{t('Dependencies file not found: ')}{req_path}")
return
# TODO support bash from parameter if open gnome-terminal
cmd = f"pip-audit -r {req_path} -l;bash"
print(f"{t('Execution: ')}{cmd}")
self.execute.exec_command_live(
cmd,
source_erplibre=True,
single_source_erplibre=False,
)
def generate_config(self, add_arg=None):
# Repeating to get all item before get group
cmd = (
f"./script/git/git_merge_repo_manifest.py --output .repo/local_manifests/erplibre_manifest.xml --with_OCA;"
f"./script/git/git_repo_update_group.py;"
f"./script/generate_config.sh"
)
if add_arg:
cmd += (
f";./script/git/git_repo_update_group.py {add_arg};"
f"./script/generate_config.sh"
)
self.execute.exec_command_live(
cmd,
source_erplibre=False,
single_source_erplibre=True,
)
def generate_config_from_preconfiguration(self):
choices = [
{"prompt_description": t("base")},
{"prompt_description": t("base + code_generator")},
{"prompt_description": t("base + image_db")},
{"prompt_description": t("all")},
# {"prompt_description": "base + migration"},
]
help_info = self.fill_help_info(choices)
while True:
status = click.prompt(help_info)
print()
if status == "0":
return False
elif status == "1":
group = "base"
str_group = f"--group {group}"
self.generate_config(add_arg=str_group)
elif status == "2":
group = "base,code_generator"
str_group = f"--group {group}"
self.generate_config(add_arg=str_group)
elif status == "3":
group = "base,image_db"
str_group = f"--group {group}"
self.generate_config(add_arg=str_group)
elif status == "4":
self.generate_config()
# elif status == "5":
# group = "base,migration"
# str_group = f"--group {group}"
# self.generate_config(add_arg=str_group)
else:
print(t("Command not found !"))
def debug_ide(self):
choices = [
{"prompt_description": t("Debug todo.py")},
]
help_info = self.fill_help_info(choices)
while True:
status = click.prompt(help_info)
print()
if status == "0":
return False
elif status == "1":
self.open_pycharm_file(
os.getcwd(),
os.path.join(os.getcwd(), "script/todo/todo.py"),
)
else:
print(t("Command not found !"))
def generate_config_from_backup(self):
file_name = self.db_manager.open_file_image_db()
add_arg = f"--from_backup_name {file_name} --add_repo odoo18.0/addons/MathBenTech_development"
self.generate_config(add_arg=add_arg)
def generate_config_from_database(self):
database_name = self.db_manager.select_database()
str_arg = f"--database {database_name}"
self.generate_config(add_arg=str_arg)
return False
def generate_config_queue_job(self):
cmd = "./script/config/setup_odoo_config_conf_devops.py"
self.execute.exec_command_live(
cmd,
source_erplibre=False,
single_source_erplibre=True,
)
def prompt_execute_selenium_and_run_db(
self, db_name, extra_cmd_web_login=""
):
cmd_server = f"./run.sh -d {db_name};bash"
self.execute.exec_command_live(cmd_server)
cmd_client = (
f"sleep 3;./script/selenium/web_login.py{extra_cmd_web_login};bash"
)
self.execute.exec_command_live(cmd_client)
def prompt_execute_selenium(self, command=None, extra_cmd_web_login=""):
commands = []
if not command:
cmd = "./script/selenium/web_login.py"
else:
cmd = command
if type(extra_cmd_web_login) is list:
for item in extra_cmd_web_login:
commands.append(cmd + item)
else:
commands.append(cmd + extra_cmd_web_login)
if len(commands) == 1:
self.execute.exec_command_live(commands[0])
elif len(commands) > 1:
new_cmd = "parallel ::: "
for i, cmd in enumerate(commands):
new_cmd += f' "sleep {1 * i};{cmd}"'
self.execute.exec_command_live(new_cmd)
def crash_diagnostic(self, e):
# TODO show message at start if os.path.exists(ERROR_LOG_PATH)
if os.path.exists(ERROR_LOG_PATH) and not os.path.exists(
VENV_ERPLIBRE
):
print("Got error : ")
print(e)
print("Got error at first execution.", ERROR_LOG_PATH)
try:
file = open(ERROR_LOG_PATH, "r")
content = file.read()
# TODO si vide, ajouter notre erreur
print(content)
except FileNotFoundError:
print("Error: File not found.")
finally:
if "file" in locals() and file:
file.close()
# Force auto installation
print("Auto installation")
time.sleep(0.5)
cmd = "./script/todo/source_todo.sh"
# self.restart_script(e)
self.execute.exec_command_live(cmd, source_erplibre=True)
sys.exit(1)
if os.path.exists(VENV_ERPLIBRE):
print("Import error : ")
print(e)
# TODO auto-detect gnome-terminal, or choose another. Is it done already?
self.restart_script(e)
# self.prompt_install()
# print(
# f"You forgot to activate source \nsource ./{VENV_ERPLIBRE}/bin/activate"
# )
# time.sleep(0.5)
# cmd = "./script/todo/source_todo.sh"
print("Re-execute TODO 🤖 or execute :")
print()
print(f"source {VENV_ERPLIBRE}/bin/activate;make")
print()
cmd = "./script/todo/todo.py"
# # self.restart_script(e)
try:
# TODO duplicate
import click
import humanize
import openai
import urwid
from pykeepass import PyKeePass
except ImportError:
print("Rerun and exit")
self.execute.exec_command_live(cmd, source_erplibre=True)
sys.exit(1)
print("No error")
else:
self.prompt_install()
def open_shell_on_database(self):
database = self.db_manager.select_database()
if database:
cmd_server = f"./odoo_bin.sh shell -d {database}"
status, databases = self.execute.exec_command_live(
cmd_server,
return_status_and_output=True,
source_erplibre=False,
single_source_erplibre=True,
new_window=True,
)
def open_pycharm_file(self, folder, filename):
cmd = "~/.local/share/JetBrains/Toolbox/scripts/pycharm"
# cmd = "/snap/bin/pycharm-community"
# if pycharm_arg:
# cmd += f" {pycharm_arg}"
if folder:
cmd += f" {folder}"
if filename:
cmd += f" --line 1 {filename}"
self.execute.exec_command_live(cmd, source_erplibre=False)
def upgrade_module(self):
upgrade = todo_upgrade.TodoUpgrade(self)
upgrade.execute_module_upgrade()
def upgrade_poetry(self):
# Only show the version to the user
status = self.execute.exec_command_live(
f"make version",
source_erplibre=False,
)
# TODO maybe autodetect to update it
git_repo_update_input = input(
"💬 Would you like to fetch all your git repositories, you need it (y/Y) : "
)
if self._is_yes(git_repo_update_input):
status = self.execute.exec_command_live(
f"./script/manifest/update_manifest_local_dev.sh",
source_erplibre=False,
)
poetry_lock = "./poetry.lock"
try:
os.remove(poetry_lock)
except Exception as e:
pass
odoo_long_version = ""
if os.path.exists("./.erplibre-version"):
with open("./.erplibre-version") as f:
odoo_long_version = f.read()
path_file_odoo_lock = f"./requirement/poetry.{odoo_long_version}.lock"
if odoo_long_version:
try:
os.remove(path_file_odoo_lock)
except Exception as e:
pass
status = self.execute.exec_command_live(
f"pip install -r requirement/erplibre_require-ments-poetry.txt && "
f"./script/poetry/poetry_update.py -f",
source_erplibre=False,
single_source_erplibre=False,
single_source_odoo=True,
source_odoo=odoo_long_version,
)
if os.path.exists(poetry_lock):
shutil.copy2(poetry_lock, path_file_odoo_lock)
def callback_execute_custom_database(self, config):
database_name = self.db_manager.select_database()
self.prompt_execute_selenium_and_run_db(database_name)
def process_kill_from_port(self):
cfg = configparser.ConfigParser()
cfg.read("./config.conf")
http_port = cfg.getint("options", "http_port")
status = self.execute.exec_command_live(
f"./script/process/kill_process_by_port.py {http_port} --kill-tree --nb_parent 2",
source_erplibre=False,
)
def restart_script(self, last_error):
print(f"🤖 {t('Reboot TODO ...')}")
# os.execv(sys.executable, ['python'] + sys.argv)
# TODO mettre check que le répertoire est créé, s'il existe, auto-loop à corriger
if os.path.exists(VENV_ERPLIBRE) and not os.path.exists(
ERROR_LOG_PATH
):
# TODO mettre check import suivant ne vont pas planter
try:
with open(ERROR_LOG_PATH, "w") as f_file:
f_file.write(str(last_error))
pass # The file is created and closed here, no content is written
print(
f"Try to reopen process with before :\nsource ./{VENV_ERPLIBRE}/bin/activate && exec python "
+ " ".join(sys.argv)
)
os.execv(
"/bin/bash",
[
"/bin/bash",
"-c",
f"source ./{VENV_ERPLIBRE}/bin/activate && exec python "
+ " ".join(sys.argv),
],
)
except Exception as e:
print("Error detect at first execution.")
print(e)
def on_dir_selected(self, dir_path):
self.dir_path = dir_path
todo_file_browser.exit_program()
def callback_make_mobile_home(self, config):
# Read file
default_project_name = "ERPLibre"
default_package_name = "ca.erplibre.home"
# Read default information
if os.path.exists(STRINGS_FILE):
tree = ET.parse(STRINGS_FILE)
root = tree.getroot()
for elem in root.findall("string"):
if elem.get("name") == "app_name":
default_project_name = elem.text
if elem.get("name") == "package_name":
default_package_name = elem.text
default_project_url_name = "https://erplibre.ca"
# Read default information
dotenv_file = dotenv.find_dotenv(
filename=os.path.join(MOBILE_HOME_PATH, "src", ".env.production")
)
default_project_url_name = dotenv.get_key(
dotenv_file, "VITE_WEBSITE_URL"
)
default_project_note_subject = dotenv.get_key(
dotenv_file, "VITE_LABEL_NOTE"
)
default_debug = False
project_name = default_project_name
project_url_name = default_project_url_name
project_principal_subject = default_project_note_subject
package_name = default_package_name
do_debug = default_debug
do_change_picture_menu = False
do_personalize = input(
"Do you want to personalize the mobile application (Y) : "
)
if self._is_yes(do_personalize):
project_name = (
input(
f'Your project name (Separate by space in title), default "{default_project_name}" : '
).strip()
or default_project_name
)
package_name = (
input(
f'Your package name (separate by . lower case, 3 works like DOMAIN.NAME.OBJECT), default "{default_package_name}" : '
).strip()
or default_package_name
)
project_url_name = (
input(
f'Your project url website, default "{default_project_url_name}" : '
).strip()
or default_project_url_name
)
project_principal_subject = (
input(
f'Your project subject, default "{default_project_note_subject}" : '
).strip()
or default_project_note_subject
)
do_debug = self._is_yes(
input("Compilation with debug information, default No (Y) : ")
)
do_change_picture_menu = self._is_yes(
input(
"Want to change picture from menu, you need"
" android-studio (Y) : "
)
)
# Rename with script bash
cmd_client = f'cd {MOBILE_HOME_PATH} && npx cap init "{project_name}" "{package_name}" && ./rename_android.sh "{project_name}" "{package_name}" && npx cap sync android'
self.execute.exec_command_live(cmd_client, source_erplibre=False)
# dotenv_mobile = dotenv.dotenv_values(dotenv_file)
# dotenv_mobile["VITE_TITLE"] = project_name
# dotenv_mobile["VITE_WEBSITE_URL"] = project_url_name
dotenv.set_key(
dotenv_file, "VITE_TITLE", project_name, quote_mode="always"
)
dotenv.set_key(
dotenv_file,
"VITE_WEBSITE_URL",
project_url_name,
quote_mode="always",
)
dotenv.set_key(
dotenv_file,
"VITE_LABEL_NOTE",
project_principal_subject,
quote_mode="always",
)
dotenv.set_key(
dotenv_file,
"VITE_DEBUG_DEV",
"true" if do_debug else "false",
quote_mode="never",
)
if do_change_picture_menu:
status = self.execute.exec_command_live(
f"cd {MOBILE_HOME_PATH} && npx cap open android;bash",
source_erplibre=False,
new_window=True,
)
print(
"Guide for Android-Studio, wait loading is finish. Right-click to app/New/Image Asset and load your image."
)
input(
"Did you finish to update image with Android-Studio ? Press to continue ..."
)
cmd_client = "cp ./mobile/erplibre_home_mobile/android/app/src/main/ic_launcher-playstore.png ./mobile/erplibre_home_mobile/src/assets/company_logo.png"
self.execute.exec_command_live(cmd_client, source_erplibre=False)
cmd_client = "cp ./mobile/erplibre_home_mobile/android/app/src/main/ic_launcher-playstore.png ./mobile/erplibre_home_mobile/src/assets/imgs/logo.png"
self.execute.exec_command_live(cmd_client, source_erplibre=False)
status = self.execute.exec_command_live(
"./mobile/compile_and_run.sh", source_erplibre=False
)
if __name__ == "__main__":
start_time = time.time()
try:
todo = TODO()
if ENABLE_CRASH:
todo.crash_diagnostic(CRASH_E)
todo.run()
except KeyboardInterrupt:
print(t("Keyboard interrupt"))
finally:
end_time = time.time()
duration_sec = end_time - start_time
if humanize:
duration_delta = datetime.timedelta(seconds=duration_sec)
humain_time = humanize.precisedelta(duration_delta)
print(f"\n{t('TODO execution time')} {humain_time}\n")
else:
print(f"\n{t('TODO execution time')} {duration_sec:.2f} sec.\n")