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# Photomaton LSDW - Guide d'installation from scratch
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> Ce guide permet de remonter le photomaton completement a partir d'un Raspberry Pi 4 (2 Go) neuf.
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> Reconstitue a partir de l'historique bash du Pi original.
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> Derniere mise a jour : Juin 2026
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---
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## Table des matieres
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1. [Prerequis](#1-prerequis)
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2. [Installation de l'OS](#2-installation-de-los)
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3. [Configuration initiale du Pi](#3-configuration-initiale-du-pi)
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4. [Installation de photobooth-app](#4-installation-de-photobooth-app)
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5. [Installation de RaspAP (hotspot WiFi)](#5-installation-de-raspap-hotspot-wifi)
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6. [Installation de Zoraxy (reverse proxy)](#6-installation-de-zoraxy-reverse-proxy)
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7. [Certificat TLS (Let's Encrypt + OVH)](#7-certificat-tls-lets-encrypt--ovh)
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8. [Configuration des imprimantes (CUPS + Selphy)](#8-configuration-des-imprimantes-cups--selphy)
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9. [Installation de Node-RED](#9-installation-de-node-red)
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10. [NeoPixels (WS2812)](#10-neopixels-ws2812)
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11. [Configuration du mode kiosk (Chromium)](#11-configuration-du-mode-kiosk-chromium)
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12. [Optimisation systeme](#12-optimisation-systeme)
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13. [Services systemd](#13-services-systemd)
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14. [Verification finale](#14-verification-finale)
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15. [Post-installation : contenu a restaurer](#15-post-installation--contenu-a-restaurer)
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---
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## 1. Prerequis
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### Materiel necessaire
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- Raspberry Pi 4 (2 Go RAM)
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- Carte microSD (32 Go minimum, classe A2 recommandee)
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- Camera Module 3 officielle Raspberry Pi
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- Ecran HDMI
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- Bouton physique lumineux 12V avec relay
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- NeoPixels WS2812 (35 LEDs, strip)
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- Canon Selphy CP1300 x2 (blanche + noire) + cables USB
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- Cable Ethernet (pour l'installation initiale et les certificats)
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- Clavier + souris (pour l'installation initiale)
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### Logiciels sur le PC
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- Raspberry Pi Imager (pour flasher la carte SD)
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- Un client SSH (terminal, PuTTY, etc.)
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---
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## 2. Installation de l'OS
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### Flasher la carte SD
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1. Telecharger et installer [Raspberry Pi Imager](https://www.raspberrypi.com/software/)
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2. Choisir l'OS : **Raspberry Pi OS (64-bit)** base sur Debian 13 Trixie
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- Version **Desktop** (pas Lite, on a besoin de l'environnement graphique pour Chromium)
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- Architecture **arm64**
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3. Dans les options avancees (engrenage) :
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- Hostname : `PiPhotobooth`
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- Activer SSH (authentification par mot de passe)
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- Utilisateur : `pi` / mot de passe : `[choisir un mot de passe]`
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- Locale : `fr_FR.UTF-8`, timezone : `Europe/Paris`
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- WiFi : ne pas configurer (on utilisera RaspAP)
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4. Flasher la carte SD
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### Premier demarrage
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1. Inserer la carte SD, connecter l'ecran HDMI, le clavier, et le cable Ethernet
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2. Demarrer le Pi
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3. Attendre la fin du premier boot (peut prendre 2-3 minutes)
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4. Se connecter en SSH : `ssh pi@PiPhotobooth.local`
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---
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## 3. Configuration initiale du Pi
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### Mise a jour systeme
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```bash
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sudo apt update
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sudo apt upgrade -y
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```
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### Configuration avec raspi-config
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```bash
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sudo raspi-config
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```
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Configurer :
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- **System Options > Boot / Auto Login** : Desktop Autologin (B4)
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- **Interface Options > Camera** : Activer (si demande)
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- **Localisation Options** : Locale fr_FR.UTF-8, Timezone Europe/Paris
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- **Advanced Options > Expand Filesystem** (si pas fait automatiquement)
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### Desactiver les services inutiles
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```bash
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sudo systemctl disable bluetooth.service
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sudo systemctl disable wg-quick@wg0.service 2>/dev/null
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```
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### Desactiver cloud-init (si present)
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```bash
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sudo touch /etc/cloud/cloud-init.disabled
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```
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### Configurer /etc/hosts
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```bash
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sudo nano /etc/hosts
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```
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Ajouter :
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```
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127.0.0.1 localhost
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127.0.1.1 PiPhotobooth
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10.3.141.1 photomaton.lessapinsduweb.com
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10.3.141.1 photomaton-nodered.lessapinsduweb.com
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10.3.141.1 photomaton-raspap.lessapinsduweb.com
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10.3.141.1 photomaton-zoraxy.lessapinsduweb.com
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```
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Si cloud-init ecrase `/etc/hosts`, editer aussi le template :
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```bash
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sudo nano /etc/cloud/templates/hosts.debian.tmpl
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```
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### Redemarrer
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```bash
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sudo reboot
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```
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---
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## 4. Installation de photobooth-app
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### Dependances
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```bash
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sudo apt -y install ffmpeg libturbojpeg0 libgl1 libgphoto2-dev fonts-noto-color-emoji
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sudo apt -y install libexif12 libgphoto2-6 libgphoto2-port12 libltdl7
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sudo apt -y install python3-dev
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sudo apt -y install pipx
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sudo apt -y install imagemagick
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```
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### Installation via pipx
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```bash
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pipx ensurepath
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# Fermer et rouvrir le terminal (ou source ~/.bashrc)
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exit
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```
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```bash
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ssh pi@PiPhotobooth.local
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pipx install --system-site-packages photobooth-app --pip-args='--prefer-binary'
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```
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### Creer le dossier de donnees
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```bash
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mkdir ~/photobooth-data
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```
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### Verifier que la camera fonctionne
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```bash
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rpicam-hello --list-cameras -v
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```
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### Premier lancement (test)
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```bash
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cd ~/photobooth-data
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photobooth --port 8083
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```
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Verifier sur `http://PiPhotobooth.local:8083` que l'interface fonctionne. Arreter avec Ctrl+C.
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### Configuration de photobooth-app
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Le service systemd est installe automatiquement par photobooth-app dans :
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`~/.local/share/systemd/user/photobooth-app.service`
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Editer pour configurer le port et les dependances :
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```bash
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nano ~/.local/share/systemd/user/photobooth-app.service
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```
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Contenu recommande :
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```ini
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[Unit]
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Description=photobooth-app
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After=zoraxy.service raspapd.service
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[Service]
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Type=simple
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Restart=always
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WorkingDirectory=/home/pi/photobooth-data
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ExecStart=/home/pi/.local/share/pipx/venvs/photobooth-app/bin/python -O -m photobooth --port 8083
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[Install]
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WantedBy=default.target
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```
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Points importants :
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- `After=zoraxy.service raspapd.service` : attend que Zoraxy et RaspAP soient prets
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- `--port 8083` : port d'ecoute
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- `Restart=always` : relance en cas de crash
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Activer et demarrer :
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```bash
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systemctl --user daemon-reload
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systemctl --user enable photobooth-app
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systemctl --user start photobooth-app
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```
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Activer le linger (pour que le service demarre au boot sans login) :
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```bash
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sudo loginctl enable-linger pi
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```
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Verifier :
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```bash
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systemctl --user status photobooth-app
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journalctl --user --unit=photobooth-app -n 50 --no-pager
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```
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### Configuration dans l'interface admin
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Acceder a `http://PiPhotobooth.local:8083/admin` et configurer :
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- **common** : `logging_level` -> `WARNING` (pas DEBUG !)
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- **backends** : Camera Module 3, backend Picamera2, resolution 2304x1536
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- **hardwareinputoutput** : `gpio_enabled` -> `true`
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- **mediaprocessing** : `full_still_length` -> 2304, `preview_still_length` -> 1200
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- **misc** : Changer `secret_key` (generer avec `python3 -c "import secrets; print(secrets.token_hex(32))"`)
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Voir `config/photobooth-config-optimized.json` pour la config complete recommandee.
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---
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## 5. Installation de RaspAP (hotspot WiFi)
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### Installation automatique
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```bash
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curl -sL https://install.raspap.com | bash
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```
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Suivre les instructions. Repondre oui aux questions par defaut.
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Apres l'installation, le Pi redemarrera avec un hotspot WiFi actif.
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### Configuration du hotspot
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Acceder a l'interface RaspAP : `http://10.3.141.1:8082` (ou `http://PiPhotobooth.local:8082` via Ethernet)
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Login par defaut : `admin` / `secret` (changer le mot de passe !)
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Configurer :
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- **Hotspot > Basic** :
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- SSID : `Photomaton` (ou le nom souhaite)
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- Security : WPA2
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- Mot de passe WiFi : `[choisir]`
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- **Hotspot > Advanced** :
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- Country code : FR
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- Channel : choisir un canal peu encombre
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### Configuration DNS (dnsmasq)
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Creer le fichier de resolution locale :
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```bash
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sudo nano /etc/dnsmasq.d/090_custom_local_hotspot.conf
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```
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Contenu :
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```
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address=/lessapinsduweb.com/10.3.141.1
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address=/photomaton.lessapinsduweb.com/10.3.141.1
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address=/#/127.0.0.1
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```
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Redemarrer dnsmasq :
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```bash
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sudo systemctl restart dnsmasq.service
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```
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Verifier :
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```bash
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dig @127.0.0.1 photomaton.lessapinsduweb.com A
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# Doit repondre 10.3.141.1
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```
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### Changer le port lighttpd (si conflit)
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Si lighttpd est sur le port 80 (conflit avec Zoraxy), le changer :
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```bash
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sudo nano /etc/lighttpd/lighttpd.conf
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```
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Changer `server.port = 80` en `server.port = 8082` (devrait deja etre fait par RaspAP).
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---
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## 6. Installation de Zoraxy (reverse proxy)
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### Telecharger et installer
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```bash
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mkdir ~/zoraxy
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cd ~/zoraxy
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# Telecharger la derniere version arm64
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# Verifier la derniere release sur https://github.com/tobychui/zoraxy/releases
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wget https://github.com/tobychui/zoraxy/releases/download/v3.3.2/zoraxy_linux_arm64
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mv zoraxy_linux_arm64 zoraxy
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chmod +x zoraxy
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```
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### Creer le script de demarrage
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```bash
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nano ~/zoraxy/start.sh
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```
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Contenu :
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```bash
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#!/bin/bash
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cd /home/pi/zoraxy
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./zoraxy -port=:8001
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```
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```bash
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chmod +x ~/zoraxy/start.sh
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```
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### Creer le service systemd
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```bash
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sudo nano /etc/systemd/system/zoraxy.service
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```
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Contenu :
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```ini
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[Unit]
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Description=Zoraxy Reverse Proxy
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After=network.target
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[Service]
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Type=simple
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ExecStart=/home/pi/zoraxy/start.sh
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Restart=always
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RestartSec=5
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[Install]
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WantedBy=multi-user.target
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```
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```bash
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sudo systemctl daemon-reload
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sudo systemctl enable zoraxy.service
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sudo systemctl start zoraxy.service
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```
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Verifier :
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```bash
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sudo systemctl status zoraxy.service
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sudo ss -ltnp | grep zoraxy
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```
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### Configurer les proxies
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Acceder a l'admin Zoraxy : `http://127.0.0.1:8001` (ou `http://PiPhotobooth.local:8001` via Ethernet)
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Creer les 4 proxies :
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**1. photomaton.lessapinsduweb.com -> 127.0.0.1:8083**
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- WebSocket Custom Headers : ON
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- Disable Chunked Transfer Encoding : ON
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- Skip Certificate Validations : ON
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**2. photomaton-nodered.lessapinsduweb.com -> 127.0.0.1:1880**
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- Options par defaut
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**3. photomaton-raspap.lessapinsduweb.com -> 127.0.0.1:8082**
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- Options par defaut
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**4. photomaton-zoraxy.lessapinsduweb.com -> 127.0.0.1:8001**
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- Options par defaut
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---
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## 7. Certificat TLS (Let's Encrypt + OVH)
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> Le certificat est necessaire pour HTTPS. Comme le Pi n'a pas d'acces internet permanent
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> (WiFi isole), on utilise le challenge DNS via l'API OVH.
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> Cette etape necessite un cable Ethernet connecte a internet.
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### Installer certbot avec le plugin OVH
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```bash
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sudo apt install certbot # ou via venv si le paquet n'existe pas :
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# sudo python3 -m venv /opt/certbot/
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# sudo /opt/certbot/bin/pip install --upgrade pip
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# sudo /opt/certbot/bin/pip install certbot certbot-dns-ovh
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# sudo ln -s /opt/certbot/bin/certbot /usr/local/bin/certbot
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```
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### Configurer les credentials OVH
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Creer les credentials API OVH sur https://api.ovh.com/createToken/
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```bash
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nano ~/.ovhapi
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```
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Contenu :
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```ini
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dns_ovh_endpoint = ovh-eu
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dns_ovh_application_key = VOTRE_APP_KEY
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dns_ovh_application_secret = VOTRE_APP_SECRET
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dns_ovh_consumer_key = VOTRE_CONSUMER_KEY
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```
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```bash
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chmod 600 ~/.ovhapi
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```
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### Generer le certificat
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||||
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**Important** : Le Pi doit etre connecte a internet via Ethernet pour cette etape.
|
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```bash
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sudo certbot certonly \
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--dns-ovh \
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--dns-ovh-credentials ~/.ovhapi \
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-d photomaton.lessapinsduweb.com \
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-d photomaton-nodered.lessapinsduweb.com \
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-d photomaton-raspap.lessapinsduweb.com \
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-d photomaton-zoraxy.lessapinsduweb.com
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```
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Les certificats sont generes dans `/etc/letsencrypt/live/photomaton.lessapinsduweb.com/`.
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|
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### Importer dans Zoraxy
|
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Dans l'admin Zoraxy (`http://127.0.0.1:8001`) :
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||||
1. Aller dans TLS / SSL
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2. Importer le certificat :
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- Certificate : contenu de `/etc/letsencrypt/live/photomaton.lessapinsduweb.com/fullchain.pem`
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- Private Key : contenu de `/etc/letsencrypt/live/photomaton.lessapinsduweb.com/privkey.pem`
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### Renouvellement
|
||||
|
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Le certificat expire tous les 90 jours. Pour renouveler :
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||||
|
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1. Connecter le Pi a internet via Ethernet
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||||
2. Lancer : `sudo certbot renew`
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||||
3. Reimporter dans Zoraxy si necessaire
|
||||
|
||||
> Note : Ce n'est pas automatise car le Pi n'a pas d'acces internet permanent.
|
||||
> Penser a renouveler avant chaque saison d'events.
|
||||
|
||||
---
|
||||
|
||||
## 8. Configuration des imprimantes (CUPS + Selphy)
|
||||
|
||||
### Installer les paquets
|
||||
|
||||
```bash
|
||||
sudo apt -y install cups printer-driver-gutenprint cups-client
|
||||
```
|
||||
|
||||
### Configurer les permissions
|
||||
|
||||
```bash
|
||||
sudo usermod -aG lpadmin pi
|
||||
sudo usermod -aG lp pi
|
||||
```
|
||||
|
||||
### Configurer CUPS pour l'acces distant
|
||||
|
||||
```bash
|
||||
sudo cupsctl --remote-any
|
||||
sudo systemctl restart cups
|
||||
```
|
||||
|
||||
### Gestion du driver USB
|
||||
|
||||
La Selphy CP1300 peut utiliser ipp-usb ou usblp. Pour eviter les conflits :
|
||||
|
||||
```bash
|
||||
# Verifier si ipp-usb est installe
|
||||
sudo apt list --installed | grep ipp
|
||||
|
||||
# Si necessaire, blacklister usblp pour utiliser ipp-usb
|
||||
# (ou l'inverse selon ce qui fonctionne)
|
||||
sudo nano /etc/modprobe.d/blacklist-usblp.conf
|
||||
```
|
||||
|
||||
Contenu (si on utilise ipp-usb) :
|
||||
```
|
||||
# blacklist usblp
|
||||
```
|
||||
|
||||
### Ajouter les imprimantes
|
||||
|
||||
1. Brancher les 2 Canon Selphy CP1300 en USB
|
||||
2. Aller sur `http://localhost:631` (ou `https://photomaton-raspap.lessapinsduweb.com` via WiFi)
|
||||
3. Administration > Add Printer
|
||||
4. Selectionner l'imprimante USB Canon
|
||||
5. Nommer :
|
||||
- Premiere (blanche) : `Canon_SELPHY_CP1300_usb_blanche`
|
||||
- Deuxieme (noire) : `Canon_SELPHY_CP1300_usb_noire`
|
||||
6. Selectionner le driver Gutenprint
|
||||
|
||||
Verification :
|
||||
|
||||
```bash
|
||||
lpstat -v
|
||||
lpstat -p
|
||||
```
|
||||
|
||||
### Installer le script d'impression
|
||||
|
||||
```bash
|
||||
mkdir -p ~/photobooth-data/script
|
||||
cp scripts/script_print.sh ~/photobooth-data/script/
|
||||
chmod +x ~/photobooth-data/script/script_print.sh
|
||||
```
|
||||
|
||||
### Tester l'impression
|
||||
|
||||
```bash
|
||||
# Prendre une photo de test via photobooth-app, puis :
|
||||
cd ~/photobooth-data/media/processed_full/
|
||||
lp -d Canon_SELPHY_CP1300_usb_blanche -o landscape -o fit-to-page [nom_fichier].jpg
|
||||
```
|
||||
|
||||
---
|
||||
|
||||
## 9. Installation de Node-RED
|
||||
|
||||
### Installation via le script officiel
|
||||
|
||||
```bash
|
||||
bash <(curl -sL https://raw.githubusercontent.com/node-red/linux-installers/master/deb/update-nodejs-and-nodered)
|
||||
```
|
||||
|
||||
Repondre oui aux questions. Le script installe Node.js et Node-RED, et cree le service systemd.
|
||||
|
||||
### Activer le service
|
||||
|
||||
```bash
|
||||
sudo systemctl enable nodered.service
|
||||
sudo systemctl start nodered.service
|
||||
```
|
||||
|
||||
### Installer les nodes necessaires
|
||||
|
||||
Acceder a Node-RED : `http://PiPhotobooth.local:1880`
|
||||
|
||||
Dans le menu hamburger > Manage palette > Install, installer :
|
||||
|
||||
- `node-red-node-pi-gpio` (GPIO input/output)
|
||||
- `node-red-node-pi-neopixel` (NeoPixels WS2812)
|
||||
- `node-red-node-sqlite` (base SQLite)
|
||||
- `node-red-dashboard` ou `@flowfuse/node-red-dashboard` (Dashboard v2)
|
||||
- `node-red-contrib-button-events` (multi-clic bouton)
|
||||
|
||||
### Importer les flows
|
||||
|
||||
1. Dans Node-RED, menu hamburger > Import
|
||||
2. Coller le contenu du fichier de flows (backup dans `config/nodered-flows-backup.json`)
|
||||
3. Deploy
|
||||
|
||||
### Creer la base SQLite
|
||||
|
||||
```bash
|
||||
sudo apt install sqlite3
|
||||
```
|
||||
|
||||
La base est creee automatiquement par Node-RED au premier usage, mais on peut la creer manuellement :
|
||||
|
||||
```bash
|
||||
sqlite3 ~/photobooth-data/photo-to-print.sqlite
|
||||
```
|
||||
|
||||
```sql
|
||||
CREATE TABLE photoToPrint(
|
||||
id INT PRIMARY KEY,
|
||||
filename TEXT NOT NULL,
|
||||
uid TEXT NOT NULL,
|
||||
toPrint INT DEFAULT 1,
|
||||
printed BOOLEAN DEFAULT 0,
|
||||
created_at TEXT NOT NULL DEFAULT current_timestamp
|
||||
);
|
||||
.quit
|
||||
```
|
||||
|
||||
---
|
||||
|
||||
## 10. NeoPixels (WS2812)
|
||||
|
||||
### Cablage
|
||||
|
||||
- Data : GPIO18
|
||||
- Alimentation : 5V + GND
|
||||
- 35 LEDs
|
||||
|
||||
### Via Node-RED (methode utilisee)
|
||||
|
||||
Le node `node-red-node-pi-neopixel` gere les NeoPixels directement. Il lance un script Python en `sudo` :
|
||||
|
||||
```
|
||||
/home/pi/.node-red/node_modules/node-red-node-pi-neopixel/neopix.py 35 0 pixels 100 true 0 18
|
||||
```
|
||||
|
||||
Pas d'installation supplementaire requise au-dela du node Node-RED.
|
||||
|
||||
### Note : uvicorn sur le port 8081
|
||||
|
||||
Le processus uvicorn sur le port 8081 est l'**API backend de RaspAP** (`/etc/raspap/api/main.py`), pas un service NeoPixels. Il est lance automatiquement par RaspAP et ne doit pas etre desactive.
|
||||
|
||||
Le dossier `~/ws2812/` est un ancien test NeoPixels inactif (rien ne le lance). Il peut etre supprime si souhaite.
|
||||
|
||||
---
|
||||
|
||||
## 11. Configuration du mode kiosk (Chromium)
|
||||
|
||||
### Fichier desktop
|
||||
|
||||
```bash
|
||||
nano ~/Desktop/photobooth-app.desktop
|
||||
```
|
||||
|
||||
Contenu :
|
||||
|
||||
```ini
|
||||
[Desktop Entry]
|
||||
X-GNOME-Autostart-enabled=true
|
||||
X-GNOME-Autostart-Delay=120
|
||||
Terminal=false
|
||||
Type=Application
|
||||
Name=Photobooth-App
|
||||
Exec=bash -c "sleep 60 && chromium --kiosk --accept-lang=fr-FR --incognito --password-store=basic --disable-features=Translate,OverscrollHistoryNavigation --noerrdialogs --disable-infobars --no-first-run --ozone-platform=wayland --enable-features=OverlayScrollbar --start-maximized http://127.0.0.1:8083/"
|
||||
StartupNotify=false
|
||||
```
|
||||
|
||||
### Points importants
|
||||
|
||||
- Le binaire est `chromium` (pas `chromium-browser`) sous Debian 13 Trixie
|
||||
- `--ozone-platform=wayland` : utilisation native de Wayland (le compositeur est labwc)
|
||||
- Le fichier est dans `~/Desktop/`, pas dans `~/.config/autostart/`
|
||||
- Le `sleep 60` + `X-GNOME-Autostart-Delay=120` laissent le temps a photobooth-app de demarrer
|
||||
- `--incognito` : pas de cache persistant, pas de popups "restore session"
|
||||
|
||||
### Lien symbolique pour autostart
|
||||
|
||||
```bash
|
||||
sudo ln -s /home/pi/Desktop/photobooth-app.desktop /etc/xdg/autostart/photobooth.desktop
|
||||
```
|
||||
|
||||
---
|
||||
|
||||
## 12. Optimisation systeme
|
||||
|
||||
### Scripts d'optimisation
|
||||
|
||||
Copier le dossier `photomaton/` sur le Pi, puis :
|
||||
|
||||
```bash
|
||||
# Optimisation systeme (swap, kernel, services)
|
||||
sudo bash scripts/optimize-system.sh
|
||||
sudo reboot
|
||||
|
||||
# Optimisation desktop (desactiver composants inutiles, ~231 Mo)
|
||||
sudo bash scripts/optimize-desktop.sh
|
||||
sudo reboot
|
||||
```
|
||||
|
||||
### Optimisations manuelles rapides
|
||||
|
||||
Si on ne veut pas lancer les scripts complets :
|
||||
|
||||
```bash
|
||||
# Baisser le swappiness (60 -> 10)
|
||||
sudo sysctl vm.swappiness=10
|
||||
echo 'vm.swappiness=10' | sudo tee /etc/sysctl.d/99-photomaton-swap.conf
|
||||
|
||||
# Desactiver rpcbind (inutile)
|
||||
sudo systemctl disable rpcbind.service rpcbind.socket
|
||||
sudo systemctl stop rpcbind.service rpcbind.socket
|
||||
|
||||
# Desactiver ModemManager (inutile)
|
||||
sudo systemctl disable ModemManager.service
|
||||
sudo systemctl stop ModemManager.service
|
||||
|
||||
# Desactiver bluetooth
|
||||
sudo systemctl disable bluetooth.service
|
||||
sudo systemctl stop bluetooth.service
|
||||
|
||||
# Ajouter un swapfile de securite (en complement de zram)
|
||||
sudo fallocate -l 1G /swapfile
|
||||
sudo chmod 600 /swapfile
|
||||
sudo mkswap /swapfile
|
||||
sudo swapon -p 10 /swapfile
|
||||
echo '/swapfile none swap sw,pri=10 0 0' | sudo tee -a /etc/fstab
|
||||
```
|
||||
|
||||
---
|
||||
|
||||
## 13. Services systemd
|
||||
|
||||
### Liste des services du photomaton
|
||||
|
||||
| Service | Type | Fichier | Gere par |
|
||||
|---------|------|---------|----------|
|
||||
| photobooth-app | User | `~/.local/share/systemd/user/photobooth-app.service` | pipx (auto-installe), After=zoraxy+raspapd |
|
||||
| nodered | System | `/etc/systemd/system/nodered.service` | Script officiel Node-RED |
|
||||
| zoraxy | System | `/etc/systemd/system/zoraxy.service` | Manuel (voir section 6) |
|
||||
| cups | System | (pre-installe) | apt |
|
||||
| hostapd | System | (pre-installe) | RaspAP |
|
||||
| dnsmasq | System | (pre-installe) | RaspAP |
|
||||
| lighttpd | System | (pre-installe) | RaspAP |
|
||||
| dhcpcd | System | (pre-installe) | RaspAP |
|
||||
|
||||
### Services optionnels (surveillance)
|
||||
|
||||
```bash
|
||||
# Watchdog (health check toutes les 2 minutes)
|
||||
sudo cp systemd/photobooth-watchdog.service /etc/systemd/system/
|
||||
sudo cp systemd/photobooth-watchdog.timer /etc/systemd/system/
|
||||
# Editer ExecStart pour pointer vers le bon chemin de health-check.sh
|
||||
sudo systemctl daemon-reload
|
||||
sudo systemctl enable photobooth-watchdog.timer
|
||||
sudo systemctl start photobooth-watchdog.timer
|
||||
|
||||
# Maintenance quotidienne (4h du matin)
|
||||
sudo cp systemd/photobooth-maintenance.service /etc/systemd/system/
|
||||
sudo cp systemd/photobooth-maintenance.timer /etc/systemd/system/
|
||||
# Editer ExecStart pour pointer vers le bon chemin de maintenance.sh
|
||||
sudo systemctl daemon-reload
|
||||
sudo systemctl enable photobooth-maintenance.timer
|
||||
sudo systemctl start photobooth-maintenance.timer
|
||||
```
|
||||
|
||||
### Verification des services
|
||||
|
||||
```bash
|
||||
# Tous les services actifs
|
||||
sudo systemctl list-unit-files --type=service --state=enabled
|
||||
|
||||
# Etat de chaque service
|
||||
systemctl --user status photobooth-app
|
||||
sudo systemctl status nodered
|
||||
sudo systemctl status zoraxy
|
||||
sudo systemctl status cups
|
||||
sudo systemctl status hostapd
|
||||
sudo systemctl status dnsmasq
|
||||
```
|
||||
|
||||
---
|
||||
|
||||
## 14. Verification finale
|
||||
|
||||
### Checklist
|
||||
|
||||
```bash
|
||||
# 1. Tous les services tournent ?
|
||||
systemctl --user status photobooth-app # active
|
||||
sudo systemctl status nodered # active
|
||||
sudo systemctl status zoraxy # active
|
||||
sudo systemctl status cups # active
|
||||
sudo systemctl status hostapd # active
|
||||
sudo systemctl status dnsmasq # active
|
||||
|
||||
# 2. Tous les ports ecoutent ?
|
||||
sudo ss -ltnp
|
||||
# Attendu : 22, 53, 80, 443, 631, 1880, 5487, 8001, 8082, 8083
|
||||
|
||||
# 3. Camera detectee ?
|
||||
rpicam-hello --list-cameras
|
||||
|
||||
# 4. Imprimantes detectees ?
|
||||
lpstat -v
|
||||
lpstat -p
|
||||
|
||||
# 5. DNS fonctionne ?
|
||||
dig @127.0.0.1 photomaton.lessapinsduweb.com A
|
||||
# Doit repondre 10.3.141.1
|
||||
|
||||
# 6. HTTPS fonctionne ?
|
||||
curl -k https://photomaton.lessapinsduweb.com/
|
||||
# (depuis le Pi lui-meme, ou depuis un telephone connecte au WiFi)
|
||||
|
||||
# 7. Memoire ?
|
||||
free -h
|
||||
# Verifier que Swap est present (zram + swapfile)
|
||||
|
||||
# 8. Health check complet
|
||||
bash scripts/health-check.sh
|
||||
```
|
||||
|
||||
### Test fonctionnel complet
|
||||
|
||||
1. Connecter un telephone au WiFi "Photomaton"
|
||||
2. Appuyer sur le bouton physique (1 clic)
|
||||
3. Verifier le countdown sur l'ecran
|
||||
4. Verifier que la photo est prise et apparait dans la galerie
|
||||
5. Scanner le QR code avec le telephone
|
||||
6. Verifier que la photo se telecharge
|
||||
7. Cliquer "Demander l'impression" dans la galerie
|
||||
8. Sur le dashboard Node-RED (telephone) : valider l'impression
|
||||
9. Verifier que la Selphy imprime correctement
|
||||
|
||||
---
|
||||
|
||||
## 15. Post-installation : contenu a restaurer
|
||||
|
||||
### Fichiers a copier depuis une sauvegarde
|
||||
|
||||
```bash
|
||||
# Cadres et fonds
|
||||
~/photobooth-data/userdata/hopnbloc/
|
||||
~/photobooth-data/userdata/LSDW/
|
||||
~/photobooth-data/userdata/demoassets/
|
||||
|
||||
# Script d'impression
|
||||
~/photobooth-data/script/script_print.sh
|
||||
|
||||
# Configuration photobooth-app
|
||||
~/photobooth-data/config/config.json
|
||||
|
||||
# Flows Node-RED
|
||||
~/.node-red/flows.json
|
||||
|
||||
# Config Zoraxy (proxies)
|
||||
~/zoraxy/conf/proxy/*.config
|
||||
|
||||
# Config dnsmasq custom
|
||||
/etc/dnsmasq.d/090_custom_local_hotspot.conf
|
||||
|
||||
# Credentials OVH (pour certbot)
|
||||
~/.ovhapi
|
||||
```
|
||||
|
||||
### Sauvegarder le systeme
|
||||
|
||||
Pour eviter de devoir tout refaire, creer une image de la carte SD :
|
||||
|
||||
```bash
|
||||
# Sur le PC (pas sur le Pi), avec la carte SD inseree :
|
||||
sudo dd if=/dev/sdX of=photomaton-backup-$(date +%Y%m%d).img bs=4M status=progress
|
||||
```
|
||||
|
||||
Ou utiliser `rpi-clone` pour cloner sur une deuxieme carte SD.
|
||||
Reference in New Issue
Block a user