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5 Commits

Author SHA1 Message Date
n07070
ad3cb6231a Apply linting to web 2026-06-04 01:11:37 +02:00
n07070
adcc744e7a Apply linting to the Raspberry Pi 2026-06-04 01:04:46 +02:00
n07070
6d9db2d2aa Apply linting to printers 2026-06-04 00:39:37 +02:00
n07070
651235a610 Lint printer file 2026-06-04 00:34:49 +02:00
n07070
3c490e10b4 Apply black formatter 2026-06-04 00:31:04 +02:00
8 changed files with 194 additions and 111 deletions

View File

@@ -100,11 +100,7 @@ print_queue = PrintQueue(app)
rpi = Raspberry(
print_queue,
app,
socketio,
configuration_file["rpi"]["button_gpio_port_number"],
configuration_file["rpi"]["indicator_gpio_port_number"],
configuration_file["rpi"]["flash_gpio_port_number"],
configuration_file["rpi"]["flash"],
configuration_file
)
RASPBERRY_PI_CONNECTED = rpi.is_raspberry_pi()
@@ -126,6 +122,7 @@ limiter = Limiter(
get_remote_address, app=app, default_limits=["1500 per day", "500 per hour"]
)
# General routes
@app.route("/")
@limiter.limit("1/second", override_defaults=False)
@@ -317,11 +314,13 @@ def api_queue_status():
"""API endpoint for entire queue"""
return jsonify(web.get_queue_state())
@app.route("/api/queue/completed", methods=["GET"])
def api_queue_completed():
"""API endpoint that returns the finished tasks"""
return jsonify(web.get_queue_completed())
@app.route("/api/worker", methods=["GET"])
def api_worker_state():
"""API endpoint to get the worker state"""

View File

@@ -76,7 +76,10 @@ class PrintQueue:
"""Return current queue state"""
with self._lock:
self.app.logger.debug("Return current queue state")
return [{"task_id": t.task_id, "status": t.status, "type": str(t.task_type) } for t in self._queue]
return [
{"task_id": t.task_id, "status": t.status, "type": str(t.task_type)}
for t in self._queue
]
def get_queue_completed(self):
"""Return completed queue elements"""

View File

@@ -1,39 +1,44 @@
"""
This class manages connexion to a Printer
"""
from time import sleep
import os.path
import os
from abc import ABC, abstractmethod
from dataclasses import dataclass
from enum import Enum
import uuid
import usb.core
import threading
import usb.core
from PIL import Image, ImageEnhance
import numpy as np
# Importing the modules needed for each supported printer Type
import escpos.printer
from brother_ql.models import ModelsManager
from brother_ql.backends import backend_factory
from brother_ql import labels
from brother_ql.raster import BrotherQLRaster
from brother_ql.conversion import convert
from brother_ql.backends.helpers import send
class PrinterType(Enum):
"""
What are the capacities of a Printer ?
"""
EPSON = "epson"
BROTHER = "brother"
# For Brother-QL Printers
@dataclass
class PrinterInfo:
"""
Brother-QL printer information
"""
identifier: str
backend: str
protocol: str
@@ -54,6 +59,7 @@ class PrinterInfo:
def __setitem__(self, key, value):
setattr(self, key, value)
class Printer(ABC):
"""
If it outputs printed paper and speaks like a printer, then it must be a printer.
@@ -105,9 +111,7 @@ class EscPosPrinter(Printer):
try:
# This also calls open(), which we need to close()
# or else the device will appear as busy.
p = escpos.printer.Usb(
self.vendor_id, self.device_id, 0, profile="TM-P80"
)
p = escpos.printer.Usb(self.vendor_id, self.device_id, 0, profile="TM-P80")
except escpos.exceptions.DeviceNotFoundError as e:
self.app.logger.error(
"The USB device is not plugged in : %s",
@@ -339,13 +343,16 @@ class EscPosPrinter(Printer):
else:
raise RuntimeError("The printer is not ready to print yet !")
class BrotherPrinter(Printer):
"""
Manages connexion and capabilities of a BrotherQL Printer
"""
def __init__(self, app, vendor_id, device_id):
super().__init__(app, vendor_id="",device_id="", printer_type=PrinterType.BROTHER)
super().__init__(
app, vendor_id="", device_id="", printer_type=PrinterType.BROTHER
)
self.printer = None
self.usb_args = {}
self.usb_args["idVendor"] = self.device_id
@@ -363,11 +370,13 @@ class BrotherPrinter(Printer):
parts = identifier.split("/")
if len(parts) < 4:
self.app.logger.warning(f"Skipping device with invalid identifier format: {identifier}")
self.app.logger.warning(
f"Skipping device with invalid identifier format: {identifier}"
)
continue
protocol = parts[0]
device_info = parts[2]
# device_info = parts[2]
serial_number = parts[3]
try:
@@ -378,7 +387,7 @@ class BrotherPrinter(Printer):
break
self.app.logger.debug(f"Matched printer model: {model}")
except ValueError:
self.app.logger.warning(f"Invalid product ID format: {product_id}")
self.app.logger.warning(f"Invalid product ID format: {m.product_id}")
self.printer_info = PrinterInfo(
identifier=identifier,
@@ -392,7 +401,6 @@ class BrotherPrinter(Printer):
self.ready = True
def _has_paper(self):
raise NotImplementedError("This printer model does not support this.")
@@ -426,7 +434,7 @@ class BrotherPrinter(Printer):
)
# Debug logging
if FLASK_DEBUG:
if os.getenv("FLASK_DEBUG"):
self.app.logger.debug(f"""
Print parameters:
- Label type: {label_type}
@@ -448,10 +456,14 @@ class BrotherPrinter(Printer):
status = send(
instructions=instructions,
printer_identifier=self.printer_info["identifier"],
backend_identifier="pyusb"
backend_identifier="pyusb",
)
if not status["did_print"] or status["outcome"] == "error" or status["outcome"] == "unknown":
if (
not status["did_print"]
or status["outcome"] == "error"
or status["outcome"] == "unknown"
):
raise RuntimeError("Failed to print using Python API")
if status["printer_state"]:
@@ -462,7 +474,9 @@ class BrotherPrinter(Printer):
except usb.core.USBError as e:
# Treat timeout errors as successful since they often occur after print completion
if e.errno == 110: # Operation timed out
self.app.logger.debug("USB timeout occurred - this is normal and the print likely completed")
self.app.logger.debug(
"USB timeout occurred - this is normal and the print likely completed"
)
self.app.logger.debug("Print completed (timeout is normal)")
self.ready = True
@@ -496,10 +510,11 @@ class BrotherPrinter(Printer):
# raise NotImplementedError("This printer type is not implemented yet")
def _process_image(self, path):
brightness_factor = 1.5 # Used only if image is too dark
brightness_threshold = 100 # Brightness threshold (0255)
contrast_factor = 0.6 # Less than 1.0 = lower contrast
# contrast_factor = 0.6 # Less than 1.0 = lower contrast
max_width = 575
max_height = 1000

View File

@@ -1,17 +1,21 @@
"""
A collection of Printers.
It has methods to discover printers, and provides an interface for the methods expected from printers.
It has methods to discover printers, and provides an interface for
the methods expected from printers.
"""
from collections.abc import Mapping, Set
from collections.abc import Set
import usb.core
import usb.util
from printer import Printer, EscPosPrinter, BrotherPrinter, PrinterType
from printer import Printer, EscPosPrinter, BrotherPrinter
class Printers():
class Printers:
"""
Finds and creates a set of Printer that can be used by the Workers to print.
"""
def __init__(self, app):
"""
Discover printers connected to the computer and return a Collection of Printer()
@@ -38,8 +42,12 @@ class Printers():
# Find all connected USB devices
devices = usb.core.find(find_all=True, custom_match=_FindClass(7))
if not devices:
self.app.logger.warning("No USB devices of class 7 ( printers ) found or pyusb could not access the bus.")
raise RuntimeError("No USB devices of class 7 ( printers ) found or pyusb could not access the bus.")
self.app.logger.warning(
"No USB devices of class 7 ( printers ) found or pyusb could not access the bus."
)
raise RuntimeError(
"No USB devices of class 7 ( printers ) found or pyusb could not access the bus."
)
for dev in devices:
# Attempt to get the manufacturer and product strings
@@ -52,7 +60,13 @@ class Printers():
product = usb.util.get_string(dev, dev.iProduct)
except Exception:
product = "Unknown"
self.app.logger.debug("Looking at %s %s (%s:%s)", manufacturer, product, hex(dev.idVendor), hex(dev.idProduct))
self.app.logger.debug(
"Looking at %s %s (%s:%s)",
manufacturer,
product,
hex(dev.idVendor),
hex(dev.idProduct),
)
if manufacturer == "EPSON":
try:
@@ -60,13 +74,15 @@ class Printers():
self.app.logger.debug("Trying to creat a new EPSON printer")
prid = dev.idProduct
vendir = dev.idVendor
escpos_printer = EscPosPrinter(self.app, vendor_id=vendir, device_id=prid)
escpos_printer = EscPosPrinter(
self.app, vendor_id=vendir, device_id=prid
)
except Exception as e:
raise e
# If the object creation is successfull, we add it to the list of Printers
printers.add(escpos_printer)
self.app.logger.debug("Found a %s printer" % manufacturer )
self.app.logger.debug("Found a %s printer", manufacturer)
# We already found the type of printer,
# we don't need an extra comparaison.
@@ -79,16 +95,22 @@ class Printers():
self.app.logger.debug("Trying to creat a new BROTHER printer")
prid = dev.idProduct
vendir = dev.idVendor
brother_printer = BrotherPrinter(self.app, vendor_id=vendir,device_id=prid)
brother_printer = BrotherPrinter(
self.app, vendor_id=vendir, device_id=prid
)
except Exception as e:
self.app.logger.error("Could not create a %s printer class with %s:%s" % product, dev.idVendor, dev.idProduct)
self.app.logger.error(
"Could not create a %s printer class with %s:%s" , product,
dev.idVendor,
dev.idProduct,
)
raise e
# If the object creation is successfull, we add it to the list of Printers
printers.add(brother_printer)
self.app.logger.debug("Found a %s printer" % manufacturer )
self.app.logger.debug("Found a %s printer" , manufacturer)
self.app.logger.debug("Found %s printers" % len(printers))
self.app.logger.debug("Found %s printers" , len(printers))
return printers
def any(self) -> Printer:
@@ -101,18 +123,23 @@ class Printers():
else:
raise RuntimeError("No printers available")
def get_printer(self, printer_type):
# def get_printer(self, printer_type):
# """
# Return a specific printer
# printer_type -- a printer type
# """
# return NotImplementedError()
class _FindClass:
"""
Return a specific printer
printer_type -- a printer type
Use by usb.core to modify the way USB devices are found
Taken from pyUSB documentation on Github
"""
return NotImplementedError()
class _FindClass():
def __init__(self, class_):
self._class = class_
def __call__(self, device):
# first, let's check the device
if device.bDeviceClass == self._class:
@@ -121,10 +148,7 @@ class _FindClass():
# interface that matches our class
for cfg in device:
# find_descriptor: what's it?
intf = usb.util.find_descriptor(
cfg,
bInterfaceClass=self._class
)
intf = usb.util.find_descriptor(cfg, bInterfaceClass=self._class)
if intf is not None:
return True

View File

@@ -10,12 +10,12 @@ import io # To check if we are on a Raspberry Pi
import subprocess
import os
from time import sleep, gmtime, strftime
from flask_socketio import SocketIO
from gpiozero import Button, LED, DigitalOutputDevice
from PIL import Image
from task import TextTask, ImageTask, CutTask
class Raspberry():
class Raspberry:
"""
This class will manage three things :
- Connecting to a USB webcam
@@ -23,29 +23,22 @@ class Raspberry():
- Activating a flash ( or light )
- Flash an indicator light
# pylint: disable=too-many-instance-attributes
# dede
"""
def __init__(
self,
print_queue,
app,
socketio,
button_gpio_port_number,
indicator_gpio_port_number,
flash_gpio_port_number,
is_flash_present,
configuration_file
):
self.print_queue = print_queue
self.socketio = socketio
self.app = app
self.flash_gpio = flash_gpio_port_number
self.is_flash_present = is_flash_present
self.button_gpio = button_gpio_port_number
self.led_gpio = indicator_gpio_port_number
self.configuration_file = configuration_file
self.image_path = self.app.config["UPLOAD_FOLDER"] + "/image.jpg"
def is_raspberry_pi(self, raise_on_errors=False):
def is_raspberry_pi(self):
"""
Checking if we are on a Raspberry Pi by checking
information on the /proc/cpuinfo file
@@ -72,9 +65,10 @@ class Raspberry():
return False
if not found:
self.app.logger.error(
"Couldn't get sufficient hardware information from /proc/cpuinfo, Unable to determine if we are on a Raspberry Pi."
self.app.logger.warning(
"Couldn't get sufficient hardware information from /proc/cpuinfo"
)
self.app.logger.error("Unable to determine if we are on a Raspberry Pi.")
return False
except IOError:
self.app.logger.error("Unable to open `/proc/cpuinfo`.")
@@ -83,28 +77,38 @@ class Raspberry():
self.app.logger.debug("It seems we are on a Raspberry Pi")
try:
self.initialise_gpio()
self._initialise_gpio()
except Exception as e:
self.app.logger.debug("Could not init GPIO : " + str(e))
raise e
return True
def initialise_gpio(self):
def _initialise_gpio(self):
"""
Set GPIO ports from configuration and activate them
to show the user it's working.
"""
self.app.logger.debug("Initializing GPIO")
self.led = LED(self.led_gpio)
self.led = LED(self.configuration_file["rpi"]["indicator_gpio_port_number"])
self.app.logger.debug("Activated indicator LED")
self.indicator_countdown(iters=3)
self.button = Button(self.button_gpio, pull_up=True, bounce_time=0.1)
self.button = Button(
self.configuration_file["rpi"]["button_gpio_port_number"],
pull_up=True, bounce_time=0.1
)
self.button.when_pressed = self.on_button_pressed
self.app.logger.debug("Activated button")
# The "flash" is a relay-controlled device ( light bulb for example )
self.flash = DigitalOutputDevice(self.flash_gpio)
self.flash = DigitalOutputDevice(self.configuration_file["rpi"]["flash_gpio_port_number"])
self.flash_toggle()
self.app.logger.debug("Activated flash")
def indicator_countdown(self, iters=10, multi=10):
"""
Activates the LED faster and faster to show a countdown
"""
for i in range(iters, 0, -1):
self.led.on()
sleep(i / multi)
@@ -112,7 +116,10 @@ class Raspberry():
sleep(i / multi)
def indicator_led(self, timing=0.2, l=5):
for i in range(l):
"""
Turns on the indicator LED for a certain period of time
"""
for _ in range(l):
self.app.logger.debug("LED turned on")
self.led.on()
sleep(timing)
@@ -121,6 +128,9 @@ class Raspberry():
sleep(timing)
def flash_toggle(self):
"""
Flashes the flash
"""
self.app.logger.debug("Flash turned on")
self.flash.on()
sleep(0.3)
@@ -128,6 +138,9 @@ class Raspberry():
self.app.logger.debug("Flash turned off")
def take_picture(self):
"""
Takes a picture via the USB webcam
"""
# Validate if the image path is valid
if not os.path.isdir(os.path.dirname(self.image_path)):
self.app.logger.error(
@@ -173,6 +186,9 @@ class Raspberry():
position="bottom_right",
margin=10,
):
"""
Takes an image and overlays it with a another picture.
"""
try:
image = Image.open(image_path).convert("RGBA")
logo = Image.open(logo_path).convert("RGBA")
@@ -199,7 +215,9 @@ class Raspberry():
y = image.height - logo.height - margin
else:
raise ValueError(
"Invalid position. Choose from 'bottom_right', 'top_left', 'top_right', or 'bottom_left'."
"Invalid position." +
"Choose from 'bottom_right', 'top_left', " +
" 'top_right', or 'bottom_left'."
)
# Composite the logo onto the image
@@ -217,6 +235,9 @@ class Raspberry():
return True
def crop_to_square(self, image_path, output_path=None):
"""
Crop an image so that it becomes a square
"""
try:
image = Image.open(image_path)
width, height = image.size
@@ -244,6 +265,10 @@ class Raspberry():
return True
def on_button_pressed(self):
"""
When a button press is detected, a picture is taken from the webcam
and added to the print queue.
"""
self.app.logger.debug("Button has been pressed")
self.led.on()
self.app.logger.debug("Counting down")
@@ -264,7 +289,9 @@ class Raspberry():
self.led.on()
self.crop_to_square(self.image_path)
self.print_queue.enqueue(ImageTask(self.image_path, signature="", process=True))
self.print_queue.enqueue(TextTask(content="Imprimé par LittlePrynter", signature=""))
self.print_queue.enqueue(
TextTask(content="Imprimé par LittlePrynter", signature="")
)
time = strftime("%Y-%m-%d %H:%M", gmtime())
self.print_queue.enqueue(TextTask(content=time, signature=""))
self.print_queue.enqueue(CutTask())

View File

@@ -14,6 +14,7 @@ to print at the same time.
We can also delay and store printing tasks until a printer becomes
available if none is online.
"""
from abc import ABC, abstractmethod
## See https://docs.python.org/3/library/abc.html to learn more about this
@@ -27,6 +28,7 @@ class TaskType(Enum):
"""
The different tasks supported by the printers
"""
TEXT = "text"
IMAGE = "image"
CUT = "cut"
@@ -47,7 +49,6 @@ class PrintTask(ABC):
def get_print_data(self):
"""Return data formatted for printer"""
def _generate_id(self):
# Generate unique task ID
return str(uuid.uuid4())
@@ -66,8 +67,10 @@ class TextTask(PrintTask):
def get_print_data(self):
return {"txt": self.content, "sign": self.signature}
class QRTask(TextTask):
"""This task prints a QR-Code, the signature is ignore and is always the content itself"""
def __init__(self, content):
super().__init__(content, signature="")
self.content = content
@@ -76,6 +79,7 @@ class QRTask(TextTask):
def get_print_data(self):
return {"txt": self.content, "sign": self.signature}
class ImageTask(PrintTask):
"""
This tasks represents a image content ( in the form of it's path ), and it's signature.

View File

@@ -1,10 +1,13 @@
"""
Manage all of the inputs from a web source
"""
import os
from flask import flash
from werkzeug.utils import secure_filename
from task import TextTask, ImageTask, CutTask
class Web(object):
class Web:
"""Web is the class that gets all of the information from web calls
( API and Web page ) and provides checks before sending stuff to printing"""
@@ -65,16 +68,19 @@ class Web(object):
return True
def login(self, username: str, password: str) -> bool:
"""Not implemented"""
return
# def login(self, username: str, password: str) -> bool:
# """Not implemented"""
# return
def logout(self, username: str, password: str) -> bool:
"""Not implemented"""
return
# def logout(self, username: str, password: str) -> bool:
# """Not implemented"""
# return
def allowed_file(self, filename) -> bool:
self.app.logger.debug("Is the filename allowed ?")
"""
Check if the file extension is allowed
"""
self.app.logger.debug("Checking if the file extension is allowed")
return (
"." in filename
and filename.rsplit(".", 1)[1].lower()
@@ -82,8 +88,11 @@ class Web(object):
)
def upload_file(self, image) -> bool:
"""
Save the file after executing checks on it
"""
self.app.logger.debug("Validating file")
if image:
if not image is None or not image == "":
if self.allowed_file(image.filename):
filename = secure_filename(image.filename)
self.app.logger.debug("File valid")
@@ -104,12 +113,6 @@ class Web(object):
)
return False
else:
self.app.logger.error(
"Could not save file, it seems to be null ? : " + str(filename)
)
return False
def get_queue_state(self):
"""Return current queue state"""
return self.print_queue.get_queue_state()

View File

@@ -48,7 +48,11 @@ class PrintWorker(threading.Thread):
try:
self.app.logger.debug("Changing printers")
self.printer = next(self.printers)
self.app.logger.debug("The worker got a %s printer and it's %s", self.printer.printer_type, "Ready" if self.printer.ready else "Not ready")
self.app.logger.debug(
"The worker got a %s printer and it's %s",
self.printer.printer_type,
"Ready" if self.printer.ready else "Not ready",
)
except Exception as e:
self.app.logger.error(str(e))
self.printer = None
@@ -89,7 +93,9 @@ class PrintWorker(threading.Thread):
task.status = "completed"
self.print_queue.mark_completed(task.task_id, "completed")
self._emit_status(task.task_id, "completed")
self.app.logger.debug("Finished printing task %s " % task.task_id)
self.app.logger.debug(
"Finished printing task %s " % task.task_id
)
self.state = "idle"
except RuntimeError as e:
@@ -97,7 +103,9 @@ class PrintWorker(threading.Thread):
self.state = "idle"
self.print_queue.mark_completed(task.task_id, "failed")
self._emit_status(task.task_id, "failed", error=str(e))
self.app.logger.error("Could not print task %s because %s " % task.task_id, str(e))
self.app.logger.error(
"Could not print task %s because %s " % task.task_id, str(e)
)
else:
# When they are no new tasks to handle, we put the thread to sleep.