Files
Gracious 90137dd111 Add model table, PrinterError, and port upstream PRs #28/#12
Library changes on top of upstream 35c41a7:

- models.py: MODELS table (max width / density / needs_print_clear per
  model) and prepare_print(), replacing the duplicated width/density
  logic in the CLI. Adds d101 (192px head, tested on 12mm tape).
- _transceive raises PrinterError instead of returning None (callers
  used to crash with AttributeError on a silent printer).
- PR #28: send ALLOW_PRINT_CLEAR / SET_QUANTITY for D-series models
  (labels taller than ~210px failed on D11 without them) and pause 1ms
  between line packets.
- PR #12: replace the fixed sleep after END_PAGE_PRINT with
  get_print_status() polling (30s deadline, fallback for firmwares that
  do not answer). get_print_status returns PrintStatus(finished,
  progress, feed_progress, error).
- set_dimension parameter names match their use.

Verified on a D101 over Bluetooth.
2026-09-21 08:02:58 +01:00

334 lines
11 KiB
Python

import abc
import dataclasses
import enum
import logging
import math
import socket
import struct
import time
import serial
from PIL import Image, ImageOps
from serial.tools.list_ports import comports as list_comports
from niimprint.models import PrinterError, PrinterModel, get_model
from niimprint.packet import NiimbotPacket
class InfoEnum(enum.IntEnum):
DENSITY = 1
PRINTSPEED = 2
LABELTYPE = 3
LANGUAGETYPE = 6
AUTOSHUTDOWNTIME = 7
DEVICETYPE = 8
SOFTVERSION = 9
BATTERY = 10
DEVICESERIAL = 11
HARDVERSION = 12
class RequestCodeEnum(enum.IntEnum):
GET_INFO = 64 # 0x40
GET_RFID = 26 # 0x1A
HEARTBEAT = 220 # 0xDC
SET_LABEL_TYPE = 35 # 0x23
SET_LABEL_DENSITY = 33 # 0x21
START_PRINT = 1 # 0x01
END_PRINT = 243 # 0xF3
START_PAGE_PRINT = 3 # 0x03
END_PAGE_PRINT = 227 # 0xE3
ALLOW_PRINT_CLEAR = 32 # 0x20
SET_DIMENSION = 19 # 0x13
SET_QUANTITY = 21 # 0x15
GET_PRINT_STATUS = 163 # 0xA3
def _packet_to_int(x):
return int.from_bytes(x.data, "big")
@dataclasses.dataclass(frozen=True)
class PrintStatus:
finished: bool
progress: int # page print progress, %
feed_progress: int # label feed progress, % (lags behind `progress`)
error: bool
class BaseTransport(metaclass=abc.ABCMeta):
@abc.abstractmethod
def read(self, length: int) -> bytes:
raise NotImplementedError
@abc.abstractmethod
def write(self, data: bytes):
raise NotImplementedError
class BluetoothTransport(BaseTransport):
def __init__(self, address: str):
self._sock = socket.socket(
socket.AF_BLUETOOTH,
socket.SOCK_STREAM,
socket.BTPROTO_RFCOMM,
)
self._sock.connect((address, 1))
def read(self, length: int) -> bytes:
return self._sock.recv(length)
def write(self, data: bytes):
return self._sock.send(data)
class SerialTransport(BaseTransport):
def __init__(self, port: str = "auto"):
port = port if port != "auto" else self._detect_port()
self._serial = serial.Serial(port=port, baudrate=115200, timeout=0.5)
def _detect_port(self):
all_ports = list(list_comports())
if len(all_ports) == 0:
raise RuntimeError("No serial ports detected")
if len(all_ports) > 1:
msg = "Too many serial ports, please select specific one:"
for port, desc, hwid in all_ports:
msg += f"\n- {port} : {desc} [{hwid}]"
raise RuntimeError(msg)
return all_ports[0][0]
def read(self, length: int) -> bytes:
return self._serial.read(length)
def write(self, data: bytes):
return self._serial.write(data)
class PrinterClient:
def __init__(self, transport):
self._transport = transport
self._packetbuf = bytearray()
def print_image(
self,
image: Image,
density: int = 3,
model: str | PrinterModel | None = None,
timeout: float = 30.0,
):
"""Print a single image. `model` enables model-specific protocol quirks."""
if isinstance(model, str):
model = get_model(model)
needs_print_clear = model.needs_print_clear if model else False
self.set_label_density(density)
self.set_label_type(1)
self.start_print()
if needs_print_clear:
self.allow_print_clear()
self.start_page_print()
self.set_dimension(image.height, image.width)
if needs_print_clear:
self.set_quantity(1)
for pkt in self._encode_image(image):
self._send(pkt)
time.sleep(0.001) # don't outrun the printer on tall labels (D11)
self.end_page_print()
self._wait_for_print(timeout)
while not self.end_print():
time.sleep(0.1)
def _wait_for_print(self, timeout: float):
"""Poll print status until the printer reports the page is finished."""
deadline = time.monotonic() + timeout
while time.monotonic() < deadline:
try:
status = self.get_print_status()
except PrinterError as exc:
# Some firmwares don't answer status queries; fall back to waiting
logging.debug(f"print status unavailable: {exc}")
time.sleep(0.3)
return
if status.error:
raise PrinterError("Printer reported an error during printing")
if status.finished:
return
logging.info(
f"Printing.. {status.progress}% (feed {status.feed_progress}%)"
)
time.sleep(0.1)
logging.warning(f"Print did not finish within {timeout}s, ending anyway")
def _encode_image(self, image: Image):
img = ImageOps.invert(image.convert("L")).convert("1")
for y in range(img.height):
line_data = [img.getpixel((x, y)) for x in range(img.width)]
line_data = "".join("0" if pix == 0 else "1" for pix in line_data)
line_data = int(line_data, 2).to_bytes(math.ceil(img.width / 8), "big")
counts = (0, 0, 0) # It seems like you can always send zeros
header = struct.pack(">H3BB", y, *counts, 1)
pkt = NiimbotPacket(0x85, header + line_data)
yield pkt
def _recv(self):
packets = []
self._packetbuf.extend(self._transport.read(1024))
while len(self._packetbuf) > 4:
pkt_len = self._packetbuf[3] + 7
if len(self._packetbuf) >= pkt_len:
packet = NiimbotPacket.from_bytes(self._packetbuf[:pkt_len])
self._log_buffer("recv", packet.to_bytes())
packets.append(packet)
del self._packetbuf[:pkt_len]
return packets
def _send(self, packet):
self._transport.write(packet.to_bytes())
def _log_buffer(self, prefix: str, buff: bytes):
msg = ":".join(f"{i:#04x}"[-2:] for i in buff)
logging.debug(f"{prefix}: {msg}")
def _transceive(self, reqcode, data, respoffset=1):
respcode = respoffset + reqcode
packet = NiimbotPacket(reqcode, data)
self._log_buffer("send", packet.to_bytes())
self._send(packet)
for _ in range(6):
for packet in self._recv():
if packet.type == 219:
raise PrinterError(f"Printer rejected request {reqcode:#04x}")
elif packet.type == 0:
raise PrinterError(f"Request {reqcode:#04x} not supported")
elif packet.type == respcode:
return packet
time.sleep(0.1)
raise PrinterError(f"No response to request {reqcode:#04x}")
def get_info(self, key):
packet = self._transceive(RequestCodeEnum.GET_INFO, bytes((key,)), key)
match key:
case InfoEnum.DEVICESERIAL:
return packet.data.hex()
case InfoEnum.SOFTVERSION:
return _packet_to_int(packet) / 100
case InfoEnum.HARDVERSION:
return _packet_to_int(packet) / 100
case _:
return _packet_to_int(packet)
def get_rfid(self):
packet = self._transceive(RequestCodeEnum.GET_RFID, b"\x01")
data = packet.data
if data[0] == 0:
return None
uuid = data[0:8].hex()
idx = 8
barcode_len = data[idx]
idx += 1
barcode = data[idx : idx + barcode_len].decode()
idx += barcode_len
serial_len = data[idx]
idx += 1
serial = data[idx : idx + serial_len].decode()
idx += serial_len
total_len, used_len, type_ = struct.unpack(">HHB", data[idx:])
return {
"uuid": uuid,
"barcode": barcode,
"serial": serial,
"used_len": used_len,
"total_len": total_len,
"type": type_,
}
def heartbeat(self):
packet = self._transceive(RequestCodeEnum.HEARTBEAT, b"\x01")
closingstate = None
powerlevel = None
paperstate = None
rfidreadstate = None
match len(packet.data):
case 20:
paperstate = packet.data[18]
rfidreadstate = packet.data[19]
case 13:
closingstate = packet.data[9]
powerlevel = packet.data[10]
paperstate = packet.data[11]
rfidreadstate = packet.data[12]
case 19:
closingstate = packet.data[15]
powerlevel = packet.data[16]
paperstate = packet.data[17]
rfidreadstate = packet.data[18]
case 10:
closingstate = packet.data[8]
powerlevel = packet.data[9]
rfidreadstate = packet.data[8]
case 9:
closingstate = packet.data[8]
return {
"closingstate": closingstate,
"powerlevel": powerlevel,
"paperstate": paperstate,
"rfidreadstate": rfidreadstate,
}
def set_label_type(self, n):
assert 1 <= n <= 3
packet = self._transceive(RequestCodeEnum.SET_LABEL_TYPE, bytes((n,)), 16)
return bool(packet.data[0])
def set_label_density(self, n):
assert 1 <= n <= 5 # B21 has 5 levels, not sure for D11
packet = self._transceive(RequestCodeEnum.SET_LABEL_DENSITY, bytes((n,)), 16)
return bool(packet.data[0])
def start_print(self):
packet = self._transceive(RequestCodeEnum.START_PRINT, b"\x01")
return bool(packet.data[0])
def end_print(self):
packet = self._transceive(RequestCodeEnum.END_PRINT, b"\x01")
return bool(packet.data[0])
def start_page_print(self):
packet = self._transceive(RequestCodeEnum.START_PAGE_PRINT, b"\x01")
return bool(packet.data[0])
def end_page_print(self):
packet = self._transceive(RequestCodeEnum.END_PAGE_PRINT, b"\x01")
return bool(packet.data[0])
def allow_print_clear(self):
packet = self._transceive(RequestCodeEnum.ALLOW_PRINT_CLEAR, b"\x01", 16)
return bool(packet.data[0])
def set_dimension(self, h, w):
packet = self._transceive(
RequestCodeEnum.SET_DIMENSION, struct.pack(">HH", h, w)
)
return bool(packet.data[0])
def set_quantity(self, n):
packet = self._transceive(RequestCodeEnum.SET_QUANTITY, struct.pack(">H", n))
return bool(packet.data[0])
def get_print_status(self):
packet = self._transceive(RequestCodeEnum.GET_PRINT_STATUS, b"\x01", 16)
data = packet.data
return PrintStatus(
finished=bool(data[1]),
progress=data[2],
feed_progress=data[3] if len(data) > 3 else data[2],
error=bool(data[6]) if len(data) > 6 else False,
)