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kjy00302
2023-03-16 19:46:09 +09:00
commit 8dbf94d9e0
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# Byte-compiled / optimized / DLL files
__pycache__/
*.py[cod]
*$py.class
# C extensions
*.so
# Distribution / packaging
.Python
build/
develop-eggs/
dist/
downloads/
eggs/
.eggs/
lib/
lib64/
parts/
sdist/
var/
wheels/
share/python-wheels/
*.egg-info/
.installed.cfg
*.egg
MANIFEST
# PyInstaller
# Usually these files are written by a python script from a template
# before PyInstaller builds the exe, so as to inject date/other infos into it.
*.manifest
*.spec
# Installer logs
pip-log.txt
pip-delete-this-directory.txt
# Unit test / coverage reports
htmlcov/
.tox/
.nox/
.coverage
.coverage.*
.cache
nosetests.xml
coverage.xml
*.cover
*.py,cover
.hypothesis/
.pytest_cache/
cover/
# Translations
*.mo
*.pot
# Django stuff:
*.log
local_settings.py
db.sqlite3
db.sqlite3-journal
# Flask stuff:
instance/
.webassets-cache
# Scrapy stuff:
.scrapy
# Sphinx documentation
docs/_build/
# PyBuilder
.pybuilder/
target/
# Jupyter Notebook
.ipynb_checkpoints
# IPython
profile_default/
ipython_config.py
# pyenv
# For a library or package, you might want to ignore these files since the code is
# intended to run in multiple environments; otherwise, check them in:
# .python-version
# pipenv
# According to pypa/pipenv#598, it is recommended to include Pipfile.lock in version control.
# However, in case of collaboration, if having platform-specific dependencies or dependencies
# having no cross-platform support, pipenv may install dependencies that don't work, or not
# install all needed dependencies.
#Pipfile.lock
# PEP 582; used by e.g. github.com/David-OConnor/pyflow
__pypackages__/
# Celery stuff
celerybeat-schedule
celerybeat.pid
# SageMath parsed files
*.sage.py
# Environments
.env
.venv
env/
venv/
ENV/
env.bak/
venv.bak/
# Spyder project settings
.spyderproject
.spyproject
# Rope project settings
.ropeproject
# mkdocs documentation
/site
# mypy
.mypy_cache/
.dmypy.json
dmypy.json
# Pyre type checker
.pyre/
# pytype static type analyzer
.pytype/
# Cython debug symbols
cython_debug/
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# (WIP) Niimbot printer client
usage: niimprint [-h] -a ADDRESS [--no-check] [-d DENSITY] [-t TYPE] [-n QUANTITY] image
Niimbot printer client
positional arguments:
image PIL supported image file
options:
-h, --help show this help message and exit
-a ADDRESS, --address ADDRESS
MAC address of target device
--no-check Skips image check
-d DENSITY, --density DENSITY
Printer density (1~3)
-t TYPE, --type TYPE Label type (1~3)
-n QUANTITY, --quantity QUANTITY
Number of copies
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import argparse
import printerclient
import printencoder
from PIL import Image
import time
# import math
# mm_to_px = lambda x: math.ceil(x / 25.4 * 203)
# px_to_mm = lambda x: math.ceil(x / 25.4 * 203)
if __name__ == '__main__':
parser = argparse.ArgumentParser(
description="Niimbot printer client")
parser.add_argument('-a', '--address', required=True, help="MAC address of target device")
parser.add_argument('--no-check', action='store_true', help="Skips image check")
parser.add_argument('-d', '--density', type=int, default=2, help="Printer density (1~3)")
parser.add_argument('-t', '--type', type=int, default=1, help="Label type (1~3)")
parser.add_argument('-n', '--quantity', type=int, default=1, help="Number of copies")
parser.add_argument('image', help="PIL supported image file")
args = parser.parse_args()
img = Image.open(args.image)
if img.width / img.height > 1:
# rotate clockwise 90deg, upper line (left line) prints first.
img = img.transpose(Image.ROTATE_270)
assert args.no_check or (img.width == 96 and img.height < 600)
printer = printerclient.PrinterClient(args.address)
printer.set_label_type(args.type)
printer.set_label_density(args.density)
printer.start_print()
printer.allow_print_clear()
printer.start_page_print()
printer.set_dimension(img.height, img.width)
printer.set_quantity(args.quantity)
for pkt in printencoder.naive_encoder(img):
printer._send(pkt)
printer.end_page_print()
while (a := printer.get_print_status())['page'] != args.quantity:
# print(a)
time.sleep(0.1)
printer.end_print()
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class NiimbotPacket:
def __init__(self, type_, data):
self.type = type_
self.data = data
@classmethod
def from_bytes(cls, pkt):
assert pkt[:2] == b'\x55\x55'
assert pkt[-2:] == b'\xaa\xaa'
type_ = pkt[2]
len_ = pkt[3]
data = pkt[4:4+len_]
checksum = type_ ^ len_
for i in data:
checksum ^= i
assert checksum == pkt[-3]
return cls(type_, data)
def to_bytes(self):
checksum = self.type ^ len(self.data)
for i in self.data:
checksum ^= i
return bytes((0x55, 0x55, self.type, len(self.data), *self.data, checksum, 0xaa, 0xaa))
def __repr__(self):
return f"<NiimbotPacket type={self.type} data={self.data}>"
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import PIL.Image as Image
import PIL.ImageOps as ImageOps
import struct
import niimbotpacket
import sys
if sys.version_info.minor >= 10:
def countbitsofbytes(data):
return int.from_bytes(data, 'big').bit_count()
else:
def countbitsofbytes(data):
n = int.from_bytes(data, 'big')
# https://stackoverflow.com/a/9830282
n = (n & 0x55555555) + ((n & 0xAAAAAAAA) >> 1)
n = (n & 0x33333333) + ((n & 0xCCCCCCCC) >> 2)
n = (n & 0x0F0F0F0F) + ((n & 0xF0F0F0F0) >> 4)
n = (n & 0x00FF00FF) + ((n & 0xFF00FF00) >> 8)
n = (n & 0x0000FFFF) + ((n & 0xFFFF0000) >> 16)
return n
def naive_encoder(img):
img_data = ImageOps.invert(img.convert("L")).convert("1").tobytes()
for x in range(img.height):
line_data = img_data[x*12:(x+1)*12]
counts = ( countbitsofbytes(line_data[i*4:(i+1)*4]) for i in range(3) )
header = struct.pack('>H3BB', x, *counts, 1)
pkt = niimbotpacket.NiimbotPacket(0x85, header+line_data)
yield pkt
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import niimbotpacket
import socket
import struct
import time
import enum
class InfoEnum(enum.IntEnum):
DENSITY = 1
PRINTSPEED = 2
LABELTYPE = 3
LANGUAGETYPE = 6
AUTOSHUTDOWNTIME = 7
DEVICETYPE = 8
SOFTVERSION = 9
BATTERY = 10
DEVICESERIAL = 11
HARDVERSION = 12
_packet_to_int = lambda x: int.from_bytes(x.data, 'big')
# TODO REMOVE MAGIC NUMBER
class PrinterClient:
def __init__(self, address):
self._sock = socket.socket(socket.AF_BLUETOOTH, socket.SOCK_STREAM, socket.BTPROTO_RFCOMM)
self._sock.connect((address, 1))
self._packetbuf = bytearray()
def _recv(self):
packets = []
self._packetbuf.extend(self._sock.recv(1024))
while len(self._packetbuf) > 4:
pkt_len = self._packetbuf[3] + 7
if len(self._packetbuf) >= pkt_len:
packet = niimbotpacket.NiimbotPacket.from_bytes(self._packetbuf[:pkt_len])
# print('recv:',packet)
packets.append(packet)
del self._packetbuf[:pkt_len]
return packets
def _send(self, packet):
# print('send:',packet)
self._sock.send(packet.to_bytes())
def _transceive(self, reqcode, data, respcode):
self._send(niimbotpacket.NiimbotPacket(reqcode, data))
resp = None
for _ in range(6):
for packet in self._recv():
if packet.type == 219:
raise ValueError
elif packet.type == 0:
raise NotImplementedError
elif packet.type == respcode:
resp = packet
if resp:
return resp
time.sleep(0.1)
return resp
def get_info(self, key):
if packet := self._transceive(64, bytes((key,)), 64+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)
else:
return None
def get_rfid(self):
packet = self._transceive(26, b'\x01', 27)
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(220, b'\x01', 221)
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(35, bytes((n,)), 51)
return bool(packet.data[0])
def set_label_density(self, n):
assert 1 <= n <= 3
packet = self._transceive(33, bytes((n,)), 49)
return bool(packet.data[0])
def start_print(self):
packet = self._transceive(1, b'\x01', 2)
return bool(packet.data[0])
def end_print(self):
packet = self._transceive(243, b'\x01', 244)
return bool(packet.data[0])
def start_page_print(self):
packet = self._transceive(3, b'\x01', 4)
return bool(packet.data[0])
def end_page_print(self):
packet = self._transceive(227, b'\x01', 228)
return bool(packet.data[0])
def allow_print_clear(self):
packet = self._transceive(32, b'\x01', 48)
return bool(packet.data[0])
def set_dimension(self, w, h):
packet = self._transceive(19, struct.pack('>HH', w, h), 20)
return bool(packet.data[0])
def set_quantity(self, n):
packet = self._transceive(21, struct.pack('>H', n), 22)
return bool(packet.data[0])
def get_print_status(self):
packet = self._transceive(163, b'\x01', 179)
page, progress1, progress2 = struct.unpack('>HBB', packet.data)
return {'page': page, 'progress1': progress1, 'progress2': progress2}
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Pillow >= 8.0