Add Tkinter label designer with emoji picker
label_app.py: label size presets, multi-line text with auto-fit / bold / alignment, tabbed emoji picker (rendered via Noto Color Emoji, gamma-darkened and dithered for the thermal head), live 1-bit preview, save PNG, print in a background thread. Settings persist in ~/.config/niimprint-label/. main.py is the earlier minimal GUI it supersedes.
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"""Simple label designer for Niimbot printers: text + emoji, live preview, print."""
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import json
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import re
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import threading
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import tkinter as tk
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from pathlib import Path
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from tkinter import filedialog, messagebox, ttk
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from PIL import Image, ImageDraw, ImageFont, ImageTk
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from niimprint import (
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MODELS,
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BluetoothTransport,
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PrinterClient,
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PrinterError,
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SerialTransport,
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prepare_print,
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)
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PX_PER_MM = 8
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SETTINGS_PATH = Path.home() / ".config" / "niimprint-label" / "settings.json"
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DEFAULT_ADDR = "94:11:02:66:16:4D" # your D101 — change in the app, it is remembered
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TEXT_FONTS = {
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"bold": "/usr/share/fonts/TTF/DejaVuSans-Bold.ttf",
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"regular": "/usr/share/fonts/TTF/DejaVuSans.ttf",
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}
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EMOJI_FONT = "/usr/share/fonts/noto/NotoColorEmoji.ttf"
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EMOJI_FONT_SIZE = 109 # Noto Color Emoji is a bitmap font; only this size loads
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EMOJI_GAMMA = 3.0 # >1 darkens emoji so they survive 1-bit dithering
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# (name, width mm, length mm) — width is the short side (tape width)
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LABEL_PRESETS = [
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("12 x 40 mm", 12, 40),
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("12 x 30 mm", 12, 30),
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("12 x 22 mm", 12, 22),
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("15 x 30 mm", 15, 30),
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("Custom", None, None),
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]
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EMOJI_CATEGORIES = {
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"Smileys": "😀 😃 😄 😁 😆 😅 😂 🙂 😉 😊 😍 😘 😎 🤔 😐 😴 😷 🤒 😭 😡 🤯 🥳 🤠 🤡 👻 💀 👽 🤖 😺",
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"People": "👍 👎 👋 ✌️ 🤞 👌 🙏 💪 👀 🧠 👶 👧 👦 👩 👨 👵 👴 🧑💻 👩🔬 👨🍳 🧑🔧 👮 🕵️ 💁",
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"Home": "🏠 🛏️ 🛋️ 🚪 🪟 🧹 🧺 🧼 🧽 🪥 🧻 🪣 🔑 🔒 🔓 💡 🔌 🔋 🪛 🔧 🔨 🪚 🧰 📦 🗑️ ♻️",
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"Food": "🍎 🍌 🍇 🍓 🍒 🥕 🌽 🥦 🧄 🧅 🍞 🧀 🥚 🥛 🍗 🥩 🍕 🍔 🌮 🍝 🍚 🍪 🍰 ☕ 🍵 🧃 🍺 🍷 🧂 🍯",
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"Objects": "📱 💻 🖥️ ⌨️ 🖱️ 🖨️ 📷 🎧 📚 📖 📝 ✏️ 📎 📌 📏 ✂️ 🗂️ 📁 📅 ⏰ 💊 🩹 🧪 🔬 🔭 🎁 🎈 🧸 🎮 🎲",
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"Nature": "🌞 🌙 ⭐ ⚡ 🔥 💧 ❄️ 🌈 🌸 🌻 🌵 🌲 🍀 🐶 🐱 🐭 🐰 🦊 🐻 🐼 🐸 🐢 🐝 🦋 🐟",
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"Symbols": "❤️ 🧡 💛 💚 💙 💜 🖤 ✅ ❌ ⚠️ ⛔ 🚫 ❗ ❓ 💯 🔴 🟢 🔵 ⬆️ ⬇️ ➡️ ⬅️ ♥️ ★ ☆ ✔ ✖ ☠",
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"Transport": "🚗 🚕 🚌 🚲 🛵 🏍️ 🚂 ✈️ 🚀 ⛵ 🚁 🛒 🧳 🗺️ 🧭",
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}
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# Matches one emoji cluster: base + optional VS16 + any ZWJ-joined continuations
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_EMOJI_BASE = (
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r"[\U0001F000-\U0001FAFF\u2600-\u27BF\u2B00-\u2BFF\u2300-\u23FF\u2190-\u21FF"
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r"\u25A0-\u25FF\u2900-\u297F\u3030\u303D\u3297\u3299\u00A9\u00AE\u2122]"
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)
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EMOJI_RE = re.compile(
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rf"(?:{_EMOJI_BASE}[\uFE0F\uFE0E]?[\U0001F3FB-\U0001F3FF]?"
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rf"(?:\u200D{_EMOJI_BASE}[\uFE0F\uFE0E]?)*)"
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)
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# --------------------------------------------------------------------------- render
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_emoji_font = None
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_emoji_cache: dict[tuple[str, int], Image.Image] = {}
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def render_emoji(cluster: str, height: int) -> Image.Image:
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"""Render one emoji cluster as a grayscale tile of the given height."""
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global _emoji_font
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key = (cluster, height)
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if key in _emoji_cache:
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return _emoji_cache[key]
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if _emoji_font is None:
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_emoji_font = ImageFont.truetype(EMOJI_FONT, EMOJI_FONT_SIZE)
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left, top, right, bottom = _emoji_font.getbbox(cluster)
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tile = Image.new("RGBA", (max(right, 1), max(bottom, 1)), (255, 255, 255, 0))
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ImageDraw.Draw(tile).text((0, 0), cluster, font=_emoji_font, embedded_color=True)
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tile = tile.crop((left, top, right, bottom))
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# Flatten alpha onto white, then scale to line height
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bg = Image.new("RGB", tile.size, "white")
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bg.paste(tile, mask=tile.split()[3])
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scale = height / tile.height
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tile = bg.resize((max(1, round(tile.width * scale)), height), Image.LANCZOS)
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# Thermal print is 1-bit: darken mid-tones so pale colours don't dither away
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gray = tile.convert("L").point(lambda v: round(255 * (v / 255) ** EMOJI_GAMMA))
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_emoji_cache[key] = gray
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return gray
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def _tokenize(line: str):
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"""Split a line into ("text", str) and ("emoji", str) runs."""
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pos = 0
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for m in EMOJI_RE.finditer(line):
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if m.start() > pos:
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yield ("text", line[pos : m.start()])
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yield ("emoji", m.group())
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pos = m.end()
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if pos < len(line):
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yield ("text", line[pos:])
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def _layout(lines, font, font_size):
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"""Return (rows, block_w, block_h). Each row is (width, [(kind, obj, w)])."""
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emoji_h = round(font_size * 1.15)
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ascent, descent = font.getmetrics()
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line_h = max(ascent + descent, emoji_h)
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rows = []
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for line in lines:
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runs, width = [], 0
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for kind, s in _tokenize(line):
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if kind == "text":
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w = round(font.getlength(s))
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runs.append(("text", s, w))
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else:
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tile = render_emoji(s, emoji_h)
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w = tile.width + 2
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runs.append(("emoji", tile, w))
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width += w
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rows.append((width, runs))
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block_w = max((w for w, _ in rows), default=0)
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return rows, block_w, line_h * len(rows), line_h
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def render_label(
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text: str,
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width_px: int,
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height_px: int,
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font_size: int = 40,
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bold: bool = True,
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align: str = "center",
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auto_fit: bool = True,
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padding: int = 4,
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) -> Image.Image:
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"""Render text (with emoji) into a landscape grayscale label image."""
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lines = text.splitlines() or [""]
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font_path = TEXT_FONTS["bold" if bold else "regular"]
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size = font_size
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while True:
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font = ImageFont.truetype(font_path, size)
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rows, block_w, block_h, line_h = _layout(lines, font, size)
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fits = block_w <= width_px - 2 * padding and block_h <= height_px - 2 * padding
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if fits or not auto_fit or size <= 8:
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break
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size -= 1
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img = Image.new("L", (width_px, height_px), 255)
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draw = ImageDraw.Draw(img)
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ascent, _ = font.getmetrics()
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y = (height_px - block_h) // 2
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for row_w, runs in rows:
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if align == "left":
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x = padding
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elif align == "right":
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x = width_px - padding - row_w
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else:
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x = (width_px - row_w) // 2
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for kind, obj, w in runs:
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if kind == "text":
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# Baseline-align text within the row
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draw.text((x, y + (line_h - ascent) // 2), obj, font=font, fill=0)
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else:
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img.paste(obj, (x + 1, y + (line_h - obj.height) // 2))
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x += w
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y += line_h
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return img
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# --------------------------------------------------------------------------- app
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class LabelApp(tk.Tk):
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def __init__(self):
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super().__init__()
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self.title("Niimbot Label Designer")
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self.minsize(900, 560)
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self.settings = self._load_settings()
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self._preview_job = None
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self._printer = None
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self._preview_photo = None
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self.preset = tk.StringVar(value=self.settings.get("preset", "12 x 40 mm"))
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self.width_mm = tk.IntVar(value=self.settings.get("width_mm", 12))
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self.length_mm = tk.IntVar(value=self.settings.get("length_mm", 40))
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self.font_size = tk.IntVar(value=self.settings.get("font_size", 40))
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self.auto_fit = tk.BooleanVar(value=self.settings.get("auto_fit", True))
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self.bold = tk.BooleanVar(value=self.settings.get("bold", True))
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self.align = tk.StringVar(value=self.settings.get("align", "center"))
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self.model = tk.StringVar(value=self.settings.get("model", "d101"))
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self.conn = tk.StringVar(value=self.settings.get("conn", "bluetooth"))
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self.addr = tk.StringVar(value=self.settings.get("addr", DEFAULT_ADDR))
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self.density = tk.IntVar(value=self.settings.get("density", 3))
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self.copies = tk.IntVar(value=1)
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self.status = tk.StringVar(value="Ready")
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self._build_ui()
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for var in (
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self.width_mm, self.length_mm, self.font_size, self.auto_fit,
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self.bold, self.align,
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): # fmt: skip
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var.trace_add("write", lambda *_: self.schedule_preview())
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self.preset.trace_add("write", lambda *_: self._apply_preset())
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self._apply_preset()
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self.protocol("WM_DELETE_WINDOW", self._on_close)
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# ---- UI construction
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def _build_ui(self):
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root = ttk.Frame(self, padding=10)
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root.pack(fill="both", expand=True)
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root.columnconfigure(1, weight=1)
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root.rowconfigure(0, weight=1)
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left = ttk.Frame(root)
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left.grid(row=0, column=0, sticky="nsw", padx=(0, 10))
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right = ttk.Frame(root)
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right.grid(row=0, column=1, sticky="nsew")
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right.rowconfigure(1, weight=1)
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right.columnconfigure(0, weight=1)
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# Label size
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size_box = ttk.LabelFrame(left, text="Label", padding=6)
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size_box.pack(fill="x")
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ttk.Combobox(
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size_box,
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textvariable=self.preset,
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values=[p[0] for p in LABEL_PRESETS],
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state="readonly",
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width=14,
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).grid(row=0, column=0, columnspan=4, sticky="w")
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ttk.Label(size_box, text="Width mm").grid(row=1, column=0, sticky="w")
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self.width_spin = ttk.Spinbox(
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size_box, from_=6, to=60, textvariable=self.width_mm, width=5
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)
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self.width_spin.grid(row=1, column=1)
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ttk.Label(size_box, text="Length mm").grid(row=1, column=2, sticky="w")
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self.length_spin = ttk.Spinbox(
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size_box, from_=10, to=200, textvariable=self.length_mm, width=5
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)
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self.length_spin.grid(row=1, column=3)
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# Text style
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style_box = ttk.LabelFrame(left, text="Text", padding=6)
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style_box.pack(fill="x", pady=(8, 0))
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ttk.Label(style_box, text="Size").grid(row=0, column=0, sticky="w")
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ttk.Spinbox(
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style_box, from_=8, to=200, textvariable=self.font_size, width=5
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).grid(row=0, column=1, sticky="w")
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ttk.Checkbutton(style_box, text="Auto-fit", variable=self.auto_fit).grid(
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row=0, column=2, sticky="w", padx=(8, 0)
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)
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ttk.Checkbutton(style_box, text="Bold", variable=self.bold).grid(
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row=0, column=3, sticky="w"
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)
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align_row = ttk.Frame(style_box)
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align_row.grid(row=1, column=0, columnspan=4, sticky="w", pady=(4, 0))
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for a in ("left", "center", "right"):
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ttk.Radiobutton(
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align_row, text=a.title(), value=a, variable=self.align
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).pack(side="left")
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# Emoji picker
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emoji_box = ttk.LabelFrame(left, text="Emoji (click to insert)", padding=4)
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emoji_box.pack(fill="both", expand=True, pady=(8, 0))
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nb = ttk.Notebook(emoji_box)
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nb.pack(fill="both", expand=True)
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for name, emojis in EMOJI_CATEGORIES.items():
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tab = ttk.Frame(nb)
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nb.add(tab, text=name)
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for i, e in enumerate(emojis.split()):
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tk.Button(
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tab,
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text=e,
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font=("Noto Color Emoji", 14),
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width=2,
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relief="flat",
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command=lambda e=e: self.insert_emoji(e),
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).grid(row=i // 8, column=i % 8, padx=1, pady=1)
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# Printer
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prn_box = ttk.LabelFrame(left, text="Printer", padding=6)
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prn_box.pack(fill="x", pady=(8, 0))
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ttk.Label(prn_box, text="Model").grid(row=0, column=0, sticky="w")
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ttk.Combobox(
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prn_box,
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textvariable=self.model,
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values=list(MODELS),
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state="readonly",
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width=6,
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).grid(row=0, column=1, sticky="w")
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ttk.Label(prn_box, text="Via").grid(row=0, column=2, sticky="w", padx=(8, 0))
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ttk.Combobox(
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prn_box,
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textvariable=self.conn,
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values=["bluetooth", "usb"],
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state="readonly",
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width=9,
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).grid(row=0, column=3, sticky="w")
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ttk.Label(prn_box, text="Address").grid(row=1, column=0, sticky="w")
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ttk.Entry(prn_box, textvariable=self.addr, width=22).grid(
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row=1, column=1, columnspan=3, sticky="we", pady=(4, 0)
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)
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ttk.Label(prn_box, text="Density").grid(row=2, column=0, sticky="w")
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ttk.Spinbox(prn_box, from_=1, to=5, textvariable=self.density, width=4).grid(
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row=2, column=1, sticky="w", pady=(4, 0)
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)
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ttk.Label(prn_box, text="Copies").grid(row=2, column=2, sticky="w", padx=(8, 0))
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ttk.Spinbox(prn_box, from_=1, to=20, textvariable=self.copies, width=4).grid(
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row=2, column=3, sticky="w", pady=(4, 0)
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)
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for var in (self.model, self.conn, self.addr):
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var.trace_add("write", lambda *_: self._disconnect())
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# Right side: editor + preview + actions
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ttk.Label(right, text="Label text (one line per row):").grid(
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row=0, column=0, sticky="w"
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)
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self.text = tk.Text(
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right, height=5, font=("DejaVu Sans", 14), wrap="word", undo=True
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)
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self.text.grid(row=1, column=0, sticky="nsew")
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self.text.insert("1.0", self.settings.get("text", "Hello 👋"))
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self.text.bind("<<Modified>>", self._on_text_modified)
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ttk.Label(right, text="Preview (actual print, 2x zoom):").grid(
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row=2, column=0, sticky="w", pady=(8, 0)
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)
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self.preview = tk.Label(right, bg="#888", anchor="center")
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self.preview.grid(row=3, column=0, sticky="we", ipady=10)
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self.size_label = ttk.Label(right, text="")
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self.size_label.grid(row=4, column=0, sticky="w")
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actions = ttk.Frame(right)
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actions.grid(row=5, column=0, sticky="we", pady=(10, 0))
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self.print_btn = ttk.Button(actions, text="Print", command=self.print_label)
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self.print_btn.pack(side="left")
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ttk.Button(actions, text="Save PNG…", command=self.save_png).pack(
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side="left", padx=(6, 0)
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)
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ttk.Button(actions, text="Clear", command=self.clear_text).pack(
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side="left", padx=(6, 0)
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)
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ttk.Label(actions, textvariable=self.status).pack(side="right")
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# ---- helpers
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def _apply_preset(self):
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for name, w, length in LABEL_PRESETS:
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if name == self.preset.get() and w is not None:
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self.width_mm.set(w)
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self.length_mm.set(length)
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state = "disabled"
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break
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else:
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state = "normal"
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self.width_spin.configure(state=state)
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self.length_spin.configure(state=state)
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self.schedule_preview()
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def _px_size(self) -> tuple[int, int]:
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"""Landscape (width, height) in px: length along x, tape width along y."""
|
||||
return self.length_mm.get() * PX_PER_MM, self.width_mm.get() * PX_PER_MM
|
||||
|
||||
def _on_text_modified(self, _event=None):
|
||||
if self.text.edit_modified():
|
||||
self.text.edit_modified(False)
|
||||
self.schedule_preview()
|
||||
|
||||
def insert_emoji(self, emoji: str):
|
||||
self.text.insert("insert", emoji)
|
||||
self.text.focus_set()
|
||||
|
||||
def clear_text(self):
|
||||
self.text.delete("1.0", "end")
|
||||
|
||||
def schedule_preview(self):
|
||||
if self._preview_job:
|
||||
self.after_cancel(self._preview_job)
|
||||
self._preview_job = self.after(150, self.update_preview)
|
||||
|
||||
def current_image(self) -> Image.Image:
|
||||
w, h = self._px_size()
|
||||
return render_label(
|
||||
self.text.get("1.0", "end-1c"),
|
||||
w,
|
||||
h,
|
||||
font_size=max(8, self.font_size.get()),
|
||||
bold=self.bold.get(),
|
||||
align=self.align.get(),
|
||||
auto_fit=self.auto_fit.get(),
|
||||
)
|
||||
|
||||
def update_preview(self):
|
||||
self._preview_job = None
|
||||
try:
|
||||
img = self.current_image().convert("1") # dithered, as the printer sees it
|
||||
except (tk.TclError, ValueError):
|
||||
return # spinbox mid-edit
|
||||
zoom = img.resize((img.width * 2, img.height * 2), Image.NEAREST)
|
||||
self._preview_photo = ImageTk.PhotoImage(zoom)
|
||||
self.preview.configure(image=self._preview_photo)
|
||||
w, h = img.size
|
||||
model = MODELS[self.model.get()]
|
||||
warn = ""
|
||||
if h > model.max_width_px:
|
||||
warn = f" ⚠ too wide for {model.name.upper()} (max {model.max_width_px}px)"
|
||||
self.size_label.configure(text=f"{w} x {h} px{warn}")
|
||||
|
||||
def save_png(self):
|
||||
path = filedialog.asksaveasfilename(
|
||||
defaultextension=".png", filetypes=[("PNG image", "*.png")]
|
||||
)
|
||||
if path:
|
||||
self.current_image().convert("1").save(path)
|
||||
self.status.set(f"Saved {Path(path).name}")
|
||||
|
||||
# ---- printing
|
||||
|
||||
def _connect(self) -> PrinterClient:
|
||||
if self._printer is None:
|
||||
addr = self.addr.get().strip()
|
||||
if self.conn.get() == "bluetooth":
|
||||
if not re.fullmatch(r"([0-9A-Fa-f]{2}:){5}[0-9A-Fa-f]{2}", addr):
|
||||
raise ValueError("Enter the printer's Bluetooth MAC address")
|
||||
transport = BluetoothTransport(addr.upper())
|
||||
else:
|
||||
transport = SerialTransport(port=addr or "auto")
|
||||
self._printer = PrinterClient(transport)
|
||||
return self._printer
|
||||
|
||||
def _disconnect(self):
|
||||
self._printer = None
|
||||
|
||||
def print_label(self):
|
||||
try:
|
||||
image = self.current_image().convert("1")
|
||||
image, density = prepare_print(
|
||||
self.model.get(), image, self.density.get(), rotate=90
|
||||
)
|
||||
except (ValueError, tk.TclError) as exc:
|
||||
messagebox.showerror("Cannot print", str(exc))
|
||||
return
|
||||
copies = max(1, self.copies.get())
|
||||
self.print_btn.configure(state="disabled")
|
||||
self.status.set("Connecting…")
|
||||
self._save_settings()
|
||||
|
||||
def work():
|
||||
try:
|
||||
printer = self._connect()
|
||||
for i in range(copies):
|
||||
self.after(0, self.status.set, f"Printing {i + 1}/{copies}…")
|
||||
printer.print_image(image, density=density, model=self.model.get())
|
||||
self.after(0, self._print_done, None)
|
||||
except Exception as exc: # noqa: BLE001 — surface everything to the UI
|
||||
self._disconnect()
|
||||
self.after(0, self._print_done, exc)
|
||||
|
||||
threading.Thread(target=work, daemon=True).start()
|
||||
|
||||
def _print_done(self, exc):
|
||||
self.print_btn.configure(state="normal")
|
||||
if exc is None:
|
||||
self.status.set("Printed")
|
||||
else:
|
||||
self.status.set("Print failed")
|
||||
is_prn = isinstance(exc, PrinterError)
|
||||
kind = "Printer error" if is_prn else type(exc).__name__
|
||||
messagebox.showerror(kind, str(exc) or repr(exc))
|
||||
|
||||
# ---- settings
|
||||
|
||||
def _load_settings(self) -> dict:
|
||||
try:
|
||||
return json.loads(SETTINGS_PATH.read_text())
|
||||
except (OSError, ValueError):
|
||||
return {}
|
||||
|
||||
def _save_settings(self):
|
||||
data = {
|
||||
"preset": self.preset.get(),
|
||||
"width_mm": self.width_mm.get(),
|
||||
"length_mm": self.length_mm.get(),
|
||||
"font_size": self.font_size.get(),
|
||||
"auto_fit": self.auto_fit.get(),
|
||||
"bold": self.bold.get(),
|
||||
"align": self.align.get(),
|
||||
"model": self.model.get(),
|
||||
"conn": self.conn.get(),
|
||||
"addr": self.addr.get(),
|
||||
"density": self.density.get(),
|
||||
"text": self.text.get("1.0", "end-1c"),
|
||||
}
|
||||
try:
|
||||
SETTINGS_PATH.parent.mkdir(parents=True, exist_ok=True)
|
||||
SETTINGS_PATH.write_text(json.dumps(data, indent=2))
|
||||
except (OSError, tk.TclError):
|
||||
pass
|
||||
|
||||
def _on_close(self):
|
||||
self._save_settings()
|
||||
self.destroy()
|
||||
|
||||
|
||||
if __name__ == "__main__":
|
||||
LabelApp().mainloop()
|
||||
@@ -0,0 +1,66 @@
|
||||
import tkinter as tk
|
||||
|
||||
from PIL import Image, ImageDraw, ImageFont
|
||||
|
||||
from niimprint import BluetoothTransport, PrinterClient, prepare_print
|
||||
|
||||
|
||||
class LabelMaker:
|
||||
def __init__(self, root, model):
|
||||
self.root = root
|
||||
self.root.title("Label Maker")
|
||||
self.model = model
|
||||
self.transport = BluetoothTransport("94:11:02:66:16:4D")
|
||||
self.printer = PrinterClient(self.transport)
|
||||
self.label_text = tk.StringVar()
|
||||
self.label_text.set("Type your label here")
|
||||
self.create_widgets()
|
||||
|
||||
def print(self, density, rotate, image):
|
||||
image, density = prepare_print(self.model, Image.open(image), density, rotate)
|
||||
self.printer.print_image(image, density=density, model=self.model)
|
||||
|
||||
def create_widgets(self):
|
||||
# Text Entry
|
||||
label_entry = tk.Entry(self.root, textvariable=self.label_text, width=40)
|
||||
label_entry.pack(pady=10)
|
||||
|
||||
# Button to create label
|
||||
create_button = tk.Button(
|
||||
self.root, text="Create Label", command=self.create_label
|
||||
)
|
||||
create_button.pack(pady=10)
|
||||
|
||||
def create_label(self):
|
||||
label_text = self.label_text.get()
|
||||
|
||||
# Create image
|
||||
image = Image.new("RGB", (319, 95), "white")
|
||||
draw = ImageDraw.Draw(image)
|
||||
|
||||
# Set font (change the font path according to your system)
|
||||
font_path = "/usr/share/fonts/truetype/dejavu/DejaVuSans-Bold.ttf"
|
||||
font_size = 20
|
||||
font = ImageFont.truetype(font_path, font_size)
|
||||
|
||||
# Calculate text position
|
||||
box = font.getbbox(label_text)
|
||||
# getbbox returns (left, top, right, bottom)
|
||||
font_width = box[2] - box[0]
|
||||
font_height = box[3] - box[1]
|
||||
x = (image.width - font_width) // 2
|
||||
y = (image.height - font_height) // 2
|
||||
|
||||
# Draw text on image
|
||||
draw.text((x - box[0], y - box[1]), label_text, font=font, fill="black")
|
||||
|
||||
# Save image or send it to the printer
|
||||
image.save("label.png")
|
||||
self.print(1, 90, "label.png")
|
||||
print("Label created and saved as label.png")
|
||||
|
||||
|
||||
if __name__ == "__main__":
|
||||
root = tk.Tk()
|
||||
label_maker = LabelMaker(root, "d110")
|
||||
root.mainloop()
|
||||
@@ -23,3 +23,4 @@ select = ["I", "F", "E"]
|
||||
|
||||
[tool.ruff.lint.per-file-ignores]
|
||||
"__init__.py" = ["F401"]
|
||||
"label_app.py" = ["E501"] # emoji tables
|
||||
|
||||
@@ -22,7 +22,7 @@ $ python niimprint --help
|
||||
Usage: niimprint [OPTIONS]
|
||||
|
||||
Options:
|
||||
-m, --model [b1|b18|b21|d11|d110] Niimbot printer model [default: b21]
|
||||
-m, --model [b1|b18|b21|d11|d101|d110] Niimbot printer model [default: b21]
|
||||
-c, --conn [usb|bluetooth] Connection type [default: usb]
|
||||
-a, --addr TEXT Bluetooth MAC address OR serial device path
|
||||
-d, --density INTEGER RANGE Print density [default: 5; 1<=x<=5]
|
||||
@@ -45,7 +45,8 @@ Generally, the image comes out of the printer with the same orientation you see
|
||||
As far as we've tested, Niimbot printers have **8 pixels per mm** (~203 dpi) resolution. The CLI prints the image you provided as-is, without any checks of the actual label size, so be careful. However the script will check if the image width is too big for selected printer. The maximum width in pixels is usually slightly less than specified maximum width in mm:
|
||||
|
||||
- **B21, B1, B18**: max 384 pixels (almost equal to 50 mm * 8 px/mm = 400)
|
||||
- **D11**: max 96 pixels (almost equal to 15 mm * 8 px/mm = 120)
|
||||
- **D11, D110**: max 96 pixels (almost equal to 15 mm * 8 px/mm = 120)
|
||||
- **D101**: max 192 pixels (25 mm tape); tested on 12 mm tape
|
||||
|
||||
### USB connection:
|
||||
|
||||
@@ -78,3 +79,18 @@ python niimprint -c bluetooth -a "E2:E1:08:03:09:87" -r 90 -i examples/B21_80x50
|
||||
## Licence
|
||||
|
||||
[MIT](https://choosealicense.com/licenses/mit/). Originally developed by [kjy00302](https://github.com/kjy00302), forked & enhanced by [AndBondStyle](https://github.com/AndBondStyle)
|
||||
|
||||
## Label designer app
|
||||
|
||||
`label_app.py` is a small Tkinter app for designing and printing text + emoji labels:
|
||||
|
||||
```
|
||||
python label_app.py
|
||||
```
|
||||
|
||||
- Pick a label size preset (or custom mm), type text (one line per row), click emojis to insert them
|
||||
- Live 1-bit preview shows exactly what the printer will produce
|
||||
- Auto-fit shrinks the font until the text fits the label
|
||||
- Printer model / connection / address / density are remembered in `~/.config/niimprint-label/settings.json`
|
||||
|
||||
Fonts: DejaVu Sans (`/usr/share/fonts/TTF/`) for text and Noto Color Emoji (`/usr/share/fonts/noto/`) for emoji; edit `TEXT_FONTS` / `EMOJI_FONT` at the top of the file for other distros.
|
||||
|
||||
Reference in New Issue
Block a user