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import gradio as gr
import qrcode
import random
import os
from datetime import datetime
from PIL import Image, ImageDraw
from math import cos, sin, radians
def create_border_decoration(qr_image, decoration_style="Flowers"):
# Convert QR image to RGB mode first
qr_image = qr_image.convert('RGB')
# Get the size of the QR code image
width, height = qr_image.size
# ํจ๋ฉ์ ๋ ์๊ฒ ์กฐ์
padding = 20 # ํจ๋ฉ์ 30์์ 20์ผ๋ก ์ค์
new_width = width + (padding * 2)
new_height = height + (padding * 2)
# Create new image with white background
decorated_image = Image.new('RGB', (new_width, new_height), 'white')
# Paste QR code in center
decorated_image.paste(qr_image, (padding, padding))
# Get draw object
draw = ImageDraw.Draw(decorated_image)
# ์ฅ์ ํฌ๊ธฐ ์ค์ - ๊ฐ๊ฒฉ์ ๋ ์ข๊ฒ
deco_size = 8 # ์ฅ์ ํฌ๊ธฐ๋ฅผ 12์์ 8๋ก ์ค์
gap = deco_size * 1.5 # ๊ฐ๊ฒฉ์ 2๋ฐฐ์์ 1.5๋ฐฐ๋ก ์ค์
# ํ
๋๋ฆฌ๋ฅผ ๋ฐ๋ผ ์ ๋ค์ ์์น ๊ณ์ฐ
border_points = []
# ์๋จ ํ
๋๋ฆฌ
for x in range(padding//2, new_width - padding//2, int(gap)):
border_points.append((x, padding//2))
# ์ฐ์ธก ํ
๋๋ฆฌ
for y in range(padding//2, new_height - padding//2, int(gap)):
border_points.append((new_width - padding//2, y))
# ํ๋จ ํ
๋๋ฆฌ
for x in range(new_width - padding//2, padding//2, -int(gap)):
border_points.append((x, new_height - padding//2))
# ์ข์ธก ํ
๋๋ฆฌ
for y in range(new_height - padding//2, padding//2, -int(gap)):
border_points.append((padding//2, y))
# ๊ฐ ์คํ์ผ์ ๋ฐ๋ฅธ ์ฅ์ ๊ทธ๋ฆฌ๊ธฐ
for x, y in border_points:
if decoration_style == "Flowers": # ๊ฝ ํจํด
# ๊ฝ์
for angle in range(0, 360, 45):
x1 = x + deco_size * cos(radians(angle))
y1 = y + deco_size * sin(radians(angle))
draw.ellipse([x1-4, y1-4, x1+4, y1+4], fill='pink')
# ๊ฝ ์ค์ฌ
draw.ellipse([x-3, y-3, x+3, y+3], fill='yellow')
elif decoration_style == "Hearts": # ํํธ ํจํด
# ์์ ํํธ๋ค์ ์ฐ์์ผ๋ก ๊ทธ๋ฆฌ๊ธฐ
heart_size = 6
draw.ellipse([x-heart_size, y-heart_size, x, y], fill='red')
draw.ellipse([x, y-heart_size, x+heart_size, y], fill='red')
draw.polygon([(x-heart_size, y), (x+heart_size, y), (x, y+heart_size)], fill='red')
elif decoration_style == "Waves": # ์จ์ด๋ธ ํจํด
wave_size = 10
draw.arc([x-wave_size, y-wave_size//2, x+wave_size, y+wave_size//2],
0, 180, fill='lightblue', width=2)
draw.arc([x-wave_size, y, x+wave_size, y+wave_size],
0, 180, fill='blue', width=2)
elif decoration_style == "Leaves": # ์ ํจํด
leaf_size = 8
# ๋ฉ์ธ ์
draw.ellipse([x-leaf_size, y-leaf_size//2, x+leaf_size, y+leaf_size//2],
fill='lightgreen')
# ์์ ์
draw.ellipse([x-leaf_size//2, y-leaf_size, x+leaf_size//2, y+leaf_size],
fill='darkgreen')
elif decoration_style == "Stars": # ๋ณ ํจํด
star_size = 6
points = []
for i in range(5):
angle = i * 72
# ์ธ๊ณฝ ์
x1 = x + star_size * cos(radians(angle))
y1 = y + star_size * sin(radians(angle))
points.append((x1, y1))
# ๋ด๋ถ ์
x2 = x + (star_size/2) * cos(radians(angle + 36))
y2 = y + (star_size/2) * sin(radians(angle + 36))
points.append((x2, y2))
draw.polygon(points, fill='gold')
elif decoration_style == "Chains": # ์ฒด์ธ ํจํด
chain_size = 8
draw.ellipse([x-chain_size, y-chain_size//2, x+chain_size, y+chain_size//2],
outline='gray', width=2)
elif decoration_style == "Bubbles": # ๋ฒ๋ธ ํจํด
bubble_sizes = [6, 4, 2]
for size in bubble_sizes:
draw.ellipse([x-size, y-size, x+size, y+size],
outline='skyblue', width=1)
elif decoration_style == "Vines": # ๋ฉ๊ตด ํจํด
vine_size = 10
# ๋ฉ์ธ ๋ฉ๊ตด
draw.arc([x-vine_size, y-vine_size, x+vine_size, y+vine_size],
0, 180, fill='green', width=2)
# ์์ ์
draw.ellipse([x-3, y-3, x+3, y+3], fill='lightgreen')
elif decoration_style == "Diamonds": # ๋ค์ด์๋ชฌ๋ ํจํด
diamond_size = 6
points = [
(x, y-diamond_size), # ์๋จ
(x+diamond_size, y), # ์ฐ์ธก
(x, y+diamond_size), # ํ๋จ
(x-diamond_size, y) # ์ข์ธก
]
draw.polygon(points, outline='purple', width=1)
elif decoration_style == "Lace": # ๋ ์ด์ค ํจํด
lace_size = 8
# ๋ ์ด์ค ์ํ ํจํด
draw.arc([x-lace_size, y-lace_size, x+lace_size, y+lace_size],
0, 180, fill='gray', width=1)
draw.arc([x-lace_size//2, y-lace_size//2, x+lace_size//2, y+lace_size//2],
180, 360, fill='gray', width=1)
return decorated_image
def rgba_to_rgb(rgba_color):
"""Convert RGBA color string to RGB hex color"""
if rgba_color.startswith('rgba'):
# Extract numbers from rgba string
values = rgba_color.strip('rgba()').split(',')
r = int(float(values[0]))
g = int(float(values[1]))
b = int(float(values[2]))
return f'#{r:02x}{g:02x}{b:02x}'
return rgba_color
def create_qr(content, qr_type, fill_color, back_color, box_size, border_size, error_correction, border_decoration="No Decoration"):
# Convert RGBA colors to RGB
fill_color = rgba_to_rgb(fill_color)
back_color = rgba_to_rgb(back_color)
# QR ์ฝ๋ ๋ฐ์ดํฐ ํฌ๋งทํ
formatted_data = format_data(content, qr_type)
# ์๋ฌ ์์ ๋ ๋ฒจ ์ค์
error_levels = {
"Low (7%)": qrcode.constants.ERROR_CORRECT_L,
"Medium (15%)": qrcode.constants.ERROR_CORRECT_M,
"Quartile (25%)": qrcode.constants.ERROR_CORRECT_Q,
"High (30%)": qrcode.constants.ERROR_CORRECT_H
}
# QR ์ฝ๋ ์์ฑ
qr = qrcode.QRCode(
version=1,
error_correction=error_levels[error_correction],
box_size=box_size,
border=border_size,
)
qr.add_data(formatted_data)
qr.make(fit=True)
# QR ์ด๋ฏธ์ง ์์ฑ
qr_img = qr.make_image(fill_color=fill_color, back_color=back_color)
# Add border decoration if specified and not "No Decoration"
if border_decoration != "No Decoration":
qr_img = create_border_decoration(qr_img, border_decoration)
# ํ์ผ ์ ์ฅ
timestamp = datetime.now().strftime("%Y%m%d_%H%M%S")
random_id = random.randint(1000, 9999)
filename = f"qrfile/qr_{timestamp}_{random_id}.png"
# ๋๋ ํ ๋ฆฌ ํ์ธ ๋ฐ ์์ฑ
os.makedirs("qrfile", exist_ok=True)
# ์ด๋ฏธ์ง ์ ์ฅ
qr_img.save(filename)
cleanup_old_files("qrfile/", max_files=100)
return filename, formatted_data
# ๋ฐ์ดํฐ ํฌ๋งทํ
ํจ์
def format_data(content, qr_type):
if not content:
return ""
format_rules = {
"URL": lambda x: f"https://{x}" if not x.startswith(('http://', 'https://')) else x,
"Email": lambda x: f"mailto:{x}",
"Phone": lambda x: f"tel:{x}",
"SMS": lambda x: f"sms:{x}",
"WhatsApp": lambda x: f"whatsapp://send?text={x}",
"Location": lambda x: f"geo:{x}",
"Wi-Fi": lambda x: f"WIFI:S:{x};;",
"Text": lambda x: x,
"vCard": lambda x: f"BEGIN:VCARD\nVERSION:3.0\n{x}\nEND:VCARD"
}
return format_rules[qr_type](content.strip())
# ํ์ผ ์ ๋ฆฌ ํจ์
def cleanup_old_files(directory, max_files):
files = [f for f in os.listdir(directory) if f.endswith('.png')]
if len(files) > max_files:
files.sort(key=lambda x: os.path.getctime(os.path.join(directory, x)))
for f in files[:-max_files]:
try:
os.remove(os.path.join(directory, f))
except:
continue
def format_example_text(qr_type):
examples = {
"URL": "โข Direct URL: https://example.com\nโข Without https: example.com",
"Email": "โข Basic: [email protected]\nโข With subject: [email protected]?subject=Hello",
"Phone": "โข International: +1234567890\nโข Local: 01012345678",
"SMS": "โข Basic: +1234567890\nโข With message: +1234567890?body=Hello",
"WhatsApp": "โข Message: Hello World!\nโข With number: +1234567890:Hello",
"Location": "โข Coordinates: 37.7749,-122.4194\nโข With zoom: 37.7749,-122.4194,15z",
"Wi-Fi": "โข Network name only: MyWiFiNetwork\nโข With password: WIFI:S:MyNetwork;P:password;;",
"Text": "โข Simple text: Hello World!\nโข Multiple lines: Line 1\\nLine 2",
"vCard": "โข Basic:\nFN:John Doe\nTEL:+1234567890\nEMAIL:[email protected]\nโข Extended:\nFN:John Doe\nTEL:+1234567890\nEMAIL:[email protected]\nADR:;;123 Street;City;State;12345;Country"
}
return examples.get(qr_type, "Enter your content here...")
def create_interface():
theme = gr.themes.Soft(
primary_hue="blue",
secondary_hue="indigo",
).set(
body_background_fill="*neutral_50",
block_background_fill="*neutral_100",
button_primary_background_fill="*primary_500",
)
with gr.Blocks(theme=theme, title="QR Canvas") as demo:
gr.Markdown(
"""
# ๐ฏ QR CANVAS+
Create customized QR codes for various purposes with professional styling options.
"""
)
gr.HTML("""<a href="https://visitorbadge.io/status?path=https%3A%2F%2Fginipick-QR-Canvas.hf.space">
<img src="https://api.visitorbadge.io/api/visitors?path=https%3A%2F%2Fginipick-QR-Canvas.hf.space&countColor=%23263759" />
</a>""")
with gr.Row():
with gr.Column(scale=2):
qr_type = gr.Dropdown(
choices=["URL", "Email", "Phone", "SMS", "WhatsApp", "Location", "Wi-Fi", "Text", "vCard"],
value="URL",
label="QR Code Type"
)
content = gr.Textbox(
label="Content",
placeholder="Enter your content here...",
lines=3
)
example_format = gr.Textbox(
value=format_example_text("URL"),
label="Format Examples",
interactive=False,
lines=6
)
with gr.Row():
fill_color = gr.ColorPicker(
label="QR Code Color",
value="#000000"
)
back_color = gr.ColorPicker(
label="Background Color",
value="#FFFFFF"
)
with gr.Row():
box_size = gr.Slider(
minimum=1,
maximum=30, # ์ต๋๊ฐ์ 20์์ 30์ผ๋ก ์ฆ๊ฐ
value=15, # ๊ธฐ๋ณธ๊ฐ์ 10์์ 15๋ก ์ฆ๊ฐ
step=1,
label="QR Code Size"
)
border_size = gr.Slider(
minimum=0,
maximum=5, # ์ต๋๊ฐ์ 10์์ 5๋ก ๊ฐ์
value=2, # ๊ธฐ๋ณธ๊ฐ์ 4์์ 2๋ก ๊ฐ์
step=1,
label="Border Size"
)
error_correction = gr.Dropdown(
choices=[
"Low (7%)",
"Medium (15%)",
"Quartile (25%)",
"High (30%)"
],
value="Medium (15%)",
label="Error Correction Level"
)
border_decoration = gr.Dropdown(
choices=[
"No Decoration", # ๋ช
์์ ์ธ "์ฅ์ ์์" ์ต์
"Flowers",
"Hearts",
"Waves",
"Leaves",
"Stars",
"Chains",
"Bubbles",
"Vines",
"Diamonds",
"Lace"
],
value="No Decoration", # ๊ธฐ๋ณธ๊ฐ์ผ๋ก "No Decoration" ์ค์
label="Border Decoration Style"
)
generate_btn = gr.Button(
"Generate QR Code",
variant="primary"
)
with gr.Column(scale=1):
output_image = gr.Image(
label="Generated QR Code",
type="filepath"
)
output_data = gr.Textbox(
label="Formatted Data",
interactive=False
)
def update_example(qr_type):
return format_example_text(qr_type)
qr_type.change(
fn=update_example,
inputs=[qr_type],
outputs=example_format
)
generate_btn.click(
fn=create_qr,
inputs=[
content,
qr_type,
fill_color,
back_color,
box_size,
border_size,
error_correction,
border_decoration
],
outputs=[output_image, output_data]
)
gr.Markdown(
"""
### ๐ Instructions
1. Select the QR code type from the dropdown menu
2. Enter your content following the format examples shown
3. Customize the appearance using the color pickers and sliders
4. Click 'Generate QR Code' to create your custom QR code
### ๐ก Tips
- Use higher error correction levels for better scan reliability
- Ensure sufficient contrast between QR code and background colors
- Keep the content concise for better readability
- Follow the format examples for best results
"""
)
return demo
if __name__ == "__main__":
try:
os.makedirs("qrfile", exist_ok=True)
demo = create_interface()
demo.launch(
server_name="0.0.0.0",
server_port=7860,
share=True,
debug=True
)
except Exception as e:
print(f"Error starting the application: {e}") |