import io import gradio as gr from PIL import Image import vtracer # Make sure you have vtracer installed import tempfile def convert_image(image, color_mode, hierarchical, mode, filter_speckle, color_precision, layer_difference, corner_threshold, length_threshold, max_iterations, splice_threshold, path_precision): """Converts an image to SVG using vtracer with customizable parameters.""" # Convert Gradio image to bytes for vtracer compatibility img_byte_array = io.BytesIO() image.save(img_byte_array, format='PNG') img_bytes = img_byte_array.getvalue() # Perform the conversion svg_str = vtracer.convert_raw_image_to_svg( img_bytes, img_format='png', colormode=color_mode.lower(), hierarchical=hierarchical.lower(), mode=mode.lower(), filter_speckle=int(filter_speckle), color_precision=int(color_precision), layer_difference=int(layer_difference), corner_threshold=int(corner_threshold), length_threshold=float(length_threshold), max_iterations=int(max_iterations), splice_threshold=int(splice_threshold), path_precision=int(path_precision) ) # Save the SVG string to a temporary file temp_file = tempfile.NamedTemporaryFile(delete=False, suffix='.svg') temp_file.write(svg_str.encode('utf-8')) temp_file.close() return gr.HTML(f'{svg_str}'), temp_file.name # HTML code for the ad banners (combined) ad_code = """
banner
""" # Gradio interface with gr.Blocks() as iface: # Combine ads into one HTML block gr.HTML(ad_code) # Your main interface components with gr.Row(): # Arrange the interface elements in a row with gr.Column(): image_input = gr.Image(type="pil", label="Upload Image") color_mode = gr.Radio(choices=["Color", "Binary"], value="Color", label="Color Mode") hierarchical = gr.Radio(choices=["Stacked", "Cutout"], value="Stacked", label="Hierarchical") mode = gr.Radio(choices=["Spline", "Polygon", "None"], value="Spline", label="Mode") filter_speckle = gr.Slider(minimum=1, maximum=10, value=4, step=1, label="Filter Speckle") color_precision = gr.Slider(minimum=1, maximum=8, value=6, step=1, label="Color Precision") layer_difference = gr.Slider(minimum=1, maximum=32, value=16, step=1, label="Layer Difference") corner_threshold = gr.Slider(minimum=10, maximum=90, value=60, step=1, label="Corner Threshold") length_threshold = gr.Slider(minimum=3.5, maximum=10, value=4.0, step=0.5, label="Length Threshold") max_iterations = gr.Slider(minimum=1, maximum=20, value=10, step=1, label="Max Iterations") splice_threshold = gr.Slider(minimum=10, maximum=90, value=45, step=1, label="Splice Threshold") path_precision = gr.Slider(minimum=1, maximum=10, value=8, step=1, label="Path Precision") with gr.Column(): svg_output = gr.HTML(label="SVG Output") svg_download = gr.File(label="Download SVG") # Link the inputs and outputs to the function convert_button = gr.Button("Convert Image") convert_button.click( fn=convert_image, inputs=[ image_input, color_mode, hierarchical, mode, filter_speckle, color_precision, layer_difference, corner_threshold, length_threshold, max_iterations, splice_threshold, path_precision ], outputs=[svg_output, svg_download] ) iface.launch()