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import torch |
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from diffusers import ( |
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StableDiffusionControlNetPipeline, |
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ControlNetModel, |
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EulerAncestralDiscreteScheduler, |
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) |
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from typing import Dict, List, Any |
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import qrcode |
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import os |
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import base64 |
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from io import BytesIO |
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MODEL_ID = "simdi/colorful_qr" |
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WIDTH = 768 |
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HEIGHT = 768 |
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WEIGHT_PAIRS = [ |
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(0.25, 0.20), |
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(0.25, 0.25), |
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(0.35, 0.20), |
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(0.35, 0.25), |
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(0.45, 0.20), |
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(0.45, 0.25), |
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] |
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def float_to_pair_index(f: float): |
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length = len(WEIGHT_PAIRS) |
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if f < length: |
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return int(f) |
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else: |
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f = max(0.0, min(f, 1.0)) |
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index = int(f * length) |
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index = min(index, length - 1) |
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return index |
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def select_weight_pair(f: float): |
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return WEIGHT_PAIRS[float_to_pair_index(f)] |
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def load_models(): |
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controlnet_tile = ControlNetModel.from_pretrained( |
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"lllyasviel/control_v11f1e_sd15_tile", |
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torch_dtype=torch.float16, |
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) |
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controlnet_brightness = ControlNetModel.from_pretrained( |
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"ioclab/control_v1p_sd15_brightness", |
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torch_dtype=torch.float16, |
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) |
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pipe = StableDiffusionControlNetPipeline.from_pretrained( |
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MODEL_ID, |
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controlnet=[ |
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controlnet_tile, |
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controlnet_brightness, |
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], |
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torch_dtype=torch.float16, |
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cache_dir="cache", |
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).to("cuda") |
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pipe.scheduler = EulerAncestralDiscreteScheduler.from_config(pipe.scheduler.config) |
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pipe.enable_xformers_memory_efficient_attention() |
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return pipe |
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def resize_for_condition_image(input_image: Image.Image, resolution: int): |
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input_image = input_image.convert("RGB") |
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W, H = input_image.size |
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k = float(resolution) / min(H, W) |
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H *= k |
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W *= k |
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H = int(round(H / 64.0)) * 64 |
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W = int(round(W / 64.0)) * 64 |
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img = input_image.resize((W, H), resample=Image.LANCZOS) |
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return img |
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def generate_qr_code(content: str): |
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qrcode_generator = qrcode.QRCode( |
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version=1, |
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error_correction=qrcode.ERROR_CORRECT_H, |
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box_size=10, |
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border=2, |
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) |
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qrcode_generator.clear() |
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qrcode_generator.add_data(content) |
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qrcode_generator.make(fit=True) |
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img = qrcode_generator.make_image(fill_color="black", back_color="white") |
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img = resize_for_condition_image(img, 768) |
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return img |
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def image_to_base64(image: Image.Image): |
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buffered = BytesIO() |
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image.save(buffered, format="PNG") |
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return base64.b64encode(buffered.getvalue()).decode("utf-8") |
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def generate_image_with_conditioning_scale(**inputs): |
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styles = inputs["styles"] |
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pair = inputs["pair"] |
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pipe = inputs["pipe"] |
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qr_image = inputs["qr_image"] |
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generator = inputs["generator"] |
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images = pipe( |
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prompt=styles, |
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negative_prompt=[""] * len(styles), |
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width=WIDTH, |
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height=HEIGHT, |
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guidance_scale=7.0, |
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generator=generator, |
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num_inference_steps=25, |
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num_images_per_prompt=2, |
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controlnet_conditioning_scale=pair, |
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image=[qr_image] * 2, |
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).images |
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return [{"data": image_to_base64(image), "format": "png"} for image in images] |
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def generate_image(pipe, inputs): |
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styles = inputs["styles"] |
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content = inputs["content"] |
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art_scale = inputs["art_scale"] |
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with torch.inference_mode(): |
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with torch.autocast("cuda"): |
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qr_image = generate_qr_code(content) |
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generator = torch.Generator() |
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pair = select_weight_pair(art_scale) |
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return generate_image_with_conditioning_scale( |
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styles=styles, |
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pair=pair, |
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pipe=pipe, |
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qr_image=qr_image, |
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generator=generator, |
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) |
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class EndpointHandler: |
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def __init__(self, path=""): |
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self._model = load_models() |
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def __call__(self, model_input: Dict[str, Any]) -> List[Dict[str, Any]]: |
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images = generate_image(self._model, model_input) |
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return images |
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