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import gradio as gr
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import torch
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import spaces
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from pathlib import Path
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import gc
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import subprocess
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from PIL import Image
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subprocess.run('pip install flash-attn --no-build-isolation', env={'FLASH_ATTENTION_SKIP_CUDA_BUILD': "TRUE"}, shell=True)
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subprocess.run('pip cache purge', shell=True)
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device = "cuda" if torch.cuda.is_available() else "cpu"
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torch.set_grad_enabled(False)
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models = [
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"camenduru/FLUX.1-dev-diffusers",
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"black-forest-labs/FLUX.1-schnell",
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"sayakpaul/FLUX.1-merged",
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"John6666/flux-dev2pro-bf16-flux",
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"John6666/flux1-dev-minus-v1-fp8-flux",
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"John6666/hyper-flux1-dev-fp8-flux",
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"John6666/blue-pencil-flux1-v001-fp8-flux",
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"John6666/copycat-flux-test-fp8-v11-fp8-flux",
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"John6666/flux-dev8-anime-nsfw-fp8-flux",
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"John6666/nepotism-fuxdevschnell-v3aio-fp8-flux",
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"John6666/niji-style-flux-devfp8-fp8-flux",
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"John6666/niji56-style-v3-fp8-flux",
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"John6666/lyh-dalle-anime-v12dalle-fp8-flux",
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"John6666/glimmerkin-flux-cute-v10-fp8-flux",
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"John6666/xe-anime-flux-03-fp8-flux",
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"John6666/xe-figure-flux-01-fp8-flux",
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"John6666/xe-pixel-flux-01-fp8-flux",
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"John6666/fluxunchained-artfulnsfw-fut516xfp8e4m3fnv11-fp8-flux",
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"John6666/fastflux-unchained-t5f16-fp8-flux",
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"John6666/iniverse-mix-xl-sfwnsfw-fluxdfp16nsfwv11-fp8-flux",
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"John6666/nsfw-master-flux-lora-merged-with-flux1-dev-fp16-v10-fp8-flux",
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"John6666/the-araminta-flux1a1-fp8-flux",
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"John6666/acorn-is-spinning-flux-v11-fp8-flux",
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"John6666/real-horny-pro-fp8-flux",
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"John6666/centerfold-flux-v20fp8e5m2-fp8-flux",
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"John6666/jib-mix-flux-v208stephyper-fp8-flux",
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"John6666/flux-asian-realistic-v10-fp8-flux",
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"John6666/fluxasiandoll-v10-fp8-flux",
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"John6666/xe-asian-flux-01-fp8-flux",
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"John6666/fluxescore-dev-v10fp16-fp8-flux",
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]
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num_loras = 3
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num_cns = 2
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control_images = [None] * num_cns
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control_modes = [-1] * num_cns
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control_scales = [0] * num_cns
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def is_repo_name(s):
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import re
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return re.fullmatch(r'^[^/,\s\"\']+/[^/,\s\"\']+$', s)
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def is_repo_exists(repo_id):
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from huggingface_hub import HfApi
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api = HfApi()
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try:
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if api.repo_exists(repo_id=repo_id): return True
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else: return False
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except Exception as e:
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print(f"Error: Failed to connect {repo_id}. ")
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print(e)
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return True
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def clear_cache():
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try:
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torch.cuda.empty_cache()
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torch.cuda.reset_peak_memory_stats()
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gc.collect()
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except Exception as e:
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print(e)
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def deselect_lora():
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selected_index = None
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new_placeholder = "Type a prompt"
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updated_text = ""
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width = 1024
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height = 1024
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return (
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gr.update(placeholder=new_placeholder),
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updated_text,
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selected_index,
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width,
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height,
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)
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def get_repo_safetensors(repo_id: str):
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from huggingface_hub import HfApi
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api = HfApi()
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try:
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if not is_repo_name(repo_id) or not is_repo_exists(repo_id): return gr.update(value="", choices=[])
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files = api.list_repo_files(repo_id=repo_id)
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except Exception as e:
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print(f"Error: Failed to get {repo_id}'s info.")
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print(e)
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return gr.update(choices=[])
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files = [f for f in files if f.endswith(".safetensors")]
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if len(files) == 0: return gr.update(value="", choices=[])
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else: return gr.update(value=files[0], choices=files)
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def expand2square(pil_img: Image.Image, background_color: tuple=(0, 0, 0)):
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width, height = pil_img.size
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if width == height:
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return pil_img
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elif width > height:
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result = Image.new(pil_img.mode, (width, width), background_color)
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result.paste(pil_img, (0, (width - height) // 2))
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return result
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else:
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result = Image.new(pil_img.mode, (height, height), background_color)
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result.paste(pil_img, ((height - width) // 2, 0))
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return result
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def resize_image(image, target_width, target_height, crop=True):
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from image_datasets.canny_dataset import c_crop
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if crop:
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image = c_crop(image)
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original_width, original_height = image.size
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scale = max(target_width / original_width, target_height / original_height)
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resized_width = int(scale * original_width)
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resized_height = int(scale * original_height)
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image = image.resize((resized_width, resized_height), Image.LANCZOS)
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left = (resized_width - target_width) // 2
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top = (resized_height - target_height) // 2
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image = image.crop((left, top, left + target_width, top + target_height))
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else:
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image = image.resize((target_width, target_height), Image.LANCZOS)
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return image
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controlnet_union_modes = {
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"None": -1,
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"canny": 0,
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"mlsd": 0,
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"tile": 1,
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"depth_midas": 2,
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"blur": 3,
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"openpose": 4,
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"gray": 5,
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"low_quality": 6,
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}
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def get_control_params():
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from diffusers.utils import load_image
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modes = []
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images = []
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scales = []
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for i, mode in enumerate(control_modes):
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if mode == -1 or control_images[i] is None: continue
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modes.append(control_modes[i])
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images.append(load_image(control_images[i]))
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scales.append(control_scales[i])
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return modes, images, scales
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from preprocessor import Preprocessor
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def preprocess_image(image: Image.Image, control_mode: str, height: int, width: int,
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preprocess_resolution: int):
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if control_mode == "None": return image
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image_resolution = max(width, height)
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image_before = resize_image(expand2square(image.convert("RGB")), image_resolution, image_resolution, False)
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print("start to generate control image")
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preprocessor = Preprocessor()
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if control_mode == "depth_midas":
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preprocessor.load("Midas")
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control_image = preprocessor(
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image=image_before,
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image_resolution=image_resolution,
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detect_resolution=preprocess_resolution,
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)
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if control_mode == "openpose":
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preprocessor.load("Openpose")
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control_image = preprocessor(
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image=image_before,
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hand_and_face=True,
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image_resolution=image_resolution,
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detect_resolution=preprocess_resolution,
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)
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if control_mode == "canny":
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preprocessor.load("Canny")
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control_image = preprocessor(
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image=image_before,
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image_resolution=image_resolution,
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detect_resolution=preprocess_resolution,
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)
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if control_mode == "mlsd":
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preprocessor.load("MLSD")
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control_image = preprocessor(
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image=image_before,
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image_resolution=image_resolution,
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detect_resolution=preprocess_resolution,
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)
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if control_mode == "scribble_hed":
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preprocessor.load("HED")
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control_image = preprocessor(
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image=image_before,
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image_resolution=image_resolution,
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detect_resolution=preprocess_resolution,
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)
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if control_mode == "low_quality" or control_mode == "gray" or control_mode == "blur" or control_mode == "tile":
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control_image = image_before
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image_width = 768
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image_height = 768
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else:
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image_width, image_height = control_image.size
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image_after = resize_image(control_image, width, height, False)
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ref_width, ref_height = image.size
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print(f"generate control image success: {ref_width}x{ref_height} => {image_width}x{image_height}")
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return image_after
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def get_control_union_mode():
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return list(controlnet_union_modes.keys())
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def set_control_union_mode(i: int, mode: str, scale: str):
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global control_modes
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global control_scales
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control_modes[i] = controlnet_union_modes.get(mode, 0)
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control_scales[i] = scale
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if mode != "None": return True
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else: return gr.update(visible=True)
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def set_control_union_image(i: int, mode: str, image: Image.Image | None, height: int, width: int, preprocess_resolution: int):
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global control_images
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if image is None: return None
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control_images[i] = preprocess_image(image, mode, height, width, preprocess_resolution)
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return control_images[i]
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def compose_lora_json(lorajson: list[dict], i: int, name: str, scale: float, filename: str, trigger: str):
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lorajson[i]["name"] = str(name) if name != "None" else ""
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lorajson[i]["scale"] = float(scale)
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lorajson[i]["filename"] = str(filename)
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lorajson[i]["trigger"] = str(trigger)
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return lorajson
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def is_valid_lora(lorajson: list[dict]):
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valid = False
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for d in lorajson:
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if "name" in d.keys() and d["name"] and d["name"] != "None": valid = True
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return valid
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def get_trigger_word(lorajson: list[dict]):
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trigger = ""
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for d in lorajson:
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if "name" in d.keys() and d["name"] and d["name"] != "None" and d["trigger"]:
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trigger += ", " + d["trigger"]
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return trigger
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def fuse_loras(pipe, lorajson: list[dict]):
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if not lorajson or not isinstance(lorajson, list): return
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a_list = []
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w_list = []
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for d in lorajson:
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if not d or not isinstance(d, dict) or not d["name"] or d["name"] == "None": continue
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k = d["name"]
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if is_repo_name(k) and is_repo_exists(k):
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a_name = Path(k).stem
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pipe.load_lora_weights(k, weight_name=d["filename"], adapter_name = a_name)
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elif not Path(k).exists():
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print(f"LoRA not found: {k}")
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continue
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else:
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w_name = Path(k).name
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a_name = Path(k).stem
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pipe.load_lora_weights(k, weight_name = w_name, adapter_name = a_name)
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a_list.append(a_name)
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w_list.append(d["scale"])
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if not a_list: return
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pipe.set_adapters(a_list, adapter_weights=w_list)
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pipe.fuse_lora(adapter_names=a_list, lora_scale=1.0)
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def description_ui():
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gr.Markdown(
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"""
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- Mod of [multimodalart/flux-lora-the-explorer](https://huggingface.co./spaces/multimodalart/flux-lora-the-explorer),
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[jiuface/FLUX.1-dev-Controlnet-Union](https://huggingface.co./spaces/jiuface/FLUX.1-dev-Controlnet-Union),
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[DamarJati/FLUX.1-DEV-Canny](https://huggingface.co./spaces/DamarJati/FLUX.1-DEV-Canny),
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[gokaygokay/FLUX-Prompt-Generator](https://huggingface.co./spaces/gokaygokay/FLUX-Prompt-Generator).
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"""
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)
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from transformers import pipeline, AutoTokenizer, AutoModelForSeq2SeqLM
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def load_prompt_enhancer():
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try:
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model_checkpoint = "gokaygokay/Flux-Prompt-Enhance"
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tokenizer = AutoTokenizer.from_pretrained(model_checkpoint)
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model = AutoModelForSeq2SeqLM.from_pretrained(model_checkpoint).eval().to(device=device)
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enhancer_flux = pipeline('text2text-generation', model=model, tokenizer=tokenizer, repetition_penalty=1.5, device=device)
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except Exception as e:
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print(e)
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enhancer_flux = None
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return enhancer_flux
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enhancer_flux = load_prompt_enhancer()
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@spaces.GPU(duration=30)
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def enhance_prompt(input_prompt):
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result = enhancer_flux("enhance prompt: " + input_prompt, max_length = 256)
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enhanced_text = result[0]['generated_text']
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return enhanced_text
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load_prompt_enhancer.zerogpu = True
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fuse_loras.zerogpu = True
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preprocess_image.zerogpu = True
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get_control_params.zerogpu = True
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clear_cache.zerogpu = True |