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A photo-realistic image of a cat3.00.020FlowMatchEulerDiscreteScheduler421024x10241{
2 "algo": "lora",
3 "multiplier": 1.0,
4 "linear_dim": 64,
5 "linear_alpha": 32,
6 "apply_preset": {
7 "target_module": [
8 "Attention",
9 "FeedForward"
10 ],
11 "module_algo_map": {
12 "Attention": {
13 "factor": 16
14 },
15 "FeedForward": {
16 "factor": 8
17 }
18 }
19 }
20}1import torch
2from diffusers import DiffusionPipeline
3from lycoris import create_lycoris_from_weights
4
5
6def download_adapter(repo_id: str):
7 import os
8 from huggingface_hub import hf_hub_download
9 adapter_filename = "pytorch_lora_weights.safetensors"
10 cache_dir = os.environ.get('HF_PATH', os.path.expanduser('~/.cache/huggingface/hub/models'))
11 cleaned_adapter_path = repo_id.replace("/", "_").replace("\\", "_").replace(":", "_")
12 path_to_adapter = os.path.join(cache_dir, cleaned_adapter_path)
13 path_to_adapter_file = os.path.join(path_to_adapter, adapter_filename)
14 os.makedirs(path_to_adapter, exist_ok=True)
15 hf_hub_download(
16 repo_id=repo_id, filename=adapter_filename, local_dir=path_to_adapter
17 )
18
19 return path_to_adapter_file
20
21model_id = 'black-forest-labs/FLUX.1-dev'
22adapter_repo_id = 'ARX88/simpletuner-lora'
23adapter_filename = 'pytorch_lora_weights.safetensors'
24adapter_file_path = download_adapter(repo_id=adapter_repo_id)
25pipeline = DiffusionPipeline.from_pretrained(model_id, torch_dtype=torch.bfloat16) # loading directly in bf16
26lora_scale = 1.0
27wrapper, _ = create_lycoris_from_weights(lora_scale, adapter_file_path, pipeline.transformer)
28wrapper.merge_to()
29
30prompt = "A photo-realistic image of a cat"
31
32
33## Optional: quantise the model to save on vram.
34## Note: The model was quantised during training, and so it is recommended to do the same during inference time.
35from optimum.quanto import quantize, freeze, qint8
36quantize(pipeline.transformer, weights=qint8)
37freeze(pipeline.transformer)
38
39pipeline.to('cuda' if torch.cuda.is_available() else 'mps' if torch.backends.mps.is_available() else 'cpu') # the pipeline is already in its target precision level
40image = pipeline(
41 prompt=prompt,
42 num_inference_steps=20,
43 generator=torch.Generator(device='cuda' if torch.cuda.is_available() else 'mps' if torch.backends.mps.is_available() else 'cpu').manual_seed(42),
44 width=1024,
45 height=1024,
46 guidance_scale=3.0,
47).images[0]
48image.save("output.png", format="PNG")