--- license: other base_model: "Qwen/Qwen-Image" tags: - qwen_image - qwen_image-diffusers - text-to-image - image-to-image - diffusers - simpletuner - not-for-all-audiences - lora - template:sd-lora - lycoris pipeline_tag: text-to-image inference: true --- # ThatDustyGuy/QwenImageLoKR-Personal This is a LyCORIS adapter derived from [Qwen/Qwen-Image](https://huggingface.co/Qwen/Qwen-Image). No validation prompt was used during training. None ## Validation settings - CFG: `7.5` - CFG Rescale: `0.0` - Steps: `30` - Sampler: `FlowMatchEulerDiscreteScheduler` - Seed: `None` - Resolution: `256` Note: The validation settings are not necessarily the same as the [training settings](#training-settings). The text encoder **was not** trained. You may reuse the base model text encoder for inference. ## Training settings - Training epochs: 2 - Training steps: 3750 - Learning rate: 0.0001 - Learning rate schedule: cosine - Warmup steps: 250 - Max grad value: 1.0 - Effective batch size: 4 - Micro-batch size: 2 - Gradient accumulation steps: 2 - Number of GPUs: 1 - Gradient checkpointing: True - Prediction type: flow_matching[] - Optimizer: adamw_bf16 - Trainable parameter precision: Pure BF16 - Base model precision: `no_change` - Caption dropout probability: 0.0% ### LyCORIS Config: ```json { "algo": "lokr", "multiplier": 1.0, "full_matrix": true, "linear_dim": 16384, "linear_alpha": 1, "factor": 16, "apply_preset": { "target_module": [ "Attention", "FeedForward" ], "module_algo_map": { "FeedForward": { "factor": 16 }, "Attention": { "factor": 16 } } } } ``` ## Datasets ### dlay-images - Repeats: 15 - Total number of images: 386 - Total number of aspect buckets: 1 - Resolution: 1.048576 megapixels - Cropped: True - Crop style: random - Crop aspect: square - Used for regularisation data: No ## Inference ```python import torch from diffusers import DiffusionPipeline from lycoris import create_lycoris_from_weights def download_adapter(repo_id: str): import os from huggingface_hub import hf_hub_download adapter_filename = "pytorch_lora_weights.safetensors" cache_dir = os.environ.get('HF_PATH', os.path.expanduser('~/.cache/huggingface/hub/models')) cleaned_adapter_path = repo_id.replace("/", "_").replace("\\", "_").replace(":", "_") path_to_adapter = os.path.join(cache_dir, cleaned_adapter_path) path_to_adapter_file = os.path.join(path_to_adapter, adapter_filename) os.makedirs(path_to_adapter, exist_ok=True) hf_hub_download( repo_id=repo_id, filename=adapter_filename, local_dir=path_to_adapter ) return path_to_adapter_file model_id = 'Qwen/Qwen-Image' adapter_repo_id = 'ThatDustyGuy/ThatDustyGuy/QwenImageLoKR-Personal' adapter_filename = 'pytorch_lora_weights.safetensors' adapter_file_path = download_adapter(repo_id=adapter_repo_id) pipeline = DiffusionPipeline.from_pretrained(model_id, torch_dtype=torch.bfloat16) # loading directly in bf16 lora_scale = 1.0 wrapper, _ = create_lycoris_from_weights(lora_scale, adapter_file_path, pipeline.transformer) wrapper.merge_to() prompt = "An astronaut is riding a horse through the jungles of Thailand." negative_prompt = 'blurry, cropped, ugly' ## Optional: quantise the model to save on vram. ## Note: The model was not quantised during training, so it is not necessary to quantise it during inference time. #from optimum.quanto import quantize, freeze, qint8 #quantize(pipeline.transformer, weights=qint8) #freeze(pipeline.transformer) pipeline.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 model_output = pipeline( prompt=prompt, negative_prompt=negative_prompt, num_inference_steps=30, generator=torch.Generator(device='cuda' if torch.cuda.is_available() else 'mps' if torch.backends.mps.is_available() else 'cpu').manual_seed(42), width=256, height=256, guidance_scale=7.5, ).images[0] model_output.save("output.png", format="PNG") ``` ## Exponential Moving Average (EMA) SimpleTuner generates a safetensors variant of the EMA weights and a pt file. The safetensors file is intended to be used for inference, and the pt file is for continuing finetuning. The EMA model may provide a more well-rounded result, but typically will feel undertrained compared to the full model as it is a running decayed average of the model weights.