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import gradio as gr
import numpy as np
import random
# import spaces #[uncomment to use ZeroGPU]
from diffusers import DiffusionPipeline
import torch
device = "cuda" if torch.cuda.is_available() else "cpu"
model_repo_id = "stabilityai/sdxl-turbo" # Replace to the model you would like to use
if torch.cuda.is_available():
torch_dtype = torch.float16
else:
torch_dtype = torch.float32
pipe = DiffusionPipeline.from_pretrained(model_repo_id, torch_dtype=torch_dtype)
pipe = pipe.to(device)
MAX_SEED = np.iinfo(np.int32).max
MAX_IMAGE_SIZE = 1024
# @spaces.GPU #[uncomment to use ZeroGPU]
def infer(
model,
prompt,
negative_prompt,
seed,
width,
height,
guidance_scale,
num_inference_steps,
progress=gr.Progress(track_tqdm=True),
):
global model_repo_id
if model != model_repo_id:
print(model, model_repo_id)
pipe = DiffusionPipeline.from_pretrained(model, torch_dtype=torch_dtype)
pipe = pipe.to(device)
generator = torch.Generator().manual_seed(seed)
image = pipe(
prompt=prompt,
negative_prompt=negative_prompt,
guidance_scale=guidance_scale,
num_inference_steps=num_inference_steps,
width=width,
height=height,
generator=generator,
).images[0]
return image, seed
examples = [
"Astronaut in a jungle, cold color palette, muted colors, detailed, 8k.",
"An astronaut riding a green horse.",
"A delicious ceviche cheesecake slice.",
"A futuristic sports car is located on the surface of Mars. Stars, planets, mountains and craters are visible.",
]
examples_negative = [
"blurry details, low resolution, poorly defined edges",
]
css = """
#col-container {
margin: 0 auto;
max-width: 640px;
}
"""
available_models = [
"SG161222/Realistic_Vision_V3.0_VAE",
"CompVis/stable-diffusion-v1-4",
"stabilityai/sdxl-turbo",
"runwayml/stable-diffusion-v1-5",
"prompthero/openjourney"
]
with gr.Blocks(css=css) as demo:
with gr.Column(elem_id="col-container"):
gr.Markdown(" # Text-to-Image Gradio Template from V. Gorsky")
model = gr.Dropdown(
label="Model Selection",
choices=available_models,
value="CompVis/stable-diffusion-v1-4",
interactive=True
)
prompt = gr.Text(
label="Prompt",
show_label=False,
max_lines=1,
placeholder="Enter your prompt",
container=False,
)
negative_prompt = gr.Text(
label="Negative prompt",
max_lines=1,
placeholder="Enter a negative prompt",
visible=True,
)
seed = gr.Slider(
label="Seed",
minimum=0,
maximum=MAX_SEED,
step=1,
value=0,
)
guidance_scale = gr.Slider(
label="Guidance scale",
minimum=0.0,
maximum=10.0,
step=0.1,
value=7.0, # Replace with defaults that work for your model
)
num_inference_steps = gr.Slider(
label="Number of inference steps",
minimum=1,
maximum=100,
step=1,
value=20, # Replace with defaults that work for your model
)
run_button = gr.Button("Run", scale=0, variant="primary")
result = gr.Image(label="Result", show_label=False)
with gr.Accordion("Advanced Settings", open=False):
with gr.Row():
width = gr.Slider(
label="Width",
minimum=256,
maximum=MAX_IMAGE_SIZE,
step=32,
value=1024, # Replace with defaults that work for your model
)
height = gr.Slider(
label="Height",
minimum=256,
maximum=MAX_IMAGE_SIZE,
step=32,
value=1024, # Replace with defaults that work for your model
)
gr.Examples(examples=examples, inputs=[prompt])
gr.Examples(examples=examples_negative, inputs=[negative_prompt])
gr.on(
triggers=[run_button.click, prompt.submit],
fn=infer,
inputs=[
model,
prompt,
negative_prompt,
seed,
width,
height,
guidance_scale,
num_inference_steps,
],
outputs=[result, seed],
)
if __name__ == "__main__":
demo.launch()
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