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import gradio as gr
from models import models
from PIL import Image
import requests
import uuid
import io
import base64
import torch
from diffusers import AutoPipelineForImage2Image
from diffusers.utils import make_image_grid, load_image
base_url=f'https://omnibus-top-20-img-img.hf.space/file='
loaded_model=[]
for i,model in enumerate(models):
try:
loaded_model.append(gr.load(f'models/{model}'))
except Exception as e:
print(e)
pass
print (loaded_model)
pipeline = AutoPipelineForImage2Image.from_pretrained("runwayml/stable-diffusion-v1-5", torch_dtype=torch.float32, use_safetensors=True)
def load_model(model_drop):
pipeline = AutoPipelineForImage2Image.from_pretrained("runwayml/stable-diffusion-v1-5", torch_dtype=torch.float32, use_safetensors=True)
def run_dif(prompt,im_path,model_drop,cnt):
print(f'im_path:: {im_path}')
out_box=[]
for i,ea in im_path[0]:
print(f'ea:: {ea}')
print(f'impath:: {im_path[0][i]}')
#url = base_url+ea
#init_image = load_image(url)
init_image=load_image(ea)
#prompt = "Astronaut in a jungle, cold color palette, muted colors, detailed, 8k"
# pass prompt and image to pipeline
#image = pipeline(prompt, image=init_image, strength=0.8,guidance_scale=8.0,negative_prompt=negative_prompt,num_inference_steps=50).images[0]
image = pipeline(prompt, image=init_image, strength=0.2,guidance_scale=8.0,num_inference_steps=2).images[0]
#make_image_grid([init_image, image], rows=1, cols=2)
out_box.append(image)
yield out_box,""
def run_dif_old(out_prompt,model_drop,cnt):
p_seed=""
out_box=[]
out_html=""
#for i,ea in enumerate(loaded_model):
for i in range(int(cnt)):
p_seed+=" "
try:
model=loaded_model[int(model_drop)]
out_img=model(out_prompt+p_seed)
print(out_img)
out_box.append(out_img)
except Exception as e:
print(e)
out_html=str(e)
pass
yield out_box,out_html
def run_dif_og(out_prompt,model_drop,cnt):
out_box=[]
out_html=""
#for i,ea in enumerate(loaded_model):
for i in range(cnt):
try:
#print (ea)
model=loaded_model[int(model_drop)]
out_img=model(out_prompt)
print(out_img)
url=f'https://omnibus-top-20.hf.space/file={out_img}'
print(url)
uid = uuid.uuid4()
#urllib.request.urlretrieve(image, 'tmp.png')
#out=Image.open('tmp.png')
r = requests.get(url, stream=True)
if r.status_code == 200:
img_buffer = io.BytesIO(r.content)
print (f'bytes:: {io.BytesIO(r.content)}')
str_equivalent_image = base64.b64encode(img_buffer.getvalue()).decode()
img_tag = "<img src='data:image/png;base64," + str_equivalent_image + "'/>"
out_html+=f"<div class='img_class'><a href='https://huggingface.co/models/{models[i]}'>{models[i]}</a><br>"+img_tag+"</div>"
out = Image.open(io.BytesIO(r.content))
out_box.append(out)
html_out = "<div class='grid_class'>"+out_html+"</div>"
yield out_box,html_out
except Exception as e:
out_html+=str(e)
html_out = "<div class='grid_class'>"+out_html+"</div>"
yield out_box,html_out
def thread_dif(out_prompt,mod):
out_box=[]
out_html=""
#for i,ea in enumerate(loaded_model):
try:
print (ea)
model=loaded_model[int(mod)]
out_img=model(out_prompt)
print(out_img)
url=f'https://omnibus-top-20.hf.space/file={out_img}'
print(url)
uid = uuid.uuid4()
#urllib.request.urlretrieve(image, 'tmp.png')
#out=Image.open('tmp.png')
r = requests.get(url, stream=True)
if r.status_code == 200:
img_buffer = io.BytesIO(r.content)
print (f'bytes:: {io.BytesIO(r.content)}')
str_equivalent_image = base64.b64encode(img_buffer.getvalue()).decode()
img_tag = "<img src='data:image/png;base64," + str_equivalent_image + "'/>"
#out_html+=f"<div class='img_class'><a href='https://huggingface.co/models/{models[i]}'>{models[i]}</a><br>"+img_tag+"</div>"
out = Image.open(io.BytesIO(r.content))
out_box.append(out)
else:
out_html=r.status_code
html_out = "<div class='grid_class'>"+out_html+"</div>"
return out_box,html_out
except Exception as e:
out_html=str(e)
#out_html+=str(e)
html_out = "<div class='grid_class'>"+out_html+"</div>"
return out_box,html_out
css="""
.grid_class{
display:flex;
height:100%;
}
.img_class{
min-width:200px;
}
"""
def load_im(img):
im_box=[]
im = Image.open(img)
width, height = im.size
new_w=int(width/10)
new_h=new_w
w=0
h=0
for i in range(int(height/new_h)):
print(i)
for b in range(10):
print(b)
# Setting the points for cropped image
left = w
top = h
right = left+new_w
bottom = top+new_h
# Cropped image of above dimension
# (It will not change original image)
im1 = im.crop((left, top, right, bottom))
im_box.append(im1)
w+=new_w
yield im_box,[]
h+=new_h
w=0
yield im_box,im_box
with gr.Blocks(css=css) as app:
with gr.Row():
with gr.Column():
inp=gr.Textbox(label="Prompt")
with gr.Row():
btn=gr.Button()
stop_btn=gr.Button()
with gr.Column():
inp_im=gr.Image(type='filepath')
im_btn=gr.Button("Image Grid")
with gr.Row():
model_drop=gr.Dropdown(label="Models", choices=models, type='index', value=models[0])
cnt = gr.Number(value=1)
out_html=gr.HTML()
outp=gr.Gallery(columns=10)
fingal=gr.Gallery(columns=10)
im_list=gr.Textbox()
im_btn.click(load_im,inp_im,[outp,im_list])
go_btn = btn.click(run_dif,[inp,outp,model_drop,cnt],[fingal,out_html])
stop_btn.click(None,None,None,cancels=[go_btn])
app.queue().launch()