AAAAAAyq
commited on
Commit
•
901ea42
1
Parent(s):
2f10180
Fix the everything mode bug and add point mode
Browse files- __pycache__/tools.cpython-39.pyc +0 -0
- app.py +196 -72
- tools.py +1 -35
__pycache__/tools.cpython-39.pyc
CHANGED
Binary files a/__pycache__/tools.cpython-39.pyc and b/__pycache__/tools.cpython-39.pyc differ
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app.py
CHANGED
@@ -1,27 +1,49 @@
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from ultralytics import YOLO
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import gradio as gr
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import torch
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from tools import fast_process
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# Load the pre-trained model
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model = YOLO('checkpoints/FastSAM.pt')
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# Description
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title = "<center><strong><font size='8'>🏃 Fast Segment Anything 🤗</font></strong></center>"
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news = """ # News
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🔥 Add the 'Advanced options" in Everything mode to get a more detailed adjustment.
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"""
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# 🔥 Support the points mode and box mode, text mode will come soon.
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-
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🎯 Upload an Image, segment it with Fast Segment Anything (Everything mode). The other modes will come soon.
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⌛️ It takes about
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🚀 To get faster results, you can use a smaller input size and leave high_visual_quality unchecked.
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@@ -41,17 +63,14 @@ default_example = examples[0]
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css = "h1 { text-align: center } .about { text-align: justify; padding-left: 10%; padding-right: 10%; }"
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def
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input,
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input_size=1024,
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iou_threshold=0.7,
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conf_threshold=0.25,
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better_quality=False,
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mask_random_color=True,
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withContours=True,
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-
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bbox=None,
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point_label=None,
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use_retina=True,
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):
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input_size = int(input_size) # 确保 imgsz 是整数
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iou=iou_threshold,
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conf=conf_threshold,
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imgsz=input_size,)
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fig = fast_process(annotations=results[0].masks.data,
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image=input,
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device=device,
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scale=(1024 // input_size),
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better_quality=better_quality,
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mask_random_color=mask_random_color,
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-
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bbox=bbox,
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point_label=point_label,
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use_retina=use_retina,
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withContours=withContours,)
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return fig
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# input_size=1024
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# high_quality_visual=True
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# pil_image = fast_process(annotations=results[0].masks.data,
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# image=input, high_quality=high_quality_visual, device=device)
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input_size_slider = gr.components.Slider(minimum=512,
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maximum=1024,
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value=1024,
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step=64,
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label='Input_size
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with gr.Blocks(css=css, title='Fast Segment Anything') as demo:
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with gr.Row():
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-
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# Images
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with gr.Row(variant="panel"):
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with gr.Column(scale=1):
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cond_img.render()
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with gr.Column(scale=1):
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segm_img.render()
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# Submit & Clear
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with gr.Row():
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with gr.Column():
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input_size_slider.render()
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with gr.Row():
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contour_check = gr.Checkbox(value=True, label='withContours')
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with gr.Column():
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segment_btn = gr.Button("Segment Anything", variant='primary')
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# with gr.Column():
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# clear_btn = gr.Button("Clear", variant="primary")
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gr.Markdown("Try some of the examples below ⬇️")
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gr.Examples(examples=examples,
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inputs=[cond_img],
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outputs=segm_img,
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fn=segment_image,
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cache_examples=True,
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examples_per_page=4)
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with gr.Column():
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with gr.Accordion("Advanced options", open=False):
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iou_threshold = gr.Slider(0.1, 0.9, 0.7, step=0.1, label='iou_threshold')
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conf_threshold = gr.Slider(0.1, 0.9, 0.25, step=0.05, label='conf_threshold')
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mor_check = gr.Checkbox(value=False, label='better_visual_quality')
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demo.queue()
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demo.launch()
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from ultralytics import YOLO
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import gradio as gr
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import torch
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from tools import fast_process, format_results, box_prompt, point_prompt
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from PIL import ImageDraw
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import numpy as np
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# Load the pre-trained model
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model = YOLO('checkpoints/FastSAM.pt')
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device = 'cuda' if torch.cuda.is_available() else 'cpu'
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# Description
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title = "<center><strong><font size='8'>🏃 Fast Segment Anything 🤗</font></strong></center>"
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news = """ # 📖 News
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🔥 2023/06/24: Add the 'Advanced options" in Everything mode to get a more detailed adjustment.
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🔥 2023/06/26: Support the points mode. (Better and faster interaction will come soon!)
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"""
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description_e = """This is a demo on Github project 🏃 [Fast Segment Anything Model](https://github.com/CASIA-IVA-Lab/FastSAM).
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🎯 Upload an Image, segment it with Fast Segment Anything (Everything mode). The other modes will come soon.
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⌛️ It takes about 6~ seconds to generate segment results. The concurrency_count of queue is 1, please wait for a moment when it is crowded.
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🚀 To get faster results, you can use a smaller input size and leave high_visual_quality unchecked.
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📣 You can also obtain the segmentation results of any Image through this Colab: [![Open in Colab](https://colab.research.google.com/assets/colab-badge.svg)](https://colab.research.google.com/drive/1oX14f6IneGGw612WgVlAiy91UHwFAvr9?usp=sharing)
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😚 A huge thanks goes out to the @HuggingFace Team for supporting us with GPU grant.
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🏠 Check out our [Model Card 🏃](https://huggingface.co/An-619/FastSAM)
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"""
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description_p = """This is a demo on Github project 🏃 [Fast Segment Anything Model](https://github.com/CASIA-IVA-Lab/FastSAM).
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🎯 Upload an Image, add points and segment it with Fast Segment Anything (Points mode).
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⌛️ It takes about 6~ seconds to generate segment results. The concurrency_count of queue is 1, please wait for a moment when it is crowded.
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🚀 To get faster results, you can use a smaller input size and leave high_visual_quality unchecked.
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css = "h1 { text-align: center } .about { text-align: justify; padding-left: 10%; padding-right: 10%; }"
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def segment_everything(
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input,
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input_size=1024,
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iou_threshold=0.7,
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conf_threshold=0.25,
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better_quality=False,
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withContours=True,
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mask_random_color=True,
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use_retina=True,
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):
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input_size = int(input_size) # 确保 imgsz 是整数
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iou=iou_threshold,
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conf=conf_threshold,
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imgsz=input_size,)
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fig = fast_process(annotations=results[0].masks.data,
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image=input,
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device=device,
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scale=(1024 // input_size),
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better_quality=better_quality,
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mask_random_color=mask_random_color,
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bbox=None,
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use_retina=use_retina,
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withContours=withContours,)
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return fig
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def segment_with_points(
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input,
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input_size=1024,
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iou_threshold=0.7,
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conf_threshold=0.25,
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better_quality=False,
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withContours=True,
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mask_random_color=True,
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use_retina=True,
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):
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global global_points
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global global_point_label
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input_size = int(input_size) # 确保 imgsz 是整数
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# Thanks for the suggestion by hysts in HuggingFace.
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w, h = input.size
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scale = input_size / max(w, h)
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new_w = int(w * scale)
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new_h = int(h * scale)
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input = input.resize((new_w, new_h))
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scaled_points = [[int(x * scale) for x in point] for point in global_points]
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results = model(input,
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device=device,
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retina_masks=True,
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iou=iou_threshold,
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conf=conf_threshold,
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imgsz=input_size,)
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results = format_results(results[0], 0)
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annotations, _ = point_prompt(results, scaled_points, global_point_label, new_h, new_w)
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annotations = np.array([annotations])
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fig = fast_process(annotations=annotations,
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image=input,
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device=device,
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scale=(1024 // input_size),
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better_quality=better_quality,
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mask_random_color=mask_random_color,
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bbox=None,
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use_retina=use_retina,
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withContours=withContours,)
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global_points = []
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global_point_label = []
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return fig, None
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def get_points_with_draw(image, label, evt: gr.SelectData):
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x, y = evt.index[0], evt.index[1]
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point_radius, point_color = 15, (255, 255, 0) if label == 'Add Mask' else (255, 0, 255)
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global global_points
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global global_point_label
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print((x, y))
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global_points.append([x, y])
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global_point_label.append(1 if label == 'Add Mask' else 0)
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# 创建一个可以在图像上绘图的对象
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draw = ImageDraw.Draw(image)
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draw.ellipse([(x - point_radius, y - point_radius), (x + point_radius, y + point_radius)], fill=point_color)
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return image
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# input_size=1024
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# high_quality_visual=True
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# pil_image = fast_process(annotations=results[0].masks.data,
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# image=input, high_quality=high_quality_visual, device=device)
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cond_img_e = gr.Image(label="Input", value=default_example[0], type='pil')
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cond_img_p = gr.Image(label="Input with points", value=default_example[0], type='pil')
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segm_img_e = gr.Image(label="Segmented Image", interactive=False, type='pil')
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segm_img_p = gr.Image(label="Segmented Image with points", interactive=False, type='pil')
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global_points = []
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global_point_label = [] # TODO:Clear points each image
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input_size_slider = gr.components.Slider(minimum=512,
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maximum=1024,
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value=1024,
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step=64,
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label='Input_size',
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info='Our model was trained on a size of 1024')
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with gr.Blocks(css=css, title='Fast Segment Anything') as demo:
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with gr.Row():
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with gr.Column(scale=1):
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# Title
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gr.Markdown(title)
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with gr.Column(scale=1):
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# News
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gr.Markdown(news)
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with gr.Tab("Everything mode"):
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# Images
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with gr.Row(variant="panel"):
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with gr.Column(scale=1):
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cond_img_e.render()
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with gr.Column(scale=1):
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segm_img_e.render()
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# Submit & Clear
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with gr.Row():
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with gr.Column():
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input_size_slider.render()
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with gr.Row():
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contour_check = gr.Checkbox(value=True, label='withContours', info='draw the edges of the masks')
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with gr.Column():
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segment_btn_e = gr.Button("Segment Everything", variant='primary')
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clear_btn_e = gr.Button("Clear", variant="secondary")
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gr.Markdown("Try some of the examples below ⬇️")
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gr.Examples(examples=examples,
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inputs=[cond_img_e],
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outputs=segm_img_e,
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fn=segment_everything,
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cache_examples=True,
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examples_per_page=4)
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with gr.Column():
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with gr.Accordion("Advanced options", open=False):
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iou_threshold = gr.Slider(0.1, 0.9, 0.7, step=0.1, label='iou', info='iou threshold for filtering the annotations')
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conf_threshold = gr.Slider(0.1, 0.9, 0.25, step=0.05, label='conf', info='object confidence threshold')
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with gr.Row():
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mor_check = gr.Checkbox(value=False, label='better_visual_quality', info='better quality using morphologyEx')
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with gr.Column():
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retina_check = gr.Checkbox(value=True, label='use_retina', info='draw high-resolution segmentation masks')
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# Description
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gr.Markdown(description_e)
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with gr.Tab("Points mode"):
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# Images
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with gr.Row(variant="panel"):
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with gr.Column(scale=1):
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cond_img_p.render()
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with gr.Column(scale=1):
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segm_img_p.render()
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# Submit & Clear
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with gr.Row():
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with gr.Column():
|
255 |
+
with gr.Row():
|
256 |
+
add_or_remove = gr.Radio(["Add Mask", "Remove Area"], value="Add Mask", label="Point_label (foreground/background)")
|
257 |
+
|
258 |
+
with gr.Column():
|
259 |
+
segment_btn_p = gr.Button("Segment with points prompt", variant='primary')
|
260 |
+
clear_btn_p = gr.Button("Clear points", variant='secondary')
|
261 |
+
|
262 |
+
gr.Markdown("Try some of the examples below ⬇️")
|
263 |
+
gr.Examples(examples=examples,
|
264 |
+
inputs=[cond_img_p],
|
265 |
+
outputs=segm_img_p,
|
266 |
+
fn=segment_with_points,
|
267 |
+
# cache_examples=True,
|
268 |
+
examples_per_page=4)
|
269 |
+
|
270 |
+
with gr.Column():
|
271 |
+
# Description
|
272 |
+
gr.Markdown(description_p)
|
273 |
+
|
274 |
+
cond_img_p.select(get_points_with_draw, [cond_img_p, add_or_remove], cond_img_p)
|
275 |
+
|
276 |
+
segment_btn_e.click(segment_everything,
|
277 |
+
inputs=[cond_img_e, input_size_slider, iou_threshold, conf_threshold, mor_check, contour_check, retina_check],
|
278 |
+
outputs=segm_img_e)
|
279 |
+
|
280 |
+
segment_btn_p.click(segment_with_points,
|
281 |
+
inputs=[cond_img_p],
|
282 |
+
outputs=[segm_img_p, cond_img_p])
|
283 |
+
|
284 |
+
def clear():
|
285 |
+
return None, None
|
286 |
+
|
287 |
+
clear_btn_e.click(clear, outputs=[cond_img_e, segm_img_e])
|
288 |
+
clear_btn_p.click(clear, outputs=[cond_img_p, segm_img_p])
|
289 |
|
290 |
demo.queue()
|
291 |
demo.launch()
|
tools.py
CHANGED
@@ -93,9 +93,7 @@ def fast_process(
|
|
93 |
scale,
|
94 |
better_quality=False,
|
95 |
mask_random_color=True,
|
96 |
-
points=None,
|
97 |
bbox=None,
|
98 |
-
point_label=None,
|
99 |
use_retina=True,
|
100 |
withContours=True,
|
101 |
):
|
@@ -117,8 +115,6 @@ def fast_process(
|
|
117 |
plt.gca(),
|
118 |
random_color=mask_random_color,
|
119 |
bbox=bbox,
|
120 |
-
points=points,
|
121 |
-
pointlabel=point_label,
|
122 |
retinamask=use_retina,
|
123 |
target_height=original_h,
|
124 |
target_width=original_w,
|
@@ -131,8 +127,6 @@ def fast_process(
|
|
131 |
plt.gca(),
|
132 |
random_color=mask_random_color,
|
133 |
bbox=bbox,
|
134 |
-
points=points,
|
135 |
-
pointlabel=point_label,
|
136 |
retinamask=use_retina,
|
137 |
target_height=original_h,
|
138 |
target_width=original_w,
|
@@ -159,7 +153,7 @@ def fast_process(
|
|
159 |
cv2.drawContours(temp, contour_all, -1, (255, 255, 255), 2 // scale)
|
160 |
color = np.array([0 / 255, 0 / 255, 255 / 255, 0.9])
|
161 |
contour_mask = temp / 255 * color.reshape(1, 1, -1)
|
162 |
-
|
163 |
image = image.convert('RGBA')
|
164 |
overlay_inner = Image.fromarray((inner_mask * 255).astype(np.uint8), 'RGBA')
|
165 |
image.paste(overlay_inner, (0, 0), overlay_inner)
|
@@ -177,8 +171,6 @@ def fast_show_mask(
|
|
177 |
ax,
|
178 |
random_color=False,
|
179 |
bbox=None,
|
180 |
-
points=None,
|
181 |
-
pointlabel=None,
|
182 |
retinamask=True,
|
183 |
target_height=960,
|
184 |
target_width=960,
|
@@ -209,16 +201,6 @@ def fast_show_mask(
|
|
209 |
if bbox is not None:
|
210 |
x1, y1, x2, y2 = bbox
|
211 |
ax.add_patch(plt.Rectangle((x1, y1), x2 - x1, y2 - y1, fill=False, edgecolor='b', linewidth=1))
|
212 |
-
# draw point
|
213 |
-
if points is not None:
|
214 |
-
plt.scatter([point[0] for i, point in enumerate(points) if pointlabel[i] == 1],
|
215 |
-
[point[1] for i, point in enumerate(points) if pointlabel[i] == 1],
|
216 |
-
s=20,
|
217 |
-
c='y')
|
218 |
-
plt.scatter([point[0] for i, point in enumerate(points) if pointlabel[i] == 0],
|
219 |
-
[point[1] for i, point in enumerate(points) if pointlabel[i] == 0],
|
220 |
-
s=20,
|
221 |
-
c='m')
|
222 |
|
223 |
if retinamask == False:
|
224 |
mask = cv2.resize(mask, (target_width, target_height), interpolation=cv2.INTER_NEAREST)
|
@@ -231,8 +213,6 @@ def fast_show_mask_gpu(
|
|
231 |
ax,
|
232 |
random_color=False,
|
233 |
bbox=None,
|
234 |
-
points=None,
|
235 |
-
pointlabel=None,
|
236 |
retinamask=True,
|
237 |
target_height=960,
|
238 |
target_width=960,
|
@@ -269,20 +249,6 @@ def fast_show_mask_gpu(
|
|
269 |
(x1, y1), x2 - x1, y2 - y1, fill=False, edgecolor="b", linewidth=1
|
270 |
)
|
271 |
)
|
272 |
-
# draw point
|
273 |
-
if points is not None:
|
274 |
-
plt.scatter(
|
275 |
-
[point[0] for i, point in enumerate(points) if pointlabel[i] == 1],
|
276 |
-
[point[1] for i, point in enumerate(points) if pointlabel[i] == 1],
|
277 |
-
s=20,
|
278 |
-
c="y",
|
279 |
-
)
|
280 |
-
plt.scatter(
|
281 |
-
[point[0] for i, point in enumerate(points) if pointlabel[i] == 0],
|
282 |
-
[point[1] for i, point in enumerate(points) if pointlabel[i] == 0],
|
283 |
-
s=20,
|
284 |
-
c="m",
|
285 |
-
)
|
286 |
if retinamask == False:
|
287 |
mask_cpu = cv2.resize(
|
288 |
mask_cpu, (target_width, target_height), interpolation=cv2.INTER_NEAREST
|
|
|
93 |
scale,
|
94 |
better_quality=False,
|
95 |
mask_random_color=True,
|
|
|
96 |
bbox=None,
|
|
|
97 |
use_retina=True,
|
98 |
withContours=True,
|
99 |
):
|
|
|
115 |
plt.gca(),
|
116 |
random_color=mask_random_color,
|
117 |
bbox=bbox,
|
|
|
|
|
118 |
retinamask=use_retina,
|
119 |
target_height=original_h,
|
120 |
target_width=original_w,
|
|
|
127 |
plt.gca(),
|
128 |
random_color=mask_random_color,
|
129 |
bbox=bbox,
|
|
|
|
|
130 |
retinamask=use_retina,
|
131 |
target_height=original_h,
|
132 |
target_width=original_w,
|
|
|
153 |
cv2.drawContours(temp, contour_all, -1, (255, 255, 255), 2 // scale)
|
154 |
color = np.array([0 / 255, 0 / 255, 255 / 255, 0.9])
|
155 |
contour_mask = temp / 255 * color.reshape(1, 1, -1)
|
156 |
+
|
157 |
image = image.convert('RGBA')
|
158 |
overlay_inner = Image.fromarray((inner_mask * 255).astype(np.uint8), 'RGBA')
|
159 |
image.paste(overlay_inner, (0, 0), overlay_inner)
|
|
|
171 |
ax,
|
172 |
random_color=False,
|
173 |
bbox=None,
|
|
|
|
|
174 |
retinamask=True,
|
175 |
target_height=960,
|
176 |
target_width=960,
|
|
|
201 |
if bbox is not None:
|
202 |
x1, y1, x2, y2 = bbox
|
203 |
ax.add_patch(plt.Rectangle((x1, y1), x2 - x1, y2 - y1, fill=False, edgecolor='b', linewidth=1))
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
204 |
|
205 |
if retinamask == False:
|
206 |
mask = cv2.resize(mask, (target_width, target_height), interpolation=cv2.INTER_NEAREST)
|
|
|
213 |
ax,
|
214 |
random_color=False,
|
215 |
bbox=None,
|
|
|
|
|
216 |
retinamask=True,
|
217 |
target_height=960,
|
218 |
target_width=960,
|
|
|
249 |
(x1, y1), x2 - x1, y2 - y1, fill=False, edgecolor="b", linewidth=1
|
250 |
)
|
251 |
)
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
252 |
if retinamask == False:
|
253 |
mask_cpu = cv2.resize(
|
254 |
mask_cpu, (target_width, target_height), interpolation=cv2.INTER_NEAREST
|