Merge pull request #329 from bit-wrangler/experimental
Added virtual camera output and fetching of input camera devices with names using pygrabber on windows and linuxpull/397/head
commit
ac8feff652
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@ -142,6 +142,7 @@ Just follow the clicks on the screenshot
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Just use your favorite screencapture to stream like OBS
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Just use your favorite screencapture to stream like OBS
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> Note: In case you want to change your face, just select another picture, the preview mode will then restart (so just wait a bit).
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> Note: In case you want to change your face, just select another picture, the preview mode will then restart (so just wait a bit).
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You can now use the virtual camera output (uses pyvirtualcam) by turning on the `Virtual Cam Output (OBS)` toggle which should output to the OBS Virtual Camera. Note: this may not work on macOS. You will get a preview as before, but now you will also have a virtual camera output which can be used in applications like Zoom.
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Additional command line arguments are given below. To learn out what they do, check [this guide](https://github.com/s0md3v/roop/wiki/Advanced-Options).
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Additional command line arguments are given below. To learn out what they do, check [this guide](https://github.com/s0md3v/roop/wiki/Advanced-Options).
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129
modules/ui.py
129
modules/ui.py
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@ -2,9 +2,12 @@ import os
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import platform
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import platform
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import webbrowser
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import webbrowser
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import customtkinter as ctk
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import customtkinter as ctk
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from typing import Callable, Tuple
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from typing import Callable, Tuple, List, Any
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from types import ModuleType
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import cv2
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import cv2
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from PIL import Image, ImageOps
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from PIL import Image, ImageOps
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from pygrabber.dshow_graph import FilterGraph
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import pyvirtualcam
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# Import OS-specific modules only when necessary
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# Import OS-specific modules only when necessary
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if platform.system() == 'Darwin': # macOS
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if platform.system() == 'Darwin': # macOS
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@ -20,7 +23,7 @@ from modules.processors.frame.core import get_frame_processors_modules
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from modules.utilities import is_image, is_video, resolve_relative_path
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from modules.utilities import is_image, is_video, resolve_relative_path
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ROOT = None
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ROOT = None
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ROOT_HEIGHT = 700
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ROOT_HEIGHT = 800
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ROOT_WIDTH = 600
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ROOT_WIDTH = 600
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PREVIEW = None
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PREVIEW = None
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@ -105,65 +108,69 @@ def create_root(start: Callable[[], None], destroy: Callable[[], None]) -> ctk.C
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root.protocol('WM_DELETE_WINDOW', lambda: destroy())
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root.protocol('WM_DELETE_WINDOW', lambda: destroy())
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source_label = ctk.CTkLabel(root, text=None)
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source_label = ctk.CTkLabel(root, text=None)
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source_label.place(relx=0.1, rely=0.1, relwidth=0.3, relheight=0.25)
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source_label.place(relx=0.1, rely=0.0875, relwidth=0.3, relheight=0.25)
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target_label = ctk.CTkLabel(root, text=None)
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target_label = ctk.CTkLabel(root, text=None)
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target_label.place(relx=0.6, rely=0.1, relwidth=0.3, relheight=0.25)
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target_label.place(relx=0.6, rely=0.0875, relwidth=0.3, relheight=0.25)
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source_button = ctk.CTkButton(root, text='Select a face', cursor='hand2', command=select_source_path)
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source_button = ctk.CTkButton(root, text='Select a face', cursor='hand2', command=select_source_path)
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source_button.place(relx=0.1, rely=0.4, relwidth=0.3, relheight=0.1)
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source_button.place(relx=0.1, rely=0.35, relwidth=0.3, relheight=0.1)
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target_button = ctk.CTkButton(root, text='Select a target', cursor='hand2', command=select_target_path)
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target_button = ctk.CTkButton(root, text='Select a target', cursor='hand2', command=select_target_path)
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target_button.place(relx=0.6, rely=0.4, relwidth=0.3, relheight=0.1)
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target_button.place(relx=0.6, rely=0.35, relwidth=0.3, relheight=0.1)
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keep_fps_value = ctk.BooleanVar(value=modules.globals.keep_fps)
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keep_fps_value = ctk.BooleanVar(value=modules.globals.keep_fps)
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keep_fps_checkbox = ctk.CTkSwitch(root, text='Keep fps', variable=keep_fps_value, cursor='hand2', command=lambda: setattr(modules.globals, 'keep_fps', not modules.globals.keep_fps))
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keep_fps_checkbox = ctk.CTkSwitch(root, text='Keep fps', variable=keep_fps_value, cursor='hand2', command=lambda: setattr(modules.globals, 'keep_fps', not modules.globals.keep_fps))
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keep_fps_checkbox.place(relx=0.1, rely=0.6)
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keep_fps_checkbox.place(relx=0.1, rely=0.525)
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keep_frames_value = ctk.BooleanVar(value=modules.globals.keep_frames)
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keep_frames_value = ctk.BooleanVar(value=modules.globals.keep_frames)
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keep_frames_switch = ctk.CTkSwitch(root, text='Keep frames', variable=keep_frames_value, cursor='hand2', command=lambda: setattr(modules.globals, 'keep_frames', keep_frames_value.get()))
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keep_frames_switch = ctk.CTkSwitch(root, text='Keep frames', variable=keep_frames_value, cursor='hand2', command=lambda: setattr(modules.globals, 'keep_frames', keep_frames_value.get()))
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keep_frames_switch.place(relx=0.1, rely=0.65)
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keep_frames_switch.place(relx=0.1, rely=0.56875)
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enhancer_value = ctk.BooleanVar(value=modules.globals.fp_ui['face_enhancer'])
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enhancer_value = ctk.BooleanVar(value=modules.globals.fp_ui['face_enhancer'])
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enhancer_switch = ctk.CTkSwitch(root, text='Face Enhancer', variable=enhancer_value, cursor='hand2', command=lambda: update_tumbler('face_enhancer', enhancer_value.get()))
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enhancer_switch = ctk.CTkSwitch(root, text='Face Enhancer', variable=enhancer_value, cursor='hand2', command=lambda: update_tumbler('face_enhancer', enhancer_value.get()))
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enhancer_switch.place(relx=0.1, rely=0.7)
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enhancer_switch.place(relx=0.1, rely=0.6125)
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keep_audio_value = ctk.BooleanVar(value=modules.globals.keep_audio)
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keep_audio_value = ctk.BooleanVar(value=modules.globals.keep_audio)
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keep_audio_switch = ctk.CTkSwitch(root, text='Keep audio', variable=keep_audio_value, cursor='hand2', command=lambda: setattr(modules.globals, 'keep_audio', keep_audio_value.get()))
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keep_audio_switch = ctk.CTkSwitch(root, text='Keep audio', variable=keep_audio_value, cursor='hand2', command=lambda: setattr(modules.globals, 'keep_audio', keep_audio_value.get()))
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keep_audio_switch.place(relx=0.6, rely=0.6)
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keep_audio_switch.place(relx=0.6, rely=0.525)
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many_faces_value = ctk.BooleanVar(value=modules.globals.many_faces)
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many_faces_value = ctk.BooleanVar(value=modules.globals.many_faces)
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many_faces_switch = ctk.CTkSwitch(root, text='Many faces', variable=many_faces_value, cursor='hand2', command=lambda: setattr(modules.globals, 'many_faces', many_faces_value.get()))
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many_faces_switch = ctk.CTkSwitch(root, text='Many faces', variable=many_faces_value, cursor='hand2', command=lambda: setattr(modules.globals, 'many_faces', many_faces_value.get()))
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many_faces_switch.place(relx=0.6, rely=0.65)
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many_faces_switch.place(relx=0.6, rely=0.56875)
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nsfw_value = ctk.BooleanVar(value=modules.globals.nsfw)
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nsfw_value = ctk.BooleanVar(value=modules.globals.nsfw)
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nsfw_switch = ctk.CTkSwitch(root, text='NSFW', variable=nsfw_value, cursor='hand2', command=lambda: setattr(modules.globals, 'nsfw', nsfw_value.get()))
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nsfw_switch = ctk.CTkSwitch(root, text='NSFW', variable=nsfw_value, cursor='hand2', command=lambda: setattr(modules.globals, 'nsfw', nsfw_value.get()))
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nsfw_switch.place(relx=0.6, rely=0.7)
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nsfw_switch.place(relx=0.6, rely=0.6125)
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start_button = ctk.CTkButton(root, text='Start', cursor='hand2', command=lambda: select_output_path(start))
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start_button = ctk.CTkButton(root, text='Start', cursor='hand2', command=lambda: select_output_path(start))
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start_button.place(relx=0.15, rely=0.8, relwidth=0.2, relheight=0.05)
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start_button.place(relx=0.15, rely=0.7, relwidth=0.2, relheight=0.05)
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stop_button = ctk.CTkButton(root, text='Destroy', cursor='hand2', command=destroy)
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stop_button = ctk.CTkButton(root, text='Destroy', cursor='hand2', command=destroy)
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stop_button.place(relx=0.4, rely=0.8, relwidth=0.2, relheight=0.05)
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stop_button.place(relx=0.4, rely=0.7, relwidth=0.2, relheight=0.05)
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preview_button = ctk.CTkButton(root, text='Preview', cursor='hand2', command=toggle_preview)
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preview_button = ctk.CTkButton(root, text='Preview', cursor='hand2', command=toggle_preview)
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preview_button.place(relx=0.65, rely=0.8, relwidth=0.2, relheight=0.05)
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preview_button.place(relx=0.65, rely=0.7, relwidth=0.2, relheight=0.05)
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camera_label = ctk.CTkLabel(root, text="Select Camera:")
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camera_label = ctk.CTkLabel(root, text="Select Camera:")
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camera_label.place(relx=0.4, rely=0.86, relwidth=0.2, relheight=0.05)
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camera_label.place(relx=0.4, rely=0.7525, relwidth=0.2, relheight=0.05)
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available_cameras = get_available_cameras()
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available_cameras = get_available_cameras()
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available_camera_strings = [str(cam) for cam in available_cameras]
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available_camera_strings = [str(cam) for cam in available_cameras]
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camera_variable = ctk.StringVar(value=available_camera_strings[0] if available_camera_strings else "No cameras found")
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camera_variable = ctk.StringVar(value=available_camera_strings[0] if available_camera_strings else "No cameras found")
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camera_optionmenu = ctk.CTkOptionMenu(root, variable=camera_variable, values=available_camera_strings)
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camera_optionmenu = ctk.CTkOptionMenu(root, variable=camera_variable, values=available_camera_strings)
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camera_optionmenu.place(relx=0.65, rely=0.86, relwidth=0.2, relheight=0.05)
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camera_optionmenu.place(relx=0.65, rely=0.7525, relwidth=0.2, relheight=0.05)
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live_button = ctk.CTkButton(root, text='Live', cursor='hand2', command=lambda: webcam_preview(camera_variable.get()))
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virtual_cam_out_value = ctk.BooleanVar(value=False)
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live_button.place(relx=0.15, rely=0.86, relwidth=0.2, relheight=0.05)
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virtual_cam_out_switch = ctk.CTkSwitch(root, text='Virtual Cam Output (OBS)', variable=virtual_cam_out_value, cursor='hand2')
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virtual_cam_out_switch.place(relx=0.4, rely=0.805)
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live_button = ctk.CTkButton(root, text='Live', cursor='hand2', command=lambda: webcam_preview(camera_variable.get(), virtual_cam_out_value.get()))
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live_button.place(relx=0.15, rely=0.7525, relwidth=0.2, relheight=0.05)
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status_label = ctk.CTkLabel(root, text=None, justify='center')
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status_label = ctk.CTkLabel(root, text=None, justify='center')
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status_label.place(relx=0.1, relwidth=0.8, rely=0.9)
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status_label.place(relx=0.1, relwidth=0.8, rely=0.875)
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donate_label = ctk.CTkLabel(root, text='Deep Live Cam', justify='center', cursor='hand2')
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donate_label = ctk.CTkLabel(root, text='Deep Live Cam', justify='center', cursor='hand2')
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donate_label.place(relx=0.1, rely=0.95, relwidth=0.8)
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donate_label.place(relx=0.1, rely=0.95, relwidth=0.8)
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@ -311,6 +318,38 @@ def update_preview(frame_number: int = 0) -> None:
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image = ctk.CTkImage(image, size=image.size)
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image = ctk.CTkImage(image, size=image.size)
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preview_label.configure(image=image)
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preview_label.configure(image=image)
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def webcam_preview_loop(camera: cv2.VideoCapture, source_image: Any, frame_processors: List[ModuleType], virtual_cam: pyvirtualcam.Camera = None) -> bool:
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global preview_label, PREVIEW
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ret, frame = camera.read()
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if not ret:
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update_status(f"Error: Frame not received from camera.")
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return False
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temp_frame = frame.copy()
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if modules.globals.live_mirror:
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temp_frame = cv2.flip(temp_frame, 1) # horizontal flipping
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if modules.globals.live_resizable:
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temp_frame = fit_image_to_size(temp_frame, PREVIEW.winfo_width(), PREVIEW.winfo_height())
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for frame_processor in frame_processors:
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temp_frame = frame_processor.process_frame(source_image, temp_frame)
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image = Image.fromarray(cv2.cvtColor(temp_frame, cv2.COLOR_BGR2RGB))
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image = ImageOps.contain(image, (temp_frame.shape[1], temp_frame.shape[0]), Image.LANCZOS)
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image = ctk.CTkImage(image, size=image.size)
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preview_label.configure(image=image)
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if virtual_cam:
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virtual_cam.send(temp_frame)
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virtual_cam.sleep_until_next_frame()
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ROOT.update()
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if PREVIEW.state() == 'withdrawn':
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return False
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return True
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def fit_image_to_size(image, width: int, height: int):
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def fit_image_to_size(image, width: int, height: int):
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if width is None and height is None:
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if width is None and height is None:
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@ -326,12 +365,16 @@ def fit_image_to_size(image, width: int, height: int):
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new_size = (int(ratio * w), int(ratio * h))
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new_size = (int(ratio * w), int(ratio * h))
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return cv2.resize(image, dsize=new_size)
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return cv2.resize(image, dsize=new_size)
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def webcam_preview(camera_name: str):
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def webcam_preview(camera_name: str, virtual_cam_output: bool):
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if modules.globals.source_path is None:
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if modules.globals.source_path is None:
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return
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return
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global preview_label, PREVIEW
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global preview_label, PREVIEW
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WIDTH = 960
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HEIGHT = 540
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FPS = 60
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# Select the camera by its name
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# Select the camera by its name
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selected_camera = select_camera(camera_name)
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selected_camera = select_camera(camera_name)
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if selected_camera is None:
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if selected_camera is None:
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@ -348,9 +391,12 @@ def webcam_preview(camera_name: str):
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update_status(f"Error: Could not open camera {camera_name}")
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update_status(f"Error: Could not open camera {camera_name}")
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return
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return
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camera.set(cv2.CAP_PROP_FRAME_WIDTH, 960)
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camera.set(cv2.CAP_PROP_FRAME_WIDTH, WIDTH)
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camera.set(cv2.CAP_PROP_FRAME_HEIGHT, 540)
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camera.set(cv2.CAP_PROP_FRAME_HEIGHT, HEIGHT)
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camera.set(cv2.CAP_PROP_FPS, 60)
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camera.set(cv2.CAP_PROP_FPS, FPS)
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PREVIEW_MAX_WIDTH = WIDTH
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PREVIEW_MAX_HEIGHT = HEIGHT
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preview_label.configure(width=PREVIEW_DEFAULT_WIDTH, height=PREVIEW_DEFAULT_HEIGHT)
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preview_label.configure(width=PREVIEW_DEFAULT_WIDTH, height=PREVIEW_DEFAULT_HEIGHT)
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PREVIEW.deiconify()
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PREVIEW.deiconify()
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@ -358,28 +404,15 @@ def webcam_preview(camera_name: str):
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frame_processors = get_frame_processors_modules(modules.globals.frame_processors)
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frame_processors = get_frame_processors_modules(modules.globals.frame_processors)
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source_image = get_one_face(cv2.imread(modules.globals.source_path))
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source_image = get_one_face(cv2.imread(modules.globals.source_path))
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while camera:
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preview_running = True
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ret, frame = camera.read()
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if not ret:
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update_status(f"Error: Frame not received from camera.")
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break
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temp_frame = frame.copy()
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if virtual_cam_output:
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with pyvirtualcam.Camera(width=WIDTH, height=HEIGHT, fps=FPS, fmt=pyvirtualcam.PixelFormat.BGR) as virtual_cam:
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while preview_running:
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preview_running = webcam_preview_loop(camera, source_image, frame_processors, virtual_cam)
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if modules.globals.live_mirror:
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while preview_running:
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temp_frame = cv2.flip(temp_frame, 1) # horizontal flipping
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preview_running = webcam_preview_loop(camera, source_image, frame_processors)
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if modules.globals.live_resizable:
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temp_frame = fit_image_to_size(temp_frame, PREVIEW.winfo_width(), PREVIEW.winfo_height())
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for frame_processor in frame_processors:
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temp_frame = frame_processor.process_frame(source_image, temp_frame)
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image = Image.fromarray(cv2.cvtColor(temp_frame, cv2.COLOR_BGR2RGB))
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image = ImageOps.contain(image, (temp_frame.shape[1], temp_frame.shape[0]), Image.LANCZOS)
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image = ctk.CTkImage(image, size=image.size)
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preview_label.configure(image=image)
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ROOT.update()
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if camera: camera.release()
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if camera: camera.release()
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PREVIEW.withdraw()
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PREVIEW.withdraw()
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@ -414,13 +447,19 @@ def get_available_cameras():
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elif device.deviceType() == "AVCaptureDeviceTypeContinuityCamera":
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elif device.deviceType() == "AVCaptureDeviceTypeContinuityCamera":
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print(f"Skipping Continuity Camera: {device.localizedName()}")
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print(f"Skipping Continuity Camera: {device.localizedName()}")
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elif platform.system() == 'Windows' or platform.system() == 'Linux':
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elif platform.system() == 'Windows' or platform.system() == 'Linux':
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try:
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devices = FilterGraph().get_input_devices()
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except Exception as e:
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# Use OpenCV to detect camera indexes
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# Use OpenCV to detect camera indexes
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index = 0
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index = 0
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devices = []
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while True:
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while True:
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cap = cv2.VideoCapture(index)
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cap = cv2.VideoCapture(index)
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if not cap.isOpened():
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if not cap.isOpened():
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break
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break
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available_cameras.append(f"Camera {index}")
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devices.append(f"Camera {index}")
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cap.release()
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cap.release()
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index += 1
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index += 1
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available_cameras = devices
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return available_cameras
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return available_cameras
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|
|
@ -22,3 +22,5 @@ protobuf==4.23.2
|
||||||
tqdm==4.66.4
|
tqdm==4.66.4
|
||||||
gfpgan==1.3.8
|
gfpgan==1.3.8
|
||||||
pyobjc==9.1; sys_platform == 'darwin'
|
pyobjc==9.1; sys_platform == 'darwin'
|
||||||
|
pygrabber==0.2
|
||||||
|
pyvirtualcam==0.12.0
|
Loading…
Reference in New Issue