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"""
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Functions for processing video
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ATTENTION: you need to install ffmpeg and ffprobe in your env!
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"""
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import os.path as osp
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import numpy as np
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import subprocess
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import imageio
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import cv2
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from rich.progress import track
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from .rprint import rlog as log
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from .rprint import rprint as print
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from .helper import prefix
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def exec_cmd(cmd):
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return subprocess.run(cmd, shell=True, check=True, stdout=subprocess.PIPE, stderr=subprocess.STDOUT)
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def images2video(images, wfp, **kwargs):
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fps = kwargs.get('fps', 30)
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video_format = kwargs.get('format', 'mp4')
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codec = kwargs.get('codec', 'libx264')
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quality = kwargs.get('quality')
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pixelformat = kwargs.get('pixelformat', 'yuv420p')
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image_mode = kwargs.get('image_mode', 'rgb')
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macro_block_size = kwargs.get('macro_block_size', 2)
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ffmpeg_params = ['-crf', str(kwargs.get('crf', 18))]
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writer = imageio.get_writer(
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wfp, fps=fps, format=video_format,
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codec=codec, quality=quality, ffmpeg_params=ffmpeg_params, pixelformat=pixelformat, macro_block_size=macro_block_size
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)
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n = len(images)
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for i in track(range(n), description='Writing', transient=True):
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if image_mode.lower() == 'bgr':
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writer.append_data(images[i][..., ::-1])
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else:
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writer.append_data(images[i])
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writer.close()
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def video2gif(video_fp, fps=30, size=256):
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if osp.exists(video_fp):
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d = osp.split(video_fp)[0]
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fn = prefix(osp.basename(video_fp))
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palette_wfp = osp.join(d, 'palette.png')
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gif_wfp = osp.join(d, f'{fn}.gif')
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cmd = f'ffmpeg -i "{video_fp}" -vf "fps={fps},scale={size}:-1:flags=lanczos,palettegen" "{palette_wfp}" -y'
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exec_cmd(cmd)
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cmd = f'ffmpeg -i "{video_fp}" -i "{palette_wfp}" -filter_complex "fps={fps},scale={size}:-1:flags=lanczos[x];[x][1:v]paletteuse" "{gif_wfp}" -y'
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exec_cmd(cmd)
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else:
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print(f'video_fp: {video_fp} not exists!')
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def merge_audio_video(video_fp, audio_fp, wfp):
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if osp.exists(video_fp) and osp.exists(audio_fp):
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cmd = f'ffmpeg -i "{video_fp}" -i "{audio_fp}" -c:v copy -c:a aac "{wfp}" -y'
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exec_cmd(cmd)
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print(f'merge {video_fp} and {audio_fp} to {wfp}')
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else:
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print(f'video_fp: {video_fp} or audio_fp: {audio_fp} not exists!')
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def blend(img: np.ndarray, mask: np.ndarray, background_color=(255, 255, 255)):
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mask_float = mask.astype(np.float32) / 255.
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background_color = np.array(background_color).reshape([1, 1, 3])
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bg = np.ones_like(img) * background_color
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img = np.clip(mask_float * img + (1 - mask_float) * bg, 0, 255).astype(np.uint8)
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return img
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def concat_frame(driving_image_lst, source_image, I_p_lst):
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out_lst = []
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h, w, _ = I_p_lst[0].shape
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for idx, _ in track(enumerate(I_p_lst), total=len(I_p_lst), description='Concatenating result...'):
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I_p = I_p_lst[idx]
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source_image_resized = cv2.resize(source_image, (w, h))
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if driving_image_lst is None:
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out = np.hstack((source_image_resized, I_p))
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else:
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driving_image = driving_image_lst[idx]
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driving_image_resized = cv2.resize(driving_image, (w, h))
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out = np.hstack((driving_image_resized, source_image_resized, I_p))
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out_lst.append(out)
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return out_lst
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def concat_frames(driving_image_lst, source_image, I_p_lst):
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out_lst = []
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h, w, _ = I_p_lst[0].shape
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for idx, _ in track(enumerate(I_p_lst), total=len(I_p_lst), description='Concatenating result...'):
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I_p = I_p_lst[idx]
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source_image_resized = cv2.resize(source_image[idx], (w, h))
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if driving_image_lst is None:
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out = np.hstack((source_image_resized, I_p))
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else:
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driving_image = driving_image_lst[idx]
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driving_image_resized = cv2.resize(driving_image, (w, h))
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out = np.hstack((driving_image_resized, source_image_resized, I_p))
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out_lst.append(out)
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return out_lst
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class VideoWriter:
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def __init__(self, **kwargs):
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self.fps = kwargs.get('fps', 30)
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self.wfp = kwargs.get('wfp', 'video.mp4')
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self.video_format = kwargs.get('format', 'mp4')
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self.codec = kwargs.get('codec', 'libx264')
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self.quality = kwargs.get('quality')
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self.pixelformat = kwargs.get('pixelformat', 'yuv420p')
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self.image_mode = kwargs.get('image_mode', 'rgb')
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self.ffmpeg_params = kwargs.get('ffmpeg_params')
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self.writer = imageio.get_writer(
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self.wfp, fps=self.fps, format=self.video_format,
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codec=self.codec, quality=self.quality,
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ffmpeg_params=self.ffmpeg_params, pixelformat=self.pixelformat
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)
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def write(self, image):
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if self.image_mode.lower() == 'bgr':
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self.writer.append_data(image[..., ::-1])
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else:
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self.writer.append_data(image)
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def close(self):
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if self.writer is not None:
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self.writer.close()
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def change_video_fps(input_file, output_file, fps=20, codec='libx264', crf=12):
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cmd = f'ffmpeg -i "{input_file}" -c:v {codec} -crf {crf} -r {fps} "{output_file}" -y'
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exec_cmd(cmd)
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def get_fps(filepath, default_fps=25):
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try:
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fps = cv2.VideoCapture(filepath).get(cv2.CAP_PROP_FPS)
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if fps in (0, None):
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fps = default_fps
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except Exception as e:
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log(e)
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fps = default_fps
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return fps
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def has_audio_stream(video_path: str) -> bool:
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"""
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Check if the video file contains an audio stream.
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:param video_path: Path to the video file
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:return: True if the video contains an audio stream, False otherwise
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"""
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if osp.isdir(video_path):
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return False
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cmd = [
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'ffprobe',
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'-v', 'error',
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'-select_streams', 'a',
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'-show_entries', 'stream=codec_type',
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'-of', 'default=noprint_wrappers=1:nokey=1',
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f'"{video_path}"'
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]
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try:
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result = exec_cmd(' '.join(cmd))
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if result.returncode != 0:
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log(f"Error occurred while probing video: {result.stderr}")
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return False
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return bool(result.stdout.strip())
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except Exception as e:
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log(f"Error occurred while probing video: {video_path}, you may need to install ffprobe! Now set audio to false!", style="bold red")
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return False
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def add_audio_to_video(silent_video_path: str, audio_video_path: str, output_video_path: str):
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cmd = [
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'ffmpeg',
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'-y',
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'-i', f'"{silent_video_path}"',
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'-i', f'"{audio_video_path}"',
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'-map', '0:v',
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'-map', '1:a',
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'-c:v', 'copy',
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'-shortest',
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f'"{output_video_path}"'
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]
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try:
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exec_cmd(' '.join(cmd))
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log(f"Video with audio generated successfully: {output_video_path}")
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except subprocess.CalledProcessError as e:
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log(f"Error occurred: {e}")
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def bb_intersection_over_union(boxA, boxB):
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xA = max(boxA[0], boxB[0])
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yA = max(boxA[1], boxB[1])
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xB = min(boxA[2], boxB[2])
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yB = min(boxA[3], boxB[3])
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interArea = max(0, xB - xA + 1) * max(0, yB - yA + 1)
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boxAArea = (boxA[2] - boxA[0] + 1) * (boxA[3] - boxA[1] + 1)
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boxBArea = (boxB[2] - boxB[0] + 1) * (boxB[3] - boxB[1] + 1)
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iou = interArea / float(boxAArea + boxBArea - interArea)
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return iou
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