mirror of
https://github.com/deepfakes/faceswap
synced 2025-06-08 11:53:26 -04:00
524 lines
20 KiB
Python
524 lines
20 KiB
Python
#!/usr/bin python3
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""" Utilities available across all scripts """
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import logging
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import os
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import sys
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import urllib
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import warnings
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import zipfile
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from socket import timeout as socket_timeout, error as socket_error
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from hashlib import sha1
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from pathlib import Path
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from re import finditer
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from tqdm import tqdm
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import numpy as np
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import cv2
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from lib.faces_detect import DetectedFace
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# Global variables
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_image_extensions = [ # pylint:disable=invalid-name
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".bmp", ".jpeg", ".jpg", ".png", ".tif", ".tiff"]
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_video_extensions = [ # pylint:disable=invalid-name
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".avi", ".flv", ".mkv", ".mov", ".mp4", ".mpeg", ".webm"]
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def get_folder(path, make_folder=True):
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""" Return a path to a folder, creating it if it doesn't exist """
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logger = logging.getLogger(__name__) # pylint:disable=invalid-name
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logger.debug("Requested path: '%s'", path)
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output_dir = Path(path)
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if not make_folder and not output_dir.exists():
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logger.debug("%s does not exist", path)
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return None
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output_dir.mkdir(parents=True, exist_ok=True)
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logger.debug("Returning: '%s'", output_dir)
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return output_dir
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def get_image_paths(directory):
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""" Return a list of images that reside in a folder """
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logger = logging.getLogger(__name__) # pylint:disable=invalid-name
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image_extensions = _image_extensions
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dir_contents = list()
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if not os.path.exists(directory):
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logger.debug("Creating folder: '%s'", directory)
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directory = get_folder(directory)
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dir_scanned = sorted(os.scandir(directory), key=lambda x: x.name)
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logger.debug("Scanned Folder contains %s files", len(dir_scanned))
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logger.trace("Scanned Folder Contents: %s", dir_scanned)
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for chkfile in dir_scanned:
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if any([chkfile.name.lower().endswith(ext)
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for ext in image_extensions]):
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logger.trace("Adding '%s' to image list", chkfile.path)
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dir_contents.append(chkfile.path)
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logger.debug("Returning %s images", len(dir_contents))
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return dir_contents
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def full_path_split(path):
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""" Split a given path into all of it's separate components """
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logger = logging.getLogger(__name__) # pylint:disable=invalid-name
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allparts = list()
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while True:
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parts = os.path.split(path)
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if parts[0] == path: # sentinel for absolute paths
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allparts.insert(0, parts[0])
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break
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elif parts[1] == path: # sentinel for relative paths
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allparts.insert(0, parts[1])
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break
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else:
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path = parts[0]
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allparts.insert(0, parts[1])
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logger.trace("path: %s, allparts: %s", path, allparts)
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return allparts
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def cv2_read_img(filename, raise_error=False):
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""" Read an image with cv2 and check that an image was actually loaded.
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Logs an error if the image returned is None. or an error has occured.
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Pass raise_error=True if error should be raised """
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logger = logging.getLogger(__name__) # pylint:disable=invalid-name
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logger.trace("Requested image: '%s'", filename)
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success = True
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image = None
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try:
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image = cv2.imread(filename) # pylint:disable=no-member,c-extension-no-member
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if image is None:
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raise ValueError
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except TypeError:
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success = False
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msg = "Error while reading image (TypeError): '{}'".format(filename)
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logger.error(msg)
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if raise_error:
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raise Exception(msg)
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except ValueError:
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success = False
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msg = ("Error while reading image. This is most likely caused by special characters in "
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"the filename: '{}'".format(filename))
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logger.error(msg)
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if raise_error:
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raise Exception(msg)
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except Exception as err: # pylint:disable=broad-except
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success = False
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msg = "Failed to load image '{}'. Original Error: {}".format(filename, str(err))
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logger.error(msg)
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if raise_error:
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raise Exception(msg)
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logger.trace("Loaded image: '%s'. Success: %s", filename, success)
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return image
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def hash_image_file(filename):
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""" Return an image file's sha1 hash """
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logger = logging.getLogger(__name__) # pylint:disable=invalid-name
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img = cv2_read_img(filename, raise_error=True)
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img_hash = sha1(img).hexdigest()
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logger.trace("filename: '%s', hash: %s", filename, img_hash)
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return img_hash
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def hash_encode_image(image, extension):
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""" Encode the image, get the hash and return the hash with
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encoded image """
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img = cv2.imencode(extension, image)[1] # pylint:disable=no-member,c-extension-no-member
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f_hash = sha1(
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cv2.imdecode( # pylint:disable=no-member,c-extension-no-member
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img,
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cv2.IMREAD_UNCHANGED)).hexdigest() # pylint:disable=no-member,c-extension-no-member
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return f_hash, img
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def backup_file(directory, filename):
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""" Backup a given file by appending .bk to the end """
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logger = logging.getLogger(__name__) # pylint:disable=invalid-name
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logger.trace("Backing up: '%s'", filename)
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origfile = os.path.join(directory, filename)
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backupfile = origfile + '.bk'
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if os.path.exists(backupfile):
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logger.trace("Removing existing file: '%s'", backup_file)
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os.remove(backupfile)
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if os.path.exists(origfile):
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logger.trace("Renaming: '%s' to '%s'", origfile, backup_file)
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os.rename(origfile, backupfile)
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def keras_backend_quiet():
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""" Suppresses the "Using x backend" message when importing
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backend from keras """
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stderr = sys.stderr
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sys.stderr = open(os.devnull, 'w')
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from keras import backend as K
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sys.stderr = stderr
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return K
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def set_system_verbosity(loglevel):
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""" Set the verbosity level of tensorflow and suppresses
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future and deprecation warnings from any modules
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From:
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https://stackoverflow.com/questions/35911252/disable-tensorflow-debugging-information
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Can be set to:
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0 - all logs shown
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1 - filter out INFO logs
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2 - filter out WARNING logs
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3 - filter out ERROR logs """
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logger = logging.getLogger(__name__) # pylint:disable=invalid-name
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from lib.logger import get_loglevel
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numeric_level = get_loglevel(loglevel)
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loglevel = "2" if numeric_level > 15 else "0"
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logger.debug("System Verbosity level: %s", loglevel)
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os.environ['TF_CPP_MIN_LOG_LEVEL'] = loglevel
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if loglevel != '0':
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for warncat in (FutureWarning, DeprecationWarning, UserWarning):
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warnings.simplefilter(action='ignore', category=warncat)
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def deprecation_warning(func_name, additional_info=None):
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""" Log at warning level that a function will be removed in future """
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logger = logging.getLogger(__name__) # pylint:disable=invalid-name
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logger.debug("func_name: %s, additional_info: %s", func_name, additional_info)
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msg = "{} has been deprecated and will be removed from a future update.".format(func_name)
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if additional_info is not None:
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msg += " {}".format(additional_info)
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logger.warning(msg)
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def rotate_landmarks(face, rotation_matrix):
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# pylint:disable=c-extension-no-member
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""" Rotate the landmarks and bounding box for faces
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found in rotated images.
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Pass in a DetectedFace object, Alignments dict or bounding box dict
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(as defined in lib/plugins/extract/detect/_base.py) """
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logger = logging.getLogger(__name__) # pylint:disable=invalid-name
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logger.trace("Rotating landmarks: (rotation_matrix: %s, type(face): %s",
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rotation_matrix, type(face))
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# Detected Face Object
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if isinstance(face, DetectedFace):
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bounding_box = [[face.x, face.y],
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[face.x + face.w, face.y],
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[face.x + face.w, face.y + face.h],
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[face.x, face.y + face.h]]
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landmarks = face.landmarksXY
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# Alignments Dict
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elif isinstance(face, dict) and "x" in face:
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bounding_box = [[face.get("x", 0), face.get("y", 0)],
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[face.get("x", 0) + face.get("w", 0),
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face.get("y", 0)],
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[face.get("x", 0) + face.get("w", 0),
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face.get("y", 0) + face.get("h", 0)],
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[face.get("x", 0),
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face.get("y", 0) + face.get("h", 0)]]
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landmarks = face.get("landmarksXY", list())
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# Bounding Box Dict
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elif isinstance(face, dict) and "left" in face:
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bounding_box = [[face["left"], face["top"]],
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[face["right"], face["top"]],
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[face["right"], face["bottom"]],
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[face["left"], face["bottom"]]]
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landmarks = list()
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else:
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raise ValueError("Unsupported face type")
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logger.trace("Original landmarks: %s", landmarks)
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rotation_matrix = cv2.invertAffineTransform( # pylint:disable=no-member
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rotation_matrix)
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rotated = list()
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for item in (bounding_box, landmarks):
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if not item:
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continue
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points = np.array(item, np.int32)
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points = np.expand_dims(points, axis=0)
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transformed = cv2.transform(points, # pylint:disable=no-member
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rotation_matrix).astype(np.int32)
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rotated.append(transformed.squeeze())
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# Bounding box should follow x, y planes, so get min/max
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# for non-90 degree rotations
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pt_x = min([pnt[0] for pnt in rotated[0]])
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pt_y = min([pnt[1] for pnt in rotated[0]])
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pt_x1 = max([pnt[0] for pnt in rotated[0]])
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pt_y1 = max([pnt[1] for pnt in rotated[0]])
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width = pt_x1 - pt_x
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height = pt_y1 - pt_y
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if isinstance(face, DetectedFace):
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face.x = int(pt_x)
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face.y = int(pt_y)
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face.w = int(width)
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face.h = int(height)
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face.r = 0
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if len(rotated) > 1:
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rotated_landmarks = [tuple(point) for point in rotated[1].tolist()]
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face.landmarksXY = rotated_landmarks
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elif isinstance(face, dict) and "x" in face:
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face["x"] = int(pt_x)
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face["y"] = int(pt_y)
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face["w"] = int(width)
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face["h"] = int(height)
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face["r"] = 0
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if len(rotated) > 1:
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rotated_landmarks = [tuple(point) for point in rotated[1].tolist()]
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face["landmarksXY"] = rotated_landmarks
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else:
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face["left"] = int(pt_x)
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face["top"] = int(pt_y)
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face["right"] = int(pt_x1)
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face["bottom"] = int(pt_y1)
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logger.trace("Rotated landmarks: %s", rotated_landmarks)
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return face
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def camel_case_split(identifier):
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""" Split a camel case name
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from: https://stackoverflow.com/questions/29916065 """
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matches = finditer(
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".+?(?:(?<=[a-z])(?=[A-Z])|(?<=[A-Z])(?=[A-Z][a-z])|$)",
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identifier)
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return [m.group(0) for m in matches]
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def safe_shutdown():
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""" Close queues, threads and processes in event of crash """
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logger = logging.getLogger(__name__) # pylint:disable=invalid-name
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logger.debug("Safely shutting down")
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from lib.queue_manager import queue_manager
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from lib.multithreading import terminate_processes
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queue_manager.terminate_queues()
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terminate_processes()
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logger.debug("Cleanup complete. Shutting down queue manager and exiting")
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queue_manager._log_queue.put(None) # pylint:disable=protected-access
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while not queue_manager._log_queue.empty(): # pylint:disable=protected-access
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continue
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queue_manager.manager.shutdown()
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class FaceswapError(Exception):
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""" Faceswap Error for handling specific errors with useful information """
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pass # pylint:disable=unnecessary-pass
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class GetModel():
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""" Check for models in their cache path
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If available, return the path, if not available, get, unzip and install model
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model_filename: The name of the model to be loaded (see notes below)
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cache_dir: The model cache folder of the current plugin calling this class
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IE: The folder that holds the model to be loaded.
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git_model_id: The second digit in the github tag that identifies this model.
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See https://github.com/deepfakes-models/faceswap-models for more
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information
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NB: Models must have a certain naming convention:
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IE: <model_name>_v<version_number>.<extension>
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EG: s3fd_v1.pb
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Multiple models can exist within the model_filename. They should be passed as a list
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and follow the same naming convention as above. Any differences in filename should
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occur AFTER the version number.
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IE: [<model_name>_v<version_number><differentiating_information>.<extension>]
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EG: [mtcnn_det_v1.1.py, mtcnn_det_v1.2.py, mtcnn_det_v1.3.py]
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[resnet_ssd_v1.caffemodel, resnet_ssd_v1.prototext]
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"""
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def __init__(self, model_filename, cache_dir, git_model_id):
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self.logger = logging.getLogger(__name__) # pylint:disable=invalid-name
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if not isinstance(model_filename, list):
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model_filename = [model_filename]
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self.model_filename = model_filename
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self.cache_dir = cache_dir
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self.git_model_id = git_model_id
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self.url_base = "https://github.com/deepfakes-models/faceswap-models/releases/download"
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self.chunk_size = 1024 # Chunk size for downloading and unzipping
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self.retries = 6
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self.get()
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self.model_path = self._model_path
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@property
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def _model_full_name(self):
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""" Return the model full name from the filename(s) """
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common_prefix = os.path.commonprefix(self.model_filename)
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retval = os.path.splitext(common_prefix)[0]
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self.logger.trace(retval)
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return retval
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@property
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def _model_name(self):
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""" Return the model name from the model full name """
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retval = self._model_full_name[:self._model_full_name.rfind("_")]
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self.logger.trace(retval)
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return retval
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@property
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def _model_version(self):
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""" Return the model version from the model full name """
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retval = int(self._model_full_name[self._model_full_name.rfind("_") + 2:])
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self.logger.trace(retval)
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return retval
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@property
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def _model_path(self):
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""" Return the model path(s) in the cache folder """
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retval = [os.path.join(self.cache_dir, fname) for fname in self.model_filename]
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retval = retval[0] if len(retval) == 1 else retval
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self.logger.trace(retval)
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return retval
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@property
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def _model_zip_path(self):
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""" Full path to downloaded zip file """
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retval = os.path.join(self.cache_dir, "{}.zip".format(self._model_full_name))
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self.logger.trace(retval)
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return retval
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@property
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def _model_exists(self):
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""" Check model(s) exist """
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if isinstance(self._model_path, list):
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retval = all(os.path.exists(pth) for pth in self._model_path)
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else:
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retval = os.path.exists(self._model_path)
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self.logger.trace(retval)
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return retval
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@property
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def _plugin_section(self):
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""" Get the plugin section from the config_dir """
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path = os.path.normpath(self.cache_dir)
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split = path.split(os.sep)
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retval = split[split.index("plugins") + 1]
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self.logger.trace(retval)
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return retval
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@property
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def _url_section(self):
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""" Return the section ID in github for this plugin type """
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sections = dict(extract=1, train=2, convert=3)
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retval = sections[self._plugin_section]
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self.logger.trace(retval)
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return retval
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@property
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def _url_download(self):
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""" Base URL for models """
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tag = "v{}.{}.{}".format(self._url_section, self.git_model_id, self._model_version)
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retval = "{}/{}/{}.zip".format(self.url_base, tag, self._model_full_name)
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self.logger.trace("Download url: %s", retval)
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return retval
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@property
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def _url_partial_size(self):
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""" Return how many bytes have already been downloaded """
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zip_file = self._model_zip_path
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retval = os.path.getsize(zip_file) if os.path.exists(zip_file) else 0
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self.logger.trace(retval)
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return retval
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def get(self):
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""" Check the model exists, if not, download and unzip into location """
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if self._model_exists:
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self.logger.debug("Model exists: %s", self._model_path)
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return
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self.download_model()
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self.unzip_model()
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os.remove(self._model_zip_path)
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def download_model(self):
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""" Download model zip to cache dir """
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self.logger.info("Downloading model: '%s' from: %s", self._model_name, self._url_download)
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for attempt in range(self.retries):
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try:
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downloaded_size = self._url_partial_size
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req = urllib.request.Request(self._url_download)
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if downloaded_size != 0:
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req.add_header("Range", "bytes={}-".format(downloaded_size))
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response = urllib.request.urlopen(req, timeout=10)
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self.logger.debug("header info: {%s}", response.info())
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self.logger.debug("Return Code: %s", response.getcode())
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self.write_zipfile(response, downloaded_size)
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break
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except (socket_error, socket_timeout,
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urllib.error.HTTPError, urllib.error.URLError) as err:
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if attempt + 1 < self.retries:
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self.logger.warning("Error downloading model (%s). Retrying %s of %s...",
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str(err), attempt + 2, self.retries)
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else:
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self.logger.error("Failed to download model. Exiting. (Error: '%s', URL: "
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"'%s')", str(err), self._url_download)
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self.logger.info("You can try running again to resume the download.")
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self.logger.info("Alternatively, you can manually download the model from: %s "
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"and unzip the contents to: %s",
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self._url_download, self.cache_dir)
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|
exit(1)
|
|
|
|
def write_zipfile(self, response, downloaded_size):
|
|
""" Write the model zip file to disk """
|
|
length = int(response.getheader("content-length")) + downloaded_size
|
|
if length == downloaded_size:
|
|
self.logger.info("Zip already exists. Skipping download")
|
|
return
|
|
write_type = "wb" if downloaded_size == 0 else "ab"
|
|
with open(self._model_zip_path, write_type) as out_file:
|
|
pbar = tqdm(desc="Downloading",
|
|
unit="B",
|
|
total=length,
|
|
unit_scale=True,
|
|
unit_divisor=1024)
|
|
if downloaded_size != 0:
|
|
pbar.update(downloaded_size)
|
|
while True:
|
|
buffer = response.read(self.chunk_size)
|
|
if not buffer:
|
|
break
|
|
pbar.update(len(buffer))
|
|
out_file.write(buffer)
|
|
|
|
def unzip_model(self):
|
|
""" Unzip the model file to the cachedir """
|
|
self.logger.info("Extracting: '%s'", self._model_name)
|
|
try:
|
|
zip_file = zipfile.ZipFile(self._model_zip_path, "r")
|
|
self.write_model(zip_file)
|
|
except Exception as err: # pylint:disable=broad-except
|
|
self.logger.error("Unable to extract model file: %s", str(err))
|
|
exit(1)
|
|
|
|
def write_model(self, zip_file):
|
|
""" Extract files from zipfile and write, with progress bar """
|
|
length = sum(f.file_size for f in zip_file.infolist())
|
|
fnames = zip_file.namelist()
|
|
self.logger.debug("Zipfile: Filenames: %s, Total Size: %s", fnames, length)
|
|
pbar = tqdm(desc="Decompressing",
|
|
unit="B",
|
|
total=length,
|
|
unit_scale=True,
|
|
unit_divisor=1024)
|
|
for fname in fnames:
|
|
out_fname = os.path.join(self.cache_dir, fname)
|
|
self.logger.debug("Extracting from: '%s' to '%s'", self._model_zip_path, out_fname)
|
|
zipped = zip_file.open(fname)
|
|
with open(out_fname, "wb") as out_file:
|
|
while True:
|
|
buffer = zipped.read(self.chunk_size)
|
|
if not buffer:
|
|
break
|
|
pbar.update(len(buffer))
|
|
out_file.write(buffer)
|
|
zip_file.close()
|