13 Commits
8 changed files with 136 additions and 64 deletions
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# flac2pod # flac2pod
Converts your existing FLAC library to be played on an iPod Classic. Converts your existing FLAC library to be played on an iPod Classic.
This script makes use of ffmpeg to convert your existing FLAC music library to AAC-256 for easy iPod Classic use. It can also bake your existing ReplayGain data into the output files. SoundCheck support was removed due to this feature being very finicky on iPods. If you would like to add SoundCheck data to your output files, omit the --bake option and then use https://github.com/rwinkhart/rg2sc on your output files. This script makes use of ffmpeg to convert your existing FLAC music library to AAC-256 for easy iPod Classic use. It can also bake your existing ReplayGain data into the output files. SoundCheck support was removed due to this feature being very finicky on iPods. If you would like to add SoundCheck data to your output files, omit the --bake option and then use https://github.com/rwinkhart/rg2sc on your output files.
In order for ReplayGain baking to work, your FLAC library must already be tagged with ReplayGain data. If you haven't already done this, flac2pod comes with a script (flac2pod-flacgain) for quickly applying these ReplayGain tags. In order for ReplayGain baking to work, your FLAC library must already be tagged with ReplayGain data. If you haven't already done this, flac2pod comes with a script (flac2pod-flacgain) for quickly applying these ReplayGain tags.
# WARNING
This is an older project of mine that is only updated to fix bugs and maintain compatibility. It is written rather poorly, but it does what it says on the tin, so I will not be investing time into rewriting it.
# Usage # Usage
Simply run... Simply run...
``` ```
flac2pod <source_dir> <destination_dir> flac2pod <source_dir> <destination_dir>
``` ```
...to convert your library, or run... ...to convert your library, or run...
``` ```
flac2pod --help flac2pod --help
``` ```
...to see additional options, or run... ...to see additional options, or run...
``` ```
flac2pod-flacgain <source_dir> flac2pod-flacgain <source_dir>
``` ```
...to tag your FLAC library with ReplayGain data.
...to tag your FLAC library with ReplayGain data, or run...
```
flac2pod-artconvert <source_dir>
```
...to convert embedded PNGs (in MP4/M4A files) to iPod-ready JPEGs.
In order for flac2pod to function, your source_dir must be structured as follows: In order for flac2pod to function, your source_dir must be structured as follows:
Executable
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#!/bin/sh
git add -f LICENSE README.md commit.sh package.sh share lib/flac2pod-artconvert.py lib/flac2pod-flacgain.py lib/flac2pod.py
git commit -m "$1"
git push
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#!/usr/bin/env python3
from argparse import ArgumentParser
from flac2pod import scan_source
from mutagen import mp4
from mutagen.mp4 import MP4Cover
from os import listdir
from PIL import Image
if __name__ == "__main__":
parser = ArgumentParser(description='Convert embedded album art in MP4/M4A files from PNGs to iPod-compatible '
'JPEGs.')
parser.add_argument('source_dir', nargs='+',
help='directory tree containing music files - folder must contain library sorted into artists '
'and albums')
args = parser.parse_args()
if args.source_dir[0].endswith('/'):
source = args.source_dir[0][:-1]
else:
source = args.source_dir[0]
source_directories = scan_source(source)
for album in sorted(source_directories[0]):
for song in listdir(album):
audio = mp4.MP4(f"{album}/{song}")
if audio.tags is None:
continue
if "covr" not in audio.tags:
continue
cover = audio.tags["covr"][0]
print(f"[{album}/{song}] Converting...")
open("/tmp/cover.png", "wb").write(cover)
image = Image.open("/tmp/cover.png")
image.thumbnail((300, 300))
image.save("/tmp/cover.jpeg", "JPEG", quality=50)
with open("/tmp/cover.jpeg", "rb") as f:
audio["covr"] = [
MP4Cover(f.read(), imageformat=MP4Cover.FORMAT_JPEG)
]
audio.save()
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@@ -2,12 +2,12 @@
from argparse import ArgumentParser from argparse import ArgumentParser
from flac2pod import scan_source from flac2pod import scan_source
from glob import glob
from mutagen.flac import FLAC, FLACNoHeaderError from mutagen.flac import FLAC, FLACNoHeaderError
from os import listdir, system from os import listdir
from subprocess import PIPE, run from subprocess import PIPE, run
from sys import exit as s_exit from sys import exit as s_exit
# argument parsing
if __name__ == "__main__": if __name__ == "__main__":
parser = ArgumentParser(description='Quickly tag your FLAC library with ReplayGain data using metaflac.') parser = ArgumentParser(description='Quickly tag your FLAC library with ReplayGain data using metaflac.')
parser.add_argument('source_dir', nargs='+', parser.add_argument('source_dir', nargs='+',
@@ -26,33 +26,35 @@ if __name__ == "__main__":
gain = 1 gain = 1
for album in sorted(source_directories[0]): for album in sorted(source_directories[0]):
std_album = album.replace(' ', '\\ ').replace("'", "\\'").replace(')', '\\)').replace('(', '\\(')\
.replace(']', '\\]').replace('[', '\\[').replace('&', '\\&').replace('`', '\\`').replace('$', '\\$')
for song in listdir(album): for song in listdir(album):
gain = 1 # reset for each song
if not song.lower().endswith('.flac'):
gain = 2 # set non-flac signal
else:
try: try:
audio = FLAC(f"{album}/{song}") audio = FLAC(f"{album}/{song}")
if audio.get('replaygain_track_gain') or audio.get('REPLAYGAIN_TRACK_GAIN'): if audio.get('replaygain_track_gain') or audio.get('REPLAYGAIN_TRACK_GAIN'):
gain = 1 print(f"[{album}/*] ReplayGain data is already present.")
break
else: else:
gain = 0 gain = 0
break
except FLACNoHeaderError: except FLACNoHeaderError:
gain = 2 # set non-flac signal
if gain == 2:
print(f"[{album}/*] Contains non-FLAC files, skipping album...") print(f"[{album}/*] Contains non-FLAC files, skipping album...")
gain = 2 break
if gain != 2 and (args.force or gain == 0): if gain != 2 and (args.force or gain == 0):
print(f"[{album}/*] Adding ReplayGain data...") print(f"[{album}/*] Adding ReplayGain data...")
system(f"metaflac --remove-replay-gain {std_album}/*") album_files = glob(album + '/*')
output = run(f"metaflac --add-replay-gain {std_album}/*", shell=True, stderr=PIPE, text=True) run(['metaflac', '--remove-replay-gain'] + album_files)
output = run(['metaflac', '--add-replay-gain'] + album_files, stderr=PIPE, text=True)
if output.returncode == 1: if output.returncode == 1:
if output.stderr.__contains__('sample') or output.stderr.__contains__('resolution of') or output.\ if output.stderr.__contains__('sample') or output.stderr.__contains__('resolution of') or output.\
stderr.__contains__('does not match'): stderr.__contains__('does not match'):
print('Resolution/Sample Rate/Channel mismatch, scanning tracks as individuals...') print('Resolution/Sample Rate/Channel mismatch, scanning tracks as individuals...')
for song in listdir(album): for song in listdir(album):
print(f"[{album}/{song}] Adding ReplayGain data...") print(f"[{album}/{song}] Adding ReplayGain data...")
std_song = song.replace(' ', '\\ ').replace("'", "\\'").replace(')', '\\)')\ output = run(('metaflac', '--add-replay-gain', f"{album}/{song}"), stderr=PIPE, text=True)
.replace('(', '\\(').replace('&', '\\&').replace('`', '\\`').replace('$', '\\$')
output = run(f"metaflac --add-replay-gain {std_album}/{std_song}", shell=True, stderr=PIPE,
text=True)
if output.returncode == 1: if output.returncode == 1:
print('There was an error processing your files.') print('There was an error processing your files.')
print(f"Return Code: [{str(output.returncode)}] {output.stderr}") print(f"Return Code: [{str(output.returncode)}] {output.stderr}")
@@ -61,8 +63,3 @@ if __name__ == "__main__":
print('There was an error processing your files.') print('There was an error processing your files.')
print(f"Return Code: [{str(output.returncode)}] {output.stderr}") print(f"Return Code: [{str(output.returncode)}] {output.stderr}")
s_exit(1) s_exit(1)
else:
print(f"[{album}/*] ReplayGain data is already present.")
s_exit(0)
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@@ -1,19 +1,16 @@
#!/usr/bin/env python3 #!/usr/bin/env python3
# external modules
from argparse import ArgumentParser from argparse import ArgumentParser
from mutagen.flac import FLAC from mutagen.flac import FLAC
from os import cpu_count, path, walk from os import cpu_count, getuid, listdir, path, stat, walk
from pathlib import Path from pathlib import Path
from shutil import copy from shutil import copy
from subprocess import check_output, Popen from subprocess import DEVNULL, Popen
from sys import exit as s_exit from sys import exit as s_exit
from time import sleep from time import sleep
# utility functions # scans source directory for music files, returns lists of album directories and their full paths
def scan_source(_source): def scan_source(_source):
_artist_dirs, _album_dirs, _full_paths = [], [], [] _artist_dirs, _album_dirs, _full_paths = [], [], []
for _root, _directories, _files in walk(path.expanduser(_source)): for _root, _directories, _files in walk(path.expanduser(_source)):
@@ -29,18 +26,34 @@ def scan_source(_source):
for _album in sorted(_album_dirs): for _album in sorted(_album_dirs):
for _root, _directories, _files in walk(path.expanduser(_album)): for _root, _directories, _files in walk(path.expanduser(_album)):
for _filename in _files: for _filename in _files:
if _filename.endswith('.flac') or _filename.endswith('.mp3') or _filename.endswith('.mp4') \ if _filename.lower().endswith('.flac') or _filename.lower().endswith('.mp3') or \
or _filename.endswith('.m4a'): _filename.lower().endswith('.mp4') or _filename.lower().endswith('.m4a'):
_full_paths.append(f"{_album}/{_filename}") _full_paths.append(f"{_album}/{_filename}")
return _album_dirs, _full_paths return _album_dirs, _full_paths
# creates destination directory structure
def create_destination(): def create_destination():
for _dir in source_directories[0]: for _dir in source_directories[0]:
Path(path.expanduser(_dir.replace(path.expanduser(source), path.expanduser(destination))))\ Path(path.expanduser(_dir.replace(path.expanduser(source), path.expanduser(destination))))\
.mkdir(0o700, parents=True, exist_ok=True) .mkdir(0o700, parents=True, exist_ok=True)
# counts how many ffmpeg processes are running under the current user
def count_user_ffmpeg_processes():
_user = getuid()
_proc_directory = '/proc'
_running_processes = 0
_subdirectories = [_d for _d in listdir(_proc_directory) if path.isdir(path.join(_proc_directory, _d))]
for _subdirectory in _subdirectories:
if _subdirectory.isnumeric():
if stat(_proc_directory + '/' + _subdirectory).st_uid == _user:
with open(_proc_directory + '/' + _subdirectory + '/cmdline', 'r') as _f:
if _f.read().startswith('ffmpeg'):
_running_processes += 1
return _running_processes
def scan_destination_convert(): def scan_destination_convert():
_i, _i_total, _total_files = 0, 0, len(source_directories[1]) _i, _i_total, _total_files = 0, 0, len(source_directories[1])
for _file in source_directories[1]: for _file in source_directories[1]:
@@ -48,25 +61,19 @@ def scan_destination_convert():
_progress = round((_i_total / _total_files) * 100, 2) _progress = round((_i_total / _total_files) * 100, 2)
if not Path(f"{(_file.replace(path.expanduser(source), path.expanduser(destination)))[:-5]}.m4a").is_file()\ if not Path(f"{(_file.replace(path.expanduser(source), path.expanduser(destination)))[:-5]}.m4a").is_file()\
and not Path(f"{(_file.replace(path.expanduser(source), path.expanduser(destination)))}").is_file(): and not Path(f"{(_file.replace(path.expanduser(source), path.expanduser(destination)))}").is_file():
if not _file.endswith('.flac'): if not _file.lower().endswith('.flac'):
print(f"[{_file}] Not a FLAC file, copying...") print(f"[{_file}] Not a FLAC file, copying...")
copy(f"{_file}", f"{_file.replace(path.expanduser(source), path.expanduser(destination))}") copy(f"{_file}", f"{_file.replace(path.expanduser(source), path.expanduser(destination))}")
else: else:
_file_s = _file.replace(' ', '\\ ').replace("'", "\\'").replace(')', '\\)').replace('(', '\\(') \ _file_d = _file.replace(path.expanduser(source), path.expanduser(destination))[:-5] + '.m4a'
.replace(']', '\\]').replace('[', '\\[').replace('&', '\\&').replace('`', '\\`') \ _active_processes = count_user_ffmpeg_processes()
.replace('$', '\\$')
_file_d = _file.replace(path.expanduser(source), path.expanduser(destination)).replace(' ', '\\ ') \
.replace("'", "\\'").replace(')', '\\)').replace('(', '\\(').replace(']', '\\]') \
.replace('[', '\\[').replace('&', '\\&').replace('`', '\\`').replace('$', '\\$')[
:-5] + '.m4a'
_active_processes = int(check_output('ps -C ffmpeg | wc -l', shell=True)) - 1
if _active_processes >= cpu_count():
while _active_processes >= cpu_count(): while _active_processes >= cpu_count():
print(f"\nThere are already {cpu_count()} processes running...\n") print(f"\nThere are already {_active_processes} processes running on your {cpu_count()} "
f"threads...\n")
sleep(1) sleep(1)
_active_processes = int(check_output('ps -C ffmpeg | wc -l', shell=True)) - 1 _active_processes = count_user_ffmpeg_processes()
_i += 1 _i += 1
print(f"\n{_progress}% | \u001b[38;5;0;48;5;15mConverting {_file_s} to {_file_d}...\u001b[0m\n") print(f"\n{_progress}% | \u001b[38;5;0;48;5;15mConverting {_file} to {_file_d}...\u001b[0m\n")
# get relevant ReplayGain info # get relevant ReplayGain info
_audio = FLAC(f"{_file}") _audio = FLAC(f"{_file}")
if args.albumgain: if args.albumgain:
@@ -97,27 +104,30 @@ def scan_destination_convert():
_rgpeak = None _rgpeak = None
# determine ffmpeg arguments # determine ffmpeg arguments
if args.bake and _rggain is not None: if args.bake and _rggain is not None:
_bake_args, _flac2pod_rg_tags = '-filter:a "volume=' + str(_rggain) + 'dB"', '' _bake_args, _flac2pod_rg_tags = ['-filter:a', 'volume=' + str(_rggain) + 'dB'], []
elif _rggain is not None and _rgpeak is not None: elif _rggain is not None and _rgpeak is not None:
_bake_args, _flac2pod_rg_tags = '', f"-metadata comment='FLAC2PODRG#{_rggain}#{_rgpeak}#'" _bake_args, _flac2pod_rg_tags = [], ['-metadata', f"comment=FLAC2PODRG#{_rggain}#{_rgpeak}#"]
else: else:
_bake_args, _flac2pod_rg_tags = '', '' _bake_args, _flac2pod_rg_tags = [], []
if args.preserve:
_art_args = ['-c:v', 'copy', '-map_metadata', '0:g']
else:
_art_args = ['-vn']
# generate the appropriate ffmpeg command # generate the appropriate ffmpeg command
_cmd = f"screen -DmS flac2pod{_i} ffmpeg -i {_file_s} -c:a aac -ab 256k {_bake_args} -map_metadata 0 " \ _cmd = ['ffmpeg', '-i', _file] + _art_args + ['-c:a', 'aac', '-b:a', '256k'] + _bake_args +\
f"{_flac2pod_rg_tags} -aac_pns 0 -movflags +faststart -vn {_file_d} </dev/null" _flac2pod_rg_tags + ['-aac_pns', '0', '-movflags', '+faststart', _file_d]
if _rggain is not None: if _rggain is not None:
print(f"\u001b[38;5;0;48;5;15mGain adjustment: {_rggain}dB\u001b[0m") print(f"\u001b[38;5;0;48;5;15mGain adjustment: {_rggain}dB\u001b[0m")
else: else:
print(f"\u001b[38;5;0;48;5;88mNo ReplayGain data found!\u001b[0m") print('\u001b[38;5;0;48;5;88mNo ReplayGain data found!\u001b[0m')
if args.stopifnogain: if args.stopifnogain:
s_exit(1) s_exit(1)
Popen(_cmd, shell=True) Popen(_cmd, stdout=DEVNULL, stderr=DEVNULL)
_active_processes = int(check_output('ps -C ffmpeg | wc -l', shell=True)) - 1 _active_processes = count_user_ffmpeg_processes()
while _active_processes != 0: while _active_processes != 0:
print('\nPlease wait for the remaining conversions to complete...\n') print(f"\nPlease wait for the remaining {_active_processes} conversions to complete...\n")
sleep(1)
_active_processes = int(check_output('ps -C ffmpeg | wc -l', shell=True)) - 1
sleep(1) sleep(1)
_active_processes = count_user_ffmpeg_processes()
print('\niPod conversion complete!\n') print('\niPod conversion complete!\n')
s_exit(0) s_exit(0)
@@ -131,11 +141,13 @@ if __name__ == "__main__":
parser.add_argument('destination_dir', nargs='+', parser.add_argument('destination_dir', nargs='+',
help='destination parent directory for output - will be created if it does not already exist') help='destination parent directory for output - will be created if it does not already exist')
parser.add_argument('-b', '--bake', action='store_true', parser.add_argument('-b', '--bake', action='store_true',
help='bake (encode) ReplayGain values into the file') help='bake (encode) ReplayGain values into output files')
parser.add_argument('-a', '--albumgain', action='store_true', parser.add_argument('-a', '--albumgain', action='store_true',
help='read ReplayGain album gain instead of ReplayGain track gain') help='read ReplayGain album gain instead of ReplayGain track gain')
parser.add_argument('-x', '--stopifnogain', action='store_true', parser.add_argument('-x', '--stopifnogain', action='store_true',
help='stop flac2pod if ReplayGain data cannot be found in a file') help='stop flac2pod if ReplayGain data cannot be found in a file')
parser.add_argument('-p', '--preserve', action='store_true',
help='copy album art from input files')
args = parser.parse_args() args = parser.parse_args()
if args.source_dir[0].endswith('/'): if args.source_dir[0].endswith('/'):
@@ -150,5 +162,3 @@ if __name__ == "__main__":
source_directories = scan_source(source) source_directories = scan_source(source)
create_destination() create_destination()
scan_destination_convert() scan_destination_convert()
s_exit(0)
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@@ -19,6 +19,7 @@ echo -e '\npackaging as generic...\n'
mkdir -p output/generictemp/usr/{bin,lib/flac2pod} mkdir -p output/generictemp/usr/{bin,lib/flac2pod}
cp -r lib/. output/generictemp/usr/lib/flac2pod/ cp -r lib/. output/generictemp/usr/lib/flac2pod/
ln -s /usr/lib/flac2pod/flac2pod.py output/generictemp/usr/bin/flac2pod ln -s /usr/lib/flac2pod/flac2pod.py output/generictemp/usr/bin/flac2pod
ln -s /usr/lib/flac2pod/flac2pod-artconvert.py output/generictemp/usr/bin/flac2pod-artconvert
ln -s /usr/lib/flac2pod/flac2pod-flacgain.py output/generictemp/usr/bin/flac2pod-flacgain ln -s /usr/lib/flac2pod/flac2pod-flacgain.py output/generictemp/usr/bin/flac2pod-flacgain
cp -r share output/generictemp/usr/ cp -r share output/generictemp/usr/
tar -C output/generictemp -cvJf output/flac2pod-"$version".tar.xz usr/ tar -C output/generictemp -cvJf output/flac2pod-"$version".tar.xz usr/
@@ -37,7 +38,7 @@ pkgdesc='Converts your FLAC library to be iPod-ready'
url='https://github.com/rwinkhart/flac2pod' url='https://github.com/rwinkhart/flac2pod'
arch=('any') arch=('any')
license=('GPL2') license=('GPL2')
depends=(ffmpeg flac python python-mutagen screen) depends=(ffmpeg flac python python-mutagen python-pillow)
source=(\""$source"\") source=(\""$source"\")
sha512sums=('"$sha512"') sha512sums=('"$sha512"')
Executable → Regular
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@@ -1,5 +1,5 @@
flac2pod is a FOSS audio transcoding script for preparing music for an Apple iPod. flac2pod is a FOSS audio transcoding script for preparing music for an Apple iPod.
Copyright (C) 2022 Randall Winkhart idgr@tutanota.com Copyright (C) 2022-2023 Randall Winkhart idgr@tutanota.com
This program is free software; you can redistribute it and/or modify This program is free software; you can redistribute it and/or modify
it under the terms of the GNU General Public License as published by it under the terms of the GNU General Public License as published by