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Codec2 encode and decode
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import os
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import io
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import math
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import time
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import struct
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import numpy as np
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import RNS
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import LXMF
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if RNS.vendor.platformutils.is_android():
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import pyogg
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from pydub import AudioSegment
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else:
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import sbapp.pyogg as pyogg
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from sbapp.pydub import AudioSegment
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codec2_modes = {
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# LXMF.AM_CODEC2_450PWB: ???, # No bindings
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# LXMF.AM_CODEC2_450: ???, # No bindings
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LXMF.AM_CODEC2_700C: 700,
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LXMF.AM_CODEC2_1200: 1200,
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LXMF.AM_CODEC2_1300: 1300,
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LXMF.AM_CODEC2_1400: 1400,
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LXMF.AM_CODEC2_1600: 1600,
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LXMF.AM_CODEC2_2400: 2400,
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LXMF.AM_CODEC2_3200: 3200,
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}
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def samples_from_ogg(file_path=None):
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if file_path != None and os.path.isfile(file_path):
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opus_file = pyogg.OpusFile(file_path)
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audio = AudioSegment(
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bytes(opus_file.as_array()),
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frame_rate=opus_file.frequency,
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sample_width=opus_file.bytes_per_sample,
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channels=opus_file.channels)
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audio = audio.split_to_mono()[0]
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audio = audio.apply_gain(-audio.max_dBFS)
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audio = audio.set_frame_rate(8000)
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audio = audio.set_sample_width(2)
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return audio.get_array_of_samples()
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def samples_to_ogg(samples=None, file_path=None):
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if file_path != None and samples != None:
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pcm_data = io.BytesIO(samples)
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channels = 1; samples_per_second = 8000; bytes_per_sample = 2
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opus_buffered_encoder = pyogg.OpusBufferedEncoder()
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opus_buffered_encoder.set_application("audio")
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opus_buffered_encoder.set_sampling_frequency(samples_per_second)
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opus_buffered_encoder.set_channels(channels)
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opus_buffered_encoder.set_frame_size(20) # milliseconds
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ogg_opus_writer = pyogg.OggOpusWriter(file_path, opus_buffered_encoder)
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frame_duration = 0.1
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frame_size = int(frame_duration * samples_per_second)
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bytes_per_frame = frame_size*bytes_per_sample
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while True:
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pcm = pcm_data.read(bytes_per_frame)
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if len(pcm) == 0:
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break
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ogg_opus_writer.write(memoryview(bytearray(pcm)))
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ogg_opus_writer.close()
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def samples_to_wav(samples=None, file_path=None):
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if samples != None and file_path != None:
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import wave
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with wave.open(file_path, "wb") as wf:
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wf.setnchannels(1)
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wf.setsampwidth(2)
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wf.setframerate(8000)
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wf.writeframes(samples)
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return True
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# Samples must be 8KHz, 16-bit, 1 channel
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def encode_codec2(samples, mode):
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ap_start = time.time()
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import pycodec2
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if not mode in codec2_modes:
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return None
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c2 = pycodec2.Codec2(codec2_modes[mode])
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SPF = c2.samples_per_frame()
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PACKET_SIZE = SPF * 2 # 16-bit samples
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STRUCT_FORMAT = '{}h'.format(SPF)
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N_FRAMES = math.floor(len(samples)/SPF)
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frames = np.array(samples[0:N_FRAMES*SPF], dtype=np.int16)
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encoded = b""
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for pi in range(0, N_FRAMES):
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pstart = pi*SPF
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pend = (pi+1)*SPF
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frame = frames[pstart:pend]
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encoded_packet = c2.encode(frame)
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encoded += encoded_packet
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ap_duration = time.time() - ap_start
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RNS.log("Codec2 encoding complete in "+RNS.prettytime(ap_duration)+", bytes out: "+str(len(encoded)), RNS.LOG_DEBUG)
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return encoded
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def decode_codec2(encoded_bytes, mode):
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ap_start = time.time()
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import pycodec2
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if not mode in codec2_modes:
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return None
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c2 = pycodec2.Codec2(codec2_modes[mode])
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SPF = c2.samples_per_frame()
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BPF = c2.bytes_per_frame()
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STRUCT_FORMAT = '{}h'.format(SPF)
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N_FRAMES = math.floor(len(encoded_bytes)/BPF)
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decoded = b""
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for pi in range(0, N_FRAMES):
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pstart = pi*BPF
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pend = (pi+1)*BPF
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encoded_packet = encoded_bytes[pstart:pend]
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decoded_frame = c2.decode(encoded_packet)
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decoded += struct.pack(STRUCT_FORMAT, *decoded_frame)
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ap_duration = time.time() - ap_start
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RNS.log("Codec2 decoding complete in "+RNS.prettytime(ap_duration)+", samples out: "+str(len(decoded)), RNS.LOG_DEBUG)
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return decoded
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