Convert an input audio file to AAC in an MP4 container.
Convert an input audio file to AAC in an MP4 container. Formats other than MP4 are supported based on the output file extension.
/*
* Copyright (c) 2013-2022 Andreas Unterweger
*
* This file is part of FFmpeg.
*
* FFmpeg is free software; you can redistribute it and/or
* modify it under the terms of the GNU Lesser General Public
* License as published by the Free Software Foundation; either
* version 2.1 of the License, or (at your option) any later version.
*
* FFmpeg is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
* Lesser General Public License for more details.
*
* You should have received a copy of the GNU Lesser General Public
* License along with FFmpeg; if not, write to the Free Software
* Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
*/
/**
* @file audio transcoding to MPEG/AAC API usage example
* @example transcode_aac.c
*
* Convert an input audio file to AAC in an MP4 container. Formats other than
* MP4 are supported based on the output file extension.
* @author Andreas Unterweger (dustsigns@gmail.com)
*/
#include <stdio.h>
/* The output bit rate in bit/s */
#define OUTPUT_BIT_RATE 96000
/* The number of output channels */
#define OUTPUT_CHANNELS 2
/**
* Open an input file and the required decoder.
* @param filename File to be opened
* @param[out] input_format_context Format context of opened file
* @param[out] input_codec_context Codec context of opened file
* @return Error code (0 if successful)
*/
{
/* Open the input file to read from it. */
fprintf(stderr, "Could not open input file '%s' (error '%s')\n",
*input_format_context =
NULL;
}
/* Get information on the input file (number of streams etc.). */
fprintf(stderr, "Could not open find stream info (error '%s')\n",
}
/* Make sure that there is only one stream in the input file. */
if ((*input_format_context)->nb_streams != 1) {
fprintf(stderr, "Expected one audio input stream, but found %d\n",
(*input_format_context)->nb_streams);
}
stream = (*input_format_context)->streams[0];
/* Find a decoder for the audio stream. */
fprintf(stderr, "Could not find input codec\n");
}
/* Allocate a new decoding context. */
if (!avctx) {
fprintf(stderr, "Could not allocate a decoding context\n");
}
/* Initialize the stream parameters with demuxer information. */
}
/* Open the decoder for the audio stream to use it later. */
fprintf(stderr, "Could not open input codec (error '%s')\n",
}
/* Set the packet timebase for the decoder. */
/* Save the decoder context for easier access later. */
*input_codec_context = avctx;
return 0;
}
/**
* Open an output file and the required encoder.
* Also set some basic encoder parameters.
* Some of these parameters are based on the input file's parameters.
* @param filename File to be opened
* @param input_codec_context Codec context of input file
* @param[out] output_format_context Format context of output file
* @param[out] output_codec_context Codec context of output file
* @return Error code (0 if successful)
*/
{
/* Open the output file to write to it. */
fprintf(stderr, "Could not open output file '%s' (error '%s')\n",
}
/* Create a new format context for the output container format. */
fprintf(stderr, "Could not allocate output format context\n");
}
/* Associate the output file (pointer) with the container format context. */
(*output_format_context)->pb = output_io_context;
/* Guess the desired container format based on the file extension. */
fprintf(stderr, "Could not find output file format\n");
}
if (!((*output_format_context)->url =
av_strdup(filename))) {
fprintf(stderr, "Could not allocate url.\n");
}
/* Find the encoder to be used by its name. */
fprintf(stderr, "Could not find an AAC encoder.\n");
}
/* Create a new audio stream in the output file container. */
fprintf(stderr, "Could not create new stream\n");
}
if (!avctx) {
fprintf(stderr, "Could not allocate an encoding context\n");
}
/* Set the basic encoder parameters.
* The input file's sample rate is used to avoid a sample rate conversion. */
: input_codec_context->sample_fmt;
/* Set the sample rate for the container. */
/* Some container formats (like MP4) require global headers to be present.
* Mark the encoder so that it behaves accordingly. */
/* Open the encoder for the audio stream to use it later. */
fprintf(stderr, "Could not open output codec (error '%s')\n",
}
fprintf(stderr, "Could not initialize stream parameters\n");
}
/* Save the encoder context for easier access later. */
*output_codec_context = avctx;
return 0;
*output_format_context =
NULL;
}
/**
* Initialize one data packet for reading or writing.
* @param[out] packet Packet to be initialized
* @return Error code (0 if successful)
*/
{
fprintf(stderr, "Could not allocate packet\n");
}
return 0;
}
/**
* Initialize one audio frame for reading from the input file.
* @param[out] frame Frame to be initialized
* @return Error code (0 if successful)
*/
{
fprintf(stderr, "Could not allocate input frame\n");
}
return 0;
}
/**
* Initialize the audio resampler based on the input and output codec settings.
* If the input and output sample formats differ, a conversion is required
* libswresample takes care of this, but requires initialization.
* @param input_codec_context Codec context of the input file
* @param output_codec_context Codec context of the output file
* @param[out] resample_context Resample context for the required conversion
* @return Error code (0 if successful)
*/
{
/*
* Create a resampler context for the conversion.
* Set the conversion parameters.
*/
fprintf(stderr, "Could not allocate resample context\n");
}
/*
* Perform a sanity check so that the number of converted samples is
* not greater than the number of samples to be converted.
* If the sample rates differ, this case has to be handled differently
*/
/* Open the resampler with the specified parameters. */
fprintf(stderr, "Could not open resample context\n");
}
return 0;
}
/**
* Initialize a FIFO buffer for the audio samples to be encoded.
* @param[out] fifo Sample buffer
* @param output_codec_context Codec context of the output file
* @return Error code (0 if successful)
*/
{
/* Create the FIFO buffer based on the specified output sample format. */
fprintf(stderr, "Could not allocate FIFO\n");
}
return 0;
}
/**
* Write the header of the output file container.
* @param output_format_context Format context of the output file
* @return Error code (0 if successful)
*/
{
fprintf(stderr, "Could not write output file header (error '%s')\n",
}
return 0;
}
/**
* Decode one audio frame from the input file.
* @param frame Audio frame to be decoded
* @param input_format_context Format context of the input file
* @param input_codec_context Codec context of the input file
* @param[out] data_present Indicates whether data has been decoded
* @param[out] finished Indicates whether the end of file has
* been reached and all data has been
* decoded. If this flag is false, there
* is more data to be decoded, i.e., this
* function has to be called again.
* @return Error code (0 if successful)
*/
int *data_present, int *finished)
{
/* Packet used for temporary storage. */
*data_present = 0;
*finished = 0;
/* Read one audio frame from the input file into a temporary packet. */
/* If we are at the end of the file, flush the decoder below. */
*finished = 1;
else {
fprintf(stderr, "Could not read frame (error '%s')\n",
}
}
/* Send the audio frame stored in the temporary packet to the decoder.
* The input audio stream decoder is used to do this. */
fprintf(stderr, "Could not send packet for decoding (error '%s')\n",
}
/* Receive one frame from the decoder. */
/* If the decoder asks for more data to be able to decode a frame,
* return indicating that no data is present. */
/* If the end of the input file is reached, stop decoding. */
*finished = 1;
fprintf(stderr, "Could not decode frame (error '%s')\n",
/* Default case: Return decoded data. */
} else {
*data_present = 1;
}
}
/**
* Initialize a temporary storage for the specified number of audio samples.
* The conversion requires temporary storage due to the different format.
* The number of audio samples to be allocated is specified in frame_size.
* @param[out] converted_input_samples Array of converted samples. The
* dimensions are reference, channel
* (for multi-channel audio), sample.
* @param output_codec_context Codec context of the output file
* @param frame_size Number of samples to be converted in
* each round
* @return Error code (0 if successful)
*/
{
/* Allocate as many pointers as there are audio channels.
* Each pointer will point to the audio samples of the corresponding
* channels (although it may be NULL for interleaved formats).
* Allocate memory for the samples of all channels in one consecutive
* block for convenience. */
fprintf(stderr,
"Could not allocate converted input samples (error '%s')\n",
}
return 0;
}
/**
* Convert the input audio samples into the output sample format.
* The conversion happens on a per-frame basis, the size of which is
* specified by frame_size.
* @param input_data Samples to be decoded. The dimensions are
* channel (for multi-channel audio), sample.
* @param[out] converted_data Converted samples. The dimensions are channel
* (for multi-channel audio), sample.
* @param frame_size Number of samples to be converted
* @param resample_context Resample context for the conversion
* @return Error code (0 if successful)
*/
{
/* Convert the samples using the resampler. */
fprintf(stderr, "Could not convert input samples (error '%s')\n",
}
return 0;
}
/**
* Add converted input audio samples to the FIFO buffer for later processing.
* @param fifo Buffer to add the samples to
* @param converted_input_samples Samples to be added. The dimensions are channel
* (for multi-channel audio), sample.
* @param frame_size Number of samples to be converted
* @return Error code (0 if successful)
*/
uint8_t **converted_input_samples,
{
/* Make the FIFO as large as it needs to be to hold both,
* the old and the new samples. */
fprintf(stderr, "Could not reallocate FIFO\n");
}
/* Store the new samples in the FIFO buffer. */
fprintf(stderr, "Could not write data to FIFO\n");
}
return 0;
}
/**
* Read one audio frame from the input file, decode, convert and store
* it in the FIFO buffer.
* @param fifo Buffer used for temporary storage
* @param input_format_context Format context of the input file
* @param input_codec_context Codec context of the input file
* @param output_codec_context Codec context of the output file
* @param resampler_context Resample context for the conversion
* @param[out] finished Indicates whether the end of file has
* been reached and all data has been
* decoded. If this flag is false,
* there is more data to be decoded,
* i.e., this function has to be called
* again.
* @return Error code (0 if successful)
*/
int *finished)
{
/* Temporary storage of the input samples of the frame read from the file. */
/* Temporary storage for the converted input samples. */
uint8_t **converted_input_samples =
NULL;
int data_present;
/* Initialize temporary storage for one input frame. */
/* Decode one frame worth of audio samples. */
input_codec_context, &data_present, finished))
/* If we are at the end of the file and there are no more samples
* in the decoder which are delayed, we are actually finished.
* This must not be treated as an error. */
if (*finished) {
ret = 0;
}
/* If there is decoded data, convert and store it. */
if (data_present) {
/* Initialize the temporary storage for the converted input samples. */
/* Convert the input samples to the desired output sample format.
* This requires a temporary storage provided by converted_input_samples. */
/* Add the converted input samples to the FIFO buffer for later processing. */
ret = 0;
}
ret = 0;
if (converted_input_samples)
return ret;
}
/**
* Initialize one input frame for writing to the output file.
* The frame will be exactly frame_size samples large.
* @param[out] frame Frame to be initialized
* @param output_codec_context Codec context of the output file
* @param frame_size Size of the frame
* @return Error code (0 if successful)
*/
{
/* Create a new frame to store the audio samples. */
fprintf(stderr, "Could not allocate output frame\n");
}
/* Set the frame's parameters, especially its size and format.
* av_frame_get_buffer needs this to allocate memory for the
* audio samples of the frame.
* Default channel layouts based on the number of channels
* are assumed for simplicity. */
(*frame)->format = output_codec_context->
sample_fmt;
(*frame)->sample_rate = output_codec_context->
sample_rate;
/* Allocate the samples of the created frame. This call will make
* sure that the audio frame can hold as many samples as specified. */
fprintf(stderr, "Could not allocate output frame samples (error '%s')\n",
}
return 0;
}
/* Global timestamp for the audio frames. */
/**
* Encode one frame worth of audio to the output file.
* @param frame Samples to be encoded
* @param output_format_context Format context of the output file
* @param output_codec_context Codec context of the output file
* @param[out] data_present Indicates whether data has been
* encoded
* @return Error code (0 if successful)
*/
int *data_present)
{
/* Packet used for temporary storage. */
/* Set a timestamp based on the sample rate for the container. */
}
*data_present = 0;
/* Send the audio frame stored in the temporary packet to the encoder.
* The output audio stream encoder is used to do this. */
/* Check for errors, but proceed with fetching encoded samples if the
* encoder signals that it has nothing more to encode. */
fprintf(stderr, "Could not send packet for encoding (error '%s')\n",
}
/* Receive one encoded frame from the encoder. */
/* If the encoder asks for more data to be able to provide an
* encoded frame, return indicating that no data is present. */
/* If the last frame has been encoded, stop encoding. */
fprintf(stderr, "Could not encode frame (error '%s')\n",
/* Default case: Return encoded data. */
} else {
*data_present = 1;
}
/* Write one audio frame from the temporary packet to the output file. */
if (*data_present &&
fprintf(stderr, "Could not write frame (error '%s')\n",
}
}
/**
* Load one audio frame from the FIFO buffer, encode and write it to the
* output file.
* @param fifo Buffer used for temporary storage
* @param output_format_context Format context of the output file
* @param output_codec_context Codec context of the output file
* @return Error code (0 if successful)
*/
{
/* Temporary storage of the output samples of the frame written to the file. */
/* Use the maximum number of possible samples per frame.
* If there is less than the maximum possible frame size in the FIFO
* buffer use this number. Otherwise, use the maximum possible frame size. */
int data_written;
/* Initialize temporary storage for one output frame. */
/* Read as many samples from the FIFO buffer as required to fill the frame.
* The samples are stored in the frame temporarily. */
fprintf(stderr, "Could not read data from FIFO\n");
}
/* Encode one frame worth of audio samples. */
output_codec_context, &data_written)) {
}
return 0;
}
/**
* Write the trailer of the output file container.
* @param output_format_context Format context of the output file
* @return Error code (0 if successful)
*/
{
fprintf(stderr, "Could not write output file trailer (error '%s')\n",
}
return 0;
}
int main(
int argc,
char **argv)
{
if (argc != 3) {
fprintf(stderr, "Usage: %s <input file> <output file>\n", argv[0]);
exit(1);
}
/* Open the input file for reading. */
&input_codec_context))
/* Open the output file for writing. */
&output_format_context, &output_codec_context))
/* Initialize the resampler to be able to convert audio sample formats. */
&resample_context))
/* Initialize the FIFO buffer to store audio samples to be encoded. */
/* Write the header of the output file container. */
/* Loop as long as we have input samples to read or output samples
* to write; abort as soon as we have neither. */
while (1) {
/* Use the encoder's desired frame size for processing. */
const int output_frame_size = output_codec_context->frame_size;
int finished = 0;
/* Make sure that there is one frame worth of samples in the FIFO
* buffer so that the encoder can do its work.
* Since the decoder's and the encoder's frame size may differ, we
* need to FIFO buffer to store as many frames worth of input samples
* that they make up at least one frame worth of output samples. */
/* Decode one frame worth of audio samples, convert it to the
* output sample format and put it into the FIFO buffer. */
input_codec_context,
output_codec_context,
resample_context, &finished))
/* If we are at the end of the input file, we continue
* encoding the remaining audio samples to the output file. */
if (finished)
break;
}
/* If we have enough samples for the encoder, we encode them.
* At the end of the file, we pass the remaining samples to
* the encoder. */
/* Take one frame worth of audio samples from the FIFO buffer,
* encode it and write it to the output file. */
output_codec_context))
/* If we are at the end of the input file and have encoded
* all remaining samples, we can exit this loop and finish. */
if (finished) {
int data_written;
/* Flush the encoder as it may have delayed frames. */
do {
output_codec_context, &data_written))
} while (data_written);
break;
}
}
/* Write the trailer of the output file container. */
ret = 0;
if (fifo)
if (output_codec_context)
if (output_format_context) {
}
if (input_codec_context)
if (input_format_context)
return ret;
}
static enum AVSampleFormat sample_fmts[]
simple assert() macros that are a bit more flexible than ISO C assert().
#define av_assert0(cond)
assert() equivalent, that is always enabled.
Libavcodec external API header.
int avio_open(AVIOContext **s, const char *filename, int flags)
Create and initialize a AVIOContext for accessing the resource indicated by url.
int avio_closep(AVIOContext **s)
Close the resource accessed by the AVIOContext *s, free it and set the pointer pointing to it to NULL...
#define AVIO_FLAG_WRITE
write-only
Public libavutil channel layout APIs header.
int avcodec_parameters_from_context(AVCodecParameters *par, const AVCodecContext *codec)
int avcodec_parameters_to_context(AVCodecContext *codec, const AVCodecParameters *par)
static int open_input_file(const char *filename)
static av_cold void cleanup(FlashSV2Context *s)
reference-counted frame API
static const uint8_t frame_size[4]
int attribute_align_arg avcodec_open2(AVCodecContext *avctx, const AVCodec *codec, AVDictionary **options)
Initialize the AVCodecContext to use the given AVCodec.
AVCodecContext * avcodec_alloc_context3(const AVCodec *codec)
Allocate an AVCodecContext and set its fields to default values.
const AVCodec * avcodec_find_decoder(enum AVCodecID id)
Find a registered decoder with a matching codec ID.
const AVCodec * avcodec_find_encoder(enum AVCodecID id)
Find a registered encoder with a matching codec ID.
#define AV_CODEC_FLAG_GLOBAL_HEADER
Place global headers in extradata instead of every keyframe.
void avcodec_free_context(AVCodecContext **avctx)
Free the codec context and everything associated with it and write NULL to the provided pointer.
int avcodec_receive_frame(AVCodecContext *avctx, AVFrame *frame)
Alias for avcodec_receive_frame_flags(avctx, frame, 0).
int avcodec_send_packet(AVCodecContext *avctx, const AVPacket *avpkt)
Supply raw packet data as input to a decoder.
int avcodec_receive_packet(AVCodecContext *avctx, AVPacket *avpkt)
Read encoded data from the encoder.
int avcodec_send_frame(AVCodecContext *avctx, const AVFrame *frame)
Supply a raw video or audio frame to the encoder.
int avcodec_get_supported_config(const AVCodecContext *avctx, const AVCodec *codec, enum AVCodecConfig config, unsigned flags, const void **out, int *out_num)
Retrieve a list of all supported values for a given configuration type.
@ AV_CODEC_CONFIG_SAMPLE_FORMAT
AVSampleFormat, terminated by AV_SAMPLE_FMT_NONE.
void av_packet_free(AVPacket **pkt)
Free the packet, if the packet is reference counted, it will be unreferenced first.
AVPacket * av_packet_alloc(void)
Allocate an AVPacket and set its fields to default values.
AVStream * avformat_new_stream(AVFormatContext *s, const struct AVCodec *c)
Add a new stream to a media file.
AVFormatContext * avformat_alloc_context(void)
Allocate an AVFormatContext.
void avformat_free_context(AVFormatContext *s)
Free an AVFormatContext and all its streams.
int av_read_frame(AVFormatContext *s, AVPacket *pkt)
Return the next frame of a stream.
int avformat_open_input(AVFormatContext **ps, const char *url, const AVInputFormat *fmt, AVDictionary **options)
Open an input stream and read the header.
int avformat_find_stream_info(AVFormatContext *ic, AVDictionary **options)
Read packets of a media file to get stream information.
void avformat_close_input(AVFormatContext **s)
Close an opened input AVFormatContext.
av_warn_unused_result int avformat_write_header(AVFormatContext *s, AVDictionary **options)
Allocate the stream private data and write the stream header to an output media file.
int av_write_trailer(AVFormatContext *s)
Write the stream trailer to an output media file and free the file private data.
const AVOutputFormat * av_guess_format(const char *short_name, const char *filename, const char *mime_type)
Return the output format in the list of registered output formats which best matches the provided par...
int av_write_frame(AVFormatContext *s, AVPacket *pkt)
Write a packet to an output media file.
void av_channel_layout_default(AVChannelLayout *ch_layout, int nb_channels)
Get the default channel layout for a given number of channels.
int av_channel_layout_copy(AVChannelLayout *dst, const AVChannelLayout *src)
Make a copy of a channel layout.
AVAudioFifo * av_audio_fifo_alloc(enum AVSampleFormat sample_fmt, int channels, int nb_samples)
Allocate an AVAudioFifo.
int av_audio_fifo_realloc(AVAudioFifo *af, int nb_samples)
Reallocate an AVAudioFifo.
int av_audio_fifo_write(AVAudioFifo *af, void *const *data, int nb_samples)
Write data to an AVAudioFifo.
int av_audio_fifo_read(AVAudioFifo *af, void *const *data, int nb_samples)
Read data from an AVAudioFifo.
void av_audio_fifo_free(AVAudioFifo *af)
Free an AVAudioFifo.
int av_audio_fifo_size(AVAudioFifo *af)
Get the current number of samples in the AVAudioFifo available for reading.
#define AVERROR_EXIT
Immediate exit was requested; the called function should not be restarted.
#define AVERROR_EOF
End of file.
#define av_err2str(errnum)
Convenience macro, the return value should be used only directly in function arguments but never stan...
int av_frame_get_buffer(AVFrame *frame, int align)
Allocate new buffer(s) for audio or video data.
void av_frame_free(AVFrame **frame)
Free the frame and any dynamically allocated objects in it, e.g.
AVFrame * av_frame_alloc(void)
Allocate an AVFrame and set its fields to default values.
AVSampleFormat
Audio sample formats.
int av_samples_alloc_array_and_samples(uint8_t ***audio_data, int *linesize, int nb_channels, int nb_samples, enum AVSampleFormat sample_fmt, int align)
Allocate a data pointers array, samples buffer for nb_samples samples, and fill data pointers and lin...
int swr_alloc_set_opts2(struct SwrContext **ps, const AVChannelLayout *out_ch_layout, enum AVSampleFormat out_sample_fmt, int out_sample_rate, const AVChannelLayout *in_ch_layout, enum AVSampleFormat in_sample_fmt, int in_sample_rate, int log_offset, void *log_ctx)
Allocate SwrContext if needed and set/reset common parameters.
av_cold void swr_free(SwrContext **ss)
Free the given SwrContext and set the pointer to NULL.
int attribute_align_arg swr_convert(struct SwrContext *s, uint8_t *const *out_arg, int out_count, const uint8_t *const *in_arg, int in_count)
Convert audio.
av_cold int swr_init(struct SwrContext *s)
Initialize context after user parameters have been set.
static int output_frame(H264Context *h, AVFrame *dst, H264Picture *srcp)
Memory handling functions.
static void input_data(MLPEncodeContext *ctx, MLPSubstream *s, uint8_t **const samples, int nb_samples)
Wrapper function for inputting data in two different bit-depths.
static int output_packet(AVFormatContext *ctx, int flush)
Context for an Audio FIFO Buffer.
int nb_channels
Number of channels in this layout.
main external API structure.
AVChannelLayout ch_layout
Audio channel layout.
enum AVSampleFormat sample_fmt
audio sample format
AVRational pkt_timebase
Timebase in which pkt_dts/pts and AVPacket.dts/pts are expressed.
int64_t bit_rate
the average bitrate
int sample_rate
samples per second
int flags
AV_CODEC_FLAG_*.
int frame_size
Number of samples per channel in an audio frame.
enum AVCodecID codec_id
Specific type of the encoded data (the codec used).
This structure describes decoded (raw) audio or video data.
int nb_samples
number of audio samples (per channel) described by this frame
uint8_t ** extended_data
pointers to the data planes/channels.
This structure stores compressed data.
AVCodecParameters * codecpar
Codec parameters associated with this stream.
AVRational time_base
This is the fundamental unit of time (in seconds) in terms of which frame timestamps are represented.
The libswresample context.
libswresample public header
static void error(const char *err)
static int open_output_file(const char *filename)
static int add_samples_to_fifo(AVAudioFifo *fifo, uint8_t **converted_input_samples, const int frame_size)
Add converted input audio samples to the FIFO buffer for later processing.
static int init_input_frame(AVFrame **frame)
Initialize one audio frame for reading from the input file.
static int encode_audio_frame(AVFrame *frame, AVFormatContext *output_format_context, AVCodecContext *output_codec_context, int *data_present)
Encode one frame worth of audio to the output file.
static int decode_audio_frame(AVFrame *frame, AVFormatContext *input_format_context, AVCodecContext *input_codec_context, int *data_present, int *finished)
Decode one audio frame from the input file.
static int init_resampler(AVCodecContext *input_codec_context, AVCodecContext *output_codec_context, SwrContext **resample_context)
Initialize the audio resampler based on the input and output codec settings.
static int init_packet(AVPacket **packet)
Initialize one data packet for reading or writing.
static int write_output_file_header(AVFormatContext *output_format_context)
Write the header of the output file container.
static int init_output_frame(AVFrame **frame, AVCodecContext *output_codec_context, int frame_size)
Initialize one input frame for writing to the output file.
static int read_decode_convert_and_store(AVAudioFifo *fifo, AVFormatContext *input_format_context, AVCodecContext *input_codec_context, AVCodecContext *output_codec_context, SwrContext *resampler_context, int *finished)
Read one audio frame from the input file, decode, convert and store it in the FIFO buffer.
static int init_fifo(AVAudioFifo **fifo, AVCodecContext *output_codec_context)
Initialize a FIFO buffer for the audio samples to be encoded.
static int load_encode_and_write(AVAudioFifo *fifo, AVFormatContext *output_format_context, AVCodecContext *output_codec_context)
Load one audio frame from the FIFO buffer, encode and write it to the output file.
static int write_output_file_trailer(AVFormatContext *output_format_context)
Write the trailer of the output file container.
static int convert_samples(const uint8_t **input_data, uint8_t **converted_data, const int frame_size, SwrContext *resample_context)
Convert the input audio samples into the output sample format.
static int init_converted_samples(uint8_t ***converted_input_samples, AVCodecContext *output_codec_context, int frame_size)
Initialize a temporary storage for the specified number of audio samples.