mirror of
https://github.com/k4yt3x/video2x.git
synced 2025-08-07 22:57:26 +02:00
* chore(libvideo2x)!: replace the C API with C++ API * fix: convert wide string to u8 for av_opt_set * style: removed unnecessary enum and struct specifiers Signed-off-by: k4yt3x <i@k4yt3x.com>
383 lines
12 KiB
C++
383 lines
12 KiB
C++
#include "encoder.h"
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#include <spdlog/spdlog.h>
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extern "C" {
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#include <libavutil/opt.h>
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}
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#include "avutils.h"
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#include "conversions.h"
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Encoder::Encoder()
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: ofmt_ctx_(nullptr), enc_ctx_(nullptr), out_vstream_idx_(-1), stream_map_(nullptr) {}
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Encoder::~Encoder() {
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if (enc_ctx_) {
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avcodec_free_context(&enc_ctx_);
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}
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if (ofmt_ctx_) {
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if (!(ofmt_ctx_->oformat->flags & AVFMT_NOFILE)) {
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avio_closep(&ofmt_ctx_->pb);
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}
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avformat_free_context(ofmt_ctx_);
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}
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if (stream_map_) {
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av_free(stream_map_);
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}
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}
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int Encoder::init(
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AVBufferRef *hw_ctx,
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const std::filesystem::path &out_fpath,
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AVFormatContext *ifmt_ctx,
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AVCodecContext *dec_ctx,
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EncoderConfig &enc_cfg,
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const ProcessorConfig &proc_cfg,
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int in_vstream_idx
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) {
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int ret;
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// Allocate the output format context
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avformat_alloc_output_context2(&ofmt_ctx_, nullptr, nullptr, out_fpath.u8string().c_str());
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if (!ofmt_ctx_) {
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spdlog::error("Could not create output context");
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return AVERROR_UNKNOWN;
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}
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// Find the encoder
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const AVCodec *encoder = avcodec_find_encoder(enc_cfg.codec);
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if (!encoder) {
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spdlog::error(
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"Required video encoder not found for codec {}", avcodec_get_name(enc_cfg.codec)
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);
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return AVERROR_ENCODER_NOT_FOUND;
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}
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// Create a new video stream in the output file
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AVStream *out_vstream = avformat_new_stream(ofmt_ctx_, nullptr);
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if (!out_vstream) {
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spdlog::error("Failed to allocate the output video stream");
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return AVERROR_UNKNOWN;
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}
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out_vstream_idx_ = out_vstream->index;
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// Allocate the encoder context
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enc_ctx_ = avcodec_alloc_context3(encoder);
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if (!enc_ctx_) {
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spdlog::error("Failed to allocate the encoder context");
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return AVERROR(ENOMEM);
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}
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// Set hardware device context
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if (hw_ctx != nullptr) {
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enc_ctx_->hw_device_ctx = av_buffer_ref(hw_ctx);
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}
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// Copy the color properties from the decoder context
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enc_ctx_->color_range = dec_ctx->color_range;
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enc_ctx_->color_primaries = dec_ctx->color_primaries;
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enc_ctx_->color_trc = dec_ctx->color_trc;
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enc_ctx_->colorspace = dec_ctx->colorspace;
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enc_ctx_->chroma_sample_location = dec_ctx->chroma_sample_location;
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// Extra options copied from the decoder context
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enc_ctx_->sample_aspect_ratio = dec_ctx->sample_aspect_ratio;
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// Set basic video options
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enc_ctx_->width = enc_cfg.width;
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enc_ctx_->height = enc_cfg.height;
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// Set rate control and compression options
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enc_ctx_->bit_rate = enc_cfg.bit_rate;
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enc_ctx_->rc_buffer_size = enc_cfg.rc_buffer_size;
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enc_ctx_->rc_min_rate = enc_cfg.rc_min_rate;
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enc_ctx_->rc_max_rate = enc_cfg.rc_max_rate;
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enc_ctx_->qmin = enc_cfg.qmin;
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enc_ctx_->qmax = enc_cfg.qmax;
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// Set GOP and frame structure options
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enc_ctx_->gop_size = enc_cfg.gop_size;
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enc_ctx_->max_b_frames = enc_cfg.max_b_frames;
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enc_ctx_->keyint_min = enc_cfg.keyint_min;
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enc_ctx_->refs = enc_cfg.refs;
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// Set performance and threading options
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enc_ctx_->thread_count = enc_cfg.thread_count;
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// Set latency and buffering options
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enc_ctx_->delay = enc_cfg.delay;
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// Set the pixel format
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if (enc_cfg.pix_fmt != AV_PIX_FMT_NONE) {
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// Use the specified pixel format
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enc_ctx_->pix_fmt = enc_cfg.pix_fmt;
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} else {
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// Automatically select the pixel format
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enc_ctx_->pix_fmt = get_encoder_default_pix_fmt(encoder, dec_ctx->pix_fmt);
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if (enc_ctx_->pix_fmt == AV_PIX_FMT_NONE) {
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spdlog::error("Could not get the default pixel format for the encoder");
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return AVERROR(EINVAL);
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}
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spdlog::debug("Auto-selected pixel format: {}", av_get_pix_fmt_name(enc_ctx_->pix_fmt));
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}
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if (proc_cfg.frm_rate_mul > 0) {
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AVRational in_frame_rate = get_video_frame_rate(ifmt_ctx, in_vstream_idx);
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enc_ctx_->framerate = {in_frame_rate.num * proc_cfg.frm_rate_mul, in_frame_rate.den};
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enc_ctx_->time_base = av_inv_q(enc_ctx_->framerate);
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} else {
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// Set the output video's time base
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if (dec_ctx->time_base.num > 0 && dec_ctx->time_base.den > 0) {
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enc_ctx_->time_base = dec_ctx->time_base;
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} else {
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enc_ctx_->time_base = av_inv_q(av_guess_frame_rate(ifmt_ctx, out_vstream, nullptr));
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}
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// Set the output video's frame rate
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if (dec_ctx->framerate.num > 0 && dec_ctx->framerate.den > 0) {
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enc_ctx_->framerate = dec_ctx->framerate;
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} else {
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enc_ctx_->framerate = av_guess_frame_rate(ifmt_ctx, out_vstream, nullptr);
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}
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}
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// Set extra AVOptions
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for (const auto &[opt_name, opt_value] : enc_cfg.extra_opts) {
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std::string opt_name_str = wstring_to_u8string(opt_name);
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std::string opt_value_str = wstring_to_u8string(opt_value);
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spdlog::debug("Setting encoder option '{}' to '{}'", opt_name_str, opt_value_str);
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if (av_opt_set(enc_ctx_->priv_data, opt_name_str.c_str(), opt_value_str.c_str(), 0) < 0) {
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spdlog::warn("Failed to set encoder option '{}' to '{}'", opt_name_str, opt_value_str);
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}
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}
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// Use global headers if necessary
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if (ofmt_ctx_->oformat->flags & AVFMT_GLOBALHEADER) {
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enc_ctx_->flags |= AV_CODEC_FLAG_GLOBAL_HEADER;
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}
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// Open the encoder
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if ((ret = avcodec_open2(enc_ctx_, encoder, nullptr)) < 0) {
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spdlog::error("Cannot open video encoder");
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return ret;
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}
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// Copy encoder parameters to output video stream
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ret = avcodec_parameters_from_context(out_vstream->codecpar, enc_ctx_);
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if (ret < 0) {
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spdlog::error("Failed to copy encoder parameters to output video stream");
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return ret;
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}
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out_vstream->time_base = enc_ctx_->time_base;
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out_vstream->avg_frame_rate = enc_ctx_->framerate;
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out_vstream->r_frame_rate = enc_ctx_->framerate;
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// Copy other streams if necessary
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if (enc_cfg.copy_streams) {
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// Allocate the stream mape frame o
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stream_map_ =
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reinterpret_cast<int *>(av_malloc_array(ifmt_ctx->nb_streams, sizeof(*stream_map_)));
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if (!stream_map_) {
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spdlog::error("Could not allocate stream mapping");
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return AVERROR(ENOMEM);
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}
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// Map each input stream to an output stream
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for (int i = 0; i < static_cast<int>(ifmt_ctx->nb_streams); i++) {
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AVStream *in_stream = ifmt_ctx->streams[i];
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AVCodecParameters *in_codecpar = in_stream->codecpar;
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// Skip the input video stream as it's already processed
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if (i == in_vstream_idx) {
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stream_map_[i] = out_vstream_idx_;
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continue;
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}
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// Map only audio and subtitle streams (skip other types)
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if (in_codecpar->codec_type != AVMEDIA_TYPE_AUDIO &&
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in_codecpar->codec_type != AVMEDIA_TYPE_SUBTITLE) {
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stream_map_[i] = -1;
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spdlog::warn("Skipping unsupported stream type at index: {}", i);
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continue;
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}
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// Create corresponding output stream for audio and subtitle streams
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AVStream *out_stream = avformat_new_stream(ofmt_ctx_, nullptr);
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if (!out_stream) {
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spdlog::error("Failed allocating output stream");
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return AVERROR_UNKNOWN;
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}
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// Copy codec parameters from input to output
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ret = avcodec_parameters_copy(out_stream->codecpar, in_codecpar);
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if (ret < 0) {
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spdlog::error("Failed to copy codec parameters");
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return ret;
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}
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out_stream->codecpar->codec_tag = 0;
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// Copy time base
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out_stream->time_base = in_stream->time_base;
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// Map input stream index to output stream index
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spdlog::debug("Stream mapping: {} (in) -> {} (out)", i, out_stream->index);
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stream_map_[i] = out_stream->index;
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}
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}
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// Open the output file
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if (!(ofmt_ctx_->oformat->flags & AVFMT_NOFILE)) {
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ret = avio_open(&ofmt_ctx_->pb, out_fpath.u8string().c_str(), AVIO_FLAG_WRITE);
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if (ret < 0) {
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spdlog::error("Could not open output file '{}'", out_fpath.u8string());
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return ret;
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}
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}
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// Write the output file header
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ret = avformat_write_header(ofmt_ctx_, nullptr);
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if (ret < 0) {
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spdlog::error("Error writing output file header");
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return ret;
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}
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return 0;
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}
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int Encoder::write_frame(AVFrame *frame, int64_t frame_idx) {
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AVFrame *converted_frame = nullptr;
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int ret;
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// Set the frame's presentation timestamp if not set
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if (frame->pts <= 0) {
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frame->pts = frame_idx;
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}
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// Convert the frame to the encoder's pixel format if needed
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if (frame->format != enc_ctx_->pix_fmt) {
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converted_frame = convert_avframe_pix_fmt(frame, enc_ctx_->pix_fmt);
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if (!converted_frame) {
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spdlog::error("Error converting frame to encoder's pixel format");
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return AVERROR_EXTERNAL;
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}
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converted_frame->pts = frame->pts;
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}
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AVPacket *enc_pkt = av_packet_alloc();
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if (!enc_pkt) {
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spdlog::error("Could not allocate AVPacket");
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return AVERROR(ENOMEM);
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}
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// Send the frame to the encoder
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if (converted_frame != nullptr) {
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ret = avcodec_send_frame(enc_ctx_, converted_frame);
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av_frame_free(&converted_frame);
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} else {
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ret = avcodec_send_frame(enc_ctx_, frame);
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}
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if (ret < 0) {
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spdlog::error("Error sending frame to encoder");
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av_packet_free(&enc_pkt);
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return ret;
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}
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// Receive packets from the encoder
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while (ret >= 0) {
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ret = avcodec_receive_packet(enc_ctx_, enc_pkt);
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if (ret == AVERROR(EAGAIN) || ret == AVERROR_EOF) {
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av_packet_unref(enc_pkt);
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break;
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} else if (ret < 0) {
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spdlog::error("Error encoding frame");
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av_packet_free(&enc_pkt);
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return ret;
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}
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// Rescale packet timestamps
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av_packet_rescale_ts(
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enc_pkt, enc_ctx_->time_base, ofmt_ctx_->streams[out_vstream_idx_]->time_base
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);
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enc_pkt->stream_index = out_vstream_idx_;
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// Write the packet
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ret = av_interleaved_write_frame(ofmt_ctx_, enc_pkt);
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av_packet_unref(enc_pkt);
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if (ret < 0) {
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spdlog::error("Error muxing packet");
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av_packet_free(&enc_pkt);
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return ret;
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}
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}
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av_packet_free(&enc_pkt);
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return 0;
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}
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int Encoder::flush() {
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int ret;
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AVPacket *enc_pkt = av_packet_alloc();
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if (!enc_pkt) {
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spdlog::error("Could not allocate AVPacket");
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return AVERROR(ENOMEM);
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}
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// Send a NULL frame to signal the encoder to flush
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ret = avcodec_send_frame(enc_ctx_, nullptr);
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if (ret < 0) {
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spdlog::error("Error sending NULL frame to encoder during flush");
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av_packet_free(&enc_pkt);
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return ret;
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}
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// Receive and write packets until flushing is complete
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while (true) {
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ret = avcodec_receive_packet(enc_ctx_, enc_pkt);
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if (ret == AVERROR(EAGAIN) || ret == AVERROR_EOF) {
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av_packet_unref(enc_pkt);
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break;
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} else if (ret < 0) {
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spdlog::error("Error encoding packet during flush");
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av_packet_free(&enc_pkt);
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return ret;
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}
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// Rescale packet timestamps
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av_packet_rescale_ts(
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enc_pkt, enc_ctx_->time_base, ofmt_ctx_->streams[out_vstream_idx_]->time_base
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);
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enc_pkt->stream_index = out_vstream_idx_;
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// Write the packet
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ret = av_interleaved_write_frame(ofmt_ctx_, enc_pkt);
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av_packet_unref(enc_pkt);
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if (ret < 0) {
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spdlog::error("Error muxing packet during flush");
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av_packet_free(&enc_pkt);
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return ret;
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}
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}
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av_packet_free(&enc_pkt);
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return 0;
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}
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AVCodecContext *Encoder::get_encoder_context() const {
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return enc_ctx_;
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}
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AVFormatContext *Encoder::get_format_context() const {
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return ofmt_ctx_;
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}
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int Encoder::get_output_video_stream_index() const {
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return out_vstream_idx_;
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}
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int *Encoder::get_stream_map() const {
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return stream_map_;
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}
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