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@ -37,7 +37,10 @@ MadMp3Decoder::MadMp3Decoder() |
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synth_(reinterpret_cast<mad_synth*>( |
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synth_(reinterpret_cast<mad_synth*>( |
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heap_caps_malloc(sizeof(mad_synth), |
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heap_caps_malloc(sizeof(mad_synth), |
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MALLOC_CAP_INTERNAL | MALLOC_CAP_8BIT))), |
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MALLOC_CAP_INTERNAL | MALLOC_CAP_8BIT))), |
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current_sample_(-1), |
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current_frame_sample_(-1), |
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current_stream_sample_(0), |
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total_samples_(0), |
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skip_samples_(0), |
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is_eof_(false), |
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is_eof_(false), |
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is_eos_(false) { |
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is_eos_(false) { |
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mad_stream_init(stream_.get()); |
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mad_stream_init(stream_.get()); |
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@ -63,6 +66,8 @@ auto MadMp3Decoder::OpenStream(std::shared_ptr<IStream> input, uint32_t offset) |
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-> cpp::result<OutputFormat, ICodec::Error> { |
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-> cpp::result<OutputFormat, ICodec::Error> { |
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input_ = input; |
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input_ = input; |
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current_stream_sample_ = 0; |
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auto id3size = SkipID3Tags(*input); |
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auto id3size = SkipID3Tags(*input); |
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// To get the output format for MP3 streams, we simply need to decode the
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// To get the output format for MP3 streams, we simply need to decode the
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@ -115,6 +120,7 @@ auto MadMp3Decoder::OpenStream(std::shared_ptr<IStream> input, uint32_t offset) |
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cbr_length = (input->Size().value() * 8) / header.bitrate; |
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cbr_length = (input->Size().value() * 8) / header.bitrate; |
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output.total_samples = cbr_length * output.sample_rate_hz * channels; |
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output.total_samples = cbr_length * output.sample_rate_hz * channels; |
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} |
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} |
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total_samples_ = output.total_samples.value(); |
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// header.bitrate is only for CBR, but we've calculated total samples for VBR
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// header.bitrate is only for CBR, but we've calculated total samples for VBR
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// and CBR, so we can use that to calculate sample size and therefore bitrate.
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// and CBR, so we can use that to calculate sample size and therefore bitrate.
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@ -124,6 +130,11 @@ auto MadMp3Decoder::OpenStream(std::shared_ptr<IStream> input, uint32_t offset) |
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output.bitrate_kbps = static_cast<uint32_t>(output.sample_rate_hz * channels * sample_size / 1024); |
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output.bitrate_kbps = static_cast<uint32_t>(output.sample_rate_hz * channels * sample_size / 1024); |
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} |
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} |
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// For gapless MP3s, save samples to skip
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if (mp3_info) { |
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skip_samples_ = mp3_info->starting_sample; |
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} |
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if (offset > 1 && cbr_length > 0) { |
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if (offset > 1 && cbr_length > 0) { |
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// Constant bitrate seeking
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// Constant bitrate seeking
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uint64_t skip_bytes = header.bitrate * (offset - 1) / 8; |
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uint64_t skip_bytes = header.bitrate * (offset - 1) / 8; |
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@ -199,7 +210,7 @@ auto MadMp3Decoder::OpenStream(std::shared_ptr<IStream> input, uint32_t offset) |
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auto MadMp3Decoder::DecodeTo(std::span<sample::Sample> output) |
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auto MadMp3Decoder::DecodeTo(std::span<sample::Sample> output) |
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-> cpp::result<OutputInfo, Error> { |
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-> cpp::result<OutputInfo, Error> { |
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if (current_sample_ < 0 && !is_eos_) { |
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if (current_frame_sample_ < 0 && !is_eos_) { |
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if (!is_eof_) { |
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if (!is_eof_) { |
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is_eof_ = buffer_.Refill(input_.get()); |
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is_eof_ = buffer_.Refill(input_.get()); |
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if (is_eof_) { |
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if (is_eof_) { |
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@ -243,14 +254,21 @@ auto MadMp3Decoder::DecodeTo(std::span<sample::Sample> output) |
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// We've successfully decoded a frame! Now synthesize samples to write
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// We've successfully decoded a frame! Now synthesize samples to write
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// out.
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// out.
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mad_synth_frame(synth_.get(), frame_.get()); |
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mad_synth_frame(synth_.get(), frame_.get()); |
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current_sample_ = 0; |
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current_frame_sample_ = 0; |
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return GetBytesUsed(); |
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return GetBytesUsed(); |
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}); |
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}); |
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} |
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} |
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size_t output_sample = 0; |
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size_t output_sample = 0; |
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if (current_sample_ >= 0) { |
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if (current_frame_sample_ >= 0) { |
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while (current_sample_ < synth_->pcm.length) { |
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// Skip any gap samples indicated by the headers
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while (skip_samples_ > 0) { |
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skip_samples_--; |
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current_frame_sample_++; |
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} |
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// Process samples until we hit the end of the frame or stream
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while (current_frame_sample_ < synth_->pcm.length && current_stream_sample_ <= total_samples_) { |
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if (output_sample + synth_->pcm.channels >= output.size()) { |
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if (output_sample + synth_->pcm.channels >= output.size()) { |
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// We can't fit the next full frame into the buffer.
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// We can't fit the next full frame into the buffer.
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return OutputInfo{.samples_written = output_sample, |
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return OutputInfo{.samples_written = output_sample, |
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@ -259,14 +277,18 @@ auto MadMp3Decoder::DecodeTo(std::span<sample::Sample> output) |
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for (int channel = 0; channel < synth_->pcm.channels; channel++) { |
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for (int channel = 0; channel < synth_->pcm.channels; channel++) { |
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output[output_sample++] = |
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output[output_sample++] = |
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sample::FromMad(synth_->pcm.samples[channel][current_sample_]); |
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sample::FromMad(synth_->pcm.samples[channel][current_frame_sample_]); |
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} |
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} |
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current_sample_++; |
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current_frame_sample_++; |
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current_stream_sample_ += synth_->pcm.channels; |
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} |
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if (current_stream_sample_ > total_samples_) { |
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is_eos_ = true; |
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} |
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} |
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} |
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} |
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// We wrote everything! Reset, ready for the next frame.
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// We wrote everything! Reset, ready for the next frame.
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current_sample_ = -1; |
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current_frame_sample_ = -1; |
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return OutputInfo{.samples_written = output_sample, |
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return OutputInfo{.samples_written = output_sample, |
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.is_stream_finished = is_eos_}; |
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.is_stream_finished = is_eos_}; |
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} |
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} |
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