CDROM: Implement CDDA report
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@ -57,6 +57,7 @@ void CDROM::SoftReset()
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std::memset(&m_last_sector_header, 0, sizeof(m_last_sector_header));
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std::memset(&m_last_sector_subheader, 0, sizeof(m_last_sector_subheader));
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std::memset(&m_last_subq, 0, sizeof(m_last_subq));
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m_last_cdda_report_frame_nibble = 0xFF;
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m_next_cd_audio_volume_matrix[0][0] = 0x80;
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m_next_cd_audio_volume_matrix[0][1] = 0x00;
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@ -105,6 +106,7 @@ bool CDROM::DoState(StateWrapper& sw)
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sw.DoBytes(&m_last_sector_header, sizeof(m_last_sector_header));
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sw.DoBytes(&m_last_sector_subheader, sizeof(m_last_sector_subheader));
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sw.DoBytes(&m_last_subq, sizeof(m_last_subq));
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sw.Do(&m_last_cdda_report_frame_nibble);
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sw.Do(&m_cd_audio_volume_matrix);
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sw.Do(&m_next_cd_audio_volume_matrix);
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sw.Do(&m_xa_last_samples);
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@ -1042,6 +1044,8 @@ void CDROM::BeginReading(bool cdda)
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// TODO: Should the sector buffer be cleared here?
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m_sector_buffer.clear();
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m_last_cdda_report_frame_nibble = 0xFF;
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m_drive_state = cdda ? DriveState::Playing : DriveState::Reading;
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m_drive_remaining_ticks = GetTicksForRead();
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m_system->SetDowncount(m_drive_remaining_ticks);
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@ -1385,7 +1389,38 @@ void CDROM::ProcessCDDASector(const u8* raw_sector)
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Log_DevPrintf("Read sector %u as CDDA", m_media->GetPositionOnDisc());
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if (m_mode.report_audio)
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Log_ErrorPrintf("CDDA report not implemented");
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{
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const u8 frame_nibble = m_last_subq.absolute_frame_bcd >> 4;
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if (m_last_cdda_report_frame_nibble != frame_nibble)
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{
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m_last_cdda_report_frame_nibble = frame_nibble;
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Log_DebugPrintf("CDDA report at track[%02x] index[%02x] rel[%02x:%02x:%02x]", m_last_subq.track_number_bcd,
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m_last_subq.index_number_bcd, m_last_subq.relative_minute_bcd, m_last_subq.relative_second_bcd,
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m_last_subq.relative_frame_bcd);
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m_async_response_fifo.Clear();
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m_async_response_fifo.Push(m_secondary_status.bits);
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m_async_response_fifo.Push(m_last_subq.track_number_bcd);
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m_async_response_fifo.Push(m_last_subq.index_number_bcd);
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if (m_last_subq.absolute_frame_bcd & 0x10)
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{
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m_async_response_fifo.Push(m_last_subq.relative_minute_bcd);
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m_async_response_fifo.Push(0x80 | m_last_subq.relative_second_bcd);
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m_async_response_fifo.Push(m_last_subq.relative_frame_bcd);
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}
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else
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{
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m_async_response_fifo.Push(m_last_subq.absolute_minute_bcd);
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m_async_response_fifo.Push(m_last_subq.absolute_second_bcd);
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m_async_response_fifo.Push(m_last_subq.absolute_frame_bcd);
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}
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m_async_response_fifo.Push(0); // peak low
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m_async_response_fifo.Push(0); // peak high
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SetAsyncInterrupt(Interrupt::INT1);
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}
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}
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// Apply volume when pushing sectors to SPU.
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if (m_muted)
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@ -193,7 +193,7 @@ private:
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TickCount GetTicksForRead() const;
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TickCount GetTicksForSeek() const;
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void BeginCommand(Command command); // also update status register
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void EndCommand(); // also updates status register
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void EndCommand(); // also updates status register
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void ExecuteCommand();
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void ExecuteTestCommand(u8 subcommand);
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void BeginReading(bool cdda);
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@ -244,6 +244,7 @@ private:
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CDImage::SectorHeader m_last_sector_header{};
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CDXA::XASubHeader m_last_sector_subheader{};
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CDImage::SubChannelQ m_last_subq{};
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u8 m_last_cdda_report_frame_nibble = 0xFF;
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std::array<std::array<u8, 2>, 2> m_cd_audio_volume_matrix{};
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std::array<std::array<u8, 2>, 2> m_next_cd_audio_volume_matrix{};
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