2016-12-14 01:10:17 +00:00
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#include "CStaticAudioPlayer.hpp"
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#include "CDvdFile.hpp"
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#include "CDvdRequest.hpp"
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2018-12-08 05:30:43 +00:00
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namespace urde {
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2016-12-14 01:10:17 +00:00
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2016-12-14 22:56:59 +00:00
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#define RSF_BUFFER_SIZE 0x20000
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2018-12-08 05:30:43 +00:00
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CStaticAudioPlayer::CStaticAudioPlayer(boo::IAudioVoiceEngine& engine, std::string_view path, int loopStart,
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int loopEnd)
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: x0_path(path)
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, x1c_loopStartSamp(loopStart & 0xfffffffe)
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, x20_loopEndSamp(loopEnd & 0xfffffffe)
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, m_voiceCallback(*this)
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, m_voice(engine.allocateNewStereoVoice(32000, &m_voiceCallback)) {
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// These are mixed directly into boo voice engine instead
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// x28_dmaLeft.reset(new u8[640]);
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// x30_dmaRight.reset(new u8[640]);
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CDvdFile file(path);
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x10_rsfRem = file.Length();
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x14_rsfLength = x10_rsfRem;
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u32 bufCount = (x10_rsfRem + RSF_BUFFER_SIZE - 1) / RSF_BUFFER_SIZE;
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x48_buffers.reserve(bufCount);
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x38_dvdRequests.reserve(bufCount);
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for (int remBytes = x10_rsfRem; remBytes > 0; remBytes -= RSF_BUFFER_SIZE) {
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u32 thisSz = RSF_BUFFER_SIZE;
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if (remBytes < RSF_BUFFER_SIZE)
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thisSz = ROUND_UP_32(remBytes);
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x48_buffers.emplace_back(new u8[thisSz]);
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x38_dvdRequests.push_back(file.AsyncRead(x48_buffers.back().get(), thisSz));
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}
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g72x_init_state(&x58_leftState);
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g72x_init_state(&x8c_rightState);
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2016-12-14 01:10:17 +00:00
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}
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2018-12-08 05:30:43 +00:00
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bool CStaticAudioPlayer::IsReady() {
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if (x38_dvdRequests.size())
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return x38_dvdRequests.back()->IsComplete();
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return true;
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2016-12-14 01:10:17 +00:00
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}
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2018-12-08 05:30:43 +00:00
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void CStaticAudioPlayer::DecodeMonoAndMix(s16* bufOut, u32 numSamples, u32 cur, u32 loopEndCur, u32 loopStartCur,
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2016-12-14 01:10:17 +00:00
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int vol, g72x_state& state,
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2018-12-08 05:30:43 +00:00
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std::experimental::optional<g72x_state>& loopState) const {
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for (u32 remBytes = numSamples / 2; remBytes;) {
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u32 curBuf = cur / RSF_BUFFER_SIZE;
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u32 thisBytes = (curBuf + 1) * RSF_BUFFER_SIZE - cur;
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thisBytes = std::min(thisBytes, remBytes);
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u32 remTillLoop = loopEndCur - cur;
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remTillLoop = std::min(remTillLoop, thisBytes);
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const std::unique_ptr<u8[]>& buf = x48_buffers[curBuf];
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const u8* byte = &buf[cur - curBuf * RSF_BUFFER_SIZE];
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for (u32 i = 0; i < remTillLoop; ++i, ++byte) {
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if (!loopState && cur + i == loopStartCur)
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loopState.emplace(state);
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*bufOut = SampClamp(((g721_decoder(*byte & 0xf, &state) * vol) >> 15));
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bufOut += 2;
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*bufOut = SampClamp(((g721_decoder(*byte >> 4 & 0xf, &state) * vol) >> 15));
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bufOut += 2;
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}
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cur += remTillLoop;
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remBytes -= remTillLoop;
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if (cur == loopEndCur) {
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cur = loopStartCur;
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if (loopState)
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state = *loopState;
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2016-12-14 01:10:17 +00:00
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}
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2018-12-08 05:30:43 +00:00
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}
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2016-12-14 01:10:17 +00:00
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}
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2018-12-08 05:30:43 +00:00
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void CStaticAudioPlayer::Decode(s16* bufOut, u32 numSamples) {
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DecodeMonoAndMix(bufOut, numSamples, x18_curSamp / 2, x20_loopEndSamp / 2, x1c_loopStartSamp / 2, xc0_volume,
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x58_leftState, m_leftStateLoop);
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2016-12-14 01:10:17 +00:00
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2018-12-08 05:30:43 +00:00
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u32 halfway = x14_rsfLength / 2;
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DecodeMonoAndMix(bufOut + 1, numSamples, x18_curSamp / 2 + halfway, x20_loopEndSamp / 2 + halfway,
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x1c_loopStartSamp / 2 + halfway, xc0_volume, x8c_rightState, m_rightStateLoop);
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2016-12-14 01:10:17 +00:00
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2018-12-08 05:30:43 +00:00
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for (u32 remSamples = numSamples; remSamples;) {
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u32 remTillLoop = x20_loopEndSamp - x18_curSamp;
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remTillLoop = std::min(remTillLoop, remSamples);
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2016-12-14 01:10:17 +00:00
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2018-12-08 05:30:43 +00:00
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x18_curSamp += remTillLoop;
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remSamples -= remTillLoop;
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2016-12-14 01:10:17 +00:00
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2018-12-08 05:30:43 +00:00
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if (x18_curSamp == x20_loopEndSamp)
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x18_curSamp = x1c_loopStartSamp;
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}
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2016-12-14 01:10:17 +00:00
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}
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2018-12-08 05:30:43 +00:00
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} // namespace urde
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