mirror of https://github.com/AxioDL/metaforce.git
692 lines
18 KiB
C++
692 lines
18 KiB
C++
#include "CSfxManager.hpp"
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#include "CSimplePool.hpp"
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namespace urde
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{
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static TLockedToken<std::vector<s16>> mpSfxTranslationTableTok;
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std::vector<s16>* CSfxManager::mpSfxTranslationTable = nullptr;
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static amuse::EffectReverbHiInfo s_ReverbHiQueued;
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static amuse::EffectChorusInfo s_ChorusQueued;
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static amuse::EffectReverbStdInfo s_ReverbStdQueued;
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static amuse::EffectDelayInfo s_DelayQueued;
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static amuse::EffectReverbHi* s_ReverbHiState = nullptr;
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static amuse::EffectChorus* s_ChorusState = nullptr;
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static amuse::EffectReverbStd* s_ReverbStdState = nullptr;
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static amuse::EffectDelay* s_DelayState = nullptr;
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CFactoryFnReturn FAudioTranslationTableFactory(const SObjectTag& tag, CInputStream& in,
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const CVParamTransfer& vparms,
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CObjectReference* selfRef)
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{
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std::unique_ptr<std::vector<s16>> obj = std::make_unique<std::vector<s16>>();
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u32 count = in.readUint32Big();
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obj->reserve(count);
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for (u32 i=0 ; i<count ; ++i)
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obj->push_back(in.readUint16Big());
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CSimplePool* sp = vparms.GetOwnedObj<CSimplePool*>();
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return TToken<std::vector<s16>>::GetIObjObjectFor(std::move(obj));
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}
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CSfxManager::CSfxChannel CSfxManager::m_channels[4];
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CSfxManager::ESfxChannels CSfxManager::m_currentChannel = CSfxManager::ESfxChannels::Default;
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bool CSfxManager::m_doUpdate;
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void* CSfxManager::m_usedSounds;
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bool CSfxManager::m_muted;
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bool CSfxManager::m_auxProcessingEnabled = false;
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float CSfxManager::m_reverbAmount = 1.f;
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CSfxManager::EAuxEffect CSfxManager::m_activeEffect = CSfxManager::EAuxEffect::None;
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CSfxManager::EAuxEffect CSfxManager::m_nextEffect = CSfxManager::EAuxEffect::None;
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u16 CSfxManager::kMaxPriority;
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u16 CSfxManager::kMedPriority;
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u16 CSfxManager::kInternalInvalidSfxId;
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u32 CSfxManager::kAllAreas;
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bool CSfxManager::LoadTranslationTable(CSimplePool* pool, const SObjectTag* tag)
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{
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if (!tag)
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return false;
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mpSfxTranslationTable = nullptr;
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mpSfxTranslationTableTok = pool->GetObj(*tag);
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if (!mpSfxTranslationTableTok)
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return false;
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return true;
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}
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bool CSfxManager::CSfxWrapper::IsPlaying() const
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{
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if (CBaseSfxWrapper::IsPlaying() && x1c_voiceHandle)
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return x1c_voiceHandle->state() == amuse::VoiceState::Playing;
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return false;
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}
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void CSfxManager::CSfxWrapper::Play()
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{
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x1c_voiceHandle = CAudioSys::GetAmuseEngine().fxStart(x18_sfxId, x20_vol, x22_pan);
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if (x1c_voiceHandle)
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{
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if (CSfxManager::IsAuxProcessingEnabled() && UseAcoustics())
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x1c_voiceHandle->setReverbVol(m_reverbAmount);
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SetPlaying(true);
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}
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x24_ready = false;
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}
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void CSfxManager::CSfxWrapper::Stop()
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{
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if (x1c_voiceHandle)
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{
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x1c_voiceHandle->keyOff();
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SetPlaying(false);
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x1c_voiceHandle.reset();
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}
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}
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bool CSfxManager::CSfxWrapper::Ready()
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{
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if (IsLooped())
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return true;
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return x24_ready;
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}
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u16 CSfxManager::CSfxWrapper::GetSfxId() const
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{
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return x18_sfxId;
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}
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void CSfxManager::CSfxWrapper::UpdateEmitterSilent()
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{
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x1c_voiceHandle->setVolume(1.f / 127.f);
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}
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void CSfxManager::CSfxWrapper::UpdateEmitter()
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{
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x1c_voiceHandle->setVolume(x20_vol);
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}
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void CSfxManager::CSfxWrapper::SetReverb(float rev)
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{
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if (IsAuxProcessingEnabled() && UseAcoustics())
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x1c_voiceHandle->setReverbVol(rev);
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}
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bool CSfxManager::CSfxEmitterWrapper::IsPlaying() const
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{
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if (IsLooped())
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return CBaseSfxWrapper::IsPlaying();
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if (CBaseSfxWrapper::IsPlaying() && x50_emitterHandle)
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return x50_emitterHandle->getVoice()->state() == amuse::VoiceState::Playing;
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return false;
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}
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void CSfxManager::CSfxEmitterWrapper::Play()
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{
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if (CSfxManager::IsAuxProcessingEnabled() && UseAcoustics())
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x1a_reverb = m_reverbAmount;
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else
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x1a_reverb = 0.f;
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x50_emitterHandle = CAudioSys::GetAmuseEngine().addEmitter(
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x24_parmData.x0_pos.v, x24_parmData.xc_dir.v,
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x24_parmData.x18_maxDist, x24_parmData.x1c_distComp,
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x24_parmData.x24_sfxId, x24_parmData.x27_minVol,
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x24_parmData.x26_maxVol);
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if (x50_emitterHandle)
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SetPlaying(true);
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x54_ready = false;
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}
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void CSfxManager::CSfxEmitterWrapper::Stop()
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{
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if (x50_emitterHandle)
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{
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x50_emitterHandle->getVoice()->keyOff();
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SetPlaying(false);
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x50_emitterHandle.reset();
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}
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}
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bool CSfxManager::CSfxEmitterWrapper::Ready()
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{
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if (IsLooped())
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return true;
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return x54_ready;
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}
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CSfxManager::ESfxAudibility CSfxManager::CSfxEmitterWrapper::GetAudible(const zeus::CVector3f& vec)
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{
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float magSq = (x24_parmData.x0_pos - vec).magSquared();
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float maxDist = x24_parmData.x18_maxDist * x24_parmData.x18_maxDist;
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if (magSq < maxDist * 0.25f)
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return ESfxAudibility::Aud3;
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else if (magSq < maxDist * 0.5f)
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return ESfxAudibility::Aud2;
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else if (magSq < maxDist)
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return ESfxAudibility::Aud1;
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return ESfxAudibility::Aud0;
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}
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u16 CSfxManager::CSfxEmitterWrapper::GetSfxId() const
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{
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return x24_parmData.x24_sfxId;
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}
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void CSfxManager::CSfxEmitterWrapper::UpdateEmitterSilent()
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{
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x50_emitterHandle->setPos(x24_parmData.x0_pos.v);
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x50_emitterHandle->setDir(x24_parmData.xc_dir.v);
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x50_emitterHandle->setMaxVol(1.f / 127.f);
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x55_cachedMaxVol = x24_parmData.x26_maxVol;
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}
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void CSfxManager::CSfxEmitterWrapper::UpdateEmitter()
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{
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x50_emitterHandle->setPos(x24_parmData.x0_pos.v);
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x50_emitterHandle->setDir(x24_parmData.xc_dir.v);
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x50_emitterHandle->setMaxVol(x55_cachedMaxVol);
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}
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void CSfxManager::CSfxEmitterWrapper::SetReverb(float rev)
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{
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if (IsAuxProcessingEnabled() && UseAcoustics())
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x1a_reverb = rev;
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}
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void CSfxManager::SetChannel(ESfxChannels chan)
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{
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if (m_currentChannel == chan)
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return;
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if (m_currentChannel != ESfxChannels::Invalid)
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TurnOffChannel(m_currentChannel);
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TurnOnChannel(chan);
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m_currentChannel = chan;
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}
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void CSfxManager::KillAll(ESfxChannels chan)
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{
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CSfxChannel& chanObj = m_channels[int(chan)];
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for (auto it = chanObj.x48_handles.begin() ; it != chanObj.x48_handles.end() ;)
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{
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const CSfxHandle& handle = *it;
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if (handle->IsPlaying())
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handle->Stop();
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handle->Release();
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it = chanObj.x48_handles.erase(it);
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}
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}
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void CSfxManager::TurnOnChannel(ESfxChannels chan)
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{
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CSfxChannel& chanObj = m_channels[int(chan)];
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m_currentChannel = chan;
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m_doUpdate = true;
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if (chanObj.x44_listenerActive)
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{
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for (const CSfxHandle& handle : chanObj.x48_handles)
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{
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handle->UpdateEmitter();
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}
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}
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}
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void CSfxManager::TurnOffChannel(ESfxChannels chan)
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{
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CSfxChannel& chanObj = m_channels[int(chan)];
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for (auto it = chanObj.x48_handles.begin() ; it != chanObj.x48_handles.end() ;)
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{
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const CSfxHandle& handle = *it;
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if (handle->IsLooped())
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{
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handle->UpdateEmitterSilent();
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}
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else
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{
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handle->Stop();
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it = chanObj.x48_handles.erase(it);
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continue;
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}
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++it;
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}
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for (auto it = chanObj.x48_handles.begin() ; it != chanObj.x48_handles.end() ;)
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{
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const CSfxHandle& handle = *it;
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if (!handle->IsLooped())
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{
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handle->Release();
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it = chanObj.x48_handles.erase(it);
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continue;
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}
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++it;
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}
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}
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void CSfxManager::AddListener(ESfxChannels,
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const zeus::CVector3f& vec1, const zeus::CVector3f& vec2,
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const zeus::CVector3f& right, const zeus::CVector3f& up,
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float, float, float, u32, u8)
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{
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}
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void CSfxManager::UpdateListener(const zeus::CVector3f& pos, const zeus::CVector3f& dir,
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const zeus::CVector3f& heading, const zeus::CVector3f& up,
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u8 vol)
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{
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}
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s16 CSfxManager::GetRank(CBaseSfxWrapper* sfx)
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{
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CSfxChannel& chanObj = m_channels[int(m_currentChannel)];
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if (!sfx->IsInArea())
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return 0;
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s16 rank = sfx->GetPriority() / 4;
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if (sfx->IsPlaying())
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++rank;
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if (sfx->IsLooped())
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rank -= 2;
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if (sfx->Ready() && !sfx->IsPlaying())
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rank += 3;
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if (chanObj.x44_listenerActive)
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{
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ESfxAudibility aud = sfx->GetAudible(chanObj.x0_pos);
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if (aud == ESfxAudibility::Aud0)
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return 0;
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rank += int(aud) / 2;
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}
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return rank;
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}
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void CSfxManager::ApplyReverb()
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{
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CSfxChannel& chanObj = m_channels[int(m_currentChannel)];
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for (const CSfxHandle& handle : chanObj.x48_handles)
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{
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handle->SetReverb(m_reverbAmount);
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}
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}
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float CSfxManager::GetReverbAmount()
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{
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return m_reverbAmount;
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}
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void CSfxManager::PitchBend(const CSfxHandle& handle, float pitch)
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{
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if (!handle->IsPlaying())
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CSfxManager::Update(0.f);
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if (handle->IsPlaying())
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{
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m_doUpdate = true;
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handle->GetVoice()->setPitchWheel(pitch);
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}
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}
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void CSfxManager::SfxVolume(const CSfxHandle& handle, float vol)
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{
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if (handle->IsEmitter())
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{
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CSfxWrapper& wrapper = static_cast<CSfxWrapper&>(*handle);
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wrapper.SetVolume(vol);
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}
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if (handle->IsPlaying())
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handle->GetVoice()->setVolume(vol);
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}
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u16 CSfxManager::TranslateSFXID(u16 id)
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{
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if (mpSfxTranslationTable == nullptr)
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return 0;
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u16 index = id;
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if (index >= mpSfxTranslationTable->size())
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return 0;
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s16 ret = mpSfxTranslationTable->at(index);
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if (ret == -1)
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return 0;
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return ret;
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}
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void CSfxManager::StopSound(const CSfxHandle& handle)
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{
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if (!handle)
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return;
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m_doUpdate = true;
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if (handle->IsPlaying())
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handle->Stop();
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handle->Release();
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CSfxChannel& chanObj = m_channels[int(m_currentChannel)];
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chanObj.x48_handles.erase(handle);
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}
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void CSfxManager::SfxStop(const CSfxHandle& handle)
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{
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StopSound(handle);
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}
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CSfxHandle CSfxManager::SfxStart(u16 id, float vol, float pan, bool useAcoustics, s16 prio, bool looped, s32 areaId)
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{
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if (m_muted || id == 0xffff)
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return {};
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m_doUpdate = true;
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CSfxHandle wrapper = std::make_shared<CSfxWrapper>(looped, prio, id, vol, pan, useAcoustics, areaId);
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CSfxChannel& chanObj = m_channels[int(m_currentChannel)];
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chanObj.x48_handles.insert(wrapper);
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return wrapper;
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}
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void CSfxManager::RemoveEmitter(const CSfxHandle& handle)
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{
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StopSound(handle);
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}
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void CSfxManager::UpdateEmitter(const CSfxHandle& handle, const zeus::CVector3f& pos,
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const zeus::CVector3f& dir, float maxVol)
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{
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if (!handle || !handle->IsEmitter() || !handle->IsPlaying())
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return;
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m_doUpdate = true;
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CSfxEmitterWrapper& emitter = static_cast<CSfxEmitterWrapper&>(*handle);
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emitter.GetEmitterData().x0_pos = pos;
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emitter.GetEmitterData().xc_dir = dir;
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emitter.GetEmitterData().x26_maxVol = maxVol;
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amuse::Emitter& h = *emitter.GetHandle();
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h.setPos(pos.v);
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h.setDir(dir.v);
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h.setMaxVol(maxVol);
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}
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CSfxHandle CSfxManager::AddEmitter(u16 id, const zeus::CVector3f& pos, const zeus::CVector3f& dir, float vol,
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bool useAcoustics, bool looped, s16 prio, s32 areaId)
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{
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CAudioSys::C3DEmitterParmData parmData;
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parmData.x0_pos = pos;
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parmData.xc_dir = dir;
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parmData.x18_maxDist = 150.f;
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parmData.x1c_distComp = 0.1f;
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parmData.x20_flags = 1;
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parmData.x24_sfxId = id;
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parmData.x26_maxVol = std::max(vol, 0.165f);
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parmData.x28_ = 0;
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parmData.x29_ = 0x7f;
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return AddEmitter(parmData, useAcoustics, prio, looped, areaId);
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}
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CSfxHandle CSfxManager::AddEmitter(const CAudioSys::C3DEmitterParmData& parmData,
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bool useAcoustics, s16 prio, bool looped, s32 areaId)
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{
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if (m_muted || parmData.x24_sfxId == 0xffff)
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return {};
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CAudioSys::C3DEmitterParmData data = parmData;
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if (looped)
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data.x20_flags |= 0x6;
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m_doUpdate = true;
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CSfxHandle wrapper = std::make_shared<CSfxEmitterWrapper>(looped, prio, data, useAcoustics, areaId);
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CSfxChannel& chanObj = m_channels[int(m_currentChannel)];
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chanObj.x48_handles.insert(wrapper);
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return wrapper;
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}
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void CSfxManager::StopAndRemoveAllEmitters()
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{
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for (int i=0 ; i<4 ; ++i)
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{
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CSfxChannel& chanObj = m_channels[i];
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for (auto it = chanObj.x48_handles.begin() ; it != chanObj.x48_handles.end() ;)
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{
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const CSfxHandle& handle = *it;
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if (handle->IsPlaying())
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handle->Stop();
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handle->Release();
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it = chanObj.x48_handles.erase(it);
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}
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}
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}
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void CSfxManager::EnableAuxCallback()
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{
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m_reverbAmount = 0.f;
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ApplyReverb();
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if (m_activeEffect != EAuxEffect::None)
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DisableAuxCallback();
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auto studio = CAudioSys::GetAmuseEngine().getDefaultStudio();
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amuse::Submix& smix = studio->getAuxA();
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m_activeEffect = m_nextEffect;
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switch (m_activeEffect)
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{
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case EAuxEffect::ReverbHi:
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s_ReverbHiState = &smix.makeReverbHi(s_ReverbHiQueued);
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break;
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case EAuxEffect::Chorus:
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s_ChorusState = &smix.makeChorus(s_ChorusQueued);
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break;
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case EAuxEffect::ReverbStd:
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s_ReverbStdState = &smix.makeReverbStd(s_ReverbStdQueued);
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break;
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case EAuxEffect::Delay:
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s_DelayState = &smix.makeDelay(s_DelayQueued);
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break;
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default: break;
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}
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m_auxProcessingEnabled = true;
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}
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void CSfxManager::PrepareDelayCallback(const amuse::EffectDelayInfo& info)
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{
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DisableAuxProcessing();
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s_DelayQueued = info;
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m_nextEffect = EAuxEffect::Delay;
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if (m_reverbAmount == 0.f)
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EnableAuxCallback();
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}
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void CSfxManager::PrepareReverbStdCallback(const amuse::EffectReverbStdInfo& info)
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{
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DisableAuxProcessing();
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s_ReverbStdQueued = info;
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m_nextEffect = EAuxEffect::ReverbStd;
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if (m_reverbAmount == 0.f)
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EnableAuxCallback();
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}
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void CSfxManager::PrepareChorusCallback(const amuse::EffectChorusInfo& info)
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{
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DisableAuxProcessing();
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s_ChorusQueued = info;
|
|
m_nextEffect = EAuxEffect::Chorus;
|
|
if (m_reverbAmount == 0.f)
|
|
EnableAuxCallback();
|
|
}
|
|
|
|
void CSfxManager::PrepareReverbHiCallback(const amuse::EffectReverbHiInfo& info)
|
|
{
|
|
DisableAuxProcessing();
|
|
s_ReverbHiQueued = info;
|
|
m_nextEffect = EAuxEffect::ReverbHi;
|
|
if (m_reverbAmount == 0.f)
|
|
EnableAuxCallback();
|
|
}
|
|
|
|
void CSfxManager::DisableAuxCallback()
|
|
{
|
|
auto studio = CAudioSys::GetAmuseEngine().getDefaultStudio();
|
|
studio->getAuxA().clearEffects();
|
|
|
|
switch (m_activeEffect)
|
|
{
|
|
case EAuxEffect::ReverbHi:
|
|
s_ReverbHiState = nullptr;
|
|
break;
|
|
case EAuxEffect::Chorus:
|
|
s_ChorusState = nullptr;
|
|
break;
|
|
case EAuxEffect::ReverbStd:
|
|
s_ReverbStdState = nullptr;
|
|
break;
|
|
case EAuxEffect::Delay:
|
|
s_DelayState = nullptr;
|
|
break;
|
|
default: break;
|
|
}
|
|
|
|
m_activeEffect = EAuxEffect::None;
|
|
}
|
|
|
|
void CSfxManager::DisableAuxProcessing()
|
|
{
|
|
m_nextEffect = EAuxEffect::None;
|
|
m_auxProcessingEnabled = false;
|
|
}
|
|
|
|
void CSfxManager::SetActiveAreas(const rstl::reserved_vector<TAreaId, 10>& areas)
|
|
{
|
|
CSfxChannel& chanObj = m_channels[int(m_currentChannel)];
|
|
|
|
for (const CSfxHandle& hnd : chanObj.x48_handles)
|
|
{
|
|
TAreaId sndArea = hnd->GetArea();
|
|
if (sndArea == kInvalidAreaId)
|
|
{
|
|
hnd->SetInArea(true);
|
|
}
|
|
else
|
|
{
|
|
bool inArea = false;
|
|
for (TAreaId id : areas)
|
|
{
|
|
if (sndArea == id)
|
|
{
|
|
inArea = true;
|
|
break;
|
|
}
|
|
}
|
|
m_doUpdate = true;
|
|
hnd->SetInArea(inArea);
|
|
}
|
|
}
|
|
}
|
|
|
|
void CSfxManager::Update(float dt)
|
|
{
|
|
CSfxChannel& chanObj = m_channels[int(m_currentChannel)];
|
|
|
|
for (auto it = chanObj.x48_handles.begin() ; it != chanObj.x48_handles.end() ;)
|
|
{
|
|
const CSfxHandle& handle = *it;
|
|
if (!handle->IsLooped())
|
|
{
|
|
float timeRem = handle->GetTimeRemaining();
|
|
handle->SetTimeRemaining(timeRem - dt);
|
|
if (timeRem < 0.f)
|
|
{
|
|
handle->Stop();
|
|
m_doUpdate = true;
|
|
it = chanObj.x48_handles.erase(it);
|
|
continue;
|
|
}
|
|
}
|
|
++it;
|
|
}
|
|
|
|
if (m_doUpdate)
|
|
{
|
|
std::vector<CSfxHandle> rankedSfx;
|
|
rankedSfx.reserve(chanObj.x48_handles.size());
|
|
for (const CSfxHandle& handle : chanObj.x48_handles)
|
|
{
|
|
rankedSfx.push_back(handle);
|
|
handle->SetRank(GetRank(handle.get()));
|
|
}
|
|
|
|
std::sort(rankedSfx.begin(), rankedSfx.end(),
|
|
[](const CSfxHandle& a, const CSfxHandle& b) -> bool
|
|
{
|
|
return a->GetRank() < b->GetRank();
|
|
});
|
|
|
|
for (int i=48 ; i<rankedSfx.size() ; ++i)
|
|
{
|
|
const CSfxHandle& handle = rankedSfx[i];
|
|
if (handle->IsPlaying())
|
|
{
|
|
handle->Stop();
|
|
chanObj.x48_handles.erase(handle);
|
|
}
|
|
}
|
|
|
|
for (const CSfxHandle& handle : rankedSfx)
|
|
{
|
|
if (handle->IsPlaying() && !handle->IsInArea())
|
|
{
|
|
handle->Stop();
|
|
chanObj.x48_handles.erase(handle);
|
|
}
|
|
}
|
|
|
|
for (const CSfxHandle& handle : chanObj.x48_handles)
|
|
{
|
|
if (handle->IsPlaying())
|
|
continue;
|
|
if (handle->Ready() && handle->IsInArea())
|
|
handle->Play();
|
|
}
|
|
|
|
m_doUpdate = false;
|
|
}
|
|
|
|
for (auto it = chanObj.x48_handles.begin() ; it != chanObj.x48_handles.end() ;)
|
|
{
|
|
const CSfxHandle& handle = *it;
|
|
if (!handle->IsPlaying() && !handle->IsLooped())
|
|
{
|
|
handle->Release();
|
|
m_doUpdate = true;
|
|
it = chanObj.x48_handles.erase(it);
|
|
continue;
|
|
}
|
|
++it;
|
|
}
|
|
|
|
if (m_auxProcessingEnabled && m_reverbAmount < 1.f)
|
|
{
|
|
m_reverbAmount = std::min(1.f, dt / 0.1f + m_reverbAmount);
|
|
ApplyReverb();
|
|
}
|
|
else if (!m_auxProcessingEnabled && m_reverbAmount > 0.f)
|
|
{
|
|
m_reverbAmount = std::max(0.f, m_reverbAmount - dt / (2.f * 0.1f));
|
|
ApplyReverb();
|
|
if (m_reverbAmount == 0.f)
|
|
{
|
|
DisableAuxCallback();
|
|
EnableAuxCallback();
|
|
}
|
|
}
|
|
|
|
if (mpSfxTranslationTableTok.IsLoaded() && !mpSfxTranslationTable)
|
|
mpSfxTranslationTable = mpSfxTranslationTableTok.GetObj();
|
|
}
|
|
|
|
void CSfxManager::Shutdown()
|
|
{
|
|
mpSfxTranslationTable = nullptr;
|
|
mpSfxTranslationTableTok = TLockedToken<std::vector<s16>>{};
|
|
StopAndRemoveAllEmitters();
|
|
DisableAuxCallback();
|
|
}
|
|
|
|
}
|