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170 lines
3.2 KiB
C++
170 lines
3.2 KiB
C++
#include "common.h"
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#include "General.h"
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#include "Camera.h"
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#include "ModelInfo.h"
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#define LOD_DISTANCE (300.0f)
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void
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CSimpleModelInfo::DeleteRwObject(void)
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{
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int i;
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RwFrame *f;
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for(i = 0; i < m_numAtomics; i++)
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if(m_atomics[i]){
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f = RpAtomicGetFrame(m_atomics[i]);
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RpAtomicDestroy(m_atomics[i]);
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RwFrameDestroy(f);
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m_atomics[i] = nil;
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RemoveTexDictionaryRef();
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}
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}
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RwObject*
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CSimpleModelInfo::CreateInstance(void)
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{
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RpAtomic *atomic;
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if(m_atomics[0] == nil)
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return nil;
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atomic = RpAtomicClone(m_atomics[0]);
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RpAtomicSetFrame(atomic, RwFrameCreate());
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return (RwObject*)atomic;
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}
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RwObject*
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CSimpleModelInfo::CreateInstance(RwMatrix *matrix)
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{
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RpAtomic *atomic;
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RwFrame *frame;
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if(m_atomics[0] == nil)
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return nil;
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atomic = RpAtomicClone(m_atomics[0]);
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frame = RwFrameCreate();
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*RwFrameGetMatrix(frame) = *matrix;
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RpAtomicSetFrame(atomic, frame);
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return (RwObject*)atomic;
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}
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void
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CSimpleModelInfo::Init(void)
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{
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m_atomics[0] = nil;
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m_atomics[1] = nil;
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m_atomics[2] = nil;
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m_numAtomics = 0;
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m_firstDamaged = 0;
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m_normalCull = 0;
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m_isDamaged = 0;
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m_isBigBuilding = 0;
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m_noFade = 0;
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m_drawLast = 0;
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m_additive = 0;
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m_isSubway = 0;
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m_ignoreLight = 0;
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m_noZwrite = 0;
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}
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void
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CSimpleModelInfo::SetAtomic(int n, RpAtomic *atomic)
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{
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AddTexDictionaryRef();
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m_atomics[n] = atomic;
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if(m_ignoreLight){
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RpGeometry *geo = RpAtomicGetGeometry(atomic);
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RpGeometrySetFlags(geo, RpGeometryGetFlags(geo) & ~rpGEOMETRYLIGHT);
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}
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}
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void
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CSimpleModelInfo::SetLodDistances(float *dist)
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{
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m_lodDistances[0] = dist[0];
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m_lodDistances[1] = dist[1];
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m_lodDistances[2] = dist[2];
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}
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void
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CSimpleModelInfo::IncreaseAlpha(void)
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{
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if(m_alpha >= 0xEF)
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m_alpha = 0xFF;
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else
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m_alpha += 0x10;
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}
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float
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CSimpleModelInfo::GetLodDistance(int i)
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{
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return m_lodDistances[i] * TheCamera.LODDistMultiplier;
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}
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float
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CSimpleModelInfo::GetNearDistance(void)
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{
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return m_lodDistances[2] * TheCamera.LODDistMultiplier;
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}
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float
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CSimpleModelInfo::GetLargestLodDistance(void)
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{
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float d;
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if(m_firstDamaged == 0 || m_isDamaged)
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d = m_lodDistances[m_numAtomics-1];
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else
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d = m_lodDistances[m_firstDamaged-1];
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return d * TheCamera.LODDistMultiplier;
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}
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RpAtomic*
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CSimpleModelInfo::GetAtomicFromDistance(float dist)
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{
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int i;
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i = 0;
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if(m_isDamaged)
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i = m_firstDamaged;
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for(; i < m_numAtomics; i++)
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if(dist < m_lodDistances[i] * TheCamera.LODDistMultiplier)
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return m_atomics[i];
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return nil;
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}
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RpAtomic*
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CSimpleModelInfo::GetFirstAtomicFromDistance(float dist)
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{
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if(dist < m_lodDistances[0] * TheCamera.LODDistMultiplier)
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return m_atomics[0];
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return nil;
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}
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void
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CSimpleModelInfo::FindRelatedModel(void)
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{
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int i;
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CBaseModelInfo *mi;
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for(i = 0; i < MODELINFOSIZE; i++){
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mi = CModelInfo::GetModelInfo(i);
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if(mi && mi != this &&
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!CGeneral::faststrcmp(GetName()+3, mi->GetName()+3)){
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assert(mi->IsSimple());
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this->SetRelatedModel((CSimpleModelInfo*)mi);
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return;
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}
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}
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}
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void
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CSimpleModelInfo::SetupBigBuilding(void)
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{
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CSimpleModelInfo *related;
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if(m_lodDistances[0] > LOD_DISTANCE && m_atomics[2] == nil){
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m_isBigBuilding = 1;
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FindRelatedModel();
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related = GetRelatedModel();
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if(related)
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m_lodDistances[2] = related->GetLargestLodDistance()/TheCamera.LODDistMultiplier;
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else
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m_lodDistances[2] = 100.0f;
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}
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}
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