SilentPatch/SilentPatchSA/ModelInfoSA.cpp

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#include "StdAfxSA.h"
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#include "ModelInfoSA.h"
#include <iterator>
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static void* BaseModelInfoShutdown = AddressByVersion<void*>(0x4C4D50, 0x4C4DD0, 0x4CF590);
WRAPPER void CBaseModelInfo::Shutdown() { VARJMP(BaseModelInfoShutdown); }
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static void* varSetVehicleColour = AddressByVersion<void*>( 0x4C84B0, 0x4C86B0, 0x4D2DB0 );
WRAPPER void CVehicleModelInfo::SetVehicleColour( int32_t color1, int32_t color2, int32_t color3, int32_t color4 ) { VARJMP(varSetVehicleColour); }
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RwTexture* (*CCustomCarPlateMgr::CreatePlateTexture)(const char* pText, signed char nDesign) = AddressByVersion<RwTexture*(*)(const char*,signed char)>(0x6FDEA0, 0x6FE6D0, 0x736AC0);
signed char (*CCustomCarPlateMgr::GetMapRegionPlateDesign)() = AddressByVersion<signed char(*)()>(0x6FD7A0, 0x6FDFD0, 0x7363E0);
void (*CCustomCarPlateMgr::SetupMaterialPlatebackTexture)(RpMaterial* pMaterial, signed char nDesign) = AddressByVersion<void(*)(RpMaterial*,signed char)>(0x6FDE50, 0x6FE680, 0x736A80);
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bool (*CCustomCarPlateMgr::GeneratePlateText)(char* pBuf, int nLen); // Read from InjectDelayedPatches
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CBaseModelInfo** const ms_modelInfoPtrs = *AddressByVersion<CBaseModelInfo***>(0x509CB1, 0x4C0C96, 0x403DB7);
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int8_t* CVehicleModelInfo::ms_compsUsed = *AddressByVersion<int8_t**>( 0x4C973B + 2, 0, 0 );
int8_t* CVehicleModelInfo::ms_compsToUse = *AddressByVersion<int8_t**>( 0x4C8057 + 2, 0, 0 );
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static RwTexture** const ms_aDirtTextures = *AddressByVersion<RwTexture***>( 0x5D5DCC + 3, 0, 0x5F259C + 3 );
void RemapDirt( CVehicleModelInfo* modelInfo, uint32_t dirtID )
{
RpMaterial** materials = modelInfo->m_numDirtMaterials > CVehicleModelInfo::IN_PLACE_BUFFER_DIRT_SIZE ? modelInfo->m_dirtMaterials : modelInfo->m_staticDirtMaterials;
for ( size_t i = 0; i < modelInfo->m_numDirtMaterials; i++ )
{
RpMaterialSetTexture( materials[i], ms_aDirtTextures[dirtID] );
}
}
uint32_t CVehicleModelInfo::GetNumRemaps() const
{
uint32_t count = 0;
while ( m_awRemapTxds[count].Get() != -1 && count < _countof(m_awRemapTxds) )
{
count++;
}
return count;
}
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void CVehicleModelInfo::Shutdown()
{
CBaseModelInfo::Shutdown();
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delete[] m_dirtMaterials;
m_dirtMaterials = nullptr;
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delete m_apPlateMaterials;
m_apPlateMaterials = nullptr;
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}
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void CVehicleModelInfo::FindEditableMaterialList()
{
std::vector<RpMaterial*> editableMaterials;
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auto GetEditableMaterialListCB = [&]( RpAtomic* atomic ) -> RpAtomic* {
RpGeometryForAllMaterials( RpAtomicGetGeometry(atomic), [&]( RpMaterial* material ) -> RpMaterial* {
if ( RwTexture* texture = RpMaterialGetTexture(material) )
{
if ( const char* texName = RwTextureGetName(texture) )
{
if ( strcmp(texName, "vehiclegrunge256") == 0 )
{
editableMaterials.push_back( material );
}
}
}
return material;
} );
return atomic;
};
RpClumpForAllAtomics(reinterpret_cast<RpClump*>(pRwObject), GetEditableMaterialListCB);
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for ( uint32_t i = 0; i < m_pVehicleStruct->m_nNumExtras; i++ )
GetEditableMaterialListCB(m_pVehicleStruct->m_apExtras[i]);
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m_numDirtMaterials = editableMaterials.size();
if ( m_numDirtMaterials > IN_PLACE_BUFFER_DIRT_SIZE )
{
m_dirtMaterials = new RpMaterial* [m_numDirtMaterials];
std::copy( editableMaterials.begin(), editableMaterials.end(), stdext::make_checked_array_iterator(m_dirtMaterials, m_numDirtMaterials) );
}
else
{
m_dirtMaterials = nullptr;
// Use existing space instead of allocating new space
std::copy( editableMaterials.begin(), editableMaterials.end(), m_staticDirtMaterials );
}
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m_nPrimaryColor = -1;
m_nSecondaryColor = -1;
m_nTertiaryColor = -1;
m_nQuaternaryColor = -1;
}
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void CVehicleModelInfo::SetCarCustomPlate()
{
m_plateText[0] = '\0';
m_nPlateType = -1;
m_apPlateMaterials = new PlateMaterialsData;
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CCustomCarPlateMgr::SetupClump(reinterpret_cast<RpClump*>(pRwObject), m_apPlateMaterials);
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}
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void CVehicleModelInfo::ResetCompsForNoExtras()
{
ms_compsUsed[0] = ms_compsUsed[1] = -1;
ms_compsToUse[0] = ms_compsToUse[1] = -2;
}
void CCustomCarPlateMgr::PollPlates( RpClump* clump, PlateMaterialsData* materials )
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{
std::vector<RpMaterial*> carplates;
std::vector<RpMaterial*> carpbacks;
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RpClumpForAllAtomics( clump, [&] ( RpAtomic* atomic ) -> RpAtomic* {
RpGeometryForAllMaterials( RpAtomicGetGeometry(atomic), [&] ( RpMaterial* material ) -> RpMaterial* {
if ( RwTexture* texture = RpMaterialGetTexture(material) )
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{
if ( const char* texName = RwTextureGetName(texture) )
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{
if ( strcmp( texName, "carplate" ) == 0 )
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{
carplates.push_back( material );
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}
else if ( strcmp( texName, "carpback" ) == 0 )
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{
carpbacks.push_back( material );
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}
}
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}
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return material;
} );
return atomic;
} );
materials->m_numPlates = carplates.size();
materials->m_numPlatebacks = carpbacks.size();
if ( materials->m_numPlates > 0 )
{
materials->m_plates = new RpMaterial* [materials->m_numPlates];
std::copy( carplates.begin(), carplates.end(), stdext::make_checked_array_iterator(materials->m_plates, materials->m_numPlates) );
}
if ( materials->m_numPlatebacks > 0 )
{
materials->m_platebacks = new RpMaterial* [materials->m_numPlatebacks];
std::copy( carpbacks.begin(), carpbacks.end(), stdext::make_checked_array_iterator(materials->m_platebacks, materials->m_numPlatebacks) );
}
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}
void CCustomCarPlateMgr::SetupClump(RpClump* pClump, PlateMaterialsData* pMatsArray)
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{
PollPlates( pClump, pMatsArray );
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}
void CCustomCarPlateMgr::SetupClumpAfterVehicleUpgrade(RpClump* pClump, PlateMaterialsData* pMatsArray, signed char nDesign)
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{
UNREFERENCED_PARAMETER(nDesign);
if ( pMatsArray != nullptr )
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{
PollPlates( pClump, pMatsArray );
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}
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}