metaforce/DataSpec/DNAMP1/ScriptObjects/Water.hpp

181 lines
5.3 KiB
C++

#ifndef _DNAMP1_WATER_HPP_
#define _DNAMP1_WATER_HPP_
#include "../../DNACommon/DNACommon.hpp"
#include "IScriptObject.hpp"
#include "Parameters.hpp"
namespace DataSpec
{
namespace DNAMP1
{
struct Water : IScriptObject
{
DECL_YAML
String<-1> name;
Value<atVec3f> location;
Value<atVec3f> volume;
DamageInfo damageInfo;
Value<atVec3f> unknown1;
Value<atUint32> unknown2;
Value<bool> unknown3;
Value<bool> unknown4;
UniqueID32 texture1;
UniqueID32 texture2;
UniqueID32 texture3;
UniqueID32 texture4;
UniqueID32 texture5;
UniqueID32 texture6;
Value<atVec3f> unknown5;
Value<float> unknown6;
Value<float> unknown7;
Value<float> unknown8;
Value<bool> unknown9;
Value<atUint32> unknown10;
Value<bool> unknown11;
Value<float> unknown12;
struct FluidUVMotion : BigYAML
{
DECL_YAML
struct FluidLayerMotion : BigYAML
{
DECL_YAML
Value<atUint32> unknown1;
Value<float> unknown2;
Value<float> unknown3;
Value<float> unknown4;
Value<float> unknown5;
};
/* BIG FAT WARNING: Do NOT re-order these, even if they seem incorrect */
FluidLayerMotion layer2;
FluidLayerMotion layer3;
FluidLayerMotion layer1;
Value<float> unknown1;
Value<float> unknown2;
} fluidUVMotion;
Value<float> unknown13;
Value<float> unknown14;
Value<float> unknown15;
Value<float> unknown16;
Value<float> unknown17;
Value<float> unknown18;
Value<float> unknown19;
Value<float> unknown20;
Value<atVec4f> unknown21;
Value<atVec4f> unknown22;
UniqueID32 particle1;
UniqueID32 particle2;
UniqueID32 particle3;
UniqueID32 particle4;
UniqueID32 particle5;
Value<atUint32> soundID1; // needs verification
Value<atUint32> soundID2; // needs verification
Value<atUint32> soundID3; // needs verification
Value<atUint32> soundID4; // needs verification
Value<atUint32> soundID5; // needs verification
Value<float> unknown23;
Value<atUint32> unknown24;
Value<float> unknown25;
Value<float> unknown26;
Value<float> unknown27;
Value<float> unknown28;
Value<float> unknown29;
Value<float> unknown30;
Value<float> unknown31;
Value<float> unknown32;
Value<atVec4f> unknown33; // CColor
UniqueID32 texture34;
Value<float> unknown35;
Value<float> unknown36;
Value<float> unknown37;
Value<atUint32> unknown38;
Value<atUint32> unknown39;
Value<bool> unknown40;
void nameIDs(PAKRouter<PAKBridge>& pakRouter) const
{
if (texture1)
{
PAK::Entry* ent = (PAK::Entry*)pakRouter.lookupEntry(texture1);
ent->name = name + "_tex1";
}
if (texture2)
{
PAK::Entry* ent = (PAK::Entry*)pakRouter.lookupEntry(texture2);
ent->name = name + "_tex2";
}
if (texture3)
{
PAK::Entry* ent = (PAK::Entry*)pakRouter.lookupEntry(texture3);
ent->name = name + "_tex3";
}
if (texture4)
{
PAK::Entry* ent = (PAK::Entry*)pakRouter.lookupEntry(texture4);
ent->name = name + "_tex4";
}
if (texture5)
{
PAK::Entry* ent = (PAK::Entry*)pakRouter.lookupEntry(texture5);
ent->name = name + "_tex5";
}
if (texture6)
{
PAK::Entry* ent = (PAK::Entry*)pakRouter.lookupEntry(texture6);
ent->name = name + "_tex6";
}
if (texture34)
{
PAK::Entry* ent = (PAK::Entry*)pakRouter.lookupEntry(texture34);
ent->name = name + "_tex34";
}
if (particle1)
{
PAK::Entry* ent = (PAK::Entry*)pakRouter.lookupEntry(particle1);
ent->name = name + "_part1";
}
if (particle2)
{
PAK::Entry* ent = (PAK::Entry*)pakRouter.lookupEntry(particle2);
ent->name = name + "_part2";
}
if (particle3)
{
PAK::Entry* ent = (PAK::Entry*)pakRouter.lookupEntry(particle3);
ent->name = name + "_part3";
}
if (particle4)
{
PAK::Entry* ent = (PAK::Entry*)pakRouter.lookupEntry(particle4);
ent->name = name + "_part4";
}
if (particle5)
{
PAK::Entry* ent = (PAK::Entry*)pakRouter.lookupEntry(particle5);
ent->name = name + "_part5";
}
}
void gatherDependencies(std::vector<hecl::ProjectPath>& pathsOut) const
{
g_curSpec->flattenDependencies(texture1, pathsOut);
g_curSpec->flattenDependencies(texture2, pathsOut);
g_curSpec->flattenDependencies(texture3, pathsOut);
g_curSpec->flattenDependencies(texture4, pathsOut);
g_curSpec->flattenDependencies(texture5, pathsOut);
g_curSpec->flattenDependencies(texture6, pathsOut);
g_curSpec->flattenDependencies(texture34, pathsOut);
g_curSpec->flattenDependencies(particle1, pathsOut);
g_curSpec->flattenDependencies(particle2, pathsOut);
g_curSpec->flattenDependencies(particle3, pathsOut);
g_curSpec->flattenDependencies(particle4, pathsOut);
g_curSpec->flattenDependencies(particle5, pathsOut);
}
};
}
}
#endif