mirror of https://github.com/AxioDL/metaforce.git
149 lines
4.8 KiB
C++
149 lines
4.8 KiB
C++
#ifndef __DNAMP1_MREA_HPP__
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#define __DNAMP1_MREA_HPP__
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#include "../DNACommon/DNACommon.hpp"
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#include "CMDLMaterials.hpp"
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#include "CSKR.hpp"
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namespace DataSpec
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{
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namespace DNAMP1
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{
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struct MREA
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{
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struct Header : BigDNA
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{
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DECL_DNA
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Value<atUint32> magic;
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Value<atUint32> version;
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Value<atVec4f> localToWorldMtx[3];
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Value<atUint32> meshCount;
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Value<atUint32> secCount;
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Value<atUint32> geomSecIdx;
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Value<atUint32> sclySecIdx;
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Value<atUint32> collisionSecIdx;
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Value<atUint32> unkSecIdx;
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Value<atUint32> lightSecIdx;
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Value<atUint32> visiSecIdx;
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Value<atUint32> pathSecIdx;
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Value<atUint32> arotSecIdx;
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Vector<atUint32, DNA_COUNT(secCount)> secSizes;
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};
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struct MeshHeader : BigDNA
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{
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DECL_DNA
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struct VisorFlags : BigDNA
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{
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DECL_DNA
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Value<atUint32> flags;
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enum class ThermalLevel
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{
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Cool,
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Hot,
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Warm
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};
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static const char* GetThermalLevelStr(ThermalLevel t)
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{
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switch (t)
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{
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case ThermalLevel::Cool: return "COOL";
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case ThermalLevel::Hot: return "HOT";
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case ThermalLevel::Warm: return "WARM";
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default: break;
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}
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return nullptr;
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}
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bool disableEnviro() const {return flags >> 1 & 0x1;}
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void setDisableEnviro(bool v) {flags &= ~0x2; flags |= v << 1;}
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bool disableThermal() const {return flags >> 2 & 0x1;}
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void setDisableThermal(bool v) {flags &= ~0x4; flags |= v << 2;}
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bool disableXray() const {return flags >> 3 & 0x1;}
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void setDisableXray(bool v) {flags &= ~0x8; flags |= v << 3;}
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ThermalLevel thermalLevel() const {return ThermalLevel(flags >> 4 & 0x3);}
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void setThermalLevel(ThermalLevel v) {flags &= ~0x30; flags |= atUint32(v) << 4;}
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const char* thermalLevelStr() const {return GetThermalLevelStr(thermalLevel());}
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void setFromBlenderProps(const std::unordered_map<std::string, std::string>& props);
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} visorFlags;
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Value<atVec4f> xfMtx[3];
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Value<atVec3f> aabb[2];
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};
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struct BabeDeadLight : BigDNA
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{
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DECL_DNA
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enum class LightType : atUint32
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{
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LocalAmbient,
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Directional,
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Custom,
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Spot,
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Spot2,
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LocalAmbient2
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};
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enum class Falloff : atUint32
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{
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Constant,
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Linear,
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Quadratic
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};
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Value<LightType> lightType;
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Value<atVec3f> color;
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Value<atVec3f> position;
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Value<atVec3f> direction;
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Value<float> q;
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Value<float> spotCutoff;
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Value<float> unk5;
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Value<bool> castShadows;
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Value<float> unk7;
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Value<Falloff> falloff;
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Value<float> unk9;
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};
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static void ReadBabeDeadToBlender_1_2(hecl::BlenderConnection::PyOutStream& os,
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athena::io::IStreamReader& rs);
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static void AddCMDLRigPairs(PAKEntryReadStream& rs,
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PAKRouter<PAKBridge>& pakRouter,
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std::unordered_map<UniqueID32, std::pair<UniqueID32, UniqueID32>>& addTo);
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static bool Extract(const SpecBase& dataSpec,
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PAKEntryReadStream& rs,
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const hecl::ProjectPath& outPath,
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PAKRouter<PAKBridge>& pakRouter,
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const PAK::Entry& entry,
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bool,
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hecl::BlenderToken& btok,
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std::function<void(const hecl::SystemChar*)>);
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static void Name(const SpecBase& dataSpec,
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PAKEntryReadStream& rs,
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PAKRouter<PAKBridge>& pakRouter,
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PAK::Entry& entry);
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using ColMesh = hecl::BlenderConnection::DataStream::ColMesh;
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using Light = hecl::BlenderConnection::DataStream::Light;
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static bool Cook(const hecl::ProjectPath& outPath,
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const hecl::ProjectPath& inPath,
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const std::vector<DNACMDL::Mesh>& meshes,
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const ColMesh& cMesh,
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const std::vector<Light>& lights);
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static bool PCCook(const hecl::ProjectPath& outPath,
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const hecl::ProjectPath& inPath,
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const std::vector<DNACMDL::Mesh>& meshes,
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const ColMesh& cMesh,
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const std::vector<Light>& lights,
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hecl::BlenderToken& btok);
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static bool CookPath(const hecl::ProjectPath& outPath,
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const hecl::ProjectPath& inPath);
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};
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}
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}
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#endif
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