mirror of https://github.com/AxioDL/metaforce.git
176 lines
6.4 KiB
C++
176 lines
6.4 KiB
C++
#pragma once
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#include "DataSpec/DNACommon/DNACommon.hpp"
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#include "DataSpec/DNACommon/GX.hpp"
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#include "../DNAMP1/CMDLMaterials.hpp"
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#include "DNAMP3.hpp"
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namespace DataSpec::DNAMP3 {
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struct MaterialSet : BigDNA {
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static constexpr bool OneSection() { return true; }
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AT_DECL_DNA
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Value<atUint32> materialCount;
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/* Dummy methods from MP1/2 */
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void addTexture(const UniqueID32&) {}
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void addMaterialEndOff(atUint32) { ++materialCount; }
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struct Material : BigDNA {
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AT_DECL_EXPLICIT_DNA
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using VAFlags = DNAMP1::MaterialSet::Material::VAFlags;
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struct Header : BigDNA {
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AT_DECL_DNA
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Value<atUint32> size;
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struct Flags : BigDNA {
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AT_DECL_DNA
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Value<atUint32> flags;
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bool alphaBlending() const { return (flags & 0x8) != 0; }
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void setAlphaBlending(bool enabled) {
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flags &= ~0x8;
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flags |= atUint32(enabled) << 3;
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}
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bool alphaTest() const { return (flags & 0x10) != 0; }
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void setPunchthroughAlpha(bool enabled) {
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flags &= ~0x10;
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flags |= atUint32(enabled) << 4;
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}
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bool additiveBlending() const { return (flags & 0x20) != 0; }
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void setAdditiveBlending(bool enabled) {
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flags &= ~0x20;
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flags |= atUint32(enabled) << 5;
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}
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bool shadowOccluderMesh() const { return (flags & 0x100) != 0; }
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void setShadowOccluderMesh(bool enabled) {
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flags &= ~0x100;
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flags |= atUint32(enabled) << 8;
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}
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bool lightmapUVArray() const { return false; } /* For polymorphic compatibility with MP1/2 */
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} flags;
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Value<atUint32> uniqueIdx;
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Value<atUint32> unk1;
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VAFlags vaFlags;
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Value<atUint32> unk2;
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Value<atUint32> unk3;
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Value<atUint32> unk4;
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} header;
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const Header::Flags& getFlags() const { return header.flags; }
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const VAFlags& getVAFlags() const { return header.vaFlags; }
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struct ISection : BigDNAV {
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Delete expl;
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enum class Type : atUint32 { PASS = SBIG('PASS'), CLR = SBIG('CLR '), INT = SBIG('INT ') } m_type;
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ISection(Type type) : m_type(type) {}
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virtual void constructNode(hecl::blender::PyOutStream& out, const PAKRouter<PAKBridge>& pakRouter,
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const PAK::Entry& entry, const Material::ISection* prevSection, unsigned idx,
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unsigned& texMapIdx, unsigned& texMtxIdx, unsigned& kColorIdx) const = 0;
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};
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struct SectionPASS : ISection {
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SectionPASS() : ISection(ISection::Type::PASS) {}
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static SectionPASS* castTo(ISection* sec) {
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return sec->m_type == Type::PASS ? static_cast<SectionPASS*>(sec) : nullptr;
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}
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AT_DECL_DNA
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AT_DECL_DNAV
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Value<atUint32> size;
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enum class Subtype : atUint32 {
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DIFF = SBIG('DIFF'),
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RIML = SBIG('RIML'),
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BLOL = SBIG('BLOL'),
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BLOD = SBIG('BLOD'),
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CLR = SBIG('CLR '),
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TRAN = SBIG('TRAN'),
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INCA = SBIG('INCA'),
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RFLV = SBIG('RFLV'),
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RFLD = SBIG('RFLD'),
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LRLD = SBIG('LRLD'),
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LURD = SBIG('LURD'),
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BLOI = SBIG('BLOI'),
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XRAY = SBIG('XRAY'),
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TOON = SBIG('TOON')
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};
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DNAFourCC subtype;
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struct Flags : BigDNA {
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AT_DECL_DNA
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Value<atUint32> flags;
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bool TRANInvert() const { return (flags & 0x10) != 0; }
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void setTRANInvert(bool enabled) {
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flags &= ~0x10;
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flags |= atUint32(enabled) << 4;
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}
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} flags;
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UniqueID64 txtrId;
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Value<atUint32> uvSrc;
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Value<atUint32> uvAnimSize;
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struct UVAnimation : BigDNA {
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AT_DECL_DNA
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Value<atUint16> unk1;
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Value<atUint16> unk2;
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DNAMP1::MaterialSet::Material::UVAnimation anim;
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};
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Vector<UVAnimation, AT_DNA_COUNT(uvAnimSize != 0)> uvAnim;
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void constructNode(hecl::blender::PyOutStream& out, const PAKRouter<PAKBridge>& pakRouter,
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const PAK::Entry& entry, const Material::ISection* prevSection, unsigned idx,
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unsigned& texMapIdx, unsigned& texMtxIdx, unsigned& kColorIdx) const;
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};
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struct SectionCLR : ISection {
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SectionCLR() : ISection(ISection::Type::CLR) {}
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static SectionCLR* castTo(ISection* sec) {
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return sec->m_type == Type::CLR ? static_cast<SectionCLR*>(sec) : nullptr;
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}
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AT_DECL_DNA
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AT_DECL_DNAV
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enum class Subtype : atUint32 { CLR = SBIG('CLR '), DIFB = SBIG('DIFB') };
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DNAFourCC subtype;
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GX::Color color;
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void constructNode(hecl::blender::PyOutStream& out, const PAKRouter<PAKBridge>& pakRouter,
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const PAK::Entry& entry, const Material::ISection* prevSection, unsigned idx,
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unsigned& texMapIdx, unsigned& texMtxIdx, unsigned& kColorIdx) const;
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};
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struct SectionINT : ISection {
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SectionINT() : ISection(ISection::Type::INT) {}
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static SectionINT* castTo(ISection* sec) {
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return sec->m_type == Type::INT ? static_cast<SectionINT*>(sec) : nullptr;
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}
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AT_DECL_DNA
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AT_DECL_DNAV
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enum class Subtype : atUint32 {
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OPAC = SBIG('OPAC'),
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BLOD = SBIG('BLOD'),
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BLOI = SBIG('BLOI'),
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BNIF = SBIG('BNIF'),
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XRBR = SBIG('XRBR')
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};
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DNAFourCC subtype;
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Value<atUint32> value;
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void constructNode(hecl::blender::PyOutStream& out, const PAKRouter<PAKBridge>& pakRouter,
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const PAK::Entry& entry, const Material::ISection* prevSection, unsigned idx,
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unsigned& texMapIdx, unsigned& texMtxIdx, unsigned& kColorIdx) const;
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};
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struct SectionFactory : BigDNA {
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AT_DECL_EXPLICIT_DNA
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std::unique_ptr<ISection> section;
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};
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std::vector<SectionFactory> sections;
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};
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Vector<Material, AT_DNA_COUNT(materialCount)> materials;
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static void RegisterMaterialProps(hecl::blender::PyOutStream& out);
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static void ConstructMaterial(hecl::blender::PyOutStream& out, const PAKRouter<PAKBridge>& pakRouter,
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const PAK::Entry& entry, const MaterialSet::Material& material, unsigned groupIdx,
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unsigned matIdx);
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void readToBlender(hecl::blender::PyOutStream& os, const PAKRouter<PAKBridge>& pakRouter,
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const PAKRouter<PAKBridge>::EntryType& entry, unsigned setIdx) {
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DNACMDL::ReadMaterialSetToBlender_3(os, *this, pakRouter, entry, setIdx);
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}
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void ensureTexturesExtracted(PAKRouter<PAKBridge>& pakRouter) const {}
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};
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} // namespace DataSpec::DNAMP3
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