2018-10-07 03:42:33 +00:00
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#pragma once
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2015-08-08 04:49:42 +00:00
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2015-08-13 07:29:00 +00:00
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#include <map>
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2018-06-29 20:21:36 +00:00
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#include "DataSpec/DNACommon/DNACommon.hpp"
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#include "DataSpec/DNACommon/ANCS.hpp"
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2015-08-11 23:32:02 +00:00
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#include "CMDLMaterials.hpp"
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2015-08-13 07:29:00 +00:00
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#include "CINF.hpp"
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#include "CSKR.hpp"
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#include "ANIM.hpp"
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2016-04-09 23:19:17 +00:00
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#include "EVNT.hpp"
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2016-03-04 23:04:53 +00:00
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#include "athena/FileReader.hpp"
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2015-08-08 04:49:42 +00:00
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2018-12-08 05:30:43 +00:00
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namespace DataSpec::DNAMP1 {
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2015-08-08 04:49:42 +00:00
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2018-12-08 05:30:43 +00:00
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struct ANCS : BigDNA {
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using CINFType = CINF;
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using CSKRType = CSKR;
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using ANIMType = ANIM;
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2015-08-13 07:29:00 +00:00
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2018-12-08 05:30:43 +00:00
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AT_DECL_DNA_YAML
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Value<atUint16> version;
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struct CharacterSet : BigDNA {
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2018-02-22 07:24:51 +00:00
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AT_DECL_DNA_YAML
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2015-08-08 04:49:42 +00:00
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Value<atUint16> version;
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2018-12-08 05:30:43 +00:00
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Value<atUint32> characterCount;
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struct CharacterInfo : BigDNA {
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AT_DECL_DNA_YAML
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Delete expl;
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atUint32 idx;
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std::string name;
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UniqueID32 cmdl;
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UniqueID32 cskr;
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UniqueID32 cinf;
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struct Animation : BigDNA {
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2018-02-22 07:24:51 +00:00
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AT_DECL_DNA_YAML
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2018-12-08 05:30:43 +00:00
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Value<atUint32> animIdx;
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String<-1> strA;
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String<-1> strB;
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};
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std::vector<Animation> animations;
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2015-08-08 04:49:42 +00:00
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2018-12-08 05:30:43 +00:00
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struct PASDatabase : BigDNA {
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2018-02-22 07:24:51 +00:00
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AT_DECL_DNA_YAML
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2018-12-08 05:30:43 +00:00
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Value<atUint32> magic;
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Value<atUint32> animStateCount;
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Value<atUint32> defaultState;
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struct AnimState : BigDNA {
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AT_DECL_DNA_YAML
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Delete expl;
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atUint32 id;
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struct ParmInfo : BigDNA {
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2018-02-22 07:24:51 +00:00
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AT_DECL_DNA_YAML
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2015-08-08 04:49:42 +00:00
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Delete expl;
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2018-12-08 05:30:43 +00:00
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enum class DataType { Int32 = 0, UInt32 = 1, Float = 2, Bool = 3, Enum = 4 };
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union Parm {
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atInt32 int32;
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atUint32 uint32;
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float float32;
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bool bool1;
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Parm() : int32(0) {}
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Parm(atInt32 val) : int32(val) {}
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Parm(atUint32 val) : uint32(val) {}
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Parm(float val) : float32(val) {}
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Parm(bool val) : bool1(val) {}
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};
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2015-08-08 04:49:42 +00:00
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2018-12-08 05:30:43 +00:00
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atUint32 parmType;
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atUint32 weightFunction;
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float weight;
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Parm range[2];
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};
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std::vector<ParmInfo> parmInfos;
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struct AnimInfo {
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atUint32 id;
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std::vector<ParmInfo::Parm> parmVals;
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};
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std::vector<AnimInfo> animInfos;
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2015-08-08 04:49:42 +00:00
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};
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2018-12-08 05:30:43 +00:00
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Vector<AnimState, AT_DNA_COUNT(animStateCount)> animStates;
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} pasDatabase;
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2015-08-08 04:49:42 +00:00
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2018-12-08 05:30:43 +00:00
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struct ParticleResData {
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std::vector<UniqueID32> part;
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std::vector<UniqueID32> swhc;
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std::vector<UniqueID32> unk;
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std::vector<UniqueID32> elsc;
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} partResData;
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2015-08-08 04:49:42 +00:00
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2018-12-08 05:30:43 +00:00
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atUint32 unk1 = 0;
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2015-08-08 04:49:42 +00:00
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2018-12-08 05:30:43 +00:00
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struct ActionAABB : BigDNA {
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AT_DECL_DNA_YAML
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String<-1> name;
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Value<atVec3f> aabb[2];
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};
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std::vector<ActionAABB> animAABBs;
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2015-08-08 04:49:42 +00:00
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2018-12-08 05:30:43 +00:00
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struct Effect : BigDNA {
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AT_DECL_DNA_YAML
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String<-1> name;
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Value<atUint32> compCount;
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struct EffectComponent : BigDNA {
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AT_DECL_DNA_YAML
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String<-1> name;
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DNAFourCC type;
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UniqueID32 id;
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String<-1> locator;
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Value<float> scale;
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Value<atUint32> parentMode;
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Value<atUint32> flags;
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2015-08-08 04:49:42 +00:00
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};
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2018-12-08 05:30:43 +00:00
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Vector<EffectComponent, AT_DNA_COUNT(compCount)> comps;
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};
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std::vector<Effect> effects;
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2015-08-11 23:32:02 +00:00
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2018-12-08 05:30:43 +00:00
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UniqueID32Zero cmdlIce;
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UniqueID32Zero cskrIce;
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2015-08-11 23:32:02 +00:00
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2018-12-08 05:30:43 +00:00
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std::vector<atUint32> animIdxs;
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};
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Vector<CharacterInfo, AT_DNA_COUNT(characterCount)> characters;
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} characterSet;
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2016-04-06 01:44:07 +00:00
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2018-12-08 05:30:43 +00:00
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struct AnimationSet : BigDNA {
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AT_DECL_DNA_YAML
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Delete expl;
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struct MetaAnimPrimitive;
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struct IMetaAnim : BigDNAVYaml {
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Delete expl;
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enum class Type { Primitive = 0, Blend = 1, PhaseBlend = 2, Random = 3, Sequence = 4 } m_type;
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const char* m_typeStr;
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IMetaAnim(Type type, const char* typeStr) : m_type(type), m_typeStr(typeStr) {}
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virtual void gatherPrimitives(PAKRouter<PAKBridge>* pakRouter,
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std::map<atUint32, DNAANCS::AnimationResInfo<UniqueID32>>& out) = 0;
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virtual bool enumeratePrimitives(const std::function<bool(MetaAnimPrimitive& prim)>& func) = 0;
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};
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struct MetaAnimFactory : BigDNA {
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AT_DECL_EXPLICIT_DNA_YAML
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std::unique_ptr<IMetaAnim> m_anim;
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};
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struct MetaAnimPrimitive : IMetaAnim {
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AT_DECL_DNA_YAML
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AT_DECL_DNAV
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MetaAnimPrimitive() : IMetaAnim(Type::Primitive, "Primitive") {}
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UniqueID32 animId;
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Value<atUint32> animIdx;
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String<-1> animName;
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Value<float> unk1;
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Value<atUint32> unk2;
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void gatherPrimitives(PAKRouter<PAKBridge>* pakRouter,
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std::map<atUint32, DNAANCS::AnimationResInfo<UniqueID32>>& out);
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bool enumeratePrimitives(const std::function<bool(MetaAnimPrimitive& prim)>& func) { return func(*this); }
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};
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struct MetaAnimBlend : IMetaAnim {
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MetaAnimBlend() : IMetaAnim(Type::Blend, "Blend") {}
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AT_DECL_DNA_YAML
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AT_DECL_DNAV
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MetaAnimFactory animA;
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MetaAnimFactory animB;
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Value<float> unkFloat;
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Value<atUint8> unk;
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void gatherPrimitives(PAKRouter<PAKBridge>* pakRouter,
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std::map<atUint32, DNAANCS::AnimationResInfo<UniqueID32>>& out) {
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animA.m_anim->gatherPrimitives(pakRouter, out);
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animB.m_anim->gatherPrimitives(pakRouter, out);
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}
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bool enumeratePrimitives(const std::function<bool(MetaAnimPrimitive& prim)>& func) {
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if (!animA.m_anim->enumeratePrimitives(func))
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return false;
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if (!animB.m_anim->enumeratePrimitives(func))
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return false;
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return true;
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}
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};
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struct MetaAnimPhaseBlend : IMetaAnim {
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MetaAnimPhaseBlend() : IMetaAnim(Type::PhaseBlend, "PhaseBlend") {}
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AT_DECL_DNA_YAML
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AT_DECL_DNAV
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MetaAnimFactory animA;
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MetaAnimFactory animB;
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Value<float> unkFloat;
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Value<atUint8> unk;
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void gatherPrimitives(PAKRouter<PAKBridge>* pakRouter,
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std::map<atUint32, DNAANCS::AnimationResInfo<UniqueID32>>& out) {
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animA.m_anim->gatherPrimitives(pakRouter, out);
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animB.m_anim->gatherPrimitives(pakRouter, out);
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}
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bool enumeratePrimitives(const std::function<bool(MetaAnimPrimitive& prim)>& func) {
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if (!animA.m_anim->enumeratePrimitives(func))
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return false;
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if (!animB.m_anim->enumeratePrimitives(func))
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return false;
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return true;
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}
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};
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struct MetaAnimRandom : IMetaAnim {
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MetaAnimRandom() : IMetaAnim(Type::Random, "Random") {}
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AT_DECL_DNA_YAML
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AT_DECL_DNAV
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Value<atUint32> animCount;
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struct Child : BigDNA {
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AT_DECL_DNA
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MetaAnimFactory anim;
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Value<atUint32> probability;
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};
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Vector<Child, AT_DNA_COUNT(animCount)> children;
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void gatherPrimitives(PAKRouter<PAKBridge>* pakRouter,
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std::map<atUint32, DNAANCS::AnimationResInfo<UniqueID32>>& out) {
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for (const auto& child : children)
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child.anim.m_anim->gatherPrimitives(pakRouter, out);
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}
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bool enumeratePrimitives(const std::function<bool(MetaAnimPrimitive& prim)>& func) {
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for (auto& child : children)
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if (!child.anim.m_anim->enumeratePrimitives(func))
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return false;
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return true;
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}
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};
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struct MetaAnimSequence : IMetaAnim {
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MetaAnimSequence() : IMetaAnim(Type::Sequence, "Sequence") {}
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AT_DECL_DNA_YAML
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AT_DECL_DNAV
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Value<atUint32> animCount;
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Vector<MetaAnimFactory, AT_DNA_COUNT(animCount)> children;
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void gatherPrimitives(PAKRouter<PAKBridge>* pakRouter,
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std::map<atUint32, DNAANCS::AnimationResInfo<UniqueID32>>& out) {
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for (const auto& child : children)
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child.m_anim->gatherPrimitives(pakRouter, out);
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}
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bool enumeratePrimitives(const std::function<bool(MetaAnimPrimitive& prim)>& func) {
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for (auto& child : children)
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if (!child.m_anim->enumeratePrimitives(func))
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return false;
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return true;
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}
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};
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struct Animation : BigDNA {
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AT_DECL_DNA_YAML
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String<-1> name;
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MetaAnimFactory metaAnim;
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};
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std::vector<Animation> animations;
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struct IMetaTrans : BigDNAVYaml {
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Delete expl;
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enum class Type {
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MetaAnim = 0,
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Trans = 1,
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PhaseTrans = 2,
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NoTrans = 3,
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} m_type;
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const char* m_typeStr;
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IMetaTrans(Type type, const char* typeStr) : m_type(type), m_typeStr(typeStr) {}
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virtual void gatherPrimitives(PAKRouter<PAKBridge>* pakRouter,
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std::map<atUint32, DNAANCS::AnimationResInfo<UniqueID32>>& out) {}
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virtual bool enumeratePrimitives(const std::function<bool(MetaAnimPrimitive& prim)>& func) { return true; }
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};
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struct MetaTransFactory : BigDNA {
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AT_DECL_DNA_YAML
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Delete expl;
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std::unique_ptr<IMetaTrans> m_trans;
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};
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struct MetaTransMetaAnim : IMetaTrans {
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MetaTransMetaAnim() : IMetaTrans(Type::MetaAnim, "MetaAnim") {}
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AT_DECL_DNA_YAML
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AT_DECL_DNAV
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MetaAnimFactory anim;
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void gatherPrimitives(PAKRouter<PAKBridge>* pakRouter,
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std::map<atUint32, DNAANCS::AnimationResInfo<UniqueID32>>& out) {
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anim.m_anim->gatherPrimitives(pakRouter, out);
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}
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bool enumeratePrimitives(const std::function<bool(MetaAnimPrimitive& prim)>& func) {
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return anim.m_anim->enumeratePrimitives(func);
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}
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};
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struct MetaTransTrans : IMetaTrans {
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MetaTransTrans() : IMetaTrans(Type::Trans, "Trans") {}
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AT_DECL_DNA_YAML
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AT_DECL_DNAV
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Value<float> transDurTime;
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Value<atUint32> transDurTimeMode;
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Value<bool> unk2;
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Value<bool> runA;
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Value<atUint32> flags;
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};
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struct MetaTransPhaseTrans : IMetaTrans {
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MetaTransPhaseTrans() : IMetaTrans(Type::PhaseTrans, "PhaseTrans") {}
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AT_DECL_DNA_YAML
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AT_DECL_DNAV
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Value<float> transDurTime;
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Value<atUint32> transDurTimeMode;
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Value<bool> unk2;
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Value<bool> runA;
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Value<atUint32> flags;
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};
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struct Transition : BigDNA {
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AT_DECL_DNA_YAML
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Value<atUint32> unk;
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Value<atUint32> animIdxA;
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Value<atUint32> animIdxB;
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MetaTransFactory metaTrans;
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};
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std::vector<Transition> transitions;
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MetaTransFactory defaultTransition;
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struct AdditiveAnimationInfo : BigDNA {
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AT_DECL_DNA_YAML
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Value<atUint32> animIdx;
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2019-04-07 05:14:48 +00:00
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Value<float> fadeInDur;
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Value<float> fadeOutDur;
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2018-12-08 05:30:43 +00:00
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};
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std::vector<AdditiveAnimationInfo> additiveAnims;
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2019-04-07 05:14:48 +00:00
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float additiveDefaultFadeInDur = 0.0;
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float additiveDefaultFadeOutDur = 0.0;
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2018-12-08 05:30:43 +00:00
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struct HalfTransition : BigDNA {
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AT_DECL_DNA_YAML
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Value<atUint32> animIdx;
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MetaTransFactory metaTrans;
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};
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std::vector<HalfTransition> halfTransitions;
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struct AnimationResources : BigDNA {
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AT_DECL_DNA_YAML
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UniqueID32 animId;
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UniqueID32 evntId;
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};
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std::vector<AnimationResources> animResources;
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} animationSet;
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void getCharacterResInfo(std::vector<DNAANCS::CharacterResInfo<UniqueID32>>& out) const {
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out.clear();
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out.reserve(characterSet.characters.size());
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for (const CharacterSet::CharacterInfo& ci : characterSet.characters) {
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out.emplace_back();
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DNAANCS::CharacterResInfo<UniqueID32>& chOut = out.back();
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chOut.name = ci.name;
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chOut.cmdl = ci.cmdl;
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chOut.cskr = ci.cskr;
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chOut.cinf = ci.cinf;
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2019-07-20 04:27:21 +00:00
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if (ci.cmdlIce.isValid())
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2018-12-08 05:30:43 +00:00
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chOut.overlays.emplace_back("ICE", std::make_pair(ci.cmdlIce, ci.cskrIce));
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2017-11-15 04:12:13 +00:00
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}
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2018-12-08 05:30:43 +00:00
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}
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void getAnimationResInfo(PAKRouter<PAKBridge>* pakRouter,
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std::map<atUint32, DNAANCS::AnimationResInfo<UniqueID32>>& out) const {
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out.clear();
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for (const AnimationSet::Animation& ai : animationSet.animations)
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if (AnimationSet::IMetaAnim* anim = ai.metaAnim.m_anim.get())
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anim->gatherPrimitives(pakRouter, out);
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for (const AnimationSet::Transition& ti : animationSet.transitions)
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if (AnimationSet::IMetaTrans* trans = ti.metaTrans.m_trans.get())
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trans->gatherPrimitives(pakRouter, out);
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if (AnimationSet::IMetaTrans* trans = animationSet.defaultTransition.m_trans.get())
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trans->gatherPrimitives(pakRouter, out);
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}
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void enumeratePrimitives(const std::function<bool(AnimationSet::MetaAnimPrimitive& prim)>& func) {
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for (const AnimationSet::Animation& ai : animationSet.animations)
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if (AnimationSet::IMetaAnim* anim = ai.metaAnim.m_anim.get())
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anim->enumeratePrimitives(func);
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for (const AnimationSet::Transition& ti : animationSet.transitions)
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if (AnimationSet::IMetaTrans* trans = ti.metaTrans.m_trans.get())
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trans->enumeratePrimitives(func);
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if (AnimationSet::IMetaTrans* trans = animationSet.defaultTransition.m_trans.get())
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trans->enumeratePrimitives(func);
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}
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void gatherDependencies(std::vector<hecl::ProjectPath>& pathsOut, int charIdx) const {
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auto doCi = [&](const CharacterSet::CharacterInfo& ci) {
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|
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for (const auto& id : ci.partResData.part)
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g_curSpec->flattenDependencies(id, pathsOut);
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for (const auto& id : ci.partResData.swhc)
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|
g_curSpec->flattenDependencies(id, pathsOut);
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for (const auto& id : ci.partResData.unk)
|
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|
|
g_curSpec->flattenDependencies(id, pathsOut);
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|
|
for (const auto& id : ci.partResData.elsc)
|
|
|
|
g_curSpec->flattenDependencies(id, pathsOut);
|
|
|
|
};
|
|
|
|
if (charIdx < 0)
|
|
|
|
for (const CharacterSet::CharacterInfo& ci : characterSet.characters)
|
|
|
|
doCi(ci);
|
|
|
|
else if (charIdx < characterSet.characters.size())
|
|
|
|
doCi(characterSet.characters[charIdx]);
|
|
|
|
}
|
|
|
|
|
|
|
|
static bool Extract(const SpecBase& dataSpec, PAKEntryReadStream& rs, const hecl::ProjectPath& outPath,
|
|
|
|
PAKRouter<PAKBridge>& pakRouter, const PAK::Entry& entry, bool force, hecl::blender::Token& btok,
|
|
|
|
std::function<void(const hecl::SystemChar*)> fileChanged);
|
|
|
|
|
|
|
|
static bool Cook(const hecl::ProjectPath& outPath, const hecl::ProjectPath& inPath, const DNAANCS::Actor& actor);
|
|
|
|
|
|
|
|
static bool CookCINF(const hecl::ProjectPath& outPath, const hecl::ProjectPath& inPath, const DNAANCS::Actor& actor);
|
|
|
|
|
|
|
|
static bool CookCSKR(const hecl::ProjectPath& outPath, const hecl::ProjectPath& inPath, const DNAANCS::Actor& actor,
|
|
|
|
const std::function<bool(const hecl::ProjectPath& modelPath)>& modelCookFunc);
|
|
|
|
static bool CookCSKRPC(const hecl::ProjectPath& outPath, const hecl::ProjectPath& inPath, const DNAANCS::Actor& actor,
|
2017-02-13 06:51:47 +00:00
|
|
|
const std::function<bool(const hecl::ProjectPath& modelPath)>& modelCookFunc);
|
2015-08-08 04:49:42 +00:00
|
|
|
|
2018-12-08 05:30:43 +00:00
|
|
|
static bool CookANIM(const hecl::ProjectPath& outPath, const hecl::ProjectPath& inPath, const DNAANCS::Actor& actor,
|
|
|
|
hecl::blender::DataStream& ds, bool pc);
|
|
|
|
};
|
2015-08-08 04:49:42 +00:00
|
|
|
|
2018-12-08 05:30:43 +00:00
|
|
|
} // namespace DataSpec::DNAMP1
|