276 lines
8.6 KiB
C++
276 lines
8.6 KiB
C++
#pragma once
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#include "StarColor.hpp"
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#include "StarCollisionBlock.hpp"
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#include "StarMaterialRenderProfile.hpp"
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#include "StarTileDamage.hpp"
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#include "StarItemDescriptor.hpp"
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namespace Star {
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STAR_CLASS(ParticleConfig);
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STAR_CLASS(MaterialDatabase);
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STAR_EXCEPTION(MaterialException, StarException);
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struct LiquidMaterialInteraction {
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float consumeLiquid;
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MaterialId transformTo;
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bool topOnly;
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};
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struct LiquidModInteraction {
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float consumeLiquid;
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ModId transformTo;
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bool topOnly;
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};
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class MaterialDatabase {
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public:
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MaterialDatabase();
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StringList materialNames() const;
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bool isMetaMaterialName(String const& name) const;
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bool isMaterialName(String const& name) const;
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bool isValidMaterialId(MaterialId material) const;
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MaterialId materialId(String const& materialName) const;
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String materialName(MaterialId materialId) const;
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Maybe<String> materialPath(MaterialId materialId) const;
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Maybe<Json> materialConfig(MaterialId materialId) const;
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String materialDescription(MaterialId materialId, String const& species) const;
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String materialDescription(MaterialId materialId) const;
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String materialShortDescription(MaterialId materialId) const;
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String materialCategory(MaterialId materialId) const;
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StringList modNames() const;
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bool isModName(String const& name) const;
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bool isValidModId(ModId mod) const;
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ModId modId(String const& modName) const;
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String const& modName(ModId modId) const;
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Maybe<String> modPath(ModId modId) const;
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Maybe<Json> modConfig(ModId modId) const;
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String modDescription(ModId modId, String const& species) const;
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String modDescription(ModId modId) const;
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String modShortDescription(ModId modId) const;
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// Will return nullptr if no rendering profile is available
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MaterialRenderProfileConstPtr materialRenderProfile(MaterialId modId) const;
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MaterialRenderProfileConstPtr modRenderProfile(ModId modId) const;
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TileDamageParameters materialDamageParameters(MaterialId materialId) const;
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TileDamageParameters modDamageParameters(ModId modId) const;
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bool modBreaksWithTile(ModId modId) const;
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CollisionKind materialCollisionKind(MaterialId materialId) const;
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bool canPlaceInLayer(MaterialId materialId, TileLayer layer) const;
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// Returned ItemDescriptor may be null
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ItemDescriptor materialItemDrop(MaterialId materialId) const;
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ItemDescriptor modItemDrop(ModId modId) const;
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bool isMultiColor(MaterialId materialId) const;
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bool foregroundLightTransparent(MaterialId materialId) const;
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bool backgroundLightTransparent(MaterialId materialId) const;
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bool occludesBehind(MaterialId materialId) const;
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ParticleConfigPtr miningParticle(MaterialId materialId, ModId modId = NoModId) const;
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String miningSound(MaterialId materialId, ModId modId = NoModId) const;
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String footstepSound(MaterialId materialId, ModId modId = NoModId) const;
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String defaultFootstepSound() const;
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Color materialParticleColor(MaterialId materialId, MaterialHue hueShift) const;
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Vec3F radiantLight(MaterialId materialId, ModId modId) const;
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bool supportsMod(MaterialId materialId, ModId modId) const;
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ModId tilledModFor(MaterialId materialId) const;
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bool isTilledMod(ModId modId) const;
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bool isSoil(MaterialId materialId) const;
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bool isFallingMaterial(MaterialId materialId) const;
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bool isCascadingFallingMaterial(MaterialId materialId) const;
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bool blocksLiquidFlow(MaterialId materialId) const;
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// Returns the amount of liquid to consume, and optionally the material / mod
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// to transform to (may be NullMaterialId / NullModId)
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Maybe<LiquidMaterialInteraction> liquidMaterialInteraction(LiquidId liquid, MaterialId materialId) const;
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Maybe<LiquidModInteraction> liquidModInteraction(LiquidId liquid, ModId modId) const;
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private:
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struct MetaMaterialInfo {
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MetaMaterialInfo(String name, MaterialId id, CollisionKind collisionKind, bool blocksLiquidFlow);
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String name;
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MaterialId id;
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CollisionKind collisionKind;
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bool blocksLiquidFlow;
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};
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struct MaterialInfo {
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MaterialInfo();
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String name;
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MaterialId id;
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String path;
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Json config;
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String itemDrop;
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Json descriptions;
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String category;
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Color particleColor;
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ParticleConfigPtr miningParticle;
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StringList miningSounds;
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String footstepSound;
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ModId tillableMod;
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CollisionKind collisionKind;
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bool foregroundOnly;
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bool supportsMods;
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bool soil;
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bool falling;
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bool cascading;
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bool blocksLiquidFlow;
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shared_ptr<MaterialRenderProfile const> materialRenderProfile;
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TileDamageParameters damageParameters;
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};
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struct ModInfo {
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ModInfo();
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String name;
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ModId id;
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String path;
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Json config;
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String itemDrop;
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Json descriptions;
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Color particleColor;
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ParticleConfigPtr miningParticle;
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StringList miningSounds;
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String footstepSound;
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bool tilled;
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bool breaksWithTile;
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shared_ptr<MaterialRenderProfile const> modRenderProfile;
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TileDamageParameters damageParameters;
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};
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size_t metaMaterialIndex(MaterialId materialId) const;
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bool containsMetaMaterial(MaterialId materialId) const;
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void setMetaMaterial(MaterialId materialId, MetaMaterialInfo info);
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bool containsMaterial(MaterialId materialId) const;
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void setMaterial(MaterialId materialId, MaterialInfo info);
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bool containsMod(ModId modId) const;
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void setMod(ModId modId, ModInfo info);
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shared_ptr<MetaMaterialInfo const> const& getMetaMaterialInfo(MaterialId materialId) const;
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shared_ptr<MaterialInfo const> const& getMaterialInfo(MaterialId materialId) const;
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shared_ptr<ModInfo const> const& getModInfo(ModId modId) const;
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List<shared_ptr<MetaMaterialInfo const>> m_metaMaterials;
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StringMap<MaterialId> m_metaMaterialIndex;
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List<shared_ptr<MaterialInfo const>> m_materials;
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StringMap<MaterialId> m_materialIndex;
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List<shared_ptr<ModInfo const>> m_mods;
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StringMap<ModId> m_modIndex;
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BiMap<String, ModId> m_metaModIndex;
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String m_defaultFootstepSound;
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HashMap<pair<LiquidId, MaterialId>, LiquidMaterialInteraction> m_liquidMaterialInteractions;
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HashMap<pair<LiquidId, ModId>, LiquidModInteraction> m_liquidModInteractions;
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};
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inline MaterialRenderProfileConstPtr MaterialDatabase::materialRenderProfile(MaterialId materialId) const {
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if (materialId < m_materials.size()) {
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if (auto const& mat = m_materials[materialId])
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return mat->materialRenderProfile;
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}
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return {};
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}
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inline MaterialRenderProfileConstPtr MaterialDatabase::modRenderProfile(ModId modId) const {
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if (modId < m_mods.size()) {
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if (auto const& mod = m_mods[modId])
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return mod->modRenderProfile;
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}
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return {};
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}
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inline bool MaterialDatabase::foregroundLightTransparent(MaterialId materialId) const {
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if (isRealMaterial(materialId)) {
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auto const& matInfo = getMaterialInfo(materialId);
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if (matInfo->materialRenderProfile)
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return matInfo->materialRenderProfile->foregroundLightTransparent;
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}
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if (materialId == StructureMaterialId)
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return false;
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return true;
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}
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inline bool MaterialDatabase::backgroundLightTransparent(MaterialId materialId) const {
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if (isRealMaterial(materialId)) {
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auto const& matInfo = getMaterialInfo(materialId);
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if (matInfo->materialRenderProfile)
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return matInfo->materialRenderProfile->backgroundLightTransparent;
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}
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if (materialId == StructureMaterialId)
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return false;
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return true;
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}
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inline bool MaterialDatabase::occludesBehind(MaterialId materialId) const {
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if (isRealMaterial(materialId)) {
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auto const& matInfo = getMaterialInfo(materialId);
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if (matInfo->materialRenderProfile)
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return matInfo->materialRenderProfile->occludesBehind;
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}
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return false;
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}
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inline Vec3F MaterialDatabase::radiantLight(MaterialId materialId, ModId modId) const {
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Vec3F radiantLight;
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if (materialId < m_materials.size()) {
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auto const& mat = m_materials[materialId];
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if (mat && mat->materialRenderProfile)
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radiantLight += mat->materialRenderProfile->radiantLight;
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}
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if (modId < m_mods.size()) {
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auto const& mod = m_mods[modId];
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if (mod && mod->modRenderProfile)
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radiantLight += mod->modRenderProfile->radiantLight;
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}
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return radiantLight;
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}
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inline bool MaterialDatabase::blocksLiquidFlow(MaterialId materialId) const {
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if (isRealMaterial(materialId))
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return getMaterialInfo(materialId)->blocksLiquidFlow;
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else
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return getMetaMaterialInfo(materialId)->blocksLiquidFlow;
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}
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inline Maybe<LiquidMaterialInteraction> MaterialDatabase::liquidMaterialInteraction(
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LiquidId liquid, MaterialId materialId) const {
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return m_liquidMaterialInteractions.maybe({liquid, materialId});
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}
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inline Maybe<LiquidModInteraction> MaterialDatabase::liquidModInteraction(LiquidId liquid, ModId modId) const {
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return m_liquidModInteractions.maybe({liquid, modId});
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}
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}
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