2023-06-20 04:33:09 +00:00
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#include "StarPlantDrop.hpp"
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#include "StarDataStreamExtra.hpp"
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#include "StarPlayer.hpp"
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#include "StarRoot.hpp"
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#include "StarImageMetadataDatabase.hpp"
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#include "StarItemDrop.hpp"
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#include "StarAssets.hpp"
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#include "StarEntityRendering.hpp"
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#include "StarWorld.hpp"
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#include "StarRandom.hpp"
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#include "StarParticleDatabase.hpp"
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namespace Star {
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PlantDrop::PlantDropPiece::PlantDropPiece() {
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image = "";
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offset = {};
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segmentIdx = 0;
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kind = Plant::PlantPieceKind::None;
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flip = false;
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}
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PlantDrop::PlantDrop(List<Plant::PlantPiece> pieces, Vec2F const& position, Vec2F const& strikeVector, String const& description,
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bool upsideDown, Json stemConfig, Json foliageConfig, Json saplingConfig, bool master, float random) {
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m_netGroup.addNetElement(&m_movementController);
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m_netGroup.addNetElement(&m_spawnedDrops);
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m_stemConfig = stemConfig;
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if (m_stemConfig.isNull())
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m_stemConfig = JsonObject();
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m_foliageConfig = foliageConfig;
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if (m_foliageConfig.isNull())
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m_foliageConfig = JsonObject();
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m_saplingConfig = saplingConfig;
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m_master = master;
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m_firstTick = true;
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m_spawnedDrops.set(false);
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m_spawnedDropEffects = false;
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m_time = 5000;
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m_description = description;
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m_movementController.setPosition(position);
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if (!upsideDown) {
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m_rotationRate = copysign(0.00001f, -strikeVector[0] + random);
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m_rotationFallThreshold = Constants::pi / (3 + random);
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m_rotationCap = Constants::pi - m_rotationFallThreshold;
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} else {
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m_rotationRate = 0;
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m_rotationFallThreshold = 0;
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m_rotationCap = 0;
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}
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bool structuralFound = false;
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RectF stemBounds = RectF::null();
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RectF fullBounds = RectF::null();
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// note structuralSegment is only available in the constructor
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for (auto& piece : pieces) {
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for (auto& pos : piece.spaces) {
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fullBounds.combine(Vec2F(pos));
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fullBounds.combine(Vec2F(pos) + Vec2F(1, 1));
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if (piece.structuralSegment) {
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structuralFound = true;
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stemBounds.combine(Vec2F(pos));
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stemBounds.combine(Vec2F(pos) + Vec2F(1, 1));
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}
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}
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PlantDropPiece pdp;
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pdp.image = piece.image;
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pdp.offset = piece.offset;
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pdp.segmentIdx = piece.segmentIdx;
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pdp.kind = piece.kind;
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pdp.flip = piece.flip;
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m_pieces.append(pdp);
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}
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if (fullBounds.isNull())
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fullBounds = RectF(position, position);
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if (stemBounds.isNull())
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stemBounds = RectF(position, position);
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m_boundingBox = fullBounds;
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if (structuralFound)
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m_collisionRect = stemBounds;
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else
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m_collisionRect = fullBounds;
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}
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PlantDrop::PlantDrop(ByteArray const& netStore) {
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m_netGroup.addNetElement(&m_movementController);
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m_netGroup.addNetElement(&m_spawnedDrops);
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DataStreamBuffer ds(netStore);
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ds >> m_time;
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ds >> m_master;
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ds >> m_description;
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ds >> m_boundingBox;
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ds >> m_collisionRect;
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ds >> m_rotationRate;
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ds.readContainer(m_pieces,
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[](DataStream& ds, PlantDropPiece& piece) {
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ds.read(piece.image);
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ds.read(piece.offset[0]);
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ds.read(piece.offset[1]);
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ds.read(piece.flip);
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ds.read(piece.kind);
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});
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ds >> m_stemConfig;
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ds >> m_foliageConfig;
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ds >> m_saplingConfig;
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m_firstTick = true;
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m_spawnedDropEffects = true;
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}
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ByteArray PlantDrop::netStore() {
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DataStreamBuffer ds;
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ds << m_time;
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ds << m_master;
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ds << m_description;
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ds << m_boundingBox;
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ds << m_collisionRect;
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ds << m_rotationRate;
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ds.writeContainer(m_pieces,
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[](DataStream& ds, PlantDropPiece const& piece) {
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ds.write(piece.image);
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ds.write(piece.offset[0]);
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ds.write(piece.offset[1]);
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ds.write(piece.flip);
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ds.write(piece.kind);
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});
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ds << m_stemConfig;
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ds << m_foliageConfig;
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ds << m_saplingConfig;
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return ds.data();
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}
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EntityType PlantDrop::entityType() const {
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return EntityType::PlantDrop;
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}
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void PlantDrop::init(World* world, EntityId entityId, EntityMode mode) {
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Entity::init(world, entityId, mode);
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m_movementController.init(world);
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PolyF collisionPoly = PolyF(RectF::withCenter(m_collisionRect.center(), m_collisionRect.size() / 2.0f));
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MovementParameters parameters;
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parameters.collisionPoly = collisionPoly;
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parameters.ignorePlatformCollision = true;
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parameters.gravityMultiplier = 0.2f;
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parameters.physicsEffectCategories = StringSet({"plantdrop"});
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m_movementController.applyParameters(parameters);
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}
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void PlantDrop::uninit() {
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Entity::uninit();
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m_movementController.uninit();
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}
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String PlantDrop::description() const {
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return m_description;
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}
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Vec2F PlantDrop::position() const {
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return m_movementController.position();
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}
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RectF PlantDrop::metaBoundBox() const {
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return m_boundingBox;
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}
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RectF PlantDrop::collisionRect() const {
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PolyF shape = PolyF(m_collisionRect);
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shape.rotate(m_movementController.rotation());
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return shape.boundBox();
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}
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void PlantDrop::update(uint64_t) {
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m_time -= WorldTimestep;
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if (isMaster()) {
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if (m_spawnedDropEffects && !m_spawnedDrops.get())
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m_spawnedDropEffects = false; // false positive assumption over already having done the effect
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// to avoid effects for newly joining players.
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if (m_spawnedDrops.get())
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m_firstTick = false;
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// think up a better curve then sin
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auto rotationAcceleration = 0.01f * world()->gravity(position()) * copysign(1.0f, m_rotationRate) * WorldTimestep;
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if (abs(m_movementController.rotation()) > m_rotationCap)
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m_rotationRate -= rotationAcceleration;
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else if (std::fabs(m_movementController.rotation()) < m_rotationFallThreshold)
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m_rotationRate += rotationAcceleration;
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m_movementController.rotate(m_rotationRate);
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PolyF collisionPoly = PolyF(RectF::withCenter(m_collisionRect.center(), m_collisionRect.size() / 2.0f));
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if (m_time > 0) {
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MovementParameters parameters;
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parameters.collisionPoly = collisionPoly;
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parameters.gravityEnabled = std::fabs(m_movementController.rotation()) >= m_rotationFallThreshold;
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m_movementController.applyParameters(parameters);
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m_movementController.tickMaster();
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if (m_movementController.onGround())
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m_time = 0;
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}
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auto imgMetadata = Root::singleton().imageMetadataDatabase();
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if ((m_time <= 0 || world()->gravity(position()) == 0) && !m_spawnedDrops.get()) {
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m_spawnedDrops.set(true);
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for (auto& plantPiece : m_pieces) {
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JsonArray dropOptions;
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if (plantPiece.kind == Plant::PlantPieceKind::Stem)
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dropOptions = m_stemConfig.getArray("drops", {});
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if (plantPiece.kind == Plant::PlantPieceKind::Foliage)
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dropOptions = m_foliageConfig.getArray("drops", {});
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if (dropOptions.size()) {
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auto option = Random::randFrom(dropOptions).toArray();
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for (auto drop : option) {
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auto size = imgMetadata->imageSize(plantPiece.image);
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Vec2F pos = Vec2F(plantPiece.offset + Vec2F(size) * .5f / TilePixels).rotate(m_movementController.rotation())
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+ Vec2F(Random::randf(-0.2f, 0.2f), Random::randf(-0.2f, 0.2f));
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if (drop.getString("item") == "sapling")
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world()->addEntity(ItemDrop::createRandomizedDrop(
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ItemDescriptor("sapling", (size_t)drop.getInt("count", 1), m_saplingConfig), position() + pos));
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else
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world()->addEntity(ItemDrop::createRandomizedDrop(
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{drop.getString("item"), (size_t)drop.getInt("count", 1)}, position() + pos));
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}
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}
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}
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}
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} else {
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m_netGroup.tickNetInterpolation(WorldTimestep);
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if (m_spawnedDropEffects && !m_spawnedDrops.get())
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m_spawnedDropEffects = false; // false positive assumption over already having done the effect
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// to avoid effects for newly joining players.
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if (m_spawnedDrops.get())
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m_firstTick = false;
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m_movementController.tickSlave();
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}
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}
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void PlantDrop::destroy(RenderCallback* renderCallback) {
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if (renderCallback)
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render(renderCallback);
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}
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void PlantDrop::particleForPlantPart(PlantDropPiece const& piece, String const& mode, Json const& mainConfig, RenderCallback* renderCallback) {
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Json particleConfig = mainConfig.get("particles", JsonObject()).get(mode, JsonObject());
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JsonArray particleOptions = particleConfig.getArray("options", {});
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if (!particleOptions.size())
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return;
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Particle particle;
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auto imgMetadata = Root::singleton().imageMetadataDatabase();
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Vec2F imageSize = Vec2F(imgMetadata->imageSize(piece.image)) / TilePixels;
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float density = (imageSize.x() * imageSize.y()) / particleConfig.getFloat("density", 1);
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auto spaces = Set<Vec2I>::from(imgMetadata->imageSpaces(piece.image, piece.offset * TilePixels, Plant::PlantScanThreshold, piece.flip));
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if (spaces.empty())
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return;
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while (density > 0) {
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Vec2F particlePos = piece.offset + Vec2F(imageSize) / 2.0f + Vec2F(Random::nrandf(imageSize.x() / 8.0f, 0), Random::nrandf(imageSize.y() / 8.0f, 0));
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if (!spaces.contains(Vec2I(particlePos.floor())))
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continue;
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auto config = Random::randValueFrom(particleOptions, {});
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particle = Root::singleton().particleDatabase()->particle(config);
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particle.color.hueShift(mainConfig.getFloat("hueshift", 0) / 360.0f);
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2023-06-26 06:09:40 +00:00
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for (Directives const& directives : piece.image.directives.list())
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particle.directives.append(directives);
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2023-06-20 04:33:09 +00:00
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density--;
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particle.position = position() + particlePos.rotate(m_movementController.rotation());
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renderCallback->addParticle(particle);
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}
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}
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void PlantDrop::render(RenderCallback* renderCallback) {
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auto assets = Root::singleton().assets();
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if (m_firstTick) {
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m_firstTick = false;
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// smoke, particles
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if (m_master) {
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auto playBreakSound = [&](Json const& config) {
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JsonArray breakTreeOptions = config.get("sounds", JsonObject()).getArray("breakTree", JsonArray());
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if (breakTreeOptions.size()) {
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auto sound = Random::randFrom(breakTreeOptions);
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auto audioInstance = make_shared<AudioInstance>(*assets->audio(sound.getString("file")));
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audioInstance->setPosition(collisionRect().center() + position());
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audioInstance->setVolume(sound.getFloat("volume", 1.0f));
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renderCallback->addAudio(move(audioInstance));
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}
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};
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playBreakSound(m_stemConfig);
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playBreakSound(m_foliageConfig);
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}
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for (auto const& plantPiece : m_pieces) {
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if (plantPiece.kind == Plant::PlantPieceKind::Stem)
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particleForPlantPart(plantPiece, "breakTree", m_stemConfig, renderCallback);
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if (plantPiece.kind == Plant::PlantPieceKind::Foliage)
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particleForPlantPart(plantPiece, "breakTree", m_foliageConfig, renderCallback);
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}
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}
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if (m_spawnedDrops.get() && !m_spawnedDropEffects) {
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m_spawnedDropEffects = true;
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// smoke, particles
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auto playHitSound = [&](Json const& config) {
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JsonArray hitGroundOptions = config.get("sounds", JsonObject()).getArray("hitGround", JsonArray());
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if (hitGroundOptions.size()) {
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auto sound = Random::randFrom(hitGroundOptions);
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auto audioInstance = make_shared<AudioInstance>(*assets->audio(sound.getString("file")));
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audioInstance->setPosition(collisionRect().center() + position());
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audioInstance->setVolume(sound.getFloat("volume", 1.0f));
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renderCallback->addAudio(move(audioInstance));
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}
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};
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playHitSound(m_stemConfig);
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playHitSound(m_foliageConfig);
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for (auto const& plantPiece : m_pieces) {
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if (plantPiece.kind == Plant::PlantPieceKind::Stem)
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particleForPlantPart(plantPiece, "hitGround", m_stemConfig, renderCallback);
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if (plantPiece.kind == Plant::PlantPieceKind::Foliage)
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particleForPlantPart(plantPiece, "hitGround", m_foliageConfig, renderCallback);
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}
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}
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if (m_time > 0 && !m_spawnedDrops.get()) {
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for (auto const& plantPiece : m_pieces) {
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auto drawable = Drawable::makeImage(plantPiece.image, 1.0f / TilePixels, false, plantPiece.offset);
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if (plantPiece.flip)
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drawable.scale(Vec2F(-1, 1));
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drawable.rotate(m_movementController.rotation());
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drawable.translate(position());
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renderCallback->addDrawable(move(drawable), RenderLayerPlantDrop);
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}
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}
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}
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pair<ByteArray, uint64_t> PlantDrop::writeNetState(uint64_t fromVersion) {
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return m_netGroup.writeNetState(fromVersion);
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}
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void PlantDrop::readNetState(ByteArray data, float interpolationTime) {
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|
m_netGroup.readNetState(move(data), interpolationTime);
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}
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|
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void PlantDrop::enableInterpolation(float extrapolationHint) {
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|
|
m_netGroup.enableNetInterpolation(extrapolationHint);
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|
|
}
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|
|
void PlantDrop::disableInterpolation() {
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|
|
m_netGroup.disableNetInterpolation();
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|
|
}
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|
|
bool PlantDrop::shouldDestroy() const {
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|
|
|
return m_time <= 0.0f;
|
|
|
|
}
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|
|
|
|
}
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