Particle class
Пакет: com.hypixel.hytale.protocol
Файл: com/hypixel/hytale/protocol/Particle.java
Поля (40)
| Модификаторы | Тип | Имя |
|---|---|---|
final |
int |
NULLABLE_BIT_FIELD_SIZE |
|
int |
var1 |
|
Particle |
var1 |
|
int |
var10 |
|
int |
var12 |
|
ParticleAnimationFrame |
var13 |
|
Map |
var14 |
|
|
var14 |
|
int |
var15 |
|
Particle |
var18 |
|
long |
var2 |
|
int |
var2 |
|
byte |
var2 |
|
byte |
var2 |
|
byte |
var2 |
|
byte |
var2 |
|
byte |
var2 |
|
Map |
var2 |
|
long |
var3 |
|
int |
var3 |
|
byte |
var3 |
|
|
var3 |
|
|
var3 |
|
|
var3 |
|
|
var3 |
|
|
var3 |
|
int |
var4 |
|
int |
var4 |
|
|
var4 |
|
int |
var4 |
|
int |
var5 |
|
int |
var5 |
|
String |
var5 |
|
|
var5 |
|
Map |
var6 |
|
int |
var6 |
|
long |
var7 |
|
int |
var8 |
|
long |
var8 |
|
ParticleAnimationFrame |
var9 |
Методы (76)
| Модификаторы | Возврат | Сигнатура |
|---|---|---|
public |
Particle |
cloneParticle clone() |
public |
int |
computeSizeint computeSize() |
|
|
for for(int var7 = 0; var7 < var5; var7++) |
|
|
for for(int var11 = 0; var11 < var10; var11++) |
abstract |
return |
getAnimationFramesreturn getAnimationFrames(var0, 0) |
static |
float |
getCameraFarFadeEndDistancefloat getCameraFarFadeEndDistance(MemorySegment var0) |
static |
float |
getCameraFarFadeEndDistancefloat getCameraFarFadeEndDistance(MemorySegment var0, int var1) |
abstract |
return |
getCameraFarFadeEndDistancereturn getCameraFarFadeEndDistance(var0, 0) |
static |
float |
getCameraFarFadeStartDistancefloat getCameraFarFadeStartDistance(MemorySegment var0) |
static |
float |
getCameraFarFadeStartDistancefloat getCameraFarFadeStartDistance(MemorySegment var0, int var1) |
abstract |
return |
getCameraFarFadeStartDistancereturn getCameraFarFadeStartDistance(var0, 0) |
static |
float |
getCameraNearFadeEndDistancefloat getCameraNearFadeEndDistance(MemorySegment var0) |
static |
float |
getCameraNearFadeEndDistancefloat getCameraNearFadeEndDistance(MemorySegment var0, int var1) |
abstract |
return |
getCameraNearFadeEndDistancereturn getCameraNearFadeEndDistance(var0, 0) |
static |
float |
getCameraNearFadeStartDistancefloat getCameraNearFadeStartDistance(MemorySegment var0) |
static |
float |
getCameraNearFadeStartDistancefloat getCameraNearFadeStartDistance(MemorySegment var0, int var1) |
abstract |
return |
getCameraNearFadeStartDistancereturn getCameraNearFadeStartDistance(var0, 0) |
abstract |
return |
getCollisionAnimationFramereturn getCollisionAnimationFrame(var0, 0) |
abstract |
return |
getFrameSizereturn getFrameSize(var0, 0) |
abstract |
return |
getInitialAnimationFramereturn getInitialAnimationFrame(var0, 0) |
static |
ParticleScaleRatioConstraint |
getScaleRatioConstraintParticleScaleRatioConstraint getScaleRatioConstraint(MemorySegment var0) |
static |
ParticleScaleRatioConstraint |
getScaleRatioConstraintParticleScaleRatioConstraint getScaleRatioConstraint(MemorySegment var0, int var1) |
abstract |
return |
getScaleRatioConstraintreturn getScaleRatioConstraint(var0, 0) |
static |
SoftParticle |
getSoftParticlesSoftParticle getSoftParticles(MemorySegment var0) |
static |
SoftParticle |
getSoftParticlesSoftParticle getSoftParticles(MemorySegment var0, int var1) |
abstract |
return |
getSoftParticlesreturn getSoftParticles(var0, 0) |
static |
float |
getSoftParticlesFadeFactorfloat getSoftParticlesFadeFactor(MemorySegment var0) |
static |
float |
getSoftParticlesFadeFactorfloat getSoftParticlesFadeFactor(MemorySegment var0, int var1) |
abstract |
return |
getSoftParticlesFadeFactorreturn getSoftParticlesFadeFactor(var0, 0) |
abstract |
return |
getTexturePathreturn getTexturePath(var0, 0) |
static |
boolean |
getUseSpriteBlendingboolean getUseSpriteBlending(MemorySegment var0) |
static |
boolean |
getUseSpriteBlendingboolean getUseSpriteBlending(MemorySegment var0, int var1) |
abstract |
return |
getUseSpriteBlendingreturn getUseSpriteBlending(var0, 0) |
static |
ParticleUVOption |
getUvOptionParticleUVOption getUvOption(MemorySegment var0) |
static |
ParticleUVOption |
getUvOptionParticleUVOption getUvOption(MemorySegment var0, int var1) |
abstract |
return |
getUvOptionreturn getUvOption(var0, 0) |
static |
int |
getValidatedOffsetint getValidatedOffset(MemorySegment var0, int var1, int var2, int var3, String var4) |
static |
boolean |
hasAnimationFramesboolean hasAnimationFrames(MemorySegment var0, int var1) |
static |
boolean |
hasCollisionAnimationFrameboolean hasCollisionAnimationFrame(MemorySegment var0, int var1) |
static |
boolean |
hasFrameSizeboolean hasFrameSize(MemorySegment var0, int var1) |
static |
boolean |
hasInitialAnimationFrameboolean hasInitialAnimationFrame(MemorySegment var0, int var1) |
static |
boolean |
hasTexturePathboolean hasTexturePath(MemorySegment var0, int var1) |
|
|
if if(var1 < 0) |
|
|
if if(var3 == -1L) |
|
|
if if(var5 > 4096000) |
|
|
if if(var4 != var2) |
|
|
if if(var8 == -1L) |
|
|
if if(var10 > 4096000) |
|
|
if if(var2 != null) |
|
|
if if(this.frameSize != null) |
|
|
if if(this.initialAnimationFrame != null) |
|
|
if if(this.collisionAnimationFrame != null) |
|
|
if if(this.texturePath != null) |
|
|
if if(this.animationFrames != null) |
|
|
if if(this.frameSize != null) |
|
|
if if(this.initialAnimationFrame != null) |
|
|
if if(this.collisionAnimationFrame != null) |
|
|
if if(this.texturePath != null) |
|
|
if if(this.animationFrames != null) |
|
|
if if(this.texturePath != null) |
|
|
if if(this.animationFrames != null) |
|
|
if if(this.animationFrames != null) |
|
|
if if(this == var1) |
static |
void |
requireBoundsvoid requireBounds(MemorySegment var0, int var1) |
abstract |
|
requireBounds requireBounds(var0, var1) |
static |
void |
requireSlotvoid requireSlot(MemorySegment var0, int var1, int var2, String var3) |
abstract |
|
requireSlot requireSlot(var0, var1 + 149, var4, "TexturePath") |
abstract |
|
requireSlot requireSlot(var0, var1 + 149, -1, "TexturePath") |
abstract |
|
requireSlot requireSlot(var0, var1 + 153, var4, "AnimationFrames") |
abstract |
|
requireSlot requireSlot(var0, var1 + 153, -1, "AnimationFrames") |
public |
int |
serializeint serialize(@Nonnull MemorySegment var1, int var2) |
static |
Particle |
toObjectParticle toObject(MemorySegment var0) |
static |
Particle |
toObjectParticle toObject(MemorySegment var0, int var1) |
static |
Particle |
toObjectParticle toObject(MemorySegment var0, int var1, @Nullable ReadCursor var2) |
abstract |
return |
toObjectreturn toObject(var0, 0, null) |
abstract |
return |
toObjectreturn toObject(var0, var1, null) |
Исходный код
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class="kw">package com.hypixel.hytale.protocol;
class="kw">import com.hypixel.hytale.protocol.io.PacketIO;
class="kw">import com.hypixel.hytale.protocol.io.ProtocolException;
class="kw">import com.hypixel.hytale.protocol.io.ReadCursor;
class="kw">import com.hypixel.hytale.protocol.io.VarInt;
class="kw">import java.lang.foreign.MemorySegment;
class="kw">import java.util.HashMap;
class="kw">import java.util.Map;
class="kw">import java.util.Objects;
class="kw">import java.util.Map.Entry;
class="kw">import javax.annotation.Nonnull;
class="kw">import javax.annotation.Nullable;
class="kw">public class Particle {
class="kw">public class="kw">static class="kw">final int NULLABLE_BIT_FIELD_SIZE = 1;
class="kw">public class="kw">static class="kw">final int FIXED_BLOCK_SIZE = 149;
class="kw">public class="kw">static class="kw">final int VARIABLE_FIELD_COUNT = 2;
class="kw">public class="kw">static class="kw">final int VARIABLE_BLOCK_START = 157;
class="kw">public class="kw">static class="kw">final int MAX_SIZE = 270336167;
@Nullable
class="kw">public String texturePath;
@Nullable
class="kw">public Size frameSize;
@Nonnull
class="kw">public ParticleUVOption uvOption = ParticleUVOption.None;
@Nonnull
class="kw">public ParticleScaleRatioConstraint scaleRatioConstraint = ParticleScaleRatioConstraint.OneToOne;
@Nonnull
class="kw">public SoftParticle softParticles = SoftParticle.Enable;
class="kw">public float softParticlesFadeFactor;
class="kw">public float cameraNearFadeStartDistance;
class="kw">public float cameraNearFadeEndDistance;
class="kw">public float cameraFarFadeStartDistance;
class="kw">public float cameraFarFadeEndDistance;
class="kw">public boolean useSpriteBlending;
@Nullable
class="kw">public ParticleAnimationFrame initialAnimationFrame;
@Nullable
class="kw">public ParticleAnimationFrame collisionAnimationFrame;
@Nullable
class="kw">public Map<Integer, ParticleAnimationFrame> animationFrames;
class="kw">public Particle() {
}
class="kw">public Particle(
@Nullable String var1,
@Nullable Size var2,
@Nonnull ParticleUVOption var3,
@Nonnull ParticleScaleRatioConstraint var4,
@Nonnull SoftParticle var5,
float var6,
float var7,
float var8,
float var9,
float var10,
boolean var11,
@Nullable ParticleAnimationFrame var12,
@Nullable ParticleAnimationFrame var13,
@Nullable Map<Integer, ParticleAnimationFrame> var14
) {
this.texturePath = var1;
this.frameSize = var2;
this.uvOption = var3;
this.scaleRatioConstraint = var4;
this.softParticles = var5;
this.softParticlesFadeFactor = var6;
this.cameraNearFadeStartDistance = var7;
this.cameraNearFadeEndDistance = var8;
this.cameraFarFadeStartDistance = var9;
this.cameraFarFadeEndDistance = var10;
this.useSpriteBlending = var11;
this.initialAnimationFrame = var12;
this.collisionAnimationFrame = var13;
this.animationFrames = var14;
}
class="kw">public Particle(@Nonnull Particle var1) {
this.texturePath = var1.texturePath;
this.frameSize = var1.frameSize;
this.uvOption = var1.uvOption;
this.scaleRatioConstraint = var1.scaleRatioConstraint;
this.softParticles = var1.softParticles;
this.softParticlesFadeFactor = var1.softParticlesFadeFactor;
this.cameraNearFadeStartDistance = var1.cameraNearFadeStartDistance;
this.cameraNearFadeEndDistance = var1.cameraNearFadeEndDistance;
this.cameraFarFadeStartDistance = var1.cameraFarFadeStartDistance;
this.cameraFarFadeEndDistance = var1.cameraFarFadeEndDistance;
this.useSpriteBlending = var1.useSpriteBlending;
this.initialAnimationFrame = var1.initialAnimationFrame;
this.collisionAnimationFrame = var1.collisionAnimationFrame;
this.animationFrames = var1.animationFrames;
}
class="kw">public class="kw">static void requireBounds(MemorySegment var0, int var1) {
if (var1 < 0) {
throw ProtocolException.invalidOffset("Particle", var1, (int)var0.byteSize());
}
long var2 = var1 + 157L;
if (var2 > var0.byteSize()) {
throw ProtocolException.bufferTooSmall("Particle", (int)Math.min(var2, 2147483647L), (int)var0.byteSize());
}
}
@Nullable
class="kw">public class="kw">static String getTexturePath(MemorySegment var0) {
class="kw">return getTexturePath(var0, 0);
}
@Nullable
class="kw">public class="kw">static String getTexturePath(MemorySegment var0, int var1) {
class="kw">return hasTexturePath(var0, var1)
? PacketIO.readVarString("TexturePath", var0, var1 + getValidatedOffset(var0, var1, 149, 157, "TexturePath"), 4096000)
: null;
}
@Nullable
class="kw">public class="kw">static Size getFrameSize(MemorySegment var0) {
class="kw">return getFrameSize(var0, 0);
}
@Nullable
class="kw">public class="kw">static Size getFrameSize(MemorySegment var0, int var1) {
class="kw">return hasFrameSize(var0, var1) ? Size.toObject(var0, var1 + 1) : null;
}
class="kw">public class="kw">static ParticleUVOption getUvOption(MemorySegment var0) {
class="kw">return getUvOption(var0, 0);
}
class="kw">public class="kw">static ParticleUVOption getUvOption(MemorySegment var0, int var1) {
class="kw">return ParticleUVOption.fromValue(var0.get(PacketIO.PROTO_BYTE, var1 + 9));
}
class="kw">public class="kw">static ParticleScaleRatioConstraint getScaleRatioConstraint(MemorySegment var0) {
class="kw">return getScaleRatioConstraint(var0, 0);
}
class="kw">public class="kw">static ParticleScaleRatioConstraint getScaleRatioConstraint(MemorySegment var0, int var1) {
class="kw">return ParticleScaleRatioConstraint.fromValue(var0.get(PacketIO.PROTO_BYTE, var1 + 10));
}
class="kw">public class="kw">static SoftParticle getSoftParticles(MemorySegment var0) {
class="kw">return getSoftParticles(var0, 0);
}
class="kw">public class="kw">static SoftParticle getSoftParticles(MemorySegment var0, int var1) {
class="kw">return SoftParticle.fromValue(var0.get(PacketIO.PROTO_BYTE, var1 + 11));
}
class="kw">public class="kw">static float getSoftParticlesFadeFactor(MemorySegment var0) {
class="kw">return getSoftParticlesFadeFactor(var0, 0);
}
class="kw">public class="kw">static float getSoftParticlesFadeFactor(MemorySegment var0, int var1) {
class="kw">return PacketIO.requireFinite(var0.get(PacketIO.PROTO_FLOAT, var1 + 12), "SoftParticlesFadeFactor");
}
class="kw">public class="kw">static float getCameraNearFadeStartDistance(MemorySegment var0) {
class="kw">return getCameraNearFadeStartDistance(var0, 0);
}
class="kw">public class="kw">static float getCameraNearFadeStartDistance(MemorySegment var0, int var1) {
class="kw">return PacketIO.requireFinite(var0.get(PacketIO.PROTO_FLOAT, var1 + 16), "CameraNearFadeStartDistance");
}
class="kw">public class="kw">static float getCameraNearFadeEndDistance(MemorySegment var0) {
class="kw">return getCameraNearFadeEndDistance(var0, 0);
}
class="kw">public class="kw">static float getCameraNearFadeEndDistance(MemorySegment var0, int var1) {
class="kw">return PacketIO.requireFinite(var0.get(PacketIO.PROTO_FLOAT, var1 + 20), "CameraNearFadeEndDistance");
}
class="kw">public class="kw">static float getCameraFarFadeStartDistance(MemorySegment var0) {
class="kw">return getCameraFarFadeStartDistance(var0, 0);
}
class="kw">public class="kw">static float getCameraFarFadeStartDistance(MemorySegment var0, int var1) {
class="kw">return PacketIO.requireFinite(var0.get(PacketIO.PROTO_FLOAT, var1 + 24), "CameraFarFadeStartDistance");
}
class="kw">public class="kw">static float getCameraFarFadeEndDistance(MemorySegment var0) {
class="kw">return getCameraFarFadeEndDistance(var0, 0);
}
class="kw">public class="kw">static float getCameraFarFadeEndDistance(MemorySegment var0, int var1) {
class="kw">return PacketIO.requireFinite(var0.get(PacketIO.PROTO_FLOAT, var1 + 28), "CameraFarFadeEndDistance");
}
class="kw">public class="kw">static boolean getUseSpriteBlending(MemorySegment var0) {
class="kw">return getUseSpriteBlending(var0, 0);
}
class="kw">public class="kw">static boolean getUseSpriteBlending(MemorySegment var0, int var1) {
class="kw">return var0.get(PacketIO.PROTO_BOOL, var1 + 32);
}
@Nullable
class="kw">public class="kw">static ParticleAnimationFrame getInitialAnimationFrame(MemorySegment var0) {
class="kw">return getInitialAnimationFrame(var0, 0);
}
@Nullable
class="kw">public class="kw">static ParticleAnimationFrame getInitialAnimationFrame(MemorySegment var0, int var1) {
class="kw">return hasInitialAnimationFrame(var0, var1) ? ParticleAnimationFrame.toObject(var0, var1 + 33) : null;
}
@Nullable
class="kw">public class="kw">static ParticleAnimationFrame getCollisionAnimationFrame(MemorySegment var0) {
class="kw">return getCollisionAnimationFrame(var0, 0);
}
@Nullable
class="kw">public class="kw">static ParticleAnimationFrame getCollisionAnimationFrame(MemorySegment var0, int var1) {
class="kw">return hasCollisionAnimationFrame(var0, var1) ? ParticleAnimationFrame.toObject(var0, var1 + 91) : null;
}
@Nullable
class="kw">public class="kw">static Map<Integer, ParticleAnimationFrame> getAnimationFrames(MemorySegment var0) {
class="kw">return getAnimationFrames(var0, 0);
}
@Nullable
class="kw">public class="kw">static Map<Integer, ParticleAnimationFrame> getAnimationFrames(MemorySegment var0, int var1) {
if (!hasAnimationFrames(var0, var1)) {
class="kw">return null;
}
int var2 = var1 + getValidatedOffset(var0, var1, 153, 157, "AnimationFrames");
long var3 = VarInt.getWithLength(var0, var2);
if (var3 == -1L) {
throw ProtocolException.invalidVarInt("AnimationFrames");
}
int var5 = (int)var3;
if (var5 > 4096000) {
throw ProtocolException.dictionaryTooLarge("AnimationFrames", var5, 4096000);
}
var2 += (int)(var3 >>> 32);
if (var2 + var5 * 62L > var0.byteSize()) {
throw ProtocolException.bufferTooSmall("AnimationFrames", (int)Math.min(var2 + var5 * 62L, 2147483647L), (int)var0.byteSize());
}
Map var6 = new HashMap<>(var5);
for (int var7 = 0; var7 < var5; var7++) {
int var8 = var0.get(PacketIO.PROTO_INT, var2);
var2 += 4;
ParticleAnimationFrame var9 = ParticleAnimationFrame.toObject(var0, var2);
var2 += 58;
if (var6.put(var8, var9) != null) {
throw ProtocolException.duplicateKey("AnimationFrames", var8);
}
}
class="kw">return var6;
}
class="kw">public class="kw">static boolean hasFrameSize(MemorySegment var0, int var1) {
byte var2 = var0.get(PacketIO.PROTO_BYTE, var1 + 0);
class="kw">return (var2 & 1) != 0;
}
class="kw">public class="kw">static boolean hasInitialAnimationFrame(MemorySegment var0, int var1) {
byte var2 = var0.get(PacketIO.PROTO_BYTE, var1 + 0);
class="kw">return (var2 & 2) != 0;
}
class="kw">public class="kw">static boolean hasCollisionAnimationFrame(MemorySegment var0, int var1) {
byte var2 = var0.get(PacketIO.PROTO_BYTE, var1 + 0);
class="kw">return (var2 & 4) != 0;
}
class="kw">public class="kw">static boolean hasTexturePath(MemorySegment var0, int var1) {
byte var2 = var0.get(PacketIO.PROTO_BYTE, var1 + 0);
class="kw">return (var2 & 8) != 0;
}
class="kw">public class="kw">static boolean hasAnimationFrames(MemorySegment var0, int var1) {
byte var2 = var0.get(PacketIO.PROTO_BYTE, var1 + 0);
class="kw">return (var2 & 16) != 0;
}
class="kw">private class="kw">static int getValidatedOffset(MemorySegment var0, int var1, int var2, int var3, String var4) {
int var5 = var0.get(PacketIO.PROTO_INT, var1 + var2);
if (var5 >= 0 && var5 <= var0.byteSize() - var1 - var3) {
class="kw">return var3 + var5;
} else {
throw ProtocolException.invalidOffset(var4, var5, (int)var0.byteSize());
}
}
class="kw">private class="kw">static void requireSlot(MemorySegment var0, int var1, int var2, String var3) {
int var4 = var0.get(PacketIO.PROTO_INT, var1);
if (var4 != var2) {
throw ProtocolException.nonCanonicalLayout(var3, var4, var2);
}
}
class="kw">public class="kw">static Particle toObject(MemorySegment var0) {
class="kw">return toObject(var0, 0, null);
}
class="kw">public class="kw">static Particle toObject(MemorySegment var0, int var1) {
class="kw">return toObject(var0, var1, null);
}
class="kw">public class="kw">static Particle toObject(MemorySegment var0, int var1, @Nullable ReadCursor var2) {
requireBounds(var0, var1);
int var3 = var1 + 157;
int var4 = 0;
String var5 = null;
if (hasTexturePath(var0, var1)) {
requireSlot(var0, var1 + 149, var4, "TexturePath");
int var6 = var3 + var4;
long var7 = VarInt.getWithLength(var0, var6);
var5 = PacketIO.readVarString("TexturePath", var0, var6, 0, 4096000, var7);
var4 += (int)var7 + (int)(var7 >>> 32);
} else {
requireSlot(var0, var1 + 149, -1, "TexturePath");
}
Map var14 = null;
if (hasAnimationFrames(var0, var1)) {
requireSlot(var0, var1 + 153, var4, "AnimationFrames");
int var15 = var3 + var4;
long var8 = VarInt.getWithLength(var0, var15);
if (var8 == -1L) {
throw ProtocolException.invalidVarInt("AnimationFrames");
}
int var10 = (int)var8;
if (var10 > 4096000) {
throw ProtocolException.dictionaryTooLarge("AnimationFrames", var10, 4096000);
}
var15 += (int)(var8 >>> 32);
if (var15 + var10 * 62L > var0.byteSize()) {
throw ProtocolException.bufferTooSmall("AnimationFrames", (int)Math.min(var15 + var10 * 62L, 2147483647L), (int)var0.byteSize());
}
var14 = new HashMap<>(var10);
for (int var11 = 0; var11 < var10; var11++) {
int var12 = var0.get(PacketIO.PROTO_INT, var15);
var15 += 4;
ParticleAnimationFrame var13 = ParticleAnimationFrame.toObject(var0, var15);
var15 += 58;
if (var14.put(var12, var13) != null) {
throw ProtocolException.duplicateKey("AnimationFrames", var12);
}
}
var4 = var15 - var3;
} else {
requireSlot(var0, var1 + 153, -1, "AnimationFrames");
}
Particle var18 = new Particle(
var5,
hasFrameSize(var0, var1) ? Size.toObject(var0, var1 + 1) : null,
ParticleUVOption.fromValue(var0.get(PacketIO.PROTO_BYTE, var1 + 9)),
ParticleScaleRatioConstraint.fromValue(var0.get(PacketIO.PROTO_BYTE, var1 + 10)),
SoftParticle.fromValue(var0.get(PacketIO.PROTO_BYTE, var1 + 11)),
PacketIO.requireFinite(var0.get(PacketIO.PROTO_FLOAT, var1 + 12), "SoftParticlesFadeFactor"),
PacketIO.requireFinite(var0.get(PacketIO.PROTO_FLOAT, var1 + 16), "CameraNearFadeStartDistance"),
PacketIO.requireFinite(var0.get(PacketIO.PROTO_FLOAT, var1 + 20), "CameraNearFadeEndDistance"),
PacketIO.requireFinite(var0.get(PacketIO.PROTO_FLOAT, var1 + 24), "CameraFarFadeStartDistance"),
PacketIO.requireFinite(var0.get(PacketIO.PROTO_FLOAT, var1 + 28), "CameraFarFadeEndDistance"),
var0.get(PacketIO.PROTO_BOOL, var1 + 32),
hasInitialAnimationFrame(var0, var1) ? ParticleAnimationFrame.toObject(var0, var1 + 33) : null,
hasCollisionAnimationFrame(var0, var1) ? ParticleAnimationFrame.toObject(var0, var1 + 91) : null,
var14
);
if (var2 != null) {
var2.position = var3 + var4;
}
class="kw">return var18;
}
class="kw">public int serialize(@Nonnull MemorySegment var1, int var2) {
byte var3 = 0;
if (this.frameSize != null) {
var3 = (byte)(var3 | 1);
}
if (this.initialAnimationFrame != null) {
var3 = (byte)(var3 | 2);
}
if (this.collisionAnimationFrame != null) {
var3 = (byte)(var3 | 4);
}
if (this.texturePath != null) {
var3 = (byte)(var3 | 8);
}
if (this.animationFrames != null) {
var3 = (byte)(var3 | 16);
}
var1.set(PacketIO.PROTO_BYTE, var2 + 0, var3);
if (this.frameSize != null) {
this.frameSize.serialize(var1, var2 + 1);
} else {
var1.asSlice(var2 + 1, 8L).fill((byte)0);
}
var1.set(PacketIO.PROTO_BYTE, var2 + 9, (byte)this.uvOption.getValue());
var1.set(PacketIO.PROTO_BYTE, var2 + 10, (byte)this.scaleRatioConstraint.getValue());
var1.set(PacketIO.PROTO_BYTE, var2 + 11, (byte)this.softParticles.getValue());
PacketIO.requireFinite(this.softParticlesFadeFactor, "SoftParticlesFadeFactor");
var1.set(PacketIO.PROTO_FLOAT, var2 + 12, this.softParticlesFadeFactor);
PacketIO.requireFinite(this.cameraNearFadeStartDistance, "CameraNearFadeStartDistance");
var1.set(PacketIO.PROTO_FLOAT, var2 + 16, this.cameraNearFadeStartDistance);
PacketIO.requireFinite(this.cameraNearFadeEndDistance, "CameraNearFadeEndDistance");
var1.set(PacketIO.PROTO_FLOAT, var2 + 20, this.cameraNearFadeEndDistance);
PacketIO.requireFinite(this.cameraFarFadeStartDistance, "CameraFarFadeStartDistance");
var1.set(PacketIO.PROTO_FLOAT, var2 + 24, this.cameraFarFadeStartDistance);
PacketIO.requireFinite(this.cameraFarFadeEndDistance, "CameraFarFadeEndDistance");
var1.set(PacketIO.PROTO_FLOAT, var2 + 28, this.cameraFarFadeEndDistance);
var1.set(PacketIO.PROTO_BOOL, var2 + 32, this.useSpriteBlending);
if (this.initialAnimationFrame != null) {
this.initialAnimationFrame.serialize(var1, var2 + 33);
} else {
var1.asSlice(var2 + 33, 58L).fill((byte)0);
}
if (this.collisionAnimationFrame != null) {
this.collisionAnimationFrame.serialize(var1, var2 + 91);
} else {
var1.asSlice(var2 + 91, 58L).fill((byte)0);
}
int var4 = var2 + 157;
if (this.texturePath != null) {
var1.set(PacketIO.PROTO_INT, var2 + 149, var4 - var2 - 157);
var4 += PacketIO.writeVarString(var1, var4, this.texturePath, 4096000);
} else {
var1.set(PacketIO.PROTO_INT, var2 + 149, -1);
}
if (this.animationFrames != null) {
var1.set(PacketIO.PROTO_INT, var2 + 153, var4 - var2 - 157);
if (this.animationFrames.size() > 4096000) {
throw ProtocolException.dictionaryTooLarge("AnimationFrames", this.animationFrames.size(), 4096000);
}
var4 += VarInt.set(var1, var4, this.animationFrames.size());
for (Entry var6 : this.animationFrames.entrySet()) {
var1.set(PacketIO.PROTO_INT, var4, var6.getKey());
var4 += 4;
var4 += var6.getValue().serialize(var1, var4);
}
} else {
var1.set(PacketIO.PROTO_INT, var2 + 153, -1);
}
class="kw">return var4 - var2;
}
class="kw">public int computeSize() {
int var1 = 157;
if (this.texturePath != null) {
var1 += PacketIO.stringSize(this.texturePath);
}
if (this.animationFrames != null) {
var1 += VarInt.size(this.animationFrames.size()) + this.animationFrames.size() * 62;
}
class="kw">return var1;
}
class="kw">public Particle clone() {
Particle var1 = new Particle();
var1.texturePath = this.texturePath;
var1.frameSize = this.frameSize != null ? this.frameSize.clone() : null;
var1.uvOption = this.uvOption;
var1.scaleRatioConstraint = this.scaleRatioConstraint;
var1.softParticles = this.softParticles;
var1.softParticlesFadeFactor = this.softParticlesFadeFactor;
var1.cameraNearFadeStartDistance = this.cameraNearFadeStartDistance;
var1.cameraNearFadeEndDistance = this.cameraNearFadeEndDistance;
var1.cameraFarFadeStartDistance = this.cameraFarFadeStartDistance;
var1.cameraFarFadeEndDistance = this.cameraFarFadeEndDistance;
var1.useSpriteBlending = this.useSpriteBlending;
var1.initialAnimationFrame = this.initialAnimationFrame != null ? this.initialAnimationFrame.clone() : null;
var1.collisionAnimationFrame = this.collisionAnimationFrame != null ? this.collisionAnimationFrame.clone() : null;
if (this.animationFrames != null) {
Map var2 = new HashMap<>();
for (Entry var4 : this.animationFrames.entrySet()) {
var2.put(var4.getKey(), var4.getValue().clone());
}
var1.animationFrames = var2;
}
class="kw">return var1;
}
@Override
class="kw">public boolean equals(Object var1) {
if (this == var1) {
class="kw">return true;
} else {
class="kw">return !(var1 class="kw">instanceof Particle var2)
? false
: Objects.equals(this.texturePath, var2.texturePath)
&& Objects.equals(this.frameSize, var2.frameSize)
&& Objects.equals(this.uvOption, var2.uvOption)
&& Objects.equals(this.scaleRatioConstraint, var2.scaleRatioConstraint)
&& Objects.equals(this.softParticles, var2.softParticles)
&& this.softParticlesFadeFactor == var2.softParticlesFadeFactor
&& this.cameraNearFadeStartDistance == var2.cameraNearFadeStartDistance
&& this.cameraNearFadeEndDistance == var2.cameraNearFadeEndDistance
&& this.cameraFarFadeStartDistance == var2.cameraFarFadeStartDistance
&& this.cameraFarFadeEndDistance == var2.cameraFarFadeEndDistance
&& this.useSpriteBlending == var2.useSpriteBlending
&& Objects.equals(this.initialAnimationFrame, var2.initialAnimationFrame)
&& Objects.equals(this.collisionAnimationFrame, var2.collisionAnimationFrame)
&& Objects.equals(this.animationFrames, var2.animationFrames);
}
}
@Override
class="kw">public int hashCode() {
class="kw">return Objects.hash(
this.texturePath,
this.frameSize,
this.uvOption,
this.scaleRatioConstraint,
this.softParticles,
this.softParticlesFadeFactor,
this.cameraNearFadeStartDistance,
this.cameraNearFadeEndDistance,
this.cameraFarFadeStartDistance,
this.cameraFarFadeEndDistance,
this.useSpriteBlending,
this.initialAnimationFrame,
this.collisionAnimationFrame,
this.animationFrames
);
}
}