package com.hypixel.hytale.protocol.packets.assets;
import com.hypixel.hytale.protocol.Packet;
import com.hypixel.hytale.protocol.UpdateType;
import com.hypixel.hytale.protocol.io.PacketIO;
import com.hypixel.hytale.protocol.io.ProtocolException;
import com.hypixel.hytale.protocol.io.ValidationResult;
import com.hypixel.hytale.protocol.io.VarInt;
import io.netty.buffer.ByteBuf;
import java.util.HashMap;
import java.util.Map;
import java.util.Objects;
import javax.annotation.Nonnull;
import javax.annotation.Nullable;
public class UpdateTranslations implements Packet {
public static final int PACKET_ID = 64;
public static final boolean IS_COMPRESSED = true;
public static final int NULLABLE_BIT_FIELD_SIZE = 1;
public static final int FIXED_BLOCK_SIZE = 2;
public static final int VARIABLE_FIELD_COUNT = 1;
public static final int VARIABLE_BLOCK_START = 2;
public static final int MAX_SIZE = 1677721600;
@Nonnull
public UpdateType type;
@Nullable
public Map<String, String> translations;
public int getId() {
return 64;
}
public UpdateTranslations() {
this.type = UpdateType.Init;
}
public UpdateTranslations(@Nonnull UpdateType type, @Nullable Map<String, String> translations) {
this.type = UpdateType.Init;
this.type = type;
this.translations = translations;
}
public UpdateTranslations(@Nonnull UpdateTranslations other) {
this.type = UpdateType.Init;
this.type = other.type;
this.translations = other.translations;
}
@Nonnull
public static UpdateTranslations deserialize(@Nonnull ByteBuf buf, int offset) {
UpdateTranslations obj = new UpdateTranslations();
byte nullBits = buf.getByte(offset);
obj.type = UpdateType.fromValue(buf.getByte(offset + 1));
int pos = offset + 2;
if ((nullBits & 1) != 0) {
int translationsCount = VarInt.peek(buf, pos);
if (translationsCount < 0) {
throw ProtocolException.negativeLength("Translations", translationsCount);
}
if (translationsCount > 4096000) {
throw ProtocolException.dictionaryTooLarge("Translations", translationsCount, 4096000);
}
pos += VarInt.size(translationsCount);
obj.translations = new HashMap(translationsCount);
for(int i = 0; i < translationsCount; ++i) {
int keyLen = VarInt.peek(buf, pos);
if (keyLen < 0) {
throw ProtocolException.negativeLength("key", keyLen);
}
if (keyLen > 4096000) {
throw ProtocolException.stringTooLong("key", keyLen, 4096000);
}
int keyVarLen = VarInt.length(buf, pos);
String key = PacketIO.readVarString(buf, pos);
pos += keyVarLen + keyLen;
int valLen = VarInt.peek(buf, pos);
if (valLen < 0) {
throw ProtocolException.negativeLength("val", valLen);
}
if (valLen > 4096000) {
throw ProtocolException.stringTooLong("val", valLen, 4096000);
}
int valVarLen = VarInt.length(buf, pos);
String val = PacketIO.readVarString(buf, pos);
pos += valVarLen + valLen;
if (obj.translations.put(key, val) != null) {
throw ProtocolException.duplicateKey("translations", key);
}
}
}
return obj;
}
public static int computeBytesConsumed(@Nonnull ByteBuf buf, int offset) {
byte nullBits = buf.getByte(offset);
int pos = offset + 2;
if ((nullBits & 1) != 0) {
int dictLen = VarInt.peek(buf, pos);
pos += VarInt.length(buf, pos);
for(int i = 0; i < dictLen; ++i) {
int sl = VarInt.peek(buf, pos);
pos += VarInt.length(buf, pos) + sl;
sl = VarInt.peek(buf, pos);
pos += VarInt.length(buf, pos) + sl;
}
}
return pos - offset;
}
public void serialize(@Nonnull ByteBuf buf) {
byte nullBits = 0;
if (this.translations != null) {
nullBits = (byte)(nullBits | 1);
}
buf.writeByte(nullBits);
buf.writeByte(this.type.getValue());
if (this.translations != null) {
if (this.translations.size() > 4096000) {
throw ProtocolException.dictionaryTooLarge("Translations", this.translations.size(), 4096000);
}
VarInt.write(buf, this.translations.size());
for(Map.Entry<String, String> e : this.translations.entrySet()) {
PacketIO.writeVarString(buf, (String)e.getKey(), 4096000);
PacketIO.writeVarString(buf, (String)e.getValue(), 4096000);
}
}
}
public int computeSize() {
int size = 2;
if (this.translations != null) {
int translationsSize = 0;
for(Map.Entry<String, String> kvp : this.translations.entrySet()) {
translationsSize += PacketIO.stringSize((String)kvp.getKey()) + PacketIO.stringSize((String)kvp.getValue());
}
size += VarInt.size(this.translations.size()) + translationsSize;
}
return size;
}
public static ValidationResult validateStructure(@Nonnull ByteBuf buffer, int offset) {
if (buffer.readableBytes() - offset < 2) {
return ValidationResult.error("Buffer too small: expected at least 2 bytes");
} else {
byte nullBits = buffer.getByte(offset);
int pos = offset + 2;
if ((nullBits & 1) != 0) {
int translationsCount = VarInt.peek(buffer, pos);
if (translationsCount < 0) {
return ValidationResult.error("Invalid dictionary count for Translations");
}
if (translationsCount > 4096000) {
return ValidationResult.error("Translations exceeds max length 4096000");
}
pos += VarInt.length(buffer, pos);
for(int i = 0; i < translationsCount; ++i) {
int keyLen = VarInt.peek(buffer, pos);
if (keyLen < 0) {
return ValidationResult.error("Invalid string length for key");
}
if (keyLen > 4096000) {
return ValidationResult.error("key exceeds max length 4096000");
}
pos += VarInt.length(buffer, pos);
pos += keyLen;
if (pos > buffer.writerIndex()) {
return ValidationResult.error("Buffer overflow reading key");
}
int valueLen = VarInt.peek(buffer, pos);
if (valueLen < 0) {
return ValidationResult.error("Invalid string length for value");
}
if (valueLen > 4096000) {
return ValidationResult.error("value exceeds max length 4096000");
}
pos += VarInt.length(buffer, pos);
pos += valueLen;
if (pos > buffer.writerIndex()) {
return ValidationResult.error("Buffer overflow reading value");
}
}
}
return ValidationResult.OK;
}
}
public UpdateTranslations clone() {
UpdateTranslations copy = new UpdateTranslations();
copy.type = this.type;
copy.translations = this.translations != null ? new HashMap(this.translations) : null;
return copy;
}
public boolean equals(Object obj) {
if (this == obj) {
return true;
} else if (!(obj instanceof UpdateTranslations)) {
return false;
} else {
UpdateTranslations other = (UpdateTranslations)obj;
return Objects.equals(this.type, other.type) && Objects.equals(this.translations, other.translations);
}
}
public int hashCode() {
return Objects.hash(new Object[]{this.type, this.translations});
}
}