Files
Nebula/src/generated/main/emu/nebula/proto/TalentGroupUnlock.java
2025-10-27 02:02:26 -07:00

526 lines
15 KiB
Java

// Code generated by protocol buffer compiler. Do not edit!
package emu.nebula.proto;
import java.io.IOException;
import us.hebi.quickbuf.FieldName;
import us.hebi.quickbuf.InvalidProtocolBufferException;
import us.hebi.quickbuf.JsonSink;
import us.hebi.quickbuf.JsonSource;
import us.hebi.quickbuf.MessageFactory;
import us.hebi.quickbuf.ProtoMessage;
import us.hebi.quickbuf.ProtoSink;
import us.hebi.quickbuf.ProtoSource;
import us.hebi.quickbuf.RepeatedByte;
import us.hebi.quickbuf.RepeatedInt;
public final class TalentGroupUnlock {
/**
* Protobuf type {@code TalentGroupUnlockResp}
*/
public static final class TalentGroupUnlockResp extends ProtoMessage<TalentGroupUnlockResp> implements Cloneable {
private static final long serialVersionUID = 0L;
/**
* <code>optional .ChangeInfo Change = 1;</code>
*/
private final Public.ChangeInfo change = Public.ChangeInfo.newInstance();
/**
* <code>optional bytes NextPackage = 2047;</code>
*/
private final RepeatedByte nextPackage = RepeatedByte.newEmptyInstance();
/**
* <code>repeated uint32 Nodes = 2;</code>
*/
private final RepeatedInt nodes = RepeatedInt.newEmptyInstance();
private TalentGroupUnlockResp() {
}
/**
* @return a new empty instance of {@code TalentGroupUnlockResp}
*/
public static TalentGroupUnlockResp newInstance() {
return new TalentGroupUnlockResp();
}
/**
* <code>optional .ChangeInfo Change = 1;</code>
* @return whether the change field is set
*/
public boolean hasChange() {
return (bitField0_ & 0x00000001) != 0;
}
/**
* <code>optional .ChangeInfo Change = 1;</code>
* @return this
*/
public TalentGroupUnlockResp clearChange() {
bitField0_ &= ~0x00000001;
change.clear();
return this;
}
/**
* <code>optional .ChangeInfo Change = 1;</code>
*
* This method returns the internal storage object without modifying any has state.
* The returned object should not be modified and be treated as read-only.
*
* Use {@link #getMutableChange()} if you want to modify it.
*
* @return internal storage object for reading
*/
public Public.ChangeInfo getChange() {
return change;
}
/**
* <code>optional .ChangeInfo Change = 1;</code>
*
* This method returns the internal storage object and sets the corresponding
* has state. The returned object will become part of this message and its
* contents may be modified as long as the has state is not cleared.
*
* @return internal storage object for modifications
*/
public Public.ChangeInfo getMutableChange() {
bitField0_ |= 0x00000001;
return change;
}
/**
* <code>optional .ChangeInfo Change = 1;</code>
* @param value the change to set
* @return this
*/
public TalentGroupUnlockResp setChange(final Public.ChangeInfo value) {
bitField0_ |= 0x00000001;
change.copyFrom(value);
return this;
}
/**
* <code>optional bytes NextPackage = 2047;</code>
* @return whether the nextPackage field is set
*/
public boolean hasNextPackage() {
return (bitField0_ & 0x00000002) != 0;
}
/**
* <code>optional bytes NextPackage = 2047;</code>
* @return this
*/
public TalentGroupUnlockResp clearNextPackage() {
bitField0_ &= ~0x00000002;
nextPackage.clear();
return this;
}
/**
* <code>optional bytes NextPackage = 2047;</code>
*
* This method returns the internal storage object without modifying any has state.
* The returned object should not be modified and be treated as read-only.
*
* Use {@link #getMutableNextPackage()} if you want to modify it.
*
* @return internal storage object for reading
*/
public RepeatedByte getNextPackage() {
return nextPackage;
}
/**
* <code>optional bytes NextPackage = 2047;</code>
*
* This method returns the internal storage object and sets the corresponding
* has state. The returned object will become part of this message and its
* contents may be modified as long as the has state is not cleared.
*
* @return internal storage object for modifications
*/
public RepeatedByte getMutableNextPackage() {
bitField0_ |= 0x00000002;
return nextPackage;
}
/**
* <code>optional bytes NextPackage = 2047;</code>
* @param value the nextPackage to add
* @return this
*/
public TalentGroupUnlockResp addNextPackage(final byte value) {
bitField0_ |= 0x00000002;
nextPackage.add(value);
return this;
}
/**
* <code>optional bytes NextPackage = 2047;</code>
* @param values the nextPackage to add
* @return this
*/
public TalentGroupUnlockResp addAllNextPackage(final byte... values) {
bitField0_ |= 0x00000002;
nextPackage.addAll(values);
return this;
}
/**
* <code>optional bytes NextPackage = 2047;</code>
* @param values the nextPackage to set
* @return this
*/
public TalentGroupUnlockResp setNextPackage(final byte... values) {
bitField0_ |= 0x00000002;
nextPackage.copyFrom(values);
return this;
}
/**
* <code>repeated uint32 Nodes = 2;</code>
* @return whether the nodes field is set
*/
public boolean hasNodes() {
return (bitField0_ & 0x00000004) != 0;
}
/**
* <code>repeated uint32 Nodes = 2;</code>
* @return this
*/
public TalentGroupUnlockResp clearNodes() {
bitField0_ &= ~0x00000004;
nodes.clear();
return this;
}
/**
* <code>repeated uint32 Nodes = 2;</code>
*
* This method returns the internal storage object without modifying any has state.
* The returned object should not be modified and be treated as read-only.
*
* Use {@link #getMutableNodes()} if you want to modify it.
*
* @return internal storage object for reading
*/
public RepeatedInt getNodes() {
return nodes;
}
/**
* <code>repeated uint32 Nodes = 2;</code>
*
* This method returns the internal storage object and sets the corresponding
* has state. The returned object will become part of this message and its
* contents may be modified as long as the has state is not cleared.
*
* @return internal storage object for modifications
*/
public RepeatedInt getMutableNodes() {
bitField0_ |= 0x00000004;
return nodes;
}
/**
* <code>repeated uint32 Nodes = 2;</code>
* @param value the nodes to add
* @return this
*/
public TalentGroupUnlockResp addNodes(final int value) {
bitField0_ |= 0x00000004;
nodes.add(value);
return this;
}
/**
* <code>repeated uint32 Nodes = 2;</code>
* @param values the nodes to add
* @return this
*/
public TalentGroupUnlockResp addAllNodes(final int... values) {
bitField0_ |= 0x00000004;
nodes.addAll(values);
return this;
}
@Override
public TalentGroupUnlockResp copyFrom(final TalentGroupUnlockResp other) {
cachedSize = other.cachedSize;
if ((bitField0_ | other.bitField0_) != 0) {
bitField0_ = other.bitField0_;
change.copyFrom(other.change);
nextPackage.copyFrom(other.nextPackage);
nodes.copyFrom(other.nodes);
}
return this;
}
@Override
public TalentGroupUnlockResp mergeFrom(final TalentGroupUnlockResp other) {
if (other.isEmpty()) {
return this;
}
cachedSize = -1;
if (other.hasChange()) {
getMutableChange().mergeFrom(other.change);
}
if (other.hasNextPackage()) {
getMutableNextPackage().copyFrom(other.nextPackage);
}
if (other.hasNodes()) {
getMutableNodes().addAll(other.nodes);
}
return this;
}
@Override
public TalentGroupUnlockResp clear() {
if (isEmpty()) {
return this;
}
cachedSize = -1;
bitField0_ = 0;
change.clear();
nextPackage.clear();
nodes.clear();
return this;
}
@Override
public TalentGroupUnlockResp clearQuick() {
if (isEmpty()) {
return this;
}
cachedSize = -1;
bitField0_ = 0;
change.clearQuick();
nextPackage.clear();
nodes.clear();
return this;
}
@Override
public boolean equals(Object o) {
if (o == this) {
return true;
}
if (!(o instanceof TalentGroupUnlockResp)) {
return false;
}
TalentGroupUnlockResp other = (TalentGroupUnlockResp) o;
return bitField0_ == other.bitField0_
&& (!hasChange() || change.equals(other.change))
&& (!hasNextPackage() || nextPackage.equals(other.nextPackage))
&& (!hasNodes() || nodes.equals(other.nodes));
}
@Override
public void writeTo(final ProtoSink output) throws IOException {
if ((bitField0_ & 0x00000001) != 0) {
output.writeRawByte((byte) 10);
output.writeMessageNoTag(change);
}
if ((bitField0_ & 0x00000002) != 0) {
output.writeRawLittleEndian16((short) 32762);
output.writeBytesNoTag(nextPackage);
}
if ((bitField0_ & 0x00000004) != 0) {
for (int i = 0; i < nodes.length(); i++) {
output.writeRawByte((byte) 16);
output.writeUInt32NoTag(nodes.array()[i]);
}
}
}
@Override
protected int computeSerializedSize() {
int size = 0;
if ((bitField0_ & 0x00000001) != 0) {
size += 1 + ProtoSink.computeMessageSizeNoTag(change);
}
if ((bitField0_ & 0x00000002) != 0) {
size += 2 + ProtoSink.computeBytesSizeNoTag(nextPackage);
}
if ((bitField0_ & 0x00000004) != 0) {
size += (1 * nodes.length()) + ProtoSink.computeRepeatedUInt32SizeNoTag(nodes);
}
return size;
}
@Override
@SuppressWarnings("fallthrough")
public TalentGroupUnlockResp mergeFrom(final ProtoSource input) throws IOException {
// Enabled Fall-Through Optimization (QuickBuffers)
int tag = input.readTag();
while (true) {
switch (tag) {
case 10: {
// change
input.readMessage(change);
bitField0_ |= 0x00000001;
tag = input.readTag();
if (tag != 16378) {
break;
}
}
case 16378: {
// nextPackage
input.readBytes(nextPackage);
bitField0_ |= 0x00000002;
tag = input.readTag();
if (tag != 18) {
break;
}
}
case 18: {
// nodes [packed=true]
input.readPackedUInt32(nodes, tag);
bitField0_ |= 0x00000004;
tag = input.readTag();
if (tag != 0) {
break;
}
}
case 0: {
return this;
}
default: {
if (!input.skipField(tag)) {
return this;
}
tag = input.readTag();
break;
}
case 16: {
// nodes [packed=false]
tag = input.readRepeatedUInt32(nodes, tag);
bitField0_ |= 0x00000004;
break;
}
}
}
}
@Override
public void writeTo(final JsonSink output) throws IOException {
output.beginObject();
if ((bitField0_ & 0x00000001) != 0) {
output.writeMessage(FieldNames.change, change);
}
if ((bitField0_ & 0x00000002) != 0) {
output.writeBytes(FieldNames.nextPackage, nextPackage);
}
if ((bitField0_ & 0x00000004) != 0) {
output.writeRepeatedUInt32(FieldNames.nodes, nodes);
}
output.endObject();
}
@Override
public TalentGroupUnlockResp mergeFrom(final JsonSource input) throws IOException {
if (!input.beginObject()) {
return this;
}
while (!input.isAtEnd()) {
switch (input.readFieldHash()) {
case 2017198032: {
if (input.isAtField(FieldNames.change)) {
if (!input.trySkipNullValue()) {
input.readMessage(change);
bitField0_ |= 0x00000001;
}
} else {
input.skipUnknownField();
}
break;
}
case -2082324045: {
if (input.isAtField(FieldNames.nextPackage)) {
if (!input.trySkipNullValue()) {
input.readBytes(nextPackage);
bitField0_ |= 0x00000002;
}
} else {
input.skipUnknownField();
}
break;
}
case 75440785: {
if (input.isAtField(FieldNames.nodes)) {
if (!input.trySkipNullValue()) {
input.readRepeatedUInt32(nodes);
bitField0_ |= 0x00000004;
}
} else {
input.skipUnknownField();
}
break;
}
default: {
input.skipUnknownField();
break;
}
}
}
input.endObject();
return this;
}
@Override
public TalentGroupUnlockResp clone() {
return new TalentGroupUnlockResp().copyFrom(this);
}
@Override
public boolean isEmpty() {
return ((bitField0_) == 0);
}
public static TalentGroupUnlockResp parseFrom(final byte[] data) throws
InvalidProtocolBufferException {
return ProtoMessage.mergeFrom(new TalentGroupUnlockResp(), data).checkInitialized();
}
public static TalentGroupUnlockResp parseFrom(final ProtoSource input) throws IOException {
return ProtoMessage.mergeFrom(new TalentGroupUnlockResp(), input).checkInitialized();
}
public static TalentGroupUnlockResp parseFrom(final JsonSource input) throws IOException {
return ProtoMessage.mergeFrom(new TalentGroupUnlockResp(), input).checkInitialized();
}
/**
* @return factory for creating TalentGroupUnlockResp messages
*/
public static MessageFactory<TalentGroupUnlockResp> getFactory() {
return TalentGroupUnlockRespFactory.INSTANCE;
}
private enum TalentGroupUnlockRespFactory implements MessageFactory<TalentGroupUnlockResp> {
INSTANCE;
@Override
public TalentGroupUnlockResp create() {
return TalentGroupUnlockResp.newInstance();
}
}
/**
* Contains name constants used for serializing JSON
*/
static class FieldNames {
static final FieldName change = FieldName.forField("Change");
static final FieldName nextPackage = FieldName.forField("NextPackage");
static final FieldName nodes = FieldName.forField("Nodes");
}
}
}