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Tink is a small cryptographic library that provides a safe, simple, agile and fast way to accomplish some common cryptographic tasks.
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// Generated by the protocol buffer compiler. DO NOT EDIT!
// NO CHECKED-IN PROTOBUF GENCODE
// source: proto/ed25519.proto
// Protobuf Java Version: 4.28.2
package com.google.crypto.tink.proto;
/**
*
* key_type: type.googleapis.com/google.crypto.tink.Ed25519PublicKey
*
*
* Protobuf type {@code google.crypto.tink.Ed25519PublicKey}
*/
public final class Ed25519PublicKey extends
com.google.protobuf.GeneratedMessage implements
// @@protoc_insertion_point(message_implements:google.crypto.tink.Ed25519PublicKey)
Ed25519PublicKeyOrBuilder {
private static final long serialVersionUID = 0L;
static {
com.google.protobuf.RuntimeVersion.validateProtobufGencodeVersion(
com.google.protobuf.RuntimeVersion.RuntimeDomain.PUBLIC,
/* major= */ 4,
/* minor= */ 28,
/* patch= */ 2,
/* suffix= */ "",
Ed25519PublicKey.class.getName());
}
// Use Ed25519PublicKey.newBuilder() to construct.
private Ed25519PublicKey(com.google.protobuf.GeneratedMessage.Builder> builder) {
super(builder);
}
private Ed25519PublicKey() {
keyValue_ = com.google.protobuf.ByteString.EMPTY;
}
public static final com.google.protobuf.Descriptors.Descriptor
getDescriptor() {
return com.google.crypto.tink.proto.Ed25519.internal_static_google_crypto_tink_Ed25519PublicKey_descriptor;
}
@java.lang.Override
protected com.google.protobuf.GeneratedMessage.FieldAccessorTable
internalGetFieldAccessorTable() {
return com.google.crypto.tink.proto.Ed25519.internal_static_google_crypto_tink_Ed25519PublicKey_fieldAccessorTable
.ensureFieldAccessorsInitialized(
com.google.crypto.tink.proto.Ed25519PublicKey.class, com.google.crypto.tink.proto.Ed25519PublicKey.Builder.class);
}
public static final int VERSION_FIELD_NUMBER = 1;
private int version_ = 0;
/**
*
* Required.
*
*
* uint32 version = 1;
* @return The version.
*/
@java.lang.Override
public int getVersion() {
return version_;
}
public static final int KEY_VALUE_FIELD_NUMBER = 2;
private com.google.protobuf.ByteString keyValue_ = com.google.protobuf.ByteString.EMPTY;
/**
*
* The public key is 32 bytes, encoded according to
* https://tools.ietf.org/html/rfc8032#section-5.1.2.
* Required.
*
*
* bytes key_value = 2;
* @return The keyValue.
*/
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byte isInitialized = memoizedIsInitialized;
if (isInitialized == 1) return true;
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memoizedIsInitialized = 1;
return true;
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@java.lang.Override
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if (version_ != 0) {
output.writeUInt32(1, version_);
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if (!keyValue_.isEmpty()) {
output.writeBytes(2, keyValue_);
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getUnknownFields().writeTo(output);
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size += getUnknownFields().getSerializedSize();
memoizedSize = size;
return size;
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@java.lang.Override
public boolean equals(final java.lang.Object obj) {
if (obj == this) {
return true;
}
if (!(obj instanceof com.google.crypto.tink.proto.Ed25519PublicKey)) {
return super.equals(obj);
}
com.google.crypto.tink.proto.Ed25519PublicKey other = (com.google.crypto.tink.proto.Ed25519PublicKey) obj;
if (getVersion()
!= other.getVersion()) return false;
if (!getKeyValue()
.equals(other.getKeyValue())) return false;
if (!getUnknownFields().equals(other.getUnknownFields())) return false;
return true;
}
@java.lang.Override
public int hashCode() {
if (memoizedHashCode != 0) {
return memoizedHashCode;
}
int hash = 41;
hash = (19 * hash) + getDescriptor().hashCode();
hash = (37 * hash) + VERSION_FIELD_NUMBER;
hash = (53 * hash) + getVersion();
hash = (37 * hash) + KEY_VALUE_FIELD_NUMBER;
hash = (53 * hash) + getKeyValue().hashCode();
hash = (29 * hash) + getUnknownFields().hashCode();
memoizedHashCode = hash;
return hash;
}
public static com.google.crypto.tink.proto.Ed25519PublicKey parseFrom(
java.nio.ByteBuffer data)
throws com.google.protobuf.InvalidProtocolBufferException {
return PARSER.parseFrom(data);
}
public static com.google.crypto.tink.proto.Ed25519PublicKey parseFrom(
java.nio.ByteBuffer data,
com.google.protobuf.ExtensionRegistryLite extensionRegistry)
throws com.google.protobuf.InvalidProtocolBufferException {
return PARSER.parseFrom(data, extensionRegistry);
}
public static com.google.crypto.tink.proto.Ed25519PublicKey parseFrom(
com.google.protobuf.ByteString data)
throws com.google.protobuf.InvalidProtocolBufferException {
return PARSER.parseFrom(data);
}
public static com.google.crypto.tink.proto.Ed25519PublicKey parseFrom(
com.google.protobuf.ByteString data,
com.google.protobuf.ExtensionRegistryLite extensionRegistry)
throws com.google.protobuf.InvalidProtocolBufferException {
return PARSER.parseFrom(data, extensionRegistry);
}
public static com.google.crypto.tink.proto.Ed25519PublicKey parseFrom(byte[] data)
throws com.google.protobuf.InvalidProtocolBufferException {
return PARSER.parseFrom(data);
}
public static com.google.crypto.tink.proto.Ed25519PublicKey parseFrom(
byte[] data,
com.google.protobuf.ExtensionRegistryLite extensionRegistry)
throws com.google.protobuf.InvalidProtocolBufferException {
return PARSER.parseFrom(data, extensionRegistry);
}
public static com.google.crypto.tink.proto.Ed25519PublicKey parseFrom(java.io.InputStream input)
throws java.io.IOException {
return com.google.protobuf.GeneratedMessage
.parseWithIOException(PARSER, input);
}
public static com.google.crypto.tink.proto.Ed25519PublicKey parseFrom(
java.io.InputStream input,
com.google.protobuf.ExtensionRegistryLite extensionRegistry)
throws java.io.IOException {
return com.google.protobuf.GeneratedMessage
.parseWithIOException(PARSER, input, extensionRegistry);
}
public static com.google.crypto.tink.proto.Ed25519PublicKey parseDelimitedFrom(java.io.InputStream input)
throws java.io.IOException {
return com.google.protobuf.GeneratedMessage
.parseDelimitedWithIOException(PARSER, input);
}
public static com.google.crypto.tink.proto.Ed25519PublicKey parseDelimitedFrom(
java.io.InputStream input,
com.google.protobuf.ExtensionRegistryLite extensionRegistry)
throws java.io.IOException {
return com.google.protobuf.GeneratedMessage
.parseDelimitedWithIOException(PARSER, input, extensionRegistry);
}
public static com.google.crypto.tink.proto.Ed25519PublicKey parseFrom(
com.google.protobuf.CodedInputStream input)
throws java.io.IOException {
return com.google.protobuf.GeneratedMessage
.parseWithIOException(PARSER, input);
}
public static com.google.crypto.tink.proto.Ed25519PublicKey parseFrom(
com.google.protobuf.CodedInputStream input,
com.google.protobuf.ExtensionRegistryLite extensionRegistry)
throws java.io.IOException {
return com.google.protobuf.GeneratedMessage
.parseWithIOException(PARSER, input, extensionRegistry);
}
@java.lang.Override
public Builder newBuilderForType() { return newBuilder(); }
public static Builder newBuilder() {
return DEFAULT_INSTANCE.toBuilder();
}
public static Builder newBuilder(com.google.crypto.tink.proto.Ed25519PublicKey prototype) {
return DEFAULT_INSTANCE.toBuilder().mergeFrom(prototype);
}
@java.lang.Override
public Builder toBuilder() {
return this == DEFAULT_INSTANCE
? new Builder() : new Builder().mergeFrom(this);
}
@java.lang.Override
protected Builder newBuilderForType(
com.google.protobuf.GeneratedMessage.BuilderParent parent) {
Builder builder = new Builder(parent);
return builder;
}
/**
*
* key_type: type.googleapis.com/google.crypto.tink.Ed25519PublicKey
*
*
* Protobuf type {@code google.crypto.tink.Ed25519PublicKey}
*/
public static final class Builder extends
com.google.protobuf.GeneratedMessage.Builder implements
// @@protoc_insertion_point(builder_implements:google.crypto.tink.Ed25519PublicKey)
com.google.crypto.tink.proto.Ed25519PublicKeyOrBuilder {
public static final com.google.protobuf.Descriptors.Descriptor
getDescriptor() {
return com.google.crypto.tink.proto.Ed25519.internal_static_google_crypto_tink_Ed25519PublicKey_descriptor;
}
@java.lang.Override
protected com.google.protobuf.GeneratedMessage.FieldAccessorTable
internalGetFieldAccessorTable() {
return com.google.crypto.tink.proto.Ed25519.internal_static_google_crypto_tink_Ed25519PublicKey_fieldAccessorTable
.ensureFieldAccessorsInitialized(
com.google.crypto.tink.proto.Ed25519PublicKey.class, com.google.crypto.tink.proto.Ed25519PublicKey.Builder.class);
}
// Construct using com.google.crypto.tink.proto.Ed25519PublicKey.newBuilder()
private Builder() {
}
private Builder(
com.google.protobuf.GeneratedMessage.BuilderParent parent) {
super(parent);
}
@java.lang.Override
public Builder clear() {
super.clear();
bitField0_ = 0;
version_ = 0;
keyValue_ = com.google.protobuf.ByteString.EMPTY;
return this;
}
@java.lang.Override
public com.google.protobuf.Descriptors.Descriptor
getDescriptorForType() {
return com.google.crypto.tink.proto.Ed25519.internal_static_google_crypto_tink_Ed25519PublicKey_descriptor;
}
@java.lang.Override
public com.google.crypto.tink.proto.Ed25519PublicKey getDefaultInstanceForType() {
return com.google.crypto.tink.proto.Ed25519PublicKey.getDefaultInstance();
}
@java.lang.Override
public com.google.crypto.tink.proto.Ed25519PublicKey build() {
com.google.crypto.tink.proto.Ed25519PublicKey result = buildPartial();
if (!result.isInitialized()) {
throw newUninitializedMessageException(result);
}
return result;
}
@java.lang.Override
public com.google.crypto.tink.proto.Ed25519PublicKey buildPartial() {
com.google.crypto.tink.proto.Ed25519PublicKey result = new com.google.crypto.tink.proto.Ed25519PublicKey(this);
if (bitField0_ != 0) { buildPartial0(result); }
onBuilt();
return result;
}
private void buildPartial0(com.google.crypto.tink.proto.Ed25519PublicKey result) {
int from_bitField0_ = bitField0_;
if (((from_bitField0_ & 0x00000001) != 0)) {
result.version_ = version_;
}
if (((from_bitField0_ & 0x00000002) != 0)) {
result.keyValue_ = keyValue_;
}
}
@java.lang.Override
public Builder mergeFrom(com.google.protobuf.Message other) {
if (other instanceof com.google.crypto.tink.proto.Ed25519PublicKey) {
return mergeFrom((com.google.crypto.tink.proto.Ed25519PublicKey)other);
} else {
super.mergeFrom(other);
return this;
}
}
public Builder mergeFrom(com.google.crypto.tink.proto.Ed25519PublicKey other) {
if (other == com.google.crypto.tink.proto.Ed25519PublicKey.getDefaultInstance()) return this;
if (other.getVersion() != 0) {
setVersion(other.getVersion());
}
if (other.getKeyValue() != com.google.protobuf.ByteString.EMPTY) {
setKeyValue(other.getKeyValue());
}
this.mergeUnknownFields(other.getUnknownFields());
onChanged();
return this;
}
@java.lang.Override
public final boolean isInitialized() {
return true;
}
@java.lang.Override
public Builder mergeFrom(
com.google.protobuf.CodedInputStream input,
com.google.protobuf.ExtensionRegistryLite extensionRegistry)
throws java.io.IOException {
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throw new java.lang.NullPointerException();
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int tag = input.readTag();
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case 8: {
version_ = input.readUInt32();
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keyValue_ = input.readBytes();
bitField0_ |= 0x00000002;
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break;
} // default:
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throw e.unwrapIOException();
} finally {
onChanged();
} // finally
return this;
}
private int bitField0_;
private int version_ ;
/**
*
* Required.
*
*
* uint32 version = 1;
* @return The version.
*/
@java.lang.Override
public int getVersion() {
return version_;
}
/**
*
* Required.
*
*
* uint32 version = 1;
* @param value The version to set.
* @return This builder for chaining.
*/
public Builder setVersion(int value) {
version_ = value;
bitField0_ |= 0x00000001;
onChanged();
return this;
}
/**
*
* Required.
*
*
* uint32 version = 1;
* @return This builder for chaining.
*/
public Builder clearVersion() {
bitField0_ = (bitField0_ & ~0x00000001);
version_ = 0;
onChanged();
return this;
}
private com.google.protobuf.ByteString keyValue_ = com.google.protobuf.ByteString.EMPTY;
/**
*
* The public key is 32 bytes, encoded according to
* https://tools.ietf.org/html/rfc8032#section-5.1.2.
* Required.
*
*
* bytes key_value = 2;
* @return The keyValue.
*/
@java.lang.Override
public com.google.protobuf.ByteString getKeyValue() {
return keyValue_;
}
/**
*
* The public key is 32 bytes, encoded according to
* https://tools.ietf.org/html/rfc8032#section-5.1.2.
* Required.
*
*
* bytes key_value = 2;
* @param value The keyValue to set.
* @return This builder for chaining.
*/
public Builder setKeyValue(com.google.protobuf.ByteString value) {
if (value == null) { throw new NullPointerException(); }
keyValue_ = value;
bitField0_ |= 0x00000002;
onChanged();
return this;
}
/**
*
* The public key is 32 bytes, encoded according to
* https://tools.ietf.org/html/rfc8032#section-5.1.2.
* Required.
*
*
* bytes key_value = 2;
* @return This builder for chaining.
*/
public Builder clearKeyValue() {
bitField0_ = (bitField0_ & ~0x00000002);
keyValue_ = getDefaultInstance().getKeyValue();
onChanged();
return this;
}
// @@protoc_insertion_point(builder_scope:google.crypto.tink.Ed25519PublicKey)
}
// @@protoc_insertion_point(class_scope:google.crypto.tink.Ed25519PublicKey)
private static final com.google.crypto.tink.proto.Ed25519PublicKey DEFAULT_INSTANCE;
static {
DEFAULT_INSTANCE = new com.google.crypto.tink.proto.Ed25519PublicKey();
}
public static com.google.crypto.tink.proto.Ed25519PublicKey getDefaultInstance() {
return DEFAULT_INSTANCE;
}
private static final com.google.protobuf.Parser
PARSER = new com.google.protobuf.AbstractParser() {
@java.lang.Override
public Ed25519PublicKey parsePartialFrom(
com.google.protobuf.CodedInputStream input,
com.google.protobuf.ExtensionRegistryLite extensionRegistry)
throws com.google.protobuf.InvalidProtocolBufferException {
Builder builder = newBuilder();
try {
builder.mergeFrom(input, extensionRegistry);
} catch (com.google.protobuf.InvalidProtocolBufferException e) {
throw e.setUnfinishedMessage(builder.buildPartial());
} catch (com.google.protobuf.UninitializedMessageException e) {
throw e.asInvalidProtocolBufferException().setUnfinishedMessage(builder.buildPartial());
} catch (java.io.IOException e) {
throw new com.google.protobuf.InvalidProtocolBufferException(e)
.setUnfinishedMessage(builder.buildPartial());
}
return builder.buildPartial();
}
};
public static com.google.protobuf.Parser parser() {
return PARSER;
}
@java.lang.Override
public com.google.protobuf.Parser getParserForType() {
return PARSER;
}
@java.lang.Override
public com.google.crypto.tink.proto.Ed25519PublicKey getDefaultInstanceForType() {
return DEFAULT_INSTANCE;
}
}
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