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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/rsa_ssa_pkcs1.proto
// Protobuf Java Version: 4.28.2
package com.google.crypto.tink.proto;
/**
* Protobuf type {@code google.crypto.tink.RsaSsaPkcs1Params}
*/
public final class RsaSsaPkcs1Params extends
com.google.protobuf.GeneratedMessageLite<
RsaSsaPkcs1Params, RsaSsaPkcs1Params.Builder> implements
// @@protoc_insertion_point(message_implements:google.crypto.tink.RsaSsaPkcs1Params)
RsaSsaPkcs1ParamsOrBuilder {
private RsaSsaPkcs1Params() {
}
public static final int HASH_TYPE_FIELD_NUMBER = 1;
private int hashType_;
/**
*
* Hash function used in computing hash of the signing message
* (see https://tools.ietf.org/html/rfc8017#section-9.2).
* Required.
*
*
* .google.crypto.tink.HashType hash_type = 1;
* @return The enum numeric value on the wire for hashType.
*/
@java.lang.Override
public int getHashTypeValue() {
return hashType_;
}
/**
*
* Hash function used in computing hash of the signing message
* (see https://tools.ietf.org/html/rfc8017#section-9.2).
* Required.
*
*
* .google.crypto.tink.HashType hash_type = 1;
* @return The hashType.
*/
@java.lang.Override
public com.google.crypto.tink.proto.HashType getHashType() {
com.google.crypto.tink.proto.HashType result = com.google.crypto.tink.proto.HashType.forNumber(hashType_);
return result == null ? com.google.crypto.tink.proto.HashType.UNRECOGNIZED : result;
}
/**
*
* Hash function used in computing hash of the signing message
* (see https://tools.ietf.org/html/rfc8017#section-9.2).
* Required.
*
*
* .google.crypto.tink.HashType hash_type = 1;
* @param value The enum numeric value on the wire for hashType to set.
*/
private void setHashTypeValue(int value) {
hashType_ = value;
}
/**
*
* Hash function used in computing hash of the signing message
* (see https://tools.ietf.org/html/rfc8017#section-9.2).
* Required.
*
*
* .google.crypto.tink.HashType hash_type = 1;
* @param value The hashType to set.
*/
private void setHashType(com.google.crypto.tink.proto.HashType value) {
hashType_ = value.getNumber();
}
/**
*
* Hash function used in computing hash of the signing message
* (see https://tools.ietf.org/html/rfc8017#section-9.2).
* Required.
*
*
* .google.crypto.tink.HashType hash_type = 1;
*/
private void clearHashType() {
hashType_ = 0;
}
public static com.google.crypto.tink.proto.RsaSsaPkcs1Params parseFrom(
java.nio.ByteBuffer data)
throws com.google.protobuf.InvalidProtocolBufferException {
return com.google.protobuf.GeneratedMessageLite.parseFrom(
DEFAULT_INSTANCE, data);
}
public static com.google.crypto.tink.proto.RsaSsaPkcs1Params parseFrom(
java.nio.ByteBuffer data,
com.google.protobuf.ExtensionRegistryLite extensionRegistry)
throws com.google.protobuf.InvalidProtocolBufferException {
return com.google.protobuf.GeneratedMessageLite.parseFrom(
DEFAULT_INSTANCE, data, extensionRegistry);
}
public static com.google.crypto.tink.proto.RsaSsaPkcs1Params parseFrom(
com.google.protobuf.ByteString data)
throws com.google.protobuf.InvalidProtocolBufferException {
return com.google.protobuf.GeneratedMessageLite.parseFrom(
DEFAULT_INSTANCE, data);
}
public static com.google.crypto.tink.proto.RsaSsaPkcs1Params parseFrom(
com.google.protobuf.ByteString data,
com.google.protobuf.ExtensionRegistryLite extensionRegistry)
throws com.google.protobuf.InvalidProtocolBufferException {
return com.google.protobuf.GeneratedMessageLite.parseFrom(
DEFAULT_INSTANCE, data, extensionRegistry);
}
public static com.google.crypto.tink.proto.RsaSsaPkcs1Params parseFrom(byte[] data)
throws com.google.protobuf.InvalidProtocolBufferException {
return com.google.protobuf.GeneratedMessageLite.parseFrom(
DEFAULT_INSTANCE, data);
}
public static com.google.crypto.tink.proto.RsaSsaPkcs1Params parseFrom(
byte[] data,
com.google.protobuf.ExtensionRegistryLite extensionRegistry)
throws com.google.protobuf.InvalidProtocolBufferException {
return com.google.protobuf.GeneratedMessageLite.parseFrom(
DEFAULT_INSTANCE, data, extensionRegistry);
}
public static com.google.crypto.tink.proto.RsaSsaPkcs1Params parseFrom(java.io.InputStream input)
throws java.io.IOException {
return com.google.protobuf.GeneratedMessageLite.parseFrom(
DEFAULT_INSTANCE, input);
}
public static com.google.crypto.tink.proto.RsaSsaPkcs1Params parseFrom(
java.io.InputStream input,
com.google.protobuf.ExtensionRegistryLite extensionRegistry)
throws java.io.IOException {
return com.google.protobuf.GeneratedMessageLite.parseFrom(
DEFAULT_INSTANCE, input, extensionRegistry);
}
public static com.google.crypto.tink.proto.RsaSsaPkcs1Params parseDelimitedFrom(java.io.InputStream input)
throws java.io.IOException {
return parseDelimitedFrom(DEFAULT_INSTANCE, input);
}
public static com.google.crypto.tink.proto.RsaSsaPkcs1Params parseDelimitedFrom(
java.io.InputStream input,
com.google.protobuf.ExtensionRegistryLite extensionRegistry)
throws java.io.IOException {
return parseDelimitedFrom(DEFAULT_INSTANCE, input, extensionRegistry);
}
public static com.google.crypto.tink.proto.RsaSsaPkcs1Params parseFrom(
com.google.protobuf.CodedInputStream input)
throws java.io.IOException {
return com.google.protobuf.GeneratedMessageLite.parseFrom(
DEFAULT_INSTANCE, input);
}
public static com.google.crypto.tink.proto.RsaSsaPkcs1Params parseFrom(
com.google.protobuf.CodedInputStream input,
com.google.protobuf.ExtensionRegistryLite extensionRegistry)
throws java.io.IOException {
return com.google.protobuf.GeneratedMessageLite.parseFrom(
DEFAULT_INSTANCE, input, extensionRegistry);
}
public static Builder newBuilder() {
return (Builder) DEFAULT_INSTANCE.createBuilder();
}
public static Builder newBuilder(com.google.crypto.tink.proto.RsaSsaPkcs1Params prototype) {
return DEFAULT_INSTANCE.createBuilder(prototype);
}
/**
* Protobuf type {@code google.crypto.tink.RsaSsaPkcs1Params}
*/
public static final class Builder extends
com.google.protobuf.GeneratedMessageLite.Builder<
com.google.crypto.tink.proto.RsaSsaPkcs1Params, Builder> implements
// @@protoc_insertion_point(builder_implements:google.crypto.tink.RsaSsaPkcs1Params)
com.google.crypto.tink.proto.RsaSsaPkcs1ParamsOrBuilder {
// Construct using com.google.crypto.tink.proto.RsaSsaPkcs1Params.newBuilder()
private Builder() {
super(DEFAULT_INSTANCE);
}
/**
*
* Hash function used in computing hash of the signing message
* (see https://tools.ietf.org/html/rfc8017#section-9.2).
* Required.
*
*
* .google.crypto.tink.HashType hash_type = 1;
* @return The enum numeric value on the wire for hashType.
*/
@java.lang.Override
public int getHashTypeValue() {
return instance.getHashTypeValue();
}
/**
*
* Hash function used in computing hash of the signing message
* (see https://tools.ietf.org/html/rfc8017#section-9.2).
* Required.
*
*
* .google.crypto.tink.HashType hash_type = 1;
* @param value The hashType to set.
* @return This builder for chaining.
*/
public Builder setHashTypeValue(int value) {
copyOnWrite();
instance.setHashTypeValue(value);
return this;
}
/**
*
* Hash function used in computing hash of the signing message
* (see https://tools.ietf.org/html/rfc8017#section-9.2).
* Required.
*
*
* .google.crypto.tink.HashType hash_type = 1;
* @return The hashType.
*/
@java.lang.Override
public com.google.crypto.tink.proto.HashType getHashType() {
return instance.getHashType();
}
/**
*
* Hash function used in computing hash of the signing message
* (see https://tools.ietf.org/html/rfc8017#section-9.2).
* Required.
*
*
* .google.crypto.tink.HashType hash_type = 1;
* @param value The enum numeric value on the wire for hashType to set.
* @return This builder for chaining.
*/
public Builder setHashType(com.google.crypto.tink.proto.HashType value) {
copyOnWrite();
instance.setHashType(value);
return this;
}
/**
*
* Hash function used in computing hash of the signing message
* (see https://tools.ietf.org/html/rfc8017#section-9.2).
* Required.
*
*
* .google.crypto.tink.HashType hash_type = 1;
* @return This builder for chaining.
*/
public Builder clearHashType() {
copyOnWrite();
instance.clearHashType();
return this;
}
// @@protoc_insertion_point(builder_scope:google.crypto.tink.RsaSsaPkcs1Params)
}
@java.lang.Override
@java.lang.SuppressWarnings({"unchecked", "fallthrough"})
protected final java.lang.Object dynamicMethod(
com.google.protobuf.GeneratedMessageLite.MethodToInvoke method,
java.lang.Object arg0, java.lang.Object arg1) {
switch (method) {
case NEW_MUTABLE_INSTANCE: {
return new com.google.crypto.tink.proto.RsaSsaPkcs1Params();
}
case NEW_BUILDER: {
return new Builder();
}
case BUILD_MESSAGE_INFO: {
java.lang.Object[] objects = new java.lang.Object[] {
"hashType_",
};
java.lang.String info =
"\u0000\u0001\u0000\u0000\u0001\u0001\u0001\u0000\u0000\u0000\u0001\f";
return newMessageInfo(DEFAULT_INSTANCE, info, objects);
}
// fall through
case GET_DEFAULT_INSTANCE: {
return DEFAULT_INSTANCE;
}
case GET_PARSER: {
com.google.protobuf.Parser parser = PARSER;
if (parser == null) {
synchronized (com.google.crypto.tink.proto.RsaSsaPkcs1Params.class) {
parser = PARSER;
if (parser == null) {
parser =
new DefaultInstanceBasedParser(
DEFAULT_INSTANCE);
PARSER = parser;
}
}
}
return parser;
}
case GET_MEMOIZED_IS_INITIALIZED: {
return (byte) 1;
}
case SET_MEMOIZED_IS_INITIALIZED: {
return null;
}
}
throw new UnsupportedOperationException();
}
// @@protoc_insertion_point(class_scope:google.crypto.tink.RsaSsaPkcs1Params)
private static final com.google.crypto.tink.proto.RsaSsaPkcs1Params DEFAULT_INSTANCE;
static {
RsaSsaPkcs1Params defaultInstance = new RsaSsaPkcs1Params();
// New instances are implicitly immutable so no need to make
// immutable.
DEFAULT_INSTANCE = defaultInstance;
com.google.protobuf.GeneratedMessageLite.registerDefaultInstance(
RsaSsaPkcs1Params.class, defaultInstance);
}
public static com.google.crypto.tink.proto.RsaSsaPkcs1Params getDefaultInstance() {
return DEFAULT_INSTANCE;
}
private static volatile com.google.protobuf.Parser PARSER;
public static com.google.protobuf.Parser parser() {
return DEFAULT_INSTANCE.getParserForType();
}
}
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