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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.
// Generated by the protocol buffer compiler. DO NOT EDIT!
// source: proto/hkdf_prf.proto
package com.google.crypto.tink.proto;
/**
* Protobuf type {@code google.crypto.tink.HkdfPrfKeyFormat}
*/
public final class HkdfPrfKeyFormat extends
com.google.protobuf.GeneratedMessageV3 implements
// @@protoc_insertion_point(message_implements:google.crypto.tink.HkdfPrfKeyFormat)
HkdfPrfKeyFormatOrBuilder {
private static final long serialVersionUID = 0L;
// Use HkdfPrfKeyFormat.newBuilder() to construct.
private HkdfPrfKeyFormat(com.google.protobuf.GeneratedMessageV3.Builder> builder) {
super(builder);
}
private HkdfPrfKeyFormat() {
}
@java.lang.Override
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protected java.lang.Object newInstance(
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return new HkdfPrfKeyFormat();
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getUnknownFields() {
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private HkdfPrfKeyFormat(
com.google.protobuf.CodedInputStream input,
com.google.protobuf.ExtensionRegistryLite extensionRegistry)
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this();
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makeExtensionsImmutable();
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public static final com.google.protobuf.Descriptors.Descriptor
getDescriptor() {
return com.google.crypto.tink.proto.HkdfPrf.internal_static_google_crypto_tink_HkdfPrfKeyFormat_descriptor;
}
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public static final int PARAMS_FIELD_NUMBER = 1;
private com.google.crypto.tink.proto.HkdfPrfParams params_;
/**
* .google.crypto.tink.HkdfPrfParams params = 1;
* @return Whether the params field is set.
*/
public boolean hasParams() {
return params_ != null;
}
/**
* .google.crypto.tink.HkdfPrfParams params = 1;
* @return The params.
*/
public com.google.crypto.tink.proto.HkdfPrfParams getParams() {
return params_ == null ? com.google.crypto.tink.proto.HkdfPrfParams.getDefaultInstance() : params_;
}
/**
* .google.crypto.tink.HkdfPrfParams params = 1;
*/
public com.google.crypto.tink.proto.HkdfPrfParamsOrBuilder getParamsOrBuilder() {
return getParams();
}
public static final int KEY_SIZE_FIELD_NUMBER = 2;
private int keySize_;
/**
* uint32 key_size = 2;
* @return The keySize.
*/
public int getKeySize() {
return keySize_;
}
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byte isInitialized = memoizedIsInitialized;
if (isInitialized == 1) return true;
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memoizedIsInitialized = 1;
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throws java.io.IOException {
if (params_ != null) {
output.writeMessage(1, getParams());
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if (keySize_ != 0) {
output.writeUInt32(2, keySize_);
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if (!(obj instanceof com.google.crypto.tink.proto.HkdfPrfKeyFormat)) {
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}
com.google.crypto.tink.proto.HkdfPrfKeyFormat other = (com.google.crypto.tink.proto.HkdfPrfKeyFormat) obj;
if (hasParams() != other.hasParams()) return false;
if (hasParams()) {
if (!getParams()
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}
if (getKeySize()
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return true;
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int hash = 41;
hash = (19 * hash) + getDescriptor().hashCode();
if (hasParams()) {
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hash = (53 * hash) + getParams().hashCode();
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hash = (37 * hash) + KEY_SIZE_FIELD_NUMBER;
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public static com.google.crypto.tink.proto.HkdfPrfKeyFormat parseFrom(
java.nio.ByteBuffer data)
throws com.google.protobuf.InvalidProtocolBufferException {
return PARSER.parseFrom(data);
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public static com.google.crypto.tink.proto.HkdfPrfKeyFormat parseFrom(
java.nio.ByteBuffer data,
com.google.protobuf.ExtensionRegistryLite extensionRegistry)
throws com.google.protobuf.InvalidProtocolBufferException {
return PARSER.parseFrom(data, extensionRegistry);
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public static com.google.crypto.tink.proto.HkdfPrfKeyFormat parseFrom(
com.google.protobuf.ByteString data)
throws com.google.protobuf.InvalidProtocolBufferException {
return PARSER.parseFrom(data);
}
public static com.google.crypto.tink.proto.HkdfPrfKeyFormat parseFrom(
com.google.protobuf.ByteString data,
com.google.protobuf.ExtensionRegistryLite extensionRegistry)
throws com.google.protobuf.InvalidProtocolBufferException {
return PARSER.parseFrom(data, extensionRegistry);
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public static com.google.crypto.tink.proto.HkdfPrfKeyFormat parseFrom(byte[] data)
throws com.google.protobuf.InvalidProtocolBufferException {
return PARSER.parseFrom(data);
}
public static com.google.crypto.tink.proto.HkdfPrfKeyFormat parseFrom(
byte[] data,
com.google.protobuf.ExtensionRegistryLite extensionRegistry)
throws com.google.protobuf.InvalidProtocolBufferException {
return PARSER.parseFrom(data, extensionRegistry);
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public static com.google.crypto.tink.proto.HkdfPrfKeyFormat parseFrom(java.io.InputStream input)
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return com.google.protobuf.GeneratedMessageV3
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public static com.google.crypto.tink.proto.HkdfPrfKeyFormat parseFrom(
java.io.InputStream input,
com.google.protobuf.ExtensionRegistryLite extensionRegistry)
throws java.io.IOException {
return com.google.protobuf.GeneratedMessageV3
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public static com.google.crypto.tink.proto.HkdfPrfKeyFormat parseDelimitedFrom(java.io.InputStream input)
throws java.io.IOException {
return com.google.protobuf.GeneratedMessageV3
.parseDelimitedWithIOException(PARSER, input);
}
public static com.google.crypto.tink.proto.HkdfPrfKeyFormat parseDelimitedFrom(
java.io.InputStream input,
com.google.protobuf.ExtensionRegistryLite extensionRegistry)
throws java.io.IOException {
return com.google.protobuf.GeneratedMessageV3
.parseDelimitedWithIOException(PARSER, input, extensionRegistry);
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public static com.google.crypto.tink.proto.HkdfPrfKeyFormat parseFrom(
com.google.protobuf.CodedInputStream input)
throws java.io.IOException {
return com.google.protobuf.GeneratedMessageV3
.parseWithIOException(PARSER, input);
}
public static com.google.crypto.tink.proto.HkdfPrfKeyFormat parseFrom(
com.google.protobuf.CodedInputStream input,
com.google.protobuf.ExtensionRegistryLite extensionRegistry)
throws java.io.IOException {
return com.google.protobuf.GeneratedMessageV3
.parseWithIOException(PARSER, input, extensionRegistry);
}
@java.lang.Override
public Builder newBuilderForType() { return newBuilder(); }
public static Builder newBuilder() {
return DEFAULT_INSTANCE.toBuilder();
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public static Builder newBuilder(com.google.crypto.tink.proto.HkdfPrfKeyFormat prototype) {
return DEFAULT_INSTANCE.toBuilder().mergeFrom(prototype);
}
@java.lang.Override
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? new Builder() : new Builder().mergeFrom(this);
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@java.lang.Override
protected Builder newBuilderForType(
com.google.protobuf.GeneratedMessageV3.BuilderParent parent) {
Builder builder = new Builder(parent);
return builder;
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/**
* Protobuf type {@code google.crypto.tink.HkdfPrfKeyFormat}
*/
public static final class Builder extends
com.google.protobuf.GeneratedMessageV3.Builder implements
// @@protoc_insertion_point(builder_implements:google.crypto.tink.HkdfPrfKeyFormat)
com.google.crypto.tink.proto.HkdfPrfKeyFormatOrBuilder {
public static final com.google.protobuf.Descriptors.Descriptor
getDescriptor() {
return com.google.crypto.tink.proto.HkdfPrf.internal_static_google_crypto_tink_HkdfPrfKeyFormat_descriptor;
}
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protected com.google.protobuf.GeneratedMessageV3.FieldAccessorTable
internalGetFieldAccessorTable() {
return com.google.crypto.tink.proto.HkdfPrf.internal_static_google_crypto_tink_HkdfPrfKeyFormat_fieldAccessorTable
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com.google.crypto.tink.proto.HkdfPrfKeyFormat.class, com.google.crypto.tink.proto.HkdfPrfKeyFormat.Builder.class);
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// Construct using com.google.crypto.tink.proto.HkdfPrfKeyFormat.newBuilder()
private Builder() {
maybeForceBuilderInitialization();
}
private Builder(
com.google.protobuf.GeneratedMessageV3.BuilderParent parent) {
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private void maybeForceBuilderInitialization() {
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@java.lang.Override
public Builder clear() {
super.clear();
if (paramsBuilder_ == null) {
params_ = null;
} else {
params_ = null;
paramsBuilder_ = null;
}
keySize_ = 0;
return this;
}
@java.lang.Override
public com.google.protobuf.Descriptors.Descriptor
getDescriptorForType() {
return com.google.crypto.tink.proto.HkdfPrf.internal_static_google_crypto_tink_HkdfPrfKeyFormat_descriptor;
}
@java.lang.Override
public com.google.crypto.tink.proto.HkdfPrfKeyFormat getDefaultInstanceForType() {
return com.google.crypto.tink.proto.HkdfPrfKeyFormat.getDefaultInstance();
}
@java.lang.Override
public com.google.crypto.tink.proto.HkdfPrfKeyFormat build() {
com.google.crypto.tink.proto.HkdfPrfKeyFormat result = buildPartial();
if (!result.isInitialized()) {
throw newUninitializedMessageException(result);
}
return result;
}
@java.lang.Override
public com.google.crypto.tink.proto.HkdfPrfKeyFormat buildPartial() {
com.google.crypto.tink.proto.HkdfPrfKeyFormat result = new com.google.crypto.tink.proto.HkdfPrfKeyFormat(this);
if (paramsBuilder_ == null) {
result.params_ = params_;
} else {
result.params_ = paramsBuilder_.build();
}
result.keySize_ = keySize_;
onBuilt();
return result;
}
@java.lang.Override
public Builder clone() {
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@java.lang.Override
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com.google.protobuf.Descriptors.FieldDescriptor field,
java.lang.Object value) {
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@java.lang.Override
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com.google.protobuf.Descriptors.FieldDescriptor field) {
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com.google.protobuf.Descriptors.OneofDescriptor oneof) {
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com.google.protobuf.Descriptors.FieldDescriptor field,
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com.google.protobuf.Descriptors.FieldDescriptor field,
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@java.lang.Override
public Builder mergeFrom(com.google.protobuf.Message other) {
if (other instanceof com.google.crypto.tink.proto.HkdfPrfKeyFormat) {
return mergeFrom((com.google.crypto.tink.proto.HkdfPrfKeyFormat)other);
} else {
super.mergeFrom(other);
return this;
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}
public Builder mergeFrom(com.google.crypto.tink.proto.HkdfPrfKeyFormat other) {
if (other == com.google.crypto.tink.proto.HkdfPrfKeyFormat.getDefaultInstance()) return this;
if (other.hasParams()) {
mergeParams(other.getParams());
}
if (other.getKeySize() != 0) {
setKeySize(other.getKeySize());
}
this.mergeUnknownFields(other.unknownFields);
onChanged();
return this;
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@java.lang.Override
public final boolean isInitialized() {
return true;
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@java.lang.Override
public Builder mergeFrom(
com.google.protobuf.CodedInputStream input,
com.google.protobuf.ExtensionRegistryLite extensionRegistry)
throws java.io.IOException {
com.google.crypto.tink.proto.HkdfPrfKeyFormat parsedMessage = null;
try {
parsedMessage = PARSER.parsePartialFrom(input, extensionRegistry);
} catch (com.google.protobuf.InvalidProtocolBufferException e) {
parsedMessage = (com.google.crypto.tink.proto.HkdfPrfKeyFormat) e.getUnfinishedMessage();
throw e.unwrapIOException();
} finally {
if (parsedMessage != null) {
mergeFrom(parsedMessage);
}
}
return this;
}
private com.google.crypto.tink.proto.HkdfPrfParams params_;
private com.google.protobuf.SingleFieldBuilderV3<
com.google.crypto.tink.proto.HkdfPrfParams, com.google.crypto.tink.proto.HkdfPrfParams.Builder, com.google.crypto.tink.proto.HkdfPrfParamsOrBuilder> paramsBuilder_;
/**
* .google.crypto.tink.HkdfPrfParams params = 1;
* @return Whether the params field is set.
*/
public boolean hasParams() {
return paramsBuilder_ != null || params_ != null;
}
/**
* .google.crypto.tink.HkdfPrfParams params = 1;
* @return The params.
*/
public com.google.crypto.tink.proto.HkdfPrfParams getParams() {
if (paramsBuilder_ == null) {
return params_ == null ? com.google.crypto.tink.proto.HkdfPrfParams.getDefaultInstance() : params_;
} else {
return paramsBuilder_.getMessage();
}
}
/**
* .google.crypto.tink.HkdfPrfParams params = 1;
*/
public Builder setParams(com.google.crypto.tink.proto.HkdfPrfParams value) {
if (paramsBuilder_ == null) {
if (value == null) {
throw new NullPointerException();
}
params_ = value;
onChanged();
} else {
paramsBuilder_.setMessage(value);
}
return this;
}
/**
* .google.crypto.tink.HkdfPrfParams params = 1;
*/
public Builder setParams(
com.google.crypto.tink.proto.HkdfPrfParams.Builder builderForValue) {
if (paramsBuilder_ == null) {
params_ = builderForValue.build();
onChanged();
} else {
paramsBuilder_.setMessage(builderForValue.build());
}
return this;
}
/**
* .google.crypto.tink.HkdfPrfParams params = 1;
*/
public Builder mergeParams(com.google.crypto.tink.proto.HkdfPrfParams value) {
if (paramsBuilder_ == null) {
if (params_ != null) {
params_ =
com.google.crypto.tink.proto.HkdfPrfParams.newBuilder(params_).mergeFrom(value).buildPartial();
} else {
params_ = value;
}
onChanged();
} else {
paramsBuilder_.mergeFrom(value);
}
return this;
}
/**
* .google.crypto.tink.HkdfPrfParams params = 1;
*/
public Builder clearParams() {
if (paramsBuilder_ == null) {
params_ = null;
onChanged();
} else {
params_ = null;
paramsBuilder_ = null;
}
return this;
}
/**
* .google.crypto.tink.HkdfPrfParams params = 1;
*/
public com.google.crypto.tink.proto.HkdfPrfParams.Builder getParamsBuilder() {
onChanged();
return getParamsFieldBuilder().getBuilder();
}
/**
* .google.crypto.tink.HkdfPrfParams params = 1;
*/
public com.google.crypto.tink.proto.HkdfPrfParamsOrBuilder getParamsOrBuilder() {
if (paramsBuilder_ != null) {
return paramsBuilder_.getMessageOrBuilder();
} else {
return params_ == null ?
com.google.crypto.tink.proto.HkdfPrfParams.getDefaultInstance() : params_;
}
}
/**
* .google.crypto.tink.HkdfPrfParams params = 1;
*/
private com.google.protobuf.SingleFieldBuilderV3<
com.google.crypto.tink.proto.HkdfPrfParams, com.google.crypto.tink.proto.HkdfPrfParams.Builder, com.google.crypto.tink.proto.HkdfPrfParamsOrBuilder>
getParamsFieldBuilder() {
if (paramsBuilder_ == null) {
paramsBuilder_ = new com.google.protobuf.SingleFieldBuilderV3<
com.google.crypto.tink.proto.HkdfPrfParams, com.google.crypto.tink.proto.HkdfPrfParams.Builder, com.google.crypto.tink.proto.HkdfPrfParamsOrBuilder>(
getParams(),
getParentForChildren(),
isClean());
params_ = null;
}
return paramsBuilder_;
}
private int keySize_ ;
/**
* uint32 key_size = 2;
* @return The keySize.
*/
public int getKeySize() {
return keySize_;
}
/**
* uint32 key_size = 2;
* @param value The keySize to set.
* @return This builder for chaining.
*/
public Builder setKeySize(int value) {
keySize_ = value;
onChanged();
return this;
}
/**
* uint32 key_size = 2;
* @return This builder for chaining.
*/
public Builder clearKeySize() {
keySize_ = 0;
onChanged();
return this;
}
@java.lang.Override
public final Builder setUnknownFields(
final com.google.protobuf.UnknownFieldSet unknownFields) {
return super.setUnknownFields(unknownFields);
}
@java.lang.Override
public final Builder mergeUnknownFields(
final com.google.protobuf.UnknownFieldSet unknownFields) {
return super.mergeUnknownFields(unknownFields);
}
// @@protoc_insertion_point(builder_scope:google.crypto.tink.HkdfPrfKeyFormat)
}
// @@protoc_insertion_point(class_scope:google.crypto.tink.HkdfPrfKeyFormat)
private static final com.google.crypto.tink.proto.HkdfPrfKeyFormat DEFAULT_INSTANCE;
static {
DEFAULT_INSTANCE = new com.google.crypto.tink.proto.HkdfPrfKeyFormat();
}
public static com.google.crypto.tink.proto.HkdfPrfKeyFormat getDefaultInstance() {
return DEFAULT_INSTANCE;
}
private static final com.google.protobuf.Parser
PARSER = new com.google.protobuf.AbstractParser() {
@java.lang.Override
public HkdfPrfKeyFormat parsePartialFrom(
com.google.protobuf.CodedInputStream input,
com.google.protobuf.ExtensionRegistryLite extensionRegistry)
throws com.google.protobuf.InvalidProtocolBufferException {
return new HkdfPrfKeyFormat(input, extensionRegistry);
}
};
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.HkdfPrfKeyFormat getDefaultInstanceForType() {
return DEFAULT_INSTANCE;
}
}
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