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// Generated by the protocol buffer compiler.  DO NOT EDIT!
// source: envoy/data/accesslog/v2/accesslog.proto

package io.envoyproxy.envoy.data.accesslog.v2;

/**
 * 
 * [#not-implemented-hide:]
 * Properties of a negotiated TLS connection.
 * 
* * Protobuf type {@code envoy.data.accesslog.v2.TLSProperties} */ public final class TLSProperties extends com.google.protobuf.GeneratedMessageV3 implements // @@protoc_insertion_point(message_implements:envoy.data.accesslog.v2.TLSProperties) TLSPropertiesOrBuilder { private static final long serialVersionUID = 0L; // Use TLSProperties.newBuilder() to construct. private TLSProperties(com.google.protobuf.GeneratedMessageV3.Builder builder) { super(builder); } private TLSProperties() { tlsVersion_ = 0; tlsSniHostname_ = ""; } @java.lang.Override public final com.google.protobuf.UnknownFieldSet getUnknownFields() { return this.unknownFields; } private TLSProperties( com.google.protobuf.CodedInputStream input, com.google.protobuf.ExtensionRegistryLite extensionRegistry) throws com.google.protobuf.InvalidProtocolBufferException { this(); if (extensionRegistry == null) { throw new java.lang.NullPointerException(); } int mutable_bitField0_ = 0; com.google.protobuf.UnknownFieldSet.Builder unknownFields = com.google.protobuf.UnknownFieldSet.newBuilder(); try { boolean done = false; while (!done) { int tag = input.readTag(); switch (tag) { case 0: done = true; break; default: { if (!parseUnknownFieldProto3( input, unknownFields, extensionRegistry, tag)) { done = true; } break; } case 8: { int rawValue = input.readEnum(); tlsVersion_ = rawValue; break; } case 18: { com.google.protobuf.UInt32Value.Builder subBuilder = null; if (tlsCipherSuite_ != null) { subBuilder = tlsCipherSuite_.toBuilder(); } tlsCipherSuite_ = input.readMessage(com.google.protobuf.UInt32Value.parser(), extensionRegistry); if (subBuilder != null) { subBuilder.mergeFrom(tlsCipherSuite_); tlsCipherSuite_ = subBuilder.buildPartial(); } break; } case 26: { java.lang.String s = input.readStringRequireUtf8(); tlsSniHostname_ = s; break; } } } } catch (com.google.protobuf.InvalidProtocolBufferException e) { throw e.setUnfinishedMessage(this); } catch (java.io.IOException e) { throw new com.google.protobuf.InvalidProtocolBufferException( e).setUnfinishedMessage(this); } finally { this.unknownFields = unknownFields.build(); makeExtensionsImmutable(); } } public static final com.google.protobuf.Descriptors.Descriptor getDescriptor() { return io.envoyproxy.envoy.data.accesslog.v2.AccesslogProto.internal_static_envoy_data_accesslog_v2_TLSProperties_descriptor; } protected com.google.protobuf.GeneratedMessageV3.FieldAccessorTable internalGetFieldAccessorTable() { return io.envoyproxy.envoy.data.accesslog.v2.AccesslogProto.internal_static_envoy_data_accesslog_v2_TLSProperties_fieldAccessorTable .ensureFieldAccessorsInitialized( io.envoyproxy.envoy.data.accesslog.v2.TLSProperties.class, io.envoyproxy.envoy.data.accesslog.v2.TLSProperties.Builder.class); } /** * Protobuf enum {@code envoy.data.accesslog.v2.TLSProperties.TLSVersion} */ public enum TLSVersion implements com.google.protobuf.ProtocolMessageEnum { /** * VERSION_UNSPECIFIED = 0; */ VERSION_UNSPECIFIED(0), /** * TLSv1 = 1; */ TLSv1(1), /** * TLSv1_1 = 2; */ TLSv1_1(2), /** * TLSv1_2 = 3; */ TLSv1_2(3), /** * TLSv1_3 = 4; */ TLSv1_3(4), UNRECOGNIZED(-1), ; /** * VERSION_UNSPECIFIED = 0; */ public static final int VERSION_UNSPECIFIED_VALUE = 0; /** * TLSv1 = 1; */ public static final int TLSv1_VALUE = 1; /** * TLSv1_1 = 2; */ public static final int TLSv1_1_VALUE = 2; /** * TLSv1_2 = 3; */ public static final int TLSv1_2_VALUE = 3; /** * TLSv1_3 = 4; */ public static final int TLSv1_3_VALUE = 4; public final int getNumber() { if (this == UNRECOGNIZED) { throw new java.lang.IllegalArgumentException( "Can't get the number of an unknown enum value."); } return value; } /** * @deprecated Use {@link #forNumber(int)} instead. */ @java.lang.Deprecated public static TLSVersion valueOf(int value) { return forNumber(value); } public static TLSVersion forNumber(int value) { switch (value) { case 0: return VERSION_UNSPECIFIED; case 1: return TLSv1; case 2: return TLSv1_1; case 3: return TLSv1_2; case 4: return TLSv1_3; default: return null; } } public static com.google.protobuf.Internal.EnumLiteMap internalGetValueMap() { return internalValueMap; } private static final com.google.protobuf.Internal.EnumLiteMap< TLSVersion> internalValueMap = new com.google.protobuf.Internal.EnumLiteMap() { public TLSVersion findValueByNumber(int number) { return TLSVersion.forNumber(number); } }; public final com.google.protobuf.Descriptors.EnumValueDescriptor getValueDescriptor() { return getDescriptor().getValues().get(ordinal()); } public final com.google.protobuf.Descriptors.EnumDescriptor getDescriptorForType() { return getDescriptor(); } public static final com.google.protobuf.Descriptors.EnumDescriptor getDescriptor() { return io.envoyproxy.envoy.data.accesslog.v2.TLSProperties.getDescriptor().getEnumTypes().get(0); } private static final TLSVersion[] VALUES = values(); public static TLSVersion valueOf( com.google.protobuf.Descriptors.EnumValueDescriptor desc) { if (desc.getType() != getDescriptor()) { throw new java.lang.IllegalArgumentException( "EnumValueDescriptor is not for this type."); } if (desc.getIndex() == -1) { return UNRECOGNIZED; } return VALUES[desc.getIndex()]; } private final int value; private TLSVersion(int value) { this.value = value; } // @@protoc_insertion_point(enum_scope:envoy.data.accesslog.v2.TLSProperties.TLSVersion) } public static final int TLS_VERSION_FIELD_NUMBER = 1; private int tlsVersion_; /** *
   * Version of TLS that was negotiated.
   * 
* * .envoy.data.accesslog.v2.TLSProperties.TLSVersion tls_version = 1; */ public int getTlsVersionValue() { return tlsVersion_; } /** *
   * Version of TLS that was negotiated.
   * 
* * .envoy.data.accesslog.v2.TLSProperties.TLSVersion tls_version = 1; */ public io.envoyproxy.envoy.data.accesslog.v2.TLSProperties.TLSVersion getTlsVersion() { io.envoyproxy.envoy.data.accesslog.v2.TLSProperties.TLSVersion result = io.envoyproxy.envoy.data.accesslog.v2.TLSProperties.TLSVersion.valueOf(tlsVersion_); return result == null ? io.envoyproxy.envoy.data.accesslog.v2.TLSProperties.TLSVersion.UNRECOGNIZED : result; } public static final int TLS_CIPHER_SUITE_FIELD_NUMBER = 2; private com.google.protobuf.UInt32Value tlsCipherSuite_; /** *
   * TLS cipher suite negotiated during handshake. The value is a
   * four-digit hex code defined by the IANA TLS Cipher Suite Registry
   * (e.g. ``009C`` for ``TLS_RSA_WITH_AES_128_GCM_SHA256``).
   * Here it is expressed as an integer.
   * 
* * .google.protobuf.UInt32Value tls_cipher_suite = 2; */ public boolean hasTlsCipherSuite() { return tlsCipherSuite_ != null; } /** *
   * TLS cipher suite negotiated during handshake. The value is a
   * four-digit hex code defined by the IANA TLS Cipher Suite Registry
   * (e.g. ``009C`` for ``TLS_RSA_WITH_AES_128_GCM_SHA256``).
   * Here it is expressed as an integer.
   * 
* * .google.protobuf.UInt32Value tls_cipher_suite = 2; */ public com.google.protobuf.UInt32Value getTlsCipherSuite() { return tlsCipherSuite_ == null ? com.google.protobuf.UInt32Value.getDefaultInstance() : tlsCipherSuite_; } /** *
   * TLS cipher suite negotiated during handshake. The value is a
   * four-digit hex code defined by the IANA TLS Cipher Suite Registry
   * (e.g. ``009C`` for ``TLS_RSA_WITH_AES_128_GCM_SHA256``).
   * Here it is expressed as an integer.
   * 
* * .google.protobuf.UInt32Value tls_cipher_suite = 2; */ public com.google.protobuf.UInt32ValueOrBuilder getTlsCipherSuiteOrBuilder() { return getTlsCipherSuite(); } public static final int TLS_SNI_HOSTNAME_FIELD_NUMBER = 3; private volatile java.lang.Object tlsSniHostname_; /** *
   * SNI hostname from handshake.
   * 
* * string tls_sni_hostname = 3; */ public java.lang.String getTlsSniHostname() { java.lang.Object ref = tlsSniHostname_; if (ref instanceof java.lang.String) { return (java.lang.String) ref; } else { com.google.protobuf.ByteString bs = (com.google.protobuf.ByteString) ref; java.lang.String s = bs.toStringUtf8(); tlsSniHostname_ = s; return s; } } /** *
   * SNI hostname from handshake.
   * 
* * string tls_sni_hostname = 3; */ public com.google.protobuf.ByteString getTlsSniHostnameBytes() { java.lang.Object ref = tlsSniHostname_; if (ref instanceof java.lang.String) { com.google.protobuf.ByteString b = com.google.protobuf.ByteString.copyFromUtf8( (java.lang.String) ref); tlsSniHostname_ = b; return b; } else { return (com.google.protobuf.ByteString) ref; } } private byte memoizedIsInitialized = -1; public final boolean isInitialized() { byte isInitialized = memoizedIsInitialized; if (isInitialized == 1) return true; if (isInitialized == 0) return false; memoizedIsInitialized = 1; return true; } public void writeTo(com.google.protobuf.CodedOutputStream output) throws java.io.IOException { if (tlsVersion_ != io.envoyproxy.envoy.data.accesslog.v2.TLSProperties.TLSVersion.VERSION_UNSPECIFIED.getNumber()) { output.writeEnum(1, tlsVersion_); } if (tlsCipherSuite_ != null) { output.writeMessage(2, getTlsCipherSuite()); } if (!getTlsSniHostnameBytes().isEmpty()) { com.google.protobuf.GeneratedMessageV3.writeString(output, 3, tlsSniHostname_); } unknownFields.writeTo(output); } public int getSerializedSize() { int size = memoizedSize; if (size != -1) return size; size = 0; if (tlsVersion_ != io.envoyproxy.envoy.data.accesslog.v2.TLSProperties.TLSVersion.VERSION_UNSPECIFIED.getNumber()) { size += com.google.protobuf.CodedOutputStream .computeEnumSize(1, tlsVersion_); } if (tlsCipherSuite_ != null) { size += com.google.protobuf.CodedOutputStream .computeMessageSize(2, getTlsCipherSuite()); } if (!getTlsSniHostnameBytes().isEmpty()) { size += com.google.protobuf.GeneratedMessageV3.computeStringSize(3, tlsSniHostname_); } size += unknownFields.getSerializedSize(); memoizedSize = size; return size; } @java.lang.Override public boolean equals(final java.lang.Object obj) { if (obj == this) { return true; } if (!(obj instanceof io.envoyproxy.envoy.data.accesslog.v2.TLSProperties)) { return super.equals(obj); } io.envoyproxy.envoy.data.accesslog.v2.TLSProperties other = (io.envoyproxy.envoy.data.accesslog.v2.TLSProperties) obj; boolean result = true; result = result && tlsVersion_ == other.tlsVersion_; result = result && (hasTlsCipherSuite() == other.hasTlsCipherSuite()); if (hasTlsCipherSuite()) { result = result && getTlsCipherSuite() .equals(other.getTlsCipherSuite()); } result = result && getTlsSniHostname() .equals(other.getTlsSniHostname()); result = result && unknownFields.equals(other.unknownFields); return result; } @java.lang.Override public int hashCode() { if (memoizedHashCode != 0) { return memoizedHashCode; } int hash = 41; hash = (19 * hash) + getDescriptor().hashCode(); hash = (37 * hash) + TLS_VERSION_FIELD_NUMBER; hash = (53 * hash) + tlsVersion_; if (hasTlsCipherSuite()) { hash = (37 * hash) + TLS_CIPHER_SUITE_FIELD_NUMBER; hash = (53 * hash) + getTlsCipherSuite().hashCode(); } hash = (37 * hash) + TLS_SNI_HOSTNAME_FIELD_NUMBER; hash = (53 * hash) + getTlsSniHostname().hashCode(); hash = (29 * hash) + unknownFields.hashCode(); memoizedHashCode = hash; return hash; } public static io.envoyproxy.envoy.data.accesslog.v2.TLSProperties parseFrom( java.nio.ByteBuffer data) throws com.google.protobuf.InvalidProtocolBufferException { return PARSER.parseFrom(data); } public static io.envoyproxy.envoy.data.accesslog.v2.TLSProperties parseFrom( java.nio.ByteBuffer data, com.google.protobuf.ExtensionRegistryLite extensionRegistry) throws com.google.protobuf.InvalidProtocolBufferException { return PARSER.parseFrom(data, extensionRegistry); } public static io.envoyproxy.envoy.data.accesslog.v2.TLSProperties parseFrom( com.google.protobuf.ByteString data) throws com.google.protobuf.InvalidProtocolBufferException { return PARSER.parseFrom(data); } public static io.envoyproxy.envoy.data.accesslog.v2.TLSProperties parseFrom( com.google.protobuf.ByteString data, com.google.protobuf.ExtensionRegistryLite extensionRegistry) throws com.google.protobuf.InvalidProtocolBufferException { return PARSER.parseFrom(data, extensionRegistry); } public static io.envoyproxy.envoy.data.accesslog.v2.TLSProperties parseFrom(byte[] data) throws com.google.protobuf.InvalidProtocolBufferException { return PARSER.parseFrom(data); } public static io.envoyproxy.envoy.data.accesslog.v2.TLSProperties parseFrom( byte[] data, com.google.protobuf.ExtensionRegistryLite extensionRegistry) throws com.google.protobuf.InvalidProtocolBufferException { return PARSER.parseFrom(data, extensionRegistry); } public static io.envoyproxy.envoy.data.accesslog.v2.TLSProperties parseFrom(java.io.InputStream input) throws java.io.IOException { return com.google.protobuf.GeneratedMessageV3 .parseWithIOException(PARSER, input); } public static io.envoyproxy.envoy.data.accesslog.v2.TLSProperties parseFrom( java.io.InputStream input, com.google.protobuf.ExtensionRegistryLite extensionRegistry) throws java.io.IOException { return com.google.protobuf.GeneratedMessageV3 .parseWithIOException(PARSER, input, extensionRegistry); } public static io.envoyproxy.envoy.data.accesslog.v2.TLSProperties parseDelimitedFrom(java.io.InputStream input) throws java.io.IOException { return com.google.protobuf.GeneratedMessageV3 .parseDelimitedWithIOException(PARSER, input); } public static io.envoyproxy.envoy.data.accesslog.v2.TLSProperties parseDelimitedFrom( java.io.InputStream input, com.google.protobuf.ExtensionRegistryLite extensionRegistry) throws java.io.IOException { return com.google.protobuf.GeneratedMessageV3 .parseDelimitedWithIOException(PARSER, input, extensionRegistry); } public static io.envoyproxy.envoy.data.accesslog.v2.TLSProperties parseFrom( com.google.protobuf.CodedInputStream input) throws java.io.IOException { return com.google.protobuf.GeneratedMessageV3 .parseWithIOException(PARSER, input); } public static io.envoyproxy.envoy.data.accesslog.v2.TLSProperties parseFrom( com.google.protobuf.CodedInputStream input, com.google.protobuf.ExtensionRegistryLite extensionRegistry) throws java.io.IOException { return com.google.protobuf.GeneratedMessageV3 .parseWithIOException(PARSER, input, extensionRegistry); } public Builder newBuilderForType() { return newBuilder(); } public static Builder newBuilder() { return DEFAULT_INSTANCE.toBuilder(); } public static Builder newBuilder(io.envoyproxy.envoy.data.accesslog.v2.TLSProperties prototype) { return DEFAULT_INSTANCE.toBuilder().mergeFrom(prototype); } public Builder toBuilder() { return this == DEFAULT_INSTANCE ? new Builder() : new Builder().mergeFrom(this); } @java.lang.Override protected Builder newBuilderForType( com.google.protobuf.GeneratedMessageV3.BuilderParent parent) { Builder builder = new Builder(parent); return builder; } /** *
   * [#not-implemented-hide:]
   * Properties of a negotiated TLS connection.
   * 
* * Protobuf type {@code envoy.data.accesslog.v2.TLSProperties} */ public static final class Builder extends com.google.protobuf.GeneratedMessageV3.Builder implements // @@protoc_insertion_point(builder_implements:envoy.data.accesslog.v2.TLSProperties) io.envoyproxy.envoy.data.accesslog.v2.TLSPropertiesOrBuilder { public static final com.google.protobuf.Descriptors.Descriptor getDescriptor() { return io.envoyproxy.envoy.data.accesslog.v2.AccesslogProto.internal_static_envoy_data_accesslog_v2_TLSProperties_descriptor; } protected com.google.protobuf.GeneratedMessageV3.FieldAccessorTable internalGetFieldAccessorTable() { return io.envoyproxy.envoy.data.accesslog.v2.AccesslogProto.internal_static_envoy_data_accesslog_v2_TLSProperties_fieldAccessorTable .ensureFieldAccessorsInitialized( io.envoyproxy.envoy.data.accesslog.v2.TLSProperties.class, io.envoyproxy.envoy.data.accesslog.v2.TLSProperties.Builder.class); } // Construct using io.envoyproxy.envoy.data.accesslog.v2.TLSProperties.newBuilder() private Builder() { maybeForceBuilderInitialization(); } private Builder( com.google.protobuf.GeneratedMessageV3.BuilderParent parent) { super(parent); maybeForceBuilderInitialization(); } private void maybeForceBuilderInitialization() { if (com.google.protobuf.GeneratedMessageV3 .alwaysUseFieldBuilders) { } } public Builder clear() { super.clear(); tlsVersion_ = 0; if (tlsCipherSuiteBuilder_ == null) { tlsCipherSuite_ = null; } else { tlsCipherSuite_ = null; tlsCipherSuiteBuilder_ = null; } tlsSniHostname_ = ""; return this; } public com.google.protobuf.Descriptors.Descriptor getDescriptorForType() { return io.envoyproxy.envoy.data.accesslog.v2.AccesslogProto.internal_static_envoy_data_accesslog_v2_TLSProperties_descriptor; } public io.envoyproxy.envoy.data.accesslog.v2.TLSProperties getDefaultInstanceForType() { return io.envoyproxy.envoy.data.accesslog.v2.TLSProperties.getDefaultInstance(); } public io.envoyproxy.envoy.data.accesslog.v2.TLSProperties build() { io.envoyproxy.envoy.data.accesslog.v2.TLSProperties result = buildPartial(); if (!result.isInitialized()) { throw newUninitializedMessageException(result); } return result; } public io.envoyproxy.envoy.data.accesslog.v2.TLSProperties buildPartial() { io.envoyproxy.envoy.data.accesslog.v2.TLSProperties result = new io.envoyproxy.envoy.data.accesslog.v2.TLSProperties(this); result.tlsVersion_ = tlsVersion_; if (tlsCipherSuiteBuilder_ == null) { result.tlsCipherSuite_ = tlsCipherSuite_; } else { result.tlsCipherSuite_ = tlsCipherSuiteBuilder_.build(); } result.tlsSniHostname_ = tlsSniHostname_; onBuilt(); return result; } public Builder clone() { return (Builder) super.clone(); } public Builder setField( com.google.protobuf.Descriptors.FieldDescriptor field, java.lang.Object value) { return (Builder) super.setField(field, value); } public Builder clearField( com.google.protobuf.Descriptors.FieldDescriptor field) { return (Builder) super.clearField(field); } public Builder clearOneof( com.google.protobuf.Descriptors.OneofDescriptor oneof) { return (Builder) super.clearOneof(oneof); } public Builder setRepeatedField( com.google.protobuf.Descriptors.FieldDescriptor field, int index, java.lang.Object value) { return (Builder) super.setRepeatedField(field, index, value); } public Builder addRepeatedField( com.google.protobuf.Descriptors.FieldDescriptor field, java.lang.Object value) { return (Builder) super.addRepeatedField(field, value); } public Builder mergeFrom(com.google.protobuf.Message other) { if (other instanceof io.envoyproxy.envoy.data.accesslog.v2.TLSProperties) { return mergeFrom((io.envoyproxy.envoy.data.accesslog.v2.TLSProperties)other); } else { super.mergeFrom(other); return this; } } public Builder mergeFrom(io.envoyproxy.envoy.data.accesslog.v2.TLSProperties other) { if (other == io.envoyproxy.envoy.data.accesslog.v2.TLSProperties.getDefaultInstance()) return this; if (other.tlsVersion_ != 0) { setTlsVersionValue(other.getTlsVersionValue()); } if (other.hasTlsCipherSuite()) { mergeTlsCipherSuite(other.getTlsCipherSuite()); } if (!other.getTlsSniHostname().isEmpty()) { tlsSniHostname_ = other.tlsSniHostname_; onChanged(); } this.mergeUnknownFields(other.unknownFields); onChanged(); return this; } public final boolean isInitialized() { return true; } public Builder mergeFrom( com.google.protobuf.CodedInputStream input, com.google.protobuf.ExtensionRegistryLite extensionRegistry) throws java.io.IOException { io.envoyproxy.envoy.data.accesslog.v2.TLSProperties parsedMessage = null; try { parsedMessage = PARSER.parsePartialFrom(input, extensionRegistry); } catch (com.google.protobuf.InvalidProtocolBufferException e) { parsedMessage = (io.envoyproxy.envoy.data.accesslog.v2.TLSProperties) e.getUnfinishedMessage(); throw e.unwrapIOException(); } finally { if (parsedMessage != null) { mergeFrom(parsedMessage); } } return this; } private int tlsVersion_ = 0; /** *
     * Version of TLS that was negotiated.
     * 
* * .envoy.data.accesslog.v2.TLSProperties.TLSVersion tls_version = 1; */ public int getTlsVersionValue() { return tlsVersion_; } /** *
     * Version of TLS that was negotiated.
     * 
* * .envoy.data.accesslog.v2.TLSProperties.TLSVersion tls_version = 1; */ public Builder setTlsVersionValue(int value) { tlsVersion_ = value; onChanged(); return this; } /** *
     * Version of TLS that was negotiated.
     * 
* * .envoy.data.accesslog.v2.TLSProperties.TLSVersion tls_version = 1; */ public io.envoyproxy.envoy.data.accesslog.v2.TLSProperties.TLSVersion getTlsVersion() { io.envoyproxy.envoy.data.accesslog.v2.TLSProperties.TLSVersion result = io.envoyproxy.envoy.data.accesslog.v2.TLSProperties.TLSVersion.valueOf(tlsVersion_); return result == null ? io.envoyproxy.envoy.data.accesslog.v2.TLSProperties.TLSVersion.UNRECOGNIZED : result; } /** *
     * Version of TLS that was negotiated.
     * 
* * .envoy.data.accesslog.v2.TLSProperties.TLSVersion tls_version = 1; */ public Builder setTlsVersion(io.envoyproxy.envoy.data.accesslog.v2.TLSProperties.TLSVersion value) { if (value == null) { throw new NullPointerException(); } tlsVersion_ = value.getNumber(); onChanged(); return this; } /** *
     * Version of TLS that was negotiated.
     * 
* * .envoy.data.accesslog.v2.TLSProperties.TLSVersion tls_version = 1; */ public Builder clearTlsVersion() { tlsVersion_ = 0; onChanged(); return this; } private com.google.protobuf.UInt32Value tlsCipherSuite_ = null; private com.google.protobuf.SingleFieldBuilderV3< com.google.protobuf.UInt32Value, com.google.protobuf.UInt32Value.Builder, com.google.protobuf.UInt32ValueOrBuilder> tlsCipherSuiteBuilder_; /** *
     * TLS cipher suite negotiated during handshake. The value is a
     * four-digit hex code defined by the IANA TLS Cipher Suite Registry
     * (e.g. ``009C`` for ``TLS_RSA_WITH_AES_128_GCM_SHA256``).
     * Here it is expressed as an integer.
     * 
* * .google.protobuf.UInt32Value tls_cipher_suite = 2; */ public boolean hasTlsCipherSuite() { return tlsCipherSuiteBuilder_ != null || tlsCipherSuite_ != null; } /** *
     * TLS cipher suite negotiated during handshake. The value is a
     * four-digit hex code defined by the IANA TLS Cipher Suite Registry
     * (e.g. ``009C`` for ``TLS_RSA_WITH_AES_128_GCM_SHA256``).
     * Here it is expressed as an integer.
     * 
* * .google.protobuf.UInt32Value tls_cipher_suite = 2; */ public com.google.protobuf.UInt32Value getTlsCipherSuite() { if (tlsCipherSuiteBuilder_ == null) { return tlsCipherSuite_ == null ? com.google.protobuf.UInt32Value.getDefaultInstance() : tlsCipherSuite_; } else { return tlsCipherSuiteBuilder_.getMessage(); } } /** *
     * TLS cipher suite negotiated during handshake. The value is a
     * four-digit hex code defined by the IANA TLS Cipher Suite Registry
     * (e.g. ``009C`` for ``TLS_RSA_WITH_AES_128_GCM_SHA256``).
     * Here it is expressed as an integer.
     * 
* * .google.protobuf.UInt32Value tls_cipher_suite = 2; */ public Builder setTlsCipherSuite(com.google.protobuf.UInt32Value value) { if (tlsCipherSuiteBuilder_ == null) { if (value == null) { throw new NullPointerException(); } tlsCipherSuite_ = value; onChanged(); } else { tlsCipherSuiteBuilder_.setMessage(value); } return this; } /** *
     * TLS cipher suite negotiated during handshake. The value is a
     * four-digit hex code defined by the IANA TLS Cipher Suite Registry
     * (e.g. ``009C`` for ``TLS_RSA_WITH_AES_128_GCM_SHA256``).
     * Here it is expressed as an integer.
     * 
* * .google.protobuf.UInt32Value tls_cipher_suite = 2; */ public Builder setTlsCipherSuite( com.google.protobuf.UInt32Value.Builder builderForValue) { if (tlsCipherSuiteBuilder_ == null) { tlsCipherSuite_ = builderForValue.build(); onChanged(); } else { tlsCipherSuiteBuilder_.setMessage(builderForValue.build()); } return this; } /** *
     * TLS cipher suite negotiated during handshake. The value is a
     * four-digit hex code defined by the IANA TLS Cipher Suite Registry
     * (e.g. ``009C`` for ``TLS_RSA_WITH_AES_128_GCM_SHA256``).
     * Here it is expressed as an integer.
     * 
* * .google.protobuf.UInt32Value tls_cipher_suite = 2; */ public Builder mergeTlsCipherSuite(com.google.protobuf.UInt32Value value) { if (tlsCipherSuiteBuilder_ == null) { if (tlsCipherSuite_ != null) { tlsCipherSuite_ = com.google.protobuf.UInt32Value.newBuilder(tlsCipherSuite_).mergeFrom(value).buildPartial(); } else { tlsCipherSuite_ = value; } onChanged(); } else { tlsCipherSuiteBuilder_.mergeFrom(value); } return this; } /** *
     * TLS cipher suite negotiated during handshake. The value is a
     * four-digit hex code defined by the IANA TLS Cipher Suite Registry
     * (e.g. ``009C`` for ``TLS_RSA_WITH_AES_128_GCM_SHA256``).
     * Here it is expressed as an integer.
     * 
* * .google.protobuf.UInt32Value tls_cipher_suite = 2; */ public Builder clearTlsCipherSuite() { if (tlsCipherSuiteBuilder_ == null) { tlsCipherSuite_ = null; onChanged(); } else { tlsCipherSuite_ = null; tlsCipherSuiteBuilder_ = null; } return this; } /** *
     * TLS cipher suite negotiated during handshake. The value is a
     * four-digit hex code defined by the IANA TLS Cipher Suite Registry
     * (e.g. ``009C`` for ``TLS_RSA_WITH_AES_128_GCM_SHA256``).
     * Here it is expressed as an integer.
     * 
* * .google.protobuf.UInt32Value tls_cipher_suite = 2; */ public com.google.protobuf.UInt32Value.Builder getTlsCipherSuiteBuilder() { onChanged(); return getTlsCipherSuiteFieldBuilder().getBuilder(); } /** *
     * TLS cipher suite negotiated during handshake. The value is a
     * four-digit hex code defined by the IANA TLS Cipher Suite Registry
     * (e.g. ``009C`` for ``TLS_RSA_WITH_AES_128_GCM_SHA256``).
     * Here it is expressed as an integer.
     * 
* * .google.protobuf.UInt32Value tls_cipher_suite = 2; */ public com.google.protobuf.UInt32ValueOrBuilder getTlsCipherSuiteOrBuilder() { if (tlsCipherSuiteBuilder_ != null) { return tlsCipherSuiteBuilder_.getMessageOrBuilder(); } else { return tlsCipherSuite_ == null ? com.google.protobuf.UInt32Value.getDefaultInstance() : tlsCipherSuite_; } } /** *
     * TLS cipher suite negotiated during handshake. The value is a
     * four-digit hex code defined by the IANA TLS Cipher Suite Registry
     * (e.g. ``009C`` for ``TLS_RSA_WITH_AES_128_GCM_SHA256``).
     * Here it is expressed as an integer.
     * 
* * .google.protobuf.UInt32Value tls_cipher_suite = 2; */ private com.google.protobuf.SingleFieldBuilderV3< com.google.protobuf.UInt32Value, com.google.protobuf.UInt32Value.Builder, com.google.protobuf.UInt32ValueOrBuilder> getTlsCipherSuiteFieldBuilder() { if (tlsCipherSuiteBuilder_ == null) { tlsCipherSuiteBuilder_ = new com.google.protobuf.SingleFieldBuilderV3< com.google.protobuf.UInt32Value, com.google.protobuf.UInt32Value.Builder, com.google.protobuf.UInt32ValueOrBuilder>( getTlsCipherSuite(), getParentForChildren(), isClean()); tlsCipherSuite_ = null; } return tlsCipherSuiteBuilder_; } private java.lang.Object tlsSniHostname_ = ""; /** *
     * SNI hostname from handshake.
     * 
* * string tls_sni_hostname = 3; */ public java.lang.String getTlsSniHostname() { java.lang.Object ref = tlsSniHostname_; if (!(ref instanceof java.lang.String)) { com.google.protobuf.ByteString bs = (com.google.protobuf.ByteString) ref; java.lang.String s = bs.toStringUtf8(); tlsSniHostname_ = s; return s; } else { return (java.lang.String) ref; } } /** *
     * SNI hostname from handshake.
     * 
* * string tls_sni_hostname = 3; */ public com.google.protobuf.ByteString getTlsSniHostnameBytes() { java.lang.Object ref = tlsSniHostname_; if (ref instanceof String) { com.google.protobuf.ByteString b = com.google.protobuf.ByteString.copyFromUtf8( (java.lang.String) ref); tlsSniHostname_ = b; return b; } else { return (com.google.protobuf.ByteString) ref; } } /** *
     * SNI hostname from handshake.
     * 
* * string tls_sni_hostname = 3; */ public Builder setTlsSniHostname( java.lang.String value) { if (value == null) { throw new NullPointerException(); } tlsSniHostname_ = value; onChanged(); return this; } /** *
     * SNI hostname from handshake.
     * 
* * string tls_sni_hostname = 3; */ public Builder clearTlsSniHostname() { tlsSniHostname_ = getDefaultInstance().getTlsSniHostname(); onChanged(); return this; } /** *
     * SNI hostname from handshake.
     * 
* * string tls_sni_hostname = 3; */ public Builder setTlsSniHostnameBytes( com.google.protobuf.ByteString value) { if (value == null) { throw new NullPointerException(); } checkByteStringIsUtf8(value); tlsSniHostname_ = value; onChanged(); return this; } public final Builder setUnknownFields( final com.google.protobuf.UnknownFieldSet unknownFields) { return super.setUnknownFieldsProto3(unknownFields); } public final Builder mergeUnknownFields( final com.google.protobuf.UnknownFieldSet unknownFields) { return super.mergeUnknownFields(unknownFields); } // @@protoc_insertion_point(builder_scope:envoy.data.accesslog.v2.TLSProperties) } // @@protoc_insertion_point(class_scope:envoy.data.accesslog.v2.TLSProperties) private static final io.envoyproxy.envoy.data.accesslog.v2.TLSProperties DEFAULT_INSTANCE; static { DEFAULT_INSTANCE = new io.envoyproxy.envoy.data.accesslog.v2.TLSProperties(); } public static io.envoyproxy.envoy.data.accesslog.v2.TLSProperties getDefaultInstance() { return DEFAULT_INSTANCE; } private static final com.google.protobuf.Parser PARSER = new com.google.protobuf.AbstractParser() { public TLSProperties parsePartialFrom( com.google.protobuf.CodedInputStream input, com.google.protobuf.ExtensionRegistryLite extensionRegistry) throws com.google.protobuf.InvalidProtocolBufferException { return new TLSProperties(input, extensionRegistry); } }; public static com.google.protobuf.Parser parser() { return PARSER; } @java.lang.Override public com.google.protobuf.Parser getParserForType() { return PARSER; } public io.envoyproxy.envoy.data.accesslog.v2.TLSProperties getDefaultInstanceForType() { return DEFAULT_INSTANCE; } }




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