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// Generated by the protocol buffer compiler.  DO NOT EDIT!
// source: zepben/protobuf/cim/iec61970/base/wires/Switch.proto

package com.zepben.protobuf.cim.iec61970.base.wires;

/**
 * 
 **
 * A generic device designed to close, or open, or both, one or more electric circuits.  All switches are two terminal devices including grounding switches.
 * 
* * Protobuf type {@code zepben.protobuf.cim.iec61970.base.wires.Switch} */ public final class Switch extends com.google.protobuf.GeneratedMessageV3 implements // @@protoc_insertion_point(message_implements:zepben.protobuf.cim.iec61970.base.wires.Switch) SwitchOrBuilder { private static final long serialVersionUID = 0L; // Use Switch.newBuilder() to construct. private Switch(com.google.protobuf.GeneratedMessageV3.Builder builder) { super(builder); } private Switch() { } @java.lang.Override @SuppressWarnings({"unused"}) protected java.lang.Object newInstance( UnusedPrivateParameter unused) { return new Switch(); } public static final com.google.protobuf.Descriptors.Descriptor getDescriptor() { return com.zepben.protobuf.cim.iec61970.base.wires.SwitchOuterClass.internal_static_zepben_protobuf_cim_iec61970_base_wires_Switch_descriptor; } @java.lang.Override protected com.google.protobuf.GeneratedMessageV3.FieldAccessorTable internalGetFieldAccessorTable() { return com.zepben.protobuf.cim.iec61970.base.wires.SwitchOuterClass.internal_static_zepben_protobuf_cim_iec61970_base_wires_Switch_fieldAccessorTable .ensureFieldAccessorsInitialized( com.zepben.protobuf.cim.iec61970.base.wires.Switch.class, com.zepben.protobuf.cim.iec61970.base.wires.Switch.Builder.class); } private int bitField0_; public static final int CE_FIELD_NUMBER = 1; private com.zepben.protobuf.cim.iec61970.base.core.ConductingEquipment ce_; /** *
   **
   * The ConductingEquipment fields for this Switch.
   * 
* * .zepben.protobuf.cim.iec61970.base.core.ConductingEquipment ce = 1; * @return Whether the ce field is set. */ @java.lang.Override public boolean hasCe() { return ((bitField0_ & 0x00000001) != 0); } /** *
   **
   * The ConductingEquipment fields for this Switch.
   * 
* * .zepben.protobuf.cim.iec61970.base.core.ConductingEquipment ce = 1; * @return The ce. */ @java.lang.Override public com.zepben.protobuf.cim.iec61970.base.core.ConductingEquipment getCe() { return ce_ == null ? com.zepben.protobuf.cim.iec61970.base.core.ConductingEquipment.getDefaultInstance() : ce_; } /** *
   **
   * The ConductingEquipment fields for this Switch.
   * 
* * .zepben.protobuf.cim.iec61970.base.core.ConductingEquipment ce = 1; */ @java.lang.Override public com.zepben.protobuf.cim.iec61970.base.core.ConductingEquipmentOrBuilder getCeOrBuilder() { return ce_ == null ? com.zepben.protobuf.cim.iec61970.base.core.ConductingEquipment.getDefaultInstance() : ce_; } public static final int NORMALOPEN_FIELD_NUMBER = 2; private boolean normalOpen_ = false; /** *
   **
   * The attribute is used in cases when no Measurement for the status value is present. If the Switch has a status measurement
   * the Discrete.normalValue is expected to match with the Switch.normalOpen.
   * 
* * bool normalOpen = 2; * @return The normalOpen. */ @java.lang.Override public boolean getNormalOpen() { return normalOpen_; } public static final int OPEN_FIELD_NUMBER = 3; private boolean open_ = false; /** *
   **
   * The attribute tells if the switch is considered open when used as input to topology processing.
   * 
* * bool open = 3; * @return The open. */ @java.lang.Override public boolean getOpen() { return open_; } public static final int RATEDCURRENT_FIELD_NUMBER = 4; private double ratedCurrent_ = 0D; /** *
   **
   * The maximum continuous current carrying capacity in amps governed by the device material and construction.
   * The attribute shall be a positive value.
   * 
* * double ratedCurrent = 4; * @return The ratedCurrent. */ @java.lang.Override public double getRatedCurrent() { return ratedCurrent_; } private byte memoizedIsInitialized = -1; @java.lang.Override public final boolean isInitialized() { byte isInitialized = memoizedIsInitialized; if (isInitialized == 1) return true; if (isInitialized == 0) return false; memoizedIsInitialized = 1; return true; } @java.lang.Override public void writeTo(com.google.protobuf.CodedOutputStream output) throws java.io.IOException { if (((bitField0_ & 0x00000001) != 0)) { output.writeMessage(1, getCe()); } if (normalOpen_ != false) { output.writeBool(2, normalOpen_); } if (open_ != false) { output.writeBool(3, open_); } if (java.lang.Double.doubleToRawLongBits(ratedCurrent_) != 0) { output.writeDouble(4, ratedCurrent_); } getUnknownFields().writeTo(output); } @java.lang.Override public int getSerializedSize() { int size = memoizedSize; if (size != -1) return size; size = 0; if (((bitField0_ & 0x00000001) != 0)) { size += com.google.protobuf.CodedOutputStream .computeMessageSize(1, getCe()); } if (normalOpen_ != false) { size += com.google.protobuf.CodedOutputStream .computeBoolSize(2, normalOpen_); } if (open_ != false) { size += com.google.protobuf.CodedOutputStream .computeBoolSize(3, open_); } if (java.lang.Double.doubleToRawLongBits(ratedCurrent_) != 0) { size += com.google.protobuf.CodedOutputStream .computeDoubleSize(4, ratedCurrent_); } size += getUnknownFields().getSerializedSize(); memoizedSize = size; return size; } @java.lang.Override public boolean equals(final java.lang.Object obj) { if (obj == this) { return true; } if (!(obj instanceof com.zepben.protobuf.cim.iec61970.base.wires.Switch)) { return super.equals(obj); } com.zepben.protobuf.cim.iec61970.base.wires.Switch other = (com.zepben.protobuf.cim.iec61970.base.wires.Switch) obj; if (hasCe() != other.hasCe()) return false; if (hasCe()) { if (!getCe() .equals(other.getCe())) return false; } if (getNormalOpen() != other.getNormalOpen()) return false; if (getOpen() != other.getOpen()) return false; if (java.lang.Double.doubleToLongBits(getRatedCurrent()) != java.lang.Double.doubleToLongBits( other.getRatedCurrent())) 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(); if (hasCe()) { hash = (37 * hash) + CE_FIELD_NUMBER; hash = (53 * hash) + getCe().hashCode(); } hash = (37 * hash) + NORMALOPEN_FIELD_NUMBER; hash = (53 * hash) + com.google.protobuf.Internal.hashBoolean( getNormalOpen()); hash = (37 * hash) + OPEN_FIELD_NUMBER; hash = (53 * hash) + com.google.protobuf.Internal.hashBoolean( getOpen()); hash = (37 * hash) + RATEDCURRENT_FIELD_NUMBER; hash = (53 * hash) + com.google.protobuf.Internal.hashLong( java.lang.Double.doubleToLongBits(getRatedCurrent())); hash = (29 * hash) + getUnknownFields().hashCode(); memoizedHashCode = hash; return hash; } public static com.zepben.protobuf.cim.iec61970.base.wires.Switch parseFrom( java.nio.ByteBuffer data) throws com.google.protobuf.InvalidProtocolBufferException { return PARSER.parseFrom(data); } public static com.zepben.protobuf.cim.iec61970.base.wires.Switch parseFrom( java.nio.ByteBuffer data, com.google.protobuf.ExtensionRegistryLite extensionRegistry) throws com.google.protobuf.InvalidProtocolBufferException { return PARSER.parseFrom(data, extensionRegistry); } public static com.zepben.protobuf.cim.iec61970.base.wires.Switch parseFrom( com.google.protobuf.ByteString data) throws com.google.protobuf.InvalidProtocolBufferException { return PARSER.parseFrom(data); } public static com.zepben.protobuf.cim.iec61970.base.wires.Switch parseFrom( com.google.protobuf.ByteString data, com.google.protobuf.ExtensionRegistryLite extensionRegistry) throws com.google.protobuf.InvalidProtocolBufferException { return PARSER.parseFrom(data, extensionRegistry); } public static com.zepben.protobuf.cim.iec61970.base.wires.Switch parseFrom(byte[] data) throws com.google.protobuf.InvalidProtocolBufferException { return PARSER.parseFrom(data); } public static com.zepben.protobuf.cim.iec61970.base.wires.Switch parseFrom( byte[] data, com.google.protobuf.ExtensionRegistryLite extensionRegistry) throws com.google.protobuf.InvalidProtocolBufferException { return PARSER.parseFrom(data, extensionRegistry); } public static com.zepben.protobuf.cim.iec61970.base.wires.Switch parseFrom(java.io.InputStream input) throws java.io.IOException { return com.google.protobuf.GeneratedMessageV3 .parseWithIOException(PARSER, input); } public static com.zepben.protobuf.cim.iec61970.base.wires.Switch 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 com.zepben.protobuf.cim.iec61970.base.wires.Switch parseDelimitedFrom(java.io.InputStream input) throws java.io.IOException { return com.google.protobuf.GeneratedMessageV3 .parseDelimitedWithIOException(PARSER, input); } public static com.zepben.protobuf.cim.iec61970.base.wires.Switch 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 com.zepben.protobuf.cim.iec61970.base.wires.Switch parseFrom( com.google.protobuf.CodedInputStream input) throws java.io.IOException { return com.google.protobuf.GeneratedMessageV3 .parseWithIOException(PARSER, input); } public static com.zepben.protobuf.cim.iec61970.base.wires.Switch 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(); } public static Builder newBuilder(com.zepben.protobuf.cim.iec61970.base.wires.Switch 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.GeneratedMessageV3.BuilderParent parent) { Builder builder = new Builder(parent); return builder; } /** *
   **
   * A generic device designed to close, or open, or both, one or more electric circuits.  All switches are two terminal devices including grounding switches.
   * 
* * Protobuf type {@code zepben.protobuf.cim.iec61970.base.wires.Switch} */ public static final class Builder extends com.google.protobuf.GeneratedMessageV3.Builder implements // @@protoc_insertion_point(builder_implements:zepben.protobuf.cim.iec61970.base.wires.Switch) com.zepben.protobuf.cim.iec61970.base.wires.SwitchOrBuilder { public static final com.google.protobuf.Descriptors.Descriptor getDescriptor() { return com.zepben.protobuf.cim.iec61970.base.wires.SwitchOuterClass.internal_static_zepben_protobuf_cim_iec61970_base_wires_Switch_descriptor; } @java.lang.Override protected com.google.protobuf.GeneratedMessageV3.FieldAccessorTable internalGetFieldAccessorTable() { return com.zepben.protobuf.cim.iec61970.base.wires.SwitchOuterClass.internal_static_zepben_protobuf_cim_iec61970_base_wires_Switch_fieldAccessorTable .ensureFieldAccessorsInitialized( com.zepben.protobuf.cim.iec61970.base.wires.Switch.class, com.zepben.protobuf.cim.iec61970.base.wires.Switch.Builder.class); } // Construct using com.zepben.protobuf.cim.iec61970.base.wires.Switch.newBuilder() private Builder() { maybeForceBuilderInitialization(); } private Builder( com.google.protobuf.GeneratedMessageV3.BuilderParent parent) { super(parent); maybeForceBuilderInitialization(); } private void maybeForceBuilderInitialization() { if (com.google.protobuf.GeneratedMessageV3 .alwaysUseFieldBuilders) { getCeFieldBuilder(); } } @java.lang.Override public Builder clear() { super.clear(); bitField0_ = 0; ce_ = null; if (ceBuilder_ != null) { ceBuilder_.dispose(); ceBuilder_ = null; } normalOpen_ = false; open_ = false; ratedCurrent_ = 0D; return this; } @java.lang.Override public com.google.protobuf.Descriptors.Descriptor getDescriptorForType() { return com.zepben.protobuf.cim.iec61970.base.wires.SwitchOuterClass.internal_static_zepben_protobuf_cim_iec61970_base_wires_Switch_descriptor; } @java.lang.Override public com.zepben.protobuf.cim.iec61970.base.wires.Switch getDefaultInstanceForType() { return com.zepben.protobuf.cim.iec61970.base.wires.Switch.getDefaultInstance(); } @java.lang.Override public com.zepben.protobuf.cim.iec61970.base.wires.Switch build() { com.zepben.protobuf.cim.iec61970.base.wires.Switch result = buildPartial(); if (!result.isInitialized()) { throw newUninitializedMessageException(result); } return result; } @java.lang.Override public com.zepben.protobuf.cim.iec61970.base.wires.Switch buildPartial() { com.zepben.protobuf.cim.iec61970.base.wires.Switch result = new com.zepben.protobuf.cim.iec61970.base.wires.Switch(this); if (bitField0_ != 0) { buildPartial0(result); } onBuilt(); return result; } private void buildPartial0(com.zepben.protobuf.cim.iec61970.base.wires.Switch result) { int from_bitField0_ = bitField0_; int to_bitField0_ = 0; if (((from_bitField0_ & 0x00000001) != 0)) { result.ce_ = ceBuilder_ == null ? ce_ : ceBuilder_.build(); to_bitField0_ |= 0x00000001; } if (((from_bitField0_ & 0x00000002) != 0)) { result.normalOpen_ = normalOpen_; } if (((from_bitField0_ & 0x00000004) != 0)) { result.open_ = open_; } if (((from_bitField0_ & 0x00000008) != 0)) { result.ratedCurrent_ = ratedCurrent_; } result.bitField0_ |= to_bitField0_; } @java.lang.Override public Builder clone() { return super.clone(); } @java.lang.Override public Builder setField( com.google.protobuf.Descriptors.FieldDescriptor field, java.lang.Object value) { return super.setField(field, value); } @java.lang.Override public Builder clearField( com.google.protobuf.Descriptors.FieldDescriptor field) { return super.clearField(field); } @java.lang.Override public Builder clearOneof( com.google.protobuf.Descriptors.OneofDescriptor oneof) { return super.clearOneof(oneof); } @java.lang.Override public Builder setRepeatedField( com.google.protobuf.Descriptors.FieldDescriptor field, int index, java.lang.Object value) { return super.setRepeatedField(field, index, value); } @java.lang.Override public Builder addRepeatedField( com.google.protobuf.Descriptors.FieldDescriptor field, java.lang.Object value) { return super.addRepeatedField(field, value); } @java.lang.Override public Builder mergeFrom(com.google.protobuf.Message other) { if (other instanceof com.zepben.protobuf.cim.iec61970.base.wires.Switch) { return mergeFrom((com.zepben.protobuf.cim.iec61970.base.wires.Switch)other); } else { super.mergeFrom(other); return this; } } public Builder mergeFrom(com.zepben.protobuf.cim.iec61970.base.wires.Switch other) { if (other == com.zepben.protobuf.cim.iec61970.base.wires.Switch.getDefaultInstance()) return this; if (other.hasCe()) { mergeCe(other.getCe()); } if (other.getNormalOpen() != false) { setNormalOpen(other.getNormalOpen()); } if (other.getOpen() != false) { setOpen(other.getOpen()); } if (other.getRatedCurrent() != 0D) { setRatedCurrent(other.getRatedCurrent()); } 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 { if (extensionRegistry == null) { throw new java.lang.NullPointerException(); } try { boolean done = false; while (!done) { int tag = input.readTag(); switch (tag) { case 0: done = true; break; case 10: { input.readMessage( getCeFieldBuilder().getBuilder(), extensionRegistry); bitField0_ |= 0x00000001; break; } // case 10 case 16: { normalOpen_ = input.readBool(); bitField0_ |= 0x00000002; break; } // case 16 case 24: { open_ = input.readBool(); bitField0_ |= 0x00000004; break; } // case 24 case 33: { ratedCurrent_ = input.readDouble(); bitField0_ |= 0x00000008; break; } // case 33 default: { if (!super.parseUnknownField(input, extensionRegistry, tag)) { done = true; // was an endgroup tag } break; } // default: } // switch (tag) } // while (!done) } catch (com.google.protobuf.InvalidProtocolBufferException e) { throw e.unwrapIOException(); } finally { onChanged(); } // finally return this; } private int bitField0_; private com.zepben.protobuf.cim.iec61970.base.core.ConductingEquipment ce_; private com.google.protobuf.SingleFieldBuilderV3< com.zepben.protobuf.cim.iec61970.base.core.ConductingEquipment, com.zepben.protobuf.cim.iec61970.base.core.ConductingEquipment.Builder, com.zepben.protobuf.cim.iec61970.base.core.ConductingEquipmentOrBuilder> ceBuilder_; /** *
     **
     * The ConductingEquipment fields for this Switch.
     * 
* * .zepben.protobuf.cim.iec61970.base.core.ConductingEquipment ce = 1; * @return Whether the ce field is set. */ public boolean hasCe() { return ((bitField0_ & 0x00000001) != 0); } /** *
     **
     * The ConductingEquipment fields for this Switch.
     * 
* * .zepben.protobuf.cim.iec61970.base.core.ConductingEquipment ce = 1; * @return The ce. */ public com.zepben.protobuf.cim.iec61970.base.core.ConductingEquipment getCe() { if (ceBuilder_ == null) { return ce_ == null ? com.zepben.protobuf.cim.iec61970.base.core.ConductingEquipment.getDefaultInstance() : ce_; } else { return ceBuilder_.getMessage(); } } /** *
     **
     * The ConductingEquipment fields for this Switch.
     * 
* * .zepben.protobuf.cim.iec61970.base.core.ConductingEquipment ce = 1; */ public Builder setCe(com.zepben.protobuf.cim.iec61970.base.core.ConductingEquipment value) { if (ceBuilder_ == null) { if (value == null) { throw new NullPointerException(); } ce_ = value; } else { ceBuilder_.setMessage(value); } bitField0_ |= 0x00000001; onChanged(); return this; } /** *
     **
     * The ConductingEquipment fields for this Switch.
     * 
* * .zepben.protobuf.cim.iec61970.base.core.ConductingEquipment ce = 1; */ public Builder setCe( com.zepben.protobuf.cim.iec61970.base.core.ConductingEquipment.Builder builderForValue) { if (ceBuilder_ == null) { ce_ = builderForValue.build(); } else { ceBuilder_.setMessage(builderForValue.build()); } bitField0_ |= 0x00000001; onChanged(); return this; } /** *
     **
     * The ConductingEquipment fields for this Switch.
     * 
* * .zepben.protobuf.cim.iec61970.base.core.ConductingEquipment ce = 1; */ public Builder mergeCe(com.zepben.protobuf.cim.iec61970.base.core.ConductingEquipment value) { if (ceBuilder_ == null) { if (((bitField0_ & 0x00000001) != 0) && ce_ != null && ce_ != com.zepben.protobuf.cim.iec61970.base.core.ConductingEquipment.getDefaultInstance()) { getCeBuilder().mergeFrom(value); } else { ce_ = value; } } else { ceBuilder_.mergeFrom(value); } if (ce_ != null) { bitField0_ |= 0x00000001; onChanged(); } return this; } /** *
     **
     * The ConductingEquipment fields for this Switch.
     * 
* * .zepben.protobuf.cim.iec61970.base.core.ConductingEquipment ce = 1; */ public Builder clearCe() { bitField0_ = (bitField0_ & ~0x00000001); ce_ = null; if (ceBuilder_ != null) { ceBuilder_.dispose(); ceBuilder_ = null; } onChanged(); return this; } /** *
     **
     * The ConductingEquipment fields for this Switch.
     * 
* * .zepben.protobuf.cim.iec61970.base.core.ConductingEquipment ce = 1; */ public com.zepben.protobuf.cim.iec61970.base.core.ConductingEquipment.Builder getCeBuilder() { bitField0_ |= 0x00000001; onChanged(); return getCeFieldBuilder().getBuilder(); } /** *
     **
     * The ConductingEquipment fields for this Switch.
     * 
* * .zepben.protobuf.cim.iec61970.base.core.ConductingEquipment ce = 1; */ public com.zepben.protobuf.cim.iec61970.base.core.ConductingEquipmentOrBuilder getCeOrBuilder() { if (ceBuilder_ != null) { return ceBuilder_.getMessageOrBuilder(); } else { return ce_ == null ? com.zepben.protobuf.cim.iec61970.base.core.ConductingEquipment.getDefaultInstance() : ce_; } } /** *
     **
     * The ConductingEquipment fields for this Switch.
     * 
* * .zepben.protobuf.cim.iec61970.base.core.ConductingEquipment ce = 1; */ private com.google.protobuf.SingleFieldBuilderV3< com.zepben.protobuf.cim.iec61970.base.core.ConductingEquipment, com.zepben.protobuf.cim.iec61970.base.core.ConductingEquipment.Builder, com.zepben.protobuf.cim.iec61970.base.core.ConductingEquipmentOrBuilder> getCeFieldBuilder() { if (ceBuilder_ == null) { ceBuilder_ = new com.google.protobuf.SingleFieldBuilderV3< com.zepben.protobuf.cim.iec61970.base.core.ConductingEquipment, com.zepben.protobuf.cim.iec61970.base.core.ConductingEquipment.Builder, com.zepben.protobuf.cim.iec61970.base.core.ConductingEquipmentOrBuilder>( getCe(), getParentForChildren(), isClean()); ce_ = null; } return ceBuilder_; } private boolean normalOpen_ ; /** *
     **
     * The attribute is used in cases when no Measurement for the status value is present. If the Switch has a status measurement
     * the Discrete.normalValue is expected to match with the Switch.normalOpen.
     * 
* * bool normalOpen = 2; * @return The normalOpen. */ @java.lang.Override public boolean getNormalOpen() { return normalOpen_; } /** *
     **
     * The attribute is used in cases when no Measurement for the status value is present. If the Switch has a status measurement
     * the Discrete.normalValue is expected to match with the Switch.normalOpen.
     * 
* * bool normalOpen = 2; * @param value The normalOpen to set. * @return This builder for chaining. */ public Builder setNormalOpen(boolean value) { normalOpen_ = value; bitField0_ |= 0x00000002; onChanged(); return this; } /** *
     **
     * The attribute is used in cases when no Measurement for the status value is present. If the Switch has a status measurement
     * the Discrete.normalValue is expected to match with the Switch.normalOpen.
     * 
* * bool normalOpen = 2; * @return This builder for chaining. */ public Builder clearNormalOpen() { bitField0_ = (bitField0_ & ~0x00000002); normalOpen_ = false; onChanged(); return this; } private boolean open_ ; /** *
     **
     * The attribute tells if the switch is considered open when used as input to topology processing.
     * 
* * bool open = 3; * @return The open. */ @java.lang.Override public boolean getOpen() { return open_; } /** *
     **
     * The attribute tells if the switch is considered open when used as input to topology processing.
     * 
* * bool open = 3; * @param value The open to set. * @return This builder for chaining. */ public Builder setOpen(boolean value) { open_ = value; bitField0_ |= 0x00000004; onChanged(); return this; } /** *
     **
     * The attribute tells if the switch is considered open when used as input to topology processing.
     * 
* * bool open = 3; * @return This builder for chaining. */ public Builder clearOpen() { bitField0_ = (bitField0_ & ~0x00000004); open_ = false; onChanged(); return this; } private double ratedCurrent_ ; /** *
     **
     * The maximum continuous current carrying capacity in amps governed by the device material and construction.
     * The attribute shall be a positive value.
     * 
* * double ratedCurrent = 4; * @return The ratedCurrent. */ @java.lang.Override public double getRatedCurrent() { return ratedCurrent_; } /** *
     **
     * The maximum continuous current carrying capacity in amps governed by the device material and construction.
     * The attribute shall be a positive value.
     * 
* * double ratedCurrent = 4; * @param value The ratedCurrent to set. * @return This builder for chaining. */ public Builder setRatedCurrent(double value) { ratedCurrent_ = value; bitField0_ |= 0x00000008; onChanged(); return this; } /** *
     **
     * The maximum continuous current carrying capacity in amps governed by the device material and construction.
     * The attribute shall be a positive value.
     * 
* * double ratedCurrent = 4; * @return This builder for chaining. */ public Builder clearRatedCurrent() { bitField0_ = (bitField0_ & ~0x00000008); ratedCurrent_ = 0D; 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:zepben.protobuf.cim.iec61970.base.wires.Switch) } // @@protoc_insertion_point(class_scope:zepben.protobuf.cim.iec61970.base.wires.Switch) private static final com.zepben.protobuf.cim.iec61970.base.wires.Switch DEFAULT_INSTANCE; static { DEFAULT_INSTANCE = new com.zepben.protobuf.cim.iec61970.base.wires.Switch(); } public static com.zepben.protobuf.cim.iec61970.base.wires.Switch getDefaultInstance() { return DEFAULT_INSTANCE; } private static final com.google.protobuf.Parser PARSER = new com.google.protobuf.AbstractParser() { @java.lang.Override public Switch 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.zepben.protobuf.cim.iec61970.base.wires.Switch getDefaultInstanceForType() { return DEFAULT_INSTANCE; } }




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