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The AWS Java SDK for Amazon EC2 module holds the client classes that are used for communicating with Amazon EC2 Service
/*
* Copyright 2014-2019 Amazon.com, Inc. or its affiliates. All Rights Reserved.
*
* Licensed under the Apache License, Version 2.0 (the "License"). You may not use this file except in compliance with
* the License. A copy of the License is located at
*
* http://aws.amazon.com/apache2.0
*
* or in the "license" file accompanying this file. This file is distributed on an "AS IS" BASIS, WITHOUT WARRANTIES OR
* CONDITIONS OF ANY KIND, either express or implied. See the License for the specific language governing permissions
* and limitations under the License.
*/
package com.amazonaws.services.ec2.model;
import java.io.Serializable;
import javax.annotation.Generated;
/**
*
* Describes a key pair.
*
*
* @see AWS API Documentation
*/
@Generated("com.amazonaws:aws-java-sdk-code-generator")
public class KeyPair implements Serializable, Cloneable {
/**
*
* The SHA-1 digest of the DER encoded private key.
*
*/
private String keyFingerprint;
/**
*
* An unencrypted PEM encoded RSA private key.
*
*/
private String keyMaterial;
/**
*
* The name of the key pair.
*
*/
private String keyName;
/**
*
* The SHA-1 digest of the DER encoded private key.
*
*
* @param keyFingerprint
* The SHA-1 digest of the DER encoded private key.
*/
public void setKeyFingerprint(String keyFingerprint) {
this.keyFingerprint = keyFingerprint;
}
/**
*
* The SHA-1 digest of the DER encoded private key.
*
*
* @return The SHA-1 digest of the DER encoded private key.
*/
public String getKeyFingerprint() {
return this.keyFingerprint;
}
/**
*
* The SHA-1 digest of the DER encoded private key.
*
*
* @param keyFingerprint
* The SHA-1 digest of the DER encoded private key.
* @return Returns a reference to this object so that method calls can be chained together.
*/
public KeyPair withKeyFingerprint(String keyFingerprint) {
setKeyFingerprint(keyFingerprint);
return this;
}
/**
*
* An unencrypted PEM encoded RSA private key.
*
*
* @param keyMaterial
* An unencrypted PEM encoded RSA private key.
*/
public void setKeyMaterial(String keyMaterial) {
this.keyMaterial = keyMaterial;
}
/**
*
* An unencrypted PEM encoded RSA private key.
*
*
* @return An unencrypted PEM encoded RSA private key.
*/
public String getKeyMaterial() {
return this.keyMaterial;
}
/**
*
* An unencrypted PEM encoded RSA private key.
*
*
* @param keyMaterial
* An unencrypted PEM encoded RSA private key.
* @return Returns a reference to this object so that method calls can be chained together.
*/
public KeyPair withKeyMaterial(String keyMaterial) {
setKeyMaterial(keyMaterial);
return this;
}
/**
*
* The name of the key pair.
*
*
* @param keyName
* The name of the key pair.
*/
public void setKeyName(String keyName) {
this.keyName = keyName;
}
/**
*
* The name of the key pair.
*
*
* @return The name of the key pair.
*/
public String getKeyName() {
return this.keyName;
}
/**
*
* The name of the key pair.
*
*
* @param keyName
* The name of the key pair.
* @return Returns a reference to this object so that method calls can be chained together.
*/
public KeyPair withKeyName(String keyName) {
setKeyName(keyName);
return this;
}
/**
* Returns a string representation of this object. This is useful for testing and debugging. Sensitive data will be
* redacted from this string using a placeholder value.
*
* @return A string representation of this object.
*
* @see java.lang.Object#toString()
*/
@Override
public String toString() {
StringBuilder sb = new StringBuilder();
sb.append("{");
if (getKeyFingerprint() != null)
sb.append("KeyFingerprint: ").append(getKeyFingerprint()).append(",");
if (getKeyMaterial() != null)
sb.append("KeyMaterial: ").append(getKeyMaterial()).append(",");
if (getKeyName() != null)
sb.append("KeyName: ").append(getKeyName());
sb.append("}");
return sb.toString();
}
@Override
public boolean equals(Object obj) {
if (this == obj)
return true;
if (obj == null)
return false;
if (obj instanceof KeyPair == false)
return false;
KeyPair other = (KeyPair) obj;
if (other.getKeyFingerprint() == null ^ this.getKeyFingerprint() == null)
return false;
if (other.getKeyFingerprint() != null && other.getKeyFingerprint().equals(this.getKeyFingerprint()) == false)
return false;
if (other.getKeyMaterial() == null ^ this.getKeyMaterial() == null)
return false;
if (other.getKeyMaterial() != null && other.getKeyMaterial().equals(this.getKeyMaterial()) == false)
return false;
if (other.getKeyName() == null ^ this.getKeyName() == null)
return false;
if (other.getKeyName() != null && other.getKeyName().equals(this.getKeyName()) == false)
return false;
return true;
}
@Override
public int hashCode() {
final int prime = 31;
int hashCode = 1;
hashCode = prime * hashCode + ((getKeyFingerprint() == null) ? 0 : getKeyFingerprint().hashCode());
hashCode = prime * hashCode + ((getKeyMaterial() == null) ? 0 : getKeyMaterial().hashCode());
hashCode = prime * hashCode + ((getKeyName() == null) ? 0 : getKeyName().hashCode());
return hashCode;
}
@Override
public KeyPair clone() {
try {
return (KeyPair) super.clone();
} catch (CloneNotSupportedException e) {
throw new IllegalStateException("Got a CloneNotSupportedException from Object.clone() " + "even though we're Cloneable!", e);
}
}
}