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The AWS SDK for Java with support for OSGi. The AWS SDK for Java provides Java APIs for building software on AWS' cost-effective, scalable, and reliable infrastructure products. The AWS Java SDK allows developers to code against APIs for all of Amazon's infrastructure web services (Amazon S3, Amazon EC2, Amazon SQS, Amazon Relational Database Service, Amazon AutoScaling, etc).

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/*
 * Copyright 2011-2016 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;

/**
 * 

* Describes a key pair. *

*/ public class KeyPair implements Serializable, Cloneable { /** *

* The name of the key pair. *

*/ private String keyName; /** *

* 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. *

* * @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; } /** *

* 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; } /** * Returns a string representation of this object; useful for testing and * debugging. * * @return A string representation of this object. * * @see java.lang.Object#toString() */ @Override public String toString() { StringBuilder sb = new StringBuilder(); sb.append("{"); if (getKeyName() != null) sb.append("KeyName: " + getKeyName() + ","); if (getKeyFingerprint() != null) sb.append("KeyFingerprint: " + getKeyFingerprint() + ","); if (getKeyMaterial() != null) sb.append("KeyMaterial: " + getKeyMaterial()); 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.getKeyName() == null ^ this.getKeyName() == null) return false; if (other.getKeyName() != null && other.getKeyName().equals(this.getKeyName()) == false) return false; 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; return true; } @Override public int hashCode() { final int prime = 31; int hashCode = 1; hashCode = prime * hashCode + ((getKeyName() == null) ? 0 : getKeyName().hashCode()); hashCode = prime * hashCode + ((getKeyFingerprint() == null) ? 0 : getKeyFingerprint() .hashCode()); hashCode = prime * hashCode + ((getKeyMaterial() == null) ? 0 : getKeyMaterial().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); } } }




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