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New concept of blockchain, that can scale in both vertical and horizontal directions, It believes in grouping similar nodes or transactions together

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smdi/StarBlockChain

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Maven Central Apache License, Version 2.0, January 2004

Scalable Tensor Advanced Reinforcement(STAR) BlockChain

Hey there👋, I have designed this new concept of blockchain, that can scale in both vertical and horizontal directions, It believes in grouping related nodes or transactions together

STAR Blockchain Dashnoard

Features

Open Source
Proof of Stake(POS)
Grouping: It groups similar nodes or transactions together
Permanent: All transactions are premanent
Immutable: Data cannot be modified once created
Verifiable: All transactions can be verified at any point of time
Scalabale: Scales in both vertical and horizontal directions
Sharding: Sharding makes small chunks of blockchain, which is later sent for parallel processing
Parallel processing: It processess the small chunks of blockchain parallelly
Encrypted: Secured with AES and RSA Encryption, default public
Peer-to-Peer: It is decentralized and can exchange nodes or 
                transactions without involvement of central authority(Future Support)
  • Maven
<dependency>
    <groupId>io.github.smdi</groupId>
    <artifactId>StarBlockChain</artifactId>
    <version>1.0.0</version>
</dependency>
  • Gradle
implementation 'io.github.smdi:StarBlockChain:1.0.0'

Implementation

  • Public
StarBlockChain starBlockChain = new StarBlockChain();
  • Encrypted: AES, pass encryption method, secretKey, salt(optional)
String secretKey = "Secret";
String saltValue = "SimpleSalt";
StarBlockChain starBlockChain = new StarBlockChain(MetaData.AES, secretKey, saltValue);
  • Encrypted: RSA, pass encryption method
  • Note: Public key will be generated, It is required while encryption
  • Note: Private key will be generated, keep it in a safeplace, It is required while decryption
StarBlockChain starBlockChain = new StarBlockChain(MetaData.RSA);
  • List of userNames
ArrayList<String> userNames = new ArrayList<>(Arrays.asList("Adam", "Havva"));
  • Add StarBlock #00, pass string data, userNames
starBlockChain.newStarBlock("Confidential data v1", userNames);
  • Add StarBlock #01 to previous starBlock #00, pass string data, related, userNames
  • Note: This starblock will be added at the end of the current row
starBlockChain.newStarBlock("Confidential data v2", true, userNames);
  • Add StarBlock #10 at new row, pass string data, userNames
starBlockChain.newStarBlock("Transaction", userNames);
  • Add StarBlock #11 to previous starBlock #10, pass string data, related, userNames
  • Note: This starblock will be added at the end of the current row
starBlockChain.newStarBlock("Surcharge", true, userNames);
  • Add StarBlock #02 to starblock #01, pass string data, related, currentIndex, index, userNames
  • Note: This starblock will be added at the end of the 0th row
starBlockChain.newStarBlock("Confidential data v3", true, false, 0, userNames);
  • Add StarBlock #12 to starblock #11
  • Note: This starblock will be added at the end of the 1st row
starBlockChain.newStarBlock("Reward", true, false, 1, userNames);
  • Check validity of starblockchain
boolean isValid = starBlockChain.isStarBlockChainValid();
  • Get total nodes at index
System.out.println("Total newtwork strength at Index "+starBlockChain.getTotalTensorStrengthAtIndex(0));                
  • Get total nodes of starblockchain
System.out.println("Total network strength "+starBlockChain.getTotalTensorNetworkStrength());
  • Print the public starblockchain
System.out.println(starBlockChain.printStarBlockChain());
  • Print the RSA encrypted starblockchain
  • Note: Make sure to add private key for decryption
System.out.println(starBlockChain.printStarBlockChain());
  • Print the AES encrypted starblockchain, pass encryption method, secretKey, salt(optional)
System.out.println(starBlockChain.printStarBlockChain(secretKey, saltValue));
Copyright 2022 Mohammad Imran Shaik

Licensed under the Apache License, Version 2.0 (the "License");
you may not use this file except in compliance with the License.
You may obtain a copy of the License at

    http://www.apache.org/licenses/LICENSE-2.0

Unless required by applicable law or agreed to in writing, software
distributed under the License 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.