dmuka3.CS.Simple.RSA 1.0.1

dotnet add package dmuka3.CS.Simple.RSA --version 1.0.1
NuGet\Install-Package dmuka3.CS.Simple.RSA -Version 1.0.1
This command is intended to be used within the Package Manager Console in Visual Studio, as it uses the NuGet module's version of Install-Package.
<PackageReference Include="dmuka3.CS.Simple.RSA" Version="1.0.1" />
For projects that support PackageReference, copy this XML node into the project file to reference the package.
paket add dmuka3.CS.Simple.RSA --version 1.0.1
#r "nuget: dmuka3.CS.Simple.RSA, 1.0.1"
#r directive can be used in F# Interactive and Polyglot Notebooks. Copy this into the interactive tool or source code of the script to reference the package.
// Install dmuka3.CS.Simple.RSA as a Cake Addin
#addin nuget:?package=dmuka3.CS.Simple.RSA&version=1.0.1

// Install dmuka3.CS.Simple.RSA as a Cake Tool
#tool nuget:?package=dmuka3.CS.Simple.RSA&version=1.0.1

dmuka3.CS.Simple.RSA

This library provides you to encrypt/decrypt data with rsa algorithm.

Nuget

Link : https://www.nuget.org/packages/dmuka3.CS.Simple.RSA/

Install-Package dmuka3.CS.Simple.RSA

Example 1

We will encrypt a text data with public key. Then, we will decrypt it using private key. Firstly, we need a RSA key which includes private key and public key. Afterwards, we will create a new RSA key via previous public key. Let's do it.

// Creating a new RSA key randomly.
var rsaKey = new RSAKey(2048);
// Our text which will be encrypted.
string s = "Hello World";
// Text data is converted byte[].
var data = Encoding.UTF8.GetBytes(s);
// Created a new RSA key with public key and then encrypted data using it.
var e = new RSAKey(rsaKey.PublicKey).Encrypt(data);
// Decrypted data using first RSA key.
var d = Encoding.UTF8.GetString(rsaKey.Decrypt(e));

It looks like so easy. That's right. Now, we will try another scenario. The scenario is to encrypt big data. What does it mean? You know if you are using 2048 bit RSA key, it means you can encrypt as many data as RSA key bit size. But our data is fairly big. What will we do to fix?

For instance our RSA key's size is 2048(256 Byte) and our data's size is 5.000 byte. According to this data we will divide our data and for each part of data will be encrypted invidually. Thus, we will have some encrypted datas. For the decrypting, we will combine them in a generic list.

Example 2

// Creating a new RSA key randomly.
var rsaKey = new RSAKey(2048);
// Our text which will be encrypted.
for (int i = 0; i < 60000; i++)
    sb.Append(i.ToString());
string s = sb.ToString();
// Text data is converted byte[].
var data = Encoding.UTF8.GetBytes(s);
// Created a new RSA key with public key and then encrypted data using it.
var e = new RSAKey(rsaKey.PublicKey).Encrypt(data);
// Decrypted data using first RSA key.
var d = Encoding.UTF8.GetString(rsaKey.Decrypt(e));
Product Compatible and additional computed target framework versions.
.NET net5.0 was computed.  net5.0-windows was computed.  net6.0 was computed.  net6.0-android was computed.  net6.0-ios was computed.  net6.0-maccatalyst was computed.  net6.0-macos was computed.  net6.0-tvos was computed.  net6.0-windows was computed.  net7.0 was computed.  net7.0-android was computed.  net7.0-ios was computed.  net7.0-maccatalyst was computed.  net7.0-macos was computed.  net7.0-tvos was computed.  net7.0-windows was computed.  net8.0 was computed.  net8.0-android was computed.  net8.0-browser was computed.  net8.0-ios was computed.  net8.0-maccatalyst was computed.  net8.0-macos was computed.  net8.0-tvos was computed.  net8.0-windows was computed. 
.NET Core netcoreapp3.0 is compatible.  netcoreapp3.1 was computed. 
Compatible target framework(s)
Included target framework(s) (in package)
Learn more about Target Frameworks and .NET Standard.
  • .NETCoreApp 3.0

    • No dependencies.

NuGet packages (1)

Showing the top 1 NuGet packages that depend on dmuka3.CS.Simple.RSA:

Package Downloads
dmuka3.CS.Simple.TCP

TCP library.

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Version Downloads Last updated
1.0.1 1,768 10/26/2019
1.0.0 411 10/26/2019