Found 1,387 packages
Javascript Object Signing and Encryption (JOSE), JSON Web Token (JWT), JSON Web Encryption (JWE) and JSON Web Key (JWK) Implementation for .NET Ultimate Javascript Object Signing and Encryption (JOSE), JSON Web Token (JWT), JSON Web Encryption (JWE) and JSON Web Key (JWK) Implementation for .NET and .NET Core. Minimallistic. Zero-dependency. Full suite of signature and encryption algorithms. Supports generating, decoding, encryption and compression of JSON Web Tokens. Full-blown support for JSON Web Keys (RFC 7517) and two way bridging with .NET core cryptography. JSON parsing agnostic. Supports two-phase validation. FIPS compliant. Unencoded payload and detached content support (RFC 7797). JSON Web Encryption (JWE, RFC 7516) support. Cross compatible with all major operating systems - Windows, Linux, MacOS and FreeBSD. Supported algorithms Signing: - HMAC signatures with HS256, HS384 and HS512. - ECDSA signatures with ES256, ES384 and ES512. - RSASSA-PKCS1-V1_5 signatures with RS256, RS384 and RS512. - RSASSA-PSS signatures (probabilistic signature scheme with appendix) with PS256, PS384 and PS512. - NONE (unprotected) plain text algorithm without integrity protection Encryption: - RSAES OAEP 256 384 512 encryption with A128CBC-HS256, A192CBC-HS384, A256CBC-HS512, A128GCM, A192GCM, A256GCM - RSAES OAEP encryption with A128CBC-HS256, A192CBC-HS384, A256CBC-HS512, A128GCM, A192GCM, A256GCM - RSAES-PKCS1-V1_5 encryption with A128CBC-HS256, A192CBC-HS384, A256CBC-HS512, A128GCM, A192GCM, A256GCM - Direct symmetric key encryption with pre-shared key A128CBC-HS256, A192CBC-HS384, A256CBC-HS512, A128GCM, A192GCM and A256GCM - A128KW, A192KW, A256KW encryption with A128CBC-HS256, A192CBC-HS384, A256CBC-HS512, A128GCM, A192GCM and A256GCM - A128GCMKW, A192GCMKW, A256GCMKW encryption with A128CBC-HS256, A192CBC-HS384, A256CBC-HS512, A128GCM, A192GCM and A256GCM - ECDH-ES encryption with A128CBC-HS256, A128GCM, A192GCM, A256GCM - ECDH-ES+A128KW, ECDH-ES+A192KW, ECDH-ES+A256KW encryption with A128CBC-HS256, A128GCM, A192GCM, A256GCM - PBES2-HS256+A128KW, PBES2-HS384+A192KW, PBES2-HS512+A256KW with A128CBC-HS256, A192CBC-HS384, A256CBC-HS512, A128GCM, A192GCM, A256GCM Compression: - DEFLATE compression RFC 7797: - Unencoded payload - Detached content RFC 7516: - JSON Web Encryption (JWE) support JSON Web Key (RFC 7517): - RSA, EC, oct keys - X509 Chains, SHA1 & SHA2 thumbprints
.Net library for two-factor (or multi-factor) authentication using TOTP and QR-codes.
An implementation of TOTP and HOTP which are commonly used for multi factor authentication by using a shared key between the client and the server to generate and verify one time use codes. For documentation and examples visit the project website on GitHub at https://github.com/kspearrin/Otp.NET
QR code provider for TwoFactorAuth.Net using the excellent QRCoder library (https://github.com/codebude/QRCoder/)
log4net is a tool to help the programmer output log statements to a variety of output targets. In case of problems with an application, it is helpful to enable logging so that the problem can be located. With log4net it is possible to enable logging at runtime without modifying the application binary. The log4net package is designed so that log statements can remain in shipped code without incurring a high performance cost. It follows that the speed of logging (or rather not logging) is crucial. At the same time, log output can be so voluminous that it quickly becomes overwhelming. One of the distinctive features of log4net is the notion of hierarchical loggers. Using these loggers it is possible to selectively control which log statements are output at arbitrary granularity. log4net is designed with two distinct goals in mind: speed and flexibility
.net implementation of the TOTP: Time-Based One-Time Password Algorithm and HOTP: HMAC-Based One-Time Password Algorithm
The fraction data type consists of two BigInteger values for numerator and denominator. It implements various operations (addition, subtraction, multiplication, division and remainder) with operator overloads.
Library for generating and verifying OTP codes (and recovery codes) with methods to generate QR-codes by google APIs
Library for generating and verifying OTP codes (and recovery codes) with methods to generate QR-codes by QRCoder lib
The System.Collections namespace in the .NET Framework provides a number of collection types that are extremely useful for manipulating data in memory. However, some specialized implementations of ISet are not available. Iesi.Collections 4.0 for .Net 4.0 contains the LinkedHashSet (preserves insertion order), the ReadOnlySet and the SynchronizedSet. The latter two wrap an actual set.
What you have been waiting for. Perform a deep compare of any two .NET objects using reflection. Shows the differences between the two objects.
This is an implementation of HOTP and TOTP which are commonly used for multi factor authentication by using a shared key between the client and the server to generate and verify one time use codes. This library is capable of generating and verifying both TOTP and HOTP authentication codes. The calculations in this library are known to be compatible with Google 2-Step Verification and consequently the Google Authenticator smartphone app. It is also known to be able to generate codes for Amazon Web Services Multi Factor Authentication and Dropbox 2 step authentication. It should work with any other service or client that is RFC compliant. This library is released under an MIT license. No warranty is provided as to the correctness of the library and the consumer of the library assumes all risk for the use thereof, as per the MIT license. Every effort has gone into implementing this library in accordance with the RFCs mentioned above. However it is up to the users of this library to read through the RFCs and ensure that this implementation is in accordance with the security procedures outlined therein. The implementation includes the code calculation as well as simple verification. Persistence of the keys, secure key storage, ensuring that a single code can't be validated multiple times and other things are not a part of this library. Thus far those functions (and any others mentioned in the RFCs) are up to the consumer of this library. For documentation please visit the project website.
Components for Data Protection, Secure Storage, Secure Transfer, and Advanced Electronic Signatures, including PAdES for PDF, XAdES for XML, and full support for Hardware Security Modules (HSM).
A QR Code provider for TwoFactorAuth.Net that has no external API dependency. The image is generated on your own server. Also no dependency on System.Drawing to avoid installation issues with Linux.
Google Authenticator Two-Factor Authentication Library (Not officially affiliated with Google.)
This library provides developers with a simple set of bindings to the 2Checkout purchase routine, Instant Notification Service and Back Office API.
.NET for Android and MAUI bindings for the Android Java library 'androidx.slidingpanelayout:slidingpanelayout'. Library description: SlidingPaneLayout offers a responsive, two pane layout that automatically switches between overlapping panes on smaller devices to a side by side view on larger devices.
Spatial Index data structure; used to make it easier to find data points on a two dimensional plane.
This package includes high performance .NET helpers such as: - Memory2D<T> and Span2D<T>: two types providing fast and allocation-free abstraction over 2D memory areas. - ArrayPoolBufferWriter<T>: an IBufferWriter<T> implementation using pooled arrays, which also supports IMemoryOwner<T>. - MemoryBufferWriter<T>: an IBufferWriter<T>: implementation that can wrap external Memory<T>: instances. - MemoryOwner<T>: an IMemoryOwner<T> implementation with an embedded length and a fast Span<T> accessor. - SpanOwner<T>: a stack-only type with the ability to rent a buffer of a specified length and getting a Span<T> from it. - StringPool: a configurable pool for string instances that be used to minimize allocations when creating multiple strings from char buffers. - String, array, Memory<T>, Span<T> extensions and more, all focused on high performance. - HashCode<T>: a SIMD-enabled extension of HashCode to quickly process sequences of values. - BitHelper: a class with helper methods to perform bit operations on numeric types. - ParallelHelper: helpers to work with parallel code in a highly optimized manner. - Box<T>: a type mapping boxed value types and exposing some utility and high performance methods. - Ref<T>: a stack-only struct that can store a reference to a value of a specified type. - NullableRef<T>: a stack-only struct similar to Ref<T>, which also supports nullable references.
Calculates the Levenshtein distance between two strings. A count of the number of insertions, deletions and substitutions to make one string into another.