A few weeks ago I read in various places about some new features of C#6. I decided to collect them all together so that if you haven't read them yet, you can go through them all at once. Some of them may not be as magical as expected, but that's just the update for now.
You can get them by downloading VS2014 or installing the Roslyn package for visual studio2013 here.
So let’s take a look:
1. The role of $identifier
$ is to simplify string indexing. It is different from the dynamic nature of indexing in C# which uses regular expression matching internally. An example is as follows:
var col = new Dictionary<string, string>() { $first = "Hassan" }; //Assign value to member //the old way: col.$first = "Hassan"; //the new way: col["first"] = "Hassan";
2. Exception filter
Exception filter has been supported in the VB compiler for a long time, and now C# also supports it. Exception filters allow developers to create a catch block for a certain condition. The code in the catch block will only be executed when the condition is met. This is one of my favorite features. An example is as follows:
try { throw new Exception("Me"); } catch (Exception ex) if (ex.Message == "You")
3. await keyword in catch and finally blocks
As far as I know, no one knows The reason why the await keyword is unavailable in the catch and finally code blocks in C# 5 is that it is unavailable no matter how it is written. This is good because developers often want to view the I/O operation log, and in order to record the captured exception information into the log, this needs to be done asynchronously.
try { DoSomething(); } catch (Exception) { await LogService.LogAsync(ex); }
4. Declare expression
This feature allows developers to define a variable in an expression. This is simple but practical. In the past, I used asp.net to build many websites. Here is the code I commonly use:
long id; if (!long.TryParse(Request.QureyString["Id"], out id)) { }
Optimized code:
if (!long.TryParse(Request.QureyString["Id"], out long id)) { }
The scope of variables in this declaration method is the same as the scope of variables declared in C# in the normal way. the same.
5. Use of Static
This feature allows you to specify a specific type in a using statement, and then all static members of this type can be used in subsequent clauses.
using System.Console; namespace ConsoleApplication10 { class Program { static void Main(string[] args) { //Use writeLine method of Console class //Without specifying the class name WriteLine("Hellow World"); } } }
6. Attributes Auto-initialization:
C# 6 auto-comforts properties like fields at declaration locations. The only thing you need to know here is that this initialization will not cause the setter method to be called internally. The background field value is set directly. The following is an example:
public class Person { // You can use this feature on both //getter only and setter / getter only properties public string FirstName { get; set; } = "Hassan"; public string LastName { get; } = "Hashemi"; }
7. Main constructor:
Hahaha, main constructor The constructor will help you eliminate the pain of getting the constructor parameters and setting them into the fields of the class to support subsequent operations. This is really useful. The main purpose of this feature is to use constructor parameters for initialization. When the main constructor is declared, all other constructors need to use :this() to call this main constructor.
Finally the following example:
//this is the primary constructor: class Person(string firstName, string lastName) { public string FirstName { get; set; } = firstName; public string LastName { get; } = lastName; }
Note that the main constructor is called at the top of the class .

C# is a programming language released by Microsoft in 2000, aiming to combine the power of C and the simplicity of Java. 1.C# is a type-safe, object-oriented programming language that supports encapsulation, inheritance and polymorphism. 2. The compilation process of C# converts the code into an intermediate language (IL), and then compiles it into machine code execution in the .NET runtime environment (CLR). 3. The basic usage of C# includes variable declarations, control flows and function definitions, while advanced usages cover asynchronous programming, LINQ and delegates, etc. 4. Common errors include type mismatch and null reference exceptions, which can be debugged through debugger, exception handling and logging. 5. Performance optimization suggestions include the use of LINQ, asynchronous programming, and improving code readability.

C# is a programming language, while .NET is a software framework. 1.C# is developed by Microsoft and is suitable for multi-platform development. 2..NET provides class libraries and runtime environments, and supports multilingual. The two work together to build modern applications.

C#.NET is a powerful development platform that combines the advantages of the C# language and .NET framework. 1) It is widely used in enterprise applications, web development, game development and mobile application development. 2) C# code is compiled into an intermediate language and is executed by the .NET runtime environment, supporting garbage collection, type safety and LINQ queries. 3) Examples of usage include basic console output and advanced LINQ queries. 4) Common errors such as empty references and type conversion errors can be solved through debuggers and logging. 5) Performance optimization suggestions include asynchronous programming and optimization of LINQ queries. 6) Despite the competition, C#.NET maintains its important position through continuous innovation.

The future trends of C#.NET are mainly focused on three aspects: cloud computing, microservices, AI and machine learning integration, and cross-platform development. 1) Cloud computing and microservices: C#.NET optimizes cloud environment performance through the Azure platform and supports the construction of an efficient microservice architecture. 2) Integration of AI and machine learning: With the help of the ML.NET library, C# developers can embed machine learning models in their applications to promote the development of intelligent applications. 3) Cross-platform development: Through .NETCore and .NET5, C# applications can run on Windows, Linux and macOS, expanding the deployment scope.

The latest developments and best practices in C#.NET development include: 1. Asynchronous programming improves application responsiveness, and simplifies non-blocking code using async and await keywords; 2. LINQ provides powerful query functions, efficiently manipulating data through delayed execution and expression trees; 3. Performance optimization suggestions include using asynchronous programming, optimizing LINQ queries, rationally managing memory, improving code readability and maintenance, and writing unit tests.

How to build applications using .NET? Building applications using .NET can be achieved through the following steps: 1) Understand the basics of .NET, including C# language and cross-platform development support; 2) Learn core concepts such as components and working principles of the .NET ecosystem; 3) Master basic and advanced usage, from simple console applications to complex WebAPIs and database operations; 4) Be familiar with common errors and debugging techniques, such as configuration and database connection issues; 5) Application performance optimization and best practices, such as asynchronous programming and caching.

C# is widely used in enterprise-level applications, game development, mobile applications and web development. 1) In enterprise-level applications, C# is often used for ASP.NETCore to develop WebAPI. 2) In game development, C# is combined with the Unity engine to realize role control and other functions. 3) C# supports polymorphism and asynchronous programming to improve code flexibility and application performance.

C# and .NET are suitable for web, desktop and mobile development. 1) In web development, ASP.NETCore supports cross-platform development. 2) Desktop development uses WPF and WinForms, which are suitable for different needs. 3) Mobile development realizes cross-platform applications through Xamarin.


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