


C# implements sample code to determine whether a folder exists and create a folder
这篇文章主要介绍了C#实现判断文件夹存在与否并创建文件夹的方法,涉及C#针对文件及目录的判断与创建操作相关技巧,需要的朋友可以参考下
本文实例讲述了C#实现判断文件夹存在与否并创建文件夹的方法。分享给大家供大家参考,具体如下:
protected void Button1_Click(object sender, EventArgs e) { if (Directory.Exists(Server.MapPath("~/upimg/hufu")) == false)//如果不存在就创建file文件夹 { Directory.CreateDirectory(Server.MapPath("~/upimg/hufu")); } //Directory.Delete(Server.MapPath("~/upimg/hufu"), true);//删除文件夹以及文件夹中的子目录,文件 //判断文件的存在 if (File.Exists(Server.MapPath("~/upimg/Data.html"))) { Response.Write("Yes"); //存在文件 } else { Response.Write("No"); //不存在文件 File.Create(MapPath("~/upimg/Data.html"));//创建该文件 } string name = GetFiles.FileName;//获取已上传文件的名字 string size = GetFiles.PostedFile.ContentLength.ToString();//获取已上传文件的大小 string type = GetFiles.PostedFile.ContentType;//获取已上传文件的MIME string postfix = name.Substring(name.LastIndexOf(".") + 1);//获取已上传文件的后缀 string ipath = Server.MapPath("upimg") +"\\"+ name;//获取文件的实际路径 string fpath = Server.MapPath("upfile") + "\\" + name; string dpath = "upimg\\" + name;//判断写入数据库的虚拟路径 ShowPic.Visible = true;//激活 ShowText.Visible = true;//激活 //判断文件格式 if (name == "") { Response.Write("<script>alert('上传文件不能为空')</script>"); } else{ if (postfix == "jpg" || postfix == "gif" || postfix == "bmp" || postfix == "png") { GetFiles.SaveAs(ipath); ShowPic.ImageUrl = dpath; ShowText.Text = "你上传的图片名称是:" + name + "<br>" + "文件大小:" + size + "KB" + "<br>" + "文件类型:" + type + "<br>" + "存放的实际路径为:" + ipath; } else { ShowPic.Visible = false;//隐藏图片 GetFiles.SaveAs(fpath);//由于不是图片文件,因此转存在upfile这个文件夹 ShowText.Text = "你上传的文件名称是:" + name + "<br>" + "文件大小:" + size + "KB" + "<br>" + "文件类型:" + type + "<br>" + "存放的实际路径为:" + fpath; } } }
以上就是C#实现判断文件夹存在与否并创建文件夹的示例代码的内容,更多相关内容请关注PHP中文网(www.php.cn)!

C#.NET is still important because it provides powerful tools and libraries that support multiple application development. 1) C# combines .NET framework to make development efficient and convenient. 2) C#'s type safety and garbage collection mechanism enhance its advantages. 3) .NET provides a cross-platform running environment and rich APIs, improving development flexibility.

C#.NETisversatileforbothwebanddesktopdevelopment.1)Forweb,useASP.NETfordynamicapplications.2)Fordesktop,employWindowsFormsorWPFforrichinterfaces.3)UseXamarinforcross-platformdevelopment,enablingcodesharingacrossWindows,macOS,Linux,andmobiledevices.

C# and .NET adapt to the needs of emerging technologies through continuous updates and optimizations. 1) C# 9.0 and .NET5 introduce record type and performance optimization. 2) .NETCore enhances cloud native and containerized support. 3) ASP.NETCore integrates with modern web technologies. 4) ML.NET supports machine learning and artificial intelligence. 5) Asynchronous programming and best practices improve performance.

C#.NETissuitableforenterprise-levelapplicationswithintheMicrosoftecosystemduetoitsstrongtyping,richlibraries,androbustperformance.However,itmaynotbeidealforcross-platformdevelopmentorwhenrawspeediscritical,wherelanguageslikeRustorGomightbepreferable.

The programming process of C# in .NET includes the following steps: 1) writing C# code, 2) compiling into an intermediate language (IL), and 3) executing by the .NET runtime (CLR). The advantages of C# in .NET are its modern syntax, powerful type system and tight integration with the .NET framework, suitable for various development scenarios from desktop applications to web services.

C# is a modern, object-oriented programming language developed by Microsoft and as part of the .NET framework. 1.C# supports object-oriented programming (OOP), including encapsulation, inheritance and polymorphism. 2. Asynchronous programming in C# is implemented through async and await keywords to improve application responsiveness. 3. Use LINQ to process data collections concisely. 4. Common errors include null reference exceptions and index out-of-range exceptions. Debugging skills include using a debugger and exception handling. 5. Performance optimization includes using StringBuilder and avoiding unnecessary packing and unboxing.

Testing strategies for C#.NET applications include unit testing, integration testing, and end-to-end testing. 1. Unit testing ensures that the minimum unit of the code works independently, using the MSTest, NUnit or xUnit framework. 2. Integrated tests verify the functions of multiple units combined, commonly used simulated data and external services. 3. End-to-end testing simulates the user's complete operation process, and Selenium is usually used for automated testing.

Interview with C# senior developer requires mastering core knowledge such as asynchronous programming, LINQ, and internal working principles of .NET frameworks. 1. Asynchronous programming simplifies operations through async and await to improve application responsiveness. 2.LINQ operates data in SQL style and pay attention to performance. 3. The CLR of the NET framework manages memory, and garbage collection needs to be used with caution.


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