Without further ado, please take a look at the code:
using System; using System.Collections.Generic; using System.Text; namespace NET.MST.Sixth.Reenter { class Reenter { //用来造成线程同步问题的静态成员 private static int TestInt1=0; private static int TestInt2 = 0; private static object locko = new object(); static void Main(string[] args) { Console.WriteLine("System.Timers.Timer 回调方法重入测试:"); TimersTimerReenter(); //这里确保已经开始的回调方法有机会结束 System.Threading.Thread.Sleep(2 * 1000); Console.WriteLine("System.Threading.Timer 回调方法重入测试:"); ThreadingTimerReenter(); Console.Read(); } /// <summary> /// 展示System.Timers.Timer的回调方法重入 /// </summary> static void TimersTimerReenter() { System.Timers.Timer timer = new System.Timers.Timer(); timer.Interval = 100; //100毫秒 timer.Elapsed += TimersTimerHandler; timer.Start(); System.Threading.Thread.Sleep(2 * 1000); //运行2秒 timer.Stop(); } /// <summary> /// 展示System.Threading.Timer的回调方法重入 /// </summary> static void ThreadingTimerReenter() { //100毫秒 using (System.Threading.Timer timer = new System.Threading.Timer (new System.Threading.TimerCallback(ThreadingTimerHandler), null, 0, 100)) { System.Threading.Thread.Sleep(2 * 1000); //运行2秒 } } /// <summary> /// System.Timers.Timer的回调方法 /// </summary> /// <param name="sender"></param> /// <param name="args"></param> private static void TimersTimerHandler(object sender,EventArgs args) { lock (locko) { Console.WriteLine("测试整数:" + TestInt1.ToString()); //睡眠10秒,保证方法重入 System.Threading.Thread.Sleep(300); TestInt1++; Console.WriteLine("自增1后测试整数:" + TestInt1.ToString()); } } /// <summary> /// System.Threading.Timer的回调方法 /// </summary> /// <param name="state"></param> private static void ThreadingTimerHandler(object state) { lock (locko) { Console.WriteLine("测试整数:" + TestInt2.ToString()); //睡眠10秒,保证方法重入 System.Threading.Thread.Sleep(300); TestInt2++; Console.WriteLine("自增1后测试整数:" + TestInt2.ToString()); } } } }
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The char array stores character sequences in C language and is declared as char array_name[size]. The access element is passed through the subscript operator, and the element ends with the null terminator '\0', which represents the end point of the string. The C language provides a variety of string manipulation functions, such as strlen(), strcpy(), strcat() and strcmp().

The usage methods of symbols in C language cover arithmetic, assignment, conditions, logic, bit operators, etc. Arithmetic operators are used for basic mathematical operations, assignment operators are used for assignment and addition, subtraction, multiplication and division assignment, condition operators are used for different operations according to conditions, logical operators are used for logical operations, bit operators are used for bit-level operations, and special constants are used to represent null pointers, end-of-file markers, and non-numeric values.

In C, the char type is used in strings: 1. Store a single character; 2. Use an array to represent a string and end with a null terminator; 3. Operate through a string operation function; 4. Read or output a string from the keyboard.

In C language, special characters are processed through escape sequences, such as: \n represents line breaks. \t means tab character. Use escape sequences or character constants to represent special characters, such as char c = '\n'. Note that the backslash needs to be escaped twice. Different platforms and compilers may have different escape sequences, please consult the documentation.

A strategy to avoid errors caused by default in C switch statements: use enums instead of constants, limiting the value of the case statement to a valid member of the enum. Use fallthrough in the last case statement to let the program continue to execute the following code. For switch statements without fallthrough, always add a default statement for error handling or provide default behavior.

There is no built-in sum function in C language, so it needs to be written by yourself. Sum can be achieved by traversing the array and accumulating elements: Loop version: Sum is calculated using for loop and array length. Pointer version: Use pointers to point to array elements, and efficient summing is achieved through self-increment pointers. Dynamically allocate array version: Dynamically allocate arrays and manage memory yourself, ensuring that allocated memory is freed to prevent memory leaks.

C#.NET provides powerful tools for concurrent, parallel and multithreaded programming. 1) Use the Thread class to create and manage threads, 2) The Task class provides more advanced abstraction, using thread pools to improve resource utilization, 3) implement parallel computing through Parallel.ForEach, 4) async/await and Task.WhenAll are used to obtain and process data in parallel, 5) avoid deadlocks, race conditions and thread leakage, 6) use thread pools and asynchronous programming to optimize performance.

In C language, char type conversion can be directly converted to another type by: casting: using casting characters. Automatic type conversion: When one type of data can accommodate another type of value, the compiler automatically converts it.


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