Please note this question related to performance only. Lets skip design guidelines, philosophy, compatibility, portability and anything what is not related to pure performance. Thank you.
Now to the question. I always assumed that because C# getters/setters are really methods in disguise then reading public field must be faster than calling a getter.
So to make sure I did a test (the code below). However this test only produces expected results (ie fields are faster than getters at 34%) if you run it from inside Visual Studio.
Once you run it from command line it shows pretty much the same timing...
The only explanation could be is that the CLR does additional optimisation (correct me if I am wrong here).
I do not believe that in real application where those properties being used in much more sophisticated way they will be optimised in the same way.
Please help me to prove or disprove the idea that in real life properties are slower than fields.
The question is - how should I modify the test classes to make the CLR change behaviour so the public field outperfroms the getters. OR show me that any property without internal logic will perform the same as a field (at least on the getter)
EDIT: I am only talking about Release x64 build.
using System;
using System.Collections.Generic;
using System.Linq;
using System.Text;
using System.Diagnostics;
using System.Runtime.InteropServices;
namespace PropertyVsField
{
class Program
{
static int LEN = 20000000;
static void Main(string[] args)
{
List<A> a = new List<A>(LEN);
List<B> b = new List<B>(LEN);
Random r = new Random(DateTime.Now.Millisecond);
for (int i = 0; i < LEN; i++)
{
double p = r.NextDouble();
a.Add(new A() { P = p });
b.Add(new B() { P = p });
}
Stopwatch sw = new Stopwatch();
double d = 0.0;
sw.Restart();
for (int i = 0; i < LEN; i++)
{
d += a[i].P;
}
sw.Stop();
Console.WriteLine("auto getter. {0}. {1}.", sw.ElapsedTicks, d);
sw.Restart();
for (int i = 0; i < LEN; i++)
{
d += b[i].P;
}
sw.Stop();
Console.WriteLine(" field. {0}. {1}.", sw.ElapsedTicks, d);
Console.ReadLine();
}
}
class A
{
public double P { get; set; }
}
class B
{
public double P;
}
}
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