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@@ -30,11 +30,14 @@
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// OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
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// OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
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#endregion
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#endregion
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+using Google.Protobuf.Compatibility;
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using System;
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using System;
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-using System.Collections.Generic;
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-using System.Linq.Expressions;
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using System.Reflection;
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using System.Reflection;
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+#if NET35
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+using Google.Protobuf.Compatibility;
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+#endif
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+
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namespace Google.Protobuf.Reflection
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namespace Google.Protobuf.Reflection
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{
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{
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/// <summary>
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/// <summary>
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@@ -53,55 +56,130 @@ namespace Google.Protobuf.Reflection
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internal static readonly Type[] EmptyTypes = new Type[0];
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internal static readonly Type[] EmptyTypes = new Type[0];
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/// <summary>
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/// <summary>
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- /// Creates a delegate which will cast the argument to the appropriate method target type,
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+ /// Creates a delegate which will cast the argument to the type that declares the method,
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/// call the method on it, then convert the result to object.
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/// call the method on it, then convert the result to object.
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/// </summary>
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/// </summary>
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- internal static Func<IMessage, object> CreateFuncIMessageObject(MethodInfo method)
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- {
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- ParameterExpression parameter = Expression.Parameter(typeof(IMessage), "p");
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- Expression downcast = Expression.Convert(parameter, method.DeclaringType);
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- Expression call = Expression.Call(downcast, method);
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- Expression upcast = Expression.Convert(call, typeof(object));
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- return Expression.Lambda<Func<IMessage, object>>(upcast, parameter).Compile();
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- }
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+ /// <param name="method">The method to create a delegate for, which must be declared in an IMessage
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+ /// implementation.</param>
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+ internal static Func<IMessage, object> CreateFuncIMessageObject(MethodInfo method) =>
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+ GetReflectionHelper(method.DeclaringType, method.ReturnType).CreateFuncIMessageObject(method);
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/// <summary>
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/// <summary>
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- /// Creates a delegate which will cast the argument to the appropriate method target type,
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- /// call the method on it, then convert the result to the specified type.
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+ /// Creates a delegate which will cast the argument to the type that declares the method,
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+ /// call the method on it, then convert the result to the specified type. The method is expected
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+ /// to actually return an enum (because of where we're calling it - for oneof cases). Sometimes that
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+ /// means we need some extra work to perform conversions.
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/// </summary>
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/// </summary>
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- internal static Func<IMessage, T> CreateFuncIMessageT<T>(MethodInfo method)
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- {
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- ParameterExpression parameter = Expression.Parameter(typeof(IMessage), "p");
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- Expression downcast = Expression.Convert(parameter, method.DeclaringType);
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- Expression call = Expression.Call(downcast, method);
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- Expression upcast = Expression.Convert(call, typeof(T));
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- return Expression.Lambda<Func<IMessage, T>>(upcast, parameter).Compile();
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- }
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+ /// <param name="method">The method to create a delegate for, which must be declared in an IMessage
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+ /// implementation.</param>
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+ internal static Func<IMessage, int> CreateFuncIMessageInt32(MethodInfo method) =>
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+ GetReflectionHelper(method.DeclaringType, method.ReturnType).CreateFuncIMessageInt32(method);
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/// <summary>
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/// <summary>
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/// Creates a delegate which will execute the given method after casting the first argument to
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/// Creates a delegate which will execute the given method after casting the first argument to
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- /// the target type of the method, and the second argument to the first parameter type of the method.
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+ /// the type that declares the method, and the second argument to the first parameter type of the method.
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/// </summary>
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/// </summary>
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- internal static Action<IMessage, object> CreateActionIMessageObject(MethodInfo method)
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- {
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- ParameterExpression targetParameter = Expression.Parameter(typeof(IMessage), "target");
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- ParameterExpression argParameter = Expression.Parameter(typeof(object), "arg");
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- Expression castTarget = Expression.Convert(targetParameter, method.DeclaringType);
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- Expression castArgument = Expression.Convert(argParameter, method.GetParameters()[0].ParameterType);
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- Expression call = Expression.Call(castTarget, method, castArgument);
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- return Expression.Lambda<Action<IMessage, object>>(call, targetParameter, argParameter).Compile();
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- }
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+ /// <param name="method">The method to create a delegate for, which must be declared in an IMessage
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+ /// implementation.</param>
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+ internal static Action<IMessage, object> CreateActionIMessageObject(MethodInfo method) =>
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+ GetReflectionHelper(method.DeclaringType, method.GetParameters()[0].ParameterType).CreateActionIMessageObject(method);
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/// <summary>
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/// <summary>
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/// Creates a delegate which will execute the given method after casting the first argument to
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/// Creates a delegate which will execute the given method after casting the first argument to
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- /// the target type of the method.
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+ /// type that declares the method.
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/// </summary>
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/// </summary>
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- internal static Action<IMessage> CreateActionIMessage(MethodInfo method)
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+ /// <param name="method">The method to create a delegate for, which must be declared in an IMessage
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+ /// implementation.</param>
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+ internal static Action<IMessage> CreateActionIMessage(MethodInfo method) =>
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+ GetReflectionHelper(method.DeclaringType, typeof(object)).CreateActionIMessage(method);
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+
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+ /// <summary>
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+ /// Creates a reflection helper for the given type arguments. Currently these are created on demand
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+ /// rather than cached; this will be "busy" when initially loading a message's descriptor, but after that
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+ /// they can be garbage collected. We could cache them by type if that proves to be important, but creating
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+ /// an object is pretty cheap.
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+ /// </summary>
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+ private static IReflectionHelper GetReflectionHelper(Type t1, Type t2) =>
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+ (IReflectionHelper) Activator.CreateInstance(typeof(ReflectionHelper<,>).MakeGenericType(t1, t2));
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+
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+ // Non-generic interface allowing us to use an instance of ReflectionHelper<T1, T2> without statically
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+ // knowing the types involved.
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+ private interface IReflectionHelper
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+ {
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+ Func<IMessage, int> CreateFuncIMessageInt32(MethodInfo method);
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+ Action<IMessage> CreateActionIMessage(MethodInfo method);
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+ Func<IMessage, object> CreateFuncIMessageObject(MethodInfo method);
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+ Action<IMessage, object> CreateActionIMessageObject(MethodInfo method);
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+ }
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+
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+ private class ReflectionHelper<T1, T2> : IReflectionHelper
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{
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{
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- ParameterExpression targetParameter = Expression.Parameter(typeof(IMessage), "target");
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- Expression castTarget = Expression.Convert(targetParameter, method.DeclaringType);
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- Expression call = Expression.Call(castTarget, method);
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- return Expression.Lambda<Action<IMessage>>(call, targetParameter).Compile();
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- }
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+
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+ public Func<IMessage, int> CreateFuncIMessageInt32(MethodInfo method)
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+ {
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+ // On pleasant runtimes, we can create a Func<int> from a method returning
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+ // an enum based on an int. That's the fast path.
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+ if (CanConvertEnumFuncToInt32Func)
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+ {
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+ var del = (Func<T1, int>) method.CreateDelegate(typeof(Func<T1, int>));
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+ return message => del((T1) message);
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+ }
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+ else
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+ {
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+ // On some runtimes (e.g. old Mono) the return type has to be exactly correct,
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+ // so we go via boxing. Reflection is already fairly inefficient, and this is
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+ // only used for one-of case checking, fortunately.
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+ var del = (Func<T1, T2>) method.CreateDelegate(typeof(Func<T1, T2>));
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+ return message => (int) (object) del((T1) message);
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+ }
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+ }
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+
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+ public Action<IMessage> CreateActionIMessage(MethodInfo method)
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+ {
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+ var del = (Action<T1>) method.CreateDelegate(typeof(Action<T1>));
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+ return message => del((T1) message);
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+ }
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+
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+ public Func<IMessage, object> CreateFuncIMessageObject(MethodInfo method)
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+ {
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+ var del = (Func<T1, T2>) method.CreateDelegate(typeof(Func<T1, T2>));
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+ return message => del((T1) message);
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+ }
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+
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+ public Action<IMessage, object> CreateActionIMessageObject(MethodInfo method)
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+ {
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+ var del = (Action<T1, T2>) method.CreateDelegate(typeof(Action<T1, T2>));
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+ return (message, arg) => del((T1) message, (T2) arg);
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+ }
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+ }
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+
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+ // Runtime compatibility checking code - see ReflectionHelper<T1, T2>.CreateFuncIMessageInt32 for
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+ // details about why we're doing this.
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+
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+ // Deliberately not inside the generic type. We only want to check this once.
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+ private static bool CanConvertEnumFuncToInt32Func { get; } = CheckCanConvertEnumFuncToInt32Func();
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+
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+ private static bool CheckCanConvertEnumFuncToInt32Func()
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+ {
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+ try
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+ {
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+ MethodInfo method = typeof(ReflectionUtil).GetMethod(nameof(SampleEnumMethod));
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+ // If this passes, we're in a reasonable runtime.
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+ method.CreateDelegate(typeof(Func<int>));
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+ return true;
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+ }
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+ catch (ArgumentException)
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+ {
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+ return false;
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+ }
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+ }
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+
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+ public enum SampleEnum
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+ {
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+ X
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+ }
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+
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+ // Public to make the reflection simpler.
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+ public static SampleEnum SampleEnumMethod() => SampleEnum.X;
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}
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}
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-}
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+}
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