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I have noticed that some of my functions in a class are actually not accessing the object, so I made them static. Then the compiler told me that all variables they access must also be static -- well, quite understandable so far. I have a bunch of string variables such as

string RE_ANY = "([^\\n]*)";
string RE_ANY_RELUCTANT = "([^\\n]*?)";

and so on in the class. I have then made them all static const because they never change. However, my program only compiles if I move them out of the class: Otherwise, MSVC++2010 complains "Only static constant integral variables may be initialized within a class".

Well that's unfortunate. Is there a workaround? To make them global would be a code smell in my opinion.

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5 Answers 5

up vote 35 down vote accepted

They can't be initialised inside the class, but they can be initialised outside the class, in a source file:

// inside the class
class Thing {
    static string RE_ANY;
    static string RE_ANY_RELUCTANT;
};

// in the source file
string Thing::RE_ANY = "([^\\n]*)";
string Thing::RE_ANY_RELUCTANT = "([^\\n]*?)";

Update

I've just noticed the first line of your question - you don't want to make those functions static, you want to make them const. Making them static means that they are no longer associated with an object (so they can't access any non-static members), and making the data static means it will be shared with all objects of this type. This may well not be what you want. Making them const simply means that they can't modify any members, but can still access them.

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1  
They don't access anything in the object, just temporary variables which are given to them as reference arguments. Therefore they probably should be both const and static. –  Felix Dombek Feb 16 '11 at 17:52
5  
@Felix: it's not possible, const means that it doesn't modify this... and there is no this for static methods. –  Matthieu M. Feb 16 '11 at 17:58
    
@Matthieu: Very good explanation. So static is the right one. –  Felix Dombek Feb 16 '11 at 17:59
    
@Felix: OK, if they don't access the object at all, then they should be static. That's not what the question says, though. –  Mike Seymour Feb 16 '11 at 18:04
    
I think, there is still a bit of confusion about static and const here: The OP said, that he has static functions, that use static const values. So his values are both static AND const, and that is clearly the case, where initialization at compile time is most important. –  Kai Petzke May 10 '14 at 9:29

Static member variables must be declared in the class and then defined outside of it!

There's no workaround, just put their actual definition in a source file.


From your description it smells like you're not using static variables the right way. If they never change you should use constant variable instead, but your description is too generic to say something more.

Static member variables always hold the same value for any instance of your class: if you change a static variable of one object, it will change also for all the other objects (and in fact you can also access them without an instance of the class - ie: an object).

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1  
They are const now -- they just need to be static as well so that I can use them in static member functions. What's the reason for that rule that they must be declared inside and defined outside a class? That doesn't make much sense to me. –  Felix Dombek Feb 16 '11 at 17:37
1  
@Felix Dombek: I think the reason is that the class is(/could be) declared for each source file you compile and link, but the actual variables must be only defined once. That's the same reason you need to explicitly declare as extern the variables defined in other source files. –  peoro Feb 16 '11 at 17:40
1  
@peoro: That seems reasonable! But then why is it allowed for integral datatypes? That shouldn't be allowed either, then ... –  Felix Dombek Feb 16 '11 at 17:56
    
@Felix Dombek: it's not allowed for integral types too. If you define this struct: struct A { static int x; };, and you try to access A::x without defining int A::x; in a source file, your code won't link. –  peoro Feb 16 '11 at 18:07
1  
@Felix Dombek: it's not standard complaint. ISO C++ forbids in-class initialization of non-const static members. You can only do that for integral const static members, and that's because static const integral variables won't be actually put in memory, but will be used as constant at compile time. –  peoro Feb 16 '11 at 18:45

Mike Seymour has given you the right answer, but to add...
C++ lets you declare and define in your class body only static const integral types, as the compiler tells. So you can actually do:

class Foo
{
    static const int someInt = 1;
    static const short someShort = 2;
    // etc.
};

And you can't do that with any other type, in that cases you should define them in your .cpp file.

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I feel it is worth adding that a static variable is not the same as a constant variable.

using a constant variable in a class

struct Foo{
    const int a;
    Foo(int b) : a(b){}
}

and we would declare it like like so

fooA = new Foo(5);
fooB = new Foo(10);
// fooA.a = 5;
// fooB.a = 10;

For a static variable

struct Bar{
    static int a;
    Foo(int b){
        a = b;
    }
}
Bar::a = 0; // set value for a

which is used like so

barA = new Bar(5);
barB = new Bar(10);
// barA.a = 10;
// barB.a = 10;
// Bar::a = 10;

You see what happens here. The constant variable, which is instanced along with each instance of Foo, as Foo is instanced has a separate value for each instance of Foo, and it can't be changed by Foo at all.

Where as with Bar, their is only one value for Bar::a no matter how many instances of Bar are made. They all share this value, you can also access it with their being any instances of Bar. The static variable also abides rules for public/private, so you could make it that only instances of Bar can read the value of Bar::a;

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huh... find it funny no one has pointed out my terrible needless use of 'new'. Not really of concern for this question, but yeah, avoid using 'new' when you don't need to, and you more or less never do. –  thecoshman Nov 1 '14 at 15:25

Since C++11 it can be done inside a class with constexpr.

class stat {
    public:
        // init inside class
        static constexpr double inlineStaticVar = 22;
};

The variable can now be accessed with:

stat::inlineStaticVar
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