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Assume that I have a boost::function of with an arbitrary signature called type CallbackType.

  • Is it possible to use boost::bind to compose a function that takes the same arguments as the CallbackType but calls the two functors in succession?

I'm open to any potential solution, but here's a...

...Hypothetical example using some magic template:

Template<typename CallbackType>
class MyClass
        CallbackType doBoth;

        MyClass( CallbackType callback )
            doBoth = bind( magic<CallbackType>, 
                             protect( bind(&MyClass::alert, this) ),   
                               protect( callback )                    );

        void alert()
            cout << "It has been called\n";

void doIt( int a, int b, int c)
    cout << "Doing it!" << a << b << c << "\n";

int main()
    typedef boost::function<void (int, int, int)> CallbackType;

    MyClass<CallbackType> object( boost::bind(doIt) );


    return 0;
share|improve this question
Is magic supposed to be implemented in terms of bind? What is the role of bind supposed to be? Certainly you're not actually binding anything to the callback. –  Potatoswatter Apr 29 '10 at 22:08
magic would perhaps be some template that automatically created a functor that took two functors as arguments + all of the arguments of CallbackType... but this is just meant to illustrate my goal, not necessarily offer a realistic solution. I'm open to drastically different suggestions. –  Catskul Apr 29 '10 at 22:15
Are you trying to compose a void (void) with void (int, int, int)? Or was that just a typo? –  MSN Apr 29 '10 at 22:34
No, that is correct... just another complication of the problem. The template has no way of knowing ahead of time what the sig would be so could not make alert match it. –  Catskul Apr 29 '10 at 23:23
Could you state clearly what is the composition you want to achieve with a concrete and simple example (without bind)? Take in account that function composition has a sense when the result of a function is the input of the other. –  Vicente Botet Escriba May 1 '10 at 1:41

2 Answers 2

up vote 8 down vote accepted

Boost already provides a way to create a sequence of bound functions. Use Lambda's comma operator.

using namespace boost::lambda;
MyClass mc;
CallbackType object = (bind(&MyClass::alert, mc), bind(doIt, _1, _2, _3));
object(1, 2, 3);

That will create a new functor, object. When you invoke that functor with three arguments, it will in turn call mc.alert() before passing those arguments to doIt. The parentheses are important.

For my example above to work, you'd need alert to be a const function. If it needs to be non-const, then either pass a pointer to mc, or wrap it with boost::ref(mc). And you'll need to use Boost.Lambda's bind rather than Boost.Bind's; the latter isn't compatible with Lambda's function-combining operators (comma, in particular).

share|improve this answer
how would this work with c++11's std::bind? –  Valerij Jul 28 '13 at 12:52
template< class Callback >
struct pre_caller {
    Callback c;

    pre_caller( Callback in_c ) : c( in_c ) {}

    void alert() {} // or an instance of a functor

    { alert(); c(); }

    template< class T1 >
    operator( T1 a ) // not sure if/what qualification to add to a
    { alert(); c( a ); } // or whether to attempt to obtain from
                         // function_traits<Callback>?
    template< class T1, class T2 >
    operator( T1 a, T2 b )
    { alert(); c( a, b ); }

    template< class T1, class T2, class T3 >
    operator( T1 a, T2 b, T3 c )
    { alert(); c( a, b, c ); }

    // ad nauseam... and I mean nausea, maybe read up on Boost Preprocessor.

Boost Bind uses a lot of preprocessor hacking for its variadic voodoo, and unfortunately I don't think it provides a pattern or tools for head-patching which is essentially what this is.

share|improve this answer
It seems like there should be an easier way, and perhaps my my straw man example goes in the complete wrong direction. Starting a bounty, but this may end up marked as the answer. –  Catskul May 14 '10 at 17:31

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