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I've got a C++ class that's templated on the integer type, e.g.,

template<typename int_type>

Say that somewhere in that class, I'd like to use sscanf for reading some values from a file, e.g.,

int_type num_rows;
fgets( buffer, BUFSIZE, in_file );
sscanf( buffer, "%d", &num_rows);

The format specifier only works correctly if the int_type is the intrinsic int.

Is there a better way of treating the format specifier for general int_type?

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That isn't really templated... sscanf with %d only works with an integer, so the templated type doesn't really matter here. You will need to change the scanf argument as well –  Yochai Timmer Apr 10 '13 at 14:56
You could have a private static member function that returns char const * and specialize it for each distinct int_type you intend to support, and use the return value as the format argument to sscanf(). –  cdhowie Apr 10 '13 at 14:56

3 Answers 3

up vote 7 down vote accepted

Instead of using sscanf() and a format specifier use std::istringstream with operator>>():

if (fgets( buffer, BUFSIZE, in_file ))
    std::istringstream in(buffer);
    if (!(in >> num_rows))
        // Handle failure.

Replacing the (not shown) FILE* and with a std::ifstream would enable removal of the std::istringstream and just read directly from the std::ifstream instead.

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You can just declare fmt in your class and provide explicit values per type in the implementation:

// foo.hpp
template< typename T >
class foo
    static const char* fmt;

    void print() const
        T num_rows;
        fgets( buffer, BUFSIZE, in_file );
        sscanf( buffer, fmt, &num_rows);


// foo.cpp
template<> const char* foo< int >::fmt = "%d";
template<> const char* foo< long >::fmt = "%ld";
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You could create template helper class:

template<class int_type>
struct fmt_helper_f{};

struct fmt_helper_f<int>
  static const char * fmt() {return "%d";}

struct fmt_helper_f<float>
  static const char * fmt() {return "%f";}

Actually you may want to use streams for input and output

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