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  2. Input/output (C++) - Wikipedia

    en.wikipedia.org/wiki/Input/output_(C++)

    The cerr and clog objects are also of type ostream, so they overload that operator as well. The cin object is of type istream , which overloads the right bit-shift operator. The directions of the bit-shift operators make it seem as though data is flowing towards the output stream or flowing away from the input stream.

  3. Operator overloading - Wikipedia

    en.wikipedia.org/wiki/Operator_overloading

    In C++, after overloading the less-than operator (<), ... but if a is an output stream then the above code will attempt to write a b to the stream.

  4. Argument-dependent name lookup - Wikipedia

    en.wikipedia.org/wiki/Argument-dependent_name_lookup

    /* will print the provided char string as expected using ADL derived from the argument type std::cout */ operator << (std:: cout, "Hi there") /* calls a ostream member function of the operator<< taking a void const*, which will print the address of the provided char string instead of the content of the char string */ std:: cout. operator ...

  5. Name mangling - Wikipedia

    en.wikipedia.org/wiki/Name_mangling

    C++ also has complex language features, such as classes, templates, namespaces, and operator overloading, that alter the meaning of specific symbols based on context or usage. Meta-data about these features can be disambiguated by mangling (decorating) the name of a symbol. Because the name-mangling systems for such features are not ...

  6. Operators in C and C++ - Wikipedia

    en.wikipedia.org/wiki/Operators_in_C_and_C++

    All the operators (except typeof) listed exist in C++; the column "Included in C", states whether an operator is also present in C. Note that C does not support operator overloading. When not overloaded, for the operators && , || , and , (the comma operator ), there is a sequence point after the evaluation of the first operand.

  7. Function overloading - Wikipedia

    en.wikipedia.org/wiki/Function_overloading

    The first is taken in C++: "in C++, there is no overloading across scopes." [ 12 ] As a result, to obtain an overload set with functions declared in different scopes, one needs to explicitly import the functions from the outer scope into the inner scope, with the using keyword.

  8. Double dispatch - Wikipedia

    en.wikipedia.org/wiki/Double_dispatch

    The problem is that, while virtual functions are dispatched dynamically in C++, function overloading is done statically. The problem described above can be resolved by simulating double dispatch, for example by using a visitor pattern. Suppose the existing code is extended so that both SpaceShip and ApolloSpacecraft are given the function

  9. Move assignment operator - Wikipedia

    en.wikipedia.org/wiki/Move_assignment_operator

    The move assignment operator, like most C++ operators, can be overloaded. Like the copy assignment operator it is a special member function . If the move assignment operator is not explicitly defined, the compiler generates an implicit move assignment operator ( C++11 and newer) provided that copy / move constructors , copy assignment operator ...