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In the C++ programming language, input/output library refers to a family of class templates and supporting functions in the C++ Standard Library that implement stream-based input/output capabilities. [ 1 ] [ 2 ] It is an object-oriented alternative to C's FILE -based streams from the C standard library .
The C programming language provides many standard library functions for file input and output.These functions make up the bulk of the C standard library header <stdio.h>. [1] The functionality descends from a "portable I/O package" written by Mike Lesk at Bell Labs in the early 1970s, [2] and officially became part of the Unix operating system in Version 7.
Provides C++ input and output fundamentals. See iostream. <istream> Provides std::istream and other supporting classes for input. <ostream> Provides std::ostream and other supporting classes for output. <print> Added in C++23. Provides formatted output utilities such as std::print supported for both C and C++ streams. <spanstream> Added in C++23.
In contrast, the equivalent code in C++ [7] requires the import of the input/output (I/O) software library, the manual declaration of an entry point, and the explicit instruction that the output string should be sent to the standard output stream.
Another Unix breakthrough was to automatically associate input and output to terminal keyboard and terminal display, respectively, by default [citation needed] — the program (and programmer) did absolutely nothing to establish input and output for a typical input-process-output program (unless it chose a different paradigm).
The formatting function has been combined with output in C++23, which provides [16] the std::print command as a replacement for printf(). As the format specification has become a part of the language syntax, C++ compiler is able to prevent invalid combinations of types and format specifiers in many cases.
Often the compiler selects the overload to call based on the type of the input arguments or it fails if the input arguments do not select an overload. Older and weakly-typed languages generally do not support overloading. Here is an example of overloading in C++, two functions Area that accept different types:
In the special case of a function with a single output or input/output parameter and no return value, function composition is possible if the output or input/output parameter (or in C/C++, its address) is also returned by the function, in which case the above becomes: