fmtlegacy/doc/index.rst

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Overview
========
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**{fmt}** is an open-source formatting library providing a fast and safe
alternative to C stdio and C++ iostreams.
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.. raw:: html
<div class="panel panel-default">
<div class="panel-heading">What users say:</div>
<div class="panel-body">
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Thanks for creating this library. Its been a hole in C++ for
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a long time. Ive used both <code>boost::format</code> and
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<code>loki::SPrintf</code>, and neither felt like the right answer.
This does.
</div>
</div>
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.. _format-api-intro:
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Format API
----------
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The format API is similar in spirit to the C ``printf`` family of function but
is safer, simpler and serveral times `faster
<http://zverovich.net/2013/09/07/integer-to-string-conversion-in-cplusplus.html>`_
than common standard library implementations.
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The `format string syntax <syntax.html>`_ is similar to the one used by
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`str.format <http://docs.python.org/3/library/stdtypes.html#str.format>`_ in
Python:
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.. code:: c++
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fmt::format("The answer is {}.", 42);
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The ``fmt::format`` function returns a string "The answer is 42.". You can use
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``fmt::memory_buffer`` to avoid constructing ``std::string``:
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.. code:: c++
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fmt::memory_buffer out;
format_to(out, "For a moment, {} happened.", "nothing");
out.data(); // returns a pointer to the formatted data
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The ``fmt::print`` function performs formatting and writes the result to a stream:
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.. code:: c++
fmt::print(stderr, "System error code = {}\n", errno);
The file argument can be omitted in which case the function prints to
``stdout``:
.. code:: c++
fmt::print("Don't {}\n", "panic");
The Format API also supports positional arguments useful for localization:
.. code:: c++
fmt::print("I'd rather be {1} than {0}.", "right", "happy");
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Named arguments can be created with ``fmt::arg``. This makes it easier to track
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what goes where when multiple arguments are being formatted:
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.. code:: c++
fmt::print("Hello, {name}! The answer is {number}. Goodbye, {name}.",
fmt::arg("name", "World"), fmt::arg("number", 42));
If your compiler supports C++11 user-defined literals, the suffix ``_a`` offers
an alternative, slightly terser syntax for named arguments:
.. code:: c++
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using namespace fmt::literals;
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fmt::print("Hello, {name}! The answer is {number}. Goodbye, {name}.",
"name"_a="World", "number"_a=42);
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.. _safety:
Safety
------
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The library is fully type safe, automatic memory management prevents buffer
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overflow, errors in format strings are reported using exceptions or at compile
time. For example, the code
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.. code:: c++
fmt::format("The answer is {:d}", "forty-two");
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throws a ``format_error`` exception with description "unknown format code 'd' for
string", because the argument ``"forty-two"`` is a string while the format code
``d`` only applies to integers, while
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.. code:: c++
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format(FMT_STRING("The answer is {:d}"), "forty-two");
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reports a compile-time error for the same reason on compilers that support
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relaxed ``constexpr``. See `here <api.html#c.fmt>`_ for details.
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The following code
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.. code:: c++
fmt::format("Cyrillic letter {}", L'\x42e');
produces a compile-time error because wide character ``L'\x42e'`` cannot be
formatted into a narrow string. You can use a wide format string instead:
.. code:: c++
fmt::format(L"Cyrillic letter {}", L'\x42e');
For comparison, writing a wide character to ``std::ostream`` results in
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its numeric value being written to the stream (i.e. 1070 instead of letter 'ю'
which is represented by ``L'\x42e'`` if we use Unicode) which is rarely what is
needed.
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Compact Binary Code
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-------------------
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The library is designed to produce compact per-call compiled code. For example
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(`godbolt <https://godbolt.org/g/TZU4KF>`_),
.. code:: c++
#include <fmt/core.h>
int main() {
fmt::print("The answer is {}.", 42);
}
compiles to just
.. code:: asm
main: # @main
sub rsp, 24
mov qword ptr [rsp], 42
mov rcx, rsp
mov edi, offset .L.str
mov esi, 17
mov edx, 2
call fmt::v5::vprint(fmt::v5::basic_string_view<char>, fmt::v5::format_args)
xor eax, eax
add rsp, 24
ret
.L.str:
.asciz "The answer is {}."
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.. _portability:
Portability
-----------
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The library is highly portable and relies only on a small set of C++11 features:
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* variadic templates
* type traits
* rvalue references
* decltype
* trailing return types
* deleted functions
* alias templates
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These are available since GCC 4.8, Clang 3.0 and MSVC 19.0 (2015). For older
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compilers use {fmt} `version 4.x
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<https://github.com/fmtlib/fmt/releases/tag/4.1.0>`_ which continues to be
maintained and only requires C++98.
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The output of all formatting functions is consistent across platforms. In
particular, formatting a floating-point infinity always gives ``inf`` while the
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output of ``printf`` is platform-dependent. For example,
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.. code::
fmt::print("{}", std::numeric_limits<double>::infinity());
always prints ``inf``.
.. _ease-of-use:
Ease of Use
-----------
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{fmt} has a small self-contained code base with the core library consisting of
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just three header files and no external dependencies.
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A permissive MIT `license <https://github.com/fmtlib/fmt#license>`_ allows
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using the library both in open-source and commercial projects.
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.. raw:: html
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<a class="btn btn-success" href="https://github.com/fmtlib/fmt">GitHub Repository</a>
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<div class="section footer">
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<iframe src="http://ghbtns.com/github-btn.html?user=fmtlib&amp;repo=fmt&amp;type=watch&amp;count=true"
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class="github-btn" width="100" height="20"></iframe>
</div>