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{fmt}
=====
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.. image:: https://travis-ci.org/fmtlib/fmt.png?branch=master
:target: https://travis-ci.org/fmtlib/fmt
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.. image:: https://ci.appveyor.com/api/projects/status/ehjkiefde6gucy1v
:target: https://ci.appveyor.com/project/vitaut/fmt
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.. image:: https://oss-fuzz-build-logs.storage.googleapis.com/badges/libfmt.svg
:alt: fmt is continuously fuzzed att oss-fuzz
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:target: https://bugs.chromium.org/p/oss-fuzz/issues/list?\
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colspec=ID%20Type%20Component%20Status%20Proj%20Reported%20Owner%20\
Summary&q=proj%3Dlibfmt&can=1
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.. image:: https://img.shields.io/badge/stackoverflow-fmt-blue.svg
:alt: Ask questions at StackOverflow with the tag fmt
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:target: https://stackoverflow.com/questions/tagged/fmt
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**{fmt}** is an open-source formatting library for C++.
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It can be used as a safe and fast alternative to (s)printf and iostreams.
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`Documentation <https://fmt.dev/latest/>`__
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Q&A: ask questions on `StackOverflow with the tag fmt
<https://stackoverflow.com/questions/tagged/fmt>`_.
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Features
--------
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* Simple `format API <https://fmt.dev/dev/api.html>`_ with positional arguments
for localization
* Implementation of `C++20 std::format
<https://en.cppreference.com/w/cpp/utility/format>`__
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* `Format string syntax <https://fmt.dev/dev/syntax.html>`_ similar to the one
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of Python's
`format <https://docs.python.org/3/library/stdtypes.html#str.format>`_
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* Safe `printf implementation
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<https://fmt.dev/latest/api.html#printf-formatting>`_ including
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the POSIX extension for positional arguments
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* Extensibility: support for user-defined types
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* High performance: faster than common standard library implementations of
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`printf <https://en.cppreference.com/w/cpp/io/c/fprintf>`_,
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iostreams, ``to_string`` and ``to_chars``, see `Speed tests`_ and
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`Converting a hundred million integers to strings per second
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<http://www.zverovich.net/2020/06/13/fast-int-to-string-revisited.html>`_
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* Small code size both in terms of source code (the minimum configuration
consists of just three header files, ``core.h``, ``format.h`` and
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``format-inl.h``) and compiled code. See `Compile time and code bloat`_
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* Reliability: the library has an extensive set of `unit tests
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<https://github.com/fmtlib/fmt/tree/master/test>`_ and is continuously fuzzed
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* Safety: the library is fully type safe, errors in format strings can be
reported at compile time, automatic memory management prevents buffer overflow
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errors
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* Ease of use: small self-contained code base, no external dependencies,
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permissive MIT `license
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<https://github.com/fmtlib/fmt/blob/master/LICENSE.rst>`_
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* `Portability <https://fmt.dev/latest/index.html#portability>`_ with
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consistent output across platforms and support for older compilers
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* Clean warning-free codebase even on high warning levels
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(``-Wall -Wextra -pedantic``)
* Locale-independence by default
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* Support for wide strings
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* Optional header-only configuration enabled with the ``FMT_HEADER_ONLY`` macro
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See the `documentation <https://fmt.dev/latest/>`_ for more details.
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Examples
--------
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Print ``Hello, world!`` to ``stdout``:
.. code:: c++
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#include <fmt/core.h>
int main() {
fmt::print("Hello, world!\n");
}
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Format a string using positional arguments:
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.. code:: c++
std::string s = fmt::format("I'd rather be {1} than {0}.", "right", "happy");
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// s == "I'd rather be happy than right."
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Check a format string at compile time:
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.. code:: c++
// test.cc
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#include <fmt/format.h>
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std::string s = format(FMT_STRING("{2}"), 42);
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.. code::
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$ c++ -Iinclude -std=c++14 test.cc
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...
test.cc:4:17: note: in instantiation of function template specialization 'fmt::v5::format<S, int>' requested here
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std::string s = format(FMT_STRING("{2}"), 42);
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^
include/fmt/core.h:778:19: note: non-constexpr function 'on_error' cannot be used in a constant expression
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ErrorHandler::on_error(message);
^
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include/fmt/format.h:2226:16: note: in call to '&checker.context_->on_error(&"argument index out of range"[0])'
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context_.on_error("argument index out of range");
^
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Use {fmt} as a safe portable replacement for ``itoa``
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(`godbolt <https://godbolt.org/g/NXmpU4>`_):
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.. code:: c++
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fmt::memory_buffer buf;
format_to(buf, "{}", 42); // replaces itoa(42, buffer, 10)
format_to(buf, "{:x}", 42); // replaces itoa(42, buffer, 16)
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// access the string with to_string(buf) or buf.data()
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Format objects of user-defined types via a simple `extension API
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<https://fmt.dev/latest/api.html#formatting-user-defined-types>`_:
.. code:: c++
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#include <fmt/format.h>
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struct date {
int year, month, day;
};
template <>
struct fmt::formatter<date> {
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constexpr auto parse(format_parse_context& ctx) { return ctx.begin(); }
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template <typename FormatContext>
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auto format(const date& d, FormatContext& ctx) {
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return format_to(ctx.out(), "{}-{}-{}", d.year, d.month, d.day);
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}
};
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std::string s = fmt::format("The date is {}", date{2012, 12, 9});
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// s == "The date is 2012-12-9"
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Create your own functions similar to `format
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<https://fmt.dev/latest/api.html#format>`_ and
`print <https://fmt.dev/latest/api.html#print>`_
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which take arbitrary arguments (`godbolt <https://godbolt.org/g/MHjHVf>`_):
.. code:: c++
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// Prints formatted error message.
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void vreport_error(const char* format, fmt::format_args args) {
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fmt::print("Error: ");
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fmt::vprint(format, args);
}
template <typename... Args>
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void report_error(const char* format, const Args & ... args) {
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vreport_error(format, fmt::make_format_args(args...));
}
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report_error("file not found: {}", path);
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Note that ``vreport_error`` is not parameterized on argument types which can
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improve compile times and reduce code size compared to a fully parameterized
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version.
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Benchmarks
----------
Speed tests
~~~~~~~~~~~
================= ============= ===========
Library Method Run Time, s
================= ============= ===========
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libc printf 1.04
libc++ std::ostream 3.05
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{fmt} 6.1.1 fmt::print 0.75
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Boost Format 1.67 boost::format 7.24
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Folly Format folly::format 2.23
================= ============= ===========
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{fmt} is the fastest of the benchmarked methods, ~35% faster than ``printf``.
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The above results were generated by building ``tinyformat_test.cpp`` on macOS
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10.14.6 with ``clang++ -O3 -DNDEBUG -DSPEED_TEST -DHAVE_FORMAT``, and taking the
best of three runs. In the test, the format string ``"%0.10f:%04d:%+g:%s:%p:%c:%%\n"``
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or equivalent is filled 2,000,000 times with output sent to ``/dev/null``; for
further details refer to the `source
<https://github.com/fmtlib/format-benchmark/blob/master/tinyformat_test.cpp>`_.
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{fmt} is up to 10x faster than ``std::ostringstream`` and ``sprintf`` on
floating-point formatting (`dtoa-benchmark <https://github.com/fmtlib/dtoa-benchmark>`_)
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and faster than `double-conversion <https://github.com/google/double-conversion>`_:
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.. image:: https://user-images.githubusercontent.com/576385/69767160-cdaca400-112f-11ea-9fc5-347c9f83caad.png
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:target: https://fmt.dev/unknown_mac64_clang10.0.html
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Compile time and code bloat
~~~~~~~~~~~~~~~~~~~~~~~~~~~
The script `bloat-test.py
<https://github.com/fmtlib/format-benchmark/blob/master/bloat-test.py>`_
from `format-benchmark <https://github.com/fmtlib/format-benchmark>`_
tests compile time and code bloat for nontrivial projects.
It generates 100 translation units and uses ``printf()`` or its alternative
five times in each to simulate a medium sized project. The resulting
executable size and compile time (Apple LLVM version 8.1.0 (clang-802.0.42),
macOS Sierra, best of three) is shown in the following tables.
**Optimized build (-O3)**
============= =============== ==================== ==================
Method Compile Time, s Executable size, KiB Stripped size, KiB
============= =============== ==================== ==================
printf 2.6 29 26
printf+string 16.4 29 26
iostreams 31.1 59 55
{fmt} 19.0 37 34
Boost Format 91.9 226 203
Folly Format 115.7 101 88
============= =============== ==================== ==================
As you can see, {fmt} has 60% less overhead in terms of resulting binary code
size compared to iostreams and comes pretty close to ``printf``. Boost Format
and Folly Format have the largest overheads.
``printf+string`` is the same as ``printf`` but with extra ``<string>``
include to measure the overhead of the latter.
**Non-optimized build**
============= =============== ==================== ==================
Method Compile Time, s Executable size, KiB Stripped size, KiB
============= =============== ==================== ==================
printf 2.2 33 30
printf+string 16.0 33 30
iostreams 28.3 56 52
{fmt} 18.2 59 50
Boost Format 54.1 365 303
Folly Format 79.9 445 430
============= =============== ==================== ==================
``libc``, ``lib(std)c++`` and ``libfmt`` are all linked as shared libraries to
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compare formatting function overhead only. Boost Format is a
header-only library so it doesn't provide any linkage options.
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Running the tests
~~~~~~~~~~~~~~~~~
Please refer to `Building the library`__ for the instructions on how to build
the library and run the unit tests.
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__ https://fmt.dev/latest/usage.html#building-the-library
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Benchmarks reside in a separate repository,
`format-benchmarks <https://github.com/fmtlib/format-benchmark>`_,
so to run the benchmarks you first need to clone this repository and
generate Makefiles with CMake::
$ git clone --recursive https://github.com/fmtlib/format-benchmark.git
$ cd format-benchmark
$ cmake .
Then you can run the speed test::
$ make speed-test
or the bloat test::
$ make bloat-test
Projects using this library
---------------------------
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* `0 A.D. <https://play0ad.com/>`_: A free, open-source, cross-platform
real-time strategy game
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* `AMPL/MP <https://github.com/ampl/mp>`_:
An open-source library for mathematical programming
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* `Aseprite <https://github.com/aseprite/aseprite>`_:
Animated sprite editor & pixel art tool
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* `AvioBook <https://www.aviobook.aero/en>`_: A comprehensive aircraft
operations suite
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* `Celestia <https://celestia.space/>`_: Real-time 3D visualization of space
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* `Ceph <https://ceph.com/>`_: A scalable distributed storage system
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* `ccache <https://ccache.dev/>`_: A compiler cache
* `ClickHouse <https://github.com/ClickHouse/ClickHouse>`_: analytical database management system
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* `CUAUV <http://cuauv.org/>`_: Cornell University's autonomous underwater
vehicle
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* `Drake <https://drake.mit.edu/>`_: A planning, control, and analysis toolbox
for nonlinear dynamical systems (MIT)
* `Envoy <https://lyft.github.io/envoy/>`_: C++ L7 proxy and communication bus
(Lyft)
* `FiveM <https://fivem.net/>`_: a modification framework for GTA V
* `Folly <https://github.com/facebook/folly>`_: Facebook open-source library
* `HarpyWar/pvpgn <https://github.com/pvpgn/pvpgn-server>`_:
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Player vs Player Gaming Network with tweaks
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* `KBEngine <https://kbengine.org/>`_: An open-source MMOG server engine
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* `Keypirinha <https://keypirinha.com/>`_: A semantic launcher for Windows
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* `Kodi <https://kodi.tv/>`_ (formerly xbmc): Home theater software
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* `Knuth <https://kth.cash/>`_: High-performance Bitcoin full-node
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* `Microsoft Verona <https://github.com/microsoft/verona>`_:
Research programming language for concurrent ownership
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* `MongoDB <https://mongodb.com/>`_: Distributed document database
* `MongoDB Smasher <https://github.com/duckie/mongo_smasher>`_: A small tool to
generate randomized datasets
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* `OpenSpace <https://openspaceproject.com/>`_: An open-source
astrovisualization framework
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* `PenUltima Online (POL) <https://www.polserver.com/>`_:
An MMO server, compatible with most Ultima Online clients
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* `PyTorch <https://github.com/pytorch/pytorch>`_: An open-source machine
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learning library
* `quasardb <https://www.quasardb.net/>`_: A distributed, high-performance,
associative database
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* `readpe <https://bitbucket.org/sys_dev/readpe>`_: Read Portable Executable
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* `redis-cerberus <https://github.com/HunanTV/redis-cerberus>`_: A Redis cluster
proxy
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* `redpanda <https://vectorized.io/redpanda>`_: A 10x faster Kafka® replacement
for mission critical systems written in C++
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* `rpclib <http://rpclib.net/>`_: A modern C++ msgpack-RPC server and client
library
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* `Salesforce Analytics Cloud
<https://www.salesforce.com/analytics-cloud/overview/>`_:
Business intelligence software
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* `Scylla <https://www.scylladb.com/>`_: A Cassandra-compatible NoSQL data store
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that can handle 1 million transactions per second on a single server
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* `Seastar <http://www.seastar-project.org/>`_: An advanced, open-source C++
framework for high-performance server applications on modern hardware
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* `spdlog <https://github.com/gabime/spdlog>`_: Super fast C++ logging library
* `Stellar <https://www.stellar.org/>`_: Financial platform
* `Touch Surgery <https://www.touchsurgery.com/>`_: Surgery simulator
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* `TrinityCore <https://github.com/TrinityCore/TrinityCore>`_: Open-source
MMORPG framework
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* `Windows Terminal <https://github.com/microsoft/terminal>`_: The new Windows
Terminal
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`More... <https://github.com/search?q=fmtlib&type=Code>`_
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If you are aware of other projects using this library, please let me know
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by `email <mailto:victor.zverovich@gmail.com>`_ or by submitting an
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`issue <https://github.com/fmtlib/fmt/issues>`_.
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Motivation
----------
So why yet another formatting library?
There are plenty of methods for doing this task, from standard ones like
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the printf family of function and iostreams to Boost Format and FastFormat
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libraries. The reason for creating a new library is that every existing
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solution that I found either had serious issues or didn't provide
all the features I needed.
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printf
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~~~~~~
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The good thing about ``printf`` is that it is pretty fast and readily available
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being a part of the C standard library. The main drawback is that it
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doesn't support user-defined types. ``printf`` also has safety issues although
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they are somewhat mitigated with `__attribute__ ((format (printf, ...))
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<https://gcc.gnu.org/onlinedocs/gcc/Function-Attributes.html>`_ in GCC.
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There is a POSIX extension that adds positional arguments required for
`i18n <https://en.wikipedia.org/wiki/Internationalization_and_localization>`_
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to ``printf`` but it is not a part of C99 and may not be available on some
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platforms.
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iostreams
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~~~~~~~~~
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The main issue with iostreams is best illustrated with an example:
.. code:: c++
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std::cout << std::setprecision(2) << std::fixed << 1.23456 << "\n";
which is a lot of typing compared to printf:
.. code:: c++
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printf("%.2f\n", 1.23456);
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Matthew Wilson, the author of FastFormat, called this "chevron hell". iostreams
don't support positional arguments by design.
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The good part is that iostreams support user-defined types and are safe although
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error handling is awkward.
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Boost Format
~~~~~~~~~~~~
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This is a very powerful library which supports both ``printf``-like format
strings and positional arguments. Its main drawback is performance. According to
various benchmarks it is much slower than other methods considered here. Boost
Format also has excessive build times and severe code bloat issues (see
`Benchmarks`_).
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FastFormat
~~~~~~~~~~
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This is an interesting library which is fast, safe and has positional arguments.
However, it has significant limitations, citing its author:
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Three features that have no hope of being accommodated within the
current design are:
* Leading zeros (or any other non-space padding)
* Octal/hexadecimal encoding
* Runtime width/alignment specification
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It is also quite big and has a heavy dependency, STLSoft, which might be too
restrictive for using it in some projects.
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Boost Spirit.Karma
~~~~~~~~~~~~~~~~~~
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This is not really a formatting library but I decided to include it here for
completeness. As iostreams, it suffers from the problem of mixing verbatim text
with arguments. The library is pretty fast, but slower on integer formatting
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than ``fmt::format_to`` with format string compilation on Karma's own benchmark,
see `Converting a hundred million integers to strings per second
<http://www.zverovich.net/2020/06/13/fast-int-to-string-revisited.html>`_.
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2012-12-12 19:44:41 +04:00
License
-------
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{fmt} is distributed under the MIT `license
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<https://github.com/fmtlib/fmt/blob/master/LICENSE.rst>`_.
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Documentation License
---------------------
The `Format String Syntax <https://fmt.dev/latest/syntax.html>`_
section in the documentation is based on the one from Python `string module
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documentation <https://docs.python.org/3/library/string.html#module-string>`_.
For this reason the documentation is distributed under the Python Software
Foundation license available in `doc/python-license.txt
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<https://raw.github.com/fmtlib/fmt/master/doc/python-license.txt>`_.
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It only applies if you distribute the documentation of {fmt}.
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Maintainers
-----------
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The {fmt} library is maintained by Victor Zverovich (`vitaut
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<https://github.com/vitaut>`_) and Jonathan Müller (`foonathan
<https://github.com/foonathan>`_) with contributions from many other people.
See `Contributors <https://github.com/fmtlib/fmt/graphs/contributors>`_ and
`Releases <https://github.com/fmtlib/fmt/releases>`_ for some of the names.
Let us know if your contribution is not listed or mentioned incorrectly and
we'll make it right.