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...

77 Commits

Author SHA1 Message Date
Fedor Osetrov 35d8af6ce2 fix ci: turn on import std tests, fix libc++ build (#96)
This PR:
- enables tests with `import std` usage in CI
- add all tests to build with cmake_subdir_test (because there was only a subset of tests supported)
- fixes tests build with `libc++`
- disables some tests with wchar_t with 'libc++'
2026-04-24 18:03:48 +03:00
Andrey Semashev 4b0d10a1f3 Remove dependencies on Boost.StaticAssert. (#95)
Boost.StaticAssert has been merged into Boost.Config, so remove
the dependency.
2026-01-26 17:58:24 +03:00
Antony Polukhin 184f7e43f0 Update copyright years 2026-01-04 11:10:09 +03:00
dependabot[bot] 4cc0fa77b4 Bump actions/checkout from 2 to 6 (#94)
Bumps [actions/checkout](https://github.com/actions/checkout) from 2 to 6.
- [Release notes](https://github.com/actions/checkout/releases)
- [Changelog](https://github.com/actions/checkout/blob/main/CHANGELOG.md)
- [Commits](https://github.com/actions/checkout/compare/v2...v6)

---
updated-dependencies:
- dependency-name: actions/checkout
  dependency-version: '6'
  dependency-type: direct:production
  update-type: version-update:semver-major
...

Signed-off-by: dependabot[bot] <support@github.com>
Co-authored-by: dependabot[bot] <49699333+dependabot[bot]@users.noreply.github.com>
2025-12-26 22:05:36 +03:00
Antony Polukhin 4d1e18cf4c Add dependabot 2025-12-24 20:21:04 +03:00
Antony Polukhin d57771ecf1 CI fixes (#93) 2025-12-23 20:25:26 +03:00
Antony Polukhin 1b804c7a31 Implement initial version of C++20 module boost.lexical_cast (#84) 2025-12-11 22:17:21 +03:00
Antony Polukhin 275844e651 Fix regression in unsigned short to wstring casting without wchar_t b… (#92)
…uiltin type

Fixes: https://github.com/boostorg/lexical_cast/issues/89
2025-10-16 09:15:33 +03:00
Antony Polukhin 1084d98719 More tests and fixes for floating-point special value conversions to integers and bool (#91)
Fixes: https://github.com/boostorg/lexical_cast/issues/81
2025-10-11 17:36:58 +03:00
Antony Polukhin 7f60da84c3 Run all the tests in CMake, add CMake runs into CI. Drop dependency on Boost.TypeTraits (#90) 2025-10-07 20:25:13 +03:00
Romain Geissler @ Amadeus 8fc8a19931 Reduce dependency on Boost.TypeTraits now that C++ >= 11 is required. (#87)
This allows to workaround the following error when using clang >= 21 on the following code:

```
#include <string>
#include <iostream>
#include "boost/lexical_cast.hpp"

enum SomeEnum
{
    OneValue
};

int main()
{
    std::cout << boost::lexical_cast<std::string>(SomeEnum::OneValue) << std::endl;
}
```

Results in:

```
/app/boost/include/boost/type_traits/is_signed.hpp:37:25: error: in-class initializer for static data member is not a constant expression
   37 |    static const no_cv_t minus_one = (static_cast<no_cv_t>(-1));

... (snapped)

/app/boost/include/boost/type_traits/is_signed.hpp:37:38: note: integer value -1 is outside the valid range of values [0, 1] for the enumeration type 'SomeEnum'
   37 |    static const no_cv_t minus_one = (static_cast<no_cv_t>(-1));
```
2025-10-05 12:14:47 +03:00
Antony Polukhin 4862e296d0 CI fixes (#88) 2025-09-08 09:02:39 +03:00
bmagistro a16040a73c Switch from implicit to explicit type conversion (#85)
Signed-off-by: Ben Magistro <koncept1@gmail.com>
2025-08-22 10:33:58 +03:00
ivanpanch 46ee1c3528 Fix mistakes (#86) 2025-08-22 10:32:30 +03:00
Antony Polukhin 5326b49475 Do not permit implicit conversions to floating point types in decltype(shl_real_type(x, buffer)) substitution (fixes #82) (#83) 2025-05-13 19:32:21 +03:00
Antony Polukhin 1c89e3a56c Update copyright years 2025-01-05 19:41:20 +03:00
René Ferdinand Rivera Morell 71a184d20f Add support for modular build structure. (#78)
This is part of the effort to make the Boost libraries "modular" for build and consumption. See https://lists.boost.org/Archives/boost/2024/01/255704.php and https://github.com/grafikrobot/boost-b2-modular/blob/b2-modular/README.adoc for more information.

This PR depends on the following other PRs being merged to both develop and master branches of the respective repos:

- https://github.com/boostorg/boost/pull/854
2024-08-25 09:57:23 +03:00
Antony Polukhin 7f121f8ce3 Drop Boost.Integer dependency (#79) 2024-08-14 21:15:33 +03:00
Antony Polukhin ff2f0496b0 Fixed conversion of std::basic_string_view and boost::basic_string_view containing one or more \0 characters.
Issue was introduced in 1.85.0
2024-07-07 20:08:13 +03:00
Antony Polukhin 7861401ac4 Always use the boost::core::*printf functions and rely on Boost.Core workarounds (#77) 2024-04-13 09:55:14 +03:00
René Ferdinand Rivera Morell 92e55e842e Add macOS testing. (#75)
Fixes https://github.com/boostorg/lexical_cast/issues/76
---------

Co-authored-by: Antony Polukhin <antoshkka@gmail.com>
2024-04-12 19:12:54 +03:00
Antony Polukhin 02e5821ab3 Do not use custom traits from input/output types as it leads to linktime or runtime errors (fixes #46) (#74) 2024-02-15 11:50:10 +03:00
Antony Polukhin 3433c34b43 Suppress the unsigned-integer-overflow sanitizer warnings and do not recover from the integer sanitizer errors (fixes #45) (#73) 2024-02-15 09:24:44 +03:00
Antony Polukhin 518e28ff79 Dropped dependency on Boost.NumericConversion and Boost.MPL (#72)
Fix some corner cases of floating-point conversions (infinities to infinities of smaller type, fractional numbers to integers)
2024-02-13 10:55:25 +03:00
Antony Polukhin fc5ffb67f8 Simplify the code by removing the explicit copy optimization that is not profitable on modern compilers (#71) 2024-01-28 14:05:12 +03:00
Antony Polukhin 31e0fcde67 Optimizations for std::basic_string_view ans boost::basic_string_view (ref https://github.com/boostorg/lexical_cast/issues/30) (#70) 2024-01-26 20:16:50 +03:00
Antony Polukhin f0862bb60d Significant rewrite of the internal logic to separate optimized and C++ Standard Library IO-based streams (#69)
* C++ Standard Library based streams now constructed in less cases leading to **better performance**;
* less template instantiations and simpler maintainance;
* support for `volatile` input types was dropped, following the C++ Standard Library trend.
2024-01-24 22:35:41 +03:00
Antony Polukhin 4bf37fb6ce Do not reinterpret_cast boost:: and std::array and do not check their sizes (refs #64) (#68) 2024-01-21 14:59:43 +03:00
Antony Polukhin 621b9cf431 Merge branch 'develop' of github.com:boostorg/lexical_cast into develop 2024-01-21 14:49:22 +03:00
Antony Polukhin 92ef7fdeaf Update performance measures 2024-01-21 14:49:07 +03:00
Antony Polukhin fe9ee41f5c Reduce template instantiations count by using template aliases (#67) 2024-01-21 14:23:33 +03:00
Antony Polukhin 90ec909dcf Update copyright years 2024-01-07 13:22:00 +03:00
Antony Polukhin a713e09eab Update copyright years 2024-01-07 13:06:23 +03:00
Antony Polukhin 1ca93a8e27 Drop Boost.Range dependecy (#63) 2023-09-10 16:52:10 +03:00
Antony Polukhin c65a020401 Use BOOST_OVERRIDE to satisfy GCC-4.6 (refs #60) 2023-09-09 15:34:52 +03:00
Antony Polukhin 515e5988b2 Minor changes to satisfy GCC-4.6 (refs #60) 2023-09-03 15:00:21 +03:00
Antony Polukhin af5ce2a5fe Drop C++03 and C++98 support (#62)
Also update tests to not use Boost.Test
2023-09-02 17:42:14 +03:00
Antony Polukhin 844a4d1640 Merge pull request #59 from Romain-Geissler-1A/fix-warning
Fix -Wdeprecated-copy-with-dtor warnings with clang.
2023-08-12 10:58:56 +03:00
Romain Geissler 20db4f8d32 Fix -Wdeprecated-copy-with-dtor warnings with clang.
/data/mwrep/res/osp/Boost/23-0-0-0/include/boost/lexical_cast/bad_lexical_cast.hpp:59:9: error: definition of implicit copy constructor for 'bad_lexical_cast' is deprecated because it has a user-declared destructor
 [-Werror,-Wdeprecated-copy-with-dtor]
        ~bad_lexical_cast() BOOST_NOEXCEPT_OR_NOTHROW BOOST_OVERRIDE = default;
2023-06-02 13:20:24 +00:00
Antony Polukhin 35941953d1 update CI setup (1) 2023-05-21 12:42:50 +03:00
Antony Polukhin 4850d71673 update CI setup 2023-05-21 09:55:36 +03:00
Antony Polukhin 42518efe39 add C++03 deprecation warnings 2023-05-14 20:02:49 +03:00
Antony Polukhin 32e9b6d2a0 Update copyright years 2023-01-19 10:00:15 +03:00
Antony Polukhin 345e1549b4 Merge pull request #56 from mborland/develop
Fix for sprintf deprecation message
2023-01-17 15:25:15 +03:00
Matt Borland b7fd03b19d Replace sprintf with Boost.Core snprintf 2022-12-08 18:32:56 -08:00
Antony Polukhin 81148c50f7 Revert "Merge pull request #51 from biodranik/sprintf-warning-fix"
This reverts commit e67d186e0d, reversing
changes made to a9f2961159.
2022-09-03 07:57:49 +03:00
Antony Polukhin cfd466eacd Remove MacOS run from CI as it almost always hits CI limits 2022-09-02 19:17:08 +03:00
Antony Polukhin e49ad59570 Merge pull request #54 from boostorg/antoshkka/update-ci-win2022
Update CI
2022-09-02 17:34:52 +03:00
Antony Polukhin d54f16a0af update ci 2022-09-02 16:21:11 +03:00
Antony Polukhin 403d79edc7 fix compilation for casting volatile arithmetic types
Fixes #50
2022-09-01 13:53:46 +03:00
Antony Polukhin 9e287d6624 Merge pull request #53 from fanquake/core_noncopyable
refactor: use core/noncopyable over boost/noncopyable
2022-09-01 11:45:32 +03:00
Antony Polukhin e67d186e0d Merge pull request #51 from biodranik/sprintf-warning-fix
Replaced sprintf with snprintf to silent the security deprecated warning in Xcode 14
2022-08-31 21:27:53 +03:00
fanquake b302988907 refactor: use core/noncopyable over boost/noncopyable
The later is deprecated:
```cpp
// The header file at this path is deprecated;
// use boost/core/noncopyable.hpp instead.

include <boost/core/noncopyable.hpp>
```
2022-08-24 12:34:18 +01:00
Alexander Borsuk 3f0026eec0 Replaced sprintf with snprintf to silent the security deprecated warning in Xcode 14 2022-06-10 23:51:41 +02:00
Antony Polukhin a9f2961159 update copyright years 2022-01-30 13:03:00 +03:00
Antony Polukhin 00197e2f97 update CI setups: remove outdated and broken setups, avoid using TravisCI 2021-09-11 14:05:01 +03:00
Antony Polukhin a8e2a9458b Remove TravisCI runs 2021-09-11 12:43:43 +03:00
Antony Polukhin 934858fbdc do not gather coverage in GithubActions CI runs 2021-05-04 19:27:57 +03:00
Antony Polukhin b7a3039fa1 remove obsolete link from Readme 2021-05-04 11:29:13 +03:00
Antony Polukhin d47bbfc79b add GithubActions CI step to set up locaes 2021-05-04 11:28:57 +03:00
Antony Polukhin 650958a9da remove unused Drone CI 2021-05-04 10:11:42 +03:00
Antony Polukhin 2b37bce120 test the library with different locales in GithubActions CI 2021-05-04 10:11:07 +03:00
Antony Polukhin 17606ef8a6 update coverage logic in TravisCI script 2021-05-04 10:07:06 +03:00
Antony Polukhin f071fb83cf typo fix 2021-05-03 19:10:31 +03:00
Antony Polukhin 28a3b0e6f8 add new badges to Readme and use HTTPS links 2021-05-03 17:37:51 +03:00
Antony Polukhin ce73b6adfc do not test 128bit integral types on MacOs because of the Apple Clang issue 2021-05-03 17:36:53 +03:00
Antony Polukhin 7a4f79ed52 fix UB: assignemnt to an int of a floating point value that is out of representable range for int 2021-05-02 20:26:45 +03:00
Antony Polukhin 1f94291f4e do not run sanitizers on MAcOs because the CI run hangs 2021-05-02 20:22:51 +03:00
Antony Polukhin 88f5967805 fix tests compilation on C++20 (wide char operator<< overloads are deleted) 2021-05-02 17:38:32 +03:00
Antony Polukhin eb3bda9563 fixes for wide char tests 2021-05-02 13:13:30 +03:00
Antony Polukhin c95b9adbab fixes for CI runs 2021-04-26 20:56:15 +03:00
Antony Polukhin 945c095a4b do not use Boost.Math in tests 2021-04-26 10:44:22 +03:00
Antony Polukhin f0e2fa3dd3 make tests work in C++03 modes 2021-04-26 10:12:28 +03:00
Antony Polukhin 6e868f964d copy GithubActions from Boost.Conversion 2021-04-25 21:20:43 +03:00
Antony Polukhin f1453fb675 Merge pull request #44 from sdarwin/githubactions
GitHub Actions config
2021-04-18 14:10:46 +03:00
Peter Dimov 90e8812d59 Update CMakeLists.txt 2021-03-19 01:11:06 +02:00
sdarwin c797209351 Add GitHub Actions config [ci skip] 2021-03-04 18:22:53 +00:00
72 changed files with 4141 additions and 3551 deletions
-24
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@@ -1,24 +0,0 @@
# Use, modification, and distribution are
# subject to the Boost Software License, Version 1.0. (See accompanying
# file LICENSE.txt)
#
# Copyright Rene Rivera 2020.
# For Drone CI we use the Starlark scripting language to reduce duplication.
# As the yaml syntax for Drone CI is rather limited.
#
#
globalenv={}
linuxglobalimage="cppalliance/droneubuntu1604:1"
windowsglobalimage="cppalliance/dronevs2019"
def main(ctx):
return [
linux_cxx("GCC-6", "g++", packages="g++-6", buildtype="empty-e994848107", buildscript="drone", image=linuxglobalimage, environment={'B2_ARGS': 'cxxstd=98,03,11,14,1y toolset=gcc-6 cxxflags="--coverage -fsanitize=address,leak,undefined -fno-sanitize-recover=undefined -DBOOST_TRAVISCI_BUILD" linkflags="--coverage -lasan -lubsan" "testing.launcher=LD_PRELOAD=/usr/lib/x86_64-linux-gnu/libasan.so.3"', 'GCOVTOOL': 'gcov-6', 'DRONE_JOB_UUID': 'b6589fc6ab'}, globalenv=globalenv),
linux_cxx("GCC-8", "g++", packages="g++-8", buildtype="empty-e994848107", buildscript="drone", image=linuxglobalimage, environment={'B2_ARGS': 'cxxstd=98,03,11,14,1z toolset=gcc-8 cxxflags="--coverage -fsanitize=address,leak,undefined -fno-sanitize-recover=undefined -DBOOST_TRAVISCI_BUILD" linkflags="--coverage -lasan -lubsan" "testing.launcher=LD_PRELOAD=/usr/lib/x86_64-linux-gnu/libasan.so.5"', 'GCOVTOOL': 'gcov-8', 'DRONE_JOB_UUID': '356a192b79'}, globalenv=globalenv, privileged=True),
linux_cxx("GCC-4.6", "g++", packages="g++-4.6", buildtype="empty-e994848107", buildscript="drone", image=linuxglobalimage, environment={'B2_ARGS': 'cxxstd=98,0x toolset=gcc-4.6 cxxflags="--coverage -DBOOST_TRAVISCI_BUILD" linkflags="--coverage"', 'GCOVTOOL': 'gcov-4.6', 'DRONE_JOB_UUID': 'da4b9237ba'}, globalenv=globalenv),
linux_cxx("Clang-8", "g++", packages="clang-8", llvm_os="xenial", llvm_ver="8", buildtype="empty-e994848107", buildscript="drone", image=linuxglobalimage, environment={'B2_ARGS': 'cxxstd=98,03,11,14,1z toolset=clang-8 cxxflags="--coverage -fsanitize=address,leak -DBOOST_TRAVISCI_BUILD" linkflags="--coverage -fsanitize=address,leak"', 'GCOVTOOL': 'gcov_for_clang.sh', 'DRONE_JOB_UUID': '77de68daec'}, globalenv=globalenv, privileged=True),
]
# from https://github.com/boostorg/boost-ci
load("@boost_ci//ci/drone/:functions.star", "linux_cxx","windows_cxx","osx_cxx","freebsd_cxx")
-30
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@@ -1,30 +0,0 @@
#!/bin/bash
# Copyright 2020 Rene Rivera, Sam Darwin
# Distributed under the Boost Software License, Version 1.0.
# (See accompanying file LICENSE.txt or copy at http://boost.org/LICENSE_1_0.txt)
if [ "$DRONE_JOB_UUID" = "b6589fc6ab" ] || [ "$DRONE_JOB_UUID" = "356a192b79" ] || [ "$DRONE_JOB_UUID" = "da4b9237ba" ] || [ "$DRONE_JOB_UUID" = "77de68daec" ] ; then
mkdir -p $TRAVIS_BUILD_DIR/coverals
find ../../../bin.v2/ -name "*.gcda" -exec cp "{}" $TRAVIS_BUILD_DIR/coverals/ \;
find ../../../bin.v2/ -name "*.gcno" -exec cp "{}" $TRAVIS_BUILD_DIR/coverals/ \;
find ../../../bin.v2/ -name "*.da" -exec cp "{}" $TRAVIS_BUILD_DIR/coverals/ \;
find ../../../bin.v2/ -name "*.no" -exec cp "{}" $TRAVIS_BUILD_DIR/coverals/ \;
wget https://github.com/linux-test-project/lcov/archive/v1.14.zip
unzip v1.14.zip
LCOV="`pwd`/lcov-1.14/bin/lcov --gcov-tool $GCOVTOOL"
mkdir -p ~/.local/bin
echo -e '#!/bin/bash\nexec llvm-cov gcov "$@"' > ~/.local/bin/gcov_for_clang.sh
chmod 755 ~/.local/bin/gcov_for_clang.sh
echo "$LCOV --directory $TRAVIS_BUILD_DIR/coverals --base-directory `pwd` --capture --output-file $TRAVIS_BUILD_DIR/coverals/coverage.info"
$LCOV --directory $TRAVIS_BUILD_DIR/coverals --base-directory `pwd` --capture --output-file $TRAVIS_BUILD_DIR/coverals/coverage.info
cd $BOOST
$LCOV --remove $TRAVIS_BUILD_DIR/coverals/coverage.info "/usr*" "*/$BOOST_LIBS_FOLDER/test/*" $IGNORE_COVERAGE "*/$BOOST_LIBS_FOLDER/tests/*" "*/$BOOST_LIBS_FOLDER/examples/*" "*/$BOOST_LIBS_FOLDER/example/*" -o $TRAVIS_BUILD_DIR/coverals/coverage.info
OTHER_LIBS=`grep "submodule .*" .gitmodules | sed 's/\[submodule\ "\(.*\)"\]/"\*\/boost\/\1\.hpp" "\*\/boost\/\1\/\*" "\*\/libs\/\1\/src\/\*"/g'| sed "/\"\*\/boost\/$BOOST_LIBS_FOLDER\/\*\"/d" | sed ':a;N;$!ba;s/\n/ /g'`
echo $OTHER_LIBS
eval "$LCOV --remove $TRAVIS_BUILD_DIR/coverals/coverage.info $OTHER_LIBS -o $TRAVIS_BUILD_DIR/coverals/coverage.info"
cd $TRAVIS_BUILD_DIR
gem install coveralls-lcov || echo "ERROR. Failed to install coveralls-lcov"
coveralls-lcov coverals/coverage.info
fi
-37
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@@ -1,37 +0,0 @@
#!/bin/bash
# Copyright 2020 Rene Rivera, Sam Darwin
# Distributed under the Boost Software License, Version 1.0.
# (See accompanying file LICENSE.txt or copy at http://boost.org/LICENSE_1_0.txt)
if [ "$DRONE_JOB_UUID" = "b6589fc6ab" ] || [ "$DRONE_JOB_UUID" = "356a192b79" ] || [ "$DRONE_JOB_UUID" = "da4b9237ba" ] || [ "$DRONE_JOB_UUID" = "77de68daec" ] ; then
BOOST_BRANCH=develop && [ "$TRAVIS_BRANCH" == "master" ] && BOOST_BRANCH=master || true
IGNORE_COVERAGE='*/filesystem/src/*'
BOOST_LIBS_FOLDER=$(basename $REPO_NAME)
UBSAN_OPTIONS=print_stacktrace=1
LSAN_OPTIONS=verbosity=1:log_threads=1
BOOST=$HOME/boost-local
git clone -b $BOOST_BRANCH --depth 10 https://github.com/boostorg/boost.git $BOOST
cd $BOOST
git submodule update --init --depth 10 --jobs 2 tools/build tools/boostdep tools/inspect libs/filesystem libs/variant
python tools/boostdep/depinst/depinst.py --git_args "--depth 10 --jobs 2" $BOOST/libs/filesystem
echo "Testing $BOOST/libs/$BOOST_LIBS_FOLDER moved from $TRAVIS_BUILD_DIR, branch $BOOST_BRANCH"
rm -rf $BOOST/libs/$BOOST_LIBS_FOLDER || true
cp -rp $TRAVIS_BUILD_DIR $BOOST/libs/$BOOST_LIBS_FOLDER
python tools/boostdep/depinst/depinst.py --git_args "--depth 10 --jobs 2" $BOOST_LIBS_FOLDER
git status
./bootstrap.sh
./b2 headers
./b2 -j4 variant=debug tools/inspect/build
echo "using gcc ;" >> ~/user-config.jam
echo "using clang ;" >> ~/user-config.jam
echo "using clang : 3.8 : clang++-3.8 ;" >> ~/user-config.jam
echo "using clang : 4 : clang++-4.0 ;" >> ~/user-config.jam
echo "using clang : 5 : clang++-5.0 ;" >> ~/user-config.jam
echo "using clang : 6 : clang++-6.0 ;" >> ~/user-config.jam
echo "using clang : 7 : clang++-7.0 ;" >> ~/user-config.jam
echo "using clang : 8 : clang++-8 ;" >> ~/user-config.jam
echo "using clang : libc++ : clang++-libc++ ;" >> ~/user-config.jam
cd $BOOST/libs/$BOOST_LIBS_FOLDER/test/
fi
-36
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@@ -1,36 +0,0 @@
#!/bin/bash
# Copyright 2020 Rene Rivera, Sam Darwin
# Distributed under the Boost Software License, Version 1.0.
# (See accompanying file LICENSE.txt or copy at http://boost.org/LICENSE_1_0.txt)
set -e
set -x
export TRAVIS_BUILD_DIR=$(pwd)
export DRONE_BUILD_DIR=$(pwd)
export TRAVIS_BRANCH=$DRONE_BRANCH
export VCS_COMMIT_ID=$DRONE_COMMIT
export GIT_COMMIT=$DRONE_COMMIT
export REPO_NAME=$DRONE_REPO
export PATH=~/.local/bin:/usr/local/bin:$PATH
if [ "$DRONE_JOB_BUILDTYPE" == "empty-e994848107" ]; then
echo '==================================> BEFORE_INSTALL'
. .drone/before-install.sh
echo '==================================> INSTALL'
echo '==================================> SCRIPT'
sh -c "../../../b2 -j2 $B2_ARGS"
../../../dist/bin/inspect ..
echo '==================================> AFTER_SUCCESS'
. $DRONE_BUILD_DIR/.drone/after-success.sh
fi
+11
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@@ -0,0 +1,11 @@
# To get started with Dependabot version updates, you'll need to specify which
# package ecosystems to update and where the package manifests are located.
# Please see the documentation for all configuration options:
# https://docs.github.com/code-security/dependabot/dependabot-version-updates/configuration-options-for-the-dependabot.yml-file
version: 2
updates:
- package-ecosystem: "github-actions" # See documentation for possible values
directory: "/" # Location of package manifests
schedule:
interval: "weekly"
+260
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@@ -0,0 +1,260 @@
name: CI
on:
pull_request:
push:
branches:
- master
- develop
- feature/**
env:
UBSAN_OPTIONS: print_stacktrace=1
jobs:
posix:
strategy:
fail-fast: false
matrix:
include:
- toolset: gcc-14 # Do not remove! It is the only toolset that tests CMake tests down below
cxxstd: "03,11,14,17,20"
os: ubuntu-24.04
compiler: g++-14
- toolset: gcc-12
cxxstd: "03,11,14,17,2a"
os: ubuntu-22.04
cxxflags: "cxxflags=--coverage -fsanitize=address,leak,undefined -fno-sanitize-recover=undefined"
linkflags: "linkflags=--coverage -lasan -lubsan"
gcov_tool: "gcov-12"
launcher: "testing.launcher=LD_PRELOAD=/usr/lib/x86_64-linux-gnu/libasan.so.8"
- toolset: gcc-11
cxxstd: "03,11,14,17,2a"
os: ubuntu-22.04
- toolset: clang
compiler: clang++-14
cxxstd: "03,11,14,17,2a"
os: ubuntu-22.04
- toolset: clang
cxxstd: "11,14,17,20"
os: macos-latest
- toolset: clang-19
cxxstd: "20,23"
os: ubuntu-24.04
compiler: clang++-19
install: clang-19 llvm-19 libclang-rt-19-dev libc++-19-dev libc++abi-19-dev clang-tools-19
runs-on: ${{matrix.os}}
steps:
- uses: actions/checkout@v6
- name: Install packages
if: matrix.install
run: sudo apt install ${{matrix.install}}
- name: Setup Boost
run: |
echo GITHUB_REPOSITORY: $GITHUB_REPOSITORY
LIBRARY=${GITHUB_REPOSITORY#*/}
echo LIBRARY: $LIBRARY
echo "LIBRARY=$LIBRARY" >> $GITHUB_ENV
echo GITHUB_BASE_REF: $GITHUB_BASE_REF
echo GITHUB_REF: $GITHUB_REF
REF=${GITHUB_BASE_REF:-$GITHUB_REF}
REF=${REF#refs/heads/}
echo REF: $REF
BOOST_BRANCH=develop && [ "$REF" == "master" ] && BOOST_BRANCH=master || true
echo BOOST_BRANCH: $BOOST_BRANCH
cd ..
git clone -b $BOOST_BRANCH --depth 10 https://github.com/boostorg/boost.git boost-root
cd boost-root
git submodule update --init --depth 10 --jobs 2 tools/boostdep tools/inspect libs/filesystem
python tools/boostdep/depinst/depinst.py --git_args "--depth 10 --jobs 3" filesystem
rm -rf libs/$LIBRARY/*
cp -r $GITHUB_WORKSPACE/* libs/$LIBRARY
python tools/boostdep/depinst/depinst.py --include benchmark --include example --include examples --include tools --git_args "--depth 10 --jobs 3" $LIBRARY
./bootstrap.sh
./b2 -j4 variant=debug tools/inspect
- name: Run modules tests without 'import std;'
if: ${{matrix.toolset == 'clang-19'}}
run: |
cd ../boost-root/libs/lexical_cast
cmake -S test/cmake_subdir_test -B build_module \
-GNinja \
-DBUILD_TESTING=1 \
-DBOOST_USE_MODULES=1 \
-DCMAKE_CXX_COMPILER=clang++-19 \
-DCMAKE_C_COMPILER=clang-19
cmake --build build_module
ctest --test-dir build_module -V --no-tests=error
rm -rf build_module
- name: Run modules tests
if: ${{matrix.toolset == 'clang-19'}}
run: |
cd ../boost-root/libs/lexical_cast
cmake -S test/cmake_subdir_test -B build_module \
-GNinja \
-DBUILD_TESTING=1 \
-DBOOST_USE_MODULES=1 \
-DCMAKE_CXX_COMPILER=clang++-19 \
-DCMAKE_C_COMPILER=clang-19 \
-DCMAKE_CXX_FLAGS=-stdlib=libc++ \
-DCMAKE_CXX_STANDARD=23 \
-DCMAKE_EXPERIMENTAL_CXX_IMPORT_STD=0e5b6991-d74f-4b3d-a41c-cf096e0b2508 \
-DCMAKE_CXX_MODULE_STD=ON
cmake --build build_module
ctest --test-dir build_module -V --no-tests=error
rm -rf build_module
- name: Run CMake tests
if: ${{matrix.toolset == 'gcc-14' || matrix.toolset == 'clang-19'}}
run: |
cd ../boost-root/
cmake -S . -B __build \
-DBUILD_TESTING=1 \
-DBOOST_INCLUDE_LIBRARIES=lexical_cast \
-DCMAKE_CXX_COMPILER=${{matrix.compiler}} \
-DCMAKE_C_COMPILER=${{matrix.toolset}}
cmake --build __build --target tests
ctest --test-dir __build --output-on-failure --no-tests=error
rm -rf __build
- name: Run tests
run: |
cd ../boost-root
./b2 -j3 libs/$LIBRARY/test toolset=${{matrix.toolset}} cxxstd=${{matrix.cxxstd}} variant=debug,release "${{matrix.cxxflags}}" "${{matrix.linkflags}}" "${{matrix.launcher}}"
dist/bin/inspect libs/$LIBRARY
- name: Prepare coverage data
if: matrix.gcov_tool
run: |
mkdir -p $GITHUB_WORKSPACE/coveralls
echo -e "#!/bin/bash\nexec ${{matrix.gcov_tool}} \"\$@\"" > $GITHUB_WORKSPACE/coveralls/gcov_wrapper.sh
chmod +x $GITHUB_WORKSPACE/coveralls/gcov_wrapper.sh
wget https://github.com/linux-test-project/lcov/archive/v1.16.zip
unzip v1.16.zip
LCOV="`pwd`/lcov-1.16/bin/lcov --gcov-tool $GITHUB_WORKSPACE/coveralls/gcov_wrapper.sh"
echo "$LCOV --directory ../boost-root/bin.v2/libs/$LIBRARY/ --base-directory `pwd`/libs/$LIBRARY/test --capture --output-file $GITHUB_WORKSPACE/coveralls/coverage.info"
$LCOV --directory ../boost-root/bin.v2/libs/$LIBRARY/ --base-directory ../boost-root/ --capture --output-file $GITHUB_WORKSPACE/coveralls/coverage.info
$LCOV --remove $GITHUB_WORKSPACE/coveralls/coverage.info "/usr*" "*/$LIBRARY/test/*" ${{matrix.ignore_coverage}} "*/$LIBRARY/tests/*" "*/$LIBRARY/examples/*" "*/$LIBRARY/example/*" -o $GITHUB_WORKSPACE/coveralls/coverage.info
cd ../boost-root
OTHER_LIBS=`grep "submodule .*" .gitmodules | sed 's/\[submodule\ "\(.*\)"\]/"\*\/boost\/\1\.hpp" "\*\/boost\/\1\/\*"/g'| sed "/\"\*\/boost\/$LIBRARY\/\*\"/d" | sed ':a;N;$!ba;s/\n/ /g'`
echo $OTHER_LIBS
eval "$LCOV --remove $GITHUB_WORKSPACE/coveralls/coverage.info $OTHER_LIBS -o $GITHUB_WORKSPACE/coveralls/coverage.info"
- name: Coveralls
uses: coverallsapp/github-action@master
if: matrix.gcov_tool
with:
github-token: ${{ secrets.GITHUB_TOKEN }}
path-to-lcov: ./coveralls/coverage.info
parallel: true
windows:
strategy:
fail-fast: false
matrix:
include:
- toolset: msvc-14.3
cxxstd: "14,17,20,latest"
addrmd: 32,64
os: windows-2022
- toolset: msvc
cxxstd: "14,17,latest"
addrmd: 64
os: windows-2025
- toolset: gcc
cxxstd: "03,11,14,17,2a"
addrmd: 64
os: windows-2022
runs-on: ${{matrix.os}}
steps:
- uses: actions/checkout@v6
- name: Setup Boost
shell: cmd
run: |
echo GITHUB_REPOSITORY: %GITHUB_REPOSITORY%
for /f %%i in ("%GITHUB_REPOSITORY%") do set LIBRARY=%%~nxi
echo LIBRARY: %LIBRARY%
echo LIBRARY=%LIBRARY%>>%GITHUB_ENV%
echo GITHUB_BASE_REF: %GITHUB_BASE_REF%
echo GITHUB_REF: %GITHUB_REF%
if "%GITHUB_BASE_REF%" == "" set GITHUB_BASE_REF=%GITHUB_REF%
set BOOST_BRANCH=develop
for /f %%i in ("%GITHUB_BASE_REF%") do if "%%~nxi" == "master" set BOOST_BRANCH=master
echo BOOST_BRANCH: %BOOST_BRANCH%
cd ..
git clone -b %BOOST_BRANCH% --depth 10 https://github.com/boostorg/boost.git boost-root
cd boost-root
xcopy /s /e /q %GITHUB_WORKSPACE% libs\%LIBRARY%\
git submodule update --init tools/boostdep libs/test
python tools/boostdep/depinst/depinst.py --include benchmark --include example --include examples --include tools --git_args "--jobs 3" %LIBRARY%
cmd /c bootstrap
- name: Run CMake tests
if: ${{matrix.toolset == 'msvc-14.3'}}
shell: cmd
run: |
choco install --no-progress ninja
call "C:/Program Files/Microsoft Visual Studio/2022/Enterprise/VC/Auxiliary/Build/vcvarsall.bat" x64
cd ../boost-root/
mkdir __build
cd __build
cmake -DBUILD_TESTING=1 -DBOOST_INCLUDE_LIBRARIES=lexical_cast -G Ninja ..
cmake --build . --target tests --config Debug
ctest --output-on-failure --no-tests=error -C Debug
- name: Run modules tests
if: false
#if: ${{matrix.toolset == 'msvc-14.3'}}
shell: cmd
run: |
choco install --no-progress ninja
call "C:/Program Files/Microsoft Visual Studio/2022/Enterprise/VC/Auxiliary/Build/vcvarsall.bat" x64
cd ../boost-root/libs/lexical_cast
rm -rf build_module
mkdir build_module
cd build_module
cmake -DBOOST_USE_MODULES=1 -DCMAKE_CXX_STANDARD=23 -DCMAKE_EXPERIMENTAL_CXX_IMPORT_STD=0e5b6991-d74f-4b3d-a41c-cf096e0b2508 -G Ninja ../test/cmake_subdir_test/
cmake --build .
ctest --no-tests=error -V
- name: Run modules tests without 'import std;'
if: ${{matrix.toolset == 'msvc-14.3'}}
shell: cmd
run: |
choco install --no-progress ninja
call "C:/Program Files/Microsoft Visual Studio/2022/Enterprise/VC/Auxiliary/Build/vcvarsall.bat" x64
cd ../boost-root/libs/lexical_cast
rm -rf build_module
mkdir build_module
cd build_module
cmake -DBOOST_USE_MODULES=1 -DCMAKE_CXX_STANDARD=20 -G Ninja ../test/cmake_subdir_test/
cmake --build .
ctest --no-tests=error -V
- name: Run tests
shell: cmd
run: |
cd ../boost-root
b2 -j3 libs/%LIBRARY%/test toolset=${{matrix.toolset}} cxxstd=${{matrix.cxxstd}} address-model=${{matrix.addrmd}} variant=debug,release
finish:
if: false
needs: posix
runs-on: ubuntu-latest
steps:
- name: Coveralls Finished
uses: coverallsapp/github-action@master
with:
github-token: ${{ secrets.github_token }}
parallel-finished: true
-163
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@@ -1,163 +0,0 @@
# Use, modification, and distribution are
# subject to the Boost Software License, Version 1.0. (See accompanying
# file LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt)
#
# Copyright Antony Polukhin 2014-2021.
#
# See https://svn.boost.org/trac/boost/wiki/TravisCoverals for description of this file
# and how it can be used with Boost libraries.
#
# File revision #10
language: cpp
os: linux
# `--coverage` flags required to generate coverage info for Coveralls
matrix:
include:
- env: B2_ARGS='cxxstd=98,03,11,14,1y toolset=gcc-6 cxxflags="--coverage -fsanitize=address,leak,undefined -fno-sanitize-recover=undefined -DBOOST_TRAVISCI_BUILD" linkflags="--coverage -lasan -lubsan" "testing.launcher=LD_PRELOAD=/usr/lib/x86_64-linux-gnu/libasan.so.3"' GCOVTOOL='gcov-6'
name: "GCC-6"
addons:
apt:
sources: ubuntu-toolchain-r-test
packages: g++-6
- env: B2_ARGS='cxxstd=98,03,11,14,1z toolset=gcc-8 cxxflags="--coverage -fsanitize=address,leak,undefined -fno-sanitize-recover=undefined -DBOOST_TRAVISCI_BUILD" linkflags="--coverage -lasan -lubsan" "testing.launcher=LD_PRELOAD=/usr/lib/x86_64-linux-gnu/libasan.so.5"' GCOVTOOL='gcov-8'
name: "GCC-8"
sudo: required # Required by leak sanitizer
addons:
apt:
sources: ubuntu-toolchain-r-test
packages: g++-8
- env: B2_ARGS='cxxstd=98,0x toolset=gcc-4.6 cxxflags="--coverage -DBOOST_TRAVISCI_BUILD" linkflags="--coverage"' GCOVTOOL='gcov-4.6'
name: "GCC-4.6"
addons:
apt:
sources: ubuntu-toolchain-r-test
packages: g++-4.6
# - env: B2_ARGS='cxxstd=98,03,11,14,1y toolset=gcc-8 cxxflags="--coverage -fsanitize=address,leak,undefined -fno-sanitize-recover=undefined -DBOOST_TRAVISCI_BUILD -fno-exceptions" linkflags="--coverage -lasan -lubsan"'
# name: "GCC-8, no exceptions"
# sudo: required # Required by leak sanitizer
# addons:
# apt:
# sources: ubuntu-toolchain-r-test
# packages: g++-8
# UBSan is disables as one of the tests was causing UB:
# boost/numeric/conversion/converter_policies.hpp:188:94: runtime error: 1.79769e+308 is outside the range of representable values of type 'float'
- env: B2_ARGS='cxxstd=98,03,11,14,1z toolset=clang-8 cxxflags="--coverage -fsanitize=address,leak -DBOOST_TRAVISCI_BUILD" linkflags="--coverage -fsanitize=address,leak"' GCOVTOOL='gcov_for_clang.sh'
name: "Clang-8"
sudo: required # Required by leak sanitizer
addons:
apt:
sources: llvm-toolchain-trusty-8
packages: clang-8
# This test is not run because of the floating point conversion issues in old libc++.
#
# Sanitizers disabled for this toolset as they started causing link troubles:
# hidden symbol `_ZNSt3__112basic_stringIcNS_11char_traitsIcEENS_9allocatorIcEEE11__recommendEm' isn't defined
#- env: B2_ARGS='cxxstd=03,11,14 toolset=clang-libc++ cxxflags="--coverage -DBOOST_TRAVISCI_BUILD" linkflags="--coverage"'
# name: "Clang-3.8, libc++"
# addons:
# apt:
# packages: libc++-dev
###############################################################################################################
# From this point and below code is same for all the Boost libs
###############################################################################################################
# Installing additional tools
addons:
apt:
sources: git-core
packages:
- git
- python-yaml
before_install:
# Autodetect Boost branch by using the following code: - BOOST_BRANCH=$TRAVIS_BRANCH
# or just directly specify it
- BOOST_BRANCH=develop && [ "$TRAVIS_BRANCH" == "master" ] && BOOST_BRANCH=master || true
# Files, which coverage results must be ignored (files from other projects).
# Example: - IGNORE_COVERAGE='*/boost/progress.hpp */filesystem/src/*'
- IGNORE_COVERAGE='*/filesystem/src/*'
# boost-local/libs/ folder to put this library into. This may be useful, if you're for example running Travis
# from `Boost.DLL` repo while Boost already has `dll` and with to replace `dll` with content of`Boost.DLL`.
#
# Otherwise just leave the default value - BOOST_LIBS_FOLDER=$(basename $TRAVIS_BUILD_DIR)
- BOOST_LIBS_FOLDER=$(basename $TRAVIS_BUILD_DIR)
# Global options for sanitizers
- UBSAN_OPTIONS=print_stacktrace=1
- LSAN_OPTIONS=verbosity=1:log_threads=1
# Cloning minimal set of Boost libraries
- BOOST=$HOME/boost-local
- git clone -b $BOOST_BRANCH --depth 10 https://github.com/boostorg/boost.git $BOOST
- cd $BOOST
- git submodule update --init --depth 10 --jobs 2 tools/build tools/boostdep tools/inspect libs/filesystem libs/variant
- python tools/boostdep/depinst/depinst.py --git_args "--depth 10 --jobs 2" $BOOST/libs/filesystem
# Replacing Boost module with this project and installing Boost dependencies
- echo "Testing $BOOST/libs/$BOOST_LIBS_FOLDER moved from $TRAVIS_BUILD_DIR, branch $BOOST_BRANCH"
- rm -rf $BOOST/libs/$BOOST_LIBS_FOLDER || true
- mv $TRAVIS_BUILD_DIR $BOOST/libs/$BOOST_LIBS_FOLDER
- python tools/boostdep/depinst/depinst.py --git_args "--depth 10 --jobs 2" $BOOST_LIBS_FOLDER
- git status
# Adding missing toolsets and preparing Boost headers
- ./bootstrap.sh
- ./b2 headers
- ./b2 -j4 variant=debug tools/inspect/build
- |-
echo "using gcc ;" >> ~/user-config.jam
echo "using clang ;" >> ~/user-config.jam
echo "using clang : 3.8 : clang++-3.8 ;" >> ~/user-config.jam
echo "using clang : 4 : clang++-4.0 ;" >> ~/user-config.jam
echo "using clang : 5 : clang++-5.0 ;" >> ~/user-config.jam
echo "using clang : 6 : clang++-6.0 ;" >> ~/user-config.jam
echo "using clang : 7 : clang++-7.0 ;" >> ~/user-config.jam
echo "using clang : 8 : clang++-8 ;" >> ~/user-config.jam
echo "using clang : libc++ : clang++-libc++ ;" >> ~/user-config.jam
- cd $BOOST/libs/$BOOST_LIBS_FOLDER/test/
script:
- sh -c "../../../b2 -j2 $B2_ARGS"
- ../../../dist/bin/inspect .. # inspect tool run
after_success:
# Copying Coveralls data to a separate folder
- mkdir -p $TRAVIS_BUILD_DIR/coverals
- find ../../../bin.v2/ -name "*.gcda" -exec cp "{}" $TRAVIS_BUILD_DIR/coverals/ \;
- find ../../../bin.v2/ -name "*.gcno" -exec cp "{}" $TRAVIS_BUILD_DIR/coverals/ \;
- find ../../../bin.v2/ -name "*.da" -exec cp "{}" $TRAVIS_BUILD_DIR/coverals/ \;
- find ../../../bin.v2/ -name "*.no" -exec cp "{}" $TRAVIS_BUILD_DIR/coverals/ \;
- wget https://github.com/linux-test-project/lcov/archive/v1.14.zip
- unzip v1.14.zip
- LCOV="`pwd`/lcov-1.14/bin/lcov --gcov-tool $GCOVTOOL"
- mkdir -p ~/.local/bin
- echo -e '#!/bin/bash\nexec llvm-cov gcov "$@"' > ~/.local/bin/gcov_for_clang.sh
- chmod 755 ~/.local/bin/gcov_for_clang.sh
# Preparing Coveralls data by changind data format to a readable one
- echo "$LCOV --directory $TRAVIS_BUILD_DIR/coverals --base-directory `pwd` --capture --output-file $TRAVIS_BUILD_DIR/coverals/coverage.info"
- $LCOV --directory $TRAVIS_BUILD_DIR/coverals --base-directory `pwd` --capture --output-file $TRAVIS_BUILD_DIR/coverals/coverage.info
# ... erasing /test/ /example/ folder data
- cd $BOOST
- $LCOV --remove $TRAVIS_BUILD_DIR/coverals/coverage.info "/usr*" "*/$BOOST_LIBS_FOLDER/test/*" $IGNORE_COVERAGE "*/$BOOST_LIBS_FOLDER/tests/*" "*/$BOOST_LIBS_FOLDER/examples/*" "*/$BOOST_LIBS_FOLDER/example/*" -o $TRAVIS_BUILD_DIR/coverals/coverage.info
# ... erasing data that is not related to this project directly
- OTHER_LIBS=`grep "submodule .*" .gitmodules | sed 's/\[submodule\ "\(.*\)"\]/"\*\/boost\/\1\.hpp" "\*\/boost\/\1\/\*" "\*\/libs\/\1\/src\/\*"/g'| sed "/\"\*\/boost\/$BOOST_LIBS_FOLDER\/\*\"/d" | sed ':a;N;$!ba;s/\n/ /g'`
- echo $OTHER_LIBS
- eval "$LCOV --remove $TRAVIS_BUILD_DIR/coverals/coverage.info $OTHER_LIBS -o $TRAVIS_BUILD_DIR/coverals/coverage.info"
# Sending data to Coveralls
- cd $TRAVIS_BUILD_DIR
- gem install coveralls-lcov
- coveralls-lcov coverals/coverage.info
+40 -25
View File
@@ -1,31 +1,46 @@
# Copyright 2019 Sam Day
# Generated by `boostdep --cmake lexical_cast`
# Copyright 2020 Peter Dimov
# Distributed under the Boost Software License, Version 1.0.
# See accompanying file LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt
#
# NOTE: CMake support for Boost.lexical_cast is currently experimental at best
# and the interface is likely to change in the future
# https://www.boost.org/LICENSE_1_0.txt
cmake_minimum_required(VERSION 3.5)
project(BoostLexicalCast LANGUAGES CXX)
cmake_minimum_required(VERSION 3.5...4.0)
project(boost_lexical_cast VERSION "${BOOST_SUPERPROJECT_VERSION}" LANGUAGES CXX)
if (BOOST_USE_MODULES)
add_library(boost_lexical_cast)
target_sources(boost_lexical_cast PUBLIC
FILE_SET modules_public TYPE CXX_MODULES FILES
${CMAKE_CURRENT_LIST_DIR}/modules/boost_lexical_cast.cppm
)
target_compile_features(boost_lexical_cast PUBLIC cxx_std_20)
target_compile_definitions(boost_lexical_cast PUBLIC BOOST_USE_MODULES)
if (CMAKE_CXX_COMPILER_IMPORT_STD)
target_compile_definitions(boost_lexical_cast PRIVATE BOOST_LEXICAL_CAST_USE_STD_MODULE)
message(STATUS "Using `import std;`")
else()
message(STATUS "`import std;` is not available")
endif()
set(__scope PUBLIC)
else()
add_library(boost_lexical_cast INTERFACE)
set(__scope INTERFACE)
endif()
target_include_directories(boost_lexical_cast ${__scope} include)
target_link_libraries(boost_lexical_cast
${__scope}
Boost::config
Boost::container
Boost::core
Boost::throw_exception
)
add_library(boost_lexical_cast INTERFACE)
add_library(Boost::lexical_cast ALIAS boost_lexical_cast)
target_include_directories(boost_lexical_cast INTERFACE include)
if(BUILD_TESTING)
add_subdirectory(test)
endif()
target_link_libraries(boost_lexical_cast
INTERFACE
Boost::array
Boost::assert
Boost::config
Boost::container
Boost::core
Boost::detail
Boost::integer
Boost::math
Boost::numeric_conversion
Boost::range
Boost::static_assert
Boost::throw_exception
Boost::type_traits
)
+6 -7
View File
@@ -1,16 +1,15 @@
# [Boost.LexicalCast](http://boost.org/libs/lexical_cast)
Boost.LexicalCast is one of the [Boost C++ Libraries](http://github.com/boostorg). This library is meant for general literal text conversions, such as an int represented a string, or vice-versa.
# [Boost.LexicalCast](https://boost.org/libs/lexical_cast)
Boost.LexicalCast is one of the [Boost C++ Libraries](https://github.com/boostorg). This library is meant for general literal text conversions, such as an int represented a string, or vice-versa.
### Test results
@ | Build | Tests coverage | More info
----------------|-------------- | -------------- |-----------
Develop branch: | [![Build Status](https://travis-ci.org/boostorg/lexical_cast.svg?branch=develop)](https://travis-ci.org/boostorg/lexical_cast) [![Build status](https://ci.appveyor.com/api/projects/status/mwwanh1bpsnuv38h/branch/develop?svg=true)](https://ci.appveyor.com/project/apolukhin/lexical-cast/branch/develop) | [![Coverage Status](https://coveralls.io/repos/boostorg/lexical_cast/badge.png?branch=develop)](https://coveralls.io/r/boostorg/lexical_cast?branch=develop) | [details...](http://www.boost.org/development/tests/develop/developer/lexical_cast.html)
Master branch: | [![Build Status](https://travis-ci.org/boostorg/lexical_cast.svg?branch=master)](https://travis-ci.org/boostorg/lexical_cast) [![Build status](https://ci.appveyor.com/api/projects/status/mwwanh1bpsnuv38h/branch/master?svg=true)](https://ci.appveyor.com/project/apolukhin/lexical-cast/branch/master) | [![Coverage Status](https://coveralls.io/repos/boostorg/lexical_cast/badge.png?branch=master)](https://coveralls.io/r/boostorg/lexical_cast?branch=master) | [details...](http://www.boost.org/development/tests/master/developer/lexical_cast.html)
Develop branch: | [![CI](https://github.com/boostorg/lexical_cast/actions/workflows/ci.yml/badge.svg?branch=develop)](https://github.com/boostorg/lexical_cast/actions/workflows/ci.yml) [![Build status](https://ci.appveyor.com/api/projects/status/mwwanh1bpsnuv38h/branch/develop?svg=true)](https://ci.appveyor.com/project/apolukhin/lexical-cast/branch/develop) | [![Coverage Status](https://coveralls.io/repos/boostorg/lexical_cast/badge.png?branch=develop)](https://coveralls.io/r/boostorg/lexical_cast?branch=develop) | [details...](https://www.boost.org/development/tests/develop/developer/lexical_cast.html)
Master branch: | [![CI](https://github.com/boostorg/lexical_cast/actions/workflows/ci.yml/badge.svg?branch=master)](https://github.com/boostorg/lexical_cast/actions/workflows/ci.yml) [![Build status](https://ci.appveyor.com/api/projects/status/mwwanh1bpsnuv38h/branch/master?svg=true)](https://ci.appveyor.com/project/apolukhin/lexical-cast/branch/master) | [![Coverage Status](https://coveralls.io/repos/boostorg/lexical_cast/badge.png?branch=master)](https://coveralls.io/r/boostorg/lexical_cast?branch=master) | [details...](https://www.boost.org/development/tests/master/developer/lexical_cast.html)
[Open Issues](https://svn.boost.org/trac/boost/query?status=!closed&component=lexical_cast)
[Latest developer documentation](https://www.boost.org/doc/libs/develop/doc/html/boost_lexical_cast.html)
### License
Distributed under the [Boost Software License, Version 1.0](http://boost.org/LICENSE_1_0.txt).
Distributed under the [Boost Software License, Version 1.0](https://boost.org/LICENSE_1_0.txt).
+26
View File
@@ -0,0 +1,26 @@
# Copyright René Ferdinand Rivera Morell 2023-2024
# Distributed under the Boost Software License, Version 1.0.
# (See accompanying file LICENSE_1_0.txt or copy at
# http://www.boost.org/LICENSE_1_0.txt)
require-b2 5.2 ;
constant boost_dependencies :
/boost/config//boost_config
/boost/container//boost_container
/boost/core//boost_core
/boost/throw_exception//boost_throw_exception ;
project /boost/lexical_cast
: common-requirements
<include>include
;
explicit
[ alias boost_lexical_cast : : : : <library>$(boost_dependencies) ]
[ alias all : boost_lexical_cast test ]
;
call-if : boost-library lexical_cast
;
+1 -1
View File
@@ -1,4 +1,4 @@
# Copyright Antony Polukhin, 2011-2021.
# Copyright Antony Polukhin, 2011-2026.
#
# Use, modification, and distribution are
# subject to the Boost Software License, Version 1.0. (See accompanying
+485 -374
View File
@@ -3,7 +3,7 @@
[version 1.0]
[copyright 2000-2005 Kevlin Henney]
[copyright 2006-2010 Alexander Nasonov]
[copyright 2011-2021 Antony Polukhin]
[copyright 2011-2026 Antony Polukhin]
[category String and text processing]
[category Miscellaneous]
[license
@@ -203,7 +203,7 @@ Read a good C++ book, study `std::sentry` and [@boost:libs/io/doc/ios_state.html
[pre
]
* [*Question:] Why `std::cout << boost::lexical_cast<unsigned int>("-1");` does not throw, but outputs 4294967295?
* [*Question:] Why does `std::cout << boost::lexical_cast<unsigned int>("-1");` not throw, but outputs 4294967295?
* [*Answer:] `boost::lexical_cast` has the behavior of `std::stringstream`, which uses `num_get` functions of
`std::locale` to convert numbers. If we look at the Programming languages — C++, we'll see, that `num_get` uses
the rules of `scanf` for conversions. And in the C99 standard for unsigned input value minus sign is optional, so
@@ -212,7 +212,7 @@ if a negative number is read, no errors will arise and the result will be the tw
[pre
]
* [*Question:] Why `boost::lexical_cast<int>(L'A');` outputs 65 and `boost::lexical_cast<wchar_t>(L"65");` does not throw?
* [*Question:] Why does `boost::lexical_cast<int>(L'A');` output 65 and `boost::lexical_cast<wchar_t>(L"65");` not throw?
* [*Answer:] If you are using an old version of Visual Studio or compile code with /Zc:wchar_t- flag,
`boost::lexical_cast` sees single `wchar_t` character as `unsigned short`. It is not a `boost::lexical_cast` mistake, but a
limitation of compiler options that you use.
@@ -220,7 +220,7 @@ limitation of compiler options that you use.
[pre
]
* [*Question:] Why `boost::lexical_cast<double>("-1.#IND");` throws `boost::bad_lexical_cast`?
* [*Question:] Why does `boost::lexical_cast<double>("-1.#IND");` throw `boost::bad_lexical_cast`?
* [*Answer:] `"-1.#IND"` is a compiler extension, that violates standard. You shall input `"-nan"`, `"nan"`, `"inf"`
, `"-inf"` (case insensitive) strings to get NaN and Inf values. `boost::lexical_cast<string>` outputs `"-nan"`, `"nan"`,
`"inf"`, `"-inf"` strings, when has NaN or Inf input values.
@@ -229,12 +229,70 @@ limitation of compiler options that you use.
]
* [*Question:] What is the fastest way to convert a non zero terminated string or a substring using `boost::lexical_cast`?
* [*Answer:] Use `boost::iterator_range` for conversion or `lexical_cast` overload with two parameters. For example, if you whant to convert to `int` two characters from a string `str`, you shall write `lexical_cast<int>(make_iterator_range(str.data(), str.data() + 2));` or `lexical_cast<int>(str.data(), 2);`.
* [*Answer:] Use `boost::iterator_range` for conversion or `lexical_cast` overload with two parameters. For example, if you want to convert to `int` two characters from a string `str`, you shall write `lexical_cast<int>(make_iterator_range(str.data(), str.data() + 2));` or `lexical_cast<int>(str.data(), 2);`.
[endsect]
[section C++20 module]
[caution C++20 module support is on early stage, targets, flags and behavior may change in the future]
If using modern CMake define CMake option `-DBOOST_USE_MODULES=1` to build a C++20 module and
make the `Boost::lexical_cast` CMake target provide it. After that an explicit usage of C++20 module `boost.lexical_cast` is allowed:
[import ../modules/usage_sample.cpp]
[lexical_cast_module_example]
The `Boost::lexical_cast` CMake target gives an ability to mix includes and imports of the library in different translation units. Moreover,
if `BOOST_USE_MODULES` macro is defined then all the `boost/lexical_cast...` includes implicitly do `import boost.lexical_cast;` to give all the
benefits of modules without changing the existing code.
[note For better compile times make sure that `import std;` is available when building the `boost.lexical_cast` module (in CMake logs there should be
a 'Using `import std;`' message). ]
If not using CMake, then the module could be build manually from the `modules/boost_lexical_cast.cppm` file.
For manual module build the following commands could be used for clang compiler:
```
cd lexical_cast/modules
clang++ -I ../include -std=c++20 --precompile -x c++-module boost_lexical_cast.cppm
```
After that, the module could be used in the following way:
```
clang++ -std=c++20 -fmodule-file=boost_lexical_cast.pcm boost_lexical_cast.pcm usage_sample.cpp
```
[endsect]
[section Changes]
* [*boost 1.91.0 :]
* Added C++20 modules support.
* [*boost 1.86.0 :]
* Fixed conversion of `std::basic_string_view` and `boost::basic_string_view`
containing one or more `\0` characters. Issue was introduced in 1.85.0.
* [*boost 1.85.0 :]
* Significant rewrite of the internal logic to separate optimized and C++ Standard Library IO-based streams:
* C++ Standard Library based streams now constructed in less cases leading to [*better performance];
* less template instantiations and simpler code;
* always use `std::char_traits` (do not use custom traits from input/output types as it leads to linktime or runtime errors);
* support for `volatile` input types was dropped, following the C++ Standard Library trend.
* Optimized conversions from std::basic_string_view and boost::basic_string_view
* Dropped dependency on Boost.NumericConversion and Boost.MPL. Fixed some cases
of converting floting point types to arithmetics.
* The library now works fine with `-fno-sanitize-recover=integer`.
* [*boost 1.84.0 :]
* Dropped support of C++98 and C++03.
* [*boost 1.56.0 :]
* Added `boost::conversion::try_lexical_convert` functions.
@@ -354,380 +412,433 @@ Do not use this results to compare compilers, because tests were taken on differ
[/ BEGIN of section, generated by performance measuring program ]
[section GNU C++ version 6.1.1 20160511]
[table:id Performance Table ( GNU C++ version 6.1.1 20160511)
[section GNU C++ version 9.4.0]
[table:id Performance Table ( GNU C++ version 9.4.0)
[[From->To] [lexical_cast] [std::stringstream with construction] [std::stringstream without construction][scanf/printf]]
[[ string->char ][ !!! *<1* !!! ][ 59 ][ 4 ][ 4 ]]
[[ string->signed char ][ !!! *<1* !!! ][ 52 ][ 4 ][ 5 ]]
[[ string->unsigned char ][ !!! *<1* !!! ][ 54 ][ 4 ][ 5 ]]
[[ string->int ][ !!! *4* !!! ][ 61 ][ 19 ][ 12 ]]
[[ string->short ][ !!! *4* !!! ][ 59 ][ 11 ][ 8 ]]
[[ string->long int ][ !!! *4* !!! ][ 59 ][ 9 ][ 8 ]]
[[ string->long long ][ !!! *6* !!! ][ 61 ][ 10 ][ 10 ]]
[[ string->unsigned int ][ !!! *4* !!! ][ 59 ][ 9 ][ 9 ]]
[[ string->unsigned short ][ !!! *4* !!! ][ 60 ][ 9 ][ 8 ]]
[[ string->unsigned long int ][ !!! *4* !!! ][ 60 ][ 9 ][ 8 ]]
[[ string->unsigned long long ][ !!! *4* !!! ][ 70 ][ 21 ][ 21 ]]
[[ string->float ][ 91 ][ 152 ][ 59 ][ !!! *40* !!! ]]
[[ string->double ][ 86 ][ 140 ][ 58 ][ !!! *28* !!! ]]
[[ string->long double ][ 48 ][ 90 ][ 34 ][ !!! *22* !!! ]]
[[ string->array<char, 50> ][ !!! *<1* !!! ][ 59 ][ 9 ][ 10 ]]
[[ string->string ][ !!! *2* !!! ][ 129 ][ 29 ][ --- ]]
[[ string->container::string ][ !!! *1* !!! ][ 70 ][ 11 ][ --- ]]
[[ string->char ][ !!! *4* !!! ][ 99 ][ 27 ][ 20 ]]
[[ string->signed char ][ !!! *9* !!! ][ 101 ][ 13 ][ 12 ]]
[[ string->unsigned char ][ !!! *4* !!! ][ 86 ][ 27 ][ 27 ]]
[[ int->string ][ !!! *9* !!! ][ 89 ][ 17 ][ 14 ]]
[[ short->string ][ !!! *7* !!! ][ 71 ][ 17 ][ 15 ]]
[[ long int->string ][ !!! *7* !!! ][ 71 ][ 18 ][ 19 ]]
[[ long long->string ][ !!! *13* !!! ][ 127 ][ 34 ][ 25 ]]
[[ unsigned int->string ][ 16 ][ 117 ][ 17 ][ !!! *12* !!! ]]
[[ unsigned short->string ][ !!! *8* !!! ][ 71 ][ 16 ][ 12 ]]
[[ unsigned long int->string ][ !!! *12* !!! ][ 100 ][ 36 ][ 26 ]]
[[ unsigned long long->string ][ !!! *14* !!! ][ 97 ][ 21 ][ 17 ]]
[[ float->string ][ 70 ][ 97 ][ 43 ][ !!! *25* !!! ]]
[[ double->string ][ 130 ][ 155 ][ 51 ][ !!! *25* !!! ]]
[[ long double->string ][ 104 ][ 160 ][ !!! *47* !!! ][ 57 ]]
[[ char*->char ][ !!! *<1* !!! ][ 95 ][ 4 ][ 4 ]]
[[ char*->signed char ][ !!! *<1* !!! ][ 52 ][ 7 ][ 13 ]]
[[ char*->unsigned char ][ !!! *<1* !!! ][ 106 ][ 11 ][ 13 ]]
[[ char*->int ][ !!! *6* !!! ][ 118 ][ 22 ][ 21 ]]
[[ char*->short ][ !!! *7* !!! ][ 104 ][ 10 ][ 19 ]]
[[ char*->long int ][ !!! *8* !!! ][ 112 ][ 24 ][ 14 ]]
[[ char*->long long ][ !!! *4* !!! ][ 90 ][ 17 ][ 9 ]]
[[ char*->unsigned int ][ !!! *4* !!! ][ 103 ][ 23 ][ 22 ]]
[[ char*->unsigned short ][ !!! *7* !!! ][ 82 ][ 9 ][ 8 ]]
[[ char*->unsigned long int ][ !!! *5* !!! ][ 58 ][ 20 ][ 8 ]]
[[ char*->unsigned long long ][ !!! *4* !!! ][ 60 ][ 10 ][ 11 ]]
[[ char*->float ][ 58 ][ 103 ][ !!! *32* !!! ][ 37 ]]
[[ char*->double ][ 52 ][ 155 ][ 32 ][ !!! *27* !!! ]]
[[ char*->long double ][ 72 ][ 135 ][ 51 ][ !!! *30* !!! ]]
[[ char*->array<char, 50> ][ !!! *<1* !!! ][ 80 ][ 23 ][ 17 ]]
[[ char*->string ][ !!! *10* !!! ][ 150 ][ 18 ][ --- ]]
[[ string->char ][ !!! *<1* !!! ][ 59 ][ 7 ][ 17 ]]
[[ string->signed char ][ !!! *<1* !!! ][ 142 ][ 13 ][ 21 ]]
[[ string->unsigned char ][ !!! *<1* !!! ][ 63 ][ 5 ][ 8 ]]
[[ string->int ][ !!! *4* !!! ][ 63 ][ 13 ][ 12 ]]
[[ string->short ][ !!! *4* !!! ][ 65 ][ 12 ][ 12 ]]
[[ string->long int ][ !!! *4* !!! ][ 62 ][ 12 ][ 12 ]]
[[ string->long long ][ !!! *3* !!! ][ 61 ][ 13 ][ 12 ]]
[[ string->unsigned int ][ !!! *4* !!! ][ 58 ][ 10 ][ 12 ]]
[[ string->unsigned short ][ !!! *4* !!! ][ 59 ][ 10 ][ 12 ]]
[[ string->unsigned long int ][ !!! *4* !!! ][ 62 ][ 11 ][ 12 ]]
[[ string->unsigned long long ][ !!! *4* !!! ][ 64 ][ 11 ][ 12 ]]
[[ string->float ][ 59 ][ 92 ][ 35 ][ !!! *23* !!! ]]
[[ string->double ][ 55 ][ 89 ][ 31 ][ !!! *23* !!! ]]
[[ string->long double ][ 52 ][ 83 ][ 32 ][ !!! *26* !!! ]]
[[ string->array<char, 50> ][ !!! *<1* !!! ][ 59 ][ 10 ][ 8 ]]
[[ string->string ][ !!! *1* !!! ][ 68 ][ 13 ][ --- ]]
[[ string->container::string ][ !!! *<1* !!! ][ 65 ][ 11 ][ --- ]]
[[ string->char ][ !!! *1* !!! ][ 58 ][ 10 ][ 7 ]]
[[ string->signed char ][ !!! *1* !!! ][ 57 ][ 10 ][ 10 ]]
[[ string->unsigned char ][ !!! *1* !!! ][ 57 ][ 10 ][ 10 ]]
[[ int->string ][ !!! *4* !!! ][ 64 ][ 13 ][ 10 ]]
[[ short->string ][ !!! *4* !!! ][ 69 ][ 13 ][ 10 ]]
[[ long int->string ][ !!! *4* !!! ][ 68 ][ 13 ][ 10 ]]
[[ long long->string ][ !!! *4* !!! ][ 66 ][ 13 ][ 10 ]]
[[ unsigned int->string ][ !!! *4* !!! ][ 62 ][ 14 ][ 10 ]]
[[ unsigned short->string ][ !!! *4* !!! ][ 66 ][ 13 ][ 10 ]]
[[ unsigned long int->string ][ !!! *4* !!! ][ 70 ][ 13 ][ 10 ]]
[[ unsigned long long->string ][ !!! *4* !!! ][ 64 ][ 14 ][ 10 ]]
[[ float->string ][ 26 ][ 108 ][ 50 ][ !!! *23* !!! ]]
[[ double->string ][ 33 ][ 114 ][ 51 ][ !!! *26* !!! ]]
[[ long double->string ][ 88 ][ 194 ][ 54 ][ !!! *26* !!! ]]
[[ char*->char ][ !!! *<1* !!! ][ 53 ][ 6 ][ 5 ]]
[[ char*->signed char ][ !!! *<1* !!! ][ 52 ][ 6 ][ 7 ]]
[[ char*->unsigned char ][ !!! *<1* !!! ][ 55 ][ 6 ][ 7 ]]
[[ char*->int ][ !!! *4* !!! ][ 67 ][ 12 ][ 10 ]]
[[ char*->short ][ !!! *4* !!! ][ 68 ][ 13 ][ 10 ]]
[[ char*->long int ][ !!! *3* !!! ][ 68 ][ 13 ][ 10 ]]
[[ char*->long long ][ !!! *3* !!! ][ 67 ][ 14 ][ 10 ]]
[[ char*->unsigned int ][ !!! *3* !!! ][ 67 ][ 11 ][ 10 ]]
[[ char*->unsigned short ][ !!! *3* !!! ][ 61 ][ 11 ][ 11 ]]
[[ char*->unsigned long int ][ !!! *3* !!! ][ 61 ][ 13 ][ 10 ]]
[[ char*->unsigned long long ][ !!! *3* !!! ][ 67 ][ 13 ][ 10 ]]
[[ char*->float ][ 56 ][ 93 ][ 35 ][ !!! *21* !!! ]]
[[ char*->double ][ 59 ][ 88 ][ 33 ][ !!! *21* !!! ]]
[[ char*->long double ][ 54 ][ 88 ][ 33 ][ !!! *24* !!! ]]
[[ char*->array<char, 50> ][ !!! *<1* !!! ][ 63 ][ 11 ][ 8 ]]
[[ char*->string ][ !!! *1* !!! ][ 65 ][ 12 ][ --- ]]
[[ char*->container::string ][ !!! *<1* !!! ][ 71 ][ 13 ][ --- ]]
[[ unsigned char*->char ][ !!! *<1* !!! ][ 57 ][ 6 ][ 5 ]]
[[ unsigned char*->signed char ][ !!! *<1* !!! ][ 57 ][ 6 ][ 7 ]]
[[ unsigned char*->unsigned char ][ !!! *<1* !!! ][ 63 ][ 5 ][ 6 ]]
[[ unsigned char*->int ][ !!! *4* !!! ][ 63 ][ 12 ][ 10 ]]
[[ unsigned char*->short ][ !!! *4* !!! ][ 65 ][ 13 ][ 10 ]]
[[ unsigned char*->long int ][ !!! *3* !!! ][ 67 ][ 12 ][ 10 ]]
[[ unsigned char*->long long ][ !!! *3* !!! ][ 66 ][ 12 ][ 10 ]]
[[ unsigned char*->unsigned int ][ !!! *3* !!! ][ 64 ][ 11 ][ 10 ]]
[[ unsigned char*->unsigned short ][ !!! *3* !!! ][ 65 ][ 12 ][ 10 ]]
[[ unsigned char*->unsigned long int ][ !!! *3* !!! ][ 60 ][ 13 ][ 10 ]]
[[ unsigned char*->unsigned long long ][ !!! *3* !!! ][ 62 ][ 12 ][ 10 ]]
[[ unsigned char*->float ][ 57 ][ 94 ][ 34 ][ !!! *21* !!! ]]
[[ unsigned char*->double ][ 60 ][ 88 ][ 35 ][ !!! *21* !!! ]]
[[ unsigned char*->long double ][ 54 ][ 89 ][ 32 ][ !!! *24* !!! ]]
[[ unsigned char*->array<char, 50> ][ !!! *<1* !!! ][ 68 ][ 12 ][ 8 ]]
[[ unsigned char*->string ][ !!! *1* !!! ][ 61 ][ 13 ][ --- ]]
[[ unsigned char*->container::string ][ !!! *<1* !!! ][ 66 ][ 12 ][ --- ]]
[[ signed char*->char ][ !!! *<1* !!! ][ 58 ][ 6 ][ 5 ]]
[[ signed char*->signed char ][ !!! *<1* !!! ][ 59 ][ 6 ][ 7 ]]
[[ signed char*->unsigned char ][ !!! *<1* !!! ][ 57 ][ 6 ][ 7 ]]
[[ signed char*->int ][ !!! *4* !!! ][ 68 ][ 12 ][ 10 ]]
[[ signed char*->short ][ !!! *4* !!! ][ 68 ][ 12 ][ 10 ]]
[[ signed char*->long int ][ !!! *3* !!! ][ 69 ][ 12 ][ 10 ]]
[[ signed char*->long long ][ !!! *3* !!! ][ 61 ][ 12 ][ 11 ]]
[[ signed char*->unsigned int ][ !!! *3* !!! ][ 59 ][ 11 ][ 10 ]]
[[ signed char*->unsigned short ][ !!! *3* !!! ][ 58 ][ 11 ][ 10 ]]
[[ signed char*->unsigned long int ][ !!! *3* !!! ][ 59 ][ 12 ][ 10 ]]
[[ signed char*->unsigned long long ][ !!! *3* !!! ][ 68 ][ 12 ][ 10 ]]
[[ signed char*->float ][ 55 ][ 93 ][ 39 ][ !!! *22* !!! ]]
[[ signed char*->double ][ 56 ][ 95 ][ 34 ][ !!! *23* !!! ]]
[[ signed char*->long double ][ 58 ][ 89 ][ 32 ][ !!! *23* !!! ]]
[[ signed char*->array<char, 50> ][ !!! *<1* !!! ][ 70 ][ 11 ][ 8 ]]
[[ signed char*->string ][ !!! *1* !!! ][ 64 ][ 15 ][ --- ]]
[[ signed char*->container::string ][ !!! *1* !!! ][ 67 ][ 13 ][ --- ]]
[[ iterator_range<char*>->char ][ !!! *<1* !!! ][ 62 ][ 6 ][ 7 ]]
[[ iterator_range<char*>->signed char ][ !!! *<1* !!! ][ 56 ][ 6 ][ 8 ]]
[[ iterator_range<char*>->unsigned char ][ !!! *<1* !!! ][ 57 ][ 5 ][ 11 ]]
[[ iterator_range<char*>->int ][ !!! *4* !!! ][ 75 ][ 16 ][ 12 ]]
[[ iterator_range<char*>->short ][ !!! *3* !!! ][ 69 ][ 16 ][ 12 ]]
[[ iterator_range<char*>->long int ][ !!! *3* !!! ][ 66 ][ 21 ][ 12 ]]
[[ iterator_range<char*>->long long ][ !!! *3* !!! ][ 70 ][ 15 ][ 12 ]]
[[ iterator_range<char*>->unsigned int ][ !!! *3* !!! ][ 67 ][ 16 ][ 12 ]]
[[ iterator_range<char*>->unsigned short ][ !!! *3* !!! ][ 64 ][ 14 ][ 12 ]]
[[ iterator_range<char*>->unsigned long int ][ !!! *3* !!! ][ 66 ][ 15 ][ 12 ]]
[[ iterator_range<char*>->unsigned long long ][ !!! *3* !!! ][ 72 ][ 17 ][ 12 ]]
[[ iterator_range<char*>->float ][ 55 ][ 100 ][ 42 ][ !!! *23* !!! ]]
[[ iterator_range<char*>->double ][ 54 ][ 100 ][ 40 ][ !!! *23* !!! ]]
[[ iterator_range<char*>->long double ][ 56 ][ 100 ][ 39 ][ !!! *25* !!! ]]
[[ iterator_range<char*>->array<char, 50> ][ !!! *<1* !!! ][ 69 ][ 20 ][ 10 ]]
[[ iterator_range<char*>->string ][ !!! *1* !!! ][ 72 ][ 21 ][ --- ]]
[[ iterator_range<char*>->container::string ][ !!! *<1* !!! ][ 82 ][ 21 ][ --- ]]
[[ std::string_view->char ][ !!! *<1* !!! ][ 65 ][ 5 ][ 8 ]]
[[ std::string_view->signed char ][ !!! *<1* !!! ][ 61 ][ 6 ][ 10 ]]
[[ std::string_view->unsigned char ][ !!! *<1* !!! ][ 56 ][ 5 ][ 9 ]]
[[ std::string_view->int ][ !!! *4* !!! ][ 59 ][ 12 ][ 14 ]]
[[ std::string_view->short ][ !!! *4* !!! ][ 63 ][ 12 ][ 14 ]]
[[ std::string_view->long int ][ !!! *4* !!! ][ 61 ][ 11 ][ 13 ]]
[[ std::string_view->long long ][ !!! *4* !!! ][ 58 ][ 13 ][ 14 ]]
[[ std::string_view->unsigned int ][ !!! *3* !!! ][ 65 ][ 10 ][ 13 ]]
[[ std::string_view->unsigned short ][ !!! *3* !!! ][ 64 ][ 10 ][ 14 ]]
[[ std::string_view->unsigned long int ][ !!! *3* !!! ][ 64 ][ 12 ][ 13 ]]
[[ std::string_view->unsigned long long ][ !!! *3* !!! ][ 65 ][ 11 ][ 14 ]]
[[ std::string_view->float ][ 55 ][ 89 ][ 35 ][ !!! *24* !!! ]]
[[ std::string_view->double ][ 53 ][ 87 ][ 36 ][ !!! *25* !!! ]]
[[ std::string_view->long double ][ 56 ][ 93 ][ 34 ][ !!! *28* !!! ]]
[[ std::string_view->array<char, 50> ][ !!! *1* !!! ][ 64 ][ 10 ][ 11 ]]
[[ std::string_view->string ][ !!! *1* !!! ][ 62 ][ 11 ][ --- ]]
[[ std::string_view->container::string ][ !!! *1* !!! ][ 65 ][ 11 ][ --- ]]
[[ array<char, 50>->char ][ !!! *<1* !!! ][ 54 ][ 6 ][ 5 ]]
[[ array<char, 50>->signed char ][ !!! *<1* !!! ][ 54 ][ 5 ][ 7 ]]
[[ array<char, 50>->unsigned char ][ !!! *<1* !!! ][ 53 ][ 6 ][ 6 ]]
[[ array<char, 50>->int ][ !!! *2* !!! ][ 59 ][ 12 ][ 10 ]]
[[ array<char, 50>->short ][ !!! *3* !!! ][ 58 ][ 12 ][ 10 ]]
[[ array<char, 50>->long int ][ !!! *3* !!! ][ 57 ][ 12 ][ 10 ]]
[[ array<char, 50>->long long ][ !!! *3* !!! ][ 60 ][ 12 ][ 10 ]]
[[ array<char, 50>->unsigned int ][ !!! *3* !!! ][ 60 ][ 11 ][ 10 ]]
[[ array<char, 50>->unsigned short ][ !!! *3* !!! ][ 58 ][ 11 ][ 10 ]]
[[ array<char, 50>->unsigned long int ][ !!! *3* !!! ][ 61 ][ 11 ][ 10 ]]
[[ array<char, 50>->unsigned long long ][ !!! *3* !!! ][ 59 ][ 12 ][ 10 ]]
[[ array<char, 50>->float ][ 52 ][ 89 ][ 35 ][ !!! *21* !!! ]]
[[ array<char, 50>->double ][ 50 ][ 91 ][ 33 ][ !!! *21* !!! ]]
[[ array<char, 50>->long double ][ 52 ][ 83 ][ 33 ][ !!! *23* !!! ]]
[[ array<char, 50>->array<char, 50> ][ !!! *<1* !!! ][ 59 ][ 11 ][ 8 ]]
[[ array<char, 50>->string ][ !!! *1* !!! ][ 66 ][ 13 ][ --- ]]
[[ array<char, 50>->container::string ][ !!! *1* !!! ][ 61 ][ 12 ][ --- ]]
[[ int->int ][ !!! *<1* !!! ][ 61 ][ 14 ][ --- ]]
[[ float->double ][ !!! *<1* !!! ][ 136 ][ 72 ][ --- ]]
[[ char->signed char ][ !!! *<1* !!! ][ 54 ][ 5 ][ --- ]]
]
[endsect]
[section Clang version 15.0.7 ]
[table:id Performance Table ( Clang version 15.0.7 )
[[From->To] [lexical_cast] [std::stringstream with construction] [std::stringstream without construction][scanf/printf]]
[[ string->char ][ !!! *<1* !!! ][ 68 ][ 5 ][ 6 ]]
[[ string->signed char ][ !!! *<1* !!! ][ 59 ][ 5 ][ 7 ]]
[[ string->unsigned char ][ !!! *<1* !!! ][ 59 ][ 5 ][ 7 ]]
[[ string->int ][ !!! *3* !!! ][ 69 ][ 11 ][ 10 ]]
[[ string->short ][ !!! *3* !!! ][ 64 ][ 11 ][ 10 ]]
[[ string->long int ][ !!! *3* !!! ][ 65 ][ 11 ][ 10 ]]
[[ string->long long ][ !!! *3* !!! ][ 68 ][ 13 ][ 10 ]]
[[ string->unsigned int ][ !!! *3* !!! ][ 65 ][ 10 ][ 10 ]]
[[ string->unsigned short ][ !!! *3* !!! ][ 64 ][ 10 ][ 10 ]]
[[ string->unsigned long int ][ !!! *3* !!! ][ 62 ][ 11 ][ 10 ]]
[[ string->unsigned long long ][ !!! *3* !!! ][ 64 ][ 11 ][ 10 ]]
[[ string->float ][ 55 ][ 90 ][ 33 ][ !!! *22* !!! ]]
[[ string->double ][ 56 ][ 89 ][ 32 ][ !!! *22* !!! ]]
[[ string->long double ][ 55 ][ 92 ][ 32 ][ !!! *23* !!! ]]
[[ string->array<char, 50> ][ !!! *<1* !!! ][ 66 ][ 10 ][ 8 ]]
[[ string->string ][ !!! *1* !!! ][ 66 ][ 12 ][ --- ]]
[[ string->container::string ][ !!! *<1* !!! ][ 66 ][ 15 ][ --- ]]
[[ string->char ][ !!! *<1* !!! ][ 61 ][ 9 ][ 1 ]]
[[ string->signed char ][ !!! *<1* !!! ][ 62 ][ 9 ][ 10 ]]
[[ string->unsigned char ][ !!! *<1* !!! ][ 59 ][ 9 ][ 10 ]]
[[ int->string ][ !!! *4* !!! ][ 63 ][ 13 ][ 9 ]]
[[ short->string ][ !!! *4* !!! ][ 69 ][ 13 ][ 10 ]]
[[ long int->string ][ !!! *4* !!! ][ 67 ][ 13 ][ 10 ]]
[[ long long->string ][ !!! *4* !!! ][ 65 ][ 13 ][ 10 ]]
[[ unsigned int->string ][ !!! *4* !!! ][ 66 ][ 13 ][ 10 ]]
[[ unsigned short->string ][ !!! *4* !!! ][ 67 ][ 13 ][ 10 ]]
[[ unsigned long int->string ][ !!! *4* !!! ][ 66 ][ 12 ][ 10 ]]
[[ unsigned long long->string ][ !!! *4* !!! ][ 67 ][ 13 ][ 10 ]]
[[ float->string ][ 25 ][ 108 ][ 47 ][ !!! *22* !!! ]]
[[ double->string ][ !!! *32* !!! ][ 130 ][ 116 ][ 56 ]]
[[ long double->string ][ 103 ][ 266 ][ 123 ][ !!! *64* !!! ]]
[[ char*->char ][ !!! *<1* !!! ][ 129 ][ 13 ][ 14 ]]
[[ char*->signed char ][ !!! *<1* !!! ][ 131 ][ 13 ][ 17 ]]
[[ char*->unsigned char ][ !!! *<1* !!! ][ 133 ][ 13 ][ 17 ]]
[[ char*->int ][ !!! *7* !!! ][ 154 ][ 32 ][ 26 ]]
[[ char*->short ][ !!! *7* !!! ][ 161 ][ 29 ][ 27 ]]
[[ char*->long int ][ !!! *7* !!! ][ 159 ][ 30 ][ 27 ]]
[[ char*->long long ][ !!! *7* !!! ][ 158 ][ 28 ][ 26 ]]
[[ char*->unsigned int ][ !!! *7* !!! ][ 146 ][ 26 ][ 26 ]]
[[ char*->unsigned short ][ !!! *7* !!! ][ 150 ][ 26 ][ 26 ]]
[[ char*->unsigned long int ][ !!! *7* !!! ][ 159 ][ 28 ][ 26 ]]
[[ char*->unsigned long long ][ !!! *7* !!! ][ 158 ][ 30 ][ 27 ]]
[[ char*->float ][ 123 ][ 207 ][ 78 ][ !!! *54* !!! ]]
[[ char*->double ][ 135 ][ 218 ][ 77 ][ !!! *54* !!! ]]
[[ char*->long double ][ 130 ][ 216 ][ 82 ][ !!! *59* !!! ]]
[[ char*->array<char, 50> ][ !!! *<1* !!! ][ 153 ][ 25 ][ 21 ]]
[[ char*->string ][ !!! *2* !!! ][ 159 ][ 31 ][ --- ]]
[[ char*->container::string ][ !!! *3* !!! ][ 151 ][ 15 ][ --- ]]
[[ unsigned char*->char ][ !!! *<1* !!! ][ 56 ][ 5 ][ 6 ]]
[[ unsigned char*->signed char ][ !!! *<1* !!! ][ 58 ][ 5 ][ 7 ]]
[[ unsigned char*->unsigned char ][ !!! *<1* !!! ][ 59 ][ 5 ][ 7 ]]
[[ unsigned char*->int ][ !!! *3* !!! ][ 58 ][ 12 ][ 11 ]]
[[ unsigned char*->short ][ !!! *3* !!! ][ 67 ][ 12 ][ 11 ]]
[[ unsigned char*->long int ][ !!! *3* !!! ][ 67 ][ 12 ][ 11 ]]
[[ unsigned char*->long long ][ !!! *3* !!! ][ 70 ][ 11 ][ 11 ]]
[[ unsigned char*->unsigned int ][ !!! *3* !!! ][ 60 ][ 10 ][ 10 ]]
[[ unsigned char*->unsigned short ][ !!! *3* !!! ][ 65 ][ 10 ][ 11 ]]
[[ unsigned char*->unsigned long int ][ !!! *3* !!! ][ 61 ][ 11 ][ 10 ]]
[[ unsigned char*->unsigned long long ][ !!! *3* !!! ][ 58 ][ 11 ][ 10 ]]
[[ unsigned char*->float ][ 51 ][ 88 ][ 32 ][ !!! *22* !!! ]]
[[ unsigned char*->double ][ 54 ][ 88 ][ 32 ][ !!! *22* !!! ]]
[[ unsigned char*->long double ][ 51 ][ 88 ][ 35 ][ !!! *24* !!! ]]
[[ unsigned char*->array<char, 50> ][ !!! *<1* !!! ][ 127 ][ 26 ][ 21 ]]
[[ unsigned char*->string ][ !!! *2* !!! ][ 90 ][ 11 ][ --- ]]
[[ unsigned char*->container::string ][ !!! *1* !!! ][ 62 ][ 15 ][ --- ]]
[[ signed char*->char ][ !!! *<1* !!! ][ 52 ][ 5 ][ 5 ]]
[[ signed char*->signed char ][ !!! *<1* !!! ][ 53 ][ 5 ][ 7 ]]
[[ signed char*->unsigned char ][ !!! *<1* !!! ][ 52 ][ 5 ][ 7 ]]
[[ signed char*->int ][ !!! *3* !!! ][ 60 ][ 12 ][ 11 ]]
[[ signed char*->short ][ !!! *3* !!! ][ 63 ][ 12 ][ 11 ]]
[[ signed char*->long int ][ !!! *3* !!! ][ 63 ][ 11 ][ 11 ]]
[[ signed char*->long long ][ !!! *3* !!! ][ 64 ][ 11 ][ 11 ]]
[[ signed char*->unsigned int ][ !!! *3* !!! ][ 60 ][ 10 ][ 10 ]]
[[ signed char*->unsigned short ][ !!! *3* !!! ][ 59 ][ 10 ][ 10 ]]
[[ signed char*->unsigned long int ][ !!! *2* !!! ][ 62 ][ 11 ][ 10 ]]
[[ signed char*->unsigned long long ][ !!! *3* !!! ][ 66 ][ 11 ][ 10 ]]
[[ signed char*->float ][ 51 ][ 86 ][ 32 ][ !!! *22* !!! ]]
[[ signed char*->double ][ 55 ][ 87 ][ 32 ][ !!! *22* !!! ]]
[[ signed char*->long double ][ 55 ][ 86 ][ 32 ][ !!! *24* !!! ]]
[[ signed char*->array<char, 50> ][ !!! *<1* !!! ][ 64 ][ 10 ][ 8 ]]
[[ signed char*->string ][ !!! *1* !!! ][ 62 ][ 12 ][ --- ]]
[[ signed char*->container::string ][ !!! *1* !!! ][ 66 ][ 15 ][ --- ]]
[[ iterator_range<char*>->char ][ !!! *<1* !!! ][ 53 ][ 5 ][ 5 ]]
[[ iterator_range<char*>->signed char ][ !!! *<1* !!! ][ 55 ][ 5 ][ 7 ]]
[[ iterator_range<char*>->unsigned char ][ !!! *<1* !!! ][ 57 ][ 5 ][ 7 ]]
[[ iterator_range<char*>->int ][ !!! *3* !!! ][ 67 ][ 15 ][ 11 ]]
[[ iterator_range<char*>->short ][ !!! *3* !!! ][ 96 ][ 37 ][ 27 ]]
[[ iterator_range<char*>->long int ][ !!! *7* !!! ][ 166 ][ 37 ][ 27 ]]
[[ iterator_range<char*>->long long ][ !!! *7* !!! ][ 150 ][ 37 ][ 26 ]]
[[ iterator_range<char*>->unsigned int ][ !!! *7* !!! ][ 158 ][ 34 ][ 26 ]]
[[ iterator_range<char*>->unsigned short ][ !!! *7* !!! ][ 170 ][ 36 ][ 26 ]]
[[ iterator_range<char*>->unsigned long int ][ !!! *7* !!! ][ 154 ][ 35 ][ 26 ]]
[[ iterator_range<char*>->unsigned long long ][ !!! *7* !!! ][ 158 ][ 36 ][ 26 ]]
[[ iterator_range<char*>->float ][ 122 ][ 233 ][ 100 ][ !!! *54* !!! ]]
[[ iterator_range<char*>->double ][ 134 ][ 245 ][ 97 ][ !!! *54* !!! ]]
[[ iterator_range<char*>->long double ][ 127 ][ 238 ][ 98 ][ !!! *59* !!! ]]
[[ iterator_range<char*>->array<char, 50> ][ !!! *<1* !!! ][ 159 ][ 42 ][ 21 ]]
[[ iterator_range<char*>->string ][ !!! *2* !!! ][ 165 ][ 50 ][ --- ]]
[[ iterator_range<char*>->container::string ][ !!! *1* !!! ][ 186 ][ 58 ][ --- ]]
[[ std::string_view->char ][ !!! *<1* !!! ][ 130 ][ 12 ][ 14 ]]
[[ std::string_view->signed char ][ !!! *<1* !!! ][ 128 ][ 12 ][ 18 ]]
[[ std::string_view->unsigned char ][ !!! *<1* !!! ][ 134 ][ 12 ][ 17 ]]
[[ std::string_view->int ][ !!! *7* !!! ][ 153 ][ 31 ][ 27 ]]
[[ std::string_view->short ][ !!! *7* !!! ][ 148 ][ 29 ][ 26 ]]
[[ std::string_view->long int ][ !!! *7* !!! ][ 150 ][ 28 ][ 26 ]]
[[ std::string_view->long long ][ !!! *7* !!! ][ 116 ][ 11 ][ 10 ]]
[[ std::string_view->unsigned int ][ !!! *2* !!! ][ 57 ][ 10 ][ 10 ]]
[[ std::string_view->unsigned short ][ !!! *3* !!! ][ 57 ][ 10 ][ 10 ]]
[[ std::string_view->unsigned long int ][ !!! *2* !!! ][ 66 ][ 11 ][ 10 ]]
[[ std::string_view->unsigned long long ][ !!! *2* !!! ][ 61 ][ 11 ][ 10 ]]
[[ std::string_view->float ][ 52 ][ 90 ][ 31 ][ !!! *22* !!! ]]
[[ std::string_view->double ][ 56 ][ 92 ][ 31 ][ !!! *22* !!! ]]
[[ std::string_view->long double ][ 56 ][ 95 ][ 32 ][ !!! *24* !!! ]]
[[ std::string_view->array<char, 50> ][ !!! *<1* !!! ][ 65 ][ 10 ][ 8 ]]
[[ std::string_view->string ][ !!! *1* !!! ][ 60 ][ 12 ][ --- ]]
[[ std::string_view->container::string ][ !!! *2* !!! ][ 67 ][ 14 ][ --- ]]
[[ array<char, 50>->char ][ !!! *<1* !!! ][ 53 ][ 5 ][ 6 ]]
[[ array<char, 50>->signed char ][ !!! *<1* !!! ][ 54 ][ 5 ][ 7 ]]
[[ array<char, 50>->unsigned char ][ !!! *<1* !!! ][ 53 ][ 5 ][ 7 ]]
[[ array<char, 50>->int ][ !!! *3* !!! ][ 63 ][ 12 ][ 11 ]]
[[ array<char, 50>->short ][ !!! *3* !!! ][ 62 ][ 12 ][ 11 ]]
[[ array<char, 50>->long int ][ !!! *3* !!! ][ 63 ][ 11 ][ 11 ]]
[[ array<char, 50>->long long ][ !!! *3* !!! ][ 60 ][ 11 ][ 11 ]]
[[ array<char, 50>->unsigned int ][ !!! *3* !!! ][ 57 ][ 10 ][ 11 ]]
[[ array<char, 50>->unsigned short ][ !!! *3* !!! ][ 65 ][ 11 ][ 11 ]]
[[ array<char, 50>->unsigned long int ][ !!! *3* !!! ][ 69 ][ 11 ][ 11 ]]
[[ array<char, 50>->unsigned long long ][ !!! *3* !!! ][ 68 ][ 11 ][ 10 ]]
[[ array<char, 50>->float ][ 54 ][ 82 ][ 32 ][ !!! *22* !!! ]]
[[ array<char, 50>->double ][ 57 ][ 93 ][ 32 ][ !!! *22* !!! ]]
[[ array<char, 50>->long double ][ 53 ][ 85 ][ 32 ][ !!! *23* !!! ]]
[[ array<char, 50>->array<char, 50> ][ !!! *<1* !!! ][ 60 ][ 10 ][ 8 ]]
[[ array<char, 50>->string ][ !!! *1* !!! ][ 61 ][ 11 ][ --- ]]
[[ array<char, 50>->container::string ][ !!! *1* !!! ][ 62 ][ 15 ][ --- ]]
[[ int->int ][ !!! *<1* !!! ][ 65 ][ 15 ][ --- ]]
[[ float->double ][ !!! *<1* !!! ][ 138 ][ 68 ][ --- ]]
[[ char->signed char ][ !!! *<1* !!! ][ 53 ][ 5 ][ --- ]]
]
[endsect]
[section GNU C++ version 10.5.0]
[table:id Performance Table ( GNU C++ version 10.5.0)
[[From->To] [lexical_cast] [std::stringstream with construction] [std::stringstream without construction][scanf/printf]]
[[ string->char ][ !!! *<1* !!! ][ 64 ][ 5 ][ 5 ]]
[[ string->signed char ][ !!! *<1* !!! ][ 51 ][ 5 ][ 7 ]]
[[ string->unsigned char ][ !!! *<1* !!! ][ 53 ][ 5 ][ 6 ]]
[[ string->int ][ !!! *3* !!! ][ 56 ][ 11 ][ 10 ]]
[[ string->short ][ !!! *3* !!! ][ 56 ][ 12 ][ 10 ]]
[[ string->long int ][ !!! *3* !!! ][ 58 ][ 13 ][ 10 ]]
[[ string->long long ][ !!! *3* !!! ][ 56 ][ 13 ][ 10 ]]
[[ string->unsigned int ][ !!! *3* !!! ][ 60 ][ 10 ][ 10 ]]
[[ string->unsigned short ][ !!! *3* !!! ][ 58 ][ 10 ][ 10 ]]
[[ string->unsigned long int ][ !!! *3* !!! ][ 59 ][ 12 ][ 10 ]]
[[ string->unsigned long long ][ !!! *3* !!! ][ 53 ][ 11 ][ 10 ]]
[[ string->float ][ 49 ][ 81 ][ 34 ][ !!! *21* !!! ]]
[[ string->double ][ 45 ][ 75 ][ 28 ][ !!! *21* !!! ]]
[[ string->long double ][ 46 ][ 76 ][ 30 ][ !!! *25* !!! ]]
[[ string->array<char, 50> ][ !!! *<1* !!! ][ 55 ][ 10 ][ 10 ]]
[[ string->string ][ !!! *1* !!! ][ 54 ][ 11 ][ --- ]]
[[ string->container::string ][ !!! *<1* !!! ][ 57 ][ 11 ][ --- ]]
[[ string->char ][ !!! *<1* !!! ][ 51 ][ 9 ][ 7 ]]
[[ string->signed char ][ !!! *<1* !!! ][ 51 ][ 10 ][ 10 ]]
[[ string->unsigned char ][ !!! *<1* !!! ][ 53 ][ 10 ][ 10 ]]
[[ int->string ][ !!! *3* !!! ][ 55 ][ 12 ][ 10 ]]
[[ short->string ][ !!! *3* !!! ][ 55 ][ 13 ][ 10 ]]
[[ long int->string ][ !!! *3* !!! ][ 55 ][ 12 ][ 10 ]]
[[ long long->string ][ !!! *3* !!! ][ 56 ][ 12 ][ 10 ]]
[[ unsigned int->string ][ !!! *3* !!! ][ 54 ][ 12 ][ 10 ]]
[[ unsigned short->string ][ !!! *3* !!! ][ 54 ][ 12 ][ 10 ]]
[[ unsigned long int->string ][ !!! *3* !!! ][ 55 ][ 12 ][ 10 ]]
[[ unsigned long long->string ][ !!! *3* !!! ][ 55 ][ 12 ][ 10 ]]
[[ float->string ][ 26 ][ 96 ][ 46 ][ !!! *25* !!! ]]
[[ double->string ][ 33 ][ 94 ][ 46 ][ !!! *23* !!! ]]
[[ long double->string ][ 44 ][ 96 ][ 52 ][ !!! *26* !!! ]]
[[ char*->char ][ !!! *<1* !!! ][ 48 ][ 5 ][ 5 ]]
[[ char*->signed char ][ !!! *<1* !!! ][ 47 ][ 5 ][ 7 ]]
[[ char*->unsigned char ][ !!! *<1* !!! ][ 47 ][ 5 ][ 6 ]]
[[ char*->int ][ !!! *3* !!! ][ 57 ][ 12 ][ 10 ]]
[[ char*->short ][ !!! *3* !!! ][ 55 ][ 12 ][ 10 ]]
[[ char*->long int ][ !!! *3* !!! ][ 59 ][ 11 ][ 10 ]]
[[ char*->long long ][ !!! *4* !!! ][ 61 ][ 11 ][ 10 ]]
[[ char*->unsigned int ][ !!! *3* !!! ][ 53 ][ 10 ][ 10 ]]
[[ char*->unsigned short ][ !!! *3* !!! ][ 53 ][ 10 ][ 10 ]]
[[ char*->unsigned long int ][ !!! *3* !!! ][ 54 ][ 11 ][ 10 ]]
[[ char*->unsigned long long ][ !!! *3* !!! ][ 55 ][ 11 ][ 10 ]]
[[ char*->float ][ 46 ][ 78 ][ 39 ][ !!! *21* !!! ]]
[[ char*->double ][ 43 ][ 73 ][ 28 ][ !!! *21* !!! ]]
[[ char*->long double ][ 46 ][ 74 ][ 30 ][ !!! *23* !!! ]]
[[ char*->array<char, 50> ][ !!! *<1* !!! ][ 52 ][ 10 ][ 8 ]]
[[ char*->string ][ !!! *1* !!! ][ 58 ][ 11 ][ --- ]]
[[ char*->container::string ][ !!! *<1* !!! ][ 64 ][ 11 ][ --- ]]
[[ unsigned char*->char ][ !!! *<1* !!! ][ 52 ][ 4 ][ 4 ]]
[[ unsigned char*->signed char ][ !!! *<1* !!! ][ 54 ][ 4 ][ 5 ]]
[[ unsigned char*->unsigned char ][ !!! *<1* !!! ][ 54 ][ 4 ][ 5 ]]
[[ unsigned char*->int ][ !!! *4* !!! ][ 59 ][ 10 ][ 8 ]]
[[ unsigned char*->short ][ !!! *4* !!! ][ 59 ][ 10 ][ 8 ]]
[[ unsigned char*->long int ][ !!! *4* !!! ][ 66 ][ 24 ][ 19 ]]
[[ unsigned char*->long long ][ !!! *4* !!! ][ 59 ][ 10 ][ 8 ]]
[[ unsigned char*->unsigned int ][ !!! *4* !!! ][ 79 ][ 24 ][ 22 ]]
[[ unsigned char*->unsigned short ][ !!! *7* !!! ][ 123 ][ 23 ][ 22 ]]
[[ unsigned char*->unsigned long int ][ !!! *8* !!! ][ 121 ][ 24 ][ 22 ]]
[[ unsigned char*->unsigned long long ][ !!! *8* !!! ][ 121 ][ 24 ][ 22 ]]
[[ unsigned char*->float ][ 97 ][ 167 ][ 67 ][ !!! *47* !!! ]]
[[ unsigned char*->double ][ 96 ][ 164 ][ 67 ][ !!! *47* !!! ]]
[[ unsigned char*->long double ][ 97 ][ 165 ][ 66 ][ !!! *47* !!! ]]
[[ unsigned char*->array<char, 50> ][ !!! *<1* !!! ][ 119 ][ 22 ][ 17 ]]
[[ unsigned char*->string ][ !!! *11* !!! ][ 139 ][ 34 ][ --- ]]
[[ unsigned char*->container::string ][ !!! *1* !!! ][ 121 ][ 25 ][ --- ]]
[[ signed char*->char ][ !!! *<1* !!! ][ 106 ][ 11 ][ 8 ]]
[[ signed char*->signed char ][ !!! *<1* !!! ][ 81 ][ 12 ][ 13 ]]
[[ signed char*->unsigned char ][ !!! *<1* !!! ][ 109 ][ 11 ][ 12 ]]
[[ signed char*->int ][ !!! *7* !!! ][ 122 ][ 24 ][ 21 ]]
[[ signed char*->short ][ !!! *4* !!! ][ 59 ][ 10 ][ 8 ]]
[[ signed char*->long int ][ !!! *4* !!! ][ 60 ][ 10 ][ 8 ]]
[[ signed char*->long long ][ !!! *4* !!! ][ 60 ][ 10 ][ 8 ]]
[[ signed char*->unsigned int ][ !!! *4* !!! ][ 64 ][ 23 ][ 22 ]]
[[ signed char*->unsigned short ][ !!! *7* !!! ][ 120 ][ 24 ][ 22 ]]
[[ signed char*->unsigned long int ][ !!! *8* !!! ][ 121 ][ 24 ][ 22 ]]
[[ signed char*->unsigned long long ][ !!! *8* !!! ][ 122 ][ 23 ][ 22 ]]
[[ signed char*->float ][ 95 ][ 165 ][ 68 ][ !!! *46* !!! ]]
[[ signed char*->double ][ 95 ][ 161 ][ 66 ][ !!! *47* !!! ]]
[[ signed char*->long double ][ 96 ][ 161 ][ 66 ][ !!! *46* !!! ]]
[[ signed char*->array<char, 50> ][ !!! *<1* !!! ][ 117 ][ 22 ][ 17 ]]
[[ signed char*->string ][ !!! *10* !!! ][ 84 ][ 15 ][ --- ]]
[[ signed char*->container::string ][ !!! *1* !!! ][ 119 ][ 25 ][ --- ]]
[[ iterator_range<char*>->char ][ !!! *<1* !!! ][ 111 ][ 16 ][ 11 ]]
[[ iterator_range<char*>->signed char ][ !!! *<1* !!! ][ 110 ][ 16 ][ 13 ]]
[[ iterator_range<char*>->unsigned char ][ !!! *<1* !!! ][ 111 ][ 15 ][ 13 ]]
[[ iterator_range<char*>->int ][ !!! *6* !!! ][ 119 ][ 25 ][ 22 ]]
[[ iterator_range<char*>->short ][ !!! *7* !!! ][ 119 ][ 25 ][ 22 ]]
[[ iterator_range<char*>->long int ][ !!! *7* !!! ][ 120 ][ 25 ][ 22 ]]
[[ iterator_range<char*>->long long ][ !!! *8* !!! ][ 119 ][ 24 ][ 22 ]]
[[ iterator_range<char*>->unsigned int ][ !!! *6* !!! ][ 119 ][ 24 ][ 22 ]]
[[ iterator_range<char*>->unsigned short ][ !!! *6* !!! ][ 117 ][ 24 ][ 22 ]]
[[ iterator_range<char*>->unsigned long int ][ !!! *7* !!! ][ 120 ][ 24 ][ 22 ]]
[[ iterator_range<char*>->unsigned long long ][ !!! *8* !!! ][ 118 ][ 24 ][ 22 ]]
[[ iterator_range<char*>->float ][ 96 ][ 155 ][ 48 ][ !!! *47* !!! ]]
[[ iterator_range<char*>->double ][ 96 ][ 141 ][ 47 ][ !!! *47* !!! ]]
[[ iterator_range<char*>->long double ][ 96 ][ 140 ][ 46 ][ !!! *46* !!! ]]
[[ iterator_range<char*>->array<char, 50> ][ !!! *<1* !!! ][ 118 ][ 25 ][ 17 ]]
[[ iterator_range<char*>->string ][ !!! *10* !!! ][ 136 ][ 35 ][ --- ]]
[[ iterator_range<char*>->container::string ][ !!! *1* !!! ][ 119 ][ 26 ][ --- ]]
[[ array<char, 50>->char ][ !!! *<1* !!! ][ 108 ][ 11 ][ 10 ]]
[[ array<char, 50>->signed char ][ !!! *<1* !!! ][ 106 ][ 12 ][ 12 ]]
[[ array<char, 50>->unsigned char ][ !!! *<1* !!! ][ 107 ][ 11 ][ 13 ]]
[[ array<char, 50>->int ][ !!! *6* !!! ][ 119 ][ 24 ][ 22 ]]
[[ array<char, 50>->short ][ !!! *7* !!! ][ 121 ][ 24 ][ 22 ]]
[[ array<char, 50>->long int ][ !!! *7* !!! ][ 119 ][ 24 ][ 22 ]]
[[ array<char, 50>->long long ][ !!! *7* !!! ][ 123 ][ 24 ][ 22 ]]
[[ array<char, 50>->unsigned int ][ !!! *7* !!! ][ 121 ][ 23 ][ 25 ]]
[[ array<char, 50>->unsigned short ][ !!! *6* !!! ][ 120 ][ 24 ][ 22 ]]
[[ array<char, 50>->unsigned long int ][ !!! *7* !!! ][ 59 ][ 10 ][ 9 ]]
[[ array<char, 50>->unsigned long long ][ !!! *4* !!! ][ 60 ][ 10 ][ 8 ]]
[[ array<char, 50>->float ][ 47 ][ 80 ][ 32 ][ !!! *22* !!! ]]
[[ array<char, 50>->double ][ 46 ][ 82 ][ 31 ][ !!! *22* !!! ]]
[[ array<char, 50>->long double ][ 49 ][ 82 ][ 31 ][ !!! *22* !!! ]]
[[ array<char, 50>->array<char, 50> ][ !!! *1* !!! ][ 59 ][ 9 ][ 7 ]]
[[ array<char, 50>->string ][ !!! *5* !!! ][ 70 ][ 15 ][ --- ]]
[[ array<char, 50>->container::string ][ !!! *1* !!! ][ 60 ][ 11 ][ --- ]]
[[ int->int ][ !!! *<1* !!! ][ 61 ][ 12 ][ --- ]]
[[ float->double ][ !!! *<1* !!! ][ 111 ][ 54 ][ --- ]]
[[ char->signed char ][ !!! *<1* !!! ][ 51 ][ 4 ][ --- ]]
[[ unsigned char*->char ][ !!! *<1* !!! ][ 47 ][ 5 ][ 5 ]]
[[ unsigned char*->signed char ][ !!! *<1* !!! ][ 47 ][ 5 ][ 7 ]]
[[ unsigned char*->unsigned char ][ !!! *<1* !!! ][ 47 ][ 5 ][ 7 ]]
[[ unsigned char*->int ][ !!! *3* !!! ][ 55 ][ 12 ][ 12 ]]
[[ unsigned char*->short ][ !!! *4* !!! ][ 59 ][ 11 ][ 10 ]]
[[ unsigned char*->long int ][ !!! *3* !!! ][ 56 ][ 12 ][ 10 ]]
[[ unsigned char*->long long ][ !!! *3* !!! ][ 55 ][ 12 ][ 10 ]]
[[ unsigned char*->unsigned int ][ !!! *3* !!! ][ 53 ][ 10 ][ 10 ]]
[[ unsigned char*->unsigned short ][ !!! *3* !!! ][ 54 ][ 10 ][ 10 ]]
[[ unsigned char*->unsigned long int ][ !!! *3* !!! ][ 54 ][ 11 ][ 10 ]]
[[ unsigned char*->unsigned long long ][ !!! *3* !!! ][ 55 ][ 11 ][ 10 ]]
[[ unsigned char*->float ][ 100 ][ 143 ][ 33 ][ !!! *21* !!! ]]
[[ unsigned char*->double ][ 44 ][ 73 ][ 28 ][ !!! *22* !!! ]]
[[ unsigned char*->long double ][ 46 ][ 75 ][ 30 ][ !!! *23* !!! ]]
[[ unsigned char*->array<char, 50> ][ !!! *<1* !!! ][ 53 ][ 11 ][ 8 ]]
[[ unsigned char*->string ][ !!! *1* !!! ][ 58 ][ 11 ][ --- ]]
[[ unsigned char*->container::string ][ !!! *<1* !!! ][ 59 ][ 11 ][ --- ]]
[[ signed char*->char ][ !!! *<1* !!! ][ 47 ][ 5 ][ 5 ]]
[[ signed char*->signed char ][ !!! *<1* !!! ][ 47 ][ 5 ][ 7 ]]
[[ signed char*->unsigned char ][ !!! *<1* !!! ][ 51 ][ 5 ][ 6 ]]
[[ signed char*->int ][ !!! *3* !!! ][ 55 ][ 12 ][ 10 ]]
[[ signed char*->short ][ !!! *4* !!! ][ 56 ][ 12 ][ 10 ]]
[[ signed char*->long int ][ !!! *4* !!! ][ 56 ][ 11 ][ 10 ]]
[[ signed char*->long long ][ !!! *3* !!! ][ 55 ][ 11 ][ 10 ]]
[[ signed char*->unsigned int ][ !!! *3* !!! ][ 60 ][ 10 ][ 10 ]]
[[ signed char*->unsigned short ][ !!! *3* !!! ][ 53 ][ 10 ][ 10 ]]
[[ signed char*->unsigned long int ][ !!! *3* !!! ][ 54 ][ 11 ][ 10 ]]
[[ signed char*->unsigned long long ][ !!! *6* !!! ][ 58 ][ 11 ][ 10 ]]
[[ signed char*->float ][ 47 ][ 76 ][ 32 ][ !!! *21* !!! ]]
[[ signed char*->double ][ 44 ][ 73 ][ 29 ][ !!! *21* !!! ]]
[[ signed char*->long double ][ 45 ][ 74 ][ 31 ][ !!! *24* !!! ]]
[[ signed char*->array<char, 50> ][ !!! *<1* !!! ][ 52 ][ 11 ][ 8 ]]
[[ signed char*->string ][ !!! *1* !!! ][ 58 ][ 11 ][ --- ]]
[[ signed char*->container::string ][ !!! *<1* !!! ][ 59 ][ 11 ][ --- ]]
[[ iterator_range<char*>->char ][ !!! *<1* !!! ][ 47 ][ 5 ][ 5 ]]
[[ iterator_range<char*>->signed char ][ !!! *<1* !!! ][ 47 ][ 5 ][ 7 ]]
[[ iterator_range<char*>->unsigned char ][ !!! *<1* !!! ][ 53 ][ 5 ][ 6 ]]
[[ iterator_range<char*>->int ][ !!! *3* !!! ][ 58 ][ 15 ][ 10 ]]
[[ iterator_range<char*>->short ][ !!! *3* !!! ][ 59 ][ 16 ][ 10 ]]
[[ iterator_range<char*>->long int ][ !!! *3* !!! ][ 58 ][ 15 ][ 10 ]]
[[ iterator_range<char*>->long long ][ !!! *3* !!! ][ 59 ][ 15 ][ 10 ]]
[[ iterator_range<char*>->unsigned int ][ !!! *3* !!! ][ 56 ][ 14 ][ 10 ]]
[[ iterator_range<char*>->unsigned short ][ !!! *3* !!! ][ 61 ][ 14 ][ 10 ]]
[[ iterator_range<char*>->unsigned long int ][ !!! *3* !!! ][ 58 ][ 14 ][ 10 ]]
[[ iterator_range<char*>->unsigned long long ][ !!! *3* !!! ][ 71 ][ 36 ][ 25 ]]
[[ iterator_range<char*>->float ][ 116 ][ 93 ][ 39 ][ !!! *21* !!! ]]
[[ iterator_range<char*>->double ][ 43 ][ 81 ][ 34 ][ !!! *21* !!! ]]
[[ iterator_range<char*>->long double ][ 44 ][ 87 ][ 37 ][ !!! *24* !!! ]]
[[ iterator_range<char*>->array<char, 50> ][ !!! *<1* !!! ][ 58 ][ 17 ][ 8 ]]
[[ iterator_range<char*>->string ][ !!! *1* !!! ][ 63 ][ 20 ][ --- ]]
[[ iterator_range<char*>->container::string ][ !!! *<1* !!! ][ 65 ][ 20 ][ --- ]]
[[ std::string_view->char ][ !!! *<1* !!! ][ 46 ][ 5 ][ 5 ]]
[[ std::string_view->signed char ][ !!! *<1* !!! ][ 47 ][ 5 ][ 7 ]]
[[ std::string_view->unsigned char ][ !!! *<1* !!! ][ 47 ][ 5 ][ 7 ]]
[[ std::string_view->int ][ !!! *4* !!! ][ 56 ][ 11 ][ 10 ]]
[[ std::string_view->short ][ !!! *3* !!! ][ 55 ][ 12 ][ 10 ]]
[[ std::string_view->long int ][ !!! *4* !!! ][ 54 ][ 11 ][ 10 ]]
[[ std::string_view->long long ][ !!! *4* !!! ][ 54 ][ 11 ][ 10 ]]
[[ std::string_view->unsigned int ][ !!! *3* !!! ][ 53 ][ 10 ][ 10 ]]
[[ std::string_view->unsigned short ][ !!! *3* !!! ][ 54 ][ 10 ][ 10 ]]
[[ std::string_view->unsigned long int ][ !!! *3* !!! ][ 54 ][ 11 ][ 10 ]]
[[ std::string_view->unsigned long long ][ !!! *3* !!! ][ 55 ][ 11 ][ 10 ]]
[[ std::string_view->float ][ 47 ][ 76 ][ 32 ][ !!! *22* !!! ]]
[[ std::string_view->double ][ 43 ][ 74 ][ 28 ][ !!! *21* !!! ]]
[[ std::string_view->long double ][ 46 ][ 75 ][ 31 ][ !!! *24* !!! ]]
[[ std::string_view->array<char, 50> ][ !!! *1* !!! ][ 51 ][ 10 ][ 8 ]]
[[ std::string_view->string ][ !!! *2* !!! ][ 53 ][ 10 ][ --- ]]
[[ std::string_view->container::string ][ !!! *1* !!! ][ 56 ][ 11 ][ --- ]]
[[ array<char, 50>->char ][ !!! *<1* !!! ][ 47 ][ 5 ][ 5 ]]
[[ array<char, 50>->signed char ][ !!! *<1* !!! ][ 47 ][ 5 ][ 6 ]]
[[ array<char, 50>->unsigned char ][ !!! *<1* !!! ][ 49 ][ 5 ][ 6 ]]
[[ array<char, 50>->int ][ !!! *3* !!! ][ 54 ][ 12 ][ 10 ]]
[[ array<char, 50>->short ][ !!! *3* !!! ][ 61 ][ 11 ][ 10 ]]
[[ array<char, 50>->long int ][ !!! *3* !!! ][ 55 ][ 11 ][ 10 ]]
[[ array<char, 50>->long long ][ !!! *3* !!! ][ 54 ][ 11 ][ 10 ]]
[[ array<char, 50>->unsigned int ][ !!! *3* !!! ][ 53 ][ 10 ][ 10 ]]
[[ array<char, 50>->unsigned short ][ !!! *3* !!! ][ 52 ][ 10 ][ 10 ]]
[[ array<char, 50>->unsigned long int ][ !!! *3* !!! ][ 62 ][ 11 ][ 10 ]]
[[ array<char, 50>->unsigned long long ][ !!! *3* !!! ][ 54 ][ 11 ][ 10 ]]
[[ array<char, 50>->float ][ 45 ][ 75 ][ 35 ][ !!! *24* !!! ]]
[[ array<char, 50>->double ][ 44 ][ 75 ][ 28 ][ !!! *21* !!! ]]
[[ array<char, 50>->long double ][ 45 ][ 76 ][ 29 ][ !!! *24* !!! ]]
[[ array<char, 50>->array<char, 50> ][ !!! *<1* !!! ][ 53 ][ 10 ][ 8 ]]
[[ array<char, 50>->string ][ !!! *1* !!! ][ 54 ][ 11 ][ --- ]]
[[ array<char, 50>->container::string ][ !!! *1* !!! ][ 56 ][ 12 ][ --- ]]
[[ int->int ][ !!! *<1* !!! ][ 58 ][ 13 ][ --- ]]
[[ float->double ][ !!! *<1* !!! ][ 116 ][ 63 ][ --- ]]
[[ char->signed char ][ !!! *<1* !!! ][ 47 ][ 5 ][ --- ]]
]
[endsect]
[section GNU C++ version 4.8.5]
[table:id Performance Table ( GNU C++ version 4.8.5)
[[From->To] [lexical_cast] [std::stringstream with construction] [std::stringstream without construction][scanf/printf]]
[[ string->char ][ !!! *<1* !!! ][ 100 ][ 10 ][ 10 ]]
[[ string->signed char ][ !!! *<1* !!! ][ 97 ][ 9 ][ 11 ]]
[[ string->unsigned char ][ !!! *<1* !!! ][ 103 ][ 11 ][ 13 ]]
[[ string->int ][ !!! *6* !!! ][ 122 ][ 23 ][ 22 ]]
[[ string->short ][ !!! *6* !!! ][ 116 ][ 23 ][ 22 ]]
[[ string->long int ][ !!! *6* !!! ][ 97 ][ 21 ][ 22 ]]
[[ string->long long ][ !!! *7* !!! ][ 118 ][ 22 ][ 22 ]]
[[ string->unsigned int ][ !!! *6* !!! ][ 116 ][ 22 ][ 22 ]]
[[ string->unsigned short ][ !!! *6* !!! ][ 106 ][ 9 ][ 8 ]]
[[ string->unsigned long int ][ !!! *3* !!! ][ 59 ][ 9 ][ 8 ]]
[[ string->unsigned long long ][ !!! *3* !!! ][ 58 ][ 9 ][ 8 ]]
[[ string->float ][ 88 ][ 166 ][ 70 ][ !!! *47* !!! ]]
[[ string->double ][ 102 ][ 162 ][ 65 ][ !!! *51* !!! ]]
[[ string->long double ][ 96 ][ 163 ][ 71 ][ !!! *46* !!! ]]
[[ string->array<char, 50> ][ !!! *1* !!! ][ 112 ][ 21 ][ 18 ]]
[[ string->string ][ !!! *2* !!! ][ 139 ][ 37 ][ --- ]]
[[ string->container::string ][ !!! *1* !!! ][ 121 ][ 24 ][ --- ]]
[[ string->char ][ !!! *9* !!! ][ 121 ][ 31 ][ 21 ]]
[[ string->signed char ][ !!! *9* !!! ][ 121 ][ 31 ][ 34 ]]
[[ string->unsigned char ][ !!! *9* !!! ][ 120 ][ 31 ][ 30 ]]
[[ int->string ][ !!! *17* !!! ][ 141 ][ 39 ][ 30 ]]
[[ short->string ][ !!! *18* !!! ][ 142 ][ 39 ][ 30 ]]
[[ long int->string ][ 17 ][ 136 ][ 17 ][ !!! *12* !!! ]]
[[ long long->string ][ !!! *7* !!! ][ 69 ][ 17 ][ 13 ]]
[[ unsigned int->string ][ !!! *8* !!! ][ 70 ][ 24 ][ 13 ]]
[[ unsigned short->string ][ !!! *7* !!! ][ 69 ][ 17 ][ 12 ]]
[[ unsigned long int->string ][ !!! *7* !!! ][ 71 ][ 16 ][ 12 ]]
[[ unsigned long long->string ][ !!! *7* !!! ][ 71 ][ 16 ][ 12 ]]
[[ float->string ][ 60 ][ 95 ][ 49 ][ !!! *24* !!! ]]
[[ double->string ][ 68 ][ 97 ][ 45 ][ !!! *26* !!! ]]
[[ long double->string ][ 72 ][ 108 ][ 45 ][ !!! *28* !!! ]]
[[ char*->char ][ !!! *<1* !!! ][ 52 ][ 5 ][ 4 ]]
[[ char*->signed char ][ !!! *<1* !!! ][ 52 ][ 5 ][ 5 ]]
[[ char*->unsigned char ][ !!! *<1* !!! ][ 52 ][ 5 ][ 5 ]]
[[ char*->int ][ !!! *3* !!! ][ 60 ][ 10 ][ 8 ]]
[[ char*->short ][ !!! *3* !!! ][ 61 ][ 10 ][ 8 ]]
[[ char*->long int ][ !!! *4* !!! ][ 60 ][ 10 ][ 8 ]]
[[ char*->long long ][ !!! *4* !!! ][ 61 ][ 9 ][ 8 ]]
[[ char*->unsigned int ][ !!! *3* !!! ][ 103 ][ 13 ][ 8 ]]
[[ char*->unsigned short ][ !!! *3* !!! ][ 97 ][ 23 ][ 22 ]]
[[ char*->unsigned long int ][ !!! *7* !!! ][ 123 ][ 23 ][ 22 ]]
[[ char*->unsigned long long ][ !!! *6* !!! ][ 72 ][ 10 ][ 8 ]]
[[ char*->float ][ 85 ][ 160 ][ 66 ][ !!! *47* !!! ]]
[[ char*->double ][ 94 ][ 161 ][ 65 ][ !!! *46* !!! ]]
[[ char*->long double ][ 94 ][ 172 ][ 64 ][ !!! *47* !!! ]]
[[ char*->array<char, 50> ][ !!! *2* !!! ][ 113 ][ 22 ][ 16 ]]
[[ char*->string ][ !!! *10* !!! ][ 145 ][ 34 ][ --- ]]
[[ char*->container::string ][ !!! *1* !!! ][ 120 ][ 25 ][ --- ]]
[[ unsigned char*->char ][ !!! *<1* !!! ][ 102 ][ 11 ][ 10 ]]
[[ unsigned char*->signed char ][ !!! *<1* !!! ][ 100 ][ 12 ][ 12 ]]
[[ unsigned char*->unsigned char ][ !!! *<1* !!! ][ 102 ][ 11 ][ 12 ]]
[[ unsigned char*->int ][ !!! *7* !!! ][ 119 ][ 24 ][ 22 ]]
[[ unsigned char*->short ][ !!! *7* !!! ][ 120 ][ 24 ][ 22 ]]
[[ unsigned char*->long int ][ !!! *7* !!! ][ 119 ][ 24 ][ 23 ]]
[[ unsigned char*->long long ][ !!! *7* !!! ][ 119 ][ 24 ][ 22 ]]
[[ unsigned char*->unsigned int ][ !!! *6* !!! ][ 82 ][ 9 ][ 8 ]]
[[ unsigned char*->unsigned short ][ !!! *3* !!! ][ 58 ][ 9 ][ 8 ]]
[[ unsigned char*->unsigned long int ][ !!! *4* !!! ][ 59 ][ 10 ][ 10 ]]
[[ unsigned char*->unsigned long long ][ !!! *4* !!! ][ 60 ][ 12 ][ 8 ]]
[[ unsigned char*->float ][ 47 ][ 80 ][ 32 ][ !!! *22* !!! ]]
[[ unsigned char*->double ][ 47 ][ 79 ][ 31 ][ !!! *23* !!! ]]
[[ unsigned char*->long double ][ 47 ][ 80 ][ 31 ][ !!! *22* !!! ]]
[[ unsigned char*->array<char, 50> ][ !!! *1* !!! ][ 58 ][ 9 ][ 7 ]]
[[ unsigned char*->string ][ !!! *4* !!! ][ 68 ][ 15 ][ --- ]]
[[ unsigned char*->container::string ][ !!! *<1* !!! ][ 60 ][ 10 ][ --- ]]
[[ signed char*->char ][ !!! *<1* !!! ][ 52 ][ 5 ][ 4 ]]
[[ signed char*->signed char ][ !!! *<1* !!! ][ 54 ][ 4 ][ 5 ]]
[[ signed char*->unsigned char ][ !!! *<1* !!! ][ 52 ][ 4 ][ 6 ]]
[[ signed char*->int ][ !!! *6* !!! ][ 59 ][ 10 ][ 8 ]]
[[ signed char*->short ][ !!! *3* !!! ][ 59 ][ 10 ][ 8 ]]
[[ signed char*->long int ][ !!! *4* !!! ][ 60 ][ 10 ][ 8 ]]
[[ signed char*->long long ][ !!! *4* !!! ][ 59 ][ 10 ][ 9 ]]
[[ signed char*->unsigned int ][ !!! *3* !!! ][ 58 ][ 9 ][ 8 ]]
[[ signed char*->unsigned short ][ !!! *4* !!! ][ 58 ][ 9 ][ 8 ]]
[[ signed char*->unsigned long int ][ !!! *4* !!! ][ 59 ][ 10 ][ 8 ]]
[[ signed char*->unsigned long long ][ !!! *4* !!! ][ 59 ][ 10 ][ 8 ]]
[[ signed char*->float ][ 47 ][ 81 ][ 32 ][ !!! *25* !!! ]]
[[ signed char*->double ][ 46 ][ 79 ][ 31 ][ !!! *22* !!! ]]
[[ signed char*->long double ][ 48 ][ 80 ][ 32 ][ !!! *22* !!! ]]
[[ signed char*->array<char, 50> ][ !!! *1* !!! ][ 63 ][ 9 ][ 7 ]]
[[ signed char*->string ][ !!! *4* !!! ][ 68 ][ 15 ][ --- ]]
[[ signed char*->container::string ][ !!! *<1* !!! ][ 58 ][ 10 ][ --- ]]
[[ iterator_range<char*>->char ][ !!! *<1* !!! ][ 54 ][ 6 ][ 4 ]]
[[ iterator_range<char*>->signed char ][ !!! *<1* !!! ][ 57 ][ 6 ][ 5 ]]
[[ iterator_range<char*>->unsigned char ][ !!! *<1* !!! ][ 54 ][ 6 ][ 5 ]]
[[ iterator_range<char*>->int ][ !!! *3* !!! ][ 59 ][ 10 ][ 8 ]]
[[ iterator_range<char*>->short ][ !!! *3* !!! ][ 59 ][ 11 ][ 9 ]]
[[ iterator_range<char*>->long int ][ !!! *3* !!! ][ 61 ][ 11 ][ 8 ]]
[[ iterator_range<char*>->long long ][ !!! *3* !!! ][ 59 ][ 10 ][ 9 ]]
[[ iterator_range<char*>->unsigned int ][ !!! *3* !!! ][ 57 ][ 9 ][ 8 ]]
[[ iterator_range<char*>->unsigned short ][ !!! *3* !!! ][ 59 ][ 10 ][ 8 ]]
[[ iterator_range<char*>->unsigned long int ][ !!! *3* !!! ][ 58 ][ 10 ][ 8 ]]
[[ iterator_range<char*>->unsigned long long ][ !!! *3* !!! ][ 58 ][ 15 ][ 8 ]]
[[ iterator_range<char*>->float ][ 46 ][ 78 ][ 22 ][ !!! *22* !!! ]]
[[ iterator_range<char*>->double ][ 94 ][ 85 ][ !!! *21* !!! ][ 22 ]]
[[ iterator_range<char*>->long double ][ 47 ][ 79 ][ 33 ][ !!! *22* !!! ]]
[[ iterator_range<char*>->array<char, 50> ][ !!! *1* !!! ][ 102 ][ 25 ][ 16 ]]
[[ iterator_range<char*>->string ][ !!! *10* !!! ][ 96 ][ 16 ][ --- ]]
[[ iterator_range<char*>->container::string ][ !!! *<1* !!! ][ 64 ][ 11 ][ --- ]]
[[ array<char, 50>->char ][ !!! *<1* !!! ][ 75 ][ 4 ][ 4 ]]
[[ array<char, 50>->signed char ][ !!! *<1* !!! ][ 54 ][ 6 ][ 13 ]]
[[ array<char, 50>->unsigned char ][ !!! *<1* !!! ][ 103 ][ 12 ][ 12 ]]
[[ array<char, 50>->int ][ !!! *6* !!! ][ 121 ][ 25 ][ 23 ]]
[[ array<char, 50>->short ][ !!! *7* !!! ][ 122 ][ 24 ][ 22 ]]
[[ array<char, 50>->long int ][ !!! *7* !!! ][ 119 ][ 24 ][ 22 ]]
[[ array<char, 50>->long long ][ !!! *7* !!! ][ 120 ][ 24 ][ 22 ]]
[[ array<char, 50>->unsigned int ][ !!! *6* !!! ][ 121 ][ 23 ][ 22 ]]
[[ array<char, 50>->unsigned short ][ !!! *6* !!! ][ 121 ][ 23 ][ 22 ]]
[[ array<char, 50>->unsigned long int ][ !!! *6* !!! ][ 118 ][ 24 ][ 20 ]]
[[ array<char, 50>->unsigned long long ][ !!! *6* !!! ][ 109 ][ 22 ][ 21 ]]
[[ array<char, 50>->float ][ 93 ][ 150 ][ 61 ][ !!! *43* !!! ]]
[[ array<char, 50>->double ][ 89 ][ 147 ][ 61 ][ !!! *43* !!! ]]
[[ array<char, 50>->long double ][ 91 ][ 148 ][ 61 ][ !!! *42* !!! ]]
[[ array<char, 50>->array<char, 50> ][ !!! *2* !!! ][ 106 ][ 21 ][ 15 ]]
[[ array<char, 50>->string ][ !!! *10* !!! ][ 124 ][ 32 ][ --- ]]
[[ array<char, 50>->container::string ][ !!! *1* !!! ][ 109 ][ 23 ][ --- ]]
[[ int->int ][ !!! *<1* !!! ][ 114 ][ 26 ][ --- ]]
[[ float->double ][ !!! *<1* !!! ][ 207 ][ 105 ][ --- ]]
[[ char->signed char ][ !!! *<1* !!! ][ 97 ][ 10 ][ --- ]]
]
[endsect]
[section Clang version 3.6.0 (tags/RELEASE_360/final)]
[table:id Performance Table ( Clang version 3.6.0 (tags/RELEASE_360/final))
[[From->To] [lexical_cast] [std::stringstream with construction] [std::stringstream without construction][scanf/printf]]
[[ string->char ][ !!! *<1* !!! ][ 79 ][ 4 ][ 4 ]]
[[ string->signed char ][ !!! *<1* !!! ][ 51 ][ 4 ][ 5 ]]
[[ string->unsigned char ][ !!! *<1* !!! ][ 51 ][ 4 ][ 5 ]]
[[ string->int ][ !!! *3* !!! ][ 80 ][ 22 ][ 22 ]]
[[ string->short ][ !!! *6* !!! ][ 108 ][ 22 ][ 22 ]]
[[ string->long int ][ !!! *6* !!! ][ 66 ][ 10 ][ 11 ]]
[[ string->long long ][ !!! *6* !!! ][ 101 ][ 9 ][ 20 ]]
[[ string->unsigned int ][ !!! *5* !!! ][ 77 ][ 8 ][ 8 ]]
[[ string->unsigned short ][ !!! *3* !!! ][ 61 ][ 8 ][ 8 ]]
[[ string->unsigned long int ][ !!! *5* !!! ][ 87 ][ 9 ][ 9 ]]
[[ string->unsigned long long ][ !!! *3* !!! ][ 89 ][ 9 ][ 8 ]]
[[ string->float ][ 52 ][ 114 ][ 38 ][ !!! *22* !!! ]]
[[ string->double ][ 49 ][ 79 ][ 32 ][ !!! *22* !!! ]]
[[ string->long double ][ 83 ][ 160 ][ 65 ][ !!! *47* !!! ]]
[[ string->array<char, 50> ][ !!! *<1* !!! ][ 114 ][ 21 ][ 16 ]]
[[ string->string ][ !!! *2* !!! ][ 78 ][ 34 ][ --- ]]
[[ string->container::string ][ !!! *1* !!! ][ 100 ][ 11 ][ --- ]]
[[ string->char ][ !!! *4* !!! ][ 60 ][ 16 ][ 7 ]]
[[ string->signed char ][ !!! *5* !!! ][ 70 ][ 30 ][ 30 ]]
[[ string->unsigned char ][ !!! *10* !!! ][ 119 ][ 31 ][ 30 ]]
[[ int->string ][ !!! *17* !!! ][ 140 ][ 38 ][ 28 ]]
[[ short->string ][ !!! *17* !!! ][ 139 ][ 38 ][ 29 ]]
[[ long int->string ][ !!! *17* !!! ][ 139 ][ 37 ][ 29 ]]
[[ long long->string ][ !!! *18* !!! ][ 138 ][ 37 ][ 30 ]]
[[ unsigned int->string ][ !!! *17* !!! ][ 138 ][ 37 ][ 29 ]]
[[ unsigned short->string ][ !!! *17* !!! ][ 139 ][ 38 ][ 29 ]]
[[ unsigned long int->string ][ !!! *17* !!! ][ 142 ][ 37 ][ 29 ]]
[[ unsigned long long->string ][ !!! *8* !!! ][ 71 ][ 16 ][ 28 ]]
[[ float->string ][ 68 ][ 97 ][ 42 ][ !!! *38* !!! ]]
[[ double->string ][ 68 ][ 134 ][ 43 ][ !!! *25* !!! ]]
[[ long double->string ][ 72 ][ 164 ][ 91 ][ !!! *55* !!! ]]
[[ char*->char ][ !!! *<1* !!! ][ 76 ][ 4 ][ 5 ]]
[[ char*->signed char ][ !!! *<1* !!! ][ 54 ][ 5 ][ 5 ]]
[[ char*->unsigned char ][ !!! *<1* !!! ][ 55 ][ 4 ][ 5 ]]
[[ char*->int ][ !!! *3* !!! ][ 60 ][ 10 ][ 8 ]]
[[ char*->short ][ !!! *3* !!! ][ 61 ][ 9 ][ 8 ]]
[[ char*->long int ][ !!! *4* !!! ][ 61 ][ 9 ][ 8 ]]
[[ char*->long long ][ !!! *3* !!! ][ 60 ][ 9 ][ 8 ]]
[[ char*->unsigned int ][ !!! *3* !!! ][ 59 ][ 8 ][ 9 ]]
[[ char*->unsigned short ][ !!! *3* !!! ][ 59 ][ 10 ][ 8 ]]
[[ char*->unsigned long int ][ !!! *3* !!! ][ 59 ][ 10 ][ 8 ]]
[[ char*->unsigned long long ][ !!! *3* !!! ][ 59 ][ 10 ][ 8 ]]
[[ char*->float ][ 48 ][ 80 ][ 32 ][ !!! *25* !!! ]]
[[ char*->double ][ 48 ][ 81 ][ 32 ][ !!! *22* !!! ]]
[[ char*->long double ][ 48 ][ 90 ][ 31 ][ !!! *22* !!! ]]
[[ char*->array<char, 50> ][ !!! *<1* !!! ][ 59 ][ 9 ][ 7 ]]
[[ char*->string ][ !!! *4* !!! ][ 77 ][ 15 ][ --- ]]
[[ char*->container::string ][ !!! *1* !!! ][ 62 ][ 12 ][ --- ]]
[[ unsigned char*->char ][ !!! *<1* !!! ][ 54 ][ 4 ][ 5 ]]
[[ unsigned char*->signed char ][ !!! *<1* !!! ][ 53 ][ 4 ][ 5 ]]
[[ unsigned char*->unsigned char ][ !!! *<1* !!! ][ 57 ][ 4 ][ 5 ]]
[[ unsigned char*->int ][ !!! *3* !!! ][ 63 ][ 24 ][ 24 ]]
[[ unsigned char*->short ][ !!! *5* !!! ][ 65 ][ 9 ][ 9 ]]
[[ unsigned char*->long int ][ !!! *3* !!! ][ 60 ][ 10 ][ 8 ]]
[[ unsigned char*->long long ][ !!! *4* !!! ][ 67 ][ 23 ][ 23 ]]
[[ unsigned char*->unsigned int ][ !!! *5* !!! ][ 116 ][ 23 ][ 22 ]]
[[ unsigned char*->unsigned short ][ !!! *5* !!! ][ 114 ][ 22 ][ 22 ]]
[[ unsigned char*->unsigned long int ][ !!! *6* !!! ][ 118 ][ 23 ][ 22 ]]
[[ unsigned char*->unsigned long long ][ !!! *6* !!! ][ 116 ][ 23 ][ 22 ]]
[[ unsigned char*->float ][ 93 ][ 160 ][ 66 ][ !!! *47* !!! ]]
[[ unsigned char*->double ][ 93 ][ 158 ][ 64 ][ !!! *46* !!! ]]
[[ unsigned char*->long double ][ 93 ][ 158 ][ 64 ][ !!! *46* !!! ]]
[[ unsigned char*->array<char, 50> ][ !!! *<1* !!! ][ 112 ][ 21 ][ 17 ]]
[[ unsigned char*->string ][ !!! *10* !!! ][ 136 ][ 33 ][ --- ]]
[[ unsigned char*->container::string ][ !!! *<1* !!! ][ 117 ][ 26 ][ --- ]]
[[ signed char*->char ][ !!! *<1* !!! ][ 102 ][ 11 ][ 10 ]]
[[ signed char*->signed char ][ !!! *<1* !!! ][ 102 ][ 11 ][ 12 ]]
[[ signed char*->unsigned char ][ !!! *<1* !!! ][ 102 ][ 11 ][ 12 ]]
[[ signed char*->int ][ !!! *5* !!! ][ 119 ][ 23 ][ 22 ]]
[[ signed char*->short ][ !!! *5* !!! ][ 116 ][ 23 ][ 22 ]]
[[ signed char*->long int ][ !!! *6* !!! ][ 116 ][ 23 ][ 22 ]]
[[ signed char*->long long ][ !!! *6* !!! ][ 115 ][ 23 ][ 22 ]]
[[ signed char*->unsigned int ][ !!! *5* !!! ][ 116 ][ 23 ][ 22 ]]
[[ signed char*->unsigned short ][ !!! *5* !!! ][ 114 ][ 22 ][ 22 ]]
[[ signed char*->unsigned long int ][ !!! *6* !!! ][ 92 ][ 9 ][ 8 ]]
[[ signed char*->unsigned long long ][ !!! *3* !!! ][ 60 ][ 9 ][ 10 ]]
[[ signed char*->float ][ 94 ][ 134 ][ 51 ][ !!! *28* !!! ]]
[[ signed char*->double ][ 47 ][ 80 ][ 31 ][ !!! *22* !!! ]]
[[ signed char*->long double ][ 90 ][ 115 ][ 64 ][ !!! *25* !!! ]]
[[ signed char*->array<char, 50> ][ !!! *<1* !!! ][ 97 ][ 22 ][ 17 ]]
[[ signed char*->string ][ !!! *11* !!! ][ 139 ][ 34 ][ --- ]]
[[ signed char*->container::string ][ !!! *<1* !!! ][ 118 ][ 26 ][ --- ]]
[[ iterator_range<char*>->char ][ !!! *<1* !!! ][ 106 ][ 15 ][ 10 ]]
[[ iterator_range<char*>->signed char ][ !!! *<1* !!! ][ 107 ][ 15 ][ 13 ]]
[[ iterator_range<char*>->unsigned char ][ !!! *<1* !!! ][ 107 ][ 15 ][ 12 ]]
[[ iterator_range<char*>->int ][ !!! *5* !!! ][ 117 ][ 25 ][ 22 ]]
[[ iterator_range<char*>->short ][ !!! *5* !!! ][ 116 ][ 25 ][ 22 ]]
[[ iterator_range<char*>->long int ][ !!! *6* !!! ][ 114 ][ 22 ][ 20 ]]
[[ iterator_range<char*>->long long ][ !!! *5* !!! ][ 106 ][ 23 ][ 22 ]]
[[ iterator_range<char*>->unsigned int ][ !!! *5* !!! ][ 104 ][ 21 ][ 20 ]]
[[ iterator_range<char*>->unsigned short ][ !!! *5* !!! ][ 105 ][ 22 ][ 20 ]]
[[ iterator_range<char*>->unsigned long int ][ !!! *5* !!! ][ 106 ][ 22 ][ 20 ]]
[[ iterator_range<char*>->unsigned long long ][ !!! *5* !!! ][ 105 ][ 23 ][ 20 ]]
[[ iterator_range<char*>->float ][ 89 ][ 140 ][ !!! *42* !!! ][ 43 ]]
[[ iterator_range<char*>->double ][ 88 ][ 127 ][ 43 ][ !!! *43* !!! ]]
[[ iterator_range<char*>->long double ][ 88 ][ 127 ][ 43 ][ !!! *43* !!! ]]
[[ iterator_range<char*>->array<char, 50> ][ !!! *<1* !!! ][ 104 ][ 22 ][ 15 ]]
[[ iterator_range<char*>->string ][ !!! *9* !!! ][ 122 ][ 32 ][ --- ]]
[[ iterator_range<char*>->container::string ][ !!! *<1* !!! ][ 105 ][ 24 ][ --- ]]
[[ array<char, 50>->char ][ !!! *<1* !!! ][ 68 ][ 4 ][ 4 ]]
[[ array<char, 50>->signed char ][ !!! *<1* !!! ][ 47 ][ 4 ][ 5 ]]
[[ array<char, 50>->unsigned char ][ !!! *<1* !!! ][ 48 ][ 4 ][ 5 ]]
[[ array<char, 50>->int ][ !!! *3* !!! ][ 53 ][ 9 ][ 8 ]]
[[ array<char, 50>->short ][ !!! *3* !!! ][ 54 ][ 9 ][ 8 ]]
[[ array<char, 50>->long int ][ !!! *3* !!! ][ 54 ][ 8 ][ 7 ]]
[[ array<char, 50>->long long ][ !!! *3* !!! ][ 53 ][ 8 ][ 8 ]]
[[ array<char, 50>->unsigned int ][ !!! *3* !!! ][ 52 ][ 7 ][ 8 ]]
[[ array<char, 50>->unsigned short ][ !!! *3* !!! ][ 53 ][ 8 ][ 7 ]]
[[ array<char, 50>->unsigned long int ][ !!! *3* !!! ][ 53 ][ 8 ][ 8 ]]
[[ array<char, 50>->unsigned long long ][ !!! *3* !!! ][ 53 ][ 9 ][ 8 ]]
[[ array<char, 50>->float ][ 43 ][ 72 ][ 29 ][ !!! *20* !!! ]]
[[ array<char, 50>->double ][ 42 ][ 72 ][ 28 ][ !!! *20* !!! ]]
[[ array<char, 50>->long double ][ 43 ][ 72 ][ 28 ][ !!! *20* !!! ]]
[[ array<char, 50>->array<char, 50> ][ !!! *<1* !!! ][ 53 ][ 8 ][ 6 ]]
[[ array<char, 50>->string ][ !!! *4* !!! ][ 62 ][ 13 ][ --- ]]
[[ array<char, 50>->container::string ][ !!! *1* !!! ][ 54 ][ 10 ][ --- ]]
[[ int->int ][ !!! *<1* !!! ][ 57 ][ 10 ][ --- ]]
[[ float->double ][ !!! *<1* !!! ][ 102 ][ 49 ][ --- ]]
[[ char->signed char ][ !!! *<1* !!! ][ 49 ][ 3 ][ --- ]]
]
[endsect]
+3 -2
View File
@@ -1,4 +1,4 @@
// Copyright Antony Polukhin, 2013-2021.
// Copyright Antony Polukhin, 2013-2026.
// Distributed under the Boost Software License, Version 1.0.
// (See the accompanying file LICENSE_1_0.txt
@@ -7,9 +7,10 @@
//[lexical_cast_args_example
//`The following example treats command line arguments as a sequence of numeric data
#include <boost/lexical_cast.hpp>
#include <vector>
#include <boost/lexical_cast.hpp>
int main(int /*argc*/, char * argv[])
{
using boost::lexical_cast;
+9 -7
View File
@@ -1,4 +1,4 @@
// Copyright Antony Polukhin, 2013-2021.
// Copyright Antony Polukhin, 2013-2026.
// Distributed under the Boost Software License, Version 1.0.
// (See the accompanying file LICENSE_1_0.txt
@@ -14,12 +14,18 @@
In this example we'll make a `stringize` method that accepts a sequence, converts
each element of the sequence into string and appends that string to the result.
Example is based on the example from the [@http://www.packtpub.com/boost-cplusplus-application-development-cookbook/book Boost C++ Application Development Cookbook]
Example is based on the example from the Boost C++ Application Development Cookbook
by Antony Polukhin, ISBN 9781849514880. Russian translation: [@https://dmkpress.com/catalog/computer/programming/c/978-5-97060-868-5/ ISBN: 9785970608685].
Step 1: Making a functor that converts any type to a string and remembers result:
*/
#include <string>
#include <boost/fusion/include/for_each.hpp>
#include <boost/fusion/adapted/std_tuple.hpp>
#include <boost/fusion/adapted/std_pair.hpp>
#include <boost/lexical_cast.hpp>
struct stringize_functor {
@@ -38,7 +44,6 @@ public:
};
//` Step 2: Applying `stringize_functor` to each element in sequence:
#include <boost/fusion/include/for_each.hpp>
template <class Sequence>
std::string stringize(const Sequence& seq) {
std::string result;
@@ -47,11 +52,8 @@ std::string stringize(const Sequence& seq) {
}
//` Step 3: Using the `stringize` with different types:
#include <boost/fusion/adapted/boost_tuple.hpp>
#include <boost/fusion/adapted/std_pair.hpp>
int main() {
boost::tuple<char, int, char, int> decim('-', 10, 'e', 5);
std::tuple<char, int, char, int> decim('-', 10, 'e', 5);
if (stringize(decim) != "-10e5") {
return 1;
}
+7 -4
View File
@@ -1,13 +1,16 @@
// Copyright Antony Polukhin, 2013-2021.
// Copyright Antony Polukhin, 2013-2026.
// Distributed under the Boost Software License, Version 1.0.
// (See the accompanying file LICENSE_1_0.txt
// or a copy at <http://www.boost.org/LICENSE_1_0.txt>.)
#include <boost/lexical_cast.hpp>
#include <array>
#include <string>
#include <string.h>
#include <cstdio>
#include <boost/lexical_cast.hpp>
#ifdef BOOST_MSVC
# pragma warning(disable: 4996) // `strerror` is not safe
#endif
@@ -30,9 +33,9 @@ void log_errno(int yoko)
void number_to_file(int number, std::FILE* file)
{
typedef boost::array<char, 50> buf_t; // You can use std::array if your compiler supports it
using buf_t = std::array<char, 50>;
buf_t buffer = boost::lexical_cast<buf_t>(number); // No dynamic memory allocation
std::fputs(buffer.begin(), file);
std::fputs(buffer.data(), file);
}
//] [/lexical_cast_fixed_buffer]
+6 -2
View File
@@ -1,4 +1,4 @@
// Copyright Antony Polukhin, 2013-2021.
// Copyright Antony Polukhin, 2013-2026.
// Distributed under the Boost Software License, Version 1.0.
// (See the accompanying file LICENSE_1_0.txt
@@ -10,9 +10,13 @@
In this example we'll make a `to_long_double` method that converts value of the Boost.Variant to `long double`.
*/
#include <boost/lexical_cast.hpp>
#ifdef BOOST_USE_MODULES
#include <compare>
#endif
#include <boost/variant.hpp>
#include <boost/lexical_cast.hpp>
struct to_long_double_functor: boost::static_visitor<long double> {
template <class T>
long double operator()(const T& v) const {
+3 -7
View File
@@ -18,7 +18,8 @@
# pragma once
#endif
#include "boost/config.hpp"
#include <boost/config.hpp>
#include <streambuf>
namespace boost { namespace detail {
@@ -42,13 +43,8 @@ public:
basic_pointerbuf() : base_type() { this_type::setbuf(0, 0); }
const charT* getnext() { return this->gptr(); }
#ifndef BOOST_NO_USING_TEMPLATE
using base_type::pptr;
using base_type::pbase;
#else
charT* pptr() const { return base_type::pptr(); }
charT* pbase() const { return base_type::pbase(); }
#endif
protected:
// VC mistakenly assumes that `setbuf` and other functions are not referenced.
@@ -76,7 +72,7 @@ template<class charT, class BufferT>
typename basic_pointerbuf<charT, BufferT>::pos_type
basic_pointerbuf<charT, BufferT>::seekoff(off_type off, ::std::ios_base::seekdir way, ::std::ios_base::openmode which)
{
typedef typename boost::int_t<sizeof(way) * CHAR_BIT>::least cast_type;
typedef ::std::ios_base::seekdir cast_type;
if(which & ::std::ios_base::out)
return pos_type(off_type(-1));
-185
View File
@@ -1,185 +0,0 @@
// Copyright Alexander Nasonov & Paul A. Bristow 2006.
// Use, modification and distribution are subject to the
// Boost Software License, Version 1.0.
// (See accompanying file LICENSE_1_0.txt
// or copy at http://www.boost.org/LICENSE_1_0.txt)
#ifndef BOOST_DETAIL_LCAST_PRECISION_HPP_INCLUDED
#define BOOST_DETAIL_LCAST_PRECISION_HPP_INCLUDED
#include <climits>
#include <ios>
#include <limits>
#include <boost/config.hpp>
#include <boost/integer_traits.hpp>
#ifndef BOOST_NO_IS_ABSTRACT
// Fix for SF:1358600 - lexical_cast & pure virtual functions & VC 8 STL
#include <boost/type_traits/conditional.hpp>
#include <boost/type_traits/is_abstract.hpp>
#endif
#if defined(BOOST_NO_LIMITS_COMPILE_TIME_CONSTANTS) || \
(defined(BOOST_MSVC) && (BOOST_MSVC<1310))
#define BOOST_LCAST_NO_COMPILE_TIME_PRECISION
#endif
#ifdef BOOST_LCAST_NO_COMPILE_TIME_PRECISION
#include <boost/assert.hpp>
#else
#include <boost/static_assert.hpp>
#endif
namespace boost { namespace detail {
class lcast_abstract_stub {};
#ifndef BOOST_LCAST_NO_COMPILE_TIME_PRECISION
// Calculate an argument to pass to std::ios_base::precision from
// lexical_cast. See alternative implementation for broken standard
// libraries in lcast_get_precision below. Keep them in sync, please.
template<class T>
struct lcast_precision
{
#ifdef BOOST_NO_IS_ABSTRACT
typedef std::numeric_limits<T> limits; // No fix for SF:1358600.
#else
typedef BOOST_DEDUCED_TYPENAME boost::conditional<
boost::is_abstract<T>::value
, std::numeric_limits<lcast_abstract_stub>
, std::numeric_limits<T>
>::type limits;
#endif
BOOST_STATIC_CONSTANT(bool, use_default_precision =
!limits::is_specialized || limits::is_exact
);
BOOST_STATIC_CONSTANT(bool, is_specialized_bin =
!use_default_precision &&
limits::radix == 2 && limits::digits > 0
);
BOOST_STATIC_CONSTANT(bool, is_specialized_dec =
!use_default_precision &&
limits::radix == 10 && limits::digits10 > 0
);
BOOST_STATIC_CONSTANT(std::streamsize, streamsize_max =
boost::integer_traits<std::streamsize>::const_max
);
BOOST_STATIC_CONSTANT(unsigned int, precision_dec = limits::digits10 + 1U);
BOOST_STATIC_ASSERT(!is_specialized_dec ||
precision_dec <= streamsize_max + 0UL
);
BOOST_STATIC_CONSTANT(unsigned long, precision_bin =
2UL + limits::digits * 30103UL / 100000UL
);
BOOST_STATIC_ASSERT(!is_specialized_bin ||
(limits::digits + 0UL < ULONG_MAX / 30103UL &&
precision_bin > limits::digits10 + 0UL &&
precision_bin <= streamsize_max + 0UL)
);
BOOST_STATIC_CONSTANT(std::streamsize, value =
is_specialized_bin ? precision_bin
: is_specialized_dec ? precision_dec : 6
);
};
#endif
template<class T>
inline std::streamsize lcast_get_precision(T* = 0)
{
#ifndef BOOST_LCAST_NO_COMPILE_TIME_PRECISION
return lcast_precision<T>::value;
#else // Follow lcast_precision algorithm at run-time:
#ifdef BOOST_NO_IS_ABSTRACT
typedef std::numeric_limits<T> limits; // No fix for SF:1358600.
#else
typedef BOOST_DEDUCED_TYPENAME boost::conditional<
boost::is_abstract<T>::value
, std::numeric_limits<lcast_abstract_stub>
, std::numeric_limits<T>
>::type limits;
#endif
bool const use_default_precision =
!limits::is_specialized || limits::is_exact;
if(!use_default_precision)
{ // Includes all built-in floating-point types, float, double ...
// and UDT types for which digits (significand bits) is defined (not zero)
bool const is_specialized_bin =
limits::radix == 2 && limits::digits > 0;
bool const is_specialized_dec =
limits::radix == 10 && limits::digits10 > 0;
std::streamsize const streamsize_max =
(boost::integer_traits<std::streamsize>::max)();
(void)streamsize_max;
if(is_specialized_bin)
{ // Floating-point types with
// limits::digits defined by the specialization.
unsigned long const digits = limits::digits;
unsigned long const precision = 2UL + digits * 30103UL / 100000UL;
// unsigned long is selected because it is at least 32-bits
// and thus ULONG_MAX / 30103UL is big enough for all types.
BOOST_ASSERT(
digits < ULONG_MAX / 30103UL &&
precision > limits::digits10 + 0UL &&
precision <= streamsize_max + 0UL
);
return precision;
}
else if(is_specialized_dec)
{ // Decimal Floating-point type, most likely a User Defined Type
// rather than a real floating-point hardware type.
unsigned int const precision = limits::digits10 + 1U;
BOOST_ASSERT(precision <= streamsize_max + 0UL);
return precision;
}
}
// Integral type (for which precision has no effect)
// or type T for which limits is NOT specialized,
// so assume stream precision remains the default 6 decimal digits.
// Warning: if your User-defined Floating-point type T is NOT specialized,
// then you may lose accuracy by only using 6 decimal digits.
// To avoid this, you need to specialize T with either
// radix == 2 and digits == the number of significand bits,
// OR
// radix = 10 and digits10 == the number of decimal digits.
return 6;
#endif
}
template<class T>
inline void lcast_set_precision(std::ios_base& stream, T*)
{
stream.precision(lcast_get_precision<T>());
}
template<class Source, class Target>
inline void lcast_set_precision(std::ios_base& stream, Source*, Target*)
{
std::streamsize const s = lcast_get_precision(static_cast<Source*>(0));
std::streamsize const t = lcast_get_precision(static_cast<Target*>(0));
stream.precision(s > t ? s : t);
}
}}
#endif // BOOST_DETAIL_LCAST_PRECISION_HPP_INCLUDED
+19 -12
View File
@@ -1,6 +1,6 @@
// Copyright Kevlin Henney, 2000-2005.
// Copyright Alexander Nasonov, 2006-2010.
// Copyright Antony Polukhin, 2011-2021.
// Copyright Antony Polukhin, 2011-2026.
//
// Distributed under the Boost Software License, Version 1.0. (See
// accompanying file LICENSE_1_0.txt or copy at
@@ -18,21 +18,29 @@
#ifndef BOOST_LEXICAL_CAST_INCLUDED
#define BOOST_LEXICAL_CAST_INCLUDED
#include <boost/lexical_cast/detail/config.hpp>
#if !defined(BOOST_USE_MODULES) || defined(BOOST_LEXICAL_CAST_INTERFACE_UNIT)
#ifndef BOOST_LEXICAL_CAST_INTERFACE_UNIT
#include <boost/config.hpp>
#ifdef BOOST_HAS_PRAGMA_ONCE
# pragma once
#endif
#endif
#if defined(BOOST_NO_STRINGSTREAM) || defined(BOOST_NO_STD_WSTRING)
#define BOOST_LCAST_NO_WCHAR_T
#endif
#include <boost/range/iterator_range_core.hpp>
#include <boost/lexical_cast/detail/buffer_view.hpp>
#include <boost/lexical_cast/bad_lexical_cast.hpp>
#include <boost/lexical_cast/try_lexical_convert.hpp>
namespace boost
{
BOOST_LEXICAL_CAST_BEGIN_MODULE_EXPORT
template <typename Target, typename Source>
inline Target lexical_cast(const Source &arg)
{
@@ -49,7 +57,7 @@ namespace boost
inline Target lexical_cast(const char* chars, std::size_t count)
{
return ::boost::lexical_cast<Target>(
::boost::iterator_range<const char*>(chars, chars + count)
::boost::conversion::detail::make_buffer_view(chars, chars + count)
);
}
@@ -57,7 +65,7 @@ namespace boost
inline Target lexical_cast(const unsigned char* chars, std::size_t count)
{
return ::boost::lexical_cast<Target>(
::boost::iterator_range<const unsigned char*>(chars, chars + count)
::boost::conversion::detail::make_buffer_view(chars, chars + count)
);
}
@@ -65,7 +73,7 @@ namespace boost
inline Target lexical_cast(const signed char* chars, std::size_t count)
{
return ::boost::lexical_cast<Target>(
::boost::iterator_range<const signed char*>(chars, chars + count)
::boost::conversion::detail::make_buffer_view(chars, chars + count)
);
}
@@ -74,32 +82,31 @@ namespace boost
inline Target lexical_cast(const wchar_t* chars, std::size_t count)
{
return ::boost::lexical_cast<Target>(
::boost::iterator_range<const wchar_t*>(chars, chars + count)
::boost::conversion::detail::make_buffer_view(chars, chars + count)
);
}
#endif
#ifndef BOOST_NO_CXX11_CHAR16_T
template <typename Target>
inline Target lexical_cast(const char16_t* chars, std::size_t count)
{
return ::boost::lexical_cast<Target>(
::boost::iterator_range<const char16_t*>(chars, chars + count)
::boost::conversion::detail::make_buffer_view(chars, chars + count)
);
}
#endif
#ifndef BOOST_NO_CXX11_CHAR32_T
template <typename Target>
inline Target lexical_cast(const char32_t* chars, std::size_t count)
{
return ::boost::lexical_cast<Target>(
::boost::iterator_range<const char32_t*>(chars, chars + count)
::boost::conversion::detail::make_buffer_view(chars, chars + count)
);
}
#endif
BOOST_LEXICAL_CAST_END_MODULE_EXPORT
} // namespace boost
#undef BOOST_LCAST_NO_WCHAR_T
#endif // #if !defined(BOOST_USE_MODULES) || defined(BOOST_LEXICAL_CAST_INTERFACE_UNIT)
#endif // BOOST_LEXICAL_CAST_INCLUDED
+17 -13
View File
@@ -1,6 +1,6 @@
// Copyright Kevlin Henney, 2000-2005.
// Copyright Alexander Nasonov, 2006-2010.
// Copyright Antony Polukhin, 2011-2021.
// Copyright Antony Polukhin, 2011-2026.
//
// Distributed under the Boost Software License, Version 1.0. (See
// accompanying file LICENSE_1_0.txt or copy at
@@ -18,6 +18,11 @@
#ifndef BOOST_LEXICAL_CAST_BAD_LEXICAL_CAST_HPP
#define BOOST_LEXICAL_CAST_BAD_LEXICAL_CAST_HPP
#include <boost/lexical_cast/detail/config.hpp>
#if !defined(BOOST_USE_MODULES) || defined(BOOST_LEXICAL_CAST_INTERFACE_UNIT)
#ifndef BOOST_LEXICAL_CAST_INTERFACE_UNIT
#include <boost/config.hpp>
#ifdef BOOST_HAS_PRAGMA_ONCE
# pragma once
@@ -26,9 +31,11 @@
#include <exception>
#include <typeinfo>
#include <boost/throw_exception.hpp>
#endif
namespace boost
{
BOOST_LEXICAL_CAST_BEGIN_MODULE_EXPORT
// exception used to indicate runtime lexical_cast failure
class BOOST_SYMBOL_VISIBLE bad_lexical_cast :
// workaround MSVC bug with std::bad_cast when _HAS_EXCEPTIONS == 0
@@ -37,15 +44,9 @@ namespace boost
#else
public std::bad_cast
#endif
#if defined(BOOST_BORLANDC) && BOOST_WORKAROUND( BOOST_BORLANDC, < 0x560 )
// under bcc32 5.5.1 bad_cast doesn't derive from exception
, public std::exception
#endif
{
public:
bad_lexical_cast() BOOST_NOEXCEPT
bad_lexical_cast() noexcept
#ifndef BOOST_NO_TYPEID
: source(&typeid(void)), target(&typeid(void))
#endif
@@ -56,8 +57,8 @@ namespace boost
"source type value could not be interpreted as target";
}
~bad_lexical_cast() BOOST_NOEXCEPT_OR_NOTHROW BOOST_OVERRIDE
{}
bad_lexical_cast(const bad_lexical_cast&) = default;
bad_lexical_cast& operator=(const bad_lexical_cast&) = default;
#ifndef BOOST_NO_TYPEID
private:
@@ -69,15 +70,15 @@ namespace boost
public:
bad_lexical_cast(
const type_info_t &source_type_arg,
const type_info_t &target_type_arg) BOOST_NOEXCEPT
const type_info_t &target_type_arg) noexcept
: source(&source_type_arg), target(&target_type_arg)
{}
const type_info_t &source_type() const BOOST_NOEXCEPT {
const type_info_t &source_type() const noexcept {
return *source;
}
const type_info_t &target_type() const BOOST_NOEXCEPT {
const type_info_t &target_type() const noexcept {
return *target;
}
@@ -86,6 +87,7 @@ namespace boost
const type_info_t *target;
#endif
};
BOOST_LEXICAL_CAST_END_MODULE_EXPORT
namespace conversion { namespace detail {
#ifdef BOOST_NO_TYPEID
@@ -103,4 +105,6 @@ namespace boost
} // namespace boost
#endif // #if !defined(BOOST_USE_MODULES) || defined(BOOST_LEXICAL_CAST_INTERFACE_UNIT)
#endif // BOOST_LEXICAL_CAST_BAD_LEXICAL_CAST_HPP
@@ -0,0 +1,67 @@
// Copyright Antony Polukhin, 2011-2026.
//
// Distributed under the Boost Software License, Version 1.0. (See
// accompanying file LICENSE_1_0.txt or copy at
// http://www.boost.org/LICENSE_1_0.txt)
#ifndef BOOST_LEXICAL_CAST_DETAIL_BUFFER_VIEW_HPP
#define BOOST_LEXICAL_CAST_DETAIL_BUFFER_VIEW_HPP
#include <boost/lexical_cast/detail/config.hpp>
#if !defined(BOOST_USE_MODULES) || defined(BOOST_LEXICAL_CAST_INTERFACE_UNIT)
#ifndef BOOST_LEXICAL_CAST_INTERFACE_UNIT
#include <boost/config.hpp>
#ifdef BOOST_HAS_PRAGMA_ONCE
# pragma once
#endif
#include <iosfwd>
#endif
namespace boost { namespace conversion { namespace detail {
template < typename CharT >
struct buffer_view {
const CharT* begin;
const CharT* end;
};
template < typename CharT >
buffer_view<CharT> make_buffer_view(const CharT* begin, const CharT* end) {
return buffer_view<CharT>{begin, end};
}
inline buffer_view<char> make_buffer_view(const signed char* begin, const signed char* end) {
return buffer_view<char>{
reinterpret_cast<const char*>(begin),
reinterpret_cast<const char*>(end)
};
}
inline buffer_view<char> make_buffer_view(const unsigned char* begin, const unsigned char* end) {
return buffer_view<char>{
reinterpret_cast<const char*>(begin),
reinterpret_cast<const char*>(end)
};
}
template< typename CharT, typename Elem, typename Traits >
std::basic_ostream<Elem,Traits>& operator<<(
std::basic_ostream<Elem, Traits>& os,
buffer_view<CharT> r)
{
while (r.begin != r.end) {
os << r.begin[0];
++r.begin;
}
return os;
}
}}} // namespace boost::conversion::detail
#endif // #if !defined(BOOST_USE_MODULES) || defined(BOOST_LEXICAL_CAST_INTERFACE_UNIT)
#endif // BOOST_LEXICAL_CAST_DETAIL_BUFFER_VIEW_HPP
@@ -0,0 +1,22 @@
// Copyright Antony Polukhin, 2021-2026.
//
// Distributed under the Boost Software License, Version 1.0. (See
// accompanying file LICENSE_1_0.txt or copy at
// http://www.boost.org/LICENSE_1_0.txt)
#ifndef BOOST_LEXICAL_CAST_DETAIL_CONFIG_HPP
#define BOOST_LEXICAL_CAST_DETAIL_CONFIG_HPP
#ifdef BOOST_LEXICAL_CAST_INTERFACE_UNIT
# define BOOST_LEXICAL_CAST_BEGIN_MODULE_EXPORT export {
# define BOOST_LEXICAL_CAST_END_MODULE_EXPORT }
#else
# define BOOST_LEXICAL_CAST_BEGIN_MODULE_EXPORT
# define BOOST_LEXICAL_CAST_END_MODULE_EXPORT
#endif
#if defined(BOOST_USE_MODULES) && !defined(BOOST_LEXICAL_CAST_INTERFACE_UNIT)
import boost.lexical_cast;
#endif
#endif // #ifndef BOOST_LEXICAL_CAST_DETAIL_CONFIG_HPP
@@ -1,6 +1,6 @@
// Copyright Kevlin Henney, 2000-2005.
// Copyright Alexander Nasonov, 2006-2010.
// Copyright Antony Polukhin, 2011-2021.
// Copyright Antony Polukhin, 2011-2026.
//
// Distributed under the Boost Software License, Version 1.0. (See
// accompanying file LICENSE_1_0.txt or copy at
@@ -18,6 +18,11 @@
#ifndef BOOST_LEXICAL_CAST_DETAIL_CONVERTER_LEXICAL_HPP
#define BOOST_LEXICAL_CAST_DETAIL_CONVERTER_LEXICAL_HPP
#include <boost/lexical_cast/detail/config.hpp>
#if !defined(BOOST_USE_MODULES) || defined(BOOST_LEXICAL_CAST_INTERFACE_UNIT)
#ifndef BOOST_LEXICAL_CAST_INTERFACE_UNIT
#include <boost/config.hpp>
#ifdef BOOST_HAS_PRAGMA_ONCE
# pragma once
@@ -27,53 +32,58 @@
#define BOOST_LCAST_NO_WCHAR_T
#endif
#include <array>
#include <cstddef>
#include <string>
#include <type_traits>
#include <boost/limits.hpp>
#include <boost/type_traits/integral_constant.hpp>
#include <boost/type_traits/type_identity.hpp>
#include <boost/type_traits/conditional.hpp>
#include <boost/type_traits/is_integral.hpp>
#include <boost/type_traits/is_float.hpp>
#include <boost/type_traits/has_left_shift.hpp>
#include <boost/type_traits/has_right_shift.hpp>
#include <boost/static_assert.hpp>
#include <boost/detail/lcast_precision.hpp>
#include <boost/lexical_cast/detail/widest_char.hpp>
#include <boost/lexical_cast/detail/is_character.hpp>
#ifndef BOOST_NO_CXX11_HDR_ARRAY
#include <array>
#ifndef BOOST_NO_CXX17_HDR_STRING_VIEW
#include <string_view>
#endif
#include <boost/array.hpp>
#include <boost/range/iterator_range_core.hpp>
#include <boost/container/container_fwd.hpp>
#endif // #ifndef BOOST_LEXICAL_CAST_INTERFACE_UNIT
#include <boost/lexical_cast/detail/lcast_precision.hpp>
#include <boost/lexical_cast/detail/widest_char.hpp>
#include <boost/lexical_cast/detail/is_character.hpp>
#include <boost/lexical_cast/detail/buffer_view.hpp>
#include <boost/lexical_cast/detail/converter_lexical_streams.hpp>
namespace boost {
// Forward declaration
template<class T, std::size_t N>
class array;
template<class IteratorT>
class iterator_range;
// Forward declaration of boost::basic_string_view from Utility
template<class Ch, class Tr> class basic_string_view;
namespace detail // normalize_single_byte_char<Char>
{
// Converts signed/unsigned char to char
template < class Char >
struct normalize_single_byte_char
{
typedef Char type;
using type = Char;
};
template <>
struct normalize_single_byte_char< signed char >
{
typedef char type;
using type = char;
};
template <>
struct normalize_single_byte_char< unsigned char >
{
typedef char type;
using type = char;
};
}
@@ -90,35 +100,41 @@ namespace boost {
// Returns one of char, wchar_t, char16_t, char32_t or deduce_character_type_later<T> types
// Executed on Stage 1 (See deduce_source_char<T> and deduce_target_char<T>)
template < typename Type >
struct stream_char_common: public boost::conditional<
struct stream_char_common: public std::conditional<
boost::detail::is_character< Type >::value,
Type,
boost::detail::deduce_character_type_later< Type >
> {};
template < typename Char >
struct stream_char_common< Char* >: public boost::conditional<
struct stream_char_common< Char* >: public std::conditional<
boost::detail::is_character< Char >::value,
Char,
boost::detail::deduce_character_type_later< Char* >
> {};
template < typename Char >
struct stream_char_common< const Char* >: public boost::conditional<
struct stream_char_common< const Char* >: public std::conditional<
boost::detail::is_character< Char >::value,
Char,
boost::detail::deduce_character_type_later< const Char* >
> {};
template < typename Char >
struct stream_char_common< boost::iterator_range< Char* > >: public boost::conditional<
struct stream_char_common< boost::conversion::detail::buffer_view< Char > >
{
using type = Char;
};
template < typename Char >
struct stream_char_common< boost::iterator_range< Char* > >: public std::conditional<
boost::detail::is_character< Char >::value,
Char,
boost::detail::deduce_character_type_later< boost::iterator_range< Char* > >
> {};
template < typename Char >
struct stream_char_common< boost::iterator_range< const Char* > >: public boost::conditional<
struct stream_char_common< boost::iterator_range< const Char* > >: public std::conditional<
boost::detail::is_character< Char >::value,
Char,
boost::detail::deduce_character_type_later< boost::iterator_range< const Char* > >
@@ -127,24 +143,24 @@ namespace boost {
template < class Char, class Traits, class Alloc >
struct stream_char_common< std::basic_string< Char, Traits, Alloc > >
{
typedef Char type;
using type = Char;
};
template < class Char, class Traits, class Alloc >
struct stream_char_common< boost::container::basic_string< Char, Traits, Alloc > >
{
typedef Char type;
using type = Char;
};
template < typename Char, std::size_t N >
struct stream_char_common< boost::array< Char, N > >: public boost::conditional<
struct stream_char_common< boost::array< Char, N > >: public std::conditional<
boost::detail::is_character< Char >::value,
Char,
boost::detail::deduce_character_type_later< boost::array< Char, N > >
> {};
template < typename Char, std::size_t N >
struct stream_char_common< boost::array< const Char, N > >: public boost::conditional<
struct stream_char_common< boost::array< const Char, N > >: public std::conditional<
boost::detail::is_character< Char >::value,
Char,
boost::detail::deduce_character_type_later< boost::array< const Char, N > >
@@ -152,30 +168,49 @@ namespace boost {
#ifndef BOOST_NO_CXX11_HDR_ARRAY
template < typename Char, std::size_t N >
struct stream_char_common< std::array<Char, N > >: public boost::conditional<
struct stream_char_common< std::array<Char, N > >: public std::conditional<
boost::detail::is_character< Char >::value,
Char,
boost::detail::deduce_character_type_later< std::array< Char, N > >
> {};
template < typename Char, std::size_t N >
struct stream_char_common< std::array< const Char, N > >: public boost::conditional<
struct stream_char_common< std::array< const Char, N > >: public std::conditional<
boost::detail::is_character< Char >::value,
Char,
boost::detail::deduce_character_type_later< std::array< const Char, N > >
> {};
#endif
#ifndef BOOST_NO_CXX17_HDR_STRING_VIEW
template < class Char, class Traits >
struct stream_char_common< std::basic_string_view< Char, Traits > >
{
using type = Char;
};
#endif
template < class Char, class Traits >
struct stream_char_common< boost::basic_string_view< Char, Traits > >
{
using type = Char;
};
#ifdef BOOST_HAS_INT128
template <> struct stream_char_common< boost::int128_type >: public boost::type_identity< char > {};
template <> struct stream_char_common< boost::uint128_type >: public boost::type_identity< char > {};
template <> struct stream_char_common< boost::int128_type >
{
using type = char;
};
template <> struct stream_char_common< boost::uint128_type >
{
using type = char;
};
#endif
#if !defined(BOOST_LCAST_NO_WCHAR_T) && defined(BOOST_NO_INTRINSIC_WCHAR_T)
template <>
struct stream_char_common< wchar_t >
{
typedef char type;
using type = char;
};
#endif
}
@@ -183,33 +218,42 @@ namespace boost {
namespace detail // deduce_source_char_impl<T>
{
// If type T is `deduce_character_type_later` type, then tries to deduce
// character type using boost::has_left_shift<T> metafunction.
// character type using streaming metafunctions.
// Otherwise supplied type T is a character type, that must be normalized
// using normalize_single_byte_char<Char>.
// Executed at Stage 2 (See deduce_source_char<T> and deduce_target_char<T>)
template < class Char >
struct deduce_source_char_impl
{
typedef BOOST_DEDUCED_TYPENAME boost::detail::normalize_single_byte_char< Char >::type type;
typedef typename boost::detail::normalize_single_byte_char< Char >::type type;
};
template < class T >
struct deduce_source_char_impl< deduce_character_type_later< T > >
{
typedef boost::has_left_shift< std::basic_ostream< char >, T > result_t;
template <class U>
static auto left_shift_type(long)
-> decltype( std::declval<std::basic_ostream< char >&>() << std::declval<const U&>(), char{});
#if defined(BOOST_LCAST_NO_WCHAR_T)
BOOST_STATIC_ASSERT_MSG((result_t::value),
"Source type is not std::ostream`able and std::wostream`s are not supported by your STL implementation");
typedef char type;
#else
typedef BOOST_DEDUCED_TYPENAME boost::conditional<
result_t::value, char, wchar_t
>::type type;
BOOST_STATIC_ASSERT_MSG((result_t::value || boost::has_left_shift< std::basic_ostream< type >, T >::value),
"Source type is neither std::ostream`able nor std::wostream`able");
#if !defined(BOOST_LCAST_NO_WCHAR_T)
template <class U>
static auto left_shift_type(int)
-> decltype( std::declval<std::basic_ostream< wchar_t >&>() << std::declval<const U&>(), wchar_t{});
#endif
template <class U>
static void left_shift_type(...);
using type = decltype(left_shift_type<T>(1L));
static_assert(!std::is_same<type, void>::value,
#if defined(BOOST_LCAST_NO_WCHAR_T)
"Source type is not std::ostream`able and std::wostream`s are "
"not supported by your STL implementation"
#else
"Source type is neither std::ostream`able nor std::wostream`able"
#endif
);
};
}
@@ -223,26 +267,35 @@ namespace boost {
template < class Char >
struct deduce_target_char_impl
{
typedef BOOST_DEDUCED_TYPENAME normalize_single_byte_char< Char >::type type;
typedef typename normalize_single_byte_char< Char >::type type;
};
template < class T >
struct deduce_target_char_impl< deduce_character_type_later<T> >
{
typedef boost::has_right_shift<std::basic_istream<char>, T > result_t;
template <class U>
static auto right_shift_type(long)
-> decltype( std::declval<std::basic_istream< char >&>() >> std::declval<U&>(), char{});
#if defined(BOOST_LCAST_NO_WCHAR_T)
BOOST_STATIC_ASSERT_MSG((result_t::value),
"Target type is not std::istream`able and std::wistream`s are not supported by your STL implementation");
typedef char type;
#else
typedef BOOST_DEDUCED_TYPENAME boost::conditional<
result_t::value, char, wchar_t
>::type type;
BOOST_STATIC_ASSERT_MSG((result_t::value || boost::has_right_shift<std::basic_istream<wchar_t>, T >::value),
"Target type is neither std::istream`able nor std::wistream`able");
#if !defined(BOOST_LCAST_NO_WCHAR_T)
template <class U>
static auto right_shift_type(int)
-> decltype( std::declval<std::basic_istream< wchar_t >&>() >> std::declval<U&>(), wchar_t{});
#endif
template <class U>
static void right_shift_type(...);
using type = decltype(right_shift_type<T>(1L));
static_assert(!std::is_same<type, void>::value,
#if defined(BOOST_LCAST_NO_WCHAR_T)
"Target type is not std::istream`able and std::wistream`s are "
"not supported by your STL implementation"
#else
"Target type is neither std::istream`able nor std::wistream`able"
#endif
);
};
}
@@ -266,45 +319,15 @@ namespace boost {
template < class T >
struct deduce_target_char
{
typedef BOOST_DEDUCED_TYPENAME stream_char_common< T >::type stage1_type;
typedef BOOST_DEDUCED_TYPENAME deduce_target_char_impl< stage1_type >::type stage2_type;
typedef stage2_type type;
typedef typename stream_char_common< T >::type stage1_type;
typedef typename deduce_target_char_impl< stage1_type >::type type;
};
template < class T >
struct deduce_source_char
{
typedef BOOST_DEDUCED_TYPENAME stream_char_common< T >::type stage1_type;
typedef BOOST_DEDUCED_TYPENAME deduce_source_char_impl< stage1_type >::type stage2_type;
typedef stage2_type type;
};
}
namespace detail // extract_char_traits template
{
// We are attempting to get char_traits<> from T
// template parameter. Otherwise we'll be using std::char_traits<Char>
template < class Char, class T >
struct extract_char_traits
: boost::false_type
{
typedef std::char_traits< Char > trait_t;
};
template < class Char, class Traits, class Alloc >
struct extract_char_traits< Char, std::basic_string< Char, Traits, Alloc > >
: boost::true_type
{
typedef Traits trait_t;
};
template < class Char, class Traits, class Alloc>
struct extract_char_traits< Char, boost::container::basic_string< Char, Traits, Alloc > >
: boost::true_type
{
typedef Traits trait_t;
typedef typename stream_char_common< T >::type stage1_type;
typedef typename deduce_source_char_impl< stage1_type >::type type;
};
}
@@ -349,19 +372,14 @@ namespace boost {
// When is_specialized is false, the whole expression is 0.
template <class Source>
struct lcast_src_length<
Source, BOOST_DEDUCED_TYPENAME boost::enable_if<boost::is_integral<Source> >::type
Source, typename std::enable_if<boost::detail::lcast::is_integral<Source>::value >::type
>
{
#ifndef BOOST_NO_LIMITS_COMPILE_TIME_CONSTANTS
BOOST_STATIC_CONSTANT(std::size_t, value =
std::numeric_limits<Source>::is_signed +
std::numeric_limits<Source>::is_specialized + /* == 1 */
std::numeric_limits<Source>::digits10 * 2
);
#else
BOOST_STATIC_CONSTANT(std::size_t, value = 156);
BOOST_STATIC_ASSERT(sizeof(Source) * CHAR_BIT <= 256);
#endif
};
// Helper for floating point types.
@@ -376,22 +394,17 @@ namespace boost {
// sign + leading digit + decimal point + "e" + exponent sign == 5
template<class Source>
struct lcast_src_length<
Source, BOOST_DEDUCED_TYPENAME boost::enable_if<boost::is_float<Source> >::type
Source, typename std::enable_if<std::is_floating_point<Source>::value >::type
>
{
#ifndef BOOST_LCAST_NO_COMPILE_TIME_PRECISION
BOOST_STATIC_ASSERT(
static_assert(
std::numeric_limits<Source>::max_exponent10 <= 999999L &&
std::numeric_limits<Source>::min_exponent10 >= -999999L
);
, "");
BOOST_STATIC_CONSTANT(std::size_t, value =
5 + lcast_precision<Source>::value + 6
);
#else // #ifndef BOOST_LCAST_NO_COMPILE_TIME_PRECISION
BOOST_STATIC_CONSTANT(std::size_t, value = 156);
#endif // #ifndef BOOST_LCAST_NO_COMPILE_TIME_PRECISION
};
}
@@ -399,55 +412,29 @@ namespace boost {
{
template <class Source, class Target>
struct lexical_cast_stream_traits {
typedef BOOST_DEDUCED_TYPENAME boost::detail::array_to_pointer_decay<Source>::type src;
typedef BOOST_DEDUCED_TYPENAME boost::remove_cv<src>::type no_cv_src;
typedef typename boost::detail::array_to_pointer_decay<Source>::type src;
typedef typename std::remove_cv<src>::type no_cv_src;
typedef boost::detail::deduce_source_char<no_cv_src> deduce_src_char_metafunc;
typedef BOOST_DEDUCED_TYPENAME deduce_src_char_metafunc::type src_char_t;
typedef BOOST_DEDUCED_TYPENAME boost::detail::deduce_target_char<Target>::type target_char_t;
typedef typename deduce_src_char_metafunc::type src_char_t;
typedef typename boost::detail::deduce_target_char<Target>::type target_char_t;
typedef BOOST_DEDUCED_TYPENAME boost::detail::widest_char<
typedef typename boost::detail::widest_char<
target_char_t, src_char_t
>::type char_type;
#if !defined(BOOST_NO_CXX11_CHAR16_T) && defined(BOOST_NO_CXX11_UNICODE_LITERALS)
BOOST_STATIC_ASSERT_MSG(( !boost::is_same<char16_t, src_char_t>::value
&& !boost::is_same<char16_t, target_char_t>::value),
static_assert(!std::is_same<char16_t, src_char_t>::value
&& !std::is_same<char16_t, target_char_t>::value,
"Your compiler does not have full support for char16_t" );
#endif
#if !defined(BOOST_NO_CXX11_CHAR32_T) && defined(BOOST_NO_CXX11_UNICODE_LITERALS)
BOOST_STATIC_ASSERT_MSG(( !boost::is_same<char32_t, src_char_t>::value
&& !boost::is_same<char32_t, target_char_t>::value),
static_assert(!std::is_same<char32_t, src_char_t>::value
&& !std::is_same<char32_t, target_char_t>::value,
"Your compiler does not have full support for char32_t" );
#endif
typedef BOOST_DEDUCED_TYPENAME boost::conditional<
boost::detail::extract_char_traits<char_type, Target>::value,
BOOST_DEDUCED_TYPENAME boost::detail::extract_char_traits<char_type, Target>,
BOOST_DEDUCED_TYPENAME boost::detail::extract_char_traits<char_type, no_cv_src>
>::type::trait_t traits;
typedef boost::integral_constant<
bool,
boost::is_same<char, src_char_t>::value && // source is not a wide character based type
(sizeof(char) != sizeof(target_char_t)) && // target type is based on wide character
(!(boost::detail::is_character<no_cv_src>::value))
> is_string_widening_required_t;
typedef boost::integral_constant<
bool,
!(boost::is_integral<no_cv_src>::value ||
boost::detail::is_character<
BOOST_DEDUCED_TYPENAME deduce_src_char_metafunc::stage1_type // if we did not get character type at stage1
>::value // then we have no optimization for that type
)
> is_source_input_not_optimized_t;
// If we have an optimized conversion for
// Source, we do not need to construct stringbuf.
BOOST_STATIC_CONSTANT(bool, requires_stringbuf =
(is_string_widening_required_t::value || is_source_input_not_optimized_t::value)
);
typedef std::char_traits<char_type> traits;
typedef boost::detail::lcast_src_length<no_cv_src> len_t;
};
@@ -460,29 +447,33 @@ namespace boost {
{
typedef lexical_cast_stream_traits<Source, Target> stream_trait;
typedef detail::lexical_istream_limited_src<
BOOST_DEDUCED_TYPENAME stream_trait::char_type,
BOOST_DEDUCED_TYPENAME stream_trait::traits,
stream_trait::requires_stringbuf,
typedef detail::lcast::optimized_src_stream<
typename stream_trait::char_type,
typename stream_trait::traits,
stream_trait::len_t::value + 1
> i_interpreter_type;
> optimized_src_stream;
template <class T>
static auto detect_type(int)
-> decltype(std::declval<optimized_src_stream&>().stream_in(std::declval<lcast::exact<T>>()), optimized_src_stream{});
typedef detail::lexical_ostream_limited_src<
BOOST_DEDUCED_TYPENAME stream_trait::char_type,
BOOST_DEDUCED_TYPENAME stream_trait::traits
> o_interpreter_type;
template <class T>
static lcast::ios_src_stream<typename stream_trait::char_type, typename stream_trait::traits> detect_type(...);
using from_src_stream = decltype(detect_type<Source>(1));
typedef detail::lcast::to_target_stream<
typename stream_trait::char_type,
typename stream_trait::traits
> to_target_stream;
static inline bool try_convert(const Source& arg, Target& result) {
i_interpreter_type i_interpreter;
// Disabling ADL, by directly specifying operators.
if (!(i_interpreter.operator <<(arg)))
from_src_stream src_stream;
if (!src_stream.stream_in(lcast::exact<Source>{arg}))
return false;
o_interpreter_type out(i_interpreter.cbegin(), i_interpreter.cend());
// Disabling ADL, by directly specifying operators.
if(!(out.operator >>(result)))
to_target_stream out(src_stream.cbegin(), src_stream.cend());
if (!out.stream_out(result))
return false;
return true;
@@ -494,5 +485,7 @@ namespace boost {
#undef BOOST_LCAST_NO_WCHAR_T
#endif // #if !defined(BOOST_USE_MODULES) || defined(BOOST_LEXICAL_CAST_INTERFACE_UNIT)
#endif // BOOST_LEXICAL_CAST_DETAIL_CONVERTER_LEXICAL_HPP
File diff suppressed because it is too large Load Diff
@@ -1,6 +1,6 @@
// Copyright Kevlin Henney, 2000-2005.
// Copyright Alexander Nasonov, 2006-2010.
// Copyright Antony Polukhin, 2011-2021.
// Copyright Antony Polukhin, 2011-2026.
//
// Distributed under the Boost Software License, Version 1.0. (See
// accompanying file LICENSE_1_0.txt or copy at
@@ -18,121 +18,137 @@
#ifndef BOOST_LEXICAL_CAST_DETAIL_CONVERTER_NUMERIC_HPP
#define BOOST_LEXICAL_CAST_DETAIL_CONVERTER_NUMERIC_HPP
#include <boost/lexical_cast/detail/config.hpp>
#if !defined(BOOST_USE_MODULES) || defined(BOOST_LEXICAL_CAST_INTERFACE_UNIT)
#ifndef BOOST_LEXICAL_CAST_INTERFACE_UNIT
#include <boost/config.hpp>
#ifdef BOOST_HAS_PRAGMA_ONCE
# pragma once
#endif
#include <type_traits>
#include <boost/core/cmath.hpp>
#include <boost/limits.hpp>
#include <boost/type_traits/type_identity.hpp>
#include <boost/type_traits/conditional.hpp>
#include <boost/type_traits/make_unsigned.hpp>
#include <boost/type_traits/is_signed.hpp>
#include <boost/type_traits/is_integral.hpp>
#include <boost/type_traits/is_arithmetic.hpp>
#include <boost/type_traits/is_base_of.hpp>
#include <boost/type_traits/is_float.hpp>
#include <boost/numeric/conversion/cast.hpp>
#endif // #ifndef BOOST_LEXICAL_CAST_INTERFACE_UNIT
#include <boost/lexical_cast/detail/type_traits.hpp>
namespace boost { namespace detail {
template <class Source >
struct detect_precision_loss
{
typedef Source source_type;
typedef boost::numeric::Trunc<Source> Rounder;
typedef BOOST_DEDUCED_TYPENAME conditional<
boost::is_arithmetic<Source>::value, Source, Source const&
>::type argument_type ;
static inline source_type nearbyint(argument_type s, bool& is_ok) BOOST_NOEXCEPT {
const source_type near_int = Rounder::nearbyint(s);
if (near_int && is_ok) {
const source_type orig_div_round = s / near_int;
const source_type eps = std::numeric_limits<source_type>::epsilon();
is_ok = !((orig_div_round > 1 ? orig_div_round - 1 : 1 - orig_div_round) > eps);
}
return s;
}
typedef typename Rounder::round_style round_style;
};
template <typename Base, class Source>
struct fake_precision_loss: public Base
{
typedef Source source_type ;
typedef BOOST_DEDUCED_TYPENAME conditional<
boost::is_arithmetic<Source>::value, Source, Source const&
>::type argument_type ;
static inline source_type nearbyint(argument_type s, bool& /*is_ok*/) BOOST_NOEXCEPT {
return s;
}
};
struct nothrow_overflow_handler
{
inline bool operator() ( boost::numeric::range_check_result r ) const BOOST_NOEXCEPT {
return (r == boost::numeric::cInRange);
}
};
template <typename Target, typename Source>
inline bool noexcept_numeric_convert(const Source& arg, Target& result) BOOST_NOEXCEPT {
typedef boost::numeric::converter<
Target,
Source,
boost::numeric::conversion_traits<Target, Source >,
nothrow_overflow_handler,
detect_precision_loss<Source >
> converter_orig_t;
typedef BOOST_DEDUCED_TYPENAME boost::conditional<
boost::is_base_of< detect_precision_loss<Source >, converter_orig_t >::value,
converter_orig_t,
fake_precision_loss<converter_orig_t, Source>
>::type converter_t;
bool res = nothrow_overflow_handler()(converter_t::out_of_range(arg));
result = converter_t::low_level_convert(converter_t::nearbyint(arg, res));
return res;
template <class Source, class Target>
bool ios_numeric_comparer_float(Source x, Source y) noexcept {
return x == y
|| (boost::core::isnan(x) && boost::core::isnan(y))
|| (x < (std::numeric_limits<Target>::min)())
;
}
template <class RangeType, class T>
constexpr bool is_out_of_range_for(T value) noexcept {
return value > static_cast<T>((std::numeric_limits<RangeType>::max)())
|| value < static_cast<T>((std::numeric_limits<RangeType>::min)())
|| boost::core::isnan(value);
}
// integral -> integral
template <typename Target, typename Source>
typename std::enable_if<
!std::is_floating_point<Source>::value && !std::is_floating_point<Target>::value, bool
>::type noexcept_numeric_convert(Source arg, Target& result) noexcept {
const Target target_tmp = static_cast<Target>(arg);
const Source arg_restored = static_cast<Source>(target_tmp);
if (arg == arg_restored) {
result = target_tmp;
return true;
}
return false;
}
// integral -> floating point
template <typename Target, typename Source>
typename std::enable_if<
!std::is_floating_point<Source>::value && std::is_floating_point<Target>::value, bool
>::type noexcept_numeric_convert(Source arg, Target& result) noexcept {
const Target target_tmp = static_cast<Target>(arg);
result = target_tmp;
return true;
}
// floating point -> floating point
template <typename Target, typename Source>
typename std::enable_if<
std::is_floating_point<Source>::value && std::is_floating_point<Target>::value, bool
>::type noexcept_numeric_convert(Source arg, Target& result) noexcept {
const Target target_tmp = static_cast<Target>(arg);
const Source arg_restored = static_cast<Source>(target_tmp);
if (detail::ios_numeric_comparer_float<Source, Target>(arg, arg_restored)) {
result = target_tmp;
return true;
}
return false;
}
// floating point -> integral
template <typename Target, typename Source>
typename std::enable_if<
std::is_floating_point<Source>::value && !std::is_floating_point<Target>::value, bool
>::type noexcept_numeric_convert(Source arg, Target& result) noexcept {
if (detail::is_out_of_range_for<Target>(arg)) {
return false;
}
const Target target_tmp = static_cast<Target>(arg);
const Source arg_restored = static_cast<Source>(target_tmp);
if (arg == arg_restored /* special values are handled in detail::is_out_of_range_for */) {
result = target_tmp;
return true;
}
return false;
}
struct lexical_cast_dynamic_num_not_ignoring_minus
{
static inline bool try_convert(const Source &arg, Target& result) BOOST_NOEXCEPT {
return noexcept_numeric_convert<Target, Source >(arg, result);
template <typename Target, typename Source>
static inline bool try_convert(Source arg, Target& result) noexcept {
return boost::detail::noexcept_numeric_convert<Target, Source >(arg, result);
}
};
template <typename Target, typename Source>
struct lexical_cast_dynamic_num_ignoring_minus
{
static inline bool try_convert(const Source &arg, Target& result) BOOST_NOEXCEPT {
typedef BOOST_DEDUCED_TYPENAME boost::conditional<
boost::is_float<Source>::value,
boost::type_identity<Source>,
boost::make_unsigned<Source>
template <typename Target, typename Source>
#if defined(__clang__) && (__clang_major__ > 3 || __clang_minor__ > 6)
__attribute__((no_sanitize("unsigned-integer-overflow")))
#endif
static inline bool try_convert(Source arg, Target& result) noexcept {
typedef typename std::conditional<
std::is_floating_point<Source>::value,
std::conditional<true, Source, Source>, // std::type_identity emulation
boost::detail::lcast::make_unsigned<Source>
>::type usource_lazy_t;
typedef BOOST_DEDUCED_TYPENAME usource_lazy_t::type usource_t;
typedef typename usource_lazy_t::type usource_t;
if (arg < 0) {
const bool res = noexcept_numeric_convert<Target, usource_t>(0u - arg, result);
const bool res = boost::detail::noexcept_numeric_convert<Target, usource_t>(
static_cast<usource_t>(0u - static_cast<usource_t>(arg)), result
);
result = static_cast<Target>(0u - result);
return res;
} else {
return noexcept_numeric_convert<Target, usource_t>(arg, result);
return boost::detail::noexcept_numeric_convert<Target, usource_t>(arg, result);
}
}
};
/*
* lexical_cast_dynamic_num follows the rules:
* dynamic_num_converter_impl follows the rules:
* 1) If Source can be converted to Target without precision loss and
* without overflows, then assign Source to Target and return
*
@@ -152,14 +168,14 @@ struct lexical_cast_dynamic_num_ignoring_minus
template <typename Target, typename Source>
struct dynamic_num_converter_impl
{
static inline bool try_convert(const Source &arg, Target& result) BOOST_NOEXCEPT {
typedef BOOST_DEDUCED_TYPENAME boost::conditional<
boost::is_unsigned<Target>::value &&
(boost::is_signed<Source>::value || boost::is_float<Source>::value) &&
!(boost::is_same<Source, bool>::value) &&
!(boost::is_same<Target, bool>::value),
lexical_cast_dynamic_num_ignoring_minus<Target, Source>,
lexical_cast_dynamic_num_not_ignoring_minus<Target, Source>
static inline bool try_convert(Source arg, Target& result) noexcept {
typedef typename std::conditional<
boost::detail::lcast::is_unsigned<Target>::value &&
(boost::detail::lcast::is_signed<Source>::value || std::is_floating_point<Source>::value) &&
!(std::is_same<Source, bool>::value) &&
!(std::is_same<Target, bool>::value),
lexical_cast_dynamic_num_ignoring_minus,
lexical_cast_dynamic_num_not_ignoring_minus
>::type caster_type;
return caster_type::try_convert(arg, result);
@@ -168,5 +184,7 @@ struct dynamic_num_converter_impl
}} // namespace boost::detail
#endif // #if !defined(BOOST_USE_MODULES) || defined(BOOST_LEXICAL_CAST_INTERFACE_UNIT)
#endif // BOOST_LEXICAL_CAST_DETAIL_CONVERTER_NUMERIC_HPP
+34 -33
View File
@@ -1,6 +1,6 @@
// Copyright Kevlin Henney, 2000-2005.
// Copyright Alexander Nasonov, 2006-2010.
// Copyright Antony Polukhin, 2011-2021.
// Copyright Antony Polukhin, 2011-2026.
//
// Distributed under the Boost Software License, Version 1.0. (See
// accompanying file LICENSE_1_0.txt or copy at
@@ -18,6 +18,11 @@
#ifndef BOOST_LEXICAL_CAST_DETAIL_INF_NAN_HPP
#define BOOST_LEXICAL_CAST_DETAIL_INF_NAN_HPP
#include <boost/lexical_cast/detail/config.hpp>
#if !defined(BOOST_USE_MODULES) || defined(BOOST_LEXICAL_CAST_INTERFACE_UNIT)
#ifndef BOOST_LEXICAL_CAST_INTERFACE_UNIT
#include <boost/config.hpp>
#ifdef BOOST_HAS_PRAGMA_ONCE
# pragma once
@@ -28,10 +33,11 @@
#endif
#include <boost/limits.hpp>
#include <boost/detail/workaround.hpp>
#include <boost/config/workaround.hpp>
#include <boost/core/cmath.hpp>
#include <cstddef>
#include <cstring>
#endif // #ifndef BOOST_LEXICAL_CAST_INTERFACE_UNIT
#include <boost/lexical_cast/detail/lcast_char_constants.hpp>
@@ -39,7 +45,7 @@ namespace boost {
namespace detail
{
template <class CharT>
bool lc_iequal(const CharT* val, const CharT* lcase, const CharT* ucase, unsigned int len) BOOST_NOEXCEPT {
bool lc_iequal(const CharT* val, const CharT* lcase, const CharT* ucase, unsigned int len) noexcept {
for( unsigned int i=0; i < len; ++i ) {
if ( val[i] != lcase[i] && val[i] != ucase[i] ) return false;
}
@@ -52,7 +58,7 @@ namespace boost {
inline bool parse_inf_nan_impl(const CharT* begin, const CharT* end, T& value
, const CharT* lc_NAN, const CharT* lc_nan
, const CharT* lc_INFINITY, const CharT* lc_infinity
, const CharT opening_brace, const CharT closing_brace) BOOST_NOEXCEPT
, const CharT opening_brace, const CharT closing_brace) noexcept
{
if (begin == end) return false;
const CharT minus = lcast_char_constants<CharT>::minus;
@@ -100,38 +106,31 @@ namespace boost {
}
template <class CharT, class T>
bool put_inf_nan_impl(CharT* begin, CharT*& end, const T& value
const CharT* get_inf_nan_impl(T value
, const CharT* lc_nan
, const CharT* lc_infinity) BOOST_NOEXCEPT
, const CharT* lc_minus_nan
, const CharT* lc_infinity
, const CharT* lc_minus_infinity) noexcept
{
const CharT minus = lcast_char_constants<CharT>::minus;
if (boost::core::isnan(value)) {
if (boost::core::signbit(value)) {
*begin = minus;
++ begin;
return lc_minus_nan;
}
std::memcpy(begin, lc_nan, 3 * sizeof(CharT));
end = begin + 3;
return true;
return lc_nan;
} else if (boost::core::isinf(value)) {
if (boost::core::signbit(value)) {
*begin = minus;
++ begin;
return lc_minus_infinity;
}
std::memcpy(begin, lc_infinity, 3 * sizeof(CharT));
end = begin + 3;
return true;
return lc_infinity;
}
return false;
return nullptr;
}
#ifndef BOOST_LCAST_NO_WCHAR_T
template <class T>
bool parse_inf_nan(const wchar_t* begin, const wchar_t* end, T& value) BOOST_NOEXCEPT {
bool parse_inf_nan(const wchar_t* begin, const wchar_t* end, T& value) noexcept {
return parse_inf_nan_impl(begin, end, value
, L"NAN", L"nan"
, L"INFINITY", L"infinity"
@@ -139,14 +138,14 @@ namespace boost {
}
template <class T>
bool put_inf_nan(wchar_t* begin, wchar_t*& end, const T& value) BOOST_NOEXCEPT {
return put_inf_nan_impl(begin, end, value, L"nan", L"infinity");
const wchar_t* get_inf_nan(T value, wchar_t) noexcept {
return detail::get_inf_nan_impl(value, L"nan", L"-nan", L"inf", L"-inf");
}
#endif
#if !defined(BOOST_NO_CXX11_CHAR16_T) && !defined(BOOST_NO_CXX11_UNICODE_LITERALS)
template <class T>
bool parse_inf_nan(const char16_t* begin, const char16_t* end, T& value) BOOST_NOEXCEPT {
bool parse_inf_nan(const char16_t* begin, const char16_t* end, T& value) noexcept {
return parse_inf_nan_impl(begin, end, value
, u"NAN", u"nan"
, u"INFINITY", u"infinity"
@@ -154,13 +153,13 @@ namespace boost {
}
template <class T>
bool put_inf_nan(char16_t* begin, char16_t*& end, const T& value) BOOST_NOEXCEPT {
return put_inf_nan_impl(begin, end, value, u"nan", u"infinity");
const char16_t* get_inf_nan(T value, char16_t) noexcept {
return detail::get_inf_nan_impl(value, u"nan", u"-nan", u"inf", u"-inf");
}
#endif
#if !defined(BOOST_NO_CXX11_CHAR32_T) && !defined(BOOST_NO_CXX11_UNICODE_LITERALS)
template <class T>
bool parse_inf_nan(const char32_t* begin, const char32_t* end, T& value) BOOST_NOEXCEPT {
bool parse_inf_nan(const char32_t* begin, const char32_t* end, T& value) noexcept {
return parse_inf_nan_impl(begin, end, value
, U"NAN", U"nan"
, U"INFINITY", U"infinity"
@@ -168,27 +167,29 @@ namespace boost {
}
template <class T>
bool put_inf_nan(char32_t* begin, char32_t*& end, const T& value) BOOST_NOEXCEPT {
return put_inf_nan_impl(begin, end, value, U"nan", U"infinity");
const char32_t* get_inf_nan(T value, char32_t) noexcept {
return detail::get_inf_nan_impl(value, U"nan", U"-nan", U"inf", U"-inf");
}
#endif
template <class CharT, class T>
bool parse_inf_nan(const CharT* begin, const CharT* end, T& value) BOOST_NOEXCEPT {
bool parse_inf_nan(const CharT* begin, const CharT* end, T& value) noexcept {
return parse_inf_nan_impl(begin, end, value
, "NAN", "nan"
, "INFINITY", "infinity"
, '(', ')');
}
template <class CharT, class T>
bool put_inf_nan(CharT* begin, CharT*& end, const T& value) BOOST_NOEXCEPT {
return put_inf_nan_impl(begin, end, value, "nan", "infinity");
template <class T>
const char* get_inf_nan(T value, char) noexcept {
return detail::get_inf_nan_impl(value, "nan", "-nan", "inf", "-inf");
}
}
} // namespace boost
#undef BOOST_LCAST_NO_WCHAR_T
#endif // #if !defined(BOOST_USE_MODULES) || defined(BOOST_LEXICAL_CAST_INTERFACE_UNIT)
#endif // BOOST_LEXICAL_CAST_DETAIL_INF_NAN_HPP
@@ -1,6 +1,6 @@
// Copyright Kevlin Henney, 2000-2005.
// Copyright Alexander Nasonov, 2006-2010.
// Copyright Antony Polukhin, 2011-2021.
// Copyright Antony Polukhin, 2011-2026.
//
// Distributed under the Boost Software License, Version 1.0. (See
// accompanying file LICENSE_1_0.txt or copy at
@@ -18,42 +18,43 @@
#ifndef BOOST_LEXICAL_CAST_DETAIL_IS_CHARACTER_HPP
#define BOOST_LEXICAL_CAST_DETAIL_IS_CHARACTER_HPP
#include <boost/lexical_cast/detail/config.hpp>
#if !defined(BOOST_USE_MODULES) || defined(BOOST_LEXICAL_CAST_INTERFACE_UNIT)
#ifndef BOOST_LEXICAL_CAST_INTERFACE_UNIT
#include <boost/config.hpp>
#ifdef BOOST_HAS_PRAGMA_ONCE
# pragma once
#endif
#include <boost/type_traits/integral_constant.hpp>
#include <boost/type_traits/is_same.hpp>
#include <type_traits>
namespace boost {
#endif // #ifndef BOOST_LEXICAL_CAST_INTERFACE_UNIT
namespace detail // is_character<...>
{
// returns true, if T is one of the character types
template < typename T >
struct is_character
{
typedef BOOST_DEDUCED_TYPENAME boost::integral_constant<
bool,
boost::is_same< T, char >::value ||
#if !defined(BOOST_NO_STRINGSTREAM) && !defined(BOOST_NO_STD_WSTRING)
boost::is_same< T, wchar_t >::value ||
#endif
#ifndef BOOST_NO_CXX11_CHAR16_T
boost::is_same< T, char16_t >::value ||
#endif
#ifndef BOOST_NO_CXX11_CHAR32_T
boost::is_same< T, char32_t >::value ||
#endif
boost::is_same< T, unsigned char >::value ||
boost::is_same< T, signed char >::value
> type;
namespace boost { namespace detail {
BOOST_STATIC_CONSTANT(bool, value = (type::value) );
};
}
}
// returns true, if T is one of the character types
template < typename T >
using is_character = std::integral_constant<
bool,
std::is_same< T, char >::value ||
#if !defined(BOOST_NO_STRINGSTREAM) && !defined(BOOST_NO_STD_WSTRING)
std::is_same< T, wchar_t >::value ||
#endif
#ifndef BOOST_NO_CXX11_CHAR16_T
std::is_same< T, char16_t >::value ||
#endif
#ifndef BOOST_NO_CXX11_CHAR32_T
std::is_same< T, char32_t >::value ||
#endif
std::is_same< T, unsigned char >::value ||
std::is_same< T, signed char >::value
>;
}}
#endif // #if !defined(BOOST_USE_MODULES) || defined(BOOST_LEXICAL_CAST_INTERFACE_UNIT)
#endif // BOOST_LEXICAL_CAST_DETAIL_IS_CHARACTER_HPP
@@ -0,0 +1,82 @@
// Copyright Kevlin Henney, 2000-2005.
// Copyright Alexander Nasonov, 2006-2010.
// Copyright Antony Polukhin, 2011-2026.
//
// Distributed under the Boost Software License, Version 1.0. (See
// accompanying file LICENSE_1_0.txt or copy at
// http://www.boost.org/LICENSE_1_0.txt)
#ifndef BOOST_LEXICAL_CAST_DETAIL_CONVERTER_LEXICAL_BASIC_UNLOCKEDBUF_HPP
#define BOOST_LEXICAL_CAST_DETAIL_CONVERTER_LEXICAL_BASIC_UNLOCKEDBUF_HPP
#include <boost/lexical_cast/detail/config.hpp>
#if !defined(BOOST_USE_MODULES) || defined(BOOST_LEXICAL_CAST_INTERFACE_UNIT)
#ifndef BOOST_LEXICAL_CAST_INTERFACE_UNIT
#include <boost/config.hpp>
#ifdef BOOST_HAS_PRAGMA_ONCE
# pragma once
#endif
#ifdef BOOST_NO_STRINGSTREAM
#include <strstream>
#else
#include <sstream>
#endif
#include <boost/detail/basic_pointerbuf.hpp>
#ifndef BOOST_NO_CWCHAR
# include <cwchar>
#endif
#endif // #ifndef BOOST_LEXICAL_CAST_INTERFACE_UNIT
namespace boost { namespace detail { namespace lcast {
// acts as a stream buffer which wraps around a pair of pointers
// and gives acces to internals
template <class BufferType, class CharT>
class basic_unlockedbuf : public basic_pointerbuf<CharT, BufferType> {
public:
typedef basic_pointerbuf<CharT, BufferType> base_type;
typedef typename base_type::streamsize streamsize;
using base_type::pptr;
using base_type::pbase;
using base_type::setbuf;
};
#if defined(BOOST_NO_STRINGSTREAM)
template <class CharT, class Traits>
using out_stream_t = std::ostream;
template <class CharT, class Traits>
using stringbuffer_t = basic_unlockedbuf<std::strstreambuf, char>;
#elif defined(BOOST_NO_STD_LOCALE)
template <class CharT, class Traits>
using out_stream_t = std::ostream;
template <class CharT, class Traits>
using stringbuffer_t = basic_unlockedbuf<std::stringbuf, char>;
template <class CharT, class Traits>
using buffer_t = basic_unlockedbuf<std::streambuf, char>;
#else
template <class CharT, class Traits>
using out_stream_t = std::basic_ostream<CharT, Traits>;
template <class CharT, class Traits>
using stringbuffer_t = basic_unlockedbuf<std::basic_stringbuf<CharT, Traits>, CharT>;
template <class CharT, class Traits>
using buffer_t = basic_unlockedbuf<std::basic_streambuf<CharT, Traits>, CharT>;
#endif
}}} // namespace boost::detail::lcast
#endif // #if !defined(BOOST_USE_MODULES) || defined(BOOST_LEXICAL_CAST_INTERFACE_UNIT)
#endif // BOOST_LEXICAL_CAST_DETAIL_CONVERTER_LEXICAL_BASIC_UNLOCKEDBUF_HPP
@@ -1,6 +1,6 @@
// Copyright Kevlin Henney, 2000-2005.
// Copyright Alexander Nasonov, 2006-2010.
// Copyright Antony Polukhin, 2011-2021.
// Copyright Antony Polukhin, 2011-2026.
//
// Distributed under the Boost Software License, Version 1.0. (See
// accompanying file LICENSE_1_0.txt or copy at
@@ -18,10 +18,16 @@
#ifndef BOOST_LEXICAL_CAST_DETAIL_LCAST_CHAR_CONSTANTS_HPP
#define BOOST_LEXICAL_CAST_DETAIL_LCAST_CHAR_CONSTANTS_HPP
#include <boost/lexical_cast/detail/config.hpp>
#if !defined(BOOST_USE_MODULES) || defined(BOOST_LEXICAL_CAST_INTERFACE_UNIT)
#ifndef BOOST_LEXICAL_CAST_INTERFACE_UNIT
#include <boost/config.hpp>
#ifdef BOOST_HAS_PRAGMA_ONCE
# pragma once
#endif
#endif // #ifndef BOOST_LEXICAL_CAST_INTERFACE_UNIT
namespace boost
{
@@ -41,6 +47,7 @@ namespace boost
}
} // namespace boost
#endif // #if !defined(BOOST_USE_MODULES) || defined(BOOST_LEXICAL_CAST_INTERFACE_UNIT)
#endif // BOOST_LEXICAL_CAST_DETAIL_LCAST_CHAR_CONSTANTS_HPP
@@ -0,0 +1,95 @@
// Copyright Alexander Nasonov & Paul A. Bristow 2006.
// Use, modification and distribution are subject to the
// Boost Software License, Version 1.0.
// (See accompanying file LICENSE_1_0.txt
// or copy at http://www.boost.org/LICENSE_1_0.txt)
#ifndef BOOST_DETAIL_LCAST_PRECISION_HPP_INCLUDED
#define BOOST_DETAIL_LCAST_PRECISION_HPP_INCLUDED
#include <boost/lexical_cast/detail/config.hpp>
#if !defined(BOOST_USE_MODULES) || defined(BOOST_LEXICAL_CAST_INTERFACE_UNIT)
#ifndef BOOST_LEXICAL_CAST_INTERFACE_UNIT
#include <boost/config.hpp>
#ifdef BOOST_HAS_PRAGMA_ONCE
# pragma once
#endif
#include <climits>
#include <ios>
#include <limits>
#endif // #ifndef BOOST_LEXICAL_CAST_INTERFACE_UNIT
namespace boost { namespace detail {
// Calculate an argument to pass to std::ios_base::precision from
// lexical_cast.
template<class T>
struct lcast_precision
{
using limits = std::numeric_limits<T>;
static constexpr bool use_default_precision =
!limits::is_specialized || limits::is_exact
;
static constexpr bool is_specialized_bin =
!use_default_precision &&
limits::radix == 2 && limits::digits > 0
;
static constexpr bool is_specialized_dec =
!use_default_precision &&
limits::radix == 10 && limits::digits10 > 0
;
static constexpr std::streamsize streamsize_max =
(std::numeric_limits<std::streamsize>::max)()
;
static constexpr unsigned int precision_dec = limits::digits10 + 1U;
static_assert(!is_specialized_dec ||
precision_dec <= streamsize_max + 0UL
, "");
static constexpr unsigned long precision_bin =
2UL + limits::digits * 30103UL / 100000UL
;
static_assert(!is_specialized_bin ||
(limits::digits + 0UL < ULONG_MAX / 30103UL &&
precision_bin > limits::digits10 + 0UL &&
precision_bin <= streamsize_max + 0UL)
, "");
static constexpr std::streamsize value =
is_specialized_bin ? precision_bin
: is_specialized_dec ? precision_dec : 6
;
};
template<class T>
inline void lcast_set_precision(std::ios_base& stream, T*)
{
stream.precision(lcast_precision<T>::value);
}
template<class Source, class Target>
inline void lcast_set_precision(std::ios_base& stream, Source*, Target*)
{
std::streamsize const s = lcast_precision<Source>::value;
std::streamsize const t = lcast_precision<Target*>::value;
stream.precision(s > t ? s : t);
}
}}
#endif // #if !defined(BOOST_USE_MODULES) || defined(BOOST_LEXICAL_CAST_INTERFACE_UNIT)
#endif // BOOST_DETAIL_LCAST_PRECISION_HPP_INCLUDED
@@ -1,6 +1,6 @@
// Copyright Kevlin Henney, 2000-2005.
// Copyright Alexander Nasonov, 2006-2010.
// Copyright Antony Polukhin, 2011-2021.
// Copyright Antony Polukhin, 2011-2026.
//
// Distributed under the Boost Software License, Version 1.0. (See
// accompanying file LICENSE_1_0.txt or copy at
@@ -18,6 +18,11 @@
#ifndef BOOST_LEXICAL_CAST_DETAIL_LCAST_UNSIGNED_CONVERTERS_HPP
#define BOOST_LEXICAL_CAST_DETAIL_LCAST_UNSIGNED_CONVERTERS_HPP
#include <boost/lexical_cast/detail/config.hpp>
#if !defined(BOOST_USE_MODULES) || defined(BOOST_LEXICAL_CAST_INTERFACE_UNIT)
#ifndef BOOST_LEXICAL_CAST_INTERFACE_UNIT
#include <boost/config.hpp>
#ifdef BOOST_HAS_PRAGMA_ONCE
# pragma once
@@ -28,10 +33,10 @@
#include <string>
#include <cstring>
#include <cstdio>
#include <type_traits>
#include <boost/limits.hpp>
#include <boost/type_traits/conditional.hpp>
#include <boost/static_assert.hpp>
#include <boost/detail/workaround.hpp>
#include <boost/config/workaround.hpp>
#include <boost/lexical_cast/detail/type_traits.hpp>
#ifndef BOOST_NO_STD_LOCALE
@@ -48,18 +53,22 @@
#endif
#include <boost/lexical_cast/detail/lcast_char_constants.hpp>
#include <boost/type_traits/make_unsigned.hpp>
#include <boost/type_traits/is_signed.hpp>
#include <boost/noncopyable.hpp>
#include <boost/core/noncopyable.hpp>
#endif // #ifndef BOOST_LEXICAL_CAST_INTERFACE_UNIT
#include <boost/lexical_cast/detail/lcast_char_constants.hpp>
namespace boost
{
namespace detail // lcast_to_unsigned
{
template<class T>
#if defined(__clang__) && (__clang_major__ > 3 || __clang_minor__ > 6)
__attribute__((no_sanitize("unsigned-integer-overflow")))
#endif
inline
BOOST_DEDUCED_TYPENAME boost::make_unsigned<T>::type lcast_to_unsigned(const T value) BOOST_NOEXCEPT {
typedef BOOST_DEDUCED_TYPENAME boost::make_unsigned<T>::type result_type;
typename boost::detail::lcast::make_unsigned<T>::type lcast_to_unsigned(const T value) noexcept {
typedef typename boost::detail::lcast::make_unsigned<T>::type result_type;
return value < 0
? static_cast<result_type>(0u - static_cast<result_type>(value))
: static_cast<result_type>(value);
@@ -70,8 +79,8 @@ namespace boost
{
template <class Traits, class T, class CharT>
class lcast_put_unsigned: boost::noncopyable {
typedef BOOST_DEDUCED_TYPENAME Traits::int_type int_type;
BOOST_DEDUCED_TYPENAME boost::conditional<
typedef typename Traits::int_type int_type;
typename std::conditional<
(sizeof(unsigned) > sizeof(T))
, unsigned
, T
@@ -81,12 +90,12 @@ namespace boost
int_type const m_zero;
public:
lcast_put_unsigned(const T n_param, CharT* finish) BOOST_NOEXCEPT
lcast_put_unsigned(const T n_param, CharT* finish) noexcept
: m_value(n_param), m_finish(finish)
, m_czero(lcast_char_constants<CharT>::zero), m_zero(Traits::to_int_type(m_czero))
{
#ifndef BOOST_NO_LIMITS_COMPILE_TIME_CONSTANTS
BOOST_STATIC_ASSERT(!std::numeric_limits<T>::is_signed);
static_assert(!std::numeric_limits<T>::is_signed, "");
#endif
}
@@ -108,7 +117,7 @@ namespace boost
#ifndef BOOST_NO_LIMITS_COMPILE_TIME_CONSTANTS
// Check that ulimited group is unreachable:
BOOST_STATIC_ASSERT(std::numeric_limits<T>::digits10 < CHAR_MAX);
static_assert(std::numeric_limits<T>::digits10 < CHAR_MAX, "");
#endif
CharT const thousands_sep = np.thousands_sep();
std::string::size_type group = 0; // current group number
@@ -138,7 +147,7 @@ namespace boost
}
private:
inline bool main_convert_iteration() BOOST_NOEXCEPT {
inline bool main_convert_iteration() noexcept {
--m_finish;
int_type const digit = static_cast<int_type>(m_value % 10U);
Traits::assign(*m_finish, Traits::to_char_type(m_zero + digit));
@@ -146,7 +155,7 @@ namespace boost
return !!m_value; // suppressing warnings
}
inline CharT* main_convert_loop() BOOST_NOEXCEPT {
inline CharT* main_convert_loop() noexcept {
while (main_convert_iteration());
return m_finish;
}
@@ -164,18 +173,18 @@ namespace boost
const CharT* m_end;
public:
lcast_ret_unsigned(T& value, const CharT* const begin, const CharT* end) BOOST_NOEXCEPT
lcast_ret_unsigned(T& value, const CharT* const begin, const CharT* end) noexcept
: m_multiplier_overflowed(false), m_multiplier(1), m_value(value), m_begin(begin), m_end(end)
{
#ifndef BOOST_NO_LIMITS_COMPILE_TIME_CONSTANTS
BOOST_STATIC_ASSERT(!std::numeric_limits<T>::is_signed);
static_assert(!std::numeric_limits<T>::is_signed, "");
// GCC when used with flag -std=c++0x may not have std::numeric_limits
// specializations for __int128 and unsigned __int128 types.
// Try compilation with -std=gnu++0x or -std=gnu++11.
//
// http://gcc.gnu.org/bugzilla/show_bug.cgi?id=40856
BOOST_STATIC_ASSERT_MSG(std::numeric_limits<T>::is_specialized,
static_assert(std::numeric_limits<T>::is_specialized,
"std::numeric_limits are not specialized for integral type passed to boost::lexical_cast"
);
#endif
@@ -252,7 +261,10 @@ namespace boost
private:
// Iteration that does not care about grouping/separators and assumes that all
// input characters are digits
inline bool main_convert_iteration() BOOST_NOEXCEPT {
#if defined(__clang__) && (__clang_major__ > 3 || __clang_minor__ > 6)
__attribute__((no_sanitize("unsigned-integer-overflow")))
#endif
inline bool main_convert_iteration() noexcept {
CharT const czero = lcast_char_constants<CharT>::zero;
T const maxv = (std::numeric_limits<T>::max)();
@@ -277,7 +289,7 @@ namespace boost
return true;
}
bool main_convert_loop() BOOST_NOEXCEPT {
bool main_convert_loop() noexcept {
for ( ; m_end >= m_begin; --m_end) {
if (!main_convert_iteration()) {
return false;
@@ -290,5 +302,7 @@ namespace boost
}
} // namespace boost
#endif // #if !defined(BOOST_USE_MODULES) || defined(BOOST_LEXICAL_CAST_INTERFACE_UNIT)
#endif // BOOST_LEXICAL_CAST_DETAIL_LCAST_UNSIGNED_CONVERTERS_HPP
@@ -0,0 +1,81 @@
// Copyright Peter Dimov, 2025.
// Copyright Romain Geissler, 2025.
//
// Distributed under the Boost Software License, Version 1.0. (See
// accompanying file LICENSE_1_0.txt or copy at
// http://www.boost.org/LICENSE_1_0.txt)
#ifndef BOOST_LEXICAL_CAST_DETAIL_TYPE_TRAITS_HPP
#define BOOST_LEXICAL_CAST_DETAIL_TYPE_TRAITS_HPP
#include <boost/config.hpp>
#ifdef BOOST_HAS_PRAGMA_ONCE
# pragma once
#endif
#include <type_traits>
namespace boost { namespace detail { namespace lcast {
// libstdc++ from gcc <= 15 doesn't provide support for __int128 in the standard traits,
// so define them explicitly.
// This was fixed with gcc >= 16, so we may eventually remove this workaround and use
// directly the standard type_traits.
template<class T> struct is_integral: public std::is_integral<T>
{
};
template<class T> struct is_signed: public std::is_signed<T>
{
};
template<class T> struct is_unsigned: public std::is_unsigned<T>
{
};
template<class T> struct make_unsigned: public std::make_unsigned<T>
{
};
#if defined(__SIZEOF_INT128__)
template<> struct is_integral<__int128_t>: public std::true_type
{
};
template<> struct is_integral<__uint128_t>: public std::true_type
{
};
template<> struct is_signed<__int128_t>: public std::true_type
{
};
template<> struct is_signed<__uint128_t>: public std::false_type
{
};
template<> struct is_unsigned<__int128_t>: public std::false_type
{
};
template<> struct is_unsigned<__uint128_t>: public std::true_type
{
};
template<> struct make_unsigned<__int128_t>
{
typedef __uint128_t type;
};
template<> struct make_unsigned<__uint128_t>
{
typedef __uint128_t type;
};
#endif
}}} // namespace boost::detail::lcast
#endif // BOOST_LEXICAL_CAST_DETAIL_TYPE_TRAITS_HPP
@@ -1,6 +1,6 @@
// Copyright Kevlin Henney, 2000-2005.
// Copyright Alexander Nasonov, 2006-2010.
// Copyright Antony Polukhin, 2011-2021.
// Copyright Antony Polukhin, 2011-2026.
//
// Distributed under the Boost Software License, Version 1.0. (See
// accompanying file LICENSE_1_0.txt or copy at
@@ -18,26 +18,32 @@
#ifndef BOOST_LEXICAL_CAST_DETAIL_WIDEST_CHAR_HPP
#define BOOST_LEXICAL_CAST_DETAIL_WIDEST_CHAR_HPP
#include <boost/lexical_cast/detail/config.hpp>
#if !defined(BOOST_USE_MODULES) || defined(BOOST_LEXICAL_CAST_INTERFACE_UNIT)
#ifndef BOOST_LEXICAL_CAST_INTERFACE_UNIT
#include <boost/config.hpp>
#ifdef BOOST_HAS_PRAGMA_ONCE
# pragma once
#endif
#include <type_traits>
#include <boost/type_traits/conditional.hpp>
#endif // #ifndef BOOST_LEXICAL_CAST_INTERFACE_UNIT
namespace boost { namespace detail {
template <typename TargetChar, typename SourceChar>
struct widest_char {
typedef BOOST_DEDUCED_TYPENAME boost::conditional<
(sizeof(TargetChar) > sizeof(SourceChar))
, TargetChar
, SourceChar
>::type type;
};
template <typename TargetChar, typename SourceChar>
using widest_char = std::conditional<
(sizeof(TargetChar) > sizeof(SourceChar))
, TargetChar
, SourceChar
>;
}} // namespace boost::detail
#endif // #if !defined(BOOST_USE_MODULES) || defined(BOOST_LEXICAL_CAST_INTERFACE_UNIT)
#endif // BOOST_LEXICAL_CAST_DETAIL_WIDEST_CHAR_HPP
@@ -1,6 +1,6 @@
// Copyright Kevlin Henney, 2000-2005.
// Copyright Alexander Nasonov, 2006-2010.
// Copyright Antony Polukhin, 2011-2021.
// Copyright Antony Polukhin, 2011-2026.
//
// Distributed under the Boost Software License, Version 1.0. (See
// accompanying file LICENSE_1_0.txt or copy at
@@ -18,185 +18,58 @@
#ifndef BOOST_LEXICAL_CAST_TRY_LEXICAL_CONVERT_HPP
#define BOOST_LEXICAL_CAST_TRY_LEXICAL_CONVERT_HPP
#include <boost/lexical_cast/detail/config.hpp>
#if !defined(BOOST_USE_MODULES) || defined(BOOST_LEXICAL_CAST_INTERFACE_UNIT)
#ifndef BOOST_LEXICAL_CAST_INTERFACE_UNIT
#include <boost/config.hpp>
#ifdef BOOST_HAS_PRAGMA_ONCE
# pragma once
#endif
#if defined(__clang__) || (defined(__GNUC__) && \
!(defined(__INTEL_COMPILER) || defined(__ICL) || defined(__ICC) || defined(__ECC)) && \
(__GNUC__ > 4 || (__GNUC__ == 4 && __GNUC_MINOR__ >= 6)))
#pragma GCC diagnostic push
#pragma GCC diagnostic ignored "-Wuninitialized"
#pragma GCC diagnostic ignored "-Wsign-conversion"
#include <type_traits>
#endif
#include <string>
#include <boost/type_traits/is_integral.hpp>
#include <boost/type_traits/type_identity.hpp>
#include <boost/type_traits/conditional.hpp>
#include <boost/type_traits/is_same.hpp>
#include <boost/type_traits/is_arithmetic.hpp>
#include <boost/lexical_cast/detail/buffer_view.hpp>
#include <boost/lexical_cast/detail/is_character.hpp>
#include <boost/lexical_cast/detail/converter_numeric.hpp>
#include <boost/lexical_cast/detail/converter_lexical.hpp>
#include <boost/range/iterator_range_core.hpp>
#include <boost/container/container_fwd.hpp>
namespace boost {
namespace detail
{
template<typename T>
struct is_stdstring
: boost::false_type
{};
template<typename CharT, typename Traits, typename Alloc>
struct is_stdstring< std::basic_string<CharT, Traits, Alloc> >
: boost::true_type
{};
// Sun Studio has problem with partial specialization of templates differing only in namespace.
// We workaround that by making `is_booststring` trait, instead of specializing `is_stdstring` for `boost::container::basic_string`.
template<typename T>
struct is_booststring
: boost::false_type
{};
template<typename CharT, typename Traits, typename Alloc>
struct is_booststring< boost::container::basic_string<CharT, Traits, Alloc> >
: boost::true_type
{};
template<typename Target, typename Source>
struct is_arithmetic_and_not_xchars
{
typedef boost::integral_constant<
bool,
!(boost::detail::is_character<Target>::value) &&
!(boost::detail::is_character<Source>::value) &&
boost::is_arithmetic<Source>::value &&
boost::is_arithmetic<Target>::value
> type;
BOOST_STATIC_CONSTANT(bool, value = (
type::value
));
};
/*
* is_xchar_to_xchar<Target, Source>::value is true,
* Target and Souce are char types of the same size 1 (char, signed char, unsigned char).
*/
template<typename Target, typename Source>
struct is_xchar_to_xchar
{
typedef boost::integral_constant<
bool,
sizeof(Source) == sizeof(Target) &&
sizeof(Source) == sizeof(char) &&
boost::detail::is_character<Target>::value &&
boost::detail::is_character<Source>::value
> type;
BOOST_STATIC_CONSTANT(bool, value = (
type::value
));
};
template<typename Target, typename Source>
struct is_char_array_to_stdstring
: boost::false_type
{};
template<typename CharT, typename Traits, typename Alloc>
struct is_char_array_to_stdstring< std::basic_string<CharT, Traits, Alloc>, CharT* >
: boost::true_type
{};
template<typename CharT, typename Traits, typename Alloc>
struct is_char_array_to_stdstring< std::basic_string<CharT, Traits, Alloc>, const CharT* >
: boost::true_type
{};
// Sun Studio has problem with partial specialization of templates differing only in namespace.
// We workaround that by making `is_char_array_to_booststring` trait, instead of specializing `is_char_array_to_stdstring` for `boost::container::basic_string`.
template<typename Target, typename Source>
struct is_char_array_to_booststring
: boost::false_type
{};
template<typename CharT, typename Traits, typename Alloc>
struct is_char_array_to_booststring< boost::container::basic_string<CharT, Traits, Alloc>, CharT* >
: boost::true_type
{};
template<typename CharT, typename Traits, typename Alloc>
struct is_char_array_to_booststring< boost::container::basic_string<CharT, Traits, Alloc>, const CharT* >
: boost::true_type
{};
template <typename Target, typename Source>
struct copy_converter_impl
{
// MSVC fail to forward an array (DevDiv#555157 "SILENT BAD CODEGEN triggered by perfect forwarding",
// fixed in 2013 RTM).
#if !defined(BOOST_NO_CXX11_RVALUE_REFERENCES) && (!defined(BOOST_MSVC) || BOOST_MSVC >= 1800)
template <class T>
static inline bool try_convert(T&& arg, Target& result) {
result = static_cast<T&&>(arg); // eqaul to `result = std::forward<T>(arg);`
return true;
}
#else
static inline bool try_convert(const Source& arg, Target& result) {
result = arg;
return true;
}
#endif
};
using is_arithmetic_and_not_xchars = std::integral_constant<
bool,
!(boost::detail::is_character<Target>::value) &&
!(boost::detail::is_character<Source>::value) &&
std::is_arithmetic<Source>::value &&
std::is_arithmetic<Target>::value
>;
}
namespace conversion { namespace detail {
BOOST_LEXICAL_CAST_BEGIN_MODULE_EXPORT
template <typename Target, typename Source>
inline bool try_lexical_convert(const Source& arg, Target& result)
{
typedef BOOST_DEDUCED_TYPENAME boost::detail::array_to_pointer_decay<Source>::type src;
static_assert(
!std::is_volatile<Source>::value,
"Boost.LexicalCast does not support volatile input");
typedef boost::integral_constant<
bool,
boost::detail::is_xchar_to_xchar<Target, src >::value ||
boost::detail::is_char_array_to_stdstring<Target, src >::value ||
boost::detail::is_char_array_to_booststring<Target, src >::value ||
(
boost::is_same<Target, src >::value &&
(boost::detail::is_stdstring<Target >::value || boost::detail::is_booststring<Target >::value)
) ||
(
boost::is_same<Target, src >::value &&
boost::detail::is_character<Target >::value
)
> shall_we_copy_t;
typedef typename boost::detail::array_to_pointer_decay<Source>::type src;
typedef boost::detail::is_arithmetic_and_not_xchars<Target, src >
shall_we_copy_with_dynamic_check_t;
// We do evaluate second `if_` lazily to avoid unnecessary instantiations
// of `shall_we_copy_with_dynamic_check_t` and improve compilation times.
typedef BOOST_DEDUCED_TYPENAME boost::conditional<
shall_we_copy_t::value,
boost::type_identity<boost::detail::copy_converter_impl<Target, src > >,
boost::conditional<
shall_we_copy_with_dynamic_check_t::value,
boost::detail::dynamic_num_converter_impl<Target, src >,
boost::detail::lexical_converter_impl<Target, src >
>
>::type caster_type_lazy;
typedef BOOST_DEDUCED_TYPENAME caster_type_lazy::type caster_type;
typedef typename std::conditional<
shall_we_copy_with_dynamic_check_t::value,
boost::detail::dynamic_num_converter_impl<Target, src >,
boost::detail::lexical_converter_impl<Target, src >
>::type caster_type;
return caster_type::try_convert(arg, result);
}
@@ -204,29 +77,29 @@ namespace boost {
template <typename Target, typename CharacterT>
inline bool try_lexical_convert(const CharacterT* chars, std::size_t count, Target& result)
{
BOOST_STATIC_ASSERT_MSG(
static_assert(
boost::detail::is_character<CharacterT>::value,
"This overload of try_lexical_convert is meant to be used only with arrays of characters."
);
return ::boost::conversion::detail::try_lexical_convert(
::boost::iterator_range<const CharacterT*>(chars, chars + count), result
::boost::conversion::detail::make_buffer_view(chars, chars + count),
result
);
}
BOOST_LEXICAL_CAST_END_MODULE_EXPORT
}} // namespace conversion::detail
namespace conversion {
BOOST_LEXICAL_CAST_BEGIN_MODULE_EXPORT
// ADL barrier
using ::boost::conversion::detail::try_lexical_convert;
BOOST_LEXICAL_CAST_END_MODULE_EXPORT
}
} // namespace boost
#if defined(__clang__) || (defined(__GNUC__) && \
!(defined(__INTEL_COMPILER) || defined(__ICL) || defined(__ICC) || defined(__ECC)) && \
(__GNUC__ > 4 || (__GNUC__ == 4 && __GNUC_MINOR__ >= 6)))
#pragma GCC diagnostic pop
#endif
#endif // #if !defined(BOOST_USE_MODULES) || defined(BOOST_LEXICAL_CAST_INTERFACE_UNIT)
#endif // BOOST_LEXICAL_CAST_TRY_LEXICAL_CONVERT_HPP
+1 -1
View File
@@ -12,5 +12,5 @@
"maintainers": [
"Antony Polukhin <antoshkka -at- gmail.com>"
],
"cxxstd": "03"
"cxxstd": "11"
}
+57
View File
@@ -0,0 +1,57 @@
// Copyright (c) 2016-2025 Antony Polukhin
//
// Distributed under the Boost Software License, Version 1.0. (See accompanying
// file LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt)
// To compile manually use a command like the folowing:
// clang++ -I ../include -std=c++20 --precompile -x c++-module boost_lexical_cast.cppm
module;
#include <boost/assert.hpp>
#include <boost/config.hpp>
#include <boost/config/workaround.hpp>
#include <boost/container/container_fwd.hpp>
#include <boost/core/cmath.hpp>
#include <boost/core/noncopyable.hpp>
#include <boost/core/snprintf.hpp>
#include <boost/limits.hpp>
#include <boost/throw_exception.hpp>
#include <boost/detail/basic_pointerbuf.hpp>
#ifndef BOOST_LEXICAL_CAST_USE_STD_MODULE
#include <array>
#include <climits>
#include <cstddef>
#include <cstdio>
#include <cstring>
#ifndef BOOST_NO_CWCHAR
# include <cwchar>
#endif
#include <exception>
#include <iosfwd>
#include <istream>
#ifndef BOOST_NO_STD_LOCALE
# include <locale>
#endif
#include <sstream>
#include <string>
#include <string_view>
#include <typeinfo>
#include <type_traits>
#endif
#define BOOST_LEXICAL_CAST_INTERFACE_UNIT
export module boost.lexical_cast;
#ifdef BOOST_LEXICAL_CAST_USE_STD_MODULE
import std;
#endif
#ifdef __clang__
# pragma clang diagnostic ignored "-Winclude-angled-in-module-purview"
#endif
#include <boost/lexical_cast.hpp>
+16
View File
@@ -0,0 +1,16 @@
// Copyright (c) 2024-2025 Antony Polukhin
//
// Distributed under the Boost Software License, Version 1.0. (See accompanying
// file LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt)
// To compile manually use a command like the following:
// clang++ -std=c++20 -fmodule-file=lexical_cast.pcm lexical_cast.pcm usage_sample.cpp
//[lexical_cast_module_example
import boost.lexical_cast;
int main() {
return boost::lexical_cast<int>("0");
}
//]
+1 -1
View File
@@ -1,5 +1,5 @@
#==============================================================================
# Copyright (c) Antony Polukhin, 2012-2021.
# Copyright Antony Polukhin, 2012-2026.
#
# Distributed under the Boost Software License, Version 1.0. (See accompanying
# file LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt)
+27 -3
View File
@@ -1,4 +1,4 @@
// (C) Copyright Antony Polukhin, 2012-2021.
// (C) Copyright Antony Polukhin, 2012-2026.
// Use, modification and distribution are subject to the
// Boost Software License, Version 1.0. (See accompanying file
// LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt)
@@ -14,10 +14,15 @@
#include <boost/lexical_cast.hpp>
#include <boost/chrono.hpp>
#include <fstream>
#include <cstring>
#include <string_view>
#include <type_traits>
#include <boost/array.hpp>
#include <boost/chrono.hpp>
#include <boost/container/string.hpp>
#include <boost/range/iterator_range.hpp>
// File to output data
std::fstream fout;
@@ -91,6 +96,12 @@ struct structure_sprintf {
sprintf(buffer, conv, in_val.c_str());
OutT out_val(buffer);
}
template <class OutT, class BufferT>
static inline void test(BufferT* buffer, std::string_view in_val, const char* const conv) {
sprintf(buffer, conv, in_val.data()); // in_val is zero terminated in this program
OutT out_val(buffer);
}
};
struct structure_sscanf {
@@ -117,6 +128,12 @@ struct structure_sscanf {
OutT out_val;
sscanf(in_val.begin(), conv, &out_val);
}
template <class OutT, class BufferT>
static inline void test(BufferT* /*buffer*/, std::string_view in_val, const char* const conv) {
OutT out_val;
sscanf(in_val.data(), conv, &out_val); // in_val is zero terminated in this program
}
};
struct structure_fake {
@@ -226,7 +243,7 @@ static inline void perf_test_impl(const FromT& in_val, const char* const conv) {
lexical_cast_time.count(),
ss_constr_time.count(),
ss_noconstr_time.count(),
boost::is_same<SprintfT, structure_fake>::value ? fake_test_value : printf_time.count()
std::is_same<SprintfT, structure_fake>::value ? fake_test_value : printf_time.count()
);
}
@@ -312,6 +329,12 @@ struct to_array_50 {
}
};
struct to_string_view {
std::string_view operator()(const char* const c) const {
return std::string_view{c};
}
};
int main(int argc, char** argv) {
BOOST_ASSERT(argc >= 2);
std::string output_path(argv[1]);
@@ -354,6 +377,7 @@ int main(int argc, char** argv) {
string_like_test_set<to_uchar_conv>("unsigned char*");
string_like_test_set<to_schar_conv>("signed char*");
string_like_test_set<to_iterator_range>("iterator_range<char*>");
string_like_test_set<to_string_view>("std::string_view");
string_like_test_set<to_array_50>("array<char, 50>");
perf_test<int, structure_fake>("int->int", 100, "");
+84
View File
@@ -0,0 +1,84 @@
# Copyright Antony Polukhin, 2021-2026.
#
# Distributed under the Boost Software License, Version 1.0.
# See accompanying file LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt
if(NOT TARGET tests)
add_custom_target(tests)
endif()
function(boost_lexical_cast_add_test_impl test_name test_file libs)
add_executable(${test_name} ${test_file})
target_link_libraries(${test_name} PRIVATE ${libs})
add_test(NAME ${test_name} COMMAND ${test_name})
add_dependencies(tests ${test_name})
endfunction()
function(boost_lexical_cast_add_test name libs)
set(test_name lexical_cast_${name})
set(test_file ${name}.cpp)
boost_lexical_cast_add_test_impl(${test_name} ${test_file} "Boost::lexical_cast;${libs}")
endfunction()
boost_lexical_cast_add_test(lexical_cast_test Boost::type_traits)
boost_lexical_cast_add_test(loopback_test "")
boost_lexical_cast_add_test(abstract_test "")
boost_lexical_cast_add_test(noncopyable_test "")
boost_lexical_cast_add_test(vc8_bug_test "")
boost_lexical_cast_add_test(implicit_convert "")
boost_lexical_cast_add_test(wchars_test "")
boost_lexical_cast_add_test(float_types_test "")
if(NOT MSVC)
# Make sure that LexicalCast works the same way as some of the C++ Standard Libraries
boost_lexical_cast_add_test_impl(lexical_cast_float_types_non_opt float_types_test.cpp Boost::lexical_cast)
target_compile_definitions(lexical_cast_float_types_non_opt PRIVATE BOOST_LEXICAL_CAST_DETAIL_TEST_ON_OLD)
endif()
boost_lexical_cast_add_test(inf_nan_test "")
boost_lexical_cast_add_test(containers_test "")
boost_lexical_cast_add_test(empty_input_test Boost::range)
boost_lexical_cast_add_test(pointers_test "")
if(MSVC)
add_executable(lexical_cast_typedefed_wchar_test_compile typedefed_wchar_test.cpp)
target_compile_options(lexical_cast_typedefed_wchar_test_compile PRIVATE "/Zc:wchar_t-")
boost_lexical_cast_add_test(typedefed_wchar_test_runtime "")
target_compile_options(lexical_cast_typedefed_wchar_test_runtime PRIVATE "/Zc:wchar_t-")
endif()
boost_lexical_cast_add_test(no_locale_test Boost::range)
target_compile_definitions(lexical_cast_no_locale_test
PRIVATE
BOOST_NO_STD_LOCALE
BOOST_LEXICAL_CAST_ASSUME_C_LOCALE
)
boost_lexical_cast_add_test_impl(lexical_cast_no_exceptions_test no_exceptions_test.cpp "Boost::container;Boost::range")
target_include_directories(lexical_cast_no_exceptions_test PRIVATE ../include)
target_compile_definitions(lexical_cast_no_exceptions_test
PRIVATE
_HAS_EXCEPTIONS=0 # MSVC stdlib
_STLP_NO_EXCEPTIONS # STLPort
)
if(MSVC)
target_compile_definitions(lexical_cast_no_exceptions_test PRIVATE BOOST_NO_EXCEPTIONS)
endif()
target_compile_options(lexical_cast_no_exceptions_test PRIVATE "-fno-exceptions")
boost_lexical_cast_add_test(iterator_range_test Boost::range)
boost_lexical_cast_add_test(string_view_test Boost::utility)
boost_lexical_cast_add_test(arrays_test Boost::array)
boost_lexical_cast_add_test(integral_types_test Boost::type_traits)
boost_lexical_cast_add_test(stream_detection_test "")
boost_lexical_cast_add_test(stream_traits_test "Boost::array;Boost::range;Boost::utility")
boost_lexical_cast_add_test(filesystem_test Boost::filesystem)
boost_lexical_cast_add_test(try_lexical_convert "")
file(GLOB EXAMPLE_FILES "../example/*.cpp")
foreach (testsourcefile ${EXAMPLE_FILES})
get_filename_component(testname ${testsourcefile} NAME_WE)
boost_lexical_cast_add_test_impl(lexical_cast_example_${testname} ${testsourcefile} "Boost::variant;Boost::date_time")
endforeach()
+24 -9
View File
@@ -1,16 +1,20 @@
# Copyright (C) 2001-2003 Douglas Gregor
# Copyright (C) 2011-2021 Antony Polukhin
# Copyright Antony Polukhin, 2011-2026.
#
# Distributed under the Boost Software License, Version 1.0. (See accompanying
# file LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt)
#
require-b2 5.0.1 ;
import-search /boost/config/checks ;
import config : requires ;
import testing ;
import feature ;
project
: requirements
<library>/boost/test//boost_unit_test_framework
<library>/boost/lexical_cast//boost_lexical_cast
[ requires cxx11_rvalue_references cxx11_static_assert cxx11_template_aliases ]
<link>static
<toolset>gcc-4.7:<cxxflags>-ftrapv
<toolset>gcc-4.6:<cxxflags>-ftrapv
@@ -27,6 +31,10 @@ project
# Not a lexical_cast related warning: boost/mpl/aux_/preprocessed/gcc/greater_equal.hpp:78:1: warning: empty macro arguments are a C99 feature [-Wc99-extensions]
# boost/mpl/iter_fold.hpp:45:1: warning: empty macro arguments are a C99 feature [-Wc99-extensions]
<toolset>clang:<cxxflags>-Wno-c99-extensions
<library>/boost/array//boost_array
<library>/boost/range//boost_range
<library>/boost/utility//boost_utility
;
# Thanks to Steven Watanabe for helping with <nowchar> feature
@@ -40,21 +48,30 @@ test-suite conversion
[ run abstract_test.cpp ]
[ run noncopyable_test.cpp ]
[ run vc8_bug_test.cpp ]
[ run implicit_convert.cpp ]
[ run wchars_test.cpp ]
[ run float_types_test.cpp ]
# Make sure that LexicalCast works the same way as some of the C++ Standard Libraries
[ run float_types_test.cpp : : : <define>BOOST_LEXICAL_CAST_DETAIL_TEST_ON_OLD
<toolset>msvc:<build>no # could have outdated behavior in some border cases
<target-os>darwin:<build>no # may have outdated behavior in some border cases
: float_types_non_opt
]
[ run inf_nan_test.cpp ]
[ run containers_test.cpp : : : <toolset>gcc:<cxxflags>-Wno-long-long <toolset>clang:<cxxflags>-Wno-long-long ]
[ run empty_input_test.cpp ]
[ run pointers_test.cpp ]
[ compile typedefed_wchar_test.cpp : <toolset>msvc:<nowchar>on ]
[ compile typedefed_wchar_test.cpp : <toolset>msvc:<nowchar>on <library>/boost/date_time//boost_date_time ]
[ run typedefed_wchar_test_runtime.cpp : : : <toolset>msvc:<nowchar>on <toolset>msvc,<stdlib>stlport:<build>no ]
[ run no_locale_test.cpp : : : <define>BOOST_NO_STD_LOCALE <define>BOOST_LEXICAL_CAST_ASSUME_C_LOCALE ]
[ run no_exceptions_test.cpp : : : <exception-handling>off
<define>_HAS_EXCEPTIONS=0 # MSVC stdlib
<define>_STLP_NO_EXCEPTIONS # STLPort
-<library>/boost/test//boost_unit_test_framework # uses lightweight_test
]
[ run iterator_range_test.cpp ]
[ run string_view_test.cpp ]
[ run arrays_test.cpp : : :
<toolset>msvc:<cxxflags>/wd4512 # assignment operator could not be generated
]
@@ -62,17 +79,15 @@ test-suite conversion
[ run stream_detection_test.cpp ]
[ run stream_traits_test.cpp ]
[ compile-fail to_pointer_test.cpp ]
[ run filesystem_test.cpp ../../filesystem/build//boost_filesystem/<link>static ]
[ compile-fail from_volatile.cpp ]
[ run filesystem_test.cpp /boost/filesystem//boost_filesystem : : : <toolset>gcc,<target-os>windows:<build>no ] # Boost.Atomic no longer supports MinGW
[ run try_lexical_convert.cpp ]
[ run no_comp_time_prcision.cpp : : :
<toolset>msvc:<cxxflags>/wd4127 # conditional expression is constant
]
;
# Assuring that examples compile and run. Adding sources from `example` directory to the `conversion` test suite.
for local p in [ glob ../example/*.cpp ]
{
conversion += [ run $(p) ] ;
conversion += [ run $(p) : : : <library>/boost/variant//boost_variant <library>/boost/date_time//boost_date_time ] ;
}
+9 -22
View File
@@ -3,6 +3,7 @@
// See http://www.boost.org for most recent version, including documentation.
//
// Copyright Sergey Shandar 2005, Alexander Nasonov, 2007.
// Copyright Antony Polukhin, 2023-2026.
//
// Distributed under the Boost
// Software License, Version 1.0. (See accompanying file
@@ -11,29 +12,9 @@
// Test abstract class. Bug 1358600:
// http://sf.net/tracker/?func=detail&aid=1358600&group_id=7586&atid=107586
#include <boost/config.hpp>
#if defined(__INTEL_COMPILER)
#pragma warning(disable: 193 383 488 981 1418 1419)
#elif defined(BOOST_MSVC)
#pragma warning(disable: 4097 4100 4121 4127 4146 4244 4245 4511 4512 4701 4800)
#endif
#include <boost/core/lightweight_test.hpp>
#include <boost/lexical_cast.hpp>
#include <boost/test/unit_test.hpp>
using namespace boost;
void test_abstract();
unit_test::test_suite *init_unit_test_suite(int, char *[])
{
unit_test::test_suite *suite =
BOOST_TEST_SUITE("lexical_cast unit test");
suite->add(BOOST_TEST_CASE(&test_abstract));
return suite;
}
class A
{
@@ -57,6 +38,12 @@ std::ostream &operator<<(std::ostream &O, const A &a)
void test_abstract()
{
const A &a = B();
BOOST_CHECK(boost::lexical_cast<std::string>(a) == "B");
BOOST_TEST(boost::lexical_cast<std::string>(a) == "B");
}
int main()
{
test_abstract();
return boost::report_errors();
}
+1 -1
View File
@@ -2,7 +2,7 @@
# subject to the Boost Software License, Version 1.0. (See accompanying
# file LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt)
#
# Copyright Antony Polukhin 2016-2021.
# Copyright Antony Polukhin, 2016-2026.
#
# See https://svn.boost.org/trac/boost/wiki/TravisCoverals for description of this file
+89 -93
View File
@@ -2,23 +2,17 @@
//
// See http://www.boost.org for most recent version, including documentation.
//
// Copyright Antony Polukhin, 2012-2021.
// Copyright Antony Polukhin, 2012-2026.
//
// Distributed under the Boost
// Software License, Version 1.0. (See accompanying file
// LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt).
#include <boost/lexical_cast.hpp>
#include <boost/test/unit_test.hpp>
#include <boost/core/lightweight_test.hpp>
#include <boost/array.hpp>
void testing_boost_array_output_conversion();
void testing_std_array_output_conversion();
void testing_boost_array_input_conversion();
void testing_std_array_input_conversion();
#include <boost/lexical_cast.hpp>
using namespace boost;
@@ -30,19 +24,6 @@ using namespace boost;
#define BOOST_LC_RUNU32
#endif
boost::unit_test::test_suite *init_unit_test_suite(int, char *[])
{
unit_test::test_suite *suite =
BOOST_TEST_SUITE("Testing boost::lexical_cast with boost::array and std::array");
suite->add(BOOST_TEST_CASE(testing_boost_array_output_conversion));
suite->add(BOOST_TEST_CASE(testing_std_array_output_conversion));
suite->add(BOOST_TEST_CASE(testing_boost_array_input_conversion));
suite->add(BOOST_TEST_CASE(testing_std_array_input_conversion));
return suite;
}
template <template <class, std::size_t> class ArrayT, class T>
static void testing_template_array_output_on_spec_value(T val)
{
@@ -58,44 +39,44 @@ static void testing_template_array_output_on_spec_value(T val)
{
arr_type res1 = lexical_cast<arr_type>(val);
BOOST_CHECK_EQUAL(&res1[0], ethalon);
BOOST_TEST_EQ(&res1[0], ethalon);
const arr_type res2 = lexical_cast<arr_type>(val);
BOOST_CHECK_EQUAL(&res2[0], ethalon);
BOOST_CHECK_THROW(lexical_cast<short_arr_type>(val), boost::bad_lexical_cast);
BOOST_TEST_EQ(&res2[0], ethalon);
BOOST_TEST_THROWS(lexical_cast<short_arr_type>(val), boost::bad_lexical_cast);
}
{
uarr_type res1 = lexical_cast<uarr_type>(val);
BOOST_CHECK_EQUAL(reinterpret_cast<char*>(&res1[0]), ethalon);
BOOST_TEST_EQ(reinterpret_cast<char*>(&res1[0]), ethalon);
const uarr_type res2 = lexical_cast<uarr_type>(val);
BOOST_CHECK_EQUAL(reinterpret_cast<const char*>(&res2[0]), ethalon);
BOOST_CHECK_THROW(lexical_cast<ushort_arr_type>(val), boost::bad_lexical_cast);
BOOST_TEST_EQ(reinterpret_cast<const char*>(&res2[0]), ethalon);
BOOST_TEST_THROWS(lexical_cast<ushort_arr_type>(val), boost::bad_lexical_cast);
}
{
sarr_type res1 = lexical_cast<sarr_type>(val);
BOOST_CHECK_EQUAL(reinterpret_cast<char*>(&res1[0]), ethalon);
BOOST_TEST_EQ(reinterpret_cast<char*>(&res1[0]), ethalon);
const sarr_type res2 = lexical_cast<sarr_type>(val);
BOOST_CHECK_EQUAL(reinterpret_cast<const char*>(&res2[0]), ethalon);
BOOST_CHECK_THROW(lexical_cast<sshort_arr_type>(val), boost::bad_lexical_cast);
BOOST_TEST_EQ(reinterpret_cast<const char*>(&res2[0]), ethalon);
BOOST_TEST_THROWS(lexical_cast<sshort_arr_type>(val), boost::bad_lexical_cast);
}
#if !defined(BOOST_NO_STRINGSTREAM) && !defined(BOOST_NO_STD_WSTRING)
#if !defined(BOOST_NO_STRINGSTREAM) && !defined(BOOST_NO_STD_WSTRING) && !defined(_LIBCPP_VERSION)
typedef ArrayT<wchar_t, 300> warr_type;
typedef ArrayT<wchar_t, 3> wshort_arr_type;
std::wstring wethalon(L"100");
{
warr_type res = lexical_cast<warr_type>(val);
BOOST_CHECK(&res[0] == wethalon);
BOOST_TEST(&res[0] == wethalon);
}
{
const warr_type res = lexical_cast<warr_type>(val);
BOOST_CHECK(&res[0] == wethalon);
BOOST_TEST(&res[0] == wethalon);
}
BOOST_CHECK_THROW(lexical_cast<wshort_arr_type>(val), boost::bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<wshort_arr_type>(val), boost::bad_lexical_cast);
#endif
@@ -106,15 +87,15 @@ static void testing_template_array_output_on_spec_value(T val)
{
u16arr_type res = lexical_cast<u16arr_type>(val);
BOOST_CHECK(&res[0] == u16ethalon);
BOOST_TEST(&res[0] == u16ethalon);
}
{
const u16arr_type res = lexical_cast<u16arr_type>(val);
BOOST_CHECK(&res[0] == u16ethalon);
BOOST_TEST(&res[0] == u16ethalon);
}
BOOST_CHECK_THROW(lexical_cast<u16short_arr_type>(val), boost::bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<u16short_arr_type>(val), boost::bad_lexical_cast);
#endif
#ifdef BOOST_LC_RUNU32
@@ -124,15 +105,15 @@ static void testing_template_array_output_on_spec_value(T val)
{
u32arr_type res = lexical_cast<u32arr_type>(val);
BOOST_CHECK(&res[0] == u32ethalon);
BOOST_TEST(&res[0] == u32ethalon);
}
{
const u32arr_type res = lexical_cast<u32arr_type>(val);
BOOST_CHECK(&res[0] == u32ethalon);
BOOST_TEST(&res[0] == u32ethalon);
}
BOOST_CHECK_THROW(lexical_cast<u32short_arr_type>(val), boost::bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<u32short_arr_type>(val), boost::bad_lexical_cast);
#endif
}
@@ -153,48 +134,48 @@ static void testing_template_array_output_on_char_value()
{
arr_type res1 = lexical_cast<arr_type>(val);
BOOST_CHECK_EQUAL(&res1[0], ethalon);
BOOST_TEST_EQ(&res1[0], ethalon);
const arr_type res2 = lexical_cast<arr_type>(val);
BOOST_CHECK_EQUAL(&res2[0], ethalon);
BOOST_CHECK_THROW(lexical_cast<short_arr_type>(val), boost::bad_lexical_cast);
BOOST_TEST_EQ(&res2[0], ethalon);
BOOST_TEST_THROWS(lexical_cast<short_arr_type>(val), boost::bad_lexical_cast);
}
{
uarr_type res1 = lexical_cast<uarr_type>(val);
BOOST_CHECK_EQUAL(reinterpret_cast<char*>(&res1[0]), ethalon);
BOOST_TEST_EQ(reinterpret_cast<char*>(&res1[0]), ethalon);
const uarr_type res2 = lexical_cast<uarr_type>(val);
BOOST_CHECK_EQUAL(reinterpret_cast<const char*>(&res2[0]), ethalon);
BOOST_CHECK_THROW(lexical_cast<ushort_arr_type>(val), boost::bad_lexical_cast);
BOOST_TEST_EQ(reinterpret_cast<const char*>(&res2[0]), ethalon);
BOOST_TEST_THROWS(lexical_cast<ushort_arr_type>(val), boost::bad_lexical_cast);
}
{
sarr_type res1 = lexical_cast<sarr_type>(val);
BOOST_CHECK_EQUAL(reinterpret_cast<char*>(&res1[0]), ethalon);
BOOST_TEST_EQ(reinterpret_cast<char*>(&res1[0]), ethalon);
const sarr_type res2 = lexical_cast<sarr_type>(val);
BOOST_CHECK_EQUAL(reinterpret_cast<const char*>(&res2[0]), ethalon);
BOOST_CHECK_THROW(lexical_cast<sshort_arr_type>(val), boost::bad_lexical_cast);
BOOST_TEST_EQ(reinterpret_cast<const char*>(&res2[0]), ethalon);
BOOST_TEST_THROWS(lexical_cast<sshort_arr_type>(val), boost::bad_lexical_cast);
}
#if !defined(BOOST_NO_STRINGSTREAM) && !defined(BOOST_NO_STD_WSTRING)
#if !defined(BOOST_NO_STRINGSTREAM) && !defined(BOOST_NO_STD_WSTRING) && !defined(_LIBCPP_VERSION)
typedef ArrayT<wchar_t, 4> warr_type;
typedef ArrayT<wchar_t, 3> wshort_arr_type;
std::wstring wethalon(L"100");
{
warr_type res = lexical_cast<warr_type>(val);
BOOST_CHECK(&res[0] == wethalon);
BOOST_TEST(&res[0] == wethalon);
warr_type res3 = lexical_cast<warr_type>(wethalon);
BOOST_CHECK(&res3[0] == wethalon);
BOOST_TEST(&res3[0] == wethalon);
}
{
const warr_type res = lexical_cast<warr_type>(val);
BOOST_CHECK(&res[0] == wethalon);
BOOST_TEST(&res[0] == wethalon);
const warr_type res3 = lexical_cast<warr_type>(wethalon);
BOOST_CHECK(&res3[0] == wethalon);
BOOST_TEST(&res3[0] == wethalon);
}
BOOST_CHECK_THROW(lexical_cast<wshort_arr_type>(val), boost::bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<wshort_arr_type>(val), boost::bad_lexical_cast);
#endif
@@ -206,24 +187,24 @@ static void testing_template_array_output_on_char_value()
{
#ifdef BOOST_STL_SUPPORTS_NEW_UNICODE_LOCALES
u16arr_type res = lexical_cast<u16arr_type>(val);
BOOST_CHECK(&res[0] == u16ethalon);
BOOST_TEST(&res[0] == u16ethalon);
#endif
u16arr_type res3 = lexical_cast<u16arr_type>(u16ethalon);
BOOST_CHECK(&res3[0] == u16ethalon);
BOOST_TEST(&res3[0] == u16ethalon);
}
{
#ifdef BOOST_STL_SUPPORTS_NEW_UNICODE_LOCALES
const u16arr_type res = lexical_cast<u16arr_type>(val);
BOOST_CHECK(&res[0] == u16ethalon);
BOOST_TEST(&res[0] == u16ethalon);
#endif
const u16arr_type res3 = lexical_cast<u16arr_type>(u16ethalon);
BOOST_CHECK(&res3[0] == u16ethalon);
BOOST_TEST(&res3[0] == u16ethalon);
}
// Some compillers may throw std::bad_alloc here
BOOST_CHECK_THROW(lexical_cast<u16short_arr_type>(val), std::exception);
BOOST_TEST_THROWS(lexical_cast<u16short_arr_type>(val), std::exception);
#endif
#ifdef BOOST_LC_RUNU32
@@ -234,34 +215,36 @@ static void testing_template_array_output_on_char_value()
{
#ifdef BOOST_STL_SUPPORTS_NEW_UNICODE_LOCALES
u32arr_type res = lexical_cast<u32arr_type>(val);
BOOST_CHECK(&res[0] == u32ethalon);
BOOST_TEST(&res[0] == u32ethalon);
#endif
u32arr_type res3 = lexical_cast<u32arr_type>(u32ethalon);
BOOST_CHECK(&res3[0] == u32ethalon);
BOOST_TEST(&res3[0] == u32ethalon);
}
{
#ifdef BOOST_STL_SUPPORTS_NEW_UNICODE_LOCALES
const u32arr_type res = lexical_cast<u32arr_type>(val);
BOOST_CHECK(&res[0] == u32ethalon);
BOOST_TEST(&res[0] == u32ethalon);
#endif
const u32arr_type res3 = lexical_cast<u32arr_type>(u32ethalon);
BOOST_CHECK(&res3[0] == u32ethalon);
BOOST_TEST(&res3[0] == u32ethalon);
}
// Some compillers may throw std::bad_alloc here
BOOST_CHECK_THROW(lexical_cast<u32short_arr_type>(val), std::exception);
BOOST_TEST_THROWS(lexical_cast<u32short_arr_type>(val), std::exception);
#endif
}
void testing_boost_array_output_conversion()
{
#ifndef _LIBCPP_VERSION
testing_template_array_output_on_char_value<boost::array>();
testing_template_array_output_on_spec_value<boost::array>(100);
testing_template_array_output_on_spec_value<boost::array>(static_cast<short>(100));
testing_template_array_output_on_spec_value<boost::array>(static_cast<unsigned short>(100));
testing_template_array_output_on_spec_value<boost::array>(static_cast<unsigned int>(100));
#endif
}
void testing_std_array_output_conversion()
@@ -274,7 +257,7 @@ void testing_std_array_output_conversion()
testing_template_array_output_on_spec_value<std::array>(static_cast<unsigned int>(100));
#endif
BOOST_CHECK(true);
BOOST_TEST(true);
}
template <template <class, std::size_t> class ArrayT>
@@ -282,88 +265,91 @@ static void testing_generic_array_input_conversion()
{
{
ArrayT<char, 4> var_zero_terminated = {{ '1', '0', '0', '\0'}};
BOOST_CHECK_EQUAL(lexical_cast<std::string>(var_zero_terminated), "100");
BOOST_CHECK_EQUAL(lexical_cast<int>(var_zero_terminated), 100);
BOOST_TEST_EQ(lexical_cast<std::string>(var_zero_terminated), "100");
BOOST_TEST_EQ(lexical_cast<int>(var_zero_terminated), 100);
ArrayT<char, 3> var_none_terminated = {{ '1', '0', '0'}};
BOOST_CHECK_EQUAL(lexical_cast<std::string>(var_none_terminated), "100");
BOOST_CHECK_EQUAL(lexical_cast<short>(var_none_terminated), static_cast<short>(100));
BOOST_TEST_EQ(lexical_cast<std::string>(var_none_terminated), "100");
BOOST_TEST_EQ(lexical_cast<short>(var_none_terminated), static_cast<short>(100));
ArrayT<const char, 4> var_zero_terminated_const_char = {{ '1', '0', '0', '\0'}};
BOOST_CHECK_EQUAL(lexical_cast<std::string>(var_zero_terminated_const_char), "100");
BOOST_TEST_EQ(lexical_cast<std::string>(var_zero_terminated_const_char), "100");
ArrayT<const char, 3> var_none_terminated_const_char = {{ '1', '0', '0'}};
BOOST_CHECK_EQUAL(lexical_cast<std::string>(var_none_terminated_const_char), "100");
BOOST_TEST_EQ(lexical_cast<std::string>(var_none_terminated_const_char), "100");
const ArrayT<char, 4> var_zero_terminated_const_var = {{ '1', '0', '0', '\0'}};
BOOST_CHECK_EQUAL(lexical_cast<std::string>(var_zero_terminated_const_var), "100");
BOOST_TEST_EQ(lexical_cast<std::string>(var_zero_terminated_const_var), "100");
const ArrayT<char, 3> var_none_terminated_const_var = {{ '1', '0', '0'}};
BOOST_CHECK_EQUAL(lexical_cast<std::string>(var_none_terminated_const_var), "100");
BOOST_TEST_EQ(lexical_cast<std::string>(var_none_terminated_const_var), "100");
const ArrayT<const char, 4> var_zero_terminated_const_var_const_char = {{ '1', '0', '0', '\0'}};
BOOST_CHECK_EQUAL(lexical_cast<std::string>(var_zero_terminated_const_var_const_char), "100");
BOOST_TEST_EQ(lexical_cast<std::string>(var_zero_terminated_const_var_const_char), "100");
const ArrayT<const char, 3> var_none_terminated_const_var_const_char = {{ '1', '0', '0'}};
BOOST_CHECK_EQUAL(lexical_cast<std::string>(var_none_terminated_const_var_const_char), "100");
BOOST_CHECK_EQUAL(lexical_cast<int>(var_none_terminated_const_var_const_char), 100);
BOOST_TEST_EQ(lexical_cast<std::string>(var_none_terminated_const_var_const_char), "100");
BOOST_TEST_EQ(lexical_cast<int>(var_none_terminated_const_var_const_char), 100);
}
{
const ArrayT<const unsigned char, 4> var_zero_terminated_const_var_const_char = {{ '1', '0', '0', '\0'}};
BOOST_CHECK_EQUAL(lexical_cast<std::string>(var_zero_terminated_const_var_const_char), "100");
BOOST_TEST_EQ(lexical_cast<std::string>(var_zero_terminated_const_var_const_char), "100");
const ArrayT<const unsigned char, 3> var_none_terminated_const_var_const_char = {{ '1', '0', '0'}};
BOOST_CHECK_EQUAL(lexical_cast<std::string>(var_none_terminated_const_var_const_char), "100");
BOOST_TEST_EQ(lexical_cast<std::string>(var_none_terminated_const_var_const_char), "100");
}
{
const ArrayT<const signed char, 4> var_zero_terminated_const_var_const_char = {{ '1', '0', '0', '\0'}};
BOOST_CHECK_EQUAL(lexical_cast<std::string>(var_zero_terminated_const_var_const_char), "100");
BOOST_TEST_EQ(lexical_cast<std::string>(var_zero_terminated_const_var_const_char), "100");
const ArrayT<const signed char, 3> var_none_terminated_const_var_const_char = {{ '1', '0', '0'}};
BOOST_CHECK_EQUAL(lexical_cast<std::string>(var_none_terminated_const_var_const_char), "100");
BOOST_CHECK_EQUAL(lexical_cast<unsigned int>(var_none_terminated_const_var_const_char), 100u);
BOOST_TEST_EQ(lexical_cast<std::string>(var_none_terminated_const_var_const_char), "100");
BOOST_TEST_EQ(lexical_cast<unsigned int>(var_none_terminated_const_var_const_char), 100u);
}
#if !defined(BOOST_NO_STRINGSTREAM) && !defined(BOOST_NO_STD_WSTRING)
{
const ArrayT<const wchar_t, 4> var_zero_terminated_const_var_const_char = {{ L'1', L'0', L'0', L'\0'}};
BOOST_CHECK(lexical_cast<std::wstring>(var_zero_terminated_const_var_const_char) == L"100");
BOOST_TEST(lexical_cast<std::wstring>(var_zero_terminated_const_var_const_char) == L"100");
const ArrayT<const wchar_t, 3> var_none_terminated_const_var_const_char = {{ L'1', L'0', L'0'}};
BOOST_CHECK(lexical_cast<std::wstring>(var_none_terminated_const_var_const_char) == L"100");
BOOST_CHECK_EQUAL(lexical_cast<int>(var_none_terminated_const_var_const_char), 100);
BOOST_TEST(lexical_cast<std::wstring>(var_none_terminated_const_var_const_char) == L"100");
BOOST_TEST_EQ(lexical_cast<int>(var_none_terminated_const_var_const_char), 100);
}
#endif
#ifdef BOOST_LC_RUNU16
{
const ArrayT<const char16_t, 4> var_zero_terminated_const_var_const_char = {{ u'1', u'0', u'0', u'\0'}};
BOOST_CHECK(lexical_cast<std::u16string>(var_zero_terminated_const_var_const_char) == u"100");
BOOST_CHECK_EQUAL(lexical_cast<unsigned short>(var_zero_terminated_const_var_const_char), static_cast<unsigned short>(100));
BOOST_TEST(lexical_cast<std::u16string>(var_zero_terminated_const_var_const_char) == u"100");
BOOST_TEST_EQ(lexical_cast<unsigned short>(var_zero_terminated_const_var_const_char), static_cast<unsigned short>(100));
const ArrayT<const char16_t, 3> var_none_terminated_const_var_const_char = {{ u'1', u'0', u'0'}};
BOOST_CHECK(lexical_cast<std::u16string>(var_none_terminated_const_var_const_char) == u"100");
BOOST_TEST(lexical_cast<std::u16string>(var_none_terminated_const_var_const_char) == u"100");
}
#endif
#ifdef BOOST_LC_RUNU32
{
const ArrayT<const char32_t, 4> var_zero_terminated_const_var_const_char = {{ U'1', U'0', U'0', U'\0'}};
BOOST_CHECK(lexical_cast<std::u32string>(var_zero_terminated_const_var_const_char) == U"100");
BOOST_TEST(lexical_cast<std::u32string>(var_zero_terminated_const_var_const_char) == U"100");
const ArrayT<const char32_t, 3> var_none_terminated_const_var_const_char = {{ U'1', U'0', U'0'}};
BOOST_CHECK(lexical_cast<std::u32string>(var_none_terminated_const_var_const_char) == U"100");
BOOST_CHECK_EQUAL(lexical_cast<int>(var_none_terminated_const_var_const_char), 100);
BOOST_TEST(lexical_cast<std::u32string>(var_none_terminated_const_var_const_char) == U"100");
BOOST_TEST_EQ(lexical_cast<int>(var_none_terminated_const_var_const_char), 100);
}
#endif
}
void testing_boost_array_input_conversion()
{
#ifndef _LIBCPP_VERSION
testing_generic_array_input_conversion<boost::array>();
#endif
BOOST_TEST(true);
}
void testing_std_array_input_conversion()
@@ -372,6 +358,16 @@ void testing_std_array_input_conversion()
testing_generic_array_input_conversion<std::array>();
#endif
BOOST_CHECK(true);
BOOST_TEST(true);
}
int main()
{
testing_boost_array_output_conversion();
testing_std_array_output_conversion();
testing_boost_array_input_conversion();
testing_std_array_input_conversion();
return boost::report_errors();
}
+80
View File
@@ -0,0 +1,80 @@
# Copyright (c) 2016-2025 Antony Polukhin
# Copyright (c) 2025-2026 Fedor Osetrov
# Distributed under the Boost Software License, Version 1.0.
# See accompanying file LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt
cmake_minimum_required(VERSION 3.5...4.0)
project(lexical_cast_subdir_test LANGUAGES CXX)
set(deps
# Library dependencies
config
container
core
throw_exception
# Test dependencies
algorithm
array
align
assert
atomic
bind
compat
concept_check
container_hash
conversion
date_time
describe
detail
exception
filesystem
function
function_types
functional
fusion
integer
intrusive
io
iterator
move
mp11
mpl
numeric/conversion
optional
predef
preprocessor
range
regex
scope
smart_ptr
static_assert
system
test
tokenizer
tuple
type_index
type_traits
typeof
unordered
utility
variant
variant2
winapi
)
foreach(dep IN LISTS deps)
add_subdirectory(../../../${dep} boostorg/${dep})
endforeach()
enable_testing()
add_subdirectory(../../ boostorg/lexical_cast)
if (BOOST_USE_MODULES)
add_executable(boost_lexical_cast_module_usage ../modules/usage_sample.cpp)
target_link_libraries(boost_lexical_cast_module_usage PRIVATE Boost::lexical_cast)
add_test(NAME boost_lexical_cast_module_usage COMMAND boost_lexical_cast_module_usage)
endif()
+23 -29
View File
@@ -2,42 +2,27 @@
//
// See http://www.boost.org for most recent version, including documentation.
//
// Copyright Antony Polukhin, 2011-2021.
// Copyright Antony Polukhin, 2011-2026.
//
// Distributed under the Boost
// Software License, Version 1.0. (See accompanying file
// LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt).
#include <boost/lexical_cast.hpp>
#include <boost/test/unit_test.hpp>
#include <boost/core/lightweight_test.hpp>
#include <boost/container/string.hpp>
void testing_boost_containers_basic_string();
void testing_boost_containers_string_std_string();
void testing_boost_containers_string_widening();
#include <boost/lexical_cast.hpp>
using namespace boost;
boost::unit_test::test_suite *init_unit_test_suite(int, char *[])
{
unit_test::test_suite *suite =
BOOST_TEST_SUITE("Testing boost::lexical_cast with boost::container::string");
suite->add(BOOST_TEST_CASE(testing_boost_containers_basic_string));
suite->add(BOOST_TEST_CASE(testing_boost_containers_string_std_string));
suite->add(BOOST_TEST_CASE(testing_boost_containers_string_widening));
return suite;
}
void testing_boost_containers_basic_string()
{
BOOST_CHECK("100" == lexical_cast<boost::container::string>("100"));
BOOST_CHECK(L"100" == lexical_cast<boost::container::wstring>(L"100"));
BOOST_TEST("100" == lexical_cast<boost::container::string>("100"));
BOOST_TEST(L"100" == lexical_cast<boost::container::wstring>(L"100"));
BOOST_CHECK("100" == lexical_cast<boost::container::string>(100));
BOOST_TEST("100" == lexical_cast<boost::container::string>(100));
boost::container::string str("1000");
BOOST_CHECK(1000 == lexical_cast<int>(str));
BOOST_TEST(1000 == lexical_cast<int>(str));
}
#if defined(BOOST_NO_STRINGSTREAM) || defined(BOOST_NO_STD_WSTRING)
@@ -48,15 +33,15 @@ void testing_boost_containers_string_std_string()
{
std::string std_str("std_str");
boost::container::string boost_str("boost_str");
BOOST_CHECK(boost::lexical_cast<std::string>(boost_str) == "boost_str");
BOOST_CHECK(boost::lexical_cast<boost::container::string>(std_str) == "std_str");
BOOST_TEST(boost::lexical_cast<std::string>(boost_str) == "boost_str");
BOOST_TEST(boost::lexical_cast<boost::container::string>(std_str) == "std_str");
#ifndef BOOST_LCAST_NO_WCHAR_T
std::wstring std_wstr(L"std_wstr");
boost::container::wstring boost_wstr(L"boost_wstr");
BOOST_CHECK(boost::lexical_cast<std::wstring>(boost_wstr) == L"boost_wstr");
BOOST_CHECK(boost::lexical_cast<boost::container::wstring>(std_wstr) == L"std_wstr");
BOOST_TEST(boost::lexical_cast<std::wstring>(boost_wstr) == L"boost_wstr");
BOOST_TEST(boost::lexical_cast<boost::container::wstring>(std_wstr) == L"std_wstr");
#endif
@@ -68,16 +53,25 @@ void testing_boost_containers_string_widening()
#ifndef BOOST_LCAST_NO_WCHAR_T
const wchar_t wchar_array[] = L"Test string";
BOOST_CHECK(boost::lexical_cast<boost::container::wstring>(char_array) == wchar_array);
BOOST_TEST(boost::lexical_cast<boost::container::wstring>(char_array) == wchar_array);
#endif
#if !defined(BOOST_NO_CXX11_CHAR16_T) && !defined(BOOST_NO_CXX11_UNICODE_LITERALS) && defined(BOOST_STL_SUPPORTS_NEW_UNICODE_LOCALES)
const char16_t char16_array[] = u"Test string";
BOOST_CHECK(boost::lexical_cast<boost::container::basic_string<char16_t> >(char_array) == char16_array);
BOOST_TEST(boost::lexical_cast<boost::container::basic_string<char16_t> >(char_array) == char16_array);
#endif
#if !defined(BOOST_NO_CXX11_CHAR32_T) && !defined(BOOST_NO_CXX11_UNICODE_LITERALS) && defined(BOOST_STL_SUPPORTS_NEW_UNICODE_LOCALES)
const char32_t char32_array[] = U"Test string";
BOOST_CHECK(boost::lexical_cast<boost::container::basic_string<char32_t> >(char_array) == char32_array);
BOOST_TEST(boost::lexical_cast<boost::container::basic_string<char32_t> >(char_array) == char32_array);
#endif
}
int main()
{
testing_boost_containers_basic_string();
testing_boost_containers_string_std_string();
testing_boost_containers_string_widening();
return boost::report_errors();
}
+49 -54
View File
@@ -2,23 +2,19 @@
//
// See http://www.boost.org for most recent version, including documentation.
//
// Copyright Antony Polukhin, 2011-2021.
// Copyright Antony Polukhin, 2011-2026.
//
// Distributed under the Boost
// Software License, Version 1.0. (See accompanying file
// LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt).
#include <boost/config.hpp>
#include <boost/range/iterator_range.hpp>
#if defined(__INTEL_COMPILER)
#pragma warning(disable: 193 383 488 981 1418 1419)
#elif defined(BOOST_MSVC)
#pragma warning(disable: 4097 4100 4121 4127 4146 4244 4245 4511 4512 4701 4800)
#endif
#include <boost/core/lightweight_test.hpp>
#include <vector>
#include <boost/lexical_cast.hpp>
#include <boost/test/unit_test.hpp>
#include <boost/range/iterator_range.hpp>
#include "escape_struct.hpp"
@@ -31,20 +27,20 @@ using namespace boost;
template <class T>
void do_test_on_empty_input(T& v)
{
BOOST_CHECK_THROW(lexical_cast<int>(v), bad_lexical_cast);
BOOST_CHECK_THROW(lexical_cast<float>(v), bad_lexical_cast);
BOOST_CHECK_THROW(lexical_cast<double>(v), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<int>(v), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<float>(v), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<double>(v), bad_lexical_cast);
#ifndef BOOST_MATH_NO_LONG_DOUBLE_MATH_FUNCTIONS
BOOST_CHECK_THROW(lexical_cast<long double>(v), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<long double>(v), bad_lexical_cast);
#endif
BOOST_CHECK_THROW(lexical_cast<unsigned int>(v), bad_lexical_cast);
BOOST_CHECK_THROW(lexical_cast<unsigned short>(v), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<unsigned int>(v), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<unsigned short>(v), bad_lexical_cast);
#if defined(BOOST_HAS_LONG_LONG)
BOOST_CHECK_THROW(lexical_cast<boost::ulong_long_type>(v), bad_lexical_cast);
BOOST_CHECK_THROW(lexical_cast<boost::long_long_type>(v), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<boost::ulong_long_type>(v), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<boost::long_long_type>(v), bad_lexical_cast);
#elif defined(BOOST_HAS_MS_INT64)
BOOST_CHECK_THROW(lexical_cast<unsigned __int64>(v), bad_lexical_cast);
BOOST_CHECK_THROW(lexical_cast<__int64>(v), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<unsigned __int64>(v), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<__int64>(v), bad_lexical_cast);
#endif
}
@@ -53,50 +49,50 @@ void test_empty_iterator_range()
boost::iterator_range<char*> v;
do_test_on_empty_input(v);
BOOST_CHECK_EQUAL(lexical_cast<std::string>(v), std::string());
BOOST_CHECK_THROW(lexical_cast<char>(v), bad_lexical_cast);
BOOST_CHECK_THROW(lexical_cast<unsigned char>(v), bad_lexical_cast);
BOOST_CHECK_THROW(lexical_cast<signed char>(v), bad_lexical_cast);
BOOST_TEST_EQ(lexical_cast<std::string>(v), std::string());
BOOST_TEST_THROWS(lexical_cast<char>(v), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<unsigned char>(v), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<signed char>(v), bad_lexical_cast);
boost::iterator_range<const char*> cv;
do_test_on_empty_input(cv);
BOOST_CHECK_EQUAL(lexical_cast<std::string>(cv), std::string());
BOOST_CHECK_THROW(lexical_cast<char>(cv), bad_lexical_cast);
BOOST_CHECK_THROW(lexical_cast<unsigned char>(cv), bad_lexical_cast);
BOOST_CHECK_THROW(lexical_cast<signed char>(cv), bad_lexical_cast);
BOOST_TEST_EQ(lexical_cast<std::string>(cv), std::string());
BOOST_TEST_THROWS(lexical_cast<char>(cv), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<unsigned char>(cv), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<signed char>(cv), bad_lexical_cast);
const boost::iterator_range<const char*> ccv;
do_test_on_empty_input(ccv);
BOOST_CHECK_EQUAL(lexical_cast<std::string>(ccv), std::string());
BOOST_CHECK_THROW(lexical_cast<char>(ccv), bad_lexical_cast);
BOOST_CHECK_THROW(lexical_cast<unsigned char>(ccv), bad_lexical_cast);
BOOST_CHECK_THROW(lexical_cast<signed char>(ccv), bad_lexical_cast);
BOOST_TEST_EQ(lexical_cast<std::string>(ccv), std::string());
BOOST_TEST_THROWS(lexical_cast<char>(ccv), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<unsigned char>(ccv), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<signed char>(ccv), bad_lexical_cast);
}
void test_empty_string()
{
std::string v;
do_test_on_empty_input(v);
BOOST_CHECK_THROW(lexical_cast<char>(v), bad_lexical_cast);
BOOST_CHECK_THROW(lexical_cast<unsigned char>(v), bad_lexical_cast);
BOOST_CHECK_THROW(lexical_cast<signed char>(v), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<char>(v), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<unsigned char>(v), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<signed char>(v), bad_lexical_cast);
#ifndef BOOST_LCAST_NO_WCHAR_T
std::wstring vw;
do_test_on_empty_input(vw);
BOOST_CHECK_THROW(lexical_cast<wchar_t>(vw), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<wchar_t>(vw), bad_lexical_cast);
#endif
// Currently, no compiler and STL library fully support char16_t and char32_t
//#ifndef BOOST_NO_CXX11_CHAR16_T
// std::basic_string<char16_t> v16w;
// do_test_on_empty_input(v16w);
// BOOST_CHECK_THROW(lexical_cast<char16_t>(v16w), bad_lexical_cast);
// BOOST_TEST_THROWS(lexical_cast<char16_t>(v16w), bad_lexical_cast);
//#endif
//#ifndef BOOST_NO_CXX11_CHAR32_T
// std::basic_string<char32_t> v32w;
// do_test_on_empty_input(v32w);
// BOOST_CHECK_THROW(lexical_cast<char32_t>(v32w), bad_lexical_cast);
// BOOST_TEST_THROWS(lexical_cast<char32_t>(v32w), bad_lexical_cast);
//#endif
}
@@ -104,9 +100,9 @@ void test_empty_user_class()
{
EscapeStruct v("");
do_test_on_empty_input(v);
BOOST_CHECK_THROW(lexical_cast<char>(v), bad_lexical_cast);
BOOST_CHECK_THROW(lexical_cast<unsigned char>(v), bad_lexical_cast);
BOOST_CHECK_THROW(lexical_cast<signed char>(v), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<char>(v), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<unsigned char>(v), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<signed char>(v), bad_lexical_cast);
}
namespace std {
@@ -114,7 +110,7 @@ inline std::ostream & operator<<(std::ostream & out, const std::vector<long> & v
{
std::ostream_iterator<long> it(out);
std::copy(v.begin(), v.end(), it);
BOOST_CHECK(out);
BOOST_TEST(out);
return out;
}
}
@@ -123,9 +119,9 @@ void test_empty_vector()
{
std::vector<long> v;
do_test_on_empty_input(v);
BOOST_CHECK_THROW(lexical_cast<char>(v), bad_lexical_cast);
BOOST_CHECK_THROW(lexical_cast<unsigned char>(v), bad_lexical_cast);
BOOST_CHECK_THROW(lexical_cast<signed char>(v), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<char>(v), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<unsigned char>(v), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<signed char>(v), bad_lexical_cast);
}
@@ -138,18 +134,17 @@ struct my_string {
void test_empty_zero_terminated_string()
{
my_string st;
BOOST_CHECK_EQUAL(boost::lexical_cast<std::string>(st), std::string());;
BOOST_TEST_EQ(boost::lexical_cast<std::string>(st), std::string());;
}
unit_test::test_suite *init_unit_test_suite(int, char *[])
int main()
{
unit_test::test_suite *suite =
BOOST_TEST_SUITE("lexical_cast. Empty input unit test");
suite->add(BOOST_TEST_CASE(&test_empty_iterator_range));
suite->add(BOOST_TEST_CASE(&test_empty_string));
suite->add(BOOST_TEST_CASE(&test_empty_user_class));
suite->add(BOOST_TEST_CASE(&test_empty_vector));
suite->add(BOOST_TEST_CASE(&test_empty_zero_terminated_string));
test_empty_iterator_range();
test_empty_string();
test_empty_user_class();
test_empty_vector();
test_empty_zero_terminated_string();
return suite;
return boost::report_errors();
}
+1 -1
View File
@@ -1,6 +1,6 @@
// See http://www.boost.org for most recent version, including documentation.
//
// Copyright Antony Polukhin, 2020.
// Copyright Antony Polukhin, 2020-2026.
//
// Distributed under the Boost
// Software License, Version 1.0. (See accompanying file
+18 -25
View File
@@ -2,7 +2,7 @@
//
// See http://www.boost.org for most recent version, including documentation.
//
// Copyright Antony Polukhin, 2013-2021.
// Copyright Antony Polukhin, 2013-2026.
//
// Distributed under the Boost
// Software License, Version 1.0. (See accompanying file
@@ -10,58 +10,51 @@
//
// Test lexical_cast usage with long filesystem::path. Bug 7704.
#include <boost/config.hpp>
#include <boost/test/unit_test.hpp>
#include <boost/lexical_cast.hpp>
#include <boost/core/lightweight_test.hpp>
#include <boost/filesystem/path.hpp>
using namespace boost;
void test_filesystem();
unit_test::test_suite *init_unit_test_suite(int, char *[])
{
unit_test::test_suite *suite =
BOOST_TEST_SUITE("lexical_cast+filesystem unit test");
suite->add(BOOST_TEST_CASE(&test_filesystem));
return suite;
}
#include <boost/lexical_cast.hpp>
void test_filesystem()
{
boost::filesystem::path p;
std::string s1 = "aaaaaaaaaaaaaaaaaaaaaaa";
p = boost::lexical_cast<boost::filesystem::path>(s1);
BOOST_CHECK(!p.empty());
BOOST_CHECK_EQUAL(p, s1);
BOOST_TEST(!p.empty());
BOOST_TEST_EQ(p, s1);
p.clear();
const char ab[] = "aaaaaaaaaaaaaaaaaaaaaaabbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbb";
p = boost::lexical_cast<boost::filesystem::path>(ab);
BOOST_CHECK(!p.empty());
BOOST_CHECK_EQUAL(p, ab);
BOOST_TEST(!p.empty());
BOOST_TEST_EQ(p, ab);
// Tests for
// https://github.com/boostorg/lexical_cast/issues/25
const char quoted_path[] = "\"/home/my user\"";
p = boost::lexical_cast<boost::filesystem::path>(quoted_path);
BOOST_CHECK(!p.empty());
BOOST_TEST(!p.empty());
const char unquoted_path[] = "/home/my user";
BOOST_CHECK_EQUAL(p, boost::filesystem::path(unquoted_path));
BOOST_TEST_EQ(p, boost::filesystem::path(unquoted_path));
// Converting back to std::string gives the initial string
BOOST_CHECK_EQUAL(boost::lexical_cast<std::string>(p), quoted_path);
BOOST_TEST_EQ(boost::lexical_cast<std::string>(p), quoted_path);
try {
// Without quotes the path will have only `/home/my` in it.
// `user` remains in the stream, so an exception must be thrown.
p = boost::lexical_cast<boost::filesystem::path>(unquoted_path);
BOOST_CHECK(false);
BOOST_TEST(false);
} catch (const boost::bad_lexical_cast& ) {
// Exception is expected
}
}
int main()
{
test_filesystem();
return boost::report_errors();
}
+230 -149
View File
@@ -2,47 +2,44 @@
//
// See http://www.boost.org for most recent version, including documentation.
//
// Copyright Antony Polukhin, 2011-2021.
// Copyright Antony Polukhin, 2011-2026.
//
// Distributed under the Boost
// Software License, Version 1.0. (See accompanying file
// LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt).
#include <boost/config.hpp>
#if defined(__INTEL_COMPILER)
#pragma warning(disable: 193 383 488 981 1418 1419)
#elif defined(BOOST_MSVC)
#pragma warning(disable: 4097 4100 4121 4127 4146 4244 4245 4511 4512 4701 4800)
#endif
#include <boost/lexical_cast.hpp>
#include <sstream>
#include <type_traits>
#include <boost/cstdint.hpp>
#include <boost/test/unit_test.hpp>
#include <boost/test/tools/floating_point_comparison.hpp>
#include <boost/math/tools/config.hpp> // BOOST_MATH_NO_LONG_DOUBLE_MATH_FUNCTIONS
#include <boost/math/tools/precision.hpp>
#include <boost/core/lightweight_test.hpp>
void test_conversion_from_to_float();
void test_conversion_from_to_double();
void test_conversion_from_to_long_double();
#ifndef BOOST_LEXICAL_CAST_DETAIL_TEST_ON_OLD
#include <boost/lexical_cast/detail/type_traits.hpp>
#include <boost/lexical_cast.hpp>
#else
// Make sure that tests work the same way on non-optimized version
#include "lexical_cast_old.hpp"
#include <boost/lexical_cast/detail/type_traits.hpp>
#endif
#ifndef BOOST_TEST_CLOSE_FRACTION
// Naiive, but works for most tests in this file
#define BOOST_TEST_CLOSE_FRACTION(x, y, eps) \
BOOST_TEST(x - y + eps <= eps * 2); \
BOOST_TEST(y - x + eps <= eps * 2);
#endif
#if (defined(__CYGWIN__) || defined(__FreeBSD__) || defined(__NetBSD__) \
|| (defined(__hppa) && !defined(__OpenBSD__)) || (defined(__NO_LONG_DOUBLE_MATH) && (DBL_MANT_DIG != LDBL_MANT_DIG))) \
|| defined(__MINGW64__)
# define BOOST_LEXICAL_CAST_NO_LONG_DOUBLE_MATH_FUNCTIONS
#endif
using namespace boost;
unit_test::test_suite *init_unit_test_suite(int, char *[])
{
unit_test::test_suite *suite =
BOOST_TEST_SUITE("lexical_cast float types unit test");
suite->add(BOOST_TEST_CASE(&test_conversion_from_to_float));
suite->add(BOOST_TEST_CASE(&test_conversion_from_to_double));
suite->add(BOOST_TEST_CASE(&test_conversion_from_to_long_double));
return suite;
}
// Replace "-,999" with "-999".
template<class CharT>
std::basic_string<CharT> to_str_gcc_workaround(std::basic_string<CharT> str)
@@ -81,25 +78,25 @@ void test_conversion_from_to_float_for_locale()
numpunct const& np = BOOST_USE_FACET(numpunct, current_locale);
if ( !np.grouping().empty() )
{
BOOST_CHECK_THROW(
BOOST_TEST_THROWS(
lexical_cast<T>( std::string("100") + np.thousands_sep() + np.thousands_sep() + "0" )
, bad_lexical_cast);
BOOST_CHECK_THROW(lexical_cast<T>( std::string("100") + np.thousands_sep() ), bad_lexical_cast);
BOOST_CHECK_THROW(lexical_cast<T>( np.thousands_sep() + std::string("100") ), bad_lexical_cast);
BOOST_CHECK_THROW(lexical_cast<T>( std::string("1") + np.thousands_sep() + np.decimal_point() + "e10" ), bad_lexical_cast);
BOOST_CHECK_THROW(lexical_cast<T>( std::string("1e10") + np.thousands_sep() ), bad_lexical_cast);
BOOST_CHECK_THROW(lexical_cast<T>( std::string("1") + np.thousands_sep() + "e10" ), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<T>( std::string("100") + np.thousands_sep() ), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<T>( np.thousands_sep() + std::string("100") ), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<T>( std::string("1") + np.thousands_sep() + np.decimal_point() + "e10" ), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<T>( std::string("1e10") + np.thousands_sep() ), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<T>( std::string("1") + np.thousands_sep() + "e10" ), bad_lexical_cast);
BOOST_CHECK_CLOSE_FRACTION(lexical_cast<T>( to_str< char >(100000) ), 100000, (boost::math::tools::epsilon<T>()) );
BOOST_CHECK_CLOSE_FRACTION(lexical_cast<T>( to_str< char >(10000000u) ), 10000000u, (boost::math::tools::epsilon<T>()) );
BOOST_CHECK_CLOSE_FRACTION(lexical_cast<T>( to_str< char >(100) ), 100, (boost::math::tools::epsilon<T>()) );
BOOST_TEST_CLOSE_FRACTION(lexical_cast<T>( to_str< char >(100000) ), 100000, (std::numeric_limits<T>::epsilon()) );
BOOST_TEST_CLOSE_FRACTION(lexical_cast<T>( to_str< char >(10000000u) ), 10000000u, (std::numeric_limits<T>::epsilon()) );
BOOST_TEST_CLOSE_FRACTION(lexical_cast<T>( to_str< char >(100) ), 100, (std::numeric_limits<T>::epsilon()) );
#if !defined(BOOST_LCAST_NO_WCHAR_T) && !defined(BOOST_NO_INTRINSIC_WCHAR_T)
BOOST_CHECK_CLOSE_FRACTION(lexical_cast<T>( to_str< wchar_t >(100000) ), 100000, (boost::math::tools::epsilon<T>()) );
BOOST_CHECK_CLOSE_FRACTION(lexical_cast<T>( to_str< wchar_t >(10000000u) ), 10000000u, (boost::math::tools::epsilon<T>()) );
BOOST_CHECK_CLOSE_FRACTION(lexical_cast<T>( to_str< wchar_t >(100) ), 100, (boost::math::tools::epsilon<T>()) );
BOOST_TEST_CLOSE_FRACTION(lexical_cast<T>( to_str< wchar_t >(100000) ), 100000, (std::numeric_limits<T>::epsilon()) );
BOOST_TEST_CLOSE_FRACTION(lexical_cast<T>( to_str< wchar_t >(10000000u) ), 10000000u, (std::numeric_limits<T>::epsilon()) );
BOOST_TEST_CLOSE_FRACTION(lexical_cast<T>( to_str< wchar_t >(100) ), 100, (std::numeric_limits<T>::epsilon()) );
#endif
// Exception must not be thrown, when we are using no separators at all
BOOST_CHECK_CLOSE_FRACTION( lexical_cast<T>("30000"), static_cast<T>(30000), (boost::math::tools::epsilon<T>()) );
BOOST_TEST_CLOSE_FRACTION( lexical_cast<T>("30000"), static_cast<T>(30000), (std::numeric_limits<T>::epsilon()) );
}
}
@@ -113,18 +110,18 @@ void test_conversion_from_to_float_for_locale()
#ifndef BOOST_LCAST_NO_WCHAR_T
#define CHECK_CLOSE_ABS_DIFF(VAL,PREFIX) \
converted_val = lexical_cast<test_t>(#VAL); \
BOOST_CHECK_CLOSE_FRACTION( (static_cast<bool>(VAL ## L)? VAL ## L : boost::math::tools::epsilon<test_t>()), \
(converted_val ? converted_val : boost::math::tools::epsilon<test_t>()),\
boost::math::tools::epsilon<test_t>() \
BOOST_TEST_CLOSE_FRACTION( (static_cast<bool>(VAL ## L)? VAL ## L : std::numeric_limits<test_t>::epsilon()), \
(converted_val ? converted_val : std::numeric_limits<test_t>::epsilon()), \
std::numeric_limits<test_t>::epsilon() \
); \
BOOST_CHECK_EQUAL(converted_val, lexical_cast<test_t>(L## #VAL) );
BOOST_TEST_EQ(converted_val, lexical_cast<test_t>(L## #VAL) );
#else
#define CHECK_CLOSE_ABS_DIFF(VAL,TYPE) \
converted_val = lexical_cast<test_t>(#VAL); \
BOOST_CHECK_CLOSE_FRACTION( (static_cast<bool>(VAL ## L)? VAL ## L : boost::math::tools::epsilon<test_t>()), \
(converted_val ? converted_val : boost::math::tools::epsilon<test_t>()),\
boost::math::tools::epsilon<test_t>() \
BOOST_TEST_CLOSE_FRACTION( (static_cast<bool>(VAL ## L)? VAL ## L : std::numeric_limits<test_t>::epsilon()), \
(converted_val ? converted_val : std::numeric_limits<test_t>::epsilon()), \
std::numeric_limits<test_t>::epsilon() \
);
#endif
@@ -134,30 +131,30 @@ void test_converion_to_float_types()
typedef TestType test_t;
test_t converted_val;
BOOST_CHECK_CLOSE_FRACTION(1.0, lexical_cast<test_t>('1'), (boost::math::tools::epsilon<test_t>()));
BOOST_CHECK_EQUAL(0.0, lexical_cast<test_t>('0'));
BOOST_TEST_CLOSE_FRACTION(1.0, lexical_cast<test_t>('1'), (std::numeric_limits<test_t>::epsilon()));
BOOST_TEST_EQ(0.0, lexical_cast<test_t>('0'));
unsigned char const uc_one = '1';
unsigned char const uc_zero ='0';
BOOST_CHECK_CLOSE_FRACTION(1.0, lexical_cast<test_t>(uc_one), (boost::math::tools::epsilon<test_t>()));
BOOST_CHECK_EQUAL(0.0, lexical_cast<test_t>(uc_zero));
BOOST_TEST_CLOSE_FRACTION(1.0, lexical_cast<test_t>(uc_one), (std::numeric_limits<test_t>::epsilon()));
BOOST_TEST_EQ(0.0, lexical_cast<test_t>(uc_zero));
signed char const sc_one = '1';
signed char const sc_zero ='0';
BOOST_CHECK_CLOSE_FRACTION(1.0, lexical_cast<test_t>(sc_one), (boost::math::tools::epsilon<test_t>()));
BOOST_CHECK_EQUAL(0.0, lexical_cast<test_t>(sc_zero));
BOOST_TEST_CLOSE_FRACTION(1.0, lexical_cast<test_t>(sc_one), (std::numeric_limits<test_t>::epsilon()));
BOOST_TEST_EQ(0.0, lexical_cast<test_t>(sc_zero));
BOOST_CHECK_CLOSE_FRACTION(1e34L, lexical_cast<test_t>( "10000000000000000000000000000000000"), (boost::math::tools::epsilon<test_t>()) );
BOOST_TEST_CLOSE_FRACTION(1e34L, lexical_cast<test_t>( "10000000000000000000000000000000000"), (std::numeric_limits<test_t>::epsilon() * 1e34L) );
// VC failes the next test
// BOOST_CHECK_CLOSE_FRACTION(1e-35L, lexical_cast<test_t>("0.00000000000000000000000000000000001"), (boost::math::tools::epsilon<test_t>()) );
BOOST_CHECK_CLOSE_FRACTION(
// BOOST_TEST_CLOSE_FRACTION(1e-35L, lexical_cast<test_t>("0.00000000000000000000000000000000001"), (std::numeric_limits<test_t>::epsilon()) );
BOOST_TEST_CLOSE_FRACTION(
0.1111111111111111111111111111111111111111111111111111111111111111111111111L
, lexical_cast<test_t>("0.1111111111111111111111111111111111111111111111111111111111111111111111111")
, (boost::math::tools::epsilon<test_t>()) );
, (std::numeric_limits<test_t>::epsilon()) );
CHECK_CLOSE_ABS_DIFF(1,test_t);
BOOST_CHECK_EQUAL(0,lexical_cast<test_t>("0"));
BOOST_TEST_EQ(0,lexical_cast<test_t>("0"));
CHECK_CLOSE_ABS_DIFF(-1,test_t);
CHECK_CLOSE_ABS_DIFF(1.0, test_t);
@@ -244,45 +241,45 @@ void test_converion_to_float_types()
CHECK_CLOSE_ABS_DIFF(.34, test_t);
CHECK_CLOSE_ABS_DIFF(.34e10, test_t);
BOOST_CHECK_THROW(lexical_cast<test_t>("-1.e"), bad_lexical_cast);
BOOST_CHECK_THROW(lexical_cast<test_t>("-1.E"), bad_lexical_cast);
BOOST_CHECK_THROW(lexical_cast<test_t>("1.e"), bad_lexical_cast);
BOOST_CHECK_THROW(lexical_cast<test_t>("1.E"), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<test_t>("-1.e"), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<test_t>("-1.E"), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<test_t>("1.e"), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<test_t>("1.E"), bad_lexical_cast);
BOOST_CHECK_THROW(lexical_cast<test_t>("1.0e"), bad_lexical_cast);
BOOST_CHECK_THROW(lexical_cast<test_t>("1.0E"), bad_lexical_cast);
BOOST_CHECK_THROW(lexical_cast<test_t>("10E"), bad_lexical_cast);
BOOST_CHECK_THROW(lexical_cast<test_t>("10e"), bad_lexical_cast);
BOOST_CHECK_THROW(lexical_cast<test_t>("1.0e-"), bad_lexical_cast);
BOOST_CHECK_THROW(lexical_cast<test_t>("1.0E-"), bad_lexical_cast);
BOOST_CHECK_THROW(lexical_cast<test_t>("10E-"), bad_lexical_cast);
BOOST_CHECK_THROW(lexical_cast<test_t>("10e-"), bad_lexical_cast);
BOOST_CHECK_THROW(lexical_cast<test_t>("e1"), bad_lexical_cast);
BOOST_CHECK_THROW(lexical_cast<test_t>("e-1"), bad_lexical_cast);
BOOST_CHECK_THROW(lexical_cast<test_t>("e-"), bad_lexical_cast);
BOOST_CHECK_THROW(lexical_cast<test_t>(".e"), bad_lexical_cast);
BOOST_CHECK_THROW(lexical_cast<test_t>(".11111111111111111111111111111111111111111111111111111111111111111111ee"), bad_lexical_cast);
BOOST_CHECK_THROW(lexical_cast<test_t>(".11111111111111111111111111111111111111111111111111111111111111111111e-"), bad_lexical_cast);
BOOST_CHECK_THROW(lexical_cast<test_t>("."), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<test_t>("1.0e"), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<test_t>("1.0E"), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<test_t>("10E"), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<test_t>("10e"), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<test_t>("1.0e-"), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<test_t>("1.0E-"), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<test_t>("10E-"), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<test_t>("10e-"), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<test_t>("e1"), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<test_t>("e-1"), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<test_t>("e-"), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<test_t>(".e"), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<test_t>(".11111111111111111111111111111111111111111111111111111111111111111111ee"), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<test_t>(".11111111111111111111111111111111111111111111111111111111111111111111e-"), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<test_t>("."), bad_lexical_cast);
BOOST_CHECK_THROW(lexical_cast<test_t>("-B"), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<test_t>("-B"), bad_lexical_cast);
// Following two tests are not valid for C++11 compilers
//BOOST_CHECK_THROW(lexical_cast<test_t>("0xB"), bad_lexical_cast);
//BOOST_CHECK_THROW(lexical_cast<test_t>("0x0"), bad_lexical_cast);
//BOOST_TEST_THROWS(lexical_cast<test_t>("0xB"), bad_lexical_cast);
//BOOST_TEST_THROWS(lexical_cast<test_t>("0x0"), bad_lexical_cast);
BOOST_CHECK_THROW(lexical_cast<test_t>("--1.0"), bad_lexical_cast);
BOOST_CHECK_THROW(lexical_cast<test_t>("1.0e--1"), bad_lexical_cast);
BOOST_CHECK_THROW(lexical_cast<test_t>("1.0.0"), bad_lexical_cast);
BOOST_CHECK_THROW(lexical_cast<test_t>("1e1e1"), bad_lexical_cast);
BOOST_CHECK_THROW(lexical_cast<test_t>("1.0e-1e-1"), bad_lexical_cast);
BOOST_CHECK_THROW(lexical_cast<test_t>(" 1.0"), bad_lexical_cast);
BOOST_CHECK_THROW(lexical_cast<test_t>("1.0 "), bad_lexical_cast);
BOOST_CHECK_THROW(lexical_cast<test_t>(""), bad_lexical_cast);
BOOST_CHECK_THROW(lexical_cast<test_t>("-"), bad_lexical_cast);
BOOST_CHECK_THROW(lexical_cast<test_t>('\0'), bad_lexical_cast);
BOOST_CHECK_THROW(lexical_cast<test_t>('-'), bad_lexical_cast);
BOOST_CHECK_THROW(lexical_cast<test_t>('.'), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<test_t>("--1.0"), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<test_t>("1.0e--1"), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<test_t>("1.0.0"), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<test_t>("1e1e1"), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<test_t>("1.0e-1e-1"), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<test_t>(" 1.0"), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<test_t>("1.0 "), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<test_t>(""), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<test_t>("-"), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<test_t>('\0'), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<test_t>('-'), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<test_t>('.'), bad_lexical_cast);
}
template <class T>
@@ -291,58 +288,73 @@ void test_float_typess_for_overflows()
typedef T test_t;
test_t minvalue = (std::numeric_limits<test_t>::min)();
std::string s_min_value = lexical_cast<std::string>(minvalue);
BOOST_CHECK_CLOSE_FRACTION(minvalue, lexical_cast<test_t>(minvalue), (boost::math::tools::epsilon<test_t>()));
BOOST_CHECK_CLOSE_FRACTION(minvalue, lexical_cast<test_t>(s_min_value), (boost::math::tools::epsilon<test_t>() * 2));
BOOST_TEST_CLOSE_FRACTION(minvalue, lexical_cast<test_t>(minvalue), (std::numeric_limits<test_t>::epsilon()));
BOOST_TEST_CLOSE_FRACTION(minvalue, lexical_cast<test_t>(s_min_value), (std::numeric_limits<test_t>::epsilon() * 2));
test_t maxvalue = (std::numeric_limits<test_t>::max)();
std::string s_max_value = lexical_cast<std::string>(maxvalue);
BOOST_CHECK_CLOSE_FRACTION(maxvalue, lexical_cast<test_t>(maxvalue), (boost::math::tools::epsilon<test_t>()));
BOOST_CHECK_CLOSE_FRACTION(maxvalue, lexical_cast<test_t>(s_max_value), (boost::math::tools::epsilon<test_t>()));
BOOST_TEST_CLOSE_FRACTION(maxvalue, lexical_cast<test_t>(maxvalue), (std::numeric_limits<test_t>::epsilon()));
BOOST_TEST_CLOSE_FRACTION(maxvalue, lexical_cast<test_t>(s_max_value), (std::numeric_limits<test_t>::epsilon()));
#ifndef _LIBCPP_VERSION
// libc++ had a bug in implementation of stream conversions for values that must be represented as infinity.
// http://llvm.org/bugs/show_bug.cgi?id=15723#c4
BOOST_CHECK_THROW(lexical_cast<test_t>(s_max_value+"1"), bad_lexical_cast);
BOOST_CHECK_THROW(lexical_cast<test_t>(s_max_value+"9"), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<test_t>(s_max_value+"1"), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<test_t>(s_max_value+"9"), bad_lexical_cast);
// VC9 can fail the following tests on floats and doubles when using stingstream...
BOOST_CHECK_THROW(lexical_cast<test_t>("1"+s_max_value), bad_lexical_cast);
BOOST_CHECK_THROW(lexical_cast<test_t>("9"+s_max_value), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<test_t>("1"+s_max_value), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<test_t>("9"+s_max_value), bad_lexical_cast);
#endif
if ( is_same<test_t,float>::value )
#if !(defined(_LIBCPP_VERSION) && defined(BOOST_LEXICAL_CAST_DETAIL_TEST_ON_OLD))
if ( std::is_same<test_t,float>::value )
{
BOOST_CHECK_THROW(lexical_cast<test_t>( (std::numeric_limits<double>::max)() ), bad_lexical_cast);
BOOST_CHECK(
(std::numeric_limits<double>::min)() - boost::math::tools::epsilon<test_t>()
BOOST_TEST_THROWS(lexical_cast<test_t>( (std::numeric_limits<double>::max)() ), bad_lexical_cast);
BOOST_TEST(
(std::numeric_limits<double>::min)() - std::numeric_limits<test_t>::epsilon()
<= lexical_cast<test_t>( (std::numeric_limits<double>::min)() )
&& lexical_cast<test_t>( (std::numeric_limits<double>::min)() )
<= (std::numeric_limits<double>::min)() + boost::math::tools::epsilon<test_t>()
<= (std::numeric_limits<double>::min)() + std::numeric_limits<test_t>::epsilon()
);
BOOST_TEST(
(std::numeric_limits<double>::min)() / 2 - std::numeric_limits<test_t>::epsilon()
<= lexical_cast<test_t>( (std::numeric_limits<double>::min)() / 2 )
&& lexical_cast<test_t>( (std::numeric_limits<double>::min)() / 2 )
<= (std::numeric_limits<double>::min)() / 2 + std::numeric_limits<test_t>::epsilon()
);
}
if ( sizeof(test_t) < sizeof(long double) )
{
BOOST_CHECK_THROW(lexical_cast<test_t>( (std::numeric_limits<long double>::max)() ), bad_lexical_cast);
BOOST_CHECK(
(std::numeric_limits<long double>::min)() - boost::math::tools::epsilon<test_t>()
BOOST_TEST_THROWS(lexical_cast<test_t>( (std::numeric_limits<long double>::max)() ), bad_lexical_cast);
BOOST_TEST(
(std::numeric_limits<long double>::min)() - std::numeric_limits<test_t>::epsilon()
<= lexical_cast<test_t>( (std::numeric_limits<long double>::min)() )
&& lexical_cast<test_t>( (std::numeric_limits<long double>::min)() )
<= (std::numeric_limits<long double>::min)() + boost::math::tools::epsilon<test_t>()
<= (std::numeric_limits<long double>::min)() + std::numeric_limits<test_t>::epsilon()
);
BOOST_TEST(
(std::numeric_limits<long double>::min)() / 2 - std::numeric_limits<test_t>::epsilon()
<= lexical_cast<test_t>( (std::numeric_limits<long double>::min)() / 2 )
&& lexical_cast<test_t>( (std::numeric_limits<long double>::min)() / 2 )
<= (std::numeric_limits<long double>::min)() / 2 + std::numeric_limits<test_t>::epsilon()
);
}
#endif
}
#undef CHECK_CLOSE_ABS_DIFF
// Epsilon is multiplied by 2 because of two lexical conversions
#define TEST_TO_FROM_CAST_AROUND_TYPED(VAL,STRING_TYPE) \
test_value = VAL + boost::math::tools::epsilon<test_t>() * i ; \
test_value = VAL + std::numeric_limits<test_t>::epsilon() * i ; \
converted_val = lexical_cast<test_t>( lexical_cast<STRING_TYPE>(test_value) ); \
BOOST_CHECK_CLOSE_FRACTION( \
BOOST_TEST_CLOSE_FRACTION( \
test_value, \
converted_val, \
boost::math::tools::epsilon<test_t>() * 2 \
std::numeric_limits<test_t>::epsilon() * 2 \
);
/*
@@ -401,39 +413,39 @@ void test_converion_from_to_float_types()
template<class T, class CharT>
void test_conversion_from_float_to_char(CharT zero)
{
BOOST_CHECK(lexical_cast<CharT>(static_cast<T>(0)) == zero + 0);
BOOST_CHECK(lexical_cast<CharT>(static_cast<T>(1)) == zero + 1);
BOOST_CHECK(lexical_cast<CharT>(static_cast<T>(2)) == zero + 2);
BOOST_CHECK(lexical_cast<CharT>(static_cast<T>(3)) == zero + 3);
BOOST_CHECK(lexical_cast<CharT>(static_cast<T>(4)) == zero + 4);
BOOST_CHECK(lexical_cast<CharT>(static_cast<T>(5)) == zero + 5);
BOOST_CHECK(lexical_cast<CharT>(static_cast<T>(6)) == zero + 6);
BOOST_CHECK(lexical_cast<CharT>(static_cast<T>(7)) == zero + 7);
BOOST_CHECK(lexical_cast<CharT>(static_cast<T>(8)) == zero + 8);
BOOST_CHECK(lexical_cast<CharT>(static_cast<T>(9)) == zero + 9);
BOOST_TEST(lexical_cast<CharT>(static_cast<T>(0)) == zero + 0);
BOOST_TEST(lexical_cast<CharT>(static_cast<T>(1)) == zero + 1);
BOOST_TEST(lexical_cast<CharT>(static_cast<T>(2)) == zero + 2);
BOOST_TEST(lexical_cast<CharT>(static_cast<T>(3)) == zero + 3);
BOOST_TEST(lexical_cast<CharT>(static_cast<T>(4)) == zero + 4);
BOOST_TEST(lexical_cast<CharT>(static_cast<T>(5)) == zero + 5);
BOOST_TEST(lexical_cast<CharT>(static_cast<T>(6)) == zero + 6);
BOOST_TEST(lexical_cast<CharT>(static_cast<T>(7)) == zero + 7);
BOOST_TEST(lexical_cast<CharT>(static_cast<T>(8)) == zero + 8);
BOOST_TEST(lexical_cast<CharT>(static_cast<T>(9)) == zero + 9);
BOOST_CHECK_THROW(lexical_cast<CharT>(static_cast<T>(10)), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<CharT>(static_cast<T>(10)), bad_lexical_cast);
T t = (std::numeric_limits<T>::max)();
BOOST_CHECK_THROW(lexical_cast<CharT>(t), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<CharT>(t), bad_lexical_cast);
}
template<class T, class CharT>
void test_conversion_from_char_to_float(CharT zero)
{
BOOST_CHECK_CLOSE_FRACTION(lexical_cast<T>( static_cast<CharT>(zero + 0)), static_cast<T>(0), (boost::math::tools::epsilon<T>()) );
BOOST_CHECK_CLOSE_FRACTION(lexical_cast<T>( static_cast<CharT>(zero + 1)), static_cast<T>(1), (boost::math::tools::epsilon<T>()) );
BOOST_CHECK_CLOSE_FRACTION(lexical_cast<T>( static_cast<CharT>(zero + 2)), static_cast<T>(2), (boost::math::tools::epsilon<T>()) );
BOOST_CHECK_CLOSE_FRACTION(lexical_cast<T>( static_cast<CharT>(zero + 3)), static_cast<T>(3), (boost::math::tools::epsilon<T>()) );
BOOST_CHECK_CLOSE_FRACTION(lexical_cast<T>( static_cast<CharT>(zero + 4)), static_cast<T>(4), (boost::math::tools::epsilon<T>()) );
BOOST_CHECK_CLOSE_FRACTION(lexical_cast<T>( static_cast<CharT>(zero + 5)), static_cast<T>(5), (boost::math::tools::epsilon<T>()) );
BOOST_CHECK_CLOSE_FRACTION(lexical_cast<T>( static_cast<CharT>(zero + 6)), static_cast<T>(6), (boost::math::tools::epsilon<T>()) );
BOOST_CHECK_CLOSE_FRACTION(lexical_cast<T>( static_cast<CharT>(zero + 7)), static_cast<T>(7), (boost::math::tools::epsilon<T>()) );
BOOST_CHECK_CLOSE_FRACTION(lexical_cast<T>( static_cast<CharT>(zero + 8)), static_cast<T>(8), (boost::math::tools::epsilon<T>()) );
BOOST_CHECK_CLOSE_FRACTION(lexical_cast<T>( static_cast<CharT>(zero + 9)), static_cast<T>(9), (boost::math::tools::epsilon<T>()) );
BOOST_TEST_CLOSE_FRACTION(lexical_cast<T>( static_cast<CharT>(zero + 0)), static_cast<T>(0), (std::numeric_limits<T>::epsilon()) );
BOOST_TEST_CLOSE_FRACTION(lexical_cast<T>( static_cast<CharT>(zero + 1)), static_cast<T>(1), (std::numeric_limits<T>::epsilon()) );
BOOST_TEST_CLOSE_FRACTION(lexical_cast<T>( static_cast<CharT>(zero + 2)), static_cast<T>(2), (std::numeric_limits<T>::epsilon()) );
BOOST_TEST_CLOSE_FRACTION(lexical_cast<T>( static_cast<CharT>(zero + 3)), static_cast<T>(3), (std::numeric_limits<T>::epsilon()) );
BOOST_TEST_CLOSE_FRACTION(lexical_cast<T>( static_cast<CharT>(zero + 4)), static_cast<T>(4), (std::numeric_limits<T>::epsilon()) );
BOOST_TEST_CLOSE_FRACTION(lexical_cast<T>( static_cast<CharT>(zero + 5)), static_cast<T>(5), (std::numeric_limits<T>::epsilon()) );
BOOST_TEST_CLOSE_FRACTION(lexical_cast<T>( static_cast<CharT>(zero + 6)), static_cast<T>(6), (std::numeric_limits<T>::epsilon()) );
BOOST_TEST_CLOSE_FRACTION(lexical_cast<T>( static_cast<CharT>(zero + 7)), static_cast<T>(7), (std::numeric_limits<T>::epsilon()) );
BOOST_TEST_CLOSE_FRACTION(lexical_cast<T>( static_cast<CharT>(zero + 8)), static_cast<T>(8), (std::numeric_limits<T>::epsilon()) );
BOOST_TEST_CLOSE_FRACTION(lexical_cast<T>( static_cast<CharT>(zero + 9)), static_cast<T>(9), (std::numeric_limits<T>::epsilon()) );
BOOST_CHECK_THROW(lexical_cast<T>( static_cast<CharT>(zero + 10)), bad_lexical_cast);
BOOST_CHECK_THROW(lexical_cast<T>( static_cast<CharT>(zero - 1)), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<T>( static_cast<CharT>(zero + 10)), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<T>( static_cast<CharT>(zero - 1)), bad_lexical_cast);
}
struct restore_oldloc
@@ -459,13 +471,13 @@ void test_conversion_from_to_float()
test_conversion_from_char_to_float<T>(wzero);
#endif
BOOST_CHECK_CLOSE_FRACTION(lexical_cast<T>("+1"), 1, boost::math::tools::epsilon<T>());
BOOST_CHECK_CLOSE_FRACTION(lexical_cast<T>("+9"), 9, boost::math::tools::epsilon<T>());
BOOST_TEST_CLOSE_FRACTION(lexical_cast<T>("+1"), 1, std::numeric_limits<T>::epsilon());
BOOST_TEST_CLOSE_FRACTION(lexical_cast<T>("+9"), 9, std::numeric_limits<T>::epsilon());
BOOST_CHECK_THROW(lexical_cast<T>("++1"), bad_lexical_cast);
BOOST_CHECK_THROW(lexical_cast<T>("-+9"), bad_lexical_cast);
BOOST_CHECK_THROW(lexical_cast<T>("--1"), bad_lexical_cast);
BOOST_CHECK_THROW(lexical_cast<T>("+-9"), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<T>("++1"), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<T>("-+9"), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<T>("--1"), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<T>("+-9"), bad_lexical_cast);
test_converion_to_float_types<T>();
test_float_typess_for_overflows<T>();
@@ -493,17 +505,18 @@ void test_conversion_from_to_float()
{
std::string msg("Failed to set system locale: ");
msg += ex.what();
BOOST_TEST_MESSAGE(msg);
std::cerr << msg;
}
if(grouping1 != grouping2)
test_conversion_from_to_float_for_locale<T>();
if(grouping1.empty() && grouping2.empty())
BOOST_TEST_MESSAGE("Formatting with thousands_sep has not been tested");
std::cerr << "Formatting with thousands_sep has not been tested";
}
void test_conversion_from_to_float()
{
test_conversion_from_to_float<float>();
@@ -515,9 +528,77 @@ void test_conversion_from_to_double()
void test_conversion_from_to_long_double()
{
// We do not run tests on compilers and Standard Libraries with poor support of long double
#if !defined(BOOST_MATH_NO_LONG_DOUBLE_MATH_FUNCTIONS) && !defined(__MINGW64__)
#if !defined(BOOST_LEXICAL_CAST_NO_LONG_DOUBLE_MATH_FUNCTIONS)
test_conversion_from_to_float<long double>();
#endif
BOOST_CHECK(true);
BOOST_TEST(true);
}
template <class Integral, class Float>
void test_conversion_integral_float()
{
BOOST_TEST_CLOSE_FRACTION(lexical_cast<Float>(static_cast<Float>(1)), static_cast<Float>(1), std::numeric_limits<Float>::epsilon());
BOOST_TEST_CLOSE_FRACTION(lexical_cast<Float>(static_cast<Float>(1.1234)), static_cast<Float>(1.1234), std::numeric_limits<Float>::epsilon());
BOOST_TEST_CLOSE_FRACTION(lexical_cast<Float>(static_cast<Float>(-1.1234)), static_cast<Float>(-1.1234), std::numeric_limits<Float>::epsilon());
BOOST_TEST_CLOSE_FRACTION(lexical_cast<Float>(static_cast<Integral>(0)), static_cast<Float>(0), std::numeric_limits<Float>::epsilon());
BOOST_TEST_CLOSE_FRACTION(lexical_cast<Float>(static_cast<Integral>(1)), static_cast<Float>(1), std::numeric_limits<Float>::epsilon());
#ifndef __CYGWIN__
BOOST_TEST_CLOSE_FRACTION(lexical_cast<Float>((std::numeric_limits<Integral>::max)()), static_cast<Float>((std::numeric_limits<Integral>::max)()), std::numeric_limits<Float>::epsilon());
BOOST_TEST_CLOSE_FRACTION(lexical_cast<Float>((std::numeric_limits<Integral>::min)()), static_cast<Float>((std::numeric_limits<Integral>::min)()), std::numeric_limits<Float>::epsilon());
#endif
BOOST_TEST_EQ(lexical_cast<Integral>(static_cast<Float>(0.0)), 0);
BOOST_TEST_EQ(lexical_cast<Integral>(static_cast<Float>(1.0)), 1);
BOOST_TEST_EQ(lexical_cast<Integral>(static_cast<Float>(8.0)), 8);
BOOST_TEST_EQ(lexical_cast<Integral>(static_cast<Float>(16.0)), 16);
if (boost::detail::lcast::is_signed<Integral>::value) {
BOOST_TEST_EQ(lexical_cast<Integral>(static_cast<Float>(-1.0)), -1);
BOOST_TEST_EQ(lexical_cast<Integral>(static_cast<Float>(-8.0)), -8);
BOOST_TEST_EQ(lexical_cast<Integral>(static_cast<Float>(-16.0)), -16);
} else {
BOOST_TEST_EQ(lexical_cast<Integral>(static_cast<Float>(-1.0)), (std::numeric_limits<Integral>::max)());
BOOST_TEST_EQ(lexical_cast<Integral>(static_cast<Float>(-8.0)), (std::numeric_limits<Integral>::max)() - 7);
BOOST_TEST_EQ(lexical_cast<Integral>(static_cast<Float>(-16.0)), (std::numeric_limits<Integral>::max)() - 15);
}
BOOST_TEST_THROWS(lexical_cast<Integral>(static_cast<Float>(0.5)), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<Integral>(static_cast<Float>(-0.5)), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<Integral>(static_cast<Float>(1.5)), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<Integral>(static_cast<Float>(-1.5)), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<Integral>((std::numeric_limits<Float>::min)()), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<Integral>((std::numeric_limits<Float>::max)()), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<Integral>((std::numeric_limits<Float>::epsilon)()), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<Integral>((std::numeric_limits<Float>::lowest)()), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<Integral>(std::numeric_limits<Float>::quiet_NaN()), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<Integral>(-std::numeric_limits<Float>::quiet_NaN()), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<Integral>(std::numeric_limits<Float>::infinity()), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<Integral>(-std::numeric_limits<Float>::infinity()), bad_lexical_cast);
}
int main()
{
test_conversion_from_to_float();
test_conversion_from_to_double();
test_conversion_from_to_long_double();
test_conversion_integral_float<int, float>();
test_conversion_integral_float<int, double>();
test_conversion_integral_float<unsigned short, float>();
test_conversion_integral_float<unsigned short, double>();
test_conversion_integral_float<short, float>();
test_conversion_integral_float<short, double>();
test_conversion_integral_float<long int, float>();
test_conversion_integral_float<long int, double>();
test_conversion_integral_float<long long, float>();
test_conversion_integral_float<long long, double>();
test_conversion_integral_float<unsigned long long, float>();
test_conversion_integral_float<unsigned long long, double>();
return boost::report_errors();
}
+16
View File
@@ -0,0 +1,16 @@
// Copyright Antony Polukhin, 2013-2026.
//
// Distributed under the Boost
// Software License, Version 1.0. (See accompanying file
// LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt).
#include <boost/lexical_cast.hpp>
#include <string>
int main()
{
volatile int i = 42;
boost::lexical_cast<std::string>(i);
return 1;
}
+63
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@@ -0,0 +1,63 @@
// Copyright Antony Polukhin, 2023-2026.
//
// Distributed under the Boost
// Software License, Version 1.0. (See accompanying file
// LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt).
#include <boost/core/lightweight_test.hpp>
#include <boost/lexical_cast.hpp>
struct oops {
operator int () const {
return 41;
}
};
inline std::ostream& operator<<(std::ostream& os, const oops&) {
return os << 42;
}
struct oops2 {
operator double () const {
return 1.12;
}
};
inline std::ostream& operator<<(std::ostream& os, const oops2&) {
return os << 2;
}
struct Value {
explicit Value(double x) : x(x) {}
operator double() const {
return x;
}
double x;
};
int main() {
BOOST_TEST_EQ(boost::lexical_cast<int>(oops{}), 42);
BOOST_TEST_EQ(boost::lexical_cast<std::string>(oops{}), "42");
BOOST_TEST_EQ(boost::lexical_cast<double>(oops2{}), 2);
BOOST_TEST_EQ(boost::lexical_cast<std::string>(oops2{}), "2");
Value longer_that_1_digit(128);
BOOST_TEST_EQ(boost::lexical_cast<std::string>(longer_that_1_digit), "128");
// iostreams have default precision 6, see [basic.ios.cons]
const double precision_more_than_6_digits = 1.23456789123;
// At the moment we do not set the precision for types that use conversion
// operators for ostreaming, so the below test pass. We do not set precision
// for user provided `operator<<`, types with conversion operators follow
// the same design decision for now.
BOOST_TEST_NE(
boost::lexical_cast<std::string>(Value(precision_more_than_6_digits)),
boost::lexical_cast<std::string>(precision_more_than_6_digits)
);
return boost::report_errors();
}
+131 -94
View File
@@ -2,29 +2,20 @@
//
// See http://www.boost.org for most recent version, including documentation.
//
// Copyright Antony Polukhin, 2011-2021.
// Copyright Antony Polukhin, 2011-2026.
//
// Distributed under the Boost
// Software License, Version 1.0. (See accompanying file
// LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt).
#include <boost/config.hpp>
#include <type_traits>
#if defined(__INTEL_COMPILER)
#pragma warning(disable: 193 383 488 981 1418 1419)
#elif defined(BOOST_MSVC)
#pragma warning(disable: 4097 4100 4121 4127 4146 4244 4245 4511 4512 4701 4800)
#endif
#include <boost/core/cmath.hpp>
#include <boost/core/lightweight_test.hpp>
#include <boost/lexical_cast.hpp>
#include <boost/math/special_functions/sign.hpp>
#include <boost/math/special_functions/fpclassify.hpp>
#include <boost/type_traits/is_same.hpp>
#include <boost/test/unit_test.hpp>
#include <boost/test/tools/floating_point_comparison.hpp>
#if defined(BOOST_NO_STRINGSTREAM) || defined(BOOST_NO_STD_WSTRING)
#define BOOST_LCAST_NO_WCHAR_T
#endif
@@ -34,19 +25,19 @@ using namespace boost;
template <class T>
bool is_pos_inf(T value)
{
return (boost::math::isinf)(value) && !(boost::math::signbit)(value);
return (boost::core::isinf)(value) && !(boost::core::signbit)(value);
}
template <class T>
bool is_neg_inf(T value)
{
return (boost::math::isinf)(value) && (boost::math::signbit)(value);
return (boost::core::isinf)(value) && (boost::core::signbit)(value);
}
template <class T>
bool is_pos_nan(T value)
{
return (boost::math::isnan)(value) && !(boost::math::signbit)(value);
return (boost::core::isnan)(value) && !(boost::core::signbit)(value);
}
template <class T>
@@ -55,10 +46,10 @@ bool is_neg_nan(T value)
/* There is some strange behaviour on Itanium platform with -nan nuber for long double.
* It is a IA64 feature, or it is a boost::math feature, not a lexical_cast bug */
#if defined(__ia64__) || defined(_M_IA64)
return (boost::math::isnan)(value)
&& ( boost::is_same<T, long double >::value || (boost::math::signbit)(value) );
return (boost::core::isnan)(value)
&& ( std::is_same<T, long double >::value || (boost::core::signbit)(value) );
#else
return (boost::math::isnan)(value) && (boost::math::signbit)(value);
return (boost::core::isnan)(value) && (boost::core::signbit)(value);
#endif
}
@@ -67,107 +58,107 @@ void test_inf_nan_templated()
{
typedef T test_t;
BOOST_CHECK( is_pos_inf( lexical_cast<test_t>("inf") ) );
BOOST_CHECK( is_pos_inf( lexical_cast<test_t>("INF") ) );
BOOST_TEST( is_pos_inf( lexical_cast<test_t>("inf") ) );
BOOST_TEST( is_pos_inf( lexical_cast<test_t>("INF") ) );
BOOST_CHECK( is_neg_inf( lexical_cast<test_t>("-inf") ) );
BOOST_CHECK( is_neg_inf( lexical_cast<test_t>("-INF") ) );
BOOST_TEST( is_neg_inf( lexical_cast<test_t>("-inf") ) );
BOOST_TEST( is_neg_inf( lexical_cast<test_t>("-INF") ) );
BOOST_CHECK( is_pos_inf( lexical_cast<test_t>("+inf") ) );
BOOST_CHECK( is_pos_inf( lexical_cast<test_t>("+INF") ) );
BOOST_TEST( is_pos_inf( lexical_cast<test_t>("+inf") ) );
BOOST_TEST( is_pos_inf( lexical_cast<test_t>("+INF") ) );
BOOST_CHECK( is_pos_inf( lexical_cast<test_t>("infinity") ) );
BOOST_CHECK( is_pos_inf( lexical_cast<test_t>("INFINITY") ) );
BOOST_TEST( is_pos_inf( lexical_cast<test_t>("infinity") ) );
BOOST_TEST( is_pos_inf( lexical_cast<test_t>("INFINITY") ) );
BOOST_CHECK( is_neg_inf( lexical_cast<test_t>("-infinity") ) );
BOOST_CHECK( is_neg_inf( lexical_cast<test_t>("-INFINITY") ) );
BOOST_TEST( is_neg_inf( lexical_cast<test_t>("-infinity") ) );
BOOST_TEST( is_neg_inf( lexical_cast<test_t>("-INFINITY") ) );
BOOST_CHECK( is_pos_inf( lexical_cast<test_t>("+infinity") ) );
BOOST_CHECK( is_pos_inf( lexical_cast<test_t>("+INFINITY") ) );
BOOST_TEST( is_pos_inf( lexical_cast<test_t>("+infinity") ) );
BOOST_TEST( is_pos_inf( lexical_cast<test_t>("+INFINITY") ) );
BOOST_CHECK( is_pos_inf( lexical_cast<test_t>("iNfiNity") ) );
BOOST_CHECK( is_pos_inf( lexical_cast<test_t>("INfinity") ) );
BOOST_TEST( is_pos_inf( lexical_cast<test_t>("iNfiNity") ) );
BOOST_TEST( is_pos_inf( lexical_cast<test_t>("INfinity") ) );
BOOST_CHECK( is_neg_inf( lexical_cast<test_t>("-inFINITY") ) );
BOOST_CHECK( is_neg_inf( lexical_cast<test_t>("-INFINITY") ) );
BOOST_TEST( is_neg_inf( lexical_cast<test_t>("-inFINITY") ) );
BOOST_TEST( is_neg_inf( lexical_cast<test_t>("-INFINITY") ) );
BOOST_CHECK( is_pos_nan( lexical_cast<test_t>("nan") ) );
BOOST_CHECK( is_pos_nan( lexical_cast<test_t>("NAN") ) );
BOOST_TEST( is_pos_nan( lexical_cast<test_t>("nan") ) );
BOOST_TEST( is_pos_nan( lexical_cast<test_t>("NAN") ) );
BOOST_CHECK( is_neg_nan( lexical_cast<test_t>("-nan") ) );
BOOST_CHECK( is_neg_nan( lexical_cast<test_t>("-NAN") ) );
BOOST_TEST( is_neg_nan( lexical_cast<test_t>("-nan") ) );
BOOST_TEST( is_neg_nan( lexical_cast<test_t>("-NAN") ) );
BOOST_CHECK( is_pos_nan( lexical_cast<test_t>("+nan") ) );
BOOST_CHECK( is_pos_nan( lexical_cast<test_t>("+NAN") ) );
BOOST_TEST( is_pos_nan( lexical_cast<test_t>("+nan") ) );
BOOST_TEST( is_pos_nan( lexical_cast<test_t>("+NAN") ) );
BOOST_CHECK( is_pos_nan( lexical_cast<test_t>("nAn") ) );
BOOST_CHECK( is_pos_nan( lexical_cast<test_t>("NaN") ) );
BOOST_TEST( is_pos_nan( lexical_cast<test_t>("nAn") ) );
BOOST_TEST( is_pos_nan( lexical_cast<test_t>("NaN") ) );
BOOST_CHECK( is_neg_nan( lexical_cast<test_t>("-nAn") ) );
BOOST_CHECK( is_neg_nan( lexical_cast<test_t>("-NaN") ) );
BOOST_TEST( is_neg_nan( lexical_cast<test_t>("-nAn") ) );
BOOST_TEST( is_neg_nan( lexical_cast<test_t>("-NaN") ) );
BOOST_CHECK( is_pos_nan( lexical_cast<test_t>("+Nan") ) );
BOOST_CHECK( is_pos_nan( lexical_cast<test_t>("+nAN") ) );
BOOST_TEST( is_pos_nan( lexical_cast<test_t>("+Nan") ) );
BOOST_TEST( is_pos_nan( lexical_cast<test_t>("+nAN") ) );
BOOST_CHECK( is_pos_nan( lexical_cast<test_t>("nan()") ) );
BOOST_CHECK( is_pos_nan( lexical_cast<test_t>("NAN(some string)") ) );
BOOST_CHECK_THROW( lexical_cast<test_t>("NAN(some string"), bad_lexical_cast );
BOOST_TEST( is_pos_nan( lexical_cast<test_t>("nan()") ) );
BOOST_TEST( is_pos_nan( lexical_cast<test_t>("NAN(some string)") ) );
BOOST_TEST_THROWS( lexical_cast<test_t>("NAN(some string"), bad_lexical_cast );
BOOST_CHECK(lexical_cast<std::string>( (boost::math::changesign)(std::numeric_limits<test_t >::infinity()))
BOOST_TEST(lexical_cast<std::string>( (boost::core::copysign)(std::numeric_limits<test_t >::infinity(), static_cast<test_t>(-1.0)))
== "-inf" );
BOOST_CHECK(lexical_cast<std::string>( std::numeric_limits<test_t >::infinity()) == "inf" );
BOOST_CHECK(lexical_cast<std::string>( std::numeric_limits<test_t >::quiet_NaN()) == "nan" );
BOOST_TEST(lexical_cast<std::string>( std::numeric_limits<test_t >::infinity()) == "inf" );
BOOST_TEST(lexical_cast<std::string>( std::numeric_limits<test_t >::quiet_NaN()) == "nan" );
#if !defined(__ia64__) && !defined(_M_IA64)
BOOST_CHECK(lexical_cast<std::string>(
(boost::math::changesign)(std::numeric_limits<test_t >::quiet_NaN()))
BOOST_TEST(lexical_cast<std::string>(
(boost::core::copysign)(std::numeric_limits<test_t >::quiet_NaN(), static_cast<test_t>(-1.0)))
== "-nan" );
#endif
#ifndef BOOST_LCAST_NO_WCHAR_T
BOOST_CHECK( is_pos_inf( lexical_cast<test_t>(L"inf") ) );
BOOST_CHECK( is_pos_inf( lexical_cast<test_t>(L"INF") ) );
BOOST_TEST( is_pos_inf( lexical_cast<test_t>(L"inf") ) );
BOOST_TEST( is_pos_inf( lexical_cast<test_t>(L"INF") ) );
BOOST_CHECK( is_neg_inf( lexical_cast<test_t>(L"-inf") ) );
BOOST_CHECK( is_neg_inf( lexical_cast<test_t>(L"-INF") ) );
BOOST_TEST( is_neg_inf( lexical_cast<test_t>(L"-inf") ) );
BOOST_TEST( is_neg_inf( lexical_cast<test_t>(L"-INF") ) );
BOOST_CHECK( is_pos_inf( lexical_cast<test_t>(L"+inf") ) );
BOOST_CHECK( is_pos_inf( lexical_cast<test_t>(L"+INF") ) );
BOOST_TEST( is_pos_inf( lexical_cast<test_t>(L"+inf") ) );
BOOST_TEST( is_pos_inf( lexical_cast<test_t>(L"+INF") ) );
BOOST_CHECK( is_pos_inf( lexical_cast<test_t>(L"infinity") ) );
BOOST_CHECK( is_pos_inf( lexical_cast<test_t>(L"INFINITY") ) );
BOOST_TEST( is_pos_inf( lexical_cast<test_t>(L"infinity") ) );
BOOST_TEST( is_pos_inf( lexical_cast<test_t>(L"INFINITY") ) );
BOOST_CHECK( is_neg_inf( lexical_cast<test_t>(L"-infinity") ) );
BOOST_CHECK( is_neg_inf( lexical_cast<test_t>(L"-INFINITY") ) );
BOOST_TEST( is_neg_inf( lexical_cast<test_t>(L"-infinity") ) );
BOOST_TEST( is_neg_inf( lexical_cast<test_t>(L"-INFINITY") ) );
BOOST_CHECK( is_pos_inf( lexical_cast<test_t>(L"+infinity") ) );
BOOST_CHECK( is_pos_inf( lexical_cast<test_t>(L"+INFINITY") ) );
BOOST_TEST( is_pos_inf( lexical_cast<test_t>(L"+infinity") ) );
BOOST_TEST( is_pos_inf( lexical_cast<test_t>(L"+INFINITY") ) );
BOOST_CHECK( is_neg_inf( lexical_cast<test_t>(L"-infINIty") ) );
BOOST_CHECK( is_neg_inf( lexical_cast<test_t>(L"-INFiniTY") ) );
BOOST_TEST( is_neg_inf( lexical_cast<test_t>(L"-infINIty") ) );
BOOST_TEST( is_neg_inf( lexical_cast<test_t>(L"-INFiniTY") ) );
BOOST_CHECK( is_pos_inf( lexical_cast<test_t>(L"+inFINIty") ) );
BOOST_CHECK( is_pos_inf( lexical_cast<test_t>(L"+INfinITY") ) );
BOOST_TEST( is_pos_inf( lexical_cast<test_t>(L"+inFINIty") ) );
BOOST_TEST( is_pos_inf( lexical_cast<test_t>(L"+INfinITY") ) );
BOOST_CHECK( is_pos_nan( lexical_cast<test_t>(L"nan") ) );
BOOST_CHECK( is_pos_nan( lexical_cast<test_t>(L"NAN") ) );
BOOST_TEST( is_pos_nan( lexical_cast<test_t>(L"nan") ) );
BOOST_TEST( is_pos_nan( lexical_cast<test_t>(L"NAN") ) );
BOOST_CHECK( is_neg_nan( lexical_cast<test_t>(L"-nan") ) );
BOOST_CHECK( is_neg_nan( lexical_cast<test_t>(L"-NAN") ) );
BOOST_TEST( is_neg_nan( lexical_cast<test_t>(L"-nan") ) );
BOOST_TEST( is_neg_nan( lexical_cast<test_t>(L"-NAN") ) );
BOOST_CHECK( is_pos_nan( lexical_cast<test_t>(L"+nan") ) );
BOOST_CHECK( is_pos_nan( lexical_cast<test_t>(L"+NAN") ) );
BOOST_TEST( is_pos_nan( lexical_cast<test_t>(L"+nan") ) );
BOOST_TEST( is_pos_nan( lexical_cast<test_t>(L"+NAN") ) );
BOOST_CHECK( is_pos_nan( lexical_cast<test_t>(L"nan()") ) );
BOOST_CHECK( is_pos_nan( lexical_cast<test_t>(L"NAN(some string)") ) );
BOOST_CHECK_THROW( lexical_cast<test_t>(L"NAN(some string"), bad_lexical_cast );
BOOST_TEST( is_pos_nan( lexical_cast<test_t>(L"nan()") ) );
BOOST_TEST( is_pos_nan( lexical_cast<test_t>(L"NAN(some string)") ) );
BOOST_TEST_THROWS( lexical_cast<test_t>(L"NAN(some string"), bad_lexical_cast );
BOOST_CHECK(lexical_cast<std::wstring>( (boost::math::changesign)(std::numeric_limits<test_t >::infinity()))
BOOST_TEST(lexical_cast<std::wstring>( (boost::core::copysign)(std::numeric_limits<test_t >::infinity(), static_cast<test_t>(-1.0)))
== L"-inf" );
BOOST_CHECK(lexical_cast<std::wstring>( std::numeric_limits<test_t >::infinity()) == L"inf" );
BOOST_CHECK(lexical_cast<std::wstring>( std::numeric_limits<test_t >::quiet_NaN()) == L"nan" );
BOOST_TEST(lexical_cast<std::wstring>( std::numeric_limits<test_t >::infinity()) == L"inf" );
BOOST_TEST(lexical_cast<std::wstring>( std::numeric_limits<test_t >::quiet_NaN()) == L"nan" );
#if !defined(__ia64__) && !defined(_M_IA64)
BOOST_CHECK(lexical_cast<std::wstring>(
(boost::math::changesign)(std::numeric_limits<test_t >::quiet_NaN()))
BOOST_TEST(lexical_cast<std::wstring>(
(boost::core::copysign)(std::numeric_limits<test_t >::quiet_NaN(), static_cast<test_t>(-1.0)))
== L"-nan" );
#endif
@@ -177,11 +168,36 @@ void test_inf_nan_templated()
void test_inf_nan_float()
{
test_inf_nan_templated<float >();
BOOST_TEST(is_pos_nan(lexical_cast<float>(std::numeric_limits<float>::quiet_NaN())));
BOOST_TEST(is_neg_nan(lexical_cast<float>(-std::numeric_limits<float>::quiet_NaN())));
BOOST_TEST(is_pos_inf(lexical_cast<float>(std::numeric_limits<float>::infinity())));
BOOST_TEST(is_neg_inf(lexical_cast<float>(-std::numeric_limits<float>::infinity())));
BOOST_TEST(is_pos_nan(lexical_cast<float>(std::numeric_limits<double>::quiet_NaN())));
BOOST_TEST(is_neg_nan(lexical_cast<float>(-std::numeric_limits<double>::quiet_NaN())));
BOOST_TEST(is_pos_inf(lexical_cast<float>(std::numeric_limits<double>::infinity())));
BOOST_TEST(is_neg_inf(lexical_cast<float>(-std::numeric_limits<double>::infinity())));
}
void test_inf_nan_double()
{
test_inf_nan_templated<double >();
BOOST_TEST(is_pos_nan(lexical_cast<double>(std::numeric_limits<float>::quiet_NaN())));
BOOST_TEST(is_neg_nan(lexical_cast<double>(-std::numeric_limits<float>::quiet_NaN())));
BOOST_TEST(is_pos_inf(lexical_cast<double>(std::numeric_limits<float>::infinity())));
BOOST_TEST(is_neg_inf(lexical_cast<double>(-std::numeric_limits<float>::infinity())));
BOOST_TEST(is_pos_nan(lexical_cast<double>(std::numeric_limits<double>::quiet_NaN())));
BOOST_TEST(is_neg_nan(lexical_cast<double>(-std::numeric_limits<double>::quiet_NaN())));
BOOST_TEST(is_pos_inf(lexical_cast<double>(std::numeric_limits<double>::infinity())));
BOOST_TEST(is_neg_inf(lexical_cast<double>(-std::numeric_limits<double>::infinity())));
BOOST_TEST(is_pos_nan(lexical_cast<double>(std::numeric_limits<long double>::quiet_NaN())));
BOOST_TEST(is_neg_nan(lexical_cast<double>(-std::numeric_limits<long double>::quiet_NaN())));
BOOST_TEST(is_pos_inf(lexical_cast<double>(std::numeric_limits<long double>::infinity())));
BOOST_TEST(is_neg_inf(lexical_cast<double>(-std::numeric_limits<long double>::infinity())));
}
void test_inf_nan_long_double()
@@ -190,16 +206,37 @@ void test_inf_nan_long_double()
#ifndef BOOST_MATH_NO_LONG_DOUBLE_MATH_FUNCTIONS
test_inf_nan_templated<long double >();
#endif
BOOST_CHECK(true);
BOOST_TEST(true);
}
unit_test::test_suite *init_unit_test_suite(int, char *[])
template <class Integral>
void test_inf_nan_to_integral()
{
unit_test::test_suite *suite =
BOOST_TEST_SUITE("lexical_cast inf anf nan parsing unit test");
suite->add(BOOST_TEST_CASE(&test_inf_nan_float));
suite->add(BOOST_TEST_CASE(&test_inf_nan_double));
suite->add(BOOST_TEST_CASE(&test_inf_nan_long_double));
BOOST_TEST_THROWS(lexical_cast<Integral>(std::numeric_limits<float>::quiet_NaN()), boost::bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<Integral>(-std::numeric_limits<float>::quiet_NaN()), boost::bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<Integral>(std::numeric_limits<float>::infinity()), boost::bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<Integral>(-std::numeric_limits<float>::infinity()), boost::bad_lexical_cast);
return suite;
BOOST_TEST_THROWS(lexical_cast<Integral>(std::numeric_limits<double>::quiet_NaN()), boost::bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<Integral>(-std::numeric_limits<double>::quiet_NaN()), boost::bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<Integral>(std::numeric_limits<double>::infinity()), boost::bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<Integral>(-std::numeric_limits<double>::infinity()), boost::bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<Integral>(std::numeric_limits<long double>::quiet_NaN()), boost::bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<Integral>(-std::numeric_limits<long double>::quiet_NaN()), boost::bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<Integral>(std::numeric_limits<long double>::infinity()), boost::bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<Integral>(-std::numeric_limits<long double>::infinity()), boost::bad_lexical_cast);
}
int main()
{
test_inf_nan_float();
test_inf_nan_double();
test_inf_nan_long_double();
test_inf_nan_to_integral<int>();
test_inf_nan_to_integral<bool>();
test_inf_nan_to_integral<short>();
return boost::report_errors();
}
+176 -172
View File
@@ -4,7 +4,7 @@
//
// Copyright Terje Sletteb and Kevlin Henney, 2005.
// Copyright Alexander Nasonov, 2006.
// Copyright Antony Polukhin, 2011-2021.
// Copyright Antony Polukhin, 2011-2026.
//
// Distributed under the Boost
// Software License, Version 1.0. (See accompanying file
@@ -19,25 +19,20 @@
//
#define _SCL_SECURE_NO_WARNINGS
#include <boost/config.hpp>
#if defined(__INTEL_COMPILER)
#pragma warning(disable: 193 383 488 981 1418 1419)
#elif defined(BOOST_MSVC)
#pragma warning(disable: 4097 4100 4121 4127 4146 4244 4245 4511 4512 4701 4800)
#endif
#include <boost/lexical_cast.hpp>
#include <boost/cstdint.hpp>
#include <boost/test/unit_test.hpp>
#include <boost/test/tools/floating_point_comparison.hpp>
#include <boost/core/lightweight_test.hpp>
#include <boost/lexical_cast/detail/type_traits.hpp>
#include <boost/type_traits/integral_promotion.hpp>
#include <boost/type_traits/make_unsigned.hpp>
#include <string>
#include <sstream>
#include <vector>
#include <memory>
#include <type_traits>
#include <boost/lexical_cast.hpp>
#if (defined(BOOST_HAS_LONG_LONG) || defined(BOOST_HAS_MS_INT64)) \
&& !(defined(BOOST_MSVC) && BOOST_MSVC < 1300)
@@ -48,6 +43,11 @@
#define BOOST_LCAST_NO_WCHAR_T
#endif
// There's no typeinfo for unsigned __int128 in Xcode_15.0.1
#if defined(BOOST_HAS_INT128) && !defined(BOOST_LEXICAL_CAST_TEST_NO_128_INTS) && !defined(__APPLE__)
# define BOOST_LCAST_TEST_128 1
#endif
// Test all 65536 values if true:
bool const lcast_test_small_integral_types_completely = false;
@@ -57,112 +57,65 @@ int const lcast_integral_test_counter=500;
using namespace boost;
void test_conversion_from_to_short();
void test_conversion_from_to_ushort();
void test_conversion_from_to_int();
void test_conversion_from_to_uint();
void test_conversion_from_to_long();
void test_conversion_from_to_ulong();
void test_conversion_from_to_intmax_t();
void test_conversion_from_to_uintmax_t();
#ifdef LCAST_TEST_LONGLONG
void test_conversion_from_to_longlong();
void test_conversion_from_to_ulonglong();
#endif
#ifdef BOOST_HAS_INT128
void test_conversion_from_to_int128();
void test_conversion_from_to_uint128();
#endif
void test_integral_conversions_on_min_max();
unit_test::test_suite *init_unit_test_suite(int, char *[])
{
unit_test::test_suite *suite =
BOOST_TEST_SUITE("lexical_cast unit test on integral types");
suite->add(BOOST_TEST_CASE(&test_conversion_from_to_short));
suite->add(BOOST_TEST_CASE(&test_conversion_from_to_ushort));
suite->add(BOOST_TEST_CASE(&test_conversion_from_to_int));
suite->add(BOOST_TEST_CASE(&test_conversion_from_to_uint));
suite->add(BOOST_TEST_CASE(&test_conversion_from_to_long));
suite->add(BOOST_TEST_CASE(&test_conversion_from_to_ulong));
suite->add(BOOST_TEST_CASE(&test_conversion_from_to_intmax_t));
suite->add(BOOST_TEST_CASE(&test_conversion_from_to_uintmax_t));
#ifdef LCAST_TEST_LONGLONG
suite->add(BOOST_TEST_CASE(&test_conversion_from_to_longlong));
suite->add(BOOST_TEST_CASE(&test_conversion_from_to_ulonglong));
#endif
#ifdef BOOST_HAS_INT128
suite->add(BOOST_TEST_CASE(&test_conversion_from_to_int128));
suite->add(BOOST_TEST_CASE(&test_conversion_from_to_uint128));
#endif
suite->add(BOOST_TEST_CASE(&test_integral_conversions_on_min_max));
return suite;
}
template<class T, class CharT>
void test_conversion_from_integral_to_char(CharT zero)
{
BOOST_CHECK(lexical_cast<CharT>(static_cast<T>(0)) == zero + 0);
BOOST_CHECK(lexical_cast<CharT>(static_cast<T>(1)) == zero + 1);
BOOST_CHECK(lexical_cast<CharT>(static_cast<T>(2)) == zero + 2);
BOOST_CHECK(lexical_cast<CharT>(static_cast<T>(3)) == zero + 3);
BOOST_CHECK(lexical_cast<CharT>(static_cast<T>(4)) == zero + 4);
BOOST_CHECK(lexical_cast<CharT>(static_cast<T>(5)) == zero + 5);
BOOST_CHECK(lexical_cast<CharT>(static_cast<T>(6)) == zero + 6);
BOOST_CHECK(lexical_cast<CharT>(static_cast<T>(7)) == zero + 7);
BOOST_CHECK(lexical_cast<CharT>(static_cast<T>(8)) == zero + 8);
BOOST_CHECK(lexical_cast<CharT>(static_cast<T>(9)) == zero + 9);
BOOST_TEST(lexical_cast<CharT>(static_cast<T>(0)) == zero + 0);
BOOST_TEST(lexical_cast<CharT>(static_cast<T>(1)) == zero + 1);
BOOST_TEST(lexical_cast<CharT>(static_cast<T>(2)) == zero + 2);
BOOST_TEST(lexical_cast<CharT>(static_cast<T>(3)) == zero + 3);
BOOST_TEST(lexical_cast<CharT>(static_cast<T>(4)) == zero + 4);
BOOST_TEST(lexical_cast<CharT>(static_cast<T>(5)) == zero + 5);
BOOST_TEST(lexical_cast<CharT>(static_cast<T>(6)) == zero + 6);
BOOST_TEST(lexical_cast<CharT>(static_cast<T>(7)) == zero + 7);
BOOST_TEST(lexical_cast<CharT>(static_cast<T>(8)) == zero + 8);
BOOST_TEST(lexical_cast<CharT>(static_cast<T>(9)) == zero + 9);
BOOST_CHECK_THROW(lexical_cast<CharT>(static_cast<T>(10)), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<CharT>(static_cast<T>(10)), bad_lexical_cast);
T t = (std::numeric_limits<T>::max)();
BOOST_CHECK_THROW(lexical_cast<CharT>(t), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<CharT>(t), bad_lexical_cast);
}
template<class T, class CharT>
void test_conversion_from_char_to_integral(CharT zero)
{
BOOST_CHECK(lexical_cast<T>( static_cast<CharT>(zero + 0)) == static_cast<T>(0) );
BOOST_CHECK(lexical_cast<T>( static_cast<CharT>(zero + 1)) == static_cast<T>(1) );
BOOST_CHECK(lexical_cast<T>( static_cast<CharT>(zero + 2)) == static_cast<T>(2) );
BOOST_CHECK(lexical_cast<T>( static_cast<CharT>(zero + 3)) == static_cast<T>(3) );
BOOST_CHECK(lexical_cast<T>( static_cast<CharT>(zero + 4)) == static_cast<T>(4) );
BOOST_CHECK(lexical_cast<T>( static_cast<CharT>(zero + 5)) == static_cast<T>(5) );
BOOST_CHECK(lexical_cast<T>( static_cast<CharT>(zero + 6)) == static_cast<T>(6) );
BOOST_CHECK(lexical_cast<T>( static_cast<CharT>(zero + 7)) == static_cast<T>(7) );
BOOST_CHECK(lexical_cast<T>( static_cast<CharT>(zero + 8)) == static_cast<T>(8) );
BOOST_CHECK(lexical_cast<T>( static_cast<CharT>(zero + 9)) == static_cast<T>(9) );
BOOST_TEST(lexical_cast<T>( static_cast<CharT>(zero + 0)) == static_cast<T>(0) );
BOOST_TEST(lexical_cast<T>( static_cast<CharT>(zero + 1)) == static_cast<T>(1) );
BOOST_TEST(lexical_cast<T>( static_cast<CharT>(zero + 2)) == static_cast<T>(2) );
BOOST_TEST(lexical_cast<T>( static_cast<CharT>(zero + 3)) == static_cast<T>(3) );
BOOST_TEST(lexical_cast<T>( static_cast<CharT>(zero + 4)) == static_cast<T>(4) );
BOOST_TEST(lexical_cast<T>( static_cast<CharT>(zero + 5)) == static_cast<T>(5) );
BOOST_TEST(lexical_cast<T>( static_cast<CharT>(zero + 6)) == static_cast<T>(6) );
BOOST_TEST(lexical_cast<T>( static_cast<CharT>(zero + 7)) == static_cast<T>(7) );
BOOST_TEST(lexical_cast<T>( static_cast<CharT>(zero + 8)) == static_cast<T>(8) );
BOOST_TEST(lexical_cast<T>( static_cast<CharT>(zero + 9)) == static_cast<T>(9) );
BOOST_CHECK_THROW(lexical_cast<T>( static_cast<CharT>(zero + 10)), bad_lexical_cast);
BOOST_CHECK_THROW(lexical_cast<T>( static_cast<CharT>(zero - 1)), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<T>( static_cast<CharT>(zero + 10)), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<T>( static_cast<CharT>(zero - 1)), bad_lexical_cast);
}
template<class T>
void test_conversion_from_integral_to_integral()
{
T t = 0;
BOOST_CHECK(lexical_cast<T>(t) == t);
BOOST_TEST(lexical_cast<T>(t) == t);
// Next two variables are used to suppress warnings.
int st = 32767; unsigned int ut = st;
t = st;
BOOST_CHECK(lexical_cast<short>(t) == st);
BOOST_CHECK(lexical_cast<unsigned short>(t) == ut);
BOOST_CHECK(lexical_cast<int>(t) == st);
BOOST_CHECK(lexical_cast<unsigned int>(t) == ut);
BOOST_CHECK(lexical_cast<long>(t) == st);
BOOST_CHECK(lexical_cast<unsigned long>(t) == ut);
BOOST_TEST(lexical_cast<short>(t) == st);
BOOST_TEST(lexical_cast<unsigned short>(t) == ut);
BOOST_TEST(lexical_cast<int>(t) == st);
BOOST_TEST(lexical_cast<unsigned int>(t) == ut);
BOOST_TEST(lexical_cast<long>(t) == st);
BOOST_TEST(lexical_cast<unsigned long>(t) == ut);
t = (std::numeric_limits<T>::max)();
BOOST_CHECK(lexical_cast<T>(t) == t);
BOOST_TEST(lexical_cast<T>(t) == t);
t = (std::numeric_limits<T>::min)();
BOOST_CHECK(lexical_cast<T>(t) == t);
BOOST_TEST(lexical_cast<T>(t) == t);
}
@@ -207,39 +160,39 @@ void test_conversion_from_integral_to_string(CharT)
T t;
t = (limits::min)();
BOOST_CHECK(lexical_cast<string_type>(t) == to_str<CharT>(t));
BOOST_TEST(lexical_cast<string_type>(t) == to_str<CharT>(t));
t = (limits::max)();
BOOST_CHECK(lexical_cast<string_type>(t) == to_str<CharT>(t));
BOOST_TEST(lexical_cast<string_type>(t) == to_str<CharT>(t));
if(limits::digits <= 16 && lcast_test_small_integral_types_completely)
// min and max have already been tested.
for(t = 1 + (limits::min)(); t != (limits::max)(); ++t)
BOOST_CHECK(lexical_cast<string_type>(t) == to_str<CharT>(t));
BOOST_TEST(lexical_cast<string_type>(t) == to_str<CharT>(t));
else
{
T const min_val = (limits::min)();
T const max_val = (limits::max)();
T const half_max_val = max_val / 2;
T const cnt = lcast_integral_test_counter; // to suppress warnings
unsigned int const counter = cnt < half_max_val ? cnt : half_max_val;
T const counter = cnt < half_max_val ? cnt : half_max_val;
unsigned int i;
T i = 0;
// Test values around min:
t = min_val;
for(i = 0; i < counter; ++i, ++t)
BOOST_CHECK(lexical_cast<string_type>(t) == to_str<CharT>(t));
BOOST_TEST(lexical_cast<string_type>(t) == to_str<CharT>(t));
// Test values around max:
t = max_val;
for(i = 0; i < counter; ++i, --t)
BOOST_CHECK(lexical_cast<string_type>(t) == to_str<CharT>(t));
BOOST_TEST(lexical_cast<string_type>(t) == to_str<CharT>(t));
// Test values around zero:
if(limits::is_signed)
for(t = static_cast<T>(-counter); t < static_cast<T>(counter); ++t)
BOOST_CHECK(lexical_cast<string_type>(t) == to_str<CharT>(t));
BOOST_TEST(lexical_cast<string_type>(t) == to_str<CharT>(t));
// Test values around 100, 1000, 10000, ...
T ten_power = 100;
@@ -247,7 +200,7 @@ void test_conversion_from_integral_to_string(CharT)
{
// ten_power + 100 probably never overflows
for(t = ten_power - 100; t != ten_power + 100; ++t)
BOOST_CHECK(lexical_cast<string_type>(t) == to_str<CharT>(t));
BOOST_TEST(lexical_cast<string_type>(t) == to_str<CharT>(t));
}
}
}
@@ -265,23 +218,23 @@ void test_conversion_from_string_to_integral(CharT)
T const max_val = (limits::max)();
s = to_str<CharT>(min_val);
BOOST_CHECK_EQUAL(lexical_cast<T>(s), min_val);
BOOST_TEST_EQ(lexical_cast<T>(s), min_val);
if(limits::is_signed)
{
BOOST_CHECK_THROW(lexical_cast<T>(s + zero), bad_lexical_cast);
BOOST_CHECK_THROW(lexical_cast<T>(s + nine), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<T>(s + zero), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<T>(s + nine), bad_lexical_cast);
}
s = to_str<CharT>(max_val);
BOOST_CHECK_EQUAL(lexical_cast<T>(s), max_val);
BOOST_TEST_EQ(lexical_cast<T>(s), max_val);
{
BOOST_CHECK_THROW(lexical_cast<T>(s + zero), bad_lexical_cast);
BOOST_CHECK_THROW(lexical_cast<T>(s + nine), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<T>(s + zero), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<T>(s + nine), bad_lexical_cast);
s = to_str<CharT>(max_val);
for (int i =1; i <=10; ++i) {
s[s.size()-1] += 1;
BOOST_CHECK_THROW(lexical_cast<T>( s ), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<T>( s ), bad_lexical_cast);
}
s = to_str<CharT>(max_val);
@@ -289,23 +242,23 @@ void test_conversion_from_string_to_integral(CharT)
typedef std::numpunct<char> numpunct;
if ( BOOST_USE_FACET(numpunct, loc).grouping().empty() ) {
// Following tests work well for locale C
BOOST_CHECK_EQUAL(lexical_cast<T>(to_str<CharT>(0)+s), max_val);
BOOST_CHECK_EQUAL(lexical_cast<T>(to_str<CharT>(0)+to_str<CharT>(0)+s), max_val);
BOOST_CHECK_EQUAL(lexical_cast<T>(to_str<CharT>(0)+to_str<CharT>(0)+to_str<CharT>(0)+s), max_val);
BOOST_TEST_EQ(lexical_cast<T>(to_str<CharT>(0)+s), max_val);
BOOST_TEST_EQ(lexical_cast<T>(to_str<CharT>(0)+to_str<CharT>(0)+s), max_val);
BOOST_TEST_EQ(lexical_cast<T>(to_str<CharT>(0)+to_str<CharT>(0)+to_str<CharT>(0)+s), max_val);
}
for (int i =1; i <=256; ++i) {
BOOST_CHECK_THROW(lexical_cast<T>( to_str<CharT>(i)+s ), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<T>( to_str<CharT>(i)+s ), bad_lexical_cast);
}
typedef BOOST_DEDUCED_TYPENAME boost::integral_promotion<T>::type promoted;
if ( !(boost::is_same<T, promoted>::value) )
typedef typename boost::integral_promotion<T>::type promoted;
if ( !(std::is_same<T, promoted>::value) )
{
promoted prom = max_val;
s = to_str<CharT>(max_val);
for (int i =1; i <=256; ++i) {
BOOST_CHECK_THROW(lexical_cast<T>( to_str<CharT>(prom+i) ), bad_lexical_cast);
BOOST_CHECK_THROW(lexical_cast<T>( to_str<CharT>(i)+s ), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<T>( to_str<CharT>(prom+i) ), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<T>( to_str<CharT>(i)+s ), bad_lexical_cast);
}
}
}
@@ -313,30 +266,30 @@ void test_conversion_from_string_to_integral(CharT)
if(limits::digits <= 16 && lcast_test_small_integral_types_completely)
// min and max have already been tested.
for(T t = 1 + min_val; t != max_val; ++t)
BOOST_CHECK(lexical_cast<T>(to_str<CharT>(t)) == t);
BOOST_TEST(lexical_cast<T>(to_str<CharT>(t)) == t);
else
{
T const half_max_val = max_val / 2;
T const cnt = lcast_integral_test_counter; // to suppress warnings
unsigned int const counter = cnt < half_max_val ? cnt : half_max_val;
T const counter = cnt < half_max_val ? cnt : half_max_val;
T t;
unsigned int i;
T i;
// Test values around min:
t = min_val;
for(i = 0; i < counter; ++i, ++t)
BOOST_CHECK(lexical_cast<T>(to_str<CharT>(t)) == t);
BOOST_TEST(lexical_cast<T>(to_str<CharT>(t)) == t);
// Test values around max:
t = max_val;
for(i = 0; i < counter; ++i, --t)
BOOST_CHECK(lexical_cast<T>(to_str<CharT>(t)) == t);
BOOST_TEST(lexical_cast<T>(to_str<CharT>(t)) == t);
// Test values around zero:
if(limits::is_signed)
for(t = static_cast<T>(-counter); t < static_cast<T>(counter); ++t)
BOOST_CHECK(lexical_cast<T>(to_str<CharT>(t)) == t);
BOOST_TEST(lexical_cast<T>(to_str<CharT>(t)) == t);
// Test values around 100, 1000, 10000, ...
T ten_power = 100;
@@ -344,7 +297,7 @@ void test_conversion_from_string_to_integral(CharT)
{
// ten_power + 100 probably never overflows
for(t = ten_power - 100; t != ten_power + 100; ++t)
BOOST_CHECK(lexical_cast<T>(to_str<CharT>(t)) == t);
BOOST_TEST(lexical_cast<T>(to_str<CharT>(t)) == t);
}
}
}
@@ -357,26 +310,26 @@ void test_conversion_from_to_integral_for_locale()
numpunct const& np = BOOST_USE_FACET(numpunct, current_locale);
if ( !np.grouping().empty() )
{
BOOST_CHECK_THROW(
BOOST_TEST_THROWS(
lexical_cast<T>( std::string("100") + np.thousands_sep() + np.thousands_sep() + "0" )
, bad_lexical_cast);
BOOST_CHECK_THROW(lexical_cast<T>( std::string("100") + np.thousands_sep() ), bad_lexical_cast);
BOOST_CHECK_THROW(lexical_cast<T>( np.thousands_sep() + std::string("100") ), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<T>( std::string("100") + np.thousands_sep() ), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<T>( np.thousands_sep() + std::string("100") ), bad_lexical_cast);
// Exception must not be thrown, when we are using no separators at all
BOOST_CHECK( lexical_cast<T>("30000") == static_cast<T>(30000) );
BOOST_TEST( lexical_cast<T>("30000") == static_cast<T>(30000) );
}
test_conversion_from_integral_to_integral<T>();
// This is a part of test_conversion_from_integral_to_string<T>('0') method,
// but with BOOST_CHECK_EQUAL instead of BOOST_CHECK. It is required to see
// but with BOOST_TEST_EQ instead of BOOST_TEST. It is required to see
// what is produced by the to_str<char>(t) method in situations when result
// is different. BOOST_CHECK does not work with wchar_t.
// is different. BOOST_TEST does not work with wchar_t.
typedef std::numeric_limits<T> limits;
T t = (limits::min)();
BOOST_CHECK_EQUAL(lexical_cast<std::string>(t), to_str<char>(t));
BOOST_TEST_EQ(lexical_cast<std::string>(t), to_str<char>(t));
test_conversion_from_integral_to_string<T>('0');
test_conversion_from_string_to_integral<T>('0');
@@ -392,9 +345,9 @@ void test_conversion_from_to_integral_for_locale()
str.push_back(static_cast<char>(wstr[i]));
}
BOOST_CHECK_EQUAL(lcast_str.length(), lexical_cast<std::wstring>(t).length());
BOOST_CHECK_EQUAL(to_str<char>(t), str);
BOOST_CHECK_EQUAL(lcast_str, str);
BOOST_TEST_EQ(lcast_str.length(), lexical_cast<std::wstring>(t).length());
BOOST_TEST_EQ(to_str<char>(t), str);
BOOST_TEST_EQ(lcast_str, str);
}
test_conversion_from_integral_to_string<T>(L'0');
@@ -436,41 +389,41 @@ void test_conversion_from_to_integral_minimal()
test_conversion_from_char_to_integral<T>(u32zero);
#endif
BOOST_CHECK(lexical_cast<T>("-1") == static_cast<T>(-1));
BOOST_CHECK(lexical_cast<T>("-9") == static_cast<T>(-9));
BOOST_CHECK(lexical_cast<T>(-1) == static_cast<T>(-1));
BOOST_CHECK(lexical_cast<T>(-9) == static_cast<T>(-9));
BOOST_TEST(lexical_cast<T>("-1") == static_cast<T>(-1));
BOOST_TEST(lexical_cast<T>("-9") == static_cast<T>(-9));
BOOST_TEST(lexical_cast<T>(-1) == static_cast<T>(-1));
BOOST_TEST(lexical_cast<T>(-9) == static_cast<T>(-9));
BOOST_CHECK_THROW(lexical_cast<T>("-1.0"), bad_lexical_cast);
BOOST_CHECK_THROW(lexical_cast<T>("-9.0"), bad_lexical_cast);
BOOST_CHECK(lexical_cast<T>(-1.0) == static_cast<T>(-1));
BOOST_CHECK(lexical_cast<T>(-9.0) == static_cast<T>(-9));
BOOST_TEST_THROWS(lexical_cast<T>("-1.0"), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<T>("-9.0"), bad_lexical_cast);
BOOST_TEST(lexical_cast<T>(-1.0) == static_cast<T>(-1));
BOOST_TEST(lexical_cast<T>(-9.0) == static_cast<T>(-9));
BOOST_CHECK(lexical_cast<T>(static_cast<T>(1)) == static_cast<T>(1));
BOOST_CHECK(lexical_cast<T>(static_cast<T>(9)) == static_cast<T>(9));
BOOST_CHECK_THROW(lexical_cast<T>(1.1f), bad_lexical_cast);
BOOST_CHECK_THROW(lexical_cast<T>(1.1), bad_lexical_cast);
BOOST_CHECK_THROW(lexical_cast<T>(1.1L), bad_lexical_cast);
BOOST_CHECK_THROW(lexical_cast<T>(1.0001f), bad_lexical_cast);
BOOST_CHECK_THROW(lexical_cast<T>(1.0001), bad_lexical_cast);
BOOST_CHECK_THROW(lexical_cast<T>(1.0001L), bad_lexical_cast);
BOOST_TEST(lexical_cast<T>(static_cast<T>(1)) == static_cast<T>(1));
BOOST_TEST(lexical_cast<T>(static_cast<T>(9)) == static_cast<T>(9));
BOOST_TEST_THROWS(lexical_cast<T>(1.1f), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<T>(1.1), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<T>(1.1L), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<T>(1.0001f), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<T>(1.0001), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<T>(1.0001L), bad_lexical_cast);
BOOST_CHECK(lexical_cast<T>("+1") == static_cast<T>(1) );
BOOST_CHECK(lexical_cast<T>("+9") == static_cast<T>(9) );
BOOST_CHECK(lexical_cast<T>("+10") == static_cast<T>(10) );
BOOST_CHECK(lexical_cast<T>("+90") == static_cast<T>(90) );
BOOST_CHECK_THROW(lexical_cast<T>("++1"), bad_lexical_cast);
BOOST_CHECK_THROW(lexical_cast<T>("-+9"), bad_lexical_cast);
BOOST_CHECK_THROW(lexical_cast<T>("--1"), bad_lexical_cast);
BOOST_CHECK_THROW(lexical_cast<T>("+-9"), bad_lexical_cast);
BOOST_TEST(lexical_cast<T>("+1") == static_cast<T>(1) );
BOOST_TEST(lexical_cast<T>("+9") == static_cast<T>(9) );
BOOST_TEST(lexical_cast<T>("+10") == static_cast<T>(10) );
BOOST_TEST(lexical_cast<T>("+90") == static_cast<T>(90) );
BOOST_TEST_THROWS(lexical_cast<T>("++1"), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<T>("-+9"), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<T>("--1"), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<T>("+-9"), bad_lexical_cast);
// test_conversion_from_to_integral_for_locale
// Overflow test case from David W. Birdsall
std::string must_owerflow_str = (sizeof(T) < 16 ? "160000000000000000000" : "1600000000000000000000000000000000000000");
std::string must_owerflow_negative_str = (sizeof(T) < 16 ? "-160000000000000000000" : "-1600000000000000000000000000000000000000");
for (int i = 0; i < 15; ++i) {
BOOST_CHECK_THROW(lexical_cast<T>(must_owerflow_str), bad_lexical_cast);
BOOST_CHECK_THROW(lexical_cast<T>(must_owerflow_negative_str), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<T>(must_owerflow_str), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<T>(must_owerflow_negative_str), bad_lexical_cast);
must_owerflow_str += '0';
must_owerflow_negative_str += '0';
@@ -502,14 +455,14 @@ void test_conversion_from_to_integral()
{
std::string msg("Failed to set system locale: ");
msg += ex.what();
BOOST_TEST_MESSAGE(msg);
std::cerr << msg;
}
if(grouping1 != grouping2)
test_conversion_from_to_integral_for_locale<T>();
if(grouping1.empty() && grouping2.empty())
BOOST_TEST_MESSAGE("Formatting with thousands_sep has not been tested");
std::cerr << "Formatting with thousands_sep has not been tested";
}
void test_conversion_from_to_short()
@@ -579,7 +532,7 @@ void test_conversion_from_to_ulonglong()
#endif
#ifdef BOOST_HAS_INT128
#ifdef BOOST_LCAST_TEST_128
template <bool Specialized, class T>
struct test_if_specialized {
@@ -614,19 +567,19 @@ template <typename SignedT>
void test_integral_conversions_on_min_max_impl()
{
typedef SignedT signed_t;
typedef BOOST_DEDUCED_TYPENAME boost::make_unsigned<signed_t>::type unsigned_t;
typedef typename boost::detail::lcast::make_unsigned<signed_t>::type unsigned_t;
typedef std::numeric_limits<signed_t> s_limits;
typedef std::numeric_limits<unsigned_t> uns_limits;
BOOST_CHECK_EQUAL(lexical_cast<unsigned_t>((uns_limits::max)()), (uns_limits::max)());
BOOST_CHECK_EQUAL(lexical_cast<unsigned_t>((uns_limits::min)()), (uns_limits::min)());
BOOST_TEST_EQ(lexical_cast<unsigned_t>((uns_limits::max)()), (uns_limits::max)());
BOOST_TEST_EQ(lexical_cast<unsigned_t>((uns_limits::min)()), (uns_limits::min)());
BOOST_CHECK_EQUAL(lexical_cast<signed_t>((s_limits::max)()), (s_limits::max)());
BOOST_CHECK_EQUAL(lexical_cast<signed_t>((uns_limits::min)()), static_cast<signed_t>((uns_limits::min)()));
BOOST_TEST_EQ(lexical_cast<signed_t>((s_limits::max)()), (s_limits::max)());
BOOST_TEST_EQ(lexical_cast<signed_t>((uns_limits::min)()), static_cast<signed_t>((uns_limits::min)()));
BOOST_CHECK_EQUAL(lexical_cast<unsigned_t>((s_limits::max)()), static_cast<unsigned_t>((s_limits::max)()));
BOOST_CHECK_EQUAL(lexical_cast<unsigned_t>((s_limits::min)()), static_cast<unsigned_t>((s_limits::min)()));
BOOST_TEST_EQ(lexical_cast<unsigned_t>((s_limits::max)()), static_cast<unsigned_t>((s_limits::max)()));
BOOST_TEST_EQ(lexical_cast<unsigned_t>((s_limits::min)()), static_cast<unsigned_t>((s_limits::min)()));
}
void test_integral_conversions_on_min_max()
@@ -643,11 +596,62 @@ void test_integral_conversions_on_min_max()
test_integral_conversions_on_min_max_impl<__int64>();
#endif
#ifdef BOOST_HAS_INT128
#ifdef BOOST_LCAST_TEST_128
test_integral_conversions_on_min_max_impl<boost::int128_type>();
#endif
#endif
}
void test_negative_integral() {
// From https://github.com/boostorg/lexical_cast/issues/45
BOOST_TEST_EQ(boost::lexical_cast<int>("-6575543"), -6575543);
BOOST_TEST_EQ(boost::lexical_cast<int>(-6575543), -6575543);
BOOST_TEST_EQ(boost::lexical_cast<int>("+6575543"), +6575543);
BOOST_TEST_EQ(boost::lexical_cast<int>(6575543), 6575543);
if (sizeof(short) == 2 && CHAR_BIT == 8) {
BOOST_TEST_EQ(boost::lexical_cast<short>("-32768"), -32768);
BOOST_TEST_EQ(boost::lexical_cast<short>(-32768), -32768);
BOOST_TEST_EQ(boost::lexical_cast<unsigned short>("-32768"), 32768);
BOOST_TEST_EQ(boost::lexical_cast<unsigned short>(-32768), 32768);
BOOST_TEST_EQ(boost::lexical_cast<unsigned short>(65535), 65535);
BOOST_TEST_THROWS(boost::lexical_cast<unsigned short>(-65536), bad_lexical_cast);
BOOST_TEST_EQ(boost::lexical_cast<unsigned short>(-65535), 1);
BOOST_TEST_EQ(boost::lexical_cast<unsigned short>(-65534), 2);
BOOST_TEST_THROWS(boost::lexical_cast<short>(65535), bad_lexical_cast);
BOOST_TEST_THROWS(boost::lexical_cast<short>(-65536), bad_lexical_cast);
BOOST_TEST_THROWS(boost::lexical_cast<short>(-65535), bad_lexical_cast);
}
}
int main()
{
test_conversion_from_to_short();
test_conversion_from_to_ushort();
test_conversion_from_to_int();
test_conversion_from_to_uint();
test_conversion_from_to_long();
test_conversion_from_to_ulong();
test_conversion_from_to_intmax_t();
test_conversion_from_to_uintmax_t();
#ifdef LCAST_TEST_LONGLONG
test_conversion_from_to_longlong();
test_conversion_from_to_ulonglong();
#endif
#ifdef BOOST_LCAST_TEST_128
test_conversion_from_to_int128();
test_conversion_from_to_uint128();
#endif
test_integral_conversions_on_min_max();
test_negative_integral();
return boost::report_errors();
}
+68 -75
View File
@@ -2,25 +2,19 @@
//
// See http://www.boost.org for most recent version, including documentation.
//
// Copyright Antony Polukhin, 2012-2021.
// Copyright Antony Polukhin, 2012-2026.
//
// Distributed under the Boost
// Software License, Version 1.0. (See accompanying file
// LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt).
#include <boost/config.hpp>
#if defined(__INTEL_COMPILER)
#pragma warning(disable: 193 383 488 981 1418 1419)
#elif defined(BOOST_MSVC)
#pragma warning(disable: 4097 4100 4121 4127 4146 4244 4245 4511 4512 4701 4800)
#endif
#include <boost/range/iterator_range.hpp>
#include <boost/core/lightweight_test.hpp>
#include <boost/lexical_cast.hpp>
#include <boost/test/unit_test.hpp>
#include <boost/range/iterator_range.hpp>
using namespace boost;
#if defined(BOOST_NO_STRINGSTREAM) || defined(BOOST_NO_STD_WSTRING)
@@ -54,40 +48,40 @@ inline std::basic_istream<CharT>& operator >> (std::basic_istream<CharT>& istr,
template <class RngT>
void do_test_iterator_range_impl(const RngT& rng)
{
BOOST_CHECK_EQUAL(lexical_cast<int>(rng), 1);
BOOST_CHECK_EQUAL(lexical_cast<int>(rng.begin(), rng.size()), 1);
BOOST_CHECK_EQUAL(lexical_cast<unsigned int>(rng), 1u);
BOOST_CHECK_EQUAL(lexical_cast<unsigned int>(rng.begin(), rng.size()), 1u);
BOOST_CHECK_EQUAL(lexical_cast<short>(rng), 1);
BOOST_CHECK_EQUAL(lexical_cast<short>(rng.begin(), rng.size()), 1);
BOOST_CHECK_EQUAL(lexical_cast<unsigned short>(rng), 1u);
BOOST_CHECK_EQUAL(lexical_cast<unsigned short>(rng.begin(), rng.size()), 1u);
BOOST_CHECK_EQUAL(lexical_cast<long int>(rng), 1);
BOOST_CHECK_EQUAL(lexical_cast<long int>(rng.begin(), rng.size()), 1);
BOOST_CHECK_EQUAL(lexical_cast<unsigned long int>(rng), 1u);
BOOST_CHECK_EQUAL(lexical_cast<unsigned long int>(rng.begin(), rng.size()), 1u);
BOOST_TEST_EQ(lexical_cast<int>(rng), 1);
BOOST_TEST_EQ(lexical_cast<int>(rng.begin(), rng.size()), 1);
BOOST_TEST_EQ(lexical_cast<unsigned int>(rng), 1u);
BOOST_TEST_EQ(lexical_cast<unsigned int>(rng.begin(), rng.size()), 1u);
BOOST_TEST_EQ(lexical_cast<short>(rng), 1);
BOOST_TEST_EQ(lexical_cast<short>(rng.begin(), rng.size()), 1);
BOOST_TEST_EQ(lexical_cast<unsigned short>(rng), 1u);
BOOST_TEST_EQ(lexical_cast<unsigned short>(rng.begin(), rng.size()), 1u);
BOOST_TEST_EQ(lexical_cast<long int>(rng), 1);
BOOST_TEST_EQ(lexical_cast<long int>(rng.begin(), rng.size()), 1);
BOOST_TEST_EQ(lexical_cast<unsigned long int>(rng), 1u);
BOOST_TEST_EQ(lexical_cast<unsigned long int>(rng.begin(), rng.size()), 1u);
#ifdef BOOST_STL_SUPPORTS_NEW_UNICODE_LOCALES
BOOST_CHECK_EQUAL(lexical_cast<float>(rng), 1.0f);
BOOST_CHECK_EQUAL(lexical_cast<float>(rng.begin(), rng.size()), 1.0f);
BOOST_CHECK_EQUAL(lexical_cast<double>(rng), 1.0);
BOOST_CHECK_EQUAL(lexical_cast<double>(rng.begin(), rng.size()), 1.0);
BOOST_TEST_EQ(lexical_cast<float>(rng), 1.0f);
BOOST_TEST_EQ(lexical_cast<float>(rng.begin(), rng.size()), 1.0f);
BOOST_TEST_EQ(lexical_cast<double>(rng), 1.0);
BOOST_TEST_EQ(lexical_cast<double>(rng.begin(), rng.size()), 1.0);
#ifndef BOOST_MATH_NO_LONG_DOUBLE_MATH_FUNCTIONS
BOOST_CHECK_EQUAL(lexical_cast<long double>(rng), 1.0L);
BOOST_CHECK_EQUAL(lexical_cast<long double>(rng.begin(), rng.size()), 1.0L);
BOOST_TEST_EQ(lexical_cast<long double>(rng), 1.0L);
BOOST_TEST_EQ(lexical_cast<long double>(rng.begin(), rng.size()), 1.0L);
#endif
BOOST_CHECK_EQUAL(lexical_cast<class_with_user_defined_sream_operators>(rng), 1);
BOOST_TEST_EQ(lexical_cast<class_with_user_defined_sream_operators>(rng), 1);
#endif
#if defined(BOOST_HAS_LONG_LONG)
BOOST_CHECK_EQUAL(lexical_cast<boost::ulong_long_type>(rng), 1u);
BOOST_CHECK_EQUAL(lexical_cast<boost::ulong_long_type>(rng.begin(), rng.size()), 1u);
BOOST_CHECK_EQUAL(lexical_cast<boost::long_long_type>(rng), 1);
BOOST_CHECK_EQUAL(lexical_cast<boost::long_long_type>(rng.begin(), rng.size()), 1);
BOOST_TEST_EQ(lexical_cast<boost::ulong_long_type>(rng), 1u);
BOOST_TEST_EQ(lexical_cast<boost::ulong_long_type>(rng.begin(), rng.size()), 1u);
BOOST_TEST_EQ(lexical_cast<boost::long_long_type>(rng), 1);
BOOST_TEST_EQ(lexical_cast<boost::long_long_type>(rng.begin(), rng.size()), 1);
#elif defined(BOOST_HAS_MS_INT64)
BOOST_CHECK_EQUAL(lexical_cast<unsigned __int64>(rng), 1u);
BOOST_CHECK_EQUAL(lexical_cast<unsigned __int64>(rng.begin(), rng.size()), 1u);
BOOST_CHECK_EQUAL(lexical_cast<__int64>(rng), 1);
BOOST_CHECK_EQUAL(lexical_cast<__int64>(rng.begin(), rng.size()), 1);
BOOST_TEST_EQ(lexical_cast<unsigned __int64>(rng), 1u);
BOOST_TEST_EQ(lexical_cast<unsigned __int64>(rng.begin(), rng.size()), 1u);
BOOST_TEST_EQ(lexical_cast<__int64>(rng), 1);
BOOST_TEST_EQ(lexical_cast<__int64>(rng.begin(), rng.size()), 1);
#endif
}
@@ -117,52 +111,52 @@ void test_it_range_using_char(CharT* one, CharT* eleven)
typedef CharT test_char_type;
iterator_range<test_char_type*> rng1(one, one + 1);
BOOST_CHECK_EQUAL(lexical_cast<std::string>(rng1), "1");
BOOST_TEST_EQ(lexical_cast<std::string>(rng1), "1");
iterator_range<const test_char_type*> crng1(one, one + 1);
BOOST_CHECK_EQUAL(lexical_cast<std::string>(crng1), "1");
BOOST_TEST_EQ(lexical_cast<std::string>(crng1), "1");
iterator_range<test_char_type*> rng2(eleven, eleven + 1);
BOOST_CHECK_EQUAL(lexical_cast<std::string>(rng2), "1");
BOOST_TEST_EQ(lexical_cast<std::string>(rng2), "1");
iterator_range<const test_char_type*> crng2(eleven, eleven + 1);
BOOST_CHECK_EQUAL(lexical_cast<std::string>(crng2), "1");
BOOST_TEST_EQ(lexical_cast<std::string>(crng2), "1");
BOOST_CHECK_EQUAL(lexical_cast<float>(rng1), 1.0f);
BOOST_CHECK_EQUAL(lexical_cast<double>(rng1), 1.0);
BOOST_TEST_EQ(lexical_cast<float>(rng1), 1.0f);
BOOST_TEST_EQ(lexical_cast<double>(rng1), 1.0);
#ifndef BOOST_MATH_NO_LONG_DOUBLE_MATH_FUNCTIONS
BOOST_CHECK_EQUAL(lexical_cast<long double>(rng1), 1.0L);
BOOST_TEST_EQ(lexical_cast<long double>(rng1), 1.0L);
#endif
BOOST_CHECK_EQUAL(lexical_cast<class_with_user_defined_sream_operators>(rng1), 1);
BOOST_TEST_EQ(lexical_cast<class_with_user_defined_sream_operators>(rng1), 1);
BOOST_CHECK_EQUAL(lexical_cast<float>(crng2), 1.0f);
BOOST_CHECK_EQUAL(lexical_cast<double>(crng2), 1.0);
BOOST_TEST_EQ(lexical_cast<float>(crng2), 1.0f);
BOOST_TEST_EQ(lexical_cast<double>(crng2), 1.0);
#ifndef BOOST_MATH_NO_LONG_DOUBLE_MATH_FUNCTIONS
BOOST_CHECK_EQUAL(lexical_cast<long double>(crng2), 1.0L);
BOOST_TEST_EQ(lexical_cast<long double>(crng2), 1.0L);
#endif
BOOST_CHECK_EQUAL(lexical_cast<class_with_user_defined_sream_operators>(crng2), 1);
BOOST_TEST_EQ(lexical_cast<class_with_user_defined_sream_operators>(crng2), 1);
#ifndef BOOST_LCAST_NO_WCHAR_T
BOOST_CHECK(lexical_cast<std::wstring>(rng1) == L"1");
BOOST_CHECK(lexical_cast<std::wstring>(crng1) == L"1");
BOOST_CHECK(lexical_cast<std::wstring>(rng2) == L"1");
BOOST_CHECK(lexical_cast<std::wstring>(crng2) == L"1");
#if !defined(BOOST_LCAST_NO_WCHAR_T) && !defined(_LIBCPP_VERSION)
BOOST_TEST(lexical_cast<std::wstring>(rng1) == L"1");
BOOST_TEST(lexical_cast<std::wstring>(crng1) == L"1");
BOOST_TEST(lexical_cast<std::wstring>(rng2) == L"1");
BOOST_TEST(lexical_cast<std::wstring>(crng2) == L"1");
#endif
#if defined(BOOST_LC_RUNU16) && defined(BOOST_STL_SUPPORTS_NEW_UNICODE_LOCALES)
typedef std::basic_string<char16_t> my_char16_string;
BOOST_CHECK(lexical_cast<my_char16_string>(rng1) == u"1");
BOOST_CHECK(lexical_cast<my_char16_string>(crng1) == u"1");
BOOST_CHECK(lexical_cast<my_char16_string>(rng2) == u"1");
BOOST_CHECK(lexical_cast<my_char16_string>(crng2) == u"1");
BOOST_TEST(lexical_cast<my_char16_string>(rng1) == u"1");
BOOST_TEST(lexical_cast<my_char16_string>(crng1) == u"1");
BOOST_TEST(lexical_cast<my_char16_string>(rng2) == u"1");
BOOST_TEST(lexical_cast<my_char16_string>(crng2) == u"1");
#endif
#if defined(BOOST_LC_RUNU32) && defined(BOOST_STL_SUPPORTS_NEW_UNICODE_LOCALES)
typedef std::basic_string<char32_t> my_char32_string;
BOOST_CHECK(lexical_cast<my_char32_string>(rng1) == U"1");
BOOST_CHECK(lexical_cast<my_char32_string>(crng1) == U"1");
BOOST_CHECK(lexical_cast<my_char32_string>(rng2) == U"1");
BOOST_CHECK(lexical_cast<my_char32_string>(crng2) == U"1");
BOOST_TEST(lexical_cast<my_char32_string>(rng1) == U"1");
BOOST_TEST(lexical_cast<my_char32_string>(crng1) == U"1");
BOOST_TEST(lexical_cast<my_char32_string>(rng2) == U"1");
BOOST_TEST(lexical_cast<my_char32_string>(crng2) == U"1");
#endif
}
@@ -197,14 +191,14 @@ void test_signed_char_iterator_ranges()
void test_wchar_iterator_ranges()
{
#ifndef BOOST_LCAST_NO_WCHAR_T
#if !defined(BOOST_LCAST_NO_WCHAR_T) && !defined(_LIBCPP_VERSION)
typedef wchar_t test_char_type;
test_char_type data1[] = L"1";
test_char_type data2[] = L"11";
test_it_range_using_any_chars(data1, data2);
#endif
BOOST_CHECK(true);
BOOST_TEST(true);
}
void test_char16_iterator_ranges()
@@ -216,7 +210,7 @@ void test_char16_iterator_ranges()
test_it_range_using_any_chars(data1, data2);
#endif
BOOST_CHECK(true);
BOOST_TEST(true);
}
void test_char32_iterator_ranges()
@@ -228,18 +222,17 @@ void test_char32_iterator_ranges()
test_it_range_using_any_chars(data1, data2);
#endif
BOOST_CHECK(true);
BOOST_TEST(true);
}
unit_test::test_suite *init_unit_test_suite(int, char *[])
int main()
{
unit_test::test_suite *suite = BOOST_TEST_SUITE("lexical_cast. Testing conversions using iterator_range<>");
suite->add(BOOST_TEST_CASE(&test_char_iterator_ranges));
suite->add(BOOST_TEST_CASE(&test_unsigned_char_iterator_ranges));
suite->add(BOOST_TEST_CASE(&test_signed_char_iterator_ranges));
suite->add(BOOST_TEST_CASE(&test_wchar_iterator_ranges));
suite->add(BOOST_TEST_CASE(&test_char16_iterator_ranges));
suite->add(BOOST_TEST_CASE(&test_char32_iterator_ranges));
test_char_iterator_ranges();
test_unsigned_char_iterator_ranges();
test_signed_char_iterator_ranges();
test_wchar_iterator_ranges();
test_char16_iterator_ranges();
test_char32_iterator_ranges();
return suite;
return boost::report_errors();
}
@@ -1,6 +1,6 @@
// Copyright Kevlin Henney, 2000-2005.
// Copyright Alexander Nasonov, 2006-2010.
// Copyright Antony Polukhin, 2011-2021.
// Copyright Antony Polukhin, 2011-2026.
//
// Distributed under the Boost Software License, Version 1.0. (See
// accompanying file LICENSE_1_0.txt or copy at
@@ -32,11 +32,9 @@
#include <string>
#include <cstring>
#include <cstdio>
#include <type_traits>
#include <boost/limits.hpp>
#include <boost/type_traits/is_pointer.hpp>
#include <boost/static_assert.hpp>
#include <boost/detail/lcast_precision.hpp>
#include <boost/detail/workaround.hpp>
#include <boost/config/workaround.hpp>
#ifdef BOOST_NO_STRINGSTREAM
#include <strstream>
@@ -44,6 +42,10 @@
#include <sstream>
#endif
#if defined(BOOST_USE_MODULES)
#undef BOOST_USE_MODULES
#endif
#include <boost/lexical_cast/detail/lcast_precision.hpp>
#include <boost/lexical_cast/bad_lexical_cast.hpp>
#include <boost/lexical_cast/detail/widest_char.hpp>
@@ -116,7 +118,7 @@ namespace boost {
template<typename InputStreamable>
bool operator>>(InputStreamable &output)
{
return !is_pointer<InputStreamable>::value &&
return !std::is_pointer<InputStreamable>::value &&
stream >> output &&
stream.get() == traits_type::eof();
}
@@ -154,13 +156,13 @@ namespace boost {
Target lexical_cast(Source arg)
{
typedef typename detail::widest_char<
BOOST_DEDUCED_TYPENAME detail::stream_char<Target>::type
, BOOST_DEDUCED_TYPENAME detail::stream_char<Source>::type
typename detail::stream_char<Target>::type
, typename detail::stream_char<Source>::type
>::type char_type;
typedef std::char_traits<char_type> traits;
detail::lexical_stream<Target, Source, traits> interpreter;
Target result;
Target result{};
if(!(interpreter << arg && interpreter >> result))
boost::conversion::detail::throw_bad_cast<Source, Target>();
+287 -335
View File
@@ -4,7 +4,7 @@
//
// Copyright Terje Sletteb and Kevlin Henney, 2005.
// Copyright Alexander Nasonov, 2006.
// Copyright Antony Polukhin, 2011-2021.
// Copyright Antony Polukhin, 2011-2026.
//
// Distributed under the Boost
// Software License, Version 1.0. (See accompanying file
@@ -19,19 +19,9 @@
//
#define _SCL_SECURE_NO_WARNINGS
#include <boost/config.hpp>
#if defined(__INTEL_COMPILER)
#pragma warning(disable: 193 383 488 981 1418 1419)
#elif defined(BOOST_MSVC)
#pragma warning(disable: 4097 4100 4121 4127 4146 4244 4245 4511 4512 4701 4800)
#endif
#include <boost/lexical_cast.hpp>
#include <boost/cstdint.hpp>
#include <boost/test/unit_test.hpp>
#include <boost/test/tools/floating_point_comparison.hpp>
#include <boost/core/lightweight_test.hpp>
#include <boost/type_traits/integral_promotion.hpp>
#include <string>
@@ -39,6 +29,8 @@
#include <algorithm> // std::transform
#include <memory>
#include <boost/lexical_cast.hpp>
#if (defined(BOOST_HAS_LONG_LONG) || defined(BOOST_HAS_MS_INT64)) \
&& !(defined(BOOST_MSVC) && BOOST_MSVC < 1300)
#define LCAST_TEST_LONGLONG
@@ -48,6 +40,11 @@
#define BOOST_LCAST_NO_WCHAR_T
#endif
#ifndef BOOST_TEST_CLOSE_FRACTION
// Naiive, but works for tests in this file
#define BOOST_TEST_CLOSE_FRACTION(x, y, eps) BOOST_TEST(x - y + eps <= eps * 2)
#endif
template<class CharT>
struct my_traits : std::char_traits<CharT>
{
@@ -66,131 +63,61 @@ struct my_allocator : std::allocator<CharT>
using namespace boost;
void test_conversion_to_char();
void test_conversion_to_int();
void test_conversion_to_double();
void test_conversion_to_bool();
void test_conversion_with_nonconst_char();
void test_conversion_to_string();
void test_conversion_from_to_wchar_t_alias();
void test_conversion_from_wchar_t();
void test_conversion_to_wchar_t();
void test_conversion_from_wstring();
void test_conversion_to_wstring();
void test_bad_lexical_cast();
void test_no_whitespace_stripping();
void test_volatile_types_conversions();
#ifndef BOOST_NO_TEMPLATE_PARTIAL_SPECIALIZATION
void test_traits();
void test_wtraits();
void test_allocator();
void test_wallocator();
#endif
void test_char_types_conversions();
void operators_overload_test();
#if !defined(BOOST_NO_CXX11_CHAR16_T) && !defined(BOOST_NO_CXX11_UNICODE_LITERALS)
void test_char16_conversions();
#endif
#if !defined(BOOST_NO_CXX11_CHAR32_T) && !defined(BOOST_NO_CXX11_UNICODE_LITERALS)
void test_char32_conversions();
#endif
void test_getting_pointer_to_function();
unit_test::test_suite *init_unit_test_suite(int, char *[])
{
unit_test::test_suite *suite =
BOOST_TEST_SUITE("lexical_cast unit test");
suite->add(BOOST_TEST_CASE(test_conversion_to_char));
suite->add(BOOST_TEST_CASE(test_conversion_to_int));
suite->add(BOOST_TEST_CASE(test_conversion_to_double));
suite->add(BOOST_TEST_CASE(test_conversion_to_bool));
suite->add(BOOST_TEST_CASE(test_conversion_from_to_wchar_t_alias));
suite->add(BOOST_TEST_CASE(test_conversion_to_string));
suite->add(BOOST_TEST_CASE(test_conversion_with_nonconst_char));
#ifndef BOOST_LCAST_NO_WCHAR_T
suite->add(BOOST_TEST_CASE(test_conversion_from_wchar_t));
suite->add(BOOST_TEST_CASE(test_conversion_to_wchar_t));
suite->add(BOOST_TEST_CASE(test_conversion_from_wstring));
suite->add(BOOST_TEST_CASE(test_conversion_to_wstring));
#endif
suite->add(BOOST_TEST_CASE(test_bad_lexical_cast));
suite->add(BOOST_TEST_CASE(test_no_whitespace_stripping));
suite->add(BOOST_TEST_CASE(test_volatile_types_conversions));
#ifndef BOOST_NO_TEMPLATE_PARTIAL_SPECIALIZATION
suite->add(BOOST_TEST_CASE(&test_traits));
suite->add(BOOST_TEST_CASE(&test_wtraits));
suite->add(BOOST_TEST_CASE(&test_allocator));
suite->add(BOOST_TEST_CASE(&test_wallocator));
#endif
suite->add(BOOST_TEST_CASE(&test_char_types_conversions));
suite->add(BOOST_TEST_CASE(&operators_overload_test));
#if !defined(BOOST_NO_CXX11_CHAR16_T) && !defined(BOOST_NO_CXX11_UNICODE_LITERALS)
suite->add(BOOST_TEST_CASE(&test_char16_conversions));
#endif
#if !defined(BOOST_NO_CXX11_CHAR32_T) && !defined(BOOST_NO_CXX11_UNICODE_LITERALS)
suite->add(BOOST_TEST_CASE(&test_char32_conversions));
#endif
suite->add(BOOST_TEST_CASE(&test_getting_pointer_to_function));
return suite;
}
void test_conversion_to_char()
{
BOOST_CHECK_EQUAL('A', lexical_cast<char>('A'));
BOOST_CHECK_EQUAL(' ', lexical_cast<char>(' '));
BOOST_CHECK_EQUAL('1', lexical_cast<char>(1));
BOOST_CHECK_EQUAL('0', lexical_cast<char>(0));
BOOST_CHECK_THROW(lexical_cast<char>(123), bad_lexical_cast);
BOOST_CHECK_EQUAL('1', lexical_cast<char>(1.0));
BOOST_CHECK_EQUAL('1', lexical_cast<char>(true));
BOOST_CHECK_EQUAL('0', lexical_cast<char>(false));
BOOST_CHECK_EQUAL('A', lexical_cast<char>("A"));
BOOST_CHECK_EQUAL(' ', lexical_cast<char>(" "));
BOOST_CHECK_THROW(lexical_cast<char>(""), bad_lexical_cast);
BOOST_CHECK_THROW(lexical_cast<char>("Test"), bad_lexical_cast);
BOOST_CHECK_EQUAL('A', lexical_cast<char>(std::string("A")));
BOOST_CHECK_EQUAL(' ', lexical_cast<char>(std::string(" ")));
BOOST_CHECK_THROW(
BOOST_TEST_EQ('A', lexical_cast<char>('A'));
BOOST_TEST_EQ(' ', lexical_cast<char>(' '));
BOOST_TEST_EQ('1', lexical_cast<char>(1));
BOOST_TEST_EQ('0', lexical_cast<char>(0));
BOOST_TEST_THROWS(lexical_cast<char>(123), bad_lexical_cast);
BOOST_TEST_EQ('1', lexical_cast<char>(1.0));
BOOST_TEST_EQ('1', lexical_cast<char>(true));
BOOST_TEST_EQ('0', lexical_cast<char>(false));
BOOST_TEST_EQ('A', lexical_cast<char>("A"));
BOOST_TEST_EQ(' ', lexical_cast<char>(" "));
BOOST_TEST_THROWS(lexical_cast<char>(""), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<char>("Test"), bad_lexical_cast);
BOOST_TEST_EQ('A', lexical_cast<char>(std::string("A")));
BOOST_TEST_EQ(' ', lexical_cast<char>(std::string(" ")));
BOOST_TEST_THROWS(
lexical_cast<char>(std::string("")), bad_lexical_cast);
BOOST_CHECK_THROW(
BOOST_TEST_THROWS(
lexical_cast<char>(std::string("Test")), bad_lexical_cast);
}
void test_conversion_to_int()
{
BOOST_CHECK_EQUAL(1, lexical_cast<int>('1'));
BOOST_CHECK_EQUAL(0, lexical_cast<int>('0'));
BOOST_CHECK_THROW(lexical_cast<int>('A'), bad_lexical_cast);
BOOST_CHECK_EQUAL(1, lexical_cast<int>(1));
BOOST_CHECK_EQUAL(1, lexical_cast<int>(1.0));
BOOST_TEST_EQ(1, lexical_cast<int>('1'));
BOOST_TEST_EQ(0, lexical_cast<int>('0'));
BOOST_TEST_THROWS(lexical_cast<int>('A'), bad_lexical_cast);
BOOST_TEST_EQ(1, lexical_cast<int>(1));
BOOST_TEST_EQ(1, lexical_cast<int>(1.0));
BOOST_CHECK_EQUAL(
BOOST_TEST_EQ(
(std::numeric_limits<int>::max)(),
lexical_cast<int>((std::numeric_limits<int>::max)()));
BOOST_CHECK_EQUAL(
BOOST_TEST_EQ(
(std::numeric_limits<int>::min)(),
lexical_cast<int>((std::numeric_limits<int>::min)()));
BOOST_CHECK_THROW(lexical_cast<int>(1.23), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<int>(1.23), bad_lexical_cast);
BOOST_CHECK_THROW(lexical_cast<int>(1e20), bad_lexical_cast);
BOOST_CHECK_EQUAL(1, lexical_cast<int>(true));
BOOST_CHECK_EQUAL(0, lexical_cast<int>(false));
BOOST_CHECK_EQUAL(123, lexical_cast<int>("123"));
BOOST_CHECK_THROW(
BOOST_TEST_THROWS(lexical_cast<int>(1e20), bad_lexical_cast);
BOOST_TEST_EQ(1, lexical_cast<int>(true));
BOOST_TEST_EQ(0, lexical_cast<int>(false));
BOOST_TEST_EQ(123, lexical_cast<int>("123"));
BOOST_TEST_THROWS(
lexical_cast<int>(" 123"), bad_lexical_cast);
BOOST_CHECK_THROW(lexical_cast<int>(""), bad_lexical_cast);
BOOST_CHECK_THROW(lexical_cast<int>("Test"), bad_lexical_cast);
BOOST_CHECK_EQUAL(123, lexical_cast<int>("123"));
BOOST_CHECK_EQUAL(123, lexical_cast<int>(std::string("123")));
BOOST_CHECK_THROW(
BOOST_TEST_THROWS(lexical_cast<int>(""), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<int>("Test"), bad_lexical_cast);
BOOST_TEST_EQ(123, lexical_cast<int>("123"));
BOOST_TEST_EQ(123, lexical_cast<int>(std::string("123")));
BOOST_TEST_THROWS(
lexical_cast<int>(std::string(" 123")), bad_lexical_cast);
BOOST_CHECK_THROW(
BOOST_TEST_THROWS(
lexical_cast<int>(std::string("")), bad_lexical_cast);
BOOST_CHECK_THROW(
BOOST_TEST_THROWS(
lexical_cast<int>(std::string("Test")), bad_lexical_cast);
}
@@ -199,222 +126,222 @@ void test_conversion_with_nonconst_char()
std::vector<char> buffer;
buffer.push_back('1');
buffer.push_back('\0');
BOOST_CHECK_EQUAL(boost::lexical_cast<int>(&buffer[0]), 1);
BOOST_TEST_EQ(boost::lexical_cast<int>(&buffer[0]), 1);
std::vector<unsigned char> buffer2;
buffer2.push_back('1');
buffer2.push_back('\0');
BOOST_CHECK_EQUAL(boost::lexical_cast<int>(&buffer2[0]), 1);
BOOST_TEST_EQ(boost::lexical_cast<int>(&buffer2[0]), 1);
std::vector<unsigned char> buffer3;
buffer3.push_back('1');
buffer3.push_back('\0');
BOOST_CHECK_EQUAL(boost::lexical_cast<int>(&buffer3[0]), 1);
BOOST_TEST_EQ(boost::lexical_cast<int>(&buffer3[0]), 1);
#ifndef BOOST_LCAST_NO_WCHAR_T
std::vector<wchar_t> buffer4;
buffer4.push_back(L'1');
buffer4.push_back(L'\0');
BOOST_CHECK_EQUAL(boost::lexical_cast<int>(&buffer4[0]), 1);
BOOST_TEST_EQ(boost::lexical_cast<int>(&buffer4[0]), 1);
#endif
}
void test_conversion_to_double()
{
BOOST_CHECK_CLOSE_FRACTION(1.0, lexical_cast<double>('1'), (std::numeric_limits<double>::epsilon()));
BOOST_CHECK_THROW(lexical_cast<double>('A'), bad_lexical_cast);
BOOST_CHECK_CLOSE_FRACTION(1.0, lexical_cast<double>(1), (std::numeric_limits<double>::epsilon()));
BOOST_CHECK_CLOSE_FRACTION(1.23, lexical_cast<double>(1.23), (std::numeric_limits<double>::epsilon()));
BOOST_CHECK_CLOSE_FRACTION(1.234567890, lexical_cast<double>(1.234567890), std::numeric_limits<double>::epsilon());
BOOST_CHECK_CLOSE_FRACTION(1.234567890, lexical_cast<double>("1.234567890"), std::numeric_limits<double>::epsilon());
BOOST_CHECK_CLOSE_FRACTION(1.0, lexical_cast<double>(true), (std::numeric_limits<double>::epsilon()));
BOOST_CHECK_CLOSE_FRACTION(0.0, lexical_cast<double>(false), (std::numeric_limits<double>::epsilon()));
BOOST_CHECK_CLOSE_FRACTION(1.23, lexical_cast<double>("1.23"), (std::numeric_limits<double>::epsilon()));
BOOST_CHECK_THROW(lexical_cast<double>(""), bad_lexical_cast);
BOOST_CHECK_THROW(lexical_cast<double>("Test"), bad_lexical_cast);
BOOST_CHECK_CLOSE_FRACTION(1.23, lexical_cast<double>(std::string("1.23")), (std::numeric_limits<double>::epsilon()));
BOOST_CHECK_THROW(
BOOST_TEST_CLOSE_FRACTION(1.0, lexical_cast<double>('1'), (std::numeric_limits<double>::epsilon()));
BOOST_TEST_THROWS(lexical_cast<double>('A'), bad_lexical_cast);
BOOST_TEST_CLOSE_FRACTION(1.0, lexical_cast<double>(1), (std::numeric_limits<double>::epsilon()));
BOOST_TEST_CLOSE_FRACTION(1.23, lexical_cast<double>(1.23), (std::numeric_limits<double>::epsilon()));
BOOST_TEST_CLOSE_FRACTION(1.234567890, lexical_cast<double>(1.234567890), std::numeric_limits<double>::epsilon());
BOOST_TEST_CLOSE_FRACTION(1.234567890, lexical_cast<double>("1.234567890"), std::numeric_limits<double>::epsilon());
BOOST_TEST_CLOSE_FRACTION(1.0, lexical_cast<double>(true), (std::numeric_limits<double>::epsilon()));
BOOST_TEST_CLOSE_FRACTION(0.0, lexical_cast<double>(false), (std::numeric_limits<double>::epsilon()));
BOOST_TEST_CLOSE_FRACTION(1.23, lexical_cast<double>("1.23"), (std::numeric_limits<double>::epsilon()));
BOOST_TEST_THROWS(lexical_cast<double>(""), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<double>("Test"), bad_lexical_cast);
BOOST_TEST_CLOSE_FRACTION(1.23, lexical_cast<double>(std::string("1.23")), (std::numeric_limits<double>::epsilon()));
BOOST_TEST_THROWS(
lexical_cast<double>(std::string("")), bad_lexical_cast);
BOOST_CHECK_THROW(
BOOST_TEST_THROWS(
lexical_cast<double>(std::string("Test")), bad_lexical_cast);
}
void test_conversion_to_bool()
{
BOOST_CHECK_EQUAL(true, lexical_cast<bool>('1'));
BOOST_CHECK_EQUAL(false, lexical_cast<bool>('0'));
BOOST_CHECK_THROW(lexical_cast<bool>('A'), bad_lexical_cast);
BOOST_CHECK_EQUAL(true, lexical_cast<bool>(1));
BOOST_CHECK_EQUAL(false, lexical_cast<bool>(0));
BOOST_CHECK_THROW(lexical_cast<bool>(123), bad_lexical_cast);
BOOST_CHECK_EQUAL(true, lexical_cast<bool>(1.0));
BOOST_CHECK_THROW(lexical_cast<bool>(-123), bad_lexical_cast);
BOOST_CHECK_EQUAL(false, lexical_cast<bool>(0.0));
BOOST_CHECK_THROW(lexical_cast<bool>(1234), bad_lexical_cast);
BOOST_TEST_EQ(true, lexical_cast<bool>('1'));
BOOST_TEST_EQ(false, lexical_cast<bool>('0'));
BOOST_TEST_THROWS(lexical_cast<bool>('A'), bad_lexical_cast);
BOOST_TEST_EQ(true, lexical_cast<bool>(1));
BOOST_TEST_EQ(false, lexical_cast<bool>(0));
BOOST_TEST_THROWS(lexical_cast<bool>(123), bad_lexical_cast);
BOOST_TEST_EQ(true, lexical_cast<bool>(1.0));
BOOST_TEST_THROWS(lexical_cast<bool>(-123), bad_lexical_cast);
BOOST_TEST_EQ(false, lexical_cast<bool>(0.0));
BOOST_TEST_THROWS(lexical_cast<bool>(1234), bad_lexical_cast);
#if !defined(_CRAYC)
// Looks like a bug in CRAY compiler (throws bad_lexical_cast)
// TODO: localize the bug and report it to developers.
BOOST_CHECK_EQUAL(true, lexical_cast<bool>(true));
BOOST_CHECK_EQUAL(false, lexical_cast<bool>(false));
BOOST_TEST_EQ(true, lexical_cast<bool>(true));
BOOST_TEST_EQ(false, lexical_cast<bool>(false));
#endif
BOOST_CHECK_EQUAL(true, lexical_cast<bool>("1"));
BOOST_CHECK_EQUAL(false, lexical_cast<bool>("0"));
BOOST_CHECK_THROW(lexical_cast<bool>(""), bad_lexical_cast);
BOOST_CHECK_THROW(lexical_cast<bool>("Test"), bad_lexical_cast);
BOOST_CHECK_EQUAL(true, lexical_cast<bool>("1"));
BOOST_CHECK_EQUAL(false, lexical_cast<bool>("0"));
BOOST_CHECK_EQUAL(true, lexical_cast<bool>(std::string("1")));
BOOST_CHECK_EQUAL(false, lexical_cast<bool>(std::string("0")));
BOOST_TEST_EQ(true, lexical_cast<bool>("1"));
BOOST_TEST_EQ(false, lexical_cast<bool>("0"));
BOOST_TEST_THROWS(lexical_cast<bool>(""), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<bool>("Test"), bad_lexical_cast);
BOOST_TEST_EQ(true, lexical_cast<bool>("1"));
BOOST_TEST_EQ(false, lexical_cast<bool>("0"));
BOOST_TEST_EQ(true, lexical_cast<bool>(std::string("1")));
BOOST_TEST_EQ(false, lexical_cast<bool>(std::string("0")));
BOOST_CHECK_THROW(lexical_cast<bool>(1.0001L), bad_lexical_cast);
BOOST_CHECK_THROW(lexical_cast<bool>(2), bad_lexical_cast);
BOOST_CHECK_THROW(lexical_cast<bool>(2u), bad_lexical_cast);
BOOST_CHECK_THROW(lexical_cast<bool>(-1), bad_lexical_cast);
BOOST_CHECK_THROW(lexical_cast<bool>(-2), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<bool>(1.0001L), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<bool>(2), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<bool>(2u), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<bool>(-1), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<bool>(-2), bad_lexical_cast);
BOOST_CHECK_THROW(
BOOST_TEST_THROWS(
lexical_cast<bool>(std::string("")), bad_lexical_cast);
BOOST_CHECK_THROW(
BOOST_TEST_THROWS(
lexical_cast<bool>(std::string("Test")), bad_lexical_cast);
BOOST_CHECK(lexical_cast<bool>("+1") == true);
BOOST_CHECK(lexical_cast<bool>("+0") == false);
BOOST_CHECK(lexical_cast<bool>("-0") == false);
BOOST_CHECK_THROW(lexical_cast<bool>("--0"), bad_lexical_cast);
BOOST_CHECK_THROW(lexical_cast<bool>("-+-0"), bad_lexical_cast);
BOOST_TEST(lexical_cast<bool>("+1") == true);
BOOST_TEST(lexical_cast<bool>("+0") == false);
BOOST_TEST(lexical_cast<bool>("-0") == false);
BOOST_TEST_THROWS(lexical_cast<bool>("--0"), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<bool>("-+-0"), bad_lexical_cast);
BOOST_CHECK(lexical_cast<bool>("0") == false);
BOOST_CHECK(lexical_cast<bool>("1") == true);
BOOST_CHECK(lexical_cast<bool>("00") == false);
BOOST_CHECK(lexical_cast<bool>("00000000000") == false);
BOOST_CHECK(lexical_cast<bool>("000000000001") == true);
BOOST_CHECK(lexical_cast<bool>("+00") == false );
BOOST_CHECK(lexical_cast<bool>("-00") == false );
BOOST_CHECK(lexical_cast<bool>("+00000000001") == true );
BOOST_TEST(lexical_cast<bool>("0") == false);
BOOST_TEST(lexical_cast<bool>("1") == true);
BOOST_TEST(lexical_cast<bool>("00") == false);
BOOST_TEST(lexical_cast<bool>("00000000000") == false);
BOOST_TEST(lexical_cast<bool>("000000000001") == true);
BOOST_TEST(lexical_cast<bool>("+00") == false );
BOOST_TEST(lexical_cast<bool>("-00") == false );
BOOST_TEST(lexical_cast<bool>("+00000000001") == true );
BOOST_CHECK_THROW(lexical_cast<bool>("020"), bad_lexical_cast);
BOOST_CHECK_THROW(lexical_cast<bool>("00200"), bad_lexical_cast);
BOOST_CHECK_THROW(lexical_cast<bool>("-00200"), bad_lexical_cast);
BOOST_CHECK_THROW(lexical_cast<bool>("+00200"), bad_lexical_cast);
BOOST_CHECK_THROW(lexical_cast<bool>("000000000002"), bad_lexical_cast);
BOOST_CHECK_THROW(lexical_cast<bool>("-1"), bad_lexical_cast);
BOOST_CHECK_THROW(lexical_cast<bool>("-0000000001"), bad_lexical_cast);
BOOST_CHECK_THROW(lexical_cast<bool>("00000000011"), bad_lexical_cast);
BOOST_CHECK_THROW(lexical_cast<bool>("001001"), bad_lexical_cast);
BOOST_CHECK_THROW(lexical_cast<bool>("-00000000010"), bad_lexical_cast);
BOOST_CHECK_THROW(lexical_cast<bool>("-000000000100"), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<bool>("020"), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<bool>("00200"), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<bool>("-00200"), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<bool>("+00200"), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<bool>("000000000002"), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<bool>("-1"), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<bool>("-0000000001"), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<bool>("00000000011"), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<bool>("001001"), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<bool>("-00000000010"), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<bool>("-000000000100"), bad_lexical_cast);
}
void test_conversion_to_string()
{
char buf[] = "hello";
char* str = buf;
BOOST_CHECK_EQUAL(str, lexical_cast<std::string>(str));
BOOST_CHECK_EQUAL("A", lexical_cast<std::string>('A'));
BOOST_CHECK_EQUAL(" ", lexical_cast<std::string>(' '));
BOOST_CHECK_EQUAL("123", lexical_cast<std::string>(123));
BOOST_CHECK_EQUAL("1.23", lexical_cast<std::string>(1.23));
BOOST_CHECK_EQUAL("1.111111111", lexical_cast<std::string>(1.111111111));
BOOST_CHECK_EQUAL("1", lexical_cast<std::string>(true));
BOOST_CHECK_EQUAL("0", lexical_cast<std::string>(false));
BOOST_CHECK_EQUAL("Test", lexical_cast<std::string>("Test"));
BOOST_CHECK_EQUAL(" ", lexical_cast<std::string>(" "));
BOOST_CHECK_EQUAL("", lexical_cast<std::string>(""));
BOOST_CHECK_EQUAL("Test", lexical_cast<std::string>(std::string("Test")));
BOOST_CHECK_EQUAL(" ", lexical_cast<std::string>(std::string(" ")));
BOOST_CHECK_EQUAL("", lexical_cast<std::string>(std::string("")));
BOOST_TEST_EQ(str, lexical_cast<std::string>(str));
BOOST_TEST_EQ("A", lexical_cast<std::string>('A'));
BOOST_TEST_EQ(" ", lexical_cast<std::string>(' '));
BOOST_TEST_EQ("123", lexical_cast<std::string>(123));
BOOST_TEST_EQ("1.23", lexical_cast<std::string>(1.23));
BOOST_TEST_EQ("1.111111111", lexical_cast<std::string>(1.111111111));
BOOST_TEST_EQ("1", lexical_cast<std::string>(true));
BOOST_TEST_EQ("0", lexical_cast<std::string>(false));
BOOST_TEST_EQ("Test", lexical_cast<std::string>("Test"));
BOOST_TEST_EQ(" ", lexical_cast<std::string>(" "));
BOOST_TEST_EQ("", lexical_cast<std::string>(""));
BOOST_TEST_EQ("Test", lexical_cast<std::string>(std::string("Test")));
BOOST_TEST_EQ(" ", lexical_cast<std::string>(std::string(" ")));
BOOST_TEST_EQ("", lexical_cast<std::string>(std::string("")));
}
void test_conversion_from_to_wchar_t_alias()
{
BOOST_CHECK_EQUAL(123u, lexical_cast<unsigned short>("123"));
BOOST_CHECK_EQUAL(123u, lexical_cast<unsigned int>("123"));
BOOST_CHECK_EQUAL(123u, lexical_cast<unsigned long>("123"));
BOOST_CHECK_EQUAL(std::string("123"),
BOOST_TEST_EQ(123u, lexical_cast<unsigned short>("123"));
BOOST_TEST_EQ(123u, lexical_cast<unsigned int>("123"));
BOOST_TEST_EQ(123u, lexical_cast<unsigned long>("123"));
BOOST_TEST_EQ(std::string("123"),
lexical_cast<std::string>(static_cast<unsigned short>(123)));
BOOST_CHECK_EQUAL(std::string("123"), lexical_cast<std::string>(123u));
BOOST_CHECK_EQUAL(std::string("123"), lexical_cast<std::string>(123ul));
BOOST_TEST_EQ(std::string("123"), lexical_cast<std::string>(123u));
BOOST_TEST_EQ(std::string("123"), lexical_cast<std::string>(123ul));
}
void test_conversion_from_wchar_t()
{
#ifndef BOOST_LCAST_NO_WCHAR_T
#if !defined(BOOST_NO_INTRINSIC_WCHAR_T)
BOOST_CHECK_EQUAL(1, lexical_cast<int>(L'1'));
BOOST_CHECK_THROW(lexical_cast<int>(L'A'), bad_lexical_cast);
BOOST_TEST_EQ(1, lexical_cast<int>(L'1'));
BOOST_TEST_THROWS(lexical_cast<int>(L'A'), bad_lexical_cast);
#endif
BOOST_CHECK_EQUAL(123, lexical_cast<int>(L"123"));
BOOST_CHECK_THROW(lexical_cast<int>(L""), bad_lexical_cast);
BOOST_CHECK_THROW(lexical_cast<int>(L"Test"), bad_lexical_cast);
BOOST_TEST_EQ(123, lexical_cast<int>(L"123"));
BOOST_TEST_THROWS(lexical_cast<int>(L""), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<int>(L"Test"), bad_lexical_cast);
#if !defined(BOOST_NO_INTRINSIC_WCHAR_T)
BOOST_CHECK_EQUAL(1.0, lexical_cast<double>(L'1'));
BOOST_CHECK_THROW(lexical_cast<double>(L'A'), bad_lexical_cast);
BOOST_TEST_EQ(1.0, lexical_cast<double>(L'1'));
BOOST_TEST_THROWS(lexical_cast<double>(L'A'), bad_lexical_cast);
#endif
BOOST_CHECK_EQUAL(1.23, lexical_cast<double>(L"1.23"));
BOOST_CHECK_THROW(lexical_cast<double>(L""), bad_lexical_cast);
BOOST_CHECK_THROW(lexical_cast<double>(L"Test"), bad_lexical_cast);
BOOST_TEST_EQ(1.23, lexical_cast<double>(L"1.23"));
BOOST_TEST_THROWS(lexical_cast<double>(L""), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<double>(L"Test"), bad_lexical_cast);
#if !defined(BOOST_NO_INTRINSIC_WCHAR_T)
BOOST_CHECK_EQUAL(true, lexical_cast<bool>(L'1'));
BOOST_CHECK_EQUAL(false, lexical_cast<bool>(L'0'));
BOOST_CHECK_THROW(lexical_cast<bool>(L'A'), bad_lexical_cast);
BOOST_TEST_EQ(true, lexical_cast<bool>(L'1'));
BOOST_TEST_EQ(false, lexical_cast<bool>(L'0'));
BOOST_TEST_THROWS(lexical_cast<bool>(L'A'), bad_lexical_cast);
#endif
BOOST_CHECK_EQUAL(true, lexical_cast<bool>(L"1"));
BOOST_CHECK_EQUAL(false, lexical_cast<bool>(L"0"));
BOOST_CHECK_THROW(lexical_cast<bool>(L""), bad_lexical_cast);
BOOST_CHECK_THROW(lexical_cast<bool>(L"Test"), bad_lexical_cast);
BOOST_TEST_EQ(true, lexical_cast<bool>(L"1"));
BOOST_TEST_EQ(false, lexical_cast<bool>(L"0"));
BOOST_TEST_THROWS(lexical_cast<bool>(L""), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<bool>(L"Test"), bad_lexical_cast);
#endif
}
void test_conversion_to_wchar_t()
{
#if !defined(BOOST_LCAST_NO_WCHAR_T) && !defined(BOOST_NO_INTRINSIC_WCHAR_T)
BOOST_CHECK_EQUAL(L'1', lexical_cast<wchar_t>(1));
BOOST_CHECK_EQUAL(L'0', lexical_cast<wchar_t>(0));
BOOST_CHECK_EQUAL(L'1', lexical_cast<wchar_t>('1'));
BOOST_CHECK_EQUAL(L'0', lexical_cast<wchar_t>('0'));
BOOST_CHECK_THROW(lexical_cast<wchar_t>(123), bad_lexical_cast);
BOOST_CHECK_EQUAL(L'1', lexical_cast<wchar_t>(1.0));
BOOST_CHECK_EQUAL(L'0', lexical_cast<wchar_t>(0.0));
BOOST_CHECK_EQUAL(L'1', lexical_cast<wchar_t>(true));
BOOST_CHECK_EQUAL(L'0', lexical_cast<wchar_t>(false));
BOOST_CHECK_EQUAL(L'A', lexical_cast<wchar_t>(L'A'));
BOOST_CHECK_EQUAL(L' ', lexical_cast<wchar_t>(L' '));
BOOST_CHECK_EQUAL(L'A', lexical_cast<wchar_t>(L"A"));
BOOST_CHECK_EQUAL(L' ', lexical_cast<wchar_t>(L" "));
BOOST_CHECK_THROW(lexical_cast<wchar_t>(L""), bad_lexical_cast);
BOOST_CHECK_THROW(lexical_cast<wchar_t>(L"Test"), bad_lexical_cast);
BOOST_CHECK_EQUAL(L'A', lexical_cast<wchar_t>(std::wstring(L"A")));
BOOST_CHECK_EQUAL(L' ', lexical_cast<wchar_t>(std::wstring(L" ")));
BOOST_CHECK_THROW(
BOOST_TEST(L'1' == lexical_cast<wchar_t>(1));
BOOST_TEST(L'0' == lexical_cast<wchar_t>(0));
BOOST_TEST(L'1' == lexical_cast<wchar_t>('1'));
BOOST_TEST(L'0' == lexical_cast<wchar_t>('0'));
BOOST_TEST_THROWS(lexical_cast<wchar_t>(123), bad_lexical_cast);
BOOST_TEST(L'1' == lexical_cast<wchar_t>(1.0));
BOOST_TEST(L'0' == lexical_cast<wchar_t>(0.0));
BOOST_TEST(L'1' == lexical_cast<wchar_t>(true));
BOOST_TEST(L'0' == lexical_cast<wchar_t>(false));
BOOST_TEST(L'A' == lexical_cast<wchar_t>(L'A'));
BOOST_TEST(L' ' == lexical_cast<wchar_t>(L' '));
BOOST_TEST(L'A' == lexical_cast<wchar_t>(L"A"));
BOOST_TEST(L' ' == lexical_cast<wchar_t>(L" "));
BOOST_TEST_THROWS(lexical_cast<wchar_t>(L""), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<wchar_t>(L"Test"), bad_lexical_cast);
BOOST_TEST(L'A' == lexical_cast<wchar_t>(std::wstring(L"A")));
BOOST_TEST(L' ' == lexical_cast<wchar_t>(std::wstring(L" ")));
BOOST_TEST_THROWS(
lexical_cast<wchar_t>(std::wstring(L"")), bad_lexical_cast);
BOOST_CHECK_THROW(
BOOST_TEST_THROWS(
lexical_cast<wchar_t>(std::wstring(L"Test")), bad_lexical_cast);
#endif
BOOST_CHECK(true);
BOOST_TEST(true);
}
void test_conversion_from_wstring()
{
#ifndef BOOST_LCAST_NO_WCHAR_T
BOOST_CHECK_EQUAL(123, lexical_cast<int>(std::wstring(L"123")));
BOOST_CHECK_THROW(
BOOST_TEST_EQ(123, lexical_cast<int>(std::wstring(L"123")));
BOOST_TEST_THROWS(
lexical_cast<int>(std::wstring(L"")), bad_lexical_cast);
BOOST_CHECK_THROW(
BOOST_TEST_THROWS(
lexical_cast<int>(std::wstring(L"Test")), bad_lexical_cast);
BOOST_CHECK_EQUAL(true, lexical_cast<bool>(std::wstring(L"1")));
BOOST_CHECK_EQUAL(false, lexical_cast<bool>(std::wstring(L"0")));
BOOST_CHECK_THROW(
BOOST_TEST_EQ(true, lexical_cast<bool>(std::wstring(L"1")));
BOOST_TEST_EQ(false, lexical_cast<bool>(std::wstring(L"0")));
BOOST_TEST_THROWS(
lexical_cast<bool>(std::wstring(L"")), bad_lexical_cast);
BOOST_CHECK_THROW(
BOOST_TEST_THROWS(
lexical_cast<bool>(std::wstring(L"Test")), bad_lexical_cast);
#endif
BOOST_CHECK(true);
BOOST_TEST(true);
}
void test_conversion_to_wstring()
@@ -422,24 +349,24 @@ void test_conversion_to_wstring()
#ifndef BOOST_LCAST_NO_WCHAR_T
wchar_t buf[] = L"hello";
wchar_t* str = buf;
BOOST_CHECK(str == lexical_cast<std::wstring>(str));
BOOST_CHECK(L"123" == lexical_cast<std::wstring>(123));
BOOST_CHECK(L"1.23" == lexical_cast<std::wstring>(1.23));
BOOST_CHECK(L"1" == lexical_cast<std::wstring>(true));
BOOST_CHECK(L"0" == lexical_cast<std::wstring>(false));
BOOST_TEST(str == lexical_cast<std::wstring>(str));
BOOST_TEST(L"123" == lexical_cast<std::wstring>(123));
BOOST_TEST(L"1.23" == lexical_cast<std::wstring>(1.23));
BOOST_TEST(L"1" == lexical_cast<std::wstring>(true));
BOOST_TEST(L"0" == lexical_cast<std::wstring>(false));
#if !defined(BOOST_NO_INTRINSIC_WCHAR_T)
BOOST_CHECK(L"A" == lexical_cast<std::wstring>(L'A'));
BOOST_CHECK(L" " == lexical_cast<std::wstring>(L' '));
BOOST_CHECK(L"A" == lexical_cast<std::wstring>('A'));
BOOST_TEST(L"A" == lexical_cast<std::wstring>(L'A'));
BOOST_TEST(L" " == lexical_cast<std::wstring>(L' '));
BOOST_TEST(L"A" == lexical_cast<std::wstring>('A'));
#endif
BOOST_CHECK(L"Test" == lexical_cast<std::wstring>(L"Test"));
BOOST_CHECK(L" " == lexical_cast<std::wstring>(L" "));
BOOST_CHECK(L"" == lexical_cast<std::wstring>(L""));
BOOST_CHECK(L"Test" == lexical_cast<std::wstring>(std::wstring(L"Test")));
BOOST_CHECK(L" " == lexical_cast<std::wstring>(std::wstring(L" ")));
BOOST_CHECK(L"" == lexical_cast<std::wstring>(std::wstring(L"")));
BOOST_TEST(L"Test" == lexical_cast<std::wstring>(L"Test"));
BOOST_TEST(L" " == lexical_cast<std::wstring>(L" "));
BOOST_TEST(L"" == lexical_cast<std::wstring>(L""));
BOOST_TEST(L"Test" == lexical_cast<std::wstring>(std::wstring(L"Test")));
BOOST_TEST(L" " == lexical_cast<std::wstring>(std::wstring(L" ")));
BOOST_TEST(L"" == lexical_cast<std::wstring>(std::wstring(L"")));
#endif
BOOST_CHECK(true);
BOOST_TEST(true);
}
void test_bad_lexical_cast()
@@ -448,42 +375,31 @@ void test_bad_lexical_cast()
{
lexical_cast<int>(std::string("Test"));
BOOST_CHECK(false); // Exception expected
BOOST_TEST(false); // Exception expected
}
catch(const bad_lexical_cast &e)
{
BOOST_CHECK(e.source_type() == typeid(std::string));
BOOST_CHECK(e.target_type() == typeid(int));
BOOST_TEST(e.source_type() == typeid(std::string));
BOOST_TEST(e.target_type() == typeid(int));
}
}
void test_no_whitespace_stripping()
{
BOOST_CHECK_THROW(lexical_cast<int>(" 123"), bad_lexical_cast);
BOOST_CHECK_THROW(lexical_cast<int>("123 "), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<int>(" 123"), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<int>("123 "), bad_lexical_cast);
}
void test_volatile_types_conversions()
{
volatile int i1 = 100000;
BOOST_CHECK_EQUAL("100000", boost::lexical_cast<std::string>(i1));
volatile const int i2 = 100000;
BOOST_CHECK_EQUAL("100000", boost::lexical_cast<std::string>(i2));
volatile const long int i3 = 1000000;
BOOST_CHECK_EQUAL("1000000", boost::lexical_cast<std::string>(i3));
}
#ifndef BOOST_NO_TEMPLATE_PARTIAL_SPECIALIZATION
void test_traits()
{
typedef std::basic_string<char, my_traits<char> > my_string;
my_string const s("s");
BOOST_CHECK(boost::lexical_cast<char>(s) == s[0]);
BOOST_CHECK(boost::lexical_cast<my_string>(s) == s);
BOOST_CHECK(boost::lexical_cast<my_string>(-1) == "-1");
BOOST_TEST(boost::lexical_cast<char>(s) == s[0]);
BOOST_TEST(boost::lexical_cast<my_string>(s) == s);
BOOST_TEST(boost::lexical_cast<my_string>(-1) == "-1");
BOOST_TEST(boost::lexical_cast<int>(my_string("42")) == 42);
BOOST_TEST(boost::lexical_cast<double>(my_string("1.0")) == 1.0);
}
void test_wtraits()
@@ -491,11 +407,11 @@ void test_wtraits()
typedef std::basic_string<wchar_t, my_traits<wchar_t> > my_string;
my_string const s(L"s");
BOOST_CHECK(boost::lexical_cast<wchar_t>(s) == s[0]);
BOOST_CHECK(boost::lexical_cast<my_string>(s) == s);
//BOOST_CHECK(boost::lexical_cast<my_string>(-1) == L"-1");
// Commented out because gcc 3.3 doesn't support this:
// basic_ostream<wchar_t, my_traits<wchar_t> > o; o << -1;
BOOST_TEST(boost::lexical_cast<wchar_t>(s) == s[0]);
BOOST_TEST(boost::lexical_cast<my_string>(s) == s);
BOOST_TEST(boost::lexical_cast<my_string>(-1) == L"-1");
BOOST_TEST(boost::lexical_cast<int>(my_string(L"42")) == 42);
BOOST_TEST(boost::lexical_cast<double>(my_string(L"1.0")) == 1.0);
}
void test_allocator()
@@ -511,12 +427,12 @@ void test_allocator()
> my_string;
my_string s("s");
BOOST_CHECK(boost::lexical_cast<char>(s) == s[0]);
BOOST_CHECK(boost::lexical_cast<std::string>(s) == "s");
BOOST_CHECK(boost::lexical_cast<my_string>(s) == s);
BOOST_CHECK(boost::lexical_cast<my_string>(1) == "1");
BOOST_CHECK(boost::lexical_cast<my_string>("s") == s);
BOOST_CHECK(boost::lexical_cast<my_string>(std::string("s")) == s);
BOOST_TEST(boost::lexical_cast<char>(s) == s[0]);
BOOST_TEST(boost::lexical_cast<std::string>(s) == "s");
BOOST_TEST(boost::lexical_cast<my_string>(s) == s);
BOOST_TEST(boost::lexical_cast<my_string>(1) == "1");
BOOST_TEST(boost::lexical_cast<my_string>("s") == s);
BOOST_TEST(boost::lexical_cast<my_string>(std::string("s")) == s);
#endif
}
@@ -533,17 +449,15 @@ void test_wallocator()
> my_string;
my_string s(L"s");
BOOST_CHECK(boost::lexical_cast<wchar_t>(s) == s[0]);
BOOST_CHECK(boost::lexical_cast<std::wstring>(s) == L"s");
BOOST_CHECK(boost::lexical_cast<my_string>(s) == s);
BOOST_CHECK(boost::lexical_cast<my_string>(1) == L"1");
BOOST_CHECK(boost::lexical_cast<my_string>(L"s") == s);
BOOST_CHECK(boost::lexical_cast<my_string>(std::wstring(L"s")) == s);
BOOST_TEST(boost::lexical_cast<wchar_t>(s) == s[0]);
BOOST_TEST(boost::lexical_cast<std::wstring>(s) == L"s");
BOOST_TEST(boost::lexical_cast<my_string>(s) == s);
BOOST_TEST(boost::lexical_cast<my_string>(1) == L"1");
BOOST_TEST(boost::lexical_cast<my_string>(L"s") == s);
BOOST_TEST(boost::lexical_cast<my_string>(std::wstring(L"s")) == s);
#endif
}
#endif
void test_char_types_conversions()
{
@@ -551,27 +465,27 @@ void test_char_types_conversions()
const unsigned char uc_arr[] = "Test array of chars";
const signed char sc_arr[] = "Test array of chars";
BOOST_CHECK(boost::lexical_cast<std::string>(c_arr) == std::string(c_arr));
BOOST_CHECK(boost::lexical_cast<std::string>(uc_arr) == std::string(c_arr));
BOOST_CHECK(boost::lexical_cast<std::string>(sc_arr) == std::string(c_arr));
BOOST_TEST(boost::lexical_cast<std::string>(c_arr) == std::string(c_arr));
BOOST_TEST(boost::lexical_cast<std::string>(uc_arr) == std::string(c_arr));
BOOST_TEST(boost::lexical_cast<std::string>(sc_arr) == std::string(c_arr));
BOOST_CHECK(boost::lexical_cast<char>(c_arr[0]) == c_arr[0]);
BOOST_CHECK(boost::lexical_cast<char>(uc_arr[0]) == c_arr[0]);
BOOST_CHECK(boost::lexical_cast<char>(sc_arr[0]) == c_arr[0]);
BOOST_TEST(boost::lexical_cast<char>(c_arr[0]) == c_arr[0]);
BOOST_TEST(boost::lexical_cast<char>(uc_arr[0]) == c_arr[0]);
BOOST_TEST(boost::lexical_cast<char>(sc_arr[0]) == c_arr[0]);
BOOST_CHECK(boost::lexical_cast<unsigned char>(c_arr[0]) == uc_arr[0]);
BOOST_CHECK(boost::lexical_cast<unsigned char>(uc_arr[0]) == uc_arr[0]);
BOOST_CHECK(boost::lexical_cast<unsigned char>(sc_arr[0]) == uc_arr[0]);
BOOST_TEST(boost::lexical_cast<unsigned char>(c_arr[0]) == uc_arr[0]);
BOOST_TEST(boost::lexical_cast<unsigned char>(uc_arr[0]) == uc_arr[0]);
BOOST_TEST(boost::lexical_cast<unsigned char>(sc_arr[0]) == uc_arr[0]);
BOOST_CHECK(boost::lexical_cast<signed char>(c_arr[0]) == sc_arr[0]);
BOOST_CHECK(boost::lexical_cast<signed char>(uc_arr[0]) == sc_arr[0]);
BOOST_CHECK(boost::lexical_cast<signed char>(sc_arr[0]) == sc_arr[0]);
BOOST_TEST(boost::lexical_cast<signed char>(c_arr[0]) == sc_arr[0]);
BOOST_TEST(boost::lexical_cast<signed char>(uc_arr[0]) == sc_arr[0]);
BOOST_TEST(boost::lexical_cast<signed char>(sc_arr[0]) == sc_arr[0]);
#ifndef BOOST_LCAST_NO_WCHAR_T
const wchar_t wc_arr[]=L"Test array of chars";
BOOST_CHECK(boost::lexical_cast<std::wstring>(wc_arr) == std::wstring(wc_arr));
BOOST_CHECK(boost::lexical_cast<wchar_t>(wc_arr[0]) == wc_arr[0]);
BOOST_TEST(boost::lexical_cast<std::wstring>(wc_arr) == std::wstring(wc_arr));
BOOST_TEST(boost::lexical_cast<wchar_t>(wc_arr[0]) == wc_arr[0]);
#endif
}
@@ -601,29 +515,35 @@ IStream& operator>>(IStream& istr, foo_operators_test& foo)
void operators_overload_test()
{
foo_operators_test foo;
BOOST_CHECK_EQUAL(boost::lexical_cast<std::string>(foo), "2");
BOOST_CHECK_EQUAL((boost::lexical_cast<foo_operators_test>("2")).f, 2);
BOOST_TEST_EQ(boost::lexical_cast<std::string>(foo), "2");
BOOST_TEST_EQ((boost::lexical_cast<foo_operators_test>("2")).f, 2);
// Must compile
(void)boost::lexical_cast<foo_operators_test>(foo);
}
#if !defined(BOOST_NO_CXX11_CHAR16_T) && !defined(BOOST_NO_CXX11_UNICODE_LITERALS)
void test_char16_conversions()
{
BOOST_CHECK(u"100" == lexical_cast<std::u16string>(u"100"));
BOOST_CHECK(u"1" == lexical_cast<std::u16string>(u'1'));
}
// There's no std::ctype<char16_t> in Xcode_15.0.1
#if !defined(BOOST_NO_CXX11_CHAR16_T) && !defined(BOOST_NO_CXX11_UNICODE_LITERALS) && !defined(__APPLE__)
BOOST_TEST(u"100" == lexical_cast<std::u16string>(u"100"));
#if !defined(_LIBCPP_VERSION) // libc++ also does not have std::ctype<char16_t>
BOOST_TEST(u"1" == lexical_cast<std::u16string>(u'1'));
#endif
#endif
}
#if !defined(BOOST_NO_CXX11_CHAR16_T) && !defined(BOOST_NO_CXX11_UNICODE_LITERALS)
void test_char32_conversions()
{
BOOST_CHECK(U"100" == lexical_cast<std::u32string>(U"100"));
BOOST_CHECK(U"1" == lexical_cast<std::u32string>(U'1'));
}
// There's no std::ctype<char32_t> in Xcode_15.0.1
#if !defined(BOOST_NO_CXX11_CHAR32_T) && !defined(BOOST_NO_CXX11_UNICODE_LITERALS) && !defined(__APPLE__)
BOOST_TEST(U"100" == lexical_cast<std::u32string>(U"100"));
#if !defined(_LIBCPP_VERSION) // libc++ also does not have std::ctype<char32_t>
BOOST_TEST(U"1" == lexical_cast<std::u32string>(U'1'));
#endif
#endif
}
void test_getting_pointer_to_function()
{
@@ -631,19 +551,51 @@ void test_getting_pointer_to_function()
typedef char char_arr[4];
typedef int(*f1)(const char_arr&);
f1 p1 = &boost::lexical_cast<int, char_arr>;
BOOST_CHECK(p1);
BOOST_TEST(p1);
typedef int(*f2)(const std::string&);
f2 p2 = &boost::lexical_cast<int, std::string>;
BOOST_CHECK(p2);
BOOST_TEST(p2);
typedef std::string(*f3)(const int&);
f3 p3 = &boost::lexical_cast<std::string, int>;
BOOST_CHECK(p3);
BOOST_TEST(p3);
std::vector<int> values;
std::vector<std::string> ret;
std::transform(values.begin(), values.end(), ret.begin(), boost::lexical_cast<std::string, int>);
}
int main()
{
test_conversion_to_char();
test_conversion_to_int();
test_conversion_to_double();
test_conversion_to_bool();
test_conversion_from_to_wchar_t_alias();
test_conversion_to_string();
test_conversion_with_nonconst_char();
#ifndef BOOST_LCAST_NO_WCHAR_T
test_conversion_from_wchar_t();
test_conversion_to_wchar_t();
test_conversion_from_wstring();
test_conversion_to_wstring();
#endif
test_bad_lexical_cast();
test_no_whitespace_stripping();
test_traits();
test_wtraits();
test_allocator();
test_wallocator();
test_char_types_conversions();
operators_overload_test();
test_char16_conversions();
test_char32_conversions();
test_getting_pointer_to_function();
return boost::report_errors();
}
+25 -34
View File
@@ -3,6 +3,7 @@
// See http://www.boost.org for most recent version, including documentation.
//
// Copyright Alexander Nasonov, 2006.
// Copyright Antony Polukhin, 2023-2026.
//
// Distributed under the Boost
// Software License, Version 1.0. (See accompanying file
@@ -11,57 +12,38 @@
// Test round-tripping conversion FPT -> string -> FPT,
// where FPT is Floating Point Type.
#include <boost/config.hpp>
#if defined(__INTEL_COMPILER)
#pragma warning(disable: 193 383 488 981 1418 1419)
#elif defined(BOOST_MSVC)
#pragma warning(disable: 4097 4100 4121 4127 4146 4244 4245 4511 4512 4701 4800)
#endif
#include <boost/core/lightweight_test.hpp>
#include <boost/lexical_cast.hpp>
#include <boost/math/tools/config.hpp> // BOOST_MATH_NO_LONG_DOUBLE_MATH_FUNCTIONS
#include <boost/test/unit_test.hpp>
using namespace boost;
void test_round_conversion_float();
void test_round_conversion_double();
void test_round_conversion_long_double();
unit_test::test_suite *init_unit_test_suite(int, char *[])
{
unit_test::test_suite *suite =
BOOST_TEST_SUITE("lexical_cast unit test");
suite->add(BOOST_TEST_CASE(&test_round_conversion_float));
suite->add(BOOST_TEST_CASE(&test_round_conversion_double));
suite->add(BOOST_TEST_CASE(&test_round_conversion_long_double));
return suite;
}
#if (defined(__CYGWIN__) || defined(__FreeBSD__) || defined(__NetBSD__) \
|| (defined(__hppa) && !defined(__OpenBSD__)) || (defined(__NO_LONG_DOUBLE_MATH) && (DBL_MANT_DIG != LDBL_MANT_DIG))) \
|| defined(__MINGW64__)
# define BOOST_LEXICAL_CAST_NO_LONG_DOUBLE_MATH_FUNCTIONS
#endif
template<class T>
void test_round_conversion()
{
T epsilon = std::numeric_limits<T>::epsilon();
std::string const epsilon_s = boost::lexical_cast<std::string>(epsilon);
BOOST_CHECK(epsilon == lexical_cast<T>(epsilon_s));
BOOST_TEST(epsilon == boost::lexical_cast<T>(epsilon_s));
T max_ = (std::numeric_limits<T>::max)();
std::string const max_s = boost::lexical_cast<std::string>(max_);
BOOST_CHECK(max_ == lexical_cast<T>(max_s));
BOOST_TEST(max_ == boost::lexical_cast<T>(max_s));
T min_ = (std::numeric_limits<T>::min)();
std::string const min_s = boost::lexical_cast<std::string>(min_);
BOOST_CHECK(min_ == lexical_cast<T>(min_s));
BOOST_TEST(min_ == boost::lexical_cast<T>(min_s));
T max_div137 = max_ / 137;
std::string max_div137_s = boost::lexical_cast<std::string>(max_div137);
BOOST_CHECK(max_div137 == lexical_cast<T>(max_div137_s));
BOOST_TEST(max_div137 == boost::lexical_cast<T>(max_div137_s));
T epsilon_mult137 = epsilon * 137;
std::string epsilon_mult137_s(lexical_cast<std::string>(epsilon_mult137));
BOOST_CHECK(epsilon_mult137 == lexical_cast<T>(epsilon_mult137_s));
std::string epsilon_mult137_s(boost::lexical_cast<std::string>(epsilon_mult137));
BOOST_TEST(epsilon_mult137 == boost::lexical_cast<T>(epsilon_mult137_s));
}
@@ -71,7 +53,7 @@ void test_msvc_magic_values()
{
T magic_msvc = 0.00010000433948393407;
std::string magic_msvc_s = boost::lexical_cast<std::string>(magic_msvc);
BOOST_CHECK(magic_msvc == lexical_cast<T>(magic_msvc_s));
BOOST_TEST(magic_msvc == boost::lexical_cast<T>(magic_msvc_s));
}
void test_round_conversion_float()
@@ -88,10 +70,19 @@ void test_round_conversion_double()
void test_round_conversion_long_double()
{
// We do not run tests on compilers and Standard Libraries with poor support of long double
#if !defined(BOOST_MATH_NO_LONG_DOUBLE_MATH_FUNCTIONS) && !defined(__MINGW64__)
#if !defined(BOOST_LEXICAL_CAST_NO_LONG_DOUBLE_MATH_FUNCTIONS)
test_round_conversion<long double>();
test_msvc_magic_values<long double>();
#endif
BOOST_CHECK(true);
BOOST_TEST(true);
}
int main()
{
test_round_conversion_float();
test_round_conversion_double();
test_round_conversion_long_double();
return boost::report_errors();
}
-28
View File
@@ -1,28 +0,0 @@
// Unit test for boost::lexical_cast for https://svn.boost.org/trac/boost/ticket/11669.
//
// See http://www.boost.org for most recent version, including documentation.
//
// Copyright Antony Polukhin, 2015-2021.
//
// Distributed under the Boost
// Software License, Version 1.0. (See accompanying file
// LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt).
#include <string>
#define BOOST_LCAST_NO_COMPILE_TIME_PRECISION
#include <boost/lexical_cast.hpp>
#include <boost/test/unit_test.hpp>
void main_check() {
BOOST_CHECK(!boost::lexical_cast<std::string>(2.12345).empty());
BOOST_CHECK(!boost::lexical_cast<std::string>(2.12345678).empty());
}
boost::unit_test::test_suite *init_unit_test_suite(int, char *[])
{
boost::unit_test::test_suite *suite =
BOOST_TEST_SUITE("lexical_cast no-compile-time-precision check");
suite->add(BOOST_TEST_CASE(main_check));
return suite;
}
+6 -2
View File
@@ -2,7 +2,7 @@
//
// See http://www.boost.org for most recent version, including documentation.
//
// Copyright Antony Polukhin, 2012-2021.
// Copyright Antony Polukhin, 2012-2026.
//
// Distributed under the Boost
// Software License, Version 1.0. (See accompanying file
@@ -16,12 +16,16 @@
#pragma warning(disable: 4097 4100 4121 4127 4146 4244 4245 4511 4512 4701 4800)
#endif
#include <boost/lexical_cast.hpp>
#include <boost/core/lightweight_test.hpp>
#include <boost/range/iterator_range.hpp>
#include <cstdlib>
#if defined(BOOST_USE_MODULES)
#undef BOOST_USE_MODULES
#endif
#include <boost/lexical_cast.hpp>
#include "escape_struct.hpp"
#ifndef BOOST_NO_EXCEPTIONS
+49 -56
View File
@@ -2,26 +2,21 @@
//
// See http://www.boost.org for most recent version, including documentation.
//
// Copyright Antony Polukhin, 2012-2021.
// Copyright Antony Polukhin, 2012-2026.
//
// Distributed under the Boost
// Software License, Version 1.0. (See accompanying file
// LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt).
#include <boost/config.hpp>
#if defined(__INTEL_COMPILER)
#pragma warning(disable: 193 383 488 981 1418 1419)
#elif defined(BOOST_MSVC)
#pragma warning(disable: 4097 4100 4121 4127 4146 4244 4245 4511 4512 4701 4800)
#endif
#include <boost/lexical_cast.hpp>
#include <boost/test/unit_test.hpp>
#include <boost/core/lightweight_test.hpp>
#include <boost/range/iterator_range.hpp>
#include "escape_struct.hpp"
#include <vector>
#include <boost/lexical_cast.hpp>
using namespace boost;
// Testing compilation and some basic usage with BOOST_NO_STD_LOCALE
@@ -36,20 +31,20 @@ using namespace boost;
template <class T>
void do_test_on_empty_input(T& v)
{
BOOST_CHECK_THROW(lexical_cast<int>(v), bad_lexical_cast);
BOOST_CHECK_THROW(lexical_cast<float>(v), bad_lexical_cast);
BOOST_CHECK_THROW(lexical_cast<double>(v), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<int>(v), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<float>(v), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<double>(v), bad_lexical_cast);
#ifndef BOOST_MATH_NO_LONG_DOUBLE_MATH_FUNCTIONS
BOOST_CHECK_THROW(lexical_cast<long double>(v), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<long double>(v), bad_lexical_cast);
#endif
BOOST_CHECK_THROW(lexical_cast<unsigned int>(v), bad_lexical_cast);
BOOST_CHECK_THROW(lexical_cast<unsigned short>(v), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<unsigned int>(v), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<unsigned short>(v), bad_lexical_cast);
#if defined(BOOST_HAS_LONG_LONG)
BOOST_CHECK_THROW(lexical_cast<boost::ulong_long_type>(v), bad_lexical_cast);
BOOST_CHECK_THROW(lexical_cast<boost::long_long_type>(v), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<boost::ulong_long_type>(v), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<boost::long_long_type>(v), bad_lexical_cast);
#elif defined(BOOST_HAS_MS_INT64)
BOOST_CHECK_THROW(lexical_cast<unsigned __int64>(v), bad_lexical_cast);
BOOST_CHECK_THROW(lexical_cast<__int64>(v), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<unsigned __int64>(v), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<__int64>(v), bad_lexical_cast);
#endif
}
@@ -57,33 +52,33 @@ void test_empty_1()
{
boost::iterator_range<char*> v;
do_test_on_empty_input(v);
BOOST_CHECK_EQUAL(lexical_cast<std::string>(v), std::string());
BOOST_CHECK_THROW(lexical_cast<char>(v), bad_lexical_cast);
BOOST_CHECK_THROW(lexical_cast<unsigned char>(v), bad_lexical_cast);
BOOST_CHECK_THROW(lexical_cast<signed char>(v), bad_lexical_cast);
BOOST_TEST_EQ(lexical_cast<std::string>(v), std::string());
BOOST_TEST_THROWS(lexical_cast<char>(v), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<unsigned char>(v), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<signed char>(v), bad_lexical_cast);
boost::iterator_range<const char*> cv;
do_test_on_empty_input(cv);
BOOST_CHECK_EQUAL(lexical_cast<std::string>(cv), std::string());
BOOST_CHECK_THROW(lexical_cast<char>(cv), bad_lexical_cast);
BOOST_CHECK_THROW(lexical_cast<unsigned char>(cv), bad_lexical_cast);
BOOST_CHECK_THROW(lexical_cast<signed char>(cv), bad_lexical_cast);
BOOST_TEST_EQ(lexical_cast<std::string>(cv), std::string());
BOOST_TEST_THROWS(lexical_cast<char>(cv), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<unsigned char>(cv), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<signed char>(cv), bad_lexical_cast);
const boost::iterator_range<const char*> ccv;
do_test_on_empty_input(ccv);
BOOST_CHECK_EQUAL(lexical_cast<std::string>(ccv), std::string());
BOOST_CHECK_THROW(lexical_cast<char>(ccv), bad_lexical_cast);
BOOST_CHECK_THROW(lexical_cast<unsigned char>(ccv), bad_lexical_cast);
BOOST_CHECK_THROW(lexical_cast<signed char>(ccv), bad_lexical_cast);
BOOST_TEST_EQ(lexical_cast<std::string>(ccv), std::string());
BOOST_TEST_THROWS(lexical_cast<char>(ccv), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<unsigned char>(ccv), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<signed char>(ccv), bad_lexical_cast);
}
void test_empty_2()
{
std::string v;
do_test_on_empty_input(v);
BOOST_CHECK_THROW(lexical_cast<char>(v), bad_lexical_cast);
BOOST_CHECK_THROW(lexical_cast<unsigned char>(v), bad_lexical_cast);
BOOST_CHECK_THROW(lexical_cast<signed char>(v), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<char>(v), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<unsigned char>(v), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<signed char>(v), bad_lexical_cast);
}
void test_empty_3()
@@ -91,16 +86,16 @@ void test_empty_3()
EscapeStruct v("");
do_test_on_empty_input(v);
BOOST_CHECK_THROW(lexical_cast<char>(v), bad_lexical_cast);
BOOST_CHECK_THROW(lexical_cast<unsigned char>(v), bad_lexical_cast);
BOOST_CHECK_THROW(lexical_cast<signed char>(v), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<char>(v), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<unsigned char>(v), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<signed char>(v), bad_lexical_cast);
v = lexical_cast<EscapeStruct>(100);
BOOST_CHECK_EQUAL(lexical_cast<int>(v), 100);
BOOST_CHECK_EQUAL(lexical_cast<unsigned int>(v), 100u);
BOOST_TEST_EQ(lexical_cast<int>(v), 100);
BOOST_TEST_EQ(lexical_cast<unsigned int>(v), 100u);
v = lexical_cast<EscapeStruct>(0.0);
BOOST_CHECK_EQUAL(lexical_cast<double>(v), 0.0);
BOOST_TEST_EQ(lexical_cast<double>(v), 0.0);
}
namespace std {
@@ -108,7 +103,7 @@ inline std::ostream & operator<<(std::ostream & out, const std::vector<long> & v
{
std::ostream_iterator<long> it(out);
std::copy(v.begin(), v.end(), it);
BOOST_CHECK(out);
BOOST_TEST(out);
return out;
}
}
@@ -117,9 +112,9 @@ void test_empty_4()
{
std::vector<long> v;
do_test_on_empty_input(v);
BOOST_CHECK_THROW(lexical_cast<char>(v), bad_lexical_cast);
BOOST_CHECK_THROW(lexical_cast<unsigned char>(v), bad_lexical_cast);
BOOST_CHECK_THROW(lexical_cast<signed char>(v), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<char>(v), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<unsigned char>(v), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<signed char>(v), bad_lexical_cast);
}
@@ -132,19 +127,17 @@ struct my_string {
void test_empty_5()
{
my_string st;
BOOST_CHECK_EQUAL(boost::lexical_cast<std::string>(st), std::string());;
BOOST_TEST_EQ(boost::lexical_cast<std::string>(st), std::string());;
}
unit_test::test_suite *init_unit_test_suite(int, char *[])
int main()
{
unit_test::test_suite *suite =
BOOST_TEST_SUITE("lexical_cast. Testing with BOOST_NO_STD_LOCALE");
suite->add(BOOST_TEST_CASE(&test_empty_1));
suite->add(BOOST_TEST_CASE(&test_empty_2));
suite->add(BOOST_TEST_CASE(&test_empty_3));
suite->add(BOOST_TEST_CASE(&test_empty_4));
suite->add(BOOST_TEST_CASE(&test_empty_5));
test_empty_1();
test_empty_2();
test_empty_3();
test_empty_4();
test_empty_5();
return suite;
return boost::report_errors();
}
+9 -22
View File
@@ -3,6 +3,7 @@
// See http://www.boost.org for most recent version, including documentation.
//
// Copyright Alexander Nasonov, 2007.
// Copyright Antony Polukhin, 2023-2026.
//
// Distributed under the Boost
// Software License, Version 1.0. (See accompanying file
@@ -10,30 +11,11 @@
//
// Test that Source can be non-copyable.
#include <boost/config.hpp>
#include <boost/core/noncopyable.hpp>
#if defined(__INTEL_COMPILER)
#pragma warning(disable: 193 383 488 981 1418 1419)
#elif defined(BOOST_MSVC)
#pragma warning(disable: 4097 4100 4121 4127 4146 4244 4245 4511 4512 4701 4800)
#endif
#include <boost/core/lightweight_test.hpp>
#include <boost/lexical_cast.hpp>
#include <boost/noncopyable.hpp>
#include <boost/test/unit_test.hpp>
using namespace boost;
void test_noncopyable();
unit_test::test_suite *init_unit_test_suite(int, char *[])
{
unit_test::test_suite *suite =
BOOST_TEST_SUITE("lexical_cast unit test");
suite->add(BOOST_TEST_CASE(&test_noncopyable));
return suite;
}
class Noncopyable : private boost::noncopyable
{
@@ -49,6 +31,11 @@ inline std::ostream &operator<<(std::ostream &out, const Noncopyable&)
void test_noncopyable()
{
Noncopyable x;
BOOST_CHECK(boost::lexical_cast<std::string>(x) == "Noncopyable");
BOOST_TEST(boost::lexical_cast<std::string>(x) == "Noncopyable");
}
int main()
{
test_noncopyable();
return boost::report_errors();
}
+16 -24
View File
@@ -2,24 +2,17 @@
//
// See http://www.boost.org for most recent version, including documentation.
//
// Copyright Antony Polukhin, 2012-2021.
// Copyright Antony Polukhin, 2012-2026.
//
// Distributed under the Boost
// Software License, Version 1.0. (See accompanying file
// LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt).
#include <boost/config.hpp>
#include <boost/core/lightweight_test.hpp>
#if defined(__INTEL_COMPILER)
#pragma warning(disable: 193 383 488 981 1418 1419)
#elif defined(BOOST_MSVC)
#pragma warning(disable: 4097 4100 4121 4127 4146 4244 4245 4511 4512 4701 4800)
#endif
#include <sstream>
#include <boost/lexical_cast.hpp>
#include <boost/test/unit_test.hpp>
using namespace boost;
#if defined(BOOST_NO_STRINGSTREAM)
typedef std::strstream ss_t;
@@ -36,15 +29,15 @@ void test_void_pointers_conversions()
ss_t ss;
ss << p_to_null;
BOOST_CHECK_EQUAL(boost::lexical_cast<std::string>(p_to_null), ss.str());
BOOST_TEST_EQ(boost::lexical_cast<std::string>(p_to_null), ss.str());
ss.str(std::string());
ss << cp_to_data;
BOOST_CHECK_EQUAL(boost::lexical_cast<std::string>(cp_to_data), ss.str());
BOOST_TEST_EQ(boost::lexical_cast<std::string>(cp_to_data), ss.str());
ss.str(std::string());
ss << p_to_data;
BOOST_CHECK_EQUAL(boost::lexical_cast<std::string>(p_to_data), ss.str());
BOOST_TEST_EQ(boost::lexical_cast<std::string>(p_to_data), ss.str());
ss.str(std::string());
}
@@ -59,15 +52,15 @@ void test_incomplete_type_pointers_conversions()
ss_t ss;
ss << p_to_null;
BOOST_CHECK_EQUAL(boost::lexical_cast<std::string>(p_to_null), ss.str());
BOOST_TEST_EQ(boost::lexical_cast<std::string>(p_to_null), ss.str());
ss.str(std::string());
ss << cp_to_data;
BOOST_CHECK_EQUAL(boost::lexical_cast<std::string>(cp_to_data), ss.str());
BOOST_TEST_EQ(boost::lexical_cast<std::string>(cp_to_data), ss.str());
ss.str(std::string());
ss << p_to_data;
BOOST_CHECK_EQUAL(boost::lexical_cast<std::string>(p_to_data), ss.str());
BOOST_TEST_EQ(boost::lexical_cast<std::string>(p_to_data), ss.str());
ss.str(std::string());
}
@@ -82,15 +75,14 @@ void test_inomplete_type_with_overloaded_ostream_op() {
meh heh = NULL;
ss_t ss;
ss << heh;
BOOST_CHECK_EQUAL(boost::lexical_cast<std::string>(heh), ss.str());
BOOST_TEST_EQ(boost::lexical_cast<std::string>(heh), ss.str());
}
unit_test::test_suite *init_unit_test_suite(int, char *[])
int main()
{
unit_test::test_suite *suite =
BOOST_TEST_SUITE("lexical_cast pinters test");
suite->add(BOOST_TEST_CASE(&test_void_pointers_conversions));
suite->add(BOOST_TEST_CASE(&test_incomplete_type_pointers_conversions));
suite->add(BOOST_TEST_CASE(&test_inomplete_type_with_overloaded_ostream_op));
return suite;
test_void_pointers_conversions();
test_incomplete_type_pointers_conversions();
test_inomplete_type_with_overloaded_ostream_op();
return boost::report_errors();
}
+52 -61
View File
@@ -2,19 +2,18 @@
//
// See http://www.boost.org for most recent version, including documentation.
//
// Copyright Antony Polukhin, 2011-2021.
// Copyright Antony Polukhin, 2011-2026.
//
// Distributed under the Boost
// Software License, Version 1.0. (See accompanying file
// LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt).
#include <boost/config.hpp>
#include <boost/test/unit_test.hpp>
#include <boost/lexical_cast.hpp>
#include <boost/core/lightweight_test.hpp>
#include <iostream>
#include <type_traits>
#include <boost/lexical_cast.hpp>
///////////////////////// char streamable classes ///////////////////////////////////////////
@@ -24,33 +23,33 @@ std::ostream& operator << (std::ostream& ostr, const streamable_easy&) {
return ostr << streamable_easy::value;
}
std::istream& operator >> (std::istream& istr, const streamable_easy&) {
int i; istr >> i; BOOST_CHECK_EQUAL(i, streamable_easy::value);
int i; istr >> i; BOOST_TEST_EQ(i, streamable_easy::value);
return istr;
}
struct streamable_medium { enum ENU {value = 1}; };
template <class CharT>
typename boost::enable_if<boost::is_same<CharT, char>, std::basic_ostream<CharT>&>::type
typename std::enable_if<std::is_same<CharT, char>::value, std::basic_ostream<CharT>&>::type
operator << (std::basic_ostream<CharT>& ostr, const streamable_medium&) {
return ostr << streamable_medium::value;
}
template <class CharT>
typename boost::enable_if<boost::is_same<CharT, char>, std::basic_istream<CharT>&>::type
typename std::enable_if<std::is_same<CharT, char>::value, std::basic_istream<CharT>&>::type
operator >> (std::basic_istream<CharT>& istr, const streamable_medium&) {
int i; istr >> i; BOOST_CHECK_EQUAL(i, streamable_medium::value);
int i; istr >> i; BOOST_TEST_EQ(i, streamable_medium::value);
return istr;
}
struct streamable_hard { enum ENU {value = 2}; };
template <class CharT, class TraitsT>
typename boost::enable_if<boost::is_same<CharT, char>, std::basic_ostream<CharT, TraitsT>&>::type
typename std::enable_if<std::is_same<CharT, char>::value, std::basic_ostream<CharT, TraitsT>&>::type
operator << (std::basic_ostream<CharT, TraitsT>& ostr, const streamable_hard&) {
return ostr << streamable_hard::value;
}
template <class CharT, class TraitsT>
typename boost::enable_if<boost::is_same<CharT, char>, std::basic_istream<CharT, TraitsT>&>::type
typename std::enable_if<std::is_same<CharT, char>::value, std::basic_istream<CharT, TraitsT>&>::type
operator >> (std::basic_istream<CharT, TraitsT>& istr, const streamable_hard&) {
int i; istr >> i; BOOST_CHECK_EQUAL(i, streamable_hard::value);
int i; istr >> i; BOOST_TEST_EQ(i, streamable_hard::value);
return istr;
}
@@ -61,7 +60,7 @@ std::basic_ostream<char, TraitsT>& operator << (std::basic_ostream<char, TraitsT
}
template <class TraitsT>
std::basic_istream<char, TraitsT>& operator >> (std::basic_istream<char, TraitsT>& istr, const streamable_hard2&) {
int i; istr >> i; BOOST_CHECK_EQUAL(i, streamable_hard2::value);
int i; istr >> i; BOOST_TEST_EQ(i, streamable_hard2::value);
return istr;
}
@@ -73,33 +72,33 @@ std::wostream& operator << (std::wostream& ostr, const wstreamable_easy&) {
return ostr << wstreamable_easy::value;
}
std::wistream& operator >> (std::wistream& istr, const wstreamable_easy&) {
int i; istr >> i; BOOST_CHECK_EQUAL(i, wstreamable_easy::value);
int i; istr >> i; BOOST_TEST_EQ(i, wstreamable_easy::value);
return istr;
}
struct wstreamable_medium { enum ENU {value = 5}; };
template <class CharT>
typename boost::enable_if<boost::is_same<CharT, wchar_t>, std::basic_ostream<CharT>& >::type
typename std::enable_if<std::is_same<CharT, wchar_t>::value, std::basic_ostream<CharT>& >::type
operator << (std::basic_ostream<CharT>& ostr, const wstreamable_medium&) {
return ostr << wstreamable_medium::value;
}
template <class CharT>
typename boost::enable_if<boost::is_same<CharT, wchar_t>, std::basic_istream<CharT>& >::type
typename std::enable_if<std::is_same<CharT, wchar_t>::value, std::basic_istream<CharT>& >::type
operator >> (std::basic_istream<CharT>& istr, const wstreamable_medium&) {
int i; istr >> i; BOOST_CHECK_EQUAL(i, wstreamable_medium::value);
int i; istr >> i; BOOST_TEST_EQ(i, wstreamable_medium::value);
return istr;
}
struct wstreamable_hard { enum ENU {value = 6}; };
template <class CharT, class TraitsT>
typename boost::enable_if<boost::is_same<CharT, wchar_t>, std::basic_ostream<CharT, TraitsT>&>::type
typename std::enable_if<std::is_same<CharT, wchar_t>::value, std::basic_ostream<CharT, TraitsT>&>::type
operator << (std::basic_ostream<CharT, TraitsT>& ostr, const wstreamable_hard&) {
return ostr << wstreamable_hard::value;
}
template <class CharT, class TraitsT>
typename boost::enable_if<boost::is_same<CharT, wchar_t>, std::basic_istream<CharT, TraitsT>&>::type
typename std::enable_if<std::is_same<CharT, wchar_t>::value, std::basic_istream<CharT, TraitsT>&>::type
operator >> (std::basic_istream<CharT, TraitsT>& istr, const wstreamable_hard&) {
int i; istr >> i; BOOST_CHECK_EQUAL(i, wstreamable_hard::value);
int i; istr >> i; BOOST_TEST_EQ(i, wstreamable_hard::value);
return istr;
}
@@ -110,7 +109,7 @@ std::basic_ostream<wchar_t, TraitsT>& operator << (std::basic_ostream<wchar_t, T
}
template <class TraitsT>
std::basic_istream<wchar_t, TraitsT>& operator >> (std::basic_istream<wchar_t, TraitsT>& istr, const wstreamable_hard2&) {
int i; istr >> i; BOOST_CHECK_EQUAL(i, wstreamable_hard2::value);
int i; istr >> i; BOOST_TEST_EQ(i, wstreamable_hard2::value);
return istr;
}
@@ -122,7 +121,7 @@ std::ostream& operator << (std::ostream& ostr, const bistreamable_easy&) {
return ostr << bistreamable_easy::value;
}
std::istream& operator >> (std::istream& istr, const bistreamable_easy&) {
int i; istr >> i; BOOST_CHECK_EQUAL(i, bistreamable_easy::value);
int i; istr >> i; BOOST_TEST_EQ(i, bistreamable_easy::value);
return istr;
}
@@ -130,7 +129,7 @@ std::wostream& operator << (std::wostream& ostr, const bistreamable_easy&) {
return ostr << bistreamable_easy::value + 100;
}
std::wistream& operator >> (std::wistream& istr, const bistreamable_easy&) {
int i; istr >> i; BOOST_CHECK_EQUAL(i, bistreamable_easy::value + 100);
int i; istr >> i; BOOST_TEST_EQ(i, bistreamable_easy::value + 100);
return istr;
}
@@ -141,7 +140,7 @@ std::basic_ostream<CharT>& operator << (std::basic_ostream<CharT>& ostr, const b
}
template <class CharT>
std::basic_istream<CharT>& operator >> (std::basic_istream<CharT>& istr, const bistreamable_medium&) {
int i; istr >> i; BOOST_CHECK_EQUAL(i, bistreamable_medium::value + (sizeof(CharT) == 1 ? 0 : 100));
int i; istr >> i; BOOST_TEST_EQ(i, bistreamable_medium::value + (sizeof(CharT) == 1 ? 0 : 100));
return istr;
}
@@ -152,7 +151,7 @@ std::basic_ostream<CharT, TraitsT>& operator << (std::basic_ostream<CharT, Trait
}
template <class CharT, class TraitsT>
std::basic_istream<CharT, TraitsT>& operator >> (std::basic_istream<CharT, TraitsT>& istr, const bistreamable_hard&) {
int i; istr >> i; BOOST_CHECK_EQUAL(i, bistreamable_hard::value + (sizeof(CharT) == 1 ? 0 : 100));
int i; istr >> i; BOOST_TEST_EQ(i, bistreamable_hard::value + (sizeof(CharT) == 1 ? 0 : 100));
return istr;
}
@@ -163,7 +162,7 @@ std::basic_ostream<char, TraitsT>& operator << (std::basic_ostream<char, TraitsT
}
template <class TraitsT>
std::basic_istream<char, TraitsT>& operator >> (std::basic_istream<char, TraitsT>& istr, const bistreamable_hard2&) {
int i; istr >> i; BOOST_CHECK_EQUAL(i, bistreamable_hard2::value);
int i; istr >> i; BOOST_TEST_EQ(i, bistreamable_hard2::value);
return istr;
}
@@ -173,49 +172,33 @@ std::basic_ostream<wchar_t, TraitsT>& operator << (std::basic_ostream<wchar_t, T
}
template <class TraitsT>
std::basic_istream<wchar_t, TraitsT>& operator >> (std::basic_istream<wchar_t, TraitsT>& istr, const bistreamable_hard2&) {
int i; istr >> i; BOOST_CHECK_EQUAL(i, bistreamable_hard2::value + 100);
int i; istr >> i; BOOST_TEST_EQ(i, bistreamable_hard2::value + 100);
return istr;
}
void test_ostream_character_detection();
void test_istream_character_detection();
void test_mixed_stream_character_detection();
boost::unit_test::test_suite *init_unit_test_suite(int, char *[])
{
boost::unit_test::test_suite *suite =
BOOST_TEST_SUITE("lexical_cast stream character detection");
suite->add(BOOST_TEST_CASE(&test_ostream_character_detection));
suite->add(BOOST_TEST_CASE(&test_istream_character_detection));
suite->add(BOOST_TEST_CASE(&test_mixed_stream_character_detection));
return suite;
}
template <class T>
static void test_ostr_impl() {
T streamable;
BOOST_CHECK_EQUAL(T::value, boost::lexical_cast<int>(streamable));
BOOST_CHECK_EQUAL(boost::lexical_cast<std::string>(T::value), boost::lexical_cast<std::string>(streamable));
BOOST_TEST_EQ(T::value, boost::lexical_cast<int>(streamable));
BOOST_TEST_EQ(boost::lexical_cast<std::string>(T::value), boost::lexical_cast<std::string>(streamable));
}
template <class T>
static void test_wostr_impl() {
T streamable;
BOOST_CHECK_EQUAL(T::value, boost::lexical_cast<int>(streamable));
// BOOST_CHECK_EQUAL(boost::lexical_cast<std::string>(T::value), boost::lexical_cast<std::string>(streamable)); // Shall not compile???
BOOST_CHECK(boost::lexical_cast<std::wstring>(T::value) == boost::lexical_cast<std::wstring>(streamable));
BOOST_TEST_EQ(T::value, boost::lexical_cast<int>(streamable));
// BOOST_TEST_EQ(boost::lexical_cast<std::string>(T::value), boost::lexical_cast<std::string>(streamable)); // Shall not compile???
BOOST_TEST(boost::lexical_cast<std::wstring>(T::value) == boost::lexical_cast<std::wstring>(streamable));
}
template <class T>
static void test_bistr_impl() {
T streamable;
BOOST_CHECK_EQUAL(T::value, boost::lexical_cast<int>(streamable));
BOOST_CHECK_EQUAL(boost::lexical_cast<std::string>(T::value), boost::lexical_cast<std::string>(streamable));
BOOST_TEST_EQ(T::value, boost::lexical_cast<int>(streamable));
BOOST_TEST_EQ(boost::lexical_cast<std::string>(T::value), boost::lexical_cast<std::string>(streamable));
BOOST_CHECK(boost::lexical_cast<std::wstring>(T::value + 100) == boost::lexical_cast<std::wstring>(streamable));
BOOST_TEST(boost::lexical_cast<std::wstring>(T::value + 100) == boost::lexical_cast<std::wstring>(streamable));
}
void test_ostream_character_detection() {
@@ -273,17 +256,14 @@ void test_istream_character_detection() {
test_bistr_instr_impl<bistreamable_hard2>();
}
struct wistreamble_ostreamable { enum ENU {value = 200}; };
std::ostream& operator << (std::ostream& ostr, const wistreamble_ostreamable&) {
return ostr << wistreamble_ostreamable::value;
}
std::wistream& operator >> (std::wistream& istr, const wistreamble_ostreamable&) {
int i; istr >> i; BOOST_CHECK_EQUAL(i, wistreamble_ostreamable::value);
int i = 100;
istr >> i;
BOOST_TEST_EQ(i, wistreamble_ostreamable::value);
return istr;
}
@@ -292,16 +272,27 @@ std::wostream& operator << (std::wostream& ostr, const istreamble_wostreamable&)
return ostr << istreamble_wostreamable::value;
}
std::istream& operator >> (std::istream& istr, const istreamble_wostreamable&) {
int i; istr >> i; BOOST_CHECK_EQUAL(i, istreamble_wostreamable::value);
int i; istr >> i; BOOST_TEST_EQ(i, istreamble_wostreamable::value);
return istr;
}
void test_mixed_stream_character_detection() {
//boost::lexical_cast<std::wstring>(std::string("qwe")); // TODO: ALLOW IT AS EXTENSION!
BOOST_TEST_EQ(boost::lexical_cast<int>(wistreamble_ostreamable::value), wistreamble_ostreamable::value);
boost::lexical_cast<wistreamble_ostreamable>(wistreamble_ostreamable::value);
BOOST_CHECK_EQUAL(boost::lexical_cast<int>(wistreamble_ostreamable()), wistreamble_ostreamable::value);
BOOST_TEST_EQ(boost::lexical_cast<int>(wistreamble_ostreamable()), wistreamble_ostreamable::value);
boost::lexical_cast<istreamble_wostreamable>(istreamble_wostreamable::value);
BOOST_CHECK_EQUAL(boost::lexical_cast<int>(istreamble_wostreamable()), istreamble_wostreamable::value);
BOOST_TEST_EQ(boost::lexical_cast<int>(istreamble_wostreamable()), istreamble_wostreamable::value);
}
int main()
{
test_ostream_character_detection();
test_istream_character_detection();
test_mixed_stream_character_detection();
return boost::report_errors();
}
+105 -64
View File
@@ -1,48 +1,59 @@
// Unit test for boost::lexical_cast.
//
// See http://www.boost.org for most recent version, including documentation.
//
// Copyright Antony Polukhin, 2012-2021.
// Copyright Antony Polukhin, 2012-2026.
//
// Distributed under the Boost
// Software License, Version 1.0. (See accompanying file
// LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt).
#include <boost/config.hpp>
#if defined(BOOST_USE_MODULES)
#undef BOOST_USE_MODULES
#endif
#include <boost/lexical_cast/detail/converter_lexical.hpp>
#include <boost/test/unit_test.hpp>
#include <boost/core/lightweight_test.hpp>
#include <boost/array.hpp>
#include <boost/container/string.hpp>
#include <boost/range/iterator_range.hpp>
#include <boost/utility/string_view.hpp>
#include <type_traits>
template <class T>
struct is_optimized_stream : std::false_type {};
template <class CharT, class Traits, std::size_t CharacterBufferSize>
struct is_optimized_stream< boost::detail::lcast::optimized_src_stream<CharT, Traits, CharacterBufferSize> > : std::true_type {};
template <class Source, class Target>
static void assert_optimized_stream()
{
BOOST_TEST((is_optimized_stream<
typename boost::detail::lexical_converter_impl<Source, Target>::from_src_stream
>::value));
}
template <class T>
static void test_optimized_types_to_string_const()
{
namespace de = boost::detail;
typedef de::lexical_cast_stream_traits<T, std::string> trait_1;
BOOST_CHECK(!trait_1::is_source_input_not_optimized_t::value);
BOOST_CHECK((boost::is_same<BOOST_DEDUCED_TYPENAME trait_1::src_char_t, char>::value));
BOOST_CHECK((boost::is_same<BOOST_DEDUCED_TYPENAME trait_1::target_char_t, char>::value));
BOOST_CHECK((boost::is_same<BOOST_DEDUCED_TYPENAME trait_1::char_type, char>::value));
BOOST_CHECK(!trait_1::is_string_widening_required_t::value);
BOOST_CHECK(!trait_1::is_source_input_not_optimized_t::value);
BOOST_TEST((std::is_same<typename trait_1::src_char_t, char>::value));
BOOST_TEST((std::is_same<typename trait_1::target_char_t, char>::value));
BOOST_TEST((std::is_same<typename trait_1::char_type, char>::value));
assert_optimized_stream<T, std::string>();
assert_optimized_stream<T, boost::container::string>();
typedef de::lexical_cast_stream_traits<const T, std::string> trait_2;
BOOST_CHECK(!trait_2::is_source_input_not_optimized_t::value);
BOOST_CHECK((boost::is_same<BOOST_DEDUCED_TYPENAME trait_2::src_char_t, char>::value));
BOOST_CHECK((boost::is_same<BOOST_DEDUCED_TYPENAME trait_2::target_char_t, char>::value));
BOOST_CHECK((boost::is_same<BOOST_DEDUCED_TYPENAME trait_2::char_type, char>::value));
BOOST_CHECK(!trait_2::is_string_widening_required_t::value);
BOOST_CHECK(!trait_2::is_source_input_not_optimized_t::value);
BOOST_TEST((std::is_same<typename trait_2::src_char_t, char>::value));
BOOST_TEST((std::is_same<typename trait_2::target_char_t, char>::value));
BOOST_TEST((std::is_same<typename trait_2::char_type, char>::value));
typedef de::lexical_cast_stream_traits<T, std::wstring> trait_3;
BOOST_CHECK(!trait_3::is_source_input_not_optimized_t::value);
BOOST_CHECK((boost::is_same<BOOST_DEDUCED_TYPENAME trait_3::src_char_t, char>::value));
BOOST_CHECK((boost::is_same<BOOST_DEDUCED_TYPENAME trait_3::target_char_t, wchar_t>::value));
BOOST_CHECK((boost::is_same<BOOST_DEDUCED_TYPENAME trait_3::char_type, wchar_t>::value));
BOOST_CHECK((boost::detail::is_character<BOOST_DEDUCED_TYPENAME trait_3::no_cv_src>::value != trait_3::is_string_widening_required_t::value));
BOOST_CHECK(!trait_3::is_source_input_not_optimized_t::value);
BOOST_TEST((std::is_same<typename trait_3::src_char_t, char>::value));
BOOST_TEST((std::is_same<typename trait_3::target_char_t, wchar_t>::value));
BOOST_TEST((std::is_same<typename trait_3::char_type, wchar_t>::value));
assert_optimized_stream<T, std::wstring>();
assert_optimized_stream<T, boost::container::wstring>();
}
@@ -53,50 +64,65 @@ static void test_optimized_types_to_string()
namespace de = boost::detail;
typedef de::lexical_cast_stream_traits<std::string, T> trait_4;
BOOST_CHECK(!trait_4::is_source_input_not_optimized_t::value);
BOOST_CHECK((boost::is_same<BOOST_DEDUCED_TYPENAME trait_4::src_char_t, char>::value));
BOOST_CHECK((boost::is_same<BOOST_DEDUCED_TYPENAME trait_4::target_char_t, char>::value));
BOOST_CHECK((boost::is_same<BOOST_DEDUCED_TYPENAME trait_4::char_type, char>::value));
BOOST_CHECK(!trait_4::is_string_widening_required_t::value);
BOOST_CHECK(!trait_4::is_source_input_not_optimized_t::value);
BOOST_TEST((std::is_same<typename trait_4::src_char_t, char>::value));
BOOST_TEST((std::is_same<typename trait_4::target_char_t, char>::value));
BOOST_TEST((std::is_same<typename trait_4::char_type, char>::value));
assert_optimized_stream<std::string, T>();
typedef de::lexical_cast_stream_traits<const std::string, T> trait_5;
BOOST_CHECK(!trait_5::is_source_input_not_optimized_t::value);
BOOST_CHECK((boost::is_same<BOOST_DEDUCED_TYPENAME trait_5::src_char_t, char>::value));
BOOST_CHECK((boost::is_same<BOOST_DEDUCED_TYPENAME trait_5::target_char_t, char>::value));
BOOST_CHECK((boost::is_same<BOOST_DEDUCED_TYPENAME trait_5::char_type, char>::value));
BOOST_CHECK(!trait_5::is_string_widening_required_t::value);
BOOST_CHECK(!trait_5::is_source_input_not_optimized_t::value);
BOOST_TEST((std::is_same<typename trait_5::src_char_t, char>::value));
BOOST_TEST((std::is_same<typename trait_5::target_char_t, char>::value));
BOOST_TEST((std::is_same<typename trait_5::char_type, char>::value));
typedef de::lexical_cast_stream_traits<const std::wstring, T> trait_6;
BOOST_CHECK(!trait_6::is_source_input_not_optimized_t::value);
BOOST_CHECK((boost::is_same<BOOST_DEDUCED_TYPENAME trait_6::src_char_t, wchar_t>::value));
BOOST_CHECK((boost::is_same<BOOST_DEDUCED_TYPENAME trait_6::target_char_t, char>::value));
BOOST_CHECK((boost::is_same<BOOST_DEDUCED_TYPENAME trait_6::char_type, wchar_t>::value));
BOOST_CHECK(!trait_6::is_string_widening_required_t::value);
BOOST_TEST((std::is_same<typename trait_6::src_char_t, wchar_t>::value));
BOOST_TEST((std::is_same<typename trait_6::target_char_t, char>::value));
BOOST_TEST((std::is_same<typename trait_6::char_type, wchar_t>::value));
}
template <class T>
static void test_optimized_types_to_x_string()
{
test_optimized_types_to_string<T>();
assert_optimized_stream<std::wstring, T>();
assert_optimized_stream<boost::container::wstring, T>();
}
template <class T>
static void test_optimized_types_to_wstring()
{
assert_optimized_stream<std::wstring, T>();
assert_optimized_stream<T, std::wstring>();
assert_optimized_stream<boost::container::wstring, T>();
assert_optimized_stream<T, boost::container::wstring>();
}
void test_metafunctions()
{
test_optimized_types_to_string<bool>();
test_optimized_types_to_string<char>();
test_optimized_types_to_string<unsigned char>();
test_optimized_types_to_string<signed char>();
test_optimized_types_to_string<short>();
test_optimized_types_to_string<unsigned short>();
test_optimized_types_to_string<int>();
test_optimized_types_to_string<unsigned int>();
test_optimized_types_to_string<long>();
test_optimized_types_to_string<unsigned long>();
test_optimized_types_to_x_string<bool>();
test_optimized_types_to_x_string<char>();
test_optimized_types_to_x_string<unsigned char>();
test_optimized_types_to_x_string<signed char>();
test_optimized_types_to_x_string<short>();
test_optimized_types_to_x_string<unsigned short>();
test_optimized_types_to_x_string<int>();
test_optimized_types_to_x_string<unsigned int>();
test_optimized_types_to_x_string<long>();
test_optimized_types_to_x_string<unsigned long>();
#if defined(BOOST_HAS_LONG_LONG)
test_optimized_types_to_string<boost::ulong_long_type>();
test_optimized_types_to_string<boost::long_long_type>();
test_optimized_types_to_x_string<boost::ulong_long_type>();
test_optimized_types_to_x_string<boost::long_long_type>();
#elif defined(BOOST_HAS_MS_INT64)
test_optimized_types_to_string<unsigned __int64>();
test_optimized_types_to_string<__int64>();
test_optimized_types_to_x_string<unsigned __int64>();
test_optimized_types_to_x_string<__int64>();
#endif
test_optimized_types_to_string<float>();
test_optimized_types_to_string<double>();
test_optimized_types_to_string<long double>();
test_optimized_types_to_string<std::string>();
test_optimized_types_to_string<char*>();
//test_optimized_types_to_string<char[5]>();
@@ -141,14 +167,29 @@ void test_metafunctions()
test_optimized_types_to_string_const<std::array<const unsigned char, 5> >();
test_optimized_types_to_string_const<std::array<const signed char, 1> >();
test_optimized_types_to_string_const<std::array<const signed char, 5> >();
test_optimized_types_to_wstring<std::array<wchar_t, 42>>();
test_optimized_types_to_wstring<std::array<const wchar_t, 42>>();
#endif
test_optimized_types_to_wstring<wchar_t*>();
test_optimized_types_to_wstring<const wchar_t*>();
test_optimized_types_to_wstring<boost::iterator_range<const wchar_t*>>();
test_optimized_types_to_wstring<boost::iterator_range<wchar_t*>>();
test_optimized_types_to_string<boost::string_view>();
test_optimized_types_to_wstring<boost::basic_string_view<wchar_t>>();
#ifndef BOOST_NO_CXX17_HDR_STRING_VIEW
test_optimized_types_to_string<std::string_view>();
test_optimized_types_to_wstring<std::basic_string_view<wchar_t>>();
#endif
}
boost::unit_test::test_suite *init_unit_test_suite(int, char *[])
int main()
{
boost::unit_test::test_suite *suite =
BOOST_TEST_SUITE("lexical_cast traits tests");
suite->add(BOOST_TEST_CASE(&test_metafunctions));
return suite;
test_metafunctions();
return boost::report_errors();
}
+49
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@@ -0,0 +1,49 @@
// Unit test for boost::lexical_cast.
//
// See http://www.boost.org for most recent version, including documentation.
//
// Copyright Antony Polukhin, 2012-2026.
//
// Distributed under the Boost
// Software License, Version 1.0. (See accompanying file
// LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt).
#include <boost/utility/string_view.hpp>
#ifndef BOOST_NO_CXX17_HDR_STRING_VIEW
#include <string_view>
#endif
#include <boost/core/lightweight_test.hpp>
#include <boost/lexical_cast.hpp>
template <class StringView>
void test_string_view_conversion() {
using boost::lexical_cast;
StringView sw = "1";
BOOST_TEST_EQ(lexical_cast<std::string>(sw), "1");
BOOST_TEST_EQ(lexical_cast<int>(sw), 1);
sw = StringView("a\0b", 3);
BOOST_TEST_EQ(lexical_cast<std::string>(sw), std::string("a\0b", 3));
sw = StringView("a\0b", 4);
BOOST_TEST_EQ(lexical_cast<std::string>(sw), std::string("a\0b", 4));
sw = StringView("\0a\0", 3);
BOOST_TEST_EQ(lexical_cast<std::string>(sw), std::string("\0a\0", 3));
}
int main() {
test_string_view_conversion<boost::string_view>();
#ifndef BOOST_NO_CXX17_HDR_STRING_VIEW
test_string_view_conversion<std::string_view>();
#endif
return boost::report_errors();
}
+3 -8
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@@ -2,22 +2,17 @@
//
// See http://www.boost.org for most recent version, including documentation.
//
// Copyright Antony Polukhin, 2013-2021.
// Copyright Antony Polukhin, 2013-2026.
//
// Distributed under the Boost
// Software License, Version 1.0. (See accompanying file
// LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt).
#include <boost/lexical_cast.hpp>
#include <boost/type.hpp>
#define BOOST_INCLUDE_MAIN
#include <boost/test/test_tools.hpp>
int test_main(int, char*[])
int main()
{
boost::lexical_cast<char*>("Hello");
BOOST_CHECK(false); // suppressing warning about 'boost::unit_test::{anonymous}::unit_test_log' defined but not used
return 0;
return 1;
}
+27 -30
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@@ -2,16 +2,15 @@
//
// See http://www.boost.org for most recent version, including documentation.
//
// Copyright Antony Polukhin, 2014-2019.
// Copyright Antony Polukhin, 2014-2026.
//
// Distributed under the Boost
// Software License, Version 1.0. (See accompanying file
// LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt).
#include <boost/config.hpp>
#include <boost/core/lightweight_test.hpp>
#include <boost/lexical_cast/try_lexical_convert.hpp>
#include <boost/test/unit_test.hpp>
using namespace boost::conversion;
@@ -19,28 +18,28 @@ void try_uncommon_cases()
{
std::string sres;
const bool res1 = try_lexical_convert(std::string("Test string"), sres);
BOOST_CHECK(res1);
BOOST_CHECK_EQUAL(sres, "Test string");
BOOST_TEST(res1);
BOOST_TEST_EQ(sres, "Test string");
volatile int vires;
const bool res2 = try_lexical_convert(100, vires);
BOOST_CHECK(res2);
BOOST_CHECK_EQUAL(vires, 100);
BOOST_TEST(res2);
BOOST_TEST_EQ(vires, 100);
const bool res3 = try_lexical_convert("Test string", sres);
BOOST_CHECK(res3);
BOOST_CHECK_EQUAL(sres, "Test string");
BOOST_TEST(res3);
BOOST_TEST_EQ(sres, "Test string");
const bool res4 = try_lexical_convert("Test string", sizeof("Test string") - 1, sres);
BOOST_CHECK(res4);
BOOST_CHECK_EQUAL(sres, "Test string");
BOOST_TEST(res4);
BOOST_TEST_EQ(sres, "Test string");
int ires;
BOOST_CHECK(!try_lexical_convert("Test string", ires));
BOOST_CHECK(!try_lexical_convert(1.1, ires));
BOOST_CHECK(!try_lexical_convert(-1.9, ires));
BOOST_CHECK(!try_lexical_convert("1.1", ires));
BOOST_CHECK(!try_lexical_convert("1000000000000000000000000000000000000000", ires));
BOOST_TEST(!try_lexical_convert("Test string", ires));
BOOST_TEST(!try_lexical_convert(1.1, ires));
BOOST_TEST(!try_lexical_convert(-1.9, ires));
BOOST_TEST(!try_lexical_convert("1.1", ires));
BOOST_TEST(!try_lexical_convert("1000000000000000000000000000000000000000", ires));
}
@@ -48,31 +47,29 @@ void try_common_cases()
{
int ires = 0;
const bool res1 = try_lexical_convert(std::string("100"), ires);
BOOST_CHECK(res1);
BOOST_CHECK_EQUAL(ires, 100);
BOOST_TEST(res1);
BOOST_TEST_EQ(ires, 100);
ires = 0;
const bool res2 = try_lexical_convert("-100", ires);
BOOST_CHECK(res2);
BOOST_CHECK_EQUAL(ires, -100);
BOOST_TEST(res2);
BOOST_TEST_EQ(ires, -100);
float fres = 1.0f;
const bool res3 = try_lexical_convert("0.0", fres);
BOOST_CHECK(res3);
BOOST_CHECK_EQUAL(fres, 0.0f);
BOOST_TEST(res3);
BOOST_TEST_EQ(fres, 0.0f);
fres = 1.0f;
const bool res4 = try_lexical_convert("0.0", sizeof("0.0") - 1, fres);
BOOST_CHECK(res4);
BOOST_CHECK_EQUAL(fres, 0.0f);
BOOST_TEST(res4);
BOOST_TEST_EQ(fres, 0.0f);
}
boost::unit_test::test_suite *init_unit_test_suite(int, char *[])
int main()
{
boost::unit_test::test_suite *suite =
BOOST_TEST_SUITE("Tests for try_lexical_convert");
suite->add(BOOST_TEST_CASE(&try_uncommon_cases));
suite->add(BOOST_TEST_CASE(&try_common_cases));
try_uncommon_cases();
try_common_cases();
return suite;
return boost::report_errors();
}
+2 -4
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@@ -2,17 +2,15 @@
//
// See http://www.boost.org for most recent version, including documentation.
//
// Copyright Antony Polukhin, 2011-2021.
// Copyright Antony Polukhin, 2011-2026.
//
// Distributed under the Boost
// Software License, Version 1.0. (See accompanying file
// LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt).
#include <boost/config.hpp>
#include <boost/static_assert.hpp>
#include <boost/lexical_cast.hpp>
#include <boost/static_assert.hpp>
#include <boost/date_time/gregorian/gregorian.hpp>
#include <boost/date_time/posix_time/posix_time.hpp>
+23 -23
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@@ -2,52 +2,52 @@
//
// See http://www.boost.org for most recent version, including documentation.
//
// Copyright Antony Polukhin, 2011-2021.
// Copyright Antony Polukhin, 2011-2026.
//
// Distributed under the Boost
// Software License, Version 1.0. (See accompanying file
// LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt).
#include <boost/config.hpp>
#if defined(__INTEL_COMPILER)
#pragma warning(disable: 193 383 488 981 1418 1419)
#elif defined(BOOST_MSVC)
#pragma warning(disable: 4097 4100 4121 4127 4146 4244 4245 4511 4512 4701 4800)
#endif
#include <boost/lexical_cast.hpp>
#include <boost/test/unit_test.hpp>
using namespace boost;
#include <boost/core/lightweight_test.hpp>
void test_typedefed_wchar_t(unsigned short) // wchar_t is a typedef for unsigned short
{
BOOST_CHECK_EQUAL(boost::lexical_cast<int>(L'A'), 65);
BOOST_CHECK_EQUAL(boost::lexical_cast<int>(L'B'), 66);
BOOST_TEST(boost::lexical_cast<int>(L'A') == 65);
BOOST_TEST(boost::lexical_cast<int>(L'B') == 66);
BOOST_CHECK_EQUAL(boost::lexical_cast<wchar_t>(L"65"), 65);
BOOST_CHECK_EQUAL(boost::lexical_cast<wchar_t>(L"66"), 66);
BOOST_TEST(boost::lexical_cast<wchar_t>(L"65") == 65);
BOOST_TEST(boost::lexical_cast<wchar_t>(L"66") == 66);
}
template <class T>
void test_typedefed_wchar_t(T)
{
BOOST_CHECK(1);
BOOST_TEST(1);
}
void test_typedefed_wchar_t_runtime()
{
test_typedefed_wchar_t(L'0');
}
unit_test::test_suite *init_unit_test_suite(int, char *[])
void test_unsigned_short_to_wstring()
{
unit_test::test_suite *suite =
BOOST_TEST_SUITE("lexical_cast typedefed wchar_t runtime test");
suite->add(BOOST_TEST_CASE(&test_typedefed_wchar_t_runtime));
// Test case from https://github.com/boostorg/lexical_cast/issues/89
unsigned short number = 4550;
return suite;
auto res1 = boost::lexical_cast<std::wstring>(number);
BOOST_TEST(res1 == L"4550");
auto res2 = boost::lexical_cast<std::string>(number);
BOOST_TEST_EQ(res2, "4550");
}
int main()
{
test_typedefed_wchar_t_runtime();
test_unsigned_short_to_wstring();
return boost::report_errors();
}
+11 -15
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@@ -12,12 +12,14 @@
// implementation has changed and it does not use stringstream for casts
// to integral types
#include <boost/config.hpp>
#include <boost/lexical_cast.hpp>
#include <boost/cstdint.hpp>
#include <boost/test/unit_test.hpp>
#include <boost/core/lightweight_test.hpp>
#include <string>
#include <sstream>
#include <boost/lexical_cast.hpp>
#ifdef BOOST_MSVC
# pragma warning(disable: 4127) // conditional expression is constant
@@ -37,22 +39,22 @@ void test_too_long_number(CharT zero)
std::basic_ostringstream<CharT> o;
o << (limits::max)() << zero;
s = o.str();
BOOST_CHECK_THROW(lexical_cast<T>(s), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<T>(s), bad_lexical_cast);
s[s.size()-1] += static_cast<CharT>(9); // '0' -> '9'
BOOST_CHECK_THROW(lexical_cast<T>(s), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<T>(s), bad_lexical_cast);
if (limits::is_signed)
{
std::basic_ostringstream<CharT> o2;
o2 << (limits::min)() << zero;
s = o2.str();
BOOST_CHECK_THROW(lexical_cast<T>(s), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<T>(s), bad_lexical_cast);
s[s.size()-1] += static_cast<CharT>(9); // '0' -> '9'
BOOST_CHECK_THROW(lexical_cast<T>(s), bad_lexical_cast);
BOOST_TEST_THROWS(lexical_cast<T>(s), bad_lexical_cast);
}
}
void test_vc8_bug()
int main()
{
test_too_long_number<boost::intmax_t>('0');
test_too_long_number<boost::uintmax_t>('0');
@@ -60,12 +62,6 @@ void test_vc8_bug()
test_too_long_number<boost::intmax_t>(L'0');
test_too_long_number<boost::uintmax_t>(L'0');
#endif
}
unit_test::test_suite *init_unit_test_suite(int, char *[])
{
unit_test::test_suite *suite =
BOOST_TEST_SUITE("lexical_cast vc8 bug unit test");
suite->add(BOOST_TEST_CASE(test_vc8_bug));
return suite;
return boost::report_errors();
}
+38 -44
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@@ -2,24 +2,20 @@
//
// See http://www.boost.org for most recent version, including documentation.
//
// Copyright Antony Polukhin, 2011-2021.
// Copyright Antony Polukhin, 2011-2026.
//
// Distributed under the Boost
// Software License, Version 1.0. (See accompanying file
// LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt).
#include <boost/config.hpp>
#if defined(__INTEL_COMPILER)
#pragma warning(disable: 193 383 488 981 1418 1419)
#elif defined(BOOST_MSVC)
#pragma warning(disable: 4097 4100 4121 4127 4146 4244 4245 4511 4512 4701 4800)
#endif
#include <boost/core/lightweight_test.hpp>
#include <boost/lexical_cast.hpp>
#include <boost/test/unit_test.hpp>
using namespace boost;
#if defined(BOOST_USE_MODULES)
#undef BOOST_USE_MODULES
#endif
#include <boost/lexical_cast/detail/lcast_char_constants.hpp>
#if defined(BOOST_NO_STRINGSTREAM) || defined(BOOST_NO_STD_WSTRING)
#define BOOST_LCAST_NO_WCHAR_T
@@ -36,14 +32,14 @@ void test_impl(const CharT* wc_arr)
// Following tests depend on realization of std::locale
// and pass for popular compilers and STL realizations
BOOST_CHECK(boost::lexical_cast<wide_char>(c_arr[0]) == wc_arr[0]);
BOOST_CHECK(boost::lexical_cast<wide_string>(c_arr) == wide_string(wc_arr));
BOOST_TEST(boost::lexical_cast<wide_char>(c_arr[0]) == wc_arr[0]);
BOOST_TEST(boost::lexical_cast<wide_string>(c_arr) == wide_string(wc_arr));
BOOST_CHECK(boost::lexical_cast<wide_string>(sc_arr) == wide_string(wc_arr) );
BOOST_CHECK(boost::lexical_cast<wide_string>(uc_arr) == wide_string(wc_arr) );
BOOST_TEST(boost::lexical_cast<wide_string>(sc_arr) == wide_string(wc_arr) );
BOOST_TEST(boost::lexical_cast<wide_string>(uc_arr) == wide_string(wc_arr) );
BOOST_CHECK_EQUAL(boost::lexical_cast<wide_char>(uc_arr[0]), wc_arr[0]);
BOOST_CHECK_EQUAL(boost::lexical_cast<wide_char>(sc_arr[0]), wc_arr[0]);
BOOST_TEST(boost::lexical_cast<wide_char>(uc_arr[0]) == wc_arr[0]);
BOOST_TEST(boost::lexical_cast<wide_char>(sc_arr[0]) == wc_arr[0]);
}
@@ -52,25 +48,25 @@ void test_char_types_conversions_wchar_t()
#ifndef BOOST_LCAST_NO_WCHAR_T
test_impl(L"Test array of chars");
wchar_t c = boost::detail::lcast_char_constants<wchar_t>::zero;
BOOST_CHECK_EQUAL(L'0', c);
BOOST_TEST(L'0' == c);
c = boost::detail::lcast_char_constants<wchar_t>::minus;
BOOST_CHECK_EQUAL(L'-', c);
BOOST_TEST(L'-' == c);
c = boost::detail::lcast_char_constants<wchar_t>::plus;
BOOST_CHECK_EQUAL(L'+', c);
BOOST_TEST(L'+' == c);
c = boost::detail::lcast_char_constants<wchar_t>::lowercase_e;
BOOST_CHECK_EQUAL(L'e', c);
BOOST_TEST(L'e' == c);
c = boost::detail::lcast_char_constants<wchar_t>::capital_e;
BOOST_CHECK_EQUAL(L'E', c);
BOOST_TEST(L'E' == c);
c = boost::detail::lcast_char_constants<wchar_t>::c_decimal_separator;
BOOST_CHECK_EQUAL(L'.', c);
BOOST_TEST(L'.' == c);
#endif
BOOST_CHECK(true);
BOOST_TEST(true);
}
void test_char_types_conversions_char16_t()
@@ -78,25 +74,25 @@ void test_char_types_conversions_char16_t()
#if !defined(BOOST_NO_CXX11_CHAR16_T) && !defined(BOOST_NO_CXX11_UNICODE_LITERALS) && defined(BOOST_STL_SUPPORTS_NEW_UNICODE_LOCALES)
test_impl(u"Test array of chars");
char16_t c = boost::detail::lcast_char_constants<char16_t>::zero;
BOOST_CHECK_EQUAL(u'0', c);
BOOST_TEST(u'0' == c);
c = boost::detail::lcast_char_constants<char16_t>::minus;
BOOST_CHECK_EQUAL(u'-', c);
BOOST_TEST(u'-' == c);
c = boost::detail::lcast_char_constants<char16_t>::plus;
BOOST_CHECK_EQUAL(u'+', c);
BOOST_TEST(u'+' == c);
c = boost::detail::lcast_char_constants<char16_t>::lowercase_e;
BOOST_CHECK_EQUAL(u'e', c);
BOOST_TEST(u'e' == c);
c = boost::detail::lcast_char_constants<char16_t>::capital_e;
BOOST_CHECK_EQUAL(u'E', c);
BOOST_TEST(u'E' == c);
c = boost::detail::lcast_char_constants<char16_t>::c_decimal_separator;
BOOST_CHECK_EQUAL(u'.', c);
BOOST_TEST(u'.' == c);
#endif
BOOST_CHECK(true);
BOOST_TEST(true);
}
void test_char_types_conversions_char32_t()
@@ -104,34 +100,32 @@ void test_char_types_conversions_char32_t()
#if !defined(BOOST_NO_CXX11_CHAR32_T) && !defined(BOOST_NO_CXX11_UNICODE_LITERALS) && defined(BOOST_STL_SUPPORTS_NEW_UNICODE_LOCALES)
test_impl(U"Test array of chars");
char32_t c = boost::detail::lcast_char_constants<char32_t>::zero;
BOOST_CHECK_EQUAL(U'0', c);
BOOST_TEST(U'0' == c);
c = boost::detail::lcast_char_constants<char32_t>::minus;
BOOST_CHECK_EQUAL(U'-', c);
BOOST_TEST(U'-' == c);
c = boost::detail::lcast_char_constants<char32_t>::plus;
BOOST_CHECK_EQUAL(U'+', c);
BOOST_TEST(U'+' == c);
c = boost::detail::lcast_char_constants<char32_t>::lowercase_e;
BOOST_CHECK_EQUAL(U'e', c);
BOOST_TEST(U'e' == c);
c = boost::detail::lcast_char_constants<char32_t>::capital_e;
BOOST_CHECK_EQUAL(U'E', c);
BOOST_TEST(U'E', == c);
c = boost::detail::lcast_char_constants<char32_t>::c_decimal_separator;
BOOST_CHECK_EQUAL(U'.', c);
BOOST_TEST(U'.' == c);
#endif
BOOST_CHECK(true);
BOOST_TEST(true);
}
unit_test::test_suite *init_unit_test_suite(int, char *[])
int main()
{
unit_test::test_suite *suite =
BOOST_TEST_SUITE("lexical_cast char => wide characters unit test (widening test)");
suite->add(BOOST_TEST_CASE(&test_char_types_conversions_wchar_t));
suite->add(BOOST_TEST_CASE(&test_char_types_conversions_char16_t));
suite->add(BOOST_TEST_CASE(&test_char_types_conversions_char32_t));
test_char_types_conversions_wchar_t();
test_char_types_conversions_char16_t();
test_char_types_conversions_char32_t();
return suite;
return boost::report_errors();
}