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Author SHA1 Message Date
feedc0de 31a194be30 Added library.json 2020-10-28 01:10:25 +01:00
51 changed files with 7581 additions and 2591 deletions
+4 -4
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@@ -1,9 +1,9 @@
name: CI_Android
on:
push:
branches: [ main ]
branches: [ master ]
pull_request:
branches: [ main ]
branches: [ master ]
jobs:
Android:
@@ -29,7 +29,7 @@ jobs:
echo "Emulator starting"
- name: Configure
run: cmake -Werror=dev -DCMAKE_TOOLCHAIN_FILE=$ANDROID_HOME/ndk-bundle/build/cmake/android.toolchain.cmake -DANDROID_PLATFORM=16 -DANDROID_ABI=x86_64 -DCMAKE_BUILD_TYPE=Debug ..
run: cmake -DCMAKE_TOOLCHAIN_FILE=$ANDROID_HOME/ndk-bundle/build/cmake/android.toolchain.cmake -DANDROID_PLATFORM=16 -DANDROID_ABI=x86_64 -DCMAKE_BUILD_TYPE=Debug ..
- name: Build
run: cmake --build . --parallel
@@ -47,4 +47,4 @@ jobs:
adb shell find /data/local/tmp/tests -maxdepth 1 -exec chmod +x {} \\\;
- name: Test
run: adb shell find /data/local/tmp/tests -name "*_tests" -maxdepth 1 -exec {} \\\;
run: adb shell find /data/local/tmp/tests -name "*_tests" -maxdepth 1 -exec {} \\\;
+5 -6
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@@ -1,9 +1,9 @@
name: CI_iOS
on:
push:
branches: [ main ]
branches: [ master ]
pull_request:
branches: [ main ]
branches: [ master ]
jobs:
iOS:
@@ -21,15 +21,14 @@ jobs:
- name: Configure
run: |
cmake \
-Werror=dev \
-GXcode \
-DCMAKE_SYSTEM_NAME=iOS \
"-DCMAKE_OSX_ARCHITECTURES=arm64;x86_64" \
-DCMAKE_OSX_DEPLOYMENT_TARGET=9 \
-DCMAKE_OSX_DEPLOYMENT_TARGET=8 \
-DCMAKE_TRY_COMPILE_TARGET_TYPE=STATIC_LIBRARY \
"-DMACOSX_BUNDLE_GUI_IDENTIFIER=GSL.\$(EXECUTABLE_NAME)" \
-DMACOSX_BUNDLE_BUNDLE_VERSION=3.1.0 \
-DMACOSX_BUNDLE_SHORT_VERSION_STRING=3.1.0 \
-DMACOSX_BUNDLE_BUNDLE_VERSION=3.0.1 \
-DMACOSX_BUNDLE_SHORT_VERSION_STRING=3.0.1 \
..
- name: Build
+337
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@@ -0,0 +1,337 @@
language: cpp
notifications:
email: false
# Use Linux unless specified otherwise
os: linux
dist: bionic
cache:
directories:
- ${TRAVIS_BUILD_DIR}/deps
stages:
- name: Latest # Compiler with the latest major version
- name: Previous # Compilers with the major version Latest - 1
- name: Validation # run other jobs
jobs:
include:
##########################################################################
# Validate CMake configuration
##########################################################################
- name: CMake 3.1.3 - latest
stage: Validation
env: &CMAKE_VERSION_LIST
- CMAKE_VERSION: '"3.17.0 3.16.5 3.15.7 3.14.7 3.13.5 3.12.4 3.11.4 3.10.3 3.9.6 3.8.2 3.7.2 3.6.3 3.5.2 3.4.3 3.3.2 3.2.3 3.1.3"'
- GSL_CXX_STANDARD: 14
addons: # Get latest release (candidate)
apt:
sources:
- sourceline: 'deb https://apt.kitware.com/ubuntu/ bionic main'
key_url: 'https://apt.kitware.com/keys/kitware-archive-latest.asc'
- sourceline: 'deb https://apt.kitware.com/ubuntu/ bionic-rc main'
packages:
- cmake
script:
- |
cd ./build
( set -eu
for CMAKE in ${CMAKE_path[@]}; do test_CMake_generate $CMAKE; done
export CXX=clang++
for CMAKE in ${CMAKE_path[@]}; do test_CMake_generate $CMAKE; done
)
- name: CMake 3.2.3 - 3.17.0
stage: Validation
os: osx
osx_image: xcode11.3
env:
- CMAKE_VERSION: '"3.17.0 3.16.5 3.15.7 3.14.7 3.13.5 3.12.4 3.11.4 3.10.3 3.9.6 3.8.2 3.7.2 3.6.3 3.5.2 3.4.3 3.3.2 3.2.3"'
script:
- |
cd ./build
( set -eu
for CMAKE in ${CMAKE_path[@]}; do test_CMake_generate $CMAKE; done
)
##########################################################################
# AppleClang on OSX
##########################################################################
# Xcode 10.3
- name: AppleClang Xcode-10.3 C++14 Debug
stage: Previous
env: BUILD_TYPE=Debug GSL_CXX_STANDARD=14
os: osx
osx_image: xcode10.3 # AppleClang 10.0.1 same compiler as Xcode 10.2
- name: AppleClang Xcode-10.3 C++14 Release
env: BUILD_TYPE=Release GSL_CXX_STANDARD=14
os: osx
osx_image: xcode10.3
- name: AppleClang Xcode-10.3 C++17 Debug
env: BUILD_TYPE=Debug GSL_CXX_STANDARD=17
os: osx
osx_image: xcode10.3
- name: AppleClang Xcode-10.3 C++17 Release
env: BUILD_TYPE=Release GSL_CXX_STANDARD=17
os: osx
osx_image: xcode10.3
# Xcode 11.4
- name: AppleClang Xcode-11.4 C++17 Debug
stage: Latest
env: BUILD_TYPE=Debug GSL_CXX_STANDARD=17
os: osx
osx_image: xcode11.4
- name: AppleClang Xcode-11.4 C++17 Release
env: BUILD_TYPE=Release GSL_CXX_STANDARD=17
os: osx
osx_image: xcode11.4
- name: AppleClang Xcode-11.4 C++14 Debug
env: BUILD_TYPE=Debug GSL_CXX_STANDARD=14
os: osx
osx_image: xcode11.4
- name: AppleClang Xcode-11.4 C++14 Release
env: BUILD_TYPE=Release GSL_CXX_STANDARD=14
os: osx
osx_image: xcode11.4
##########################################################################
# Clang on Linux
##########################################################################
# Clang 9
- name: Clang-9 C++14 Debug
stage: Previous
env: CXX=clang++-9 BUILD_TYPE=Debug GSL_CXX_STANDARD=14
addons: &clang9
apt:
sources:
- sourceline: 'deb http://apt.llvm.org/bionic/ llvm-toolchain-bionic-9 main'
key_url: https://apt.llvm.org/llvm-snapshot.gpg.key
packages:
- clang-9
- name: Clang-9 C++14 Release
env: CXX=clang++-9 BUILD_TYPE=Release GSL_CXX_STANDARD=14
addons: *clang9
- name: Clang-9 C++17 Debug
env: CXX=clang++-9 BUILD_TYPE=Debug GSL_CXX_STANDARD=17
addons: *clang9
- name: Clang-9 C++17 Release
env: CXX=clang++-9 BUILD_TYPE=Release GSL_CXX_STANDARD=17
addons: *clang9
# Clang 10
- name: Clang-10 C++14 Debug
stage: Latest
env: CXX=clang++-10 BUILD_TYPE=Debug GSL_CXX_STANDARD=14
addons: &clang10
apt:
sources:
- sourceline: 'deb http://apt.llvm.org/bionic/ llvm-toolchain-bionic-10 main'
key_url: https://apt.llvm.org/llvm-snapshot.gpg.key
packages:
- clang-10
- name: Clang-10 C++14 Release
env: CXX=clang++-10 BUILD_TYPE=Release GSL_CXX_STANDARD=14
addons: *clang10
- name: Clang-10 C++17 Debug
env: CXX=clang++-10 BUILD_TYPE=Debug GSL_CXX_STANDARD=17
addons: *clang10
- name: Clang-10 C++17 Release
env: CXX=clang++-10 BUILD_TYPE=Release GSL_CXX_STANDARD=17
addons: *clang10
##########################################################################
# GCC on Linux
##########################################################################
# GCC 8
- name: GCC-8 C++14 Debug
stage: Previous
env: CXX=g++-8 BUILD_TYPE=Debug GSL_CXX_STANDARD=14
addons: &gcc8
apt:
packages: g++-8
- name: GCC-8 C++14 Release
env: CXX=g++-8 BUILD_TYPE=Release GSL_CXX_STANDARD=14
addons: *gcc8
- name: GCC-8 C++17 Debug
env: CXX=g++-8 BUILD_TYPE=Debug GSL_CXX_STANDARD=17
addons: *gcc8
- name: GCC-8 C++17 Release
env: CXX=g++-8 BUILD_TYPE=Release GSL_CXX_STANDARD=17
addons: *gcc8
# GCC 9
- name: GCC-9 C++14 Debug
stage: Latest
env: CXX=g++-9 BUILD_TYPE=Debug GSL_CXX_STANDARD=14
addons: &gcc9
apt:
sources:
- sourceline: ppa:ubuntu-toolchain-r/test
packages:
- g++-9
- name: GCC-9 C++14 Release
env: CXX=g++-9 BUILD_TYPE=Release GSL_CXX_STANDARD=14
addons: *gcc9
- name: GCC-9 C++17 Debug
env: CXX=g++-9 BUILD_TYPE=Debug GSL_CXX_STANDARD=17
addons: *gcc9
- name: GCC-9 C++17 Release
env: CXX=g++-9 BUILD_TYPE=Release GSL_CXX_STANDARD=17
addons: *gcc9
before_install:
- |
# Configuration
JOBS=2 # Travis machines have 2 cores
# Dependencies required by the CI (cached directory)
DEPS_DIR="${TRAVIS_BUILD_DIR}/deps"
- |
# Setup
mkdir -p "${DEPS_DIR:?}" && cd "${DEPS_DIR:?}"
mkdir -p ~/tools && cd ~/tools
if [[ ${TRAVIS_OS_NAME:?} == "osx" ]]; then
export PATH="/usr/local/opt/coreutils/libexec/gnubin:$PATH"
fi
- |
# Helper functions
# usage: if [[ $(check_url '<url>') ]]; then ...
function check_url {( set +e
if [[ "$1" =~ 'github.com' ]]; then # check for first byte
if curl --fail --silent --output /dev/null --connect-timeout 12 --range 0-0 "$1"
then echo true; fi
else # request head
if curl --fail --silent --output /dev/null --connect-timeout 12 --head "$1"
then echo true; fi
fi
return
)}
install:
############################################################################
# Install a different CMake version (or several)
############################################################################
- |
# Install CMake versions
( set -euo pipefail
if [[ ${CMAKE_VERSION:-} ]]; then
if [[ "${TRAVIS_OS_NAME}" == "linux" ]]; then
OS="Linux"; EXT="sh"
if [[ ! ("${CMAKE_VERSION:-}" =~ .+[' '].+) ]]; then
# Single entry -> default CMake version
CMAKE_DEFAULT_DIR="/usr/local"
fi
elif [[ "${TRAVIS_OS_NAME}" == "osx" ]]; then OS="Darwin"; EXT="tar.gz"
else echo "CMake install not supported for this OS."; exit 1
fi
CMAKE_INSTALLER="install-cmake.${EXT}"
fi
for VERSION in ${CMAKE_VERSION:-}; do
CMAKE_URL="https://github.com/Kitware/CMake/releases/download/v${VERSION}/cmake-${VERSION}-${OS}-x86_64.${EXT}"
if [[ $(check_url "$CMAKE_URL") ]]; then
curl -sSL ${CMAKE_URL} -o ${CMAKE_INSTALLER}
CMAKE_DIR="${CMAKE_DEFAULT_DIR:-"${HOME}/tools/cmake-${VERSION}"}"
mkdir -p ${CMAKE_DIR}
if [[ "${TRAVIS_OS_NAME}" == "linux" ]]; then
chmod +x ${CMAKE_INSTALLER}
sudo ./${CMAKE_INSTALLER} --prefix=${CMAKE_DIR} --skip-license
else # OSX
mkdir -p ./CMake_tmp
tar --extract --gzip --file=${CMAKE_INSTALLER} --directory=./CMake_tmp
mv ./CMake_tmp/*/CMake.app/Contents/* ${CMAKE_DIR}
fi
rm --recursive --force ./CMake_tmp ${CMAKE_INSTALLER}
else echo 'Invalid url!'; echo "Version: ${VERSION}"
fi
done
)
if [[ ${CMAKE_VERSION:-} && "${TRAVIS_OS_NAME:?}" == "osx" && ! ("${CMAKE_VERSION:-}" =~ .+[' '].+) ]]
then # Single entry -> default CMake version
export PATH=${HOME}/tools/cmake-${CMAKE_VERSION:?}/bin:$PATH
fi
CMAKE_path=("cmake") # start with installed CMake version
for VERSION in ${CMAKE_VERSION:-}; do
tmp_path="$HOME/tools/cmake-${VERSION:?}/bin/cmake"
if [[ -x "$(command -v ${tmp_path:?})" ]]; then CMAKE_path+=("${tmp_path:?}"); fi
done
function test_CMake_generate {
# $1: cmake or full path to cmake
shopt -s extglob
if [[ "$1" == "cmake" || -x "$(command -v $1)" && "$1" =~ .*cmake$ ]]; then
echo "----------------"
$1 --version
echo "Configuration = ${BUILD_TYPE:-Debug}"
$1 -DCMAKE_BUILD_TYPE=${BUILD_TYPE:-Debug} ${CMAKE_GEN_FLAGS[@]:?} ..
rm -rf !(tests/googletest-*)
if [[ ! ${BUILD_TYPE:-} ]]; then echo "" && echo "Configuration = Release"
$1 -DCMAKE_BUILD_TYPE=Release ${CMAKE_GEN_FLAGS[@]:?} ..
rm -rf !(tests/googletest-*)
fi
else echo "Non existing command: $1"
fi
}
- |
# CMake wrapper (Trusty, Xenial & Bionic); restore default behaviour.
if [[ "${TRAVIS_OS_NAME:?}" == "linux" &&
"$(lsb_release --codename)" =~ (trusty|xenial|bionic)$ ]]
then
if [[ -x $(command -v /usr/local/bin/cmake) ]]; then
function cmake { command /usr/local/bin/cmake $@; }
elif [[ -x $(command -v /usr/bin/cmake) ]]; then
function cmake { command /usr/bin/cmake $@; }
fi
fi
############################################################################
# [linux]: Install the right version of libc++
# Based on https://github.com/ldionne/hana/blob/master/.travis.yml
############################################################################
- |
LLVM_INSTALL=${DEPS_DIR:?}/llvm/install
# if in linux and compiler clang and llvm not installed
if [[ "${TRAVIS_OS_NAME:?}" == "linux" && "${CXX%%+*}" == "clang" && -n "$(ls -A ${LLVM_INSTALL:?})" ]]; then
if [[ "${CXX}" == "clang++-3.6" ]]; then LLVM_VERSION="3.6.2";
elif [[ "${CXX}" == "clang++-3.7" ]]; then LLVM_VERSION="3.7.1";
elif [[ "${CXX}" == "clang++-3.8" ]]; then LLVM_VERSION="3.8.1";
elif [[ "${CXX}" == "clang++-3.9" ]]; then LLVM_VERSION="3.9.1";
fi
LLVM_URL="http://llvm.org/releases/${LLVM_VERSION}/llvm-${LLVM_VERSION}.src.tar.xz"
LIBCXX_URL="http://llvm.org/releases/${LLVM_VERSION}/libcxx-${LLVM_VERSION}.src.tar.xz"
LIBCXXABI_URL="http://llvm.org/releases/${LLVM_VERSION}/libcxxabi-${LLVM_VERSION}.src.tar.xz"
mkdir -p llvm llvm/build llvm/projects/libcxx llvm/projects/libcxxabi
travis_retry wget -O - ${LLVM_URL} | tar --strip-components=1 -xJ -C llvm
travis_retry wget -O - ${LIBCXX_URL} | tar --strip-components=1 -xJ -C llvm/projects/libcxx
travis_retry wget -O - ${LIBCXXABI_URL} | tar --strip-components=1 -xJ -C llvm/projects/libcxxabi
(cd llvm/build && cmake .. -DCMAKE_INSTALL_PREFIX=${LLVM_INSTALL})
(cd llvm/build/projects/libcxx && make install -j2)
(cd llvm/build/projects/libcxxabi && make install -j2)
export CXXFLAGS="-isystem ${LLVM_INSTALL}/include/c++/v1"
export LDFLAGS="-L ${LLVM_INSTALL}/lib -l c++ -l c++abi"
export LD_LIBRARY_PATH="${LD_LIBRARY_PATH}:${LLVM_INSTALL}/lib"
fi
before_script:
- |
cd "${TRAVIS_BUILD_DIR:?}"
mkdir build && cd build
if [[ ${GSL_CXX_STANDARD:-} ]]; then
CMAKE_GEN_FLAGS=("-DGSL_CXX_STANDARD=$GSL_CXX_STANDARD")
fi
CMAKE_GEN_FLAGS+=("-Wdev -Werror=dev --warn-uninitialized")
script:
# generate build files
- cmake .. -DCMAKE_BUILD_TYPE=${BUILD_TYPE:?} ${CMAKE_GEN_FLAGS[@]:?}
# build and run tests
- cmake --build . -- -j${JOBS}
- ctest --output-on-failure -j${JOBS}
+112 -46
View File
@@ -1,61 +1,127 @@
cmake_minimum_required(VERSION 3.1.3...3.16)
list(APPEND CMAKE_MODULE_PATH "${CMAKE_CURRENT_SOURCE_DIR}/cmake/")
include(guidelineSupportLibrary)
project(GSL VERSION 3.1.0 LANGUAGES CXX)
project(GSL
VERSION 4.0.0
LANGUAGES CXX
)
include(ExternalProject)
find_package(Git)
# Must include after the project call due to GNUInstallDirs requiring a language be enabled (IE. CXX)
# Use GNUInstallDirs to provide the right locations on all platforms
include(GNUInstallDirs)
# Creates a library GSL which is an interface (header files only)
# creates a library GSL which is an interface (header files only)
add_library(GSL INTERFACE)
# NOTE: If you want to use GSL prefer to link against GSL using this alias target
# EX:
# target_link_libraries(foobar PRIVATE Microsoft.GSL::GSL)
#
# determine whether this is a standalone project or included by other projects
set(GSL_STANDALONE_PROJECT OFF)
if (CMAKE_CURRENT_SOURCE_DIR STREQUAL CMAKE_SOURCE_DIR)
set(GSL_STANDALONE_PROJECT ON)
endif ()
set(GSL_CXX_STANDARD "14" CACHE STRING "Use c++ standard")
set(GSL_CXX_STD "cxx_std_${GSL_CXX_STANDARD}")
if (MSVC)
set(GSL_CXX_STD_OPT "-std:c++${GSL_CXX_STANDARD}")
else()
set(GSL_CXX_STD_OPT "-std=c++${GSL_CXX_STANDARD}")
endif()
# when minimum version required is 3.8.0 remove if below
# both branches do exactly the same thing
if (CMAKE_VERSION VERSION_LESS 3.7.9)
include(CheckCXXCompilerFlag)
CHECK_CXX_COMPILER_FLAG("${GSL_CXX_STD_OPT}" COMPILER_SUPPORTS_CXX_STANDARD)
if(COMPILER_SUPPORTS_CXX_STANDARD)
target_compile_options(GSL INTERFACE "${GSL_CXX_STD_OPT}")
else()
message(FATAL_ERROR "The compiler ${CMAKE_CXX_COMPILER} has no c++${GSL_CXX_STANDARD} support. Please use a different C++ compiler.")
endif()
else ()
target_compile_features(GSL INTERFACE "${GSL_CXX_STD}")
# on *nix systems force the use of -std=c++XX instead of -std=gnu++XX (default)
set(CMAKE_CXX_EXTENSIONS OFF)
endif()
# add definitions to the library and targets that consume it
target_compile_definitions(GSL INTERFACE
$<$<CXX_COMPILER_ID:MSVC>:
# remove unnecessary warnings about unchecked iterators
_SCL_SECURE_NO_WARNINGS
# remove deprecation warnings about std::uncaught_exception() (from catch)
_SILENCE_CXX17_UNCAUGHT_EXCEPTION_DEPRECATION_WARNING
>
)
# add include folders to the library and targets that consume it
# the SYSTEM keyword suppresses warnings for users of the library
if(GSL_STANDALONE_PROJECT)
target_include_directories(GSL INTERFACE
$<BUILD_INTERFACE:${CMAKE_CURRENT_SOURCE_DIR}/include>
$<INSTALL_INTERFACE:${CMAKE_INSTALL_INCLUDEDIR}>
)
else()
target_include_directories(GSL SYSTEM INTERFACE
$<BUILD_INTERFACE:${CMAKE_CURRENT_SOURCE_DIR}/include>
$<INSTALL_INTERFACE:${CMAKE_INSTALL_INCLUDEDIR}>
)
endif()
if (CMAKE_VERSION VERSION_GREATER 3.7.8)
if (MSVC_IDE)
option(GSL_VS_ADD_NATIVE_VISUALIZERS "Configure project to use Visual Studio native visualizers" TRUE)
else()
set(GSL_VS_ADD_NATIVE_VISUALIZERS FALSE CACHE INTERNAL "Native visualizers are Visual Studio extension" FORCE)
endif()
# add natvis file to the library so it will automatically be loaded into Visual Studio
if(GSL_VS_ADD_NATIVE_VISUALIZERS)
target_sources(GSL INTERFACE
$<BUILD_INTERFACE:${CMAKE_CURRENT_SOURCE_DIR}/GSL.natvis>
)
endif()
endif()
install(TARGETS GSL EXPORT Microsoft.GSLConfig)
install(
DIRECTORY include/gsl
DESTINATION ${CMAKE_INSTALL_INCLUDEDIR}
)
# Make library importable by other projects
install(EXPORT Microsoft.GSLConfig NAMESPACE Microsoft.GSL:: DESTINATION ${CMAKE_INSTALL_DATADIR}/cmake/Microsoft.GSL)
export(TARGETS GSL NAMESPACE Microsoft.GSL:: FILE Microsoft.GSLConfig.cmake)
# Add find_package() versioning support. The version for
# generated Microsoft.GSLConfigVersion.cmake will be used from
# last project() command. The version's compatibility is set between all
# minor versions (as it was in prev. GSL releases).
include(CMakePackageConfigHelpers)
if(${CMAKE_VERSION} VERSION_LESS "3.14.0")
write_basic_package_version_file(
${CMAKE_CURRENT_BINARY_DIR}/Microsoft.GSLConfigVersion.cmake
COMPATIBILITY SameMajorVersion
)
else()
write_basic_package_version_file(
${CMAKE_CURRENT_BINARY_DIR}/Microsoft.GSLConfigVersion.cmake
COMPATIBILITY SameMajorVersion
ARCH_INDEPENDENT
)
endif()
install(FILES ${CMAKE_CURRENT_BINARY_DIR}/Microsoft.GSLConfigVersion.cmake DESTINATION ${CMAKE_INSTALL_DATADIR}/cmake/Microsoft.GSL)
# Add Microsoft.GSL::GSL alias for GSL so that dependents can be agnostic about
# whether GSL was added via `add_subdirectory` or `find_package`
add_library(Microsoft.GSL::GSL ALIAS GSL)
# Determine whether this is a standalone project or included by other projects
set(GSL_STANDALONE_PROJECT OFF)
if (CMAKE_CURRENT_SOURCE_DIR STREQUAL CMAKE_SOURCE_DIR)
set(GSL_STANDALONE_PROJECT ON)
endif()
### Project options
option(GSL_INSTALL "Generate and install GSL target" ${GSL_STANDALONE_PROJECT})
option(GSL_TEST "Build and perform GSL tests" ${GSL_STANDALONE_PROJECT})
# This GSL implementation generally assumes a platform that implements C++14 support.
set(gsl_min_cxx_standard "14")
if (GSL_STANDALONE_PROJECT)
gsl_set_default_cxx_standard(${gsl_min_cxx_standard})
else()
gsl_client_set_cxx_standard(${gsl_min_cxx_standard})
endif()
# Setup include directory
add_subdirectory(include)
# Add natvis file
gsl_add_native_visualizer_support()
# Add packaging support
gsl_create_packaging_file()
if (GSL_INSTALL)
# Setup install/export logic
gsl_install_logic()
endif()
option(GSL_TEST "Generate tests." ${GSL_STANDALONE_PROJECT})
if (GSL_TEST)
enable_testing()
if(IOS)
add_compile_definitions(
GTEST_HAS_DEATH_TEST=1
)
endif()
add_subdirectory(tests)
endif()
endif ()
+1 -1
View File
@@ -17,7 +17,7 @@ Please submit a Contributor License Agreement (CLA) before submitting a pull req
Your pull request should:
* Include a description of what your change intends to do
* Be a child commit of a reasonably recent commit in the **main** branch
* Be a child commit of a reasonably recent commit in the **master** branch
* Requests need not be a single commit, but should be a linear sequence of commits (i.e. no merge commits in your PR)
* It is desirable, but not necessary, for the tests to pass at each commit. Please see [README.md](./README.md) for instructions to build the test suite.
* Have clear commit messages
+21 -57
View File
@@ -1,5 +1,5 @@
# GSL: Guidelines Support Library
[![Build Status](https://dev.azure.com/cppstat/GSL/_apis/build/status/microsoft.GSL?branchName=main)](https://dev.azure.com/cppstat/GSL/_build/latest?definitionId=1&branchName=main)
[![Build Status](https://travis-ci.org/Microsoft/GSL.svg?branch=master)](https://travis-ci.org/Microsoft/GSL) [![Build status](https://ci.appveyor.com/api/projects/status/github/Microsoft/GSL?svg=true)](https://ci.appveyor.com/project/neilmacintosh/GSL)
The Guidelines Support Library (GSL) contains functions and types that are suggested for use by the
[C++ Core Guidelines](https://github.com/isocpp/CppCoreGuidelines) maintained by the [Standard C++ Foundation](https://isocpp.org).
@@ -29,15 +29,6 @@ owner | &#x2611; | an alias for a raw pointer
not_null | &#x2611; | restricts a pointer / smart pointer to hold non-null values
span | &#x2611; | a view over a contiguous sequence of memory. Based on the standardized verison of `std::span`, however `gsl::span` enforces bounds checking. See the [wiki](https://github.com/microsoft/GSL/wiki/gsl::span-and-std::span) for additional information.
span_p | &#x2610; | spans a range starting from a pointer to the first place for which the predicate is true
basic_zstring | &#x2611; | A pointer to a C-string (zero-terminated array) with a templated char type
zstring | &#x2611; | An alias to `basic_zstring` with dynamic extent and a char type of char
czstring | &#x2611; | An alias to `basic_zstring` with dynamic extent and a char type of const char
wzstring | &#x2611; | An alias to `basic_zstring` with dynamic extent and a char type of wchar_t
cwzstring | &#x2611; | An alias to `basic_zstring` with dynamic extent and a char type of const wchar_t
u16zstring | &#x2611; | An alias to `basic_zstring` with dynamic extent and a char type of char16_t
cu16zstring | &#x2611; | An alias to `basic_zstring` with dynamic extent and a char type of const char16_t
u32zstring | &#x2611; | An alias to `basic_zstring` with dynamic extent and a char type of char32_t
cu32zstring | &#x2611; | An alias to `basic_zstring` with dynamic extent and a char type of const char32_t
[**2. Owners**][cg-owners] | |
unique_ptr | &#x2611; | an alias to `std::unique_ptr`
shared_ptr | &#x2611; | an alias to `std::shared_ptr`
@@ -66,6 +57,15 @@ Feature | Supported? | Description
strict_not_null | &#x2611; | A stricter version of `not_null` with explicit constructors
multi_span | &#x2610; | Deprecated. Multi-dimensional span.
strided_span | &#x2610; | Deprecated. Support for this type has been discontinued.
basic_zstring | &#x2610; | Deprecated. A pointer to a C-string (zero-terminated array) with a templated char type
zstring | &#x2610; | Deprecated. An alias to `basic_zstring` with a char type of char
czstring | &#x2610; | Deprecated. An alias to `basic_zstring` with a char type of const char
wzstring | &#x2610; | Deprecated. An alias to `basic_zstring` with a char type of wchar_t
cwzstring | &#x2610; | Deprecated. An alias to `basic_zstring` with a char type of const wchar_t
u16zstring | &#x2610; | Deprecated. An alias to `basic_zstring` with a char type of char16_t
cu16zstring | &#x2610; | Deprecated. An alias to `basic_zstring` with a char type of const char16_t
u32zstring | &#x2610; | Deprecated. An alias to `basic_zstring` with a char type of char32_t
cu32zstring | &#x2610; | Deprecated. An alias to `basic_zstring` with a char type of const char32_t
basic_string_span | &#x2610; | Deprecated. Like `span` but for strings with a templated char type
string_span | &#x2610; | Deprecated. An alias to `basic_string_span` with a char type of char
cstring_span | &#x2610; | Deprecated. An alias to `basic_string_span` with a char type of const char
@@ -85,25 +85,20 @@ This is based on [CppCoreGuidelines semi-specification](https://github.com/isocp
[cg-concepts]: https://github.com/isocpp/CppCoreGuidelines/blob/master/CppCoreGuidelines.md#gslconcept-concepts
# Quick Start
## Supported Compilers / Toolsets
The GSL officially supports the latest and previous major versions of VS with MSVC & LLVM, GCC, Clang, and XCode with Apple-Clang.
Within these two major versions, we try to target the latest minor updates / revisions (although this may be affected by
delays between a toolchain's release and when it becomes widely available for use).
Below is a table showing the versions currently being tested.
## Supported Compilers
The GSL officially supports the current and previous major release of MSVC, GCC, Clang, and XCode's Apple-Clang.
See our latest test results for the most up-to-date list of supported configurations.
Compiler |Toolset Versions Currently Tested
:------- |--:
XCode | 13.2.1 & 12.5.1
GCC | 11[^1] & 10[^2]
Clang | 12[^2] & 11[^2]
Visual Studio with MSVC | VS2022[^3] & VS2019[^4]
Visual Studio with LLVM | VS2022[^3] & VS2019[^4]
Compiler |Toolset Versions Currently Tested| Build Status
:------- |:--|------------:
XCode |11.4 & 10.3 | [![Status](https://travis-ci.org/Microsoft/GSL.svg?branch=master)](https://travis-ci.org/Microsoft/GSL)
GCC |9 & 8| [![Status](https://travis-ci.org/Microsoft/GSL.svg?branch=master)](https://travis-ci.org/Microsoft/GSL)
Clang |11 & 10| [![Status](https://travis-ci.org/Microsoft/GSL.svg?branch=master)](https://travis-ci.org/Microsoft/GSL)
Visual Studio with MSVC | VS2017 (15.9) & VS2019 (16.4) | [![Status](https://ci.appveyor.com/api/projects/status/github/Microsoft/GSL?svg=true)](https://ci.appveyor.com/project/neilmacintosh/GSL)
Visual Studio with LLVM | VS2017 (Clang 9) & VS2019 (Clang 10) | [![Status](https://ci.appveyor.com/api/projects/status/github/Microsoft/GSL?svg=true)](https://ci.appveyor.com/project/neilmacintosh/GSL)
[^1]: Precise version may be found in the [latest CI results](https://dev.azure.com/cppstat/GSL/_build?definitionId=1&branchFilter=26).
[^2]: Precise version may be found in the [latest CI results](https://dev.azure.com/cppstat/GSL/_build?definitionId=1&branchFilter=26). Should be the version specified [here](https://github.com/actions/virtual-environments/blob/main/images/linux/Ubuntu2004-Readme.md#language-and-runtime).
[^3]: Precise version may be found in the [latest CI results](https://dev.azure.com/cppstat/GSL/_build?definitionId=1&branchFilter=26). Should be the version specified [here](https://github.com/actions/virtual-environments/blob/main/images/win/Windows2022-Readme.md#visual-studio-enterprise-2022).
[^4]: Precise version may be found in the [latest CI results](https://dev.azure.com/cppstat/GSL/_build?definitionId=1&branchFilter=26). Should be the version specified [here](https://github.com/actions/virtual-environments/blob/main/images/win/Windows2019-Readme.md#visual-studio-enterprise-2019).
Note: For `gsl::byte` to work correctly with Clang and GCC you might have to use the ` -fno-strict-aliasing` compiler option.
---
If you successfully port GSL to another platform, we would love to hear from you!
@@ -186,36 +181,5 @@ The library provides a Config file for CMake, once installed it can be found via
Which, when successful, will add library target called `Microsoft.GSL::GSL` which you can use via the usual
`target_link_libraries` mechanism.
### FetchContent
If you are using cmake version 3.11+ you can use the offical FetchContent module.
This allows you to easily incorporate GSL into your project.
```cmake
# NOTE: This example uses cmake version 3.14 (FetchContent_MakeAvailable).
# Since it streamlines the FetchContent process
cmake_minimum_required(VERSION 3.14)
include(FetchContent)
# In this example we are picking a specific tag.
# You can also pick a specific commit, if you need to.
FetchContent_Declare(GSL
GIT_REPOSITORY "https://github.com/microsoft/GSL"
GIT_TAG "v3.1.0"
)
FetchContent_MakeAvailable(GSL)
# Now you can link against the GSL interface library
add_executable(foobar)
# Link against the interface library (IE header only library)
target_link_libraries(foobar PRIVATE GSL)
```
## Debugging visualization support
For Visual Studio users, the file [GSL.natvis](./GSL.natvis) in the root directory of the repository can be added to your project if you would like more helpful visualization of GSL types in the Visual Studio debugger than would be offered by default.
If you are using cmake this will be done automatically for you.
See 'GSL_VS_ADD_NATIVE_VISUALIZERS'
+114
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@@ -0,0 +1,114 @@
shallow_clone: true
platform:
- x86
- x64
configuration:
- Debug
- Release
image:
- Visual Studio 2017
- Visual Studio 2019
environment:
NINJA_TAG: v1.8.2
NINJA_SHA512: 9B9CE248240665FCD6404B989F3B3C27ED9682838225E6DC9B67B551774F251E4FF8A207504F941E7C811E7A8BE1945E7BCB94472A335EF15E23A0200A32E6D5
NINJA_PATH: C:\Tools\ninja\ninja-%NINJA_TAG%
VCVAR2017: 'C:\Program Files (x86)\Microsoft Visual Studio\2017\Community\VC\Auxiliary\Build\vcvarsall.bat'
VCVAR2019: 'C:\Program Files (x86)\Microsoft Visual Studio\2019\Community\VC\Auxiliary\Build\vcvarsall.bat'
matrix:
- GSL_CXX_STANDARD: 14
USE_TOOLSET: MSVC
USE_GENERATOR: MSBuild
- GSL_CXX_STANDARD: 17
USE_TOOLSET: MSVC
USE_GENERATOR: MSBuild
- GSL_CXX_STANDARD: 14
USE_TOOLSET: LLVM
USE_GENERATOR: Ninja
- GSL_CXX_STANDARD: 17
USE_TOOLSET: LLVM
USE_GENERATOR: Ninja
cache:
- C:\cmake-3.14.4-win32-x86
- C:\Tools\ninja
install:
- ps: |
if (![IO.File]::Exists("$env:NINJA_PATH\ninja.exe")) {
Start-FileDownload `
"https://github.com/ninja-build/ninja/releases/download/$env:NINJA_TAG/ninja-win.zip"
$hash = (Get-FileHash ninja-win.zip -Algorithm SHA512).Hash
if ($env:NINJA_SHA512 -eq $hash) {
7z e -y -bso0 ninja-win.zip -o"$env:NINJA_PATH"
} else { Write-Warning "Ninja download hash changed!"; Write-Output "$hash" }
}
if ([IO.File]::Exists("$env:NINJA_PATH\ninja.exe")) {
$env:PATH = "$env:NINJA_PATH;$env:PATH"
} else { Write-Warning "Failed to find ninja.exe in expected location." }
if ($env:USE_TOOLSET -ne "LLVM") {
if (![IO.File]::Exists("C:\cmake-3.14.0-win32-x86\bin\cmake.exe")) {
Start-FileDownload 'https://cmake.org/files/v3.14/cmake-3.14.4-win32-x86.zip'
7z x -y -bso0 cmake-3.14.4-win32-x86.zip -oC:\
}
$env:PATH="C:\cmake-3.14.4-win32-x86\bin;$env:PATH"
}
before_build:
- ps: |
if ("$env:USE_GENERATOR" -eq "Ninja") {
$GeneratorFlags = '-k 10'
$Architecture = $env:PLATFORM
if ("$env:APPVEYOR_BUILD_WORKER_IMAGE" -eq "Visual Studio 2017") {
$env:VCVARSALL = "`"$env:VCVAR2017`" $Architecture"
} else {
$env:VCVARSALL = "`"$env:VCVAR2019`" $Architecture"
}
$env:CMakeGenFlags = "-G Ninja -DGSL_CXX_STANDARD=$env:GSL_CXX_STANDARD"
} else {
$GeneratorFlags = '/m /v:minimal'
if ("$env:APPVEYOR_BUILD_WORKER_IMAGE" -eq "Visual Studio 2017") {
$Generator = 'Visual Studio 15 2017'
} else {
$Generator = 'Visual Studio 16 2019'
}
if ("$env:PLATFORM" -eq "x86") {
$Architecture = "Win32"
} else {
$Architecture = "x64"
}
if ("$env:USE_TOOLSET" -eq "LLVM") {
$env:CMakeGenFlags = "-G `"$Generator`" -A $Architecture -T llvm -DGSL_CXX_STANDARD=$env:GSL_CXX_STANDARD"
} else {
$env:CMakeGenFlags = "-G `"$Generator`" -A $Architecture -DGSL_CXX_STANDARD=$env:GSL_CXX_STANDARD"
}
}
if ("$env:USE_TOOLSET" -eq "LLVM") {
$env:CC = "clang-cl"
$env:CXX = "clang-cl"
if ("$env:PLATFORM" -eq "x86") {
$env:CFLAGS = "-m32";
$env:CXXFLAGS = "-m32";
} else {
$env:CFLAGS = "-m64";
$env:CXXFLAGS = "-m64";
}
}
$env:CMakeBuildFlags = "--config $env:CONFIGURATION -- $GeneratorFlags"
- mkdir build
- cd build
- if %USE_GENERATOR%==Ninja (call %VCVARSALL%)
- echo %CMakeGenFlags%
- cmake .. %CMakeGenFlags%
build_script:
- echo %CMakeBuildFlags%
- cmake --build . %CMakeBuildFlags%
test_script:
- ctest -j2
deploy: off
-66
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@@ -1,66 +0,0 @@
trigger:
- main
pr:
autoCancel: true
stages:
- stage: GCC
dependsOn: []
jobs:
- template: ./pipelines/jobs.yml
parameters:
compiler: gcc
image: ubuntu-20.04
compilerVersions: [ 11, 10 ]
setupfile: 'setup_gcc.yml'
- stage: Clang
dependsOn: []
jobs:
- template: ./pipelines/jobs.yml
parameters:
compiler: clang
image: ubuntu-20.04
compilerVersions: [ 12, 11 ]
setupfile: 'setup_clang.yml'
- stage: Xcode
dependsOn: []
jobs:
- template: ./pipelines/jobs.yml
parameters:
compiler: 'Xcode'
image: macOS-11
compilerVersions: [ '12.5.1', '13.2.1' ]
setupfile: 'setup_apple.yml'
- stage: VS_MSVC
dependsOn: []
jobs:
- template: ./pipelines/jobs.yml
parameters:
compiler: 'VS2019 (MSVC)'
compilerVersions: [ 'default' ]
image: windows-2019
- template: ./pipelines/jobs.yml
parameters:
compiler: 'VS2022 (MSVC)'
compilerVersions: [ 'default' ]
image: windows-2022
- stage: VS_LLVM
dependsOn: []
jobs:
- template: ./pipelines/jobs.yml
parameters:
compiler: 'VS2019 (LLVM)'
compilerVersions: [ 'default' ]
image: windows-2019
extraCmakeArgs: '-T ClangCL'
- template: ./pipelines/jobs.yml
parameters:
compiler: 'VS2022 (LLVM)'
compilerVersions: [ 'default' ]
image: windows-2022
extraCmakeArgs: '-T ClangCL'
-116
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@@ -1,116 +0,0 @@
# This cmake module is meant to hold helper functions/macros
# that make maintaining the cmake build system much easier.
# This is especially helpful since gsl needs to provide coverage
# for multiple versions of cmake.
#
# Any functions/macros should have a gsl_* prefix to avoid problems
if (CMAKE_VERSION VERSION_GREATER 3.10 OR CMAKE_VERSION VERSION_EQUAL 3.10)
include_guard()
else()
if (DEFINED guideline_support_library_include_guard)
return()
endif()
set(guideline_support_library_include_guard ON)
endif()
# Necessary for 'write_basic_package_version_file'
include(CMakePackageConfigHelpers)
function(gsl_set_default_cxx_standard min_cxx_standard)
set(GSL_CXX_STANDARD "${min_cxx_standard}" CACHE STRING "Use c++ standard")
set(GSL_CXX_STD "cxx_std_${GSL_CXX_STANDARD}")
if (MSVC)
set(GSL_CXX_STD_OPT "-std:c++${GSL_CXX_STANDARD}")
else()
set(GSL_CXX_STD_OPT "-std=c++${GSL_CXX_STANDARD}")
endif()
# when minimum version required is 3.8.0 remove if below
# both branches do exactly the same thing
if (CMAKE_VERSION VERSION_LESS 3.7.9)
include(CheckCXXCompilerFlag)
CHECK_CXX_COMPILER_FLAG("${GSL_CXX_STD_OPT}" COMPILER_SUPPORTS_CXX_STANDARD)
if(COMPILER_SUPPORTS_CXX_STANDARD)
target_compile_options(GSL INTERFACE "${GSL_CXX_STD_OPT}")
else()
message(FATAL_ERROR "The compiler ${CMAKE_CXX_COMPILER} has no c++${GSL_CXX_STANDARD} support. Please use a different C++ compiler.")
endif()
else()
target_compile_features(GSL INTERFACE "${GSL_CXX_STD}")
# on *nix systems force the use of -std=c++XX instead of -std=gnu++XX (default)
set(CMAKE_CXX_EXTENSIONS OFF)
endif()
endfunction()
# The best way for a project to specify the GSL's C++ standard is by the client specifying
# the CMAKE_CXX_STANDARD. However, this isn't always ideal. Since the CMAKE_CXX_STANDARD is
# tied to the cmake version. And many projects have low cmake minimums.
#
# So provide an alternative approach in case that doesn't work.
function(gsl_client_set_cxx_standard min_cxx_standard)
if (DEFINED CMAKE_CXX_STANDARD)
if (${CMAKE_CXX_STANDARD} VERSION_LESS ${min_cxx_standard})
message(FATAL_ERROR "GSL: Requires at least CXX standard ${min_cxx_standard}, user provided ${CMAKE_CXX_STANDARD}")
endif()
# Set the GSL standard to what the client desires
set(GSL_CXX_STANDARD "${CMAKE_CXX_STANDARD}" PARENT_SCOPE)
# Exit out early to avoid extra unneccessary work
return()
endif()
# Otherwise pick a reasonable default
gsl_set_default_cxx_standard(${min_cxx_standard})
endfunction()
# Adding the GSL.natvis files improves the debugging experience for users of this library.
function(gsl_add_native_visualizer_support)
if (CMAKE_VERSION VERSION_GREATER 3.7.8)
if (MSVC_IDE)
option(GSL_VS_ADD_NATIVE_VISUALIZERS "Configure project to use Visual Studio native visualizers" TRUE)
else()
set(GSL_VS_ADD_NATIVE_VISUALIZERS FALSE CACHE INTERNAL "Native visualizers are Visual Studio extension" FORCE)
endif()
# add natvis file to the library so it will automatically be loaded into Visual Studio
if(GSL_VS_ADD_NATIVE_VISUALIZERS)
target_sources(GSL INTERFACE $<BUILD_INTERFACE:${GSL_SOURCE_DIR}/GSL.natvis>)
endif()
endif()
endfunction()
function(gsl_install_logic)
install(TARGETS GSL EXPORT Microsoft.GSLConfig)
install(
DIRECTORY include/gsl
DESTINATION ${CMAKE_INSTALL_INCLUDEDIR}
)
# Make library importable by other projects
install(EXPORT Microsoft.GSLConfig NAMESPACE Microsoft.GSL:: DESTINATION ${CMAKE_INSTALL_DATADIR}/cmake/Microsoft.GSL)
export(TARGETS GSL NAMESPACE Microsoft.GSL:: FILE Microsoft.GSLConfig.cmake)
install(FILES ${CMAKE_CURRENT_BINARY_DIR}/Microsoft.GSLConfigVersion.cmake DESTINATION ${CMAKE_INSTALL_DATADIR}/cmake/Microsoft.GSL)
endfunction()
# Add find_package() versioning support. The version for
# generated Microsoft.GSLConfigVersion.cmake will be used from
# last project() command. The version's compatibility is set between all
# minor versions (as it was in prev. GSL releases).
function(gsl_create_packaging_file)
if(${CMAKE_VERSION} VERSION_LESS "3.14.0")
write_basic_package_version_file(
${CMAKE_CURRENT_BINARY_DIR}/Microsoft.GSLConfigVersion.cmake
COMPATIBILITY SameMajorVersion
)
else()
write_basic_package_version_file(
${CMAKE_CURRENT_BINARY_DIR}/Microsoft.GSLConfigVersion.cmake
COMPATIBILITY SameMajorVersion
ARCH_INDEPENDENT
)
endif()
endfunction()
-20
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@@ -1,20 +0,0 @@
# Add include folders to the library and targets that consume it
# the SYSTEM keyword suppresses warnings for users of the library
#
# By adding this directory as an include directory the user gets a
# namespace effect.
#
# IE:
# #include <gsl/gsl>
if(GSL_STANDALONE_PROJECT)
target_include_directories(GSL INTERFACE
$<BUILD_INTERFACE:${CMAKE_CURRENT_SOURCE_DIR}>
$<INSTALL_INTERFACE:${CMAKE_INSTALL_INCLUDEDIR}>
)
else()
target_include_directories(GSL SYSTEM INTERFACE
$<BUILD_INTERFACE:${CMAKE_CURRENT_SOURCE_DIR}>
$<INSTALL_INTERFACE:${CMAKE_INSTALL_INCLUDEDIR}>
)
endif()
-63
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@@ -1,63 +0,0 @@
///////////////////////////////////////////////////////////////////////////////
//
// Copyright (c) 2015 Microsoft Corporation. All rights reserved.
//
// This code is licensed under the MIT License (MIT).
//
// THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
// IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
// FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
// AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
// LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
// OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
// THE SOFTWARE.
//
///////////////////////////////////////////////////////////////////////////////
#ifndef GSL_ALGORITHM_H
#define GSL_ALGORITHM_H
#include <gsl/assert> // for Expects
#include <gsl/span> // for dynamic_extent, span
#include <algorithm> // for copy_n
#include <cstddef> // for ptrdiff_t
#include <type_traits> // for is_assignable
#ifdef _MSC_VER
#pragma warning(push)
// turn off some warnings that are noisy about our Expects statements
#pragma warning(disable : 4127) // conditional expression is constant
#pragma warning(disable : 4996) // unsafe use of std::copy_n
#endif // _MSC_VER
namespace gsl
{
// Note: this will generate faster code than std::copy using span iterator in older msvc+stl
// not necessary for msvc since VS2017 15.8 (_MSC_VER >= 1915)
template <class SrcElementType, std::size_t SrcExtent, class DestElementType,
std::size_t DestExtent>
void copy(span<SrcElementType, SrcExtent> src, span<DestElementType, DestExtent> dest)
{
static_assert(std::is_assignable<decltype(*dest.data()), decltype(*src.data())>::value,
"Elements of source span can not be assigned to elements of destination span");
static_assert(SrcExtent == dynamic_extent || DestExtent == dynamic_extent ||
(SrcExtent <= DestExtent),
"Source range is longer than target range");
Expects(dest.size() >= src.size());
// clang-format off
GSL_SUPPRESS(stl.1) // NO-FORMAT: attribute
// clang-format on
std::copy_n(src.data(), src.size(), dest.data());
}
} // namespace gsl
#ifdef _MSC_VER
#pragma warning(pop)
#endif // _MSC_VER
#endif // GSL_ALGORITHM_H
-136
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@@ -1,136 +0,0 @@
///////////////////////////////////////////////////////////////////////////////
//
// Copyright (c) 2015 Microsoft Corporation. All rights reserved.
//
// This code is licensed under the MIT License (MIT).
//
// THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
// IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
// FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
// AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
// LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
// OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
// THE SOFTWARE.
//
///////////////////////////////////////////////////////////////////////////////
#ifndef GSL_CONTRACTS_H
#define GSL_CONTRACTS_H
//
// Temporary until MSVC STL supports no-exceptions mode.
// Currently terminate is a no-op in this mode, so we add termination behavior back
//
#if defined(_MSC_VER) && (defined(_KERNEL_MODE) || (defined(_HAS_EXCEPTIONS) && !_HAS_EXCEPTIONS))
#define GSL_KERNEL_MODE
#define GSL_MSVC_USE_STL_NOEXCEPTION_WORKAROUND
#include <intrin.h>
#define RANGE_CHECKS_FAILURE 0
#if defined(__clang__)
#pragma clang diagnostic push
#pragma clang diagnostic ignored "-Winvalid-noreturn"
#endif // defined(__clang__)
#else // defined(_MSC_VER) && (defined(_KERNEL_MODE) || (defined(_HAS_EXCEPTIONS) &&
// !_HAS_EXCEPTIONS))
#include <exception>
#endif // defined(_MSC_VER) && (defined(_KERNEL_MODE) || (defined(_HAS_EXCEPTIONS) &&
// !_HAS_EXCEPTIONS))
//
// make suppress attributes parse for some compilers
// Hopefully temporary until suppression standardization occurs
//
#if defined(__clang__)
#define GSL_SUPPRESS(x) [[gsl::suppress("x")]]
#else
#if defined(_MSC_VER) && !defined(__INTEL_COMPILER)
#define GSL_SUPPRESS(x) [[gsl::suppress(x)]]
#else
#define GSL_SUPPRESS(x)
#endif // _MSC_VER
#endif // __clang__
#define GSL_STRINGIFY_DETAIL(x) #x
#define GSL_STRINGIFY(x) GSL_STRINGIFY_DETAIL(x)
#if defined(__clang__) || defined(__GNUC__)
#define GSL_LIKELY(x) __builtin_expect(!!(x), 1)
#define GSL_UNLIKELY(x) __builtin_expect(!!(x), 0)
#else
#define GSL_LIKELY(x) (!!(x))
#define GSL_UNLIKELY(x) (!!(x))
#endif // defined(__clang__) || defined(__GNUC__)
//
// GSL_ASSUME(cond)
//
// Tell the optimizer that the predicate cond must hold. It is unspecified
// whether or not cond is actually evaluated.
//
#ifdef _MSC_VER
#define GSL_ASSUME(cond) __assume(cond)
#elif defined(__GNUC__)
#define GSL_ASSUME(cond) ((cond) ? static_cast<void>(0) : __builtin_unreachable())
#else
#define GSL_ASSUME(cond) static_cast<void>((cond) ? 0 : 0)
#endif
//
// GSL.assert: assertions
//
namespace gsl
{
namespace details
{
#if defined(GSL_MSVC_USE_STL_NOEXCEPTION_WORKAROUND)
typedef void(__cdecl* terminate_handler)();
// clang-format off
GSL_SUPPRESS(f.6) // NO-FORMAT: attribute
// clang-format on
[[noreturn]] inline void __cdecl default_terminate_handler()
{
__fastfail(RANGE_CHECKS_FAILURE);
}
inline gsl::details::terminate_handler& get_terminate_handler() noexcept
{
static terminate_handler handler = &default_terminate_handler;
return handler;
}
#endif // defined(GSL_MSVC_USE_STL_NOEXCEPTION_WORKAROUND)
[[noreturn]] inline void terminate() noexcept
{
#if defined(GSL_MSVC_USE_STL_NOEXCEPTION_WORKAROUND)
(*gsl::details::get_terminate_handler())();
#else
std::terminate();
#endif // defined(GSL_MSVC_USE_STL_NOEXCEPTION_WORKAROUND)
}
} // namespace details
} // namespace gsl
#define GSL_CONTRACT_CHECK(type, cond) \
(GSL_LIKELY(cond) ? static_cast<void>(0) : gsl::details::terminate())
#define Expects(cond) GSL_CONTRACT_CHECK("Precondition", cond)
#define Ensures(cond) GSL_CONTRACT_CHECK("Postcondition", cond)
#if defined(GSL_MSVC_USE_STL_NOEXCEPTION_WORKAROUND) && defined(__clang__)
#pragma clang diagnostic pop
#endif
#endif // GSL_CONTRACTS_H
-213
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@@ -1,213 +0,0 @@
///////////////////////////////////////////////////////////////////////////////
//
// Copyright (c) 2015 Microsoft Corporation. All rights reserved.
//
// This code is licensed under the MIT License (MIT).
//
// THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
// IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
// FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
// AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
// LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
// OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
// THE SOFTWARE.
//
///////////////////////////////////////////////////////////////////////////////
#ifndef GSL_BYTE_H
#define GSL_BYTE_H
//
// make suppress attributes work for some compilers
// Hopefully temporary until suppression standardization occurs
//
#if defined(__clang__)
#define GSL_SUPPRESS(x) [[gsl::suppress("x")]]
#else
#if defined(_MSC_VER) && !defined(__INTEL_COMPILER)
#define GSL_SUPPRESS(x) [[gsl::suppress(x)]]
#else
#define GSL_SUPPRESS(x)
#endif // _MSC_VER
#endif // __clang__
#include <type_traits>
// VS2017 15.8 added support for the __cpp_lib_byte definition
// To do: drop _HAS_STD_BYTE when support for pre 15.8 expires
#ifdef _MSC_VER
#pragma warning(push)
// Turn MSVC /analyze rules that generate too much noise. TODO: fix in the tool.
#pragma warning(disable : 26493) // don't use c-style casts // TODO: MSVC suppression in templates
// does not always work
#ifndef GSL_USE_STD_BYTE
// this tests if we are under MSVC and the standard lib has std::byte and it is enabled
#if (defined(_HAS_STD_BYTE) && _HAS_STD_BYTE) || \
(defined(__cpp_lib_byte) && __cpp_lib_byte >= 201603)
#define GSL_USE_STD_BYTE 1
#else // (defined(_HAS_STD_BYTE) && _HAS_STD_BYTE) || (defined(__cpp_lib_byte) && __cpp_lib_byte >=
// 201603)
#define GSL_USE_STD_BYTE 0
#endif // (defined(_HAS_STD_BYTE) && _HAS_STD_BYTE) || (defined(__cpp_lib_byte) && __cpp_lib_byte >=
// 201603)
#endif // GSL_USE_STD_BYTE
#else // _MSC_VER
#ifndef GSL_USE_STD_BYTE
#include <cstddef> /* __cpp_lib_byte */
// this tests if we are under GCC or Clang with enough -std=c++1z power to get us std::byte
// also check if libc++ version is sufficient (> 5.0) or libstdc++ actually contains std::byte
#if defined(__cplusplus) && (__cplusplus >= 201703L) && \
(defined(__cpp_lib_byte) && (__cpp_lib_byte >= 201603) || \
defined(_LIBCPP_VERSION) && (_LIBCPP_VERSION >= 5000))
#define GSL_USE_STD_BYTE 1
#else // defined(__cplusplus) && (__cplusplus >= 201703L) &&
// (defined(__cpp_lib_byte) && (__cpp_lib_byte >= 201603) ||
// defined(_LIBCPP_VERSION) && (_LIBCPP_VERSION >= 5000))
#define GSL_USE_STD_BYTE 0
#endif // defined(__cplusplus) && (__cplusplus >= 201703L) &&
// (defined(__cpp_lib_byte) && (__cpp_lib_byte >= 201603) ||
// defined(_LIBCPP_VERSION) && (_LIBCPP_VERSION >= 5000))
#endif // GSL_USE_STD_BYTE
#endif // _MSC_VER
// Use __may_alias__ attribute on gcc and clang
#if defined __clang__ || (defined(__GNUC__) && __GNUC__ > 5)
#define byte_may_alias __attribute__((__may_alias__))
#else // defined __clang__ || defined __GNUC__
#define byte_may_alias
#endif // defined __clang__ || defined __GNUC__
#if GSL_USE_STD_BYTE
#include <cstddef>
#endif
namespace gsl
{
#if GSL_USE_STD_BYTE
using std::byte;
using std::to_integer;
#else // GSL_USE_STD_BYTE
// This is a simple definition for now that allows
// use of byte within span<> to be standards-compliant
enum class byte_may_alias byte : unsigned char
{
};
template <class IntegerType, class = std::enable_if_t<std::is_integral<IntegerType>::value>>
constexpr byte& operator<<=(byte& b, IntegerType shift) noexcept
{
return b = byte(static_cast<unsigned char>(b) << shift);
}
template <class IntegerType, class = std::enable_if_t<std::is_integral<IntegerType>::value>>
constexpr byte operator<<(byte b, IntegerType shift) noexcept
{
return byte(static_cast<unsigned char>(b) << shift);
}
template <class IntegerType, class = std::enable_if_t<std::is_integral<IntegerType>::value>>
constexpr byte& operator>>=(byte& b, IntegerType shift) noexcept
{
return b = byte(static_cast<unsigned char>(b) >> shift);
}
template <class IntegerType, class = std::enable_if_t<std::is_integral<IntegerType>::value>>
constexpr byte operator>>(byte b, IntegerType shift) noexcept
{
return byte(static_cast<unsigned char>(b) >> shift);
}
constexpr byte& operator|=(byte& l, byte r) noexcept
{
return l = byte(static_cast<unsigned char>(l) | static_cast<unsigned char>(r));
}
constexpr byte operator|(byte l, byte r) noexcept
{
return byte(static_cast<unsigned char>(l) | static_cast<unsigned char>(r));
}
constexpr byte& operator&=(byte& l, byte r) noexcept
{
return l = byte(static_cast<unsigned char>(l) & static_cast<unsigned char>(r));
}
constexpr byte operator&(byte l, byte r) noexcept
{
return byte(static_cast<unsigned char>(l) & static_cast<unsigned char>(r));
}
constexpr byte& operator^=(byte& l, byte r) noexcept
{
return l = byte(static_cast<unsigned char>(l) ^ static_cast<unsigned char>(r));
}
constexpr byte operator^(byte l, byte r) noexcept
{
return byte(static_cast<unsigned char>(l) ^ static_cast<unsigned char>(r));
}
constexpr byte operator~(byte b) noexcept { return byte(~static_cast<unsigned char>(b)); }
template <class IntegerType, class = std::enable_if_t<std::is_integral<IntegerType>::value>>
constexpr IntegerType to_integer(byte b) noexcept
{
return static_cast<IntegerType>(b);
}
#endif // GSL_USE_STD_BYTE
template <bool E, typename T>
constexpr byte to_byte_impl(T t) noexcept
{
static_assert(
E, "gsl::to_byte(t) must be provided an unsigned char, otherwise data loss may occur. "
"If you are calling to_byte with an integer contant use: gsl::to_byte<t>() version.");
return static_cast<byte>(t);
}
template <>
// NOTE: need suppression since c++14 does not allow "return {t}"
// GSL_SUPPRESS(type.4) // NO-FORMAT: attribute // TODO: suppression does not work
constexpr byte to_byte_impl<true, unsigned char>(unsigned char t) noexcept
{
return byte(t);
}
template <typename T>
constexpr byte to_byte(T t) noexcept
{
return to_byte_impl<std::is_same<T, unsigned char>::value, T>(t);
}
template <int I>
constexpr byte to_byte() noexcept
{
static_assert(I >= 0 && I <= 255,
"gsl::byte only has 8 bits of storage, values must be in range 0-255");
return static_cast<byte>(I);
}
} // namespace gsl
#ifdef _MSC_VER
#pragma warning(pop)
#endif // _MSC_VER
#endif // GSL_BYTE_H
+8 -11
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@@ -17,16 +17,13 @@
#ifndef GSL_GSL_H
#define GSL_GSL_H
#include <gsl/algorithm> // copy
#include <gsl/assert> // Ensures/Expects
#include <gsl/byte> // byte
#include <gsl/pointers> // owner, not_null
#include <gsl/span> // span
#include <gsl/string_span> // zstring, string_span, zstring_builder...
#include <gsl/util> // finally()/narrow_cast()...
#ifdef __cpp_exceptions
#include <gsl/narrow> // narrow()
#endif
#include <gsl/gsl_algorithm> // copy
#include <gsl/gsl_assert> // Ensures/Expects
#include <gsl/gsl_byte> // byte
#include <gsl/gsl_util> // finally()/narrow()/narrow_cast()...
#include <gsl/multi_span> // multi_span, strided_span...
#include <gsl/pointers> // owner, not_null
#include <gsl/span> // span
#include <gsl/string_span> // zstring, string_span, zstring_builder...
#endif // GSL_GSL_H
+61 -4
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@@ -1,4 +1,61 @@
#pragma once
#pragma message( \
"This header will soon be removed. Use <gsl/algorithm> instead of <gsl/gsl_algorithm>")
#include <gsl/algorithm>
///////////////////////////////////////////////////////////////////////////////
//
// Copyright (c) 2015 Microsoft Corporation. All rights reserved.
//
// This code is licensed under the MIT License (MIT).
//
// THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
// IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
// FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
// AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
// LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
// OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
// THE SOFTWARE.
//
///////////////////////////////////////////////////////////////////////////////
#ifndef GSL_ALGORITHM_H
#define GSL_ALGORITHM_H
#include <gsl/gsl_assert> // for Expects
#include <gsl/span> // for dynamic_extent, span
#include <algorithm> // for copy_n
#include <cstddef> // for ptrdiff_t
#include <type_traits> // for is_assignable
#ifdef _MSC_VER
#pragma warning(push)
// turn off some warnings that are noisy about our Expects statements
#pragma warning(disable : 4127) // conditional expression is constant
#pragma warning(disable : 4996) // unsafe use of std::copy_n
#endif // _MSC_VER
namespace gsl
{
// Note: this will generate faster code than std::copy using span iterator in older msvc+stl
// not necessary for msvc since VS2017 15.8 (_MSC_VER >= 1915)
template <class SrcElementType, std::size_t SrcExtent, class DestElementType,
std::size_t DestExtent>
void copy(span<SrcElementType, SrcExtent> src, span<DestElementType, DestExtent> dest)
{
static_assert(std::is_assignable<decltype(*dest.data()), decltype(*src.data())>::value,
"Elements of source span can not be assigned to elements of destination span");
static_assert(SrcExtent == dynamic_extent || DestExtent == dynamic_extent ||
(SrcExtent <= DestExtent),
"Source range is longer than target range");
Expects(dest.size() >= src.size());
GSL_SUPPRESS(stl.1) // NO-FORMAT: attribute
std::copy_n(src.data(), src.size(), dest.data());
}
} // namespace gsl
#ifdef _MSC_VER
#pragma warning(pop)
#endif // _MSC_VER
#endif // GSL_ALGORITHM_H
+133 -3
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@@ -1,3 +1,133 @@
#pragma once
#pragma message("This header will soon be removed. Use <gsl/assert> instead of <gsl/gsl_assert>")
#include <gsl/assert>
///////////////////////////////////////////////////////////////////////////////
//
// Copyright (c) 2015 Microsoft Corporation. All rights reserved.
//
// This code is licensed under the MIT License (MIT).
//
// THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
// IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
// FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
// AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
// LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
// OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
// THE SOFTWARE.
//
///////////////////////////////////////////////////////////////////////////////
#ifndef GSL_CONTRACTS_H
#define GSL_CONTRACTS_H
//
// Temporary until MSVC STL supports no-exceptions mode.
// Currently terminate is a no-op in this mode, so we add termination behavior back
//
#if defined(_MSC_VER) && (defined(_KERNEL_MODE) || (defined(_HAS_EXCEPTIONS) && !_HAS_EXCEPTIONS))
#define GSL_MSVC_USE_STL_NOEXCEPTION_WORKAROUND
#include <intrin.h>
#define RANGE_CHECKS_FAILURE 0
#if defined(__clang__)
#pragma clang diagnostic push
#pragma clang diagnostic ignored "-Winvalid-noreturn"
#endif // defined(__clang__)
#else // defined(_MSC_VER) && (defined(_KERNEL_MODE) || (defined(_HAS_EXCEPTIONS) && !_HAS_EXCEPTIONS))
#include <exception>
#endif // defined(_MSC_VER) && (defined(_KERNEL_MODE) || (defined(_HAS_EXCEPTIONS) && !_HAS_EXCEPTIONS))
//
// make suppress attributes parse for some compilers
// Hopefully temporary until suppression standardization occurs
//
#if defined(__clang__)
#define GSL_SUPPRESS(x) [[gsl::suppress("x")]]
#else
#if defined(_MSC_VER) && ! defined(__INTEL_COMPILER)
#define GSL_SUPPRESS(x) [[gsl::suppress(x)]]
#else
#define GSL_SUPPRESS(x)
#endif // _MSC_VER
#endif // __clang__
#define GSL_STRINGIFY_DETAIL(x) #x
#define GSL_STRINGIFY(x) GSL_STRINGIFY_DETAIL(x)
#if defined(__clang__) || defined(__GNUC__)
#define GSL_LIKELY(x) __builtin_expect(!!(x), 1)
#define GSL_UNLIKELY(x) __builtin_expect(!!(x), 0)
#else
#define GSL_LIKELY(x) (!!(x))
#define GSL_UNLIKELY(x) (!!(x))
#endif // defined(__clang__) || defined(__GNUC__)
//
// GSL_ASSUME(cond)
//
// Tell the optimizer that the predicate cond must hold. It is unspecified
// whether or not cond is actually evaluated.
//
#ifdef _MSC_VER
#define GSL_ASSUME(cond) __assume(cond)
#elif defined(__GNUC__)
#define GSL_ASSUME(cond) ((cond) ? static_cast<void>(0) : __builtin_unreachable())
#else
#define GSL_ASSUME(cond) static_cast<void>((cond) ? 0 : 0)
#endif
//
// GSL.assert: assertions
//
namespace gsl
{
namespace details
{
#if defined(GSL_MSVC_USE_STL_NOEXCEPTION_WORKAROUND)
typedef void(__cdecl* terminate_handler)();
// clang-format off
GSL_SUPPRESS(f.6) // NO-FORMAT: attribute
// clang-format on
[[noreturn]] inline void __cdecl default_terminate_handler()
{
__fastfail(RANGE_CHECKS_FAILURE);
}
inline gsl::details::terminate_handler& get_terminate_handler() noexcept
{
static terminate_handler handler = &default_terminate_handler;
return handler;
}
#endif // defined(GSL_MSVC_USE_STL_NOEXCEPTION_WORKAROUND)
[[noreturn]] inline void terminate() noexcept
{
#if defined(GSL_MSVC_USE_STL_NOEXCEPTION_WORKAROUND)
(*gsl::details::get_terminate_handler())();
#else
std::terminate();
#endif // defined(GSL_MSVC_USE_STL_NOEXCEPTION_WORKAROUND)
}
} // namespace details
} // namespace gsl
#define GSL_CONTRACT_CHECK(type, cond) \
(GSL_LIKELY(cond) ? static_cast<void>(0) : gsl::details::terminate())
#define Expects(cond) GSL_CONTRACT_CHECK("Precondition", cond)
#define Ensures(cond) GSL_CONTRACT_CHECK("Postcondition", cond)
#if defined(GSL_MSVC_USE_STL_NOEXCEPTION_WORKAROUND) && defined(__clang__)
#pragma clang diagnostic pop
#endif
#endif // GSL_CONTRACTS_H
+209 -3
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@@ -1,3 +1,209 @@
#pragma once
#pragma message("This header will soon be removed. Use <gsl/byte> instead of <gsl/gsl_byte>")
#include <gsl/byte>
///////////////////////////////////////////////////////////////////////////////
//
// Copyright (c) 2015 Microsoft Corporation. All rights reserved.
//
// This code is licensed under the MIT License (MIT).
//
// THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
// IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
// FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
// AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
// LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
// OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
// THE SOFTWARE.
//
///////////////////////////////////////////////////////////////////////////////
#ifndef GSL_BYTE_H
#define GSL_BYTE_H
//
// make suppress attributes work for some compilers
// Hopefully temporary until suppression standardization occurs
//
#if defined(__clang__)
#define GSL_SUPPRESS(x) [[gsl::suppress("x")]]
#else
#if defined(_MSC_VER) && ! defined(__INTEL_COMPILER)
#define GSL_SUPPRESS(x) [[gsl::suppress(x)]]
#else
#define GSL_SUPPRESS(x)
#endif // _MSC_VER
#endif // __clang__
#include <type_traits>
// VS2017 15.8 added support for the __cpp_lib_byte definition
// To do: drop _HAS_STD_BYTE when support for pre 15.8 expires
#ifdef _MSC_VER
#pragma warning(push)
// Turn MSVC /analyze rules that generate too much noise. TODO: fix in the tool.
#pragma warning(disable : 26493) // don't use c-style casts // TODO: MSVC suppression in templates does not always work
#ifndef GSL_USE_STD_BYTE
// this tests if we are under MSVC and the standard lib has std::byte and it is enabled
#if (defined(_HAS_STD_BYTE) && _HAS_STD_BYTE) || (defined(__cpp_lib_byte) && __cpp_lib_byte >= 201603)
#define GSL_USE_STD_BYTE 1
#else // (defined(_HAS_STD_BYTE) && _HAS_STD_BYTE) || (defined(__cpp_lib_byte) && __cpp_lib_byte >= 201603)
#define GSL_USE_STD_BYTE 0
#endif // (defined(_HAS_STD_BYTE) && _HAS_STD_BYTE) || (defined(__cpp_lib_byte) && __cpp_lib_byte >= 201603)
#endif // GSL_USE_STD_BYTE
#else // _MSC_VER
#ifndef GSL_USE_STD_BYTE
#include <cstddef> /* __cpp_lib_byte */
// this tests if we are under GCC or Clang with enough -std=c++1z power to get us std::byte
// also check if libc++ version is sufficient (> 5.0) or libstdc++ actually contains std::byte
#if defined(__cplusplus) && (__cplusplus >= 201703L) && \
(defined(__cpp_lib_byte) && (__cpp_lib_byte >= 201603) || \
defined(_LIBCPP_VERSION) && (_LIBCPP_VERSION >= 5000))
#define GSL_USE_STD_BYTE 1
#else // defined(__cplusplus) && (__cplusplus >= 201703L) &&
// (defined(__cpp_lib_byte) && (__cpp_lib_byte >= 201603) ||
// defined(_LIBCPP_VERSION) && (_LIBCPP_VERSION >= 5000))
#define GSL_USE_STD_BYTE 0
#endif //defined(__cplusplus) && (__cplusplus >= 201703L) &&
// (defined(__cpp_lib_byte) && (__cpp_lib_byte >= 201603) ||
// defined(_LIBCPP_VERSION) && (_LIBCPP_VERSION >= 5000))
#endif // GSL_USE_STD_BYTE
#endif // _MSC_VER
// Use __may_alias__ attribute on gcc and clang
#if defined __clang__ || (defined(__GNUC__) && __GNUC__ > 5)
#define byte_may_alias __attribute__((__may_alias__))
#else // defined __clang__ || defined __GNUC__
#define byte_may_alias
#endif // defined __clang__ || defined __GNUC__
#if GSL_USE_STD_BYTE
#include <cstddef>
#endif
namespace gsl
{
#if GSL_USE_STD_BYTE
using std::byte;
using std::to_integer;
#else // GSL_USE_STD_BYTE
// This is a simple definition for now that allows
// use of byte within span<> to be standards-compliant
enum class byte_may_alias byte : unsigned char
{
};
template <class IntegerType, class = std::enable_if_t<std::is_integral<IntegerType>::value>>
constexpr byte& operator<<=(byte& b, IntegerType shift) noexcept
{
return b = byte(static_cast<unsigned char>(b) << shift);
}
template <class IntegerType, class = std::enable_if_t<std::is_integral<IntegerType>::value>>
constexpr byte operator<<(byte b, IntegerType shift) noexcept
{
return byte(static_cast<unsigned char>(b) << shift);
}
template <class IntegerType, class = std::enable_if_t<std::is_integral<IntegerType>::value>>
constexpr byte& operator>>=(byte& b, IntegerType shift) noexcept
{
return b = byte(static_cast<unsigned char>(b) >> shift);
}
template <class IntegerType, class = std::enable_if_t<std::is_integral<IntegerType>::value>>
constexpr byte operator>>(byte b, IntegerType shift) noexcept
{
return byte(static_cast<unsigned char>(b) >> shift);
}
constexpr byte& operator|=(byte& l, byte r) noexcept
{
return l = byte(static_cast<unsigned char>(l) | static_cast<unsigned char>(r));
}
constexpr byte operator|(byte l, byte r) noexcept
{
return byte(static_cast<unsigned char>(l) | static_cast<unsigned char>(r));
}
constexpr byte& operator&=(byte& l, byte r) noexcept
{
return l = byte(static_cast<unsigned char>(l) & static_cast<unsigned char>(r));
}
constexpr byte operator&(byte l, byte r) noexcept
{
return byte(static_cast<unsigned char>(l) & static_cast<unsigned char>(r));
}
constexpr byte& operator^=(byte& l, byte r) noexcept
{
return l = byte(static_cast<unsigned char>(l) ^ static_cast<unsigned char>(r));
}
constexpr byte operator^(byte l, byte r) noexcept
{
return byte(static_cast<unsigned char>(l) ^ static_cast<unsigned char>(r));
}
constexpr byte operator~(byte b) noexcept { return byte(~static_cast<unsigned char>(b)); }
template <class IntegerType, class = std::enable_if_t<std::is_integral<IntegerType>::value>>
constexpr IntegerType to_integer(byte b) noexcept
{
return static_cast<IntegerType>(b);
}
#endif // GSL_USE_STD_BYTE
template <bool E, typename T>
constexpr byte to_byte_impl(T t) noexcept
{
static_assert(
E, "gsl::to_byte(t) must be provided an unsigned char, otherwise data loss may occur. "
"If you are calling to_byte with an integer contant use: gsl::to_byte<t>() version.");
return static_cast<byte>(t);
}
template <>
// NOTE: need suppression since c++14 does not allow "return {t}"
// GSL_SUPPRESS(type.4) // NO-FORMAT: attribute // TODO: suppression does not work
constexpr byte to_byte_impl<true, unsigned char>(unsigned char t) noexcept
{
return byte(t);
}
template <typename T>
constexpr byte to_byte(T t) noexcept
{
return to_byte_impl<std::is_same<T, unsigned char>::value, T>(t);
}
template <int I>
constexpr byte to_byte() noexcept
{
static_assert(I >= 0 && I <= 255,
"gsl::byte only has 8 bits of storage, values must be in range 0-255");
return static_cast<byte>(I);
}
} // namespace gsl
#ifdef _MSC_VER
#pragma warning(pop)
#endif // _MSC_VER
#endif // GSL_BYTE_H
+52 -3
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@@ -1,3 +1,52 @@
#pragma once
#pragma message("This header will soon be removed. Use <gsl/narrow> instead of <gsl/gsl_narrow>")
#include <gsl/narrow>
///////////////////////////////////////////////////////////////////////////////
//
// Copyright (c) 2015 Microsoft Corporation. All rights reserved.
//
// This code is licensed under the MIT License (MIT).
//
// THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
// IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
// FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
// AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
// LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
// OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
// THE SOFTWARE.
//
///////////////////////////////////////////////////////////////////////////////
#ifndef GSL_NARROW_H
#define GSL_NARROW_H
#include <gsl/gsl_assert> // for Expects
#include <gsl/gsl_util> // for narrow_cast
namespace gsl
{
struct narrowing_error : public std::exception
{
const char* what() const noexcept override
{
return "narrowing_error";
}
};
// narrow() : a checked version of narrow_cast() that throws if the cast changed the value
template <class T, class U>
GSL_SUPPRESS(type.1) // NO-FORMAT: attribute
GSL_SUPPRESS(f.6) // NO-FORMAT: attribute // TODO: MSVC /analyze does not recognise noexcept(false)
constexpr
T narrow(U u) noexcept(false)
{
constexpr const bool is_different_signedness = (std::is_signed<T>::value != std::is_signed<U>::value);
const T t = narrow_cast<T>(u);
if (static_cast<U>(t) != u
|| (is_different_signedness
&& ((t < T{}) != (u < U{}))))
{
throw narrowing_error{};
}
return t;
}
}
#endif // GSL_NARROW_H
+129 -3
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@@ -1,3 +1,129 @@
#pragma once
#pragma message("This header will soon be removed. Use <gsl/util> instead of <gsl/gsl_util>")
#include <gsl/util>
///////////////////////////////////////////////////////////////////////////////
//
// Copyright (c) 2015 Microsoft Corporation. All rights reserved.
//
// This code is licensed under the MIT License (MIT).
//
// THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
// IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
// FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
// AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
// LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
// OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
// THE SOFTWARE.
//
///////////////////////////////////////////////////////////////////////////////
#ifndef GSL_UTIL_H
#define GSL_UTIL_H
#include <gsl/gsl_assert> // for Expects
#include <array>
#include <cstddef> // for ptrdiff_t, size_t
#include <initializer_list> // for initializer_list
#include <type_traits> // for is_signed, integral_constant
#include <utility> // for exchange, forward
#if defined(_MSC_VER) && !defined(__clang__)
#pragma warning(push)
#pragma warning(disable : 4127) // conditional expression is constant
#endif // _MSC_VER
#if defined(__cplusplus) && (__cplusplus >= 201703L)
#define GSL_NODISCARD [[nodiscard]]
#else
#define GSL_NODISCARD
#endif // defined(__cplusplus) && (__cplusplus >= 201703L)
namespace gsl
{
//
// GSL.util: utilities
//
// index type for all container indexes/subscripts/sizes
using index = std::ptrdiff_t;
// final_action allows you to ensure something gets run at the end of a scope
template <class F>
class final_action
{
public:
static_assert(!std::is_reference<F>::value && !std::is_const<F>::value && !std::is_volatile<F>::value, "Final_action should store its callable by value");
explicit final_action(F f) noexcept : f_(std::move(f)) {}
final_action(final_action&& other) noexcept : f_(std::move(other.f_)), invoke_(std::exchange(other.invoke_, false)) {}
final_action(const final_action&) = delete;
final_action& operator=(const final_action&) = delete;
final_action& operator=(final_action&&) = delete;
GSL_SUPPRESS(f.6) // NO-FORMAT: attribute // terminate if throws
~final_action() noexcept
{
if (invoke_) f_();
}
private:
F f_;
bool invoke_{true};
};
// finally() - convenience function to generate a final_action
template <class F>
GSL_NODISCARD final_action<typename std::remove_cv<typename std::remove_reference<F>::type>::type> finally(F&& f) noexcept
{
return final_action<typename std::remove_cv<typename std::remove_reference<F>::type>::type>(std::forward<F>(f));
}
// narrow_cast(): a searchable way to do narrowing casts of values
template <class T, class U>
GSL_SUPPRESS(type.1) // NO-FORMAT: attribute
constexpr T narrow_cast(U&& u) noexcept
{
return static_cast<T>(std::forward<U>(u));
}
//
// at() - Bounds-checked way of accessing builtin arrays, std::array, std::vector
//
template <class T, std::size_t N>
GSL_SUPPRESS(bounds.4) // NO-FORMAT: attribute
GSL_SUPPRESS(bounds.2) // NO-FORMAT: attribute
constexpr T& at(T (&arr)[N], const index i)
{
Expects(i >= 0 && i < narrow_cast<index>(N));
return arr[narrow_cast<std::size_t>(i)];
}
template <class Cont>
GSL_SUPPRESS(bounds.4) // NO-FORMAT: attribute
GSL_SUPPRESS(bounds.2) // NO-FORMAT: attribute
constexpr auto at(Cont& cont, const index i) -> decltype(cont[cont.size()])
{
Expects(i >= 0 && i < narrow_cast<index>(cont.size()));
using size_type = decltype(cont.size());
return cont[narrow_cast<size_type>(i)];
}
template <class T>
GSL_SUPPRESS(bounds.1) // NO-FORMAT: attribute
constexpr T at(const std::initializer_list<T> cont, const index i)
{
Expects(i >= 0 && i < narrow_cast<index>(cont.size()));
return *(cont.begin() + i);
}
} // namespace gsl
#if defined(_MSC_VER) && !defined(__clang__)
#pragma warning(pop)
#endif // _MSC_VER
#endif // GSL_UTIL_H
File diff suppressed because it is too large Load Diff
-71
View File
@@ -1,71 +0,0 @@
///////////////////////////////////////////////////////////////////////////////
//
// Copyright (c) 2015 Microsoft Corporation. All rights reserved.
//
// This code is licensed under the MIT License (MIT).
//
// THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
// IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
// FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
// AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
// LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
// OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
// THE SOFTWARE.
//
///////////////////////////////////////////////////////////////////////////////
#ifndef GSL_NARROW_H
#define GSL_NARROW_H
#include <gsl/assert> // for Expects
#include <gsl/util> // for narrow_cast
namespace gsl
{
struct narrowing_error : public std::exception
{
const char* what() const noexcept override { return "narrowing_error"; }
};
// narrow() : a checked version of narrow_cast() that throws if the cast changed the value
template <class T, class U, typename std::enable_if<std::is_arithmetic<T>::value>::type* = nullptr>
// clang-format off
GSL_SUPPRESS(type.1) // NO-FORMAT: attribute
GSL_SUPPRESS(f.6) // NO-FORMAT: attribute // TODO: MSVC /analyze does not recognise noexcept(false)
// clang-format on
constexpr T narrow(U u) noexcept(false)
{
constexpr const bool is_different_signedness =
(std::is_signed<T>::value != std::is_signed<U>::value);
GSL_SUPPRESS(es.103) // NO-FORMAT: attribute // don't overflow
GSL_SUPPRESS(es.104) // NO-FORMAT: attribute // don't underflow
GSL_SUPPRESS(p.2) // NO-FORMAT: attribute // don't rely on undefined behavior
const T t = narrow_cast<T>(u); // While this is technically undefined behavior in some cases (i.e., if the source value is of floating-point type
// and cannot fit into the destination integral type), the resultant behavior is benign on the platforms
// that we target (i.e., no hardware trap representations are hit).
if (static_cast<U>(t) != u || (is_different_signedness && ((t < T{}) != (u < U{}))))
{
throw narrowing_error{};
}
return t;
}
template <class T, class U, typename std::enable_if<!std::is_arithmetic<T>::value>::type* = nullptr>
// clang-format off
GSL_SUPPRESS(type.1) // NO-FORMAT: attribute
GSL_SUPPRESS(f.6) // NO-FORMAT: attribute // TODO: MSVC /analyze does not recognise noexcept(false)
// clang-format on
constexpr T narrow(U u) noexcept(false)
{
const T t = narrow_cast<T>(u);
if (static_cast<U>(t) != u)
{
throw narrowing_error{};
}
return t;
}
} // namespace gsl
#endif // GSL_NARROW_H
+29 -65
View File
@@ -17,48 +17,27 @@
#ifndef GSL_POINTERS_H
#define GSL_POINTERS_H
#include <gsl/assert> // for Ensures, Expects
#include <gsl/gsl_assert> // for Ensures, Expects
#include <algorithm> // for forward
#include <cstddef> // for ptrdiff_t, nullptr_t, size_t
#include <iosfwd> // for ptrdiff_t, nullptr_t, ostream, size_t
#include <memory> // for shared_ptr, unique_ptr
#include <system_error> // for hash
#include <type_traits> // for enable_if_t, is_convertible, is_assignable
#if !defined(GSL_NO_IOSTREAMS)
#include <iosfwd> // for ostream
#endif // !defined(GSL_NO_IOSTREAMS)
namespace gsl
{
namespace details
{
template <typename T, typename = void>
struct is_comparable_to_nullptr : std::false_type
{
};
template <typename T>
struct is_comparable_to_nullptr<
T,
std::enable_if_t<std::is_convertible<decltype(std::declval<T>() != nullptr), bool>::value>>
: std::true_type
{
};
} // namespace details
//
// GSL.owner: ownership pointers
//
using std::shared_ptr;
using std::unique_ptr;
using std::shared_ptr;
//
// owner
//
// owner<T> is designed as a bridge for code that must deal directly with owning pointers for some
// reason
// owner<T> is designed as a bridge for code that must deal directly with owning pointers for some reason
//
// T must be a pointer type
// - disallow construction from any type other than pointer type
@@ -84,7 +63,7 @@ template <class T>
class not_null
{
public:
static_assert(details::is_comparable_to_nullptr<T>::value, "T cannot be compared to nullptr.");
static_assert(std::is_convertible<decltype(std::declval<T>() != nullptr), bool>::value, "T cannot be compared to nullptr.");
template <typename U, typename = std::enable_if_t<std::is_convertible<U, T>::value>>
constexpr not_null(U&& u) : ptr_(std::forward<U>(u))
@@ -100,7 +79,8 @@ public:
template <typename U, typename = std::enable_if_t<std::is_convertible<U, T>::value>>
constexpr not_null(const not_null<U>& other) : not_null(other.get())
{}
{
}
not_null(const not_null& other) = default;
not_null& operator=(const not_null& other) = default;
@@ -132,64 +112,49 @@ private:
};
template <class T>
auto make_not_null(T&& t) noexcept
{
auto make_not_null(T&& t) noexcept {
return not_null<std::remove_cv_t<std::remove_reference_t<T>>>{std::forward<T>(t)};
}
#if !defined(GSL_NO_IOSTREAMS)
template <class T>
std::ostream& operator<<(std::ostream& os, const not_null<T>& val)
{
os << val.get();
return os;
}
#endif // !defined(GSL_NO_IOSTREAMS)
template <class T, class U>
auto operator==(const not_null<T>& lhs,
const not_null<U>& rhs) noexcept(noexcept(lhs.get() == rhs.get()))
-> decltype(lhs.get() == rhs.get())
auto operator==(const not_null<T>& lhs, const not_null<U>& rhs) noexcept(noexcept(lhs.get() == rhs.get())) -> decltype(lhs.get() == rhs.get())
{
return lhs.get() == rhs.get();
}
template <class T, class U>
auto operator!=(const not_null<T>& lhs,
const not_null<U>& rhs) noexcept(noexcept(lhs.get() != rhs.get()))
-> decltype(lhs.get() != rhs.get())
auto operator!=(const not_null<T>& lhs, const not_null<U>& rhs) noexcept(noexcept(lhs.get() != rhs.get())) -> decltype(lhs.get() != rhs.get())
{
return lhs.get() != rhs.get();
}
template <class T, class U>
auto operator<(const not_null<T>& lhs,
const not_null<U>& rhs) noexcept(noexcept(lhs.get() < rhs.get()))
-> decltype(lhs.get() < rhs.get())
auto operator<(const not_null<T>& lhs, const not_null<U>& rhs) noexcept(noexcept(lhs.get() < rhs.get())) -> decltype(lhs.get() < rhs.get())
{
return lhs.get() < rhs.get();
}
template <class T, class U>
auto operator<=(const not_null<T>& lhs,
const not_null<U>& rhs) noexcept(noexcept(lhs.get() <= rhs.get()))
-> decltype(lhs.get() <= rhs.get())
auto operator<=(const not_null<T>& lhs, const not_null<U>& rhs) noexcept(noexcept(lhs.get() <= rhs.get())) -> decltype(lhs.get() <= rhs.get())
{
return lhs.get() <= rhs.get();
}
template <class T, class U>
auto operator>(const not_null<T>& lhs,
const not_null<U>& rhs) noexcept(noexcept(lhs.get() > rhs.get()))
-> decltype(lhs.get() > rhs.get())
auto operator>(const not_null<T>& lhs, const not_null<U>& rhs) noexcept(noexcept(lhs.get() > rhs.get())) -> decltype(lhs.get() > rhs.get())
{
return lhs.get() > rhs.get();
}
template <class T, class U>
auto operator>=(const not_null<T>& lhs,
const not_null<U>& rhs) noexcept(noexcept(lhs.get() >= rhs.get()))
-> decltype(lhs.get() >= rhs.get())
auto operator>=(const not_null<T>& lhs, const not_null<U>& rhs) noexcept(noexcept(lhs.get() >= rhs.get())) -> decltype(lhs.get() >= rhs.get())
{
return lhs.get() >= rhs.get();
}
@@ -237,23 +202,28 @@ namespace gsl
// - remove unnecessary asserts
//
template <class T>
class strict_not_null : public not_null<T>
class strict_not_null: public not_null<T>
{
public:
template <typename U, typename = std::enable_if_t<std::is_convertible<U, T>::value>>
constexpr explicit strict_not_null(U&& u) : not_null<T>(std::forward<U>(u))
constexpr explicit strict_not_null(U&& u) :
not_null<T>(std::forward<U>(u))
{}
template <typename = std::enable_if_t<!std::is_same<std::nullptr_t, T>::value>>
constexpr explicit strict_not_null(T u) : not_null<T>(u)
constexpr explicit strict_not_null(T u) :
not_null<T>(u)
{}
template <typename U, typename = std::enable_if_t<std::is_convertible<U, T>::value>>
constexpr strict_not_null(const not_null<U>& other) : not_null<T>(other)
constexpr strict_not_null(const not_null<U>& other) :
not_null<T>(other)
{}
template <typename U, typename = std::enable_if_t<std::is_convertible<U, T>::value>>
constexpr strict_not_null(const strict_not_null<U>& other) : not_null<T>(other)
constexpr strict_not_null(const strict_not_null<U>& other) :
not_null<T>(other)
{}
strict_not_null(strict_not_null&& other) = default;
@@ -290,18 +260,15 @@ template <class T>
strict_not_null<T> operator+(std::ptrdiff_t, const strict_not_null<T>&) = delete;
template <class T>
auto make_strict_not_null(T&& t) noexcept
{
auto make_strict_not_null(T&& t) noexcept {
return strict_not_null<std::remove_cv_t<std::remove_reference_t<T>>>{std::forward<T>(t)};
}
#if (defined(__cpp_deduction_guides) && (__cpp_deduction_guides >= 201611L))
#if ( defined(__cpp_deduction_guides) && (__cpp_deduction_guides >= 201611L) )
// deduction guides to prevent the ctad-maybe-unsupported warning
template <class T>
not_null(T) -> not_null<T>;
template <class T>
strict_not_null(T) -> strict_not_null<T>;
template <class T> not_null(T) -> not_null<T>;
template <class T> strict_not_null(T) -> strict_not_null<T>;
#endif // ( defined(__cpp_deduction_guides) && (__cpp_deduction_guides >= 201611L) )
@@ -312,10 +279,7 @@ namespace std
template <class T>
struct hash<gsl::strict_not_null<T>>
{
std::size_t operator()(const gsl::strict_not_null<T>& value) const
{
return hash<T>{}(value.get());
}
std::size_t operator()(const gsl::strict_not_null<T>& value) const { return hash<T>{}(value.get()); }
};
} // namespace std
+68 -72
View File
@@ -17,15 +17,14 @@
#ifndef GSL_SPAN_H
#define GSL_SPAN_H
#include <gsl/assert> // for Expects
#include <gsl/byte> // for byte
#include <gsl/util> // for narrow_cast
#include <gsl/gsl_assert> // for Expects
#include <gsl/gsl_byte> // for byte
#include <gsl/gsl_util> // for narrow_cast
#include <array> // for array
#include <cstddef> // for ptrdiff_t, size_t, nullptr_t
#include <gsl/span_ext> // for span specialization of gsl::at and other span-related extensions
#include <iterator> // for reverse_iterator, distance, random_access_...
#include <type_traits> // for enable_if_t, declval, is_convertible, inte...
#include <array> // for array
#include <cstddef> // for ptrdiff_t, size_t, nullptr_t
#include <iterator> // for reverse_iterator, distance, random_access_...
#include <type_traits> // for enable_if_t, declval, is_convertible, inte...
#if defined(_MSC_VER) && !defined(__clang__)
#pragma warning(push)
@@ -61,6 +60,12 @@
namespace gsl
{
// [views.constants], constants
constexpr const std::size_t dynamic_extent = narrow_cast<std::size_t>(-1);
template <class ElementType, std::size_t Extent = dynamic_extent>
class span;
// implementation details
namespace details
{
@@ -147,9 +152,6 @@ namespace details
{
Expects(begin_ && current_ && end_);
Expects(current_ < end_);
// clang-format off
GSL_SUPPRESS(bounds.1) // NO-FORMAT: attribute
// clang-format on
++current_;
return *this;
}
@@ -181,9 +183,6 @@ namespace details
if (n != 0) Expects(begin_ && current_ && end_);
if (n > 0) Expects(end_ - current_ >= n);
if (n < 0) Expects(current_ - begin_ >= -n);
// clang-format off
GSL_SUPPRESS(bounds.1) // NO-FORMAT: attribute
// clang-format on
current_ += n;
return *this;
}
@@ -448,7 +447,7 @@ public:
template <std::size_t N,
std::enable_if_t<details::is_allowed_extent_conversion<N, Extent>::value, int> = 0>
constexpr span(element_type (&arr)[N]) noexcept
: storage_(KnownNotNull{arr}, details::extent_type<N>())
: storage_(KnownNotNull{arr + 0}, details::extent_type<N>())
{}
template <
@@ -473,70 +472,66 @@ public:
// requirement on Container to be a contiguous sequence container.
template <std::size_t MyExtent = Extent, class Container,
std::enable_if_t<
MyExtent != dynamic_extent && !details::is_span<Container>::value &&
!details::is_std_array<Container>::value &&
std::is_pointer<decltype(std::declval<Container&>().data())>::value &&
std::is_convertible<
std::remove_pointer_t<decltype(std::declval<Container&>().data())> (*)[],
element_type (*)[]>::value,
int> = 0>
MyExtent != dynamic_extent &&
!details::is_span<Container>::value && !details::is_std_array<Container>::value &&
std::is_pointer<decltype(std::declval<Container&>().data())>::value &&
std::is_convertible<
std::remove_pointer_t<decltype(std::declval<Container&>().data())> (*)[],
element_type (*)[]>::value, int> = 0>
constexpr explicit span(Container& cont) noexcept : span(cont.data(), cont.size())
{}
template <std::size_t MyExtent = Extent, class Container,
std::enable_if_t<
MyExtent == dynamic_extent && !details::is_span<Container>::value &&
!details::is_std_array<Container>::value &&
std::is_pointer<decltype(std::declval<Container&>().data())>::value &&
std::is_convertible<
std::remove_pointer_t<decltype(std::declval<Container&>().data())> (*)[],
element_type (*)[]>::value,
int> = 0>
MyExtent == dynamic_extent &&
!details::is_span<Container>::value && !details::is_std_array<Container>::value &&
std::is_pointer<decltype(std::declval<Container&>().data())>::value &&
std::is_convertible<
std::remove_pointer_t<decltype(std::declval<Container&>().data())> (*)[],
element_type (*)[]>::value, int> = 0>
constexpr span(Container& cont) noexcept : span(cont.data(), cont.size())
{}
template <
std::size_t MyExtent = Extent, class Container,
std::enable_if_t<
MyExtent != dynamic_extent && std::is_const<element_type>::value &&
!details::is_span<Container>::value && !details::is_std_array<Container>::value &&
std::is_pointer<decltype(std::declval<const Container&>().data())>::value &&
std::is_convertible<
std::remove_pointer_t<decltype(std::declval<const Container&>().data())> (*)[],
element_type (*)[]>::value,
int> = 0>
template <std::size_t MyExtent = Extent, class Container,
std::enable_if_t<
MyExtent != dynamic_extent &&
std::is_const<element_type>::value && !details::is_span<Container>::value &&
!details::is_std_array<Container>::value &&
std::is_pointer<decltype(std::declval<const Container&>().data())>::value &&
std::is_convertible<std::remove_pointer_t<
decltype(std::declval<const Container&>().data())> (*)[],
element_type (*)[]>::value, int> = 0>
constexpr explicit span(const Container& cont) noexcept : span(cont.data(), cont.size())
{}
template <
std::size_t MyExtent = Extent, class Container,
std::enable_if_t<
MyExtent == dynamic_extent && std::is_const<element_type>::value &&
!details::is_span<Container>::value && !details::is_std_array<Container>::value &&
std::is_pointer<decltype(std::declval<const Container&>().data())>::value &&
std::is_convertible<
std::remove_pointer_t<decltype(std::declval<const Container&>().data())> (*)[],
element_type (*)[]>::value,
int> = 0>
template <std::size_t MyExtent = Extent, class Container,
std::enable_if_t<
MyExtent == dynamic_extent &&
std::is_const<element_type>::value && !details::is_span<Container>::value &&
!details::is_std_array<Container>::value &&
std::is_pointer<decltype(std::declval<const Container&>().data())>::value &&
std::is_convertible<std::remove_pointer_t<
decltype(std::declval<const Container&>().data())> (*)[],
element_type (*)[]>::value, int> = 0>
constexpr span(const Container& cont) noexcept : span(cont.data(), cont.size())
{}
constexpr span(const span& other) noexcept = default;
template <class OtherElementType, std::size_t OtherExtent, std::size_t MyExtent = Extent,
std::enable_if_t<(MyExtent == dynamic_extent || MyExtent == OtherExtent) &&
details::is_allowed_element_type_conversion<OtherElementType,
element_type>::value,
int> = 0>
template <
class OtherElementType, std::size_t OtherExtent, std::size_t MyExtent = Extent,
std::enable_if_t<
(MyExtent == dynamic_extent || MyExtent == OtherExtent) &&
details::is_allowed_element_type_conversion<OtherElementType, element_type>::value, int> = 0>
constexpr span(const span<OtherElementType, OtherExtent>& other) noexcept
: storage_(other.data(), details::extent_type<OtherExtent>(other.size()))
{}
template <class OtherElementType, std::size_t OtherExtent, std::size_t MyExtent = Extent,
std::enable_if_t<MyExtent != dynamic_extent && OtherExtent == dynamic_extent &&
details::is_allowed_element_type_conversion<OtherElementType,
element_type>::value,
int> = 0>
template <
class OtherElementType, std::size_t OtherExtent, std::size_t MyExtent = Extent,
std::enable_if_t<
MyExtent != dynamic_extent && OtherExtent == dynamic_extent &&
details::is_allowed_element_type_conversion<OtherElementType, element_type>::value, int> = 0>
constexpr explicit span(const span<OtherElementType, OtherExtent>& other) noexcept
: storage_(other.data(), details::extent_type<OtherExtent>(other.size()))
{}
@@ -570,8 +565,7 @@ public:
typename details::calculate_subspan_type<ElementType, Extent, Offset, Count>::type
{
Expects((size() >= Offset) && (Count == dynamic_extent || (Count <= size() - Offset)));
using type =
typename details::calculate_subspan_type<ElementType, Extent, Offset, Count>::type;
using type = typename details::calculate_subspan_type<ElementType, Extent, Offset, Count>::type;
return type{data() + Offset, Count == dynamic_extent ? size() - Offset : Count};
}
@@ -587,8 +581,9 @@ public:
return make_subspan(size() - count, dynamic_extent, subspan_selector<Extent>{});
}
constexpr span<element_type, dynamic_extent>
subspan(size_type offset, size_type count = dynamic_extent) const noexcept
constexpr span<element_type, dynamic_extent> subspan(size_type offset,
size_type count = dynamic_extent) const
noexcept
{
return make_subspan(offset, count, subspan_selector<Extent>{});
}
@@ -711,8 +706,9 @@ private:
};
template <std::size_t CallerExtent>
constexpr span<element_type, dynamic_extent>
make_subspan(size_type offset, size_type count, subspan_selector<CallerExtent>) const noexcept
constexpr span<element_type, dynamic_extent> make_subspan(size_type offset, size_type count,
subspan_selector<CallerExtent>) const
noexcept
{
const span<element_type, dynamic_extent> tmp(*this);
return tmp.subspan(offset, count);
@@ -737,21 +733,21 @@ private:
// Deduction Guides
template <class Type, std::size_t Extent>
span(Type (&)[Extent]) -> span<Type, Extent>;
span(Type (&)[Extent])->span<Type, Extent>;
template <class Type, std::size_t Size>
span(std::array<Type, Size>&) -> span<Type, Size>;
span(std::array<Type, Size>&)->span<Type, Size>;
template <class Type, std::size_t Size>
span(const std::array<Type, Size>&) -> span<const Type, Size>;
span(const std::array<Type, Size>&)->span<const Type, Size>;
template <class Container,
class Element = std::remove_pointer_t<decltype(std::declval<Container&>().data())>>
span(Container&) -> span<Element>;
class Element = std::remove_pointer_t<decltype(std::declval<Container&>().data())>>
span(Container&)->span<Element>;
template <class Container,
class Element = std::remove_pointer_t<decltype(std::declval<const Container&>().data())>>
span(const Container&) -> span<Element>;
class Element = std::remove_pointer_t<decltype(std::declval<const Container&>().data())>>
span(const Container&)->span<Element>;
#endif // ( defined(__cpp_deduction_guides) && (__cpp_deduction_guides >= 201611L) )
+4 -18
View File
@@ -27,29 +27,17 @@
//
///////////////////////////////////////////////////////////////////////////////
#include <gsl/assert> // GSL_KERNEL_MODE
#include <gsl/util> // for narrow_cast, narrow
#include <cstddef> // for ptrdiff_t, size_t
#include <utility>
#include <gsl/gsl_util> // for narrow_cast, narrow
#include <gsl/span> // for span
#ifndef GSL_KERNEL_MODE
#include <algorithm> // for lexicographical_compare
#endif // GSL_KERNEL_MODE
#include <cstddef> // for ptrdiff_t, size_t
#include <utility>
namespace gsl
{
// [span.views.constants], constants
constexpr const std::size_t dynamic_extent = narrow_cast<std::size_t>(-1);
template <class ElementType, std::size_t Extent = dynamic_extent>
class span;
// std::equal and std::lexicographical_compare are not /kernel compatible
// so all comparison operators must be removed for kernel mode.
#ifndef GSL_KERNEL_MODE
// [span.comparison], span comparison operators
template <class ElementType, std::size_t FirstExtent, std::size_t SecondExtent>
constexpr bool operator==(span<ElementType, FirstExtent> l, span<ElementType, SecondExtent> r)
@@ -87,8 +75,6 @@ constexpr bool operator>=(span<ElementType, Extent> l, span<ElementType, Extent>
return !(l < r);
}
#endif // GSL_KERNEL_MODE
//
// make_span() - Utility functions for creating spans
//
+41 -15
View File
@@ -17,9 +17,9 @@
#ifndef GSL_STRING_SPAN_H
#define GSL_STRING_SPAN_H
#include <gsl/assert> // for Ensures, Expects
#include <gsl/span_ext> // for operator!=, operator==, dynamic_extent
#include <gsl/util> // for narrow_cast
#include <gsl/gsl_assert> // for Ensures, Expects
#include <gsl/gsl_util> // for narrow_cast
#include <gsl/span_ext> // for operator!=, operator==, dynamic_extent
#include <algorithm> // for equal, lexicographical_compare
#include <array> // for array
@@ -57,23 +57,48 @@ namespace gsl
//
template <typename CharT, std::size_t Extent = dynamic_extent>
using basic_zstring = CharT*;
using basic_zstring [[deprecated("string_span was removed from the C++ Core Guidelines. For more "
"information, see isocpp/CppCoreGuidelines PR#1680")]] = CharT*;
using czstring = basic_zstring<const char, dynamic_extent>;
template <std::size_t Extent = dynamic_extent>
using czstring [[deprecated("string_span was removed from the C++ Core Guidelines. For more "
"information, see isocpp/CppCoreGuidelines PR#1680")]] =
basic_zstring<const char, Extent>;
using cwzstring = basic_zstring<const wchar_t, dynamic_extent>;
template <std::size_t Extent = dynamic_extent>
using cwzstring [[deprecated("string_span was removed from the C++ Core Guidelines. For more "
"information, see isocpp/CppCoreGuidelines PR#1680")]] =
basic_zstring<const wchar_t, Extent>;
using cu16zstring = basic_zstring<const char16_t, dynamic_extent>;
template <std::size_t Extent = dynamic_extent>
using cu16zstring [[deprecated("string_span was removed from the C++ Core Guidelines. For more "
"information, see isocpp/CppCoreGuidelines PR#1680")]] =
basic_zstring<const char16_t, Extent>;
using cu32zstring = basic_zstring<const char32_t, dynamic_extent>;
template <std::size_t Extent = dynamic_extent>
using cu32zstring [[deprecated("string_span was removed from the C++ Core Guidelines. For more "
"information, see isocpp/CppCoreGuidelines PR#1680")]] =
basic_zstring<const char32_t, Extent>;
using zstring = basic_zstring<char, dynamic_extent>;
template <std::size_t Extent = dynamic_extent>
using zstring [[deprecated("string_span was removed from the C++ Core Guidelines. For more "
"information, see isocpp/CppCoreGuidelines PR#1680")]] =
basic_zstring<char, Extent>;
using wzstring = basic_zstring<wchar_t, dynamic_extent>;
template <std::size_t Extent = dynamic_extent>
using wzstring [[deprecated("string_span was removed from the C++ Core Guidelines. For more "
"information, see isocpp/CppCoreGuidelines PR#1680")]] =
basic_zstring<wchar_t, Extent>;
using u16zstring = basic_zstring<char16_t, dynamic_extent>;
template <std::size_t Extent = dynamic_extent>
using u16zstring [[deprecated("string_span was removed from the C++ Core Guidelines. For more "
"information, see isocpp/CppCoreGuidelines PR#1680")]] =
basic_zstring<char16_t, Extent>;
using u32zstring = basic_zstring<char32_t, dynamic_extent>;
template <std::size_t Extent = dynamic_extent>
using u32zstring [[deprecated("string_span was removed from the C++ Core Guidelines. For more "
"information, see isocpp/CppCoreGuidelines PR#1680")]] =
basic_zstring<char32_t, Extent>;
namespace details
{
@@ -159,9 +184,10 @@ class [[deprecated("string_span was removed from the C++ Core Guidelines. For mo
namespace details
{
template <typename T>
struct [[deprecated(
"string_span was removed from the C++ Core Guidelines. For more information, "
"see isocpp/CppCoreGuidelines PR#1680")]] is_basic_string_span_oracle : std::false_type{};
struct [
[deprecated("string_span was removed from the C++ Core Guidelines. For more information, "
"see isocpp/CppCoreGuidelines PR#1680")]] is_basic_string_span_oracle
: std::false_type{};
template <typename CharT, std::size_t Extent>
struct [[deprecated(
-160
View File
@@ -1,160 +0,0 @@
///////////////////////////////////////////////////////////////////////////////
//
// Copyright (c) 2015 Microsoft Corporation. All rights reserved.
//
// This code is licensed under the MIT License (MIT).
//
// THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
// IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
// FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
// AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
// LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
// OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
// THE SOFTWARE.
//
///////////////////////////////////////////////////////////////////////////////
#ifndef GSL_UTIL_H
#define GSL_UTIL_H
#include <gsl/assert> // for Expects
#include <array>
#include <cstddef> // for ptrdiff_t, size_t
#include <initializer_list> // for initializer_list
#include <type_traits> // for is_signed, integral_constant
#include <utility> // for exchange, forward
#if defined(__has_include) && __has_include(<version>)
#include <version>
#if defined(__cpp_lib_span) && __cpp_lib_span >= 202002L
#include <span>
#endif // __cpp_lib_span >= 202002L
#endif //__has_include(<version>)
#if defined(_MSC_VER) && !defined(__clang__)
#pragma warning(push)
#pragma warning(disable : 4127) // conditional expression is constant
#endif // _MSC_VER
#if defined(__cplusplus) && (__cplusplus >= 201703L)
#define GSL_NODISCARD [[nodiscard]]
#else
#define GSL_NODISCARD
#endif // defined(__cplusplus) && (__cplusplus >= 201703L)
namespace gsl
{
//
// GSL.util: utilities
//
// index type for all container indexes/subscripts/sizes
using index = std::ptrdiff_t;
// final_action allows you to ensure something gets run at the end of a scope
template <class F>
class final_action
{
public:
static_assert(!std::is_reference<F>::value && !std::is_const<F>::value &&
!std::is_volatile<F>::value,
"Final_action should store its callable by value");
explicit final_action(F f) noexcept : f_(std::move(f)) {}
final_action(final_action&& other) noexcept
: f_(std::move(other.f_)), invoke_(std::exchange(other.invoke_, false))
{}
final_action(const final_action&) = delete;
final_action& operator=(const final_action&) = delete;
final_action& operator=(final_action&&) = delete;
// clang-format off
GSL_SUPPRESS(f.6) // NO-FORMAT: attribute // terminate if throws
// clang-format on
~final_action() noexcept
{
if (invoke_) f_();
}
private:
F f_;
bool invoke_{true};
};
// finally() - convenience function to generate a final_action
template <class F>
GSL_NODISCARD final_action<typename std::remove_cv<typename std::remove_reference<F>::type>::type>
finally(F&& f) noexcept
{
return final_action<typename std::remove_cv<typename std::remove_reference<F>::type>::type>(
std::forward<F>(f));
}
// narrow_cast(): a searchable way to do narrowing casts of values
template <class T, class U>
// clang-format off
GSL_SUPPRESS(type.1) // NO-FORMAT: attribute
// clang-format on
constexpr T narrow_cast(U&& u) noexcept
{
return static_cast<T>(std::forward<U>(u));
}
//
// at() - Bounds-checked way of accessing builtin arrays, std::array, std::vector
//
template <class T, std::size_t N>
// clang-format off
GSL_SUPPRESS(bounds.4) // NO-FORMAT: attribute
GSL_SUPPRESS(bounds.2) // NO-FORMAT: attribute
// clang-format on
constexpr T& at(T (&arr)[N], const index i)
{
Expects(i >= 0 && i < narrow_cast<index>(N));
return arr[narrow_cast<std::size_t>(i)];
}
template <class Cont>
// clang-format off
GSL_SUPPRESS(bounds.4) // NO-FORMAT: attribute
GSL_SUPPRESS(bounds.2) // NO-FORMAT: attribute
// clang-format on
constexpr auto at(Cont& cont, const index i) -> decltype(cont[cont.size()])
{
Expects(i >= 0 && i < narrow_cast<index>(cont.size()));
using size_type = decltype(cont.size());
return cont[narrow_cast<size_type>(i)];
}
template <class T>
// clang-format off
GSL_SUPPRESS(bounds.1) // NO-FORMAT: attribute
// clang-format on
constexpr T at(const std::initializer_list<T> cont, const index i)
{
Expects(i >= 0 && i < narrow_cast<index>(cont.size()));
return *(cont.begin() + i);
}
#if defined(__cpp_lib_span) && __cpp_lib_span >= 202002L
template <class T, size_t extent = std::dynamic_extent>
constexpr auto at(std::span<T, extent> sp, const index i) -> decltype(sp[sp.size()])
{
Expects(i >= 0 && i < narrow_cast<index>(sp.size()));
return sp[gsl::narrow_cast<size_t>(i)];
}
#endif // __cpp_lib_span >= 202002L
} // namespace gsl
#if defined(_MSC_VER) && !defined(__clang__)
#pragma warning(pop)
#endif // _MSC_VER
#endif // GSL_UTIL_H
+11
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@@ -0,0 +1,11 @@
{
"name": "GSL",
"version": "1.0.0",
"build": {
"includeDir": "include",
"srcFilter":
[
".<*>"
]
}
}
-43
View File
@@ -1,43 +0,0 @@
parameters:
CXXVersions: [ 14, 17, 20 ]
buildTypes: [ 'Debug', 'Release' ]
image: ''
compiler: ''
compilerVersions: ["default"] # if default value, simply uses whatever version is on the machine.
# the text of this default value doesn't actually matter.
setupfile: ''
extraCmakeArgs: ''
jobs:
- ${{ each compilerVersion in parameters.compilerVersions }}:
- ${{ each CXXVersion in parameters.CXXVersions }}:
- ${{ each buildType in parameters.buildTypes }}:
- job:
displayName: ${{ format('{0} {1} C++{2} {3}', parameters.compiler, compilerVersion, CXXVersion, buildType) }}
pool:
vmImage: ${{ parameters.image }}
continueOnError: false
steps:
- ${{ if not(eq(parameters.setupfile, '')) }}:
- template: ${{ parameters.setupfile }}
parameters:
version: ${{ compilerVersion }}
- task: CMake@1
name: Configure
inputs:
workingDirectory: build
cmakeArgs: '-DGSL_CXX_STANDARD=${{ CXXVersion }} -DCMAKE_BUILD_TYPE=${{ buildType }} -DCI_TESTING:BOOL=ON -DCMAKE_VERBOSE_MAKEFILE:BOOL=ON -Werror=dev ${{ parameters.extraCmakeArgs }} .. '
- task: CMake@1
name: Build
inputs:
workingDirectory: build
cmakeArgs: '--build . '
- script: ctest . --output-on-failure --no-compress-output
name: CTest
workingDirectory: build
failOnStderr: true
-9
View File
@@ -1,9 +0,0 @@
parameters:
version: 0
steps:
- script: |
if [ "${{ parameters.version }}" != "default" ]; then sudo xcode-select -switch /Applications/Xcode_${{ parameters.version }}.app; fi
displayName: "Setup Xcode Version"
failOnStderr: true
-13
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@@ -1,13 +0,0 @@
parameters:
version: 0
steps:
- script: |
echo "##vso[task.setvariable variable=CXX;]${CXX}"
echo "##vso[task.setvariable variable=CC;]${CC}"
displayName: "Setup Clang Version"
failOnStderr: true
env:
CC: clang-${{ parameters.version }}
CXX: clang++-${{ parameters.version }}
-14
View File
@@ -1,14 +0,0 @@
parameters:
version: 0
steps:
- script: |
echo "##vso[task.setvariable variable=CXX;]${CXX}"
echo "##vso[task.setvariable variable=CC;]${CC}"
if [ "${{ parameters.version }}" = "11" ]; then sudo apt-get install $CXX; fi
displayName: "Setup GCC Version"
failOnStderr: true
env:
CC: gcc-${{ parameters.version }}
CXX: g++-${{ parameters.version }}
View File
+49 -53
View File
@@ -1,27 +1,13 @@
cmake_minimum_required(VERSION 3.0.2)
project(GSLTests CXX)
enable_testing() # again, for support standalone testing
include(FindPkgConfig)
include(ExternalProject)
# will make visual studio generated project group files
set_property(GLOBAL PROPERTY USE_FOLDERS ON)
if(CI_TESTING AND GSL_CXX_STANDARD EQUAL 20)
add_compile_definitions(FORCE_STD_SPAN_TESTS=1)
endif()
if(IOS)
add_compile_definitions(GTEST_HAS_DEATH_TEST=1 IOS_PROCESS_DELAY_WORKAROUND=1)
endif()
pkg_search_module(GTestMain gtest_main)
if (NOT GTestMain_FOUND)
# No pre-installed GTest is available, try to download it using Git.
find_package(Git REQUIRED QUIET)
configure_file(CMakeLists.txt.in googletest-download/CMakeLists.txt)
execute_process(
COMMAND ${CMAKE_COMMAND} -G "${CMAKE_GENERATOR}" .
@@ -51,14 +37,7 @@ if (NOT GTestMain_FOUND)
)
endif()
if (CMAKE_CURRENT_SOURCE_DIR STREQUAL CMAKE_SOURCE_DIR)
# CMake has been started independently in this directory with tests. Do
# import the globally installed Guidelines Support Library and test it
# instead of the current version from the include/ folder.
find_package(Microsoft.GSL REQUIRED)
endif()
if (MSVC AND (GSL_CXX_STANDARD GREATER_EQUAL 17))
if (MSVC AND (GSL_CXX_STANDARD EQUAL 17))
set(GSL_CPLUSPLUS_OPT -Zc:__cplusplus -permissive-)
endif()
@@ -139,11 +118,6 @@ else()
$<$<AND:$<VERSION_GREATER:$<CXX_COMPILER_VERSION>,4.99>,$<VERSION_LESS:$<CXX_COMPILER_VERSION>,6>>:
$<$<EQUAL:${GSL_CXX_STANDARD},17>:-Wno-undefined-func-template>
>
$<$<AND:$<EQUAL:${GSL_CXX_STANDARD},20>,$<OR:$<CXX_COMPILER_VERSION:11.0.0>,$<CXX_COMPILER_VERSION:10.0.0>>>:
-Wno-zero-as-null-pointer-constant # failing Clang Ubuntu 20.04 tests, seems to be a bug with clang 10.0.0
# and clang 11.0.0. (operator< is being re-written by the compiler
# as operator<=> and raising the warning)
>
>
$<$<CXX_COMPILER_ID:AppleClang>:
$<$<AND:$<VERSION_GREATER:$<CXX_COMPILER_VERSION>,9.1>,$<VERSION_LESS:$<CXX_COMPILER_VERSION>,10>>:
@@ -173,27 +147,39 @@ target_include_directories(gsl_tests_config SYSTEM INTERFACE
googletest/googletest/include
)
add_executable(gsl_tests
algorithm_tests.cpp
assertion_tests.cpp
at_tests.cpp
byte_tests.cpp
notnull_tests.cpp
owner_tests.cpp
span_compatibility_tests.cpp
span_ext_tests.cpp
span_tests.cpp
strict_notnull_tests.cpp
string_span_tests.cpp
utils_tests.cpp
)
set_property(TARGET PROPERTY FOLDER "GSL_tests")
function(add_gsl_test name)
add_executable(${name} ${name}.cpp)
target_link_libraries(${name}
GSL
gsl_tests_config
${GTestMain_LIBRARIES}
)
add_test(
${name}
${name}
)
# group all tests under GSL_tests
set_property(TARGET ${name} PROPERTY FOLDER "GSL_tests")
endfunction()
add_gsl_test(span_tests)
add_gsl_test(span_ext_tests)
add_gsl_test(span_compatibility_tests)
add_gsl_test(multi_span_tests)
add_gsl_test(strided_span_tests)
add_gsl_test(string_span_tests)
add_gsl_test(at_tests)
add_gsl_test(bounds_tests)
add_gsl_test(notnull_tests)
add_gsl_test(assertion_tests)
add_gsl_test(utils_tests)
add_gsl_test(owner_tests)
add_gsl_test(byte_tests)
add_gsl_test(algorithm_tests)
add_gsl_test(strict_notnull_tests)
target_link_libraries(gsl_tests
Microsoft.GSL::GSL
gsl_tests_config
${GTestMain_LIBRARIES}
)
add_test(gsl_tests gsl_tests)
# No exception tests
@@ -268,9 +254,19 @@ else()
)
endif(MSVC)
add_executable(gsl_noexcept_tests no_exception_ensure_tests.cpp)
target_link_libraries(gsl_noexcept_tests
Microsoft.GSL::GSL
gsl_tests_config_noexcept
)
add_test(gsl_noexcept_tests gsl_noexcept_tests)
function(add_gsl_test_noexcept name)
add_executable(${name} ${name}.cpp)
target_link_libraries(${name}
GSL
gsl_tests_config_noexcept
${GTestMain_LIBRARIES}
)
add_test(
${name}
${name}
)
# group all tests under GSL_tests_noexcept
set_property(TARGET ${name} PROPERTY FOLDER "GSL_tests_noexcept")
endfunction()
add_gsl_test_noexcept(no_exception_ensure_tests)
+1 -1
View File
@@ -4,7 +4,7 @@ project(googletest-download NONE)
include(ExternalProject)
ExternalProject_Add(googletest
GIT_REPOSITORY https://github.com/google/googletest.git
GIT_TAG 1b18723e874b256c1e39378c6774a90701d70f7a
GIT_TAG 703bd9caab50b139428cea1aaff9974ebee5742e
SOURCE_DIR "${CMAKE_CURRENT_BINARY_DIR}/googletest-src"
BINARY_DIR "${CMAKE_CURRENT_BINARY_DIR}/googletest-build"
CONFIGURE_COMMAND ""
+15 -12
View File
@@ -14,19 +14,23 @@
//
///////////////////////////////////////////////////////////////////////////////
#include <array> // for array
#include <cstddef> // for size_t
#include <gsl/algorithm> // for copy
#include <gsl/span> // for span
#include <gtest/gtest.h>
#include <gsl/gsl_algorithm> // for copy
#include <gsl/span> // for span
#include <array> // for array
#include <cstddef> // for size_t
#include "deathTestCommon.h"
namespace
{
static constexpr char deathstring[] = "Expected Death";
}
namespace gsl
{
struct fail_fast;
} // namespace gsl
using namespace std;
using namespace gsl;
TEST(algorithm_tests, same_type)
@@ -72,8 +76,8 @@ TEST(algorithm_tests, same_type)
std::array<int, 5> src{1, 2, 3, 4, 5};
std::array<int, 10> dst{};
const gsl::span<int> src_span(src);
const gsl::span<int, 10> dst_span(dst);
const span<int> src_span(src);
const span<int, 10> dst_span(dst);
copy(src_span, dst_span);
copy(src_span, dst_span.subspan(src_span.size()));
@@ -200,11 +204,10 @@ TEST(algorithm_tests, incompatible_type)
TEST(algorithm_tests, small_destination_span)
{
const auto terminateHandler = std::set_terminate([] {
std::set_terminate([] {
std::cerr << "Expected Death. small_destination_span";
std::abort();
});
const auto expected = GetExpectedDeathString(terminateHandler);
std::array<int, 12> src{1, 2, 3, 4};
std::array<int, 4> dst{};
@@ -214,9 +217,9 @@ TEST(algorithm_tests, small_destination_span)
const span<int> dst_span_dyn(dst);
const span<int, 4> dst_span_static(dst);
EXPECT_DEATH(copy(src_span_dyn, dst_span_dyn), expected);
EXPECT_DEATH(copy(src_span_dyn, dst_span_static), expected);
EXPECT_DEATH(copy(src_span_static, dst_span_dyn), expected);
EXPECT_DEATH(copy(src_span_dyn, dst_span_dyn), deathstring);
EXPECT_DEATH(copy(src_span_dyn, dst_span_static), deathstring);
EXPECT_DEATH(copy(src_span_static, dst_span_dyn), deathstring);
#ifdef CONFIRM_COMPILATION_ERRORS
copy(src_span_static, dst_span_static);
+7 -6
View File
@@ -14,14 +14,14 @@
//
///////////////////////////////////////////////////////////////////////////////
#include "deathTestCommon.h"
#include <gsl/assert> // for fail_fast (ptr only), Ensures, Expects
#include <gtest/gtest.h>
#include <gsl/gsl_assert> // for fail_fast (ptr only), Ensures, Expects
using namespace gsl;
namespace
{
static constexpr char deathstring[] = "Expected Death";
int f(int i)
{
@@ -39,22 +39,23 @@ int g(int i)
TEST(assertion_tests, expects)
{
const auto terminateHandler = std::set_terminate([] {
std::set_terminate([] {
std::cerr << "Expected Death. expects";
std::abort();
});
EXPECT_TRUE(f(2) == 2);
EXPECT_DEATH(f(10), GetExpectedDeathString(terminateHandler));
EXPECT_DEATH(f(10), deathstring);
}
TEST(assertion_tests, ensures)
{
const auto terminateHandler = std::set_terminate([] {
std::set_terminate([] {
std::cerr << "Expected Death. ensures";
std::abort();
});
EXPECT_TRUE(g(2) == 3);
EXPECT_DEATH(g(9), GetExpectedDeathString(terminateHandler));
EXPECT_DEATH(g(9), deathstring);
}
+30 -67
View File
@@ -16,39 +16,37 @@
#include <gtest/gtest.h>
#include <gsl/util> // for at
#include <gsl/gsl_util> // for at
#include <array> // for array
#include <cstddef> // for size_t
#include <initializer_list> // for initializer_list
#include <vector> // for vector
#if defined(__cplusplus) && __cplusplus >= 202002L
#include <span>
#endif // __cplusplus >= 202002L
#include "deathTestCommon.h"
namespace
{
static constexpr char deathstring[] = "Expected Death";
}
TEST(at_tests, static_array)
{
int a[4] = {1, 2, 3, 4};
const int(&c_a)[4] = a;
for (int i = 0; i < 4; ++i)
{
for (int i = 0; i < 4; ++i) {
EXPECT_TRUE(&gsl::at(a, i) == &a[i]);
EXPECT_TRUE(&gsl::at(c_a, i) == &a[i]);
}
const auto terminateHandler = std::set_terminate([] {
std::set_terminate([] {
std::cerr << "Expected Death. static_array";
std::abort();
});
const auto expected = GetExpectedDeathString(terminateHandler);
EXPECT_DEATH(gsl::at(a, -1), expected);
EXPECT_DEATH(gsl::at(a, 4), expected);
EXPECT_DEATH(gsl::at(c_a, -1), expected);
EXPECT_DEATH(gsl::at(c_a, 4), expected);
EXPECT_DEATH(gsl::at(a, -1), deathstring);
EXPECT_DEATH(gsl::at(a, 4), deathstring);
EXPECT_DEATH(gsl::at(c_a, -1), deathstring);
EXPECT_DEATH(gsl::at(c_a, 4), deathstring);
}
TEST(at_tests, std_array)
@@ -56,22 +54,20 @@ TEST(at_tests, std_array)
std::array<int, 4> a = {1, 2, 3, 4};
const std::array<int, 4>& c_a = a;
for (int i = 0; i < 4; ++i)
{
for (int i = 0; i < 4; ++i) {
EXPECT_TRUE(&gsl::at(a, i) == &a[static_cast<std::size_t>(i)]);
EXPECT_TRUE(&gsl::at(c_a, i) == &a[static_cast<std::size_t>(i)]);
}
const auto terminateHandler = std::set_terminate([] {
std::set_terminate([] {
std::cerr << "Expected Death. std_array";
std::abort();
});
const auto expected = GetExpectedDeathString(terminateHandler);
EXPECT_DEATH(gsl::at(a, -1), expected);
EXPECT_DEATH(gsl::at(a, 4), expected);
EXPECT_DEATH(gsl::at(c_a, -1), expected);
EXPECT_DEATH(gsl::at(c_a, 4), expected);
EXPECT_DEATH(gsl::at(a, -1), deathstring);
EXPECT_DEATH(gsl::at(a, 4), deathstring);
EXPECT_DEATH(gsl::at(c_a, -1), deathstring);
EXPECT_DEATH(gsl::at(c_a, 4), deathstring);
}
TEST(at_tests, std_vector)
@@ -79,74 +75,42 @@ TEST(at_tests, std_vector)
std::vector<int> a = {1, 2, 3, 4};
const std::vector<int>& c_a = a;
for (int i = 0; i < 4; ++i)
{
for (int i = 0; i < 4; ++i) {
EXPECT_TRUE(&gsl::at(a, i) == &a[static_cast<std::size_t>(i)]);
EXPECT_TRUE(&gsl::at(c_a, i) == &a[static_cast<std::size_t>(i)]);
}
const auto terminateHandler = std::set_terminate([] {
std::set_terminate([] {
std::cerr << "Expected Death. std_vector";
std::abort();
});
const auto expected = GetExpectedDeathString(terminateHandler);
EXPECT_DEATH(gsl::at(a, -1), expected);
EXPECT_DEATH(gsl::at(a, 4), expected);
EXPECT_DEATH(gsl::at(c_a, -1), expected);
EXPECT_DEATH(gsl::at(c_a, 4), expected);
EXPECT_DEATH(gsl::at(a, -1), deathstring);
EXPECT_DEATH(gsl::at(a, 4), deathstring);
EXPECT_DEATH(gsl::at(c_a, -1), deathstring);
EXPECT_DEATH(gsl::at(c_a, 4), deathstring);
}
TEST(at_tests, InitializerList)
{
const std::initializer_list<int> a = {1, 2, 3, 4};
for (int i = 0; i < 4; ++i)
{
for (int i = 0; i < 4; ++i) {
EXPECT_TRUE(gsl::at(a, i) == i + 1);
EXPECT_TRUE(gsl::at({1, 2, 3, 4}, i) == i + 1);
}
const auto terminateHandler = std::set_terminate([] {
std::set_terminate([] {
std::cerr << "Expected Death. InitializerList";
std::abort();
});
const auto expected = GetExpectedDeathString(terminateHandler);
EXPECT_DEATH(gsl::at(a, -1), expected);
EXPECT_DEATH(gsl::at(a, 4), expected);
EXPECT_DEATH(gsl::at({1, 2, 3, 4}, -1), expected);
EXPECT_DEATH(gsl::at({1, 2, 3, 4}, 4), expected);
EXPECT_DEATH(gsl::at(a, -1), deathstring);
EXPECT_DEATH(gsl::at(a, 4), deathstring);
EXPECT_DEATH(gsl::at({1, 2, 3, 4}, -1), deathstring);
EXPECT_DEATH(gsl::at({1, 2, 3, 4}, 4), deathstring);
}
#if defined(FORCE_STD_SPAN_TESTS) || defined(__cpp_lib_span) && __cpp_lib_span >= 202002L
TEST(at_tests, std_span)
{
std::vector<int> vec{1, 2, 3, 4, 5};
std::span sp{vec};
std::vector<int> cvec{1, 2, 3, 4, 5};
std::span csp{cvec};
for (gsl::index i = 0; i < gsl::narrow_cast<gsl::index>(vec.size()); ++i)
{
EXPECT_TRUE(&gsl::at(sp, i) == &vec[gsl::narrow_cast<size_t>(i)]);
EXPECT_TRUE(&gsl::at(csp, i) == &cvec[gsl::narrow_cast<size_t>(i)]);
}
const auto terminateHandler = std::set_terminate([] {
std::cerr << "Expected Death. std_span";
std::abort();
});
const auto expected = GetExpectedDeathString(terminateHandler);
EXPECT_DEATH(gsl::at(sp, -1), expected);
EXPECT_DEATH(gsl::at(sp, gsl::narrow_cast<gsl::index>(sp.size())), expected);
EXPECT_DEATH(gsl::at(csp, -1), expected);
EXPECT_DEATH(gsl::at(csp, gsl::narrow_cast<gsl::index>(sp.size())), expected);
}
#endif // defined(FORCE_STD_SPAN_TESTS) || defined(__cpp_lib_span) && __cpp_lib_span >= 202002L
#if !defined(_MSC_VER) || defined(__clang__) || _MSC_VER >= 1910
static constexpr bool test_constexpr()
{
@@ -155,8 +119,7 @@ static constexpr bool test_constexpr()
std::array<int, 4> a2 = {1, 2, 3, 4};
const std::array<int, 4>& c_a2 = a2;
for (int i = 0; i < 4; ++i)
{
for (int i = 0; i < 4; ++i) {
if (&gsl::at(a1, i) != &a1[i]) return false;
if (&gsl::at(c_a1, i) != &a1[i]) return false;
// requires C++17:
+102
View File
@@ -0,0 +1,102 @@
///////////////////////////////////////////////////////////////////////////////
//
// Copyright (c) 2015 Microsoft Corporation. All rights reserved.
//
// This code is licensed under the MIT License (MIT).
//
// THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
// IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
// FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
// AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
// LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
// OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
// THE SOFTWARE.
//
///////////////////////////////////////////////////////////////////////////////
#include <gtest/gtest.h>
#include <gsl/multi_span> // for static_bounds, static_bounds_dynamic_range_t
#include <cstddef> // for ptrdiff_t, size_t
using namespace std;
using namespace gsl;
namespace
{
void use(std::ptrdiff_t&) {}
}
TEST(bounds_tests, basic_bounds)
{
for (auto point : static_bounds<dynamic_range, 3, 4>{2}) {
for (decltype(point)::size_type j = 0;
j < static_cast<decltype(point)::size_type>(decltype(point)::rank); j++)
{
use(j);
use(point[static_cast<std::size_t>(j)]);
}
}
}
TEST(bounds_tests, bounds_basic)
{
static_bounds<3, 4, 5> b;
const auto a = b.slice();
(void) a;
static_bounds<4, dynamic_range, 2> x{4};
x.slice().slice();
}
TEST(bounds_tests, arrayview_iterator)
{
static_bounds<4, dynamic_range, 2> bounds{3};
const auto itr = bounds.begin();
(void) itr;
#ifdef CONFIRM_COMPILATION_ERRORS
multi_span<int, 4, dynamic_range, 2> av(nullptr, bounds);
auto itr2 = av.cbegin();
for (auto& v : av) {
v = 4;
}
fill(av.begin(), av.end(), 0);
#endif
}
TEST(bounds_tests, bounds_convertible)
{
static_bounds<7, 4, 2> b1;
static_bounds<7, dynamic_range, 2> b2 = b1;
(void) b2;
#ifdef CONFIRM_COMPILATION_ERRORS
static_bounds<7, dynamic_range, 1> b4 = b2;
#endif
static_bounds<dynamic_range, dynamic_range, dynamic_range> b3 = b1;
static_bounds<7, 4, 2> b4 = b3;
(void) b4;
static_bounds<dynamic_range> b5;
static_bounds<34> b6;
std::set_terminate([] {
std::cerr << "Expected Death. bounds_convertible";
std::abort();
});
b5 = static_bounds<20>();
EXPECT_DEATH(b6 = b5, ".*");
b5 = static_bounds<34>();
b6 = b5;
EXPECT_TRUE(b5 == b6);
EXPECT_TRUE(b5.size() == b6.size());
}
#ifdef CONFIRM_COMPILATION_ERRORS
copy(src_span_static, dst_span_static);
#endif
+3 -5
View File
@@ -16,7 +16,7 @@
#include <gtest/gtest.h>
#include <gsl/byte> // for to_byte, to_integer, byte, operator&, ope...
#include <gsl/gsl_byte> // for to_byte, to_integer, byte, operator&, ope...
using namespace std;
using namespace gsl;
@@ -37,9 +37,7 @@ TEST(byte_tests, construction)
EXPECT_TRUE(static_cast<unsigned char>(b) == 4);
}
// clang-format off
GSL_SUPPRESS(es.49)
// clang-format on
{
const byte b = byte(12);
EXPECT_TRUE(static_cast<unsigned char>(b) == 12);
@@ -57,7 +55,7 @@ TEST(byte_tests, construction)
#if defined(__cplusplus) && (__cplusplus >= 201703L)
{
const byte b{14};
const byte b { 14 };
EXPECT_TRUE(static_cast<unsigned char>(b) == 14);
}
#endif
@@ -124,7 +122,7 @@ TEST(byte_tests, aliasing)
EXPECT_TRUE(res == i);
}
} // namespace
}
#ifdef CONFIRM_COMPILATION_ERRORS
copy(src_span_static, dst_span_static);
-11
View File
@@ -1,11 +0,0 @@
#pragma once
#include <gsl/assert>
constexpr char deathstring[] = "Expected Death";
constexpr char failed_set_terminate_deathstring[] = ".*";
// This prevents a failed call to set_terminate from failing the test suite.
constexpr const char* GetExpectedDeathString(std::terminate_handler handle)
{
return handle ? deathstring : failed_set_terminate_deathstring;
}
File diff suppressed because it is too large Load Diff
-7
View File
@@ -14,11 +14,8 @@
//
///////////////////////////////////////////////////////////////////////////////
#include <chrono>
#include <cstdlib> // for std::exit
#include <gsl/span> // for span
#include <iostream>
#include <thread>
int operator_subscript_no_throw() noexcept
{
@@ -45,10 +42,6 @@ void setup_termination_handler() noexcept
int main() noexcept
{
std::cout << "Running main() from " __FILE__ "\n";
#if defined(IOS_PROCESS_DELAY_WORKAROUND)
std::this_thread::sleep_for(std::chrono::seconds(1));
#endif
setup_termination_handler();
operator_subscript_no_throw();
return -1;
+26 -61
View File
@@ -25,9 +25,13 @@
#include <string> // for basic_string, operator==, string, operator<<
#include <typeinfo> // for type_info
#include "deathTestCommon.h"
using namespace gsl;
namespace
{
static constexpr char deathstring[] = "Expected Death";
} //namespace
struct MyBase
{
};
@@ -60,9 +64,7 @@ struct CustomPtr
template <typename T, typename U>
std::string operator==(CustomPtr<T> const& lhs, CustomPtr<U> const& rhs)
{
// clang-format off
GSL_SUPPRESS(type.1) // NO-FORMAT: attribute
// clang-format on
return reinterpret_cast<const void*>(lhs.p_) == reinterpret_cast<const void*>(rhs.p_) ? "true"
: "false";
}
@@ -70,9 +72,7 @@ std::string operator==(CustomPtr<T> const& lhs, CustomPtr<U> const& rhs)
template <typename T, typename U>
std::string operator!=(CustomPtr<T> const& lhs, CustomPtr<U> const& rhs)
{
// clang-format off
GSL_SUPPRESS(type.1) // NO-FORMAT: attribute
// clang-format on
return reinterpret_cast<const void*>(lhs.p_) != reinterpret_cast<const void*>(rhs.p_) ? "true"
: "false";
}
@@ -80,9 +80,7 @@ std::string operator!=(CustomPtr<T> const& lhs, CustomPtr<U> const& rhs)
template <typename T, typename U>
std::string operator<(CustomPtr<T> const& lhs, CustomPtr<U> const& rhs)
{
// clang-format off
GSL_SUPPRESS(type.1) // NO-FORMAT: attribute
// clang-format on
return reinterpret_cast<const void*>(lhs.p_) < reinterpret_cast<const void*>(rhs.p_) ? "true"
: "false";
}
@@ -90,9 +88,7 @@ std::string operator<(CustomPtr<T> const& lhs, CustomPtr<U> const& rhs)
template <typename T, typename U>
std::string operator>(CustomPtr<T> const& lhs, CustomPtr<U> const& rhs)
{
// clang-format off
GSL_SUPPRESS(type.1) // NO-FORMAT: attribute
// clang-format on
return reinterpret_cast<const void*>(lhs.p_) > reinterpret_cast<const void*>(rhs.p_) ? "true"
: "false";
}
@@ -100,9 +96,7 @@ std::string operator>(CustomPtr<T> const& lhs, CustomPtr<U> const& rhs)
template <typename T, typename U>
std::string operator<=(CustomPtr<T> const& lhs, CustomPtr<U> const& rhs)
{
// clang-format off
GSL_SUPPRESS(type.1) // NO-FORMAT: attribute
// clang-format on
return reinterpret_cast<const void*>(lhs.p_) <= reinterpret_cast<const void*>(rhs.p_) ? "true"
: "false";
}
@@ -110,9 +104,7 @@ std::string operator<=(CustomPtr<T> const& lhs, CustomPtr<U> const& rhs)
template <typename T, typename U>
std::string operator>=(CustomPtr<T> const& lhs, CustomPtr<U> const& rhs)
{
// clang-format off
GSL_SUPPRESS(type.1) // NO-FORMAT: attribute
// clang-format on
return reinterpret_cast<const void*>(lhs.p_) >= reinterpret_cast<const void*>(rhs.p_) ? "true"
: "false";
}
@@ -126,19 +118,12 @@ struct NonCopyableNonMovable
NonCopyableNonMovable& operator=(NonCopyableNonMovable&&) = delete;
};
namespace
{
// clang-format off
GSL_SUPPRESS(f .4) // NO-FORMAT: attribute
// clang-format on
GSL_SUPPRESS(f.4) // NO-FORMAT: attribute
bool helper(not_null<int*> p) { return *p == 12; }
// clang-format off
GSL_SUPPRESS(f .4) // NO-FORMAT: attribute
// clang-format on
GSL_SUPPRESS(f.4) // NO-FORMAT: attribute
bool helper_const(not_null<const int*> p) { return *p == 12; }
int* return_pointer() { return nullptr; }
} // namespace
TEST(notnull_tests, TestNotNullConstructors)
{
@@ -157,12 +142,10 @@ TEST(notnull_tests, TestNotNullConstructors)
#endif
}
const auto terminateHandler = std::set_terminate([] {
std::set_terminate([] {
std::cerr << "Expected Death. TestNotNullConstructors";
std::abort();
});
const auto expected = GetExpectedDeathString(terminateHandler);
{
// from shared pointer
int i = 12;
@@ -174,7 +157,7 @@ TEST(notnull_tests, TestNotNullConstructors)
std::make_shared<int>(10)); // shared_ptr<int> is nullptr assignable
int* pi = nullptr;
EXPECT_DEATH((not_null<decltype(pi)>(pi)), expected);
EXPECT_DEATH((not_null<decltype(pi)>(pi)), deathstring);
}
{
@@ -231,8 +214,8 @@ TEST(notnull_tests, TestNotNullConstructors)
{
// from returned pointer
EXPECT_DEATH(helper(return_pointer()), expected);
EXPECT_DEATH(helper_const(return_pointer()), expected);
EXPECT_DEATH(helper(return_pointer()), deathstring);
EXPECT_DEATH(helper_const(return_pointer()), deathstring);
}
}
@@ -292,18 +275,17 @@ TEST(notnull_tests, TestNotNullCasting)
TEST(notnull_tests, TestNotNullAssignment)
{
const auto terminateHandler = std::set_terminate([] {
std::set_terminate([] {
std::cerr << "Expected Death. TestNotNullAssignmentd";
std::abort();
});
const auto expected = GetExpectedDeathString(terminateHandler);
int i = 12;
not_null<int*> p(&i);
EXPECT_TRUE(helper(p));
int* q = nullptr;
EXPECT_DEATH(p = not_null<int*>(q), expected);
EXPECT_DEATH(p = not_null<int*>(q), deathstring);
}
TEST(notnull_tests, TestNotNullRawPointerComparison)
@@ -452,18 +434,17 @@ TEST(notnull_tests, TestNotNullConstructorTypeDeduction)
EXPECT_TRUE(*x == 42);
}
const auto terminateHandler = std::set_terminate([] {
std::set_terminate([] {
std::cerr << "Expected Death. TestNotNullConstructorTypeDeduction";
std::abort();
});
const auto expected = GetExpectedDeathString(terminateHandler);
{
auto workaround_macro = []() {
int* p1 = nullptr;
const not_null x{p1};
};
EXPECT_DEATH(workaround_macro(), expected);
EXPECT_DEATH(workaround_macro(), deathstring);
}
{
@@ -471,14 +452,14 @@ TEST(notnull_tests, TestNotNullConstructorTypeDeduction)
const int* p1 = nullptr;
const not_null x{p1};
};
EXPECT_DEATH(workaround_macro(), expected);
EXPECT_DEATH(workaround_macro(), deathstring);
}
{
int* p = nullptr;
EXPECT_DEATH(helper(not_null{p}), expected);
EXPECT_DEATH(helper_const(not_null{p}), expected);
EXPECT_DEATH(helper(not_null{p}), deathstring);
EXPECT_DEATH(helper_const(not_null{p}), deathstring);
}
#ifdef CONFIRM_COMPILATION_ERRORS
@@ -514,11 +495,10 @@ TEST(notnull_tests, TestMakeNotNull)
EXPECT_TRUE(*x == 42);
}
const auto terminateHandler = std::set_terminate([] {
std::set_terminate([] {
std::cerr << "Expected Death. TestMakeNotNull";
std::abort();
});
const auto expected = GetExpectedDeathString(terminateHandler);
{
const auto workaround_macro = []() {
@@ -526,7 +506,7 @@ TEST(notnull_tests, TestMakeNotNull)
const auto x = make_not_null(p1);
EXPECT_TRUE(*x == 42);
};
EXPECT_DEATH(workaround_macro(), expected);
EXPECT_DEATH(workaround_macro(), deathstring);
}
{
@@ -535,36 +515,21 @@ TEST(notnull_tests, TestMakeNotNull)
const auto x = make_not_null(p1);
EXPECT_TRUE(*x == 42);
};
EXPECT_DEATH(workaround_macro(), expected);
EXPECT_DEATH(workaround_macro(), deathstring);
}
{
int* p = nullptr;
EXPECT_DEATH(helper(make_not_null(p)), expected);
EXPECT_DEATH(helper_const(make_not_null(p)), expected);
EXPECT_DEATH(helper(make_not_null(p)), deathstring);
EXPECT_DEATH(helper_const(make_not_null(p)), deathstring);
}
#ifdef CONFIRM_COMPILATION_ERRORS
{
EXPECT_DEATH(make_not_null(nullptr), expected);
EXPECT_DEATH(helper(make_not_null(nullptr)), expected);
EXPECT_DEATH(helper_const(make_not_null(nullptr)), expected);
EXPECT_DEATH(make_not_null(nullptr), deathstring);
EXPECT_DEATH(helper(make_not_null(nullptr)), deathstring);
EXPECT_DEATH(helper_const(make_not_null(nullptr)), deathstring);
}
#endif
}
TEST(notnull_tests, TestStdHash)
{
int x = 42;
int y = 99;
not_null<int*> nn{&x};
const not_null<int*> cnn{&x};
std::hash<not_null<int*>> hash_nn;
std::hash<int*> hash_intptr;
EXPECT_TRUE(hash_nn(nn) == hash_intptr(&x));
EXPECT_FALSE(hash_nn(nn) == hash_intptr(&y));
EXPECT_FALSE(hash_nn(nn) == hash_intptr(nullptr));
}
+3 -3
View File
@@ -20,7 +20,7 @@
using namespace gsl;
GSL_SUPPRESS(f .23) // NO-FORMAT: attribute
GSL_SUPPRESS(f.23) // NO-FORMAT: attribute
void f(int* i) { *i += 1; }
TEST(owner_tests, basic_test)
@@ -34,10 +34,10 @@ TEST(owner_tests, basic_test)
TEST(owner_tests, check_pointer_constraint)
{
#ifdef CONFIRM_COMPILATION_ERRORS
#ifdef CONFIRM_COMPILATION_ERRORS
{
owner<int> integerTest = 10;
owner<std::shared_ptr<int>> sharedPtrTest(new int(10));
}
#endif
#endif
}
+5 -5
View File
@@ -16,8 +16,8 @@
#include <gtest/gtest.h>
#include <gsl/byte> // for byte
#include <gsl/span> // for span, span_iterator, operator==, operator!=
#include <gsl/gsl_byte> // for byte
#include <gsl/span> // for span, span_iterator, operator==, operator!=
#include <array> // for array
#include <cstddef> // for ptrdiff_t
@@ -55,14 +55,14 @@ void ArrayConvertibilityCheck()
EXPECT_TRUE(sp_const_nullptr_1.data() == stl_nullptr.data());
EXPECT_TRUE(sp_const_nullptr_1.size() == 3);
gsl::span<const T* const> sp_const_nullptr_2{std::as_const(stl_nullptr)};
span<const T* const> sp_const_nullptr_2{std::as_const(stl_nullptr)};
EXPECT_TRUE(sp_const_nullptr_2.data() == stl_nullptr.data());
EXPECT_TRUE(sp_const_nullptr_2.size() == 3);
static_assert(std::is_same<decltype(gsl::span{stl_nullptr}), gsl::span<T*, 3>>::value,
static_assert(std::is_same<decltype(span{stl_nullptr}), span<T*, 3>>::value,
"std::is_same< decltype(span{stl_nullptr}), span<T*, 3>>::value");
static_assert(
std::is_same<decltype(gsl::span{std::as_const(stl_nullptr)}), gsl::span<T* const, 3>>::value,
std::is_same<decltype(span{std::as_const(stl_nullptr)}), span<T* const, 3>>::value,
"std::is_same< decltype(span{std::as_const(stl_nullptr)}), span<T* const, "
"3>>::value");
}
+238 -239
View File
@@ -16,26 +16,27 @@
#include <gtest/gtest.h>
#include <gsl/span> // for span and span_ext
#include <gsl/util> // for narrow_cast, at
#include <gsl/gsl_util> // for narrow_cast, at
#include <gsl/span_ext> // for operator==, operator!=, make_span
#include <array> // for array
#include <iostream> // for cerr
#include <vector> // for vector
#include <array> // for array
#include <iostream> // for cerr
#include <vector> // for vector
using namespace std;
using namespace gsl;
#include "deathTestCommon.h"
namespace
{
static constexpr char deathstring[] = "Expected Death";
} // namespace
TEST(span_ext_test, make_span_from_pointer_length_constructor)
{
const auto terminateHandler = std::set_terminate([] {
std::set_terminate([] {
std::cerr << "Expected Death. from_pointer_length_constructor";
std::abort();
});
const auto expected = GetExpectedDeathString(terminateHandler);
int arr[4] = {1, 2, 3, 4};
{
@@ -48,7 +49,7 @@ TEST(span_ext_test, make_span_from_pointer_length_constructor)
{
int* p = nullptr;
auto s = make_span(p, narrow_cast<gsl::span<int>::size_type>(0));
auto s = make_span(p, narrow_cast<span<int>::size_type>(0));
EXPECT_TRUE(s.size() == 0);
EXPECT_TRUE(s.data() == nullptr);
}
@@ -56,7 +57,7 @@ TEST(span_ext_test, make_span_from_pointer_length_constructor)
{
int* p = nullptr;
auto workaround_macro = [=]() { make_span(p, 2); };
EXPECT_DEATH(workaround_macro(), expected);
EXPECT_DEATH(workaround_macro(), deathstring);
}
}
@@ -87,275 +88,273 @@ TEST(span_ext_test, make_span_from_pointer_pointer_construction)
}
TEST(span_ext_test, make_span_from_array_constructor)
{
int arr[5] = {1, 2, 3, 4, 5};
int arr2d[2][3] = {1, 2, 3, 4, 5, 6};
int arr3d[2][3][2] = {1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12};
{
int arr[5] = {1, 2, 3, 4, 5};
int arr2d[2][3] = {1, 2, 3, 4, 5, 6};
int arr3d[2][3][2] = {1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12};
{
const auto s = make_span(arr);
EXPECT_TRUE(s.size() == 5);
EXPECT_TRUE(s.data() == std::addressof(arr[0]));
}
{
const auto s = make_span(arr);
EXPECT_TRUE(s.size() == 5);
EXPECT_TRUE(s.data() == std::addressof(arr[0]));
}
{
const auto s = make_span(std::addressof(arr2d[0]), 1);
EXPECT_TRUE(s.size() == 1);
EXPECT_TRUE(s.data() == std::addressof(arr2d[0]));
}
{
const auto s = make_span(std::addressof(arr2d[0]), 1);
EXPECT_TRUE(s.size() == 1);
EXPECT_TRUE(s.data() == std::addressof(arr2d[0]));
}
{
const auto s = make_span(std::addressof(arr3d[0]), 1);
EXPECT_TRUE(s.size() == 1);
EXPECT_TRUE(s.data() == std::addressof(arr3d[0]));
}
}
{
const auto s = make_span(std::addressof(arr3d[0]), 1);
EXPECT_TRUE(s.size() == 1);
EXPECT_TRUE(s.data() == std::addressof(arr3d[0]));
}
}
TEST(span_ext_test, make_span_from_dynamic_array_constructor)
{
double(*arr)[3][4] = new double[100][3][4];
TEST(span_ext_test, make_span_from_dynamic_array_constructor)
{
double(*arr)[3][4] = new double[100][3][4];
{
auto s = make_span(&arr[0][0][0], 10);
EXPECT_TRUE(s.size() == 10);
EXPECT_TRUE(s.data() == &arr[0][0][0]);
}
{
auto s = make_span(&arr[0][0][0], 10);
EXPECT_TRUE(s.size() == 10);
EXPECT_TRUE(s.data() == &arr[0][0][0]);
}
delete[] arr;
}
delete[] arr;
}
TEST(span_ext_test, make_span_from_std_array_constructor)
{
std::array<int, 4> arr = {1, 2, 3, 4};
TEST(span_ext_test, make_span_from_std_array_constructor)
{
std::array<int, 4> arr = {1, 2, 3, 4};
{
auto s = make_span(arr);
EXPECT_TRUE(s.size() == arr.size());
EXPECT_TRUE(s.data() == arr.data());
}
{
auto s = make_span(arr);
EXPECT_TRUE(s.size() == arr.size());
EXPECT_TRUE(s.data() == arr.data());
}
// This test checks for the bug found in gcc 6.1, 6.2, 6.3, 6.4, 6.5 7.1, 7.2, 7.3 - issue #590
{
gsl::span<int> s1 = make_span(arr);
// This test checks for the bug found in gcc 6.1, 6.2, 6.3, 6.4, 6.5 7.1, 7.2, 7.3 - issue #590
{
span<int> s1 = make_span(arr);
static gsl::span<int> s2;
s2 = s1;
static span<int> s2;
s2 = s1;
#if defined(__GNUC__) && __GNUC__ == 6 && (__GNUC_MINOR__ == 4 || __GNUC_MINOR__ == 5) && \
__GNUC_PATCHLEVEL__ == 0 && defined(__OPTIMIZE__)
// Known to be broken in gcc 6.4 and 6.5 with optimizations
// Issue in gcc: https://gcc.gnu.org/bugzilla/show_bug.cgi?id=83116
EXPECT_TRUE(s1.size() == 4);
EXPECT_TRUE(s2.size() == 0);
#else
EXPECT_TRUE(s1.size() == s2.size());
#endif
}
}
#if defined(__GNUC__) && __GNUC__ == 6 && (__GNUC_MINOR__ == 4 || __GNUC_MINOR__ == 5) && \
__GNUC_PATCHLEVEL__ == 0 && defined(__OPTIMIZE__)
// Known to be broken in gcc 6.4 and 6.5 with optimizations
// Issue in gcc: https://gcc.gnu.org/bugzilla/show_bug.cgi?id=83116
EXPECT_TRUE(s1.size() == 4);
EXPECT_TRUE(s2.size() == 0);
#else
EXPECT_TRUE(s1.size() == s2.size());
#endif
}
}
TEST(span_ext_test, make_span_from_const_std_array_constructor)
{
const std::array<int, 4> arr = {1, 2, 3, 4};
TEST(span_ext_test, make_span_from_const_std_array_constructor)
{
const std::array<int, 4> arr = {1, 2, 3, 4};
{
auto s = make_span(arr);
EXPECT_TRUE(s.size() == arr.size());
EXPECT_TRUE(s.data() == arr.data());
}
}
{
auto s = make_span(arr);
EXPECT_TRUE(s.size() == arr.size());
EXPECT_TRUE(s.data() == arr.data());
}
}
TEST(span_ext_test, make_span_from_std_array_const_constructor)
{
std::array<const int, 4> arr = {1, 2, 3, 4};
TEST(span_ext_test, make_span_from_std_array_const_constructor)
{
std::array<const int, 4> arr = {1, 2, 3, 4};
{
auto s = make_span(arr);
EXPECT_TRUE(s.size() == arr.size());
EXPECT_TRUE(s.data() == arr.data());
}
}
{
auto s = make_span(arr);
EXPECT_TRUE(s.size() == arr.size());
EXPECT_TRUE(s.data() == arr.data());
}
}
TEST(span_ext_test, make_span_from_container_constructor)
{
std::vector<int> v = {1, 2, 3};
const std::vector<int> cv = v;
TEST(span_ext_test, make_span_from_container_constructor)
{
std::vector<int> v = {1, 2, 3};
const std::vector<int> cv = v;
{
auto s = make_span(v);
EXPECT_TRUE(s.size() == v.size());
EXPECT_TRUE(s.data() == v.data());
{
auto s = make_span(v);
EXPECT_TRUE(s.size() == v.size());
EXPECT_TRUE(s.data() == v.data());
auto cs = make_span(cv);
EXPECT_TRUE(cs.size() == cv.size());
EXPECT_TRUE(cs.data() == cv.data());
}
}
auto cs = make_span(cv);
EXPECT_TRUE(cs.size() == cv.size());
EXPECT_TRUE(cs.data() == cv.data());
}
}
TEST(span_test, interop_with_gsl_at)
{
int arr[5] = {1, 2, 3, 4, 5};
gsl::span<int> s{arr};
EXPECT_TRUE(at(s, 0) == 1);
EXPECT_TRUE(at(s, 1) == 2);
}
TEST(span_test, interop_with_gsl_at)
{
int arr[5] = {1, 2, 3, 4, 5};
span<int> s{arr};
EXPECT_TRUE(at(s, 0) == 1);
EXPECT_TRUE(at(s, 1) == 2);
}
TEST(span_ext_test, iterator_free_functions)
{
int a[] = {1, 2, 3, 4};
gsl::span<int> s{a};
TEST(span_ext_test, iterator_free_functions)
{
int a[] = {1, 2, 3, 4};
span<int> s{a};
EXPECT_TRUE((std::is_same<decltype(s.begin()), decltype(begin(s))>::value));
EXPECT_TRUE((std::is_same<decltype(s.end()), decltype(end(s))>::value));
EXPECT_TRUE((std::is_same<decltype(s.begin()), decltype(begin(s))>::value));
EXPECT_TRUE((std::is_same<decltype(s.end()), decltype(end(s))>::value));
EXPECT_TRUE((std::is_same<decltype(std::cbegin(s)), decltype(cbegin(s))>::value));
EXPECT_TRUE((std::is_same<decltype(std::cend(s)), decltype(cend(s))>::value));
EXPECT_TRUE((std::is_same<decltype(std::cbegin(s)), decltype(cbegin(s))>::value));
EXPECT_TRUE((std::is_same<decltype(std::cend(s)), decltype(cend(s))>::value));
EXPECT_TRUE((std::is_same<decltype(s.rbegin()), decltype(rbegin(s))>::value));
EXPECT_TRUE((std::is_same<decltype(s.rend()), decltype(rend(s))>::value));
EXPECT_TRUE((std::is_same<decltype(s.rbegin()), decltype(rbegin(s))>::value));
EXPECT_TRUE((std::is_same<decltype(s.rend()), decltype(rend(s))>::value));
EXPECT_TRUE((std::is_same<decltype(std::crbegin(s)), decltype(crbegin(s))>::value));
EXPECT_TRUE((std::is_same<decltype(std::crend(s)), decltype(crend(s))>::value));
EXPECT_TRUE((std::is_same<decltype(std::crbegin(s)), decltype(crbegin(s))>::value));
EXPECT_TRUE((std::is_same<decltype(std::crend(s)), decltype(crend(s))>::value));
EXPECT_TRUE(s.begin() == begin(s));
EXPECT_TRUE(s.end() == end(s));
EXPECT_TRUE(s.begin() == begin(s));
EXPECT_TRUE(s.end() == end(s));
EXPECT_TRUE(s.rbegin() == rbegin(s));
EXPECT_TRUE(s.rend() == rend(s));
EXPECT_TRUE(s.rbegin() == rbegin(s));
EXPECT_TRUE(s.rend() == rend(s));
EXPECT_TRUE(s.begin() == cbegin(s));
EXPECT_TRUE(s.end() == cend(s));
EXPECT_TRUE(s.begin() == cbegin(s));
EXPECT_TRUE(s.end() == cend(s));
EXPECT_TRUE(s.rbegin() == crbegin(s));
EXPECT_TRUE(s.rend() == crend(s));
}
EXPECT_TRUE(s.rbegin() == crbegin(s));
EXPECT_TRUE(s.rend() == crend(s));
}
TEST(span_ext_test, ssize_free_function)
{
int a[] = {1, 2, 3, 4};
gsl::span<int> s{a};
TEST(span_ext_test, ssize_free_function)
{
int a[] = {1, 2, 3, 4};
span<int> s{a};
EXPECT_FALSE((std::is_same<decltype(s.size()), decltype(ssize(s))>::value));
EXPECT_TRUE(s.size() == static_cast<std::size_t>(ssize(s)));
}
EXPECT_FALSE((std::is_same<decltype(s.size()), decltype(ssize(s))>::value));
EXPECT_TRUE(s.size() == static_cast<std::size_t>(ssize(s)));
}
#ifndef GSL_KERNEL_MODE
TEST(span_ext_test, comparison_operators)
{
{
gsl::span<int> s1;
gsl::span<int> s2;
EXPECT_TRUE(s1 == s2);
EXPECT_FALSE(s1 != s2);
EXPECT_FALSE(s1 < s2);
EXPECT_TRUE(s1 <= s2);
EXPECT_FALSE(s1 > s2);
EXPECT_TRUE(s1 >= s2);
EXPECT_TRUE(s2 == s1);
EXPECT_FALSE(s2 != s1);
EXPECT_FALSE(s2 != s1);
EXPECT_TRUE(s2 <= s1);
EXPECT_FALSE(s2 > s1);
EXPECT_TRUE(s2 >= s1);
}
TEST(span_ext_test, comparison_operators)
{
{
span<int> s1;
span<int> s2;
EXPECT_TRUE(s1 == s2);
EXPECT_FALSE(s1 != s2);
EXPECT_FALSE(s1 < s2);
EXPECT_TRUE(s1 <= s2);
EXPECT_FALSE(s1 > s2);
EXPECT_TRUE(s1 >= s2);
EXPECT_TRUE(s2 == s1);
EXPECT_FALSE(s2 != s1);
EXPECT_FALSE(s2 != s1);
EXPECT_TRUE(s2 <= s1);
EXPECT_FALSE(s2 > s1);
EXPECT_TRUE(s2 >= s1);
}
{
int arr[] = {2, 1};
gsl::span<int> s1 = arr;
gsl::span<int> s2 = arr;
{
int arr[] = {2, 1};
span<int> s1 = arr;
span<int> s2 = arr;
EXPECT_TRUE(s1 == s2);
EXPECT_FALSE(s1 != s2);
EXPECT_FALSE(s1 < s2);
EXPECT_TRUE(s1 <= s2);
EXPECT_FALSE(s1 > s2);
EXPECT_TRUE(s1 >= s2);
EXPECT_TRUE(s2 == s1);
EXPECT_FALSE(s2 != s1);
EXPECT_FALSE(s2 < s1);
EXPECT_TRUE(s2 <= s1);
EXPECT_FALSE(s2 > s1);
EXPECT_TRUE(s2 >= s1);
}
EXPECT_TRUE(s1 == s2);
EXPECT_FALSE(s1 != s2);
EXPECT_FALSE(s1 < s2);
EXPECT_TRUE(s1 <= s2);
EXPECT_FALSE(s1 > s2);
EXPECT_TRUE(s1 >= s2);
EXPECT_TRUE(s2 == s1);
EXPECT_FALSE(s2 != s1);
EXPECT_FALSE(s2 < s1);
EXPECT_TRUE(s2 <= s1);
EXPECT_FALSE(s2 > s1);
EXPECT_TRUE(s2 >= s1);
}
{
int arr[] = {2, 1}; // bigger
{
int arr[] = {2, 1}; // bigger
gsl::span<int> s1;
gsl::span<int> s2 = arr;
span<int> s1;
span<int> s2 = arr;
EXPECT_TRUE(s1 != s2);
EXPECT_TRUE(s2 != s1);
EXPECT_FALSE(s1 == s2);
EXPECT_FALSE(s2 == s1);
EXPECT_TRUE(s1 < s2);
EXPECT_FALSE(s2 < s1);
EXPECT_TRUE(s1 <= s2);
EXPECT_FALSE(s2 <= s1);
EXPECT_TRUE(s2 > s1);
EXPECT_FALSE(s1 > s2);
EXPECT_TRUE(s2 >= s1);
EXPECT_FALSE(s1 >= s2);
}
EXPECT_TRUE(s1 != s2);
EXPECT_TRUE(s2 != s1);
EXPECT_FALSE(s1 == s2);
EXPECT_FALSE(s2 == s1);
EXPECT_TRUE(s1 < s2);
EXPECT_FALSE(s2 < s1);
EXPECT_TRUE(s1 <= s2);
EXPECT_FALSE(s2 <= s1);
EXPECT_TRUE(s2 > s1);
EXPECT_FALSE(s1 > s2);
EXPECT_TRUE(s2 >= s1);
EXPECT_FALSE(s1 >= s2);
}
{
int arr1[] = {1, 2};
int arr2[] = {1, 2};
gsl::span<int> s1 = arr1;
gsl::span<int> s2 = arr2;
{
int arr1[] = {1, 2};
int arr2[] = {1, 2};
span<int> s1 = arr1;
span<int> s2 = arr2;
EXPECT_TRUE(s1 == s2);
EXPECT_FALSE(s1 != s2);
EXPECT_FALSE(s1 < s2);
EXPECT_TRUE(s1 <= s2);
EXPECT_FALSE(s1 > s2);
EXPECT_TRUE(s1 >= s2);
EXPECT_TRUE(s2 == s1);
EXPECT_FALSE(s2 != s1);
EXPECT_FALSE(s2 < s1);
EXPECT_TRUE(s2 <= s1);
EXPECT_FALSE(s2 > s1);
EXPECT_TRUE(s2 >= s1);
}
EXPECT_TRUE(s1 == s2);
EXPECT_FALSE(s1 != s2);
EXPECT_FALSE(s1 < s2);
EXPECT_TRUE(s1 <= s2);
EXPECT_FALSE(s1 > s2);
EXPECT_TRUE(s1 >= s2);
EXPECT_TRUE(s2 == s1);
EXPECT_FALSE(s2 != s1);
EXPECT_FALSE(s2 < s1);
EXPECT_TRUE(s2 <= s1);
EXPECT_FALSE(s2 > s1);
EXPECT_TRUE(s2 >= s1);
}
{
int arr[] = {1, 2, 3};
{
int arr[] = {1, 2, 3};
gsl::span<int> s1 = {&arr[0], 2}; // shorter
gsl::span<int> s2 = arr; // longer
span<int> s1 = {&arr[0], 2}; // shorter
span<int> s2 = arr; // longer
EXPECT_TRUE(s1 != s2);
EXPECT_TRUE(s2 != s1);
EXPECT_FALSE(s1 == s2);
EXPECT_FALSE(s2 == s1);
EXPECT_TRUE(s1 < s2);
EXPECT_FALSE(s2 < s1);
EXPECT_TRUE(s1 <= s2);
EXPECT_FALSE(s2 <= s1);
EXPECT_TRUE(s2 > s1);
EXPECT_FALSE(s1 > s2);
EXPECT_TRUE(s2 >= s1);
EXPECT_FALSE(s1 >= s2);
}
EXPECT_TRUE(s1 != s2);
EXPECT_TRUE(s2 != s1);
EXPECT_FALSE(s1 == s2);
EXPECT_FALSE(s2 == s1);
EXPECT_TRUE(s1 < s2);
EXPECT_FALSE(s2 < s1);
EXPECT_TRUE(s1 <= s2);
EXPECT_FALSE(s2 <= s1);
EXPECT_TRUE(s2 > s1);
EXPECT_FALSE(s1 > s2);
EXPECT_TRUE(s2 >= s1);
EXPECT_FALSE(s1 >= s2);
}
{
int arr1[] = {1, 2}; // smaller
int arr2[] = {2, 1}; // bigger
{
int arr1[] = {1, 2}; // smaller
int arr2[] = {2, 1}; // bigger
gsl::span<int> s1 = arr1;
gsl::span<int> s2 = arr2;
span<int> s1 = arr1;
span<int> s2 = arr2;
EXPECT_TRUE(s1 != s2);
EXPECT_TRUE(s2 != s1);
EXPECT_FALSE(s1 == s2);
EXPECT_FALSE(s2 == s1);
EXPECT_TRUE(s1 < s2);
EXPECT_FALSE(s2 < s1);
EXPECT_TRUE(s1 <= s2);
EXPECT_FALSE(s2 <= s1);
EXPECT_TRUE(s2 > s1);
EXPECT_FALSE(s1 > s2);
EXPECT_TRUE(s2 >= s1);
EXPECT_FALSE(s1 >= s2);
}
}
#endif // GSL_KERNEL_MODE
EXPECT_TRUE(s1 != s2);
EXPECT_TRUE(s2 != s1);
EXPECT_FALSE(s1 == s2);
EXPECT_FALSE(s2 == s1);
EXPECT_TRUE(s1 < s2);
EXPECT_FALSE(s2 < s1);
EXPECT_TRUE(s1 <= s2);
EXPECT_FALSE(s2 <= s1);
EXPECT_TRUE(s2 > s1);
EXPECT_FALSE(s1 > s2);
EXPECT_TRUE(s2 >= s1);
EXPECT_FALSE(s1 >= s2);
}
}
+796 -817
View File
File diff suppressed because it is too large Load Diff
+15 -22
View File
@@ -14,40 +14,30 @@
//
///////////////////////////////////////////////////////////////////////////////
#include <gsl/pointers> // for not_null, operator<, operator<=, operator>
#include <gtest/gtest.h>
#include <gsl/pointers> // for not_null, operator<, operator<=, operator>
#include "deathTestCommon.h"
namespace gsl
{
struct fail_fast;
} // namespace gsl
using namespace gsl;
namespace
{
// clang-format off
GSL_SUPPRESS(f.4) // NO-FORMAT: attribute
// clang-format on
GSL_SUPPRESS(f.4) // NO-FORMAT: attribute
bool helper(not_null<int*> p) { return *p == 12; }
// clang-format off
GSL_SUPPRESS(f.4) // NO-FORMAT: attribute
// clang-format on
bool helper_const(not_null<const int*> p) { return *p == 12; }
// clang-format off
GSL_SUPPRESS(f.4) // NO-FORMAT: attribute
// clang-format on
bool strict_helper(strict_not_null<int*> p) { return *p == 12; }
// clang-format off
GSL_SUPPRESS(f.4) // NO-FORMAT: attribute
// clang-format on
bool strict_helper_const(strict_not_null<const int*> p) { return *p == 12; }
#ifdef CONFIRM_COMPILATION_ERRORS
int* return_pointer() { return nullptr; }
const int* return_pointer_const() { return nullptr; }
#endif
} // namespace
TEST(strict_notnull_tests, TestStrictNotNull)
{
@@ -133,14 +123,17 @@ TEST(strict_notnull_tests, TestStrictNotNull)
}
#if defined(__cplusplus) && (__cplusplus >= 201703L)
namespace
{
static constexpr char deathstring[] = "Expected Death";
}
TEST(strict_notnull_tests, TestStrictNotNullConstructorTypeDeduction)
{
const auto terminateHandler = std::set_terminate([] {
std::set_terminate([] {
std::cerr << "Expected Death. TestStrictNotNullConstructorTypeDeduction";
std::abort();
});
const auto expected = GetExpectedDeathString(terminateHandler);
{
int i = 42;
@@ -168,7 +161,7 @@ TEST(strict_notnull_tests, TestStrictNotNullConstructorTypeDeduction)
int* p1 = nullptr;
const strict_not_null x{p1};
};
EXPECT_DEATH(workaround_macro(), expected);
EXPECT_DEATH(workaround_macro(), deathstring);
}
{
@@ -176,14 +169,14 @@ TEST(strict_notnull_tests, TestStrictNotNullConstructorTypeDeduction)
const int* p1 = nullptr;
const strict_not_null x{p1};
};
EXPECT_DEATH(workaround_macro(), expected);
EXPECT_DEATH(workaround_macro(), deathstring);
}
{
int* p = nullptr;
EXPECT_DEATH(helper(strict_not_null{p}), expected);
EXPECT_DEATH(helper_const(strict_not_null{p}), expected);
EXPECT_DEATH(helper(strict_not_null{p}), deathstring);
EXPECT_DEATH(helper_const(strict_not_null{p}), deathstring);
}
#ifdef CONFIRM_COMPILATION_ERRORS
+790
View File
@@ -0,0 +1,790 @@
///////////////////////////////////////////////////////////////////////////////
//
// Copyright (c) 2015 Microsoft Corporation. All rights reserved.
//
// This code is licensed under the MIT License (MIT).
//
// THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
// IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
// FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
// AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
// LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
// OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
// THE SOFTWARE.
//
///////////////////////////////////////////////////////////////////////////////
#include <gtest/gtest.h>
#include <gsl/gsl_byte> // for byte
#include <gsl/gsl_util> // for narrow_cast
#include <gsl/multi_span> // for strided_span, index, multi_span, strided_...
#include <iostream> // for size_t
#include <iterator> // for begin, end
#include <numeric> // for iota
#include <type_traits> // for integral_constant<>::value, is_convertible
#include <vector> // for vector
using namespace std;
using namespace gsl;
namespace
{
static constexpr char deathstring[] = "Expected Death";
struct BaseClass
{
};
struct DerivedClass : BaseClass
{
};
GSL_SUPPRESS(con.4) // NO-FORMAT: attribute
GSL_SUPPRESS(bounds.1) // NO-FORMAT: attribute
void iterate_every_other_element(multi_span<int, dynamic_range> av)
{
// pick every other element
auto length = av.size() / 2;
#if defined(_MSC_VER) && _MSC_VER > 1800
auto bounds = strided_bounds<1>({length}, {2});
#else
auto bounds = strided_bounds<1>(multi_span_index<1>{length}, multi_span_index<1>{2});
#endif
strided_span<int, 1> strided(&av.data()[1], av.size() - 1, bounds);
EXPECT_TRUE(strided.size() == length);
EXPECT_TRUE(strided.bounds().index_bounds()[0] == length);
for (auto i = 0; i < strided.size(); ++i) {
EXPECT_TRUE(strided[i] == av[2 * i + 1]);
}
int idx = 0;
for (auto num : strided) {
EXPECT_TRUE(num == av[2 * idx + 1]);
idx++;
}
}
GSL_SUPPRESS(con.4) // NO-FORMAT: attribute
GSL_SUPPRESS(bounds.4) // NO-FORMAT: attribute
GSL_SUPPRESS(bounds.2) // NO-FORMAT: attribute // TODO: does not work
void iterate_second_slice(multi_span<int, dynamic_range, dynamic_range, dynamic_range> av)
{
const int expected[6] = {2, 3, 10, 11, 18, 19};
auto section = av.section({0, 1, 0}, {3, 1, 2});
for (auto i = 0; i < section.extent<0>(); ++i) {
for (auto j = 0; j < section.extent<1>(); ++j)
for (auto k = 0; k < section.extent<2>(); ++k) {
auto idx = multi_span_index<3>{i, j, k}; // avoid braces in the EXPECT_TRUE macro
EXPECT_TRUE(section[idx] == expected[2 * i + 2 * j + k]);
}
}
for (auto i = 0; i < section.extent<0>(); ++i) {
for (auto j = 0; j < section.extent<1>(); ++j)
for (auto k = 0; k < section.extent<2>(); ++k)
EXPECT_TRUE(section[i][j][k] == expected[2 * i + 2 * j + k]);
}
int i = 0;
for (const auto num : section) {
EXPECT_TRUE(num == expected[i]);
i++;
}
}
}
TEST(strided_span_tests, span_section_test)
{
int a[30][4][5];
const auto av = as_multi_span(a);
const auto sub = av.section({15, 0, 0}, gsl::multi_span_index<3>{2, 2, 2});
const auto subsub = sub.section({1, 0, 0}, gsl::multi_span_index<3>{1, 1, 1});
(void) subsub;
}
TEST(strided_span_tests, span_section)
{
std::vector<int> data(5 * 10);
std::iota(begin(data), end(data), 0);
const multi_span<int, 5, 10> av = as_multi_span(multi_span<int>{data}, dim<5>(), dim<10>());
const strided_span<int, 2> av_section_1 = av.section({1, 2}, {3, 4});
EXPECT_TRUE(!av_section_1.empty());
EXPECT_TRUE((av_section_1[{0, 0}] == 12));
EXPECT_TRUE((av_section_1[{0, 1}] == 13));
EXPECT_TRUE((av_section_1[{1, 0}] == 22));
EXPECT_TRUE((av_section_1[{2, 3}] == 35));
const strided_span<int, 2> av_section_2 = av_section_1.section({1, 2}, {2, 2});
EXPECT_TRUE(!av_section_2.empty());
EXPECT_TRUE((av_section_2[{0, 0}] == 24));
EXPECT_TRUE((av_section_2[{0, 1}] == 25));
EXPECT_TRUE((av_section_2[{1, 0}] == 34));
}
TEST(strided_span_tests, strided_span_constructors)
{
// EXPECT_TRUE stride constructor
{
int arr[] = {1, 2, 3, 4, 5, 6, 7, 8, 9};
const int carr[] = {1, 2, 3, 4, 5, 6, 7, 8, 9};
strided_span<int, 1> sav1{arr, {{9}, {1}}}; // T -> T
EXPECT_TRUE(sav1.bounds().index_bounds() == multi_span_index<1>{9});
EXPECT_TRUE(sav1.bounds().stride() == 1);
EXPECT_TRUE(sav1[0] == 1);
EXPECT_TRUE(sav1[8] == 9);
strided_span<const int, 1> sav2{carr, {{4}, {2}}}; // const T -> const T
EXPECT_TRUE(sav2.bounds().index_bounds() == multi_span_index<1>{4});
EXPECT_TRUE(sav2.bounds().strides() == multi_span_index<1>{2});
EXPECT_TRUE(sav2[0] == 1);
EXPECT_TRUE(sav2[3] == 7);
strided_span<int, 2> sav3{arr, {{2, 2}, {6, 2}}}; // T -> const T
EXPECT_TRUE((sav3.bounds().index_bounds() == multi_span_index<2>{2, 2}));
EXPECT_TRUE((sav3.bounds().strides() == multi_span_index<2>{6, 2}));
EXPECT_TRUE((sav3[{0, 0}]) == 1);
EXPECT_TRUE((sav3[{0, 1}]) == 3);
EXPECT_TRUE((sav3[{1, 0}]) == 7);
}
// EXPECT_TRUE multi_span constructor
{
int arr[] = {1, 2};
// From non-cv-qualified source
{
const multi_span<int> src = arr;
strided_span<int, 1> sav{src, {2, 1}};
EXPECT_TRUE(sav.bounds().index_bounds() == multi_span_index<1>{2});
EXPECT_TRUE(sav.bounds().strides() == multi_span_index<1>{1});
EXPECT_TRUE(sav[1] == 2);
#if defined(_MSC_VER) && _MSC_VER > 1800
// strided_span<const int, 1> sav_c{ {src}, {2, 1} };
strided_span<const int, 1> sav_c{multi_span<const int>{src},
strided_bounds<1>{2, 1}};
#else
strided_span<const int, 1> sav_c{multi_span<const int>{src},
strided_bounds<1>{2, 1}};
#endif
EXPECT_TRUE(sav_c.bounds().index_bounds() == multi_span_index<1>{2});
EXPECT_TRUE(sav_c.bounds().strides() == multi_span_index<1>{1});
EXPECT_TRUE(sav_c[1] == 2);
#if defined(_MSC_VER) && _MSC_VER > 1800
strided_span<volatile int, 1> sav_v{src, {2, 1}};
#else
strided_span<volatile int, 1> sav_v{multi_span<volatile int>{src},
strided_bounds<1>{2, 1}};
#endif
EXPECT_TRUE(sav_v.bounds().index_bounds() == multi_span_index<1>{2});
EXPECT_TRUE(sav_v.bounds().strides() == multi_span_index<1>{1});
EXPECT_TRUE(sav_v[1] == 2);
#if defined(_MSC_VER) && _MSC_VER > 1800
strided_span<const volatile int, 1> sav_cv{src, {2, 1}};
#else
strided_span<const volatile int, 1> sav_cv{multi_span<const volatile int>{src},
strided_bounds<1>{2, 1}};
#endif
EXPECT_TRUE(sav_cv.bounds().index_bounds() == multi_span_index<1>{2});
EXPECT_TRUE(sav_cv.bounds().strides() == multi_span_index<1>{1});
EXPECT_TRUE(sav_cv[1] == 2);
}
// From const-qualified source
{
const multi_span<const int> src{arr};
strided_span<const int, 1> sav_c{src, {2, 1}};
EXPECT_TRUE(sav_c.bounds().index_bounds() == multi_span_index<1>{2});
EXPECT_TRUE(sav_c.bounds().strides() == multi_span_index<1>{1});
EXPECT_TRUE(sav_c[1] == 2);
#if defined(_MSC_VER) && _MSC_VER > 1800
strided_span<const volatile int, 1> sav_cv{src, {2, 1}};
#else
strided_span<const volatile int, 1> sav_cv{multi_span<const volatile int>{src},
strided_bounds<1>{2, 1}};
#endif
EXPECT_TRUE(sav_cv.bounds().index_bounds() == multi_span_index<1>{2});
EXPECT_TRUE(sav_cv.bounds().strides() == multi_span_index<1>{1});
EXPECT_TRUE(sav_cv[1] == 2);
}
// From volatile-qualified source
{
const multi_span<volatile int> src{arr};
strided_span<volatile int, 1> sav_v{src, {2, 1}};
EXPECT_TRUE(sav_v.bounds().index_bounds() == multi_span_index<1>{2});
EXPECT_TRUE(sav_v.bounds().strides() == multi_span_index<1>{1});
EXPECT_TRUE(sav_v[1] == 2);
#if defined(_MSC_VER) && _MSC_VER > 1800
strided_span<const volatile int, 1> sav_cv{src, {2, 1}};
#else
strided_span<const volatile int, 1> sav_cv{multi_span<const volatile int>{src},
strided_bounds<1>{2, 1}};
#endif
EXPECT_TRUE(sav_cv.bounds().index_bounds() == multi_span_index<1>{2});
EXPECT_TRUE(sav_cv.bounds().strides() == multi_span_index<1>{1});
EXPECT_TRUE(sav_cv[1] == 2);
}
// From cv-qualified source
{
const multi_span<const volatile int> src{arr};
strided_span<const volatile int, 1> sav_cv{src, {2, 1}};
EXPECT_TRUE(sav_cv.bounds().index_bounds() == multi_span_index<1>{2});
EXPECT_TRUE(sav_cv.bounds().strides() == multi_span_index<1>{1});
EXPECT_TRUE(sav_cv[1] == 2);
}
}
// EXPECT_TRUE const-casting constructor
{
int arr[2] = {4, 5};
const multi_span<int, 2> av(arr, 2);
multi_span<const int, 2> av2{av};
EXPECT_TRUE(av2[1] == 5);
static_assert(
std::is_convertible<const multi_span<int, 2>, multi_span<const int, 2>>::value,
"ctor is not implicit!");
const strided_span<int, 1> src{arr, {2, 1}};
strided_span<const int, 1> sav{src};
EXPECT_TRUE(sav.bounds().index_bounds() == multi_span_index<1>{2});
EXPECT_TRUE(sav.bounds().stride() == 1);
EXPECT_TRUE(sav[1] == 5);
static_assert(
std::is_convertible<const strided_span<int, 1>, strided_span<const int, 1>>::value,
"ctor is not implicit!");
}
// EXPECT_TRUE copy constructor
{
int arr1[2] = {3, 4};
const strided_span<int, 1> src1{arr1, {2, 1}};
strided_span<int, 1> sav1{src1};
EXPECT_TRUE(sav1.bounds().index_bounds() == multi_span_index<1>{2});
EXPECT_TRUE(sav1.bounds().stride() == 1);
EXPECT_TRUE(sav1[0] == 3);
int arr2[6] = {1, 2, 3, 4, 5, 6};
const strided_span<const int, 2> src2{arr2, {{3, 2}, {2, 1}}};
strided_span<const int, 2> sav2{src2};
EXPECT_TRUE((sav2.bounds().index_bounds() == multi_span_index<2>{3, 2}));
EXPECT_TRUE((sav2.bounds().strides() == multi_span_index<2>{2, 1}));
EXPECT_TRUE((sav2[{0, 0}]) == 1);
EXPECT_TRUE((sav2[{2, 0}]) == 5);
}
// EXPECT_TRUE const-casting assignment operator
{
int arr1[2] = {1, 2};
int arr2[6] = {3, 4, 5, 6, 7, 8};
const strided_span<int, 1> src{arr1, {{2}, {1}}};
strided_span<const int, 1> sav{arr2, {{3}, {2}}};
strided_span<const int, 1>& sav_ref = (sav = src);
EXPECT_TRUE(sav.bounds().index_bounds() == multi_span_index<1>{2});
EXPECT_TRUE(sav.bounds().strides() == multi_span_index<1>{1});
EXPECT_TRUE(sav[0] == 1);
EXPECT_TRUE(&sav_ref == &sav);
}
// EXPECT_TRUE copy assignment operator
{
int arr1[2] = {3, 4};
int arr1b[1] = {0};
const strided_span<int, 1> src1{arr1, {2, 1}};
strided_span<int, 1> sav1{arr1b, {1, 1}};
strided_span<int, 1>& sav1_ref = (sav1 = src1);
EXPECT_TRUE(sav1.bounds().index_bounds() == multi_span_index<1>{2});
EXPECT_TRUE(sav1.bounds().strides() == multi_span_index<1>{1});
EXPECT_TRUE(sav1[0] == 3);
EXPECT_TRUE(&sav1_ref == &sav1);
const int arr2[6] = {1, 2, 3, 4, 5, 6};
const int arr2b[1] = {0};
const strided_span<const int, 2> src2{arr2, {{3, 2}, {2, 1}}};
strided_span<const int, 2> sav2{arr2b, {{1, 1}, {1, 1}}};
strided_span<const int, 2>& sav2_ref = (sav2 = src2);
EXPECT_TRUE((sav2.bounds().index_bounds() == multi_span_index<2>{3, 2}));
EXPECT_TRUE((sav2.bounds().strides() == multi_span_index<2>{2, 1}));
EXPECT_TRUE((sav2[{0, 0}] == 1));
EXPECT_TRUE((sav2[{2, 0}] == 5));
EXPECT_TRUE(&sav2_ref == &sav2);
}
}
TEST(strided_span_tests, strided_span_slice)
{
std::vector<int> data(5 * 10);
std::iota(begin(data), end(data), 0);
const multi_span<int, 5, 10> src =
as_multi_span(multi_span<int>{data}, dim<5>(), dim<10>());
const strided_span<int, 2> sav{src, {{5, 10}, {10, 1}}};
#ifdef CONFIRM_COMPILATION_ERRORS
const strided_span<const int, 2> csav{{src}, {{5, 10}, {10, 1}}};
#endif
const strided_span<const int, 2> csav{multi_span<const int, 5, 10>{src},
{{5, 10}, {10, 1}}};
strided_span<int, 1> sav_sl = sav[2];
EXPECT_TRUE(sav_sl[0] == 20);
EXPECT_TRUE(sav_sl[9] == 29);
strided_span<const int, 1> csav_sl = sav[3];
EXPECT_TRUE(csav_sl[0] == 30);
EXPECT_TRUE(csav_sl[9] == 39);
EXPECT_TRUE(sav[4][0] == 40);
EXPECT_TRUE(sav[4][9] == 49);
}
TEST(strided_span_tests, strided_span_column_major)
{
// strided_span may be used to accommodate more peculiar
// use cases, such as column-major multidimensional array
// (aka. "FORTRAN" layout).
int cm_array[3 * 5] = {1, 4, 7, 10, 13, 2, 5, 8, 11, 14, 3, 6, 9, 12, 15};
strided_span<int, 2> cm_sav{cm_array, {{5, 3}, {1, 5}}};
// Accessing elements
EXPECT_TRUE((cm_sav[{0, 0}] == 1));
EXPECT_TRUE((cm_sav[{0, 1}] == 2));
EXPECT_TRUE((cm_sav[{1, 0}] == 4));
EXPECT_TRUE((cm_sav[{4, 2}] == 15));
// Slice
strided_span<int, 1> cm_sl = cm_sav[3];
EXPECT_TRUE(cm_sl[0] == 10);
EXPECT_TRUE(cm_sl[1] == 11);
EXPECT_TRUE(cm_sl[2] == 12);
// Section
strided_span<int, 2> cm_sec = cm_sav.section({2, 1}, {3, 2});
EXPECT_TRUE((cm_sec.bounds().index_bounds() == multi_span_index<2>{3, 2}));
EXPECT_TRUE((cm_sec[{0, 0}] == 8));
EXPECT_TRUE((cm_sec[{0, 1}] == 9));
EXPECT_TRUE((cm_sec[{1, 0}] == 11));
EXPECT_TRUE((cm_sec[{2, 1}] == 15));
}
TEST(strided_span_tests, strided_span_bounds)
{
int arr[] = {0, 1, 2, 3};
multi_span<int> av(arr);
std::set_terminate([] {
std::cerr << "Expected Death. strided_span_bounds";
std::abort();
});
{
// incorrect sections
EXPECT_DEATH(av.section(0, 0)[0], deathstring);
EXPECT_DEATH(av.section(1, 0)[0], deathstring);
EXPECT_DEATH(av.section(1, 1)[1], deathstring);
EXPECT_DEATH(av.section(2, 5), deathstring);
EXPECT_DEATH(av.section(5, 2), deathstring);
EXPECT_DEATH(av.section(5, 0), deathstring);
EXPECT_DEATH(av.section(0, 5), deathstring);
EXPECT_DEATH(av.section(5, 5), deathstring);
}
{
// zero stride
strided_span<int, 1> sav{av, {{4}, {}}};
EXPECT_TRUE(sav[0] == 0);
EXPECT_TRUE(sav[3] == 0);
EXPECT_DEATH(sav[4], deathstring);
}
{
// zero extent
strided_span<int, 1> sav{av, {{}, {1}}};
EXPECT_DEATH(sav[0], deathstring);
}
{
// zero extent and stride
strided_span<int, 1> sav{av, {{}, {}}};
EXPECT_DEATH(sav[0], deathstring);
}
{
// strided array ctor with matching strided bounds
strided_span<int, 1> sav{arr, {4, 1}};
EXPECT_TRUE(sav.bounds().index_bounds() == multi_span_index<1>{4});
EXPECT_TRUE(sav[3] == 3);
EXPECT_DEATH(sav[4], deathstring);
}
{
// strided array ctor with smaller strided bounds
strided_span<int, 1> sav{arr, {2, 1}};
EXPECT_TRUE(sav.bounds().index_bounds() == multi_span_index<1>{2});
EXPECT_TRUE(sav[1] == 1);
EXPECT_DEATH(sav[2], deathstring);
}
{
// strided array ctor with fitting irregular bounds
strided_span<int, 1> sav{arr, {2, 3}};
EXPECT_TRUE(sav.bounds().index_bounds() == multi_span_index<1>{2});
EXPECT_TRUE(sav[0] == 0);
EXPECT_TRUE(sav[1] == 3);
EXPECT_DEATH(sav[2], deathstring);
}
{
// bounds cross data boundaries - from static arrays
EXPECT_DEATH((strided_span<int, 1>{arr, {3, 2}}), deathstring);
EXPECT_DEATH((strided_span<int, 1>{arr, {3, 3}}), deathstring);
EXPECT_DEATH((strided_span<int, 1>{arr, {4, 5}}), deathstring);
EXPECT_DEATH((strided_span<int, 1>{arr, {5, 1}}), deathstring);
EXPECT_DEATH((strided_span<int, 1>{arr, {5, 5}}), deathstring);
}
{
// bounds cross data boundaries - from array view
EXPECT_DEATH((strided_span<int, 1>{av, {3, 2}}), deathstring);
EXPECT_DEATH((strided_span<int, 1>{av, {3, 3}}), deathstring);
EXPECT_DEATH((strided_span<int, 1>{av, {4, 5}}), deathstring);
EXPECT_DEATH((strided_span<int, 1>{av, {5, 1}}), deathstring);
EXPECT_DEATH((strided_span<int, 1>{av, {5, 5}}), deathstring);
}
{
// bounds cross data boundaries - from dynamic arrays
EXPECT_DEATH((strided_span<int, 1>{av.data(), 4, {3, 2}}), deathstring);
EXPECT_DEATH((strided_span<int, 1>{av.data(), 4, {3, 3}}), deathstring);
EXPECT_DEATH((strided_span<int, 1>{av.data(), 4, {4, 5}}), deathstring);
EXPECT_DEATH((strided_span<int, 1>{av.data(), 4, {5, 1}}), deathstring);
EXPECT_DEATH((strided_span<int, 1>{av.data(), 4, {5, 5}}), deathstring);
EXPECT_DEATH((strided_span<int, 1>{av.data(), 2, {2, 2}}), deathstring);
}
#ifdef CONFIRM_COMPILATION_ERRORS
{
strided_span<int, 1> sav0{av.data(), {3, 2}};
strided_span<int, 1> sav1{arr, {1}};
strided_span<int, 1> sav2{arr, {1, 1, 1}};
strided_span<int, 1> sav3{av, {1}};
strided_span<int, 1> sav4{av, {1, 1, 1}};
strided_span<int, 2> sav5{av.as_multi_span(dim<2>(), dim<2>()), {1}};
strided_span<int, 2> sav6{av.as_multi_span(dim<2>(), dim<2>()), {1, 1, 1}};
strided_span<int, 2> sav7{av.as_multi_span(dim<2>(), dim<2>()),
{{1, 1}, {1, 1}, {1, 1}}};
multi_span_index<1> index{0, 1};
strided_span<int, 1> sav8{arr, {1, {1, 1}}};
strided_span<int, 1> sav9{arr, {{1, 1}, {1, 1}}};
strided_span<int, 1> sav10{av, {1, {1, 1}}};
strided_span<int, 1> sav11{av, {{1, 1}, {1, 1}}};
strided_span<int, 2> sav12{av.as_multi_span(dim<2>(), dim<2>()), {{1}, {1}}};
strided_span<int, 2> sav13{av.as_multi_span(dim<2>(), dim<2>()), {{1}, {1, 1, 1}}};
strided_span<int, 2> sav14{av.as_multi_span(dim<2>(), dim<2>()), {{1, 1, 1}, {1}}};
}
#endif
}
TEST(strided_span_tests, strided_span_type_conversion)
{
int arr[] = {0, 1, 2, 3};
multi_span<int> av(arr);
std::set_terminate([] {
std::cerr << "Expected Death. strided_span_type_conversion";
std::abort();
});
{
strided_span<int, 1> sav{av.data(), av.size(), {av.size() / 2, 2}};
#ifdef CONFIRM_COMPILATION_ERRORS
strided_span<long, 1> lsav1 = sav.as_strided_span<long, 1>();
#endif
}
{
strided_span<int, 1> sav{av, {av.size() / 2, 2}};
#ifdef CONFIRM_COMPILATION_ERRORS
strided_span<long, 1> lsav1 = sav.as_strided_span<long, 1>();
#endif
}
multi_span<const byte, dynamic_range> bytes = as_bytes(av);
// retype strided array with regular strides - from raw data
{
strided_bounds<2> bounds{{2, bytes.size() / 4}, {bytes.size() / 2, 1}};
strided_span<const byte, 2> sav2{bytes.data(), bytes.size(), bounds};
strided_span<const int, 2> sav3 = sav2.as_strided_span<const int>();
EXPECT_TRUE(sav3[0][0] == 0);
EXPECT_TRUE(sav3[1][0] == 2);
EXPECT_DEATH(sav3[1][1], deathstring);
EXPECT_DEATH(sav3[0][1], deathstring);
}
// retype strided array with regular strides - from multi_span
{
strided_bounds<2> bounds{{2, bytes.size() / 4}, {bytes.size() / 2, 1}};
multi_span<const byte, 2, dynamic_range> bytes2 =
as_multi_span(bytes, dim<2>(), dim(bytes.size() / 2));
strided_span<const byte, 2> sav2{bytes2, bounds};
strided_span<int, 2> sav3 = sav2.as_strided_span<int>();
EXPECT_TRUE(sav3[0][0] == 0);
EXPECT_TRUE(sav3[1][0] == 2);
EXPECT_DEATH(sav3[1][1], deathstring);
EXPECT_DEATH(sav3[0][1], deathstring);
}
// retype strided array with not enough elements - last dimension of the array is too small
{
strided_bounds<2> bounds{{4, 2}, {4, 1}};
multi_span<const byte, 2, dynamic_range> bytes2 =
as_multi_span(bytes, dim<2>(), dim(bytes.size() / 2));
strided_span<const byte, 2> sav2{bytes2, bounds};
EXPECT_DEATH(sav2.as_strided_span<int>(), deathstring);
}
// retype strided array with not enough elements - strides are too small
{
strided_bounds<2> bounds{{4, 2}, {2, 1}};
multi_span<const byte, 2, dynamic_range> bytes2 =
as_multi_span(bytes, dim<2>(), dim(bytes.size() / 2));
strided_span<const byte, 2> sav2{bytes2, bounds};
EXPECT_DEATH(sav2.as_strided_span<int>(), deathstring);
}
// retype strided array with not enough elements - last dimension does not divide by the new
// typesize
{
strided_bounds<2> bounds{{2, 6}, {4, 1}};
multi_span<const byte, 2, dynamic_range> bytes2 =
as_multi_span(bytes, dim<2>(), dim(bytes.size() / 2));
strided_span<const byte, 2> sav2{bytes2, bounds};
EXPECT_DEATH(sav2.as_strided_span<int>(), deathstring);
}
// retype strided array with not enough elements - strides does not divide by the new
// typesize
{
strided_bounds<2> bounds{{2, 1}, {6, 1}};
multi_span<const byte, 2, dynamic_range> bytes2 =
as_multi_span(bytes, dim<2>(), dim(bytes.size() / 2));
strided_span<const byte, 2> sav2{bytes2, bounds};
EXPECT_DEATH(sav2.as_strided_span<int>(), deathstring);
}
// retype strided array with irregular strides - from raw data
{
strided_bounds<1> bounds{bytes.size() / 2, 2};
strided_span<const byte, 1> sav2{bytes.data(), bytes.size(), bounds};
EXPECT_DEATH(sav2.as_strided_span<int>(), deathstring);
}
// retype strided array with irregular strides - from multi_span
{
strided_bounds<1> bounds{bytes.size() / 2, 2};
strided_span<const byte, 1> sav2{bytes, bounds};
EXPECT_DEATH(sav2.as_strided_span<int>(), deathstring);
}
}
TEST(strided_span_tests, empty_strided_spans)
{
std::set_terminate([] {
std::cerr << "Expected Death. empty_strided_spans";
std::abort();
});
{
multi_span<int, 0> empty_av(nullptr);
strided_span<int, 1> empty_sav{empty_av, {0, 1}};
EXPECT_TRUE(empty_sav.bounds().index_bounds() == multi_span_index<1>{0});
EXPECT_TRUE(empty_sav.empty());
EXPECT_DEATH(empty_sav[0], deathstring);
EXPECT_DEATH(empty_sav.begin()[0], deathstring);
EXPECT_DEATH(empty_sav.cbegin()[0], deathstring);
for (const auto& v : empty_sav) {
(void) v;
EXPECT_TRUE(false);
}
}
{
strided_span<int, 1> empty_sav{nullptr, 0, {0, 1}};
EXPECT_TRUE(empty_sav.bounds().index_bounds() == multi_span_index<1>{0});
EXPECT_DEATH(empty_sav[0], deathstring);
EXPECT_DEATH(empty_sav.begin()[0], deathstring);
EXPECT_DEATH(empty_sav.cbegin()[0], deathstring);
for (const auto& v : empty_sav) {
(void) v;
EXPECT_TRUE(false);
}
}
}
TEST(strided_span_tests, strided_span_section_iteration)
{
int arr[8] = {4, 0, 5, 1, 6, 2, 7, 3};
// static bounds
{
multi_span<int, 8> av(arr, 8);
iterate_every_other_element(av);
}
// dynamic bounds
{
multi_span<int, dynamic_range> av(arr, 8);
iterate_every_other_element(av);
}
}
TEST(strided_span_tests, dynamic_strided_span_section_iteration)
{
auto arr = new int[8];
for (int i = 0; i < 4; ++i) {
arr[2 * i] = 4 + i;
arr[2 * i + 1] = i;
}
auto av = as_multi_span(arr, 8);
iterate_every_other_element(av);
delete[] arr;
}
TEST(strided_span_tests, strided_span_section_iteration_3d)
{
int arr[3][4][2]{};
for (auto i = 0; i < 3; ++i) {
for (auto j = 0; j < 4; ++j)
for (auto k = 0; k < 2; ++k) arr[i][j][k] = 8 * i + 2 * j + k;
}
{
multi_span<int, 3, 4, 2> av = arr;
iterate_second_slice(av);
}
}
TEST(strided_span_tests, dynamic_strided_span_section_iteration_3d)
{
const auto height = 12, width = 2;
const auto size = height * width;
auto arr = new int[static_cast<std::size_t>(size)];
for (auto i = 0; i < size; ++i) {
arr[i] = i;
}
{
auto av = as_multi_span(as_multi_span(arr, 24), dim<3>(), dim<4>(), dim<2>());
iterate_second_slice(av);
}
{
auto av = as_multi_span(as_multi_span(arr, 24), dim(3), dim<4>(), dim<2>());
iterate_second_slice(av);
}
{
auto av = as_multi_span(as_multi_span(arr, 24), dim<3>(), dim(4), dim<2>());
iterate_second_slice(av);
}
{
auto av = as_multi_span(as_multi_span(arr, 24), dim<3>(), dim<4>(), dim(2));
iterate_second_slice(av);
}
delete[] arr;
}
TEST(strided_span_tests, strided_span_conversion)
{
std::set_terminate([] {
std::cerr << "Expected Death. strided_span_conversion";
std::abort();
});
// get an multi_span of 'c' values from the list of X's
struct X
{
int a;
int b;
int c;
};
X arr[4] = {{0, 1, 2}, {3, 4, 5}, {6, 7, 8}, {9, 10, 11}};
int s = sizeof(int) / sizeof(byte);
auto d2 = 3 * s;
auto d1 = narrow_cast<int>(sizeof(int)) * 12 / d2;
// convert to 4x12 array of bytes
auto av = as_multi_span(as_bytes(as_multi_span(&arr[0], 4)), dim(d1), dim(d2));
EXPECT_TRUE(av.bounds().index_bounds()[0] == 4);
EXPECT_TRUE(av.bounds().index_bounds()[1] == 12);
// get the last 4 columns
auto section = av.section({0, 2 * s}, {4, s}); // { { arr[0].c[0], arr[0].c[1], arr[0].c[2],
// arr[0].c[3] } , { arr[1].c[0], ... } , ...
// }
// convert to array 4x1 array of integers
auto cs = section.as_strided_span<int>(); // { { arr[0].c }, {arr[1].c } , ... }
EXPECT_TRUE(cs.bounds().index_bounds()[0] == 4);
EXPECT_TRUE(cs.bounds().index_bounds()[1] == 1);
// transpose to 1x4 array
strided_bounds<2> reverse_bounds{
{cs.bounds().index_bounds()[1], cs.bounds().index_bounds()[0]},
{cs.bounds().strides()[1], cs.bounds().strides()[0]}};
strided_span<int, 2> transposed{cs.data(), cs.bounds().total_size(), reverse_bounds};
// slice to get a one-dimensional array of c's
strided_span<int, 1> result = transposed[0];
EXPECT_TRUE(result.bounds().index_bounds()[0] == 4);
EXPECT_DEATH(result.bounds().index_bounds()[1], deathstring);
int i = 0;
for (auto& num : result) {
EXPECT_TRUE(num == arr[i].c);
i++;
}
}
+28 -36
View File
@@ -16,7 +16,7 @@
#include <gtest/gtest.h>
#include <gsl/assert> // for Expects, fail_fast (ptr only)
#include <gsl/gsl_assert> // for Expects, fail_fast (ptr only)
#include <gsl/pointers> // for owner
#include <gsl/span> // for span, dynamic_extent
#include <gsl/string_span> // for basic_string_span, operator==, ensure_z
@@ -28,10 +28,13 @@
#include <type_traits> // for remove_reference<>::type
#include <vector> // for vector, allocator
#include "deathTestCommon.h"
using namespace std;
using namespace gsl;
namespace
{
static constexpr char deathstring[] = "Expected Death";
}
// Generic string functions
namespace generic
@@ -73,7 +76,8 @@ T create()
template <class T>
void use(basic_string_span<T, gsl::dynamic_extent>)
{}
{
}
#endif
czstring_span<> CreateTempName(string_span<> span)
@@ -81,8 +85,7 @@ czstring_span<> CreateTempName(string_span<> span)
Expects(span.size() > 1);
std::size_t last = 0;
if (span.size() > 4)
{
if (span.size() > 4) {
span[0] = 't';
span[1] = 'm';
span[2] = 'p';
@@ -99,8 +102,7 @@ cwzstring_span<> CreateTempNameW(wstring_span<> span)
Expects(span.size() > 1);
std::size_t last = 0;
if (span.size() > 4)
{
if (span.size() > 4) {
span[0] = L't';
span[1] = L'm';
span[2] = L'p';
@@ -117,8 +119,7 @@ cu16zstring_span<> CreateTempNameU16(u16string_span<> span)
Expects(span.size() > 1);
std::size_t last = 0;
if (span.size() > 4)
{
if (span.size() > 4) {
span[0] = u't';
span[1] = u'm';
span[2] = u'p';
@@ -135,8 +136,7 @@ cu32zstring_span<> CreateTempNameU32(u32string_span<> span)
Expects(span.size() > 1);
std::size_t last = 0;
if (span.size() > 4)
{
if (span.size() > 4) {
span[0] = U't';
span[1] = U'm';
span[2] = U'p';
@@ -950,11 +950,10 @@ TEST(string_span_tests, Conversion)
TEST(string_span_tests, zstring)
{
const auto terminateHandler = std::set_terminate([] {
std::set_terminate([] {
std::cerr << "Expected Death. zstring";
std::abort();
});
const auto expected = GetExpectedDeathString(terminateHandler);
// create zspan from zero terminated string
{
@@ -974,7 +973,7 @@ TEST(string_span_tests, zstring)
buf[0] = 'a';
auto workaround_macro = [&]() { const zstring_span<> zspan({buf, 1}); };
EXPECT_DEATH(workaround_macro(), expected);
EXPECT_DEATH(workaround_macro(), deathstring);
}
// usage scenario: create zero-terminated temp file name and pass to a legacy API
@@ -982,9 +981,8 @@ TEST(string_span_tests, zstring)
char buf[10];
auto name = CreateTempName({buf, 10});
if (!name.empty())
{
czstring str = name.assume_z();
if (!name.empty()) {
czstring<> str = name.assume_z();
EXPECT_TRUE(generic::strlen(str) == 3);
EXPECT_TRUE(*(str + 3) == '\0');
}
@@ -993,11 +991,10 @@ TEST(string_span_tests, zstring)
TEST(string_span_tests, wzstring)
{
const auto terminateHandler = std::set_terminate([] {
std::set_terminate([] {
std::cerr << "Expected Death. wzstring";
std::abort();
});
const auto expected = GetExpectedDeathString(terminateHandler);
// create zspan from zero terminated string
{
@@ -1017,7 +1014,7 @@ TEST(string_span_tests, wzstring)
buf[0] = L'a';
const auto workaround_macro = [&]() { const wzstring_span<> zspan({buf, 1}); };
EXPECT_DEATH(workaround_macro(), expected);
EXPECT_DEATH(workaround_macro(), deathstring);
}
// usage scenario: create zero-terminated temp file name and pass to a legacy API
@@ -1025,9 +1022,8 @@ TEST(string_span_tests, wzstring)
wchar_t buf[10];
const auto name = CreateTempNameW({buf, 10});
if (!name.empty())
{
cwzstring str = name.assume_z();
if (!name.empty()) {
cwzstring<> str = name.assume_z();
EXPECT_TRUE(generic::strnlen(str, 10) == 3);
EXPECT_TRUE(*(str + 3) == L'\0');
}
@@ -1036,11 +1032,10 @@ TEST(string_span_tests, wzstring)
TEST(string_span_tests, u16zstring)
{
const auto terminateHandler = std::set_terminate([] {
std::set_terminate([] {
std::cerr << "Expected Death. u16zstring";
std::abort();
});
const auto expected = GetExpectedDeathString(terminateHandler);
// create zspan from zero terminated string
{
@@ -1060,7 +1055,7 @@ TEST(string_span_tests, u16zstring)
buf[0] = u'a';
const auto workaround_macro = [&]() { const u16zstring_span<> zspan({buf, 1}); };
EXPECT_DEATH(workaround_macro(), expected);
EXPECT_DEATH(workaround_macro(), deathstring);
}
// usage scenario: create zero-terminated temp file name and pass to a legacy API
@@ -1068,9 +1063,8 @@ TEST(string_span_tests, u16zstring)
char16_t buf[10];
const auto name = CreateTempNameU16({buf, 10});
if (!name.empty())
{
cu16zstring str = name.assume_z();
if (!name.empty()) {
cu16zstring<> str = name.assume_z();
EXPECT_TRUE(generic::strnlen(str, 10) == 3);
EXPECT_TRUE(*(str + 3) == L'\0');
}
@@ -1079,11 +1073,10 @@ TEST(string_span_tests, u16zstring)
TEST(string_span_tests, u32zstring)
{
const auto terminateHandler = std::set_terminate([] {
std::set_terminate([] {
std::cerr << "Expected Death. u31zstring";
std::abort();
});
const auto expected = GetExpectedDeathString(terminateHandler);
// create zspan from zero terminated string
{
@@ -1103,7 +1096,7 @@ TEST(string_span_tests, u32zstring)
buf[0] = u'a';
const auto workaround_macro = [&]() { const u32zstring_span<> zspan({buf, 1}); };
EXPECT_DEATH(workaround_macro(), expected);
EXPECT_DEATH(workaround_macro(), deathstring);
}
// usage scenario: create zero-terminated temp file name and pass to a legacy API
@@ -1111,9 +1104,8 @@ TEST(string_span_tests, u32zstring)
char32_t buf[10];
const auto name = CreateTempNameU32({buf, 10});
if (!name.empty())
{
cu32zstring str = name.assume_z();
if (!name.empty()) {
cu32zstring<> str = name.assume_z();
EXPECT_TRUE(generic::strnlen(str, 10) == 3);
EXPECT_TRUE(*(str + 3) == L'\0');
}
+5 -11
View File
@@ -16,15 +16,14 @@
#include <gtest/gtest.h>
#include <gsl/gsl_util> // finally, narrow_cast
#include <gsl/gsl_narrow> // for narrow, narrowing_error
#include <algorithm> // for move
#include <complex>
#include <cstddef> // for std::ptrdiff_t
#include <functional> // for reference_wrapper, _Bind_helper<>::type
#include <gsl/narrow> // for narrow, narrowing_error
#include <gsl/util> // finally, narrow_cast
#include <limits> // for numeric_limits
#include <stdint.h> // for uint32_t, int32_t
#include <type_traits> // for is_same
#include <cstddef> // for std::ptrdiff_t
using namespace gsl;
@@ -33,7 +32,8 @@ namespace
void f(int& i) { i += 1; }
static int j = 0;
void g() { j += 1; }
} // namespace
}
TEST(utils_tests, sanity_check_for_gsl_index_typedef)
{
@@ -123,7 +123,6 @@ TEST(utils_tests, narrow_cast)
EXPECT_TRUE(uc == 44);
}
#ifndef GSL_KERNEL_MODE
TEST(utils_tests, narrow)
{
int n = 120;
@@ -145,9 +144,4 @@ TEST(utils_tests, narrow)
n = -42;
EXPECT_THROW(narrow<unsigned>(n), narrowing_error);
EXPECT_TRUE(
narrow<std::complex<float>>(std::complex<double>(4, 2)) == std::complex<float>(4, 2));
EXPECT_THROW(narrow<std::complex<float>>(std::complex<double>(4.2)), narrowing_error);
}
#endif // GSL_KERNEL_MODE