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Author SHA1 Message Date
joaquintides f864ea3ade added next node prefetching 2022-06-21 20:19:56 +02:00
118 changed files with 992 additions and 8046 deletions
+50 -49
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@@ -40,16 +40,52 @@ environment:
APPVEYOR_BUILD_WORKER_IMAGE: Visual Studio 2015
B2_TOOLSET: msvc-12.0,msvc-14.0
- FLAVOR: Visual Studio 2017
- FLAVOR: Visual Studio 2017 C++14/17
APPVEYOR_BUILD_WORKER_IMAGE: Visual Studio 2017
B2_CXXSTD: 14,17
B2_TOOLSET: msvc-14.1
- FLAVOR: Visual Studio 2017
- FLAVOR: Visual Studio 2017 C++2a Strict
APPVEYOR_BUILD_WORKER_IMAGE: Visual Studio 2017
B2_CXXSTD: latest
B2_CXXFLAGS: -permissive-
B2_CXXSTD: 2a
B2_TOOLSET: msvc-14.1
- FLAVOR: Visual Studio 2019
APPVEYOR_BUILD_WORKER_IMAGE: Visual Studio 2019
B2_CXXFLAGS: -permissive-
B2_CXXSTD: 14,17
B2_TOOLSET: msvc-14.2
- FLAVOR: Visual Studio 2022
APPVEYOR_BUILD_WORKER_IMAGE: Visual Studio 2022
B2_CXXFLAGS: -permissive-
B2_CXXSTD: 14,17
B2_TOOLSET: msvc-14.3
# C++20 Jobs split out from above due to build timeout
- FLAVOR: Visual Studio 2019 C++2a
APPVEYOR_BUILD_WORKER_IMAGE: Visual Studio 2019
B2_CXXFLAGS: -permissive-
B2_CXXSTD: 2a
B2_TOOLSET: msvc-14.2
- FLAVOR: Visual Studio 2022 C++20
APPVEYOR_BUILD_WORKER_IMAGE: Visual Studio 2022
B2_CXXFLAGS: -permissive-
B2_CXXSTD: 20
B2_TOOLSET: msvc-14.3
- FLAVOR: clang-cl C++11, C++14
APPVEYOR_BUILD_WORKER_IMAGE: Visual Studio 2019
B2_CXXSTD: 11,14
B2_TOOLSET: clang-win
# Extra job as compilation takes to long
- FLAVOR: clang-cl C++17, C++latest
APPVEYOR_BUILD_WORKER_IMAGE: Visual Studio 2019
B2_CXXSTD: 17,latest
B2_TOOLSET: clang-win
- FLAVOR: cygwin (32-bit)
APPVEYOR_BUILD_WORKER_IMAGE: Visual Studio 2017
ADDPATH: C:\cygwin\bin;
@@ -64,65 +100,30 @@ environment:
B2_CXXSTD: 03,11,14,1z
B2_TOOLSET: gcc
# (Currently) the images up to 2017 use an older Cygwin
# This tests that the library works with more recent versions
- FLAVOR: cygwin (64-bit, latest)
APPVEYOR_BUILD_WORKER_IMAGE: Visual Studio 2022
ADDPATH: C:\cygwin64\bin;
B2_ADDRESS_MODEL: 64
B2_CXXSTD: 03
B2_CXXSTD: 03,11,14,1z
B2_TOOLSET: gcc
B2_FLAGS: "include=libs/unordered/test/unordered include=libs/unordered/test/exception"
MAYFAIL: true
- FLAVOR: cygwin (64-bit, latest)
APPVEYOR_BUILD_WORKER_IMAGE: Visual Studio 2022
ADDPATH: C:\cygwin64\bin;
B2_ADDRESS_MODEL: 64
B2_CXXSTD: 11
B2_TOOLSET: gcc
B2_FLAGS: "include=libs/unordered/test/unordered include=libs/unordered/test/exception"
- FLAVOR: cygwin (64-bit, latest)
APPVEYOR_BUILD_WORKER_IMAGE: Visual Studio 2022
ADDPATH: C:\cygwin64\bin;
B2_ADDRESS_MODEL: 64
B2_CXXSTD: 14
B2_TOOLSET: gcc
B2_FLAGS: "include=libs/unordered/test/unordered include=libs/unordered/test/exception"
- FLAVOR: cygwin (64-bit, latest)
APPVEYOR_BUILD_WORKER_IMAGE: Visual Studio 2022
ADDPATH: C:\cygwin64\bin;
B2_ADDRESS_MODEL: 64
B2_CXXSTD: 1z
B2_TOOLSET: gcc
B2_FLAGS: "include=libs/unordered/test/unordered include=libs/unordered/test/exception"
- FLAVOR: mingw-w64, 32 bit
APPVEYOR_BUILD_WORKER_IMAGE: Visual Studio 2019
ADDPATH: C:\mingw-w64\i686-8.1.0-posix-dwarf-rt_v6-rev0\mingw32\bin;
B2_CXXSTD: 03,11,14
B2_TOOLSET: gcc
- FLAVOR: mingw32
APPVEYOR_BUILD_WORKER_IMAGE: Visual Studio 2015
B2_ADDRESS_MODEL: 32
- FLAVOR: mingw-w64, 32 bit
APPVEYOR_BUILD_WORKER_IMAGE: Visual Studio 2019
ADDPATH: C:\mingw-w64\i686-8.1.0-posix-dwarf-rt_v6-rev0\mingw32\bin;
B2_CXXSTD: 17,2a
ADDPATH: C:\mingw\bin;
B2_CXXSTD: 03,11,14,1z
B2_TOOLSET: gcc
B2_ADDRESS_MODEL: 32
MAYFAIL: true
- FLAVOR: mingw-w64, 64 bit
- FLAVOR: mingw64
APPVEYOR_BUILD_WORKER_IMAGE: Visual Studio 2019
ADDPATH: C:\mingw-w64\x86_64-8.1.0-posix-seh-rt_v6-rev0\mingw64\bin;
B2_CXXSTD: 03,11,14
B2_TOOLSET: gcc
B2_ADDRESS_MODEL: 64
- FLAVOR: mingw-w64, 64 bit
APPVEYOR_BUILD_WORKER_IMAGE: Visual Studio 2019
ADDPATH: C:\mingw-w64\x86_64-8.1.0-posix-seh-rt_v6-rev0\mingw64\bin;
B2_CXXSTD: 17,2a
B2_CXXSTD: 03,11,14,17,2a
B2_TOOLSET: gcc
B2_ADDRESS_MODEL: 64
#- FLAVOR: CodeCov (VS 2019)
# APPVEYOR_BUILD_WORKER_IMAGE: Visual Studio 2019
-184
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@@ -1,184 +0,0 @@
# Copyright 2022 Peter Dimov
# Distributed under the Boost Software License, Version 1.0.
# https://www.boost.org/LICENSE_1_0.txt
local library = "unordered";
local triggers =
{
branch: [ "master", "develop", "feature/*", "bugfix/*" ]
};
local ubsan = { UBSAN: '1', UBSAN_OPTIONS: 'print_stacktrace=1' };
local asan = { ASAN: '1' };
local linux_pipeline(name, image, environment, packages = "", sources = [], arch = "amd64") =
{
name: name,
kind: "pipeline",
type: "docker",
trigger: triggers,
platform:
{
os: "linux",
arch: arch
},
steps:
[
{
name: "everything",
image: image,
environment: environment,
commands:
[
'set -e',
'uname -a',
'wget -O - https://apt.llvm.org/llvm-snapshot.gpg.key | apt-key add -',
] +
(if sources != [] then [ ('apt-add-repository "' + source + '"') for source in sources ] else []) +
(if packages != "" then [ 'apt-get update', 'apt-get -y install ' + packages ] else []) +
[
'export LIBRARY=' + library,
'./.drone/drone.sh',
]
}
]
};
local macos_pipeline(name, environment, xcode_version = "12.2", osx_version = "catalina", arch = "amd64") =
{
name: name,
kind: "pipeline",
type: "exec",
trigger: triggers,
platform: {
"os": "darwin",
"arch": arch
},
node: {
"os": osx_version
},
steps: [
{
name: "everything",
environment: environment + { "DEVELOPER_DIR": "/Applications/Xcode-" + xcode_version + ".app/Contents/Developer" },
commands:
[
'uname -a',
'export LIBRARY=' + library,
'./.drone/drone.sh',
]
}
]
};
local windows_pipeline(name, image, environment, arch = "amd64") =
{
name: name,
kind: "pipeline",
type: "docker",
trigger: triggers,
platform:
{
os: "windows",
arch: arch
},
"steps":
[
{
name: "everything",
image: image,
environment: environment,
commands:
[
'echo $env:DRONE_STAGE_MACHINE',
'cmd /C .drone\\\\drone.bat ' + library,
]
}
]
};
[
linux_pipeline(
"Linux 14.04 GCC 4.4 32/64",
"cppalliance/droneubuntu1404:1",
{ TOOLSET: 'gcc', COMPILER: 'g++-4.4', CXXSTD: '98,0x', ADDRMD: '32,64' },
"g++-4.4-multilib",
[ "ppa:ubuntu-toolchain-r/test" ],
),
linux_pipeline(
"Linux 14.04 GCC 4.6 32/64",
"cppalliance/droneubuntu1404:1",
{ TOOLSET: 'gcc', COMPILER: 'g++-4.6', CXXSTD: '98,0x', ADDRMD: '32,64' },
"g++-4.6-multilib",
[ "ppa:ubuntu-toolchain-r/test" ],
),
linux_pipeline(
"Linux 14.04 GCC 4.7 32/64",
"cppalliance/droneubuntu1404:1",
{ TOOLSET: 'gcc', COMPILER: 'g++-4.7', CXXSTD: '98,0x', ADDRMD: '32,64' },
"g++-4.7-multilib",
[ "ppa:ubuntu-toolchain-r/test" ],
),
linux_pipeline(
"Linux 14.04 GCC 4.8* 32/64",
"cppalliance/droneubuntu1404:1",
{ TOOLSET: 'gcc', COMPILER: 'g++', CXXSTD: '03,11', ADDRMD: '32,64' },
),
linux_pipeline(
"Linux 14.04 GCC 4.9 32/64",
"cppalliance/droneubuntu1404:1",
{ TOOLSET: 'gcc', COMPILER: 'g++-4.9', CXXSTD: '03,11', ADDRMD: '32,64' },
"g++-4.9-multilib",
[ "ppa:ubuntu-toolchain-r/test" ],
),
linux_pipeline(
"Linux 20.04 GCC 9* ARM64 32",
"cppalliance/droneubuntu2004:multiarch",
{ TOOLSET: 'gcc', COMPILER: 'g++', CXXSTD: '03,11,14,17,2a', ADDRMD: '32' },
arch="arm64",
),
linux_pipeline(
"Linux 20.04 GCC 9* ARM64 64",
"cppalliance/droneubuntu2004:multiarch",
{ TOOLSET: 'gcc', COMPILER: 'g++', CXXSTD: '03,11,14,17,2a', ADDRMD: '64' },
arch="arm64",
),
linux_pipeline(
"Linux 20.04 GCC 9* S390x 32",
"cppalliance/droneubuntu2004:multiarch",
{ TOOLSET: 'gcc', COMPILER: 'g++', CXXSTD: '03,11,14,17,2a', ADDRMD: '32' },
arch="s390x",
),
linux_pipeline(
"Linux 20.04 GCC 9* S390x 64",
"cppalliance/droneubuntu2004:multiarch",
{ TOOLSET: 'gcc', COMPILER: 'g++', CXXSTD: '03,11,14,17,2a', ADDRMD: '64' },
arch="s390x",
),
macos_pipeline(
"MacOS 10.15 Xcode 12.2 UBSAN",
{ TOOLSET: 'clang', COMPILER: 'clang++', CXXSTD: '03,11,14,1z' } + ubsan,
),
macos_pipeline(
"MacOS 12.4 Xcode 13.4.1 ASAN",
{ TOOLSET: 'clang', COMPILER: 'clang++', CXXSTD: '03,11,14,1z' } + asan,
xcode_version = "13.4.1", osx_version = "monterey",
),
windows_pipeline(
"Windows VS2017 msvc-14.1",
"cppalliance/dronevs2017",
{ TOOLSET: 'msvc-14.1', CXXSTD: '14,17,latest' },
),
]
-23
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@@ -1,23 +0,0 @@
@REM Copyright 2022 Peter Dimov
@REM Distributed under the Boost Software License, Version 1.0.
@REM https://www.boost.org/LICENSE_1_0.txt
@ECHO ON
set LIBRARY=%1
set DRONE_BUILD_DIR=%CD%
set BOOST_BRANCH=develop
if "%DRONE_BRANCH%" == "master" set BOOST_BRANCH=master
cd ..
git clone -b %BOOST_BRANCH% --depth 1 https://github.com/boostorg/boost.git boost-root
cd boost-root
git submodule update --init tools/boostdep
xcopy /s /e /q %DRONE_BUILD_DIR% libs\%LIBRARY%\
python tools/boostdep/depinst/depinst.py %LIBRARY%
cmd /c bootstrap
b2 -d0 headers
if not "%CXXSTD%" == "" set CXXSTD=cxxstd=%CXXSTD%
if not "%ADDRMD%" == "" set ADDRMD=address-model=%ADDRMD%
b2 -j3 libs/%LIBRARY%/test toolset=%TOOLSET% %CXXSTD% %ADDRMD% variant=debug,release embed-manifest-via=linker
-25
View File
@@ -1,25 +0,0 @@
#!/bin/bash
# Copyright 2022 Peter Dimov
# Distributed under the Boost Software License, Version 1.0.
# https://www.boost.org/LICENSE_1_0.txt
set -ex
export PATH=~/.local/bin:/usr/local/bin:$PATH
DRONE_BUILD_DIR=$(pwd)
BOOST_BRANCH=develop
if [ "$DRONE_BRANCH" = "master" ]; then BOOST_BRANCH=master; fi
cd ..
git clone -b $BOOST_BRANCH --depth 1 https://github.com/boostorg/boost.git boost-root
cd boost-root
git submodule update --init tools/boostdep
cp -r $DRONE_BUILD_DIR/* libs/$LIBRARY
python tools/boostdep/depinst/depinst.py $LIBRARY
./bootstrap.sh
./b2 -d0 headers
echo "using $TOOLSET : : $COMPILER ;" > ~/user-config.jam
./b2 -j3 libs/$LIBRARY/test toolset=$TOOLSET cxxstd=$CXXSTD variant=debug,release ${ADDRMD:+address-model=$ADDRMD} ${UBSAN:+undefined-sanitizer=norecover debug-symbols=on} ${ASAN:+address-sanitizer=norecover debug-symbols=on} ${LINKFLAGS:+linkflags=$LINKFLAGS}
+17 -16
View File
@@ -42,16 +42,16 @@ jobs:
matrix:
include:
# Linux, gcc
- { compiler: gcc-4.8, cxxstd: '03,11', os: ubuntu-18.04, install: 'g++-4.8-multilib', address-model: '32,64' }
- { compiler: gcc-4.8, cxxstd: '03,11', os: ubuntu-18.04 }
- { compiler: gcc-4.9, cxxstd: '03,11', os: ubuntu-20.04, container: 'ubuntu:16.04' }
- { compiler: gcc-5, cxxstd: '03,11,14,1z', os: ubuntu-18.04, install: 'g++-5-multilib', address-model: '32,64' }
- { compiler: gcc-6, cxxstd: '03,11,14,17', os: ubuntu-18.04, install: 'g++-6-multilib', address-model: '32,64' }
- { compiler: gcc-7, cxxstd: '03,11,14,17', os: ubuntu-18.04, install: 'g++-7-multilib', address-model: '32,64' }
- { compiler: gcc-8, cxxstd: '03,11,14,17,2a', os: ubuntu-18.04, install: 'g++-8-multilib', address-model: '32,64' }
- { compiler: gcc-9, cxxstd: '03,11,14,17,2a', os: ubuntu-18.04, install: 'g++-9-multilib', address-model: '32,64' }
- { compiler: gcc-10, cxxstd: '03,11,14,17,20', os: ubuntu-20.04, install: 'g++-10-multilib', address-model: '32,64' }
- { compiler: gcc-11, cxxstd: '03,11,14,17,20', os: ubuntu-20.04, install: 'g++-11-multilib', address-model: '32,64' }
- { compiler: gcc-12, cxxstd: '03,11,14,17,20', os: ubuntu-22.04, install: 'g++-12-multilib', address-model: '32,64' }
- { compiler: gcc-5, cxxstd: '03,11,14,1z', os: ubuntu-18.04 }
- { compiler: gcc-6, cxxstd: '03,11,14,17', os: ubuntu-18.04 }
- { compiler: gcc-7, cxxstd: '03,11,14,17', os: ubuntu-18.04 }
- { compiler: gcc-8, cxxstd: '03,11,14,17,2a', os: ubuntu-18.04 }
- { compiler: gcc-9, cxxstd: '03,11,14,17,2a', os: ubuntu-18.04 }
- { compiler: gcc-10, cxxstd: '03,11,14,17,20', os: ubuntu-20.04 }
- { compiler: gcc-11, cxxstd: '03,11,14,17,20', os: ubuntu-20.04 }
- { compiler: gcc-12, cxxstd: '03,11,14,17,20', os: ubuntu-22.04 }
- { name: GCC w/ sanitizers, sanitize: yes,
compiler: gcc-12, cxxstd: '03,11,14,17,20', os: ubuntu-22.04 }
- { name: Collect coverage, coverage: yes,
@@ -65,7 +65,8 @@ jobs:
- { compiler: clang-5.0, cxxstd: '03,11,14,1z', os: ubuntu-18.04 }
- { compiler: clang-6.0, cxxstd: '03,11,14,17', os: ubuntu-18.04 }
- { compiler: clang-7, cxxstd: '03,11,14,17', os: ubuntu-18.04 }
- { compiler: clang-8, cxxstd: '03,11,14,17', os: ubuntu-18.04 }
# Note: clang-8 does not fully support C++20, so it is not compatible with some libstdc++ versions in this mode
- { compiler: clang-8, cxxstd: '03,11,14,17,2a', os: ubuntu-18.04, install: 'clang-8 g++-7', gcc_toolchain: 7 }
- { compiler: clang-9, cxxstd: '03,11,14,17,2a', os: ubuntu-20.04 }
- { compiler: clang-10, cxxstd: '03,11,14,17,20', os: ubuntu-20.04 }
- { compiler: clang-11, cxxstd: '03,11,14,17,20', os: ubuntu-20.04 }
@@ -80,7 +81,7 @@ jobs:
compiler: clang-12, cxxstd: '03,11,14,17,20', os: ubuntu-20.04, stdlib: libc++, install: 'clang-12 libc++-12-dev libc++abi-12-dev' }
# OSX, clang
- { compiler: clang, cxxstd: '03,11,14,17,2a', os: macos-11, sanitize: yes }
- { compiler: clang, cxxstd: '03,11,14,17,2a', os: macos-10.15, sanitize: yes }
timeout-minutes: 120
runs-on: ${{matrix.os}}
@@ -225,11 +226,11 @@ jobs:
fail-fast: false
matrix:
include:
- { toolset: msvc-14.0, cxxstd: '14,latest', addrmd: '32,64', os: windows-2019 }
- { toolset: msvc-14.2, cxxstd: '14,17,20,latest', addrmd: '32,64', os: windows-2019 }
- { toolset: msvc-14.3, cxxstd: '14,17,20,latest', addrmd: '32,64', os: windows-2022 }
- { toolset: clang-win, cxxstd: '14,17,latest', addrmd: '32,64', os: windows-2022 }
- { toolset: gcc, cxxstd: '03,11,14,17,2a', addrmd: '64', os: windows-2019 }
- { toolset: msvc-14.0, cxxstd: '14,latest', addrmd: '32,64', os: windows-2019 }
- { toolset: msvc-14.2, cxxstd: '14,17,20', addrmd: '32,64', os: windows-2019 }
- { toolset: msvc-14.3, cxxstd: '14,17,20,latest',addrmd: '32,64', os: windows-2022 }
- { toolset: clang-win, cxxstd: '14,17,latest', addrmd: '32,64', os: windows-2022 }
- { toolset: gcc, cxxstd: '03,11,14,17,2a', addrmd: '64', os: windows-2019 }
runs-on: ${{matrix.os}}
+1
View File
@@ -18,6 +18,7 @@ target_link_libraries(boost_unordered
Boost::config
Boost::container_hash
Boost::core
Boost::iterator
Boost::move
Boost::mp11
Boost::predef
+8 -85
View File
@@ -14,12 +14,6 @@
# include "absl/container/node_hash_map.h"
# include "absl/container/flat_hash_map.h"
#endif
#ifdef HAVE_TSL_HOPSCOTCH
# include "tsl/hopscotch_map.h"
#endif
#ifdef HAVE_TSL_ROBIN
# include "tsl/robin_map.h"
#endif
#include <unordered_map>
#include <vector>
#include <memory>
@@ -143,14 +137,7 @@ template<class Map> BOOST_NOINLINE void test_iteration( Map& map, std::chrono::s
{
if( it->second & 1 )
{
if constexpr( std::is_void_v< decltype( map.erase( it ) ) > )
{
map.erase( it++ );
}
else
{
it = map.erase( it );
}
map.erase( it++ );
}
else
{
@@ -172,9 +159,13 @@ template<class Map> BOOST_NOINLINE void test_erase( Map& map, std::chrono::stead
print_time( t1, "Consecutive erase", 0, map.size() );
for( unsigned i = 1; i <= N; ++i )
{
map.erase( indices2[ i ] );
boost::detail::splitmix64 rng;
for( unsigned i = 1; i <= N; ++i )
{
map.erase( indices2[ i ] );
}
}
print_time( t1, "Random erase", 0, map.size() );
@@ -304,26 +295,6 @@ template<class K, class V> using absl_flat_hash_map =
#endif
#ifdef HAVE_TSL_HOPSCOTCH
template<class K, class V> using tsl_hopscotch_map =
tsl::hopscotch_map<K, V, std::hash<K>, std::equal_to<K>, ::allocator< std::pair<K, V> >>;
template<class K, class V> using tsl_hopscotch_pg_map =
tsl::hopscotch_pg_map<K, V, std::hash<K>, std::equal_to<K>, ::allocator< std::pair<K, V> >>;
#endif
#ifdef HAVE_TSL_ROBIN
template<class K, class V> using tsl_robin_map =
tsl::robin_map<K, V, std::hash<K>, std::equal_to<K>, ::allocator< std::pair<K, V> >>;
template<class K, class V> using tsl_robin_pg_map =
tsl::robin_pg_map<K, V, std::hash<K>, std::equal_to<K>, ::allocator< std::pair<K, V> >>;
#endif
// fnv1a_hash
template<int Bits> struct fnv1a_hash_impl;
@@ -392,26 +363,6 @@ template<class K, class V> using absl_flat_hash_map_fnv1a =
#endif
#ifdef HAVE_TSL_HOPSCOTCH
template<class K, class V> using tsl_hopscotch_map_fnv1a =
tsl::hopscotch_map<K, V, fnv1a_hash, std::equal_to<K>, ::allocator< std::pair<K, V> >>;
template<class K, class V> using tsl_hopscotch_pg_map_fnv1a =
tsl::hopscotch_pg_map<K, V, fnv1a_hash, std::equal_to<K>, ::allocator< std::pair<K, V> >>;
#endif
#ifdef HAVE_TSL_ROBIN
template<class K, class V> using tsl_robin_map_fnv1a =
tsl::robin_map<K, V, fnv1a_hash, std::equal_to<K>, ::allocator< std::pair<K, V> >>;
template<class K, class V> using tsl_robin_pg_map_fnv1a =
tsl::robin_pg_map<K, V, fnv1a_hash, std::equal_to<K>, ::allocator< std::pair<K, V> >>;
#endif
//
int main()
@@ -431,20 +382,6 @@ int main()
#endif
#ifdef HAVE_TSL_HOPSCOTCH
test<tsl_hopscotch_map>( "tsl::hopscotch_map" );
test<tsl_hopscotch_pg_map>( "tsl::hopscotch_pg_map" );
#endif
#ifdef HAVE_TSL_ROBIN
test<tsl_robin_map>( "tsl::robin_map" );
test<tsl_robin_pg_map>( "tsl::robin_pg_map" );
#endif
#endif
test<std_unordered_map_fnv1a>( "std::unordered_map, FNV-1a" );
@@ -456,27 +393,13 @@ int main()
test<absl_node_hash_map_fnv1a>( "absl::node_hash_map, FNV-1a" );
test<absl_flat_hash_map_fnv1a>( "absl::flat_hash_map, FNV-1a" );
#endif
#ifdef HAVE_TSL_HOPSCOTCH
test<tsl_hopscotch_map_fnv1a>( "tsl::hopscotch_map, FNV-1a" );
test<tsl_hopscotch_pg_map_fnv1a>( "tsl::hopscotch_pg_map, FNV-1a" );
#endif
#ifdef HAVE_TSL_ROBIN
test<tsl_robin_map_fnv1a>( "tsl::robin_map, FNV-1a" );
test<tsl_robin_pg_map_fnv1a>( "tsl::robin_pg_map, FNV-1a" );
#endif
std::cout << "---\n\n";
for( auto const& x: times )
{
std::cout << std::setw( 31 ) << ( x.label_ + ": " ) << std::setw( 5 ) << x.time_ << " ms, " << std::setw( 9 ) << x.bytes_ << " bytes in " << x.count_ << " allocations\n";
std::cout << std::setw( 30 ) << ( x.label_ + ": " ) << std::setw( 5 ) << x.time_ << " ms, " << std::setw( 9 ) << x.bytes_ << " bytes in " << x.count_ << " allocations\n";
}
}
+8 -85
View File
@@ -14,12 +14,6 @@
# include "absl/container/node_hash_map.h"
# include "absl/container/flat_hash_map.h"
#endif
#ifdef HAVE_TSL_HOPSCOTCH
# include "tsl/hopscotch_map.h"
#endif
#ifdef HAVE_TSL_ROBIN
# include "tsl/robin_map.h"
#endif
#include <unordered_map>
#include <string_view>
#include <vector>
@@ -144,14 +138,7 @@ template<class Map> BOOST_NOINLINE void test_iteration( Map& map, std::chrono::s
{
if( it->second & 1 )
{
if constexpr( std::is_void_v< decltype( map.erase( it ) ) > )
{
map.erase( it++ );
}
else
{
it = map.erase( it );
}
map.erase( it++ );
}
else
{
@@ -173,9 +160,13 @@ template<class Map> BOOST_NOINLINE void test_erase( Map& map, std::chrono::stead
print_time( t1, "Consecutive erase", 0, map.size() );
for( unsigned i = 1; i <= N; ++i )
{
map.erase( indices2[ i ] );
boost::detail::splitmix64 rng;
for( unsigned i = 1; i <= N; ++i )
{
map.erase( indices2[ i ] );
}
}
print_time( t1, "Random erase", 0, map.size() );
@@ -305,26 +296,6 @@ template<class K, class V> using absl_flat_hash_map =
#endif
#ifdef HAVE_TSL_HOPSCOTCH
template<class K, class V> using tsl_hopscotch_map =
tsl::hopscotch_map<K, V, std::hash<K>, std::equal_to<K>, ::allocator< std::pair<K, V> >>;
template<class K, class V> using tsl_hopscotch_pg_map =
tsl::hopscotch_pg_map<K, V, std::hash<K>, std::equal_to<K>, ::allocator< std::pair<K, V> >>;
#endif
#ifdef HAVE_TSL_ROBIN
template<class K, class V> using tsl_robin_map =
tsl::robin_map<K, V, std::hash<K>, std::equal_to<K>, ::allocator< std::pair<K, V> >>;
template<class K, class V> using tsl_robin_pg_map =
tsl::robin_pg_map<K, V, std::hash<K>, std::equal_to<K>, ::allocator< std::pair<K, V> >>;
#endif
// fnv1a_hash
template<int Bits> struct fnv1a_hash_impl;
@@ -393,26 +364,6 @@ template<class K, class V> using absl_flat_hash_map_fnv1a =
#endif
#ifdef HAVE_TSL_HOPSCOTCH
template<class K, class V> using tsl_hopscotch_map_fnv1a =
tsl::hopscotch_map<K, V, fnv1a_hash, std::equal_to<K>, ::allocator< std::pair<K, V> >>;
template<class K, class V> using tsl_hopscotch_pg_map_fnv1a =
tsl::hopscotch_pg_map<K, V, fnv1a_hash, std::equal_to<K>, ::allocator< std::pair<K, V> >>;
#endif
#ifdef HAVE_TSL_ROBIN
template<class K, class V> using tsl_robin_map_fnv1a =
tsl::robin_map<K, V, fnv1a_hash, std::equal_to<K>, ::allocator< std::pair<K, V> >>;
template<class K, class V> using tsl_robin_pg_map_fnv1a =
tsl::robin_pg_map<K, V, fnv1a_hash, std::equal_to<K>, ::allocator< std::pair<K, V> >>;
#endif
//
int main()
@@ -432,20 +383,6 @@ int main()
#endif
#ifdef HAVE_TSL_HOPSCOTCH
test<tsl_hopscotch_map>( "tsl::hopscotch_map" );
test<tsl_hopscotch_pg_map>( "tsl::hopscotch_pg_map" );
#endif
#ifdef HAVE_TSL_ROBIN
test<tsl_robin_map>( "tsl::robin_map" );
test<tsl_robin_pg_map>( "tsl::robin_pg_map" );
#endif
#endif
test<std_unordered_map_fnv1a>( "std::unordered_map, FNV-1a" );
@@ -457,27 +394,13 @@ int main()
test<absl_node_hash_map_fnv1a>( "absl::node_hash_map, FNV-1a" );
test<absl_flat_hash_map_fnv1a>( "absl::flat_hash_map, FNV-1a" );
#endif
#ifdef HAVE_TSL_HOPSCOTCH
test<tsl_hopscotch_map_fnv1a>( "tsl::hopscotch_map, FNV-1a" );
test<tsl_hopscotch_pg_map_fnv1a>( "tsl::hopscotch_pg_map, FNV-1a" );
#endif
#ifdef HAVE_TSL_ROBIN
test<tsl_robin_map_fnv1a>( "tsl::robin_map, FNV-1a" );
test<tsl_robin_pg_map_fnv1a>( "tsl::robin_pg_map, FNV-1a" );
#endif
std::cout << "---\n\n";
for( auto const& x: times )
{
std::cout << std::setw( 31 ) << ( x.label_ + ": " ) << std::setw( 5 ) << x.time_ << " ms, " << std::setw( 9 ) << x.bytes_ << " bytes in " << x.count_ << " allocations\n";
std::cout << std::setw( 30 ) << ( x.label_ + ": " ) << std::setw( 5 ) << x.time_ << " ms, " << std::setw( 9 ) << x.bytes_ << " bytes in " << x.count_ << " allocations\n";
}
}
+11 -55
View File
@@ -8,19 +8,12 @@
#include <boost/multi_index_container.hpp>
#include <boost/multi_index/hashed_index.hpp>
#include <boost/multi_index/member.hpp>
#include <boost/endian/conversion.hpp>
#include <boost/core/detail/splitmix64.hpp>
#include <boost/config.hpp>
#ifdef HAVE_ABSEIL
# include "absl/container/node_hash_map.h"
# include "absl/container/flat_hash_map.h"
#endif
#ifdef HAVE_TSL_HOPSCOTCH
# include "tsl/hopscotch_map.h"
#endif
#ifdef HAVE_TSL_ROBIN
# include "tsl/robin_map.h"
#endif
#include <unordered_map>
#include <vector>
#include <memory>
@@ -69,7 +62,7 @@ static void init_indices()
for( unsigned i = 1; i <= N*2; ++i )
{
indices3.push_back( boost::endian::endian_reverse( static_cast<std::uint32_t>( i ) ) );
indices3.push_back( (std::uint32_t)i << 11 );
}
}
@@ -94,7 +87,7 @@ template<class Map> BOOST_NOINLINE void test_insert( Map& map, std::chrono::stea
map.insert( { indices3[ i ], i } );
}
print_time( t1, "Consecutive reversed insert", 0, map.size() );
print_time( t1, "Consecutive shifted insert", 0, map.size() );
std::cout << std::endl;
}
@@ -140,7 +133,7 @@ template<class Map> BOOST_NOINLINE void test_lookup( Map& map, std::chrono::stea
}
}
print_time( t1, "Consecutive reversed lookup", s, map.size() );
print_time( t1, "Consecutive shifted lookup", s, map.size() );
std::cout << std::endl;
}
@@ -153,14 +146,7 @@ template<class Map> BOOST_NOINLINE void test_iteration( Map& map, std::chrono::s
{
if( it->second & 1 )
{
if constexpr( std::is_void_v< decltype( map.erase( it ) ) > )
{
map.erase( it++ );
}
else
{
it = map.erase( it );
}
map.erase( it++ );
}
else
{
@@ -182,9 +168,13 @@ template<class Map> BOOST_NOINLINE void test_erase( Map& map, std::chrono::stead
print_time( t1, "Consecutive erase", 0, map.size() );
for( unsigned i = 1; i <= N; ++i )
{
map.erase( indices2[ i ] );
boost::detail::splitmix64 rng;
for( unsigned i = 1; i <= N; ++i )
{
map.erase( indices2[ i ] );
}
}
print_time( t1, "Random erase", 0, map.size() );
@@ -194,7 +184,7 @@ template<class Map> BOOST_NOINLINE void test_erase( Map& map, std::chrono::stead
map.erase( indices3[ i ] );
}
print_time( t1, "Consecutive reversed erase", 0, map.size() );
print_time( t1, "Consecutive shifted erase", 0, map.size() );
std::cout << std::endl;
}
@@ -321,26 +311,6 @@ template<class K, class V> using absl_flat_hash_map =
#endif
#ifdef HAVE_TSL_HOPSCOTCH
template<class K, class V> using tsl_hopscotch_map =
tsl::hopscotch_map<K, V, std::hash<K>, std::equal_to<K>, ::allocator< std::pair<K, V> >>;
template<class K, class V> using tsl_hopscotch_pg_map =
tsl::hopscotch_pg_map<K, V, std::hash<K>, std::equal_to<K>, ::allocator< std::pair<K, V> >>;
#endif
#ifdef HAVE_TSL_ROBIN
template<class K, class V> using tsl_robin_map =
tsl::robin_map<K, V, std::hash<K>, std::equal_to<K>, ::allocator< std::pair<K, V> >>;
template<class K, class V> using tsl_robin_pg_map =
tsl::robin_pg_map<K, V, std::hash<K>, std::equal_to<K>, ::allocator< std::pair<K, V> >>;
#endif
int main()
{
init_indices();
@@ -354,20 +324,6 @@ int main()
test<absl_node_hash_map>( "absl::node_hash_map" );
test<absl_flat_hash_map>( "absl::flat_hash_map" );
#endif
#ifdef HAVE_TSL_HOPSCOTCH
test<tsl_hopscotch_map>( "tsl::hopscotch_map" );
test<tsl_hopscotch_pg_map>( "tsl::hopscotch_pg_map" );
#endif
#ifdef HAVE_TSL_ROBIN
test<tsl_robin_map>( "tsl::robin_map" );
test<tsl_robin_pg_map>( "tsl::robin_pg_map" );
#endif
std::cout << "---\n\n";
+11 -55
View File
@@ -8,19 +8,12 @@
#include <boost/multi_index_container.hpp>
#include <boost/multi_index/hashed_index.hpp>
#include <boost/multi_index/member.hpp>
#include <boost/endian/conversion.hpp>
#include <boost/core/detail/splitmix64.hpp>
#include <boost/config.hpp>
#ifdef HAVE_ABSEIL
# include "absl/container/node_hash_map.h"
# include "absl/container/flat_hash_map.h"
#endif
#ifdef HAVE_TSL_HOPSCOTCH
# include "tsl/hopscotch_map.h"
#endif
#ifdef HAVE_TSL_ROBIN
# include "tsl/robin_map.h"
#endif
#include <unordered_map>
#include <vector>
#include <memory>
@@ -69,7 +62,7 @@ static void init_indices()
for( unsigned i = 1; i <= N*2; ++i )
{
indices3.push_back( boost::endian::endian_reverse( static_cast<std::uint64_t>( i ) ) );
indices3.push_back( (std::uint64_t)i << 40 );
}
}
@@ -94,7 +87,7 @@ template<class Map> BOOST_NOINLINE void test_insert( Map& map, std::chrono::stea
map.insert( { indices3[ i ], i } );
}
print_time( t1, "Consecutive reversed insert", 0, map.size() );
print_time( t1, "Consecutive shifted insert", 0, map.size() );
std::cout << std::endl;
}
@@ -140,7 +133,7 @@ template<class Map> BOOST_NOINLINE void test_lookup( Map& map, std::chrono::stea
}
}
print_time( t1, "Consecutive reversed lookup", s, map.size() );
print_time( t1, "Consecutive shifted lookup", s, map.size() );
std::cout << std::endl;
}
@@ -153,14 +146,7 @@ template<class Map> BOOST_NOINLINE void test_iteration( Map& map, std::chrono::s
{
if( it->second & 1 )
{
if constexpr( std::is_void_v< decltype( map.erase( it ) ) > )
{
map.erase( it++ );
}
else
{
it = map.erase( it );
}
map.erase( it++ );
}
else
{
@@ -182,9 +168,13 @@ template<class Map> BOOST_NOINLINE void test_erase( Map& map, std::chrono::stead
print_time( t1, "Consecutive erase", 0, map.size() );
for( unsigned i = 1; i <= N; ++i )
{
map.erase( indices2[ i ] );
boost::detail::splitmix64 rng;
for( unsigned i = 1; i <= N; ++i )
{
map.erase( indices2[ i ] );
}
}
print_time( t1, "Random erase", 0, map.size() );
@@ -194,7 +184,7 @@ template<class Map> BOOST_NOINLINE void test_erase( Map& map, std::chrono::stead
map.erase( indices3[ i ] );
}
print_time( t1, "Consecutive reversed erase", 0, map.size() );
print_time( t1, "Consecutive shifted erase", 0, map.size() );
std::cout << std::endl;
}
@@ -321,26 +311,6 @@ template<class K, class V> using absl_flat_hash_map =
#endif
#ifdef HAVE_TSL_HOPSCOTCH
template<class K, class V> using tsl_hopscotch_map =
tsl::hopscotch_map<K, V, std::hash<K>, std::equal_to<K>, ::allocator< std::pair<K, V> >>;
template<class K, class V> using tsl_hopscotch_pg_map =
tsl::hopscotch_pg_map<K, V, std::hash<K>, std::equal_to<K>, ::allocator< std::pair<K, V> >>;
#endif
#ifdef HAVE_TSL_ROBIN
template<class K, class V> using tsl_robin_map =
tsl::robin_map<K, V, std::hash<K>, std::equal_to<K>, ::allocator< std::pair<K, V> >>;
template<class K, class V> using tsl_robin_pg_map =
tsl::robin_pg_map<K, V, std::hash<K>, std::equal_to<K>, ::allocator< std::pair<K, V> >>;
#endif
int main()
{
init_indices();
@@ -354,20 +324,6 @@ int main()
test<absl_node_hash_map>( "absl::node_hash_map" );
test<absl_flat_hash_map>( "absl::flat_hash_map" );
#endif
#ifdef HAVE_TSL_HOPSCOTCH
test<tsl_hopscotch_map>( "tsl::hopscotch_map" );
test<tsl_hopscotch_pg_map>( "tsl::hopscotch_pg_map" );
#endif
#ifdef HAVE_TSL_ROBIN
test<tsl_robin_map>( "tsl::robin_map" );
test<tsl_robin_pg_map>( "tsl::robin_pg_map" );
#endif
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+1 -7
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@@ -1566,9 +1566,7 @@ Effects:;; Changes the container's maximum load factor, using `z` as a hint.
void rehash(size_type n);
```
Changes the number of buckets so that there are at least `n` buckets, and so that the load factor is less than or equal to the maximum load factor. When applicable, this will either grow or shrink the `bucket_count()` associated with the container.
When `size() == 0`, `rehash(0)` will deallocate the underlying buckets array.
Changes the number of buckets so that there at least `n` buckets, and so that the load factor is less than the maximum load factor.
Invalidates iterators, and changes the order of elements. Pointers and references to elements are not invalidated.
@@ -1582,10 +1580,6 @@ Throws:;; The function has no effect if an exception is thrown, unless it is thr
void reserve(size_type n);
```
Equivalent to `a.rehash(ceil(n / a.max_load_factor()))`, or `a.rehash(1)` if `n > 0` and `a.max_load_factor() == std::numeric_limits<float>::infinity()`.
Similar to `rehash`, this function can be used to grow or shrink the number of buckets in the container.
Invalidates iterators, and changes the order of elements. Pointers and references to elements are not invalidated.
[horizontal]
+1 -7
View File
@@ -1345,9 +1345,7 @@ Effects:;; Changes the container's maximum load factor, using `z` as a hint.
void rehash(size_type n);
```
Changes the number of buckets so that there are at least `n` buckets, and so that the load factor is less than or equal to the maximum load factor. When applicable, this will either grow or shrink the `bucket_count()` associated with the container.
When `size() == 0`, `rehash(0)` will deallocate the underlying buckets array.
Changes the number of buckets so that there at least `n` buckets, and so that the load factor is less than the maximum load factor.
Invalidates iterators, and changes the order of elements. Pointers and references to elements are not invalidated.
@@ -1361,10 +1359,6 @@ Throws:;; The function has no effect if an exception is thrown, unless it is thr
void reserve(size_type n);
```
Equivalent to `a.rehash(ceil(n / a.max_load_factor()))`, or `a.rehash(1)` if `n > 0` and `a.max_load_factor() == std::numeric_limits<float>::infinity()`.
Similar to `rehash`, this function can be used to grow or shrink the number of buckets in the container.
Invalidates iterators, and changes the order of elements. Pointers and references to elements are not invalidated.
[horizontal]
+1 -8
View File
@@ -1306,9 +1306,7 @@ Effects:;; Changes the container's maximum load factor, using `z` as a hint.
void rehash(size_type n);
```
Changes the number of buckets so that there are at least `n` buckets, and so that the load factor is less than or equal to the maximum load factor. When applicable, this will either grow or shrink the `bucket_count()` associated with the container.
When `size() == 0`, `rehash(0)` will deallocate the underlying buckets array.
Changes the number of buckets so that there at least `n` buckets, and so that the load factor is less than the maximum load factor.
Invalidates iterators, and changes the order of elements. Pointers and references to elements are not invalidated.
@@ -1322,16 +1320,11 @@ Throws:;; The function has no effect if an exception is thrown, unless it is thr
void reserve(size_type n);
```
Equivalent to `a.rehash(ceil(n / a.max_load_factor()))`, or `a.rehash(1)` if `n > 0` and `a.max_load_factor() == std::numeric_limits<float>::infinity()`.
Similar to `rehash`, this function can be used to grow or shrink the number of buckets in the container.
Invalidates iterators, and changes the order of elements. Pointers and references to elements are not invalidated.
[horizontal]
Throws:;; The function has no effect if an exception is thrown, unless it is thrown by the container's hash function or comparison function.
---
=== Equality Comparisons
+1 -8
View File
@@ -1329,9 +1329,7 @@ Effects:;; Changes the container's maximum load factor, using `z` as a hint.
void rehash(size_type n);
```
Changes the number of buckets so that there are at least `n` buckets, and so that the load factor is less than or equal to the maximum load factor. When applicable, this will either grow or shrink the `bucket_count()` associated with the container.
When `size() == 0`, `rehash(0)` will deallocate the underlying buckets array.
Changes the number of buckets so that there at least `n` buckets, and so that the load factor is less than the maximum load factor.
Invalidates iterators, and changes the order of elements. Pointers and references to elements are not invalidated.
@@ -1345,16 +1343,11 @@ Throws:;; The function has no effect if an exception is thrown, unless it is thr
void reserve(size_type n);
```
Equivalent to `a.rehash(ceil(n / a.max_load_factor()))`, or `a.rehash(1)` if `n > 0` and `a.max_load_factor() == std::numeric_limits<float>::infinity()`.
Similar to `rehash`, this function can be used to grow or shrink the number of buckets in the container.
Invalidates iterators, and changes the order of elements. Pointers and references to elements are not invalidated.
[horizontal]
Throws:;; The function has no effect if an exception is thrown, unless it is thrown by the container's hash function or comparison function.
=== Equality Comparisons
==== operator==
+303 -143
View File
@@ -113,7 +113,10 @@ to normal separate chaining implementations.
*/
#include <boost/unordered/detail/prime_fmod.hpp>
#include <boost/config.hpp>
#if defined(BOOST_HAS_PRAGMA_ONCE)
#pragma once
#endif
#include <boost/core/addressof.hpp>
#include <boost/core/allocator_access.hpp>
@@ -121,20 +124,289 @@ to normal separate chaining implementations.
#include <boost/core/empty_value.hpp>
#include <boost/core/no_exceptions_support.hpp>
#include <boost/cstdint.hpp>
// `iterator_facade` has transitive dependencies on Boost.MPL; one of the
// headers is generating a `-Wsign-conversion` warning which has an open PR to
// address the issue but merging does not seem likely so for now create a rote
// workaround.
//
// TODO: eventually remove this once MPL is fixed or we decide to migrate off of
// the Boost.Iterator dependency.
//
#if defined(BOOST_GCC)
#pragma GCC diagnostic push
#pragma GCC diagnostic ignored "-Wsign-conversion"
#pragma GCC diagnostic ignored "-Wconversion"
#include <boost/iterator/iterator_facade.hpp>
#pragma GCC diagnostic pop
#else
#include <boost/iterator/iterator_facade.hpp>
#endif
#include <boost/move/core.hpp>
#include <boost/move/utility_core.hpp>
#include <boost/preprocessor/seq/enum.hpp>
#include <boost/preprocessor/seq/for_each.hpp>
#include <boost/preprocessor/seq/size.hpp>
#include <boost/swap.hpp>
#include <boost/type_traits/aligned_storage.hpp>
#include <boost/type_traits/alignment_of.hpp>
#include <boost/config.hpp>
#include <iterator>
#include <climits>
namespace boost {
namespace unordered {
namespace detail {
#if defined(SIZE_MAX)
#if ((((SIZE_MAX >> 16) >> 16) >> 16) >> 15) != 0
#define BOOST_UNORDERED_FCA_HAS_64B_SIZE_T
#endif
#elif defined(UINTPTR_MAX) /* used as proxy for std::size_t */
#if ((((UINTPTR_MAX >> 16) >> 16) >> 16) >> 15) != 0
#define BOOST_UNORDERED_FCA_HAS_64B_SIZE_T
#endif
#endif
#if !defined(BOOST_NO_INT64_T) && \
(defined(BOOST_HAS_INT128) || (defined(BOOST_MSVC) && defined(_WIN64)))
#define BOOST_UNORDERED_FCA_FASTMOD_SUPPORT
#endif
template <class = void> struct prime_fmod_size
{
// Because we compile for C++03, we don't have access to any inline
// initialization for array data members so the definitions must exist
// out-of-line. To keep the library header-only, we introduce a dummy
// template parameter which permits the definition to be included in
// multiple TUs without conflict.
//
static std::size_t sizes[];
static std::size_t const sizes_len;
static std::size_t (*positions[])(std::size_t);
#if defined(BOOST_UNORDERED_FCA_FASTMOD_SUPPORT)
static uint64_t inv_sizes32[];
static std::size_t const inv_sizes32_len;
#endif /* defined(BOOST_UNORDERED_FCA_FASTMOD_SUPPORT) */
static inline std::size_t size_index(std::size_t n)
{
std::size_t i = 0;
for (; i < (sizes_len - 1); ++i) {
if (sizes[i] >= n) {
break;
}
}
return i;
}
static inline std::size_t size(std::size_t size_index)
{
return sizes[size_index];
}
template <std::size_t Size> static std::size_t modulo(std::size_t hash)
{
return hash % Size;
}
#if defined(BOOST_UNORDERED_FCA_FASTMOD_SUPPORT)
// We emulate the techniques taken from:
// Faster Remainder by Direct Computation: Applications to Compilers and
// Software Libraries
// https://arxiv.org/abs/1902.01961
//
// In essence, use fancy math to directly calculate the remainder (aka
// modulo) exploiting how compilers transform division
//
#if defined(_MSC_VER)
static inline uint64_t get_remainder(uint64_t fractional, uint32_t d)
{
// use fancy msvc instrinsic when available instead of using `>> 64`
//
return __umulh(fractional, d);
}
#else
static inline uint64_t get_remainder(uint64_t fractional, uint32_t d)
{
__extension__ typedef unsigned __int128 uint128;
return static_cast<uint64_t>(((uint128)fractional * d) >> 64);
}
#endif /* defined(_MSC_VER) */
static inline uint32_t fast_modulo(uint32_t a, uint64_t M, uint32_t d)
{
uint64_t fractional = M * a;
return (uint32_t)(get_remainder(fractional, d));
}
#endif /* defined(BOOST_UNORDERED_FCA_FASTMOD_SUPPORT) */
static inline std::size_t position(
std::size_t hash, std::size_t size_index)
{
#if defined(BOOST_UNORDERED_FCA_FASTMOD_SUPPORT)
#if defined(BOOST_UNORDERED_FCA_HAS_64B_SIZE_T)
std::size_t sizes_under_32bit = inv_sizes32_len;
if (BOOST_LIKELY(size_index < sizes_under_32bit)) {
return fast_modulo(uint32_t(hash) + uint32_t(hash >> 32),
inv_sizes32[size_index], uint32_t(sizes[size_index]));
} else {
return positions[size_index - sizes_under_32bit](hash);
}
#else
return fast_modulo(
hash, inv_sizes32[size_index], uint32_t(sizes[size_index]));
#endif /* defined(BOOST_UNORDERED_FCA_HAS_64B_SIZE_T) */
#else
return positions[size_index](hash);
#endif /* defined(BOOST_UNORDERED_FCA_FASTMOD_SUPPORT) */
}
}; // prime_fmod_size
#define BOOST_UNORDERED_PRIME_FMOD_SIZES_32BIT_INCOMPLETE \
(13ul)(29ul)(53ul)(97ul)(193ul)(389ul)(769ul)(1543ul)(3079ul)(6151ul)( \
12289ul)(24593ul)(49157ul)(98317ul)(196613ul)(393241ul)(786433ul)( \
1572869ul)(3145739ul)(6291469ul)(12582917ul)(25165843ul)(50331653ul)( \
100663319ul)(201326611ul)(402653189ul)(805306457ul)(1610612741ul)( \
3221225473ul)
#if !defined(BOOST_UNORDERED_FCA_HAS_64B_SIZE_T)
#define BOOST_UNORDERED_PRIME_FMOD_SIZES_32BIT \
BOOST_UNORDERED_PRIME_FMOD_SIZES_32BIT_INCOMPLETE(4294967291ul)
#define BOOST_UNORDERED_PRIME_FMOD_SIZES_64BIT
#else
#define BOOST_UNORDERED_PRIME_FMOD_SIZES_32BIT \
BOOST_UNORDERED_PRIME_FMOD_SIZES_32BIT_INCOMPLETE
// The original sequence here is this:
// (6442450939ul)
// (12884901893ul)
// (25769803751ul)
// (51539607551ul)
// (103079215111ul)
// (206158430209ul)
// (412316860441ul)
// (824633720831ul)
// (1649267441651ul)
//
// but this causes problems on versions of mingw where the `long` type is 32
// bits, even for 64-bit targets. We work around this by replacing the literals
// with compile-time arithmetic, using bitshifts to reconstruct the number.
//
// clang-format off
#define BOOST_UNORDERED_PRIME_FMOD_SIZES_64BIT \
((boost::ulong_long_type(1ul) << 32) + boost::ulong_long_type(2147483643ul)) \
((boost::ulong_long_type(3ul) << 32) + boost::ulong_long_type(5ul)) \
((boost::ulong_long_type(5ul) << 32) + boost::ulong_long_type(4294967271ul)) \
((boost::ulong_long_type(11ul) << 32) + boost::ulong_long_type(4294967295ul)) \
((boost::ulong_long_type(24ul) << 32) + boost::ulong_long_type(7ul)) \
((boost::ulong_long_type(48ul) << 32) + boost::ulong_long_type(1ul)) \
((boost::ulong_long_type(96ul) << 32) + boost::ulong_long_type(25ul)) \
((boost::ulong_long_type(191ul) << 32) + boost::ulong_long_type(4294967295ul)) \
((boost::ulong_long_type(383ul) << 32) + boost::ulong_long_type(4294967283ul))
// clang-format on
#endif /* BOOST_UNORDERED_FCA_HAS_64B_SIZE_T */
#define BOOST_UNORDERED_PRIME_FMOD_SIZES \
BOOST_UNORDERED_PRIME_FMOD_SIZES_32BIT BOOST_UNORDERED_PRIME_FMOD_SIZES_64BIT
template <class T>
std::size_t prime_fmod_size<T>::sizes[] = {
BOOST_PP_SEQ_ENUM(BOOST_UNORDERED_PRIME_FMOD_SIZES)};
template <class T>
std::size_t const prime_fmod_size<T>::sizes_len = BOOST_PP_SEQ_SIZE(
BOOST_UNORDERED_PRIME_FMOD_SIZES);
// Similarly here, we have to re-express the integer initialization using
// arithmetic such that each literal can fit in a 32-bit value.
//
#if defined(BOOST_UNORDERED_FCA_FASTMOD_SUPPORT)
// clang-format off
template <class T>
uint64_t prime_fmod_size<T>::inv_sizes32[] = {
(boost::ulong_long_type(330382099ul) << 32) + boost::ulong_long_type(2973438898ul) /* = 1418980313362273202 */,
(boost::ulong_long_type(148102320ul) << 32) + boost::ulong_long_type(2369637129ul) /* = 636094623231363849 */,
(boost::ulong_long_type(81037118ul) << 32) + boost::ulong_long_type(3403558990ul) /* = 348051774975651918 */,
(boost::ulong_long_type(44278013ul) << 32) + boost::ulong_long_type(1549730468ul) /* = 190172619316593316 */,
(boost::ulong_long_type(22253716ul) << 32) + boost::ulong_long_type(2403401389ul) /* = 95578984837873325 */,
(boost::ulong_long_type(11041047ul) << 32) + boost::ulong_long_type(143533612ul) /* = 47420935922132524 */,
(boost::ulong_long_type(5585133ul) << 32) + boost::ulong_long_type(106117528ul) /* = 23987963684927896 */,
(boost::ulong_long_type(2783517ul) << 32) + boost::ulong_long_type(1572687312ul) /* = 11955116055547344 */,
(boost::ulong_long_type(1394922ul) << 32) + boost::ulong_long_type(3428720239ul) /* = 5991147799191151 */,
(boost::ulong_long_type(698255ul) << 32) + boost::ulong_long_type(552319807ul) /* = 2998982941588287 */,
(boost::ulong_long_type(349496ul) << 32) + boost::ulong_long_type(3827689953ul) /* = 1501077717772769 */,
(boost::ulong_long_type(174641ul) << 32) + boost::ulong_long_type(3699438549ul) /* = 750081082979285 */,
(boost::ulong_long_type(87372ul) << 32) + boost::ulong_long_type(1912757574ul) /* = 375261795343686 */,
(boost::ulong_long_type(43684ul) << 32) + boost::ulong_long_type(3821029929ul) /* = 187625172388393 */,
(boost::ulong_long_type(21844ul) << 32) + boost::ulong_long_type(3340590800ul) /* = 93822606204624 */,
(boost::ulong_long_type(10921ul) << 32) + boost::ulong_long_type(4175852267ul) /* = 46909513691883 */,
(boost::ulong_long_type(5461ul) << 32) + boost::ulong_long_type(1401829642ul) /* = 23456218233098 */,
(boost::ulong_long_type(2730ul) << 32) + boost::ulong_long_type(2826028947ul) /* = 11728086747027 */,
(boost::ulong_long_type(1365ul) << 32) + boost::ulong_long_type(1411150351ul) /* = 5864041509391 */,
(boost::ulong_long_type(682ul) << 32) + boost::ulong_long_type(2857253105ul) /* = 2932024948977 */,
(boost::ulong_long_type(341ul) << 32) + boost::ulong_long_type(1431073224ul) /* = 1466014921160 */,
(boost::ulong_long_type(170ul) << 32) + boost::ulong_long_type(2862758116ul) /* = 733007198436 */,
(boost::ulong_long_type(85ul) << 32) + boost::ulong_long_type(1431619357ul) /* = 366503839517 */,
(boost::ulong_long_type(42ul) << 32) + boost::ulong_long_type(2863269661ul) /* = 183251896093 */,
(boost::ulong_long_type(21ul) << 32) + boost::ulong_long_type(1431647119ul) /* = 91625960335 */,
(boost::ulong_long_type(10ul) << 32) + boost::ulong_long_type(2863310962ul) /* = 45812983922 */,
(boost::ulong_long_type(5ul) << 32) + boost::ulong_long_type(1431653234ul) /* = 22906489714 */,
(boost::ulong_long_type(2ul) << 32) + boost::ulong_long_type(2863311496ul) /* = 11453246088 */,
(boost::ulong_long_type(1ul) << 32) + boost::ulong_long_type(1431655764ul) /* = 5726623060 */,
#if !defined(BOOST_UNORDERED_FCA_HAS_64B_SIZE_T)
};
#else
(boost::ulong_long_type(1ul) << 32) + boost::ulong_long_type(6ul) /* 4294967302 */
};
// clang-format on
#endif /* !defined(BOOST_UNORDERED_FCA_HAS_64B_SIZE_T) */
template <class T>
std::size_t const
prime_fmod_size<T>::inv_sizes32_len = sizeof(inv_sizes32) /
sizeof(inv_sizes32[0]);
#endif /* defined(BOOST_UNORDERED_FCA_FASTMOD_SUPPORT) */
#define BOOST_UNORDERED_PRIME_FMOD_POSITIONS_ELEMENT(z, _, n) \
prime_fmod_size<T>::template modulo<n>,
template <class T>
std::size_t (*prime_fmod_size<T>::positions[])(std::size_t) = {
#if !defined(BOOST_UNORDERED_FCA_FASTMOD_SUPPORT)
BOOST_PP_SEQ_FOR_EACH(BOOST_UNORDERED_PRIME_FMOD_POSITIONS_ELEMENT, ~,
BOOST_UNORDERED_PRIME_FMOD_SIZES_32BIT)
#endif
#if defined(BOOST_UNORDERED_FCA_HAS_64B_SIZE_T)
BOOST_PP_SEQ_FOR_EACH(BOOST_UNORDERED_PRIME_FMOD_POSITIONS_ELEMENT, ~,
BOOST_UNORDERED_PRIME_FMOD_SIZES_64BIT)
#endif
};
#undef BOOST_UNORDERED_PRIME_FMOD_POSITIONS_ELEMENT
#undef BOOST_UNORDERED_PRIME_FMOD_SIZES
#undef BOOST_UNORDERED_PRIME_FMOD_SIZES_64BIT
#undef BOOST_UNORDERED_PRIME_FMOD_SIZES_34BIT
#undef BOOST_UNORDERED_PRIME_FMOD_SIZES_34BIT_INCOMPLETE
#ifdef BOOST_UNORDERED_FCA_FASTMOD_SUPPORT
#undef BOOST_UNORDERED_FCA_FASTMOD_SUPPORT
#endif
#ifdef BOOST_UNORDERED_FCA_HAS_64B_SIZE_T
#undef BOOST_UNORDERED_FCA_HAS_64B_SIZE_T
#endif
template <class ValueType, class VoidPtr> struct node
{
typedef ValueType value_type;
@@ -200,7 +472,10 @@ namespace boost {
return ~(~(std::size_t(0)) >> (sizeof(std::size_t) * 8 - n));
}
template <class Bucket> struct grouped_bucket_iterator
template <class Bucket>
struct grouped_bucket_iterator
: public boost::iterator_facade<grouped_bucket_iterator<Bucket>,
Bucket, boost::forward_traversal_tag>
{
public:
typedef typename Bucket::bucket_pointer bucket_pointer;
@@ -208,12 +483,8 @@ namespace boost {
typename boost::pointer_traits<bucket_pointer>::template rebind_to<
bucket_group<Bucket> >::type bucket_group_pointer;
typedef Bucket value_type;
typedef typename boost::pointer_traits<bucket_pointer>::difference_type
difference_type;
typedef Bucket& reference;
typedef Bucket* pointer;
typedef std::forward_iterator_tag iterator_category;
private:
bucket_pointer p;
@@ -222,38 +493,9 @@ namespace boost {
public:
grouped_bucket_iterator() : p(), pbg() {}
reference operator*() const BOOST_NOEXCEPT { return dereference(); }
pointer operator->() const BOOST_NOEXCEPT
{
return boost::to_address(p);
}
grouped_bucket_iterator& operator++() BOOST_NOEXCEPT
{
increment();
return *this;
}
grouped_bucket_iterator operator++(int) BOOST_NOEXCEPT
{
grouped_bucket_iterator old = *this;
increment();
return old;
}
bool operator==(
grouped_bucket_iterator const& other) const BOOST_NOEXCEPT
{
return equal(other);
}
bool operator!=(
grouped_bucket_iterator const& other) const BOOST_NOEXCEPT
{
return !equal(other);
}
private:
friend class boost::iterator_core_access;
template <typename, typename, typename>
friend class grouped_bucket_array;
@@ -291,8 +533,12 @@ namespace boost {
template <class Node> struct const_grouped_local_bucket_iterator;
template <class Node> struct grouped_local_bucket_iterator
template <class Node>
struct grouped_local_bucket_iterator
: public boost::iterator_facade<grouped_local_bucket_iterator<Node>,
typename Node::value_type, boost::forward_traversal_tag>
{
typedef typename Node::node_pointer node_pointer;
public:
@@ -305,39 +551,9 @@ namespace boost {
grouped_local_bucket_iterator() : p() {}
reference operator*() const BOOST_NOEXCEPT { return dereference(); }
pointer operator->() const BOOST_NOEXCEPT
{
return boost::to_address(p);
}
grouped_local_bucket_iterator& operator++() BOOST_NOEXCEPT
{
increment();
return *this;
}
grouped_local_bucket_iterator operator++(int) BOOST_NOEXCEPT
{
grouped_local_bucket_iterator old = *this;
increment();
return old;
}
bool operator==(
grouped_local_bucket_iterator const& other) const BOOST_NOEXCEPT
{
return equal(other);
}
bool operator!=(
grouped_local_bucket_iterator const& other) const BOOST_NOEXCEPT
{
return !equal(other);
}
private:
friend class boost::iterator_core_access;
template <typename, typename, typename>
friend class grouped_bucket_array;
@@ -357,7 +573,11 @@ namespace boost {
node_pointer p;
};
template <class Node> struct const_grouped_local_bucket_iterator
template <class Node>
struct const_grouped_local_bucket_iterator
: public boost::iterator_facade<
const_grouped_local_bucket_iterator<Node>,
typename Node::value_type const, boost::forward_traversal_tag>
{
typedef typename Node::node_pointer node_pointer;
@@ -376,39 +596,9 @@ namespace boost {
{
}
reference operator*() const BOOST_NOEXCEPT { return dereference(); }
pointer operator->() const BOOST_NOEXCEPT
{
return boost::to_address(p);
}
const_grouped_local_bucket_iterator& operator++() BOOST_NOEXCEPT
{
increment();
return *this;
}
const_grouped_local_bucket_iterator operator++(int) BOOST_NOEXCEPT
{
const_grouped_local_bucket_iterator old = *this;
increment();
return old;
}
bool operator==(
const_grouped_local_bucket_iterator const& other) const BOOST_NOEXCEPT
{
return equal(other);
}
bool operator!=(
const_grouped_local_bucket_iterator const& other) const BOOST_NOEXCEPT
{
return !equal(other);
}
private:
friend class boost::iterator_core_access;
template <typename, typename, typename>
friend class grouped_bucket_array;
@@ -494,33 +684,11 @@ namespace boost {
group_pointer groups;
public:
static std::size_t bucket_count_for(std::size_t num_buckets)
{
if (num_buckets == 0) {
return 0;
}
return size_policy::size(size_policy::size_index(num_buckets));
}
grouped_bucket_array()
: empty_value<node_allocator_type>(
empty_init_t(), node_allocator_type()),
size_index_(0), size_(0), buckets(), groups()
{
}
grouped_bucket_array(size_type n, const Allocator& al)
: empty_value<node_allocator_type>(empty_init_t(), al),
size_index_(0),
size_(0), buckets(), groups()
size_index_(size_policy::size_index(n)),
size_(size_policy::size(size_index_)), buckets(), groups()
{
if (n == 0) {
return;
}
size_index_ = size_policy::size_index(n);
size_ = size_policy::size(size_index_);
bucket_allocator_type bucket_alloc = this->get_bucket_allocator();
group_allocator_type group_alloc = this->get_group_allocator();
@@ -668,7 +836,7 @@ namespace boost {
size_type bucket_count() const { return size_; }
iterator begin() const { return size_ == 0 ? end() : ++at(size_); }
iterator begin() const { return ++at(size_); }
iterator end() const
{
@@ -682,10 +850,6 @@ namespace boost {
local_iterator begin(size_type n) const
{
if (size_ == 0) {
return this->end(n);
}
return local_iterator(
(buckets + static_cast<difference_type>(n))->next);
}
@@ -696,16 +860,12 @@ namespace boost {
iterator at(size_type n) const
{
if (size_ > 0) {
std::size_t const N = group::N;
std::size_t const N = group::N;
iterator pbg(buckets + static_cast<difference_type>(n),
groups + static_cast<difference_type>(n / N));
iterator pbg(buckets + static_cast<difference_type>(n),
groups + static_cast<difference_type>(n / N));
return pbg;
} else {
return this->end();
}
return pbg;
}
span<Bucket> raw()
File diff suppressed because it is too large Load Diff
+127 -187
View File
@@ -15,6 +15,7 @@
#endif
#include <boost/assert.hpp>
#include <boost/config.hpp>
#include <boost/core/allocator_traits.hpp>
#include <boost/core/bit.hpp>
#include <boost/core/no_exceptions_support.hpp>
@@ -47,7 +48,6 @@
#include <boost/type_traits/make_void.hpp>
#include <boost/type_traits/remove_const.hpp>
#include <boost/unordered/detail/fca.hpp>
#include <boost/unordered/detail/type_traits.hpp>
#include <boost/unordered/detail/fwd.hpp>
#include <boost/utility/addressof.hpp>
#include <boost/utility/enable_if.hpp>
@@ -60,6 +60,15 @@
#include <type_traits>
#endif
#if __SSE2__
#include <emmintrin.h>
#endif
#if defined(__SSE2__) || \
defined(_M_X64) || (defined(_M_IX86_FP) && _M_IX86_FP >= 2)
#define BOOST_UNORDERED_SSE2_SUPPORTED
#endif
////////////////////////////////////////////////////////////////////////////////
// Configuration
//
@@ -201,7 +210,7 @@ namespace boost {
template <typename Types> struct table;
static const float minimum_max_load_factor = 1e-3f;
static const std::size_t default_bucket_count = 0;
static const std::size_t default_bucket_count = 11;
struct move_tag
{
@@ -619,6 +628,39 @@ namespace boost {
#endif
////////////////////////////////////////////////////////////////////////////
// Type checkers used for the transparent member functions added by C++20 and up
template <class, class = void> struct is_transparent : public false_type
{
};
template <class T>
struct is_transparent<T,
typename boost::make_void<typename T::is_transparent>::type>
: public true_type
{
};
template <class, class A, class B> struct are_transparent
{
static bool const value =
is_transparent<A>::value && is_transparent<B>::value;
};
template <class Key, class UnorderedMap> struct transparent_non_iterable
{
typedef typename UnorderedMap::hasher hash;
typedef typename UnorderedMap::key_equal key_equal;
typedef typename UnorderedMap::iterator iterator;
typedef typename UnorderedMap::const_iterator const_iterator;
static bool const value =
are_transparent<Key, hash, key_equal>::value &&
!boost::is_convertible<Key, iterator>::value &&
!boost::is_convertible<Key, const_iterator>::value;
};
////////////////////////////////////////////////////////////////////////////
// Explicitly call a destructor
@@ -1665,9 +1707,10 @@ namespace boost {
};
template <typename T>
struct rv_ref : boost::conditional<boost::is_class<T>::value,
boost::unordered::detail::rv_ref_impl<T>,
please_ignore_this_overload>::type
struct rv_ref
: boost::detail::if_true<boost::is_class<T>::value>::
BOOST_NESTED_TEMPLATE then<boost::unordered::detail::rv_ref_impl<T>,
please_ignore_this_overload>::type
{
};
@@ -1697,7 +1740,10 @@ namespace boost {
namespace iterator_detail {
template <class Node, class Bucket> class c_iterator;
template <class Node, class Bucket> class iterator
template <class Node, class Bucket>
class iterator
: public boost::iterator_facade<iterator<Node, Bucket>,
typename Node::value_type, boost::forward_traversal_tag>
{
public:
typedef typename Node::value_type value_type;
@@ -1709,50 +1755,6 @@ namespace boost {
iterator() : p(), itb(){};
reference operator*() const BOOST_NOEXCEPT { return dereference(); }
pointer operator->() const BOOST_NOEXCEPT
{
pointer x = boost::addressof(p->value());
return x;
}
iterator& operator++() BOOST_NOEXCEPT
{
increment();
return *this;
}
iterator operator++(int) BOOST_NOEXCEPT
{
iterator old = *this;
increment();
return old;
}
bool operator==(iterator const& other) const BOOST_NOEXCEPT
{
return equal(other);
}
bool operator!=(iterator const& other) const BOOST_NOEXCEPT
{
return !equal(other);
}
bool operator==(
boost::unordered::detail::iterator_detail::c_iterator<Node,
Bucket> const& other) const BOOST_NOEXCEPT
{
return equal(other);
}
bool operator!=(
boost::unordered::detail::iterator_detail::c_iterator<Node,
Bucket> const& other) const BOOST_NOEXCEPT
{
return !equal(other);
}
private:
typedef typename Node::node_pointer node_pointer;
typedef grouped_bucket_iterator<Bucket> bucket_iterator;
@@ -1762,6 +1764,7 @@ namespace boost {
template <class Types> friend struct boost::unordered::detail::table;
template <class N, class B> friend class c_iterator;
friend class boost::iterator_core_access;
iterator(node_pointer p_, bucket_iterator itb_) : p(p_), itb(itb_) {}
@@ -1772,13 +1775,6 @@ namespace boost {
return (p == x.p);
}
bool equal(
const boost::unordered::detail::iterator_detail::c_iterator<Node,
Bucket>& x) const BOOST_NOEXCEPT
{
return (p == x.p);
}
void increment() BOOST_NOEXCEPT
{
p = p->next;
@@ -1788,7 +1784,10 @@ namespace boost {
}
};
template <class Node, class Bucket> class c_iterator
template <class Node, class Bucket>
class c_iterator
: public boost::iterator_facade<c_iterator<Node, Bucket>,
typename Node::value_type const, boost::forward_traversal_tag>
{
public:
typedef typename Node::value_type value_type;
@@ -1799,51 +1798,7 @@ namespace boost {
typedef std::forward_iterator_tag iterator_category;
c_iterator() : p(), itb(){};
c_iterator(iterator<Node, Bucket> it) : p(it.p), itb(it.itb) {}
reference operator*() const BOOST_NOEXCEPT { return dereference(); }
pointer operator->() const BOOST_NOEXCEPT
{
pointer x = boost::addressof(p->value());
return x;
}
c_iterator& operator++() BOOST_NOEXCEPT
{
increment();
return *this;
}
c_iterator operator++(int) BOOST_NOEXCEPT
{
c_iterator old = *this;
increment();
return old;
}
bool operator==(c_iterator const& other) const BOOST_NOEXCEPT
{
return equal(other);
}
bool operator!=(c_iterator const& other) const BOOST_NOEXCEPT
{
return !equal(other);
}
bool operator==(
boost::unordered::detail::iterator_detail::iterator<Node,
Bucket> const& other) const BOOST_NOEXCEPT
{
return equal(other);
}
bool operator!=(
boost::unordered::detail::iterator_detail::iterator<Node,
Bucket> const& other) const BOOST_NOEXCEPT
{
return !equal(other);
}
c_iterator(iterator<Node, Bucket> it) : p(it.p), itb(it.itb){};
private:
typedef typename Node::node_pointer node_pointer;
@@ -1853,7 +1808,7 @@ namespace boost {
bucket_iterator itb;
template <class Types> friend struct boost::unordered::detail::table;
template <class, class> friend class iterator;
friend class boost::iterator_core_access;
c_iterator(node_pointer p_, bucket_iterator itb_) : p(p_), itb(itb_)
{
@@ -2022,14 +1977,12 @@ namespace boost {
std::size_t bucket_size(std::size_t index) const
{
bucket_iterator itb = buckets_.at(index);
node_pointer n = itb->next;
std::size_t count = 0;
if (size_ > 0) {
bucket_iterator itb = buckets_.at(index);
node_pointer n = itb->next;
while (n) {
++count;
n = n->next;
}
while (n) {
++count;
n = n->next;
}
return count;
}
@@ -2039,18 +1992,13 @@ namespace boost {
void recalculate_max_load()
{
using namespace std;
// From 6.3.1/13:
// Only resize when size >= mlf_ * count
std::size_t const bc = buckets_.bucket_count();
// it's important we do the `bc == 0` check here because the `mlf_`
// can be specified to be infinity. The operation `n * INF` is `INF`
// for all `n > 0` but NaN for `n == 0`.
//
max_load_ =
bc == 0 ? 0
: boost::unordered::detail::double_to_size(
static_cast<double>(mlf_) * static_cast<double>(bc));
max_load_ = boost::unordered::detail::double_to_size(
floor(static_cast<double>(mlf_) *
static_cast<double>(buckets_.bucket_count())));
}
void max_load_factor(float z)
@@ -2063,12 +2011,6 @@ namespace boost {
////////////////////////////////////////////////////////////////////////
// Constructors
table()
: functions(hasher(), key_equal()), size_(0), mlf_(1.0f),
max_load_(0)
{
}
table(std::size_t num_buckets, hasher const& hf, key_equal const& eq,
node_allocator_type const& a)
: functions(hf, eq), size_(0), mlf_(1.0f), max_load_(0),
@@ -2340,6 +2282,7 @@ namespace boost {
template <typename UniqueType>
void move_assign(table& x, UniqueType is_unique, false_type)
{
reserve(x.size_);
if (node_alloc() == x.node_alloc()) {
move_assign_equal_alloc(x);
} else {
@@ -2368,9 +2311,7 @@ namespace boost {
{
mlf_ = x.mlf_;
recalculate_max_load();
if (x.size_ > 0) {
this->reserve_for_insert(x.size_);
}
this->reserve_for_insert(x.size_);
this->clear_impl();
}
BOOST_CATCH(...)
@@ -2402,14 +2343,11 @@ namespace boost {
node_pointer find_node_impl(
Key const& x, bucket_iterator itb) const
{
node_pointer p = node_pointer();
if (itb != buckets_.end()) {
key_equal const& pred = this->key_eq();
p = itb->next;
for (; p; p = p->next) {
if (pred(x, extractor::extract(p->value()))) {
break;
}
key_equal const& pred = this->key_eq();
node_pointer p = itb->next;
for (; p; p = p->next) {
if (pred(x, extractor::extract(p->value()))) {
break;
}
}
return p;
@@ -2438,29 +2376,55 @@ namespace boost {
inline iterator transparent_find(
Key const& k, Hash const& h, Pred const& pred) const
{
if (size_ > 0) {
std::size_t const key_hash = h(k);
bucket_iterator itb = buckets_.at(buckets_.position(key_hash));
for (node_pointer p = itb->next; p; p = p->next) {
if (BOOST_LIKELY(pred(k, extractor::extract(p->value())))) {
return iterator(p, itb);
#if 0
std::size_t const key_hash = h(k);
bucket_iterator itb = buckets_.at(buckets_.position(key_hash));
for (node_pointer p = itb->next; p; p = p->next) {
if (BOOST_LIKELY(pred(k, extractor::extract(p->value())))) {
return iterator(p, itb);
}
}
#else
std::size_t const key_hash = h(k);
bucket_iterator itb = buckets_.at(buckets_.position(key_hash));
node_pointer p = itb->next;
if (p) {
for (;;) {
node_pointer p1 = p->next;
if (p1) {
#if defined(BOOST_GCC)||defined(BOOST_CLANG)
__builtin_prefetch((const char*)p1, 0);
#elif defined(BOOST_UNORDERED_SSE2_SUPPORTED)
_mm_prefetch((const char*)p1, _MM_HINT_T0);
#endif
if (BOOST_LIKELY(pred(k, extractor::extract(p->value())))) {
return iterator(p, itb);
}
p = p1;
}
else{
if (BOOST_LIKELY(pred(k, extractor::extract(p->value())))) {
return iterator(p, itb);
}
break;
}
}
}
#endif
return this->end();
}
template <class Key>
node_pointer* find_prev(Key const& key, bucket_iterator itb)
{
if (size_ > 0) {
key_equal pred = this->key_eq();
for (node_pointer* pp = boost::addressof(itb->next); *pp;
pp = boost::addressof((*pp)->next)) {
if (pred(key, extractor::extract((*pp)->value()))) {
return pp;
}
key_equal pred = this->key_eq();
for (node_pointer* pp = boost::addressof(itb->next); *pp;
pp = boost::addressof((*pp)->next)) {
if (pred(key, extractor::extract((*pp)->value()))) {
return pp;
}
}
typedef node_pointer* node_pointer_pointer;
@@ -2492,17 +2456,6 @@ namespace boost {
new_buckets.insert_node(itnewb, p);
}
static std::size_t min_buckets(std::size_t num_elements, float mlf)
{
std::size_t num_buckets = static_cast<std::size_t>(
std::ceil(static_cast<float>(num_elements) / mlf));
if (num_buckets == 0 && num_elements > 0) { // mlf == inf
num_buckets = 1;
}
return num_buckets;
}
void rehash(std::size_t);
void reserve(std::size_t);
void reserve_for_insert(std::size_t);
@@ -2928,23 +2881,6 @@ namespace boost {
return 1;
}
iterator erase_node(c_iterator pos) {
c_iterator next = pos;
++next;
bucket_iterator itb = pos.itb;
node_pointer* pp = boost::addressof(itb->next);
while (*pp != pos.p) {
pp = boost::addressof((*pp)->next);
}
buckets_.extract_node_after(itb, pp);
this->delete_node(pos.p);
--size_;
return iterator(next.p, next.itb);
}
iterator erase_nodes_range(c_iterator first, c_iterator last)
{
if (first == last) {
@@ -3411,18 +3347,22 @@ namespace boost {
template <typename Types>
inline void table<Types>::rehash(std::size_t num_buckets)
{
num_buckets = (std::max)(
min_buckets(size_, mlf_), buckets_.bucket_count_for(num_buckets));
std::size_t bc = (std::max)(num_buckets,
static_cast<std::size_t>(1.0f + static_cast<float>(size_) / mlf_));
if (num_buckets != this->bucket_count()) {
this->rehash_impl(num_buckets);
if (bc <= buckets_.bucket_count()) {
return;
}
this->rehash_impl(bc);
}
template <class Types>
inline void table<Types>::reserve(std::size_t num_elements)
{
std::size_t num_buckets = min_buckets(num_elements, mlf_);
std::size_t const num_buckets = static_cast<std::size_t>(
std::ceil(static_cast<float>(num_elements) / mlf_));
this->rehash(num_buckets);
}
@@ -3509,8 +3449,8 @@ namespace boost {
sizeof(choice2::type)
};
typedef
typename boost::conditional<value, Key const&, no_key>::type type;
typedef typename boost::detail::if_true<value>::BOOST_NESTED_TEMPLATE
then<Key const&, no_key>::type type;
};
template <class ValueType> struct set_extractor
@@ -1,262 +0,0 @@
// Copyright (C) 2022 Joaquin M Lopez Munoz.
// Copyright (C) 2022 Christian Mazakas
//
// Distributed under the Boost Software License, Version 1.0. (See accompanying
// file LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt)
#ifndef BOOST_UNORDERED_DETAIL_PRIME_FMOD_HPP
#define BOOST_UNORDERED_DETAIL_PRIME_FMOD_HPP
#include <boost/cstdint.hpp>
#include <boost/preprocessor/seq/enum.hpp>
#include <boost/preprocessor/seq/for_each.hpp>
#include <boost/preprocessor/seq/size.hpp>
#include <boost/config.hpp>
#include <climits>
#include <cstddef>
#if defined(SIZE_MAX)
#if ((((SIZE_MAX >> 16) >> 16) >> 16) >> 15) != 0
#define BOOST_UNORDERED_FCA_HAS_64B_SIZE_T
#endif
#elif defined(UINTPTR_MAX) /* used as proxy for std::size_t */
#if ((((UINTPTR_MAX >> 16) >> 16) >> 16) >> 15) != 0
#define BOOST_UNORDERED_FCA_HAS_64B_SIZE_T
#endif
#endif
#if defined(BOOST_UNORDERED_FCA_HAS_64B_SIZE_T) && defined(_MSC_VER)
#include <intrin.h>
#endif
namespace boost {
namespace unordered {
namespace detail {
template <class = void> struct prime_fmod_size
{
// Because we compile for C++03, we don't have access to any inline
// initialization for array data members so the definitions must exist
// out-of-line. To keep the library header-only, we introduce a dummy
// template parameter which permits the definition to be included in
// multiple TUs without conflict.
//
static std::size_t sizes[];
static std::size_t const sizes_len;
static std::size_t (*positions[])(std::size_t);
#if defined(BOOST_UNORDERED_FCA_HAS_64B_SIZE_T)
static boost::uint64_t inv_sizes32[];
static std::size_t const inv_sizes32_len;
#endif /* defined(BOOST_UNORDERED_FCA_HAS_64B_SIZE_T) */
static inline std::size_t size_index(std::size_t n)
{
std::size_t i = 0;
for (; i < (sizes_len - 1); ++i) {
if (sizes[i] >= n) {
break;
}
}
return i;
}
static inline std::size_t size(std::size_t size_index)
{
return sizes[size_index];
}
template <std::size_t Size> static std::size_t modulo(std::size_t hash)
{
return hash % Size;
}
#if defined(BOOST_UNORDERED_FCA_HAS_64B_SIZE_T)
// We emulate the techniques taken from:
// Faster Remainder by Direct Computation: Applications to Compilers and
// Software Libraries
// https://arxiv.org/abs/1902.01961
//
// In essence, use fancy math to directly calculate the remainder (aka
// modulo) exploiting how compilers transform division
//
static inline boost::uint64_t get_remainder(
boost::uint64_t fractional, boost::uint32_t d)
{
#if defined(_MSC_VER)
// use MSVC intrinsics when available to avoid promotion to 128 bits
return __umulh(fractional, d);
#elif defined(BOOST_HAS_INT128)
return static_cast<boost::uint64_t>(
((boost::uint128_type)fractional * d) >> 64);
#else
// portable implementation in the absence of boost::uint128_type on 64
// bits, which happens at least in GCC 4.5 and prior
boost::uint64_t r1 = (fractional & UINT32_MAX) * d;
boost::uint64_t r2 = (fractional >> 32) * d;
r2 += r1 >> 32;
return r2 >> 32;
#endif /* defined(_MSC_VER) */
}
static inline boost::uint32_t fast_modulo(
boost::uint32_t a, boost::uint64_t M, boost::uint32_t d)
{
boost::uint64_t fractional = M * a;
return (boost::uint32_t)(get_remainder(fractional, d));
}
#endif /* defined(BOOST_UNORDERED_FCA_HAS_64B_SIZE_T) */
static inline std::size_t position(
std::size_t hash, std::size_t size_index)
{
#if defined(BOOST_UNORDERED_FCA_HAS_64B_SIZE_T)
std::size_t sizes_under_32bit = inv_sizes32_len;
if (BOOST_LIKELY(size_index < sizes_under_32bit)) {
return fast_modulo(
boost::uint32_t(hash) + boost::uint32_t(hash >> 32),
inv_sizes32[size_index], boost::uint32_t(sizes[size_index]));
} else {
return positions[size_index - sizes_under_32bit](hash);
}
#else
return positions[size_index](hash);
#endif /* defined(BOOST_UNORDERED_FCA_HAS_64B_SIZE_T) */
}
}; // prime_fmod_size
#define BOOST_UNORDERED_PRIME_FMOD_SIZES_32BIT_INCOMPLETE \
(13ul)(29ul)(53ul)(97ul)(193ul)(389ul)(769ul)(1543ul)(3079ul)(6151ul)( \
12289ul)(24593ul)(49157ul)(98317ul)(196613ul)(393241ul)(786433ul)( \
1572869ul)(3145739ul)(6291469ul)(12582917ul)(25165843ul)(50331653ul)( \
100663319ul)(201326611ul)(402653189ul)(805306457ul)(1610612741ul)( \
3221225473ul)
#if !defined(BOOST_UNORDERED_FCA_HAS_64B_SIZE_T)
#define BOOST_UNORDERED_PRIME_FMOD_SIZES_32BIT \
BOOST_UNORDERED_PRIME_FMOD_SIZES_32BIT_INCOMPLETE(4294967291ul)
#define BOOST_UNORDERED_PRIME_FMOD_SIZES_64BIT
#else
#define BOOST_UNORDERED_PRIME_FMOD_SIZES_32BIT \
BOOST_UNORDERED_PRIME_FMOD_SIZES_32BIT_INCOMPLETE
// The original sequence here is this:
// (6442450939ul)
// (12884901893ul)
// (25769803751ul)
// (51539607551ul)
// (103079215111ul)
// (206158430209ul)
// (412316860441ul)
// (824633720831ul)
// (1649267441651ul)
//
// but this causes problems on versions of mingw where the `long` type is 32
// bits, even for 64-bit targets. We work around this by replacing the literals
// with compile-time arithmetic, using bitshifts to reconstruct the number.
//
// clang-format off
#define BOOST_UNORDERED_PRIME_FMOD_SIZES_64BIT \
((boost::ulong_long_type(1ul) << 32) + boost::ulong_long_type(2147483643ul)) \
((boost::ulong_long_type(3ul) << 32) + boost::ulong_long_type(5ul)) \
((boost::ulong_long_type(5ul) << 32) + boost::ulong_long_type(4294967271ul)) \
((boost::ulong_long_type(11ul) << 32) + boost::ulong_long_type(4294967295ul)) \
((boost::ulong_long_type(24ul) << 32) + boost::ulong_long_type(7ul)) \
((boost::ulong_long_type(48ul) << 32) + boost::ulong_long_type(1ul)) \
((boost::ulong_long_type(96ul) << 32) + boost::ulong_long_type(25ul)) \
((boost::ulong_long_type(191ul) << 32) + boost::ulong_long_type(4294967295ul)) \
((boost::ulong_long_type(383ul) << 32) + boost::ulong_long_type(4294967283ul))
// clang-format on
#endif /* BOOST_UNORDERED_FCA_HAS_64B_SIZE_T */
#define BOOST_UNORDERED_PRIME_FMOD_SIZES \
BOOST_UNORDERED_PRIME_FMOD_SIZES_32BIT BOOST_UNORDERED_PRIME_FMOD_SIZES_64BIT
template <class T>
std::size_t prime_fmod_size<T>::sizes[] = {
BOOST_PP_SEQ_ENUM(BOOST_UNORDERED_PRIME_FMOD_SIZES)};
template <class T>
std::size_t const prime_fmod_size<T>::sizes_len = BOOST_PP_SEQ_SIZE(
BOOST_UNORDERED_PRIME_FMOD_SIZES);
// Similarly here, we have to re-express the integer initialization using
// arithmetic such that each literal can fit in a 32-bit value.
//
#if defined(BOOST_UNORDERED_FCA_HAS_64B_SIZE_T)
// clang-format off
template <class T>
boost::uint64_t prime_fmod_size<T>::inv_sizes32[] = {
(boost::ulong_long_type(330382099ul) << 32) + boost::ulong_long_type(2973438898ul) /* = 1418980313362273202 */,
(boost::ulong_long_type(148102320ul) << 32) + boost::ulong_long_type(2369637129ul) /* = 636094623231363849 */,
(boost::ulong_long_type(81037118ul) << 32) + boost::ulong_long_type(3403558990ul) /* = 348051774975651918 */,
(boost::ulong_long_type(44278013ul) << 32) + boost::ulong_long_type(1549730468ul) /* = 190172619316593316 */,
(boost::ulong_long_type(22253716ul) << 32) + boost::ulong_long_type(2403401389ul) /* = 95578984837873325 */,
(boost::ulong_long_type(11041047ul) << 32) + boost::ulong_long_type(143533612ul) /* = 47420935922132524 */,
(boost::ulong_long_type(5585133ul) << 32) + boost::ulong_long_type(106117528ul) /* = 23987963684927896 */,
(boost::ulong_long_type(2783517ul) << 32) + boost::ulong_long_type(1572687312ul) /* = 11955116055547344 */,
(boost::ulong_long_type(1394922ul) << 32) + boost::ulong_long_type(3428720239ul) /* = 5991147799191151 */,
(boost::ulong_long_type(698255ul) << 32) + boost::ulong_long_type(552319807ul) /* = 2998982941588287 */,
(boost::ulong_long_type(349496ul) << 32) + boost::ulong_long_type(3827689953ul) /* = 1501077717772769 */,
(boost::ulong_long_type(174641ul) << 32) + boost::ulong_long_type(3699438549ul) /* = 750081082979285 */,
(boost::ulong_long_type(87372ul) << 32) + boost::ulong_long_type(1912757574ul) /* = 375261795343686 */,
(boost::ulong_long_type(43684ul) << 32) + boost::ulong_long_type(3821029929ul) /* = 187625172388393 */,
(boost::ulong_long_type(21844ul) << 32) + boost::ulong_long_type(3340590800ul) /* = 93822606204624 */,
(boost::ulong_long_type(10921ul) << 32) + boost::ulong_long_type(4175852267ul) /* = 46909513691883 */,
(boost::ulong_long_type(5461ul) << 32) + boost::ulong_long_type(1401829642ul) /* = 23456218233098 */,
(boost::ulong_long_type(2730ul) << 32) + boost::ulong_long_type(2826028947ul) /* = 11728086747027 */,
(boost::ulong_long_type(1365ul) << 32) + boost::ulong_long_type(1411150351ul) /* = 5864041509391 */,
(boost::ulong_long_type(682ul) << 32) + boost::ulong_long_type(2857253105ul) /* = 2932024948977 */,
(boost::ulong_long_type(341ul) << 32) + boost::ulong_long_type(1431073224ul) /* = 1466014921160 */,
(boost::ulong_long_type(170ul) << 32) + boost::ulong_long_type(2862758116ul) /* = 733007198436 */,
(boost::ulong_long_type(85ul) << 32) + boost::ulong_long_type(1431619357ul) /* = 366503839517 */,
(boost::ulong_long_type(42ul) << 32) + boost::ulong_long_type(2863269661ul) /* = 183251896093 */,
(boost::ulong_long_type(21ul) << 32) + boost::ulong_long_type(1431647119ul) /* = 91625960335 */,
(boost::ulong_long_type(10ul) << 32) + boost::ulong_long_type(2863310962ul) /* = 45812983922 */,
(boost::ulong_long_type(5ul) << 32) + boost::ulong_long_type(1431653234ul) /* = 22906489714 */,
(boost::ulong_long_type(2ul) << 32) + boost::ulong_long_type(2863311496ul) /* = 11453246088 */,
(boost::ulong_long_type(1ul) << 32) + boost::ulong_long_type(1431655764ul) /* = 5726623060 */,
};
// clang-format on
template <class T>
std::size_t const
prime_fmod_size<T>::inv_sizes32_len = sizeof(inv_sizes32) /
sizeof(inv_sizes32[0]);
#endif /* defined(BOOST_UNORDERED_FCA_HAS_64B_SIZE_T) */
#define BOOST_UNORDERED_PRIME_FMOD_POSITIONS_ELEMENT(z, _, n) \
prime_fmod_size<T>::template modulo<n>,
template <class T>
std::size_t (*prime_fmod_size<T>::positions[])(std::size_t) = {
#if !defined(BOOST_UNORDERED_FCA_HAS_64B_SIZE_T)
BOOST_PP_SEQ_FOR_EACH(BOOST_UNORDERED_PRIME_FMOD_POSITIONS_ELEMENT, ~,
BOOST_UNORDERED_PRIME_FMOD_SIZES_32BIT)
#else
BOOST_PP_SEQ_FOR_EACH(BOOST_UNORDERED_PRIME_FMOD_POSITIONS_ELEMENT, ~,
BOOST_UNORDERED_PRIME_FMOD_SIZES_64BIT)
#endif
};
#undef BOOST_UNORDERED_PRIME_FMOD_POSITIONS_ELEMENT
#undef BOOST_UNORDERED_PRIME_FMOD_SIZES
#undef BOOST_UNORDERED_PRIME_FMOD_SIZES_64BIT
#undef BOOST_UNORDERED_PRIME_FMOD_SIZES_32BIT
#undef BOOST_UNORDERED_PRIME_FMOD_SIZES_32BIT_INCOMPLETE
} // namespace detail
} // namespace unordered
} // namespace boost
#endif // BOOST_UNORDERED_DETAIL_PRIME_FMOD_HPP
@@ -1,59 +0,0 @@
// Copyright (C) 2022 Christian Mazakas
//
// Distributed under the Boost Software License, Version 1.0. (See accompanying
// file LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt)
#ifndef BOOST_UNORDERED_DETAIL_TYPE_TRAITS_HPP
#define BOOST_UNORDERED_DETAIL_TYPE_TRAITS_HPP
#include <boost/config.hpp>
#if defined(BOOST_HAS_PRAGMA_ONCE)
#pragma once
#endif
#include <boost/type_traits/integral_constant.hpp>
#include <boost/type_traits/is_convertible.hpp>
#include <boost/type_traits/make_void.hpp>
namespace boost {
namespace unordered {
namespace detail {
////////////////////////////////////////////////////////////////////////////
// Type checkers used for the transparent member functions added by C++20
// and up
template <class, class = void>
struct is_transparent : public boost::false_type
{
};
template <class T>
struct is_transparent<T,
typename boost::make_void<typename T::is_transparent>::type>
: public boost::true_type
{
};
template <class, class A, class B> struct are_transparent
{
static bool const value =
is_transparent<A>::value && is_transparent<B>::value;
};
template <class Key, class UnorderedMap> struct transparent_non_iterable
{
typedef typename UnorderedMap::hasher hash;
typedef typename UnorderedMap::key_equal key_equal;
typedef typename UnorderedMap::iterator iterator;
typedef typename UnorderedMap::const_iterator const_iterator;
static bool const value =
are_transparent<Key, hash, key_equal>::value &&
!boost::is_convertible<Key, iterator>::value &&
!boost::is_convertible<Key, const_iterator>::value;
};
} // namespace detail
} // namespace unordered
} // namespace boost
#endif // BOOST_UNORDERED_DETAIL_TYPE_TRAITS_HPP
-75
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@@ -1,75 +0,0 @@
/* 32b/64b xmx mix function.
*
* Copyright 2022 Peter Dimov.
* Copyright 2022 Joaquin M Lopez Munoz.
* Distributed under the Boost Software License, Version 1.0.
* (See accompanying file LICENSE_1_0.txt or copy at
* http://www.boost.org/LICENSE_1_0.txt)
*
* See https://www.boost.org/libs/unordered for library home page.
*/
#ifndef BOOST_UNORDERED_DETAIL_XMX_HPP
#define BOOST_UNORDERED_DETAIL_XMX_HPP
#include <boost/cstdint.hpp>
#include <climits>
#include <cstddef>
namespace boost{
namespace unordered{
namespace detail{
/* Bit mixer for improvement of statistical properties of hash functions.
* The implementation is different on 64bit and 32bit architectures:
*
* - 64bit: same as xmx function in
* http://jonkagstrom.com/bit-mixer-construction/index.html
* - 32bit: generated by Hash Function Prospector
* (https://github.com/skeeto/hash-prospector) and selected as the
* best overall performer in benchmarks of Boost.Unordered flat containers.
* Score assigned by Hash Prospector: 333.7934929677524
*/
#if defined(SIZE_MAX)
#if ((((SIZE_MAX >> 16) >> 16) >> 16) >> 15) != 0
#define BOOST_UNORDERED_64B_ARCHITECTURE /* >64 bits assumed as 64 bits */
#endif
#elif defined(UINTPTR_MAX) /* used as proxy for std::size_t */
#if ((((UINTPTR_MAX >> 16) >> 16) >> 16) >> 15) != 0
#define BOOST_UNORDERED_64B_ARCHITECTURE
#endif
#endif
static inline std::size_t xmx(std::size_t x)noexcept
{
#if defined(BOOST_UNORDERED_64B_ARCHITECTURE)
boost::uint64_t z=(boost::uint64_t)x;
z^=z>>23;
z*=0xff51afd7ed558ccdull;
z^=z>>23;
return (std::size_t)z;
#else /* 32 bits assumed */
x^=x>>18;
x*=0x56b5aaadu;
x^=x>>16;
return x;
#endif
}
#ifdef BOOST_UNORDERED_64B_ARCHITECTURE
#undef BOOST_UNORDERED_64B_ARCHITECTURE
#endif
} /* namespace detail */
} /* namespace unordered */
} /* namespace boost */
#endif
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@@ -1,44 +0,0 @@
/* Hash function characterization.
*
* Copyright 2022 Joaquin M Lopez Munoz.
* Distributed under the Boost Software License, Version 1.0.
* (See accompanying file LICENSE_1_0.txt or copy at
* http://www.boost.org/LICENSE_1_0.txt)
*
* See https://www.boost.org/libs/unordered for library home page.
*/
#ifndef BOOST_UNORDERED_HASH_TRAITS_HPP
#define BOOST_UNORDERED_HASH_TRAITS_HPP
#include <boost/type_traits/make_void.hpp>
#include <type_traits>
namespace boost{
namespace unordered{
namespace detail{
template<typename Hash,typename=void>
struct hash_is_avalanching_impl:std::false_type{};
template<typename Hash>
struct hash_is_avalanching_impl<Hash,void_t<typename Hash::is_avalanching>>:
std::true_type{};
} /* namespace detail */
/* Each trait can be partially specialized by users for concrete hash functions
* when actual characterization differs from default.
*/
/* Derived from std::true_type if the type Hash::is_avalanching is present,
* derived from std::false_type otherwise.
*/
template<typename Hash>
struct hash_is_avalanching:detail::hash_is_avalanching_impl<Hash>::type{};
} /* namespace unordered */
} /* namespace boost */
#endif
@@ -1,619 +0,0 @@
// Copyright (C) 2022 Christian Mazakas
// Distributed under the Boost Software License, Version 1.0. (See accompanying
// file LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt)
#ifndef BOOST_UNORDERED_UNORDERED_FLAT_MAP_HPP_INCLUDED
#define BOOST_UNORDERED_UNORDERED_FLAT_MAP_HPP_INCLUDED
#include <boost/config.hpp>
#if defined(BOOST_HAS_PRAGMA_ONCE)
#pragma once
#endif
#include <boost/unordered/detail/foa.hpp>
#include <boost/unordered/detail/type_traits.hpp>
#include <boost/unordered/unordered_flat_map_fwd.hpp>
#include <boost/core/allocator_access.hpp>
#include <boost/functional/hash.hpp>
#include <boost/throw_exception.hpp>
#include <initializer_list>
#include <iterator>
#include <stdexcept>
#include <type_traits>
#include <utility>
namespace boost {
namespace unordered {
#if defined(BOOST_MSVC)
#pragma warning(push)
#pragma warning(disable : 4714) /* marked as __forceinline not inlined */
#endif
template <class Key, class T, class Hash, class KeyEqual, class Allocator>
class unordered_flat_map
{
struct map_types
{
using key_type = Key;
using raw_key_type = typename std::remove_const<Key>::type;
using raw_mapped_type = typename std::remove_const<T>::type;
using init_type = std::pair<raw_key_type, raw_mapped_type>;
using moved_type = std::pair<raw_key_type&&, raw_mapped_type&&>;
using value_type = std::pair<Key const, T>;
template <class K, class V>
static raw_key_type const& extract(std::pair<K, V> const& kv)
{
return kv.first;
}
static moved_type move(value_type& x)
{
// TODO: we probably need to launder here
return {std::move(const_cast<raw_key_type&>(x.first)),
std::move(const_cast<raw_mapped_type&>(x.second))};
}
};
using table_type = detail::foa::table<map_types, Hash, KeyEqual,
typename boost::allocator_rebind<Allocator,
typename map_types::value_type>::type>;
table_type table_;
template <class K, class V, class H, class KE, class A, class Pred>
typename unordered_flat_map<K, V, H, KE, A>::size_type friend erase_if(
unordered_flat_map<K, V, H, KE, A>& set, Pred pred);
public:
using key_type = Key;
using mapped_type = T;
using value_type = typename map_types::value_type;
using init_type = typename map_types::init_type;
using size_type = std::size_t;
using difference_type = std::ptrdiff_t;
using hasher = Hash;
using key_equal = KeyEqual;
using allocator_type = Allocator;
using reference = value_type&;
using const_reference = value_type const&;
using pointer = typename boost::allocator_pointer<allocator_type>::type;
using const_pointer =
typename boost::allocator_const_pointer<allocator_type>::type;
using iterator = typename table_type::iterator;
using const_iterator = typename table_type::const_iterator;
unordered_flat_map() : unordered_flat_map(0) {}
explicit unordered_flat_map(size_type n, hasher const& h = hasher(),
key_equal const& pred = key_equal(),
allocator_type const& a = allocator_type())
: table_(n, h, pred, a)
{
}
unordered_flat_map(size_type n, allocator_type const& a)
: unordered_flat_map(n, hasher(), key_equal(), a)
{
}
unordered_flat_map(size_type n, hasher const& h, allocator_type const& a)
: unordered_flat_map(n, h, key_equal(), a)
{
}
explicit unordered_flat_map(allocator_type const& a)
: unordered_flat_map(0, a)
{
}
template <class Iterator>
unordered_flat_map(Iterator first, Iterator last, size_type n = 0,
hasher const& h = hasher(), key_equal const& pred = key_equal(),
allocator_type const& a = allocator_type())
: unordered_flat_map(n, h, pred, a)
{
this->insert(first, last);
}
template <class Iterator>
unordered_flat_map(
Iterator first, Iterator last, size_type n, allocator_type const& a)
: unordered_flat_map(first, last, n, hasher(), key_equal(), a)
{
}
template <class Iterator>
unordered_flat_map(Iterator first, Iterator last, size_type n,
hasher const& h, allocator_type const& a)
: unordered_flat_map(first, last, n, h, key_equal(), a)
{
}
unordered_flat_map(unordered_flat_map const& other) : table_(other.table_)
{
}
unordered_flat_map(
unordered_flat_map const& other, allocator_type const& a)
: table_(other.table_, a)
{
}
unordered_flat_map(unordered_flat_map&& other)
noexcept(std::is_nothrow_move_constructible<hasher>::value&&
std::is_nothrow_move_constructible<key_equal>::value&&
std::is_nothrow_move_constructible<allocator_type>::value)
: table_(std::move(other.table_))
{
}
unordered_flat_map(unordered_flat_map&& other, allocator_type const& al)
: table_(std::move(other.table_), al)
{
}
unordered_flat_map(std::initializer_list<value_type> ilist,
size_type n = 0, hasher const& h = hasher(),
key_equal const& pred = key_equal(),
allocator_type const& a = allocator_type())
: unordered_flat_map(ilist.begin(), ilist.end(), n, h, pred, a)
{
}
unordered_flat_map(std::initializer_list<value_type> init, size_type n,
allocator_type const& a)
: unordered_flat_map(init, n, hasher(), key_equal(), a)
{
}
unordered_flat_map(std::initializer_list<value_type> init, size_type n,
hasher const& h, allocator_type const& a)
: unordered_flat_map(init, n, h, key_equal(), a)
{
}
~unordered_flat_map() = default;
unordered_flat_map& operator=(unordered_flat_map const& other)
{
table_ = other.table_;
return *this;
}
unordered_flat_map& operator=(unordered_flat_map&& other) noexcept(
noexcept(std::declval<table_type&>() = std::declval<table_type&&>()))
{
table_ = std::move(other.table_);
return *this;
}
allocator_type get_allocator() const noexcept
{
return table_.get_allocator();
}
/// Iterators
///
iterator begin() noexcept { return table_.begin(); }
const_iterator begin() const noexcept { return table_.begin(); }
const_iterator cbegin() const noexcept { return table_.cbegin(); }
iterator end() noexcept { return table_.end(); }
const_iterator end() const noexcept { return table_.end(); }
const_iterator cend() const noexcept { return table_.cend(); }
/// Capacity
///
BOOST_ATTRIBUTE_NODISCARD bool empty() const noexcept
{
return table_.empty();
}
size_type size() const noexcept { return table_.size(); }
size_type max_size() const noexcept { return table_.max_size(); }
/// Modifiers
///
void clear() noexcept { table_.clear(); }
template <class Ty>
BOOST_FORCEINLINE auto insert(Ty&& value)
-> decltype(table_.insert(std::forward<Ty>(value)))
{
return table_.insert(std::forward<Ty>(value));
}
BOOST_FORCEINLINE std::pair<iterator, bool> insert(init_type&& value)
{
return table_.insert(std::move(value));
}
template <class Ty>
BOOST_FORCEINLINE auto insert(const_iterator, Ty&& value)
-> decltype(table_.insert(std::forward<Ty>(value)).first)
{
return table_.insert(std::forward<Ty>(value)).first;
}
BOOST_FORCEINLINE iterator insert(const_iterator, init_type&& value)
{
return table_.insert(std::move(value)).first;
}
template <class InputIterator>
BOOST_FORCEINLINE void insert(InputIterator first, InputIterator last)
{
for (auto pos = first; pos != last; ++pos) {
table_.emplace(*pos);
}
}
void insert(std::initializer_list<value_type> ilist)
{
this->insert(ilist.begin(), ilist.end());
}
template <class M>
std::pair<iterator, bool> insert_or_assign(key_type const& key, M&& obj)
{
auto iter_bool_pair = table_.try_emplace(key, std::forward<M>(obj));
if (iter_bool_pair.second) {
return iter_bool_pair;
}
iter_bool_pair.first->second = std::forward<M>(obj);
return iter_bool_pair;
}
template <class M>
std::pair<iterator, bool> insert_or_assign(key_type&& key, M&& obj)
{
auto iter_bool_pair =
table_.try_emplace(std::move(key), std::forward<M>(obj));
if (iter_bool_pair.second) {
return iter_bool_pair;
}
iter_bool_pair.first->second = std::forward<M>(obj);
return iter_bool_pair;
}
template <class M>
iterator insert_or_assign(const_iterator, key_type const& key, M&& obj)
{
return this->insert_or_assign(key, std::forward<M>(obj)).first;
}
template <class M>
iterator insert_or_assign(const_iterator, key_type&& key, M&& obj)
{
return this->insert_or_assign(std::move(key), std::forward<M>(obj))
.first;
}
template <class... Args>
BOOST_FORCEINLINE std::pair<iterator, bool> emplace(Args&&... args)
{
return table_.emplace(std::forward<Args>(args)...);
}
template <class... Args>
BOOST_FORCEINLINE iterator emplace_hint(const_iterator, Args&&... args)
{
return table_.emplace(std::forward<Args>(args)...).first;
}
template <class... Args>
BOOST_FORCEINLINE std::pair<iterator, bool> try_emplace(
key_type const& key, Args&&... args)
{
return table_.try_emplace(key, std::forward<Args>(args)...);
}
template <class... Args>
BOOST_FORCEINLINE std::pair<iterator, bool> try_emplace(
key_type&& key, Args&&... args)
{
return table_.try_emplace(std::move(key), std::forward<Args>(args)...);
}
template <class... Args>
BOOST_FORCEINLINE iterator try_emplace(
const_iterator, key_type const& key, Args&&... args)
{
return table_.try_emplace(key, std::forward<Args>(args)...).first;
}
template <class... Args>
BOOST_FORCEINLINE iterator try_emplace(
const_iterator, key_type&& key, Args&&... args)
{
return table_.try_emplace(std::move(key), std::forward<Args>(args)...)
.first;
}
BOOST_FORCEINLINE void erase(iterator pos) { table_.erase(pos); }
BOOST_FORCEINLINE void erase(const_iterator pos)
{
return table_.erase(pos);
}
iterator erase(const_iterator first, const_iterator last)
{
while (first != last) {
this->erase(first++);
}
return iterator{detail::foa::const_iterator_cast_tag{}, last};
}
BOOST_FORCEINLINE size_type erase(key_type const& key)
{
return table_.erase(key);
}
template <class K>
BOOST_FORCEINLINE typename std::enable_if<
detail::transparent_non_iterable<K, unordered_flat_map>::value,
size_type>::type
erase(K const& key)
{
return table_.erase(key);
}
void swap(unordered_flat_map& rhs) noexcept(
noexcept(std::declval<table_type&>().swap(std::declval<table_type&>())))
{
table_.swap(rhs.table_);
}
template <class H2, class P2>
void merge(
unordered_flat_map<key_type, mapped_type, H2, P2, allocator_type>&
source)
{
table_.merge(source.table_);
}
template <class H2, class P2>
void merge(
unordered_flat_map<key_type, mapped_type, H2, P2, allocator_type>&&
source)
{
table_.merge(std::move(source.table_));
}
/// Lookup
///
mapped_type& at(key_type const& key)
{
auto pos = table_.find(key);
if (pos != table_.end()) {
return pos->second;
}
// TODO: someday refactor this to conditionally serialize the key and
// include it in the error message
//
boost::throw_exception(
std::out_of_range("key was not found in unordered_flat_map"));
}
mapped_type const& at(key_type const& key) const
{
auto pos = table_.find(key);
if (pos != table_.end()) {
return pos->second;
}
boost::throw_exception(
std::out_of_range("key was not found in unordered_flat_map"));
}
mapped_type& operator[](key_type const& key)
{
return table_.try_emplace(key).first->second;
}
mapped_type& operator[](key_type&& key)
{
return table_.try_emplace(std::move(key)).first->second;
}
size_type count(key_type const& key) const
{
auto pos = table_.find(key);
return pos != table_.end() ? 1 : 0;
}
template <class K>
typename std::enable_if<
detail::are_transparent<K, hasher, key_equal>::value, size_type>::type
count(K const& key) const
{
auto pos = table_.find(key);
return pos != table_.end() ? 1 : 0;
}
BOOST_FORCEINLINE iterator find(key_type const& key)
{
return table_.find(key);
}
BOOST_FORCEINLINE const_iterator find(key_type const& key) const
{
return table_.find(key);
}
template <class K>
BOOST_FORCEINLINE typename std::enable_if<
boost::unordered::detail::are_transparent<K, hasher, key_equal>::value,
iterator>::type
find(K const& key)
{
return table_.find(key);
}
template <class K>
BOOST_FORCEINLINE typename std::enable_if<
boost::unordered::detail::are_transparent<K, hasher, key_equal>::value,
const_iterator>::type
find(K const& key) const
{
return table_.find(key);
}
bool contains(key_type const& key) const
{
return this->find(key) != this->end();
}
template <class K>
typename std::enable_if<
boost::unordered::detail::are_transparent<K, hasher, key_equal>::value,
bool>::type
contains(K const& key) const
{
return this->find(key) != this->end();
}
std::pair<iterator, iterator> equal_range(key_type const& key)
{
auto pos = table_.find(key);
if (pos == table_.end()) {
return {pos, pos};
}
auto next = pos;
++next;
return {pos, next};
}
std::pair<const_iterator, const_iterator> equal_range(
key_type const& key) const
{
auto pos = table_.find(key);
if (pos == table_.end()) {
return {pos, pos};
}
auto next = pos;
++next;
return {pos, next};
}
template <class K>
typename std::enable_if<
detail::are_transparent<K, hasher, key_equal>::value,
std::pair<iterator, iterator> >::type
equal_range(K const& key)
{
auto pos = table_.find(key);
if (pos == table_.end()) {
return {pos, pos};
}
auto next = pos;
++next;
return {pos, next};
}
template <class K>
typename std::enable_if<
detail::are_transparent<K, hasher, key_equal>::value,
std::pair<const_iterator, const_iterator> >::type
equal_range(K const& key) const
{
auto pos = table_.find(key);
if (pos == table_.end()) {
return {pos, pos};
}
auto next = pos;
++next;
return {pos, next};
}
/// Hash Policy
///
size_type bucket_count() const noexcept { return table_.capacity(); }
float load_factor() const noexcept { return table_.load_factor(); }
float max_load_factor() const noexcept
{
return table_.max_load_factor();
}
void max_load_factor(float) {}
void rehash(size_type n) { table_.rehash(n); }
void reserve(size_type n) { table_.reserve(n); }
/// Observers
///
hasher hash_function() const { return table_.hash_function(); }
key_equal key_eq() const { return table_.key_eq(); }
};
template <class Key, class T, class Hash, class KeyEqual, class Allocator>
bool operator==(
unordered_flat_map<Key, T, Hash, KeyEqual, Allocator> const& lhs,
unordered_flat_map<Key, T, Hash, KeyEqual, Allocator> const& rhs)
{
if (&lhs == &rhs) {
return true;
}
return (lhs.size() == rhs.size()) && ([&] {
for (auto const& kvp : lhs) {
auto pos = rhs.find(kvp.first);
if ((pos == rhs.end()) || (*pos != kvp)) {
return false;
}
}
return true;
})();
}
template <class Key, class T, class Hash, class KeyEqual, class Allocator>
bool operator!=(
unordered_flat_map<Key, T, Hash, KeyEqual, Allocator> const& lhs,
unordered_flat_map<Key, T, Hash, KeyEqual, Allocator> const& rhs)
{
return !(lhs == rhs);
}
template <class Key, class T, class Hash, class KeyEqual, class Allocator>
void swap(unordered_flat_map<Key, T, Hash, KeyEqual, Allocator>& lhs,
unordered_flat_map<Key, T, Hash, KeyEqual, Allocator>& rhs)
noexcept(noexcept(lhs.swap(rhs)))
{
lhs.swap(rhs);
}
template <class Key, class T, class Hash, class KeyEqual, class Allocator,
class Pred>
typename unordered_flat_map<Key, T, Hash, KeyEqual, Allocator>::size_type
erase_if(
unordered_flat_map<Key, T, Hash, KeyEqual, Allocator>& map, Pred pred)
{
return erase_if(map.table_, pred);
}
#if defined(BOOST_MSVC)
#pragma warning(pop) /* C4714 */
#endif
} // namespace unordered
} // namespace boost
#endif
@@ -1,49 +0,0 @@
// Copyright (C) 2022 Christian Mazakas
// Distributed under the Boost Software License, Version 1.0. (See accompanying
// file LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt)
#ifndef BOOST_UNORDERED_FLAT_MAP_FWD_HPP_INCLUDED
#define BOOST_UNORDERED_FLAT_MAP_FWD_HPP_INCLUDED
#include <boost/config.hpp>
#if defined(BOOST_HAS_PRAGMA_ONCE)
#pragma once
#endif
#include <boost/functional/hash_fwd.hpp>
#include <boost/unordered/detail/fwd.hpp>
#include <functional>
#include <memory>
namespace boost {
namespace unordered {
template <class Key, class T, class Hash = boost::hash<Key>,
class KeyEqual = std::equal_to<Key>,
class Allocator = std::allocator<std::pair<const Key, T> > >
class unordered_flat_map;
template <class Key, class T, class Hash, class KeyEqual, class Allocator>
bool operator==(
unordered_flat_map<Key, T, Hash, KeyEqual, Allocator> const& lhs,
unordered_flat_map<Key, T, Hash, KeyEqual, Allocator> const& rhs);
template <class Key, class T, class Hash, class KeyEqual, class Allocator>
bool operator!=(
unordered_flat_map<Key, T, Hash, KeyEqual, Allocator> const& lhs,
unordered_flat_map<Key, T, Hash, KeyEqual, Allocator> const& rhs);
template <class Key, class T, class Hash, class KeyEqual, class Allocator>
void swap(unordered_flat_map<Key, T, Hash, KeyEqual, Allocator>& lhs,
unordered_flat_map<Key, T, Hash, KeyEqual, Allocator>& rhs)
noexcept(noexcept(lhs.swap(rhs)));
} // namespace unordered
using boost::unordered::unordered_flat_map;
using boost::unordered::swap;
using boost::unordered::operator==;
using boost::unordered::operator!=;
} // namespace boost
#endif
@@ -1,494 +0,0 @@
// Copyright (C) 2022 Christian Mazakas
// Distributed under the Boost Software License, Version 1.0. (See accompanying
// file LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt)
#ifndef BOOST_UNORDERED_UNORDERED_FLAT_SET_HPP_INCLUDED
#define BOOST_UNORDERED_UNORDERED_FLAT_SET_HPP_INCLUDED
#include <boost/config.hpp>
#if defined(BOOST_HAS_PRAGMA_ONCE)
#pragma once
#endif
#include <boost/unordered/detail/foa.hpp>
#include <boost/unordered/detail/type_traits.hpp>
#include <boost/unordered/unordered_flat_set_fwd.hpp>
#include <boost/core/allocator_access.hpp>
#include <boost/functional/hash.hpp>
#include <initializer_list>
#include <iterator>
#include <type_traits>
#include <utility>
namespace boost {
namespace unordered {
#if defined(BOOST_MSVC)
#pragma warning(push)
#pragma warning(disable : 4714) /* marked as __forceinline not inlined */
#endif
template <class Key, class Hash, class KeyEqual, class Allocator>
class unordered_flat_set
{
struct set_types
{
using key_type = Key;
using init_type = Key;
using value_type = Key;
static Key const& extract(value_type const& key) { return key; }
static Key&& move(value_type& x) { return std::move(x); }
};
using table_type = detail::foa::table<set_types, Hash, KeyEqual,
typename boost::allocator_rebind<Allocator,
typename set_types::value_type>::type>;
table_type table_;
template <class K, class H, class KE, class A, class Pred>
typename unordered_flat_set<K, H, KE, A>::size_type friend erase_if(
unordered_flat_set<K, H, KE, A>& set, Pred pred);
public:
using key_type = Key;
using value_type = typename set_types::value_type;
using init_type = typename set_types::init_type;
using size_type = std::size_t;
using difference_type = std::ptrdiff_t;
using hasher = Hash;
using key_equal = KeyEqual;
using allocator_type = Allocator;
using reference = value_type&;
using const_reference = value_type const&;
using pointer = typename boost::allocator_pointer<allocator_type>::type;
using const_pointer =
typename boost::allocator_const_pointer<allocator_type>::type;
using iterator = typename table_type::iterator;
using const_iterator = typename table_type::const_iterator;
unordered_flat_set() : unordered_flat_set(0) {}
explicit unordered_flat_set(size_type n, hasher const& h = hasher(),
key_equal const& pred = key_equal(),
allocator_type const& a = allocator_type())
: table_(n, h, pred, a)
{
}
unordered_flat_set(size_type n, allocator_type const& a)
: unordered_flat_set(n, hasher(), key_equal(), a)
{
}
unordered_flat_set(size_type n, hasher const& h, allocator_type const& a)
: unordered_flat_set(n, h, key_equal(), a)
{
}
explicit unordered_flat_set(allocator_type const& a)
: unordered_flat_set(0, a)
{
}
template <class Iterator>
unordered_flat_set(Iterator first, Iterator last, size_type n = 0,
hasher const& h = hasher(), key_equal const& pred = key_equal(),
allocator_type const& a = allocator_type())
: unordered_flat_set(n, h, pred, a)
{
this->insert(first, last);
}
template <class InputIt>
unordered_flat_set(
InputIt first, InputIt last, size_type n, allocator_type const& a)
: unordered_flat_set(first, last, n, hasher(), key_equal(), a)
{
}
template <class Iterator>
unordered_flat_set(Iterator first, Iterator last, size_type n,
hasher const& h, allocator_type const& a)
: unordered_flat_set(first, last, n, h, key_equal(), a)
{
}
unordered_flat_set(unordered_flat_set const& other) : table_(other.table_)
{
}
unordered_flat_set(
unordered_flat_set const& other, allocator_type const& a)
: table_(other.table_, a)
{
}
unordered_flat_set(unordered_flat_set&& other)
noexcept(std::is_nothrow_move_constructible<hasher>::value&&
std::is_nothrow_move_constructible<key_equal>::value&&
std::is_nothrow_move_constructible<allocator_type>::value)
: table_(std::move(other.table_))
{
}
unordered_flat_set(unordered_flat_set&& other, allocator_type const& al)
: table_(std::move(other.table_), al)
{
}
unordered_flat_set(std::initializer_list<value_type> ilist,
size_type n = 0, hasher const& h = hasher(),
key_equal const& pred = key_equal(),
allocator_type const& a = allocator_type())
: unordered_flat_set(ilist.begin(), ilist.end(), n, h, pred, a)
{
}
unordered_flat_set(std::initializer_list<value_type> init, size_type n,
allocator_type const& a)
: unordered_flat_set(init, n, hasher(), key_equal(), a)
{
}
unordered_flat_set(std::initializer_list<value_type> init, size_type n,
hasher const& h, allocator_type const& a)
: unordered_flat_set(init, n, h, key_equal(), a)
{
}
~unordered_flat_set() = default;
unordered_flat_set& operator=(unordered_flat_set const& other)
{
table_ = other.table_;
return *this;
}
unordered_flat_set& operator=(unordered_flat_set&& other) noexcept(
noexcept(std::declval<table_type&>() = std::declval<table_type&&>()))
{
table_ = std::move(other.table_);
return *this;
}
allocator_type get_allocator() const noexcept
{
return table_.get_allocator();
}
/// Iterators
///
iterator begin() noexcept { return table_.begin(); }
const_iterator begin() const noexcept { return table_.begin(); }
const_iterator cbegin() const noexcept { return table_.cbegin(); }
iterator end() noexcept { return table_.end(); }
const_iterator end() const noexcept { return table_.end(); }
const_iterator cend() const noexcept { return table_.cend(); }
/// Capacity
///
BOOST_ATTRIBUTE_NODISCARD bool empty() const noexcept
{
return table_.empty();
}
size_type size() const noexcept { return table_.size(); }
size_type max_size() const noexcept { return table_.max_size(); }
/// Modifiers
///
void clear() noexcept { table_.clear(); }
BOOST_FORCEINLINE std::pair<iterator, bool> insert(
value_type const& value)
{
return table_.insert(value);
}
BOOST_FORCEINLINE std::pair<iterator, bool> insert(value_type&& value)
{
return table_.insert(std::move(value));
}
BOOST_FORCEINLINE iterator insert(const_iterator, value_type const& value)
{
return table_.insert(value).first;
}
BOOST_FORCEINLINE iterator insert(const_iterator, value_type&& value)
{
return table_.insert(std::move(value)).first;
}
template <class InputIterator>
void insert(InputIterator first, InputIterator last)
{
for (auto pos = first; pos != last; ++pos) {
table_.emplace(*pos);
}
}
void insert(std::initializer_list<value_type> ilist)
{
this->insert(ilist.begin(), ilist.end());
}
template <class... Args>
BOOST_FORCEINLINE std::pair<iterator, bool> emplace(Args&&... args)
{
return table_.emplace(std::forward<Args>(args)...);
}
template <class... Args>
BOOST_FORCEINLINE iterator emplace_hint(const_iterator, Args&&... args)
{
return table_.emplace(std::forward<Args>(args)...).first;
}
BOOST_FORCEINLINE void erase(const_iterator pos)
{
return table_.erase(pos);
}
iterator erase(const_iterator first, const_iterator last)
{
while (first != last) {
this->erase(first++);
}
return iterator{detail::foa::const_iterator_cast_tag{}, last};
}
BOOST_FORCEINLINE size_type erase(key_type const& key)
{
return table_.erase(key);
}
template <class K>
BOOST_FORCEINLINE typename std::enable_if<
detail::transparent_non_iterable<K, unordered_flat_set>::value,
size_type>::type
erase(K const& key)
{
return table_.erase(key);
}
void swap(unordered_flat_set& rhs) noexcept(
noexcept(std::declval<table_type&>().swap(std::declval<table_type&>())))
{
table_.swap(rhs.table_);
}
template <class H2, class P2>
void merge(unordered_flat_set<key_type, H2, P2, allocator_type>& source)
{
table_.merge(source.table_);
}
template <class H2, class P2>
void merge(unordered_flat_set<key_type, H2, P2, allocator_type>&& source)
{
table_.merge(std::move(source.table_));
}
/// Lookup
///
size_type count(key_type const& key) const
{
auto pos = table_.find(key);
return pos != table_.end() ? 1 : 0;
}
template <class K>
typename std::enable_if<
detail::are_transparent<K, hasher, key_equal>::value, size_type>::type
count(K const& key) const
{
auto pos = table_.find(key);
return pos != table_.end() ? 1 : 0;
}
BOOST_FORCEINLINE iterator find(key_type const& key)
{
return table_.find(key);
}
BOOST_FORCEINLINE const_iterator find(key_type const& key) const
{
return table_.find(key);
}
template <class K>
BOOST_FORCEINLINE typename std::enable_if<
boost::unordered::detail::are_transparent<K, hasher, key_equal>::value,
iterator>::type
find(K const& key)
{
return table_.find(key);
}
template <class K>
BOOST_FORCEINLINE typename std::enable_if<
boost::unordered::detail::are_transparent<K, hasher, key_equal>::value,
const_iterator>::type
find(K const& key) const
{
return table_.find(key);
}
bool contains(key_type const& key) const
{
return this->find(key) != this->end();
}
template <class K>
typename std::enable_if<
boost::unordered::detail::are_transparent<K, hasher, key_equal>::value,
bool>::type
contains(K const& key) const
{
return this->find(key) != this->end();
}
std::pair<iterator, iterator> equal_range(key_type const& key)
{
auto pos = table_.find(key);
if (pos == table_.end()) {
return {pos, pos};
}
auto next = pos;
++next;
return {pos, next};
}
std::pair<const_iterator, const_iterator> equal_range(
key_type const& key) const
{
auto pos = table_.find(key);
if (pos == table_.end()) {
return {pos, pos};
}
auto next = pos;
++next;
return {pos, next};
}
template <class K>
typename std::enable_if<
detail::are_transparent<K, hasher, key_equal>::value,
std::pair<iterator, iterator> >::type
equal_range(K const& key)
{
auto pos = table_.find(key);
if (pos == table_.end()) {
return {pos, pos};
}
auto next = pos;
++next;
return {pos, next};
}
template <class K>
typename std::enable_if<
detail::are_transparent<K, hasher, key_equal>::value,
std::pair<const_iterator, const_iterator> >::type
equal_range(K const& key) const
{
auto pos = table_.find(key);
if (pos == table_.end()) {
return {pos, pos};
}
auto next = pos;
++next;
return {pos, next};
}
/// Hash Policy
///
size_type bucket_count() const noexcept { return table_.capacity(); }
float load_factor() const noexcept { return table_.load_factor(); }
float max_load_factor() const noexcept
{
return table_.max_load_factor();
}
void max_load_factor(float) {}
void rehash(size_type n) { table_.rehash(n); }
void reserve(size_type n) { table_.reserve(n); }
/// Observers
///
hasher hash_function() const { return table_.hash_function(); }
key_equal key_eq() const { return table_.key_eq(); }
};
template <class Key, class Hash, class KeyEqual, class Allocator>
bool operator==(
unordered_flat_set<Key, Hash, KeyEqual, Allocator> const& lhs,
unordered_flat_set<Key, Hash, KeyEqual, Allocator> const& rhs)
{
if (&lhs == &rhs) {
return true;
}
return (lhs.size() == rhs.size()) && ([&] {
for (auto const& key : lhs) {
auto pos = rhs.find(key);
if ((pos == rhs.end()) || (key != *pos)) {
return false;
}
}
return true;
})();
}
template <class Key, class Hash, class KeyEqual, class Allocator>
bool operator!=(
unordered_flat_set<Key, Hash, KeyEqual, Allocator> const& lhs,
unordered_flat_set<Key, Hash, KeyEqual, Allocator> const& rhs)
{
return !(lhs == rhs);
}
template <class Key, class Hash, class KeyEqual, class Allocator>
void swap(unordered_flat_set<Key, Hash, KeyEqual, Allocator>& lhs,
unordered_flat_set<Key, Hash, KeyEqual, Allocator>& rhs)
noexcept(noexcept(lhs.swap(rhs)))
{
lhs.swap(rhs);
}
template <class Key, class Hash, class KeyEqual, class Allocator,
class Pred>
typename unordered_flat_set<Key, Hash, KeyEqual, Allocator>::size_type
erase_if(unordered_flat_set<Key, Hash, KeyEqual, Allocator>& set, Pred pred)
{
return erase_if(set.table_, pred);
}
#if defined(BOOST_MSVC)
#pragma warning(pop) /* C4714 */
#endif
} // namespace unordered
} // namespace boost
#endif
@@ -1,49 +0,0 @@
// Copyright (C) 2022 Christian Mazakas
// Distributed under the Boost Software License, Version 1.0. (See accompanying
// file LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt)
#ifndef BOOST_UNORDERED_FLAT_SET_FWD_HPP_INCLUDED
#define BOOST_UNORDERED_FLAT_SET_FWD_HPP_INCLUDED
#include <boost/config.hpp>
#if defined(BOOST_HAS_PRAGMA_ONCE)
#pragma once
#endif
#include <boost/functional/hash_fwd.hpp>
#include <boost/unordered/detail/fwd.hpp>
#include <functional>
#include <memory>
namespace boost {
namespace unordered {
template <class Key, class Hash = boost::hash<Key>,
class KeyEqual = std::equal_to<Key>,
class Allocator = std::allocator<Key> >
class unordered_flat_set;
template <class Key, class Hash, class KeyEqual, class Allocator>
bool operator==(
unordered_flat_set<Key, Hash, KeyEqual, Allocator> const& lhs,
unordered_flat_set<Key, Hash, KeyEqual, Allocator> const& rhs);
template <class Key, class Hash, class KeyEqual, class Allocator>
bool operator!=(
unordered_flat_set<Key, Hash, KeyEqual, Allocator> const& lhs,
unordered_flat_set<Key, Hash, KeyEqual, Allocator> const& rhs);
template <class Key, class Hash, class KeyEqual, class Allocator>
void swap(unordered_flat_set<Key, Hash, KeyEqual, Allocator>& lhs,
unordered_flat_set<Key, Hash, KeyEqual, Allocator>& rhs)
noexcept(noexcept(lhs.swap(rhs)));
} // namespace unordered
using boost::unordered::unordered_flat_set;
using boost::unordered::swap;
using boost::unordered::operator==;
using boost::unordered::operator!=;
} // namespace boost
#endif
+16 -12
View File
@@ -1664,6 +1664,8 @@ namespace boost {
template <class K, class T, class H, class P, class A>
unordered_map<K, T, H, P, A>::unordered_map()
: table_(boost::unordered::detail::default_bucket_count, hasher(),
key_equal(), allocator_type())
{
}
@@ -1854,14 +1856,18 @@ namespace boost {
typename unordered_map<K, T, H, P, A>::iterator
unordered_map<K, T, H, P, A>::erase(iterator position)
{
return table_.erase_node(position);
const_iterator last = position;
++last;
return table_.erase_nodes_range(position, last);
}
template <class K, class T, class H, class P, class A>
typename unordered_map<K, T, H, P, A>::iterator
unordered_map<K, T, H, P, A>::erase(const_iterator position)
{
return table_.erase_node(position);
const_iterator last = position;
++last;
return table_.erase_nodes_range(position, last);
}
template <class K, class T, class H, class P, class A>
@@ -2067,10 +2073,6 @@ namespace boost {
template <class K, class T, class H, class P, class A>
float unordered_map<K, T, H, P, A>::load_factor() const BOOST_NOEXCEPT
{
if (table_.size_ == 0) {
return 0.0f;
}
BOOST_ASSERT(table_.bucket_count() != 0);
return static_cast<float>(table_.size_) /
static_cast<float>(table_.bucket_count());
@@ -2145,6 +2147,8 @@ namespace boost {
template <class K, class T, class H, class P, class A>
unordered_multimap<K, T, H, P, A>::unordered_multimap()
: table_(boost::unordered::detail::default_bucket_count, hasher(),
key_equal(), allocator_type())
{
}
@@ -2336,7 +2340,9 @@ namespace boost {
unordered_multimap<K, T, H, P, A>::erase(iterator position)
{
BOOST_ASSERT(position != this->end());
return table_.erase_node(position);
iterator next = position;
++next;
return table_.erase_nodes_range(position, next);
}
template <class K, class T, class H, class P, class A>
@@ -2344,7 +2350,9 @@ namespace boost {
unordered_multimap<K, T, H, P, A>::erase(const_iterator position)
{
BOOST_ASSERT(position != this->end());
return table_.erase_node(position);
const_iterator next = position;
++next;
return table_.erase_nodes_range(position, next);
}
template <class K, class T, class H, class P, class A>
@@ -2506,10 +2514,6 @@ namespace boost {
template <class K, class T, class H, class P, class A>
float unordered_multimap<K, T, H, P, A>::load_factor() const BOOST_NOEXCEPT
{
if (table_.size_ == 0) {
return 0.0f;
}
BOOST_ASSERT(table_.bucket_count() != 0);
return static_cast<float>(table_.size_) /
static_cast<float>(table_.bucket_count());
+11 -10
View File
@@ -1266,6 +1266,8 @@ namespace boost {
////////////////////////////////////////////////////////////////////////////
template <class T, class H, class P, class A>
unordered_set<T, H, P, A>::unordered_set()
: table_(boost::unordered::detail::default_bucket_count, hasher(),
key_equal(), allocator_type())
{
}
@@ -1455,7 +1457,9 @@ namespace boost {
typename unordered_set<T, H, P, A>::iterator
unordered_set<T, H, P, A>::erase(const_iterator position)
{
return table_.erase_node(position);
const_iterator last = position;
++last;
return table_.erase_nodes_range(position, last);
}
template <class T, class H, class P, class A>
@@ -1584,10 +1588,6 @@ namespace boost {
template <class T, class H, class P, class A>
float unordered_set<T, H, P, A>::load_factor() const BOOST_NOEXCEPT
{
if (table_.size_ == 0) {
return 0.0f;
}
BOOST_ASSERT(table_.bucket_count() != 0);
return static_cast<float>(table_.size_) /
static_cast<float>(table_.bucket_count());
@@ -1662,6 +1662,8 @@ namespace boost {
template <class T, class H, class P, class A>
unordered_multiset<T, H, P, A>::unordered_multiset()
: table_(boost::unordered::detail::default_bucket_count, hasher(),
key_equal(), allocator_type())
{
}
@@ -1851,7 +1853,10 @@ namespace boost {
unordered_multiset<T, H, P, A>::erase(const_iterator position)
{
BOOST_ASSERT(position != this->end());
return table_.erase_node(position);
iterator next = position;
++next;
table_.erase_nodes_range(position, next);
return next;
}
template <class T, class H, class P, class A>
@@ -1986,10 +1991,6 @@ namespace boost {
template <class T, class H, class P, class A>
float unordered_multiset<T, H, P, A>::load_factor() const BOOST_NOEXCEPT
{
if (table_.size_ == 0) {
return 0.0f;
}
BOOST_ASSERT(table_.bucket_count() != 0);
return static_cast<float>(table_.size_) /
static_cast<float>(table_.bucket_count());
+1 -7
View File
@@ -6,12 +6,6 @@ include(BoostTestJamfile OPTIONAL RESULT_VARIABLE HAVE_BOOST_TEST)
if(HAVE_BOOST_TEST)
boost_test_jamfile(
FILE Jamfile.v2
LINK_LIBRARIES
Boost::unordered
Boost::core
Boost::concept_check
)
boost_test_jamfile(FILE Jamfile.v2 LINK_LIBRARIES Boost::unordered Boost::core)
endif()
-57
View File
@@ -24,15 +24,11 @@ project
<toolset>clang:<cxxflags>$(clang-flags)
<toolset>msvc:<cxxflags>$(msvc-flags)
<toolset>gcc-4.4:<cxxflags>-Wno-strict-aliasing
<toolset>gcc-4.4:<cxxflags>-fno-deduce-init-list
<toolset>gcc:<warnings-as-errors>on
<toolset>clang:<warnings-as-errors>on
<toolset>msvc:<warnings-as-errors>on
;
run unordered/prime_fmod_tests.cpp ;
run unordered/fwd_set_test.cpp ;
run unordered/fwd_map_test.cpp ;
run unordered/allocator_traits.cpp ;
@@ -47,7 +43,6 @@ run unordered/equivalent_keys_tests.cpp ;
run unordered/constructor_tests.cpp ;
run unordered/copy_tests.cpp ;
run unordered/move_tests.cpp ;
run unordered/post_move_tests.cpp ;
run unordered/assign_tests.cpp ;
run unordered/insert_tests.cpp ;
run unordered/insert_stable_tests.cpp ;
@@ -96,55 +91,3 @@ run exception/swap_exception_tests.cpp : : : <define>BOOST_UNORDERED_SWAP_METHOD
run exception/merge_exception_tests.cpp ;
run quick.cpp ;
import ../../config/checks/config : requires ;
CPP11 = [ requires cxx11_constexpr cxx11_noexcept cxx11_decltype cxx11_alignas ] ;
rule build_foa ( name )
{
run unordered/$(name).cpp : : : $(CPP11) <define>BOOST_UNORDERED_FOA_TESTS : foa_$(name) ;
}
build_foa fwd_set_test ;
build_foa fwd_map_test ;
build_foa compile_set ;
build_foa compile_map ;
build_foa noexcept_tests ;
run unordered/link_test_1.cpp unordered/link_test_2.cpp : : : $(CPP11) <define>BOOST_UNORDERED_FOA_TESTS : foa_link_test ;
build_foa incomplete_test ;
build_foa simple_tests ;
build_foa equivalent_keys_tests ;
build_foa constructor_tests ;
build_foa copy_tests ;
build_foa move_tests ;
build_foa post_move_tests ;
build_foa assign_tests ;
build_foa insert_tests ;
build_foa insert_hint_tests ;
build_foa emplace_tests ;
build_foa erase_tests ;
build_foa merge_tests ;
build_foa find_tests ;
build_foa at_tests ;
build_foa load_factor_tests ;
build_foa rehash_tests ;
build_foa equality_tests ;
build_foa swap_tests ;
run unordered/scoped_allocator.cpp : : : $(CPP11) <toolset>msvc-14.0:<build>no <define>BOOST_UNORDERED_FOA_TESTS : foa_scoped_allocator ;
build_foa transparent_tests ;
build_foa reserve_tests ;
build_foa contains_tests ;
build_foa erase_if ;
build_foa scary_tests ;
build_foa init_type_insert_tests ;
run exception/constructor_exception_tests.cpp : : : $(CPP11) <define>BOOST_UNORDERED_FOA_TESTS : foa_constructor_exception_tests ;
run exception/copy_exception_tests.cpp : : : $(CPP11) <define>BOOST_UNORDERED_FOA_TESTS : foa_copy_exception_tests ;
run exception/assign_exception_tests.cpp : : : $(CPP11) <define>BOOST_UNORDERED_FOA_TESTS : foa_assign_exception_tests ;
run exception/move_assign_exception_tests.cpp : : : $(CPP11) <define>BOOST_UNORDERED_FOA_TESTS : foa_move_assign_exception_tests ;
run exception/insert_exception_tests.cpp : : : $(CPP11) <define>BOOST_UNORDERED_FOA_TESTS : foa_insert_exception_tests ;
run exception/erase_exception_tests.cpp : : : $(CPP11) <define>BOOST_UNORDERED_FOA_TESTS : foa_erase_exception_tests ;
run exception/rehash_exception_tests.cpp : : : $(CPP11) <define>BOOST_UNORDERED_FOA_TESTS : foa_rehash_exception_tests ;
run exception/swap_exception_tests.cpp : : : $(CPP11) <define>BOOST_UNORDERED_FOA_TESTS : foa_swap_exception_tests ;
run exception/merge_exception_tests.cpp : : : $(CPP11) <define>BOOST_UNORDERED_FOA_TESTS : foa_merge_exception_tests ;
+17 -2
View File
@@ -18,6 +18,7 @@ assert
config
container_hash
core
iterator
move
mp11
predef
@@ -28,10 +29,24 @@ type_traits
# Secondary dependencies
detail
integer
static_assert
concept_check
conversion
detail
function_types
fusion
mpl
optional
smart_ptr
utility
winapi
typeof
functional
io
function
bind
integer
type_index
)
foreach(dep IN LISTS deps)
+6 -24
View File
@@ -1,33 +1,17 @@
// Copyright 2006-2009 Daniel James.
// Copyright 2022 Christian Mazakas.
// Distributed under the Boost Software License, Version 1.0. (See accompanying
// file LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt)
#include "../helpers/unordered.hpp"
// clang-format off
#include "../helpers/prefix.hpp"
#include <boost/unordered_map.hpp>
#include <boost/unordered_set.hpp>
#include "../helpers/postfix.hpp"
// clang-format on
#include "../objects/exception.hpp"
#ifdef BOOST_UNORDERED_FOA_TESTS
typedef boost::unordered_flat_set<test::exception::object,
test::exception::hash, test::exception::equal_to,
test::exception::allocator<test::exception::object> >
test_set;
typedef boost::unordered_flat_map<test::exception::object,
test::exception::object, test::exception::hash, test::exception::equal_to,
test::exception::allocator2<test::exception::object> >
test_map;
typedef boost::unordered_flat_set<
std::pair<test::exception::object, test::exception::object>,
test::exception::hash, test::exception::equal_to,
test::exception::allocator<test::exception::object> >
test_pair_set;
#define CONTAINER_SEQ (test_set)(test_map)
#define CONTAINER_PAIR_SEQ (test_pair_set)(test_map)
#else
typedef boost::unordered_set<test::exception::object, test::exception::hash,
test::exception::equal_to,
test::exception::allocator<test::exception::object> >
@@ -58,5 +42,3 @@ typedef boost::unordered_multiset<
#define CONTAINER_SEQ (test_set)(test_multiset)(test_map)(test_multimap)
#define CONTAINER_PAIR_SEQ \
(test_pair_set)(test_pair_multiset)(test_map)(test_multimap)
#endif
+6 -75
View File
@@ -1,6 +1,5 @@
// Copyright 2006-2009 Daniel James.
// Copyright 2022 Christian Mazakas.
// Distributed under the Boost Software License, Version 1.0. (See accompanying
// file LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt)
#include "./containers.hpp"
@@ -96,7 +95,7 @@ void insert_rehash_exception_test(
T*, Inserter insert, test::random_generator gen)
{
for (int i = 0; i < 5; ++i) {
T x(1);
T x;
rehash_prep(x);
test::random_values<T> v2(5, gen);
@@ -222,41 +221,16 @@ struct emplace_lvalue_pos_type
} emplace_lvalue_pos;
// Run the exception tests in various combinations.
using test::default_generator;
using test::limited_range;
using test::generate_collisions;
#ifdef BOOST_UNORDERED_FOA_TESTS
test_set* test_set_;
test_map* test_map_;
// clang-format off
UNORDERED_TEST(insert_exception_test,
((test_set_)(test_map_))
((insert_lvalue)(insert_lvalue_begin)(insert_lvalue_end)
(insert_lvalue_pos)(insert_single_item_range)
(emplace_lvalue)(emplace_lvalue_begin)(emplace_lvalue_end)
(emplace_lvalue_pos)
)
((default_generator)(limited_range)(generate_collisions))
)
UNORDERED_TEST(insert_rehash_exception_test,
((test_set_)(test_map_))
((insert_lvalue)(insert_lvalue_begin)(insert_lvalue_end)
(insert_lvalue_pos)(insert_single_item_range)
(emplace_lvalue)(emplace_lvalue_begin)(emplace_lvalue_end)
(emplace_lvalue_pos)
)
((default_generator)(limited_range)(generate_collisions))
)
// clang-format on
#else
test_set* test_set_;
test_multiset* test_multiset_;
test_map* test_map_;
test_multimap* test_multimap_;
using test::default_generator;
using test::limited_range;
using test::generate_collisions;
// clang-format off
UNORDERED_TEST(insert_exception_test,
((test_set_)(test_multiset_)(test_map_)(test_multimap_))
@@ -278,7 +252,6 @@ UNORDERED_TEST(insert_rehash_exception_test,
((default_generator)(limited_range)(generate_collisions))
)
// clang-format on
#endif
// Repeat insert tests with pairs
@@ -286,13 +259,8 @@ struct pair_emplace_type : inserter_base
{
template <typename T, typename Iterator> void operator()(T& x, Iterator it)
{
#ifdef BOOST_UNORDERED_FOA_TESTS
x.emplace(std::piecewise_construct, std::make_tuple(it->first),
std::make_tuple(it->second));
#else
x.emplace(boost::unordered::piecewise_construct,
boost::make_tuple(it->first), boost::make_tuple(it->second));
#endif
}
} pair_emplace;
@@ -300,34 +268,12 @@ struct pair_emplace2_type : inserter_base
{
template <typename T, typename Iterator> void operator()(T& x, Iterator it)
{
#ifdef BOOST_UNORDERED_FOA_TESTS
x.emplace_hint(x.begin(), std::piecewise_construct,
std::make_tuple(it->first),
std::make_tuple(it->second.tag1_, it->second.tag2_));
#else
x.emplace_hint(x.begin(), boost::unordered::piecewise_construct,
boost::make_tuple(it->first),
boost::make_tuple(it->second.tag1_, it->second.tag2_));
#endif
}
} pair_emplace2;
#ifdef BOOST_UNORDERED_FOA_TESTS
test_pair_set* test_pair_set_;
// clang-format off
UNORDERED_TEST(insert_exception_test,
((test_pair_set_)(test_map_))
((pair_emplace)(pair_emplace2))
((default_generator)(limited_range)(generate_collisions))
)
UNORDERED_TEST(insert_rehash_exception_test,
((test_pair_set_)(test_map_))
((pair_emplace)(pair_emplace2))
((default_generator)(limited_range)(generate_collisions))
)
// clang-format on
#else
test_pair_set* test_pair_set_;
test_pair_multiset* test_pair_multiset_;
@@ -343,7 +289,6 @@ UNORDERED_TEST(insert_rehash_exception_test,
((default_generator)(limited_range)(generate_collisions))
)
// clang-format on
#endif
// Test inserting using operator[]
@@ -448,7 +393,7 @@ template <typename T>
void insert_range_rehash_exception_test(T*, test::random_generator gen)
{
for (int i = 0; i < 5; ++i) {
T x(1);
T x;
rehash_prep(x);
test::random_values<T> v2(5, gen);
@@ -456,19 +401,6 @@ void insert_range_rehash_exception_test(T*, test::random_generator gen)
}
}
#ifdef BOOST_UNORDERED_FOA_TESTS
// clang-format off
UNORDERED_TEST(insert_range_exception_test,
((test_set_)(test_map_))
((default_generator)(limited_range)(generate_collisions))
)
UNORDERED_TEST(insert_range_rehash_exception_test,
((test_set_)(test_map_))
((default_generator)(limited_range)(generate_collisions))
)
// clang-format on
#else
// clang-format off
UNORDERED_TEST(insert_range_exception_test,
((test_set_)(test_multiset_)(test_map_)(test_multimap_))
@@ -480,6 +412,5 @@ UNORDERED_TEST(insert_range_rehash_exception_test,
((default_generator)(limited_range)(generate_collisions))
)
// clang-format on
#endif
RUN_TESTS()
+4 -49
View File
@@ -1,6 +1,5 @@
// Copyright 2017-2018 Daniel James.
// Copyright 2022 Christian Mazakas.
// Distributed under the Boost Software License, Version 1.0. (See accompanying
// file LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt)
@@ -53,53 +52,6 @@ void merge_exception_test(T1 const*, T2 const*, std::size_t count12, int tag12,
EXCEPTION_LOOP(merge_exception_test(x, y))
}
using test::default_generator;
using test::generate_collisions;
using test::limited_range;
#ifdef BOOST_UNORDERED_FOA_TESTS
boost::unordered_flat_set<test::exception::object, test::exception::hash,
test::exception::equal_to,
test::exception::allocator<test::exception::object> >* test_set_;
boost::unordered_flat_map<test::exception::object, test::exception::object,
test::exception::hash, test::exception::equal_to,
test::exception::allocator2<test::exception::object> >* test_map_;
// clang-format off
UNORDERED_MULTI_TEST(set_merge, merge_exception_test,
((test_set_))
((test_set_))
((0x0000)(0x6400)(0x0064)(0x0a64)(0x3232))
((0x0000)(0x0001)(0x0102))
((default_generator)(limited_range))
((default_generator)(limited_range))
)
UNORDERED_MULTI_TEST(map_merge, merge_exception_test,
((test_map_))
((test_map_))
((0x0000)(0x6400)(0x0064)(0x0a64)(0x3232))
((0x0101)(0x0200)(0x0201))
((default_generator)(limited_range))
((default_generator)(limited_range))
)
// Run fewer generate_collisions tests, as they're slow.
UNORDERED_MULTI_TEST(set_merge_collisions, merge_exception_test,
((test_set_))
((test_set_))
((0x0a0a))
((0x0202)(0x0100)(0x0201))
((generate_collisions))
((generate_collisions))
)
UNORDERED_MULTI_TEST(map_merge_collisions, merge_exception_test,
((test_map_))
((test_map_))
((0x0a0a))
((0x0000)(0x0002)(0x0102))
((generate_collisions))
((generate_collisions))
)
#else
boost::unordered_set<test::exception::object, test::exception::hash,
test::exception::equal_to,
test::exception::allocator<test::exception::object> >* test_set_;
@@ -113,6 +65,10 @@ boost::unordered_multimap<test::exception::object, test::exception::object,
test::exception::hash, test::exception::equal_to,
test::exception::allocator2<test::exception::object> >* test_multimap_;
using test::default_generator;
using test::generate_collisions;
using test::limited_range;
// clang-format off
UNORDERED_MULTI_TEST(set_merge, merge_exception_test,
((test_set_)(test_multiset_))
@@ -148,6 +104,5 @@ UNORDERED_MULTI_TEST(map_merge_collisions, merge_exception_test,
((generate_collisions))
)
// clang-format on
#endif
RUN_TESTS_QUIET()
-5
View File
@@ -1,15 +1,10 @@
// Copyright 2006-2009 Daniel James.
// Copyright 2022 Christian Mazakas.
// Distributed under the Boost Software License, Version 1.0. (See accompanying
// file LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt)
#include "./containers.hpp"
#if defined(BOOST_UNORDERED_FOA_TESTS)
#define BOOST_UNORDERED_FOA_WEAK_GUARANTEE_SWAP_EXCEPTIONS_TESTS
#endif
#include "../helpers/invariants.hpp"
#include "../helpers/random_values.hpp"
#include "../helpers/tracker.hpp"
-15
View File
@@ -1,6 +1,5 @@
// Copyright 2006-2009 Daniel James.
// Copyright 2022 Christian Mazakas.
// Distributed under the Boost Software License, Version 1.0. (See accompanying
// file LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt)
@@ -54,22 +53,11 @@ namespace test {
if (test::has_unique_keys<X>::value && count != 1)
BOOST_ERROR("Non-unique key.");
#if !defined(BOOST_UNORDERED_FOA_WEAK_GUARANTEE_SWAP_EXCEPTIONS_TESTS)
// we conditionally compile this check because our FOA implementation only
// exhibits the weak guarantee when swapping throws
//
// in this case, the hasher may be changed before the predicate and the
// arrays are swapped in which case, we can can find an element by
// iteration but unfortunately, it's in the wrong slot according to the
// new hash function so count(key) can wind up returning nothing when
// there really is something
if (x1.count(key) != count) {
BOOST_ERROR("Incorrect output of count.");
std::cerr << x1.count(key) << "," << count << "\n";
}
#endif
#ifndef BOOST_UNORDERED_FOA_TESTS
// Check that the keys are in the correct bucket and are
// adjacent in the bucket.
typename X::size_type bucket = x1.bucket(key);
@@ -98,7 +86,6 @@ namespace test {
}
}
}
#endif
};
// Check that size matches up.
@@ -117,7 +104,6 @@ namespace test {
if (fabs(x1.load_factor() - load_factor) > x1.load_factor() / 64)
BOOST_ERROR("x1.load_factor() doesn't match actual load_factor.");
#ifndef BOOST_UNORDERED_FOA_TESTS
// Check that size in the buckets matches up.
typename X::size_type bucket_size = 0;
@@ -134,7 +120,6 @@ namespace test {
BOOST_ERROR("x1.size() doesn't match bucket size.");
std::cout << x1.size() << "/" << bucket_size << std::endl;
}
#endif
}
}
+4 -3
View File
@@ -9,8 +9,8 @@
#include "./generators.hpp"
#include "./list.hpp"
#include "./metafunctions.hpp"
#include <boost/type_traits/conditional.hpp>
#include <algorithm>
#include <boost/detail/select_type.hpp>
namespace test {
template <class X> struct unordered_generator_set
@@ -69,8 +69,9 @@ namespace test {
template <class X>
struct unordered_generator_base
: public boost::conditional<test::is_set<X>::value,
test::unordered_generator_set<X>, test::unordered_generator_map<X> >
: public boost::detail::if_true<test::is_set<X>::value>::
BOOST_NESTED_TEMPLATE then<test::unordered_generator_set<X>,
test::unordered_generator_map<X> >
{
};
-22
View File
@@ -1,22 +0,0 @@
// Copyright 2022 Christian Mazakas
// Distributed under the Boost Software License, Version 1.0. (See accompanying
// file LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt)
#if !defined(BOOST_UNORDERED_TEST_HELPERS_UNORDERED_HEADER)
#define BOOST_UNORDERED_TEST_HELPERS_UNORDERED_HEADER
// clang-format off
#include "prefix.hpp"
#ifdef BOOST_UNORDERED_FOA_TESTS
#include <boost/unordered/unordered_flat_set.hpp>
#include <boost/unordered/unordered_flat_map.hpp>
#include <boost/unordered/detail/implementation.hpp>
#else
#include <boost/unordered_set.hpp>
#include <boost/unordered_map.hpp>
#endif
#include "postfix.hpp"
// clang-format on
#endif
+1 -2
View File
@@ -11,7 +11,6 @@
#if !defined(BOOST_UNORDERED_OBJECTS_MINIMAL_HEADER)
#define BOOST_UNORDERED_OBJECTS_MINIMAL_HEADER
#include <boost/core/addressof.hpp>
#include <boost/core/lightweight_test.hpp>
#include <boost/core/pointer_traits.hpp>
#include <boost/move/move.hpp>
@@ -321,7 +320,7 @@ namespace test {
bool operator!() const { return !ptr_; }
static ptr pointer_to(T& p) {
return ptr(boost::addressof(p));
return ptr(&p);
}
// I'm not using the safe bool idiom because the containers should be
+15 -61
View File
@@ -1,10 +1,14 @@
// Copyright 2006-2009 Daniel James.
// Copyright 2022 Christian Mazakas.
// Distributed under the Boost Software License, Version 1.0. (See accompanying
// file LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt)
#include "../helpers/unordered.hpp"
// clang-format off
#include "../helpers/prefix.hpp"
#include <boost/unordered_set.hpp>
#include <boost/unordered_map.hpp>
#include "../helpers/postfix.hpp"
// clang-format on
#include "../helpers/test.hpp"
#include "../objects/test.hpp"
@@ -41,7 +45,6 @@ namespace assign_tests {
BOOST_TEST(x.empty());
BOOST_TEST(test::equivalent(x.hash_function(), hf));
BOOST_TEST(test::equivalent(x.key_eq(), eq));
BOOST_TEST(test::detail::tracker.count_allocations == 0);
}
BOOST_LIGHTWEIGHT_TEST_OSTREAM << "assign_tests1.2\n";
@@ -91,7 +94,6 @@ namespace assign_tests {
BOOST_TEST(test::equivalent(x1.key_eq(), eq1));
BOOST_TEST(test::equivalent(x2.hash_function(), hf1));
BOOST_TEST(test::equivalent(x2.key_eq(), eq1));
BOOST_TEST(test::detail::tracker.count_allocations == 0);
test::check_container(x1, x2);
}
@@ -197,54 +199,6 @@ namespace assign_tests {
}
}
using test::default_generator;
using test::generate_collisions;
using test::limited_range;
template <typename T> bool is_propagate(T*)
{
return T::allocator_type::is_propagate_on_assign;
}
#ifdef BOOST_UNORDERED_FOA_TESTS
boost::unordered_flat_map<test::object, test::object, test::hash,
test::equal_to, std::allocator<test::object> >* test_map_std_alloc;
boost::unordered_flat_set<test::object, test::hash, test::equal_to,
test::allocator1<test::object> >* test_set;
boost::unordered_flat_map<test::object, test::object, test::hash,
test::equal_to, test::allocator2<test::object> >* test_map;
boost::unordered_flat_set<test::object, test::hash, test::equal_to,
test::cxx11_allocator<test::object, test::propagate_assign> >*
test_set_prop_assign;
boost::unordered_flat_map<test::object, test::object, test::hash,
test::equal_to,
test::cxx11_allocator<test::object, test::propagate_assign> >*
test_map_prop_assign;
boost::unordered_flat_set<test::object, test::hash, test::equal_to,
test::cxx11_allocator<test::object, test::no_propagate_assign> >*
test_set_no_prop_assign;
boost::unordered_flat_map<test::object, test::object, test::hash,
test::equal_to,
test::cxx11_allocator<test::object, test::no_propagate_assign> >*
test_map_no_prop_assign;
UNORDERED_AUTO_TEST (check_traits) {
BOOST_TEST(!is_propagate(test_set));
BOOST_TEST(is_propagate(test_set_prop_assign));
BOOST_TEST(!is_propagate(test_set_no_prop_assign));
}
UNORDERED_TEST(assign_tests1,
((test_map_std_alloc)(test_set)(test_map)(test_set_prop_assign)(test_map_prop_assign)(test_set_no_prop_assign)(test_map_no_prop_assign))(
(default_generator)(generate_collisions)(limited_range)))
UNORDERED_TEST(assign_tests2,
((test_set)(test_map)(test_set_prop_assign)(test_map_prop_assign)(test_set_no_prop_assign)(test_map_no_prop_assign))(
(default_generator)(generate_collisions)(limited_range)))
#else
boost::unordered_map<test::object, test::object, test::hash, test::equal_to,
std::allocator<test::object> >* test_map_std_alloc;
@@ -285,6 +239,15 @@ namespace assign_tests {
test::cxx11_allocator<test::object, test::no_propagate_assign> >*
test_multimap_no_prop_assign;
using test::default_generator;
using test::generate_collisions;
using test::limited_range;
template <typename T> bool is_propagate(T*)
{
return T::allocator_type::is_propagate_on_assign;
}
UNORDERED_AUTO_TEST (check_traits) {
BOOST_TEST(!is_propagate(test_set));
BOOST_TEST(is_propagate(test_set_prop_assign));
@@ -306,18 +269,13 @@ namespace assign_tests {
test_set_no_prop_assign)(test_multiset_no_prop_assign)(
test_map_no_prop_assign)(test_multimap_no_prop_assign))(
(default_generator)(generate_collisions)(limited_range)))
#endif
#if !defined(BOOST_NO_CXX11_HDR_INITIALIZER_LIST)
UNORDERED_AUTO_TEST (assign_default_initializer_list) {
BOOST_LIGHTWEIGHT_TEST_OSTREAM << "Initializer List Tests\n";
std::initializer_list<std::pair<int const, int> > init;
#ifdef BOOST_UNORDERED_FOA_TESTS
boost::unordered_flat_map<int, int> x1;
#else
boost::unordered_map<int, int> x1;
#endif
x1[25] = 3;
x1[16] = 10;
BOOST_TEST(!x1.empty());
@@ -331,11 +289,7 @@ namespace assign_tests {
UNORDERED_AUTO_TEST (assign_initializer_list) {
BOOST_LIGHTWEIGHT_TEST_OSTREAM << "Initializer List Tests\n";
#ifdef BOOST_UNORDERED_FOA_TESTS
boost::unordered_flat_set<int> x;
#else
boost::unordered_set<int> x;
#endif
x.insert(10);
x.insert(20);
x = {1, 2, -10};
+5 -7
View File
@@ -1,10 +1,13 @@
// Copyright 2007-2009 Daniel James.
// Copyright 2022 Christian Mazakas.
// Distributed under the Boost Software License, Version 1.0. (See accompanying
// file LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt)
#include "../helpers/unordered.hpp"
// clang-format off
#include "../helpers/prefix.hpp"
#include <boost/unordered_map.hpp>
#include "../helpers/postfix.hpp"
// clang-format on
#include "../helpers/test.hpp"
#include <string>
@@ -14,13 +17,8 @@ namespace at_tests {
UNORDERED_AUTO_TEST (at_tests) {
BOOST_LIGHTWEIGHT_TEST_OSTREAM << "Create Map" << std::endl;
#ifdef BOOST_UNORDERED_FOA_TESTS
boost::unordered_flat_map<std::string, int> x;
boost::unordered_flat_map<std::string, int> const& x_const(x);
#else
boost::unordered_map<std::string, int> x;
boost::unordered_map<std::string, int> const& x_const(x);
#endif
BOOST_LIGHTWEIGHT_TEST_OSTREAM << "Check empty container" << std::endl;
+5 -94
View File
@@ -1,41 +1,23 @@
// Copyright 2006-2009 Daniel James.
// Copyright 2022 Christian Mazakas.
// Distributed under the Boost Software License, Version 1.0. (See accompanying
// file LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt)
// This test creates the containers with members that meet their minimum
// requirements. Makes sure everything compiles and is defined correctly.
#include "../helpers/unordered.hpp"
// clang-format off
#include "../helpers/prefix.hpp"
#include <boost/unordered_map.hpp>
#include "../helpers/postfix.hpp"
// clang-format on
#include "../helpers/test.hpp"
#include "../objects/minimal.hpp"
#include "./compile_tests.hpp"
// Explicit instantiation to catch compile-time errors
#ifdef BOOST_UNORDERED_FOA_TESTS
// emulates what was already done for previous tests but without leaking to
// the detail namespace
//
template <typename K, typename T, typename H, typename P, typename A>
class instantiate_flat_map
{
typedef boost::unordered_flat_map<K, T, H, P, A> container;
container x;
};
template class instantiate_flat_map<int, int, boost::hash<int>,
std::equal_to<int>, test::minimal::allocator<int> >;
template class instantiate_flat_map<test::minimal::assignable const,
test::minimal::default_assignable const,
test::minimal::hash<test::minimal::assignable>,
test::minimal::equal_to<test::minimal::assignable>,
test::minimal::allocator<int> >;
#else
#define INSTANTIATE(type) \
template class boost::unordered::detail::instantiate_##type
@@ -53,7 +35,6 @@ INSTANTIATE(multimap)<test::minimal::assignable, test::minimal::assignable,
test::minimal::hash<test::minimal::assignable>,
test::minimal::equal_to<test::minimal::assignable>,
test::minimal::allocator<int> >;
#endif
UNORDERED_AUTO_TEST (test0) {
test::minimal::constructor_param x;
@@ -64,19 +45,6 @@ UNORDERED_AUTO_TEST (test0) {
BOOST_LIGHTWEIGHT_TEST_OSTREAM << "Test unordered_map.\n";
#ifdef BOOST_UNORDERED_FOA_TESTS
boost::unordered_flat_map<int, int> int_map;
boost::unordered_flat_map<int, int, boost::hash<int>, std::equal_to<int>,
test::minimal::cxx11_allocator<std::pair<int const, int> > >
int_map2;
boost::unordered_flat_map<test::minimal::assignable,
test::minimal::assignable, test::minimal::hash<test::minimal::assignable>,
test::minimal::equal_to<test::minimal::assignable>,
test::minimal::allocator<value_type> >
map;
#else
boost::unordered_map<int, int> int_map;
boost::unordered_map<int, int, boost::hash<int>, std::equal_to<int>,
@@ -88,13 +56,11 @@ UNORDERED_AUTO_TEST (test0) {
test::minimal::equal_to<test::minimal::assignable>,
test::minimal::allocator<value_type> >
map;
#endif
container_test(int_map, std::pair<int const, int>(0, 0));
container_test(int_map2, std::pair<int const, int>(0, 0));
container_test(map, value);
#ifndef BOOST_UNORDERED_FOA_TESTS
BOOST_LIGHTWEIGHT_TEST_OSTREAM << "Test unordered_multimap.\n";
boost::unordered_multimap<int, int> int_multimap;
@@ -112,7 +78,6 @@ UNORDERED_AUTO_TEST (test0) {
container_test(int_multimap, std::pair<int const, int>(0, 0));
container_test(int_multimap2, std::pair<int const, int>(0, 0));
container_test(multimap, value);
#endif
}
UNORDERED_AUTO_TEST (equality_tests) {
@@ -120,22 +85,6 @@ UNORDERED_AUTO_TEST (equality_tests) {
test::minimal::copy_constructible_equality_comparable>
value_type;
#ifdef BOOST_UNORDERED_FOA_TESTS
boost::unordered_flat_map<int, int> int_map;
boost::unordered_flat_map<int, int, boost::hash<int>, std::equal_to<int>,
test::minimal::cxx11_allocator<std::pair<int const, int> > >
int_map2;
boost::unordered_flat_map<
test::minimal::copy_constructible_equality_comparable,
test::minimal::copy_constructible_equality_comparable,
test::minimal::hash<test::minimal::copy_constructible_equality_comparable>,
test::minimal::equal_to<
test::minimal::copy_constructible_equality_comparable>,
test::minimal::allocator<value_type> >
map;
#else
boost::unordered_map<int, int> int_map;
boost::unordered_map<int, int, boost::hash<int>, std::equal_to<int>,
@@ -149,13 +98,11 @@ UNORDERED_AUTO_TEST (equality_tests) {
test::minimal::copy_constructible_equality_comparable>,
test::minimal::allocator<value_type> >
map;
#endif
equality_test(int_map);
equality_test(int_map2);
equality_test(map);
#ifndef BOOST_UNORDERED_FOA_TESTS
boost::unordered_multimap<int, int> int_multimap;
boost::unordered_multimap<int, int, boost::hash<int>, std::equal_to<int>,
@@ -174,7 +121,6 @@ UNORDERED_AUTO_TEST (equality_tests) {
equality_test(int_multimap);
equality_test(int_multimap2);
equality_test(multimap);
#endif
}
UNORDERED_AUTO_TEST (test1) {
@@ -185,19 +131,11 @@ UNORDERED_AUTO_TEST (test1) {
BOOST_LIGHTWEIGHT_TEST_OSTREAM << "Test unordered_map.\n";
#ifdef BOOST_UNORDERED_FOA_TESTS
boost::unordered_flat_map<int, int> map;
boost::unordered_flat_map<int, int, boost::hash<int>, std::equal_to<int>,
test::minimal::cxx11_allocator<std::pair<int const, int> > >
map2;
#else
boost::unordered_map<int, int> map;
boost::unordered_map<int, int, boost::hash<int>, std::equal_to<int>,
test::minimal::cxx11_allocator<std::pair<int const, int> > >
map2;
#endif
unordered_unique_test(map, map_value);
unordered_map_test(map, value, value);
@@ -209,7 +147,6 @@ UNORDERED_AUTO_TEST (test1) {
unordered_copyable_test(map2, value, map_value, hash, equal_to);
unordered_map_functions(map2, value, value);
#ifndef BOOST_UNORDERED_FOA_TESTS
BOOST_LIGHTWEIGHT_TEST_OSTREAM << "Test unordered_multimap.\n";
boost::unordered_multimap<int, int> multimap;
@@ -225,7 +162,6 @@ UNORDERED_AUTO_TEST (test1) {
unordered_equivalent_test(multimap2, map_value);
unordered_map_test(multimap2, value, value);
unordered_copyable_test(multimap2, value, map_value, hash, equal_to);
#endif
}
UNORDERED_AUTO_TEST (test2) {
@@ -242,46 +178,28 @@ UNORDERED_AUTO_TEST (test2) {
BOOST_LIGHTWEIGHT_TEST_OSTREAM << "Test unordered_map.\n";
#ifdef BOOST_UNORDERED_FOA_TESTS
boost::unordered_flat_map<test::minimal::assignable,
test::minimal::assignable, test::minimal::hash<test::minimal::assignable>,
test::minimal::equal_to<test::minimal::assignable>,
test::minimal::allocator<map_value_type> >
map;
#else
boost::unordered_map<test::minimal::assignable, test::minimal::assignable,
test::minimal::hash<test::minimal::assignable>,
test::minimal::equal_to<test::minimal::assignable>,
test::minimal::allocator<map_value_type> >
map;
#endif
unordered_unique_test(map, map_value);
unordered_map_test(map, assignable, assignable);
unordered_copyable_test(map, assignable, map_value, hash, equal_to);
unordered_map_member_test(map, map_value);
#ifdef BOOST_UNORDERED_FOA_TESTS
boost::unordered_flat_map<test::minimal::assignable,
test::minimal::default_assignable,
test::minimal::hash<test::minimal::assignable>,
test::minimal::equal_to<test::minimal::assignable>,
test::minimal::allocator<map_value_type> >
map2;
#else
boost::unordered_map<test::minimal::assignable,
test::minimal::default_assignable,
test::minimal::hash<test::minimal::assignable>,
test::minimal::equal_to<test::minimal::assignable>,
test::minimal::allocator<map_value_type> >
map2;
#endif
test::minimal::default_assignable default_assignable;
unordered_map_functions(map2, assignable, default_assignable);
#ifndef BOOST_UNORDERED_FOA_TESTS
BOOST_LIGHTWEIGHT_TEST_OSTREAM << "Test unordered_multimap.\n";
boost::unordered_multimap<test::minimal::assignable,
@@ -294,7 +212,6 @@ UNORDERED_AUTO_TEST (test2) {
unordered_map_test(multimap, assignable, assignable);
unordered_copyable_test(multimap, assignable, map_value, hash, equal_to);
unordered_map_member_test(multimap, map_value);
#endif
}
// Test for ambiguity when using key convertible from iterator
@@ -315,11 +232,6 @@ std::size_t hash_value(lwg2059_key x)
bool operator==(lwg2059_key x, lwg2059_key y) { return x.value == y.value; }
UNORDERED_AUTO_TEST (lwg2059) {
#ifdef BOOST_UNORDERED_FOA_TESTS
boost::unordered_flat_map<lwg2059_key, int> x;
x.emplace(lwg2059_key(10), 5);
x.erase(x.begin());
#else
{
boost::unordered_map<lwg2059_key, int> x;
x.emplace(lwg2059_key(10), 5);
@@ -331,7 +243,6 @@ UNORDERED_AUTO_TEST (lwg2059) {
x.emplace(lwg2059_key(10), 5);
x.erase(x.begin());
}
#endif
}
RUN_TESTS()
+9 -127
View File
@@ -1,13 +1,16 @@
// Copyright 2006-2009 Daniel James.
// Copyright 2022 Christian Mazakas.
// Distributed under the Boost Software License, Version 1.0. (See accompanying
// file LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt)
// This test creates the containers with members that meet their minimum
// requirements. Makes sure everything compiles and is defined correctly.
#include "../helpers/unordered.hpp"
// clang-format off
#include "../helpers/prefix.hpp"
#include <boost/unordered_set.hpp>
#include "../helpers/postfix.hpp"
// clang-format on
#include "../helpers/test.hpp"
#include "../objects/minimal.hpp"
@@ -15,28 +18,6 @@
// Explicit instantiation to catch compile-time errors
#ifdef BOOST_UNORDERED_FOA_TESTS
// emulates what was already done for previous tests but without leaking to
// the detail namespace
//
template <typename T, typename H, typename P, typename A>
class instantiate_flat_set
{
typedef boost::unordered_flat_set<T, H, P, A> container;
container x;
};
template class instantiate_flat_set<int, boost::hash<int>, std::equal_to<int>,
test::minimal::allocator<int> >;
template class instantiate_flat_set<test::minimal::assignable const,
test::minimal::hash<test::minimal::assignable>,
test::minimal::equal_to<test::minimal::assignable>,
test::minimal::allocator<int> >;
#else
#define INSTANTIATE(type) \
template class boost::unordered::detail::instantiate_##type
@@ -54,21 +35,6 @@ INSTANTIATE(multiset)<test::minimal::assignable,
test::minimal::equal_to<test::minimal::assignable>,
test::minimal::allocator<int> >;
#endif
UNORDERED_AUTO_TEST (type_traits) {
#ifdef BOOST_UNORDERED_FOA_TESTS
typedef boost::unordered_flat_set<int> set_type;
#else
typedef boost::unordered_set<int> set_type;
#endif
typedef set_type::iterator iterator;
BOOST_STATIC_ASSERT(boost::is_same<int const&,
std::iterator_traits<iterator>::reference>::value);
}
UNORDERED_AUTO_TEST (test0) {
test::minimal::constructor_param x;
@@ -76,19 +42,6 @@ UNORDERED_AUTO_TEST (test0) {
BOOST_LIGHTWEIGHT_TEST_OSTREAM << "Test unordered_set.\n";
#ifdef BOOST_UNORDERED_FOA_TESTS
boost::unordered_flat_set<int> int_set;
boost::unordered_flat_set<int, boost::hash<int>, std::equal_to<int>,
test::minimal::cxx11_allocator<int> >
int_set2;
boost::unordered_flat_set<test::minimal::assignable,
test::minimal::hash<test::minimal::assignable>,
test::minimal::equal_to<test::minimal::assignable>,
test::minimal::allocator<test::minimal::assignable> >
set;
#else
boost::unordered_set<int> int_set;
boost::unordered_set<int, boost::hash<int>, std::equal_to<int>,
@@ -100,13 +53,11 @@ UNORDERED_AUTO_TEST (test0) {
test::minimal::equal_to<test::minimal::assignable>,
test::minimal::allocator<test::minimal::assignable> >
set;
#endif
container_test(int_set, 0);
container_test(int_set2, 0);
container_test(set, assignable);
#ifndef BOOST_UNORDERED_FOA_TESTS
BOOST_LIGHTWEIGHT_TEST_OSTREAM << "Test unordered_multiset.\n";
boost::unordered_multiset<int> int_multiset;
@@ -124,27 +75,11 @@ UNORDERED_AUTO_TEST (test0) {
container_test(int_multiset, 0);
container_test(int_multiset2, 0);
container_test(multiset, assignable);
#endif
}
UNORDERED_AUTO_TEST (equality_tests) {
typedef test::minimal::copy_constructible_equality_comparable value_type;
#ifdef BOOST_UNORDERED_FOA_TESTS
boost::unordered_flat_set<int> int_set;
boost::unordered_flat_set<int, boost::hash<int>, std::equal_to<int>,
test::minimal::cxx11_allocator<int> >
int_set2;
boost::unordered_flat_set<
test::minimal::copy_constructible_equality_comparable,
test::minimal::hash<test::minimal::copy_constructible_equality_comparable>,
test::minimal::equal_to<
test::minimal::copy_constructible_equality_comparable>,
test::minimal::allocator<value_type> >
set;
#else
boost::unordered_set<int> int_set;
boost::unordered_set<int, boost::hash<int>, std::equal_to<int>,
@@ -157,13 +92,11 @@ UNORDERED_AUTO_TEST (equality_tests) {
test::minimal::copy_constructible_equality_comparable>,
test::minimal::allocator<value_type> >
set;
#endif
equality_test(int_set);
equality_test(int_set2);
equality_test(set);
#ifndef BOOST_UNORDERED_FOA_TESTS
boost::unordered_multiset<int> int_multiset;
boost::unordered_multiset<int, boost::hash<int>, std::equal_to<int>,
@@ -181,7 +114,6 @@ UNORDERED_AUTO_TEST (equality_tests) {
equality_test(int_multiset);
equality_test(int_multiset2);
equality_test(multiset);
#endif
}
UNORDERED_AUTO_TEST (test1) {
@@ -190,19 +122,12 @@ UNORDERED_AUTO_TEST (test1) {
int value = 0;
BOOST_LIGHTWEIGHT_TEST_OSTREAM << "Test unordered_set." << std::endl;
#ifdef BOOST_UNORDERED_FOA_TESTS
boost::unordered_flat_set<int> set;
boost::unordered_flat_set<int, boost::hash<int>, std::equal_to<int>,
test::minimal::cxx11_allocator<int> >
set2;
#else
boost::unordered_set<int> set;
boost::unordered_set<int, boost::hash<int>, std::equal_to<int>,
test::minimal::cxx11_allocator<int> >
set2;
#endif
unordered_unique_test(set, value);
unordered_set_test(set, value);
@@ -212,7 +137,6 @@ UNORDERED_AUTO_TEST (test1) {
unordered_set_test(set2, value);
unordered_copyable_test(set2, value, value, hash, equal_to);
#ifndef BOOST_UNORDERED_FOA_TESTS
BOOST_LIGHTWEIGHT_TEST_OSTREAM << "Test unordered_multiset." << std::endl;
boost::unordered_multiset<int> multiset;
@@ -228,7 +152,6 @@ UNORDERED_AUTO_TEST (test1) {
unordered_equivalent_test(multiset2, value);
unordered_set_test(multiset2, value);
unordered_copyable_test(multiset2, value, value, hash, equal_to);
#endif
}
UNORDERED_AUTO_TEST (test2) {
@@ -240,26 +163,18 @@ UNORDERED_AUTO_TEST (test2) {
test::minimal::equal_to<test::minimal::assignable> equal_to(x);
BOOST_LIGHTWEIGHT_TEST_OSTREAM << "Test unordered_set.\n";
#ifdef BOOST_UNORDERED_FOA_TESTS
boost::unordered_flat_set<test::minimal::assignable,
test::minimal::hash<test::minimal::assignable>,
test::minimal::equal_to<test::minimal::assignable>,
test::minimal::allocator<test::minimal::assignable> >
set;
#else
boost::unordered_set<test::minimal::assignable,
test::minimal::hash<test::minimal::assignable>,
test::minimal::equal_to<test::minimal::assignable>,
test::minimal::allocator<test::minimal::assignable> >
set;
#endif
unordered_unique_test(set, assignable);
unordered_set_test(set, assignable);
unordered_copyable_test(set, assignable, assignable, hash, equal_to);
unordered_set_member_test(set, assignable);
#ifndef BOOST_UNORDERED_FOA_TESTS
BOOST_LIGHTWEIGHT_TEST_OSTREAM << "Test unordered_multiset.\n";
boost::unordered_multiset<test::minimal::assignable,
@@ -272,7 +187,6 @@ UNORDERED_AUTO_TEST (test2) {
unordered_set_test(multiset, assignable);
unordered_copyable_test(multiset, assignable, assignable, hash, equal_to);
unordered_set_member_test(multiset, assignable);
#endif
}
UNORDERED_AUTO_TEST (movable1_tests) {
@@ -283,25 +197,17 @@ UNORDERED_AUTO_TEST (movable1_tests) {
test::minimal::equal_to<test::minimal::movable1> equal_to(x);
BOOST_LIGHTWEIGHT_TEST_OSTREAM << "Test unordered_set.\n";
#ifdef BOOST_UNORDERED_FOA_TESTS
boost::unordered_flat_set<test::minimal::movable1,
test::minimal::hash<test::minimal::movable1>,
test::minimal::equal_to<test::minimal::movable1>,
test::minimal::allocator<test::minimal::movable1> >
set;
#else
boost::unordered_set<test::minimal::movable1,
test::minimal::hash<test::minimal::movable1>,
test::minimal::equal_to<test::minimal::movable1>,
test::minimal::allocator<test::minimal::movable1> >
set;
#endif
// unordered_unique_test(set, movable1);
unordered_set_test(set, movable1);
unordered_movable_test(set, movable1, movable1, hash, equal_to);
#ifndef BOOST_UNORDERED_FOA_TESTS
BOOST_LIGHTWEIGHT_TEST_OSTREAM << "Test unordered_multiset.\n";
boost::unordered_multiset<test::minimal::movable1,
@@ -313,7 +219,6 @@ UNORDERED_AUTO_TEST (movable1_tests) {
// unordered_equivalent_test(multiset, movable1);
unordered_set_test(multiset, movable1);
unordered_movable_test(multiset, movable1, movable1, hash, equal_to);
#endif
}
UNORDERED_AUTO_TEST (movable2_tests) {
@@ -324,25 +229,17 @@ UNORDERED_AUTO_TEST (movable2_tests) {
test::minimal::equal_to<test::minimal::movable2> equal_to(x);
BOOST_LIGHTWEIGHT_TEST_OSTREAM << "Test unordered_set.\n";
#ifdef BOOST_UNORDERED_FOA_TESTS
boost::unordered_flat_set<test::minimal::movable2,
test::minimal::hash<test::minimal::movable2>,
test::minimal::equal_to<test::minimal::movable2>,
test::minimal::allocator<test::minimal::movable2> >
set;
#else
boost::unordered_set<test::minimal::movable2,
test::minimal::hash<test::minimal::movable2>,
test::minimal::equal_to<test::minimal::movable2>,
test::minimal::allocator<test::minimal::movable2> >
set;
#endif
// unordered_unique_test(set, movable2);
unordered_set_test(set, movable2);
unordered_movable_test(set, movable2, movable2, hash, equal_to);
#ifndef BOOST_UNORDERED_FOA_TESTS
BOOST_LIGHTWEIGHT_TEST_OSTREAM << "Test unordered_multiset.\n";
boost::unordered_multiset<test::minimal::movable2,
@@ -354,7 +251,6 @@ UNORDERED_AUTO_TEST (movable2_tests) {
// unordered_equivalent_test(multiset, movable2);
unordered_set_test(multiset, movable2);
unordered_movable_test(multiset, movable2, movable2, hash, equal_to);
#endif
}
UNORDERED_AUTO_TEST (destructible_tests) {
@@ -365,21 +261,14 @@ UNORDERED_AUTO_TEST (destructible_tests) {
test::minimal::equal_to<test::minimal::destructible> equal_to(x);
BOOST_LIGHTWEIGHT_TEST_OSTREAM << "Test unordered_set.\n";
#ifdef BOOST_UNORDERED_FOA_TESTS
boost::unordered_flat_set<test::minimal::destructible,
test::minimal::hash<test::minimal::destructible>,
test::minimal::equal_to<test::minimal::destructible> >
set;
#else
boost::unordered_set<test::minimal::destructible,
test::minimal::hash<test::minimal::destructible>,
test::minimal::equal_to<test::minimal::destructible> >
set;
#endif
unordered_destructible_test(set);
#ifndef BOOST_UNORDERED_FOA_TESTS
BOOST_LIGHTWEIGHT_TEST_OSTREAM << "Test unordered_multiset.\n";
boost::unordered_multiset<test::minimal::destructible,
@@ -388,7 +277,6 @@ UNORDERED_AUTO_TEST (destructible_tests) {
multiset;
unordered_destructible_test(multiset);
#endif
}
// Test for ambiguity when using key convertible from iterator
@@ -409,11 +297,6 @@ std::size_t hash_value(lwg2059_key x)
bool operator==(lwg2059_key x, lwg2059_key y) { return x.value == y.value; }
UNORDERED_AUTO_TEST (lwg2059) {
#ifdef BOOST_UNORDERED_FOA_TESTS
boost::unordered_flat_set<lwg2059_key> x;
x.emplace(lwg2059_key(10));
x.erase(x.begin());
#else
{
boost::unordered_set<lwg2059_key> x;
x.emplace(lwg2059_key(10));
@@ -425,7 +308,6 @@ UNORDERED_AUTO_TEST (lwg2059) {
x.emplace(lwg2059_key(10));
x.erase(x.begin());
}
#endif
}
RUN_TESTS()
-61
View File
@@ -1,6 +1,5 @@
// Copyright 2005-2009 Daniel James.
// Copyright 2022 Christian Mazakas.
// Distributed under the Boost Software License, Version 1.0. (See accompanying
// file LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt)
@@ -71,19 +70,9 @@ template <class X, class T> void container_test(X& r, T const&)
typedef typename X::reference reference;
typedef typename X::const_reference const_reference;
#ifndef BOOST_UNORDERED_FOA_TESTS
typedef typename X::node_type node_type;
#endif
typedef typename X::allocator_type allocator_type;
typedef typename X::pointer pointer;
typedef typename X::const_pointer const_pointer;
BOOST_STATIC_ASSERT((boost::is_same<pointer,
typename boost::allocator_pointer<allocator_type>::type>::value));
BOOST_STATIC_ASSERT((boost::is_same<const_pointer,
typename boost::allocator_const_pointer<allocator_type>::type>::value));
// value_type
@@ -108,10 +97,8 @@ template <class X, class T> void container_test(X& r, T const&)
// node_type
#ifndef BOOST_UNORDERED_FOA_TESTS
BOOST_STATIC_ASSERT((
boost::is_same<allocator_type, typename node_type::allocator_type>::value));
#endif
// difference_type
@@ -180,7 +167,6 @@ template <class X, class T> void container_test(X& r, T const&)
sink(X(rvalue(a_const), m));
X c3(rvalue(a_const), m);
#ifndef BOOST_UNORDERED_FOA_TESTS
// node_type
implicit_construct<node_type const>();
@@ -207,7 +193,6 @@ template <class X, class T> void container_test(X& r, T const&)
test::check_return_type<bool>::equals(n_const.empty());
TEST_NOEXCEPT_EXPR(!n_const);
TEST_NOEXCEPT_EXPR(n_const.empty());
#endif
// Avoid unused variable warnings:
@@ -277,30 +262,24 @@ template <class X, class Key> void unordered_set_test(X& r, Key const&)
typedef typename X::iterator iterator;
typedef typename X::const_iterator const_iterator;
#ifndef BOOST_UNORDERED_FOA_TESTS
typedef typename X::local_iterator local_iterator;
typedef typename X::const_local_iterator const_local_iterator;
#endif
typedef typename std::iterator_traits<iterator>::pointer iterator_pointer;
typedef typename std::iterator_traits<const_iterator>::pointer
const_iterator_pointer;
#ifndef BOOST_UNORDERED_FOA_TESTS
typedef typename std::iterator_traits<local_iterator>::pointer
local_iterator_pointer;
typedef typename std::iterator_traits<const_local_iterator>::pointer
const_local_iterator_pointer;
#endif
BOOST_STATIC_ASSERT(
(boost::is_same<value_type const*, iterator_pointer>::value));
BOOST_STATIC_ASSERT(
(boost::is_same<value_type const*, const_iterator_pointer>::value));
#ifndef BOOST_UNORDERED_FOA_TESTS
BOOST_STATIC_ASSERT(
(boost::is_same<value_type const*, local_iterator_pointer>::value));
BOOST_STATIC_ASSERT(
(boost::is_same<value_type const*, const_local_iterator_pointer>::value));
#endif
// pointer_traits<iterator>
@@ -320,8 +299,6 @@ template <class X, class Key> void unordered_set_test(X& r, Key const&)
BOOST_STATIC_ASSERT((boost::is_same<std::ptrdiff_t,
typename boost::pointer_traits<const_iterator>::difference_type>::value));
(void) r;
#ifndef BOOST_UNORDERED_FOA_TESTS
// pointer_traits<local_iterator>
BOOST_STATIC_ASSERT((boost::is_same<local_iterator,
@@ -353,7 +330,6 @@ template <class X, class Key> void unordered_set_test(X& r, Key const&)
r.emplace(boost::move(k_lvalue));
node_type n1 = r.extract(r.begin());
test::check_return_type<value_type>::equals_ref(n1.value());
#endif
}
template <class X, class Key, class T>
@@ -369,29 +345,23 @@ void unordered_map_test(X& r, Key const& k, T const& v)
typedef typename X::iterator iterator;
typedef typename X::const_iterator const_iterator;
#ifndef BOOST_UNORDERED_FOA_TESTS
typedef typename X::local_iterator local_iterator;
typedef typename X::const_local_iterator const_local_iterator;
#endif
typedef typename std::iterator_traits<iterator>::pointer iterator_pointer;
typedef typename std::iterator_traits<const_iterator>::pointer
const_iterator_pointer;
#ifndef BOOST_UNORDERED_FOA_TESTS
typedef typename std::iterator_traits<local_iterator>::pointer
local_iterator_pointer;
typedef typename std::iterator_traits<const_local_iterator>::pointer
const_local_iterator_pointer;
#endif
BOOST_STATIC_ASSERT((boost::is_same<value_type*, iterator_pointer>::value));
BOOST_STATIC_ASSERT(
(boost::is_same<value_type const*, const_iterator_pointer>::value));
#ifndef BOOST_UNORDERED_FOA_TESTS
BOOST_STATIC_ASSERT(
(boost::is_same<value_type*, local_iterator_pointer>::value));
BOOST_STATIC_ASSERT(
(boost::is_same<value_type const*, const_local_iterator_pointer>::value));
#endif
// pointer_traits<iterator>
@@ -411,7 +381,6 @@ void unordered_map_test(X& r, Key const& k, T const& v)
BOOST_STATIC_ASSERT((boost::is_same<std::ptrdiff_t,
typename boost::pointer_traits<const_iterator>::difference_type>::value));
#ifndef BOOST_UNORDERED_FOA_TESTS
// pointer_traits<local_iterator>
BOOST_STATIC_ASSERT((boost::is_same<local_iterator,
@@ -440,7 +409,6 @@ void unordered_map_test(X& r, Key const& k, T const& v)
BOOST_STATIC_ASSERT((boost::is_same<T, node_mapped_type>::value));
// Superfluous,but just to make sure.
BOOST_STATIC_ASSERT((!boost::is_const<node_key_type>::value));
#endif
// Calling functions
@@ -459,12 +427,8 @@ void unordered_map_test(X& r, Key const& k, T const& v)
r.emplace(k_lvalue, v_lvalue);
r.emplace(rvalue(k), rvalue(v));
#ifdef BOOST_UNORDERED_FOA_TESTS
r.emplace(std::piecewise_construct, std::make_tuple(k), std::make_tuple(v));
#else
r.emplace(boost::unordered::piecewise_construct, boost::make_tuple(k),
boost::make_tuple(v));
#endif
// Emplace with hint
@@ -472,15 +436,9 @@ void unordered_map_test(X& r, Key const& k, T const& v)
r.emplace_hint(r.begin(), k_lvalue, v_lvalue);
r.emplace_hint(r.begin(), rvalue(k), rvalue(v));
#ifdef BOOST_UNORDERED_FOA_TESTS
r.emplace_hint(r.begin(), std::piecewise_construct, std::make_tuple(k),
std::make_tuple(v));
#else
r.emplace_hint(r.begin(), boost::unordered::piecewise_construct,
boost::make_tuple(k), boost::make_tuple(v));
#endif
#ifndef BOOST_UNORDERED_FOA_TESTS
// Extract
test::check_return_type<node_type>::equals(r.extract(r.begin()));
@@ -503,7 +461,6 @@ void unordered_map_test(X& r, Key const& k, T const& v)
node_type n = r.extract(r.begin());
test::check_return_type<node_key_type>::equals_ref(n.key());
test::check_return_type<node_mapped_type>::equals_ref(n.mapped());
#endif
}
template <class X> void equality_test(X& r)
@@ -522,7 +479,6 @@ template <class X, class T> void unordered_unique_test(X& r, T const& t)
test::check_return_type<std::pair<iterator, bool> >::equals(r.insert(t));
test::check_return_type<std::pair<iterator, bool> >::equals(r.emplace(t));
#ifndef BOOST_UNORDERED_FOA_TESTS
typedef typename X::node_type node_type;
typedef typename X::insert_return_type insert_return_type;
@@ -547,7 +503,6 @@ template <class X, class T> void unordered_unique_test(X& r, T const& t)
test::check_return_type<iterator>::equals(insert_return.position);
test::check_return_type<node_type>::equals_ref(insert_return.node);
boost::swap(insert_return, insert_return2);
#endif
}
template <class X, class T> void unordered_equivalent_test(X& r, T const& t)
@@ -599,7 +554,6 @@ void unordered_test(X& x, Key& k, Hash& hf, Pred& eq)
typedef typename X::iterator iterator;
typedef typename X::const_iterator const_iterator;
#ifndef BOOST_UNORDERED_FOA_TESTS
typedef typename X::local_iterator local_iterator;
typedef typename X::const_local_iterator const_local_iterator;
@@ -636,7 +590,6 @@ void unordered_test(X& x, Key& k, Hash& hf, Pred& eq)
const_local_iterator_pointer;
typedef typename std::iterator_traits<const_local_iterator>::reference
const_local_iterator_reference;
#endif
typedef typename X::allocator_type allocator_type;
BOOST_STATIC_ASSERT((boost::is_same<Key, key_type>::value));
@@ -649,7 +602,6 @@ void unordered_test(X& x, Key& k, Hash& hf, Pred& eq)
BOOST_STATIC_ASSERT((boost::is_same<Pred, key_equal>::value));
test::check_return_type<bool>::convertible(eq(k, k));
#ifndef BOOST_UNORDERED_FOA_TESTS
boost::function_requires<boost::InputIteratorConcept<local_iterator> >();
BOOST_STATIC_ASSERT(
(boost::is_same<local_iterator_category, iterator_category>::value));
@@ -670,7 +622,6 @@ void unordered_test(X& x, Key& k, Hash& hf, Pred& eq)
const_iterator_pointer>::value));
BOOST_STATIC_ASSERT((boost::is_same<const_local_iterator_reference,
const_iterator_reference>::value));
#endif
X a;
allocator_type m = a.get_allocator();
@@ -716,7 +667,6 @@ void unordered_test(X& x, Key& k, Hash& hf, Pred& eq)
test::check_return_type<std::pair<const_iterator, const_iterator> >::equals(
b.equal_range(k));
test::check_return_type<size_type>::equals(b.bucket_count());
#ifndef BOOST_UNORDERED_FOA_TESTS
test::check_return_type<size_type>::equals(b.max_bucket_count());
test::check_return_type<size_type>::equals(b.bucket(k));
test::check_return_type<size_type>::equals(b.bucket_size(0));
@@ -730,7 +680,6 @@ void unordered_test(X& x, Key& k, Hash& hf, Pred& eq)
test::check_return_type<const_local_iterator>::equals(b.cbegin(0));
test::check_return_type<const_local_iterator>::equals(a.cend(0));
test::check_return_type<const_local_iterator>::equals(b.cend(0));
#endif
test::check_return_type<float>::equals(b.load_factor());
test::check_return_type<float>::equals(b.max_load_factor());
@@ -843,11 +792,7 @@ void unordered_copyable_test(X& x, Key& k, T& t, Hash& hf, Pred& eq)
X a10;
a10.insert(t);
q = a10.cbegin();
#ifdef BOOST_UNORDERED_FOA_TESTS
BOOST_STATIC_ASSERT(std::is_same<void, decltype(a10.erase(q))>::value);
#else
test::check_return_type<iterator>::equals(a10.erase(q));
#endif
// Avoid unused variable warnings:
@@ -862,12 +807,10 @@ void unordered_copyable_test(X& x, Key& k, T& t, Hash& hf, Pred& eq)
sink(a7a);
sink(a9a);
#ifndef BOOST_UNORDERED_FOA_TESTS
typedef typename X::node_type node_type;
typedef typename X::allocator_type allocator_type;
node_type const n_const = a.extract(a.begin());
test::check_return_type<allocator_type>::equals(n_const.get_allocator());
#endif
}
template <class X, class Key, class T, class Hash, class Pred>
@@ -936,11 +879,7 @@ void unordered_movable_test(X& x, Key& k, T& /* t */, Hash& hf, Pred& eq)
T v5(v);
a10.insert(boost::move(v5));
q = a10.cbegin();
#ifdef BOOST_UNORDERED_FOA_TESTS
BOOST_STATIC_ASSERT(std::is_same<void, decltype(a10.erase(q))>::value);
#else
test::check_return_type<iterator>::equals(a10.erase(q));
#endif
// Avoid unused variable warnings:
+10 -148
View File
@@ -1,10 +1,14 @@
// Copyright 2006-2010 Daniel James.
// Copyright (C) 2022 Christian Mazakas
// Distributed under the Boost Software License, Version 1.0. (See accompanying
// file LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt)
#include "../helpers/unordered.hpp"
// clang-format off
#include "../helpers/prefix.hpp"
#include <boost/unordered_set.hpp>
#include <boost/unordered_map.hpp>
#include "../helpers/postfix.hpp"
// clang-format on
#include "../helpers/test.hpp"
#include "../objects/test.hpp"
@@ -31,7 +35,6 @@ namespace constructor_tests {
T x(0, hf, eq);
BOOST_TEST(x.empty());
BOOST_TEST_EQ(x.bucket_count(), 0u);
BOOST_TEST(test::equivalent(x.hash_function(), hf));
BOOST_TEST(test::equivalent(x.key_eq(), eq));
BOOST_TEST(test::equivalent(x.get_allocator(), al));
@@ -70,7 +73,6 @@ namespace constructor_tests {
T x;
BOOST_TEST(x.empty());
BOOST_TEST_EQ(x.bucket_count(), 0u);
BOOST_TEST(test::equivalent(x.hash_function(), hf));
BOOST_TEST(test::equivalent(x.key_eq(), eq));
BOOST_TEST(test::equivalent(x.get_allocator(), al));
@@ -138,7 +140,6 @@ namespace constructor_tests {
T x(0, hf, eq, al);
BOOST_TEST(x.empty());
BOOST_TEST_EQ(x.bucket_count(), 0u);
BOOST_TEST(test::equivalent(x.hash_function(), hf));
BOOST_TEST(test::equivalent(x.key_eq(), eq));
BOOST_TEST(test::equivalent(x.get_allocator(), al));
@@ -165,7 +166,6 @@ namespace constructor_tests {
T x(al);
BOOST_TEST(x.empty());
BOOST_TEST_EQ(x.bucket_count(), 0u);
BOOST_TEST(test::equivalent(x.hash_function(), hf));
BOOST_TEST(test::equivalent(x.key_eq(), eq));
BOOST_TEST(test::equivalent(x.get_allocator(), al));
@@ -325,7 +325,6 @@ namespace constructor_tests {
T x(list);
BOOST_TEST(x.empty());
BOOST_TEST_EQ(x.bucket_count(), 0u);
BOOST_TEST(test::equivalent(x.hash_function(), hf));
BOOST_TEST(test::equivalent(x.key_eq(), eq));
BOOST_TEST(test::equivalent(x.get_allocator(), al));
@@ -381,104 +380,6 @@ namespace constructor_tests {
#endif
}
template <class T>
void no_alloc_default_construct_test(T*, test::random_generator)
{
UNORDERED_SUB_TEST("Construct 1")
{
T x;
BOOST_TEST_EQ(x.bucket_count(), 0u);
BOOST_TEST_EQ(test::detail::tracker.count_allocations, 0u);
}
UNORDERED_SUB_TEST("Construct 2")
{
{
T x(0);
BOOST_TEST_EQ(x.bucket_count(), 0u);
BOOST_TEST_EQ(test::detail::tracker.count_allocations, 0u);
}
{
T x(1);
BOOST_TEST_GT(x.bucket_count(), 0u);
BOOST_TEST_GT(test::detail::tracker.count_allocations, 0u);
}
}
UNORDERED_SUB_TEST("Construct 3")
{
test::random_values<T> v;
T x(v.begin(), v.end());
BOOST_TEST_EQ(x.bucket_count(), 0u);
BOOST_TEST_EQ(test::detail::tracker.count_allocations, 0u);
}
UNORDERED_SUB_TEST("Construct 4")
{
{
test::random_values<T> v;
T x(v.begin(), v.end(), 0);
BOOST_TEST_EQ(x.bucket_count(), 0u);
BOOST_TEST_EQ(test::detail::tracker.count_allocations, 0u);
}
{
test::random_values<T> v;
T x(v.begin(), v.end(), 1);
BOOST_TEST_GT(x.bucket_count(), 0u);
BOOST_TEST_GT(test::detail::tracker.count_allocations, 0u);
}
}
UNORDERED_SUB_TEST("Construct 5")
{
typename T::allocator_type al;
{
T x(al);
BOOST_TEST_EQ(x.bucket_count(), 0u);
BOOST_TEST_EQ(test::detail::tracker.count_allocations, 0u);
}
}
UNORDERED_SUB_TEST("Construct 6")
{
typename T::allocator_type al;
T x(0, al);
BOOST_TEST_EQ(x.bucket_count(), 0u);
BOOST_TEST_EQ(test::detail::tracker.count_allocations, 0u);
}
#if !defined(BOOST_NO_CXX11_HDR_INITIALIZER_LIST)
UNORDERED_SUB_TEST("Initializer list 1")
{
std::initializer_list<typename T::value_type> list;
T x(list);
BOOST_TEST_EQ(x.bucket_count(), 0u);
BOOST_TEST_EQ(test::detail::tracker.count_allocations, 0u);
}
UNORDERED_SUB_TEST("Initializer list 2")
{
{
std::initializer_list<typename T::value_type> list;
T x(list, 0);
BOOST_TEST_EQ(x.bucket_count(), 0u);
BOOST_TEST_EQ(test::detail::tracker.count_allocations, 0u);
}
{
std::initializer_list<typename T::value_type> list;
T x(list, 1);
BOOST_TEST_GT(x.bucket_count(), 0u);
BOOST_TEST_GT(test::detail::tracker.count_allocations, 0u);
}
}
#endif
}
template <class T>
void map_constructor_test(T*, test::random_generator const& generator)
{
@@ -493,35 +394,6 @@ namespace constructor_tests {
test::check_equivalent_keys(x);
}
using test::default_generator;
using test::generate_collisions;
using test::limited_range;
#ifdef BOOST_UNORDERED_FOA_TESTS
boost::unordered_flat_map<test::object, test::object, test::hash,
test::equal_to, std::allocator<test::object> >* test_map_std_alloc;
boost::unordered_flat_set<test::object, test::hash, test::equal_to,
test::allocator1<test::object> >* test_set;
boost::unordered_flat_map<test::object, test::object, test::hash,
test::equal_to, test::allocator2<test::object> >* test_map;
UNORDERED_TEST(constructor_tests1,
((test_map_std_alloc)(test_set)(test_map))(
(default_generator)(generate_collisions)(limited_range)))
UNORDERED_TEST(constructor_tests2,
((test_set)(test_map))(
(default_generator)(generate_collisions)(limited_range)))
UNORDERED_TEST(map_constructor_test,
((test_map_std_alloc)(test_map))(
(default_generator)(generate_collisions)(limited_range)))
UNORDERED_TEST(no_alloc_default_construct_test,
((test_set)(test_map))(
(default_generator)(generate_collisions)(limited_range)))
#else
boost::unordered_map<test::object, test::object, test::hash, test::equal_to,
std::allocator<test::object> >* test_map_std_alloc;
@@ -534,6 +406,10 @@ namespace constructor_tests {
boost::unordered_multimap<test::object, test::object, test::hash,
test::equal_to, test::allocator1<test::object> >* test_multimap;
using test::default_generator;
using test::generate_collisions;
using test::limited_range;
UNORDERED_TEST(constructor_tests1,
((test_map_std_alloc)(test_set)(test_multiset)(test_map)(test_multimap))(
(default_generator)(generate_collisions)(limited_range)))
@@ -546,20 +422,11 @@ namespace constructor_tests {
((test_map_std_alloc)(test_map)(test_multimap))(
(default_generator)(generate_collisions)(limited_range)))
UNORDERED_TEST(no_alloc_default_construct_test,
((test_set)(test_multiset)(test_map)(test_multimap))(
(default_generator)(generate_collisions)(limited_range)))
#endif
#if !defined(BOOST_NO_CXX11_HDR_INITIALIZER_LIST)
UNORDERED_AUTO_TEST (test_default_initializer_list) {
std::initializer_list<int> init;
#ifdef BOOST_UNORDERED_FOA_TESTS
boost::unordered_flat_set<int> x1 = init;
#else
boost::unordered_set<int> x1 = init;
#endif
BOOST_TEST(x1.empty());
}
@@ -568,12 +435,7 @@ namespace constructor_tests {
#if !defined(BOOST_NO_CXX11_HDR_INITIALIZER_LIST)
UNORDERED_AUTO_TEST (test_initializer_list) {
#ifdef BOOST_UNORDERED_FOA_TESTS
boost::unordered_flat_set<int> x1 = {2, 10, 45, -5};
#else
boost::unordered_set<int> x1 = {2, 10, 45, -5};
#endif
BOOST_TEST(x1.find(10) != x1.end());
BOOST_TEST(x1.find(46) == x1.end());
}
+8 -38
View File
@@ -1,8 +1,13 @@
// Copyright 2021-2022 Christian Mazakas.
// Copyright 2021 Christian Mazakas.
// Distributed under the Boost Software License, Version 1.0. (See accompanying
// file LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt)
#include "../helpers/unordered.hpp"
// clang-format off
#include "../helpers/prefix.hpp"
#include <boost/unordered_set.hpp>
#include <boost/unordered_map.hpp>
#include "../helpers/postfix.hpp"
// clang-format on
#include "../helpers/test.hpp"
@@ -124,20 +129,6 @@ template <class UnorderedMap> void test_map_non_transparent_contains()
void test_map()
{
#ifdef BOOST_UNORDERED_FOA_TESTS
typedef boost::unordered_flat_map<key, int, transparent_hasher,
transparent_key_equal>
transparent_map;
typedef boost::unordered_flat_map<key, int, transparent_hasher, key_equal>
non_transparent_map1;
typedef boost::unordered_flat_map<key, int, hasher, transparent_key_equal>
non_transparent_map2;
typedef boost::unordered_flat_map<key, int, hasher, key_equal>
non_transparent_map3;
#else
typedef boost::unordered_map<key, int, transparent_hasher,
transparent_key_equal>
transparent_map;
@@ -150,7 +141,6 @@ void test_map()
typedef boost::unordered_map<key, int, hasher, key_equal>
non_transparent_map3;
#endif
test_map_transparent_contains<transparent_map>();
test_map_non_transparent_contains<non_transparent_map1>();
@@ -158,7 +148,6 @@ void test_map()
test_map_non_transparent_contains<non_transparent_map3>();
}
#ifndef BOOST_UNORDERED_FOA_TESTS
void test_multimap()
{
typedef boost::unordered_multimap<key, int, transparent_hasher,
@@ -179,7 +168,6 @@ void test_multimap()
test_map_non_transparent_contains<non_transparent_multimap2>();
test_map_non_transparent_contains<non_transparent_multimap3>();
}
#endif
template <class UnorderedSet> void test_set_transparent_contains()
{
@@ -243,18 +231,6 @@ template <class UnorderedSet> void test_set_non_transparent_contains()
void test_set()
{
#ifdef BOOST_UNORDERED_FOA_TESTS
typedef boost::unordered_flat_set<key, transparent_hasher,
transparent_key_equal>
transparent_set;
typedef boost::unordered_flat_set<key, transparent_hasher, key_equal>
non_transparent_set1;
typedef boost::unordered_flat_set<key, hasher, transparent_key_equal>
non_transparent_set2;
typedef boost::unordered_flat_set<key, hasher, key_equal>
non_transparent_set3;
#else
typedef boost::unordered_set<key, transparent_hasher, transparent_key_equal>
transparent_set;
@@ -263,7 +239,6 @@ void test_set()
typedef boost::unordered_set<key, hasher, transparent_key_equal>
non_transparent_set2;
typedef boost::unordered_set<key, hasher, key_equal> non_transparent_set3;
#endif
test_set_transparent_contains<transparent_set>();
test_set_non_transparent_contains<non_transparent_set1>();
@@ -271,7 +246,6 @@ void test_set()
test_set_non_transparent_contains<non_transparent_set3>();
}
#ifndef BOOST_UNORDERED_FOA_TESTS
void test_multiset()
{
typedef boost::unordered_multiset<key, transparent_hasher,
@@ -290,15 +264,11 @@ void test_multiset()
test_set_non_transparent_contains<non_transparent_multiset2>();
test_set_non_transparent_contains<non_transparent_multiset3>();
}
#endif
UNORDERED_AUTO_TEST (contains_) { // avoid -Wshadow warning with `bool contains`
test_map();
test_set();
#ifndef BOOST_UNORDERED_FOA_TESTS
test_multimap();
test_multiset();
#endif
test_set();
}
RUN_TESTS()
+21 -117
View File
@@ -1,10 +1,14 @@
// Copyright 2006-2009 Daniel James.
// Copyright (C) 2022 Christian Mazakas
// Distributed under the Boost Software License, Version 1.0. (See accompanying
// file LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt)
#include "../helpers/unordered.hpp"
// clang-format off
#include "../helpers/prefix.hpp"
#include <boost/unordered_set.hpp>
#include <boost/unordered_map.hpp>
#include "../helpers/postfix.hpp"
// clang-format on
#include "../helpers/test.hpp"
#include "../objects/test.hpp"
@@ -39,23 +43,6 @@ namespace copy_tests {
BOOST_TEST(x.max_load_factor() == y.max_load_factor());
BOOST_TEST(test::selected_count(y.get_allocator()) ==
(allocator_type::is_select_on_copy));
BOOST_TEST(test::detail::tracker.count_allocations == 0);
test::check_equivalent_keys(y);
}
{
test::check_instances check_;
T x(0);
T y(x);
BOOST_TEST(y.empty());
BOOST_TEST(test::equivalent(y.hash_function(), hf));
BOOST_TEST(test::equivalent(y.key_eq(), eq));
BOOST_TEST(test::equivalent(y.get_allocator(), al));
BOOST_TEST(x.max_load_factor() == y.max_load_factor());
BOOST_TEST(test::selected_count(y.get_allocator()) ==
(allocator_type::is_select_on_copy));
BOOST_TEST(test::detail::tracker.count_allocations == 0);
test::check_equivalent_keys(y);
}
@@ -104,22 +91,6 @@ namespace copy_tests {
typedef typename T::allocator_type allocator_type;
{
test::check_instances check_;
T x(0, hf, eq, al);
T y(x);
BOOST_TEST(y.empty());
BOOST_TEST(test::equivalent(y.hash_function(), hf));
BOOST_TEST(test::equivalent(y.key_eq(), eq));
BOOST_TEST(test::equivalent(y.get_allocator(), al));
BOOST_TEST(x.max_load_factor() == y.max_load_factor());
BOOST_TEST(test::selected_count(y.get_allocator()) ==
(allocator_type::is_select_on_copy));
BOOST_TEST(test::detail::tracker.count_allocations == 0);
test::check_equivalent_keys(y);
}
{
test::check_instances check_;
@@ -135,21 +106,6 @@ namespace copy_tests {
test::check_equivalent_keys(y);
}
{
test::check_instances check_;
T x(0, hf, eq, al);
T y(x, al2);
BOOST_TEST(y.empty());
BOOST_TEST(test::equivalent(y.hash_function(), hf));
BOOST_TEST(test::equivalent(y.key_eq(), eq));
BOOST_TEST(test::equivalent(y.get_allocator(), al2));
BOOST_TEST(x.max_load_factor() == y.max_load_factor());
BOOST_TEST(test::selected_count(y.get_allocator()) == 0);
BOOST_TEST(test::detail::tracker.count_allocations == 0);
test::check_equivalent_keys(y);
}
{
test::check_instances check_;
@@ -164,22 +120,6 @@ namespace copy_tests {
test::check_equivalent_keys(y);
}
{
test::check_instances check_;
test::random_values<T> v;
T x(v.begin(), v.end(), 0, hf, eq, al);
T y(x);
test::unordered_equivalence_tester<T> equivalent(x);
BOOST_TEST(equivalent(y));
test::check_equivalent_keys(y);
BOOST_TEST(test::selected_count(y.get_allocator()) ==
(allocator_type::is_select_on_copy));
BOOST_TEST(test::equivalent(y.get_allocator(), al));
BOOST_TEST(test::detail::tracker.count_allocations == 0);
}
{
test::check_instances check_;
@@ -195,21 +135,6 @@ namespace copy_tests {
BOOST_TEST(test::equivalent(y.get_allocator(), al));
}
{
test::check_instances check_;
test::random_values<T> v;
T x(v.begin(), v.end(), 0, hf, eq, al);
T y(x, al2);
test::unordered_equivalence_tester<T> equivalent(x);
BOOST_TEST(equivalent(y));
test::check_equivalent_keys(y);
BOOST_TEST(test::selected_count(y.get_allocator()) == 0);
BOOST_TEST(test::equivalent(y.get_allocator(), al2));
BOOST_TEST(test::detail::tracker.count_allocations == 0);
}
{
test::check_instances check_;
@@ -225,38 +150,6 @@ namespace copy_tests {
}
}
using test::default_generator;
using test::generate_collisions;
using test::limited_range;
#ifdef BOOST_UNORDERED_FOA_TESTS
boost::unordered_flat_set<test::object, test::hash, test::equal_to,
test::allocator1<test::object> >* test_set;
boost::unordered_flat_map<test::object, test::object, test::hash,
test::equal_to, test::allocator1<test::object> >* test_map;
boost::unordered_flat_set<test::object, test::hash, test::equal_to,
test::cxx11_allocator<test::object, test::select_copy> >*
test_set_select_copy;
boost::unordered_flat_map<test::object, test::object, test::hash,
test::equal_to, test::cxx11_allocator<test::object, test::select_copy> >*
test_map_select_copy;
boost::unordered_flat_set<test::object, test::hash, test::equal_to,
test::cxx11_allocator<test::object, test::no_select_copy> >*
test_set_no_select_copy;
boost::unordered_flat_map<test::object, test::object, test::hash,
test::equal_to, test::cxx11_allocator<test::object, test::no_select_copy> >*
test_map_no_select_copy;
UNORDERED_TEST(copy_construct_tests1,
((test_set)(test_map)(test_set_select_copy)(test_map_select_copy)(test_set_no_select_copy)(test_map_no_select_copy))(
(default_generator)(generate_collisions)(limited_range)))
UNORDERED_TEST(copy_construct_tests2,
((test_set)(test_map)(test_set_select_copy)(test_map_select_copy)(test_set_no_select_copy)(test_map_no_select_copy))(
(default_generator)(generate_collisions)(limited_range)))
#else
boost::unordered_set<test::object, test::hash, test::equal_to,
test::allocator1<test::object> >* test_set;
boost::unordered_multiset<test::object, test::hash, test::equal_to,
@@ -292,14 +185,25 @@ namespace copy_tests {
test::equal_to, test::cxx11_allocator<test::object, test::no_select_copy> >*
test_multimap_no_select_copy;
using test::default_generator;
using test::generate_collisions;
using test::limited_range;
UNORDERED_TEST(copy_construct_tests1,
((test_set)(test_multiset)(test_map)(test_multimap)(test_set_select_copy)(test_multiset_select_copy)(test_map_select_copy)(test_multimap_select_copy)(test_set_no_select_copy)(test_multiset_no_select_copy)(test_map_no_select_copy)(test_multimap_no_select_copy))(
((test_set)(test_multiset)(test_map)(test_multimap)(test_set_select_copy)(
test_multiset_select_copy)(test_map_select_copy)(
test_multimap_select_copy)(test_set_no_select_copy)(
test_multiset_no_select_copy)(test_map_no_select_copy)(
test_multimap_no_select_copy))(
(default_generator)(generate_collisions)(limited_range)))
UNORDERED_TEST(copy_construct_tests2,
((test_set)(test_multiset)(test_map)(test_multimap)(test_set_select_copy)(test_multiset_select_copy)(test_map_select_copy)(test_multimap_select_copy)(test_set_no_select_copy)(test_multiset_no_select_copy)(test_map_no_select_copy)(test_multimap_no_select_copy))(
((test_set)(test_multiset)(test_map)(test_multimap)(test_set_select_copy)(
test_multiset_select_copy)(test_map_select_copy)(
test_multimap_select_copy)(test_set_no_select_copy)(
test_multiset_no_select_copy)(test_map_no_select_copy)(
test_multimap_no_select_copy))(
(default_generator)(generate_collisions)(limited_range)))
#endif
} // namespace copy_tests
}
RUN_TESTS()
+16 -128
View File
@@ -1,10 +1,14 @@
//
// Copyright 2016 Daniel James.
// Copyright 2022 Christian Mazakas.
// Distributed under the Boost Software License, Version 1.0. (See accompanying
// file LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt)
#include "../helpers/unordered.hpp"
// clang-format off
#include "../helpers/prefix.hpp"
#include <boost/unordered_set.hpp>
#include <boost/unordered_map.hpp>
#include "../helpers/postfix.hpp"
// clang-format on
#include <boost/functional/hash/hash.hpp>
#include "../helpers/test.hpp"
@@ -42,56 +46,47 @@ namespace emplace_tests {
A8 a8;
A9 a9;
emplace_value(A0 const& b0, A1 const& b1)
: arg_count(2), a0(b0), a1(b1), a2('\0'), a3(-1), a4(-1), a5(-1),
a6(-1), a7(-1), a8(-1), a9(-1)
{
}
emplace_value(A0 const& b0, A1 const& b1) : arg_count(2), a0(b0), a1(b1) {}
emplace_value(A0 const& b0, A1 const& b1, A2 const& b2)
: arg_count(3), a0(b0), a1(b1), a2(b2), a3(-1), a4(-1), a5(-1), a6(-1),
a7(-1), a8(-1), a9(-1)
: arg_count(3), a0(b0), a1(b1), a2(b2)
{
}
emplace_value(A0 const& b0, A1 const& b1, A2 const& b2, A3 const& b3)
: arg_count(4), a0(b0), a1(b1), a2(b2), a3(b3), a4(-1), a5(-1), a6(-1),
a7(-1), a8(-1), a9(-1)
: arg_count(4), a0(b0), a1(b1), a2(b2), a3(b3)
{
}
emplace_value(
A0 const& b0, A1 const& b1, A2 const& b2, A3 const& b3, A4 const& b4)
: arg_count(5), a0(b0), a1(b1), a2(b2), a3(b3), a4(b4), a5(-1), a6(-1),
a7(-1), a8(-1), a9(-1)
: arg_count(5), a0(b0), a1(b1), a2(b2), a3(b3), a4(b4)
{
}
emplace_value(A0 const& b0, A1 const& b1, A2 const& b2, A3 const& b3,
A4 const& b4, A5 const& b5)
: arg_count(6), a0(b0), a1(b1), a2(b2), a3(b3), a4(b4), a5(b5), a6(-1),
a7(-1), a8(-1), a9(-1)
: arg_count(6), a0(b0), a1(b1), a2(b2), a3(b3), a4(b4), a5(b5)
{
}
emplace_value(A0 const& b0, A1 const& b1, A2 const& b2, A3 const& b3,
A4 const& b4, A5 const& b5, A6 const& b6)
: arg_count(7), a0(b0), a1(b1), a2(b2), a3(b3), a4(b4), a5(b5), a6(b6),
a7(-1), a8(-1), a9(-1)
: arg_count(7), a0(b0), a1(b1), a2(b2), a3(b3), a4(b4), a5(b5), a6(b6)
{
}
emplace_value(A0 const& b0, A1 const& b1, A2 const& b2, A3 const& b3,
A4 const& b4, A5 const& b5, A6 const& b6, A7 const& b7)
: arg_count(8), a0(b0), a1(b1), a2(b2), a3(b3), a4(b4), a5(b5), a6(b6),
a7(b7), a8(-1), a9(-1)
a7(b7)
{
}
emplace_value(A0 const& b0, A1 const& b1, A2 const& b2, A3 const& b3,
A4 const& b4, A5 const& b5, A6 const& b6, A7 const& b7, A8 const& b8)
: arg_count(9), a0(b0), a1(b1), a2(b2), a3(b3), a4(b4), a5(b5), a6(b6),
a7(b7), a8(b8), a9(-1)
a7(b7), a8(b8)
{
}
@@ -167,29 +162,16 @@ namespace emplace_tests {
return true;
}
#ifdef BOOST_UNORDERED_FOA_TESTS
emplace_value() = delete;
emplace_value(emplace_value const&) = default;
emplace_value(emplace_value&&) = default;
#else
private:
emplace_value();
emplace_value(emplace_value const&);
#endif
};
UNORDERED_AUTO_TEST (emplace_set) {
test::check_instances check_;
#ifdef BOOST_UNORDERED_FOA_TESTS
typedef boost::unordered_flat_set<emplace_value,
boost::hash<emplace_value> >
container;
#else
typedef boost::unordered_set<emplace_value, boost::hash<emplace_value> >
container;
#endif
typedef container::iterator iterator;
typedef std::pair<iterator, bool> return_type;
container x(10);
@@ -205,15 +187,7 @@ namespace emplace_tests {
BOOST_TEST(*r1.first == v1);
BOOST_TEST(r1.first == x.find(v1));
BOOST_TEST_EQ(check_.instances(), 2);
#ifdef BOOST_UNORDERED_FOA_TESTS
// 1 from v1
// 1 from constructing the value_type() so we can pluck the key
// 1 from move-constructing which invokes the counted_object base
// constructor
BOOST_TEST_EQ(check_.constructions(), 3);
#else
BOOST_TEST_EQ(check_.constructions(), 2);
#endif
// 3 args
@@ -224,11 +198,7 @@ namespace emplace_tests {
BOOST_TEST(*r1.first == v2);
BOOST_TEST(r1.first == x.find(v2));
BOOST_TEST_EQ(check_.instances(), 4);
#ifdef BOOST_UNORDERED_FOA_TESTS
BOOST_TEST_EQ(check_.constructions(), 6);
#else
BOOST_TEST_EQ(check_.constructions(), 4);
#endif
// 7 args with hint + duplicate
@@ -238,11 +208,7 @@ namespace emplace_tests {
BOOST_TEST(*i1 == v3);
BOOST_TEST(i1 == x.find(v3));
BOOST_TEST_EQ(check_.instances(), 6);
#ifdef BOOST_UNORDERED_FOA_TESTS
BOOST_TEST_EQ(check_.constructions(), 9);
#else
BOOST_TEST_EQ(check_.constructions(), 6);
#endif
r2 = x.emplace(25, "something", 'z', 4, 5, 6, 7);
BOOST_TEST_EQ(x.size(), 3u);
@@ -252,11 +218,7 @@ namespace emplace_tests {
// whether it can emplace, so there's an extra construction
// here.
BOOST_TEST_EQ(check_.instances(), 6);
#ifdef BOOST_UNORDERED_FOA_TESTS
BOOST_TEST_EQ(check_.constructions(), 10);
#else
BOOST_TEST_EQ(check_.constructions(), 7);
#endif
// 10 args + hint duplicate
@@ -268,11 +230,7 @@ namespace emplace_tests {
BOOST_TEST(*r1.first == v4);
BOOST_TEST(r1.first == x.find(v4));
BOOST_TEST_EQ(check_.instances(), 8);
#ifdef BOOST_UNORDERED_FOA_TESTS
BOOST_TEST_EQ(check_.constructions(), 13);
#else
BOOST_TEST_EQ(check_.constructions(), 9);
#endif
BOOST_TEST(
r1.first == x.emplace_hint(r1.first, 10, "", 'a', 4, 5, 6, 7, 8, 9, 10));
@@ -281,11 +239,7 @@ namespace emplace_tests {
BOOST_TEST(
r1.first == x.emplace_hint(x.end(), 10, "", 'a', 4, 5, 6, 7, 8, 9, 10));
BOOST_TEST_EQ(check_.instances(), 8);
#ifdef BOOST_UNORDERED_FOA_TESTS
BOOST_TEST_EQ(check_.constructions(), 16);
#else
BOOST_TEST_EQ(check_.constructions(), 12);
#endif
BOOST_TEST_EQ(x.size(), 4u);
BOOST_TEST(x.count(v1) == 1);
@@ -294,7 +248,6 @@ namespace emplace_tests {
BOOST_TEST(x.count(v4) == 1);
}
#ifndef BOOST_UNORDERED_FOA_TESTS
UNORDERED_AUTO_TEST (emplace_multiset) {
test::check_instances check_;
@@ -372,79 +325,20 @@ namespace emplace_tests {
BOOST_TEST_EQ(x.count(v2), 2u);
BOOST_TEST_EQ(x.count(v3), 2u);
}
#endif
UNORDERED_AUTO_TEST (emplace_map) {
test::check_instances check_;
#ifdef BOOST_UNORDERED_FOA_TESTS
typedef boost::unordered_flat_map<emplace_value, emplace_value,
boost::hash<emplace_value> >
container;
#else
typedef boost::unordered_map<emplace_value, emplace_value,
boost::hash<emplace_value> >
container;
#endif
typedef container::iterator iterator;
typedef std::pair<iterator, bool> return_type;
container x(10);
return_type r1, r2;
#ifdef BOOST_UNORDERED_FOA_TESTS
// 5/8 args + duplicate
emplace_value k1(5, "", 'b', 4, 5);
emplace_value m1(8, "xxx", 'z', 4, 5, 6, 7, 8);
r1 = x.emplace(std::piecewise_construct, std::make_tuple(5, "", 'b', 4, 5),
std::make_tuple(8, "xxx", 'z', 4, 5, 6, 7, 8));
BOOST_TEST_EQ(x.size(), 1u);
BOOST_TEST(r1.second);
BOOST_TEST(x.find(k1) == r1.first);
BOOST_TEST(x.find(k1)->second == m1);
BOOST_TEST_EQ(check_.instances(), 4);
BOOST_TEST_EQ(check_.constructions(), 6);
r2 = x.emplace(std::piecewise_construct, std::make_tuple(5, "", 'b', 4, 5),
std::make_tuple(8, "xxx", 'z', 4, 5, 6, 7, 8));
BOOST_TEST_EQ(x.size(), 1u);
BOOST_TEST(!r2.second);
BOOST_TEST(r1.first == r2.first);
BOOST_TEST(x.find(k1)->second == m1);
BOOST_TEST_EQ(check_.instances(), 4);
// constructions could possibly be 5 if the implementation only
// constructed the key.
BOOST_TEST_EQ(check_.constructions(), 8);
// 9/3 args + duplicates with hints, different mapped value.
emplace_value k2(9, "", 'b', 4, 5, 6, 7, 8, 9);
emplace_value m2(3, "aaa", 'm');
r1 = x.emplace(std::piecewise_construct,
std::make_tuple(9, "", 'b', 4, 5, 6, 7, 8, 9),
std::make_tuple(3, "aaa", 'm'));
BOOST_TEST_EQ(x.size(), 2u);
BOOST_TEST(r1.second);
BOOST_TEST(r1.first->first.arg_count == 9);
BOOST_TEST(r1.first->second.arg_count == 3);
BOOST_TEST(x.find(k2) == r1.first);
BOOST_TEST(x.find(k2)->second == m2);
BOOST_TEST_EQ(check_.instances(), 8);
BOOST_TEST_EQ(check_.constructions(), 14);
BOOST_TEST(r1.first == x.emplace_hint(r1.first, std::piecewise_construct,
std::make_tuple(9, "", 'b', 4, 5, 6, 7, 8, 9),
std::make_tuple(15, "jkjk")));
BOOST_TEST(r1.first == x.emplace_hint(r2.first, std::piecewise_construct,
std::make_tuple(9, "", 'b', 4, 5, 6, 7, 8, 9),
std::make_tuple(275, "xxx", 'm', 6)));
BOOST_TEST(r1.first == x.emplace_hint(x.end(), std::piecewise_construct,
std::make_tuple(9, "", 'b', 4, 5, 6, 7, 8, 9),
std::make_tuple(-10, "blah blah", '\0')));
BOOST_TEST_EQ(x.size(), 2u);
BOOST_TEST(x.find(k2)->second == m2);
BOOST_TEST_EQ(check_.instances(), 8);
BOOST_TEST_EQ(check_.constructions(), 20);
#else
// 5/8 args + duplicate
emplace_value k1(5, "", 'b', 4, 5);
emplace_value m1(8, "xxx", 'z', 4, 5, 6, 7, 8);
r1 = x.emplace(boost::unordered::piecewise_construct,
@@ -501,10 +395,8 @@ namespace emplace_tests {
BOOST_TEST(x.find(k2)->second == m2);
BOOST_TEST_EQ(check_.instances(), 8);
BOOST_TEST_EQ(check_.constructions(), 16);
#endif
}
#ifndef BOOST_UNORDERED_FOA_TESTS
UNORDERED_AUTO_TEST (emplace_multimap) {
test::check_instances check_;
@@ -569,15 +461,11 @@ namespace emplace_tests {
BOOST_TEST_EQ(check_.instances(), 20);
BOOST_TEST_EQ(check_.constructions(), 20);
}
#endif
UNORDERED_AUTO_TEST (try_emplace) {
test::check_instances check_;
#ifdef BOOST_UNORDERED_FOA_TESTS
typedef boost::unordered_flat_map<int, emplace_value> container;
#else
typedef boost::unordered_map<int, emplace_value> container;
#endif
typedef container::iterator iterator;
typedef std::pair<iterator, bool> return_type;
container x(10);
+16 -38
View File
@@ -1,10 +1,14 @@
// Copyright 2008-2009 Daniel James.
// Copyright 2022 Christian Mazakas.
// Distributed under the Boost Software License, Version 1.0. (See accompanying
// file LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt)
#include "../helpers/unordered.hpp"
// clang-format off
#include "../helpers/prefix.hpp"
#include <boost/unordered_set.hpp>
#include <boost/unordered_map.hpp>
#include "../helpers/postfix.hpp"
// clang-format on
#include <boost/preprocessor/seq.hpp>
#include <list>
@@ -26,27 +30,14 @@ namespace equality_tests {
}
};
#ifdef BOOST_UNORDERED_FOA_TESTS
using boost_unordered_set =
boost::unordered_flat_set<int, mod_compare, mod_compare>;
using boost_unordered_map =
boost::unordered_flat_map<int, int, mod_compare, mod_compare>;
#define UNORDERED_EQUALITY_MULTISET_TEST(seq1, op, seq2) \
#define UNORDERED_EQUALITY_SET_TEST(seq1, op, seq2) \
{ \
boost::unordered_set<int, mod_compare, mod_compare> set1, set2; \
BOOST_PP_SEQ_FOR_EACH(UNORDERED_SET_INSERT, set1, seq1) \
BOOST_PP_SEQ_FOR_EACH(UNORDERED_SET_INSERT, set2, seq2) \
BOOST_TEST(set1 op set2); \
}
#define UNORDERED_EQUALITY_MULTIMAP_TEST(seq1, op, seq2) \
{ \
}
#else
typedef boost::unordered_set<int, mod_compare, mod_compare>
boost_unordered_set;
typedef boost::unordered_map<int, int, mod_compare, mod_compare>
boost_unordered_map;
#define UNORDERED_EQUALITY_MULTISET_TEST(seq1, op, seq2) \
{ \
boost::unordered_multiset<int, mod_compare, mod_compare> set1, set2; \
@@ -55,26 +46,17 @@ namespace equality_tests {
BOOST_TEST(set1 op set2); \
}
#define UNORDERED_EQUALITY_MULTIMAP_TEST(seq1, op, seq2) \
#define UNORDERED_EQUALITY_MAP_TEST(seq1, op, seq2) \
{ \
boost::unordered_multimap<int, int, mod_compare, mod_compare> map1, map2; \
boost::unordered_map<int, int, mod_compare, mod_compare> map1, map2; \
BOOST_PP_SEQ_FOR_EACH(UNORDERED_MAP_INSERT, map1, seq1) \
BOOST_PP_SEQ_FOR_EACH(UNORDERED_MAP_INSERT, map2, seq2) \
BOOST_TEST(map1 op map2); \
}
#endif
#define UNORDERED_EQUALITY_SET_TEST(seq1, op, seq2) \
#define UNORDERED_EQUALITY_MULTIMAP_TEST(seq1, op, seq2) \
{ \
boost_unordered_set set1, set2; \
BOOST_PP_SEQ_FOR_EACH(UNORDERED_SET_INSERT, set1, seq1) \
BOOST_PP_SEQ_FOR_EACH(UNORDERED_SET_INSERT, set2, seq2) \
BOOST_TEST(set1 op set2); \
}
#define UNORDERED_EQUALITY_MAP_TEST(seq1, op, seq2) \
{ \
boost_unordered_map map1, map2; \
boost::unordered_multimap<int, int, mod_compare, mod_compare> map1, map2; \
BOOST_PP_SEQ_FOR_EACH(UNORDERED_MAP_INSERT, map1, seq1) \
BOOST_PP_SEQ_FOR_EACH(UNORDERED_MAP_INSERT, map2, seq2) \
BOOST_TEST(map1 op map2); \
@@ -85,11 +67,7 @@ namespace equality_tests {
map.insert(std::pair<int const, int> BOOST_PP_SEQ_TO_TUPLE(item));
UNORDERED_AUTO_TEST (equality_size_tests) {
#ifdef BOOST_UNORDERED_FOA_TESTS
boost::unordered_flat_set<int> x1, x2;
#else
boost::unordered_set<int> x1, x2;
#endif
BOOST_TEST(x1 == x2);
BOOST_TEST(!(x1 != x2));
@@ -156,7 +134,7 @@ namespace equality_tests {
// different hash functions but the same equality predicate.
UNORDERED_AUTO_TEST (equality_different_hash_test) {
typedef boost_unordered_set set;
typedef boost::unordered_set<int, mod_compare, mod_compare> set;
set set1(0, mod_compare(false), mod_compare(false));
set set2(0, mod_compare(true), mod_compare(true));
BOOST_TEST(set1 == set2);
+7 -12
View File
@@ -1,10 +1,14 @@
// Copyright 2006-2009 Daniel James.
// Copyright 2022 Christian Mazakas.
// Distributed under the Boost Software License, Version 1.0. (See accompanying
// file LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt)
#include "../helpers/unordered.hpp"
// clang-format off
#include "../helpers/prefix.hpp"
#include <boost/unordered_set.hpp>
#include <boost/unordered_map.hpp>
#include "../helpers/postfix.hpp"
// clang-format on
#include "../helpers/test.hpp"
#include <algorithm>
@@ -34,11 +38,8 @@ void test_equal_insertion(Iterator begin, Iterator end)
UNORDERED_AUTO_TEST (set_tests) {
int values[][5] = {{1}, {54, 23}, {-13, 65}, {77, 77}, {986, 25, 986}};
#ifdef BOOST_UNORDERED_FOA_TESTS
typedef boost::unordered_flat_set<int> set;
#else
typedef boost::unordered_set<int> set;
#endif
typedef boost::unordered_multiset<int> multiset;
test_equal_insertion<set>(values[0], values[0] + 1);
test_equal_insertion<set>(values[1], values[1] + 2);
@@ -46,7 +47,6 @@ UNORDERED_AUTO_TEST (set_tests) {
test_equal_insertion<set>(values[3], values[3] + 2);
test_equal_insertion<set>(values[4], values[4] + 3);
typedef boost::unordered_multiset<int> multiset;
test_equal_insertion<multiset>(values[0], values[0] + 1);
test_equal_insertion<multiset>(values[1], values[1] + 2);
test_equal_insertion<multiset>(values[2], values[2] + 2);
@@ -66,17 +66,12 @@ UNORDERED_AUTO_TEST (map_tests) {
v[2].push_back(std::pair<int const, int>(432, 24));
for (int i = 0; i < 5; ++i)
#ifdef BOOST_UNORDERED_FOA_TESTS
test_equal_insertion<boost::unordered_flat_map<int, int> >(
v[i].begin(), v[i].end());
#else
test_equal_insertion<boost::unordered_map<int, int> >(
v[i].begin(), v[i].end());
for (int i2 = 0; i2 < 5; ++i2)
test_equal_insertion<boost::unordered_multimap<int, int> >(
v[i2].begin(), v[i2].end());
#endif
}
RUN_TESTS()
+59 -13
View File
@@ -1,15 +1,19 @@
// Copyright 2021-2022 Christian Mazakas.
// Copyright 2021 Christian Mazakas.
// Distributed under the Boost Software License, Version 1.0. (See accompanying
// file LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt)
#include "../helpers/unordered.hpp"
// clang-format off
#include "../helpers/prefix.hpp"
#include <boost/unordered_set.hpp>
#include <boost/unordered_map.hpp>
#include "../helpers/postfix.hpp"
// clang-format on
#include "../helpers/test.hpp"
#include <boost/config.hpp>
#include <string>
#if !defined(BOOST_NO_CXX11_REF_QUALIFIERS)
#if BOOST_CXX_VERSION >= 201103L
#define UNORDERED_LVALUE_QUAL &
#else
#define UNORDERED_LVALUE_QUAL
@@ -18,13 +22,36 @@
namespace test {
struct is_even
{
bool operator()(std::pair<std::string const, int>& key_value)
is_even() {}
#if BOOST_CXX_VERSION >= 201703L
// immovable for C++17
is_even(is_even const&) = delete;
is_even(is_even&&) = delete;
is_even& operator=(is_even const&) = delete;
is_even& operator=(is_even&&) = delete;
#elif BOOST_CXX_VERSION >= 201103L
// move-only for C++11
is_even(is_even const&) = delete;
is_even(is_even&&) = default;
is_even& operator=(is_even const&) = delete;
is_even& operator=(is_even&&) = default;
#else
// copyable otherwise
is_even(is_even const&) {}
is_even& operator=(is_even const&) { return *this; }
#endif
bool operator()(
std::pair<std::string const, int>& key_value) UNORDERED_LVALUE_QUAL
{
int const v = key_value.second;
return (v % 2 == 0);
}
bool operator()(int const& value)
bool operator()(int const& value) UNORDERED_LVALUE_QUAL
{
int const v = value;
return (v % 2 == 0);
@@ -33,13 +60,37 @@ namespace test {
struct is_too_large
{
bool operator()(std::pair<std::string const, int>& key_value)
is_too_large() {}
#if BOOST_CXX_VERSION >= 201703L
// immovable for C++17
is_too_large(is_too_large const&) = delete;
is_too_large(is_too_large&&) = delete;
is_too_large& operator=(is_too_large const&) = delete;
is_too_large& operator=(is_too_large&&) = delete;
#elif BOOST_CXX_VERSION >= 201103L
// move-only for C++11
is_too_large(is_too_large const&) = delete;
is_too_large(is_too_large&&) = default;
is_too_large& operator=(is_too_large const&) = delete;
is_too_large& operator=(is_too_large&&) = default;
#else
// copyable otherwise
is_too_large(is_too_large const&) {}
is_too_large& operator=(is_too_large const&) { return *this; }
#endif
bool operator()(
std::pair<std::string const, int>& key_value) UNORDERED_LVALUE_QUAL
{
int const v = key_value.second;
return v >= 1000;
}
bool operator()(int const& value)
bool operator()(int const& value) UNORDERED_LVALUE_QUAL
{
int const v = value;
return v >= 1000;
@@ -107,16 +158,11 @@ template <class UnorderedSet> void test_set_erase_if()
}
UNORDERED_AUTO_TEST (unordered_erase_if) {
#ifdef BOOST_UNORDERED_FOA_TESTS
test_map_erase_if<boost::unordered_flat_map<std::string, int> >();
test_set_erase_if<boost::unordered_flat_set<int> >();
#else
test_map_erase_if<boost::unordered_map<std::string, int> >();
test_map_erase_if<boost::unordered_multimap<std::string, int> >();
test_set_erase_if<boost::unordered_set<int> >();
test_set_erase_if<boost::unordered_multiset<int> >();
#endif
}
RUN_TESTS()
+10 -37
View File
@@ -1,10 +1,14 @@
// Copyright 2006-2009 Daniel James.
// Copyright 2022 Christian Mazakas.
// Distributed under the Boost Software License, Version 1.0. (See accompanying
// file LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt)
#include "../helpers/unordered.hpp"
// clang-format off
#include "../helpers/prefix.hpp"
#include <boost/unordered_set.hpp>
#include <boost/unordered_map.hpp>
#include "../helpers/postfix.hpp"
// clang-format on
#include "../helpers/test.hpp"
#include "../objects/test.hpp"
@@ -23,9 +27,7 @@ namespace erase_tests {
template <class Container>
void erase_tests1(Container*, test::random_generator generator)
{
#ifndef BOOST_UNORDERED_FOA_TESTS
typedef typename Container::iterator iterator;
#endif
typedef typename Container::const_iterator c_iterator;
BOOST_LIGHTWEIGHT_TEST_OSTREAM << "Erase by key.\n";
@@ -59,13 +61,9 @@ namespace erase_tests {
while (size > 0 && !x.empty()) {
typename Container::key_type key = test::get_key<Container>(*x.begin());
std::size_t count = x.count(key);
#ifdef BOOST_UNORDERED_FOA_TESTS
x.erase(x.begin());
#else
iterator pos = x.erase(x.begin());
BOOST_TEST(pos == x.begin());
#endif
--size;
BOOST_TEST(pos == x.begin());
BOOST_TEST(x.count(key) == count - 1);
BOOST_TEST(x.size() == size);
if (++iterations % 20 == 0)
@@ -95,15 +93,10 @@ namespace erase_tests {
typename Container::key_type key = test::get_key<Container>(*pos);
std::size_t count = x.count(key);
BOOST_TEST(count > 0);
#ifdef BOOST_UNORDERED_FOA_TESTS
x.erase(pos);
--size;
#else
BOOST_TEST(next == x.erase(pos));
--size;
if (size > 0)
BOOST_TEST(index == 0 ? next == x.begin() : next == test::next(prev));
#endif
BOOST_TEST(x.count(key) == count - 1);
if (x.count(key) != count - 1) {
BOOST_LIGHTWEIGHT_TEST_OSTREAM << count << " => " << x.count(key)
@@ -192,11 +185,7 @@ namespace erase_tests {
while (size > 0 && !x.empty()) {
typename Container::key_type key = test::get_key<Container>(*x.begin());
std::size_t count = x.count(key);
#ifdef BOOST_UNORDERED_FOA_TESTS
x.erase(x.begin());
#else
x.quick_erase(x.begin());
#endif
--size;
BOOST_TEST(x.count(key) == count - 1);
BOOST_TEST(x.size() == size);
@@ -227,11 +216,7 @@ namespace erase_tests {
typename Container::key_type key = test::get_key<Container>(*pos);
std::size_t count = x.count(key);
BOOST_TEST(count > 0);
#ifdef BOOST_UNORDERED_FOA_TESTS
x.erase(pos);
#else
x.quick_erase(pos);
#endif
--size;
if (size > 0)
BOOST_TEST(index == 0 ? next == x.begin() : next == test::next(prev));
@@ -261,20 +246,6 @@ namespace erase_tests {
BOOST_LIGHTWEIGHT_TEST_OSTREAM << "\n";
}
using test::default_generator;
using test::generate_collisions;
using test::limited_range;
#ifdef BOOST_UNORDERED_FOA_TESTS
boost::unordered_flat_set<test::object, test::hash, test::equal_to,
test::allocator1<test::object> >* test_set;
boost::unordered_flat_map<test::object, test::object, test::hash,
test::equal_to, test::allocator1<test::object> >* test_map;
UNORDERED_TEST(
erase_tests1, ((test_set)(test_map))(
(default_generator)(generate_collisions)(limited_range)))
#else
boost::unordered_set<test::object, test::hash, test::equal_to,
test::allocator1<test::object> >* test_set;
boost::unordered_multiset<test::object, test::hash, test::equal_to,
@@ -284,11 +255,13 @@ namespace erase_tests {
boost::unordered_multimap<test::object, test::object, test::hash,
test::equal_to, test::allocator2<test::object> >* test_multimap;
using test::default_generator;
using test::generate_collisions;
using test::limited_range;
UNORDERED_TEST(
erase_tests1, ((test_set)(test_multiset)(test_map)(test_multimap))(
(default_generator)(generate_collisions)(limited_range)))
#endif
}
RUN_TESTS()
+10 -17
View File
@@ -1,10 +1,14 @@
// Copyright 2006-2009 Daniel James.
// Copyright (C) 2022 Christian Mazakas
// Distributed under the Boost Software License, Version 1.0. (See accompanying
// file LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt)
#include "../helpers/unordered.hpp"
// clang-format off
#include "../helpers/prefix.hpp"
#include <boost/unordered_set.hpp>
#include <boost/unordered_map.hpp>
#include "../helpers/postfix.hpp"
// clang-format on
#include "../helpers/test.hpp"
#include "../objects/test.hpp"
@@ -129,20 +133,6 @@ namespace find_tests {
}
}
using test::default_generator;
using test::generate_collisions;
using test::limited_range;
#ifdef BOOST_UNORDERED_FOA_TESTS
boost::unordered_flat_set<test::object, test::hash, test::equal_to,
test::allocator2<test::object> >* test_set;
boost::unordered_flat_map<test::object, test::object, test::hash, test::equal_to,
test::allocator2<test::object> >* test_map;
UNORDERED_TEST(
find_tests1, ((test_set)(test_map))(
(default_generator)(generate_collisions)(limited_range)))
#else
boost::unordered_set<test::object, test::hash, test::equal_to,
test::allocator2<test::object> >* test_set;
boost::unordered_multiset<test::object, test::hash, test::equal_to,
@@ -152,13 +142,16 @@ namespace find_tests {
boost::unordered_multimap<test::object, test::object, test::hash,
test::equal_to, test::allocator1<test::object> >* test_multimap;
using test::default_generator;
using test::generate_collisions;
using test::limited_range;
UNORDERED_TEST(
find_tests1, ((test_set)(test_multiset)(test_map)(test_multimap))(
(default_generator)(generate_collisions)(limited_range)))
UNORDERED_TEST(find_compatible_keys_test,
((test_set)(test_multiset)(test_map)(test_multimap))(
(default_generator)(generate_collisions)(limited_range)))
#endif
}
RUN_TESTS()
-37
View File
@@ -1,44 +1,14 @@
// Copyright 2008-2009 Daniel James.
// Copyright 2022 Christian Mazakas.
// Distributed under the Boost Software License, Version 1.0. (See accompanying
// file LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt)
// clang-format off
#include "../helpers/prefix.hpp"
#ifdef BOOST_UNORDERED_FOA_TESTS
#include <boost/unordered/unordered_flat_map_fwd.hpp>
#include <boost/unordered/detail/implementation.hpp>
#else
#include <boost/unordered/unordered_map_fwd.hpp>
#endif
#include "../helpers/postfix.hpp"
// clang-format on
#ifdef BOOST_UNORDERED_FOA_TESTS
template <typename T>
void call_swap(
boost::unordered_flat_map<T, T>& x, boost::unordered_flat_map<T, T>& y)
{
swap(x, y);
}
template <typename T>
bool call_equals(
boost::unordered_flat_map<T, T>& x, boost::unordered_flat_map<T, T>& y)
{
return x == y;
}
template <typename T>
bool call_not_equals(
boost::unordered_flat_map<T, T>& x, boost::unordered_flat_map<T, T>& y)
{
return x != y;
}
#include <boost/unordered/unordered_flat_map.hpp>
#else
template <typename T>
void call_swap(boost::unordered_map<T, T>& x, boost::unordered_map<T, T>& y)
{
@@ -80,15 +50,10 @@ bool call_not_equals(
}
#include <boost/unordered_map.hpp>
#endif
#include "../helpers/test.hpp"
#ifdef BOOST_UNORDERED_FOA_TESTS
typedef boost::unordered_flat_map<int, int> int_map;
#else
typedef boost::unordered_map<int, int> int_map;
typedef boost::unordered_multimap<int, int> int_multimap;
#endif
UNORDERED_AUTO_TEST (use_map_fwd_declared_function) {
int_map x, y;
@@ -106,13 +71,11 @@ UNORDERED_AUTO_TEST (use_map_fwd_declared_function) {
BOOST_TEST(call_not_equals(x, y));
}
#ifndef BOOST_UNORDERED_FOA_TESTS
UNORDERED_AUTO_TEST (use_multimap_fwd_declared_function) {
int_multimap x, y;
call_swap(x, y);
BOOST_TEST(call_equals(x, y));
BOOST_TEST(!call_not_equals(x, y));
}
#endif
RUN_TESTS()
+1 -45
View File
@@ -1,17 +1,11 @@
// Copyright 2008-2009 Daniel James.
// Copyright 2022 Christian Mazakas.
// Distributed under the Boost Software License, Version 1.0. (See accompanying
// file LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt)
// clang-format off
#include "../helpers/prefix.hpp"
#ifdef BOOST_UNORDERED_FOA_TESTS
#include <boost/unordered/unordered_flat_set_fwd.hpp>
#include <boost/unordered/detail/implementation.hpp>
#else
#include <boost/unordered/unordered_set_fwd.hpp>
#endif
#include "../helpers/postfix.hpp"
// clang-format on
@@ -26,31 +20,6 @@ struct false_type
false_type is_unordered_set_impl(void*);
#ifdef BOOST_UNORDERED_FOA_TESTS
template <class Value, class Hash, class Pred, class Alloc>
true_type is_unordered_set_impl(
boost::unordered_flat_set<Value, Hash, Pred, Alloc>*);
template <typename T>
void call_swap(boost::unordered_flat_set<T>& x, boost::unordered_flat_set<T>& y)
{
swap(x, y);
}
template <typename T>
bool call_equals(
boost::unordered_flat_set<T>& x, boost::unordered_flat_set<T>& y)
{
return x == y;
}
template <typename T>
bool call_not_equals(
boost::unordered_flat_set<T>& x, boost::unordered_flat_set<T>& y)
{
return x != y;
}
#else
template <class Value, class Hash, class Pred, class Alloc>
true_type is_unordered_set_impl(
boost::unordered_set<Value, Hash, Pred, Alloc>*);
@@ -72,9 +41,7 @@ bool call_not_equals(boost::unordered_set<T>& x, boost::unordered_set<T>& y)
{
return x != y;
}
#endif
#ifndef BOOST_UNORDERED_FOA_TESTS
template <typename T>
void call_swap(boost::unordered_multiset<T>& x, boost::unordered_multiset<T>& y)
{
@@ -94,29 +61,20 @@ bool call_not_equals(
{
return x != y;
}
#endif
#include "../helpers/test.hpp"
#ifdef BOOST_UNORDERED_FOA_TESTS
typedef boost::unordered_flat_set<int> int_set;
#else
typedef boost::unordered_set<int> int_set;
typedef boost::unordered_multiset<int> int_multiset;
#endif
UNORDERED_AUTO_TEST (use_fwd_declared_trait_without_definition) {
BOOST_TEST(sizeof(is_unordered_set_impl((int_set*)0)) == sizeof(true_type));
}
#ifdef BOOST_UNORDERED_FOA_TESTS
#include <boost/unordered/unordered_flat_set.hpp>
#else
#include <boost/unordered_set.hpp>
#endif
UNORDERED_AUTO_TEST (use_fwd_declared_trait) {
int_set x;
boost::unordered_set<int> x;
BOOST_TEST(sizeof(is_unordered_set_impl(&x)) == sizeof(true_type));
BOOST_TEST(sizeof(is_unordered_set_impl((int*)0)) == sizeof(false_type));
@@ -138,13 +96,11 @@ UNORDERED_AUTO_TEST (use_set_fwd_declared_function) {
BOOST_TEST(call_not_equals(x, y));
}
#ifndef BOOST_UNORDERED_FOA_TESTS
UNORDERED_AUTO_TEST (use_multiset_fwd_declared_function) {
int_multiset x, y;
call_swap(x, y);
BOOST_TEST(call_equals(x, y));
BOOST_TEST(!call_not_equals(x, y));
}
#endif
RUN_TESTS()
+8 -41
View File
@@ -1,21 +1,21 @@
// Copyright 2009 Daniel James.
// Copyright 2022 Christian Mazakas.
// Distributed under the Boost Software License, Version 1.0. (See accompanying
// file LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt)
#include "../helpers/unordered.hpp"
// clang-format off
#include "../helpers/prefix.hpp"
#include <boost/unordered_map.hpp>
#include <boost/unordered_set.hpp>
#include "../helpers/postfix.hpp"
// clang-format on
#include <utility>
namespace x {
struct D
{
#ifdef BOOST_UNORDERED_FOA_TESTS
boost::unordered_flat_map<D, D> x;
#else
boost::unordered_map<D, D> x;
#endif
};
}
@@ -29,17 +29,6 @@ namespace incomplete_test {
// Declare some instances
#ifdef BOOST_UNORDERED_FOA_TESTS
typedef boost::unordered_flat_map<value, value, hash, equals,
allocator<std::pair<value const, value> > >
map;
typedef boost::unordered_flat_map<value, value, hash, equals,
allocator<std::pair<value const, value> > >
multimap;
typedef boost::unordered_flat_set<value, hash, equals, allocator<value> > set;
typedef boost::unordered_flat_set<value, hash, equals, allocator<value> >
multiset;
#else
typedef boost::unordered_map<value, value, hash, equals,
allocator<std::pair<value const, value> > >
map;
@@ -49,7 +38,6 @@ namespace incomplete_test {
typedef boost::unordered_set<value, hash, equals, allocator<value> > set;
typedef boost::unordered_multiset<value, hash, equals, allocator<value> >
multiset;
#endif
// Now define the types which are stored as members, as they are needed for
// declaring struct members.
@@ -88,28 +76,7 @@ namespace incomplete_test {
//
// Incomplete hash, equals and allocator aren't here supported at the
// moment.
#ifdef BOOST_UNORDERED_FOA_TESTS
struct struct1
{
boost::unordered_flat_map<struct1, struct1, hash, equals,
allocator<std::pair<struct1 const, struct1> > >
x;
};
struct struct2
{
boost::unordered_flat_map<struct2, struct2, hash, equals,
allocator<std::pair<struct2 const, struct2> > >
x;
};
struct struct3
{
boost::unordered_flat_set<struct3, hash, equals, allocator<struct3> > x;
};
struct struct4
{
boost::unordered_flat_set<struct4, hash, equals, allocator<struct4> > x;
};
#else
struct struct1
{
boost::unordered_map<struct1, struct1, hash, equals,
@@ -130,7 +97,7 @@ namespace incomplete_test {
{
boost::unordered_multiset<struct4, hash, equals, allocator<struct4> > x;
};
#endif
// Now define the value type.
struct value

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