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Author SHA1 Message Date
Jordan Maples [MSFT] 7e99e76c97 Merge pull request #826 from JordanMaples/dev/jomaples/ctad_fix_v2
fix ctad warning in llvm
2019-11-18 13:02:53 -08:00
Jordan Maples [MSFT] 263440f2a1 changing white-space in comment to get tests to rerun 2019-11-18 11:39:36 -08:00
Jordan Maples [MSFT] a7759e6d3f lower __cpp_deduction_guide version number from 201907 to 201611 2019-11-18 10:14:05 -08:00
Jordan Maples [MSFT] 128b4356ac changing check from __cplusplus 201703L to __cpp_deduction_guides 201907L 2019-11-15 16:29:41 -08:00
Jordan Maples [MSFT] 8e481ebe19 adding deduction guide for strict_not_null 2019-11-15 14:41:38 -08:00
Jordan Maples [MSFT] 4610f26b33 forgot comment 2019-11-15 12:43:33 -08:00
Jordan Maples [MSFT] d0e5daf441 fix ctad warning in llvm 2019-11-15 12:11:44 -08:00
Jordan Maples [MSFT] 9939d5889b Merge pull request #822 from JordanMaples/dev/jomaples/lib-byte-check
gsl_byte to inspect __cpp_lib_byte
2019-10-25 11:42:01 -07:00
Jordan Maples 22cba52114 update comments 2019-10-25 10:12:41 -07:00
Jordan Maples 97dc8f83fc adding check to __cpp_lib_byte, which was added to the defn for 15.8 2019-10-24 17:07:42 -07:00
Jordan Maples [MSFT] 71ec9f84d8 Merge pull request #2 from microsoft/master
updating personal branch.
2019-10-23 11:50:25 -07:00
Jordan Maples [MSFT] 3d56ba9e7f Merge pull request #813 from JordanMaples/dev/jomaples/deprecate_multispan
Deprecate multi_span, strided_span, etc
2019-10-09 15:11:59 -07:00
Jordan Maples [MSFT] cf9cc34da8 Merge pull request #815 from matt77hias/patch-1
Added std::exchange (C++14) to make the intent more explicit
2019-10-09 15:05:26 -07:00
Matthias Moulin 0a78d8ea3c Added std::exchange (C++14) to make the intent more explicit 2019-10-07 21:49:50 +02:00
Jordan Maples [MSFT] 02d1051fdd Merge pull request #814 from sizmailov/fix_typos
Fix typos in gsl/pointers
2019-10-06 14:39:57 -07:00
Sergei Izmailov 275e0176c0 Fix typos in gsl/pointers 2019-10-06 19:20:15 +03:00
Jordan Maples 4b289d4cf0 lack of nl for bounds_test 2019-10-04 14:15:24 -07:00
Jordan Maples 6ff4a5287d accidentally commented out pragma 2019-10-04 14:13:54 -07:00
Jordan Maples 2b8f7aea32 adding clang/gcc suppression of the deprecation warnings. 2019-10-04 12:38:55 -07:00
Jordan Maples 7adf7eb6fe new messages 2019-10-03 17:52:49 -07:00
Jordan Maples 5e4463a7c1 removing function deprecation, adding additional class / struct deprecations 2019-10-03 15:47:25 -07:00
Jordan Maples [MSFT] 10ce5b634f Merge pull request #812 from JordanMaples/dev/jomaples/typo_fixes
Fixing typo "Guideline" as "Guidelines"
2019-10-03 09:37:41 -07:00
Jordan Maples eb995b3671 deprecating strided_span 2019-10-02 16:17:46 -07:00
Jordan Maples b630dfe36a Guideline -> Guidelines
fixing issue as reported in issue #746
2019-10-02 15:42:40 -07:00
Jordan Maples e026971c03 deprecation, removing cassert 2019-10-02 15:40:15 -07:00
Jordan Maples bbeb0bdc91 initial deprecation of multi_span and strided_span 2019-09-28 12:54:18 -07:00
Jordan Maples [MSFT] 23066c829f Update README.md 2019-09-04 15:10:14 -07:00
Jordan Maples [MSFT] a454d295ed Merge pull request #803 from B1Z0N/master
Fixed memory leaks and out of bound access
2019-09-04 14:04:47 -07:00
B1Z0N ba9af38494 Merge branch 'master' of https://github.com/B1Z0N/GSL 2019-09-01 00:38:10 +03:00
B1Z0N d5382a293b Fixed memory leaks 2019-09-01 00:36:13 +03:00
B1Z0N 787e7ef616 Thanks to @stayprivates fixed out of bounds access in "TestNotNullostream" 2019-09-01 00:35:04 +03:00
Jordan Maples [MSFT] 1046c9d247 Merge pull request #1 from microsoft/master
updating from root
2019-08-30 12:37:36 -07:00
Jordan Maples [MSFT] b576cc6ce3 Merge pull request #769 from jack17529/patch-1
Update usage of difference_type in span
2019-08-15 14:49:12 -07:00
Jordan Maples [MSFT] 2ce3177ebd Merge pull request #800 from eyalroz/master
Fixes #798 : Dropping inclusion of `gsl/pointers` in `string_span`
2019-08-15 14:42:07 -07:00
Johel Ernesto Guerrero Peña cee1929de7 Fix GNUC typo (#780)
Resolves #779
2019-08-14 12:56:53 -07:00
beinhaerter 1d48188de9 Fixed check if std::byte is available (#764)
The check for std::byte existance fails on gcc 8.2. According to https://en.cppreference.com/w/cpp/utility/feature_test it is necessary to `#include <cstddef>` before checking `__cpp_lib_byte`.
2019-08-14 12:40:35 -07:00
Eyal Rozenberg b05a4464b9 Fixes #798 : Dropped inclusion of gsl/pointers in string_span. 2019-08-05 13:16:42 +03:00
NN 1212beae77 Add Visual Studio 2019 image for tests (#787)
* Add Visual Studio 2019 image for tests

Refer to https://github.com/appveyor/ci/issues/2907
VS2019 is enabled per request.

* Use CMake 3.14

* Fix CMake output directory

* trigger build

* Trigger build
2019-06-12 21:27:49 -07:00
Ian Taylor 66809c6852 make TypeListIndexer constexpr (#733) 2019-06-06 14:16:08 -07:00
Fei Sun b74b286d5e add value_type size_type for string_span (#727) 2019-04-11 10:40:02 -07:00
JACK_1729 2a1ef25406 Update span
About my Issue - https://github.com/Microsoft/GSL/issues/765
2019-02-20 20:25:50 +05:30
Anna Gringauze 7d78b743e4 added clang7.0 to Travis configuration and README (#763) 2019-01-16 19:58:38 -08:00
Anna Gringauze 6418b5f4de Clang cl (#762)
* Added c++17 test configurations for clang5.0 and clang6.0

* Fix #739 correct cppcorecheck warnings for clang-cl

* Add clang-cl  configurations

* Corrections Appveyor;
Temporarily disable msvc compilation for faster testing (#741)

* Add path to clang-cl.exe (#741)

* Escape backslash in path (#741)

* Update vcpkg (#741)

* Check vcpkg version; try without building vcpkg; use latest clang-cl from path (#741)

* Fix blocks in ps script (#741)

* Try accessing APPVEYOR_BUILD_FOLDER variable (#471)

* Update span size() bug confirmation test for GCC 6.5 (#741)

* MSVC flags to Clang-cl; disable c++98-compat and undefined macro warnings (#741)

* Suppress clang warning on tests (missing-prototypes) (#741)

* Fix clang warning -Wnewline-eof (#741)

* Fix clang warning -Wdouble-promotion (#741)

* Set linker explicitly

* Clean condition statement

* For Clang, fallback to the AppVeyor installed version of CMake

* Fix clang warning -Wmissing-variable-declarations

* Fallback to the MSVC linker until vcpkg has been updated

* Revert "Fallback to the MSVC linker until vcpkg has been updated"

This reverts commit 7263f3289e.

* Fix clang warning -Wunused-member-function

* Fix clang warning -Wmissing-noreturn

* Fix clang warning -Winvalid-noreturn on Windows

* Add macro block end comment on large #if blocks

* Workaround: fallback to mscv link.exe

* Workaround: get msvc paths into PowerShell through intermediate file

* Workaround: fix, remove "PATH=" from text

* Workaround: try with full-path; and return user PATH

* Workaround: fix, escape backslashes

* Revert all since "Workaround: fallback to mscv link.exe" did not work on AppVeyor

This reverts the commits:
bda3d6a428
97062933ac
0f4fb04bac
1b0c19afd1
a5739ea5f0

* Suppress output of git pull; remove vcpkg from cache

* Re-enable AppVeyor builds for all platforms

* Correct typo

Co-Authored-By: Farwaykorse <Farwaykorse@users.noreply.github.com>

* Add Clang-cl 7.0.0 to the supported platforms

* Revert "Fix clang warning -Wunused-member-function"

This reverts commit 6fe1a42035.

* Fix or locally suppress clang warning -Wunused-member-function

* format touched code and correct comment

* git pull --quiet

* fix logic error in workaround

* fix missing bracket

* Suppress output of mkdir

* Replace MSBuild with Ninja

* Suppress output of 7z

* Add architecture flags for Clang

* Drop workaround for lld-link

* 7-zip Overwrite and Alternative output suppression without suppressing errors

Replaces 3c1c0794dd

* AppVeyor setup and CMake before build

* reorder compiler configuration

* remove unnecessary

* remove -fno-strict-aliasing

* remove -Wsign-conversion, since before v4.0 part of -Wconversion

* -Wctor-dtor-privacy is GCC only

* remove -Woverloaded-virtual part of -Wmost, part of -Wall

* add -Wmissing-noreturn

* remove the pragmas for -Wunused-member-function

* Re-add MSBuild generator on AppVeyor

* Print CMake commands

* Add MSBuild toolset selection

* Separate Architecture setting

* clang-cl: add -Weverything

* clang-cl -Wno-c++98-compat

* clang-cl -Wno-c++98-compat-pedantic

* clang-cl -Wno-missing-prototypes

* clang-cl C++14 -Wno-unused-member-function

* clang-cl -Wundef __GNUC__

* clang++: add -Weverything

* clang++ -Wno-c++98-compat

* clang++ -Wno-c++98-compat-pedantic

* clang++ -Wno-missing-prototypes

* clang++ -Wno-weak-vtables

* clang++ C++14 -Wno-unused-member-function

* clang++ fix -Wundef _MSC_VER

* clang++ -Wno-padded

* clang++ solve -Wdeprecated

* Add AppleClang compiler target
Since CMake v3.0 use of Clang for both is deprecated

* clang++ v5.0 C++17 -Wno-undefined-func-template

* Add VS2015 + LLVM/clang-cl to AppVeyor

* Do not disable constexpr when compiling with clang-cl on Windows

* Clean-up clang-only warnings (now under -Weverything)

* Revert "Fix clang warning -Winvalid-noreturn on Windows"

This reverts commit 2238c4760e.

* Suppress -Winvalid-noreturn for the MS STL noexception workaround

* CMake: put preprocessor definition in target_compile_definitions

* Solve compiler warning C4668: __GNUC__ not defined
2019-01-15 10:27:34 -08:00
Johel Ernesto Guerrero Peña 6eeed739f1 Make narrow constexpr (#698) 2019-01-14 18:37:37 -08:00
Anna Gringauze 9ff6e19ea9 Dev/annagrin/remove explicit not null constructor (#743)
* Added c++17 test configurations for clang5.0 and clang6.0

* Removed explicit not_null constructor, sloppy_not_null, added strict_not_null

We added explicit not_null constructor in version 2.0.0.
It proved very difficult to switch to the new version for
large code bases that adopted previous versions of gsl,
due to not_null used extensively in the code. Still, using
explicit constructor is very benefitial for new code, since
it encorages better API design and make null checks intentional.

To resolve the issue, this change:
- removes explicit keyword from not_null constructor
- removes unneded sloppy_not_null type
- adds strict_not_null type to behave the same way as v2 not_null
- updates tests

* Removed explicit not_null constructor, sloppy_not_null, added strict_not_null

We added explicit not_null constructor in version 2.0.0.
It proved very difficult to switch to the new version for
large code bases that adopted previous versions of gsl,
due to not_null used extensively in the code. Still, using
explicit constructor is very benefitial for new code, since
it encorages better API design and make null checks intentional.

To resolve the issue, this change:
- removes explicit keyword from not_null constructor
- removes unneded sloppy_not_null type
- adds strict_not_null type to behave the same way as v2 not_null
- updates tests

* fixed build break for gcc7

* added more tests

* added more non-compiling tests

* Addressed PR comments and suppressed a code analysis warning

* Fixed test failure in not_null tests
2019-01-14 16:45:47 -08:00
Alex Green 7a7d025ffa Make CheckRange constexpr (#754) (#755) 2019-01-14 16:44:45 -08:00
k-brac be3c3c2731 Fixes CMAKE_VERSION check (#759)
* Fixes CMAKE_VERSION check

Fixes #758 by using the correct comparison operator for a version
See documentation at https://cmake.org/cmake/help/latest/command/if.html
Thanks to this change, gsl natvis is properly included in a visual studio solution

* cmake version check for cmake < 3.7
2019-01-14 16:43:17 -08:00
hannesweisbach 0f68d133fa Suppress Warnings in GSL Headers (#731)
Suppress warnings in GSL headers using the SYSTEM keyword for target_include_directories(). This enables developers to see warnings standalone builds but hides them from users in non-standalone builds.
2018-11-28 15:37:59 -08:00
beinhaerter 88aca1caf3 added noexcept to get rid off VC warning con.4 (#748) 2018-11-28 11:57:43 -08:00
Stefan Dinkelacker 2e4d0d7e22 Fix spelling of library name (#747) 2018-11-28 11:53:38 -08:00
kile0 5a7093f983 Use the c++17 constexpr if in CheckRange if possible (#753)
* change c++17 to use constexpr if in CheckRange

* remove unnecessary macro

* use the portable feature test macro rather than direct version check
2018-11-28 11:52:11 -08:00
Anna Gringauze b673375719 Dev/annagrin/fix span size test gcc (#750)
* Added c++17 test configurations for clang5.0 and clang6.0

* fixed test for broken span.size() in gcc6.5
2018-11-27 17:28:57 -08:00
Dave Hill c02ddae4bc Span can be constructed from empty std::array safely (#686)
* Span std::array c'tor uses arr.data() instead of &arr[0]
- Fixes runtime issues when constructing from an empty std::array

* Construct span with std::data if C++17 detected

* Specialize span c'tor for std::array of length 0, set storage to nullptr
2018-11-05 15:39:41 -08:00
Ian Taylor 2bf9f137a6 make BoundsRanges constexpr (#732)
* make BoundsRanges constexpr

* fix clang compilation error

* fix windows compilation
2018-11-05 15:26:27 -08:00
Anna Gringauze 1995e86d1a span constructor no address (#723)
* Changed &arr[0] to std::array<T, N>::data and std::address_of to protect against overloaded operator&.

* Removed the usage of `std::addressof` because it is a C++ 17 feature. Using decay for C arrays instead.

* Add unit tests for #662.

* Added c++17 test configurations for clang5.0 and clang6.0

* fixed CppCoreCheck pointer decay warning
2018-08-19 17:10:53 -07:00
Anna Gringauze 585f48ce55 better check for branch opt (#724)
* Added c++17 test configurations for clang5.0 and clang6.0

* Simplified optimization in span::operator[]
2018-08-19 16:27:30 -07:00
Stephan Dollberg 86be2366c7 Fix #717 - Add empty() to strided_span (#718) 2018-08-17 11:47:03 -07:00
Anna Gringauze 55aad0ab6d Dev/annagrin/explicit notnull transition description (#722)
* Added c++17 test configurations for clang5.0 and clang6.0

* Improved description how to make transition to explicit not_null constructor
2018-08-17 11:36:26 -07:00
Anna Gringauze 5016ce4a4d Dev/annagrin/opt neg branch (#721)
* Added c++17 test configurations for clang5.0 and clang6.0

* Added optimization that removes a branch from span::operator[]

* minor beauty fix

* added a better message for the optimization, fixed signed/unsigned warning

* better check fir wrap-around possibility
2018-08-17 11:36:06 -07:00
Anna Gringauze 6241b3faa6 Dev/annagrin/sloppy not null (#712)
* Added c++17 test configurations for clang5.0 and clang6.0

* added transition helper sloppy_not_null

* Moved gsl_transition to a samples folder

* Fixed build break and static analysis warnings
2018-08-13 09:55:48 -07:00
Anna Gringauze 831584d947 Dev/annagrin/make not null (#711)
* Added c++17 test configurations for clang5.0 and clang6.0

* Added make_not_null helper to create a not_null

Introduction of explicit not_null constructor made it cumbersome to create not_nulls
in c++14. Adding make_not_null helper. Usage (see tests):

int i = 42;

auto x = make_not_null(&i);
helper(make_not_null(&i));
helper_const(make_not_null(&i));

* Added std::forward to make_not_null, fixed some code analysis warnings

* Fix build break in VS2015 Release configuration

* Fix build break in VS2015 Release configuration
2018-08-13 02:22:02 -07:00
Anna Gringauze f1a2e91e4e fixed typo 2018-08-12 21:45:39 -07:00
Anna Gringauze cea0d0ac2b fix cppcorecheck warnings (#703)
* Added c++17 test configurations for clang5.0 and clang6.0

* Fixed CppCoreCheck warnings in GSL and tests

- Added CMakeSettings.json for VS Open Folder configuration
	- So we can easily run CppCoreCheck in VS
- Fixed CppCorecheck warnings where it made sense
- Suppressed the rest
	- Some suppression does not work due to compiler/tool bugs,
          so replaced by #pragma disable
	- CppCoreCheck has noise, suppressed those with comments
	- Catch produces many warnings, blanket-supressed them all
- Had to fix clang formatting to keep attributes in place
	- clang-format does not support attributes, so I am using
        - "CommentPragmas: '^ NO-FORMAT:'" to skip formatiting on them
- Removed GSL_NOEXCEPT macro, removed incorred noexcepts

* Ignore unknown attributes

* ignore unknown attributes in noexception mode tests

* fixed C26472 in at()

* created GSL_SUPPRESS macro to allow all compilers to parse suppression attributes

* try to fix gcc compilation problems with attributes

* ignore gsl::suppress for gcc

* move suppression to function level on return statements

clang5.0 and up does not allow attributes on return statemets in constexpr functions

* move suppression to function level on return statements

* use GSL_SUPPRESS in algorithm_tests

* Addressed PR comments
2018-08-12 21:44:17 -07:00
Anna Gringauze 6a75903c79 replace uses of GSL_NOEXCEPT macro (#719)
* Added c++17 test configurations for clang5.0 and clang6.0

* removed GSL_NOEXCEPT

- Removed GSL_NOEXCEPT macro
- Replaced by noexcept keyword when needed
- removed noexcept where a function could throw

* remove unneded undef

* fixed replace errors

* removed noexcept where function can throw
2018-08-12 20:19:16 -07:00
Stefan Reinhold b6c531f7c1 Explicitly check for availability of std::byte (fixes #713) (#714)
* Explicitly check for availbility of std::byte

GCC > 7.3 defines __cpp_lib_byte >= 201603 when std::byte is available.
On libc++ std::byte is available since version 5.0. This can be checked
with _LIBCPP_VERSION >= 5000.
This fixes 713.

* Add missing \ in preprocessor check
2018-08-03 10:39:12 -07:00
beinhaerter f4a715816c Suppress warnings on VS (#642)
- gsl::narrow, gsl::narrow_cast and gsl::at are the safe variants suggested by CppCoreGuideline. It does not make sense to let VS warn inside the implementation of these functions that unsafe static_cast is used and that the safe variants shall be used.
- Suppress warning that throw_exception can be declared noexcept (for the GSL_TERMINATE_ON_CONTRACT_VIOLATION case)
2018-07-31 17:53:00 -07:00
Anna Gringauze 1f76fbd168 Dev/annagrin/failfast in noexcept mode windows (#710)
made terminate call __fastfail in noexcept mode when using msvc
2018-07-31 17:30:43 -07:00
Daniel599 5778149583 Test broken size (#704)
* added test for size check (#590)

* added #if for gcc 6.4 bug (#590)

* hopefully fix #if for gcc 6.4 bug (#590)

* fixed CHECK usage (#590)

* gcc broken size bug is only when using optimizations
2018-07-13 17:19:09 -07:00
Anna Gringauze 0cebbd77bf Added c++17 test configurations for clang5.0 and clang6.0 (#697) 2018-06-15 11:42:16 -07:00
Anna Gringauze 21cb6bb8b0 Added testing for c++17 to latest compilers with test with (#692)
* Added testing with std=c++17 for latest compilers

Added running latest compilers with -std=c++17 option to CI the test matrix,
Updated cmake configuration to allow passing c++ standard on the command line.

* attempt to fix appveyor break

* added clang6.0, removed c++17 tests for clang 5.0

* commented out tests for clang with c++17 die to issue #695

* Addresed comments
2018-06-15 10:13:11 -07:00
Matthieu Poullet a9ef39f14a Fix GCC8 warnings 'useless cast to type'. (#691) 2018-06-15 10:12:37 -07:00
menete ffdaf0fb21 fix gcc build (gcc 7) (#690)
simple solution, disable the specific warning
2018-06-08 11:41:06 -07:00
Anna Gringauze cb2d1af89a Added template argument deduction for not_null (#689)
* Added template  argument deduction for not_null

This allows compilers with c++17 support to infer template
instantiation types when calling not_null constructor:

    int foo(not_null<const int*> x);

    int main()
    {
        int t = 0;
        not_null x{ &t };
        return foo(not_null{ &t });
    }

* replaced deduction guides by a simple constructor

* Updated tests

* fixed check for availability of std::byte

* testing c++1z on clang

* fixed cmakelists extra endif

* include cstddef header for clang and gcc in pointers

* fixed a typo

* fix missing nullptr_t type

* fixed typo in CMakeLists.tst

* change approach to c++17 testing, step one: revert cmake testing, update clang5.0 package

removed using latest c++ due to clang5.0 failing,
update clang5.0 travis config to use llvm-toolchain-trusty-5.0

* addressed comments
2018-06-07 13:36:56 -07:00
beinhaerter 75ad0c1b40 Add as_bytes for basic_string_span, fixes issue #655 (#683) 2018-05-28 19:03:10 -07:00
Anna Gringauze 51ae678d08 Add usage for check-and-unwrap of MS STL iterators (#687)
* Add usage for check-and-unwrap of MS STL iterators

This is Billy ONeal's PR #682 with a typo fixed.

See corresponding change here:
https://devdiv.visualstudio.com/DefaultCollection/DevDiv/_git/msvc/commit/ca77129308c775f422ecef0c01ad460f75c462ad
That change officially exposes the STL's range checking machinery,
available in MSVC++ "15.8"+
This change augments GSL span::iterator to call into that newly exposed
machinery.

_Verify_range(cit, cit)
Requests that the iterator type check that the parameters form a valid
[First, Last) range iterator pair. This replaces _DEBUG_RANGE and
supporting machinery. The standard library provides a version for
pointers under _IDL != 0; otherwise they are normally provided via
hidden friend functions. Note that declaring some of these hidden
friends for "wrapper" iterators like move_iterator and reverse_iterator
triggers VSO#610735.

cit._Verify_offset(difference_type _Off)
For random-access iterators, performs any asserts that would be
performed by i += _Off; except with possibly a better error message and
without moving the iterator.

cit._Unwrapped()
Returns an "unchecked" or "unwrapped" iterator which has previously been
validated. The iterator may have been validated by a call to
_Verify_range or _Verify_offset (above), or by seeking a checked
iterator to a "high water mark" point.

it._Seek_to(cit) / it._Seek_to(return value from _Unwrapped())
Moves the position of the checked iterator it to the position of the
unchecked iterator supplied. Generally not intended to perform range
checks.

* Fixed build break in VS2015

* fixed constexpr build break when using VS2015
2018-05-22 18:07:49 -07:00
Gabriel Dos Reis 2be3b00faf Merge pull request #678 from sizmailov/sizmailov-patch-1
Update .travis.yml
2018-05-21 10:19:25 -07:00
Casey Carter d6a2242d97 [span] Tell MSVC how to avoid range-checking (#664)
* [span] implement non-member + as a hidden friend

Drive-by: remove garbage `operator-(difference_type, span_iterator)`.

* [span] Use pointers for range-based-for on MSVC
2018-05-09 14:01:22 -07:00
Sergei Izmailov cee3125af7 Update .travis.yml
Fix a typo `clang40` -> `clang50` (#677)
2018-05-07 01:18:08 +03:00
Anna Gringauze 5cbde3008a make terminate_handler __cdecl (#673) 2018-05-02 16:19:37 -07:00
Stephan Dollberg d6b26b367b Add __may_alias__ attribute to gsl::byte (#668)
C++17 defines `std::byte*` to have the same aliasing properties as
`char*`. Hence, we mark it with the `__may_alias__` attribute under gcc
and clang.

Based on the fix by Martin Moene in byte-lite.

Fixes #663
2018-05-01 12:32:31 -07:00
Michal Kaptur c4c1f6395a Cmake version updated in README (#669) 2018-05-01 12:00:37 -07:00
Rian Quinn d933e51b8b v2.0 Patch (#641)
Signed-off-by: Rian Quinn <rianquinn@gmail.com>
2018-04-27 12:56:25 -07:00
ericLemanissier 2fc94db3eb not_null constructor is now explicit (#659)
solves #395
2018-04-24 19:11:43 -07:00
beinhaerter fbe867a9c4 Fix clang-tidy warning about wrong comment on closing namespace (#654) 2018-04-24 19:04:24 -07:00
beinhaerter 697eb5533e final_action move assignment operator =delete against C26432 (#660)
This suppresses warning C26432 on VS2017. Fixes issue #653.
2018-04-24 18:35:53 -07:00
Stephan Dollberg 9c5e21045d Make gsl::details::throw_exception not copy exception object (#667)
This fixes the build with clang 7 which introduces a new warning
`-Wreturn-std-move` which warns about needless copies when a move
operation is available (see https://reviews.llvm.org/rL329914).

We take the exception object by uref so we should throw the forwarded
version.
2018-04-24 18:35:12 -07:00
Neil MacIntosh d25969dbdf Updated README to record another platform report.
As per #644.
2018-04-18 21:12:13 -07:00
33 changed files with 2365 additions and 1002 deletions
+14 -1
View File
@@ -5,7 +5,19 @@ IndentWidth: 4
AccessModifierOffset: -4
NamespaceIndentation: Inner
BreakBeforeBraces: Allman
BreakBeforeBraces: Custom
BraceWrapping:
AfterNamespace: true
AfterEnum: true
AfterStruct: true
AfterClass: true
SplitEmptyFunction: false
AfterControlStatement: true
AfterFunction: true
AfterUnion: true
BeforeElse: true
AlwaysBreakTemplateDeclarations: true
BreakConstructorInitializersBeforeComma: true
ConstructorInitializerAllOnOneLineOrOnePerLine: true
@@ -19,3 +31,4 @@ AlignConsecutiveAssignments: false
AlignTrailingComments: true
SpaceAfterCStyleCast: true
CommentPragmas: '^ NO-FORMAT:'
+91 -35
View File
@@ -23,23 +23,23 @@ matrix:
##########################################################################
# XCode 8.3
- env: COMPILER=clang++ BUILD_TYPE=Debug
- env: COMPILER=clang++ BUILD_TYPE=Debug GSL_CXX_STANDARD=14
os: osx
osx_image: xcode8.3
compiler: clang
- env: COMPILER=clang++ BUILD_TYPE=Release
- env: COMPILER=clang++ BUILD_TYPE=Release GSL_CXX_STANDARD=14
os: osx
osx_image: xcode8.3
compiler: clang
# XCode 9.1
- env: COMPILER=clang++ BUILD_TYPE=Debug
- env: COMPILER=clang++ BUILD_TYPE=Debug GSL_CXX_STANDARD=14
os: osx
osx_image: xcode9.1
compiler: clang
- env: COMPILER=clang++ BUILD_TYPE=Release
- env: COMPILER=clang++ BUILD_TYPE=Release GSL_CXX_STANDARD=14
os: osx
osx_image: xcode9.1
compiler: clang
@@ -49,7 +49,7 @@ matrix:
##########################################################################
# Clang 3.6
- env: COMPILER=clang++-3.6 BUILD_TYPE=Debug
- env: COMPILER=clang++-3.6 BUILD_TYPE=Debug GSL_CXX_STANDARD=14
addons: &clang36
apt:
packages:
@@ -59,11 +59,11 @@ matrix:
- ubuntu-toolchain-r-test
- llvm-toolchain-precise-3.6
- env: COMPILER=clang++-3.6 BUILD_TYPE=Release
- env: COMPILER=clang++-3.6 BUILD_TYPE=Release GSL_CXX_STANDARD=14
addons: *clang36
# Clang 3.7
- env: COMPILER=clang++-3.7 BUILD_TYPE=Debug
- env: COMPILER=clang++-3.7 BUILD_TYPE=Debug GSL_CXX_STANDARD=14
addons: &clang37
apt:
packages:
@@ -73,11 +73,11 @@ matrix:
- ubuntu-toolchain-r-test
- llvm-toolchain-precise-3.7
- env: COMPILER=clang++-3.7 BUILD_TYPE=Release
- env: COMPILER=clang++-3.7 BUILD_TYPE=Release GSL_CXX_STANDARD=14
addons: *clang37
# Clang 3.8
- env: COMPILER=clang++-3.8 BUILD_TYPE=Debug
- env: COMPILER=clang++-3.8 BUILD_TYPE=Debug GSL_CXX_STANDARD=14
addons: &clang38
apt:
packages:
@@ -87,11 +87,11 @@ matrix:
- ubuntu-toolchain-r-test
- llvm-toolchain-precise-3.8
- env: COMPILER=clang++-3.8 BUILD_TYPE=Release
- env: COMPILER=clang++-3.8 BUILD_TYPE=Release GSL_CXX_STANDARD=14
addons: *clang38
# Clang 3.9
- env: COMPILER=clang++-3.9 BUILD_TYPE=Debug
- env: COMPILER=clang++-3.9 BUILD_TYPE=Debug GSL_CXX_STANDARD=14
addons: &clang39
apt:
packages:
@@ -101,11 +101,11 @@ matrix:
- ubuntu-toolchain-r-test
- llvm-toolchain-precise-3.9
- env: COMPILER=clang++-3.9 BUILD_TYPE=Release
- env: COMPILER=clang++-3.9 BUILD_TYPE=Release GSL_CXX_STANDARD=14
addons: *clang39
# Clang 4.0
- env: COMPILER=clang++-4.0 BUILD_TYPE=Debug
- env: COMPILER=clang++-4.0 BUILD_TYPE=Debug GSL_CXX_STANDARD=14
addons: &clang40
apt:
packages:
@@ -115,63 +115,119 @@ matrix:
- ubuntu-toolchain-r-test
- llvm-toolchain-trusty-4.0
- env: COMPILER=clang++-4.0 BUILD_TYPE=Release
- env: COMPILER=clang++-4.0 BUILD_TYPE=Release GSL_CXX_STANDARD=14
addons: *clang40
# Clang 5.0
- env: COMPILER=clang++-5.0 BUILD_TYPE=Debug
addons: &clang40
- env: COMPILER=clang++-5.0 BUILD_TYPE=Debug GSL_CXX_STANDARD=14
addons: &clang50
apt:
packages:
- clang-5.0
- g++-5
- g++-7
sources:
- ubuntu-toolchain-r-test
- llvm-toolchain-trusty-5.0
- sourceline: 'deb http://apt.llvm.org/trusty/ llvm-toolchain-trusty-4.0 main'
- sourceline: 'deb http://apt.llvm.org/trusty/ llvm-toolchain-trusty-5.0 main'
key_url: 'https://apt.llvm.org/llvm-snapshot.gpg.key'
- env: COMPILER=clang++-5.0 BUILD_TYPE=Release
addons: *clang40
- env: COMPILER=clang++-5.0 BUILD_TYPE=Release GSL_CXX_STANDARD=14
addons: *clang50
- env: COMPILER=clang++-5.0 BUILD_TYPE=Debug GSL_CXX_STANDARD=17
addons: *clang50
- env: COMPILER=clang++-5.0 BUILD_TYPE=Release GSL_CXX_STANDARD=17
addons: *clang50
# Clang 6.0
- env: COMPILER=clang++-6.0 BUILD_TYPE=Debug GSL_CXX_STANDARD=14
addons: &clang60
apt:
packages:
- clang-6.0
- g++-7
sources:
- ubuntu-toolchain-r-test
- llvm-toolchain-trusty-6.0
- sourceline: 'deb http://apt.llvm.org/trusty/ llvm-toolchain-trusty-6.0 main'
key_url: 'https://apt.llvm.org/llvm-snapshot.gpg.key'
- env: COMPILER=clang++-6.0 BUILD_TYPE=Release GSL_CXX_STANDARD=14
addons: *clang60
# Clang 6.0 c++17
- env: COMPILER=clang++-6.0 BUILD_TYPE=Debug GSL_CXX_STANDARD=17
addons: *clang60
- env: COMPILER=clang++-6.0 BUILD_TYPE=Release GSL_CXX_STANDARD=17
addons: *clang60
# Clang 7.0
- env: COMPILER=clang++-7 BUILD_TYPE=Debug GSL_CXX_STANDARD=14
addons: &clang70
apt:
packages:
- clang-7
- g++-7
sources:
- ubuntu-toolchain-r-test
- llvm-toolchain-trusty-7
- env: COMPILER=clang++-7 BUILD_TYPE=Release GSL_CXX_STANDARD=14
addons: *clang70
# Clang 7.0 c++17
- env: COMPILER=clang++-7 BUILD_TYPE=Debug GSL_CXX_STANDARD=17
addons: *clang70
- env: COMPILER=clang++-7 BUILD_TYPE=Release GSL_CXX_STANDARD=17
addons: *clang70
##########################################################################
# GCC on Linux
##########################################################################
# GCC 5
- env: COMPILER=g++-5 BUILD_TYPE=Debug
- env: COMPILER=g++-5 BUILD_TYPE=Debug GSL_CXX_STANDARD=14
addons: &gcc5
apt:
packages: g++-5
sources:
- ubuntu-toolchain-r-test
- env: COMPILER=g++-5 BUILD_TYPE=Release
- env: COMPILER=g++-5 BUILD_TYPE=Release GSL_CXX_STANDARD=14
addons: *gcc5
# GCC 6
- env: COMPILER=g++-6 BUILD_TYPE=Debug
- env: COMPILER=g++-6 BUILD_TYPE=Debug GSL_CXX_STANDARD=14
addons: &gcc6
apt:
packages: g++-6
sources:
- ubuntu-toolchain-r-test
- env: COMPILER=g++-6 BUILD_TYPE=Release
- env: COMPILER=g++-6 BUILD_TYPE=Release GSL_CXX_STANDARD=14
addons: *gcc6
# Currently fails due to #525
## GCC 7
#- env: COMPILER=g++-7 BUILD_TYPE=Debug
# addons: &gcc7
# apt:
# packages: g++-7
# sources:
# - ubuntu-toolchain-r-test
# GCC 7
- env: COMPILER=g++-7 BUILD_TYPE=Debug GSL_CXX_STANDARD=14
addons: &gcc7
apt:
packages: g++-7
sources:
- ubuntu-toolchain-r-test
#- env: COMPILER=g++-7 BUILD_TYPE=Release
# addons: *gcc7
- env: COMPILER=g++-7 BUILD_TYPE=Release GSL_CXX_STANDARD=14
addons: *gcc7
# GCC 7 c++17
- env: COMPILER=g++-7 BUILD_TYPE=Debug GSL_CXX_STANDARD=17
addons: *gcc7
- env: COMPILER=g++-7 BUILD_TYPE=Release GSL_CXX_STANDARD=17
addons: *gcc7
install:
# Set the ${CXX} variable properly
@@ -231,7 +287,7 @@ before_script:
# have CMake to generate build files
- cd "${TRAVIS_BUILD_DIR}"
- mkdir build && cd build
- cmake .. -DCMAKE_BUILD_TYPE=$BUILD_TYPE
- cmake .. -DCMAKE_BUILD_TYPE=$BUILD_TYPE -DGSL_CXX_STANDARD=$GSL_CXX_STANDARD
script:
# build and run tests
+45 -25
View File
@@ -1,4 +1,4 @@
cmake_minimum_required(VERSION 3.7)
cmake_minimum_required(VERSION 3.1.3)
project(GSL CXX)
@@ -14,22 +14,28 @@ if (CMAKE_CURRENT_SOURCE_DIR STREQUAL CMAKE_SOURCE_DIR)
set(GSL_STANDALONE_PROJECT ON)
endif ()
set(GSL_CXX_STANDARD "14" CACHE STRING "Use c++ standard")
set(GSL_CXX_STD "cxx_std_${GSL_CXX_STANDARD}")
if (MSVC)
set(GSL_CXX_STD_OPT "-std:c++${GSL_CXX_STANDARD}")
else()
set(GSL_CXX_STD_OPT "-std=c++${GSL_CXX_STANDARD}")
endif()
# when minimum version required is 3.8.0 remove if below
# both branches do exactly the same thing
if (CMAKE_VERSION VERSION_LESS 3.7.9)
if (NOT MSVC)
include(CheckCXXCompilerFlag)
CHECK_CXX_COMPILER_FLAG("-std=c++14" COMPILER_SUPPORTS_CXX14)
if(COMPILER_SUPPORTS_CXX14)
target_compile_options(GSL INTERFACE "-std=c++14")
else()
message(FATAL_ERROR "The compiler ${CMAKE_CXX_COMPILER} has no C++14 support. Please use a different C++ compiler.")
endif()
include(CheckCXXCompilerFlag)
CHECK_CXX_COMPILER_FLAG("${GSL_CXX_STD_OPT}" COMPILER_SUPPORTS_CXX_STANDARD)
if(COMPILER_SUPPORTS_CXX_STANDARD)
target_compile_options(GSL INTERFACE "${GSL_CXX_STD_OPT}")
else()
message(FATAL_ERROR "The compiler ${CMAKE_CXX_COMPILER} has no c++${GSL_CXX_STANDARD} support. Please use a different C++ compiler.")
endif()
else ()
# set the GSL library to be compiled only with c++14
target_compile_features(GSL INTERFACE cxx_std_14)
target_compile_features(GSL INTERFACE "${GSL_CXX_STD}")
# on *nix systems force the use of -std=c++XX instead of -std=gnu++XX (default)
set(CMAKE_CXX_EXTENSIONS OFF)
endif()
@@ -39,27 +45,41 @@ target_compile_definitions(GSL INTERFACE
$<$<CXX_COMPILER_ID:MSVC>:
# remove unnecessary warnings about unchecked iterators
_SCL_SECURE_NO_WARNINGS
# remove deprecation warnings about std::uncaught_exception() (from catch)
_SILENCE_CXX17_UNCAUGHT_EXCEPTION_DEPRECATION_WARNING
>
)
# add include folders to the library and targets that consume it
target_include_directories(GSL INTERFACE
$<BUILD_INTERFACE:
${CMAKE_CURRENT_SOURCE_DIR}/include
>
)
if (MSVC_IDE)
option(VS_ADD_NATIVE_VISUALIZERS "Configure project to use Visual Studio native visualizers" TRUE)
# the SYSTEM keyword suppresses warnings for users of the library
if(GSL_STANDALONE_PROJECT)
target_include_directories(GSL INTERFACE
$<BUILD_INTERFACE:
${CMAKE_CURRENT_SOURCE_DIR}/include
>
)
else()
set(VS_ADD_NATIVE_VISUALIZERS FALSE CACHE INTERNAL "Native visualizers are Visual Studio extension" FORCE)
target_include_directories(GSL SYSTEM INTERFACE
$<BUILD_INTERFACE:
${CMAKE_CURRENT_SOURCE_DIR}/include
>
)
endif()
# add natvis file to the library so it will automatically be loaded into Visual Studio
if(VS_ADD_NATIVE_VISUALIZERS)
target_sources(GSL INTERFACE
${CMAKE_CURRENT_SOURCE_DIR}/GSL.natvis
)
if (CMAKE_VERSION VERSION_GREATER 3.7.8)
if (MSVC_IDE)
option(VS_ADD_NATIVE_VISUALIZERS "Configure project to use Visual Studio native visualizers" TRUE)
else()
set(VS_ADD_NATIVE_VISUALIZERS FALSE CACHE INTERNAL "Native visualizers are Visual Studio extension" FORCE)
endif()
# add natvis file to the library so it will automatically be loaded into Visual Studio
if(VS_ADD_NATIVE_VISUALIZERS)
target_sources(GSL INTERFACE
${CMAKE_CURRENT_SOURCE_DIR}/GSL.natvis
)
endif()
endif()
install(
+18
View File
@@ -0,0 +1,18 @@
{
"configurations": [
{
"name": "x64-Debug",
"generator": "Ninja",
"configurationType": "Debug",
"inheritEnvironments": [
"msvc_x64_x64"
],
"buildRoot": "${env.USERPROFILE}\\CMakeBuilds\\${workspaceHash}\\build\\${name}",
"installRoot": "${env.USERPROFILE}\\CMakeBuilds\\${workspaceHash}\\install\\${name}",
"cmakeCommandArgs": "-DGSL_CXX_STANDARD=17",
"buildCommandArgs": "-v",
"ctestCommandArgs": "",
"codeAnalysisRuleset": "CppCoreCheckRules.ruleset"
}
]
}
+2 -2
View File
@@ -1,6 +1,6 @@
## Contributing to the Guideline Support Library
## Contributing to the Guidelines Support Library
The Guideline Support Library (GSL) contains functions and types that are suggested for use by the
The Guidelines Support Library (GSL) contains functions and types that are suggested for use by the
[C++ Core Guidelines](https://github.com/isocpp/CppCoreGuidelines). GSL design changes are made only as a result of modifications to the Guidelines.
GSL is accepting contributions that improve or refine any of the types in this library as well as ports to other platforms. Changes should have an issue
+12 -4
View File
@@ -1,6 +1,6 @@
# GSL: Guideline Support Library [![Build Status](https://travis-ci.org/Microsoft/GSL.svg?branch=master)](https://travis-ci.org/Microsoft/GSL) [![Build status](https://ci.appveyor.com/api/projects/status/github/Microsoft/GSL?svg=true)](https://ci.appveyor.com/project/neilmacintosh/GSL)
# GSL: Guidelines Support Library [![Build Status](https://travis-ci.org/Microsoft/GSL.svg?branch=master)](https://travis-ci.org/Microsoft/GSL) [![Build status](https://ci.appveyor.com/api/projects/status/github/Microsoft/GSL?svg=true)](https://ci.appveyor.com/project/neilmacintosh/GSL)
The Guideline Support Library (GSL) contains functions and types that are suggested for use by the
The Guidelines Support Library (GSL) contains functions and types that are suggested for use by the
[C++ Core Guidelines](https://github.com/isocpp/CppCoreGuidelines) maintained by the [Standard C++ Foundation](https://isocpp.org).
This repo contains Microsoft's implementation of GSL.
@@ -27,9 +27,17 @@ The test suite that exercises GSL has been built and passes successfully on the
* Windows using Visual Studio 2015
* Windows using Visual Studio 2017
* Windows using Clang/LLVM 3.6
* Windows using Clang/LLVM 7.0.0
* Windows using GCC 5.1
* GNU/Linux using Clang/LLVM 3.6
* Windows using Intel C++ Compiler 18.0
* GNU/Linux using Clang/LLVM 3.6-3.9
* GNU/Linux using Clang/LLVM 4.0
* GNU/Linux using Clang/LLVM 5.0
* GNU/Linux using Clang/LLVM 6.0
* GNU/Linux using Clang/LLVM 7.0
* GNU/Linux using GCC 5.1
* OS X Mojave 10.14.4 using Apple LLVM version 10.0.0 (10.0.1.10010046)
* OS X Mojave 10.14.3 using Apple LLVM version 10.0.0 (clang-1000.11.45.5)
* OS X Yosemite using Xcode with Apple Clang 7.0.0.7000072
* OS X Yosemite using GCC-5.2.0
* OS X Sierra 10.12.4 using Apple LLVM version 8.1.0 (Clang-802.0.42)
@@ -45,7 +53,7 @@ contributing any changes that were necessary back to this project to benefit the
## Building the tests
To build the tests, you will require the following:
* [CMake](http://cmake.org), version 3.7 or later to be installed and in your PATH.
* [CMake](http://cmake.org), version 3.1.3 or later to be installed and in your PATH.
These steps assume the source code of this repository has been cloned into a directory named `c:\GSL`.
+1 -1
View File
@@ -2,7 +2,7 @@
THIRD-PARTY SOFTWARE NOTICES AND INFORMATION
Do Not Translate or Localize
GSL: Guideline Support Library incorporates third party material from the projects listed below. The original copyright notice and the license under which Microsoft received such third party material are set forth below. Microsoft reserves all other rights not expressly granted, whether by implication, estoppel or otherwise.
GSL: Guidelines Support Library incorporates third party material from the projects listed below. The original copyright notice and the license under which Microsoft received such third party material are set forth below. Microsoft reserves all other rights not expressly granted, whether by implication, estoppel or otherwise.
1. Catch (https://github.com/philsquared/Catch)
+96 -15
View File
@@ -11,35 +11,116 @@ configuration:
image:
- Visual Studio 2015
- Visual Studio 2017
- Visual Studio 2019
environment:
NINJA_TAG: v1.8.2
NINJA_SHA512: 9B9CE248240665FCD6404B989F3B3C27ED9682838225E6DC9B67B551774F251E4FF8A207504F941E7C811E7A8BE1945E7BCB94472A335EF15E23A0200A32E6D5
NINJA_PATH: C:\Tools\ninja\ninja-%NINJA_TAG%
VCVAR2015: 'C:\Program Files (x86)\Microsoft Visual Studio 14.0\VC\vcvarsall.bat'
VCVAR2017: 'C:\Program Files (x86)\Microsoft Visual Studio\2017\Community\VC\Auxiliary\Build\vcvarsall.bat'
VCVAR2019: 'C:\Program Files (x86)\Microsoft Visual Studio\2019\Community\VC\Auxiliary\Build\vcvarsall.bat'
matrix:
- GSL_CXX_STANDARD: 14
USE_TOOLSET: MSVC
USE_GENERATOR: MSBuild
- GSL_CXX_STANDARD: 17
USE_TOOLSET: MSVC
USE_GENERATOR: MSBuild
- GSL_CXX_STANDARD: 14
USE_TOOLSET: LLVM
USE_GENERATOR: Ninja
- GSL_CXX_STANDARD: 17
USE_TOOLSET: LLVM
USE_GENERATOR: Ninja
matrix:
exclude:
- image: Visual Studio 2015
GSL_CXX_STANDARD: 17
- image: Visual Studio 2015
USE_TOOLSET: LLVM
USE_GENERATOR: MSBuild
cache:
- C:\cmake-3.8.0-win32-x86
- C:\cmake-3.14.4-win32-x86
- C:\Tools\ninja
install:
- ps: |
if (![IO.File]::Exists("C:\cmake-3.8.0-win32-x86\bin\cmake.exe")) {
Start-FileDownload 'https://cmake.org/files/v3.8/cmake-3.8.0-win32-x86.zip'
7z x -y cmake-3.8.0-win32-x86.zip -oC:\
if (![IO.File]::Exists("$env:NINJA_PATH\ninja.exe")) {
Start-FileDownload `
"https://github.com/ninja-build/ninja/releases/download/$env:NINJA_TAG/ninja-win.zip"
$hash = (Get-FileHash ninja-win.zip -Algorithm SHA512).Hash
if ($env:NINJA_SHA512 -eq $hash) {
7z e -y -bso0 ninja-win.zip -o"$env:NINJA_PATH"
} else { Write-Warning "Ninja download hash changed!"; Write-Output "$hash" }
}
if ([IO.File]::Exists("$env:NINJA_PATH\ninja.exe")) {
$env:PATH = "$env:NINJA_PATH;$env:PATH"
} else { Write-Warning "Failed to find ninja.exe in expected location." }
if ($env:USE_TOOLSET -ne "LLVM") {
if (![IO.File]::Exists("C:\cmake-3.14.0-win32-x86\bin\cmake.exe")) {
Start-FileDownload 'https://cmake.org/files/v3.14/cmake-3.14.4-win32-x86.zip'
7z x -y -bso0 cmake-3.14.4-win32-x86.zip -oC:\
}
$env:PATH="C:\cmake-3.14.4-win32-x86\bin;$env:PATH"
}
$env:PATH="C:\cmake-3.8.0-win32-x86\bin;$env:PATH"
before_build:
- ps: |
mkdir build
cd build
if ("$env:APPVEYOR_JOB_NAME" -match "Image: Visual Studio 2015") {
$env:generator="Visual Studio 14 2015"
if ("$env:USE_GENERATOR" -eq "Ninja") {
$GeneratorFlags = '-k 10'
$Architecture = $env:PLATFORM
if ("$env:APPVEYOR_BUILD_WORKER_IMAGE" -eq "Visual Studio 2015") {
$env:VCVARSALL = "`"$env:VCVAR2015`" $Architecture"
} elseif ("$env:APPVEYOR_BUILD_WORKER_IMAGE" -eq "Visual Studio 2017") {
$env:VCVARSALL = "`"$env:VCVAR2017`" $Architecture"
} else {
$env:VCVARSALL = "`"$env:VCVAR2019`" $Architecture"
}
$env:CMakeGenFlags = "-G Ninja -DGSL_CXX_STANDARD=$env:GSL_CXX_STANDARD"
} else {
$env:generator="Visual Studio 15 2017"
$GeneratorFlags = '/m /v:minimal'
if ("$env:APPVEYOR_BUILD_WORKER_IMAGE" -eq "Visual Studio 2015") {
$Generator = 'Visual Studio 14 2015'
} elseif ("$env:APPVEYOR_BUILD_WORKER_IMAGE" -eq "Visual Studio 2017") {
$Generator = 'Visual Studio 15 2017'
} else {
$Generator = 'Visual Studio 16 2019'
}
if ("$env:PLATFORM" -eq "x86") {
$Architecture = "Win32"
} else {
$Architecture = "x64"
}
if ("$env:USE_TOOLSET" -eq "LLVM") {
$env:CMakeGenFlags = "-G `"$Generator`" -A $Architecture -T llvm -DGSL_CXX_STANDARD=$env:GSL_CXX_STANDARD"
} else {
$env:CMakeGenFlags = "-G `"$Generator`" -A $Architecture -DGSL_CXX_STANDARD=$env:GSL_CXX_STANDARD"
}
}
if ($env:PLATFORM -eq "x64") {
$env:generator="$env:generator Win64"
if ("$env:USE_TOOLSET" -eq "LLVM") {
$env:CC = "clang-cl"
$env:CXX = "clang-cl"
if ("$env:PLATFORM" -eq "x86") {
$env:CFLAGS = "-m32";
$env:CXXFLAGS = "-m32";
} else {
$env:CFLAGS = "-m64";
$env:CXXFLAGS = "-m64";
}
}
echo generator="$env:generator"
cmake .. -G "$env:generator"
$env:CMakeBuildFlags = "--config $env:CONFIGURATION -- $GeneratorFlags"
- mkdir build
- cd build
- if %USE_GENERATOR%==Ninja (call %VCVARSALL%)
- echo %CMakeGenFlags%
- cmake .. %CMakeGenFlags%
build_script:
- cmake --build . --config %CONFIGURATION% -- /m /v:minimal
- echo %CMakeBuildFlags%
- cmake --build . %CMakeBuildFlags%
test_script:
- ctest -j2
+3 -5
View File
@@ -31,15 +31,12 @@
#pragma warning(disable : 4127) // conditional expression is constant
#pragma warning(disable : 4996) // unsafe use of std::copy_n
// blanket turn off warnings from CppCoreCheck for now
// so people aren't annoyed by them when running the tool.
// more targeted suppressions will be added in a future update to the GSL
#pragma warning(disable : 26481 26482 26483 26485 26490 26491 26492 26493 26495)
#endif // _MSC_VER
namespace gsl
{
// Note: this will generate faster code than std::copy using span iterator in older msvc+stl
// not necessary for msvc since VS2017 15.8 (_MSC_VER >= 1915)
template <class SrcElementType, std::ptrdiff_t SrcExtent, class DestElementType,
std::ptrdiff_t DestExtent>
void copy(span<SrcElementType, SrcExtent> src, span<DestElementType, DestExtent> dest)
@@ -51,6 +48,7 @@ void copy(span<SrcElementType, SrcExtent> src, span<DestElementType, DestExtent>
"Source range is longer than target range");
Expects(dest.size() >= src.size());
GSL_SUPPRESS(stl.1) // NO-FORMAT: attribute
std::copy_n(src.data(), src.size(), dest.data());
}
+38 -6
View File
@@ -20,12 +20,34 @@
#include <exception>
#include <stdexcept> // for logic_error
//
// make suppress attributes parse for some compilers
// Hopefully temporary until suppression standardization occurs
//
#if defined(__clang__)
#define GSL_SUPPRESS(x) [[gsl::suppress("x")]]
#else
#if defined(_MSC_VER)
#define GSL_SUPPRESS(x) [[gsl::suppress(x)]]
#else
#define GSL_SUPPRESS(x)
#endif // _MSC_VER
#endif // __clang__
//
// Temporary until MSVC STL supports no-exceptions mode.
// Currently terminate is a no-op in this mode, so we add termination behavior back
//
#if defined(_MSC_VER) && defined(_HAS_EXCEPTIONS) && !_HAS_EXCEPTIONS
#define GSL_MSVC_USE_STL_NOEXCEPTION_WORKAROUND
#include <intrin.h>
#define RANGE_CHECKS_FAILURE 0
#if defined(__clang__)
#pragma clang diagnostic push
#pragma clang diagnostic ignored "-Winvalid-noreturn"
#endif
#endif
//
@@ -81,11 +103,17 @@ namespace details
{
#if defined(GSL_MSVC_USE_STL_NOEXCEPTION_WORKAROUND)
typedef void (*terminate_handler)();
typedef void (__cdecl *terminate_handler)();
GSL_SUPPRESS(f.6) // NO-FORMAT: attribute
[[noreturn]] inline void __cdecl default_terminate_handler()
{
__fastfail(RANGE_CHECKS_FAILURE);
}
inline gsl::details::terminate_handler& get_terminate_handler() noexcept
{
static terminate_handler handler = &abort;
static terminate_handler handler = &default_terminate_handler;
return handler;
}
@@ -103,7 +131,7 @@ namespace details
#if defined(GSL_TERMINATE_ON_CONTRACT_VIOLATION)
template <typename Exception>
[[noreturn]] void throw_exception(Exception&&)
[[noreturn]] void throw_exception(Exception&&) noexcept
{
gsl::details::terminate();
}
@@ -113,10 +141,10 @@ namespace details
template <typename Exception>
[[noreturn]] void throw_exception(Exception&& exception)
{
throw exception;
throw std::forward<Exception>(exception);
}
#endif
#endif // GSL_TERMINATE_ON_CONTRACT_VIOLATION
} // namespace details
} // namespace gsl
@@ -137,9 +165,13 @@ namespace details
#define GSL_CONTRACT_CHECK(type, cond) GSL_ASSUME(cond)
#endif
#endif // GSL_THROW_ON_CONTRACT_VIOLATION
#define Expects(cond) GSL_CONTRACT_CHECK("Precondition", cond)
#define Ensures(cond) GSL_CONTRACT_CHECK("Postcondition", cond)
#if defined(GSL_MSVC_USE_STL_NOEXCEPTION_WORKAROUND) && defined(__clang__)
#pragma clang diagnostic pop
#endif
#endif // GSL_CONTRACTS_H
+43 -12
View File
@@ -17,51 +17,80 @@
#ifndef GSL_BYTE_H
#define GSL_BYTE_H
//
// make suppress attributes work for some compilers
// Hopefully temporary until suppression standardization occurs
//
#if defined(__clang__)
#define GSL_SUPPRESS(x) [[gsl::suppress("x")]]
#else
#if defined(_MSC_VER)
#define GSL_SUPPRESS(x) [[gsl::suppress(x)]]
#else
#define GSL_SUPPRESS(x)
#endif // _MSC_VER
#endif // __clang__
#include <type_traits>
// VS2017 15.8 added support for the __cpp_lib_byte definition
// To do: drop _HAS_STD_BYTE when support for pre 15.8 expires
#ifdef _MSC_VER
#pragma warning(push)
// don't warn about function style casts in byte related operators
#pragma warning(disable : 26493)
// Turn MSVC /analyze rules that generate too much noise. TODO: fix in the tool.
#pragma warning(disable : 26493) // don't use c-style casts // TODO: MSVC suppression in templates does not always work
#ifndef GSL_USE_STD_BYTE
// this tests if we are under MSVC and the standard lib has std::byte and it is enabled
#if defined(_HAS_STD_BYTE) && _HAS_STD_BYTE
#if (defined(_HAS_STD_BYTE) && _HAS_STD_BYTE) || (defined(__cpp_lib_byte) && __cpp_lib_byte >= 201603)
#define GSL_USE_STD_BYTE 1
#else // defined(_HAS_STD_BYTE) && _HAS_STD_BYTE
#else // (defined(_HAS_STD_BYTE) && _HAS_STD_BYTE) || (defined(__cpp_lib_byte) && __cpp_lib_byte >= 201603)
#define GSL_USE_STD_BYTE 0
#endif // defined(_HAS_STD_BYTE) && _HAS_STD_BYTE
#endif // (defined(_HAS_STD_BYTE) && _HAS_STD_BYTE) || (defined(__cpp_lib_byte) && __cpp_lib_byte >= 201603)
#endif // GSL_USE_STD_BYTE
#else // _MSC_VER
#ifndef GSL_USE_STD_BYTE
#include <cstddef> /* __cpp_lib_byte */
// this tests if we are under GCC or Clang with enough -std:c++1z power to get us std::byte
#if defined(__cplusplus) && (__cplusplus >= 201703L)
// also check if libc++ version is sufficient (> 5.0) or libstc++ actually contains std::byte
#if defined(__cplusplus) && (__cplusplus >= 201703L) && \
(defined(__cpp_lib_byte) && (__cpp_lib_byte >= 201603) || \
defined(_LIBCPP_VERSION) && (_LIBCPP_VERSION >= 5000))
#define GSL_USE_STD_BYTE 1
#include <cstddef>
#else // defined(__cplusplus) && (__cplusplus >= 201703L)
#else // defined(__cplusplus) && (__cplusplus >= 201703L) &&
// (defined(__cpp_lib_byte) && (__cpp_lib_byte >= 201603) ||
// defined(_LIBCPP_VERSION) && (_LIBCPP_VERSION >= 5000))
#define GSL_USE_STD_BYTE 0
#endif //defined(__cplusplus) && (__cplusplus >= 201703L)
#endif //defined(__cplusplus) && (__cplusplus >= 201703L) &&
// (defined(__cpp_lib_byte) && (__cpp_lib_byte >= 201603) ||
// defined(_LIBCPP_VERSION) && (_LIBCPP_VERSION >= 5000))
#endif // GSL_USE_STD_BYTE
#endif // _MSC_VER
#endif // _MSC_VER
// Use __may_alias__ attribute on gcc and clang
#if defined __clang__ || (defined(__GNUC__) && __GNUC__ > 5)
#define byte_may_alias __attribute__((__may_alias__))
#else // defined __clang__ || defined __GNUC__
#define byte_may_alias
#endif // defined __clang__ || defined __GNUC__
namespace gsl
{
#if GSL_USE_STD_BYTE
using std::byte;
using std::to_integer;
@@ -69,7 +98,7 @@ using std::to_integer;
// This is a simple definition for now that allows
// use of byte within span<> to be standards-compliant
enum class byte : unsigned char
enum class byte_may_alias byte : unsigned char
{
};
@@ -146,6 +175,8 @@ constexpr byte to_byte_impl(T t) noexcept
return static_cast<byte>(t);
}
template <>
// NOTE: need suppression since c++14 does not allow "return {t}"
// GSL_SUPPRESS(type.4) // NO-FORMAT: attribute // TODO: suppression does not work
constexpr byte to_byte_impl<true, unsigned char>(unsigned char t) noexcept
{
return byte(t);
+30 -15
View File
@@ -24,9 +24,9 @@
#include <exception> // for exception
#include <initializer_list> // for initializer_list
#include <type_traits> // for is_signed, integral_constant
#include <utility> // for forward
#include <utility> // for exchange, forward
#if defined(_MSC_VER)
#if defined(_MSC_VER) && !defined(__clang__)
#pragma warning(push)
#pragma warning(disable : 4127) // conditional expression is constant
@@ -34,8 +34,14 @@
#if _MSC_VER < 1910
#pragma push_macro("constexpr")
#define constexpr /*constexpr*/
#endif // _MSC_VER < 1910
#endif // _MSC_VER
#endif // _MSC_VER < 1910
#endif // _MSC_VER
#if (defined(_MSC_VER) && _MSC_VER < 1910) || (!defined(__clang__) && defined(__GNUC__) && __GNUC__ < 6)
#define GSL_CONSTEXPR_NARROW 0
#else
#define GSL_CONSTEXPR_NARROW 1
#endif
namespace gsl
{
@@ -53,14 +59,13 @@ class final_action
public:
explicit final_action(F f) noexcept : f_(std::move(f)) {}
final_action(final_action&& other) noexcept : f_(std::move(other.f_)), invoke_(other.invoke_)
{
other.invoke_ = false;
}
final_action(final_action&& other) noexcept : f_(std::move(other.f_)), invoke_(std::exchange(other.invoke_, false)) {}
final_action(const final_action&) = delete;
final_action& operator=(const final_action&) = delete;
final_action& operator=(final_action&&) = delete;
GSL_SUPPRESS(f.6) // NO-FORMAT: attribute // terminate if throws
~final_action() noexcept
{
if (invoke_) f_();
@@ -68,12 +73,11 @@ public:
private:
F f_;
bool invoke_ {true};
bool invoke_{true};
};
// finally() - convenience function to generate a final_action
template <class F>
final_action<F> finally(const F& f) noexcept
{
return final_action<F>(f);
@@ -87,6 +91,7 @@ final_action<F> finally(F&& f) noexcept
// narrow_cast(): a searchable way to do narrowing casts of values
template <class T, class U>
GSL_SUPPRESS(type.1) // NO-FORMAT: attribute
constexpr T narrow_cast(U&& u) noexcept
{
return static_cast<T>(std::forward<U>(u));
@@ -103,11 +108,16 @@ namespace details
: public std::integral_constant<bool, std::is_signed<T>::value == std::is_signed<U>::value>
{
};
}
} // namespace details
// narrow() : a checked version of narrow_cast() that throws if the cast changed the value
template <class T, class U>
T narrow(U u)
GSL_SUPPRESS(type.1) // NO-FORMAT: attribute
GSL_SUPPRESS(f.6) // NO-FORMAT: attribute // TODO: MSVC /analyze does not recognise noexcept(false)
#if GSL_CONSTEXPR_NARROW
constexpr
#endif
T narrow(U u) noexcept(false)
{
T t = narrow_cast<T>(u);
if (static_cast<U>(t) != u) gsl::details::throw_exception(narrowing_error());
@@ -120,21 +130,26 @@ T narrow(U u)
// at() - Bounds-checked way of accessing builtin arrays, std::array, std::vector
//
template <class T, std::size_t N>
GSL_SUPPRESS(bounds.4) // NO-FORMAT: attribute
GSL_SUPPRESS(bounds.2) // NO-FORMAT: attribute
constexpr T& at(T (&arr)[N], const index i)
{
Expects(i >= 0 && i < narrow_cast<index>(N));
return arr[static_cast<std::size_t>(i)];
return arr[narrow_cast<std::size_t>(i)];
}
template <class Cont>
GSL_SUPPRESS(bounds.4) // NO-FORMAT: attribute
GSL_SUPPRESS(bounds.2) // NO-FORMAT: attribute
constexpr auto at(Cont& cont, const index i) -> decltype(cont[cont.size()])
{
Expects(i >= 0 && i < narrow_cast<index>(cont.size()));
using size_type = decltype(cont.size());
return cont[static_cast<size_type>(i)];
return cont[narrow_cast<size_type>(i)];
}
template <class T>
GSL_SUPPRESS(bounds.1) // NO-FORMAT: attribute
constexpr T at(const std::initializer_list<T> cont, const index i)
{
Expects(i >= 0 && i < narrow_cast<index>(cont.size()));
@@ -143,7 +158,7 @@ constexpr T at(const std::initializer_list<T> cont, const index i)
} // namespace gsl
#if defined(_MSC_VER)
#if defined(_MSC_VER) && !defined(__clang__)
#if _MSC_VER < 1910
#undef constexpr
#pragma pop_macro("constexpr")
+497 -452
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File diff suppressed because it is too large Load Diff
+119 -4
View File
@@ -25,7 +25,7 @@
#include <system_error> // for hash
#include <type_traits> // for enable_if_t, is_convertible, is_assignable
#if defined(_MSC_VER) && _MSC_VER < 1910
#if defined(_MSC_VER) && _MSC_VER < 1910 && !defined(__clang__)
#pragma push_macro("constexpr")
#define constexpr /*constexpr*/
@@ -77,6 +77,12 @@ public:
Expects(ptr_ != nullptr);
}
template <typename = std::enable_if_t<!std::is_same<std::nullptr_t, T>::value>>
constexpr not_null(T u) : ptr_(u)
{
Expects(ptr_ != nullptr);
}
template <typename U, typename = std::enable_if_t<std::is_convertible<U, T>::value>>
constexpr not_null(const not_null<U>& other) : not_null(other.get())
{
@@ -94,7 +100,7 @@ public:
constexpr operator T() const { return get(); }
constexpr T operator->() const { return get(); }
constexpr decltype(auto) operator*() const { return *get(); }
constexpr decltype(auto) operator*() const { return *get(); }
// prevents compilation when someone attempts to assign a null pointer constant
not_null(std::nullptr_t) = delete;
@@ -113,6 +119,11 @@ private:
T ptr_;
};
template <class T>
auto make_not_null(T&& t) {
return not_null<std::remove_cv_t<std::remove_reference_t<T>>>{std::forward<T>(t)};
}
template <class T>
std::ostream& operator<<(std::ostream& os, const not_null<T>& val)
{
@@ -178,10 +189,114 @@ struct hash<gsl::not_null<T>>
} // namespace std
#if defined(_MSC_VER) && _MSC_VER < 1910
namespace gsl
{
//
// strict_not_null
//
// Restricts a pointer or smart pointer to only hold non-null values,
//
// - provides a strict (i.e. explicit constructor from T) wrapper of not_null
// - to be used for new code that wishes the design to be cleaner and make not_null
// checks intentional, or in old code that would like to make the transition.
//
// To make the transition from not_null, incrementally replace not_null
// by strict_not_null and fix compilation errors
//
// Expect to
// - remove all unneeded conversions from raw pointer to not_null and back
// - make API clear by specifying not_null in parameters where needed
// - remove unnecessary asserts
//
template <class T>
class strict_not_null: public not_null<T>
{
public:
template <typename U, typename = std::enable_if_t<std::is_convertible<U, T>::value>>
constexpr explicit strict_not_null(U&& u) :
not_null<T>(std::forward<U>(u))
{}
template <typename = std::enable_if_t<!std::is_same<std::nullptr_t, T>::value>>
constexpr explicit strict_not_null(T u) :
not_null<T>(u)
{}
template <typename U, typename = std::enable_if_t<std::is_convertible<U, T>::value>>
constexpr strict_not_null(const not_null<U>& other) :
not_null<T>(other)
{}
template <typename U, typename = std::enable_if_t<std::is_convertible<U, T>::value>>
constexpr strict_not_null(const strict_not_null<U>& other) :
not_null<T>(other)
{}
strict_not_null(strict_not_null&& other) = default;
strict_not_null(const strict_not_null& other) = default;
strict_not_null& operator=(const strict_not_null& other) = default;
strict_not_null& operator=(const not_null<T>& other)
{
not_null<T>::operator=(other);
return *this;
}
// prevents compilation when someone attempts to assign a null pointer constant
strict_not_null(std::nullptr_t) = delete;
strict_not_null& operator=(std::nullptr_t) = delete;
// unwanted operators...pointers only point to single objects!
strict_not_null& operator++() = delete;
strict_not_null& operator--() = delete;
strict_not_null operator++(int) = delete;
strict_not_null operator--(int) = delete;
strict_not_null& operator+=(std::ptrdiff_t) = delete;
strict_not_null& operator-=(std::ptrdiff_t) = delete;
void operator[](std::ptrdiff_t) const = delete;
};
// more unwanted operators
template <class T, class U>
std::ptrdiff_t operator-(const strict_not_null<T>&, const strict_not_null<U>&) = delete;
template <class T>
strict_not_null<T> operator-(const strict_not_null<T>&, std::ptrdiff_t) = delete;
template <class T>
strict_not_null<T> operator+(const strict_not_null<T>&, std::ptrdiff_t) = delete;
template <class T>
strict_not_null<T> operator+(std::ptrdiff_t, const strict_not_null<T>&) = delete;
template <class T>
auto make_strict_not_null(T&& t) {
return strict_not_null<std::remove_cv_t<std::remove_reference_t<T>>>{std::forward<T>(t)};
}
#if ( defined(__cpp_deduction_guides) && (__cpp_deduction_guides >= 201611L) )
// deduction guides to prevent the ctad-maybe-unsupported warning
template <class T> not_null(T) -> not_null<T>;
template <class T> strict_not_null(T) -> strict_not_null<T>;
#endif // ( defined(__cpp_deduction_guides) && (__cpp_deduction_guides >= 201611L) )
} // namespace gsl
namespace std
{
template <class T>
struct hash<gsl::strict_not_null<T>>
{
std::size_t operator()(const gsl::strict_not_null<T>& value) const { return hash<T>{}(value); }
};
} // namespace std
#if defined(_MSC_VER) && _MSC_VER < 1910 && !defined(__clang__)
#undef constexpr
#pragma pop_macro("constexpr")
#endif // defined(_MSC_VER) && _MSC_VER < 1910
#endif // defined(_MSC_VER) && _MSC_VER < 1910 && !defined(__clang__)
#endif // GSL_POINTERS_H
+180 -106
View File
@@ -29,26 +29,26 @@
#include <stdexcept>
#include <type_traits> // for enable_if_t, declval, is_convertible, inte...
#include <utility>
#include <memory> // for std::addressof
#ifdef _MSC_VER
#if defined(_MSC_VER) && !defined(__clang__)
#pragma warning(push)
// turn off some warnings that are noisy about our Expects statements
#pragma warning(disable : 4127) // conditional expression is constant
#pragma warning(disable : 4702) // unreachable code
// blanket turn off warnings from CppCoreCheck for now
// so people aren't annoyed by them when running the tool.
// more targeted suppressions will be added in a future update to the GSL
#pragma warning(disable : 26481 26482 26483 26485 26490 26491 26492 26493 26495)
// Turn MSVC /analyze rules that generate too much noise. TODO: fix in the tool.
#pragma warning(disable : 26495) // uninitalized member when constructor calls constructor
#pragma warning(disable : 26446) // parser bug does not allow attributes on some templates
#if _MSC_VER < 1910
#pragma push_macro("constexpr")
#define constexpr /*constexpr*/
#define GSL_USE_STATIC_CONSTEXPR_WORKAROUND
#endif // _MSC_VER < 1910
#else // _MSC_VER
#endif // _MSC_VER < 1910
#endif // _MSC_VER
// See if we have enough C++17 power to use a static constexpr data member
// without needing an out-of-line definition
@@ -56,7 +56,15 @@
#define GSL_USE_STATIC_CONSTEXPR_WORKAROUND
#endif // !(defined(__cplusplus) && (__cplusplus >= 201703L))
#endif // _MSC_VER
// GCC 7 does not like the signed unsigned missmatch (size_t ptrdiff_t)
// While there is a conversion from signed to unsigned, it happens at
// compiletime, so the compiler wouldn't have to warn indiscriminently, but
// could check if the source value actually doesn't fit into the target type
// and only warn in those cases.
#if defined(__GNUC__) && __GNUC__ > 6
#pragma GCC diagnostic push
#pragma GCC diagnostic ignored "-Wsign-conversion"
#endif
namespace gsl
{
@@ -119,7 +127,6 @@ namespace details
using element_type_ = typename Span::element_type;
public:
#ifdef _MSC_VER
// Tell Microsoft standard library that span_iterators are checked.
using _Unchecked_type = typename Span::pointer;
@@ -134,17 +141,17 @@ namespace details
span_iterator() = default;
constexpr span_iterator(const Span* span, typename Span::index_type idx) noexcept
constexpr span_iterator(const Span* span, difference_type idx) noexcept
: span_(span), index_(idx)
{}
friend span_iterator<Span, true>;
template<bool B, std::enable_if_t<!B && IsConst>* = nullptr>
template <bool B, std::enable_if_t<!B && IsConst>* = nullptr>
constexpr span_iterator(const span_iterator<Span, B>& other) noexcept
: span_iterator(other.span_, other.index_)
{
}
{}
GSL_SUPPRESS(bounds.1) // NO-FORMAT: attribute
constexpr reference operator*() const
{
Expects(index_ != span_->size());
@@ -191,6 +198,11 @@ namespace details
return ret += n;
}
friend constexpr span_iterator operator+(difference_type n, span_iterator const& rhs)
{
return rhs + n;
}
constexpr span_iterator& operator+=(difference_type n)
{
Expects((index_ + n) >= 0 && (index_ + n) <= span_->size());
@@ -212,68 +224,82 @@ namespace details
return index_ - rhs.index_;
}
constexpr reference operator[](difference_type n) const
{
return *(*this + n);
}
constexpr reference operator[](difference_type n) const { return *(*this + n); }
constexpr friend bool operator==(span_iterator lhs,
span_iterator rhs) noexcept
constexpr friend bool operator==(span_iterator lhs, span_iterator rhs) noexcept
{
return lhs.span_ == rhs.span_ && lhs.index_ == rhs.index_;
}
constexpr friend bool operator!=(span_iterator lhs,
span_iterator rhs) noexcept
constexpr friend bool operator!=(span_iterator lhs, span_iterator rhs) noexcept
{
return !(lhs == rhs);
}
constexpr friend bool operator<(span_iterator lhs,
span_iterator rhs) noexcept
constexpr friend bool operator<(span_iterator lhs, span_iterator rhs) noexcept
{
return lhs.index_ < rhs.index_;
}
constexpr friend bool operator<=(span_iterator lhs,
span_iterator rhs) noexcept
constexpr friend bool operator<=(span_iterator lhs, span_iterator rhs) noexcept
{
return !(rhs < lhs);
}
constexpr friend bool operator>(span_iterator lhs,
span_iterator rhs) noexcept
constexpr friend bool operator>(span_iterator lhs, span_iterator rhs) noexcept
{
return rhs < lhs;
}
constexpr friend bool operator>=(span_iterator lhs,
span_iterator rhs) noexcept
constexpr friend bool operator>=(span_iterator lhs, span_iterator rhs) noexcept
{
return !(rhs > lhs);
}
#ifdef _MSC_VER
// MSVC++ iterator debugging support; allows STL algorithms in 15.8+
// to unwrap span_iterator to a pointer type after a range check in STL
// algorithm calls
friend constexpr void _Verify_range(span_iterator lhs, span_iterator rhs) noexcept
{ // test that [lhs, rhs) forms a valid range inside an STL algorithm
Expects(lhs.span_ == rhs.span_ // range spans have to match
&& lhs.index_ <= rhs.index_); // range must not be transposed
}
constexpr void _Verify_offset(const difference_type n) const noexcept
{ // test that the iterator *this + n is a valid range in an STL
// algorithm call
Expects((index_ + n) >= 0 && (index_ + n) <= span_->size());
}
GSL_SUPPRESS(bounds.1) // NO-FORMAT: attribute
constexpr pointer _Unwrapped() const noexcept
{ // after seeking *this to a high water mark, or using one of the
// _Verify_xxx functions above, unwrap this span_iterator to a raw
// pointer
return span_->data() + index_;
}
// Tell the STL that span_iterator should not be unwrapped if it can't
// validate in advance, even in release / optimized builds:
#if defined(GSL_USE_STATIC_CONSTEXPR_WORKAROUND)
static constexpr const bool _Unwrap_when_unverified = false;
#else
static constexpr bool _Unwrap_when_unverified = false;
#endif
GSL_SUPPRESS(con.3) // NO-FORMAT: attribute // TODO: false positive
constexpr void _Seek_to(const pointer p) noexcept
{ // adjust the position of *this to previously verified location p
// after _Unwrapped
index_ = p - span_->data();
}
#endif
protected:
const Span* span_ = nullptr;
std::ptrdiff_t index_ = 0;
};
template <class Span, bool IsConst>
constexpr span_iterator<Span, IsConst>
operator+(typename span_iterator<Span, IsConst>::difference_type n,
span_iterator<Span, IsConst> rhs)
{
return rhs + n;
}
template <class Span, bool IsConst>
constexpr span_iterator<Span, IsConst>
operator-(typename span_iterator<Span, IsConst>::difference_type n,
span_iterator<Span, IsConst> rhs)
{
return rhs - n;
}
template <std::ptrdiff_t Ext>
class extent_type
{
@@ -305,8 +331,7 @@ namespace details
template <index_type Other>
explicit constexpr extent_type(extent_type<Other> ext) : size_(ext.size())
{
}
{}
explicit constexpr extent_type(index_type size) : size_(size) { Expects(size >= 0); }
@@ -319,7 +344,9 @@ namespace details
template <class ElementType, std::ptrdiff_t Extent, std::ptrdiff_t Offset, std::ptrdiff_t Count>
struct calculate_subspan_type
{
using type = span<ElementType, Count != dynamic_extent ? Count : (Extent != dynamic_extent ? Extent - Offset : Extent)>;
using type = span<ElementType, Count != dynamic_extent
? Count
: (Extent != dynamic_extent ? Extent - Offset : Extent)>;
};
} // namespace details
@@ -343,9 +370,9 @@ public:
using size_type = index_type;
#if defined(GSL_USE_STATIC_CONSTEXPR_WORKAROUND)
static constexpr const index_type extent { Extent };
static constexpr const index_type extent{Extent};
#else
static constexpr index_type extent { Extent };
static constexpr index_type extent{Extent};
#endif
// [span.cons], span constructors, copy, assignment, and destructor
@@ -354,31 +381,38 @@ public:
// since "std::enable_if_t<Extent <= 0>" is ill-formed when Extent is greater than 0.
class = std::enable_if_t<(Dependent || Extent <= 0)>>
constexpr span() noexcept : storage_(nullptr, details::extent_type<0>())
{
}
{}
constexpr span(pointer ptr, index_type count) : storage_(ptr, count) {}
constexpr span(pointer firstElem, pointer lastElem)
: storage_(firstElem, std::distance(firstElem, lastElem))
{
}
{}
template <std::size_t N>
constexpr span(element_type (&arr)[N]) noexcept
: storage_(KnownNotNull{&arr[0]}, details::extent_type<N>())
: storage_(KnownNotNull{std::addressof(arr[0])}, details::extent_type<N>())
{}
template <std::size_t N, class = std::enable_if_t<(N > 0)>>
constexpr span(std::array<std::remove_const_t<element_type>, N>& arr) noexcept
: storage_(KnownNotNull{arr.data()}, details::extent_type<N>())
{
}
template <std::size_t N, class ArrayElementType = std::remove_const_t<element_type>>
constexpr span(std::array<ArrayElementType, N>& arr) noexcept
: storage_(&arr[0], details::extent_type<N>())
constexpr span(std::array<std::remove_const_t<element_type>, 0>&) noexcept
: storage_(static_cast<pointer>(nullptr), details::extent_type<0>())
{
}
template <std::size_t N>
template <std::size_t N, class = std::enable_if_t<(N > 0)>>
constexpr span(const std::array<std::remove_const_t<element_type>, N>& arr) noexcept
: storage_(&arr[0], details::extent_type<N>())
: storage_(KnownNotNull{arr.data()}, details::extent_type<N>())
{
}
constexpr span(const std::array<std::remove_const_t<element_type>, 0>&) noexcept
: storage_(static_cast<pointer>(nullptr), details::extent_type<0>())
{
}
@@ -391,8 +425,7 @@ public:
std::is_convertible<typename Container::pointer,
decltype(std::declval<Container>().data())>::value>>
constexpr span(Container& cont) : span(cont.data(), narrow<index_type>(cont.size()))
{
}
{}
template <class Container,
class = std::enable_if_t<
@@ -401,8 +434,7 @@ public:
std::is_convertible<typename Container::pointer,
decltype(std::declval<Container>().data())>::value>>
constexpr span(const Container& cont) : span(cont.data(), narrow<index_type>(cont.size()))
{
}
{}
constexpr span(const span& other) noexcept = default;
@@ -413,12 +445,11 @@ public:
details::is_allowed_element_type_conversion<OtherElementType, element_type>::value>>
constexpr span(const span<OtherElementType, OtherExtent>& other)
: storage_(other.data(), details::extent_type<OtherExtent>(other.size()))
{
}
{}
~span() noexcept = default;
constexpr span& operator=(const span& other) noexcept = default;
// [span.sub], span subviews
template <std::ptrdiff_t Count>
constexpr span<element_type, Count> first() const
@@ -428,6 +459,7 @@ public:
}
template <std::ptrdiff_t Count>
GSL_SUPPRESS(bounds.1) // NO-FORMAT: attribute
constexpr span<element_type, Count> last() const
{
Expects(Count >= 0 && size() - Count >= 0);
@@ -435,7 +467,9 @@ public:
}
template <std::ptrdiff_t Offset, std::ptrdiff_t Count = dynamic_extent>
constexpr auto subspan() const -> typename details::calculate_subspan_type<ElementType, Extent, Offset, Count>::type
GSL_SUPPRESS(bounds.1) // NO-FORMAT: attribute
constexpr auto subspan() const ->
typename details::calculate_subspan_type<ElementType, Extent, Offset, Count>::type
{
Expects((Offset >= 0 && size() - Offset >= 0) &&
(Count == dynamic_extent || (Count >= 0 && Offset + Count <= size())));
@@ -460,7 +494,6 @@ public:
return make_subspan(offset, count, subspan_selector<Extent>{});
}
// [span.obs], span observers
constexpr index_type size() const noexcept { return storage_.size(); }
constexpr index_type size_bytes() const noexcept
@@ -470,9 +503,10 @@ public:
constexpr bool empty() const noexcept { return size() == 0; }
// [span.elem], span element access
GSL_SUPPRESS(bounds.1) // NO-FORMAT: attribute
constexpr reference operator[](index_type idx) const
{
Expects(idx >= 0 && idx < storage_.size());
Expects(CheckRange(idx, storage_.size()));
return data()[idx];
}
@@ -490,13 +524,54 @@ public:
constexpr reverse_iterator rbegin() const noexcept { return reverse_iterator{end()}; }
constexpr reverse_iterator rend() const noexcept { return reverse_iterator{begin()}; }
constexpr const_reverse_iterator crbegin() const noexcept { return const_reverse_iterator{cend()}; }
constexpr const_reverse_iterator crend() const noexcept { return const_reverse_iterator{cbegin()}; }
constexpr const_reverse_iterator crbegin() const noexcept
{
return const_reverse_iterator{cend()};
}
constexpr const_reverse_iterator crend() const noexcept
{
return const_reverse_iterator{cbegin()};
}
#ifdef _MSC_VER
// Tell MSVC how to unwrap spans in range-based-for
constexpr pointer _Unchecked_begin() const noexcept { return data(); }
constexpr pointer _Unchecked_end() const noexcept
{
GSL_SUPPRESS(bounds.1) // NO-FORMAT: attribute
return data() + size();
}
#endif // _MSC_VER
private:
static constexpr bool CheckRange(index_type idx, index_type size) noexcept
{
// Optimization:
//
// idx >= 0 && idx < size
// =>
// static_cast<size_t>(idx) < static_cast<size_t>(size)
//
// because size >=0 by span construction, and negative idx will
// wrap around to a value always greater than size when casted.
// check if we have enough space to wrap around
#if defined(__cpp_if_constexpr)
if constexpr (sizeof(index_type) <= sizeof(size_t))
#else
if (sizeof(index_type) <= sizeof(size_t))
#endif
{
return narrow_cast<size_t>(idx) < narrow_cast<size_t>(size);
}
else
{
return idx >= 0 && idx < size;
}
}
// Needed to remove unnecessary null check in subspans
struct KnownNotNull
struct KnownNotNull
{
pointer p;
};
@@ -508,20 +583,20 @@ private:
class storage_type : public ExtentType
{
public:
// KnownNotNull parameter is needed to remove unnecessary null check
// KnownNotNull parameter is needed to remove unnecessary null check
// in subspans and constructors from arrays
template <class OtherExtentType>
constexpr storage_type(KnownNotNull data, OtherExtentType ext) : ExtentType(ext), data_(data.p)
constexpr storage_type(KnownNotNull data, OtherExtentType ext)
: ExtentType(ext), data_(data.p)
{
Expects(ExtentType::size() >= 0);
Expects(ExtentType::size() >= 0);
}
template <class OtherExtentType>
constexpr storage_type(pointer data, OtherExtentType ext) : ExtentType(ext), data_(data)
{
Expects(ExtentType::size() >= 0);
Expects(data || ExtentType::size() == 0);
Expects(ExtentType::size() >= 0);
Expects(data || ExtentType::size() == 0);
}
constexpr pointer data() const noexcept { return data_; }
@@ -537,29 +612,28 @@ private:
constexpr span(KnownNotNull ptr, index_type count) : storage_(ptr, count) {}
template <std::ptrdiff_t CallerExtent>
class subspan_selector {};
class subspan_selector
{
};
template <std::ptrdiff_t CallerExtent>
span<element_type, dynamic_extent> make_subspan(index_type offset,
index_type count,
span<element_type, dynamic_extent> make_subspan(index_type offset, index_type count,
subspan_selector<CallerExtent>) const
{
span<element_type, dynamic_extent> tmp(*this);
const span<element_type, dynamic_extent> tmp(*this);
return tmp.subspan(offset, count);
}
span<element_type, dynamic_extent> make_subspan(index_type offset,
index_type count,
GSL_SUPPRESS(bounds.1) // NO-FORMAT: attribute
span<element_type, dynamic_extent> make_subspan(index_type offset, index_type count,
subspan_selector<dynamic_extent>) const
{
Expects(offset >= 0 && size() - offset >= 0);
if (count == dynamic_extent)
{
return { KnownNotNull{ data() + offset }, size() - offset };
}
if (count == dynamic_extent) { return {KnownNotNull{data() + offset}, size() - offset}; }
Expects(count >= 0 && size() - offset >= count);
return { KnownNotNull{ data() + offset }, count };
return {KnownNotNull{data() + offset}, count};
}
};
@@ -568,46 +642,39 @@ template <class ElementType, std::ptrdiff_t Extent>
constexpr const typename span<ElementType, Extent>::index_type span<ElementType, Extent>::extent;
#endif
// [span.comparison], span comparison operators
template <class ElementType, std::ptrdiff_t FirstExtent, std::ptrdiff_t SecondExtent>
constexpr bool operator==(span<ElementType, FirstExtent> l,
span<ElementType, SecondExtent> r)
constexpr bool operator==(span<ElementType, FirstExtent> l, span<ElementType, SecondExtent> r)
{
return std::equal(l.begin(), l.end(), r.begin(), r.end());
}
template <class ElementType, std::ptrdiff_t Extent>
constexpr bool operator!=(span<ElementType, Extent> l,
span<ElementType, Extent> r)
constexpr bool operator!=(span<ElementType, Extent> l, span<ElementType, Extent> r)
{
return !(l == r);
}
template <class ElementType, std::ptrdiff_t Extent>
constexpr bool operator<(span<ElementType, Extent> l,
span<ElementType, Extent> r)
constexpr bool operator<(span<ElementType, Extent> l, span<ElementType, Extent> r)
{
return std::lexicographical_compare(l.begin(), l.end(), r.begin(), r.end());
}
template <class ElementType, std::ptrdiff_t Extent>
constexpr bool operator<=(span<ElementType, Extent> l,
span<ElementType, Extent> r)
constexpr bool operator<=(span<ElementType, Extent> l, span<ElementType, Extent> r)
{
return !(l > r);
}
template <class ElementType, std::ptrdiff_t Extent>
constexpr bool operator>(span<ElementType, Extent> l,
span<ElementType, Extent> r)
constexpr bool operator>(span<ElementType, Extent> l, span<ElementType, Extent> r)
{
return r < l;
}
template <class ElementType, std::ptrdiff_t Extent>
constexpr bool operator>=(span<ElementType, Extent> l,
span<ElementType, Extent> r)
constexpr bool operator>=(span<ElementType, Extent> l, span<ElementType, Extent> r)
{
return !(l < r);
}
@@ -633,13 +700,14 @@ namespace details
: std::integral_constant<std::ptrdiff_t, dynamic_extent>
{
};
}
} // namespace details
// [span.objectrep], views of object representation
template <class ElementType, std::ptrdiff_t Extent>
span<const byte, details::calculate_byte_size<ElementType, Extent>::value>
as_bytes(span<ElementType, Extent> s) noexcept
{
GSL_SUPPRESS(type.1) // NO-FORMAT: attribute
return {reinterpret_cast<const byte*>(s.data()), s.size_bytes()};
}
@@ -648,6 +716,7 @@ template <class ElementType, std::ptrdiff_t Extent,
span<byte, details::calculate_byte_size<ElementType, Extent>::value>
as_writeable_bytes(span<ElementType, Extent> s) noexcept
{
GSL_SUPPRESS(type.1) // NO-FORMAT: attribute
return {reinterpret_cast<byte*>(s.data()), s.size_bytes()};
}
@@ -655,7 +724,8 @@ as_writeable_bytes(span<ElementType, Extent> s) noexcept
// make_span() - Utility functions for creating spans
//
template <class ElementType>
constexpr span<ElementType> make_span(ElementType* ptr, typename span<ElementType>::index_type count)
constexpr span<ElementType> make_span(ElementType* ptr,
typename span<ElementType>::index_type count)
{
return span<ElementType>(ptr, count);
}
@@ -706,7 +776,7 @@ constexpr ElementType& at(span<ElementType, Extent> s, index i)
} // namespace gsl
#ifdef _MSC_VER
#if defined(_MSC_VER) && !defined(__clang__)
#if _MSC_VER < 1910
#undef constexpr
#pragma pop_macro("constexpr")
@@ -716,4 +786,8 @@ constexpr ElementType& at(span<ElementType, Extent> s, index i)
#pragma warning(pop)
#endif // _MSC_VER
#if defined(__GNUC__) && __GNUC__ > 6
#pragma GCC diagnostic pop
#endif // __GNUC__ > 6
#endif // GSL_SPAN_H
+95 -89
View File
@@ -29,13 +29,12 @@
#include <string> // for basic_string, allocator, char_traits
#include <type_traits> // for declval, is_convertible, enable_if_t, add_...
#ifdef _MSC_VER
#if defined(_MSC_VER) && !defined(__clang__)
#pragma warning(push)
// blanket turn off warnings from CppCoreCheck for now
// so people aren't annoyed by them when running the tool.
// more targeted suppressions will be added in a future update to the GSL
#pragma warning(disable : 26481 26482 26483 26485 26490 26491 26492 26493 26495)
// Turn MSVC /analyze rules that generate too much noise. TODO: fix in the tool.
#pragma warning(disable : 26446) // TODO: bug in parser - attributes and templates
#pragma warning(disable : 26481) // TODO: suppress does not work inside templates sometimes
#if _MSC_VER < 1910
#pragma push_macro("constexpr")
@@ -44,13 +43,6 @@
#endif // _MSC_VER < 1910
#endif // _MSC_VER
// In order to test the library, we need it to throw exceptions that we can catch
#ifdef GSL_THROW_ON_CONTRACT_VIOLATION
#define GSL_NOEXCEPT /*noexcept*/
#else
#define GSL_NOEXCEPT noexcept
#endif // GSL_THROW_ON_CONTRACT_VIOLATION
namespace gsl
{
//
@@ -105,7 +97,7 @@ namespace details
return len;
}
}
} // namespace details
//
// ensure_sentinel()
@@ -118,7 +110,13 @@ namespace details
template <typename T, const T Sentinel>
span<T, dynamic_extent> ensure_sentinel(T* seq, std::ptrdiff_t max = PTRDIFF_MAX)
{
Ensures(seq != nullptr);
GSL_SUPPRESS(f.23) // NO-FORMAT: attribute // TODO: false positive // TODO: suppress does not work
auto cur = seq;
Ensures(cur != nullptr); // workaround for removing the warning
GSL_SUPPRESS(bounds.1) // NO-FORMAT: attribute // TODO: suppress does not work
while ((cur - seq) < max && *cur != Sentinel) ++cur;
Ensures(*cur == Sentinel);
return {seq, cur - seq};
@@ -138,21 +136,20 @@ span<CharT, dynamic_extent> ensure_z(CharT* const& sz, std::ptrdiff_t max = PTRD
template <typename CharT, std::size_t N>
span<CharT, dynamic_extent> ensure_z(CharT (&sz)[N])
{
return ensure_z(&sz[0], static_cast<std::ptrdiff_t>(N));
return ensure_z(&sz[0], narrow_cast<std::ptrdiff_t>(N));
}
template <class Cont>
span<typename std::remove_pointer<typename Cont::pointer>::type, dynamic_extent>
ensure_z(Cont& cont)
{
return ensure_z(cont.data(), static_cast<std::ptrdiff_t>(cont.size()));
return ensure_z(cont.data(), narrow_cast<std::ptrdiff_t>(cont.size()));
}
template <typename CharT, std::ptrdiff_t>
class basic_string_span;
namespace details
{
namespace details {
template <typename T>
struct is_basic_string_span_oracle : std::false_type
{
@@ -167,7 +164,7 @@ namespace details
struct is_basic_string_span : is_basic_string_span_oracle<std::remove_cv_t<T>>
{
};
}
} // namespace details
//
// string_span and relatives
@@ -177,6 +174,7 @@ class basic_string_span
{
public:
using element_type = CharT;
using value_type = std::remove_cv_t<element_type>;
using pointer = std::add_pointer_t<element_type>;
using reference = std::add_lvalue_reference_t<element_type>;
using const_reference = std::add_lvalue_reference_t<std::add_const_t<element_type>>;
@@ -188,14 +186,16 @@ public:
using reverse_iterator = typename impl_type::reverse_iterator;
using const_reverse_iterator = typename impl_type::const_reverse_iterator;
using size_type = index_type;
// default (empty)
constexpr basic_string_span() GSL_NOEXCEPT = default;
constexpr basic_string_span() noexcept = default;
// copy
constexpr basic_string_span(const basic_string_span& other) GSL_NOEXCEPT = default;
constexpr basic_string_span(const basic_string_span& other) noexcept = default;
// assign
constexpr basic_string_span& operator=(const basic_string_span& other) GSL_NOEXCEPT = default;
constexpr basic_string_span& operator=(const basic_string_span& other) noexcept = default;
constexpr basic_string_span(pointer ptr, index_type length) : span_(ptr, length) {}
constexpr basic_string_span(pointer firstElem, pointer lastElem) : span_(firstElem, lastElem) {}
@@ -204,32 +204,27 @@ public:
// All other containers allow 0s within the length, so we do not remove them
template <std::size_t N>
constexpr basic_string_span(element_type (&arr)[N]) : span_(remove_z(arr))
{
}
{}
template <std::size_t N, class ArrayElementType = std::remove_const_t<element_type>>
constexpr basic_string_span(std::array<ArrayElementType, N>& arr) GSL_NOEXCEPT : span_(arr)
{
}
constexpr basic_string_span(std::array<ArrayElementType, N>& arr) noexcept : span_(arr)
{}
template <std::size_t N, class ArrayElementType = std::remove_const_t<element_type>>
constexpr basic_string_span(const std::array<ArrayElementType, N>& arr) GSL_NOEXCEPT
: span_(arr)
{
}
constexpr basic_string_span(const std::array<ArrayElementType, N>& arr) noexcept : span_(arr)
{}
// Container signature should work for basic_string after C++17 version exists
template <class Traits, class Allocator>
// GSL_SUPPRESS(bounds.4) // NO-FORMAT: attribute // TODO: parser bug
constexpr basic_string_span(std::basic_string<element_type, Traits, Allocator>& str)
: span_(&str[0], narrow_cast<std::ptrdiff_t>(str.length()))
{
}
{}
template <class Traits, class Allocator>
constexpr basic_string_span(const std::basic_string<element_type, Traits, Allocator>& str)
: span_(&str[0], str.length())
{
}
{}
// from containers. Containers must have a pointer type and data() function signatures
template <class Container,
@@ -239,8 +234,7 @@ public:
std::is_convertible<typename Container::pointer,
decltype(std::declval<Container>().data())>::value>>
constexpr basic_string_span(Container& cont) : span_(cont)
{
}
{}
template <class Container,
class = std::enable_if_t<
@@ -249,8 +243,7 @@ public:
std::is_convertible<typename Container::pointer,
decltype(std::declval<Container>().data())>::value>>
constexpr basic_string_span(const Container& cont) : span_(cont)
{
}
{}
// from string_span
template <
@@ -259,8 +252,7 @@ public:
typename basic_string_span<OtherValueType, OtherExtent>::impl_type, impl_type>::value>>
constexpr basic_string_span(basic_string_span<OtherValueType, OtherExtent> other)
: span_(other.data(), other.length())
{
}
{}
template <index_type Count>
constexpr basic_string_span<element_type, Count> first() const
@@ -301,23 +293,23 @@ public:
constexpr pointer data() const { return span_.data(); }
constexpr index_type length() const GSL_NOEXCEPT { return span_.size(); }
constexpr index_type size() const GSL_NOEXCEPT { return span_.size(); }
constexpr index_type size_bytes() const GSL_NOEXCEPT { return span_.size_bytes(); }
constexpr index_type length_bytes() const GSL_NOEXCEPT { return span_.length_bytes(); }
constexpr bool empty() const GSL_NOEXCEPT { return size() == 0; }
constexpr index_type length() const noexcept { return span_.size(); }
constexpr index_type size() const noexcept { return span_.size(); }
constexpr index_type size_bytes() const noexcept { return span_.size_bytes(); }
constexpr index_type length_bytes() const noexcept { return span_.length_bytes(); }
constexpr bool empty() const noexcept { return size() == 0; }
constexpr iterator begin() const GSL_NOEXCEPT { return span_.begin(); }
constexpr iterator end() const GSL_NOEXCEPT { return span_.end(); }
constexpr iterator begin() const noexcept { return span_.begin(); }
constexpr iterator end() const noexcept { return span_.end(); }
constexpr const_iterator cbegin() const GSL_NOEXCEPT { return span_.cbegin(); }
constexpr const_iterator cend() const GSL_NOEXCEPT { return span_.cend(); }
constexpr const_iterator cbegin() const noexcept { return span_.cbegin(); }
constexpr const_iterator cend() const noexcept { return span_.cend(); }
constexpr reverse_iterator rbegin() const GSL_NOEXCEPT { return span_.rbegin(); }
constexpr reverse_iterator rend() const GSL_NOEXCEPT { return span_.rend(); }
constexpr reverse_iterator rbegin() const noexcept { return span_.rbegin(); }
constexpr reverse_iterator rend() const noexcept { return span_.rend(); }
constexpr const_reverse_iterator crbegin() const GSL_NOEXCEPT { return span_.crbegin(); }
constexpr const_reverse_iterator crend() const GSL_NOEXCEPT { return span_.crend(); }
constexpr const_reverse_iterator crbegin() const noexcept { return span_.crbegin(); }
constexpr const_reverse_iterator crend() const noexcept { return span_.crend(); }
private:
static impl_type remove_z(pointer const& sz, std::ptrdiff_t max)
@@ -366,21 +358,37 @@ template <typename CharT, std::ptrdiff_t Extent>
std::basic_string<typename std::remove_const<CharT>::type>
to_string(basic_string_span<CharT, Extent> view)
{
return {view.data(), static_cast<std::size_t>(view.length())};
return {view.data(), narrow_cast<std::size_t>(view.length())};
}
template <typename CharT, typename Traits = typename std::char_traits<CharT>,
typename Allocator = std::allocator<CharT>, typename gCharT, std::ptrdiff_t Extent>
std::basic_string<CharT, Traits, Allocator> to_basic_string(basic_string_span<gCharT, Extent> view)
{
return {view.data(), static_cast<std::size_t>(view.length())};
return {view.data(), narrow_cast<std::size_t>(view.length())};
}
template <class ElementType, std::ptrdiff_t Extent>
basic_string_span<const byte, details::calculate_byte_size<ElementType, Extent>::value>
as_bytes(basic_string_span<ElementType, Extent> s) noexcept
{
GSL_SUPPRESS(type.1) // NO-FORMAT: attribute
return {reinterpret_cast<const byte*>(s.data()), s.size_bytes()};
}
template <class ElementType, std::ptrdiff_t Extent,
class = std::enable_if_t<!std::is_const<ElementType>::value>>
basic_string_span<byte, details::calculate_byte_size<ElementType, Extent>::value>
as_writeable_bytes(basic_string_span<ElementType, Extent> s) noexcept
{
GSL_SUPPRESS(type.1) // NO-FORMAT: attribute
return {reinterpret_cast<byte*>(s.data()), s.size_bytes()};
}
// zero-terminated string span, used to convert
// zero-terminated spans to legacy strings
template <typename CharT, std::ptrdiff_t Extent = dynamic_extent>
class basic_zstring_span
{
class basic_zstring_span {
public:
using value_type = CharT;
using const_value_type = std::add_const_t<CharT>;
@@ -394,7 +402,7 @@ public:
using impl_type = span<value_type, Extent>;
using string_span_type = basic_string_span<value_type, Extent>;
constexpr basic_zstring_span(impl_type s) GSL_NOEXCEPT : span_(s)
constexpr basic_zstring_span(impl_type s) : span_(s)
{
// expects a zero-terminated span
Expects(s[s.size() - 1] == '\0');
@@ -412,16 +420,16 @@ public:
// move assign
constexpr basic_zstring_span& operator=(basic_zstring_span&& other) = default;
constexpr bool empty() const GSL_NOEXCEPT { return span_.size() == 0; }
constexpr bool empty() const noexcept { return span_.size() == 0; }
constexpr string_span_type as_string_span() const GSL_NOEXCEPT
constexpr string_span_type as_string_span() const noexcept
{
auto sz = span_.size();
return { span_.data(), sz > 1 ? sz - 1 : 0 };
const auto sz = span_.size();
return {span_.data(), sz > 1 ? sz - 1 : 0};
}
constexpr string_span_type ensure_z() const GSL_NOEXCEPT { return gsl::ensure_z(span_); }
constexpr string_span_type ensure_z() const { return gsl::ensure_z(span_); }
constexpr const_zstring_type assume_z() const GSL_NOEXCEPT { return span_.data(); }
constexpr const_zstring_type assume_z() const noexcept { return span_.data(); }
private:
impl_type span_;
@@ -456,7 +464,7 @@ template <class CharT, std::ptrdiff_t Extent, class T,
class = std::enable_if_t<
details::is_basic_string_span<T>::value ||
std::is_convertible<T, gsl::basic_string_span<std::add_const_t<CharT>>>::value>>
bool operator==(const gsl::basic_string_span<CharT, Extent>& one, const T& other) GSL_NOEXCEPT
bool operator==(const gsl::basic_string_span<CharT, Extent>& one, const T& other)
{
const gsl::basic_string_span<std::add_const_t<CharT>> tmp(other);
return std::equal(one.begin(), one.end(), tmp.begin(), tmp.end());
@@ -466,9 +474,9 @@ template <class CharT, std::ptrdiff_t Extent, class T,
class = std::enable_if_t<
!details::is_basic_string_span<T>::value &&
std::is_convertible<T, gsl::basic_string_span<std::add_const_t<CharT>>>::value>>
bool operator==(const T& one, const gsl::basic_string_span<CharT, Extent>& other) GSL_NOEXCEPT
bool operator==(const T& one, const gsl::basic_string_span<CharT, Extent>& other)
{
gsl::basic_string_span<std::add_const_t<CharT>> tmp(one);
const gsl::basic_string_span<std::add_const_t<CharT>> tmp(one);
return std::equal(tmp.begin(), tmp.end(), other.begin(), other.end());
}
@@ -476,7 +484,7 @@ bool operator==(const T& one, const gsl::basic_string_span<CharT, Extent>& other
template <typename CharT, std::ptrdiff_t Extent = gsl::dynamic_extent, typename T,
typename = std::enable_if_t<std::is_convertible<
T, gsl::basic_string_span<std::add_const_t<CharT>, Extent>>::value>>
bool operator!=(gsl::basic_string_span<CharT, Extent> one, const T& other) GSL_NOEXCEPT
bool operator!=(gsl::basic_string_span<CharT, Extent> one, const T& other)
{
return !(one == other);
}
@@ -486,7 +494,7 @@ template <
typename = std::enable_if_t<
std::is_convertible<T, gsl::basic_string_span<std::add_const_t<CharT>, Extent>>::value &&
!gsl::details::is_basic_string_span<T>::value>>
bool operator!=(const T& one, gsl::basic_string_span<CharT, Extent> other) GSL_NOEXCEPT
bool operator!=(const T& one, gsl::basic_string_span<CharT, Extent> other)
{
return !(one == other);
}
@@ -495,7 +503,7 @@ bool operator!=(const T& one, gsl::basic_string_span<CharT, Extent> other) GSL_N
template <typename CharT, std::ptrdiff_t Extent = gsl::dynamic_extent, typename T,
typename = std::enable_if_t<std::is_convertible<
T, gsl::basic_string_span<std::add_const_t<CharT>, Extent>>::value>>
bool operator<(gsl::basic_string_span<CharT, Extent> one, const T& other) GSL_NOEXCEPT
bool operator<(gsl::basic_string_span<CharT, Extent> one, const T& other)
{
const gsl::basic_string_span<std::add_const_t<CharT>, Extent> tmp(other);
return std::lexicographical_compare(one.begin(), one.end(), tmp.begin(), tmp.end());
@@ -506,7 +514,7 @@ template <
typename = std::enable_if_t<
std::is_convertible<T, gsl::basic_string_span<std::add_const_t<CharT>, Extent>>::value &&
!gsl::details::is_basic_string_span<T>::value>>
bool operator<(const T& one, gsl::basic_string_span<CharT, Extent> other) GSL_NOEXCEPT
bool operator<(const T& one, gsl::basic_string_span<CharT, Extent> other)
{
gsl::basic_string_span<std::add_const_t<CharT>, Extent> tmp(one);
return std::lexicographical_compare(tmp.begin(), tmp.end(), other.begin(), other.end());
@@ -525,7 +533,7 @@ template <
std::is_convertible<DataType*, CharT*>::value &&
std::is_same<std::decay_t<decltype(std::declval<T>().size(), *std::declval<T>().data())>,
DataType>::value>>
bool operator<(gsl::basic_string_span<CharT, Extent> one, const T& other) GSL_NOEXCEPT
bool operator<(gsl::basic_string_span<CharT, Extent> one, const T& other)
{
gsl::basic_string_span<std::add_const_t<CharT>, Extent> tmp(other);
return std::lexicographical_compare(one.begin(), one.end(), tmp.begin(), tmp.end());
@@ -539,7 +547,7 @@ template <
std::is_convertible<DataType*, CharT*>::value &&
std::is_same<std::decay_t<decltype(std::declval<T>().size(), *std::declval<T>().data())>,
DataType>::value>>
bool operator<(const T& one, gsl::basic_string_span<CharT, Extent> other) GSL_NOEXCEPT
bool operator<(const T& one, gsl::basic_string_span<CharT, Extent> other)
{
gsl::basic_string_span<std::add_const_t<CharT>, Extent> tmp(one);
return std::lexicographical_compare(tmp.begin(), tmp.end(), other.begin(), other.end());
@@ -550,7 +558,7 @@ bool operator<(const T& one, gsl::basic_string_span<CharT, Extent> other) GSL_NO
template <typename CharT, std::ptrdiff_t Extent = gsl::dynamic_extent, typename T,
typename = std::enable_if_t<std::is_convertible<
T, gsl::basic_string_span<std::add_const_t<CharT>, Extent>>::value>>
bool operator<=(gsl::basic_string_span<CharT, Extent> one, const T& other) GSL_NOEXCEPT
bool operator<=(gsl::basic_string_span<CharT, Extent> one, const T& other)
{
return !(other < one);
}
@@ -560,7 +568,7 @@ template <
typename = std::enable_if_t<
std::is_convertible<T, gsl::basic_string_span<std::add_const_t<CharT>, Extent>>::value &&
!gsl::details::is_basic_string_span<T>::value>>
bool operator<=(const T& one, gsl::basic_string_span<CharT, Extent> other) GSL_NOEXCEPT
bool operator<=(const T& one, gsl::basic_string_span<CharT, Extent> other)
{
return !(other < one);
}
@@ -578,7 +586,7 @@ template <
std::is_convertible<DataType*, CharT*>::value &&
std::is_same<std::decay_t<decltype(std::declval<T>().size(), *std::declval<T>().data())>,
DataType>::value>>
bool operator<=(gsl::basic_string_span<CharT, Extent> one, const T& other) GSL_NOEXCEPT
bool operator<=(gsl::basic_string_span<CharT, Extent> one, const T& other)
{
return !(other < one);
}
@@ -591,7 +599,7 @@ template <
std::is_convertible<DataType*, CharT*>::value &&
std::is_same<std::decay_t<decltype(std::declval<T>().size(), *std::declval<T>().data())>,
DataType>::value>>
bool operator<=(const T& one, gsl::basic_string_span<CharT, Extent> other) GSL_NOEXCEPT
bool operator<=(const T& one, gsl::basic_string_span<CharT, Extent> other)
{
return !(other < one);
}
@@ -601,7 +609,7 @@ bool operator<=(const T& one, gsl::basic_string_span<CharT, Extent> other) GSL_N
template <typename CharT, std::ptrdiff_t Extent = gsl::dynamic_extent, typename T,
typename = std::enable_if_t<std::is_convertible<
T, gsl::basic_string_span<std::add_const_t<CharT>, Extent>>::value>>
bool operator>(gsl::basic_string_span<CharT, Extent> one, const T& other) GSL_NOEXCEPT
bool operator>(gsl::basic_string_span<CharT, Extent> one, const T& other)
{
return other < one;
}
@@ -611,7 +619,7 @@ template <
typename = std::enable_if_t<
std::is_convertible<T, gsl::basic_string_span<std::add_const_t<CharT>, Extent>>::value &&
!gsl::details::is_basic_string_span<T>::value>>
bool operator>(const T& one, gsl::basic_string_span<CharT, Extent> other) GSL_NOEXCEPT
bool operator>(const T& one, gsl::basic_string_span<CharT, Extent> other)
{
return other < one;
}
@@ -629,7 +637,7 @@ template <
std::is_convertible<DataType*, CharT*>::value &&
std::is_same<std::decay_t<decltype(std::declval<T>().size(), *std::declval<T>().data())>,
DataType>::value>>
bool operator>(gsl::basic_string_span<CharT, Extent> one, const T& other) GSL_NOEXCEPT
bool operator>(gsl::basic_string_span<CharT, Extent> one, const T& other)
{
return other < one;
}
@@ -642,7 +650,7 @@ template <
std::is_convertible<DataType*, CharT*>::value &&
std::is_same<std::decay_t<decltype(std::declval<T>().size(), *std::declval<T>().data())>,
DataType>::value>>
bool operator>(const T& one, gsl::basic_string_span<CharT, Extent> other) GSL_NOEXCEPT
bool operator>(const T& one, gsl::basic_string_span<CharT, Extent> other)
{
return other < one;
}
@@ -652,7 +660,7 @@ bool operator>(const T& one, gsl::basic_string_span<CharT, Extent> other) GSL_NO
template <typename CharT, std::ptrdiff_t Extent = gsl::dynamic_extent, typename T,
typename = std::enable_if_t<std::is_convertible<
T, gsl::basic_string_span<std::add_const_t<CharT>, Extent>>::value>>
bool operator>=(gsl::basic_string_span<CharT, Extent> one, const T& other) GSL_NOEXCEPT
bool operator>=(gsl::basic_string_span<CharT, Extent> one, const T& other)
{
return !(one < other);
}
@@ -662,7 +670,7 @@ template <
typename = std::enable_if_t<
std::is_convertible<T, gsl::basic_string_span<std::add_const_t<CharT>, Extent>>::value &&
!gsl::details::is_basic_string_span<T>::value>>
bool operator>=(const T& one, gsl::basic_string_span<CharT, Extent> other) GSL_NOEXCEPT
bool operator>=(const T& one, gsl::basic_string_span<CharT, Extent> other)
{
return !(one < other);
}
@@ -680,7 +688,7 @@ template <
std::is_convertible<DataType*, CharT*>::value &&
std::is_same<std::decay_t<decltype(std::declval<T>().size(), *std::declval<T>().data())>,
DataType>::value>>
bool operator>=(gsl::basic_string_span<CharT, Extent> one, const T& other) GSL_NOEXCEPT
bool operator>=(gsl::basic_string_span<CharT, Extent> one, const T& other)
{
return !(one < other);
}
@@ -693,16 +701,14 @@ template <
std::is_convertible<DataType*, CharT*>::value &&
std::is_same<std::decay_t<decltype(std::declval<T>().size(), *std::declval<T>().data())>,
DataType>::value>>
bool operator>=(const T& one, gsl::basic_string_span<CharT, Extent> other) GSL_NOEXCEPT
bool operator>=(const T& one, gsl::basic_string_span<CharT, Extent> other)
{
return !(one < other);
}
#endif
} // namespace GSL
} // namespace gsl
#undef GSL_NOEXCEPT
#ifdef _MSC_VER
#if defined(_MSC_VER) && !defined(__clang__)
#pragma warning(pop)
#if _MSC_VER < 1910
+68 -25
View File
@@ -1,4 +1,4 @@
cmake_minimum_required(VERSION 2.8.7)
cmake_minimum_required(VERSION 3.0.2)
project(GSLTests CXX)
@@ -26,16 +26,31 @@ else()
add_custom_target(catch)
endif()
if (MSVC AND (GSL_CXX_STANDARD EQUAL 17))
set(GSL_CPLUSPLUS_OPT -Zc:__cplusplus -permissive-)
endif()
# this interface adds compile options to how the tests are run
# please try to keep entries ordered =)
add_library(gsl_tests_config INTERFACE)
target_compile_options(gsl_tests_config INTERFACE
$<$<CXX_COMPILER_ID:MSVC>:
if(MSVC) # MSVC or simulating MSVC
target_compile_options(gsl_tests_config INTERFACE
${GSL_CPLUSPLUS_OPT}
/EHsc
/W4
/WX
>
$<$<NOT:$<CXX_COMPILER_ID:MSVC>>:
$<$<CXX_COMPILER_ID:Clang>:
-Weverything
-Wno-c++98-compat
-Wno-c++98-compat-pedantic
-Wno-missing-braces
-Wno-missing-prototypes
-Wno-unknown-attributes
$<$<EQUAL:${GSL_CXX_STANDARD},14>:-Wno-unused-member-function>
>
)
else()
target_compile_options(gsl_tests_config INTERFACE
-fno-strict-aliasing
-Wall
-Wcast-align
@@ -43,15 +58,25 @@ target_compile_options(gsl_tests_config INTERFACE
-Wctor-dtor-privacy
-Werror
-Wextra
-Wno-missing-braces
-Wnon-virtual-dtor
-Wold-style-cast
-Woverloaded-virtual
-Wpedantic
-Wshadow
-Wsign-conversion
>
)
$<$<OR:$<CXX_COMPILER_ID:Clang>,$<CXX_COMPILER_ID:AppleClang>>:
-Weverything
-Wno-c++98-compat
-Wno-c++98-compat-pedantic
-Wno-missing-braces
-Wno-missing-prototypes
-Wno-padded
-Wno-unknown-attributes
$<$<EQUAL:${GSL_CXX_STANDARD},14>:-Wno-unused-member-function>
-Wno-weak-vtables
>
$<$<CXX_COMPILER_ID:Clang>:
$<$<CXX_COMPILER_VERSION:5.0.2>:-Wno-undefined-func-template>
>
)
endif(MSVC)
# for tests to find the catch header
target_include_directories(gsl_tests_config INTERFACE
@@ -101,6 +126,7 @@ add_gsl_test(utils_tests)
add_gsl_test(owner_tests)
add_gsl_test(byte_tests)
add_gsl_test(algorithm_tests)
add_gsl_test(strict_notnull_tests)
# No exception tests
@@ -114,32 +140,49 @@ endforeach(flag_var)
# this interface adds compile options to how the tests are run
# please try to keep entries ordered =)
add_library(gsl_tests_config_noexcept INTERFACE)
target_compile_options(gsl_tests_config_noexcept INTERFACE
$<$<CXX_COMPILER_ID:MSVC>:
/D_HAS_EXCEPTIONS=0
/wd4702
/wd4577
if(MSVC) # MSVC or simulating MSVC
target_compile_definitions(gsl_tests_config_noexcept INTERFACE
_HAS_EXCEPTIONS=0
)
target_compile_options(gsl_tests_config_noexcept INTERFACE
${GSL_CPLUSPLUS_OPT}
/W4
/WX
>
$<$<NOT:$<CXX_COMPILER_ID:MSVC>>:
-fno-strict-aliasing
$<$<CXX_COMPILER_ID:MSVC>:
/wd4577
/wd4702
>
$<$<CXX_COMPILER_ID:Clang>:
-Weverything
-Wno-c++98-compat
-Wno-c++98-compat-pedantic
-Wno-missing-prototypes
-Wno-unknown-attributes
>
)
else()
target_compile_options(gsl_tests_config_noexcept INTERFACE
-fno-exceptions
-fno-strict-aliasing
-Wall
-Wcast-align
-Wconversion
-Wctor-dtor-privacy
-Werror
-Wextra
-Wno-missing-braces
-Wnon-virtual-dtor
-Wold-style-cast
-Woverloaded-virtual
-Wpedantic
-Wshadow
-Wsign-conversion
>
)
$<$<OR:$<CXX_COMPILER_ID:Clang>,$<CXX_COMPILER_ID:AppleClang>>:
-Weverything
-Wno-c++98-compat
-Wno-c++98-compat-pedantic
-Wno-missing-prototypes
-Wno-unknown-attributes
-Wno-weak-vtables
>
)
endif(MSVC)
# set definitions for tests
target_compile_definitions(gsl_tests_config_noexcept INTERFACE
+31 -20
View File
@@ -14,6 +14,12 @@
//
///////////////////////////////////////////////////////////////////////////////
#ifdef _MSC_VER
// blanket turn off warnings from CppCoreCheck from catch
// so people aren't annoyed by them when running the tool.
#pragma warning(disable : 26440 26426) // from catch
#endif
#include <catch/catch.hpp> // for AssertionHandler, StringRef, CHECK, CHE...
#include <gsl/gsl_algorithm> // for copy
@@ -29,6 +35,8 @@ struct fail_fast;
using namespace std;
using namespace gsl;
GSL_SUPPRESS(bounds.4) // NO-FORMAT: attribute
GSL_SUPPRESS(bounds.2) // NO-FORMAT: attribute
TEST_CASE("same_type")
{
// dynamic source and destination span
@@ -36,8 +44,8 @@ TEST_CASE("same_type")
std::array<int, 5> src{1, 2, 3, 4, 5};
std::array<int, 10> dst{};
span<int> src_span(src);
span<int> dst_span(dst);
const span<int> src_span(src);
const span<int> dst_span(dst);
copy(src_span, dst_span);
copy(src_span, dst_span.subspan(src_span.size()));
@@ -53,8 +61,8 @@ TEST_CASE("same_type")
std::array<int, 5> src{1, 2, 3, 4, 5};
std::array<int, 10> dst{};
span<int, 5> src_span(src);
span<int> dst_span(dst);
const span<int, 5> src_span(src);
const span<int> dst_span(dst);
copy(src_span, dst_span);
copy(src_span, dst_span.subspan(src_span.size()));
@@ -70,8 +78,8 @@ TEST_CASE("same_type")
std::array<int, 5> src{1, 2, 3, 4, 5};
std::array<int, 10> dst{};
span<int> src_span(src);
span<int, 10> dst_span(dst);
const span<int> src_span(src);
const span<int, 10> dst_span(dst);
copy(src_span, dst_span);
copy(src_span, dst_span.subspan(src_span.size()));
@@ -87,8 +95,8 @@ TEST_CASE("same_type")
std::array<int, 5> src{1, 2, 3, 4, 5};
std::array<int, 10> dst{};
span<int, 5> src_span(src);
span<int, 10> dst_span(dst);
const span<int, 5> src_span(src);
const span<int, 10> dst_span(dst);
copy(src_span, dst_span);
copy(src_span, dst_span.subspan(src_span.size()));
@@ -100,6 +108,9 @@ TEST_CASE("same_type")
}
}
GSL_SUPPRESS(bounds.4) // NO-FORMAT: attribute
GSL_SUPPRESS(bounds.2) // NO-FORMAT: attribute
TEST_CASE("compatible_type")
{
// dynamic source and destination span
@@ -107,8 +118,8 @@ TEST_CASE("compatible_type")
std::array<short, 5> src{1, 2, 3, 4, 5};
std::array<int, 10> dst{};
span<short> src_span(src);
span<int> dst_span(dst);
const span<short> src_span(src);
const span<int> dst_span(dst);
copy(src_span, dst_span);
copy(src_span, dst_span.subspan(src_span.size()));
@@ -124,8 +135,8 @@ TEST_CASE("compatible_type")
std::array<short, 5> src{1, 2, 3, 4, 5};
std::array<int, 10> dst{};
span<short, 5> src_span(src);
span<int> dst_span(dst);
const span<short, 5> src_span(src);
const span<int> dst_span(dst);
copy(src_span, dst_span);
copy(src_span, dst_span.subspan(src_span.size()));
@@ -141,8 +152,8 @@ TEST_CASE("compatible_type")
std::array<short, 5> src{1, 2, 3, 4, 5};
std::array<int, 10> dst{};
span<short> src_span(src);
span<int, 10> dst_span(dst);
const span<short> src_span(src);
const span<int, 10> dst_span(dst);
copy(src_span, dst_span);
copy(src_span, dst_span.subspan(src_span.size()));
@@ -158,8 +169,8 @@ TEST_CASE("compatible_type")
std::array<short, 5> src{1, 2, 3, 4, 5};
std::array<int, 10> dst{};
span<short, 5> src_span(src);
span<int, 10> dst_span(dst);
const span<short, 5> src_span(src);
const span<int, 10> dst_span(dst);
copy(src_span, dst_span);
copy(src_span, dst_span.subspan(src_span.size()));
@@ -195,10 +206,10 @@ TEST_CASE("small_destination_span")
std::array<int, 12> src{1, 2, 3, 4};
std::array<int, 4> dst{};
span<int> src_span_dyn(src);
span<int, 12> src_span_static(src);
span<int> dst_span_dyn(dst);
span<int, 4> dst_span_static(dst);
const span<int> src_span_dyn(src);
const span<int, 12> src_span_static(src);
const span<int> dst_span_dyn(dst);
const span<int, 4> dst_span_static(dst);
CHECK_THROWS_AS(copy(src_span_dyn, dst_span_dyn), fail_fast);
CHECK_THROWS_AS(copy(src_span_dyn, dst_span_static), fail_fast);
+6
View File
@@ -14,6 +14,12 @@
//
///////////////////////////////////////////////////////////////////////////////
#ifdef _MSC_VER
// blanket turn off warnings from CppCoreCheck from catch
// so people aren't annoyed by them when running the tool.
#pragma warning(disable : 26440 26426) // from catch
#endif
#include <catch/catch.hpp> // for AssertionHandler, StringRef, CHECK, CHECK...
#include <gsl/gsl_assert> // for fail_fast (ptr only), Ensures, Expects
+20 -1
View File
@@ -14,6 +14,12 @@
//
///////////////////////////////////////////////////////////////////////////////
#ifdef _MSC_VER
// blanket turn off warnings from CppCoreCheck from catch
// so people aren't annoyed by them when running the tool.
#pragma warning(disable : 26440 26426) // from catch
#endif
#include <catch/catch.hpp> // for AssertionHandler, StringRef, CHECK_THROW...
#include <gsl/gsl_util> // for at
@@ -23,12 +29,15 @@
#include <initializer_list> // for initializer_list
#include <vector> // for vector
namespace gsl {
struct fail_fast;
} // namespace gsl
using gsl::fail_fast;
GSL_SUPPRESS(bounds.4) // NO-FORMAT: attribute
GSL_SUPPRESS(bounds.2) // NO-FORMAT: attribute
TEST_CASE("static_array")
{
int a[4] = {1, 2, 3, 4};
@@ -45,6 +54,8 @@ TEST_CASE("static_array")
CHECK_THROWS_AS(gsl::at(c_a, 4), fail_fast);
}
GSL_SUPPRESS(bounds.4) // NO-FORMAT: attribute
GSL_SUPPRESS(bounds.2) // NO-FORMAT: attribute
TEST_CASE("std_array")
{
std::array<int, 4> a = {1, 2, 3, 4};
@@ -61,6 +72,8 @@ TEST_CASE("std_array")
CHECK_THROWS_AS(gsl::at(c_a, 4), fail_fast);
}
GSL_SUPPRESS(bounds.4) // NO-FORMAT: attribute
GSL_SUPPRESS(bounds.2) // NO-FORMAT: attribute
TEST_CASE("StdVector")
{
std::vector<int> a = {1, 2, 3, 4};
@@ -77,9 +90,11 @@ TEST_CASE("StdVector")
CHECK_THROWS_AS(gsl::at(c_a, 4), fail_fast);
}
GSL_SUPPRESS(bounds.4) // NO-FORMAT: attribute
GSL_SUPPRESS(bounds.2) // NO-FORMAT: attribute
TEST_CASE("InitializerList")
{
std::initializer_list<int> a = {1, 2, 3, 4};
const std::initializer_list<int> a = {1, 2, 3, 4};
for (int i = 0; i < 4; ++i) {
CHECK(gsl::at(a, i) == i + 1);
@@ -93,6 +108,9 @@ TEST_CASE("InitializerList")
}
#if !defined(_MSC_VER) || defined(__clang__) || _MSC_VER >= 1910
GSL_SUPPRESS(bounds.4) // NO-FORMAT: attribute
GSL_SUPPRESS(bounds.2) // NO-FORMAT: attribute
GSL_SUPPRESS(con.4) // NO-FORMAT: attribute
static constexpr bool test_constexpr()
{
int a1[4] = {1, 2, 3, 4};
@@ -114,3 +132,4 @@ static constexpr bool test_constexpr()
static_assert(test_constexpr(), "FAIL");
#endif
+26
View File
@@ -14,6 +14,18 @@
//
///////////////////////////////////////////////////////////////////////////////
#ifdef _MSC_VER
// blanket turn off warnings from CppCoreCheck from catch
// so people aren't annoyed by them when running the tool.
#pragma warning(disable : 26440 26426) // from catch
#pragma warning(disable : 4996) // use of function or classes marked [[deprecated]]
#endif
#if __clang__ || __GNUC__
#pragma GCC diagnostic push
#pragma GCC diagnostic ignored "-Wdeprecated-declarations"
#endif
#include <catch/catch.hpp> // for AssertionHandler, StringRef, TEST_CASE
#include <gsl/multi_span> // for static_bounds, static_bounds_dynamic_range_t
@@ -32,6 +44,7 @@ namespace
void use(std::ptrdiff_t&) {}
}
GSL_SUPPRESS(type.1) // NO-FORMAT: attribute
TEST_CASE("basic_bounds")
{
for (auto point : static_bounds<dynamic_range, 3, 4>{2}) {
@@ -44,6 +57,8 @@ TEST_CASE("basic_bounds")
}
}
GSL_SUPPRESS(f.4) // NO-FORMAT: attribute
GSL_SUPPRESS(con.4) // NO-FORMAT: attribute
TEST_CASE("bounds_basic")
{
static_bounds<3, 4, 5> b;
@@ -53,6 +68,8 @@ TEST_CASE("bounds_basic")
x.slice().slice();
}
GSL_SUPPRESS(f.4) // NO-FORMAT: attribute
GSL_SUPPRESS(con.4) // NO-FORMAT: attribute
TEST_CASE("arrayview_iterator")
{
static_bounds<4, dynamic_range, 2> bounds{3};
@@ -71,6 +88,7 @@ TEST_CASE("arrayview_iterator")
#endif
}
GSL_SUPPRESS(con.4) // NO-FORMAT: attribute
TEST_CASE("bounds_convertible")
{
static_bounds<7, 4, 2> b1;
@@ -97,3 +115,11 @@ TEST_CASE("bounds_convertible")
CHECK(b5 == b6);
CHECK(b5.size() == b6.size());
}
#ifdef CONFIRM_COMPILATION_ERRORS
copy(src_span_static, dst_span_static);
#endif
#if __clang__ || __GNUC__
#pragma GCC diagnostic pop
#endif
+18 -6
View File
@@ -14,6 +14,12 @@
//
///////////////////////////////////////////////////////////////////////////////
#ifdef _MSC_VER
// blanket turn off warnings from CppCoreCheck from catch
// so people aren't annoyed by them when running the tool.
#pragma warning(disable : 26440 26426) // from catch
#endif
#include <catch/catch.hpp> // for AssertionHandler, StringRef, CHECK, TEST_...
#include <gsl/gsl_byte> // for to_byte, to_integer, byte, operator&, ope...
@@ -23,7 +29,6 @@ using namespace gsl;
namespace
{
TEST_CASE("construction")
{
{
@@ -31,6 +36,7 @@ TEST_CASE("construction")
CHECK(static_cast<unsigned char>(b) == 4);
}
GSL_SUPPRESS(es.49)
{
const byte b = byte(12);
CHECK(static_cast<unsigned char>(b) == 12);
@@ -46,11 +52,12 @@ TEST_CASE("construction")
CHECK(static_cast<unsigned char>(b) == 12);
}
// waiting for C++17 enum class direct initializer support
//{
// byte b { 14 };
// CHECK(static_cast<unsigned char>(b) == 14);
//}
#if defined(__cplusplus) && (__cplusplus >= 201703L)
{
const byte b { 14 };
CHECK(static_cast<unsigned char>(b) == 14);
}
#endif
}
TEST_CASE("bitwise_operations")
@@ -114,6 +121,7 @@ int modify_both(gsl::byte & b, int& i)
return i;
}
GSL_SUPPRESS(type.1)
TEST_CASE("aliasing")
{
int i{0};
@@ -122,3 +130,7 @@ TEST_CASE("aliasing")
}
}
#ifdef CONFIRM_COMPILATION_ERRORS
copy(src_span_static, dst_span_static);
#endif
+168 -70
View File
@@ -14,6 +14,19 @@
//
///////////////////////////////////////////////////////////////////////////////
#ifdef _MSC_VER
// blanket turn off warnings from CppCoreCheck from catch
// so people aren't annoyed by them when running the tool.
#pragma warning(disable : 26440 26426) // from catch
#pragma warning(disable : 4996) // multi_span is in the process of being deprecated.
// Suppressing warnings until it is completely removed
#endif
#if __clang__ || __GNUC__
#pragma GCC diagnostic push
#pragma GCC diagnostic ignored "-Wdeprecated-declarations"
#endif
#include <catch/catch.hpp> // for AssertionHandler, StringRef, CHECK, CHECK...
#include <gsl/gsl_byte> // for byte
@@ -29,9 +42,10 @@
#include <string> // for string
#include <vector> // for vector
namespace gsl {
namespace gsl
{
struct fail_fast;
} // namespace gsl
} // namespace gsl
using namespace std;
using namespace gsl;
@@ -44,8 +58,9 @@ struct BaseClass
struct DerivedClass : BaseClass
{
};
}
} // namespace
GSL_SUPPRESS(con.4) // NO-FORMAT: attribute
TEST_CASE("default_constructor")
{
{
@@ -80,6 +95,7 @@ TEST_CASE("default_constructor")
}
}
GSL_SUPPRESS(con.4) // NO-FORMAT: attribute
TEST_CASE("from_nullptr_constructor")
{
{
@@ -122,8 +138,8 @@ TEST_CASE("from_nullptr_constructor")
}
}
TEST_CASE("from_nullptr_length_constructor")
{
GSL_SUPPRESS(con.4) // NO-FORMAT: attribute
TEST_CASE("from_nullptr_length_constructor") {
{
multi_span<int> s{nullptr, 0};
CHECK((s.length() == 0 && s.data() == nullptr));
@@ -141,25 +157,18 @@ TEST_CASE("from_nullptr_length_constructor")
}
{
#ifdef CONFIRM_COMPILATION_ERRORS
multi_span<int, 1> s{nullptr, 0};
CHECK((s.length() == 1 && s.data() == nullptr)); // explains why it can't compile
#endif
}
{
auto workaround_macro = []() { multi_span<int> s{nullptr, 1}; };
auto workaround_macro = []() { const multi_span<int> s{nullptr, 1}; };
CHECK_THROWS_AS(workaround_macro(), fail_fast);
auto const_workaround_macro = []() { multi_span<const int> cs{nullptr, 1}; };
auto const_workaround_macro = []() { const multi_span<const int> cs{nullptr, 1}; };
CHECK_THROWS_AS(const_workaround_macro(), fail_fast);
}
{
auto workaround_macro = []() { multi_span<int, 0> s{nullptr, 1}; };
auto workaround_macro = []() { const multi_span<int, 0> s{nullptr, 1}; };
CHECK_THROWS_AS(workaround_macro(), fail_fast);
auto const_workaround_macro = []() { multi_span<const int, 0> s{nullptr, 1}; };
auto const_workaround_macro = []() { const multi_span<const int, 0> s{nullptr, 1}; };
CHECK_THROWS_AS(const_workaround_macro(), fail_fast);
}
@@ -170,8 +179,16 @@ TEST_CASE("from_nullptr_length_constructor")
multi_span<const int*> cs{nullptr, 0};
CHECK((cs.length() == 0 && cs.data() == nullptr));
}
{
#ifdef CONFIRM_COMPILATION_ERRORS
multi_span<int, 1> s{nullptr, 0};
CHECK((s.length() == 1 && s.data() == nullptr)); // explains why it can't compile
#endif
}
}
GSL_SUPPRESS(con.4) // NO-FORMAT: attribute
TEST_CASE("from_element_constructor")
{
int i = 5;
@@ -222,6 +239,7 @@ TEST_CASE("from_element_constructor")
}
}
GSL_SUPPRESS(con.4) // NO-FORMAT: attribute
TEST_CASE("from_pointer_length_constructor")
{
int arr[4] = {1, 2, 3, 4};
@@ -246,11 +264,12 @@ TEST_CASE("from_pointer_length_constructor")
{
int* p = nullptr;
auto workaround_macro = [=]() { multi_span<int> s{p, 2}; };
auto workaround_macro = [=]() { const multi_span<int> s{p, 2}; };
CHECK_THROWS_AS(workaround_macro(), fail_fast);
}
}
GSL_SUPPRESS(con.4) // NO-FORMAT: attribute
TEST_CASE("from_pointer_pointer_constructor")
{
int arr[4] = {1, 2, 3, 4};
@@ -278,29 +297,31 @@ TEST_CASE("from_pointer_pointer_constructor")
}
{
auto workaround_macro = [&]() { multi_span<int> s{&arr[1], &arr[0]}; };
auto workaround_macro = [&]() { const multi_span<int> s{&arr[1], &arr[0]}; };
CHECK_THROWS_AS(workaround_macro(), fail_fast);
}
{
int* p = nullptr;
auto workaround_macro = [&]() { multi_span<int> s{&arr[0], p}; };
auto workaround_macro = [&]() { const multi_span<int> s{&arr[0], p}; };
CHECK_THROWS_AS(workaround_macro(), fail_fast);
}
{
int* p = nullptr;
auto workaround_macro = [&]() { multi_span<int> s{p, p}; };
auto workaround_macro = [&]() { const multi_span<int> s{p, p}; };
CHECK_THROWS_AS(workaround_macro(), fail_fast);
}
{
int* p = nullptr;
auto workaround_macro = [&]() { multi_span<int> s{&arr[0], p}; };
auto workaround_macro = [&]() { const multi_span<int> s{&arr[0], p}; };
CHECK_THROWS_AS(workaround_macro(), fail_fast);
}
}
GSL_SUPPRESS(con.4) // NO-FORMAT: attribute
GSL_SUPPRESS(bounds.3) // NO-FORMAT: attribute
TEST_CASE("from_array_constructor")
{
int arr[5] = {1, 2, 3, 4, 5};
@@ -425,6 +446,11 @@ TEST_CASE("from_array_constructor")
}
}
GSL_SUPPRESS(con.4) // NO-FORMAT: attribute
GSL_SUPPRESS(bounds.1) // NO-FORMAT: attribute
GSL_SUPPRESS(bounds.4) // NO-FORMAT: attribute
GSL_SUPPRESS(i.11) // NO-FORMAT: attribute
GSL_SUPPRESS(r.11) // NO-FORMAT: attribute
TEST_CASE("from_dynamic_array_constructor")
{
double(*arr)[3][4] = new double[100][3][4];
@@ -453,6 +479,7 @@ TEST_CASE("from_dynamic_array_constructor")
delete[] arr;
}
GSL_SUPPRESS(con.4) // NO-FORMAT: Attribute
TEST_CASE("from_std_array_constructor")
{
std::array<int, 4> arr = {1, 2, 3, 4};
@@ -512,6 +539,7 @@ TEST_CASE("from_std_array_constructor")
}
}
GSL_SUPPRESS(con.4) // NO-FORMAT: attribute
TEST_CASE("from_const_std_array_constructor")
{
const std::array<int, 4> arr = {1, 2, 3, 4};
@@ -559,6 +587,7 @@ TEST_CASE("from_const_std_array_constructor")
}
}
GSL_SUPPRESS(con.4) // NO-FORMAT: attribute
TEST_CASE("from_container_constructor")
{
std::vector<int> v = {1, 2, 3};
@@ -589,8 +618,7 @@ TEST_CASE("from_container_constructor")
multi_span<char> s{cstr};
#endif
multi_span<const char> cs{cstr};
CHECK((cs.size() == narrow_cast<std::ptrdiff_t>(cstr.size()) &&
cs.data() == cstr.data()));
CHECK((cs.size() == narrow_cast<std::ptrdiff_t>(cstr.size()) && cs.data() == cstr.data()));
}
{
@@ -633,6 +661,8 @@ TEST_CASE("from_container_constructor")
}
}
GSL_SUPPRESS(f.4) // NO-FORMAT: attribute
GSL_SUPPRESS(con.4) // NO-FORMAT: attribute
TEST_CASE("from_convertible_span_constructor")
{
#ifdef CONFIRM_COMPILATION_ERRORS
@@ -660,6 +690,7 @@ TEST_CASE("from_convertible_span_constructor")
(void) avcd;
}
GSL_SUPPRESS(con.4) // NO-FORMAT: attribute
TEST_CASE("copy_move_and_assignment")
{
multi_span<int> s1;
@@ -688,6 +719,8 @@ void fn(const Bounds&)
{
static_assert(Bounds::static_size == 60, "static bounds is wrong size");
}
GSL_SUPPRESS(con.4) // NO-FORMAT: attribute
TEST_CASE("as_multi_span_reshape")
{
int a[3][4][5];
@@ -706,11 +739,10 @@ TEST_CASE("as_multi_span_reshape")
auto av8 = as_multi_span<int>(av7);
CHECK(av8.size() == av6.size());
for (auto i = 0; i < av8.size(); i++) {
CHECK(av8[i] == 1);
}
for (auto i = 0; i < av8.size(); i++) { CHECK(av8[i] == 1); }
}
GSL_SUPPRESS(con.4) // NO-FORMAT: attribute
TEST_CASE("first")
{
int arr[5] = {1, 2, 3, 4, 5};
@@ -754,6 +786,7 @@ TEST_CASE("first")
}
}
GSL_SUPPRESS(con.4) // NO-FORMAT: attribute
TEST_CASE("last")
{
int arr[5] = {1, 2, 3, 4, 5};
@@ -796,6 +829,7 @@ TEST_CASE("last")
}
}
GSL_SUPPRESS(con.4) // NO-FORMAT: attribute
TEST_CASE("subspan")
{
int arr[5] = {1, 2, 3, 4, 5};
@@ -869,6 +903,7 @@ TEST_CASE("subspan")
}
}
GSL_SUPPRESS(con.4) // NO-FORMAT: attribute
TEST_CASE("rank")
{
int arr[2] = {1, 2};
@@ -890,6 +925,7 @@ TEST_CASE("rank")
}
}
GSL_SUPPRESS(con.4) // NO-FORMAT: attribute
TEST_CASE("extent")
{
{
@@ -962,6 +998,7 @@ TEST_CASE("operator_function_call")
}
}
GSL_SUPPRESS(con.4) // NO-FORMAT: attribute
TEST_CASE("comparison_operators")
{
{
@@ -1074,17 +1111,20 @@ TEST_CASE("comparison_operators")
}
}
GSL_SUPPRESS(con.4) // NO-FORMAT: attribute
GSL_SUPPRESS(i.11) // NO-FORMAT: attribute
GSL_SUPPRESS(r.11) // NO-FORMAT: attribute
TEST_CASE("basics")
{
auto ptr = as_multi_span(new int[10], 10);
fill(ptr.begin(), ptr.end(), 99);
for (int num : ptr) {
CHECK(num == 99);
}
for (int num : ptr) { CHECK(num == 99); }
delete[] ptr.data();
}
GSL_SUPPRESS(con.4) // NO-FORMAT: attribute
GSL_SUPPRESS(bounds.4) // NO-FORMAT: attribute
TEST_CASE("bounds_checks")
{
int arr[10][2];
@@ -1111,25 +1151,24 @@ TEST_CASE("bounds_checks")
void overloaded_func(multi_span<const int, dynamic_range, 3, 5> exp, int expected_value)
{
for (auto val : exp) {
CHECK(val == expected_value);
}
for (auto val : exp) { CHECK(val == expected_value); }
}
void overloaded_func(multi_span<const char, dynamic_range, 3, 5> exp, char expected_value)
{
for (auto val : exp) {
CHECK(val == expected_value);
}
for (auto val : exp) { CHECK(val == expected_value); }
}
void fixed_func(multi_span<int, 3, 3, 5> exp, int expected_value)
{
for (auto val : exp) {
CHECK(val == expected_value);
}
for (auto val : exp) { CHECK(val == expected_value); }
}
GSL_SUPPRESS(con.4) // NO-FORMAT: attribute
GSL_SUPPRESS(r.11) // NO-FORMAT: attribute
GSL_SUPPRESS(r.3) // NO-FORMAT: attribute
GSL_SUPPRESS(r.5) // NO-FORMAT: attribute
GSL_SUPPRESS(r.5) // NO-FORMAT: attribute
TEST_CASE("span_parameter_test")
{
auto data = new int[4][3][5];
@@ -1151,12 +1190,16 @@ TEST_CASE("span_parameter_test")
delete[] data;
}
GSL_SUPPRESS(con.4) // NO-FORMAT: attribute
GSL_SUPPRESS(bounds.4) // NO-FORMAT: attribute // false positive, checker does not recognize multi_span yet
GSL_SUPPRESS(r.11) // NO-FORMAT: attribute
GSL_SUPPRESS(r.3) // NO-FORMAT: attribute
TEST_CASE("md_access")
{
auto width = 5, height = 20;
auto imgSize = width * height;
auto image_ptr = new int[static_cast<std::size_t>(imgSize)][3];
auto image_ptr = new int[narrow_cast<std::size_t>(imgSize)][3];
// size check will be done
auto image_view =
@@ -1165,8 +1208,10 @@ TEST_CASE("md_access")
iota(image_view.begin(), image_view.end(), 1);
int expected = 0;
for (auto i = 0; i < height; i++) {
for (auto j = 0; j < width; j++) {
for (auto i = 0; i < height; i++)
{
for (auto j = 0; j < width; j++)
{
CHECK(expected + 1 == image_view[i][j][0]);
CHECK(expected + 2 == image_view[i][j][1]);
CHECK(expected + 3 == image_view[i][j][2]);
@@ -1181,8 +1226,15 @@ TEST_CASE("md_access")
expected += 3;
}
}
delete[] image_ptr;
}
GSL_SUPPRESS(con.4) // NO-FORMAT: attribute
GSL_SUPPRESS(bounds.3) // NO-FORMAT: attribute
GSL_SUPPRESS(i.11) // NO-FORMAT: attribute
GSL_SUPPRESS(r.11) // NO-FORMAT: attribute
GSL_SUPPRESS(r.3) // NO-FORMAT: attribute
TEST_CASE("as_multi_span")
{
{
@@ -1201,6 +1253,7 @@ TEST_CASE("as_multi_span")
string str = "ttttttttttttttt"; // size = 15
auto t = str.data();
GSL_SUPPRESS(type.4) // NO-FORMAT: attribute // TODO: false positive
(void) t;
auto av3 = as_multi_span(str);
overloaded_func(as_multi_span(av3, dim(1), dim<3>(), dim<5>()), 't');
@@ -1232,12 +1285,13 @@ TEST_CASE("as_multi_span")
auto dv = as_multi_span(vec);
(void) dv;
#ifdef CONFIRM_COMPILATION_ERRORS
#ifdef CONFIRM_COMPILATION_ERRORS
auto dv2 = as_multi_span(std::move(vec));
#endif
#endif
}
}
GSL_SUPPRESS(bounds.4) // NO-FORMAT: attribute
TEST_CASE("empty_spans")
{
{
@@ -1247,7 +1301,8 @@ TEST_CASE("empty_spans")
CHECK_THROWS_AS(empty_av[0], fail_fast);
CHECK_THROWS_AS(empty_av.begin()[0], fail_fast);
CHECK_THROWS_AS(empty_av.cbegin()[0], fail_fast);
for (auto& v : empty_av) {
for (auto& v : empty_av)
{
(void) v;
CHECK(false);
}
@@ -1259,17 +1314,25 @@ TEST_CASE("empty_spans")
CHECK_THROWS_AS(empty_av[0], fail_fast);
CHECK_THROWS_AS(empty_av.begin()[0], fail_fast);
CHECK_THROWS_AS(empty_av.cbegin()[0], fail_fast);
for (auto& v : empty_av) {
for (auto& v : empty_av)
{
(void) v;
CHECK(false);
}
}
}
GSL_SUPPRESS(con.4) // NO-FORMAT: attribute
GSL_SUPPRESS(bounds.1) // NO-FORMAT: attribute
GSL_SUPPRESS(bounds.4) // NO-FORMAT: attribute
GSL_SUPPRESS(r.3) // NO-FORMAT: attribute
GSL_SUPPRESS(r.5) // NO-FORMAT: attribute
GSL_SUPPRESS(r.11) // NO-FORMAT: attribute
TEST_CASE("index_constructor")
{
auto arr = new int[8];
for (int i = 0; i < 4; ++i) {
for (int i = 0; i < 4; ++i)
{
arr[2 * i] = 4 + i;
arr[2 * i + 1] = i;
}
@@ -1291,6 +1354,7 @@ TEST_CASE("index_constructor")
delete[] arr;
}
GSL_SUPPRESS(con.4) // NO-FORMAT: attribute
TEST_CASE("index_constructors")
{
{
@@ -1352,17 +1416,18 @@ TEST_CASE("index_constructors")
CHECK(i9[0] == 0);
}
#ifdef CONFIRM_COMPILATION_ERRORS
#ifdef CONFIRM_COMPILATION_ERRORS
{
multi_span_index<3> i1(0, 1);
multi_span_index<3> i2(0, 1, 2, 3);
multi_span_index<3> i3 = {0};
multi_span_index<3> i4 = {0, 1, 2, 3};
multi_span_index<1> i5 = {0, 1};
multi_span_index<3> i1(0, 1);
multi_span_index<3> i2(0, 1, 2, 3);
multi_span_index<3> i3 = {0};
multi_span_index<3> i4 = {0, 1, 2, 3};
multi_span_index<1> i5 = {0, 1};
}
#endif
#endif
}
GSL_SUPPRESS(con.4) // NO-FORMAT: attribute
TEST_CASE("index_operations")
{
ptrdiff_t a[3] = {0, 1, 2};
@@ -1418,6 +1483,8 @@ TEST_CASE("index_operations")
}
}
GSL_SUPPRESS(bounds.4) // NO-FORMAT: attribute
GSL_SUPPRESS(con.4) // NO-FORMAT: attribute
void iterate_second_column(multi_span<int, dynamic_range, dynamic_range> av)
{
auto length = av.size() / 2;
@@ -1426,33 +1493,33 @@ void iterate_second_column(multi_span<int, dynamic_range, dynamic_range> av)
auto section = av.section({0, 1}, {length, 1});
CHECK(section.size() == length);
for (auto i = 0; i < section.size(); ++i) {
CHECK(section[i][0] == av[i][1]);
}
for (auto i = 0; i < section.size(); ++i) { CHECK(section[i][0] == av[i][1]); }
for (auto i = 0; i < section.size(); ++i) {
for (auto i = 0; i < section.size(); ++i)
{
auto idx = multi_span_index<2>{i, 0}; // avoid braces inside the CHECK macro
CHECK(section[idx] == av[i][1]);
}
CHECK(section.bounds().index_bounds()[0] == length);
CHECK(section.bounds().index_bounds()[1] == 1);
for (auto i = 0; i < section.bounds().index_bounds()[0]; ++i) {
for (auto j = 0; j < section.bounds().index_bounds()[1]; ++j) {
for (auto i = 0; i < section.bounds().index_bounds()[0]; ++i)
{
for (auto j = 0; j < section.bounds().index_bounds()[1]; ++j)
{
auto idx = multi_span_index<2>{i, j}; // avoid braces inside the CHECK macro
CHECK(section[idx] == av[i][1]);
}
}
auto check_sum = 0;
for (auto i = 0; i < length; ++i) {
check_sum += av[i][1];
}
for (auto i = 0; i < length; ++i) { check_sum += av[i][1]; }
{
auto idx = 0;
auto sum = 0;
for (auto num : section) {
for (auto num : section)
{
CHECK(num == av[idx][1]);
sum += num;
idx++;
@@ -1463,7 +1530,8 @@ void iterate_second_column(multi_span<int, dynamic_range, dynamic_range> av)
{
auto idx = length - 1;
auto sum = 0;
for (auto iter = section.rbegin(); iter != section.rend(); ++iter) {
for (auto iter = section.rbegin(); iter != section.rend(); ++iter)
{
CHECK(*iter == av[idx][1]);
sum += *iter;
idx--;
@@ -1473,6 +1541,7 @@ void iterate_second_column(multi_span<int, dynamic_range, dynamic_range> av)
}
}
GSL_SUPPRESS(con.4) // NO-FORMAT: attribute
TEST_CASE("span_section_iteration")
{
int arr[4][2] = {{4, 0}, {5, 1}, {6, 2}, {7, 3}};
@@ -1499,15 +1568,18 @@ TEST_CASE("span_section_iteration")
}
}
GSL_SUPPRESS(con.4) // NO-FORMAT: attribute
GSL_SUPPRESS(bounds.1) // NO-FORMAT: attribute
GSL_SUPPRESS(r.3) // NO-FORMAT: attribute
GSL_SUPPRESS(r.5) // NO-FORMAT: attribute
GSL_SUPPRESS(r.11) // NO-FORMAT: attribute
TEST_CASE("dynamic_span_section_iteration")
{
auto height = 4, width = 2;
auto size = height * width;
auto arr = new int[static_cast<std::size_t>(size)];
for (auto i = 0; i < size; ++i) {
arr[i] = i;
}
auto arr = new int[narrow_cast<std::size_t>(size)];
for (auto i = 0; i < size; ++i) { arr[i] = i; }
auto av = as_multi_span(arr, size);
@@ -1531,6 +1603,10 @@ TEST_CASE("dynamic_span_section_iteration")
delete[] arr;
}
GSL_SUPPRESS(bounds.4) // NO-FORMAT: attribute
GSL_SUPPRESS(con.4) // NO-FORMAT: attribute
GSL_SUPPRESS(r.11) // NO-FORMAT: attribute
GSL_SUPPRESS(i.11) // NO-FORMAT: attribute
TEST_CASE("span_structure_size")
{
double(*arr)[3][4] = new double[100][3][4];
@@ -1548,8 +1624,11 @@ TEST_CASE("span_structure_size")
multi_span<const double, dynamic_range, 6, 4> av2 =
as_multi_span(av1, dim(5), dim<6>(), dim<4>());
(void) av2;
delete[] arr;
}
GSL_SUPPRESS(con.4) // NO-FORMAT: attribute
TEST_CASE("fixed_size_conversions")
{
int arr[] = {1, 2, 3, 4};
@@ -1631,7 +1710,7 @@ TEST_CASE("fixed_size_conversions")
#endif
{
auto f = [&]() {
multi_span<int, 4> av9 = {arr2, 2};
const multi_span<int, 4> av9 = {arr2, 2};
(void) av9;
};
CHECK_THROWS_AS(f(), fail_fast);
@@ -1640,12 +1719,13 @@ TEST_CASE("fixed_size_conversions")
// this should fail - we are trying to assign a small dynamic a_v to a fixed_size larger one
multi_span<int, dynamic_range> av = arr2;
auto f = [&]() {
multi_span<int, 4> av2 = av;
const multi_span<int, 4> av2 = av;
(void) av2;
};
CHECK_THROWS_AS(f(), fail_fast);
}
GSL_SUPPRESS(con.4) // NO-FORMAT: attribute
TEST_CASE("as_writeable_bytes")
{
int a[] = {1, 2, 3, 4};
@@ -1674,6 +1754,10 @@ TEST_CASE("as_writeable_bytes")
}
}
GSL_SUPPRESS(bounds.2) // NO-FORMAT: attribute
GSL_SUPPRESS(bounds.4) // NO-FORMAT: attribute
GSL_SUPPRESS(con.4) // NO-FORMAT: attribute
TEST_CASE("iterator")
{
int a[] = {1, 2, 3, 4};
@@ -1682,8 +1766,14 @@ TEST_CASE("iterator")
multi_span<int, dynamic_range> av = a;
auto wav = as_writeable_bytes(av);
for (auto& b : wav) {
#if defined(__cplusplus) && (__cplusplus >= 201703L)
b = byte{0};
#else
GSL_SUPPRESS(es.49)
b = byte(0);
#endif
}
for (std::size_t i = 0; i < 4; ++i) {
CHECK(a[i] == 0);
}
@@ -1699,3 +1789,11 @@ TEST_CASE("iterator")
}
}
}
#ifdef CONFIRM_COMPILATION_ERRORS
copy(src_span_static, dst_span_static);
#endif
#if __clang__ || __GNUC__
#pragma GCC diagnostic pop
#endif
+9 -14
View File
@@ -14,25 +14,21 @@
//
///////////////////////////////////////////////////////////////////////////////
#include <cstdlib> // for std::exit
#include <gsl/span> // for span
#include <cstdlib> // for std::exit
#include <gsl/span> // for span
int operator_subscript_no_throw()
int operator_subscript_no_throw() noexcept
{
int arr[10];
gsl::span<int> sp { arr };
int arr[10];
const gsl::span<int> sp{arr};
return sp[11];
}
[[noreturn]] void test_terminate() { std::exit(0); }
void test_terminate()
{
std::exit(0);
}
void setup_termination_handler()
void setup_termination_handler() noexcept
{
#if defined(_MSC_VER)
#if defined(GSL_MSVC_USE_STL_NOEXCEPTION_WORKAROUND)
auto& handler = gsl::details::get_terminate_handler();
handler = &test_terminate;
@@ -44,8 +40,7 @@ void setup_termination_handler()
#endif
}
int main()
int main() noexcept
{
setup_termination_handler();
operator_subscript_no_throw();
+8 -11
View File
@@ -14,23 +14,21 @@
//
///////////////////////////////////////////////////////////////////////////////
#include <cstdlib> // for std::exit
#include <gsl/gsl_util> // for narrow
#include <cstdlib> // for std::exit
#include <gsl/gsl_assert> // for get_terminate
#include <gsl/gsl_util> // for narrow
int narrow_no_throw()
{
long long bigNumber = 0x0fffffffffffffff;
return gsl::narrow<int>(bigNumber);
const long long bigNumber = 0x0fffffffffffffff;
return gsl::narrow<int>(bigNumber);
}
void test_terminate()
{
std::exit(0);
}
[[noreturn]] void test_terminate() { std::exit(0); }
void setup_termination_handler()
void setup_termination_handler() noexcept
{
#if defined(_MSC_VER)
#if defined(GSL_MSVC_USE_STL_NOEXCEPTION_WORKAROUND)
auto& handler = gsl::details::get_terminate_handler();
handler = &test_terminate;
@@ -42,7 +40,6 @@ void setup_termination_handler()
#endif
}
int main()
{
setup_termination_handler();
+241 -36
View File
@@ -14,6 +14,15 @@
//
///////////////////////////////////////////////////////////////////////////////
#ifdef _MSC_VER
// blanket turn off warnings from CppCoreCheck from catch
// so people aren't annoyed by them when running the tool.
#pragma warning(disable : 26440 26426) // from catch
// Fix VS2015 build breaks in Release
#pragma warning(disable : 4702) // unreachable code
#endif
#include <catch/catch.hpp> // for AssertionHandler, StringRef, CHECK, TEST_...
#include <gsl/pointers> // for not_null, operator<, operator<=, operator>
@@ -25,9 +34,10 @@
#include <string> // for basic_string, operator==, string, operator<<
#include <typeinfo> // for type_info
namespace gsl {
namespace gsl
{
struct fail_fast;
} // namespace gsl
} // namespace gsl
using namespace gsl;
@@ -63,6 +73,7 @@ struct CustomPtr
template <typename T, typename U>
std::string operator==(CustomPtr<T> const& lhs, CustomPtr<U> const& rhs)
{
GSL_SUPPRESS(type.1) // NO-FORMAT: attribute
return reinterpret_cast<const void*>(lhs.p_) == reinterpret_cast<const void*>(rhs.p_) ? "true"
: "false";
}
@@ -70,6 +81,7 @@ std::string operator==(CustomPtr<T> const& lhs, CustomPtr<U> const& rhs)
template <typename T, typename U>
std::string operator!=(CustomPtr<T> const& lhs, CustomPtr<U> const& rhs)
{
GSL_SUPPRESS(type.1) // NO-FORMAT: attribute
return reinterpret_cast<const void*>(lhs.p_) != reinterpret_cast<const void*>(rhs.p_) ? "true"
: "false";
}
@@ -77,6 +89,7 @@ std::string operator!=(CustomPtr<T> const& lhs, CustomPtr<U> const& rhs)
template <typename T, typename U>
std::string operator<(CustomPtr<T> const& lhs, CustomPtr<U> const& rhs)
{
GSL_SUPPRESS(type.1) // NO-FORMAT: attribute
return reinterpret_cast<const void*>(lhs.p_) < reinterpret_cast<const void*>(rhs.p_) ? "true"
: "false";
}
@@ -84,6 +97,7 @@ std::string operator<(CustomPtr<T> const& lhs, CustomPtr<U> const& rhs)
template <typename T, typename U>
std::string operator>(CustomPtr<T> const& lhs, CustomPtr<U> const& rhs)
{
GSL_SUPPRESS(type.1) // NO-FORMAT: attribute
return reinterpret_cast<const void*>(lhs.p_) > reinterpret_cast<const void*>(rhs.p_) ? "true"
: "false";
}
@@ -91,6 +105,7 @@ std::string operator>(CustomPtr<T> const& lhs, CustomPtr<U> const& rhs)
template <typename T, typename U>
std::string operator<=(CustomPtr<T> const& lhs, CustomPtr<U> const& rhs)
{
GSL_SUPPRESS(type.1) // NO-FORMAT: attribute
return reinterpret_cast<const void*>(lhs.p_) <= reinterpret_cast<const void*>(rhs.p_) ? "true"
: "false";
}
@@ -98,6 +113,7 @@ std::string operator<=(CustomPtr<T> const& lhs, CustomPtr<U> const& rhs)
template <typename T, typename U>
std::string operator>=(CustomPtr<T> const& lhs, CustomPtr<U> const& rhs)
{
GSL_SUPPRESS(type.1) // NO-FORMAT: attribute
return reinterpret_cast<const void*>(lhs.p_) >= reinterpret_cast<const void*>(rhs.p_) ? "true"
: "false";
}
@@ -111,45 +127,115 @@ struct NonCopyableNonMovable
NonCopyableNonMovable& operator=(NonCopyableNonMovable&&) = delete;
};
GSL_SUPPRESS(f.4) // NO-FORMAT: attribute
bool helper(not_null<int*> p) { return *p == 12; }
GSL_SUPPRESS(f.4) // NO-FORMAT: attribute
bool helper_const(not_null<const int*> p) { return *p == 12; }
int* return_pointer() { return nullptr; }
const int* return_pointer_const() { return nullptr; }
GSL_SUPPRESS(con.4) // NO-FORMAT: attribute
TEST_CASE("TestNotNullConstructors")
{
{
#ifdef CONFIRM_COMPILATION_ERRORS
not_null<int*> p = nullptr; // yay...does not compile!
not_null<std::vector<char>*> p = 0; // yay...does not compile!
not_null<int*> p; // yay...does not compile!
std::unique_ptr<int> up = std::make_unique<int>(120);
not_null<int*> p = up;
not_null<int*> p = nullptr; // yay...does not compile!
not_null<std::vector<char>*> p1 = 0; // yay...does not compile!
not_null<int*> p2; // yay...does not compile!
std::unique_ptr<int> up = std::make_unique<int>(120);
not_null<int*> p3 = up;
// Forbid non-nullptr assignable types
not_null<std::vector<int>> f(std::vector<int>{1});
not_null<int> z(10);
not_null<std::vector<int>> y({1, 2});
// Forbid non-nullptr assignable types
not_null<std::vector<int>> f(std::vector<int>{1});
not_null<int> z(10);
not_null<std::vector<int>> y({1, 2});
#endif
int i = 12;
auto rp = RefCounted<int>(&i);
not_null<int*> p(rp);
CHECK(p.get() == &i);
}
not_null<std::shared_ptr<int>> x(
std::make_shared<int>(10)); // shared_ptr<int> is nullptr assignable
{
// from shared pointer
int i = 12;
auto rp = RefCounted<int>(&i);
not_null<int*> p(rp);
CHECK(p.get() == &i);
#ifdef GSL_THROW_ON_CONTRACT_VIOLATION
int* pi = nullptr;
CHECK_THROWS_AS(not_null<decltype(pi)>(pi), fail_fast);
#endif
not_null<std::shared_ptr<int>> x(
std::make_shared<int>(10)); // shared_ptr<int> is nullptr assignable
int* pi = nullptr;
CHECK_THROWS_AS(not_null<decltype(pi)>(pi), fail_fast);
}
{
// from pointer to local
int t = 42;
not_null<int*> x = &t;
helper(&t);
helper_const(&t);
CHECK(*x == 42);
}
{
// from raw pointer
// from not_null pointer
int t = 42;
int* p = &t;
not_null<int*> x = p;
helper(p);
helper_const(p);
helper(x);
helper_const(x);
CHECK(*x == 42);
}
{
// from raw const pointer
// from not_null const pointer
int t = 42;
const int* cp = &t;
not_null<const int*> x = cp;
helper_const(cp);
helper_const(x);
CHECK(*x == 42);
}
{
// from not_null const pointer, using auto
int t = 42;
const int* cp = &t;
auto x = not_null<const int*>{cp};
CHECK(*x == 42);
}
{
// from returned pointer
CHECK_THROWS_AS(helper(return_pointer()), fail_fast);
CHECK_THROWS_AS(helper_const(return_pointer()), fail_fast);
}
}
template<typename T>
template <typename T>
GSL_SUPPRESS(con.4) // NO-FORMAT: attribute
void ostream_helper(T v)
{
not_null<T*> p(&v);
{
std::ostringstream os;
std::ostringstream ref;
os << p;
ref << &v;
os << static_cast<void*>(p);
ref << static_cast<void*>(&v);
CHECK(os.str() == ref.str());
}
{
@@ -165,23 +251,24 @@ TEST_CASE("TestNotNullostream")
{
ostream_helper<int>(17);
ostream_helper<float>(21.5f);
ostream_helper<double>(3.4566e-7f);
ostream_helper<double>(3.4566e-7);
ostream_helper<char>('c');
ostream_helper<uint16_t>(0x0123u);
ostream_helper<const char*>("cstring");
ostream_helper<std::string>("string");
}
GSL_SUPPRESS(type.1) // NO-FORMAT: attribute
GSL_SUPPRESS(con.4) // NO-FORMAT: attribute
TEST_CASE("TestNotNullCasting")
{
MyBase base;
MyDerived derived;
Unrelated unrelated;
not_null<Unrelated*> u = &unrelated;
not_null<Unrelated*> u{&unrelated};
(void) u;
not_null<MyDerived*> p = &derived;
not_null<MyBase*> q = &base;
not_null<MyDerived*> p{&derived};
not_null<MyBase*> q(&base);
q = p; // allowed with heterogeneous copy ctor
CHECK(q == p);
@@ -192,18 +279,18 @@ TEST_CASE("TestNotNullCasting")
not_null<Unrelated*> r = p;
not_null<Unrelated*> s = reinterpret_cast<Unrelated*>(p);
#endif
not_null<Unrelated*> t = reinterpret_cast<Unrelated*>(p.get());
not_null<Unrelated*> t(reinterpret_cast<Unrelated*>(p.get()));
CHECK(reinterpret_cast<void*>(p.get()) == reinterpret_cast<void*>(t.get()));
}
TEST_CASE("TestNotNullAssignment")
{
int i = 12;
not_null<int*> p = &i;
not_null<int*> p(&i);
CHECK(helper(p));
int* q = nullptr;
CHECK_THROWS_AS(p = q, fail_fast);
CHECK_THROWS_AS(p = not_null<int*>(q), fail_fast);
}
TEST_CASE("TestNotNullRawPointerComparison")
@@ -232,21 +319,21 @@ TEST_CASE("TestNotNullRawPointerComparison")
CHECK((NotNull1(p1) <= NotNull1(p1)) == true);
CHECK((NotNull1(p1) <= NotNull2(p2)) == (p1 <= p2));
CHECK((NotNull2(p2) <= NotNull1(p1)) == (p2 <= p1));
}
GSL_SUPPRESS(con.4) // NO-FORMAT: attribute
TEST_CASE("TestNotNullDereferenceOperator")
{
{
auto sp1 = std::make_shared<NonCopyableNonMovable>();
using NotNullSp1 = not_null<decltype(sp1)>;
CHECK(typeid(*sp1) == typeid(*NotNullSp1(sp1)));
CHECK(typeid(*sp1) == typeid(*NotNullSp1(sp1)));
CHECK(std::addressof(*NotNullSp1(sp1)) == std::addressof(*sp1));
}
{
int ints[1] = { 42 };
int ints[1] = {42};
CustomPtr<int> p1(&ints[0]);
using NotNull1 = not_null<decltype(p1)>;
@@ -296,6 +383,7 @@ TEST_CASE("TestNotNullSharedPtrComparison")
CHECK((NotNullSp2(sp2) >= NotNullSp1(sp1)) == (sp2 >= sp1));
}
GSL_SUPPRESS(con.4) // NO-FORMAT: attribute
TEST_CASE("TestNotNullCustomPtrComparison")
{
int ints[2] = {42, 43};
@@ -328,4 +416,121 @@ TEST_CASE("TestNotNullCustomPtrComparison")
CHECK((NotNull2(p2) >= NotNull1(p1)) == (p2 >= p1));
}
static_assert(std::is_nothrow_move_constructible<not_null<void *>>::value, "not_null must be no-throw move constructible");
#if defined(__cplusplus) && (__cplusplus >= 201703L)
GSL_SUPPRESS(con.4) // NO-FORMAT: attribute
TEST_CASE("TestNotNullConstructorTypeDeduction")
{
{
int i = 42;
not_null x{&i};
helper(not_null{&i});
helper_const(not_null{&i});
CHECK(*x == 42);
}
{
int i = 42;
int* p = &i;
not_null x{p};
helper(not_null{p});
helper_const(not_null{p});
CHECK(*x == 42);
}
{
auto workaround_macro = []() {
int* p1 = nullptr;
const not_null x{p1};
};
CHECK_THROWS_AS(workaround_macro(), fail_fast);
}
{
auto workaround_macro = []() {
const int* p1 = nullptr;
const not_null x{p1};
};
CHECK_THROWS_AS(workaround_macro(), fail_fast);
}
{
int* p = nullptr;
CHECK_THROWS_AS(helper(not_null{p}), fail_fast);
CHECK_THROWS_AS(helper_const(not_null{p}), fail_fast);
}
#ifdef CONFIRM_COMPILATION_ERRORS
{
not_null x{nullptr};
helper(not_null{nullptr});
helper_const(not_null{nullptr});
}
#endif
}
#endif // #if defined(__cplusplus) && (__cplusplus >= 201703L)
TEST_CASE("TestMakeNotNull")
{
{
int i = 42;
const auto x = make_not_null(&i);
helper(make_not_null(&i));
helper_const(make_not_null(&i));
CHECK(*x == 42);
}
{
int i = 42;
int* p = &i;
const auto x = make_not_null(p);
helper(make_not_null(p));
helper_const(make_not_null(p));
CHECK(*x == 42);
}
{
const auto workaround_macro = []() {
int* p1 = nullptr;
const auto x = make_not_null(p1);
CHECK(*x == 42);
};
CHECK_THROWS_AS(workaround_macro(), fail_fast);
}
{
const auto workaround_macro = []() {
const int* p1 = nullptr;
const auto x = make_not_null(p1);
CHECK(*x == 42);
};
CHECK_THROWS_AS(workaround_macro(), fail_fast);
}
{
int* p = nullptr;
CHECK_THROWS_AS(helper(make_not_null(p)), fail_fast);
CHECK_THROWS_AS(helper_const(make_not_null(p)), fail_fast);
}
#ifdef CONFIRM_COMPILATION_ERRORS
{
CHECK_THROWS_AS(make_not_null(nullptr), fail_fast);
CHECK_THROWS_AS(helper(make_not_null(nullptr)), fail_fast);
CHECK_THROWS_AS(helper_const(make_not_null(nullptr)), fail_fast);
}
#endif
}
static_assert(std::is_nothrow_move_constructible<not_null<void*>>::value,
"not_null must be no-throw move constructible");
+11
View File
@@ -14,14 +14,25 @@
//
///////////////////////////////////////////////////////////////////////////////
#ifdef _MSC_VER
// blanket turn off warnings from CppCoreCheck from catch
// so people aren't annoyed by them when running the tool.
#pragma warning(disable : 26440 26426) // from catch
#endif
#include <catch/catch.hpp> // for AssertionHandler, StringRef, CHECK, TEST_...
#include <gsl/pointers> // for owner
using namespace gsl;
GSL_SUPPRESS(f.23) // NO-FORMAT: attribute
void f(int* i) { *i += 1; }
GSL_SUPPRESS(r.11) // NO-FORMAT: attribute
GSL_SUPPRESS(r.3) // NO-FORMAT: attribute // TODO: false positive
GSL_SUPPRESS(r.5) // NO-FORMAT: attribute
TEST_CASE("basic_test")
{
owner<int*> p = new int(120);
+134 -34
View File
@@ -14,6 +14,13 @@
//
///////////////////////////////////////////////////////////////////////////////
#ifdef _MSC_VER
// blanket turn off warnings from CppCoreCheck from catch
// so people aren't annoyed by them when running the tool.
#pragma warning(disable : 26440 26426 26497) // from catch
#endif
#include <catch/catch.hpp> // for AssertionHandler, StringRef, CHECK, TEST_...
#include <gsl/gsl_byte> // for byte
@@ -30,9 +37,10 @@
#include <type_traits> // for integral_constant<>::value, is_default_co...
#include <vector> // for vector
namespace gsl {
namespace gsl
{
struct fail_fast;
} // namespace gsl
} // namespace gsl
using namespace std;
using namespace gsl;
@@ -45,8 +53,16 @@ struct BaseClass
struct DerivedClass : BaseClass
{
};
}
struct AddressOverloaded
{
#if (__cplusplus > 201402L)
[[maybe_unused]]
#endif
AddressOverloaded operator&() const { return {}; }
};
} // namespace
GSL_SUPPRESS(con.4) // NO-FORMAT: attribute
TEST_CASE("default_constructor")
{
{
@@ -81,6 +97,7 @@ TEST_CASE("default_constructor")
}
}
GSL_SUPPRESS(con.4) // NO-FORMAT: attribute
TEST_CASE("size_optimization")
{
{
@@ -94,56 +111,60 @@ TEST_CASE("size_optimization")
}
}
GSL_SUPPRESS(con.4) // NO-FORMAT: attribute
TEST_CASE("from_nullptr_size_constructor")
{
{
span<int> s{nullptr, static_cast<span<int>::index_type>(0)};
span<int> s{nullptr, narrow_cast<span<int>::index_type>(0)};
CHECK((s.size() == 0 && s.data() == nullptr));
span<const int> cs{nullptr, static_cast<span<int>::index_type>(0)};
span<const int> cs{nullptr, narrow_cast<span<int>::index_type>(0)};
CHECK((cs.size() == 0 && cs.data() == nullptr));
}
{
span<int, 0> s{nullptr, static_cast<span<int>::index_type>(0)};
span<int, 0> s{nullptr, narrow_cast<span<int>::index_type>(0)};
CHECK((s.size() == 0 && s.data() == nullptr));
span<const int, 0> cs{nullptr, static_cast<span<int>::index_type>(0)};
span<const int, 0> cs{nullptr, narrow_cast<span<int>::index_type>(0)};
CHECK((cs.size() == 0 && cs.data() == nullptr));
}
{
auto workaround_macro = []() {
span<int, 1> s{nullptr, static_cast<span<int>::index_type>(0)};
const span<int, 1> s{nullptr, narrow_cast<span<int>::index_type>(0)};
};
CHECK_THROWS_AS(workaround_macro(), fail_fast);
}
{
auto workaround_macro = []() { span<int> s{nullptr, 1}; };
auto workaround_macro = []() { const span<int> s{nullptr, 1}; };
CHECK_THROWS_AS(workaround_macro(), fail_fast);
auto const_workaround_macro = []() { span<const int> cs{nullptr, 1}; };
auto const_workaround_macro = []() { const span<const int> cs{nullptr, 1}; };
CHECK_THROWS_AS(const_workaround_macro(), fail_fast);
}
{
auto workaround_macro = []() { span<int, 0> s{nullptr, 1}; };
auto workaround_macro = []() { const span<int, 0> s{nullptr, 1}; };
CHECK_THROWS_AS(workaround_macro(), fail_fast);
auto const_workaround_macro = []() { span<const int, 0> s{nullptr, 1}; };
auto const_workaround_macro = []() { const span<const int, 0> s{nullptr, 1}; };
CHECK_THROWS_AS(const_workaround_macro(), fail_fast);
}
{
span<int*> s{nullptr, static_cast<span<int>::index_type>(0)};
span<int*> s{nullptr, narrow_cast<span<int>::index_type>(0)};
CHECK((s.size() == 0 && s.data() == nullptr));
span<const int*> cs{nullptr, static_cast<span<int>::index_type>(0)};
span<const int*> cs{nullptr, narrow_cast<span<int>::index_type>(0)};
CHECK((cs.size() == 0 && cs.data() == nullptr));
}
}
GSL_SUPPRESS(con.4) // NO-FORMAT: attribute
GSL_SUPPRESS(bounds.4) // NO-FORMAT: attribute
GSL_SUPPRESS(bounds.2) // NO-FORMAT: attribute
TEST_CASE("from_pointer_length_constructor")
{
int arr[4] = {1, 2, 3, 4};
@@ -164,7 +185,7 @@ TEST_CASE("from_pointer_length_constructor")
}
}
{
span<int> s = { &arr[i], 4-i };
span<int> s = { &arr[i], 4-narrow_cast<ptrdiff_t>(i) };
CHECK(s.size() == 4-i);
CHECK(s.data() == &arr[i]);
CHECK(s.empty() == (4-i == 0));
@@ -186,13 +207,13 @@ TEST_CASE("from_pointer_length_constructor")
{
int* p = nullptr;
span<int> s{p, static_cast<span<int>::index_type>(0)};
span<int> s{p, narrow_cast<span<int>::index_type>(0)};
CHECK((s.size() == 0 && s.data() == nullptr));
}
{
int* p = nullptr;
auto workaround_macro = [=]() { span<int> s{p, 2}; };
auto workaround_macro = [=]() { const span<int> s{p, 2}; };
CHECK_THROWS_AS(workaround_macro(), fail_fast);
}
@@ -204,7 +225,7 @@ TEST_CASE("from_pointer_length_constructor")
{
int* p = nullptr;
auto s = make_span(p, static_cast<span<int>::index_type>(0));
auto s = make_span(p, narrow_cast<span<int>::index_type>(0));
CHECK((s.size() == 0 && s.data() == nullptr));
}
@@ -215,6 +236,8 @@ TEST_CASE("from_pointer_length_constructor")
}
}
GSL_SUPPRESS(con.4) // NO-FORMAT: attribute
TEST_CASE("from_pointer_pointer_constructor")
{
int arr[4] = {1, 2, 3, 4};
@@ -296,12 +319,12 @@ TEST_CASE("from_array_constructor")
int arr[5] = {1, 2, 3, 4, 5};
{
span<int> s{arr};
const span<int> s{arr};
CHECK((s.size() == 5 && s.data() == &arr[0]));
}
{
span<int, 5> s{arr};
const span<int, 5> s{arr};
CHECK((s.size() == 5 && s.data() == &arr[0]));
}
@@ -333,8 +356,8 @@ TEST_CASE("from_array_constructor")
}
#endif
{
span<int[3]> s{&(arr2d[0]), 1};
CHECK((s.size() == 1 && s.data() == &arr2d[0]));
const span<int[3]> s{std::addressof(arr2d[0]), 1};
CHECK((s.size() == 1 && s.data() == std::addressof(arr2d[0])));
}
int arr3d[2][3][2] = {1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12};
@@ -362,26 +385,38 @@ TEST_CASE("from_array_constructor")
}
#endif
{
span<int[3][2]> s{&arr3d[0], 1};
CHECK((s.size() == 1 && s.data() == &arr3d[0]));
const span<int[3][2]> s{std::addressof(arr3d[0]), 1};
CHECK((s.size() == 1 && s.data() == std::addressof(arr3d[0])));
}
{
auto s = make_span(arr);
CHECK((s.size() == 5 && s.data() == &arr[0]));
const auto s = make_span(arr);
CHECK((s.size() == 5 && s.data() == std::addressof(arr[0])));
}
{
auto s = make_span(&(arr2d[0]), 1);
CHECK((s.size() == 1 && s.data() == &arr2d[0]));
const auto s = make_span(std::addressof(arr2d[0]), 1);
CHECK((s.size() == 1 && s.data() == std::addressof(arr2d[0])));
}
{
auto s = make_span(&arr3d[0], 1);
CHECK((s.size() == 1 && s.data() == &arr3d[0]));
const auto s = make_span(std::addressof(arr3d[0]), 1);
CHECK((s.size() == 1 && s.data() == std::addressof(arr3d[0])));
}
AddressOverloaded ao_arr[5] = {};
{
const span<AddressOverloaded, 5> s{ao_arr};
CHECK((s.size() == 5 && s.data() == std::addressof(ao_arr[0])));
}
}
GSL_SUPPRESS(con.4) // NO-FORMAT: attribute
GSL_SUPPRESS(r.11) // NO-FORMAT: attribute
GSL_SUPPRESS(i.11) // NO-FORMAT: attribute
GSL_SUPPRESS(bounds.1) // NO-FORMAT: attribute
TEST_CASE("from_dynamic_array_constructor")
{
double(*arr)[3][4] = new double[100][3][4];
@@ -399,6 +434,8 @@ TEST_CASE("from_dynamic_array_constructor")
delete[] arr;
}
GSL_SUPPRESS(con.4) // NO-FORMAT: attribute
TEST_CASE("from_std_array_constructor")
{
std::array<int, 4> arr = {1, 2, 3, 4};
@@ -419,6 +456,19 @@ TEST_CASE("from_std_array_constructor")
CHECK((cs.size() == narrow_cast<ptrdiff_t>(arr.size()) && cs.data() == arr.data()));
}
{
std::array<int, 0> empty_arr{};
span<int> s{empty_arr};
CHECK((s.size() == 0 && s.empty()));
}
std::array<AddressOverloaded, 4> ao_arr{};
{
span<AddressOverloaded, 4> fs{ao_arr};
CHECK((fs.size() == narrow_cast<ptrdiff_t>(ao_arr.size()) && ao_arr.data() == fs.data()));
}
#ifdef CONFIRM_COMPILATION_ERRORS
{
span<int, 2> s{arr};
@@ -459,8 +509,27 @@ TEST_CASE("from_std_array_constructor")
auto s = make_span(arr);
CHECK((s.size() == narrow_cast<ptrdiff_t>(arr.size()) && s.data() == arr.data()));
}
// This test checks for the bug found in gcc 6.1, 6.2, 6.3, 6.4, 6.5 7.1, 7.2, 7.3 - issue #590
{
span<int> s1 = make_span(arr);
static span<int> s2;
s2 = s1;
#if defined(__GNUC__) && __GNUC__ == 6 && (__GNUC_MINOR__ == 4 || __GNUC_MINOR__ == 5) && \
__GNUC_PATCHLEVEL__ == 0 && defined(__OPTIMIZE__)
// Known to be broken in gcc 6.4 and 6.5 with optimizations
// Issue in gcc: https://gcc.gnu.org/bugzilla/show_bug.cgi?id=83116
CHECK(s1.size() == 4);
CHECK(s2.size() == 0);
#else
CHECK(s1.size() == s2.size());
#endif
}
}
GSL_SUPPRESS(con.4) // NO-FORMAT: attribute
TEST_CASE("from_const_std_array_constructor")
{
const std::array<int, 4> arr = {1, 2, 3, 4};
@@ -475,6 +544,13 @@ TEST_CASE("from_const_std_array_constructor")
CHECK((s.size() == narrow_cast<ptrdiff_t>(arr.size()) && s.data() == arr.data()));
}
const std::array<AddressOverloaded, 4> ao_arr{};
{
span<const AddressOverloaded, 4> s{ao_arr};
CHECK((s.size() == narrow_cast<ptrdiff_t>(ao_arr.size()) && s.data() == ao_arr.data()));
}
#ifdef CONFIRM_COMPILATION_ERRORS
{
span<const int, 2> s{arr};
@@ -504,6 +580,7 @@ TEST_CASE("from_const_std_array_constructor")
}
}
GSL_SUPPRESS(con.4) // NO-FORMAT: attribute
TEST_CASE("from_std_array_const_constructor")
{
std::array<const int, 4> arr = {1, 2, 3, 4};
@@ -544,6 +621,7 @@ TEST_CASE("from_std_array_const_constructor")
}
}
GSL_SUPPRESS(con.4) // NO-FORMAT: attribute
TEST_CASE("from_container_constructor")
{
std::vector<int> v = {1, 2, 3};
@@ -636,6 +714,7 @@ TEST_CASE("from_container_constructor")
}
}
GSL_SUPPRESS(con.4) // NO-FORMAT: attribute
TEST_CASE("from_convertible_span_constructor")
{
{
@@ -673,6 +752,7 @@ TEST_CASE("from_convertible_span_constructor")
#endif
}
GSL_SUPPRESS(con.4) // NO-FORMAT: attribute
TEST_CASE("copy_move_and_assignment")
{
span<int> s1;
@@ -694,6 +774,7 @@ TEST_CASE("copy_move_and_assignment")
CHECK((s1.size() == 2 && s1.data() == &arr[1]));
}
GSL_SUPPRESS(con.4) // NO-FORMAT: attribute
TEST_CASE("first")
{
int arr[5] = {1, 2, 3, 4, 5};
@@ -732,6 +813,7 @@ TEST_CASE("first")
}
}
GSL_SUPPRESS(con.4) // NO-FORMAT: attribute
TEST_CASE("last")
{
int arr[5] = {1, 2, 3, 4, 5};
@@ -769,6 +851,7 @@ TEST_CASE("last")
}
}
GSL_SUPPRESS(con.4) // NO-FORMAT: attribute
TEST_CASE("subspan")
{
int arr[5] = {1, 2, 3, 4, 5};
@@ -850,6 +933,7 @@ TEST_CASE("subspan")
}
}
GSL_SUPPRESS(con.4) // NO-FORMAT: attribute
TEST_CASE("at_call")
{
int arr[4] = {1, 2, 3, 4};
@@ -869,6 +953,7 @@ TEST_CASE("at_call")
}
}
GSL_SUPPRESS(con.4) // NO-FORMAT: attribute
TEST_CASE("operator_function_call")
{
int arr[4] = {1, 2, 3, 4};
@@ -888,6 +973,7 @@ TEST_CASE("operator_function_call")
}
}
GSL_SUPPRESS(con.4) // NO-FORMAT: attribute
TEST_CASE("iterator_default_init")
{
span<int>::iterator it1;
@@ -895,6 +981,7 @@ TEST_CASE("iterator_default_init")
CHECK(it1 == it2);
}
GSL_SUPPRESS(con.4) // NO-FORMAT: attribute
TEST_CASE("const_iterator_default_init")
{
span<int>::const_iterator it1;
@@ -902,6 +989,7 @@ TEST_CASE("const_iterator_default_init")
CHECK(it1 == it2);
}
GSL_SUPPRESS(con.4) // NO-FORMAT: attribute
TEST_CASE("iterator_conversions")
{
span<int>::iterator badIt;
@@ -924,6 +1012,7 @@ TEST_CASE("iterator_conversions")
CHECK(cit3 == s.cend());
}
GSL_SUPPRESS(con.4) // NO-FORMAT: attribute
TEST_CASE("iterator_comparisons")
{
int a[] = {1, 2, 3, 4};
@@ -971,6 +1060,7 @@ TEST_CASE("iterator_comparisons")
}
}
GSL_SUPPRESS(con.4) // NO-FORMAT: attribute
TEST_CASE("begin_end")
{
{
@@ -1026,6 +1116,7 @@ TEST_CASE("begin_end")
}
}
GSL_SUPPRESS(con.4) // NO-FORMAT: attribute
TEST_CASE("cbegin_cend")
{
{
@@ -1078,6 +1169,7 @@ TEST_CASE("cbegin_cend")
}
}
GSL_SUPPRESS(con.4) // NO-FORMAT: attribute
TEST_CASE("rbegin_rend")
{
{
@@ -1120,6 +1212,7 @@ TEST_CASE("rbegin_rend")
}
}
GSL_SUPPRESS(con.4) // NO-FORMAT: attribute
TEST_CASE("crbegin_crend")
{
{
@@ -1159,6 +1252,7 @@ TEST_CASE("crbegin_crend")
}
}
GSL_SUPPRESS(con.4) // NO-FORMAT: attribute
TEST_CASE("comparison_operators")
{
{
@@ -1279,6 +1373,7 @@ TEST_CASE("comparison_operators")
}
}
GSL_SUPPRESS(con.4) // NO-FORMAT: attribute
TEST_CASE("as_bytes")
{
int a[] = {1, 2, 3, 4};
@@ -1309,6 +1404,7 @@ TEST_CASE("as_bytes")
}
}
GSL_SUPPRESS(con.4) // NO-FORMAT: attribute
TEST_CASE("as_writeable_bytes")
{
int a[] = {1, 2, 3, 4};
@@ -1342,6 +1438,7 @@ TEST_CASE("as_writeable_bytes")
}
}
GSL_SUPPRESS(con.4) // NO-FORMAT: attribute
TEST_CASE("fixed_size_conversions")
{
int arr[] = {1, 2, 3, 4};
@@ -1372,7 +1469,7 @@ TEST_CASE("fixed_size_conversions")
{
span<int> s = arr;
auto f = [&]() {
span<int, 2> s2 = s;
const span<int, 2> s2 = s;
static_cast<void>(s2);
};
CHECK_THROWS_AS(f(), fail_fast);
@@ -1382,7 +1479,7 @@ TEST_CASE("fixed_size_conversions")
// you can convert statically
{
const span<int, 2> s2 = {arr, 2};
const span<int, 2> s2 = {&arr[0], 2};
static_cast<void>(s2);
}
{
@@ -1411,7 +1508,7 @@ TEST_CASE("fixed_size_conversions")
#endif
{
auto f = [&]() {
span<int, 4> _s4 = {arr2, 2};
const span<int, 4> _s4 = {arr2, 2};
static_cast<void>(_s4);
};
CHECK_THROWS_AS(f(), fail_fast);
@@ -1420,12 +1517,13 @@ TEST_CASE("fixed_size_conversions")
// this should fail - we are trying to assign a small dynamic span to a fixed_size larger one
span<int> av = arr2;
auto f = [&]() {
span<int, 4> _s4 = av;
const span<int, 4> _s4 = av;
static_cast<void>(_s4);
};
CHECK_THROWS_AS(f(), fail_fast);
}
GSL_SUPPRESS(con.4) // NO-FORMAT: attribute
TEST_CASE("interop_with_std_regex")
{
char lat[] = {'1', '2', '3', '4', '5', '6', 'E', 'F', 'G'};
@@ -1449,6 +1547,7 @@ TEST_CASE("interop_with_std_regex")
CHECK(match[0].second == (f_it + 1));
}
GSL_SUPPRESS(con.4) // NO-FORMAT: attribute
TEST_CASE("interop_with_gsl_at")
{
int arr[5] = {1, 2, 3, 4, 5};
@@ -1462,3 +1561,4 @@ TEST_CASE("default_constructible")
CHECK((std::is_default_constructible<span<int, 0>>::value));
CHECK((!std::is_default_constructible<span<int, 42>>::value));
}
+193
View File
@@ -0,0 +1,193 @@
///////////////////////////////////////////////////////////////////////////////
//
// Copyright (c) 2015 Microsoft Corporation. All rights reserved.
//
// This code is licensed under the MIT License (MIT).
//
// THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
// IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
// FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
// AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
// LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
// OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
// THE SOFTWARE.
//
///////////////////////////////////////////////////////////////////////////////
#ifdef _MSC_VER
// blanket turn off warnings from CppCoreCheck from catch
// so people aren't annoyed by them when running the tool.
#pragma warning(disable : 26440 26426) // from catch
// Fix VS2015 build breaks in Release
#pragma warning(disable : 4702) // unreachable code
#endif
#include <catch/catch.hpp> // for AssertionHandler, StringRef, CHECK, TEST_...
#include <gsl/pointers> // for not_null, operator<, operator<=, operator>
namespace gsl
{
struct fail_fast;
} // namespace gsl
using namespace gsl;
GSL_SUPPRESS(f.4) // NO-FORMAT: attribute
bool helper(not_null<int*> p) { return *p == 12; }
GSL_SUPPRESS(f.4) // NO-FORMAT: attribute
bool helper_const(not_null<const int*> p) { return *p == 12; }
GSL_SUPPRESS(f.4) // NO-FORMAT: attribute
bool strict_helper(strict_not_null<int*> p) { return *p == 12; }
GSL_SUPPRESS(f.4) // NO-FORMAT: attribute
bool strict_helper_const(strict_not_null<const int*> p) { return *p == 12; }
int* return_pointer() { return nullptr; }
const int* return_pointer_const() { return nullptr; }
GSL_SUPPRESS(con.4) // NO-FORMAT: attribute
TEST_CASE("TestStrictNotNull")
{
{
// raw ptr <-> strict_not_null
int x = 42;
#ifdef CONFIRM_COMPILATION_ERRORS
strict_not_null<int*> snn = &x;
strict_helper(&x);
strict_helper_const(&x);
strict_helper(return_pointer());
strict_helper_const(return_pointer_const());
#endif
const strict_not_null<int*> snn1{&x};
helper(snn1);
helper_const(snn1);
CHECK(*snn1 == 42);
}
{
// strict_not_null -> strict_not_null
int x = 42;
strict_not_null<int*> snn1{&x};
const strict_not_null<int*> snn2{&x};
strict_helper(snn1);
strict_helper_const(snn1);
strict_helper_const(snn2);
CHECK(snn1 == snn2);
}
{
// strict_not_null -> not_null
int x = 42;
strict_not_null<int*> snn{&x};
const not_null<int*> nn1 = snn;
const not_null<int*> nn2{snn};
helper(snn);
helper_const(snn);
CHECK(snn == nn1);
CHECK(snn == nn2);
}
{
// not_null -> strict_not_null
int x = 42;
not_null<int*> nn{&x};
const strict_not_null<int*> snn1{nn};
const strict_not_null<int*> snn2{nn};
strict_helper(nn);
strict_helper_const(nn);
CHECK(snn1 == nn);
CHECK(snn2 == nn);
std::hash<strict_not_null<int*>> hash_snn;
std::hash<not_null<int*>> hash_nn;
CHECK(hash_nn(snn1) == hash_nn(nn));
CHECK(hash_snn(snn1) == hash_nn(nn));
CHECK(hash_nn(snn1) == hash_nn(snn2));
CHECK(hash_snn(snn1) == hash_snn(nn));
}
#ifdef CONFIRM_COMPILATION_ERRORS
{
strict_not_null<int*> p{nullptr};
}
#endif
}
#if defined(__cplusplus) && (__cplusplus >= 201703L)
GSL_SUPPRESS(con.4) // NO-FORMAT: attribute
TEST_CASE("TestStrictNotNullConstructorTypeDeduction")
{
{
int i = 42;
strict_not_null x{&i};
helper(strict_not_null{&i});
helper_const(strict_not_null{&i});
CHECK(*x == 42);
}
{
int i = 42;
int* p = &i;
strict_not_null x{p};
helper(strict_not_null{p});
helper_const(strict_not_null{p});
CHECK(*x == 42);
}
{
auto workaround_macro = []() {
int* p1 = nullptr;
const strict_not_null x{p1};
};
CHECK_THROWS_AS(workaround_macro(), fail_fast);
}
{
auto workaround_macro = []() {
const int* p1 = nullptr;
const strict_not_null x{p1};
};
CHECK_THROWS_AS(workaround_macro(), fail_fast);
}
{
int* p = nullptr;
CHECK_THROWS_AS(helper(strict_not_null{p}), fail_fast);
CHECK_THROWS_AS(helper_const(strict_not_null{p}), fail_fast);
}
#ifdef CONFIRM_COMPILATION_ERRORS
{
strict_not_null x{nullptr};
helper(strict_not_null{nullptr});
helper_const(strict_not_null{nullptr});
}
#endif
}
#endif // #if defined(__cplusplus) && (__cplusplus >= 201703L)
static_assert(std::is_nothrow_move_constructible<strict_not_null<void*>>::value,
"strict_not_null must be no-throw move constructible");
+56 -7
View File
@@ -14,6 +14,19 @@
//
///////////////////////////////////////////////////////////////////////////////
#ifdef _MSC_VER
// blanket turn off warnings from CppCoreCheck from catch
// so people aren't annoyed by them when running the tool.
#pragma warning(disable : 26440 26426) // from catch deprecated
#pragma warning(disable : 4996) // strided_span is in the process of being deprecated.
// Suppressing warnings until it is completely removed
#endif
#if __clang__ || __GNUC__
#pragma GCC diagnostic push
#pragma GCC diagnostic ignored "-Wdeprecated-declarations"
#endif
#include <catch/catch.hpp> // for AssertionHandler, StringRef, CHECK, CHECK...
#include <gsl/gsl_byte> // for byte
@@ -60,17 +73,20 @@ TEST_CASE("span_section")
const multi_span<int, 5, 10> av = as_multi_span(multi_span<int>{data}, dim<5>(), dim<10>());
const strided_span<int, 2> av_section_1 = av.section({1, 2}, {3, 4});
CHECK(!av_section_1.empty());
CHECK((av_section_1[{0, 0}] == 12));
CHECK((av_section_1[{0, 1}] == 13));
CHECK((av_section_1[{1, 0}] == 22));
CHECK((av_section_1[{2, 3}] == 35));
const strided_span<int, 2> av_section_2 = av_section_1.section({1, 2}, {2, 2});
CHECK(!av_section_2.empty());
CHECK((av_section_2[{0, 0}] == 24));
CHECK((av_section_2[{0, 1}] == 25));
CHECK((av_section_2[{1, 0}] == 34));
}
GSL_SUPPRESS(con.4) // NO-FORMAT: attribute
TEST_CASE("strided_span_constructors")
{
// Check stride constructor
@@ -107,7 +123,7 @@ TEST_CASE("strided_span_constructors")
CHECK(sav.bounds().strides() == multi_span_index<1>{1});
CHECK(sav[1] == 2);
#if _MSC_VER > 1800
#if defined(_MSC_VER) && _MSC_VER > 1800
// strided_span<const int, 1> sav_c{ {src}, {2, 1} };
strided_span<const int, 1> sav_c{multi_span<const int>{src},
strided_bounds<1>{2, 1}};
@@ -119,7 +135,7 @@ TEST_CASE("strided_span_constructors")
CHECK(sav_c.bounds().strides() == multi_span_index<1>{1});
CHECK(sav_c[1] == 2);
#if _MSC_VER > 1800
#if defined(_MSC_VER) && _MSC_VER > 1800
strided_span<volatile int, 1> sav_v{src, {2, 1}};
#else
strided_span<volatile int, 1> sav_v{multi_span<volatile int>{src},
@@ -129,7 +145,7 @@ TEST_CASE("strided_span_constructors")
CHECK(sav_v.bounds().strides() == multi_span_index<1>{1});
CHECK(sav_v[1] == 2);
#if _MSC_VER > 1800
#if defined(_MSC_VER) && _MSC_VER > 1800
strided_span<const volatile int, 1> sav_cv{src, {2, 1}};
#else
strided_span<const volatile int, 1> sav_cv{multi_span<const volatile int>{src},
@@ -149,7 +165,7 @@ TEST_CASE("strided_span_constructors")
CHECK(sav_c.bounds().strides() == multi_span_index<1>{1});
CHECK(sav_c[1] == 2);
#if _MSC_VER > 1800
#if defined(_MSC_VER) && _MSC_VER > 1800
strided_span<const volatile int, 1> sav_cv{src, {2, 1}};
#else
strided_span<const volatile int, 1> sav_cv{multi_span<const volatile int>{src},
@@ -170,7 +186,7 @@ TEST_CASE("strided_span_constructors")
CHECK(sav_v.bounds().strides() == multi_span_index<1>{1});
CHECK(sav_v[1] == 2);
#if _MSC_VER > 1800
#if defined(_MSC_VER) && _MSC_VER > 1800
strided_span<const volatile int, 1> sav_cv{src, {2, 1}};
#else
strided_span<const volatile int, 1> sav_cv{multi_span<const volatile int>{src},
@@ -271,6 +287,7 @@ TEST_CASE("strided_span_constructors")
}
}
GSL_SUPPRESS(con.4) // NO-FORMAT: attribute
TEST_CASE("strided_span_slice")
{
std::vector<int> data(5 * 10);
@@ -297,6 +314,7 @@ TEST_CASE("strided_span_slice")
CHECK(sav[4][9] == 49);
}
GSL_SUPPRESS(con.4) // NO-FORMAT: attribute
TEST_CASE("strided_span_column_major")
{
// strided_span may be used to accommodate more peculiar
@@ -329,6 +347,7 @@ TEST_CASE("strided_span_column_major")
CHECK((cm_sec[{2, 1}] == 15));
}
GSL_SUPPRESS(con.4) // NO-FORMAT: attribute
TEST_CASE("strided_span_bounds")
{
int arr[] = {0, 1, 2, 3};
@@ -445,6 +464,7 @@ TEST_CASE("strided_span_bounds")
#endif
}
GSL_SUPPRESS(con.4) // NO-FORMAT: attribute
TEST_CASE("strided_span_type_conversion")
{
int arr[] = {0, 1, 2, 3};
@@ -542,6 +562,8 @@ TEST_CASE("strided_span_type_conversion")
}
}
GSL_SUPPRESS(con.4) // NO-FORMAT: attribute
GSL_SUPPRESS(bounds.4) // NO-FORMAT: attribute
TEST_CASE("empty_strided_spans")
{
{
@@ -549,6 +571,7 @@ TEST_CASE("empty_strided_spans")
strided_span<int, 1> empty_sav{empty_av, {0, 1}};
CHECK(empty_sav.bounds().index_bounds() == multi_span_index<1>{0});
CHECK(empty_sav.empty());
CHECK_THROWS_AS(empty_sav[0], fail_fast);
CHECK_THROWS_AS(empty_sav.begin()[0], fail_fast);
CHECK_THROWS_AS(empty_sav.cbegin()[0], fail_fast);
@@ -574,12 +597,14 @@ TEST_CASE("empty_strided_spans")
}
}
GSL_SUPPRESS(con.4) // NO-FORMAT: attribute
GSL_SUPPRESS(bounds.1) // NO-FORMAT: attribute
void iterate_every_other_element(multi_span<int, dynamic_range> av)
{
// pick every other element
auto length = av.size() / 2;
#if _MSC_VER > 1800
#if defined(_MSC_VER) && _MSC_VER > 1800
auto bounds = strided_bounds<1>({length}, {2});
#else
auto bounds = strided_bounds<1>(multi_span_index<1>{length}, multi_span_index<1>{2});
@@ -599,6 +624,7 @@ void iterate_every_other_element(multi_span<int, dynamic_range> av)
}
}
GSL_SUPPRESS(con.4) // NO-FORMAT: attribute
TEST_CASE("strided_span_section_iteration")
{
int arr[8] = {4, 0, 5, 1, 6, 2, 7, 3};
@@ -616,6 +642,11 @@ TEST_CASE("strided_span_section_iteration")
}
}
GSL_SUPPRESS(con.4) // NO-FORMAT: attribute
GSL_SUPPRESS(r.11) // NO-FORMAT: attribute
GSL_SUPPRESS(r.3) // NO-FORMAT: attribute
GSL_SUPPRESS(r.5) // NO-FORMAT: attribute
GSL_SUPPRESS(bounds.1) // NO-FORMAT: attribute
TEST_CASE("dynamic_strided_span_section_iteration")
{
auto arr = new int[8];
@@ -630,6 +661,9 @@ TEST_CASE("dynamic_strided_span_section_iteration")
delete[] arr;
}
GSL_SUPPRESS(con.4) // NO-FORMAT: attribute
GSL_SUPPRESS(bounds.4) // NO-FORMAT: attribute
GSL_SUPPRESS(bounds.2) // NO-FORMAT: attribute // TODO: does not work
void iterate_second_slice(multi_span<int, dynamic_range, dynamic_range, dynamic_range> av)
{
const int expected[6] = {2, 3, 10, 11, 18, 19};
@@ -656,6 +690,9 @@ void iterate_second_slice(multi_span<int, dynamic_range, dynamic_range, dynamic_
}
}
GSL_SUPPRESS(con.4) // NO-FORMAT: attribute
GSL_SUPPRESS(bounds.4) // NO-FORMAT: attribute
GSL_SUPPRESS(bounds.2) // NO-FORMAT: attribute
TEST_CASE("strided_span_section_iteration_3d")
{
int arr[3][4][2]{};
@@ -670,6 +707,11 @@ TEST_CASE("strided_span_section_iteration_3d")
}
}
GSL_SUPPRESS(bounds.1) // NO-FORMAT: attribute
GSL_SUPPRESS(con.4) // NO-FORMAT: attribute
GSL_SUPPRESS(r.3) // NO-FORMAT: attribute
GSL_SUPPRESS(r.5) // NO-FORMAT: attribute
GSL_SUPPRESS(r.11) // NO-FORMAT: attribute
TEST_CASE("dynamic_strided_span_section_iteration_3d")
{
const auto height = 12, width = 2;
@@ -702,6 +744,9 @@ TEST_CASE("dynamic_strided_span_section_iteration_3d")
delete[] arr;
}
GSL_SUPPRESS(con.4) // NO-FORMAT: attribute
GSL_SUPPRESS(bounds.4) // NO-FORMAT: attribute
GSL_SUPPRESS(bounds.2) // NO-FORMAT: attribute
TEST_CASE("strided_span_conversion")
{
// get an multi_span of 'c' values from the list of X's
@@ -720,7 +765,7 @@ TEST_CASE("strided_span_conversion")
auto d1 = narrow_cast<int>(sizeof(int)) * 12 / d2;
// convert to 4x12 array of bytes
auto av = as_multi_span(as_bytes(as_multi_span(arr, 4)), dim(d1), dim(d2));
auto av = as_multi_span(as_bytes(as_multi_span(&arr[0], 4)), dim(d1), dim(d2));
CHECK(av.bounds().index_bounds()[0] == 4);
CHECK(av.bounds().index_bounds()[1] == 12);
@@ -755,3 +800,7 @@ TEST_CASE("strided_span_conversion")
i++;
}
}
#if __clang__ || __GNUC__
#pragma GCC diagnostic pop
#endif
+69 -5
View File
@@ -14,6 +14,13 @@
//
///////////////////////////////////////////////////////////////////////////////
#ifdef _MSC_VER
// blanket turn off warnings from CppCoreCheck from catch
// so people aren't annoyed by them when running the tool.
#pragma warning(disable : 26440 26426) // from catch
#endif
#include <catch/catch.hpp> // for AssertionHandler, StringRef, CHECK, TEST_...
#include <gsl/gsl_assert> // for Expects, fail_fast (ptr only)
@@ -37,6 +44,8 @@ namespace generic
{
template <typename CharT>
GSL_SUPPRESS(bounds.1) // NO-FORMAT: attribute
GSL_SUPPRESS(f.23) // NO-FORMAT: attribute
auto strlen(const CharT* s)
{
auto p = s;
@@ -45,13 +54,15 @@ auto strlen(const CharT* s)
}
template <typename CharT>
GSL_SUPPRESS(bounds.1) // NO-FORMAT: attribute
auto strnlen(const CharT* s, std::size_t n)
{
return std::find(s, s + n, CharT(0)) - s;
return std::find(s, s + n, CharT{0}) - s;
}
} // namespace generic
GSL_SUPPRESS(con.4) // NO-FORMAT: attribute
TEST_CASE("TestLiteralConstruction")
{
cwstring_span<> v = ensure_z(L"Hello");
@@ -61,6 +72,7 @@ TEST_CASE("TestLiteralConstruction")
wstring_span<> v2 = ensure0(L"Hello");
#endif
}
GSL_SUPPRESS(con.4) // NO-FORMAT: attribute
TEST_CASE("TestConstructFromStdString")
{
@@ -69,6 +81,7 @@ TEST_CASE("TestConstructFromStdString")
CHECK(v.length() == static_cast<cstring_span<>::index_type>(s.length()));
}
GSL_SUPPRESS(con.4) // NO-FORMAT: attribute
TEST_CASE("TestConstructFromStdVector")
{
std::vector<char> vec(5, 'h');
@@ -76,6 +89,7 @@ TEST_CASE("TestConstructFromStdVector")
CHECK(v.length() == static_cast<string_span<>::index_type>(vec.size()));
}
GSL_SUPPRESS(con.4) // NO-FORMAT: attribute
TEST_CASE("TestStackArrayConstruction")
{
wchar_t stack_string[] = L"Hello";
@@ -101,6 +115,7 @@ TEST_CASE("TestStackArrayConstruction")
}
}
GSL_SUPPRESS(con.4) // NO-FORMAT: attribute
TEST_CASE("TestConstructFromConstCharPointer")
{
const char* s = "Hello";
@@ -108,6 +123,7 @@ TEST_CASE("TestConstructFromConstCharPointer")
CHECK(v.length() == 5);
}
GSL_SUPPRESS(con.4) // NO-FORMAT: attribute
TEST_CASE("TestConversionToConst")
{
char stack_string[] = "Hello";
@@ -116,6 +132,7 @@ TEST_CASE("TestConversionToConst")
CHECK(v.length() == v2.length());
}
GSL_SUPPRESS(con.4) // NO-FORMAT: attribute
TEST_CASE("TestConversionFromConst")
{
char stack_string[] = "Hello";
@@ -127,6 +144,7 @@ TEST_CASE("TestConversionFromConst")
#endif
}
GSL_SUPPRESS(con.4) // NO-FORMAT: attribute
TEST_CASE("TestToString")
{
auto s = gsl::to_string(cstring_span<>{});
@@ -139,6 +157,7 @@ TEST_CASE("TestToString")
CHECK(s2.length() == 5);
}
GSL_SUPPRESS(con.4) // NO-FORMAT: attribute
TEST_CASE("TestToBasicString")
{
auto s = gsl::to_basic_string<char, std::char_traits<char>, ::std::allocator<char>>(
@@ -152,6 +171,8 @@ TEST_CASE("TestToBasicString")
CHECK(s2.length() == 5);
}
GSL_SUPPRESS(con.4) // NO-FORMAT: attribute
GSL_SUPPRESS(bounds.3) // NO-FORMAT: attribute
TEST_CASE("EqualityAndImplicitConstructors")
{
{
@@ -378,6 +399,8 @@ TEST_CASE("EqualityAndImplicitConstructors")
}
}
GSL_SUPPRESS(con.4) // NO-FORMAT: attribute
GSL_SUPPRESS(bounds.3) // NO-FORMAT: attribute
TEST_CASE("ComparisonAndImplicitConstructors")
{
{
@@ -448,6 +471,12 @@ TEST_CASE("ComparisonAndImplicitConstructors")
CHECK(span >= string_span<>(vec));
}
}
GSL_SUPPRESS(con.4) // NO-FORMAT: attribute
GSL_SUPPRESS(r.11) // NO-FORMAT: attribute
GSL_SUPPRESS(r.3) // NO-FORMAT: attribute
GSL_SUPPRESS(r.5) // NO-FORMAT: attribute
GSL_SUPPRESS(bounds.1) // NO-FORMAT: attribute
TEST_CASE("ConstrutorsEnsureZ")
{
// remove z from literals
@@ -478,6 +507,8 @@ TEST_CASE("ConstrutorsEnsureZ")
}
}
GSL_SUPPRESS(con.4) // NO-FORMAT: attribute
GSL_SUPPRESS(bounds.3) // NO-FORMAT: attribute
TEST_CASE("Constructors")
{
// creating cstring_span
@@ -884,6 +915,8 @@ czstring_span<> CreateTempName(string_span<> span)
return {ret};
}
GSL_SUPPRESS(con.4) // NO-FORMAT: attribute
GSL_SUPPRESS(bounds.1) // NO-FORMAT: attribute
TEST_CASE("zstring")
{
@@ -904,7 +937,7 @@ TEST_CASE("zstring")
char buf[1];
buf[0] = 'a';
auto workaround_macro = [&]() { zstring_span<> zspan({buf, 1}); };
auto workaround_macro = [&]() { const zstring_span<> zspan({buf, 1}); };
CHECK_THROWS_AS(workaround_macro(), fail_fast);
}
@@ -938,6 +971,8 @@ cwzstring_span<> CreateTempNameW(wstring_span<> span)
return {ret};
}
GSL_SUPPRESS(con.4) // NO-FORMAT: attribute
GSL_SUPPRESS(bounds.1) // NO-FORMAT: attribute
TEST_CASE("wzstring")
{
@@ -958,7 +993,7 @@ TEST_CASE("wzstring")
wchar_t buf[1];
buf[0] = L'a';
const auto workaround_macro = [&]() { wzstring_span<> zspan({buf, 1}); };
const auto workaround_macro = [&]() { const wzstring_span<> zspan({buf, 1}); };
CHECK_THROWS_AS(workaround_macro(), fail_fast);
}
@@ -992,6 +1027,8 @@ cu16zstring_span<> CreateTempNameU16(u16string_span<> span)
return {ret};
}
GSL_SUPPRESS(con.4) // NO-FORMAT: attribute
GSL_SUPPRESS(bounds.1) // NO-FORMAT: attribute
TEST_CASE("u16zstring")
{
@@ -1012,7 +1049,7 @@ TEST_CASE("u16zstring")
char16_t buf[1];
buf[0] = u'a';
const auto workaround_macro = [&]() { u16zstring_span<> zspan({buf, 1}); };
const auto workaround_macro = [&]() { const u16zstring_span<> zspan({buf, 1}); };
CHECK_THROWS_AS(workaround_macro(), fail_fast);
}
@@ -1046,6 +1083,8 @@ cu32zstring_span<> CreateTempNameU32(u32string_span<> span)
return {ret};
}
GSL_SUPPRESS(con.4) // NO-FORMAT: attribute
GSL_SUPPRESS(bounds.1) // NO-FORMAT: attribute
TEST_CASE("u32zstring")
{
@@ -1066,7 +1105,7 @@ TEST_CASE("u32zstring")
char32_t buf[1];
buf[0] = u'a';
const auto workaround_macro = [&]() { u32zstring_span<> zspan({buf, 1}); };
const auto workaround_macro = [&]() { const u32zstring_span<> zspan({buf, 1}); };
CHECK_THROWS_AS(workaround_macro(), fail_fast);
}
@@ -1090,6 +1129,8 @@ TEST_CASE("Issue305")
CHECK(foo["bar"] == 1);
}
GSL_SUPPRESS(con.4) // NO-FORMAT: attribute
GSL_SUPPRESS(bounds.3) // NO-FORMAT: attribute
TEST_CASE("char16_t type")
{
gsl::cu16string_span<> ss1 = gsl::ensure_z(u"abc");
@@ -1131,6 +1172,8 @@ TEST_CASE("char16_t type")
CHECK(ss8 != ss9);
}
GSL_SUPPRESS(con.4) // NO-FORMAT: attribute
GSL_SUPPRESS(bounds.3) // NO-FORMAT: attribute
TEST_CASE("char32_t type")
{
gsl::cu32string_span<> ss1 = gsl::ensure_z(U"abc");
@@ -1167,3 +1210,24 @@ TEST_CASE("char32_t type")
CHECK(ss8 <= ss9);
CHECK(ss8 != ss9);
}
GSL_SUPPRESS(con.4) // NO-FORMAT: attribute
TEST_CASE("as_bytes")
{
cwzstring_span<> v(L"qwerty");
const auto s = v.as_string_span();
const auto bs = as_bytes(s);
CHECK(static_cast<const void*>(bs.data()) == static_cast<const void*>(s.data()));
CHECK(bs.size() == s.size_bytes());
}
GSL_SUPPRESS(con.4) // NO-FORMAT: attribute
TEST_CASE("as_writeable_bytes")
{
wchar_t buf[]{L"qwerty"};
wzstring_span<> v(buf);
const auto s = v.as_string_span();
const auto bs = as_writeable_bytes(s);
CHECK(static_cast<const void*>(bs.data()) == static_cast<const void*>(s.data()));
CHECK(bs.size() == s.size_bytes());
}
+9
View File
@@ -15,4 +15,13 @@
///////////////////////////////////////////////////////////////////////////////
#define CATCH_CONFIG_MAIN
#ifdef _MSC_VER
// blanket turn off warnings from CppCoreCheck from catch
// so people aren't annoyed by them when running the tool.
#include <CodeAnalysis/Warnings.h>
#pragma warning(disable : ALL_CODE_ANALYSIS_WARNINGS) // from catch
#endif // _MSC_VER
#include <catch/catch.hpp>
+14 -1
View File
@@ -14,6 +14,13 @@
//
///////////////////////////////////////////////////////////////////////////////
#ifdef _MSC_VER
// blanket turn off warnings from CppCoreCheck from catch
// so people aren't annoyed by them when running the tool.
#pragma warning(disable : 26440 26426) // from catch
#endif
#include <catch/catch.hpp> // for AssertionHandler, StringRef, CHECK, TEST_...
#include <gsl/gsl_util> // for narrow, finally, narrow_cast, narrowing_e...
@@ -73,7 +80,7 @@ TEST_CASE("finally_function_with_bind")
CHECK(i == 1);
}
int j = 0;
static int j = 0;
void g() { j += 1; }
TEST_CASE("finally_function_ptr")
{
@@ -85,6 +92,7 @@ TEST_CASE("finally_function_ptr")
CHECK(j == 1);
}
GSL_SUPPRESS(con.4) // NO-FORMAT: attribute
TEST_CASE("narrow_cast")
{
int n = 120;
@@ -96,6 +104,7 @@ TEST_CASE("narrow_cast")
CHECK(uc == 44);
}
GSL_SUPPRESS(con.5) // NO-FORMAT: attribute
TEST_CASE("narrow")
{
int n = 120;
@@ -117,4 +126,8 @@ TEST_CASE("narrow")
n = -42;
CHECK_THROWS_AS(narrow<unsigned>(n), narrowing_error);
#if GSL_CONSTEXPR_NARROW
static_assert(narrow<char>(120) == 120, "Fix GSL_CONSTEXPR_NARROW");
#endif
}