curl/lib/curlx/version_win32.c
Viktor Szakats 3058ed3df8
lib: use lib source directory as base include path
Backtrack on previous change that aimed to solve the wrong `share.h`
being included. It turns out it did not fix this issue. At the same time
it introduced relative header filenames and the need to include the same
headers differently depending on the source files' location, reducing
readability and editability.

Replace this method by re-adding curl's lib source directory to the
header path and addressing headers by the their full, relative name to
that base directory. Aligning with this method already used in src and
tests.

With these advantages:
- makes includes easier to read, recognize, grep, sort, write, and copy
  between sources,
- syncs the way these headers are included across curl components,
- avoids the ambiguity between system `schannel.h`, `rustls.h` vs.
  local headers using the same names in `lib/vtls`,
- silences clang-tidy `readability-duplicate-include` checker, which
  detects the above issue,
  Ref: https://clang.llvm.org/extra/clang-tidy/checks/readability/duplicate-include.html
- possibly silences TIOBE coding standard warnings:
  `6.10.2.a: Don't use relative paths in #include statements.`
- long shot: it works well with concatenated test sources, for
  clang-tidy-friendly custom unity builds. Ref: #20667

Slight downside: it's not enforced.

If there happens to be a collision between a local `lib/*.h` header and
a system one, the solution is to rename (possibly with its `.c`
counterpart) into the `curl_` namespace. This is also the method used by
curl in the past.

Also:
- curlx/inet_pton: reduce scope of an include.
- toolx/tool_time: apply this to an include, and update VS project
  files accordingly. Also dropping unnecessary lib/curlx header path.
- clang-tidy: enable `readability-duplicate-include`.

Follow-up to 3887069c66 #19676
Follow-up to 625f2c1644 #16991 #16949

Closes #20623
2026-02-23 16:00:42 +01:00

237 lines
7.9 KiB
C

/***************************************************************************
* _ _ ____ _
* Project ___| | | | _ \| |
* / __| | | | |_) | |
* | (__| |_| | _ <| |___
* \___|\___/|_| \_\_____|
*
* Copyright (C) Steve Holme, <steve_holme@hotmail.com>.
*
* This software is licensed as described in the file COPYING, which
* you should have received as part of this distribution. The terms
* are also available at https://curl.se/docs/copyright.html.
*
* You may opt to use, copy, modify, merge, publish, distribute and/or sell
* copies of the Software, and permit persons to whom the Software is
* furnished to do so, under the terms of the COPYING file.
*
* This software is distributed on an "AS IS" basis, WITHOUT WARRANTY OF ANY
* KIND, either express or implied.
*
* SPDX-License-Identifier: curl
*
***************************************************************************/
#include "curl_setup.h"
#ifdef _WIN32
#include "curlx/version_win32.h"
/* This Unicode version struct works for VerifyVersionInfoW (OSVERSIONINFOEXW)
and RtlVerifyVersionInfo (RTLOSVERSIONINFOEXW) */
struct OUR_OSVERSIONINFOEXW {
ULONG dwOSVersionInfoSize;
ULONG dwMajorVersion;
ULONG dwMinorVersion;
ULONG dwBuildNumber;
ULONG dwPlatformId;
WCHAR szCSDVersion[128];
USHORT wServicePackMajor;
USHORT wServicePackMinor;
USHORT wSuiteMask;
UCHAR wProductType;
UCHAR wReserved;
};
/*
* curlx_verify_windows_version()
*
* This is used to verify if we are running on a specific Windows version.
*
* Parameters:
*
* majorVersion [in] - The major version number.
* minorVersion [in] - The minor version number.
* buildVersion [in] - The build version number. If 0, this parameter is
* ignored.
* platform [in] - The optional platform identifier.
* condition [in] - The test condition used to specifier whether we are
* checking a version less than, equal to or greater than
* what is specified in the major and minor version
* numbers.
*
* Returns TRUE if matched; otherwise FALSE.
*/
bool curlx_verify_windows_version(const unsigned int majorVersion,
const unsigned int minorVersion,
const unsigned int buildVersion,
const PlatformIdentifier platform,
const VersionCondition condition)
{
bool matched = FALSE;
#ifdef CURL_WINDOWS_UWP
/* We have no way to determine the Windows version from Windows apps,
so let's assume we are running on the target Windows version. */
const WORD fullVersion = MAKEWORD(minorVersion, majorVersion);
const WORD targetVersion = (WORD)_WIN32_WINNT;
(void)buildVersion;
switch(condition) {
case VERSION_LESS_THAN:
matched = targetVersion < fullVersion;
break;
case VERSION_LESS_THAN_EQUAL:
matched = targetVersion <= fullVersion;
break;
case VERSION_EQUAL:
matched = targetVersion == fullVersion;
break;
case VERSION_GREATER_THAN_EQUAL:
matched = targetVersion >= fullVersion;
break;
case VERSION_GREATER_THAN:
matched = targetVersion > fullVersion;
break;
}
if(matched && (platform == PLATFORM_WINDOWS)) {
/* we are always running on PLATFORM_WINNT */
matched = FALSE;
}
#else
ULONGLONG cm = 0;
struct OUR_OSVERSIONINFOEXW osver;
BYTE majorCondition;
BYTE minorCondition;
BYTE buildCondition;
BYTE spMajorCondition;
BYTE spMinorCondition;
DWORD dwTypeMask = VER_MAJORVERSION | VER_MINORVERSION |
VER_SERVICEPACKMAJOR | VER_SERVICEPACKMINOR;
typedef LONG (APIENTRY *RTLVERIFYVERSIONINFO_FN)
(struct OUR_OSVERSIONINFOEXW *, ULONG, ULONGLONG);
static RTLVERIFYVERSIONINFO_FN pRtlVerifyVersionInfo;
static bool onetime = TRUE; /* safe because first call is during init */
if(onetime) {
#if defined(__clang__) && __clang_major__ >= 16
#pragma clang diagnostic push
#pragma clang diagnostic ignored "-Wcast-function-type-strict"
#endif
pRtlVerifyVersionInfo = CURLX_FUNCTION_CAST(RTLVERIFYVERSIONINFO_FN,
GetProcAddress(GetModuleHandle(TEXT("ntdll")), "RtlVerifyVersionInfo"));
#if defined(__clang__) && __clang_major__ >= 16
#pragma clang diagnostic pop
#endif
onetime = FALSE;
}
switch(condition) {
case VERSION_LESS_THAN:
majorCondition = VER_LESS;
minorCondition = VER_LESS;
buildCondition = VER_LESS;
spMajorCondition = VER_LESS_EQUAL;
spMinorCondition = VER_LESS_EQUAL;
break;
case VERSION_LESS_THAN_EQUAL:
majorCondition = VER_LESS_EQUAL;
minorCondition = VER_LESS_EQUAL;
buildCondition = VER_LESS_EQUAL;
spMajorCondition = VER_LESS_EQUAL;
spMinorCondition = VER_LESS_EQUAL;
break;
case VERSION_EQUAL:
majorCondition = VER_EQUAL;
minorCondition = VER_EQUAL;
buildCondition = VER_EQUAL;
spMajorCondition = VER_GREATER_EQUAL;
spMinorCondition = VER_GREATER_EQUAL;
break;
case VERSION_GREATER_THAN_EQUAL:
majorCondition = VER_GREATER_EQUAL;
minorCondition = VER_GREATER_EQUAL;
buildCondition = VER_GREATER_EQUAL;
spMajorCondition = VER_GREATER_EQUAL;
spMinorCondition = VER_GREATER_EQUAL;
break;
case VERSION_GREATER_THAN:
majorCondition = VER_GREATER;
minorCondition = VER_GREATER;
buildCondition = VER_GREATER;
spMajorCondition = VER_GREATER_EQUAL;
spMinorCondition = VER_GREATER_EQUAL;
break;
default:
return FALSE;
}
memset(&osver, 0, sizeof(osver));
osver.dwOSVersionInfoSize = sizeof(osver);
osver.dwMajorVersion = majorVersion;
osver.dwMinorVersion = minorVersion;
osver.dwBuildNumber = buildVersion;
if(platform == PLATFORM_WINDOWS)
osver.dwPlatformId = VER_PLATFORM_WIN32_WINDOWS;
else if(platform == PLATFORM_WINNT)
osver.dwPlatformId = VER_PLATFORM_WIN32_NT;
cm = VerSetConditionMask(cm, VER_MAJORVERSION, majorCondition);
cm = VerSetConditionMask(cm, VER_MINORVERSION, minorCondition);
cm = VerSetConditionMask(cm, VER_SERVICEPACKMAJOR, spMajorCondition);
cm = VerSetConditionMask(cm, VER_SERVICEPACKMINOR, spMinorCondition);
if(platform != PLATFORM_DONT_CARE) {
cm = VerSetConditionMask(cm, VER_PLATFORMID, VER_EQUAL);
dwTypeMask |= VER_PLATFORMID;
}
/* Later versions of Windows have version functions that may not return the
real version of Windows unless the application is so manifested. We prefer
the real version always, so we use the Rtl variant of the function when
possible. Note though the function signatures have underlying fundamental
types that are the same, the return values are different. */
if(pRtlVerifyVersionInfo)
matched = !pRtlVerifyVersionInfo(&osver, dwTypeMask, cm);
else
matched = !!VerifyVersionInfoW((OSVERSIONINFOEXW *)&osver, dwTypeMask, cm);
/* Compare the build number separately. VerifyVersionInfo normally compares
major.minor in hierarchical order (eg 1.9 is less than 2.0) but does not
do the same for build (eg 1.9 build 222 is not less than 2.0 build 111).
Build comparison is only needed when build numbers are equal (eg 1.9 is
always less than 2.0 so build comparison is not needed). */
if(matched && buildVersion &&
(condition == VERSION_EQUAL ||
((condition == VERSION_GREATER_THAN_EQUAL ||
condition == VERSION_LESS_THAN_EQUAL) &&
curlx_verify_windows_version(majorVersion, minorVersion, 0,
platform, VERSION_EQUAL)))) {
cm = VerSetConditionMask(0, VER_BUILDNUMBER, buildCondition);
dwTypeMask = VER_BUILDNUMBER;
if(pRtlVerifyVersionInfo)
matched = !pRtlVerifyVersionInfo(&osver, dwTypeMask, cm);
else
matched = !!VerifyVersionInfoW((OSVERSIONINFOEXW *)&osver,
dwTypeMask, cm);
}
#endif
return matched;
}
#endif /* _WIN32 */