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1 // Copyright 2012 The Chromium Authors
2 // Use of this source code is governed by a BSD-style license that can be
3 // found in the LICENSE file.
4 
5 #include "base/win/windows_version.h"
6 
7 #include <windows.h>
8 
9 #include <memory>
10 #include <tuple>
11 #include <utility>
12 
13 #include "base/check_op.h"
14 #include "base/file_version_info_win.h"
15 #include "base/files/file_path.h"
16 #include "base/logging.h"
17 #include "base/no_destructor.h"
18 #include "base/notreached.h"
19 #include "base/strings/string_util.h"
20 #include "base/strings/utf_string_conversions.h"
21 #include "base/threading/thread_restrictions.h"
22 #include "base/win/registry.h"
23 #include "build/build_config.h"
24 
25 #if !defined(__clang__) && _MSC_FULL_VER < 191125507
26 #error VS 2017 Update 3.2 or higher is required
27 #endif
28 
29 #if !defined(NTDDI_WIN10_NI)
30 #error Windows 10.0.22621.0 SDK or higher required.
31 #endif
32 
33 namespace base {
34 namespace win {
35 
36 namespace {
37 
38 // The values under the CurrentVersion registry hive are mirrored under
39 // the corresponding Wow6432 hive.
40 constexpr wchar_t kRegKeyWindowsNTCurrentVersion[] =
41     L"SOFTWARE\\Microsoft\\Windows NT\\CurrentVersion";
42 
43 // Returns the "UBR" (Windows 10 patch number) and "DisplayVersion" (or
44 // "ReleaseId" on earlier versions) (Windows 10 release number) from registry.
45 // "UBR" is an undocumented value and will be 0 if the value was not found.
46 // "ReleaseId" will be an empty string if neither new nor old values are found.
GetVersionData()47 std::pair<int, std::string> GetVersionData() {
48   DWORD ubr = 0;
49   std::wstring release_id;
50   RegKey key;
51 
52   if (key.Open(HKEY_LOCAL_MACHINE, kRegKeyWindowsNTCurrentVersion,
53                KEY_QUERY_VALUE) == ERROR_SUCCESS) {
54     key.ReadValueDW(L"UBR", &ubr);
55     // "DisplayVersion" has been introduced in Windows 10 2009
56     // when naming changed to mixed letters and numbers.
57     key.ReadValue(L"DisplayVersion", &release_id);
58     // Use discontinued "ReleaseId" instead, if the former is unavailable.
59     if (release_id.empty())
60       key.ReadValue(L"ReleaseId", &release_id);
61   }
62 
63   return std::make_pair(static_cast<int>(ubr), WideToUTF8(release_id));
64 }
65 
GetSystemInfoStorage()66 const _SYSTEM_INFO& GetSystemInfoStorage() {
67   static const _SYSTEM_INFO system_info = [] {
68     _SYSTEM_INFO info = {};
69     ::GetNativeSystemInfo(&info);
70     return info;
71   }();
72   return system_info;
73 }
74 
75 }  // namespace
76 
77 // static
GetInstanceStorage()78 OSInfo** OSInfo::GetInstanceStorage() {
79   // Note: we don't use the Singleton class because it depends on AtExitManager,
80   // and it's convenient for other modules to use this class without it.
81   static OSInfo* info = []() {
82     _OSVERSIONINFOEXW version_info = {sizeof(version_info)};
83 
84 #pragma clang diagnostic push
85 #pragma clang diagnostic ignored "-Wdeprecated-declarations"
86     // GetVersionEx() is deprecated, and the suggested replacement are
87     // the IsWindows*OrGreater() functions in VersionHelpers.h. We can't
88     // use that because:
89     // - For Windows 10, there's IsWindows10OrGreater(), but nothing more
90     //   granular. We need to be able to detect different Windows 10 releases
91     //   since they sometimes change behavior in ways that matter.
92     // - There is no IsWindows11OrGreater() function yet.
93     ::GetVersionEx(reinterpret_cast<_OSVERSIONINFOW*>(&version_info));
94 #pragma clang diagnostic pop
95 
96     DWORD os_type = 0;
97     ::GetProductInfo(version_info.dwMajorVersion, version_info.dwMinorVersion,
98                      0, 0, &os_type);
99 
100     return new OSInfo(version_info, GetSystemInfoStorage(), os_type);
101   }();
102 
103   return &info;
104 }
105 
106 // static
GetInstance()107 OSInfo* OSInfo::GetInstance() {
108   return *GetInstanceStorage();
109 }
110 
111 // static
GetArchitecture()112 OSInfo::WindowsArchitecture OSInfo::GetArchitecture() {
113   switch (GetSystemInfoStorage().wProcessorArchitecture) {
114     case PROCESSOR_ARCHITECTURE_INTEL:
115       return X86_ARCHITECTURE;
116     case PROCESSOR_ARCHITECTURE_AMD64:
117       return X64_ARCHITECTURE;
118     case PROCESSOR_ARCHITECTURE_IA64:
119       return IA64_ARCHITECTURE;
120     case PROCESSOR_ARCHITECTURE_ARM64:
121       return ARM64_ARCHITECTURE;
122     default:
123       return OTHER_ARCHITECTURE;
124   }
125 }
126 
127 // Returns true if this is an x86/x64 process running on ARM64 through
128 // emulation.
129 // static
IsRunningEmulatedOnArm64()130 bool OSInfo::IsRunningEmulatedOnArm64() {
131 #if defined(ARCH_CPU_ARM64)
132   // If we're running native ARM64 then we aren't running emulated.
133   return false;
134 #else
135   using IsWow64Process2Function = decltype(&IsWow64Process2);
136 
137   IsWow64Process2Function is_wow64_process2 =
138       reinterpret_cast<IsWow64Process2Function>(::GetProcAddress(
139           ::GetModuleHandleA("kernel32.dll"), "IsWow64Process2"));
140   if (!is_wow64_process2) {
141     return false;
142   }
143   USHORT process_machine;
144   USHORT native_machine;
145   bool retval = is_wow64_process2(::GetCurrentProcess(), &process_machine,
146                                   &native_machine);
147   if (!retval) {
148     return false;
149   }
150   if (native_machine == IMAGE_FILE_MACHINE_ARM64) {
151     return true;
152   }
153   return false;
154 #endif
155 }
156 
OSInfo(const _OSVERSIONINFOEXW & version_info,const _SYSTEM_INFO & system_info,DWORD os_type)157 OSInfo::OSInfo(const _OSVERSIONINFOEXW& version_info,
158                const _SYSTEM_INFO& system_info,
159                DWORD os_type)
160     : version_(Version::PRE_XP),
161       wow_process_machine_(WowProcessMachine::kUnknown),
162       wow_native_machine_(WowNativeMachine::kUnknown) {
163   version_number_.major = version_info.dwMajorVersion;
164   version_number_.minor = version_info.dwMinorVersion;
165   version_number_.build = version_info.dwBuildNumber;
166   std::tie(version_number_.patch, release_id_) = GetVersionData();
167   version_ = MajorMinorBuildToVersion(
168       version_number_.major, version_number_.minor, version_number_.build);
169   InitializeWowStatusValuesForProcess(GetCurrentProcess());
170   service_pack_.major = version_info.wServicePackMajor;
171   service_pack_.minor = version_info.wServicePackMinor;
172   service_pack_str_ = WideToUTF8(version_info.szCSDVersion);
173 
174   processors_ = static_cast<int>(system_info.dwNumberOfProcessors);
175   allocation_granularity_ = system_info.dwAllocationGranularity;
176 
177   if (version_info.dwMajorVersion == 6 || version_info.dwMajorVersion == 10) {
178     // Only present on Vista+.
179     switch (os_type) {
180       case PRODUCT_CLUSTER_SERVER:
181       case PRODUCT_DATACENTER_SERVER:
182       case PRODUCT_DATACENTER_SERVER_CORE:
183       case PRODUCT_ENTERPRISE_SERVER:
184       case PRODUCT_ENTERPRISE_SERVER_CORE:
185       case PRODUCT_ENTERPRISE_SERVER_IA64:
186       case PRODUCT_SMALLBUSINESS_SERVER:
187       case PRODUCT_SMALLBUSINESS_SERVER_PREMIUM:
188       case PRODUCT_STANDARD_SERVER:
189       case PRODUCT_STANDARD_SERVER_CORE:
190       case PRODUCT_WEB_SERVER:
191         version_type_ = SUITE_SERVER;
192         break;
193       case PRODUCT_PROFESSIONAL:
194       case PRODUCT_ULTIMATE:
195         version_type_ = SUITE_PROFESSIONAL;
196         break;
197       case PRODUCT_ENTERPRISE:
198       case PRODUCT_ENTERPRISE_E:
199       case PRODUCT_ENTERPRISE_EVALUATION:
200       case PRODUCT_ENTERPRISE_N:
201       case PRODUCT_ENTERPRISE_N_EVALUATION:
202       case PRODUCT_ENTERPRISE_S:
203       case PRODUCT_ENTERPRISE_S_EVALUATION:
204       case PRODUCT_ENTERPRISE_S_N:
205       case PRODUCT_ENTERPRISE_S_N_EVALUATION:
206       case PRODUCT_BUSINESS:
207       case PRODUCT_BUSINESS_N:
208         version_type_ = SUITE_ENTERPRISE;
209         break;
210       case PRODUCT_PRO_FOR_EDUCATION:
211       case PRODUCT_PRO_FOR_EDUCATION_N:
212         version_type_ = SUITE_EDUCATION_PRO;
213         break;
214       case PRODUCT_EDUCATION:
215       case PRODUCT_EDUCATION_N:
216         version_type_ = SUITE_EDUCATION;
217         break;
218       case PRODUCT_HOME_BASIC:
219       case PRODUCT_HOME_PREMIUM:
220       case PRODUCT_STARTER:
221       default:
222         version_type_ = SUITE_HOME;
223         break;
224     }
225   } else if (version_info.dwMajorVersion == 5 &&
226              version_info.dwMinorVersion == 2) {
227     if (version_info.wProductType == VER_NT_WORKSTATION &&
228         system_info.wProcessorArchitecture == PROCESSOR_ARCHITECTURE_AMD64) {
229       version_type_ = SUITE_PROFESSIONAL;
230     } else if (version_info.wSuiteMask & VER_SUITE_WH_SERVER) {
231       version_type_ = SUITE_HOME;
232     } else {
233       version_type_ = SUITE_SERVER;
234     }
235   } else if (version_info.dwMajorVersion == 5 &&
236              version_info.dwMinorVersion == 1) {
237     if (version_info.wSuiteMask & VER_SUITE_PERSONAL)
238       version_type_ = SUITE_HOME;
239     else
240       version_type_ = SUITE_PROFESSIONAL;
241   } else {
242     // Windows is pre XP so we don't care but pick a safe default.
243     version_type_ = SUITE_HOME;
244   }
245 }
246 
247 OSInfo::~OSInfo() = default;
248 
Kernel32Version()249 Version OSInfo::Kernel32Version() {
250   static const Version kernel32_version =
251       MajorMinorBuildToVersion(Kernel32BaseVersion().components()[0],
252                                Kernel32BaseVersion().components()[1],
253                                Kernel32BaseVersion().components()[2]);
254   return kernel32_version;
255 }
256 
Kernel32VersionNumber()257 OSInfo::VersionNumber OSInfo::Kernel32VersionNumber() {
258   DCHECK_EQ(Kernel32BaseVersion().components().size(), 4u);
259   static const VersionNumber version = {
260       .major = Kernel32BaseVersion().components()[0],
261       .minor = Kernel32BaseVersion().components()[1],
262       .build = Kernel32BaseVersion().components()[2],
263       .patch = Kernel32BaseVersion().components()[3]};
264   return version;
265 }
266 
267 // Retrieve a version from kernel32. This is useful because when running in
268 // compatibility mode for a down-level version of the OS, the file version of
269 // kernel32 will still be the "real" version.
Kernel32BaseVersion()270 base::Version OSInfo::Kernel32BaseVersion() {
271   static const NoDestructor<base::Version> version([] {
272     // Allow the calls to `Kernel32BaseVersion()` to block, as they only happen
273     // once (after which the result is cached in `version`), and reading from
274     // kernel32.dll is fast in practice because it is used by all processes and
275     // therefore likely to be in the OS's file cache.
276     base::ScopedAllowBlocking allow_blocking;
277     std::unique_ptr<FileVersionInfoWin> file_version_info =
278         FileVersionInfoWin::CreateFileVersionInfoWin(
279             FilePath(FILE_PATH_LITERAL("kernel32.dll")));
280     if (!file_version_info) {
281       // crbug.com/912061: on some systems it seems kernel32.dll might be
282       // corrupted or not in a state to get version info. In this case try
283       // kernelbase.dll as a fallback.
284       file_version_info = FileVersionInfoWin::CreateFileVersionInfoWin(
285           FilePath(FILE_PATH_LITERAL("kernelbase.dll")));
286     }
287     CHECK(file_version_info);
288     return file_version_info->GetFileVersion();
289   }());
290   return *version;
291 }
292 
IsWowDisabled() const293 bool OSInfo::IsWowDisabled() const {
294   return (wow_process_machine_ == WowProcessMachine::kDisabled);
295 }
296 
IsWowX86OnAMD64() const297 bool OSInfo::IsWowX86OnAMD64() const {
298   return (wow_process_machine_ == WowProcessMachine::kX86 &&
299           wow_native_machine_ == WowNativeMachine::kAMD64);
300 }
301 
IsWowX86OnARM64() const302 bool OSInfo::IsWowX86OnARM64() const {
303   return (wow_process_machine_ == WowProcessMachine::kX86 &&
304           wow_native_machine_ == WowNativeMachine::kARM64);
305 }
306 
IsWowAMD64OnARM64() const307 bool OSInfo::IsWowAMD64OnARM64() const {
308 #if defined(ARCH_CPU_X86_64)
309   // An AMD64 process running on an ARM64 device results in the incorrect
310   // identification of the device architecture (AMD64 is reported). However,
311   // IsWow64Process2 will return the correct device type for the native
312   // machine, even though the OS doesn't consider an AMD64 process on an ARM64
313   // processor a classic Windows-on-Windows setup.
314   return (wow_process_machine_ == WowProcessMachine::kDisabled &&
315           wow_native_machine_ == WowNativeMachine::kARM64);
316 #else
317   return false;
318 #endif
319 }
320 
IsWowX86OnOther() const321 bool OSInfo::IsWowX86OnOther() const {
322   return (wow_process_machine_ == WowProcessMachine::kX86 &&
323           wow_native_machine_ == WowNativeMachine::kOther);
324 }
325 
processor_model_name()326 std::string OSInfo::processor_model_name() {
327   if (processor_model_name_.empty()) {
328     const wchar_t kProcessorNameString[] =
329         L"HARDWARE\\DESCRIPTION\\System\\CentralProcessor\\0";
330     RegKey key(HKEY_LOCAL_MACHINE, kProcessorNameString, KEY_READ);
331     std::wstring value;
332     key.ReadValue(L"ProcessorNameString", &value);
333     processor_model_name_ = WideToUTF8(value);
334   }
335   return processor_model_name_;
336 }
337 
338 // With the exception of Server 2003, server variants are treated the same as
339 // the corresponding workstation release.
340 // static
MajorMinorBuildToVersion(uint32_t major,uint32_t minor,uint32_t build)341 Version OSInfo::MajorMinorBuildToVersion(uint32_t major,
342                                          uint32_t minor,
343                                          uint32_t build) {
344   if (major == 11) {
345     // We know nothing about this version of Windows or even if it exists.
346     // Known Windows 11 versions have a major number 10 and are thus handled by
347     // the == 10 block below.
348     return Version::WIN11;
349   }
350 
351   if (major == 10) {
352     if (build >= 22621) {
353       return Version::WIN11_22H2;
354     }
355     if (build >= 22000) {
356       return Version::WIN11;
357     }
358     if (build >= 20348) {
359       return Version::SERVER_2022;
360     }
361     if (build >= 19045) {
362       return Version::WIN10_22H2;
363     }
364     if (build >= 19044) {
365       return Version::WIN10_21H2;
366     }
367     if (build >= 19043) {
368       return Version::WIN10_21H1;
369     }
370     if (build >= 19042) {
371       return Version::WIN10_20H2;
372     }
373     if (build >= 19041) {
374       return Version::WIN10_20H1;
375     }
376     if (build >= 18363) {
377       return Version::WIN10_19H2;
378     }
379     if (build >= 18362) {
380       return Version::WIN10_19H1;
381     }
382     if (build >= 17763) {
383       return Version::WIN10_RS5;
384     }
385     if (build >= 17134) {
386       return Version::WIN10_RS4;
387     }
388     if (build >= 16299) {
389       return Version::WIN10_RS3;
390     }
391     if (build >= 15063) {
392       return Version::WIN10_RS2;
393     }
394     if (build >= 14393) {
395       return Version::WIN10_RS1;
396     }
397     if (build >= 10586) {
398       return Version::WIN10_TH2;
399     }
400     return Version::WIN10;
401   }
402 
403   if (major > 6) {
404     // Hitting this likely means that it's time for a >11 block above.
405     NOTREACHED() << major << "." << minor << "." << build;
406     return Version::WIN_LAST;
407   }
408 
409   if (major == 6) {
410     switch (minor) {
411       case 0:
412         return Version::VISTA;
413       case 1:
414         return Version::WIN7;
415       case 2:
416         return Version::WIN8;
417       default:
418         DCHECK_EQ(minor, 3u);
419         return Version::WIN8_1;
420     }
421   }
422 
423   if (major == 5 && minor != 0) {
424     // Treat XP Pro x64, Home Server, and Server 2003 R2 as Server 2003.
425     return minor == 1 ? Version::XP : Version::SERVER_2003;
426   }
427 
428   // Win 2000 or older.
429   return Version::PRE_XP;
430 }
431 
GetVersion()432 Version GetVersion() {
433   return OSInfo::GetInstance()->version();
434 }
435 
GetWowProcessMachineArchitecture(const int process_machine)436 OSInfo::WowProcessMachine OSInfo::GetWowProcessMachineArchitecture(
437     const int process_machine) {
438   switch (process_machine) {
439     case IMAGE_FILE_MACHINE_UNKNOWN:
440       return OSInfo::WowProcessMachine::kDisabled;
441     case IMAGE_FILE_MACHINE_I386:
442       return OSInfo::WowProcessMachine::kX86;
443     case IMAGE_FILE_MACHINE_ARM:
444     case IMAGE_FILE_MACHINE_THUMB:
445     case IMAGE_FILE_MACHINE_ARMNT:
446       return OSInfo::WowProcessMachine::kARM32;
447   }
448   return OSInfo::WowProcessMachine::kOther;
449 }
450 
GetWowNativeMachineArchitecture(const int native_machine)451 OSInfo::WowNativeMachine OSInfo::GetWowNativeMachineArchitecture(
452     const int native_machine) {
453   switch (native_machine) {
454     case IMAGE_FILE_MACHINE_ARM64:
455       return OSInfo::WowNativeMachine::kARM64;
456     case IMAGE_FILE_MACHINE_AMD64:
457       return OSInfo::WowNativeMachine::kAMD64;
458   }
459   return OSInfo::WowNativeMachine::kOther;
460 }
461 
InitializeWowStatusValuesFromLegacyApi(HANDLE process_handle)462 void OSInfo::InitializeWowStatusValuesFromLegacyApi(HANDLE process_handle) {
463   BOOL is_wow64 = FALSE;
464   if (!::IsWow64Process(process_handle, &is_wow64))
465     return;
466   if (is_wow64) {
467     wow_process_machine_ = WowProcessMachine::kX86;
468     wow_native_machine_ = WowNativeMachine::kAMD64;
469   } else {
470     wow_process_machine_ = WowProcessMachine::kDisabled;
471   }
472 }
473 
InitializeWowStatusValuesForProcess(HANDLE process_handle)474 void OSInfo::InitializeWowStatusValuesForProcess(HANDLE process_handle) {
475   static const auto is_wow64_process2 =
476       reinterpret_cast<decltype(&IsWow64Process2)>(::GetProcAddress(
477           ::GetModuleHandle(L"kernel32.dll"), "IsWow64Process2"));
478   if (!is_wow64_process2) {
479     InitializeWowStatusValuesFromLegacyApi(process_handle);
480     return;
481   }
482 
483   USHORT process_machine = IMAGE_FILE_MACHINE_UNKNOWN;
484   USHORT native_machine = IMAGE_FILE_MACHINE_UNKNOWN;
485   if (!is_wow64_process2(process_handle, &process_machine, &native_machine)) {
486     return;
487   }
488   wow_process_machine_ = GetWowProcessMachineArchitecture(process_machine);
489   wow_native_machine_ = GetWowNativeMachineArchitecture(native_machine);
490 }
491 
492 }  // namespace win
493 }  // namespace base
494