Non puoi selezionare più di 25 argomenti Gli argomenti devono iniziare con una lettera o un numero, possono includere trattini ('-') e possono essere lunghi fino a 35 caratteri.

1805 righe
77 KiB

  1. // Copyright 2009 The Go Authors. All rights reserved.
  2. // Use of this source code is governed by a BSD-style
  3. // license that can be found in the LICENSE file.
  4. // Windows system calls.
  5. package windows
  6. import (
  7. errorspkg "errors"
  8. "fmt"
  9. "runtime"
  10. "strings"
  11. "sync"
  12. "syscall"
  13. "time"
  14. "unicode/utf16"
  15. "unsafe"
  16. "golang.org/x/sys/internal/unsafeheader"
  17. )
  18. type Handle uintptr
  19. type HWND uintptr
  20. const (
  21. InvalidHandle = ^Handle(0)
  22. InvalidHWND = ^HWND(0)
  23. // Flags for DefineDosDevice.
  24. DDD_EXACT_MATCH_ON_REMOVE = 0x00000004
  25. DDD_NO_BROADCAST_SYSTEM = 0x00000008
  26. DDD_RAW_TARGET_PATH = 0x00000001
  27. DDD_REMOVE_DEFINITION = 0x00000002
  28. // Return values for GetDriveType.
  29. DRIVE_UNKNOWN = 0
  30. DRIVE_NO_ROOT_DIR = 1
  31. DRIVE_REMOVABLE = 2
  32. DRIVE_FIXED = 3
  33. DRIVE_REMOTE = 4
  34. DRIVE_CDROM = 5
  35. DRIVE_RAMDISK = 6
  36. // File system flags from GetVolumeInformation and GetVolumeInformationByHandle.
  37. FILE_CASE_SENSITIVE_SEARCH = 0x00000001
  38. FILE_CASE_PRESERVED_NAMES = 0x00000002
  39. FILE_FILE_COMPRESSION = 0x00000010
  40. FILE_DAX_VOLUME = 0x20000000
  41. FILE_NAMED_STREAMS = 0x00040000
  42. FILE_PERSISTENT_ACLS = 0x00000008
  43. FILE_READ_ONLY_VOLUME = 0x00080000
  44. FILE_SEQUENTIAL_WRITE_ONCE = 0x00100000
  45. FILE_SUPPORTS_ENCRYPTION = 0x00020000
  46. FILE_SUPPORTS_EXTENDED_ATTRIBUTES = 0x00800000
  47. FILE_SUPPORTS_HARD_LINKS = 0x00400000
  48. FILE_SUPPORTS_OBJECT_IDS = 0x00010000
  49. FILE_SUPPORTS_OPEN_BY_FILE_ID = 0x01000000
  50. FILE_SUPPORTS_REPARSE_POINTS = 0x00000080
  51. FILE_SUPPORTS_SPARSE_FILES = 0x00000040
  52. FILE_SUPPORTS_TRANSACTIONS = 0x00200000
  53. FILE_SUPPORTS_USN_JOURNAL = 0x02000000
  54. FILE_UNICODE_ON_DISK = 0x00000004
  55. FILE_VOLUME_IS_COMPRESSED = 0x00008000
  56. FILE_VOLUME_QUOTAS = 0x00000020
  57. // Flags for LockFileEx.
  58. LOCKFILE_FAIL_IMMEDIATELY = 0x00000001
  59. LOCKFILE_EXCLUSIVE_LOCK = 0x00000002
  60. // Return value of SleepEx and other APC functions
  61. WAIT_IO_COMPLETION = 0x000000C0
  62. )
  63. // StringToUTF16 is deprecated. Use UTF16FromString instead.
  64. // If s contains a NUL byte this function panics instead of
  65. // returning an error.
  66. func StringToUTF16(s string) []uint16 {
  67. a, err := UTF16FromString(s)
  68. if err != nil {
  69. panic("windows: string with NUL passed to StringToUTF16")
  70. }
  71. return a
  72. }
  73. // UTF16FromString returns the UTF-16 encoding of the UTF-8 string
  74. // s, with a terminating NUL added. If s contains a NUL byte at any
  75. // location, it returns (nil, syscall.EINVAL).
  76. func UTF16FromString(s string) ([]uint16, error) {
  77. if strings.IndexByte(s, 0) != -1 {
  78. return nil, syscall.EINVAL
  79. }
  80. return utf16.Encode([]rune(s + "\x00")), nil
  81. }
  82. // UTF16ToString returns the UTF-8 encoding of the UTF-16 sequence s,
  83. // with a terminating NUL and any bytes after the NUL removed.
  84. func UTF16ToString(s []uint16) string {
  85. for i, v := range s {
  86. if v == 0 {
  87. s = s[:i]
  88. break
  89. }
  90. }
  91. return string(utf16.Decode(s))
  92. }
  93. // StringToUTF16Ptr is deprecated. Use UTF16PtrFromString instead.
  94. // If s contains a NUL byte this function panics instead of
  95. // returning an error.
  96. func StringToUTF16Ptr(s string) *uint16 { return &StringToUTF16(s)[0] }
  97. // UTF16PtrFromString returns pointer to the UTF-16 encoding of
  98. // the UTF-8 string s, with a terminating NUL added. If s
  99. // contains a NUL byte at any location, it returns (nil, syscall.EINVAL).
  100. func UTF16PtrFromString(s string) (*uint16, error) {
  101. a, err := UTF16FromString(s)
  102. if err != nil {
  103. return nil, err
  104. }
  105. return &a[0], nil
  106. }
  107. // UTF16PtrToString takes a pointer to a UTF-16 sequence and returns the corresponding UTF-8 encoded string.
  108. // If the pointer is nil, it returns the empty string. It assumes that the UTF-16 sequence is terminated
  109. // at a zero word; if the zero word is not present, the program may crash.
  110. func UTF16PtrToString(p *uint16) string {
  111. if p == nil {
  112. return ""
  113. }
  114. if *p == 0 {
  115. return ""
  116. }
  117. // Find NUL terminator.
  118. n := 0
  119. for ptr := unsafe.Pointer(p); *(*uint16)(ptr) != 0; n++ {
  120. ptr = unsafe.Pointer(uintptr(ptr) + unsafe.Sizeof(*p))
  121. }
  122. var s []uint16
  123. h := (*unsafeheader.Slice)(unsafe.Pointer(&s))
  124. h.Data = unsafe.Pointer(p)
  125. h.Len = n
  126. h.Cap = n
  127. return string(utf16.Decode(s))
  128. }
  129. func Getpagesize() int { return 4096 }
  130. // NewCallback converts a Go function to a function pointer conforming to the stdcall calling convention.
  131. // This is useful when interoperating with Windows code requiring callbacks.
  132. // The argument is expected to be a function with with one uintptr-sized result. The function must not have arguments with size larger than the size of uintptr.
  133. func NewCallback(fn interface{}) uintptr {
  134. return syscall.NewCallback(fn)
  135. }
  136. // NewCallbackCDecl converts a Go function to a function pointer conforming to the cdecl calling convention.
  137. // This is useful when interoperating with Windows code requiring callbacks.
  138. // The argument is expected to be a function with with one uintptr-sized result. The function must not have arguments with size larger than the size of uintptr.
  139. func NewCallbackCDecl(fn interface{}) uintptr {
  140. return syscall.NewCallbackCDecl(fn)
  141. }
  142. // windows api calls
  143. //sys GetLastError() (lasterr error)
  144. //sys LoadLibrary(libname string) (handle Handle, err error) = LoadLibraryW
  145. //sys LoadLibraryEx(libname string, zero Handle, flags uintptr) (handle Handle, err error) = LoadLibraryExW
  146. //sys FreeLibrary(handle Handle) (err error)
  147. //sys GetProcAddress(module Handle, procname string) (proc uintptr, err error)
  148. //sys GetModuleFileName(module Handle, filename *uint16, size uint32) (n uint32, err error) = kernel32.GetModuleFileNameW
  149. //sys GetModuleHandleEx(flags uint32, moduleName *uint16, module *Handle) (err error) = kernel32.GetModuleHandleExW
  150. //sys SetDefaultDllDirectories(directoryFlags uint32) (err error)
  151. //sys SetDllDirectory(path string) (err error) = kernel32.SetDllDirectoryW
  152. //sys GetVersion() (ver uint32, err error)
  153. //sys FormatMessage(flags uint32, msgsrc uintptr, msgid uint32, langid uint32, buf []uint16, args *byte) (n uint32, err error) = FormatMessageW
  154. //sys ExitProcess(exitcode uint32)
  155. //sys IsWow64Process(handle Handle, isWow64 *bool) (err error) = IsWow64Process
  156. //sys IsWow64Process2(handle Handle, processMachine *uint16, nativeMachine *uint16) (err error) = IsWow64Process2?
  157. //sys CreateFile(name *uint16, access uint32, mode uint32, sa *SecurityAttributes, createmode uint32, attrs uint32, templatefile Handle) (handle Handle, err error) [failretval==InvalidHandle] = CreateFileW
  158. //sys CreateNamedPipe(name *uint16, flags uint32, pipeMode uint32, maxInstances uint32, outSize uint32, inSize uint32, defaultTimeout uint32, sa *SecurityAttributes) (handle Handle, err error) [failretval==InvalidHandle] = CreateNamedPipeW
  159. //sys ConnectNamedPipe(pipe Handle, overlapped *Overlapped) (err error)
  160. //sys GetNamedPipeInfo(pipe Handle, flags *uint32, outSize *uint32, inSize *uint32, maxInstances *uint32) (err error)
  161. //sys GetNamedPipeHandleState(pipe Handle, state *uint32, curInstances *uint32, maxCollectionCount *uint32, collectDataTimeout *uint32, userName *uint16, maxUserNameSize uint32) (err error) = GetNamedPipeHandleStateW
  162. //sys SetNamedPipeHandleState(pipe Handle, state *uint32, maxCollectionCount *uint32, collectDataTimeout *uint32) (err error) = SetNamedPipeHandleState
  163. //sys readFile(handle Handle, buf []byte, done *uint32, overlapped *Overlapped) (err error) = ReadFile
  164. //sys writeFile(handle Handle, buf []byte, done *uint32, overlapped *Overlapped) (err error) = WriteFile
  165. //sys GetOverlappedResult(handle Handle, overlapped *Overlapped, done *uint32, wait bool) (err error)
  166. //sys SetFilePointer(handle Handle, lowoffset int32, highoffsetptr *int32, whence uint32) (newlowoffset uint32, err error) [failretval==0xffffffff]
  167. //sys CloseHandle(handle Handle) (err error)
  168. //sys GetStdHandle(stdhandle uint32) (handle Handle, err error) [failretval==InvalidHandle]
  169. //sys SetStdHandle(stdhandle uint32, handle Handle) (err error)
  170. //sys findFirstFile1(name *uint16, data *win32finddata1) (handle Handle, err error) [failretval==InvalidHandle] = FindFirstFileW
  171. //sys findNextFile1(handle Handle, data *win32finddata1) (err error) = FindNextFileW
  172. //sys FindClose(handle Handle) (err error)
  173. //sys GetFileInformationByHandle(handle Handle, data *ByHandleFileInformation) (err error)
  174. //sys GetFileInformationByHandleEx(handle Handle, class uint32, outBuffer *byte, outBufferLen uint32) (err error)
  175. //sys SetFileInformationByHandle(handle Handle, class uint32, inBuffer *byte, inBufferLen uint32) (err error)
  176. //sys GetCurrentDirectory(buflen uint32, buf *uint16) (n uint32, err error) = GetCurrentDirectoryW
  177. //sys SetCurrentDirectory(path *uint16) (err error) = SetCurrentDirectoryW
  178. //sys CreateDirectory(path *uint16, sa *SecurityAttributes) (err error) = CreateDirectoryW
  179. //sys RemoveDirectory(path *uint16) (err error) = RemoveDirectoryW
  180. //sys DeleteFile(path *uint16) (err error) = DeleteFileW
  181. //sys MoveFile(from *uint16, to *uint16) (err error) = MoveFileW
  182. //sys MoveFileEx(from *uint16, to *uint16, flags uint32) (err error) = MoveFileExW
  183. //sys LockFileEx(file Handle, flags uint32, reserved uint32, bytesLow uint32, bytesHigh uint32, overlapped *Overlapped) (err error)
  184. //sys UnlockFileEx(file Handle, reserved uint32, bytesLow uint32, bytesHigh uint32, overlapped *Overlapped) (err error)
  185. //sys GetComputerName(buf *uint16, n *uint32) (err error) = GetComputerNameW
  186. //sys GetComputerNameEx(nametype uint32, buf *uint16, n *uint32) (err error) = GetComputerNameExW
  187. //sys SetEndOfFile(handle Handle) (err error)
  188. //sys GetSystemTimeAsFileTime(time *Filetime)
  189. //sys GetSystemTimePreciseAsFileTime(time *Filetime)
  190. //sys GetTimeZoneInformation(tzi *Timezoneinformation) (rc uint32, err error) [failretval==0xffffffff]
  191. //sys CreateIoCompletionPort(filehandle Handle, cphandle Handle, key uintptr, threadcnt uint32) (handle Handle, err error)
  192. //sys GetQueuedCompletionStatus(cphandle Handle, qty *uint32, key *uintptr, overlapped **Overlapped, timeout uint32) (err error)
  193. //sys PostQueuedCompletionStatus(cphandle Handle, qty uint32, key uintptr, overlapped *Overlapped) (err error)
  194. //sys CancelIo(s Handle) (err error)
  195. //sys CancelIoEx(s Handle, o *Overlapped) (err error)
  196. //sys CreateProcess(appName *uint16, commandLine *uint16, procSecurity *SecurityAttributes, threadSecurity *SecurityAttributes, inheritHandles bool, creationFlags uint32, env *uint16, currentDir *uint16, startupInfo *StartupInfo, outProcInfo *ProcessInformation) (err error) = CreateProcessW
  197. //sys CreateProcessAsUser(token Token, appName *uint16, commandLine *uint16, procSecurity *SecurityAttributes, threadSecurity *SecurityAttributes, inheritHandles bool, creationFlags uint32, env *uint16, currentDir *uint16, startupInfo *StartupInfo, outProcInfo *ProcessInformation) (err error) = advapi32.CreateProcessAsUserW
  198. //sys initializeProcThreadAttributeList(attrlist *ProcThreadAttributeList, attrcount uint32, flags uint32, size *uintptr) (err error) = InitializeProcThreadAttributeList
  199. //sys deleteProcThreadAttributeList(attrlist *ProcThreadAttributeList) = DeleteProcThreadAttributeList
  200. //sys updateProcThreadAttribute(attrlist *ProcThreadAttributeList, flags uint32, attr uintptr, value unsafe.Pointer, size uintptr, prevvalue unsafe.Pointer, returnedsize *uintptr) (err error) = UpdateProcThreadAttribute
  201. //sys OpenProcess(desiredAccess uint32, inheritHandle bool, processId uint32) (handle Handle, err error)
  202. //sys ShellExecute(hwnd Handle, verb *uint16, file *uint16, args *uint16, cwd *uint16, showCmd int32) (err error) [failretval<=32] = shell32.ShellExecuteW
  203. //sys GetWindowThreadProcessId(hwnd HWND, pid *uint32) (tid uint32, err error) = user32.GetWindowThreadProcessId
  204. //sys GetShellWindow() (shellWindow HWND) = user32.GetShellWindow
  205. //sys MessageBox(hwnd HWND, text *uint16, caption *uint16, boxtype uint32) (ret int32, err error) [failretval==0] = user32.MessageBoxW
  206. //sys ExitWindowsEx(flags uint32, reason uint32) (err error) = user32.ExitWindowsEx
  207. //sys shGetKnownFolderPath(id *KNOWNFOLDERID, flags uint32, token Token, path **uint16) (ret error) = shell32.SHGetKnownFolderPath
  208. //sys TerminateProcess(handle Handle, exitcode uint32) (err error)
  209. //sys GetExitCodeProcess(handle Handle, exitcode *uint32) (err error)
  210. //sys GetStartupInfo(startupInfo *StartupInfo) (err error) = GetStartupInfoW
  211. //sys GetProcessTimes(handle Handle, creationTime *Filetime, exitTime *Filetime, kernelTime *Filetime, userTime *Filetime) (err error)
  212. //sys DuplicateHandle(hSourceProcessHandle Handle, hSourceHandle Handle, hTargetProcessHandle Handle, lpTargetHandle *Handle, dwDesiredAccess uint32, bInheritHandle bool, dwOptions uint32) (err error)
  213. //sys WaitForSingleObject(handle Handle, waitMilliseconds uint32) (event uint32, err error) [failretval==0xffffffff]
  214. //sys waitForMultipleObjects(count uint32, handles uintptr, waitAll bool, waitMilliseconds uint32) (event uint32, err error) [failretval==0xffffffff] = WaitForMultipleObjects
  215. //sys GetTempPath(buflen uint32, buf *uint16) (n uint32, err error) = GetTempPathW
  216. //sys CreatePipe(readhandle *Handle, writehandle *Handle, sa *SecurityAttributes, size uint32) (err error)
  217. //sys GetFileType(filehandle Handle) (n uint32, err error)
  218. //sys CryptAcquireContext(provhandle *Handle, container *uint16, provider *uint16, provtype uint32, flags uint32) (err error) = advapi32.CryptAcquireContextW
  219. //sys CryptReleaseContext(provhandle Handle, flags uint32) (err error) = advapi32.CryptReleaseContext
  220. //sys CryptGenRandom(provhandle Handle, buflen uint32, buf *byte) (err error) = advapi32.CryptGenRandom
  221. //sys GetEnvironmentStrings() (envs *uint16, err error) [failretval==nil] = kernel32.GetEnvironmentStringsW
  222. //sys FreeEnvironmentStrings(envs *uint16) (err error) = kernel32.FreeEnvironmentStringsW
  223. //sys GetEnvironmentVariable(name *uint16, buffer *uint16, size uint32) (n uint32, err error) = kernel32.GetEnvironmentVariableW
  224. //sys SetEnvironmentVariable(name *uint16, value *uint16) (err error) = kernel32.SetEnvironmentVariableW
  225. //sys ExpandEnvironmentStrings(src *uint16, dst *uint16, size uint32) (n uint32, err error) = kernel32.ExpandEnvironmentStringsW
  226. //sys CreateEnvironmentBlock(block **uint16, token Token, inheritExisting bool) (err error) = userenv.CreateEnvironmentBlock
  227. //sys DestroyEnvironmentBlock(block *uint16) (err error) = userenv.DestroyEnvironmentBlock
  228. //sys getTickCount64() (ms uint64) = kernel32.GetTickCount64
  229. //sys SetFileTime(handle Handle, ctime *Filetime, atime *Filetime, wtime *Filetime) (err error)
  230. //sys GetFileAttributes(name *uint16) (attrs uint32, err error) [failretval==INVALID_FILE_ATTRIBUTES] = kernel32.GetFileAttributesW
  231. //sys SetFileAttributes(name *uint16, attrs uint32) (err error) = kernel32.SetFileAttributesW
  232. //sys GetFileAttributesEx(name *uint16, level uint32, info *byte) (err error) = kernel32.GetFileAttributesExW
  233. //sys GetCommandLine() (cmd *uint16) = kernel32.GetCommandLineW
  234. //sys CommandLineToArgv(cmd *uint16, argc *int32) (argv *[8192]*[8192]uint16, err error) [failretval==nil] = shell32.CommandLineToArgvW
  235. //sys LocalFree(hmem Handle) (handle Handle, err error) [failretval!=0]
  236. //sys LocalAlloc(flags uint32, length uint32) (ptr uintptr, err error)
  237. //sys SetHandleInformation(handle Handle, mask uint32, flags uint32) (err error)
  238. //sys FlushFileBuffers(handle Handle) (err error)
  239. //sys GetFullPathName(path *uint16, buflen uint32, buf *uint16, fname **uint16) (n uint32, err error) = kernel32.GetFullPathNameW
  240. //sys GetLongPathName(path *uint16, buf *uint16, buflen uint32) (n uint32, err error) = kernel32.GetLongPathNameW
  241. //sys GetShortPathName(longpath *uint16, shortpath *uint16, buflen uint32) (n uint32, err error) = kernel32.GetShortPathNameW
  242. //sys GetFinalPathNameByHandle(file Handle, filePath *uint16, filePathSize uint32, flags uint32) (n uint32, err error) = kernel32.GetFinalPathNameByHandleW
  243. //sys CreateFileMapping(fhandle Handle, sa *SecurityAttributes, prot uint32, maxSizeHigh uint32, maxSizeLow uint32, name *uint16) (handle Handle, err error) [failretval == 0 || e1 == ERROR_ALREADY_EXISTS] = kernel32.CreateFileMappingW
  244. //sys MapViewOfFile(handle Handle, access uint32, offsetHigh uint32, offsetLow uint32, length uintptr) (addr uintptr, err error)
  245. //sys UnmapViewOfFile(addr uintptr) (err error)
  246. //sys FlushViewOfFile(addr uintptr, length uintptr) (err error)
  247. //sys VirtualLock(addr uintptr, length uintptr) (err error)
  248. //sys VirtualUnlock(addr uintptr, length uintptr) (err error)
  249. //sys VirtualAlloc(address uintptr, size uintptr, alloctype uint32, protect uint32) (value uintptr, err error) = kernel32.VirtualAlloc
  250. //sys VirtualFree(address uintptr, size uintptr, freetype uint32) (err error) = kernel32.VirtualFree
  251. //sys VirtualProtect(address uintptr, size uintptr, newprotect uint32, oldprotect *uint32) (err error) = kernel32.VirtualProtect
  252. //sys VirtualProtectEx(process Handle, address uintptr, size uintptr, newProtect uint32, oldProtect *uint32) (err error) = kernel32.VirtualProtectEx
  253. //sys VirtualQuery(address uintptr, buffer *MemoryBasicInformation, length uintptr) (err error) = kernel32.VirtualQuery
  254. //sys VirtualQueryEx(process Handle, address uintptr, buffer *MemoryBasicInformation, length uintptr) (err error) = kernel32.VirtualQueryEx
  255. //sys ReadProcessMemory(process Handle, baseAddress uintptr, buffer *byte, size uintptr, numberOfBytesRead *uintptr) (err error) = kernel32.ReadProcessMemory
  256. //sys WriteProcessMemory(process Handle, baseAddress uintptr, buffer *byte, size uintptr, numberOfBytesWritten *uintptr) (err error) = kernel32.WriteProcessMemory
  257. //sys TransmitFile(s Handle, handle Handle, bytesToWrite uint32, bytsPerSend uint32, overlapped *Overlapped, transmitFileBuf *TransmitFileBuffers, flags uint32) (err error) = mswsock.TransmitFile
  258. //sys ReadDirectoryChanges(handle Handle, buf *byte, buflen uint32, watchSubTree bool, mask uint32, retlen *uint32, overlapped *Overlapped, completionRoutine uintptr) (err error) = kernel32.ReadDirectoryChangesW
  259. //sys FindFirstChangeNotification(path string, watchSubtree bool, notifyFilter uint32) (handle Handle, err error) [failretval==InvalidHandle] = kernel32.FindFirstChangeNotificationW
  260. //sys FindNextChangeNotification(handle Handle) (err error)
  261. //sys FindCloseChangeNotification(handle Handle) (err error)
  262. //sys CertOpenSystemStore(hprov Handle, name *uint16) (store Handle, err error) = crypt32.CertOpenSystemStoreW
  263. //sys CertOpenStore(storeProvider uintptr, msgAndCertEncodingType uint32, cryptProv uintptr, flags uint32, para uintptr) (handle Handle, err error) = crypt32.CertOpenStore
  264. //sys CertEnumCertificatesInStore(store Handle, prevContext *CertContext) (context *CertContext, err error) [failretval==nil] = crypt32.CertEnumCertificatesInStore
  265. //sys CertAddCertificateContextToStore(store Handle, certContext *CertContext, addDisposition uint32, storeContext **CertContext) (err error) = crypt32.CertAddCertificateContextToStore
  266. //sys CertCloseStore(store Handle, flags uint32) (err error) = crypt32.CertCloseStore
  267. //sys CertDeleteCertificateFromStore(certContext *CertContext) (err error) = crypt32.CertDeleteCertificateFromStore
  268. //sys CertDuplicateCertificateContext(certContext *CertContext) (dupContext *CertContext) = crypt32.CertDuplicateCertificateContext
  269. //sys PFXImportCertStore(pfx *CryptDataBlob, password *uint16, flags uint32) (store Handle, err error) = crypt32.PFXImportCertStore
  270. //sys CertGetCertificateChain(engine Handle, leaf *CertContext, time *Filetime, additionalStore Handle, para *CertChainPara, flags uint32, reserved uintptr, chainCtx **CertChainContext) (err error) = crypt32.CertGetCertificateChain
  271. //sys CertFreeCertificateChain(ctx *CertChainContext) = crypt32.CertFreeCertificateChain
  272. //sys CertCreateCertificateContext(certEncodingType uint32, certEncoded *byte, encodedLen uint32) (context *CertContext, err error) [failretval==nil] = crypt32.CertCreateCertificateContext
  273. //sys CertFreeCertificateContext(ctx *CertContext) (err error) = crypt32.CertFreeCertificateContext
  274. //sys CertVerifyCertificateChainPolicy(policyOID uintptr, chain *CertChainContext, para *CertChainPolicyPara, status *CertChainPolicyStatus) (err error) = crypt32.CertVerifyCertificateChainPolicy
  275. //sys CertGetNameString(certContext *CertContext, nameType uint32, flags uint32, typePara unsafe.Pointer, name *uint16, size uint32) (chars uint32) = crypt32.CertGetNameStringW
  276. //sys CertFindExtension(objId *byte, countExtensions uint32, extensions *CertExtension) (ret *CertExtension) = crypt32.CertFindExtension
  277. //sys CertFindCertificateInStore(store Handle, certEncodingType uint32, findFlags uint32, findType uint32, findPara unsafe.Pointer, prevCertContext *CertContext) (cert *CertContext, err error) [failretval==nil] = crypt32.CertFindCertificateInStore
  278. //sys CertFindChainInStore(store Handle, certEncodingType uint32, findFlags uint32, findType uint32, findPara unsafe.Pointer, prevChainContext *CertChainContext) (certchain *CertChainContext, err error) [failretval==nil] = crypt32.CertFindChainInStore
  279. //sys CryptAcquireCertificatePrivateKey(cert *CertContext, flags uint32, parameters unsafe.Pointer, cryptProvOrNCryptKey *Handle, keySpec *uint32, callerFreeProvOrNCryptKey *bool) (err error) = crypt32.CryptAcquireCertificatePrivateKey
  280. //sys CryptQueryObject(objectType uint32, object unsafe.Pointer, expectedContentTypeFlags uint32, expectedFormatTypeFlags uint32, flags uint32, msgAndCertEncodingType *uint32, contentType *uint32, formatType *uint32, certStore *Handle, msg *Handle, context *unsafe.Pointer) (err error) = crypt32.CryptQueryObject
  281. //sys CryptDecodeObject(encodingType uint32, structType *byte, encodedBytes *byte, lenEncodedBytes uint32, flags uint32, decoded unsafe.Pointer, decodedLen *uint32) (err error) = crypt32.CryptDecodeObject
  282. //sys CryptProtectData(dataIn *DataBlob, name *uint16, optionalEntropy *DataBlob, reserved uintptr, promptStruct *CryptProtectPromptStruct, flags uint32, dataOut *DataBlob) (err error) = crypt32.CryptProtectData
  283. //sys CryptUnprotectData(dataIn *DataBlob, name **uint16, optionalEntropy *DataBlob, reserved uintptr, promptStruct *CryptProtectPromptStruct, flags uint32, dataOut *DataBlob) (err error) = crypt32.CryptUnprotectData
  284. //sys WinVerifyTrustEx(hwnd HWND, actionId *GUID, data *WinTrustData) (ret error) = wintrust.WinVerifyTrustEx
  285. //sys RegOpenKeyEx(key Handle, subkey *uint16, options uint32, desiredAccess uint32, result *Handle) (regerrno error) = advapi32.RegOpenKeyExW
  286. //sys RegCloseKey(key Handle) (regerrno error) = advapi32.RegCloseKey
  287. //sys RegQueryInfoKey(key Handle, class *uint16, classLen *uint32, reserved *uint32, subkeysLen *uint32, maxSubkeyLen *uint32, maxClassLen *uint32, valuesLen *uint32, maxValueNameLen *uint32, maxValueLen *uint32, saLen *uint32, lastWriteTime *Filetime) (regerrno error) = advapi32.RegQueryInfoKeyW
  288. //sys RegEnumKeyEx(key Handle, index uint32, name *uint16, nameLen *uint32, reserved *uint32, class *uint16, classLen *uint32, lastWriteTime *Filetime) (regerrno error) = advapi32.RegEnumKeyExW
  289. //sys RegQueryValueEx(key Handle, name *uint16, reserved *uint32, valtype *uint32, buf *byte, buflen *uint32) (regerrno error) = advapi32.RegQueryValueExW
  290. //sys RegNotifyChangeKeyValue(key Handle, watchSubtree bool, notifyFilter uint32, event Handle, asynchronous bool) (regerrno error) = advapi32.RegNotifyChangeKeyValue
  291. //sys GetCurrentProcessId() (pid uint32) = kernel32.GetCurrentProcessId
  292. //sys ProcessIdToSessionId(pid uint32, sessionid *uint32) (err error) = kernel32.ProcessIdToSessionId
  293. //sys GetConsoleMode(console Handle, mode *uint32) (err error) = kernel32.GetConsoleMode
  294. //sys SetConsoleMode(console Handle, mode uint32) (err error) = kernel32.SetConsoleMode
  295. //sys GetConsoleScreenBufferInfo(console Handle, info *ConsoleScreenBufferInfo) (err error) = kernel32.GetConsoleScreenBufferInfo
  296. //sys setConsoleCursorPosition(console Handle, position uint32) (err error) = kernel32.SetConsoleCursorPosition
  297. //sys WriteConsole(console Handle, buf *uint16, towrite uint32, written *uint32, reserved *byte) (err error) = kernel32.WriteConsoleW
  298. //sys ReadConsole(console Handle, buf *uint16, toread uint32, read *uint32, inputControl *byte) (err error) = kernel32.ReadConsoleW
  299. //sys CreateToolhelp32Snapshot(flags uint32, processId uint32) (handle Handle, err error) [failretval==InvalidHandle] = kernel32.CreateToolhelp32Snapshot
  300. //sys Module32First(snapshot Handle, moduleEntry *ModuleEntry32) (err error) = kernel32.Module32FirstW
  301. //sys Module32Next(snapshot Handle, moduleEntry *ModuleEntry32) (err error) = kernel32.Module32NextW
  302. //sys Process32First(snapshot Handle, procEntry *ProcessEntry32) (err error) = kernel32.Process32FirstW
  303. //sys Process32Next(snapshot Handle, procEntry *ProcessEntry32) (err error) = kernel32.Process32NextW
  304. //sys Thread32First(snapshot Handle, threadEntry *ThreadEntry32) (err error)
  305. //sys Thread32Next(snapshot Handle, threadEntry *ThreadEntry32) (err error)
  306. //sys DeviceIoControl(handle Handle, ioControlCode uint32, inBuffer *byte, inBufferSize uint32, outBuffer *byte, outBufferSize uint32, bytesReturned *uint32, overlapped *Overlapped) (err error)
  307. // This function returns 1 byte BOOLEAN rather than the 4 byte BOOL.
  308. //sys CreateSymbolicLink(symlinkfilename *uint16, targetfilename *uint16, flags uint32) (err error) [failretval&0xff==0] = CreateSymbolicLinkW
  309. //sys CreateHardLink(filename *uint16, existingfilename *uint16, reserved uintptr) (err error) [failretval&0xff==0] = CreateHardLinkW
  310. //sys GetCurrentThreadId() (id uint32)
  311. //sys CreateEvent(eventAttrs *SecurityAttributes, manualReset uint32, initialState uint32, name *uint16) (handle Handle, err error) [failretval == 0 || e1 == ERROR_ALREADY_EXISTS] = kernel32.CreateEventW
  312. //sys CreateEventEx(eventAttrs *SecurityAttributes, name *uint16, flags uint32, desiredAccess uint32) (handle Handle, err error) [failretval == 0 || e1 == ERROR_ALREADY_EXISTS] = kernel32.CreateEventExW
  313. //sys OpenEvent(desiredAccess uint32, inheritHandle bool, name *uint16) (handle Handle, err error) = kernel32.OpenEventW
  314. //sys SetEvent(event Handle) (err error) = kernel32.SetEvent
  315. //sys ResetEvent(event Handle) (err error) = kernel32.ResetEvent
  316. //sys PulseEvent(event Handle) (err error) = kernel32.PulseEvent
  317. //sys CreateMutex(mutexAttrs *SecurityAttributes, initialOwner bool, name *uint16) (handle Handle, err error) [failretval == 0 || e1 == ERROR_ALREADY_EXISTS] = kernel32.CreateMutexW
  318. //sys CreateMutexEx(mutexAttrs *SecurityAttributes, name *uint16, flags uint32, desiredAccess uint32) (handle Handle, err error) [failretval == 0 || e1 == ERROR_ALREADY_EXISTS] = kernel32.CreateMutexExW
  319. //sys OpenMutex(desiredAccess uint32, inheritHandle bool, name *uint16) (handle Handle, err error) = kernel32.OpenMutexW
  320. //sys ReleaseMutex(mutex Handle) (err error) = kernel32.ReleaseMutex
  321. //sys SleepEx(milliseconds uint32, alertable bool) (ret uint32) = kernel32.SleepEx
  322. //sys CreateJobObject(jobAttr *SecurityAttributes, name *uint16) (handle Handle, err error) = kernel32.CreateJobObjectW
  323. //sys AssignProcessToJobObject(job Handle, process Handle) (err error) = kernel32.AssignProcessToJobObject
  324. //sys TerminateJobObject(job Handle, exitCode uint32) (err error) = kernel32.TerminateJobObject
  325. //sys SetErrorMode(mode uint32) (ret uint32) = kernel32.SetErrorMode
  326. //sys ResumeThread(thread Handle) (ret uint32, err error) [failretval==0xffffffff] = kernel32.ResumeThread
  327. //sys SetPriorityClass(process Handle, priorityClass uint32) (err error) = kernel32.SetPriorityClass
  328. //sys GetPriorityClass(process Handle) (ret uint32, err error) = kernel32.GetPriorityClass
  329. //sys QueryInformationJobObject(job Handle, JobObjectInformationClass int32, JobObjectInformation uintptr, JobObjectInformationLength uint32, retlen *uint32) (err error) = kernel32.QueryInformationJobObject
  330. //sys SetInformationJobObject(job Handle, JobObjectInformationClass uint32, JobObjectInformation uintptr, JobObjectInformationLength uint32) (ret int, err error)
  331. //sys GenerateConsoleCtrlEvent(ctrlEvent uint32, processGroupID uint32) (err error)
  332. //sys GetProcessId(process Handle) (id uint32, err error)
  333. //sys QueryFullProcessImageName(proc Handle, flags uint32, exeName *uint16, size *uint32) (err error) = kernel32.QueryFullProcessImageNameW
  334. //sys OpenThread(desiredAccess uint32, inheritHandle bool, threadId uint32) (handle Handle, err error)
  335. //sys SetProcessPriorityBoost(process Handle, disable bool) (err error) = kernel32.SetProcessPriorityBoost
  336. //sys GetProcessWorkingSetSizeEx(hProcess Handle, lpMinimumWorkingSetSize *uintptr, lpMaximumWorkingSetSize *uintptr, flags *uint32)
  337. //sys SetProcessWorkingSetSizeEx(hProcess Handle, dwMinimumWorkingSetSize uintptr, dwMaximumWorkingSetSize uintptr, flags uint32) (err error)
  338. //sys GetCommTimeouts(handle Handle, timeouts *CommTimeouts) (err error)
  339. //sys SetCommTimeouts(handle Handle, timeouts *CommTimeouts) (err error)
  340. //sys GetActiveProcessorCount(groupNumber uint16) (ret uint32)
  341. //sys GetMaximumProcessorCount(groupNumber uint16) (ret uint32)
  342. // Volume Management Functions
  343. //sys DefineDosDevice(flags uint32, deviceName *uint16, targetPath *uint16) (err error) = DefineDosDeviceW
  344. //sys DeleteVolumeMountPoint(volumeMountPoint *uint16) (err error) = DeleteVolumeMountPointW
  345. //sys FindFirstVolume(volumeName *uint16, bufferLength uint32) (handle Handle, err error) [failretval==InvalidHandle] = FindFirstVolumeW
  346. //sys FindFirstVolumeMountPoint(rootPathName *uint16, volumeMountPoint *uint16, bufferLength uint32) (handle Handle, err error) [failretval==InvalidHandle] = FindFirstVolumeMountPointW
  347. //sys FindNextVolume(findVolume Handle, volumeName *uint16, bufferLength uint32) (err error) = FindNextVolumeW
  348. //sys FindNextVolumeMountPoint(findVolumeMountPoint Handle, volumeMountPoint *uint16, bufferLength uint32) (err error) = FindNextVolumeMountPointW
  349. //sys FindVolumeClose(findVolume Handle) (err error)
  350. //sys FindVolumeMountPointClose(findVolumeMountPoint Handle) (err error)
  351. //sys GetDiskFreeSpaceEx(directoryName *uint16, freeBytesAvailableToCaller *uint64, totalNumberOfBytes *uint64, totalNumberOfFreeBytes *uint64) (err error) = GetDiskFreeSpaceExW
  352. //sys GetDriveType(rootPathName *uint16) (driveType uint32) = GetDriveTypeW
  353. //sys GetLogicalDrives() (drivesBitMask uint32, err error) [failretval==0]
  354. //sys GetLogicalDriveStrings(bufferLength uint32, buffer *uint16) (n uint32, err error) [failretval==0] = GetLogicalDriveStringsW
  355. //sys GetVolumeInformation(rootPathName *uint16, volumeNameBuffer *uint16, volumeNameSize uint32, volumeNameSerialNumber *uint32, maximumComponentLength *uint32, fileSystemFlags *uint32, fileSystemNameBuffer *uint16, fileSystemNameSize uint32) (err error) = GetVolumeInformationW
  356. //sys GetVolumeInformationByHandle(file Handle, volumeNameBuffer *uint16, volumeNameSize uint32, volumeNameSerialNumber *uint32, maximumComponentLength *uint32, fileSystemFlags *uint32, fileSystemNameBuffer *uint16, fileSystemNameSize uint32) (err error) = GetVolumeInformationByHandleW
  357. //sys GetVolumeNameForVolumeMountPoint(volumeMountPoint *uint16, volumeName *uint16, bufferlength uint32) (err error) = GetVolumeNameForVolumeMountPointW
  358. //sys GetVolumePathName(fileName *uint16, volumePathName *uint16, bufferLength uint32) (err error) = GetVolumePathNameW
  359. //sys GetVolumePathNamesForVolumeName(volumeName *uint16, volumePathNames *uint16, bufferLength uint32, returnLength *uint32) (err error) = GetVolumePathNamesForVolumeNameW
  360. //sys QueryDosDevice(deviceName *uint16, targetPath *uint16, max uint32) (n uint32, err error) [failretval==0] = QueryDosDeviceW
  361. //sys SetVolumeLabel(rootPathName *uint16, volumeName *uint16) (err error) = SetVolumeLabelW
  362. //sys SetVolumeMountPoint(volumeMountPoint *uint16, volumeName *uint16) (err error) = SetVolumeMountPointW
  363. //sys InitiateSystemShutdownEx(machineName *uint16, message *uint16, timeout uint32, forceAppsClosed bool, rebootAfterShutdown bool, reason uint32) (err error) = advapi32.InitiateSystemShutdownExW
  364. //sys SetProcessShutdownParameters(level uint32, flags uint32) (err error) = kernel32.SetProcessShutdownParameters
  365. //sys GetProcessShutdownParameters(level *uint32, flags *uint32) (err error) = kernel32.GetProcessShutdownParameters
  366. //sys clsidFromString(lpsz *uint16, pclsid *GUID) (ret error) = ole32.CLSIDFromString
  367. //sys stringFromGUID2(rguid *GUID, lpsz *uint16, cchMax int32) (chars int32) = ole32.StringFromGUID2
  368. //sys coCreateGuid(pguid *GUID) (ret error) = ole32.CoCreateGuid
  369. //sys CoTaskMemFree(address unsafe.Pointer) = ole32.CoTaskMemFree
  370. //sys CoInitializeEx(reserved uintptr, coInit uint32) (ret error) = ole32.CoInitializeEx
  371. //sys CoUninitialize() = ole32.CoUninitialize
  372. //sys CoGetObject(name *uint16, bindOpts *BIND_OPTS3, guid *GUID, functionTable **uintptr) (ret error) = ole32.CoGetObject
  373. //sys getProcessPreferredUILanguages(flags uint32, numLanguages *uint32, buf *uint16, bufSize *uint32) (err error) = kernel32.GetProcessPreferredUILanguages
  374. //sys getThreadPreferredUILanguages(flags uint32, numLanguages *uint32, buf *uint16, bufSize *uint32) (err error) = kernel32.GetThreadPreferredUILanguages
  375. //sys getUserPreferredUILanguages(flags uint32, numLanguages *uint32, buf *uint16, bufSize *uint32) (err error) = kernel32.GetUserPreferredUILanguages
  376. //sys getSystemPreferredUILanguages(flags uint32, numLanguages *uint32, buf *uint16, bufSize *uint32) (err error) = kernel32.GetSystemPreferredUILanguages
  377. //sys findResource(module Handle, name uintptr, resType uintptr) (resInfo Handle, err error) = kernel32.FindResourceW
  378. //sys SizeofResource(module Handle, resInfo Handle) (size uint32, err error) = kernel32.SizeofResource
  379. //sys LoadResource(module Handle, resInfo Handle) (resData Handle, err error) = kernel32.LoadResource
  380. //sys LockResource(resData Handle) (addr uintptr, err error) = kernel32.LockResource
  381. // Version APIs
  382. //sys GetFileVersionInfoSize(filename string, zeroHandle *Handle) (bufSize uint32, err error) = version.GetFileVersionInfoSizeW
  383. //sys GetFileVersionInfo(filename string, handle uint32, bufSize uint32, buffer unsafe.Pointer) (err error) = version.GetFileVersionInfoW
  384. //sys VerQueryValue(block unsafe.Pointer, subBlock string, pointerToBufferPointer unsafe.Pointer, bufSize *uint32) (err error) = version.VerQueryValueW
  385. // Process Status API (PSAPI)
  386. //sys EnumProcesses(processIds []uint32, bytesReturned *uint32) (err error) = psapi.EnumProcesses
  387. //sys EnumProcessModules(process Handle, module *Handle, cb uint32, cbNeeded *uint32) (err error) = psapi.EnumProcessModules
  388. //sys EnumProcessModulesEx(process Handle, module *Handle, cb uint32, cbNeeded *uint32, filterFlag uint32) (err error) = psapi.EnumProcessModulesEx
  389. //sys GetModuleInformation(process Handle, module Handle, modinfo *ModuleInfo, cb uint32) (err error) = psapi.GetModuleInformation
  390. //sys GetModuleFileNameEx(process Handle, module Handle, filename *uint16, size uint32) (err error) = psapi.GetModuleFileNameExW
  391. //sys GetModuleBaseName(process Handle, module Handle, baseName *uint16, size uint32) (err error) = psapi.GetModuleBaseNameW
  392. //sys QueryWorkingSetEx(process Handle, pv uintptr, cb uint32) (err error) = psapi.QueryWorkingSetEx
  393. // NT Native APIs
  394. //sys rtlNtStatusToDosErrorNoTeb(ntstatus NTStatus) (ret syscall.Errno) = ntdll.RtlNtStatusToDosErrorNoTeb
  395. //sys rtlGetVersion(info *OsVersionInfoEx) (ntstatus error) = ntdll.RtlGetVersion
  396. //sys rtlGetNtVersionNumbers(majorVersion *uint32, minorVersion *uint32, buildNumber *uint32) = ntdll.RtlGetNtVersionNumbers
  397. //sys RtlGetCurrentPeb() (peb *PEB) = ntdll.RtlGetCurrentPeb
  398. //sys RtlInitUnicodeString(destinationString *NTUnicodeString, sourceString *uint16) = ntdll.RtlInitUnicodeString
  399. //sys RtlInitString(destinationString *NTString, sourceString *byte) = ntdll.RtlInitString
  400. //sys NtCreateFile(handle *Handle, access uint32, oa *OBJECT_ATTRIBUTES, iosb *IO_STATUS_BLOCK, allocationSize *int64, attributes uint32, share uint32, disposition uint32, options uint32, eabuffer uintptr, ealength uint32) (ntstatus error) = ntdll.NtCreateFile
  401. //sys NtCreateNamedPipeFile(pipe *Handle, access uint32, oa *OBJECT_ATTRIBUTES, iosb *IO_STATUS_BLOCK, share uint32, disposition uint32, options uint32, typ uint32, readMode uint32, completionMode uint32, maxInstances uint32, inboundQuota uint32, outputQuota uint32, timeout *int64) (ntstatus error) = ntdll.NtCreateNamedPipeFile
  402. //sys NtSetInformationFile(handle Handle, iosb *IO_STATUS_BLOCK, inBuffer *byte, inBufferLen uint32, class uint32) (ntstatus error) = ntdll.NtSetInformationFile
  403. //sys RtlDosPathNameToNtPathName(dosName *uint16, ntName *NTUnicodeString, ntFileNamePart *uint16, relativeName *RTL_RELATIVE_NAME) (ntstatus error) = ntdll.RtlDosPathNameToNtPathName_U_WithStatus
  404. //sys RtlDosPathNameToRelativeNtPathName(dosName *uint16, ntName *NTUnicodeString, ntFileNamePart *uint16, relativeName *RTL_RELATIVE_NAME) (ntstatus error) = ntdll.RtlDosPathNameToRelativeNtPathName_U_WithStatus
  405. //sys RtlDefaultNpAcl(acl **ACL) (ntstatus error) = ntdll.RtlDefaultNpAcl
  406. //sys NtQueryInformationProcess(proc Handle, procInfoClass int32, procInfo unsafe.Pointer, procInfoLen uint32, retLen *uint32) (ntstatus error) = ntdll.NtQueryInformationProcess
  407. //sys NtSetInformationProcess(proc Handle, procInfoClass int32, procInfo unsafe.Pointer, procInfoLen uint32) (ntstatus error) = ntdll.NtSetInformationProcess
  408. //sys NtQuerySystemInformation(sysInfoClass int32, sysInfo unsafe.Pointer, sysInfoLen uint32, retLen *uint32) (ntstatus error) = ntdll.NtQuerySystemInformation
  409. //sys NtSetSystemInformation(sysInfoClass int32, sysInfo unsafe.Pointer, sysInfoLen uint32) (ntstatus error) = ntdll.NtSetSystemInformation
  410. //sys RtlAddFunctionTable(functionTable *RUNTIME_FUNCTION, entryCount uint32, baseAddress uintptr) (ret bool) = ntdll.RtlAddFunctionTable
  411. //sys RtlDeleteFunctionTable(functionTable *RUNTIME_FUNCTION) (ret bool) = ntdll.RtlDeleteFunctionTable
  412. // syscall interface implementation for other packages
  413. // GetCurrentProcess returns the handle for the current process.
  414. // It is a pseudo handle that does not need to be closed.
  415. // The returned error is always nil.
  416. //
  417. // Deprecated: use CurrentProcess for the same Handle without the nil
  418. // error.
  419. func GetCurrentProcess() (Handle, error) {
  420. return CurrentProcess(), nil
  421. }
  422. // CurrentProcess returns the handle for the current process.
  423. // It is a pseudo handle that does not need to be closed.
  424. func CurrentProcess() Handle { return Handle(^uintptr(1 - 1)) }
  425. // GetCurrentThread returns the handle for the current thread.
  426. // It is a pseudo handle that does not need to be closed.
  427. // The returned error is always nil.
  428. //
  429. // Deprecated: use CurrentThread for the same Handle without the nil
  430. // error.
  431. func GetCurrentThread() (Handle, error) {
  432. return CurrentThread(), nil
  433. }
  434. // CurrentThread returns the handle for the current thread.
  435. // It is a pseudo handle that does not need to be closed.
  436. func CurrentThread() Handle { return Handle(^uintptr(2 - 1)) }
  437. // GetProcAddressByOrdinal retrieves the address of the exported
  438. // function from module by ordinal.
  439. func GetProcAddressByOrdinal(module Handle, ordinal uintptr) (proc uintptr, err error) {
  440. r0, _, e1 := syscall.Syscall(procGetProcAddress.Addr(), 2, uintptr(module), ordinal, 0)
  441. proc = uintptr(r0)
  442. if proc == 0 {
  443. err = errnoErr(e1)
  444. }
  445. return
  446. }
  447. func Exit(code int) { ExitProcess(uint32(code)) }
  448. func makeInheritSa() *SecurityAttributes {
  449. var sa SecurityAttributes
  450. sa.Length = uint32(unsafe.Sizeof(sa))
  451. sa.InheritHandle = 1
  452. return &sa
  453. }
  454. func Open(path string, mode int, perm uint32) (fd Handle, err error) {
  455. if len(path) == 0 {
  456. return InvalidHandle, ERROR_FILE_NOT_FOUND
  457. }
  458. pathp, err := UTF16PtrFromString(path)
  459. if err != nil {
  460. return InvalidHandle, err
  461. }
  462. var access uint32
  463. switch mode & (O_RDONLY | O_WRONLY | O_RDWR) {
  464. case O_RDONLY:
  465. access = GENERIC_READ
  466. case O_WRONLY:
  467. access = GENERIC_WRITE
  468. case O_RDWR:
  469. access = GENERIC_READ | GENERIC_WRITE
  470. }
  471. if mode&O_CREAT != 0 {
  472. access |= GENERIC_WRITE
  473. }
  474. if mode&O_APPEND != 0 {
  475. access &^= GENERIC_WRITE
  476. access |= FILE_APPEND_DATA
  477. }
  478. sharemode := uint32(FILE_SHARE_READ | FILE_SHARE_WRITE)
  479. var sa *SecurityAttributes
  480. if mode&O_CLOEXEC == 0 {
  481. sa = makeInheritSa()
  482. }
  483. var createmode uint32
  484. switch {
  485. case mode&(O_CREAT|O_EXCL) == (O_CREAT | O_EXCL):
  486. createmode = CREATE_NEW
  487. case mode&(O_CREAT|O_TRUNC) == (O_CREAT | O_TRUNC):
  488. createmode = CREATE_ALWAYS
  489. case mode&O_CREAT == O_CREAT:
  490. createmode = OPEN_ALWAYS
  491. case mode&O_TRUNC == O_TRUNC:
  492. createmode = TRUNCATE_EXISTING
  493. default:
  494. createmode = OPEN_EXISTING
  495. }
  496. var attrs uint32 = FILE_ATTRIBUTE_NORMAL
  497. if perm&S_IWRITE == 0 {
  498. attrs = FILE_ATTRIBUTE_READONLY
  499. }
  500. h, e := CreateFile(pathp, access, sharemode, sa, createmode, attrs, 0)
  501. return h, e
  502. }
  503. func Read(fd Handle, p []byte) (n int, err error) {
  504. var done uint32
  505. e := ReadFile(fd, p, &done, nil)
  506. if e != nil {
  507. if e == ERROR_BROKEN_PIPE {
  508. // NOTE(brainman): work around ERROR_BROKEN_PIPE is returned on reading EOF from stdin
  509. return 0, nil
  510. }
  511. return 0, e
  512. }
  513. return int(done), nil
  514. }
  515. func Write(fd Handle, p []byte) (n int, err error) {
  516. if raceenabled {
  517. raceReleaseMerge(unsafe.Pointer(&ioSync))
  518. }
  519. var done uint32
  520. e := WriteFile(fd, p, &done, nil)
  521. if e != nil {
  522. return 0, e
  523. }
  524. return int(done), nil
  525. }
  526. func ReadFile(fd Handle, p []byte, done *uint32, overlapped *Overlapped) error {
  527. err := readFile(fd, p, done, overlapped)
  528. if raceenabled {
  529. if *done > 0 {
  530. raceWriteRange(unsafe.Pointer(&p[0]), int(*done))
  531. }
  532. raceAcquire(unsafe.Pointer(&ioSync))
  533. }
  534. return err
  535. }
  536. func WriteFile(fd Handle, p []byte, done *uint32, overlapped *Overlapped) error {
  537. if raceenabled {
  538. raceReleaseMerge(unsafe.Pointer(&ioSync))
  539. }
  540. err := writeFile(fd, p, done, overlapped)
  541. if raceenabled && *done > 0 {
  542. raceReadRange(unsafe.Pointer(&p[0]), int(*done))
  543. }
  544. return err
  545. }
  546. var ioSync int64
  547. func Seek(fd Handle, offset int64, whence int) (newoffset int64, err error) {
  548. var w uint32
  549. switch whence {
  550. case 0:
  551. w = FILE_BEGIN
  552. case 1:
  553. w = FILE_CURRENT
  554. case 2:
  555. w = FILE_END
  556. }
  557. hi := int32(offset >> 32)
  558. lo := int32(offset)
  559. // use GetFileType to check pipe, pipe can't do seek
  560. ft, _ := GetFileType(fd)
  561. if ft == FILE_TYPE_PIPE {
  562. return 0, syscall.EPIPE
  563. }
  564. rlo, e := SetFilePointer(fd, lo, &hi, w)
  565. if e != nil {
  566. return 0, e
  567. }
  568. return int64(hi)<<32 + int64(rlo), nil
  569. }
  570. func Close(fd Handle) (err error) {
  571. return CloseHandle(fd)
  572. }
  573. var (
  574. Stdin = getStdHandle(STD_INPUT_HANDLE)
  575. Stdout = getStdHandle(STD_OUTPUT_HANDLE)
  576. Stderr = getStdHandle(STD_ERROR_HANDLE)
  577. )
  578. func getStdHandle(stdhandle uint32) (fd Handle) {
  579. r, _ := GetStdHandle(stdhandle)
  580. return r
  581. }
  582. const ImplementsGetwd = true
  583. func Getwd() (wd string, err error) {
  584. b := make([]uint16, 300)
  585. n, e := GetCurrentDirectory(uint32(len(b)), &b[0])
  586. if e != nil {
  587. return "", e
  588. }
  589. return string(utf16.Decode(b[0:n])), nil
  590. }
  591. func Chdir(path string) (err error) {
  592. pathp, err := UTF16PtrFromString(path)
  593. if err != nil {
  594. return err
  595. }
  596. return SetCurrentDirectory(pathp)
  597. }
  598. func Mkdir(path string, mode uint32) (err error) {
  599. pathp, err := UTF16PtrFromString(path)
  600. if err != nil {
  601. return err
  602. }
  603. return CreateDirectory(pathp, nil)
  604. }
  605. func Rmdir(path string) (err error) {
  606. pathp, err := UTF16PtrFromString(path)
  607. if err != nil {
  608. return err
  609. }
  610. return RemoveDirectory(pathp)
  611. }
  612. func Unlink(path string) (err error) {
  613. pathp, err := UTF16PtrFromString(path)
  614. if err != nil {
  615. return err
  616. }
  617. return DeleteFile(pathp)
  618. }
  619. func Rename(oldpath, newpath string) (err error) {
  620. from, err := UTF16PtrFromString(oldpath)
  621. if err != nil {
  622. return err
  623. }
  624. to, err := UTF16PtrFromString(newpath)
  625. if err != nil {
  626. return err
  627. }
  628. return MoveFileEx(from, to, MOVEFILE_REPLACE_EXISTING)
  629. }
  630. func ComputerName() (name string, err error) {
  631. var n uint32 = MAX_COMPUTERNAME_LENGTH + 1
  632. b := make([]uint16, n)
  633. e := GetComputerName(&b[0], &n)
  634. if e != nil {
  635. return "", e
  636. }
  637. return string(utf16.Decode(b[0:n])), nil
  638. }
  639. func DurationSinceBoot() time.Duration {
  640. return time.Duration(getTickCount64()) * time.Millisecond
  641. }
  642. func Ftruncate(fd Handle, length int64) (err error) {
  643. curoffset, e := Seek(fd, 0, 1)
  644. if e != nil {
  645. return e
  646. }
  647. defer Seek(fd, curoffset, 0)
  648. _, e = Seek(fd, length, 0)
  649. if e != nil {
  650. return e
  651. }
  652. e = SetEndOfFile(fd)
  653. if e != nil {
  654. return e
  655. }
  656. return nil
  657. }
  658. func Gettimeofday(tv *Timeval) (err error) {
  659. var ft Filetime
  660. GetSystemTimeAsFileTime(&ft)
  661. *tv = NsecToTimeval(ft.Nanoseconds())
  662. return nil
  663. }
  664. func Pipe(p []Handle) (err error) {
  665. if len(p) != 2 {
  666. return syscall.EINVAL
  667. }
  668. var r, w Handle
  669. e := CreatePipe(&r, &w, makeInheritSa(), 0)
  670. if e != nil {
  671. return e
  672. }
  673. p[0] = r
  674. p[1] = w
  675. return nil
  676. }
  677. func Utimes(path string, tv []Timeval) (err error) {
  678. if len(tv) != 2 {
  679. return syscall.EINVAL
  680. }
  681. pathp, e := UTF16PtrFromString(path)
  682. if e != nil {
  683. return e
  684. }
  685. h, e := CreateFile(pathp,
  686. FILE_WRITE_ATTRIBUTES, FILE_SHARE_WRITE, nil,
  687. OPEN_EXISTING, FILE_FLAG_BACKUP_SEMANTICS, 0)
  688. if e != nil {
  689. return e
  690. }
  691. defer Close(h)
  692. a := NsecToFiletime(tv[0].Nanoseconds())
  693. w := NsecToFiletime(tv[1].Nanoseconds())
  694. return SetFileTime(h, nil, &a, &w)
  695. }
  696. func UtimesNano(path string, ts []Timespec) (err error) {
  697. if len(ts) != 2 {
  698. return syscall.EINVAL
  699. }
  700. pathp, e := UTF16PtrFromString(path)
  701. if e != nil {
  702. return e
  703. }
  704. h, e := CreateFile(pathp,
  705. FILE_WRITE_ATTRIBUTES, FILE_SHARE_WRITE, nil,
  706. OPEN_EXISTING, FILE_FLAG_BACKUP_SEMANTICS, 0)
  707. if e != nil {
  708. return e
  709. }
  710. defer Close(h)
  711. a := NsecToFiletime(TimespecToNsec(ts[0]))
  712. w := NsecToFiletime(TimespecToNsec(ts[1]))
  713. return SetFileTime(h, nil, &a, &w)
  714. }
  715. func Fsync(fd Handle) (err error) {
  716. return FlushFileBuffers(fd)
  717. }
  718. func Chmod(path string, mode uint32) (err error) {
  719. p, e := UTF16PtrFromString(path)
  720. if e != nil {
  721. return e
  722. }
  723. attrs, e := GetFileAttributes(p)
  724. if e != nil {
  725. return e
  726. }
  727. if mode&S_IWRITE != 0 {
  728. attrs &^= FILE_ATTRIBUTE_READONLY
  729. } else {
  730. attrs |= FILE_ATTRIBUTE_READONLY
  731. }
  732. return SetFileAttributes(p, attrs)
  733. }
  734. func LoadGetSystemTimePreciseAsFileTime() error {
  735. return procGetSystemTimePreciseAsFileTime.Find()
  736. }
  737. func LoadCancelIoEx() error {
  738. return procCancelIoEx.Find()
  739. }
  740. func LoadSetFileCompletionNotificationModes() error {
  741. return procSetFileCompletionNotificationModes.Find()
  742. }
  743. func WaitForMultipleObjects(handles []Handle, waitAll bool, waitMilliseconds uint32) (event uint32, err error) {
  744. // Every other win32 array API takes arguments as "pointer, count", except for this function. So we
  745. // can't declare it as a usual [] type, because mksyscall will use the opposite order. We therefore
  746. // trivially stub this ourselves.
  747. var handlePtr *Handle
  748. if len(handles) > 0 {
  749. handlePtr = &handles[0]
  750. }
  751. return waitForMultipleObjects(uint32(len(handles)), uintptr(unsafe.Pointer(handlePtr)), waitAll, waitMilliseconds)
  752. }
  753. // net api calls
  754. const socket_error = uintptr(^uint32(0))
  755. //sys WSAStartup(verreq uint32, data *WSAData) (sockerr error) = ws2_32.WSAStartup
  756. //sys WSACleanup() (err error) [failretval==socket_error] = ws2_32.WSACleanup
  757. //sys WSAIoctl(s Handle, iocc uint32, inbuf *byte, cbif uint32, outbuf *byte, cbob uint32, cbbr *uint32, overlapped *Overlapped, completionRoutine uintptr) (err error) [failretval==socket_error] = ws2_32.WSAIoctl
  758. //sys socket(af int32, typ int32, protocol int32) (handle Handle, err error) [failretval==InvalidHandle] = ws2_32.socket
  759. //sys sendto(s Handle, buf []byte, flags int32, to unsafe.Pointer, tolen int32) (err error) [failretval==socket_error] = ws2_32.sendto
  760. //sys recvfrom(s Handle, buf []byte, flags int32, from *RawSockaddrAny, fromlen *int32) (n int32, err error) [failretval==-1] = ws2_32.recvfrom
  761. //sys Setsockopt(s Handle, level int32, optname int32, optval *byte, optlen int32) (err error) [failretval==socket_error] = ws2_32.setsockopt
  762. //sys Getsockopt(s Handle, level int32, optname int32, optval *byte, optlen *int32) (err error) [failretval==socket_error] = ws2_32.getsockopt
  763. //sys bind(s Handle, name unsafe.Pointer, namelen int32) (err error) [failretval==socket_error] = ws2_32.bind
  764. //sys connect(s Handle, name unsafe.Pointer, namelen int32) (err error) [failretval==socket_error] = ws2_32.connect
  765. //sys getsockname(s Handle, rsa *RawSockaddrAny, addrlen *int32) (err error) [failretval==socket_error] = ws2_32.getsockname
  766. //sys getpeername(s Handle, rsa *RawSockaddrAny, addrlen *int32) (err error) [failretval==socket_error] = ws2_32.getpeername
  767. //sys listen(s Handle, backlog int32) (err error) [failretval==socket_error] = ws2_32.listen
  768. //sys shutdown(s Handle, how int32) (err error) [failretval==socket_error] = ws2_32.shutdown
  769. //sys Closesocket(s Handle) (err error) [failretval==socket_error] = ws2_32.closesocket
  770. //sys AcceptEx(ls Handle, as Handle, buf *byte, rxdatalen uint32, laddrlen uint32, raddrlen uint32, recvd *uint32, overlapped *Overlapped) (err error) = mswsock.AcceptEx
  771. //sys GetAcceptExSockaddrs(buf *byte, rxdatalen uint32, laddrlen uint32, raddrlen uint32, lrsa **RawSockaddrAny, lrsalen *int32, rrsa **RawSockaddrAny, rrsalen *int32) = mswsock.GetAcceptExSockaddrs
  772. //sys WSARecv(s Handle, bufs *WSABuf, bufcnt uint32, recvd *uint32, flags *uint32, overlapped *Overlapped, croutine *byte) (err error) [failretval==socket_error] = ws2_32.WSARecv
  773. //sys WSASend(s Handle, bufs *WSABuf, bufcnt uint32, sent *uint32, flags uint32, overlapped *Overlapped, croutine *byte) (err error) [failretval==socket_error] = ws2_32.WSASend
  774. //sys WSARecvFrom(s Handle, bufs *WSABuf, bufcnt uint32, recvd *uint32, flags *uint32, from *RawSockaddrAny, fromlen *int32, overlapped *Overlapped, croutine *byte) (err error) [failretval==socket_error] = ws2_32.WSARecvFrom
  775. //sys WSASendTo(s Handle, bufs *WSABuf, bufcnt uint32, sent *uint32, flags uint32, to *RawSockaddrAny, tolen int32, overlapped *Overlapped, croutine *byte) (err error) [failretval==socket_error] = ws2_32.WSASendTo
  776. //sys WSASocket(af int32, typ int32, protocol int32, protoInfo *WSAProtocolInfo, group uint32, flags uint32) (handle Handle, err error) [failretval==InvalidHandle] = ws2_32.WSASocketW
  777. //sys GetHostByName(name string) (h *Hostent, err error) [failretval==nil] = ws2_32.gethostbyname
  778. //sys GetServByName(name string, proto string) (s *Servent, err error) [failretval==nil] = ws2_32.getservbyname
  779. //sys Ntohs(netshort uint16) (u uint16) = ws2_32.ntohs
  780. //sys GetProtoByName(name string) (p *Protoent, err error) [failretval==nil] = ws2_32.getprotobyname
  781. //sys DnsQuery(name string, qtype uint16, options uint32, extra *byte, qrs **DNSRecord, pr *byte) (status error) = dnsapi.DnsQuery_W
  782. //sys DnsRecordListFree(rl *DNSRecord, freetype uint32) = dnsapi.DnsRecordListFree
  783. //sys DnsNameCompare(name1 *uint16, name2 *uint16) (same bool) = dnsapi.DnsNameCompare_W
  784. //sys GetAddrInfoW(nodename *uint16, servicename *uint16, hints *AddrinfoW, result **AddrinfoW) (sockerr error) = ws2_32.GetAddrInfoW
  785. //sys FreeAddrInfoW(addrinfo *AddrinfoW) = ws2_32.FreeAddrInfoW
  786. //sys GetIfEntry(pIfRow *MibIfRow) (errcode error) = iphlpapi.GetIfEntry
  787. //sys GetAdaptersInfo(ai *IpAdapterInfo, ol *uint32) (errcode error) = iphlpapi.GetAdaptersInfo
  788. //sys SetFileCompletionNotificationModes(handle Handle, flags uint8) (err error) = kernel32.SetFileCompletionNotificationModes
  789. //sys WSAEnumProtocols(protocols *int32, protocolBuffer *WSAProtocolInfo, bufferLength *uint32) (n int32, err error) [failretval==-1] = ws2_32.WSAEnumProtocolsW
  790. //sys WSAGetOverlappedResult(h Handle, o *Overlapped, bytes *uint32, wait bool, flags *uint32) (err error) = ws2_32.WSAGetOverlappedResult
  791. //sys GetAdaptersAddresses(family uint32, flags uint32, reserved uintptr, adapterAddresses *IpAdapterAddresses, sizePointer *uint32) (errcode error) = iphlpapi.GetAdaptersAddresses
  792. //sys GetACP() (acp uint32) = kernel32.GetACP
  793. //sys MultiByteToWideChar(codePage uint32, dwFlags uint32, str *byte, nstr int32, wchar *uint16, nwchar int32) (nwrite int32, err error) = kernel32.MultiByteToWideChar
  794. //sys getBestInterfaceEx(sockaddr unsafe.Pointer, pdwBestIfIndex *uint32) (errcode error) = iphlpapi.GetBestInterfaceEx
  795. // For testing: clients can set this flag to force
  796. // creation of IPv6 sockets to return EAFNOSUPPORT.
  797. var SocketDisableIPv6 bool
  798. type RawSockaddrInet4 struct {
  799. Family uint16
  800. Port uint16
  801. Addr [4]byte /* in_addr */
  802. Zero [8]uint8
  803. }
  804. type RawSockaddrInet6 struct {
  805. Family uint16
  806. Port uint16
  807. Flowinfo uint32
  808. Addr [16]byte /* in6_addr */
  809. Scope_id uint32
  810. }
  811. type RawSockaddr struct {
  812. Family uint16
  813. Data [14]int8
  814. }
  815. type RawSockaddrAny struct {
  816. Addr RawSockaddr
  817. Pad [100]int8
  818. }
  819. type Sockaddr interface {
  820. sockaddr() (ptr unsafe.Pointer, len int32, err error) // lowercase; only we can define Sockaddrs
  821. }
  822. type SockaddrInet4 struct {
  823. Port int
  824. Addr [4]byte
  825. raw RawSockaddrInet4
  826. }
  827. func (sa *SockaddrInet4) sockaddr() (unsafe.Pointer, int32, error) {
  828. if sa.Port < 0 || sa.Port > 0xFFFF {
  829. return nil, 0, syscall.EINVAL
  830. }
  831. sa.raw.Family = AF_INET
  832. p := (*[2]byte)(unsafe.Pointer(&sa.raw.Port))
  833. p[0] = byte(sa.Port >> 8)
  834. p[1] = byte(sa.Port)
  835. sa.raw.Addr = sa.Addr
  836. return unsafe.Pointer(&sa.raw), int32(unsafe.Sizeof(sa.raw)), nil
  837. }
  838. type SockaddrInet6 struct {
  839. Port int
  840. ZoneId uint32
  841. Addr [16]byte
  842. raw RawSockaddrInet6
  843. }
  844. func (sa *SockaddrInet6) sockaddr() (unsafe.Pointer, int32, error) {
  845. if sa.Port < 0 || sa.Port > 0xFFFF {
  846. return nil, 0, syscall.EINVAL
  847. }
  848. sa.raw.Family = AF_INET6
  849. p := (*[2]byte)(unsafe.Pointer(&sa.raw.Port))
  850. p[0] = byte(sa.Port >> 8)
  851. p[1] = byte(sa.Port)
  852. sa.raw.Scope_id = sa.ZoneId
  853. sa.raw.Addr = sa.Addr
  854. return unsafe.Pointer(&sa.raw), int32(unsafe.Sizeof(sa.raw)), nil
  855. }
  856. type RawSockaddrUnix struct {
  857. Family uint16
  858. Path [UNIX_PATH_MAX]int8
  859. }
  860. type SockaddrUnix struct {
  861. Name string
  862. raw RawSockaddrUnix
  863. }
  864. func (sa *SockaddrUnix) sockaddr() (unsafe.Pointer, int32, error) {
  865. name := sa.Name
  866. n := len(name)
  867. if n > len(sa.raw.Path) {
  868. return nil, 0, syscall.EINVAL
  869. }
  870. if n == len(sa.raw.Path) && name[0] != '@' {
  871. return nil, 0, syscall.EINVAL
  872. }
  873. sa.raw.Family = AF_UNIX
  874. for i := 0; i < n; i++ {
  875. sa.raw.Path[i] = int8(name[i])
  876. }
  877. // length is family (uint16), name, NUL.
  878. sl := int32(2)
  879. if n > 0 {
  880. sl += int32(n) + 1
  881. }
  882. if sa.raw.Path[0] == '@' {
  883. sa.raw.Path[0] = 0
  884. // Don't count trailing NUL for abstract address.
  885. sl--
  886. }
  887. return unsafe.Pointer(&sa.raw), sl, nil
  888. }
  889. type RawSockaddrBth struct {
  890. AddressFamily [2]byte
  891. BtAddr [8]byte
  892. ServiceClassId [16]byte
  893. Port [4]byte
  894. }
  895. type SockaddrBth struct {
  896. BtAddr uint64
  897. ServiceClassId GUID
  898. Port uint32
  899. raw RawSockaddrBth
  900. }
  901. func (sa *SockaddrBth) sockaddr() (unsafe.Pointer, int32, error) {
  902. family := AF_BTH
  903. sa.raw = RawSockaddrBth{
  904. AddressFamily: *(*[2]byte)(unsafe.Pointer(&family)),
  905. BtAddr: *(*[8]byte)(unsafe.Pointer(&sa.BtAddr)),
  906. Port: *(*[4]byte)(unsafe.Pointer(&sa.Port)),
  907. ServiceClassId: *(*[16]byte)(unsafe.Pointer(&sa.ServiceClassId)),
  908. }
  909. return unsafe.Pointer(&sa.raw), int32(unsafe.Sizeof(sa.raw)), nil
  910. }
  911. func (rsa *RawSockaddrAny) Sockaddr() (Sockaddr, error) {
  912. switch rsa.Addr.Family {
  913. case AF_UNIX:
  914. pp := (*RawSockaddrUnix)(unsafe.Pointer(rsa))
  915. sa := new(SockaddrUnix)
  916. if pp.Path[0] == 0 {
  917. // "Abstract" Unix domain socket.
  918. // Rewrite leading NUL as @ for textual display.
  919. // (This is the standard convention.)
  920. // Not friendly to overwrite in place,
  921. // but the callers below don't care.
  922. pp.Path[0] = '@'
  923. }
  924. // Assume path ends at NUL.
  925. // This is not technically the Linux semantics for
  926. // abstract Unix domain sockets--they are supposed
  927. // to be uninterpreted fixed-size binary blobs--but
  928. // everyone uses this convention.
  929. n := 0
  930. for n < len(pp.Path) && pp.Path[n] != 0 {
  931. n++
  932. }
  933. bytes := (*[len(pp.Path)]byte)(unsafe.Pointer(&pp.Path[0]))[0:n]
  934. sa.Name = string(bytes)
  935. return sa, nil
  936. case AF_INET:
  937. pp := (*RawSockaddrInet4)(unsafe.Pointer(rsa))
  938. sa := new(SockaddrInet4)
  939. p := (*[2]byte)(unsafe.Pointer(&pp.Port))
  940. sa.Port = int(p[0])<<8 + int(p[1])
  941. sa.Addr = pp.Addr
  942. return sa, nil
  943. case AF_INET6:
  944. pp := (*RawSockaddrInet6)(unsafe.Pointer(rsa))
  945. sa := new(SockaddrInet6)
  946. p := (*[2]byte)(unsafe.Pointer(&pp.Port))
  947. sa.Port = int(p[0])<<8 + int(p[1])
  948. sa.ZoneId = pp.Scope_id
  949. sa.Addr = pp.Addr
  950. return sa, nil
  951. }
  952. return nil, syscall.EAFNOSUPPORT
  953. }
  954. func Socket(domain, typ, proto int) (fd Handle, err error) {
  955. if domain == AF_INET6 && SocketDisableIPv6 {
  956. return InvalidHandle, syscall.EAFNOSUPPORT
  957. }
  958. return socket(int32(domain), int32(typ), int32(proto))
  959. }
  960. func SetsockoptInt(fd Handle, level, opt int, value int) (err error) {
  961. v := int32(value)
  962. return Setsockopt(fd, int32(level), int32(opt), (*byte)(unsafe.Pointer(&v)), int32(unsafe.Sizeof(v)))
  963. }
  964. func Bind(fd Handle, sa Sockaddr) (err error) {
  965. ptr, n, err := sa.sockaddr()
  966. if err != nil {
  967. return err
  968. }
  969. return bind(fd, ptr, n)
  970. }
  971. func Connect(fd Handle, sa Sockaddr) (err error) {
  972. ptr, n, err := sa.sockaddr()
  973. if err != nil {
  974. return err
  975. }
  976. return connect(fd, ptr, n)
  977. }
  978. func GetBestInterfaceEx(sa Sockaddr, pdwBestIfIndex *uint32) (err error) {
  979. ptr, _, err := sa.sockaddr()
  980. if err != nil {
  981. return err
  982. }
  983. return getBestInterfaceEx(ptr, pdwBestIfIndex)
  984. }
  985. func Getsockname(fd Handle) (sa Sockaddr, err error) {
  986. var rsa RawSockaddrAny
  987. l := int32(unsafe.Sizeof(rsa))
  988. if err = getsockname(fd, &rsa, &l); err != nil {
  989. return
  990. }
  991. return rsa.Sockaddr()
  992. }
  993. func Getpeername(fd Handle) (sa Sockaddr, err error) {
  994. var rsa RawSockaddrAny
  995. l := int32(unsafe.Sizeof(rsa))
  996. if err = getpeername(fd, &rsa, &l); err != nil {
  997. return
  998. }
  999. return rsa.Sockaddr()
  1000. }
  1001. func Listen(s Handle, n int) (err error) {
  1002. return listen(s, int32(n))
  1003. }
  1004. func Shutdown(fd Handle, how int) (err error) {
  1005. return shutdown(fd, int32(how))
  1006. }
  1007. func WSASendto(s Handle, bufs *WSABuf, bufcnt uint32, sent *uint32, flags uint32, to Sockaddr, overlapped *Overlapped, croutine *byte) (err error) {
  1008. rsa, l, err := to.sockaddr()
  1009. if err != nil {
  1010. return err
  1011. }
  1012. return WSASendTo(s, bufs, bufcnt, sent, flags, (*RawSockaddrAny)(unsafe.Pointer(rsa)), l, overlapped, croutine)
  1013. }
  1014. func LoadGetAddrInfo() error {
  1015. return procGetAddrInfoW.Find()
  1016. }
  1017. var connectExFunc struct {
  1018. once sync.Once
  1019. addr uintptr
  1020. err error
  1021. }
  1022. func LoadConnectEx() error {
  1023. connectExFunc.once.Do(func() {
  1024. var s Handle
  1025. s, connectExFunc.err = Socket(AF_INET, SOCK_STREAM, IPPROTO_TCP)
  1026. if connectExFunc.err != nil {
  1027. return
  1028. }
  1029. defer CloseHandle(s)
  1030. var n uint32
  1031. connectExFunc.err = WSAIoctl(s,
  1032. SIO_GET_EXTENSION_FUNCTION_POINTER,
  1033. (*byte)(unsafe.Pointer(&WSAID_CONNECTEX)),
  1034. uint32(unsafe.Sizeof(WSAID_CONNECTEX)),
  1035. (*byte)(unsafe.Pointer(&connectExFunc.addr)),
  1036. uint32(unsafe.Sizeof(connectExFunc.addr)),
  1037. &n, nil, 0)
  1038. })
  1039. return connectExFunc.err
  1040. }
  1041. func connectEx(s Handle, name unsafe.Pointer, namelen int32, sendBuf *byte, sendDataLen uint32, bytesSent *uint32, overlapped *Overlapped) (err error) {
  1042. r1, _, e1 := syscall.Syscall9(connectExFunc.addr, 7, uintptr(s), uintptr(name), uintptr(namelen), uintptr(unsafe.Pointer(sendBuf)), uintptr(sendDataLen), uintptr(unsafe.Pointer(bytesSent)), uintptr(unsafe.Pointer(overlapped)), 0, 0)
  1043. if r1 == 0 {
  1044. if e1 != 0 {
  1045. err = error(e1)
  1046. } else {
  1047. err = syscall.EINVAL
  1048. }
  1049. }
  1050. return
  1051. }
  1052. func ConnectEx(fd Handle, sa Sockaddr, sendBuf *byte, sendDataLen uint32, bytesSent *uint32, overlapped *Overlapped) error {
  1053. err := LoadConnectEx()
  1054. if err != nil {
  1055. return errorspkg.New("failed to find ConnectEx: " + err.Error())
  1056. }
  1057. ptr, n, err := sa.sockaddr()
  1058. if err != nil {
  1059. return err
  1060. }
  1061. return connectEx(fd, ptr, n, sendBuf, sendDataLen, bytesSent, overlapped)
  1062. }
  1063. var sendRecvMsgFunc struct {
  1064. once sync.Once
  1065. sendAddr uintptr
  1066. recvAddr uintptr
  1067. err error
  1068. }
  1069. func loadWSASendRecvMsg() error {
  1070. sendRecvMsgFunc.once.Do(func() {
  1071. var s Handle
  1072. s, sendRecvMsgFunc.err = Socket(AF_INET, SOCK_DGRAM, IPPROTO_UDP)
  1073. if sendRecvMsgFunc.err != nil {
  1074. return
  1075. }
  1076. defer CloseHandle(s)
  1077. var n uint32
  1078. sendRecvMsgFunc.err = WSAIoctl(s,
  1079. SIO_GET_EXTENSION_FUNCTION_POINTER,
  1080. (*byte)(unsafe.Pointer(&WSAID_WSARECVMSG)),
  1081. uint32(unsafe.Sizeof(WSAID_WSARECVMSG)),
  1082. (*byte)(unsafe.Pointer(&sendRecvMsgFunc.recvAddr)),
  1083. uint32(unsafe.Sizeof(sendRecvMsgFunc.recvAddr)),
  1084. &n, nil, 0)
  1085. if sendRecvMsgFunc.err != nil {
  1086. return
  1087. }
  1088. sendRecvMsgFunc.err = WSAIoctl(s,
  1089. SIO_GET_EXTENSION_FUNCTION_POINTER,
  1090. (*byte)(unsafe.Pointer(&WSAID_WSASENDMSG)),
  1091. uint32(unsafe.Sizeof(WSAID_WSASENDMSG)),
  1092. (*byte)(unsafe.Pointer(&sendRecvMsgFunc.sendAddr)),
  1093. uint32(unsafe.Sizeof(sendRecvMsgFunc.sendAddr)),
  1094. &n, nil, 0)
  1095. })
  1096. return sendRecvMsgFunc.err
  1097. }
  1098. func WSASendMsg(fd Handle, msg *WSAMsg, flags uint32, bytesSent *uint32, overlapped *Overlapped, croutine *byte) error {
  1099. err := loadWSASendRecvMsg()
  1100. if err != nil {
  1101. return err
  1102. }
  1103. r1, _, e1 := syscall.Syscall6(sendRecvMsgFunc.sendAddr, 6, uintptr(fd), uintptr(unsafe.Pointer(msg)), uintptr(flags), uintptr(unsafe.Pointer(bytesSent)), uintptr(unsafe.Pointer(overlapped)), uintptr(unsafe.Pointer(croutine)))
  1104. if r1 == socket_error {
  1105. err = errnoErr(e1)
  1106. }
  1107. return err
  1108. }
  1109. func WSARecvMsg(fd Handle, msg *WSAMsg, bytesReceived *uint32, overlapped *Overlapped, croutine *byte) error {
  1110. err := loadWSASendRecvMsg()
  1111. if err != nil {
  1112. return err
  1113. }
  1114. r1, _, e1 := syscall.Syscall6(sendRecvMsgFunc.recvAddr, 5, uintptr(fd), uintptr(unsafe.Pointer(msg)), uintptr(unsafe.Pointer(bytesReceived)), uintptr(unsafe.Pointer(overlapped)), uintptr(unsafe.Pointer(croutine)), 0)
  1115. if r1 == socket_error {
  1116. err = errnoErr(e1)
  1117. }
  1118. return err
  1119. }
  1120. // Invented structures to support what package os expects.
  1121. type Rusage struct {
  1122. CreationTime Filetime
  1123. ExitTime Filetime
  1124. KernelTime Filetime
  1125. UserTime Filetime
  1126. }
  1127. type WaitStatus struct {
  1128. ExitCode uint32
  1129. }
  1130. func (w WaitStatus) Exited() bool { return true }
  1131. func (w WaitStatus) ExitStatus() int { return int(w.ExitCode) }
  1132. func (w WaitStatus) Signal() Signal { return -1 }
  1133. func (w WaitStatus) CoreDump() bool { return false }
  1134. func (w WaitStatus) Stopped() bool { return false }
  1135. func (w WaitStatus) Continued() bool { return false }
  1136. func (w WaitStatus) StopSignal() Signal { return -1 }
  1137. func (w WaitStatus) Signaled() bool { return false }
  1138. func (w WaitStatus) TrapCause() int { return -1 }
  1139. // Timespec is an invented structure on Windows, but here for
  1140. // consistency with the corresponding package for other operating systems.
  1141. type Timespec struct {
  1142. Sec int64
  1143. Nsec int64
  1144. }
  1145. func TimespecToNsec(ts Timespec) int64 { return int64(ts.Sec)*1e9 + int64(ts.Nsec) }
  1146. func NsecToTimespec(nsec int64) (ts Timespec) {
  1147. ts.Sec = nsec / 1e9
  1148. ts.Nsec = nsec % 1e9
  1149. return
  1150. }
  1151. // TODO(brainman): fix all needed for net
  1152. func Accept(fd Handle) (nfd Handle, sa Sockaddr, err error) { return 0, nil, syscall.EWINDOWS }
  1153. func Recvfrom(fd Handle, p []byte, flags int) (n int, from Sockaddr, err error) {
  1154. var rsa RawSockaddrAny
  1155. l := int32(unsafe.Sizeof(rsa))
  1156. n32, err := recvfrom(fd, p, int32(flags), &rsa, &l)
  1157. n = int(n32)
  1158. if err != nil {
  1159. return
  1160. }
  1161. from, err = rsa.Sockaddr()
  1162. return
  1163. }
  1164. func Sendto(fd Handle, p []byte, flags int, to Sockaddr) (err error) {
  1165. ptr, l, err := to.sockaddr()
  1166. if err != nil {
  1167. return err
  1168. }
  1169. return sendto(fd, p, int32(flags), ptr, l)
  1170. }
  1171. func SetsockoptTimeval(fd Handle, level, opt int, tv *Timeval) (err error) { return syscall.EWINDOWS }
  1172. // The Linger struct is wrong but we only noticed after Go 1.
  1173. // sysLinger is the real system call structure.
  1174. // BUG(brainman): The definition of Linger is not appropriate for direct use
  1175. // with Setsockopt and Getsockopt.
  1176. // Use SetsockoptLinger instead.
  1177. type Linger struct {
  1178. Onoff int32
  1179. Linger int32
  1180. }
  1181. type sysLinger struct {
  1182. Onoff uint16
  1183. Linger uint16
  1184. }
  1185. type IPMreq struct {
  1186. Multiaddr [4]byte /* in_addr */
  1187. Interface [4]byte /* in_addr */
  1188. }
  1189. type IPv6Mreq struct {
  1190. Multiaddr [16]byte /* in6_addr */
  1191. Interface uint32
  1192. }
  1193. func GetsockoptInt(fd Handle, level, opt int) (int, error) {
  1194. v := int32(0)
  1195. l := int32(unsafe.Sizeof(v))
  1196. err := Getsockopt(fd, int32(level), int32(opt), (*byte)(unsafe.Pointer(&v)), &l)
  1197. return int(v), err
  1198. }
  1199. func SetsockoptLinger(fd Handle, level, opt int, l *Linger) (err error) {
  1200. sys := sysLinger{Onoff: uint16(l.Onoff), Linger: uint16(l.Linger)}
  1201. return Setsockopt(fd, int32(level), int32(opt), (*byte)(unsafe.Pointer(&sys)), int32(unsafe.Sizeof(sys)))
  1202. }
  1203. func SetsockoptInet4Addr(fd Handle, level, opt int, value [4]byte) (err error) {
  1204. return Setsockopt(fd, int32(level), int32(opt), (*byte)(unsafe.Pointer(&value[0])), 4)
  1205. }
  1206. func SetsockoptIPMreq(fd Handle, level, opt int, mreq *IPMreq) (err error) {
  1207. return Setsockopt(fd, int32(level), int32(opt), (*byte)(unsafe.Pointer(mreq)), int32(unsafe.Sizeof(*mreq)))
  1208. }
  1209. func SetsockoptIPv6Mreq(fd Handle, level, opt int, mreq *IPv6Mreq) (err error) {
  1210. return syscall.EWINDOWS
  1211. }
  1212. func Getpid() (pid int) { return int(GetCurrentProcessId()) }
  1213. func FindFirstFile(name *uint16, data *Win32finddata) (handle Handle, err error) {
  1214. // NOTE(rsc): The Win32finddata struct is wrong for the system call:
  1215. // the two paths are each one uint16 short. Use the correct struct,
  1216. // a win32finddata1, and then copy the results out.
  1217. // There is no loss of expressivity here, because the final
  1218. // uint16, if it is used, is supposed to be a NUL, and Go doesn't need that.
  1219. // For Go 1.1, we might avoid the allocation of win32finddata1 here
  1220. // by adding a final Bug [2]uint16 field to the struct and then
  1221. // adjusting the fields in the result directly.
  1222. var data1 win32finddata1
  1223. handle, err = findFirstFile1(name, &data1)
  1224. if err == nil {
  1225. copyFindData(data, &data1)
  1226. }
  1227. return
  1228. }
  1229. func FindNextFile(handle Handle, data *Win32finddata) (err error) {
  1230. var data1 win32finddata1
  1231. err = findNextFile1(handle, &data1)
  1232. if err == nil {
  1233. copyFindData(data, &data1)
  1234. }
  1235. return
  1236. }
  1237. func getProcessEntry(pid int) (*ProcessEntry32, error) {
  1238. snapshot, err := CreateToolhelp32Snapshot(TH32CS_SNAPPROCESS, 0)
  1239. if err != nil {
  1240. return nil, err
  1241. }
  1242. defer CloseHandle(snapshot)
  1243. var procEntry ProcessEntry32
  1244. procEntry.Size = uint32(unsafe.Sizeof(procEntry))
  1245. if err = Process32First(snapshot, &procEntry); err != nil {
  1246. return nil, err
  1247. }
  1248. for {
  1249. if procEntry.ProcessID == uint32(pid) {
  1250. return &procEntry, nil
  1251. }
  1252. err = Process32Next(snapshot, &procEntry)
  1253. if err != nil {
  1254. return nil, err
  1255. }
  1256. }
  1257. }
  1258. func Getppid() (ppid int) {
  1259. pe, err := getProcessEntry(Getpid())
  1260. if err != nil {
  1261. return -1
  1262. }
  1263. return int(pe.ParentProcessID)
  1264. }
  1265. // TODO(brainman): fix all needed for os
  1266. func Fchdir(fd Handle) (err error) { return syscall.EWINDOWS }
  1267. func Link(oldpath, newpath string) (err error) { return syscall.EWINDOWS }
  1268. func Symlink(path, link string) (err error) { return syscall.EWINDOWS }
  1269. func Fchmod(fd Handle, mode uint32) (err error) { return syscall.EWINDOWS }
  1270. func Chown(path string, uid int, gid int) (err error) { return syscall.EWINDOWS }
  1271. func Lchown(path string, uid int, gid int) (err error) { return syscall.EWINDOWS }
  1272. func Fchown(fd Handle, uid int, gid int) (err error) { return syscall.EWINDOWS }
  1273. func Getuid() (uid int) { return -1 }
  1274. func Geteuid() (euid int) { return -1 }
  1275. func Getgid() (gid int) { return -1 }
  1276. func Getegid() (egid int) { return -1 }
  1277. func Getgroups() (gids []int, err error) { return nil, syscall.EWINDOWS }
  1278. type Signal int
  1279. func (s Signal) Signal() {}
  1280. func (s Signal) String() string {
  1281. if 0 <= s && int(s) < len(signals) {
  1282. str := signals[s]
  1283. if str != "" {
  1284. return str
  1285. }
  1286. }
  1287. return "signal " + itoa(int(s))
  1288. }
  1289. func LoadCreateSymbolicLink() error {
  1290. return procCreateSymbolicLinkW.Find()
  1291. }
  1292. // Readlink returns the destination of the named symbolic link.
  1293. func Readlink(path string, buf []byte) (n int, err error) {
  1294. fd, err := CreateFile(StringToUTF16Ptr(path), GENERIC_READ, 0, nil, OPEN_EXISTING,
  1295. FILE_FLAG_OPEN_REPARSE_POINT|FILE_FLAG_BACKUP_SEMANTICS, 0)
  1296. if err != nil {
  1297. return -1, err
  1298. }
  1299. defer CloseHandle(fd)
  1300. rdbbuf := make([]byte, MAXIMUM_REPARSE_DATA_BUFFER_SIZE)
  1301. var bytesReturned uint32
  1302. err = DeviceIoControl(fd, FSCTL_GET_REPARSE_POINT, nil, 0, &rdbbuf[0], uint32(len(rdbbuf)), &bytesReturned, nil)
  1303. if err != nil {
  1304. return -1, err
  1305. }
  1306. rdb := (*reparseDataBuffer)(unsafe.Pointer(&rdbbuf[0]))
  1307. var s string
  1308. switch rdb.ReparseTag {
  1309. case IO_REPARSE_TAG_SYMLINK:
  1310. data := (*symbolicLinkReparseBuffer)(unsafe.Pointer(&rdb.reparseBuffer))
  1311. p := (*[0xffff]uint16)(unsafe.Pointer(&data.PathBuffer[0]))
  1312. s = UTF16ToString(p[data.PrintNameOffset/2 : (data.PrintNameLength-data.PrintNameOffset)/2])
  1313. case IO_REPARSE_TAG_MOUNT_POINT:
  1314. data := (*mountPointReparseBuffer)(unsafe.Pointer(&rdb.reparseBuffer))
  1315. p := (*[0xffff]uint16)(unsafe.Pointer(&data.PathBuffer[0]))
  1316. s = UTF16ToString(p[data.PrintNameOffset/2 : (data.PrintNameLength-data.PrintNameOffset)/2])
  1317. default:
  1318. // the path is not a symlink or junction but another type of reparse
  1319. // point
  1320. return -1, syscall.ENOENT
  1321. }
  1322. n = copy(buf, []byte(s))
  1323. return n, nil
  1324. }
  1325. // GUIDFromString parses a string in the form of
  1326. // "{XXXXXX-XXXX-XXXX-XXXX-XXXXXXXXXXXX}" into a GUID.
  1327. func GUIDFromString(str string) (GUID, error) {
  1328. guid := GUID{}
  1329. str16, err := syscall.UTF16PtrFromString(str)
  1330. if err != nil {
  1331. return guid, err
  1332. }
  1333. err = clsidFromString(str16, &guid)
  1334. if err != nil {
  1335. return guid, err
  1336. }
  1337. return guid, nil
  1338. }
  1339. // GenerateGUID creates a new random GUID.
  1340. func GenerateGUID() (GUID, error) {
  1341. guid := GUID{}
  1342. err := coCreateGuid(&guid)
  1343. if err != nil {
  1344. return guid, err
  1345. }
  1346. return guid, nil
  1347. }
  1348. // String returns the canonical string form of the GUID,
  1349. // in the form of "{XXXXXX-XXXX-XXXX-XXXX-XXXXXXXXXXXX}".
  1350. func (guid GUID) String() string {
  1351. var str [100]uint16
  1352. chars := stringFromGUID2(&guid, &str[0], int32(len(str)))
  1353. if chars <= 1 {
  1354. return ""
  1355. }
  1356. return string(utf16.Decode(str[:chars-1]))
  1357. }
  1358. // KnownFolderPath returns a well-known folder path for the current user, specified by one of
  1359. // the FOLDERID_ constants, and chosen and optionally created based on a KF_ flag.
  1360. func KnownFolderPath(folderID *KNOWNFOLDERID, flags uint32) (string, error) {
  1361. return Token(0).KnownFolderPath(folderID, flags)
  1362. }
  1363. // KnownFolderPath returns a well-known folder path for the user token, specified by one of
  1364. // the FOLDERID_ constants, and chosen and optionally created based on a KF_ flag.
  1365. func (t Token) KnownFolderPath(folderID *KNOWNFOLDERID, flags uint32) (string, error) {
  1366. var p *uint16
  1367. err := shGetKnownFolderPath(folderID, flags, t, &p)
  1368. if err != nil {
  1369. return "", err
  1370. }
  1371. defer CoTaskMemFree(unsafe.Pointer(p))
  1372. return UTF16PtrToString(p), nil
  1373. }
  1374. // RtlGetVersion returns the version of the underlying operating system, ignoring
  1375. // manifest semantics but is affected by the application compatibility layer.
  1376. func RtlGetVersion() *OsVersionInfoEx {
  1377. info := &OsVersionInfoEx{}
  1378. info.osVersionInfoSize = uint32(unsafe.Sizeof(*info))
  1379. // According to documentation, this function always succeeds.
  1380. // The function doesn't even check the validity of the
  1381. // osVersionInfoSize member. Disassembling ntdll.dll indicates
  1382. // that the documentation is indeed correct about that.
  1383. _ = rtlGetVersion(info)
  1384. return info
  1385. }
  1386. // RtlGetNtVersionNumbers returns the version of the underlying operating system,
  1387. // ignoring manifest semantics and the application compatibility layer.
  1388. func RtlGetNtVersionNumbers() (majorVersion, minorVersion, buildNumber uint32) {
  1389. rtlGetNtVersionNumbers(&majorVersion, &minorVersion, &buildNumber)
  1390. buildNumber &= 0xffff
  1391. return
  1392. }
  1393. // GetProcessPreferredUILanguages retrieves the process preferred UI languages.
  1394. func GetProcessPreferredUILanguages(flags uint32) ([]string, error) {
  1395. return getUILanguages(flags, getProcessPreferredUILanguages)
  1396. }
  1397. // GetThreadPreferredUILanguages retrieves the thread preferred UI languages for the current thread.
  1398. func GetThreadPreferredUILanguages(flags uint32) ([]string, error) {
  1399. return getUILanguages(flags, getThreadPreferredUILanguages)
  1400. }
  1401. // GetUserPreferredUILanguages retrieves information about the user preferred UI languages.
  1402. func GetUserPreferredUILanguages(flags uint32) ([]string, error) {
  1403. return getUILanguages(flags, getUserPreferredUILanguages)
  1404. }
  1405. // GetSystemPreferredUILanguages retrieves the system preferred UI languages.
  1406. func GetSystemPreferredUILanguages(flags uint32) ([]string, error) {
  1407. return getUILanguages(flags, getSystemPreferredUILanguages)
  1408. }
  1409. func getUILanguages(flags uint32, f func(flags uint32, numLanguages *uint32, buf *uint16, bufSize *uint32) error) ([]string, error) {
  1410. size := uint32(128)
  1411. for {
  1412. var numLanguages uint32
  1413. buf := make([]uint16, size)
  1414. err := f(flags, &numLanguages, &buf[0], &size)
  1415. if err == ERROR_INSUFFICIENT_BUFFER {
  1416. continue
  1417. }
  1418. if err != nil {
  1419. return nil, err
  1420. }
  1421. buf = buf[:size]
  1422. if numLanguages == 0 || len(buf) == 0 { // GetProcessPreferredUILanguages may return numLanguages==0 with "\0\0"
  1423. return []string{}, nil
  1424. }
  1425. if buf[len(buf)-1] == 0 {
  1426. buf = buf[:len(buf)-1] // remove terminating null
  1427. }
  1428. languages := make([]string, 0, numLanguages)
  1429. from := 0
  1430. for i, c := range buf {
  1431. if c == 0 {
  1432. languages = append(languages, string(utf16.Decode(buf[from:i])))
  1433. from = i + 1
  1434. }
  1435. }
  1436. return languages, nil
  1437. }
  1438. }
  1439. func SetConsoleCursorPosition(console Handle, position Coord) error {
  1440. return setConsoleCursorPosition(console, *((*uint32)(unsafe.Pointer(&position))))
  1441. }
  1442. func (s NTStatus) Errno() syscall.Errno {
  1443. return rtlNtStatusToDosErrorNoTeb(s)
  1444. }
  1445. func langID(pri, sub uint16) uint32 { return uint32(sub)<<10 | uint32(pri) }
  1446. func (s NTStatus) Error() string {
  1447. b := make([]uint16, 300)
  1448. n, err := FormatMessage(FORMAT_MESSAGE_FROM_SYSTEM|FORMAT_MESSAGE_FROM_HMODULE|FORMAT_MESSAGE_ARGUMENT_ARRAY, modntdll.Handle(), uint32(s), langID(LANG_ENGLISH, SUBLANG_ENGLISH_US), b, nil)
  1449. if err != nil {
  1450. return fmt.Sprintf("NTSTATUS 0x%08x", uint32(s))
  1451. }
  1452. // trim terminating \r and \n
  1453. for ; n > 0 && (b[n-1] == '\n' || b[n-1] == '\r'); n-- {
  1454. }
  1455. return string(utf16.Decode(b[:n]))
  1456. }
  1457. // NewNTUnicodeString returns a new NTUnicodeString structure for use with native
  1458. // NT APIs that work over the NTUnicodeString type. Note that most Windows APIs
  1459. // do not use NTUnicodeString, and instead UTF16PtrFromString should be used for
  1460. // the more common *uint16 string type.
  1461. func NewNTUnicodeString(s string) (*NTUnicodeString, error) {
  1462. var u NTUnicodeString
  1463. s16, err := UTF16PtrFromString(s)
  1464. if err != nil {
  1465. return nil, err
  1466. }
  1467. RtlInitUnicodeString(&u, s16)
  1468. return &u, nil
  1469. }
  1470. // Slice returns a uint16 slice that aliases the data in the NTUnicodeString.
  1471. func (s *NTUnicodeString) Slice() []uint16 {
  1472. var slice []uint16
  1473. hdr := (*unsafeheader.Slice)(unsafe.Pointer(&slice))
  1474. hdr.Data = unsafe.Pointer(s.Buffer)
  1475. hdr.Len = int(s.Length)
  1476. hdr.Cap = int(s.MaximumLength)
  1477. return slice
  1478. }
  1479. func (s *NTUnicodeString) String() string {
  1480. return UTF16ToString(s.Slice())
  1481. }
  1482. // NewNTString returns a new NTString structure for use with native
  1483. // NT APIs that work over the NTString type. Note that most Windows APIs
  1484. // do not use NTString, and instead UTF16PtrFromString should be used for
  1485. // the more common *uint16 string type.
  1486. func NewNTString(s string) (*NTString, error) {
  1487. var nts NTString
  1488. s8, err := BytePtrFromString(s)
  1489. if err != nil {
  1490. return nil, err
  1491. }
  1492. RtlInitString(&nts, s8)
  1493. return &nts, nil
  1494. }
  1495. // Slice returns a byte slice that aliases the data in the NTString.
  1496. func (s *NTString) Slice() []byte {
  1497. var slice []byte
  1498. hdr := (*unsafeheader.Slice)(unsafe.Pointer(&slice))
  1499. hdr.Data = unsafe.Pointer(s.Buffer)
  1500. hdr.Len = int(s.Length)
  1501. hdr.Cap = int(s.MaximumLength)
  1502. return slice
  1503. }
  1504. func (s *NTString) String() string {
  1505. return ByteSliceToString(s.Slice())
  1506. }
  1507. // FindResource resolves a resource of the given name and resource type.
  1508. func FindResource(module Handle, name, resType ResourceIDOrString) (Handle, error) {
  1509. var namePtr, resTypePtr uintptr
  1510. var name16, resType16 *uint16
  1511. var err error
  1512. resolvePtr := func(i interface{}, keep **uint16) (uintptr, error) {
  1513. switch v := i.(type) {
  1514. case string:
  1515. *keep, err = UTF16PtrFromString(v)
  1516. if err != nil {
  1517. return 0, err
  1518. }
  1519. return uintptr(unsafe.Pointer(*keep)), nil
  1520. case ResourceID:
  1521. return uintptr(v), nil
  1522. }
  1523. return 0, errorspkg.New("parameter must be a ResourceID or a string")
  1524. }
  1525. namePtr, err = resolvePtr(name, &name16)
  1526. if err != nil {
  1527. return 0, err
  1528. }
  1529. resTypePtr, err = resolvePtr(resType, &resType16)
  1530. if err != nil {
  1531. return 0, err
  1532. }
  1533. resInfo, err := findResource(module, namePtr, resTypePtr)
  1534. runtime.KeepAlive(name16)
  1535. runtime.KeepAlive(resType16)
  1536. return resInfo, err
  1537. }
  1538. func LoadResourceData(module, resInfo Handle) (data []byte, err error) {
  1539. size, err := SizeofResource(module, resInfo)
  1540. if err != nil {
  1541. return
  1542. }
  1543. resData, err := LoadResource(module, resInfo)
  1544. if err != nil {
  1545. return
  1546. }
  1547. ptr, err := LockResource(resData)
  1548. if err != nil {
  1549. return
  1550. }
  1551. h := (*unsafeheader.Slice)(unsafe.Pointer(&data))
  1552. h.Data = unsafe.Pointer(ptr)
  1553. h.Len = int(size)
  1554. h.Cap = int(size)
  1555. return
  1556. }
  1557. // PSAPI_WORKING_SET_EX_BLOCK contains extended working set information for a page.
  1558. type PSAPI_WORKING_SET_EX_BLOCK uint64
  1559. // Valid returns the validity of this page.
  1560. // If this bit is 1, the subsequent members are valid; otherwise they should be ignored.
  1561. func (b PSAPI_WORKING_SET_EX_BLOCK) Valid() bool {
  1562. return (b & 1) == 1
  1563. }
  1564. // ShareCount is the number of processes that share this page. The maximum value of this member is 7.
  1565. func (b PSAPI_WORKING_SET_EX_BLOCK) ShareCount() uint64 {
  1566. return b.intField(1, 3)
  1567. }
  1568. // Win32Protection is the memory protection attributes of the page. For a list of values, see
  1569. // https://docs.microsoft.com/en-us/windows/win32/memory/memory-protection-constants
  1570. func (b PSAPI_WORKING_SET_EX_BLOCK) Win32Protection() uint64 {
  1571. return b.intField(4, 11)
  1572. }
  1573. // Shared returns the shared status of this page.
  1574. // If this bit is 1, the page can be shared.
  1575. func (b PSAPI_WORKING_SET_EX_BLOCK) Shared() bool {
  1576. return (b & (1 << 15)) == 1
  1577. }
  1578. // Node is the NUMA node. The maximum value of this member is 63.
  1579. func (b PSAPI_WORKING_SET_EX_BLOCK) Node() uint64 {
  1580. return b.intField(16, 6)
  1581. }
  1582. // Locked returns the locked status of this page.
  1583. // If this bit is 1, the virtual page is locked in physical memory.
  1584. func (b PSAPI_WORKING_SET_EX_BLOCK) Locked() bool {
  1585. return (b & (1 << 22)) == 1
  1586. }
  1587. // LargePage returns the large page status of this page.
  1588. // If this bit is 1, the page is a large page.
  1589. func (b PSAPI_WORKING_SET_EX_BLOCK) LargePage() bool {
  1590. return (b & (1 << 23)) == 1
  1591. }
  1592. // Bad returns the bad status of this page.
  1593. // If this bit is 1, the page is has been reported as bad.
  1594. func (b PSAPI_WORKING_SET_EX_BLOCK) Bad() bool {
  1595. return (b & (1 << 31)) == 1
  1596. }
  1597. // intField extracts an integer field in the PSAPI_WORKING_SET_EX_BLOCK union.
  1598. func (b PSAPI_WORKING_SET_EX_BLOCK) intField(start, length int) uint64 {
  1599. var mask PSAPI_WORKING_SET_EX_BLOCK
  1600. for pos := start; pos < start+length; pos++ {
  1601. mask |= (1 << pos)
  1602. }
  1603. masked := b & mask
  1604. return uint64(masked >> start)
  1605. }
  1606. // PSAPI_WORKING_SET_EX_INFORMATION contains extended working set information for a process.
  1607. type PSAPI_WORKING_SET_EX_INFORMATION struct {
  1608. // The virtual address.
  1609. VirtualAddress Pointer
  1610. // A PSAPI_WORKING_SET_EX_BLOCK union that indicates the attributes of the page at VirtualAddress.
  1611. VirtualAttributes PSAPI_WORKING_SET_EX_BLOCK
  1612. }