324d6490f6
Review URL: http://codereview.chromium.org/115553 git-svn-id: svn://svn.chromium.org/chrome/trunk/src@16462 0039d316-1c4b-4281-b951-d872f2087c98
399 linhas
12 KiB
C++
399 linhas
12 KiB
C++
// Copyright (c) 2006-2008 The Chromium Authors. All rights reserved.
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// Use of this source code is governed by a BSD-style license that can be
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// found in the LICENSE file.
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#include "base/win_util.h"
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#include <sddl.h>
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#include "base/logging.h"
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#include "base/registry.h"
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#include "base/scoped_handle.h"
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#include "base/scoped_ptr.h"
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#include "base/string_util.h"
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namespace win_util {
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#define SIZEOF_STRUCT_WITH_SPECIFIED_LAST_MEMBER(struct_name, member) \
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offsetof(struct_name, member) + \
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(sizeof static_cast<struct_name*>(NULL)->member)
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#define NONCLIENTMETRICS_SIZE_PRE_VISTA \
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SIZEOF_STRUCT_WITH_SPECIFIED_LAST_MEMBER(NONCLIENTMETRICS, lfMessageFont)
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void GetNonClientMetrics(NONCLIENTMETRICS* metrics) {
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DCHECK(metrics);
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static const UINT SIZEOF_NONCLIENTMETRICS =
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(GetWinVersion() >= WINVERSION_VISTA) ?
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sizeof(NONCLIENTMETRICS) : NONCLIENTMETRICS_SIZE_PRE_VISTA;
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metrics->cbSize = SIZEOF_NONCLIENTMETRICS;
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const bool success = !!SystemParametersInfo(SPI_GETNONCLIENTMETRICS,
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SIZEOF_NONCLIENTMETRICS, metrics,
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0);
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DCHECK(success);
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}
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WinVersion GetWinVersion() {
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static bool checked_version = false;
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static WinVersion win_version = WINVERSION_PRE_2000;
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if (!checked_version) {
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OSVERSIONINFOEX version_info;
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version_info.dwOSVersionInfoSize = sizeof version_info;
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GetVersionEx(reinterpret_cast<OSVERSIONINFO*>(&version_info));
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if (version_info.dwMajorVersion == 5) {
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switch (version_info.dwMinorVersion) {
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case 0:
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win_version = WINVERSION_2000;
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break;
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case 1:
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win_version = WINVERSION_XP;
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break;
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case 2:
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default:
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win_version = WINVERSION_SERVER_2003;
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break;
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}
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} else if (version_info.dwMajorVersion == 6) {
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if (version_info.wProductType != VER_NT_WORKSTATION) {
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// 2008 is 6.0, and 2008 R2 is 6.1.
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win_version = WINVERSION_2008;
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} else {
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if (version_info.dwMinorVersion == 0) {
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win_version = WINVERSION_VISTA;
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} else {
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win_version = WINVERSION_WIN7;
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}
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}
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} else if (version_info.dwMajorVersion > 6) {
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win_version = WINVERSION_WIN7;
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}
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checked_version = true;
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}
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return win_version;
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}
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void GetServicePackLevel(int* major, int* minor) {
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DCHECK(major && minor);
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static bool checked_version = false;
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static int service_pack_major = -1;
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static int service_pack_minor = -1;
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if (!checked_version) {
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OSVERSIONINFOEX version_info = {0};
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version_info.dwOSVersionInfoSize = sizeof(version_info);
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GetVersionEx(reinterpret_cast<OSVERSIONINFOW*>(&version_info));
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service_pack_major = version_info.wServicePackMajor;
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service_pack_minor = version_info.wServicePackMinor;
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checked_version = true;
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}
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*major = service_pack_major;
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*minor = service_pack_minor;
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}
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bool AddAccessToKernelObject(HANDLE handle, WELL_KNOWN_SID_TYPE known_sid,
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ACCESS_MASK access) {
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PSECURITY_DESCRIPTOR descriptor = NULL;
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PACL old_dacl = NULL;
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PACL new_dacl = NULL;
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if (ERROR_SUCCESS != GetSecurityInfo(handle, SE_KERNEL_OBJECT,
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DACL_SECURITY_INFORMATION, NULL, NULL, &old_dacl, NULL,
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&descriptor))
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return false;
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BYTE sid[SECURITY_MAX_SID_SIZE] = {0};
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DWORD size_sid = SECURITY_MAX_SID_SIZE;
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if (known_sid == WinSelfSid) {
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// We hijack WinSelfSid when we want to add the current user instead of
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// a known sid.
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HANDLE token = NULL;
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if (!OpenProcessToken(GetCurrentProcess(), TOKEN_ALL_ACCESS, &token)) {
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LocalFree(descriptor);
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return false;
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}
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DWORD size = sizeof(TOKEN_USER) + size_sid;
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TOKEN_USER* token_user = reinterpret_cast<TOKEN_USER*>(new BYTE[size]);
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scoped_ptr<TOKEN_USER> token_user_ptr(token_user);
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BOOL ret = GetTokenInformation(token, TokenUser, token_user, size, &size);
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CloseHandle(token);
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if (!ret) {
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LocalFree(descriptor);
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return false;
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}
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memcpy(sid, token_user->User.Sid, size_sid);
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} else {
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if (!CreateWellKnownSid(known_sid , NULL, sid, &size_sid)) {
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LocalFree(descriptor);
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return false;
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}
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}
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EXPLICIT_ACCESS new_access = {0};
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new_access.grfAccessMode = GRANT_ACCESS;
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new_access.grfAccessPermissions = access;
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new_access.grfInheritance = NO_INHERITANCE;
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new_access.Trustee.pMultipleTrustee = NULL;
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new_access.Trustee.MultipleTrusteeOperation = NO_MULTIPLE_TRUSTEE;
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new_access.Trustee.TrusteeForm = TRUSTEE_IS_SID;
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new_access.Trustee.ptstrName = reinterpret_cast<LPWSTR>(&sid);
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if (ERROR_SUCCESS != SetEntriesInAcl(1, &new_access, old_dacl, &new_dacl)) {
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LocalFree(descriptor);
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return false;
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}
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DWORD result = SetSecurityInfo(handle, SE_KERNEL_OBJECT,
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DACL_SECURITY_INFORMATION, NULL, NULL,
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new_dacl, NULL);
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LocalFree(new_dacl);
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LocalFree(descriptor);
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if (ERROR_SUCCESS != result)
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return false;
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return true;
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}
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bool GetUserSidString(std::wstring* user_sid) {
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// Get the current token.
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HANDLE token = NULL;
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if (!::OpenProcessToken(::GetCurrentProcess(), TOKEN_QUERY, &token))
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return false;
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ScopedHandle token_scoped(token);
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DWORD size = sizeof(TOKEN_USER) + SECURITY_MAX_SID_SIZE;
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scoped_ptr<TOKEN_USER> user(reinterpret_cast<TOKEN_USER*>(new BYTE[size]));
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if (!::GetTokenInformation(token, TokenUser, user.get(), size, &size))
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return false;
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if (!user->User.Sid)
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return false;
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// Convert the data to a string.
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wchar_t* sid_string;
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if (!::ConvertSidToStringSid(user->User.Sid, &sid_string))
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return false;
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*user_sid = sid_string;
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::LocalFree(sid_string);
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return true;
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}
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bool GetLogonSessionOnlyDACL(SECURITY_DESCRIPTOR** security_descriptor) {
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// Get the current token.
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HANDLE token = NULL;
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if (!OpenProcessToken(::GetCurrentProcess(), TOKEN_QUERY, &token))
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return false;
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ScopedHandle token_scoped(token);
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// Get the size of the TokenGroups structure.
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DWORD size = 0;
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BOOL result = GetTokenInformation(token, TokenGroups, NULL, 0, &size);
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if (result != FALSE && GetLastError() != ERROR_INSUFFICIENT_BUFFER)
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return false;
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// Get the data.
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scoped_ptr<TOKEN_GROUPS> token_groups;
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token_groups.reset(reinterpret_cast<TOKEN_GROUPS*>(new char[size]));
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if (!GetTokenInformation(token, TokenGroups, token_groups.get(), size, &size))
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return false;
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// Look for the logon sid.
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SID* logon_sid = NULL;
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for (unsigned int i = 0; i < token_groups->GroupCount ; ++i) {
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if ((token_groups->Groups[i].Attributes & SE_GROUP_LOGON_ID) != 0) {
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logon_sid = static_cast<SID*>(token_groups->Groups[i].Sid);
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break;
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}
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}
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if (!logon_sid)
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return false;
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// Convert the data to a string.
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wchar_t* sid_string;
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if (!ConvertSidToStringSid(logon_sid, &sid_string))
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return false;
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static const wchar_t dacl_format[] = L"D:(A;OICI;GA;;;%ls)";
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wchar_t dacl[SECURITY_MAX_SID_SIZE + arraysize(dacl_format) + 1] = {0};
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wsprintf(dacl, dacl_format, sid_string);
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LocalFree(sid_string);
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// Convert the string to a security descriptor
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if (!ConvertStringSecurityDescriptorToSecurityDescriptor(
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dacl,
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SDDL_REVISION_1,
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reinterpret_cast<PSECURITY_DESCRIPTOR*>(security_descriptor),
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NULL)) {
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return false;
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}
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return true;
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}
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#pragma warning(push)
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#pragma warning(disable:4312 4244)
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WNDPROC SetWindowProc(HWND hwnd, WNDPROC proc) {
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// The reason we don't return the SetwindowLongPtr() value is that it returns
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// the orignal window procedure and not the current one. I don't know if it is
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// a bug or an intended feature.
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WNDPROC oldwindow_proc =
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reinterpret_cast<WNDPROC>(GetWindowLongPtr(hwnd, GWLP_WNDPROC));
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SetWindowLongPtr(hwnd, GWLP_WNDPROC, reinterpret_cast<LONG_PTR>(proc));
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return oldwindow_proc;
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}
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void* SetWindowUserData(HWND hwnd, void* user_data) {
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return
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reinterpret_cast<void*>(SetWindowLongPtr(hwnd, GWLP_USERDATA,
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reinterpret_cast<LONG_PTR>(user_data)));
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}
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void* GetWindowUserData(HWND hwnd) {
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return reinterpret_cast<void*>(GetWindowLongPtr(hwnd, GWLP_USERDATA));
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}
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// Maps to the WNDPROC for a window that was active before the subclass was
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// installed.
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static const wchar_t* const kHandlerKey = L"__ORIGINAL_MESSAGE_HANDLER__";
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bool IsSubclassed(HWND window, WNDPROC subclass_proc) {
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WNDPROC original_handler =
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reinterpret_cast<WNDPROC>(GetWindowLongPtr(window, GWLP_WNDPROC));
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return original_handler == subclass_proc;
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}
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bool Subclass(HWND window, WNDPROC subclass_proc) {
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WNDPROC original_handler =
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reinterpret_cast<WNDPROC>(GetWindowLongPtr(window, GWLP_WNDPROC));
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if (original_handler != subclass_proc) {
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win_util::SetWindowProc(window, subclass_proc);
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SetProp(window, kHandlerKey, original_handler);
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return true;
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}
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return false;
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}
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bool Unsubclass(HWND window, WNDPROC subclass_proc) {
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WNDPROC current_handler =
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reinterpret_cast<WNDPROC>(GetWindowLongPtr(window, GWLP_WNDPROC));
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if (current_handler == subclass_proc) {
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HANDLE original_handler = GetProp(window, kHandlerKey);
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if (original_handler) {
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RemoveProp(window, kHandlerKey);
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win_util::SetWindowProc(window,
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reinterpret_cast<WNDPROC>(original_handler));
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return true;
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}
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}
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return false;
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}
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WNDPROC GetSuperclassWNDPROC(HWND window) {
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return reinterpret_cast<WNDPROC>(GetProp(window, kHandlerKey));
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}
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#pragma warning(pop)
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bool IsShiftPressed() {
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return (::GetKeyState(VK_SHIFT) & 0x80) == 0x80;
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}
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bool IsCtrlPressed() {
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return (::GetKeyState(VK_CONTROL) & 0x80) == 0x80;
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}
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bool IsAltPressed() {
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return (::GetKeyState(VK_MENU) & 0x80) == 0x80;
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}
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std::wstring GetClassName(HWND window) {
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// GetClassNameW will return a truncated result (properly null terminated) if
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// the given buffer is not large enough. So, it is not possible to determine
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// that we got the entire class name if the result is exactly equal to the
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// size of the buffer minus one.
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DWORD buffer_size = MAX_PATH;
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while (true) {
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std::wstring output;
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DWORD size_ret =
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GetClassNameW(window, WriteInto(&output, buffer_size), buffer_size);
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if (size_ret == 0)
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break;
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if (size_ret < (buffer_size - 1)) {
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output.resize(size_ret);
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return output;
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}
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buffer_size *= 2;
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}
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return std::wstring(); // error
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}
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bool UserAccountControlIsEnabled() {
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RegKey key(HKEY_LOCAL_MACHINE,
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L"SOFTWARE\\Microsoft\\Windows\\CurrentVersion\\Policies\\System");
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DWORD uac_enabled;
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if (!key.ReadValueDW(L"EnableLUA", &uac_enabled))
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return true;
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// Users can set the EnableLUA value to something arbitrary, like 2, which
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// Vista will treat as UAC enabled, so we make sure it is not set to 0.
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return (uac_enabled != 0);
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}
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std::wstring FormatMessage(unsigned messageid) {
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wchar_t* string_buffer = NULL;
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unsigned string_length = ::FormatMessage(
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FORMAT_MESSAGE_ALLOCATE_BUFFER | FORMAT_MESSAGE_FROM_SYSTEM |
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FORMAT_MESSAGE_IGNORE_INSERTS, NULL, messageid, 0,
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reinterpret_cast<wchar_t *>(&string_buffer), 0, NULL);
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std::wstring formatted_string;
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if (string_buffer) {
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formatted_string = string_buffer;
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LocalFree(reinterpret_cast<HLOCAL>(string_buffer));
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} else {
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// The formating failed. simply convert the message value into a string.
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SStringPrintf(&formatted_string, L"message number %d", messageid);
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}
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return formatted_string;
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}
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std::wstring FormatLastWin32Error() {
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return FormatMessage(GetLastError());
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}
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} // namespace win_util
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#ifdef _MSC_VER
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//
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// If the ASSERT below fails, please install Visual Studio 2005 Service Pack 1.
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//
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extern char VisualStudio2005ServicePack1Detection[10];
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COMPILE_ASSERT(sizeof(&VisualStudio2005ServicePack1Detection) == sizeof(void*),
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VS2005SP1Detect);
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//
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// Chrome requires at least Service Pack 1 for Visual Studio 2005.
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//
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#endif // _MSC_VER
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#ifndef COPY_FILE_COPY_SYMLINK
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#error You must install the Windows 2008 or Vista Software Development Kit and \
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set it as your default include path to build this library. You can grab it by \
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searching for "download windows sdk 2008" in your favorite web search engine. \
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Also make sure you register the SDK with Visual Studio, by selecting \
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"Integrate Windows SDK with Visual Studio 2005" from the Windows SDK \
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menu (see Start - All Programs - Microsoft Windows SDK - \
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Visual Studio Registration).
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#endif
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