mirror of
https://github.com/vxunderground/MalwareSourceCode.git
synced 2024-12-19 09:56:10 +00:00
f2ac1ece55
add
451 lines
16 KiB
C#
451 lines
16 KiB
C#
// Decompiled with JetBrains decompiler
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// Type: Microsoft.InfoCards.Utility
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// Assembly: infocard, Version=3.0.0.0, Culture=neutral, PublicKeyToken=b77a5c561934e089
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// MVID: ADE0A079-11DB-4A46-8BDE-D2A592CA8DEA
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// Assembly location: C:\Users\Administrateur\Downloads\Virusshare-00001-msil\Virus.Win32.Expiro.w-1f15ee7e9f7da02b6bfb4c5a5e6484eb9fa71b82d3699c54bcc7a31794b4a66d.exe
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using Microsoft.InfoCards.Diagnostics;
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using Microsoft.Win32.SafeHandles;
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using System;
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using System.Collections;
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using System.Collections.Generic;
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using System.Collections.ObjectModel;
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using System.ComponentModel;
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using System.Diagnostics;
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using System.IdentityModel.Tokens;
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using System.IO;
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using System.Net;
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using System.Runtime.CompilerServices;
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using System.Runtime.InteropServices;
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using System.Security.Cryptography;
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using System.Security.Cryptography.X509Certificates;
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using System.Security.Principal;
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using System.ServiceModel;
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using System.ServiceModel.Channels;
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using System.ServiceModel.Description;
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using System.Text;
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using System.Threading;
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using System.Xml;
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namespace Microsoft.InfoCards
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{
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internal static class Utility
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{
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public static WindowsIdentity GetWindowsIdentity(IntPtr rpcBindingHandle)
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{
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InfoCardTrace.ThrowInvalidArgumentConditional(IntPtr.Zero == rpcBindingHandle, nameof (rpcBindingHandle));
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uint error = NativeMethods.RpcImpersonateClient(rpcBindingHandle);
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if (error != 0U)
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throw InfoCardTrace.ThrowHelperError((Exception) new CommunicationException(SR.GetString("ServiceInvalidCallerToken"), (Exception) new Win32Exception((int) error)));
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try
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{
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return WindowsIdentity.GetCurrent(true);
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}
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finally
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{
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InfoCardTrace.Assert(0U == NativeMethods.RpcRevertToSelfEx(rpcBindingHandle), "rpcIdentity");
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}
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}
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public static uint GetRpcClientPid(IntPtr rpcBindingHandle)
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{
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uint pid;
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uint error = NativeMethods.I_RpcBindingInqLocalClientPID(rpcBindingHandle, out pid);
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if (error != 0U)
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throw InfoCardTrace.ThrowHelperError((Exception) new Win32Exception((int) error));
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return pid;
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}
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public static void ClearUnsafeMemory(IntPtr ptr, int count) => NativeMethods.ZeroMemory(ptr, count);
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public static void ThrowIfProcessExited(SafeWaitHandle processHandle)
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{
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using (AutoResetEvent autoResetEvent = new AutoResetEvent(false))
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{
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autoResetEvent.SafeWaitHandle = processHandle;
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if (autoResetEvent.WaitOne(0, false))
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throw InfoCardTrace.ThrowHelperError((Exception) new InvalidOperationException(SR.GetString("ServiceProcessHasExited")));
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}
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}
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public static void SerializeString(BinaryWriter writer, string str)
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{
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int num = 0;
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if (string.IsNullOrEmpty(str))
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{
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writer.Write(num);
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}
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else
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{
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writer.Write(str.Length);
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writer.Write(str.ToCharArray());
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}
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}
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public static void SerializeUri(BinaryWriter writer, Uri uri)
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{
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if ((Uri) null == uri)
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Utility.SerializeString(writer, (string) null);
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else
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Utility.SerializeString(writer, uri.ToString());
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}
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public static void SerializeBytes(BinaryWriter writer, byte[] bytes)
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{
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int count = 0;
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if (bytes != null)
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count = bytes.Length;
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Utility.SerializeBytes(writer, bytes, 0, count);
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}
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public static void SerializeBytes(
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BinaryWriter writer,
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byte[] bytes,
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int startOffset,
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int count)
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{
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int num = 0;
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if (bytes == null)
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{
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writer.Write(num);
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}
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else
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{
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writer.Write(count);
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writer.Write(bytes, startOffset, count);
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}
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}
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public static string DeserializeString(BinaryReader reader) => new string(reader.ReadChars(reader.ReadInt32()));
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public static Uri DeserializeUri(BinaryReader reader) => new Uri(Utility.DeserializeString(reader));
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public static bool CompareUri(string first, string second)
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{
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try
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{
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return Utility.CompareUri(new Uri(first), new Uri(second));
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}
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catch (UriFormatException ex)
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{
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throw InfoCardTrace.ThrowHelperError((Exception) new InfoCardArgumentException(SR.GetString("InvalidUriFormat"), (Exception) ex));
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}
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}
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public static bool CompareUri(Uri first, Uri second) => first == second;
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public static bool ArrayIsNullOrEmpty(Array inArray) => inArray == null || inArray.Length == 0;
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public static SafeWaitHandle GetLocalHandleFromRemoteHandle(
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SafeWaitHandle hRemote,
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int remotePid)
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{
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SafeWaitHandle targetHandle;
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using (new SystemIdentity(false))
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{
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using (SafeNativeHandle sourceProcessHandle = NativeMethods.OpenProcess(64, false, remotePid))
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{
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if (sourceProcessHandle == null || sourceProcessHandle.IsInvalid)
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throw InfoCardTrace.ThrowHelperError((Exception) new Win32Exception(Marshal.GetLastWin32Error()));
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if (!NativeMethods.DuplicateHandle(sourceProcessHandle, hRemote, new SafeNativeHandle(NativeMethods.GetCurrentProcess(), false), out targetHandle, 2, false, 0))
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{
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int lastWin32Error = Marshal.GetLastWin32Error();
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InfoCardTrace.CloseInvalidOutSafeHandle((SafeHandle) targetHandle);
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throw InfoCardTrace.ThrowHelperError((Exception) new Win32Exception(lastWin32Error));
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}
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}
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}
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return targetHandle;
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}
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public static SafeWaitHandle GetRemoteHandleFromLocalHandle(
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SafeWaitHandle hLocal,
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Process remoteProcess)
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{
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SafeWaitHandle targetHandle = (SafeWaitHandle) null;
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using (new SystemIdentity(false))
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{
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try
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{
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if (!NativeMethods.DuplicateHandle(new SafeNativeHandle(NativeMethods.GetCurrentProcess(), false), hLocal, new SafeNativeHandle(remoteProcess.Handle, false), out targetHandle, 1048578, false, 0))
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throw InfoCardTrace.ThrowHelperError((Exception) new Win32Exception(Marshal.GetLastWin32Error()));
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bool success = false;
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targetHandle.DangerousAddRef(ref success);
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}
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catch (Exception ex)
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{
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if (InfoCardTrace.IsFatal(ex))
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throw;
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}
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}
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return targetHandle;
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}
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public static SafeJobHandle CreateJobObjectWithSdHelper(string trustedUserSid)
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{
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SafeJobHandle objectWithSdHelper = new SafeJobHandle();
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RuntimeHelpers.PrepareConstrainedRegions();
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try
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{
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}
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finally
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{
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IntPtr zero = IntPtr.Zero;
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uint jobObjectWithSd = NativeMcppMethods.CreateJobObjectWithSD(ref zero, trustedUserSid);
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if (jobObjectWithSd != 0U)
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throw InfoCardTrace.ThrowHelperError((Exception) new Win32Exception((int) jobObjectWithSd));
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objectWithSdHelper.UpdateHandle(zero);
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}
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return objectWithSdHelper;
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}
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public static IntPtr ReadHandle(BinaryReader br)
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{
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IntPtr zero = IntPtr.Zero;
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return 4 != IntPtr.Size ? (IntPtr) br.ReadInt64() : (IntPtr) br.ReadInt32();
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}
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public static byte[] CreateHash(byte[] firstArray, Uri cardId)
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{
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using (SHA256 shA256 = (SHA256) new SHA256Managed())
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{
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byte[] hash = shA256.ComputeHash(Encoding.Unicode.GetBytes(cardId.ToString()));
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byte[] numArray = new byte[firstArray.Length + hash.Length];
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Array.Copy((Array) firstArray, 0, (Array) numArray, 0, firstArray.Length);
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Array.Copy((Array) hash, 0, (Array) numArray, firstArray.Length, hash.Length);
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return shA256.ComputeHash(numArray);
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}
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}
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public static byte[] CreateHash(byte[] firstArray, byte[] secondArray, byte[] thirdArray)
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{
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byte[] numArray = new byte[firstArray.Length + secondArray.Length + thirdArray.Length];
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Array.Copy((Array) firstArray, 0, (Array) numArray, 0, firstArray.Length);
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Array.Copy((Array) secondArray, 0, (Array) numArray, firstArray.Length, secondArray.Length);
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Array.Copy((Array) thirdArray, 0, (Array) numArray, firstArray.Length + secondArray.Length, thirdArray.Length);
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using (SHA256 shA256 = SHA256.Create())
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return shA256.ComputeHash(numArray);
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}
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public static bool CompareByteArrays(byte[] arr1, byte[] arr2)
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{
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bool flag = true;
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if (arr1 == null && arr2 == null)
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return true;
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if (arr1 == null || arr2 == null || arr1.Length != arr2.Length)
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return false;
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for (int index = 0; index < arr2.Length; ++index)
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{
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if ((int) arr1[index] != (int) arr2[index])
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{
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flag = false;
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break;
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}
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}
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return flag;
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}
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public static string ResolvePPID(
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string input,
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byte[] issuerIdentiferAsBytes,
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StoreConnection connection)
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{
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string empty = string.Empty;
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byte[] arr2 = Convert.FromBase64String(input);
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ICollection collection = (ICollection) connection.Query(QueryDetails.FullRow, new List<QueryParameter>()
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{
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new QueryParameter("ix_objecttype", new object[1]
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{
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(object) 1
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}),
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new QueryParameter("ix_production_svc_uri", new object[1]
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{
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(object) "http://schemas.xmlsoap.org/ws/2005/05/identity/issuer/self"
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})
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}.ToArray());
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if (collection != null && collection.Count > 0)
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{
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foreach (DataRow dataRow in (IEnumerable) collection)
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{
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byte[] dataField = dataRow.GetDataField();
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try
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{
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using (MemoryStream memoryStream = new MemoryStream(dataField))
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{
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InfoCard infoCard = new InfoCard((Stream) memoryStream);
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if (Utility.CompareByteArrays(Utility.CreateHash(issuerIdentiferAsBytes, infoCard.Id), arr2))
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{
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empty = infoCard.Id.ToString();
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break;
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}
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}
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}
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finally
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{
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Array.Clear((Array) dataField, 0, dataField.Length);
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}
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}
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}
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return empty;
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}
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public static bool GetCertHAFlags(
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X509Certificate2 certificate,
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X509Certificate2Collection supportingCertificates,
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ref Utility.SubjectAtrributeHAFlags certFlags)
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{
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int haFlags = 0;
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X509Chain chain;
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try
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{
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InfoCardX509Validator.ValidateChain(certificate, supportingCertificates, out chain);
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}
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catch (SecurityTokenValidationException ex)
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{
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InfoCardTrace.TraceAndLogException((Exception) ex);
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return false;
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}
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InfoCardTrace.Assert(null != chain, "Should have been populated by ValidateChain");
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bool highAssuranceFlags = NativeMcppMethods.GetHighAssuranceFlags(chain.ChainContext, ref haFlags);
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certFlags = (Utility.SubjectAtrributeHAFlags) haFlags;
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return !highAssuranceFlags || Utility.IsSubjectAtrributeHAFlagsSet(certFlags, Utility.SubjectAtrributeHAFlags.Enabled) ? highAssuranceFlags : throw InfoCardTrace.ThrowHelperError((Exception) new UntrustedRecipientException(SR.GetString("InvalidHACertificateStructure")));
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}
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public static bool IsSubjectAtrributeHAFlagsSet(
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Utility.SubjectAtrributeHAFlags currentValue,
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Utility.SubjectAtrributeHAFlags testFlag)
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{
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return (testFlag & currentValue) == testFlag;
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}
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public static int CalculateIncreaseByPercent(
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int oldSize,
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int alignToByteBoundary,
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int percentIncrease)
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{
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uint uint32 = Convert.ToUInt32(alignToByteBoundary);
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uint num = Convert.ToUInt32((1.0 + (double) percentIncrease / 100.0) * (double) oldSize);
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if (num == 0U)
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num = uint32;
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else if (num % uint32 > 0U)
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num += uint32 - num % uint32;
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return Convert.ToInt32(num);
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}
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public static string CreatePpid(byte[] certIdentifierAsBytes, Uri cardId) => Convert.ToBase64String(Utility.CreateHash(certIdentifierAsBytes, cardId));
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public static EndpointAddress DeriveMexAddress(EndpointAddress epr)
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{
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EndpointAddress endpointAddress = (EndpointAddress) null;
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try
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{
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if ((XmlReader) epr.GetReaderAtMetadata() != null)
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{
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foreach (MetadataSection metadataSection in MetadataSet.ReadFrom((XmlReader) epr.GetReaderAtMetadata()).MetadataSections)
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{
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if (metadataSection.Metadata is MetadataReference && (EndpointAddress) null != ((MetadataReference) metadataSection.Metadata).Address && string.Compare(((MetadataReference) metadataSection.Metadata).Address.Uri.Scheme, "https", StringComparison.OrdinalIgnoreCase) == 0)
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{
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endpointAddress = ((MetadataReference) metadataSection.Metadata).Address;
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break;
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}
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}
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}
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}
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catch (Exception ex)
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{
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if (InfoCardTrace.IsFatal(ex))
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throw;
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}
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return endpointAddress;
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}
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public static XmlDictionaryReader CreateReaderWithQuotas(string root)
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{
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byte[] bytes = new UTF8Encoding().GetBytes(root);
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return XmlDictionaryReader.CreateTextReader(bytes, 0, bytes.GetLength(0), (Encoding) null, InfoCardConstants.DefaultQuotas, (OnXmlDictionaryReaderClose) null);
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}
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public static XmlDictionaryReader CreateReaderWithQuotas(Stream input) => XmlDictionaryReader.CreateTextReader(input, (Encoding) null, InfoCardConstants.DefaultQuotas, (OnXmlDictionaryReaderClose) null);
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public static MemoryStream ReadByteStreamFromBase64(XmlReader reader)
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{
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MemoryStream memoryStream = new MemoryStream();
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if (!reader.IsEmptyElement && reader.Read() && reader.NodeType != XmlNodeType.EndElement)
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{
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byte[] buffer = new byte[1024];
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int count;
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while ((count = reader.ReadContentAsBase64(buffer, 0, buffer.Length)) > 0)
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memoryStream.Write(buffer, 0, count);
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memoryStream.Flush();
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memoryStream.Seek(0L, SeekOrigin.Begin);
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}
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return memoryStream;
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}
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public static BindingElementCollection UpdateProxyForHttpAndRestrictTransportBinding(
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BindingElementCollection source,
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IWebProxy proxy,
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bool turnOffClientAuthOnTransport)
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{
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InfoCardTrace.Assert(null != source, "Do not expect a null bindingElementCollection");
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if (source.Find<TransportBindingElement>() == null)
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throw InfoCardTrace.ThrowHelperError((Exception) new UnsupportedPolicyOptionsException());
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BindingElementCollection elementCollection = HttpProxyTransportBindingElement.ReplaceHttpTransportWithProxy(source, proxy, turnOffClientAuthOnTransport);
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TransportBindingElement transportBindingElement = elementCollection.Find<TransportBindingElement>();
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InfoCardTrace.Assert(null != transportBindingElement, "We ensured there is a TransportBindingElement at the start of this function");
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transportBindingElement.MaxReceivedMessageSize = (long) InfoCardConstants.MaximumMessageSize;
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switch (transportBindingElement)
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{
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case TcpTransportBindingElement _:
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case HttpProxyTransportBindingElement _:
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if (turnOffClientAuthOnTransport)
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{
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Collection<StreamUpgradeBindingElement> all = elementCollection.FindAll<StreamUpgradeBindingElement>();
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InfoCardTrace.Assert(all != null && 1 >= all.Count, "Should not be null (even if empty) and there should be at most one StreamUpgradeBindingElement");
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foreach (StreamUpgradeBindingElement upgradeBindingElement in all)
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{
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if (!(upgradeBindingElement is SslStreamSecurityBindingElement))
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throw InfoCardTrace.ThrowHelperError((Exception) new UnsupportedPolicyOptionsException());
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}
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}
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return elementCollection;
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default:
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InfoCardTrace.Assert(null == transportBindingElement as HttpTransportBindingElement, "Http(s)TransportBindingElement should have been replaced by HttpProxyTransportBindingElement above");
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throw InfoCardTrace.ThrowHelperError((Exception) new UnsupportedPolicyOptionsException());
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}
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}
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public static bool KillHelper(Process p)
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{
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bool flag = false;
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if (!p.HasExited)
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{
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try
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{
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p.Kill();
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flag = true;
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}
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catch (InvalidOperationException ex)
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{
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}
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catch (Win32Exception ex)
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{
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if (5 != ex.NativeErrorCode)
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throw ex;
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}
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}
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return flag;
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}
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[System.Flags]
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public enum SubjectAtrributeHAFlags
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{
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NotEnabled = 0,
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Enabled = 1,
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OrganizationHA = 2,
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LocStateCountryHA = 4,
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LogoHA = 8,
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}
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}
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}
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