mirror of
https://github.com/vxunderground/MalwareSourceCode.git
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109 lines
3.7 KiB
C#
109 lines
3.7 KiB
C#
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// Decompiled with JetBrains decompiler
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// Type: Microsoft.InfoCards.SafeCryptoKey
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// Assembly: infocard, Version=3.0.0.0, Culture=neutral, PublicKeyToken=b77a5c561934e089
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// MVID: 516D8B44-4448-4D2C-8B8E-FFBB3FFE472B
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// Assembly location: C:\Users\Administrateur\Downloads\Virusshare-00000-msil\Virus.Win32.Expiro.w-69bb73081eac86b8cf86f45e33515d0095855636967076e2b593d7a30cd80a07.exe
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using Microsoft.InfoCards.Diagnostics;
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using System;
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using System.ComponentModel;
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using System.Runtime.InteropServices;
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using System.Security;
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using System.Security.Cryptography;
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namespace Microsoft.InfoCards
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{
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internal class SafeCryptoKey : IDisposable
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{
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private SafeCryptoKeyHandle m_handle;
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[SuppressUnmanagedCodeSecurity]
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[DllImport("advapi32.dll", CharSet = CharSet.Unicode, SetLastError = true)]
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private static extern bool CryptSetKeyParam(
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[In] SafeCryptoKeyHandle hKey,
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[In] uint dwParam,
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[In] IntPtr data,
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[In] uint flags);
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[SuppressUnmanagedCodeSecurity]
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[DllImport("advapi32.dll", CharSet = CharSet.Unicode, SetLastError = true)]
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private static extern bool CryptImportKey(
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[In] SafeRsaProviderHandle hProv,
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[In] IntPtr pbKeyData,
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[In] uint dwDataLen,
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[In] IntPtr hPubKey,
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[In] uint dwFlags,
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out SafeCryptoKeyHandle hKey);
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public SafeCryptoKeyHandle Handle => this.m_handle;
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public unsafe SafeCryptoKey(SafeRsaProviderHandle provider, byte[] encryptedKey, byte[] iv)
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{
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SafeCryptoKey.BlobHeader blobHeader = new SafeCryptoKey.BlobHeader(encryptedKey.Length);
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int dwDataLen = sizeof (SafeCryptoKey.BlobHeader) + encryptedKey.Length;
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// ISSUE: untyped stack allocation
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byte* pbKeyData = (byte*) __untypedstackalloc(dwDataLen);
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byte* numPtr = (byte*) &blobHeader;
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for (int index = 0; index < 12; ++index)
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pbKeyData[index] = numPtr[index];
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try
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{
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ProtectedMemory.Unprotect(encryptedKey, MemoryProtectionScope.SameProcess);
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for (int index = 0; index < encryptedKey.Length; ++index)
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pbKeyData[12 + index] = encryptedKey[index];
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}
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finally
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{
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ProtectedMemory.Protect(encryptedKey, MemoryProtectionScope.SameProcess);
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}
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if (!SafeCryptoKey.CryptImportKey(provider, (IntPtr) (void*) pbKeyData, (uint) dwDataLen, IntPtr.Zero, 0U, out this.m_handle))
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{
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Exception e = (Exception) new Win32Exception(Marshal.GetLastWin32Error());
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InfoCardTrace.CloseInvalidOutSafeHandle((SafeHandle) this.m_handle);
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InfoCardTrace.TraceAndLogException(e);
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throw InfoCardTrace.ThrowHelperError(e);
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}
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fixed (byte* data = &iv[0])
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{
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if (!SafeCryptoKey.CryptSetKeyParam(this.m_handle, 1U, (IntPtr) (void*) data, 0U))
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{
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Exception e = (Exception) new Win32Exception(Marshal.GetLastWin32Error());
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this.m_handle.Dispose();
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throw InfoCardTrace.ThrowHelperError(e);
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}
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// ISSUE: __unpin statement
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__unpin(data);
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}
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}
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void IDisposable.Dispose() => this.m_handle.Dispose();
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[StructLayout(LayoutKind.Explicit, Size = 12)]
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private struct BlobHeader
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{
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private const int PLAINTEXTKEYBLOB = 8;
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private const int CUR_BLOB_VERSION = 2;
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private const int CALG_AES = 26128;
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[FieldOffset(0)]
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public byte bType;
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[FieldOffset(1)]
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public byte bVersion;
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[FieldOffset(2)]
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public ushort reserved;
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[FieldOffset(4)]
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public uint aiKeyAlg;
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[FieldOffset(8)]
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public uint keyLength;
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public BlobHeader(int keySize)
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{
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this.bType = (byte) 8;
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this.bVersion = (byte) 2;
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this.reserved = (ushort) 0;
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this.aiKeyAlg = 26128U;
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this.keyLength = (uint) keySize;
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}
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}
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}
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}
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