
Dynamically invoke arbitrary unmanaged code from managed code without PInvoke.
Dynamic replacement for PInvoke on Windows. DInvoke contains powerful primitives that may be combined intelligently to dynamically invoke unmanaged code from disk or from memory with careful precision. This may be used for many purposes such as PE parsing, intelligent dynamic API resolution, dynamically loading PE plugins at runtime, process injection, and avoiding API hooks.
Features:
Conference talk (Staying # & Bringing Covert Injection Tradecraft to .NET): https://www.youtube.com/watch?v=FuxpMXTgV9s
Blog posts:
This project was originally created for SharpSploit (https://github.com/cobbr/SharpSploit). With permission from the author(s), it is now hosted here as a standalone library and NuGet.
NuGet: https://www.nuget.org/packages/DInvoke/
The example below demonstrates how to use DInvoke to dynamically find and call exports of a DLL.
///Author: b33f (@FuzzySec, Ruben Boonen)
using System;
using DynamicInvoke = DInvoke.DynamicInvoke;
namespace SpTestcase
{
class Program
{
static void Main(string[] args)
{
// Details
String testDetail = @"
#=================>
# Hello there!
# I find things dynamically; base
# addresses and function pointers.
#=================>
";
Console.WriteLine(testDetail);
// Get NTDLL base from the PEB
Console.WriteLine("[?] Resolve Ntdll base from the PEB..");
IntPtr hNtdll = DynamicInvoke.Generic.GetPebLdrModuleEntry("ntdll.dll");
Console.WriteLine("[>] Ntdll base address : " + string.Format("{0:X}", hNtdll.ToInt64()) + "\n");
// Search function by name
Console.WriteLine("[?] Specifying the name of a DLL (\"ntdll.dll\"), resolve a function by walking the export table in-memory..");
Console.WriteLine("[+] Search by name --> NtCommitComplete");
IntPtr pNtCommitComplete = DynamicInvoke.Generic.GetLibraryAddress("ntdll.dll", "NtCommitComplete", true);
Console.WriteLine("[>] pNtCommitComplete : " + string.Format("{0:X}", pNtCommitComplete.ToInt64()) + "\n");
Console.WriteLine("[+] Search by ordinal --> 0x260 (NtSetSystemTime)");
IntPtr pNtSetSystemTime = DynamicInvoke.Generic.GetLibraryAddress("ntdll.dll", 0x260, true);
Console.WriteLine("[>] pNtSetSystemTime : " + string.Format("{0:X}", pNtSetSystemTime.ToInt64()) + "\n");
Console.WriteLine("[+] Search by keyed hash --> 138F2374EC295F225BD918F7D8058316 (RtlAdjustPrivilege)");
Console.WriteLine("[>] Hash : HMACMD5(Key).ComputeHash(FunctionName)");
String fHash = DynamicInvoke.Generic.GetAPIHash("RtlAdjustPrivilege", 0xaabb1122);
IntPtr pRtlAdjustPrivilege = DynamicInvoke.Generic.GetLibraryAddress("ntdll.dll", fHash, 0xaabb1122);
Console.WriteLine("[>] pRtlAdjustPrivilege : " + string.Format("{0:X}", pRtlAdjustPrivilege.ToInt64()) + "\n");
// Search for function from base address of DLL
Console.WriteLine("[?] Specifying the base address of DLL in memory ({0:X}), resolve function by walking its export table...", hNtdll.ToInt64());
Console.WriteLine("[+] Search by name --> NtCommitComplete");
IntPtr pNtCommitComplete2 = DynamicInvoke.Generic.GetExportAddress(hNtdll, "NtCommitComplete");
Console.WriteLine("[>] pNtCommitComplete : " + string.Format("{0:X}", pNtCommitComplete2.ToInt64()) + "\n");
// Pause execution
Console.WriteLine("[*] Pausing execution..");
Console.ReadLine();
}
}
}
In the example below, we first call OpenProcess normally using PInvoke. Then, we will call it in several ways using DInvoke to demonstrate that each mechanism successfully executes the unmanaged code and evades API hooks.
///Author: TheWover
using System;
using System.Runtime.InteropServices;
using Data = DInvoke.Data;
using DynamicInvoke = DInvoke.DynamicInvoke;
using ManualMap = DInvoke.ManualMap;
namespace SpTestcase
{
class Program
{
[DllImport("kernel32.dll", SetLastError = true)]
public static extern IntPtr OpenProcess(
Data.Win32.Kernel32.ProcessAccessFlags processAccess,
bool bInheritHandle,
uint processId
);
static void Main(string[] args)
{
// Details
String testDetail = @"
#=================>
# Hello there!
# I demonstrate API Hooking bypasses
# by calling OpenProcess via
# PInvoke then DInvoke.
# All handles are requested with
# PROCESS_ALL_ACCESS permissions.
#=================>
";
Console.WriteLine(testDetail);
//PID of current process.
uint id = Convert.ToUInt32(System.Diagnostics.Process.GetCurrentProcess().Id);
//Process handle
IntPtr hProc;
// Create the array for the parameters for OpenProcess
object[] paramaters =
{
Data.Win32.Kernel32.ProcessAccessFlags.PROCESS_ALL_ACCESS,
false,
id
};
// Pause execution
Console.WriteLine("[*] Pausing execution..");
Console.ReadLine();
//////////////////////////////////////////////////////////////////////////////////////////////////////////
// Call OpenProcess using PInvoke
Console.WriteLine("[?] Call OpenProcess via PInvoke ...");
hProc = OpenProcess(Data.Win32.Kernel32.ProcessAccessFlags.PROCESS_ALL_ACCESS, false, id);
Console.WriteLine("[>] Process handle : " + string.Format("{0:X}", hProc.ToInt64()) + "\n");
// Pause execution
Console.WriteLine("[*] Pausing execution..");
Console.ReadLine();
//////////////////////////////////////////////////////////////////////////////////////////////////////////
// Call OpenProcess using GetLibraryAddress (underneath the hood)
Console.WriteLine("[?] Call OpenProcess from the loaded module list using System.Diagnostics.Process.GetCurrentProcess().Modules ...");
hProc = DynamicInvoke.Win32.OpenProcess(Data.Win32.Kernel32.ProcessAccessFlags.PROCESS_ALL_ACCESS, false, id);
Console.WriteLine("[>] Process handle : " + string.Format("{0:X}", hProc.ToInt64()) + "\n");
// Pause execution
Console.WriteLine("[*] Pausing execution..");
Console.ReadLine();