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DeclaredFunctions.cpp
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498 lines (420 loc) · 15.6 KB
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#include "DeclaredFunctions.h"
// Global data
size_t DeclaredFunctions::AllDeclaredFunctionsNr;
vector<DeclaredFunctions::DeclaredFunction> DeclaredFunctions::AllDeclaredFunctions;
size_t DeclaredFunctions::NrBasesToStack = 0;
size_t DeclaredFunctions::NrFunctionsToStack = 0;
// Add function name
void DeclaredFunctions::AddFunctionName(string p_sFunctionName)
{
DeclaredFunction Function;
Function.Name = p_sFunctionName;
AllDeclaredFunctions.push_back(Function);
}
// Add function DLL name
void DeclaredFunctions::AddFunctionDLLName(string p_sDLLName)
{
AllDeclaredFunctions[AllDeclaredFunctionsNr].DLL = p_sDLLName;
AllDeclaredFunctionsNr++;
}
// Generate a call to LoadLibrary("string")
string DeclaredFunctions::GenerateLoadLibraryCall(string p_sDLLName)
{
if (Platform::GetPlatform() == PLATFORM_TYPE_WINDOWS_X64) return GenerateLoadLibraryCall_x64(p_sDLLName);
else return GenerateLoadLibraryCall_x86(p_sDLLName);
}
// Generate a call to LoadLibrary("string") for x86
string DeclaredFunctions::GenerateLoadLibraryCall_x86(string p_sDLLName)
{
string sContent = "";
size_t Len = p_sDLLName.length();
// Check if the DLL was already loades
if (DLLBaseAddress::DLLBaseExists(p_sDLLName)) return "";
sContent = "; LoadLibrary(" + p_sDLLName + ")\r\n\r\n";
if (Len % 4 == 0)
{
sContent += "xor eax, eax ; EAX = 0 \r\n";
sContent += "push eax ; NULL on the stack \r\n";
}
else if (Len % 4 == 1)
{
sContent = "xor eax, eax\r\n";
sContent += "mov al, 0x";
sContent += Utils::CharToHexString(p_sDLLName[Len - 1]);
sContent += "\r\n";
sContent += "push eax\r\n";
}
else if (Len % 4 == 2)
{
sContent = "xor eax, eax\r\n";
sContent += "mov ax, 0x";
sContent += Utils::CharToHexString(p_sDLLName[Len - 1]);
sContent += Utils::CharToHexString(p_sDLLName[Len - 2]);
sContent += "\r\n";
sContent += "push eax\r\n";
}
else if (Len % 4 == 3)
{
sContent = "xor eax, eax\r\n";
sContent += "mov eax, 0x23";
sContent += Utils::CharToHexString(p_sDLLName[Len - 1]);
sContent += Utils::CharToHexString(p_sDLLName[Len - 2]);
sContent += Utils::CharToHexString(p_sDLLName[Len - 3]);
sContent += "\r\n";
sContent += "push eax\r\n";
sContent += "sub dword [esp + 3], 0x23\r\n";
}
else cout << "Imaginary number?" << endl;
// Put the string as hex data pushes on the stack
size_t Times = Len / 4;
for (size_t i = Times; i > 0; i--)
{
sContent += "push 0x";
for (size_t j = 4; j > 0; j--)
{
sContent += Utils::CharToHexString(p_sDLLName[i * 4 - 4 + j - 1]);
}
sContent += "\r\n";
}
// LoadLibrary function call
sContent += "push esp ; String on the stack \r\n";
sContent += "call [esp + ";
sContent += to_string(((Times + 2) * 4) + NrBasesToStack * 4);
sContent += "]\r\n";
sContent += "add esp, ";
sContent += to_string(((Times + 1) * 4));
sContent += "\r\n";
sContent += "push eax ; DLL base on the stack \r\n\r\n";
// Add DLL to base list and increment bases on stack number
DLLBaseAddress::AddDLLBase(p_sDLLName);
NrBasesToStack++;
return sContent;
}
// Generate a call to LoadLibrary("string") for x64
string DeclaredFunctions::GenerateLoadLibraryCall_x64(string p_sDLLName)
{
string sContent = "";
size_t Len = p_sDLLName.length();
// Check if the DLL was already loades
if (DLLBaseAddress::DLLBaseExists(p_sDLLName)) return "";
sContent = "; LoadLibrary(" + p_sDLLName + ")\r\n\r\n";
if (Len % 8 == 0)
{
sContent += "xor rax, rax ; EAX = 0 \r\n";
sContent += "push rax ; NULL on the stack \r\n";
}
else if (Len % 8 == 1)
{
sContent = "xor rax, rax\r\n";
sContent += "mov al, 0x";
sContent += Utils::CharToHexString(p_sDLLName[Len - 1]);
sContent += "\r\n";
sContent += "push rax\r\n";
}
else if (Len % 8 == 2)
{
sContent = "xor rax, rax\r\n";
sContent += "mov ax, 0x";
sContent += Utils::CharToHexString(p_sDLLName[Len - 1]);
sContent += Utils::CharToHexString(p_sDLLName[Len - 2]);
sContent += "\r\n";
sContent += "push rax\r\n";
}
else if (Len % 8 == 3)
{
sContent = "xor rax, rax\r\n";
sContent += "mov eax, 0x23";
sContent += Utils::CharToHexString(p_sDLLName[Len - 1]);
sContent += Utils::CharToHexString(p_sDLLName[Len - 2]);
sContent += Utils::CharToHexString(p_sDLLName[Len - 3]);
sContent += "\r\n";
sContent += "push rax\r\n";
sContent += "sub dword [rsp + 7], 0x23\r\n";
}
else if (Len % 8 == 4)
{
sContent = "xor rax, rax\r\n";
sContent += "mov eax, 0x";
sContent += Utils::CharToHexString(p_sDLLName[Len - 1]);
sContent += Utils::CharToHexString(p_sDLLName[Len - 2]);
sContent += Utils::CharToHexString(p_sDLLName[Len - 3]);
sContent += Utils::CharToHexString(p_sDLLName[Len - 4]);
sContent += "\r\n";
sContent += "push rax\r\n";
}
else if (Len % 8 == 5)
{
sContent = "xor rax, rax\r\n";
sContent += "mov rax, 0x";
sContent += Utils::CharToHexString(p_sDLLName[Len - 1]);
sContent += Utils::CharToHexString(p_sDLLName[Len - 2]);
sContent += Utils::CharToHexString(p_sDLLName[Len - 3]);
sContent += Utils::CharToHexString(p_sDLLName[Len - 4]);
sContent += Utils::CharToHexString(p_sDLLName[Len - 5]);
sContent += "\r\n";
sContent += "push rax\r\n";
}
else if (Len % 8 == 6)
{
sContent = "xor rax, rax\r\n";
sContent += "mov rax, 0x";
sContent += Utils::CharToHexString(p_sDLLName[Len - 1]);
sContent += Utils::CharToHexString(p_sDLLName[Len - 2]);
sContent += Utils::CharToHexString(p_sDLLName[Len - 3]);
sContent += Utils::CharToHexString(p_sDLLName[Len - 4]);
sContent += Utils::CharToHexString(p_sDLLName[Len - 5]);
sContent += Utils::CharToHexString(p_sDLLName[Len - 6]);
sContent += "\r\n";
sContent += "push rax\r\n";
}
else if (Len % 8 == 7)
{
sContent = "xor rax, rax\r\n";
sContent += "mov rax, 0x";
sContent += Utils::CharToHexString(p_sDLLName[Len - 1]);
sContent += Utils::CharToHexString(p_sDLLName[Len - 2]);
sContent += Utils::CharToHexString(p_sDLLName[Len - 3]);
sContent += Utils::CharToHexString(p_sDLLName[Len - 4]);
sContent += Utils::CharToHexString(p_sDLLName[Len - 5]);
sContent += Utils::CharToHexString(p_sDLLName[Len - 6]);
sContent += Utils::CharToHexString(p_sDLLName[Len - 7]);
sContent += "\r\n";
sContent += "push rax\r\n";
}
else cout << "Imaginary number?" << endl;
// Put the string as hex data pushes on the stack
size_t Times = Len / 8;
for (size_t i = Times; i > 0; i--)
{
sContent += "mov rax, 0x";
for (size_t j = 8; j > 0; j--)
{
sContent += Utils::CharToHexString(p_sDLLName[i * 8 - 8 + j - 1]);
}
sContent += "\r\n";
sContent += "push rax\r\n";
}
// LoadLibrary function call
sContent += "mov rcx, rsp ; RCX = DLL name \r\n";
if((Times + NrBasesToStack + 1) % 2)
sContent += "sub rsp, 0x28 ; Stack space \r\n";
else
sContent += "sub rsp, 0x30 ; Stack space \r\n";
sContent += "call rsi ; LoadLibrary \r\n";
sContent += "add rsp, ";
if ((Times + NrBasesToStack + 1) % 2) sContent += to_string( ((Times + 1) * 8) + 0x28);
else sContent += to_string(((Times + 1) * 8) + 0x30);
sContent += "\r\n";
sContent += "push rax ; DLL base on the stack \r\n\r\n";
// Add DLL to base list and increment bases on stack number
DLLBaseAddress::AddDLLBase(p_sDLLName);
NrBasesToStack++;
return sContent;
}
// Generate a call to GetProcAddress(DLLBase, "FunctionName")
string DeclaredFunctions::GenerateGetProcAddressCall(string p_sDLLName, string p_sFunctionName)
{
if (Platform::GetPlatform() == PLATFORM_TYPE_WINDOWS_X64) return GenerateGetProcAddressCall_x64(p_sDLLName, p_sFunctionName);
else return GenerateGetProcAddressCall_x86(p_sDLLName, p_sFunctionName);
}
// Generate a call to GetProcAddress(DLLBase, "FunctionName") for x86
string DeclaredFunctions::GenerateGetProcAddressCall_x86(string p_sDLLName, string p_sFunctionName)
{
string sContent = "";
size_t Len = p_sFunctionName.length();
// Check if the function address was already found
if (FunctionOffsetAddress::FunctionOffsetExists(p_sFunctionName)) return "";
sContent = "; GetProcAddress(" + p_sDLLName + ", " + p_sFunctionName + ")\r\n\r\n";
if (Len % 4 == 0)
{
sContent += "xor eax, eax ; EAX = 0 \r\n";
sContent += "push eax ; NULL on the stack \r\n";
}
else if (Len % 4 == 1)
{
sContent = "xor eax, eax\r\n";
sContent += "mov al, 0x";
sContent += Utils::CharToHexString(p_sFunctionName[Len - 1]);
sContent += "\r\n";
sContent += "push eax\r\n";
}
else if (Len % 4 == 2)
{
sContent = "xor eax, eax\r\n";
sContent += "mov ax, 0x";
sContent += Utils::CharToHexString(p_sFunctionName[Len - 1]);
sContent += Utils::CharToHexString(p_sFunctionName[Len - 2]);
sContent += "\r\n";
sContent += "push eax\r\n";
}
else if (Len % 4 == 3)
{
sContent = "xor eax, eax\r\n";
sContent += "mov eax, 0x23";
sContent += Utils::CharToHexString(p_sFunctionName[Len - 1]);
sContent += Utils::CharToHexString(p_sFunctionName[Len - 2]);
sContent += Utils::CharToHexString(p_sFunctionName[Len - 3]);
sContent += "\r\n";
sContent += "push eax\r\n";
sContent += "sub dword [esp + 3], 0x23\r\n";
}
else cout << "Imaginary number?" << endl;
// Put the string as hex data pushes on the stack
size_t Times = Len / 4;
for (size_t i = Times; i > 0; i--)
{
sContent += "push 0x";
for (size_t j = 4; j > 0; j--)
{
sContent += Utils::CharToHexString(p_sFunctionName[i * 4 - 4 + j - 1]);
}
sContent += "\r\n";
}
// DLL base address
sContent += "push esp ; String on the stack \r\n";
sContent += "push dword [esp + ";
sContent += to_string((NrFunctionsToStack * 4) + ((NrBasesToStack + 3 - DLLBaseAddress::GetDLLBase(p_sDLLName)) * 4) + ((Times + 2) * 4));
sContent += "] \r\n";
// Call GetProcAddress
sContent += "call [esp + ";
sContent += to_string(((NrFunctionsToStack + 1) * 4) + ((NrBasesToStack + 1) * 4) + ((Times + 2) * 4));
sContent += "]\r\n";
sContent += "add esp, ";
sContent += to_string(((Times + 1) * 4));
sContent += "\r\n";
sContent += "push eax ; Function address on the stack \r\n\r\n";
// Add function address to the list and increment nr of functions on stack number
FunctionOffsetAddress::AddFunctionOffset(p_sFunctionName);
NrFunctionsToStack++;
// Do it!
return sContent;
}
// Generate a call to GetProcAddress(DLLBase, "FunctionName") for x64
string DeclaredFunctions::GenerateGetProcAddressCall_x64(string p_sDLLName, string p_sFunctionName)
{
string sContent = "";
size_t Len = p_sFunctionName.length();
// Check if the function address was already found
if (FunctionOffsetAddress::FunctionOffsetExists(p_sFunctionName)) return "";
sContent = "; GetProcAddress(" + p_sDLLName + ", " + p_sFunctionName + ")\r\n\r\n";
if (Len % 8 == 0)
{
sContent += "xor rax, rax ; EAX = 0 \r\n";
sContent += "push rax ; NULL on the stack \r\n";
}
else if (Len % 8 == 1)
{
sContent = "xor rax, rax\r\n";
sContent += "mov al, 0x";
sContent += Utils::CharToHexString(p_sFunctionName[Len - 1]);
sContent += "\r\n";
sContent += "push rax\r\n";
}
else if (Len % 8 == 2)
{
sContent = "xor rax, rax\r\n";
sContent += "mov ax, 0x";
sContent += Utils::CharToHexString(p_sFunctionName[Len - 1]);
sContent += Utils::CharToHexString(p_sFunctionName[Len - 2]);
sContent += "\r\n";
sContent += "push rax\r\n";
}
else if (Len % 8 == 3)
{
sContent = "xor rax, rax\r\n";
sContent += "mov eax, 0x";
sContent += Utils::CharToHexString(p_sFunctionName[Len - 1]);
sContent += Utils::CharToHexString(p_sFunctionName[Len - 2]);
sContent += Utils::CharToHexString(p_sFunctionName[Len - 3]);
sContent += "\r\n";
sContent += "push rax\r\n";
}
else if (Len % 8 == 4)
{
sContent = "xor rax, rax\r\n";
sContent += "mov eax, 0x";
sContent += Utils::CharToHexString(p_sFunctionName[Len - 1]);
sContent += Utils::CharToHexString(p_sFunctionName[Len - 2]);
sContent += Utils::CharToHexString(p_sFunctionName[Len - 3]);
sContent += Utils::CharToHexString(p_sFunctionName[Len - 4]);
sContent += "\r\n";
sContent += "push rax\r\n";
}
else if (Len % 8 == 5)
{
sContent = "xor rax, rax\r\n";
sContent += "mov rax, 0x";
sContent += Utils::CharToHexString(p_sFunctionName[Len - 1]);
sContent += Utils::CharToHexString(p_sFunctionName[Len - 2]);
sContent += Utils::CharToHexString(p_sFunctionName[Len - 3]);
sContent += Utils::CharToHexString(p_sFunctionName[Len - 4]);
sContent += Utils::CharToHexString(p_sFunctionName[Len - 5]);
sContent += "\r\n";
sContent += "push rax\r\n";
}
else if (Len % 8 == 6)
{
sContent = "xor rax, rax\r\n";
sContent += "mov rax, 0x";
sContent += Utils::CharToHexString(p_sFunctionName[Len - 1]);
sContent += Utils::CharToHexString(p_sFunctionName[Len - 2]);
sContent += Utils::CharToHexString(p_sFunctionName[Len - 3]);
sContent += Utils::CharToHexString(p_sFunctionName[Len - 4]);
sContent += Utils::CharToHexString(p_sFunctionName[Len - 5]);
sContent += Utils::CharToHexString(p_sFunctionName[Len - 6]);
sContent += "\r\n";
sContent += "push rax\r\n";
}
else if (Len % 8 == 7)
{
sContent = "xor rax, rax\r\n";
sContent += "mov rax, 0x";
sContent += Utils::CharToHexString(p_sFunctionName[Len - 1]);
sContent += Utils::CharToHexString(p_sFunctionName[Len - 2]);
sContent += Utils::CharToHexString(p_sFunctionName[Len - 3]);
sContent += Utils::CharToHexString(p_sFunctionName[Len - 4]);
sContent += Utils::CharToHexString(p_sFunctionName[Len - 5]);
sContent += Utils::CharToHexString(p_sFunctionName[Len - 6]);
sContent += Utils::CharToHexString(p_sFunctionName[Len - 7]);
sContent += "\r\n";
sContent += "push rax\r\n";
}
else cout << "Imaginary number?" << endl;
// Put the string as hex data pushes on the stack
size_t Times = Len / 8;
for (size_t i = Times; i > 0; i--)
{
sContent += "mov rax, 0x";
for (size_t j = 8; j > 0; j--)
{
sContent += Utils::CharToHexString(p_sFunctionName[i * 8 - 8 + j - 1]);
}
sContent += "\r\n";
sContent += "push rax\r\n";
}
// DLL base address
sContent += "mov rdx, rsp ; RDX = Function name \r\n";
if(p_sDLLName.compare("kernel32.dll") == 0) sContent += "mov rcx, rbx ; RCX = kernel32.dll \r\n";
else
{
sContent += "mov rcx, [rsp + ";
sContent += to_string((NrFunctionsToStack * 8) + ((NrBasesToStack - DLLBaseAddress::GetDLLBase(p_sDLLName)) * 8) + ((Times + 1) * 8));
sContent += "] \r\n";
}
// Call GetProcAddress
if ((Times + NrFunctionsToStack + NrBasesToStack + 1) % 2)
sContent += "sub rsp, 0x28 ; Stack space \r\n";
else
sContent += "sub rsp, 0x30 ; Stack space \r\n";
sContent += "call rdi ; GetProcAddress \r\n";
sContent += "add rsp, ";
if ((Times + NrFunctionsToStack + NrBasesToStack + 1) % 2) sContent += to_string(((Times + 1) * 8) + 0x28);
else sContent += to_string(((Times + 1) * 8) + 0x30);
sContent += "\r\n";
sContent += "push rax ; Function on the stack \r\n\r\n";
// Add function address to the list and increment nr of functions on stack number
FunctionOffsetAddress::AddFunctionOffset(p_sFunctionName);
NrFunctionsToStack++;
// Do it!
return sContent;
}