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Encryption and compression, native and managed

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29 Jun 2012CPOL7 min read 111.1K   6.9K   92  
DLL for native encryption and compression (using Crypto++). Includes RSA Key Generator in C#, and encryption and compression in ASP.NET (C#).
// dll.cpp - written and placed in the public domain by Wei Dai

#define CRYPTOPP_MANUALLY_INSTANTIATE_TEMPLATES
#define CRYPTOPP_DEFAULT_NO_DLL

#include "dll.h"
#pragma warning(default: 4660)

#if defined(CRYPTOPP_EXPORTS) && defined(CRYPTOPP_WIN32_AVAILABLE)
#include <windows.h>
#endif

#ifndef CRYPTOPP_IMPORTS

NAMESPACE_BEGIN(CryptoPP)

template<> const byte PKCS_DigestDecoration<SHA1>::decoration[] = {0x30,0x21,0x30,0x09,0x06,0x05,0x2B,0x0E,0x03,0x02,0x1A,0x05,0x00,0x04,0x14};
template<> const unsigned int PKCS_DigestDecoration<SHA1>::length = sizeof(PKCS_DigestDecoration<SHA1>::decoration);

template<> const byte PKCS_DigestDecoration<SHA224>::decoration[] = {0x30,0x2d,0x30,0x0d,0x06,0x09,0x60,0x86,0x48,0x01,0x65,0x03,0x04,0x02,0x04,0x05,0x00,0x04,0x1c};
template<> const unsigned int PKCS_DigestDecoration<SHA224>::length = sizeof(PKCS_DigestDecoration<SHA224>::decoration);

template<> const byte PKCS_DigestDecoration<SHA256>::decoration[] = {0x30,0x31,0x30,0x0d,0x06,0x09,0x60,0x86,0x48,0x01,0x65,0x03,0x04,0x02,0x01,0x05,0x00,0x04,0x20};
template<> const unsigned int PKCS_DigestDecoration<SHA256>::length = sizeof(PKCS_DigestDecoration<SHA256>::decoration);

template<> const byte PKCS_DigestDecoration<SHA384>::decoration[] = {0x30,0x41,0x30,0x0d,0x06,0x09,0x60,0x86,0x48,0x01,0x65,0x03,0x04,0x02,0x02,0x05,0x00,0x04,0x30};
template<> const unsigned int PKCS_DigestDecoration<SHA384>::length = sizeof(PKCS_DigestDecoration<SHA384>::decoration);

template<> const byte PKCS_DigestDecoration<SHA512>::decoration[] = {0x30,0x51,0x30,0x0d,0x06,0x09,0x60,0x86,0x48,0x01,0x65,0x03,0x04,0x02,0x03,0x05,0x00,0x04,0x40};
template<> const unsigned int PKCS_DigestDecoration<SHA512>::length = sizeof(PKCS_DigestDecoration<SHA512>::decoration);

template<> const byte EMSA2HashId<SHA>::id = 0x33;
template<> const byte EMSA2HashId<SHA224>::id = 0x38;
template<> const byte EMSA2HashId<SHA256>::id = 0x34;
template<> const byte EMSA2HashId<SHA384>::id = 0x36;
template<> const byte EMSA2HashId<SHA512>::id = 0x35;

NAMESPACE_END

#endif

#ifdef CRYPTOPP_EXPORTS

USING_NAMESPACE(CryptoPP)

#if !(defined(_MSC_VER) && (_MSC_VER < 1300))
using std::set_new_handler;
#endif

static PNew s_pNew = NULL;
static PDelete s_pDelete = NULL;

static void * New (size_t size)
{
	void *p;
	while (!(p = malloc(size)))
		CallNewHandler();

	return p;
}

static void SetNewAndDeleteFunctionPointers()
{
	void *p = NULL;
	HMODULE hModule = NULL;
	MEMORY_BASIC_INFORMATION mbi;

	while (true)
	{
		VirtualQuery(p, &mbi, sizeof(mbi));

		if (p >= (char *)mbi.BaseAddress + mbi.RegionSize)
			break;

		p = (char *)mbi.BaseAddress + mbi.RegionSize;

		if (!mbi.AllocationBase || mbi.AllocationBase == hModule)
			continue;

		hModule = HMODULE(mbi.AllocationBase);

		PGetNewAndDelete pGetNewAndDelete = (PGetNewAndDelete)GetProcAddress(hModule, "GetNewAndDeleteForCryptoPP");
		if (pGetNewAndDelete)
		{
			pGetNewAndDelete(s_pNew, s_pDelete);
			return;
		}

		PSetNewAndDelete pSetNewAndDelete = (PSetNewAndDelete)GetProcAddress(hModule, "SetNewAndDeleteFromCryptoPP");
		if (pSetNewAndDelete)
		{
			s_pNew = &New;
			s_pDelete = &free;
			pSetNewAndDelete(s_pNew, s_pDelete, &set_new_handler);
			return;
		}
	}

	// try getting these directly using mangled names of new and delete operators

	hModule = GetModuleHandle(L"msvcrtd");
	if (!hModule)
		hModule = GetModuleHandle(L"msvcrt");
	if (hModule)
	{
		// 32-bit versions
		s_pNew = (PNew)GetProcAddress(hModule, "??2@YAPAXI@Z");
		s_pDelete = (PDelete)GetProcAddress(hModule, "??3@YAXPAX@Z");
		if (s_pNew && s_pDelete)
			return;

		// 64-bit versions
		s_pNew = (PNew)GetProcAddress(hModule, "??2@YAPEAX_K@Z");
		s_pDelete = (PDelete)GetProcAddress(hModule, "??3@YAXPEAX@Z");
		if (s_pNew && s_pDelete)
			return;
	}

	OutputDebugString(L"Crypto++ was not able to obtain new and delete function pointers.\n");
	throw 0;
}

void * operator new (size_t size)
{
	if (!s_pNew)
		SetNewAndDeleteFunctionPointers();

	return s_pNew(size);
}

void operator delete (void * p)
{
	s_pDelete(p);
}

void * operator new [] (size_t size)
{
	return operator new (size);
}

void operator delete [] (void * p)
{
	operator delete (p);
}

#endif	// #ifdef CRYPTOPP_EXPORTS

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License

This article, along with any associated source code and files, is licensed under The Code Project Open License (CPOL)


Written By
Software Developer
Argentina Argentina
System developer from Argentina.

Programmed in VB 5,6,.NET, C#, Java, PL-SQL, Transac-SQL, C, C++ and even some "calculator" language.

Love to build small, useful applications.
Usually building big and complicated apps based on solid, reliable components.

Hobbies: reading, photography, chess, paddle, running.

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