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// Copyright © 2010 sss
// 
// This program is free software; you can redistribute it and/or
// modify it under the terms of the GNU General Public License
// as published by the Free Software Foundation; either version 2
// of the License, or (at your option) any later version.
// 
// This program is distributed in the hope that it will be useful,
// but WITHOUT ANY WARRANTY; without even the implied warranty of
// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
// GNU General Public License for more details.
// 
// You should have received a copy of the GNU General Public License
// along with this program; if not, write to the Free Software
// Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA  02111-1307, USA.

#include "commonheaders.h"

int RecvMsgSvc(WPARAM w, LPARAM l)
{
	CCSDATA *ccs = (CCSDATA*)l;
	if (!ccs)
		return CallService(MS_PROTO_CHAINRECV, w, l);
	PROTORECVEVENT *pre = (PROTORECVEVENT*)(ccs->lParam);
	if (!pre)
		return CallService(MS_PROTO_CHAINRECV, w, l);
	char *msg = pre->szMessage;
	if (!msg)
		return CallService(MS_PROTO_CHAINRECV, w, l);
	bool unicode = (bool)(pre->flags&PREF_UNICODE);

	{ //check for gpg related data
		wchar_t *tmp = mir_utf8decodeW(msg);
		wstring str = tmp;
		mir_free(tmp);
		wstring::size_type s1, s2;

		if(((s2 = str.find(_T("-----END PGP PUBLIC KEY BLOCK-----"))) != wstring::npos) && ((s1 = str.find(_T("-----BEGIN PGP PUBLIC KEY BLOCK-----"))) != wstring::npos))
		{  //this is public key
			if(!DBGetContactSettingByte(ccs->hContact, szModuleName, "GPGEncryption", 0))
				;//
		}
		else if((str.find(_T("-----END PGP MESSAGE-----")) != wstring::npos) && (str.find(_T("-----BEGIN PGP MESSAGE-----")) != wstring::npos))
		{ //this is generic encrypted data block
			if(!DBGetContactSettingByte(ccs->hContact, szModuleName, "GPGEncryption", 0))
				;//
			{
				wstring::size_type p = 0;
				while((p = str.find(_T("\r"), p)) != wstring::npos)
					str.erase(p, 1);
			}
			char *tmp = mir_t2a(str.c_str());
			TCHAR *tmp2 = UniGetContactSettingUtf(NULL, szModuleName, "szHomePath", _T(""));
			wstring path = tmp2;
			path.append(_T("\\encrypted_data.asc"));
			wfstream f(path.c_str(), std::ios::out);
			f<<tmp;
			mir_free(tmp);
			f.close();
			{
				string out;
				DWORD code;
				TCHAR cmd[512] = {0};
				_tcscpy(cmd, _T(" -d \""));
				_tcscat(cmd, path.c_str());
				_tcscat(cmd, _T("\" > "));
				wstring path2 = tmp2;
				mir_free(tmp2);
				path2.append(_T("\\decrypted_data"));
				_tcscat(cmd, _T("\""));
				_tcscat(cmd, path2.c_str());
				_tcscat(cmd, _T("\""));
				pxExecute(cmd, "", &out, &code);
				wfstream f(path2.c_str(), std::ios::in);
				str.clear();
				while(!f.eof() && f.is_open())
				{
					TCHAR tmp[128];
					f.getline(tmp, 128);
					str.append(tmp);
					str.append(_T("\n"));
				}
				f.close();
				DeleteFile(path.c_str());
				DeleteFile(path2.c_str());
				if(str.length() > 0)
				{
					mir_free((void**)ccs->lParam);
					char *utf = mir_utf8encodeW(str.c_str());
					ccs->lParam = (LPARAM)utf;
				}
			}
		}
		else if(((s1 = str.find(_T("<body>This message is encrypted.</body>"))) != wstring::npos))
		{ //this is xmpp encrypted data
			if(!DBGetContactSettingByte(ccs->hContact, szModuleName, "GPGEncryption", 0))
				;//
		}

		char *utf = mir_utf8encodeW(str.c_str()); //for later usage
		mir_free(utf);

	}

	return CallService(MS_PROTO_CHAINRECV, w, l);
}

int SendMsgSvc(WPARAM w, LPARAM l)
{
	CCSDATA *ccs = (CCSDATA*)l;
	if (!ccs)
		return CallService(MS_PROTO_CHAINSEND, w, l);
	if(!DBGetContactSettingByte(ccs->hContact, szModuleName, "GPGEncryption", 0))
		return CallService(MS_PROTO_CHAINSEND, w, l);

	char *msg = (char*)(ccs->lParam);
	if (!msg)
		return CallService(MS_PROTO_CHAINSEND, w, l);
	bool unicode = (bool)(ccs->wParam&PREF_UNICODE);

	{ //encrypt data here
		wchar_t *tmp = mir_utf8decodeW(msg);
		wstring str = tmp;
		mir_free(tmp);
		wstring::size_type s1, s2;
		{ //not xmpp, just replace whole message
			string out;
			DWORD code;
			TCHAR cmd[128];
			wstring path;
			char *tmp = UniGetContactSettingUtf(ccs->hContact, szModuleName, "KeyFingerprint", "");
			if(strlen(tmp) < 2)
			{
				mir_free(tmp);
				return CallService(MS_PROTO_CHAINSEND, w, l);
			}
			_tcscpy(cmd, _T("--batch --yes -e -a -r "));
			TCHAR *tmp2 = mir_a2t(tmp);
			mir_free(tmp);
			_tcscat(cmd, tmp2);
			mir_free(tmp2);
			_tcscat(cmd, _T(" \""));
			tmp2 = UniGetContactSettingUtf(NULL, szModuleName, "szHomePath", _T(""));
			path.append(tmp2);
			_tcscat(cmd, tmp2);
			mir_free(tmp2);
			_tcscat(cmd, _T("\\exported_data"));
			path.append(_T("\\exported_data"));
			_tcscat(cmd, _T("\""));
			{
				char *tmp = mir_t2a(str.c_str());
				wfstream f(path.c_str(), std::ios::out);
				f<<tmp;
				mir_free(tmp);
				f.close();
			}
			pxExecute(cmd, "", &out, &code);
			DeleteFile(path.c_str());
			path.append(_T(".asc"));
			wfstream f(path.c_str(), std::ios::in);
			str.clear();
			while(!f.eof())
			{
				TCHAR tmp[128];
				f.getline(tmp, 128);
				str.append(tmp);
				str.append(_T("\n"));
			}
			f.close();
			DeleteFile(path.c_str());
			mir_free((void**)ccs->lParam);
			char *utf = mir_utf8encodeW(str.c_str());
			ccs->lParam = (LPARAM)utf;
		}		
	}
	return CallService(MS_PROTO_CHAINSEND, w, l);
}