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📄 eubrs.cpp

📁 cypress, signal collection 68013
💻 CPP
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// EUBRS.cpp : Defines the class behaviors for the application.
//

#include "stdafx.h"
#include "EUBRS.h"
#include "EUBRSDlg.h"
#include <initguid.h>
#include "EUBRS_i.c"

#ifdef _DEBUG
#define new DEBUG_NEW
#undef THIS_FILE
static char THIS_FILE[] = __FILE__;
#endif

/////////////////////////////////////////////////////////////////////////////
// CEUBRSApp

BEGIN_MESSAGE_MAP(CEUBRSApp, CWinApp)
	//{{AFX_MSG_MAP(CEUBRSApp)
		// NOTE - the ClassWizard will add and remove mapping macros here.
		//    DO NOT EDIT what you see in these blocks of generated code!
	//}}AFX_MSG
	ON_COMMAND(ID_HELP, CWinApp::OnHelp)
END_MESSAGE_MAP()

/////////////////////////////////////////////////////////////////////////////
// CEUBRSApp construction

CEUBRSApp::CEUBRSApp()
{
	// TODO: add construction code here,
	// Place all significant initialization in InitInstance
}

/////////////////////////////////////////////////////////////////////////////
// The one and only CEUBRSApp object

CEUBRSApp theApp;

/////////////////////////////////////////////////////////////////////////////
// CEUBRSApp initialization

BOOL CEUBRSApp::InitInstance()
{
	if (!InitATL())
		return FALSE;

	AfxEnableControlContainer();

	CCommandLineInfo cmdInfo;
	ParseCommandLine(cmdInfo);

	if (cmdInfo.m_bRunEmbedded || cmdInfo.m_bRunAutomated)
	{
		return TRUE;
	}



	// Standard initialization
	// If you are not using these features and wish to reduce the size
	//  of your final executable, you should remove from the following
	//  the specific initialization routines you do not need.

#ifdef _AFXDLL
	Enable3dControls();			// Call this when using MFC in a shared DLL
#else
	Enable3dControlsStatic();	// Call this when linking to MFC statically
#endif

	CEUBRSDlg dlg;
	m_pMainWnd = &dlg;
	int nResponse = dlg.DoModal();
	if (nResponse == IDOK)
	{
		// TODO: Place code here to handle when the dialog is
		//  dismissed with OK
	}
	else if (nResponse == IDCANCEL)
	{
		// TODO: Place code here to handle when the dialog is
		//  dismissed with Cancel
	}

	// Since the dialog has been closed, return FALSE so that we exit the
	//  application, rather than start the application's message pump.
	return FALSE;
}
void CEUBRSApp::GetPort()
{
	int devices = USBDevice->DeviceCount();
	int d = 0;
	do 
	{
		USBDevice->Open(d);  // Open automatically calls Close( ) if necessary
		d++;		
	}  while ((d < devices ) && (USBDevice->VendorID != 0x04b4) && (USBDevice->ProductID != 0x9548));
	
	if ((USBDevice->VendorID == 0x04b4) && (USBDevice->ProductID == 0x9548)) 
	{
		int epts = USBDevice->EndPointCount();
		CCyUSBEndPoint *endpt;
		for (int i=1; i<epts; i++) 
		{    // Skip endpoint 0, which we know is the Control Endpoint
			endpt = USBDevice->EndPoints[i];
			if (endpt->Attributes == 2) 
			{  // Bulk				
				if (endpt->Address == 0x01) 
				{
					ParamOutEndpt = USBDevice->EndPoints[i];					
					FindParamOutpt = TRUE ;
					//return ;
				} 
				if (endpt->Address == 0x81) 
				{
					ParamInEndpt = USBDevice->EndPoints[i];					
					FindParamInpt = TRUE ;	
					ParamInEndpt->TimeOut = 30;
					ParamInEndpt->SetXferSize(2048);
				} 
			}			
		}
	}	
	//UCHAR  Interval =  IsoOutEndpt->Interval;
	//if( !(FindParamPt & FindISOPt ))
	if( !(FindParamOutpt))	//暂时先用BULK方式发送 
	{
		AfxMessageBox("没有发现参数端口") ;
		FindParamOutpt = FALSE ;		
	}
}

bool CEUBRSApp::SendParam(PUCHAR str, long len)
{
	bool success;	
	ParamOutEndpt->TimeOut = 500; 
	success = ParamOutEndpt->XferData(str,len);
	return success ;
}

	
CEUBRSModule _Module;

BEGIN_OBJECT_MAP(ObjectMap)
END_OBJECT_MAP()

LONG CEUBRSModule::Unlock()
{
	AfxOleUnlockApp();
	return 0;
}

LONG CEUBRSModule::Lock()
{
	AfxOleLockApp();
	return 1;
}
LPCTSTR CEUBRSModule::FindOneOf(LPCTSTR p1, LPCTSTR p2)
{
	while (*p1 != NULL)
	{
		LPCTSTR p = p2;
		while (*p != NULL)
		{
			if (*p1 == *p)
				return CharNext(p1);
			p = CharNext(p);
		}
		p1++;
	}
	return NULL;
}


int CEUBRSApp::ExitInstance()
{
	if (m_bATLInited)
	{
		_Module.RevokeClassObjects();
		_Module.Term();
		CoUninitialize();
	}

	return CWinApp::ExitInstance();

}

BOOL CEUBRSApp::InitATL()
{
	m_bATLInited = TRUE;

#if _WIN32_WINNT >= 0x0400
	HRESULT hRes = CoInitializeEx(NULL, COINIT_MULTITHREADED);
#else
	HRESULT hRes = CoInitialize(NULL);
#endif

	if (FAILED(hRes))
	{
		m_bATLInited = FALSE;
		return FALSE;
	}

	_Module.Init(ObjectMap, AfxGetInstanceHandle());
	_Module.dwThreadID = GetCurrentThreadId();

	LPTSTR lpCmdLine = GetCommandLine(); //this line necessary for _ATL_MIN_CRT
	TCHAR szTokens[] = _T("-/");

	BOOL bRun = TRUE;
	LPCTSTR lpszToken = _Module.FindOneOf(lpCmdLine, szTokens);
	while (lpszToken != NULL)
	{
		if (lstrcmpi(lpszToken, _T("UnregServer"))==0)
		{
			_Module.UpdateRegistryFromResource(IDR_EUBRS, FALSE);
			_Module.UnregisterServer(TRUE); //TRUE means typelib is unreg'd
			bRun = FALSE;
			break;
		}
		if (lstrcmpi(lpszToken, _T("RegServer"))==0)
		{
			_Module.UpdateRegistryFromResource(IDR_EUBRS, TRUE);
			_Module.RegisterServer(TRUE);
			bRun = FALSE;
			break;
		}
		lpszToken = _Module.FindOneOf(lpszToken, szTokens);
	}

	if (!bRun)
	{
		m_bATLInited = FALSE;
		_Module.Term();
		CoUninitialize();
		return FALSE;
	}

	hRes = _Module.RegisterClassObjects(CLSCTX_LOCAL_SERVER, 
		REGCLS_MULTIPLEUSE);
	if (FAILED(hRes))
	{
		m_bATLInited = FALSE;
		CoUninitialize();
		return FALSE;
	}	

	return TRUE;

}

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