LWQ
2025-07-14 52d230fd0eb38adc5c6f4c6d6ed3786a3c19354d
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// ProcPADThread.cpp : implementation file
//
 
#include "StdAfx.h"
#include "Thread_CheckSeq.h"
#include "Glass_Data.h"
 
#ifdef _DEBUG
#define new DEBUG_NEW
#undef THIS_FILE
static char THIS_FILE[] = __FILE__;
#endif
 
/////////////////////////////////////////////////////////////////////////////
// CThread_CheckSequence
CThread_CheckSequence::CThread_CheckSequence(DWORD dwPeriod) : CTimerThreadPool(dwPeriod,1)
{
    m_pC2M = NULL;
    m_pGlassData = NULL;
}
 
CThread_CheckSequence::~CThread_CheckSequence()
{
    ClearMessage();
}
 
BOOL CThread_CheckSequence::CreateThread()
{
    BOOL bReturn = TRUE;
 
    // Thread »ý¼º ÈÄ Thread ¼öÇà
    bReturn = CreateTimerThread(this);
 
    return bReturn;
}
 
/////////////////////////////////////////////////////////////////////////////
// CThread_CheckSequence message handlers
 
void CThread_CheckSequence::ClearMessage()
{
    CSingleLock MyLock(&m_csCheckMSG);
    MyLock.Lock();
 
    std::vector<CCheckSeqMessage>    *pVecCheckMSG;
    pVecCheckMSG = GetVecCheckSeqMSG();    
    pVecCheckMSG->clear();        
 
    MyLock.Unlock();
}
 
void CThread_CheckSequence::TimerThreadProcess(PVOID pParameter)
{
    CThread_CheckSequence* pSeqThread = static_cast<CThread_CheckSequence*>(pParameter);
    if(pSeqThread == NULL)
        return;
 
    if(pSeqThread->m_pC2M == NULL || pSeqThread->m_pGlassData == NULL)
    {        
        return;
    }
        
    std::vector<CCheckSeqMessage>    *pVecCheckMSG,vecMSG;    
    std::vector<CCheckSeqMessage>::iterator    it;
    CCheckSeqMessage        SendCheckMSG;
    CGlass_Data                *pStats = pSeqThread->m_pGlassData;
 
    if(pStats == NULL)
    {    
        return;
    }
 
 
    CSingleLock SeqLock(&pSeqThread->m_csCheckMSG);
    SeqLock.Lock();
 
    pVecCheckMSG = GetVecCheckSeqMSG();
    if(pVecCheckMSG->empty() == TRUE)
    {
        SeqLock.Unlock();
        return;
    }
 
    vecMSG.resize(pVecCheckMSG->size());
    std::copy(pVecCheckMSG->begin(),pVecCheckMSG->end(),vecMSG.begin());
    pVecCheckMSG->clear();
    
    SeqLock.Unlock();
 
    Sleep(0);
 
    for(it=vecMSG.begin();it!=vecMSG.end();it++)
    {        
        SendCheckMSG = *it;
 
        SendCheckMSG.dwTickEnd = GetTickCount();
        SendCheckMSG.dwDuration = SendCheckMSG.dwTickEnd - SendCheckMSG.dwTickStart;
 
        if(pStats->IsPostProcStart() == TRUE)        // Post Process°¡ ½ÃÀ۵ǾúÀ¸¸é ÁË´Ù »èÁ¦ ÇÑ´Ù.
        {
            it->bDelete = TRUE;
            continue;
        }                
 
        if(SendCheckMSG.dwDuration >= SendCheckMSG.dwCheckTime)
        {            
            if(pStats->IsPostProcStart() == FALSE)
                pSeqThread->m_pC2M->CheckSeqMSG_Received(&SendCheckMSG);                
            it->bDelete = TRUE;
        }        
    }
 
    CSingleLock MyLock(&pSeqThread->m_csCheckMSG);
    MyLock.Lock();
 
    pVecCheckMSG = pSeqThread->GetVecCheckSeqMSG();
    for(it=vecMSG.begin();it!=vecMSG.end();it++)
    {
        if(it->bDelete == FALSE)
        {
            pVecCheckMSG->push_back(*it);
        }
    }    
 
    vecMSG.clear();
    MyLock.Unlock();
}
 
int CThread_CheckSequence::AddCheckSeqMSG(CHECKSEQ_MESSAGE_SECTION emSection,DWORD dwChkTime,int iScan)
{
    int            nCount = 0;
 
    CSingleLock MyLock(&m_csCheckMSG);
    MyLock.Lock();
 
    CCheckSeqMessage    seqMsg;
 
    seqMsg.SetCheck(emSection,dwChkTime,iScan);
    m_VecCheckSeqMSG.push_back(seqMsg);
    nCount = (int)m_VecCheckSeqMSG.size();
 
    MyLock.Unlock();
    return nCount;
}