예제 #1
0
/** Developement solution: just set ALL properties */
BOOL xwt_gtk_setpgroup( PXWT_WIDGET widget, PHB_ITEM pValue )
{
   ULONG ulPos = 1;
   BOOL ret = TRUE;

   while ( ulPos <= hb_hashLen( pValue ) )
   {
      PHB_ITEM pProp = hb_hashGetKeyAt( pValue, ulPos );
      PHB_ITEM pVal = hb_hashGetValueAt( pValue, ulPos );
      if (! widget->set_property( widget, hb_itemGetCPtr( pProp ), pVal ) )
      {
         ret = FALSE;
      }
      ulPos ++;
   }

   return ret;
}
예제 #2
0
static HRESULT STDMETHODCALLTYPE Invoke( IDispatch * lpThis, DISPID dispid, REFIID riid,
                                         LCID lcid, WORD wFlags, DISPPARAMS * pParams,
                                         VARIANT * pVarResult, EXCEPINFO * pExcepInfo,
                                         UINT * puArgErr )
{
   PHB_DYNS pDynSym;
   PHB_ITEM pAction;
   HB_USHORT uiClass = 0;

   HB_SYMBOL_UNUSED( lcid );
   HB_SYMBOL_UNUSED( pExcepInfo );
   HB_SYMBOL_UNUSED( puArgErr );

   if( ! IsEqualIID( riid, HB_ID_REF( IID_NULL ) ) )
      return DISP_E_UNKNOWNINTERFACE;

   pAction = ( ( IHbOleServer * ) lpThis )->pAction;
   if( ! pAction )
      pAction = s_pAction;

   if( pAction )
   {
      HB_BOOL fResult = HB_FALSE;

      if( s_pMsgHash )
      {
         if( ( wFlags & DISPATCH_METHOD ) != 0 ||
             ( ( wFlags & DISPATCH_PROPERTYGET ) != 0 && pParams->cArgs == 0 ) ||
             ( ( wFlags & DISPATCH_PROPERTYPUT ) != 0 && pParams->cArgs == 1 ) )
         {
            fResult = hb_oleDispInvoke( NULL, pAction,
                                        hb_hashGetKeyAt( s_pMsgHash, ( HB_SIZE ) dispid ),
                                        pParams, pVarResult, s_objItemToVariant, uiClass );
         }
      }
      else if( HB_IS_HASH( pAction ) )
      {
         PHB_ITEM pItem;

         if( ( ( IHbOleServer * ) lpThis )->fGuids )
         {
            PHB_ITEM pKey = hb_itemPutNL( hb_stackAllocItem(), ( long ) dispid );
            pItem = hb_hashGetItemPtr( pAction, pKey, 0 );
            hb_stackPop();
         }
         else
            pItem = hb_hashGetValueAt( pAction, ( HB_SIZE ) dispid );

         if( pItem )
         {
            if( HB_IS_EVALITEM( pItem ) )
            {
               if( ( wFlags & DISPATCH_METHOD ) != 0 )
               {
                  PHB_SYMB pSym = hb_itemGetSymbol( pItem );
                  fResult = hb_oleDispInvoke( pSym, pSym ? pAction : pItem, NULL,
                                              pParams, pVarResult,
                                              s_objItemToVariant, uiClass );
               }
            }
            else if( ( wFlags & DISPATCH_PROPERTYGET ) != 0 &&
                     pParams->cArgs == 0 )
            {
               if( pVarResult )
                  hb_oleItemToVariantEx( pVarResult, pItem, s_objItemToVariant );
               fResult = HB_TRUE;
            }
            else if( ( wFlags & DISPATCH_PROPERTYPUT ) != 0 &&
                     pParams->cArgs == 1 )
            {
               hb_oleVariantToItemEx( pItem, &pParams->rgvarg[ 0 ], uiClass );
               fResult = HB_TRUE;
            }
         }
      }
      else if( HB_IS_OBJECT( pAction ) )
      {
         pDynSym = hb_dispIdToDynsym( dispid );
         if( pDynSym && ( wFlags & DISPATCH_PROPERTYPUT ) != 0 )
         {
            if( pParams->cArgs == 1 )
            {
               char szName[ HB_SYMBOL_NAME_LEN + 1 ];
               szName[ 0 ] = '_';
               hb_strncpy( szName + 1, hb_dynsymName( pDynSym ), sizeof( szName ) - 2 );
               pDynSym = hb_dynsymFindName( szName );
            }
            else
               pDynSym = NULL;
         }
         if( pDynSym && hb_objHasMessage( pAction, pDynSym ) )
         {
            fResult = hb_oleDispInvoke( hb_dynsymSymbol( pDynSym ),
                                        pAction, NULL, pParams, pVarResult,
                                        s_objItemToVariant, uiClass );
         }
      }
      if( ! fResult )
         return DISP_E_MEMBERNOTFOUND;
   }
   else
   {
      pDynSym = hb_dispIdToDynsym( dispid );
      if( ! pDynSym )
         return DISP_E_MEMBERNOTFOUND;

      if( wFlags & DISPATCH_PROPERTYPUT )
      {
         if( pParams->cArgs == 1 && hb_dynsymIsMemvar( pDynSym ) )
         {
            PHB_ITEM pItem = hb_stackAllocItem();

            hb_oleVariantToItemEx( pItem, &pParams->rgvarg[ 0 ], uiClass );
            hb_memvarSetValue( hb_dynsymSymbol( pDynSym ), pItem );
            hb_stackPop();
            return S_OK;
         }
         else
            return DISP_E_MEMBERNOTFOUND;
      }
      else if( ( wFlags & DISPATCH_PROPERTYGET ) &&
               pParams->cArgs == 0 && hb_dynsymIsMemvar( pDynSym ) )
      {
         if( pVarResult )
         {
            PHB_ITEM pItem = hb_stackAllocItem();
            hb_memvarGet( pItem, hb_dynsymSymbol( pDynSym ) );
            hb_oleItemToVariantEx( pVarResult, pItem, s_objItemToVariant );
            hb_stackPop();
         }
         return S_OK;
      }
      else if( ( wFlags & DISPATCH_METHOD ) == 0 ||
               ! hb_dynsymIsFunction( pDynSym ) )
         return DISP_E_MEMBERNOTFOUND;
      else if( ! hb_oleDispInvoke( hb_dynsymSymbol( pDynSym ),
                                   NULL, NULL, pParams, pVarResult,
                                   s_objItemToVariant, uiClass ) )
         return DISP_E_MEMBERNOTFOUND;
   }

   return S_OK;
}
예제 #3
0
파일: c_activex.c 프로젝트: migsoft/core
//------------------------------------------------------------------------------
// IEventHandler's Invoke()
// self is where the action happens
// self function receives events (by their ID number) and distributes the processing
// or them or ignores them
static ULONG STDMETHODCALLTYPE Invoke( IEventHandler *self, DISPID dispid, REFIID riid,
   LCID lcid, WORD wFlags, DISPPARAMS *params, VARIANT *result, EXCEPINFO *pexcepinfo,
   UINT *puArgErr )
{
   PHB_ITEM pItem;
   int iArg, i;
   PHB_ITEM pItemArray[32]; // max 32 parameters?
   PHB_ITEM *pItems;
   ULONG ulRefMask = 0;
   ULONG ulPos;
   PHB_ITEM Key;

   Key = hb_itemNew( NULL );

   // We implement only a "default" interface
   if ( !IsEqualIID( riid, &IID_NULL ) )
      return( DISP_E_UNKNOWNINTERFACE );

   HB_SYMBOL_UNUSED(lcid);
   HB_SYMBOL_UNUSED(wFlags);
   HB_SYMBOL_UNUSED(result);
   HB_SYMBOL_UNUSED(pexcepinfo);
   HB_SYMBOL_UNUSED(puArgErr);

   // delegate work to somewhere else in PRG
   //***************************************

#ifdef __USEHASHEVENTS

   if ( hb_hashScan( ((MyRealIEventHandler* ) self)->pEvents, hb_itemPutNL( Key, dispid ),
      &ulPos ) )
   {
      PHB_ITEM pArray = hb_hashGetValueAt( ((MyRealIEventHandler* ) self)->pEvents, ulPos );

#else

   ulPos = hb_arrayScan( ((MyRealIEventHandler* ) self)->pEvents, hb_itemPutNL( Key, dispid ),
      NULL, NULL, 0
   #ifdef __XHARBOUR__
      , 0
   #endif
      );

   if ( ulPos )
   {
      PHB_ITEM pArray = hb_arrayGetItemPtr( ((MyRealIEventHandler* ) self)->pEventsExec, ulPos );

#endif

      PHB_ITEM pExec  = hb_arrayGetItemPtr( pArray, 01 );

      if ( pExec )
      {
         hb_vmRequestReenter();

         switch ( hb_itemType( pExec ) )
         {
            case HB_IT_BLOCK:
            {
               hb_vmPushSymbol( &hb_symEval );
               hb_vmPush( pExec );
               break;
            }
            case HB_IT_STRING:
            {
               PHB_ITEM pObject = hb_arrayGetItemPtr( pArray, 2 );
               hb_vmPushSymbol( hb_dynsymSymbol( hb_dynsymFindName( hb_itemGetCPtr( pExec ) ) ) );

               if ( HB_IS_OBJECT( pObject ) )
                  hb_vmPush( pObject );
               else
                  hb_vmPushNil();
               break;
            }
            case HB_IT_POINTER:
            {
               hb_vmPushSymbol( hb_dynsymSymbol( ( (PHB_SYMB) pExec ) -> pDynSym ) );
               hb_vmPushNil();
               break;
            }
         }

         iArg = params->cArgs;
         for( i = 1; i<= iArg; i++ )
         {
            pItem = hb_itemNew(NULL);
            hb_oleVariantToItem( pItem, &(params->rgvarg[iArg-i]) );
            pItemArray[i-1] = pItem;
            // set bit i
            ulRefMask |= ( 1L << (i-1) );
         }

         if( iArg )
         {
            pItems = pItemArray;
            hb_itemPushList( ulRefMask, iArg, &pItems );
         }

         // execute
         hb_vmDo( (USHORT) iArg );

         // En caso de que los parametros sean pasados por referencia
         for( i=iArg; i > 0; i-- )
         {
            if( ( (&(params->rgvarg[iArg-i]))->n1.n2.vt & VT_BYREF ) == VT_BYREF )
            {
               switch( (&(params->rgvarg[iArg-i]))->n1.n2.vt )
               {
                  //case VT_UI1|VT_BYREF:
                  //   *((&(params->rgvarg[iArg-i]))->n1.n2.n3.pbVal) = va_arg(argList,unsigned char*);  //pItemArray[i-1]
                  //   break;
                  case VT_I2|VT_BYREF:
                     *((&(params->rgvarg[iArg-i]))->n1.n2.n3.piVal)    = (short)          hb_itemGetNI(pItemArray[i-1]);
                     break;
                  case VT_I4|VT_BYREF:
                     *((&(params->rgvarg[iArg-i]))->n1.n2.n3.plVal)    = (long)           hb_itemGetNL(pItemArray[i-1]);
                     break;
                  case VT_R4|VT_BYREF:
                     *((&(params->rgvarg[iArg-i]))->n1.n2.n3.pfltVal)  = (float)          hb_itemGetND(pItemArray[i-1]);
                     break;
                  case VT_R8|VT_BYREF:
                     *((&(params->rgvarg[iArg-i]))->n1.n2.n3.pdblVal)  = (double)         hb_itemGetND(pItemArray[i-1]);
                     break;
                  case VT_BOOL|VT_BYREF:
                     *((&(params->rgvarg[iArg-i]))->n1.n2.n3.pboolVal) =  (VARIANT_BOOL)  ( hb_itemGetL( pItemArray[i-1] ) ? 0xFFFF : 0 );
                     break;
                  //case VT_ERROR|VT_BYREF:
                  //   *((&(params->rgvarg[iArg-i]))->n1.n2.n3.pscode) = va_arg(argList, SCODE*);
                  //   break;
                  case VT_DATE|VT_BYREF:
                     *((&(params->rgvarg[iArg-i]))->n1.n2.n3.pdate)    = (DATE) (double) (hb_itemGetDL(pItemArray[i-1])-2415019 );
                     break;
                  //case VT_CY|VT_BYREF:
                  //   *((&(params->rgvarg[iArg-i]))->n1.n2.n3.pcyVal) = va_arg(argList, CY*);
                  //   break;
                  //case VT_BSTR|VT_BYREF:
                  //   *((&(params->rgvarg[iArg-i]))->n1.n2.n3.pbstrVal = va_arg(argList, BSTR*);
                  //   break;
                  //case VT_UNKNOWN|VT_BYREF:
                  //   pArg->ppunkVal = va_arg(argList, LPUNKNOWN*);
                  //   break;
                  //case VT_DISPATCH|VT_BYREF:
                  //   pArg->ppdispVal = va_arg(argList, LPDISPATCH*);
                  //   break;
               } // EOF switch( (&(params->rgvarg[iArg-i]))->n1.n2.vt )
            } // EOF if( (&(params->rgvarg[iArg-i]))->n1.n2.vt & VT_BYREF == VT_BYREF )
         } // EOF for( i=iArg; i > 0; i-- )

         hb_vmRequestRestore();
      } // EOF if ( pExec )
   }  // EOF If Scan

   hb_itemRelease( Key );

   return S_OK;
}  // EOF invoke

//------------------------------------------------------------------------------
// Here's IEventHandler's VTable. It never changes so we can declare it static
static const IEventHandlerVtbl IEventHandler_Vtbl = {
   QueryInterface,
   AddRef,
   Release,
   GetTypeInfoCount,
   GetTypeInfo,
   GetIDsOfNames,
   Invoke
};

//------------------------------------------------------------------------------
// constructor
// params:
// device_interface        - refers to the interface type of the COM object (whose event we are trying to receive).
// device_event_interface  - indicates the interface type of the outgoing interface supported by the COM object.
//                           This will be the interface that must be implemented by the Sink object.
//                           is essentially derived from IDispatch, our Sink object (self IEventHandler)
//                           is also derived from IDispatch.

typedef IEventHandler device_interface;

// Hash  // SetupConnectionPoint( oOle:hObj, @hSink, hEvents )             -> nError
// Array // SetupConnectionPoint( oOle:hObj, @hSink, aEvents, aExecEvent ) -> nError

HB_FUNC( SETUPCONNECTIONPOINT )
{
   IConnectionPointContainer*  pIConnectionPointContainerTemp = NULL;
   IUnknown*                   pIUnknown = NULL;
   IConnectionPoint*           m_pIConnectionPoint;
   IEnumConnectionPoints*      m_pIEnumConnectionPoints;
   HRESULT                     hr; //,r;
   IID                         rriid;
   register IEventHandler *    selfobj;
   DWORD                       dwCookie = 0;

   device_interface*           pdevice_interface = (device_interface*) HB_PARNL( 1 );
   MyRealIEventHandler*        pThis;

   // Allocate our IEventHandler object (actually a MyRealIEventHandler)
   // intentional misrepresentation of size

   selfobj = ( IEventHandler *) GlobalAlloc( GMEM_FIXED, sizeof( MyRealIEventHandler ) );

   if ( ! selfobj )
   {
      hr = E_OUTOFMEMORY;
   }
   else
   {
      // Store IEventHandler's VTable in the object
      selfobj->lpVtbl = (IEventHandlerVtbl *) &IEventHandler_Vtbl;

      // Increment the reference count so we can call Release() below and
      // it will deallocate only if there is an error with QueryInterface()
      ((MyRealIEventHandler *) selfobj)->count = 0;

      //((MyRealIEventHandler *) selfobj)->device_event_interface_iid = &riid;
      ((MyRealIEventHandler *) selfobj)->device_event_interface_iid = IID_IDispatch;

      // Query self object itself for its IUnknown pointer which will be used
      // later to connect to the Connection Point of the device_interface object.
      hr = selfobj->lpVtbl->QueryInterface( selfobj, &IID_IUnknown, (void**) (void *) &pIUnknown );
      if ( hr == S_OK && pIUnknown )
      {
         // Query the pdevice_interface for its connection point.
         hr = pdevice_interface->lpVtbl->QueryInterface( pdevice_interface,
            &IID_IConnectionPointContainer, (void**) (void *) &pIConnectionPointContainerTemp );

         if ( hr == S_OK && pIConnectionPointContainerTemp )
         {
            // start uncomment
            hr = pIConnectionPointContainerTemp->lpVtbl->EnumConnectionPoints( pIConnectionPointContainerTemp, &m_pIEnumConnectionPoints );

            if ( hr == S_OK && m_pIEnumConnectionPoints )
            {
               do
               {
                  hr = m_pIEnumConnectionPoints->lpVtbl->Next( m_pIEnumConnectionPoints, 1, &m_pIConnectionPoint , NULL);
                  if( hr == S_OK )
                  {
                     if ( m_pIConnectionPoint->lpVtbl->GetConnectionInterface( m_pIConnectionPoint, &rriid ) == S_OK )
                     {
                        break;
                     }
                  }

               } while( hr == S_OK );
               m_pIEnumConnectionPoints->lpVtbl->Release(m_pIEnumConnectionPoints);
            }
            // end uncomment

            //hr = pIConnectionPointContainerTemp ->lpVtbl->FindConnectionPoint(pIConnectionPointContainerTemp ,  &IID_IDispatch, &m_pIConnectionPoint);
            pIConnectionPointContainerTemp->lpVtbl->Release( pIConnectionPointContainerTemp );
            pIConnectionPointContainerTemp = NULL;
         }

         if ( hr == S_OK && m_pIConnectionPoint )
         {
            //OutputDebugString("getting iid");
            //Returns the IID of the outgoing interface managed by self connection point.
            //hr = m_pIConnectionPoint->lpVtbl->GetConnectionInterface(m_pIConnectionPoint, &rriid );
            //OutputDebugString("called");

            if( hr == S_OK )
            {
               ((MyRealIEventHandler *) selfobj)->device_event_interface_iid = rriid;
            }
            else
               OutputDebugString("error getting iid");

            //OutputDebugString("calling advise");
            hr = m_pIConnectionPoint->lpVtbl->Advise( m_pIConnectionPoint, pIUnknown, &dwCookie );
            ((MyRealIEventHandler *) selfobj)->pIConnectionPoint = m_pIConnectionPoint;
            ((MyRealIEventHandler *) selfobj)->dwEventCookie = dwCookie;
         }

         pIUnknown->lpVtbl->Release(pIUnknown);
         pIUnknown = NULL;
      }
   }

   if( selfobj )
   {
      pThis = (MyRealIEventHandler *) selfobj;

#ifndef __USEHASHEVENTS
      pThis->pEventsExec = hb_itemNew( hb_param( 4, HB_IT_ANY ) );
#endif

      pThis->pEvents = hb_itemNew( hb_param( 3, HB_IT_ANY ) );
      HB_STORNL2( (LONG_PTR) pThis, 2 );
   }

   HWNDret( hr );
}

//------------------------------------------------------------------------------
HB_FUNC( SHUTDOWNCONNECTIONPOINT )
{
   MyRealIEventHandler *self = ( MyRealIEventHandler * ) HB_PARNL( 1 );
   if( self->pIConnectionPoint )
   {
      self->pIConnectionPoint->lpVtbl->Unadvise( self->pIConnectionPoint, self->dwEventCookie );
      self->dwEventCookie = 0;
      self->pIConnectionPoint->lpVtbl->Release( self->pIConnectionPoint );
      self->pIConnectionPoint = NULL;
   }
}

//------------------------------------------------------------------------------
HB_FUNC( RELEASEDISPATCH )
{
   IDispatch * pObj;
   pObj = ( IDispatch * ) HWNDparam( 1 );
   pObj->lpVtbl->Release( pObj );
}
예제 #4
0
파일: hbjson.c 프로젝트: AugustoAbacus/core
static void _hb_jsonEncode( PHB_ITEM pValue, PHB_JSON_ENCODE_CTX pCtx,
                            HB_SIZE nLevel, HB_BOOL fEOL )
{
   /* Protection against recursive structures */
   if( ( HB_IS_ARRAY( pValue ) || HB_IS_HASH( pValue ) ) && hb_itemSize( pValue ) > 0 )
   {
      void * id = HB_IS_HASH( pValue ) ? hb_hashId( pValue ) : hb_arrayId( pValue );
      HB_SIZE nIndex;

      for( nIndex = 0; nIndex < nLevel; nIndex++ )
      {
         if( pCtx->pId[ nIndex ] == id )
         {
            if( ! fEOL && pCtx->fHuman )
               _hb_jsonCtxAddIndent( pCtx, nLevel * INDENT_SIZE );
            _hb_jsonCtxAdd( pCtx, "null", 4 );
            return;
         }
      }
      if( nLevel >= pCtx->nAllocId )
      {
         pCtx->nAllocId += 8;
         pCtx->pId = ( void ** ) hb_xrealloc( pCtx->pId, sizeof( void * ) * pCtx->nAllocId );
      }
      pCtx->pId[ nLevel ] = id;
   }

   if( fEOL )
   {
      --pCtx->pHead;
      _hb_jsonCtxAdd( pCtx, pCtx->szEol, pCtx->iEolLen );
   }

   if( HB_IS_STRING( pValue ) )
   {
      const char * szString = hb_itemGetCPtr( pValue );
      HB_SIZE nPos, nPos2, nLen = hb_itemGetCLen( pValue );

      _hb_jsonCtxAdd( pCtx, "\"", 1 );

      nPos = 0;
      while( nPos < nLen )
      {
         nPos2 = nPos;
         while( *( ( const unsigned char * ) szString + nPos2 ) >= ' ' &&
                szString[ nPos2 ] != '\\' && szString[ nPos2 ] != '\"' )
            nPos2++;
         if( nPos2 > nPos )
         {
            _hb_jsonCtxAdd( pCtx, szString + nPos, nPos2 - nPos );
            nPos = nPos2;
            continue;
         }

         switch( szString[ nPos ] )
         {
            case '\\':
               _hb_jsonCtxAdd( pCtx, "\\\\", 2 );
               break;
            case '\"':
               _hb_jsonCtxAdd( pCtx, "\\\"", 2 );
               break;
            case '\b':
               _hb_jsonCtxAdd( pCtx, "\\b", 2 );
               break;
            case '\f':
               _hb_jsonCtxAdd( pCtx, "\\f", 2 );
               break;
            case '\n':
               _hb_jsonCtxAdd( pCtx, "\\n", 2 );
               break;
            case '\r':
               _hb_jsonCtxAdd( pCtx, "\\r", 2 );
               break;
            case '\t':
               _hb_jsonCtxAdd( pCtx, "\\t", 2 );
               break;
            default:
            {
               char buf[ 8 ];
               hb_snprintf( buf, sizeof( buf ), "\\u00%02X", ( unsigned char ) szString[ nPos ] );
               _hb_jsonCtxAdd( pCtx, buf, 6 );
               break;
            }
         }
         nPos++;
      }
      _hb_jsonCtxAdd( pCtx, "\"", 1 );
   }
   else if( HB_IS_NUMINT( pValue ) )
   {
      char buf[ 32 ];

      hb_snprintf( buf, sizeof( buf ), "%" PFHL "d", hb_itemGetNInt( pValue ) );
      _hb_jsonCtxAdd( pCtx, buf, strlen( buf ) );
   }
   else if( HB_IS_NUMERIC( pValue ) )
   {
      char buf[ 64 ];
      int iDec;
      double dblValue = hb_itemGetNDDec( pValue, &iDec );

      hb_snprintf( buf, sizeof( buf ), "%.*f", iDec, dblValue );
      _hb_jsonCtxAdd( pCtx, buf, strlen( buf ) );
   }
   else if( HB_IS_NIL( pValue ) )
   {
      _hb_jsonCtxAdd( pCtx, "null", 4 );
   }
   else if( HB_IS_LOGICAL( pValue ) )
   {
      if( hb_itemGetL( pValue ) )
         _hb_jsonCtxAdd( pCtx, "true", 4 );
      else
         _hb_jsonCtxAdd( pCtx, "false", 5 );

   }
   else if( HB_IS_DATE( pValue ) )
   {
      char szBuffer[ 10 ];

      hb_itemGetDS( pValue, szBuffer + 1 );
      szBuffer[ 0 ] = '\"';
      szBuffer[ 9 ] = '\"';
      _hb_jsonCtxAdd( pCtx, szBuffer, 10 );
   }
   else if( HB_IS_TIMESTAMP( pValue ) )
   {
      char szBuffer[ 19 ];
      hb_itemGetTS( pValue, szBuffer + 1 );
      szBuffer[ 0 ] = '\"';
      szBuffer[ 18 ] = '\"';
      _hb_jsonCtxAdd( pCtx, szBuffer, 19 );
   }
   else if( HB_IS_ARRAY( pValue ) )
   {
      HB_SIZE nLen = hb_itemSize( pValue );

      if( nLen )
      {
         HB_SIZE nIndex;

         if( pCtx->fHuman )
            _hb_jsonCtxAddIndent( pCtx, nLevel * INDENT_SIZE );

         _hb_jsonCtxAdd( pCtx, "[", 1 );

         for( nIndex = 1; nIndex <= nLen; nIndex++ )
         {
            PHB_ITEM pItem = hb_arrayGetItemPtr( pValue, nIndex );

            if( nIndex > 1 )
               _hb_jsonCtxAdd( pCtx, ",", 1 );

            if( pCtx->fHuman )
               _hb_jsonCtxAdd( pCtx, pCtx->szEol, pCtx->iEolLen );

            if( pCtx->fHuman &&
                ! ( ( HB_IS_ARRAY( pItem ) || HB_IS_HASH( pItem ) ) &&
                    hb_itemSize( pItem ) > 0 ) )
               _hb_jsonCtxAddIndent( pCtx, ( nLevel + 1 ) * INDENT_SIZE );

            _hb_jsonEncode( pItem, pCtx, nLevel + 1, HB_FALSE );
         }
         if( pCtx->fHuman )
         {
            _hb_jsonCtxAdd( pCtx, pCtx->szEol, pCtx->iEolLen );
            _hb_jsonCtxAddIndent( pCtx, nLevel * INDENT_SIZE );
         }
         _hb_jsonCtxAdd( pCtx, "]", 1 );
      }
      else
         _hb_jsonCtxAdd( pCtx, "[]", 2 );
   }
   else if( HB_IS_HASH( pValue ) )
   {
      HB_SIZE nLen = hb_hashLen( pValue );

      if( nLen )
      {
         HB_SIZE nIndex;

         if( pCtx->fHuman )
            _hb_jsonCtxAddIndent( pCtx, nLevel * INDENT_SIZE );

         _hb_jsonCtxAdd( pCtx, "{", 1 );

         for( nIndex = 1; nIndex <= nLen; nIndex++ )
         {
            PHB_ITEM pKey = hb_hashGetKeyAt( pValue, nIndex );

            if( HB_IS_STRING( pKey ) )
            {
               PHB_ITEM pItem = hb_hashGetValueAt( pValue, nIndex );
               HB_BOOL fEOL = HB_FALSE;

               if( nIndex > 1 )
                  _hb_jsonCtxAdd( pCtx, ",", 1 );

               if( pCtx->fHuman )
               {
                  _hb_jsonCtxAdd( pCtx, pCtx->szEol, pCtx->iEolLen );
                  _hb_jsonCtxAddIndent( pCtx, ( nLevel + 1 ) * INDENT_SIZE );
               }
               _hb_jsonEncode( pKey, pCtx, nLevel + 1, HB_FALSE );

               if( pCtx->fHuman )
               {
                  _hb_jsonCtxAdd( pCtx, ": ", 2 );
                  fEOL = ( HB_IS_ARRAY( pItem ) || HB_IS_HASH( pItem ) ) && hb_itemSize( pItem ) > 0;
               }
               else
                  _hb_jsonCtxAdd( pCtx, ":", 1 );

               _hb_jsonEncode( pItem, pCtx, nLevel + 1, fEOL );
            }
         }
         if( pCtx->fHuman )
         {
            _hb_jsonCtxAdd( pCtx, pCtx->szEol, pCtx->iEolLen );
            _hb_jsonCtxAddIndent( pCtx, nLevel * INDENT_SIZE );
         }
         _hb_jsonCtxAdd( pCtx, "}", 1 );
      }
      else
         _hb_jsonCtxAdd( pCtx, "{}", 2 );
   }
   else
   {
      /* All unsupported types are replacd by null */
      _hb_jsonCtxAdd( pCtx, "null", 4 );
   }
}
예제 #5
0
파일: hbi18n1.c 프로젝트: JamesLinus/core
static const char * hb_i18n_setcodepage( PHB_I18N_TRANS pI18N,
                                         const char * szCdpID,
                                         HB_BOOL fBase, HB_BOOL fTranslate )
{
   const char * szOldCdpID = NULL, * szKey;

   if( pI18N )
   {
      PHB_CODEPAGE cdp = szCdpID ? hb_cdpFind( szCdpID ) : NULL, cdpage;

      cdpage = fBase ? pI18N->base_cdpage : pI18N->cdpage;
      if( cdpage )
         szOldCdpID = cdpage->id;
      if( cdp && cdp != cdpage )
      {
         if( fTranslate && cdpage )
         {
            HB_SIZE nHashLen = hb_hashLen( pI18N->context_table ), ul;
            for( ul = 1; ul <= nHashLen; ++ul )
            {
               PHB_ITEM pContext = hb_hashGetValueAt( pI18N->context_table, ul );
               HB_SIZE nCount = hb_hashLen( pContext ), u;

               for( u = 1; u <= nCount; ++u )
               {
                  if( fBase )
                  {
                     hb_i18n_transitm( hb_hashGetKeyAt( pContext, u ),
                                       cdpage, cdp );
                  }
                  else
                  {
                     PHB_ITEM pResult = hb_hashGetValueAt( pContext, u );
                     if( HB_IS_STRING( pResult ) )
                     {
                        hb_i18n_transitm( pResult, cdpage, cdp );
                     }
                     else if( HB_IS_ARRAY( pResult ) )
                     {
                        HB_SIZE nTrans = hb_arrayLen( pResult ), u2;
                        for( u2 = 1; u2 <= nTrans; ++u2 )
                        {
                           hb_i18n_transitm( hb_arrayGetItemPtr( pResult, u2 ),
                                             cdpage, cdp );
                        }
                     }
                  }
               }
               if( fBase )
               {
                  hb_i18n_transitm( hb_hashGetKeyAt( pI18N->context_table, ul ),
                                    cdpage, cdp );
                  hb_hashSetFlags( pContext, HB_HASH_RESORT );
               }
            }
            if( fBase )
               hb_hashSetFlags( pI18N->context_table, HB_HASH_RESORT );
         }

         if( fBase )
         {
            pI18N->base_cdpage = cdp;
            szKey = "BASE_CODEPAGE";
         }
         else
         {
            pI18N->cdpage = cdp;
            szKey = "CODEPAGE";
         }
         hb_i18n_setitem( pI18N->table, szKey, szCdpID );
      }
   }

   return szOldCdpID;
}
예제 #6
0
static void _hb_jsonEncode( PHB_ITEM pValue, PHB_JSON_ENCODE_CTX pCtx,
                            HB_SIZE nLevel, HB_BOOL fEOL, PHB_CODEPAGE cdp )
{
   /* Protection against recursive structures */
   if( ( HB_IS_ARRAY( pValue ) || HB_IS_HASH( pValue ) ) && hb_itemSize( pValue ) > 0 )
   {
      void * id = HB_IS_HASH( pValue ) ? hb_hashId( pValue ) : hb_arrayId( pValue );
      HB_SIZE nIndex;

      for( nIndex = 0; nIndex < nLevel; nIndex++ )
      {
         if( pCtx->pId[ nIndex ] == id )
         {
            if( ! fEOL && pCtx->fHuman )
               _hb_jsonCtxAddIndent( pCtx, nLevel * INDENT_SIZE );
            _hb_jsonCtxAdd( pCtx, "null", 4 );
            return;
         }
      }
      if( nLevel >= pCtx->nAllocId )
      {
         pCtx->nAllocId += 8;
         pCtx->pId = ( void ** ) hb_xrealloc( pCtx->pId, sizeof( void * ) * pCtx->nAllocId );
      }
      pCtx->pId[ nLevel ] = id;
   }

   if( fEOL )
   {
      --pCtx->pHead;
      _hb_jsonCtxAdd( pCtx, pCtx->szEol, pCtx->iEolLen );
   }

   if( HB_IS_STRING( pValue ) )
   {
      HB_SIZE nPos, nLen = hb_itemGetCLen( pValue );
      const char * szString = hb_itemGetCPtr( pValue );
      char buf[ 8 ];

      _hb_jsonCtxAdd( pCtx, "\"", 1 );

      if( cdp )
      {
         HB_WCHAR wc;

         nPos = 0;
         while( HB_CDPCHAR_GET( cdp, szString, nLen, &nPos, &wc ) )
         {
            if( wc >= ' ' && wc < 0x7F && wc != '\\' && wc != '\"' )
            {
               buf[ 0 ] = ( char ) wc;
               _hb_jsonCtxAdd( pCtx, buf, 1 );
               continue;
            }
            switch( wc )
            {
               case '\\':
                  _hb_jsonCtxAdd( pCtx, "\\\\", 2 );
                  break;
               case '\"':
                  _hb_jsonCtxAdd( pCtx, "\\\"", 2 );
                  break;
               case '\b':
                  _hb_jsonCtxAdd( pCtx, "\\b", 2 );
                  break;
               case '\f':
                  _hb_jsonCtxAdd( pCtx, "\\f", 2 );
                  break;
               case '\n':
                  _hb_jsonCtxAdd( pCtx, "\\n", 2 );
                  break;
               case '\r':
                  _hb_jsonCtxAdd( pCtx, "\\r", 2 );
                  break;
               case '\t':
                  _hb_jsonCtxAdd( pCtx, "\\t", 2 );
                  break;
               default:
                  hb_snprintf( buf, sizeof( buf ), "\\u%04X", wc );
                  _hb_jsonCtxAdd( pCtx, buf, 6 );
                  break;
            }
         }
      }
      else
      {
         nPos = 0;
         while( nPos < nLen )
         {
            unsigned char uch = szString[ nPos ];
            HB_SIZE nPos2 = nPos;
            while( uch >= ' ' && uch != '\\' && uch != '\"' )
               uch = szString[ ++nPos2 ];
            if( nPos2 > nPos )
            {
               _hb_jsonCtxAdd( pCtx, szString + nPos, nPos2 - nPos );
               if( nPos2 >= nLen )
                  break;
               nPos = nPos2;
            }

            switch( uch )
            {
               case '\\':
                  _hb_jsonCtxAdd( pCtx, "\\\\", 2 );
                  break;
               case '\"':
                  _hb_jsonCtxAdd( pCtx, "\\\"", 2 );
                  break;
               case '\b':
                  _hb_jsonCtxAdd( pCtx, "\\b", 2 );
                  break;
               case '\f':
                  _hb_jsonCtxAdd( pCtx, "\\f", 2 );
                  break;
               case '\n':
                  _hb_jsonCtxAdd( pCtx, "\\n", 2 );
                  break;
               case '\r':
                  _hb_jsonCtxAdd( pCtx, "\\r", 2 );
                  break;
               case '\t':
                  _hb_jsonCtxAdd( pCtx, "\\t", 2 );
                  break;
               default:
                  hb_snprintf( buf, sizeof( buf ), "\\u00%02X", uch );
                  _hb_jsonCtxAdd( pCtx, buf, 6 );
                  break;
            }
            nPos++;
         }
      }
      _hb_jsonCtxAdd( pCtx, "\"", 1 );
   }
   else if( HB_IS_NUMINT( pValue ) )
   {
      char buf[ 24 ];
      HB_MAXINT nVal = hb_itemGetNInt( pValue );
      HB_BOOL fNeg = nVal < 0;
      int i = 0;

      if( fNeg )
         nVal = -nVal;
      do
         buf[ sizeof( buf ) - ++i ] = ( nVal % 10 ) + '0';
      while( ( nVal /= 10 ) != 0 );
      if( fNeg )
         buf[ sizeof( buf ) - ++i ] = '-';
      _hb_jsonCtxAdd( pCtx, &buf[ sizeof( buf ) - i ], i );
   }
   else if( HB_IS_NUMERIC( pValue ) )
   {
      char buf[ 64 ];
      int iDec;
      double dblValue = hb_itemGetNDDec( pValue, &iDec );

      hb_snprintf( buf, sizeof( buf ), "%.*f", iDec, dblValue );
      _hb_jsonCtxAdd( pCtx, buf, strlen( buf ) );
   }
   else if( HB_IS_NIL( pValue ) )
   {
      _hb_jsonCtxAdd( pCtx, "null", 4 );
   }
   else if( HB_IS_LOGICAL( pValue ) )
   {
      if( hb_itemGetL( pValue ) )
         _hb_jsonCtxAdd( pCtx, "true", 4 );
      else
         _hb_jsonCtxAdd( pCtx, "false", 5 );

   }
   else if( HB_IS_DATE( pValue ) )
   {
      char szBuffer[ 10 ];

      hb_itemGetDS( pValue, szBuffer + 1 );
      szBuffer[ 0 ] = '\"';
      szBuffer[ 9 ] = '\"';
      _hb_jsonCtxAdd( pCtx, szBuffer, 10 );
   }
   else if( HB_IS_TIMESTAMP( pValue ) )
   {
      char szBuffer[ 19 ];
      hb_itemGetTS( pValue, szBuffer + 1 );
      szBuffer[ 0 ] = '\"';
      szBuffer[ 18 ] = '\"';
      _hb_jsonCtxAdd( pCtx, szBuffer, 19 );
   }
   else if( HB_IS_ARRAY( pValue ) )
   {
      HB_SIZE nLen = hb_itemSize( pValue );

      if( nLen )
      {
         HB_SIZE nIndex;

         if( pCtx->fHuman )
            _hb_jsonCtxAddIndent( pCtx, nLevel * INDENT_SIZE );

         _hb_jsonCtxAdd( pCtx, "[", 1 );

         for( nIndex = 1; nIndex <= nLen; nIndex++ )
         {
            PHB_ITEM pItem = hb_arrayGetItemPtr( pValue, nIndex );

            if( nIndex > 1 )
               _hb_jsonCtxAdd( pCtx, ",", 1 );

            if( pCtx->fHuman )
               _hb_jsonCtxAdd( pCtx, pCtx->szEol, pCtx->iEolLen );

            if( pCtx->fHuman &&
                ! ( ( HB_IS_ARRAY( pItem ) || HB_IS_HASH( pItem ) ) &&
                    hb_itemSize( pItem ) > 0 ) )
               _hb_jsonCtxAddIndent( pCtx, ( nLevel + 1 ) * INDENT_SIZE );

            _hb_jsonEncode( pItem, pCtx, nLevel + 1, HB_FALSE, cdp );
         }
         if( pCtx->fHuman )
         {
            _hb_jsonCtxAdd( pCtx, pCtx->szEol, pCtx->iEolLen );
            _hb_jsonCtxAddIndent( pCtx, nLevel * INDENT_SIZE );
         }
         _hb_jsonCtxAdd( pCtx, "]", 1 );
      }
      else
         _hb_jsonCtxAdd( pCtx, "[]", 2 );
   }
   else if( HB_IS_HASH( pValue ) )
   {
      HB_SIZE nLen = hb_hashLen( pValue );

      if( nLen )
      {
         HB_SIZE nIndex;

         if( pCtx->fHuman )
            _hb_jsonCtxAddIndent( pCtx, nLevel * INDENT_SIZE );

         _hb_jsonCtxAdd( pCtx, "{", 1 );

         for( nIndex = 1; nIndex <= nLen; nIndex++ )
         {
            PHB_ITEM pKey = hb_hashGetKeyAt( pValue, nIndex );

            if( HB_IS_STRING( pKey ) )
            {
               PHB_ITEM pItem = hb_hashGetValueAt( pValue, nIndex );

               if( nIndex > 1 )
                  _hb_jsonCtxAdd( pCtx, ",", 1 );

               if( pCtx->fHuman )
               {
                  _hb_jsonCtxAdd( pCtx, pCtx->szEol, pCtx->iEolLen );
                  _hb_jsonCtxAddIndent( pCtx, ( nLevel + 1 ) * INDENT_SIZE );
               }
               _hb_jsonEncode( pKey, pCtx, nLevel + 1, HB_FALSE, cdp );

               if( pCtx->fHuman )
               {
                  _hb_jsonCtxAdd( pCtx, ": ", 2 );
                  fEOL = ( HB_IS_ARRAY( pItem ) || HB_IS_HASH( pItem ) ) && hb_itemSize( pItem ) > 0;
               }
               else
               {
                  _hb_jsonCtxAdd( pCtx, ":", 1 );
                  fEOL = HB_FALSE;
               }

               _hb_jsonEncode( pItem, pCtx, nLevel + 1, fEOL, cdp );
            }
         }
         if( pCtx->fHuman )
         {
            _hb_jsonCtxAdd( pCtx, pCtx->szEol, pCtx->iEolLen );
            _hb_jsonCtxAddIndent( pCtx, nLevel * INDENT_SIZE );
         }
         _hb_jsonCtxAdd( pCtx, "}", 1 );
      }
      else
         _hb_jsonCtxAdd( pCtx, "{}", 2 );
   }
   else
   {
      /* All unsupported types are replacd by null */
      _hb_jsonCtxAdd( pCtx, "null", 4 );
   }
}