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/*
*
* Copyright (C) 2019, Open Connections GmbH
* All rights reserved. See COPYRIGHT file for details.
*
* This software and supporting documentation are maintained by
*
* OFFIS e.V.
* R&D Division Health
* Escherweg 2
* D-26121 Oldenburg, Germany
*
*
*
*
* Author: Michael Onken
*
* Purpose: Class for managing common Enhanced CT-specific types
*
*/
#include "dcmtk/dcmect/types.h"
#include "dcmtk/config/osconfig.h"
#include "dcmtk/dcmdata/dcerror.h"
OFLogger DCM_dcmectLogger = OFLog::getLogger("dcmtk.dcmect");
/*---------------------------------*
* constant definitions
*---------------------------------*/
// conditions
// makeOFConditionConst(ECT_EC_...., OFM_dcmect, 1, OF_error, "...");
const OFString EctTypes::DT_ImageType3_Angio = "ANGIO";
const OFString EctTypes::DT_ImageType3_Cardiac = "CARDICAC";
const OFString EctTypes::DT_ImageType3_CardiacGated = "CARDIAC_GATED";
const OFString EctTypes::DT_ImageType3_CardRespGated = "CARDRESP_GATED";
const OFString EctTypes::DT_ImageType3_Dynamic = "DYNAMIC";
const OFString EctTypes::DT_ImageType3_Fluoroscopy = "FLOUROSCOPY";
const OFString EctTypes::DT_ImageType3_Localizer = "LOCALIZER";
const OFString EctTypes::DT_ImageType3_Motion = "MOTION";
const OFString EctTypes::DT_ImageType3_Perfusion = "PERFUSION";
const OFString EctTypes::DT_ImageType3_PreContrast = "PRE_CONTRAST";
const OFString EctTypes::DT_ImageType3_PostContrast = "POST_CONTRAST";
const OFString EctTypes::DT_ImageType3_RespGated = "RESP_GATED";
const OFString EctTypes::DT_ImageType3_Rest = "REST";
const OFString EctTypes::DT_ImageType3_Static = "STATIC";
const OFString EctTypes::DT_ImageType3_Stress = "STRESS";
const OFString EctTypes::DT_ImageType3_Volume = "VOLUME";
const OFString EctTypes::DT_ImageType3_NonParallel = "NON_PARALLEL";
const OFString EctTypes::DT_ImageType3_WholeBody = "WHOLE_BODY";
const OFString EctTypes::DT_ImageType4_Addition = "ADDITION";
const OFString EctTypes::DT_ImageType4_Division = "DIVISION";
const OFString EctTypes::DT_ImageType4_Masked = "MASKED";
const OFString EctTypes::DT_ImageType4_Maximum = "MAXIMUM";
const OFString EctTypes::DT_ImageType4_Mean = "MEAN";
const OFString EctTypes::DT_ImageType4_Minimum = "MINIMUM";
const OFString EctTypes::DT_ImageType4_Multiplication = "MULTIPLICATION";
const OFString EctTypes::DT_ImageType4_Resampled = "RESAMPLED";
const OFString EctTypes::DT_ImageType4_Std_Deviation = "STD_DEVIATION";
const OFString EctTypes::DT_ImageType4_Subtraction = "SUBTRACTION";
const OFString EctTypes::DT_ImageType4_None = "NONE";
const OFString EctTypes::DT_ImageType4_Quantity = "QUANTITY";
const OFString EctTypes::DT_ImageType4_Mixed = "MIXED";
const OFString EctTypes::DT_VolBasedCalcTechnique_MaxIp = "MAX_IP";
const OFString EctTypes::DT_VolBasedCalcTechnique_MinIp = "MIN_IP";
const OFString EctTypes::DT_VolBasedCalcTechnique_VolumeRender = "VOLUME_RENDER";
const OFString EctTypes::DT_VolBasedCalcTechnique_SurfaceRender = "SURFACE_RENDER";
const OFString EctTypes::DT_VolBasedCalcTechnique_Mpr = "MPR";
const OFString EctTypes::DT_VolBasedCalcTechnique_CurvedMpr = "CURVED_MPR";
const OFString EctTypes::DT_VolBasedCalcTechnique_None = "NONE";
const OFString EctTypes::DT_VolBasedCalcTechnique_Mixed = "MIXED";
// conditions
makeOFConditionConst(ECT_InvalidDimensions, OFM_dcmect, 1, OF_error, "Invalid Dimensions");
makeOFConditionConst(ECT_InvalidAttributeValue, OFM_dcmect, 2, OF_error, "Invalid Attribute Value");
makeOFConditionConst(
ECT_InvalidPixelInfo, OFM_dcmect, 3, OF_error, "Invalid information in pixel data or related attributes");
makeOFConditionConst(ECT_InvalidPixelData, OFM_dcmect, 4, OF_error, "Invalid pixel data");
makeOFConditionConst(ECT_NoPixelData, OFM_dcmect, 5, OF_error, "No pixel data found");
makeOFConditionConst(ECT_InvalidSOPClass, OFM_dcmect, 6, OF_error, "SOP Class not supported");
OFString EctTypes::imageType1ToStr(const E_ImageType1 value)
{
switch (value)
{
case E_ImageType1_Empty:
return "";
break;
case E_ImageType1_Invalid:
return "";
break;
case E_ImageType1_Original:
return "ORIGINAL";
break;
case E_ImageType1_Derived:
return "DERIVED";
break;
case E_ImageType1_Mixed:
return "MIXED";
break;
default:
DCMECT_ERROR("Internal error, invalid value for E_ImageType1: " << value);
return "";
}
}
OFString EctTypes::imageType2ToStr(const E_ImageType2 value)
{
switch (value)
{
case E_ImageType2_Empty:
return "";
break;
case E_ImageType2_Invalid:
return "";
break;
case E_ImageType2_Primary:
return "PRIMARY";
break;
default:
DCMECT_ERROR("Internal error, invalid value for E_ImageType2: " << value);
return "";
}
}
OFString EctTypes::contentQualiToStr(const E_ContentQualification value)
{
switch (value)
{
case E_ContentQuali_Empty:
return "";
break;
case E_ContentQuali_Invalid:
return "";
break;
case E_ContQuali_Product:
return "PRODUCT";
break;
case E_ContQuali_Research:
return "RESEARCH";
break;
case E_ContQuali_Service:
return "SERVICE";
break;
default:
DCMECT_ERROR("Internal error, invalid value for E_ContentQualification: " << value);
return "";
}
}
OFString EctTypes::burnedAnnoToStr(const E_BurnedInAnnotation value)
{
switch (value)
{
case E_BurnedInAnno_Empty:
return "";
break;
case E_BurnedInAnno_Invalid:
return "";
break;
case E_BurnedInAnno_No:
return "NO";
break;
default:
DCMECT_ERROR("Internal error, invalid value for E_BurnedInAnnotation: " << value);
return "";
}
}
OFString EctTypes::pixelPresToStr(const E_PixelPresentation value)
{
switch (value)
{
case E_PixelPres_Empty:
return "";
break;
case E_PixelPres_Invalid:
return "";
break;
case E_PixelPres_Color:
return "COLOR";
break;
case E_PixelPres_Mixed:
return "MIXED";
break;
case E_PixelPres_Monochrome:
return "MONOCHROME";
case E_PixelPres_TrueColor:
return "TRUE_COLOR";
default:
DCMECT_ERROR("Internal error, invalid value for E_PixelPresentation: " << value);
return "";
}
}
OFString EctTypes::volPropsToStr(const E_VolumetricProperties value)
{
switch (value)
{
case E_VolProps_Empty:
return "";
break;
case E_VolProps_Invalid:
return "";
break;
case E_VolProps_Distorted:
return "DISTORTED";
break;
case E_VolProps_Mixed:
return "MIXED";
break;
case E_VolProps_Sampled:
return "SAMPLED";
break;
case E_VolProps_Volume:
return "VOLUME";
break;
default:
DCMECT_ERROR("Internal error, invalid value for E_VolumetricProperties: " << value);
return "";
}
}
OFString EctTypes::recoVisFeaturesToStr(const E_RecognizableVisualFeatures value)
{
switch (value)
{
case E_RecoVisFeatures_Empty:
return "";
break;
case E_RecoVisFeatures_Invalid:
return "";
break;
case E_RecoVisFeatures_No:
return "NO";
break;
case E_RecoVisFeatures_Yes:
return "YES";
break;
default:
DCMECT_ERROR("Internal error, invalid value for E_RecognizableVisualFeatures: " << value);
return "";
}
}
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