Mercurial > hg > orthanc
view OrthancFramework/UnitTestsSources/DicomMapTests.cpp @ 4100:90eaf36e6adf
removed useless line
author | Sebastien Jodogne <s.jodogne@gmail.com> |
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date | Mon, 06 Jul 2020 08:49:41 +0200 |
parents | e00f3d089991 |
children | bf7b9edf6b81 |
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/** * Orthanc - A Lightweight, RESTful DICOM Store * Copyright (C) 2012-2016 Sebastien Jodogne, Medical Physics * Department, University Hospital of Liege, Belgium * Copyright (C) 2017-2020 Osimis S.A., Belgium * * 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 3 of the * License, or (at your option) any later version. * * In addition, as a special exception, the copyright holders of this * program give permission to link the code of its release with the * OpenSSL project's "OpenSSL" library (or with modified versions of it * that use the same license as the "OpenSSL" library), and distribute * the linked executables. You must obey the GNU General Public License * in all respects for all of the code used other than "OpenSSL". If you * modify file(s) with this exception, you may extend this exception to * your version of the file(s), but you are not obligated to do so. If * you do not wish to do so, delete this exception statement from your * version. If you delete this exception statement from all source files * in the program, then also delete it here. * * 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, see <http://www.gnu.org/licenses/>. **/ #if ORTHANC_UNIT_TESTS_LINK_FRAMEWORK == 1 // Must be the first to be sure to use the Orthanc framework shared library # include <OrthancFramework.h> #endif #if !defined(DCMTK_VERSION_NUMBER) # error DCMTK_VERSION_NUMBER is not defined #endif #include <gtest/gtest.h> #include "../Sources/Compatibility.h" #include "../Sources/OrthancException.h" #include "../Sources/DicomFormat/DicomMap.h" #include "../Sources/DicomParsing/FromDcmtkBridge.h" #include "../Sources/DicomParsing/ToDcmtkBridge.h" #include "../Sources/DicomParsing/ParsedDicomFile.h" #include "../Sources/DicomParsing/DicomWebJsonVisitor.h" using namespace Orthanc; TEST(DicomMap, MainTags) { ASSERT_TRUE(DicomMap::IsMainDicomTag(DICOM_TAG_PATIENT_ID)); ASSERT_TRUE(DicomMap::IsMainDicomTag(DICOM_TAG_PATIENT_ID, ResourceType_Patient)); ASSERT_FALSE(DicomMap::IsMainDicomTag(DICOM_TAG_PATIENT_ID, ResourceType_Study)); ASSERT_TRUE(DicomMap::IsMainDicomTag(DICOM_TAG_STUDY_INSTANCE_UID)); ASSERT_TRUE(DicomMap::IsMainDicomTag(DICOM_TAG_ACCESSION_NUMBER)); ASSERT_TRUE(DicomMap::IsMainDicomTag(DICOM_TAG_SERIES_INSTANCE_UID)); ASSERT_TRUE(DicomMap::IsMainDicomTag(DICOM_TAG_SOP_INSTANCE_UID)); std::set<DicomTag> s; DicomMap::GetMainDicomTags(s); ASSERT_TRUE(s.end() != s.find(DICOM_TAG_PATIENT_ID)); ASSERT_TRUE(s.end() != s.find(DICOM_TAG_STUDY_INSTANCE_UID)); ASSERT_TRUE(s.end() != s.find(DICOM_TAG_ACCESSION_NUMBER)); ASSERT_TRUE(s.end() != s.find(DICOM_TAG_SERIES_INSTANCE_UID)); ASSERT_TRUE(s.end() != s.find(DICOM_TAG_SOP_INSTANCE_UID)); DicomMap::GetMainDicomTags(s, ResourceType_Patient); ASSERT_TRUE(s.end() != s.find(DICOM_TAG_PATIENT_ID)); ASSERT_TRUE(s.end() == s.find(DICOM_TAG_STUDY_INSTANCE_UID)); DicomMap::GetMainDicomTags(s, ResourceType_Study); ASSERT_TRUE(s.end() != s.find(DICOM_TAG_STUDY_INSTANCE_UID)); ASSERT_TRUE(s.end() != s.find(DICOM_TAG_ACCESSION_NUMBER)); ASSERT_TRUE(s.end() == s.find(DICOM_TAG_PATIENT_ID)); DicomMap::GetMainDicomTags(s, ResourceType_Series); ASSERT_TRUE(s.end() != s.find(DICOM_TAG_SERIES_INSTANCE_UID)); ASSERT_TRUE(s.end() == s.find(DICOM_TAG_PATIENT_ID)); DicomMap::GetMainDicomTags(s, ResourceType_Instance); ASSERT_TRUE(s.end() != s.find(DICOM_TAG_SOP_INSTANCE_UID)); ASSERT_TRUE(s.end() == s.find(DICOM_TAG_PATIENT_ID)); } TEST(DicomMap, Tags) { std::set<DicomTag> s; DicomMap m; m.GetTags(s); ASSERT_EQ(0u, s.size()); ASSERT_FALSE(m.HasTag(DICOM_TAG_PATIENT_NAME)); ASSERT_FALSE(m.HasTag(0x0010, 0x0010)); m.SetValue(0x0010, 0x0010, "PatientName", false); ASSERT_TRUE(m.HasTag(DICOM_TAG_PATIENT_NAME)); ASSERT_TRUE(m.HasTag(0x0010, 0x0010)); m.GetTags(s); ASSERT_EQ(1u, s.size()); ASSERT_EQ(DICOM_TAG_PATIENT_NAME, *s.begin()); ASSERT_FALSE(m.HasTag(DICOM_TAG_PATIENT_ID)); m.SetValue(DICOM_TAG_PATIENT_ID, "PatientID", false); ASSERT_TRUE(m.HasTag(0x0010, 0x0020)); m.SetValue(DICOM_TAG_PATIENT_ID, "PatientID2", false); ASSERT_EQ("PatientID2", m.GetValue(0x0010, 0x0020).GetContent()); m.GetTags(s); ASSERT_EQ(2u, s.size()); m.Remove(DICOM_TAG_PATIENT_ID); ASSERT_THROW(m.GetValue(0x0010, 0x0020), OrthancException); m.GetTags(s); ASSERT_EQ(1u, s.size()); ASSERT_EQ(DICOM_TAG_PATIENT_NAME, *s.begin()); std::unique_ptr<DicomMap> mm(m.Clone()); ASSERT_EQ("PatientName", mm->GetValue(DICOM_TAG_PATIENT_NAME).GetContent()); m.SetValue(DICOM_TAG_PATIENT_ID, "Hello", false); ASSERT_THROW(mm->GetValue(DICOM_TAG_PATIENT_ID), OrthancException); mm->CopyTagIfExists(m, DICOM_TAG_PATIENT_ID); ASSERT_EQ("Hello", mm->GetValue(DICOM_TAG_PATIENT_ID).GetContent()); DicomValue v; ASSERT_TRUE(v.IsNull()); } TEST(DicomMap, FindTemplates) { DicomMap m; DicomMap::SetupFindPatientTemplate(m); ASSERT_TRUE(m.HasTag(DICOM_TAG_PATIENT_ID)); DicomMap::SetupFindStudyTemplate(m); ASSERT_TRUE(m.HasTag(DICOM_TAG_STUDY_INSTANCE_UID)); ASSERT_TRUE(m.HasTag(DICOM_TAG_ACCESSION_NUMBER)); DicomMap::SetupFindSeriesTemplate(m); ASSERT_TRUE(m.HasTag(DICOM_TAG_SERIES_INSTANCE_UID)); DicomMap::SetupFindInstanceTemplate(m); ASSERT_TRUE(m.HasTag(DICOM_TAG_SOP_INSTANCE_UID)); } static void TestModule(ResourceType level, DicomModule module) { // REFERENCE: DICOM PS3.3 2015c - Information Object Definitions // http://dicom.nema.org/medical/dicom/current/output/html/part03.html std::set<DicomTag> moduleTags, main; DicomTag::AddTagsForModule(moduleTags, module); DicomMap::GetMainDicomTags(main, level); // The main dicom tags are a subset of the module for (std::set<DicomTag>::const_iterator it = main.begin(); it != main.end(); ++it) { bool ok = moduleTags.find(*it) != moduleTags.end(); // Exceptions for the Study level if (level == ResourceType_Study && (*it == DicomTag(0x0008, 0x0080) || /* InstitutionName, from Visit identification module, related to Visit */ *it == DicomTag(0x0032, 0x1032) || /* RequestingPhysician, from Imaging Service Request module, related to Study */ *it == DicomTag(0x0032, 0x1060))) /* RequestedProcedureDescription, from Requested Procedure module, related to Study */ { ok = true; } // Exceptions for the Series level if (level == ResourceType_Series && (*it == DicomTag(0x0008, 0x0070) || /* Manufacturer, from General Equipment Module */ *it == DicomTag(0x0008, 0x1010) || /* StationName, from General Equipment Module */ *it == DicomTag(0x0018, 0x0024) || /* SequenceName, from MR Image Module (SIMPLIFICATION => Series) */ *it == DicomTag(0x0018, 0x1090) || /* CardiacNumberOfImages, from MR Image Module (SIMPLIFICATION => Series) */ *it == DicomTag(0x0020, 0x0037) || /* ImageOrientationPatient, from Image Plane Module (SIMPLIFICATION => Series) */ *it == DicomTag(0x0020, 0x0105) || /* NumberOfTemporalPositions, from MR Image Module (SIMPLIFICATION => Series) */ *it == DicomTag(0x0020, 0x1002) || /* ImagesInAcquisition, from General Image Module (SIMPLIFICATION => Series) */ *it == DicomTag(0x0054, 0x0081) || /* NumberOfSlices, from PET Series module */ *it == DicomTag(0x0054, 0x0101) || /* NumberOfTimeSlices, from PET Series module */ *it == DicomTag(0x0054, 0x1000) || /* SeriesType, from PET Series module */ *it == DicomTag(0x0018, 0x1400) || /* AcquisitionDeviceProcessingDescription, from CR/X-Ray/DX/WholeSlideMicro Image (SIMPLIFICATION => Series) */ *it == DicomTag(0x0018, 0x0010))) /* ContrastBolusAgent, from Contrast/Bolus module (SIMPLIFICATION => Series) */ { ok = true; } // Exceptions for the Instance level if (level == ResourceType_Instance && (*it == DicomTag(0x0020, 0x0012) || /* AccessionNumber, from General Image module */ *it == DicomTag(0x0054, 0x1330) || /* ImageIndex, from PET Image module */ *it == DicomTag(0x0020, 0x0100) || /* TemporalPositionIdentifier, from MR Image module */ *it == DicomTag(0x0028, 0x0008) || /* NumberOfFrames, from Multi-frame module attributes, related to Image */ *it == DicomTag(0x0020, 0x0032) || /* ImagePositionPatient, from Image Plan module, related to Image */ *it == DicomTag(0x0020, 0x0037) || /* ImageOrientationPatient, from Image Plane Module (Orthanc 1.4.2) */ *it == DicomTag(0x0020, 0x4000))) /* ImageComments, from General Image module */ { ok = true; } if (!ok) { std::cout << it->Format() << ": " << FromDcmtkBridge::GetTagName(*it, "") << " not expected at level " << EnumerationToString(level) << std::endl; } EXPECT_TRUE(ok); } } TEST(DicomMap, Modules) { TestModule(ResourceType_Patient, DicomModule_Patient); TestModule(ResourceType_Study, DicomModule_Study); TestModule(ResourceType_Series, DicomModule_Series); // TODO TestModule(ResourceType_Instance, DicomModule_Instance); } TEST(DicomMap, Parse) { DicomMap m; float f; double d; int32_t i; int64_t j; uint32_t k; uint64_t l; unsigned int ui; std::string s; m.SetValue(DICOM_TAG_PATIENT_NAME, " ", false); // Empty value ASSERT_FALSE(m.GetValue(DICOM_TAG_PATIENT_NAME).ParseFloat(f)); ASSERT_FALSE(m.GetValue(DICOM_TAG_PATIENT_NAME).ParseDouble(d)); ASSERT_FALSE(m.GetValue(DICOM_TAG_PATIENT_NAME).ParseInteger32(i)); ASSERT_FALSE(m.GetValue(DICOM_TAG_PATIENT_NAME).ParseInteger64(j)); ASSERT_FALSE(m.GetValue(DICOM_TAG_PATIENT_NAME).ParseUnsignedInteger32(k)); ASSERT_FALSE(m.GetValue(DICOM_TAG_PATIENT_NAME).ParseUnsignedInteger64(l)); m.SetValue(DICOM_TAG_PATIENT_NAME, "0", true); // Binary value ASSERT_FALSE(m.GetValue(DICOM_TAG_PATIENT_NAME).ParseFloat(f)); ASSERT_FALSE(m.GetValue(DICOM_TAG_PATIENT_NAME).ParseDouble(d)); ASSERT_FALSE(m.GetValue(DICOM_TAG_PATIENT_NAME).ParseInteger32(i)); ASSERT_FALSE(m.GetValue(DICOM_TAG_PATIENT_NAME).ParseInteger64(j)); ASSERT_FALSE(m.GetValue(DICOM_TAG_PATIENT_NAME).ParseUnsignedInteger32(k)); ASSERT_FALSE(m.GetValue(DICOM_TAG_PATIENT_NAME).ParseUnsignedInteger64(l)); ASSERT_FALSE(m.LookupStringValue(s, DICOM_TAG_PATIENT_NAME, false)); ASSERT_TRUE(m.LookupStringValue(s, DICOM_TAG_PATIENT_NAME, true)); ASSERT_EQ("0", s); // 2**31-1 m.SetValue(DICOM_TAG_PATIENT_NAME, "2147483647", false); ASSERT_TRUE(m.GetValue(DICOM_TAG_PATIENT_NAME).ParseFloat(f)); ASSERT_TRUE(m.GetValue(DICOM_TAG_PATIENT_NAME).ParseDouble(d)); ASSERT_TRUE(m.GetValue(DICOM_TAG_PATIENT_NAME).ParseInteger32(i)); ASSERT_TRUE(m.GetValue(DICOM_TAG_PATIENT_NAME).ParseInteger64(j)); ASSERT_TRUE(m.GetValue(DICOM_TAG_PATIENT_NAME).ParseUnsignedInteger32(k)); ASSERT_TRUE(m.GetValue(DICOM_TAG_PATIENT_NAME).ParseUnsignedInteger64(l)); ASSERT_FLOAT_EQ(2147483647.0f, f); ASSERT_DOUBLE_EQ(2147483647.0, d); ASSERT_EQ(2147483647, i); ASSERT_EQ(2147483647ll, j); ASSERT_EQ(2147483647u, k); ASSERT_EQ(2147483647ull, l); // Test shortcuts m.SetValue(DICOM_TAG_PATIENT_NAME, "42", false); ASSERT_TRUE(m.ParseFloat(f, DICOM_TAG_PATIENT_NAME)); ASSERT_TRUE(m.ParseDouble(d, DICOM_TAG_PATIENT_NAME)); ASSERT_TRUE(m.ParseInteger32(i, DICOM_TAG_PATIENT_NAME)); ASSERT_TRUE(m.ParseInteger64(j, DICOM_TAG_PATIENT_NAME)); ASSERT_TRUE(m.ParseUnsignedInteger32(k, DICOM_TAG_PATIENT_NAME)); ASSERT_TRUE(m.ParseUnsignedInteger64(l, DICOM_TAG_PATIENT_NAME)); ASSERT_FLOAT_EQ(42.0f, f); ASSERT_DOUBLE_EQ(42.0, d); ASSERT_EQ(42, i); ASSERT_EQ(42ll, j); ASSERT_EQ(42u, k); ASSERT_EQ(42ull, l); ASSERT_TRUE(m.LookupStringValue(s, DICOM_TAG_PATIENT_NAME, false)); ASSERT_EQ("42", s); ASSERT_TRUE(m.LookupStringValue(s, DICOM_TAG_PATIENT_NAME, true)); ASSERT_EQ("42", s); // 2**31 m.SetValue(DICOM_TAG_PATIENT_NAME, "2147483648", false); ASSERT_TRUE(m.GetValue(DICOM_TAG_PATIENT_NAME).ParseFloat(f)); ASSERT_TRUE(m.GetValue(DICOM_TAG_PATIENT_NAME).ParseDouble(d)); ASSERT_FALSE(m.GetValue(DICOM_TAG_PATIENT_NAME).ParseInteger32(i)); ASSERT_TRUE(m.GetValue(DICOM_TAG_PATIENT_NAME).ParseInteger64(j)); ASSERT_TRUE(m.GetValue(DICOM_TAG_PATIENT_NAME).ParseUnsignedInteger32(k)); ASSERT_TRUE(m.GetValue(DICOM_TAG_PATIENT_NAME).ParseUnsignedInteger64(l)); ASSERT_FLOAT_EQ(2147483648.0f, f); ASSERT_DOUBLE_EQ(2147483648.0, d); ASSERT_EQ(2147483648ll, j); ASSERT_EQ(2147483648u, k); ASSERT_EQ(2147483648ull, l); // 2**32-1 m.SetValue(DICOM_TAG_PATIENT_NAME, "4294967295", false); ASSERT_TRUE(m.GetValue(DICOM_TAG_PATIENT_NAME).ParseFloat(f)); ASSERT_TRUE(m.GetValue(DICOM_TAG_PATIENT_NAME).ParseDouble(d)); ASSERT_FALSE(m.GetValue(DICOM_TAG_PATIENT_NAME).ParseInteger32(i)); ASSERT_TRUE(m.GetValue(DICOM_TAG_PATIENT_NAME).ParseInteger64(j)); ASSERT_TRUE(m.GetValue(DICOM_TAG_PATIENT_NAME).ParseUnsignedInteger32(k)); ASSERT_TRUE(m.GetValue(DICOM_TAG_PATIENT_NAME).ParseUnsignedInteger64(l)); ASSERT_FLOAT_EQ(4294967295.0f, f); ASSERT_DOUBLE_EQ(4294967295.0, d); ASSERT_EQ(4294967295ll, j); ASSERT_EQ(4294967295u, k); ASSERT_EQ(4294967295ull, l); // 2**32 m.SetValue(DICOM_TAG_PATIENT_NAME, "4294967296", false); ASSERT_TRUE(m.GetValue(DICOM_TAG_PATIENT_NAME).ParseFloat(f)); ASSERT_TRUE(m.GetValue(DICOM_TAG_PATIENT_NAME).ParseDouble(d)); ASSERT_FALSE(m.GetValue(DICOM_TAG_PATIENT_NAME).ParseInteger32(i)); ASSERT_TRUE(m.GetValue(DICOM_TAG_PATIENT_NAME).ParseInteger64(j)); ASSERT_FALSE(m.GetValue(DICOM_TAG_PATIENT_NAME).ParseUnsignedInteger32(k)); ASSERT_TRUE(m.GetValue(DICOM_TAG_PATIENT_NAME).ParseUnsignedInteger64(l)); ASSERT_FLOAT_EQ(4294967296.0f, f); ASSERT_DOUBLE_EQ(4294967296.0, d); ASSERT_EQ(4294967296ll, j); ASSERT_EQ(4294967296ull, l); m.SetValue(DICOM_TAG_PATIENT_NAME, "-1", false); ASSERT_TRUE(m.GetValue(DICOM_TAG_PATIENT_NAME).ParseFloat(f)); ASSERT_TRUE(m.GetValue(DICOM_TAG_PATIENT_NAME).ParseDouble(d)); ASSERT_TRUE(m.GetValue(DICOM_TAG_PATIENT_NAME).ParseInteger32(i)); ASSERT_TRUE(m.GetValue(DICOM_TAG_PATIENT_NAME).ParseInteger64(j)); ASSERT_FALSE(m.GetValue(DICOM_TAG_PATIENT_NAME).ParseUnsignedInteger32(k)); ASSERT_FALSE(m.GetValue(DICOM_TAG_PATIENT_NAME).ParseUnsignedInteger64(l)); ASSERT_FLOAT_EQ(-1.0f, f); ASSERT_DOUBLE_EQ(-1.0, d); ASSERT_EQ(-1, i); ASSERT_EQ(-1ll, j); // -2**31 m.SetValue(DICOM_TAG_PATIENT_NAME, "-2147483648", false); ASSERT_TRUE(m.GetValue(DICOM_TAG_PATIENT_NAME).ParseFloat(f)); ASSERT_TRUE(m.GetValue(DICOM_TAG_PATIENT_NAME).ParseDouble(d)); ASSERT_TRUE(m.GetValue(DICOM_TAG_PATIENT_NAME).ParseInteger32(i)); ASSERT_TRUE(m.GetValue(DICOM_TAG_PATIENT_NAME).ParseInteger64(j)); ASSERT_FALSE(m.GetValue(DICOM_TAG_PATIENT_NAME).ParseUnsignedInteger32(k)); ASSERT_FALSE(m.GetValue(DICOM_TAG_PATIENT_NAME).ParseUnsignedInteger64(l)); ASSERT_FLOAT_EQ(-2147483648.0f, f); ASSERT_DOUBLE_EQ(-2147483648.0, d); ASSERT_EQ(static_cast<int32_t>(-2147483648ll), i); ASSERT_EQ(-2147483648ll, j); // -2**31 - 1 m.SetValue(DICOM_TAG_PATIENT_NAME, "-2147483649", false); ASSERT_TRUE(m.GetValue(DICOM_TAG_PATIENT_NAME).ParseFloat(f)); ASSERT_TRUE(m.GetValue(DICOM_TAG_PATIENT_NAME).ParseDouble(d)); ASSERT_FALSE(m.GetValue(DICOM_TAG_PATIENT_NAME).ParseInteger32(i)); ASSERT_TRUE(m.GetValue(DICOM_TAG_PATIENT_NAME).ParseInteger64(j)); ASSERT_FALSE(m.GetValue(DICOM_TAG_PATIENT_NAME).ParseUnsignedInteger32(k)); ASSERT_FALSE(m.GetValue(DICOM_TAG_PATIENT_NAME).ParseUnsignedInteger64(l)); ASSERT_FLOAT_EQ(-2147483649.0f, f); ASSERT_DOUBLE_EQ(-2147483649.0, d); ASSERT_EQ(-2147483649ll, j); // "800\0" in US COLMUNS tag m.SetValue(DICOM_TAG_COLUMNS, "800\0", false); ASSERT_TRUE(m.GetValue(DICOM_TAG_COLUMNS).ParseFirstUnsignedInteger(ui)); ASSERT_EQ(800u, ui); m.SetValue(DICOM_TAG_COLUMNS, "800", false); ASSERT_TRUE(m.GetValue(DICOM_TAG_COLUMNS).ParseFirstUnsignedInteger(ui)); ASSERT_EQ(800u, ui); } TEST(DicomMap, Serialize) { Json::Value s; { DicomMap m; m.SetValue(DICOM_TAG_PATIENT_NAME, "Hello", false); m.SetValue(DICOM_TAG_STUDY_DESCRIPTION, "Binary", true); m.SetNullValue(DICOM_TAG_SERIES_DESCRIPTION); m.Serialize(s); } { DicomMap m; m.Unserialize(s); const DicomValue* v = m.TestAndGetValue(DICOM_TAG_ACCESSION_NUMBER); ASSERT_TRUE(v == NULL); v = m.TestAndGetValue(DICOM_TAG_PATIENT_NAME); ASSERT_TRUE(v != NULL); ASSERT_FALSE(v->IsNull()); ASSERT_FALSE(v->IsBinary()); ASSERT_EQ("Hello", v->GetContent()); v = m.TestAndGetValue(DICOM_TAG_STUDY_DESCRIPTION); ASSERT_TRUE(v != NULL); ASSERT_FALSE(v->IsNull()); ASSERT_TRUE(v->IsBinary()); ASSERT_EQ("Binary", v->GetContent()); v = m.TestAndGetValue(DICOM_TAG_SERIES_DESCRIPTION); ASSERT_TRUE(v != NULL); ASSERT_TRUE(v->IsNull()); ASSERT_FALSE(v->IsBinary()); ASSERT_THROW(v->GetContent(), OrthancException); } } TEST(DicomMap, ExtractMainDicomTags) { DicomMap b; b.SetValue(DICOM_TAG_PATIENT_NAME, "E", false); ASSERT_TRUE(b.HasOnlyMainDicomTags()); { DicomMap a; a.SetValue(DICOM_TAG_PATIENT_NAME, "A", false); a.SetValue(DICOM_TAG_STUDY_DESCRIPTION, "B", false); a.SetValue(DICOM_TAG_SERIES_DESCRIPTION, "C", false); a.SetValue(DICOM_TAG_NUMBER_OF_FRAMES, "D", false); a.SetValue(DICOM_TAG_SLICE_THICKNESS, "F", false); ASSERT_FALSE(a.HasOnlyMainDicomTags()); b.ExtractMainDicomTags(a); } ASSERT_EQ(4u, b.GetSize()); ASSERT_EQ("A", b.GetValue(DICOM_TAG_PATIENT_NAME).GetContent()); ASSERT_EQ("B", b.GetValue(DICOM_TAG_STUDY_DESCRIPTION).GetContent()); ASSERT_EQ("C", b.GetValue(DICOM_TAG_SERIES_DESCRIPTION).GetContent()); ASSERT_EQ("D", b.GetValue(DICOM_TAG_NUMBER_OF_FRAMES).GetContent()); ASSERT_FALSE(b.HasTag(DICOM_TAG_SLICE_THICKNESS)); ASSERT_TRUE(b.HasOnlyMainDicomTags()); b.SetValue(DICOM_TAG_PATIENT_NAME, "G", false); { DicomMap a; a.SetValue(DICOM_TAG_PATIENT_NAME, "A", false); a.SetValue(DICOM_TAG_SLICE_THICKNESS, "F", false); ASSERT_FALSE(a.HasOnlyMainDicomTags()); b.Merge(a); } ASSERT_EQ(5u, b.GetSize()); ASSERT_EQ("G", b.GetValue(DICOM_TAG_PATIENT_NAME).GetContent()); ASSERT_EQ("B", b.GetValue(DICOM_TAG_STUDY_DESCRIPTION).GetContent()); ASSERT_EQ("C", b.GetValue(DICOM_TAG_SERIES_DESCRIPTION).GetContent()); ASSERT_EQ("D", b.GetValue(DICOM_TAG_NUMBER_OF_FRAMES).GetContent()); ASSERT_EQ("F", b.GetValue(DICOM_TAG_SLICE_THICKNESS).GetContent()); ASSERT_FALSE(b.HasOnlyMainDicomTags()); } TEST(DicomMap, RemoveBinary) { DicomMap b; b.SetValue(DICOM_TAG_PATIENT_NAME, "A", false); b.SetValue(DICOM_TAG_PATIENT_ID, "B", true); b.SetValue(DICOM_TAG_STUDY_INSTANCE_UID, DicomValue()); // NULL b.SetValue(DICOM_TAG_SERIES_INSTANCE_UID, DicomValue("C", false)); b.SetValue(DICOM_TAG_SOP_INSTANCE_UID, DicomValue("D", true)); b.RemoveBinaryTags(); std::string s; ASSERT_EQ(2u, b.GetSize()); ASSERT_TRUE(b.LookupStringValue(s, DICOM_TAG_PATIENT_NAME, false)); ASSERT_EQ("A", s); ASSERT_TRUE(b.LookupStringValue(s, DICOM_TAG_SERIES_INSTANCE_UID, false)); ASSERT_EQ("C", s); } TEST(DicomWebJson, Multiplicity) { // http://dicom.nema.org/medical/dicom/current/output/chtml/part18/sect_F.2.4.html ParsedDicomFile dicom(false); dicom.ReplacePlainString(DICOM_TAG_PATIENT_NAME, "SB1^SB2^SB3^SB4^SB5"); dicom.ReplacePlainString(DICOM_TAG_IMAGE_ORIENTATION_PATIENT, "1\\2.3\\4"); dicom.ReplacePlainString(DICOM_TAG_IMAGE_POSITION_PATIENT, ""); DicomWebJsonVisitor visitor; dicom.Apply(visitor); { const Json::Value& tag = visitor.GetResult() ["00200037"]; // ImageOrientationPatient const Json::Value& value = tag["Value"]; ASSERT_EQ(EnumerationToString(ValueRepresentation_DecimalString), tag["vr"].asString()); ASSERT_EQ(2u, tag.getMemberNames().size()); ASSERT_EQ(3u, value.size()); ASSERT_EQ(Json::realValue, value[1].type()); ASSERT_FLOAT_EQ(1.0f, value[0].asFloat()); ASSERT_FLOAT_EQ(2.3f, value[1].asFloat()); ASSERT_FLOAT_EQ(4.0f, value[2].asFloat()); } { const Json::Value& tag = visitor.GetResult() ["00200032"]; // ImagePositionPatient ASSERT_EQ(EnumerationToString(ValueRepresentation_DecimalString), tag["vr"].asString()); ASSERT_EQ(1u, tag.getMemberNames().size()); } std::string xml; visitor.FormatXml(xml); { DicomMap m; m.FromDicomWeb(visitor.GetResult()); ASSERT_EQ(3u, m.GetSize()); std::string s; ASSERT_TRUE(m.LookupStringValue(s, DICOM_TAG_PATIENT_NAME, false)); ASSERT_EQ("SB1^SB2^SB3^SB4^SB5", s); ASSERT_TRUE(m.LookupStringValue(s, DICOM_TAG_IMAGE_POSITION_PATIENT, false)); ASSERT_TRUE(s.empty()); ASSERT_TRUE(m.LookupStringValue(s, DICOM_TAG_IMAGE_ORIENTATION_PATIENT, false)); std::vector<std::string> v; Toolbox::TokenizeString(v, s, '\\'); ASSERT_FLOAT_EQ(1.0f, boost::lexical_cast<float>(v[0])); ASSERT_FLOAT_EQ(2.3f, boost::lexical_cast<float>(v[1])); ASSERT_FLOAT_EQ(4.0f, boost::lexical_cast<float>(v[2])); } } TEST(DicomWebJson, NullValue) { // http://dicom.nema.org/medical/dicom/current/output/chtml/part18/sect_F.2.5.html ParsedDicomFile dicom(false); dicom.ReplacePlainString(DICOM_TAG_IMAGE_ORIENTATION_PATIENT, "1.5\\\\\\2.5"); DicomWebJsonVisitor visitor; dicom.Apply(visitor); { const Json::Value& tag = visitor.GetResult() ["00200037"]; const Json::Value& value = tag["Value"]; ASSERT_EQ(EnumerationToString(ValueRepresentation_DecimalString), tag["vr"].asString()); ASSERT_EQ(2u, tag.getMemberNames().size()); ASSERT_EQ(4u, value.size()); ASSERT_EQ(Json::realValue, value[0].type()); ASSERT_EQ(Json::nullValue, value[1].type()); ASSERT_EQ(Json::nullValue, value[2].type()); ASSERT_EQ(Json::realValue, value[3].type()); ASSERT_FLOAT_EQ(1.5f, value[0].asFloat()); ASSERT_FLOAT_EQ(2.5f, value[3].asFloat()); } std::string xml; visitor.FormatXml(xml); { DicomMap m; m.FromDicomWeb(visitor.GetResult()); ASSERT_EQ(1u, m.GetSize()); std::string s; ASSERT_TRUE(m.LookupStringValue(s, DICOM_TAG_IMAGE_ORIENTATION_PATIENT, false)); std::vector<std::string> v; Toolbox::TokenizeString(v, s, '\\'); ASSERT_FLOAT_EQ(1.5f, boost::lexical_cast<float>(v[0])); ASSERT_TRUE(v[1].empty()); ASSERT_TRUE(v[2].empty()); ASSERT_FLOAT_EQ(2.5f, boost::lexical_cast<float>(v[3])); } } TEST(DicomWebJson, PixelSpacing) { // Test related to locales: Make sure that decimal separator is // correctly handled (dot "." vs comma ",") ParsedDicomFile source(false); source.ReplacePlainString(DICOM_TAG_PIXEL_SPACING, "1.5\\1.3"); DicomWebJsonVisitor visitor; source.Apply(visitor); DicomMap target; target.FromDicomWeb(visitor.GetResult()); ASSERT_EQ("DS", visitor.GetResult() ["00280030"]["vr"].asString()); ASSERT_FLOAT_EQ(1.5f, visitor.GetResult() ["00280030"]["Value"][0].asFloat()); ASSERT_FLOAT_EQ(1.3f, visitor.GetResult() ["00280030"]["Value"][1].asFloat()); std::string s; ASSERT_TRUE(target.LookupStringValue(s, DICOM_TAG_PIXEL_SPACING, false)); ASSERT_EQ(s, "1.5\\1.3"); } TEST(DicomMap, MainTagNames) { ASSERT_EQ(3, ResourceType_Instance - ResourceType_Patient); for (int i = ResourceType_Patient; i <= ResourceType_Instance; i++) { ResourceType level = static_cast<ResourceType>(i); std::set<DicomTag> tags; DicomMap::GetMainDicomTags(tags, level); for (std::set<DicomTag>::const_iterator it = tags.begin(); it != tags.end(); ++it) { DicomMap a; a.SetValue(*it, "TEST", false); Json::Value json; a.DumpMainDicomTags(json, level); ASSERT_EQ(Json::objectValue, json.type()); ASSERT_EQ(1u, json.getMemberNames().size()); std::string name = json.getMemberNames() [0]; EXPECT_EQ(name, FromDcmtkBridge::GetTagName(*it, "")); DicomMap b; b.ParseMainDicomTags(json, level); ASSERT_EQ(1u, b.GetSize()); ASSERT_EQ("TEST", b.GetStringValue(*it, "", false)); std::string main = it->GetMainTagsName(); if (!main.empty()) { ASSERT_EQ(main, name); } } } }