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Commit 95688416 authored by Robert Applin's avatar Robert Applin
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Refs #23463. Start IndirectFitOutput unit tests

parent 19240ad3
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......@@ -324,11 +324,11 @@ void IndirectFitOutput::addOutput(WorkspaceGroup_sptr resultGroup,
m_resultGroup = resultGroup;
}
void IndirectFitOutput::addOutput(
Mantid::API::WorkspaceGroup_sptr resultGroup,
Mantid::API::ITableWorkspace_sptr parameterTable,
Mantid::API::WorkspaceGroup_sptr resultWorkspace,
IndirectFitData const *fitData, std::size_t spectrum) {
void IndirectFitOutput::addOutput(WorkspaceGroup_sptr resultGroup,
ITableWorkspace_sptr parameterTable,
WorkspaceGroup_sptr resultWorkspace,
IndirectFitData const *fitData,
std::size_t spectrum) {
TableRowExtractor extractRowFromTable(parameterTable);
m_parameters[fitData][spectrum] = extractRowFromTable(0);
m_outputResultLocations[fitData][spectrum] = ResultLocation(resultGroup, 0);
......@@ -359,8 +359,8 @@ void IndirectFitOutput::updateParameters(ITableWorkspace_sptr parameterTable,
}
void IndirectFitOutput::updateFitResultsFromUnstructured(
Mantid::API::WorkspaceGroup_sptr resultGroup,
const FitDataIterator &fitDataBegin, const FitDataIterator &fitDataEnd) {
WorkspaceGroup_sptr resultGroup, const FitDataIterator &fitDataBegin,
const FitDataIterator &fitDataEnd) {
std::unordered_map<MatrixWorkspace *,
std::unordered_map<std::size_t, std::size_t>>
resultIndices;
......@@ -376,8 +376,8 @@ void IndirectFitOutput::updateFitResultsFromUnstructured(
}
void IndirectFitOutput::updateFitResultsFromStructured(
Mantid::API::WorkspaceGroup_sptr resultGroup,
const FitDataIterator &fitDataBegin, const FitDataIterator &fitDataEnd) {
WorkspaceGroup_sptr resultGroup, const FitDataIterator &fitDataBegin,
const FitDataIterator &fitDataEnd) {
auto update = [&](IndirectFitData const *inputData) {
auto &fitResults = extractOrAddDefault(m_outputResultLocations, inputData);
return [&](std::size_t index, std::size_t spectrum) {
......
......@@ -18,11 +18,12 @@ using namespace Mantid::IndirectFitDataCreationHelper;
namespace {
IndirectFitData getIndirectFitData(int const &numberOfSpectra) {
std::unique_ptr<IndirectFitData>
getIndirectFitData(int const &numberOfSpectra) {
auto const workspace = createWorkspace(numberOfSpectra);
Spectra const spec = std::make_pair(0u, workspace->getNumberHistograms() - 1);
IndirectFitData data(workspace, spec);
return data;
return std::make_unique<IndirectFitData>(data);
}
} // namespace
......@@ -66,9 +67,10 @@ public:
std::string const inputString = "8,0-7,6,10";
Spectra const spectra = DiscontinuousSpectra<std::size_t>("0-8,10");
data.setSpectra(inputString);
data->setSpectra(inputString);
TS_ASSERT(boost::apply_visitor(AreSpectraEqual(), data.spectra(), spectra));
TS_ASSERT(
boost::apply_visitor(AreSpectraEqual(), data->spectra(), spectra));
}
void
......@@ -77,9 +79,10 @@ public:
std::string const inputString = "1,2,4-3,10";
Spectra const spectra = DiscontinuousSpectra<std::size_t>("1-4,10");
data.setSpectra(inputString);
data->setSpectra(inputString);
TS_ASSERT(boost::apply_visitor(AreSpectraEqual(), data.spectra(), spectra));
TS_ASSERT(
boost::apply_visitor(AreSpectraEqual(), data->spectra(), spectra));
}
void
......@@ -88,14 +91,15 @@ public:
std::string const inputString = " 8,10, 7";
Spectra const spectra = DiscontinuousSpectra<std::size_t>("7-8,10");
data.setSpectra(inputString);
data->setSpectra(inputString);
TS_ASSERT(boost::apply_visitor(AreSpectraEqual(), data.spectra(), spectra));
TS_ASSERT(
boost::apply_visitor(AreSpectraEqual(), data->spectra(), spectra));
}
void test_data_is_stored_in_the_ADS() {
auto const data = getIndirectFitData(1);
SetUpADSWithWorkspace ads("WorkspaceName", data.workspace());
SetUpADSWithWorkspace ads("WorkspaceName", data->workspace());
TS_ASSERT(ads.doesExist("WorkspaceName"));
auto workspace = ads.retrieveWorkspace("WorkspaceName");
......@@ -111,36 +115,36 @@ public:
std::string const rangeDelimiter = "_to_";
std::size_t const spectrum = 1;
TS_ASSERT_EQUALS(data.displayName(formatStrings[0], rangeDelimiter),
TS_ASSERT_EQUALS(data->displayName(formatStrings[0], rangeDelimiter),
"_s0_Result");
TS_ASSERT_EQUALS(data.displayName(formatStrings[1], rangeDelimiter),
TS_ASSERT_EQUALS(data->displayName(formatStrings[1], rangeDelimiter),
"_f0+s0_Parameter");
TS_ASSERT_EQUALS(data.displayName(formatStrings[2], spectrum),
TS_ASSERT_EQUALS(data->displayName(formatStrings[2], spectrum),
"_s1_Parameter");
}
void test_displayName_removes_red_part_of_a_workspace_name() {
auto const data = getIndirectFitData(1);
SetUpADSWithWorkspace ads("Workspace_3456_red", data.workspace());
SetUpADSWithWorkspace ads("Workspace_3456_red", data->workspace());
std::string const formatString = "%1%_s%2%_Result";
std::string const rangeDelimiter = "_to_";
TS_ASSERT_EQUALS(data.displayName(formatString, rangeDelimiter),
TS_ASSERT_EQUALS(data->displayName(formatString, rangeDelimiter),
"Workspace_3456_s0_Result");
}
void
test_that_the_number_of_spectra_returned_matches_the_instantiated_value() {
auto const data = getIndirectFitData(10);
TS_ASSERT_EQUALS(data.numberOfSpectra(), 10);
TS_ASSERT_EQUALS(data->numberOfSpectra(), 10);
}
void test_that_getSpectrum_returns_the_expected_spectrum_numbers() {
auto const data = getIndirectFitData(4);
for (auto i = 0u; i < data.numberOfSpectra(); ++i) {
std::size_t const spectrumNum = data.getSpectrum(i);
for (auto i = 0u; i < data->numberOfSpectra(); ++i) {
std::size_t const spectrumNum = data->getSpectrum(i);
TS_ASSERT_EQUALS(spectrumNum, i);
}
}
......@@ -167,7 +171,7 @@ public:
test_that_false_is_returned_from_zeroSpectra_if_data_contains_one_or_more_spectra() {
for (auto i = 1u; i < 10; ++i) {
auto const data = getIndirectFitData(i);
TS_ASSERT_EQUALS(data.zeroSpectra(), false);
TS_ASSERT_EQUALS(data->zeroSpectra(), false);
}
}
......@@ -177,14 +181,14 @@ public:
/// string is in the correct order(unordered: 10,11 9,7 ordered:10,11,7,9)
auto data = getIndirectFitData(4);
data.setExcludeRegionString("1,8", 0);
data.setExcludeRegionString("2,5", 1);
data.setExcludeRegionString("1,2,5,6,3,4", 2);
data->setExcludeRegionString("1,8", 0);
data->setExcludeRegionString("2,5", 1);
data->setExcludeRegionString("1,2,5,6,3,4", 2);
TS_ASSERT_EQUALS(data.getExcludeRegion(0), "1.0,8.0");
TS_ASSERT_EQUALS(data.getExcludeRegion(1), "2.0,5.0");
TS_ASSERT_EQUALS(data.getExcludeRegion(2), "1.0,2.0,5.0,6.0,3.0,4.0");
TS_ASSERT_EQUALS(data.getExcludeRegion(3), "");
TS_ASSERT_EQUALS(data->getExcludeRegion(0), "1.0,8.0");
TS_ASSERT_EQUALS(data->getExcludeRegion(1), "2.0,5.0");
TS_ASSERT_EQUALS(data->getExcludeRegion(2), "1.0,2.0,5.0,6.0,3.0,4.0");
TS_ASSERT_EQUALS(data->getExcludeRegion(3), "");
}
void
......@@ -193,46 +197,46 @@ public:
/// string is in the correct order(unordered: 10,11 9,7 ordered:10,11,7,9)
auto data = getIndirectFitData(4);
data.setExcludeRegionString("1,8", 0);
data.setExcludeRegionString("2,5", 1);
data->setExcludeRegionString("1,8", 0);
data->setExcludeRegionString("2,5", 1);
std::vector<double> const regionVector1{1.0, 8.0};
std::vector<double> const regionVector2{2.0, 5.0};
TS_ASSERT_EQUALS(data.excludeRegionsVector(0), regionVector1);
TS_ASSERT_EQUALS(data.excludeRegionsVector(1), regionVector2);
TS_ASSERT_EQUALS(data.excludeRegionsVector(3).empty(), true);
TS_ASSERT_EQUALS(data->excludeRegionsVector(0), regionVector1);
TS_ASSERT_EQUALS(data->excludeRegionsVector(1), regionVector2);
TS_ASSERT_EQUALS(data->excludeRegionsVector(3).empty(), true);
}
void test_that_excludeRegion_pairs_are_stored_in_an_order_of_low_to_high() {
/// Example: unordered: 10,11 9,7 ordered: 10,11,7,9
auto data = getIndirectFitData(3);
data.setExcludeRegionString("6,2", 0);
data.setExcludeRegionString("6,2,1,2,3,4,7,6", 1);
data.setExcludeRegionString("1,2,2,3,20,18,21,22,7,8", 2);
data->setExcludeRegionString("6,2", 0);
data->setExcludeRegionString("6,2,1,2,3,4,7,6", 1);
data->setExcludeRegionString("1,2,2,3,20,18,21,22,7,8", 2);
std::vector<double> const regionVector{2.0, 6.0};
TS_ASSERT_EQUALS(data.getExcludeRegion(0), "2.0,6.0");
TS_ASSERT_EQUALS(data.getExcludeRegion(1),
TS_ASSERT_EQUALS(data->getExcludeRegion(0), "2.0,6.0");
TS_ASSERT_EQUALS(data->getExcludeRegion(1),
"2.0,6.0,1.0,2.0,3.0,4.0,6.0,7.0");
TS_ASSERT_EQUALS(data.getExcludeRegion(2),
TS_ASSERT_EQUALS(data->getExcludeRegion(2),
"1.0,2.0,2.0,3.0,18.0,20.0,21.0,22.0,7.0,8.0");
TS_ASSERT_EQUALS(data.excludeRegionsVector(0), regionVector);
TS_ASSERT_EQUALS(data->excludeRegionsVector(0), regionVector);
}
void
test_that_excludeRegion_is_stored_without_spaces_when_there_are_many_spaces_in_input_string() {
auto data = getIndirectFitData(3);
data.setExcludeRegionString(" 6, 2", 0);
data.setExcludeRegionString("6, 2,1 ,2, 3,4 ,7,6", 1);
data.setExcludeRegionString("1,2 ,2,3, 20, 18,21,22,7, 8 ", 2);
data->setExcludeRegionString(" 6, 2", 0);
data->setExcludeRegionString("6, 2,1 ,2, 3,4 ,7,6", 1);
data->setExcludeRegionString("1,2 ,2,3, 20, 18,21,22,7, 8 ", 2);
TS_ASSERT_EQUALS(data.getExcludeRegion(0), "2.0,6.0");
TS_ASSERT_EQUALS(data.getExcludeRegion(1),
TS_ASSERT_EQUALS(data->getExcludeRegion(0), "2.0,6.0");
TS_ASSERT_EQUALS(data->getExcludeRegion(1),
"2.0,6.0,1.0,2.0,3.0,4.0,6.0,7.0");
TS_ASSERT_EQUALS(data.getExcludeRegion(2),
TS_ASSERT_EQUALS(data->getExcludeRegion(2),
"1.0,2.0,2.0,3.0,18.0,20.0,21.0,22.0,7.0,8.0");
}
......@@ -240,11 +244,11 @@ public:
test_that_setExcludeRegion_rounds_the_numbers_in_the_input_string_to_the_appropriate_decimal_place() {
auto data = getIndirectFitData(2);
data.setExcludeRegionString("6.29,2.93", 0);
data.setExcludeRegionString("2.6,2.3,1.99,3.01", 1);
data->setExcludeRegionString("6.29,2.93", 0);
data->setExcludeRegionString("2.6,2.3,1.99,3.01", 1);
TS_ASSERT_EQUALS(data.getExcludeRegion(0), "2.9,6.3");
TS_ASSERT_EQUALS(data.getExcludeRegion(1), "2.3,2.6,2.0,3.0");
TS_ASSERT_EQUALS(data->getExcludeRegion(0), "2.9,6.3");
TS_ASSERT_EQUALS(data->getExcludeRegion(1), "2.3,2.6,2.0,3.0");
}
void test_throws_when_setSpectra_is_provided_an_out_of_range_spectra() {
......@@ -257,9 +261,9 @@ public:
"10", "100000000000000000000000000000", "1,5,10", "1,2,3,4,5,6,22"};
for (auto i = 0u; i < spectraPairs.size(); ++i)
TS_ASSERT_THROWS(data.setSpectra(spectraPairs[i]), std::runtime_error);
TS_ASSERT_THROWS(data->setSpectra(spectraPairs[i]), std::runtime_error);
for (auto i = 0u; i < spectraStrings.size(); ++i)
TS_ASSERT_THROWS(data.setSpectra(spectraStrings[i]), std::runtime_error);
TS_ASSERT_THROWS(data->setSpectra(spectraStrings[i]), std::runtime_error);
}
void test_no_throw_when_setSpectra_is_provided_a_valid_spectra() {
......@@ -271,51 +275,51 @@ public:
"1,2,3,4,5,6"};
for (auto i = 0u; i < spectraPairs.size(); ++i)
TS_ASSERT_THROWS_NOTHING(data.setSpectra(spectraPairs[i]));
TS_ASSERT_THROWS_NOTHING(data->setSpectra(spectraPairs[i]));
for (auto i = 0u; i < spectraStrings.size(); ++i)
TS_ASSERT_THROWS_NOTHING(data.setSpectra(spectraStrings[i]));
TS_ASSERT_THROWS_NOTHING(data->setSpectra(spectraStrings[i]));
}
void
test_no_throw_when_setStartX_is_provided_a_valid_xValue_and_spectrum_number() {
auto data = getIndirectFitData(10);
TS_ASSERT_THROWS_NOTHING(data.setStartX(0.0, 0));
TS_ASSERT_THROWS_NOTHING(data.setStartX(-5.0, 0));
TS_ASSERT_THROWS_NOTHING(data.setStartX(5000000, 10));
TS_ASSERT_THROWS_NOTHING(data->setStartX(0.0, 0));
TS_ASSERT_THROWS_NOTHING(data->setStartX(-5.0, 0));
TS_ASSERT_THROWS_NOTHING(data->setStartX(5000000, 10));
}
void test_the_provided_startX_is_stored_in_range_after_using_setStartX() {
auto data = getIndirectFitData(3);
data.setStartX(-5.0, 0);
data.setStartX(6.53, 1);
data.setStartX(100000000000000.0, 2);
data->setStartX(-5.0, 0);
data->setStartX(6.53, 1);
data->setStartX(100000000000000.0, 2);
TS_ASSERT_EQUALS(data.getRange(0).first, -5.0);
TS_ASSERT_EQUALS(data.getRange(1).first, 6.53);
TS_ASSERT_EQUALS(data.getRange(2).first, 100000000000000.0);
TS_ASSERT_EQUALS(data->getRange(0).first, -5.0);
TS_ASSERT_EQUALS(data->getRange(1).first, 6.53);
TS_ASSERT_EQUALS(data->getRange(2).first, 100000000000000.0);
}
void
test_no_throw_when_setEndX_is_provided_a_valid_xValue_and_spectrum_number() {
auto data = getIndirectFitData(10);
TS_ASSERT_THROWS_NOTHING(data.setStartX(0.0, 0));
TS_ASSERT_THROWS_NOTHING(data.setStartX(-5.0, 0));
TS_ASSERT_THROWS_NOTHING(data.setStartX(5000000, 10));
TS_ASSERT_THROWS_NOTHING(data->setStartX(0.0, 0));
TS_ASSERT_THROWS_NOTHING(data->setStartX(-5.0, 0));
TS_ASSERT_THROWS_NOTHING(data->setStartX(5000000, 10));
}
void test_the_provided_endX_is_stored_in_range_after_using_setEndX() {
auto data = getIndirectFitData(3);
data.setEndX(-5.0, 0);
data.setEndX(6.53, 1);
data.setEndX(100000000000000.0, 2);
data->setEndX(-5.0, 0);
data->setEndX(6.53, 1);
data->setEndX(100000000000000.0, 2);
TS_ASSERT_EQUALS(data.getRange(0).second, -5.0);
TS_ASSERT_EQUALS(data.getRange(1).second, 6.53);
TS_ASSERT_EQUALS(data.getRange(2).second, 100000000000000.0);
TS_ASSERT_EQUALS(data->getRange(0).second, -5.0);
TS_ASSERT_EQUALS(data->getRange(1).second, 6.53);
TS_ASSERT_EQUALS(data->getRange(2).second, 100000000000000.0);
}
void
......@@ -323,9 +327,9 @@ public:
auto data1 = getIndirectFitData(2);
auto data2 = getIndirectFitData(2);
data1.setStartX(6.53, 0);
data2.setStartX(5.0, 1);
auto const combinedData = data2.combine(data1);
data1->setStartX(6.53, 0);
data2->setStartX(5.0, 1);
auto const combinedData = data2->combine(*data1);
TS_ASSERT_EQUALS(combinedData.getRange(0).first, 6.53);
TS_ASSERT_EQUALS(combinedData.getRange(1).first, 5.0);
......@@ -336,9 +340,9 @@ public:
auto data1 = getIndirectFitData(2);
auto data2 = getIndirectFitData(2);
data1.setEndX(2.34, 0);
data2.setEndX(5.9, 1);
auto const combinedData = data2.combine(data1);
data1->setEndX(2.34, 0);
data2->setEndX(5.9, 1);
auto const combinedData = data2->combine(*data1);
TS_ASSERT_EQUALS(combinedData.getRange(0).second, 2.34);
TS_ASSERT_EQUALS(combinedData.getRange(1).second, 5.9);
......@@ -349,9 +353,9 @@ public:
auto data1 = getIndirectFitData(2);
auto data2 = getIndirectFitData(2);
data1.setExcludeRegionString("1,2,6,5", 0);
data1.setExcludeRegionString("6,2", 1);
auto const combinedData = data2.combine(data1);
data1->setExcludeRegionString("1,2,6,5", 0);
data1->setExcludeRegionString("6,2", 1);
auto const combinedData = data2->combine(*data1);
TS_ASSERT_EQUALS(combinedData.getExcludeRegion(0), "1.0,2.0,5.0,6.0");
TS_ASSERT_EQUALS(combinedData.getExcludeRegion(1), "2.0,6.0");
......@@ -362,9 +366,9 @@ public:
auto data1 = getIndirectFitData(10);
auto data2 = getIndirectFitData(10);
data1.setSpectra(std::make_pair(0u, 4u));
data2.setSpectra(std::make_pair(5u, 9u));
auto const combinedData = data2.combine(data1);
data1->setSpectra(std::make_pair(0u, 4u));
data2->setSpectra(std::make_pair(5u, 9u));
auto const combinedData = data2->combine(*data1);
Spectra const spec(std::make_pair(0u, 9u));
TS_ASSERT(
......@@ -376,9 +380,9 @@ public:
auto data1 = getIndirectFitData(10);
auto data2 = getIndirectFitData(10);
data1.setSpectra(std::make_pair(0u, 4u));
data2.setSpectra(std::make_pair(8u, 9u));
auto const combinedData = data2.combine(data1);
data1->setSpectra(std::make_pair(0u, 4u));
data2->setSpectra(std::make_pair(8u, 9u));
auto const combinedData = data2->combine(*data1);
Spectra const spec(DiscontinuousSpectra<std::size_t>("0-4,8-9"));
TS_ASSERT(
......@@ -390,9 +394,9 @@ public:
auto data1 = getIndirectFitData(10);
auto data2 = getIndirectFitData(10);
data1.setSpectra(std::make_pair(0u, 8u));
data2.setSpectra(std::make_pair(4u, 9u));
auto const combinedData = data2.combine(data1);
data1->setSpectra(std::make_pair(0u, 8u));
data2->setSpectra(std::make_pair(4u, 9u));
auto const combinedData = data2->combine(*data1);
Spectra const spec(DiscontinuousSpectra<std::size_t>("0-9"));
TS_ASSERT(
......@@ -404,9 +408,9 @@ public:
auto data1 = getIndirectFitData(10);
auto data2 = getIndirectFitData(10);
data1.setSpectra(DiscontinuousSpectra<std::size_t>("0-4"));
data2.setSpectra(DiscontinuousSpectra<std::size_t>("5-9"));
auto const combinedData = data2.combine(data1);
data1->setSpectra(DiscontinuousSpectra<std::size_t>("0-4"));
data2->setSpectra(DiscontinuousSpectra<std::size_t>("5-9"));
auto const combinedData = data2->combine(*data1);
Spectra const spec(DiscontinuousSpectra<std::size_t>("0-9"));
TS_ASSERT(
......@@ -418,9 +422,9 @@ public:
auto data1 = getIndirectFitData(10);
auto data2 = getIndirectFitData(10);
data1.setSpectra(DiscontinuousSpectra<std::size_t>("0-7"));
data2.setSpectra(DiscontinuousSpectra<std::size_t>("2-9"));
auto const combinedData = data2.combine(data1);
data1->setSpectra(DiscontinuousSpectra<std::size_t>("0-7"));
data2->setSpectra(DiscontinuousSpectra<std::size_t>("2-9"));
auto const combinedData = data2->combine(*data1);
Spectra const spec(DiscontinuousSpectra<std::size_t>("0-9"));
TS_ASSERT(
......@@ -432,9 +436,9 @@ public:
auto data1 = getIndirectFitData(10);
auto data2 = getIndirectFitData(10);
data1.setSpectra(DiscontinuousSpectra<std::size_t>("0-4"));
data2.setSpectra(std::make_pair(5u, 9u));
auto const combinedData = data2.combine(data1);
data1->setSpectra(DiscontinuousSpectra<std::size_t>("0-4"));
data2->setSpectra(std::make_pair(5u, 9u));
auto const combinedData = data2->combine(*data1);
Spectra const spec(DiscontinuousSpectra<std::size_t>("0-9"));
TS_ASSERT(
......@@ -446,9 +450,9 @@ public:
auto data1 = getIndirectFitData(10);
auto data2 = getIndirectFitData(10);
data1.setSpectra(DiscontinuousSpectra<std::size_t>("0-7"));
data2.setSpectra(std::make_pair(4u, 9u));
auto const combinedData = data2.combine(data1);
data1->setSpectra(DiscontinuousSpectra<std::size_t>("0-7"));
data2->setSpectra(std::make_pair(4u, 9u));
auto const combinedData = data2->combine(*data1);
Spectra const spec(DiscontinuousSpectra<std::size_t>("0-9"));
TS_ASSERT(
......
......@@ -4,12 +4,72 @@
#include <cxxtest/TestSuite.h>
#include "IndirectFitOutput.h"
#include "MantidAPI/AlgorithmManager.h"
#include "MantidAPI/ITableWorkspace.h"
#include "MantidAPI/MatrixWorkspace.h"
#include "MantidAPI/TableRow.h"
#include "MantidAPI/WorkspaceGroup.h"
#include "MantidTestHelpers/IndirectFitDataCreationHelper.h"
#include <iostream>
using namespace Mantid::API;
using namespace Mantid::IndirectFitDataCreationHelper;
using namespace MantidQt::CustomInterfaces::IDA;
namespace {
IndirectFitData getIndirectFitData(int const &numberOfSpectra) {
auto const workspace = createWorkspace(numberOfSpectra);
Spectra const spec = std::make_pair(0u, workspace->getNumberHistograms() - 1);
IndirectFitData data(workspace, spec);
return data;
}
ITableWorkspace_sptr getEmptyTableWorkspace() {
auto table = WorkspaceFactory::Instance().createTable();
std::vector<std::string> columnHeadings{"axis-1", "Height", "Height_Err",
"Msd", "Msd_Err", "Chi_squared"};
for (auto i = 0u; i < columnHeadings.size(); ++i)
table->addColumn("double", columnHeadings[i]);
return table;
}
ITableWorkspace_sptr getPopulatedParameterTable(std::size_t const &size) {
auto table = getEmptyTableWorkspace();
for (auto i = 0u; i < size; ++i) {
TableRow row = table->appendRow();
row << 14.675 << 0.047 << 0.001 << 0.514 << 0.0149 << 5.138;
}
return table;
}
WorkspaceGroup_sptr
getGroupWorkspaceWithEmptyWorkspaces(std::size_t const &size) {
WorkspaceGroup_sptr resultWorkspaces = boost::make_shared<WorkspaceGroup>();
for (auto i = 0u; i < size; ++i)
resultWorkspaces->addWorkspace(createWorkspace(10));
return resultWorkspaces;
}
WorkspaceGroup_sptr getResultWorkspaces(std::size_t const &size) {
return getGroupWorkspaceWithEmptyWorkspaces(size);
}
WorkspaceGroup_sptr getResultGroup(std::size_t const &size) {
return getGroupWorkspaceWithEmptyWorkspaces(size);
}
// IndirectFitOutput createFitOutput(WorkspaceGroup_sptr resultGroup,
// ITableWorkspace_sptr parameterTable,
// WorkspaceGroup_sptr resultWorkspace,
// IndirectFitData *fitData,
// std::size_t &spectrum) {
// return MantidQt::CustomInterfaces::IDA::IndirectFitOutput(
// resultGroup, parameterTable, resultWorkspace, fitData, spectrum);
//}
} // namespace
class IndirectFitOutputTest : public CxxTest::TestSuite {
public:
......@@ -19,6 +79,21 @@ public:
static void destroySuite(IndirectFitOutputTest *suite) { delete suite; }
void
test_that_IndirectFitOutput_constructor_will_set_the_values_of_the_output_data() {
auto resultGroup = getResultGroup(2);
auto resultWorkspaces = getResultWorkspaces(2);
auto parameterTable = getPopulatedParameterTable(2);
IndirectFitData *data = new IndirectFitData(getIndirectFitData(5));
std::size_t spectrum = 0;
IndirectFitOutput outputData(resultGroup, parameterTable, resultWorkspaces,
data, spectrum);
// auto const fitOutput = createFitOutput(resultGroup, parameterTable,
// resultWorkspaces, data, spectrum);
}
void
test_that_isSpectrumFit_returns_false_if_the_spectrum_has_not_been_previously_fit() {
}
......
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