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EValidationTest.h
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EValidationTest.h
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// Mantid Repository : https://github.com/mantidproject/mantid
//
// Copyright © 2018 ISIS Rutherford Appleton Laboratory UKRI,
// NScD Oak Ridge National Laboratory, European Spallation Source,
// Institut Laue - Langevin & CSNS, Institute of High Energy Physics, CAS
// SPDX - License - Identifier: GPL - 3.0 +
#pragma once
#include <cxxtest/TestSuite.h>
#include "MantidHistogramData/CountStandardDeviations.h"
#include "MantidHistogramData/CountVariances.h"
#include "MantidHistogramData/EValidation.h"
#include "MantidHistogramData/FrequencyStandardDeviations.h"
#include "MantidHistogramData/FrequencyVariances.h"
#include "MantidHistogramData/HistogramE.h"
#include <cfloat>
#include <numeric>
using Mantid::HistogramData::CountStandardDeviations;
using Mantid::HistogramData::CountVariances;
using Mantid::HistogramData::FrequencyStandardDeviations;
using Mantid::HistogramData::FrequencyVariances;
using Mantid::HistogramData::HistogramE;
using Mantid::HistogramData::isValid;
class EValidationTest : public CxxTest::TestSuite {
public:
// This pair of boilerplate methods prevent the suite being created statically
// This means the constructor isn't called when running other tests
static EValidationTest *createSuite() { return new EValidationTest(); }
static void destroySuite(EValidationTest *suite) { delete suite; }
// FixedLengthVector contains validation, so we need to take a detour for
// creating a potentially invalid HistogramE.
HistogramE makeE(std::initializer_list<double> list) {
std::vector<double> helper(list.size());
std::iota(helper.begin(), helper.end(), 0.0);
HistogramE x(helper);
std::copy(list.begin(), list.end(), x.begin());
return x;
}
void test_works_for_HistogramE() { TS_ASSERT(isValid(HistogramE{1.0, 2.0})); }
void test_works_for_CountStandardDeviations() {
TS_ASSERT(isValid(CountStandardDeviations{1.0, 2.0}));
}
void test_works_for_CountVariances() {
TS_ASSERT(isValid(CountVariances{1.0, 2.0}));
}
void test_works_for_FrequencyStandardDeviations() {
TS_ASSERT(isValid(FrequencyStandardDeviations{1.0, 2.0}));
}
void test_works_for_FrequencyVariances() {
TS_ASSERT(isValid(FrequencyVariances{1.0, 2.0}));
}
void test_length_zero() { TS_ASSERT(isValid(HistogramE(0))); }
void test_detects_negative() {
TS_ASSERT(!isValid(makeE({-1.0, 1.0, 1.0})));
TS_ASSERT(!isValid(makeE({1.0, -1.0, 1.0})));
TS_ASSERT(!isValid(makeE({1.0, 1.0, -1.0})));
}
void test_accepts_nan() {
TS_ASSERT(isValid(makeE({NAN})));
TS_ASSERT(isValid(makeE({-NAN})));
}
void test_detects_inf() {
TS_ASSERT(!isValid(makeE({INFINITY})));
TS_ASSERT(!isValid(makeE({-INFINITY})));
}
};