mirror of
https://github.com/jomjol/AI-on-the-edge-device.git
synced 2025-12-08 20:46:52 +03:00
108 lines
4.0 KiB
C++
108 lines
4.0 KiB
C++
#include <unity.h>
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#include <ClassFlowCNNGeneral.h>
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class UnderTestCNN : public ClassFlowCNNGeneral {
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public:
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using ClassFlowCNNGeneral::ZeigerEvalAnalogNeu;
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using ClassFlowCNNGeneral::ZeigerEvalHybridNeu;
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using ClassFlowCNNGeneral::ClassFlowCNNGeneral;
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};
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/**
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* @brief test if all combinations of digit
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* evaluation are running correctly
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*/
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void test_ZeigerEval()
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{
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UnderTestCNN undertest = UnderTestCNN(nullptr, Digital100);
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// the 5.2 is already above 5.0 and the previous digit too (3)
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printf("Test 5.2, 3\n");
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int result = undertest.ZeigerEvalAnalogNeu(5.2, 3);
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TEST_ASSERT_EQUAL(5, result);
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// the 5.2 is already above 5.0 and the previous digit not (9)
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// so the current digit shoult be reduced (4.9)
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printf("Test 5.2, 9\n");
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TEST_ASSERT_EQUAL(4, undertest.ZeigerEvalAnalogNeu(5.2, 9));
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printf("Test 4.4, 9\n");
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// the 4.4 (digital100) is not above 5 and the previous digit (analog) too (9.3)
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TEST_ASSERT_EQUAL(4, undertest.ZeigerEvalAnalogNeu(4.4, 9));
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printf("Test 4.5, 0\n");
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// the 4.5 (digital100) is not above 5 and the previous digit (analog) too (9.6)
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TEST_ASSERT_EQUAL(4, undertest.ZeigerEvalAnalogNeu(4.5, 0));
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}
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/**
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* @brief test if all combinations of digit
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* evaluation are running correctly
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*/
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void test_ZeigerEvalHybrid() {
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UnderTestCNN undertest = UnderTestCNN(nullptr, Digital100);
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// the 5.2 and no previous should round down
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printf("ZeigerEvalHybridNeu(5.2, 0, -1)\n");
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TEST_ASSERT_EQUAL(5, undertest.ZeigerEvalHybridNeu(5.2, 0, -1));
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// the 5.3 and no previous should trunc to 5
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printf("ZeigerEvalHybridNeu(5.3, 0, -1)\n");
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TEST_ASSERT_EQUAL(5, undertest.ZeigerEvalHybridNeu(5.3, 0, -1));
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printf("ZeigerEvalHybridNeu(5.7, 0, -1)\n");
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// the 5.7 and no previous should trunc to 5
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TEST_ASSERT_EQUAL(6, undertest.ZeigerEvalHybridNeu(5.7, 0, -1));
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// the 5.8 and no previous should round up to 6
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printf("ZeigerEvalHybridNeu(5.8, 0, -1)\n");
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TEST_ASSERT_EQUAL(6, undertest.ZeigerEvalHybridNeu(5.8, 0, -1));
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// the 5.7 with previous and the previous between 0.3-0.5 should round up to 6
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TEST_ASSERT_EQUAL(6, undertest.ZeigerEvalHybridNeu(5.7, 0.4, 1));
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// the 5.3 with previous and the previous between 0.3-0.7 should round down to 5
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TEST_ASSERT_EQUAL(5, undertest.ZeigerEvalHybridNeu(5.3, 0.7, 1));
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// the 5.3 with previous and the previous <=0.5 should trunc to 5
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TEST_ASSERT_EQUAL(5, undertest.ZeigerEvalHybridNeu(5.3, 0.1, 1));
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// the 5.3 with previous and the previous >=9.5 should reduce to 4
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TEST_ASSERT_EQUAL(4, undertest.ZeigerEvalHybridNeu(5.3, 9.6, 9));
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// the 5.7 with previous and the previous >=9.5 should trunc to 5
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TEST_ASSERT_EQUAL(5, undertest.ZeigerEvalHybridNeu(5.7, 9.6, 9));
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// the 4.5 (digital100) is not above 5 and the previous digit (analog) not over Zero (9.6)
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TEST_ASSERT_EQUAL(4, undertest.ZeigerEvalHybridNeu(4.5, 9.6, 0));
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// the 4.5 (digital100) is not above 5 and the previous digit (analog) not over Zero (9.6)
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TEST_ASSERT_EQUAL(4, undertest.ZeigerEvalHybridNeu(4.5, 9.6, 9));
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// the 4.5 (digital100) is not above 5 and the previous digit (analog) not over Zero (9.5)
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TEST_ASSERT_EQUAL(4, undertest.ZeigerEvalHybridNeu(4.5, 9.5, 9));
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// 59.96889 - Pre: 58.94888
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// 8.6 : 9.8 : 6.7
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// the 4.4 (digital100) is not above 5 and the previous digit (analog) not over Zero (9.5)
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TEST_ASSERT_EQUAL(8, undertest.ZeigerEvalHybridNeu(8.6, 9.8, 9));
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// pre = 9.9 (0.0 raw)
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// zahl = 1.8
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TEST_ASSERT_EQUAL(2, undertest.ZeigerEvalHybridNeu(1.8, 9.0, 9));
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// if a digit have an early transition and the pointer is < 9.0
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// prev (pointer) = 6.2, but on digital readout = 6.0 (prev is int parameter)
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// zahl = 4.6
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TEST_ASSERT_EQUAL(4, undertest.ZeigerEvalHybridNeu(4.6, 6.0, 6));
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// issue #879 vorgaenger is -1, zahl = 6.7
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//TEST_ASSERT_EQUAL(7, undertest.ZeigerEvalHybrid(6.7, -1.0, -1));
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}
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