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| 1 | +package com.thealgorithms.maths; |
| 2 | + |
| 3 | +import static org.junit.jupiter.api.Assertions.assertEquals; |
| 4 | +import static org.junit.jupiter.api.Assertions.assertThrows; |
| 5 | + |
| 6 | +import org.junit.jupiter.api.Test; |
| 7 | + |
| 8 | +class BellNumbersTest { |
| 9 | + |
| 10 | + @Test |
| 11 | + void testStandardCases() { |
| 12 | + // Base cases and small numbers |
| 13 | + assertEquals(1, BellNumbers.compute(0)); |
| 14 | + assertEquals(1, BellNumbers.compute(1)); |
| 15 | + assertEquals(2, BellNumbers.compute(2)); |
| 16 | + assertEquals(5, BellNumbers.compute(3)); |
| 17 | + assertEquals(15, BellNumbers.compute(4)); |
| 18 | + assertEquals(52, BellNumbers.compute(5)); |
| 19 | + } |
| 20 | + |
| 21 | + @Test |
| 22 | + void testMediumNumber() { |
| 23 | + // B10 = 115,975 |
| 24 | + assertEquals(115975, BellNumbers.compute(10)); |
| 25 | + // B15 = 1,382,958,545 |
| 26 | + assertEquals(1382958545L, BellNumbers.compute(15)); |
| 27 | + } |
| 28 | + |
| 29 | + @Test |
| 30 | + void testLargeNumber() { |
| 31 | + // B20 = 51,724,158,235,372 |
| 32 | + // We use the 'L' suffix to tell Java this is a long literal |
| 33 | + assertEquals(51724158235372L, BellNumbers.compute(20)); |
| 34 | + } |
| 35 | + |
| 36 | + @Test |
| 37 | + void testMaxLongCapacity() { |
| 38 | + // B25 is the largest Bell number that fits in a Java long (signed 64-bit) |
| 39 | + // B25 = 4,638,590,332,229,999,353 |
| 40 | + assertEquals(4638590332229999353L, BellNumbers.compute(25)); |
| 41 | + } |
| 42 | + |
| 43 | + @Test |
| 44 | + void testNegativeInput() { |
| 45 | + assertThrows(IllegalArgumentException.class, () -> BellNumbers.compute(-1)); |
| 46 | + } |
| 47 | + |
| 48 | + @Test |
| 49 | + void testOverflowProtection() { |
| 50 | + // We expect an exception if the user asks for the impossible |
| 51 | + assertThrows(IllegalArgumentException.class, () -> BellNumbers.compute(26)); |
| 52 | + } |
| 53 | +} |
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