import unittest from calc.lexer import tokenize, Token, LexError def kinds(src): return [t.kind for t in tokenize(src)] def tok(src): return [(t.kind, t.value) for t in tokenize(src)] class TestNumbers(unittest.TestCase): def test_integer(self): t = tokenize("42") self.assertEqual(t[0], Token('NUMBER', 42)) self.assertIsInstance(t[0].value, int) self.assertEqual(t[1].kind, 'EOF') def test_float(self): t = tokenize("3.14") self.assertEqual(t[0], Token('NUMBER', 3.14)) self.assertIsInstance(t[0].value, float) def test_leading_dot(self): t = tokenize(".5") self.assertAlmostEqual(t[0].value, 0.5) self.assertIsInstance(t[0].value, float) def test_trailing_dot(self): t = tokenize("10.") self.assertAlmostEqual(t[0].value, 10.0) self.assertIsInstance(t[0].value, float) class TestOperatorsAndParens(unittest.TestCase): def test_all_operators(self): self.assertEqual(kinds("+"), ['PLUS', 'EOF']) self.assertEqual(kinds("-"), ['MINUS', 'EOF']) self.assertEqual(kinds("*"), ['STAR', 'EOF']) self.assertEqual(kinds("/"), ['SLASH', 'EOF']) self.assertEqual(kinds("("), ['LPAREN', 'EOF']) self.assertEqual(kinds(")"), ['RPAREN', 'EOF']) def test_expression(self): self.assertEqual(kinds("1+2*3"), ['NUMBER', 'PLUS', 'NUMBER', 'STAR', 'NUMBER', 'EOF']) class TestWhitespaceAndErrors(unittest.TestCase): def test_whitespace_skipped(self): self.assertEqual(kinds(" 12 + 3 "), ['NUMBER', 'PLUS', 'NUMBER', 'EOF']) def test_complex_expr(self): result = tok("3.5*(1-2)") self.assertEqual(result, [ ('NUMBER', 3.5), ('STAR', '*'), ('LPAREN', '('), ('NUMBER', 1), ('MINUS', '-'), ('NUMBER', 2), ('RPAREN', ')'), ('EOF', None), ]) def test_lex_error_at_sign(self): with self.assertRaises(LexError) as ctx: tokenize("1 @ 2") self.assertIn('@', str(ctx.exception)) self.assertIn('2', str(ctx.exception)) # position 2 def test_lex_error_letter(self): with self.assertRaises(LexError): tokenize("1 + x") def test_lex_error_dollar(self): with self.assertRaises(LexError): tokenize("$") if __name__ == '__main__': unittest.main()