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import re |
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import sys |
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import unittest |
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sys.path.insert(0, '..') |
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from pycparser.c_lexer import CLexer |
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def token_list(clex): |
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return list(iter(clex.token, None)) |
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def token_types(clex): |
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return [i.type for i in token_list(clex)] |
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class TestCLexerNoErrors(unittest.TestCase): |
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""" Test lexing of strings that are not supposed to cause |
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errors. Therefore, the error_func passed to the lexer |
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raises an exception. |
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""" |
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def error_func(self, msg, line, column): |
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self.fail(msg) |
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def on_lbrace_func(self): |
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pass |
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def on_rbrace_func(self): |
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pass |
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def type_lookup_func(self, typ): |
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if typ.startswith('mytype'): |
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return True |
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else: |
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return False |
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def setUp(self): |
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self.clex = CLexer(self.error_func, lambda: None, lambda: None, |
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self.type_lookup_func) |
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self.clex.build(optimize=False) |
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def assertTokensTypes(self, str, types): |
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self.clex.input(str) |
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self.assertEqual(token_types(self.clex), types) |
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def test_trivial_tokens(self): |
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self.assertTokensTypes('1', ['INT_CONST_DEC']) |
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self.assertTokensTypes('-', ['MINUS']) |
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self.assertTokensTypes('volatile', ['VOLATILE']) |
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self.assertTokensTypes('...', ['ELLIPSIS']) |
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self.assertTokensTypes('++', ['PLUSPLUS']) |
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self.assertTokensTypes('case int', ['CASE', 'INT']) |
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self.assertTokensTypes('caseint', ['ID']) |
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self.assertTokensTypes('$dollar cent$', ['ID', 'ID']) |
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self.assertTokensTypes('i ^= 1;', ['ID', 'XOREQUAL', 'INT_CONST_DEC', 'SEMI']) |
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def test_id_typeid(self): |
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self.assertTokensTypes('myt', ['ID']) |
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self.assertTokensTypes('mytype', ['TYPEID']) |
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self.assertTokensTypes('mytype6 var', ['TYPEID', 'ID']) |
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def test_integer_constants(self): |
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self.assertTokensTypes('12', ['INT_CONST_DEC']) |
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self.assertTokensTypes('12u', ['INT_CONST_DEC']) |
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self.assertTokensTypes('12l', ['INT_CONST_DEC']) |
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self.assertTokensTypes('199872Ul', ['INT_CONST_DEC']) |
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self.assertTokensTypes('199872lU', ['INT_CONST_DEC']) |
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self.assertTokensTypes('199872LL', ['INT_CONST_DEC']) |
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self.assertTokensTypes('199872ull', ['INT_CONST_DEC']) |
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self.assertTokensTypes('199872llu', ['INT_CONST_DEC']) |
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self.assertTokensTypes('1009843200000uLL', ['INT_CONST_DEC']) |
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self.assertTokensTypes('1009843200000LLu', ['INT_CONST_DEC']) |
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self.assertTokensTypes('077', ['INT_CONST_OCT']) |
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self.assertTokensTypes('0123456L', ['INT_CONST_OCT']) |
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self.assertTokensTypes('0xf7', ['INT_CONST_HEX']) |
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self.assertTokensTypes('0b110', ['INT_CONST_BIN']) |
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self.assertTokensTypes('0x01202AAbbf7Ul', ['INT_CONST_HEX']) |
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self.assertTokensTypes("'12'", ['INT_CONST_CHAR']) |
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self.assertTokensTypes("'123'", ['INT_CONST_CHAR']) |
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self.assertTokensTypes("'1AB4'", ['INT_CONST_CHAR']) |
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self.assertTokensTypes(r"'1A\n4'", ['INT_CONST_CHAR']) |
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self.assertTokensTypes('xf7', ['ID']) |
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self.assertTokensTypes('-1', ['MINUS', 'INT_CONST_DEC']) |
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def test_special_names(self): |
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self.assertTokensTypes('sizeof offsetof', ['SIZEOF', 'OFFSETOF']) |
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def test_new_keywords(self): |
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self.assertTokensTypes('_Bool', ['_BOOL']) |
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self.assertTokensTypes('_Atomic', ['_ATOMIC']) |
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self.assertTokensTypes('_Alignas _Alignof', ['_ALIGNAS', '_ALIGNOF']) |
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def test_floating_constants(self): |
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self.assertTokensTypes('1.5f', ['FLOAT_CONST']) |
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self.assertTokensTypes('01.5', ['FLOAT_CONST']) |
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self.assertTokensTypes('.15L', ['FLOAT_CONST']) |
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self.assertTokensTypes('0.', ['FLOAT_CONST']) |
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self.assertTokensTypes('.', ['PERIOD']) |
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self.assertTokensTypes('3.3e-3', ['FLOAT_CONST']) |
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self.assertTokensTypes('.7e25L', ['FLOAT_CONST']) |
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self.assertTokensTypes('6.e+125f', ['FLOAT_CONST']) |
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self.assertTokensTypes('666e666', ['FLOAT_CONST']) |
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self.assertTokensTypes('00666e+3', ['FLOAT_CONST']) |
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self.assertTokensTypes('0x0666e+3', ['INT_CONST_HEX', 'PLUS', 'INT_CONST_DEC']) |
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def test_hexadecimal_floating_constants(self): |
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self.assertTokensTypes('0xDE.488641p0', ['HEX_FLOAT_CONST']) |
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self.assertTokensTypes('0x.488641p0', ['HEX_FLOAT_CONST']) |
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self.assertTokensTypes('0X12.P0', ['HEX_FLOAT_CONST']) |
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def test_char_constants(self): |
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self.assertTokensTypes(r"""'x'""", ['CHAR_CONST']) |
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self.assertTokensTypes(r"""L'x'""", ['WCHAR_CONST']) |
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self.assertTokensTypes(r"""u8'x'""", ['U8CHAR_CONST']) |
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self.assertTokensTypes(r"""u'x'""", ['U16CHAR_CONST']) |
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self.assertTokensTypes(r"""U'x'""", ['U32CHAR_CONST']) |
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self.assertTokensTypes(r"""'\t'""", ['CHAR_CONST']) |
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self.assertTokensTypes(r"""'\''""", ['CHAR_CONST']) |
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self.assertTokensTypes(r"""'\?'""", ['CHAR_CONST']) |
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self.assertTokensTypes(r"""'\0'""", ['CHAR_CONST']) |
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self.assertTokensTypes(r"""'\012'""", ['CHAR_CONST']) |
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self.assertTokensTypes(r"""'\x2f'""", ['CHAR_CONST']) |
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self.assertTokensTypes(r"""'\x2f12'""", ['CHAR_CONST']) |
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self.assertTokensTypes(r"""L'\xaf'""", ['WCHAR_CONST']) |
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def test_on_rbrace_lbrace(self): |
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braces = [] |
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def on_lbrace(): |
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braces.append('{') |
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def on_rbrace(): |
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braces.append('}') |
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clex = CLexer(self.error_func, on_lbrace, on_rbrace, |
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self.type_lookup_func) |
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clex.build(optimize=False) |
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clex.input('hello { there } } and again }}{') |
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token_list(clex) |
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self.assertEqual(braces, ['{', '}', '}', '}', '}', '{']) |
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def test_string_literal(self): |
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self.assertTokensTypes('"a string"', ['STRING_LITERAL']) |
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self.assertTokensTypes('L"ing"', ['WSTRING_LITERAL']) |
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self.assertTokensTypes('u8"ing"', ['U8STRING_LITERAL']) |
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self.assertTokensTypes('u"ing"', ['U16STRING_LITERAL']) |
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self.assertTokensTypes('U"ing"', ['U32STRING_LITERAL']) |
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self.assertTokensTypes( |
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'"i am a string too \t"', |
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['STRING_LITERAL']) |
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self.assertTokensTypes( |
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r'''"esc\ape \"\'\? \0234 chars \rule"''', |
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['STRING_LITERAL']) |
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self.assertTokensTypes( |
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r'''"hello 'joe' wanna give it a \"go\"?"''', |
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['STRING_LITERAL']) |
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self.assertTokensTypes( |
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'"\123\123\123\123\123\123\123\123\123\123\123\123\123\123\123\123"', |
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['STRING_LITERAL']) |
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self.assertTokensTypes( |
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r'"\x"', |
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['STRING_LITERAL']) |
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self.assertTokensTypes( |
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r'"\a\b\c\d\e\f\g\h\i\j\k\l\m\n\o\p\q\r\s\t\u\v\w\x\y\z\A\B\C\D\E\F\G\H\I\J\K\L\M\N\O\P\Q\R\S\T\U\V\W\X\Y\Z"', |
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['STRING_LITERAL']) |
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self.assertTokensTypes( |
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r'"C:\x\fa\x1e\xited"', |
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['STRING_LITERAL']) |
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self.assertTokensTypes( |
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r'"jx\9"', |
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['STRING_LITERAL']) |
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self.assertTokensTypes( |
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r'"fo\9999999"', |
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['STRING_LITERAL']) |
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def test_mess(self): |
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self.assertTokensTypes( |
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r'[{}]()', |
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['LBRACKET', |
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'LBRACE', 'RBRACE', |
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'RBRACKET', |
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'LPAREN', 'RPAREN']) |
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self.assertTokensTypes( |
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r'()||!C&~Z?J', |
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['LPAREN', 'RPAREN', |
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'LOR', |
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'LNOT', 'ID', |
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'AND', |
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'NOT', 'ID', |
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'CONDOP', 'ID']) |
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self.assertTokensTypes( |
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r'+-*/%|||&&&^><>=<===!=', |
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['PLUS', 'MINUS', 'TIMES', 'DIVIDE', 'MOD', |
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'LOR', 'OR', |
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'LAND', 'AND', |
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'XOR', |
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'GT', 'LT', 'GE', 'LE', 'EQ', 'NE']) |
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self.assertTokensTypes( |
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r'++--->?.,;:', |
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['PLUSPLUS', 'MINUSMINUS', |
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'ARROW', 'CONDOP', |
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'PERIOD', 'COMMA', 'SEMI', 'COLON']) |
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def test_exprs(self): |
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self.assertTokensTypes( |
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'bb-cc', |
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['ID', 'MINUS', 'ID']) |
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self.assertTokensTypes( |
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'foo & 0xFF', |
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['ID', 'AND', 'INT_CONST_HEX']) |
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self.assertTokensTypes( |
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'(2+k) * 62', |
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['LPAREN', 'INT_CONST_DEC', 'PLUS', 'ID', |
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'RPAREN', 'TIMES', 'INT_CONST_DEC'],) |
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self.assertTokensTypes( |
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'x | y >> z', |
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['ID', 'OR', 'ID', 'RSHIFT', 'ID']) |
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self.assertTokensTypes( |
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'x <<= z << 5', |
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['ID', 'LSHIFTEQUAL', 'ID', 'LSHIFT', 'INT_CONST_DEC']) |
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self.assertTokensTypes( |
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'x = y > 0 ? y : -6', |
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['ID', 'EQUALS', |
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'ID', 'GT', 'INT_CONST_OCT', |
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'CONDOP', |
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'ID', |
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'COLON', |
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'MINUS', 'INT_CONST_DEC']) |
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self.assertTokensTypes( |
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'a+++b', |
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['ID', 'PLUSPLUS', 'PLUS', 'ID']) |
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def test_statements(self): |
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self.assertTokensTypes( |
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'for (int i = 0; i < n; ++i)', |
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['FOR', 'LPAREN', |
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'INT', 'ID', 'EQUALS', 'INT_CONST_OCT', 'SEMI', |
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'ID', 'LT', 'ID', 'SEMI', |
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'PLUSPLUS', 'ID', |
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'RPAREN']) |
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self.assertTokensTypes( |
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'self: goto self;', |
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['ID', 'COLON', 'GOTO', 'ID', 'SEMI']) |
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self.assertTokensTypes( |
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""" switch (typ) |
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{ |
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case TYPE_ID: |
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m = 5; |
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break; |
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default: |
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m = 8; |
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}""", |
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['SWITCH', 'LPAREN', 'ID', 'RPAREN', |
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'LBRACE', |
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'CASE', 'ID', 'COLON', |
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'ID', 'EQUALS', 'INT_CONST_DEC', 'SEMI', |
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'BREAK', 'SEMI', |
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'DEFAULT', 'COLON', |
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'ID', 'EQUALS', 'INT_CONST_DEC', 'SEMI', |
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'RBRACE']) |
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def test_preprocessor_line(self): |
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self.assertTokensTypes('#abracadabra', ['PPHASH', 'ID']) |
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str = r""" |
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546 |
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#line 66 "kwas\df.h" |
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id 4 |
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dsf |
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# 9 |
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armo |
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#line 10 "..\~..\test.h" |
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tok1 |
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#line 99999 "include/me.h" |
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tok2 |
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""" |
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self.clex.input(str) |
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self.clex.reset_lineno() |
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t1 = self.clex.token() |
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self.assertEqual(t1.type, 'INT_CONST_DEC') |
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self.assertEqual(t1.lineno, 2) |
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t2 = self.clex.token() |
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self.assertEqual(t2.type, 'ID') |
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self.assertEqual(t2.value, 'id') |
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self.assertEqual(t2.lineno, 66) |
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self.assertEqual(self.clex.filename, r'kwas\df.h') |
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for i in range(3): |
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t = self.clex.token() |
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self.assertEqual(t.type, 'ID') |
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self.assertEqual(t.value, 'armo') |
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self.assertEqual(t.lineno, 9) |
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self.assertEqual(self.clex.filename, r'kwas\df.h') |
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t4 = self.clex.token() |
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self.assertEqual(t4.type, 'ID') |
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self.assertEqual(t4.value, 'tok1') |
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self.assertEqual(t4.lineno, 10) |
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self.assertEqual(self.clex.filename, r'..\~..\test.h') |
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t5 = self.clex.token() |
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self.assertEqual(t5.type, 'ID') |
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self.assertEqual(t5.value, 'tok2') |
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self.assertEqual(t5.lineno, 99999) |
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self.assertEqual(self.clex.filename, r'include/me.h') |
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def test_preprocessor_line_funny(self): |
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str = r''' |
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#line 10 "..\6\joe.h" |
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10 |
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''' |
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self.clex.input(str) |
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self.clex.reset_lineno() |
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t1 = self.clex.token() |
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self.assertEqual(t1.type, 'INT_CONST_DEC') |
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self.assertEqual(t1.lineno, 10) |
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self.assertEqual(self.clex.filename, r'..\6\joe.h') |
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def test_preprocessor_pragma(self): |
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str = ''' |
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42 |
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#pragma |
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#pragma helo me |
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#pragma once |
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# pragma omp parallel private(th_id) |
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#\tpragma {pack: 2, smack: 3} |
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#pragma <includeme.h> "nowit.h" |
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#pragma "string" |
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#pragma somestring="some_other_string" |
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#pragma id 124124 and numbers 0235495 |
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_Pragma("something else") |
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59 |
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''' |
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self.clex.input(str) |
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self.clex.reset_lineno() |
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t1 = self.clex.token() |
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self.assertEqual(t1.type, 'INT_CONST_DEC') |
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t2 = self.clex.token() |
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self.assertEqual(t2.type, 'PPPRAGMA') |
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t3 = self.clex.token() |
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self.assertEqual(t3.type, 'PPPRAGMA') |
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t4 = self.clex.token() |
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self.assertEqual(t4.type, 'PPPRAGMASTR') |
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self.assertEqual(t4.value, 'helo me') |
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for i in range(3): |
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t = self.clex.token() |
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t5 = self.clex.token() |
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self.assertEqual(t5.type, 'PPPRAGMASTR') |
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self.assertEqual(t5.value, 'omp parallel private(th_id)') |
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for i in range(5): |
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ta = self.clex.token() |
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self.assertEqual(ta.type, 'PPPRAGMA') |
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tb = self.clex.token() |
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self.assertEqual(tb.type, 'PPPRAGMASTR') |
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t6a = self.clex.token() |
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t6l = self.clex.token() |
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t6b = self.clex.token() |
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t6r = self.clex.token() |
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self.assertEqual(t6a.type, '_PRAGMA') |
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self.assertEqual(t6l.type, 'LPAREN') |
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self.assertEqual(t6b.type, 'STRING_LITERAL') |
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self.assertEqual(t6b.value, '"something else"') |
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self.assertEqual(t6r.type, 'RPAREN') |
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t7 = self.clex.token() |
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self.assertEqual(t7.type, 'INT_CONST_DEC') |
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self.assertEqual(t7.lineno, 13) |
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ERR_ILLEGAL_CHAR = 'Illegal character' |
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ERR_OCTAL = 'Invalid octal constant' |
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ERR_UNMATCHED_QUOTE = 'Unmatched \'' |
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ERR_INVALID_CCONST = 'Invalid char constant' |
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ERR_STRING_ESCAPE = 'String contains invalid escape' |
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ERR_FILENAME_BEFORE_LINE = 'filename before line' |
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ERR_LINENUM_MISSING = 'line number missing' |
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ERR_INVALID_LINE_DIRECTIVE = 'invalid #line directive' |
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class TestCLexerErrors(unittest.TestCase): |
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""" Test lexing of erroneous strings. |
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Works by passing an error functions that saves the error |
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in an attribute for later perusal. |
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""" |
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def error_func(self, msg, line, column): |
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self.error = msg |
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|
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def on_lbrace_func(self): |
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pass |
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|
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def on_rbrace_func(self): |
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pass |
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|
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def type_lookup_func(self, typ): |
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return False |
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|
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def setUp(self): |
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self.clex = CLexer(self.error_func, self.on_lbrace_func, |
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self.on_rbrace_func, self.type_lookup_func) |
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self.clex.build(optimize=False) |
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self.error = "" |
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def assertLexerError(self, str, error_like): |
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self.clex.input(str) |
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|
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token_types(self.clex) |
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self.assertTrue(re.search(error_like, self.error), |
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"\nExpected error matching: %s\nGot: %s" % |
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(error_like, self.error)) |
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self.error = "" |
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|
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def test_trivial_tokens(self): |
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self.assertLexerError('@', ERR_ILLEGAL_CHAR) |
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self.assertLexerError('`', ERR_ILLEGAL_CHAR) |
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self.assertLexerError('\\', ERR_ILLEGAL_CHAR) |
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|
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def test_integer_constants(self): |
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self.assertLexerError('029', ERR_OCTAL) |
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self.assertLexerError('012345678', ERR_OCTAL) |
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|
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def test_char_constants(self): |
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self.assertLexerError("'", ERR_UNMATCHED_QUOTE) |
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self.assertLexerError("'b\n", ERR_UNMATCHED_QUOTE) |
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self.assertLexerError("'\\xaa\n'", ERR_UNMATCHED_QUOTE) |
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self.assertLexerError(r"'123\12a'", ERR_INVALID_CCONST) |
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self.assertLexerError(r"'123\xabg'", ERR_INVALID_CCONST) |
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self.assertLexerError("''", ERR_INVALID_CCONST) |
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self.assertLexerError("'abcjx'", ERR_INVALID_CCONST) |
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self.assertLexerError(r"'\*'", ERR_INVALID_CCONST) |
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|
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def test_string_literals(self): |
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self.assertLexerError(r'"jx\`"', ERR_STRING_ESCAPE) |
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self.assertLexerError(r'"hekllo\* on ix"', ERR_STRING_ESCAPE) |
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self.assertLexerError(r'L"hekllo\* on ix"', ERR_STRING_ESCAPE) |
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self.assertLexerError(r'"\123\123\123\123\123\123\123\123\123\123\123\123\123\123\123\123\123\123\123\`\123\123\123\123\123\123\123\123\123\123\123\123\123\123\123\123\123\123\123\123"', ERR_STRING_ESCAPE) |
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self.assertLexerError(r'"\xf1\x23\xf1\x23\xf1\x23\xf1\x23\xf1\x23\xf1\x23\xf1\x23\xf1\x23\xf1\x23\x23\`\xf1\x23\xf1\x23\xf1\x23\xf1\x23\xf1\x23\xf1\x23\xf1\x23\xf1\x23\xf1\x23\xf1\x23"', ERR_STRING_ESCAPE) |
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self.assertLexerError(r'"\123\123\123\123\123\123\123\123\123\123\123\123\123\123\123\`\123\123\123\123\123\123\123\123\123\123\123\123\123\123\123\123\123\123\12\123456', ERR_ILLEGAL_CHAR) |
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self.assertLexerError(r'"\x23\x23\x23\x23\x23\x23\x23\x23\x23\x23\x23\x23\x23\x23\x23\`\x23\x23\x23\x23\x23\x23\x23\x23\x23\x23\x23\x23\x23\x23\x23\x23\x23\x23\x2\x23456', ERR_ILLEGAL_CHAR) |
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|
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def test_preprocessor(self): |
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self.assertLexerError('#line "ka"', ERR_FILENAME_BEFORE_LINE) |
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self.assertLexerError('#line df', ERR_INVALID_LINE_DIRECTIVE) |
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self.assertLexerError('#line \n', ERR_LINENUM_MISSING) |
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|
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if __name__ == '__main__': |
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unittest.main() |
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