mirror of https://github.com/python/cpython
Merged revisions 76230 via svnmerge from
svn+ssh://pythondev@svn.python.org/python/trunk ........ r76230 | benjamin.peterson | 2009-11-12 17:39:44 -0600 (Thu, 12 Nov 2009) | 2 lines fix several compile() issues by translating newlines in the tokenizer ........
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@ -176,11 +176,15 @@ are always available. They are listed here in alphabetical order.
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.. note::
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When compiling a string with multi-line statements, line endings must be
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represented by a single newline character (``'\n'``), and the input must
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be terminated by at least one newline character. If line endings are
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represented by ``'\r\n'``, use :meth:`str.replace` to change them into
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``'\n'``.
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When compiling a string with multi-line statements in ``'single'`` or
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``'eval'`` mode, input must be terminated by at least one newline
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character. This is to facilitate detection of incomplete and complete
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statements in the :mod:`code` module.
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.. versionchanged:: 3.2
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Allowed use of Windows and Mac newlines. Also input in ``'exec'`` mode
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does not have to end in a newline anymore.
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.. function:: complex([real[, imag]])
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@ -295,10 +295,6 @@ class CodeopTests(unittest.TestCase):
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self.assertNotEquals(compile_command("a = 1\n", "abc").co_filename,
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compile("a = 1\n", "def", 'single').co_filename)
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def test_no_universal_newlines(self):
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code = compile_command("'\rfoo\r'", symbol='eval')
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self.assertEqual(eval(code), '\rfoo\r')
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def test_main():
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run_unittest(CodeopTests)
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@ -5,6 +5,19 @@ from test import support
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class TestSpecifics(unittest.TestCase):
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def test_no_ending_newline(self):
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compile("hi", "<test>", "exec")
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compile("hi\r", "<test>", "exec")
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def test_empty(self):
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compile("", "<test>", "exec")
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def test_other_newlines(self):
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compile("\r\n", "<test>", "exec")
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compile("\r", "<test>", "exec")
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compile("hi\r\nstuff\r\ndef f():\n pass\r", "<test>", "exec")
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compile("this_is\rreally_old_mac\rdef f():\n pass", "<test>", "exec")
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def test_debug_assignment(self):
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# catch assignments to __debug__
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self.assertRaises(SyntaxError, compile, '__debug__ = 1', '?', 'single')
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@ -237,9 +237,9 @@ class RoundtripLegalSyntaxTestCase(unittest.TestCase):
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(14, '+', 2, 13),
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(2, '1', 2, 15),
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(4, '', 2, 16),
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(6, '', 2, -1),
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(4, '', 2, -1),
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(0, '', 2, -1)],
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(6, '', 3, -1),
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(4, '', 3, -1),
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(0, '', 3, -1)],
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terminals)
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def test_extended_unpacking(self):
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@ -26,7 +26,7 @@ class PEP263Test(unittest.TestCase):
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try:
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compile(b"# coding: cp932\nprint '\x94\x4e'", "dummy", "exec")
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except SyntaxError as v:
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self.assertEquals(v.text, "print '\u5e74'")
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self.assertEquals(v.text, "print '\u5e74'\n")
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else:
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self.fail()
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@ -46,13 +46,14 @@ PyParser_ParseStringFlagsFilenameEx(const char *s, const char *filename,
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perrdetail *err_ret, int *flags)
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{
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struct tok_state *tok;
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int exec_input = start == file_input;
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initerr(err_ret, filename);
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if (*flags & PyPARSE_IGNORE_COOKIE)
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tok = PyTokenizer_FromUTF8(s);
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tok = PyTokenizer_FromUTF8(s, exec_input);
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else
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tok = PyTokenizer_FromString(s);
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tok = PyTokenizer_FromString(s, exec_input);
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if (tok == NULL) {
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err_ret->error = PyErr_Occurred() ? E_DECODE : E_NOMEM;
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return NULL;
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@ -119,6 +119,7 @@ tok_new(void)
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tok->buf = tok->cur = tok->end = tok->inp = tok->start = NULL;
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tok->done = E_OK;
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tok->fp = NULL;
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tok->input = NULL;
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tok->tabsize = TABSIZE;
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tok->indent = 0;
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tok->indstack[0] = 0;
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@ -145,6 +146,17 @@ tok_new(void)
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return tok;
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}
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static char *
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new_string(const char *s, Py_ssize_t len)
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{
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char* result = (char *)PyMem_MALLOC(len + 1);
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if (result != NULL) {
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memcpy(result, s, len);
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result[len] = '\0';
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}
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return result;
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}
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#ifdef PGEN
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static char *
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@ -159,10 +171,10 @@ decoding_feof(struct tok_state *tok)
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return feof(tok->fp);
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}
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static const char *
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decode_str(const char *str, struct tok_state *tok)
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static char *
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decode_str(const char *str, int exec_input, struct tok_state *tok)
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{
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return str;
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return new_string(str, strlen(str));
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}
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#else /* PGEN */
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@ -177,16 +189,6 @@ error_ret(struct tok_state *tok) /* XXX */
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return NULL; /* as if it were EOF */
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}
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static char *
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new_string(const char *s, Py_ssize_t len)
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{
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char* result = (char *)PyMem_MALLOC(len + 1);
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if (result != NULL) {
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memcpy(result, s, len);
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result[len] = '\0';
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}
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return result;
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}
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static char *
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get_normal_name(char *s) /* for utf-8 and latin-1 */
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@ -635,17 +637,63 @@ translate_into_utf8(const char* str, const char* enc) {
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return utf8;
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}
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static char *
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translate_newlines(const char *s, int exec_input, struct tok_state *tok) {
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int skip_next_lf = 0, length = strlen(s), final_length;
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char *buf, *current;
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char c;
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buf = PyMem_MALLOC(length + 2);
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if (buf == NULL) {
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tok->done = E_NOMEM;
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return NULL;
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}
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for (current = buf; (c = *s++);) {
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if (skip_next_lf) {
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skip_next_lf = 0;
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if (c == '\n') {
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c = *s;
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s++;
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if (!c)
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break;
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}
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}
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if (c == '\r') {
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skip_next_lf = 1;
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c = '\n';
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}
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*current = c;
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current++;
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}
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/* If this is exec input, add a newline to the end of the file if
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there isn't one already. */
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if (exec_input && *current != '\n') {
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*current = '\n';
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current++;
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}
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*current = '\0';
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final_length = current - buf;
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if (final_length < length && final_length)
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/* should never fail */
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buf = PyMem_REALLOC(buf, final_length + 1);
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return buf;
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}
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/* Decode a byte string STR for use as the buffer of TOK.
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Look for encoding declarations inside STR, and record them
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inside TOK. */
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static const char *
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decode_str(const char *str, struct tok_state *tok)
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decode_str(const char *input, int single, struct tok_state *tok)
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{
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PyObject* utf8 = NULL;
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const char *str;
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const char *s;
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const char *newl[2] = {NULL, NULL};
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int lineno = 0;
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tok->input = str = translate_newlines(input, single, tok);
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if (str == NULL)
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return NULL;
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tok->enc = NULL;
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tok->str = str;
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if (!check_bom(buf_getc, buf_ungetc, buf_setreadl, tok))
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@ -696,12 +744,12 @@ decode_str(const char *str, struct tok_state *tok)
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/* Set up tokenizer for string */
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struct tok_state *
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PyTokenizer_FromString(const char *str)
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PyTokenizer_FromString(const char *str, int exec_input)
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{
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struct tok_state *tok = tok_new();
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if (tok == NULL)
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return NULL;
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str = (char *)decode_str(str, tok);
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str = (char *)decode_str(str, exec_input, tok);
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if (str == NULL) {
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PyTokenizer_Free(tok);
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return NULL;
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@ -713,11 +761,18 @@ PyTokenizer_FromString(const char *str)
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}
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struct tok_state *
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PyTokenizer_FromUTF8(const char *str)
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PyTokenizer_FromUTF8(const char *str, int exec_input)
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{
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struct tok_state *tok = tok_new();
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if (tok == NULL)
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return NULL;
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#ifndef PGEN
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tok->input = str = translate_newlines(str, exec_input, tok);
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#endif
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if (str == NULL) {
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PyTokenizer_Free(tok);
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return NULL;
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}
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tok->decoding_state = STATE_RAW;
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tok->read_coding_spec = 1;
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tok->enc = NULL;
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return tok;
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}
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/* Set up tokenizer for file */
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struct tok_state *
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#endif
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if (tok->fp != NULL && tok->buf != NULL)
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PyMem_FREE(tok->buf);
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if (tok->input)
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PyMem_FREE((char *)tok->input);
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PyMem_FREE(tok);
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}
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@ -58,10 +58,11 @@ struct tok_state {
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#endif
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const char* enc; /* Encoding for the current str. */
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const char* str;
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const char* input; /* Tokenizer's newline translated copy of the string. */
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};
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extern struct tok_state *PyTokenizer_FromString(const char *);
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extern struct tok_state *PyTokenizer_FromUTF8(const char *);
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extern struct tok_state *PyTokenizer_FromString(const char *, int);
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extern struct tok_state *PyTokenizer_FromUTF8(const char *, int);
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extern struct tok_state *PyTokenizer_FromFile(FILE *, char*,
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char *, char *);
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extern void PyTokenizer_Free(struct tok_state *);
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