Replace _PyUnicode_READY_REPLACE() and _PyUnicode_ReadyReplace() with unicode_ready()
* unicode_ready() has a simpler API * try to reuse unicode_empty and latin1_char singleton everywhere * Fix a reference leak in _PyUnicode_TranslateCharmap() * PyUnicode_InternInPlace() doesn't try to get a singleton anymore, to avoid having to handle a failure
This commit is contained in:
parent
c814a38f3f
commit
d3df8ab377
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@ -46,10 +46,6 @@ OF OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE.
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#include <windows.h>
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#endif
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#ifdef Py_DEBUG
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# define DONT_MAKE_RESULT_READY
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#endif
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/* Endianness switches; defaults to little endian */
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#ifdef WORDS_BIGENDIAN
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@ -118,11 +114,6 @@ extern "C" {
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0 : \
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_PyUnicode_Ready(op)))
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#define _PyUnicode_READY_REPLACE(p_obj) \
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(assert(_PyUnicode_CHECK(*p_obj)), \
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(PyUnicode_IS_READY(*p_obj) ? \
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0 : _PyUnicode_ReadyReplace((PyObject **)(p_obj))))
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#define _PyUnicode_SHARE_UTF8(op) \
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(assert(_PyUnicode_CHECK(op)), \
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assert(!PyUnicode_IS_COMPACT_ASCII(op)), \
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@ -232,9 +223,6 @@ static void copy_characters(
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PyObject *to, Py_ssize_t to_start,
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PyObject *from, Py_ssize_t from_start,
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Py_ssize_t how_many);
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#ifdef Py_DEBUG
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static int unicode_is_singleton(PyObject *unicode);
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#endif
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static PyObject *
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unicode_fromascii(const unsigned char *s, Py_ssize_t size);
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@ -425,6 +413,90 @@ _PyUnicode_CheckConsistency(PyObject *op, int check_content)
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}
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#endif
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static PyObject*
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unicode_result_wchar(PyObject *unicode)
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{
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#ifndef Py_DEBUG
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Py_ssize_t len;
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assert(Py_REFCNT(unicode) == 1);
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len = _PyUnicode_WSTR_LENGTH(unicode);
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if (len == 0) {
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Py_INCREF(unicode_empty);
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Py_DECREF(unicode);
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return unicode_empty;
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}
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if (len == 1) {
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wchar_t ch = _PyUnicode_WSTR(unicode)[0];
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if (ch < 256) {
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PyObject *latin1_char = get_latin1_char((unsigned char)ch);
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Py_DECREF(unicode);
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return latin1_char;
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}
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}
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if (_PyUnicode_Ready(unicode) < 0) {
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Py_XDECREF(unicode);
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return NULL;
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}
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#else
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/* don't make the result ready in debug mode to ensure that the caller
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makes the string ready before using it */
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assert(_PyUnicode_CheckConsistency(unicode, 1));
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#endif
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return unicode;
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}
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static PyObject*
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unicode_result_ready(PyObject *unicode)
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{
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Py_ssize_t length;
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length = PyUnicode_GET_LENGTH(unicode);
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if (length == 0) {
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if (unicode != unicode_empty) {
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Py_INCREF(unicode_empty);
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Py_DECREF(unicode);
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}
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return unicode_empty;
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}
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if (length == 1) {
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Py_UCS4 ch = PyUnicode_READ_CHAR(unicode, 0);
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if (ch < 256) {
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PyObject *latin1_char = unicode_latin1[ch];
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if (latin1_char != NULL) {
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if (unicode != latin1_char) {
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Py_INCREF(latin1_char);
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Py_DECREF(unicode);
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}
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return latin1_char;
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}
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else {
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assert(_PyUnicode_CheckConsistency(unicode, 1));
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Py_INCREF(unicode);
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unicode_latin1[ch] = unicode;
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return unicode;
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}
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}
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}
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assert(_PyUnicode_CheckConsistency(unicode, 1));
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return unicode;
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}
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static PyObject*
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unicode_result(PyObject *unicode)
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{
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assert(_PyUnicode_CHECK(unicode));
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if (PyUnicode_IS_READY(unicode))
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return unicode_result_ready(unicode);
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else
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return unicode_result_wchar(unicode);
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}
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#ifdef HAVE_MBCS
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static OSVERSIONINFOEX winver;
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#endif
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@ -1271,10 +1343,9 @@ find_maxchar_surrogates(const wchar_t *begin, const wchar_t *end,
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static int unicode_ready_calls = 0;
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#endif
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static int
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unicode_ready(PyObject **p_obj, int replace)
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int
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_PyUnicode_Ready(PyObject *unicode)
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{
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PyObject *unicode;
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wchar_t *end;
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Py_UCS4 maxchar = 0;
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Py_ssize_t num_surrogates;
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@ -1282,9 +1353,6 @@ unicode_ready(PyObject **p_obj, int replace)
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Py_ssize_t length_wo_surrogates;
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#endif
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assert(p_obj != NULL);
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unicode = *p_obj;
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/* _PyUnicode_Ready() is only intended for old-style API usage where
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strings were created using _PyObject_New() and where no canonical
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representation (the str field) has been set yet aka strings
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@ -1301,32 +1369,6 @@ unicode_ready(PyObject **p_obj, int replace)
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++unicode_ready_calls;
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#endif
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#ifdef Py_DEBUG
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assert(!replace || Py_REFCNT(unicode) == 1);
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#else
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if (replace && Py_REFCNT(unicode) != 1)
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replace = 0;
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#endif
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if (replace) {
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Py_ssize_t len = _PyUnicode_WSTR_LENGTH(unicode);
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wchar_t *wstr = _PyUnicode_WSTR(unicode);
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/* Optimization for empty strings */
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if (len == 0) {
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Py_INCREF(unicode_empty);
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Py_DECREF(*p_obj);
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*p_obj = unicode_empty;
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return 0;
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}
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if (len == 1 && wstr[0] < 256) {
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PyObject *latin1_char = get_latin1_char((unsigned char)wstr[0]);
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if (latin1_char == NULL)
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return -1;
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Py_DECREF(*p_obj);
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*p_obj = latin1_char;
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return 0;
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}
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}
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end = _PyUnicode_WSTR(unicode) + _PyUnicode_WSTR_LENGTH(unicode);
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if (find_maxchar_surrogates(_PyUnicode_WSTR(unicode), end,
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&maxchar, &num_surrogates) == -1)
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@ -1430,18 +1472,6 @@ unicode_ready(PyObject **p_obj, int replace)
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return 0;
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}
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int
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_PyUnicode_ReadyReplace(PyObject **op)
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{
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return unicode_ready(op, 1);
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}
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int
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_PyUnicode_Ready(PyObject *op)
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{
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return unicode_ready(&op, 0);
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}
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static void
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unicode_dealloc(register PyObject *unicode)
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{
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@ -1681,8 +1711,7 @@ PyUnicode_FromUnicode(const Py_UNICODE *u, Py_ssize_t size)
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assert(0 && "Impossible state");
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}
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assert(_PyUnicode_CheckConsistency(unicode, 1));
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return unicode;
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return unicode_result(unicode);
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}
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PyObject *
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@ -1755,6 +1784,8 @@ _PyUnicode_ClearStaticStrings()
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}
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}
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/* Internal function, don't check maximum character */
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static PyObject*
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unicode_fromascii(const unsigned char* s, Py_ssize_t size)
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{
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@ -1795,11 +1826,16 @@ static PyObject*
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_PyUnicode_FromUCS1(const unsigned char* u, Py_ssize_t size)
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{
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PyObject *res;
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unsigned char max_char = 127;
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unsigned char max_char;
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assert(size >= 0);
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if (size == 0) {
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Py_INCREF(unicode_empty);
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return unicode_empty;
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}
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assert(size > 0);
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if (size == 1)
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return get_latin1_char(u[0]);
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max_char = ucs1lib_find_max_char(u, u + size);
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res = PyUnicode_New(size, max_char);
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if (!res)
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@ -1813,11 +1849,16 @@ static PyObject*
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_PyUnicode_FromUCS2(const Py_UCS2 *u, Py_ssize_t size)
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{
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PyObject *res;
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Py_UCS2 max_char = 0;
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Py_UCS2 max_char;
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assert(size >= 0);
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if (size == 0) {
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Py_INCREF(unicode_empty);
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return unicode_empty;
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}
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assert(size > 0);
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if (size == 1 && u[0] < 256)
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return get_latin1_char((unsigned char)u[0]);
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max_char = ucs2lib_find_max_char(u, u + size);
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res = PyUnicode_New(size, max_char);
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if (!res)
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@ -1836,11 +1877,16 @@ static PyObject*
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_PyUnicode_FromUCS4(const Py_UCS4 *u, Py_ssize_t size)
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{
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PyObject *res;
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Py_UCS4 max_char = 0;
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Py_UCS4 max_char;
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assert(size >= 0);
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if (size == 0) {
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Py_INCREF(unicode_empty);
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return unicode_empty;
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}
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assert(size > 0);
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if (size == 1 && u[0] < 256)
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return get_latin1_char(u[0]);
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return get_latin1_char((unsigned char)u[0]);
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max_char = ucs4lib_find_max_char(u, u + size);
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res = PyUnicode_New(size, max_char);
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if (!res)
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@ -2640,8 +2686,7 @@ PyUnicode_FromFormatV(const char *format, va_list vargs)
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PyObject_Free(callresults);
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if (numberresults)
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PyObject_Free(numberresults);
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assert(_PyUnicode_CheckConsistency(string, 1));
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return string;
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return unicode_result(string);
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fail:
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if (callresults) {
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PyObject **callresult2 = callresults;
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@ -2936,14 +2981,7 @@ PyUnicode_Decode(const char *s,
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goto onError;
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}
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Py_DECREF(buffer);
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#ifndef DONT_MAKE_RESULT_READY
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if (_PyUnicode_READY_REPLACE(&unicode)) {
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Py_DECREF(unicode);
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return NULL;
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}
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#endif
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assert(_PyUnicode_CheckConsistency(unicode, 1));
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return unicode;
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return unicode_result(unicode);
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onError:
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Py_XDECREF(buffer);
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@ -2969,8 +3007,7 @@ PyUnicode_AsDecodedObject(PyObject *unicode,
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v = PyCodec_Decode(unicode, encoding, errors);
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if (v == NULL)
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goto onError;
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assert(_PyUnicode_CheckConsistency(v, 1));
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return v;
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return unicode_result(v);
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onError:
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return NULL;
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@ -3002,8 +3039,7 @@ PyUnicode_AsDecodedUnicode(PyObject *unicode,
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Py_DECREF(v);
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goto onError;
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}
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assert(_PyUnicode_CheckConsistency(v, 1));
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return v;
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return unicode_result(v);
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onError:
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return NULL;
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@ -4002,14 +4038,7 @@ utf7Error:
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Py_XDECREF(errorHandler);
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Py_XDECREF(exc);
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#ifndef DONT_MAKE_RESULT_READY
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if (_PyUnicode_READY_REPLACE(&unicode)) {
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Py_DECREF(unicode);
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return NULL;
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}
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#endif
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assert(_PyUnicode_CheckConsistency(unicode, 1));
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return unicode;
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return unicode_result(unicode);
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onError:
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Py_XDECREF(errorHandler);
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@ -4358,18 +4387,26 @@ PyUnicode_DecodeUTF8Stateful(const char *s,
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return (PyObject *)PyUnicode_New(0, 0);
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}
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maxchar = utf8_max_char_size_and_char_count(s, size, &unicode_size);
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/* When the string is ASCII only, just use memcpy and return.
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unicode_size may be != size if there is an incomplete UTF-8
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sequence at the end of the ASCII block. */
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if (maxchar < 128 && size == unicode_size) {
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if (size == 1)
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return get_latin1_char((unsigned char)s[0]);
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unicode = PyUnicode_New(unicode_size, maxchar);
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if (!unicode)
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return NULL;
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Py_MEMCPY(PyUnicode_1BYTE_DATA(unicode), s, unicode_size);
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assert(_PyUnicode_CheckConsistency(unicode, 1));
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return unicode;
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}
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/* In case of errors, maxchar and size computation might be incorrect;
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code below refits and resizes as necessary. */
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unicode = PyUnicode_New(unicode_size, maxchar);
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if (!unicode)
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return NULL;
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/* When the string is ASCII only, just use memcpy and return.
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unicode_size may be != size if there is an incomplete UTF-8
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sequence at the end of the ASCII block. */
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if (maxchar < 128 && size == unicode_size) {
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Py_MEMCPY(PyUnicode_1BYTE_DATA(unicode), s, unicode_size);
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return unicode;
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}
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kind = PyUnicode_KIND(unicode);
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data = PyUnicode_DATA(unicode);
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@ -5052,14 +5089,7 @@ PyUnicode_DecodeUTF32Stateful(const char *s,
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Py_XDECREF(errorHandler);
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Py_XDECREF(exc);
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#ifndef DONT_MAKE_RESULT_READY
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if (_PyUnicode_READY_REPLACE(&unicode)) {
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Py_DECREF(unicode);
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return NULL;
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}
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#endif
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assert(_PyUnicode_CheckConsistency(unicode, 1));
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return unicode;
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return unicode_result(unicode);
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onError:
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Py_DECREF(unicode);
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|
@ -5423,8 +5453,7 @@ PyUnicode_DecodeUTF16Stateful(const char *s,
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Py_XDECREF(errorHandler);
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Py_XDECREF(exc);
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assert(_PyUnicode_CheckConsistency(unicode, 1));
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return unicode;
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return unicode_result(unicode);
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onError:
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Py_DECREF(unicode);
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|
@ -5843,14 +5872,7 @@ PyUnicode_DecodeUnicodeEscape(const char *s,
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goto onError;
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Py_XDECREF(errorHandler);
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Py_XDECREF(exc);
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#ifndef DONT_MAKE_RESULT_READY
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if (_PyUnicode_READY_REPLACE(&v)) {
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Py_DECREF(v);
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return NULL;
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}
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#endif
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assert(_PyUnicode_CheckConsistency(v, 1));
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return v;
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return unicode_result(v);
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ucnhashError:
|
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PyErr_SetString(
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|
@ -6111,8 +6133,7 @@ PyUnicode_DecodeRawUnicodeEscape(const char *s,
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goto onError;
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Py_XDECREF(errorHandler);
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Py_XDECREF(exc);
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assert(_PyUnicode_CheckConsistency(v, 1));
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return v;
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||||
return unicode_result(v);
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||||
onError:
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Py_XDECREF(v);
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|
@ -6301,8 +6322,7 @@ _PyUnicode_DecodeUnicodeInternal(const char *s,
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goto onError;
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Py_XDECREF(errorHandler);
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Py_XDECREF(exc);
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assert(_PyUnicode_CheckConsistency(v, 1));
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return v;
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return unicode_result(v);
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onError:
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||||
Py_XDECREF(v);
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||||
|
@ -6686,6 +6706,11 @@ PyUnicode_DecodeASCII(const char *s,
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|||
PyObject *errorHandler = NULL;
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PyObject *exc = NULL;
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|
||||
if (size == 0) {
|
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Py_INCREF(unicode_empty);
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||||
return unicode_empty;
|
||||
}
|
||||
|
||||
/* ASCII is equivalent to the first 128 ordinals in Unicode. */
|
||||
if (size == 1 && (unsigned char)s[0] < 128)
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return get_latin1_char((unsigned char)s[0]);
|
||||
|
@ -7115,14 +7140,7 @@ decode_code_page_stateful(int code_page,
|
|||
size -= converted;
|
||||
} while (!done);
|
||||
|
||||
#ifndef DONT_MAKE_RESULT_READY
|
||||
if (_PyUnicode_READY_REPLACE(&v)) {
|
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Py_DECREF(v);
|
||||
return NULL;
|
||||
}
|
||||
#endif
|
||||
assert(_PyUnicode_CheckConsistency(v, 1));
|
||||
return v;
|
||||
return unicode_result(v);
|
||||
}
|
||||
|
||||
PyObject *
|
||||
|
@ -7723,8 +7741,7 @@ PyUnicode_DecodeCharmap(const char *s,
|
|||
goto onError;
|
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Py_XDECREF(errorHandler);
|
||||
Py_XDECREF(exc);
|
||||
assert(_PyUnicode_CheckConsistency(v, 1));
|
||||
return v;
|
||||
return unicode_result(v);
|
||||
|
||||
onError:
|
||||
Py_XDECREF(errorHandler);
|
||||
|
@ -8658,8 +8675,12 @@ _PyUnicode_TranslateCharmap(PyObject *input,
|
|||
repunicode = unicode_translate_call_errorhandler(errors, &errorHandler,
|
||||
reason, input, &exc,
|
||||
collstart, collend, &newpos);
|
||||
if (repunicode == NULL || _PyUnicode_READY_REPLACE(&repunicode))
|
||||
if (repunicode == NULL)
|
||||
goto onError;
|
||||
if (PyUnicode_READY(repunicode) < 0) {
|
||||
Py_DECREF(repunicode);
|
||||
goto onError;
|
||||
}
|
||||
/* generate replacement */
|
||||
repsize = PyUnicode_GET_LENGTH(repunicode);
|
||||
if (charmaptranslate_makespace(&output, &osize,
|
||||
|
@ -8812,8 +8833,7 @@ PyUnicode_TransformDecimalToASCII(Py_UNICODE *s,
|
|||
}
|
||||
PyUnicode_WRITE(kind, data, i, ch);
|
||||
}
|
||||
assert(_PyUnicode_CheckConsistency(decimal, 1));
|
||||
return decimal;
|
||||
return unicode_result(decimal);
|
||||
}
|
||||
/* --- Decimal Encoder ---------------------------------------------------- */
|
||||
|
||||
|
@ -10801,8 +10821,7 @@ PyUnicode_Append(PyObject **p_left, PyObject *right)
|
|||
if (!(PyUnicode_IS_ASCII(left) && !PyUnicode_IS_ASCII(right)))
|
||||
{
|
||||
unicode_append_inplace(p_left, right);
|
||||
if (p_left != NULL)
|
||||
assert(_PyUnicode_CheckConsistency(*p_left, 1));
|
||||
assert(p_left == NULL || _PyUnicode_CheckConsistency(*p_left, 1));
|
||||
return;
|
||||
}
|
||||
}
|
||||
|
@ -11012,14 +11031,7 @@ unicode_expandtabs(PyObject *self, PyObject *args)
|
|||
}
|
||||
}
|
||||
assert (j == PyUnicode_GET_LENGTH(u));
|
||||
#ifndef DONT_MAKE_RESULT_READY
|
||||
if (_PyUnicode_READY_REPLACE(&u)) {
|
||||
Py_DECREF(u);
|
||||
return NULL;
|
||||
}
|
||||
#endif
|
||||
assert(_PyUnicode_CheckConsistency(u, 1));
|
||||
return u;
|
||||
return unicode_result(u);
|
||||
|
||||
overflow:
|
||||
PyErr_SetString(PyExc_OverflowError, "new string is too long");
|
||||
|
@ -13876,9 +13888,9 @@ int _PyUnicode_Init(void)
|
|||
|
||||
/* Init the implementation */
|
||||
unicode_empty = PyUnicode_New(0, 0);
|
||||
assert(_PyUnicode_CheckConsistency(unicode_empty, 1));
|
||||
if (!unicode_empty)
|
||||
Py_FatalError("Can't create empty string");
|
||||
assert(_PyUnicode_CheckConsistency(unicode_empty, 1));
|
||||
|
||||
for (i = 0; i < 256; i++)
|
||||
unicode_latin1[i] = NULL;
|
||||
|
@ -13946,11 +13958,6 @@ PyUnicode_InternInPlace(PyObject **p)
|
|||
return;
|
||||
if (PyUnicode_CHECK_INTERNED(s))
|
||||
return;
|
||||
if (_PyUnicode_READY_REPLACE(p)) {
|
||||
assert(0 && "_PyUnicode_READY_REPLACE fail in PyUnicode_InternInPlace");
|
||||
return;
|
||||
}
|
||||
s = *p;
|
||||
if (interned == NULL) {
|
||||
interned = PyDict_New();
|
||||
if (interned == NULL) {
|
||||
|
|
Loading…
Reference in New Issue