Coverage Report

Created: 2026-02-09 07:07

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/cpython/Objects/unicodeobject.c
Line
Count
Source
1
/*
2
3
Unicode implementation based on original code by Fredrik Lundh,
4
modified by Marc-Andre Lemburg <mal@lemburg.com>.
5
6
Major speed upgrades to the method implementations at the Reykjavik
7
NeedForSpeed sprint, by Fredrik Lundh and Andrew Dalke.
8
9
Copyright (c) Corporation for National Research Initiatives.
10
11
--------------------------------------------------------------------
12
The original string type implementation is:
13
14
  Copyright (c) 1999 by Secret Labs AB
15
  Copyright (c) 1999 by Fredrik Lundh
16
17
By obtaining, using, and/or copying this software and/or its
18
associated documentation, you agree that you have read, understood,
19
and will comply with the following terms and conditions:
20
21
Permission to use, copy, modify, and distribute this software and its
22
associated documentation for any purpose and without fee is hereby
23
granted, provided that the above copyright notice appears in all
24
copies, and that both that copyright notice and this permission notice
25
appear in supporting documentation, and that the name of Secret Labs
26
AB or the author not be used in advertising or publicity pertaining to
27
distribution of the software without specific, written prior
28
permission.
29
30
SECRET LABS AB AND THE AUTHOR DISCLAIMS ALL WARRANTIES WITH REGARD TO
31
THIS SOFTWARE, INCLUDING ALL IMPLIED WARRANTIES OF MERCHANTABILITY AND
32
FITNESS.  IN NO EVENT SHALL SECRET LABS AB OR THE AUTHOR BE LIABLE FOR
33
ANY SPECIAL, INDIRECT OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES
34
WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN
35
ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT
36
OF OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE.
37
--------------------------------------------------------------------
38
39
*/
40
41
#include "Python.h"
42
#include "pycore_abstract.h"      // _PyIndex_Check()
43
#include "pycore_bytes_methods.h" // _Py_bytes_lower()
44
#include "pycore_bytesobject.h"   // _PyBytes_Repeat()
45
#include "pycore_ceval.h"         // _PyEval_GetBuiltin()
46
#include "pycore_codecs.h"        // _PyCodec_Lookup()
47
#include "pycore_critical_section.h" // Py_*_CRITICAL_SECTION_SEQUENCE_FAST
48
#include "pycore_format.h"        // F_LJUST
49
#include "pycore_initconfig.h"    // _PyStatus_OK()
50
#include "pycore_interp.h"        // PyInterpreterState.fs_codec
51
#include "pycore_long.h"          // _PyLong_FormatWriter()
52
#include "pycore_object.h"        // _PyObject_GC_TRACK(), _Py_FatalRefcountError()
53
#include "pycore_pathconfig.h"    // _Py_DumpPathConfig()
54
#include "pycore_pyerrors.h"      // _PyUnicodeTranslateError_Create()
55
#include "pycore_pyhash.h"        // _Py_HashSecret_t
56
#include "pycore_pylifecycle.h"   // _Py_SetFileSystemEncoding()
57
#include "pycore_pystate.h"       // _PyInterpreterState_GET()
58
#include "pycore_ucnhash.h"       // _PyUnicode_Name_CAPI
59
#include "pycore_unicodectype.h"  // _PyUnicode_IsXidStart
60
#include "pycore_unicodeobject.h" // struct _Py_unicode_state
61
#include "pycore_unicodeobject_generated.h"  // _PyUnicode_InitStaticStrings()
62
63
#include "stringlib/eq.h"         // unicode_eq()
64
#include <stddef.h>               // ptrdiff_t
65
66
#ifdef MS_WINDOWS
67
#include <windows.h>
68
#endif
69
70
#ifdef HAVE_NON_UNICODE_WCHAR_T_REPRESENTATION
71
#  include "pycore_fileutils.h"   // _Py_LocaleUsesNonUnicodeWchar()
72
#endif
73
74
/* Uncomment to display statistics on interned strings at exit
75
   in _PyUnicode_ClearInterned(). */
76
/* #define INTERNED_STATS 1 */
77
78
79
/*[clinic input]
80
class str "PyObject *" "&PyUnicode_Type"
81
[clinic start generated code]*/
82
/*[clinic end generated code: output=da39a3ee5e6b4b0d input=4884c934de622cf6]*/
83
84
/*[python input]
85
class Py_UCS4_converter(CConverter):
86
    type = 'Py_UCS4'
87
    converter = 'convert_uc'
88
89
    def converter_init(self):
90
        if self.default is not unspecified:
91
            self.c_default = ascii(self.default)
92
            if len(self.c_default) > 4 or self.c_default[0] != "'":
93
                self.c_default = hex(ord(self.default))
94
95
[python start generated code]*/
96
/*[python end generated code: output=da39a3ee5e6b4b0d input=88f5dd06cd8e7a61]*/
97
98
/* --- Globals ------------------------------------------------------------
99
100
NOTE: In the interpreter's initialization phase, some globals are currently
101
      initialized dynamically as needed. In the process Unicode objects may
102
      be created before the Unicode type is ready.
103
104
*/
105
106
17.2M
#define MAX_UNICODE _Py_MAX_UNICODE
107
201M
#define ensure_unicode _PyUnicode_EnsureUnicode
108
109
#ifdef Py_DEBUG
110
#  define _PyUnicode_CHECK(op) _PyUnicode_CheckConsistency(op, 0)
111
#else
112
#  define _PyUnicode_CHECK(op) PyUnicode_Check(op)
113
#endif
114
115
static inline char* _PyUnicode_UTF8(PyObject *op)
116
191M
{
117
191M
    return FT_ATOMIC_LOAD_PTR_ACQUIRE(_PyCompactUnicodeObject_CAST(op)->utf8);
118
191M
}
119
120
static inline char* PyUnicode_UTF8(PyObject *op)
121
135M
{
122
135M
    assert(_PyUnicode_CHECK(op));
123
135M
    if (PyUnicode_IS_COMPACT_ASCII(op)) {
124
124M
        return ((char*)(_PyASCIIObject_CAST(op) + 1));
125
124M
    }
126
11.6M
    else {
127
11.6M
         return _PyUnicode_UTF8(op);
128
11.6M
    }
129
135M
}
130
131
static inline void PyUnicode_SET_UTF8(PyObject *op, char *utf8)
132
23.8M
{
133
23.8M
    FT_ATOMIC_STORE_PTR_RELEASE(_PyCompactUnicodeObject_CAST(op)->utf8, utf8);
134
23.8M
}
135
136
static inline Py_ssize_t PyUnicode_UTF8_LENGTH(PyObject *op)
137
64.4M
{
138
64.4M
    assert(_PyUnicode_CHECK(op));
139
64.4M
    if (PyUnicode_IS_COMPACT_ASCII(op)) {
140
61.9M
         return _PyASCIIObject_CAST(op)->length;
141
61.9M
    }
142
2.48M
    else {
143
2.48M
         return _PyCompactUnicodeObject_CAST(op)->utf8_length;
144
2.48M
    }
145
64.4M
}
146
147
static inline void PyUnicode_SET_UTF8_LENGTH(PyObject *op, Py_ssize_t length)
148
23.8M
{
149
23.8M
    _PyCompactUnicodeObject_CAST(op)->utf8_length = length;
150
23.8M
}
151
152
#define _PyUnicode_LENGTH(op)                           \
153
499M
    (_PyASCIIObject_CAST(op)->length)
154
#define _PyUnicode_STATE(op)                            \
155
3.15G
    (_PyASCIIObject_CAST(op)->state)
156
#define _PyUnicode_HASH(op)                             \
157
462M
    (_PyASCIIObject_CAST(op)->hash)
158
159
868M
#define PyUnicode_HASH PyUnstable_Unicode_GET_CACHED_HASH
160
161
static inline void PyUnicode_SET_HASH(PyObject *op, Py_hash_t hash)
162
55.0M
{
163
55.0M
    FT_ATOMIC_STORE_SSIZE_RELAXED(_PyASCIIObject_CAST(op)->hash, hash);
164
55.0M
}
165
166
#define _PyUnicode_DATA_ANY(op)                         \
167
51.6M
    (_PyUnicodeObject_CAST(op)->data.any)
168
169
static inline int _PyUnicode_SHARE_UTF8(PyObject *op)
170
0
{
171
0
    assert(_PyUnicode_CHECK(op));
172
0
    assert(!PyUnicode_IS_COMPACT_ASCII(op));
173
0
    return (_PyUnicode_UTF8(op) == PyUnicode_DATA(op));
174
0
}
175
176
/* true if the Unicode object has an allocated UTF-8 memory block
177
   (not shared with other data) */
178
static inline int _PyUnicode_HAS_UTF8_MEMORY(PyObject *op)
179
498M
{
180
498M
    return (!PyUnicode_IS_COMPACT_ASCII(op)
181
169M
            && _PyUnicode_UTF8(op) != NULL
182
10.9M
            && _PyUnicode_UTF8(op) != PyUnicode_DATA(op));
183
498M
}
184
185
186
210M
#define LATIN1 _Py_LATIN1_CHR
187
188
/* Forward declaration */
189
static PyObject *
190
unicode_encode_utf8(PyObject *unicode, _Py_error_handler error_handler,
191
                    const char *errors);
192
static PyObject *
193
unicode_decode_utf8(const char *s, Py_ssize_t size,
194
                    _Py_error_handler error_handler, const char *errors,
195
                    Py_ssize_t *consumed);
196
#ifdef Py_DEBUG
197
static inline int unicode_is_finalizing(void);
198
static int unicode_is_singleton(PyObject *unicode);
199
#endif
200
201
202
// Return a reference to the immortal empty string singleton.
203
PyObject*
204
_PyUnicode_GetEmpty(void)
205
104M
{
206
104M
    _Py_DECLARE_STR(empty, "");
207
104M
    return &_Py_STR(empty);
208
104M
}
209
210
/* This dictionary holds per-interpreter interned strings.
211
 * See InternalDocs/string_interning.md for details.
212
 */
213
static inline PyObject *get_interned_dict(PyInterpreterState *interp)
214
4.13M
{
215
4.13M
    return _Py_INTERP_CACHED_OBJECT(interp, interned_strings);
216
4.13M
}
217
218
/* This hashtable holds statically allocated interned strings.
219
 * See InternalDocs/string_interning.md for details.
220
 */
221
4.08M
#define INTERNED_STRINGS _PyRuntime.cached_objects.interned_strings
222
223
/* Get number of all interned strings for the current interpreter. */
224
Py_ssize_t
225
_PyUnicode_InternedSize(void)
226
0
{
227
0
    PyObject *dict = get_interned_dict(_PyInterpreterState_GET());
228
0
    return _Py_hashtable_len(INTERNED_STRINGS) + PyDict_GET_SIZE(dict);
229
0
}
230
231
/* Get number of immortal interned strings for the current interpreter. */
232
Py_ssize_t
233
_PyUnicode_InternedSize_Immortal(void)
234
0
{
235
0
    PyObject *dict = get_interned_dict(_PyInterpreterState_GET());
236
0
    PyObject *key, *value;
237
0
    Py_ssize_t pos = 0;
238
0
    Py_ssize_t count = 0;
239
240
    // It's tempting to keep a count and avoid a loop here. But, this function
241
    // is intended for refleak tests. It spends extra work to report the true
242
    // value, to help detect bugs in optimizations.
243
244
0
    while (PyDict_Next(dict, &pos, &key, &value)) {
245
0
        assert(PyUnicode_CHECK_INTERNED(key) != SSTATE_INTERNED_IMMORTAL_STATIC);
246
0
        if (PyUnicode_CHECK_INTERNED(key) == SSTATE_INTERNED_IMMORTAL) {
247
0
           count++;
248
0
       }
249
0
    }
250
0
    return _Py_hashtable_len(INTERNED_STRINGS) + count;
251
0
}
252
253
static Py_hash_t unicode_hash(PyObject *);
254
255
static Py_uhash_t
256
hashtable_unicode_hash(const void *key)
257
4.08M
{
258
4.08M
    return unicode_hash((PyObject *)key);
259
4.08M
}
260
261
static int
262
hashtable_unicode_compare(const void *key1, const void *key2)
263
412k
{
264
412k
    PyObject *obj1 = (PyObject *)key1;
265
412k
    PyObject *obj2 = (PyObject *)key2;
266
412k
    if (obj1 != NULL && obj2 != NULL) {
267
412k
        return unicode_eq(obj1, obj2);
268
412k
    }
269
0
    else {
270
0
        return obj1 == obj2;
271
0
    }
272
412k
}
273
274
/* Return true if this interpreter should share the main interpreter's
275
   intern_dict.  That's important for interpreters which load basic
276
   single-phase init extension modules (m_size == -1).  There could be interned
277
   immortal strings that are shared between interpreters, due to the
278
   PyDict_Update(mdict, m_copy) call in import_find_extension().
279
280
   It's not safe to deallocate those strings until all interpreters that
281
   potentially use them are freed.  By storing them in the main interpreter, we
282
   ensure they get freed after all other interpreters are freed.
283
*/
284
static bool
285
has_shared_intern_dict(PyInterpreterState *interp)
286
32
{
287
32
    PyInterpreterState *main_interp = _PyInterpreterState_Main();
288
32
    return interp != main_interp  && interp->feature_flags & Py_RTFLAGS_USE_MAIN_OBMALLOC;
289
32
}
290
291
static int
292
init_interned_dict(PyInterpreterState *interp)
293
32
{
294
32
    assert(get_interned_dict(interp) == NULL);
295
32
    PyObject *interned;
296
32
    if (has_shared_intern_dict(interp)) {
297
0
        interned = get_interned_dict(_PyInterpreterState_Main());
298
0
        Py_INCREF(interned);
299
0
    }
300
32
    else {
301
32
        interned = PyDict_New();
302
32
        if (interned == NULL) {
303
0
            return -1;
304
0
        }
305
32
    }
306
32
    _Py_INTERP_CACHED_OBJECT(interp, interned_strings) = interned;
307
32
    return 0;
308
32
}
309
310
static void
311
clear_interned_dict(PyInterpreterState *interp)
312
0
{
313
0
    PyObject *interned = get_interned_dict(interp);
314
0
    if (interned != NULL) {
315
0
        if (!has_shared_intern_dict(interp)) {
316
            // only clear if the dict belongs to this interpreter
317
0
            PyDict_Clear(interned);
318
0
        }
319
0
        Py_DECREF(interned);
320
0
        _Py_INTERP_CACHED_OBJECT(interp, interned_strings) = NULL;
321
0
    }
322
0
}
323
324
static PyStatus
325
init_global_interned_strings(PyInterpreterState *interp)
326
32
{
327
32
    assert(INTERNED_STRINGS == NULL);
328
32
    _Py_hashtable_allocator_t hashtable_alloc = {PyMem_RawMalloc, PyMem_RawFree};
329
330
32
    INTERNED_STRINGS = _Py_hashtable_new_full(
331
32
        hashtable_unicode_hash,
332
32
        hashtable_unicode_compare,
333
        // Objects stored here are immortal and statically allocated,
334
        // so we don't need key_destroy_func & value_destroy_func:
335
32
        NULL,
336
32
        NULL,
337
32
        &hashtable_alloc
338
32
    );
339
32
    if (INTERNED_STRINGS == NULL) {
340
0
        PyErr_Clear();
341
0
        return _PyStatus_ERR("failed to create global interned dict");
342
0
    }
343
344
    /* Intern statically allocated string identifiers, deepfreeze strings,
345
        * and one-byte latin-1 strings.
346
        * This must be done before any module initialization so that statically
347
        * allocated string identifiers are used instead of heap allocated strings.
348
        * Deepfreeze uses the interned identifiers if present to save space
349
        * else generates them and they are interned to speed up dict lookups.
350
    */
351
32
    _PyUnicode_InitStaticStrings(interp);
352
353
8.22k
    for (int i = 0; i < 256; i++) {
354
8.19k
        PyObject *s = LATIN1(i);
355
8.19k
        _PyUnicode_InternStatic(interp, &s);
356
8.19k
        assert(s == LATIN1(i));
357
8.19k
    }
358
#ifdef Py_DEBUG
359
    assert(_PyUnicode_CheckConsistency(&_Py_STR(empty), 1));
360
361
    for (int i = 0; i < 256; i++) {
362
        assert(_PyUnicode_CheckConsistency(LATIN1(i), 1));
363
    }
364
#endif
365
32
    return _PyStatus_OK();
366
32
}
367
368
static void clear_global_interned_strings(void)
369
0
{
370
0
    if (INTERNED_STRINGS != NULL) {
371
0
        _Py_hashtable_destroy(INTERNED_STRINGS);
372
0
        INTERNED_STRINGS = NULL;
373
0
    }
374
0
}
375
376
#define _Py_RETURN_UNICODE_EMPTY()   \
377
43.1M
    do {                             \
378
43.1M
        return _PyUnicode_GetEmpty();\
379
43.1M
    } while (0)
380
381
382
/* Fast detection of the most frequent whitespace characters */
383
const unsigned char _Py_ascii_whitespace[] = {
384
    0, 0, 0, 0, 0, 0, 0, 0,
385
/*     case 0x0009: * CHARACTER TABULATION */
386
/*     case 0x000A: * LINE FEED */
387
/*     case 0x000B: * LINE TABULATION */
388
/*     case 0x000C: * FORM FEED */
389
/*     case 0x000D: * CARRIAGE RETURN */
390
    0, 1, 1, 1, 1, 1, 0, 0,
391
    0, 0, 0, 0, 0, 0, 0, 0,
392
/*     case 0x001C: * FILE SEPARATOR */
393
/*     case 0x001D: * GROUP SEPARATOR */
394
/*     case 0x001E: * RECORD SEPARATOR */
395
/*     case 0x001F: * UNIT SEPARATOR */
396
    0, 0, 0, 0, 1, 1, 1, 1,
397
/*     case 0x0020: * SPACE */
398
    1, 0, 0, 0, 0, 0, 0, 0,
399
    0, 0, 0, 0, 0, 0, 0, 0,
400
    0, 0, 0, 0, 0, 0, 0, 0,
401
    0, 0, 0, 0, 0, 0, 0, 0,
402
403
    0, 0, 0, 0, 0, 0, 0, 0,
404
    0, 0, 0, 0, 0, 0, 0, 0,
405
    0, 0, 0, 0, 0, 0, 0, 0,
406
    0, 0, 0, 0, 0, 0, 0, 0,
407
    0, 0, 0, 0, 0, 0, 0, 0,
408
    0, 0, 0, 0, 0, 0, 0, 0,
409
    0, 0, 0, 0, 0, 0, 0, 0,
410
    0, 0, 0, 0, 0, 0, 0, 0
411
};
412
413
/* forward */
414
static PyObject* get_latin1_char(unsigned char ch);
415
416
417
static PyObject *
418
_PyUnicode_FromUCS1(const Py_UCS1 *s, Py_ssize_t size);
419
static PyObject *
420
_PyUnicode_FromUCS2(const Py_UCS2 *s, Py_ssize_t size);
421
static PyObject *
422
_PyUnicode_FromUCS4(const Py_UCS4 *s, Py_ssize_t size);
423
424
static PyObject *
425
unicode_encode_call_errorhandler(const char *errors,
426
       PyObject **errorHandler,const char *encoding, const char *reason,
427
       PyObject *unicode, PyObject **exceptionObject,
428
       Py_ssize_t startpos, Py_ssize_t endpos, Py_ssize_t *newpos);
429
430
static void
431
raise_encode_exception(PyObject **exceptionObject,
432
                       const char *encoding,
433
                       PyObject *unicode,
434
                       Py_ssize_t startpos, Py_ssize_t endpos,
435
                       const char *reason);
436
437
/* Same for linebreaks */
438
static const unsigned char ascii_linebreak[] = {
439
    0, 0, 0, 0, 0, 0, 0, 0,
440
/*         0x000A, * LINE FEED */
441
/*         0x000B, * LINE TABULATION */
442
/*         0x000C, * FORM FEED */
443
/*         0x000D, * CARRIAGE RETURN */
444
    0, 0, 1, 1, 1, 1, 0, 0,
445
    0, 0, 0, 0, 0, 0, 0, 0,
446
/*         0x001C, * FILE SEPARATOR */
447
/*         0x001D, * GROUP SEPARATOR */
448
/*         0x001E, * RECORD SEPARATOR */
449
    0, 0, 0, 0, 1, 1, 1, 0,
450
    0, 0, 0, 0, 0, 0, 0, 0,
451
    0, 0, 0, 0, 0, 0, 0, 0,
452
    0, 0, 0, 0, 0, 0, 0, 0,
453
    0, 0, 0, 0, 0, 0, 0, 0,
454
455
    0, 0, 0, 0, 0, 0, 0, 0,
456
    0, 0, 0, 0, 0, 0, 0, 0,
457
    0, 0, 0, 0, 0, 0, 0, 0,
458
    0, 0, 0, 0, 0, 0, 0, 0,
459
    0, 0, 0, 0, 0, 0, 0, 0,
460
    0, 0, 0, 0, 0, 0, 0, 0,
461
    0, 0, 0, 0, 0, 0, 0, 0,
462
    0, 0, 0, 0, 0, 0, 0, 0
463
};
464
465
static int convert_uc(PyObject *obj, void *addr);
466
467
struct encoding_map;
468
#include "clinic/unicodeobject.c.h"
469
470
_Py_error_handler
471
_Py_GetErrorHandler(const char *errors)
472
2.49M
{
473
2.49M
    if (errors == NULL || strcmp(errors, "strict") == 0) {
474
1.93M
        return _Py_ERROR_STRICT;
475
1.93M
    }
476
557k
    if (strcmp(errors, "surrogateescape") == 0) {
477
376k
        return _Py_ERROR_SURROGATEESCAPE;
478
376k
    }
479
180k
    if (strcmp(errors, "replace") == 0) {
480
180k
        return _Py_ERROR_REPLACE;
481
180k
    }
482
0
    if (strcmp(errors, "ignore") == 0) {
483
0
        return _Py_ERROR_IGNORE;
484
0
    }
485
0
    if (strcmp(errors, "backslashreplace") == 0) {
486
0
        return _Py_ERROR_BACKSLASHREPLACE;
487
0
    }
488
0
    if (strcmp(errors, "surrogatepass") == 0) {
489
0
        return _Py_ERROR_SURROGATEPASS;
490
0
    }
491
0
    if (strcmp(errors, "xmlcharrefreplace") == 0) {
492
0
        return _Py_ERROR_XMLCHARREFREPLACE;
493
0
    }
494
0
    return _Py_ERROR_OTHER;
495
0
}
496
497
498
static _Py_error_handler
499
get_error_handler_wide(const wchar_t *errors)
500
11.1k
{
501
11.1k
    if (errors == NULL || wcscmp(errors, L"strict") == 0) {
502
0
        return _Py_ERROR_STRICT;
503
0
    }
504
11.1k
    if (wcscmp(errors, L"surrogateescape") == 0) {
505
11.1k
        return _Py_ERROR_SURROGATEESCAPE;
506
11.1k
    }
507
0
    if (wcscmp(errors, L"replace") == 0) {
508
0
        return _Py_ERROR_REPLACE;
509
0
    }
510
0
    if (wcscmp(errors, L"ignore") == 0) {
511
0
        return _Py_ERROR_IGNORE;
512
0
    }
513
0
    if (wcscmp(errors, L"backslashreplace") == 0) {
514
0
        return _Py_ERROR_BACKSLASHREPLACE;
515
0
    }
516
0
    if (wcscmp(errors, L"surrogatepass") == 0) {
517
0
        return _Py_ERROR_SURROGATEPASS;
518
0
    }
519
0
    if (wcscmp(errors, L"xmlcharrefreplace") == 0) {
520
0
        return _Py_ERROR_XMLCHARREFREPLACE;
521
0
    }
522
0
    return _Py_ERROR_OTHER;
523
0
}
524
525
526
static inline int
527
unicode_check_encoding_errors(const char *encoding, const char *errors)
528
34.0M
{
529
34.0M
    if (encoding == NULL && errors == NULL) {
530
10.6M
        return 0;
531
10.6M
    }
532
533
23.3M
    PyInterpreterState *interp = _PyInterpreterState_GET();
534
23.3M
#ifndef Py_DEBUG
535
    /* In release mode, only check in development mode (-X dev) */
536
23.3M
    if (!_PyInterpreterState_GetConfig(interp)->dev_mode) {
537
23.3M
        return 0;
538
23.3M
    }
539
#else
540
    /* Always check in debug mode */
541
#endif
542
543
    /* Avoid calling _PyCodec_Lookup() and PyCodec_LookupError() before the
544
       codec registry is ready: before_PyUnicode_InitEncodings() is called. */
545
0
    if (!interp->unicode.fs_codec.encoding) {
546
0
        return 0;
547
0
    }
548
549
    /* Disable checks during Python finalization. For example, it allows to
550
     * call PyObject_Dump() during finalization for debugging purpose.
551
     */
552
0
    if (_PyInterpreterState_GetFinalizing(interp) != NULL) {
553
0
        return 0;
554
0
    }
555
556
0
    if (encoding != NULL
557
        // Fast path for the most common built-in encodings. Even if the codec
558
        // is cached, _PyCodec_Lookup() decodes the bytes string from UTF-8 to
559
        // create a temporary Unicode string (the key in the cache).
560
0
        && strcmp(encoding, "utf-8") != 0
561
0
        && strcmp(encoding, "utf8") != 0
562
0
        && strcmp(encoding, "ascii") != 0)
563
0
    {
564
0
        PyObject *handler = _PyCodec_Lookup(encoding);
565
0
        if (handler == NULL) {
566
0
            return -1;
567
0
        }
568
0
        Py_DECREF(handler);
569
0
    }
570
571
0
    if (errors != NULL
572
        // Fast path for the most common built-in error handlers.
573
0
        && strcmp(errors, "strict") != 0
574
0
        && strcmp(errors, "ignore") != 0
575
0
        && strcmp(errors, "replace") != 0
576
0
        && strcmp(errors, "surrogateescape") != 0
577
0
        && strcmp(errors, "surrogatepass") != 0)
578
0
    {
579
0
        PyObject *handler = PyCodec_LookupError(errors);
580
0
        if (handler == NULL) {
581
0
            return -1;
582
0
        }
583
0
        Py_DECREF(handler);
584
0
    }
585
0
    return 0;
586
0
}
587
588
589
int
590
_PyUnicode_CheckConsistency(PyObject *op, int check_content)
591
0
{
592
0
#define CHECK(expr) \
593
0
    do { if (!(expr)) { _PyObject_ASSERT_FAILED_MSG(op, Py_STRINGIFY(expr)); } } while (0)
594
595
0
    assert(op != NULL);
596
0
    CHECK(PyUnicode_Check(op));
597
598
0
    PyASCIIObject *ascii = _PyASCIIObject_CAST(op);
599
0
    int kind = ascii->state.kind;
600
601
0
    if (ascii->state.ascii == 1 && ascii->state.compact == 1) {
602
0
        CHECK(kind == PyUnicode_1BYTE_KIND);
603
0
    }
604
0
    else {
605
0
        PyCompactUnicodeObject *compact = _PyCompactUnicodeObject_CAST(op);
606
0
        void *data;
607
608
0
        if (ascii->state.compact == 1) {
609
0
            data = compact + 1;
610
0
            CHECK(kind == PyUnicode_1BYTE_KIND
611
0
                                 || kind == PyUnicode_2BYTE_KIND
612
0
                                 || kind == PyUnicode_4BYTE_KIND);
613
0
            CHECK(ascii->state.ascii == 0);
614
0
            CHECK(_PyUnicode_UTF8(op) != data);
615
0
        }
616
0
        else {
617
0
            PyUnicodeObject *unicode = _PyUnicodeObject_CAST(op);
618
619
0
            data = unicode->data.any;
620
0
            CHECK(kind == PyUnicode_1BYTE_KIND
621
0
                     || kind == PyUnicode_2BYTE_KIND
622
0
                     || kind == PyUnicode_4BYTE_KIND);
623
0
            CHECK(ascii->state.compact == 0);
624
0
            CHECK(data != NULL);
625
0
            if (ascii->state.ascii) {
626
0
                CHECK(_PyUnicode_UTF8(op) == data);
627
0
                CHECK(compact->utf8_length == ascii->length);
628
0
            }
629
0
            else {
630
0
                CHECK(_PyUnicode_UTF8(op) != data);
631
0
            }
632
0
        }
633
0
#ifndef Py_GIL_DISABLED
634
0
        if (_PyUnicode_UTF8(op) == NULL)
635
0
            CHECK(compact->utf8_length == 0);
636
0
#endif
637
0
    }
638
639
    /* check that the best kind is used: O(n) operation */
640
0
    if (check_content) {
641
0
        Py_ssize_t i;
642
0
        Py_UCS4 maxchar = 0;
643
0
        const void *data;
644
0
        Py_UCS4 ch;
645
646
0
        data = PyUnicode_DATA(ascii);
647
0
        for (i=0; i < ascii->length; i++)
648
0
        {
649
0
            ch = PyUnicode_READ(kind, data, i);
650
0
            if (ch > maxchar)
651
0
                maxchar = ch;
652
0
        }
653
0
        if (kind == PyUnicode_1BYTE_KIND) {
654
0
            if (ascii->state.ascii == 0) {
655
0
                CHECK(maxchar >= 128);
656
0
                CHECK(maxchar <= 255);
657
0
            }
658
0
            else
659
0
                CHECK(maxchar < 128);
660
0
        }
661
0
        else if (kind == PyUnicode_2BYTE_KIND) {
662
0
            CHECK(maxchar >= 0x100);
663
0
            CHECK(maxchar <= 0xFFFF);
664
0
        }
665
0
        else {
666
0
            CHECK(maxchar >= 0x10000);
667
0
            CHECK(maxchar <= MAX_UNICODE);
668
0
        }
669
0
        CHECK(PyUnicode_READ(kind, data, ascii->length) == 0);
670
0
    }
671
672
    /* Check interning state */
673
#ifdef Py_DEBUG
674
    // Note that we do not check `_Py_IsImmortal(op)`, since stable ABI
675
    // extensions can make immortal strings mortal (but with a high enough
676
    // refcount).
677
    // The other way is extremely unlikely (worth a potential failed assertion
678
    // in a debug build), so we do check `!_Py_IsImmortal(op)`.
679
    switch (PyUnicode_CHECK_INTERNED(op)) {
680
        case SSTATE_NOT_INTERNED:
681
            if (ascii->state.statically_allocated) {
682
                // This state is for two exceptions:
683
                // - strings are currently checked before they're interned
684
                // - the 256 one-latin1-character strings
685
                //   are static but use SSTATE_NOT_INTERNED
686
            }
687
            else {
688
                CHECK(!_Py_IsImmortal(op));
689
            }
690
            break;
691
        case SSTATE_INTERNED_MORTAL:
692
            CHECK(!ascii->state.statically_allocated);
693
            CHECK(!_Py_IsImmortal(op));
694
            break;
695
        case SSTATE_INTERNED_IMMORTAL:
696
            CHECK(!ascii->state.statically_allocated);
697
            break;
698
        case SSTATE_INTERNED_IMMORTAL_STATIC:
699
            CHECK(ascii->state.statically_allocated);
700
            break;
701
        default:
702
            Py_UNREACHABLE();
703
    }
704
#endif
705
706
0
    return 1;
707
708
0
#undef CHECK
709
0
}
710
711
PyObject*
712
_PyUnicode_Result(PyObject *unicode)
713
43.9M
{
714
43.9M
    assert(_PyUnicode_CHECK(unicode));
715
716
43.9M
    Py_ssize_t length = PyUnicode_GET_LENGTH(unicode);
717
43.9M
    if (length == 0) {
718
320
        PyObject *empty = _PyUnicode_GetEmpty();
719
320
        if (unicode != empty) {
720
0
            Py_DECREF(unicode);
721
0
        }
722
320
        return empty;
723
320
    }
724
725
43.9M
    if (length == 1) {
726
454k
        int kind = PyUnicode_KIND(unicode);
727
454k
        if (kind == PyUnicode_1BYTE_KIND) {
728
182k
            const Py_UCS1 *data = PyUnicode_1BYTE_DATA(unicode);
729
182k
            Py_UCS1 ch = data[0];
730
182k
            PyObject *latin1_char = LATIN1(ch);
731
182k
            if (unicode != latin1_char) {
732
177k
                Py_DECREF(unicode);
733
177k
            }
734
182k
            return latin1_char;
735
182k
        }
736
454k
    }
737
738
43.9M
    assert(_PyUnicode_CheckConsistency(unicode, 1));
739
43.7M
    return unicode;
740
43.9M
}
741
1.24M
#define unicode_result _PyUnicode_Result
742
743
static PyObject*
744
unicode_result_unchanged(PyObject *unicode)
745
111M
{
746
111M
    if (PyUnicode_CheckExact(unicode)) {
747
108M
        return Py_NewRef(unicode);
748
108M
    }
749
2.46M
    else
750
        /* Subtype -- return genuine unicode string with the same value. */
751
2.46M
        return _PyUnicode_Copy(unicode);
752
111M
}
753
754
/* Implementation of the "backslashreplace" error handler for 8-bit encodings:
755
   ASCII, Latin1, UTF-8, etc. */
756
static char*
757
backslashreplace(PyBytesWriter *writer, char *str,
758
                 PyObject *unicode, Py_ssize_t collstart, Py_ssize_t collend)
759
0
{
760
0
    Py_ssize_t size, i;
761
0
    Py_UCS4 ch;
762
0
    int kind;
763
0
    const void *data;
764
765
0
    kind = PyUnicode_KIND(unicode);
766
0
    data = PyUnicode_DATA(unicode);
767
768
0
    size = 0;
769
    /* determine replacement size */
770
0
    for (i = collstart; i < collend; ++i) {
771
0
        Py_ssize_t incr;
772
773
0
        ch = PyUnicode_READ(kind, data, i);
774
0
        if (ch < 0x100)
775
0
            incr = 2+2;
776
0
        else if (ch < 0x10000)
777
0
            incr = 2+4;
778
0
        else {
779
0
            assert(ch <= MAX_UNICODE);
780
0
            incr = 2+8;
781
0
        }
782
0
        if (size > PY_SSIZE_T_MAX - incr) {
783
0
            PyErr_SetString(PyExc_OverflowError,
784
0
                            "encoded result is too long for a Python string");
785
0
            return NULL;
786
0
        }
787
0
        size += incr;
788
0
    }
789
790
0
    str = PyBytesWriter_GrowAndUpdatePointer(writer, size, str);
791
0
    if (str == NULL) {
792
0
        return NULL;
793
0
    }
794
795
    /* generate replacement */
796
0
    for (i = collstart; i < collend; ++i) {
797
0
        ch = PyUnicode_READ(kind, data, i);
798
0
        *str++ = '\\';
799
0
        if (ch >= 0x00010000) {
800
0
            *str++ = 'U';
801
0
            *str++ = Py_hexdigits[(ch>>28)&0xf];
802
0
            *str++ = Py_hexdigits[(ch>>24)&0xf];
803
0
            *str++ = Py_hexdigits[(ch>>20)&0xf];
804
0
            *str++ = Py_hexdigits[(ch>>16)&0xf];
805
0
            *str++ = Py_hexdigits[(ch>>12)&0xf];
806
0
            *str++ = Py_hexdigits[(ch>>8)&0xf];
807
0
        }
808
0
        else if (ch >= 0x100) {
809
0
            *str++ = 'u';
810
0
            *str++ = Py_hexdigits[(ch>>12)&0xf];
811
0
            *str++ = Py_hexdigits[(ch>>8)&0xf];
812
0
        }
813
0
        else
814
0
            *str++ = 'x';
815
0
        *str++ = Py_hexdigits[(ch>>4)&0xf];
816
0
        *str++ = Py_hexdigits[ch&0xf];
817
0
    }
818
0
    return str;
819
0
}
820
821
/* Implementation of the "xmlcharrefreplace" error handler for 8-bit encodings:
822
   ASCII, Latin1, UTF-8, etc. */
823
static char*
824
xmlcharrefreplace(PyBytesWriter *writer, char *str,
825
                  PyObject *unicode, Py_ssize_t collstart, Py_ssize_t collend)
826
0
{
827
0
    Py_ssize_t size, i;
828
0
    Py_UCS4 ch;
829
0
    int kind;
830
0
    const void *data;
831
832
0
    kind = PyUnicode_KIND(unicode);
833
0
    data = PyUnicode_DATA(unicode);
834
835
0
    size = 0;
836
    /* determine replacement size */
837
0
    for (i = collstart; i < collend; ++i) {
838
0
        Py_ssize_t incr;
839
840
0
        ch = PyUnicode_READ(kind, data, i);
841
0
        if (ch < 10)
842
0
            incr = 2+1+1;
843
0
        else if (ch < 100)
844
0
            incr = 2+2+1;
845
0
        else if (ch < 1000)
846
0
            incr = 2+3+1;
847
0
        else if (ch < 10000)
848
0
            incr = 2+4+1;
849
0
        else if (ch < 100000)
850
0
            incr = 2+5+1;
851
0
        else if (ch < 1000000)
852
0
            incr = 2+6+1;
853
0
        else {
854
0
            assert(ch <= MAX_UNICODE);
855
0
            incr = 2+7+1;
856
0
        }
857
0
        if (size > PY_SSIZE_T_MAX - incr) {
858
0
            PyErr_SetString(PyExc_OverflowError,
859
0
                            "encoded result is too long for a Python string");
860
0
            return NULL;
861
0
        }
862
0
        size += incr;
863
0
    }
864
865
0
    str = PyBytesWriter_GrowAndUpdatePointer(writer, size, str);
866
0
    if (str == NULL) {
867
0
        return NULL;
868
0
    }
869
870
    /* generate replacement */
871
0
    for (i = collstart; i < collend; ++i) {
872
0
        size = sprintf(str, "&#%d;", PyUnicode_READ(kind, data, i));
873
0
        if (size < 0) {
874
0
            return NULL;
875
0
        }
876
0
        str += size;
877
0
    }
878
0
    return str;
879
0
}
880
881
/* --- Bloom Filters ----------------------------------------------------- */
882
883
/* stuff to implement simple "bloom filters" for Unicode characters.
884
   to keep things simple, we use a single bitmask, using the least 5
885
   bits from each unicode characters as the bit index. */
886
887
/* the linebreak mask is set up by _PyUnicode_Init() below */
888
889
#if LONG_BIT >= 128
890
#define BLOOM_WIDTH 128
891
#elif LONG_BIT >= 64
892
46.2M
#define BLOOM_WIDTH 64
893
#elif LONG_BIT >= 32
894
#define BLOOM_WIDTH 32
895
#else
896
#error "LONG_BIT is smaller than 32"
897
#endif
898
899
12.5M
#define BLOOM_MASK unsigned long
900
901
static BLOOM_MASK bloom_linebreak = ~(BLOOM_MASK)0;
902
903
71.2M
#define BLOOM(mask, ch)     ((mask &  (1UL << ((ch) & (BLOOM_WIDTH - 1)))))
904
905
#define BLOOM_LINEBREAK(ch)                                             \
906
229M
    ((ch) < 128U ? ascii_linebreak[(ch)] :                              \
907
229M
     (BLOOM(bloom_linebreak, (ch)) && Py_UNICODE_ISLINEBREAK(ch)))
908
909
static inline BLOOM_MASK
910
make_bloom_mask(int kind, const void* ptr, Py_ssize_t len)
911
6.28M
{
912
6.28M
#define BLOOM_UPDATE(TYPE, MASK, PTR, LEN)             \
913
6.28M
    do {                                               \
914
6.28M
        TYPE *data = (TYPE *)PTR;                      \
915
6.28M
        TYPE *end = data + LEN;                        \
916
6.28M
        Py_UCS4 ch;                                    \
917
14.4M
        for (; data != end; data++) {                  \
918
8.18M
            ch = *data;                                \
919
8.18M
            MASK |= (1UL << (ch & (BLOOM_WIDTH - 1))); \
920
8.18M
        }                                              \
921
6.28M
        break;                                         \
922
6.28M
    } while (0)
923
924
    /* calculate simple bloom-style bitmask for a given unicode string */
925
926
6.28M
    BLOOM_MASK mask;
927
928
6.28M
    mask = 0;
929
6.28M
    switch (kind) {
930
6.28M
    case PyUnicode_1BYTE_KIND:
931
6.28M
        BLOOM_UPDATE(Py_UCS1, mask, ptr, len);
932
6.28M
        break;
933
32
    case PyUnicode_2BYTE_KIND:
934
32
        BLOOM_UPDATE(Py_UCS2, mask, ptr, len);
935
32
        break;
936
0
    case PyUnicode_4BYTE_KIND:
937
0
        BLOOM_UPDATE(Py_UCS4, mask, ptr, len);
938
0
        break;
939
0
    default:
940
0
        Py_UNREACHABLE();
941
6.28M
    }
942
6.28M
    return mask;
943
944
6.28M
#undef BLOOM_UPDATE
945
6.28M
}
946
947
/* Compilation of templated routines */
948
949
1.08M
#define STRINGLIB_GET_EMPTY() _PyUnicode_GetEmpty()
950
951
#include "stringlib/asciilib.h"
952
#include "stringlib/fastsearch.h"
953
#include "stringlib/partition.h"
954
#include "stringlib/split.h"
955
#include "stringlib/count.h"
956
#include "stringlib/find.h"
957
#include "stringlib/find_max_char.h"
958
#include "stringlib/undef.h"
959
960
#include "stringlib/ucs1lib.h"
961
#include "stringlib/fastsearch.h"
962
#include "stringlib/partition.h"
963
#include "stringlib/split.h"
964
#include "stringlib/count.h"
965
#include "stringlib/find.h"
966
#include "stringlib/replace.h"
967
#include "stringlib/repr.h"
968
#include "stringlib/find_max_char.h"
969
#include "stringlib/undef.h"
970
971
#include "stringlib/ucs2lib.h"
972
#include "stringlib/fastsearch.h"
973
#include "stringlib/partition.h"
974
#include "stringlib/split.h"
975
#include "stringlib/count.h"
976
#include "stringlib/find.h"
977
#include "stringlib/replace.h"
978
#include "stringlib/repr.h"
979
#include "stringlib/find_max_char.h"
980
#include "stringlib/undef.h"
981
982
#include "stringlib/ucs4lib.h"
983
#include "stringlib/fastsearch.h"
984
#include "stringlib/partition.h"
985
#include "stringlib/split.h"
986
#include "stringlib/count.h"
987
#include "stringlib/find.h"
988
#include "stringlib/replace.h"
989
#include "stringlib/repr.h"
990
#include "stringlib/find_max_char.h"
991
#include "stringlib/undef.h"
992
993
#undef STRINGLIB_GET_EMPTY
994
995
/* --- Unicode Object ----------------------------------------------------- */
996
997
static inline Py_ssize_t
998
findchar(const void *s, int kind,
999
         Py_ssize_t size, Py_UCS4 ch,
1000
         int direction)
1001
167M
{
1002
167M
    switch (kind) {
1003
158M
    case PyUnicode_1BYTE_KIND:
1004
158M
        if ((Py_UCS1) ch != ch)
1005
3.64k
            return -1;
1006
158M
        if (direction > 0)
1007
158M
            return ucs1lib_find_char((const Py_UCS1 *) s, size, (Py_UCS1) ch);
1008
77.6k
        else
1009
77.6k
            return ucs1lib_rfind_char((const Py_UCS1 *) s, size, (Py_UCS1) ch);
1010
6.81M
    case PyUnicode_2BYTE_KIND:
1011
6.81M
        if ((Py_UCS2) ch != ch)
1012
0
            return -1;
1013
6.81M
        if (direction > 0)
1014
6.61M
            return ucs2lib_find_char((const Py_UCS2 *) s, size, (Py_UCS2) ch);
1015
200k
        else
1016
200k
            return ucs2lib_rfind_char((const Py_UCS2 *) s, size, (Py_UCS2) ch);
1017
2.37M
    case PyUnicode_4BYTE_KIND:
1018
2.37M
        if (direction > 0)
1019
2.27M
            return ucs4lib_find_char((const Py_UCS4 *) s, size, ch);
1020
100k
        else
1021
100k
            return ucs4lib_rfind_char((const Py_UCS4 *) s, size, ch);
1022
0
    default:
1023
0
        Py_UNREACHABLE();
1024
167M
    }
1025
167M
}
1026
1027
#ifdef Py_DEBUG
1028
/* Fill the data of a Unicode string with invalid characters to detect bugs
1029
   earlier.
1030
1031
   _PyUnicode_CheckConsistency(str, 1) detects invalid characters, at least for
1032
   ASCII and UCS-4 strings. U+00FF is invalid in ASCII and U+FFFFFFFF is an
1033
   invalid character in Unicode 6.0. */
1034
static void
1035
unicode_fill_invalid(PyObject *unicode, Py_ssize_t old_length)
1036
{
1037
    int kind = PyUnicode_KIND(unicode);
1038
    Py_UCS1 *data = PyUnicode_1BYTE_DATA(unicode);
1039
    Py_ssize_t length = _PyUnicode_LENGTH(unicode);
1040
    if (length <= old_length)
1041
        return;
1042
    memset(data + old_length * kind, 0xff, (length - old_length) * kind);
1043
}
1044
#endif
1045
1046
static PyObject*
1047
resize_copy(PyObject *unicode, Py_ssize_t length)
1048
0
{
1049
0
    Py_ssize_t copy_length;
1050
0
    PyObject *copy;
1051
1052
0
    copy = PyUnicode_New(length, PyUnicode_MAX_CHAR_VALUE(unicode));
1053
0
    if (copy == NULL)
1054
0
        return NULL;
1055
1056
0
    copy_length = Py_MIN(length, PyUnicode_GET_LENGTH(unicode));
1057
0
    _PyUnicode_FastCopyCharacters(copy, 0, unicode, 0, copy_length);
1058
0
    return copy;
1059
0
}
1060
1061
PyObject*
1062
_PyUnicode_ResizeCompact(PyObject *unicode, Py_ssize_t length)
1063
49.6M
{
1064
49.6M
    Py_ssize_t char_size;
1065
49.6M
    Py_ssize_t struct_size;
1066
49.6M
    Py_ssize_t new_size;
1067
49.6M
    PyObject *new_unicode;
1068
#ifdef Py_DEBUG
1069
    Py_ssize_t old_length = _PyUnicode_LENGTH(unicode);
1070
#endif
1071
1072
49.6M
    if (!_PyUnicode_IsModifiable(unicode)) {
1073
0
        PyObject *copy = resize_copy(unicode, length);
1074
0
        if (copy == NULL) {
1075
0
            return NULL;
1076
0
        }
1077
0
        Py_DECREF(unicode);
1078
0
        return copy;
1079
0
    }
1080
49.6M
    assert(PyUnicode_IS_COMPACT(unicode));
1081
1082
49.6M
    char_size = PyUnicode_KIND(unicode);
1083
49.6M
    if (PyUnicode_IS_ASCII(unicode))
1084
38.9M
        struct_size = sizeof(PyASCIIObject);
1085
10.6M
    else
1086
10.6M
        struct_size = sizeof(PyCompactUnicodeObject);
1087
1088
49.6M
    if (length > ((PY_SSIZE_T_MAX - struct_size) / char_size - 1)) {
1089
0
        PyErr_NoMemory();
1090
0
        return NULL;
1091
0
    }
1092
49.6M
    new_size = (struct_size + (length + 1) * char_size);
1093
1094
49.6M
    if (_PyUnicode_HAS_UTF8_MEMORY(unicode)) {
1095
0
        PyMem_Free(_PyUnicode_UTF8(unicode));
1096
0
        PyUnicode_SET_UTF8_LENGTH(unicode, 0);
1097
0
        PyUnicode_SET_UTF8(unicode, NULL);
1098
0
    }
1099
#ifdef Py_TRACE_REFS
1100
    _Py_ForgetReference(unicode);
1101
#endif
1102
49.6M
    _PyReftracerTrack(unicode, PyRefTracer_DESTROY);
1103
1104
49.6M
    new_unicode = (PyObject *)PyObject_Realloc(unicode, new_size);
1105
49.6M
    if (new_unicode == NULL) {
1106
0
        _Py_NewReferenceNoTotal(unicode);
1107
0
        PyErr_NoMemory();
1108
0
        return NULL;
1109
0
    }
1110
49.6M
    unicode = new_unicode;
1111
49.6M
    _Py_NewReferenceNoTotal(unicode);
1112
1113
49.6M
    _PyUnicode_LENGTH(unicode) = length;
1114
#ifdef Py_DEBUG
1115
    unicode_fill_invalid(unicode, old_length);
1116
#endif
1117
49.6M
    PyUnicode_WRITE(PyUnicode_KIND(unicode), PyUnicode_DATA(unicode),
1118
49.6M
                    length, 0);
1119
49.6M
    assert(_PyUnicode_CheckConsistency(unicode, 0));
1120
49.6M
    return unicode;
1121
49.6M
}
1122
1123
static int
1124
resize_inplace(PyObject *unicode, Py_ssize_t length)
1125
0
{
1126
0
    assert(!PyUnicode_IS_COMPACT(unicode));
1127
0
    assert(Py_REFCNT(unicode) == 1);
1128
1129
0
    Py_ssize_t new_size;
1130
0
    Py_ssize_t char_size;
1131
0
    int share_utf8;
1132
0
    void *data;
1133
#ifdef Py_DEBUG
1134
    Py_ssize_t old_length = _PyUnicode_LENGTH(unicode);
1135
#endif
1136
1137
0
    data = _PyUnicode_DATA_ANY(unicode);
1138
0
    char_size = PyUnicode_KIND(unicode);
1139
0
    share_utf8 = _PyUnicode_SHARE_UTF8(unicode);
1140
1141
0
    if (length > (PY_SSIZE_T_MAX / char_size - 1)) {
1142
0
        PyErr_NoMemory();
1143
0
        return -1;
1144
0
    }
1145
0
    new_size = (length + 1) * char_size;
1146
1147
0
    if (!share_utf8 && _PyUnicode_HAS_UTF8_MEMORY(unicode))
1148
0
    {
1149
0
        PyMem_Free(_PyUnicode_UTF8(unicode));
1150
0
        PyUnicode_SET_UTF8_LENGTH(unicode, 0);
1151
0
        PyUnicode_SET_UTF8(unicode, NULL);
1152
0
    }
1153
1154
0
    data = (PyObject *)PyObject_Realloc(data, new_size);
1155
0
    if (data == NULL) {
1156
0
        PyErr_NoMemory();
1157
0
        return -1;
1158
0
    }
1159
0
    _PyUnicode_DATA_ANY(unicode) = data;
1160
0
    if (share_utf8) {
1161
0
        PyUnicode_SET_UTF8_LENGTH(unicode, length);
1162
0
        PyUnicode_SET_UTF8(unicode, data);
1163
0
    }
1164
0
    _PyUnicode_LENGTH(unicode) = length;
1165
0
    PyUnicode_WRITE(PyUnicode_KIND(unicode), data, length, 0);
1166
#ifdef Py_DEBUG
1167
    unicode_fill_invalid(unicode, old_length);
1168
#endif
1169
1170
    /* check for integer overflow */
1171
0
    if (length > PY_SSIZE_T_MAX / (Py_ssize_t)sizeof(wchar_t) - 1) {
1172
0
        PyErr_NoMemory();
1173
0
        return -1;
1174
0
    }
1175
0
    assert(_PyUnicode_CheckConsistency(unicode, 0));
1176
0
    return 0;
1177
0
}
1178
1179
static const char*
1180
unicode_kind_name(PyObject *unicode)
1181
0
{
1182
    /* don't check consistency: unicode_kind_name() is called from
1183
       _PyUnicode_Dump() */
1184
0
    if (!PyUnicode_IS_COMPACT(unicode))
1185
0
    {
1186
0
        switch (PyUnicode_KIND(unicode))
1187
0
        {
1188
0
        case PyUnicode_1BYTE_KIND:
1189
0
            if (PyUnicode_IS_ASCII(unicode))
1190
0
                return "legacy ascii";
1191
0
            else
1192
0
                return "legacy latin1";
1193
0
        case PyUnicode_2BYTE_KIND:
1194
0
            return "legacy UCS2";
1195
0
        case PyUnicode_4BYTE_KIND:
1196
0
            return "legacy UCS4";
1197
0
        default:
1198
0
            return "<legacy invalid kind>";
1199
0
        }
1200
0
    }
1201
0
    switch (PyUnicode_KIND(unicode)) {
1202
0
    case PyUnicode_1BYTE_KIND:
1203
0
        if (PyUnicode_IS_ASCII(unicode))
1204
0
            return "ascii";
1205
0
        else
1206
0
            return "latin1";
1207
0
    case PyUnicode_2BYTE_KIND:
1208
0
        return "UCS2";
1209
0
    case PyUnicode_4BYTE_KIND:
1210
0
        return "UCS4";
1211
0
    default:
1212
0
        return "<invalid compact kind>";
1213
0
    }
1214
0
}
1215
1216
#ifdef Py_DEBUG
1217
/* Functions wrapping macros for use in debugger */
1218
const char *_PyUnicode_utf8(void *unicode_raw){
1219
    PyObject *unicode = _PyObject_CAST(unicode_raw);
1220
    return PyUnicode_UTF8(unicode);
1221
}
1222
1223
const void *_PyUnicode_compact_data(void *unicode_raw) {
1224
    PyObject *unicode = _PyObject_CAST(unicode_raw);
1225
    return _PyUnicode_COMPACT_DATA(unicode);
1226
}
1227
const void *_PyUnicode_data(void *unicode_raw) {
1228
    PyObject *unicode = _PyObject_CAST(unicode_raw);
1229
    printf("obj %p\n", (void*)unicode);
1230
    printf("compact %d\n", PyUnicode_IS_COMPACT(unicode));
1231
    printf("compact ascii %d\n", PyUnicode_IS_COMPACT_ASCII(unicode));
1232
    printf("ascii op %p\n", (void*)(_PyASCIIObject_CAST(unicode) + 1));
1233
    printf("compact op %p\n", (void*)(_PyCompactUnicodeObject_CAST(unicode) + 1));
1234
    printf("compact data %p\n", _PyUnicode_COMPACT_DATA(unicode));
1235
    return PyUnicode_DATA(unicode);
1236
}
1237
1238
void
1239
_PyUnicode_Dump(PyObject *op)
1240
{
1241
    PyASCIIObject *ascii = _PyASCIIObject_CAST(op);
1242
    PyCompactUnicodeObject *compact = _PyCompactUnicodeObject_CAST(op);
1243
    PyUnicodeObject *unicode = _PyUnicodeObject_CAST(op);
1244
    const void *data;
1245
1246
    if (ascii->state.compact)
1247
    {
1248
        if (ascii->state.ascii)
1249
            data = (ascii + 1);
1250
        else
1251
            data = (compact + 1);
1252
    }
1253
    else
1254
        data = unicode->data.any;
1255
    printf("%s: len=%zu, ", unicode_kind_name(op), ascii->length);
1256
1257
    if (!ascii->state.ascii) {
1258
        printf("utf8=%p (%zu)", (void *)compact->utf8, compact->utf8_length);
1259
    }
1260
    printf(", data=%p\n", data);
1261
}
1262
#endif
1263
1264
1265
PyObject *
1266
PyUnicode_New(Py_ssize_t size, Py_UCS4 maxchar)
1267
461M
{
1268
    /* Optimization for empty strings */
1269
461M
    if (size == 0) {
1270
24.2M
        return _PyUnicode_GetEmpty();
1271
24.2M
    }
1272
1273
436M
    PyObject *obj;
1274
436M
    PyCompactUnicodeObject *unicode;
1275
436M
    void *data;
1276
436M
    int kind;
1277
436M
    int is_ascii;
1278
436M
    Py_ssize_t char_size;
1279
436M
    Py_ssize_t struct_size;
1280
1281
436M
    is_ascii = 0;
1282
436M
    struct_size = sizeof(PyCompactUnicodeObject);
1283
436M
    if (maxchar < 128) {
1284
290M
        kind = PyUnicode_1BYTE_KIND;
1285
290M
        char_size = 1;
1286
290M
        is_ascii = 1;
1287
290M
        struct_size = sizeof(PyASCIIObject);
1288
290M
    }
1289
145M
    else if (maxchar < 256) {
1290
12.9M
        kind = PyUnicode_1BYTE_KIND;
1291
12.9M
        char_size = 1;
1292
12.9M
    }
1293
132M
    else if (maxchar < 65536) {
1294
121M
        kind = PyUnicode_2BYTE_KIND;
1295
121M
        char_size = 2;
1296
121M
    }
1297
11.9M
    else {
1298
11.9M
        if (maxchar > MAX_UNICODE) {
1299
0
            PyErr_SetString(PyExc_SystemError,
1300
0
                            "invalid maximum character passed to PyUnicode_New");
1301
0
            return NULL;
1302
0
        }
1303
11.9M
        kind = PyUnicode_4BYTE_KIND;
1304
11.9M
        char_size = 4;
1305
11.9M
    }
1306
1307
    /* Ensure we won't overflow the size. */
1308
436M
    if (size < 0) {
1309
0
        PyErr_SetString(PyExc_SystemError,
1310
0
                        "Negative size passed to PyUnicode_New");
1311
0
        return NULL;
1312
0
    }
1313
436M
    if (size > ((PY_SSIZE_T_MAX - struct_size) / char_size - 1))
1314
0
        return PyErr_NoMemory();
1315
1316
    /* Duplicated allocation code from _PyObject_New() instead of a call to
1317
     * PyObject_New() so we are able to allocate space for the object and
1318
     * it's data buffer.
1319
     */
1320
436M
    obj = (PyObject *) PyObject_Malloc(struct_size + (size + 1) * char_size);
1321
436M
    if (obj == NULL) {
1322
0
        return PyErr_NoMemory();
1323
0
    }
1324
436M
    _PyObject_Init(obj, &PyUnicode_Type);
1325
1326
436M
    unicode = (PyCompactUnicodeObject *)obj;
1327
436M
    if (is_ascii)
1328
290M
        data = ((PyASCIIObject*)obj) + 1;
1329
145M
    else
1330
145M
        data = unicode + 1;
1331
436M
    _PyUnicode_LENGTH(unicode) = size;
1332
436M
    _PyUnicode_HASH(unicode) = -1;
1333
436M
    _PyUnicode_STATE(unicode).interned = 0;
1334
436M
    _PyUnicode_STATE(unicode).kind = kind;
1335
436M
    _PyUnicode_STATE(unicode).compact = 1;
1336
436M
    _PyUnicode_STATE(unicode).ascii = is_ascii;
1337
436M
    _PyUnicode_STATE(unicode).statically_allocated = 0;
1338
436M
    if (is_ascii) {
1339
290M
        ((char*)data)[size] = 0;
1340
290M
    }
1341
145M
    else if (kind == PyUnicode_1BYTE_KIND) {
1342
12.9M
        ((char*)data)[size] = 0;
1343
12.9M
        unicode->utf8 = NULL;
1344
12.9M
        unicode->utf8_length = 0;
1345
12.9M
    }
1346
132M
    else {
1347
132M
        unicode->utf8 = NULL;
1348
132M
        unicode->utf8_length = 0;
1349
132M
        if (kind == PyUnicode_2BYTE_KIND)
1350
121M
            ((Py_UCS2*)data)[size] = 0;
1351
11.9M
        else /* kind == PyUnicode_4BYTE_KIND */
1352
11.9M
            ((Py_UCS4*)data)[size] = 0;
1353
132M
    }
1354
#ifdef Py_DEBUG
1355
    unicode_fill_invalid((PyObject*)unicode, 0);
1356
#endif
1357
436M
    assert(_PyUnicode_CheckConsistency((PyObject*)unicode, 0));
1358
436M
    return obj;
1359
436M
}
1360
1361
static int
1362
unicode_check_modifiable(PyObject *unicode)
1363
530
{
1364
530
    if (!_PyUnicode_IsModifiable(unicode)) {
1365
0
        PyErr_SetString(PyExc_SystemError,
1366
0
                        "Cannot modify a string currently used");
1367
0
        return -1;
1368
0
    }
1369
530
    return 0;
1370
530
}
1371
1372
static int
1373
_copy_characters(PyObject *to, Py_ssize_t to_start,
1374
                 PyObject *from, Py_ssize_t from_start,
1375
                 Py_ssize_t how_many, int check_maxchar)
1376
261M
{
1377
261M
    int from_kind, to_kind;
1378
261M
    const void *from_data;
1379
261M
    void *to_data;
1380
1381
261M
    assert(0 <= how_many);
1382
261M
    assert(0 <= from_start);
1383
261M
    assert(0 <= to_start);
1384
261M
    assert(PyUnicode_Check(from));
1385
261M
    assert(from_start + how_many <= PyUnicode_GET_LENGTH(from));
1386
1387
261M
    assert(to == NULL || PyUnicode_Check(to));
1388
1389
261M
    if (how_many == 0) {
1390
1.38M
        return 0;
1391
1.38M
    }
1392
1393
261M
    assert(to != NULL);
1394
260M
    assert(to_start + how_many <= PyUnicode_GET_LENGTH(to));
1395
1396
260M
    from_kind = PyUnicode_KIND(from);
1397
260M
    from_data = PyUnicode_DATA(from);
1398
260M
    to_kind = PyUnicode_KIND(to);
1399
260M
    to_data = PyUnicode_DATA(to);
1400
1401
#ifdef Py_DEBUG
1402
    if (!check_maxchar
1403
        && PyUnicode_MAX_CHAR_VALUE(from) > PyUnicode_MAX_CHAR_VALUE(to))
1404
    {
1405
        Py_UCS4 to_maxchar = PyUnicode_MAX_CHAR_VALUE(to);
1406
        Py_UCS4 ch;
1407
        Py_ssize_t i;
1408
        for (i=0; i < how_many; i++) {
1409
            ch = PyUnicode_READ(from_kind, from_data, from_start + i);
1410
            assert(ch <= to_maxchar);
1411
        }
1412
    }
1413
#endif
1414
1415
260M
    if (from_kind == to_kind) {
1416
174M
        if (check_maxchar
1417
0
            && !PyUnicode_IS_ASCII(from) && PyUnicode_IS_ASCII(to))
1418
0
        {
1419
            /* Writing Latin-1 characters into an ASCII string requires to
1420
               check that all written characters are pure ASCII */
1421
0
            Py_UCS4 max_char;
1422
0
            max_char = ucs1lib_find_max_char(from_data,
1423
0
                                             (const Py_UCS1*)from_data + how_many);
1424
0
            if (max_char >= 128)
1425
0
                return -1;
1426
0
        }
1427
174M
        memcpy((char*)to_data + to_kind * to_start,
1428
174M
                  (const char*)from_data + from_kind * from_start,
1429
174M
                  to_kind * how_many);
1430
174M
    }
1431
85.7M
    else if (from_kind == PyUnicode_1BYTE_KIND
1432
82.3M
             && to_kind == PyUnicode_2BYTE_KIND)
1433
72.2M
    {
1434
72.2M
        _PyUnicode_CONVERT_BYTES(
1435
72.2M
            Py_UCS1, Py_UCS2,
1436
72.2M
            PyUnicode_1BYTE_DATA(from) + from_start,
1437
72.2M
            PyUnicode_1BYTE_DATA(from) + from_start + how_many,
1438
72.2M
            PyUnicode_2BYTE_DATA(to) + to_start
1439
72.2M
            );
1440
72.2M
    }
1441
13.4M
    else if (from_kind == PyUnicode_1BYTE_KIND
1442
10.0M
             && to_kind == PyUnicode_4BYTE_KIND)
1443
10.0M
    {
1444
10.0M
        _PyUnicode_CONVERT_BYTES(
1445
10.0M
            Py_UCS1, Py_UCS4,
1446
10.0M
            PyUnicode_1BYTE_DATA(from) + from_start,
1447
10.0M
            PyUnicode_1BYTE_DATA(from) + from_start + how_many,
1448
10.0M
            PyUnicode_4BYTE_DATA(to) + to_start
1449
10.0M
            );
1450
10.0M
    }
1451
3.40M
    else if (from_kind == PyUnicode_2BYTE_KIND
1452
3.39M
             && to_kind == PyUnicode_4BYTE_KIND)
1453
3.39M
    {
1454
3.39M
        _PyUnicode_CONVERT_BYTES(
1455
3.39M
            Py_UCS2, Py_UCS4,
1456
3.39M
            PyUnicode_2BYTE_DATA(from) + from_start,
1457
3.39M
            PyUnicode_2BYTE_DATA(from) + from_start + how_many,
1458
3.39M
            PyUnicode_4BYTE_DATA(to) + to_start
1459
3.39M
            );
1460
3.39M
    }
1461
13.4k
    else {
1462
13.4k
        assert (PyUnicode_MAX_CHAR_VALUE(from) > PyUnicode_MAX_CHAR_VALUE(to));
1463
1464
13.4k
        if (!check_maxchar) {
1465
13.4k
            if (from_kind == PyUnicode_2BYTE_KIND
1466
2.46k
                && to_kind == PyUnicode_1BYTE_KIND)
1467
2.46k
            {
1468
2.46k
                _PyUnicode_CONVERT_BYTES(
1469
2.46k
                    Py_UCS2, Py_UCS1,
1470
2.46k
                    PyUnicode_2BYTE_DATA(from) + from_start,
1471
2.46k
                    PyUnicode_2BYTE_DATA(from) + from_start + how_many,
1472
2.46k
                    PyUnicode_1BYTE_DATA(to) + to_start
1473
2.46k
                    );
1474
2.46k
            }
1475
10.9k
            else if (from_kind == PyUnicode_4BYTE_KIND
1476
10.9k
                     && to_kind == PyUnicode_1BYTE_KIND)
1477
6.63k
            {
1478
6.63k
                _PyUnicode_CONVERT_BYTES(
1479
6.63k
                    Py_UCS4, Py_UCS1,
1480
6.63k
                    PyUnicode_4BYTE_DATA(from) + from_start,
1481
6.63k
                    PyUnicode_4BYTE_DATA(from) + from_start + how_many,
1482
6.63k
                    PyUnicode_1BYTE_DATA(to) + to_start
1483
6.63k
                    );
1484
6.63k
            }
1485
4.33k
            else if (from_kind == PyUnicode_4BYTE_KIND
1486
4.33k
                     && to_kind == PyUnicode_2BYTE_KIND)
1487
4.33k
            {
1488
4.33k
                _PyUnicode_CONVERT_BYTES(
1489
4.33k
                    Py_UCS4, Py_UCS2,
1490
4.33k
                    PyUnicode_4BYTE_DATA(from) + from_start,
1491
4.33k
                    PyUnicode_4BYTE_DATA(from) + from_start + how_many,
1492
4.33k
                    PyUnicode_2BYTE_DATA(to) + to_start
1493
4.33k
                    );
1494
4.33k
            }
1495
0
            else {
1496
0
                Py_UNREACHABLE();
1497
0
            }
1498
13.4k
        }
1499
0
        else {
1500
0
            const Py_UCS4 to_maxchar = PyUnicode_MAX_CHAR_VALUE(to);
1501
0
            Py_UCS4 ch;
1502
0
            Py_ssize_t i;
1503
1504
0
            for (i=0; i < how_many; i++) {
1505
0
                ch = PyUnicode_READ(from_kind, from_data, from_start + i);
1506
0
                if (ch > to_maxchar)
1507
0
                    return -1;
1508
0
                PyUnicode_WRITE(to_kind, to_data, to_start + i, ch);
1509
0
            }
1510
0
        }
1511
13.4k
    }
1512
260M
    return 0;
1513
260M
}
1514
1515
void
1516
_PyUnicode_FastCopyCharacters(
1517
    PyObject *to, Py_ssize_t to_start,
1518
    PyObject *from, Py_ssize_t from_start, Py_ssize_t how_many)
1519
261M
{
1520
261M
    (void)_copy_characters(to, to_start, from, from_start, how_many, 0);
1521
261M
}
1522
1523
Py_ssize_t
1524
PyUnicode_CopyCharacters(PyObject *to, Py_ssize_t to_start,
1525
                         PyObject *from, Py_ssize_t from_start,
1526
                         Py_ssize_t how_many)
1527
0
{
1528
0
    int err;
1529
1530
0
    if (!PyUnicode_Check(from) || !PyUnicode_Check(to)) {
1531
0
        PyErr_BadInternalCall();
1532
0
        return -1;
1533
0
    }
1534
1535
0
    if ((size_t)from_start > (size_t)PyUnicode_GET_LENGTH(from)) {
1536
0
        PyErr_SetString(PyExc_IndexError, "string index out of range");
1537
0
        return -1;
1538
0
    }
1539
0
    if ((size_t)to_start > (size_t)PyUnicode_GET_LENGTH(to)) {
1540
0
        PyErr_SetString(PyExc_IndexError, "string index out of range");
1541
0
        return -1;
1542
0
    }
1543
0
    if (how_many < 0) {
1544
0
        PyErr_SetString(PyExc_SystemError, "how_many cannot be negative");
1545
0
        return -1;
1546
0
    }
1547
0
    how_many = Py_MIN(PyUnicode_GET_LENGTH(from)-from_start, how_many);
1548
0
    if (to_start + how_many > PyUnicode_GET_LENGTH(to)) {
1549
0
        PyErr_Format(PyExc_SystemError,
1550
0
                     "Cannot write %zi characters at %zi "
1551
0
                     "in a string of %zi characters",
1552
0
                     how_many, to_start, PyUnicode_GET_LENGTH(to));
1553
0
        return -1;
1554
0
    }
1555
1556
0
    if (how_many == 0)
1557
0
        return 0;
1558
1559
0
    if (unicode_check_modifiable(to))
1560
0
        return -1;
1561
1562
0
    err = _copy_characters(to, to_start, from, from_start, how_many, 1);
1563
0
    if (err) {
1564
0
        PyErr_Format(PyExc_SystemError,
1565
0
                     "Cannot copy %s characters "
1566
0
                     "into a string of %s characters",
1567
0
                     unicode_kind_name(from),
1568
0
                     unicode_kind_name(to));
1569
0
        return -1;
1570
0
    }
1571
0
    return how_many;
1572
0
}
1573
1574
/* Find the maximum code point and count the number of surrogate pairs so a
1575
   correct string length can be computed before converting a string to UCS4.
1576
   This function counts single surrogates as a character and not as a pair.
1577
1578
   Return 0 on success, or -1 on error. */
1579
static int
1580
find_maxchar_surrogates(const wchar_t *begin, const wchar_t *end,
1581
                        Py_UCS4 *maxchar, Py_ssize_t *num_surrogates)
1582
389k
{
1583
389k
    const wchar_t *iter;
1584
389k
    Py_UCS4 ch;
1585
1586
389k
    assert(num_surrogates != NULL && maxchar != NULL);
1587
389k
    *num_surrogates = 0;
1588
389k
    *maxchar = 0;
1589
1590
10.3M
    for (iter = begin; iter < end; ) {
1591
#if SIZEOF_WCHAR_T == 2
1592
        if (Py_UNICODE_IS_HIGH_SURROGATE(iter[0])
1593
            && (iter+1) < end
1594
            && Py_UNICODE_IS_LOW_SURROGATE(iter[1]))
1595
        {
1596
            ch = Py_UNICODE_JOIN_SURROGATES(iter[0], iter[1]);
1597
            ++(*num_surrogates);
1598
            iter += 2;
1599
        }
1600
        else
1601
#endif
1602
9.97M
        {
1603
9.97M
            ch = *iter;
1604
9.97M
            iter++;
1605
9.97M
        }
1606
9.97M
        if (ch > *maxchar) {
1607
1.46M
            *maxchar = ch;
1608
1.46M
            if (*maxchar > MAX_UNICODE) {
1609
0
                PyErr_Format(PyExc_ValueError,
1610
0
                             "character U+%x is not in range [U+0000; U+%x]",
1611
0
                             ch, MAX_UNICODE);
1612
0
                return -1;
1613
0
            }
1614
1.46M
        }
1615
9.97M
    }
1616
389k
    return 0;
1617
389k
}
1618
1619
static void
1620
unicode_dealloc(PyObject *unicode)
1621
448M
{
1622
#ifdef Py_DEBUG
1623
    if (!unicode_is_finalizing() && unicode_is_singleton(unicode)) {
1624
        _Py_FatalRefcountError("deallocating an Unicode singleton");
1625
    }
1626
#endif
1627
448M
    if (_PyUnicode_STATE(unicode).statically_allocated) {
1628
        /* This should never get called, but we also don't want to SEGV if
1629
        * we accidentally decref an immortal string out of existence. Since
1630
        * the string is an immortal object, just re-set the reference count.
1631
        */
1632
#ifdef Py_DEBUG
1633
        Py_UNREACHABLE();
1634
#endif
1635
0
        _Py_SetImmortal(unicode);
1636
0
        return;
1637
0
    }
1638
448M
    switch (_PyUnicode_STATE(unicode).interned) {
1639
448M
        case SSTATE_NOT_INTERNED:
1640
448M
            break;
1641
536k
        case SSTATE_INTERNED_MORTAL:
1642
            /* Remove the object from the intern dict.
1643
             * Before doing so, we set the refcount to 2: the key and value
1644
             * in the interned_dict.
1645
             */
1646
536k
            assert(Py_REFCNT(unicode) == 0);
1647
536k
            Py_SET_REFCNT(unicode, 2);
1648
#ifdef Py_REF_DEBUG
1649
            /* let's be pedantic with the ref total */
1650
            _Py_IncRefTotal(_PyThreadState_GET());
1651
            _Py_IncRefTotal(_PyThreadState_GET());
1652
#endif
1653
536k
            PyInterpreterState *interp = _PyInterpreterState_GET();
1654
536k
            PyObject *interned = get_interned_dict(interp);
1655
536k
            assert(interned != NULL);
1656
536k
            PyObject *popped;
1657
536k
            int r = PyDict_Pop(interned, unicode, &popped);
1658
536k
            if (r == -1) {
1659
0
                PyErr_FormatUnraisable("Exception ignored while "
1660
0
                                       "removing an interned string %R",
1661
0
                                       unicode);
1662
                // We don't know what happened to the string. It's probably
1663
                // best to leak it:
1664
                // - if it was popped, there are no more references to it
1665
                //   so it can't cause trouble (except wasted memory)
1666
                // - if it wasn't popped, it'll remain interned
1667
0
                _Py_SetImmortal(unicode);
1668
0
                _PyUnicode_STATE(unicode).interned = SSTATE_INTERNED_IMMORTAL;
1669
0
                return;
1670
0
            }
1671
536k
            if (r == 0) {
1672
                // The interned string was not found in the interned_dict.
1673
#ifdef Py_DEBUG
1674
                Py_UNREACHABLE();
1675
#endif
1676
0
                _Py_SetImmortal(unicode);
1677
0
                return;
1678
0
            }
1679
            // Successfully popped.
1680
536k
            assert(popped == unicode);
1681
            // Only our `popped` reference should be left; remove it too.
1682
536k
            assert(Py_REFCNT(unicode) == 1);
1683
536k
            Py_SET_REFCNT(unicode, 0);
1684
#ifdef Py_REF_DEBUG
1685
            /* let's be pedantic with the ref total */
1686
            _Py_DecRefTotal(_PyThreadState_GET());
1687
#endif
1688
536k
            break;
1689
0
        default:
1690
            // As with `statically_allocated` above.
1691
#ifdef Py_REF_DEBUG
1692
            Py_UNREACHABLE();
1693
#endif
1694
0
            _Py_SetImmortal(unicode);
1695
0
            return;
1696
448M
    }
1697
448M
    if (_PyUnicode_HAS_UTF8_MEMORY(unicode)) {
1698
164k
        PyMem_Free(_PyUnicode_UTF8(unicode));
1699
164k
    }
1700
448M
    if (!PyUnicode_IS_COMPACT(unicode) && _PyUnicode_DATA_ANY(unicode)) {
1701
12.9M
        PyMem_Free(_PyUnicode_DATA_ANY(unicode));
1702
12.9M
    }
1703
1704
448M
    Py_TYPE(unicode)->tp_free(unicode);
1705
448M
}
1706
1707
#ifdef Py_DEBUG
1708
static int
1709
unicode_is_singleton(PyObject *unicode)
1710
{
1711
    if (unicode == &_Py_STR(empty)) {
1712
        return 1;
1713
    }
1714
1715
    PyASCIIObject *ascii = _PyASCIIObject_CAST(unicode);
1716
    if (ascii->length == 1) {
1717
        Py_UCS4 ch = PyUnicode_READ_CHAR(unicode, 0);
1718
        if (ch < 256 && LATIN1(ch) == unicode) {
1719
            return 1;
1720
        }
1721
    }
1722
    return 0;
1723
}
1724
#endif
1725
1726
int
1727
_PyUnicode_IsModifiable(PyObject *unicode)
1728
56.2M
{
1729
56.2M
    assert(_PyUnicode_CHECK(unicode));
1730
56.2M
    if (!_PyObject_IsUniquelyReferenced(unicode))
1731
3.12M
        return 0;
1732
53.1M
    if (PyUnicode_HASH(unicode) != -1)
1733
0
        return 0;
1734
53.1M
    if (PyUnicode_CHECK_INTERNED(unicode))
1735
0
        return 0;
1736
53.1M
    if (!PyUnicode_CheckExact(unicode))
1737
0
        return 0;
1738
#ifdef Py_DEBUG
1739
    /* singleton refcount is greater than 1 */
1740
    assert(!unicode_is_singleton(unicode));
1741
#endif
1742
53.1M
    return 1;
1743
53.1M
}
1744
1745
static int
1746
unicode_resize(PyObject **p_unicode, Py_ssize_t length)
1747
1.74M
{
1748
1.74M
    PyObject *unicode;
1749
1.74M
    Py_ssize_t old_length;
1750
1751
1.74M
    assert(p_unicode != NULL);
1752
1.74M
    unicode = *p_unicode;
1753
1754
1.74M
    assert(unicode != NULL);
1755
1.74M
    assert(PyUnicode_Check(unicode));
1756
1.74M
    assert(0 <= length);
1757
1758
1.74M
    old_length = PyUnicode_GET_LENGTH(unicode);
1759
1.74M
    if (old_length == length)
1760
0
        return 0;
1761
1762
1.74M
    if (length == 0) {
1763
0
        PyObject *empty = _PyUnicode_GetEmpty();
1764
0
        Py_SETREF(*p_unicode, empty);
1765
0
        return 0;
1766
0
    }
1767
1768
1.74M
    if (!_PyUnicode_IsModifiable(unicode)) {
1769
0
        PyObject *copy = resize_copy(unicode, length);
1770
0
        if (copy == NULL)
1771
0
            return -1;
1772
0
        Py_SETREF(*p_unicode, copy);
1773
0
        return 0;
1774
0
    }
1775
1776
1.74M
    if (PyUnicode_IS_COMPACT(unicode)) {
1777
1.74M
        PyObject *new_unicode = _PyUnicode_ResizeCompact(unicode, length);
1778
1.74M
        if (new_unicode == NULL)
1779
0
            return -1;
1780
1.74M
        *p_unicode = new_unicode;
1781
1.74M
        return 0;
1782
1.74M
    }
1783
0
    return resize_inplace(unicode, length);
1784
1.74M
}
1785
1786
int
1787
PyUnicode_Resize(PyObject **p_unicode, Py_ssize_t length)
1788
0
{
1789
0
    PyObject *unicode;
1790
0
    if (p_unicode == NULL) {
1791
0
        PyErr_BadInternalCall();
1792
0
        return -1;
1793
0
    }
1794
0
    unicode = *p_unicode;
1795
0
    if (unicode == NULL || !PyUnicode_Check(unicode) || length < 0)
1796
0
    {
1797
0
        PyErr_BadInternalCall();
1798
0
        return -1;
1799
0
    }
1800
0
    return unicode_resize(p_unicode, length);
1801
0
}
1802
1803
static PyObject*
1804
get_latin1_char(Py_UCS1 ch)
1805
209M
{
1806
209M
    PyObject *o = LATIN1(ch);
1807
209M
    return o;
1808
209M
}
1809
1810
static PyObject*
1811
unicode_char(Py_UCS4 ch)
1812
233M
{
1813
233M
    PyObject *unicode;
1814
1815
233M
    assert(ch <= MAX_UNICODE);
1816
1817
233M
    if (ch < 256) {
1818
144M
        return get_latin1_char(ch);
1819
144M
    }
1820
1821
88.9M
    unicode = PyUnicode_New(1, ch);
1822
88.9M
    if (unicode == NULL)
1823
0
        return NULL;
1824
1825
88.9M
    assert(PyUnicode_KIND(unicode) != PyUnicode_1BYTE_KIND);
1826
88.9M
    if (PyUnicode_KIND(unicode) == PyUnicode_2BYTE_KIND) {
1827
79.1M
        PyUnicode_2BYTE_DATA(unicode)[0] = (Py_UCS2)ch;
1828
79.1M
    } else {
1829
9.80M
        assert(PyUnicode_KIND(unicode) == PyUnicode_4BYTE_KIND);
1830
9.80M
        PyUnicode_4BYTE_DATA(unicode)[0] = ch;
1831
9.80M
    }
1832
88.9M
    assert(_PyUnicode_CheckConsistency(unicode, 1));
1833
88.9M
    return unicode;
1834
88.9M
}
1835
1836
1837
static inline void
1838
unicode_write_widechar(int kind, void *data,
1839
                       const wchar_t *u, Py_ssize_t size,
1840
                       Py_ssize_t num_surrogates)
1841
389k
{
1842
389k
    switch (kind) {
1843
364k
    case PyUnicode_1BYTE_KIND:
1844
364k
        _PyUnicode_CONVERT_BYTES(wchar_t, unsigned char, u, u + size, data);
1845
364k
        break;
1846
1847
24.0k
    case PyUnicode_2BYTE_KIND:
1848
#if SIZEOF_WCHAR_T == 2
1849
        memcpy(data, u, size * 2);
1850
#else
1851
24.0k
        _PyUnicode_CONVERT_BYTES(wchar_t, Py_UCS2, u, u + size, data);
1852
24.0k
#endif
1853
24.0k
        break;
1854
1855
658
    case PyUnicode_4BYTE_KIND:
1856
658
    {
1857
#if SIZEOF_WCHAR_T == 2
1858
        // Convert a 16-bits wchar_t representation to UCS4, this will decode
1859
        // surrogate pairs.
1860
        const wchar_t *end = u + size;
1861
        Py_UCS4 *ucs4_out = (Py_UCS4*)data;
1862
#  ifndef NDEBUG
1863
        Py_UCS4 *ucs4_end = (Py_UCS4*)data + (size - num_surrogates);
1864
#  endif
1865
        for (const wchar_t *iter = u; iter < end; ) {
1866
            assert(ucs4_out < ucs4_end);
1867
            if (Py_UNICODE_IS_HIGH_SURROGATE(iter[0])
1868
                && (iter+1) < end
1869
                && Py_UNICODE_IS_LOW_SURROGATE(iter[1]))
1870
            {
1871
                *ucs4_out++ = Py_UNICODE_JOIN_SURROGATES(iter[0], iter[1]);
1872
                iter += 2;
1873
            }
1874
            else {
1875
                *ucs4_out++ = *iter;
1876
                iter++;
1877
            }
1878
        }
1879
        assert(ucs4_out == ucs4_end);
1880
#else
1881
658
        assert(num_surrogates == 0);
1882
658
        memcpy(data, u, size * 4);
1883
658
#endif
1884
658
        break;
1885
0
    }
1886
0
    default:
1887
0
        Py_UNREACHABLE();
1888
389k
    }
1889
389k
}
1890
1891
1892
PyObject *
1893
PyUnicode_FromWideChar(const wchar_t *u, Py_ssize_t size)
1894
798k
{
1895
798k
    PyObject *unicode;
1896
798k
    Py_UCS4 maxchar = 0;
1897
798k
    Py_ssize_t num_surrogates;
1898
1899
798k
    if (u == NULL && size != 0) {
1900
0
        PyErr_BadInternalCall();
1901
0
        return NULL;
1902
0
    }
1903
1904
798k
    if (size == -1) {
1905
1.15k
        size = wcslen(u);
1906
1.15k
    }
1907
1908
    /* If the Unicode data is known at construction time, we can apply
1909
       some optimizations which share commonly used objects. */
1910
1911
    /* Optimization for empty strings */
1912
798k
    if (size == 0)
1913
324k
        _Py_RETURN_UNICODE_EMPTY();
1914
1915
#ifdef HAVE_NON_UNICODE_WCHAR_T_REPRESENTATION
1916
    /* Oracle Solaris uses non-Unicode internal wchar_t form for
1917
       non-Unicode locales and hence needs conversion to UCS-4 first. */
1918
    if (_Py_LocaleUsesNonUnicodeWchar()) {
1919
        wchar_t* converted = _Py_DecodeNonUnicodeWchar(u, size);
1920
        if (!converted) {
1921
            return NULL;
1922
        }
1923
        PyObject *unicode = _PyUnicode_FromUCS4(converted, size);
1924
        PyMem_Free(converted);
1925
        return unicode;
1926
    }
1927
#endif
1928
1929
    /* Single character Unicode objects in the Latin-1 range are
1930
       shared when using this constructor */
1931
473k
    if (size == 1 && (Py_UCS4)*u < 256)
1932
84.6k
        return get_latin1_char((unsigned char)*u);
1933
1934
    /* If not empty and not single character, copy the Unicode data
1935
       into the new object */
1936
389k
    if (find_maxchar_surrogates(u, u + size,
1937
389k
                                &maxchar, &num_surrogates) == -1)
1938
0
        return NULL;
1939
1940
389k
    unicode = PyUnicode_New(size - num_surrogates, maxchar);
1941
389k
    if (!unicode)
1942
0
        return NULL;
1943
1944
389k
    unicode_write_widechar(PyUnicode_KIND(unicode), PyUnicode_DATA(unicode),
1945
389k
                           u, size, num_surrogates);
1946
1947
389k
    return unicode_result(unicode);
1948
389k
}
1949
1950
1951
int
1952
PyUnicodeWriter_WriteWideChar(PyUnicodeWriter *pub_writer,
1953
                              const wchar_t *str,
1954
                              Py_ssize_t size)
1955
0
{
1956
0
    _PyUnicodeWriter *writer = (_PyUnicodeWriter *)pub_writer;
1957
1958
0
    if (size < 0) {
1959
0
        size = wcslen(str);
1960
0
    }
1961
1962
0
    if (size == 0) {
1963
0
        return 0;
1964
0
    }
1965
1966
#ifdef HAVE_NON_UNICODE_WCHAR_T_REPRESENTATION
1967
    /* Oracle Solaris uses non-Unicode internal wchar_t form for
1968
       non-Unicode locales and hence needs conversion to UCS-4 first. */
1969
    if (_Py_LocaleUsesNonUnicodeWchar()) {
1970
        wchar_t* converted = _Py_DecodeNonUnicodeWchar(str, size);
1971
        if (!converted) {
1972
            return -1;
1973
        }
1974
1975
        int res = PyUnicodeWriter_WriteUCS4(pub_writer, converted, size);
1976
        PyMem_Free(converted);
1977
        return res;
1978
    }
1979
#endif
1980
1981
0
    Py_UCS4 maxchar = 0;
1982
0
    Py_ssize_t num_surrogates;
1983
0
    if (find_maxchar_surrogates(str, str + size,
1984
0
                                &maxchar, &num_surrogates) == -1) {
1985
0
        return -1;
1986
0
    }
1987
1988
0
    if (_PyUnicodeWriter_Prepare(writer, size - num_surrogates, maxchar) < 0) {
1989
0
        return -1;
1990
0
    }
1991
1992
0
    int kind = writer->kind;
1993
0
    void *data = (Py_UCS1*)writer->data + writer->pos * kind;
1994
0
    unicode_write_widechar(kind, data, str, size, num_surrogates);
1995
1996
0
    writer->pos += size - num_surrogates;
1997
0
    return 0;
1998
0
}
1999
2000
2001
PyObject *
2002
PyUnicode_FromStringAndSize(const char *u, Py_ssize_t size)
2003
5.10M
{
2004
5.10M
    if (size < 0) {
2005
0
        PyErr_SetString(PyExc_SystemError,
2006
0
                        "Negative size passed to PyUnicode_FromStringAndSize");
2007
0
        return NULL;
2008
0
    }
2009
5.10M
    if (u != NULL) {
2010
5.10M
        return PyUnicode_DecodeUTF8Stateful(u, size, NULL, NULL);
2011
5.10M
    }
2012
0
    if (size > 0) {
2013
0
        PyErr_SetString(PyExc_SystemError,
2014
0
            "NULL string with positive size with NULL passed to PyUnicode_FromStringAndSize");
2015
0
        return NULL;
2016
0
    }
2017
0
    return _PyUnicode_GetEmpty();
2018
0
}
2019
2020
PyObject *
2021
PyUnicode_FromString(const char *u)
2022
11.9M
{
2023
11.9M
    size_t size = strlen(u);
2024
11.9M
    if (size > PY_SSIZE_T_MAX) {
2025
0
        PyErr_SetString(PyExc_OverflowError, "input too long");
2026
0
        return NULL;
2027
0
    }
2028
11.9M
    return PyUnicode_DecodeUTF8Stateful(u, (Py_ssize_t)size, NULL, NULL);
2029
11.9M
}
2030
2031
2032
PyObject *
2033
_PyUnicode_FromId(_Py_Identifier *id)
2034
0
{
2035
0
    PyMutex_Lock((PyMutex *)&id->mutex);
2036
0
    PyInterpreterState *interp = _PyInterpreterState_GET();
2037
0
    struct _Py_unicode_ids *ids = &interp->unicode.ids;
2038
2039
0
    Py_ssize_t index = _Py_atomic_load_ssize(&id->index);
2040
0
    if (index < 0) {
2041
0
        struct _Py_unicode_runtime_ids *rt_ids = &interp->runtime->unicode_state.ids;
2042
2043
0
        PyMutex_Lock(&rt_ids->mutex);
2044
        // Check again to detect concurrent access. Another thread can have
2045
        // initialized the index while this thread waited for the lock.
2046
0
        index = _Py_atomic_load_ssize(&id->index);
2047
0
        if (index < 0) {
2048
0
            assert(rt_ids->next_index < PY_SSIZE_T_MAX);
2049
0
            index = rt_ids->next_index;
2050
0
            rt_ids->next_index++;
2051
0
            _Py_atomic_store_ssize(&id->index, index);
2052
0
        }
2053
0
        PyMutex_Unlock(&rt_ids->mutex);
2054
0
    }
2055
0
    assert(index >= 0);
2056
2057
0
    PyObject *obj;
2058
0
    if (index < ids->size) {
2059
0
        obj = ids->array[index];
2060
0
        if (obj) {
2061
            // Return a borrowed reference
2062
0
            goto end;
2063
0
        }
2064
0
    }
2065
2066
0
    obj = PyUnicode_DecodeUTF8Stateful(id->string, strlen(id->string),
2067
0
                                       NULL, NULL);
2068
0
    if (!obj) {
2069
0
        goto end;
2070
0
    }
2071
0
    _PyUnicode_InternImmortal(interp, &obj);
2072
2073
0
    if (index >= ids->size) {
2074
        // Overallocate to reduce the number of realloc
2075
0
        Py_ssize_t new_size = Py_MAX(index * 2, 16);
2076
0
        Py_ssize_t item_size = sizeof(ids->array[0]);
2077
0
        PyObject **new_array = PyMem_Realloc(ids->array, new_size * item_size);
2078
0
        if (new_array == NULL) {
2079
0
            PyErr_NoMemory();
2080
0
            obj = NULL;
2081
0
            goto end;
2082
0
        }
2083
0
        memset(&new_array[ids->size], 0, (new_size - ids->size) * item_size);
2084
0
        ids->array = new_array;
2085
0
        ids->size = new_size;
2086
0
    }
2087
2088
    // The array stores a strong reference
2089
0
    ids->array[index] = obj;
2090
2091
0
end:
2092
0
    PyMutex_Unlock((PyMutex *)&id->mutex);
2093
    // Return a borrowed reference
2094
0
    return obj;
2095
0
}
2096
2097
2098
static void
2099
unicode_clear_identifiers(struct _Py_unicode_state *state)
2100
0
{
2101
0
    struct _Py_unicode_ids *ids = &state->ids;
2102
0
    for (Py_ssize_t i=0; i < ids->size; i++) {
2103
0
        Py_XDECREF(ids->array[i]);
2104
0
    }
2105
0
    ids->size = 0;
2106
0
    PyMem_Free(ids->array);
2107
0
    ids->array = NULL;
2108
    // Don't reset _PyRuntime next_index: _Py_Identifier.id remains valid
2109
    // after Py_Finalize().
2110
0
}
2111
2112
2113
/* Internal function, doesn't check maximum character */
2114
2115
PyObject*
2116
_PyUnicode_FromASCII(const char *buffer, Py_ssize_t size)
2117
103M
{
2118
103M
    const unsigned char *s = (const unsigned char *)buffer;
2119
103M
    PyObject *unicode;
2120
103M
    if (size == 1) {
2121
#ifdef Py_DEBUG
2122
        assert((unsigned char)s[0] < 128);
2123
#endif
2124
36.2M
        return get_latin1_char(s[0]);
2125
36.2M
    }
2126
67.1M
    unicode = PyUnicode_New(size, 127);
2127
67.1M
    if (!unicode)
2128
0
        return NULL;
2129
67.1M
    memcpy(PyUnicode_1BYTE_DATA(unicode), s, size);
2130
67.1M
    assert(_PyUnicode_CheckConsistency(unicode, 1));
2131
67.1M
    return unicode;
2132
67.1M
}
2133
2134
static Py_UCS4
2135
kind_maxchar_limit(int kind)
2136
0
{
2137
0
    switch (kind) {
2138
0
    case PyUnicode_1BYTE_KIND:
2139
0
        return 0x80;
2140
0
    case PyUnicode_2BYTE_KIND:
2141
0
        return 0x100;
2142
0
    case PyUnicode_4BYTE_KIND:
2143
0
        return 0x10000;
2144
0
    default:
2145
0
        Py_UNREACHABLE();
2146
0
    }
2147
0
}
2148
2149
static PyObject*
2150
_PyUnicode_FromUCS1(const Py_UCS1* u, Py_ssize_t size)
2151
42.3M
{
2152
42.3M
    PyObject *res;
2153
42.3M
    unsigned char max_char;
2154
2155
42.3M
    if (size == 0) {
2156
5.20M
        _Py_RETURN_UNICODE_EMPTY();
2157
5.20M
    }
2158
42.3M
    assert(size > 0);
2159
37.1M
    if (size == 1) {
2160
10.3M
        return get_latin1_char(u[0]);
2161
10.3M
    }
2162
2163
26.8M
    max_char = ucs1lib_find_max_char(u, u + size);
2164
26.8M
    res = PyUnicode_New(size, max_char);
2165
26.8M
    if (!res)
2166
0
        return NULL;
2167
26.8M
    memcpy(PyUnicode_1BYTE_DATA(res), u, size);
2168
26.8M
    assert(_PyUnicode_CheckConsistency(res, 1));
2169
26.8M
    return res;
2170
26.8M
}
2171
2172
static PyObject*
2173
_PyUnicode_FromUCS2(const Py_UCS2 *u, Py_ssize_t size)
2174
73.5M
{
2175
73.5M
    PyObject *res;
2176
73.5M
    Py_UCS2 max_char;
2177
2178
73.5M
    if (size == 0)
2179
12.1M
        _Py_RETURN_UNICODE_EMPTY();
2180
73.5M
    assert(size > 0);
2181
61.4M
    if (size == 1)
2182
39.2M
        return unicode_char(u[0]);
2183
2184
22.1M
    max_char = ucs2lib_find_max_char(u, u + size);
2185
22.1M
    res = PyUnicode_New(size, max_char);
2186
22.1M
    if (!res)
2187
0
        return NULL;
2188
22.1M
    if (max_char >= 256)
2189
13.9M
        memcpy(PyUnicode_2BYTE_DATA(res), u, sizeof(Py_UCS2)*size);
2190
8.25M
    else {
2191
8.25M
        _PyUnicode_CONVERT_BYTES(
2192
8.25M
            Py_UCS2, Py_UCS1, u, u + size, PyUnicode_1BYTE_DATA(res));
2193
8.25M
    }
2194
22.1M
    assert(_PyUnicode_CheckConsistency(res, 1));
2195
22.1M
    return res;
2196
22.1M
}
2197
2198
static PyObject*
2199
_PyUnicode_FromUCS4(const Py_UCS4 *u, Py_ssize_t size)
2200
52.3M
{
2201
52.3M
    PyObject *res;
2202
52.3M
    Py_UCS4 max_char;
2203
2204
52.3M
    if (size == 0)
2205
7.47M
        _Py_RETURN_UNICODE_EMPTY();
2206
52.3M
    assert(size > 0);
2207
44.8M
    if (size == 1)
2208
27.8M
        return unicode_char(u[0]);
2209
2210
17.0M
    max_char = ucs4lib_find_max_char(u, u + size);
2211
17.0M
    res = PyUnicode_New(size, max_char);
2212
17.0M
    if (!res)
2213
0
        return NULL;
2214
17.0M
    if (max_char < 256)
2215
11.3M
        _PyUnicode_CONVERT_BYTES(Py_UCS4, Py_UCS1, u, u + size,
2216
17.0M
                                 PyUnicode_1BYTE_DATA(res));
2217
5.76M
    else if (max_char < 0x10000)
2218
4.53M
        _PyUnicode_CONVERT_BYTES(Py_UCS4, Py_UCS2, u, u + size,
2219
5.76M
                                 PyUnicode_2BYTE_DATA(res));
2220
1.22M
    else
2221
1.22M
        memcpy(PyUnicode_4BYTE_DATA(res), u, sizeof(Py_UCS4)*size);
2222
17.0M
    assert(_PyUnicode_CheckConsistency(res, 1));
2223
17.0M
    return res;
2224
17.0M
}
2225
2226
2227
int
2228
PyUnicodeWriter_WriteUCS4(PyUnicodeWriter *pub_writer,
2229
                          Py_UCS4 *str,
2230
                          Py_ssize_t size)
2231
0
{
2232
0
    _PyUnicodeWriter *writer = (_PyUnicodeWriter*)pub_writer;
2233
2234
0
    if (size < 0) {
2235
0
        PyErr_SetString(PyExc_ValueError,
2236
0
                        "size must be positive");
2237
0
        return -1;
2238
0
    }
2239
2240
0
    if (size == 0) {
2241
0
        return 0;
2242
0
    }
2243
2244
0
    Py_UCS4 max_char = ucs4lib_find_max_char(str, str + size);
2245
2246
0
    if (_PyUnicodeWriter_Prepare(writer, size, max_char) < 0) {
2247
0
        return -1;
2248
0
    }
2249
2250
0
    int kind = writer->kind;
2251
0
    void *data = (Py_UCS1*)writer->data + writer->pos * kind;
2252
0
    if (kind == PyUnicode_1BYTE_KIND) {
2253
0
        _PyUnicode_CONVERT_BYTES(Py_UCS4, Py_UCS1,
2254
0
                                 str, str + size,
2255
0
                                 data);
2256
0
    }
2257
0
    else if (kind == PyUnicode_2BYTE_KIND) {
2258
0
        _PyUnicode_CONVERT_BYTES(Py_UCS4, Py_UCS2,
2259
0
                                 str, str + size,
2260
0
                                 data);
2261
0
    }
2262
0
    else {
2263
0
        memcpy(data, str, size * sizeof(Py_UCS4));
2264
0
    }
2265
0
    writer->pos += size;
2266
2267
0
    return 0;
2268
0
}
2269
2270
2271
PyObject*
2272
PyUnicode_FromKindAndData(int kind, const void *buffer, Py_ssize_t size)
2273
122M
{
2274
122M
    if (size < 0) {
2275
0
        PyErr_SetString(PyExc_ValueError, "size must be positive");
2276
0
        return NULL;
2277
0
    }
2278
122M
    switch (kind) {
2279
20.1M
    case PyUnicode_1BYTE_KIND:
2280
20.1M
        return _PyUnicode_FromUCS1(buffer, size);
2281
61.1M
    case PyUnicode_2BYTE_KIND:
2282
61.1M
        return _PyUnicode_FromUCS2(buffer, size);
2283
41.2M
    case PyUnicode_4BYTE_KIND:
2284
41.2M
        return _PyUnicode_FromUCS4(buffer, size);
2285
0
    default:
2286
0
        PyErr_SetString(PyExc_SystemError, "invalid kind");
2287
0
        return NULL;
2288
122M
    }
2289
122M
}
2290
2291
Py_UCS4
2292
_PyUnicode_FindMaxChar(PyObject *unicode, Py_ssize_t start, Py_ssize_t end)
2293
14.0M
{
2294
14.0M
    int kind;
2295
14.0M
    const void *startptr, *endptr;
2296
2297
14.0M
    assert(0 <= start);
2298
14.0M
    assert(end <= PyUnicode_GET_LENGTH(unicode));
2299
14.0M
    assert(start <= end);
2300
2301
14.0M
    if (start == 0 && end == PyUnicode_GET_LENGTH(unicode))
2302
0
        return PyUnicode_MAX_CHAR_VALUE(unicode);
2303
2304
14.0M
    if (start == end)
2305
0
        return 127;
2306
2307
14.0M
    if (PyUnicode_IS_ASCII(unicode))
2308
13.9M
        return 127;
2309
2310
24.8k
    kind = PyUnicode_KIND(unicode);
2311
24.8k
    startptr = PyUnicode_DATA(unicode);
2312
24.8k
    endptr = (char *)startptr + end * kind;
2313
24.8k
    startptr = (char *)startptr + start * kind;
2314
24.8k
    switch(kind) {
2315
1.55k
    case PyUnicode_1BYTE_KIND:
2316
1.55k
        return ucs1lib_find_max_char(startptr, endptr);
2317
4.92k
    case PyUnicode_2BYTE_KIND:
2318
4.92k
        return ucs2lib_find_max_char(startptr, endptr);
2319
18.3k
    case PyUnicode_4BYTE_KIND:
2320
18.3k
        return ucs4lib_find_max_char(startptr, endptr);
2321
0
    default:
2322
0
        Py_UNREACHABLE();
2323
24.8k
    }
2324
24.8k
}
2325
2326
/* Ensure that a string uses the most efficient storage, if it is not the
2327
   case: create a new string with of the right kind. Write NULL into *p_unicode
2328
   on error. */
2329
static void
2330
unicode_adjust_maxchar(PyObject **p_unicode)
2331
0
{
2332
0
    PyObject *unicode, *copy;
2333
0
    Py_UCS4 max_char;
2334
0
    Py_ssize_t len;
2335
0
    int kind;
2336
2337
0
    assert(p_unicode != NULL);
2338
0
    unicode = *p_unicode;
2339
0
    if (PyUnicode_IS_ASCII(unicode))
2340
0
        return;
2341
2342
0
    len = PyUnicode_GET_LENGTH(unicode);
2343
0
    kind = PyUnicode_KIND(unicode);
2344
0
    if (kind == PyUnicode_1BYTE_KIND) {
2345
0
        const Py_UCS1 *u = PyUnicode_1BYTE_DATA(unicode);
2346
0
        max_char = ucs1lib_find_max_char(u, u + len);
2347
0
        if (max_char >= 128)
2348
0
            return;
2349
0
    }
2350
0
    else if (kind == PyUnicode_2BYTE_KIND) {
2351
0
        const Py_UCS2 *u = PyUnicode_2BYTE_DATA(unicode);
2352
0
        max_char = ucs2lib_find_max_char(u, u + len);
2353
0
        if (max_char >= 256)
2354
0
            return;
2355
0
    }
2356
0
    else if (kind == PyUnicode_4BYTE_KIND) {
2357
0
        const Py_UCS4 *u = PyUnicode_4BYTE_DATA(unicode);
2358
0
        max_char = ucs4lib_find_max_char(u, u + len);
2359
0
        if (max_char >= 0x10000)
2360
0
            return;
2361
0
    }
2362
0
    else
2363
0
        Py_UNREACHABLE();
2364
2365
0
    copy = PyUnicode_New(len, max_char);
2366
0
    if (copy != NULL)
2367
0
        _PyUnicode_FastCopyCharacters(copy, 0, unicode, 0, len);
2368
0
    Py_DECREF(unicode);
2369
0
    *p_unicode = copy;
2370
0
}
2371
2372
PyObject*
2373
_PyUnicode_Copy(PyObject *unicode)
2374
2.46M
{
2375
2.46M
    Py_ssize_t length;
2376
2.46M
    PyObject *copy;
2377
2378
2.46M
    if (!PyUnicode_Check(unicode)) {
2379
0
        PyErr_BadInternalCall();
2380
0
        return NULL;
2381
0
    }
2382
2383
2.46M
    length = PyUnicode_GET_LENGTH(unicode);
2384
2.46M
    copy = PyUnicode_New(length, PyUnicode_MAX_CHAR_VALUE(unicode));
2385
2.46M
    if (!copy)
2386
0
        return NULL;
2387
2.46M
    assert(PyUnicode_KIND(copy) == PyUnicode_KIND(unicode));
2388
2389
2.46M
    memcpy(PyUnicode_DATA(copy), PyUnicode_DATA(unicode),
2390
2.46M
              length * PyUnicode_KIND(unicode));
2391
2.46M
    assert(_PyUnicode_CheckConsistency(copy, 1));
2392
2.46M
    return copy;
2393
2.46M
}
2394
2395
2396
/* Widen Unicode objects to larger buffers. Don't write terminating null
2397
   character. Return NULL on error. */
2398
2399
static void*
2400
unicode_askind(int skind, void const *data, Py_ssize_t len, int kind)
2401
11.5M
{
2402
11.5M
    void *result;
2403
2404
11.5M
    assert(skind < kind);
2405
11.5M
    switch (kind) {
2406
9.14M
    case PyUnicode_2BYTE_KIND:
2407
9.14M
        result = PyMem_New(Py_UCS2, len);
2408
9.14M
        if (!result)
2409
0
            return PyErr_NoMemory();
2410
9.14M
        assert(skind == PyUnicode_1BYTE_KIND);
2411
9.14M
        _PyUnicode_CONVERT_BYTES(
2412
9.14M
            Py_UCS1, Py_UCS2,
2413
9.14M
            (const Py_UCS1 *)data,
2414
9.14M
            ((const Py_UCS1 *)data) + len,
2415
9.14M
            result);
2416
9.14M
        return result;
2417
2.41M
    case PyUnicode_4BYTE_KIND:
2418
2.41M
        result = PyMem_New(Py_UCS4, len);
2419
2.41M
        if (!result)
2420
0
            return PyErr_NoMemory();
2421
2.41M
        if (skind == PyUnicode_2BYTE_KIND) {
2422
0
            _PyUnicode_CONVERT_BYTES(
2423
0
                Py_UCS2, Py_UCS4,
2424
0
                (const Py_UCS2 *)data,
2425
0
                ((const Py_UCS2 *)data) + len,
2426
0
                result);
2427
0
        }
2428
2.41M
        else {
2429
2.41M
            assert(skind == PyUnicode_1BYTE_KIND);
2430
2.41M
            _PyUnicode_CONVERT_BYTES(
2431
2.41M
                Py_UCS1, Py_UCS4,
2432
2.41M
                (const Py_UCS1 *)data,
2433
2.41M
                ((const Py_UCS1 *)data) + len,
2434
2.41M
                result);
2435
2.41M
        }
2436
2.41M
        return result;
2437
0
    default:
2438
0
        Py_UNREACHABLE();
2439
0
        return NULL;
2440
11.5M
    }
2441
11.5M
}
2442
2443
static Py_UCS4*
2444
as_ucs4(PyObject *string, Py_UCS4 *target, Py_ssize_t targetsize,
2445
        int copy_null)
2446
77.4k
{
2447
77.4k
    int kind;
2448
77.4k
    const void *data;
2449
77.4k
    Py_ssize_t len, targetlen;
2450
77.4k
    kind = PyUnicode_KIND(string);
2451
77.4k
    data = PyUnicode_DATA(string);
2452
77.4k
    len = PyUnicode_GET_LENGTH(string);
2453
77.4k
    targetlen = len;
2454
77.4k
    if (copy_null)
2455
0
        targetlen++;
2456
77.4k
    if (!target) {
2457
0
        target = PyMem_New(Py_UCS4, targetlen);
2458
0
        if (!target) {
2459
0
            PyErr_NoMemory();
2460
0
            return NULL;
2461
0
        }
2462
0
    }
2463
77.4k
    else {
2464
77.4k
        if (targetsize < targetlen) {
2465
0
            PyErr_Format(PyExc_SystemError,
2466
0
                         "string is longer than the buffer");
2467
0
            if (copy_null && 0 < targetsize)
2468
0
                target[0] = 0;
2469
0
            return NULL;
2470
0
        }
2471
77.4k
    }
2472
77.4k
    if (kind == PyUnicode_1BYTE_KIND) {
2473
55.3k
        const Py_UCS1 *start = (const Py_UCS1 *) data;
2474
55.3k
        _PyUnicode_CONVERT_BYTES(Py_UCS1, Py_UCS4, start, start + len, target);
2475
55.3k
    }
2476
22.0k
    else if (kind == PyUnicode_2BYTE_KIND) {
2477
15.8k
        const Py_UCS2 *start = (const Py_UCS2 *) data;
2478
15.8k
        _PyUnicode_CONVERT_BYTES(Py_UCS2, Py_UCS4, start, start + len, target);
2479
15.8k
    }
2480
6.19k
    else if (kind == PyUnicode_4BYTE_KIND) {
2481
6.19k
        memcpy(target, data, len * sizeof(Py_UCS4));
2482
6.19k
    }
2483
0
    else {
2484
0
        Py_UNREACHABLE();
2485
0
    }
2486
77.4k
    if (copy_null)
2487
0
        target[len] = 0;
2488
77.4k
    return target;
2489
77.4k
}
2490
2491
Py_UCS4*
2492
PyUnicode_AsUCS4(PyObject *string, Py_UCS4 *target, Py_ssize_t targetsize,
2493
                 int copy_null)
2494
77.4k
{
2495
77.4k
    if (target == NULL || targetsize < 0) {
2496
0
        PyErr_BadInternalCall();
2497
0
        return NULL;
2498
0
    }
2499
77.4k
    return as_ucs4(string, target, targetsize, copy_null);
2500
77.4k
}
2501
2502
Py_UCS4*
2503
PyUnicode_AsUCS4Copy(PyObject *string)
2504
0
{
2505
0
    return as_ucs4(string, NULL, 0, 1);
2506
0
}
2507
2508
/* maximum number of characters required for output of %jo or %jd or %p.
2509
   We need at most ceil(log8(256)*sizeof(intmax_t)) digits,
2510
   plus 1 for the sign, plus 2 for the 0x prefix (for %p),
2511
   plus 1 for the terminal NUL. */
2512
#define MAX_INTMAX_CHARS (5 + (sizeof(intmax_t)*8-1) / 3)
2513
2514
static int
2515
unicode_fromformat_write_str(_PyUnicodeWriter *writer, PyObject *str,
2516
                             Py_ssize_t width, Py_ssize_t precision, int flags)
2517
6.42M
{
2518
6.42M
    Py_ssize_t length, fill, arglen;
2519
6.42M
    Py_UCS4 maxchar;
2520
2521
6.42M
    length = PyUnicode_GET_LENGTH(str);
2522
6.42M
    if ((precision == -1 || precision >= length)
2523
6.42M
        && width <= length)
2524
6.42M
        return _PyUnicodeWriter_WriteStr(writer, str);
2525
2526
52
    if (precision != -1)
2527
52
        length = Py_MIN(precision, length);
2528
2529
52
    arglen = Py_MAX(length, width);
2530
52
    if (PyUnicode_MAX_CHAR_VALUE(str) > writer->maxchar)
2531
24
        maxchar = _PyUnicode_FindMaxChar(str, 0, length);
2532
28
    else
2533
28
        maxchar = writer->maxchar;
2534
2535
52
    if (_PyUnicodeWriter_Prepare(writer, arglen, maxchar) == -1)
2536
0
        return -1;
2537
2538
52
    fill = Py_MAX(width - length, 0);
2539
52
    if (fill && !(flags & F_LJUST)) {
2540
0
        if (PyUnicode_Fill(writer->buffer, writer->pos, fill, ' ') == -1)
2541
0
            return -1;
2542
0
        writer->pos += fill;
2543
0
    }
2544
2545
52
    _PyUnicode_FastCopyCharacters(writer->buffer, writer->pos,
2546
52
                                  str, 0, length);
2547
52
    writer->pos += length;
2548
2549
52
    if (fill && (flags & F_LJUST)) {
2550
0
        if (PyUnicode_Fill(writer->buffer, writer->pos, fill, ' ') == -1)
2551
0
            return -1;
2552
0
        writer->pos += fill;
2553
0
    }
2554
2555
52
    return 0;
2556
52
}
2557
2558
static int
2559
unicode_fromformat_write_utf8(_PyUnicodeWriter *writer, const char *str,
2560
                              Py_ssize_t width, Py_ssize_t precision, int flags)
2561
1.02M
{
2562
    /* UTF-8 */
2563
1.02M
    Py_ssize_t *pconsumed = NULL;
2564
1.02M
    Py_ssize_t length;
2565
1.02M
    if (precision == -1) {
2566
920k
        length = strlen(str);
2567
920k
    }
2568
100k
    else {
2569
100k
        length = 0;
2570
2.49M
        while (length < precision && str[length]) {
2571
2.39M
            length++;
2572
2.39M
        }
2573
100k
        if (length == precision) {
2574
            /* The input string is not NUL-terminated.  If it ends with an
2575
             * incomplete UTF-8 sequence, truncate the string just before it.
2576
             * Incomplete sequences in the middle and sequences which cannot
2577
             * be valid prefixes are still treated as errors and replaced
2578
             * with \xfffd. */
2579
1.44k
            pconsumed = &length;
2580
1.44k
        }
2581
100k
    }
2582
2583
1.02M
    if (width < 0) {
2584
1.02M
        return _PyUnicode_DecodeUTF8Writer(writer, str, length,
2585
1.02M
                                           _Py_ERROR_REPLACE, "replace", pconsumed);
2586
1.02M
    }
2587
2588
0
    PyObject *unicode = PyUnicode_DecodeUTF8Stateful(str, length,
2589
0
                                                     "replace", pconsumed);
2590
0
    if (unicode == NULL)
2591
0
        return -1;
2592
2593
0
    int res = unicode_fromformat_write_str(writer, unicode,
2594
0
                                           width, -1, flags);
2595
0
    Py_DECREF(unicode);
2596
0
    return res;
2597
0
}
2598
2599
static int
2600
unicode_fromformat_write_wcstr(_PyUnicodeWriter *writer, const wchar_t *str,
2601
                              Py_ssize_t width, Py_ssize_t precision, int flags)
2602
0
{
2603
0
    Py_ssize_t length;
2604
0
    if (precision == -1) {
2605
0
        length = wcslen(str);
2606
0
    }
2607
0
    else {
2608
0
        length = 0;
2609
0
        while (length < precision && str[length]) {
2610
0
            length++;
2611
0
        }
2612
0
    }
2613
2614
0
    if (width < 0) {
2615
0
        return PyUnicodeWriter_WriteWideChar((PyUnicodeWriter*)writer,
2616
0
                                             str, length);
2617
0
    }
2618
2619
0
    PyObject *unicode = PyUnicode_FromWideChar(str, length);
2620
0
    if (unicode == NULL)
2621
0
        return -1;
2622
2623
0
    int res = unicode_fromformat_write_str(writer, unicode, width, -1, flags);
2624
0
    Py_DECREF(unicode);
2625
0
    return res;
2626
0
}
2627
2628
0
#define F_LONG 1
2629
0
#define F_LONGLONG 2
2630
175k
#define F_SIZE 3
2631
0
#define F_PTRDIFF 4
2632
0
#define F_INTMAX 5
2633
2634
static const char*
2635
unicode_fromformat_arg(_PyUnicodeWriter *writer,
2636
                       const char *f, va_list *vargs)
2637
24.0M
{
2638
24.0M
    const char *p;
2639
24.0M
    Py_ssize_t len;
2640
24.0M
    int flags = 0;
2641
24.0M
    Py_ssize_t width;
2642
24.0M
    Py_ssize_t precision;
2643
2644
24.0M
    p = f;
2645
24.0M
    f++;
2646
24.0M
    if (*f == '%') {
2647
2.24M
        if (_PyUnicodeWriter_WriteCharInline(writer, '%') < 0)
2648
0
            return NULL;
2649
2.24M
        f++;
2650
2.24M
        return f;
2651
2.24M
    }
2652
2653
    /* Parse flags. Example: "%-i" => flags=F_LJUST. */
2654
    /* Flags '+', ' ' and '#' are not particularly useful.
2655
     * They are not worth the implementation and maintenance costs.
2656
     * In addition, '#' should add "0" for "o" conversions for compatibility
2657
     * with printf, but it would confuse Python users. */
2658
21.8M
    while (1) {
2659
21.8M
        switch (*f++) {
2660
0
        case '-': flags |= F_LJUST; continue;
2661
1.59k
        case '0': flags |= F_ZERO; continue;
2662
0
        case '#': flags |= F_ALT; continue;
2663
21.8M
        }
2664
21.8M
        f--;
2665
21.8M
        break;
2666
21.8M
    }
2667
2668
    /* parse the width.precision part, e.g. "%2.5s" => width=2, precision=5 */
2669
21.8M
    width = -1;
2670
21.8M
    if (*f == '*') {
2671
0
        width = va_arg(*vargs, int);
2672
0
        if (width < 0) {
2673
0
            flags |= F_LJUST;
2674
0
            width = -width;
2675
0
        }
2676
0
        f++;
2677
0
    }
2678
21.8M
    else if (Py_ISDIGIT((unsigned)*f)) {
2679
1.59k
        width = *f - '0';
2680
1.59k
        f++;
2681
1.59k
        while (Py_ISDIGIT((unsigned)*f)) {
2682
0
            if (width > (PY_SSIZE_T_MAX - ((int)*f - '0')) / 10) {
2683
0
                PyErr_SetString(PyExc_ValueError,
2684
0
                                "width too big");
2685
0
                return NULL;
2686
0
            }
2687
0
            width = (width * 10) + (*f - '0');
2688
0
            f++;
2689
0
        }
2690
1.59k
    }
2691
21.8M
    precision = -1;
2692
21.8M
    if (*f == '.') {
2693
2.05M
        f++;
2694
2.05M
        if (*f == '*') {
2695
0
            precision = va_arg(*vargs, int);
2696
0
            if (precision < 0) {
2697
0
                precision = -2;
2698
0
            }
2699
0
            f++;
2700
0
        }
2701
2.05M
        else if (Py_ISDIGIT((unsigned)*f)) {
2702
2.05M
            precision = (*f - '0');
2703
2.05M
            f++;
2704
6.16M
            while (Py_ISDIGIT((unsigned)*f)) {
2705
4.10M
                if (precision > (PY_SSIZE_T_MAX - ((int)*f - '0')) / 10) {
2706
0
                    PyErr_SetString(PyExc_ValueError,
2707
0
                                    "precision too big");
2708
0
                    return NULL;
2709
0
                }
2710
4.10M
                precision = (precision * 10) + (*f - '0');
2711
4.10M
                f++;
2712
4.10M
            }
2713
2.05M
        }
2714
2.05M
    }
2715
2716
21.8M
    int sizemod = 0;
2717
21.8M
    if (*f == 'l') {
2718
0
        if (f[1] == 'l') {
2719
0
            sizemod = F_LONGLONG;
2720
0
            f += 2;
2721
0
        }
2722
0
        else {
2723
0
            sizemod = F_LONG;
2724
0
            ++f;
2725
0
        }
2726
0
    }
2727
21.8M
    else if (*f == 'z') {
2728
87.9k
        sizemod = F_SIZE;
2729
87.9k
        ++f;
2730
87.9k
    }
2731
21.7M
    else if (*f == 't') {
2732
0
        sizemod = F_PTRDIFF;
2733
0
        ++f;
2734
0
    }
2735
21.7M
    else if (*f == 'j') {
2736
0
        sizemod = F_INTMAX;
2737
0
        ++f;
2738
0
    }
2739
21.8M
    if (f[0] != '\0' && f[1] == '\0')
2740
5.01M
        writer->overallocate = 0;
2741
2742
21.8M
    switch (*f) {
2743
11.3M
    case 'd': case 'i': case 'o': case 'u': case 'x': case 'X':
2744
11.3M
        break;
2745
2.96M
    case 'c': case 'p':
2746
2.96M
        if (sizemod || width >= 0 || precision >= 0) goto invalid_format;
2747
2.96M
        break;
2748
2.96M
    case 's':
2749
1.02M
    case 'V':
2750
1.02M
        if (sizemod && sizemod != F_LONG) goto invalid_format;
2751
1.02M
        break;
2752
6.42M
    default:
2753
6.42M
        if (sizemod) goto invalid_format;
2754
6.42M
        break;
2755
21.8M
    }
2756
2757
21.8M
    switch (*f) {
2758
2.96M
    case 'c':
2759
2.96M
    {
2760
2.96M
        int ordinal = va_arg(*vargs, int);
2761
2.96M
        if (ordinal < 0 || ordinal > MAX_UNICODE) {
2762
0
            PyErr_SetString(PyExc_OverflowError,
2763
0
                            "character argument not in range(0x110000)");
2764
0
            return NULL;
2765
0
        }
2766
2.96M
        if (_PyUnicodeWriter_WriteCharInline(writer, ordinal) < 0)
2767
0
            return NULL;
2768
2.96M
        break;
2769
2.96M
    }
2770
2771
11.3M
    case 'd': case 'i':
2772
11.3M
    case 'o': case 'u': case 'x': case 'X':
2773
11.3M
    {
2774
11.3M
        char buffer[MAX_INTMAX_CHARS];
2775
2776
        // Fill buffer using sprinf, with one of many possible format
2777
        // strings, like "%llX" for `long long` in hexadecimal.
2778
        // The type/size is in `sizemod`; the format is in `*f`.
2779
2780
        // Use macros with nested switches to keep the sprintf format strings
2781
        // as compile-time literals, avoiding warnings and maybe allowing
2782
        // optimizations.
2783
2784
        // `SPRINT` macro does one sprintf
2785
        // Example usage: SPRINT("l", "X", unsigned long) expands to
2786
        // sprintf(buffer, "%" "l" "X", va_arg(*vargs, unsigned long))
2787
11.3M
        #define SPRINT(SIZE_SPEC, FMT_CHAR, TYPE) \
2788
11.3M
            sprintf(buffer, "%" SIZE_SPEC FMT_CHAR, va_arg(*vargs, TYPE))
2789
2790
        // One inner switch to handle all format variants
2791
11.3M
        #define DO_SPRINTS(SIZE_SPEC, SIGNED_TYPE, UNSIGNED_TYPE)             \
2792
11.3M
            switch (*f) {                                                     \
2793
0
                case 'o': len = SPRINT(SIZE_SPEC, "o", UNSIGNED_TYPE); break; \
2794
15.2k
                case 'u': len = SPRINT(SIZE_SPEC, "u", UNSIGNED_TYPE); break; \
2795
1.18k
                case 'x': len = SPRINT(SIZE_SPEC, "x", UNSIGNED_TYPE); break; \
2796
949
                case 'X': len = SPRINT(SIZE_SPEC, "X", UNSIGNED_TYPE); break; \
2797
11.3M
                default:  len = SPRINT(SIZE_SPEC, "d", SIGNED_TYPE); break;   \
2798
11.3M
            }
2799
2800
        // Outer switch to handle all the sizes/types
2801
11.3M
        switch (sizemod) {
2802
0
            case F_LONG:     DO_SPRINTS("l", long, unsigned long); break;
2803
0
            case F_LONGLONG: DO_SPRINTS("ll", long long, unsigned long long); break;
2804
87.9k
            case F_SIZE:     DO_SPRINTS("z", Py_ssize_t, size_t); break;
2805
0
            case F_PTRDIFF:  DO_SPRINTS("t", ptrdiff_t, ptrdiff_t); break;
2806
0
            case F_INTMAX:   DO_SPRINTS("j", intmax_t, uintmax_t); break;
2807
11.3M
            default:         DO_SPRINTS("", int, unsigned int); break;
2808
11.3M
        }
2809
11.3M
        #undef SPRINT
2810
11.3M
        #undef DO_SPRINTS
2811
2812
11.3M
        assert(len >= 0);
2813
2814
11.3M
        int sign = (buffer[0] == '-');
2815
11.3M
        len -= sign;
2816
2817
11.3M
        precision = Py_MAX(precision, len);
2818
11.3M
        width = Py_MAX(width, precision + sign);
2819
11.3M
        if ((flags & F_ZERO) && !(flags & F_LJUST)) {
2820
1.59k
            precision = width - sign;
2821
1.59k
        }
2822
2823
11.3M
        Py_ssize_t spacepad = Py_MAX(width - precision - sign, 0);
2824
11.3M
        Py_ssize_t zeropad = Py_MAX(precision - len, 0);
2825
2826
11.3M
        if (_PyUnicodeWriter_Prepare(writer, width, 127) == -1)
2827
0
            return NULL;
2828
2829
11.3M
        if (spacepad && !(flags & F_LJUST)) {
2830
0
            if (PyUnicode_Fill(writer->buffer, writer->pos, spacepad, ' ') == -1)
2831
0
                return NULL;
2832
0
            writer->pos += spacepad;
2833
0
        }
2834
2835
11.3M
        if (sign) {
2836
1.07k
            if (_PyUnicodeWriter_WriteChar(writer, '-') == -1)
2837
0
                return NULL;
2838
1.07k
        }
2839
2840
11.3M
        if (zeropad) {
2841
530
            if (PyUnicode_Fill(writer->buffer, writer->pos, zeropad, '0') == -1)
2842
0
                return NULL;
2843
530
            writer->pos += zeropad;
2844
530
        }
2845
2846
11.3M
        if (_PyUnicodeWriter_WriteASCIIString(writer, &buffer[sign], len) < 0)
2847
0
            return NULL;
2848
2849
11.3M
        if (spacepad && (flags & F_LJUST)) {
2850
0
            if (PyUnicode_Fill(writer->buffer, writer->pos, spacepad, ' ') == -1)
2851
0
                return NULL;
2852
0
            writer->pos += spacepad;
2853
0
        }
2854
11.3M
        break;
2855
11.3M
    }
2856
2857
11.3M
    case 'p':
2858
0
    {
2859
0
        char number[MAX_INTMAX_CHARS];
2860
2861
0
        len = sprintf(number, "%p", va_arg(*vargs, void*));
2862
0
        assert(len >= 0);
2863
2864
        /* %p is ill-defined:  ensure leading 0x. */
2865
0
        if (number[1] == 'X')
2866
0
            number[1] = 'x';
2867
0
        else if (number[1] != 'x') {
2868
0
            memmove(number + 2, number,
2869
0
                    strlen(number) + 1);
2870
0
            number[0] = '0';
2871
0
            number[1] = 'x';
2872
0
            len += 2;
2873
0
        }
2874
2875
0
        if (_PyUnicodeWriter_WriteASCIIString(writer, number, len) < 0)
2876
0
            return NULL;
2877
0
        break;
2878
0
    }
2879
2880
1.02M
    case 's':
2881
1.02M
    {
2882
1.02M
        if (sizemod) {
2883
0
            const wchar_t *s = va_arg(*vargs, const wchar_t*);
2884
0
            if (unicode_fromformat_write_wcstr(writer, s, width, precision, flags) < 0)
2885
0
                return NULL;
2886
0
        }
2887
1.02M
        else {
2888
            /* UTF-8 */
2889
1.02M
            const char *s = va_arg(*vargs, const char*);
2890
1.02M
            if (unicode_fromformat_write_utf8(writer, s, width, precision, flags) < 0)
2891
0
                return NULL;
2892
1.02M
        }
2893
1.02M
        break;
2894
1.02M
    }
2895
2896
1.50M
    case 'U':
2897
1.50M
    {
2898
1.50M
        PyObject *obj = va_arg(*vargs, PyObject *);
2899
1.50M
        assert(obj && _PyUnicode_CHECK(obj));
2900
2901
1.50M
        if (unicode_fromformat_write_str(writer, obj, width, precision, flags) == -1)
2902
0
            return NULL;
2903
1.50M
        break;
2904
1.50M
    }
2905
2906
1.50M
    case 'V':
2907
535
    {
2908
535
        PyObject *obj = va_arg(*vargs, PyObject *);
2909
535
        const char *str;
2910
535
        const wchar_t *wstr;
2911
535
        if (sizemod) {
2912
0
            wstr = va_arg(*vargs, const wchar_t*);
2913
0
        }
2914
535
        else {
2915
535
            str = va_arg(*vargs, const char *);
2916
535
        }
2917
535
        if (obj) {
2918
0
            assert(_PyUnicode_CHECK(obj));
2919
0
            if (unicode_fromformat_write_str(writer, obj, width, precision, flags) == -1)
2920
0
                return NULL;
2921
0
        }
2922
535
        else if (sizemod) {
2923
0
            assert(wstr != NULL);
2924
0
            if (unicode_fromformat_write_wcstr(writer, wstr, width, precision, flags) < 0)
2925
0
                return NULL;
2926
0
        }
2927
535
        else {
2928
535
            assert(str != NULL);
2929
535
            if (unicode_fromformat_write_utf8(writer, str, width, precision, flags) < 0)
2930
0
                return NULL;
2931
535
        }
2932
535
        break;
2933
535
    }
2934
2935
1.60k
    case 'S':
2936
1.60k
    {
2937
1.60k
        PyObject *obj = va_arg(*vargs, PyObject *);
2938
1.60k
        PyObject *str;
2939
1.60k
        assert(obj);
2940
1.60k
        str = PyObject_Str(obj);
2941
1.60k
        if (!str)
2942
0
            return NULL;
2943
1.60k
        if (unicode_fromformat_write_str(writer, str, width, precision, flags) == -1) {
2944
0
            Py_DECREF(str);
2945
0
            return NULL;
2946
0
        }
2947
1.60k
        Py_DECREF(str);
2948
1.60k
        break;
2949
1.60k
    }
2950
2951
1.96M
    case 'R':
2952
1.96M
    {
2953
1.96M
        PyObject *obj = va_arg(*vargs, PyObject *);
2954
1.96M
        PyObject *repr;
2955
1.96M
        assert(obj);
2956
1.96M
        repr = PyObject_Repr(obj);
2957
1.96M
        if (!repr)
2958
0
            return NULL;
2959
1.96M
        if (unicode_fromformat_write_str(writer, repr, width, precision, flags) == -1) {
2960
0
            Py_DECREF(repr);
2961
0
            return NULL;
2962
0
        }
2963
1.96M
        Py_DECREF(repr);
2964
1.96M
        break;
2965
1.96M
    }
2966
2967
0
    case 'A':
2968
0
    {
2969
0
        PyObject *obj = va_arg(*vargs, PyObject *);
2970
0
        PyObject *ascii;
2971
0
        assert(obj);
2972
0
        ascii = PyObject_ASCII(obj);
2973
0
        if (!ascii)
2974
0
            return NULL;
2975
0
        if (unicode_fromformat_write_str(writer, ascii, width, precision, flags) == -1) {
2976
0
            Py_DECREF(ascii);
2977
0
            return NULL;
2978
0
        }
2979
0
        Py_DECREF(ascii);
2980
0
        break;
2981
0
    }
2982
2983
2.95M
    case 'T':
2984
2.95M
    {
2985
2.95M
        PyObject *obj = va_arg(*vargs, PyObject *);
2986
2.95M
        PyTypeObject *type = (PyTypeObject *)Py_NewRef(Py_TYPE(obj));
2987
2988
2.95M
        PyObject *type_name;
2989
2.95M
        if (flags & F_ALT) {
2990
0
            type_name = _PyType_GetFullyQualifiedName(type, ':');
2991
0
        }
2992
2.95M
        else {
2993
2.95M
            type_name = PyType_GetFullyQualifiedName(type);
2994
2.95M
        }
2995
2.95M
        Py_DECREF(type);
2996
2.95M
        if (!type_name) {
2997
0
            return NULL;
2998
0
        }
2999
3000
2.95M
        if (unicode_fromformat_write_str(writer, type_name,
3001
2.95M
                                         width, precision, flags) == -1) {
3002
0
            Py_DECREF(type_name);
3003
0
            return NULL;
3004
0
        }
3005
2.95M
        Py_DECREF(type_name);
3006
2.95M
        break;
3007
2.95M
    }
3008
3009
0
    case 'N':
3010
0
    {
3011
0
        PyObject *type_raw = va_arg(*vargs, PyObject *);
3012
0
        assert(type_raw != NULL);
3013
3014
0
        if (!PyType_Check(type_raw)) {
3015
0
            PyErr_SetString(PyExc_TypeError, "%N argument must be a type");
3016
0
            return NULL;
3017
0
        }
3018
0
        PyTypeObject *type = (PyTypeObject*)type_raw;
3019
3020
0
        PyObject *type_name;
3021
0
        if (flags & F_ALT) {
3022
0
            type_name = _PyType_GetFullyQualifiedName(type, ':');
3023
0
        }
3024
0
        else {
3025
0
            type_name = PyType_GetFullyQualifiedName(type);
3026
0
        }
3027
0
        if (!type_name) {
3028
0
            return NULL;
3029
0
        }
3030
0
        if (unicode_fromformat_write_str(writer, type_name,
3031
0
                                         width, precision, flags) == -1) {
3032
0
            Py_DECREF(type_name);
3033
0
            return NULL;
3034
0
        }
3035
0
        Py_DECREF(type_name);
3036
0
        break;
3037
0
    }
3038
3039
0
    default:
3040
0
    invalid_format:
3041
0
        PyErr_Format(PyExc_SystemError, "invalid format string: %s", p);
3042
0
        return NULL;
3043
21.8M
    }
3044
3045
21.8M
    f++;
3046
21.8M
    return f;
3047
21.8M
}
3048
3049
static int
3050
unicode_from_format(_PyUnicodeWriter *writer, const char *format, va_list vargs)
3051
10.5M
{
3052
10.5M
    Py_ssize_t len = strlen(format);
3053
10.5M
    writer->min_length += len + 100;
3054
10.5M
    writer->overallocate = 1;
3055
3056
    // Copy varags to be able to pass a reference to a subfunction.
3057
10.5M
    va_list vargs2;
3058
10.5M
    va_copy(vargs2, vargs);
3059
3060
    // _PyUnicodeWriter_WriteASCIIString() below requires the format string
3061
    // to be encoded to ASCII.
3062
10.5M
    int is_ascii = (ucs1lib_find_max_char((Py_UCS1*)format, (Py_UCS1*)format + len) < 128);
3063
10.5M
    if (!is_ascii) {
3064
0
        Py_ssize_t i;
3065
0
        for (i=0; i < len && (unsigned char)format[i] <= 127; i++);
3066
0
        PyErr_Format(PyExc_ValueError,
3067
0
            "PyUnicode_FromFormatV() expects an ASCII-encoded format "
3068
0
            "string, got a non-ASCII byte: 0x%02x",
3069
0
            (unsigned char)format[i]);
3070
0
        goto fail;
3071
0
    }
3072
3073
59.8M
    for (const char *f = format; *f; ) {
3074
49.2M
        if (*f == '%') {
3075
24.0M
            f = unicode_fromformat_arg(writer, f, &vargs2);
3076
24.0M
            if (f == NULL)
3077
0
                goto fail;
3078
24.0M
        }
3079
25.1M
        else {
3080
25.1M
            const char *p = strchr(f, '%');
3081
25.1M
            if (p != NULL) {
3082
19.5M
                len = p - f;
3083
19.5M
            }
3084
5.58M
            else {
3085
5.58M
                len = strlen(f);
3086
5.58M
                writer->overallocate = 0;
3087
5.58M
            }
3088
3089
25.1M
            if (_PyUnicodeWriter_WriteASCIIString(writer, f, len) < 0) {
3090
0
                goto fail;
3091
0
            }
3092
25.1M
            f += len;
3093
25.1M
        }
3094
49.2M
    }
3095
10.5M
    va_end(vargs2);
3096
10.5M
    return 0;
3097
3098
0
  fail:
3099
0
    va_end(vargs2);
3100
0
    return -1;
3101
10.5M
}
3102
3103
PyObject *
3104
PyUnicode_FromFormatV(const char *format, va_list vargs)
3105
10.5M
{
3106
10.5M
    _PyUnicodeWriter writer;
3107
10.5M
    _PyUnicodeWriter_Init(&writer);
3108
3109
10.5M
    if (unicode_from_format(&writer, format, vargs) < 0) {
3110
0
        _PyUnicodeWriter_Dealloc(&writer);
3111
0
        return NULL;
3112
0
    }
3113
10.5M
    return _PyUnicodeWriter_Finish(&writer);
3114
10.5M
}
3115
3116
PyObject *
3117
PyUnicode_FromFormat(const char *format, ...)
3118
753k
{
3119
753k
    PyObject* ret;
3120
753k
    va_list vargs;
3121
3122
753k
    va_start(vargs, format);
3123
753k
    ret = PyUnicode_FromFormatV(format, vargs);
3124
753k
    va_end(vargs);
3125
753k
    return ret;
3126
753k
}
3127
3128
int
3129
PyUnicodeWriter_Format(PyUnicodeWriter *writer, const char *format, ...)
3130
0
{
3131
0
    va_list vargs;
3132
0
    va_start(vargs, format);
3133
0
    int res = _PyUnicodeWriter_FormatV(writer, format, vargs);
3134
0
    va_end(vargs);
3135
0
    return res;
3136
0
}
3137
3138
int
3139
_PyUnicodeWriter_FormatV(PyUnicodeWriter *writer, const char *format,
3140
                         va_list vargs)
3141
0
{
3142
0
    _PyUnicodeWriter *_writer = (_PyUnicodeWriter*)writer;
3143
0
    Py_ssize_t old_pos = _writer->pos;
3144
3145
0
    int res = unicode_from_format(_writer, format, vargs);
3146
3147
0
    if (res < 0) {
3148
0
        _writer->pos = old_pos;
3149
0
    }
3150
0
    return res;
3151
0
}
3152
3153
static Py_ssize_t
3154
unicode_get_widechar_size(PyObject *unicode)
3155
220k
{
3156
220k
    Py_ssize_t res;
3157
3158
220k
    assert(unicode != NULL);
3159
220k
    assert(_PyUnicode_CHECK(unicode));
3160
3161
220k
    res = _PyUnicode_LENGTH(unicode);
3162
#if SIZEOF_WCHAR_T == 2
3163
    if (PyUnicode_KIND(unicode) == PyUnicode_4BYTE_KIND) {
3164
        const Py_UCS4 *s = PyUnicode_4BYTE_DATA(unicode);
3165
        const Py_UCS4 *end = s + res;
3166
        for (; s < end; ++s) {
3167
            if (*s > 0xFFFF) {
3168
                ++res;
3169
            }
3170
        }
3171
    }
3172
#endif
3173
220k
    return res;
3174
220k
}
3175
3176
static void
3177
unicode_copy_as_widechar(PyObject *unicode, wchar_t *w, Py_ssize_t size)
3178
220k
{
3179
220k
    assert(unicode != NULL);
3180
220k
    assert(_PyUnicode_CHECK(unicode));
3181
3182
220k
    if (PyUnicode_KIND(unicode) == sizeof(wchar_t)) {
3183
658
        memcpy(w, PyUnicode_DATA(unicode), size * sizeof(wchar_t));
3184
658
        return;
3185
658
    }
3186
3187
220k
    if (PyUnicode_KIND(unicode) == PyUnicode_1BYTE_KIND) {
3188
196k
        const Py_UCS1 *s = PyUnicode_1BYTE_DATA(unicode);
3189
4.77M
        for (; size--; ++s, ++w) {
3190
4.57M
            *w = *s;
3191
4.57M
        }
3192
196k
    }
3193
24.0k
    else {
3194
24.0k
#if SIZEOF_WCHAR_T == 4
3195
24.0k
        assert(PyUnicode_KIND(unicode) == PyUnicode_2BYTE_KIND);
3196
24.0k
        const Py_UCS2 *s = PyUnicode_2BYTE_DATA(unicode);
3197
978k
        for (; size--; ++s, ++w) {
3198
954k
            *w = *s;
3199
954k
        }
3200
#else
3201
        assert(PyUnicode_KIND(unicode) == PyUnicode_4BYTE_KIND);
3202
        const Py_UCS4 *s = PyUnicode_4BYTE_DATA(unicode);
3203
        for (; size--; ++s, ++w) {
3204
            Py_UCS4 ch = *s;
3205
            if (ch > 0xFFFF) {
3206
                assert(ch <= MAX_UNICODE);
3207
                /* encode surrogate pair in this case */
3208
                *w++ = Py_UNICODE_HIGH_SURROGATE(ch);
3209
                if (!size--)
3210
                    break;
3211
                *w = Py_UNICODE_LOW_SURROGATE(ch);
3212
            }
3213
            else {
3214
                *w = ch;
3215
            }
3216
        }
3217
#endif
3218
24.0k
    }
3219
220k
}
3220
3221
#ifdef HAVE_WCHAR_H
3222
3223
/* Convert a Unicode object to a wide character string.
3224
3225
   - If w is NULL: return the number of wide characters (including the null
3226
     character) required to convert the unicode object. Ignore size argument.
3227
3228
   - Otherwise: return the number of wide characters (excluding the null
3229
     character) written into w. Write at most size wide characters (including
3230
     the null character). */
3231
Py_ssize_t
3232
PyUnicode_AsWideChar(PyObject *unicode,
3233
                     wchar_t *w,
3234
                     Py_ssize_t size)
3235
5.88k
{
3236
5.88k
    Py_ssize_t res;
3237
3238
5.88k
    if (unicode == NULL) {
3239
0
        PyErr_BadInternalCall();
3240
0
        return -1;
3241
0
    }
3242
5.88k
    if (!PyUnicode_Check(unicode)) {
3243
0
        PyErr_BadArgument();
3244
0
        return -1;
3245
0
    }
3246
3247
5.88k
    res = unicode_get_widechar_size(unicode);
3248
5.88k
    if (w == NULL) {
3249
0
        return res + 1;
3250
0
    }
3251
3252
5.88k
    if (size > res) {
3253
5.88k
        size = res + 1;
3254
5.88k
    }
3255
0
    else {
3256
0
        res = size;
3257
0
    }
3258
5.88k
    unicode_copy_as_widechar(unicode, w, size);
3259
3260
#ifdef HAVE_NON_UNICODE_WCHAR_T_REPRESENTATION
3261
    /* Oracle Solaris uses non-Unicode internal wchar_t form for
3262
       non-Unicode locales and hence needs conversion first. */
3263
    if (_Py_LocaleUsesNonUnicodeWchar()) {
3264
        if (_Py_EncodeNonUnicodeWchar_InPlace(w, size) < 0) {
3265
            return -1;
3266
        }
3267
    }
3268
#endif
3269
3270
5.88k
    return res;
3271
5.88k
}
3272
3273
wchar_t*
3274
PyUnicode_AsWideCharString(PyObject *unicode,
3275
                           Py_ssize_t *size)
3276
214k
{
3277
214k
    wchar_t *buffer;
3278
214k
    Py_ssize_t buflen;
3279
3280
214k
    if (unicode == NULL) {
3281
0
        PyErr_BadInternalCall();
3282
0
        return NULL;
3283
0
    }
3284
214k
    if (!PyUnicode_Check(unicode)) {
3285
0
        PyErr_BadArgument();
3286
0
        return NULL;
3287
0
    }
3288
3289
214k
    buflen = unicode_get_widechar_size(unicode);
3290
214k
    buffer = (wchar_t *) PyMem_New(wchar_t, (buflen + 1));
3291
214k
    if (buffer == NULL) {
3292
0
        PyErr_NoMemory();
3293
0
        return NULL;
3294
0
    }
3295
214k
    unicode_copy_as_widechar(unicode, buffer, buflen + 1);
3296
3297
#ifdef HAVE_NON_UNICODE_WCHAR_T_REPRESENTATION
3298
    /* Oracle Solaris uses non-Unicode internal wchar_t form for
3299
       non-Unicode locales and hence needs conversion first. */
3300
    if (_Py_LocaleUsesNonUnicodeWchar()) {
3301
        if (_Py_EncodeNonUnicodeWchar_InPlace(buffer, (buflen + 1)) < 0) {
3302
            return NULL;
3303
        }
3304
    }
3305
#endif
3306
3307
214k
    if (size != NULL) {
3308
214k
        *size = buflen;
3309
214k
    }
3310
896
    else if (wcslen(buffer) != (size_t)buflen) {
3311
0
        PyMem_Free(buffer);
3312
0
        PyErr_SetString(PyExc_ValueError,
3313
0
                        "embedded null character");
3314
0
        return NULL;
3315
0
    }
3316
214k
    return buffer;
3317
214k
}
3318
3319
#endif /* HAVE_WCHAR_H */
3320
3321
int
3322
_PyUnicode_WideCharString_Converter(PyObject *obj, void *ptr)
3323
0
{
3324
0
    wchar_t **p = (wchar_t **)ptr;
3325
0
    if (obj == NULL) {
3326
0
        PyMem_Free(*p);
3327
0
        *p = NULL;
3328
0
        return 1;
3329
0
    }
3330
0
    if (PyUnicode_Check(obj)) {
3331
0
        *p = PyUnicode_AsWideCharString(obj, NULL);
3332
0
        if (*p == NULL) {
3333
0
            return 0;
3334
0
        }
3335
0
        return Py_CLEANUP_SUPPORTED;
3336
0
    }
3337
0
    PyErr_Format(PyExc_TypeError,
3338
0
                 "argument must be str, not %.50s",
3339
0
                 Py_TYPE(obj)->tp_name);
3340
0
    return 0;
3341
0
}
3342
3343
int
3344
_PyUnicode_WideCharString_Opt_Converter(PyObject *obj, void *ptr)
3345
0
{
3346
0
    wchar_t **p = (wchar_t **)ptr;
3347
0
    if (obj == NULL) {
3348
0
        PyMem_Free(*p);
3349
0
        *p = NULL;
3350
0
        return 1;
3351
0
    }
3352
0
    if (obj == Py_None) {
3353
0
        *p = NULL;
3354
0
        return 1;
3355
0
    }
3356
0
    if (PyUnicode_Check(obj)) {
3357
0
        *p = PyUnicode_AsWideCharString(obj, NULL);
3358
0
        if (*p == NULL) {
3359
0
            return 0;
3360
0
        }
3361
0
        return Py_CLEANUP_SUPPORTED;
3362
0
    }
3363
0
    PyErr_Format(PyExc_TypeError,
3364
0
                 "argument must be str or None, not %.50s",
3365
0
                 Py_TYPE(obj)->tp_name);
3366
0
    return 0;
3367
0
}
3368
3369
PyObject *
3370
PyUnicode_FromOrdinal(int ordinal)
3371
802k
{
3372
802k
    if (ordinal < 0 || ordinal > MAX_UNICODE) {
3373
34
        PyErr_SetString(PyExc_ValueError,
3374
34
                        "chr() arg not in range(0x110000)");
3375
34
        return NULL;
3376
34
    }
3377
3378
802k
    return unicode_char((Py_UCS4)ordinal);
3379
802k
}
3380
3381
PyObject *
3382
PyUnicode_FromObject(PyObject *obj)
3383
2.09M
{
3384
    /* XXX Perhaps we should make this API an alias of
3385
       PyObject_Str() instead ?! */
3386
2.09M
    if (PyUnicode_CheckExact(obj)) {
3387
2.09M
        return Py_NewRef(obj);
3388
2.09M
    }
3389
0
    if (PyUnicode_Check(obj)) {
3390
        /* For a Unicode subtype that's not a Unicode object,
3391
           return a true Unicode object with the same data. */
3392
0
        return _PyUnicode_Copy(obj);
3393
0
    }
3394
0
    PyErr_Format(PyExc_TypeError,
3395
0
                 "Can't convert '%.100s' object to str implicitly",
3396
0
                 Py_TYPE(obj)->tp_name);
3397
0
    return NULL;
3398
0
}
3399
3400
PyObject *
3401
PyUnicode_FromEncodedObject(PyObject *obj,
3402
                            const char *encoding,
3403
                            const char *errors)
3404
19.1M
{
3405
19.1M
    Py_buffer buffer;
3406
19.1M
    PyObject *v;
3407
3408
19.1M
    if (obj == NULL) {
3409
0
        PyErr_BadInternalCall();
3410
0
        return NULL;
3411
0
    }
3412
3413
    /* Decoding bytes objects is the most common case and should be fast */
3414
19.1M
    if (PyBytes_Check(obj)) {
3415
18.7M
        if (PyBytes_GET_SIZE(obj) == 0) {
3416
2.71M
            if (unicode_check_encoding_errors(encoding, errors) < 0) {
3417
0
                return NULL;
3418
0
            }
3419
2.71M
            _Py_RETURN_UNICODE_EMPTY();
3420
2.71M
        }
3421
15.9M
        return PyUnicode_Decode(
3422
15.9M
                PyBytes_AS_STRING(obj), PyBytes_GET_SIZE(obj),
3423
15.9M
                encoding, errors);
3424
18.7M
    }
3425
3426
435k
    if (PyUnicode_Check(obj)) {
3427
0
        PyErr_SetString(PyExc_TypeError,
3428
0
                        "decoding str is not supported");
3429
0
        return NULL;
3430
0
    }
3431
3432
    /* Retrieve a bytes buffer view through the PEP 3118 buffer interface */
3433
435k
    if (PyObject_GetBuffer(obj, &buffer, PyBUF_SIMPLE) < 0) {
3434
0
        PyErr_Format(PyExc_TypeError,
3435
0
                     "decoding to str: need a bytes-like object, %.80s found",
3436
0
                     Py_TYPE(obj)->tp_name);
3437
0
        return NULL;
3438
0
    }
3439
3440
435k
    if (buffer.len == 0) {
3441
0
        PyBuffer_Release(&buffer);
3442
0
        if (unicode_check_encoding_errors(encoding, errors) < 0) {
3443
0
            return NULL;
3444
0
        }
3445
0
        _Py_RETURN_UNICODE_EMPTY();
3446
0
    }
3447
3448
435k
    v = PyUnicode_Decode((char*) buffer.buf, buffer.len, encoding, errors);
3449
435k
    PyBuffer_Release(&buffer);
3450
435k
    return v;
3451
435k
}
3452
3453
/* Normalize an encoding name like encodings.normalize_encoding()
3454
   but allow to convert to lowercase if *to_lower* is true.
3455
   Return 1 on success, or 0 on error (encoding is longer than lower_len-1). */
3456
int
3457
_Py_normalize_encoding(const char *encoding,
3458
                       char *lower,
3459
                       size_t lower_len,
3460
                       int to_lower)
3461
20.6M
{
3462
20.6M
    const char *e;
3463
20.6M
    char *l;
3464
20.6M
    char *l_end;
3465
20.6M
    int punct;
3466
3467
20.6M
    assert(encoding != NULL);
3468
3469
20.6M
    e = encoding;
3470
20.6M
    l = lower;
3471
20.6M
    l_end = &lower[lower_len - 1];
3472
20.6M
    punct = 0;
3473
211M
    while (1) {
3474
211M
        char c = *e;
3475
211M
        if (c == 0) {
3476
20.1M
            break;
3477
20.1M
        }
3478
3479
191M
        if (Py_ISALNUM(c) || c == '.') {
3480
112M
            if (punct && l != lower) {
3481
11.0M
                if (l == l_end) {
3482
735
                    return 0;
3483
735
                }
3484
11.0M
                *l++ = '_';
3485
11.0M
            }
3486
112M
            punct = 0;
3487
3488
112M
            if (l == l_end) {
3489
509k
                return 0;
3490
509k
            }
3491
111M
            *l++ = to_lower ? Py_TOLOWER(c) : c;
3492
111M
        }
3493
78.9M
        else {
3494
78.9M
            punct = 1;
3495
78.9M
        }
3496
3497
190M
        e++;
3498
190M
    }
3499
20.1M
    *l = '\0';
3500
20.1M
    return 1;
3501
20.6M
}
3502
3503
PyObject *
3504
PyUnicode_Decode(const char *s,
3505
                 Py_ssize_t size,
3506
                 const char *encoding,
3507
                 const char *errors)
3508
16.4M
{
3509
16.4M
    PyObject *buffer = NULL, *unicode;
3510
16.4M
    Py_buffer info;
3511
16.4M
    char buflower[11];   /* strlen("iso-8859-1\0") == 11, longest shortcut */
3512
3513
16.4M
    if (unicode_check_encoding_errors(encoding, errors) < 0) {
3514
0
        return NULL;
3515
0
    }
3516
3517
16.4M
    if (size == 0) {
3518
0
        _Py_RETURN_UNICODE_EMPTY();
3519
0
    }
3520
3521
16.4M
    if (encoding == NULL) {
3522
24.9k
        return PyUnicode_DecodeUTF8Stateful(s, size, errors, NULL);
3523
24.9k
    }
3524
3525
    /* Shortcuts for common default encodings */
3526
16.4M
    if (_Py_normalize_encoding(encoding, buflower, sizeof(buflower), 1)) {
3527
16.4M
        char *lower = buflower;
3528
3529
        /* Fast paths */
3530
16.4M
        if (lower[0] == 'u' && lower[1] == 't' && lower[2] == 'f') {
3531
3.43M
            lower += 3;
3532
3.43M
            if (*lower == '_') {
3533
                /* Match "utf8" and "utf_8" */
3534
3.43M
                lower++;
3535
3.43M
            }
3536
3537
3.43M
            if (lower[0] == '8' && lower[1] == 0) {
3538
3.43M
                return PyUnicode_DecodeUTF8Stateful(s, size, errors, NULL);
3539
3.43M
            }
3540
501
            else if (lower[0] == '1' && lower[1] == '6' && lower[2] == 0) {
3541
89
                return PyUnicode_DecodeUTF16(s, size, errors, 0);
3542
89
            }
3543
412
            else if (lower[0] == '3' && lower[1] == '2' && lower[2] == 0) {
3544
103
                return PyUnicode_DecodeUTF32(s, size, errors, 0);
3545
103
            }
3546
3.43M
        }
3547
12.9M
        else {
3548
12.9M
            if (strcmp(lower, "ascii") == 0
3549
9.26M
                || strcmp(lower, "us_ascii") == 0) {
3550
9.26M
                return PyUnicode_DecodeASCII(s, size, errors);
3551
9.26M
            }
3552
    #ifdef MS_WINDOWS
3553
            else if (strcmp(lower, "mbcs") == 0) {
3554
                return PyUnicode_DecodeMBCS(s, size, errors);
3555
            }
3556
    #endif
3557
3.70M
            else if (strcmp(lower, "latin1") == 0
3558
3.70M
                     || strcmp(lower, "latin_1") == 0
3559
781k
                     || strcmp(lower, "iso_8859_1") == 0
3560
2.95M
                     || strcmp(lower, "iso8859_1") == 0) {
3561
2.95M
                return PyUnicode_DecodeLatin1(s, size, errors);
3562
2.95M
            }
3563
12.9M
        }
3564
16.4M
    }
3565
3566
    /* Decode via the codec registry */
3567
759k
    buffer = NULL;
3568
759k
    if (PyBuffer_FillInfo(&info, NULL, (void *)s, size, 1, PyBUF_FULL_RO) < 0)
3569
0
        goto onError;
3570
759k
    buffer = PyMemoryView_FromBuffer(&info);
3571
759k
    if (buffer == NULL)
3572
0
        goto onError;
3573
759k
    unicode = _PyCodec_DecodeText(buffer, encoding, errors);
3574
759k
    if (unicode == NULL)
3575
55.2k
        goto onError;
3576
704k
    if (!PyUnicode_Check(unicode)) {
3577
0
        PyErr_Format(PyExc_TypeError,
3578
0
                     "'%.400s' decoder returned '%.400s' instead of 'str'; "
3579
0
                     "use codecs.decode() to decode to arbitrary types",
3580
0
                     encoding,
3581
0
                     Py_TYPE(unicode)->tp_name);
3582
0
        Py_DECREF(unicode);
3583
0
        goto onError;
3584
0
    }
3585
704k
    Py_DECREF(buffer);
3586
704k
    return unicode_result(unicode);
3587
3588
55.2k
  onError:
3589
55.2k
    Py_XDECREF(buffer);
3590
55.2k
    return NULL;
3591
704k
}
3592
3593
PyAPI_FUNC(PyObject *)
3594
PyUnicode_AsDecodedObject(PyObject *unicode,
3595
                          const char *encoding,
3596
                          const char *errors)
3597
0
{
3598
0
    if (!PyUnicode_Check(unicode)) {
3599
0
        PyErr_BadArgument();
3600
0
        return NULL;
3601
0
    }
3602
3603
0
    if (encoding == NULL)
3604
0
        encoding = PyUnicode_GetDefaultEncoding();
3605
3606
    /* Decode via the codec registry */
3607
0
    return PyCodec_Decode(unicode, encoding, errors);
3608
0
}
3609
3610
PyAPI_FUNC(PyObject *)
3611
PyUnicode_AsDecodedUnicode(PyObject *unicode,
3612
                           const char *encoding,
3613
                           const char *errors)
3614
0
{
3615
0
    PyObject *v;
3616
3617
0
    if (!PyUnicode_Check(unicode)) {
3618
0
        PyErr_BadArgument();
3619
0
        goto onError;
3620
0
    }
3621
3622
0
    if (encoding == NULL)
3623
0
        encoding = PyUnicode_GetDefaultEncoding();
3624
3625
    /* Decode via the codec registry */
3626
0
    v = PyCodec_Decode(unicode, encoding, errors);
3627
0
    if (v == NULL)
3628
0
        goto onError;
3629
0
    if (!PyUnicode_Check(v)) {
3630
0
        PyErr_Format(PyExc_TypeError,
3631
0
                     "'%.400s' decoder returned '%.400s' instead of 'str'; "
3632
0
                     "use codecs.decode() to decode to arbitrary types",
3633
0
                     encoding,
3634
0
                     Py_TYPE(unicode)->tp_name);
3635
0
        Py_DECREF(v);
3636
0
        goto onError;
3637
0
    }
3638
0
    return unicode_result(v);
3639
3640
0
  onError:
3641
0
    return NULL;
3642
0
}
3643
3644
PyAPI_FUNC(PyObject *)
3645
PyUnicode_AsEncodedObject(PyObject *unicode,
3646
                          const char *encoding,
3647
                          const char *errors)
3648
0
{
3649
0
    PyObject *v;
3650
3651
0
    if (!PyUnicode_Check(unicode)) {
3652
0
        PyErr_BadArgument();
3653
0
        goto onError;
3654
0
    }
3655
3656
0
    if (encoding == NULL)
3657
0
        encoding = PyUnicode_GetDefaultEncoding();
3658
3659
    /* Encode via the codec registry */
3660
0
    v = PyCodec_Encode(unicode, encoding, errors);
3661
0
    if (v == NULL)
3662
0
        goto onError;
3663
0
    return v;
3664
3665
0
  onError:
3666
0
    return NULL;
3667
0
}
3668
3669
3670
static PyObject *
3671
unicode_encode_locale(PyObject *unicode, _Py_error_handler error_handler,
3672
                      int current_locale)
3673
768
{
3674
768
    Py_ssize_t wlen;
3675
768
    wchar_t *wstr = PyUnicode_AsWideCharString(unicode, &wlen);
3676
768
    if (wstr == NULL) {
3677
0
        return NULL;
3678
0
    }
3679
3680
768
    if ((size_t)wlen != wcslen(wstr)) {
3681
0
        PyErr_SetString(PyExc_ValueError, "embedded null character");
3682
0
        PyMem_Free(wstr);
3683
0
        return NULL;
3684
0
    }
3685
3686
768
    char *str;
3687
768
    size_t error_pos;
3688
768
    const char *reason;
3689
768
    int res = _Py_EncodeLocaleEx(wstr, &str, &error_pos, &reason,
3690
768
                                 current_locale, error_handler);
3691
768
    PyMem_Free(wstr);
3692
3693
768
    if (res != 0) {
3694
0
        if (res == -2) {
3695
0
            PyObject *exc;
3696
0
            exc = PyObject_CallFunction(PyExc_UnicodeEncodeError, "sOnns",
3697
0
                    "locale", unicode,
3698
0
                    (Py_ssize_t)error_pos,
3699
0
                    (Py_ssize_t)(error_pos+1),
3700
0
                    reason);
3701
0
            if (exc != NULL) {
3702
0
                PyCodec_StrictErrors(exc);
3703
0
                Py_DECREF(exc);
3704
0
            }
3705
0
        }
3706
0
        else if (res == -3) {
3707
0
            PyErr_SetString(PyExc_ValueError, "unsupported error handler");
3708
0
        }
3709
0
        else {
3710
0
            PyErr_NoMemory();
3711
0
        }
3712
0
        return NULL;
3713
0
    }
3714
3715
768
    PyObject *bytes = PyBytes_FromString(str);
3716
768
    PyMem_RawFree(str);
3717
768
    return bytes;
3718
768
}
3719
3720
PyObject *
3721
PyUnicode_EncodeLocale(PyObject *unicode, const char *errors)
3722
0
{
3723
0
    _Py_error_handler error_handler = _Py_GetErrorHandler(errors);
3724
0
    return unicode_encode_locale(unicode, error_handler, 1);
3725
0
}
3726
3727
PyObject *
3728
PyUnicode_EncodeFSDefault(PyObject *unicode)
3729
930k
{
3730
930k
    PyInterpreterState *interp = _PyInterpreterState_GET();
3731
930k
    struct _Py_unicode_fs_codec *fs_codec = &interp->unicode.fs_codec;
3732
930k
    if (fs_codec->utf8) {
3733
929k
        return unicode_encode_utf8(unicode,
3734
929k
                                   fs_codec->error_handler,
3735
929k
                                   fs_codec->errors);
3736
929k
    }
3737
768
#ifndef _Py_FORCE_UTF8_FS_ENCODING
3738
768
    else if (fs_codec->encoding) {
3739
0
        return PyUnicode_AsEncodedString(unicode,
3740
0
                                         fs_codec->encoding,
3741
0
                                         fs_codec->errors);
3742
0
    }
3743
768
#endif
3744
768
    else {
3745
        /* Before _PyUnicode_InitEncodings() is called, the Python codec
3746
           machinery is not ready and so cannot be used:
3747
           use wcstombs() in this case. */
3748
768
        const PyConfig *config = _PyInterpreterState_GetConfig(interp);
3749
768
        const wchar_t *filesystem_errors = config->filesystem_errors;
3750
768
        assert(filesystem_errors != NULL);
3751
768
        _Py_error_handler errors = get_error_handler_wide(filesystem_errors);
3752
768
        assert(errors != _Py_ERROR_UNKNOWN);
3753
#ifdef _Py_FORCE_UTF8_FS_ENCODING
3754
        return unicode_encode_utf8(unicode, errors, NULL);
3755
#else
3756
768
        return unicode_encode_locale(unicode, errors, 0);
3757
768
#endif
3758
768
    }
3759
930k
}
3760
3761
PyObject *
3762
PyUnicode_AsEncodedString(PyObject *unicode,
3763
                          const char *encoding,
3764
                          const char *errors)
3765
14.8M
{
3766
14.8M
    PyObject *v;
3767
14.8M
    char buflower[11];   /* strlen("iso_8859_1\0") == 11, longest shortcut */
3768
3769
14.8M
    if (!PyUnicode_Check(unicode)) {
3770
0
        PyErr_BadArgument();
3771
0
        return NULL;
3772
0
    }
3773
3774
14.8M
    if (unicode_check_encoding_errors(encoding, errors) < 0) {
3775
0
        return NULL;
3776
0
    }
3777
3778
14.8M
    if (encoding == NULL) {
3779
10.6M
        return _PyUnicode_AsUTF8String(unicode, errors);
3780
10.6M
    }
3781
3782
    /* Shortcuts for common default encodings */
3783
4.24M
    if (_Py_normalize_encoding(encoding, buflower, sizeof(buflower), 1)) {
3784
3.73M
        char *lower = buflower;
3785
3786
        /* Fast paths */
3787
3.73M
        if (lower[0] == 'u' && lower[1] == 't' && lower[2] == 'f') {
3788
3.62M
            lower += 3;
3789
3.62M
            if (*lower == '_') {
3790
                /* Match "utf8" and "utf_8" */
3791
3.62M
                lower++;
3792
3.62M
            }
3793
3794
3.62M
            if (lower[0] == '8' && lower[1] == 0) {
3795
3.61M
                return _PyUnicode_AsUTF8String(unicode, errors);
3796
3.61M
            }
3797
5.69k
            else if (lower[0] == '1' && lower[1] == '6' && lower[2] == 0) {
3798
0
                return _PyUnicode_EncodeUTF16(unicode, errors, 0);
3799
0
            }
3800
5.69k
            else if (lower[0] == '3' && lower[1] == '2' && lower[2] == 0) {
3801
0
                return _PyUnicode_EncodeUTF32(unicode, errors, 0);
3802
0
            }
3803
3.62M
        }
3804
117k
        else {
3805
117k
            if (strcmp(lower, "ascii") == 0
3806
97.7k
                || strcmp(lower, "us_ascii") == 0) {
3807
97.7k
                return _PyUnicode_AsASCIIString(unicode, errors);
3808
97.7k
            }
3809
#ifdef MS_WINDOWS
3810
            else if (strcmp(lower, "mbcs") == 0) {
3811
                return PyUnicode_EncodeCodePage(CP_ACP, unicode, errors);
3812
            }
3813
#endif
3814
19.7k
            else if (strcmp(lower, "latin1") == 0 ||
3815
19.7k
                     strcmp(lower, "latin_1") == 0 ||
3816
19.7k
                     strcmp(lower, "iso_8859_1") == 0 ||
3817
19.7k
                     strcmp(lower, "iso8859_1") == 0) {
3818
0
                return _PyUnicode_AsLatin1String(unicode, errors);
3819
0
            }
3820
117k
        }
3821
3.73M
    }
3822
3823
    /* Encode via the codec registry */
3824
533k
    v = _PyCodec_EncodeText(unicode, encoding, errors);
3825
533k
    if (v == NULL)
3826
0
        return NULL;
3827
3828
    /* The normal path */
3829
533k
    if (PyBytes_Check(v))
3830
533k
        return v;
3831
3832
    /* If the codec returns a buffer, raise a warning and convert to bytes */
3833
0
    if (PyByteArray_Check(v)) {
3834
0
        int error;
3835
0
        PyObject *b;
3836
3837
0
        error = PyErr_WarnFormat(PyExc_RuntimeWarning, 1,
3838
0
            "encoder %s returned bytearray instead of bytes; "
3839
0
            "use codecs.encode() to encode to arbitrary types",
3840
0
            encoding);
3841
0
        if (error) {
3842
0
            Py_DECREF(v);
3843
0
            return NULL;
3844
0
        }
3845
3846
0
        b = PyBytes_FromStringAndSize(PyByteArray_AS_STRING(v),
3847
0
                                      PyByteArray_GET_SIZE(v));
3848
0
        Py_DECREF(v);
3849
0
        return b;
3850
0
    }
3851
3852
0
    PyErr_Format(PyExc_TypeError,
3853
0
                 "'%.400s' encoder returned '%.400s' instead of 'bytes'; "
3854
0
                 "use codecs.encode() to encode to arbitrary types",
3855
0
                 encoding,
3856
0
                 Py_TYPE(v)->tp_name);
3857
0
    Py_DECREF(v);
3858
0
    return NULL;
3859
0
}
3860
3861
PyAPI_FUNC(PyObject *)
3862
PyUnicode_AsEncodedUnicode(PyObject *unicode,
3863
                           const char *encoding,
3864
                           const char *errors)
3865
0
{
3866
0
    PyObject *v;
3867
3868
0
    if (!PyUnicode_Check(unicode)) {
3869
0
        PyErr_BadArgument();
3870
0
        goto onError;
3871
0
    }
3872
3873
0
    if (encoding == NULL)
3874
0
        encoding = PyUnicode_GetDefaultEncoding();
3875
3876
    /* Encode via the codec registry */
3877
0
    v = PyCodec_Encode(unicode, encoding, errors);
3878
0
    if (v == NULL)
3879
0
        goto onError;
3880
0
    if (!PyUnicode_Check(v)) {
3881
0
        PyErr_Format(PyExc_TypeError,
3882
0
                     "'%.400s' encoder returned '%.400s' instead of 'str'; "
3883
0
                     "use codecs.encode() to encode to arbitrary types",
3884
0
                     encoding,
3885
0
                     Py_TYPE(v)->tp_name);
3886
0
        Py_DECREF(v);
3887
0
        goto onError;
3888
0
    }
3889
0
    return v;
3890
3891
0
  onError:
3892
0
    return NULL;
3893
0
}
3894
3895
static PyObject*
3896
unicode_decode_locale(const char *str, Py_ssize_t len,
3897
                      _Py_error_handler errors, int current_locale)
3898
228k
{
3899
228k
    if (str[len] != '\0' || (size_t)len != strlen(str))  {
3900
0
        PyErr_SetString(PyExc_ValueError, "embedded null byte");
3901
0
        return NULL;
3902
0
    }
3903
3904
228k
    wchar_t *wstr;
3905
228k
    size_t wlen;
3906
228k
    const char *reason;
3907
228k
    int res = _Py_DecodeLocaleEx(str, &wstr, &wlen, &reason,
3908
228k
                                 current_locale, errors);
3909
228k
    if (res != 0) {
3910
0
        if (res == -2) {
3911
0
            PyObject *exc;
3912
0
            exc = PyObject_CallFunction(PyExc_UnicodeDecodeError, "sy#nns",
3913
0
                                        "locale", str, len,
3914
0
                                        (Py_ssize_t)wlen,
3915
0
                                        (Py_ssize_t)(wlen + 1),
3916
0
                                        reason);
3917
0
            if (exc != NULL) {
3918
0
                PyCodec_StrictErrors(exc);
3919
0
                Py_DECREF(exc);
3920
0
            }
3921
0
        }
3922
0
        else if (res == -3) {
3923
0
            PyErr_SetString(PyExc_ValueError, "unsupported error handler");
3924
0
        }
3925
0
        else {
3926
0
            PyErr_NoMemory();
3927
0
        }
3928
0
        return NULL;
3929
0
    }
3930
3931
228k
    PyObject *unicode = PyUnicode_FromWideChar(wstr, wlen);
3932
228k
    PyMem_RawFree(wstr);
3933
228k
    return unicode;
3934
228k
}
3935
3936
PyObject*
3937
PyUnicode_DecodeLocaleAndSize(const char *str, Py_ssize_t len,
3938
                              const char *errors)
3939
0
{
3940
0
    _Py_error_handler error_handler = _Py_GetErrorHandler(errors);
3941
0
    return unicode_decode_locale(str, len, error_handler, 1);
3942
0
}
3943
3944
PyObject*
3945
PyUnicode_DecodeLocale(const char *str, const char *errors)
3946
217k
{
3947
217k
    Py_ssize_t size = (Py_ssize_t)strlen(str);
3948
217k
    _Py_error_handler error_handler = _Py_GetErrorHandler(errors);
3949
217k
    return unicode_decode_locale(str, size, error_handler, 1);
3950
217k
}
3951
3952
3953
PyObject*
3954
178
PyUnicode_DecodeFSDefault(const char *s) {
3955
178
    Py_ssize_t size = (Py_ssize_t)strlen(s);
3956
178
    return PyUnicode_DecodeFSDefaultAndSize(s, size);
3957
178
}
3958
3959
PyObject*
3960
PyUnicode_DecodeFSDefaultAndSize(const char *s, Py_ssize_t size)
3961
188k
{
3962
188k
    PyInterpreterState *interp = _PyInterpreterState_GET();
3963
188k
    struct _Py_unicode_fs_codec *fs_codec = &interp->unicode.fs_codec;
3964
188k
    if (fs_codec->utf8) {
3965
177k
        return unicode_decode_utf8(s, size,
3966
177k
                                   fs_codec->error_handler,
3967
177k
                                   fs_codec->errors,
3968
177k
                                   NULL);
3969
177k
    }
3970
10.3k
#ifndef _Py_FORCE_UTF8_FS_ENCODING
3971
10.3k
    else if (fs_codec->encoding) {
3972
0
        return PyUnicode_Decode(s, size,
3973
0
                                fs_codec->encoding,
3974
0
                                fs_codec->errors);
3975
0
    }
3976
10.3k
#endif
3977
10.3k
    else {
3978
        /* Before _PyUnicode_InitEncodings() is called, the Python codec
3979
           machinery is not ready and so cannot be used:
3980
           use mbstowcs() in this case. */
3981
10.3k
        const PyConfig *config = _PyInterpreterState_GetConfig(interp);
3982
10.3k
        const wchar_t *filesystem_errors = config->filesystem_errors;
3983
10.3k
        assert(filesystem_errors != NULL);
3984
10.3k
        _Py_error_handler errors = get_error_handler_wide(filesystem_errors);
3985
10.3k
        assert(errors != _Py_ERROR_UNKNOWN);
3986
#ifdef _Py_FORCE_UTF8_FS_ENCODING
3987
        return unicode_decode_utf8(s, size, errors, NULL, NULL);
3988
#else
3989
10.3k
        return unicode_decode_locale(s, size, errors, 0);
3990
10.3k
#endif
3991
10.3k
    }
3992
188k
}
3993
3994
3995
int
3996
PyUnicode_FSConverter(PyObject* arg, void* addr)
3997
185k
{
3998
185k
    PyObject *path = NULL;
3999
185k
    PyObject *output = NULL;
4000
185k
    Py_ssize_t size;
4001
185k
    const char *data;
4002
185k
    if (arg == NULL) {
4003
0
        Py_DECREF(*(PyObject**)addr);
4004
0
        *(PyObject**)addr = NULL;
4005
0
        return 1;
4006
0
    }
4007
185k
    path = PyOS_FSPath(arg);
4008
185k
    if (path == NULL) {
4009
0
        return 0;
4010
0
    }
4011
185k
    if (PyBytes_Check(path)) {
4012
0
        output = path;
4013
0
    }
4014
185k
    else {  // PyOS_FSPath() guarantees its returned value is bytes or str.
4015
185k
        output = PyUnicode_EncodeFSDefault(path);
4016
185k
        Py_DECREF(path);
4017
185k
        if (!output) {
4018
0
            return 0;
4019
0
        }
4020
185k
        assert(PyBytes_Check(output));
4021
185k
    }
4022
4023
185k
    size = PyBytes_GET_SIZE(output);
4024
185k
    data = PyBytes_AS_STRING(output);
4025
185k
    if ((size_t)size != strlen(data)) {
4026
0
        PyErr_SetString(PyExc_ValueError, "embedded null byte");
4027
0
        Py_DECREF(output);
4028
0
        return 0;
4029
0
    }
4030
185k
    *(PyObject**)addr = output;
4031
185k
    return Py_CLEANUP_SUPPORTED;
4032
185k
}
4033
4034
4035
int
4036
PyUnicode_FSDecoder(PyObject* arg, void* addr)
4037
17.4k
{
4038
17.4k
    if (arg == NULL) {
4039
0
        Py_DECREF(*(PyObject**)addr);
4040
0
        *(PyObject**)addr = NULL;
4041
0
        return 1;
4042
0
    }
4043
4044
17.4k
    PyObject *path = PyOS_FSPath(arg);
4045
17.4k
    if (path == NULL) {
4046
0
        return 0;
4047
0
    }
4048
4049
17.4k
    PyObject *output = NULL;
4050
17.4k
    if (PyUnicode_Check(path)) {
4051
17.4k
        output = path;
4052
17.4k
    }
4053
0
    else if (PyBytes_Check(path)) {
4054
0
        output = PyUnicode_DecodeFSDefaultAndSize(PyBytes_AS_STRING(path),
4055
0
                                                  PyBytes_GET_SIZE(path));
4056
0
        Py_DECREF(path);
4057
0
        if (!output) {
4058
0
            return 0;
4059
0
        }
4060
0
    }
4061
0
    else {
4062
0
        PyErr_Format(PyExc_TypeError,
4063
0
                     "path should be string, bytes, or os.PathLike, not %.200s",
4064
0
                     Py_TYPE(arg)->tp_name);
4065
0
        Py_DECREF(path);
4066
0
        return 0;
4067
0
    }
4068
4069
17.4k
    if (findchar(PyUnicode_DATA(output), PyUnicode_KIND(output),
4070
17.4k
                 PyUnicode_GET_LENGTH(output), 0, 1) >= 0) {
4071
0
        PyErr_SetString(PyExc_ValueError, "embedded null character");
4072
0
        Py_DECREF(output);
4073
0
        return 0;
4074
0
    }
4075
17.4k
    *(PyObject**)addr = output;
4076
17.4k
    return Py_CLEANUP_SUPPORTED;
4077
17.4k
}
4078
4079
4080
static int unicode_fill_utf8(PyObject *unicode);
4081
4082
4083
static int
4084
unicode_ensure_utf8(PyObject *unicode)
4085
55.8M
{
4086
55.8M
    int err = 0;
4087
55.8M
    if (PyUnicode_UTF8(unicode) == NULL) {
4088
170k
        Py_BEGIN_CRITICAL_SECTION(unicode);
4089
170k
        if (PyUnicode_UTF8(unicode) == NULL) {
4090
170k
            err = unicode_fill_utf8(unicode);
4091
170k
        }
4092
170k
        Py_END_CRITICAL_SECTION();
4093
170k
    }
4094
55.8M
    return err;
4095
55.8M
}
4096
4097
const char *
4098
PyUnicode_AsUTF8AndSize(PyObject *unicode, Py_ssize_t *psize)
4099
55.8M
{
4100
55.8M
    if (!PyUnicode_Check(unicode)) {
4101
0
        PyErr_BadArgument();
4102
0
        if (psize) {
4103
0
            *psize = -1;
4104
0
        }
4105
0
        return NULL;
4106
0
    }
4107
4108
55.8M
    if (unicode_ensure_utf8(unicode) == -1) {
4109
207
        if (psize) {
4110
207
            *psize = -1;
4111
207
        }
4112
207
        return NULL;
4113
207
    }
4114
4115
55.8M
    if (psize) {
4116
55.7M
        *psize = PyUnicode_UTF8_LENGTH(unicode);
4117
55.7M
    }
4118
55.8M
    return PyUnicode_UTF8(unicode);
4119
55.8M
}
4120
4121
const char *
4122
PyUnicode_AsUTF8(PyObject *unicode)
4123
72.1k
{
4124
72.1k
    return PyUnicode_AsUTF8AndSize(unicode, NULL);
4125
72.1k
}
4126
4127
const char *
4128
_PyUnicode_AsUTF8NoNUL(PyObject *unicode)
4129
624k
{
4130
624k
    Py_ssize_t size;
4131
624k
    const char *s = PyUnicode_AsUTF8AndSize(unicode, &size);
4132
624k
    if (s && strlen(s) != (size_t)size) {
4133
0
        PyErr_SetString(PyExc_ValueError, "embedded null character");
4134
0
        return NULL;
4135
0
    }
4136
624k
    return s;
4137
624k
}
4138
4139
/*
4140
PyUnicode_GetSize() has been deprecated since Python 3.3
4141
because it returned length of Py_UNICODE.
4142
4143
But this function is part of stable abi, because it doesn't
4144
include Py_UNICODE in signature and it was not excluded from
4145
stable ABI in PEP 384.
4146
*/
4147
PyAPI_FUNC(Py_ssize_t)
4148
PyUnicode_GetSize(PyObject *unicode)
4149
0
{
4150
0
    PyErr_SetString(PyExc_RuntimeError,
4151
0
                    "PyUnicode_GetSize has been removed.");
4152
0
    return -1;
4153
0
}
4154
4155
Py_ssize_t
4156
PyUnicode_GetLength(PyObject *unicode)
4157
25.5k
{
4158
25.5k
    if (!PyUnicode_Check(unicode)) {
4159
0
        PyErr_BadArgument();
4160
0
        return -1;
4161
0
    }
4162
25.5k
    return PyUnicode_GET_LENGTH(unicode);
4163
25.5k
}
4164
4165
Py_UCS4
4166
PyUnicode_ReadChar(PyObject *unicode, Py_ssize_t index)
4167
16
{
4168
16
    const void *data;
4169
16
    int kind;
4170
4171
16
    if (!PyUnicode_Check(unicode)) {
4172
0
        PyErr_BadArgument();
4173
0
        return (Py_UCS4)-1;
4174
0
    }
4175
16
    if (index < 0 || index >= PyUnicode_GET_LENGTH(unicode)) {
4176
0
        PyErr_SetString(PyExc_IndexError, "string index out of range");
4177
0
        return (Py_UCS4)-1;
4178
0
    }
4179
16
    data = PyUnicode_DATA(unicode);
4180
16
    kind = PyUnicode_KIND(unicode);
4181
16
    return PyUnicode_READ(kind, data, index);
4182
16
}
4183
4184
int
4185
PyUnicode_WriteChar(PyObject *unicode, Py_ssize_t index, Py_UCS4 ch)
4186
0
{
4187
0
    if (!PyUnicode_Check(unicode) || !PyUnicode_IS_COMPACT(unicode)) {
4188
0
        PyErr_BadArgument();
4189
0
        return -1;
4190
0
    }
4191
0
    if (index < 0 || index >= PyUnicode_GET_LENGTH(unicode)) {
4192
0
        PyErr_SetString(PyExc_IndexError, "string index out of range");
4193
0
        return -1;
4194
0
    }
4195
0
    if (unicode_check_modifiable(unicode))
4196
0
        return -1;
4197
0
    if (ch > PyUnicode_MAX_CHAR_VALUE(unicode)) {
4198
0
        PyErr_SetString(PyExc_ValueError, "character out of range");
4199
0
        return -1;
4200
0
    }
4201
0
    PyUnicode_WRITE(PyUnicode_KIND(unicode), PyUnicode_DATA(unicode),
4202
0
                    index, ch);
4203
0
    return 0;
4204
0
}
4205
4206
const char *
4207
PyUnicode_GetDefaultEncoding(void)
4208
0
{
4209
0
    return "utf-8";
4210
0
}
4211
4212
/* create or adjust a UnicodeDecodeError */
4213
static void
4214
make_decode_exception(PyObject **exceptionObject,
4215
                      const char *encoding,
4216
                      const char *input, Py_ssize_t length,
4217
                      Py_ssize_t startpos, Py_ssize_t endpos,
4218
                      const char *reason)
4219
2.12M
{
4220
2.12M
    if (*exceptionObject == NULL) {
4221
1.85M
        *exceptionObject = PyUnicodeDecodeError_Create(
4222
1.85M
            encoding, input, length, startpos, endpos, reason);
4223
1.85M
    }
4224
273k
    else {
4225
273k
        if (PyUnicodeDecodeError_SetStart(*exceptionObject, startpos))
4226
0
            goto onError;
4227
273k
        if (PyUnicodeDecodeError_SetEnd(*exceptionObject, endpos))
4228
0
            goto onError;
4229
273k
        if (PyUnicodeDecodeError_SetReason(*exceptionObject, reason))
4230
0
            goto onError;
4231
273k
    }
4232
2.12M
    return;
4233
4234
2.12M
onError:
4235
0
    Py_CLEAR(*exceptionObject);
4236
0
}
4237
4238
#ifdef MS_WINDOWS
4239
static int
4240
widechar_resize(wchar_t **buf, Py_ssize_t *size, Py_ssize_t newsize)
4241
{
4242
    if (newsize > *size) {
4243
        wchar_t *newbuf = *buf;
4244
        if (PyMem_Resize(newbuf, wchar_t, newsize) == NULL) {
4245
            PyErr_NoMemory();
4246
            return -1;
4247
        }
4248
        *buf = newbuf;
4249
    }
4250
    *size = newsize;
4251
    return 0;
4252
}
4253
4254
/* error handling callback helper:
4255
   build arguments, call the callback and check the arguments,
4256
   if no exception occurred, copy the replacement to the output
4257
   and adjust various state variables.
4258
   return 0 on success, -1 on error
4259
*/
4260
4261
static int
4262
unicode_decode_call_errorhandler_wchar(
4263
    const char *errors, PyObject **errorHandler,
4264
    const char *encoding, const char *reason,
4265
    const char **input, const char **inend, Py_ssize_t *startinpos,
4266
    Py_ssize_t *endinpos, PyObject **exceptionObject, const char **inptr,
4267
    wchar_t **buf, Py_ssize_t *bufsize, Py_ssize_t *outpos)
4268
{
4269
    static const char *argparse = "Un;decoding error handler must return (str, int) tuple";
4270
4271
    PyObject *restuple = NULL;
4272
    PyObject *repunicode = NULL;
4273
    Py_ssize_t outsize;
4274
    Py_ssize_t insize;
4275
    Py_ssize_t requiredsize;
4276
    Py_ssize_t newpos;
4277
    PyObject *inputobj = NULL;
4278
    Py_ssize_t repwlen;
4279
4280
    if (*errorHandler == NULL) {
4281
        *errorHandler = PyCodec_LookupError(errors);
4282
        if (*errorHandler == NULL)
4283
            goto onError;
4284
    }
4285
4286
    make_decode_exception(exceptionObject,
4287
        encoding,
4288
        *input, *inend - *input,
4289
        *startinpos, *endinpos,
4290
        reason);
4291
    if (*exceptionObject == NULL)
4292
        goto onError;
4293
4294
    restuple = PyObject_CallOneArg(*errorHandler, *exceptionObject);
4295
    if (restuple == NULL)
4296
        goto onError;
4297
    if (!PyTuple_Check(restuple)) {
4298
        PyErr_SetString(PyExc_TypeError, &argparse[3]);
4299
        goto onError;
4300
    }
4301
    if (!PyArg_ParseTuple(restuple, argparse, &repunicode, &newpos))
4302
        goto onError;
4303
4304
    /* Copy back the bytes variables, which might have been modified by the
4305
       callback */
4306
    inputobj = PyUnicodeDecodeError_GetObject(*exceptionObject);
4307
    if (!inputobj)
4308
        goto onError;
4309
    *input = PyBytes_AS_STRING(inputobj);
4310
    insize = PyBytes_GET_SIZE(inputobj);
4311
    *inend = *input + insize;
4312
    /* we can DECREF safely, as the exception has another reference,
4313
       so the object won't go away. */
4314
    Py_DECREF(inputobj);
4315
4316
    if (newpos<0)
4317
        newpos = insize+newpos;
4318
    if (newpos<0 || newpos>insize) {
4319
        PyErr_Format(PyExc_IndexError, "position %zd from error handler out of bounds", newpos);
4320
        goto onError;
4321
    }
4322
4323
    repwlen = PyUnicode_AsWideChar(repunicode, NULL, 0);
4324
    if (repwlen < 0)
4325
        goto onError;
4326
    repwlen--;
4327
    /* need more space? (at least enough for what we
4328
       have+the replacement+the rest of the string (starting
4329
       at the new input position), so we won't have to check space
4330
       when there are no errors in the rest of the string) */
4331
    requiredsize = *outpos;
4332
    if (requiredsize > PY_SSIZE_T_MAX - repwlen)
4333
        goto overflow;
4334
    requiredsize += repwlen;
4335
    if (requiredsize > PY_SSIZE_T_MAX - (insize - newpos))
4336
        goto overflow;
4337
    requiredsize += insize - newpos;
4338
    outsize = *bufsize;
4339
    if (requiredsize > outsize) {
4340
        if (outsize <= PY_SSIZE_T_MAX/2 && requiredsize < 2*outsize)
4341
            requiredsize = 2*outsize;
4342
        if (widechar_resize(buf, bufsize, requiredsize) < 0) {
4343
            goto onError;
4344
        }
4345
    }
4346
    PyUnicode_AsWideChar(repunicode, *buf + *outpos, repwlen);
4347
    *outpos += repwlen;
4348
    *endinpos = newpos;
4349
    *inptr = *input + newpos;
4350
4351
    /* we made it! */
4352
    Py_DECREF(restuple);
4353
    return 0;
4354
4355
  overflow:
4356
    PyErr_SetString(PyExc_OverflowError,
4357
                    "decoded result is too long for a Python string");
4358
4359
  onError:
4360
    Py_XDECREF(restuple);
4361
    return -1;
4362
}
4363
#endif   /* MS_WINDOWS */
4364
4365
static int
4366
unicode_decode_call_errorhandler_writer(
4367
    const char *errors, PyObject **errorHandler,
4368
    const char *encoding, const char *reason,
4369
    const char **input, const char **inend, Py_ssize_t *startinpos,
4370
    Py_ssize_t *endinpos, PyObject **exceptionObject, const char **inptr,
4371
    _PyUnicodeWriter *writer /* PyObject **output, Py_ssize_t *outpos */)
4372
2.12M
{
4373
2.12M
    static const char *argparse = "Un;decoding error handler must return (str, int) tuple";
4374
4375
2.12M
    PyObject *restuple = NULL;
4376
2.12M
    PyObject *repunicode = NULL;
4377
2.12M
    Py_ssize_t insize;
4378
2.12M
    Py_ssize_t newpos;
4379
2.12M
    Py_ssize_t replen;
4380
2.12M
    Py_ssize_t remain;
4381
2.12M
    PyObject *inputobj = NULL;
4382
2.12M
    int need_to_grow = 0;
4383
2.12M
    const char *new_inptr;
4384
4385
2.12M
    if (*errorHandler == NULL) {
4386
1.85M
        *errorHandler = PyCodec_LookupError(errors);
4387
1.85M
        if (*errorHandler == NULL)
4388
0
            goto onError;
4389
1.85M
    }
4390
4391
2.12M
    make_decode_exception(exceptionObject,
4392
2.12M
        encoding,
4393
2.12M
        *input, *inend - *input,
4394
2.12M
        *startinpos, *endinpos,
4395
2.12M
        reason);
4396
2.12M
    if (*exceptionObject == NULL)
4397
0
        goto onError;
4398
4399
2.12M
    restuple = PyObject_CallOneArg(*errorHandler, *exceptionObject);
4400
2.12M
    if (restuple == NULL)
4401
1.81M
        goto onError;
4402
315k
    if (!PyTuple_Check(restuple)) {
4403
0
        PyErr_SetString(PyExc_TypeError, &argparse[3]);
4404
0
        goto onError;
4405
0
    }
4406
315k
    if (!PyArg_ParseTuple(restuple, argparse, &repunicode, &newpos))
4407
0
        goto onError;
4408
4409
    /* Copy back the bytes variables, which might have been modified by the
4410
       callback */
4411
315k
    inputobj = PyUnicodeDecodeError_GetObject(*exceptionObject);
4412
315k
    if (!inputobj)
4413
0
        goto onError;
4414
315k
    remain = *inend - *input - *endinpos;
4415
315k
    *input = PyBytes_AS_STRING(inputobj);
4416
315k
    insize = PyBytes_GET_SIZE(inputobj);
4417
315k
    *inend = *input + insize;
4418
    /* we can DECREF safely, as the exception has another reference,
4419
       so the object won't go away. */
4420
315k
    Py_DECREF(inputobj);
4421
4422
315k
    if (newpos<0)
4423
0
        newpos = insize+newpos;
4424
315k
    if (newpos<0 || newpos>insize) {
4425
0
        PyErr_Format(PyExc_IndexError, "position %zd from error handler out of bounds", newpos);
4426
0
        goto onError;
4427
0
    }
4428
4429
315k
    replen = PyUnicode_GET_LENGTH(repunicode);
4430
315k
    if (replen > 1) {
4431
19.4k
        writer->min_length += replen - 1;
4432
19.4k
        need_to_grow = 1;
4433
19.4k
    }
4434
315k
    new_inptr = *input + newpos;
4435
315k
    if (*inend - new_inptr > remain) {
4436
        /* We don't know the decoding algorithm here so we make the worst
4437
           assumption that one byte decodes to one unicode character.
4438
           If unfortunately one byte could decode to more unicode characters,
4439
           the decoder may write out-of-bound then.  Is it possible for the
4440
           algorithms using this function? */
4441
7.56k
        writer->min_length += *inend - new_inptr - remain;
4442
7.56k
        need_to_grow = 1;
4443
7.56k
    }
4444
315k
    if (need_to_grow) {
4445
19.6k
        writer->overallocate = 1;
4446
19.6k
        if (_PyUnicodeWriter_Prepare(writer, writer->min_length - writer->pos,
4447
19.6k
                            PyUnicode_MAX_CHAR_VALUE(repunicode)) == -1)
4448
0
            goto onError;
4449
19.6k
    }
4450
315k
    if (_PyUnicodeWriter_WriteStr(writer, repunicode) == -1)
4451
0
        goto onError;
4452
4453
315k
    *endinpos = newpos;
4454
315k
    *inptr = new_inptr;
4455
4456
    /* we made it! */
4457
315k
    Py_DECREF(restuple);
4458
315k
    return 0;
4459
4460
1.81M
  onError:
4461
1.81M
    Py_XDECREF(restuple);
4462
1.81M
    return -1;
4463
315k
}
4464
4465
/* --- UTF-7 Codec -------------------------------------------------------- */
4466
4467
/* See RFC2152 for details.  We encode conservatively and decode liberally. */
4468
4469
/* Three simple macros defining base-64. */
4470
4471
/* Is c a base-64 character? */
4472
4473
#define IS_BASE64(c) \
4474
282k
    (((c) >= 'A' && (c) <= 'Z') ||     \
4475
282k
     ((c) >= 'a' && (c) <= 'z') ||     \
4476
282k
     ((c) >= '0' && (c) <= '9') ||     \
4477
282k
     (c) == '+' || (c) == '/')
4478
4479
/* given that c is a base-64 character, what is its base-64 value? */
4480
4481
#define FROM_BASE64(c)                                                  \
4482
248k
    (((c) >= 'A' && (c) <= 'Z') ? (c) - 'A' :                           \
4483
248k
     ((c) >= 'a' && (c) <= 'z') ? (c) - 'a' + 26 :                      \
4484
174k
     ((c) >= '0' && (c) <= '9') ? (c) - '0' + 52 :                      \
4485
98.7k
     (c) == '+' ? 62 : 63)
4486
4487
/* What is the base-64 character of the bottom 6 bits of n? */
4488
4489
#define TO_BASE64(n)  \
4490
0
    ("ABCDEFGHIJKLMNOPQRSTUVWXYZabcdefghijklmnopqrstuvwxyz0123456789+/"[(n) & 0x3f])
4491
4492
/* DECODE_DIRECT: this byte encountered in a UTF-7 string should be
4493
 * decoded as itself.  We are permissive on decoding; the only ASCII
4494
 * byte not decoding to itself is the + which begins a base64
4495
 * string. */
4496
4497
#define DECODE_DIRECT(c)                                \
4498
852k
    ((c) <= 127 && (c) != '+')
4499
4500
/* The UTF-7 encoder treats ASCII characters differently according to
4501
 * whether they are Set D, Set O, Whitespace, or special (i.e. none of
4502
 * the above).  See RFC2152.  This array identifies these different
4503
 * sets:
4504
 * 0 : "Set D"
4505
 *     alphanumeric and '(),-./:?
4506
 * 1 : "Set O"
4507
 *     !"#$%&*;<=>@[]^_`{|}
4508
 * 2 : "whitespace"
4509
 *     ht nl cr sp
4510
 * 3 : special (must be base64 encoded)
4511
 *     everything else (i.e. +\~ and non-printing codes 0-8 11-12 14-31 127)
4512
 */
4513
4514
static
4515
char utf7_category[128] = {
4516
/* nul soh stx etx eot enq ack bel bs  ht  nl  vt  np  cr  so  si  */
4517
    3,  3,  3,  3,  3,  3,  3,  3,  3,  2,  2,  3,  3,  2,  3,  3,
4518
/* dle dc1 dc2 dc3 dc4 nak syn etb can em  sub esc fs  gs  rs  us  */
4519
    3,  3,  3,  3,  3,  3,  3,  3,  3,  3,  3,  3,  3,  3,  3,  3,
4520
/* sp   !   "   #   $   %   &   '   (   )   *   +   ,   -   .   /  */
4521
    2,  1,  1,  1,  1,  1,  1,  0,  0,  0,  1,  3,  0,  0,  0,  0,
4522
/*  0   1   2   3   4   5   6   7   8   9   :   ;   <   =   >   ?  */
4523
    0,  0,  0,  0,  0,  0,  0,  0,  0,  0,  0,  1,  1,  1,  1,  0,
4524
/*  @   A   B   C   D   E   F   G   H   I   J   K   L   M   N   O  */
4525
    1,  0,  0,  0,  0,  0,  0,  0,  0,  0,  0,  0,  0,  0,  0,  0,
4526
/*  P   Q   R   S   T   U   V   W   X   Y   Z   [   \   ]   ^   _  */
4527
    0,  0,  0,  0,  0,  0,  0,  0,  0,  0,  0,  1,  3,  1,  1,  1,
4528
/*  `   a   b   c   d   e   f   g   h   i   j   k   l   m   n   o  */
4529
    1,  0,  0,  0,  0,  0,  0,  0,  0,  0,  0,  0,  0,  0,  0,  0,
4530
/*  p   q   r   s   t   u   v   w   x   y   z   {   |   }   ~  del */
4531
    0,  0,  0,  0,  0,  0,  0,  0,  0,  0,  0,  1,  1,  1,  3,  3,
4532
};
4533
4534
/* ENCODE_DIRECT: this character should be encoded as itself.  The
4535
 * answer depends on whether we are encoding set O as itself, and also
4536
 * on whether we are encoding whitespace as itself.  RFC 2152 makes it
4537
 * clear that the answers to these questions vary between
4538
 * applications, so this code needs to be flexible.  */
4539
4540
#define ENCODE_DIRECT(c) \
4541
0
    ((c) < 128 && (c) > 0 && ((utf7_category[(c)] != 3)))
4542
4543
PyObject *
4544
PyUnicode_DecodeUTF7(const char *s,
4545
                     Py_ssize_t size,
4546
                     const char *errors)
4547
0
{
4548
0
    return PyUnicode_DecodeUTF7Stateful(s, size, errors, NULL);
4549
0
}
4550
4551
/* The decoder.  The only state we preserve is our read position,
4552
 * i.e. how many characters we have consumed.  So if we end in the
4553
 * middle of a shift sequence we have to back off the read position
4554
 * and the output to the beginning of the sequence, otherwise we lose
4555
 * all the shift state (seen bits, number of bits seen, high
4556
 * surrogate). */
4557
4558
PyObject *
4559
PyUnicode_DecodeUTF7Stateful(const char *s,
4560
                             Py_ssize_t size,
4561
                             const char *errors,
4562
                             Py_ssize_t *consumed)
4563
20.4k
{
4564
20.4k
    const char *starts = s;
4565
20.4k
    Py_ssize_t startinpos;
4566
20.4k
    Py_ssize_t endinpos;
4567
20.4k
    const char *e;
4568
20.4k
    _PyUnicodeWriter writer;
4569
20.4k
    const char *errmsg = "";
4570
20.4k
    int inShift = 0;
4571
20.4k
    Py_ssize_t shiftOutStart;
4572
20.4k
    unsigned int base64bits = 0;
4573
20.4k
    unsigned long base64buffer = 0;
4574
20.4k
    Py_UCS4 surrogate = 0;
4575
20.4k
    PyObject *errorHandler = NULL;
4576
20.4k
    PyObject *exc = NULL;
4577
4578
20.4k
    if (size == 0) {
4579
0
        if (consumed)
4580
0
            *consumed = 0;
4581
0
        _Py_RETURN_UNICODE_EMPTY();
4582
0
    }
4583
4584
    /* Start off assuming it's all ASCII. Widen later as necessary. */
4585
20.4k
    _PyUnicodeWriter_Init(&writer);
4586
20.4k
    writer.min_length = size;
4587
4588
20.4k
    shiftOutStart = 0;
4589
20.4k
    e = s + size;
4590
4591
1.14M
    while (s < e) {
4592
1.13M
        Py_UCS4 ch;
4593
1.13M
      restart:
4594
1.13M
        ch = (unsigned char) *s;
4595
4596
1.13M
        if (inShift) { /* in a base-64 section */
4597
262k
            if (IS_BASE64(ch)) { /* consume a base-64 character */
4598
248k
                base64buffer = (base64buffer << 6) | FROM_BASE64(ch);
4599
248k
                base64bits += 6;
4600
248k
                s++;
4601
248k
                if (base64bits >= 16) {
4602
                    /* we have enough bits for a UTF-16 value */
4603
87.6k
                    Py_UCS4 outCh = (Py_UCS4)(base64buffer >> (base64bits-16));
4604
87.6k
                    base64bits -= 16;
4605
87.6k
                    base64buffer &= (1 << base64bits) - 1; /* clear high bits */
4606
87.6k
                    assert(outCh <= 0xffff);
4607
87.6k
                    if (surrogate) {
4608
                        /* expecting a second surrogate */
4609
7.53k
                        if (Py_UNICODE_IS_LOW_SURROGATE(outCh)) {
4610
2.93k
                            Py_UCS4 ch2 = Py_UNICODE_JOIN_SURROGATES(surrogate, outCh);
4611
2.93k
                            if (_PyUnicodeWriter_WriteCharInline(&writer, ch2) < 0)
4612
0
                                goto onError;
4613
2.93k
                            surrogate = 0;
4614
2.93k
                            continue;
4615
2.93k
                        }
4616
4.59k
                        else {
4617
4.59k
                            if (_PyUnicodeWriter_WriteCharInline(&writer, surrogate) < 0)
4618
0
                                goto onError;
4619
4.59k
                            surrogate = 0;
4620
4.59k
                        }
4621
7.53k
                    }
4622
84.7k
                    if (Py_UNICODE_IS_HIGH_SURROGATE(outCh)) {
4623
                        /* first surrogate */
4624
10.7k
                        surrogate = outCh;
4625
10.7k
                    }
4626
73.9k
                    else {
4627
73.9k
                        if (_PyUnicodeWriter_WriteCharInline(&writer, outCh) < 0)
4628
0
                            goto onError;
4629
73.9k
                    }
4630
84.7k
                }
4631
248k
            }
4632
13.8k
            else { /* now leaving a base-64 section */
4633
13.8k
                inShift = 0;
4634
13.8k
                if (base64bits > 0) { /* left-over bits */
4635
11.4k
                    if (base64bits >= 6) {
4636
                        /* We've seen at least one base-64 character */
4637
5.94k
                        s++;
4638
5.94k
                        errmsg = "partial character in shift sequence";
4639
5.94k
                        goto utf7Error;
4640
5.94k
                    }
4641
5.53k
                    else {
4642
                        /* Some bits remain; they should be zero */
4643
5.53k
                        if (base64buffer != 0) {
4644
1.50k
                            s++;
4645
1.50k
                            errmsg = "non-zero padding bits in shift sequence";
4646
1.50k
                            goto utf7Error;
4647
1.50k
                        }
4648
5.53k
                    }
4649
11.4k
                }
4650
6.38k
                if (surrogate && DECODE_DIRECT(ch)) {
4651
2.28k
                    if (_PyUnicodeWriter_WriteCharInline(&writer, surrogate) < 0)
4652
0
                        goto onError;
4653
2.28k
                }
4654
6.38k
                surrogate = 0;
4655
6.38k
                if (ch == '-') {
4656
                    /* '-' is absorbed; other terminating
4657
                       characters are preserved */
4658
1.76k
                    s++;
4659
1.76k
                }
4660
6.38k
            }
4661
262k
        }
4662
872k
        else if ( ch == '+' ) {
4663
22.2k
            startinpos = s-starts;
4664
22.2k
            s++; /* consume '+' */
4665
22.2k
            if (s < e && *s == '-') { /* '+-' encodes '+' */
4666
2.25k
                s++;
4667
2.25k
                if (_PyUnicodeWriter_WriteCharInline(&writer, '+') < 0)
4668
0
                    goto onError;
4669
2.25k
            }
4670
19.9k
            else if (s < e && !IS_BASE64(*s)) {
4671
2.62k
                s++;
4672
2.62k
                errmsg = "ill-formed sequence";
4673
2.62k
                goto utf7Error;
4674
2.62k
            }
4675
17.3k
            else { /* begin base64-encoded section */
4676
17.3k
                inShift = 1;
4677
17.3k
                surrogate = 0;
4678
17.3k
                shiftOutStart = writer.pos;
4679
17.3k
                base64bits = 0;
4680
17.3k
                base64buffer = 0;
4681
17.3k
            }
4682
22.2k
        }
4683
849k
        else if (DECODE_DIRECT(ch)) { /* character decodes as itself */
4684
708k
            s++;
4685
708k
            if (_PyUnicodeWriter_WriteCharInline(&writer, ch) < 0)
4686
0
                goto onError;
4687
708k
        }
4688
141k
        else {
4689
141k
            startinpos = s-starts;
4690
141k
            s++;
4691
141k
            errmsg = "unexpected special character";
4692
141k
            goto utf7Error;
4693
141k
        }
4694
979k
        continue;
4695
979k
utf7Error:
4696
151k
        endinpos = s-starts;
4697
151k
        if (unicode_decode_call_errorhandler_writer(
4698
151k
                errors, &errorHandler,
4699
151k
                "utf7", errmsg,
4700
151k
                &starts, &e, &startinpos, &endinpos, &exc, &s,
4701
151k
                &writer))
4702
9.08k
            goto onError;
4703
151k
    }
4704
4705
    /* end of string */
4706
4707
11.4k
    if (inShift && !consumed) { /* in shift sequence, no more to follow */
4708
        /* if we're in an inconsistent state, that's an error */
4709
3.50k
        inShift = 0;
4710
3.50k
        if (surrogate ||
4711
3.02k
                (base64bits >= 6) ||
4712
2.27k
                (base64bits > 0 && base64buffer != 0)) {
4713
2.27k
            endinpos = size;
4714
2.27k
            if (unicode_decode_call_errorhandler_writer(
4715
2.27k
                    errors, &errorHandler,
4716
2.27k
                    "utf7", "unterminated shift sequence",
4717
2.27k
                    &starts, &e, &startinpos, &endinpos, &exc, &s,
4718
2.27k
                    &writer))
4719
1.89k
                goto onError;
4720
380
            if (s < e)
4721
0
                goto restart;
4722
380
        }
4723
3.50k
    }
4724
4725
    /* return state */
4726
9.51k
    if (consumed) {
4727
0
        if (inShift) {
4728
0
            *consumed = startinpos;
4729
0
            if (writer.pos != shiftOutStart && writer.maxchar > 127) {
4730
0
                PyObject *result = PyUnicode_FromKindAndData(
4731
0
                        writer.kind, writer.data, shiftOutStart);
4732
0
                Py_XDECREF(errorHandler);
4733
0
                Py_XDECREF(exc);
4734
0
                _PyUnicodeWriter_Dealloc(&writer);
4735
0
                return result;
4736
0
            }
4737
0
            writer.pos = shiftOutStart; /* back off output */
4738
0
        }
4739
0
        else {
4740
0
            *consumed = s-starts;
4741
0
        }
4742
0
    }
4743
4744
9.51k
    Py_XDECREF(errorHandler);
4745
9.51k
    Py_XDECREF(exc);
4746
9.51k
    return _PyUnicodeWriter_Finish(&writer);
4747
4748
10.9k
  onError:
4749
10.9k
    Py_XDECREF(errorHandler);
4750
10.9k
    Py_XDECREF(exc);
4751
10.9k
    _PyUnicodeWriter_Dealloc(&writer);
4752
10.9k
    return NULL;
4753
9.51k
}
4754
4755
4756
PyObject *
4757
_PyUnicode_EncodeUTF7(PyObject *str,
4758
                      const char *errors)
4759
0
{
4760
0
    Py_ssize_t len = PyUnicode_GET_LENGTH(str);
4761
0
    if (len == 0) {
4762
0
        return Py_GetConstant(Py_CONSTANT_EMPTY_BYTES);
4763
0
    }
4764
0
    int kind = PyUnicode_KIND(str);
4765
0
    const void *data = PyUnicode_DATA(str);
4766
4767
    /* It might be possible to tighten this worst case */
4768
0
    if (len > PY_SSIZE_T_MAX / 8) {
4769
0
        return PyErr_NoMemory();
4770
0
    }
4771
0
    PyBytesWriter *writer = PyBytesWriter_Create(len * 8);
4772
0
    if (writer == NULL) {
4773
0
        return NULL;
4774
0
    }
4775
4776
0
    int inShift = 0;
4777
0
    unsigned int base64bits = 0;
4778
0
    unsigned long base64buffer = 0;
4779
0
    char *out = PyBytesWriter_GetData(writer);
4780
0
    for (Py_ssize_t i = 0; i < len; ++i) {
4781
0
        Py_UCS4 ch = PyUnicode_READ(kind, data, i);
4782
4783
0
        if (inShift) {
4784
0
            if (ENCODE_DIRECT(ch)) {
4785
                /* shifting out */
4786
0
                if (base64bits) { /* output remaining bits */
4787
0
                    *out++ = TO_BASE64(base64buffer << (6-base64bits));
4788
0
                    base64buffer = 0;
4789
0
                    base64bits = 0;
4790
0
                }
4791
0
                inShift = 0;
4792
                /* Characters not in the BASE64 set implicitly unshift the sequence
4793
                   so no '-' is required, except if the character is itself a '-' */
4794
0
                if (IS_BASE64(ch) || ch == '-') {
4795
0
                    *out++ = '-';
4796
0
                }
4797
0
                *out++ = (char) ch;
4798
0
            }
4799
0
            else {
4800
0
                goto encode_char;
4801
0
            }
4802
0
        }
4803
0
        else { /* not in a shift sequence */
4804
0
            if (ch == '+') {
4805
0
                *out++ = '+';
4806
0
                        *out++ = '-';
4807
0
            }
4808
0
            else if (ENCODE_DIRECT(ch)) {
4809
0
                *out++ = (char) ch;
4810
0
            }
4811
0
            else {
4812
0
                *out++ = '+';
4813
0
                inShift = 1;
4814
0
                goto encode_char;
4815
0
            }
4816
0
        }
4817
0
        continue;
4818
0
encode_char:
4819
0
        if (ch >= 0x10000) {
4820
0
            assert(ch <= MAX_UNICODE);
4821
4822
            /* code first surrogate */
4823
0
            base64bits += 16;
4824
0
            base64buffer = (base64buffer << 16) | Py_UNICODE_HIGH_SURROGATE(ch);
4825
0
            while (base64bits >= 6) {
4826
0
                *out++ = TO_BASE64(base64buffer >> (base64bits-6));
4827
0
                base64bits -= 6;
4828
0
            }
4829
            /* prepare second surrogate */
4830
0
            ch = Py_UNICODE_LOW_SURROGATE(ch);
4831
0
        }
4832
0
        base64bits += 16;
4833
0
        base64buffer = (base64buffer << 16) | ch;
4834
0
        while (base64bits >= 6) {
4835
0
            *out++ = TO_BASE64(base64buffer >> (base64bits-6));
4836
0
            base64bits -= 6;
4837
0
        }
4838
0
    }
4839
0
    if (base64bits)
4840
0
        *out++= TO_BASE64(base64buffer << (6-base64bits) );
4841
0
    if (inShift)
4842
0
        *out++ = '-';
4843
0
    return PyBytesWriter_FinishWithPointer(writer, out);
4844
0
}
4845
4846
#undef IS_BASE64
4847
#undef FROM_BASE64
4848
#undef TO_BASE64
4849
#undef DECODE_DIRECT
4850
#undef ENCODE_DIRECT
4851
4852
/* --- UTF-8 Codec -------------------------------------------------------- */
4853
4854
PyObject *
4855
PyUnicode_DecodeUTF8(const char *s,
4856
                     Py_ssize_t size,
4857
                     const char *errors)
4858
33.4M
{
4859
33.4M
    return PyUnicode_DecodeUTF8Stateful(s, size, errors, NULL);
4860
33.4M
}
4861
4862
#include "stringlib/asciilib.h"
4863
#include "stringlib/codecs.h"
4864
#include "stringlib/undef.h"
4865
4866
#include "stringlib/ucs1lib.h"
4867
#include "stringlib/codecs.h"
4868
#include "stringlib/undef.h"
4869
4870
#include "stringlib/ucs2lib.h"
4871
#include "stringlib/codecs.h"
4872
#include "stringlib/undef.h"
4873
4874
#include "stringlib/ucs4lib.h"
4875
#include "stringlib/codecs.h"
4876
#include "stringlib/undef.h"
4877
4878
#if (SIZEOF_SIZE_T == 8)
4879
/* Mask to quickly check whether a C 'size_t' contains a
4880
   non-ASCII, UTF8-encoded char. */
4881
144M
# define ASCII_CHAR_MASK 0x8080808080808080ULL
4882
// used to count codepoints in UTF-8 string.
4883
159M
# define VECTOR_0101     0x0101010101010101ULL
4884
1.79M
# define VECTOR_00FF     0x00ff00ff00ff00ffULL
4885
#elif (SIZEOF_SIZE_T == 4)
4886
# define ASCII_CHAR_MASK 0x80808080U
4887
# define VECTOR_0101     0x01010101U
4888
# define VECTOR_00FF     0x00ff00ffU
4889
#else
4890
# error C 'size_t' size should be either 4 or 8!
4891
#endif
4892
4893
#if (defined(__clang__) || defined(__GNUC__))
4894
#define HAVE_CTZ 1
4895
static inline unsigned int
4896
ctz(size_t v)
4897
4.46M
{
4898
4.46M
    return __builtin_ctzll((unsigned long long)v);
4899
4.46M
}
4900
#elif defined(_MSC_VER)
4901
#define HAVE_CTZ 1
4902
static inline unsigned int
4903
ctz(size_t v)
4904
{
4905
    unsigned long pos;
4906
#if SIZEOF_SIZE_T == 4
4907
    _BitScanForward(&pos, v);
4908
#else
4909
    _BitScanForward64(&pos, v);
4910
#endif /* SIZEOF_SIZE_T */
4911
    return pos;
4912
}
4913
#else
4914
#define HAVE_CTZ 0
4915
#endif
4916
4917
#if HAVE_CTZ && PY_LITTLE_ENDIAN
4918
// load p[0]..p[size-1] as a size_t without unaligned access nor read ahead.
4919
static size_t
4920
load_unaligned(const unsigned char *p, size_t size)
4921
33.1M
{
4922
33.1M
    union {
4923
33.1M
        size_t s;
4924
33.1M
        unsigned char b[SIZEOF_SIZE_T];
4925
33.1M
    } u;
4926
33.1M
    u.s = 0;
4927
    // This switch statement assumes little endian because:
4928
    // * union is faster than bitwise or and shift.
4929
    // * big endian machine is rare and hard to maintain.
4930
33.1M
    switch (size) {
4931
0
    default:
4932
0
#if SIZEOF_SIZE_T == 8
4933
0
    case 8:
4934
0
        u.b[7] = p[7];
4935
0
        _Py_FALLTHROUGH;
4936
3.10M
    case 7:
4937
3.10M
        u.b[6] = p[6];
4938
3.10M
        _Py_FALLTHROUGH;
4939
9.04M
    case 6:
4940
9.04M
        u.b[5] = p[5];
4941
9.04M
        _Py_FALLTHROUGH;
4942
14.2M
    case 5:
4943
14.2M
        u.b[4] = p[4];
4944
14.2M
        _Py_FALLTHROUGH;
4945
14.2M
#endif
4946
16.9M
    case 4:
4947
16.9M
        u.b[3] = p[3];
4948
16.9M
        _Py_FALLTHROUGH;
4949
25.7M
    case 3:
4950
25.7M
        u.b[2] = p[2];
4951
25.7M
        _Py_FALLTHROUGH;
4952
30.2M
    case 2:
4953
30.2M
        u.b[1] = p[1];
4954
30.2M
        _Py_FALLTHROUGH;
4955
31.7M
    case 1:
4956
31.7M
        u.b[0] = p[0];
4957
31.7M
        break;
4958
1.39M
    case 0:
4959
1.39M
        break;
4960
33.1M
    }
4961
33.1M
    return u.s;
4962
33.1M
}
4963
#endif
4964
4965
/*
4966
 * Find the first non-ASCII character in a byte sequence.
4967
 *
4968
 * This function scans a range of bytes from `start` to `end` and returns the
4969
 * index of the first byte that is not an ASCII character (i.e., has the most
4970
 * significant bit set). If all characters in the range are ASCII, it returns
4971
 * `end - start`.
4972
 */
4973
static Py_ssize_t
4974
find_first_nonascii(const unsigned char *start, const unsigned char *end)
4975
35.6M
{
4976
    // The search is done in `size_t` chunks.
4977
    // The start and end might not be aligned at `size_t` boundaries,
4978
    // so they're handled specially.
4979
4980
35.6M
    const unsigned char *p = start;
4981
4982
35.6M
    if (end - start >= SIZEOF_SIZE_T) {
4983
        // Avoid unaligned read.
4984
12.2M
#if PY_LITTLE_ENDIAN && HAVE_CTZ
4985
12.2M
        size_t u;
4986
12.2M
        memcpy(&u, p, sizeof(size_t));
4987
12.2M
        u &= ASCII_CHAR_MASK;
4988
12.2M
        if (u) {
4989
1.54M
            return (ctz(u) - 7) / 8;
4990
1.54M
        }
4991
10.6M
        p = _Py_ALIGN_DOWN(p + SIZEOF_SIZE_T, SIZEOF_SIZE_T);
4992
#else /* PY_LITTLE_ENDIAN && HAVE_CTZ */
4993
        const unsigned char *p2 = _Py_ALIGN_UP(p, SIZEOF_SIZE_T);
4994
        while (p < p2) {
4995
            if (*p & 0x80) {
4996
                return p - start;
4997
            }
4998
            p++;
4999
        }
5000
#endif
5001
5002
10.6M
        const unsigned char *e = end - SIZEOF_SIZE_T;
5003
104M
        while (p <= e) {
5004
94.9M
            size_t u = (*(const size_t *)p) & ASCII_CHAR_MASK;
5005
94.9M
            if (u) {
5006
917k
#if PY_LITTLE_ENDIAN && HAVE_CTZ
5007
917k
                return p - start + (ctz(u) - 7) / 8;
5008
#else
5009
                // big endian and minor compilers are difficult to test.
5010
                // fallback to per byte check.
5011
                break;
5012
#endif
5013
917k
            }
5014
93.9M
            p += SIZEOF_SIZE_T;
5015
93.9M
        }
5016
10.6M
    }
5017
33.1M
#if PY_LITTLE_ENDIAN && HAVE_CTZ
5018
35.6M
    assert((end - p) < SIZEOF_SIZE_T);
5019
    // we can not use *(const size_t*)p to avoid buffer overrun.
5020
33.1M
    size_t u = load_unaligned(p, end - p) & ASCII_CHAR_MASK;
5021
33.1M
    if (u) {
5022
2.00M
        return p - start + (ctz(u) - 7) / 8;
5023
2.00M
    }
5024
31.1M
    return end - start;
5025
#else
5026
    while (p < end) {
5027
        if (*p & 0x80) {
5028
            break;
5029
        }
5030
        p++;
5031
    }
5032
    return p - start;
5033
#endif
5034
33.1M
}
5035
5036
static inline int
5037
scalar_utf8_start_char(unsigned int ch)
5038
904k
{
5039
    // 0xxxxxxx or 11xxxxxx are first byte.
5040
904k
    return (~ch >> 7 | ch >> 6) & 1;
5041
904k
}
5042
5043
static inline size_t
5044
vector_utf8_start_chars(size_t v)
5045
159M
{
5046
159M
    return ((~v >> 7) | (v >> 6)) & VECTOR_0101;
5047
159M
}
5048
5049
5050
// Count the number of UTF-8 code points in a given byte sequence.
5051
static Py_ssize_t
5052
utf8_count_codepoints(const unsigned char *s, const unsigned char *end)
5053
353k
{
5054
353k
    Py_ssize_t len = 0;
5055
5056
353k
    if (end - s >= SIZEOF_SIZE_T) {
5057
294k
        while (!_Py_IS_ALIGNED(s, ALIGNOF_SIZE_T)) {
5058
14.8k
            len += scalar_utf8_start_char(*s++);
5059
14.8k
        }
5060
5061
1.17M
        while (s + SIZEOF_SIZE_T <= end) {
5062
898k
            const unsigned char *e = end;
5063
898k
            if (e - s > SIZEOF_SIZE_T * 255) {
5064
620k
                e = s + SIZEOF_SIZE_T * 255;
5065
620k
            }
5066
898k
            Py_ssize_t vstart = 0;
5067
160M
            while (s + SIZEOF_SIZE_T <= e) {
5068
159M
                size_t v = *(size_t*)s;
5069
159M
                size_t vs = vector_utf8_start_chars(v);
5070
159M
                vstart += vs;
5071
159M
                s += SIZEOF_SIZE_T;
5072
159M
            }
5073
898k
            vstart = (vstart & VECTOR_00FF) + ((vstart >> 8) & VECTOR_00FF);
5074
898k
            vstart += vstart >> 16;
5075
898k
#if SIZEOF_SIZE_T == 8
5076
898k
            vstart += vstart >> 32;
5077
898k
#endif
5078
898k
            len += vstart & 0x7ff;
5079
898k
        }
5080
280k
    }
5081
1.24M
    while (s < end) {
5082
890k
        len += scalar_utf8_start_char(*s++);
5083
890k
    }
5084
353k
    return len;
5085
353k
}
5086
5087
static Py_ssize_t
5088
ascii_decode(const char *start, const char *end, Py_UCS1 *dest)
5089
10.2M
{
5090
10.2M
#if SIZEOF_SIZE_T <= SIZEOF_VOID_P
5091
10.2M
    if (_Py_IS_ALIGNED(start, ALIGNOF_SIZE_T)
5092
10.1M
        && _Py_IS_ALIGNED(dest, ALIGNOF_SIZE_T))
5093
9.28M
    {
5094
        /* Fast path, see in STRINGLIB(utf8_decode) for
5095
           an explanation. */
5096
9.28M
        const char *p = start;
5097
9.28M
        Py_UCS1 *q = dest;
5098
11.7M
        while (p + SIZEOF_SIZE_T <= end) {
5099
4.31M
            size_t value = *(const size_t *) p;
5100
4.31M
            if (value & ASCII_CHAR_MASK)
5101
1.88M
                break;
5102
2.42M
            *((size_t *)q) = value;
5103
2.42M
            p += SIZEOF_SIZE_T;
5104
2.42M
            q += SIZEOF_SIZE_T;
5105
2.42M
        }
5106
46.8M
        while (p < end) {
5107
39.4M
            if ((unsigned char)*p & 0x80)
5108
1.91M
                break;
5109
37.5M
            *q++ = *p++;
5110
37.5M
        }
5111
9.28M
        return p - start;
5112
9.28M
    }
5113
986k
#endif
5114
986k
    Py_ssize_t pos = find_first_nonascii((const unsigned char*)start,
5115
986k
                                         (const unsigned char*)end);
5116
986k
    memcpy(dest, start, pos);
5117
986k
    return pos;
5118
10.2M
}
5119
5120
static int
5121
unicode_decode_utf8_impl(_PyUnicodeWriter *writer,
5122
                         const char *starts, const char *s, const char *end,
5123
                         _Py_error_handler error_handler,
5124
                         const char *errors,
5125
                         Py_ssize_t *consumed)
5126
4.47M
{
5127
4.47M
    Py_ssize_t startinpos, endinpos;
5128
4.47M
    const char *errmsg = "";
5129
4.47M
    PyObject *error_handler_obj = NULL;
5130
4.47M
    PyObject *exc = NULL;
5131
5132
355M
    while (s < end) {
5133
353M
        Py_UCS4 ch;
5134
353M
        int kind = writer->kind;
5135
5136
353M
        if (kind == PyUnicode_1BYTE_KIND) {
5137
4.73M
            if (PyUnicode_IS_ASCII(writer->buffer))
5138
4.11M
                ch = asciilib_utf8_decode(&s, end, writer->data, &writer->pos);
5139
621k
            else
5140
621k
                ch = ucs1lib_utf8_decode(&s, end, writer->data, &writer->pos);
5141
348M
        } else if (kind == PyUnicode_2BYTE_KIND) {
5142
118M
            ch = ucs2lib_utf8_decode(&s, end, writer->data, &writer->pos);
5143
230M
        } else {
5144
230M
            assert(kind == PyUnicode_4BYTE_KIND);
5145
230M
            ch = ucs4lib_utf8_decode(&s, end, writer->data, &writer->pos);
5146
230M
        }
5147
5148
353M
        switch (ch) {
5149
2.49M
        case 0:
5150
2.49M
            if (s == end || consumed)
5151
2.46M
                goto End;
5152
25.0k
            errmsg = "unexpected end of data";
5153
25.0k
            startinpos = s - starts;
5154
25.0k
            endinpos = end - starts;
5155
25.0k
            break;
5156
280M
        case 1:
5157
280M
            errmsg = "invalid start byte";
5158
280M
            startinpos = s - starts;
5159
280M
            endinpos = startinpos + 1;
5160
280M
            break;
5161
64.2M
        case 2:
5162
64.2M
            if (consumed && (unsigned char)s[0] == 0xED && end - s == 2
5163
0
                && (unsigned char)s[1] >= 0xA0 && (unsigned char)s[1] <= 0xBF)
5164
0
            {
5165
                /* Truncated surrogate code in range D800-DFFF */
5166
0
                goto End;
5167
0
            }
5168
64.2M
            _Py_FALLTHROUGH;
5169
66.1M
        case 3:
5170
66.3M
        case 4:
5171
66.3M
            errmsg = "invalid continuation byte";
5172
66.3M
            startinpos = s - starts;
5173
66.3M
            endinpos = startinpos + ch - 1;
5174
66.3M
            break;
5175
4.18M
        default:
5176
            // ch doesn't fit into kind, so change the buffer kind to write
5177
            // the character
5178
4.18M
            if (_PyUnicodeWriter_WriteCharInline(writer, ch) < 0)
5179
0
                goto onError;
5180
4.18M
            continue;
5181
353M
        }
5182
5183
346M
        if (error_handler == _Py_ERROR_UNKNOWN)
5184
142k
            error_handler = _Py_GetErrorHandler(errors);
5185
5186
346M
        switch (error_handler) {
5187
0
        case _Py_ERROR_IGNORE:
5188
0
            s += (endinpos - startinpos);
5189
0
            break;
5190
5191
344M
        case _Py_ERROR_REPLACE:
5192
344M
            if (_PyUnicodeWriter_WriteCharInline(writer, 0xfffd) < 0)
5193
0
                goto onError;
5194
344M
            s += (endinpos - startinpos);
5195
344M
            break;
5196
5197
2.00M
        case _Py_ERROR_SURROGATEESCAPE:
5198
2.00M
        {
5199
2.00M
            Py_ssize_t i;
5200
5201
2.00M
            if (_PyUnicodeWriter_PrepareKind(writer, PyUnicode_2BYTE_KIND) < 0)
5202
0
                goto onError;
5203
4.01M
            for (i=startinpos; i<endinpos; i++) {
5204
2.00M
                ch = (Py_UCS4)(unsigned char)(starts[i]);
5205
2.00M
                PyUnicode_WRITE(writer->kind, writer->data, writer->pos,
5206
2.00M
                                ch + 0xdc00);
5207
2.00M
                writer->pos++;
5208
2.00M
            }
5209
2.00M
            s += (endinpos - startinpos);
5210
2.00M
            break;
5211
2.00M
        }
5212
5213
1.09k
        default:
5214
1.09k
            if (unicode_decode_call_errorhandler_writer(
5215
1.09k
                    errors, &error_handler_obj,
5216
1.09k
                    "utf-8", errmsg,
5217
1.09k
                    &starts, &end, &startinpos, &endinpos, &exc, &s,
5218
1.09k
                    writer)) {
5219
1.09k
                goto onError;
5220
1.09k
            }
5221
5222
0
            if (_PyUnicodeWriter_Prepare(writer, end - s, 127) < 0) {
5223
0
                return -1;
5224
0
            }
5225
346M
        }
5226
346M
    }
5227
5228
4.47M
End:
5229
4.47M
    if (consumed)
5230
961
        *consumed = s - starts;
5231
5232
4.47M
    Py_XDECREF(error_handler_obj);
5233
4.47M
    Py_XDECREF(exc);
5234
4.47M
    return 0;
5235
5236
1.09k
onError:
5237
1.09k
    Py_XDECREF(error_handler_obj);
5238
1.09k
    Py_XDECREF(exc);
5239
1.09k
    return -1;
5240
4.47M
}
5241
5242
5243
static PyObject *
5244
unicode_decode_utf8(const char *s, Py_ssize_t size,
5245
                    _Py_error_handler error_handler, const char *errors,
5246
                    Py_ssize_t *consumed)
5247
54.2M
{
5248
54.2M
    if (size == 0) {
5249
1.09M
        if (consumed) {
5250
0
            *consumed = 0;
5251
0
        }
5252
1.09M
        _Py_RETURN_UNICODE_EMPTY();
5253
1.09M
    }
5254
5255
    /* ASCII is equivalent to the first 128 ordinals in Unicode. */
5256
53.1M
    if (size == 1 && (unsigned char)s[0] < 128) {
5257
18.4M
        if (consumed) {
5258
0
            *consumed = 1;
5259
0
        }
5260
18.4M
        return get_latin1_char((unsigned char)s[0]);
5261
18.4M
    }
5262
5263
    // I don't know this check is necessary or not. But there is a test
5264
    // case that requires size=PY_SSIZE_T_MAX cause MemoryError.
5265
34.6M
    if (PY_SSIZE_T_MAX - sizeof(PyCompactUnicodeObject) < (size_t)size) {
5266
0
        PyErr_NoMemory();
5267
0
        return NULL;
5268
0
    }
5269
5270
34.6M
    const char *starts = s;
5271
34.6M
    const char *end = s + size;
5272
5273
34.6M
    Py_ssize_t pos = find_first_nonascii((const unsigned char*)starts, (const unsigned char*)end);
5274
34.6M
    if (pos == size) {  // fast path: ASCII string.
5275
30.2M
        PyObject *u = PyUnicode_New(size, 127);
5276
30.2M
        if (u == NULL) {
5277
0
            return NULL;
5278
0
        }
5279
30.2M
        memcpy(PyUnicode_1BYTE_DATA(u), s, size);
5280
30.2M
        if (consumed) {
5281
26
            *consumed = size;
5282
26
        }
5283
30.2M
        return u;
5284
30.2M
    }
5285
5286
4.42M
    int maxchr = 127;
5287
4.42M
    Py_ssize_t maxsize = size;
5288
5289
4.42M
    unsigned char ch = (unsigned char)(s[pos]);
5290
    // error handler other than strict may remove/replace the invalid byte.
5291
    // consumed != NULL allows 1~3 bytes remainings.
5292
    // 0x80 <= ch < 0xc2 is invalid start byte that cause UnicodeDecodeError.
5293
    // otherwise: check the input and decide the maxchr and maxsize to reduce
5294
    // reallocation and copy.
5295
4.42M
    if (error_handler == _Py_ERROR_STRICT && !consumed && ch >= 0xc2) {
5296
        // we only calculate the number of codepoints and don't determine the exact maxchr.
5297
        // This is because writing fast and portable SIMD code to find maxchr is difficult.
5298
        // If reallocation occurs for a larger maxchar, knowing the exact number of codepoints
5299
        // means that it is no longer necessary to allocate several times the required amount
5300
        // of memory.
5301
353k
        maxsize = utf8_count_codepoints((const unsigned char *)s, (const unsigned char *)end);
5302
353k
        if (ch < 0xc4) { // latin1
5303
242k
            maxchr = 0xff;
5304
242k
        }
5305
110k
        else if (ch < 0xf0) { // ucs2
5306
98.8k
            maxchr = 0xffff;
5307
98.8k
        }
5308
11.5k
        else { // ucs4
5309
11.5k
            maxchr = 0x10ffff;
5310
11.5k
        }
5311
353k
    }
5312
4.42M
    PyObject *u = PyUnicode_New(maxsize, maxchr);
5313
4.42M
    if (!u) {
5314
0
        return NULL;
5315
0
    }
5316
5317
    // Use _PyUnicodeWriter after fast path is failed.
5318
4.42M
    _PyUnicodeWriter writer;
5319
4.42M
    _PyUnicodeWriter_InitWithBuffer(&writer, u);
5320
4.42M
    if (maxchr <= 255) {
5321
4.31M
        memcpy(PyUnicode_1BYTE_DATA(u), s, pos);
5322
4.31M
        s += pos;
5323
4.31M
        writer.pos = pos;
5324
4.31M
    }
5325
5326
4.42M
    if (unicode_decode_utf8_impl(&writer, starts, s, end,
5327
4.42M
                                 error_handler, errors,
5328
4.42M
                                 consumed) < 0) {
5329
1.09k
        _PyUnicodeWriter_Dealloc(&writer);
5330
1.09k
        return NULL;
5331
1.09k
    }
5332
4.42M
    return _PyUnicodeWriter_Finish(&writer);
5333
4.42M
}
5334
5335
5336
// Used by PyUnicodeWriter_WriteUTF8() implementation
5337
int
5338
_PyUnicode_DecodeUTF8Writer(_PyUnicodeWriter *writer,
5339
                            const char *s, Py_ssize_t size,
5340
                            _Py_error_handler error_handler, const char *errors,
5341
                            Py_ssize_t *consumed)
5342
1.02M
{
5343
1.02M
    if (size == 0) {
5344
7.49k
        if (consumed) {
5345
0
            *consumed = 0;
5346
0
        }
5347
7.49k
        return 0;
5348
7.49k
    }
5349
5350
    // fast path: try ASCII string.
5351
1.01M
    if (_PyUnicodeWriter_Prepare(writer, size, 127) < 0) {
5352
0
        return -1;
5353
0
    }
5354
5355
1.01M
    const char *starts = s;
5356
1.01M
    const char *end = s + size;
5357
1.01M
    Py_ssize_t decoded = 0;
5358
1.01M
    Py_UCS1 *dest = (Py_UCS1*)writer->data + writer->pos * writer->kind;
5359
1.01M
    if (writer->kind == PyUnicode_1BYTE_KIND) {
5360
1.01M
        decoded = ascii_decode(s, end, dest);
5361
1.01M
        writer->pos += decoded;
5362
5363
1.01M
        if (decoded == size) {
5364
971k
            if (consumed) {
5365
490
                *consumed = size;
5366
490
            }
5367
971k
            return 0;
5368
971k
        }
5369
40.4k
        s += decoded;
5370
40.4k
    }
5371
5372
42.6k
    return unicode_decode_utf8_impl(writer, starts, s, end,
5373
42.6k
                                    error_handler, errors, consumed);
5374
1.01M
}
5375
5376
5377
PyObject *
5378
PyUnicode_DecodeUTF8Stateful(const char *s,
5379
                             Py_ssize_t size,
5380
                             const char *errors,
5381
                             Py_ssize_t *consumed)
5382
54.0M
{
5383
54.0M
    return unicode_decode_utf8(s, size,
5384
54.0M
                               errors ? _Py_ERROR_UNKNOWN : _Py_ERROR_STRICT,
5385
54.0M
                               errors, consumed);
5386
54.0M
}
5387
5388
5389
/* UTF-8 decoder: use surrogateescape error handler if 'surrogateescape' is
5390
   non-zero, use strict error handler otherwise.
5391
5392
   On success, write a pointer to a newly allocated wide character string into
5393
   *wstr (use PyMem_RawFree() to free the memory) and write the output length
5394
   (in number of wchar_t units) into *wlen (if wlen is set).
5395
5396
   On memory allocation failure, return -1.
5397
5398
   On decoding error (if surrogateescape is zero), return -2. If wlen is
5399
   non-NULL, write the start of the illegal byte sequence into *wlen. If reason
5400
   is not NULL, write the decoding error message into *reason. */
5401
int
5402
_Py_DecodeUTF8Ex(const char *s, Py_ssize_t size, wchar_t **wstr, size_t *wlen,
5403
                 const char **reason, _Py_error_handler errors)
5404
10.5k
{
5405
10.5k
    const char *orig_s = s;
5406
10.5k
    const char *e;
5407
10.5k
    wchar_t *unicode;
5408
10.5k
    Py_ssize_t outpos;
5409
5410
10.5k
    int surrogateescape = 0;
5411
10.5k
    int surrogatepass = 0;
5412
10.5k
    switch (errors)
5413
10.5k
    {
5414
0
    case _Py_ERROR_STRICT:
5415
0
        break;
5416
10.5k
    case _Py_ERROR_SURROGATEESCAPE:
5417
10.5k
        surrogateescape = 1;
5418
10.5k
        break;
5419
0
    case _Py_ERROR_SURROGATEPASS:
5420
0
        surrogatepass = 1;
5421
0
        break;
5422
0
    default:
5423
0
        return -3;
5424
10.5k
    }
5425
5426
    /* Note: size will always be longer than the resulting Unicode
5427
       character count */
5428
10.5k
    if (PY_SSIZE_T_MAX / (Py_ssize_t)sizeof(wchar_t) - 1 < size) {
5429
0
        return -1;
5430
0
    }
5431
5432
10.5k
    unicode = PyMem_RawMalloc((size + 1) * sizeof(wchar_t));
5433
10.5k
    if (!unicode) {
5434
0
        return -1;
5435
0
    }
5436
5437
    /* Unpack UTF-8 encoded data */
5438
10.5k
    e = s + size;
5439
10.5k
    outpos = 0;
5440
10.5k
    while (s < e) {
5441
10.5k
        Py_UCS4 ch;
5442
10.5k
#if SIZEOF_WCHAR_T == 4
5443
10.5k
        ch = ucs4lib_utf8_decode(&s, e, (Py_UCS4 *)unicode, &outpos);
5444
#else
5445
        ch = ucs2lib_utf8_decode(&s, e, (Py_UCS2 *)unicode, &outpos);
5446
#endif
5447
10.5k
        if (ch > 0xFF) {
5448
0
#if SIZEOF_WCHAR_T == 4
5449
0
            Py_UNREACHABLE();
5450
#else
5451
            assert(ch > 0xFFFF && ch <= MAX_UNICODE);
5452
            /* write a surrogate pair */
5453
            unicode[outpos++] = (wchar_t)Py_UNICODE_HIGH_SURROGATE(ch);
5454
            unicode[outpos++] = (wchar_t)Py_UNICODE_LOW_SURROGATE(ch);
5455
#endif
5456
0
        }
5457
10.5k
        else {
5458
10.5k
            if (!ch && s == e) {
5459
10.5k
                break;
5460
10.5k
            }
5461
5462
0
            if (surrogateescape) {
5463
0
                unicode[outpos++] = 0xDC00 + (unsigned char)*s++;
5464
0
            }
5465
0
            else {
5466
                /* Is it a valid three-byte code? */
5467
0
                if (surrogatepass
5468
0
                    && (e - s) >= 3
5469
0
                    && (s[0] & 0xf0) == 0xe0
5470
0
                    && (s[1] & 0xc0) == 0x80
5471
0
                    && (s[2] & 0xc0) == 0x80)
5472
0
                {
5473
0
                    ch = ((s[0] & 0x0f) << 12) + ((s[1] & 0x3f) << 6) + (s[2] & 0x3f);
5474
0
                    s += 3;
5475
0
                    unicode[outpos++] = ch;
5476
0
                }
5477
0
                else {
5478
0
                    PyMem_RawFree(unicode );
5479
0
                    if (reason != NULL) {
5480
0
                        switch (ch) {
5481
0
                        case 0:
5482
0
                            *reason = "unexpected end of data";
5483
0
                            break;
5484
0
                        case 1:
5485
0
                            *reason = "invalid start byte";
5486
0
                            break;
5487
                        /* 2, 3, 4 */
5488
0
                        default:
5489
0
                            *reason = "invalid continuation byte";
5490
0
                            break;
5491
0
                        }
5492
0
                    }
5493
0
                    if (wlen != NULL) {
5494
0
                        *wlen = s - orig_s;
5495
0
                    }
5496
0
                    return -2;
5497
0
                }
5498
0
            }
5499
0
        }
5500
10.5k
    }
5501
10.5k
    unicode[outpos] = L'\0';
5502
10.5k
    if (wlen) {
5503
10.5k
        *wlen = outpos;
5504
10.5k
    }
5505
10.5k
    *wstr = unicode;
5506
10.5k
    return 0;
5507
10.5k
}
5508
5509
5510
wchar_t*
5511
_Py_DecodeUTF8_surrogateescape(const char *arg, Py_ssize_t arglen,
5512
                               size_t *wlen)
5513
0
{
5514
0
    wchar_t *wstr;
5515
0
    int res = _Py_DecodeUTF8Ex(arg, arglen,
5516
0
                               &wstr, wlen,
5517
0
                               NULL, _Py_ERROR_SURROGATEESCAPE);
5518
0
    if (res != 0) {
5519
        /* _Py_DecodeUTF8Ex() must support _Py_ERROR_SURROGATEESCAPE */
5520
0
        assert(res != -3);
5521
0
        if (wlen) {
5522
0
            *wlen = (size_t)res;
5523
0
        }
5524
0
        return NULL;
5525
0
    }
5526
0
    return wstr;
5527
0
}
5528
5529
5530
/* UTF-8 encoder.
5531
5532
   On success, return 0 and write the newly allocated character string (use
5533
   PyMem_Free() to free the memory) into *str.
5534
5535
   On encoding failure, return -2 and write the position of the invalid
5536
   surrogate character into *error_pos (if error_pos is set) and the decoding
5537
   error message into *reason (if reason is set).
5538
5539
   On memory allocation failure, return -1. */
5540
int
5541
_Py_EncodeUTF8Ex(const wchar_t *text, char **str, size_t *error_pos,
5542
                 const char **reason, int raw_malloc, _Py_error_handler errors)
5543
1.21k
{
5544
1.21k
    const Py_ssize_t max_char_size = 4;
5545
1.21k
    Py_ssize_t len = wcslen(text);
5546
5547
1.21k
    assert(len >= 0);
5548
5549
1.21k
    int surrogateescape = 0;
5550
1.21k
    int surrogatepass = 0;
5551
1.21k
    switch (errors)
5552
1.21k
    {
5553
128
    case _Py_ERROR_STRICT:
5554
128
        break;
5555
1.08k
    case _Py_ERROR_SURROGATEESCAPE:
5556
1.08k
        surrogateescape = 1;
5557
1.08k
        break;
5558
0
    case _Py_ERROR_SURROGATEPASS:
5559
0
        surrogatepass = 1;
5560
0
        break;
5561
0
    default:
5562
0
        return -3;
5563
1.21k
    }
5564
5565
1.21k
    if (len > PY_SSIZE_T_MAX / max_char_size - 1) {
5566
0
        return -1;
5567
0
    }
5568
1.21k
    char *bytes;
5569
1.21k
    if (raw_malloc) {
5570
1.21k
        bytes = PyMem_RawMalloc((len + 1) * max_char_size);
5571
1.21k
    }
5572
0
    else {
5573
0
        bytes = PyMem_Malloc((len + 1) * max_char_size);
5574
0
    }
5575
1.21k
    if (bytes == NULL) {
5576
0
        return -1;
5577
0
    }
5578
5579
1.21k
    char *p = bytes;
5580
1.21k
    Py_ssize_t i;
5581
77.9k
    for (i = 0; i < len; ) {
5582
76.7k
        Py_ssize_t ch_pos = i;
5583
76.7k
        Py_UCS4 ch = text[i];
5584
76.7k
        i++;
5585
#if Py_UNICODE_SIZE == 2
5586
        if (Py_UNICODE_IS_HIGH_SURROGATE(ch)
5587
            && i < len
5588
            && Py_UNICODE_IS_LOW_SURROGATE(text[i]))
5589
        {
5590
            ch = Py_UNICODE_JOIN_SURROGATES(ch, text[i]);
5591
            i++;
5592
        }
5593
#endif
5594
5595
76.7k
        if (ch < 0x80) {
5596
            /* Encode ASCII */
5597
76.7k
            *p++ = (char) ch;
5598
5599
76.7k
        }
5600
0
        else if (ch < 0x0800) {
5601
            /* Encode Latin-1 */
5602
0
            *p++ = (char)(0xc0 | (ch >> 6));
5603
0
            *p++ = (char)(0x80 | (ch & 0x3f));
5604
0
        }
5605
0
        else if (Py_UNICODE_IS_SURROGATE(ch) && !surrogatepass) {
5606
            /* surrogateescape error handler */
5607
0
            if (!surrogateescape || !(0xDC80 <= ch && ch <= 0xDCFF)) {
5608
0
                if (error_pos != NULL) {
5609
0
                    *error_pos = (size_t)ch_pos;
5610
0
                }
5611
0
                if (reason != NULL) {
5612
0
                    *reason = "encoding error";
5613
0
                }
5614
0
                if (raw_malloc) {
5615
0
                    PyMem_RawFree(bytes);
5616
0
                }
5617
0
                else {
5618
0
                    PyMem_Free(bytes);
5619
0
                }
5620
0
                return -2;
5621
0
            }
5622
0
            *p++ = (char)(ch & 0xff);
5623
0
        }
5624
0
        else if (ch < 0x10000) {
5625
0
            *p++ = (char)(0xe0 | (ch >> 12));
5626
0
            *p++ = (char)(0x80 | ((ch >> 6) & 0x3f));
5627
0
            *p++ = (char)(0x80 | (ch & 0x3f));
5628
0
        }
5629
0
        else {  /* ch >= 0x10000 */
5630
0
            assert(ch <= MAX_UNICODE);
5631
            /* Encode UCS4 Unicode ordinals */
5632
0
            *p++ = (char)(0xf0 | (ch >> 18));
5633
0
            *p++ = (char)(0x80 | ((ch >> 12) & 0x3f));
5634
0
            *p++ = (char)(0x80 | ((ch >> 6) & 0x3f));
5635
0
            *p++ = (char)(0x80 | (ch & 0x3f));
5636
0
        }
5637
76.7k
    }
5638
1.21k
    *p++ = '\0';
5639
5640
1.21k
    size_t final_size = (p - bytes);
5641
1.21k
    char *bytes2;
5642
1.21k
    if (raw_malloc) {
5643
1.21k
        bytes2 = PyMem_RawRealloc(bytes, final_size);
5644
1.21k
    }
5645
0
    else {
5646
0
        bytes2 = PyMem_Realloc(bytes, final_size);
5647
0
    }
5648
1.21k
    if (bytes2 == NULL) {
5649
0
        if (error_pos != NULL) {
5650
0
            *error_pos = (size_t)-1;
5651
0
        }
5652
0
        if (raw_malloc) {
5653
0
            PyMem_RawFree(bytes);
5654
0
        }
5655
0
        else {
5656
0
            PyMem_Free(bytes);
5657
0
        }
5658
0
        return -1;
5659
0
    }
5660
1.21k
    *str = bytes2;
5661
1.21k
    return 0;
5662
1.21k
}
5663
5664
5665
/* Primary internal function which creates utf8 encoded bytes objects.
5666
5667
   Allocation strategy:  if the string is short, convert into a stack buffer
5668
   and allocate exactly as much space needed at the end.  Else allocate the
5669
   maximum possible needed (4 result bytes per Unicode character), and return
5670
   the excess memory at the end.
5671
*/
5672
static PyObject *
5673
unicode_encode_utf8(PyObject *unicode, _Py_error_handler error_handler,
5674
                    const char *errors)
5675
15.1M
{
5676
15.1M
    if (!PyUnicode_Check(unicode)) {
5677
0
        PyErr_BadArgument();
5678
0
        return NULL;
5679
0
    }
5680
5681
15.1M
    if (PyUnicode_UTF8(unicode))
5682
8.68M
        return PyBytes_FromStringAndSize(PyUnicode_UTF8(unicode),
5683
8.68M
                                         PyUnicode_UTF8_LENGTH(unicode));
5684
5685
6.48M
    int kind = PyUnicode_KIND(unicode);
5686
6.48M
    const void *data = PyUnicode_DATA(unicode);
5687
6.48M
    Py_ssize_t size = PyUnicode_GET_LENGTH(unicode);
5688
5689
6.48M
    PyBytesWriter *writer;
5690
6.48M
    char *end;
5691
5692
6.48M
    switch (kind) {
5693
0
    default:
5694
0
        Py_UNREACHABLE();
5695
5.07M
    case PyUnicode_1BYTE_KIND:
5696
        /* the string cannot be ASCII, or PyUnicode_UTF8() would be set */
5697
5.07M
        assert(!PyUnicode_IS_ASCII(unicode));
5698
5.07M
        writer = ucs1lib_utf8_encoder(unicode, data, size,
5699
5.07M
                                      error_handler, errors, &end);
5700
5.07M
        break;
5701
1.35M
    case PyUnicode_2BYTE_KIND:
5702
1.35M
        writer = ucs2lib_utf8_encoder(unicode, data, size,
5703
1.35M
                                      error_handler, errors, &end);
5704
1.35M
        break;
5705
53.7k
    case PyUnicode_4BYTE_KIND:
5706
53.7k
        writer = ucs4lib_utf8_encoder(unicode, data, size,
5707
53.7k
                                      error_handler, errors, &end);
5708
53.7k
        break;
5709
6.48M
    }
5710
5711
6.48M
    if (writer == NULL) {
5712
117k
        PyBytesWriter_Discard(writer);
5713
117k
        return NULL;
5714
117k
    }
5715
6.36M
    return PyBytesWriter_FinishWithPointer(writer, end);
5716
6.48M
}
5717
5718
static int
5719
unicode_fill_utf8(PyObject *unicode)
5720
170k
{
5721
170k
    _Py_CRITICAL_SECTION_ASSERT_OBJECT_LOCKED(unicode);
5722
    /* the string cannot be ASCII, or PyUnicode_UTF8() would be set */
5723
170k
    assert(!PyUnicode_IS_ASCII(unicode));
5724
5725
170k
    int kind = PyUnicode_KIND(unicode);
5726
170k
    const void *data = PyUnicode_DATA(unicode);
5727
170k
    Py_ssize_t size = PyUnicode_GET_LENGTH(unicode);
5728
5729
170k
    PyBytesWriter *writer;
5730
170k
    char *end;
5731
5732
170k
    switch (kind) {
5733
0
    default:
5734
0
        Py_UNREACHABLE();
5735
125k
    case PyUnicode_1BYTE_KIND:
5736
125k
        writer = ucs1lib_utf8_encoder(unicode, data, size,
5737
125k
                                      _Py_ERROR_STRICT, NULL, &end);
5738
125k
        break;
5739
36.7k
    case PyUnicode_2BYTE_KIND:
5740
36.7k
        writer = ucs2lib_utf8_encoder(unicode, data, size,
5741
36.7k
                                      _Py_ERROR_STRICT, NULL, &end);
5742
36.7k
        break;
5743
8.61k
    case PyUnicode_4BYTE_KIND:
5744
8.61k
        writer = ucs4lib_utf8_encoder(unicode, data, size,
5745
8.61k
                                      _Py_ERROR_STRICT, NULL, &end);
5746
8.61k
        break;
5747
170k
    }
5748
170k
    if (writer == NULL) {
5749
207
        return -1;
5750
207
    }
5751
5752
170k
    const char *start = PyBytesWriter_GetData(writer);
5753
170k
    Py_ssize_t len = end - start;
5754
5755
170k
    char *cache = PyMem_Malloc(len + 1);
5756
170k
    if (cache == NULL) {
5757
0
        PyBytesWriter_Discard(writer);
5758
0
        PyErr_NoMemory();
5759
0
        return -1;
5760
0
    }
5761
170k
    memcpy(cache, start, len);
5762
170k
    cache[len] = '\0';
5763
170k
    PyUnicode_SET_UTF8_LENGTH(unicode, len);
5764
170k
    PyUnicode_SET_UTF8(unicode, cache);
5765
170k
    PyBytesWriter_Discard(writer);
5766
170k
    return 0;
5767
170k
}
5768
5769
PyObject *
5770
_PyUnicode_AsUTF8String(PyObject *unicode, const char *errors)
5771
14.2M
{
5772
14.2M
    return unicode_encode_utf8(unicode, _Py_ERROR_UNKNOWN, errors);
5773
14.2M
}
5774
5775
5776
PyObject *
5777
PyUnicode_AsUTF8String(PyObject *unicode)
5778
2.22k
{
5779
2.22k
    return _PyUnicode_AsUTF8String(unicode, NULL);
5780
2.22k
}
5781
5782
/* --- UTF-32 Codec ------------------------------------------------------- */
5783
5784
PyObject *
5785
PyUnicode_DecodeUTF32(const char *s,
5786
                      Py_ssize_t size,
5787
                      const char *errors,
5788
                      int *byteorder)
5789
103
{
5790
103
    return PyUnicode_DecodeUTF32Stateful(s, size, errors, byteorder, NULL);
5791
103
}
5792
5793
PyObject *
5794
PyUnicode_DecodeUTF32Stateful(const char *s,
5795
                              Py_ssize_t size,
5796
                              const char *errors,
5797
                              int *byteorder,
5798
                              Py_ssize_t *consumed)
5799
21.1k
{
5800
21.1k
    const char *starts = s;
5801
21.1k
    Py_ssize_t startinpos;
5802
21.1k
    Py_ssize_t endinpos;
5803
21.1k
    _PyUnicodeWriter writer;
5804
21.1k
    const unsigned char *q, *e;
5805
21.1k
    int le, bo = 0;       /* assume native ordering by default */
5806
21.1k
    const char *encoding;
5807
21.1k
    const char *errmsg = "";
5808
21.1k
    PyObject *errorHandler = NULL;
5809
21.1k
    PyObject *exc = NULL;
5810
5811
21.1k
    q = (const unsigned char *)s;
5812
21.1k
    e = q + size;
5813
5814
21.1k
    if (byteorder)
5815
21.0k
        bo = *byteorder;
5816
5817
    /* Check for BOM marks (U+FEFF) in the input and adjust current
5818
       byte order setting accordingly. In native mode, the leading BOM
5819
       mark is skipped, in all other modes, it is copied to the output
5820
       stream as-is (giving a ZWNBSP character). */
5821
21.1k
    if (bo == 0 && size >= 4) {
5822
18.8k
        Py_UCS4 bom = ((unsigned int)q[3] << 24) | (q[2] << 16) | (q[1] << 8) | q[0];
5823
18.8k
        if (bom == 0x0000FEFF) {
5824
199
            bo = -1;
5825
199
            q += 4;
5826
199
        }
5827
18.6k
        else if (bom == 0xFFFE0000) {
5828
279
            bo = 1;
5829
279
            q += 4;
5830
279
        }
5831
18.8k
        if (byteorder)
5832
18.7k
            *byteorder = bo;
5833
18.8k
    }
5834
5835
21.1k
    if (q == e) {
5836
107
        if (consumed)
5837
0
            *consumed = size;
5838
107
        _Py_RETURN_UNICODE_EMPTY();
5839
107
    }
5840
5841
#ifdef WORDS_BIGENDIAN
5842
    le = bo < 0;
5843
#else
5844
21.0k
    le = bo <= 0;
5845
21.0k
#endif
5846
21.0k
    encoding = le ? "utf-32-le" : "utf-32-be";
5847
5848
21.0k
    _PyUnicodeWriter_Init(&writer);
5849
21.0k
    writer.min_length = (e - q + 3) / 4;
5850
21.0k
    if (_PyUnicodeWriter_Prepare(&writer, writer.min_length, 127) == -1)
5851
0
        goto onError;
5852
5853
101k
    while (1) {
5854
101k
        Py_UCS4 ch = 0;
5855
101k
        Py_UCS4 maxch = PyUnicode_MAX_CHAR_VALUE(writer.buffer);
5856
5857
101k
        if (e - q >= 4) {
5858
87.2k
            int kind = writer.kind;
5859
87.2k
            void *data = writer.data;
5860
87.2k
            const unsigned char *last = e - 4;
5861
87.2k
            Py_ssize_t pos = writer.pos;
5862
87.2k
            if (le) {
5863
2.08M
                do {
5864
2.08M
                    ch = ((unsigned int)q[3] << 24) | (q[2] << 16) | (q[1] << 8) | q[0];
5865
2.08M
                    if (ch > maxch)
5866
76.6k
                        break;
5867
2.01M
                    if (kind != PyUnicode_1BYTE_KIND &&
5868
1.99M
                        Py_UNICODE_IS_SURROGATE(ch))
5869
158
                        break;
5870
2.01M
                    PyUnicode_WRITE(kind, data, pos++, ch);
5871
2.01M
                    q += 4;
5872
2.01M
                } while (q <= last);
5873
77.9k
            }
5874
9.30k
            else {
5875
12.2k
                do {
5876
12.2k
                    ch = ((unsigned int)q[0] << 24) | (q[1] << 16) | (q[2] << 8) | q[3];
5877
12.2k
                    if (ch > maxch)
5878
9.03k
                        break;
5879
3.20k
                    if (kind != PyUnicode_1BYTE_KIND &&
5880
2.48k
                        Py_UNICODE_IS_SURROGATE(ch))
5881
113
                        break;
5882
3.09k
                    PyUnicode_WRITE(kind, data, pos++, ch);
5883
3.09k
                    q += 4;
5884
3.09k
                } while (q <= last);
5885
9.30k
            }
5886
87.2k
            writer.pos = pos;
5887
87.2k
        }
5888
5889
101k
        if (Py_UNICODE_IS_SURROGATE(ch)) {
5890
274
            errmsg = "code point in surrogate code point range(0xd800, 0xe000)";
5891
274
            startinpos = ((const char *)q) - starts;
5892
274
            endinpos = startinpos + 4;
5893
274
        }
5894
101k
        else if (ch <= maxch) {
5895
15.7k
            if (q == e || consumed)
5896
3.54k
                break;
5897
            /* remaining bytes at the end? (size should be divisible by 4) */
5898
12.2k
            errmsg = "truncated data";
5899
12.2k
            startinpos = ((const char *)q) - starts;
5900
12.2k
            endinpos = ((const char *)e) - starts;
5901
12.2k
        }
5902
85.6k
        else {
5903
85.6k
            if (ch < 0x110000) {
5904
4.24k
                if (_PyUnicodeWriter_WriteCharInline(&writer, ch) < 0)
5905
0
                    goto onError;
5906
4.24k
                q += 4;
5907
4.24k
                continue;
5908
4.24k
            }
5909
81.4k
            errmsg = "code point not in range(0x110000)";
5910
81.4k
            startinpos = ((const char *)q) - starts;
5911
81.4k
            endinpos = startinpos + 4;
5912
81.4k
        }
5913
5914
        /* The remaining input chars are ignored if the callback
5915
           chooses to skip the input */
5916
93.9k
        if (unicode_decode_call_errorhandler_writer(
5917
93.9k
                errors, &errorHandler,
5918
93.9k
                encoding, errmsg,
5919
93.9k
                &starts, (const char **)&e, &startinpos, &endinpos, &exc, (const char **)&q,
5920
93.9k
                &writer))
5921
17.5k
            goto onError;
5922
93.9k
    }
5923
5924
3.54k
    if (consumed)
5925
0
        *consumed = (const char *)q-starts;
5926
5927
3.54k
    Py_XDECREF(errorHandler);
5928
3.54k
    Py_XDECREF(exc);
5929
3.54k
    return _PyUnicodeWriter_Finish(&writer);
5930
5931
17.5k
  onError:
5932
17.5k
    _PyUnicodeWriter_Dealloc(&writer);
5933
17.5k
    Py_XDECREF(errorHandler);
5934
17.5k
    Py_XDECREF(exc);
5935
17.5k
    return NULL;
5936
21.0k
}
5937
5938
PyObject *
5939
_PyUnicode_EncodeUTF32(PyObject *str,
5940
                       const char *errors,
5941
                       int byteorder)
5942
0
{
5943
0
    if (!PyUnicode_Check(str)) {
5944
0
        PyErr_BadArgument();
5945
0
        return NULL;
5946
0
    }
5947
0
    int kind = PyUnicode_KIND(str);
5948
0
    const void *data = PyUnicode_DATA(str);
5949
0
    Py_ssize_t len = PyUnicode_GET_LENGTH(str);
5950
5951
0
    if (len > PY_SSIZE_T_MAX / 4 - (byteorder == 0))
5952
0
        return PyErr_NoMemory();
5953
0
    Py_ssize_t nsize = len + (byteorder == 0);
5954
5955
0
#if PY_LITTLE_ENDIAN
5956
0
    int native_ordering = byteorder <= 0;
5957
#else
5958
    int native_ordering = byteorder >= 0;
5959
#endif
5960
5961
0
    if (kind == PyUnicode_1BYTE_KIND) {
5962
        // gh-139156: Don't use PyBytesWriter API here since it has an overhead
5963
        // on short strings
5964
0
        PyObject *v = PyBytes_FromStringAndSize(NULL, nsize * 4);
5965
0
        if (v == NULL) {
5966
0
            return NULL;
5967
0
        }
5968
5969
        /* output buffer is 4-bytes aligned */
5970
0
        assert(_Py_IS_ALIGNED(PyBytes_AS_STRING(v), 4));
5971
0
        uint32_t *out = (uint32_t *)PyBytes_AS_STRING(v);
5972
0
        if (byteorder == 0) {
5973
0
            *out++ = 0xFEFF;
5974
0
        }
5975
0
        if (len > 0) {
5976
0
            ucs1lib_utf32_encode((const Py_UCS1 *)data, len,
5977
0
                                 &out, native_ordering);
5978
0
        }
5979
0
        return v;
5980
0
    }
5981
5982
0
    PyBytesWriter *writer = PyBytesWriter_Create(nsize * 4);
5983
0
    if (writer == NULL) {
5984
0
        return NULL;
5985
0
    }
5986
5987
    /* output buffer is 4-bytes aligned */
5988
0
    assert(_Py_IS_ALIGNED(PyBytesWriter_GetData(writer), 4));
5989
0
    uint32_t *out = (uint32_t *)PyBytesWriter_GetData(writer);
5990
0
    if (byteorder == 0) {
5991
0
        *out++ = 0xFEFF;
5992
0
    }
5993
0
    if (len == 0) {
5994
0
        return PyBytesWriter_Finish(writer);
5995
0
    }
5996
5997
0
    const char *encoding;
5998
0
    if (byteorder == -1)
5999
0
        encoding = "utf-32-le";
6000
0
    else if (byteorder == 1)
6001
0
        encoding = "utf-32-be";
6002
0
    else
6003
0
        encoding = "utf-32";
6004
6005
0
    PyObject *errorHandler = NULL;
6006
0
    PyObject *exc = NULL;
6007
0
    PyObject *rep = NULL;
6008
6009
0
    for (Py_ssize_t pos = 0; pos < len; ) {
6010
0
        if (kind == PyUnicode_2BYTE_KIND) {
6011
0
            pos += ucs2lib_utf32_encode((const Py_UCS2 *)data + pos, len - pos,
6012
0
                                        &out, native_ordering);
6013
0
        }
6014
0
        else {
6015
0
            assert(kind == PyUnicode_4BYTE_KIND);
6016
0
            pos += ucs4lib_utf32_encode((const Py_UCS4 *)data + pos, len - pos,
6017
0
                                        &out, native_ordering);
6018
0
        }
6019
0
        if (pos == len)
6020
0
            break;
6021
6022
0
        Py_ssize_t newpos;
6023
0
        rep = unicode_encode_call_errorhandler(
6024
0
                errors, &errorHandler,
6025
0
                encoding, "surrogates not allowed",
6026
0
                str, &exc, pos, pos + 1, &newpos);
6027
0
        if (!rep)
6028
0
            goto error;
6029
6030
0
        Py_ssize_t repsize, moreunits;
6031
0
        if (PyBytes_Check(rep)) {
6032
0
            repsize = PyBytes_GET_SIZE(rep);
6033
0
            if (repsize & 3) {
6034
0
                raise_encode_exception(&exc, encoding,
6035
0
                                       str, pos, pos + 1,
6036
0
                                       "surrogates not allowed");
6037
0
                goto error;
6038
0
            }
6039
0
            moreunits = repsize / 4;
6040
0
        }
6041
0
        else {
6042
0
            assert(PyUnicode_Check(rep));
6043
0
            moreunits = repsize = PyUnicode_GET_LENGTH(rep);
6044
0
            if (!PyUnicode_IS_ASCII(rep)) {
6045
0
                raise_encode_exception(&exc, encoding,
6046
0
                                       str, pos, pos + 1,
6047
0
                                       "surrogates not allowed");
6048
0
                goto error;
6049
0
            }
6050
0
        }
6051
0
        moreunits += pos - newpos;
6052
0
        pos = newpos;
6053
6054
        /* four bytes are reserved for each surrogate */
6055
0
        if (moreunits > 0) {
6056
0
            out = PyBytesWriter_GrowAndUpdatePointer(writer, 4 * moreunits, out);
6057
0
            if (out == NULL) {
6058
0
                goto error;
6059
0
            }
6060
0
        }
6061
6062
0
        if (PyBytes_Check(rep)) {
6063
0
            memcpy(out, PyBytes_AS_STRING(rep), repsize);
6064
0
            out += repsize / 4;
6065
0
        }
6066
0
        else {
6067
            /* rep is unicode */
6068
0
            assert(PyUnicode_KIND(rep) == PyUnicode_1BYTE_KIND);
6069
0
            ucs1lib_utf32_encode(PyUnicode_1BYTE_DATA(rep), repsize,
6070
0
                                 &out, native_ordering);
6071
0
        }
6072
6073
0
        Py_CLEAR(rep);
6074
0
    }
6075
6076
0
    Py_XDECREF(errorHandler);
6077
0
    Py_XDECREF(exc);
6078
6079
    /* Cut back to size actually needed. This is necessary for, for example,
6080
       encoding of a string containing isolated surrogates and the 'ignore'
6081
       handler is used. */
6082
0
    return PyBytesWriter_FinishWithPointer(writer, out);
6083
6084
0
  error:
6085
0
    Py_XDECREF(rep);
6086
0
    Py_XDECREF(errorHandler);
6087
0
    Py_XDECREF(exc);
6088
0
    PyBytesWriter_Discard(writer);
6089
0
    return NULL;
6090
0
}
6091
6092
PyObject *
6093
PyUnicode_AsUTF32String(PyObject *unicode)
6094
0
{
6095
0
    return _PyUnicode_EncodeUTF32(unicode, NULL, 0);
6096
0
}
6097
6098
/* --- UTF-16 Codec ------------------------------------------------------- */
6099
6100
PyObject *
6101
PyUnicode_DecodeUTF16(const char *s,
6102
                      Py_ssize_t size,
6103
                      const char *errors,
6104
                      int *byteorder)
6105
89
{
6106
89
    return PyUnicode_DecodeUTF16Stateful(s, size, errors, byteorder, NULL);
6107
89
}
6108
6109
PyObject *
6110
PyUnicode_DecodeUTF16Stateful(const char *s,
6111
                              Py_ssize_t size,
6112
                              const char *errors,
6113
                              int *byteorder,
6114
                              Py_ssize_t *consumed)
6115
13.6k
{
6116
13.6k
    const char *starts = s;
6117
13.6k
    Py_ssize_t startinpos;
6118
13.6k
    Py_ssize_t endinpos;
6119
13.6k
    _PyUnicodeWriter writer;
6120
13.6k
    const unsigned char *q, *e;
6121
13.6k
    int bo = 0;       /* assume native ordering by default */
6122
13.6k
    int native_ordering;
6123
13.6k
    const char *errmsg = "";
6124
13.6k
    PyObject *errorHandler = NULL;
6125
13.6k
    PyObject *exc = NULL;
6126
13.6k
    const char *encoding;
6127
6128
13.6k
    q = (const unsigned char *)s;
6129
13.6k
    e = q + size;
6130
6131
13.6k
    if (byteorder)
6132
13.5k
        bo = *byteorder;
6133
6134
    /* Check for BOM marks (U+FEFF) in the input and adjust current
6135
       byte order setting accordingly. In native mode, the leading BOM
6136
       mark is skipped, in all other modes, it is copied to the output
6137
       stream as-is (giving a ZWNBSP character). */
6138
13.6k
    if (bo == 0 && size >= 2) {
6139
12.8k
        const Py_UCS4 bom = (q[1] << 8) | q[0];
6140
12.8k
        if (bom == 0xFEFF) {
6141
380
            q += 2;
6142
380
            bo = -1;
6143
380
        }
6144
12.4k
        else if (bom == 0xFFFE) {
6145
2.70k
            q += 2;
6146
2.70k
            bo = 1;
6147
2.70k
        }
6148
12.8k
        if (byteorder)
6149
12.7k
            *byteorder = bo;
6150
12.8k
    }
6151
6152
13.6k
    if (q == e) {
6153
97
        if (consumed)
6154
0
            *consumed = size;
6155
97
        _Py_RETURN_UNICODE_EMPTY();
6156
97
    }
6157
6158
13.5k
#if PY_LITTLE_ENDIAN
6159
13.5k
    native_ordering = bo <= 0;
6160
13.5k
    encoding = bo <= 0 ? "utf-16-le" : "utf-16-be";
6161
#else
6162
    native_ordering = bo >= 0;
6163
    encoding = bo >= 0 ? "utf-16-be" : "utf-16-le";
6164
#endif
6165
6166
    /* Note: size will always be longer than the resulting Unicode
6167
       character count normally.  Error handler will take care of
6168
       resizing when needed. */
6169
13.5k
    _PyUnicodeWriter_Init(&writer);
6170
13.5k
    writer.min_length = (e - q + 1) / 2;
6171
13.5k
    if (_PyUnicodeWriter_Prepare(&writer, writer.min_length, 127) == -1)
6172
0
        goto onError;
6173
6174
53.9k
    while (1) {
6175
53.9k
        Py_UCS4 ch = 0;
6176
53.9k
        if (e - q >= 2) {
6177
47.3k
            int kind = writer.kind;
6178
47.3k
            if (kind == PyUnicode_1BYTE_KIND) {
6179
16.6k
                if (PyUnicode_IS_ASCII(writer.buffer))
6180
12.9k
                    ch = asciilib_utf16_decode(&q, e,
6181
12.9k
                            (Py_UCS1*)writer.data, &writer.pos,
6182
12.9k
                            native_ordering);
6183
3.75k
                else
6184
3.75k
                    ch = ucs1lib_utf16_decode(&q, e,
6185
3.75k
                            (Py_UCS1*)writer.data, &writer.pos,
6186
3.75k
                            native_ordering);
6187
30.6k
            } else if (kind == PyUnicode_2BYTE_KIND) {
6188
12.9k
                ch = ucs2lib_utf16_decode(&q, e,
6189
12.9k
                        (Py_UCS2*)writer.data, &writer.pos,
6190
12.9k
                        native_ordering);
6191
17.6k
            } else {
6192
17.6k
                assert(kind == PyUnicode_4BYTE_KIND);
6193
17.6k
                ch = ucs4lib_utf16_decode(&q, e,
6194
17.6k
                        (Py_UCS4*)writer.data, &writer.pos,
6195
17.6k
                        native_ordering);
6196
17.6k
            }
6197
47.3k
        }
6198
6199
53.9k
        switch (ch)
6200
53.9k
        {
6201
13.9k
        case 0:
6202
            /* remaining byte at the end? (size should be even) */
6203
13.9k
            if (q == e || consumed)
6204
8.59k
                goto End;
6205
5.40k
            errmsg = "truncated data";
6206
5.40k
            startinpos = ((const char *)q) - starts;
6207
5.40k
            endinpos = ((const char *)e) - starts;
6208
5.40k
            break;
6209
            /* The remaining input chars are ignored if the callback
6210
               chooses to skip the input */
6211
1.77k
        case 1:
6212
1.77k
            q -= 2;
6213
1.77k
            if (consumed)
6214
0
                goto End;
6215
1.77k
            errmsg = "unexpected end of data";
6216
1.77k
            startinpos = ((const char *)q) - starts;
6217
1.77k
            endinpos = ((const char *)e) - starts;
6218
1.77k
            break;
6219
14.9k
        case 2:
6220
14.9k
            errmsg = "illegal encoding";
6221
14.9k
            startinpos = ((const char *)q) - 2 - starts;
6222
14.9k
            endinpos = startinpos + 2;
6223
14.9k
            break;
6224
8.00k
        case 3:
6225
8.00k
            errmsg = "illegal UTF-16 surrogate";
6226
8.00k
            startinpos = ((const char *)q) - 4 - starts;
6227
8.00k
            endinpos = startinpos + 2;
6228
8.00k
            break;
6229
15.2k
        default:
6230
15.2k
            if (_PyUnicodeWriter_WriteCharInline(&writer, ch) < 0)
6231
0
                goto onError;
6232
15.2k
            continue;
6233
53.9k
        }
6234
6235
30.1k
        if (unicode_decode_call_errorhandler_writer(
6236
30.1k
                errors,
6237
30.1k
                &errorHandler,
6238
30.1k
                encoding, errmsg,
6239
30.1k
                &starts,
6240
30.1k
                (const char **)&e,
6241
30.1k
                &startinpos,
6242
30.1k
                &endinpos,
6243
30.1k
                &exc,
6244
30.1k
                (const char **)&q,
6245
30.1k
                &writer))
6246
4.93k
            goto onError;
6247
30.1k
    }
6248
6249
8.59k
End:
6250
8.59k
    if (consumed)
6251
0
        *consumed = (const char *)q-starts;
6252
6253
8.59k
    Py_XDECREF(errorHandler);
6254
8.59k
    Py_XDECREF(exc);
6255
8.59k
    return _PyUnicodeWriter_Finish(&writer);
6256
6257
4.93k
  onError:
6258
4.93k
    _PyUnicodeWriter_Dealloc(&writer);
6259
4.93k
    Py_XDECREF(errorHandler);
6260
4.93k
    Py_XDECREF(exc);
6261
4.93k
    return NULL;
6262
13.5k
}
6263
6264
PyObject *
6265
_PyUnicode_EncodeUTF16(PyObject *str,
6266
                       const char *errors,
6267
                       int byteorder)
6268
5.69k
{
6269
5.69k
    if (!PyUnicode_Check(str)) {
6270
0
        PyErr_BadArgument();
6271
0
        return NULL;
6272
0
    }
6273
5.69k
    int kind = PyUnicode_KIND(str);
6274
5.69k
    const void *data = PyUnicode_DATA(str);
6275
5.69k
    Py_ssize_t len = PyUnicode_GET_LENGTH(str);
6276
6277
5.69k
    Py_ssize_t pairs = 0;
6278
5.69k
    if (kind == PyUnicode_4BYTE_KIND) {
6279
0
        const Py_UCS4 *in = (const Py_UCS4 *)data;
6280
0
        const Py_UCS4 *end = in + len;
6281
0
        while (in < end) {
6282
0
            if (*in++ >= 0x10000) {
6283
0
                pairs++;
6284
0
            }
6285
0
        }
6286
0
    }
6287
5.69k
    if (len > PY_SSIZE_T_MAX / 2 - pairs - (byteorder == 0)) {
6288
0
        return PyErr_NoMemory();
6289
0
    }
6290
5.69k
    Py_ssize_t nsize = len + pairs + (byteorder == 0);
6291
6292
#if PY_BIG_ENDIAN
6293
    int native_ordering = byteorder >= 0;
6294
#else
6295
5.69k
    int native_ordering = byteorder <= 0;
6296
5.69k
#endif
6297
6298
5.69k
    if (kind == PyUnicode_1BYTE_KIND) {
6299
        // gh-139156: Don't use PyBytesWriter API here since it has an overhead
6300
        // on short strings
6301
5.64k
        PyObject *v = PyBytes_FromStringAndSize(NULL, nsize * 2);
6302
5.64k
        if (v == NULL) {
6303
0
            return NULL;
6304
0
        }
6305
6306
        /* output buffer is 2-bytes aligned */
6307
5.64k
        assert(_Py_IS_ALIGNED(PyBytes_AS_STRING(v), 2));
6308
5.64k
        unsigned short *out = (unsigned short *)PyBytes_AS_STRING(v);
6309
5.64k
        if (byteorder == 0) {
6310
0
            *out++ = 0xFEFF;
6311
0
        }
6312
5.64k
        if (len > 0) {
6313
5.64k
            ucs1lib_utf16_encode((const Py_UCS1 *)data, len, &out, native_ordering);
6314
5.64k
        }
6315
5.64k
        return v;
6316
5.64k
    }
6317
6318
47
    PyBytesWriter *writer = PyBytesWriter_Create(nsize * 2);
6319
47
    if (writer == NULL) {
6320
0
        return NULL;
6321
0
    }
6322
6323
    /* output buffer is 2-bytes aligned */
6324
47
    assert(_Py_IS_ALIGNED(PyBytesWriter_GetData(writer), 2));
6325
47
    unsigned short *out = PyBytesWriter_GetData(writer);
6326
47
    if (byteorder == 0) {
6327
0
        *out++ = 0xFEFF;
6328
0
    }
6329
47
    if (len == 0) {
6330
0
        return PyBytesWriter_Finish(writer);
6331
0
    }
6332
6333
47
    const char *encoding;
6334
47
    if (byteorder < 0) {
6335
0
        encoding = "utf-16-le";
6336
0
    }
6337
47
    else if (byteorder > 0) {
6338
47
        encoding = "utf-16-be";
6339
47
    }
6340
0
    else {
6341
0
        encoding = "utf-16";
6342
0
    }
6343
6344
47
    PyObject *errorHandler = NULL;
6345
47
    PyObject *exc = NULL;
6346
47
    PyObject *rep = NULL;
6347
6348
47
    for (Py_ssize_t pos = 0; pos < len; ) {
6349
47
        if (kind == PyUnicode_2BYTE_KIND) {
6350
47
            pos += ucs2lib_utf16_encode((const Py_UCS2 *)data + pos, len - pos,
6351
47
                                        &out, native_ordering);
6352
47
        }
6353
0
        else {
6354
0
            assert(kind == PyUnicode_4BYTE_KIND);
6355
0
            pos += ucs4lib_utf16_encode((const Py_UCS4 *)data + pos, len - pos,
6356
0
                                        &out, native_ordering);
6357
0
        }
6358
47
        if (pos == len)
6359
47
            break;
6360
6361
0
        Py_ssize_t newpos;
6362
0
        rep = unicode_encode_call_errorhandler(
6363
0
                errors, &errorHandler,
6364
0
                encoding, "surrogates not allowed",
6365
0
                str, &exc, pos, pos + 1, &newpos);
6366
0
        if (!rep)
6367
0
            goto error;
6368
6369
0
        Py_ssize_t repsize, moreunits;
6370
0
        if (PyBytes_Check(rep)) {
6371
0
            repsize = PyBytes_GET_SIZE(rep);
6372
0
            if (repsize & 1) {
6373
0
                raise_encode_exception(&exc, encoding,
6374
0
                                       str, pos, pos + 1,
6375
0
                                       "surrogates not allowed");
6376
0
                goto error;
6377
0
            }
6378
0
            moreunits = repsize / 2;
6379
0
        }
6380
0
        else {
6381
0
            assert(PyUnicode_Check(rep));
6382
0
            moreunits = repsize = PyUnicode_GET_LENGTH(rep);
6383
0
            if (!PyUnicode_IS_ASCII(rep)) {
6384
0
                raise_encode_exception(&exc, encoding,
6385
0
                                       str, pos, pos + 1,
6386
0
                                       "surrogates not allowed");
6387
0
                goto error;
6388
0
            }
6389
0
        }
6390
0
        moreunits += pos - newpos;
6391
0
        pos = newpos;
6392
6393
        /* two bytes are reserved for each surrogate */
6394
0
        if (moreunits > 0) {
6395
0
            out = PyBytesWriter_GrowAndUpdatePointer(writer, 2 * moreunits, out);
6396
0
            if (out == NULL) {
6397
0
                goto error;
6398
0
            }
6399
0
        }
6400
6401
0
        if (PyBytes_Check(rep)) {
6402
0
            memcpy(out, PyBytes_AS_STRING(rep), repsize);
6403
0
            out += repsize / 2;
6404
0
        } else {
6405
            /* rep is unicode */
6406
0
            assert(PyUnicode_KIND(rep) == PyUnicode_1BYTE_KIND);
6407
0
            ucs1lib_utf16_encode(PyUnicode_1BYTE_DATA(rep), repsize,
6408
0
                                 &out, native_ordering);
6409
0
        }
6410
6411
0
        Py_CLEAR(rep);
6412
0
    }
6413
6414
47
    Py_XDECREF(errorHandler);
6415
47
    Py_XDECREF(exc);
6416
6417
    /* Cut back to size actually needed. This is necessary for, for example,
6418
    encoding of a string containing isolated surrogates and the 'ignore' handler
6419
    is used. */
6420
47
    return PyBytesWriter_FinishWithPointer(writer, out);
6421
6422
0
  error:
6423
0
    Py_XDECREF(rep);
6424
0
    Py_XDECREF(errorHandler);
6425
0
    Py_XDECREF(exc);
6426
0
    PyBytesWriter_Discard(writer);
6427
0
    return NULL;
6428
47
}
6429
6430
PyObject *
6431
PyUnicode_AsUTF16String(PyObject *unicode)
6432
0
{
6433
0
    return _PyUnicode_EncodeUTF16(unicode, NULL, 0);
6434
0
}
6435
6436
_PyUnicode_Name_CAPI *
6437
_PyUnicode_GetNameCAPI(void)
6438
1.98k
{
6439
1.98k
    PyInterpreterState *interp = _PyInterpreterState_GET();
6440
1.98k
    _PyUnicode_Name_CAPI *ucnhash_capi;
6441
6442
1.98k
    ucnhash_capi = _Py_atomic_load_ptr(&interp->unicode.ucnhash_capi);
6443
1.98k
    if (ucnhash_capi == NULL) {
6444
1
        ucnhash_capi = (_PyUnicode_Name_CAPI *)PyCapsule_Import(
6445
1
                PyUnicodeData_CAPSULE_NAME, 1);
6446
6447
        // It's fine if we overwrite the value here. It's always the same value.
6448
1
        _Py_atomic_store_ptr(&interp->unicode.ucnhash_capi, ucnhash_capi);
6449
1
    }
6450
1.98k
    return ucnhash_capi;
6451
1.98k
}
6452
6453
/* --- Unicode Escape Codec ----------------------------------------------- */
6454
6455
PyObject *
6456
_PyUnicode_DecodeUnicodeEscapeInternal2(const char *s,
6457
                               Py_ssize_t size,
6458
                               const char *errors,
6459
                               Py_ssize_t *consumed,
6460
                               int *first_invalid_escape_char,
6461
                               const char **first_invalid_escape_ptr)
6462
24.0k
{
6463
24.0k
    const char *starts = s;
6464
24.0k
    const char *initial_starts = starts;
6465
24.0k
    _PyUnicodeWriter writer;
6466
24.0k
    const char *end;
6467
24.0k
    PyObject *errorHandler = NULL;
6468
24.0k
    PyObject *exc = NULL;
6469
24.0k
    _PyUnicode_Name_CAPI *ucnhash_capi;
6470
6471
    // so we can remember if we've seen an invalid escape char or not
6472
24.0k
    *first_invalid_escape_char = -1;
6473
24.0k
    *first_invalid_escape_ptr = NULL;
6474
6475
24.0k
    if (size == 0) {
6476
1.20k
        if (consumed) {
6477
0
            *consumed = 0;
6478
0
        }
6479
1.20k
        _Py_RETURN_UNICODE_EMPTY();
6480
1.20k
    }
6481
    /* Escaped strings will always be longer than the resulting
6482
       Unicode string, so we start with size here and then reduce the
6483
       length after conversion to the true value.
6484
       (but if the error callback returns a long replacement string
6485
       we'll have to allocate more space) */
6486
22.8k
    _PyUnicodeWriter_Init(&writer);
6487
22.8k
    writer.min_length = size;
6488
22.8k
    if (_PyUnicodeWriter_Prepare(&writer, size, 127) < 0) {
6489
0
        goto onError;
6490
0
    }
6491
6492
22.8k
    end = s + size;
6493
150k
    while (s < end) {
6494
128k
        unsigned char c = (unsigned char) *s++;
6495
128k
        Py_UCS4 ch;
6496
128k
        int count;
6497
128k
        const char *message;
6498
6499
128k
#define WRITE_ASCII_CHAR(ch)                                                  \
6500
128k
            do {                                                              \
6501
14.5k
                assert(ch <= 127);                                            \
6502
14.5k
                assert(writer.pos < writer.size);                             \
6503
14.5k
                PyUnicode_WRITE(writer.kind, writer.data, writer.pos++, ch);  \
6504
14.5k
            } while(0)
6505
6506
128k
#define WRITE_CHAR(ch)                                                        \
6507
128k
            do {                                                              \
6508
116k
                if (ch <= writer.maxchar) {                                   \
6509
103k
                    assert(writer.pos < writer.size);                         \
6510
103k
                    PyUnicode_WRITE(writer.kind, writer.data, writer.pos++, ch); \
6511
103k
                }                                                             \
6512
116k
                else if (_PyUnicodeWriter_WriteCharInline(&writer, ch) < 0) { \
6513
0
                    goto onError;                                             \
6514
0
                }                                                             \
6515
116k
            } while(0)
6516
6517
        /* Non-escape characters are interpreted as Unicode ordinals */
6518
128k
        if (c != '\\') {
6519
84.0k
            WRITE_CHAR(c);
6520
84.0k
            continue;
6521
84.0k
        }
6522
6523
44.0k
        Py_ssize_t startinpos = s - starts - 1;
6524
        /* \ - Escapes */
6525
44.0k
        if (s >= end) {
6526
0
            message = "\\ at end of string";
6527
0
            goto incomplete;
6528
0
        }
6529
44.0k
        c = (unsigned char) *s++;
6530
6531
44.0k
        assert(writer.pos < writer.size);
6532
44.0k
        switch (c) {
6533
6534
            /* \x escapes */
6535
503
        case '\n': continue;
6536
1.29k
        case '\\': WRITE_ASCII_CHAR('\\'); continue;
6537
1.04k
        case '\'': WRITE_ASCII_CHAR('\''); continue;
6538
1.16k
        case '\"': WRITE_ASCII_CHAR('\"'); continue;
6539
1.34k
        case 'b': WRITE_ASCII_CHAR('\b'); continue;
6540
        /* FF */
6541
552
        case 'f': WRITE_ASCII_CHAR('\014'); continue;
6542
805
        case 't': WRITE_ASCII_CHAR('\t'); continue;
6543
644
        case 'n': WRITE_ASCII_CHAR('\n'); continue;
6544
2.59k
        case 'r': WRITE_ASCII_CHAR('\r'); continue;
6545
        /* VT */
6546
720
        case 'v': WRITE_ASCII_CHAR('\013'); continue;
6547
        /* BEL, not classic C */
6548
667
        case 'a': WRITE_ASCII_CHAR('\007'); continue;
6549
6550
            /* \OOO (octal) escapes */
6551
2.77k
        case '0': case '1': case '2': case '3':
6552
5.19k
        case '4': case '5': case '6': case '7':
6553
5.19k
            ch = c - '0';
6554
5.19k
            if (s < end && '0' <= *s && *s <= '7') {
6555
2.05k
                ch = (ch<<3) + *s++ - '0';
6556
2.05k
                if (s < end && '0' <= *s && *s <= '7') {
6557
1.01k
                    ch = (ch<<3) + *s++ - '0';
6558
1.01k
                }
6559
2.05k
            }
6560
5.19k
            if (ch > 0377) {
6561
854
                if (*first_invalid_escape_char == -1) {
6562
446
                    *first_invalid_escape_char = ch;
6563
446
                    if (starts == initial_starts) {
6564
                        /* Back up 3 chars, since we've already incremented s. */
6565
446
                        *first_invalid_escape_ptr = s - 3;
6566
446
                    }
6567
446
                }
6568
854
            }
6569
5.19k
            WRITE_CHAR(ch);
6570
5.19k
            continue;
6571
6572
            /* hex escapes */
6573
            /* \xXX */
6574
5.58k
        case 'x':
6575
5.58k
            count = 2;
6576
5.58k
            message = "truncated \\xXX escape";
6577
5.58k
            goto hexescape;
6578
6579
            /* \uXXXX */
6580
6.55k
        case 'u':
6581
6.55k
            count = 4;
6582
6.55k
            message = "truncated \\uXXXX escape";
6583
6.55k
            goto hexescape;
6584
6585
            /* \UXXXXXXXX */
6586
9.68k
        case 'U':
6587
9.68k
            count = 8;
6588
9.68k
            message = "truncated \\UXXXXXXXX escape";
6589
21.8k
        hexescape:
6590
136k
            for (ch = 0; count; ++s, --count) {
6591
114k
                if (s >= end) {
6592
7
                    goto incomplete;
6593
7
                }
6594
114k
                c = (unsigned char)*s;
6595
114k
                ch <<= 4;
6596
114k
                if (c >= '0' && c <= '9') {
6597
86.6k
                    ch += c - '0';
6598
86.6k
                }
6599
28.1k
                else if (c >= 'a' && c <= 'f') {
6600
27.8k
                    ch += c - ('a' - 10);
6601
27.8k
                }
6602
268
                else if (c >= 'A' && c <= 'F') {
6603
262
                    ch += c - ('A' - 10);
6604
262
                }
6605
6
                else {
6606
6
                    goto error;
6607
6
                }
6608
114k
            }
6609
6610
            /* when we get here, ch is a 32-bit unicode character */
6611
21.8k
            if (ch > MAX_UNICODE) {
6612
1
                message = "illegal Unicode character";
6613
1
                goto error;
6614
1
            }
6615
6616
21.8k
            WRITE_CHAR(ch);
6617
21.8k
            continue;
6618
6619
            /* \N{name} */
6620
21.8k
        case 'N':
6621
1.98k
            ucnhash_capi = _PyUnicode_GetNameCAPI();
6622
1.98k
            if (ucnhash_capi == NULL) {
6623
0
                PyErr_SetString(
6624
0
                        PyExc_UnicodeError,
6625
0
                        "\\N escapes not supported (can't load unicodedata module)"
6626
0
                );
6627
0
                goto onError;
6628
0
            }
6629
6630
1.98k
            message = "malformed \\N character escape";
6631
1.98k
            if (s >= end) {
6632
4
                goto incomplete;
6633
4
            }
6634
1.97k
            if (*s == '{') {
6635
1.97k
                const char *start = ++s;
6636
1.97k
                size_t namelen;
6637
                /* look for the closing brace */
6638
17.4k
                while (s < end && *s != '}')
6639
15.5k
                    s++;
6640
1.97k
                if (s >= end) {
6641
8
                    goto incomplete;
6642
8
                }
6643
1.96k
                namelen = s - start;
6644
1.96k
                if (namelen) {
6645
                    /* found a name.  look it up in the unicode database */
6646
1.96k
                    s++;
6647
1.96k
                    ch = 0xffffffff; /* in case 'getcode' messes up */
6648
1.96k
                    if (namelen <= INT_MAX &&
6649
1.96k
                        ucnhash_capi->getcode(start, (int)namelen,
6650
1.96k
                                              &ch, 0)) {
6651
1.90k
                        assert(ch <= MAX_UNICODE);
6652
1.90k
                        WRITE_CHAR(ch);
6653
1.90k
                        continue;
6654
1.90k
                    }
6655
62
                    message = "unknown Unicode character name";
6656
62
                }
6657
1.96k
            }
6658
66
            goto error;
6659
6660
3.67k
        default:
6661
3.67k
            if (*first_invalid_escape_char == -1) {
6662
2.73k
                *first_invalid_escape_char = c;
6663
2.73k
                if (starts == initial_starts) {
6664
                    /* Back up one char, since we've already incremented s. */
6665
2.73k
                    *first_invalid_escape_ptr = s - 1;
6666
2.73k
                }
6667
2.73k
            }
6668
3.67k
            WRITE_ASCII_CHAR('\\');
6669
3.67k
            WRITE_CHAR(c);
6670
3.67k
            continue;
6671
44.0k
        }
6672
6673
19
      incomplete:
6674
19
        if (consumed) {
6675
0
            *consumed = startinpos;
6676
0
            break;
6677
0
        }
6678
92
      error:;
6679
92
        Py_ssize_t endinpos = s-starts;
6680
92
        writer.min_length = end - s + writer.pos;
6681
92
        if (unicode_decode_call_errorhandler_writer(
6682
92
                errors, &errorHandler,
6683
92
                "unicodeescape", message,
6684
92
                &starts, &end, &startinpos, &endinpos, &exc, &s,
6685
92
                &writer)) {
6686
92
            goto onError;
6687
92
        }
6688
92
        assert(end - s <= writer.size - writer.pos);
6689
6690
0
#undef WRITE_ASCII_CHAR
6691
0
#undef WRITE_CHAR
6692
0
    }
6693
6694
22.7k
    Py_XDECREF(errorHandler);
6695
22.7k
    Py_XDECREF(exc);
6696
22.7k
    return _PyUnicodeWriter_Finish(&writer);
6697
6698
92
  onError:
6699
92
    _PyUnicodeWriter_Dealloc(&writer);
6700
92
    Py_XDECREF(errorHandler);
6701
92
    Py_XDECREF(exc);
6702
92
    return NULL;
6703
22.8k
}
6704
6705
PyObject *
6706
_PyUnicode_DecodeUnicodeEscapeStateful(const char *s,
6707
                              Py_ssize_t size,
6708
                              const char *errors,
6709
                              Py_ssize_t *consumed)
6710
0
{
6711
0
    int first_invalid_escape_char;
6712
0
    const char *first_invalid_escape_ptr;
6713
0
    PyObject *result = _PyUnicode_DecodeUnicodeEscapeInternal2(s, size, errors,
6714
0
                                                      consumed,
6715
0
                                                      &first_invalid_escape_char,
6716
0
                                                      &first_invalid_escape_ptr);
6717
0
    if (result == NULL)
6718
0
        return NULL;
6719
0
    if (first_invalid_escape_char != -1) {
6720
0
        if (first_invalid_escape_char > 0xff) {
6721
0
            if (PyErr_WarnFormat(PyExc_DeprecationWarning, 1,
6722
0
                                 "\"\\%o\" is an invalid octal escape sequence. "
6723
0
                                 "Such sequences will not work in the future. ",
6724
0
                                 first_invalid_escape_char) < 0)
6725
0
            {
6726
0
                Py_DECREF(result);
6727
0
                return NULL;
6728
0
            }
6729
0
        }
6730
0
        else {
6731
0
            if (PyErr_WarnFormat(PyExc_DeprecationWarning, 1,
6732
0
                                 "\"\\%c\" is an invalid escape sequence. "
6733
0
                                 "Such sequences will not work in the future. ",
6734
0
                                 first_invalid_escape_char) < 0)
6735
0
            {
6736
0
                Py_DECREF(result);
6737
0
                return NULL;
6738
0
            }
6739
0
        }
6740
0
    }
6741
0
    return result;
6742
0
}
6743
6744
PyObject *
6745
PyUnicode_DecodeUnicodeEscape(const char *s,
6746
                              Py_ssize_t size,
6747
                              const char *errors)
6748
0
{
6749
0
    return _PyUnicode_DecodeUnicodeEscapeStateful(s, size, errors, NULL);
6750
0
}
6751
6752
/* Return a Unicode-Escape string version of the Unicode object. */
6753
6754
PyObject *
6755
PyUnicode_AsUnicodeEscapeString(PyObject *unicode)
6756
263k
{
6757
263k
    if (!PyUnicode_Check(unicode)) {
6758
0
        PyErr_BadArgument();
6759
0
        return NULL;
6760
0
    }
6761
6762
263k
    Py_ssize_t len = PyUnicode_GET_LENGTH(unicode);
6763
263k
    if (len == 0) {
6764
0
        return Py_GetConstant(Py_CONSTANT_EMPTY_BYTES);
6765
0
    }
6766
263k
    int kind = PyUnicode_KIND(unicode);
6767
263k
    const void *data = PyUnicode_DATA(unicode);
6768
6769
    /* Initial allocation is based on the longest-possible character
6770
     * escape.
6771
     *
6772
     * For UCS1 strings it's '\xxx', 4 bytes per source character.
6773
     * For UCS2 strings it's '\uxxxx', 6 bytes per source character.
6774
     * For UCS4 strings it's '\U00xxxxxx', 10 bytes per source character. */
6775
263k
    Py_ssize_t expandsize = kind * 2 + 2;
6776
263k
    if (len > PY_SSIZE_T_MAX / expandsize) {
6777
0
        return PyErr_NoMemory();
6778
0
    }
6779
6780
263k
    PyBytesWriter *writer = PyBytesWriter_Create(expandsize * len);
6781
263k
    if (writer == NULL) {
6782
0
        return NULL;
6783
0
    }
6784
263k
    char *p = PyBytesWriter_GetData(writer);
6785
6786
526k
    for (Py_ssize_t i = 0; i < len; i++) {
6787
263k
        Py_UCS4 ch = PyUnicode_READ(kind, data, i);
6788
6789
        /* U+0000-U+00ff range */
6790
263k
        if (ch < 0x100) {
6791
257k
            if (ch >= ' ' && ch < 127) {
6792
20.3k
                if (ch != '\\') {
6793
                    /* Copy printable US ASCII as-is */
6794
0
                    *p++ = (char) ch;
6795
0
                }
6796
                /* Escape backslashes */
6797
20.3k
                else {
6798
20.3k
                    *p++ = '\\';
6799
20.3k
                    *p++ = '\\';
6800
20.3k
                }
6801
20.3k
            }
6802
6803
            /* Map special whitespace to '\t', \n', '\r' */
6804
237k
            else if (ch == '\t') {
6805
2.50k
                *p++ = '\\';
6806
2.50k
                *p++ = 't';
6807
2.50k
            }
6808
235k
            else if (ch == '\n') {
6809
954
                *p++ = '\\';
6810
954
                *p++ = 'n';
6811
954
            }
6812
234k
            else if (ch == '\r') {
6813
506
                *p++ = '\\';
6814
506
                *p++ = 'r';
6815
506
            }
6816
6817
            /* Map non-printable US ASCII and 8-bit characters to '\xHH' */
6818
233k
            else {
6819
233k
                *p++ = '\\';
6820
233k
                *p++ = 'x';
6821
233k
                *p++ = Py_hexdigits[(ch >> 4) & 0x000F];
6822
233k
                *p++ = Py_hexdigits[ch & 0x000F];
6823
233k
            }
6824
257k
        }
6825
        /* U+0100-U+ffff range: Map 16-bit characters to '\uHHHH' */
6826
5.20k
        else if (ch < 0x10000) {
6827
4.49k
            *p++ = '\\';
6828
4.49k
            *p++ = 'u';
6829
4.49k
            *p++ = Py_hexdigits[(ch >> 12) & 0x000F];
6830
4.49k
            *p++ = Py_hexdigits[(ch >> 8) & 0x000F];
6831
4.49k
            *p++ = Py_hexdigits[(ch >> 4) & 0x000F];
6832
4.49k
            *p++ = Py_hexdigits[ch & 0x000F];
6833
4.49k
        }
6834
        /* U+010000-U+10ffff range: Map 21-bit characters to '\U00HHHHHH' */
6835
712
        else {
6836
6837
            /* Make sure that the first two digits are zero */
6838
712
            assert(ch <= MAX_UNICODE && MAX_UNICODE <= 0x10ffff);
6839
712
            *p++ = '\\';
6840
712
            *p++ = 'U';
6841
712
            *p++ = '0';
6842
712
            *p++ = '0';
6843
712
            *p++ = Py_hexdigits[(ch >> 20) & 0x0000000F];
6844
712
            *p++ = Py_hexdigits[(ch >> 16) & 0x0000000F];
6845
712
            *p++ = Py_hexdigits[(ch >> 12) & 0x0000000F];
6846
712
            *p++ = Py_hexdigits[(ch >> 8) & 0x0000000F];
6847
712
            *p++ = Py_hexdigits[(ch >> 4) & 0x0000000F];
6848
712
            *p++ = Py_hexdigits[ch & 0x0000000F];
6849
712
        }
6850
263k
    }
6851
6852
263k
    return PyBytesWriter_FinishWithPointer(writer, p);
6853
263k
}
6854
6855
/* --- Raw Unicode Escape Codec ------------------------------------------- */
6856
6857
PyObject *
6858
_PyUnicode_DecodeRawUnicodeEscapeStateful(const char *s,
6859
                                          Py_ssize_t size,
6860
                                          const char *errors,
6861
                                          Py_ssize_t *consumed)
6862
0
{
6863
0
    const char *starts = s;
6864
0
    _PyUnicodeWriter writer;
6865
0
    const char *end;
6866
0
    PyObject *errorHandler = NULL;
6867
0
    PyObject *exc = NULL;
6868
6869
0
    if (size == 0) {
6870
0
        if (consumed) {
6871
0
            *consumed = 0;
6872
0
        }
6873
0
        _Py_RETURN_UNICODE_EMPTY();
6874
0
    }
6875
6876
    /* Escaped strings will always be longer than the resulting
6877
       Unicode string, so we start with size here and then reduce the
6878
       length after conversion to the true value. (But decoding error
6879
       handler might have to resize the string) */
6880
0
    _PyUnicodeWriter_Init(&writer);
6881
0
    writer.min_length = size;
6882
0
    if (_PyUnicodeWriter_Prepare(&writer, size, 127) < 0) {
6883
0
        goto onError;
6884
0
    }
6885
6886
0
    end = s + size;
6887
0
    while (s < end) {
6888
0
        unsigned char c = (unsigned char) *s++;
6889
0
        Py_UCS4 ch;
6890
0
        int count;
6891
0
        const char *message;
6892
6893
0
#define WRITE_CHAR(ch)                                                        \
6894
0
            do {                                                              \
6895
0
                if (ch <= writer.maxchar) {                                   \
6896
0
                    assert(writer.pos < writer.size);                         \
6897
0
                    PyUnicode_WRITE(writer.kind, writer.data, writer.pos++, ch); \
6898
0
                }                                                             \
6899
0
                else if (_PyUnicodeWriter_WriteCharInline(&writer, ch) < 0) { \
6900
0
                    goto onError;                                             \
6901
0
                }                                                             \
6902
0
            } while(0)
6903
6904
        /* Non-escape characters are interpreted as Unicode ordinals */
6905
0
        if (c != '\\' || (s >= end && !consumed)) {
6906
0
            WRITE_CHAR(c);
6907
0
            continue;
6908
0
        }
6909
6910
0
        Py_ssize_t startinpos = s - starts - 1;
6911
        /* \ - Escapes */
6912
0
        if (s >= end) {
6913
0
            assert(consumed);
6914
            // Set message to silent compiler warning.
6915
            // Actually it is never used.
6916
0
            message = "\\ at end of string";
6917
0
            goto incomplete;
6918
0
        }
6919
6920
0
        c = (unsigned char) *s++;
6921
0
        if (c == 'u') {
6922
0
            count = 4;
6923
0
            message = "truncated \\uXXXX escape";
6924
0
        }
6925
0
        else if (c == 'U') {
6926
0
            count = 8;
6927
0
            message = "truncated \\UXXXXXXXX escape";
6928
0
        }
6929
0
        else {
6930
0
            assert(writer.pos < writer.size);
6931
0
            PyUnicode_WRITE(writer.kind, writer.data, writer.pos++, '\\');
6932
0
            WRITE_CHAR(c);
6933
0
            continue;
6934
0
        }
6935
6936
        /* \uHHHH with 4 hex digits, \U00HHHHHH with 8 */
6937
0
        for (ch = 0; count; ++s, --count) {
6938
0
            if (s >= end) {
6939
0
                goto incomplete;
6940
0
            }
6941
0
            c = (unsigned char)*s;
6942
0
            ch <<= 4;
6943
0
            if (c >= '0' && c <= '9') {
6944
0
                ch += c - '0';
6945
0
            }
6946
0
            else if (c >= 'a' && c <= 'f') {
6947
0
                ch += c - ('a' - 10);
6948
0
            }
6949
0
            else if (c >= 'A' && c <= 'F') {
6950
0
                ch += c - ('A' - 10);
6951
0
            }
6952
0
            else {
6953
0
                goto error;
6954
0
            }
6955
0
        }
6956
0
        if (ch > MAX_UNICODE) {
6957
0
            message = "\\Uxxxxxxxx out of range";
6958
0
            goto error;
6959
0
        }
6960
0
        WRITE_CHAR(ch);
6961
0
        continue;
6962
6963
0
      incomplete:
6964
0
        if (consumed) {
6965
0
            *consumed = startinpos;
6966
0
            break;
6967
0
        }
6968
0
      error:;
6969
0
        Py_ssize_t endinpos = s-starts;
6970
0
        writer.min_length = end - s + writer.pos;
6971
0
        if (unicode_decode_call_errorhandler_writer(
6972
0
                errors, &errorHandler,
6973
0
                "rawunicodeescape", message,
6974
0
                &starts, &end, &startinpos, &endinpos, &exc, &s,
6975
0
                &writer)) {
6976
0
            goto onError;
6977
0
        }
6978
0
        assert(end - s <= writer.size - writer.pos);
6979
6980
0
#undef WRITE_CHAR
6981
0
    }
6982
0
    Py_XDECREF(errorHandler);
6983
0
    Py_XDECREF(exc);
6984
0
    return _PyUnicodeWriter_Finish(&writer);
6985
6986
0
  onError:
6987
0
    _PyUnicodeWriter_Dealloc(&writer);
6988
0
    Py_XDECREF(errorHandler);
6989
0
    Py_XDECREF(exc);
6990
0
    return NULL;
6991
0
}
6992
6993
PyObject *
6994
PyUnicode_DecodeRawUnicodeEscape(const char *s,
6995
                                 Py_ssize_t size,
6996
                                 const char *errors)
6997
0
{
6998
0
    return _PyUnicode_DecodeRawUnicodeEscapeStateful(s, size, errors, NULL);
6999
0
}
7000
7001
7002
PyObject *
7003
PyUnicode_AsRawUnicodeEscapeString(PyObject *unicode)
7004
244k
{
7005
244k
    if (!PyUnicode_Check(unicode)) {
7006
0
        PyErr_BadArgument();
7007
0
        return NULL;
7008
0
    }
7009
244k
    int kind = PyUnicode_KIND(unicode);
7010
244k
    const void *data = PyUnicode_DATA(unicode);
7011
244k
    Py_ssize_t len = PyUnicode_GET_LENGTH(unicode);
7012
244k
    if (len == 0) {
7013
541
        return Py_GetConstant(Py_CONSTANT_EMPTY_BYTES);
7014
541
    }
7015
244k
    if (kind == PyUnicode_1BYTE_KIND) {
7016
243k
        return PyBytes_FromStringAndSize(data, len);
7017
243k
    }
7018
7019
    /* 4 byte characters can take up 10 bytes, 2 byte characters can take up 6
7020
       bytes, and 1 byte characters 4. */
7021
305
    Py_ssize_t expandsize = kind * 2 + 2;
7022
305
    if (len > PY_SSIZE_T_MAX / expandsize) {
7023
0
        return PyErr_NoMemory();
7024
0
    }
7025
7026
305
    PyBytesWriter *writer = PyBytesWriter_Create(expandsize * len);
7027
305
    if (writer == NULL) {
7028
0
        return NULL;
7029
0
    }
7030
305
    char *p = PyBytesWriter_GetData(writer);
7031
7032
3.32M
    for (Py_ssize_t pos = 0; pos < len; pos++) {
7033
3.32M
        Py_UCS4 ch = PyUnicode_READ(kind, data, pos);
7034
7035
        /* U+0000-U+00ff range: Copy 8-bit characters as-is */
7036
3.32M
        if (ch < 0x100) {
7037
3.30M
            *p++ = (char) ch;
7038
3.30M
        }
7039
        /* U+0100-U+ffff range: Map 16-bit characters to '\uHHHH' */
7040
23.5k
        else if (ch < 0x10000) {
7041
23.2k
            *p++ = '\\';
7042
23.2k
            *p++ = 'u';
7043
23.2k
            *p++ = Py_hexdigits[(ch >> 12) & 0xf];
7044
23.2k
            *p++ = Py_hexdigits[(ch >> 8) & 0xf];
7045
23.2k
            *p++ = Py_hexdigits[(ch >> 4) & 0xf];
7046
23.2k
            *p++ = Py_hexdigits[ch & 15];
7047
23.2k
        }
7048
        /* U+010000-U+10ffff range: Map 32-bit characters to '\U00HHHHHH' */
7049
352
        else {
7050
352
            assert(ch <= MAX_UNICODE && MAX_UNICODE <= 0x10ffff);
7051
352
            *p++ = '\\';
7052
352
            *p++ = 'U';
7053
352
            *p++ = '0';
7054
352
            *p++ = '0';
7055
352
            *p++ = Py_hexdigits[(ch >> 20) & 0xf];
7056
352
            *p++ = Py_hexdigits[(ch >> 16) & 0xf];
7057
352
            *p++ = Py_hexdigits[(ch >> 12) & 0xf];
7058
352
            *p++ = Py_hexdigits[(ch >> 8) & 0xf];
7059
352
            *p++ = Py_hexdigits[(ch >> 4) & 0xf];
7060
352
            *p++ = Py_hexdigits[ch & 15];
7061
352
        }
7062
3.32M
    }
7063
7064
305
    return PyBytesWriter_FinishWithPointer(writer, p);
7065
305
}
7066
7067
/* --- Latin-1 Codec ------------------------------------------------------ */
7068
7069
PyObject *
7070
PyUnicode_DecodeLatin1(const char *s,
7071
                       Py_ssize_t size,
7072
                       const char *errors)
7073
2.95M
{
7074
    /* Latin-1 is equivalent to the first 256 ordinals in Unicode. */
7075
2.95M
    return _PyUnicode_FromUCS1((const unsigned char*)s, size);
7076
2.95M
}
7077
7078
/* create or adjust a UnicodeEncodeError */
7079
static void
7080
make_encode_exception(PyObject **exceptionObject,
7081
                      const char *encoding,
7082
                      PyObject *unicode,
7083
                      Py_ssize_t startpos, Py_ssize_t endpos,
7084
                      const char *reason)
7085
167k
{
7086
167k
    if (*exceptionObject == NULL) {
7087
167k
        *exceptionObject = PyObject_CallFunction(
7088
167k
            PyExc_UnicodeEncodeError, "sOnns",
7089
167k
            encoding, unicode, startpos, endpos, reason);
7090
167k
    }
7091
0
    else {
7092
0
        if (PyUnicodeEncodeError_SetStart(*exceptionObject, startpos))
7093
0
            goto onError;
7094
0
        if (PyUnicodeEncodeError_SetEnd(*exceptionObject, endpos))
7095
0
            goto onError;
7096
0
        if (PyUnicodeEncodeError_SetReason(*exceptionObject, reason))
7097
0
            goto onError;
7098
0
        return;
7099
0
      onError:
7100
0
        Py_CLEAR(*exceptionObject);
7101
0
    }
7102
167k
}
7103
7104
/* raises a UnicodeEncodeError */
7105
static void
7106
raise_encode_exception(PyObject **exceptionObject,
7107
                       const char *encoding,
7108
                       PyObject *unicode,
7109
                       Py_ssize_t startpos, Py_ssize_t endpos,
7110
                       const char *reason)
7111
39.8k
{
7112
39.8k
    make_encode_exception(exceptionObject,
7113
39.8k
                          encoding, unicode, startpos, endpos, reason);
7114
39.8k
    if (*exceptionObject != NULL)
7115
39.8k
        PyCodec_StrictErrors(*exceptionObject);
7116
39.8k
}
7117
7118
/* error handling callback helper:
7119
   build arguments, call the callback and check the arguments,
7120
   put the result into newpos and return the replacement string, which
7121
   has to be freed by the caller */
7122
static PyObject *
7123
unicode_encode_call_errorhandler(const char *errors,
7124
                                 PyObject **errorHandler,
7125
                                 const char *encoding, const char *reason,
7126
                                 PyObject *unicode, PyObject **exceptionObject,
7127
                                 Py_ssize_t startpos, Py_ssize_t endpos,
7128
                                 Py_ssize_t *newpos)
7129
127k
{
7130
127k
    static const char *argparse = "On;encoding error handler must return (str/bytes, int) tuple";
7131
127k
    Py_ssize_t len;
7132
127k
    PyObject *restuple;
7133
127k
    PyObject *resunicode;
7134
7135
127k
    if (*errorHandler == NULL) {
7136
127k
        *errorHandler = PyCodec_LookupError(errors);
7137
127k
        if (*errorHandler == NULL)
7138
0
            return NULL;
7139
127k
    }
7140
7141
127k
    len = PyUnicode_GET_LENGTH(unicode);
7142
7143
127k
    make_encode_exception(exceptionObject,
7144
127k
                          encoding, unicode, startpos, endpos, reason);
7145
127k
    if (*exceptionObject == NULL)
7146
0
        return NULL;
7147
7148
127k
    restuple = PyObject_CallOneArg(*errorHandler, *exceptionObject);
7149
127k
    if (restuple == NULL)
7150
127k
        return NULL;
7151
0
    if (!PyTuple_Check(restuple)) {
7152
0
        PyErr_SetString(PyExc_TypeError, &argparse[3]);
7153
0
        Py_DECREF(restuple);
7154
0
        return NULL;
7155
0
    }
7156
0
    if (!PyArg_ParseTuple(restuple, argparse,
7157
0
                          &resunicode, newpos)) {
7158
0
        Py_DECREF(restuple);
7159
0
        return NULL;
7160
0
    }
7161
0
    if (!PyUnicode_Check(resunicode) && !PyBytes_Check(resunicode)) {
7162
0
        PyErr_SetString(PyExc_TypeError, &argparse[3]);
7163
0
        Py_DECREF(restuple);
7164
0
        return NULL;
7165
0
    }
7166
0
    if (*newpos<0)
7167
0
        *newpos = len + *newpos;
7168
0
    if (*newpos<0 || *newpos>len) {
7169
0
        PyErr_Format(PyExc_IndexError, "position %zd from error handler out of bounds", *newpos);
7170
0
        Py_DECREF(restuple);
7171
0
        return NULL;
7172
0
    }
7173
0
    Py_INCREF(resunicode);
7174
0
    Py_DECREF(restuple);
7175
0
    return resunicode;
7176
0
}
7177
7178
static PyObject *
7179
unicode_encode_ucs1(PyObject *unicode,
7180
                    const char *errors,
7181
                    const Py_UCS4 limit)
7182
49.9k
{
7183
    /* input state */
7184
49.9k
    Py_ssize_t pos=0, size;
7185
49.9k
    int kind;
7186
49.9k
    const void *data;
7187
49.9k
    const char *encoding = (limit == 256) ? "latin-1" : "ascii";
7188
49.9k
    const char *reason = (limit == 256) ? "ordinal not in range(256)" : "ordinal not in range(128)";
7189
49.9k
    PyObject *error_handler_obj = NULL;
7190
49.9k
    PyObject *exc = NULL;
7191
49.9k
    _Py_error_handler error_handler = _Py_ERROR_UNKNOWN;
7192
49.9k
    PyObject *rep = NULL;
7193
7194
49.9k
    size = PyUnicode_GET_LENGTH(unicode);
7195
49.9k
    kind = PyUnicode_KIND(unicode);
7196
49.9k
    data = PyUnicode_DATA(unicode);
7197
    /* allocate enough for a simple encoding without
7198
       replacements, if we need more, we'll resize */
7199
49.9k
    if (size == 0)
7200
0
        return Py_GetConstant(Py_CONSTANT_EMPTY_BYTES);
7201
7202
    /* output object */
7203
49.9k
    PyBytesWriter *writer = PyBytesWriter_Create(size);
7204
49.9k
    if (writer == NULL) {
7205
0
        return NULL;
7206
0
    }
7207
    /* pointer into the output */
7208
49.9k
    char *str = PyBytesWriter_GetData(writer);
7209
7210
4.92M
    while (pos < size) {
7211
4.92M
        Py_UCS4 ch = PyUnicode_READ(kind, data, pos);
7212
7213
        /* can we encode this? */
7214
4.92M
        if (ch < limit) {
7215
            /* no overflow check, because we know that the space is enough */
7216
4.87M
            *str++ = (char)ch;
7217
4.87M
            ++pos;
7218
4.87M
        }
7219
49.9k
        else {
7220
49.9k
            Py_ssize_t newpos, i;
7221
            /* startpos for collecting unencodable chars */
7222
49.9k
            Py_ssize_t collstart = pos;
7223
49.9k
            Py_ssize_t collend = collstart + 1;
7224
            /* find all unecodable characters */
7225
7226
350k
            while ((collend < size) && (PyUnicode_READ(kind, data, collend) >= limit))
7227
300k
                ++collend;
7228
7229
            /* Only overallocate the buffer if it's not the last write */
7230
49.9k
            writer->overallocate = (collend < size);
7231
7232
            /* cache callback name lookup (if not done yet, i.e. it's the first error) */
7233
49.9k
            if (error_handler == _Py_ERROR_UNKNOWN)
7234
49.9k
                error_handler = _Py_GetErrorHandler(errors);
7235
7236
49.9k
            switch (error_handler) {
7237
39.8k
            case _Py_ERROR_STRICT:
7238
39.8k
                raise_encode_exception(&exc, encoding, unicode, collstart, collend, reason);
7239
39.8k
                goto onError;
7240
7241
0
            case _Py_ERROR_REPLACE:
7242
0
                memset(str, '?', collend - collstart);
7243
0
                str += (collend - collstart);
7244
0
                _Py_FALLTHROUGH;
7245
0
            case _Py_ERROR_IGNORE:
7246
0
                pos = collend;
7247
0
                break;
7248
7249
0
            case _Py_ERROR_BACKSLASHREPLACE:
7250
                /* subtract preallocated bytes */
7251
0
                writer->size -= (collend - collstart);
7252
0
                str = backslashreplace(writer, str,
7253
0
                                       unicode, collstart, collend);
7254
0
                if (str == NULL)
7255
0
                    goto onError;
7256
0
                pos = collend;
7257
0
                break;
7258
7259
0
            case _Py_ERROR_XMLCHARREFREPLACE:
7260
                /* subtract preallocated bytes */
7261
0
                writer->size -= (collend - collstart);
7262
0
                str = xmlcharrefreplace(writer, str,
7263
0
                                        unicode, collstart, collend);
7264
0
                if (str == NULL)
7265
0
                    goto onError;
7266
0
                pos = collend;
7267
0
                break;
7268
7269
10.1k
            case _Py_ERROR_SURROGATEESCAPE:
7270
10.1k
                for (i = collstart; i < collend; ++i) {
7271
10.1k
                    ch = PyUnicode_READ(kind, data, i);
7272
10.1k
                    if (ch < 0xdc80 || 0xdcff < ch) {
7273
                        /* Not a UTF-8b surrogate */
7274
10.1k
                        break;
7275
10.1k
                    }
7276
0
                    *str++ = (char)(ch - 0xdc00);
7277
0
                    ++pos;
7278
0
                }
7279
10.1k
                if (i >= collend)
7280
0
                    break;
7281
10.1k
                collstart = pos;
7282
10.1k
                assert(collstart != collend);
7283
10.1k
                _Py_FALLTHROUGH;
7284
7285
10.1k
            default:
7286
10.1k
                rep = unicode_encode_call_errorhandler(errors, &error_handler_obj,
7287
10.1k
                                                       encoding, reason, unicode, &exc,
7288
10.1k
                                                       collstart, collend, &newpos);
7289
10.1k
                if (rep == NULL)
7290
10.1k
                    goto onError;
7291
7292
0
                if (newpos < collstart) {
7293
0
                    writer->overallocate = 1;
7294
0
                    str = PyBytesWriter_GrowAndUpdatePointer(writer,
7295
0
                                                             collstart - newpos,
7296
0
                                                             str);
7297
0
                    if (str == NULL) {
7298
0
                        goto onError;
7299
0
                    }
7300
0
                }
7301
0
                else {
7302
                    /* subtract preallocated bytes */
7303
0
                    writer->size -= newpos - collstart;
7304
                    /* Only overallocate the buffer if it's not the last write */
7305
0
                    writer->overallocate = (newpos < size);
7306
0
                }
7307
7308
0
                char *rep_str;
7309
0
                Py_ssize_t rep_len;
7310
0
                if (PyBytes_Check(rep)) {
7311
                    /* Directly copy bytes result to output. */
7312
0
                    rep_str = PyBytes_AS_STRING(rep);
7313
0
                    rep_len = PyBytes_GET_SIZE(rep);
7314
0
                }
7315
0
                else {
7316
0
                    assert(PyUnicode_Check(rep));
7317
7318
0
                    if (limit == 256 ?
7319
0
                        PyUnicode_KIND(rep) != PyUnicode_1BYTE_KIND :
7320
0
                        !PyUnicode_IS_ASCII(rep))
7321
0
                    {
7322
                        /* Not all characters are smaller than limit */
7323
0
                        raise_encode_exception(&exc, encoding, unicode,
7324
0
                                               collstart, collend, reason);
7325
0
                        goto onError;
7326
0
                    }
7327
0
                    assert(PyUnicode_KIND(rep) == PyUnicode_1BYTE_KIND);
7328
0
                    rep_str = PyUnicode_DATA(rep);
7329
0
                    rep_len = PyUnicode_GET_LENGTH(rep);
7330
0
                }
7331
7332
0
                str = PyBytesWriter_GrowAndUpdatePointer(writer, rep_len, str);
7333
0
                if (str == NULL) {
7334
0
                    goto onError;
7335
0
                }
7336
0
                memcpy(str, rep_str, rep_len);
7337
0
                str += rep_len;
7338
7339
0
                pos = newpos;
7340
0
                Py_CLEAR(rep);
7341
49.9k
            }
7342
7343
            /* If overallocation was disabled, ensure that it was the last
7344
               write. Otherwise, we missed an optimization */
7345
49.9k
            assert(writer->overallocate || pos == size);
7346
0
        }
7347
4.92M
    }
7348
7349
0
    Py_XDECREF(error_handler_obj);
7350
0
    Py_XDECREF(exc);
7351
0
    return PyBytesWriter_FinishWithPointer(writer, str);
7352
7353
49.9k
  onError:
7354
49.9k
    Py_XDECREF(rep);
7355
49.9k
    PyBytesWriter_Discard(writer);
7356
49.9k
    Py_XDECREF(error_handler_obj);
7357
49.9k
    Py_XDECREF(exc);
7358
49.9k
    return NULL;
7359
49.9k
}
7360
7361
PyObject *
7362
_PyUnicode_AsLatin1String(PyObject *unicode, const char *errors)
7363
0
{
7364
0
    if (!PyUnicode_Check(unicode)) {
7365
0
        PyErr_BadArgument();
7366
0
        return NULL;
7367
0
    }
7368
    /* Fast path: if it is a one-byte string, construct
7369
       bytes object directly. */
7370
0
    if (PyUnicode_KIND(unicode) == PyUnicode_1BYTE_KIND)
7371
0
        return PyBytes_FromStringAndSize(PyUnicode_DATA(unicode),
7372
0
                                         PyUnicode_GET_LENGTH(unicode));
7373
    /* Non-Latin-1 characters present. Defer to above function to
7374
       raise the exception. */
7375
0
    return unicode_encode_ucs1(unicode, errors, 256);
7376
0
}
7377
7378
PyObject*
7379
PyUnicode_AsLatin1String(PyObject *unicode)
7380
0
{
7381
0
    return _PyUnicode_AsLatin1String(unicode, NULL);
7382
0
}
7383
7384
/* --- 7-bit ASCII Codec -------------------------------------------------- */
7385
7386
PyObject *
7387
PyUnicode_DecodeASCII(const char *s,
7388
                      Py_ssize_t size,
7389
                      const char *errors)
7390
9.27M
{
7391
9.27M
    const char *starts = s;
7392
9.27M
    const char *e = s + size;
7393
9.27M
    PyObject *error_handler_obj = NULL;
7394
9.27M
    PyObject *exc = NULL;
7395
9.27M
    _Py_error_handler error_handler = _Py_ERROR_UNKNOWN;
7396
7397
9.27M
    if (size == 0)
7398
0
        _Py_RETURN_UNICODE_EMPTY();
7399
7400
    /* ASCII is equivalent to the first 128 ordinals in Unicode. */
7401
9.27M
    if (size == 1 && (unsigned char)s[0] < 128) {
7402
16.9k
        return get_latin1_char((unsigned char)s[0]);
7403
16.9k
    }
7404
7405
    // Shortcut for simple case
7406
9.25M
    PyObject *u = PyUnicode_New(size, 127);
7407
9.25M
    if (u == NULL) {
7408
0
        return NULL;
7409
0
    }
7410
9.25M
    Py_ssize_t outpos = ascii_decode(s, e, PyUnicode_1BYTE_DATA(u));
7411
9.25M
    if (outpos == size) {
7412
7.33M
        return u;
7413
7.33M
    }
7414
7415
1.91M
    _PyUnicodeWriter writer;
7416
1.91M
    _PyUnicodeWriter_InitWithBuffer(&writer, u);
7417
1.91M
    writer.pos = outpos;
7418
7419
1.91M
    s += outpos;
7420
1.91M
    int kind = writer.kind;
7421
1.91M
    void *data = writer.data;
7422
1.91M
    Py_ssize_t startinpos, endinpos;
7423
7424
16.5M
    while (s < e) {
7425
16.4M
        unsigned char c = (unsigned char)*s;
7426
16.4M
        if (c < 128) {
7427
5.38M
            PyUnicode_WRITE(kind, data, writer.pos, c);
7428
5.38M
            writer.pos++;
7429
5.38M
            ++s;
7430
5.38M
            continue;
7431
5.38M
        }
7432
7433
        /* byte outsize range 0x00..0x7f: call the error handler */
7434
7435
11.0M
        if (error_handler == _Py_ERROR_UNKNOWN)
7436
1.91M
            error_handler = _Py_GetErrorHandler(errors);
7437
7438
11.0M
        switch (error_handler)
7439
11.0M
        {
7440
907k
        case _Py_ERROR_REPLACE:
7441
9.25M
        case _Py_ERROR_SURROGATEESCAPE:
7442
            /* Fast-path: the error handler only writes one character,
7443
               but we may switch to UCS2 at the first write */
7444
9.25M
            if (_PyUnicodeWriter_PrepareKind(&writer, PyUnicode_2BYTE_KIND) < 0)
7445
0
                goto onError;
7446
9.25M
            kind = writer.kind;
7447
9.25M
            data = writer.data;
7448
7449
9.25M
            if (error_handler == _Py_ERROR_REPLACE)
7450
907k
                PyUnicode_WRITE(kind, data, writer.pos, 0xfffd);
7451
8.34M
            else
7452
8.34M
                PyUnicode_WRITE(kind, data, writer.pos, c + 0xdc00);
7453
9.25M
            writer.pos++;
7454
9.25M
            ++s;
7455
9.25M
            break;
7456
7457
0
        case _Py_ERROR_IGNORE:
7458
0
            ++s;
7459
0
            break;
7460
7461
1.77M
        default:
7462
1.77M
            startinpos = s-starts;
7463
1.77M
            endinpos = startinpos + 1;
7464
1.77M
            if (unicode_decode_call_errorhandler_writer(
7465
1.77M
                    errors, &error_handler_obj,
7466
1.77M
                    "ascii", "ordinal not in range(128)",
7467
1.77M
                    &starts, &e, &startinpos, &endinpos, &exc, &s,
7468
1.77M
                    &writer))
7469
1.77M
                goto onError;
7470
0
            kind = writer.kind;
7471
0
            data = writer.data;
7472
11.0M
        }
7473
11.0M
    }
7474
140k
    Py_XDECREF(error_handler_obj);
7475
140k
    Py_XDECREF(exc);
7476
140k
    return _PyUnicodeWriter_Finish(&writer);
7477
7478
1.77M
  onError:
7479
1.77M
    _PyUnicodeWriter_Dealloc(&writer);
7480
1.77M
    Py_XDECREF(error_handler_obj);
7481
1.77M
    Py_XDECREF(exc);
7482
1.77M
    return NULL;
7483
1.91M
}
7484
7485
PyObject *
7486
_PyUnicode_AsASCIIString(PyObject *unicode, const char *errors)
7487
210k
{
7488
210k
    if (!PyUnicode_Check(unicode)) {
7489
0
        PyErr_BadArgument();
7490
0
        return NULL;
7491
0
    }
7492
    /* Fast path: if it is an ASCII-only string, construct bytes object
7493
       directly. Else defer to above function to raise the exception. */
7494
210k
    if (PyUnicode_IS_ASCII(unicode))
7495
160k
        return PyBytes_FromStringAndSize(PyUnicode_DATA(unicode),
7496
160k
                                         PyUnicode_GET_LENGTH(unicode));
7497
49.9k
    return unicode_encode_ucs1(unicode, errors, 128);
7498
210k
}
7499
7500
PyObject *
7501
PyUnicode_AsASCIIString(PyObject *unicode)
7502
112k
{
7503
112k
    return _PyUnicode_AsASCIIString(unicode, NULL);
7504
112k
}
7505
7506
#ifdef MS_WINDOWS
7507
7508
/* --- MBCS codecs for Windows -------------------------------------------- */
7509
7510
#if SIZEOF_INT < SIZEOF_SIZE_T
7511
#define NEED_RETRY
7512
#endif
7513
7514
/* INT_MAX is the theoretical largest chunk (or INT_MAX / 2 when
7515
   transcoding from UTF-16), but INT_MAX / 4 performs better in
7516
   both cases also and avoids partial characters overrunning the
7517
   length limit in MultiByteToWideChar on Windows */
7518
#define DECODING_CHUNK_SIZE (INT_MAX/4)
7519
7520
#ifndef WC_ERR_INVALID_CHARS
7521
#  define WC_ERR_INVALID_CHARS 0x0080
7522
#endif
7523
7524
static const char*
7525
code_page_name(UINT code_page, PyObject **obj)
7526
{
7527
    *obj = NULL;
7528
    if (code_page == CP_ACP)
7529
        return "mbcs";
7530
7531
    *obj = PyBytes_FromFormat("cp%u", code_page);
7532
    if (*obj == NULL)
7533
        return NULL;
7534
    return PyBytes_AS_STRING(*obj);
7535
}
7536
7537
static DWORD
7538
decode_code_page_flags(UINT code_page)
7539
{
7540
    if (code_page == CP_UTF7) {
7541
        /* The CP_UTF7 decoder only supports flags=0 */
7542
        return 0;
7543
    }
7544
    else
7545
        return MB_ERR_INVALID_CHARS;
7546
}
7547
7548
/*
7549
 * Decode a byte string from a Windows code page into unicode object in strict
7550
 * mode.
7551
 *
7552
 * Returns consumed size if succeed, returns -2 on decode error, or raise an
7553
 * OSError and returns -1 on other error.
7554
 */
7555
static int
7556
decode_code_page_strict(UINT code_page,
7557
                        wchar_t **buf,
7558
                        Py_ssize_t *bufsize,
7559
                        const char *in,
7560
                        int insize)
7561
{
7562
    DWORD flags = MB_ERR_INVALID_CHARS;
7563
    wchar_t *out;
7564
    DWORD outsize;
7565
7566
    /* First get the size of the result */
7567
    assert(insize > 0);
7568
    while ((outsize = MultiByteToWideChar(code_page, flags,
7569
                                          in, insize, NULL, 0)) <= 0)
7570
    {
7571
        if (!flags || GetLastError() != ERROR_INVALID_FLAGS) {
7572
            goto error;
7573
        }
7574
        /* For some code pages (e.g. UTF-7) flags must be set to 0. */
7575
        flags = 0;
7576
    }
7577
7578
    /* Extend a wchar_t* buffer */
7579
    Py_ssize_t n = *bufsize;   /* Get the current length */
7580
    if (widechar_resize(buf, bufsize, n + outsize) < 0) {
7581
        return -1;
7582
    }
7583
    out = *buf + n;
7584
7585
    /* Do the conversion */
7586
    outsize = MultiByteToWideChar(code_page, flags, in, insize, out, outsize);
7587
    if (outsize <= 0)
7588
        goto error;
7589
    return insize;
7590
7591
error:
7592
    if (GetLastError() == ERROR_NO_UNICODE_TRANSLATION)
7593
        return -2;
7594
    PyErr_SetFromWindowsErr(0);
7595
    return -1;
7596
}
7597
7598
/*
7599
 * Decode a byte string from a code page into unicode object with an error
7600
 * handler.
7601
 *
7602
 * Returns consumed size if succeed, or raise an OSError or
7603
 * UnicodeDecodeError exception and returns -1 on error.
7604
 */
7605
static int
7606
decode_code_page_errors(UINT code_page,
7607
                        wchar_t **buf,
7608
                        Py_ssize_t *bufsize,
7609
                        const char *in, const int size,
7610
                        const char *errors, int final)
7611
{
7612
    const char *startin = in;
7613
    const char *endin = in + size;
7614
    DWORD flags = MB_ERR_INVALID_CHARS;
7615
    /* Ideally, we should get reason from FormatMessage. This is the Windows
7616
       2000 English version of the message. */
7617
    const char *reason = "No mapping for the Unicode character exists "
7618
                         "in the target code page.";
7619
    /* each step cannot decode more than 1 character, but a character can be
7620
       represented as a surrogate pair */
7621
    wchar_t buffer[2], *out;
7622
    int insize;
7623
    Py_ssize_t outsize;
7624
    PyObject *errorHandler = NULL;
7625
    PyObject *exc = NULL;
7626
    PyObject *encoding_obj = NULL;
7627
    const char *encoding;
7628
    DWORD err;
7629
    int ret = -1;
7630
7631
    assert(size > 0);
7632
7633
    encoding = code_page_name(code_page, &encoding_obj);
7634
    if (encoding == NULL)
7635
        return -1;
7636
7637
    if ((errors == NULL || strcmp(errors, "strict") == 0) && final) {
7638
        /* The last error was ERROR_NO_UNICODE_TRANSLATION, then we raise a
7639
           UnicodeDecodeError. */
7640
        make_decode_exception(&exc, encoding, in, size, 0, 0, reason);
7641
        if (exc != NULL) {
7642
            PyCodec_StrictErrors(exc);
7643
            Py_CLEAR(exc);
7644
        }
7645
        goto error;
7646
    }
7647
7648
    /* Extend a wchar_t* buffer */
7649
    Py_ssize_t n = *bufsize;   /* Get the current length */
7650
    if (size > (PY_SSIZE_T_MAX - n) / (Py_ssize_t)Py_ARRAY_LENGTH(buffer)) {
7651
        PyErr_NoMemory();
7652
        goto error;
7653
    }
7654
    if (widechar_resize(buf, bufsize, n + size * Py_ARRAY_LENGTH(buffer)) < 0) {
7655
        goto error;
7656
    }
7657
    out = *buf + n;
7658
7659
    /* Decode the byte string character per character */
7660
    while (in < endin)
7661
    {
7662
        /* Decode a character */
7663
        insize = 1;
7664
        do
7665
        {
7666
            outsize = MultiByteToWideChar(code_page, flags,
7667
                                          in, insize,
7668
                                          buffer, Py_ARRAY_LENGTH(buffer));
7669
            if (outsize > 0)
7670
                break;
7671
            err = GetLastError();
7672
            if (err == ERROR_INVALID_FLAGS && flags) {
7673
                /* For some code pages (e.g. UTF-7) flags must be set to 0. */
7674
                flags = 0;
7675
                continue;
7676
            }
7677
            if (err != ERROR_NO_UNICODE_TRANSLATION
7678
                && err != ERROR_INSUFFICIENT_BUFFER)
7679
            {
7680
                PyErr_SetFromWindowsErr(err);
7681
                goto error;
7682
            }
7683
            insize++;
7684
        }
7685
        /* 4=maximum length of a UTF-8 sequence */
7686
        while (insize <= 4 && (in + insize) <= endin);
7687
7688
        if (outsize <= 0) {
7689
            Py_ssize_t startinpos, endinpos, outpos;
7690
7691
            /* last character in partial decode? */
7692
            if (in + insize >= endin && !final)
7693
                break;
7694
7695
            startinpos = in - startin;
7696
            endinpos = startinpos + 1;
7697
            outpos = out - *buf;
7698
            if (unicode_decode_call_errorhandler_wchar(
7699
                    errors, &errorHandler,
7700
                    encoding, reason,
7701
                    &startin, &endin, &startinpos, &endinpos, &exc, &in,
7702
                    buf, bufsize, &outpos))
7703
            {
7704
                goto error;
7705
            }
7706
            out = *buf + outpos;
7707
        }
7708
        else {
7709
            in += insize;
7710
            memcpy(out, buffer, outsize * sizeof(wchar_t));
7711
            out += outsize;
7712
        }
7713
    }
7714
7715
    /* Shrink the buffer */
7716
    assert(out - *buf <= *bufsize);
7717
    *bufsize = out - *buf;
7718
    /* (in - startin) <= size and size is an int */
7719
    ret = Py_SAFE_DOWNCAST(in - startin, Py_ssize_t, int);
7720
7721
error:
7722
    Py_XDECREF(encoding_obj);
7723
    Py_XDECREF(errorHandler);
7724
    Py_XDECREF(exc);
7725
    return ret;
7726
}
7727
7728
static PyObject *
7729
decode_code_page_stateful(int code_page,
7730
                          const char *s, Py_ssize_t size,
7731
                          const char *errors, Py_ssize_t *consumed)
7732
{
7733
    wchar_t *buf = NULL;
7734
    Py_ssize_t bufsize = 0;
7735
    int chunk_size, final, converted, done;
7736
7737
    if (code_page < 0) {
7738
        PyErr_SetString(PyExc_ValueError, "invalid code page number");
7739
        return NULL;
7740
    }
7741
    if (size < 0) {
7742
        PyErr_BadInternalCall();
7743
        return NULL;
7744
    }
7745
7746
    if (consumed)
7747
        *consumed = 0;
7748
7749
    do
7750
    {
7751
#ifdef NEED_RETRY
7752
        if (size > DECODING_CHUNK_SIZE) {
7753
            chunk_size = DECODING_CHUNK_SIZE;
7754
            final = 0;
7755
            done = 0;
7756
        }
7757
        else
7758
#endif
7759
        {
7760
            chunk_size = (int)size;
7761
            final = (consumed == NULL);
7762
            done = 1;
7763
        }
7764
7765
        if (chunk_size == 0 && done) {
7766
            if (buf != NULL)
7767
                break;
7768
            _Py_RETURN_UNICODE_EMPTY();
7769
        }
7770
7771
        converted = decode_code_page_strict(code_page, &buf, &bufsize,
7772
                                            s, chunk_size);
7773
        if (converted == -2)
7774
            converted = decode_code_page_errors(code_page, &buf, &bufsize,
7775
                                                s, chunk_size,
7776
                                                errors, final);
7777
        assert(converted != 0 || done);
7778
7779
        if (converted < 0) {
7780
            PyMem_Free(buf);
7781
            return NULL;
7782
        }
7783
7784
        if (consumed)
7785
            *consumed += converted;
7786
7787
        s += converted;
7788
        size -= converted;
7789
    } while (!done);
7790
7791
    PyObject *v = PyUnicode_FromWideChar(buf, bufsize);
7792
    PyMem_Free(buf);
7793
    return v;
7794
}
7795
7796
PyObject *
7797
PyUnicode_DecodeCodePageStateful(int code_page,
7798
                                 const char *s,
7799
                                 Py_ssize_t size,
7800
                                 const char *errors,
7801
                                 Py_ssize_t *consumed)
7802
{
7803
    return decode_code_page_stateful(code_page, s, size, errors, consumed);
7804
}
7805
7806
PyObject *
7807
PyUnicode_DecodeMBCSStateful(const char *s,
7808
                             Py_ssize_t size,
7809
                             const char *errors,
7810
                             Py_ssize_t *consumed)
7811
{
7812
    return decode_code_page_stateful(CP_ACP, s, size, errors, consumed);
7813
}
7814
7815
PyObject *
7816
PyUnicode_DecodeMBCS(const char *s,
7817
                     Py_ssize_t size,
7818
                     const char *errors)
7819
{
7820
    return PyUnicode_DecodeMBCSStateful(s, size, errors, NULL);
7821
}
7822
7823
static DWORD
7824
encode_code_page_flags(UINT code_page, const char *errors)
7825
{
7826
    if (code_page == CP_UTF8) {
7827
        return WC_ERR_INVALID_CHARS;
7828
    }
7829
    else if (code_page == CP_UTF7) {
7830
        /* CP_UTF7 only supports flags=0 */
7831
        return 0;
7832
    }
7833
    else {
7834
        if (errors != NULL && strcmp(errors, "replace") == 0)
7835
            return 0;
7836
        else
7837
            return WC_NO_BEST_FIT_CHARS;
7838
    }
7839
}
7840
7841
/*
7842
 * Encode a Unicode string to a Windows code page into a byte string in strict
7843
 * mode.
7844
 *
7845
 * Returns consumed characters if succeed, returns -2 on encode error, or raise
7846
 * an OSError and returns -1 on other error.
7847
 */
7848
static int
7849
encode_code_page_strict(UINT code_page, PyBytesWriter **writer,
7850
                        PyObject *unicode, Py_ssize_t offset, int len,
7851
                        const char* errors)
7852
{
7853
    BOOL usedDefaultChar = FALSE;
7854
    BOOL *pusedDefaultChar = &usedDefaultChar;
7855
    int outsize;
7856
    wchar_t *p;
7857
    Py_ssize_t size;
7858
    const DWORD flags = encode_code_page_flags(code_page, NULL);
7859
    char *out;
7860
    /* Create a substring so that we can get the UTF-16 representation
7861
       of just the slice under consideration. */
7862
    PyObject *substring;
7863
    int ret = -1;
7864
7865
    assert(len > 0);
7866
7867
    if (code_page != CP_UTF8 && code_page != CP_UTF7)
7868
        pusedDefaultChar = &usedDefaultChar;
7869
    else
7870
        pusedDefaultChar = NULL;
7871
7872
    substring = PyUnicode_Substring(unicode, offset, offset+len);
7873
    if (substring == NULL)
7874
        return -1;
7875
    p = PyUnicode_AsWideCharString(substring, &size);
7876
    Py_CLEAR(substring);
7877
    if (p == NULL) {
7878
        return -1;
7879
    }
7880
    assert(size <= INT_MAX);
7881
7882
    /* First get the size of the result */
7883
    outsize = WideCharToMultiByte(code_page, flags,
7884
                                  p, (int)size,
7885
                                  NULL, 0,
7886
                                  NULL, pusedDefaultChar);
7887
    if (outsize <= 0)
7888
        goto error;
7889
    /* If we used a default char, then we failed! */
7890
    if (pusedDefaultChar && *pusedDefaultChar) {
7891
        ret = -2;
7892
        goto done;
7893
    }
7894
7895
    if (*writer == NULL) {
7896
        /* Create string object */
7897
        *writer = PyBytesWriter_Create(outsize);
7898
        if (*writer == NULL) {
7899
            goto done;
7900
        }
7901
        out = PyBytesWriter_GetData(*writer);
7902
    }
7903
    else {
7904
        /* Extend string object */
7905
        Py_ssize_t n = PyBytesWriter_GetSize(*writer);
7906
        if (PyBytesWriter_Grow(*writer, outsize) < 0) {
7907
            goto done;
7908
        }
7909
        out = (char*)PyBytesWriter_GetData(*writer) + n;
7910
    }
7911
7912
    /* Do the conversion */
7913
    outsize = WideCharToMultiByte(code_page, flags,
7914
                                  p, (int)size,
7915
                                  out, outsize,
7916
                                  NULL, pusedDefaultChar);
7917
    if (outsize <= 0)
7918
        goto error;
7919
    if (pusedDefaultChar && *pusedDefaultChar) {
7920
        ret = -2;
7921
        goto done;
7922
    }
7923
    ret = 0;
7924
7925
done:
7926
    PyMem_Free(p);
7927
    return ret;
7928
7929
error:
7930
    if (GetLastError() == ERROR_NO_UNICODE_TRANSLATION) {
7931
        ret = -2;
7932
        goto done;
7933
    }
7934
    PyErr_SetFromWindowsErr(0);
7935
    goto done;
7936
}
7937
7938
/*
7939
 * Encode a Unicode string to a Windows code page into a byte string using an
7940
 * error handler.
7941
 *
7942
 * Returns consumed characters if succeed, or raise an OSError and returns
7943
 * -1 on other error.
7944
 */
7945
static int
7946
encode_code_page_errors(UINT code_page, PyBytesWriter **writer,
7947
                        PyObject *unicode, Py_ssize_t unicode_offset,
7948
                        Py_ssize_t insize, const char* errors)
7949
{
7950
    const DWORD flags = encode_code_page_flags(code_page, errors);
7951
    Py_ssize_t pos = unicode_offset;
7952
    Py_ssize_t endin = unicode_offset + insize;
7953
    /* Ideally, we should get reason from FormatMessage. This is the Windows
7954
       2000 English version of the message. */
7955
    const char *reason = "invalid character";
7956
    /* 4=maximum length of a UTF-8 sequence */
7957
    char buffer[4];
7958
    BOOL usedDefaultChar = FALSE, *pusedDefaultChar;
7959
    Py_ssize_t outsize;
7960
    char *out;
7961
    PyObject *errorHandler = NULL;
7962
    PyObject *exc = NULL;
7963
    PyObject *encoding_obj = NULL;
7964
    const char *encoding;
7965
    Py_ssize_t newpos;
7966
    PyObject *rep;
7967
    int ret = -1;
7968
7969
    assert(insize > 0);
7970
7971
    encoding = code_page_name(code_page, &encoding_obj);
7972
    if (encoding == NULL)
7973
        return -1;
7974
7975
    if (errors == NULL || strcmp(errors, "strict") == 0) {
7976
        /* The last error was ERROR_NO_UNICODE_TRANSLATION,
7977
           then we raise a UnicodeEncodeError. */
7978
        make_encode_exception(&exc, encoding, unicode, 0, 0, reason);
7979
        if (exc != NULL) {
7980
            PyCodec_StrictErrors(exc);
7981
            Py_DECREF(exc);
7982
        }
7983
        Py_XDECREF(encoding_obj);
7984
        return -1;
7985
    }
7986
7987
    if (code_page != CP_UTF8 && code_page != CP_UTF7)
7988
        pusedDefaultChar = &usedDefaultChar;
7989
    else
7990
        pusedDefaultChar = NULL;
7991
7992
    if (Py_ARRAY_LENGTH(buffer) > PY_SSIZE_T_MAX / insize) {
7993
        PyErr_NoMemory();
7994
        goto error;
7995
    }
7996
    outsize = insize * Py_ARRAY_LENGTH(buffer);
7997
7998
    if (*writer == NULL) {
7999
        /* Create string object */
8000
        *writer = PyBytesWriter_Create(outsize);
8001
        if (*writer == NULL) {
8002
            goto error;
8003
        }
8004
        out = PyBytesWriter_GetData(*writer);
8005
    }
8006
    else {
8007
        /* Extend string object */
8008
        Py_ssize_t n = PyBytesWriter_GetSize(*writer);
8009
        if (PyBytesWriter_Grow(*writer, outsize) < 0) {
8010
            goto error;
8011
        }
8012
        out = (char*)PyBytesWriter_GetData(*writer) + n;
8013
    }
8014
8015
    /* Encode the string character per character */
8016
    while (pos < endin)
8017
    {
8018
        Py_UCS4 ch = PyUnicode_READ_CHAR(unicode, pos);
8019
        wchar_t chars[2];
8020
        int charsize;
8021
        if (ch < 0x10000) {
8022
            chars[0] = (wchar_t)ch;
8023
            charsize = 1;
8024
        }
8025
        else {
8026
            chars[0] = Py_UNICODE_HIGH_SURROGATE(ch);
8027
            chars[1] = Py_UNICODE_LOW_SURROGATE(ch);
8028
            charsize = 2;
8029
        }
8030
8031
        outsize = WideCharToMultiByte(code_page, flags,
8032
                                      chars, charsize,
8033
                                      buffer, Py_ARRAY_LENGTH(buffer),
8034
                                      NULL, pusedDefaultChar);
8035
        if (outsize > 0) {
8036
            if (pusedDefaultChar == NULL || !(*pusedDefaultChar))
8037
            {
8038
                pos++;
8039
                memcpy(out, buffer, outsize);
8040
                out += outsize;
8041
                continue;
8042
            }
8043
        }
8044
        else if (GetLastError() != ERROR_NO_UNICODE_TRANSLATION) {
8045
            PyErr_SetFromWindowsErr(0);
8046
            goto error;
8047
        }
8048
8049
        rep = unicode_encode_call_errorhandler(
8050
                  errors, &errorHandler, encoding, reason,
8051
                  unicode, &exc,
8052
                  pos, pos + 1, &newpos);
8053
        if (rep == NULL)
8054
            goto error;
8055
8056
        Py_ssize_t morebytes = pos - newpos;
8057
        if (PyBytes_Check(rep)) {
8058
            outsize = PyBytes_GET_SIZE(rep);
8059
            morebytes += outsize;
8060
            if (morebytes > 0) {
8061
                out = PyBytesWriter_GrowAndUpdatePointer(*writer, morebytes, out);
8062
                if (out == NULL) {
8063
                    Py_DECREF(rep);
8064
                    goto error;
8065
                }
8066
            }
8067
            memcpy(out, PyBytes_AS_STRING(rep), outsize);
8068
            out += outsize;
8069
        }
8070
        else {
8071
            Py_ssize_t i;
8072
            int kind;
8073
            const void *data;
8074
8075
            outsize = PyUnicode_GET_LENGTH(rep);
8076
            morebytes += outsize;
8077
            if (morebytes > 0) {
8078
                out = PyBytesWriter_GrowAndUpdatePointer(*writer, morebytes, out);
8079
                if (out == NULL) {
8080
                    Py_DECREF(rep);
8081
                    goto error;
8082
                }
8083
            }
8084
            kind = PyUnicode_KIND(rep);
8085
            data = PyUnicode_DATA(rep);
8086
            for (i=0; i < outsize; i++) {
8087
                Py_UCS4 ch = PyUnicode_READ(kind, data, i);
8088
                if (ch > 127) {
8089
                    raise_encode_exception(&exc,
8090
                        encoding, unicode,
8091
                        pos, pos + 1,
8092
                        "unable to encode error handler result to ASCII");
8093
                    Py_DECREF(rep);
8094
                    goto error;
8095
                }
8096
                *out = (unsigned char)ch;
8097
                out++;
8098
            }
8099
        }
8100
        pos = newpos;
8101
        Py_DECREF(rep);
8102
    }
8103
    /* write a NUL byte */
8104
    *out = 0;
8105
    outsize = out - (char*)PyBytesWriter_GetData(*writer);
8106
    assert(outsize <= PyBytesWriter_GetSize(*writer));
8107
    if (PyBytesWriter_Resize(*writer, outsize) < 0) {
8108
        goto error;
8109
    }
8110
    ret = 0;
8111
8112
error:
8113
    Py_XDECREF(encoding_obj);
8114
    Py_XDECREF(errorHandler);
8115
    Py_XDECREF(exc);
8116
    return ret;
8117
}
8118
8119
8120
PyObject *
8121
PyUnicode_EncodeCodePage(int code_page,
8122
                         PyObject *unicode,
8123
                         const char *errors)
8124
{
8125
    Py_ssize_t len;
8126
    PyBytesWriter *writer = NULL;
8127
    Py_ssize_t offset;
8128
    int chunk_len, ret, done;
8129
8130
    if (!PyUnicode_Check(unicode)) {
8131
        PyErr_BadArgument();
8132
        return NULL;
8133
    }
8134
8135
    len = PyUnicode_GET_LENGTH(unicode);
8136
8137
    if (code_page < 0) {
8138
        PyErr_SetString(PyExc_ValueError, "invalid code page number");
8139
        return NULL;
8140
    }
8141
8142
    if (len == 0)
8143
        return Py_GetConstant(Py_CONSTANT_EMPTY_BYTES);
8144
8145
    offset = 0;
8146
    do
8147
    {
8148
#ifdef NEED_RETRY
8149
        if (len > DECODING_CHUNK_SIZE) {
8150
            chunk_len = DECODING_CHUNK_SIZE;
8151
            done = 0;
8152
        }
8153
        else
8154
#endif
8155
        {
8156
            chunk_len = (int)len;
8157
            done = 1;
8158
        }
8159
8160
        ret = encode_code_page_strict(code_page, &writer,
8161
                                      unicode, offset, chunk_len,
8162
                                      errors);
8163
        if (ret == -2)
8164
            ret = encode_code_page_errors(code_page, &writer,
8165
                                          unicode, offset,
8166
                                          chunk_len, errors);
8167
        if (ret < 0) {
8168
            PyBytesWriter_Discard(writer);
8169
            return NULL;
8170
        }
8171
8172
        offset += chunk_len;
8173
        len -= chunk_len;
8174
    } while (!done);
8175
8176
    return PyBytesWriter_Finish(writer);
8177
}
8178
8179
8180
PyObject *
8181
PyUnicode_AsMBCSString(PyObject *unicode)
8182
{
8183
    return PyUnicode_EncodeCodePage(CP_ACP, unicode, NULL);
8184
}
8185
8186
#undef NEED_RETRY
8187
8188
#endif /* MS_WINDOWS */
8189
8190
/* --- Character Mapping Codec -------------------------------------------- */
8191
8192
static int
8193
charmap_decode_string(const char *s,
8194
                      Py_ssize_t size,
8195
                      PyObject *mapping,
8196
                      const char *errors,
8197
                      _PyUnicodeWriter *writer)
8198
535k
{
8199
535k
    const char *starts = s;
8200
535k
    const char *e;
8201
535k
    Py_ssize_t startinpos, endinpos;
8202
535k
    PyObject *errorHandler = NULL, *exc = NULL;
8203
535k
    Py_ssize_t maplen;
8204
535k
    int mapkind;
8205
535k
    const void *mapdata;
8206
535k
    Py_UCS4 x;
8207
535k
    unsigned char ch;
8208
8209
535k
    maplen = PyUnicode_GET_LENGTH(mapping);
8210
535k
    mapdata = PyUnicode_DATA(mapping);
8211
535k
    mapkind = PyUnicode_KIND(mapping);
8212
8213
535k
    e = s + size;
8214
8215
535k
    if (mapkind == PyUnicode_1BYTE_KIND && maplen >= 256) {
8216
        /* fast-path for cp037, cp500 and iso8859_1 encodings. iso8859_1
8217
         * is disabled in encoding aliases, latin1 is preferred because
8218
         * its implementation is faster. */
8219
131
        const Py_UCS1 *mapdata_ucs1 = (const Py_UCS1 *)mapdata;
8220
131
        Py_UCS1 *outdata = (Py_UCS1 *)writer->data;
8221
131
        Py_UCS4 maxchar = writer->maxchar;
8222
8223
131
        assert (writer->kind == PyUnicode_1BYTE_KIND);
8224
23.1k
        while (s < e) {
8225
23.0k
            ch = *s;
8226
23.0k
            x = mapdata_ucs1[ch];
8227
23.0k
            if (x > maxchar) {
8228
121
                if (_PyUnicodeWriter_Prepare(writer, 1, 0xff) == -1)
8229
0
                    goto onError;
8230
121
                maxchar = writer->maxchar;
8231
121
                outdata = (Py_UCS1 *)writer->data;
8232
121
            }
8233
23.0k
            outdata[writer->pos] = x;
8234
23.0k
            writer->pos++;
8235
23.0k
            ++s;
8236
23.0k
        }
8237
131
        return 0;
8238
131
    }
8239
8240
666k
    while (s < e) {
8241
647k
        if (mapkind == PyUnicode_2BYTE_KIND && maplen >= 256) {
8242
647k
            int outkind = writer->kind;
8243
647k
            const Py_UCS2 *mapdata_ucs2 = (const Py_UCS2 *)mapdata;
8244
647k
            if (outkind == PyUnicode_1BYTE_KIND) {
8245
576k
                Py_UCS1 *outdata = (Py_UCS1 *)writer->data;
8246
576k
                Py_UCS4 maxchar = writer->maxchar;
8247
11.6M
                while (s < e) {
8248
11.1M
                    ch = *s;
8249
11.1M
                    x = mapdata_ucs2[ch];
8250
11.1M
                    if (x > maxchar)
8251
87.1k
                        goto Error;
8252
11.0M
                    outdata[writer->pos] = x;
8253
11.0M
                    writer->pos++;
8254
11.0M
                    ++s;
8255
11.0M
                }
8256
489k
                break;
8257
576k
            }
8258
70.5k
            else if (outkind == PyUnicode_2BYTE_KIND) {
8259
70.5k
                Py_UCS2 *outdata = (Py_UCS2 *)writer->data;
8260
15.2M
                while (s < e) {
8261
15.2M
                    ch = *s;
8262
15.2M
                    x = mapdata_ucs2[ch];
8263
15.2M
                    if (x == 0xFFFE)
8264
44.2k
                        goto Error;
8265
15.1M
                    outdata[writer->pos] = x;
8266
15.1M
                    writer->pos++;
8267
15.1M
                    ++s;
8268
15.1M
                }
8269
26.3k
                break;
8270
70.5k
            }
8271
647k
        }
8272
0
        ch = *s;
8273
8274
0
        if (ch < maplen)
8275
0
            x = PyUnicode_READ(mapkind, mapdata, ch);
8276
0
        else
8277
0
            x = 0xfffe; /* invalid value */
8278
131k
Error:
8279
131k
        if (x == 0xfffe)
8280
70.9k
        {
8281
            /* undefined mapping */
8282
70.9k
            startinpos = s-starts;
8283
70.9k
            endinpos = startinpos+1;
8284
70.9k
            if (unicode_decode_call_errorhandler_writer(
8285
70.9k
                    errors, &errorHandler,
8286
70.9k
                    "charmap", "character maps to <undefined>",
8287
70.9k
                    &starts, &e, &startinpos, &endinpos, &exc, &s,
8288
70.9k
                    writer)) {
8289
15
                goto onError;
8290
15
            }
8291
70.8k
            continue;
8292
70.9k
        }
8293
8294
60.4k
        if (_PyUnicodeWriter_WriteCharInline(writer, x) < 0)
8295
0
            goto onError;
8296
60.4k
        ++s;
8297
60.4k
    }
8298
535k
    Py_XDECREF(errorHandler);
8299
535k
    Py_XDECREF(exc);
8300
535k
    return 0;
8301
8302
15
onError:
8303
15
    Py_XDECREF(errorHandler);
8304
15
    Py_XDECREF(exc);
8305
15
    return -1;
8306
535k
}
8307
8308
static int
8309
charmap_decode_mapping(const char *s,
8310
                       Py_ssize_t size,
8311
                       PyObject *mapping,
8312
                       const char *errors,
8313
                       _PyUnicodeWriter *writer)
8314
0
{
8315
0
    const char *starts = s;
8316
0
    const char *e;
8317
0
    Py_ssize_t startinpos, endinpos;
8318
0
    PyObject *errorHandler = NULL, *exc = NULL;
8319
0
    unsigned char ch;
8320
0
    PyObject *key, *item = NULL;
8321
8322
0
    e = s + size;
8323
8324
0
    while (s < e) {
8325
0
        ch = *s;
8326
8327
        /* Get mapping (char ordinal -> integer, Unicode char or None) */
8328
0
        key = PyLong_FromLong((long)ch);
8329
0
        if (key == NULL)
8330
0
            goto onError;
8331
8332
0
        int rc = PyMapping_GetOptionalItem(mapping, key, &item);
8333
0
        Py_DECREF(key);
8334
0
        if (rc == 0) {
8335
            /* No mapping found means: mapping is undefined. */
8336
0
            goto Undefined;
8337
0
        }
8338
0
        if (item == NULL) {
8339
0
            if (PyErr_ExceptionMatches(PyExc_LookupError)) {
8340
                /* No mapping found means: mapping is undefined. */
8341
0
                PyErr_Clear();
8342
0
                goto Undefined;
8343
0
            } else
8344
0
                goto onError;
8345
0
        }
8346
8347
        /* Apply mapping */
8348
0
        if (item == Py_None)
8349
0
            goto Undefined;
8350
0
        if (PyLong_Check(item)) {
8351
0
            long value = PyLong_AsLong(item);
8352
0
            if (value == 0xFFFE)
8353
0
                goto Undefined;
8354
0
            if (value < 0 || value > MAX_UNICODE) {
8355
0
                PyErr_Format(PyExc_TypeError,
8356
0
                             "character mapping must be in range(0x%x)",
8357
0
                             (unsigned long)MAX_UNICODE + 1);
8358
0
                goto onError;
8359
0
            }
8360
8361
0
            if (_PyUnicodeWriter_WriteCharInline(writer, value) < 0)
8362
0
                goto onError;
8363
0
        }
8364
0
        else if (PyUnicode_Check(item)) {
8365
0
            if (PyUnicode_GET_LENGTH(item) == 1) {
8366
0
                Py_UCS4 value = PyUnicode_READ_CHAR(item, 0);
8367
0
                if (value == 0xFFFE)
8368
0
                    goto Undefined;
8369
0
                if (_PyUnicodeWriter_WriteCharInline(writer, value) < 0)
8370
0
                    goto onError;
8371
0
            }
8372
0
            else {
8373
0
                writer->overallocate = 1;
8374
0
                if (_PyUnicodeWriter_WriteStr(writer, item) == -1)
8375
0
                    goto onError;
8376
0
            }
8377
0
        }
8378
0
        else {
8379
            /* wrong return value */
8380
0
            PyErr_SetString(PyExc_TypeError,
8381
0
                            "character mapping must return integer, None or str");
8382
0
            goto onError;
8383
0
        }
8384
0
        Py_CLEAR(item);
8385
0
        ++s;
8386
0
        continue;
8387
8388
0
Undefined:
8389
        /* undefined mapping */
8390
0
        Py_CLEAR(item);
8391
0
        startinpos = s-starts;
8392
0
        endinpos = startinpos+1;
8393
0
        if (unicode_decode_call_errorhandler_writer(
8394
0
                errors, &errorHandler,
8395
0
                "charmap", "character maps to <undefined>",
8396
0
                &starts, &e, &startinpos, &endinpos, &exc, &s,
8397
0
                writer)) {
8398
0
            goto onError;
8399
0
        }
8400
0
    }
8401
0
    Py_XDECREF(errorHandler);
8402
0
    Py_XDECREF(exc);
8403
0
    return 0;
8404
8405
0
onError:
8406
0
    Py_XDECREF(item);
8407
0
    Py_XDECREF(errorHandler);
8408
0
    Py_XDECREF(exc);
8409
0
    return -1;
8410
0
}
8411
8412
PyObject *
8413
PyUnicode_DecodeCharmap(const char *s,
8414
                        Py_ssize_t size,
8415
                        PyObject *mapping,
8416
                        const char *errors)
8417
535k
{
8418
535k
    _PyUnicodeWriter writer;
8419
8420
    /* Default to Latin-1 */
8421
535k
    if (mapping == NULL)
8422
0
        return PyUnicode_DecodeLatin1(s, size, errors);
8423
8424
535k
    if (size == 0)
8425
0
        _Py_RETURN_UNICODE_EMPTY();
8426
535k
    _PyUnicodeWriter_Init(&writer);
8427
535k
    writer.min_length = size;
8428
535k
    if (_PyUnicodeWriter_Prepare(&writer, writer.min_length, 127) == -1)
8429
0
        goto onError;
8430
8431
535k
    if (PyUnicode_CheckExact(mapping)) {
8432
535k
        if (charmap_decode_string(s, size, mapping, errors, &writer) < 0)
8433
15
            goto onError;
8434
535k
    }
8435
0
    else {
8436
0
        if (charmap_decode_mapping(s, size, mapping, errors, &writer) < 0)
8437
0
            goto onError;
8438
0
    }
8439
535k
    return _PyUnicodeWriter_Finish(&writer);
8440
8441
15
  onError:
8442
15
    _PyUnicodeWriter_Dealloc(&writer);
8443
15
    return NULL;
8444
535k
}
8445
8446
/* Charmap encoding: the lookup table */
8447
8448
/*[clinic input]
8449
class EncodingMap "struct encoding_map *" "&EncodingMapType"
8450
[clinic start generated code]*/
8451
/*[clinic end generated code: output=da39a3ee5e6b4b0d input=14e46bbb6c522d22]*/
8452
8453
struct encoding_map {
8454
    PyObject_HEAD
8455
    unsigned char level1[32];
8456
    int count2, count3;
8457
    unsigned char level23[1];
8458
};
8459
8460
/*[clinic input]
8461
EncodingMap.size
8462
8463
Return the size (in bytes) of this object.
8464
[clinic start generated code]*/
8465
8466
static PyObject *
8467
EncodingMap_size_impl(struct encoding_map *self)
8468
/*[clinic end generated code: output=c4c969e4c99342a4 input=004ff13f26bb5366]*/
8469
0
{
8470
0
    return PyLong_FromLong((sizeof(*self) - 1) + 16*self->count2 +
8471
0
                           128*self->count3);
8472
0
}
8473
8474
static PyMethodDef encoding_map_methods[] = {
8475
    ENCODINGMAP_SIZE_METHODDEF
8476
    {NULL, NULL}
8477
};
8478
8479
static PyTypeObject EncodingMapType = {
8480
    PyVarObject_HEAD_INIT(NULL, 0)
8481
    .tp_name = "EncodingMap",
8482
    .tp_basicsize = sizeof(struct encoding_map),
8483
    /* methods */
8484
    .tp_flags = Py_TPFLAGS_DEFAULT,
8485
    .tp_methods = encoding_map_methods,
8486
};
8487
8488
PyObject*
8489
PyUnicode_BuildEncodingMap(PyObject* string)
8490
125
{
8491
125
    PyObject *result;
8492
125
    struct encoding_map *mresult;
8493
125
    int i;
8494
125
    int need_dict = 0;
8495
125
    unsigned char level1[32];
8496
125
    unsigned char level2[512];
8497
125
    unsigned char *mlevel1, *mlevel2, *mlevel3;
8498
125
    int count2 = 0, count3 = 0;
8499
125
    int kind;
8500
125
    const void *data;
8501
125
    int length;
8502
125
    Py_UCS4 ch;
8503
8504
125
    if (!PyUnicode_Check(string) || !PyUnicode_GET_LENGTH(string)) {
8505
0
        PyErr_BadArgument();
8506
0
        return NULL;
8507
0
    }
8508
125
    kind = PyUnicode_KIND(string);
8509
125
    data = PyUnicode_DATA(string);
8510
125
    length = (int)Py_MIN(PyUnicode_GET_LENGTH(string), 256);
8511
125
    memset(level1, 0xFF, sizeof level1);
8512
125
    memset(level2, 0xFF, sizeof level2);
8513
8514
    /* If there isn't a one-to-one mapping of NULL to \0,
8515
       or if there are non-BMP characters, we need to use
8516
       a mapping dictionary. */
8517
125
    if (PyUnicode_READ(kind, data, 0) != 0)
8518
0
        need_dict = 1;
8519
32.0k
    for (i = 1; i < length; i++) {
8520
31.8k
        int l1, l2;
8521
31.8k
        ch = PyUnicode_READ(kind, data, i);
8522
31.8k
        if (ch == 0 || ch > 0xFFFF) {
8523
0
            need_dict = 1;
8524
0
            break;
8525
0
        }
8526
31.8k
        if (ch == 0xFFFE)
8527
            /* unmapped character */
8528
830
            continue;
8529
31.0k
        l1 = ch >> 11;
8530
31.0k
        l2 = ch >> 7;
8531
31.0k
        if (level1[l1] == 0xFF)
8532
225
            level1[l1] = count2++;
8533
31.0k
        if (level2[l2] == 0xFF)
8534
662
            level2[l2] = count3++;
8535
31.0k
    }
8536
8537
125
    if (count2 >= 0xFF || count3 >= 0xFF)
8538
0
        need_dict = 1;
8539
8540
125
    if (need_dict) {
8541
0
        PyObject *result = PyDict_New();
8542
0
        if (!result)
8543
0
            return NULL;
8544
0
        for (i = 0; i < length; i++) {
8545
0
            Py_UCS4 c = PyUnicode_READ(kind, data, i);
8546
0
            PyObject *key = PyLong_FromLong(c);
8547
0
            if (key == NULL) {
8548
0
                Py_DECREF(result);
8549
0
                return NULL;
8550
0
            }
8551
0
            PyObject *value = PyLong_FromLong(i);
8552
0
            if (value == NULL) {
8553
0
                Py_DECREF(key);
8554
0
                Py_DECREF(result);
8555
0
                return NULL;
8556
0
            }
8557
0
            int rc = PyDict_SetItem(result, key, value);
8558
0
            Py_DECREF(key);
8559
0
            Py_DECREF(value);
8560
0
            if (rc < 0) {
8561
0
                Py_DECREF(result);
8562
0
                return NULL;
8563
0
            }
8564
0
        }
8565
0
        return result;
8566
0
    }
8567
8568
    /* Create a three-level trie */
8569
125
    result = PyObject_Malloc(sizeof(struct encoding_map) +
8570
125
                             16*count2 + 128*count3 - 1);
8571
125
    if (!result) {
8572
0
        return PyErr_NoMemory();
8573
0
    }
8574
8575
125
    _PyObject_Init(result, &EncodingMapType);
8576
125
    mresult = (struct encoding_map*)result;
8577
125
    mresult->count2 = count2;
8578
125
    mresult->count3 = count3;
8579
125
    mlevel1 = mresult->level1;
8580
125
    mlevel2 = mresult->level23;
8581
125
    mlevel3 = mresult->level23 + 16*count2;
8582
125
    memcpy(mlevel1, level1, 32);
8583
125
    memset(mlevel2, 0xFF, 16*count2);
8584
125
    memset(mlevel3, 0, 128*count3);
8585
125
    count3 = 0;
8586
32.0k
    for (i = 1; i < length; i++) {
8587
31.8k
        int o1, o2, o3, i2, i3;
8588
31.8k
        Py_UCS4 ch = PyUnicode_READ(kind, data, i);
8589
31.8k
        if (ch == 0xFFFE)
8590
            /* unmapped character */
8591
830
            continue;
8592
31.0k
        o1 = ch>>11;
8593
31.0k
        o2 = (ch>>7) & 0xF;
8594
31.0k
        i2 = 16*mlevel1[o1] + o2;
8595
31.0k
        if (mlevel2[i2] == 0xFF)
8596
662
            mlevel2[i2] = count3++;
8597
31.0k
        o3 = ch & 0x7F;
8598
31.0k
        i3 = 128*mlevel2[i2] + o3;
8599
31.0k
        mlevel3[i3] = i;
8600
31.0k
    }
8601
125
    return result;
8602
125
}
8603
8604
static int
8605
encoding_map_lookup(Py_UCS4 c, PyObject *mapping)
8606
0
{
8607
0
    struct encoding_map *map = (struct encoding_map*)mapping;
8608
0
    int l1 = c>>11;
8609
0
    int l2 = (c>>7) & 0xF;
8610
0
    int l3 = c & 0x7F;
8611
0
    int i;
8612
8613
0
    if (c > 0xFFFF)
8614
0
        return -1;
8615
0
    if (c == 0)
8616
0
        return 0;
8617
    /* level 1*/
8618
0
    i = map->level1[l1];
8619
0
    if (i == 0xFF) {
8620
0
        return -1;
8621
0
    }
8622
    /* level 2*/
8623
0
    i = map->level23[16*i+l2];
8624
0
    if (i == 0xFF) {
8625
0
        return -1;
8626
0
    }
8627
    /* level 3 */
8628
0
    i = map->level23[16*map->count2 + 128*i + l3];
8629
0
    if (i == 0) {
8630
0
        return -1;
8631
0
    }
8632
0
    return i;
8633
0
}
8634
8635
/* Lookup the character in the mapping.
8636
   On success, return PyLong, PyBytes or None (if the character can't be found).
8637
   If the result is PyLong, put its value in replace.
8638
   On error, return NULL.
8639
   */
8640
static PyObject *
8641
charmapencode_lookup(Py_UCS4 c, PyObject *mapping, unsigned char *replace)
8642
0
{
8643
0
    PyObject *w = PyLong_FromLong((long)c);
8644
0
    PyObject *x;
8645
8646
0
    if (w == NULL)
8647
0
        return NULL;
8648
0
    int rc = PyMapping_GetOptionalItem(mapping, w, &x);
8649
0
    Py_DECREF(w);
8650
0
    if (rc == 0) {
8651
        /* No mapping found means: mapping is undefined. */
8652
0
        Py_RETURN_NONE;
8653
0
    }
8654
0
    if (x == NULL) {
8655
0
        if (PyErr_ExceptionMatches(PyExc_LookupError)) {
8656
            /* No mapping found means: mapping is undefined. */
8657
0
            PyErr_Clear();
8658
0
            Py_RETURN_NONE;
8659
0
        } else
8660
0
            return NULL;
8661
0
    }
8662
0
    else if (x == Py_None)
8663
0
        return x;
8664
0
    else if (PyLong_Check(x)) {
8665
0
        long value = PyLong_AsLong(x);
8666
0
        if (value < 0 || value > 255) {
8667
0
            PyErr_SetString(PyExc_TypeError,
8668
0
                            "character mapping must be in range(256)");
8669
0
            Py_DECREF(x);
8670
0
            return NULL;
8671
0
        }
8672
0
        *replace = (unsigned char)value;
8673
0
        return x;
8674
0
    }
8675
0
    else if (PyBytes_Check(x))
8676
0
        return x;
8677
0
    else {
8678
        /* wrong return value */
8679
0
        PyErr_Format(PyExc_TypeError,
8680
0
                     "character mapping must return integer, bytes or None, not %.400s",
8681
0
                     Py_TYPE(x)->tp_name);
8682
0
        Py_DECREF(x);
8683
0
        return NULL;
8684
0
    }
8685
0
}
8686
8687
static int
8688
charmapencode_resize(PyBytesWriter *writer, Py_ssize_t *outpos, Py_ssize_t requiredsize)
8689
0
{
8690
0
    Py_ssize_t outsize = PyBytesWriter_GetSize(writer);
8691
    /* exponentially overallocate to minimize reallocations */
8692
0
    if (requiredsize < 2 * outsize)
8693
0
        requiredsize = 2 * outsize;
8694
0
    return PyBytesWriter_Resize(writer, requiredsize);
8695
0
}
8696
8697
typedef enum charmapencode_result {
8698
    enc_SUCCESS, enc_FAILED, enc_EXCEPTION
8699
} charmapencode_result;
8700
/* lookup the character, put the result in the output string and adjust
8701
   various state variables. Resize the output bytes object if not enough
8702
   space is available. Return a new reference to the object that
8703
   was put in the output buffer, or Py_None, if the mapping was undefined
8704
   (in which case no character was written) or NULL, if a
8705
   reallocation error occurred. The caller must decref the result */
8706
static charmapencode_result
8707
charmapencode_output(Py_UCS4 c, PyObject *mapping,
8708
                     PyBytesWriter *writer, Py_ssize_t *outpos)
8709
0
{
8710
0
    PyObject *rep;
8711
0
    unsigned char replace;
8712
0
    char *outstart;
8713
0
    Py_ssize_t outsize = _PyBytesWriter_GetSize(writer);
8714
8715
0
    if (Py_IS_TYPE(mapping, &EncodingMapType)) {
8716
0
        int res = encoding_map_lookup(c, mapping);
8717
0
        Py_ssize_t requiredsize = *outpos+1;
8718
0
        if (res == -1) {
8719
0
            return enc_FAILED;
8720
0
        }
8721
8722
0
        if (outsize<requiredsize) {
8723
0
            if (charmapencode_resize(writer, outpos, requiredsize)) {
8724
0
                return enc_EXCEPTION;
8725
0
            }
8726
0
        }
8727
0
        outstart = _PyBytesWriter_GetData(writer);
8728
0
        outstart[(*outpos)++] = (char)res;
8729
0
        return enc_SUCCESS;
8730
0
    }
8731
8732
0
    rep = charmapencode_lookup(c, mapping, &replace);
8733
0
    if (rep==NULL)
8734
0
        return enc_EXCEPTION;
8735
0
    else if (rep==Py_None) {
8736
0
        Py_DECREF(rep);
8737
0
        return enc_FAILED;
8738
0
    } else {
8739
0
        if (PyLong_Check(rep)) {
8740
0
            Py_ssize_t requiredsize = *outpos+1;
8741
0
            if (outsize<requiredsize)
8742
0
                if (charmapencode_resize(writer, outpos, requiredsize)) {
8743
0
                    Py_DECREF(rep);
8744
0
                    return enc_EXCEPTION;
8745
0
                }
8746
0
            outstart = _PyBytesWriter_GetData(writer);
8747
0
            outstart[(*outpos)++] = (char)replace;
8748
0
        }
8749
0
        else {
8750
0
            const char *repchars = PyBytes_AS_STRING(rep);
8751
0
            Py_ssize_t repsize = PyBytes_GET_SIZE(rep);
8752
0
            Py_ssize_t requiredsize = *outpos+repsize;
8753
0
            if (outsize<requiredsize)
8754
0
                if (charmapencode_resize(writer, outpos, requiredsize)) {
8755
0
                    Py_DECREF(rep);
8756
0
                    return enc_EXCEPTION;
8757
0
                }
8758
0
            outstart = _PyBytesWriter_GetData(writer);
8759
0
            memcpy(outstart + *outpos, repchars, repsize);
8760
0
            *outpos += repsize;
8761
0
        }
8762
0
    }
8763
0
    Py_DECREF(rep);
8764
0
    return enc_SUCCESS;
8765
0
}
8766
8767
/* handle an error in _PyUnicode_EncodeCharmap()
8768
   Return 0 on success, -1 on error */
8769
static int
8770
charmap_encoding_error(
8771
    PyObject *unicode, Py_ssize_t *inpos, PyObject *mapping,
8772
    PyObject **exceptionObject,
8773
    _Py_error_handler *error_handler, PyObject **error_handler_obj, const char *errors,
8774
    PyBytesWriter *writer, Py_ssize_t *respos)
8775
0
{
8776
0
    PyObject *repunicode = NULL; /* initialize to prevent gcc warning */
8777
0
    Py_ssize_t size, repsize;
8778
0
    Py_ssize_t newpos;
8779
0
    int kind;
8780
0
    const void *data;
8781
0
    Py_ssize_t index;
8782
    /* startpos for collecting unencodable chars */
8783
0
    Py_ssize_t collstartpos = *inpos;
8784
0
    Py_ssize_t collendpos = *inpos+1;
8785
0
    Py_ssize_t collpos;
8786
0
    const char *encoding = "charmap";
8787
0
    const char *reason = "character maps to <undefined>";
8788
0
    charmapencode_result x;
8789
0
    Py_UCS4 ch;
8790
0
    int val;
8791
8792
0
    size = PyUnicode_GET_LENGTH(unicode);
8793
    /* find all unencodable characters */
8794
0
    while (collendpos < size) {
8795
0
        PyObject *rep;
8796
0
        unsigned char replace;
8797
0
        if (Py_IS_TYPE(mapping, &EncodingMapType)) {
8798
0
            ch = PyUnicode_READ_CHAR(unicode, collendpos);
8799
0
            val = encoding_map_lookup(ch, mapping);
8800
0
            if (val != -1)
8801
0
                break;
8802
0
            ++collendpos;
8803
0
            continue;
8804
0
        }
8805
8806
0
        ch = PyUnicode_READ_CHAR(unicode, collendpos);
8807
0
        rep = charmapencode_lookup(ch, mapping, &replace);
8808
0
        if (rep==NULL)
8809
0
            return -1;
8810
0
        else if (rep!=Py_None) {
8811
0
            Py_DECREF(rep);
8812
0
            break;
8813
0
        }
8814
0
        Py_DECREF(rep);
8815
0
        ++collendpos;
8816
0
    }
8817
    /* cache callback name lookup
8818
     * (if not done yet, i.e. it's the first error) */
8819
0
    if (*error_handler == _Py_ERROR_UNKNOWN)
8820
0
        *error_handler = _Py_GetErrorHandler(errors);
8821
8822
0
    switch (*error_handler) {
8823
0
    case _Py_ERROR_STRICT:
8824
0
        raise_encode_exception(exceptionObject, encoding, unicode, collstartpos, collendpos, reason);
8825
0
        return -1;
8826
8827
0
    case _Py_ERROR_REPLACE:
8828
0
        for (collpos = collstartpos; collpos<collendpos; ++collpos) {
8829
0
            x = charmapencode_output('?', mapping, writer, respos);
8830
0
            if (x==enc_EXCEPTION) {
8831
0
                return -1;
8832
0
            }
8833
0
            else if (x==enc_FAILED) {
8834
0
                raise_encode_exception(exceptionObject, encoding, unicode, collstartpos, collendpos, reason);
8835
0
                return -1;
8836
0
            }
8837
0
        }
8838
0
        _Py_FALLTHROUGH;
8839
0
    case _Py_ERROR_IGNORE:
8840
0
        *inpos = collendpos;
8841
0
        break;
8842
8843
0
    case _Py_ERROR_XMLCHARREFREPLACE:
8844
        /* generate replacement (temporarily (mis)uses p) */
8845
0
        for (collpos = collstartpos; collpos < collendpos; ++collpos) {
8846
0
            char buffer[2+29+1+1];
8847
0
            char *cp;
8848
0
            sprintf(buffer, "&#%d;", (int)PyUnicode_READ_CHAR(unicode, collpos));
8849
0
            for (cp = buffer; *cp; ++cp) {
8850
0
                x = charmapencode_output(*cp, mapping, writer, respos);
8851
0
                if (x==enc_EXCEPTION)
8852
0
                    return -1;
8853
0
                else if (x==enc_FAILED) {
8854
0
                    raise_encode_exception(exceptionObject, encoding, unicode, collstartpos, collendpos, reason);
8855
0
                    return -1;
8856
0
                }
8857
0
            }
8858
0
        }
8859
0
        *inpos = collendpos;
8860
0
        break;
8861
8862
0
    default:
8863
0
        repunicode = unicode_encode_call_errorhandler(errors, error_handler_obj,
8864
0
                                                      encoding, reason, unicode, exceptionObject,
8865
0
                                                      collstartpos, collendpos, &newpos);
8866
0
        if (repunicode == NULL)
8867
0
            return -1;
8868
0
        if (PyBytes_Check(repunicode)) {
8869
            /* Directly copy bytes result to output. */
8870
0
            Py_ssize_t outsize = PyBytesWriter_GetSize(writer);
8871
0
            Py_ssize_t requiredsize;
8872
0
            repsize = PyBytes_Size(repunicode);
8873
0
            requiredsize = *respos + repsize;
8874
0
            if (requiredsize > outsize)
8875
                /* Make room for all additional bytes. */
8876
0
                if (charmapencode_resize(writer, respos, requiredsize)) {
8877
0
                    Py_DECREF(repunicode);
8878
0
                    return -1;
8879
0
                }
8880
0
            memcpy((char*)PyBytesWriter_GetData(writer) + *respos,
8881
0
                   PyBytes_AsString(repunicode),  repsize);
8882
0
            *respos += repsize;
8883
0
            *inpos = newpos;
8884
0
            Py_DECREF(repunicode);
8885
0
            break;
8886
0
        }
8887
        /* generate replacement  */
8888
0
        repsize = PyUnicode_GET_LENGTH(repunicode);
8889
0
        data = PyUnicode_DATA(repunicode);
8890
0
        kind = PyUnicode_KIND(repunicode);
8891
0
        for (index = 0; index < repsize; index++) {
8892
0
            Py_UCS4 repch = PyUnicode_READ(kind, data, index);
8893
0
            x = charmapencode_output(repch, mapping, writer, respos);
8894
0
            if (x==enc_EXCEPTION) {
8895
0
                Py_DECREF(repunicode);
8896
0
                return -1;
8897
0
            }
8898
0
            else if (x==enc_FAILED) {
8899
0
                Py_DECREF(repunicode);
8900
0
                raise_encode_exception(exceptionObject, encoding, unicode, collstartpos, collendpos, reason);
8901
0
                return -1;
8902
0
            }
8903
0
        }
8904
0
        *inpos = newpos;
8905
0
        Py_DECREF(repunicode);
8906
0
    }
8907
0
    return 0;
8908
0
}
8909
8910
PyObject *
8911
_PyUnicode_EncodeCharmap(PyObject *unicode,
8912
                         PyObject *mapping,
8913
                         const char *errors)
8914
0
{
8915
    /* Default to Latin-1 */
8916
0
    if (mapping == NULL) {
8917
0
        return unicode_encode_ucs1(unicode, errors, 256);
8918
0
    }
8919
8920
0
    Py_ssize_t size = PyUnicode_GET_LENGTH(unicode);
8921
0
    if (size == 0) {
8922
0
        return Py_GetConstant(Py_CONSTANT_EMPTY_BYTES);
8923
0
    }
8924
0
    const void *data = PyUnicode_DATA(unicode);
8925
0
    int kind = PyUnicode_KIND(unicode);
8926
8927
0
    PyObject *error_handler_obj = NULL;
8928
0
    PyObject *exc = NULL;
8929
8930
    /* output object */
8931
0
    PyBytesWriter *writer;
8932
    /* allocate enough for a simple encoding without
8933
       replacements, if we need more, we'll resize */
8934
0
    writer = PyBytesWriter_Create(size);
8935
0
    if (writer == NULL) {
8936
0
        goto onError;
8937
0
    }
8938
8939
    /* current input position */
8940
0
    Py_ssize_t inpos = 0;
8941
    /* current output position */
8942
0
    Py_ssize_t respos = 0;
8943
0
    _Py_error_handler error_handler = _Py_ERROR_UNKNOWN;
8944
8945
0
    if (Py_IS_TYPE(mapping, &EncodingMapType)) {
8946
0
        char *outstart = _PyBytesWriter_GetData(writer);
8947
0
        Py_ssize_t outsize = _PyBytesWriter_GetSize(writer);
8948
8949
0
        while (inpos<size) {
8950
0
            Py_UCS4 ch = PyUnicode_READ(kind, data, inpos);
8951
8952
            /* try to encode it */
8953
0
            int res = encoding_map_lookup(ch, mapping);
8954
0
            Py_ssize_t requiredsize = respos+1;
8955
0
            if (res == -1) {
8956
0
                goto enc_FAILED;
8957
0
            }
8958
8959
0
            if (outsize<requiredsize) {
8960
0
                if (charmapencode_resize(writer, &respos, requiredsize)) {
8961
0
                    goto onError;
8962
0
                }
8963
0
                outstart = _PyBytesWriter_GetData(writer);
8964
0
                outsize = _PyBytesWriter_GetSize(writer);
8965
0
            }
8966
0
            outstart[respos++] = (char)res;
8967
8968
            /* done with this character => adjust input position */
8969
0
            ++inpos;
8970
0
            continue;
8971
8972
0
enc_FAILED:
8973
0
            if (charmap_encoding_error(unicode, &inpos, mapping,
8974
0
                                       &exc,
8975
0
                                       &error_handler, &error_handler_obj, errors,
8976
0
                                       writer, &respos)) {
8977
0
                goto onError;
8978
0
            }
8979
0
            outstart = _PyBytesWriter_GetData(writer);
8980
0
            outsize = _PyBytesWriter_GetSize(writer);
8981
0
        }
8982
0
    }
8983
0
    else {
8984
0
        while (inpos<size) {
8985
0
            Py_UCS4 ch = PyUnicode_READ(kind, data, inpos);
8986
            /* try to encode it */
8987
0
            charmapencode_result x = charmapencode_output(ch, mapping, writer, &respos);
8988
0
            if (x==enc_EXCEPTION) { /* error */
8989
0
                goto onError;
8990
0
            }
8991
0
            if (x==enc_FAILED) { /* unencodable character */
8992
0
                if (charmap_encoding_error(unicode, &inpos, mapping,
8993
0
                                           &exc,
8994
0
                                           &error_handler, &error_handler_obj, errors,
8995
0
                                           writer, &respos)) {
8996
0
                    goto onError;
8997
0
                }
8998
0
            }
8999
0
            else {
9000
                /* done with this character => adjust input position */
9001
0
                ++inpos;
9002
0
            }
9003
0
        }
9004
0
    }
9005
9006
0
    Py_XDECREF(exc);
9007
0
    Py_XDECREF(error_handler_obj);
9008
9009
    /* Resize if we allocated too much */
9010
0
    return PyBytesWriter_FinishWithSize(writer, respos);
9011
9012
0
  onError:
9013
0
    PyBytesWriter_Discard(writer);
9014
0
    Py_XDECREF(exc);
9015
0
    Py_XDECREF(error_handler_obj);
9016
0
    return NULL;
9017
0
}
9018
9019
PyObject *
9020
PyUnicode_AsCharmapString(PyObject *unicode,
9021
                          PyObject *mapping)
9022
0
{
9023
0
    if (!PyUnicode_Check(unicode) || mapping == NULL) {
9024
0
        PyErr_BadArgument();
9025
0
        return NULL;
9026
0
    }
9027
0
    return _PyUnicode_EncodeCharmap(unicode, mapping, NULL);
9028
0
}
9029
9030
/* create or adjust a UnicodeTranslateError */
9031
static void
9032
make_translate_exception(PyObject **exceptionObject,
9033
                         PyObject *unicode,
9034
                         Py_ssize_t startpos, Py_ssize_t endpos,
9035
                         const char *reason)
9036
0
{
9037
0
    if (*exceptionObject == NULL) {
9038
0
        *exceptionObject = _PyUnicodeTranslateError_Create(
9039
0
            unicode, startpos, endpos, reason);
9040
0
    }
9041
0
    else {
9042
0
        if (PyUnicodeTranslateError_SetStart(*exceptionObject, startpos))
9043
0
            goto onError;
9044
0
        if (PyUnicodeTranslateError_SetEnd(*exceptionObject, endpos))
9045
0
            goto onError;
9046
0
        if (PyUnicodeTranslateError_SetReason(*exceptionObject, reason))
9047
0
            goto onError;
9048
0
        return;
9049
0
      onError:
9050
0
        Py_CLEAR(*exceptionObject);
9051
0
    }
9052
0
}
9053
9054
/* error handling callback helper:
9055
   build arguments, call the callback and check the arguments,
9056
   put the result into newpos and return the replacement string, which
9057
   has to be freed by the caller */
9058
static PyObject *
9059
unicode_translate_call_errorhandler(const char *errors,
9060
                                    PyObject **errorHandler,
9061
                                    const char *reason,
9062
                                    PyObject *unicode, PyObject **exceptionObject,
9063
                                    Py_ssize_t startpos, Py_ssize_t endpos,
9064
                                    Py_ssize_t *newpos)
9065
0
{
9066
0
    static const char *argparse = "Un;translating error handler must return (str, int) tuple";
9067
9068
0
    Py_ssize_t i_newpos;
9069
0
    PyObject *restuple;
9070
0
    PyObject *resunicode;
9071
9072
0
    if (*errorHandler == NULL) {
9073
0
        *errorHandler = PyCodec_LookupError(errors);
9074
0
        if (*errorHandler == NULL)
9075
0
            return NULL;
9076
0
    }
9077
9078
0
    make_translate_exception(exceptionObject,
9079
0
                             unicode, startpos, endpos, reason);
9080
0
    if (*exceptionObject == NULL)
9081
0
        return NULL;
9082
9083
0
    restuple = PyObject_CallOneArg(*errorHandler, *exceptionObject);
9084
0
    if (restuple == NULL)
9085
0
        return NULL;
9086
0
    if (!PyTuple_Check(restuple)) {
9087
0
        PyErr_SetString(PyExc_TypeError, &argparse[3]);
9088
0
        Py_DECREF(restuple);
9089
0
        return NULL;
9090
0
    }
9091
0
    if (!PyArg_ParseTuple(restuple, argparse,
9092
0
                          &resunicode, &i_newpos)) {
9093
0
        Py_DECREF(restuple);
9094
0
        return NULL;
9095
0
    }
9096
0
    if (i_newpos<0)
9097
0
        *newpos = PyUnicode_GET_LENGTH(unicode)+i_newpos;
9098
0
    else
9099
0
        *newpos = i_newpos;
9100
0
    if (*newpos<0 || *newpos>PyUnicode_GET_LENGTH(unicode)) {
9101
0
        PyErr_Format(PyExc_IndexError, "position %zd from error handler out of bounds", *newpos);
9102
0
        Py_DECREF(restuple);
9103
0
        return NULL;
9104
0
    }
9105
0
    Py_INCREF(resunicode);
9106
0
    Py_DECREF(restuple);
9107
0
    return resunicode;
9108
0
}
9109
9110
/* Lookup the character ch in the mapping and put the result in result,
9111
   which must be decrefed by the caller.
9112
   The result can be PyLong, PyUnicode, None or NULL.
9113
   If the result is PyLong, put its value in replace.
9114
   Return 0 on success, -1 on error */
9115
static int
9116
charmaptranslate_lookup(Py_UCS4 c, PyObject *mapping, PyObject **result, Py_UCS4 *replace)
9117
18.0k
{
9118
18.0k
    PyObject *w = PyLong_FromLong((long)c);
9119
18.0k
    PyObject *x;
9120
9121
18.0k
    if (w == NULL)
9122
0
        return -1;
9123
18.0k
    int rc = PyMapping_GetOptionalItem(mapping, w, &x);
9124
18.0k
    Py_DECREF(w);
9125
18.0k
    if (rc == 0) {
9126
        /* No mapping found means: use 1:1 mapping. */
9127
6.09k
        *result = NULL;
9128
6.09k
        return 0;
9129
6.09k
    }
9130
11.9k
    if (x == NULL) {
9131
0
        if (PyErr_ExceptionMatches(PyExc_LookupError)) {
9132
            /* No mapping found means: use 1:1 mapping. */
9133
0
            PyErr_Clear();
9134
0
            *result = NULL;
9135
0
            return 0;
9136
0
        } else
9137
0
            return -1;
9138
0
    }
9139
11.9k
    else if (x == Py_None) {
9140
0
        *result = x;
9141
0
        return 0;
9142
0
    }
9143
11.9k
    else if (PyLong_Check(x)) {
9144
0
        long value = PyLong_AsLong(x);
9145
0
        if (value < 0 || value > MAX_UNICODE) {
9146
0
            PyErr_Format(PyExc_ValueError,
9147
0
                         "character mapping must be in range(0x%x)",
9148
0
                         MAX_UNICODE+1);
9149
0
            Py_DECREF(x);
9150
0
            return -1;
9151
0
        }
9152
0
        *result = x;
9153
0
        *replace = (Py_UCS4)value;
9154
0
        return 0;
9155
0
    }
9156
11.9k
    else if (PyUnicode_Check(x)) {
9157
11.9k
        *result = x;
9158
11.9k
        return 0;
9159
11.9k
    }
9160
0
    else {
9161
        /* wrong return value */
9162
0
        PyErr_SetString(PyExc_TypeError,
9163
0
                        "character mapping must return integer, None or str");
9164
0
        Py_DECREF(x);
9165
0
        return -1;
9166
0
    }
9167
11.9k
}
9168
9169
/* lookup the character, write the result into the writer.
9170
   Return 1 if the result was written into the writer, return 0 if the mapping
9171
   was undefined, raise an exception return -1 on error. */
9172
static int
9173
charmaptranslate_output(Py_UCS4 ch, PyObject *mapping,
9174
                        _PyUnicodeWriter *writer)
9175
6.12k
{
9176
6.12k
    PyObject *item;
9177
6.12k
    Py_UCS4 replace;
9178
9179
6.12k
    if (charmaptranslate_lookup(ch, mapping, &item, &replace))
9180
0
        return -1;
9181
9182
6.12k
    if (item == NULL) {
9183
        /* not found => default to 1:1 mapping */
9184
106
        if (_PyUnicodeWriter_WriteCharInline(writer, ch) < 0) {
9185
0
            return -1;
9186
0
        }
9187
106
        return 1;
9188
106
    }
9189
9190
6.02k
    if (item == Py_None) {
9191
0
        Py_DECREF(item);
9192
0
        return 0;
9193
0
    }
9194
9195
6.02k
    if (PyLong_Check(item)) {
9196
0
        if (_PyUnicodeWriter_WriteCharInline(writer, replace) < 0) {
9197
0
            Py_DECREF(item);
9198
0
            return -1;
9199
0
        }
9200
0
        Py_DECREF(item);
9201
0
        return 1;
9202
0
    }
9203
9204
6.02k
    if (!PyUnicode_Check(item)) {
9205
0
        Py_DECREF(item);
9206
0
        return -1;
9207
0
    }
9208
9209
6.02k
    if (_PyUnicodeWriter_WriteStr(writer, item) < 0) {
9210
0
        Py_DECREF(item);
9211
0
        return -1;
9212
0
    }
9213
9214
6.02k
    Py_DECREF(item);
9215
6.02k
    return 1;
9216
6.02k
}
9217
9218
static int
9219
unicode_fast_translate_lookup(PyObject *mapping, Py_UCS1 ch,
9220
                              Py_UCS1 *translate)
9221
11.9k
{
9222
11.9k
    PyObject *item = NULL;
9223
11.9k
    Py_UCS4 replace;
9224
11.9k
    int ret = 0;
9225
9226
11.9k
    if (charmaptranslate_lookup(ch, mapping, &item, &replace)) {
9227
0
        return -1;
9228
0
    }
9229
9230
11.9k
    if (item == Py_None) {
9231
        /* deletion */
9232
0
        translate[ch] = 0xfe;
9233
0
    }
9234
11.9k
    else if (item == NULL) {
9235
        /* not found => default to 1:1 mapping */
9236
5.99k
        translate[ch] = ch;
9237
5.99k
        return 1;
9238
5.99k
    }
9239
5.92k
    else if (PyLong_Check(item)) {
9240
0
        if (replace > 127) {
9241
            /* invalid character or character outside ASCII:
9242
               skip the fast translate */
9243
0
            goto exit;
9244
0
        }
9245
0
        translate[ch] = (Py_UCS1)replace;
9246
0
    }
9247
5.92k
    else if (PyUnicode_Check(item)) {
9248
5.92k
        if (PyUnicode_GET_LENGTH(item) != 1)
9249
5.92k
            goto exit;
9250
9251
0
        replace = PyUnicode_READ_CHAR(item, 0);
9252
0
        if (replace > 127)
9253
0
            goto exit;
9254
0
        translate[ch] = (Py_UCS1)replace;
9255
0
    }
9256
0
    else {
9257
        /* not None, NULL, long or unicode */
9258
0
        goto exit;
9259
0
    }
9260
0
    ret = 1;
9261
9262
5.92k
  exit:
9263
5.92k
    Py_DECREF(item);
9264
5.92k
    return ret;
9265
0
}
9266
9267
/* Fast path for ascii => ascii translation. Return 1 if the whole string
9268
   was translated into writer, return 0 if the input string was partially
9269
   translated into writer, raise an exception and return -1 on error. */
9270
static int
9271
unicode_fast_translate(PyObject *input, PyObject *mapping,
9272
                       _PyUnicodeWriter *writer, int ignore,
9273
                       Py_ssize_t *input_pos)
9274
11.8k
{
9275
11.8k
    Py_UCS1 ascii_table[128], ch, ch2;
9276
11.8k
    Py_ssize_t len;
9277
11.8k
    const Py_UCS1 *in, *end;
9278
11.8k
    Py_UCS1 *out;
9279
11.8k
    int res = 0;
9280
9281
11.8k
    len = PyUnicode_GET_LENGTH(input);
9282
9283
11.8k
    memset(ascii_table, 0xff, 128);
9284
9285
11.8k
    in = PyUnicode_1BYTE_DATA(input);
9286
11.8k
    end = in + len;
9287
9288
11.8k
    assert(PyUnicode_IS_ASCII(writer->buffer));
9289
11.8k
    assert(PyUnicode_GET_LENGTH(writer->buffer) == len);
9290
11.8k
    out = PyUnicode_1BYTE_DATA(writer->buffer);
9291
9292
17.8k
    for (; in < end; in++) {
9293
11.9k
        ch = *in;
9294
11.9k
        ch2 = ascii_table[ch];
9295
11.9k
        if (ch2 == 0xff) {
9296
11.9k
            int translate = unicode_fast_translate_lookup(mapping, ch,
9297
11.9k
                                                          ascii_table);
9298
11.9k
            if (translate < 0)
9299
0
                return -1;
9300
11.9k
            if (translate == 0)
9301
5.92k
                goto exit;
9302
5.99k
            ch2 = ascii_table[ch];
9303
5.99k
        }
9304
6.03k
        if (ch2 == 0xfe) {
9305
0
            if (ignore)
9306
0
                continue;
9307
0
            goto exit;
9308
0
        }
9309
6.03k
        assert(ch2 < 128);
9310
6.03k
        *out = ch2;
9311
6.03k
        out++;
9312
6.03k
    }
9313
5.91k
    res = 1;
9314
9315
11.8k
exit:
9316
11.8k
    writer->pos = out - PyUnicode_1BYTE_DATA(writer->buffer);
9317
11.8k
    *input_pos = in - PyUnicode_1BYTE_DATA(input);
9318
11.8k
    return res;
9319
5.91k
}
9320
9321
static PyObject *
9322
_PyUnicode_TranslateCharmap(PyObject *input,
9323
                            PyObject *mapping,
9324
                            const char *errors)
9325
11.8k
{
9326
    /* input object */
9327
11.8k
    const void *data;
9328
11.8k
    Py_ssize_t size, i;
9329
11.8k
    int kind;
9330
    /* output buffer */
9331
11.8k
    _PyUnicodeWriter writer;
9332
    /* error handler */
9333
11.8k
    const char *reason = "character maps to <undefined>";
9334
11.8k
    PyObject *errorHandler = NULL;
9335
11.8k
    PyObject *exc = NULL;
9336
11.8k
    int ignore;
9337
11.8k
    int res;
9338
9339
11.8k
    if (mapping == NULL) {
9340
0
        PyErr_BadArgument();
9341
0
        return NULL;
9342
0
    }
9343
9344
11.8k
    data = PyUnicode_DATA(input);
9345
11.8k
    kind = PyUnicode_KIND(input);
9346
11.8k
    size = PyUnicode_GET_LENGTH(input);
9347
9348
11.8k
    if (size == 0)
9349
0
        return PyUnicode_FromObject(input);
9350
9351
    /* allocate enough for a simple 1:1 translation without
9352
       replacements, if we need more, we'll resize */
9353
11.8k
    _PyUnicodeWriter_Init(&writer);
9354
11.8k
    if (_PyUnicodeWriter_Prepare(&writer, size, 127) == -1)
9355
0
        goto onError;
9356
9357
11.8k
    ignore = (errors != NULL && strcmp(errors, "ignore") == 0);
9358
9359
11.8k
    if (PyUnicode_IS_ASCII(input)) {
9360
11.8k
        res = unicode_fast_translate(input, mapping, &writer, ignore, &i);
9361
11.8k
        if (res < 0) {
9362
0
            _PyUnicodeWriter_Dealloc(&writer);
9363
0
            return NULL;
9364
0
        }
9365
11.8k
        if (res == 1)
9366
5.91k
            return _PyUnicodeWriter_Finish(&writer);
9367
11.8k
    }
9368
0
    else {
9369
0
        i = 0;
9370
0
    }
9371
9372
12.0k
    while (i<size) {
9373
        /* try to encode it */
9374
6.12k
        int translate;
9375
6.12k
        PyObject *repunicode = NULL; /* initialize to prevent gcc warning */
9376
6.12k
        Py_ssize_t newpos;
9377
        /* startpos for collecting untranslatable chars */
9378
6.12k
        Py_ssize_t collstart;
9379
6.12k
        Py_ssize_t collend;
9380
6.12k
        Py_UCS4 ch;
9381
9382
6.12k
        ch = PyUnicode_READ(kind, data, i);
9383
6.12k
        translate = charmaptranslate_output(ch, mapping, &writer);
9384
6.12k
        if (translate < 0)
9385
0
            goto onError;
9386
9387
6.12k
        if (translate != 0) {
9388
            /* it worked => adjust input pointer */
9389
6.12k
            ++i;
9390
6.12k
            continue;
9391
6.12k
        }
9392
9393
        /* untranslatable character */
9394
0
        collstart = i;
9395
0
        collend = i+1;
9396
9397
        /* find all untranslatable characters */
9398
0
        while (collend < size) {
9399
0
            PyObject *x;
9400
0
            Py_UCS4 replace;
9401
0
            ch = PyUnicode_READ(kind, data, collend);
9402
0
            if (charmaptranslate_lookup(ch, mapping, &x, &replace))
9403
0
                goto onError;
9404
0
            Py_XDECREF(x);
9405
0
            if (x != Py_None)
9406
0
                break;
9407
0
            ++collend;
9408
0
        }
9409
9410
0
        if (ignore) {
9411
0
            i = collend;
9412
0
        }
9413
0
        else {
9414
0
            repunicode = unicode_translate_call_errorhandler(errors, &errorHandler,
9415
0
                                                             reason, input, &exc,
9416
0
                                                             collstart, collend, &newpos);
9417
0
            if (repunicode == NULL)
9418
0
                goto onError;
9419
0
            if (_PyUnicodeWriter_WriteStr(&writer, repunicode) < 0) {
9420
0
                Py_DECREF(repunicode);
9421
0
                goto onError;
9422
0
            }
9423
0
            Py_DECREF(repunicode);
9424
0
            i = newpos;
9425
0
        }
9426
0
    }
9427
5.92k
    Py_XDECREF(exc);
9428
5.92k
    Py_XDECREF(errorHandler);
9429
5.92k
    return _PyUnicodeWriter_Finish(&writer);
9430
9431
0
  onError:
9432
0
    _PyUnicodeWriter_Dealloc(&writer);
9433
0
    Py_XDECREF(exc);
9434
0
    Py_XDECREF(errorHandler);
9435
0
    return NULL;
9436
5.92k
}
9437
9438
PyObject *
9439
PyUnicode_Translate(PyObject *str,
9440
                    PyObject *mapping,
9441
                    const char *errors)
9442
0
{
9443
0
    if (ensure_unicode(str) < 0)
9444
0
        return NULL;
9445
0
    return _PyUnicode_TranslateCharmap(str, mapping, errors);
9446
0
}
9447
9448
PyObject *
9449
_PyUnicode_TransformDecimalAndSpaceToASCII(PyObject *unicode)
9450
12.2M
{
9451
12.2M
    if (!PyUnicode_Check(unicode)) {
9452
0
        PyErr_BadInternalCall();
9453
0
        return NULL;
9454
0
    }
9455
12.2M
    if (PyUnicode_IS_ASCII(unicode)) {
9456
        /* If the string is already ASCII, just return the same string */
9457
12.2M
        return Py_NewRef(unicode);
9458
12.2M
    }
9459
9460
2.19k
    Py_ssize_t len = PyUnicode_GET_LENGTH(unicode);
9461
2.19k
    PyObject *result = PyUnicode_New(len, 127);
9462
2.19k
    if (result == NULL) {
9463
0
        return NULL;
9464
0
    }
9465
9466
2.19k
    Py_UCS1 *out = PyUnicode_1BYTE_DATA(result);
9467
2.19k
    int kind = PyUnicode_KIND(unicode);
9468
2.19k
    const void *data = PyUnicode_DATA(unicode);
9469
2.19k
    Py_ssize_t i;
9470
36.2k
    for (i = 0; i < len; ++i) {
9471
34.2k
        Py_UCS4 ch = PyUnicode_READ(kind, data, i);
9472
34.2k
        if (ch < 127) {
9473
31.5k
            out[i] = ch;
9474
31.5k
        }
9475
2.66k
        else if (Py_UNICODE_ISSPACE(ch)) {
9476
1.25k
            out[i] = ' ';
9477
1.25k
        }
9478
1.40k
        else {
9479
1.40k
            int decimal = Py_UNICODE_TODECIMAL(ch);
9480
1.40k
            if (decimal < 0) {
9481
139
                out[i] = '?';
9482
139
                out[i+1] = '\0';
9483
139
                _PyUnicode_LENGTH(result) = i + 1;
9484
139
                break;
9485
139
            }
9486
1.26k
            out[i] = '0' + decimal;
9487
1.26k
        }
9488
34.2k
    }
9489
9490
2.19k
    assert(_PyUnicode_CheckConsistency(result, 1));
9491
2.19k
    return result;
9492
2.19k
}
9493
9494
/* --- Helpers ------------------------------------------------------------ */
9495
9496
/* helper macro to fixup start/end slice values */
9497
#define ADJUST_INDICES(start, end, len) \
9498
123M
    do {                                \
9499
123M
        if (end > len) {                \
9500
98.7M
            end = len;                  \
9501
98.7M
        }                               \
9502
123M
        else if (end < 0) {             \
9503
0
            end += len;                 \
9504
0
            if (end < 0) {              \
9505
0
                end = 0;                \
9506
0
            }                           \
9507
0
        }                               \
9508
123M
        if (start < 0) {                \
9509
19.7k
            start += len;               \
9510
19.7k
            if (start < 0) {            \
9511
0
                start = 0;              \
9512
0
            }                           \
9513
19.7k
        }                               \
9514
123M
    } while (0)
9515
9516
static Py_ssize_t
9517
any_find_slice(PyObject* s1, PyObject* s2,
9518
               Py_ssize_t start,
9519
               Py_ssize_t end,
9520
               int direction)
9521
24.9M
{
9522
24.9M
    int kind1, kind2;
9523
24.9M
    const void *buf1, *buf2;
9524
24.9M
    Py_ssize_t len1, len2, result;
9525
9526
24.9M
    kind1 = PyUnicode_KIND(s1);
9527
24.9M
    kind2 = PyUnicode_KIND(s2);
9528
24.9M
    if (kind1 < kind2)
9529
0
        return -1;
9530
9531
24.9M
    len1 = PyUnicode_GET_LENGTH(s1);
9532
24.9M
    len2 = PyUnicode_GET_LENGTH(s2);
9533
24.9M
    ADJUST_INDICES(start, end, len1);
9534
24.9M
    if (end - start < len2)
9535
1.51M
        return -1;
9536
9537
23.4M
    buf1 = PyUnicode_DATA(s1);
9538
23.4M
    buf2 = PyUnicode_DATA(s2);
9539
23.4M
    if (len2 == 1) {
9540
22.3M
        Py_UCS4 ch = PyUnicode_READ(kind2, buf2, 0);
9541
22.3M
        result = findchar((const char *)buf1 + kind1*start,
9542
22.3M
                          kind1, end - start, ch, direction);
9543
22.3M
        if (result == -1)
9544
4.10M
            return -1;
9545
18.2M
        else
9546
18.2M
            return start + result;
9547
22.3M
    }
9548
9549
1.05M
    if (kind2 != kind1) {
9550
413k
        buf2 = unicode_askind(kind2, buf2, len2, kind1);
9551
413k
        if (!buf2)
9552
0
            return -2;
9553
413k
    }
9554
9555
1.05M
    if (direction > 0) {
9556
1.05M
        switch (kind1) {
9557
637k
        case PyUnicode_1BYTE_KIND:
9558
637k
            if (PyUnicode_IS_ASCII(s1) && PyUnicode_IS_ASCII(s2))
9559
435k
                result = asciilib_find_slice(buf1, len1, buf2, len2, start, end);
9560
201k
            else
9561
201k
                result = ucs1lib_find_slice(buf1, len1, buf2, len2, start, end);
9562
637k
            break;
9563
343k
        case PyUnicode_2BYTE_KIND:
9564
343k
            result = ucs2lib_find_slice(buf1, len1, buf2, len2, start, end);
9565
343k
            break;
9566
69.7k
        case PyUnicode_4BYTE_KIND:
9567
69.7k
            result = ucs4lib_find_slice(buf1, len1, buf2, len2, start, end);
9568
69.7k
            break;
9569
0
        default:
9570
0
            Py_UNREACHABLE();
9571
1.05M
        }
9572
1.05M
    }
9573
0
    else {
9574
0
        switch (kind1) {
9575
0
        case PyUnicode_1BYTE_KIND:
9576
0
            if (PyUnicode_IS_ASCII(s1) && PyUnicode_IS_ASCII(s2))
9577
0
                result = asciilib_rfind_slice(buf1, len1, buf2, len2, start, end);
9578
0
            else
9579
0
                result = ucs1lib_rfind_slice(buf1, len1, buf2, len2, start, end);
9580
0
            break;
9581
0
        case PyUnicode_2BYTE_KIND:
9582
0
            result = ucs2lib_rfind_slice(buf1, len1, buf2, len2, start, end);
9583
0
            break;
9584
0
        case PyUnicode_4BYTE_KIND:
9585
0
            result = ucs4lib_rfind_slice(buf1, len1, buf2, len2, start, end);
9586
0
            break;
9587
0
        default:
9588
0
            Py_UNREACHABLE();
9589
0
        }
9590
0
    }
9591
9592
1.05M
    assert((kind2 != kind1) == (buf2 != PyUnicode_DATA(s2)));
9593
1.05M
    if (kind2 != kind1)
9594
413k
        PyMem_Free((void *)buf2);
9595
9596
1.05M
    return result;
9597
1.05M
}
9598
9599
9600
Py_ssize_t
9601
PyUnicode_Count(PyObject *str,
9602
                PyObject *substr,
9603
                Py_ssize_t start,
9604
                Py_ssize_t end)
9605
0
{
9606
0
    if (ensure_unicode(str) < 0 || ensure_unicode(substr) < 0)
9607
0
        return -1;
9608
9609
0
    return unicode_count_impl(str, substr, start, end);
9610
0
}
9611
9612
Py_ssize_t
9613
PyUnicode_Find(PyObject *str,
9614
               PyObject *substr,
9615
               Py_ssize_t start,
9616
               Py_ssize_t end,
9617
               int direction)
9618
0
{
9619
0
    if (ensure_unicode(str) < 0 || ensure_unicode(substr) < 0)
9620
0
        return -2;
9621
9622
0
    return any_find_slice(str, substr, start, end, direction);
9623
0
}
9624
9625
Py_ssize_t
9626
PyUnicode_FindChar(PyObject *str, Py_UCS4 ch,
9627
                   Py_ssize_t start, Py_ssize_t end,
9628
                   int direction)
9629
1.55M
{
9630
1.55M
    int kind;
9631
1.55M
    Py_ssize_t len, result;
9632
1.55M
    len = PyUnicode_GET_LENGTH(str);
9633
1.55M
    ADJUST_INDICES(start, end, len);
9634
1.55M
    if (end - start < 1)
9635
0
        return -1;
9636
1.55M
    kind = PyUnicode_KIND(str);
9637
1.55M
    result = findchar(PyUnicode_1BYTE_DATA(str) + kind*start,
9638
1.55M
                      kind, end-start, ch, direction);
9639
1.55M
    if (result == -1)
9640
792k
        return -1;
9641
760k
    else
9642
760k
        return start + result;
9643
1.55M
}
9644
9645
static int
9646
tailmatch(PyObject *self,
9647
          PyObject *substring,
9648
          Py_ssize_t start,
9649
          Py_ssize_t end,
9650
          int direction)
9651
71.7M
{
9652
71.7M
    int kind_self;
9653
71.7M
    int kind_sub;
9654
71.7M
    const void *data_self;
9655
71.7M
    const void *data_sub;
9656
71.7M
    Py_ssize_t offset;
9657
71.7M
    Py_ssize_t i;
9658
71.7M
    Py_ssize_t end_sub;
9659
9660
71.7M
    ADJUST_INDICES(start, end, PyUnicode_GET_LENGTH(self));
9661
71.7M
    end -= PyUnicode_GET_LENGTH(substring);
9662
71.7M
    if (end < start)
9663
6.45M
        return 0;
9664
9665
65.3M
    if (PyUnicode_GET_LENGTH(substring) == 0)
9666
0
        return 1;
9667
9668
65.3M
    kind_self = PyUnicode_KIND(self);
9669
65.3M
    data_self = PyUnicode_DATA(self);
9670
65.3M
    kind_sub = PyUnicode_KIND(substring);
9671
65.3M
    data_sub = PyUnicode_DATA(substring);
9672
65.3M
    end_sub = PyUnicode_GET_LENGTH(substring) - 1;
9673
9674
65.3M
    if (direction > 0)
9675
6.68M
        offset = end;
9676
58.6M
    else
9677
58.6M
        offset = start;
9678
9679
65.3M
    if (PyUnicode_READ(kind_self, data_self, offset) ==
9680
65.3M
        PyUnicode_READ(kind_sub, data_sub, 0) &&
9681
36.8M
        PyUnicode_READ(kind_self, data_self, offset + end_sub) ==
9682
36.8M
        PyUnicode_READ(kind_sub, data_sub, end_sub)) {
9683
        /* If both are of the same kind, memcmp is sufficient */
9684
13.4M
        if (kind_self == kind_sub) {
9685
7.61M
            return ! memcmp((char *)data_self +
9686
7.61M
                                (offset * PyUnicode_KIND(substring)),
9687
7.61M
                            data_sub,
9688
7.61M
                            PyUnicode_GET_LENGTH(substring) *
9689
7.61M
                                PyUnicode_KIND(substring));
9690
7.61M
        }
9691
        /* otherwise we have to compare each character by first accessing it */
9692
5.82M
        else {
9693
            /* We do not need to compare 0 and len(substring)-1 because
9694
               the if statement above ensured already that they are equal
9695
               when we end up here. */
9696
5.91M
            for (i = 1; i < end_sub; ++i) {
9697
97.7k
                if (PyUnicode_READ(kind_self, data_self, offset + i) !=
9698
97.7k
                    PyUnicode_READ(kind_sub, data_sub, i))
9699
5.05k
                    return 0;
9700
97.7k
            }
9701
5.82M
            return 1;
9702
5.82M
        }
9703
13.4M
    }
9704
9705
51.8M
    return 0;
9706
65.3M
}
9707
9708
Py_ssize_t
9709
PyUnicode_Tailmatch(PyObject *str,
9710
                    PyObject *substr,
9711
                    Py_ssize_t start,
9712
                    Py_ssize_t end,
9713
                    int direction)
9714
114
{
9715
114
    if (ensure_unicode(str) < 0 || ensure_unicode(substr) < 0)
9716
0
        return -1;
9717
9718
114
    return tailmatch(str, substr, start, end, direction);
9719
114
}
9720
9721
static PyObject *
9722
ascii_upper_or_lower(PyObject *self, int lower)
9723
56.9M
{
9724
56.9M
    Py_ssize_t len = PyUnicode_GET_LENGTH(self);
9725
56.9M
    const char *data = PyUnicode_DATA(self);
9726
56.9M
    char *resdata;
9727
56.9M
    PyObject *res;
9728
9729
56.9M
    res = PyUnicode_New(len, 127);
9730
56.9M
    if (res == NULL)
9731
0
        return NULL;
9732
56.9M
    resdata = PyUnicode_DATA(res);
9733
56.9M
    if (lower)
9734
56.9M
        _Py_bytes_lower(resdata, data, len);
9735
306
    else
9736
306
        _Py_bytes_upper(resdata, data, len);
9737
56.9M
    return res;
9738
56.9M
}
9739
9740
static Py_UCS4
9741
handle_capital_sigma(int kind, const void *data, Py_ssize_t length, Py_ssize_t i)
9742
875k
{
9743
875k
    Py_ssize_t j;
9744
875k
    int final_sigma;
9745
875k
    Py_UCS4 c = 0;   /* initialize to prevent gcc warning */
9746
    /* U+03A3 is in the Final_Sigma context when, it is found like this:
9747
9748
     \p{cased}\p{case-ignorable}*U+03A3!(\p{case-ignorable}*\p{cased})
9749
9750
    where ! is a negation and \p{xxx} is a character with property xxx.
9751
    */
9752
1.62M
    for (j = i - 1; j >= 0; j--) {
9753
1.62M
        c = PyUnicode_READ(kind, data, j);
9754
1.62M
        if (!_PyUnicode_IsCaseIgnorable(c))
9755
873k
            break;
9756
1.62M
    }
9757
875k
    final_sigma = j >= 0 && _PyUnicode_IsCased(c);
9758
875k
    if (final_sigma) {
9759
1.37M
        for (j = i + 1; j < length; j++) {
9760
1.36M
            c = PyUnicode_READ(kind, data, j);
9761
1.36M
            if (!_PyUnicode_IsCaseIgnorable(c))
9762
685k
                break;
9763
1.36M
        }
9764
687k
        final_sigma = j == length || !_PyUnicode_IsCased(c);
9765
687k
    }
9766
875k
    return (final_sigma) ? 0x3C2 : 0x3C3;
9767
875k
}
9768
9769
static int
9770
lower_ucs4(int kind, const void *data, Py_ssize_t length, Py_ssize_t i,
9771
           Py_UCS4 c, Py_UCS4 *mapped)
9772
101M
{
9773
    /* Obscure special case. */
9774
101M
    if (c == 0x3A3) {
9775
875k
        mapped[0] = handle_capital_sigma(kind, data, length, i);
9776
875k
        return 1;
9777
875k
    }
9778
101M
    return _PyUnicode_ToLowerFull(c, mapped);
9779
101M
}
9780
9781
static Py_ssize_t
9782
do_capitalize(int kind, const void *data, Py_ssize_t length, Py_UCS4 *res, Py_UCS4 *maxchar)
9783
0
{
9784
0
    Py_ssize_t i, k = 0;
9785
0
    int n_res, j;
9786
0
    Py_UCS4 c, mapped[3];
9787
9788
0
    c = PyUnicode_READ(kind, data, 0);
9789
0
    n_res = _PyUnicode_ToTitleFull(c, mapped);
9790
0
    for (j = 0; j < n_res; j++) {
9791
0
        *maxchar = Py_MAX(*maxchar, mapped[j]);
9792
0
        res[k++] = mapped[j];
9793
0
    }
9794
0
    for (i = 1; i < length; i++) {
9795
0
        c = PyUnicode_READ(kind, data, i);
9796
0
        n_res = lower_ucs4(kind, data, length, i, c, mapped);
9797
0
        for (j = 0; j < n_res; j++) {
9798
0
            *maxchar = Py_MAX(*maxchar, mapped[j]);
9799
0
            res[k++] = mapped[j];
9800
0
        }
9801
0
    }
9802
0
    return k;
9803
0
}
9804
9805
static Py_ssize_t
9806
0
do_swapcase(int kind, const void *data, Py_ssize_t length, Py_UCS4 *res, Py_UCS4 *maxchar) {
9807
0
    Py_ssize_t i, k = 0;
9808
9809
0
    for (i = 0; i < length; i++) {
9810
0
        Py_UCS4 c = PyUnicode_READ(kind, data, i), mapped[3];
9811
0
        int n_res, j;
9812
0
        if (Py_UNICODE_ISUPPER(c)) {
9813
0
            n_res = lower_ucs4(kind, data, length, i, c, mapped);
9814
0
        }
9815
0
        else if (Py_UNICODE_ISLOWER(c)) {
9816
0
            n_res = _PyUnicode_ToUpperFull(c, mapped);
9817
0
        }
9818
0
        else {
9819
0
            n_res = 1;
9820
0
            mapped[0] = c;
9821
0
        }
9822
0
        for (j = 0; j < n_res; j++) {
9823
0
            *maxchar = Py_MAX(*maxchar, mapped[j]);
9824
0
            res[k++] = mapped[j];
9825
0
        }
9826
0
    }
9827
0
    return k;
9828
0
}
9829
9830
static Py_ssize_t
9831
do_upper_or_lower(int kind, const void *data, Py_ssize_t length, Py_UCS4 *res,
9832
                  Py_UCS4 *maxchar, int lower)
9833
2.53M
{
9834
2.53M
    Py_ssize_t i, k = 0;
9835
9836
104M
    for (i = 0; i < length; i++) {
9837
101M
        Py_UCS4 c = PyUnicode_READ(kind, data, i), mapped[3];
9838
101M
        int n_res, j;
9839
101M
        if (lower)
9840
101M
            n_res = lower_ucs4(kind, data, length, i, c, mapped);
9841
0
        else
9842
0
            n_res = _PyUnicode_ToUpperFull(c, mapped);
9843
203M
        for (j = 0; j < n_res; j++) {
9844
101M
            *maxchar = Py_MAX(*maxchar, mapped[j]);
9845
101M
            res[k++] = mapped[j];
9846
101M
        }
9847
101M
    }
9848
2.53M
    return k;
9849
2.53M
}
9850
9851
static Py_ssize_t
9852
do_upper(int kind, const void *data, Py_ssize_t length, Py_UCS4 *res, Py_UCS4 *maxchar)
9853
0
{
9854
0
    return do_upper_or_lower(kind, data, length, res, maxchar, 0);
9855
0
}
9856
9857
static Py_ssize_t
9858
do_lower(int kind, const void *data, Py_ssize_t length, Py_UCS4 *res, Py_UCS4 *maxchar)
9859
2.53M
{
9860
2.53M
    return do_upper_or_lower(kind, data, length, res, maxchar, 1);
9861
2.53M
}
9862
9863
static Py_ssize_t
9864
do_casefold(int kind, const void *data, Py_ssize_t length, Py_UCS4 *res, Py_UCS4 *maxchar)
9865
0
{
9866
0
    Py_ssize_t i, k = 0;
9867
9868
0
    for (i = 0; i < length; i++) {
9869
0
        Py_UCS4 c = PyUnicode_READ(kind, data, i);
9870
0
        Py_UCS4 mapped[3];
9871
0
        int j, n_res = _PyUnicode_ToFoldedFull(c, mapped);
9872
0
        for (j = 0; j < n_res; j++) {
9873
0
            *maxchar = Py_MAX(*maxchar, mapped[j]);
9874
0
            res[k++] = mapped[j];
9875
0
        }
9876
0
    }
9877
0
    return k;
9878
0
}
9879
9880
static Py_ssize_t
9881
do_title(int kind, const void *data, Py_ssize_t length, Py_UCS4 *res, Py_UCS4 *maxchar)
9882
0
{
9883
0
    Py_ssize_t i, k = 0;
9884
0
    int previous_is_cased;
9885
9886
0
    previous_is_cased = 0;
9887
0
    for (i = 0; i < length; i++) {
9888
0
        const Py_UCS4 c = PyUnicode_READ(kind, data, i);
9889
0
        Py_UCS4 mapped[3];
9890
0
        int n_res, j;
9891
9892
0
        if (previous_is_cased)
9893
0
            n_res = lower_ucs4(kind, data, length, i, c, mapped);
9894
0
        else
9895
0
            n_res = _PyUnicode_ToTitleFull(c, mapped);
9896
9897
0
        for (j = 0; j < n_res; j++) {
9898
0
            *maxchar = Py_MAX(*maxchar, mapped[j]);
9899
0
            res[k++] = mapped[j];
9900
0
        }
9901
9902
0
        previous_is_cased = _PyUnicode_IsCased(c);
9903
0
    }
9904
0
    return k;
9905
0
}
9906
9907
static PyObject *
9908
case_operation(PyObject *self,
9909
               Py_ssize_t (*perform)(int, const void *, Py_ssize_t, Py_UCS4 *, Py_UCS4 *))
9910
2.53M
{
9911
2.53M
    PyObject *res = NULL;
9912
2.53M
    Py_ssize_t length, newlength = 0;
9913
2.53M
    int kind, outkind;
9914
2.53M
    const void *data;
9915
2.53M
    void *outdata;
9916
2.53M
    Py_UCS4 maxchar = 0, *tmp, *tmpend;
9917
9918
2.53M
    kind = PyUnicode_KIND(self);
9919
2.53M
    data = PyUnicode_DATA(self);
9920
2.53M
    length = PyUnicode_GET_LENGTH(self);
9921
2.53M
    if ((size_t) length > PY_SSIZE_T_MAX / (3 * sizeof(Py_UCS4))) {
9922
0
        PyErr_SetString(PyExc_OverflowError, "string is too long");
9923
0
        return NULL;
9924
0
    }
9925
2.53M
    tmp = PyMem_Malloc(sizeof(Py_UCS4) * 3 * length);
9926
2.53M
    if (tmp == NULL)
9927
0
        return PyErr_NoMemory();
9928
2.53M
    newlength = perform(kind, data, length, tmp, &maxchar);
9929
2.53M
    res = PyUnicode_New(newlength, maxchar);
9930
2.53M
    if (res == NULL)
9931
0
        goto leave;
9932
2.53M
    tmpend = tmp + newlength;
9933
2.53M
    outdata = PyUnicode_DATA(res);
9934
2.53M
    outkind = PyUnicode_KIND(res);
9935
2.53M
    switch (outkind) {
9936
221k
    case PyUnicode_1BYTE_KIND:
9937
221k
        _PyUnicode_CONVERT_BYTES(Py_UCS4, Py_UCS1, tmp, tmpend, outdata);
9938
221k
        break;
9939
2.24M
    case PyUnicode_2BYTE_KIND:
9940
2.24M
        _PyUnicode_CONVERT_BYTES(Py_UCS4, Py_UCS2, tmp, tmpend, outdata);
9941
2.24M
        break;
9942
69.3k
    case PyUnicode_4BYTE_KIND:
9943
69.3k
        memcpy(outdata, tmp, sizeof(Py_UCS4) * newlength);
9944
69.3k
        break;
9945
0
    default:
9946
0
        Py_UNREACHABLE();
9947
2.53M
    }
9948
2.53M
  leave:
9949
2.53M
    PyMem_Free(tmp);
9950
2.53M
    return res;
9951
2.53M
}
9952
9953
PyObject *
9954
PyUnicode_Join(PyObject *separator, PyObject *seq)
9955
22.9M
{
9956
22.9M
    PyObject *res;
9957
22.9M
    PyObject *fseq;
9958
22.9M
    Py_ssize_t seqlen;
9959
22.9M
    PyObject **items;
9960
9961
22.9M
    fseq = PySequence_Fast(seq, "can only join an iterable");
9962
22.9M
    if (fseq == NULL) {
9963
620
        return NULL;
9964
620
    }
9965
9966
22.9M
    Py_BEGIN_CRITICAL_SECTION_SEQUENCE_FAST(seq);
9967
9968
22.9M
    items = PySequence_Fast_ITEMS(fseq);
9969
22.9M
    seqlen = PySequence_Fast_GET_SIZE(fseq);
9970
22.9M
    res = _PyUnicode_JoinArray(separator, items, seqlen);
9971
9972
22.9M
    Py_END_CRITICAL_SECTION_SEQUENCE_FAST();
9973
9974
22.9M
    Py_DECREF(fseq);
9975
22.9M
    return res;
9976
22.9M
}
9977
9978
PyObject *
9979
_PyUnicode_JoinArray(PyObject *separator, PyObject *const *items, Py_ssize_t seqlen)
9980
46.7M
{
9981
46.7M
    PyObject *res = NULL; /* the result */
9982
46.7M
    PyObject *sep = NULL;
9983
46.7M
    Py_ssize_t seplen;
9984
46.7M
    PyObject *item;
9985
46.7M
    Py_ssize_t sz, i, res_offset;
9986
46.7M
    Py_UCS4 maxchar;
9987
46.7M
    Py_UCS4 item_maxchar;
9988
46.7M
    int use_memcpy;
9989
46.7M
    unsigned char *res_data = NULL, *sep_data = NULL;
9990
46.7M
    PyObject *last_obj;
9991
46.7M
    int kind = 0;
9992
9993
    /* If empty sequence, return u"". */
9994
46.7M
    if (seqlen == 0) {
9995
5.87M
        _Py_RETURN_UNICODE_EMPTY();
9996
5.87M
    }
9997
9998
    /* If singleton sequence with an exact Unicode, return that. */
9999
40.8M
    last_obj = NULL;
10000
40.8M
    if (seqlen == 1) {
10001
10.3M
        if (PyUnicode_CheckExact(items[0])) {
10002
9.33M
            res = items[0];
10003
9.33M
            return Py_NewRef(res);
10004
9.33M
        }
10005
1.03M
        seplen = 0;
10006
1.03M
        maxchar = 0;
10007
1.03M
    }
10008
30.4M
    else {
10009
        /* Set up sep and seplen */
10010
30.4M
        if (separator == NULL) {
10011
            /* fall back to a blank space separator */
10012
0
            sep = PyUnicode_FromOrdinal(' ');
10013
0
            if (!sep)
10014
0
                goto onError;
10015
0
            seplen = 1;
10016
0
            maxchar = 32;
10017
0
        }
10018
30.4M
        else {
10019
30.4M
            if (!PyUnicode_Check(separator)) {
10020
0
                PyErr_Format(PyExc_TypeError,
10021
0
                             "separator: expected str instance,"
10022
0
                             " %.80s found",
10023
0
                             Py_TYPE(separator)->tp_name);
10024
0
                goto onError;
10025
0
            }
10026
30.4M
            sep = separator;
10027
30.4M
            seplen = PyUnicode_GET_LENGTH(separator);
10028
30.4M
            maxchar = PyUnicode_MAX_CHAR_VALUE(separator);
10029
            /* inc refcount to keep this code path symmetric with the
10030
               above case of a blank separator */
10031
30.4M
            Py_INCREF(sep);
10032
30.4M
        }
10033
30.4M
        last_obj = sep;
10034
30.4M
    }
10035
10036
    /* There are at least two things to join, or else we have a subclass
10037
     * of str in the sequence.
10038
     * Do a pre-pass to figure out the total amount of space we'll
10039
     * need (sz), and see whether all argument are strings.
10040
     */
10041
31.4M
    sz = 0;
10042
#ifdef Py_DEBUG
10043
    use_memcpy = 0;
10044
#else
10045
31.4M
    use_memcpy = 1;
10046
31.4M
#endif
10047
266M
    for (i = 0; i < seqlen; i++) {
10048
235M
        size_t add_sz;
10049
235M
        item = items[i];
10050
235M
        if (!PyUnicode_Check(item)) {
10051
0
            PyErr_Format(PyExc_TypeError,
10052
0
                         "sequence item %zd: expected str instance,"
10053
0
                         " %.80s found",
10054
0
                         i, Py_TYPE(item)->tp_name);
10055
0
            goto onError;
10056
0
        }
10057
235M
        add_sz = PyUnicode_GET_LENGTH(item);
10058
235M
        item_maxchar = PyUnicode_MAX_CHAR_VALUE(item);
10059
235M
        maxchar = Py_MAX(maxchar, item_maxchar);
10060
235M
        if (i != 0) {
10061
203M
            add_sz += seplen;
10062
203M
        }
10063
235M
        if (add_sz > (size_t)(PY_SSIZE_T_MAX - sz)) {
10064
0
            PyErr_SetString(PyExc_OverflowError,
10065
0
                            "join() result is too long for a Python string");
10066
0
            goto onError;
10067
0
        }
10068
235M
        sz += add_sz;
10069
235M
        if (use_memcpy && last_obj != NULL) {
10070
176M
            if (PyUnicode_KIND(last_obj) != PyUnicode_KIND(item))
10071
4.60M
                use_memcpy = 0;
10072
176M
        }
10073
235M
        last_obj = item;
10074
235M
    }
10075
10076
31.4M
    res = PyUnicode_New(sz, maxchar);
10077
31.4M
    if (res == NULL)
10078
0
        goto onError;
10079
10080
    /* Catenate everything. */
10081
#ifdef Py_DEBUG
10082
    use_memcpy = 0;
10083
#else
10084
31.4M
    if (use_memcpy) {
10085
26.8M
        res_data = PyUnicode_1BYTE_DATA(res);
10086
26.8M
        kind = PyUnicode_KIND(res);
10087
26.8M
        if (seplen != 0)
10088
136k
            sep_data = PyUnicode_1BYTE_DATA(sep);
10089
26.8M
    }
10090
31.4M
#endif
10091
31.4M
    if (use_memcpy) {
10092
181M
        for (i = 0; i < seqlen; ++i) {
10093
154M
            Py_ssize_t itemlen;
10094
154M
            item = items[i];
10095
10096
            /* Copy item, and maybe the separator. */
10097
154M
            if (i && seplen != 0) {
10098
407k
                memcpy(res_data,
10099
407k
                          sep_data,
10100
407k
                          kind * seplen);
10101
407k
                res_data += kind * seplen;
10102
407k
            }
10103
10104
154M
            itemlen = PyUnicode_GET_LENGTH(item);
10105
154M
            if (itemlen != 0) {
10106
135M
                memcpy(res_data,
10107
135M
                          PyUnicode_DATA(item),
10108
135M
                          kind * itemlen);
10109
135M
                res_data += kind * itemlen;
10110
135M
            }
10111
154M
        }
10112
26.8M
        assert(res_data == PyUnicode_1BYTE_DATA(res)
10113
26.8M
                           + kind * PyUnicode_GET_LENGTH(res));
10114
26.8M
    }
10115
4.60M
    else {
10116
85.2M
        for (i = 0, res_offset = 0; i < seqlen; ++i) {
10117
80.6M
            Py_ssize_t itemlen;
10118
80.6M
            item = items[i];
10119
10120
            /* Copy item, and maybe the separator. */
10121
80.6M
            if (i && seplen != 0) {
10122
938k
                _PyUnicode_FastCopyCharacters(res, res_offset, sep, 0, seplen);
10123
938k
                res_offset += seplen;
10124
938k
            }
10125
10126
80.6M
            itemlen = PyUnicode_GET_LENGTH(item);
10127
80.6M
            if (itemlen != 0) {
10128
78.0M
                _PyUnicode_FastCopyCharacters(res, res_offset, item, 0, itemlen);
10129
78.0M
                res_offset += itemlen;
10130
78.0M
            }
10131
80.6M
        }
10132
4.60M
        assert(res_offset == PyUnicode_GET_LENGTH(res));
10133
4.60M
    }
10134
10135
31.4M
    Py_XDECREF(sep);
10136
31.4M
    assert(_PyUnicode_CheckConsistency(res, 1));
10137
31.4M
    return res;
10138
10139
0
  onError:
10140
0
    Py_XDECREF(sep);
10141
0
    Py_XDECREF(res);
10142
0
    return NULL;
10143
31.4M
}
10144
10145
void
10146
_PyUnicode_FastFill(PyObject *unicode, Py_ssize_t start, Py_ssize_t length,
10147
                    Py_UCS4 fill_char)
10148
530
{
10149
530
    const int kind = PyUnicode_KIND(unicode);
10150
530
    void *data = PyUnicode_DATA(unicode);
10151
530
    assert(_PyUnicode_IsModifiable(unicode));
10152
530
    assert(fill_char <= PyUnicode_MAX_CHAR_VALUE(unicode));
10153
530
    assert(start >= 0);
10154
530
    assert(start + length <= PyUnicode_GET_LENGTH(unicode));
10155
530
    _PyUnicode_Fill(kind, data, fill_char, start, length);
10156
530
}
10157
10158
Py_ssize_t
10159
PyUnicode_Fill(PyObject *unicode, Py_ssize_t start, Py_ssize_t length,
10160
               Py_UCS4 fill_char)
10161
530
{
10162
530
    Py_ssize_t maxlen;
10163
10164
530
    if (!PyUnicode_Check(unicode)) {
10165
0
        PyErr_BadInternalCall();
10166
0
        return -1;
10167
0
    }
10168
530
    if (unicode_check_modifiable(unicode))
10169
0
        return -1;
10170
10171
530
    if (start < 0) {
10172
0
        PyErr_SetString(PyExc_IndexError, "string index out of range");
10173
0
        return -1;
10174
0
    }
10175
530
    if (fill_char > PyUnicode_MAX_CHAR_VALUE(unicode)) {
10176
0
        PyErr_SetString(PyExc_ValueError,
10177
0
                         "fill character is bigger than "
10178
0
                         "the string maximum character");
10179
0
        return -1;
10180
0
    }
10181
10182
530
    maxlen = PyUnicode_GET_LENGTH(unicode) - start;
10183
530
    length = Py_MIN(maxlen, length);
10184
530
    if (length <= 0)
10185
0
        return 0;
10186
10187
530
    _PyUnicode_FastFill(unicode, start, length, fill_char);
10188
530
    return length;
10189
530
}
10190
10191
static PyObject *
10192
pad(PyObject *self,
10193
    Py_ssize_t left,
10194
    Py_ssize_t right,
10195
    Py_UCS4 fill)
10196
36
{
10197
36
    PyObject *u;
10198
36
    Py_UCS4 maxchar;
10199
36
    int kind;
10200
36
    void *data;
10201
10202
36
    if (left < 0)
10203
0
        left = 0;
10204
36
    if (right < 0)
10205
0
        right = 0;
10206
10207
36
    if (left == 0 && right == 0)
10208
0
        return unicode_result_unchanged(self);
10209
10210
36
    if (left > PY_SSIZE_T_MAX - _PyUnicode_LENGTH(self) ||
10211
36
        right > PY_SSIZE_T_MAX - (left + _PyUnicode_LENGTH(self))) {
10212
0
        PyErr_SetString(PyExc_OverflowError, "padded string is too long");
10213
0
        return NULL;
10214
0
    }
10215
36
    maxchar = PyUnicode_MAX_CHAR_VALUE(self);
10216
36
    maxchar = Py_MAX(maxchar, fill);
10217
36
    u = PyUnicode_New(left + _PyUnicode_LENGTH(self) + right, maxchar);
10218
36
    if (!u)
10219
0
        return NULL;
10220
10221
36
    kind = PyUnicode_KIND(u);
10222
36
    data = PyUnicode_DATA(u);
10223
36
    if (left)
10224
0
        _PyUnicode_Fill(kind, data, fill, 0, left);
10225
36
    if (right)
10226
36
        _PyUnicode_Fill(kind, data, fill,
10227
36
                        left + _PyUnicode_LENGTH(self), right);
10228
36
    _PyUnicode_FastCopyCharacters(u, left, self, 0, _PyUnicode_LENGTH(self));
10229
36
    assert(_PyUnicode_CheckConsistency(u, 1));
10230
36
    return u;
10231
36
}
10232
10233
PyObject *
10234
PyUnicode_Splitlines(PyObject *string, int keepends)
10235
13.8k
{
10236
13.8k
    PyObject *list;
10237
10238
13.8k
    if (ensure_unicode(string) < 0)
10239
0
        return NULL;
10240
10241
13.8k
    switch (PyUnicode_KIND(string)) {
10242
3.57k
    case PyUnicode_1BYTE_KIND:
10243
3.57k
        if (PyUnicode_IS_ASCII(string))
10244
2.70k
            list = asciilib_splitlines(
10245
2.70k
                string, PyUnicode_1BYTE_DATA(string),
10246
2.70k
                PyUnicode_GET_LENGTH(string), keepends);
10247
862
        else
10248
862
            list = ucs1lib_splitlines(
10249
862
                string, PyUnicode_1BYTE_DATA(string),
10250
862
                PyUnicode_GET_LENGTH(string), keepends);
10251
3.57k
        break;
10252
7.17k
    case PyUnicode_2BYTE_KIND:
10253
7.17k
        list = ucs2lib_splitlines(
10254
7.17k
            string, PyUnicode_2BYTE_DATA(string),
10255
7.17k
            PyUnicode_GET_LENGTH(string), keepends);
10256
7.17k
        break;
10257
3.07k
    case PyUnicode_4BYTE_KIND:
10258
3.07k
        list = ucs4lib_splitlines(
10259
3.07k
            string, PyUnicode_4BYTE_DATA(string),
10260
3.07k
            PyUnicode_GET_LENGTH(string), keepends);
10261
3.07k
        break;
10262
0
    default:
10263
0
        Py_UNREACHABLE();
10264
13.8k
    }
10265
13.8k
    return list;
10266
13.8k
}
10267
10268
static PyObject *
10269
split(PyObject *self,
10270
      PyObject *substring,
10271
      Py_ssize_t maxcount)
10272
19.4M
{
10273
19.4M
    int kind1, kind2;
10274
19.4M
    const void *buf1, *buf2;
10275
19.4M
    Py_ssize_t len1, len2;
10276
19.4M
    PyObject* out;
10277
19.4M
    len1 = PyUnicode_GET_LENGTH(self);
10278
19.4M
    kind1 = PyUnicode_KIND(self);
10279
10280
19.4M
    if (substring == NULL) {
10281
140k
        if (maxcount < 0) {
10282
114k
            maxcount = (len1 - 1) / 2 + 1;
10283
114k
        }
10284
140k
        switch (kind1) {
10285
87.3k
        case PyUnicode_1BYTE_KIND:
10286
87.3k
            if (PyUnicode_IS_ASCII(self))
10287
61.7k
                return asciilib_split_whitespace(
10288
61.7k
                    self,  PyUnicode_1BYTE_DATA(self),
10289
61.7k
                    len1, maxcount
10290
61.7k
                    );
10291
25.5k
            else
10292
25.5k
                return ucs1lib_split_whitespace(
10293
25.5k
                    self,  PyUnicode_1BYTE_DATA(self),
10294
25.5k
                    len1, maxcount
10295
25.5k
                    );
10296
43.5k
        case PyUnicode_2BYTE_KIND:
10297
43.5k
            return ucs2lib_split_whitespace(
10298
43.5k
                self,  PyUnicode_2BYTE_DATA(self),
10299
43.5k
                len1, maxcount
10300
43.5k
                );
10301
9.56k
        case PyUnicode_4BYTE_KIND:
10302
9.56k
            return ucs4lib_split_whitespace(
10303
9.56k
                self,  PyUnicode_4BYTE_DATA(self),
10304
9.56k
                len1, maxcount
10305
9.56k
                );
10306
0
        default:
10307
0
            Py_UNREACHABLE();
10308
140k
        }
10309
140k
    }
10310
10311
19.2M
    kind2 = PyUnicode_KIND(substring);
10312
19.2M
    len2 = PyUnicode_GET_LENGTH(substring);
10313
19.2M
    if (maxcount < 0) {
10314
        // if len2 == 0, it will raise ValueError.
10315
13.2M
        maxcount = len2 == 0 ? 0 : (len1 / len2) + 1;
10316
        // handle expected overflow case: (Py_SSIZE_T_MAX / 1) + 1
10317
13.2M
        maxcount = maxcount < 0 ? len1 : maxcount;
10318
13.2M
    }
10319
19.2M
    if (kind1 < kind2 || len1 < len2) {
10320
1.22M
        out = PyList_New(1);
10321
1.22M
        if (out == NULL)
10322
0
            return NULL;
10323
1.22M
        PyList_SET_ITEM(out, 0, Py_NewRef(self));
10324
1.22M
        return out;
10325
1.22M
    }
10326
18.0M
    buf1 = PyUnicode_DATA(self);
10327
18.0M
    buf2 = PyUnicode_DATA(substring);
10328
18.0M
    if (kind2 != kind1) {
10329
211k
        buf2 = unicode_askind(kind2, buf2, len2, kind1);
10330
211k
        if (!buf2)
10331
0
            return NULL;
10332
211k
    }
10333
10334
18.0M
    switch (kind1) {
10335
17.8M
    case PyUnicode_1BYTE_KIND:
10336
17.8M
        if (PyUnicode_IS_ASCII(self) && PyUnicode_IS_ASCII(substring))
10337
16.6M
            out = asciilib_split(
10338
16.6M
                self,  buf1, len1, buf2, len2, maxcount);
10339
1.15M
        else
10340
1.15M
            out = ucs1lib_split(
10341
1.15M
                self,  buf1, len1, buf2, len2, maxcount);
10342
17.8M
        break;
10343
180k
    case PyUnicode_2BYTE_KIND:
10344
180k
        out = ucs2lib_split(
10345
180k
            self,  buf1, len1, buf2, len2, maxcount);
10346
180k
        break;
10347
31.0k
    case PyUnicode_4BYTE_KIND:
10348
31.0k
        out = ucs4lib_split(
10349
31.0k
            self,  buf1, len1, buf2, len2, maxcount);
10350
31.0k
        break;
10351
0
    default:
10352
0
        out = NULL;
10353
18.0M
    }
10354
18.0M
    assert((kind2 != kind1) == (buf2 != PyUnicode_DATA(substring)));
10355
18.0M
    if (kind2 != kind1)
10356
211k
        PyMem_Free((void *)buf2);
10357
18.0M
    return out;
10358
18.0M
}
10359
10360
static PyObject *
10361
rsplit(PyObject *self,
10362
       PyObject *substring,
10363
       Py_ssize_t maxcount)
10364
62
{
10365
62
    int kind1, kind2;
10366
62
    const void *buf1, *buf2;
10367
62
    Py_ssize_t len1, len2;
10368
62
    PyObject* out;
10369
10370
62
    len1 = PyUnicode_GET_LENGTH(self);
10371
62
    kind1 = PyUnicode_KIND(self);
10372
10373
62
    if (substring == NULL) {
10374
0
        if (maxcount < 0) {
10375
0
            maxcount = (len1 - 1) / 2 + 1;
10376
0
        }
10377
0
        switch (kind1) {
10378
0
        case PyUnicode_1BYTE_KIND:
10379
0
            if (PyUnicode_IS_ASCII(self))
10380
0
                return asciilib_rsplit_whitespace(
10381
0
                    self,  PyUnicode_1BYTE_DATA(self),
10382
0
                    len1, maxcount
10383
0
                    );
10384
0
            else
10385
0
                return ucs1lib_rsplit_whitespace(
10386
0
                    self,  PyUnicode_1BYTE_DATA(self),
10387
0
                    len1, maxcount
10388
0
                    );
10389
0
        case PyUnicode_2BYTE_KIND:
10390
0
            return ucs2lib_rsplit_whitespace(
10391
0
                self,  PyUnicode_2BYTE_DATA(self),
10392
0
                len1, maxcount
10393
0
                );
10394
0
        case PyUnicode_4BYTE_KIND:
10395
0
            return ucs4lib_rsplit_whitespace(
10396
0
                self,  PyUnicode_4BYTE_DATA(self),
10397
0
                len1, maxcount
10398
0
                );
10399
0
        default:
10400
0
            Py_UNREACHABLE();
10401
0
        }
10402
0
    }
10403
62
    kind2 = PyUnicode_KIND(substring);
10404
62
    len2 = PyUnicode_GET_LENGTH(substring);
10405
62
    if (maxcount < 0) {
10406
        // if len2 == 0, it will raise ValueError.
10407
0
        maxcount = len2 == 0 ? 0 : (len1 / len2) + 1;
10408
        // handle expected overflow case: (Py_SSIZE_T_MAX / 1) + 1
10409
0
        maxcount = maxcount < 0 ? len1 : maxcount;
10410
0
    }
10411
62
    if (kind1 < kind2 || len1 < len2) {
10412
0
        out = PyList_New(1);
10413
0
        if (out == NULL)
10414
0
            return NULL;
10415
0
        PyList_SET_ITEM(out, 0, Py_NewRef(self));
10416
0
        return out;
10417
0
    }
10418
62
    buf1 = PyUnicode_DATA(self);
10419
62
    buf2 = PyUnicode_DATA(substring);
10420
62
    if (kind2 != kind1) {
10421
0
        buf2 = unicode_askind(kind2, buf2, len2, kind1);
10422
0
        if (!buf2)
10423
0
            return NULL;
10424
0
    }
10425
10426
62
    switch (kind1) {
10427
62
    case PyUnicode_1BYTE_KIND:
10428
62
        if (PyUnicode_IS_ASCII(self) && PyUnicode_IS_ASCII(substring))
10429
62
            out = asciilib_rsplit(
10430
62
                self,  buf1, len1, buf2, len2, maxcount);
10431
0
        else
10432
0
            out = ucs1lib_rsplit(
10433
0
                self,  buf1, len1, buf2, len2, maxcount);
10434
62
        break;
10435
0
    case PyUnicode_2BYTE_KIND:
10436
0
        out = ucs2lib_rsplit(
10437
0
            self,  buf1, len1, buf2, len2, maxcount);
10438
0
        break;
10439
0
    case PyUnicode_4BYTE_KIND:
10440
0
        out = ucs4lib_rsplit(
10441
0
            self,  buf1, len1, buf2, len2, maxcount);
10442
0
        break;
10443
0
    default:
10444
0
        out = NULL;
10445
62
    }
10446
62
    assert((kind2 != kind1) == (buf2 != PyUnicode_DATA(substring)));
10447
62
    if (kind2 != kind1)
10448
0
        PyMem_Free((void *)buf2);
10449
62
    return out;
10450
62
}
10451
10452
static Py_ssize_t
10453
anylib_find(int kind, PyObject *str1, const void *buf1, Py_ssize_t len1,
10454
            PyObject *str2, const void *buf2, Py_ssize_t len2, Py_ssize_t offset)
10455
92.2M
{
10456
92.2M
    switch (kind) {
10457
19.1M
    case PyUnicode_1BYTE_KIND:
10458
19.1M
        if (PyUnicode_IS_ASCII(str1) && PyUnicode_IS_ASCII(str2))
10459
15.4M
            return asciilib_find(buf1, len1, buf2, len2, offset);
10460
3.71M
        else
10461
3.71M
            return ucs1lib_find(buf1, len1, buf2, len2, offset);
10462
46.2M
    case PyUnicode_2BYTE_KIND:
10463
46.2M
        return ucs2lib_find(buf1, len1, buf2, len2, offset);
10464
26.7M
    case PyUnicode_4BYTE_KIND:
10465
26.7M
        return ucs4lib_find(buf1, len1, buf2, len2, offset);
10466
92.2M
    }
10467
92.2M
    Py_UNREACHABLE();
10468
92.2M
}
10469
10470
static Py_ssize_t
10471
anylib_count(int kind, PyObject *sstr, const void* sbuf, Py_ssize_t slen,
10472
             PyObject *str1, const void *buf1, Py_ssize_t len1, Py_ssize_t maxcount)
10473
23.6M
{
10474
23.6M
    switch (kind) {
10475
18.9M
    case PyUnicode_1BYTE_KIND:
10476
18.9M
        return ucs1lib_count(sbuf, slen, buf1, len1, maxcount);
10477
4.61M
    case PyUnicode_2BYTE_KIND:
10478
4.61M
        return ucs2lib_count(sbuf, slen, buf1, len1, maxcount);
10479
112k
    case PyUnicode_4BYTE_KIND:
10480
112k
        return ucs4lib_count(sbuf, slen, buf1, len1, maxcount);
10481
23.6M
    }
10482
23.6M
    Py_UNREACHABLE();
10483
23.6M
}
10484
10485
static void
10486
replace_1char_inplace(PyObject *u, Py_ssize_t pos,
10487
                      Py_UCS4 u1, Py_UCS4 u2, Py_ssize_t maxcount)
10488
1.14M
{
10489
1.14M
    int kind = PyUnicode_KIND(u);
10490
1.14M
    void *data = PyUnicode_DATA(u);
10491
1.14M
    Py_ssize_t len = PyUnicode_GET_LENGTH(u);
10492
1.14M
    if (kind == PyUnicode_1BYTE_KIND) {
10493
364k
        ucs1lib_replace_1char_inplace((Py_UCS1 *)data + pos,
10494
364k
                                      (Py_UCS1 *)data + len,
10495
364k
                                      u1, u2, maxcount);
10496
364k
    }
10497
784k
    else if (kind == PyUnicode_2BYTE_KIND) {
10498
769k
        ucs2lib_replace_1char_inplace((Py_UCS2 *)data + pos,
10499
769k
                                      (Py_UCS2 *)data + len,
10500
769k
                                      u1, u2, maxcount);
10501
769k
    }
10502
14.3k
    else {
10503
14.3k
        assert(kind == PyUnicode_4BYTE_KIND);
10504
14.3k
        ucs4lib_replace_1char_inplace((Py_UCS4 *)data + pos,
10505
14.3k
                                      (Py_UCS4 *)data + len,
10506
14.3k
                                      u1, u2, maxcount);
10507
14.3k
    }
10508
1.14M
}
10509
10510
static PyObject *
10511
replace(PyObject *self, PyObject *str1,
10512
        PyObject *str2, Py_ssize_t maxcount)
10513
41.7M
{
10514
41.7M
    PyObject *u;
10515
41.7M
    const char *sbuf = PyUnicode_DATA(self);
10516
41.7M
    const void *buf1 = PyUnicode_DATA(str1);
10517
41.7M
    const void *buf2 = PyUnicode_DATA(str2);
10518
41.7M
    int srelease = 0, release1 = 0, release2 = 0;
10519
41.7M
    int skind = PyUnicode_KIND(self);
10520
41.7M
    int kind1 = PyUnicode_KIND(str1);
10521
41.7M
    int kind2 = PyUnicode_KIND(str2);
10522
41.7M
    Py_ssize_t slen = PyUnicode_GET_LENGTH(self);
10523
41.7M
    Py_ssize_t len1 = PyUnicode_GET_LENGTH(str1);
10524
41.7M
    Py_ssize_t len2 = PyUnicode_GET_LENGTH(str2);
10525
41.7M
    int mayshrink;
10526
41.7M
    Py_UCS4 maxchar, maxchar_str1, maxchar_str2;
10527
10528
41.7M
    if (slen < len1)
10529
13.1M
        goto nothing;
10530
10531
28.6M
    if (maxcount < 0)
10532
28.6M
        maxcount = PY_SSIZE_T_MAX;
10533
0
    else if (maxcount == 0)
10534
0
        goto nothing;
10535
10536
28.6M
    if (str1 == str2)
10537
30.1k
        goto nothing;
10538
10539
28.6M
    maxchar = PyUnicode_MAX_CHAR_VALUE(self);
10540
28.6M
    maxchar_str1 = PyUnicode_MAX_CHAR_VALUE(str1);
10541
28.6M
    if (maxchar < maxchar_str1)
10542
        /* substring too wide to be present */
10543
0
        goto nothing;
10544
28.6M
    maxchar_str2 = PyUnicode_MAX_CHAR_VALUE(str2);
10545
    /* Replacing str1 with str2 may cause a maxchar reduction in the
10546
       result string. */
10547
28.6M
    mayshrink = (maxchar_str2 < maxchar_str1) && (maxchar == maxchar_str1);
10548
28.6M
    maxchar = Py_MAX(maxchar, maxchar_str2);
10549
10550
28.6M
    if (len1 == len2) {
10551
        /* same length */
10552
4.96M
        if (len1 == 0)
10553
0
            goto nothing;
10554
4.96M
        if (len1 == 1) {
10555
            /* replace characters */
10556
4.96M
            Py_UCS4 u1, u2;
10557
4.96M
            Py_ssize_t pos;
10558
10559
4.96M
            u1 = PyUnicode_READ(kind1, buf1, 0);
10560
4.96M
            pos = findchar(sbuf, skind, slen, u1, 1);
10561
4.96M
            if (pos < 0)
10562
3.81M
                goto nothing;
10563
1.14M
            u2 = PyUnicode_READ(kind2, buf2, 0);
10564
1.14M
            u = PyUnicode_New(slen, maxchar);
10565
1.14M
            if (!u)
10566
0
                goto error;
10567
10568
1.14M
            _PyUnicode_FastCopyCharacters(u, 0, self, 0, slen);
10569
1.14M
            replace_1char_inplace(u, pos, u1, u2, maxcount);
10570
1.14M
        }
10571
68
        else {
10572
68
            int rkind = skind;
10573
68
            char *res;
10574
68
            Py_ssize_t i;
10575
10576
68
            if (kind1 < rkind) {
10577
                /* widen substring */
10578
0
                buf1 = unicode_askind(kind1, buf1, len1, rkind);
10579
0
                if (!buf1) goto error;
10580
0
                release1 = 1;
10581
0
            }
10582
68
            i = anylib_find(rkind, self, sbuf, slen, str1, buf1, len1, 0);
10583
68
            if (i < 0)
10584
68
                goto nothing;
10585
0
            if (rkind > kind2) {
10586
                /* widen replacement */
10587
0
                buf2 = unicode_askind(kind2, buf2, len2, rkind);
10588
0
                if (!buf2) goto error;
10589
0
                release2 = 1;
10590
0
            }
10591
0
            else if (rkind < kind2) {
10592
                /* widen self and buf1 */
10593
0
                rkind = kind2;
10594
0
                if (release1) {
10595
0
                    assert(buf1 != PyUnicode_DATA(str1));
10596
0
                    PyMem_Free((void *)buf1);
10597
0
                    buf1 = PyUnicode_DATA(str1);
10598
0
                    release1 = 0;
10599
0
                }
10600
0
                sbuf = unicode_askind(skind, sbuf, slen, rkind);
10601
0
                if (!sbuf) goto error;
10602
0
                srelease = 1;
10603
0
                buf1 = unicode_askind(kind1, buf1, len1, rkind);
10604
0
                if (!buf1) goto error;
10605
0
                release1 = 1;
10606
0
            }
10607
0
            u = PyUnicode_New(slen, maxchar);
10608
0
            if (!u)
10609
0
                goto error;
10610
0
            assert(PyUnicode_KIND(u) == rkind);
10611
0
            res = PyUnicode_DATA(u);
10612
10613
0
            memcpy(res, sbuf, rkind * slen);
10614
            /* change everything in-place, starting with this one */
10615
0
            memcpy(res + rkind * i,
10616
0
                   buf2,
10617
0
                   rkind * len2);
10618
0
            i += len1;
10619
10620
0
            while ( --maxcount > 0) {
10621
0
                i = anylib_find(rkind, self,
10622
0
                                sbuf+rkind*i, slen-i,
10623
0
                                str1, buf1, len1, i);
10624
0
                if (i == -1)
10625
0
                    break;
10626
0
                memcpy(res + rkind * i,
10627
0
                       buf2,
10628
0
                       rkind * len2);
10629
0
                i += len1;
10630
0
            }
10631
0
        }
10632
4.96M
    }
10633
23.6M
    else {
10634
23.6M
        Py_ssize_t n, i, j, ires;
10635
23.6M
        Py_ssize_t new_size;
10636
23.6M
        int rkind = skind;
10637
23.6M
        char *res;
10638
10639
23.6M
        if (kind1 < rkind) {
10640
            /* widen substring */
10641
4.72M
            buf1 = unicode_askind(kind1, buf1, len1, rkind);
10642
4.72M
            if (!buf1) goto error;
10643
4.72M
            release1 = 1;
10644
4.72M
        }
10645
23.6M
        n = anylib_count(rkind, self, sbuf, slen, str1, buf1, len1, maxcount);
10646
23.6M
        if (n == 0)
10647
20.8M
            goto nothing;
10648
2.87M
        if (kind2 < rkind) {
10649
            /* widen replacement */
10650
976k
            buf2 = unicode_askind(kind2, buf2, len2, rkind);
10651
976k
            if (!buf2) goto error;
10652
976k
            release2 = 1;
10653
976k
        }
10654
1.89M
        else if (kind2 > rkind) {
10655
            /* widen self and buf1 */
10656
0
            rkind = kind2;
10657
0
            sbuf = unicode_askind(skind, sbuf, slen, rkind);
10658
0
            if (!sbuf) goto error;
10659
0
            srelease = 1;
10660
0
            if (release1) {
10661
0
                assert(buf1 != PyUnicode_DATA(str1));
10662
0
                PyMem_Free((void *)buf1);
10663
0
                buf1 = PyUnicode_DATA(str1);
10664
0
                release1 = 0;
10665
0
            }
10666
0
            buf1 = unicode_askind(kind1, buf1, len1, rkind);
10667
0
            if (!buf1) goto error;
10668
0
            release1 = 1;
10669
0
        }
10670
        /* new_size = PyUnicode_GET_LENGTH(self) + n * (PyUnicode_GET_LENGTH(str2) -
10671
           PyUnicode_GET_LENGTH(str1)); */
10672
2.87M
        if (len1 < len2 && len2 - len1 > (PY_SSIZE_T_MAX - slen) / n) {
10673
0
                PyErr_SetString(PyExc_OverflowError,
10674
0
                                "replace string is too long");
10675
0
                goto error;
10676
0
        }
10677
2.87M
        new_size = slen + n * (len2 - len1);
10678
2.87M
        if (new_size == 0) {
10679
0
            u = _PyUnicode_GetEmpty();
10680
0
            goto done;
10681
0
        }
10682
2.87M
        if (new_size > (PY_SSIZE_T_MAX / rkind)) {
10683
0
            PyErr_SetString(PyExc_OverflowError,
10684
0
                            "replace string is too long");
10685
0
            goto error;
10686
0
        }
10687
2.87M
        u = PyUnicode_New(new_size, maxchar);
10688
2.87M
        if (!u)
10689
0
            goto error;
10690
2.87M
        assert(PyUnicode_KIND(u) == rkind);
10691
2.87M
        res = PyUnicode_DATA(u);
10692
2.87M
        ires = i = 0;
10693
2.87M
        if (len1 > 0) {
10694
95.1M
            while (n-- > 0) {
10695
                /* look for next match */
10696
92.2M
                j = anylib_find(rkind, self,
10697
92.2M
                                sbuf + rkind * i, slen-i,
10698
92.2M
                                str1, buf1, len1, i);
10699
92.2M
                if (j == -1)
10700
0
                    break;
10701
92.2M
                else if (j > i) {
10702
                    /* copy unchanged part [i:j] */
10703
14.9M
                    memcpy(res + rkind * ires,
10704
14.9M
                           sbuf + rkind * i,
10705
14.9M
                           rkind * (j-i));
10706
14.9M
                    ires += j - i;
10707
14.9M
                }
10708
                /* copy substitution string */
10709
92.2M
                if (len2 > 0) {
10710
92.2M
                    memcpy(res + rkind * ires,
10711
92.2M
                           buf2,
10712
92.2M
                           rkind * len2);
10713
92.2M
                    ires += len2;
10714
92.2M
                }
10715
92.2M
                i = j + len1;
10716
92.2M
            }
10717
2.87M
            if (i < slen)
10718
                /* copy tail [i:] */
10719
2.78M
                memcpy(res + rkind * ires,
10720
2.78M
                       sbuf + rkind * i,
10721
2.78M
                       rkind * (slen-i));
10722
2.87M
        }
10723
0
        else {
10724
            /* interleave */
10725
0
            while (n > 0) {
10726
0
                memcpy(res + rkind * ires,
10727
0
                       buf2,
10728
0
                       rkind * len2);
10729
0
                ires += len2;
10730
0
                if (--n <= 0)
10731
0
                    break;
10732
0
                memcpy(res + rkind * ires,
10733
0
                       sbuf + rkind * i,
10734
0
                       rkind);
10735
0
                ires++;
10736
0
                i++;
10737
0
            }
10738
0
            memcpy(res + rkind * ires,
10739
0
                   sbuf + rkind * i,
10740
0
                   rkind * (slen-i));
10741
0
        }
10742
2.87M
    }
10743
10744
4.02M
    if (mayshrink) {
10745
0
        unicode_adjust_maxchar(&u);
10746
0
        if (u == NULL)
10747
0
            goto error;
10748
0
    }
10749
10750
4.02M
  done:
10751
4.02M
    assert(srelease == (sbuf != PyUnicode_DATA(self)));
10752
4.02M
    assert(release1 == (buf1 != PyUnicode_DATA(str1)));
10753
4.02M
    assert(release2 == (buf2 != PyUnicode_DATA(str2)));
10754
4.02M
    if (srelease)
10755
0
        PyMem_Free((void *)sbuf);
10756
4.02M
    if (release1)
10757
976k
        PyMem_Free((void *)buf1);
10758
4.02M
    if (release2)
10759
976k
        PyMem_Free((void *)buf2);
10760
4.02M
    assert(_PyUnicode_CheckConsistency(u, 1));
10761
4.02M
    return u;
10762
10763
37.7M
  nothing:
10764
    /* nothing to replace; return original string (when possible) */
10765
37.7M
    assert(srelease == (sbuf != PyUnicode_DATA(self)));
10766
37.7M
    assert(release1 == (buf1 != PyUnicode_DATA(str1)));
10767
37.7M
    assert(release2 == (buf2 != PyUnicode_DATA(str2)));
10768
37.7M
    if (srelease)
10769
0
        PyMem_Free((void *)sbuf);
10770
37.7M
    if (release1)
10771
3.75M
        PyMem_Free((void *)buf1);
10772
37.7M
    if (release2)
10773
0
        PyMem_Free((void *)buf2);
10774
37.7M
    return unicode_result_unchanged(self);
10775
10776
0
  error:
10777
0
    assert(srelease == (sbuf != PyUnicode_DATA(self)));
10778
0
    assert(release1 == (buf1 != PyUnicode_DATA(str1)));
10779
0
    assert(release2 == (buf2 != PyUnicode_DATA(str2)));
10780
0
    if (srelease)
10781
0
        PyMem_Free((void *)sbuf);
10782
0
    if (release1)
10783
0
        PyMem_Free((void *)buf1);
10784
0
    if (release2)
10785
0
        PyMem_Free((void *)buf2);
10786
0
    return NULL;
10787
4.02M
}
10788
10789
/* --- Unicode Object Methods --------------------------------------------- */
10790
10791
/*[clinic input]
10792
@permit_long_docstring_body
10793
str.title as unicode_title
10794
10795
Return a version of the string where each word is titlecased.
10796
10797
More specifically, words start with uppercased characters and all remaining
10798
cased characters have lower case.
10799
[clinic start generated code]*/
10800
10801
static PyObject *
10802
unicode_title_impl(PyObject *self)
10803
/*[clinic end generated code: output=c75ae03809574902 input=533ce0eb6a7f5d1b]*/
10804
0
{
10805
0
    return case_operation(self, do_title);
10806
0
}
10807
10808
/*[clinic input]
10809
@permit_long_docstring_body
10810
str.capitalize as unicode_capitalize
10811
10812
Return a capitalized version of the string.
10813
10814
More specifically, make the first character have upper case and the rest lower
10815
case.
10816
[clinic start generated code]*/
10817
10818
static PyObject *
10819
unicode_capitalize_impl(PyObject *self)
10820
/*[clinic end generated code: output=e49a4c333cdb7667 input=a4a15ade41f6f9e9]*/
10821
0
{
10822
0
    if (PyUnicode_GET_LENGTH(self) == 0)
10823
0
        return unicode_result_unchanged(self);
10824
0
    return case_operation(self, do_capitalize);
10825
0
}
10826
10827
/*[clinic input]
10828
str.casefold as unicode_casefold
10829
10830
Return a version of the string suitable for caseless comparisons.
10831
[clinic start generated code]*/
10832
10833
static PyObject *
10834
unicode_casefold_impl(PyObject *self)
10835
/*[clinic end generated code: output=0120daf657ca40af input=384d66cc2ae30daf]*/
10836
0
{
10837
0
    if (PyUnicode_IS_ASCII(self))
10838
0
        return ascii_upper_or_lower(self, 1);
10839
0
    return case_operation(self, do_casefold);
10840
0
}
10841
10842
10843
/* Argument converter. Accepts a single Unicode character. */
10844
10845
static int
10846
convert_uc(PyObject *obj, void *addr)
10847
85
{
10848
85
    Py_UCS4 *fillcharloc = (Py_UCS4 *)addr;
10849
10850
85
    if (!PyUnicode_Check(obj)) {
10851
0
        PyErr_Format(PyExc_TypeError,
10852
0
                     "The fill character must be a unicode character, "
10853
0
                     "not %.100s", Py_TYPE(obj)->tp_name);
10854
0
        return 0;
10855
0
    }
10856
85
    if (PyUnicode_GET_LENGTH(obj) != 1) {
10857
0
        PyErr_SetString(PyExc_TypeError,
10858
0
                        "The fill character must be exactly one character long");
10859
0
        return 0;
10860
0
    }
10861
85
    *fillcharloc = PyUnicode_READ_CHAR(obj, 0);
10862
85
    return 1;
10863
85
}
10864
10865
/*[clinic input]
10866
str.center as unicode_center
10867
10868
    width: Py_ssize_t
10869
    fillchar: Py_UCS4 = ' '
10870
    /
10871
10872
Return a centered string of length width.
10873
10874
Padding is done using the specified fill character (default is a space).
10875
[clinic start generated code]*/
10876
10877
static PyObject *
10878
unicode_center_impl(PyObject *self, Py_ssize_t width, Py_UCS4 fillchar)
10879
/*[clinic end generated code: output=420c8859effc7c0c input=b42b247eb26e6519]*/
10880
0
{
10881
0
    Py_ssize_t marg, left;
10882
10883
0
    if (PyUnicode_GET_LENGTH(self) >= width)
10884
0
        return unicode_result_unchanged(self);
10885
10886
0
    marg = width - PyUnicode_GET_LENGTH(self);
10887
0
    left = marg / 2 + (marg & width & 1);
10888
10889
0
    return pad(self, left, marg - left, fillchar);
10890
0
}
10891
10892
/* This function assumes that str1 and str2 are readied by the caller. */
10893
10894
static int
10895
unicode_compare(PyObject *str1, PyObject *str2)
10896
16.2M
{
10897
16.2M
#define COMPARE(TYPE1, TYPE2) \
10898
16.2M
    do { \
10899
11.7M
        TYPE1* p1 = (TYPE1 *)data1; \
10900
11.7M
        TYPE2* p2 = (TYPE2 *)data2; \
10901
11.7M
        TYPE1* end = p1 + len; \
10902
11.7M
        Py_UCS4 c1, c2; \
10903
11.7M
        for (; p1 != end; p1++, p2++) { \
10904
11.7M
            c1 = *p1; \
10905
11.7M
            c2 = *p2; \
10906
11.7M
            if (c1 != c2) \
10907
11.7M
                return (c1 < c2) ? -1 : 1; \
10908
11.7M
        } \
10909
11.7M
    } \
10910
11.7M
    while (0)
10911
10912
16.2M
    int kind1, kind2;
10913
16.2M
    const void *data1, *data2;
10914
16.2M
    Py_ssize_t len1, len2, len;
10915
10916
16.2M
    kind1 = PyUnicode_KIND(str1);
10917
16.2M
    kind2 = PyUnicode_KIND(str2);
10918
16.2M
    data1 = PyUnicode_DATA(str1);
10919
16.2M
    data2 = PyUnicode_DATA(str2);
10920
16.2M
    len1 = PyUnicode_GET_LENGTH(str1);
10921
16.2M
    len2 = PyUnicode_GET_LENGTH(str2);
10922
16.2M
    len = Py_MIN(len1, len2);
10923
10924
16.2M
    switch(kind1) {
10925
1.28M
    case PyUnicode_1BYTE_KIND:
10926
1.28M
    {
10927
1.28M
        switch(kind2) {
10928
121k
        case PyUnicode_1BYTE_KIND:
10929
121k
        {
10930
121k
            int cmp = memcmp(data1, data2, len);
10931
            /* normalize result of memcmp() into the range [-1; 1] */
10932
121k
            if (cmp < 0)
10933
89.3k
                return -1;
10934
31.7k
            if (cmp > 0)
10935
28.0k
                return 1;
10936
3.73k
            break;
10937
31.7k
        }
10938
895k
        case PyUnicode_2BYTE_KIND:
10939
895k
            COMPARE(Py_UCS1, Py_UCS2);
10940
0
            break;
10941
266k
        case PyUnicode_4BYTE_KIND:
10942
266k
            COMPARE(Py_UCS1, Py_UCS4);
10943
0
            break;
10944
0
        default:
10945
0
            Py_UNREACHABLE();
10946
1.28M
        }
10947
3.73k
        break;
10948
1.28M
    }
10949
10.2M
    case PyUnicode_2BYTE_KIND:
10950
10.2M
    {
10951
10.2M
        switch(kind2) {
10952
5.82k
        case PyUnicode_1BYTE_KIND:
10953
5.82k
            COMPARE(Py_UCS2, Py_UCS1);
10954
0
            break;
10955
8.99M
        case PyUnicode_2BYTE_KIND:
10956
8.99M
        {
10957
8.99M
            COMPARE(Py_UCS2, Py_UCS2);
10958
0
            break;
10959
8.99M
        }
10960
1.22M
        case PyUnicode_4BYTE_KIND:
10961
1.22M
            COMPARE(Py_UCS2, Py_UCS4);
10962
0
            break;
10963
0
        default:
10964
0
            Py_UNREACHABLE();
10965
10.2M
        }
10966
0
        break;
10967
10.2M
    }
10968
4.68M
    case PyUnicode_4BYTE_KIND:
10969
4.68M
    {
10970
4.68M
        switch(kind2) {
10971
2.57k
        case PyUnicode_1BYTE_KIND:
10972
2.57k
            COMPARE(Py_UCS4, Py_UCS1);
10973
0
            break;
10974
328k
        case PyUnicode_2BYTE_KIND:
10975
328k
            COMPARE(Py_UCS4, Py_UCS2);
10976
0
            break;
10977
4.35M
        case PyUnicode_4BYTE_KIND:
10978
4.35M
        {
10979
4.35M
#if defined(HAVE_WMEMCMP) && SIZEOF_WCHAR_T == 4
10980
4.35M
            int cmp = wmemcmp((wchar_t *)data1, (wchar_t *)data2, len);
10981
            /* normalize result of wmemcmp() into the range [-1; 1] */
10982
4.35M
            if (cmp < 0)
10983
2.14M
                return -1;
10984
2.20M
            if (cmp > 0)
10985
2.20M
                return 1;
10986
#else
10987
            COMPARE(Py_UCS4, Py_UCS4);
10988
#endif
10989
0
            break;
10990
2.20M
        }
10991
0
        default:
10992
0
            Py_UNREACHABLE();
10993
4.68M
        }
10994
0
        break;
10995
4.68M
    }
10996
0
    default:
10997
0
        Py_UNREACHABLE();
10998
16.2M
    }
10999
11000
3.73k
    if (len1 == len2)
11001
3.72k
        return 0;
11002
19
    if (len1 < len2)
11003
3
        return -1;
11004
16
    else
11005
16
        return 1;
11006
11007
19
#undef COMPARE
11008
19
}
11009
11010
11011
int
11012
_PyUnicode_Equal(PyObject *str1, PyObject *str2)
11013
467M
{
11014
467M
    assert(PyUnicode_Check(str1));
11015
467M
    assert(PyUnicode_Check(str2));
11016
467M
    if (str1 == str2) {
11017
72.6M
        return 1;
11018
72.6M
    }
11019
394M
    return unicode_eq(str1, str2);
11020
467M
}
11021
11022
11023
int
11024
PyUnicode_Equal(PyObject *str1, PyObject *str2)
11025
0
{
11026
0
    if (!PyUnicode_Check(str1)) {
11027
0
        PyErr_Format(PyExc_TypeError,
11028
0
                     "first argument must be str, not %T", str1);
11029
0
        return -1;
11030
0
    }
11031
0
    if (!PyUnicode_Check(str2)) {
11032
0
        PyErr_Format(PyExc_TypeError,
11033
0
                     "second argument must be str, not %T", str2);
11034
0
        return -1;
11035
0
    }
11036
11037
0
    return _PyUnicode_Equal(str1, str2);
11038
0
}
11039
11040
11041
int
11042
PyUnicode_Compare(PyObject *left, PyObject *right)
11043
56.0k
{
11044
56.0k
    if (PyUnicode_Check(left) && PyUnicode_Check(right)) {
11045
        /* a string is equal to itself */
11046
56.0k
        if (left == right)
11047
0
            return 0;
11048
11049
56.0k
        return unicode_compare(left, right);
11050
56.0k
    }
11051
0
    PyErr_Format(PyExc_TypeError,
11052
0
                 "Can't compare %.100s and %.100s",
11053
0
                 Py_TYPE(left)->tp_name,
11054
0
                 Py_TYPE(right)->tp_name);
11055
0
    return -1;
11056
56.0k
}
11057
11058
int
11059
PyUnicode_CompareWithASCIIString(PyObject* uni, const char* str)
11060
3.76M
{
11061
3.76M
    Py_ssize_t i;
11062
3.76M
    int kind;
11063
3.76M
    Py_UCS4 chr;
11064
11065
3.76M
    assert(_PyUnicode_CHECK(uni));
11066
3.76M
    kind = PyUnicode_KIND(uni);
11067
3.76M
    if (kind == PyUnicode_1BYTE_KIND) {
11068
3.76M
        const void *data = PyUnicode_1BYTE_DATA(uni);
11069
3.76M
        size_t len1 = (size_t)PyUnicode_GET_LENGTH(uni);
11070
3.76M
        size_t len, len2 = strlen(str);
11071
3.76M
        int cmp;
11072
11073
3.76M
        len = Py_MIN(len1, len2);
11074
3.76M
        cmp = memcmp(data, str, len);
11075
3.76M
        if (cmp != 0) {
11076
3.30M
            if (cmp < 0)
11077
6.91k
                return -1;
11078
3.29M
            else
11079
3.29M
                return 1;
11080
3.30M
        }
11081
465k
        if (len1 > len2)
11082
206
            return 1; /* uni is longer */
11083
464k
        if (len1 < len2)
11084
449
            return -1; /* str is longer */
11085
464k
        return 0;
11086
464k
    }
11087
2.04k
    else {
11088
2.04k
        const void *data = PyUnicode_DATA(uni);
11089
        /* Compare Unicode string and source character set string */
11090
3.25k
        for (i = 0; (chr = PyUnicode_READ(kind, data, i)) && str[i]; i++)
11091
3.01k
            if (chr != (unsigned char)str[i])
11092
1.80k
                return (chr < (unsigned char)(str[i])) ? -1 : 1;
11093
        /* This check keeps Python strings that end in '\0' from comparing equal
11094
         to C strings identical up to that point. */
11095
235
        if (PyUnicode_GET_LENGTH(uni) != i || chr)
11096
235
            return 1; /* uni is longer */
11097
0
        if (str[i])
11098
0
            return -1; /* str is longer */
11099
0
        return 0;
11100
0
    }
11101
3.76M
}
11102
11103
int
11104
PyUnicode_EqualToUTF8(PyObject *unicode, const char *str)
11105
24
{
11106
24
    return PyUnicode_EqualToUTF8AndSize(unicode, str, strlen(str));
11107
24
}
11108
11109
int
11110
PyUnicode_EqualToUTF8AndSize(PyObject *unicode, const char *str, Py_ssize_t size)
11111
24
{
11112
24
    assert(_PyUnicode_CHECK(unicode));
11113
24
    assert(str);
11114
11115
24
    if (PyUnicode_IS_ASCII(unicode)) {
11116
24
        Py_ssize_t len = PyUnicode_GET_LENGTH(unicode);
11117
24
        return size == len &&
11118
0
            memcmp(PyUnicode_1BYTE_DATA(unicode), str, len) == 0;
11119
24
    }
11120
0
    if (PyUnicode_UTF8(unicode) != NULL) {
11121
0
        Py_ssize_t len = PyUnicode_UTF8_LENGTH(unicode);
11122
0
        return size == len &&
11123
0
            memcmp(PyUnicode_UTF8(unicode), str, len) == 0;
11124
0
    }
11125
11126
0
    Py_ssize_t len = PyUnicode_GET_LENGTH(unicode);
11127
0
    if ((size_t)len >= (size_t)size || (size_t)len < (size_t)size / 4) {
11128
0
        return 0;
11129
0
    }
11130
0
    const unsigned char *s = (const unsigned char *)str;
11131
0
    const unsigned char *ends = s + (size_t)size;
11132
0
    int kind = PyUnicode_KIND(unicode);
11133
0
    const void *data = PyUnicode_DATA(unicode);
11134
    /* Compare Unicode string and UTF-8 string */
11135
0
    for (Py_ssize_t i = 0; i < len; i++) {
11136
0
        Py_UCS4 ch = PyUnicode_READ(kind, data, i);
11137
0
        if (ch < 0x80) {
11138
0
            if (ends == s || s[0] != ch) {
11139
0
                return 0;
11140
0
            }
11141
0
            s += 1;
11142
0
        }
11143
0
        else if (ch < 0x800) {
11144
0
            if ((ends - s) < 2 ||
11145
0
                s[0] != (0xc0 | (ch >> 6)) ||
11146
0
                s[1] != (0x80 | (ch & 0x3f)))
11147
0
            {
11148
0
                return 0;
11149
0
            }
11150
0
            s += 2;
11151
0
        }
11152
0
        else if (ch < 0x10000) {
11153
0
            if (Py_UNICODE_IS_SURROGATE(ch) ||
11154
0
                (ends - s) < 3 ||
11155
0
                s[0] != (0xe0 | (ch >> 12)) ||
11156
0
                s[1] != (0x80 | ((ch >> 6) & 0x3f)) ||
11157
0
                s[2] != (0x80 | (ch & 0x3f)))
11158
0
            {
11159
0
                return 0;
11160
0
            }
11161
0
            s += 3;
11162
0
        }
11163
0
        else {
11164
0
            assert(ch <= MAX_UNICODE);
11165
0
            if ((ends - s) < 4 ||
11166
0
                s[0] != (0xf0 | (ch >> 18)) ||
11167
0
                s[1] != (0x80 | ((ch >> 12) & 0x3f)) ||
11168
0
                s[2] != (0x80 | ((ch >> 6) & 0x3f)) ||
11169
0
                s[3] != (0x80 | (ch & 0x3f)))
11170
0
            {
11171
0
                return 0;
11172
0
            }
11173
0
            s += 4;
11174
0
        }
11175
0
    }
11176
0
    return s == ends;
11177
0
}
11178
11179
int
11180
_PyUnicode_EqualToASCIIString(PyObject *unicode, const char *str)
11181
5.91M
{
11182
5.91M
    size_t len;
11183
5.91M
    assert(_PyUnicode_CHECK(unicode));
11184
5.91M
    assert(str);
11185
#ifndef NDEBUG
11186
    for (const char *p = str; *p; p++) {
11187
        assert((unsigned char)*p < 128);
11188
    }
11189
#endif
11190
5.91M
    if (!PyUnicode_IS_ASCII(unicode))
11191
132k
        return 0;
11192
5.78M
    len = (size_t)PyUnicode_GET_LENGTH(unicode);
11193
5.78M
    return strlen(str) == len &&
11194
397k
           memcmp(PyUnicode_1BYTE_DATA(unicode), str, len) == 0;
11195
5.91M
}
11196
11197
PyObject *
11198
PyUnicode_RichCompare(PyObject *left, PyObject *right, int op)
11199
40.3M
{
11200
40.3M
    int result;
11201
11202
40.3M
    if (!PyUnicode_Check(left) || !PyUnicode_Check(right))
11203
258k
        Py_RETURN_NOTIMPLEMENTED;
11204
11205
40.1M
    if (left == right) {
11206
2.56k
        switch (op) {
11207
2.38k
        case Py_EQ:
11208
2.38k
        case Py_LE:
11209
2.38k
        case Py_GE:
11210
            /* a string is equal to itself */
11211
2.38k
            Py_RETURN_TRUE;
11212
177
        case Py_NE:
11213
177
        case Py_LT:
11214
177
        case Py_GT:
11215
177
            Py_RETURN_FALSE;
11216
0
        default:
11217
0
            PyErr_BadArgument();
11218
0
            return NULL;
11219
2.56k
        }
11220
2.56k
    }
11221
40.1M
    else if (op == Py_EQ || op == Py_NE) {
11222
23.9M
        result = unicode_eq(left, right);
11223
23.9M
        result ^= (op == Py_NE);
11224
23.9M
        return PyBool_FromLong(result);
11225
23.9M
    }
11226
16.1M
    else {
11227
16.1M
        result = unicode_compare(left, right);
11228
16.1M
        Py_RETURN_RICHCOMPARE(result, 0, op);
11229
16.1M
    }
11230
40.1M
}
11231
11232
int
11233
PyUnicode_Contains(PyObject *str, PyObject *substr)
11234
156M
{
11235
156M
    int kind1, kind2;
11236
156M
    const void *buf1, *buf2;
11237
156M
    Py_ssize_t len1, len2;
11238
156M
    int result;
11239
11240
156M
    if (!PyUnicode_Check(substr)) {
11241
0
        PyErr_Format(PyExc_TypeError,
11242
0
                     "'in <string>' requires string as left operand, not %.100s",
11243
0
                     Py_TYPE(substr)->tp_name);
11244
0
        return -1;
11245
0
    }
11246
156M
    if (ensure_unicode(str) < 0)
11247
0
        return -1;
11248
11249
156M
    kind1 = PyUnicode_KIND(str);
11250
156M
    kind2 = PyUnicode_KIND(substr);
11251
156M
    if (kind1 < kind2)
11252
11.4M
        return 0;
11253
144M
    len1 = PyUnicode_GET_LENGTH(str);
11254
144M
    len2 = PyUnicode_GET_LENGTH(substr);
11255
144M
    if (len1 < len2)
11256
190k
        return 0;
11257
144M
    buf1 = PyUnicode_DATA(str);
11258
144M
    buf2 = PyUnicode_DATA(substr);
11259
144M
    if (len2 == 1) {
11260
138M
        Py_UCS4 ch = PyUnicode_READ(kind2, buf2, 0);
11261
138M
        result = findchar((const char *)buf1, kind1, len1, ch, 1) != -1;
11262
138M
        return result;
11263
138M
    }
11264
5.94M
    if (kind2 != kind1) {
11265
16.7k
        buf2 = unicode_askind(kind2, buf2, len2, kind1);
11266
16.7k
        if (!buf2)
11267
0
            return -1;
11268
16.7k
    }
11269
11270
5.94M
    switch (kind1) {
11271
5.92M
    case PyUnicode_1BYTE_KIND:
11272
5.92M
        result = ucs1lib_find(buf1, len1, buf2, len2, 0) != -1;
11273
5.92M
        break;
11274
12.7k
    case PyUnicode_2BYTE_KIND:
11275
12.7k
        result = ucs2lib_find(buf1, len1, buf2, len2, 0) != -1;
11276
12.7k
        break;
11277
4.05k
    case PyUnicode_4BYTE_KIND:
11278
4.05k
        result = ucs4lib_find(buf1, len1, buf2, len2, 0) != -1;
11279
4.05k
        break;
11280
0
    default:
11281
0
        Py_UNREACHABLE();
11282
5.94M
    }
11283
11284
5.94M
    assert((kind2 == kind1) == (buf2 == PyUnicode_DATA(substr)));
11285
5.94M
    if (kind2 != kind1)
11286
16.7k
        PyMem_Free((void *)buf2);
11287
11288
5.94M
    return result;
11289
5.94M
}
11290
11291
/* Concat to string or Unicode object giving a new Unicode object. */
11292
11293
PyObject *
11294
PyUnicode_Concat(PyObject *left, PyObject *right)
11295
30.4M
{
11296
30.4M
    PyObject *result;
11297
30.4M
    Py_UCS4 maxchar, maxchar2;
11298
30.4M
    Py_ssize_t left_len, right_len, new_len;
11299
11300
30.4M
    if (ensure_unicode(left) < 0)
11301
0
        return NULL;
11302
11303
30.4M
    if (!PyUnicode_Check(right)) {
11304
0
        PyErr_Format(PyExc_TypeError,
11305
0
            "can only concatenate str (not \"%.200s\") to str",
11306
0
            Py_TYPE(right)->tp_name);
11307
0
        return NULL;
11308
0
    }
11309
11310
    /* Shortcuts */
11311
30.4M
    PyObject *empty = _PyUnicode_GetEmpty();  // Borrowed reference
11312
30.4M
    if (left == empty) {
11313
96.8k
        return PyUnicode_FromObject(right);
11314
96.8k
    }
11315
30.3M
    if (right == empty) {
11316
1.98M
        return PyUnicode_FromObject(left);
11317
1.98M
    }
11318
11319
28.3M
    left_len = PyUnicode_GET_LENGTH(left);
11320
28.3M
    right_len = PyUnicode_GET_LENGTH(right);
11321
28.3M
    if (left_len > PY_SSIZE_T_MAX - right_len) {
11322
0
        PyErr_SetString(PyExc_OverflowError,
11323
0
                        "strings are too large to concat");
11324
0
        return NULL;
11325
0
    }
11326
28.3M
    new_len = left_len + right_len;
11327
11328
28.3M
    maxchar = PyUnicode_MAX_CHAR_VALUE(left);
11329
28.3M
    maxchar2 = PyUnicode_MAX_CHAR_VALUE(right);
11330
28.3M
    maxchar = Py_MAX(maxchar, maxchar2);
11331
11332
    /* Concat the two Unicode strings */
11333
28.3M
    result = PyUnicode_New(new_len, maxchar);
11334
28.3M
    if (result == NULL)
11335
0
        return NULL;
11336
28.3M
    _PyUnicode_FastCopyCharacters(result, 0, left, 0, left_len);
11337
28.3M
    _PyUnicode_FastCopyCharacters(result, left_len, right, 0, right_len);
11338
28.3M
    assert(_PyUnicode_CheckConsistency(result, 1));
11339
28.3M
    return result;
11340
28.3M
}
11341
11342
void
11343
PyUnicode_Append(PyObject **p_left, PyObject *right)
11344
5.31M
{
11345
5.31M
    PyObject *left, *res;
11346
5.31M
    Py_UCS4 maxchar, maxchar2;
11347
5.31M
    Py_ssize_t left_len, right_len, new_len;
11348
11349
5.31M
    if (p_left == NULL) {
11350
0
        if (!PyErr_Occurred())
11351
0
            PyErr_BadInternalCall();
11352
0
        return;
11353
0
    }
11354
5.31M
    left = *p_left;
11355
5.31M
    if (right == NULL || left == NULL
11356
5.31M
        || !PyUnicode_Check(left) || !PyUnicode_Check(right)) {
11357
0
        if (!PyErr_Occurred())
11358
0
            PyErr_BadInternalCall();
11359
0
        goto error;
11360
0
    }
11361
11362
    /* Shortcuts */
11363
5.31M
    PyObject *empty = _PyUnicode_GetEmpty();  // Borrowed reference
11364
5.31M
    if (left == empty) {
11365
435k
        Py_DECREF(left);
11366
435k
        *p_left = Py_NewRef(right);
11367
435k
        return;
11368
435k
    }
11369
4.88M
    if (right == empty) {
11370
14.1k
        return;
11371
14.1k
    }
11372
11373
4.86M
    left_len = PyUnicode_GET_LENGTH(left);
11374
4.86M
    right_len = PyUnicode_GET_LENGTH(right);
11375
4.86M
    if (left_len > PY_SSIZE_T_MAX - right_len) {
11376
0
        PyErr_SetString(PyExc_OverflowError,
11377
0
                        "strings are too large to concat");
11378
0
        goto error;
11379
0
    }
11380
4.86M
    new_len = left_len + right_len;
11381
11382
4.86M
    if (_PyUnicode_IsModifiable(left)
11383
4.86M
        && PyUnicode_CheckExact(right)
11384
4.86M
        && PyUnicode_KIND(right) <= PyUnicode_KIND(left)
11385
        /* Don't resize for ascii += latin1. Convert ascii to latin1 requires
11386
           to change the structure size, but characters are stored just after
11387
           the structure, and so it requires to move all characters which is
11388
           not so different than duplicating the string. */
11389
1.74M
        && !(PyUnicode_IS_ASCII(left) && !PyUnicode_IS_ASCII(right)))
11390
1.74M
    {
11391
        /* append inplace */
11392
1.74M
        if (unicode_resize(p_left, new_len) != 0)
11393
0
            goto error;
11394
11395
        /* copy 'right' into the newly allocated area of 'left' */
11396
1.74M
        _PyUnicode_FastCopyCharacters(*p_left, left_len, right, 0, right_len);
11397
1.74M
    }
11398
3.12M
    else {
11399
3.12M
        maxchar = PyUnicode_MAX_CHAR_VALUE(left);
11400
3.12M
        maxchar2 = PyUnicode_MAX_CHAR_VALUE(right);
11401
3.12M
        maxchar = Py_MAX(maxchar, maxchar2);
11402
11403
        /* Concat the two Unicode strings */
11404
3.12M
        res = PyUnicode_New(new_len, maxchar);
11405
3.12M
        if (res == NULL)
11406
0
            goto error;
11407
3.12M
        _PyUnicode_FastCopyCharacters(res, 0, left, 0, left_len);
11408
3.12M
        _PyUnicode_FastCopyCharacters(res, left_len, right, 0, right_len);
11409
3.12M
        Py_DECREF(left);
11410
3.12M
        *p_left = res;
11411
3.12M
    }
11412
4.86M
    assert(_PyUnicode_CheckConsistency(*p_left, 1));
11413
4.86M
    return;
11414
11415
0
error:
11416
0
    Py_CLEAR(*p_left);
11417
0
}
11418
11419
void
11420
PyUnicode_AppendAndDel(PyObject **pleft, PyObject *right)
11421
4
{
11422
4
    PyUnicode_Append(pleft, right);
11423
4
    Py_XDECREF(right);
11424
4
}
11425
11426
/*[clinic input]
11427
@permit_long_summary
11428
@text_signature "($self, sub[, start[, end]], /)"
11429
str.count as unicode_count -> Py_ssize_t
11430
11431
    self as str: self
11432
    sub as substr: unicode
11433
    start: slice_index(accept={int, NoneType}, c_default='0') = None
11434
    end: slice_index(accept={int, NoneType}, c_default='PY_SSIZE_T_MAX') = None
11435
    /
11436
11437
Return the number of non-overlapping occurrences of substring sub in string S[start:end].
11438
11439
Optional arguments start and end are interpreted as in slice notation.
11440
[clinic start generated code]*/
11441
11442
static Py_ssize_t
11443
unicode_count_impl(PyObject *str, PyObject *substr, Py_ssize_t start,
11444
                   Py_ssize_t end)
11445
/*[clinic end generated code: output=8fcc3aef0b18edbf input=8590716ee228b935]*/
11446
24.8M
{
11447
24.8M
    assert(PyUnicode_Check(str));
11448
24.8M
    assert(PyUnicode_Check(substr));
11449
11450
24.8M
    Py_ssize_t result;
11451
24.8M
    int kind1, kind2;
11452
24.8M
    const void *buf1 = NULL, *buf2 = NULL;
11453
24.8M
    Py_ssize_t len1, len2;
11454
11455
24.8M
    kind1 = PyUnicode_KIND(str);
11456
24.8M
    kind2 = PyUnicode_KIND(substr);
11457
24.8M
    if (kind1 < kind2)
11458
0
        return 0;
11459
11460
24.8M
    len1 = PyUnicode_GET_LENGTH(str);
11461
24.8M
    len2 = PyUnicode_GET_LENGTH(substr);
11462
24.8M
    ADJUST_INDICES(start, end, len1);
11463
24.8M
    if (end - start < len2)
11464
3.50M
        return 0;
11465
11466
21.3M
    buf1 = PyUnicode_DATA(str);
11467
21.3M
    buf2 = PyUnicode_DATA(substr);
11468
21.3M
    if (kind2 != kind1) {
11469
5.13M
        buf2 = unicode_askind(kind2, buf2, len2, kind1);
11470
5.13M
        if (!buf2)
11471
0
            goto onError;
11472
5.13M
    }
11473
11474
    // We don't reuse `anylib_count` here because of the explicit casts.
11475
21.3M
    switch (kind1) {
11476
16.2M
    case PyUnicode_1BYTE_KIND:
11477
16.2M
        result = ucs1lib_count(
11478
16.2M
            ((const Py_UCS1*)buf1) + start, end - start,
11479
16.2M
            buf2, len2, PY_SSIZE_T_MAX
11480
16.2M
            );
11481
16.2M
        break;
11482
2.97M
    case PyUnicode_2BYTE_KIND:
11483
2.97M
        result = ucs2lib_count(
11484
2.97M
            ((const Py_UCS2*)buf1) + start, end - start,
11485
2.97M
            buf2, len2, PY_SSIZE_T_MAX
11486
2.97M
            );
11487
2.97M
        break;
11488
2.16M
    case PyUnicode_4BYTE_KIND:
11489
2.16M
        result = ucs4lib_count(
11490
2.16M
            ((const Py_UCS4*)buf1) + start, end - start,
11491
2.16M
            buf2, len2, PY_SSIZE_T_MAX
11492
2.16M
            );
11493
2.16M
        break;
11494
0
    default:
11495
0
        Py_UNREACHABLE();
11496
21.3M
    }
11497
11498
21.3M
    assert((kind2 != kind1) == (buf2 != PyUnicode_DATA(substr)));
11499
21.3M
    if (kind2 != kind1)
11500
5.13M
        PyMem_Free((void *)buf2);
11501
11502
21.3M
    return result;
11503
0
  onError:
11504
0
    assert((kind2 != kind1) == (buf2 != PyUnicode_DATA(substr)));
11505
0
    if (kind2 != kind1)
11506
0
        PyMem_Free((void *)buf2);
11507
0
    return -1;
11508
21.3M
}
11509
11510
/*[clinic input]
11511
str.encode as unicode_encode
11512
11513
    encoding: str(c_default="NULL") = 'utf-8'
11514
        The encoding in which to encode the string.
11515
    errors: str(c_default="NULL") = 'strict'
11516
        The error handling scheme to use for encoding errors.
11517
        The default is 'strict' meaning that encoding errors raise a
11518
        UnicodeEncodeError.  Other possible values are 'ignore', 'replace' and
11519
        'xmlcharrefreplace' as well as any other name registered with
11520
        codecs.register_error that can handle UnicodeEncodeErrors.
11521
11522
Encode the string using the codec registered for encoding.
11523
[clinic start generated code]*/
11524
11525
static PyObject *
11526
unicode_encode_impl(PyObject *self, const char *encoding, const char *errors)
11527
/*[clinic end generated code: output=bf78b6e2a9470e3c input=f0a9eb293d08fe02]*/
11528
14.6M
{
11529
14.6M
    return PyUnicode_AsEncodedString(self, encoding, errors);
11530
14.6M
}
11531
11532
/*[clinic input]
11533
str.expandtabs as unicode_expandtabs
11534
11535
    tabsize: int = 8
11536
11537
Return a copy where all tab characters are expanded using spaces.
11538
11539
If tabsize is not given, a tab size of 8 characters is assumed.
11540
[clinic start generated code]*/
11541
11542
static PyObject *
11543
unicode_expandtabs_impl(PyObject *self, int tabsize)
11544
/*[clinic end generated code: output=3457c5dcee26928f input=8a01914034af4c85]*/
11545
3.79M
{
11546
3.79M
    Py_ssize_t i, j, line_pos, src_len, incr;
11547
3.79M
    Py_UCS4 ch;
11548
3.79M
    PyObject *u;
11549
3.79M
    const void *src_data;
11550
3.79M
    void *dest_data;
11551
3.79M
    int kind;
11552
3.79M
    int found;
11553
11554
    /* First pass: determine size of output string */
11555
3.79M
    src_len = PyUnicode_GET_LENGTH(self);
11556
3.79M
    i = j = line_pos = 0;
11557
3.79M
    kind = PyUnicode_KIND(self);
11558
3.79M
    src_data = PyUnicode_DATA(self);
11559
3.79M
    found = 0;
11560
104M
    for (; i < src_len; i++) {
11561
101M
        ch = PyUnicode_READ(kind, src_data, i);
11562
101M
        if (ch == '\t') {
11563
5.03M
            found = 1;
11564
5.03M
            if (tabsize > 0) {
11565
5.03M
                incr = tabsize - (line_pos % tabsize); /* cannot overflow */
11566
5.03M
                if (j > PY_SSIZE_T_MAX - incr)
11567
0
                    goto overflow;
11568
5.03M
                line_pos += incr;
11569
5.03M
                j += incr;
11570
5.03M
            }
11571
5.03M
        }
11572
96.0M
        else {
11573
96.0M
            if (j > PY_SSIZE_T_MAX - 1)
11574
0
                goto overflow;
11575
96.0M
            line_pos++;
11576
96.0M
            j++;
11577
96.0M
            if (ch == '\n' || ch == '\r')
11578
4.44k
                line_pos = 0;
11579
96.0M
        }
11580
101M
    }
11581
3.79M
    if (!found)
11582
3.63M
        return unicode_result_unchanged(self);
11583
11584
    /* Second pass: create output string and fill it */
11585
154k
    u = PyUnicode_New(j, PyUnicode_MAX_CHAR_VALUE(self));
11586
154k
    if (!u)
11587
0
        return NULL;
11588
154k
    dest_data = PyUnicode_DATA(u);
11589
11590
154k
    i = j = line_pos = 0;
11591
11592
22.1M
    for (; i < src_len; i++) {
11593
21.9M
        ch = PyUnicode_READ(kind, src_data, i);
11594
21.9M
        if (ch == '\t') {
11595
5.03M
            if (tabsize > 0) {
11596
5.03M
                incr = tabsize - (line_pos % tabsize);
11597
5.03M
                line_pos += incr;
11598
5.03M
                _PyUnicode_Fill(kind, dest_data, ' ', j, incr);
11599
5.03M
                j += incr;
11600
5.03M
            }
11601
5.03M
        }
11602
16.9M
        else {
11603
16.9M
            line_pos++;
11604
16.9M
            PyUnicode_WRITE(kind, dest_data, j, ch);
11605
16.9M
            j++;
11606
16.9M
            if (ch == '\n' || ch == '\r')
11607
0
                line_pos = 0;
11608
16.9M
        }
11609
21.9M
    }
11610
154k
    assert (j == PyUnicode_GET_LENGTH(u));
11611
154k
    return unicode_result(u);
11612
11613
0
  overflow:
11614
0
    PyErr_SetString(PyExc_OverflowError, "new string is too long");
11615
0
    return NULL;
11616
154k
}
11617
11618
/*[clinic input]
11619
@permit_long_summary
11620
str.find as unicode_find = str.count
11621
11622
Return the lowest index in S where substring sub is found, such that sub is contained within S[start:end].
11623
11624
Optional arguments start and end are interpreted as in slice notation.
11625
Return -1 on failure.
11626
[clinic start generated code]*/
11627
11628
static Py_ssize_t
11629
unicode_find_impl(PyObject *str, PyObject *substr, Py_ssize_t start,
11630
                  Py_ssize_t end)
11631
/*[clinic end generated code: output=51dbe6255712e278 input=3a9d650fe4c24695]*/
11632
24.5M
{
11633
24.5M
    Py_ssize_t result = any_find_slice(str, substr, start, end, 1);
11634
24.5M
    if (result < 0) {
11635
5.60M
        return -1;
11636
5.60M
    }
11637
18.9M
    return result;
11638
24.5M
}
11639
11640
static PyObject *
11641
unicode_getitem(PyObject *self, Py_ssize_t index)
11642
51.5M
{
11643
51.5M
    const void *data;
11644
51.5M
    int kind;
11645
51.5M
    Py_UCS4 ch;
11646
11647
51.5M
    if (!PyUnicode_Check(self)) {
11648
0
        PyErr_BadArgument();
11649
0
        return NULL;
11650
0
    }
11651
51.5M
    if (index < 0 || index >= PyUnicode_GET_LENGTH(self)) {
11652
13.7k
        PyErr_SetString(PyExc_IndexError, "string index out of range");
11653
13.7k
        return NULL;
11654
13.7k
    }
11655
51.5M
    kind = PyUnicode_KIND(self);
11656
51.5M
    data = PyUnicode_DATA(self);
11657
51.5M
    ch = PyUnicode_READ(kind, data, index);
11658
51.5M
    return unicode_char(ch);
11659
51.5M
}
11660
11661
/* Believe it or not, this produces the same value for ASCII strings
11662
   as bytes_hash(). */
11663
static Py_hash_t
11664
unicode_hash(PyObject *self)
11665
815M
{
11666
815M
    Py_uhash_t x;  /* Unsigned for defined overflow behavior. */
11667
11668
#ifdef Py_DEBUG
11669
    assert(_Py_HashSecret_Initialized);
11670
#endif
11671
815M
    Py_hash_t hash = PyUnicode_HASH(self);
11672
815M
    if (hash != -1) {
11673
760M
        return hash;
11674
760M
    }
11675
55.0M
    x = Py_HashBuffer(PyUnicode_DATA(self),
11676
55.0M
                      PyUnicode_GET_LENGTH(self) * PyUnicode_KIND(self));
11677
11678
55.0M
    PyUnicode_SET_HASH(self, x);
11679
55.0M
    return x;
11680
815M
}
11681
11682
/*[clinic input]
11683
@permit_long_summary
11684
str.index as unicode_index = str.count
11685
11686
Return the lowest index in S where substring sub is found, such that sub is contained within S[start:end].
11687
11688
Optional arguments start and end are interpreted as in slice notation.
11689
Raises ValueError when the substring is not found.
11690
[clinic start generated code]*/
11691
11692
static Py_ssize_t
11693
unicode_index_impl(PyObject *str, PyObject *substr, Py_ssize_t start,
11694
                   Py_ssize_t end)
11695
/*[clinic end generated code: output=77558288837cdf40 input=ae5e48f69ed75b06]*/
11696
48.7k
{
11697
48.7k
    Py_ssize_t result = any_find_slice(str, substr, start, end, 1);
11698
48.7k
    if (result == -1) {
11699
698
        PyErr_SetString(PyExc_ValueError, "substring not found");
11700
698
    }
11701
48.0k
    else if (result < 0) {
11702
0
        return -1;
11703
0
    }
11704
48.7k
    return result;
11705
48.7k
}
11706
11707
/*[clinic input]
11708
str.isascii as unicode_isascii
11709
11710
Return True if all characters in the string are ASCII, False otherwise.
11711
11712
ASCII characters have code points in the range U+0000-U+007F.
11713
Empty string is ASCII too.
11714
[clinic start generated code]*/
11715
11716
static PyObject *
11717
unicode_isascii_impl(PyObject *self)
11718
/*[clinic end generated code: output=c5910d64b5a8003f input=5a43cbc6399621d5]*/
11719
9.87k
{
11720
9.87k
    return PyBool_FromLong(PyUnicode_IS_ASCII(self));
11721
9.87k
}
11722
11723
/*[clinic input]
11724
@permit_long_docstring_body
11725
str.islower as unicode_islower
11726
11727
Return True if the string is a lowercase string, False otherwise.
11728
11729
A string is lowercase if all cased characters in the string are lowercase and
11730
there is at least one cased character in the string.
11731
[clinic start generated code]*/
11732
11733
static PyObject *
11734
unicode_islower_impl(PyObject *self)
11735
/*[clinic end generated code: output=dbd41995bd005b81 input=c6fc0295241a1aaa]*/
11736
0
{
11737
0
    Py_ssize_t i, length;
11738
0
    int kind;
11739
0
    const void *data;
11740
0
    int cased;
11741
11742
0
    length = PyUnicode_GET_LENGTH(self);
11743
0
    kind = PyUnicode_KIND(self);
11744
0
    data = PyUnicode_DATA(self);
11745
11746
    /* Shortcut for single character strings */
11747
0
    if (length == 1)
11748
0
        return PyBool_FromLong(
11749
0
            Py_UNICODE_ISLOWER(PyUnicode_READ(kind, data, 0)));
11750
11751
    /* Special case for empty strings */
11752
0
    if (length == 0)
11753
0
        Py_RETURN_FALSE;
11754
11755
0
    cased = 0;
11756
0
    for (i = 0; i < length; i++) {
11757
0
        const Py_UCS4 ch = PyUnicode_READ(kind, data, i);
11758
11759
0
        if (Py_UNICODE_ISUPPER(ch) || Py_UNICODE_ISTITLE(ch))
11760
0
            Py_RETURN_FALSE;
11761
0
        else if (!cased && Py_UNICODE_ISLOWER(ch))
11762
0
            cased = 1;
11763
0
    }
11764
0
    return PyBool_FromLong(cased);
11765
0
}
11766
11767
/*[clinic input]
11768
@permit_long_docstring_body
11769
str.isupper as unicode_isupper
11770
11771
Return True if the string is an uppercase string, False otherwise.
11772
11773
A string is uppercase if all cased characters in the string are uppercase and
11774
there is at least one cased character in the string.
11775
[clinic start generated code]*/
11776
11777
static PyObject *
11778
unicode_isupper_impl(PyObject *self)
11779
/*[clinic end generated code: output=049209c8e7f15f59 input=8d5cb33e67efde72]*/
11780
10.6k
{
11781
10.6k
    Py_ssize_t i, length;
11782
10.6k
    int kind;
11783
10.6k
    const void *data;
11784
10.6k
    int cased;
11785
11786
10.6k
    length = PyUnicode_GET_LENGTH(self);
11787
10.6k
    kind = PyUnicode_KIND(self);
11788
10.6k
    data = PyUnicode_DATA(self);
11789
11790
    /* Shortcut for single character strings */
11791
10.6k
    if (length == 1)
11792
0
        return PyBool_FromLong(
11793
0
            Py_UNICODE_ISUPPER(PyUnicode_READ(kind, data, 0)) != 0);
11794
11795
    /* Special case for empty strings */
11796
10.6k
    if (length == 0)
11797
0
        Py_RETURN_FALSE;
11798
11799
10.6k
    cased = 0;
11800
134k
    for (i = 0; i < length; i++) {
11801
125k
        const Py_UCS4 ch = PyUnicode_READ(kind, data, i);
11802
11803
125k
        if (Py_UNICODE_ISLOWER(ch) || Py_UNICODE_ISTITLE(ch))
11804
1.29k
            Py_RETURN_FALSE;
11805
124k
        else if (!cased && Py_UNICODE_ISUPPER(ch))
11806
9.46k
            cased = 1;
11807
125k
    }
11808
9.33k
    return PyBool_FromLong(cased);
11809
10.6k
}
11810
11811
/*[clinic input]
11812
str.istitle as unicode_istitle
11813
11814
Return True if the string is a title-cased string, False otherwise.
11815
11816
In a title-cased string, upper- and title-case characters may only
11817
follow uncased characters and lowercase characters only cased ones.
11818
[clinic start generated code]*/
11819
11820
static PyObject *
11821
unicode_istitle_impl(PyObject *self)
11822
/*[clinic end generated code: output=e9bf6eb91f5d3f0e input=98d32bd2e1f06f8c]*/
11823
0
{
11824
0
    Py_ssize_t i, length;
11825
0
    int kind;
11826
0
    const void *data;
11827
0
    int cased, previous_is_cased;
11828
11829
0
    length = PyUnicode_GET_LENGTH(self);
11830
0
    kind = PyUnicode_KIND(self);
11831
0
    data = PyUnicode_DATA(self);
11832
11833
    /* Shortcut for single character strings */
11834
0
    if (length == 1) {
11835
0
        Py_UCS4 ch = PyUnicode_READ(kind, data, 0);
11836
0
        return PyBool_FromLong((Py_UNICODE_ISTITLE(ch) != 0) ||
11837
0
                               (Py_UNICODE_ISUPPER(ch) != 0));
11838
0
    }
11839
11840
    /* Special case for empty strings */
11841
0
    if (length == 0)
11842
0
        Py_RETURN_FALSE;
11843
11844
0
    cased = 0;
11845
0
    previous_is_cased = 0;
11846
0
    for (i = 0; i < length; i++) {
11847
0
        const Py_UCS4 ch = PyUnicode_READ(kind, data, i);
11848
11849
0
        if (Py_UNICODE_ISUPPER(ch) || Py_UNICODE_ISTITLE(ch)) {
11850
0
            if (previous_is_cased)
11851
0
                Py_RETURN_FALSE;
11852
0
            previous_is_cased = 1;
11853
0
            cased = 1;
11854
0
        }
11855
0
        else if (Py_UNICODE_ISLOWER(ch)) {
11856
0
            if (!previous_is_cased)
11857
0
                Py_RETURN_FALSE;
11858
0
            previous_is_cased = 1;
11859
0
            cased = 1;
11860
0
        }
11861
0
        else
11862
0
            previous_is_cased = 0;
11863
0
    }
11864
0
    return PyBool_FromLong(cased);
11865
0
}
11866
11867
/*[clinic input]
11868
@permit_long_docstring_body
11869
str.isspace as unicode_isspace
11870
11871
Return True if the string is a whitespace string, False otherwise.
11872
11873
A string is whitespace if all characters in the string are whitespace and there
11874
is at least one character in the string.
11875
[clinic start generated code]*/
11876
11877
static PyObject *
11878
unicode_isspace_impl(PyObject *self)
11879
/*[clinic end generated code: output=163a63bfa08ac2b9 input=44fe05e248c6e159]*/
11880
13.0M
{
11881
13.0M
    Py_ssize_t i, length;
11882
13.0M
    int kind;
11883
13.0M
    const void *data;
11884
11885
13.0M
    length = PyUnicode_GET_LENGTH(self);
11886
13.0M
    kind = PyUnicode_KIND(self);
11887
13.0M
    data = PyUnicode_DATA(self);
11888
11889
    /* Shortcut for single character strings */
11890
13.0M
    if (length == 1)
11891
13.0M
        return PyBool_FromLong(
11892
13.0M
            Py_UNICODE_ISSPACE(PyUnicode_READ(kind, data, 0)));
11893
11894
    /* Special case for empty strings */
11895
666
    if (length == 0)
11896
142
        Py_RETURN_FALSE;
11897
11898
3.80k
    for (i = 0; i < length; i++) {
11899
3.75k
        const Py_UCS4 ch = PyUnicode_READ(kind, data, i);
11900
3.75k
        if (!Py_UNICODE_ISSPACE(ch))
11901
472
            Py_RETURN_FALSE;
11902
3.75k
    }
11903
524
    Py_RETURN_TRUE;
11904
524
}
11905
11906
/*[clinic input]
11907
@permit_long_docstring_body
11908
str.isalpha as unicode_isalpha
11909
11910
Return True if the string is an alphabetic string, False otherwise.
11911
11912
A string is alphabetic if all characters in the string are alphabetic and there
11913
is at least one character in the string.
11914
[clinic start generated code]*/
11915
11916
static PyObject *
11917
unicode_isalpha_impl(PyObject *self)
11918
/*[clinic end generated code: output=cc81b9ac3883ec4f input=c233000624a56e0d]*/
11919
11
{
11920
11
    Py_ssize_t i, length;
11921
11
    int kind;
11922
11
    const void *data;
11923
11924
11
    length = PyUnicode_GET_LENGTH(self);
11925
11
    kind = PyUnicode_KIND(self);
11926
11
    data = PyUnicode_DATA(self);
11927
11928
    /* Shortcut for single character strings */
11929
11
    if (length == 1)
11930
9
        return PyBool_FromLong(
11931
9
            Py_UNICODE_ISALPHA(PyUnicode_READ(kind, data, 0)));
11932
11933
    /* Special case for empty strings */
11934
2
    if (length == 0)
11935
0
        Py_RETURN_FALSE;
11936
11937
2
    for (i = 0; i < length; i++) {
11938
2
        if (!Py_UNICODE_ISALPHA(PyUnicode_READ(kind, data, i)))
11939
2
            Py_RETURN_FALSE;
11940
2
    }
11941
2
    Py_RETURN_TRUE;
11942
2
}
11943
11944
/*[clinic input]
11945
@permit_long_docstring_body
11946
str.isalnum as unicode_isalnum
11947
11948
Return True if the string is an alpha-numeric string, False otherwise.
11949
11950
A string is alpha-numeric if all characters in the string are alpha-numeric and
11951
there is at least one character in the string.
11952
[clinic start generated code]*/
11953
11954
static PyObject *
11955
unicode_isalnum_impl(PyObject *self)
11956
/*[clinic end generated code: output=a5a23490ffc3660c input=5d63ba9c9bafdb6b]*/
11957
0
{
11958
0
    int kind;
11959
0
    const void *data;
11960
0
    Py_ssize_t len, i;
11961
11962
0
    kind = PyUnicode_KIND(self);
11963
0
    data = PyUnicode_DATA(self);
11964
0
    len = PyUnicode_GET_LENGTH(self);
11965
11966
    /* Shortcut for single character strings */
11967
0
    if (len == 1) {
11968
0
        const Py_UCS4 ch = PyUnicode_READ(kind, data, 0);
11969
0
        return PyBool_FromLong(Py_UNICODE_ISALNUM(ch));
11970
0
    }
11971
11972
    /* Special case for empty strings */
11973
0
    if (len == 0)
11974
0
        Py_RETURN_FALSE;
11975
11976
0
    for (i = 0; i < len; i++) {
11977
0
        const Py_UCS4 ch = PyUnicode_READ(kind, data, i);
11978
0
        if (!Py_UNICODE_ISALNUM(ch))
11979
0
            Py_RETURN_FALSE;
11980
0
    }
11981
0
    Py_RETURN_TRUE;
11982
0
}
11983
11984
/*[clinic input]
11985
@permit_long_docstring_body
11986
str.isdecimal as unicode_isdecimal
11987
11988
Return True if the string is a decimal string, False otherwise.
11989
11990
A string is a decimal string if all characters in the string are decimal and
11991
there is at least one character in the string.
11992
[clinic start generated code]*/
11993
11994
static PyObject *
11995
unicode_isdecimal_impl(PyObject *self)
11996
/*[clinic end generated code: output=fb2dcdb62d3fc548 input=8e84a58b414935a3]*/
11997
1.38k
{
11998
1.38k
    Py_ssize_t i, length;
11999
1.38k
    int kind;
12000
1.38k
    const void *data;
12001
12002
1.38k
    length = PyUnicode_GET_LENGTH(self);
12003
1.38k
    kind = PyUnicode_KIND(self);
12004
1.38k
    data = PyUnicode_DATA(self);
12005
12006
    /* Shortcut for single character strings */
12007
1.38k
    if (length == 1)
12008
141
        return PyBool_FromLong(
12009
141
            Py_UNICODE_ISDECIMAL(PyUnicode_READ(kind, data, 0)));
12010
12011
    /* Special case for empty strings */
12012
1.24k
    if (length == 0)
12013
0
        Py_RETURN_FALSE;
12014
12015
7.33k
    for (i = 0; i < length; i++) {
12016
6.67k
        if (!Py_UNICODE_ISDECIMAL(PyUnicode_READ(kind, data, i)))
12017
576
            Py_RETURN_FALSE;
12018
6.67k
    }
12019
1.24k
    Py_RETURN_TRUE;
12020
1.24k
}
12021
12022
/*[clinic input]
12023
@permit_long_docstring_body
12024
str.isdigit as unicode_isdigit
12025
12026
Return True if the string is a digit string, False otherwise.
12027
12028
A string is a digit string if all characters in the string are digits and there
12029
is at least one character in the string.
12030
[clinic start generated code]*/
12031
12032
static PyObject *
12033
unicode_isdigit_impl(PyObject *self)
12034
/*[clinic end generated code: output=10a6985311da6858 input=99e284affb54d4a0]*/
12035
1.02M
{
12036
1.02M
    Py_ssize_t i, length;
12037
1.02M
    int kind;
12038
1.02M
    const void *data;
12039
12040
1.02M
    length = PyUnicode_GET_LENGTH(self);
12041
1.02M
    kind = PyUnicode_KIND(self);
12042
1.02M
    data = PyUnicode_DATA(self);
12043
12044
    /* Shortcut for single character strings */
12045
1.02M
    if (length == 1) {
12046
1.02M
        const Py_UCS4 ch = PyUnicode_READ(kind, data, 0);
12047
1.02M
        return PyBool_FromLong(Py_UNICODE_ISDIGIT(ch));
12048
1.02M
    }
12049
12050
    /* Special case for empty strings */
12051
408
    if (length == 0)
12052
0
        Py_RETURN_FALSE;
12053
12054
1.45k
    for (i = 0; i < length; i++) {
12055
1.04k
        if (!Py_UNICODE_ISDIGIT(PyUnicode_READ(kind, data, i)))
12056
0
            Py_RETURN_FALSE;
12057
1.04k
    }
12058
408
    Py_RETURN_TRUE;
12059
408
}
12060
12061
/*[clinic input]
12062
@permit_long_docstring_body
12063
str.isnumeric as unicode_isnumeric
12064
12065
Return True if the string is a numeric string, False otherwise.
12066
12067
A string is numeric if all characters in the string are numeric and there is at
12068
least one character in the string.
12069
[clinic start generated code]*/
12070
12071
static PyObject *
12072
unicode_isnumeric_impl(PyObject *self)
12073
/*[clinic end generated code: output=9172a32d9013051a input=e9f5b6b8b29b0ee6]*/
12074
0
{
12075
0
    Py_ssize_t i, length;
12076
0
    int kind;
12077
0
    const void *data;
12078
12079
0
    length = PyUnicode_GET_LENGTH(self);
12080
0
    kind = PyUnicode_KIND(self);
12081
0
    data = PyUnicode_DATA(self);
12082
12083
    /* Shortcut for single character strings */
12084
0
    if (length == 1)
12085
0
        return PyBool_FromLong(
12086
0
            Py_UNICODE_ISNUMERIC(PyUnicode_READ(kind, data, 0)));
12087
12088
    /* Special case for empty strings */
12089
0
    if (length == 0)
12090
0
        Py_RETURN_FALSE;
12091
12092
0
    for (i = 0; i < length; i++) {
12093
0
        if (!Py_UNICODE_ISNUMERIC(PyUnicode_READ(kind, data, i)))
12094
0
            Py_RETURN_FALSE;
12095
0
    }
12096
0
    Py_RETURN_TRUE;
12097
0
}
12098
12099
Py_ssize_t
12100
_PyUnicode_ScanIdentifier(PyObject *self)
12101
15.7k
{
12102
15.7k
    Py_ssize_t i;
12103
15.7k
    Py_ssize_t len = PyUnicode_GET_LENGTH(self);
12104
15.7k
    if (len == 0) {
12105
        /* an empty string is not a valid identifier */
12106
0
        return 0;
12107
0
    }
12108
12109
15.7k
    int kind = PyUnicode_KIND(self);
12110
15.7k
    const void *data = PyUnicode_DATA(self);
12111
15.7k
    Py_UCS4 ch = PyUnicode_READ(kind, data, 0);
12112
    /* PEP 3131 says that the first character must be in
12113
       XID_Start and subsequent characters in XID_Continue,
12114
       and for the ASCII range, the 2.x rules apply (i.e
12115
       start with letters and underscore, continue with
12116
       letters, digits, underscore). However, given the current
12117
       definition of XID_Start and XID_Continue, it is sufficient
12118
       to check just for these, except that _ must be allowed
12119
       as starting an identifier.  */
12120
15.7k
    if (!_PyUnicode_IsXidStart(ch) && ch != 0x5F /* LOW LINE */) {
12121
813
        return 0;
12122
813
    }
12123
12124
89.3k
    for (i = 1; i < len; i++) {
12125
74.6k
        ch = PyUnicode_READ(kind, data, i);
12126
74.6k
        if (!_PyUnicode_IsXidContinue(ch)) {
12127
347
            return i;
12128
347
        }
12129
74.6k
    }
12130
14.6k
    return i;
12131
14.9k
}
12132
12133
int
12134
PyUnicode_IsIdentifier(PyObject *self)
12135
5.32k
{
12136
5.32k
    Py_ssize_t i = _PyUnicode_ScanIdentifier(self);
12137
5.32k
    Py_ssize_t len = PyUnicode_GET_LENGTH(self);
12138
    /* an empty string is not a valid identifier */
12139
5.32k
    return len && i == len;
12140
5.32k
}
12141
12142
/*[clinic input]
12143
@permit_long_docstring_body
12144
str.isidentifier as unicode_isidentifier
12145
12146
Return True if the string is a valid Python identifier, False otherwise.
12147
12148
Call keyword.iskeyword(s) to test whether string s is a reserved identifier,
12149
such as "def" or "class".
12150
[clinic start generated code]*/
12151
12152
static PyObject *
12153
unicode_isidentifier_impl(PyObject *self)
12154
/*[clinic end generated code: output=fe585a9666572905 input=86315dd889d7bd04]*/
12155
3.70k
{
12156
3.70k
    return PyBool_FromLong(PyUnicode_IsIdentifier(self));
12157
3.70k
}
12158
12159
/*[clinic input]
12160
@permit_long_summary
12161
str.isprintable as unicode_isprintable
12162
12163
Return True if all characters in the string are printable, False otherwise.
12164
12165
A character is printable if repr() may use it in its output.
12166
[clinic start generated code]*/
12167
12168
static PyObject *
12169
unicode_isprintable_impl(PyObject *self)
12170
/*[clinic end generated code: output=3ab9626cd32dd1a0 input=18345ba847084ec5]*/
12171
926k
{
12172
926k
    Py_ssize_t i, length;
12173
926k
    int kind;
12174
926k
    const void *data;
12175
12176
926k
    length = PyUnicode_GET_LENGTH(self);
12177
926k
    kind = PyUnicode_KIND(self);
12178
926k
    data = PyUnicode_DATA(self);
12179
12180
    /* Shortcut for single character strings */
12181
926k
    if (length == 1)
12182
926k
        return PyBool_FromLong(
12183
926k
            Py_UNICODE_ISPRINTABLE(PyUnicode_READ(kind, data, 0)));
12184
12185
0
    for (i = 0; i < length; i++) {
12186
0
        if (!Py_UNICODE_ISPRINTABLE(PyUnicode_READ(kind, data, i))) {
12187
0
            Py_RETURN_FALSE;
12188
0
        }
12189
0
    }
12190
0
    Py_RETURN_TRUE;
12191
0
}
12192
12193
/*[clinic input]
12194
@permit_long_docstring_body
12195
str.join as unicode_join
12196
12197
    iterable: object
12198
    /
12199
12200
Concatenate any number of strings.
12201
12202
The string whose method is called is inserted in between each given string.
12203
The result is returned as a new string.
12204
12205
Example: '.'.join(['ab', 'pq', 'rs']) -> 'ab.pq.rs'
12206
[clinic start generated code]*/
12207
12208
static PyObject *
12209
unicode_join(PyObject *self, PyObject *iterable)
12210
/*[clinic end generated code: output=6857e7cecfe7bf98 input=bac724ed412ef3f8]*/
12211
16.8M
{
12212
16.8M
    return PyUnicode_Join(self, iterable);
12213
16.8M
}
12214
12215
static Py_ssize_t
12216
unicode_length(PyObject *self)
12217
28.9M
{
12218
28.9M
    return PyUnicode_GET_LENGTH(self);
12219
28.9M
}
12220
12221
/*[clinic input]
12222
str.ljust as unicode_ljust
12223
12224
    width: Py_ssize_t
12225
    fillchar: Py_UCS4 = ' '
12226
    /
12227
12228
Return a left-justified string of length width.
12229
12230
Padding is done using the specified fill character (default is a space).
12231
[clinic start generated code]*/
12232
12233
static PyObject *
12234
unicode_ljust_impl(PyObject *self, Py_ssize_t width, Py_UCS4 fillchar)
12235
/*[clinic end generated code: output=1cce0e0e0a0b84b3 input=3ab599e335e60a32]*/
12236
85
{
12237
85
    if (PyUnicode_GET_LENGTH(self) >= width)
12238
49
        return unicode_result_unchanged(self);
12239
12240
36
    return pad(self, 0, width - PyUnicode_GET_LENGTH(self), fillchar);
12241
85
}
12242
12243
/*[clinic input]
12244
str.lower as unicode_lower
12245
12246
Return a copy of the string converted to lowercase.
12247
[clinic start generated code]*/
12248
12249
static PyObject *
12250
unicode_lower_impl(PyObject *self)
12251
/*[clinic end generated code: output=84ef9ed42efad663 input=60a2984b8beff23a]*/
12252
59.5M
{
12253
59.5M
    if (PyUnicode_IS_ASCII(self))
12254
56.9M
        return ascii_upper_or_lower(self, 1);
12255
2.53M
    return case_operation(self, do_lower);
12256
59.5M
}
12257
12258
66.1M
#define LEFTSTRIP 0
12259
85.2M
#define RIGHTSTRIP 1
12260
41.5M
#define BOTHSTRIP 2
12261
12262
/* Arrays indexed by above */
12263
static const char *stripfuncnames[] = {"lstrip", "rstrip", "strip"};
12264
12265
0
#define STRIPNAME(i) (stripfuncnames[i])
12266
12267
/* externally visible for str.strip(unicode) */
12268
PyObject *
12269
_PyUnicode_XStrip(PyObject *self, int striptype, PyObject *sepobj)
12270
6.28M
{
12271
6.28M
    const void *data;
12272
6.28M
    int kind;
12273
6.28M
    Py_ssize_t i, j, len;
12274
6.28M
    BLOOM_MASK sepmask;
12275
6.28M
    Py_ssize_t seplen;
12276
12277
6.28M
    kind = PyUnicode_KIND(self);
12278
6.28M
    data = PyUnicode_DATA(self);
12279
6.28M
    len = PyUnicode_GET_LENGTH(self);
12280
6.28M
    seplen = PyUnicode_GET_LENGTH(sepobj);
12281
6.28M
    sepmask = make_bloom_mask(PyUnicode_KIND(sepobj),
12282
6.28M
                              PyUnicode_DATA(sepobj),
12283
6.28M
                              seplen);
12284
12285
6.28M
    i = 0;
12286
6.28M
    if (striptype != RIGHTSTRIP) {
12287
502k
        while (i < len) {
12288
500k
            Py_UCS4 ch = PyUnicode_READ(kind, data, i);
12289
500k
            if (!BLOOM(sepmask, ch))
12290
470k
                break;
12291
29.8k
            if (PyUnicode_FindChar(sepobj, ch, 0, seplen, 1) < 0)
12292
2.50k
                break;
12293
27.3k
            i++;
12294
27.3k
        }
12295
475k
    }
12296
12297
6.28M
    j = len;
12298
6.28M
    if (striptype != LEFTSTRIP) {
12299
5.80M
        j--;
12300
6.49M
        while (j >= i) {
12301
4.35M
            Py_UCS4 ch = PyUnicode_READ(kind, data, j);
12302
4.35M
            if (!BLOOM(sepmask, ch))
12303
3.61M
                break;
12304
743k
            if (PyUnicode_FindChar(sepobj, ch, 0, seplen, 1) < 0)
12305
52.8k
                break;
12306
690k
            j--;
12307
690k
        }
12308
12309
5.80M
        j++;
12310
5.80M
    }
12311
12312
6.28M
    return PyUnicode_Substring(self, i, j);
12313
6.28M
}
12314
12315
PyObject*
12316
PyUnicode_Substring(PyObject *self, Py_ssize_t start, Py_ssize_t end)
12317
219M
{
12318
219M
    const unsigned char *data;
12319
219M
    int kind;
12320
219M
    Py_ssize_t length;
12321
12322
219M
    length = PyUnicode_GET_LENGTH(self);
12323
219M
    end = Py_MIN(end, length);
12324
12325
219M
    if (start == 0 && end == length)
12326
64.5M
        return unicode_result_unchanged(self);
12327
12328
154M
    if (start < 0 || end < 0) {
12329
0
        PyErr_SetString(PyExc_IndexError, "string index out of range");
12330
0
        return NULL;
12331
0
    }
12332
154M
    if (start >= length || end < start)
12333
3.35M
        _Py_RETURN_UNICODE_EMPTY();
12334
12335
151M
    length = end - start;
12336
151M
    if (PyUnicode_IS_ASCII(self)) {
12337
54.6M
        data = PyUnicode_1BYTE_DATA(self);
12338
54.6M
        return _PyUnicode_FromASCII((const char*)(data + start), length);
12339
54.6M
    }
12340
96.6M
    else {
12341
96.6M
        kind = PyUnicode_KIND(self);
12342
96.6M
        data = PyUnicode_1BYTE_DATA(self);
12343
96.6M
        return PyUnicode_FromKindAndData(kind,
12344
96.6M
                                         data + kind * start,
12345
96.6M
                                         length);
12346
96.6M
    }
12347
151M
}
12348
12349
static PyObject *
12350
do_strip(PyObject *self, int striptype)
12351
58.0M
{
12352
58.0M
    Py_ssize_t len, i, j;
12353
12354
58.0M
    len = PyUnicode_GET_LENGTH(self);
12355
12356
58.0M
    if (PyUnicode_IS_ASCII(self)) {
12357
45.6M
        const Py_UCS1 *data = PyUnicode_1BYTE_DATA(self);
12358
12359
45.6M
        i = 0;
12360
45.6M
        if (striptype != RIGHTSTRIP) {
12361
39.1M
            while (i < len) {
12362
32.5M
                Py_UCS1 ch = data[i];
12363
32.5M
                if (!_Py_ascii_whitespace[ch])
12364
27.6M
                    break;
12365
4.88M
                i++;
12366
4.88M
            }
12367
34.2M
        }
12368
12369
45.6M
        j = len;
12370
45.6M
        if (striptype != LEFTSTRIP) {
12371
45.4M
            j--;
12372
54.2M
            while (j >= i) {
12373
41.2M
                Py_UCS1 ch = data[j];
12374
41.2M
                if (!_Py_ascii_whitespace[ch])
12375
32.3M
                    break;
12376
8.85M
                j--;
12377
8.85M
            }
12378
45.4M
            j++;
12379
45.4M
        }
12380
45.6M
    }
12381
12.3M
    else {
12382
12.3M
        int kind = PyUnicode_KIND(self);
12383
12.3M
        const void *data = PyUnicode_DATA(self);
12384
12385
12.3M
        i = 0;
12386
12.3M
        if (striptype != RIGHTSTRIP) {
12387
11.5M
            while (i < len) {
12388
11.5M
                Py_UCS4 ch = PyUnicode_READ(kind, data, i);
12389
11.5M
                if (!Py_UNICODE_ISSPACE(ch))
12390
8.60M
                    break;
12391
2.90M
                i++;
12392
2.90M
            }
12393
8.60M
        }
12394
12395
12.3M
        j = len;
12396
12.3M
        if (striptype != LEFTSTRIP) {
12397
11.2M
            j--;
12398
14.0M
            while (j >= i) {
12399
13.9M
                Py_UCS4 ch = PyUnicode_READ(kind, data, j);
12400
13.9M
                if (!Py_UNICODE_ISSPACE(ch))
12401
11.1M
                    break;
12402
2.78M
                j--;
12403
2.78M
            }
12404
11.2M
            j++;
12405
11.2M
        }
12406
12.3M
    }
12407
12408
58.0M
    return PyUnicode_Substring(self, i, j);
12409
58.0M
}
12410
12411
12412
static PyObject *
12413
do_argstrip(PyObject *self, int striptype, PyObject *sep)
12414
64.2M
{
12415
64.2M
    if (sep != Py_None) {
12416
6.28M
        if (PyUnicode_Check(sep))
12417
6.28M
            return _PyUnicode_XStrip(self, striptype, sep);
12418
0
        else {
12419
0
            PyErr_Format(PyExc_TypeError,
12420
0
                         "%s arg must be None or str",
12421
0
                         STRIPNAME(striptype));
12422
0
            return NULL;
12423
0
        }
12424
6.28M
    }
12425
12426
58.0M
    return do_strip(self, striptype);
12427
64.2M
}
12428
12429
12430
/*[clinic input]
12431
@permit_long_summary
12432
str.strip as unicode_strip
12433
12434
    chars: object = None
12435
    /
12436
12437
Return a copy of the string with leading and trailing whitespace removed.
12438
12439
If chars is given and not None, remove characters in chars instead.
12440
[clinic start generated code]*/
12441
12442
static PyObject *
12443
unicode_strip_impl(PyObject *self, PyObject *chars)
12444
/*[clinic end generated code: output=ca19018454345d57 input=8bc6353450345fbd]*/
12445
41.5M
{
12446
41.5M
    return do_argstrip(self, BOTHSTRIP, chars);
12447
41.5M
}
12448
12449
12450
/*[clinic input]
12451
str.lstrip as unicode_lstrip
12452
12453
    chars: object = None
12454
    /
12455
12456
Return a copy of the string with leading whitespace removed.
12457
12458
If chars is given and not None, remove characters in chars instead.
12459
[clinic start generated code]*/
12460
12461
static PyObject *
12462
unicode_lstrip_impl(PyObject *self, PyObject *chars)
12463
/*[clinic end generated code: output=3b43683251f79ca7 input=529f9f3834448671]*/
12464
1.84M
{
12465
1.84M
    return do_argstrip(self, LEFTSTRIP, chars);
12466
1.84M
}
12467
12468
12469
/*[clinic input]
12470
str.rstrip as unicode_rstrip
12471
12472
    chars: object = None
12473
    /
12474
12475
Return a copy of the string with trailing whitespace removed.
12476
12477
If chars is given and not None, remove characters in chars instead.
12478
[clinic start generated code]*/
12479
12480
static PyObject *
12481
unicode_rstrip_impl(PyObject *self, PyObject *chars)
12482
/*[clinic end generated code: output=4a59230017cc3b7a input=62566c627916557f]*/
12483
20.9M
{
12484
20.9M
    return do_argstrip(self, RIGHTSTRIP, chars);
12485
20.9M
}
12486
12487
12488
static PyObject*
12489
unicode_repeat(PyObject *str, Py_ssize_t len)
12490
433k
{
12491
433k
    PyObject *u;
12492
433k
    Py_ssize_t nchars, n;
12493
12494
433k
    if (len < 1)
12495
25.3k
        _Py_RETURN_UNICODE_EMPTY();
12496
12497
    /* no repeat, return original string */
12498
408k
    if (len == 1)
12499
59.3k
        return unicode_result_unchanged(str);
12500
12501
348k
    if (PyUnicode_GET_LENGTH(str) > PY_SSIZE_T_MAX / len) {
12502
0
        PyErr_SetString(PyExc_OverflowError,
12503
0
                        "repeated string is too long");
12504
0
        return NULL;
12505
0
    }
12506
348k
    nchars = len * PyUnicode_GET_LENGTH(str);
12507
12508
348k
    u = PyUnicode_New(nchars, PyUnicode_MAX_CHAR_VALUE(str));
12509
348k
    if (!u)
12510
0
        return NULL;
12511
348k
    assert(PyUnicode_KIND(u) == PyUnicode_KIND(str));
12512
12513
348k
    if (PyUnicode_GET_LENGTH(str) == 1) {
12514
346k
        int kind = PyUnicode_KIND(str);
12515
346k
        Py_UCS4 fill_char = PyUnicode_READ(kind, PyUnicode_DATA(str), 0);
12516
346k
        if (kind == PyUnicode_1BYTE_KIND) {
12517
346k
            void *to = PyUnicode_DATA(u);
12518
346k
            memset(to, (unsigned char)fill_char, len);
12519
346k
        }
12520
0
        else if (kind == PyUnicode_2BYTE_KIND) {
12521
0
            Py_UCS2 *ucs2 = PyUnicode_2BYTE_DATA(u);
12522
0
            for (n = 0; n < len; ++n)
12523
0
                ucs2[n] = fill_char;
12524
0
        } else {
12525
0
            Py_UCS4 *ucs4 = PyUnicode_4BYTE_DATA(u);
12526
0
            assert(kind == PyUnicode_4BYTE_KIND);
12527
0
            for (n = 0; n < len; ++n)
12528
0
                ucs4[n] = fill_char;
12529
0
        }
12530
346k
    }
12531
2.75k
    else {
12532
2.75k
        Py_ssize_t char_size = PyUnicode_KIND(str);
12533
2.75k
        char *to = (char *) PyUnicode_DATA(u);
12534
2.75k
        _PyBytes_Repeat(to, nchars * char_size, PyUnicode_DATA(str),
12535
2.75k
            PyUnicode_GET_LENGTH(str) * char_size);
12536
2.75k
    }
12537
12538
348k
    assert(_PyUnicode_CheckConsistency(u, 1));
12539
348k
    return u;
12540
348k
}
12541
12542
PyObject *
12543
PyUnicode_Replace(PyObject *str,
12544
                  PyObject *substr,
12545
                  PyObject *replstr,
12546
                  Py_ssize_t maxcount)
12547
0
{
12548
0
    if (ensure_unicode(str) < 0 || ensure_unicode(substr) < 0 ||
12549
0
            ensure_unicode(replstr) < 0)
12550
0
        return NULL;
12551
0
    return replace(str, substr, replstr, maxcount);
12552
0
}
12553
12554
/*[clinic input]
12555
@permit_long_docstring_body
12556
str.replace as unicode_replace
12557
12558
    old: unicode
12559
    new: unicode
12560
    /
12561
    count: Py_ssize_t = -1
12562
        Maximum number of occurrences to replace.
12563
        -1 (the default value) means replace all occurrences.
12564
12565
Return a copy with all occurrences of substring old replaced by new.
12566
12567
If the optional argument count is given, only the first count occurrences are
12568
replaced.
12569
[clinic start generated code]*/
12570
12571
static PyObject *
12572
unicode_replace_impl(PyObject *self, PyObject *old, PyObject *new,
12573
                     Py_ssize_t count)
12574
/*[clinic end generated code: output=b63f1a8b5eebf448 input=f27ca92ac46b65a1]*/
12575
41.7M
{
12576
41.7M
    return replace(self, old, new, count);
12577
41.7M
}
12578
12579
/*[clinic input]
12580
@permit_long_docstring_body
12581
str.removeprefix as unicode_removeprefix
12582
12583
    prefix: unicode
12584
    /
12585
12586
Return a str with the given prefix string removed if present.
12587
12588
If the string starts with the prefix string, return string[len(prefix):].
12589
Otherwise, return a copy of the original string.
12590
[clinic start generated code]*/
12591
12592
static PyObject *
12593
unicode_removeprefix_impl(PyObject *self, PyObject *prefix)
12594
/*[clinic end generated code: output=f1e5945e9763bcb9 input=1989a856dbb813f1]*/
12595
154
{
12596
154
    int match = tailmatch(self, prefix, 0, PY_SSIZE_T_MAX, -1);
12597
154
    if (match == -1) {
12598
0
        return NULL;
12599
0
    }
12600
154
    if (match) {
12601
40
        return PyUnicode_Substring(self, PyUnicode_GET_LENGTH(prefix),
12602
40
                                   PyUnicode_GET_LENGTH(self));
12603
40
    }
12604
114
    return unicode_result_unchanged(self);
12605
154
}
12606
12607
/*[clinic input]
12608
str.removesuffix as unicode_removesuffix
12609
12610
    suffix: unicode
12611
    /
12612
12613
Return a str with the given suffix string removed if present.
12614
12615
If the string ends with the suffix string and that suffix is not empty,
12616
return string[:-len(suffix)]. Otherwise, return a copy of the original
12617
string.
12618
[clinic start generated code]*/
12619
12620
static PyObject *
12621
unicode_removesuffix_impl(PyObject *self, PyObject *suffix)
12622
/*[clinic end generated code: output=d36629e227636822 input=12cc32561e769be4]*/
12623
0
{
12624
0
    int match = tailmatch(self, suffix, 0, PY_SSIZE_T_MAX, +1);
12625
0
    if (match == -1) {
12626
0
        return NULL;
12627
0
    }
12628
0
    if (match) {
12629
0
        return PyUnicode_Substring(self, 0, PyUnicode_GET_LENGTH(self)
12630
0
                                            - PyUnicode_GET_LENGTH(suffix));
12631
0
    }
12632
0
    return unicode_result_unchanged(self);
12633
0
}
12634
12635
static PyObject *
12636
unicode_repr(PyObject *unicode)
12637
10.2M
{
12638
10.2M
    Py_ssize_t isize = PyUnicode_GET_LENGTH(unicode);
12639
10.2M
    const void *idata = PyUnicode_DATA(unicode);
12640
12641
    /* Compute length of output, quote characters, and
12642
       maximum character */
12643
10.2M
    Py_ssize_t osize = 0;
12644
10.2M
    Py_UCS4 maxch = 127;
12645
10.2M
    Py_ssize_t squote = 0;
12646
10.2M
    Py_ssize_t dquote = 0;
12647
10.2M
    int ikind = PyUnicode_KIND(unicode);
12648
250M
    for (Py_ssize_t i = 0; i < isize; i++) {
12649
240M
        Py_UCS4 ch = PyUnicode_READ(ikind, idata, i);
12650
240M
        Py_ssize_t incr = 1;
12651
240M
        switch (ch) {
12652
183k
        case '\'': squote++; break;
12653
514k
        case '"':  dquote++; break;
12654
4.23M
        case '\\': case '\t': case '\r': case '\n':
12655
4.23M
            incr = 2;
12656
4.23M
            break;
12657
235M
        default:
12658
            /* Fast-path ASCII */
12659
235M
            if (ch < ' ' || ch == 0x7f)
12660
136M
                incr = 4; /* \xHH */
12661
98.6M
            else if (ch < 0x7f)
12662
88.1M
                ;
12663
10.5M
            else if (Py_UNICODE_ISPRINTABLE(ch))
12664
10.2M
                maxch = (ch > maxch) ? ch : maxch;
12665
295k
            else if (ch < 0x100)
12666
73.8k
                incr = 4; /* \xHH */
12667
221k
            else if (ch < 0x10000)
12668
84.7k
                incr = 6; /* \uHHHH */
12669
136k
            else
12670
136k
                incr = 10; /* \uHHHHHHHH */
12671
240M
        }
12672
240M
        if (osize > PY_SSIZE_T_MAX - incr) {
12673
0
            PyErr_SetString(PyExc_OverflowError,
12674
0
                            "string is too long to generate repr");
12675
0
            return NULL;
12676
0
        }
12677
240M
        osize += incr;
12678
240M
    }
12679
12680
10.2M
    Py_UCS4 quote = '\'';
12681
10.2M
    int changed = (osize != isize);
12682
10.2M
    if (squote) {
12683
96.1k
        changed = 1;
12684
96.1k
        if (dquote)
12685
            /* Both squote and dquote present. Use squote,
12686
               and escape them */
12687
8.20k
            osize += squote;
12688
87.9k
        else
12689
87.9k
            quote = '"';
12690
96.1k
    }
12691
10.2M
    osize += 2;   /* quotes */
12692
12693
10.2M
    PyObject *repr = PyUnicode_New(osize, maxch);
12694
10.2M
    if (repr == NULL)
12695
0
        return NULL;
12696
10.2M
    int okind = PyUnicode_KIND(repr);
12697
10.2M
    void *odata = PyUnicode_DATA(repr);
12698
12699
10.2M
    if (!changed) {
12700
5.49M
        PyUnicode_WRITE(okind, odata, 0, quote);
12701
12702
5.49M
        _PyUnicode_FastCopyCharacters(repr, 1,
12703
5.49M
                                      unicode, 0,
12704
5.49M
                                      isize);
12705
12706
5.49M
        PyUnicode_WRITE(okind, odata, osize-1, quote);
12707
5.49M
    }
12708
4.74M
    else {
12709
4.74M
        switch (okind) {
12710
4.52M
        case PyUnicode_1BYTE_KIND:
12711
4.52M
            ucs1lib_repr(unicode, quote, odata);
12712
4.52M
            break;
12713
213k
        case PyUnicode_2BYTE_KIND:
12714
213k
            ucs2lib_repr(unicode, quote, odata);
12715
213k
            break;
12716
7.12k
        default:
12717
7.12k
            assert(okind == PyUnicode_4BYTE_KIND);
12718
7.12k
            ucs4lib_repr(unicode, quote, odata);
12719
4.74M
        }
12720
4.74M
    }
12721
12722
10.2M
    assert(_PyUnicode_CheckConsistency(repr, 1));
12723
10.2M
    return repr;
12724
10.2M
}
12725
12726
/*[clinic input]
12727
@permit_long_summary
12728
str.rfind as unicode_rfind = str.count
12729
12730
Return the highest index in S where substring sub is found, such that sub is contained within S[start:end].
12731
12732
Optional arguments start and end are interpreted as in slice notation.
12733
Return -1 on failure.
12734
[clinic start generated code]*/
12735
12736
static Py_ssize_t
12737
unicode_rfind_impl(PyObject *str, PyObject *substr, Py_ssize_t start,
12738
                   Py_ssize_t end)
12739
/*[clinic end generated code: output=880b29f01dd014c8 input=7f7e97d5cd3299a2]*/
12740
240k
{
12741
240k
    Py_ssize_t result = any_find_slice(str, substr, start, end, -1);
12742
240k
    if (result < 0) {
12743
8.93k
        return -1;
12744
8.93k
    }
12745
231k
    return result;
12746
240k
}
12747
12748
/*[clinic input]
12749
@permit_long_summary
12750
str.rindex as unicode_rindex = str.count
12751
12752
Return the highest index in S where substring sub is found, such that sub is contained within S[start:end].
12753
12754
Optional arguments start and end are interpreted as in slice notation.
12755
Raises ValueError when the substring is not found.
12756
[clinic start generated code]*/
12757
12758
static Py_ssize_t
12759
unicode_rindex_impl(PyObject *str, PyObject *substr, Py_ssize_t start,
12760
                    Py_ssize_t end)
12761
/*[clinic end generated code: output=5f3aef124c867fe1 input=0363a324740b3e62]*/
12762
138k
{
12763
138k
    Py_ssize_t result = any_find_slice(str, substr, start, end, -1);
12764
138k
    if (result == -1) {
12765
0
        PyErr_SetString(PyExc_ValueError, "substring not found");
12766
0
    }
12767
138k
    else if (result < 0) {
12768
0
        return -1;
12769
0
    }
12770
138k
    return result;
12771
138k
}
12772
12773
/*[clinic input]
12774
str.rjust as unicode_rjust
12775
12776
    width: Py_ssize_t
12777
    fillchar: Py_UCS4 = ' '
12778
    /
12779
12780
Return a right-justified string of length width.
12781
12782
Padding is done using the specified fill character (default is a space).
12783
[clinic start generated code]*/
12784
12785
static PyObject *
12786
unicode_rjust_impl(PyObject *self, Py_ssize_t width, Py_UCS4 fillchar)
12787
/*[clinic end generated code: output=804a1a57fbe8d5cf input=d05f550b5beb1f72]*/
12788
0
{
12789
0
    if (PyUnicode_GET_LENGTH(self) >= width)
12790
0
        return unicode_result_unchanged(self);
12791
12792
0
    return pad(self, width - PyUnicode_GET_LENGTH(self), 0, fillchar);
12793
0
}
12794
12795
PyObject *
12796
PyUnicode_Split(PyObject *s, PyObject *sep, Py_ssize_t maxsplit)
12797
0
{
12798
0
    if (ensure_unicode(s) < 0 || (sep != NULL && ensure_unicode(sep) < 0))
12799
0
        return NULL;
12800
12801
0
    return split(s, sep, maxsplit);
12802
0
}
12803
12804
/*[clinic input]
12805
@permit_long_summary
12806
str.split as unicode_split
12807
12808
    sep: object = None
12809
        The separator used to split the string.
12810
12811
        When set to None (the default value), will split on any whitespace
12812
        character (including \n \r \t \f and spaces) and will discard
12813
        empty strings from the result.
12814
    maxsplit: Py_ssize_t = -1
12815
        Maximum number of splits.
12816
        -1 (the default value) means no limit.
12817
12818
Return a list of the substrings in the string, using sep as the separator string.
12819
12820
Splitting starts at the front of the string and works to the end.
12821
12822
Note, str.split() is mainly useful for data that has been intentionally
12823
delimited.  With natural text that includes punctuation, consider using
12824
the regular expression module.
12825
12826
[clinic start generated code]*/
12827
12828
static PyObject *
12829
unicode_split_impl(PyObject *self, PyObject *sep, Py_ssize_t maxsplit)
12830
/*[clinic end generated code: output=3a65b1db356948dc input=2c1fd08a78e038b8]*/
12831
19.4M
{
12832
19.4M
    if (sep == Py_None)
12833
140k
        return split(self, NULL, maxsplit);
12834
19.2M
    if (PyUnicode_Check(sep))
12835
19.2M
        return split(self, sep, maxsplit);
12836
12837
0
    PyErr_Format(PyExc_TypeError,
12838
0
                 "must be str or None, not %.100s",
12839
0
                 Py_TYPE(sep)->tp_name);
12840
0
    return NULL;
12841
19.2M
}
12842
12843
PyObject *
12844
PyUnicode_Partition(PyObject *str_obj, PyObject *sep_obj)
12845
7.38M
{
12846
7.38M
    PyObject* out;
12847
7.38M
    int kind1, kind2;
12848
7.38M
    const void *buf1, *buf2;
12849
7.38M
    Py_ssize_t len1, len2;
12850
12851
7.38M
    if (ensure_unicode(str_obj) < 0 || ensure_unicode(sep_obj) < 0)
12852
0
        return NULL;
12853
12854
7.38M
    kind1 = PyUnicode_KIND(str_obj);
12855
7.38M
    kind2 = PyUnicode_KIND(sep_obj);
12856
7.38M
    len1 = PyUnicode_GET_LENGTH(str_obj);
12857
7.38M
    len2 = PyUnicode_GET_LENGTH(sep_obj);
12858
7.38M
    if (kind1 < kind2 || len1 < len2) {
12859
1.28k
        PyObject *empty = _PyUnicode_GetEmpty();  // Borrowed reference
12860
1.28k
        return PyTuple_Pack(3, str_obj, empty, empty);
12861
1.28k
    }
12862
7.38M
    buf1 = PyUnicode_DATA(str_obj);
12863
7.38M
    buf2 = PyUnicode_DATA(sep_obj);
12864
7.38M
    if (kind2 != kind1) {
12865
70.3k
        buf2 = unicode_askind(kind2, buf2, len2, kind1);
12866
70.3k
        if (!buf2)
12867
0
            return NULL;
12868
70.3k
    }
12869
12870
7.38M
    switch (kind1) {
12871
7.31M
    case PyUnicode_1BYTE_KIND:
12872
7.31M
        if (PyUnicode_IS_ASCII(str_obj) && PyUnicode_IS_ASCII(sep_obj))
12873
2.60M
            out = asciilib_partition(str_obj, buf1, len1, sep_obj, buf2, len2);
12874
4.71M
        else
12875
4.71M
            out = ucs1lib_partition(str_obj, buf1, len1, sep_obj, buf2, len2);
12876
7.31M
        break;
12877
60.9k
    case PyUnicode_2BYTE_KIND:
12878
60.9k
        out = ucs2lib_partition(str_obj, buf1, len1, sep_obj, buf2, len2);
12879
60.9k
        break;
12880
9.40k
    case PyUnicode_4BYTE_KIND:
12881
9.40k
        out = ucs4lib_partition(str_obj, buf1, len1, sep_obj, buf2, len2);
12882
9.40k
        break;
12883
0
    default:
12884
0
        Py_UNREACHABLE();
12885
7.38M
    }
12886
12887
7.38M
    assert((kind2 == kind1) == (buf2 == PyUnicode_DATA(sep_obj)));
12888
7.38M
    if (kind2 != kind1)
12889
70.3k
        PyMem_Free((void *)buf2);
12890
12891
7.38M
    return out;
12892
7.38M
}
12893
12894
12895
PyObject *
12896
PyUnicode_RPartition(PyObject *str_obj, PyObject *sep_obj)
12897
33.5k
{
12898
33.5k
    PyObject* out;
12899
33.5k
    int kind1, kind2;
12900
33.5k
    const void *buf1, *buf2;
12901
33.5k
    Py_ssize_t len1, len2;
12902
12903
33.5k
    if (ensure_unicode(str_obj) < 0 || ensure_unicode(sep_obj) < 0)
12904
0
        return NULL;
12905
12906
33.5k
    kind1 = PyUnicode_KIND(str_obj);
12907
33.5k
    kind2 = PyUnicode_KIND(sep_obj);
12908
33.5k
    len1 = PyUnicode_GET_LENGTH(str_obj);
12909
33.5k
    len2 = PyUnicode_GET_LENGTH(sep_obj);
12910
33.5k
    if (kind1 < kind2 || len1 < len2) {
12911
0
        PyObject *empty = _PyUnicode_GetEmpty();  // Borrowed reference
12912
0
        return PyTuple_Pack(3, empty, empty, str_obj);
12913
0
    }
12914
33.5k
    buf1 = PyUnicode_DATA(str_obj);
12915
33.5k
    buf2 = PyUnicode_DATA(sep_obj);
12916
33.5k
    if (kind2 != kind1) {
12917
0
        buf2 = unicode_askind(kind2, buf2, len2, kind1);
12918
0
        if (!buf2)
12919
0
            return NULL;
12920
0
    }
12921
12922
33.5k
    switch (kind1) {
12923
33.5k
    case PyUnicode_1BYTE_KIND:
12924
33.5k
        if (PyUnicode_IS_ASCII(str_obj) && PyUnicode_IS_ASCII(sep_obj))
12925
33.5k
            out = asciilib_rpartition(str_obj, buf1, len1, sep_obj, buf2, len2);
12926
0
        else
12927
0
            out = ucs1lib_rpartition(str_obj, buf1, len1, sep_obj, buf2, len2);
12928
33.5k
        break;
12929
0
    case PyUnicode_2BYTE_KIND:
12930
0
        out = ucs2lib_rpartition(str_obj, buf1, len1, sep_obj, buf2, len2);
12931
0
        break;
12932
0
    case PyUnicode_4BYTE_KIND:
12933
0
        out = ucs4lib_rpartition(str_obj, buf1, len1, sep_obj, buf2, len2);
12934
0
        break;
12935
0
    default:
12936
0
        Py_UNREACHABLE();
12937
33.5k
    }
12938
12939
33.5k
    assert((kind2 == kind1) == (buf2 == PyUnicode_DATA(sep_obj)));
12940
33.5k
    if (kind2 != kind1)
12941
0
        PyMem_Free((void *)buf2);
12942
12943
33.5k
    return out;
12944
33.5k
}
12945
12946
/*[clinic input]
12947
@permit_long_docstring_body
12948
str.partition as unicode_partition
12949
12950
    sep: object
12951
    /
12952
12953
Partition the string into three parts using the given separator.
12954
12955
This will search for the separator in the string.  If the separator is found,
12956
returns a 3-tuple containing the part before the separator, the separator
12957
itself, and the part after it.
12958
12959
If the separator is not found, returns a 3-tuple containing the original string
12960
and two empty strings.
12961
[clinic start generated code]*/
12962
12963
static PyObject *
12964
unicode_partition(PyObject *self, PyObject *sep)
12965
/*[clinic end generated code: output=e4ced7bd253ca3c4 input=4d854b520d7b0e97]*/
12966
7.38M
{
12967
7.38M
    return PyUnicode_Partition(self, sep);
12968
7.38M
}
12969
12970
/*[clinic input]
12971
@permit_long_docstring_body
12972
str.rpartition as unicode_rpartition = str.partition
12973
12974
Partition the string into three parts using the given separator.
12975
12976
This will search for the separator in the string, starting at the end. If
12977
the separator is found, returns a 3-tuple containing the part before the
12978
separator, the separator itself, and the part after it.
12979
12980
If the separator is not found, returns a 3-tuple containing two empty strings
12981
and the original string.
12982
[clinic start generated code]*/
12983
12984
static PyObject *
12985
unicode_rpartition(PyObject *self, PyObject *sep)
12986
/*[clinic end generated code: output=1aa13cf1156572aa input=a6adabe91e75b486]*/
12987
33.5k
{
12988
33.5k
    return PyUnicode_RPartition(self, sep);
12989
33.5k
}
12990
12991
PyObject *
12992
PyUnicode_RSplit(PyObject *s, PyObject *sep, Py_ssize_t maxsplit)
12993
0
{
12994
0
    if (ensure_unicode(s) < 0 || (sep != NULL && ensure_unicode(sep) < 0))
12995
0
        return NULL;
12996
12997
0
    return rsplit(s, sep, maxsplit);
12998
0
}
12999
13000
/*[clinic input]
13001
@permit_long_summary
13002
str.rsplit as unicode_rsplit = str.split
13003
13004
Return a list of the substrings in the string, using sep as the separator string.
13005
13006
Splitting starts at the end of the string and works to the front.
13007
[clinic start generated code]*/
13008
13009
static PyObject *
13010
unicode_rsplit_impl(PyObject *self, PyObject *sep, Py_ssize_t maxsplit)
13011
/*[clinic end generated code: output=c2b815c63bcabffc input=0f762e30d267fa83]*/
13012
62
{
13013
62
    if (sep == Py_None)
13014
0
        return rsplit(self, NULL, maxsplit);
13015
62
    if (PyUnicode_Check(sep))
13016
62
        return rsplit(self, sep, maxsplit);
13017
13018
0
    PyErr_Format(PyExc_TypeError,
13019
0
                 "must be str or None, not %.100s",
13020
0
                 Py_TYPE(sep)->tp_name);
13021
0
    return NULL;
13022
62
}
13023
13024
/*[clinic input]
13025
@permit_long_docstring_body
13026
str.splitlines as unicode_splitlines
13027
13028
    keepends: bool = False
13029
13030
Return a list of the lines in the string, breaking at line boundaries.
13031
13032
Line breaks are not included in the resulting list unless keepends is given and
13033
true.
13034
[clinic start generated code]*/
13035
13036
static PyObject *
13037
unicode_splitlines_impl(PyObject *self, int keepends)
13038
/*[clinic end generated code: output=f664dcdad153ec40 input=39eeafbfef61c827]*/
13039
13.8k
{
13040
13.8k
    return PyUnicode_Splitlines(self, keepends);
13041
13.8k
}
13042
13043
static
13044
PyObject *unicode_str(PyObject *self)
13045
2.40M
{
13046
2.40M
    return unicode_result_unchanged(self);
13047
2.40M
}
13048
13049
/*[clinic input]
13050
@permit_long_summary
13051
str.swapcase as unicode_swapcase
13052
13053
Convert uppercase characters to lowercase and lowercase characters to uppercase.
13054
[clinic start generated code]*/
13055
13056
static PyObject *
13057
unicode_swapcase_impl(PyObject *self)
13058
/*[clinic end generated code: output=5d28966bf6d7b2af input=85bc39a9b4e8ee91]*/
13059
0
{
13060
0
    return case_operation(self, do_swapcase);
13061
0
}
13062
13063
/*[clinic input]
13064
13065
@staticmethod
13066
str.maketrans as unicode_maketrans
13067
13068
  x: object
13069
13070
  y: unicode=NULL
13071
13072
  z: unicode=NULL
13073
13074
  /
13075
13076
Return a translation table usable for str.translate().
13077
13078
If there is only one argument, it must be a dictionary mapping Unicode
13079
ordinals (integers) or characters to Unicode ordinals, strings or None.
13080
Character keys will be then converted to ordinals.
13081
If there are two arguments, they must be strings of equal length, and
13082
in the resulting dictionary, each character in x will be mapped to the
13083
character at the same position in y. If there is a third argument, it
13084
must be a string, whose characters will be mapped to None in the result.
13085
[clinic start generated code]*/
13086
13087
static PyObject *
13088
unicode_maketrans_impl(PyObject *x, PyObject *y, PyObject *z)
13089
/*[clinic end generated code: output=a925c89452bd5881 input=7bfbf529a293c6c5]*/
13090
2
{
13091
2
    PyObject *new = NULL, *key, *value;
13092
2
    Py_ssize_t i = 0;
13093
2
    int res;
13094
13095
2
    new = PyDict_New();
13096
2
    if (!new)
13097
0
        return NULL;
13098
2
    if (y != NULL) {
13099
2
        int x_kind, y_kind, z_kind;
13100
2
        const void *x_data, *y_data, *z_data;
13101
13102
        /* x must be a string too, of equal length */
13103
2
        if (!PyUnicode_Check(x)) {
13104
0
            PyErr_SetString(PyExc_TypeError, "first maketrans argument must "
13105
0
                            "be a string if there is a second argument");
13106
0
            goto err;
13107
0
        }
13108
2
        if (PyUnicode_GET_LENGTH(x) != PyUnicode_GET_LENGTH(y)) {
13109
0
            PyErr_SetString(PyExc_ValueError, "the first two maketrans "
13110
0
                            "arguments must have equal length");
13111
0
            goto err;
13112
0
        }
13113
        /* create entries for translating chars in x to those in y */
13114
2
        x_kind = PyUnicode_KIND(x);
13115
2
        y_kind = PyUnicode_KIND(y);
13116
2
        x_data = PyUnicode_DATA(x);
13117
2
        y_data = PyUnicode_DATA(y);
13118
18
        for (i = 0; i < PyUnicode_GET_LENGTH(x); i++) {
13119
16
            key = PyLong_FromLong(PyUnicode_READ(x_kind, x_data, i));
13120
16
            if (!key)
13121
0
                goto err;
13122
16
            value = PyLong_FromLong(PyUnicode_READ(y_kind, y_data, i));
13123
16
            if (!value) {
13124
0
                Py_DECREF(key);
13125
0
                goto err;
13126
0
            }
13127
16
            res = PyDict_SetItem(new, key, value);
13128
16
            Py_DECREF(key);
13129
16
            Py_DECREF(value);
13130
16
            if (res < 0)
13131
0
                goto err;
13132
16
        }
13133
        /* create entries for deleting chars in z */
13134
2
        if (z != NULL) {
13135
0
            z_kind = PyUnicode_KIND(z);
13136
0
            z_data = PyUnicode_DATA(z);
13137
0
            for (i = 0; i < PyUnicode_GET_LENGTH(z); i++) {
13138
0
                key = PyLong_FromLong(PyUnicode_READ(z_kind, z_data, i));
13139
0
                if (!key)
13140
0
                    goto err;
13141
0
                res = PyDict_SetItem(new, key, Py_None);
13142
0
                Py_DECREF(key);
13143
0
                if (res < 0)
13144
0
                    goto err;
13145
0
            }
13146
0
        }
13147
2
    } else {
13148
0
        int kind;
13149
0
        const void *data;
13150
13151
        /* x must be a dict */
13152
0
        if (!PyDict_CheckExact(x)) {
13153
0
            PyErr_SetString(PyExc_TypeError, "if you give only one argument "
13154
0
                            "to maketrans it must be a dict");
13155
0
            goto err;
13156
0
        }
13157
        /* copy entries into the new dict, converting string keys to int keys */
13158
0
        while (PyDict_Next(x, &i, &key, &value)) {
13159
0
            if (PyUnicode_Check(key)) {
13160
                /* convert string keys to integer keys */
13161
0
                PyObject *newkey;
13162
0
                if (PyUnicode_GET_LENGTH(key) != 1) {
13163
0
                    PyErr_SetString(PyExc_ValueError, "string keys in translate "
13164
0
                                    "table must be of length 1");
13165
0
                    goto err;
13166
0
                }
13167
0
                kind = PyUnicode_KIND(key);
13168
0
                data = PyUnicode_DATA(key);
13169
0
                newkey = PyLong_FromLong(PyUnicode_READ(kind, data, 0));
13170
0
                if (!newkey)
13171
0
                    goto err;
13172
0
                res = PyDict_SetItem(new, newkey, value);
13173
0
                Py_DECREF(newkey);
13174
0
                if (res < 0)
13175
0
                    goto err;
13176
0
            } else if (PyLong_Check(key)) {
13177
                /* just keep integer keys */
13178
0
                if (PyDict_SetItem(new, key, value) < 0)
13179
0
                    goto err;
13180
0
            } else {
13181
0
                PyErr_SetString(PyExc_TypeError, "keys in translate table must "
13182
0
                                "be strings or integers");
13183
0
                goto err;
13184
0
            }
13185
0
        }
13186
0
    }
13187
2
    return new;
13188
0
  err:
13189
0
    Py_DECREF(new);
13190
0
    return NULL;
13191
2
}
13192
13193
/*[clinic input]
13194
@permit_long_docstring_body
13195
str.translate as unicode_translate
13196
13197
    table: object
13198
        Translation table, which must be a mapping of Unicode ordinals to
13199
        Unicode ordinals, strings, or None.
13200
    /
13201
13202
Replace each character in the string using the given translation table.
13203
13204
The table must implement lookup/indexing via __getitem__, for instance a
13205
dictionary or list.  If this operation raises LookupError, the character is
13206
left untouched.  Characters mapped to None are deleted.
13207
[clinic start generated code]*/
13208
13209
static PyObject *
13210
unicode_translate(PyObject *self, PyObject *table)
13211
/*[clinic end generated code: output=3cb448ff2fd96bf3 input=699e5fa0ebf9f5e9]*/
13212
11.8k
{
13213
11.8k
    return _PyUnicode_TranslateCharmap(self, table, "ignore");
13214
11.8k
}
13215
13216
/*[clinic input]
13217
str.upper as unicode_upper
13218
13219
Return a copy of the string converted to uppercase.
13220
[clinic start generated code]*/
13221
13222
static PyObject *
13223
unicode_upper_impl(PyObject *self)
13224
/*[clinic end generated code: output=1b7ddd16bbcdc092 input=db3d55682dfe2e6c]*/
13225
306
{
13226
306
    if (PyUnicode_IS_ASCII(self))
13227
306
        return ascii_upper_or_lower(self, 0);
13228
0
    return case_operation(self, do_upper);
13229
306
}
13230
13231
/*[clinic input]
13232
@permit_long_summary
13233
str.zfill as unicode_zfill
13234
13235
    width: Py_ssize_t
13236
    /
13237
13238
Pad a numeric string with zeros on the left, to fill a field of the given width.
13239
13240
The string is never truncated.
13241
[clinic start generated code]*/
13242
13243
static PyObject *
13244
unicode_zfill_impl(PyObject *self, Py_ssize_t width)
13245
/*[clinic end generated code: output=e13fb6bdf8e3b9df input=25a4ee0ea3e58ce0]*/
13246
0
{
13247
0
    Py_ssize_t fill;
13248
0
    PyObject *u;
13249
0
    int kind;
13250
0
    const void *data;
13251
0
    Py_UCS4 chr;
13252
13253
0
    if (PyUnicode_GET_LENGTH(self) >= width)
13254
0
        return unicode_result_unchanged(self);
13255
13256
0
    fill = width - PyUnicode_GET_LENGTH(self);
13257
13258
0
    u = pad(self, fill, 0, '0');
13259
13260
0
    if (u == NULL)
13261
0
        return NULL;
13262
13263
0
    kind = PyUnicode_KIND(u);
13264
0
    data = PyUnicode_DATA(u);
13265
0
    chr = PyUnicode_READ(kind, data, fill);
13266
13267
0
    if (chr == '+' || chr == '-') {
13268
        /* move sign to beginning of string */
13269
0
        PyUnicode_WRITE(kind, data, 0, chr);
13270
0
        PyUnicode_WRITE(kind, data, fill, '0');
13271
0
    }
13272
13273
0
    assert(_PyUnicode_CheckConsistency(u, 1));
13274
0
    return u;
13275
0
}
13276
13277
/*[clinic input]
13278
@permit_long_summary
13279
@text_signature "($self, prefix[, start[, end]], /)"
13280
str.startswith as unicode_startswith
13281
13282
    prefix as subobj: object
13283
        A string or a tuple of strings to try.
13284
    start: slice_index(accept={int, NoneType}, c_default='0') = None
13285
        Optional start position. Default: start of the string.
13286
    end: slice_index(accept={int, NoneType}, c_default='PY_SSIZE_T_MAX') = None
13287
        Optional stop position. Default: end of the string.
13288
    /
13289
13290
Return True if the string starts with the specified prefix, False otherwise.
13291
[clinic start generated code]*/
13292
13293
static PyObject *
13294
unicode_startswith_impl(PyObject *self, PyObject *subobj, Py_ssize_t start,
13295
                        Py_ssize_t end)
13296
/*[clinic end generated code: output=4bd7cfd0803051d4 input=766bdbd33df251dc]*/
13297
54.3M
{
13298
54.3M
    if (PyTuple_Check(subobj)) {
13299
4.95M
        Py_ssize_t i;
13300
17.8M
        for (i = 0; i < PyTuple_GET_SIZE(subobj); i++) {
13301
12.9M
            PyObject *substring = PyTuple_GET_ITEM(subobj, i);
13302
12.9M
            if (!PyUnicode_Check(substring)) {
13303
0
                PyErr_Format(PyExc_TypeError,
13304
0
                             "tuple for startswith must only contain str, "
13305
0
                             "not %.100s",
13306
0
                             Py_TYPE(substring)->tp_name);
13307
0
                return NULL;
13308
0
            }
13309
12.9M
            int result = tailmatch(self, substring, start, end, -1);
13310
12.9M
            if (result < 0) {
13311
0
                return NULL;
13312
0
            }
13313
12.9M
            if (result) {
13314
31.7k
                Py_RETURN_TRUE;
13315
31.7k
            }
13316
12.9M
        }
13317
        /* nothing matched */
13318
4.95M
        Py_RETURN_FALSE;
13319
4.95M
    }
13320
49.4M
    if (!PyUnicode_Check(subobj)) {
13321
0
        PyErr_Format(PyExc_TypeError,
13322
0
                     "startswith first arg must be str or "
13323
0
                     "a tuple of str, not %.100s", Py_TYPE(subobj)->tp_name);
13324
0
        return NULL;
13325
0
    }
13326
49.4M
    int result = tailmatch(self, subobj, start, end, -1);
13327
49.4M
    if (result < 0) {
13328
0
        return NULL;
13329
0
    }
13330
49.4M
    return PyBool_FromLong(result);
13331
49.4M
}
13332
13333
13334
/*[clinic input]
13335
@permit_long_summary
13336
@text_signature "($self, suffix[, start[, end]], /)"
13337
str.endswith as unicode_endswith
13338
13339
    suffix as subobj: object
13340
        A string or a tuple of strings to try.
13341
    start: slice_index(accept={int, NoneType}, c_default='0') = None
13342
        Optional start position. Default: start of the string.
13343
    end: slice_index(accept={int, NoneType}, c_default='PY_SSIZE_T_MAX') = None
13344
        Optional stop position. Default: end of the string.
13345
    /
13346
13347
Return True if the string ends with the specified suffix, False otherwise.
13348
[clinic start generated code]*/
13349
13350
static PyObject *
13351
unicode_endswith_impl(PyObject *self, PyObject *subobj, Py_ssize_t start,
13352
                      Py_ssize_t end)
13353
/*[clinic end generated code: output=cce6f8ceb0102ca9 input=b66bf6d5547ba1aa]*/
13354
9.29M
{
13355
9.29M
    if (PyTuple_Check(subobj)) {
13356
138k
        Py_ssize_t i;
13357
252k
        for (i = 0; i < PyTuple_GET_SIZE(subobj); i++) {
13358
238k
            PyObject *substring = PyTuple_GET_ITEM(subobj, i);
13359
238k
            if (!PyUnicode_Check(substring)) {
13360
0
                PyErr_Format(PyExc_TypeError,
13361
0
                             "tuple for endswith must only contain str, "
13362
0
                             "not %.100s",
13363
0
                             Py_TYPE(substring)->tp_name);
13364
0
                return NULL;
13365
0
            }
13366
238k
            int result = tailmatch(self, substring, start, end, +1);
13367
238k
            if (result < 0) {
13368
0
                return NULL;
13369
0
            }
13370
238k
            if (result) {
13371
125k
                Py_RETURN_TRUE;
13372
125k
            }
13373
238k
        }
13374
138k
        Py_RETURN_FALSE;
13375
138k
    }
13376
9.15M
    if (!PyUnicode_Check(subobj)) {
13377
0
        PyErr_Format(PyExc_TypeError,
13378
0
                     "endswith first arg must be str or "
13379
0
                     "a tuple of str, not %.100s", Py_TYPE(subobj)->tp_name);
13380
0
        return NULL;
13381
0
    }
13382
9.15M
    int result = tailmatch(self, subobj, start, end, +1);
13383
9.15M
    if (result < 0) {
13384
0
        return NULL;
13385
0
    }
13386
9.15M
    return PyBool_FromLong(result);
13387
9.15M
}
13388
13389
13390
#include "stringlib/unicode_format.h"
13391
13392
PyDoc_STRVAR(format__doc__,
13393
             "format($self, /, *args, **kwargs)\n\
13394
--\n\
13395
\n\
13396
Return a formatted version of the string, using substitutions from args and kwargs.\n\
13397
The substitutions are identified by braces ('{' and '}').");
13398
13399
PyDoc_STRVAR(format_map__doc__,
13400
             "format_map($self, mapping, /)\n\
13401
--\n\
13402
\n\
13403
Return a formatted version of the string, using substitutions from mapping.\n\
13404
The substitutions are identified by braces ('{' and '}').");
13405
13406
/*[clinic input]
13407
str.__format__ as unicode___format__
13408
13409
    format_spec: unicode
13410
    /
13411
13412
Return a formatted version of the string as described by format_spec.
13413
[clinic start generated code]*/
13414
13415
static PyObject *
13416
unicode___format___impl(PyObject *self, PyObject *format_spec)
13417
/*[clinic end generated code: output=45fceaca6d2ba4c8 input=5e135645d167a214]*/
13418
0
{
13419
0
    _PyUnicodeWriter writer;
13420
0
    int ret;
13421
13422
0
    _PyUnicodeWriter_Init(&writer);
13423
0
    ret = _PyUnicode_FormatAdvancedWriter(&writer,
13424
0
                                          self, format_spec, 0,
13425
0
                                          PyUnicode_GET_LENGTH(format_spec));
13426
0
    if (ret == -1) {
13427
0
        _PyUnicodeWriter_Dealloc(&writer);
13428
0
        return NULL;
13429
0
    }
13430
0
    return _PyUnicodeWriter_Finish(&writer);
13431
0
}
13432
13433
/*[clinic input]
13434
str.__sizeof__ as unicode_sizeof
13435
13436
Return the size of the string in memory, in bytes.
13437
[clinic start generated code]*/
13438
13439
static PyObject *
13440
unicode_sizeof_impl(PyObject *self)
13441
/*[clinic end generated code: output=6dbc2f5a408b6d4f input=6dd011c108e33fb0]*/
13442
0
{
13443
0
    Py_ssize_t size;
13444
13445
    /* If it's a compact object, account for base structure +
13446
       character data. */
13447
0
    if (PyUnicode_IS_COMPACT_ASCII(self)) {
13448
0
        size = sizeof(PyASCIIObject) + PyUnicode_GET_LENGTH(self) + 1;
13449
0
    }
13450
0
    else if (PyUnicode_IS_COMPACT(self)) {
13451
0
        size = sizeof(PyCompactUnicodeObject) +
13452
0
            (PyUnicode_GET_LENGTH(self) + 1) * PyUnicode_KIND(self);
13453
0
    }
13454
0
    else {
13455
        /* If it is a two-block object, account for base object, and
13456
           for character block if present. */
13457
0
        size = sizeof(PyUnicodeObject);
13458
0
        if (_PyUnicode_DATA_ANY(self))
13459
0
            size += (PyUnicode_GET_LENGTH(self) + 1) *
13460
0
                PyUnicode_KIND(self);
13461
0
    }
13462
0
    if (_PyUnicode_HAS_UTF8_MEMORY(self))
13463
0
        size += PyUnicode_UTF8_LENGTH(self) + 1;
13464
13465
0
    return PyLong_FromSsize_t(size);
13466
0
}
13467
13468
static PyObject *
13469
unicode_getnewargs(PyObject *v, PyObject *Py_UNUSED(ignored))
13470
0
{
13471
0
    PyObject *copy = _PyUnicode_Copy(v);
13472
0
    if (!copy)
13473
0
        return NULL;
13474
0
    return Py_BuildValue("(N)", copy);
13475
0
}
13476
13477
/*
13478
This function searchs the longest common leading whitespace
13479
of all lines in the [src, end).
13480
It returns the length of the common leading whitespace and sets `output` to
13481
point to the beginning of the common leading whitespace if length > 0.
13482
*/
13483
static Py_ssize_t
13484
search_longest_common_leading_whitespace(
13485
    const char *const src,
13486
    const char *const end,
13487
    const char **output)
13488
0
{
13489
    // [_start, _start + _len)
13490
    // describes the current longest common leading whitespace
13491
0
    const char *_start = NULL;
13492
0
    Py_ssize_t _len = 0;
13493
13494
0
    for (const char *iter = src; iter < end; ++iter) {
13495
0
        const char *line_start = iter;
13496
0
        const char *leading_whitespace_end = NULL;
13497
13498
        // scan the whole line
13499
0
        while (iter < end && *iter != '\n') {
13500
0
            if (!leading_whitespace_end && *iter != ' ' && *iter != '\t') {
13501
                /* `iter` points to the first non-whitespace character
13502
                   in this line */
13503
0
                if (iter == line_start) {
13504
                    // some line has no indent, fast exit!
13505
0
                    return 0;
13506
0
                }
13507
0
                leading_whitespace_end = iter;
13508
0
            }
13509
0
            ++iter;
13510
0
        }
13511
13512
        // if this line has all white space, skip it
13513
0
        if (!leading_whitespace_end) {
13514
0
            continue;
13515
0
        }
13516
13517
0
        if (!_start) {
13518
            // update the first leading whitespace
13519
0
            _start = line_start;
13520
0
            _len = leading_whitespace_end - line_start;
13521
0
            assert(_len > 0);
13522
0
        }
13523
0
        else {
13524
            /* We then compare with the current longest leading whitespace.
13525
13526
               [line_start, leading_whitespace_end) is the leading
13527
               whitespace of this line,
13528
13529
               [_start, _start + _len) is the leading whitespace of the
13530
               current longest leading whitespace. */
13531
0
            Py_ssize_t new_len = 0;
13532
0
            const char *_iter = _start, *line_iter = line_start;
13533
13534
0
            while (_iter < _start + _len && line_iter < leading_whitespace_end
13535
0
                   && *_iter == *line_iter)
13536
0
            {
13537
0
                ++_iter;
13538
0
                ++line_iter;
13539
0
                ++new_len;
13540
0
            }
13541
13542
0
            _len = new_len;
13543
0
            if (_len == 0) {
13544
                // No common things now, fast exit!
13545
0
                return 0;
13546
0
            }
13547
0
        }
13548
0
    }
13549
13550
0
    assert(_len >= 0);
13551
0
    if (_len > 0) {
13552
0
        *output = _start;
13553
0
    }
13554
0
    return _len;
13555
0
}
13556
13557
/* Dedent a string.
13558
   Behaviour is expected to be an exact match of `textwrap.dedent`.
13559
   Return a new reference on success, NULL with exception set on error.
13560
   */
13561
PyObject *
13562
_PyUnicode_Dedent(PyObject *unicode)
13563
0
{
13564
0
    Py_ssize_t src_len = 0;
13565
0
    const char *src = PyUnicode_AsUTF8AndSize(unicode, &src_len);
13566
0
    if (!src) {
13567
0
        return NULL;
13568
0
    }
13569
0
    assert(src_len >= 0);
13570
0
    if (src_len == 0) {
13571
0
        return Py_NewRef(unicode);
13572
0
    }
13573
13574
0
    const char *const end = src + src_len;
13575
13576
    // [whitespace_start, whitespace_start + whitespace_len)
13577
    // describes the current longest common leading whitespace
13578
0
    const char *whitespace_start = NULL;
13579
0
    Py_ssize_t whitespace_len = search_longest_common_leading_whitespace(
13580
0
        src, end, &whitespace_start);
13581
13582
0
    if (whitespace_len == 0) {
13583
0
        return Py_NewRef(unicode);
13584
0
    }
13585
13586
    // now we should trigger a dedent
13587
0
    char *dest = PyMem_Malloc(src_len);
13588
0
    if (!dest) {
13589
0
        PyErr_NoMemory();
13590
0
        return NULL;
13591
0
    }
13592
0
    char *dest_iter = dest;
13593
13594
0
    for (const char *iter = src; iter < end; ++iter) {
13595
0
        const char *line_start = iter;
13596
0
        bool in_leading_space = true;
13597
13598
        // iterate over a line to find the end of a line
13599
0
        while (iter < end && *iter != '\n') {
13600
0
            if (in_leading_space && *iter != ' ' && *iter != '\t') {
13601
0
                in_leading_space = false;
13602
0
            }
13603
0
            ++iter;
13604
0
        }
13605
13606
        // invariant: *iter == '\n' or iter == end
13607
0
        bool append_newline = iter < end;
13608
13609
        // if this line has all white space, write '\n' and continue
13610
0
        if (in_leading_space && append_newline) {
13611
0
            *dest_iter++ = '\n';
13612
0
            continue;
13613
0
        }
13614
13615
        /* copy [new_line_start + whitespace_len, iter) to buffer, then
13616
            conditionally append '\n' */
13617
13618
0
        Py_ssize_t new_line_len = iter - line_start - whitespace_len;
13619
0
        assert(new_line_len >= 0);
13620
0
        memcpy(dest_iter, line_start + whitespace_len, new_line_len);
13621
13622
0
        dest_iter += new_line_len;
13623
13624
0
        if (append_newline) {
13625
0
            *dest_iter++ = '\n';
13626
0
        }
13627
0
    }
13628
13629
0
    PyObject *res = PyUnicode_FromStringAndSize(dest, dest_iter - dest);
13630
0
    PyMem_Free(dest);
13631
0
    return res;
13632
0
}
13633
13634
static PyMethodDef unicode_methods[] = {
13635
    UNICODE_ENCODE_METHODDEF
13636
    UNICODE_REPLACE_METHODDEF
13637
    UNICODE_SPLIT_METHODDEF
13638
    UNICODE_RSPLIT_METHODDEF
13639
    UNICODE_JOIN_METHODDEF
13640
    UNICODE_CAPITALIZE_METHODDEF
13641
    UNICODE_CASEFOLD_METHODDEF
13642
    UNICODE_TITLE_METHODDEF
13643
    UNICODE_CENTER_METHODDEF
13644
    UNICODE_COUNT_METHODDEF
13645
    UNICODE_EXPANDTABS_METHODDEF
13646
    UNICODE_FIND_METHODDEF
13647
    UNICODE_PARTITION_METHODDEF
13648
    UNICODE_INDEX_METHODDEF
13649
    UNICODE_LJUST_METHODDEF
13650
    UNICODE_LOWER_METHODDEF
13651
    UNICODE_LSTRIP_METHODDEF
13652
    UNICODE_RFIND_METHODDEF
13653
    UNICODE_RINDEX_METHODDEF
13654
    UNICODE_RJUST_METHODDEF
13655
    UNICODE_RSTRIP_METHODDEF
13656
    UNICODE_RPARTITION_METHODDEF
13657
    UNICODE_SPLITLINES_METHODDEF
13658
    UNICODE_STRIP_METHODDEF
13659
    UNICODE_SWAPCASE_METHODDEF
13660
    UNICODE_TRANSLATE_METHODDEF
13661
    UNICODE_UPPER_METHODDEF
13662
    UNICODE_STARTSWITH_METHODDEF
13663
    UNICODE_ENDSWITH_METHODDEF
13664
    UNICODE_REMOVEPREFIX_METHODDEF
13665
    UNICODE_REMOVESUFFIX_METHODDEF
13666
    UNICODE_ISASCII_METHODDEF
13667
    UNICODE_ISLOWER_METHODDEF
13668
    UNICODE_ISUPPER_METHODDEF
13669
    UNICODE_ISTITLE_METHODDEF
13670
    UNICODE_ISSPACE_METHODDEF
13671
    UNICODE_ISDECIMAL_METHODDEF
13672
    UNICODE_ISDIGIT_METHODDEF
13673
    UNICODE_ISNUMERIC_METHODDEF
13674
    UNICODE_ISALPHA_METHODDEF
13675
    UNICODE_ISALNUM_METHODDEF
13676
    UNICODE_ISIDENTIFIER_METHODDEF
13677
    UNICODE_ISPRINTABLE_METHODDEF
13678
    UNICODE_ZFILL_METHODDEF
13679
    {"format", _PyCFunction_CAST(do_string_format), METH_VARARGS | METH_KEYWORDS, format__doc__},
13680
    {"format_map", do_string_format_map, METH_O, format_map__doc__},
13681
    UNICODE___FORMAT___METHODDEF
13682
    UNICODE_MAKETRANS_METHODDEF
13683
    UNICODE_SIZEOF_METHODDEF
13684
    {"__getnewargs__",  unicode_getnewargs, METH_NOARGS},
13685
    {NULL, NULL}
13686
};
13687
13688
static PyObject *
13689
unicode_mod(PyObject *v, PyObject *w)
13690
19.0M
{
13691
19.0M
    if (!PyUnicode_Check(v))
13692
0
        Py_RETURN_NOTIMPLEMENTED;
13693
19.0M
    return PyUnicode_Format(v, w);
13694
19.0M
}
13695
13696
static PyNumberMethods unicode_as_number = {
13697
    0,              /*nb_add*/
13698
    0,              /*nb_subtract*/
13699
    0,              /*nb_multiply*/
13700
    unicode_mod,            /*nb_remainder*/
13701
};
13702
13703
static PySequenceMethods unicode_as_sequence = {
13704
    unicode_length,     /* sq_length */
13705
    PyUnicode_Concat,   /* sq_concat */
13706
    unicode_repeat,     /* sq_repeat */
13707
    unicode_getitem,    /* sq_item */
13708
    0,                  /* sq_slice */
13709
    0,                  /* sq_ass_item */
13710
    0,                  /* sq_ass_slice */
13711
    PyUnicode_Contains, /* sq_contains */
13712
};
13713
13714
static PyObject*
13715
unicode_subscript(PyObject* self, PyObject* item)
13716
96.4M
{
13717
96.4M
    if (_PyIndex_Check(item)) {
13718
51.5M
        Py_ssize_t i = PyNumber_AsSsize_t(item, PyExc_IndexError);
13719
51.5M
        if (i == -1 && PyErr_Occurred())
13720
0
            return NULL;
13721
51.5M
        if (i < 0)
13722
51.5k
            i += PyUnicode_GET_LENGTH(self);
13723
51.5M
        return unicode_getitem(self, i);
13724
51.5M
    } else if (PySlice_Check(item)) {
13725
44.9M
        Py_ssize_t start, stop, step, slicelength, i;
13726
44.9M
        size_t cur;
13727
44.9M
        PyObject *result;
13728
44.9M
        const void *src_data;
13729
44.9M
        void *dest_data;
13730
44.9M
        int src_kind, dest_kind;
13731
44.9M
        Py_UCS4 ch, max_char, kind_limit;
13732
13733
44.9M
        if (PySlice_Unpack(item, &start, &stop, &step) < 0) {
13734
0
            return NULL;
13735
0
        }
13736
44.9M
        slicelength = PySlice_AdjustIndices(PyUnicode_GET_LENGTH(self),
13737
44.9M
                                            &start, &stop, step);
13738
13739
44.9M
        if (slicelength <= 0) {
13740
4.96M
            _Py_RETURN_UNICODE_EMPTY();
13741
39.9M
        } else if (start == 0 && step == 1 &&
13742
8.59M
                   slicelength == PyUnicode_GET_LENGTH(self)) {
13743
3.02M
            return unicode_result_unchanged(self);
13744
36.9M
        } else if (step == 1) {
13745
36.9M
            return PyUnicode_Substring(self,
13746
36.9M
                                       start, start + slicelength);
13747
36.9M
        }
13748
        /* General case */
13749
0
        src_kind = PyUnicode_KIND(self);
13750
0
        src_data = PyUnicode_DATA(self);
13751
0
        if (!PyUnicode_IS_ASCII(self)) {
13752
0
            kind_limit = kind_maxchar_limit(src_kind);
13753
0
            max_char = 0;
13754
0
            for (cur = start, i = 0; i < slicelength; cur += step, i++) {
13755
0
                ch = PyUnicode_READ(src_kind, src_data, cur);
13756
0
                if (ch > max_char) {
13757
0
                    max_char = ch;
13758
0
                    if (max_char >= kind_limit)
13759
0
                        break;
13760
0
                }
13761
0
            }
13762
0
        }
13763
0
        else
13764
0
            max_char = 127;
13765
0
        result = PyUnicode_New(slicelength, max_char);
13766
0
        if (result == NULL)
13767
0
            return NULL;
13768
0
        dest_kind = PyUnicode_KIND(result);
13769
0
        dest_data = PyUnicode_DATA(result);
13770
13771
0
        for (cur = start, i = 0; i < slicelength; cur += step, i++) {
13772
0
            Py_UCS4 ch = PyUnicode_READ(src_kind, src_data, cur);
13773
0
            PyUnicode_WRITE(dest_kind, dest_data, i, ch);
13774
0
        }
13775
0
        assert(_PyUnicode_CheckConsistency(result, 1));
13776
0
        return result;
13777
0
    } else {
13778
0
        PyErr_Format(PyExc_TypeError, "string indices must be integers, not '%.200s'",
13779
0
                     Py_TYPE(item)->tp_name);
13780
0
        return NULL;
13781
0
    }
13782
96.4M
}
13783
13784
static PyMappingMethods unicode_as_mapping = {
13785
    unicode_length,     /* mp_length */
13786
    unicode_subscript,  /* mp_subscript */
13787
    0,                  /* mp_ass_subscript */
13788
};
13789
13790
13791
static PyObject *
13792
unicode_subtype_new(PyTypeObject *type, PyObject *unicode);
13793
13794
/*[clinic input]
13795
@classmethod
13796
str.__new__ as unicode_new
13797
13798
    object as x: object = NULL
13799
    encoding: str = NULL
13800
    errors: str = NULL
13801
13802
[clinic start generated code]*/
13803
13804
static PyObject *
13805
unicode_new_impl(PyTypeObject *type, PyObject *x, const char *encoding,
13806
                 const char *errors)
13807
/*[clinic end generated code: output=fc72d4878b0b57e9 input=e81255e5676d174e]*/
13808
12.9M
{
13809
12.9M
    PyObject *unicode;
13810
12.9M
    if (x == NULL) {
13811
0
        unicode = _PyUnicode_GetEmpty();
13812
0
    }
13813
12.9M
    else if (encoding == NULL && errors == NULL) {
13814
12.9M
        unicode = PyObject_Str(x);
13815
12.9M
    }
13816
0
    else {
13817
0
        unicode = PyUnicode_FromEncodedObject(x, encoding, errors);
13818
0
    }
13819
13820
12.9M
    if (unicode != NULL && type != &PyUnicode_Type) {
13821
12.9M
        Py_SETREF(unicode, unicode_subtype_new(type, unicode));
13822
12.9M
    }
13823
12.9M
    return unicode;
13824
12.9M
}
13825
13826
static const char *
13827
arg_as_utf8(PyObject *obj, const char *name)
13828
622k
{
13829
622k
    if (!PyUnicode_Check(obj)) {
13830
0
        PyErr_Format(PyExc_TypeError,
13831
0
                     "str() argument '%s' must be str, not %T",
13832
0
                     name, obj);
13833
0
        return NULL;
13834
0
    }
13835
622k
    return _PyUnicode_AsUTF8NoNUL(obj);
13836
622k
}
13837
13838
static PyObject *
13839
unicode_vectorcall(PyObject *type, PyObject *const *args,
13840
                   size_t nargsf, PyObject *kwnames)
13841
393k
{
13842
393k
    assert(Py_Is(_PyType_CAST(type), &PyUnicode_Type));
13843
13844
393k
    Py_ssize_t nargs = PyVectorcall_NARGS(nargsf);
13845
393k
    if (kwnames != NULL && PyTuple_GET_SIZE(kwnames) != 0) {
13846
        // Fallback to unicode_new()
13847
0
        PyObject *tuple = PyTuple_FromArray(args, nargs);
13848
0
        if (tuple == NULL) {
13849
0
            return NULL;
13850
0
        }
13851
0
        PyObject *dict = _PyStack_AsDict(args + nargs, kwnames);
13852
0
        if (dict == NULL) {
13853
0
            Py_DECREF(tuple);
13854
0
            return NULL;
13855
0
        }
13856
0
        PyObject *ret = unicode_new(_PyType_CAST(type), tuple, dict);
13857
0
        Py_DECREF(tuple);
13858
0
        Py_DECREF(dict);
13859
0
        return ret;
13860
0
    }
13861
393k
    if (!_PyArg_CheckPositional("str", nargs, 0, 3)) {
13862
0
        return NULL;
13863
0
    }
13864
393k
    if (nargs == 0) {
13865
4.34k
        return _PyUnicode_GetEmpty();
13866
4.34k
    }
13867
389k
    PyObject *object = args[0];
13868
389k
    if (nargs == 1) {
13869
930
        return PyObject_Str(object);
13870
930
    }
13871
388k
    const char *encoding = arg_as_utf8(args[1], "encoding");
13872
388k
    if (encoding == NULL) {
13873
0
        return NULL;
13874
0
    }
13875
388k
    const char *errors = NULL;
13876
388k
    if (nargs == 3) {
13877
233k
        errors = arg_as_utf8(args[2], "errors");
13878
233k
        if (errors == NULL) {
13879
0
            return NULL;
13880
0
        }
13881
233k
    }
13882
388k
    return PyUnicode_FromEncodedObject(object, encoding, errors);
13883
388k
}
13884
13885
static PyObject *
13886
unicode_subtype_new(PyTypeObject *type, PyObject *unicode)
13887
12.9M
{
13888
12.9M
    PyObject *self;
13889
12.9M
    Py_ssize_t length, char_size;
13890
12.9M
    int share_utf8;
13891
12.9M
    int kind;
13892
12.9M
    void *data;
13893
13894
12.9M
    assert(PyType_IsSubtype(type, &PyUnicode_Type));
13895
12.9M
    assert(_PyUnicode_CHECK(unicode));
13896
13897
12.9M
    self = type->tp_alloc(type, 0);
13898
12.9M
    if (self == NULL) {
13899
0
        return NULL;
13900
0
    }
13901
12.9M
    kind = PyUnicode_KIND(unicode);
13902
12.9M
    length = PyUnicode_GET_LENGTH(unicode);
13903
13904
12.9M
    _PyUnicode_LENGTH(self) = length;
13905
#ifdef Py_DEBUG
13906
    _PyUnicode_HASH(self) = -1;
13907
#else
13908
12.9M
    _PyUnicode_HASH(self) = _PyUnicode_HASH(unicode);
13909
12.9M
#endif
13910
12.9M
    _PyUnicode_STATE(self).interned = 0;
13911
12.9M
    _PyUnicode_STATE(self).kind = kind;
13912
12.9M
    _PyUnicode_STATE(self).compact = 0;
13913
12.9M
    _PyUnicode_STATE(self).ascii = _PyUnicode_STATE(unicode).ascii;
13914
12.9M
    _PyUnicode_STATE(self).statically_allocated = 0;
13915
12.9M
    PyUnicode_SET_UTF8_LENGTH(self, 0);
13916
12.9M
    PyUnicode_SET_UTF8(self, NULL);
13917
12.9M
    _PyUnicode_DATA_ANY(self) = NULL;
13918
13919
12.9M
    share_utf8 = 0;
13920
12.9M
    if (kind == PyUnicode_1BYTE_KIND) {
13921
10.7M
        char_size = 1;
13922
10.7M
        if (PyUnicode_MAX_CHAR_VALUE(unicode) < 128)
13923
10.7M
            share_utf8 = 1;
13924
10.7M
    }
13925
2.12M
    else if (kind == PyUnicode_2BYTE_KIND) {
13926
2.07M
        char_size = 2;
13927
2.07M
    }
13928
54.2k
    else {
13929
54.2k
        assert(kind == PyUnicode_4BYTE_KIND);
13930
54.2k
        char_size = 4;
13931
54.2k
    }
13932
13933
    /* Ensure we won't overflow the length. */
13934
12.9M
    if (length > (PY_SSIZE_T_MAX / char_size - 1)) {
13935
0
        PyErr_NoMemory();
13936
0
        goto onError;
13937
0
    }
13938
12.9M
    data = PyMem_Malloc((length + 1) * char_size);
13939
12.9M
    if (data == NULL) {
13940
0
        PyErr_NoMemory();
13941
0
        goto onError;
13942
0
    }
13943
13944
12.9M
    _PyUnicode_DATA_ANY(self) = data;
13945
12.9M
    if (share_utf8) {
13946
10.7M
        PyUnicode_SET_UTF8_LENGTH(self, length);
13947
10.7M
        PyUnicode_SET_UTF8(self, data);
13948
10.7M
    }
13949
13950
12.9M
    memcpy(data, PyUnicode_DATA(unicode), kind * (length + 1));
13951
12.9M
    assert(_PyUnicode_CheckConsistency(self, 1));
13952
#ifdef Py_DEBUG
13953
    _PyUnicode_HASH(self) = _PyUnicode_HASH(unicode);
13954
#endif
13955
12.9M
    return self;
13956
13957
0
onError:
13958
0
    Py_DECREF(self);
13959
0
    return NULL;
13960
12.9M
}
13961
13962
void
13963
_PyUnicode_ExactDealloc(PyObject *op)
13964
71.9M
{
13965
71.9M
    assert(PyUnicode_CheckExact(op));
13966
71.9M
    unicode_dealloc(op);
13967
71.9M
}
13968
13969
PyDoc_STRVAR(unicode_doc,
13970
"str(object='') -> str\n\
13971
str(bytes_or_buffer[, encoding[, errors]]) -> str\n\
13972
\n\
13973
Create a new string object from the given object. If encoding or\n\
13974
errors is specified, then the object must expose a data buffer\n\
13975
that will be decoded using the given encoding and error handler.\n\
13976
Otherwise, returns the result of object.__str__() (if defined)\n\
13977
or repr(object).\n\
13978
encoding defaults to 'utf-8'.\n\
13979
errors defaults to 'strict'.");
13980
13981
static PyObject *unicode_iter(PyObject *seq);
13982
13983
PyTypeObject PyUnicode_Type = {
13984
    PyVarObject_HEAD_INIT(&PyType_Type, 0)
13985
    "str",                        /* tp_name */
13986
    sizeof(PyUnicodeObject),      /* tp_basicsize */
13987
    0,                            /* tp_itemsize */
13988
    /* Slots */
13989
    unicode_dealloc,              /* tp_dealloc */
13990
    0,                            /* tp_vectorcall_offset */
13991
    0,                            /* tp_getattr */
13992
    0,                            /* tp_setattr */
13993
    0,                            /* tp_as_async */
13994
    unicode_repr,                 /* tp_repr */
13995
    &unicode_as_number,           /* tp_as_number */
13996
    &unicode_as_sequence,         /* tp_as_sequence */
13997
    &unicode_as_mapping,          /* tp_as_mapping */
13998
    unicode_hash,                 /* tp_hash*/
13999
    0,                            /* tp_call*/
14000
    unicode_str,                  /* tp_str */
14001
    PyObject_GenericGetAttr,      /* tp_getattro */
14002
    0,                            /* tp_setattro */
14003
    0,                            /* tp_as_buffer */
14004
    Py_TPFLAGS_DEFAULT | Py_TPFLAGS_BASETYPE |
14005
        Py_TPFLAGS_UNICODE_SUBCLASS |
14006
        _Py_TPFLAGS_MATCH_SELF, /* tp_flags */
14007
    unicode_doc,                  /* tp_doc */
14008
    0,                            /* tp_traverse */
14009
    0,                            /* tp_clear */
14010
    PyUnicode_RichCompare,        /* tp_richcompare */
14011
    0,                            /* tp_weaklistoffset */
14012
    unicode_iter,                 /* tp_iter */
14013
    0,                            /* tp_iternext */
14014
    unicode_methods,              /* tp_methods */
14015
    0,                            /* tp_members */
14016
    0,                            /* tp_getset */
14017
    0,                            /* tp_base */
14018
    0,                            /* tp_dict */
14019
    0,                            /* tp_descr_get */
14020
    0,                            /* tp_descr_set */
14021
    0,                            /* tp_dictoffset */
14022
    0,                            /* tp_init */
14023
    0,                            /* tp_alloc */
14024
    unicode_new,                  /* tp_new */
14025
    PyObject_Free,                /* tp_free */
14026
    .tp_vectorcall = unicode_vectorcall,
14027
};
14028
14029
/* Initialize the Unicode implementation */
14030
14031
static void
14032
_init_global_state(void)
14033
32
{
14034
32
    static int initialized = 0;
14035
32
    if (initialized) {
14036
0
        return;
14037
0
    }
14038
32
    initialized = 1;
14039
14040
    /* initialize the linebreak bloom filter */
14041
32
    const Py_UCS2 linebreak[] = {
14042
32
        0x000A, /* LINE FEED */
14043
32
        0x000D, /* CARRIAGE RETURN */
14044
32
        0x001C, /* FILE SEPARATOR */
14045
32
        0x001D, /* GROUP SEPARATOR */
14046
32
        0x001E, /* RECORD SEPARATOR */
14047
32
        0x0085, /* NEXT LINE */
14048
32
        0x2028, /* LINE SEPARATOR */
14049
32
        0x2029, /* PARAGRAPH SEPARATOR */
14050
32
    };
14051
32
    bloom_linebreak = make_bloom_mask(
14052
32
        PyUnicode_2BYTE_KIND, linebreak,
14053
32
        Py_ARRAY_LENGTH(linebreak));
14054
32
}
14055
14056
void
14057
_PyUnicode_InitState(PyInterpreterState *interp)
14058
32
{
14059
32
    if (!_Py_IsMainInterpreter(interp)) {
14060
0
        return;
14061
0
    }
14062
32
    _init_global_state();
14063
32
}
14064
14065
14066
PyStatus
14067
_PyUnicode_InitGlobalObjects(PyInterpreterState *interp)
14068
32
{
14069
32
    if (_Py_IsMainInterpreter(interp)) {
14070
32
        PyStatus status = init_global_interned_strings(interp);
14071
32
        if (_PyStatus_EXCEPTION(status)) {
14072
0
            return status;
14073
0
        }
14074
32
    }
14075
32
    assert(INTERNED_STRINGS);
14076
14077
32
    if (init_interned_dict(interp)) {
14078
0
        PyErr_Clear();
14079
0
        return _PyStatus_ERR("failed to create interned dict");
14080
0
    }
14081
14082
32
    return _PyStatus_OK();
14083
32
}
14084
14085
14086
PyStatus
14087
_PyUnicode_InitTypes(PyInterpreterState *interp)
14088
32
{
14089
32
    if (_PyStaticType_InitBuiltin(interp, &EncodingMapType) < 0) {
14090
0
        goto error;
14091
0
    }
14092
32
    if (_PyStaticType_InitBuiltin(interp, &PyFieldNameIter_Type) < 0) {
14093
0
        goto error;
14094
0
    }
14095
32
    if (_PyStaticType_InitBuiltin(interp, &PyFormatterIter_Type) < 0) {
14096
0
        goto error;
14097
0
    }
14098
32
    return _PyStatus_OK();
14099
14100
0
error:
14101
0
    return _PyStatus_ERR("Can't initialize unicode types");
14102
32
}
14103
14104
static /* non-null */ PyObject*
14105
intern_static(PyInterpreterState *interp, PyObject *s /* stolen */)
14106
35.5k
{
14107
    // Note that this steals a reference to `s`, but in many cases that
14108
    // stolen ref is returned, requiring no decref/incref.
14109
14110
35.5k
    assert(s != NULL);
14111
35.5k
    assert(_PyUnicode_CHECK(s));
14112
35.5k
    assert(_PyUnicode_STATE(s).statically_allocated);
14113
35.5k
    assert(!PyUnicode_CHECK_INTERNED(s));
14114
14115
#ifdef Py_DEBUG
14116
    /* We must not add process-global interned string if there's already a
14117
     * per-interpreter interned_dict, which might contain duplicates.
14118
     */
14119
    PyObject *interned = get_interned_dict(interp);
14120
    assert(interned == NULL);
14121
#endif
14122
14123
    /* Look in the global cache first. */
14124
35.5k
    PyObject *r = (PyObject *)_Py_hashtable_get(INTERNED_STRINGS, s);
14125
    /* We should only init each string once */
14126
35.5k
    assert(r == NULL);
14127
    /* but just in case (for the non-debug build), handle this */
14128
35.5k
    if (r != NULL && r != s) {
14129
0
        assert(_PyUnicode_STATE(r).interned == SSTATE_INTERNED_IMMORTAL_STATIC);
14130
0
        assert(_PyUnicode_CHECK(r));
14131
0
        Py_DECREF(s);
14132
0
        return Py_NewRef(r);
14133
0
    }
14134
14135
35.5k
    if (_Py_hashtable_set(INTERNED_STRINGS, s, s) < -1) {
14136
0
        Py_FatalError("failed to intern static string");
14137
0
    }
14138
14139
35.5k
    _PyUnicode_STATE(s).interned = SSTATE_INTERNED_IMMORTAL_STATIC;
14140
35.5k
    return s;
14141
35.5k
}
14142
14143
void
14144
_PyUnicode_InternStatic(PyInterpreterState *interp, PyObject **p)
14145
35.5k
{
14146
    // This should only be called as part of runtime initialization
14147
35.5k
    assert(!Py_IsInitialized());
14148
14149
35.5k
    *p = intern_static(interp, *p);
14150
35.5k
    assert(*p);
14151
35.5k
}
14152
14153
static void
14154
immortalize_interned(PyObject *s)
14155
230k
{
14156
230k
    assert(PyUnicode_CHECK_INTERNED(s) == SSTATE_INTERNED_MORTAL);
14157
230k
    assert(!_Py_IsImmortal(s));
14158
#ifdef Py_REF_DEBUG
14159
    /* The reference count value should be excluded from the RefTotal.
14160
       The decrements to these objects will not be registered so they
14161
       need to be accounted for in here. */
14162
    for (Py_ssize_t i = 0; i < Py_REFCNT(s); i++) {
14163
        _Py_DecRefTotal(_PyThreadState_GET());
14164
    }
14165
#endif
14166
230k
    FT_ATOMIC_STORE_UINT8_RELAXED(_PyUnicode_STATE(s).interned, SSTATE_INTERNED_IMMORTAL);
14167
230k
    _Py_SetImmortal(s);
14168
230k
}
14169
14170
static /* non-null */ PyObject*
14171
intern_common(PyInterpreterState *interp, PyObject *s /* stolen */,
14172
              bool immortalize)
14173
61.6M
{
14174
    // Note that this steals a reference to `s`, but in many cases that
14175
    // stolen ref is returned, requiring no decref/incref.
14176
14177
#ifdef Py_DEBUG
14178
    assert(s != NULL);
14179
    assert(_PyUnicode_CHECK(s));
14180
#else
14181
61.6M
    if (s == NULL || !PyUnicode_Check(s)) {
14182
0
        return s;
14183
0
    }
14184
61.6M
#endif
14185
14186
    /* If it's a subclass, we don't really know what putting
14187
       it in the interned dict might do. */
14188
61.6M
    if (!PyUnicode_CheckExact(s)) {
14189
0
        return s;
14190
0
    }
14191
14192
    /* Is it already interned? */
14193
61.6M
    switch (PyUnicode_CHECK_INTERNED(s)) {
14194
4.01M
        case SSTATE_NOT_INTERNED:
14195
            // no, go on
14196
4.01M
            break;
14197
23.1k
        case SSTATE_INTERNED_MORTAL:
14198
            // yes but we might need to make it immortal
14199
23.1k
            if (immortalize) {
14200
5.58k
                immortalize_interned(s);
14201
5.58k
            }
14202
23.1k
            return s;
14203
57.6M
        default:
14204
            // all done
14205
57.6M
            return s;
14206
61.6M
    }
14207
14208
    /* Statically allocated strings must be already interned. */
14209
61.6M
    assert(!_PyUnicode_STATE(s).statically_allocated);
14210
14211
#if Py_GIL_DISABLED
14212
    /* In the free-threaded build, all interned strings are immortal */
14213
    immortalize = 1;
14214
#endif
14215
14216
    /* If it's already immortal, intern it as such */
14217
4.01M
    if (_Py_IsImmortal(s)) {
14218
0
        immortalize = 1;
14219
0
    }
14220
14221
    /* if it's a short string, get the singleton */
14222
4.01M
    if (PyUnicode_GET_LENGTH(s) == 1 &&
14223
20.6k
                PyUnicode_KIND(s) == PyUnicode_1BYTE_KIND) {
14224
0
        PyObject *r = LATIN1(*(unsigned char*)PyUnicode_DATA(s));
14225
0
        assert(PyUnicode_CHECK_INTERNED(r));
14226
0
        Py_DECREF(s);
14227
0
        return r;
14228
0
    }
14229
#ifdef Py_DEBUG
14230
    assert(!unicode_is_singleton(s));
14231
#endif
14232
14233
    /* Look in the global cache now. */
14234
4.01M
    {
14235
4.01M
        PyObject *r = (PyObject *)_Py_hashtable_get(INTERNED_STRINGS, s);
14236
4.01M
        if (r != NULL) {
14237
411k
            assert(_PyUnicode_STATE(r).statically_allocated);
14238
411k
            assert(r != s);  // r must be statically_allocated; s is not
14239
411k
            Py_DECREF(s);
14240
411k
            return Py_NewRef(r);
14241
411k
        }
14242
4.01M
    }
14243
14244
    /* Do a setdefault on the per-interpreter cache. */
14245
3.60M
    PyObject *interned = get_interned_dict(interp);
14246
3.60M
    assert(interned != NULL);
14247
#ifdef Py_GIL_DISABLED
14248
#  define INTERN_MUTEX &_Py_INTERP_CACHED_OBJECT(interp, interned_mutex)
14249
#endif
14250
3.60M
    FT_MUTEX_LOCK(INTERN_MUTEX);
14251
3.60M
    PyObject *t;
14252
3.60M
    {
14253
3.60M
        int res = PyDict_SetDefaultRef(interned, s, s, &t);
14254
3.60M
        if (res < 0) {
14255
0
            PyErr_Clear();
14256
0
            FT_MUTEX_UNLOCK(INTERN_MUTEX);
14257
0
            return s;
14258
0
        }
14259
3.60M
        else if (res == 1) {
14260
            // value was already present (not inserted)
14261
2.81M
            Py_DECREF(s);
14262
2.81M
            if (immortalize &&
14263
734k
                    PyUnicode_CHECK_INTERNED(t) == SSTATE_INTERNED_MORTAL) {
14264
8.68k
                immortalize_interned(t);
14265
8.68k
            }
14266
2.81M
            FT_MUTEX_UNLOCK(INTERN_MUTEX);
14267
2.81M
            return t;
14268
2.81M
        }
14269
789k
        else {
14270
            // value was newly inserted
14271
789k
            assert (s == t);
14272
789k
            Py_DECREF(t);
14273
789k
        }
14274
3.60M
    }
14275
14276
    /* NOT_INTERNED -> INTERNED_MORTAL */
14277
14278
3.60M
    assert(_PyUnicode_STATE(s).interned == SSTATE_NOT_INTERNED);
14279
14280
789k
    if (!_Py_IsImmortal(s)) {
14281
        /* The two references in interned dict (key and value) are not counted.
14282
        unicode_dealloc() and _PyUnicode_ClearInterned() take care of this. */
14283
789k
        Py_DECREF(s);
14284
789k
        Py_DECREF(s);
14285
789k
    }
14286
789k
    FT_ATOMIC_STORE_UINT8_RELAXED(_PyUnicode_STATE(s).interned, SSTATE_INTERNED_MORTAL);
14287
14288
    /* INTERNED_MORTAL -> INTERNED_IMMORTAL (if needed) */
14289
14290
#ifdef Py_DEBUG
14291
    if (_Py_IsImmortal(s)) {
14292
        assert(immortalize);
14293
    }
14294
#endif
14295
789k
    if (immortalize) {
14296
216k
        immortalize_interned(s);
14297
216k
    }
14298
14299
789k
    FT_MUTEX_UNLOCK(INTERN_MUTEX);
14300
789k
    return s;
14301
3.60M
}
14302
14303
void
14304
_PyUnicode_InternImmortal(PyInterpreterState *interp, PyObject **p)
14305
3.73M
{
14306
3.73M
    *p = intern_common(interp, *p, 1);
14307
3.73M
    assert(*p);
14308
3.73M
}
14309
14310
void
14311
_PyUnicode_InternMortal(PyInterpreterState *interp, PyObject **p)
14312
57.9M
{
14313
57.9M
    *p = intern_common(interp, *p, 0);
14314
57.9M
    assert(*p);
14315
57.9M
}
14316
14317
14318
void
14319
_PyUnicode_InternInPlace(PyInterpreterState *interp, PyObject **p)
14320
0
{
14321
0
    _PyUnicode_InternImmortal(interp, p);
14322
0
    return;
14323
0
}
14324
14325
void
14326
PyUnicode_InternInPlace(PyObject **p)
14327
0
{
14328
0
    PyInterpreterState *interp = _PyInterpreterState_GET();
14329
0
    _PyUnicode_InternMortal(interp, p);
14330
0
}
14331
14332
// Public-looking name kept for the stable ABI; user should not call this:
14333
PyAPI_FUNC(void) PyUnicode_InternImmortal(PyObject **);
14334
void
14335
PyUnicode_InternImmortal(PyObject **p)
14336
0
{
14337
0
    PyInterpreterState *interp = _PyInterpreterState_GET();
14338
0
    _PyUnicode_InternImmortal(interp, p);
14339
0
}
14340
14341
PyObject *
14342
PyUnicode_InternFromString(const char *cp)
14343
965k
{
14344
965k
    PyObject *s = PyUnicode_FromString(cp);
14345
965k
    if (s == NULL) {
14346
0
        return NULL;
14347
0
    }
14348
965k
    PyInterpreterState *interp = _PyInterpreterState_GET();
14349
965k
    _PyUnicode_InternMortal(interp, &s);
14350
965k
    return s;
14351
965k
}
14352
14353
14354
void
14355
_PyUnicode_ClearInterned(PyInterpreterState *interp)
14356
0
{
14357
0
    PyObject *interned = get_interned_dict(interp);
14358
0
    if (interned == NULL) {
14359
0
        return;
14360
0
    }
14361
0
    assert(PyDict_CheckExact(interned));
14362
14363
0
    if (has_shared_intern_dict(interp)) {
14364
        // the dict doesn't belong to this interpreter, skip the debug
14365
        // checks on it and just clear the pointer to it
14366
0
        clear_interned_dict(interp);
14367
0
        return;
14368
0
    }
14369
14370
#ifdef INTERNED_STATS
14371
    fprintf(stderr, "releasing %zd interned strings\n",
14372
            PyDict_GET_SIZE(interned));
14373
14374
    Py_ssize_t total_length = 0;
14375
#endif
14376
0
    Py_ssize_t pos = 0;
14377
0
    PyObject *s, *ignored_value;
14378
0
    while (PyDict_Next(interned, &pos, &s, &ignored_value)) {
14379
0
        int shared = 0;
14380
0
        switch (PyUnicode_CHECK_INTERNED(s)) {
14381
0
        case SSTATE_INTERNED_IMMORTAL:
14382
            /* Make immortal interned strings mortal again. */
14383
            // Skip the Immortal Instance check and restore
14384
            // the two references (key and value) ignored
14385
            // by PyUnicode_InternInPlace().
14386
0
            _Py_SetMortal(s, 2);
14387
#ifdef Py_REF_DEBUG
14388
            /* let's be pedantic with the ref total */
14389
            _Py_IncRefTotal(_PyThreadState_GET());
14390
            _Py_IncRefTotal(_PyThreadState_GET());
14391
#endif
14392
#ifdef INTERNED_STATS
14393
            total_length += PyUnicode_GET_LENGTH(s);
14394
#endif
14395
0
            break;
14396
0
        case SSTATE_INTERNED_IMMORTAL_STATIC:
14397
            /* It is shared between interpreters, so we should unmark it
14398
               only when this is the last interpreter in which it's
14399
               interned.  We immortalize all the statically initialized
14400
               strings during startup, so we can rely on the
14401
               main interpreter to be the last one. */
14402
0
            if (!_Py_IsMainInterpreter(interp)) {
14403
0
                shared = 1;
14404
0
            }
14405
0
            break;
14406
0
        case SSTATE_INTERNED_MORTAL:
14407
            // Restore 2 references held by the interned dict; these will
14408
            // be decref'd by clear_interned_dict's PyDict_Clear.
14409
0
            _Py_RefcntAdd(s, 2);
14410
#ifdef Py_REF_DEBUG
14411
            /* let's be pedantic with the ref total */
14412
            _Py_IncRefTotal(_PyThreadState_GET());
14413
            _Py_IncRefTotal(_PyThreadState_GET());
14414
#endif
14415
0
            break;
14416
0
        case SSTATE_NOT_INTERNED:
14417
0
            _Py_FALLTHROUGH;
14418
0
        default:
14419
0
            Py_UNREACHABLE();
14420
0
        }
14421
0
        if (!shared) {
14422
0
            FT_ATOMIC_STORE_UINT8_RELAXED(_PyUnicode_STATE(s).interned, SSTATE_NOT_INTERNED);
14423
0
        }
14424
0
    }
14425
#ifdef INTERNED_STATS
14426
    fprintf(stderr,
14427
            "total length of all interned strings: %zd characters\n",
14428
            total_length);
14429
#endif
14430
14431
0
    struct _Py_unicode_state *state = &interp->unicode;
14432
0
    struct _Py_unicode_ids *ids = &state->ids;
14433
0
    for (Py_ssize_t i=0; i < ids->size; i++) {
14434
0
        Py_XINCREF(ids->array[i]);
14435
0
    }
14436
0
    clear_interned_dict(interp);
14437
0
    if (_Py_IsMainInterpreter(interp)) {
14438
0
        clear_global_interned_strings();
14439
0
    }
14440
0
}
14441
14442
14443
/********************* Unicode Iterator **************************/
14444
14445
typedef struct {
14446
    PyObject_HEAD
14447
    Py_ssize_t it_index;
14448
    PyObject *it_seq;    /* Set to NULL when iterator is exhausted */
14449
} unicodeiterobject;
14450
14451
static void
14452
unicodeiter_dealloc(PyObject *op)
14453
1.54M
{
14454
1.54M
    unicodeiterobject *it = (unicodeiterobject *)op;
14455
1.54M
    _PyObject_GC_UNTRACK(it);
14456
1.54M
    Py_XDECREF(it->it_seq);
14457
1.54M
    PyObject_GC_Del(it);
14458
1.54M
}
14459
14460
static int
14461
unicodeiter_traverse(PyObject *op, visitproc visit, void *arg)
14462
3
{
14463
3
    unicodeiterobject *it = (unicodeiterobject *)op;
14464
3
    Py_VISIT(it->it_seq);
14465
3
    return 0;
14466
3
}
14467
14468
static PyObject *
14469
unicodeiter_next(PyObject *op)
14470
115M
{
14471
115M
    unicodeiterobject *it = (unicodeiterobject *)op;
14472
115M
    PyObject *seq;
14473
14474
115M
    assert(it != NULL);
14475
115M
    seq = it->it_seq;
14476
115M
    if (seq == NULL)
14477
0
        return NULL;
14478
115M
    assert(_PyUnicode_CHECK(seq));
14479
14480
115M
    if (it->it_index < PyUnicode_GET_LENGTH(seq)) {
14481
114M
        int kind = PyUnicode_KIND(seq);
14482
114M
        const void *data = PyUnicode_DATA(seq);
14483
114M
        Py_UCS4 chr = PyUnicode_READ(kind, data, it->it_index);
14484
114M
        it->it_index++;
14485
114M
        return unicode_char(chr);
14486
114M
    }
14487
14488
913k
    it->it_seq = NULL;
14489
913k
    Py_DECREF(seq);
14490
913k
    return NULL;
14491
115M
}
14492
14493
static PyObject *
14494
unicode_ascii_iter_next(PyObject *op)
14495
53.5M
{
14496
53.5M
    unicodeiterobject *it = (unicodeiterobject *)op;
14497
53.5M
    assert(it != NULL);
14498
53.5M
    PyObject *seq = it->it_seq;
14499
53.5M
    if (seq == NULL) {
14500
0
        return NULL;
14501
0
    }
14502
53.5M
    assert(_PyUnicode_CHECK(seq));
14503
53.5M
    assert(PyUnicode_IS_COMPACT_ASCII(seq));
14504
53.5M
    if (it->it_index < PyUnicode_GET_LENGTH(seq)) {
14505
52.9M
        const void *data = ((void*)(_PyASCIIObject_CAST(seq) + 1));
14506
52.9M
        Py_UCS1 chr = (Py_UCS1)PyUnicode_READ(PyUnicode_1BYTE_KIND,
14507
52.9M
                                              data, it->it_index);
14508
52.9M
        it->it_index++;
14509
52.9M
        return (PyObject*)&_Py_SINGLETON(strings).ascii[chr];
14510
52.9M
    }
14511
587k
    it->it_seq = NULL;
14512
587k
    Py_DECREF(seq);
14513
587k
    return NULL;
14514
53.5M
}
14515
14516
static PyObject *
14517
unicodeiter_len(PyObject *op, PyObject *Py_UNUSED(ignored))
14518
164k
{
14519
164k
    unicodeiterobject *it = (unicodeiterobject *)op;
14520
164k
    Py_ssize_t len = 0;
14521
164k
    if (it->it_seq)
14522
164k
        len = PyUnicode_GET_LENGTH(it->it_seq) - it->it_index;
14523
164k
    return PyLong_FromSsize_t(len);
14524
164k
}
14525
14526
PyDoc_STRVAR(length_hint_doc, "Private method returning an estimate of len(list(it)).");
14527
14528
static PyObject *
14529
unicodeiter_reduce(PyObject *op, PyObject *Py_UNUSED(ignored))
14530
0
{
14531
0
    unicodeiterobject *it = (unicodeiterobject *)op;
14532
0
    PyObject *iter = _PyEval_GetBuiltin(&_Py_ID(iter));
14533
14534
    /* _PyEval_GetBuiltin can invoke arbitrary code,
14535
     * call must be before access of iterator pointers.
14536
     * see issue #101765 */
14537
14538
0
    if (it->it_seq != NULL) {
14539
0
        return Py_BuildValue("N(O)n", iter, it->it_seq, it->it_index);
14540
0
    } else {
14541
0
        PyObject *u = _PyUnicode_GetEmpty();
14542
0
        if (u == NULL) {
14543
0
            Py_XDECREF(iter);
14544
0
            return NULL;
14545
0
        }
14546
0
        return Py_BuildValue("N(N)", iter, u);
14547
0
    }
14548
0
}
14549
14550
PyDoc_STRVAR(reduce_doc, "Return state information for pickling.");
14551
14552
static PyObject *
14553
unicodeiter_setstate(PyObject *op, PyObject *state)
14554
0
{
14555
0
    unicodeiterobject *it = (unicodeiterobject *)op;
14556
0
    Py_ssize_t index = PyLong_AsSsize_t(state);
14557
0
    if (index == -1 && PyErr_Occurred())
14558
0
        return NULL;
14559
0
    if (it->it_seq != NULL) {
14560
0
        if (index < 0)
14561
0
            index = 0;
14562
0
        else if (index > PyUnicode_GET_LENGTH(it->it_seq))
14563
0
            index = PyUnicode_GET_LENGTH(it->it_seq); /* iterator truncated */
14564
0
        it->it_index = index;
14565
0
    }
14566
0
    Py_RETURN_NONE;
14567
0
}
14568
14569
PyDoc_STRVAR(setstate_doc, "Set state information for unpickling.");
14570
14571
static PyMethodDef unicodeiter_methods[] = {
14572
    {"__length_hint__", unicodeiter_len, METH_NOARGS, length_hint_doc},
14573
    {"__reduce__",      unicodeiter_reduce, METH_NOARGS, reduce_doc},
14574
    {"__setstate__",    unicodeiter_setstate, METH_O, setstate_doc},
14575
    {NULL,      NULL}       /* sentinel */
14576
};
14577
14578
PyTypeObject PyUnicodeIter_Type = {
14579
    PyVarObject_HEAD_INIT(&PyType_Type, 0)
14580
    "str_iterator",         /* tp_name */
14581
    sizeof(unicodeiterobject),      /* tp_basicsize */
14582
    0,                  /* tp_itemsize */
14583
    /* methods */
14584
    unicodeiter_dealloc,/* tp_dealloc */
14585
    0,                  /* tp_vectorcall_offset */
14586
    0,                  /* tp_getattr */
14587
    0,                  /* tp_setattr */
14588
    0,                  /* tp_as_async */
14589
    0,                  /* tp_repr */
14590
    0,                  /* tp_as_number */
14591
    0,                  /* tp_as_sequence */
14592
    0,                  /* tp_as_mapping */
14593
    0,                  /* tp_hash */
14594
    0,                  /* tp_call */
14595
    0,                  /* tp_str */
14596
    PyObject_GenericGetAttr,        /* tp_getattro */
14597
    0,                  /* tp_setattro */
14598
    0,                  /* tp_as_buffer */
14599
    Py_TPFLAGS_DEFAULT | Py_TPFLAGS_HAVE_GC,/* tp_flags */
14600
    0,                  /* tp_doc */
14601
    unicodeiter_traverse, /* tp_traverse */
14602
    0,                  /* tp_clear */
14603
    0,                  /* tp_richcompare */
14604
    0,                  /* tp_weaklistoffset */
14605
    PyObject_SelfIter,          /* tp_iter */
14606
    unicodeiter_next,   /* tp_iternext */
14607
    unicodeiter_methods,            /* tp_methods */
14608
    0,
14609
};
14610
14611
PyTypeObject _PyUnicodeASCIIIter_Type = {
14612
    PyVarObject_HEAD_INIT(&PyType_Type, 0)
14613
    .tp_name = "str_ascii_iterator",
14614
    .tp_basicsize = sizeof(unicodeiterobject),
14615
    .tp_dealloc = unicodeiter_dealloc,
14616
    .tp_getattro = PyObject_GenericGetAttr,
14617
    .tp_flags = Py_TPFLAGS_DEFAULT | Py_TPFLAGS_HAVE_GC,
14618
    .tp_traverse = unicodeiter_traverse,
14619
    .tp_iter = PyObject_SelfIter,
14620
    .tp_iternext = unicode_ascii_iter_next,
14621
    .tp_methods = unicodeiter_methods,
14622
};
14623
14624
static PyObject *
14625
unicode_iter(PyObject *seq)
14626
1.54M
{
14627
1.54M
    unicodeiterobject *it;
14628
14629
1.54M
    if (!PyUnicode_Check(seq)) {
14630
0
        PyErr_BadInternalCall();
14631
0
        return NULL;
14632
0
    }
14633
1.54M
    if (PyUnicode_IS_COMPACT_ASCII(seq)) {
14634
628k
        it = PyObject_GC_New(unicodeiterobject, &_PyUnicodeASCIIIter_Type);
14635
628k
    }
14636
914k
    else {
14637
914k
        it = PyObject_GC_New(unicodeiterobject, &PyUnicodeIter_Type);
14638
914k
    }
14639
1.54M
    if (it == NULL)
14640
0
        return NULL;
14641
1.54M
    it->it_index = 0;
14642
1.54M
    it->it_seq = Py_NewRef(seq);
14643
1.54M
    _PyObject_GC_TRACK(it);
14644
1.54M
    return (PyObject *)it;
14645
1.54M
}
14646
14647
static int
14648
encode_wstr_utf8(wchar_t *wstr, char **str, const char *name)
14649
128
{
14650
128
    int res;
14651
128
    res = _Py_EncodeUTF8Ex(wstr, str, NULL, NULL, 1, _Py_ERROR_STRICT);
14652
128
    if (res == -2) {
14653
0
        PyErr_Format(PyExc_RuntimeError, "cannot encode %s", name);
14654
0
        return -1;
14655
0
    }
14656
128
    if (res < 0) {
14657
0
        PyErr_NoMemory();
14658
0
        return -1;
14659
0
    }
14660
128
    return 0;
14661
128
}
14662
14663
14664
static int
14665
config_get_codec_name(wchar_t **config_encoding)
14666
64
{
14667
64
    char *encoding;
14668
64
    if (encode_wstr_utf8(*config_encoding, &encoding, "stdio_encoding") < 0) {
14669
0
        return -1;
14670
0
    }
14671
14672
64
    PyObject *name_obj = NULL;
14673
64
    PyObject *codec = _PyCodec_Lookup(encoding);
14674
64
    PyMem_RawFree(encoding);
14675
14676
64
    if (!codec)
14677
0
        goto error;
14678
14679
64
    name_obj = PyObject_GetAttrString(codec, "name");
14680
64
    Py_CLEAR(codec);
14681
64
    if (!name_obj) {
14682
0
        goto error;
14683
0
    }
14684
14685
64
    wchar_t *wname = PyUnicode_AsWideCharString(name_obj, NULL);
14686
64
    Py_DECREF(name_obj);
14687
64
    if (wname == NULL) {
14688
0
        goto error;
14689
0
    }
14690
14691
64
    wchar_t *raw_wname = _PyMem_RawWcsdup(wname);
14692
64
    if (raw_wname == NULL) {
14693
0
        PyMem_Free(wname);
14694
0
        PyErr_NoMemory();
14695
0
        goto error;
14696
0
    }
14697
14698
64
    PyMem_RawFree(*config_encoding);
14699
64
    *config_encoding = raw_wname;
14700
14701
64
    PyMem_Free(wname);
14702
64
    return 0;
14703
14704
0
error:
14705
0
    Py_XDECREF(codec);
14706
0
    Py_XDECREF(name_obj);
14707
0
    return -1;
14708
64
}
14709
14710
14711
static PyStatus
14712
init_stdio_encoding(PyInterpreterState *interp)
14713
32
{
14714
    /* Update the stdio encoding to the normalized Python codec name. */
14715
32
    PyConfig *config = (PyConfig*)_PyInterpreterState_GetConfig(interp);
14716
32
    if (config_get_codec_name(&config->stdio_encoding) < 0) {
14717
0
        return _PyStatus_ERR("failed to get the Python codec name "
14718
0
                             "of the stdio encoding");
14719
0
    }
14720
32
    return _PyStatus_OK();
14721
32
}
14722
14723
14724
static int
14725
init_fs_codec(PyInterpreterState *interp)
14726
32
{
14727
32
    const PyConfig *config = _PyInterpreterState_GetConfig(interp);
14728
14729
32
    _Py_error_handler error_handler;
14730
32
    error_handler = get_error_handler_wide(config->filesystem_errors);
14731
32
    if (error_handler == _Py_ERROR_UNKNOWN) {
14732
0
        PyErr_SetString(PyExc_RuntimeError, "unknown filesystem error handler");
14733
0
        return -1;
14734
0
    }
14735
14736
32
    char *encoding, *errors;
14737
32
    if (encode_wstr_utf8(config->filesystem_encoding,
14738
32
                         &encoding,
14739
32
                         "filesystem_encoding") < 0) {
14740
0
        return -1;
14741
0
    }
14742
14743
32
    if (encode_wstr_utf8(config->filesystem_errors,
14744
32
                         &errors,
14745
32
                         "filesystem_errors") < 0) {
14746
0
        PyMem_RawFree(encoding);
14747
0
        return -1;
14748
0
    }
14749
14750
32
    struct _Py_unicode_fs_codec *fs_codec = &interp->unicode.fs_codec;
14751
32
    PyMem_RawFree(fs_codec->encoding);
14752
32
    fs_codec->encoding = encoding;
14753
    /* encoding has been normalized by init_fs_encoding() */
14754
32
    fs_codec->utf8 = (strcmp(encoding, "utf-8") == 0);
14755
32
    PyMem_RawFree(fs_codec->errors);
14756
32
    fs_codec->errors = errors;
14757
32
    fs_codec->error_handler = error_handler;
14758
14759
#ifdef _Py_FORCE_UTF8_FS_ENCODING
14760
    assert(fs_codec->utf8 == 1);
14761
#endif
14762
14763
    /* At this point, PyUnicode_EncodeFSDefault() and
14764
       PyUnicode_DecodeFSDefault() can now use the Python codec rather than
14765
       the C implementation of the filesystem encoding. */
14766
14767
    /* Set Py_FileSystemDefaultEncoding and Py_FileSystemDefaultEncodeErrors
14768
       global configuration variables. */
14769
32
    if (_Py_IsMainInterpreter(interp)) {
14770
14771
32
        if (_Py_SetFileSystemEncoding(fs_codec->encoding,
14772
32
                                      fs_codec->errors) < 0) {
14773
0
            PyErr_NoMemory();
14774
0
            return -1;
14775
0
        }
14776
32
    }
14777
32
    return 0;
14778
32
}
14779
14780
14781
static PyStatus
14782
init_fs_encoding(PyThreadState *tstate)
14783
32
{
14784
32
    PyInterpreterState *interp = tstate->interp;
14785
14786
    /* Update the filesystem encoding to the normalized Python codec name.
14787
       For example, replace "ANSI_X3.4-1968" (locale encoding) with "ascii"
14788
       (Python codec name). */
14789
32
    PyConfig *config = (PyConfig*)_PyInterpreterState_GetConfig(interp);
14790
32
    if (config_get_codec_name(&config->filesystem_encoding) < 0) {
14791
0
        _Py_DumpPathConfig(tstate);
14792
0
        return _PyStatus_ERR("failed to get the Python codec "
14793
0
                             "of the filesystem encoding");
14794
0
    }
14795
14796
32
    if (init_fs_codec(interp) < 0) {
14797
0
        return _PyStatus_ERR("cannot initialize filesystem codec");
14798
0
    }
14799
32
    return _PyStatus_OK();
14800
32
}
14801
14802
14803
PyStatus
14804
_PyUnicode_InitEncodings(PyThreadState *tstate)
14805
32
{
14806
32
    PyStatus status = _PyCodec_InitRegistry(tstate->interp);
14807
32
    if (_PyStatus_EXCEPTION(status)) {
14808
0
        return status;
14809
0
    }
14810
32
    status = init_fs_encoding(tstate);
14811
32
    if (_PyStatus_EXCEPTION(status)) {
14812
0
        return status;
14813
0
    }
14814
14815
32
    return init_stdio_encoding(tstate->interp);
14816
32
}
14817
14818
14819
static void
14820
_PyUnicode_FiniEncodings(struct _Py_unicode_fs_codec *fs_codec)
14821
0
{
14822
0
    PyMem_RawFree(fs_codec->encoding);
14823
0
    fs_codec->encoding = NULL;
14824
0
    fs_codec->utf8 = 0;
14825
0
    PyMem_RawFree(fs_codec->errors);
14826
0
    fs_codec->errors = NULL;
14827
0
    fs_codec->error_handler = _Py_ERROR_UNKNOWN;
14828
0
}
14829
14830
14831
#ifdef MS_WINDOWS
14832
int
14833
_PyUnicode_EnableLegacyWindowsFSEncoding(void)
14834
{
14835
    PyInterpreterState *interp = _PyInterpreterState_GET();
14836
    PyConfig *config = (PyConfig *)_PyInterpreterState_GetConfig(interp);
14837
14838
    /* Set the filesystem encoding to mbcs/replace (PEP 529) */
14839
    wchar_t *encoding = _PyMem_RawWcsdup(L"mbcs");
14840
    wchar_t *errors = _PyMem_RawWcsdup(L"replace");
14841
    if (encoding == NULL || errors == NULL) {
14842
        PyMem_RawFree(encoding);
14843
        PyMem_RawFree(errors);
14844
        PyErr_NoMemory();
14845
        return -1;
14846
    }
14847
14848
    PyMem_RawFree(config->filesystem_encoding);
14849
    config->filesystem_encoding = encoding;
14850
    PyMem_RawFree(config->filesystem_errors);
14851
    config->filesystem_errors = errors;
14852
14853
    return init_fs_codec(interp);
14854
}
14855
#endif
14856
14857
14858
#ifdef Py_DEBUG
14859
static inline int
14860
unicode_is_finalizing(void)
14861
{
14862
    return (get_interned_dict(_PyInterpreterState_Main()) == NULL);
14863
}
14864
#endif
14865
14866
14867
void
14868
_PyUnicode_FiniTypes(PyInterpreterState *interp)
14869
0
{
14870
0
    _PyStaticType_FiniBuiltin(interp, &EncodingMapType);
14871
0
    _PyStaticType_FiniBuiltin(interp, &PyFieldNameIter_Type);
14872
0
    _PyStaticType_FiniBuiltin(interp, &PyFormatterIter_Type);
14873
0
}
14874
14875
14876
void
14877
_PyUnicode_Fini(PyInterpreterState *interp)
14878
0
{
14879
0
    struct _Py_unicode_state *state = &interp->unicode;
14880
14881
0
    if (!has_shared_intern_dict(interp)) {
14882
        // _PyUnicode_ClearInterned() must be called before _PyUnicode_Fini()
14883
0
        assert(get_interned_dict(interp) == NULL);
14884
0
    }
14885
14886
0
    _PyUnicode_FiniEncodings(&state->fs_codec);
14887
14888
    // bpo-47182: force a unicodedata CAPI capsule re-import on
14889
    // subsequent initialization of interpreter.
14890
0
    interp->unicode.ucnhash_capi = NULL;
14891
14892
0
    unicode_clear_identifiers(state);
14893
0
}
14894
14895
/* A _string module, to export formatter_parser and formatter_field_name_split
14896
   to the string.Formatter class implemented in Python. */
14897
14898
static PyMethodDef _string_methods[] = {
14899
    {"formatter_field_name_split", formatter_field_name_split,
14900
     METH_O, PyDoc_STR("split the argument as a field name")},
14901
    {"formatter_parser", formatter_parser,
14902
     METH_O, PyDoc_STR("parse the argument as a format string")},
14903
    {NULL, NULL}
14904
};
14905
14906
static PyModuleDef_Slot module_slots[] = {
14907
    {Py_mod_multiple_interpreters, Py_MOD_PER_INTERPRETER_GIL_SUPPORTED},
14908
    {Py_mod_gil, Py_MOD_GIL_NOT_USED},
14909
    {0, NULL}
14910
};
14911
14912
static struct PyModuleDef _string_module = {
14913
    PyModuleDef_HEAD_INIT,
14914
    .m_name = "_string",
14915
    .m_doc = PyDoc_STR("string helper module"),
14916
    .m_size = 0,
14917
    .m_methods = _string_methods,
14918
    .m_slots = module_slots,
14919
};
14920
14921
PyMODINIT_FUNC
14922
PyInit__string(void)
14923
8
{
14924
8
    return PyModuleDef_Init(&_string_module);
14925
8
}
14926
14927
14928
#undef PyUnicode_KIND
14929
int PyUnicode_KIND(PyObject *op)
14930
0
{
14931
0
    if (!PyUnicode_Check(op)) {
14932
0
        PyErr_Format(PyExc_TypeError, "expect str, got %T", op);
14933
0
        return -1;
14934
0
    }
14935
0
    return _PyASCIIObject_CAST(op)->state.kind;
14936
0
}
14937
14938
#undef PyUnicode_DATA
14939
void* PyUnicode_DATA(PyObject *op)
14940
0
{
14941
0
    if (!PyUnicode_Check(op)) {
14942
0
        PyErr_Format(PyExc_TypeError, "expect str, got %T", op);
14943
0
        return NULL;
14944
0
    }
14945
0
    return _PyUnicode_DATA(op);
14946
0
}