Coverage Report

Created: 2026-06-09 06:53

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/cpython/Objects/abstract.c
Line
Count
Source
1
/* Abstract Object Interface (many thanks to Jim Fulton) */
2
3
#include "Python.h"
4
#include "pycore_abstract.h"      // _PyIndex_Check()
5
#include "pycore_call.h"          // _PyObject_CallNoArgs()
6
#include "pycore_ceval.h"         // _Py_EnterRecursiveCallTstate()
7
#include "pycore_crossinterp.h"   // _Py_CallInInterpreter()
8
#include "pycore_genobject.h"     // _PyGen_FetchStopIterationValue()
9
#include "pycore_list.h"          // _PyList_AppendTakeRef()
10
#include "pycore_long.h"          // _PyLong_IsNegative()
11
#include "pycore_object.h"        // _Py_CheckSlotResult()
12
#include "pycore_pybuffer.h"      // _PyBuffer_ReleaseInInterpreterAndRawFree()
13
#include "pycore_pyerrors.h"      // _PyErr_Occurred()
14
#include "pycore_pystate.h"       // _PyThreadState_GET()
15
#include "pycore_tuple.h"         // _PyTuple_FromArraySteal()
16
#include "pycore_unionobject.h"   // _PyUnion_Check()
17
18
#include <stddef.h>               // offsetof()
19
20
21
/* Shorthands to return certain errors */
22
23
static PyObject *
24
type_error(const char *msg, PyObject *obj)
25
0
{
26
0
    PyErr_Format(PyExc_TypeError, msg, Py_TYPE(obj)->tp_name);
27
0
    return NULL;
28
0
}
29
30
static PyObject *
31
null_error(void)
32
0
{
33
0
    PyThreadState *tstate = _PyThreadState_GET();
34
0
    if (!_PyErr_Occurred(tstate)) {
35
0
        _PyErr_SetString(tstate, PyExc_SystemError,
36
0
                         "null argument to internal routine");
37
0
    }
38
0
    return NULL;
39
0
}
40
41
/* Operations on any object */
42
43
PyObject *
44
PyObject_Type(PyObject *o)
45
254
{
46
254
    PyObject *v;
47
48
254
    if (o == NULL) {
49
0
        return null_error();
50
0
    }
51
52
254
    v = (PyObject *)Py_TYPE(o);
53
254
    return Py_NewRef(v);
54
254
}
55
56
Py_ssize_t
57
PyObject_Size(PyObject *o)
58
125M
{
59
125M
    if (o == NULL) {
60
0
        null_error();
61
0
        return -1;
62
0
    }
63
64
125M
    PySequenceMethods *m = Py_TYPE(o)->tp_as_sequence;
65
125M
    if (m && m->sq_length) {
66
125M
        Py_ssize_t len = m->sq_length(o);
67
125M
        assert(_Py_CheckSlotResult(o, "__len__", len >= 0));
68
125M
        return len;
69
125M
    }
70
71
84.1k
    return PyMapping_Size(o);
72
125M
}
73
74
#undef PyObject_Length
75
Py_ssize_t
76
PyObject_Length(PyObject *o)
77
0
{
78
0
    return PyObject_Size(o);
79
0
}
80
275k
#define PyObject_Length PyObject_Size
81
82
int
83
7.25M
_PyObject_HasLen(PyObject *o) {
84
7.25M
    return (Py_TYPE(o)->tp_as_sequence && Py_TYPE(o)->tp_as_sequence->sq_length) ||
85
6.97M
        (Py_TYPE(o)->tp_as_mapping && Py_TYPE(o)->tp_as_mapping->mp_length);
86
7.25M
}
87
88
/* The length hint function returns a non-negative value from o.__len__()
89
   or o.__length_hint__(). If those methods aren't found the defaultvalue is
90
   returned.  If one of the calls fails with an exception other than TypeError
91
   this function returns -1.
92
*/
93
94
Py_ssize_t
95
PyObject_LengthHint(PyObject *o, Py_ssize_t defaultvalue)
96
7.24M
{
97
7.24M
    PyObject *hint, *result;
98
7.24M
    Py_ssize_t res;
99
7.24M
    if (_PyObject_HasLen(o)) {
100
275k
        res = PyObject_Length(o);
101
275k
        if (res < 0) {
102
0
            PyThreadState *tstate = _PyThreadState_GET();
103
0
            assert(_PyErr_Occurred(tstate));
104
0
            if (!_PyErr_ExceptionMatches(tstate, PyExc_TypeError)) {
105
0
                return -1;
106
0
            }
107
0
            _PyErr_Clear(tstate);
108
0
        }
109
275k
        else {
110
275k
            return res;
111
275k
        }
112
275k
    }
113
6.97M
    hint = _PyObject_LookupSpecial(o, &_Py_ID(__length_hint__));
114
6.97M
    if (hint == NULL) {
115
3.61M
        if (PyErr_Occurred()) {
116
0
            return -1;
117
0
        }
118
3.61M
        return defaultvalue;
119
3.61M
    }
120
3.35M
    result = _PyObject_CallNoArgs(hint);
121
3.35M
    Py_DECREF(hint);
122
3.35M
    if (result == NULL) {
123
0
        PyThreadState *tstate = _PyThreadState_GET();
124
0
        if (_PyErr_ExceptionMatches(tstate, PyExc_TypeError)) {
125
0
            _PyErr_Clear(tstate);
126
0
            return defaultvalue;
127
0
        }
128
0
        return -1;
129
0
    }
130
3.35M
    else if (result == Py_NotImplemented) {
131
0
        Py_DECREF(result);
132
0
        return defaultvalue;
133
0
    }
134
3.35M
    if (!PyLong_Check(result)) {
135
0
        PyErr_Format(PyExc_TypeError,
136
0
                     "%T.__length_hint__() must return an int, not %T",
137
0
                     o, result);
138
0
        Py_DECREF(result);
139
0
        return -1;
140
0
    }
141
3.35M
    res = PyLong_AsSsize_t(result);
142
3.35M
    Py_DECREF(result);
143
3.35M
    if (res < 0 && PyErr_Occurred()) {
144
0
        return -1;
145
0
    }
146
3.35M
    if (res < 0) {
147
0
        PyErr_Format(PyExc_ValueError,
148
0
                     "%T.__length_hint__() must return a non-negative int", o);
149
0
        return -1;
150
0
    }
151
3.35M
    return res;
152
3.35M
}
153
154
PyObject *
155
PyObject_GetItem(PyObject *o, PyObject *key)
156
232M
{
157
232M
    if (o == NULL || key == NULL) {
158
0
        return null_error();
159
0
    }
160
161
232M
    PyMappingMethods *m = Py_TYPE(o)->tp_as_mapping;
162
232M
    if (m && m->mp_subscript) {
163
232M
        PyObject *item = m->mp_subscript(o, key);
164
232M
        assert(_Py_CheckSlotResult(o, "__getitem__", item != NULL));
165
232M
        return item;
166
232M
    }
167
168
1.18k
    PySequenceMethods *ms = Py_TYPE(o)->tp_as_sequence;
169
1.18k
    if (ms && ms->sq_item) {
170
0
        if (_PyIndex_Check(key)) {
171
0
            Py_ssize_t key_value;
172
0
            key_value = PyNumber_AsSsize_t(key, PyExc_IndexError);
173
0
            if (key_value == -1 && PyErr_Occurred())
174
0
                return NULL;
175
0
            return PySequence_GetItem(o, key_value);
176
0
        }
177
0
        else {
178
0
            return type_error("sequence index must "
179
0
                              "be integer, not '%.200s'", key);
180
0
        }
181
0
    }
182
183
1.18k
    if (PyType_Check(o)) {
184
1.18k
        PyObject *meth, *result;
185
186
        // Special case type[int], but disallow other types so str[int] fails
187
1.18k
        if ((PyTypeObject*)o == &PyType_Type) {
188
16
            return Py_GenericAlias(o, key);
189
16
        }
190
191
1.16k
        if (PyObject_GetOptionalAttr(o, &_Py_ID(__class_getitem__), &meth) < 0) {
192
0
            return NULL;
193
0
        }
194
1.16k
        if (meth && meth != Py_None) {
195
1.16k
            result = PyObject_CallOneArg(meth, key);
196
1.16k
            Py_DECREF(meth);
197
1.16k
            return result;
198
1.16k
        }
199
0
        Py_XDECREF(meth);
200
0
        PyErr_Format(PyExc_TypeError, "type '%.200s' is not subscriptable",
201
0
                     ((PyTypeObject *)o)->tp_name);
202
0
        return NULL;
203
1.16k
    }
204
205
0
    return type_error("'%.200s' object is not subscriptable", o);
206
1.18k
}
207
208
int
209
PyMapping_GetOptionalItem(PyObject *obj, PyObject *key, PyObject **result)
210
13.7M
{
211
13.7M
    if (PyDict_CheckExact(obj)) {
212
13.7M
        return PyDict_GetItemRef(obj, key, result);
213
13.7M
    }
214
215
1.11k
    *result = PyObject_GetItem(obj, key);
216
1.11k
    if (*result) {
217
405
        return 1;
218
405
    }
219
1.11k
    assert(PyErr_Occurred());
220
713
    if (!PyErr_ExceptionMatches(PyExc_KeyError)) {
221
0
        return -1;
222
0
    }
223
713
    PyErr_Clear();
224
713
    return 0;
225
713
}
226
227
PyObject*
228
_PyMapping_GetOptionalItem2(PyObject *obj, PyObject *key, int *err)
229
12.0k
{
230
12.0k
    PyObject* result;
231
12.0k
    *err = PyMapping_GetOptionalItem(obj, key, &result);
232
12.0k
    return result;
233
12.0k
}
234
235
int
236
PyObject_SetItem(PyObject *o, PyObject *key, PyObject *value)
237
127M
{
238
127M
    if (o == NULL || key == NULL || value == NULL) {
239
0
        null_error();
240
0
        return -1;
241
0
    }
242
243
127M
    PyMappingMethods *m = Py_TYPE(o)->tp_as_mapping;
244
127M
    if (m && m->mp_ass_subscript) {
245
127M
        int res = m->mp_ass_subscript(o, key, value);
246
127M
        assert(_Py_CheckSlotResult(o, "__setitem__", res >= 0));
247
127M
        return res;
248
127M
    }
249
250
0
    if (Py_TYPE(o)->tp_as_sequence) {
251
0
        if (_PyIndex_Check(key)) {
252
0
            Py_ssize_t key_value;
253
0
            key_value = PyNumber_AsSsize_t(key, PyExc_IndexError);
254
0
            if (key_value == -1 && PyErr_Occurred())
255
0
                return -1;
256
0
            return PySequence_SetItem(o, key_value, value);
257
0
        }
258
0
        else if (Py_TYPE(o)->tp_as_sequence->sq_ass_item) {
259
0
            type_error("sequence index must be "
260
0
                       "integer, not '%.200s'", key);
261
0
            return -1;
262
0
        }
263
0
    }
264
265
0
    type_error("'%.200s' object does not support item assignment", o);
266
0
    return -1;
267
0
}
268
269
int
270
PyObject_DelItem(PyObject *o, PyObject *key)
271
343k
{
272
343k
    if (o == NULL || key == NULL) {
273
0
        null_error();
274
0
        return -1;
275
0
    }
276
277
343k
    PyMappingMethods *m = Py_TYPE(o)->tp_as_mapping;
278
343k
    if (m && m->mp_ass_subscript) {
279
343k
        int res = m->mp_ass_subscript(o, key, (PyObject*)NULL);
280
343k
        assert(_Py_CheckSlotResult(o, "__delitem__", res >= 0));
281
343k
        return res;
282
343k
    }
283
284
0
    if (Py_TYPE(o)->tp_as_sequence) {
285
0
        if (_PyIndex_Check(key)) {
286
0
            Py_ssize_t key_value;
287
0
            key_value = PyNumber_AsSsize_t(key, PyExc_IndexError);
288
0
            if (key_value == -1 && PyErr_Occurred())
289
0
                return -1;
290
0
            return PySequence_DelItem(o, key_value);
291
0
        }
292
0
        else if (Py_TYPE(o)->tp_as_sequence->sq_ass_item) {
293
0
            type_error("sequence index must be "
294
0
                       "integer, not '%.200s'", key);
295
0
            return -1;
296
0
        }
297
0
    }
298
299
0
    type_error("'%.200s' object does not support item deletion", o);
300
0
    return -1;
301
0
}
302
303
int
304
PyObject_DelItemString(PyObject *o, const char *key)
305
0
{
306
0
    PyObject *okey;
307
0
    int ret;
308
309
0
    if (o == NULL || key == NULL) {
310
0
        null_error();
311
0
        return -1;
312
0
    }
313
0
    okey = PyUnicode_FromString(key);
314
0
    if (okey == NULL)
315
0
        return -1;
316
0
    ret = PyObject_DelItem(o, okey);
317
0
    Py_DECREF(okey);
318
0
    return ret;
319
0
}
320
321
322
/* Return 1 if the getbuffer function is available, otherwise return 0. */
323
int
324
PyObject_CheckBuffer(PyObject *obj)
325
62.9M
{
326
62.9M
    PyBufferProcs *tp_as_buffer = Py_TYPE(obj)->tp_as_buffer;
327
62.9M
    return (tp_as_buffer != NULL && tp_as_buffer->bf_getbuffer != NULL);
328
62.9M
}
329
330
// Old buffer protocols (deprecated, abi only)
331
332
/* Checks whether an arbitrary object supports the (character, single segment)
333
   buffer interface.
334
335
   Returns 1 on success, 0 on failure.
336
337
   We release the buffer right after use of this function which could
338
   cause issues later on.  Don't use these functions in new code.
339
 */
340
PyAPI_FUNC(int) /* abi_only */
341
PyObject_CheckReadBuffer(PyObject *obj)
342
0
{
343
0
    PyBufferProcs *pb = Py_TYPE(obj)->tp_as_buffer;
344
0
    Py_buffer view;
345
346
0
    if (pb == NULL ||
347
0
        pb->bf_getbuffer == NULL)
348
0
        return 0;
349
0
    if ((*pb->bf_getbuffer)(obj, &view, PyBUF_SIMPLE) == -1) {
350
0
        PyErr_Clear();
351
0
        return 0;
352
0
    }
353
0
    PyBuffer_Release(&view);
354
0
    return 1;
355
0
}
356
357
static int
358
as_read_buffer(PyObject *obj, const void **buffer, Py_ssize_t *buffer_len)
359
0
{
360
0
    Py_buffer view;
361
362
0
    if (obj == NULL || buffer == NULL || buffer_len == NULL) {
363
0
        null_error();
364
0
        return -1;
365
0
    }
366
0
    if (PyObject_GetBuffer(obj, &view, PyBUF_SIMPLE) != 0)
367
0
        return -1;
368
369
0
    *buffer = view.buf;
370
0
    *buffer_len = view.len;
371
0
    PyBuffer_Release(&view);
372
0
    return 0;
373
0
}
374
375
/* Takes an arbitrary object which must support the (character, single segment)
376
   buffer interface and returns a pointer to a read-only memory location
377
   usable as character based input for subsequent processing.
378
379
   Return 0 on success.  buffer and buffer_len are only set in case no error
380
   occurs. Otherwise, -1 is returned and an exception set. */
381
PyAPI_FUNC(int) /* abi_only */
382
PyObject_AsCharBuffer(PyObject *obj,
383
                      const char **buffer,
384
                      Py_ssize_t *buffer_len)
385
0
{
386
0
    return as_read_buffer(obj, (const void **)buffer, buffer_len);
387
0
}
388
389
/* Same as PyObject_AsCharBuffer() except that this API expects (readable,
390
   single segment) buffer interface and returns a pointer to a read-only memory
391
   location which can contain arbitrary data.
392
393
   0 is returned on success.  buffer and buffer_len are only set in case no
394
   error occurs.  Otherwise, -1 is returned and an exception set. */
395
PyAPI_FUNC(int) /* abi_only */
396
PyObject_AsReadBuffer(PyObject *obj,
397
                      const void **buffer,
398
                      Py_ssize_t *buffer_len)
399
0
{
400
0
    return as_read_buffer(obj, buffer, buffer_len);
401
0
}
402
403
/* Takes an arbitrary object which must support the (writable, single segment)
404
   buffer interface and returns a pointer to a writable memory location in
405
   buffer of size 'buffer_len'.
406
407
   Return 0 on success.  buffer and buffer_len are only set in case no error
408
   occurs. Otherwise, -1 is returned and an exception set. */
409
PyAPI_FUNC(int) /* abi_only */
410
PyObject_AsWriteBuffer(PyObject *obj,
411
                       void **buffer,
412
                       Py_ssize_t *buffer_len)
413
0
{
414
0
    PyBufferProcs *pb;
415
0
    Py_buffer view;
416
417
0
    if (obj == NULL || buffer == NULL || buffer_len == NULL) {
418
0
        null_error();
419
0
        return -1;
420
0
    }
421
0
    pb = Py_TYPE(obj)->tp_as_buffer;
422
0
    if (pb == NULL ||
423
0
        pb->bf_getbuffer == NULL ||
424
0
        ((*pb->bf_getbuffer)(obj, &view, PyBUF_WRITABLE) != 0)) {
425
0
        PyErr_SetString(PyExc_TypeError,
426
0
                        "expected a writable bytes-like object");
427
0
        return -1;
428
0
    }
429
430
0
    *buffer = view.buf;
431
0
    *buffer_len = view.len;
432
0
    PyBuffer_Release(&view);
433
0
    return 0;
434
0
}
435
436
/* Buffer C-API for Python 3.0 */
437
438
int
439
PyObject_GetBuffer(PyObject *obj, Py_buffer *view, int flags)
440
103M
{
441
103M
    if (flags != PyBUF_SIMPLE) {  /* fast path */
442
34.0M
        if (flags == PyBUF_READ || flags == PyBUF_WRITE) {
443
0
            PyErr_BadInternalCall();
444
0
            return -1;
445
0
        }
446
34.0M
    }
447
103M
    PyBufferProcs *pb = Py_TYPE(obj)->tp_as_buffer;
448
449
103M
    if (pb == NULL || pb->bf_getbuffer == NULL) {
450
0
        PyErr_Format(PyExc_TypeError,
451
0
                     "a bytes-like object is required, not '%.100s'",
452
0
                     Py_TYPE(obj)->tp_name);
453
0
        return -1;
454
0
    }
455
103M
    int res = (*pb->bf_getbuffer)(obj, view, flags);
456
103M
    assert(_Py_CheckSlotResult(obj, "getbuffer", res >= 0));
457
103M
    return res;
458
103M
}
459
460
static int
461
_IsFortranContiguous(const Py_buffer *view)
462
0
{
463
0
    Py_ssize_t sd, dim;
464
0
    int i;
465
466
    /* 1) len = product(shape) * itemsize
467
       2) itemsize > 0
468
       3) len = 0 <==> exists i: shape[i] = 0 */
469
0
    if (view->len == 0) return 1;
470
0
    if (view->strides == NULL) {  /* C-contiguous by definition */
471
        /* Trivially F-contiguous */
472
0
        if (view->ndim <= 1) return 1;
473
474
        /* ndim > 1 implies shape != NULL */
475
0
        assert(view->shape != NULL);
476
477
        /* Effectively 1-d */
478
0
        sd = 0;
479
0
        for (i=0; i<view->ndim; i++) {
480
0
            if (view->shape[i] > 1) sd += 1;
481
0
        }
482
0
        return sd <= 1;
483
0
    }
484
485
    /* strides != NULL implies both of these */
486
0
    assert(view->ndim > 0);
487
0
    assert(view->shape != NULL);
488
489
0
    sd = view->itemsize;
490
0
    for (i=0; i<view->ndim; i++) {
491
0
        dim = view->shape[i];
492
0
        if (dim > 1 && view->strides[i] != sd) {
493
0
            return 0;
494
0
        }
495
0
        sd *= dim;
496
0
    }
497
0
    return 1;
498
0
}
499
500
static int
501
_IsCContiguous(const Py_buffer *view)
502
33.8M
{
503
33.8M
    Py_ssize_t sd, dim;
504
33.8M
    int i;
505
506
    /* 1) len = product(shape) * itemsize
507
       2) itemsize > 0
508
       3) len = 0 <==> exists i: shape[i] = 0 */
509
33.8M
    if (view->len == 0) return 1;
510
33.7M
    if (view->strides == NULL) return 1; /* C-contiguous by definition */
511
512
    /* strides != NULL implies both of these */
513
33.7M
    assert(view->ndim > 0);
514
33.7M
    assert(view->shape != NULL);
515
516
33.7M
    sd = view->itemsize;
517
67.4M
    for (i=view->ndim-1; i>=0; i--) {
518
33.7M
        dim = view->shape[i];
519
33.7M
        if (dim > 1 && view->strides[i] != sd) {
520
0
            return 0;
521
0
        }
522
33.7M
        sd *= dim;
523
33.7M
    }
524
33.7M
    return 1;
525
33.7M
}
526
527
int
528
PyBuffer_IsContiguous(const Py_buffer *view, char order)
529
33.8M
{
530
531
33.8M
    if (view->suboffsets != NULL) return 0;
532
533
33.8M
    if (order == 'C')
534
33.8M
        return _IsCContiguous(view);
535
0
    else if (order == 'F')
536
0
        return _IsFortranContiguous(view);
537
0
    else if (order == 'A')
538
0
        return (_IsCContiguous(view) || _IsFortranContiguous(view));
539
0
    return 0;
540
33.8M
}
541
542
543
void*
544
PyBuffer_GetPointer(const Py_buffer *view, const Py_ssize_t *indices)
545
0
{
546
0
    char* pointer;
547
0
    int i;
548
0
    pointer = (char *)view->buf;
549
0
    for (i = 0; i < view->ndim; i++) {
550
0
        pointer += view->strides[i]*indices[i];
551
0
        if ((view->suboffsets != NULL) && (view->suboffsets[i] >= 0)) {
552
0
            pointer = *((char**)pointer) + view->suboffsets[i];
553
0
        }
554
0
    }
555
0
    return (void*)pointer;
556
0
}
557
558
559
static void
560
_Py_add_one_to_index_F(int nd, Py_ssize_t *index, const Py_ssize_t *shape)
561
0
{
562
0
    int k;
563
564
0
    for (k=0; k<nd; k++) {
565
0
        if (index[k] < shape[k]-1) {
566
0
            index[k]++;
567
0
            break;
568
0
        }
569
0
        else {
570
0
            index[k] = 0;
571
0
        }
572
0
    }
573
0
}
574
575
static void
576
_Py_add_one_to_index_C(int nd, Py_ssize_t *index, const Py_ssize_t *shape)
577
0
{
578
0
    int k;
579
580
0
    for (k=nd-1; k>=0; k--) {
581
0
        if (index[k] < shape[k]-1) {
582
0
            index[k]++;
583
0
            break;
584
0
        }
585
0
        else {
586
0
            index[k] = 0;
587
0
        }
588
0
    }
589
0
}
590
591
Py_ssize_t
592
PyBuffer_SizeFromFormat(const char *format)
593
0
{
594
0
    PyObject *calcsize = NULL;
595
0
    PyObject *res = NULL;
596
0
    PyObject *fmt = NULL;
597
0
    Py_ssize_t itemsize = -1;
598
599
0
    calcsize = PyImport_ImportModuleAttrString("struct", "calcsize");
600
0
    if (calcsize == NULL) {
601
0
        goto done;
602
0
    }
603
604
0
    fmt = PyUnicode_FromString(format);
605
0
    if (fmt == NULL) {
606
0
        goto done;
607
0
    }
608
609
0
    res = PyObject_CallFunctionObjArgs(calcsize, fmt, NULL);
610
0
    if (res == NULL) {
611
0
        goto done;
612
0
    }
613
614
0
    itemsize = PyLong_AsSsize_t(res);
615
0
    if (itemsize < 0) {
616
0
        goto done;
617
0
    }
618
619
0
done:
620
0
    Py_XDECREF(calcsize);
621
0
    Py_XDECREF(fmt);
622
0
    Py_XDECREF(res);
623
0
    return itemsize;
624
0
}
625
626
int
627
PyBuffer_FromContiguous(const Py_buffer *view, const void *buf, Py_ssize_t len, char order)
628
0
{
629
0
    int k;
630
0
    void (*addone)(int, Py_ssize_t *, const Py_ssize_t *);
631
0
    Py_ssize_t *indices, elements;
632
0
    char *ptr;
633
0
    const char *src;
634
635
0
    if (len > view->len) {
636
0
        len = view->len;
637
0
    }
638
639
0
    if (PyBuffer_IsContiguous(view, order)) {
640
        /* simplest copy is all that is needed */
641
0
        memcpy(view->buf, buf, len);
642
0
        return 0;
643
0
    }
644
645
    /* Otherwise a more elaborate scheme is needed */
646
647
    /* view->ndim <= 64 */
648
0
    indices = (Py_ssize_t *)PyMem_Malloc(sizeof(Py_ssize_t)*(view->ndim));
649
0
    if (indices == NULL) {
650
0
        PyErr_NoMemory();
651
0
        return -1;
652
0
    }
653
0
    for (k=0; k<view->ndim;k++) {
654
0
        indices[k] = 0;
655
0
    }
656
657
0
    if (order == 'F') {
658
0
        addone = _Py_add_one_to_index_F;
659
0
    }
660
0
    else {
661
0
        addone = _Py_add_one_to_index_C;
662
0
    }
663
0
    src = buf;
664
    /* XXX : This is not going to be the fastest code in the world
665
             several optimizations are possible.
666
     */
667
0
    elements = len / view->itemsize;
668
0
    while (elements--) {
669
0
        ptr = PyBuffer_GetPointer(view, indices);
670
0
        memcpy(ptr, src, view->itemsize);
671
0
        src += view->itemsize;
672
0
        addone(view->ndim, indices, view->shape);
673
0
    }
674
675
0
    PyMem_Free(indices);
676
0
    return 0;
677
0
}
678
679
int PyObject_CopyData(PyObject *dest, PyObject *src)
680
0
{
681
0
    Py_buffer view_dest, view_src;
682
0
    int k;
683
0
    Py_ssize_t *indices, elements;
684
0
    char *dptr, *sptr;
685
686
0
    if (!PyObject_CheckBuffer(dest) ||
687
0
        !PyObject_CheckBuffer(src)) {
688
0
        PyErr_SetString(PyExc_TypeError,
689
0
                        "both destination and source must be "\
690
0
                        "bytes-like objects");
691
0
        return -1;
692
0
    }
693
694
0
    if (PyObject_GetBuffer(dest, &view_dest, PyBUF_FULL) != 0) return -1;
695
0
    if (PyObject_GetBuffer(src, &view_src, PyBUF_FULL_RO) != 0) {
696
0
        PyBuffer_Release(&view_dest);
697
0
        return -1;
698
0
    }
699
700
0
    if (view_dest.len < view_src.len) {
701
0
        PyErr_SetString(PyExc_BufferError,
702
0
                        "destination is too small to receive data from source");
703
0
        PyBuffer_Release(&view_dest);
704
0
        PyBuffer_Release(&view_src);
705
0
        return -1;
706
0
    }
707
708
0
    if ((PyBuffer_IsContiguous(&view_dest, 'C') &&
709
0
         PyBuffer_IsContiguous(&view_src, 'C')) ||
710
0
        (PyBuffer_IsContiguous(&view_dest, 'F') &&
711
0
         PyBuffer_IsContiguous(&view_src, 'F'))) {
712
        /* simplest copy is all that is needed */
713
0
        memcpy(view_dest.buf, view_src.buf, view_src.len);
714
0
        PyBuffer_Release(&view_dest);
715
0
        PyBuffer_Release(&view_src);
716
0
        return 0;
717
0
    }
718
719
    /* Otherwise a more elaborate copy scheme is needed */
720
721
    /* XXX(nnorwitz): need to check for overflow! */
722
0
    indices = (Py_ssize_t *)PyMem_Malloc(sizeof(Py_ssize_t)*view_src.ndim);
723
0
    if (indices == NULL) {
724
0
        PyErr_NoMemory();
725
0
        PyBuffer_Release(&view_dest);
726
0
        PyBuffer_Release(&view_src);
727
0
        return -1;
728
0
    }
729
0
    for (k=0; k<view_src.ndim;k++) {
730
0
        indices[k] = 0;
731
0
    }
732
0
    elements = 1;
733
0
    for (k=0; k<view_src.ndim; k++) {
734
        /* XXX(nnorwitz): can this overflow? */
735
0
        elements *= view_src.shape[k];
736
0
    }
737
0
    while (elements--) {
738
0
        _Py_add_one_to_index_C(view_src.ndim, indices, view_src.shape);
739
0
        dptr = PyBuffer_GetPointer(&view_dest, indices);
740
0
        sptr = PyBuffer_GetPointer(&view_src, indices);
741
0
        memcpy(dptr, sptr, view_src.itemsize);
742
0
    }
743
0
    PyMem_Free(indices);
744
0
    PyBuffer_Release(&view_dest);
745
0
    PyBuffer_Release(&view_src);
746
0
    return 0;
747
0
}
748
749
void
750
PyBuffer_FillContiguousStrides(int nd, Py_ssize_t *shape,
751
                               Py_ssize_t *strides, int itemsize,
752
                               char order)
753
0
{
754
0
    int k;
755
0
    Py_ssize_t sd;
756
757
0
    sd = itemsize;
758
0
    if (order == 'F') {
759
0
        for (k=0; k<nd; k++) {
760
0
            strides[k] = sd;
761
0
            sd *= shape[k];
762
0
        }
763
0
    }
764
0
    else {
765
0
        for (k=nd-1; k>=0; k--) {
766
0
            strides[k] = sd;
767
0
            sd *= shape[k];
768
0
        }
769
0
    }
770
0
    return;
771
0
}
772
773
int
774
PyBuffer_FillInfo(Py_buffer *view, PyObject *obj, void *buf, Py_ssize_t len,
775
                  int readonly, int flags)
776
103M
{
777
103M
    if (view == NULL) {
778
0
        PyErr_SetString(PyExc_BufferError,
779
0
                        "PyBuffer_FillInfo: view==NULL argument is obsolete");
780
0
        return -1;
781
0
    }
782
783
103M
    if (flags != PyBUF_SIMPLE) {  /* fast path */
784
35.3M
        if (flags == PyBUF_READ || flags == PyBUF_WRITE) {
785
0
            PyErr_BadInternalCall();
786
0
            return -1;
787
0
        }
788
35.3M
        if (((flags & PyBUF_WRITABLE) == PyBUF_WRITABLE) &&
789
32.1k
            (readonly == 1)) {
790
0
            PyErr_SetString(PyExc_BufferError,
791
0
                            "Object is not writable.");
792
0
            return -1;
793
0
        }
794
35.3M
    }
795
796
103M
    view->obj = Py_XNewRef(obj);
797
103M
    view->buf = buf;
798
103M
    view->len = len;
799
103M
    view->readonly = readonly;
800
103M
    view->itemsize = 1;
801
103M
    view->format = NULL;
802
103M
    if ((flags & PyBUF_FORMAT) == PyBUF_FORMAT)
803
34.9M
        view->format = "B";
804
103M
    view->ndim = 1;
805
103M
    view->shape = NULL;
806
103M
    if ((flags & PyBUF_ND) == PyBUF_ND)
807
35.3M
        view->shape = &(view->len);
808
103M
    view->strides = NULL;
809
103M
    if ((flags & PyBUF_STRIDES) == PyBUF_STRIDES)
810
34.9M
        view->strides = &(view->itemsize);
811
103M
    view->suboffsets = NULL;
812
103M
    view->internal = NULL;
813
103M
    return 0;
814
103M
}
815
816
void
817
PyBuffer_Release(Py_buffer *view)
818
109M
{
819
109M
    PyObject *obj = view->obj;
820
109M
    PyBufferProcs *pb;
821
109M
    if (obj == NULL)
822
4.81M
        return;
823
104M
    pb = Py_TYPE(obj)->tp_as_buffer;
824
104M
    if (pb && pb->bf_releasebuffer) {
825
18.6M
        pb->bf_releasebuffer(obj, view);
826
18.6M
    }
827
104M
    view->obj = NULL;
828
104M
    Py_DECREF(obj);
829
104M
}
830
831
static int
832
_buffer_release_call(void *arg)
833
0
{
834
0
    PyBuffer_Release((Py_buffer *)arg);
835
0
    return 0;
836
0
}
837
838
int
839
_PyBuffer_ReleaseInInterpreter(PyInterpreterState *interp,
840
                               Py_buffer *view)
841
0
{
842
0
    return _Py_CallInInterpreter(interp, _buffer_release_call, view);
843
0
}
844
845
int
846
_PyBuffer_ReleaseInInterpreterAndRawFree(PyInterpreterState *interp,
847
                                         Py_buffer *view)
848
0
{
849
0
    return _Py_CallInInterpreterAndRawFree(interp, _buffer_release_call, view);
850
0
}
851
852
PyObject *
853
PyObject_Format(PyObject *obj, PyObject *format_spec)
854
728k
{
855
728k
    PyObject *meth;
856
728k
    PyObject *empty = NULL;
857
728k
    PyObject *result = NULL;
858
859
728k
    if (format_spec != NULL && !PyUnicode_Check(format_spec)) {
860
0
        PyErr_Format(PyExc_SystemError,
861
0
                     "Format specifier must be a string, not %.200s",
862
0
                     Py_TYPE(format_spec)->tp_name);
863
0
        return NULL;
864
0
    }
865
866
    /* Fast path for common types. */
867
728k
    if (format_spec == NULL || PyUnicode_GET_LENGTH(format_spec) == 0) {
868
727k
        if (PyUnicode_CheckExact(obj)) {
869
0
            return Py_NewRef(obj);
870
0
        }
871
727k
        if (PyLong_CheckExact(obj)) {
872
300k
            return PyObject_Str(obj);
873
300k
        }
874
727k
    }
875
876
    /* If no format_spec is provided, use an empty string */
877
427k
    if (format_spec == NULL) {
878
260k
        empty = Py_GetConstant(Py_CONSTANT_EMPTY_STR);
879
260k
        format_spec = empty;
880
260k
    }
881
882
    /* Find the (unbound!) __format__ method */
883
427k
    meth = _PyObject_LookupSpecial(obj, &_Py_ID(__format__));
884
427k
    if (meth == NULL) {
885
0
        PyThreadState *tstate = _PyThreadState_GET();
886
0
        if (!_PyErr_Occurred(tstate)) {
887
0
            _PyErr_Format(tstate, PyExc_TypeError,
888
0
                          "Type %.100s doesn't define __format__",
889
0
                          Py_TYPE(obj)->tp_name);
890
0
        }
891
0
        goto done;
892
0
    }
893
894
    /* And call it. */
895
427k
    result = PyObject_CallOneArg(meth, format_spec);
896
427k
    Py_DECREF(meth);
897
898
427k
    if (result && !PyUnicode_Check(result)) {
899
0
        PyErr_Format(PyExc_TypeError,
900
0
                     "%T.__format__() must return a str, not %T",
901
0
                     obj, result);
902
0
        Py_SETREF(result, NULL);
903
0
        goto done;
904
0
    }
905
906
427k
done:
907
427k
    Py_XDECREF(empty);
908
427k
    return result;
909
427k
}
910
/* Operations on numbers */
911
912
int
913
PyNumber_Check(PyObject *o)
914
8.72M
{
915
8.72M
    if (o == NULL)
916
0
        return 0;
917
8.72M
    PyNumberMethods *nb = Py_TYPE(o)->tp_as_number;
918
8.72M
    return nb && (nb->nb_index || nb->nb_int || nb->nb_float || PyComplex_Check(o));
919
8.72M
}
920
921
/* Binary operators */
922
923
107M
#define NB_SLOT(x) offsetof(PyNumberMethods, x)
924
#define NB_BINOP(nb_methods, slot) \
925
181M
        (*(binaryfunc*)(& ((char*)nb_methods)[slot]))
926
#define NB_TERNOP(nb_methods, slot) \
927
3.93M
        (*(ternaryfunc*)(& ((char*)nb_methods)[slot]))
928
929
/*
930
  Calling scheme used for binary operations:
931
932
  Order operations are tried until either a valid result or error:
933
    w.op(v,w)[*], v.op(v,w), w.op(v,w)
934
935
  [*] only when Py_TYPE(v) != Py_TYPE(w) && Py_TYPE(w) is a subclass of
936
      Py_TYPE(v)
937
 */
938
939
static PyObject *
940
binary_op1(PyObject *v, PyObject *w, const int op_slot
941
#ifndef NDEBUG
942
           , const char *op_name
943
#endif
944
           )
945
154M
{
946
154M
    binaryfunc slotv;
947
154M
    if (Py_TYPE(v)->tp_as_number != NULL) {
948
135M
        slotv = NB_BINOP(Py_TYPE(v)->tp_as_number, op_slot);
949
135M
    }
950
19.0M
    else {
951
19.0M
        slotv = NULL;
952
19.0M
    }
953
954
154M
    binaryfunc slotw;
955
154M
    if (!Py_IS_TYPE(w, Py_TYPE(v)) && Py_TYPE(w)->tp_as_number != NULL) {
956
18.7M
        slotw = NB_BINOP(Py_TYPE(w)->tp_as_number, op_slot);
957
18.7M
        if (slotw == slotv) {
958
17.3M
            slotw = NULL;
959
17.3M
        }
960
18.7M
    }
961
135M
    else {
962
135M
        slotw = NULL;
963
135M
    }
964
965
154M
    if (slotv) {
966
116M
        PyObject *x;
967
116M
        if (slotw && PyType_IsSubtype(Py_TYPE(w), Py_TYPE(v))) {
968
3.68k
            x = slotw(v, w);
969
3.68k
            if (x != Py_NotImplemented)
970
3.68k
                return x;
971
0
            Py_DECREF(x); /* can't do it */
972
0
            slotw = NULL;
973
0
        }
974
116M
        x = slotv(v, w);
975
116M
        assert(_Py_CheckSlotResult(v, op_name, x != NULL));
976
116M
        if (x != Py_NotImplemented) {
977
116M
            return x;
978
116M
        }
979
72.8k
        Py_DECREF(x); /* can't do it */
980
72.8k
    }
981
37.8M
    if (slotw) {
982
96.3k
        PyObject *x = slotw(v, w);
983
96.3k
        assert(_Py_CheckSlotResult(w, op_name, x != NULL));
984
96.3k
        if (x != Py_NotImplemented) {
985
72.8k
            return x;
986
72.8k
        }
987
23.4k
        Py_DECREF(x); /* can't do it */
988
23.4k
    }
989
37.8M
    Py_RETURN_NOTIMPLEMENTED;
990
37.8M
}
991
992
#ifdef NDEBUG
993
125M
#  define BINARY_OP1(v, w, op_slot, op_name) binary_op1(v, w, op_slot)
994
#else
995
#  define BINARY_OP1(v, w, op_slot, op_name) binary_op1(v, w, op_slot, op_name)
996
#endif
997
998
static PyObject *
999
binop_type_error(PyObject *v, PyObject *w, const char *op_name)
1000
0
{
1001
0
    PyErr_Format(PyExc_TypeError,
1002
0
                 "unsupported operand type(s) for %.100s: "
1003
0
                 "'%.100s' and '%.100s'",
1004
0
                 op_name,
1005
0
                 Py_TYPE(v)->tp_name,
1006
0
                 Py_TYPE(w)->tp_name);
1007
0
    return NULL;
1008
0
}
1009
1010
static PyObject *
1011
binary_op(PyObject *v, PyObject *w, const int op_slot, const char *op_name)
1012
90.8M
{
1013
90.8M
    PyObject *result = BINARY_OP1(v, w, op_slot, op_name);
1014
90.8M
    if (result == Py_NotImplemented) {
1015
0
        Py_DECREF(result);
1016
0
        return binop_type_error(v, w, op_name);
1017
0
    }
1018
90.8M
    return result;
1019
90.8M
}
1020
1021
1022
/*
1023
  Calling scheme used for ternary operations:
1024
1025
  Order operations are tried until either a valid result or error:
1026
    v.op(v,w,z), w.op(v,w,z), z.op(v,w,z)
1027
 */
1028
1029
static PyObject *
1030
ternary_op(PyObject *v,
1031
           PyObject *w,
1032
           PyObject *z,
1033
           const int op_slot,
1034
           const char *op_name
1035
           )
1036
3.93M
{
1037
3.93M
    PyNumberMethods *mv = Py_TYPE(v)->tp_as_number;
1038
3.93M
    PyNumberMethods *mw = Py_TYPE(w)->tp_as_number;
1039
1040
3.93M
    ternaryfunc slotv;
1041
3.93M
    if (mv != NULL) {
1042
3.93M
        slotv = NB_TERNOP(mv, op_slot);
1043
3.93M
    }
1044
0
    else {
1045
0
        slotv = NULL;
1046
0
    }
1047
1048
3.93M
    ternaryfunc slotw;
1049
3.93M
    if (!Py_IS_TYPE(w, Py_TYPE(v)) && mw != NULL) {
1050
68
        slotw = NB_TERNOP(mw, op_slot);
1051
68
        if (slotw == slotv) {
1052
0
            slotw = NULL;
1053
0
        }
1054
68
    }
1055
3.93M
    else {
1056
3.93M
        slotw = NULL;
1057
3.93M
    }
1058
1059
3.93M
    if (slotv) {
1060
3.93M
        PyObject *x;
1061
3.93M
        if (slotw && PyType_IsSubtype(Py_TYPE(w), Py_TYPE(v))) {
1062
0
            x = slotw(v, w, z);
1063
0
            if (x != Py_NotImplemented) {
1064
0
                return x;
1065
0
            }
1066
0
            Py_DECREF(x); /* can't do it */
1067
0
            slotw = NULL;
1068
0
        }
1069
3.93M
        x = slotv(v, w, z);
1070
3.93M
        assert(_Py_CheckSlotResult(v, op_name, x != NULL));
1071
3.93M
        if (x != Py_NotImplemented) {
1072
3.93M
            return x;
1073
3.93M
        }
1074
0
        Py_DECREF(x); /* can't do it */
1075
0
    }
1076
0
    if (slotw) {
1077
0
        PyObject *x = slotw(v, w, z);
1078
0
        assert(_Py_CheckSlotResult(w, op_name, x != NULL));
1079
0
        if (x != Py_NotImplemented) {
1080
0
            return x;
1081
0
        }
1082
0
        Py_DECREF(x); /* can't do it */
1083
0
    }
1084
1085
0
    PyNumberMethods *mz = Py_TYPE(z)->tp_as_number;
1086
0
    if (mz != NULL) {
1087
0
        ternaryfunc slotz = NB_TERNOP(mz, op_slot);
1088
0
        if (slotz == slotv || slotz == slotw) {
1089
0
            slotz = NULL;
1090
0
        }
1091
0
        if (slotz) {
1092
0
            PyObject *x = slotz(v, w, z);
1093
0
            assert(_Py_CheckSlotResult(z, op_name, x != NULL));
1094
0
            if (x != Py_NotImplemented) {
1095
0
                return x;
1096
0
            }
1097
0
            Py_DECREF(x); /* can't do it */
1098
0
        }
1099
0
    }
1100
1101
0
    if (z == Py_None) {
1102
0
        PyErr_Format(
1103
0
            PyExc_TypeError,
1104
0
            "unsupported operand type(s) for %.100s: "
1105
0
            "'%.100s' and '%.100s'",
1106
0
            op_name,
1107
0
            Py_TYPE(v)->tp_name,
1108
0
            Py_TYPE(w)->tp_name);
1109
0
    }
1110
0
    else {
1111
0
        PyErr_Format(
1112
0
            PyExc_TypeError,
1113
0
            "unsupported operand type(s) for %.100s: "
1114
0
            "'%.100s', '%.100s', '%.100s'",
1115
0
            op_name,
1116
0
            Py_TYPE(v)->tp_name,
1117
0
            Py_TYPE(w)->tp_name,
1118
0
            Py_TYPE(z)->tp_name);
1119
0
    }
1120
0
    return NULL;
1121
0
}
1122
1123
#define BINARY_FUNC(func, op, op_name) \
1124
    PyObject * \
1125
90.8M
    func(PyObject *v, PyObject *w) { \
1126
90.8M
        return binary_op(v, w, NB_SLOT(op), op_name); \
1127
90.8M
    }
1128
1129
832k
BINARY_FUNC(PyNumber_Or, nb_or, "|")
1130
232
BINARY_FUNC(PyNumber_Xor, nb_xor, "^")
1131
169k
BINARY_FUNC(PyNumber_And, nb_and, "&")
1132
259k
BINARY_FUNC(PyNumber_Lshift, nb_lshift, "<<")
1133
19.2M
BINARY_FUNC(PyNumber_Rshift, nb_rshift, ">>")
1134
591k
BINARY_FUNC(PyNumber_Subtract, nb_subtract, "-")
1135
815k
BINARY_FUNC(PyNumber_Divmod, nb_divmod, "divmod()")
1136
1137
PyObject *
1138
PyNumber_Add(PyObject *v, PyObject *w)
1139
31.6M
{
1140
31.6M
    PyObject *result = BINARY_OP1(v, w, NB_SLOT(nb_add), "+");
1141
31.6M
    if (result != Py_NotImplemented) {
1142
11.8M
        return result;
1143
11.8M
    }
1144
19.8M
    Py_DECREF(result);
1145
1146
19.8M
    PySequenceMethods *m = Py_TYPE(v)->tp_as_sequence;
1147
19.8M
    if (m && m->sq_concat) {
1148
19.8M
        result = (*m->sq_concat)(v, w);
1149
19.8M
        assert(_Py_CheckSlotResult(v, "+", result != NULL));
1150
19.8M
        return result;
1151
19.8M
    }
1152
1153
0
    return binop_type_error(v, w, "+");
1154
19.8M
}
1155
1156
static PyObject *
1157
sequence_repeat(ssizeargfunc repeatfunc, PyObject *seq, PyObject *n)
1158
23.4k
{
1159
23.4k
    Py_ssize_t count;
1160
23.4k
    if (_PyIndex_Check(n)) {
1161
23.4k
        count = PyNumber_AsSsize_t(n, PyExc_OverflowError);
1162
23.4k
        if (count == -1 && PyErr_Occurred()) {
1163
0
            return NULL;
1164
0
        }
1165
23.4k
    }
1166
0
    else {
1167
0
        return type_error("can't multiply sequence by "
1168
0
                          "non-int of type '%.200s'", n);
1169
0
    }
1170
23.4k
    PyObject *res = (*repeatfunc)(seq, count);
1171
23.4k
    assert(_Py_CheckSlotResult(seq, "*", res != NULL));
1172
23.4k
    return res;
1173
23.4k
}
1174
1175
PyObject *
1176
PyNumber_Multiply(PyObject *v, PyObject *w)
1177
3.21M
{
1178
3.21M
    PyObject *result = BINARY_OP1(v, w, NB_SLOT(nb_multiply), "*");
1179
3.21M
    if (result == Py_NotImplemented) {
1180
23.4k
        PySequenceMethods *mv = Py_TYPE(v)->tp_as_sequence;
1181
23.4k
        PySequenceMethods *mw = Py_TYPE(w)->tp_as_sequence;
1182
23.4k
        Py_DECREF(result);
1183
23.4k
        if  (mv && mv->sq_repeat) {
1184
23.4k
            return sequence_repeat(mv->sq_repeat, v, w);
1185
23.4k
        }
1186
5
        else if (mw && mw->sq_repeat) {
1187
5
            return sequence_repeat(mw->sq_repeat, w, v);
1188
5
        }
1189
0
        result = binop_type_error(v, w, "*");
1190
0
    }
1191
3.18M
    return result;
1192
3.21M
}
1193
1194
0
BINARY_FUNC(PyNumber_MatrixMultiply, nb_matrix_multiply, "@")
1195
31.1M
BINARY_FUNC(PyNumber_FloorDivide, nb_floor_divide, "//")
1196
7.55k
BINARY_FUNC(PyNumber_TrueDivide, nb_true_divide, "/")
1197
37.7M
BINARY_FUNC(PyNumber_Remainder, nb_remainder, "%")
1198
1199
PyObject *
1200
PyNumber_Power(PyObject *v, PyObject *w, PyObject *z)
1201
3.93M
{
1202
3.93M
    return ternary_op(v, w, z, NB_SLOT(nb_power), "** or pow()");
1203
3.93M
}
1204
1205
PyObject *
1206
_PyNumber_PowerNoMod(PyObject *lhs, PyObject *rhs)
1207
3.93M
{
1208
3.93M
    return PyNumber_Power(lhs, rhs, Py_None);
1209
3.93M
}
1210
1211
/* Binary in-place operators */
1212
1213
/* The in-place operators are defined to fall back to the 'normal',
1214
   non in-place operations, if the in-place methods are not in place.
1215
1216
   - If the left hand object has the appropriate struct members, and
1217
     they are filled, call the appropriate function and return the
1218
     result.  No coercion is done on the arguments; the left-hand object
1219
     is the one the operation is performed on, and it's up to the
1220
     function to deal with the right-hand object.
1221
1222
   - Otherwise, in-place modification is not supported. Handle it exactly as
1223
     a non in-place operation of the same kind.
1224
1225
   */
1226
1227
static PyObject *
1228
binary_iop1(PyObject *v, PyObject *w, const int iop_slot, const int op_slot
1229
#ifndef NDEBUG
1230
            , const char *op_name
1231
#endif
1232
            )
1233
28.8M
{
1234
28.8M
    PyNumberMethods *mv = Py_TYPE(v)->tp_as_number;
1235
28.8M
    if (mv != NULL) {
1236
27.6M
        binaryfunc slot = NB_BINOP(mv, iop_slot);
1237
27.6M
        if (slot) {
1238
40.6k
            PyObject *x = (slot)(v, w);
1239
40.6k
            assert(_Py_CheckSlotResult(v, op_name, x != NULL));
1240
40.6k
            if (x != Py_NotImplemented) {
1241
40.6k
                return x;
1242
40.6k
            }
1243
0
            Py_DECREF(x);
1244
0
        }
1245
27.6M
    }
1246
28.7M
#ifdef NDEBUG
1247
28.7M
    return binary_op1(v, w, op_slot);
1248
#else
1249
    return binary_op1(v, w, op_slot, op_name);
1250
#endif
1251
28.8M
}
1252
1253
#ifdef NDEBUG
1254
28.8M
#  define BINARY_IOP1(v, w, iop_slot, op_slot, op_name) binary_iop1(v, w, iop_slot, op_slot)
1255
#else
1256
#  define BINARY_IOP1(v, w, iop_slot, op_slot, op_name) binary_iop1(v, w, iop_slot, op_slot, op_name)
1257
#endif
1258
1259
static PyObject *
1260
binary_iop(PyObject *v, PyObject *w, const int iop_slot, const int op_slot,
1261
                const char *op_name)
1262
6.52M
{
1263
6.52M
    PyObject *result = BINARY_IOP1(v, w, iop_slot, op_slot, op_name);
1264
6.52M
    if (result == Py_NotImplemented) {
1265
0
        Py_DECREF(result);
1266
0
        return binop_type_error(v, w, op_name);
1267
0
    }
1268
6.52M
    return result;
1269
6.52M
}
1270
1271
static PyObject *
1272
ternary_iop(PyObject *v, PyObject *w, PyObject *z, const int iop_slot, const int op_slot,
1273
                const char *op_name)
1274
0
{
1275
0
    PyNumberMethods *mv = Py_TYPE(v)->tp_as_number;
1276
0
    if (mv != NULL) {
1277
0
        ternaryfunc slot = NB_TERNOP(mv, iop_slot);
1278
0
        if (slot) {
1279
0
            PyObject *x = (slot)(v, w, z);
1280
0
            if (x != Py_NotImplemented) {
1281
0
                return x;
1282
0
            }
1283
0
            Py_DECREF(x);
1284
0
        }
1285
0
    }
1286
0
    return ternary_op(v, w, z, op_slot, op_name);
1287
0
}
1288
1289
#define INPLACE_BINOP(func, iop, op, op_name) \
1290
    PyObject * \
1291
6.52M
    func(PyObject *v, PyObject *w) { \
1292
6.52M
        return binary_iop(v, w, NB_SLOT(iop), NB_SLOT(op), op_name); \
1293
6.52M
    }
1294
1295
40.8k
INPLACE_BINOP(PyNumber_InPlaceOr, nb_inplace_or, nb_or, "|=")
1296
134k
INPLACE_BINOP(PyNumber_InPlaceXor, nb_inplace_xor, nb_xor, "^=")
1297
53
INPLACE_BINOP(PyNumber_InPlaceAnd, nb_inplace_and, nb_and, "&=")
1298
3.68M
INPLACE_BINOP(PyNumber_InPlaceLshift, nb_inplace_lshift, nb_lshift, "<<=")
1299
30.7k
INPLACE_BINOP(PyNumber_InPlaceRshift, nb_inplace_rshift, nb_rshift, ">>=")
1300
1.10k
INPLACE_BINOP(PyNumber_InPlaceSubtract, nb_inplace_subtract, nb_subtract, "-=")
1301
0
INPLACE_BINOP(PyNumber_InPlaceMatrixMultiply, nb_inplace_matrix_multiply, nb_matrix_multiply, "@=")
1302
2.63M
INPLACE_BINOP(PyNumber_InPlaceFloorDivide, nb_inplace_floor_divide, nb_floor_divide, "//=")
1303
0
INPLACE_BINOP(PyNumber_InPlaceTrueDivide, nb_inplace_true_divide, nb_true_divide,  "/=")
1304
0
INPLACE_BINOP(PyNumber_InPlaceRemainder, nb_inplace_remainder, nb_remainder, "%=")
1305
1306
PyObject *
1307
PyNumber_InPlaceAdd(PyObject *v, PyObject *w)
1308
22.2M
{
1309
22.2M
    PyObject *result = BINARY_IOP1(v, w, NB_SLOT(nb_inplace_add),
1310
22.2M
                                   NB_SLOT(nb_add), "+=");
1311
22.2M
    if (result == Py_NotImplemented) {
1312
17.9M
        PySequenceMethods *m = Py_TYPE(v)->tp_as_sequence;
1313
17.9M
        Py_DECREF(result);
1314
17.9M
        if (m != NULL) {
1315
17.9M
            binaryfunc func = m->sq_inplace_concat;
1316
17.9M
            if (func == NULL)
1317
1.00M
                func = m->sq_concat;
1318
17.9M
            if (func != NULL) {
1319
17.9M
                result = func(v, w);
1320
17.9M
                assert(_Py_CheckSlotResult(v, "+=", result != NULL));
1321
17.9M
                return result;
1322
17.9M
            }
1323
17.9M
        }
1324
0
        result = binop_type_error(v, w, "+=");
1325
0
    }
1326
4.30M
    return result;
1327
22.2M
}
1328
1329
PyObject *
1330
PyNumber_InPlaceMultiply(PyObject *v, PyObject *w)
1331
0
{
1332
0
    PyObject *result = BINARY_IOP1(v, w, NB_SLOT(nb_inplace_multiply),
1333
0
                                   NB_SLOT(nb_multiply), "*=");
1334
0
    if (result == Py_NotImplemented) {
1335
0
        ssizeargfunc f = NULL;
1336
0
        PySequenceMethods *mv = Py_TYPE(v)->tp_as_sequence;
1337
0
        PySequenceMethods *mw = Py_TYPE(w)->tp_as_sequence;
1338
0
        Py_DECREF(result);
1339
0
        if (mv != NULL) {
1340
0
            f = mv->sq_inplace_repeat;
1341
0
            if (f == NULL)
1342
0
                f = mv->sq_repeat;
1343
0
            if (f != NULL)
1344
0
                return sequence_repeat(f, v, w);
1345
0
        }
1346
0
        else if (mw != NULL) {
1347
            /* Note that the right hand operand should not be
1348
             * mutated in this case so sq_inplace_repeat is not
1349
             * used. */
1350
0
            if (mw->sq_repeat)
1351
0
                return sequence_repeat(mw->sq_repeat, w, v);
1352
0
        }
1353
0
        result = binop_type_error(v, w, "*=");
1354
0
    }
1355
0
    return result;
1356
0
}
1357
1358
PyObject *
1359
PyNumber_InPlacePower(PyObject *v, PyObject *w, PyObject *z)
1360
0
{
1361
0
    return ternary_iop(v, w, z, NB_SLOT(nb_inplace_power),
1362
0
                                NB_SLOT(nb_power), "**=");
1363
0
}
1364
1365
PyObject *
1366
_PyNumber_InPlacePowerNoMod(PyObject *lhs, PyObject *rhs)
1367
0
{
1368
0
    return PyNumber_InPlacePower(lhs, rhs, Py_None);
1369
0
}
1370
1371
1372
/* Unary operators and functions */
1373
1374
#define UNARY_FUNC(func, op, meth_name, descr)                           \
1375
    PyObject *                                                           \
1376
870k
    func(PyObject *o) {                                                  \
1377
870k
        if (o == NULL) {                                                 \
1378
0
            return null_error();                                         \
1379
0
        }                                                                \
1380
870k
                                                                         \
1381
870k
        PyNumberMethods *m = Py_TYPE(o)->tp_as_number;                   \
1382
870k
        if (m && m->op) {                                                \
1383
870k
            PyObject *res = (*m->op)(o);                                 \
1384
870k
            assert(_Py_CheckSlotResult(o, #meth_name, res != NULL));     \
1385
870k
            return res;                                                  \
1386
870k
        }                                                                \
1387
870k
                                                                         \
1388
870k
        return type_error("bad operand type for "descr": '%.200s'", o);  \
1389
870k
    }
1390
1391
663k
UNARY_FUNC(PyNumber_Negative, nb_negative, __neg__, "unary -")
1392
0
UNARY_FUNC(PyNumber_Positive, nb_positive, __pos__, "unary +")
1393
190k
UNARY_FUNC(PyNumber_Invert, nb_invert, __invert__, "unary ~")
1394
16.7k
UNARY_FUNC(PyNumber_Absolute, nb_absolute, __abs__, "abs()")
1395
1396
1397
int
1398
PyIndex_Check(PyObject *obj)
1399
42.6M
{
1400
42.6M
    return _PyIndex_Check(obj);
1401
42.6M
}
1402
1403
1404
/* Return a Python int from the object item.
1405
   Can return an instance of int subclass.
1406
   Raise TypeError if the result is not an int
1407
   or if the object cannot be interpreted as an index.
1408
*/
1409
PyObject *
1410
_PyNumber_Index(PyObject *item)
1411
423M
{
1412
423M
    if (item == NULL) {
1413
0
        return null_error();
1414
0
    }
1415
1416
423M
    if (PyLong_Check(item)) {
1417
423M
        return Py_NewRef(item);
1418
423M
    }
1419
30.9k
    if (!_PyIndex_Check(item)) {
1420
30.9k
        PyErr_Format(PyExc_TypeError,
1421
30.9k
                     "'%.200s' object cannot be interpreted "
1422
30.9k
                     "as an integer", Py_TYPE(item)->tp_name);
1423
30.9k
        return NULL;
1424
30.9k
    }
1425
1426
0
    PyObject *result = Py_TYPE(item)->tp_as_number->nb_index(item);
1427
0
    assert(_Py_CheckSlotResult(item, "__index__", result != NULL));
1428
0
    if (!result || PyLong_CheckExact(result)) {
1429
0
        return result;
1430
0
    }
1431
1432
0
    if (!PyLong_Check(result)) {
1433
0
        PyErr_Format(PyExc_TypeError,
1434
0
                     "%T.__index__() must return an int, not %T",
1435
0
                     item, result);
1436
0
        Py_DECREF(result);
1437
0
        return NULL;
1438
0
    }
1439
    /* Issue #17576: warn if 'result' not of exact type int. */
1440
0
    if (PyErr_WarnFormat(PyExc_DeprecationWarning, 1,
1441
0
            "%T.__index__() must return an int, not %T.  "
1442
0
            "The ability to return an instance of a strict subclass of int "
1443
0
            "is deprecated, and may be removed in a future version of Python.",
1444
0
            item, result)) {
1445
0
        Py_DECREF(result);
1446
0
        return NULL;
1447
0
    }
1448
0
    return result;
1449
0
}
1450
1451
/* Return an exact Python int from the object item.
1452
   Raise TypeError if the result is not an int
1453
   or if the object cannot be interpreted as an index.
1454
*/
1455
PyObject *
1456
PyNumber_Index(PyObject *item)
1457
18.6M
{
1458
18.6M
    PyObject *result = _PyNumber_Index(item);
1459
18.6M
    if (result != NULL && !PyLong_CheckExact(result)) {
1460
0
        Py_SETREF(result, _PyLong_Copy((PyLongObject *)result));
1461
0
    }
1462
18.6M
    return result;
1463
18.6M
}
1464
1465
/* Return an error on Overflow only if err is not NULL*/
1466
1467
Py_ssize_t
1468
PyNumber_AsSsize_t(PyObject *item, PyObject *err)
1469
339M
{
1470
339M
    Py_ssize_t result;
1471
339M
    PyObject *runerr;
1472
339M
    PyObject *value = _PyNumber_Index(item);
1473
339M
    if (value == NULL)
1474
3.01k
        return -1;
1475
1476
    /* We're done if PyLong_AsSsize_t() returns without error. */
1477
339M
    result = PyLong_AsSsize_t(value);
1478
339M
    if (result != -1)
1479
310M
        goto finish;
1480
1481
28.5M
    PyThreadState *tstate = _PyThreadState_GET();
1482
28.5M
    runerr = _PyErr_Occurred(tstate);
1483
28.5M
    if (!runerr) {
1484
28.5M
        goto finish;
1485
28.5M
    }
1486
1487
    /* Error handling code -- only manage OverflowError differently */
1488
29
    if (!PyErr_GivenExceptionMatches(runerr, PyExc_OverflowError)) {
1489
0
        goto finish;
1490
0
    }
1491
29
    _PyErr_Clear(tstate);
1492
1493
    /* If no error-handling desired then the default clipping
1494
       is sufficient. */
1495
29
    if (!err) {
1496
1
        assert(PyLong_Check(value));
1497
        /* Whether or not it is less than or equal to
1498
           zero is determined by the sign of ob_size
1499
        */
1500
1
        if (_PyLong_IsNegative((PyLongObject *)value))
1501
0
            result = PY_SSIZE_T_MIN;
1502
1
        else
1503
1
            result = PY_SSIZE_T_MAX;
1504
1
    }
1505
28
    else {
1506
        /* Otherwise replace the error with caller's error object. */
1507
28
        _PyErr_Format(tstate, err,
1508
28
                      "cannot fit '%.200s' into an index-sized integer",
1509
28
                      Py_TYPE(item)->tp_name);
1510
28
    }
1511
1512
339M
 finish:
1513
339M
    Py_DECREF(value);
1514
339M
    return result;
1515
29
}
1516
1517
1518
PyObject *
1519
PyNumber_Long(PyObject *o)
1520
4.84M
{
1521
4.84M
    PyObject *result;
1522
4.84M
    PyNumberMethods *m;
1523
4.84M
    Py_buffer view;
1524
1525
4.84M
    if (o == NULL) {
1526
0
        return null_error();
1527
0
    }
1528
1529
4.84M
    if (PyLong_CheckExact(o)) {
1530
122k
        return Py_NewRef(o);
1531
122k
    }
1532
4.72M
    m = Py_TYPE(o)->tp_as_number;
1533
4.72M
    if (m && m->nb_int) { /* This should include subclasses of int */
1534
        /* Convert using the nb_int slot, which should return something
1535
           of exact type int. */
1536
108k
        result = m->nb_int(o);
1537
108k
        assert(_Py_CheckSlotResult(o, "__int__", result != NULL));
1538
108k
        if (!result || PyLong_CheckExact(result)) {
1539
108k
            return result;
1540
108k
        }
1541
1542
0
        if (!PyLong_Check(result)) {
1543
0
            PyErr_Format(PyExc_TypeError,
1544
0
                         "%T.__int__() must return an int, not %T",
1545
0
                         o, result);
1546
0
            Py_DECREF(result);
1547
0
            return NULL;
1548
0
        }
1549
        /* Issue #17576: warn if 'result' not of exact type int. */
1550
0
        if (PyErr_WarnFormat(PyExc_DeprecationWarning, 1,
1551
0
                "%T.__int__() must return an int, not %T.  "
1552
0
                "The ability to return an instance of a strict subclass of int "
1553
0
                "is deprecated, and may be removed in a future version of Python.",
1554
0
                o, result)) {
1555
0
            Py_DECREF(result);
1556
0
            return NULL;
1557
0
        }
1558
0
        Py_SETREF(result, _PyLong_Copy((PyLongObject *)result));
1559
0
        return result;
1560
0
    }
1561
4.61M
    if (m && m->nb_index) {
1562
0
        return PyNumber_Index(o);
1563
0
    }
1564
1565
4.61M
    if (PyUnicode_Check(o))
1566
        /* The below check is done in PyLong_FromUnicodeObject(). */
1567
4.22M
        return PyLong_FromUnicodeObject(o, 10);
1568
1569
392k
    if (PyBytes_Check(o))
1570
        /* need to do extra error checking that PyLong_FromString()
1571
         * doesn't do.  In particular int('9\x005') must raise an
1572
         * exception, not truncate at the null.
1573
         */
1574
392k
        return _PyLong_FromBytes(PyBytes_AS_STRING(o),
1575
392k
                                 PyBytes_GET_SIZE(o), 10);
1576
1577
0
    if (PyByteArray_Check(o))
1578
0
        return _PyLong_FromBytes(PyByteArray_AS_STRING(o),
1579
0
                                 PyByteArray_GET_SIZE(o), 10);
1580
1581
0
    if (PyObject_GetBuffer(o, &view, PyBUF_SIMPLE) == 0) {
1582
0
        PyObject *bytes;
1583
1584
        /* Copy to NUL-terminated buffer. */
1585
0
        bytes = PyBytes_FromStringAndSize((const char *)view.buf, view.len);
1586
0
        if (bytes == NULL) {
1587
0
            PyBuffer_Release(&view);
1588
0
            return NULL;
1589
0
        }
1590
0
        result = _PyLong_FromBytes(PyBytes_AS_STRING(bytes),
1591
0
                                   PyBytes_GET_SIZE(bytes), 10);
1592
0
        Py_DECREF(bytes);
1593
0
        PyBuffer_Release(&view);
1594
0
        return result;
1595
0
    }
1596
1597
0
    return type_error("int() argument must be a string, a bytes-like object "
1598
0
                      "or a real number, not '%.200s'", o);
1599
0
}
1600
1601
PyObject *
1602
PyNumber_Float(PyObject *o)
1603
12
{
1604
12
    if (o == NULL) {
1605
0
        return null_error();
1606
0
    }
1607
1608
12
    if (PyFloat_CheckExact(o)) {
1609
8
        return Py_NewRef(o);
1610
8
    }
1611
1612
4
    PyNumberMethods *m = Py_TYPE(o)->tp_as_number;
1613
4
    if (m && m->nb_float) { /* This should include subclasses of float */
1614
4
        PyObject *res = m->nb_float(o);
1615
4
        assert(_Py_CheckSlotResult(o, "__float__", res != NULL));
1616
4
        if (!res || PyFloat_CheckExact(res)) {
1617
4
            return res;
1618
4
        }
1619
1620
0
        if (!PyFloat_Check(res)) {
1621
0
            PyErr_Format(PyExc_TypeError,
1622
0
                         "%T.__float__() must return a float, not %T", o, res);
1623
0
            Py_DECREF(res);
1624
0
            return NULL;
1625
0
        }
1626
        /* Issue #26983: warn if 'res' not of exact type float. */
1627
0
        if (PyErr_WarnFormat(PyExc_DeprecationWarning, 1,
1628
0
                "%T.__float__() must return a float, not %T.  "
1629
0
                "The ability to return an instance of a strict subclass of float "
1630
0
                "is deprecated, and may be removed in a future version of Python.",
1631
0
                o, res)) {
1632
0
            Py_DECREF(res);
1633
0
            return NULL;
1634
0
        }
1635
0
        double val = PyFloat_AS_DOUBLE(res);
1636
0
        Py_DECREF(res);
1637
0
        return PyFloat_FromDouble(val);
1638
0
    }
1639
1640
0
    if (m && m->nb_index) {
1641
0
        PyObject *res = _PyNumber_Index(o);
1642
0
        if (!res) {
1643
0
            return NULL;
1644
0
        }
1645
0
        double val = PyLong_AsDouble(res);
1646
0
        Py_DECREF(res);
1647
0
        if (val == -1.0 && PyErr_Occurred()) {
1648
0
            return NULL;
1649
0
        }
1650
0
        return PyFloat_FromDouble(val);
1651
0
    }
1652
1653
    /* A float subclass with nb_float == NULL */
1654
0
    if (PyFloat_Check(o)) {
1655
0
        return PyFloat_FromDouble(PyFloat_AS_DOUBLE(o));
1656
0
    }
1657
0
    return PyFloat_FromString(o);
1658
0
}
1659
1660
1661
PyObject *
1662
PyNumber_ToBase(PyObject *n, int base)
1663
5.27M
{
1664
5.27M
    if (!(base == 2 || base == 8 || base == 10 || base == 16)) {
1665
0
        PyErr_SetString(PyExc_SystemError,
1666
0
                        "PyNumber_ToBase: base must be 2, 8, 10 or 16");
1667
0
        return NULL;
1668
0
    }
1669
5.27M
    PyObject *index = _PyNumber_Index(n);
1670
5.27M
    if (!index)
1671
0
        return NULL;
1672
5.27M
    PyObject *res = _PyLong_Format(index, base);
1673
5.27M
    Py_DECREF(index);
1674
5.27M
    return res;
1675
5.27M
}
1676
1677
1678
/* Operations on sequences */
1679
1680
int
1681
PySequence_Check(PyObject *s)
1682
4.76M
{
1683
4.76M
    if (PyDict_Check(s))
1684
0
        return 0;
1685
4.76M
    return Py_TYPE(s)->tp_as_sequence &&
1686
4.76M
        Py_TYPE(s)->tp_as_sequence->sq_item != NULL;
1687
4.76M
}
1688
1689
Py_ssize_t
1690
PySequence_Size(PyObject *s)
1691
8.70k
{
1692
8.70k
    if (s == NULL) {
1693
0
        null_error();
1694
0
        return -1;
1695
0
    }
1696
1697
8.70k
    PySequenceMethods *m = Py_TYPE(s)->tp_as_sequence;
1698
8.70k
    if (m && m->sq_length) {
1699
8.70k
        Py_ssize_t len = m->sq_length(s);
1700
8.70k
        assert(_Py_CheckSlotResult(s, "__len__", len >= 0));
1701
8.70k
        return len;
1702
8.70k
    }
1703
1704
0
    if (Py_TYPE(s)->tp_as_mapping && Py_TYPE(s)->tp_as_mapping->mp_length) {
1705
0
        type_error("%.200s is not a sequence", s);
1706
0
        return -1;
1707
0
    }
1708
0
    type_error("object of type '%.200s' has no len()", s);
1709
0
    return -1;
1710
0
}
1711
1712
#undef PySequence_Length
1713
Py_ssize_t
1714
PySequence_Length(PyObject *s)
1715
0
{
1716
0
    return PySequence_Size(s);
1717
0
}
1718
#define PySequence_Length PySequence_Size
1719
1720
PyObject *
1721
PySequence_Concat(PyObject *s, PyObject *o)
1722
40
{
1723
40
    if (s == NULL || o == NULL) {
1724
0
        return null_error();
1725
0
    }
1726
1727
40
    PySequenceMethods *m = Py_TYPE(s)->tp_as_sequence;
1728
40
    if (m && m->sq_concat) {
1729
40
        PyObject *res = m->sq_concat(s, o);
1730
40
        assert(_Py_CheckSlotResult(s, "+", res != NULL));
1731
40
        return res;
1732
40
    }
1733
1734
    /* Instances of user classes defining an __add__() method only
1735
       have an nb_add slot, not an sq_concat slot.      So we fall back
1736
       to nb_add if both arguments appear to be sequences. */
1737
0
    if (PySequence_Check(s) && PySequence_Check(o)) {
1738
0
        PyObject *result = BINARY_OP1(s, o, NB_SLOT(nb_add), "+");
1739
0
        if (result != Py_NotImplemented)
1740
0
            return result;
1741
0
        Py_DECREF(result);
1742
0
    }
1743
0
    return type_error("'%.200s' object can't be concatenated", s);
1744
0
}
1745
1746
PyObject *
1747
PySequence_Repeat(PyObject *o, Py_ssize_t count)
1748
0
{
1749
0
    if (o == NULL) {
1750
0
        return null_error();
1751
0
    }
1752
1753
0
    PySequenceMethods *m = Py_TYPE(o)->tp_as_sequence;
1754
0
    if (m && m->sq_repeat) {
1755
0
        PyObject *res = m->sq_repeat(o, count);
1756
0
        assert(_Py_CheckSlotResult(o, "*", res != NULL));
1757
0
        return res;
1758
0
    }
1759
1760
    /* Instances of user classes defining a __mul__() method only
1761
       have an nb_multiply slot, not an sq_repeat slot. so we fall back
1762
       to nb_multiply if o appears to be a sequence. */
1763
0
    if (PySequence_Check(o)) {
1764
0
        PyObject *n, *result;
1765
0
        n = PyLong_FromSsize_t(count);
1766
0
        if (n == NULL)
1767
0
            return NULL;
1768
0
        result = BINARY_OP1(o, n, NB_SLOT(nb_multiply), "*");
1769
0
        Py_DECREF(n);
1770
0
        if (result != Py_NotImplemented)
1771
0
            return result;
1772
0
        Py_DECREF(result);
1773
0
    }
1774
0
    return type_error("'%.200s' object can't be repeated", o);
1775
0
}
1776
1777
PyObject *
1778
PySequence_InPlaceConcat(PyObject *s, PyObject *o)
1779
0
{
1780
0
    if (s == NULL || o == NULL) {
1781
0
        return null_error();
1782
0
    }
1783
1784
0
    PySequenceMethods *m = Py_TYPE(s)->tp_as_sequence;
1785
0
    if (m && m->sq_inplace_concat) {
1786
0
        PyObject *res = m->sq_inplace_concat(s, o);
1787
0
        assert(_Py_CheckSlotResult(s, "+=", res != NULL));
1788
0
        return res;
1789
0
    }
1790
0
    if (m && m->sq_concat) {
1791
0
        PyObject *res = m->sq_concat(s, o);
1792
0
        assert(_Py_CheckSlotResult(s, "+", res != NULL));
1793
0
        return res;
1794
0
    }
1795
1796
0
    if (PySequence_Check(s) && PySequence_Check(o)) {
1797
0
        PyObject *result = BINARY_IOP1(s, o, NB_SLOT(nb_inplace_add),
1798
0
                                       NB_SLOT(nb_add), "+=");
1799
0
        if (result != Py_NotImplemented)
1800
0
            return result;
1801
0
        Py_DECREF(result);
1802
0
    }
1803
0
    return type_error("'%.200s' object can't be concatenated", s);
1804
0
}
1805
1806
PyObject *
1807
PySequence_InPlaceRepeat(PyObject *o, Py_ssize_t count)
1808
0
{
1809
0
    if (o == NULL) {
1810
0
        return null_error();
1811
0
    }
1812
1813
0
    PySequenceMethods *m = Py_TYPE(o)->tp_as_sequence;
1814
0
    if (m && m->sq_inplace_repeat) {
1815
0
        PyObject *res = m->sq_inplace_repeat(o, count);
1816
0
        assert(_Py_CheckSlotResult(o, "*=", res != NULL));
1817
0
        return res;
1818
0
    }
1819
0
    if (m && m->sq_repeat) {
1820
0
        PyObject *res = m->sq_repeat(o, count);
1821
0
        assert(_Py_CheckSlotResult(o, "*", res != NULL));
1822
0
        return res;
1823
0
    }
1824
1825
0
    if (PySequence_Check(o)) {
1826
0
        PyObject *n, *result;
1827
0
        n = PyLong_FromSsize_t(count);
1828
0
        if (n == NULL)
1829
0
            return NULL;
1830
0
        result = BINARY_IOP1(o, n, NB_SLOT(nb_inplace_multiply),
1831
0
                             NB_SLOT(nb_multiply), "*=");
1832
0
        Py_DECREF(n);
1833
0
        if (result != Py_NotImplemented)
1834
0
            return result;
1835
0
        Py_DECREF(result);
1836
0
    }
1837
0
    return type_error("'%.200s' object can't be repeated", o);
1838
0
}
1839
1840
PyObject *
1841
PySequence_GetItem(PyObject *s, Py_ssize_t i)
1842
26.3M
{
1843
26.3M
    if (s == NULL) {
1844
0
        return null_error();
1845
0
    }
1846
1847
26.3M
    PySequenceMethods *m = Py_TYPE(s)->tp_as_sequence;
1848
26.3M
    if (m && m->sq_item) {
1849
26.3M
        if (i < 0) {
1850
0
            if (m->sq_length) {
1851
0
                Py_ssize_t l = (*m->sq_length)(s);
1852
0
                assert(_Py_CheckSlotResult(s, "__len__", l >= 0));
1853
0
                if (l < 0) {
1854
0
                    return NULL;
1855
0
                }
1856
0
                i += l;
1857
0
            }
1858
0
        }
1859
26.3M
        PyObject *res = m->sq_item(s, i);
1860
26.3M
        assert(_Py_CheckSlotResult(s, "__getitem__", res != NULL));
1861
26.3M
        return res;
1862
26.3M
    }
1863
1864
0
    if (Py_TYPE(s)->tp_as_mapping && Py_TYPE(s)->tp_as_mapping->mp_subscript) {
1865
0
        return type_error("%.200s is not a sequence", s);
1866
0
    }
1867
0
    return type_error("'%.200s' object does not support indexing", s);
1868
0
}
1869
1870
PyObject *
1871
PySequence_GetSlice(PyObject *s, Py_ssize_t i1, Py_ssize_t i2)
1872
22.3k
{
1873
22.3k
    if (!s) {
1874
0
        return null_error();
1875
0
    }
1876
1877
22.3k
    PyMappingMethods *mp = Py_TYPE(s)->tp_as_mapping;
1878
22.3k
    if (mp && mp->mp_subscript) {
1879
22.3k
        PyObject *slice = _PySlice_FromIndices(i1, i2);
1880
22.3k
        if (!slice) {
1881
0
            return NULL;
1882
0
        }
1883
22.3k
        PyObject *res = mp->mp_subscript(s, slice);
1884
22.3k
        assert(_Py_CheckSlotResult(s, "__getitem__", res != NULL));
1885
22.3k
        Py_DECREF(slice);
1886
22.3k
        return res;
1887
22.3k
    }
1888
1889
0
    return type_error("'%.200s' object is unsliceable", s);
1890
22.3k
}
1891
1892
int
1893
PySequence_SetItem(PyObject *s, Py_ssize_t i, PyObject *o)
1894
0
{
1895
0
    if (s == NULL) {
1896
0
        null_error();
1897
0
        return -1;
1898
0
    }
1899
1900
0
    PySequenceMethods *m = Py_TYPE(s)->tp_as_sequence;
1901
0
    if (m && m->sq_ass_item) {
1902
0
        if (i < 0) {
1903
0
            if (m->sq_length) {
1904
0
                Py_ssize_t l = (*m->sq_length)(s);
1905
0
                assert(_Py_CheckSlotResult(s, "__len__", l >= 0));
1906
0
                if (l < 0) {
1907
0
                    return -1;
1908
0
                }
1909
0
                i += l;
1910
0
            }
1911
0
        }
1912
0
        int res = m->sq_ass_item(s, i, o);
1913
0
        assert(_Py_CheckSlotResult(s, "__setitem__", res >= 0));
1914
0
        return res;
1915
0
    }
1916
1917
0
    if (Py_TYPE(s)->tp_as_mapping && Py_TYPE(s)->tp_as_mapping->mp_ass_subscript) {
1918
0
        type_error("%.200s is not a sequence", s);
1919
0
        return -1;
1920
0
    }
1921
0
    type_error("'%.200s' object does not support item assignment", s);
1922
0
    return -1;
1923
0
}
1924
1925
int
1926
PySequence_DelItem(PyObject *s, Py_ssize_t i)
1927
4.55k
{
1928
4.55k
    if (s == NULL) {
1929
0
        null_error();
1930
0
        return -1;
1931
0
    }
1932
1933
4.55k
    PySequenceMethods *m = Py_TYPE(s)->tp_as_sequence;
1934
4.55k
    if (m && m->sq_ass_item) {
1935
4.55k
        if (i < 0) {
1936
0
            if (m->sq_length) {
1937
0
                Py_ssize_t l = (*m->sq_length)(s);
1938
0
                assert(_Py_CheckSlotResult(s, "__len__", l >= 0));
1939
0
                if (l < 0) {
1940
0
                    return -1;
1941
0
                }
1942
0
                i += l;
1943
0
            }
1944
0
        }
1945
4.55k
        int res = m->sq_ass_item(s, i, (PyObject *)NULL);
1946
4.55k
        assert(_Py_CheckSlotResult(s, "__delitem__", res >= 0));
1947
4.55k
        return res;
1948
4.55k
    }
1949
1950
0
    if (Py_TYPE(s)->tp_as_mapping && Py_TYPE(s)->tp_as_mapping->mp_ass_subscript) {
1951
0
        type_error("%.200s is not a sequence", s);
1952
0
        return -1;
1953
0
    }
1954
0
    type_error("'%.200s' object doesn't support item deletion", s);
1955
0
    return -1;
1956
0
}
1957
1958
int
1959
PySequence_SetSlice(PyObject *s, Py_ssize_t i1, Py_ssize_t i2, PyObject *o)
1960
0
{
1961
0
    if (s == NULL) {
1962
0
        null_error();
1963
0
        return -1;
1964
0
    }
1965
1966
0
    PyMappingMethods *mp = Py_TYPE(s)->tp_as_mapping;
1967
0
    if (mp && mp->mp_ass_subscript) {
1968
0
        PyObject *slice = _PySlice_FromIndices(i1, i2);
1969
0
        if (!slice)
1970
0
            return -1;
1971
0
        int res = mp->mp_ass_subscript(s, slice, o);
1972
0
        assert(_Py_CheckSlotResult(s, "__setitem__", res >= 0));
1973
0
        Py_DECREF(slice);
1974
0
        return res;
1975
0
    }
1976
1977
0
    type_error("'%.200s' object doesn't support slice assignment", s);
1978
0
    return -1;
1979
0
}
1980
1981
int
1982
PySequence_DelSlice(PyObject *s, Py_ssize_t i1, Py_ssize_t i2)
1983
0
{
1984
0
    if (s == NULL) {
1985
0
        null_error();
1986
0
        return -1;
1987
0
    }
1988
1989
0
    PyMappingMethods *mp = Py_TYPE(s)->tp_as_mapping;
1990
0
    if (mp && mp->mp_ass_subscript) {
1991
0
        PyObject *slice = _PySlice_FromIndices(i1, i2);
1992
0
        if (!slice) {
1993
0
            return -1;
1994
0
        }
1995
0
        int res = mp->mp_ass_subscript(s, slice, NULL);
1996
0
        assert(_Py_CheckSlotResult(s, "__delitem__", res >= 0));
1997
0
        Py_DECREF(slice);
1998
0
        return res;
1999
0
    }
2000
0
    type_error("'%.200s' object doesn't support slice deletion", s);
2001
0
    return -1;
2002
0
}
2003
2004
PyObject *
2005
PySequence_Tuple(PyObject *v)
2006
2.34M
{
2007
2.34M
    PyObject *it;  /* iter(v) */
2008
2009
2.34M
    if (v == NULL) {
2010
0
        return null_error();
2011
0
    }
2012
2013
    /* Special-case the common tuple and list cases, for efficiency. */
2014
2.34M
    if (PyTuple_CheckExact(v)) {
2015
        /* Note that we can't know whether it's safe to return
2016
           a tuple *subclass* instance as-is, hence the restriction
2017
           to exact tuples here.  In contrast, lists always make
2018
           a copy, so there's no need for exactness below. */
2019
1.96M
        return Py_NewRef(v);
2020
1.96M
    }
2021
372k
    if (PyList_CheckExact(v))
2022
295k
        return PyList_AsTuple(v);
2023
2024
    /* Get iterator. */
2025
77.4k
    it = PyObject_GetIter(v);
2026
77.4k
    if (it == NULL)
2027
0
        return NULL;
2028
2029
77.4k
    Py_ssize_t n;
2030
77.4k
    PyObject *buffer[8];
2031
391k
    for (n = 0; n < 8; n++) {
2032
390k
        PyObject *item = PyIter_Next(it);
2033
390k
        if (item == NULL) {
2034
76.2k
            if (PyErr_Occurred()) {
2035
127
                goto fail;
2036
127
            }
2037
76.0k
            Py_DECREF(it);
2038
76.0k
            return _PyTuple_FromArraySteal(buffer, n);
2039
76.2k
        }
2040
314k
        buffer[n] = item;
2041
314k
    }
2042
1.26k
    PyListObject *list = (PyListObject *)PyList_New(16);
2043
1.26k
    if (list == NULL) {
2044
0
        goto fail;
2045
0
    }
2046
1.26k
    assert(n == 8);
2047
1.26k
    Py_SET_SIZE(list, n);
2048
11.3k
    for (Py_ssize_t j = 0; j < n; j++) {
2049
10.1k
        PyList_SET_ITEM(list, j, buffer[j]);
2050
10.1k
    }
2051
6.28M
    for (;;) {
2052
6.28M
        PyObject *item = PyIter_Next(it);
2053
6.28M
        if (item == NULL) {
2054
1.26k
            if (PyErr_Occurred()) {
2055
328
                Py_DECREF(list);
2056
328
                Py_DECREF(it);
2057
328
                return NULL;
2058
328
            }
2059
938
            break;
2060
1.26k
        }
2061
6.28M
        if (_PyList_AppendTakeRef(list, item) < 0) {
2062
0
            Py_DECREF(list);
2063
0
            Py_DECREF(it);
2064
0
            return NULL;
2065
0
        }
2066
6.28M
    }
2067
938
    Py_DECREF(it);
2068
938
    PyObject *res = _PyList_AsTupleAndClear(list);
2069
938
    Py_DECREF(list);
2070
938
    return res;
2071
127
fail:
2072
127
    Py_DECREF(it);
2073
307
    while (n > 0) {
2074
180
        n--;
2075
180
        Py_DECREF(buffer[n]);
2076
180
    }
2077
127
    return NULL;
2078
1.26k
}
2079
2080
PyObject *
2081
PySequence_List(PyObject *v)
2082
10.6M
{
2083
10.6M
    PyObject *result;  /* result list */
2084
10.6M
    PyObject *rv;          /* return value from PyList_Extend */
2085
2086
10.6M
    if (v == NULL) {
2087
0
        return null_error();
2088
0
    }
2089
2090
10.6M
    result = PyList_New(0);
2091
10.6M
    if (result == NULL)
2092
0
        return NULL;
2093
2094
10.6M
    rv = _PyList_Extend((PyListObject *)result, v);
2095
10.6M
    if (rv == NULL) {
2096
659
        Py_DECREF(result);
2097
659
        return NULL;
2098
659
    }
2099
10.6M
    Py_DECREF(rv);
2100
10.6M
    return result;
2101
10.6M
}
2102
2103
PyObject *
2104
PySequence_Fast(PyObject *v, const char *m)
2105
44.7M
{
2106
44.7M
    PyObject *it;
2107
2108
44.7M
    if (v == NULL) {
2109
0
        return null_error();
2110
0
    }
2111
2112
44.7M
    if (PyList_CheckExact(v) || PyTuple_CheckExact(v)) {
2113
39.3M
        return Py_NewRef(v);
2114
39.3M
    }
2115
2116
5.40M
    it = PyObject_GetIter(v);
2117
5.40M
    if (it == NULL) {
2118
0
        PyThreadState *tstate = _PyThreadState_GET();
2119
0
        if (_PyErr_ExceptionMatches(tstate, PyExc_TypeError)) {
2120
0
            _PyErr_SetString(tstate, PyExc_TypeError, m);
2121
0
        }
2122
0
        return NULL;
2123
0
    }
2124
2125
5.40M
    v = PySequence_List(it);
2126
5.40M
    Py_DECREF(it);
2127
2128
5.40M
    return v;
2129
5.40M
}
2130
2131
/* Iterate over seq.  Result depends on the operation:
2132
   PY_ITERSEARCH_COUNT:  -1 if error, else # of times obj appears in seq.
2133
   PY_ITERSEARCH_INDEX:  0-based index of first occurrence of obj in seq;
2134
    set ValueError and return -1 if none found; also return -1 on error.
2135
   PY_ITERSEARCH_CONTAINS:  return 1 if obj in seq, else 0; -1 on error.
2136
*/
2137
Py_ssize_t
2138
_PySequence_IterSearch(PyObject *seq, PyObject *obj, int operation)
2139
224
{
2140
224
    Py_ssize_t n;
2141
224
    int wrapped;  /* for PY_ITERSEARCH_INDEX, true iff n wrapped around */
2142
224
    PyObject *it;  /* iter(seq) */
2143
2144
224
    if (seq == NULL || obj == NULL) {
2145
0
        null_error();
2146
0
        return -1;
2147
0
    }
2148
2149
224
    it = PyObject_GetIter(seq);
2150
224
    if (it == NULL) {
2151
0
        if (PyErr_ExceptionMatches(PyExc_TypeError)) {
2152
0
            if (operation == PY_ITERSEARCH_CONTAINS) {
2153
0
                type_error(
2154
0
                    "argument of type '%.200s' is not a container or iterable",
2155
0
                    seq
2156
0
                    );
2157
0
            }
2158
0
            else {
2159
0
                type_error("argument of type '%.200s' is not iterable", seq);
2160
0
            }
2161
0
        }
2162
0
        return -1;
2163
0
    }
2164
2165
224
    n = wrapped = 0;
2166
244
    for (;;) {
2167
244
        int cmp;
2168
244
        PyObject *item = PyIter_Next(it);
2169
244
        if (item == NULL) {
2170
8
            if (PyErr_Occurred())
2171
0
                goto Fail;
2172
8
            break;
2173
8
        }
2174
2175
236
        cmp = PyObject_RichCompareBool(item, obj, Py_EQ);
2176
236
        Py_DECREF(item);
2177
236
        if (cmp < 0)
2178
0
            goto Fail;
2179
236
        if (cmp > 0) {
2180
216
            switch (operation) {
2181
0
            case PY_ITERSEARCH_COUNT:
2182
0
                if (n == PY_SSIZE_T_MAX) {
2183
0
                    PyErr_SetString(PyExc_OverflowError,
2184
0
                           "count exceeds C integer size");
2185
0
                    goto Fail;
2186
0
                }
2187
0
                ++n;
2188
0
                break;
2189
2190
216
            case PY_ITERSEARCH_INDEX:
2191
216
                if (wrapped) {
2192
0
                    PyErr_SetString(PyExc_OverflowError,
2193
0
                           "index exceeds C integer size");
2194
0
                    goto Fail;
2195
0
                }
2196
216
                goto Done;
2197
2198
216
            case PY_ITERSEARCH_CONTAINS:
2199
0
                n = 1;
2200
0
                goto Done;
2201
2202
0
            default:
2203
0
                Py_UNREACHABLE();
2204
216
            }
2205
216
        }
2206
2207
20
        if (operation == PY_ITERSEARCH_INDEX) {
2208
12
            if (n == PY_SSIZE_T_MAX)
2209
0
                wrapped = 1;
2210
12
            ++n;
2211
12
        }
2212
20
    }
2213
2214
8
    if (operation != PY_ITERSEARCH_INDEX)
2215
8
        goto Done;
2216
2217
0
    PyErr_SetString(PyExc_ValueError,
2218
0
                    "sequence.index(x): x not in sequence");
2219
    /* fall into failure code */
2220
0
Fail:
2221
0
    n = -1;
2222
    /* fall through */
2223
224
Done:
2224
224
    Py_DECREF(it);
2225
224
    return n;
2226
2227
0
}
2228
2229
/* Return # of times o appears in s. */
2230
Py_ssize_t
2231
PySequence_Count(PyObject *s, PyObject *o)
2232
0
{
2233
0
    return _PySequence_IterSearch(s, o, PY_ITERSEARCH_COUNT);
2234
0
}
2235
2236
/* Return -1 if error; 1 if ob in seq; 0 if ob not in seq.
2237
 * Use sq_contains if possible, else defer to _PySequence_IterSearch().
2238
 */
2239
int
2240
PySequence_Contains(PyObject *seq, PyObject *ob)
2241
226M
{
2242
226M
    PySequenceMethods *sqm = Py_TYPE(seq)->tp_as_sequence;
2243
226M
    if (sqm != NULL && sqm->sq_contains != NULL) {
2244
226M
        int res = (*sqm->sq_contains)(seq, ob);
2245
226M
        assert(_Py_CheckSlotResult(seq, "__contains__", res >= 0));
2246
226M
        return res;
2247
226M
    }
2248
8
    Py_ssize_t result = _PySequence_IterSearch(seq, ob, PY_ITERSEARCH_CONTAINS);
2249
8
    return Py_SAFE_DOWNCAST(result, Py_ssize_t, int);
2250
226M
}
2251
2252
/* Backwards compatibility */
2253
#undef PySequence_In
2254
int
2255
PySequence_In(PyObject *w, PyObject *v)
2256
0
{
2257
0
    return PySequence_Contains(w, v);
2258
0
}
2259
2260
Py_ssize_t
2261
PySequence_Index(PyObject *s, PyObject *o)
2262
216
{
2263
216
    return _PySequence_IterSearch(s, o, PY_ITERSEARCH_INDEX);
2264
216
}
2265
2266
/* Operations on mappings */
2267
2268
int
2269
PyMapping_Check(PyObject *o)
2270
13.2M
{
2271
13.2M
    return o && Py_TYPE(o)->tp_as_mapping &&
2272
11.8M
        Py_TYPE(o)->tp_as_mapping->mp_subscript;
2273
13.2M
}
2274
2275
Py_ssize_t
2276
PyMapping_Size(PyObject *o)
2277
84.1k
{
2278
84.1k
    if (o == NULL) {
2279
0
        null_error();
2280
0
        return -1;
2281
0
    }
2282
2283
84.1k
    PyMappingMethods *m = Py_TYPE(o)->tp_as_mapping;
2284
84.1k
    if (m && m->mp_length) {
2285
84.1k
        Py_ssize_t len = m->mp_length(o);
2286
84.1k
        assert(_Py_CheckSlotResult(o, "__len__", len >= 0));
2287
84.1k
        return len;
2288
84.1k
    }
2289
2290
0
    if (Py_TYPE(o)->tp_as_sequence && Py_TYPE(o)->tp_as_sequence->sq_length) {
2291
0
        type_error("%.200s is not a mapping", o);
2292
0
        return -1;
2293
0
    }
2294
    /* PyMapping_Size() can be called from PyObject_Size(). */
2295
0
    type_error("object of type '%.200s' has no len()", o);
2296
0
    return -1;
2297
0
}
2298
2299
#undef PyMapping_Length
2300
Py_ssize_t
2301
PyMapping_Length(PyObject *o)
2302
0
{
2303
0
    return PyMapping_Size(o);
2304
0
}
2305
#define PyMapping_Length PyMapping_Size
2306
2307
PyObject *
2308
PyMapping_GetItemString(PyObject *o, const char *key)
2309
180
{
2310
180
    PyObject *okey, *r;
2311
2312
180
    if (key == NULL) {
2313
0
        return null_error();
2314
0
    }
2315
2316
180
    okey = PyUnicode_FromString(key);
2317
180
    if (okey == NULL)
2318
0
        return NULL;
2319
180
    r = PyObject_GetItem(o, okey);
2320
180
    Py_DECREF(okey);
2321
180
    return r;
2322
180
}
2323
2324
int
2325
PyMapping_GetOptionalItemString(PyObject *obj, const char *key, PyObject **result)
2326
12.4k
{
2327
12.4k
    if (key == NULL) {
2328
0
        *result = NULL;
2329
0
        null_error();
2330
0
        return -1;
2331
0
    }
2332
12.4k
    PyObject *okey = PyUnicode_FromString(key);
2333
12.4k
    if (okey == NULL) {
2334
0
        *result = NULL;
2335
0
        return -1;
2336
0
    }
2337
12.4k
    int rc = PyMapping_GetOptionalItem(obj, okey, result);
2338
12.4k
    Py_DECREF(okey);
2339
12.4k
    return rc;
2340
12.4k
}
2341
2342
int
2343
PyMapping_SetItemString(PyObject *o, const char *key, PyObject *value)
2344
241
{
2345
241
    PyObject *okey;
2346
241
    int r;
2347
2348
241
    if (key == NULL) {
2349
0
        null_error();
2350
0
        return -1;
2351
0
    }
2352
2353
241
    okey = PyUnicode_FromString(key);
2354
241
    if (okey == NULL)
2355
0
        return -1;
2356
241
    r = PyObject_SetItem(o, okey, value);
2357
241
    Py_DECREF(okey);
2358
241
    return r;
2359
241
}
2360
2361
int
2362
PyMapping_HasKeyStringWithError(PyObject *obj, const char *key)
2363
0
{
2364
0
    PyObject *res;
2365
0
    int rc = PyMapping_GetOptionalItemString(obj, key, &res);
2366
0
    Py_XDECREF(res);
2367
0
    return rc;
2368
0
}
2369
2370
int
2371
PyMapping_HasKeyWithError(PyObject *obj, PyObject *key)
2372
0
{
2373
0
    PyObject *res;
2374
0
    int rc = PyMapping_GetOptionalItem(obj, key, &res);
2375
0
    Py_XDECREF(res);
2376
0
    return rc;
2377
0
}
2378
2379
int
2380
PyMapping_HasKeyString(PyObject *obj, const char *key)
2381
0
{
2382
0
    PyObject *value;
2383
0
    int rc;
2384
0
    if (obj == NULL) {
2385
        // For backward compatibility.
2386
        // PyMapping_GetOptionalItemString() crashes if obj is NULL.
2387
0
        null_error();
2388
0
        rc = -1;
2389
0
    }
2390
0
    else {
2391
0
        rc = PyMapping_GetOptionalItemString(obj, key, &value);
2392
0
    }
2393
0
    if (rc < 0) {
2394
0
        PyErr_FormatUnraisable(
2395
0
            "Exception ignored in PyMapping_HasKeyString(); consider using "
2396
0
            "PyMapping_HasKeyStringWithError(), "
2397
0
            "PyMapping_GetOptionalItemString() or PyMapping_GetItemString()");
2398
0
        return 0;
2399
0
    }
2400
0
    Py_XDECREF(value);
2401
0
    return rc;
2402
0
}
2403
2404
int
2405
PyMapping_HasKey(PyObject *obj, PyObject *key)
2406
0
{
2407
0
    PyObject *value;
2408
0
    int rc;
2409
0
    if (obj == NULL || key == NULL) {
2410
        // For backward compatibility.
2411
        // PyMapping_GetOptionalItem() crashes if any of them is NULL.
2412
0
        null_error();
2413
0
        rc = -1;
2414
0
    }
2415
0
    else {
2416
0
        rc = PyMapping_GetOptionalItem(obj, key, &value);
2417
0
    }
2418
0
    if (rc < 0) {
2419
0
        PyErr_FormatUnraisable(
2420
0
            "Exception ignored in PyMapping_HasKey(); consider using "
2421
0
            "PyMapping_HasKeyWithError(), "
2422
0
            "PyMapping_GetOptionalItem() or PyObject_GetItem()");
2423
0
        return 0;
2424
0
    }
2425
0
    Py_XDECREF(value);
2426
0
    return rc;
2427
0
}
2428
2429
/* This function is quite similar to PySequence_Fast(), but specialized to be
2430
   a helper for PyMapping_Keys(), PyMapping_Items() and PyMapping_Values().
2431
 */
2432
static PyObject *
2433
method_output_as_list(PyObject *o, PyObject *meth)
2434
2.48k
{
2435
2.48k
    PyObject *it, *result, *meth_output;
2436
2437
2.48k
    assert(o != NULL);
2438
2.48k
    meth_output = PyObject_CallMethodNoArgs(o, meth);
2439
2.48k
    if (meth_output == NULL || PyList_CheckExact(meth_output)) {
2440
8
        return meth_output;
2441
8
    }
2442
2.47k
    it = PyObject_GetIter(meth_output);
2443
2.47k
    if (it == NULL) {
2444
0
        PyThreadState *tstate = _PyThreadState_GET();
2445
0
        if (_PyErr_ExceptionMatches(tstate, PyExc_TypeError)) {
2446
0
            _PyErr_Format(tstate, PyExc_TypeError,
2447
0
                          "%T.%U() must return an iterable, not %T",
2448
0
                          o, meth, meth_output);
2449
0
        }
2450
0
        Py_DECREF(meth_output);
2451
0
        return NULL;
2452
0
    }
2453
2.47k
    Py_DECREF(meth_output);
2454
2.47k
    result = PySequence_List(it);
2455
2.47k
    Py_DECREF(it);
2456
2.47k
    return result;
2457
2.47k
}
2458
2459
PyObject *
2460
PyMapping_Keys(PyObject *o)
2461
842
{
2462
842
    if (o == NULL) {
2463
0
        return null_error();
2464
0
    }
2465
842
    if (PyDict_CheckExact(o)) {
2466
324
        return PyDict_Keys(o);
2467
324
    }
2468
518
    return method_output_as_list(o, &_Py_ID(keys));
2469
842
}
2470
2471
PyObject *
2472
PyMapping_Items(PyObject *o)
2473
1.96k
{
2474
1.96k
    if (o == NULL) {
2475
0
        return null_error();
2476
0
    }
2477
1.96k
    if (PyDict_CheckExact(o)) {
2478
0
        return PyDict_Items(o);
2479
0
    }
2480
1.96k
    return method_output_as_list(o, &_Py_ID(items));
2481
1.96k
}
2482
2483
PyObject *
2484
PyMapping_Values(PyObject *o)
2485
0
{
2486
0
    if (o == NULL) {
2487
0
        return null_error();
2488
0
    }
2489
0
    if (PyDict_CheckExact(o)) {
2490
0
        return PyDict_Values(o);
2491
0
    }
2492
0
    return method_output_as_list(o, &_Py_ID(values));
2493
0
}
2494
2495
/* isinstance(), issubclass() */
2496
2497
/* abstract_get_bases() has logically 4 return states:
2498
 *
2499
 * 1. getattr(cls, '__bases__') could raise an AttributeError
2500
 * 2. getattr(cls, '__bases__') could raise some other exception
2501
 * 3. getattr(cls, '__bases__') could return a tuple
2502
 * 4. getattr(cls, '__bases__') could return something other than a tuple
2503
 *
2504
 * Only state #3 is a non-error state and only it returns a non-NULL object
2505
 * (it returns the retrieved tuple).
2506
 *
2507
 * Any raised AttributeErrors are masked by clearing the exception and
2508
 * returning NULL.  If an object other than a tuple comes out of __bases__,
2509
 * then again, the return value is NULL.  So yes, these two situations
2510
 * produce exactly the same results: NULL is returned and no error is set.
2511
 *
2512
 * If some exception other than AttributeError is raised, then NULL is also
2513
 * returned, but the exception is not cleared.  That's because we want the
2514
 * exception to be propagated along.
2515
 *
2516
 * Callers are expected to test for PyErr_Occurred() when the return value
2517
 * is NULL to decide whether a valid exception should be propagated or not.
2518
 * When there's no exception to propagate, it's customary for the caller to
2519
 * set a TypeError.
2520
 */
2521
static PyObject *
2522
abstract_get_bases(PyObject *cls)
2523
0
{
2524
0
    PyObject *bases;
2525
2526
0
    (void)PyObject_GetOptionalAttr(cls, &_Py_ID(__bases__), &bases);
2527
0
    if (bases != NULL && !PyTuple_Check(bases)) {
2528
0
        Py_DECREF(bases);
2529
0
        return NULL;
2530
0
    }
2531
0
    return bases;
2532
0
}
2533
2534
2535
static int
2536
abstract_issubclass(PyObject *derived, PyObject *cls)
2537
0
{
2538
0
    PyObject *bases = NULL;
2539
0
    Py_ssize_t i, n;
2540
0
    int r = 0;
2541
2542
0
    while (1) {
2543
0
        if (derived == cls) {
2544
0
            Py_XDECREF(bases); /* See below comment */
2545
0
            return 1;
2546
0
        }
2547
        /* Use XSETREF to drop bases reference *after* finishing with
2548
           derived; bases might be the only reference to it.
2549
           XSETREF is used instead of SETREF, because bases is NULL on the
2550
           first iteration of the loop.
2551
        */
2552
0
        Py_XSETREF(bases, abstract_get_bases(derived));
2553
0
        if (bases == NULL) {
2554
0
            if (PyErr_Occurred())
2555
0
                return -1;
2556
0
            return 0;
2557
0
        }
2558
0
        n = PyTuple_GET_SIZE(bases);
2559
0
        if (n == 0) {
2560
0
            Py_DECREF(bases);
2561
0
            return 0;
2562
0
        }
2563
        /* Avoid recursivity in the single inheritance case */
2564
0
        if (n == 1) {
2565
0
            derived = PyTuple_GET_ITEM(bases, 0);
2566
0
            continue;
2567
0
        }
2568
0
        break;
2569
0
    }
2570
0
    assert(n >= 2);
2571
0
    if (_Py_EnterRecursiveCall(" in __issubclass__")) {
2572
0
        Py_DECREF(bases);
2573
0
        return -1;
2574
0
    }
2575
0
    for (i = 0; i < n; i++) {
2576
0
        r = abstract_issubclass(PyTuple_GET_ITEM(bases, i), cls);
2577
0
        if (r != 0) {
2578
0
            break;
2579
0
        }
2580
0
    }
2581
0
    _Py_LeaveRecursiveCall();
2582
0
    Py_DECREF(bases);
2583
0
    return r;
2584
0
}
2585
2586
static int
2587
check_class(PyObject *cls, const char *error)
2588
0
{
2589
0
    PyObject *bases = abstract_get_bases(cls);
2590
0
    if (bases == NULL) {
2591
        /* Do not mask errors. */
2592
0
        PyThreadState *tstate = _PyThreadState_GET();
2593
0
        if (!_PyErr_Occurred(tstate)) {
2594
0
            _PyErr_SetString(tstate, PyExc_TypeError, error);
2595
0
        }
2596
0
        return 0;
2597
0
    }
2598
0
    Py_DECREF(bases);
2599
0
    return -1;
2600
0
}
2601
2602
static int
2603
object_isinstance(PyObject *inst, PyObject *cls)
2604
56.0M
{
2605
56.0M
    PyObject *icls;
2606
56.0M
    int retval;
2607
56.0M
    if (PyType_Check(cls)) {
2608
56.0M
        retval = PyObject_TypeCheck(inst, (PyTypeObject *)cls);
2609
56.0M
        if (retval == 0) {
2610
55.7M
            retval = PyObject_GetOptionalAttr(inst, &_Py_ID(__class__), &icls);
2611
55.7M
            if (icls != NULL) {
2612
55.7M
                if (icls != (PyObject *)(Py_TYPE(inst)) && PyType_Check(icls)) {
2613
0
                    retval = PyType_IsSubtype(
2614
0
                        (PyTypeObject *)icls,
2615
0
                        (PyTypeObject *)cls);
2616
0
                }
2617
55.7M
                else {
2618
55.7M
                    retval = 0;
2619
55.7M
                }
2620
55.7M
                Py_DECREF(icls);
2621
55.7M
            }
2622
55.7M
        }
2623
56.0M
    }
2624
0
    else {
2625
0
        if (!check_class(cls,
2626
0
            "isinstance() arg 2 must be a type, a tuple of types, or a union"))
2627
0
            return -1;
2628
0
        retval = PyObject_GetOptionalAttr(inst, &_Py_ID(__class__), &icls);
2629
0
        if (icls != NULL) {
2630
0
            retval = abstract_issubclass(icls, cls);
2631
0
            Py_DECREF(icls);
2632
0
        }
2633
0
    }
2634
2635
56.0M
    return retval;
2636
56.0M
}
2637
2638
static int
2639
object_recursive_isinstance(PyThreadState *tstate, PyObject *inst, PyObject *cls)
2640
82.2M
{
2641
    /* Quick test for an exact match */
2642
82.2M
    if (Py_IS_TYPE(inst, (PyTypeObject *)cls)) {
2643
24.6M
        return 1;
2644
24.6M
    }
2645
2646
    /* We know what type's __instancecheck__ does. */
2647
57.5M
    if (PyType_CheckExact(cls)) {
2648
56.0M
        return object_isinstance(inst, cls);
2649
56.0M
    }
2650
2651
1.53M
    if (_PyUnion_Check(cls)) {
2652
0
        cls = _Py_union_args(cls);
2653
0
    }
2654
2655
1.53M
    if (PyTuple_Check(cls)) {
2656
        /* Not a general sequence -- that opens up the road to
2657
           recursion and stack overflow. */
2658
1.43M
        if (_Py_EnterRecursiveCallTstate(tstate, " in __instancecheck__")) {
2659
0
            return -1;
2660
0
        }
2661
1.43M
        Py_ssize_t n = PyTuple_GET_SIZE(cls);
2662
1.43M
        int r = 0;
2663
3.23M
        for (Py_ssize_t i = 0; i < n; ++i) {
2664
2.39M
            PyObject *item = PyTuple_GET_ITEM(cls, i);
2665
2.39M
            r = object_recursive_isinstance(tstate, inst, item);
2666
2.39M
            if (r != 0) {
2667
                /* either found it, or got an error */
2668
604k
                break;
2669
604k
            }
2670
2.39M
        }
2671
1.43M
        _Py_LeaveRecursiveCallTstate(tstate);
2672
1.43M
        return r;
2673
1.43M
    }
2674
2675
99.3k
    PyObject *checker = _PyObject_LookupSpecial(cls, &_Py_ID(__instancecheck__));
2676
99.3k
    if (checker != NULL) {
2677
99.3k
        if (_Py_EnterRecursiveCallTstate(tstate, " in __instancecheck__")) {
2678
0
            Py_DECREF(checker);
2679
0
            return -1;
2680
0
        }
2681
2682
99.3k
        PyObject *res = PyObject_CallOneArg(checker, inst);
2683
99.3k
        _Py_LeaveRecursiveCallTstate(tstate);
2684
99.3k
        Py_DECREF(checker);
2685
2686
99.3k
        if (res == NULL) {
2687
0
            return -1;
2688
0
        }
2689
99.3k
        int ok = PyObject_IsTrue(res);
2690
99.3k
        Py_DECREF(res);
2691
2692
99.3k
        return ok;
2693
99.3k
    }
2694
0
    else if (_PyErr_Occurred(tstate)) {
2695
0
        return -1;
2696
0
    }
2697
2698
    /* cls has no __instancecheck__() method */
2699
0
    return object_isinstance(inst, cls);
2700
99.3k
}
2701
2702
2703
int
2704
PyObject_IsInstance(PyObject *inst, PyObject *cls)
2705
79.8M
{
2706
79.8M
    PyThreadState *tstate = _PyThreadState_GET();
2707
79.8M
    return object_recursive_isinstance(tstate, inst, cls);
2708
79.8M
}
2709
2710
2711
static  int
2712
recursive_issubclass(PyObject *derived, PyObject *cls)
2713
15.4M
{
2714
15.4M
    if (PyType_Check(cls) && PyType_Check(derived)) {
2715
        /* Fast path (non-recursive) */
2716
15.4M
        return PyType_IsSubtype((PyTypeObject *)derived, (PyTypeObject *)cls);
2717
15.4M
    }
2718
0
    if (!check_class(derived,
2719
0
                     "issubclass() arg 1 must be a class"))
2720
0
        return -1;
2721
2722
0
    if (!_PyUnion_Check(cls) && !check_class(cls,
2723
0
                            "issubclass() arg 2 must be a class,"
2724
0
                            " a tuple of classes, or a union")) {
2725
0
        return -1;
2726
0
    }
2727
2728
0
    return abstract_issubclass(derived, cls);
2729
0
}
2730
2731
static int
2732
object_issubclass(PyThreadState *tstate, PyObject *derived, PyObject *cls)
2733
28.8M
{
2734
28.8M
    PyObject *checker;
2735
2736
    /* We know what type's __subclasscheck__ does. */
2737
28.8M
    if (PyType_CheckExact(cls)) {
2738
        /* Quick test for an exact match */
2739
28.8M
        if (derived == cls)
2740
27.4M
            return 1;
2741
1.32M
        return recursive_issubclass(derived, cls);
2742
28.8M
    }
2743
2744
6.11k
    if (_PyUnion_Check(cls)) {
2745
0
        cls = _Py_union_args(cls);
2746
0
    }
2747
2748
6.11k
    if (PyTuple_Check(cls)) {
2749
2750
16
        if (_Py_EnterRecursiveCallTstate(tstate, " in __subclasscheck__")) {
2751
0
            return -1;
2752
0
        }
2753
16
        Py_ssize_t n = PyTuple_GET_SIZE(cls);
2754
16
        int r = 0;
2755
16
        for (Py_ssize_t i = 0; i < n; ++i) {
2756
16
            PyObject *item = PyTuple_GET_ITEM(cls, i);
2757
16
            r = object_issubclass(tstate, derived, item);
2758
16
            if (r != 0)
2759
                /* either found it, or got an error */
2760
16
                break;
2761
16
        }
2762
16
        _Py_LeaveRecursiveCallTstate(tstate);
2763
16
        return r;
2764
16
    }
2765
2766
6.10k
    checker = _PyObject_LookupSpecial(cls, &_Py_ID(__subclasscheck__));
2767
6.10k
    if (checker != NULL) {
2768
6.10k
        int ok = -1;
2769
6.10k
        if (_Py_EnterRecursiveCallTstate(tstate, " in __subclasscheck__")) {
2770
0
            Py_DECREF(checker);
2771
0
            return ok;
2772
0
        }
2773
6.10k
        PyObject *res = PyObject_CallOneArg(checker, derived);
2774
6.10k
        _Py_LeaveRecursiveCallTstate(tstate);
2775
6.10k
        Py_DECREF(checker);
2776
6.10k
        if (res != NULL) {
2777
6.10k
            ok = PyObject_IsTrue(res);
2778
6.10k
            Py_DECREF(res);
2779
6.10k
        }
2780
6.10k
        return ok;
2781
6.10k
    }
2782
0
    else if (_PyErr_Occurred(tstate)) {
2783
0
        return -1;
2784
0
    }
2785
2786
    /* Can be reached when infinite recursion happens. */
2787
0
    return recursive_issubclass(derived, cls);
2788
6.10k
}
2789
2790
2791
int
2792
PyObject_IsSubclass(PyObject *derived, PyObject *cls)
2793
28.8M
{
2794
28.8M
    PyThreadState *tstate = _PyThreadState_GET();
2795
28.8M
    return object_issubclass(tstate, derived, cls);
2796
28.8M
}
2797
2798
2799
int
2800
_PyObject_RealIsInstance(PyObject *inst, PyObject *cls)
2801
15.4k
{
2802
15.4k
    return object_isinstance(inst, cls);
2803
15.4k
}
2804
2805
int
2806
_PyObject_RealIsSubclass(PyObject *derived, PyObject *cls)
2807
14.1M
{
2808
14.1M
    return recursive_issubclass(derived, cls);
2809
14.1M
}
2810
2811
2812
PyObject *
2813
PyObject_GetIter(PyObject *o)
2814
83.4M
{
2815
83.4M
    PyTypeObject *t = Py_TYPE(o);
2816
83.4M
    getiterfunc f;
2817
2818
83.4M
    f = t->tp_iter;
2819
83.4M
    if (f == NULL) {
2820
2.38M
        if (PySequence_Check(o))
2821
2.38M
            return PySeqIter_New(o);
2822
0
        return type_error("'%.200s' object is not iterable", o);
2823
2.38M
    }
2824
81.0M
    else {
2825
81.0M
        PyObject *res = (*f)(o);
2826
81.0M
        if (res != NULL && !PyIter_Check(res)) {
2827
0
            PyErr_Format(PyExc_TypeError,
2828
0
                         "%T.__iter__() must return an iterator, not %T",
2829
0
                         o, res);
2830
0
            Py_SETREF(res, NULL);
2831
0
        }
2832
81.0M
        return res;
2833
81.0M
    }
2834
83.4M
}
2835
2836
PyObject *
2837
0
PyObject_GetAIter(PyObject *o) {
2838
0
    PyTypeObject *t = Py_TYPE(o);
2839
0
    unaryfunc f;
2840
2841
0
    if (t->tp_as_async == NULL || t->tp_as_async->am_aiter == NULL) {
2842
0
        return type_error("'%.200s' object is not an async iterable", o);
2843
0
    }
2844
0
    f = t->tp_as_async->am_aiter;
2845
0
    PyObject *it = (*f)(o);
2846
0
    if (it != NULL && !PyAIter_Check(it)) {
2847
0
        PyErr_Format(PyExc_TypeError,
2848
0
                     "%T.__aiter__() must return an async iterator, not %T",
2849
0
                     o, it);
2850
0
        Py_SETREF(it, NULL);
2851
0
    }
2852
0
    return it;
2853
0
}
2854
2855
int
2856
PyIter_Check(PyObject *obj)
2857
84.6M
{
2858
84.6M
    PyTypeObject *tp = Py_TYPE(obj);
2859
84.6M
    return (tp->tp_iternext != NULL &&
2860
84.6M
            tp->tp_iternext != &_PyObject_NextNotImplemented);
2861
84.6M
}
2862
2863
int
2864
PyAIter_Check(PyObject *obj)
2865
0
{
2866
0
    PyTypeObject *tp = Py_TYPE(obj);
2867
0
    return (tp->tp_as_async != NULL &&
2868
0
            tp->tp_as_async->am_anext != NULL &&
2869
0
            tp->tp_as_async->am_anext != &_PyObject_NextNotImplemented);
2870
0
}
2871
2872
static int
2873
iternext(PyObject *iter, PyObject **item)
2874
1.78G
{
2875
1.78G
    iternextfunc tp_iternext = Py_TYPE(iter)->tp_iternext;
2876
1.78G
    if ((*item = tp_iternext(iter))) {
2877
1.76G
        return 1;
2878
1.76G
    }
2879
2880
19.5M
    PyThreadState *tstate = _PyThreadState_GET();
2881
    /* When the iterator is exhausted it must return NULL;
2882
     * a StopIteration exception may or may not be set. */
2883
19.5M
    if (!_PyErr_Occurred(tstate)) {
2884
19.4M
        return 0;
2885
19.4M
    }
2886
19.2k
    if (_PyErr_ExceptionMatches(tstate, PyExc_StopIteration)) {
2887
0
        _PyErr_Clear(tstate);
2888
0
        return 0;
2889
0
    }
2890
2891
    /* Error case: an exception (different than StopIteration) is set. */
2892
19.2k
    return -1;
2893
19.2k
}
2894
2895
/* Return 1 and set 'item' to the next item of 'iter' on success.
2896
 * Return 0 and set 'item' to NULL when there are no remaining values.
2897
 * Return -1, set 'item' to NULL and set an exception on error.
2898
 */
2899
int
2900
PyIter_NextItem(PyObject *iter, PyObject **item)
2901
0
{
2902
0
    assert(iter != NULL);
2903
0
    assert(item != NULL);
2904
2905
0
    if (Py_TYPE(iter)->tp_iternext == NULL) {
2906
0
        *item = NULL;
2907
0
        PyErr_Format(PyExc_TypeError, "expected an iterator, got '%T'", iter);
2908
0
        return -1;
2909
0
    }
2910
2911
0
    return iternext(iter, item);
2912
0
}
2913
2914
/* Return next item.
2915
 *
2916
 * If an error occurs, return NULL.  PyErr_Occurred() will be true.
2917
 * If the iteration terminates normally, return NULL and clear the
2918
 * PyExc_StopIteration exception (if it was set).  PyErr_Occurred()
2919
 * will be false.
2920
 * Else return the next object.  PyErr_Occurred() will be false.
2921
 */
2922
PyObject *
2923
PyIter_Next(PyObject *iter)
2924
1.78G
{
2925
1.78G
    PyObject *item;
2926
1.78G
    (void)iternext(iter, &item);
2927
1.78G
    return item;
2928
1.78G
}
2929
2930
PySendResult
2931
PyIter_Send(PyObject *iter, PyObject *arg, PyObject **result)
2932
0
{
2933
0
    assert(arg != NULL);
2934
0
    assert(result != NULL);
2935
0
    if (Py_TYPE(iter)->tp_as_async && Py_TYPE(iter)->tp_as_async->am_send) {
2936
0
        PySendResult res = Py_TYPE(iter)->tp_as_async->am_send(iter, arg, result);
2937
0
        assert(_Py_CheckSlotResult(iter, "am_send", res != PYGEN_ERROR));
2938
0
        return res;
2939
0
    }
2940
0
    if (arg == Py_None && PyIter_Check(iter)) {
2941
0
        *result = Py_TYPE(iter)->tp_iternext(iter);
2942
0
    }
2943
0
    else {
2944
0
        *result = PyObject_CallMethodOneArg(iter, &_Py_ID(send), arg);
2945
0
    }
2946
0
    if (*result != NULL) {
2947
0
        return PYGEN_NEXT;
2948
0
    }
2949
0
    if (_PyGen_FetchStopIterationValue(result) == 0) {
2950
0
        return PYGEN_RETURN;
2951
0
    }
2952
0
    return PYGEN_ERROR;
2953
0
}
2954
2955
PySendResultPair
2956
_PyIter_Send(PyObject *iter, PyObject *arg)
2957
0
{
2958
0
    PySendResultPair pair;
2959
0
    pair.kind = PyIter_Send(iter, arg, &pair.object);
2960
0
    return pair;
2961
0
}