Coverage Report

Created: 2026-02-26 06:53

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/cpython/Objects/tupleobject.c
Line
Count
Source
1
/* Tuple object implementation */
2
3
#include "Python.h"
4
#include "pycore_abstract.h"      // _PyIndex_Check()
5
#include "pycore_ceval.h"         // _PyEval_GetBuiltin()
6
#include "pycore_freelist.h"      // _Py_FREELIST_PUSH()
7
#include "pycore_gc.h"            // _PyObject_GC_IS_TRACKED()
8
#include "pycore_list.h"          // _Py_memory_repeat()
9
#include "pycore_modsupport.h"    // _PyArg_NoKwnames()
10
#include "pycore_object.h"        // _PyObject_GC_TRACK()
11
#include "pycore_stackref.h"      // PyStackRef_AsPyObjectSteal()
12
#include "pycore_tuple.h"         // _PyTupleIterObject
13
14
15
/*[clinic input]
16
class tuple "PyTupleObject *" "&PyTuple_Type"
17
[clinic start generated code]*/
18
/*[clinic end generated code: output=da39a3ee5e6b4b0d input=f051ba3cfdf9a189]*/
19
20
#include "clinic/tupleobject.c.h"
21
22
23
static inline int maybe_freelist_push(PyTupleObject *);
24
25
26
/* Allocate an uninitialized tuple object. Before making it public, following
27
   steps must be done:
28
29
   - Initialize its items.
30
   - Call _PyObject_GC_TRACK() on it.
31
32
   Because the empty tuple is always reused and it's already tracked by GC,
33
   this function must not be called with size == 0 (unless from PyTuple_New()
34
   which wraps this function).
35
*/
36
static PyTupleObject *
37
tuple_alloc(Py_ssize_t size)
38
459M
{
39
459M
    if (size < 0) {
40
0
        PyErr_BadInternalCall();
41
0
        return NULL;
42
0
    }
43
459M
    assert(size != 0);    // The empty tuple is statically allocated.
44
459M
    Py_ssize_t index = size - 1;
45
459M
    if (index < PyTuple_MAXSAVESIZE) {
46
451M
        PyTupleObject *op = _Py_FREELIST_POP(PyTupleObject, tuples[index]);
47
451M
        if (op != NULL) {
48
342M
            _PyTuple_RESET_HASH_CACHE(op);
49
342M
            return op;
50
342M
        }
51
451M
    }
52
    /* Check for overflow */
53
117M
    if ((size_t)size > ((size_t)PY_SSIZE_T_MAX - (sizeof(PyTupleObject) -
54
117M
                sizeof(PyObject *))) / sizeof(PyObject *)) {
55
0
        return (PyTupleObject *)PyErr_NoMemory();
56
0
    }
57
117M
    PyTupleObject *result = PyObject_GC_NewVar(PyTupleObject, &PyTuple_Type, size);
58
117M
    if (result != NULL) {
59
117M
        _PyTuple_RESET_HASH_CACHE(result);
60
117M
    }
61
117M
    return result;
62
117M
}
63
64
// The empty tuple singleton is not tracked by the GC.
65
// It does not contain any Python object.
66
// Note that tuple subclasses have their own empty instances.
67
68
static inline PyObject *
69
tuple_get_empty(void)
70
65.4M
{
71
65.4M
    return (PyObject *)&_Py_SINGLETON(tuple_empty);
72
65.4M
}
73
74
PyObject *
75
PyTuple_New(Py_ssize_t size)
76
49.4M
{
77
49.4M
    PyTupleObject *op;
78
49.4M
    if (size == 0) {
79
984k
        return tuple_get_empty();
80
984k
    }
81
48.4M
    op = tuple_alloc(size);
82
48.4M
    if (op == NULL) {
83
0
        return NULL;
84
0
    }
85
2.10G
    for (Py_ssize_t i = 0; i < size; i++) {
86
2.06G
        op->ob_item[i] = NULL;
87
2.06G
    }
88
48.4M
    _PyObject_GC_TRACK(op);
89
48.4M
    return (PyObject *) op;
90
48.4M
}
91
92
Py_ssize_t
93
PyTuple_Size(PyObject *op)
94
17.8M
{
95
17.8M
    if (!PyTuple_Check(op)) {
96
0
        PyErr_BadInternalCall();
97
0
        return -1;
98
0
    }
99
17.8M
    else
100
17.8M
        return Py_SIZE(op);
101
17.8M
}
102
103
PyObject *
104
PyTuple_GetItem(PyObject *op, Py_ssize_t i)
105
53.7M
{
106
53.7M
    if (!PyTuple_Check(op)) {
107
0
        PyErr_BadInternalCall();
108
0
        return NULL;
109
0
    }
110
53.7M
    if (i < 0 || i >= Py_SIZE(op)) {
111
0
        PyErr_SetString(PyExc_IndexError, "tuple index out of range");
112
0
        return NULL;
113
0
    }
114
53.7M
    return ((PyTupleObject *)op) -> ob_item[i];
115
53.7M
}
116
117
int
118
PyTuple_SetItem(PyObject *op, Py_ssize_t i, PyObject *newitem)
119
122k
{
120
122k
    PyObject **p;
121
122k
    if (!PyTuple_Check(op) || !_PyObject_IsUniquelyReferenced(op)) {
122
0
        Py_XDECREF(newitem);
123
0
        PyErr_BadInternalCall();
124
0
        return -1;
125
0
    }
126
122k
    if (i < 0 || i >= Py_SIZE(op)) {
127
0
        Py_XDECREF(newitem);
128
0
        PyErr_SetString(PyExc_IndexError,
129
0
                        "tuple assignment index out of range");
130
0
        return -1;
131
0
    }
132
122k
    p = ((PyTupleObject *)op) -> ob_item + i;
133
122k
    Py_XSETREF(*p, newitem);
134
122k
    return 0;
135
122k
}
136
137
void
138
_PyTuple_MaybeUntrack(PyObject *op)
139
106M
{
140
106M
    PyTupleObject *t;
141
106M
    Py_ssize_t i, n;
142
143
106M
    if (!PyTuple_CheckExact(op) || !_PyObject_GC_IS_TRACKED(op))
144
0
        return;
145
106M
    t = (PyTupleObject *) op;
146
106M
    n = Py_SIZE(t);
147
1.17G
    for (i = 0; i < n; i++) {
148
1.16G
        PyObject *elt = PyTuple_GET_ITEM(t, i);
149
        /* Tuple with NULL elements aren't
150
           fully constructed, don't untrack
151
           them yet. */
152
1.16G
        if (!elt ||
153
1.16G
            _PyObject_GC_MAY_BE_TRACKED(elt))
154
103M
            return;
155
1.16G
    }
156
3.12M
    _PyObject_GC_UNTRACK(op);
157
3.12M
}
158
159
/* Fast, but conservative check if an object maybe tracked
160
   May return true for an object that is not tracked,
161
   Will always return true for an object that is tracked.
162
   This is a temporary workaround until _PyObject_GC_IS_TRACKED
163
   becomes fast and safe to call on non-GC objects.
164
*/
165
static bool
166
maybe_tracked(PyObject *ob)
167
640M
{
168
640M
    return _PyType_IS_GC(Py_TYPE(ob));
169
640M
}
170
171
PyObject *
172
PyTuple_Pack(Py_ssize_t n, ...)
173
9.53M
{
174
9.53M
    Py_ssize_t i;
175
9.53M
    PyObject *o;
176
9.53M
    PyObject **items;
177
9.53M
    va_list vargs;
178
9.53M
    bool track = false;
179
180
9.53M
    if (n == 0) {
181
0
        return tuple_get_empty();
182
0
    }
183
184
9.53M
    va_start(vargs, n);
185
9.53M
    PyTupleObject *result = tuple_alloc(n);
186
9.53M
    if (result == NULL) {
187
0
        va_end(vargs);
188
0
        return NULL;
189
0
    }
190
9.53M
    items = result->ob_item;
191
30.1M
    for (i = 0; i < n; i++) {
192
20.5M
        o = va_arg(vargs, PyObject *);
193
20.5M
        if (!track && maybe_tracked(o)) {
194
1.52M
            track = true;
195
1.52M
        }
196
20.5M
        items[i] = Py_NewRef(o);
197
20.5M
    }
198
9.53M
    va_end(vargs);
199
9.53M
    if (track) {
200
1.52M
        _PyObject_GC_TRACK(result);
201
1.52M
    }
202
9.53M
    return (PyObject *)result;
203
9.53M
}
204
205
206
/* Methods */
207
208
static void
209
tuple_dealloc(PyObject *self)
210
461M
{
211
461M
    PyTupleObject *op = _PyTuple_CAST(self);
212
461M
    if (Py_SIZE(op) == 0) {
213
        /* The empty tuple is statically allocated. */
214
4
        if (op == &_Py_SINGLETON(tuple_empty)) {
215
#ifdef Py_DEBUG
216
            _Py_FatalRefcountError("deallocating the empty tuple singleton");
217
#else
218
0
            return;
219
0
#endif
220
0
        }
221
#ifdef Py_DEBUG
222
        /* tuple subclasses have their own empty instances. */
223
        assert(!PyTuple_CheckExact(op));
224
#endif
225
4
    }
226
227
461M
    PyObject_GC_UnTrack(op);
228
229
461M
    Py_ssize_t i = Py_SIZE(op);
230
12.1G
    while (--i >= 0) {
231
11.6G
        Py_XDECREF(op->ob_item[i]);
232
11.6G
    }
233
    // This will abort on the empty singleton (if there is one).
234
461M
    if (!maybe_freelist_push(op)) {
235
118M
        Py_TYPE(op)->tp_free((PyObject *)op);
236
118M
    }
237
461M
}
238
239
static PyObject *
240
tuple_repr(PyObject *self)
241
731
{
242
731
    PyTupleObject *v = _PyTuple_CAST(self);
243
731
    Py_ssize_t n = PyTuple_GET_SIZE(v);
244
731
    if (n == 0) {
245
2
        return PyUnicode_FromString("()");
246
2
    }
247
248
    /* While not mutable, it is still possible to end up with a cycle in a
249
       tuple through an object that stores itself within a tuple (and thus
250
       infinitely asks for the repr of itself). This should only be
251
       possible within a type. */
252
729
    int res = Py_ReprEnter((PyObject *)v);
253
729
    if (res != 0) {
254
0
        return res > 0 ? PyUnicode_FromString("(...)") : NULL;
255
0
    }
256
257
729
    Py_ssize_t prealloc;
258
729
    if (n > 1) {
259
        // "(" + "1" + ", 2" * (len - 1) + ")"
260
703
        prealloc = 1 + 1 + (2 + 1) * (n - 1) + 1;
261
703
    }
262
26
    else {
263
        // "(1,)"
264
26
        prealloc = 4;
265
26
    }
266
729
    PyUnicodeWriter *writer = PyUnicodeWriter_Create(prealloc);
267
729
    if (writer == NULL) {
268
0
        goto error;
269
0
    }
270
271
729
    if (PyUnicodeWriter_WriteChar(writer, '(') < 0) {
272
0
        goto error;
273
0
    }
274
275
    /* Do repr() on each element. */
276
39.7k
    for (Py_ssize_t i = 0; i < n; ++i) {
277
39.0k
        if (i > 0) {
278
38.3k
            if (PyUnicodeWriter_WriteChar(writer, ',') < 0) {
279
0
                goto error;
280
0
            }
281
38.3k
            if (PyUnicodeWriter_WriteChar(writer, ' ') < 0) {
282
0
                goto error;
283
0
            }
284
38.3k
        }
285
286
39.0k
        if (PyUnicodeWriter_WriteRepr(writer, v->ob_item[i]) < 0) {
287
0
            goto error;
288
0
        }
289
39.0k
    }
290
291
729
    if (n == 1) {
292
26
        if (PyUnicodeWriter_WriteChar(writer, ',') < 0) {
293
0
            goto error;
294
0
        }
295
26
    }
296
729
    if (PyUnicodeWriter_WriteChar(writer, ')') < 0) {
297
0
        goto error;
298
0
    }
299
300
729
    Py_ReprLeave((PyObject *)v);
301
729
    return PyUnicodeWriter_Finish(writer);
302
303
0
error:
304
0
    PyUnicodeWriter_Discard(writer);
305
0
    Py_ReprLeave((PyObject *)v);
306
0
    return NULL;
307
729
}
308
309
310
/* Hash for tuples. This is a slightly simplified version of the xxHash
311
   non-cryptographic hash:
312
   - we do not use any parallelism, there is only 1 accumulator.
313
   - we drop the final mixing since this is just a permutation of the
314
     output space: it does not help against collisions.
315
   - at the end, we mangle the length with a single constant.
316
   For the xxHash specification, see
317
   https://github.com/Cyan4973/xxHash/blob/master/doc/xxhash_spec.md
318
319
   The constants for the hash function are defined in pycore_tuple.h.
320
*/
321
322
static Py_hash_t
323
tuple_hash(PyObject *op)
324
19.9M
{
325
19.9M
    PyTupleObject *v = _PyTuple_CAST(op);
326
327
19.9M
    Py_uhash_t acc = FT_ATOMIC_LOAD_SSIZE_RELAXED(v->ob_hash);
328
19.9M
    if (acc != (Py_uhash_t)-1) {
329
557k
        return acc;
330
557k
    }
331
332
19.3M
    Py_ssize_t len = Py_SIZE(v);
333
19.3M
    PyObject **item = v->ob_item;
334
19.3M
    acc = _PyTuple_HASH_XXPRIME_5;
335
1.33G
    for (Py_ssize_t i = 0; i < len; i++) {
336
1.31G
        Py_uhash_t lane = PyObject_Hash(item[i]);
337
1.31G
        if (lane == (Py_uhash_t)-1) {
338
0
            return -1;
339
0
        }
340
1.31G
        acc += lane * _PyTuple_HASH_XXPRIME_2;
341
1.31G
        acc = _PyTuple_HASH_XXROTATE(acc);
342
1.31G
        acc *= _PyTuple_HASH_XXPRIME_1;
343
1.31G
    }
344
345
    /* Add input length, mangled to keep the historical value of hash(()). */
346
19.3M
    acc += len ^ (_PyTuple_HASH_XXPRIME_5 ^ 3527539UL);
347
348
19.3M
    if (acc == (Py_uhash_t)-1) {
349
0
        acc = 1546275796;
350
0
    }
351
352
19.3M
    FT_ATOMIC_STORE_SSIZE_RELAXED(v->ob_hash, acc);
353
354
19.3M
    return acc;
355
19.3M
}
356
357
static Py_ssize_t
358
tuple_length(PyObject *self)
359
7.55M
{
360
7.55M
    PyTupleObject *a = _PyTuple_CAST(self);
361
7.55M
    return Py_SIZE(a);
362
7.55M
}
363
364
static int
365
tuple_contains(PyObject *self, PyObject *el)
366
25.1M
{
367
25.1M
    PyTupleObject *a = _PyTuple_CAST(self);
368
25.1M
    int cmp = 0;
369
78.8M
    for (Py_ssize_t i = 0; cmp == 0 && i < Py_SIZE(a); ++i) {
370
53.7M
        cmp = PyObject_RichCompareBool(PyTuple_GET_ITEM(a, i), el, Py_EQ);
371
53.7M
    }
372
25.1M
    return cmp;
373
25.1M
}
374
375
static PyObject *
376
tuple_item(PyObject *op, Py_ssize_t i)
377
18.7M
{
378
18.7M
    PyTupleObject *a = _PyTuple_CAST(op);
379
18.7M
    if (i < 0 || i >= Py_SIZE(a)) {
380
68
        PyErr_SetString(PyExc_IndexError, "tuple index out of range");
381
68
        return NULL;
382
68
    }
383
18.7M
    return Py_NewRef(a->ob_item[i]);
384
18.7M
}
385
386
PyObject *
387
PyTuple_FromArray(PyObject *const *src, Py_ssize_t n)
388
215M
{
389
215M
    if (n == 0) {
390
64.3M
        return tuple_get_empty();
391
64.3M
    }
392
393
150M
    PyTupleObject *tuple = tuple_alloc(n);
394
150M
    if (tuple == NULL) {
395
0
        return NULL;
396
0
    }
397
150M
    PyObject **dst = tuple->ob_item;
398
150M
    bool track = false;
399
417M
    for (Py_ssize_t i = 0; i < n; i++) {
400
266M
        PyObject *item = src[i];
401
266M
        if (!track && maybe_tracked(item)) {
402
31.2M
            track = true;
403
31.2M
        }
404
266M
        dst[i] = Py_NewRef(item);
405
266M
    }
406
150M
    if (track) {
407
31.2M
        _PyObject_GC_TRACK(tuple);
408
31.2M
    }
409
150M
    return (PyObject *)tuple;
410
150M
}
411
412
PyObject *
413
_PyTuple_FromStackRefStealOnSuccess(const _PyStackRef *src, Py_ssize_t n)
414
240M
{
415
240M
    if (n == 0) {
416
0
        return tuple_get_empty();
417
0
    }
418
240M
    PyTupleObject *tuple = tuple_alloc(n);
419
240M
    if (tuple == NULL) {
420
0
        return NULL;
421
0
    }
422
240M
    PyObject **dst = tuple->ob_item;
423
240M
    bool track = false;
424
756M
    for (Py_ssize_t i = 0; i < n; i++) {
425
515M
        PyObject *item = PyStackRef_AsPyObjectSteal(src[i]);
426
515M
        if (!track && maybe_tracked(item)) {
427
157M
            track = true;
428
157M
        }
429
515M
        dst[i] = item;
430
515M
    }
431
240M
    if (track) {
432
157M
        _PyObject_GC_TRACK(tuple);
433
157M
    }
434
240M
    return (PyObject *)tuple;
435
240M
}
436
437
PyObject *
438
_PyTuple_FromArraySteal(PyObject *const *src, Py_ssize_t n)
439
1.99k
{
440
1.99k
    if (n == 0) {
441
4
        return tuple_get_empty();
442
4
    }
443
1.99k
    PyTupleObject *tuple = tuple_alloc(n);
444
1.99k
    if (tuple == NULL) {
445
0
        for (Py_ssize_t i = 0; i < n; i++) {
446
0
            Py_DECREF(src[i]);
447
0
        }
448
0
        return NULL;
449
0
    }
450
1.99k
    PyObject **dst = tuple->ob_item;
451
11.0k
    for (Py_ssize_t i = 0; i < n; i++) {
452
9.10k
        PyObject *item = src[i];
453
9.10k
        dst[i] = item;
454
9.10k
    }
455
1.99k
    _PyObject_GC_TRACK(tuple);
456
1.99k
    return (PyObject *)tuple;
457
1.99k
}
458
459
static PyObject *
460
tuple_slice(PyTupleObject *a, Py_ssize_t ilow,
461
           Py_ssize_t ihigh)
462
16.3M
{
463
16.3M
    if (ilow < 0)
464
0
        ilow = 0;
465
16.3M
    if (ihigh > Py_SIZE(a))
466
102
        ihigh = Py_SIZE(a);
467
16.3M
    if (ihigh < ilow)
468
0
        ihigh = ilow;
469
16.3M
    if (ilow == 0 && ihigh == Py_SIZE(a) && PyTuple_CheckExact(a)) {
470
0
        return Py_NewRef(a);
471
0
    }
472
16.3M
    return PyTuple_FromArray(a->ob_item + ilow, ihigh - ilow);
473
16.3M
}
474
475
PyObject *
476
PyTuple_GetSlice(PyObject *op, Py_ssize_t i, Py_ssize_t j)
477
16.3M
{
478
16.3M
    if (op == NULL || !PyTuple_Check(op)) {
479
0
        PyErr_BadInternalCall();
480
0
        return NULL;
481
0
    }
482
16.3M
    return tuple_slice((PyTupleObject *)op, i, j);
483
16.3M
}
484
485
static PyObject *
486
tuple_concat(PyObject *aa, PyObject *bb)
487
6.78M
{
488
6.78M
    PyTupleObject *a = _PyTuple_CAST(aa);
489
6.78M
    if (Py_SIZE(a) == 0 && PyTuple_CheckExact(bb)) {
490
796k
        return Py_NewRef(bb);
491
796k
    }
492
5.98M
    if (!PyTuple_Check(bb)) {
493
0
        PyErr_Format(PyExc_TypeError,
494
0
             "can only concatenate tuple (not \"%.200s\") to tuple",
495
0
                 Py_TYPE(bb)->tp_name);
496
0
        return NULL;
497
0
    }
498
5.98M
    PyTupleObject *b = (PyTupleObject *)bb;
499
500
5.98M
    if (Py_SIZE(b) == 0 && PyTuple_CheckExact(a)) {
501
2.64k
        return Py_NewRef(a);
502
2.64k
    }
503
5.98M
    assert((size_t)Py_SIZE(a) + (size_t)Py_SIZE(b) < PY_SSIZE_T_MAX);
504
5.98M
    Py_ssize_t size = Py_SIZE(a) + Py_SIZE(b);
505
5.98M
    if (size == 0) {
506
0
        return tuple_get_empty();
507
0
    }
508
509
5.98M
    PyTupleObject *np = tuple_alloc(size);
510
5.98M
    if (np == NULL) {
511
0
        return NULL;
512
0
    }
513
514
5.98M
    PyObject **src = a->ob_item;
515
5.98M
    PyObject **dest = np->ob_item;
516
5.77G
    for (Py_ssize_t i = 0; i < Py_SIZE(a); i++) {
517
5.76G
        PyObject *v = src[i];
518
5.76G
        dest[i] = Py_NewRef(v);
519
5.76G
    }
520
521
5.98M
    src = b->ob_item;
522
5.98M
    dest = np->ob_item + Py_SIZE(a);
523
132M
    for (Py_ssize_t i = 0; i < Py_SIZE(b); i++) {
524
126M
        PyObject *v = src[i];
525
126M
        dest[i] = Py_NewRef(v);
526
126M
    }
527
528
5.98M
    _PyObject_GC_TRACK(np);
529
5.98M
    return (PyObject *)np;
530
5.98M
}
531
532
static PyObject *
533
tuple_repeat(PyObject *self, Py_ssize_t n)
534
0
{
535
0
    PyTupleObject *a = _PyTuple_CAST(self);
536
0
    const Py_ssize_t input_size = Py_SIZE(a);
537
0
    if (input_size == 0 || n == 1) {
538
0
        if (PyTuple_CheckExact(a)) {
539
            /* Since tuples are immutable, we can return a shared
540
               copy in this case */
541
0
            return Py_NewRef(a);
542
0
        }
543
0
    }
544
0
    if (input_size == 0 || n <= 0) {
545
0
        return tuple_get_empty();
546
0
    }
547
0
    assert(n>0);
548
549
0
    if (input_size > PY_SSIZE_T_MAX / n)
550
0
        return PyErr_NoMemory();
551
0
    Py_ssize_t output_size = input_size * n;
552
553
0
    PyTupleObject *np = tuple_alloc(output_size);
554
0
    if (np == NULL)
555
0
        return NULL;
556
557
0
    PyObject **dest = np->ob_item;
558
0
    if (input_size == 1) {
559
0
        PyObject *elem = a->ob_item[0];
560
0
        _Py_RefcntAdd(elem, n);
561
0
        PyObject **dest_end = dest + output_size;
562
0
        while (dest < dest_end) {
563
0
            *dest++ = elem;
564
0
        }
565
0
    }
566
0
    else {
567
0
        PyObject **src = a->ob_item;
568
0
        PyObject **src_end = src + input_size;
569
0
        while (src < src_end) {
570
0
            _Py_RefcntAdd(*src, n);
571
0
            *dest++ = *src++;
572
0
        }
573
574
0
        _Py_memory_repeat((char *)np->ob_item, sizeof(PyObject *)*output_size,
575
0
                          sizeof(PyObject *)*input_size);
576
0
    }
577
0
    _PyObject_GC_TRACK(np);
578
0
    return (PyObject *) np;
579
0
}
580
581
/*[clinic input]
582
tuple.index
583
584
    value: object
585
    start: slice_index(accept={int}) = 0
586
    stop: slice_index(accept={int}, c_default="PY_SSIZE_T_MAX") = sys.maxsize
587
    /
588
589
Return first index of value.
590
591
Raises ValueError if the value is not present.
592
[clinic start generated code]*/
593
594
static PyObject *
595
tuple_index_impl(PyTupleObject *self, PyObject *value, Py_ssize_t start,
596
                 Py_ssize_t stop)
597
/*[clinic end generated code: output=07b6f9f3cb5c33eb input=fb39e9874a21fe3f]*/
598
452
{
599
452
    Py_ssize_t i;
600
601
452
    if (start < 0) {
602
0
        start += Py_SIZE(self);
603
0
        if (start < 0)
604
0
            start = 0;
605
0
    }
606
452
    if (stop < 0) {
607
0
        stop += Py_SIZE(self);
608
0
    }
609
452
    else if (stop > Py_SIZE(self)) {
610
452
        stop = Py_SIZE(self);
611
452
    }
612
634
    for (i = start; i < stop; i++) {
613
246
        int cmp = PyObject_RichCompareBool(self->ob_item[i], value, Py_EQ);
614
246
        if (cmp > 0)
615
64
            return PyLong_FromSsize_t(i);
616
182
        else if (cmp < 0)
617
0
            return NULL;
618
246
    }
619
388
    PyErr_SetString(PyExc_ValueError, "tuple.index(x): x not in tuple");
620
388
    return NULL;
621
452
}
622
623
/*[clinic input]
624
tuple.count
625
626
     value: object
627
     /
628
629
Return number of occurrences of value.
630
[clinic start generated code]*/
631
632
static PyObject *
633
tuple_count_impl(PyTupleObject *self, PyObject *value)
634
/*[clinic end generated code: output=cf02888d4bc15d7a input=531721aff65bd772]*/
635
0
{
636
0
    Py_ssize_t count = 0;
637
0
    Py_ssize_t i;
638
639
0
    for (i = 0; i < Py_SIZE(self); i++) {
640
0
        int cmp = PyObject_RichCompareBool(self->ob_item[i], value, Py_EQ);
641
0
        if (cmp > 0)
642
0
            count++;
643
0
        else if (cmp < 0)
644
0
            return NULL;
645
0
    }
646
0
    return PyLong_FromSsize_t(count);
647
0
}
648
649
static int
650
tuple_traverse(PyObject *self, visitproc visit, void *arg)
651
157M
{
652
157M
    PyTupleObject *o = _PyTuple_CAST(self);
653
484M
    for (Py_ssize_t i = Py_SIZE(o); --i >= 0; ) {
654
326M
        Py_VISIT(o->ob_item[i]);
655
326M
    }
656
157M
    return 0;
657
157M
}
658
659
static PyObject *
660
tuple_richcompare(PyObject *v, PyObject *w, int op)
661
17.9M
{
662
17.9M
    PyTupleObject *vt, *wt;
663
17.9M
    Py_ssize_t i;
664
17.9M
    Py_ssize_t vlen, wlen;
665
666
17.9M
    if (!PyTuple_Check(v) || !PyTuple_Check(w))
667
4
        Py_RETURN_NOTIMPLEMENTED;
668
669
17.9M
    vt = (PyTupleObject *)v;
670
17.9M
    wt = (PyTupleObject *)w;
671
672
17.9M
    vlen = Py_SIZE(vt);
673
17.9M
    wlen = Py_SIZE(wt);
674
675
    /* Note:  the corresponding code for lists has an "early out" test
676
     * here when op is EQ or NE and the lengths differ.  That pays there,
677
     * but Tim was unable to find any real code where EQ/NE tuple
678
     * compares don't have the same length, so testing for it here would
679
     * have cost without benefit.
680
     */
681
682
    /* Search for the first index where items are different.
683
     * Note that because tuples are immutable, it's safe to reuse
684
     * vlen and wlen across the comparison calls.
685
     */
686
56.0M
    for (i = 0; i < vlen && i < wlen; i++) {
687
41.4M
        int k = PyObject_RichCompareBool(vt->ob_item[i],
688
41.4M
                                         wt->ob_item[i], Py_EQ);
689
41.4M
        if (k < 0)
690
0
            return NULL;
691
41.4M
        if (!k)
692
3.42M
            break;
693
41.4M
    }
694
695
17.9M
    if (i >= vlen || i >= wlen) {
696
        /* No more items to compare -- compare sizes */
697
14.5M
        Py_RETURN_RICHCOMPARE(vlen, wlen, op);
698
14.5M
    }
699
700
    /* We have an item that differs -- shortcuts for EQ/NE */
701
3.42M
    if (op == Py_EQ) {
702
119k
        Py_RETURN_FALSE;
703
119k
    }
704
3.30M
    if (op == Py_NE) {
705
3.69k
        Py_RETURN_TRUE;
706
3.69k
    }
707
708
    /* Compare the final item again using the proper operator */
709
3.30M
    return PyObject_RichCompare(vt->ob_item[i], wt->ob_item[i], op);
710
3.30M
}
711
712
static PyObject *
713
tuple_subtype_new(PyTypeObject *type, PyObject *iterable);
714
715
/*[clinic input]
716
@classmethod
717
tuple.__new__ as tuple_new
718
    iterable: object(c_default="NULL") = ()
719
    /
720
721
Built-in immutable sequence.
722
723
If no argument is given, the constructor returns an empty tuple.
724
If iterable is specified the tuple is initialized from iterable's items.
725
726
If the argument is a tuple, the return value is the same object.
727
[clinic start generated code]*/
728
729
static PyObject *
730
tuple_new_impl(PyTypeObject *type, PyObject *iterable)
731
/*[clinic end generated code: output=4546d9f0d469bce7 input=86963bcde633b5a2]*/
732
3.86M
{
733
3.86M
    if (type != &PyTuple_Type)
734
1.93M
        return tuple_subtype_new(type, iterable);
735
736
1.93M
    if (iterable == NULL) {
737
0
        return tuple_get_empty();
738
0
    }
739
1.93M
    else {
740
1.93M
        return PySequence_Tuple(iterable);
741
1.93M
    }
742
1.93M
}
743
744
static PyObject *
745
tuple_vectorcall(PyObject *type, PyObject * const*args,
746
                 size_t nargsf, PyObject *kwnames)
747
156
{
748
156
    if (!_PyArg_NoKwnames("tuple", kwnames)) {
749
0
        return NULL;
750
0
    }
751
752
156
    Py_ssize_t nargs = PyVectorcall_NARGS(nargsf);
753
156
    if (!_PyArg_CheckPositional("tuple", nargs, 0, 1)) {
754
0
        return NULL;
755
0
    }
756
757
156
    if (nargs) {
758
156
        return tuple_new_impl(_PyType_CAST(type), args[0]);
759
156
    }
760
0
    else {
761
0
        return tuple_get_empty();
762
0
    }
763
156
}
764
765
static PyObject *
766
tuple_subtype_new(PyTypeObject *type, PyObject *iterable)
767
1.93M
{
768
1.93M
    PyObject *tmp, *newobj, *item;
769
1.93M
    Py_ssize_t i, n;
770
771
1.93M
    assert(PyType_IsSubtype(type, &PyTuple_Type));
772
    // tuple subclasses must implement the GC protocol
773
1.93M
    assert(_PyType_IS_GC(type));
774
775
1.93M
    tmp = tuple_new_impl(&PyTuple_Type, iterable);
776
1.93M
    if (tmp == NULL)
777
0
        return NULL;
778
1.93M
    assert(PyTuple_Check(tmp));
779
    /* This may allocate an empty tuple that is not the global one. */
780
1.93M
    newobj = type->tp_alloc(type, n = PyTuple_GET_SIZE(tmp));
781
1.93M
    if (newobj == NULL) {
782
0
        Py_DECREF(tmp);
783
0
        return NULL;
784
0
    }
785
7.74M
    for (i = 0; i < n; i++) {
786
5.80M
        item = PyTuple_GET_ITEM(tmp, i);
787
5.80M
        PyTuple_SET_ITEM(newobj, i, Py_NewRef(item));
788
5.80M
    }
789
1.93M
    Py_DECREF(tmp);
790
791
1.93M
    _PyTuple_RESET_HASH_CACHE(newobj);
792
793
    // Don't track if a subclass tp_alloc is PyType_GenericAlloc()
794
1.93M
    if (!_PyObject_GC_IS_TRACKED(newobj)) {
795
0
        _PyObject_GC_TRACK(newobj);
796
0
    }
797
1.93M
    return newobj;
798
1.93M
}
799
800
static PySequenceMethods tuple_as_sequence = {
801
    tuple_length,                               /* sq_length */
802
    tuple_concat,                               /* sq_concat */
803
    tuple_repeat,                               /* sq_repeat */
804
    tuple_item,                                 /* sq_item */
805
    0,                                          /* sq_slice */
806
    0,                                          /* sq_ass_item */
807
    0,                                          /* sq_ass_slice */
808
    tuple_contains,                             /* sq_contains */
809
};
810
811
static PyObject*
812
tuple_subscript(PyObject *op, PyObject* item)
813
5.94M
{
814
5.94M
    PyTupleObject *self = _PyTuple_CAST(op);
815
5.94M
    if (_PyIndex_Check(item)) {
816
1.73M
        Py_ssize_t i = PyNumber_AsSsize_t(item, PyExc_IndexError);
817
1.73M
        if (i == -1 && PyErr_Occurred())
818
0
            return NULL;
819
1.73M
        if (i < 0)
820
1.73M
            i += PyTuple_GET_SIZE(self);
821
1.73M
        return tuple_item(op, i);
822
1.73M
    }
823
4.21M
    else if (PySlice_Check(item)) {
824
4.21M
        Py_ssize_t start, stop, step, slicelength, i;
825
4.21M
        size_t cur;
826
4.21M
        PyObject* it;
827
4.21M
        PyObject **src, **dest;
828
829
4.21M
        if (PySlice_Unpack(item, &start, &stop, &step) < 0) {
830
0
            return NULL;
831
0
        }
832
4.21M
        slicelength = PySlice_AdjustIndices(PyTuple_GET_SIZE(self), &start,
833
4.21M
                                            &stop, step);
834
835
4.21M
        if (slicelength <= 0) {
836
99.4k
            return tuple_get_empty();
837
99.4k
        }
838
4.11M
        else if (start == 0 && step == 1 &&
839
2.83M
                 slicelength == PyTuple_GET_SIZE(self) &&
840
242
                 PyTuple_CheckExact(self)) {
841
242
            return Py_NewRef(self);
842
242
        }
843
4.11M
        else {
844
4.11M
            PyTupleObject* result = tuple_alloc(slicelength);
845
4.11M
            if (!result) return NULL;
846
847
4.11M
            src = self->ob_item;
848
4.11M
            dest = result->ob_item;
849
2.92G
            for (cur = start, i = 0; i < slicelength;
850
2.92G
                 cur += step, i++) {
851
2.92G
                it = Py_NewRef(src[cur]);
852
2.92G
                dest[i] = it;
853
2.92G
            }
854
855
4.11M
            _PyObject_GC_TRACK(result);
856
4.11M
            return (PyObject *)result;
857
4.11M
        }
858
4.21M
    }
859
0
    else {
860
0
        PyErr_Format(PyExc_TypeError,
861
0
                     "tuple indices must be integers or slices, not %.200s",
862
0
                     Py_TYPE(item)->tp_name);
863
0
        return NULL;
864
0
    }
865
5.94M
}
866
867
/*[clinic input]
868
tuple.__getnewargs__
869
[clinic start generated code]*/
870
871
static PyObject *
872
tuple___getnewargs___impl(PyTupleObject *self)
873
/*[clinic end generated code: output=25e06e3ee56027e2 input=1aeb4b286a21639a]*/
874
0
{
875
0
    return Py_BuildValue("(N)", tuple_slice(self, 0, Py_SIZE(self)));
876
0
}
877
878
static PyMethodDef tuple_methods[] = {
879
    TUPLE___GETNEWARGS___METHODDEF
880
    TUPLE_INDEX_METHODDEF
881
    TUPLE_COUNT_METHODDEF
882
    {"__class_getitem__", Py_GenericAlias, METH_O|METH_CLASS, PyDoc_STR("See PEP 585")},
883
    {NULL,              NULL}           /* sentinel */
884
};
885
886
static PyMappingMethods tuple_as_mapping = {
887
    tuple_length,
888
    tuple_subscript,
889
    0
890
};
891
892
static PyObject *tuple_iter(PyObject *seq);
893
894
PyTypeObject PyTuple_Type = {
895
    PyVarObject_HEAD_INIT(&PyType_Type, 0)
896
    "tuple",
897
    sizeof(PyTupleObject) - sizeof(PyObject *),
898
    sizeof(PyObject *),
899
    tuple_dealloc,                              /* tp_dealloc */
900
    0,                                          /* tp_vectorcall_offset */
901
    0,                                          /* tp_getattr */
902
    0,                                          /* tp_setattr */
903
    0,                                          /* tp_as_async */
904
    tuple_repr,                                 /* tp_repr */
905
    0,                                          /* tp_as_number */
906
    &tuple_as_sequence,                         /* tp_as_sequence */
907
    &tuple_as_mapping,                          /* tp_as_mapping */
908
    tuple_hash,                                 /* tp_hash */
909
    0,                                          /* tp_call */
910
    0,                                          /* tp_str */
911
    PyObject_GenericGetAttr,                    /* tp_getattro */
912
    0,                                          /* tp_setattro */
913
    0,                                          /* tp_as_buffer */
914
    Py_TPFLAGS_DEFAULT | Py_TPFLAGS_HAVE_GC |
915
        Py_TPFLAGS_BASETYPE | Py_TPFLAGS_TUPLE_SUBCLASS |
916
        _Py_TPFLAGS_MATCH_SELF | Py_TPFLAGS_SEQUENCE,  /* tp_flags */
917
    tuple_new__doc__,                           /* tp_doc */
918
    tuple_traverse,                             /* tp_traverse */
919
    0,                                          /* tp_clear */
920
    tuple_richcompare,                          /* tp_richcompare */
921
    0,                                          /* tp_weaklistoffset */
922
    tuple_iter,                                 /* tp_iter */
923
    0,                                          /* tp_iternext */
924
    tuple_methods,                              /* tp_methods */
925
    0,                                          /* tp_members */
926
    0,                                          /* tp_getset */
927
    0,                                          /* tp_base */
928
    0,                                          /* tp_dict */
929
    0,                                          /* tp_descr_get */
930
    0,                                          /* tp_descr_set */
931
    0,                                          /* tp_dictoffset */
932
    0,                                          /* tp_init */
933
    0,                                          /* tp_alloc */
934
    tuple_new,                                  /* tp_new */
935
    PyObject_GC_Del,                            /* tp_free */
936
    .tp_vectorcall = tuple_vectorcall,
937
    .tp_version_tag = _Py_TYPE_VERSION_TUPLE,
938
};
939
940
/* The following function breaks the notion that tuples are immutable:
941
   it changes the size of a tuple.  We get away with this only if there
942
   is only one module referencing the object.  You can also think of it
943
   as creating a new tuple object and destroying the old one, only more
944
   efficiently.  In any case, don't use this if the tuple may already be
945
   known to some other part of the code. */
946
947
int
948
_PyTuple_Resize(PyObject **pv, Py_ssize_t newsize)
949
626
{
950
626
    PyTupleObject *v;
951
626
    PyTupleObject *sv;
952
626
    Py_ssize_t i;
953
626
    Py_ssize_t oldsize;
954
955
626
    v = (PyTupleObject *) *pv;
956
626
    if (v == NULL || !Py_IS_TYPE(v, &PyTuple_Type) ||
957
626
        (Py_SIZE(v) != 0 && !_PyObject_IsUniquelyReferenced(*pv))) {
958
0
        *pv = 0;
959
0
        Py_XDECREF(v);
960
0
        PyErr_BadInternalCall();
961
0
        return -1;
962
0
    }
963
964
626
    oldsize = Py_SIZE(v);
965
626
    if (oldsize == newsize) {
966
556
        return 0;
967
556
    }
968
70
    if (newsize == 0) {
969
36
        Py_DECREF(v);
970
36
        *pv = tuple_get_empty();
971
36
        return 0;
972
36
    }
973
34
    if (oldsize == 0) {
974
#ifdef Py_DEBUG
975
        assert(v == &_Py_SINGLETON(tuple_empty));
976
#endif
977
        /* The empty tuple is statically allocated so we never
978
           resize it in-place. */
979
0
        Py_DECREF(v);
980
0
        *pv = PyTuple_New(newsize);
981
0
        return *pv == NULL ? -1 : 0;
982
0
    }
983
984
34
    if (_PyObject_GC_IS_TRACKED(v)) {
985
34
        _PyObject_GC_UNTRACK(v);
986
34
    }
987
#ifdef Py_TRACE_REFS
988
    _Py_ForgetReference((PyObject *) v);
989
#endif
990
    /* DECREF items deleted by shrinkage */
991
132
    for (i = newsize; i < oldsize; i++) {
992
98
        Py_CLEAR(v->ob_item[i]);
993
98
    }
994
34
    _PyReftracerTrack((PyObject *)v, PyRefTracer_DESTROY);
995
34
    sv = PyObject_GC_Resize(PyTupleObject, v, newsize);
996
34
    if (sv == NULL) {
997
0
        *pv = NULL;
998
#ifdef Py_REF_DEBUG
999
        _Py_DecRefTotal(_PyThreadState_GET());
1000
#endif
1001
0
        PyObject_GC_Del(v);
1002
0
        return -1;
1003
0
    }
1004
34
    _Py_NewReferenceNoTotal((PyObject *) sv);
1005
    /* Zero out items added by growing */
1006
34
    if (newsize > oldsize)
1007
0
        memset(&sv->ob_item[oldsize], 0,
1008
0
               sizeof(*sv->ob_item) * (newsize - oldsize));
1009
34
    *pv = (PyObject *) sv;
1010
34
    _PyObject_GC_TRACK(sv);
1011
34
    return 0;
1012
34
}
1013
1014
/*********************** Tuple Iterator **************************/
1015
1016
1.97G
#define _PyTupleIterObject_CAST(op) ((_PyTupleIterObject *)(op))
1017
1018
static void
1019
tupleiter_dealloc(PyObject *self)
1020
6.87M
{
1021
6.87M
    _PyTupleIterObject *it = _PyTupleIterObject_CAST(self);
1022
6.87M
    _PyObject_GC_UNTRACK(it);
1023
6.87M
    Py_XDECREF(it->it_seq);
1024
6.87M
    assert(Py_IS_TYPE(self, &PyTupleIter_Type));
1025
6.87M
    _Py_FREELIST_FREE(tuple_iters, it, PyObject_GC_Del);
1026
6.87M
}
1027
1028
static int
1029
tupleiter_traverse(PyObject *self, visitproc visit, void *arg)
1030
21
{
1031
21
    _PyTupleIterObject *it = _PyTupleIterObject_CAST(self);
1032
21
    Py_VISIT(it->it_seq);
1033
21
    return 0;
1034
21
}
1035
1036
static PyObject *
1037
tupleiter_next(PyObject *self)
1038
1.97G
{
1039
1.97G
    _PyTupleIterObject *it = _PyTupleIterObject_CAST(self);
1040
1.97G
    PyTupleObject *seq;
1041
1.97G
    PyObject *item;
1042
1043
1.97G
    assert(it != NULL);
1044
1.97G
    seq = it->it_seq;
1045
1.97G
#ifndef Py_GIL_DISABLED
1046
1.97G
    if (seq == NULL)
1047
0
        return NULL;
1048
1.97G
#endif
1049
1.97G
    assert(PyTuple_Check(seq));
1050
1051
1.97G
    Py_ssize_t index = FT_ATOMIC_LOAD_SSIZE_RELAXED(it->it_index);
1052
1.97G
    if (index < PyTuple_GET_SIZE(seq)) {
1053
1.96G
        FT_ATOMIC_STORE_SSIZE_RELAXED(it->it_index, index + 1);
1054
1.96G
        item = PyTuple_GET_ITEM(seq, index);
1055
1.96G
        return Py_NewRef(item);
1056
1.96G
    }
1057
1058
6.86M
#ifndef Py_GIL_DISABLED
1059
6.86M
    it->it_seq = NULL;
1060
6.86M
    Py_DECREF(seq);
1061
6.86M
#endif
1062
6.86M
    return NULL;
1063
1.97G
}
1064
1065
static PyObject *
1066
tupleiter_len(PyObject *self, PyObject *Py_UNUSED(ignored))
1067
0
{
1068
0
    _PyTupleIterObject *it = _PyTupleIterObject_CAST(self);
1069
0
    Py_ssize_t len = 0;
1070
#ifdef Py_GIL_DISABLED
1071
    Py_ssize_t idx = FT_ATOMIC_LOAD_SSIZE_RELAXED(it->it_index);
1072
    Py_ssize_t seq_len = PyTuple_GET_SIZE(it->it_seq);
1073
    if (idx < seq_len)
1074
        len = seq_len - idx;
1075
#else
1076
0
    if (it->it_seq)
1077
0
        len = PyTuple_GET_SIZE(it->it_seq) - it->it_index;
1078
0
#endif
1079
0
    return PyLong_FromSsize_t(len);
1080
0
}
1081
1082
PyDoc_STRVAR(length_hint_doc, "Private method returning an estimate of len(list(it)).");
1083
1084
static PyObject *
1085
tupleiter_reduce(PyObject *self, PyObject *Py_UNUSED(ignored))
1086
0
{
1087
0
    PyObject *iter = _PyEval_GetBuiltin(&_Py_ID(iter));
1088
1089
    /* _PyEval_GetBuiltin can invoke arbitrary code,
1090
     * call must be before access of iterator pointers.
1091
     * see issue #101765 */
1092
0
    _PyTupleIterObject *it = _PyTupleIterObject_CAST(self);
1093
1094
#ifdef Py_GIL_DISABLED
1095
    Py_ssize_t idx = FT_ATOMIC_LOAD_SSIZE_RELAXED(it->it_index);
1096
    if (idx < PyTuple_GET_SIZE(it->it_seq))
1097
        return Py_BuildValue("N(O)n", iter, it->it_seq, idx);
1098
#else
1099
0
    if (it->it_seq)
1100
0
        return Py_BuildValue("N(O)n", iter, it->it_seq, it->it_index);
1101
0
#endif
1102
0
    return Py_BuildValue("N(())", iter);
1103
0
}
1104
1105
static PyObject *
1106
tupleiter_setstate(PyObject *self, PyObject *state)
1107
0
{
1108
0
    _PyTupleIterObject *it = _PyTupleIterObject_CAST(self);
1109
0
    Py_ssize_t index = PyLong_AsSsize_t(state);
1110
0
    if (index == -1 && PyErr_Occurred())
1111
0
        return NULL;
1112
0
    if (it->it_seq != NULL) {
1113
0
        if (index < 0)
1114
0
            index = 0;
1115
0
        else if (index > PyTuple_GET_SIZE(it->it_seq))
1116
0
            index = PyTuple_GET_SIZE(it->it_seq); /* exhausted iterator */
1117
0
        FT_ATOMIC_STORE_SSIZE_RELAXED(it->it_index, index);
1118
0
    }
1119
0
    Py_RETURN_NONE;
1120
0
}
1121
1122
PyDoc_STRVAR(reduce_doc, "Return state information for pickling.");
1123
PyDoc_STRVAR(setstate_doc, "Set state information for unpickling.");
1124
1125
static PyMethodDef tupleiter_methods[] = {
1126
    {"__length_hint__", tupleiter_len, METH_NOARGS, length_hint_doc},
1127
    {"__reduce__", tupleiter_reduce, METH_NOARGS, reduce_doc},
1128
    {"__setstate__", tupleiter_setstate, METH_O, setstate_doc},
1129
    {NULL, NULL, 0, NULL} /* sentinel */
1130
};
1131
1132
PyTypeObject PyTupleIter_Type = {
1133
    PyVarObject_HEAD_INIT(&PyType_Type, 0)
1134
    "tuple_iterator",                           /* tp_name */
1135
    sizeof(_PyTupleIterObject),                 /* tp_basicsize */
1136
    0,                                          /* tp_itemsize */
1137
    /* methods */
1138
    tupleiter_dealloc,                          /* tp_dealloc */
1139
    0,                                          /* tp_vectorcall_offset */
1140
    0,                                          /* tp_getattr */
1141
    0,                                          /* tp_setattr */
1142
    0,                                          /* tp_as_async */
1143
    0,                                          /* tp_repr */
1144
    0,                                          /* tp_as_number */
1145
    0,                                          /* tp_as_sequence */
1146
    0,                                          /* tp_as_mapping */
1147
    0,                                          /* tp_hash */
1148
    0,                                          /* tp_call */
1149
    0,                                          /* tp_str */
1150
    PyObject_GenericGetAttr,                    /* tp_getattro */
1151
    0,                                          /* tp_setattro */
1152
    0,                                          /* tp_as_buffer */
1153
    Py_TPFLAGS_DEFAULT | Py_TPFLAGS_HAVE_GC,/* tp_flags */
1154
    0,                                          /* tp_doc */
1155
    tupleiter_traverse,                         /* tp_traverse */
1156
    0,                                          /* tp_clear */
1157
    0,                                          /* tp_richcompare */
1158
    0,                                          /* tp_weaklistoffset */
1159
    PyObject_SelfIter,                          /* tp_iter */
1160
    tupleiter_next,                             /* tp_iternext */
1161
    tupleiter_methods,                          /* tp_methods */
1162
    0,
1163
};
1164
1165
static PyObject *
1166
tuple_iter(PyObject *seq)
1167
6.87M
{
1168
6.87M
    if (!PyTuple_Check(seq)) {
1169
0
        PyErr_BadInternalCall();
1170
0
        return NULL;
1171
0
    }
1172
6.87M
    _PyTupleIterObject *it = _Py_FREELIST_POP(_PyTupleIterObject, tuple_iters);
1173
6.87M
    if (it == NULL) {
1174
70
        it = PyObject_GC_New(_PyTupleIterObject, &PyTupleIter_Type);
1175
70
        if (it == NULL)
1176
0
            return NULL;
1177
70
    }
1178
6.87M
    it->it_index = 0;
1179
6.87M
    it->it_seq = (PyTupleObject *)Py_NewRef(seq);
1180
6.87M
    _PyObject_GC_TRACK(it);
1181
6.87M
    return (PyObject *)it;
1182
6.87M
}
1183
1184
1185
/*************
1186
 * freelists *
1187
 *************/
1188
1189
static inline int
1190
maybe_freelist_push(PyTupleObject *op)
1191
461M
{
1192
461M
    if (!Py_IS_TYPE(op, &PyTuple_Type)) {
1193
1.92M
        return 0;
1194
1.92M
    }
1195
459M
    Py_ssize_t index = Py_SIZE(op) - 1;
1196
459M
    if (index < PyTuple_MAXSAVESIZE) {
1197
450M
        return _Py_FREELIST_PUSH(tuples[index], op, Py_tuple_MAXFREELIST);
1198
450M
    }
1199
8.30M
    return 0;
1200
459M
}
1201
1202
/* Print summary info about the state of the optimized allocator */
1203
void
1204
_PyTuple_DebugMallocStats(FILE *out)
1205
0
{
1206
0
    for (int i = 0; i < PyTuple_MAXSAVESIZE; i++) {
1207
0
        int len = i + 1;
1208
0
        char buf[128];
1209
0
        PyOS_snprintf(buf, sizeof(buf),
1210
0
                      "free %d-sized PyTupleObject", len);
1211
0
        _PyDebugAllocatorStats(out, buf, _Py_FREELIST_SIZE(tuples[i]),
1212
0
                               _PyObject_VAR_SIZE(&PyTuple_Type, len));
1213
0
    }
1214
0
}