Coverage Report

Created: 2026-02-09 07:07

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/cpython/Python/symtable.c
Line
Count
Source
1
#include "Python.h"
2
#include "pycore_ast.h"           // stmt_ty
3
#include "pycore_parser.h"        // _PyParser_ASTFromString()
4
#include "pycore_pystate.h"       // _PyThreadState_GET()
5
#include "pycore_runtime.h"       // _Py_ID()
6
#include "pycore_symtable.h"      // PySTEntryObject
7
#include "pycore_unicodeobject.h" // _PyUnicode_EqualToASCIIString
8
9
#include <stddef.h>               // offsetof()
10
11
12
// Set this to 1 to dump all symtables to stdout for debugging
13
#define _PY_DUMP_SYMTABLE 0
14
15
/* error strings used for warnings */
16
0
#define GLOBAL_PARAM \
17
0
"name '%U' is parameter and global"
18
19
0
#define NONLOCAL_PARAM \
20
0
"name '%U' is parameter and nonlocal"
21
22
0
#define GLOBAL_AFTER_ASSIGN \
23
0
"name '%U' is assigned to before global declaration"
24
25
0
#define NONLOCAL_AFTER_ASSIGN \
26
0
"name '%U' is assigned to before nonlocal declaration"
27
28
0
#define GLOBAL_AFTER_USE \
29
0
"name '%U' is used prior to global declaration"
30
31
0
#define NONLOCAL_AFTER_USE \
32
0
"name '%U' is used prior to nonlocal declaration"
33
34
0
#define GLOBAL_ANNOT \
35
0
"annotated name '%U' can't be global"
36
37
0
#define NONLOCAL_ANNOT \
38
0
"annotated name '%U' can't be nonlocal"
39
40
0
#define IMPORT_STAR_WARNING "import * only allowed at module level"
41
42
0
#define NAMED_EXPR_COMP_IN_CLASS \
43
0
"assignment expression within a comprehension cannot be used in a class body"
44
45
0
#define NAMED_EXPR_COMP_IN_TYPEVAR_BOUND \
46
0
"assignment expression within a comprehension cannot be used in a TypeVar bound"
47
48
0
#define NAMED_EXPR_COMP_IN_TYPEALIAS \
49
0
"assignment expression within a comprehension cannot be used in a type alias"
50
51
0
#define NAMED_EXPR_COMP_IN_TYPEPARAM \
52
0
"assignment expression within a comprehension cannot be used within the definition of a generic"
53
54
0
#define NAMED_EXPR_COMP_CONFLICT \
55
0
"assignment expression cannot rebind comprehension iteration variable '%U'"
56
57
0
#define NAMED_EXPR_COMP_INNER_LOOP_CONFLICT \
58
0
"comprehension inner loop cannot rebind assignment expression target '%U'"
59
60
0
#define NAMED_EXPR_COMP_ITER_EXPR \
61
0
"assignment expression cannot be used in a comprehension iterable expression"
62
63
0
#define ANNOTATION_NOT_ALLOWED \
64
0
"%s cannot be used within an annotation"
65
66
0
#define EXPR_NOT_ALLOWED_IN_TYPE_VARIABLE \
67
0
"%s cannot be used within %s"
68
69
0
#define EXPR_NOT_ALLOWED_IN_TYPE_ALIAS \
70
0
"%s cannot be used within a type alias"
71
72
0
#define EXPR_NOT_ALLOWED_IN_TYPE_PARAMETERS \
73
0
"%s cannot be used within the definition of a generic"
74
75
0
#define DUPLICATE_TYPE_PARAM \
76
0
"duplicate type parameter '%U'"
77
78
5
#define ASYNC_WITH_OUTSIDE_ASYNC_FUNC \
79
5
"'async with' outside async function"
80
81
0
#define ASYNC_FOR_OUTSIDE_ASYNC_FUNC \
82
0
"'async for' outside async function"
83
84
76.6k
#define LOCATION(x) SRC_LOCATION_FROM_AST(x)
85
86
#define SET_ERROR_LOCATION(FNAME, L) \
87
0
    PyErr_RangedSyntaxLocationObject((FNAME), \
88
0
        (L).lineno, (L).col_offset + 1, (L).end_lineno, (L).end_col_offset + 1)
89
90
337
#define IS_ASYNC_DEF(st) ((st)->st_cur->ste_type == FunctionBlock && (st)->st_cur->ste_coroutine)
91
92
static PySTEntryObject *
93
ste_new(struct symtable *st, identifier name, _Py_block_ty block,
94
        void *key, _Py_SourceLocation loc)
95
7.53k
{
96
7.53k
    PySTEntryObject *ste = NULL;
97
7.53k
    PyObject *k = NULL;
98
99
7.53k
    k = PyLong_FromVoidPtr(key);
100
7.53k
    if (k == NULL)
101
0
        goto fail;
102
7.53k
    ste = PyObject_New(PySTEntryObject, &PySTEntry_Type);
103
7.53k
    if (ste == NULL) {
104
0
        Py_DECREF(k);
105
0
        goto fail;
106
0
    }
107
7.53k
    ste->ste_table = st;
108
7.53k
    ste->ste_id = k; /* ste owns reference to k */
109
110
7.53k
    ste->ste_name = Py_NewRef(name);
111
112
7.53k
    ste->ste_symbols = NULL;
113
7.53k
    ste->ste_varnames = NULL;
114
7.53k
    ste->ste_children = NULL;
115
116
7.53k
    ste->ste_directives = NULL;
117
7.53k
    ste->ste_mangled_names = NULL;
118
119
7.53k
    ste->ste_type = block;
120
7.53k
    ste->ste_scope_info = NULL;
121
122
7.53k
    ste->ste_nested = 0;
123
7.53k
    ste->ste_varargs = 0;
124
7.53k
    ste->ste_varkeywords = 0;
125
7.53k
    ste->ste_annotations_used = 0;
126
7.53k
    ste->ste_loc = loc;
127
128
7.53k
    if (st->st_cur != NULL &&
129
6.95k
        (st->st_cur->ste_nested ||
130
6.93k
         _PyST_IsFunctionLike(st->st_cur)))
131
1.29k
        ste->ste_nested = 1;
132
7.53k
    ste->ste_generator = 0;
133
7.53k
    ste->ste_coroutine = 0;
134
7.53k
    ste->ste_comprehension = NoComprehension;
135
7.53k
    ste->ste_returns_value = 0;
136
7.53k
    ste->ste_needs_class_closure = 0;
137
7.53k
    ste->ste_comp_inlined = 0;
138
7.53k
    ste->ste_comp_iter_target = 0;
139
7.53k
    ste->ste_can_see_class_scope = 0;
140
7.53k
    ste->ste_comp_iter_expr = 0;
141
7.53k
    ste->ste_needs_classdict = 0;
142
7.53k
    ste->ste_has_conditional_annotations = 0;
143
7.53k
    ste->ste_in_conditional_block = 0;
144
7.53k
    ste->ste_in_unevaluated_annotation = 0;
145
7.53k
    ste->ste_annotation_block = NULL;
146
147
7.53k
    ste->ste_has_docstring = 0;
148
149
7.53k
    ste->ste_method = 0;
150
7.53k
    if (st->st_cur != NULL &&
151
6.95k
        st->st_cur->ste_type == ClassBlock &&
152
3.56k
        block == FunctionBlock) {
153
1.78k
        ste->ste_method = 1;
154
1.78k
    }
155
156
7.53k
    ste->ste_symbols = PyDict_New();
157
7.53k
    ste->ste_varnames = PyList_New(0);
158
7.53k
    ste->ste_children = PyList_New(0);
159
7.53k
    if (ste->ste_symbols == NULL
160
7.53k
        || ste->ste_varnames == NULL
161
7.53k
        || ste->ste_children == NULL)
162
0
        goto fail;
163
164
7.53k
    if (PyDict_SetItem(st->st_blocks, ste->ste_id, (PyObject *)ste) < 0)
165
0
        goto fail;
166
167
7.53k
    return ste;
168
0
 fail:
169
0
    Py_XDECREF(ste);
170
0
    return NULL;
171
7.53k
}
172
173
static PyObject *
174
ste_repr(PyObject *op)
175
0
{
176
0
    PySTEntryObject *ste = (PySTEntryObject *)op;
177
0
    return PyUnicode_FromFormat("<symtable entry %U(%R), line %d>",
178
0
                                ste->ste_name, ste->ste_id, ste->ste_loc.lineno);
179
0
}
180
181
static void
182
ste_dealloc(PyObject *op)
183
7.53k
{
184
7.53k
    PySTEntryObject *ste = (PySTEntryObject *)op;
185
7.53k
    ste->ste_table = NULL;
186
7.53k
    Py_XDECREF(ste->ste_id);
187
7.53k
    Py_XDECREF(ste->ste_name);
188
7.53k
    Py_XDECREF(ste->ste_symbols);
189
7.53k
    Py_XDECREF(ste->ste_varnames);
190
7.53k
    Py_XDECREF(ste->ste_children);
191
7.53k
    Py_XDECREF(ste->ste_directives);
192
7.53k
    Py_XDECREF(ste->ste_annotation_block);
193
7.53k
    Py_XDECREF(ste->ste_mangled_names);
194
7.53k
    PyObject_Free(ste);
195
7.53k
}
196
197
#define OFF(x) offsetof(PySTEntryObject, x)
198
199
static PyMemberDef ste_memberlist[] = {
200
    {"id",       _Py_T_OBJECT, OFF(ste_id), Py_READONLY},
201
    {"name",     _Py_T_OBJECT, OFF(ste_name), Py_READONLY},
202
    {"symbols",  _Py_T_OBJECT, OFF(ste_symbols), Py_READONLY},
203
    {"varnames", _Py_T_OBJECT, OFF(ste_varnames), Py_READONLY},
204
    {"children", _Py_T_OBJECT, OFF(ste_children), Py_READONLY},
205
    {"nested",   Py_T_INT,    OFF(ste_nested), Py_READONLY},
206
    {"type",     Py_T_INT,    OFF(ste_type), Py_READONLY},
207
    {"lineno",   Py_T_INT,    OFF(ste_loc.lineno), Py_READONLY},
208
    {NULL}
209
};
210
211
PyTypeObject PySTEntry_Type = {
212
    PyVarObject_HEAD_INIT(&PyType_Type, 0)
213
    "symtable entry",
214
    sizeof(PySTEntryObject),
215
    0,
216
    ste_dealloc,                                /* tp_dealloc */
217
    0,                                          /* tp_vectorcall_offset */
218
    0,                                          /* tp_getattr */
219
    0,                                          /* tp_setattr */
220
    0,                                          /* tp_as_async */
221
    ste_repr,                                   /* tp_repr */
222
    0,                                          /* tp_as_number */
223
    0,                                          /* tp_as_sequence */
224
    0,                                          /* tp_as_mapping */
225
    0,                                          /* tp_hash */
226
    0,                                          /* tp_call */
227
    0,                                          /* tp_str */
228
    PyObject_GenericGetAttr,                    /* tp_getattro */
229
    0,                                          /* tp_setattro */
230
    0,                                          /* tp_as_buffer */
231
    Py_TPFLAGS_DEFAULT,                         /* tp_flags */
232
    0,                                          /* tp_doc */
233
    0,                                          /* tp_traverse */
234
    0,                                          /* tp_clear */
235
    0,                                          /* tp_richcompare */
236
    0,                                          /* tp_weaklistoffset */
237
    0,                                          /* tp_iter */
238
    0,                                          /* tp_iternext */
239
    0,                                          /* tp_methods */
240
    ste_memberlist,                             /* tp_members */
241
    0,                                          /* tp_getset */
242
    0,                                          /* tp_base */
243
    0,                                          /* tp_dict */
244
    0,                                          /* tp_descr_get */
245
    0,                                          /* tp_descr_set */
246
    0,                                          /* tp_dictoffset */
247
    0,                                          /* tp_init */
248
    0,                                          /* tp_alloc */
249
    0,                                          /* tp_new */
250
};
251
252
static int symtable_analyze(struct symtable *st);
253
static int symtable_enter_block(struct symtable *st, identifier name,
254
                                _Py_block_ty block, void *ast, _Py_SourceLocation loc);
255
static int symtable_exit_block(struct symtable *st);
256
static int symtable_visit_stmt(struct symtable *st, stmt_ty s);
257
static int symtable_visit_expr(struct symtable *st, expr_ty s);
258
static int symtable_visit_type_param(struct symtable *st, type_param_ty s);
259
static int symtable_visit_genexp(struct symtable *st, expr_ty s);
260
static int symtable_visit_listcomp(struct symtable *st, expr_ty s);
261
static int symtable_visit_setcomp(struct symtable *st, expr_ty s);
262
static int symtable_visit_dictcomp(struct symtable *st, expr_ty s);
263
static int symtable_visit_arguments(struct symtable *st, arguments_ty);
264
static int symtable_visit_excepthandler(struct symtable *st, excepthandler_ty);
265
static int symtable_visit_alias(struct symtable *st, alias_ty);
266
static int symtable_visit_comprehension(struct symtable *st, comprehension_ty);
267
static int symtable_visit_keyword(struct symtable *st, keyword_ty);
268
static int symtable_visit_params(struct symtable *st, asdl_arg_seq *args);
269
static int symtable_visit_annotation(struct symtable *st, expr_ty annotation, void *key);
270
static int symtable_visit_argannotations(struct symtable *st, asdl_arg_seq *args);
271
static int symtable_implicit_arg(struct symtable *st, int pos);
272
static int symtable_visit_annotations(struct symtable *st, stmt_ty, arguments_ty, expr_ty,
273
                                      struct _symtable_entry *parent_ste);
274
static int symtable_visit_withitem(struct symtable *st, withitem_ty item);
275
static int symtable_visit_match_case(struct symtable *st, match_case_ty m);
276
static int symtable_visit_pattern(struct symtable *st, pattern_ty s);
277
static int symtable_raise_if_annotation_block(struct symtable *st, const char *, expr_ty);
278
static int symtable_raise_if_not_coroutine(struct symtable *st, const char *msg, _Py_SourceLocation loc);
279
static int symtable_raise_if_comprehension_block(struct symtable *st, expr_ty);
280
static int symtable_add_def(struct symtable *st, PyObject *name, int flag, _Py_SourceLocation loc);
281
282
/* For debugging purposes only */
283
#if _PY_DUMP_SYMTABLE
284
static void _dump_symtable(PySTEntryObject* ste, PyObject* prefix)
285
{
286
    const char *blocktype = "";
287
    switch (ste->ste_type) {
288
        case FunctionBlock: blocktype = "FunctionBlock"; break;
289
        case ClassBlock: blocktype = "ClassBlock"; break;
290
        case ModuleBlock: blocktype = "ModuleBlock"; break;
291
        case AnnotationBlock: blocktype = "AnnotationBlock"; break;
292
        case TypeVariableBlock: blocktype = "TypeVariableBlock"; break;
293
        case TypeAliasBlock: blocktype = "TypeAliasBlock"; break;
294
        case TypeParametersBlock: blocktype = "TypeParametersBlock"; break;
295
    }
296
    const char *comptype = "";
297
    switch (ste->ste_comprehension) {
298
        case ListComprehension: comptype = " ListComprehension"; break;
299
        case DictComprehension: comptype = " DictComprehension"; break;
300
        case SetComprehension: comptype = " SetComprehension"; break;
301
        case GeneratorExpression: comptype = " GeneratorExpression"; break;
302
        case NoComprehension: break;
303
    }
304
    PyObject* msg = PyUnicode_FromFormat(
305
        (
306
            "%U=== Symtable for %U ===\n"
307
            "%U%s%s\n"
308
            "%U%s%s%s%s%s%s%s%s%s%s%s\n"
309
            "%Ulineno: %d col_offset: %d\n"
310
            "%U--- Symbols ---\n"
311
        ),
312
        prefix,
313
        ste->ste_name,
314
        prefix,
315
        blocktype,
316
        comptype,
317
        prefix,
318
        ste->ste_nested ? " nested" : "",
319
        ste->ste_generator ? " generator" : "",
320
        ste->ste_coroutine ? " coroutine" : "",
321
        ste->ste_varargs ? " varargs" : "",
322
        ste->ste_varkeywords ? " varkeywords" : "",
323
        ste->ste_returns_value ? " returns_value" : "",
324
        ste->ste_needs_class_closure ? " needs_class_closure" : "",
325
        ste->ste_needs_classdict ? " needs_classdict" : "",
326
        ste->ste_comp_inlined ? " comp_inlined" : "",
327
        ste->ste_comp_iter_target ? " comp_iter_target" : "",
328
        ste->ste_can_see_class_scope ? " can_see_class_scope" : "",
329
        prefix,
330
        ste->ste_loc.lineno,
331
        ste->ste_loc.col_offset,
332
        prefix
333
    );
334
    assert(msg != NULL);
335
    printf("%s", PyUnicode_AsUTF8(msg));
336
    Py_DECREF(msg);
337
    PyObject *name, *value;
338
    Py_ssize_t pos = 0;
339
    while (PyDict_Next(ste->ste_symbols, &pos, &name, &value)) {
340
        int scope = _PyST_GetScope(ste, name);
341
        long flags = _PyST_GetSymbol(ste, name);
342
        printf("%s  %s: ", PyUnicode_AsUTF8(prefix), PyUnicode_AsUTF8(name));
343
        if (flags & DEF_GLOBAL) printf(" DEF_GLOBAL");
344
        if (flags & DEF_LOCAL) printf(" DEF_LOCAL");
345
        if (flags & DEF_PARAM) printf(" DEF_PARAM");
346
        if (flags & DEF_NONLOCAL) printf(" DEF_NONLOCAL");
347
        if (flags & USE) printf(" USE");
348
        if (flags & DEF_FREE_CLASS) printf(" DEF_FREE_CLASS");
349
        if (flags & DEF_IMPORT) printf(" DEF_IMPORT");
350
        if (flags & DEF_ANNOT) printf(" DEF_ANNOT");
351
        if (flags & DEF_COMP_ITER) printf(" DEF_COMP_ITER");
352
        if (flags & DEF_TYPE_PARAM) printf(" DEF_TYPE_PARAM");
353
        if (flags & DEF_COMP_CELL) printf(" DEF_COMP_CELL");
354
        switch (scope) {
355
            case LOCAL: printf(" LOCAL"); break;
356
            case GLOBAL_EXPLICIT: printf(" GLOBAL_EXPLICIT"); break;
357
            case GLOBAL_IMPLICIT: printf(" GLOBAL_IMPLICIT"); break;
358
            case FREE: printf(" FREE"); break;
359
            case CELL: printf(" CELL"); break;
360
        }
361
        printf("\n");
362
    }
363
    printf("%s--- Children ---\n", PyUnicode_AsUTF8(prefix));
364
    PyObject *new_prefix = PyUnicode_FromFormat("  %U", prefix);
365
    assert(new_prefix != NULL);
366
    for (Py_ssize_t i = 0; i < PyList_GET_SIZE(ste->ste_children); i++) {
367
        PyObject *child = PyList_GetItem(ste->ste_children, i);
368
        assert(child != NULL && PySTEntry_Check(child));
369
        _dump_symtable((PySTEntryObject *)child, new_prefix);
370
    }
371
    Py_DECREF(new_prefix);
372
}
373
374
static void dump_symtable(PySTEntryObject* ste)
375
{
376
    PyObject *empty = Py_GetConstant(Py_CONSTANT_EMPTY_STR);
377
    assert(empty != NULL);
378
    _dump_symtable(ste, empty);
379
    Py_DECREF(empty);
380
}
381
#endif
382
383
0
#define DUPLICATE_PARAMETER \
384
0
"duplicate parameter '%U' in function definition"
385
386
static struct symtable *
387
symtable_new(void)
388
583
{
389
583
    struct symtable *st;
390
391
583
    st = (struct symtable *)PyMem_Malloc(sizeof(struct symtable));
392
583
    if (st == NULL) {
393
0
        PyErr_NoMemory();
394
0
        return NULL;
395
0
    }
396
397
583
    st->st_filename = NULL;
398
583
    st->st_blocks = NULL;
399
400
583
    if ((st->st_stack = PyList_New(0)) == NULL)
401
0
        goto fail;
402
583
    if ((st->st_blocks = PyDict_New()) == NULL)
403
0
        goto fail;
404
583
    st->st_cur = NULL;
405
583
    st->st_private = NULL;
406
583
    return st;
407
0
 fail:
408
0
    _PySymtable_Free(st);
409
0
    return NULL;
410
583
}
411
412
struct symtable *
413
_PySymtable_Build(mod_ty mod, PyObject *filename, _PyFutureFeatures *future)
414
583
{
415
583
    struct symtable *st = symtable_new();
416
583
    asdl_stmt_seq *seq;
417
583
    Py_ssize_t i;
418
583
    PyThreadState *tstate;
419
420
583
    if (st == NULL)
421
0
        return NULL;
422
583
    if (filename == NULL) {
423
0
        _PySymtable_Free(st);
424
0
        return NULL;
425
0
    }
426
583
    st->st_filename = Py_NewRef(filename);
427
583
    st->st_future = future;
428
429
    /* Setup recursion depth check counters */
430
583
    tstate = _PyThreadState_GET();
431
583
    if (!tstate) {
432
0
        _PySymtable_Free(st);
433
0
        return NULL;
434
0
    }
435
436
    /* Make the initial symbol information gathering pass */
437
438
583
    _Py_SourceLocation loc0 = {0, 0, 0, 0};
439
583
    if (!symtable_enter_block(st, &_Py_ID(top), ModuleBlock, (void *)mod, loc0)) {
440
0
        _PySymtable_Free(st);
441
0
        return NULL;
442
0
    }
443
444
583
    st->st_top = st->st_cur;
445
583
    switch (mod->kind) {
446
417
    case Module_kind:
447
417
        seq = mod->v.Module.body;
448
417
        if (_PyAST_GetDocString(seq)) {
449
115
            st->st_cur->ste_has_docstring = 1;
450
115
        }
451
3.07k
        for (i = 0; i < asdl_seq_LEN(seq); i++)
452
2.65k
            if (!symtable_visit_stmt(st,
453
2.65k
                        (stmt_ty)asdl_seq_GET(seq, i)))
454
0
                goto error;
455
417
        break;
456
417
    case Expression_kind:
457
166
        if (!symtable_visit_expr(st, mod->v.Expression.body))
458
0
            goto error;
459
166
        break;
460
166
    case Interactive_kind:
461
0
        seq = mod->v.Interactive.body;
462
0
        for (i = 0; i < asdl_seq_LEN(seq); i++)
463
0
            if (!symtable_visit_stmt(st,
464
0
                        (stmt_ty)asdl_seq_GET(seq, i)))
465
0
                goto error;
466
0
        break;
467
0
    case FunctionType_kind:
468
0
        PyErr_SetString(PyExc_RuntimeError,
469
0
                        "this compiler does not handle FunctionTypes");
470
0
        goto error;
471
583
    }
472
583
    if (!symtable_exit_block(st)) {
473
0
        _PySymtable_Free(st);
474
0
        return NULL;
475
0
    }
476
    /* Make the second symbol analysis pass */
477
583
    if (symtable_analyze(st)) {
478
#if _PY_DUMP_SYMTABLE
479
        dump_symtable(st->st_top);
480
#endif
481
583
        return st;
482
583
    }
483
0
    _PySymtable_Free(st);
484
0
    return NULL;
485
0
 error:
486
0
    (void) symtable_exit_block(st);
487
0
    _PySymtable_Free(st);
488
0
    return NULL;
489
583
}
490
491
492
void
493
_PySymtable_Free(struct symtable *st)
494
583
{
495
583
    Py_XDECREF(st->st_filename);
496
583
    Py_XDECREF(st->st_blocks);
497
583
    Py_XDECREF(st->st_stack);
498
583
    PyMem_Free((void *)st);
499
583
}
500
501
PySTEntryObject *
502
_PySymtable_Lookup(struct symtable *st, void *key)
503
4.67k
{
504
4.67k
    PyObject *k, *v;
505
506
4.67k
    k = PyLong_FromVoidPtr(key);
507
4.67k
    if (k == NULL)
508
0
        return NULL;
509
4.67k
    if (PyDict_GetItemRef(st->st_blocks, k, &v) == 0) {
510
0
        PyErr_SetString(PyExc_KeyError,
511
0
                        "unknown symbol table entry");
512
0
    }
513
4.67k
    Py_DECREF(k);
514
515
4.67k
    assert(v == NULL || PySTEntry_Check(v));
516
4.67k
    return (PySTEntryObject *)v;
517
4.67k
}
518
519
int
520
_PySymtable_LookupOptional(struct symtable *st, void *key,
521
                           PySTEntryObject **out)
522
2.96k
{
523
2.96k
    PyObject *k = PyLong_FromVoidPtr(key);
524
2.96k
    if (k == NULL) {
525
0
        *out = NULL;
526
0
        return -1;
527
0
    }
528
2.96k
    int result = PyDict_GetItemRef(st->st_blocks, k, (PyObject **)out);
529
2.96k
    Py_DECREF(k);
530
2.96k
    assert(*out == NULL || PySTEntry_Check(*out));
531
2.96k
    return result;
532
2.96k
}
533
534
long
535
_PyST_GetSymbol(PySTEntryObject *ste, PyObject *name)
536
58.1k
{
537
58.1k
    PyObject *v;
538
58.1k
    if (PyDict_GetItemRef(ste->ste_symbols, name, &v) < 0) {
539
0
        return -1;
540
0
    }
541
58.1k
    if (!v) {
542
9.43k
        return 0;
543
9.43k
    }
544
48.7k
    long symbol = PyLong_AsLong(v);
545
48.7k
    Py_DECREF(v);
546
48.7k
    if (symbol < 0) {
547
0
        if (!PyErr_Occurred()) {
548
0
            PyErr_SetString(PyExc_SystemError, "invalid symbol");
549
0
        }
550
0
        return -1;
551
0
    }
552
48.7k
    return symbol;
553
48.7k
}
554
555
int
556
_PyST_GetScope(PySTEntryObject *ste, PyObject *name)
557
51.5k
{
558
51.5k
    long symbol = _PyST_GetSymbol(ste, name);
559
51.5k
    if (symbol < 0) {
560
0
        return -1;
561
0
    }
562
51.5k
    return SYMBOL_TO_SCOPE(symbol);
563
51.5k
}
564
565
int
566
_PyST_IsFunctionLike(PySTEntryObject *ste)
567
104k
{
568
104k
    return ste->ste_type == FunctionBlock
569
23.7k
        || ste->ste_type == AnnotationBlock
570
17.5k
        || ste->ste_type == TypeVariableBlock
571
17.5k
        || ste->ste_type == TypeAliasBlock
572
17.5k
        || ste->ste_type == TypeParametersBlock;
573
104k
}
574
575
static int
576
error_at_directive(PySTEntryObject *ste, PyObject *name)
577
0
{
578
0
    Py_ssize_t i;
579
0
    PyObject *data;
580
0
    assert(ste->ste_directives);
581
0
    for (i = 0; i < PyList_GET_SIZE(ste->ste_directives); i++) {
582
0
        data = PyList_GET_ITEM(ste->ste_directives, i);
583
0
        assert(PyTuple_CheckExact(data));
584
0
        assert(PyUnicode_CheckExact(PyTuple_GET_ITEM(data, 0)));
585
0
        if (PyUnicode_Compare(PyTuple_GET_ITEM(data, 0), name) == 0) {
586
0
            PyErr_RangedSyntaxLocationObject(ste->ste_table->st_filename,
587
0
                                             PyLong_AsLong(PyTuple_GET_ITEM(data, 1)),
588
0
                                             PyLong_AsLong(PyTuple_GET_ITEM(data, 2)) + 1,
589
0
                                             PyLong_AsLong(PyTuple_GET_ITEM(data, 3)),
590
0
                                             PyLong_AsLong(PyTuple_GET_ITEM(data, 4)) + 1);
591
592
0
            return 0;
593
0
        }
594
0
    }
595
0
    PyErr_SetString(PyExc_RuntimeError,
596
0
                    "BUG: internal directive bookkeeping broken");
597
0
    return 0;
598
0
}
599
600
601
/* Analyze raw symbol information to determine scope of each name.
602
603
   The next several functions are helpers for symtable_analyze(),
604
   which determines whether a name is local, global, or free.  In addition,
605
   it determines which local variables are cell variables; they provide
606
   bindings that are used for free variables in enclosed blocks.
607
608
   There are also two kinds of global variables, implicit and explicit.  An
609
   explicit global is declared with the global statement.  An implicit
610
   global is a free variable for which the compiler has found no binding
611
   in an enclosing function scope.  The implicit global is either a global
612
   or a builtin.  Python's module and class blocks use the xxx_NAME opcodes
613
   to handle these names to implement slightly odd semantics.  In such a
614
   block, the name is treated as global until it is assigned to; then it
615
   is treated as a local.
616
617
   The symbol table requires two passes to determine the scope of each name.
618
   The first pass collects raw facts from the AST via the symtable_visit_*
619
   functions: the name is a parameter here, the name is used but not defined
620
   here, etc.  The second pass analyzes these facts during a pass over the
621
   PySTEntryObjects created during pass 1.
622
623
   When a function is entered during the second pass, the parent passes
624
   the set of all name bindings visible to its children.  These bindings
625
   are used to determine if non-local variables are free or implicit globals.
626
   Names which are explicitly declared nonlocal must exist in this set of
627
   visible names - if they do not, a syntax error is raised. After doing
628
   the local analysis, it analyzes each of its child blocks using an
629
   updated set of name bindings.
630
631
   The children update the free variable set.  If a local variable is added to
632
   the free variable set by the child, the variable is marked as a cell.  The
633
   function object being defined must provide runtime storage for the variable
634
   that may outlive the function's frame.  Cell variables are removed from the
635
   free set before the analyze function returns to its parent.
636
637
   During analysis, the names are:
638
      symbols: dict mapping from symbol names to flag values (including offset scope values)
639
      scopes: dict mapping from symbol names to scope values (no offset)
640
      local: set of all symbol names local to the current scope
641
      bound: set of all symbol names local to a containing function scope
642
      free: set of all symbol names referenced but not bound in child scopes
643
      global: set of all symbol names explicitly declared as global
644
*/
645
646
#define SET_SCOPE(DICT, NAME, I) \
647
27.4k
    do { \
648
27.4k
        PyObject *o = PyLong_FromLong(I); \
649
27.4k
        if (!o) \
650
27.4k
            return 0; \
651
27.4k
        if (PyDict_SetItem((DICT), (NAME), o) < 0) { \
652
0
            Py_DECREF(o); \
653
0
            return 0; \
654
0
        } \
655
27.4k
        Py_DECREF(o); \
656
27.4k
    } while(0)
657
658
/* Decide on scope of name, given flags.
659
660
   The namespace dictionaries may be modified to record information
661
   about the new name.  For example, a new global will add an entry to
662
   global.  A name that was global can be changed to local.
663
*/
664
665
static int
666
analyze_name(PySTEntryObject *ste, PyObject *scopes, PyObject *name, long flags,
667
             PyObject *bound, PyObject *local, PyObject *free,
668
             PyObject *global, PyObject *type_params, PySTEntryObject *class_entry)
669
27.4k
{
670
27.4k
    int contains;
671
27.4k
    if (flags & DEF_GLOBAL) {
672
20
        if (flags & DEF_NONLOCAL) {
673
0
            PyErr_Format(PyExc_SyntaxError,
674
0
                         "name '%U' is nonlocal and global",
675
0
                         name);
676
0
            return error_at_directive(ste, name);
677
0
        }
678
20
        SET_SCOPE(scopes, name, GLOBAL_EXPLICIT);
679
20
        if (PySet_Add(global, name) < 0)
680
0
            return 0;
681
20
        if (bound && (PySet_Discard(bound, name) < 0))
682
0
            return 0;
683
20
        return 1;
684
20
    }
685
27.4k
    if (flags & DEF_NONLOCAL) {
686
6
        if (!bound) {
687
0
            PyErr_Format(PyExc_SyntaxError,
688
0
                         "nonlocal declaration not allowed at module level");
689
0
            return error_at_directive(ste, name);
690
0
        }
691
6
        contains = PySet_Contains(bound, name);
692
6
        if (contains < 0) {
693
0
            return 0;
694
0
        }
695
6
        if (!contains) {
696
0
            PyErr_Format(PyExc_SyntaxError,
697
0
                         "no binding for nonlocal '%U' found",
698
0
                         name);
699
700
0
            return error_at_directive(ste, name);
701
0
        }
702
6
        contains = PySet_Contains(type_params, name);
703
6
        if (contains < 0) {
704
0
            return 0;
705
0
        }
706
6
        if (contains) {
707
0
            PyErr_Format(PyExc_SyntaxError,
708
0
                         "nonlocal binding not allowed for type parameter '%U'",
709
0
                         name);
710
0
            return error_at_directive(ste, name);
711
0
        }
712
6
        SET_SCOPE(scopes, name, FREE);
713
6
        return PySet_Add(free, name) >= 0;
714
6
    }
715
27.4k
    if (flags & DEF_BOUND) {
716
19.0k
        SET_SCOPE(scopes, name, LOCAL);
717
19.0k
        if (PySet_Add(local, name) < 0)
718
0
            return 0;
719
19.0k
        if (PySet_Discard(global, name) < 0)
720
0
            return 0;
721
19.0k
        if (flags & DEF_TYPE_PARAM) {
722
0
            if (PySet_Add(type_params, name) < 0)
723
0
                return 0;
724
0
        }
725
19.0k
        else {
726
19.0k
            if (PySet_Discard(type_params, name) < 0)
727
0
                return 0;
728
19.0k
        }
729
19.0k
        return 1;
730
19.0k
    }
731
    // If we were passed class_entry (i.e., we're in an ste_can_see_class_scope scope)
732
    // and the bound name is in that set, then the name is potentially bound both by
733
    // the immediately enclosing class namespace, and also by an outer function namespace.
734
    // In that case, we want the runtime name resolution to look at only the class
735
    // namespace and the globals (not the namespace providing the bound).
736
    // Similarly, if the name is explicitly global in the class namespace (through the
737
    // global statement), we want to also treat it as a global in this scope.
738
8.35k
    if (class_entry != NULL) {
739
1.82k
        long class_flags = _PyST_GetSymbol(class_entry, name);
740
1.82k
        if (class_flags < 0) {
741
0
            return 0;
742
0
        }
743
1.82k
        if (class_flags & DEF_GLOBAL) {
744
0
            SET_SCOPE(scopes, name, GLOBAL_EXPLICIT);
745
0
            return 1;
746
0
        }
747
1.82k
        else if ((class_flags & DEF_BOUND) && !(class_flags & DEF_NONLOCAL)) {
748
0
            SET_SCOPE(scopes, name, GLOBAL_IMPLICIT);
749
0
            return 1;
750
0
        }
751
1.82k
    }
752
    /* If an enclosing block has a binding for this name, it
753
       is a free variable rather than a global variable.
754
       Note that having a non-NULL bound implies that the block
755
       is nested.
756
    */
757
8.35k
    if (bound) {
758
8.22k
        contains = PySet_Contains(bound, name);
759
8.22k
        if (contains < 0) {
760
0
            return 0;
761
0
        }
762
8.22k
        if (contains) {
763
2.49k
            SET_SCOPE(scopes, name, FREE);
764
2.49k
            return PySet_Add(free, name) >= 0;
765
2.49k
        }
766
8.22k
    }
767
    /* If a parent has a global statement, then call it global
768
       explicit?  It could also be global implicit.
769
     */
770
5.85k
    if (global) {
771
5.85k
        contains = PySet_Contains(global, name);
772
5.85k
        if (contains < 0) {
773
0
            return 0;
774
0
        }
775
5.85k
        if (contains) {
776
4
            SET_SCOPE(scopes, name, GLOBAL_IMPLICIT);
777
4
            return 1;
778
4
        }
779
5.85k
    }
780
5.85k
    SET_SCOPE(scopes, name, GLOBAL_IMPLICIT);
781
5.85k
    return 1;
782
5.85k
}
783
784
static int
785
is_free_in_any_child(PySTEntryObject *entry, PyObject *key)
786
41
{
787
41
    for (Py_ssize_t i = 0; i < PyList_GET_SIZE(entry->ste_children); i++) {
788
0
        PySTEntryObject *child_ste = (PySTEntryObject *)PyList_GET_ITEM(
789
0
            entry->ste_children, i);
790
0
        long scope = _PyST_GetScope(child_ste, key);
791
0
        if (scope < 0) {
792
0
            return -1;
793
0
        }
794
0
        if (scope == FREE) {
795
0
            return 1;
796
0
        }
797
0
    }
798
41
    return 0;
799
41
}
800
801
static int
802
inline_comprehension(PySTEntryObject *ste, PySTEntryObject *comp,
803
                     PyObject *scopes, PyObject *comp_free,
804
                     PyObject *inlined_cells)
805
53
{
806
53
    PyObject *k, *v;
807
53
    Py_ssize_t pos = 0;
808
53
    int remove_dunder_class = 0;
809
810
217
    while (PyDict_Next(comp->ste_symbols, &pos, &k, &v)) {
811
        // skip comprehension parameter
812
164
        long comp_flags = PyLong_AsLong(v);
813
164
        if (comp_flags == -1 && PyErr_Occurred()) {
814
0
            return 0;
815
0
        }
816
164
        if (comp_flags & DEF_PARAM) {
817
53
            assert(_PyUnicode_EqualToASCIIString(k, ".0"));
818
53
            continue;
819
53
        }
820
111
        int scope = SYMBOL_TO_SCOPE(comp_flags);
821
111
        int only_flags = comp_flags & ((1 << SCOPE_OFFSET) - 1);
822
111
        if (scope == CELL || only_flags & DEF_COMP_CELL) {
823
0
            if (PySet_Add(inlined_cells, k) < 0) {
824
0
                return 0;
825
0
            }
826
0
        }
827
111
        PyObject *existing = PyDict_GetItemWithError(ste->ste_symbols, k);
828
111
        if (existing == NULL && PyErr_Occurred()) {
829
0
            return 0;
830
0
        }
831
        // __class__ is never allowed to be free through a class scope (see
832
        // drop_class_free)
833
111
        if (scope == FREE && ste->ste_type == ClassBlock &&
834
0
                _PyUnicode_EqualToASCIIString(k, "__class__")) {
835
0
            scope = GLOBAL_IMPLICIT;
836
0
            if (PySet_Discard(comp_free, k) < 0) {
837
0
                return 0;
838
0
            }
839
0
            remove_dunder_class = 1;
840
0
        }
841
111
        if (!existing) {
842
            // name does not exist in scope, copy from comprehension
843
67
            assert(scope != FREE || PySet_Contains(comp_free, k) == 1);
844
67
            PyObject *v_flags = PyLong_FromLong(only_flags);
845
67
            if (v_flags == NULL) {
846
0
                return 0;
847
0
            }
848
67
            int ok = PyDict_SetItem(ste->ste_symbols, k, v_flags);
849
67
            Py_DECREF(v_flags);
850
67
            if (ok < 0) {
851
0
                return 0;
852
0
            }
853
67
            SET_SCOPE(scopes, k, scope);
854
67
        }
855
44
        else {
856
44
            long flags = PyLong_AsLong(existing);
857
44
            if (flags == -1 && PyErr_Occurred()) {
858
0
                return 0;
859
0
            }
860
44
            if ((flags & DEF_BOUND) && ste->ste_type != ClassBlock) {
861
                // free vars in comprehension that are locals in outer scope can
862
                // now simply be locals, unless they are free in comp children,
863
                // or if the outer scope is a class block
864
41
                int ok = is_free_in_any_child(comp, k);
865
41
                if (ok < 0) {
866
0
                    return 0;
867
0
                }
868
41
                if (!ok) {
869
41
                    if (PySet_Discard(comp_free, k) < 0) {
870
0
                        return 0;
871
0
                    }
872
41
                }
873
41
            }
874
44
        }
875
111
    }
876
53
    if (remove_dunder_class && PyDict_DelItemString(comp->ste_symbols, "__class__") < 0) {
877
0
        return 0;
878
0
    }
879
53
    return 1;
880
53
}
881
882
#undef SET_SCOPE
883
884
/* If a name is defined in free and also in locals, then this block
885
   provides the binding for the free variable.  The name should be
886
   marked CELL in this block and removed from the free list.
887
888
   Note that the current block's free variables are included in free.
889
   That's safe because no name can be free and local in the same scope.
890
*/
891
892
static int
893
analyze_cells(PyObject *scopes, PyObject *free, PyObject *inlined_cells)
894
6.23k
{
895
6.23k
    PyObject *name, *v, *v_cell;
896
6.23k
    int success = 0;
897
6.23k
    Py_ssize_t pos = 0;
898
899
6.23k
    v_cell = PyLong_FromLong(CELL);
900
6.23k
    if (!v_cell)
901
0
        return 0;
902
28.7k
    while (PyDict_Next(scopes, &pos, &name, &v)) {
903
22.5k
        long scope = PyLong_AsLong(v);
904
22.5k
        if (scope == -1 && PyErr_Occurred()) {
905
0
            goto error;
906
0
        }
907
22.5k
        if (scope != LOCAL)
908
8.10k
            continue;
909
14.4k
        int contains = PySet_Contains(free, name);
910
14.4k
        if (contains < 0) {
911
0
            goto error;
912
0
        }
913
14.4k
        if (!contains) {
914
13.9k
            contains = PySet_Contains(inlined_cells, name);
915
13.9k
            if (contains < 0) {
916
0
                goto error;
917
0
            }
918
13.9k
            if (!contains) {
919
13.9k
                continue;
920
13.9k
            }
921
13.9k
        }
922
        /* Replace LOCAL with CELL for this name, and remove
923
           from free. It is safe to replace the value of name
924
           in the dict, because it will not cause a resize.
925
         */
926
468
        if (PyDict_SetItem(scopes, name, v_cell) < 0)
927
0
            goto error;
928
468
        if (PySet_Discard(free, name) < 0)
929
0
            goto error;
930
468
    }
931
6.23k
    success = 1;
932
6.23k
 error:
933
6.23k
    Py_DECREF(v_cell);
934
6.23k
    return success;
935
6.23k
}
936
937
static int
938
drop_class_free(PySTEntryObject *ste, PyObject *free)
939
720
{
940
720
    int res;
941
720
    res = PySet_Discard(free, &_Py_ID(__class__));
942
720
    if (res < 0)
943
0
        return 0;
944
720
    if (res)
945
36
        ste->ste_needs_class_closure = 1;
946
720
    res = PySet_Discard(free, &_Py_ID(__classdict__));
947
720
    if (res < 0)
948
0
        return 0;
949
720
    if (res)
950
392
        ste->ste_needs_classdict = 1;
951
720
    res = PySet_Discard(free, &_Py_ID(__conditional_annotations__));
952
720
    if (res < 0)
953
0
        return 0;
954
720
    if (res) {
955
0
        ste->ste_has_conditional_annotations = 1;
956
0
    }
957
720
    return 1;
958
720
}
959
960
/* Enter the final scope information into the ste_symbols dict.
961
 *
962
 * All arguments are dicts.  Modifies symbols, others are read-only.
963
*/
964
static int
965
update_symbols(PyObject *symbols, PyObject *scopes,
966
               PyObject *bound, PyObject *free,
967
               PyObject *inlined_cells, int classflag)
968
7.53k
{
969
7.53k
    PyObject *name = NULL, *itr = NULL;
970
7.53k
    PyObject *v = NULL, *v_scope = NULL, *v_new = NULL, *v_free = NULL;
971
7.53k
    Py_ssize_t pos = 0;
972
973
    /* Update scope information for all symbols in this scope */
974
35.0k
    while (PyDict_Next(symbols, &pos, &name, &v)) {
975
27.4k
        long flags = PyLong_AsLong(v);
976
27.4k
        if (flags == -1 && PyErr_Occurred()) {
977
0
            return 0;
978
0
        }
979
27.4k
        int contains = PySet_Contains(inlined_cells, name);
980
27.4k
        if (contains < 0) {
981
0
            return 0;
982
0
        }
983
27.4k
        if (contains) {
984
0
            flags |= DEF_COMP_CELL;
985
0
        }
986
27.4k
        if (PyDict_GetItemRef(scopes, name, &v_scope) < 0) {
987
0
            return 0;
988
0
        }
989
27.4k
        if (!v_scope) {
990
0
            PyErr_SetObject(PyExc_KeyError, name);
991
0
            return 0;
992
0
        }
993
27.4k
        long scope = PyLong_AsLong(v_scope);
994
27.4k
        Py_DECREF(v_scope);
995
27.4k
        if (scope == -1 && PyErr_Occurred()) {
996
0
            return 0;
997
0
        }
998
27.4k
        flags |= (scope << SCOPE_OFFSET);
999
27.4k
        v_new = PyLong_FromLong(flags);
1000
27.4k
        if (!v_new)
1001
0
            return 0;
1002
27.4k
        if (PyDict_SetItem(symbols, name, v_new) < 0) {
1003
0
            Py_DECREF(v_new);
1004
0
            return 0;
1005
0
        }
1006
27.4k
        Py_DECREF(v_new);
1007
27.4k
    }
1008
1009
    /* Record not yet resolved free variables from children (if any) */
1010
7.53k
    v_free = PyLong_FromLong(FREE << SCOPE_OFFSET);
1011
7.53k
    if (!v_free)
1012
0
        return 0;
1013
1014
7.53k
    itr = PyObject_GetIter(free);
1015
7.53k
    if (itr == NULL) {
1016
0
        Py_DECREF(v_free);
1017
0
        return 0;
1018
0
    }
1019
1020
7.54k
    while ((name = PyIter_Next(itr))) {
1021
7
        v = PyDict_GetItemWithError(symbols, name);
1022
1023
        /* Handle symbol that already exists in this scope */
1024
7
        if (v) {
1025
            /* Handle a free variable in a method of
1026
               the class that has the same name as a local
1027
               or global in the class scope.
1028
            */
1029
2
            if  (classflag) {
1030
1
                long flags = PyLong_AsLong(v);
1031
1
                if (flags == -1 && PyErr_Occurred()) {
1032
0
                    goto error;
1033
0
                }
1034
1
                flags |= DEF_FREE_CLASS;
1035
1
                v_new = PyLong_FromLong(flags);
1036
1
                if (!v_new) {
1037
0
                    goto error;
1038
0
                }
1039
1
                if (PyDict_SetItem(symbols, name, v_new) < 0) {
1040
0
                    Py_DECREF(v_new);
1041
0
                    goto error;
1042
0
                }
1043
1
                Py_DECREF(v_new);
1044
1
            }
1045
            /* It's a cell, or already free in this scope */
1046
2
            Py_DECREF(name);
1047
2
            continue;
1048
2
        }
1049
5
        else if (PyErr_Occurred()) {
1050
0
            goto error;
1051
0
        }
1052
        /* Handle global symbol */
1053
5
        if (bound) {
1054
5
            int contains = PySet_Contains(bound, name);
1055
5
            if (contains < 0) {
1056
0
                goto error;
1057
0
            }
1058
5
            if (!contains) {
1059
0
                Py_DECREF(name);
1060
0
                continue;       /* it's a global */
1061
0
            }
1062
5
        }
1063
        /* Propagate new free symbol up the lexical stack */
1064
5
        if (PyDict_SetItem(symbols, name, v_free) < 0) {
1065
0
            goto error;
1066
0
        }
1067
5
        Py_DECREF(name);
1068
5
    }
1069
1070
    /* Check if loop ended because of exception in PyIter_Next */
1071
7.53k
    if (PyErr_Occurred()) {
1072
0
        goto error;
1073
0
    }
1074
1075
7.53k
    Py_DECREF(itr);
1076
7.53k
    Py_DECREF(v_free);
1077
7.53k
    return 1;
1078
0
error:
1079
0
    Py_XDECREF(v_free);
1080
0
    Py_XDECREF(itr);
1081
0
    Py_XDECREF(name);
1082
0
    return 0;
1083
7.53k
}
1084
1085
/* Make final symbol table decisions for block of ste.
1086
1087
   Arguments:
1088
   ste -- current symtable entry (input/output)
1089
   bound -- set of variables bound in enclosing scopes (input).  bound
1090
       is NULL for module blocks.
1091
   free -- set of free variables in enclosed scopes (output)
1092
   globals -- set of declared global variables in enclosing scopes (input)
1093
1094
   The implementation uses two mutually recursive functions,
1095
   analyze_block() and analyze_child_block().  analyze_block() is
1096
   responsible for analyzing the individual names defined in a block.
1097
   analyze_child_block() prepares temporary namespace dictionaries
1098
   used to evaluated nested blocks.
1099
1100
   The two functions exist because a child block should see the name
1101
   bindings of its enclosing blocks, but those bindings should not
1102
   propagate back to a parent block.
1103
*/
1104
1105
static int
1106
analyze_child_block(PySTEntryObject *entry, PyObject *bound, PyObject *free,
1107
                    PyObject *global, PyObject *type_params,
1108
                    PySTEntryObject *class_entry, PyObject **child_free);
1109
1110
static int
1111
analyze_block(PySTEntryObject *ste, PyObject *bound, PyObject *free,
1112
              PyObject *global, PyObject *type_params,
1113
              PySTEntryObject *class_entry)
1114
7.53k
{
1115
7.53k
    PyObject *name, *v, *local = NULL, *scopes = NULL, *newbound = NULL;
1116
7.53k
    PyObject *newglobal = NULL, *newfree = NULL, *inlined_cells = NULL;
1117
7.53k
    PyObject *temp;
1118
7.53k
    int success = 0;
1119
7.53k
    Py_ssize_t i, pos = 0;
1120
1121
7.53k
    local = PySet_New(NULL);  /* collect new names bound in block */
1122
7.53k
    if (!local)
1123
0
        goto error;
1124
7.53k
    scopes = PyDict_New();  /* collect scopes defined for each name */
1125
7.53k
    if (!scopes)
1126
0
        goto error;
1127
1128
    /* Allocate new global, bound and free variable sets.  These
1129
       sets hold the names visible in nested blocks.  For
1130
       ClassBlocks, the bound and global names are initialized
1131
       before analyzing names, because class bindings aren't
1132
       visible in methods.  For other blocks, they are initialized
1133
       after names are analyzed.
1134
     */
1135
1136
    /* TODO(jhylton): Package these dicts in a struct so that we
1137
       can write reasonable helper functions?
1138
    */
1139
7.53k
    newglobal = PySet_New(NULL);
1140
7.53k
    if (!newglobal)
1141
0
        goto error;
1142
7.53k
    newfree = PySet_New(NULL);
1143
7.53k
    if (!newfree)
1144
0
        goto error;
1145
7.53k
    newbound = PySet_New(NULL);
1146
7.53k
    if (!newbound)
1147
0
        goto error;
1148
7.53k
    inlined_cells = PySet_New(NULL);
1149
7.53k
    if (!inlined_cells)
1150
0
        goto error;
1151
1152
    /* Class namespace has no effect on names visible in
1153
       nested functions, so populate the global and bound
1154
       sets to be passed to child blocks before analyzing
1155
       this one.
1156
     */
1157
7.53k
    if (ste->ste_type == ClassBlock) {
1158
        /* Pass down known globals */
1159
720
        temp = PyNumber_InPlaceOr(newglobal, global);
1160
720
        if (!temp)
1161
0
            goto error;
1162
720
        Py_DECREF(temp);
1163
        /* Pass down previously bound symbols */
1164
720
        if (bound) {
1165
720
            temp = PyNumber_InPlaceOr(newbound, bound);
1166
720
            if (!temp)
1167
0
                goto error;
1168
720
            Py_DECREF(temp);
1169
720
        }
1170
720
    }
1171
1172
34.9k
    while (PyDict_Next(ste->ste_symbols, &pos, &name, &v)) {
1173
27.4k
        long flags = PyLong_AsLong(v);
1174
27.4k
        if (flags == -1 && PyErr_Occurred()) {
1175
0
            goto error;
1176
0
        }
1177
27.4k
        if (!analyze_name(ste, scopes, name, flags,
1178
27.4k
                          bound, local, free, global, type_params, class_entry))
1179
0
            goto error;
1180
27.4k
    }
1181
1182
    /* Populate global and bound sets to be passed to children. */
1183
7.53k
    if (ste->ste_type != ClassBlock) {
1184
        /* Add function locals to bound set */
1185
6.81k
        if (_PyST_IsFunctionLike(ste)) {
1186
6.23k
            temp = PyNumber_InPlaceOr(newbound, local);
1187
6.23k
            if (!temp)
1188
0
                goto error;
1189
6.23k
            Py_DECREF(temp);
1190
6.23k
        }
1191
        /* Pass down previously bound symbols */
1192
6.81k
        if (bound) {
1193
6.23k
            temp = PyNumber_InPlaceOr(newbound, bound);
1194
6.23k
            if (!temp)
1195
0
                goto error;
1196
6.23k
            Py_DECREF(temp);
1197
6.23k
        }
1198
        /* Pass down known globals */
1199
6.81k
        temp = PyNumber_InPlaceOr(newglobal, global);
1200
6.81k
        if (!temp)
1201
0
            goto error;
1202
6.81k
        Py_DECREF(temp);
1203
6.81k
    }
1204
720
    else {
1205
        /* Special-case __class__ and __classdict__ */
1206
720
        if (PySet_Add(newbound, &_Py_ID(__class__)) < 0)
1207
0
            goto error;
1208
720
        if (PySet_Add(newbound, &_Py_ID(__classdict__)) < 0)
1209
0
            goto error;
1210
720
        if (PySet_Add(newbound, &_Py_ID(__conditional_annotations__)) < 0)
1211
0
            goto error;
1212
720
    }
1213
1214
    /* Recursively call analyze_child_block() on each child block.
1215
1216
       newbound, newglobal now contain the names visible in
1217
       nested blocks.  The free variables in the children will
1218
       be added to newfree.
1219
    */
1220
14.4k
    for (i = 0; i < PyList_GET_SIZE(ste->ste_children); ++i) {
1221
6.95k
        PyObject *child_free = NULL;
1222
6.95k
        PyObject *c = PyList_GET_ITEM(ste->ste_children, i);
1223
6.95k
        PySTEntryObject* entry;
1224
6.95k
        assert(c && PySTEntry_Check(c));
1225
6.95k
        entry = (PySTEntryObject*)c;
1226
1227
6.95k
        PySTEntryObject *new_class_entry = NULL;
1228
6.95k
        if (entry->ste_can_see_class_scope) {
1229
1.78k
            if (ste->ste_type == ClassBlock) {
1230
1.78k
                new_class_entry = ste;
1231
1.78k
            }
1232
0
            else if (class_entry) {
1233
0
                new_class_entry = class_entry;
1234
0
            }
1235
1.78k
        }
1236
1237
        // we inline all non-generator-expression comprehensions,
1238
        // except those in annotation scopes that are nested in classes
1239
6.95k
        int inline_comp =
1240
6.95k
            entry->ste_comprehension &&
1241
91
            !entry->ste_generator &&
1242
53
            !ste->ste_can_see_class_scope;
1243
1244
6.95k
        if (!analyze_child_block(entry, newbound, newfree, newglobal,
1245
6.95k
                                 type_params, new_class_entry, &child_free))
1246
0
        {
1247
0
            goto error;
1248
0
        }
1249
6.95k
        if (inline_comp) {
1250
53
            if (!inline_comprehension(ste, entry, scopes, child_free, inlined_cells)) {
1251
0
                Py_DECREF(child_free);
1252
0
                goto error;
1253
0
            }
1254
53
            entry->ste_comp_inlined = 1;
1255
53
        }
1256
6.95k
        temp = PyNumber_InPlaceOr(newfree, child_free);
1257
6.95k
        Py_DECREF(child_free);
1258
6.95k
        if (!temp)
1259
0
            goto error;
1260
6.95k
        Py_DECREF(temp);
1261
6.95k
    }
1262
1263
    /* Splice children of inlined comprehensions into our children list */
1264
14.4k
    for (i = PyList_GET_SIZE(ste->ste_children) - 1; i >= 0; --i) {
1265
6.95k
        PyObject* c = PyList_GET_ITEM(ste->ste_children, i);
1266
6.95k
        PySTEntryObject* entry;
1267
6.95k
        assert(c && PySTEntry_Check(c));
1268
6.95k
        entry = (PySTEntryObject*)c;
1269
6.95k
        if (entry->ste_comp_inlined &&
1270
53
            PyList_SetSlice(ste->ste_children, i, i + 1,
1271
53
                            entry->ste_children) < 0)
1272
0
        {
1273
0
            goto error;
1274
0
        }
1275
6.95k
    }
1276
1277
    /* Check if any local variables must be converted to cell variables */
1278
7.53k
    if (_PyST_IsFunctionLike(ste) && !analyze_cells(scopes, newfree, inlined_cells))
1279
0
        goto error;
1280
7.53k
    else if (ste->ste_type == ClassBlock && !drop_class_free(ste, newfree))
1281
0
        goto error;
1282
    /* Records the results of the analysis in the symbol table entry */
1283
7.53k
    if (!update_symbols(ste->ste_symbols, scopes, bound, newfree, inlined_cells,
1284
7.53k
                        (ste->ste_type == ClassBlock) || ste->ste_can_see_class_scope))
1285
0
        goto error;
1286
1287
7.53k
    temp = PyNumber_InPlaceOr(free, newfree);
1288
7.53k
    if (!temp)
1289
0
        goto error;
1290
7.53k
    Py_DECREF(temp);
1291
7.53k
    success = 1;
1292
7.53k
 error:
1293
7.53k
    Py_XDECREF(scopes);
1294
7.53k
    Py_XDECREF(local);
1295
7.53k
    Py_XDECREF(newbound);
1296
7.53k
    Py_XDECREF(newglobal);
1297
7.53k
    Py_XDECREF(newfree);
1298
7.53k
    Py_XDECREF(inlined_cells);
1299
7.53k
    if (!success)
1300
7.53k
        assert(PyErr_Occurred());
1301
7.53k
    return success;
1302
7.53k
}
1303
1304
static int
1305
analyze_child_block(PySTEntryObject *entry, PyObject *bound, PyObject *free,
1306
                    PyObject *global, PyObject *type_params,
1307
                    PySTEntryObject *class_entry, PyObject** child_free)
1308
6.95k
{
1309
6.95k
    PyObject *temp_bound = NULL, *temp_global = NULL, *temp_free = NULL;
1310
6.95k
    PyObject *temp_type_params = NULL;
1311
1312
    /* Copy the bound/global/free sets.
1313
1314
       These sets are used by all blocks enclosed by the
1315
       current block.  The analyze_block() call modifies these
1316
       sets.
1317
1318
    */
1319
6.95k
    temp_bound = PySet_New(bound);
1320
6.95k
    if (!temp_bound)
1321
0
        goto error;
1322
6.95k
    temp_free = PySet_New(free);
1323
6.95k
    if (!temp_free)
1324
0
        goto error;
1325
6.95k
    temp_global = PySet_New(global);
1326
6.95k
    if (!temp_global)
1327
0
        goto error;
1328
6.95k
    temp_type_params = PySet_New(type_params);
1329
6.95k
    if (!temp_type_params)
1330
0
        goto error;
1331
1332
6.95k
    if (!analyze_block(entry, temp_bound, temp_free, temp_global,
1333
6.95k
                       temp_type_params, class_entry))
1334
0
        goto error;
1335
6.95k
    *child_free = temp_free;
1336
6.95k
    Py_DECREF(temp_bound);
1337
6.95k
    Py_DECREF(temp_global);
1338
6.95k
    Py_DECREF(temp_type_params);
1339
6.95k
    return 1;
1340
0
 error:
1341
0
    Py_XDECREF(temp_bound);
1342
0
    Py_XDECREF(temp_free);
1343
0
    Py_XDECREF(temp_global);
1344
0
    Py_XDECREF(temp_type_params);
1345
0
    return 0;
1346
6.95k
}
1347
1348
static int
1349
symtable_analyze(struct symtable *st)
1350
583
{
1351
583
    PyObject *free, *global, *type_params;
1352
583
    int r;
1353
1354
583
    free = PySet_New(NULL);
1355
583
    if (!free)
1356
0
        return 0;
1357
583
    global = PySet_New(NULL);
1358
583
    if (!global) {
1359
0
        Py_DECREF(free);
1360
0
        return 0;
1361
0
    }
1362
583
    type_params = PySet_New(NULL);
1363
583
    if (!type_params) {
1364
0
        Py_DECREF(free);
1365
0
        Py_DECREF(global);
1366
0
        return 0;
1367
0
    }
1368
583
    r = analyze_block(st->st_top, NULL, free, global, type_params, NULL);
1369
583
    Py_DECREF(free);
1370
583
    Py_DECREF(global);
1371
583
    Py_DECREF(type_params);
1372
583
    return r;
1373
583
}
1374
1375
/* symtable_enter_block() gets a reference via ste_new.
1376
   This reference is released when the block is exited, via the DECREF
1377
   in symtable_exit_block().
1378
*/
1379
1380
static int
1381
symtable_exit_block(struct symtable *st)
1382
7.54k
{
1383
7.54k
    Py_ssize_t size;
1384
1385
7.54k
    st->st_cur = NULL;
1386
7.54k
    size = PyList_GET_SIZE(st->st_stack);
1387
7.54k
    if (size) {
1388
7.54k
        if (PyList_SetSlice(st->st_stack, size - 1, size, NULL) < 0)
1389
0
            return 0;
1390
7.54k
        if (--size)
1391
6.95k
            st->st_cur = (PySTEntryObject *)PyList_GET_ITEM(st->st_stack, size - 1);
1392
7.54k
    }
1393
7.54k
    return 1;
1394
7.54k
}
1395
1396
static int
1397
symtable_enter_existing_block(struct symtable *st, PySTEntryObject* ste, bool add_to_children)
1398
7.54k
{
1399
7.54k
    if (PyList_Append(st->st_stack, (PyObject *)ste) < 0) {
1400
0
        return 0;
1401
0
    }
1402
7.54k
    PySTEntryObject *prev = st->st_cur;
1403
    /* bpo-37757: For now, disallow *all* assignment expressions in the
1404
     * outermost iterator expression of a comprehension, even those inside
1405
     * a nested comprehension or a lambda expression.
1406
     */
1407
7.54k
    if (prev) {
1408
6.95k
        ste->ste_comp_iter_expr = prev->ste_comp_iter_expr;
1409
6.95k
    }
1410
    /* No need to inherit ste_mangled_names in classes, where all names
1411
     * are mangled. */
1412
7.54k
    if (prev && prev->ste_mangled_names != NULL && ste->ste_type != ClassBlock) {
1413
0
        ste->ste_mangled_names = Py_NewRef(prev->ste_mangled_names);
1414
0
    }
1415
    /* The entry is owned by the stack. Borrow it for st_cur. */
1416
7.54k
    st->st_cur = ste;
1417
1418
    /* If "from __future__ import annotations" is active,
1419
     * annotation blocks shouldn't have any affect on the symbol table since in
1420
     * the compilation stage, they will all be transformed to strings. */
1421
7.54k
    if (st->st_future->ff_features & CO_FUTURE_ANNOTATIONS && ste->ste_type == AnnotationBlock) {
1422
0
        return 1;
1423
0
    }
1424
1425
7.54k
    if (ste->ste_type == ModuleBlock)
1426
583
        st->st_global = st->st_cur->ste_symbols;
1427
1428
7.54k
    if (add_to_children && prev) {
1429
6.95k
        if (PyList_Append(prev->ste_children, (PyObject *)ste) < 0) {
1430
0
            return 0;
1431
0
        }
1432
6.95k
    }
1433
7.54k
    return 1;
1434
7.54k
}
1435
1436
static int
1437
symtable_enter_block(struct symtable *st, identifier name, _Py_block_ty block,
1438
                     void *ast, _Py_SourceLocation loc)
1439
4.56k
{
1440
4.56k
    PySTEntryObject *ste = ste_new(st, name, block, ast, loc);
1441
4.56k
    if (ste == NULL)
1442
0
        return 0;
1443
4.56k
    int result = symtable_enter_existing_block(st, ste, /* add_to_children */true);
1444
4.56k
    Py_DECREF(ste);
1445
4.56k
    if (block == AnnotationBlock || block == TypeVariableBlock || block == TypeAliasBlock) {
1446
2.97k
        _Py_DECLARE_STR(format, ".format");
1447
        // We need to insert code that reads this "parameter" to the function.
1448
2.97k
        if (!symtable_add_def(st, &_Py_STR(format), DEF_PARAM, loc)) {
1449
0
            return 0;
1450
0
        }
1451
2.97k
        if (!symtable_add_def(st, &_Py_STR(format), USE, loc)) {
1452
0
            return 0;
1453
0
        }
1454
2.97k
    }
1455
4.56k
    return result;
1456
4.56k
}
1457
1458
static long
1459
symtable_lookup_entry(struct symtable *st, PySTEntryObject *ste, PyObject *name)
1460
33
{
1461
33
    PyObject *mangled = _Py_MaybeMangle(st->st_private, ste, name);
1462
33
    if (!mangled)
1463
0
        return -1;
1464
33
    long ret = _PyST_GetSymbol(ste, mangled);
1465
33
    Py_DECREF(mangled);
1466
33
    if (ret < 0) {
1467
0
        return -1;
1468
0
    }
1469
33
    return ret;
1470
33
}
1471
1472
static long
1473
symtable_lookup(struct symtable *st, PyObject *name)
1474
33
{
1475
33
    return symtable_lookup_entry(st, st->st_cur, name);
1476
33
}
1477
1478
static int
1479
symtable_add_def_helper(struct symtable *st, PyObject *name, int flag, struct _symtable_entry *ste,
1480
                        _Py_SourceLocation loc)
1481
59.1k
{
1482
59.1k
    PyObject *o;
1483
59.1k
    PyObject *dict;
1484
59.1k
    long val;
1485
59.1k
    PyObject *mangled = _Py_MaybeMangle(st->st_private, st->st_cur, name);
1486
1487
59.1k
    if (!mangled)
1488
0
        return 0;
1489
59.1k
    dict = ste->ste_symbols;
1490
59.1k
    if ((o = PyDict_GetItemWithError(dict, mangled))) {
1491
31.6k
        val = PyLong_AsLong(o);
1492
31.6k
        if (val == -1 && PyErr_Occurred()) {
1493
0
            goto error;
1494
0
        }
1495
31.6k
        if ((flag & DEF_PARAM) && (val & DEF_PARAM)) {
1496
            /* Is it better to use 'mangled' or 'name' here? */
1497
0
            PyErr_Format(PyExc_SyntaxError, DUPLICATE_PARAMETER, name);
1498
0
            SET_ERROR_LOCATION(st->st_filename, loc);
1499
0
            goto error;
1500
0
        }
1501
31.6k
        if ((flag & DEF_TYPE_PARAM) && (val & DEF_TYPE_PARAM)) {
1502
0
            PyErr_Format(PyExc_SyntaxError, DUPLICATE_TYPE_PARAM, name);
1503
0
            SET_ERROR_LOCATION(st->st_filename, loc);
1504
0
            goto error;
1505
0
        }
1506
31.6k
        val |= flag;
1507
31.6k
    }
1508
27.4k
    else if (PyErr_Occurred()) {
1509
0
        goto error;
1510
0
    }
1511
27.4k
    else {
1512
27.4k
        val = flag;
1513
27.4k
    }
1514
59.1k
    if (ste->ste_comp_iter_target) {
1515
        /* This name is an iteration variable in a comprehension,
1516
         * so check for a binding conflict with any named expressions.
1517
         * Otherwise, mark it as an iteration variable so subsequent
1518
         * named expressions can check for conflicts.
1519
         */
1520
113
        if (val & (DEF_GLOBAL | DEF_NONLOCAL)) {
1521
0
            PyErr_Format(PyExc_SyntaxError,
1522
0
                NAMED_EXPR_COMP_INNER_LOOP_CONFLICT, name);
1523
0
            SET_ERROR_LOCATION(st->st_filename, loc);
1524
0
            goto error;
1525
0
        }
1526
113
        val |= DEF_COMP_ITER;
1527
113
    }
1528
59.1k
    o = PyLong_FromLong(val);
1529
59.1k
    if (o == NULL)
1530
0
        goto error;
1531
59.1k
    if (PyDict_SetItem(dict, mangled, o) < 0) {
1532
0
        Py_DECREF(o);
1533
0
        goto error;
1534
0
    }
1535
59.1k
    Py_DECREF(o);
1536
1537
59.1k
    if (flag & DEF_PARAM) {
1538
11.4k
        if (PyList_Append(ste->ste_varnames, mangled) < 0)
1539
0
            goto error;
1540
47.7k
    } else if (flag & DEF_GLOBAL) {
1541
        /* XXX need to update DEF_GLOBAL for other flags too;
1542
           perhaps only DEF_FREE_GLOBAL */
1543
11
        val = 0;
1544
11
        if ((o = PyDict_GetItemWithError(st->st_global, mangled))) {
1545
6
            val = PyLong_AsLong(o);
1546
6
            if (val == -1 && PyErr_Occurred()) {
1547
0
                goto error;
1548
0
            }
1549
6
        }
1550
5
        else if (PyErr_Occurred()) {
1551
0
            goto error;
1552
0
        }
1553
11
        val |= flag;
1554
11
        o = PyLong_FromLong(val);
1555
11
        if (o == NULL)
1556
0
            goto error;
1557
11
        if (PyDict_SetItem(st->st_global, mangled, o) < 0) {
1558
0
            Py_DECREF(o);
1559
0
            goto error;
1560
0
        }
1561
11
        Py_DECREF(o);
1562
11
    }
1563
59.1k
    Py_DECREF(mangled);
1564
59.1k
    return 1;
1565
1566
0
error:
1567
0
    Py_DECREF(mangled);
1568
0
    return 0;
1569
59.1k
}
1570
1571
static int
1572
check_name(struct symtable *st, PyObject *name, _Py_SourceLocation loc,
1573
           expr_context_ty ctx)
1574
36.9k
{
1575
36.9k
    if (ctx == Store && _PyUnicode_EqualToASCIIString(name, "__debug__")) {
1576
0
        PyErr_SetString(PyExc_SyntaxError, "cannot assign to __debug__");
1577
0
        SET_ERROR_LOCATION(st->st_filename, loc);
1578
0
        return 0;
1579
0
    }
1580
36.9k
    if (ctx == Del && _PyUnicode_EqualToASCIIString(name, "__debug__")) {
1581
0
        PyErr_SetString(PyExc_SyntaxError, "cannot delete __debug__");
1582
0
        SET_ERROR_LOCATION(st->st_filename, loc);
1583
0
        return 0;
1584
0
    }
1585
36.9k
    return 1;
1586
36.9k
}
1587
1588
static int
1589
check_keywords(struct symtable *st, asdl_keyword_seq *keywords)
1590
9.99k
{
1591
11.6k
    for (Py_ssize_t i = 0; i < asdl_seq_LEN(keywords); i++) {
1592
1.61k
        keyword_ty key = ((keyword_ty)asdl_seq_GET(keywords, i));
1593
1.61k
        if (key->arg  && !check_name(st, key->arg, LOCATION(key), Store)) {
1594
0
            return 0;
1595
0
        }
1596
1.61k
    }
1597
9.99k
    return 1;
1598
9.99k
}
1599
1600
static int
1601
check_kwd_patterns(struct symtable *st, pattern_ty p)
1602
0
{
1603
0
    assert(p->kind == MatchClass_kind);
1604
0
    asdl_identifier_seq *kwd_attrs = p->v.MatchClass.kwd_attrs;
1605
0
    asdl_pattern_seq *kwd_patterns = p->v.MatchClass.kwd_patterns;
1606
0
    for (Py_ssize_t i = 0; i < asdl_seq_LEN(kwd_attrs); i++) {
1607
0
        _Py_SourceLocation loc = LOCATION(asdl_seq_GET(kwd_patterns, i));
1608
0
        if (!check_name(st, asdl_seq_GET(kwd_attrs, i), loc, Store)) {
1609
0
            return 0;
1610
0
        }
1611
0
    }
1612
0
    return 1;
1613
0
}
1614
1615
static int
1616
symtable_add_def_ctx(struct symtable *st, PyObject *name, int flag,
1617
                     _Py_SourceLocation loc, expr_context_ty ctx)
1618
59.1k
{
1619
59.1k
    int write_mask = DEF_PARAM | DEF_LOCAL | DEF_IMPORT;
1620
59.1k
    if ((flag & write_mask) && !check_name(st, name, loc, ctx)) {
1621
0
        return 0;
1622
0
    }
1623
59.1k
    if ((flag & DEF_TYPE_PARAM) && st->st_cur->ste_mangled_names != NULL) {
1624
0
        if(PySet_Add(st->st_cur->ste_mangled_names, name) < 0) {
1625
0
            return 0;
1626
0
        }
1627
0
    }
1628
59.1k
    return symtable_add_def_helper(st, name, flag, st->st_cur, loc);
1629
59.1k
}
1630
1631
static int
1632
symtable_add_def(struct symtable *st, PyObject *name, int flag,
1633
                 _Py_SourceLocation loc)
1634
20.9k
{
1635
20.9k
    return symtable_add_def_ctx(st, name, flag, loc,
1636
20.9k
                                flag == USE ? Load : Store);
1637
20.9k
}
1638
1639
static int
1640
symtable_enter_type_param_block(struct symtable *st, identifier name,
1641
                               void *ast, int has_defaults, int has_kwdefaults,
1642
                               enum _stmt_kind kind, _Py_SourceLocation loc)
1643
0
{
1644
0
    _Py_block_ty current_type = st->st_cur->ste_type;
1645
0
    if(!symtable_enter_block(st, name, TypeParametersBlock, ast, loc)) {
1646
0
        return 0;
1647
0
    }
1648
0
    if (current_type == ClassBlock) {
1649
0
        st->st_cur->ste_can_see_class_scope = 1;
1650
0
        if (!symtable_add_def(st, &_Py_ID(__classdict__), USE, loc)) {
1651
0
            return 0;
1652
0
        }
1653
0
    }
1654
0
    if (kind == ClassDef_kind) {
1655
0
        _Py_DECLARE_STR(type_params, ".type_params");
1656
        // It gets "set" when we create the type params tuple and
1657
        // "used" when we build up the bases.
1658
0
        if (!symtable_add_def(st, &_Py_STR(type_params), DEF_LOCAL, loc)) {
1659
0
            return 0;
1660
0
        }
1661
0
        if (!symtable_add_def(st, &_Py_STR(type_params), USE, loc)) {
1662
0
            return 0;
1663
0
        }
1664
        // This is used for setting the generic base
1665
0
        _Py_DECLARE_STR(generic_base, ".generic_base");
1666
0
        if (!symtable_add_def(st, &_Py_STR(generic_base), DEF_LOCAL, loc)) {
1667
0
            return 0;
1668
0
        }
1669
0
        if (!symtable_add_def(st, &_Py_STR(generic_base), USE, loc)) {
1670
0
            return 0;
1671
0
        }
1672
0
    }
1673
0
    if (has_defaults) {
1674
0
        _Py_DECLARE_STR(defaults, ".defaults");
1675
0
        if (!symtable_add_def(st, &_Py_STR(defaults), DEF_PARAM, loc)) {
1676
0
            return 0;
1677
0
        }
1678
0
    }
1679
0
    if (has_kwdefaults) {
1680
0
        _Py_DECLARE_STR(kwdefaults, ".kwdefaults");
1681
0
        if (!symtable_add_def(st, &_Py_STR(kwdefaults), DEF_PARAM, loc)) {
1682
0
            return 0;
1683
0
        }
1684
0
    }
1685
0
    return 1;
1686
0
}
1687
1688
/* VISIT, VISIT_SEQ and VIST_SEQ_TAIL take an ASDL type as their second argument.
1689
   They use the ASDL name to synthesize the name of the C type and the visit
1690
   function.
1691
1692
   VISIT_SEQ_TAIL permits the start of an ASDL sequence to be skipped, which is
1693
   useful if the first node in the sequence requires special treatment.
1694
1695
   ENTER_RECURSIVE macro increments the current recursion depth counter.
1696
   It should be used at the beginning of the recursive function.
1697
1698
   LEAVE_RECURSIVE macro decrements the current recursion depth counter.
1699
   It should be used at the end of the recursive function.
1700
*/
1701
1702
#define VISIT(ST, TYPE, V) \
1703
54.7k
    do { \
1704
54.7k
        if (!symtable_visit_ ## TYPE((ST), (V))) { \
1705
0
            return 0; \
1706
0
        } \
1707
54.7k
    } while(0)
1708
1709
#define VISIT_SEQ(ST, TYPE, SEQ) \
1710
35.2k
    do { \
1711
35.2k
        Py_ssize_t i; \
1712
35.2k
        asdl_ ## TYPE ## _seq *seq = (SEQ); /* avoid variable capture */ \
1713
92.4k
        for (i = 0; i < asdl_seq_LEN(seq); i++) { \
1714
57.2k
            TYPE ## _ty elt = (TYPE ## _ty)asdl_seq_GET(seq, i); \
1715
57.2k
            if (!symtable_visit_ ## TYPE((ST), elt)) \
1716
57.2k
                return 0;                 \
1717
57.2k
        } \
1718
35.2k
    } while(0)
1719
1720
#define VISIT_SEQ_TAIL(ST, TYPE, SEQ, START) \
1721
91
    do { \
1722
91
        Py_ssize_t i; \
1723
91
        asdl_ ## TYPE ## _seq *seq = (SEQ); /* avoid variable capture */ \
1724
92
        for (i = (START); i < asdl_seq_LEN(seq); i++) { \
1725
1
            TYPE ## _ty elt = (TYPE ## _ty)asdl_seq_GET(seq, i); \
1726
1
            if (!symtable_visit_ ## TYPE((ST), elt)) \
1727
1
                return 0;                 \
1728
1
        } \
1729
91
    } while(0)
1730
1731
#define VISIT_SEQ_WITH_NULL(ST, TYPE, SEQ) \
1732
12.5k
    do { \
1733
12.5k
        int i = 0; \
1734
12.5k
        asdl_ ## TYPE ## _seq *seq = (SEQ); /* avoid variable capture */ \
1735
21.6k
        for (i = 0; i < asdl_seq_LEN(seq); i++) { \
1736
9.10k
            TYPE ## _ty elt = (TYPE ## _ty)asdl_seq_GET(seq, i); \
1737
9.10k
            if (!elt) continue; /* can be NULL */ \
1738
9.10k
            if (!symtable_visit_ ## TYPE((ST), elt)) \
1739
9.10k
                return 0;             \
1740
9.10k
        } \
1741
12.5k
    } while(0)
1742
1743
#define ENTER_CONDITIONAL_BLOCK(ST) \
1744
3.85k
    int in_conditional_block = (ST)->st_cur->ste_in_conditional_block; \
1745
3.85k
    (ST)->st_cur->ste_in_conditional_block = 1;
1746
1747
#define LEAVE_CONDITIONAL_BLOCK(ST) \
1748
3.85k
    (ST)->st_cur->ste_in_conditional_block = in_conditional_block;
1749
1750
117k
#define ENTER_RECURSIVE() \
1751
117k
if (Py_EnterRecursiveCall(" during compilation")) { \
1752
0
    return 0; \
1753
0
}
1754
1755
117k
#define LEAVE_RECURSIVE() Py_LeaveRecursiveCall();
1756
1757
1758
static int
1759
symtable_record_directive(struct symtable *st, identifier name, _Py_SourceLocation loc)
1760
17
{
1761
17
    PyObject *data, *mangled;
1762
17
    int res;
1763
17
    if (!st->st_cur->ste_directives) {
1764
13
        st->st_cur->ste_directives = PyList_New(0);
1765
13
        if (!st->st_cur->ste_directives)
1766
0
            return 0;
1767
13
    }
1768
17
    mangled = _Py_MaybeMangle(st->st_private, st->st_cur, name);
1769
17
    if (!mangled)
1770
0
        return 0;
1771
17
    data = Py_BuildValue("(Niiii)", mangled, loc.lineno, loc.col_offset,
1772
17
                                    loc.end_lineno, loc.end_col_offset);
1773
17
    if (!data)
1774
0
        return 0;
1775
17
    res = PyList_Append(st->st_cur->ste_directives, data);
1776
17
    Py_DECREF(data);
1777
17
    return res == 0;
1778
17
}
1779
1780
static int
1781
has_kwonlydefaults(asdl_arg_seq *kwonlyargs, asdl_expr_seq *kw_defaults)
1782
0
{
1783
0
    for (int i = 0; i < asdl_seq_LEN(kwonlyargs); i++) {
1784
0
        expr_ty default_ = asdl_seq_GET(kw_defaults, i);
1785
0
        if (default_) {
1786
0
            return 1;
1787
0
        }
1788
0
    }
1789
0
    return 0;
1790
0
}
1791
1792
static int
1793
check_import_from(struct symtable *st, stmt_ty s)
1794
287
{
1795
287
    assert(s->kind == ImportFrom_kind);
1796
287
    _Py_SourceLocation fut = st->st_future->ff_location;
1797
287
    if (s->v.ImportFrom.module && s->v.ImportFrom.level == 0 &&
1798
143
        _PyUnicode_EqualToASCIIString(s->v.ImportFrom.module, "__future__") &&
1799
0
        ((s->lineno > fut.lineno) ||
1800
0
         ((s->lineno == fut.end_lineno) && (s->col_offset > fut.end_col_offset))))
1801
0
    {
1802
0
        PyErr_SetString(PyExc_SyntaxError,
1803
0
                        "from __future__ imports must occur "
1804
0
                        "at the beginning of the file");
1805
0
        SET_ERROR_LOCATION(st->st_filename, LOCATION(s));
1806
0
        return 0;
1807
0
    }
1808
287
    return 1;
1809
287
}
1810
1811
static bool
1812
allows_top_level_await(struct symtable *st)
1813
128
{
1814
128
    return (st->st_future->ff_features & PyCF_ALLOW_TOP_LEVEL_AWAIT) &&
1815
0
            st->st_cur->ste_type == ModuleBlock;
1816
128
}
1817
1818
1819
static void
1820
maybe_set_ste_coroutine_for_module(struct symtable *st, stmt_ty s)
1821
5
{
1822
5
    if (allows_top_level_await(st)) {
1823
0
        st->st_cur->ste_coroutine = 1;
1824
0
    }
1825
5
}
1826
1827
static int
1828
symtable_visit_stmt(struct symtable *st, stmt_ty s)
1829
21.0k
{
1830
21.0k
    ENTER_RECURSIVE();
1831
21.0k
    switch (s->kind) {
1832
2.83k
    case FunctionDef_kind: {
1833
2.83k
        if (!symtable_add_def(st, s->v.FunctionDef.name, DEF_LOCAL, LOCATION(s)))
1834
0
            return 0;
1835
2.83k
        if (s->v.FunctionDef.args->defaults)
1836
2.83k
            VISIT_SEQ(st, expr, s->v.FunctionDef.args->defaults);
1837
2.83k
        if (s->v.FunctionDef.args->kw_defaults)
1838
2.83k
            VISIT_SEQ_WITH_NULL(st, expr, s->v.FunctionDef.args->kw_defaults);
1839
2.83k
        if (s->v.FunctionDef.decorator_list)
1840
130
            VISIT_SEQ(st, expr, s->v.FunctionDef.decorator_list);
1841
2.83k
        if (asdl_seq_LEN(s->v.FunctionDef.type_params) > 0) {
1842
0
            if (!symtable_enter_type_param_block(
1843
0
                    st, s->v.FunctionDef.name,
1844
0
                    (void *)s->v.FunctionDef.type_params,
1845
0
                    s->v.FunctionDef.args->defaults != NULL,
1846
0
                    has_kwonlydefaults(s->v.FunctionDef.args->kwonlyargs,
1847
0
                                       s->v.FunctionDef.args->kw_defaults),
1848
0
                    s->kind,
1849
0
                    LOCATION(s))) {
1850
0
                return 0;
1851
0
            }
1852
0
            VISIT_SEQ(st, type_param, s->v.FunctionDef.type_params);
1853
0
        }
1854
2.83k
        PySTEntryObject *new_ste = ste_new(st, s->v.FunctionDef.name, FunctionBlock, (void *)s,
1855
2.83k
                                           LOCATION(s));
1856
2.83k
        if (!new_ste) {
1857
0
            return 0;
1858
0
        }
1859
1860
2.83k
        if (_PyAST_GetDocString(s->v.FunctionDef.body)) {
1861
520
            new_ste->ste_has_docstring = 1;
1862
520
        }
1863
1864
2.83k
        if (!symtable_visit_annotations(st, s, s->v.FunctionDef.args,
1865
2.83k
                                        s->v.FunctionDef.returns, new_ste)) {
1866
0
            Py_DECREF(new_ste);
1867
0
            return 0;
1868
0
        }
1869
2.83k
        if (!symtable_enter_existing_block(st, new_ste, /* add_to_children */true)) {
1870
0
            Py_DECREF(new_ste);
1871
0
            return 0;
1872
0
        }
1873
2.83k
        Py_DECREF(new_ste);
1874
2.83k
        VISIT(st, arguments, s->v.FunctionDef.args);
1875
2.83k
        VISIT_SEQ(st, stmt, s->v.FunctionDef.body);
1876
2.83k
        if (!symtable_exit_block(st))
1877
0
            return 0;
1878
2.83k
        if (asdl_seq_LEN(s->v.FunctionDef.type_params) > 0) {
1879
0
            if (!symtable_exit_block(st))
1880
0
                return 0;
1881
0
        }
1882
2.83k
        break;
1883
2.83k
    }
1884
2.83k
    case ClassDef_kind: {
1885
720
        PyObject *tmp;
1886
720
        if (!symtable_add_def(st, s->v.ClassDef.name, DEF_LOCAL, LOCATION(s)))
1887
0
            return 0;
1888
720
        if (s->v.ClassDef.decorator_list)
1889
3
            VISIT_SEQ(st, expr, s->v.ClassDef.decorator_list);
1890
720
        tmp = st->st_private;
1891
720
        if (asdl_seq_LEN(s->v.ClassDef.type_params) > 0) {
1892
0
            if (!symtable_enter_type_param_block(st, s->v.ClassDef.name,
1893
0
                                                (void *)s->v.ClassDef.type_params,
1894
0
                                                false, false, s->kind,
1895
0
                                                LOCATION(s))) {
1896
0
                return 0;
1897
0
            }
1898
0
            st->st_private = s->v.ClassDef.name;
1899
0
            st->st_cur->ste_mangled_names = PySet_New(NULL);
1900
0
            if (!st->st_cur->ste_mangled_names) {
1901
0
                return 0;
1902
0
            }
1903
0
            VISIT_SEQ(st, type_param, s->v.ClassDef.type_params);
1904
0
        }
1905
720
        VISIT_SEQ(st, expr, s->v.ClassDef.bases);
1906
720
        if (!check_keywords(st, s->v.ClassDef.keywords)) {
1907
0
            return 0;
1908
0
        }
1909
720
        VISIT_SEQ(st, keyword, s->v.ClassDef.keywords);
1910
720
        if (!symtable_enter_block(st, s->v.ClassDef.name, ClassBlock,
1911
720
                                  (void *)s, LOCATION(s))) {
1912
0
            return 0;
1913
0
        }
1914
720
        st->st_private = s->v.ClassDef.name;
1915
720
        if (asdl_seq_LEN(s->v.ClassDef.type_params) > 0) {
1916
0
            if (!symtable_add_def(st, &_Py_ID(__type_params__),
1917
0
                                  DEF_LOCAL, LOCATION(s))) {
1918
0
                return 0;
1919
0
            }
1920
0
            _Py_DECLARE_STR(type_params, ".type_params");
1921
0
            if (!symtable_add_def(st, &_Py_STR(type_params),
1922
0
                                  USE, LOCATION(s))) {
1923
0
                return 0;
1924
0
            }
1925
0
        }
1926
1927
720
        if (_PyAST_GetDocString(s->v.ClassDef.body)) {
1928
119
            st->st_cur->ste_has_docstring = 1;
1929
119
        }
1930
1931
720
        VISIT_SEQ(st, stmt, s->v.ClassDef.body);
1932
720
        if (!symtable_exit_block(st))
1933
0
            return 0;
1934
720
        if (asdl_seq_LEN(s->v.ClassDef.type_params) > 0) {
1935
0
            if (!symtable_exit_block(st))
1936
0
                return 0;
1937
0
        }
1938
720
        st->st_private = tmp;
1939
720
        break;
1940
720
    }
1941
0
    case TypeAlias_kind: {
1942
0
        VISIT(st, expr, s->v.TypeAlias.name);
1943
0
        assert(s->v.TypeAlias.name->kind == Name_kind);
1944
0
        PyObject *name = s->v.TypeAlias.name->v.Name.id;
1945
0
        int is_in_class = st->st_cur->ste_type == ClassBlock;
1946
0
        int is_generic = asdl_seq_LEN(s->v.TypeAlias.type_params) > 0;
1947
0
        if (is_generic) {
1948
0
            if (!symtable_enter_type_param_block(
1949
0
                    st, name,
1950
0
                    (void *)s->v.TypeAlias.type_params,
1951
0
                    false, false, s->kind,
1952
0
                    LOCATION(s))) {
1953
0
                return 0;
1954
0
            }
1955
0
            VISIT_SEQ(st, type_param, s->v.TypeAlias.type_params);
1956
0
        }
1957
0
        if (!symtable_enter_block(st, name, TypeAliasBlock,
1958
0
                                  (void *)s, LOCATION(s))) {
1959
0
            return 0;
1960
0
        }
1961
0
        st->st_cur->ste_can_see_class_scope = is_in_class;
1962
0
        if (is_in_class && !symtable_add_def(st, &_Py_ID(__classdict__), USE, LOCATION(s->v.TypeAlias.value))) {
1963
0
            return 0;
1964
0
        }
1965
0
        VISIT(st, expr, s->v.TypeAlias.value);
1966
0
        if (!symtable_exit_block(st))
1967
0
            return 0;
1968
0
        if (is_generic) {
1969
0
            if (!symtable_exit_block(st))
1970
0
                return 0;
1971
0
        }
1972
0
        break;
1973
0
    }
1974
2.38k
    case Return_kind:
1975
2.38k
        if (s->v.Return.value) {
1976
2.13k
            VISIT(st, expr, s->v.Return.value);
1977
2.13k
            st->st_cur->ste_returns_value = 1;
1978
2.13k
        }
1979
2.38k
        break;
1980
2.38k
    case Delete_kind:
1981
47
        VISIT_SEQ(st, expr, s->v.Delete.targets);
1982
47
        break;
1983
4.78k
    case Assign_kind:
1984
4.78k
        VISIT_SEQ(st, expr, s->v.Assign.targets);
1985
4.78k
        VISIT(st, expr, s->v.Assign.value);
1986
4.78k
        break;
1987
4.78k
    case AnnAssign_kind:
1988
18
        st->st_cur->ste_annotations_used = 1;
1989
18
        if (s->v.AnnAssign.target->kind == Name_kind) {
1990
16
            expr_ty e_name = s->v.AnnAssign.target;
1991
16
            long cur = symtable_lookup(st, e_name->v.Name.id);
1992
16
            if (cur < 0) {
1993
0
                return 0;
1994
0
            }
1995
16
            if ((cur & (DEF_GLOBAL | DEF_NONLOCAL))
1996
0
                && (st->st_cur->ste_symbols != st->st_global)
1997
0
                && s->v.AnnAssign.simple) {
1998
0
                PyErr_Format(PyExc_SyntaxError,
1999
0
                             cur & DEF_GLOBAL ? GLOBAL_ANNOT : NONLOCAL_ANNOT,
2000
0
                             e_name->v.Name.id);
2001
0
                SET_ERROR_LOCATION(st->st_filename, LOCATION(s));
2002
0
                return 0;
2003
0
            }
2004
16
            if (s->v.AnnAssign.simple &&
2005
16
                !symtable_add_def(st, e_name->v.Name.id,
2006
16
                                  DEF_ANNOT | DEF_LOCAL, LOCATION(e_name))) {
2007
0
                return 0;
2008
0
            }
2009
16
            else {
2010
16
                if (s->v.AnnAssign.value
2011
12
                    && !symtable_add_def(st, e_name->v.Name.id, DEF_LOCAL, LOCATION(e_name))) {
2012
0
                    return 0;
2013
0
                }
2014
16
            }
2015
16
        }
2016
2
        else {
2017
2
            VISIT(st, expr, s->v.AnnAssign.target);
2018
2
        }
2019
18
        if (!symtable_visit_annotation(st, s->v.AnnAssign.annotation,
2020
18
                                       (void *)((uintptr_t)st->st_cur->ste_id + 1))) {
2021
0
            return 0;
2022
0
        }
2023
2024
18
        if (s->v.AnnAssign.value) {
2025
14
            VISIT(st, expr, s->v.AnnAssign.value);
2026
14
        }
2027
18
        break;
2028
184
    case AugAssign_kind: {
2029
184
        VISIT(st, expr, s->v.AugAssign.target);
2030
184
        VISIT(st, expr, s->v.AugAssign.value);
2031
184
        break;
2032
184
    }
2033
314
    case For_kind: {
2034
314
        VISIT(st, expr, s->v.For.target);
2035
314
        VISIT(st, expr, s->v.For.iter);
2036
314
        ENTER_CONDITIONAL_BLOCK(st);
2037
314
        VISIT_SEQ(st, stmt, s->v.For.body);
2038
314
        if (s->v.For.orelse)
2039
4
            VISIT_SEQ(st, stmt, s->v.For.orelse);
2040
314
        LEAVE_CONDITIONAL_BLOCK(st);
2041
314
        break;
2042
314
    }
2043
88
    case While_kind: {
2044
88
        VISIT(st, expr, s->v.While.test);
2045
88
        ENTER_CONDITIONAL_BLOCK(st);
2046
88
        VISIT_SEQ(st, stmt, s->v.While.body);
2047
88
        if (s->v.While.orelse)
2048
1
            VISIT_SEQ(st, stmt, s->v.While.orelse);
2049
88
        LEAVE_CONDITIONAL_BLOCK(st);
2050
88
        break;
2051
88
    }
2052
2.93k
    case If_kind: {
2053
        /* XXX if 0: and lookup_yield() hacks */
2054
2.93k
        VISIT(st, expr, s->v.If.test);
2055
2.93k
        ENTER_CONDITIONAL_BLOCK(st);
2056
2.93k
        VISIT_SEQ(st, stmt, s->v.If.body);
2057
2.93k
        if (s->v.If.orelse)
2058
691
            VISIT_SEQ(st, stmt, s->v.If.orelse);
2059
2.93k
        LEAVE_CONDITIONAL_BLOCK(st);
2060
2.93k
        break;
2061
2.93k
    }
2062
1
    case Match_kind: {
2063
1
        VISIT(st, expr, s->v.Match.subject);
2064
1
        ENTER_CONDITIONAL_BLOCK(st);
2065
1
        VISIT_SEQ(st, match_case, s->v.Match.cases);
2066
1
        LEAVE_CONDITIONAL_BLOCK(st);
2067
1
        break;
2068
1
    }
2069
764
    case Raise_kind:
2070
764
        if (s->v.Raise.exc) {
2071
677
            VISIT(st, expr, s->v.Raise.exc);
2072
677
            if (s->v.Raise.cause) {
2073
27
                VISIT(st, expr, s->v.Raise.cause);
2074
27
            }
2075
677
        }
2076
764
        break;
2077
764
    case Try_kind: {
2078
392
        ENTER_CONDITIONAL_BLOCK(st);
2079
392
        VISIT_SEQ(st, stmt, s->v.Try.body);
2080
392
        VISIT_SEQ(st, excepthandler, s->v.Try.handlers);
2081
392
        VISIT_SEQ(st, stmt, s->v.Try.orelse);
2082
392
        VISIT_SEQ(st, stmt, s->v.Try.finalbody);
2083
392
        LEAVE_CONDITIONAL_BLOCK(st);
2084
392
        break;
2085
392
    }
2086
0
    case TryStar_kind: {
2087
0
        ENTER_CONDITIONAL_BLOCK(st);
2088
0
        VISIT_SEQ(st, stmt, s->v.TryStar.body);
2089
0
        VISIT_SEQ(st, excepthandler, s->v.TryStar.handlers);
2090
0
        VISIT_SEQ(st, stmt, s->v.TryStar.orelse);
2091
0
        VISIT_SEQ(st, stmt, s->v.TryStar.finalbody);
2092
0
        LEAVE_CONDITIONAL_BLOCK(st);
2093
0
        break;
2094
0
    }
2095
86
    case Assert_kind:
2096
86
        VISIT(st, expr, s->v.Assert.test);
2097
86
        if (s->v.Assert.msg)
2098
29
            VISIT(st, expr, s->v.Assert.msg);
2099
86
        break;
2100
465
    case Import_kind:
2101
465
        VISIT_SEQ(st, alias, s->v.Import.names);
2102
465
        break;
2103
465
    case ImportFrom_kind:
2104
287
        VISIT_SEQ(st, alias, s->v.ImportFrom.names);
2105
287
        if (!check_import_from(st, s)) {
2106
0
            return 0;
2107
0
        }
2108
287
        break;
2109
287
    case Global_kind: {
2110
9
        Py_ssize_t i;
2111
9
        asdl_identifier_seq *seq = s->v.Global.names;
2112
20
        for (i = 0; i < asdl_seq_LEN(seq); i++) {
2113
11
            identifier name = (identifier)asdl_seq_GET(seq, i);
2114
11
            long cur = symtable_lookup(st, name);
2115
11
            if (cur < 0)
2116
0
                return 0;
2117
11
            if (cur & (DEF_PARAM | DEF_LOCAL | USE | DEF_ANNOT)) {
2118
0
                const char* msg;
2119
0
                if (cur & DEF_PARAM) {
2120
0
                    msg = GLOBAL_PARAM;
2121
0
                } else if (cur & USE) {
2122
0
                    msg = GLOBAL_AFTER_USE;
2123
0
                } else if (cur & DEF_ANNOT) {
2124
0
                    msg = GLOBAL_ANNOT;
2125
0
                } else {  /* DEF_LOCAL */
2126
0
                    msg = GLOBAL_AFTER_ASSIGN;
2127
0
                }
2128
0
                PyErr_Format(PyExc_SyntaxError,
2129
0
                             msg, name);
2130
0
                SET_ERROR_LOCATION(st->st_filename, LOCATION(s));
2131
0
                return 0;
2132
0
            }
2133
11
            if (!symtable_add_def(st, name, DEF_GLOBAL, LOCATION(s))) {
2134
0
                return 0;
2135
0
            }
2136
11
            if (!symtable_record_directive(st, name, LOCATION(s))) {
2137
0
                return 0;
2138
0
            }
2139
11
        }
2140
9
        break;
2141
9
    }
2142
9
    case Nonlocal_kind: {
2143
5
        Py_ssize_t i;
2144
5
        asdl_identifier_seq *seq = s->v.Nonlocal.names;
2145
11
        for (i = 0; i < asdl_seq_LEN(seq); i++) {
2146
6
            identifier name = (identifier)asdl_seq_GET(seq, i);
2147
6
            long cur = symtable_lookup(st, name);
2148
6
            if (cur < 0)
2149
0
                return 0;
2150
6
            if (cur & (DEF_PARAM | DEF_LOCAL | USE | DEF_ANNOT)) {
2151
0
                const char* msg;
2152
0
                if (cur & DEF_PARAM) {
2153
0
                    msg = NONLOCAL_PARAM;
2154
0
                } else if (cur & USE) {
2155
0
                    msg = NONLOCAL_AFTER_USE;
2156
0
                } else if (cur & DEF_ANNOT) {
2157
0
                    msg = NONLOCAL_ANNOT;
2158
0
                } else {  /* DEF_LOCAL */
2159
0
                    msg = NONLOCAL_AFTER_ASSIGN;
2160
0
                }
2161
0
                PyErr_Format(PyExc_SyntaxError, msg, name);
2162
0
                SET_ERROR_LOCATION(st->st_filename, LOCATION(s));
2163
0
                return 0;
2164
0
            }
2165
6
            if (!symtable_add_def(st, name, DEF_NONLOCAL, LOCATION(s)))
2166
0
                return 0;
2167
6
            if (!symtable_record_directive(st, name, LOCATION(s))) {
2168
0
                return 0;
2169
0
            }
2170
6
        }
2171
5
        break;
2172
5
    }
2173
4.17k
    case Expr_kind:
2174
4.17k
        VISIT(st, expr, s->v.Expr.value);
2175
4.17k
        break;
2176
4.17k
    case Pass_kind:
2177
286
    case Break_kind:
2178
335
    case Continue_kind:
2179
        /* nothing to do here */
2180
335
        break;
2181
111
    case With_kind: {
2182
111
        ENTER_CONDITIONAL_BLOCK(st);
2183
111
        VISIT_SEQ(st, withitem, s->v.With.items);
2184
111
        VISIT_SEQ(st, stmt, s->v.With.body);
2185
111
        LEAVE_CONDITIONAL_BLOCK(st);
2186
111
        break;
2187
111
    }
2188
135
    case AsyncFunctionDef_kind: {
2189
135
        if (!symtable_add_def(st, s->v.AsyncFunctionDef.name, DEF_LOCAL, LOCATION(s)))
2190
0
            return 0;
2191
135
        if (s->v.AsyncFunctionDef.args->defaults)
2192
135
            VISIT_SEQ(st, expr, s->v.AsyncFunctionDef.args->defaults);
2193
135
        if (s->v.AsyncFunctionDef.args->kw_defaults)
2194
135
            VISIT_SEQ_WITH_NULL(st, expr,
2195
135
                                s->v.AsyncFunctionDef.args->kw_defaults);
2196
135
        if (s->v.AsyncFunctionDef.decorator_list)
2197
2
            VISIT_SEQ(st, expr, s->v.AsyncFunctionDef.decorator_list);
2198
135
        if (asdl_seq_LEN(s->v.AsyncFunctionDef.type_params) > 0) {
2199
0
            if (!symtable_enter_type_param_block(
2200
0
                    st, s->v.AsyncFunctionDef.name,
2201
0
                    (void *)s->v.AsyncFunctionDef.type_params,
2202
0
                    s->v.AsyncFunctionDef.args->defaults != NULL,
2203
0
                    has_kwonlydefaults(s->v.AsyncFunctionDef.args->kwonlyargs,
2204
0
                                       s->v.AsyncFunctionDef.args->kw_defaults),
2205
0
                    s->kind,
2206
0
                    LOCATION(s))) {
2207
0
                return 0;
2208
0
            }
2209
0
            VISIT_SEQ(st, type_param, s->v.AsyncFunctionDef.type_params);
2210
0
        }
2211
135
        PySTEntryObject *new_ste = ste_new(st, s->v.FunctionDef.name, FunctionBlock, (void *)s,
2212
135
                                           LOCATION(s));
2213
135
        if (!new_ste) {
2214
0
            return 0;
2215
0
        }
2216
2217
135
        if (_PyAST_GetDocString(s->v.AsyncFunctionDef.body)) {
2218
62
            new_ste->ste_has_docstring = 1;
2219
62
        }
2220
2221
135
        if (!symtable_visit_annotations(st, s, s->v.AsyncFunctionDef.args,
2222
135
                                        s->v.AsyncFunctionDef.returns, new_ste)) {
2223
0
            Py_DECREF(new_ste);
2224
0
            return 0;
2225
0
        }
2226
135
        if (!symtable_enter_existing_block(st, new_ste, /* add_to_children */true)) {
2227
0
            Py_DECREF(new_ste);
2228
0
            return 0;
2229
0
        }
2230
135
        Py_DECREF(new_ste);
2231
2232
135
        st->st_cur->ste_coroutine = 1;
2233
135
        VISIT(st, arguments, s->v.AsyncFunctionDef.args);
2234
135
        VISIT_SEQ(st, stmt, s->v.AsyncFunctionDef.body);
2235
135
        if (!symtable_exit_block(st))
2236
0
            return 0;
2237
135
        if (asdl_seq_LEN(s->v.AsyncFunctionDef.type_params) > 0) {
2238
0
            if (!symtable_exit_block(st))
2239
0
                return 0;
2240
0
        }
2241
135
        break;
2242
135
    }
2243
135
    case AsyncWith_kind: {
2244
5
        maybe_set_ste_coroutine_for_module(st, s);
2245
5
        if (!symtable_raise_if_not_coroutine(st, ASYNC_WITH_OUTSIDE_ASYNC_FUNC, LOCATION(s))) {
2246
0
            return 0;
2247
0
        }
2248
5
        ENTER_CONDITIONAL_BLOCK(st);
2249
5
        VISIT_SEQ(st, withitem, s->v.AsyncWith.items);
2250
5
        VISIT_SEQ(st, stmt, s->v.AsyncWith.body);
2251
5
        LEAVE_CONDITIONAL_BLOCK(st);
2252
5
        break;
2253
5
    }
2254
0
    case AsyncFor_kind: {
2255
0
        maybe_set_ste_coroutine_for_module(st, s);
2256
0
        if (!symtable_raise_if_not_coroutine(st, ASYNC_FOR_OUTSIDE_ASYNC_FUNC, LOCATION(s))) {
2257
0
            return 0;
2258
0
        }
2259
0
        VISIT(st, expr, s->v.AsyncFor.target);
2260
0
        VISIT(st, expr, s->v.AsyncFor.iter);
2261
0
        ENTER_CONDITIONAL_BLOCK(st);
2262
0
        VISIT_SEQ(st, stmt, s->v.AsyncFor.body);
2263
0
        if (s->v.AsyncFor.orelse)
2264
0
            VISIT_SEQ(st, stmt, s->v.AsyncFor.orelse);
2265
0
        LEAVE_CONDITIONAL_BLOCK(st);
2266
0
        break;
2267
0
    }
2268
21.0k
    }
2269
21.0k
    LEAVE_RECURSIVE();
2270
21.0k
    return 1;
2271
21.0k
}
2272
2273
static int
2274
symtable_extend_namedexpr_scope(struct symtable *st, expr_ty e)
2275
0
{
2276
0
    assert(st->st_stack);
2277
0
    assert(e->kind == Name_kind);
2278
2279
0
    PyObject *target_name = e->v.Name.id;
2280
0
    Py_ssize_t i, size;
2281
0
    struct _symtable_entry *ste;
2282
0
    size = PyList_GET_SIZE(st->st_stack);
2283
0
    assert(size);
2284
2285
    /* Iterate over the stack in reverse and add to the nearest adequate scope */
2286
0
    for (i = size - 1; i >= 0; i--) {
2287
0
        ste = (struct _symtable_entry *) PyList_GET_ITEM(st->st_stack, i);
2288
2289
        /* If we find a comprehension scope, check for a target
2290
         * binding conflict with iteration variables, otherwise skip it
2291
         */
2292
0
        if (ste->ste_comprehension) {
2293
0
            long target_in_scope = symtable_lookup_entry(st, ste, target_name);
2294
0
            if (target_in_scope < 0) {
2295
0
                return 0;
2296
0
            }
2297
0
            if ((target_in_scope & DEF_COMP_ITER) &&
2298
0
                (target_in_scope & DEF_LOCAL)) {
2299
0
                PyErr_Format(PyExc_SyntaxError, NAMED_EXPR_COMP_CONFLICT, target_name);
2300
0
                SET_ERROR_LOCATION(st->st_filename, LOCATION(e));
2301
0
                return 0;
2302
0
            }
2303
0
            continue;
2304
0
        }
2305
2306
        /* If we find a FunctionBlock entry, add as GLOBAL/LOCAL or NONLOCAL/LOCAL */
2307
0
        if (ste->ste_type == FunctionBlock) {
2308
0
            long target_in_scope = symtable_lookup_entry(st, ste, target_name);
2309
0
            if (target_in_scope < 0) {
2310
0
                return 0;
2311
0
            }
2312
0
            if (target_in_scope & DEF_GLOBAL) {
2313
0
                if (!symtable_add_def(st, target_name, DEF_GLOBAL, LOCATION(e)))
2314
0
                    return 0;
2315
0
            } else {
2316
0
                if (!symtable_add_def(st, target_name, DEF_NONLOCAL, LOCATION(e))) {
2317
0
                    return 0;
2318
0
                }
2319
0
            }
2320
0
            if (!symtable_record_directive(st, target_name, LOCATION(e))) {
2321
0
                return 0;
2322
0
            }
2323
2324
0
            return symtable_add_def_helper(st, target_name, DEF_LOCAL, ste, LOCATION(e));
2325
0
        }
2326
        /* If we find a ModuleBlock entry, add as GLOBAL */
2327
0
        if (ste->ste_type == ModuleBlock) {
2328
0
            if (!symtable_add_def(st, target_name, DEF_GLOBAL, LOCATION(e))) {
2329
0
                return 0;
2330
0
            }
2331
0
            if (!symtable_record_directive(st, target_name, LOCATION(e))) {
2332
0
                return 0;
2333
0
            }
2334
2335
0
            return symtable_add_def_helper(st, target_name, DEF_GLOBAL, ste, LOCATION(e));
2336
0
        }
2337
        /* Disallow usage in ClassBlock and type scopes */
2338
0
        if (ste->ste_type == ClassBlock ||
2339
0
            ste->ste_type == TypeParametersBlock ||
2340
0
            ste->ste_type == TypeAliasBlock ||
2341
0
            ste->ste_type == TypeVariableBlock) {
2342
0
            switch (ste->ste_type) {
2343
0
                case ClassBlock:
2344
0
                    PyErr_Format(PyExc_SyntaxError, NAMED_EXPR_COMP_IN_CLASS);
2345
0
                    break;
2346
0
                case TypeParametersBlock:
2347
0
                    PyErr_Format(PyExc_SyntaxError, NAMED_EXPR_COMP_IN_TYPEPARAM);
2348
0
                    break;
2349
0
                case TypeAliasBlock:
2350
0
                    PyErr_Format(PyExc_SyntaxError, NAMED_EXPR_COMP_IN_TYPEALIAS);
2351
0
                    break;
2352
0
                case TypeVariableBlock:
2353
0
                    PyErr_Format(PyExc_SyntaxError, NAMED_EXPR_COMP_IN_TYPEVAR_BOUND);
2354
0
                    break;
2355
0
                default:
2356
0
                    Py_UNREACHABLE();
2357
0
            }
2358
0
            SET_ERROR_LOCATION(st->st_filename, LOCATION(e));
2359
0
            return 0;
2360
0
        }
2361
0
    }
2362
2363
    /* We should always find either a function-like block, ModuleBlock or ClassBlock
2364
       and should never fall to this case
2365
    */
2366
0
    Py_UNREACHABLE();
2367
0
    return 0;
2368
0
}
2369
2370
static int
2371
symtable_handle_namedexpr(struct symtable *st, expr_ty e)
2372
9
{
2373
9
    if (st->st_cur->ste_comp_iter_expr > 0) {
2374
        /* Assignment isn't allowed in a comprehension iterable expression */
2375
0
        PyErr_Format(PyExc_SyntaxError, NAMED_EXPR_COMP_ITER_EXPR);
2376
0
        SET_ERROR_LOCATION(st->st_filename, LOCATION(e));
2377
0
        return 0;
2378
0
    }
2379
9
    if (st->st_cur->ste_comprehension) {
2380
        /* Inside a comprehension body, so find the right target scope */
2381
0
        if (!symtable_extend_namedexpr_scope(st, e->v.NamedExpr.target))
2382
0
            return 0;
2383
0
    }
2384
9
    VISIT(st, expr, e->v.NamedExpr.value);
2385
9
    VISIT(st, expr, e->v.NamedExpr.target);
2386
9
    return 1;
2387
9
}
2388
2389
static int
2390
symtable_visit_expr(struct symtable *st, expr_ty e)
2391
96.7k
{
2392
96.7k
    ENTER_RECURSIVE();
2393
96.7k
    switch (e->kind) {
2394
9
    case NamedExpr_kind:
2395
9
        if (!symtable_raise_if_annotation_block(st, "named expression", e)) {
2396
0
            return 0;
2397
0
        }
2398
9
        if(!symtable_handle_namedexpr(st, e))
2399
0
            return 0;
2400
9
        break;
2401
633
    case BoolOp_kind:
2402
633
        VISIT_SEQ(st, expr, e->v.BoolOp.values);
2403
633
        break;
2404
683
    case BinOp_kind:
2405
683
        VISIT(st, expr, e->v.BinOp.left);
2406
683
        VISIT(st, expr, e->v.BinOp.right);
2407
683
        break;
2408
683
    case UnaryOp_kind:
2409
584
        VISIT(st, expr, e->v.UnaryOp.operand);
2410
584
        break;
2411
584
    case Lambda_kind: {
2412
199
        if (e->v.Lambda.args->defaults)
2413
199
            VISIT_SEQ(st, expr, e->v.Lambda.args->defaults);
2414
199
        if (e->v.Lambda.args->kw_defaults)
2415
199
            VISIT_SEQ_WITH_NULL(st, expr, e->v.Lambda.args->kw_defaults);
2416
199
        if (!symtable_enter_block(st, &_Py_STR(anon_lambda),
2417
199
                                  FunctionBlock, (void *)e, LOCATION(e))) {
2418
0
            return 0;
2419
0
        }
2420
199
        VISIT(st, arguments, e->v.Lambda.args);
2421
199
        VISIT(st, expr, e->v.Lambda.body);
2422
199
        if (!symtable_exit_block(st))
2423
0
            return 0;
2424
199
        break;
2425
199
    }
2426
199
    case IfExp_kind:
2427
95
        VISIT(st, expr, e->v.IfExp.test);
2428
95
        VISIT(st, expr, e->v.IfExp.body);
2429
95
        VISIT(st, expr, e->v.IfExp.orelse);
2430
95
        break;
2431
145
    case Dict_kind:
2432
145
        VISIT_SEQ_WITH_NULL(st, expr, e->v.Dict.keys);
2433
145
        VISIT_SEQ(st, expr, e->v.Dict.values);
2434
145
        break;
2435
145
    case Set_kind:
2436
125
        VISIT_SEQ(st, expr, e->v.Set.elts);
2437
125
        break;
2438
125
    case GeneratorExp_kind:
2439
38
        if (!symtable_visit_genexp(st, e))
2440
0
            return 0;
2441
38
        break;
2442
42
    case ListComp_kind:
2443
42
        if (!symtable_visit_listcomp(st, e))
2444
0
            return 0;
2445
42
        break;
2446
42
    case SetComp_kind:
2447
7
        if (!symtable_visit_setcomp(st, e))
2448
0
            return 0;
2449
7
        break;
2450
7
    case DictComp_kind:
2451
4
        if (!symtable_visit_dictcomp(st, e))
2452
0
            return 0;
2453
4
        break;
2454
88
    case Yield_kind:
2455
88
        if (!symtable_raise_if_annotation_block(st, "yield expression", e)) {
2456
0
            return 0;
2457
0
        }
2458
88
        if (e->v.Yield.value)
2459
82
            VISIT(st, expr, e->v.Yield.value);
2460
88
        st->st_cur->ste_generator = 1;
2461
88
        if (st->st_cur->ste_comprehension) {
2462
0
            return symtable_raise_if_comprehension_block(st, e);
2463
0
        }
2464
88
        break;
2465
88
    case YieldFrom_kind:
2466
19
        if (!symtable_raise_if_annotation_block(st, "yield expression", e)) {
2467
0
            return 0;
2468
0
        }
2469
19
        VISIT(st, expr, e->v.YieldFrom.value);
2470
19
        st->st_cur->ste_generator = 1;
2471
19
        if (st->st_cur->ste_comprehension) {
2472
0
            return symtable_raise_if_comprehension_block(st, e);
2473
0
        }
2474
19
        break;
2475
123
    case Await_kind:
2476
123
        if (!symtable_raise_if_annotation_block(st, "await expression", e)) {
2477
0
            return 0;
2478
0
        }
2479
123
        if (!allows_top_level_await(st)) {
2480
123
            if (!_PyST_IsFunctionLike(st->st_cur)) {
2481
0
                PyErr_SetString(PyExc_SyntaxError,
2482
0
                                "'await' outside function");
2483
0
                SET_ERROR_LOCATION(st->st_filename, LOCATION(e));
2484
0
                return 0;
2485
0
            }
2486
123
            if (!IS_ASYNC_DEF(st) && st->st_cur->ste_comprehension == NoComprehension) {
2487
0
                PyErr_SetString(PyExc_SyntaxError,
2488
0
                                "'await' outside async function");
2489
0
                SET_ERROR_LOCATION(st->st_filename, LOCATION(e));
2490
0
                return 0;
2491
0
            }
2492
123
        }
2493
123
        VISIT(st, expr, e->v.Await.value);
2494
123
        st->st_cur->ste_coroutine = 1;
2495
123
        break;
2496
2.69k
    case Compare_kind:
2497
2.69k
        VISIT(st, expr, e->v.Compare.left);
2498
2.69k
        VISIT_SEQ(st, expr, e->v.Compare.comparators);
2499
2.69k
        break;
2500
9.27k
    case Call_kind:
2501
9.27k
        VISIT(st, expr, e->v.Call.func);
2502
9.27k
        VISIT_SEQ(st, expr, e->v.Call.args);
2503
9.27k
        if (!check_keywords(st, e->v.Call.keywords)) {
2504
0
            return 0;
2505
0
        }
2506
9.27k
        VISIT_SEQ_WITH_NULL(st, keyword, e->v.Call.keywords);
2507
9.27k
        break;
2508
9.27k
    case FormattedValue_kind:
2509
1.39k
        VISIT(st, expr, e->v.FormattedValue.value);
2510
1.39k
        if (e->v.FormattedValue.format_spec)
2511
7
            VISIT(st, expr, e->v.FormattedValue.format_spec);
2512
1.39k
        break;
2513
1.39k
    case Interpolation_kind:
2514
0
        VISIT(st, expr, e->v.Interpolation.value);
2515
0
        if (e->v.Interpolation.format_spec)
2516
0
            VISIT(st, expr, e->v.Interpolation.format_spec);
2517
0
        break;
2518
592
    case JoinedStr_kind:
2519
592
        VISIT_SEQ(st, expr, e->v.JoinedStr.values);
2520
592
        break;
2521
592
    case TemplateStr_kind:
2522
0
        VISIT_SEQ(st, expr, e->v.TemplateStr.values);
2523
0
        break;
2524
24.2k
    case Constant_kind:
2525
        /* Nothing to do here. */
2526
24.2k
        break;
2527
    /* The following exprs can be assignment targets. */
2528
15.0k
    case Attribute_kind:
2529
15.0k
        if (!check_name(st, e->v.Attribute.attr, LOCATION(e), e->v.Attribute.ctx)) {
2530
0
            return 0;
2531
0
        }
2532
15.0k
        VISIT(st, expr, e->v.Attribute.value);
2533
15.0k
        break;
2534
15.0k
    case Subscript_kind:
2535
898
        VISIT(st, expr, e->v.Subscript.value);
2536
898
        VISIT(st, expr, e->v.Subscript.slice);
2537
898
        break;
2538
898
    case Starred_kind:
2539
109
        VISIT(st, expr, e->v.Starred.value);
2540
109
        break;
2541
129
    case Slice_kind:
2542
129
        if (e->v.Slice.lower)
2543
70
            VISIT(st, expr, e->v.Slice.lower);
2544
129
        if (e->v.Slice.upper)
2545
77
            VISIT(st, expr, e->v.Slice.upper);
2546
129
        if (e->v.Slice.step)
2547
0
            VISIT(st, expr, e->v.Slice.step);
2548
129
        break;
2549
38.1k
    case Name_kind:
2550
38.1k
        if (!st->st_cur->ste_in_unevaluated_annotation) {
2551
38.1k
            if (!symtable_add_def_ctx(st, e->v.Name.id,
2552
38.1k
                                    e->v.Name.ctx == Load ? USE : DEF_LOCAL,
2553
38.1k
                                    LOCATION(e), e->v.Name.ctx)) {
2554
0
                return 0;
2555
0
            }
2556
            /* Special-case super: it counts as a use of __class__ */
2557
38.1k
            if (e->v.Name.ctx == Load &&
2558
33.7k
                _PyST_IsFunctionLike(st->st_cur) &&
2559
31.7k
                _PyUnicode_EqualToASCIIString(e->v.Name.id, "super")) {
2560
180
                if (!symtable_add_def(st, &_Py_ID(__class__), USE, LOCATION(e)))
2561
0
                    return 0;
2562
180
            }
2563
38.1k
        }
2564
38.1k
        break;
2565
    /* child nodes of List and Tuple will have expr_context set */
2566
38.1k
    case List_kind:
2567
225
        VISIT_SEQ(st, expr, e->v.List.elts);
2568
225
        break;
2569
1.14k
    case Tuple_kind:
2570
1.14k
        VISIT_SEQ(st, expr, e->v.Tuple.elts);
2571
1.14k
        break;
2572
96.7k
    }
2573
96.7k
    LEAVE_RECURSIVE();
2574
96.7k
    return 1;
2575
96.7k
}
2576
2577
static int
2578
symtable_visit_type_param_bound_or_default(
2579
    struct symtable *st, expr_ty e, identifier name,
2580
    type_param_ty tp, const char *ste_scope_info)
2581
0
{
2582
0
    if (_PyUnicode_Equal(name, &_Py_ID(__classdict__))) {
2583
2584
0
        PyObject *error_msg = PyUnicode_FromFormat("reserved name '%U' cannot be "
2585
0
                                                   "used for type parameter", name);
2586
0
        PyErr_SetObject(PyExc_SyntaxError, error_msg);
2587
0
        Py_DECREF(error_msg);
2588
0
        SET_ERROR_LOCATION(st->st_filename, LOCATION(tp));
2589
0
        return 0;
2590
0
    }
2591
2592
0
    if (e) {
2593
0
        int is_in_class = st->st_cur->ste_can_see_class_scope;
2594
0
        if (!symtable_enter_block(st, name, TypeVariableBlock, (void *)tp, LOCATION(e))) {
2595
0
            return 0;
2596
0
        }
2597
2598
0
        st->st_cur->ste_can_see_class_scope = is_in_class;
2599
0
        if (is_in_class && !symtable_add_def(st, &_Py_ID(__classdict__), USE, LOCATION(e))) {
2600
0
            return 0;
2601
0
        }
2602
2603
0
        assert(ste_scope_info != NULL);
2604
0
        st->st_cur->ste_scope_info = ste_scope_info;
2605
0
        VISIT(st, expr, e);
2606
2607
0
        if (!symtable_exit_block(st)) {
2608
0
            return 0;
2609
0
        }
2610
0
    }
2611
0
    return 1;
2612
0
}
2613
2614
static int
2615
symtable_visit_type_param(struct symtable *st, type_param_ty tp)
2616
0
{
2617
0
    ENTER_RECURSIVE();
2618
0
    switch(tp->kind) {
2619
0
    case TypeVar_kind:
2620
0
        if (!symtable_add_def(st, tp->v.TypeVar.name, DEF_TYPE_PARAM | DEF_LOCAL, LOCATION(tp)))
2621
0
            return 0;
2622
2623
0
        const char *ste_scope_info = NULL;
2624
0
        const expr_ty bound = tp->v.TypeVar.bound;
2625
0
        if (bound != NULL) {
2626
0
            ste_scope_info = bound->kind == Tuple_kind ? "a TypeVar constraint" : "a TypeVar bound";
2627
0
        }
2628
2629
        // We must use a different key for the bound and default. The obvious choice would be to
2630
        // use the .bound and .default_value pointers, but that fails when the expression immediately
2631
        // inside the bound or default is a comprehension: we would reuse the same key for
2632
        // the comprehension scope. Therefore, use the address + 1 as the second key.
2633
        // The only requirement for the key is that it is unique and it matches the logic in
2634
        // compile.c where the scope is retrieved.
2635
0
        if (!symtable_visit_type_param_bound_or_default(st, tp->v.TypeVar.bound, tp->v.TypeVar.name,
2636
0
                                                        tp, ste_scope_info)) {
2637
0
            return 0;
2638
0
        }
2639
2640
0
        if (!symtable_visit_type_param_bound_or_default(st, tp->v.TypeVar.default_value, tp->v.TypeVar.name,
2641
0
                                                        (type_param_ty)((uintptr_t)tp + 1), "a TypeVar default")) {
2642
0
            return 0;
2643
0
        }
2644
0
        break;
2645
0
    case TypeVarTuple_kind:
2646
0
        if (!symtable_add_def(st, tp->v.TypeVarTuple.name, DEF_TYPE_PARAM | DEF_LOCAL, LOCATION(tp))) {
2647
0
            return 0;
2648
0
        }
2649
2650
0
        if (!symtable_visit_type_param_bound_or_default(st, tp->v.TypeVarTuple.default_value, tp->v.TypeVarTuple.name,
2651
0
                                                        tp, "a TypeVarTuple default")) {
2652
0
            return 0;
2653
0
        }
2654
0
        break;
2655
0
    case ParamSpec_kind:
2656
0
        if (!symtable_add_def(st, tp->v.ParamSpec.name, DEF_TYPE_PARAM | DEF_LOCAL, LOCATION(tp))) {
2657
0
            return 0;
2658
0
        }
2659
2660
0
        if (!symtable_visit_type_param_bound_or_default(st, tp->v.ParamSpec.default_value, tp->v.ParamSpec.name,
2661
0
                                                        tp, "a ParamSpec default")) {
2662
0
            return 0;
2663
0
        }
2664
0
        break;
2665
0
    }
2666
0
    LEAVE_RECURSIVE();
2667
0
    return 1;
2668
0
}
2669
2670
static int
2671
symtable_visit_pattern(struct symtable *st, pattern_ty p)
2672
4
{
2673
4
    ENTER_RECURSIVE();
2674
4
    switch (p->kind) {
2675
4
    case MatchValue_kind:
2676
4
        VISIT(st, expr, p->v.MatchValue.value);
2677
4
        break;
2678
4
    case MatchSingleton_kind:
2679
        /* Nothing to do here. */
2680
0
        break;
2681
0
    case MatchSequence_kind:
2682
0
        VISIT_SEQ(st, pattern, p->v.MatchSequence.patterns);
2683
0
        break;
2684
0
    case MatchStar_kind:
2685
0
        if (p->v.MatchStar.name) {
2686
0
            if (!symtable_add_def(st, p->v.MatchStar.name, DEF_LOCAL, LOCATION(p))) {
2687
0
                return 0;
2688
0
            }
2689
0
        }
2690
0
        break;
2691
0
    case MatchMapping_kind:
2692
0
        VISIT_SEQ(st, expr, p->v.MatchMapping.keys);
2693
0
        VISIT_SEQ(st, pattern, p->v.MatchMapping.patterns);
2694
0
        if (p->v.MatchMapping.rest) {
2695
0
            if (!symtable_add_def(st, p->v.MatchMapping.rest, DEF_LOCAL, LOCATION(p))) {
2696
0
                return 0;
2697
0
            }
2698
0
        }
2699
0
        break;
2700
0
    case MatchClass_kind:
2701
0
        VISIT(st, expr, p->v.MatchClass.cls);
2702
0
        VISIT_SEQ(st, pattern, p->v.MatchClass.patterns);
2703
0
        if (!check_kwd_patterns(st, p)) {
2704
0
            return 0;
2705
0
        }
2706
0
        VISIT_SEQ(st, pattern, p->v.MatchClass.kwd_patterns);
2707
0
        break;
2708
0
    case MatchAs_kind:
2709
0
        if (p->v.MatchAs.pattern) {
2710
0
            VISIT(st, pattern, p->v.MatchAs.pattern);
2711
0
        }
2712
0
        if (p->v.MatchAs.name) {
2713
0
            if (!symtable_add_def(st, p->v.MatchAs.name, DEF_LOCAL, LOCATION(p))) {
2714
0
                return 0;
2715
0
            }
2716
0
        }
2717
0
        break;
2718
0
    case MatchOr_kind:
2719
0
        VISIT_SEQ(st, pattern, p->v.MatchOr.patterns);
2720
0
        break;
2721
4
    }
2722
4
    LEAVE_RECURSIVE();
2723
4
    return 1;
2724
4
}
2725
2726
static int
2727
symtable_implicit_arg(struct symtable *st, int pos)
2728
91
{
2729
91
    PyObject *id = PyUnicode_FromFormat(".%d", pos);
2730
91
    if (id == NULL)
2731
0
        return 0;
2732
91
    if (!symtable_add_def(st, id, DEF_PARAM, st->st_cur->ste_loc)) {
2733
0
        Py_DECREF(id);
2734
0
        return 0;
2735
0
    }
2736
91
    Py_DECREF(id);
2737
91
    return 1;
2738
91
}
2739
2740
static int
2741
symtable_visit_params(struct symtable *st, asdl_arg_seq *args)
2742
9.49k
{
2743
9.49k
    Py_ssize_t i;
2744
2745
17.6k
    for (i = 0; i < asdl_seq_LEN(args); i++) {
2746
8.12k
        arg_ty arg = (arg_ty)asdl_seq_GET(args, i);
2747
8.12k
        if (!symtable_add_def(st, arg->arg, DEF_PARAM, LOCATION(arg)))
2748
0
            return 0;
2749
8.12k
    }
2750
2751
9.49k
    return 1;
2752
9.49k
}
2753
2754
static int
2755
symtable_visit_annotation(struct symtable *st, expr_ty annotation, void *key)
2756
18
{
2757
    // Annotations in local scopes are not executed and should not affect the symtable
2758
18
    bool is_unevaluated = st->st_cur->ste_type == FunctionBlock;
2759
2760
    // Module-level annotations are always considered conditional because the module
2761
    // may be partially executed.
2762
18
    if ((((st->st_cur->ste_type == ClassBlock && st->st_cur->ste_in_conditional_block)
2763
18
            || st->st_cur->ste_type == ModuleBlock))
2764
0
            && !st->st_cur->ste_has_conditional_annotations)
2765
0
    {
2766
0
        st->st_cur->ste_has_conditional_annotations = 1;
2767
0
        if (!symtable_add_def(st, &_Py_ID(__conditional_annotations__), USE, LOCATION(annotation))) {
2768
0
            return 0;
2769
0
        }
2770
0
    }
2771
18
    struct _symtable_entry *parent_ste = st->st_cur;
2772
18
    if (parent_ste->ste_annotation_block == NULL) {
2773
10
        _Py_block_ty current_type = parent_ste->ste_type;
2774
10
        if (!symtable_enter_block(st, &_Py_ID(__annotate__), AnnotationBlock,
2775
10
                                    key, LOCATION(annotation))) {
2776
0
            return 0;
2777
0
        }
2778
10
        parent_ste->ste_annotation_block =
2779
10
            (struct _symtable_entry *)Py_NewRef(st->st_cur);
2780
10
        int future_annotations = st->st_future->ff_features & CO_FUTURE_ANNOTATIONS;
2781
10
        if (current_type == ClassBlock && !future_annotations) {
2782
6
            st->st_cur->ste_can_see_class_scope = 1;
2783
6
            if (!symtable_add_def(st, &_Py_ID(__classdict__), USE, LOCATION(annotation))) {
2784
0
                return 0;
2785
0
            }
2786
6
        }
2787
10
    }
2788
8
    else {
2789
8
        if (!symtable_enter_existing_block(st, parent_ste->ste_annotation_block,
2790
8
                                           /* add_to_children */false)) {
2791
0
            return 0;
2792
0
        }
2793
8
    }
2794
18
    if (is_unevaluated) {
2795
6
        st->st_cur->ste_in_unevaluated_annotation = 1;
2796
6
    }
2797
18
    int rc = symtable_visit_expr(st, annotation);
2798
18
    if (is_unevaluated) {
2799
6
        st->st_cur->ste_in_unevaluated_annotation = 0;
2800
6
    }
2801
18
    if (!symtable_exit_block(st)) {
2802
0
        return 0;
2803
0
    }
2804
18
    return rc;
2805
18
}
2806
2807
static int
2808
symtable_visit_argannotations(struct symtable *st, asdl_arg_seq *args)
2809
8.89k
{
2810
8.89k
    Py_ssize_t i;
2811
2812
16.2k
    for (i = 0; i < asdl_seq_LEN(args); i++) {
2813
7.30k
        arg_ty arg = (arg_ty)asdl_seq_GET(args, i);
2814
7.30k
        if (arg->annotation) {
2815
40
            st->st_cur->ste_annotations_used = 1;
2816
40
            VISIT(st, expr, arg->annotation);
2817
40
        }
2818
7.30k
    }
2819
2820
8.89k
    return 1;
2821
8.89k
}
2822
2823
static int
2824
symtable_visit_annotations(struct symtable *st, stmt_ty o, arguments_ty a, expr_ty returns,
2825
                           struct _symtable_entry *function_ste)
2826
2.96k
{
2827
2.96k
    int is_in_class = st->st_cur->ste_can_see_class_scope;
2828
2.96k
    _Py_block_ty current_type = st->st_cur->ste_type;
2829
2.96k
    if (!symtable_enter_block(st, &_Py_ID(__annotate__), AnnotationBlock,
2830
2.96k
                              (void *)a, LOCATION(o))) {
2831
0
        return 0;
2832
0
    }
2833
2.96k
    if (is_in_class || current_type == ClassBlock) {
2834
1.78k
        st->st_cur->ste_can_see_class_scope = 1;
2835
1.78k
        if (!symtable_add_def(st, &_Py_ID(__classdict__), USE, LOCATION(o))) {
2836
0
            return 0;
2837
0
        }
2838
1.78k
    }
2839
2.96k
    if (a->posonlyargs && !symtable_visit_argannotations(st, a->posonlyargs))
2840
0
        return 0;
2841
2.96k
    if (a->args && !symtable_visit_argannotations(st, a->args))
2842
0
        return 0;
2843
2.96k
    if (a->vararg && a->vararg->annotation) {
2844
0
        st->st_cur->ste_annotations_used = 1;
2845
0
        VISIT(st, expr, a->vararg->annotation);
2846
0
    }
2847
2.96k
    if (a->kwarg && a->kwarg->annotation) {
2848
0
        st->st_cur->ste_annotations_used = 1;
2849
0
        VISIT(st, expr, a->kwarg->annotation);
2850
0
    }
2851
2.96k
    if (a->kwonlyargs && !symtable_visit_argannotations(st, a->kwonlyargs))
2852
0
        return 0;
2853
2.96k
    if (returns) {
2854
30
        st->st_cur->ste_annotations_used = 1;
2855
30
        VISIT(st, expr, returns);
2856
30
    }
2857
2.96k
    if (!symtable_exit_block(st)) {
2858
0
        return 0;
2859
0
    }
2860
2.96k
    return 1;
2861
2.96k
}
2862
2863
static int
2864
symtable_visit_arguments(struct symtable *st, arguments_ty a)
2865
3.16k
{
2866
    /* skip default arguments inside function block
2867
       XXX should ast be different?
2868
    */
2869
3.16k
    if (a->posonlyargs && !symtable_visit_params(st, a->posonlyargs))
2870
0
        return 0;
2871
3.16k
    if (a->args && !symtable_visit_params(st, a->args))
2872
0
        return 0;
2873
3.16k
    if (a->kwonlyargs && !symtable_visit_params(st, a->kwonlyargs))
2874
0
        return 0;
2875
3.16k
    if (a->vararg) {
2876
111
        if (!symtable_add_def(st, a->vararg->arg, DEF_PARAM, LOCATION(a->vararg)))
2877
0
            return 0;
2878
111
        st->st_cur->ste_varargs = 1;
2879
111
    }
2880
3.16k
    if (a->kwarg) {
2881
104
        if (!symtable_add_def(st, a->kwarg->arg, DEF_PARAM, LOCATION(a->kwarg)))
2882
0
            return 0;
2883
104
        st->st_cur->ste_varkeywords = 1;
2884
104
    }
2885
3.16k
    return 1;
2886
3.16k
}
2887
2888
2889
static int
2890
symtable_visit_excepthandler(struct symtable *st, excepthandler_ty eh)
2891
423
{
2892
423
    if (eh->v.ExceptHandler.type)
2893
397
        VISIT(st, expr, eh->v.ExceptHandler.type);
2894
423
    if (eh->v.ExceptHandler.name)
2895
103
        if (!symtable_add_def(st, eh->v.ExceptHandler.name, DEF_LOCAL, LOCATION(eh)))
2896
0
            return 0;
2897
423
    VISIT_SEQ(st, stmt, eh->v.ExceptHandler.body);
2898
423
    return 1;
2899
423
}
2900
2901
static int
2902
symtable_visit_withitem(struct symtable *st, withitem_ty item)
2903
120
{
2904
120
    VISIT(st, expr, item->context_expr);
2905
120
    if (item->optional_vars) {
2906
29
        VISIT(st, expr, item->optional_vars);
2907
29
    }
2908
120
    return 1;
2909
120
}
2910
2911
static int
2912
symtable_visit_match_case(struct symtable *st, match_case_ty m)
2913
4
{
2914
4
    VISIT(st, pattern, m->pattern);
2915
4
    if (m->guard) {
2916
0
        VISIT(st, expr, m->guard);
2917
0
    }
2918
4
    VISIT_SEQ(st, stmt, m->body);
2919
4
    return 1;
2920
4
}
2921
2922
static int
2923
symtable_visit_alias(struct symtable *st, alias_ty a)
2924
839
{
2925
    /* Compute store_name, the name actually bound by the import
2926
       operation.  It is different than a->name when a->name is a
2927
       dotted package name (e.g. spam.eggs)
2928
    */
2929
839
    PyObject *store_name;
2930
839
    PyObject *name = (a->asname == NULL) ? a->name : a->asname;
2931
839
    Py_ssize_t dot = PyUnicode_FindChar(name, '.', 0,
2932
839
                                        PyUnicode_GET_LENGTH(name), 1);
2933
839
    if (dot != -1) {
2934
14
        store_name = PyUnicode_Substring(name, 0, dot);
2935
14
        if (!store_name)
2936
0
            return 0;
2937
14
    }
2938
825
    else {
2939
825
        store_name = Py_NewRef(name);
2940
825
    }
2941
839
    if (!_PyUnicode_EqualToASCIIString(name, "*")) {
2942
818
        int r = symtable_add_def(st, store_name, DEF_IMPORT, LOCATION(a));
2943
818
        Py_DECREF(store_name);
2944
818
        return r;
2945
818
    }
2946
21
    else {
2947
21
        if (st->st_cur->ste_type != ModuleBlock) {
2948
0
            PyErr_SetString(PyExc_SyntaxError, IMPORT_STAR_WARNING);
2949
0
            SET_ERROR_LOCATION(st->st_filename, LOCATION(a));
2950
0
            Py_DECREF(store_name);
2951
0
            return 0;
2952
0
        }
2953
21
        Py_DECREF(store_name);
2954
21
        return 1;
2955
21
    }
2956
839
}
2957
2958
2959
static int
2960
symtable_visit_comprehension(struct symtable *st, comprehension_ty lc)
2961
1
{
2962
1
    st->st_cur->ste_comp_iter_target = 1;
2963
1
    VISIT(st, expr, lc->target);
2964
1
    st->st_cur->ste_comp_iter_target = 0;
2965
1
    st->st_cur->ste_comp_iter_expr++;
2966
1
    VISIT(st, expr, lc->iter);
2967
1
    st->st_cur->ste_comp_iter_expr--;
2968
1
    VISIT_SEQ(st, expr, lc->ifs);
2969
1
    if (lc->is_async) {
2970
0
        st->st_cur->ste_coroutine = 1;
2971
0
    }
2972
1
    return 1;
2973
1
}
2974
2975
2976
static int
2977
symtable_visit_keyword(struct symtable *st, keyword_ty k)
2978
1.61k
{
2979
1.61k
    VISIT(st, expr, k->value);
2980
1.61k
    return 1;
2981
1.61k
}
2982
2983
2984
static int
2985
symtable_handle_comprehension(struct symtable *st, expr_ty e,
2986
                              identifier scope_name, asdl_comprehension_seq *generators,
2987
                              expr_ty elt, expr_ty value)
2988
91
{
2989
91
    int is_generator = (e->kind == GeneratorExp_kind);
2990
91
    comprehension_ty outermost = ((comprehension_ty)
2991
91
                                    asdl_seq_GET(generators, 0));
2992
    /* Outermost iterator is evaluated in current scope */
2993
91
    st->st_cur->ste_comp_iter_expr++;
2994
91
    VISIT(st, expr, outermost->iter);
2995
91
    st->st_cur->ste_comp_iter_expr--;
2996
    /* Create comprehension scope for the rest */
2997
91
    if (!scope_name ||
2998
91
        !symtable_enter_block(st, scope_name, FunctionBlock, (void *)e, LOCATION(e))) {
2999
0
        return 0;
3000
0
    }
3001
91
    switch(e->kind) {
3002
42
        case ListComp_kind:
3003
42
            st->st_cur->ste_comprehension = ListComprehension;
3004
42
            break;
3005
7
        case SetComp_kind:
3006
7
            st->st_cur->ste_comprehension = SetComprehension;
3007
7
            break;
3008
4
        case DictComp_kind:
3009
4
            st->st_cur->ste_comprehension = DictComprehension;
3010
4
            break;
3011
38
        default:
3012
38
            st->st_cur->ste_comprehension = GeneratorExpression;
3013
38
            break;
3014
91
    }
3015
91
    if (outermost->is_async) {
3016
0
        st->st_cur->ste_coroutine = 1;
3017
0
    }
3018
3019
    /* Outermost iter is received as an argument */
3020
91
    if (!symtable_implicit_arg(st, 0)) {
3021
0
        symtable_exit_block(st);
3022
0
        return 0;
3023
0
    }
3024
    /* Visit iteration variable target, and mark them as such */
3025
91
    st->st_cur->ste_comp_iter_target = 1;
3026
91
    VISIT(st, expr, outermost->target);
3027
91
    st->st_cur->ste_comp_iter_target = 0;
3028
    /* Visit the rest of the comprehension body */
3029
91
    VISIT_SEQ(st, expr, outermost->ifs);
3030
91
    VISIT_SEQ_TAIL(st, comprehension, generators, 1);
3031
91
    if (value)
3032
4
        VISIT(st, expr, value);
3033
91
    VISIT(st, expr, elt);
3034
91
    st->st_cur->ste_generator = is_generator;
3035
91
    int is_async = st->st_cur->ste_coroutine && !is_generator;
3036
91
    if (!symtable_exit_block(st)) {
3037
0
        return 0;
3038
0
    }
3039
91
    if (is_async &&
3040
0
        !IS_ASYNC_DEF(st) &&
3041
0
        st->st_cur->ste_comprehension == NoComprehension &&
3042
0
        !allows_top_level_await(st))
3043
0
    {
3044
0
        PyErr_SetString(PyExc_SyntaxError, "asynchronous comprehension outside of "
3045
0
                                           "an asynchronous function");
3046
0
        SET_ERROR_LOCATION(st->st_filename, LOCATION(e));
3047
0
        return 0;
3048
0
    }
3049
91
    if (is_async) {
3050
0
        st->st_cur->ste_coroutine = 1;
3051
0
    }
3052
91
    return 1;
3053
91
}
3054
3055
static int
3056
symtable_visit_genexp(struct symtable *st, expr_ty e)
3057
38
{
3058
38
    return symtable_handle_comprehension(st, e, &_Py_STR(anon_genexpr),
3059
38
                                         e->v.GeneratorExp.generators,
3060
38
                                         e->v.GeneratorExp.elt, NULL);
3061
38
}
3062
3063
static int
3064
symtable_visit_listcomp(struct symtable *st, expr_ty e)
3065
42
{
3066
42
    return symtable_handle_comprehension(st, e, &_Py_STR(anon_listcomp),
3067
42
                                         e->v.ListComp.generators,
3068
42
                                         e->v.ListComp.elt, NULL);
3069
42
}
3070
3071
static int
3072
symtable_visit_setcomp(struct symtable *st, expr_ty e)
3073
7
{
3074
7
    return symtable_handle_comprehension(st, e, &_Py_STR(anon_setcomp),
3075
7
                                         e->v.SetComp.generators,
3076
7
                                         e->v.SetComp.elt, NULL);
3077
7
}
3078
3079
static int
3080
symtable_visit_dictcomp(struct symtable *st, expr_ty e)
3081
4
{
3082
4
    return symtable_handle_comprehension(st, e, &_Py_STR(anon_dictcomp),
3083
4
                                         e->v.DictComp.generators,
3084
4
                                         e->v.DictComp.key,
3085
4
                                         e->v.DictComp.value);
3086
4
}
3087
3088
static int
3089
symtable_raise_if_annotation_block(struct symtable *st, const char *name, expr_ty e)
3090
239
{
3091
239
    _Py_block_ty type = st->st_cur->ste_type;
3092
239
    if (type == AnnotationBlock)
3093
0
        PyErr_Format(PyExc_SyntaxError, ANNOTATION_NOT_ALLOWED, name);
3094
239
    else if (type == TypeVariableBlock) {
3095
0
        const char *info = st->st_cur->ste_scope_info;
3096
0
        assert(info != NULL); // e.g., info == "a ParamSpec default"
3097
0
        PyErr_Format(PyExc_SyntaxError, EXPR_NOT_ALLOWED_IN_TYPE_VARIABLE, name, info);
3098
0
    }
3099
239
    else if (type == TypeAliasBlock) {
3100
        // for now, we do not have any extra information
3101
0
        assert(st->st_cur->ste_scope_info == NULL);
3102
0
        PyErr_Format(PyExc_SyntaxError, EXPR_NOT_ALLOWED_IN_TYPE_ALIAS, name);
3103
0
    }
3104
239
    else if (type == TypeParametersBlock) {
3105
        // for now, we do not have any extra information
3106
0
        assert(st->st_cur->ste_scope_info == NULL);
3107
0
        PyErr_Format(PyExc_SyntaxError, EXPR_NOT_ALLOWED_IN_TYPE_PARAMETERS, name);
3108
0
    }
3109
239
    else
3110
239
        return 1;
3111
3112
0
    SET_ERROR_LOCATION(st->st_filename, LOCATION(e));
3113
0
    return 0;
3114
239
}
3115
3116
static int
3117
0
symtable_raise_if_comprehension_block(struct symtable *st, expr_ty e) {
3118
0
    _Py_comprehension_ty type = st->st_cur->ste_comprehension;
3119
0
    PyErr_SetString(PyExc_SyntaxError,
3120
0
            (type == ListComprehension) ? "'yield' inside list comprehension" :
3121
0
            (type == SetComprehension) ? "'yield' inside set comprehension" :
3122
0
            (type == DictComprehension) ? "'yield' inside dict comprehension" :
3123
0
            "'yield' inside generator expression");
3124
0
    SET_ERROR_LOCATION(st->st_filename, LOCATION(e));
3125
0
    return 0;
3126
0
}
3127
3128
static int
3129
5
symtable_raise_if_not_coroutine(struct symtable *st, const char *msg, _Py_SourceLocation loc) {
3130
5
    if (!st->st_cur->ste_coroutine) {
3131
0
        PyErr_SetString(PyExc_SyntaxError, msg);
3132
0
        SET_ERROR_LOCATION(st->st_filename, loc);
3133
0
        return 0;
3134
0
    }
3135
5
    return 1;
3136
5
}
3137
3138
struct symtable *
3139
_Py_SymtableStringObjectFlags(const char *str, PyObject *filename,
3140
                              int start, PyCompilerFlags *flags, PyObject *module)
3141
0
{
3142
0
    struct symtable *st;
3143
0
    mod_ty mod;
3144
0
    PyArena *arena;
3145
3146
0
    arena = _PyArena_New();
3147
0
    if (arena == NULL)
3148
0
        return NULL;
3149
3150
0
    mod = _PyParser_ASTFromString(str, filename, start, flags, arena, module);
3151
0
    if (mod == NULL) {
3152
0
        _PyArena_Free(arena);
3153
0
        return NULL;
3154
0
    }
3155
0
    _PyFutureFeatures future;
3156
0
    if (!_PyFuture_FromAST(mod, filename, &future)) {
3157
0
        _PyArena_Free(arena);
3158
0
        return NULL;
3159
0
    }
3160
0
    future.ff_features |= flags->cf_flags;
3161
0
    st = _PySymtable_Build(mod, filename, &future);
3162
0
    _PyArena_Free(arena);
3163
0
    return st;
3164
0
}
3165
3166
PyObject *
3167
_Py_MaybeMangle(PyObject *privateobj, PySTEntryObject *ste, PyObject *name)
3168
124k
{
3169
    /* Special case for type parameter blocks around generic classes:
3170
     * we want to mangle type parameter names (so a type param with a private
3171
     * name can be used inside the class body), but we don't want to mangle
3172
     * any other names that appear within the type parameter scope.
3173
     */
3174
124k
    if (ste->ste_mangled_names != NULL) {
3175
0
        int result = PySet_Contains(ste->ste_mangled_names, name);
3176
0
        if (result < 0) {
3177
0
            return NULL;
3178
0
        }
3179
0
        if (result == 0) {
3180
0
            return Py_NewRef(name);
3181
0
        }
3182
0
    }
3183
124k
    return _Py_Mangle(privateobj, name);
3184
124k
}
3185
3186
int
3187
_Py_IsPrivateName(PyObject *ident)
3188
0
{
3189
0
    if (!PyUnicode_Check(ident)) {
3190
0
        return 0;
3191
0
    }
3192
0
    Py_ssize_t nlen = PyUnicode_GET_LENGTH(ident);
3193
0
    if (nlen < 3 ||
3194
0
        PyUnicode_READ_CHAR(ident, 0) != '_' ||
3195
0
        PyUnicode_READ_CHAR(ident, 1) != '_')
3196
0
    {
3197
0
        return 0;
3198
0
    }
3199
0
    if (PyUnicode_READ_CHAR(ident, nlen-1) == '_' &&
3200
0
        PyUnicode_READ_CHAR(ident, nlen-2) == '_')
3201
0
    {
3202
0
        return 0; /* Don't mangle __whatever__ */
3203
0
    }
3204
0
    return 1;
3205
0
}
3206
3207
PyObject *
3208
_Py_Mangle(PyObject *privateobj, PyObject *ident)
3209
128k
{
3210
    /* Name mangling: __private becomes _classname__private.
3211
       This is independent from how the name is used. */
3212
128k
    if (privateobj == NULL || !PyUnicode_Check(privateobj) ||
3213
74.0k
        PyUnicode_READ_CHAR(ident, 0) != '_' ||
3214
121k
        PyUnicode_READ_CHAR(ident, 1) != '_') {
3215
121k
        return Py_NewRef(ident);
3216
121k
    }
3217
7.51k
    size_t nlen = PyUnicode_GET_LENGTH(ident);
3218
7.51k
    size_t plen = PyUnicode_GET_LENGTH(privateobj);
3219
    /* Don't mangle __id__ or names with dots.
3220
3221
       The only time a name with a dot can occur is when
3222
       we are compiling an import statement that has a
3223
       package name.
3224
3225
       TODO(jhylton): Decide whether we want to support
3226
       mangling of the module name, e.g. __M.X.
3227
    */
3228
7.51k
    if ((PyUnicode_READ_CHAR(ident, nlen-1) == '_' &&
3229
7.42k
         PyUnicode_READ_CHAR(ident, nlen-2) == '_') ||
3230
7.42k
        PyUnicode_FindChar(ident, '.', 0, nlen, 1) != -1) {
3231
7.42k
        return Py_NewRef(ident); /* Don't mangle __whatever__ */
3232
7.42k
    }
3233
    /* Strip leading underscores from class name */
3234
86
    size_t ipriv = 0;
3235
86
    while (PyUnicode_READ_CHAR(privateobj, ipriv) == '_') {
3236
0
        ipriv++;
3237
0
    }
3238
86
    if (ipriv == plen) {
3239
0
        return Py_NewRef(ident); /* Don't mangle if class is just underscores */
3240
0
    }
3241
3242
86
    if (nlen + (plen - ipriv) >= PY_SSIZE_T_MAX - 1) {
3243
0
        PyErr_SetString(PyExc_OverflowError,
3244
0
                        "private identifier too large to be mangled");
3245
0
        return NULL;
3246
0
    }
3247
3248
86
    PyUnicodeWriter *writer = PyUnicodeWriter_Create(1 + nlen + (plen - ipriv));
3249
86
    if (!writer) {
3250
0
        return NULL;
3251
0
    }
3252
    // ident = "_" + priv[ipriv:] + ident
3253
86
    if (PyUnicodeWriter_WriteChar(writer, '_') < 0) {
3254
0
        goto error;
3255
0
    }
3256
86
    if (PyUnicodeWriter_WriteSubstring(writer, privateobj, ipriv, plen) < 0) {
3257
0
        goto error;
3258
0
    }
3259
86
    if (PyUnicodeWriter_WriteStr(writer, ident) < 0) {
3260
0
        goto error;
3261
0
    }
3262
86
    return PyUnicodeWriter_Finish(writer);
3263
3264
0
error:
3265
0
    PyUnicodeWriter_Discard(writer);
3266
    return NULL;
3267
86
}