Coverage Report

Created: 2025-08-26 06:26

/src/cpython/Python/compile.c
Line
Count
Source (jump to first uncovered line)
1
/*
2
 * This file compiles an abstract syntax tree (AST) into Python bytecode.
3
 *
4
 * The primary entry point is _PyAST_Compile(), which returns a
5
 * PyCodeObject.  The compiler makes several passes to build the code
6
 * object:
7
 *   1. Checks for future statements.  See future.c
8
 *   2. Builds a symbol table.  See symtable.c.
9
 *   3. Generate an instruction sequence. See compiler_mod() in this file, which
10
 *      calls functions from codegen.c.
11
 *   4. Generate a control flow graph and run optimizations on it.  See flowgraph.c.
12
 *   5. Assemble the basic blocks into final code.  See optimize_and_assemble() in
13
 *      this file, and assembler.c.
14
 *
15
 */
16
17
#include "Python.h"
18
#include "pycore_ast.h"           // PyAST_Check()
19
#include "pycore_code.h"
20
#include "pycore_compile.h"
21
#include "pycore_flowgraph.h"     // _PyCfg_FromInstructionSequence()
22
#include "pycore_pystate.h"       // _Py_GetConfig()
23
#include "pycore_runtime.h"       // _Py_ID()
24
#include "pycore_setobject.h"     // _PySet_NextEntry()
25
#include "pycore_stats.h"
26
#include "pycore_unicodeobject.h" // _PyUnicode_EqualToASCIIString()
27
28
#include "cpython/code.h"
29
30
#include <stdbool.h>
31
32
33
#undef SUCCESS
34
#undef ERROR
35
173k
#define SUCCESS 0
36
1
#define ERROR -1
37
38
#define RETURN_IF_ERROR(X)  \
39
64.7k
    do {                    \
40
64.7k
        if ((X) == -1) {    \
41
0
            return ERROR;   \
42
0
        }                   \
43
64.7k
    } while (0)
44
45
typedef _Py_SourceLocation location;
46
typedef _PyJumpTargetLabel jump_target_label;
47
typedef _PyInstructionSequence instr_sequence;
48
typedef struct _PyCfgBuilder cfg_builder;
49
typedef _PyCompile_FBlockInfo fblockinfo;
50
typedef enum _PyCompile_FBlockType fblocktype;
51
52
/* The following items change on entry and exit of code blocks.
53
   They must be saved and restored when returning to a block.
54
*/
55
struct compiler_unit {
56
    PySTEntryObject *u_ste;
57
58
    int u_scope_type;
59
60
    PyObject *u_private;            /* for private name mangling */
61
    PyObject *u_static_attributes;  /* for class: attributes accessed via self.X */
62
    PyObject *u_deferred_annotations; /* AnnAssign nodes deferred to the end of compilation */
63
    PyObject *u_conditional_annotation_indices;  /* indices of annotations that are conditionally executed (or -1 for unconditional annotations) */
64
    long u_next_conditional_annotation_index;  /* index of the next conditional annotation */
65
66
    instr_sequence *u_instr_sequence; /* codegen output */
67
    instr_sequence *u_stashed_instr_sequence; /* temporarily stashed parent instruction sequence */
68
69
    int u_nfblocks;
70
    int u_in_inlined_comp;
71
    int u_in_conditional_block;
72
73
    _PyCompile_FBlockInfo u_fblock[CO_MAXBLOCKS];
74
75
    _PyCompile_CodeUnitMetadata u_metadata;
76
};
77
78
/* This struct captures the global state of a compilation.
79
80
The u pointer points to the current compilation unit, while units
81
for enclosing blocks are stored in c_stack.     The u and c_stack are
82
managed by _PyCompile_EnterScope() and _PyCompile_ExitScope().
83
84
Note that we don't track recursion levels during compilation - the
85
task of detecting and rejecting excessive levels of nesting is
86
handled by the symbol analysis pass.
87
88
*/
89
90
typedef struct _PyCompiler {
91
    PyObject *c_filename;
92
    struct symtable *c_st;
93
    _PyFutureFeatures c_future;  /* module's __future__ */
94
    PyCompilerFlags c_flags;
95
96
    int c_optimize;              /* optimization level */
97
    int c_interactive;           /* true if in interactive mode */
98
    PyObject *c_const_cache;     /* Python dict holding all constants,
99
                                    including names tuple */
100
    struct compiler_unit *u;     /* compiler state for current block */
101
    PyObject *c_stack;           /* Python list holding compiler_unit ptrs */
102
103
    bool c_save_nested_seqs;     /* if true, construct recursive instruction sequences
104
                                  * (including instructions for nested code objects)
105
                                  */
106
} compiler;
107
108
static int
109
compiler_setup(compiler *c, mod_ty mod, PyObject *filename,
110
               PyCompilerFlags *flags, int optimize, PyArena *arena)
111
362
{
112
362
    PyCompilerFlags local_flags = _PyCompilerFlags_INIT;
113
114
362
    c->c_const_cache = PyDict_New();
115
362
    if (!c->c_const_cache) {
116
0
        return ERROR;
117
0
    }
118
119
362
    c->c_stack = PyList_New(0);
120
362
    if (!c->c_stack) {
121
0
        return ERROR;
122
0
    }
123
124
362
    c->c_filename = Py_NewRef(filename);
125
362
    if (!_PyFuture_FromAST(mod, filename, &c->c_future)) {
126
0
        return ERROR;
127
0
    }
128
362
    if (!flags) {
129
48
        flags = &local_flags;
130
48
    }
131
362
    int merged = c->c_future.ff_features | flags->cf_flags;
132
362
    c->c_future.ff_features = merged;
133
362
    flags->cf_flags = merged;
134
362
    c->c_flags = *flags;
135
362
    c->c_optimize = (optimize == -1) ? _Py_GetConfig()->optimization_level : optimize;
136
362
    c->c_save_nested_seqs = false;
137
138
362
    if (!_PyAST_Preprocess(mod, arena, filename, c->c_optimize, merged, 0)) {
139
0
        return ERROR;
140
0
    }
141
362
    c->c_st = _PySymtable_Build(mod, filename, &c->c_future);
142
362
    if (c->c_st == NULL) {
143
0
        if (!PyErr_Occurred()) {
144
0
            PyErr_SetString(PyExc_SystemError, "no symtable");
145
0
        }
146
0
        return ERROR;
147
0
    }
148
362
    return SUCCESS;
149
362
}
150
151
static void
152
compiler_free(compiler *c)
153
362
{
154
362
    if (c->c_st) {
155
362
        _PySymtable_Free(c->c_st);
156
362
    }
157
362
    Py_XDECREF(c->c_filename);
158
362
    Py_XDECREF(c->c_const_cache);
159
362
    Py_XDECREF(c->c_stack);
160
362
    PyMem_Free(c);
161
362
}
162
163
static compiler*
164
new_compiler(mod_ty mod, PyObject *filename, PyCompilerFlags *pflags,
165
             int optimize, PyArena *arena)
166
362
{
167
362
    compiler *c = PyMem_Calloc(1, sizeof(compiler));
168
362
    if (c == NULL) {
169
0
        return NULL;
170
0
    }
171
362
    if (compiler_setup(c, mod, filename, pflags, optimize, arena) < 0) {
172
0
        compiler_free(c);
173
0
        return NULL;
174
0
    }
175
362
    return c;
176
362
}
177
178
static void
179
compiler_unit_free(struct compiler_unit *u)
180
6.55k
{
181
6.55k
    Py_CLEAR(u->u_instr_sequence);
182
6.55k
    Py_CLEAR(u->u_stashed_instr_sequence);
183
6.55k
    Py_CLEAR(u->u_ste);
184
6.55k
    Py_CLEAR(u->u_metadata.u_name);
185
6.55k
    Py_CLEAR(u->u_metadata.u_qualname);
186
6.55k
    Py_CLEAR(u->u_metadata.u_consts);
187
6.55k
    Py_CLEAR(u->u_metadata.u_names);
188
6.55k
    Py_CLEAR(u->u_metadata.u_varnames);
189
6.55k
    Py_CLEAR(u->u_metadata.u_freevars);
190
6.55k
    Py_CLEAR(u->u_metadata.u_cellvars);
191
6.55k
    Py_CLEAR(u->u_metadata.u_fasthidden);
192
6.55k
    Py_CLEAR(u->u_private);
193
6.55k
    Py_CLEAR(u->u_static_attributes);
194
6.55k
    Py_CLEAR(u->u_deferred_annotations);
195
6.55k
    Py_CLEAR(u->u_conditional_annotation_indices);
196
6.55k
    PyMem_Free(u);
197
6.55k
}
198
199
17.0k
#define CAPSULE_NAME "compile.c compiler unit"
200
201
int
202
_PyCompile_MaybeAddStaticAttributeToClass(compiler *c, expr_ty e)
203
13.8k
{
204
13.8k
    assert(e->kind == Attribute_kind);
205
13.8k
    expr_ty attr_value = e->v.Attribute.value;
206
13.8k
    if (attr_value->kind != Name_kind ||
207
13.8k
        e->v.Attribute.ctx != Store ||
208
13.8k
        !_PyUnicode_EqualToASCIIString(attr_value->v.Name.id, "self"))
209
12.6k
    {
210
12.6k
        return SUCCESS;
211
12.6k
    }
212
1.15k
    Py_ssize_t stack_size = PyList_GET_SIZE(c->c_stack);
213
1.15k
    for (Py_ssize_t i = stack_size - 1; i >= 0; i--) {
214
1.15k
        PyObject *capsule = PyList_GET_ITEM(c->c_stack, i);
215
1.15k
        struct compiler_unit *u = (struct compiler_unit *)PyCapsule_GetPointer(
216
1.15k
                                                              capsule, CAPSULE_NAME);
217
1.15k
        assert(u);
218
1.15k
        if (u->u_scope_type == COMPILE_SCOPE_CLASS) {
219
1.14k
            assert(u->u_static_attributes);
220
1.14k
            RETURN_IF_ERROR(PySet_Add(u->u_static_attributes, e->v.Attribute.attr));
221
1.14k
            break;
222
1.14k
        }
223
1.15k
    }
224
1.15k
    return SUCCESS;
225
1.15k
}
226
227
static int
228
compiler_set_qualname(compiler *c)
229
6.18k
{
230
6.18k
    Py_ssize_t stack_size;
231
6.18k
    struct compiler_unit *u = c->u;
232
6.18k
    PyObject *name, *base;
233
234
6.18k
    base = NULL;
235
6.18k
    stack_size = PyList_GET_SIZE(c->c_stack);
236
6.18k
    assert(stack_size >= 1);
237
6.18k
    if (stack_size > 1) {
238
3.48k
        int scope, force_global = 0;
239
3.48k
        struct compiler_unit *parent;
240
3.48k
        PyObject *mangled, *capsule;
241
242
3.48k
        capsule = PyList_GET_ITEM(c->c_stack, stack_size - 1);
243
3.48k
        parent = (struct compiler_unit *)PyCapsule_GetPointer(capsule, CAPSULE_NAME);
244
3.48k
        assert(parent);
245
3.48k
        if (parent->u_scope_type == COMPILE_SCOPE_ANNOTATIONS) {
246
            /* The parent is an annotation scope, so we need to
247
               look at the grandparent. */
248
0
            if (stack_size == 2) {
249
                // If we're immediately within the module, we can skip
250
                // the rest and just set the qualname to be the same as name.
251
0
                u->u_metadata.u_qualname = Py_NewRef(u->u_metadata.u_name);
252
0
                return SUCCESS;
253
0
            }
254
0
            capsule = PyList_GET_ITEM(c->c_stack, stack_size - 2);
255
0
            parent = (struct compiler_unit *)PyCapsule_GetPointer(capsule, CAPSULE_NAME);
256
0
            assert(parent);
257
0
        }
258
259
3.48k
        if (u->u_scope_type == COMPILE_SCOPE_FUNCTION
260
3.48k
            || u->u_scope_type == COMPILE_SCOPE_ASYNC_FUNCTION
261
3.48k
            || u->u_scope_type == COMPILE_SCOPE_CLASS) {
262
3.17k
            assert(u->u_metadata.u_name);
263
3.17k
            mangled = _Py_Mangle(parent->u_private, u->u_metadata.u_name);
264
3.17k
            if (!mangled) {
265
0
                return ERROR;
266
0
            }
267
268
3.17k
            scope = _PyST_GetScope(parent->u_ste, mangled);
269
3.17k
            Py_DECREF(mangled);
270
3.17k
            RETURN_IF_ERROR(scope);
271
3.17k
            assert(scope != GLOBAL_IMPLICIT);
272
3.17k
            if (scope == GLOBAL_EXPLICIT)
273
0
                force_global = 1;
274
3.17k
        }
275
276
3.48k
        if (!force_global) {
277
3.48k
            if (parent->u_scope_type == COMPILE_SCOPE_FUNCTION
278
3.48k
                || parent->u_scope_type == COMPILE_SCOPE_ASYNC_FUNCTION
279
3.48k
                || parent->u_scope_type == COMPILE_SCOPE_LAMBDA)
280
516
            {
281
516
                _Py_DECLARE_STR(dot_locals, ".<locals>");
282
516
                base = PyUnicode_Concat(parent->u_metadata.u_qualname,
283
516
                                        &_Py_STR(dot_locals));
284
516
                if (base == NULL) {
285
0
                    return ERROR;
286
0
                }
287
516
            }
288
2.96k
            else {
289
2.96k
                base = Py_NewRef(parent->u_metadata.u_qualname);
290
2.96k
            }
291
3.48k
        }
292
3.48k
    }
293
294
6.18k
    if (base != NULL) {
295
3.48k
        name = PyUnicode_Concat(base, _Py_LATIN1_CHR('.'));
296
3.48k
        Py_DECREF(base);
297
3.48k
        if (name == NULL) {
298
0
            return ERROR;
299
0
        }
300
3.48k
        PyUnicode_Append(&name, u->u_metadata.u_name);
301
3.48k
        if (name == NULL) {
302
0
            return ERROR;
303
0
        }
304
3.48k
    }
305
2.70k
    else {
306
2.70k
        name = Py_NewRef(u->u_metadata.u_name);
307
2.70k
    }
308
6.18k
    u->u_metadata.u_qualname = name;
309
310
6.18k
    return SUCCESS;
311
6.18k
}
312
313
/* Merge const *o* and return constant key object.
314
 * If recursive, insert all elements if o is a tuple or frozen set.
315
 */
316
static PyObject*
317
const_cache_insert(PyObject *const_cache, PyObject *o, bool recursive)
318
116k
{
319
116k
    assert(PyDict_CheckExact(const_cache));
320
    // None and Ellipsis are immortal objects, and key is the singleton.
321
    // No need to merge object and key.
322
116k
    if (o == Py_None || o == Py_Ellipsis) {
323
13.0k
        return o;
324
13.0k
    }
325
326
103k
    PyObject *key = _PyCode_ConstantKey(o);
327
103k
    if (key == NULL) {
328
0
        return NULL;
329
0
    }
330
331
103k
    PyObject *t;
332
103k
    int res = PyDict_SetDefaultRef(const_cache, key, key, &t);
333
103k
    if (res != 0) {
334
        // o was not inserted into const_cache. t is either the existing value
335
        // or NULL (on error).
336
39.3k
        Py_DECREF(key);
337
39.3k
        return t;
338
39.3k
    }
339
64.2k
    Py_DECREF(t);
340
341
64.2k
    if (!recursive) {
342
27.7k
        return key;
343
27.7k
    }
344
345
    // We registered o in const_cache.
346
    // When o is a tuple or frozenset, we want to merge its
347
    // items too.
348
36.5k
    if (PyTuple_CheckExact(o)) {
349
1.10k
        Py_ssize_t len = PyTuple_GET_SIZE(o);
350
3.84k
        for (Py_ssize_t i = 0; i < len; i++) {
351
2.74k
            PyObject *item = PyTuple_GET_ITEM(o, i);
352
2.74k
            PyObject *u = const_cache_insert(const_cache, item, recursive);
353
2.74k
            if (u == NULL) {
354
0
                Py_DECREF(key);
355
0
                return NULL;
356
0
            }
357
358
            // See _PyCode_ConstantKey()
359
2.74k
            PyObject *v;  // borrowed
360
2.74k
            if (PyTuple_CheckExact(u)) {
361
0
                v = PyTuple_GET_ITEM(u, 1);
362
0
            }
363
2.74k
            else {
364
2.74k
                v = u;
365
2.74k
            }
366
2.74k
            if (v != item) {
367
168
                PyTuple_SET_ITEM(o, i, Py_NewRef(v));
368
168
                Py_DECREF(item);
369
168
            }
370
371
2.74k
            Py_DECREF(u);
372
2.74k
        }
373
1.10k
    }
374
35.4k
    else if (PyFrozenSet_CheckExact(o)) {
375
        // *key* is tuple. And its first item is frozenset of
376
        // constant keys.
377
        // See _PyCode_ConstantKey() for detail.
378
0
        assert(PyTuple_CheckExact(key));
379
0
        assert(PyTuple_GET_SIZE(key) == 2);
380
381
0
        Py_ssize_t len = PySet_GET_SIZE(o);
382
0
        if (len == 0) {  // empty frozenset should not be re-created.
383
0
            return key;
384
0
        }
385
0
        PyObject *tuple = PyTuple_New(len);
386
0
        if (tuple == NULL) {
387
0
            Py_DECREF(key);
388
0
            return NULL;
389
0
        }
390
0
        Py_ssize_t i = 0, pos = 0;
391
0
        PyObject *item;
392
0
        Py_hash_t hash;
393
0
        while (_PySet_NextEntry(o, &pos, &item, &hash)) {
394
0
            PyObject *k = const_cache_insert(const_cache, item, recursive);
395
0
            if (k == NULL) {
396
0
                Py_DECREF(tuple);
397
0
                Py_DECREF(key);
398
0
                return NULL;
399
0
            }
400
0
            PyObject *u;
401
0
            if (PyTuple_CheckExact(k)) {
402
0
                u = Py_NewRef(PyTuple_GET_ITEM(k, 1));
403
0
                Py_DECREF(k);
404
0
            }
405
0
            else {
406
0
                u = k;
407
0
            }
408
0
            PyTuple_SET_ITEM(tuple, i, u);  // Steals reference of u.
409
0
            i++;
410
0
        }
411
412
        // Instead of rewriting o, we create new frozenset and embed in the
413
        // key tuple.  Caller should get merged frozenset from the key tuple.
414
0
        PyObject *new = PyFrozenSet_New(tuple);
415
0
        Py_DECREF(tuple);
416
0
        if (new == NULL) {
417
0
            Py_DECREF(key);
418
0
            return NULL;
419
0
        }
420
0
        assert(PyTuple_GET_ITEM(key, 1) == o);
421
0
        Py_DECREF(o);
422
0
        PyTuple_SET_ITEM(key, 1, new);
423
0
    }
424
425
36.5k
    return key;
426
36.5k
}
427
428
static PyObject*
429
merge_consts_recursive(PyObject *const_cache, PyObject *o)
430
72.2k
{
431
72.2k
    return const_cache_insert(const_cache, o, true);
432
72.2k
}
433
434
Py_ssize_t
435
_PyCompile_DictAddObj(PyObject *dict, PyObject *o)
436
197k
{
437
197k
    PyObject *v;
438
197k
    Py_ssize_t arg;
439
440
197k
    if (PyDict_GetItemRef(dict, o, &v) < 0) {
441
0
        return ERROR;
442
0
    }
443
197k
    if (!v) {
444
100k
        arg = PyDict_GET_SIZE(dict);
445
100k
        v = PyLong_FromSsize_t(arg);
446
100k
        if (!v) {
447
0
            return ERROR;
448
0
        }
449
100k
        if (PyDict_SetItem(dict, o, v) < 0) {
450
0
            Py_DECREF(v);
451
0
            return ERROR;
452
0
        }
453
100k
    }
454
96.7k
    else
455
96.7k
        arg = PyLong_AsLong(v);
456
197k
    Py_DECREF(v);
457
197k
    return arg;
458
197k
}
459
460
Py_ssize_t
461
_PyCompile_AddConst(compiler *c, PyObject *o)
462
72.2k
{
463
72.2k
    PyObject *key = merge_consts_recursive(c->c_const_cache, o);
464
72.2k
    if (key == NULL) {
465
0
        return ERROR;
466
0
    }
467
468
72.2k
    Py_ssize_t arg = _PyCompile_DictAddObj(c->u->u_metadata.u_consts, key);
469
72.2k
    Py_DECREF(key);
470
72.2k
    return arg;
471
72.2k
}
472
473
static PyObject *
474
list2dict(PyObject *list)
475
6.55k
{
476
6.55k
    Py_ssize_t i, n;
477
6.55k
    PyObject *v, *k;
478
6.55k
    PyObject *dict = PyDict_New();
479
6.55k
    if (!dict) return NULL;
480
481
6.55k
    n = PyList_Size(list);
482
17.0k
    for (i = 0; i < n; i++) {
483
10.4k
        v = PyLong_FromSsize_t(i);
484
10.4k
        if (!v) {
485
0
            Py_DECREF(dict);
486
0
            return NULL;
487
0
        }
488
10.4k
        k = PyList_GET_ITEM(list, i);
489
10.4k
        if (PyDict_SetItem(dict, k, v) < 0) {
490
0
            Py_DECREF(v);
491
0
            Py_DECREF(dict);
492
0
            return NULL;
493
0
        }
494
10.4k
        Py_DECREF(v);
495
10.4k
    }
496
6.55k
    return dict;
497
6.55k
}
498
499
/* Return new dict containing names from src that match scope(s).
500
501
src is a symbol table dictionary.  If the scope of a name matches
502
either scope_type or flag is set, insert it into the new dict.  The
503
values are integers, starting at offset and increasing by one for
504
each key.
505
*/
506
507
static PyObject *
508
dictbytype(PyObject *src, int scope_type, int flag, Py_ssize_t offset)
509
13.1k
{
510
13.1k
    Py_ssize_t i = offset, num_keys, key_i;
511
13.1k
    PyObject *k, *v, *dest = PyDict_New();
512
13.1k
    PyObject *sorted_keys;
513
514
13.1k
    assert(offset >= 0);
515
13.1k
    if (dest == NULL)
516
0
        return NULL;
517
518
    /* Sort the keys so that we have a deterministic order on the indexes
519
       saved in the returned dictionary.  These indexes are used as indexes
520
       into the free and cell var storage.  Therefore if they aren't
521
       deterministic, then the generated bytecode is not deterministic.
522
    */
523
13.1k
    sorted_keys = PyDict_Keys(src);
524
13.1k
    if (sorted_keys == NULL) {
525
0
        Py_DECREF(dest);
526
0
        return NULL;
527
0
    }
528
13.1k
    if (PyList_Sort(sorted_keys) != 0) {
529
0
        Py_DECREF(sorted_keys);
530
0
        Py_DECREF(dest);
531
0
        return NULL;
532
0
    }
533
13.1k
    num_keys = PyList_GET_SIZE(sorted_keys);
534
535
93.8k
    for (key_i = 0; key_i < num_keys; key_i++) {
536
80.7k
        k = PyList_GET_ITEM(sorted_keys, key_i);
537
80.7k
        v = PyDict_GetItemWithError(src, k);
538
80.7k
        if (!v) {
539
0
            if (!PyErr_Occurred()) {
540
0
                PyErr_SetObject(PyExc_KeyError, k);
541
0
            }
542
0
            Py_DECREF(sorted_keys);
543
0
            Py_DECREF(dest);
544
0
            return NULL;
545
0
        }
546
80.7k
        long vi = PyLong_AsLong(v);
547
80.7k
        if (vi == -1 && PyErr_Occurred()) {
548
0
            Py_DECREF(sorted_keys);
549
0
            Py_DECREF(dest);
550
0
            return NULL;
551
0
        }
552
80.7k
        if (SYMBOL_TO_SCOPE(vi) == scope_type || vi & flag) {
553
1.42k
            PyObject *item = PyLong_FromSsize_t(i);
554
1.42k
            if (item == NULL) {
555
0
                Py_DECREF(sorted_keys);
556
0
                Py_DECREF(dest);
557
0
                return NULL;
558
0
            }
559
1.42k
            i++;
560
1.42k
            if (PyDict_SetItem(dest, k, item) < 0) {
561
0
                Py_DECREF(sorted_keys);
562
0
                Py_DECREF(item);
563
0
                Py_DECREF(dest);
564
0
                return NULL;
565
0
            }
566
1.42k
            Py_DECREF(item);
567
1.42k
        }
568
80.7k
    }
569
13.1k
    Py_DECREF(sorted_keys);
570
13.1k
    return dest;
571
13.1k
}
572
573
int
574
_PyCompile_EnterScope(compiler *c, identifier name, int scope_type,
575
                       void *key, int lineno, PyObject *private,
576
                      _PyCompile_CodeUnitMetadata *umd)
577
6.55k
{
578
6.55k
    struct compiler_unit *u;
579
6.55k
    u = (struct compiler_unit *)PyMem_Calloc(1, sizeof(struct compiler_unit));
580
6.55k
    if (!u) {
581
0
        PyErr_NoMemory();
582
0
        return ERROR;
583
0
    }
584
6.55k
    u->u_scope_type = scope_type;
585
6.55k
    if (umd != NULL) {
586
5.07k
        u->u_metadata = *umd;
587
5.07k
    }
588
1.47k
    else {
589
1.47k
        u->u_metadata.u_argcount = 0;
590
1.47k
        u->u_metadata.u_posonlyargcount = 0;
591
1.47k
        u->u_metadata.u_kwonlyargcount = 0;
592
1.47k
    }
593
6.55k
    u->u_ste = _PySymtable_Lookup(c->c_st, key);
594
6.55k
    if (!u->u_ste) {
595
0
        compiler_unit_free(u);
596
0
        return ERROR;
597
0
    }
598
6.55k
    u->u_metadata.u_name = Py_NewRef(name);
599
6.55k
    u->u_metadata.u_varnames = list2dict(u->u_ste->ste_varnames);
600
6.55k
    if (!u->u_metadata.u_varnames) {
601
0
        compiler_unit_free(u);
602
0
        return ERROR;
603
0
    }
604
6.55k
    u->u_metadata.u_cellvars = dictbytype(u->u_ste->ste_symbols, CELL, DEF_COMP_CELL, 0);
605
6.55k
    if (!u->u_metadata.u_cellvars) {
606
0
        compiler_unit_free(u);
607
0
        return ERROR;
608
0
    }
609
6.55k
    if (u->u_ste->ste_needs_class_closure) {
610
        /* Cook up an implicit __class__ cell. */
611
74
        Py_ssize_t res;
612
74
        assert(u->u_scope_type == COMPILE_SCOPE_CLASS);
613
74
        res = _PyCompile_DictAddObj(u->u_metadata.u_cellvars, &_Py_ID(__class__));
614
74
        if (res < 0) {
615
0
            compiler_unit_free(u);
616
0
            return ERROR;
617
0
        }
618
74
    }
619
6.55k
    if (u->u_ste->ste_needs_classdict) {
620
        /* Cook up an implicit __classdict__ cell. */
621
640
        Py_ssize_t res;
622
640
        assert(u->u_scope_type == COMPILE_SCOPE_CLASS);
623
640
        res = _PyCompile_DictAddObj(u->u_metadata.u_cellvars, &_Py_ID(__classdict__));
624
640
        if (res < 0) {
625
0
            compiler_unit_free(u);
626
0
            return ERROR;
627
0
        }
628
640
    }
629
6.55k
    if (u->u_ste->ste_has_conditional_annotations) {
630
        /* Cook up an implicit __conditional__annotations__ cell */
631
1
        Py_ssize_t res;
632
1
        assert(u->u_scope_type == COMPILE_SCOPE_CLASS || u->u_scope_type == COMPILE_SCOPE_MODULE);
633
1
        res = _PyCompile_DictAddObj(u->u_metadata.u_cellvars, &_Py_ID(__conditional_annotations__));
634
1
        if (res < 0) {
635
0
            compiler_unit_free(u);
636
0
            return ERROR;
637
0
        }
638
1
    }
639
640
6.55k
    u->u_metadata.u_freevars = dictbytype(u->u_ste->ste_symbols, FREE, DEF_FREE_CLASS,
641
6.55k
                               PyDict_GET_SIZE(u->u_metadata.u_cellvars));
642
6.55k
    if (!u->u_metadata.u_freevars) {
643
0
        compiler_unit_free(u);
644
0
        return ERROR;
645
0
    }
646
647
6.55k
    u->u_metadata.u_fasthidden = PyDict_New();
648
6.55k
    if (!u->u_metadata.u_fasthidden) {
649
0
        compiler_unit_free(u);
650
0
        return ERROR;
651
0
    }
652
653
6.55k
    u->u_nfblocks = 0;
654
6.55k
    u->u_in_inlined_comp = 0;
655
6.55k
    u->u_metadata.u_firstlineno = lineno;
656
6.55k
    u->u_metadata.u_consts = PyDict_New();
657
6.55k
    if (!u->u_metadata.u_consts) {
658
0
        compiler_unit_free(u);
659
0
        return ERROR;
660
0
    }
661
6.55k
    u->u_metadata.u_names = PyDict_New();
662
6.55k
    if (!u->u_metadata.u_names) {
663
0
        compiler_unit_free(u);
664
0
        return ERROR;
665
0
    }
666
667
6.55k
    u->u_deferred_annotations = NULL;
668
6.55k
    u->u_conditional_annotation_indices = NULL;
669
6.55k
    u->u_next_conditional_annotation_index = 0;
670
6.55k
    if (scope_type == COMPILE_SCOPE_CLASS) {
671
1.11k
        u->u_static_attributes = PySet_New(0);
672
1.11k
        if (!u->u_static_attributes) {
673
0
            compiler_unit_free(u);
674
0
            return ERROR;
675
0
        }
676
1.11k
    }
677
5.43k
    else {
678
5.43k
        u->u_static_attributes = NULL;
679
5.43k
    }
680
681
6.55k
    u->u_instr_sequence = (instr_sequence*)_PyInstructionSequence_New();
682
6.55k
    if (!u->u_instr_sequence) {
683
0
        compiler_unit_free(u);
684
0
        return ERROR;
685
0
    }
686
6.55k
    u->u_stashed_instr_sequence = NULL;
687
688
    /* Push the old compiler_unit on the stack. */
689
6.55k
    if (c->u) {
690
6.18k
        PyObject *capsule = PyCapsule_New(c->u, CAPSULE_NAME, NULL);
691
6.18k
        if (!capsule || PyList_Append(c->c_stack, capsule) < 0) {
692
0
            Py_XDECREF(capsule);
693
0
            compiler_unit_free(u);
694
0
            return ERROR;
695
0
        }
696
6.18k
        Py_DECREF(capsule);
697
6.18k
        if (private == NULL) {
698
5.07k
            private = c->u->u_private;
699
5.07k
        }
700
6.18k
    }
701
702
6.55k
    u->u_private = Py_XNewRef(private);
703
704
6.55k
    c->u = u;
705
6.55k
    if (scope_type != COMPILE_SCOPE_MODULE) {
706
6.18k
        RETURN_IF_ERROR(compiler_set_qualname(c));
707
6.18k
    }
708
6.55k
    return SUCCESS;
709
6.55k
}
710
711
void
712
_PyCompile_ExitScope(compiler *c)
713
6.55k
{
714
    // Don't call PySequence_DelItem() with an exception raised
715
6.55k
    PyObject *exc = PyErr_GetRaisedException();
716
717
6.55k
    instr_sequence *nested_seq = NULL;
718
6.55k
    if (c->c_save_nested_seqs) {
719
0
        nested_seq = c->u->u_instr_sequence;
720
0
        Py_INCREF(nested_seq);
721
0
    }
722
6.55k
    compiler_unit_free(c->u);
723
    /* Restore c->u to the parent unit. */
724
6.55k
    Py_ssize_t n = PyList_GET_SIZE(c->c_stack) - 1;
725
6.55k
    if (n >= 0) {
726
6.18k
        PyObject *capsule = PyList_GET_ITEM(c->c_stack, n);
727
6.18k
        c->u = (struct compiler_unit *)PyCapsule_GetPointer(capsule, CAPSULE_NAME);
728
6.18k
        assert(c->u);
729
        /* we are deleting from a list so this really shouldn't fail */
730
6.18k
        if (PySequence_DelItem(c->c_stack, n) < 0) {
731
0
            PyErr_FormatUnraisable("Exception ignored while removing "
732
0
                                   "the last compiler stack item");
733
0
        }
734
6.18k
        if (nested_seq != NULL) {
735
0
            if (_PyInstructionSequence_AddNested(c->u->u_instr_sequence, nested_seq) < 0) {
736
0
                PyErr_FormatUnraisable("Exception ignored while appending "
737
0
                                       "nested instruction sequence");
738
0
            }
739
0
        }
740
6.18k
    }
741
362
    else {
742
362
        c->u = NULL;
743
362
    }
744
6.55k
    Py_XDECREF(nested_seq);
745
746
6.55k
    PyErr_SetRaisedException(exc);
747
6.55k
}
748
749
/*
750
 * Frame block handling functions
751
 */
752
753
int
754
_PyCompile_PushFBlock(compiler *c, location loc,
755
                     fblocktype t, jump_target_label block_label,
756
                     jump_target_label exit, void *datum)
757
4.87k
{
758
4.87k
    fblockinfo *f;
759
4.87k
    if (c->u->u_nfblocks >= CO_MAXBLOCKS) {
760
0
        return _PyCompile_Error(c, loc, "too many statically nested blocks");
761
0
    }
762
4.87k
    f = &c->u->u_fblock[c->u->u_nfblocks++];
763
4.87k
    f->fb_type = t;
764
4.87k
    f->fb_block = block_label;
765
4.87k
    f->fb_loc = loc;
766
4.87k
    f->fb_exit = exit;
767
4.87k
    f->fb_datum = datum;
768
4.87k
    return SUCCESS;
769
4.87k
}
770
771
void
772
_PyCompile_PopFBlock(compiler *c, fblocktype t, jump_target_label block_label)
773
4.87k
{
774
4.87k
    struct compiler_unit *u = c->u;
775
4.87k
    assert(u->u_nfblocks > 0);
776
4.87k
    u->u_nfblocks--;
777
4.87k
    assert(u->u_fblock[u->u_nfblocks].fb_type == t);
778
4.87k
    assert(SAME_JUMP_TARGET_LABEL(u->u_fblock[u->u_nfblocks].fb_block, block_label));
779
4.87k
}
780
781
fblockinfo *
782
_PyCompile_TopFBlock(compiler *c)
783
6.69k
{
784
6.69k
    if (c->u->u_nfblocks == 0) {
785
5.24k
        return NULL;
786
5.24k
    }
787
1.45k
    return &c->u->u_fblock[c->u->u_nfblocks - 1];
788
6.69k
}
789
790
void
791
_PyCompile_DeferredAnnotations(compiler *c,
792
                               PyObject **deferred_annotations,
793
                               PyObject **conditional_annotation_indices)
794
1.40k
{
795
1.40k
    *deferred_annotations = Py_XNewRef(c->u->u_deferred_annotations);
796
1.40k
    *conditional_annotation_indices = Py_XNewRef(c->u->u_conditional_annotation_indices);
797
1.40k
}
798
799
static location
800
start_location(asdl_stmt_seq *stmts)
801
296
{
802
296
    if (asdl_seq_LEN(stmts) > 0) {
803
        /* Set current line number to the line number of first statement.
804
         * This way line number for SETUP_ANNOTATIONS will always
805
         * coincide with the line number of first "real" statement in module.
806
         * If body is empty, then lineno will be set later in the assembly stage.
807
         */
808
293
        stmt_ty st = (stmt_ty)asdl_seq_GET(stmts, 0);
809
293
        return SRC_LOCATION_FROM_AST(st);
810
293
    }
811
3
    return (const _Py_SourceLocation){1, 1, 0, 0};
812
296
}
813
814
static int
815
compiler_codegen(compiler *c, mod_ty mod)
816
362
{
817
362
    RETURN_IF_ERROR(_PyCodegen_EnterAnonymousScope(c, mod));
818
362
    assert(c->u->u_scope_type == COMPILE_SCOPE_MODULE);
819
362
    switch (mod->kind) {
820
296
    case Module_kind: {
821
296
        asdl_stmt_seq *stmts = mod->v.Module.body;
822
296
        RETURN_IF_ERROR(_PyCodegen_Module(c, start_location(stmts), stmts, false));
823
296
        break;
824
296
    }
825
296
    case Interactive_kind: {
826
0
        c->c_interactive = 1;
827
0
        asdl_stmt_seq *stmts = mod->v.Interactive.body;
828
0
        RETURN_IF_ERROR(_PyCodegen_Module(c, start_location(stmts), stmts, true));
829
0
        break;
830
0
    }
831
66
    case Expression_kind: {
832
66
        RETURN_IF_ERROR(_PyCodegen_Expression(c, mod->v.Expression.body));
833
66
        break;
834
66
    }
835
66
    default: {
836
0
        PyErr_Format(PyExc_SystemError,
837
0
                     "module kind %d should not be possible",
838
0
                     mod->kind);
839
0
        return ERROR;
840
66
    }}
841
362
    return SUCCESS;
842
362
}
843
844
static PyCodeObject *
845
compiler_mod(compiler *c, mod_ty mod)
846
362
{
847
362
    PyCodeObject *co = NULL;
848
362
    int addNone = mod->kind != Expression_kind;
849
362
    if (compiler_codegen(c, mod) < 0) {
850
0
        goto finally;
851
0
    }
852
362
    co = _PyCompile_OptimizeAndAssemble(c, addNone);
853
362
finally:
854
362
    _PyCompile_ExitScope(c);
855
362
    return co;
856
362
}
857
858
int
859
_PyCompile_GetRefType(compiler *c, PyObject *name)
860
1.06k
{
861
1.06k
    if (c->u->u_scope_type == COMPILE_SCOPE_CLASS &&
862
1.06k
        (_PyUnicode_EqualToASCIIString(name, "__class__") ||
863
192
         _PyUnicode_EqualToASCIIString(name, "__classdict__") ||
864
192
         _PyUnicode_EqualToASCIIString(name, "__conditional_annotations__"))) {
865
185
        return CELL;
866
185
    }
867
881
    PySTEntryObject *ste = c->u->u_ste;
868
881
    int scope = _PyST_GetScope(ste, name);
869
881
    if (scope == 0) {
870
0
        PyErr_Format(PyExc_SystemError,
871
0
                     "_PyST_GetScope(name=%R) failed: "
872
0
                     "unknown scope in unit %S (%R); "
873
0
                     "symbols: %R; locals: %R; "
874
0
                     "globals: %R",
875
0
                     name,
876
0
                     c->u->u_metadata.u_name, ste->ste_id,
877
0
                     ste->ste_symbols, c->u->u_metadata.u_varnames,
878
0
                     c->u->u_metadata.u_names);
879
0
        return ERROR;
880
0
    }
881
881
    return scope;
882
881
}
883
884
static int
885
dict_lookup_arg(PyObject *dict, PyObject *name)
886
1.62k
{
887
1.62k
    PyObject *v = PyDict_GetItemWithError(dict, name);
888
1.62k
    if (v == NULL) {
889
0
        return ERROR;
890
0
    }
891
1.62k
    return PyLong_AsLong(v);
892
1.62k
}
893
894
int
895
_PyCompile_LookupCellvar(compiler *c, PyObject *name)
896
714
{
897
714
    assert(c->u->u_metadata.u_cellvars);
898
714
    return dict_lookup_arg(c->u->u_metadata.u_cellvars, name);
899
714
}
900
901
int
902
_PyCompile_LookupArg(compiler *c, PyCodeObject *co, PyObject *name)
903
907
{
904
    /* Special case: If a class contains a method with a
905
     * free variable that has the same name as a method,
906
     * the name will be considered free *and* local in the
907
     * class.  It should be handled by the closure, as
908
     * well as by the normal name lookup logic.
909
     */
910
907
    int reftype = _PyCompile_GetRefType(c, name);
911
907
    if (reftype == -1) {
912
0
        return ERROR;
913
0
    }
914
907
    int arg;
915
907
    if (reftype == CELL) {
916
875
        arg = dict_lookup_arg(c->u->u_metadata.u_cellvars, name);
917
875
    }
918
32
    else {
919
32
        arg = dict_lookup_arg(c->u->u_metadata.u_freevars, name);
920
32
    }
921
907
    if (arg == -1 && !PyErr_Occurred()) {
922
0
        PyObject *freevars = _PyCode_GetFreevars(co);
923
0
        if (freevars == NULL) {
924
0
            PyErr_Clear();
925
0
        }
926
0
        PyErr_Format(PyExc_SystemError,
927
0
            "compiler_lookup_arg(name=%R) with reftype=%d failed in %S; "
928
0
            "freevars of code %S: %R",
929
0
            name,
930
0
            reftype,
931
0
            c->u->u_metadata.u_name,
932
0
            co->co_name,
933
0
            freevars);
934
0
        Py_XDECREF(freevars);
935
0
        return ERROR;
936
0
    }
937
907
    return arg;
938
907
}
939
940
PyObject *
941
_PyCompile_StaticAttributesAsTuple(compiler *c)
942
1.11k
{
943
1.11k
    assert(c->u->u_static_attributes);
944
1.11k
    PyObject *static_attributes_unsorted = PySequence_List(c->u->u_static_attributes);
945
1.11k
    if (static_attributes_unsorted == NULL) {
946
0
        return NULL;
947
0
    }
948
1.11k
    if (PyList_Sort(static_attributes_unsorted) != 0) {
949
0
        Py_DECREF(static_attributes_unsorted);
950
0
        return NULL;
951
0
    }
952
1.11k
    PyObject *static_attributes = PySequence_Tuple(static_attributes_unsorted);
953
1.11k
    Py_DECREF(static_attributes_unsorted);
954
1.11k
    return static_attributes;
955
1.11k
}
956
957
int
958
_PyCompile_ResolveNameop(compiler *c, PyObject *mangled, int scope,
959
                          _PyCompile_optype *optype, Py_ssize_t *arg)
960
99.4k
{
961
99.4k
    PyObject *dict = c->u->u_metadata.u_names;
962
99.4k
    *optype = COMPILE_OP_NAME;
963
964
99.4k
    assert(scope >= 0);
965
99.4k
    switch (scope) {
966
1.33k
    case FREE:
967
1.33k
        dict = c->u->u_metadata.u_freevars;
968
1.33k
        *optype = COMPILE_OP_DEREF;
969
1.33k
        break;
970
779
    case CELL:
971
779
        dict = c->u->u_metadata.u_cellvars;
972
779
        *optype = COMPILE_OP_DEREF;
973
779
        break;
974
72.3k
    case LOCAL:
975
72.3k
        if (_PyST_IsFunctionLike(c->u->u_ste)) {
976
60.0k
            *optype = COMPILE_OP_FAST;
977
60.0k
        }
978
12.2k
        else {
979
12.2k
            PyObject *item;
980
12.2k
            RETURN_IF_ERROR(PyDict_GetItemRef(c->u->u_metadata.u_fasthidden, mangled,
981
12.2k
                                              &item));
982
12.2k
            if (item == Py_True) {
983
63
                *optype = COMPILE_OP_FAST;
984
63
            }
985
12.2k
            Py_XDECREF(item);
986
12.2k
        }
987
72.3k
        break;
988
72.3k
    case GLOBAL_IMPLICIT:
989
18.1k
        if (_PyST_IsFunctionLike(c->u->u_ste)) {
990
15.9k
            *optype = COMPILE_OP_GLOBAL;
991
15.9k
        }
992
18.1k
        break;
993
162
    case GLOBAL_EXPLICIT:
994
162
        *optype = COMPILE_OP_GLOBAL;
995
162
        break;
996
6.77k
    default:
997
        /* scope can be 0 */
998
6.77k
        break;
999
99.4k
    }
1000
99.4k
    if (*optype != COMPILE_OP_FAST) {
1001
39.4k
        *arg = _PyCompile_DictAddObj(dict, mangled);
1002
39.4k
        RETURN_IF_ERROR(*arg);
1003
39.4k
    }
1004
99.4k
    return SUCCESS;
1005
99.4k
}
1006
1007
int
1008
_PyCompile_TweakInlinedComprehensionScopes(compiler *c, location loc,
1009
                                            PySTEntryObject *entry,
1010
                                            _PyCompile_InlinedComprehensionState *state)
1011
225
{
1012
225
    int in_class_block = (c->u->u_ste->ste_type == ClassBlock) && !c->u->u_in_inlined_comp;
1013
225
    c->u->u_in_inlined_comp++;
1014
1015
225
    PyObject *k, *v;
1016
225
    Py_ssize_t pos = 0;
1017
970
    while (PyDict_Next(entry->ste_symbols, &pos, &k, &v)) {
1018
745
        long symbol = PyLong_AsLong(v);
1019
745
        assert(symbol >= 0 || PyErr_Occurred());
1020
745
        RETURN_IF_ERROR(symbol);
1021
745
        long scope = SYMBOL_TO_SCOPE(symbol);
1022
1023
745
        long outsymbol = _PyST_GetSymbol(c->u->u_ste, k);
1024
745
        RETURN_IF_ERROR(outsymbol);
1025
745
        long outsc = SYMBOL_TO_SCOPE(outsymbol);
1026
1027
        // If a name has different scope inside than outside the comprehension,
1028
        // we need to temporarily handle it with the right scope while
1029
        // compiling the comprehension. If it's free in the comprehension
1030
        // scope, no special handling; it should be handled the same as the
1031
        // enclosing scope. (If it's free in outer scope and cell in inner
1032
        // scope, we can't treat it as both cell and free in the same function,
1033
        // but treating it as free throughout is fine; it's *_DEREF
1034
        // either way.)
1035
745
        if ((scope != outsc && scope != FREE && !(scope == CELL && outsc == FREE))
1036
745
                || in_class_block) {
1037
239
            if (state->temp_symbols == NULL) {
1038
225
                state->temp_symbols = PyDict_New();
1039
225
                if (state->temp_symbols == NULL) {
1040
0
                    return ERROR;
1041
0
                }
1042
225
            }
1043
            // update the symbol to the in-comprehension version and save
1044
            // the outer version; we'll restore it after running the
1045
            // comprehension
1046
239
            if (PyDict_SetItem(c->u->u_ste->ste_symbols, k, v) < 0) {
1047
0
                return ERROR;
1048
0
            }
1049
239
            PyObject *outv = PyLong_FromLong(outsymbol);
1050
239
            if (outv == NULL) {
1051
0
                return ERROR;
1052
0
            }
1053
239
            int res = PyDict_SetItem(state->temp_symbols, k, outv);
1054
239
            Py_DECREF(outv);
1055
239
            RETURN_IF_ERROR(res);
1056
239
        }
1057
        // locals handling for names bound in comprehension (DEF_LOCAL |
1058
        // DEF_NONLOCAL occurs in assignment expression to nonlocal)
1059
745
        if ((symbol & DEF_LOCAL && !(symbol & DEF_NONLOCAL)) || in_class_block) {
1060
296
            if (!_PyST_IsFunctionLike(c->u->u_ste)) {
1061
                // non-function scope: override this name to use fast locals
1062
25
                PyObject *orig;
1063
25
                if (PyDict_GetItemRef(c->u->u_metadata.u_fasthidden, k, &orig) < 0) {
1064
0
                    return ERROR;
1065
0
                }
1066
25
                assert(orig == NULL || orig == Py_True || orig == Py_False);
1067
25
                if (orig != Py_True) {
1068
25
                    if (PyDict_SetItem(c->u->u_metadata.u_fasthidden, k, Py_True) < 0) {
1069
0
                        return ERROR;
1070
0
                    }
1071
25
                    if (state->fast_hidden == NULL) {
1072
19
                        state->fast_hidden = PySet_New(NULL);
1073
19
                        if (state->fast_hidden == NULL) {
1074
0
                            return ERROR;
1075
0
                        }
1076
19
                    }
1077
25
                    if (PySet_Add(state->fast_hidden, k) < 0) {
1078
0
                        return ERROR;
1079
0
                    }
1080
25
                }
1081
25
            }
1082
296
        }
1083
745
    }
1084
225
    return SUCCESS;
1085
225
}
1086
1087
int
1088
_PyCompile_RevertInlinedComprehensionScopes(compiler *c, location loc,
1089
                                             _PyCompile_InlinedComprehensionState *state)
1090
225
{
1091
225
    c->u->u_in_inlined_comp--;
1092
225
    if (state->temp_symbols) {
1093
225
        PyObject *k, *v;
1094
225
        Py_ssize_t pos = 0;
1095
464
        while (PyDict_Next(state->temp_symbols, &pos, &k, &v)) {
1096
239
            if (PyDict_SetItem(c->u->u_ste->ste_symbols, k, v)) {
1097
0
                return ERROR;
1098
0
            }
1099
239
        }
1100
225
        Py_CLEAR(state->temp_symbols);
1101
225
    }
1102
225
    if (state->fast_hidden) {
1103
44
        while (PySet_Size(state->fast_hidden) > 0) {
1104
25
            PyObject *k = PySet_Pop(state->fast_hidden);
1105
25
            if (k == NULL) {
1106
0
                return ERROR;
1107
0
            }
1108
            // we set to False instead of clearing, so we can track which names
1109
            // were temporarily fast-locals and should use CO_FAST_HIDDEN
1110
25
            if (PyDict_SetItem(c->u->u_metadata.u_fasthidden, k, Py_False)) {
1111
0
                Py_DECREF(k);
1112
0
                return ERROR;
1113
0
            }
1114
25
            Py_DECREF(k);
1115
25
        }
1116
19
        Py_CLEAR(state->fast_hidden);
1117
19
    }
1118
225
    return SUCCESS;
1119
225
}
1120
1121
void
1122
_PyCompile_EnterConditionalBlock(struct _PyCompiler *c)
1123
9.91k
{
1124
9.91k
    c->u->u_in_conditional_block++;
1125
9.91k
}
1126
1127
void
1128
_PyCompile_LeaveConditionalBlock(struct _PyCompiler *c)
1129
9.91k
{
1130
9.91k
    assert(c->u->u_in_conditional_block > 0);
1131
9.91k
    c->u->u_in_conditional_block--;
1132
9.91k
}
1133
1134
int
1135
_PyCompile_AddDeferredAnnotation(compiler *c, stmt_ty s,
1136
                                 PyObject **conditional_annotation_index)
1137
50
{
1138
50
    if (c->u->u_deferred_annotations == NULL) {
1139
8
        c->u->u_deferred_annotations = PyList_New(0);
1140
8
        if (c->u->u_deferred_annotations == NULL) {
1141
0
            return ERROR;
1142
0
        }
1143
8
    }
1144
50
    if (c->u->u_conditional_annotation_indices == NULL) {
1145
8
        c->u->u_conditional_annotation_indices = PyList_New(0);
1146
8
        if (c->u->u_conditional_annotation_indices == NULL) {
1147
0
            return ERROR;
1148
0
        }
1149
8
    }
1150
50
    PyObject *ptr = PyLong_FromVoidPtr((void *)s);
1151
50
    if (ptr == NULL) {
1152
0
        return ERROR;
1153
0
    }
1154
50
    if (PyList_Append(c->u->u_deferred_annotations, ptr) < 0) {
1155
0
        Py_DECREF(ptr);
1156
0
        return ERROR;
1157
0
    }
1158
50
    Py_DECREF(ptr);
1159
50
    PyObject *index;
1160
50
    if (c->u->u_scope_type == COMPILE_SCOPE_MODULE || c->u->u_in_conditional_block) {
1161
1
        index = PyLong_FromLong(c->u->u_next_conditional_annotation_index);
1162
1
        if (index == NULL) {
1163
0
            return ERROR;
1164
0
        }
1165
1
        *conditional_annotation_index = Py_NewRef(index);
1166
1
        c->u->u_next_conditional_annotation_index++;
1167
1
    }
1168
49
    else {
1169
49
        index = PyLong_FromLong(-1);
1170
49
        if (index == NULL) {
1171
0
            return ERROR;
1172
0
        }
1173
49
    }
1174
50
    int rc = PyList_Append(c->u->u_conditional_annotation_indices, index);
1175
50
    Py_DECREF(index);
1176
50
    RETURN_IF_ERROR(rc);
1177
50
    return SUCCESS;
1178
50
}
1179
1180
/* Raises a SyntaxError and returns ERROR.
1181
 * If something goes wrong, a different exception may be raised.
1182
 */
1183
int
1184
_PyCompile_Error(compiler *c, location loc, const char *format, ...)
1185
0
{
1186
0
    va_list vargs;
1187
0
    va_start(vargs, format);
1188
0
    PyObject *msg = PyUnicode_FromFormatV(format, vargs);
1189
0
    va_end(vargs);
1190
0
    if (msg == NULL) {
1191
0
        return ERROR;
1192
0
    }
1193
0
    _PyErr_RaiseSyntaxError(msg, c->c_filename, loc.lineno, loc.col_offset + 1,
1194
0
                            loc.end_lineno, loc.end_col_offset + 1);
1195
0
    Py_DECREF(msg);
1196
0
    return ERROR;
1197
0
}
1198
1199
/* Emits a SyntaxWarning and returns 0 on success.
1200
   If a SyntaxWarning raised as error, replaces it with a SyntaxError
1201
   and returns -1.
1202
*/
1203
int
1204
_PyCompile_Warn(compiler *c, location loc, const char *format, ...)
1205
0
{
1206
0
    va_list vargs;
1207
0
    va_start(vargs, format);
1208
0
    PyObject *msg = PyUnicode_FromFormatV(format, vargs);
1209
0
    va_end(vargs);
1210
0
    if (msg == NULL) {
1211
0
        return ERROR;
1212
0
    }
1213
0
    int ret = _PyErr_EmitSyntaxWarning(msg, c->c_filename, loc.lineno, loc.col_offset + 1,
1214
0
                                       loc.end_lineno, loc.end_col_offset + 1);
1215
0
    Py_DECREF(msg);
1216
0
    return ret;
1217
0
}
1218
1219
PyObject *
1220
_PyCompile_Mangle(compiler *c, PyObject *name)
1221
50
{
1222
50
    return _Py_Mangle(c->u->u_private, name);
1223
50
}
1224
1225
PyObject *
1226
_PyCompile_MaybeMangle(compiler *c, PyObject *name)
1227
124k
{
1228
124k
    return _Py_MaybeMangle(c->u->u_private, c->u->u_ste, name);
1229
124k
}
1230
1231
instr_sequence *
1232
_PyCompile_InstrSequence(compiler *c)
1233
447k
{
1234
447k
    return c->u->u_instr_sequence;
1235
447k
}
1236
1237
int
1238
_PyCompile_StartAnnotationSetup(struct _PyCompiler *c)
1239
1
{
1240
1
    instr_sequence *new_seq = (instr_sequence *)_PyInstructionSequence_New();
1241
1
    if (new_seq == NULL) {
1242
0
        return ERROR;
1243
0
    }
1244
1
    assert(c->u->u_stashed_instr_sequence == NULL);
1245
1
    c->u->u_stashed_instr_sequence = c->u->u_instr_sequence;
1246
1
    c->u->u_instr_sequence = new_seq;
1247
1
    return SUCCESS;
1248
1
}
1249
1250
int
1251
_PyCompile_EndAnnotationSetup(struct _PyCompiler *c)
1252
1
{
1253
1
    assert(c->u->u_stashed_instr_sequence != NULL);
1254
1
    instr_sequence *parent_seq = c->u->u_stashed_instr_sequence;
1255
1
    instr_sequence *anno_seq = c->u->u_instr_sequence;
1256
1
    c->u->u_stashed_instr_sequence = NULL;
1257
1
    c->u->u_instr_sequence = parent_seq;
1258
1
    if (_PyInstructionSequence_SetAnnotationsCode(parent_seq, anno_seq) == ERROR) {
1259
0
        Py_DECREF(anno_seq);
1260
0
        return ERROR;
1261
0
    }
1262
1
    return SUCCESS;
1263
1
}
1264
1265
1266
int
1267
_PyCompile_FutureFeatures(compiler *c)
1268
3.02k
{
1269
3.02k
    return c->c_future.ff_features;
1270
3.02k
}
1271
1272
struct symtable *
1273
_PyCompile_Symtable(compiler *c)
1274
12.5k
{
1275
12.5k
    return c->c_st;
1276
12.5k
}
1277
1278
PySTEntryObject *
1279
_PyCompile_SymtableEntry(compiler *c)
1280
143k
{
1281
143k
    return c->u->u_ste;
1282
143k
}
1283
1284
int
1285
_PyCompile_OptimizationLevel(compiler *c)
1286
131
{
1287
131
    return c->c_optimize;
1288
131
}
1289
1290
int
1291
_PyCompile_IsInteractiveTopLevel(compiler *c)
1292
4.27k
{
1293
4.27k
    assert(c->c_stack != NULL);
1294
4.27k
    assert(PyList_CheckExact(c->c_stack));
1295
4.27k
    bool is_nested_scope = PyList_GET_SIZE(c->c_stack) > 0;
1296
4.27k
    return c->c_interactive && !is_nested_scope;
1297
4.27k
}
1298
1299
int
1300
_PyCompile_ScopeType(compiler *c)
1301
145
{
1302
145
    return c->u->u_scope_type;
1303
145
}
1304
1305
int
1306
_PyCompile_IsInInlinedComp(compiler *c)
1307
2.58k
{
1308
2.58k
    return c->u->u_in_inlined_comp;
1309
2.58k
}
1310
1311
PyObject *
1312
_PyCompile_Qualname(compiler *c)
1313
1.11k
{
1314
1.11k
    assert(c->u->u_metadata.u_qualname);
1315
1.11k
    return c->u->u_metadata.u_qualname;
1316
1.11k
}
1317
1318
_PyCompile_CodeUnitMetadata *
1319
_PyCompile_Metadata(compiler *c)
1320
86.4k
{
1321
86.4k
    return &c->u->u_metadata;
1322
86.4k
}
1323
1324
// Merge *obj* with constant cache, without recursion.
1325
int
1326
_PyCompile_ConstCacheMergeOne(PyObject *const_cache, PyObject **obj)
1327
41.5k
{
1328
41.5k
    PyObject *key = const_cache_insert(const_cache, *obj, false);
1329
41.5k
    if (key == NULL) {
1330
0
        return ERROR;
1331
0
    }
1332
41.5k
    if (PyTuple_CheckExact(key)) {
1333
41.0k
        PyObject *item = PyTuple_GET_ITEM(key, 1);
1334
41.0k
        Py_SETREF(*obj, Py_NewRef(item));
1335
41.0k
        Py_DECREF(key);
1336
41.0k
    }
1337
556
    else {
1338
556
        Py_SETREF(*obj, key);
1339
556
    }
1340
41.5k
    return SUCCESS;
1341
41.5k
}
1342
1343
static PyObject *
1344
consts_dict_keys_inorder(PyObject *dict)
1345
6.55k
{
1346
6.55k
    PyObject *consts, *k, *v;
1347
6.55k
    Py_ssize_t i, pos = 0, size = PyDict_GET_SIZE(dict);
1348
1349
6.55k
    consts = PyList_New(size);   /* PyCode_Optimize() requires a list */
1350
6.55k
    if (consts == NULL)
1351
0
        return NULL;
1352
55.6k
    while (PyDict_Next(dict, &pos, &k, &v)) {
1353
49.1k
        assert(PyLong_CheckExact(v));
1354
49.1k
        i = PyLong_AsLong(v);
1355
        /* The keys of the dictionary can be tuples wrapping a constant.
1356
         * (see _PyCompile_DictAddObj and _PyCode_ConstantKey). In that case
1357
         * the object we want is always second. */
1358
49.1k
        if (PyTuple_CheckExact(k)) {
1359
3.73k
            k = PyTuple_GET_ITEM(k, 1);
1360
3.73k
        }
1361
49.1k
        assert(i < size);
1362
49.1k
        assert(i >= 0);
1363
49.1k
        PyList_SET_ITEM(consts, i, Py_NewRef(k));
1364
49.1k
    }
1365
6.55k
    return consts;
1366
6.55k
}
1367
1368
static int
1369
compute_code_flags(compiler *c)
1370
6.55k
{
1371
6.55k
    PySTEntryObject *ste = c->u->u_ste;
1372
6.55k
    int flags = 0;
1373
6.55k
    if (_PyST_IsFunctionLike(ste)) {
1374
5.07k
        flags |= CO_NEWLOCALS | CO_OPTIMIZED;
1375
5.07k
        if (ste->ste_nested)
1376
522
            flags |= CO_NESTED;
1377
5.07k
        if (ste->ste_generator && !ste->ste_coroutine)
1378
326
            flags |= CO_GENERATOR;
1379
5.07k
        if (ste->ste_generator && ste->ste_coroutine)
1380
1
            flags |= CO_ASYNC_GENERATOR;
1381
5.07k
        if (ste->ste_varargs)
1382
164
            flags |= CO_VARARGS;
1383
5.07k
        if (ste->ste_varkeywords)
1384
126
            flags |= CO_VARKEYWORDS;
1385
5.07k
        if (ste->ste_has_docstring)
1386
1.64k
            flags |= CO_HAS_DOCSTRING;
1387
5.07k
        if (ste->ste_method)
1388
2.95k
            flags |= CO_METHOD;
1389
5.07k
    }
1390
1391
6.55k
    if (ste->ste_coroutine && !ste->ste_generator) {
1392
15
        flags |= CO_COROUTINE;
1393
15
    }
1394
1395
    /* (Only) inherit compilerflags in PyCF_MASK */
1396
6.55k
    flags |= (c->c_flags.cf_flags & PyCF_MASK);
1397
1398
6.55k
    return flags;
1399
6.55k
}
1400
1401
static PyCodeObject *
1402
optimize_and_assemble_code_unit(struct compiler_unit *u, PyObject *const_cache,
1403
                                int code_flags, PyObject *filename)
1404
6.55k
{
1405
6.55k
    cfg_builder *g = NULL;
1406
6.55k
    instr_sequence optimized_instrs;
1407
6.55k
    memset(&optimized_instrs, 0, sizeof(instr_sequence));
1408
1409
6.55k
    PyCodeObject *co = NULL;
1410
6.55k
    PyObject *consts = consts_dict_keys_inorder(u->u_metadata.u_consts);
1411
6.55k
    if (consts == NULL) {
1412
0
        goto error;
1413
0
    }
1414
6.55k
    g = _PyCfg_FromInstructionSequence(u->u_instr_sequence);
1415
6.55k
    if (g == NULL) {
1416
0
        goto error;
1417
0
    }
1418
6.55k
    int nlocals = (int)PyDict_GET_SIZE(u->u_metadata.u_varnames);
1419
6.55k
    int nparams = (int)PyList_GET_SIZE(u->u_ste->ste_varnames);
1420
6.55k
    assert(u->u_metadata.u_firstlineno);
1421
1422
6.55k
    if (_PyCfg_OptimizeCodeUnit(g, consts, const_cache, nlocals,
1423
6.55k
                                nparams, u->u_metadata.u_firstlineno) < 0) {
1424
0
        goto error;
1425
0
    }
1426
1427
6.55k
    int stackdepth;
1428
6.55k
    int nlocalsplus;
1429
6.55k
    if (_PyCfg_OptimizedCfgToInstructionSequence(g, &u->u_metadata, code_flags,
1430
6.55k
                                                 &stackdepth, &nlocalsplus,
1431
6.55k
                                                 &optimized_instrs) < 0) {
1432
0
        goto error;
1433
0
    }
1434
1435
    /** Assembly **/
1436
6.55k
    co = _PyAssemble_MakeCodeObject(&u->u_metadata, const_cache, consts,
1437
6.55k
                                    stackdepth, &optimized_instrs, nlocalsplus,
1438
6.55k
                                    code_flags, filename);
1439
1440
6.55k
error:
1441
6.55k
    Py_XDECREF(consts);
1442
6.55k
    PyInstructionSequence_Fini(&optimized_instrs);
1443
6.55k
    _PyCfgBuilder_Free(g);
1444
6.55k
    return co;
1445
6.55k
}
1446
1447
1448
PyCodeObject *
1449
_PyCompile_OptimizeAndAssemble(compiler *c, int addNone)
1450
6.55k
{
1451
6.55k
    struct compiler_unit *u = c->u;
1452
6.55k
    PyObject *const_cache = c->c_const_cache;
1453
6.55k
    PyObject *filename = c->c_filename;
1454
1455
6.55k
    int code_flags = compute_code_flags(c);
1456
6.55k
    if (code_flags < 0) {
1457
0
        return NULL;
1458
0
    }
1459
1460
6.55k
    if (_PyCodegen_AddReturnAtEnd(c, addNone) < 0) {
1461
0
        return NULL;
1462
0
    }
1463
1464
6.55k
    return optimize_and_assemble_code_unit(u, const_cache, code_flags, filename);
1465
6.55k
}
1466
1467
PyCodeObject *
1468
_PyAST_Compile(mod_ty mod, PyObject *filename, PyCompilerFlags *pflags,
1469
               int optimize, PyArena *arena)
1470
362
{
1471
362
    assert(!PyErr_Occurred());
1472
362
    compiler *c = new_compiler(mod, filename, pflags, optimize, arena);
1473
362
    if (c == NULL) {
1474
0
        return NULL;
1475
0
    }
1476
1477
362
    PyCodeObject *co = compiler_mod(c, mod);
1478
362
    compiler_free(c);
1479
362
    assert(co || PyErr_Occurred());
1480
362
    return co;
1481
362
}
1482
1483
int
1484
_PyCompile_AstPreprocess(mod_ty mod, PyObject *filename, PyCompilerFlags *cf,
1485
                         int optimize, PyArena *arena, int no_const_folding)
1486
7.33k
{
1487
7.33k
    _PyFutureFeatures future;
1488
7.33k
    if (!_PyFuture_FromAST(mod, filename, &future)) {
1489
23
        return -1;
1490
23
    }
1491
7.31k
    int flags = future.ff_features | cf->cf_flags;
1492
7.31k
    if (optimize == -1) {
1493
7.31k
        optimize = _Py_GetConfig()->optimization_level;
1494
7.31k
    }
1495
7.31k
    if (!_PyAST_Preprocess(mod, arena, filename, optimize, flags, no_const_folding)) {
1496
0
        return -1;
1497
0
    }
1498
7.31k
    return 0;
1499
7.31k
}
1500
1501
// C implementation of inspect.cleandoc()
1502
//
1503
// Difference from inspect.cleandoc():
1504
// - Do not remove leading and trailing blank lines to keep lineno.
1505
PyObject *
1506
_PyCompile_CleanDoc(PyObject *doc)
1507
2.13k
{
1508
2.13k
    doc = PyObject_CallMethod(doc, "expandtabs", NULL);
1509
2.13k
    if (doc == NULL) {
1510
0
        return NULL;
1511
0
    }
1512
1513
2.13k
    Py_ssize_t doc_size;
1514
2.13k
    const char *doc_utf8 = PyUnicode_AsUTF8AndSize(doc, &doc_size);
1515
2.13k
    if (doc_utf8 == NULL) {
1516
0
        Py_DECREF(doc);
1517
0
        return NULL;
1518
0
    }
1519
2.13k
    const char *p = doc_utf8;
1520
2.13k
    const char *pend = p + doc_size;
1521
1522
    // First pass: find minimum indentation of any non-blank lines
1523
    // after first line.
1524
96.9k
    while (p < pend && *p++ != '\n') {
1525
94.8k
    }
1526
1527
2.13k
    Py_ssize_t margin = PY_SSIZE_T_MAX;
1528
14.5k
    while (p < pend) {
1529
12.4k
        const char *s = p;
1530
74.5k
        while (*p == ' ') p++;
1531
12.4k
        if (p < pend && *p != '\n') {
1532
8.36k
            margin = Py_MIN(margin, p - s);
1533
8.36k
        }
1534
418k
        while (p < pend && *p++ != '\n') {
1535
405k
        }
1536
12.4k
    }
1537
2.13k
    if (margin == PY_SSIZE_T_MAX) {
1538
736
        margin = 0;
1539
736
    }
1540
1541
    // Second pass: write cleandoc into buff.
1542
1543
    // copy first line without leading spaces.
1544
2.13k
    p = doc_utf8;
1545
2.26k
    while (*p == ' ') {
1546
131
        p++;
1547
131
    }
1548
2.13k
    if (p == doc_utf8 && margin == 0 ) {
1549
        // doc is already clean.
1550
724
        return doc;
1551
724
    }
1552
1553
1.40k
    char *buff = PyMem_Malloc(doc_size);
1554
1.40k
    if (buff == NULL){
1555
0
        Py_DECREF(doc);
1556
0
        PyErr_NoMemory();
1557
0
        return NULL;
1558
0
    }
1559
1560
1.40k
    char *w = buff;
1561
1562
63.4k
    while (p < pend) {
1563
63.4k
        int ch = *w++ = *p++;
1564
63.4k
        if (ch == '\n') {
1565
1.40k
            break;
1566
1.40k
        }
1567
63.4k
    }
1568
1569
    // copy subsequent lines without margin.
1570
12.4k
    while (p < pend) {
1571
59.7k
        for (Py_ssize_t i = 0; i < margin; i++, p++) {
1572
51.1k
            if (*p != ' ') {
1573
2.45k
                assert(*p == '\n' || *p == '\0');
1574
2.45k
                break;
1575
2.45k
            }
1576
51.1k
        }
1577
372k
        while (p < pend) {
1578
370k
            int ch = *w++ = *p++;
1579
370k
            if (ch == '\n') {
1580
9.71k
                break;
1581
9.71k
            }
1582
370k
        }
1583
11.0k
    }
1584
1585
1.40k
    Py_DECREF(doc);
1586
1.40k
    PyObject *res = PyUnicode_FromStringAndSize(buff, w - buff);
1587
1.40k
    PyMem_Free(buff);
1588
1.40k
    return res;
1589
1.40k
}
1590
1591
/* Access to compiler optimizations for unit tests.
1592
 *
1593
 * _PyCompile_CodeGen takes an AST, applies code-gen and
1594
 * returns the unoptimized CFG as an instruction list.
1595
 *
1596
 */
1597
PyObject *
1598
_PyCompile_CodeGen(PyObject *ast, PyObject *filename, PyCompilerFlags *pflags,
1599
                   int optimize, int compile_mode)
1600
0
{
1601
0
    PyObject *res = NULL;
1602
0
    PyObject *metadata = NULL;
1603
1604
0
    if (!PyAST_Check(ast)) {
1605
0
        PyErr_SetString(PyExc_TypeError, "expected an AST");
1606
0
        return NULL;
1607
0
    }
1608
1609
0
    PyArena *arena = _PyArena_New();
1610
0
    if (arena == NULL) {
1611
0
        return NULL;
1612
0
    }
1613
1614
0
    mod_ty mod = PyAST_obj2mod(ast, arena, compile_mode);
1615
0
    if (mod == NULL || !_PyAST_Validate(mod)) {
1616
0
        _PyArena_Free(arena);
1617
0
        return NULL;
1618
0
    }
1619
1620
0
    compiler *c = new_compiler(mod, filename, pflags, optimize, arena);
1621
0
    if (c == NULL) {
1622
0
        _PyArena_Free(arena);
1623
0
        return NULL;
1624
0
    }
1625
0
    c->c_save_nested_seqs = true;
1626
1627
0
    metadata = PyDict_New();
1628
0
    if (metadata == NULL) {
1629
0
        return NULL;
1630
0
    }
1631
1632
0
    if (compiler_codegen(c, mod) < 0) {
1633
0
        goto finally;
1634
0
    }
1635
1636
0
    _PyCompile_CodeUnitMetadata *umd = &c->u->u_metadata;
1637
1638
0
#define SET_METADATA_INT(key, value) do { \
1639
0
        PyObject *v = PyLong_FromLong((long)value); \
1640
0
        if (v == NULL) goto finally; \
1641
0
        int res = PyDict_SetItemString(metadata, key, v); \
1642
0
        Py_XDECREF(v); \
1643
0
        if (res < 0) goto finally; \
1644
0
    } while (0);
1645
1646
0
    SET_METADATA_INT("argcount", umd->u_argcount);
1647
0
    SET_METADATA_INT("posonlyargcount", umd->u_posonlyargcount);
1648
0
    SET_METADATA_INT("kwonlyargcount", umd->u_kwonlyargcount);
1649
0
#undef SET_METADATA_INT
1650
1651
0
    int addNone = mod->kind != Expression_kind;
1652
0
    if (_PyCodegen_AddReturnAtEnd(c, addNone) < 0) {
1653
0
        goto finally;
1654
0
    }
1655
1656
0
    if (_PyInstructionSequence_ApplyLabelMap(_PyCompile_InstrSequence(c)) < 0) {
1657
0
        return NULL;
1658
0
    }
1659
    /* Allocate a copy of the instruction sequence on the heap */
1660
0
    res = PyTuple_Pack(2, _PyCompile_InstrSequence(c), metadata);
1661
1662
0
finally:
1663
0
    Py_XDECREF(metadata);
1664
0
    _PyCompile_ExitScope(c);
1665
0
    compiler_free(c);
1666
0
    _PyArena_Free(arena);
1667
0
    return res;
1668
0
}
1669
1670
int _PyCfg_JumpLabelsToTargets(cfg_builder *g);
1671
1672
PyCodeObject *
1673
_PyCompile_Assemble(_PyCompile_CodeUnitMetadata *umd, PyObject *filename,
1674
                    PyObject *seq)
1675
0
{
1676
0
    if (!_PyInstructionSequence_Check(seq)) {
1677
0
        PyErr_SetString(PyExc_TypeError, "expected an instruction sequence");
1678
0
        return NULL;
1679
0
    }
1680
0
    cfg_builder *g = NULL;
1681
0
    PyCodeObject *co = NULL;
1682
0
    instr_sequence optimized_instrs;
1683
0
    memset(&optimized_instrs, 0, sizeof(instr_sequence));
1684
1685
0
    PyObject *const_cache = PyDict_New();
1686
0
    if (const_cache == NULL) {
1687
0
        return NULL;
1688
0
    }
1689
1690
0
    g = _PyCfg_FromInstructionSequence((instr_sequence*)seq);
1691
0
    if (g == NULL) {
1692
0
        goto error;
1693
0
    }
1694
1695
0
    if (_PyCfg_JumpLabelsToTargets(g) < 0) {
1696
0
        goto error;
1697
0
    }
1698
1699
0
    int code_flags = 0;
1700
0
    int stackdepth, nlocalsplus;
1701
0
    if (_PyCfg_OptimizedCfgToInstructionSequence(g, umd, code_flags,
1702
0
                                                 &stackdepth, &nlocalsplus,
1703
0
                                                 &optimized_instrs) < 0) {
1704
0
        goto error;
1705
0
    }
1706
1707
0
    PyObject *consts = consts_dict_keys_inorder(umd->u_consts);
1708
0
    if (consts == NULL) {
1709
0
        goto error;
1710
0
    }
1711
0
    co = _PyAssemble_MakeCodeObject(umd, const_cache,
1712
0
                                    consts, stackdepth, &optimized_instrs,
1713
0
                                    nlocalsplus, code_flags, filename);
1714
0
    Py_DECREF(consts);
1715
1716
0
error:
1717
0
    Py_DECREF(const_cache);
1718
0
    _PyCfgBuilder_Free(g);
1719
0
    PyInstructionSequence_Fini(&optimized_instrs);
1720
0
    return co;
1721
0
}
1722
1723
/* Retained for API compatibility.
1724
 * Optimization is now done in _PyCfg_OptimizeCodeUnit */
1725
1726
PyObject *
1727
PyCode_Optimize(PyObject *code, PyObject* Py_UNUSED(consts),
1728
                PyObject *Py_UNUSED(names), PyObject *Py_UNUSED(lnotab_obj))
1729
0
{
1730
0
    return Py_NewRef(code);
1731
0
}