Coverage Report

Created: 2025-09-04 06:25

/src/cpython/Python/codegen.c
Line
Count
Source (jump to first uncovered line)
1
/*
2
 * This file implements the compiler's code generation stage, which
3
 * produces a sequence of pseudo-instructions from an AST.
4
 *
5
 * The primary entry point is _PyCodegen_Module() for modules, and
6
 * _PyCodegen_Expression() for expressions.
7
 *
8
 * CAUTION: The VISIT_* macros abort the current function when they
9
 * encounter a problem. So don't invoke them when there is memory
10
 * which needs to be released. Code blocks are OK, as the compiler
11
 * structure takes care of releasing those.  Use the arena to manage
12
 * objects.
13
 */
14
15
#include "Python.h"
16
#include "opcode.h"
17
#include "pycore_ast.h"           // _PyAST_GetDocString()
18
#define NEED_OPCODE_TABLES
19
#include "pycore_opcode_utils.h"
20
#undef NEED_OPCODE_TABLES
21
#include "pycore_c_array.h"       // _Py_c_array_t
22
#include "pycore_code.h"          // COMPARISON_LESS_THAN
23
#include "pycore_compile.h"
24
#include "pycore_instruction_sequence.h" // _PyInstructionSequence_NewLabel()
25
#include "pycore_intrinsics.h"
26
#include "pycore_long.h"          // _PyLong_GetZero()
27
#include "pycore_object.h"        // _Py_ANNOTATE_FORMAT_VALUE_WITH_FAKE_GLOBALS
28
#include "pycore_pystate.h"       // _Py_GetConfig()
29
#include "pycore_symtable.h"      // PySTEntryObject
30
#include "pycore_unicodeobject.h" // _PyUnicode_EqualToASCIIString
31
#include "pycore_ceval.h"         // SPECIAL___ENTER__
32
#include "pycore_template.h"      // _PyTemplate_Type
33
34
#define NEED_OPCODE_METADATA
35
#include "pycore_opcode_metadata.h" // _PyOpcode_opcode_metadata, _PyOpcode_num_popped/pushed
36
#undef NEED_OPCODE_METADATA
37
38
#include <stdbool.h>
39
40
1.31k
#define COMP_GENEXP   0
41
561
#define COMP_LISTCOMP 1
42
3
#define COMP_SETCOMP  2
43
105
#define COMP_DICTCOMP 3
44
45
#undef SUCCESS
46
#undef ERROR
47
1.70M
#define SUCCESS 0
48
1
#define ERROR -1
49
50
#define RETURN_IF_ERROR(X)  \
51
1.14M
    do {                    \
52
1.14M
        if ((X) == -1) {    \
53
0
            return ERROR;   \
54
0
        }                   \
55
1.14M
    } while (0)
56
57
#define RETURN_IF_ERROR_IN_SCOPE(C, CALL)   \
58
25.8k
    do {                                    \
59
25.8k
        if ((CALL) < 0) {                   \
60
0
            _PyCompile_ExitScope((C));      \
61
0
            return ERROR;                   \
62
0
        }                                   \
63
25.8k
    } while (0)
64
65
struct _PyCompiler;
66
typedef struct _PyCompiler compiler;
67
68
40.8k
#define INSTR_SEQUENCE(C) _PyCompile_InstrSequence(C)
69
3.04k
#define FUTURE_FEATURES(C) _PyCompile_FutureFeatures(C)
70
7.87k
#define SYMTABLE(C) _PyCompile_Symtable(C)
71
141k
#define SYMTABLE_ENTRY(C) _PyCompile_SymtableEntry(C)
72
125
#define OPTIMIZATION_LEVEL(C) _PyCompile_OptimizationLevel(C)
73
4.15k
#define IS_INTERACTIVE_TOP_LEVEL(C) _PyCompile_IsInteractiveTopLevel(C)
74
144
#define SCOPE_TYPE(C) _PyCompile_ScopeType(C)
75
#define QUALNAME(C) _PyCompile_Qualname(C)
76
60.2k
#define METADATA(C) _PyCompile_Metadata(C)
77
78
typedef _PyInstruction instruction;
79
typedef _PyInstructionSequence instr_sequence;
80
typedef _Py_SourceLocation location;
81
typedef _PyJumpTargetLabel jump_target_label;
82
83
typedef _PyCompile_FBlockInfo fblockinfo;
84
85
#define LOCATION(LNO, END_LNO, COL, END_COL) \
86
7.74k
    ((const _Py_SourceLocation){(LNO), (END_LNO), (COL), (END_COL)})
87
88
287k
#define LOC(x) SRC_LOCATION_FROM_AST(x)
89
90
#define NEW_JUMP_TARGET_LABEL(C, NAME) \
91
40.8k
    jump_target_label NAME = _PyInstructionSequence_NewLabel(INSTR_SEQUENCE(C)); \
92
40.8k
    if (!IS_JUMP_TARGET_LABEL(NAME)) { \
93
0
        return ERROR; \
94
0
    }
95
96
#define USE_LABEL(C, LBL) \
97
40.8k
    RETURN_IF_ERROR(_PyInstructionSequence_UseLabel(INSTR_SEQUENCE(C), (LBL).id))
98
99
static const int compare_masks[] = {
100
    [Py_LT] = COMPARISON_LESS_THAN,
101
    [Py_LE] = COMPARISON_LESS_THAN | COMPARISON_EQUALS,
102
    [Py_EQ] = COMPARISON_EQUALS,
103
    [Py_NE] = COMPARISON_NOT_EQUALS,
104
    [Py_GT] = COMPARISON_GREATER_THAN,
105
    [Py_GE] = COMPARISON_GREATER_THAN | COMPARISON_EQUALS,
106
};
107
108
109
int
110
7.40k
_Py_CArray_Init(_Py_c_array_t* array, int item_size, int initial_num_entries) {
111
7.40k
    memset(array, 0, sizeof(_Py_c_array_t));
112
7.40k
    array->item_size = item_size;
113
7.40k
    array->initial_num_entries = initial_num_entries;
114
7.40k
    return 0;
115
7.40k
}
116
117
void
118
_Py_CArray_Fini(_Py_c_array_t* array)
119
7.40k
{
120
7.40k
    if (array->array) {
121
782
        PyMem_Free(array->array);
122
782
        array->allocated_entries = 0;
123
782
    }
124
7.40k
}
125
126
int
127
_Py_CArray_EnsureCapacity(_Py_c_array_t *c_array, int idx)
128
1.17M
{
129
1.17M
    void *arr = c_array->array;
130
1.17M
    int alloc = c_array->allocated_entries;
131
1.17M
    if (arr == NULL) {
132
70.7k
        int new_alloc = c_array->initial_num_entries;
133
70.7k
        if (idx >= new_alloc) {
134
0
            new_alloc = idx + c_array->initial_num_entries;
135
0
        }
136
70.7k
        arr = PyMem_Calloc(new_alloc, c_array->item_size);
137
70.7k
        if (arr == NULL) {
138
0
            PyErr_NoMemory();
139
0
            return ERROR;
140
0
        }
141
70.7k
        alloc = new_alloc;
142
70.7k
    }
143
1.10M
    else if (idx >= alloc) {
144
10.7k
        size_t oldsize = alloc * c_array->item_size;
145
10.7k
        int new_alloc = alloc << 1;
146
10.7k
        if (idx >= new_alloc) {
147
0
            new_alloc = idx + c_array->initial_num_entries;
148
0
        }
149
10.7k
        size_t newsize = new_alloc * c_array->item_size;
150
151
10.7k
        if (oldsize > (SIZE_MAX >> 1)) {
152
0
            PyErr_NoMemory();
153
0
            return ERROR;
154
0
        }
155
156
10.7k
        assert(newsize > 0);
157
10.7k
        void *tmp = PyMem_Realloc(arr, newsize);
158
10.7k
        if (tmp == NULL) {
159
0
            PyErr_NoMemory();
160
0
            return ERROR;
161
0
        }
162
10.7k
        alloc = new_alloc;
163
10.7k
        arr = tmp;
164
10.7k
        memset((char *)arr + oldsize, 0, newsize - oldsize);
165
10.7k
    }
166
167
1.17M
    c_array->array = arr;
168
1.17M
    c_array->allocated_entries = alloc;
169
1.17M
    return SUCCESS;
170
1.17M
}
171
172
173
typedef struct {
174
    // A list of strings corresponding to name captures. It is used to track:
175
    // - Repeated name assignments in the same pattern.
176
    // - Different name assignments in alternatives.
177
    // - The order of name assignments in alternatives.
178
    PyObject *stores;
179
    // If 0, any name captures against our subject will raise.
180
    int allow_irrefutable;
181
    // An array of blocks to jump to on failure. Jumping to fail_pop[i] will pop
182
    // i items off of the stack. The end result looks like this (with each block
183
    // falling through to the next):
184
    // fail_pop[4]: POP_TOP
185
    // fail_pop[3]: POP_TOP
186
    // fail_pop[2]: POP_TOP
187
    // fail_pop[1]: POP_TOP
188
    // fail_pop[0]: NOP
189
    jump_target_label *fail_pop;
190
    // The current length of fail_pop.
191
    Py_ssize_t fail_pop_size;
192
    // The number of items on top of the stack that need to *stay* on top of the
193
    // stack. Variable captures go beneath these. All of them will be popped on
194
    // failure.
195
    Py_ssize_t on_top;
196
} pattern_context;
197
198
static int codegen_nameop(compiler *, location, identifier, expr_context_ty);
199
200
static int codegen_visit_stmt(compiler *, stmt_ty);
201
static int codegen_visit_keyword(compiler *, keyword_ty);
202
static int codegen_visit_expr(compiler *, expr_ty);
203
static int codegen_augassign(compiler *, stmt_ty);
204
static int codegen_annassign(compiler *, stmt_ty);
205
static int codegen_subscript(compiler *, expr_ty);
206
static int codegen_slice_two_parts(compiler *, expr_ty);
207
static int codegen_slice(compiler *, expr_ty);
208
209
static int codegen_body(compiler *, location, asdl_stmt_seq *, bool);
210
static int codegen_with(compiler *, stmt_ty);
211
static int codegen_async_with(compiler *, stmt_ty);
212
static int codegen_with_inner(compiler *, stmt_ty, int);
213
static int codegen_async_with_inner(compiler *, stmt_ty, int);
214
static int codegen_async_for(compiler *, stmt_ty);
215
static int codegen_call_simple_kw_helper(compiler *c,
216
                                         location loc,
217
                                         asdl_keyword_seq *keywords,
218
                                         Py_ssize_t nkwelts);
219
static int codegen_call_helper_impl(compiler *c, location loc,
220
                                    int n, /* Args already pushed */
221
                                    asdl_expr_seq *args,
222
                                    PyObject *injected_arg,
223
                                    asdl_keyword_seq *keywords);
224
static int codegen_call_helper(compiler *c, location loc,
225
                               int n, asdl_expr_seq *args,
226
                               asdl_keyword_seq *keywords);
227
static int codegen_try_except(compiler *, stmt_ty);
228
static int codegen_try_star_except(compiler *, stmt_ty);
229
230
static int codegen_sync_comprehension_generator(
231
                                      compiler *c, location loc,
232
                                      asdl_comprehension_seq *generators, int gen_index,
233
                                      int depth,
234
                                      expr_ty elt, expr_ty val, int type,
235
                                      int iter_on_stack);
236
237
static int codegen_async_comprehension_generator(
238
                                      compiler *c, location loc,
239
                                      asdl_comprehension_seq *generators, int gen_index,
240
                                      int depth,
241
                                      expr_ty elt, expr_ty val, int type,
242
                                      int iter_on_stack);
243
244
static int codegen_pattern(compiler *, pattern_ty, pattern_context *);
245
static int codegen_match(compiler *, stmt_ty);
246
static int codegen_pattern_subpattern(compiler *,
247
                                      pattern_ty, pattern_context *);
248
static int codegen_make_closure(compiler *c, location loc,
249
                                PyCodeObject *co, Py_ssize_t flags);
250
251
252
/* Add an opcode with an integer argument */
253
static int
254
codegen_addop_i(instr_sequence *seq, int opcode, Py_ssize_t oparg, location loc)
255
271k
{
256
    /* oparg value is unsigned, but a signed C int is usually used to store
257
       it in the C code (like Python/ceval.c).
258
259
       Limit to 32-bit signed C int (rather than INT_MAX) for portability.
260
261
       The argument of a concrete bytecode instruction is limited to 8-bit.
262
       EXTENDED_ARG is used for 16, 24, and 32-bit arguments. */
263
264
271k
    int oparg_ = Py_SAFE_DOWNCAST(oparg, Py_ssize_t, int);
265
271k
    assert(!IS_ASSEMBLER_OPCODE(opcode));
266
271k
    return _PyInstructionSequence_Addop(seq, opcode, oparg_, loc);
267
271k
}
268
269
#define ADDOP_I(C, LOC, OP, O) \
270
271k
    RETURN_IF_ERROR(codegen_addop_i(INSTR_SEQUENCE(C), (OP), (O), (LOC)))
271
272
#define ADDOP_I_IN_SCOPE(C, LOC, OP, O) \
273
0
    RETURN_IF_ERROR_IN_SCOPE(C, codegen_addop_i(INSTR_SEQUENCE(C), (OP), (O), (LOC)))
274
275
static int
276
codegen_addop_noarg(instr_sequence *seq, int opcode, location loc)
277
69.8k
{
278
69.8k
    assert(!OPCODE_HAS_ARG(opcode));
279
69.8k
    assert(!IS_ASSEMBLER_OPCODE(opcode));
280
69.8k
    return _PyInstructionSequence_Addop(seq, opcode, 0, loc);
281
69.8k
}
282
283
#define ADDOP(C, LOC, OP) \
284
68.5k
    RETURN_IF_ERROR(codegen_addop_noarg(INSTR_SEQUENCE(C), (OP), (LOC)))
285
286
#define ADDOP_IN_SCOPE(C, LOC, OP) \
287
1.31k
    RETURN_IF_ERROR_IN_SCOPE((C), codegen_addop_noarg(INSTR_SEQUENCE(C), (OP), (LOC)))
288
289
static int
290
codegen_addop_load_const(compiler *c, location loc, PyObject *o)
291
71.2k
{
292
71.2k
    Py_ssize_t arg = _PyCompile_AddConst(c, o);
293
71.2k
    if (arg < 0) {
294
0
        return ERROR;
295
0
    }
296
71.2k
    ADDOP_I(c, loc, LOAD_CONST, arg);
297
71.2k
    return SUCCESS;
298
71.2k
}
299
300
#define ADDOP_LOAD_CONST(C, LOC, O) \
301
67.7k
    RETURN_IF_ERROR(codegen_addop_load_const((C), (LOC), (O)))
302
303
#define ADDOP_LOAD_CONST_IN_SCOPE(C, LOC, O) \
304
0
    RETURN_IF_ERROR_IN_SCOPE((C), codegen_addop_load_const((C), (LOC), (O)))
305
306
/* Same as ADDOP_LOAD_CONST, but steals a reference. */
307
#define ADDOP_LOAD_CONST_NEW(C, LOC, O)                                 \
308
3.44k
    do {                                                                \
309
3.44k
        PyObject *__new_const = (O);                                    \
310
3.44k
        if (__new_const == NULL) {                                      \
311
0
            return ERROR;                                               \
312
0
        }                                                               \
313
3.44k
        if (codegen_addop_load_const((C), (LOC), __new_const) < 0) {    \
314
0
            Py_DECREF(__new_const);                                     \
315
0
            return ERROR;                                               \
316
0
        }                                                               \
317
3.44k
        Py_DECREF(__new_const);                                         \
318
3.44k
    } while (0)
319
320
static int
321
codegen_addop_o(compiler *c, location loc,
322
                int opcode, PyObject *dict, PyObject *o)
323
59.8k
{
324
59.8k
    Py_ssize_t arg = _PyCompile_DictAddObj(dict, o);
325
59.8k
    RETURN_IF_ERROR(arg);
326
59.8k
    ADDOP_I(c, loc, opcode, arg);
327
59.8k
    return SUCCESS;
328
59.8k
}
329
330
#define ADDOP_N(C, LOC, OP, O, TYPE)                                    \
331
59.2k
    do {                                                                \
332
59.2k
        assert(!OPCODE_HAS_CONST(OP)); /* use ADDOP_LOAD_CONST_NEW */   \
333
59.2k
        int ret = codegen_addop_o((C), (LOC), (OP),                     \
334
59.2k
                                  METADATA(C)->u_ ## TYPE, (O));        \
335
59.2k
        Py_DECREF((O));                                                 \
336
59.2k
        RETURN_IF_ERROR(ret);                                           \
337
59.2k
    } while (0)
338
339
#define ADDOP_N_IN_SCOPE(C, LOC, OP, O, TYPE)                           \
340
652
    do {                                                                \
341
652
        assert(!OPCODE_HAS_CONST(OP)); /* use ADDOP_LOAD_CONST_NEW */   \
342
652
        int ret = codegen_addop_o((C), (LOC), (OP),                     \
343
652
                                  METADATA(C)->u_ ## TYPE, (O));        \
344
652
        Py_DECREF((O));                                                 \
345
652
        RETURN_IF_ERROR_IN_SCOPE((C), ret);                             \
346
652
    } while (0)
347
348
24.2k
#define LOAD_METHOD -1
349
24.2k
#define LOAD_SUPER_METHOD -2
350
24.2k
#define LOAD_ZERO_SUPER_ATTR -3
351
24.3k
#define LOAD_ZERO_SUPER_METHOD -4
352
353
static int
354
codegen_addop_name(compiler *c, location loc,
355
                   int opcode, PyObject *dict, PyObject *o)
356
24.2k
{
357
24.2k
    PyObject *mangled = _PyCompile_MaybeMangle(c, o);
358
24.2k
    if (!mangled) {
359
0
        return ERROR;
360
0
    }
361
24.2k
    Py_ssize_t arg = _PyCompile_DictAddObj(dict, mangled);
362
24.2k
    Py_DECREF(mangled);
363
24.2k
    if (arg < 0) {
364
0
        return ERROR;
365
0
    }
366
24.2k
    if (opcode == LOAD_ATTR) {
367
12.1k
        arg <<= 1;
368
12.1k
    }
369
24.2k
    if (opcode == LOAD_METHOD) {
370
7.69k
        opcode = LOAD_ATTR;
371
7.69k
        arg <<= 1;
372
7.69k
        arg |= 1;
373
7.69k
    }
374
24.2k
    if (opcode == LOAD_SUPER_ATTR) {
375
16
        arg <<= 2;
376
16
        arg |= 2;
377
16
    }
378
24.2k
    if (opcode == LOAD_SUPER_METHOD) {
379
35
        opcode = LOAD_SUPER_ATTR;
380
35
        arg <<= 2;
381
35
        arg |= 3;
382
35
    }
383
24.2k
    if (opcode == LOAD_ZERO_SUPER_ATTR) {
384
46
        opcode = LOAD_SUPER_ATTR;
385
46
        arg <<= 2;
386
46
    }
387
24.2k
    if (opcode == LOAD_ZERO_SUPER_METHOD) {
388
113
        opcode = LOAD_SUPER_ATTR;
389
113
        arg <<= 2;
390
113
        arg |= 1;
391
113
    }
392
24.2k
    ADDOP_I(c, loc, opcode, arg);
393
24.2k
    return SUCCESS;
394
24.2k
}
395
396
#define ADDOP_NAME(C, LOC, OP, O, TYPE) \
397
24.2k
    RETURN_IF_ERROR(codegen_addop_name((C), (LOC), (OP), METADATA(C)->u_ ## TYPE, (O)))
398
399
static int
400
codegen_addop_j(instr_sequence *seq, location loc,
401
                int opcode, jump_target_label target)
402
22.3k
{
403
22.3k
    assert(IS_JUMP_TARGET_LABEL(target));
404
22.3k
    assert(HAS_TARGET(opcode));
405
22.3k
    assert(!IS_ASSEMBLER_OPCODE(opcode));
406
22.3k
    return _PyInstructionSequence_Addop(seq, opcode, target.id, loc);
407
22.3k
}
408
409
#define ADDOP_JUMP(C, LOC, OP, O) \
410
22.3k
    RETURN_IF_ERROR(codegen_addop_j(INSTR_SEQUENCE(C), (LOC), (OP), (O)))
411
412
#define ADDOP_COMPARE(C, LOC, CMP) \
413
6.22k
    RETURN_IF_ERROR(codegen_addcompare((C), (LOC), (cmpop_ty)(CMP)))
414
415
#define ADDOP_BINARY(C, LOC, BINOP) \
416
3.52k
    RETURN_IF_ERROR(addop_binary((C), (LOC), (BINOP), false))
417
418
#define ADDOP_INPLACE(C, LOC, BINOP) \
419
600
    RETURN_IF_ERROR(addop_binary((C), (LOC), (BINOP), true))
420
421
#define ADD_YIELD_FROM(C, LOC, await) \
422
67
    RETURN_IF_ERROR(codegen_add_yield_from((C), (LOC), (await)))
423
424
#define POP_EXCEPT_AND_RERAISE(C, LOC) \
425
928
    RETURN_IF_ERROR(codegen_pop_except_and_reraise((C), (LOC)))
426
427
#define ADDOP_YIELD(C, LOC) \
428
414
    RETURN_IF_ERROR(codegen_addop_yield((C), (LOC)))
429
430
/* VISIT and VISIT_SEQ takes an ASDL type as their second argument.  They use
431
   the ASDL name to synthesize the name of the C type and the visit function.
432
*/
433
434
#define VISIT(C, TYPE, V) \
435
181k
    RETURN_IF_ERROR(codegen_visit_ ## TYPE((C), (V)))
436
437
#define VISIT_IN_SCOPE(C, TYPE, V) \
438
13.8k
    RETURN_IF_ERROR_IN_SCOPE((C), codegen_visit_ ## TYPE((C), (V)))
439
440
#define VISIT_SEQ(C, TYPE, SEQ)                                             \
441
24.6k
    do {                                                                    \
442
24.6k
        asdl_ ## TYPE ## _seq *seq = (SEQ); /* avoid variable capture */    \
443
59.2k
        for (int _i = 0; _i < asdl_seq_LEN(seq); _i++) {                    \
444
34.5k
            TYPE ## _ty elt = (TYPE ## _ty)asdl_seq_GET(seq, _i);           \
445
34.5k
            RETURN_IF_ERROR(codegen_visit_ ## TYPE((C), elt));              \
446
34.5k
        }                                                                   \
447
24.6k
    } while (0)
448
449
#define VISIT_SEQ_IN_SCOPE(C, TYPE, SEQ)                                    \
450
    do {                                                                    \
451
        asdl_ ## TYPE ## _seq *seq = (SEQ); /* avoid variable capture */    \
452
        for (int _i = 0; _i < asdl_seq_LEN(seq); _i++) {                    \
453
            TYPE ## _ty elt = (TYPE ## _ty)asdl_seq_GET(seq, _i);           \
454
            if (codegen_visit_ ## TYPE((C), elt) < 0) {                     \
455
                _PyCompile_ExitScope(C);                                    \
456
                return ERROR;                                               \
457
            }                                                               \
458
        }                                                                   \
459
    } while (0)
460
461
static int
462
codegen_call_exit_with_nones(compiler *c, location loc)
463
117
{
464
117
    ADDOP_LOAD_CONST(c, loc, Py_None);
465
117
    ADDOP_LOAD_CONST(c, loc, Py_None);
466
117
    ADDOP_LOAD_CONST(c, loc, Py_None);
467
117
    ADDOP_I(c, loc, CALL, 3);
468
117
    return SUCCESS;
469
117
}
470
471
static int
472
codegen_add_yield_from(compiler *c, location loc, int await)
473
67
{
474
67
    NEW_JUMP_TARGET_LABEL(c, send);
475
67
    NEW_JUMP_TARGET_LABEL(c, fail);
476
67
    NEW_JUMP_TARGET_LABEL(c, exit);
477
478
67
    USE_LABEL(c, send);
479
67
    ADDOP_JUMP(c, loc, SEND, exit);
480
    // Set up a virtual try/except to handle when StopIteration is raised during
481
    // a close or throw call. The only way YIELD_VALUE raises if they do!
482
67
    ADDOP_JUMP(c, loc, SETUP_FINALLY, fail);
483
67
    ADDOP_I(c, loc, YIELD_VALUE, 1);
484
67
    ADDOP(c, NO_LOCATION, POP_BLOCK);
485
67
    ADDOP_I(c, loc, RESUME, await ? RESUME_AFTER_AWAIT : RESUME_AFTER_YIELD_FROM);
486
67
    ADDOP_JUMP(c, loc, JUMP_NO_INTERRUPT, send);
487
488
67
    USE_LABEL(c, fail);
489
67
    ADDOP(c, loc, CLEANUP_THROW);
490
491
67
    USE_LABEL(c, exit);
492
67
    ADDOP(c, loc, END_SEND);
493
67
    return SUCCESS;
494
67
}
495
496
static int
497
codegen_pop_except_and_reraise(compiler *c, location loc)
498
928
{
499
    /* Stack contents
500
     * [exc_info, lasti, exc]            COPY        3
501
     * [exc_info, lasti, exc, exc_info]  POP_EXCEPT
502
     * [exc_info, lasti, exc]            RERAISE      1
503
     * (exception_unwind clears the stack)
504
     */
505
506
928
    ADDOP_I(c, loc, COPY, 3);
507
928
    ADDOP(c, loc, POP_EXCEPT);
508
928
    ADDOP_I(c, loc, RERAISE, 1);
509
928
    return SUCCESS;
510
928
}
511
512
/* Unwind a frame block.  If preserve_tos is true, the TOS before
513
 * popping the blocks will be restored afterwards, unless another
514
 * return, break or continue is found. In which case, the TOS will
515
 * be popped.
516
 */
517
static int
518
codegen_unwind_fblock(compiler *c, location *ploc,
519
                      fblockinfo *info, int preserve_tos)
520
1.21k
{
521
1.21k
    switch (info->fb_type) {
522
227
        case COMPILE_FBLOCK_WHILE_LOOP:
523
438
        case COMPILE_FBLOCK_EXCEPTION_HANDLER:
524
438
        case COMPILE_FBLOCK_EXCEPTION_GROUP_HANDLER:
525
438
        case COMPILE_FBLOCK_ASYNC_COMPREHENSION_GENERATOR:
526
495
        case COMPILE_FBLOCK_STOP_ITERATION:
527
495
            return SUCCESS;
528
529
245
        case COMPILE_FBLOCK_FOR_LOOP:
530
            /* Pop the iterator */
531
245
            if (preserve_tos) {
532
84
                ADDOP_I(c, *ploc, SWAP, 3);
533
84
            }
534
245
            ADDOP(c, *ploc, POP_TOP);
535
245
            ADDOP(c, *ploc, POP_TOP);
536
245
            return SUCCESS;
537
538
0
        case COMPILE_FBLOCK_ASYNC_FOR_LOOP:
539
            /* Pop the iterator */
540
0
            if (preserve_tos) {
541
0
                ADDOP_I(c, *ploc, SWAP, 2);
542
0
            }
543
0
            ADDOP(c, *ploc, POP_TOP);
544
0
            return SUCCESS;
545
546
234
        case COMPILE_FBLOCK_TRY_EXCEPT:
547
234
            ADDOP(c, *ploc, POP_BLOCK);
548
234
            return SUCCESS;
549
550
11
        case COMPILE_FBLOCK_FINALLY_TRY:
551
            /* This POP_BLOCK gets the line number of the unwinding statement */
552
11
            ADDOP(c, *ploc, POP_BLOCK);
553
11
            if (preserve_tos) {
554
11
                RETURN_IF_ERROR(
555
11
                    _PyCompile_PushFBlock(c, *ploc, COMPILE_FBLOCK_POP_VALUE,
556
11
                                          NO_LABEL, NO_LABEL, NULL));
557
11
            }
558
            /* Emit the finally block */
559
11
            VISIT_SEQ(c, stmt, info->fb_datum);
560
11
            if (preserve_tos) {
561
11
                _PyCompile_PopFBlock(c, COMPILE_FBLOCK_POP_VALUE, NO_LABEL);
562
11
            }
563
            /* The finally block should appear to execute after the
564
             * statement causing the unwinding, so make the unwinding
565
             * instruction artificial */
566
11
            *ploc = NO_LOCATION;
567
11
            return SUCCESS;
568
569
0
        case COMPILE_FBLOCK_FINALLY_END:
570
0
            if (preserve_tos) {
571
0
                ADDOP_I(c, *ploc, SWAP, 2);
572
0
            }
573
0
            ADDOP(c, *ploc, POP_TOP); /* exc_value */
574
0
            if (preserve_tos) {
575
0
                ADDOP_I(c, *ploc, SWAP, 2);
576
0
            }
577
0
            ADDOP(c, *ploc, POP_BLOCK);
578
0
            ADDOP(c, *ploc, POP_EXCEPT);
579
0
            return SUCCESS;
580
581
19
        case COMPILE_FBLOCK_WITH:
582
21
        case COMPILE_FBLOCK_ASYNC_WITH:
583
21
            *ploc = info->fb_loc;
584
21
            ADDOP(c, *ploc, POP_BLOCK);
585
21
            if (preserve_tos) {
586
16
                ADDOP_I(c, *ploc, SWAP, 3);
587
16
                ADDOP_I(c, *ploc, SWAP, 2);
588
16
            }
589
21
            RETURN_IF_ERROR(codegen_call_exit_with_nones(c, *ploc));
590
21
            if (info->fb_type == COMPILE_FBLOCK_ASYNC_WITH) {
591
2
                ADDOP_I(c, *ploc, GET_AWAITABLE, 2);
592
2
                ADDOP_LOAD_CONST(c, *ploc, Py_None);
593
2
                ADD_YIELD_FROM(c, *ploc, 1);
594
2
            }
595
21
            ADDOP(c, *ploc, POP_TOP);
596
            /* The exit block should appear to execute after the
597
             * statement causing the unwinding, so make the unwinding
598
             * instruction artificial */
599
21
            *ploc = NO_LOCATION;
600
21
            return SUCCESS;
601
602
211
        case COMPILE_FBLOCK_HANDLER_CLEANUP: {
603
211
            if (info->fb_datum) {
604
28
                ADDOP(c, *ploc, POP_BLOCK);
605
28
            }
606
211
            if (preserve_tos) {
607
76
                ADDOP_I(c, *ploc, SWAP, 2);
608
76
            }
609
211
            ADDOP(c, *ploc, POP_BLOCK);
610
211
            ADDOP(c, *ploc, POP_EXCEPT);
611
211
            if (info->fb_datum) {
612
28
                ADDOP_LOAD_CONST(c, *ploc, Py_None);
613
28
                RETURN_IF_ERROR(codegen_nameop(c, *ploc, info->fb_datum, Store));
614
28
                RETURN_IF_ERROR(codegen_nameop(c, *ploc, info->fb_datum, Del));
615
28
            }
616
211
            return SUCCESS;
617
211
        }
618
0
        case COMPILE_FBLOCK_POP_VALUE: {
619
0
            if (preserve_tos) {
620
0
                ADDOP_I(c, *ploc, SWAP, 2);
621
0
            }
622
0
            ADDOP(c, *ploc, POP_TOP);
623
0
            return SUCCESS;
624
0
        }
625
1.21k
    }
626
1.21k
    Py_UNREACHABLE();
627
1.21k
}
628
629
/** Unwind block stack. If loop is not NULL, then stop when the first loop is encountered. */
630
static int
631
codegen_unwind_fblock_stack(compiler *c, location *ploc,
632
                            int preserve_tos, fblockinfo **loop)
633
6.70k
{
634
6.70k
    fblockinfo *top = _PyCompile_TopFBlock(c);
635
6.70k
    if (top == NULL) {
636
5.23k
        return SUCCESS;
637
5.23k
    }
638
1.46k
    if (top->fb_type == COMPILE_FBLOCK_EXCEPTION_GROUP_HANDLER) {
639
0
        return _PyCompile_Error(
640
0
            c, *ploc, "'break', 'continue' and 'return' cannot appear in an except* block");
641
0
    }
642
1.46k
    if (loop != NULL && (top->fb_type == COMPILE_FBLOCK_WHILE_LOOP ||
643
612
                         top->fb_type == COMPILE_FBLOCK_FOR_LOOP ||
644
612
                         top->fb_type == COMPILE_FBLOCK_ASYNC_FOR_LOOP)) {
645
529
        *loop = top;
646
529
        return SUCCESS;
647
529
    }
648
939
    fblockinfo copy = *top;
649
939
    _PyCompile_PopFBlock(c, top->fb_type, top->fb_block);
650
939
    RETURN_IF_ERROR(codegen_unwind_fblock(c, ploc, &copy, preserve_tos));
651
939
    RETURN_IF_ERROR(codegen_unwind_fblock_stack(c, ploc, preserve_tos, loop));
652
939
    _PyCompile_PushFBlock(c, copy.fb_loc, copy.fb_type, copy.fb_block,
653
939
                          copy.fb_exit, copy.fb_datum);
654
939
    return SUCCESS;
655
939
}
656
657
static int
658
codegen_enter_scope(compiler *c, identifier name, int scope_type,
659
                    void *key, int lineno, PyObject *private,
660
                    _PyCompile_CodeUnitMetadata *umd)
661
6.58k
{
662
6.58k
    RETURN_IF_ERROR(
663
6.58k
        _PyCompile_EnterScope(c, name, scope_type, key, lineno, private, umd));
664
6.58k
    location loc = LOCATION(lineno, lineno, 0, 0);
665
6.58k
    if (scope_type == COMPILE_SCOPE_MODULE) {
666
360
        loc.lineno = 0;
667
360
    }
668
6.58k
    ADDOP_I(c, loc, RESUME, RESUME_AT_FUNC_START);
669
6.58k
    if (scope_type == COMPILE_SCOPE_MODULE) {
670
360
        ADDOP(c, loc, ANNOTATIONS_PLACEHOLDER);
671
360
    }
672
6.58k
    return SUCCESS;
673
6.58k
}
674
675
static int
676
codegen_setup_annotations_scope(compiler *c, location loc,
677
                                void *key, PyObject *name)
678
45
{
679
45
    _PyCompile_CodeUnitMetadata umd = {
680
45
        .u_posonlyargcount = 1,
681
45
    };
682
45
    RETURN_IF_ERROR(
683
45
        codegen_enter_scope(c, name, COMPILE_SCOPE_ANNOTATIONS,
684
45
                            key, loc.lineno, NULL, &umd));
685
686
    // if .format > VALUE_WITH_FAKE_GLOBALS: raise NotImplementedError
687
45
    PyObject *value_with_fake_globals = PyLong_FromLong(_Py_ANNOTATE_FORMAT_VALUE_WITH_FAKE_GLOBALS);
688
45
    assert(!SYMTABLE_ENTRY(c)->ste_has_docstring);
689
45
    _Py_DECLARE_STR(format, ".format");
690
45
    ADDOP_I(c, loc, LOAD_FAST, 0);
691
45
    ADDOP_LOAD_CONST(c, loc, value_with_fake_globals);
692
45
    ADDOP_I(c, loc, COMPARE_OP, (Py_GT << 5) | compare_masks[Py_GT]);
693
45
    NEW_JUMP_TARGET_LABEL(c, body);
694
45
    ADDOP_JUMP(c, loc, POP_JUMP_IF_FALSE, body);
695
45
    ADDOP_I(c, loc, LOAD_COMMON_CONSTANT, CONSTANT_NOTIMPLEMENTEDERROR);
696
45
    ADDOP_I(c, loc, RAISE_VARARGS, 1);
697
45
    USE_LABEL(c, body);
698
45
    return SUCCESS;
699
45
}
700
701
static int
702
codegen_leave_annotations_scope(compiler *c, location loc)
703
45
{
704
45
    ADDOP_IN_SCOPE(c, loc, RETURN_VALUE);
705
45
    PyCodeObject *co = _PyCompile_OptimizeAndAssemble(c, 1);
706
45
    if (co == NULL) {
707
0
        return ERROR;
708
0
    }
709
710
    // We want the parameter to __annotate__ to be named "format" in the
711
    // signature  shown by inspect.signature(), but we need to use a
712
    // different name (.format) in the symtable; if the name
713
    // "format" appears in the annotations, it doesn't get clobbered
714
    // by this name.  This code is essentially:
715
    // co->co_localsplusnames = ("format", *co->co_localsplusnames[1:])
716
45
    const Py_ssize_t size = PyObject_Size(co->co_localsplusnames);
717
45
    if (size == -1) {
718
0
        Py_DECREF(co);
719
0
        return ERROR;
720
0
    }
721
45
    PyObject *new_names = PyTuple_New(size);
722
45
    if (new_names == NULL) {
723
0
        Py_DECREF(co);
724
0
        return ERROR;
725
0
    }
726
45
    PyTuple_SET_ITEM(new_names, 0, Py_NewRef(&_Py_ID(format)));
727
169
    for (int i = 1; i < size; i++) {
728
124
        PyObject *item = PyTuple_GetItem(co->co_localsplusnames, i);
729
124
        if (item == NULL) {
730
0
            Py_DECREF(co);
731
0
            Py_DECREF(new_names);
732
0
            return ERROR;
733
0
        }
734
124
        Py_INCREF(item);
735
124
        PyTuple_SET_ITEM(new_names, i, item);
736
124
    }
737
45
    Py_SETREF(co->co_localsplusnames, new_names);
738
739
45
    _PyCompile_ExitScope(c);
740
45
    int ret = codegen_make_closure(c, loc, co, 0);
741
45
    Py_DECREF(co);
742
45
    RETURN_IF_ERROR(ret);
743
45
    return SUCCESS;
744
45
}
745
746
static int
747
codegen_deferred_annotations_body(compiler *c, location loc,
748
    PyObject *deferred_anno, PyObject *conditional_annotation_indices, int scope_type)
749
8
{
750
8
    Py_ssize_t annotations_len = PyList_GET_SIZE(deferred_anno);
751
752
8
    assert(PyList_CheckExact(conditional_annotation_indices));
753
8
    assert(annotations_len == PyList_Size(conditional_annotation_indices));
754
755
8
    ADDOP_I(c, loc, BUILD_MAP, 0); // stack now contains <annos>
756
757
58
    for (Py_ssize_t i = 0; i < annotations_len; i++) {
758
50
        PyObject *ptr = PyList_GET_ITEM(deferred_anno, i);
759
50
        stmt_ty st = (stmt_ty)PyLong_AsVoidPtr(ptr);
760
50
        if (st == NULL) {
761
0
            return ERROR;
762
0
        }
763
50
        PyObject *mangled = _PyCompile_Mangle(c, st->v.AnnAssign.target->v.Name.id);
764
50
        if (!mangled) {
765
0
            return ERROR;
766
0
        }
767
50
        PyObject *cond_index = PyList_GET_ITEM(conditional_annotation_indices, i);
768
50
        assert(PyLong_CheckExact(cond_index));
769
50
        long idx = PyLong_AS_LONG(cond_index);
770
50
        NEW_JUMP_TARGET_LABEL(c, not_set);
771
772
50
        if (idx != -1) {
773
1
            ADDOP_LOAD_CONST(c, LOC(st), cond_index);
774
1
            if (scope_type == COMPILE_SCOPE_CLASS) {
775
0
                ADDOP_NAME(
776
0
                    c, LOC(st), LOAD_DEREF, &_Py_ID(__conditional_annotations__), freevars);
777
0
            }
778
1
            else {
779
1
                ADDOP_NAME(
780
1
                    c, LOC(st), LOAD_GLOBAL, &_Py_ID(__conditional_annotations__), names);
781
1
            }
782
783
1
            ADDOP_I(c, LOC(st), CONTAINS_OP, 0);
784
1
            ADDOP_JUMP(c, LOC(st), POP_JUMP_IF_FALSE, not_set);
785
1
        }
786
787
50
        VISIT(c, expr, st->v.AnnAssign.annotation);
788
50
        ADDOP_I(c, LOC(st), COPY, 2);
789
50
        ADDOP_LOAD_CONST_NEW(c, LOC(st), mangled);
790
        // stack now contains <annos> <name> <annos> <value>
791
50
        ADDOP(c, loc, STORE_SUBSCR);
792
        // stack now contains <annos>
793
794
50
        USE_LABEL(c, not_set);
795
50
    }
796
8
    return SUCCESS;
797
8
}
798
799
static int
800
codegen_process_deferred_annotations(compiler *c, location loc)
801
1.41k
{
802
1.41k
    PyObject *deferred_anno = NULL;
803
1.41k
    PyObject *conditional_annotation_indices = NULL;
804
1.41k
    _PyCompile_DeferredAnnotations(c, &deferred_anno, &conditional_annotation_indices);
805
1.41k
    if (deferred_anno == NULL) {
806
1.40k
        assert(conditional_annotation_indices == NULL);
807
1.40k
        return SUCCESS;
808
1.40k
    }
809
810
8
    int scope_type = SCOPE_TYPE(c);
811
8
    bool need_separate_block = scope_type == COMPILE_SCOPE_MODULE;
812
8
    if (need_separate_block) {
813
1
        if (_PyCompile_StartAnnotationSetup(c) == ERROR) {
814
0
            goto error;
815
0
        }
816
1
    }
817
818
    // It's possible that ste_annotations_block is set but
819
    // u_deferred_annotations is not, because the former is still
820
    // set if there are only non-simple annotations (i.e., annotations
821
    // for attributes, subscripts, or parenthesized names). However, the
822
    // reverse should not be possible.
823
8
    PySTEntryObject *ste = SYMTABLE_ENTRY(c);
824
8
    assert(ste->ste_annotation_block != NULL);
825
8
    void *key = (void *)((uintptr_t)ste->ste_id + 1);
826
8
    if (codegen_setup_annotations_scope(c, loc, key,
827
8
                                        ste->ste_annotation_block->ste_name) < 0) {
828
0
        goto error;
829
0
    }
830
8
    if (codegen_deferred_annotations_body(c, loc, deferred_anno,
831
8
                                          conditional_annotation_indices, scope_type) < 0) {
832
0
        _PyCompile_ExitScope(c);
833
0
        goto error;
834
0
    }
835
836
8
    Py_DECREF(deferred_anno);
837
8
    Py_DECREF(conditional_annotation_indices);
838
839
8
    RETURN_IF_ERROR(codegen_leave_annotations_scope(c, loc));
840
8
    RETURN_IF_ERROR(codegen_nameop(
841
8
        c, loc,
842
8
        ste->ste_type == ClassBlock ? &_Py_ID(__annotate_func__) : &_Py_ID(__annotate__),
843
8
        Store));
844
845
8
    if (need_separate_block) {
846
1
        RETURN_IF_ERROR(_PyCompile_EndAnnotationSetup(c));
847
1
    }
848
849
8
    return SUCCESS;
850
0
error:
851
0
    Py_XDECREF(deferred_anno);
852
0
    Py_XDECREF(conditional_annotation_indices);
853
0
    return ERROR;
854
8
}
855
856
/* Compile an expression */
857
int
858
_PyCodegen_Expression(compiler *c, expr_ty e)
859
66
{
860
66
    VISIT(c, expr, e);
861
66
    return SUCCESS;
862
66
}
863
864
/* Compile a sequence of statements, checking for a docstring
865
   and for annotations. */
866
867
int
868
_PyCodegen_Module(compiler *c, location loc, asdl_stmt_seq *stmts, bool is_interactive)
869
294
{
870
294
    if (SYMTABLE_ENTRY(c)->ste_has_conditional_annotations) {
871
1
        ADDOP_I(c, loc, BUILD_SET, 0);
872
1
        ADDOP_N(c, loc, STORE_NAME, &_Py_ID(__conditional_annotations__), names);
873
1
    }
874
294
    return codegen_body(c, loc, stmts, is_interactive);
875
294
}
876
877
int
878
codegen_body(compiler *c, location loc, asdl_stmt_seq *stmts, bool is_interactive)
879
1.41k
{
880
    /* If from __future__ import annotations is active,
881
     * every annotated class and module should have __annotations__.
882
     * Else __annotate__ is created when necessary. */
883
1.41k
    PySTEntryObject *ste = SYMTABLE_ENTRY(c);
884
1.41k
    if ((FUTURE_FEATURES(c) & CO_FUTURE_ANNOTATIONS) && ste->ste_annotations_used) {
885
0
        ADDOP(c, loc, SETUP_ANNOTATIONS);
886
0
    }
887
1.41k
    if (!asdl_seq_LEN(stmts)) {
888
3
        return SUCCESS;
889
3
    }
890
1.41k
    Py_ssize_t first_instr = 0;
891
1.41k
    if (!is_interactive) { /* A string literal on REPL prompt is not a docstring */
892
1.41k
        if (ste->ste_has_docstring) {
893
507
            PyObject *docstring = _PyAST_GetDocString(stmts);
894
507
            assert(docstring);
895
507
            first_instr = 1;
896
            /* set docstring */
897
507
            assert(OPTIMIZATION_LEVEL(c) < 2);
898
507
            PyObject *cleandoc = _PyCompile_CleanDoc(docstring);
899
507
            if (cleandoc == NULL) {
900
0
                return ERROR;
901
0
            }
902
507
            stmt_ty st = (stmt_ty)asdl_seq_GET(stmts, 0);
903
507
            assert(st->kind == Expr_kind);
904
507
            location loc = LOC(st->v.Expr.value);
905
507
            ADDOP_LOAD_CONST(c, loc, cleandoc);
906
507
            Py_DECREF(cleandoc);
907
507
            RETURN_IF_ERROR(codegen_nameop(c, NO_LOCATION, &_Py_ID(__doc__), Store));
908
507
        }
909
1.41k
    }
910
10.5k
    for (Py_ssize_t i = first_instr; i < asdl_seq_LEN(stmts); i++) {
911
9.16k
        VISIT(c, stmt, (stmt_ty)asdl_seq_GET(stmts, i));
912
9.16k
    }
913
    // If there are annotations and the future import is not on, we
914
    // collect the annotations in a separate pass and generate an
915
    // __annotate__ function. See PEP 649.
916
1.41k
    if (!(FUTURE_FEATURES(c) & CO_FUTURE_ANNOTATIONS)) {
917
1.41k
        RETURN_IF_ERROR(codegen_process_deferred_annotations(c, loc));
918
1.41k
    }
919
1.41k
    return SUCCESS;
920
1.41k
}
921
922
int
923
_PyCodegen_EnterAnonymousScope(compiler* c, mod_ty mod)
924
360
{
925
360
    _Py_DECLARE_STR(anon_module, "<module>");
926
360
    RETURN_IF_ERROR(
927
360
        codegen_enter_scope(c, &_Py_STR(anon_module), COMPILE_SCOPE_MODULE,
928
360
                            mod, 1, NULL, NULL));
929
360
    return SUCCESS;
930
360
}
931
932
static int
933
codegen_make_closure(compiler *c, location loc,
934
                     PyCodeObject *co, Py_ssize_t flags)
935
6.22k
{
936
6.22k
    if (co->co_nfreevars) {
937
502
        int i = PyUnstable_Code_GetFirstFree(co);
938
1.40k
        for (; i < co->co_nlocalsplus; ++i) {
939
            /* Bypass com_addop_varname because it will generate
940
               LOAD_DEREF but LOAD_CLOSURE is needed.
941
            */
942
904
            PyObject *name = PyTuple_GET_ITEM(co->co_localsplusnames, i);
943
904
            int arg = _PyCompile_LookupArg(c, co, name);
944
904
            RETURN_IF_ERROR(arg);
945
904
            ADDOP_I(c, loc, LOAD_CLOSURE, arg);
946
904
        }
947
502
        flags |= MAKE_FUNCTION_CLOSURE;
948
502
        ADDOP_I(c, loc, BUILD_TUPLE, co->co_nfreevars);
949
502
    }
950
6.22k
    ADDOP_LOAD_CONST(c, loc, (PyObject*)co);
951
952
6.22k
    ADDOP(c, loc, MAKE_FUNCTION);
953
954
6.22k
    if (flags & MAKE_FUNCTION_CLOSURE) {
955
502
        ADDOP_I(c, loc, SET_FUNCTION_ATTRIBUTE, MAKE_FUNCTION_CLOSURE);
956
502
    }
957
6.22k
    if (flags & MAKE_FUNCTION_ANNOTATIONS) {
958
0
        ADDOP_I(c, loc, SET_FUNCTION_ATTRIBUTE, MAKE_FUNCTION_ANNOTATIONS);
959
0
    }
960
6.22k
    if (flags & MAKE_FUNCTION_ANNOTATE) {
961
37
        ADDOP_I(c, loc, SET_FUNCTION_ATTRIBUTE, MAKE_FUNCTION_ANNOTATE);
962
37
    }
963
6.22k
    if (flags & MAKE_FUNCTION_KWDEFAULTS) {
964
162
        ADDOP_I(c, loc, SET_FUNCTION_ATTRIBUTE, MAKE_FUNCTION_KWDEFAULTS);
965
162
    }
966
6.22k
    if (flags & MAKE_FUNCTION_DEFAULTS) {
967
999
        ADDOP_I(c, loc, SET_FUNCTION_ATTRIBUTE, MAKE_FUNCTION_DEFAULTS);
968
999
    }
969
6.22k
    return SUCCESS;
970
6.22k
}
971
972
static int
973
codegen_decorators(compiler *c, asdl_expr_seq* decos)
974
5.81k
{
975
5.81k
    if (!decos) {
976
5.14k
        return SUCCESS;
977
5.14k
    }
978
979
1.36k
    for (Py_ssize_t i = 0; i < asdl_seq_LEN(decos); i++) {
980
694
        VISIT(c, expr, (expr_ty)asdl_seq_GET(decos, i));
981
694
    }
982
674
    return SUCCESS;
983
674
}
984
985
static int
986
codegen_apply_decorators(compiler *c, asdl_expr_seq* decos)
987
5.81k
{
988
5.81k
    if (!decos) {
989
5.14k
        return SUCCESS;
990
5.14k
    }
991
992
1.36k
    for (Py_ssize_t i = asdl_seq_LEN(decos) - 1; i > -1; i--) {
993
694
        location loc = LOC((expr_ty)asdl_seq_GET(decos, i));
994
694
        ADDOP_I(c, loc, CALL, 0);
995
694
    }
996
674
    return SUCCESS;
997
674
}
998
999
static int
1000
codegen_kwonlydefaults(compiler *c, location loc,
1001
                       asdl_arg_seq *kwonlyargs, asdl_expr_seq *kw_defaults)
1002
4.83k
{
1003
    /* Push a dict of keyword-only default values.
1004
1005
       Return -1 on error, 0 if no dict pushed, 1 if a dict is pushed.
1006
       */
1007
4.83k
    int default_count = 0;
1008
5.32k
    for (int i = 0; i < asdl_seq_LEN(kwonlyargs); i++) {
1009
490
        arg_ty arg = asdl_seq_GET(kwonlyargs, i);
1010
490
        expr_ty default_ = asdl_seq_GET(kw_defaults, i);
1011
490
        if (default_) {
1012
478
            default_count++;
1013
478
            PyObject *mangled = _PyCompile_MaybeMangle(c, arg->arg);
1014
478
            if (!mangled) {
1015
0
                return ERROR;
1016
0
            }
1017
478
            ADDOP_LOAD_CONST_NEW(c, loc, mangled);
1018
478
            VISIT(c, expr, default_);
1019
478
        }
1020
490
    }
1021
4.83k
    if (default_count) {
1022
162
        ADDOP_I(c, loc, BUILD_MAP, default_count);
1023
162
        return 1;
1024
162
    }
1025
4.67k
    else {
1026
4.67k
        return 0;
1027
4.67k
    }
1028
4.83k
}
1029
1030
static int
1031
codegen_visit_annexpr(compiler *c, expr_ty annotation)
1032
0
{
1033
0
    location loc = LOC(annotation);
1034
0
    ADDOP_LOAD_CONST_NEW(c, loc, _PyAST_ExprAsUnicode(annotation));
1035
0
    return SUCCESS;
1036
0
}
1037
1038
static int
1039
codegen_argannotation(compiler *c, identifier id,
1040
    expr_ty annotation, Py_ssize_t *annotations_len, location loc)
1041
181
{
1042
181
    if (!annotation) {
1043
24
        return SUCCESS;
1044
24
    }
1045
157
    PyObject *mangled = _PyCompile_MaybeMangle(c, id);
1046
157
    if (!mangled) {
1047
0
        return ERROR;
1048
0
    }
1049
157
    ADDOP_LOAD_CONST(c, loc, mangled);
1050
157
    Py_DECREF(mangled);
1051
1052
157
    if (FUTURE_FEATURES(c) & CO_FUTURE_ANNOTATIONS) {
1053
0
        VISIT(c, annexpr, annotation);
1054
0
    }
1055
157
    else {
1056
157
        if (annotation->kind == Starred_kind) {
1057
            // *args: *Ts (where Ts is a TypeVarTuple).
1058
            // Do [annotation_value] = [*Ts].
1059
            // (Note that in theory we could end up here even for an argument
1060
            // other than *args, but in practice the grammar doesn't allow it.)
1061
0
            VISIT(c, expr, annotation->v.Starred.value);
1062
0
            ADDOP_I(c, loc, UNPACK_SEQUENCE, (Py_ssize_t) 1);
1063
0
        }
1064
157
        else {
1065
157
            VISIT(c, expr, annotation);
1066
157
        }
1067
157
    }
1068
157
    *annotations_len += 1;
1069
157
    return SUCCESS;
1070
157
}
1071
1072
static int
1073
codegen_argannotations(compiler *c, asdl_arg_seq* args,
1074
                       Py_ssize_t *annotations_len, location loc)
1075
111
{
1076
111
    int i;
1077
254
    for (i = 0; i < asdl_seq_LEN(args); i++) {
1078
143
        arg_ty arg = (arg_ty)asdl_seq_GET(args, i);
1079
143
        RETURN_IF_ERROR(
1080
143
            codegen_argannotation(
1081
143
                        c,
1082
143
                        arg->arg,
1083
143
                        arg->annotation,
1084
143
                        annotations_len,
1085
143
                        loc));
1086
143
    }
1087
111
    return SUCCESS;
1088
111
}
1089
1090
static int
1091
codegen_annotations_in_scope(compiler *c, location loc,
1092
                             arguments_ty args, expr_ty returns,
1093
                             Py_ssize_t *annotations_len)
1094
37
{
1095
37
    RETURN_IF_ERROR(
1096
37
        codegen_argannotations(c, args->args, annotations_len, loc));
1097
1098
37
    RETURN_IF_ERROR(
1099
37
        codegen_argannotations(c, args->posonlyargs, annotations_len, loc));
1100
1101
37
    if (args->vararg && args->vararg->annotation) {
1102
0
        RETURN_IF_ERROR(
1103
0
            codegen_argannotation(c, args->vararg->arg,
1104
0
                                     args->vararg->annotation, annotations_len, loc));
1105
0
    }
1106
1107
37
    RETURN_IF_ERROR(
1108
37
        codegen_argannotations(c, args->kwonlyargs, annotations_len, loc));
1109
1110
37
    if (args->kwarg && args->kwarg->annotation) {
1111
1
        RETURN_IF_ERROR(
1112
1
            codegen_argannotation(c, args->kwarg->arg,
1113
1
                                     args->kwarg->annotation, annotations_len, loc));
1114
1
    }
1115
1116
37
    RETURN_IF_ERROR(
1117
37
        codegen_argannotation(c, &_Py_ID(return), returns, annotations_len, loc));
1118
1119
37
    return 0;
1120
37
}
1121
1122
static int
1123
codegen_function_annotations(compiler *c, location loc,
1124
                             arguments_ty args, expr_ty returns)
1125
4.69k
{
1126
    /* Push arg annotation names and values.
1127
       The expressions are evaluated separately from the rest of the source code.
1128
1129
       Return -1 on error, or a combination of flags to add to the function.
1130
       */
1131
4.69k
    Py_ssize_t annotations_len = 0;
1132
1133
4.69k
    PySTEntryObject *ste;
1134
4.69k
    RETURN_IF_ERROR(_PySymtable_LookupOptional(SYMTABLE(c), args, &ste));
1135
4.69k
    assert(ste != NULL);
1136
1137
4.69k
    if (ste->ste_annotations_used) {
1138
37
        int err = codegen_setup_annotations_scope(c, loc, (void *)args, ste->ste_name);
1139
37
        Py_DECREF(ste);
1140
37
        RETURN_IF_ERROR(err);
1141
37
        RETURN_IF_ERROR_IN_SCOPE(
1142
37
            c, codegen_annotations_in_scope(c, loc, args, returns, &annotations_len)
1143
37
        );
1144
37
        ADDOP_I(c, loc, BUILD_MAP, annotations_len);
1145
37
        RETURN_IF_ERROR(codegen_leave_annotations_scope(c, loc));
1146
37
        return MAKE_FUNCTION_ANNOTATE;
1147
37
    }
1148
4.65k
    else {
1149
4.65k
        Py_DECREF(ste);
1150
4.65k
    }
1151
1152
4.65k
    return 0;
1153
4.69k
}
1154
1155
static int
1156
codegen_defaults(compiler *c, arguments_ty args,
1157
                        location loc)
1158
999
{
1159
999
    VISIT_SEQ(c, expr, args->defaults);
1160
999
    ADDOP_I(c, loc, BUILD_TUPLE, asdl_seq_LEN(args->defaults));
1161
999
    return SUCCESS;
1162
999
}
1163
1164
static Py_ssize_t
1165
codegen_default_arguments(compiler *c, location loc,
1166
                          arguments_ty args)
1167
4.83k
{
1168
4.83k
    Py_ssize_t funcflags = 0;
1169
4.83k
    if (args->defaults && asdl_seq_LEN(args->defaults) > 0) {
1170
999
        RETURN_IF_ERROR(codegen_defaults(c, args, loc));
1171
999
        funcflags |= MAKE_FUNCTION_DEFAULTS;
1172
999
    }
1173
4.83k
    if (args->kwonlyargs) {
1174
4.83k
        int res = codegen_kwonlydefaults(c, loc,
1175
4.83k
                                         args->kwonlyargs,
1176
4.83k
                                         args->kw_defaults);
1177
4.83k
        RETURN_IF_ERROR(res);
1178
4.83k
        if (res > 0) {
1179
162
            funcflags |= MAKE_FUNCTION_KWDEFAULTS;
1180
162
        }
1181
4.83k
    }
1182
4.83k
    return funcflags;
1183
4.83k
}
1184
1185
static int
1186
codegen_wrap_in_stopiteration_handler(compiler *c)
1187
353
{
1188
353
    NEW_JUMP_TARGET_LABEL(c, handler);
1189
1190
    /* Insert SETUP_CLEANUP at start */
1191
353
    RETURN_IF_ERROR(
1192
353
        _PyInstructionSequence_InsertInstruction(
1193
353
            INSTR_SEQUENCE(c), 0,
1194
353
            SETUP_CLEANUP, handler.id, NO_LOCATION));
1195
1196
353
    ADDOP_LOAD_CONST(c, NO_LOCATION, Py_None);
1197
353
    ADDOP(c, NO_LOCATION, RETURN_VALUE);
1198
353
    USE_LABEL(c, handler);
1199
353
    ADDOP_I(c, NO_LOCATION, CALL_INTRINSIC_1, INTRINSIC_STOPITERATION_ERROR);
1200
353
    ADDOP_I(c, NO_LOCATION, RERAISE, 1);
1201
353
    return SUCCESS;
1202
353
}
1203
1204
static int
1205
codegen_type_param_bound_or_default(compiler *c, expr_ty e,
1206
                                    identifier name, void *key,
1207
                                    bool allow_starred)
1208
0
{
1209
0
    PyObject *defaults = PyTuple_Pack(1, _PyLong_GetOne());
1210
0
    ADDOP_LOAD_CONST_NEW(c, LOC(e), defaults);
1211
0
    RETURN_IF_ERROR(codegen_setup_annotations_scope(c, LOC(e), key, name));
1212
0
    if (allow_starred && e->kind == Starred_kind) {
1213
0
        VISIT(c, expr, e->v.Starred.value);
1214
0
        ADDOP_I(c, LOC(e), UNPACK_SEQUENCE, (Py_ssize_t)1);
1215
0
    }
1216
0
    else {
1217
0
        VISIT(c, expr, e);
1218
0
    }
1219
0
    ADDOP_IN_SCOPE(c, LOC(e), RETURN_VALUE);
1220
0
    PyCodeObject *co = _PyCompile_OptimizeAndAssemble(c, 1);
1221
0
    _PyCompile_ExitScope(c);
1222
0
    if (co == NULL) {
1223
0
        return ERROR;
1224
0
    }
1225
0
    int ret = codegen_make_closure(c, LOC(e), co, MAKE_FUNCTION_DEFAULTS);
1226
0
    Py_DECREF(co);
1227
0
    RETURN_IF_ERROR(ret);
1228
0
    return SUCCESS;
1229
0
}
1230
1231
static int
1232
codegen_type_params(compiler *c, asdl_type_param_seq *type_params)
1233
0
{
1234
0
    if (!type_params) {
1235
0
        return SUCCESS;
1236
0
    }
1237
0
    Py_ssize_t n = asdl_seq_LEN(type_params);
1238
0
    bool seen_default = false;
1239
1240
0
    for (Py_ssize_t i = 0; i < n; i++) {
1241
0
        type_param_ty typeparam = asdl_seq_GET(type_params, i);
1242
0
        location loc = LOC(typeparam);
1243
0
        switch(typeparam->kind) {
1244
0
        case TypeVar_kind:
1245
0
            ADDOP_LOAD_CONST(c, loc, typeparam->v.TypeVar.name);
1246
0
            if (typeparam->v.TypeVar.bound) {
1247
0
                expr_ty bound = typeparam->v.TypeVar.bound;
1248
0
                RETURN_IF_ERROR(
1249
0
                    codegen_type_param_bound_or_default(c, bound, typeparam->v.TypeVar.name,
1250
0
                                                        (void *)typeparam, false));
1251
1252
0
                int intrinsic = bound->kind == Tuple_kind
1253
0
                    ? INTRINSIC_TYPEVAR_WITH_CONSTRAINTS
1254
0
                    : INTRINSIC_TYPEVAR_WITH_BOUND;
1255
0
                ADDOP_I(c, loc, CALL_INTRINSIC_2, intrinsic);
1256
0
            }
1257
0
            else {
1258
0
                ADDOP_I(c, loc, CALL_INTRINSIC_1, INTRINSIC_TYPEVAR);
1259
0
            }
1260
0
            if (typeparam->v.TypeVar.default_value) {
1261
0
                seen_default = true;
1262
0
                expr_ty default_ = typeparam->v.TypeVar.default_value;
1263
0
                RETURN_IF_ERROR(
1264
0
                    codegen_type_param_bound_or_default(c, default_, typeparam->v.TypeVar.name,
1265
0
                                                        (void *)((uintptr_t)typeparam + 1), false));
1266
0
                ADDOP_I(c, loc, CALL_INTRINSIC_2, INTRINSIC_SET_TYPEPARAM_DEFAULT);
1267
0
            }
1268
0
            else if (seen_default) {
1269
0
                return _PyCompile_Error(c, loc, "non-default type parameter '%U' "
1270
0
                                        "follows default type parameter",
1271
0
                                        typeparam->v.TypeVar.name);
1272
0
            }
1273
0
            ADDOP_I(c, loc, COPY, 1);
1274
0
            RETURN_IF_ERROR(codegen_nameop(c, loc, typeparam->v.TypeVar.name, Store));
1275
0
            break;
1276
0
        case TypeVarTuple_kind:
1277
0
            ADDOP_LOAD_CONST(c, loc, typeparam->v.TypeVarTuple.name);
1278
0
            ADDOP_I(c, loc, CALL_INTRINSIC_1, INTRINSIC_TYPEVARTUPLE);
1279
0
            if (typeparam->v.TypeVarTuple.default_value) {
1280
0
                expr_ty default_ = typeparam->v.TypeVarTuple.default_value;
1281
0
                RETURN_IF_ERROR(
1282
0
                    codegen_type_param_bound_or_default(c, default_, typeparam->v.TypeVarTuple.name,
1283
0
                                                        (void *)typeparam, true));
1284
0
                ADDOP_I(c, loc, CALL_INTRINSIC_2, INTRINSIC_SET_TYPEPARAM_DEFAULT);
1285
0
                seen_default = true;
1286
0
            }
1287
0
            else if (seen_default) {
1288
0
                return _PyCompile_Error(c, loc, "non-default type parameter '%U' "
1289
0
                                        "follows default type parameter",
1290
0
                                        typeparam->v.TypeVarTuple.name);
1291
0
            }
1292
0
            ADDOP_I(c, loc, COPY, 1);
1293
0
            RETURN_IF_ERROR(codegen_nameop(c, loc, typeparam->v.TypeVarTuple.name, Store));
1294
0
            break;
1295
0
        case ParamSpec_kind:
1296
0
            ADDOP_LOAD_CONST(c, loc, typeparam->v.ParamSpec.name);
1297
0
            ADDOP_I(c, loc, CALL_INTRINSIC_1, INTRINSIC_PARAMSPEC);
1298
0
            if (typeparam->v.ParamSpec.default_value) {
1299
0
                expr_ty default_ = typeparam->v.ParamSpec.default_value;
1300
0
                RETURN_IF_ERROR(
1301
0
                    codegen_type_param_bound_or_default(c, default_, typeparam->v.ParamSpec.name,
1302
0
                                                        (void *)typeparam, false));
1303
0
                ADDOP_I(c, loc, CALL_INTRINSIC_2, INTRINSIC_SET_TYPEPARAM_DEFAULT);
1304
0
                seen_default = true;
1305
0
            }
1306
0
            else if (seen_default) {
1307
0
                return _PyCompile_Error(c, loc, "non-default type parameter '%U' "
1308
0
                                        "follows default type parameter",
1309
0
                                        typeparam->v.ParamSpec.name);
1310
0
            }
1311
0
            ADDOP_I(c, loc, COPY, 1);
1312
0
            RETURN_IF_ERROR(codegen_nameop(c, loc, typeparam->v.ParamSpec.name, Store));
1313
0
            break;
1314
0
        }
1315
0
    }
1316
0
    ADDOP_I(c, LOC(asdl_seq_GET(type_params, 0)), BUILD_TUPLE, n);
1317
0
    return SUCCESS;
1318
0
}
1319
1320
static int
1321
codegen_function_body(compiler *c, stmt_ty s, int is_async, Py_ssize_t funcflags,
1322
                      int firstlineno)
1323
4.69k
{
1324
4.69k
    arguments_ty args;
1325
4.69k
    identifier name;
1326
4.69k
    asdl_stmt_seq *body;
1327
4.69k
    int scope_type;
1328
1329
4.69k
    if (is_async) {
1330
30
        assert(s->kind == AsyncFunctionDef_kind);
1331
1332
30
        args = s->v.AsyncFunctionDef.args;
1333
30
        name = s->v.AsyncFunctionDef.name;
1334
30
        body = s->v.AsyncFunctionDef.body;
1335
1336
30
        scope_type = COMPILE_SCOPE_ASYNC_FUNCTION;
1337
4.66k
    } else {
1338
4.66k
        assert(s->kind == FunctionDef_kind);
1339
1340
4.66k
        args = s->v.FunctionDef.args;
1341
4.66k
        name = s->v.FunctionDef.name;
1342
4.66k
        body = s->v.FunctionDef.body;
1343
1344
4.66k
        scope_type = COMPILE_SCOPE_FUNCTION;
1345
4.66k
    }
1346
1347
4.69k
    _PyCompile_CodeUnitMetadata umd = {
1348
4.69k
        .u_argcount = asdl_seq_LEN(args->args),
1349
4.69k
        .u_posonlyargcount = asdl_seq_LEN(args->posonlyargs),
1350
4.69k
        .u_kwonlyargcount = asdl_seq_LEN(args->kwonlyargs),
1351
4.69k
    };
1352
4.69k
    RETURN_IF_ERROR(
1353
4.69k
        codegen_enter_scope(c, name, scope_type, (void *)s, firstlineno, NULL, &umd));
1354
1355
4.69k
    PySTEntryObject *ste = SYMTABLE_ENTRY(c);
1356
4.69k
    Py_ssize_t first_instr = 0;
1357
4.69k
    if (ste->ste_has_docstring) {
1358
1.65k
        PyObject *docstring = _PyAST_GetDocString(body);
1359
1.65k
        assert(docstring);
1360
1.65k
        first_instr = 1;
1361
1.65k
        docstring = _PyCompile_CleanDoc(docstring);
1362
1.65k
        if (docstring == NULL) {
1363
0
            _PyCompile_ExitScope(c);
1364
0
            return ERROR;
1365
0
        }
1366
1.65k
        Py_ssize_t idx = _PyCompile_AddConst(c, docstring);
1367
1.65k
        Py_DECREF(docstring);
1368
1.65k
        RETURN_IF_ERROR_IN_SCOPE(c, idx < 0 ? ERROR : SUCCESS);
1369
1.65k
    }
1370
1371
4.69k
    NEW_JUMP_TARGET_LABEL(c, start);
1372
4.69k
    USE_LABEL(c, start);
1373
4.69k
    bool add_stopiteration_handler = ste->ste_coroutine || ste->ste_generator;
1374
4.69k
    if (add_stopiteration_handler) {
1375
        /* codegen_wrap_in_stopiteration_handler will push a block, so we need to account for that */
1376
135
        RETURN_IF_ERROR(
1377
135
            _PyCompile_PushFBlock(c, NO_LOCATION, COMPILE_FBLOCK_STOP_ITERATION,
1378
135
                                  start, NO_LABEL, NULL));
1379
135
    }
1380
1381
18.3k
    for (Py_ssize_t i = first_instr; i < asdl_seq_LEN(body); i++) {
1382
13.6k
        VISIT_IN_SCOPE(c, stmt, (stmt_ty)asdl_seq_GET(body, i));
1383
13.6k
    }
1384
4.69k
    if (add_stopiteration_handler) {
1385
135
        RETURN_IF_ERROR_IN_SCOPE(c, codegen_wrap_in_stopiteration_handler(c));
1386
135
        _PyCompile_PopFBlock(c, COMPILE_FBLOCK_STOP_ITERATION, start);
1387
135
    }
1388
4.69k
    PyCodeObject *co = _PyCompile_OptimizeAndAssemble(c, 1);
1389
4.69k
    _PyCompile_ExitScope(c);
1390
4.69k
    if (co == NULL) {
1391
0
        Py_XDECREF(co);
1392
0
        return ERROR;
1393
0
    }
1394
4.69k
    int ret = codegen_make_closure(c, LOC(s), co, funcflags);
1395
4.69k
    Py_DECREF(co);
1396
4.69k
    return ret;
1397
4.69k
}
1398
1399
static int
1400
codegen_function(compiler *c, stmt_ty s, int is_async)
1401
4.69k
{
1402
4.69k
    arguments_ty args;
1403
4.69k
    expr_ty returns;
1404
4.69k
    identifier name;
1405
4.69k
    asdl_expr_seq *decos;
1406
4.69k
    asdl_type_param_seq *type_params;
1407
4.69k
    Py_ssize_t funcflags;
1408
4.69k
    int firstlineno;
1409
1410
4.69k
    if (is_async) {
1411
30
        assert(s->kind == AsyncFunctionDef_kind);
1412
1413
30
        args = s->v.AsyncFunctionDef.args;
1414
30
        returns = s->v.AsyncFunctionDef.returns;
1415
30
        decos = s->v.AsyncFunctionDef.decorator_list;
1416
30
        name = s->v.AsyncFunctionDef.name;
1417
30
        type_params = s->v.AsyncFunctionDef.type_params;
1418
4.66k
    } else {
1419
4.66k
        assert(s->kind == FunctionDef_kind);
1420
1421
4.66k
        args = s->v.FunctionDef.args;
1422
4.66k
        returns = s->v.FunctionDef.returns;
1423
4.66k
        decos = s->v.FunctionDef.decorator_list;
1424
4.66k
        name = s->v.FunctionDef.name;
1425
4.66k
        type_params = s->v.FunctionDef.type_params;
1426
4.66k
    }
1427
1428
4.69k
    RETURN_IF_ERROR(codegen_decorators(c, decos));
1429
1430
4.69k
    firstlineno = s->lineno;
1431
4.69k
    if (asdl_seq_LEN(decos)) {
1432
643
        firstlineno = ((expr_ty)asdl_seq_GET(decos, 0))->lineno;
1433
643
    }
1434
1435
4.69k
    location loc = LOC(s);
1436
1437
4.69k
    int is_generic = asdl_seq_LEN(type_params) > 0;
1438
1439
4.69k
    funcflags = codegen_default_arguments(c, loc, args);
1440
4.69k
    RETURN_IF_ERROR(funcflags);
1441
1442
4.69k
    int num_typeparam_args = 0;
1443
1444
4.69k
    if (is_generic) {
1445
0
        if (funcflags & MAKE_FUNCTION_DEFAULTS) {
1446
0
            num_typeparam_args += 1;
1447
0
        }
1448
0
        if (funcflags & MAKE_FUNCTION_KWDEFAULTS) {
1449
0
            num_typeparam_args += 1;
1450
0
        }
1451
0
        if (num_typeparam_args == 2) {
1452
0
            ADDOP_I(c, loc, SWAP, 2);
1453
0
        }
1454
0
        PyObject *type_params_name = PyUnicode_FromFormat("<generic parameters of %U>", name);
1455
0
        if (!type_params_name) {
1456
0
            return ERROR;
1457
0
        }
1458
0
        _PyCompile_CodeUnitMetadata umd = {
1459
0
            .u_argcount = num_typeparam_args,
1460
0
        };
1461
0
        int ret = codegen_enter_scope(c, type_params_name, COMPILE_SCOPE_ANNOTATIONS,
1462
0
                                      (void *)type_params, firstlineno, NULL, &umd);
1463
0
        Py_DECREF(type_params_name);
1464
0
        RETURN_IF_ERROR(ret);
1465
0
        RETURN_IF_ERROR_IN_SCOPE(c, codegen_type_params(c, type_params));
1466
0
        for (int i = 0; i < num_typeparam_args; i++) {
1467
0
            ADDOP_I_IN_SCOPE(c, loc, LOAD_FAST, i);
1468
0
        }
1469
0
    }
1470
1471
4.69k
    int annotations_flag = codegen_function_annotations(c, loc, args, returns);
1472
4.69k
    if (annotations_flag < 0) {
1473
0
        if (is_generic) {
1474
0
            _PyCompile_ExitScope(c);
1475
0
        }
1476
0
        return ERROR;
1477
0
    }
1478
4.69k
    funcflags |= annotations_flag;
1479
1480
4.69k
    int ret = codegen_function_body(c, s, is_async, funcflags, firstlineno);
1481
4.69k
    if (is_generic) {
1482
0
        RETURN_IF_ERROR_IN_SCOPE(c, ret);
1483
0
    }
1484
4.69k
    else {
1485
4.69k
        RETURN_IF_ERROR(ret);
1486
4.69k
    }
1487
1488
4.69k
    if (is_generic) {
1489
0
        ADDOP_I_IN_SCOPE(c, loc, SWAP, 2);
1490
0
        ADDOP_I_IN_SCOPE(c, loc, CALL_INTRINSIC_2, INTRINSIC_SET_FUNCTION_TYPE_PARAMS);
1491
1492
0
        PyCodeObject *co = _PyCompile_OptimizeAndAssemble(c, 0);
1493
0
        _PyCompile_ExitScope(c);
1494
0
        if (co == NULL) {
1495
0
            return ERROR;
1496
0
        }
1497
0
        int ret = codegen_make_closure(c, loc, co, 0);
1498
0
        Py_DECREF(co);
1499
0
        RETURN_IF_ERROR(ret);
1500
0
        if (num_typeparam_args > 0) {
1501
0
            ADDOP_I(c, loc, SWAP, num_typeparam_args + 1);
1502
0
            ADDOP_I(c, loc, CALL, num_typeparam_args - 1);
1503
0
        }
1504
0
        else {
1505
0
            ADDOP(c, loc, PUSH_NULL);
1506
0
            ADDOP_I(c, loc, CALL, 0);
1507
0
        }
1508
0
    }
1509
1510
4.69k
    RETURN_IF_ERROR(codegen_apply_decorators(c, decos));
1511
4.69k
    return codegen_nameop(c, loc, name, Store);
1512
4.69k
}
1513
1514
static int
1515
codegen_set_type_params_in_class(compiler *c, location loc)
1516
0
{
1517
0
    _Py_DECLARE_STR(type_params, ".type_params");
1518
0
    RETURN_IF_ERROR(codegen_nameop(c, loc, &_Py_STR(type_params), Load));
1519
0
    RETURN_IF_ERROR(codegen_nameop(c, loc, &_Py_ID(__type_params__), Store));
1520
0
    return SUCCESS;
1521
0
}
1522
1523
1524
static int
1525
codegen_class_body(compiler *c, stmt_ty s, int firstlineno)
1526
1.12k
{
1527
    /* ultimately generate code for:
1528
         <name> = __build_class__(<func>, <name>, *<bases>, **<keywords>)
1529
       where:
1530
         <func> is a zero arg function/closure created from the class body.
1531
            It mutates its locals to build the class namespace.
1532
         <name> is the class name
1533
         <bases> is the positional arguments and *varargs argument
1534
         <keywords> is the keyword arguments and **kwds argument
1535
       This borrows from codegen_call.
1536
    */
1537
1538
    /* 1. compile the class body into a code object */
1539
1.12k
    RETURN_IF_ERROR(
1540
1.12k
        codegen_enter_scope(c, s->v.ClassDef.name, COMPILE_SCOPE_CLASS,
1541
1.12k
                            (void *)s, firstlineno, s->v.ClassDef.name, NULL));
1542
1543
1.12k
    location loc = LOCATION(firstlineno, firstlineno, 0, 0);
1544
    /* load (global) __name__ ... */
1545
1.12k
    RETURN_IF_ERROR_IN_SCOPE(c, codegen_nameop(c, loc, &_Py_ID(__name__), Load));
1546
    /* ... and store it as __module__ */
1547
1.12k
    RETURN_IF_ERROR_IN_SCOPE(c, codegen_nameop(c, loc, &_Py_ID(__module__), Store));
1548
1.12k
    ADDOP_LOAD_CONST(c, loc, QUALNAME(c));
1549
1.12k
    RETURN_IF_ERROR_IN_SCOPE(c, codegen_nameop(c, loc, &_Py_ID(__qualname__), Store));
1550
1.12k
    ADDOP_LOAD_CONST_NEW(c, loc, PyLong_FromLong(METADATA(c)->u_firstlineno));
1551
1.12k
    RETURN_IF_ERROR_IN_SCOPE(c, codegen_nameop(c, loc, &_Py_ID(__firstlineno__), Store));
1552
1.12k
    asdl_type_param_seq *type_params = s->v.ClassDef.type_params;
1553
1.12k
    if (asdl_seq_LEN(type_params) > 0) {
1554
0
        RETURN_IF_ERROR_IN_SCOPE(c, codegen_set_type_params_in_class(c, loc));
1555
0
    }
1556
1.12k
    if (SYMTABLE_ENTRY(c)->ste_needs_classdict) {
1557
652
        ADDOP(c, loc, LOAD_LOCALS);
1558
1559
        // We can't use codegen_nameop here because we need to generate a
1560
        // STORE_DEREF in a class namespace, and codegen_nameop() won't do
1561
        // that by default.
1562
652
        ADDOP_N_IN_SCOPE(c, loc, STORE_DEREF, &_Py_ID(__classdict__), cellvars);
1563
652
    }
1564
1.12k
    if (SYMTABLE_ENTRY(c)->ste_has_conditional_annotations) {
1565
0
        ADDOP_I(c, loc, BUILD_SET, 0);
1566
0
        ADDOP_N_IN_SCOPE(c, loc, STORE_DEREF, &_Py_ID(__conditional_annotations__), cellvars);
1567
0
    }
1568
    /* compile the body proper */
1569
1.12k
    RETURN_IF_ERROR_IN_SCOPE(c, codegen_body(c, loc, s->v.ClassDef.body, false));
1570
1.12k
    PyObject *static_attributes = _PyCompile_StaticAttributesAsTuple(c);
1571
1.12k
    if (static_attributes == NULL) {
1572
0
        _PyCompile_ExitScope(c);
1573
0
        return ERROR;
1574
0
    }
1575
1.12k
    ADDOP_LOAD_CONST(c, NO_LOCATION, static_attributes);
1576
1.12k
    Py_CLEAR(static_attributes);
1577
1.12k
    RETURN_IF_ERROR_IN_SCOPE(
1578
1.12k
        c, codegen_nameop(c, NO_LOCATION, &_Py_ID(__static_attributes__), Store));
1579
    /* The following code is artificial */
1580
    /* Set __classdictcell__ if necessary */
1581
1.12k
    if (SYMTABLE_ENTRY(c)->ste_needs_classdict) {
1582
        /* Store __classdictcell__ into class namespace */
1583
652
        int i = _PyCompile_LookupCellvar(c, &_Py_ID(__classdict__));
1584
652
        RETURN_IF_ERROR_IN_SCOPE(c, i);
1585
652
        ADDOP_I(c, NO_LOCATION, LOAD_CLOSURE, i);
1586
652
        RETURN_IF_ERROR_IN_SCOPE(
1587
652
            c, codegen_nameop(c, NO_LOCATION, &_Py_ID(__classdictcell__), Store));
1588
652
    }
1589
    /* Return __classcell__ if it is referenced, otherwise return None */
1590
1.12k
    if (SYMTABLE_ENTRY(c)->ste_needs_class_closure) {
1591
        /* Store __classcell__ into class namespace & return it */
1592
74
        int i = _PyCompile_LookupCellvar(c, &_Py_ID(__class__));
1593
74
        RETURN_IF_ERROR_IN_SCOPE(c, i);
1594
74
        ADDOP_I(c, NO_LOCATION, LOAD_CLOSURE, i);
1595
74
        ADDOP_I(c, NO_LOCATION, COPY, 1);
1596
74
        RETURN_IF_ERROR_IN_SCOPE(
1597
74
            c, codegen_nameop(c, NO_LOCATION, &_Py_ID(__classcell__), Store));
1598
74
    }
1599
1.05k
    else {
1600
        /* No methods referenced __class__, so just return None */
1601
1.05k
        ADDOP_LOAD_CONST(c, NO_LOCATION, Py_None);
1602
1.05k
    }
1603
1.12k
    ADDOP_IN_SCOPE(c, NO_LOCATION, RETURN_VALUE);
1604
    /* create the code object */
1605
1.12k
    PyCodeObject *co = _PyCompile_OptimizeAndAssemble(c, 1);
1606
1607
    /* leave the new scope */
1608
1.12k
    _PyCompile_ExitScope(c);
1609
1.12k
    if (co == NULL) {
1610
0
        return ERROR;
1611
0
    }
1612
1613
    /* 2. load the 'build_class' function */
1614
1615
    // these instructions should be attributed to the class line,
1616
    // not a decorator line
1617
1.12k
    loc = LOC(s);
1618
1.12k
    ADDOP(c, loc, LOAD_BUILD_CLASS);
1619
1.12k
    ADDOP(c, loc, PUSH_NULL);
1620
1621
    /* 3. load a function (or closure) made from the code object */
1622
1.12k
    int ret = codegen_make_closure(c, loc, co, 0);
1623
1.12k
    Py_DECREF(co);
1624
1.12k
    RETURN_IF_ERROR(ret);
1625
1626
    /* 4. load class name */
1627
1.12k
    ADDOP_LOAD_CONST(c, loc, s->v.ClassDef.name);
1628
1629
1.12k
    return SUCCESS;
1630
1.12k
}
1631
1632
static int
1633
codegen_class(compiler *c, stmt_ty s)
1634
1.12k
{
1635
1.12k
    asdl_expr_seq *decos = s->v.ClassDef.decorator_list;
1636
1637
1.12k
    RETURN_IF_ERROR(codegen_decorators(c, decos));
1638
1639
1.12k
    int firstlineno = s->lineno;
1640
1.12k
    if (asdl_seq_LEN(decos)) {
1641
31
        firstlineno = ((expr_ty)asdl_seq_GET(decos, 0))->lineno;
1642
31
    }
1643
1.12k
    location loc = LOC(s);
1644
1645
1.12k
    asdl_type_param_seq *type_params = s->v.ClassDef.type_params;
1646
1.12k
    int is_generic = asdl_seq_LEN(type_params) > 0;
1647
1.12k
    if (is_generic) {
1648
0
        PyObject *type_params_name = PyUnicode_FromFormat("<generic parameters of %U>",
1649
0
                                                         s->v.ClassDef.name);
1650
0
        if (!type_params_name) {
1651
0
            return ERROR;
1652
0
        }
1653
0
        int ret = codegen_enter_scope(c, type_params_name, COMPILE_SCOPE_ANNOTATIONS,
1654
0
                                      (void *)type_params, firstlineno, s->v.ClassDef.name, NULL);
1655
0
        Py_DECREF(type_params_name);
1656
0
        RETURN_IF_ERROR(ret);
1657
0
        RETURN_IF_ERROR_IN_SCOPE(c, codegen_type_params(c, type_params));
1658
0
        _Py_DECLARE_STR(type_params, ".type_params");
1659
0
        RETURN_IF_ERROR_IN_SCOPE(c, codegen_nameop(c, loc, &_Py_STR(type_params), Store));
1660
0
    }
1661
1662
1.12k
    int ret = codegen_class_body(c, s, firstlineno);
1663
1.12k
    if (is_generic) {
1664
0
        RETURN_IF_ERROR_IN_SCOPE(c, ret);
1665
0
    }
1666
1.12k
    else {
1667
1.12k
        RETURN_IF_ERROR(ret);
1668
1.12k
    }
1669
1670
    /* generate the rest of the code for the call */
1671
1672
1.12k
    if (is_generic) {
1673
0
        _Py_DECLARE_STR(type_params, ".type_params");
1674
0
        _Py_DECLARE_STR(generic_base, ".generic_base");
1675
0
        RETURN_IF_ERROR_IN_SCOPE(c, codegen_nameop(c, loc, &_Py_STR(type_params), Load));
1676
0
        ADDOP_I_IN_SCOPE(c, loc, CALL_INTRINSIC_1, INTRINSIC_SUBSCRIPT_GENERIC);
1677
0
        RETURN_IF_ERROR_IN_SCOPE(c, codegen_nameop(c, loc, &_Py_STR(generic_base), Store));
1678
1679
0
        RETURN_IF_ERROR_IN_SCOPE(c, codegen_call_helper_impl(c, loc, 2,
1680
0
                                                             s->v.ClassDef.bases,
1681
0
                                                             &_Py_STR(generic_base),
1682
0
                                                             s->v.ClassDef.keywords));
1683
1684
0
        PyCodeObject *co = _PyCompile_OptimizeAndAssemble(c, 0);
1685
1686
0
        _PyCompile_ExitScope(c);
1687
0
        if (co == NULL) {
1688
0
            return ERROR;
1689
0
        }
1690
0
        int ret = codegen_make_closure(c, loc, co, 0);
1691
0
        Py_DECREF(co);
1692
0
        RETURN_IF_ERROR(ret);
1693
0
        ADDOP(c, loc, PUSH_NULL);
1694
0
        ADDOP_I(c, loc, CALL, 0);
1695
1.12k
    } else {
1696
1.12k
        RETURN_IF_ERROR(codegen_call_helper(c, loc, 2,
1697
1.12k
                                            s->v.ClassDef.bases,
1698
1.12k
                                            s->v.ClassDef.keywords));
1699
1.12k
    }
1700
1701
    /* 6. apply decorators */
1702
1.12k
    RETURN_IF_ERROR(codegen_apply_decorators(c, decos));
1703
1704
    /* 7. store into <name> */
1705
1.12k
    RETURN_IF_ERROR(codegen_nameop(c, loc, s->v.ClassDef.name, Store));
1706
1.12k
    return SUCCESS;
1707
1.12k
}
1708
1709
static int
1710
codegen_typealias_body(compiler *c, stmt_ty s)
1711
0
{
1712
0
    location loc = LOC(s);
1713
0
    PyObject *name = s->v.TypeAlias.name->v.Name.id;
1714
0
    PyObject *defaults = PyTuple_Pack(1, _PyLong_GetOne());
1715
0
    ADDOP_LOAD_CONST_NEW(c, loc, defaults);
1716
0
    RETURN_IF_ERROR(
1717
0
        codegen_setup_annotations_scope(c, LOC(s), s, name));
1718
1719
0
    assert(!SYMTABLE_ENTRY(c)->ste_has_docstring);
1720
0
    VISIT_IN_SCOPE(c, expr, s->v.TypeAlias.value);
1721
0
    ADDOP_IN_SCOPE(c, loc, RETURN_VALUE);
1722
0
    PyCodeObject *co = _PyCompile_OptimizeAndAssemble(c, 0);
1723
0
    _PyCompile_ExitScope(c);
1724
0
    if (co == NULL) {
1725
0
        return ERROR;
1726
0
    }
1727
0
    int ret = codegen_make_closure(c, loc, co, MAKE_FUNCTION_DEFAULTS);
1728
0
    Py_DECREF(co);
1729
0
    RETURN_IF_ERROR(ret);
1730
1731
0
    ADDOP_I(c, loc, BUILD_TUPLE, 3);
1732
0
    ADDOP_I(c, loc, CALL_INTRINSIC_1, INTRINSIC_TYPEALIAS);
1733
0
    return SUCCESS;
1734
0
}
1735
1736
static int
1737
codegen_typealias(compiler *c, stmt_ty s)
1738
0
{
1739
0
    location loc = LOC(s);
1740
0
    asdl_type_param_seq *type_params = s->v.TypeAlias.type_params;
1741
0
    int is_generic = asdl_seq_LEN(type_params) > 0;
1742
0
    PyObject *name = s->v.TypeAlias.name->v.Name.id;
1743
0
    if (is_generic) {
1744
0
        PyObject *type_params_name = PyUnicode_FromFormat("<generic parameters of %U>",
1745
0
                                                         name);
1746
0
        if (!type_params_name) {
1747
0
            return ERROR;
1748
0
        }
1749
0
        int ret = codegen_enter_scope(c, type_params_name, COMPILE_SCOPE_ANNOTATIONS,
1750
0
                                      (void *)type_params, loc.lineno, NULL, NULL);
1751
0
        Py_DECREF(type_params_name);
1752
0
        RETURN_IF_ERROR(ret);
1753
0
        ADDOP_LOAD_CONST_IN_SCOPE(c, loc, name);
1754
0
        RETURN_IF_ERROR_IN_SCOPE(c, codegen_type_params(c, type_params));
1755
0
    }
1756
0
    else {
1757
0
        ADDOP_LOAD_CONST(c, loc, name);
1758
0
        ADDOP_LOAD_CONST(c, loc, Py_None);
1759
0
    }
1760
1761
0
    int ret = codegen_typealias_body(c, s);
1762
0
    if (is_generic) {
1763
0
        RETURN_IF_ERROR_IN_SCOPE(c, ret);
1764
0
    }
1765
0
    else {
1766
0
        RETURN_IF_ERROR(ret);
1767
0
    }
1768
1769
0
    if (is_generic) {
1770
0
        PyCodeObject *co = _PyCompile_OptimizeAndAssemble(c, 0);
1771
0
        _PyCompile_ExitScope(c);
1772
0
        if (co == NULL) {
1773
0
            return ERROR;
1774
0
        }
1775
0
        int ret = codegen_make_closure(c, loc, co, 0);
1776
0
        Py_DECREF(co);
1777
0
        RETURN_IF_ERROR(ret);
1778
0
        ADDOP(c, loc, PUSH_NULL);
1779
0
        ADDOP_I(c, loc, CALL, 0);
1780
0
    }
1781
0
    RETURN_IF_ERROR(codegen_nameop(c, loc, name, Store));
1782
0
    return SUCCESS;
1783
0
}
1784
1785
static bool
1786
is_const_tuple(asdl_expr_seq *elts)
1787
153
{
1788
404
    for (Py_ssize_t i = 0; i < asdl_seq_LEN(elts); i++) {
1789
316
        expr_ty e = (expr_ty)asdl_seq_GET(elts, i);
1790
316
        if (e->kind != Constant_kind) {
1791
65
            return false;
1792
65
        }
1793
316
    }
1794
88
    return true;
1795
153
}
1796
1797
/* Return false if the expression is a constant value except named singletons.
1798
   Return true otherwise. */
1799
static bool
1800
check_is_arg(expr_ty e)
1801
12.2k
{
1802
12.2k
    if (e->kind == Tuple_kind) {
1803
153
        return !is_const_tuple(e->v.Tuple.elts);
1804
153
    }
1805
12.0k
    if (e->kind != Constant_kind) {
1806
8.71k
        return true;
1807
8.71k
    }
1808
3.35k
    PyObject *value = e->v.Constant.value;
1809
3.35k
    return (value == Py_None
1810
3.35k
         || value == Py_False
1811
3.35k
         || value == Py_True
1812
3.35k
         || value == Py_Ellipsis);
1813
12.0k
}
1814
1815
static PyTypeObject * infer_type(expr_ty e);
1816
1817
/* Check operands of identity checks ("is" and "is not").
1818
   Emit a warning if any operand is a constant except named singletons.
1819
 */
1820
static int
1821
codegen_check_compare(compiler *c, expr_ty e)
1822
6.07k
{
1823
6.07k
    Py_ssize_t i, n;
1824
6.07k
    bool left = check_is_arg(e->v.Compare.left);
1825
6.07k
    expr_ty left_expr = e->v.Compare.left;
1826
6.07k
    n = asdl_seq_LEN(e->v.Compare.ops);
1827
12.2k
    for (i = 0; i < n; i++) {
1828
6.14k
        cmpop_ty op = (cmpop_ty)asdl_seq_GET(e->v.Compare.ops, i);
1829
6.14k
        expr_ty right_expr = (expr_ty)asdl_seq_GET(e->v.Compare.comparators, i);
1830
6.14k
        bool right = check_is_arg(right_expr);
1831
6.14k
        if (op == Is || op == IsNot) {
1832
2.03k
            if (!right || !left) {
1833
0
                const char *msg = (op == Is)
1834
0
                        ? "\"is\" with '%.200s' literal. Did you mean \"==\"?"
1835
0
                        : "\"is not\" with '%.200s' literal. Did you mean \"!=\"?";
1836
0
                expr_ty literal = !left ? left_expr : right_expr;
1837
0
                return _PyCompile_Warn(
1838
0
                    c, LOC(e), msg, infer_type(literal)->tp_name
1839
0
                );
1840
0
            }
1841
2.03k
        }
1842
6.14k
        left = right;
1843
6.14k
        left_expr = right_expr;
1844
6.14k
    }
1845
6.07k
    return SUCCESS;
1846
6.07k
}
1847
1848
static int
1849
codegen_addcompare(compiler *c, location loc, cmpop_ty op)
1850
6.22k
{
1851
6.22k
    int cmp;
1852
6.22k
    switch (op) {
1853
1.59k
    case Eq:
1854
1.59k
        cmp = Py_EQ;
1855
1.59k
        break;
1856
450
    case NotEq:
1857
450
        cmp = Py_NE;
1858
450
        break;
1859
343
    case Lt:
1860
343
        cmp = Py_LT;
1861
343
        break;
1862
177
    case LtE:
1863
177
        cmp = Py_LE;
1864
177
        break;
1865
283
    case Gt:
1866
283
        cmp = Py_GT;
1867
283
        break;
1868
113
    case GtE:
1869
113
        cmp = Py_GE;
1870
113
        break;
1871
1.32k
    case Is:
1872
1.32k
        ADDOP_I(c, loc, IS_OP, 0);
1873
1.32k
        return SUCCESS;
1874
771
    case IsNot:
1875
771
        ADDOP_I(c, loc, IS_OP, 1);
1876
771
        return SUCCESS;
1877
860
    case In:
1878
860
        ADDOP_I(c, loc, CONTAINS_OP, 0);
1879
860
        return SUCCESS;
1880
307
    case NotIn:
1881
307
        ADDOP_I(c, loc, CONTAINS_OP, 1);
1882
307
        return SUCCESS;
1883
0
    default:
1884
0
        Py_UNREACHABLE();
1885
6.22k
    }
1886
    // cmp goes in top three bits of the oparg, while the low four bits are used
1887
    // by quickened versions of this opcode to store the comparison mask. The
1888
    // fifth-lowest bit indicates whether the result should be converted to bool
1889
    // and is set later):
1890
2.95k
    ADDOP_I(c, loc, COMPARE_OP, (cmp << 5) | compare_masks[cmp]);
1891
2.95k
    return SUCCESS;
1892
2.95k
}
1893
1894
static int
1895
codegen_jump_if(compiler *c, location loc,
1896
                expr_ty e, jump_target_label next, int cond)
1897
12.1k
{
1898
12.1k
    switch (e->kind) {
1899
1.20k
    case UnaryOp_kind:
1900
1.20k
        if (e->v.UnaryOp.op == Not) {
1901
1.20k
            return codegen_jump_if(c, loc, e->v.UnaryOp.operand, next, !cond);
1902
1.20k
        }
1903
        /* fallback to general implementation */
1904
0
        break;
1905
1.19k
    case BoolOp_kind: {
1906
1.19k
        asdl_expr_seq *s = e->v.BoolOp.values;
1907
1.19k
        Py_ssize_t i, n = asdl_seq_LEN(s) - 1;
1908
1.19k
        assert(n >= 0);
1909
1.19k
        int cond2 = e->v.BoolOp.op == Or;
1910
1.19k
        jump_target_label next2 = next;
1911
1.19k
        if (!cond2 != !cond) {
1912
396
            NEW_JUMP_TARGET_LABEL(c, new_next2);
1913
396
            next2 = new_next2;
1914
396
        }
1915
2.59k
        for (i = 0; i < n; ++i) {
1916
1.39k
            RETURN_IF_ERROR(
1917
1.39k
                codegen_jump_if(c, loc, (expr_ty)asdl_seq_GET(s, i), next2, cond2));
1918
1.39k
        }
1919
1.19k
        RETURN_IF_ERROR(
1920
1.19k
            codegen_jump_if(c, loc, (expr_ty)asdl_seq_GET(s, n), next, cond));
1921
1.19k
        if (!SAME_JUMP_TARGET_LABEL(next2, next)) {
1922
396
            USE_LABEL(c, next2);
1923
396
        }
1924
1.19k
        return SUCCESS;
1925
1.19k
    }
1926
1
    case IfExp_kind: {
1927
1
        NEW_JUMP_TARGET_LABEL(c, end);
1928
1
        NEW_JUMP_TARGET_LABEL(c, next2);
1929
1
        RETURN_IF_ERROR(
1930
1
            codegen_jump_if(c, loc, e->v.IfExp.test, next2, 0));
1931
1
        RETURN_IF_ERROR(
1932
1
            codegen_jump_if(c, loc, e->v.IfExp.body, next, cond));
1933
1
        ADDOP_JUMP(c, NO_LOCATION, JUMP_NO_INTERRUPT, end);
1934
1935
1
        USE_LABEL(c, next2);
1936
1
        RETURN_IF_ERROR(
1937
1
            codegen_jump_if(c, loc, e->v.IfExp.orelse, next, cond));
1938
1939
1
        USE_LABEL(c, end);
1940
1
        return SUCCESS;
1941
1
    }
1942
5.49k
    case Compare_kind: {
1943
5.49k
        Py_ssize_t n = asdl_seq_LEN(e->v.Compare.ops) - 1;
1944
5.49k
        if (n > 0) {
1945
49
            RETURN_IF_ERROR(codegen_check_compare(c, e));
1946
49
            NEW_JUMP_TARGET_LABEL(c, cleanup);
1947
49
            VISIT(c, expr, e->v.Compare.left);
1948
98
            for (Py_ssize_t i = 0; i < n; i++) {
1949
49
                VISIT(c, expr,
1950
49
                    (expr_ty)asdl_seq_GET(e->v.Compare.comparators, i));
1951
49
                ADDOP_I(c, LOC(e), SWAP, 2);
1952
49
                ADDOP_I(c, LOC(e), COPY, 2);
1953
49
                ADDOP_COMPARE(c, LOC(e), asdl_seq_GET(e->v.Compare.ops, i));
1954
49
                ADDOP(c, LOC(e), TO_BOOL);
1955
49
                ADDOP_JUMP(c, LOC(e), POP_JUMP_IF_FALSE, cleanup);
1956
49
            }
1957
49
            VISIT(c, expr, (expr_ty)asdl_seq_GET(e->v.Compare.comparators, n));
1958
49
            ADDOP_COMPARE(c, LOC(e), asdl_seq_GET(e->v.Compare.ops, n));
1959
49
            ADDOP(c, LOC(e), TO_BOOL);
1960
49
            ADDOP_JUMP(c, LOC(e), cond ? POP_JUMP_IF_TRUE : POP_JUMP_IF_FALSE, next);
1961
49
            NEW_JUMP_TARGET_LABEL(c, end);
1962
49
            ADDOP_JUMP(c, NO_LOCATION, JUMP_NO_INTERRUPT, end);
1963
1964
49
            USE_LABEL(c, cleanup);
1965
49
            ADDOP(c, LOC(e), POP_TOP);
1966
49
            if (!cond) {
1967
23
                ADDOP_JUMP(c, NO_LOCATION, JUMP_NO_INTERRUPT, next);
1968
23
            }
1969
1970
49
            USE_LABEL(c, end);
1971
49
            return SUCCESS;
1972
49
        }
1973
        /* fallback to general implementation */
1974
5.45k
        break;
1975
5.49k
    }
1976
5.45k
    default:
1977
        /* fallback to general implementation */
1978
4.20k
        break;
1979
12.1k
    }
1980
1981
    /* general implementation */
1982
9.65k
    VISIT(c, expr, e);
1983
9.65k
    ADDOP(c, LOC(e), TO_BOOL);
1984
9.65k
    ADDOP_JUMP(c, LOC(e), cond ? POP_JUMP_IF_TRUE : POP_JUMP_IF_FALSE, next);
1985
9.65k
    return SUCCESS;
1986
9.65k
}
1987
1988
static int
1989
codegen_ifexp(compiler *c, expr_ty e)
1990
213
{
1991
213
    assert(e->kind == IfExp_kind);
1992
213
    NEW_JUMP_TARGET_LABEL(c, end);
1993
213
    NEW_JUMP_TARGET_LABEL(c, next);
1994
1995
213
    RETURN_IF_ERROR(
1996
213
        codegen_jump_if(c, LOC(e), e->v.IfExp.test, next, 0));
1997
1998
213
    VISIT(c, expr, e->v.IfExp.body);
1999
213
    ADDOP_JUMP(c, NO_LOCATION, JUMP_NO_INTERRUPT, end);
2000
2001
213
    USE_LABEL(c, next);
2002
213
    VISIT(c, expr, e->v.IfExp.orelse);
2003
2004
213
    USE_LABEL(c, end);
2005
213
    return SUCCESS;
2006
213
}
2007
2008
static int
2009
codegen_lambda(compiler *c, expr_ty e)
2010
145
{
2011
145
    PyCodeObject *co;
2012
145
    Py_ssize_t funcflags;
2013
145
    arguments_ty args = e->v.Lambda.args;
2014
145
    assert(e->kind == Lambda_kind);
2015
2016
145
    location loc = LOC(e);
2017
145
    funcflags = codegen_default_arguments(c, loc, args);
2018
145
    RETURN_IF_ERROR(funcflags);
2019
2020
145
    _PyCompile_CodeUnitMetadata umd = {
2021
145
        .u_argcount = asdl_seq_LEN(args->args),
2022
145
        .u_posonlyargcount = asdl_seq_LEN(args->posonlyargs),
2023
145
        .u_kwonlyargcount = asdl_seq_LEN(args->kwonlyargs),
2024
145
    };
2025
145
    _Py_DECLARE_STR(anon_lambda, "<lambda>");
2026
145
    RETURN_IF_ERROR(
2027
145
        codegen_enter_scope(c, &_Py_STR(anon_lambda), COMPILE_SCOPE_LAMBDA,
2028
145
                            (void *)e, e->lineno, NULL, &umd));
2029
2030
145
    assert(!SYMTABLE_ENTRY(c)->ste_has_docstring);
2031
2032
145
    VISIT_IN_SCOPE(c, expr, e->v.Lambda.body);
2033
145
    if (SYMTABLE_ENTRY(c)->ste_generator) {
2034
0
        co = _PyCompile_OptimizeAndAssemble(c, 0);
2035
0
    }
2036
145
    else {
2037
145
        location loc = LOC(e->v.Lambda.body);
2038
145
        ADDOP_IN_SCOPE(c, loc, RETURN_VALUE);
2039
145
        co = _PyCompile_OptimizeAndAssemble(c, 1);
2040
145
    }
2041
145
    _PyCompile_ExitScope(c);
2042
145
    if (co == NULL) {
2043
0
        return ERROR;
2044
0
    }
2045
2046
145
    int ret = codegen_make_closure(c, loc, co, funcflags);
2047
145
    Py_DECREF(co);
2048
145
    RETURN_IF_ERROR(ret);
2049
145
    return SUCCESS;
2050
145
}
2051
2052
static int
2053
codegen_if(compiler *c, stmt_ty s)
2054
7.60k
{
2055
7.60k
    jump_target_label next;
2056
7.60k
    assert(s->kind == If_kind);
2057
7.60k
    NEW_JUMP_TARGET_LABEL(c, end);
2058
7.60k
    if (asdl_seq_LEN(s->v.If.orelse)) {
2059
2.28k
        NEW_JUMP_TARGET_LABEL(c, orelse);
2060
2.28k
        next = orelse;
2061
2.28k
    }
2062
5.31k
    else {
2063
5.31k
        next = end;
2064
5.31k
    }
2065
7.60k
    RETURN_IF_ERROR(
2066
7.60k
        codegen_jump_if(c, LOC(s), s->v.If.test, next, 0));
2067
2068
7.60k
    VISIT_SEQ(c, stmt, s->v.If.body);
2069
7.60k
    if (asdl_seq_LEN(s->v.If.orelse)) {
2070
2.28k
        ADDOP_JUMP(c, NO_LOCATION, JUMP_NO_INTERRUPT, end);
2071
2072
2.28k
        USE_LABEL(c, next);
2073
2.28k
        VISIT_SEQ(c, stmt, s->v.If.orelse);
2074
2.28k
    }
2075
2076
7.60k
    USE_LABEL(c, end);
2077
7.60k
    return SUCCESS;
2078
7.60k
}
2079
2080
static int
2081
codegen_for(compiler *c, stmt_ty s)
2082
975
{
2083
975
    location loc = LOC(s);
2084
975
    NEW_JUMP_TARGET_LABEL(c, start);
2085
975
    NEW_JUMP_TARGET_LABEL(c, body);
2086
975
    NEW_JUMP_TARGET_LABEL(c, cleanup);
2087
975
    NEW_JUMP_TARGET_LABEL(c, end);
2088
2089
975
    RETURN_IF_ERROR(_PyCompile_PushFBlock(c, loc, COMPILE_FBLOCK_FOR_LOOP, start, end, NULL));
2090
2091
975
    VISIT(c, expr, s->v.For.iter);
2092
2093
975
    loc = LOC(s->v.For.iter);
2094
975
    ADDOP(c, loc, GET_ITER);
2095
2096
975
    USE_LABEL(c, start);
2097
975
    ADDOP_JUMP(c, loc, FOR_ITER, cleanup);
2098
2099
    /* Add NOP to ensure correct line tracing of multiline for statements.
2100
     * It will be removed later if redundant.
2101
     */
2102
975
    ADDOP(c, LOC(s->v.For.target), NOP);
2103
2104
975
    USE_LABEL(c, body);
2105
975
    VISIT(c, expr, s->v.For.target);
2106
975
    VISIT_SEQ(c, stmt, s->v.For.body);
2107
    /* Mark jump as artificial */
2108
975
    ADDOP_JUMP(c, NO_LOCATION, JUMP, start);
2109
2110
975
    USE_LABEL(c, cleanup);
2111
    /* It is important for instrumentation that the `END_FOR` comes first.
2112
    * Iteration over a generator will jump to the first of these instructions,
2113
    * but a non-generator will jump to a later instruction.
2114
    */
2115
975
    ADDOP(c, NO_LOCATION, END_FOR);
2116
975
    ADDOP(c, NO_LOCATION, POP_ITER);
2117
2118
975
    _PyCompile_PopFBlock(c, COMPILE_FBLOCK_FOR_LOOP, start);
2119
2120
975
    VISIT_SEQ(c, stmt, s->v.For.orelse);
2121
2122
975
    USE_LABEL(c, end);
2123
975
    return SUCCESS;
2124
975
}
2125
2126
static int
2127
codegen_async_for(compiler *c, stmt_ty s)
2128
0
{
2129
0
    location loc = LOC(s);
2130
2131
0
    NEW_JUMP_TARGET_LABEL(c, start);
2132
0
    NEW_JUMP_TARGET_LABEL(c, send);
2133
0
    NEW_JUMP_TARGET_LABEL(c, except);
2134
0
    NEW_JUMP_TARGET_LABEL(c, end);
2135
2136
0
    VISIT(c, expr, s->v.AsyncFor.iter);
2137
0
    ADDOP(c, LOC(s->v.AsyncFor.iter), GET_AITER);
2138
2139
0
    USE_LABEL(c, start);
2140
0
    RETURN_IF_ERROR(_PyCompile_PushFBlock(c, loc, COMPILE_FBLOCK_ASYNC_FOR_LOOP, start, end, NULL));
2141
2142
    /* SETUP_FINALLY to guard the __anext__ call */
2143
0
    ADDOP_JUMP(c, loc, SETUP_FINALLY, except);
2144
0
    ADDOP(c, loc, GET_ANEXT);
2145
0
    ADDOP_LOAD_CONST(c, loc, Py_None);
2146
0
    USE_LABEL(c, send);
2147
0
    ADD_YIELD_FROM(c, loc, 1);
2148
0
    ADDOP(c, loc, POP_BLOCK);  /* for SETUP_FINALLY */
2149
0
    ADDOP(c, loc, NOT_TAKEN);
2150
2151
    /* Success block for __anext__ */
2152
0
    VISIT(c, expr, s->v.AsyncFor.target);
2153
0
    VISIT_SEQ(c, stmt, s->v.AsyncFor.body);
2154
    /* Mark jump as artificial */
2155
0
    ADDOP_JUMP(c, NO_LOCATION, JUMP, start);
2156
2157
0
    _PyCompile_PopFBlock(c, COMPILE_FBLOCK_ASYNC_FOR_LOOP, start);
2158
2159
    /* Except block for __anext__ */
2160
0
    USE_LABEL(c, except);
2161
2162
    /* Use same line number as the iterator,
2163
     * as the END_ASYNC_FOR succeeds the `for`, not the body. */
2164
0
    loc = LOC(s->v.AsyncFor.iter);
2165
0
    ADDOP_JUMP(c, loc, END_ASYNC_FOR, send);
2166
2167
    /* `else` block */
2168
0
    VISIT_SEQ(c, stmt, s->v.AsyncFor.orelse);
2169
2170
0
    USE_LABEL(c, end);
2171
0
    return SUCCESS;
2172
0
}
2173
2174
static int
2175
codegen_while(compiler *c, stmt_ty s)
2176
290
{
2177
290
    NEW_JUMP_TARGET_LABEL(c, loop);
2178
290
    NEW_JUMP_TARGET_LABEL(c, end);
2179
290
    NEW_JUMP_TARGET_LABEL(c, anchor);
2180
2181
290
    USE_LABEL(c, loop);
2182
2183
290
    RETURN_IF_ERROR(_PyCompile_PushFBlock(c, LOC(s), COMPILE_FBLOCK_WHILE_LOOP, loop, end, NULL));
2184
290
    RETURN_IF_ERROR(codegen_jump_if(c, LOC(s), s->v.While.test, anchor, 0));
2185
2186
290
    VISIT_SEQ(c, stmt, s->v.While.body);
2187
290
    ADDOP_JUMP(c, NO_LOCATION, JUMP, loop);
2188
2189
290
    _PyCompile_PopFBlock(c, COMPILE_FBLOCK_WHILE_LOOP, loop);
2190
2191
290
    USE_LABEL(c, anchor);
2192
290
    if (s->v.While.orelse) {
2193
2
        VISIT_SEQ(c, stmt, s->v.While.orelse);
2194
2
    }
2195
2196
290
    USE_LABEL(c, end);
2197
290
    return SUCCESS;
2198
290
}
2199
2200
static int
2201
codegen_return(compiler *c, stmt_ty s)
2202
5.23k
{
2203
5.23k
    location loc = LOC(s);
2204
5.23k
    int preserve_tos = ((s->v.Return.value != NULL) &&
2205
5.23k
                        (s->v.Return.value->kind != Constant_kind));
2206
2207
5.23k
    PySTEntryObject *ste = SYMTABLE_ENTRY(c);
2208
5.23k
    if (!_PyST_IsFunctionLike(ste)) {
2209
0
        return _PyCompile_Error(c, loc, "'return' outside function");
2210
0
    }
2211
5.23k
    if (s->v.Return.value != NULL && ste->ste_coroutine && ste->ste_generator) {
2212
0
        return _PyCompile_Error(c, loc, "'return' with value in async generator");
2213
0
    }
2214
2215
5.23k
    if (preserve_tos) {
2216
4.59k
        VISIT(c, expr, s->v.Return.value);
2217
4.59k
    } else {
2218
        /* Emit instruction with line number for return value */
2219
638
        if (s->v.Return.value != NULL) {
2220
491
            loc = LOC(s->v.Return.value);
2221
491
            ADDOP(c, loc, NOP);
2222
491
        }
2223
638
    }
2224
5.23k
    if (s->v.Return.value == NULL || s->v.Return.value->lineno != s->lineno) {
2225
169
        loc = LOC(s);
2226
169
        ADDOP(c, loc, NOP);
2227
169
    }
2228
2229
5.23k
    RETURN_IF_ERROR(codegen_unwind_fblock_stack(c, &loc, preserve_tos, NULL));
2230
5.23k
    if (s->v.Return.value == NULL) {
2231
147
        ADDOP_LOAD_CONST(c, loc, Py_None);
2232
147
    }
2233
5.08k
    else if (!preserve_tos) {
2234
491
        ADDOP_LOAD_CONST(c, loc, s->v.Return.value->v.Constant.value);
2235
491
    }
2236
5.23k
    ADDOP(c, loc, RETURN_VALUE);
2237
2238
5.23k
    return SUCCESS;
2239
5.23k
}
2240
2241
static int
2242
codegen_break(compiler *c, location loc)
2243
278
{
2244
278
    fblockinfo *loop = NULL;
2245
278
    location origin_loc = loc;
2246
    /* Emit instruction with line number */
2247
278
    ADDOP(c, loc, NOP);
2248
278
    RETURN_IF_ERROR(codegen_unwind_fblock_stack(c, &loc, 0, &loop));
2249
278
    if (loop == NULL) {
2250
0
        return _PyCompile_Error(c, origin_loc, "'break' outside loop");
2251
0
    }
2252
278
    RETURN_IF_ERROR(codegen_unwind_fblock(c, &loc, loop, 0));
2253
278
    ADDOP_JUMP(c, loc, JUMP, loop->fb_exit);
2254
278
    return SUCCESS;
2255
278
}
2256
2257
static int
2258
codegen_continue(compiler *c, location loc)
2259
251
{
2260
251
    fblockinfo *loop = NULL;
2261
251
    location origin_loc = loc;
2262
    /* Emit instruction with line number */
2263
251
    ADDOP(c, loc, NOP);
2264
251
    RETURN_IF_ERROR(codegen_unwind_fblock_stack(c, &loc, 0, &loop));
2265
251
    if (loop == NULL) {
2266
0
        return _PyCompile_Error(c, origin_loc, "'continue' not properly in loop");
2267
0
    }
2268
251
    ADDOP_JUMP(c, loc, JUMP, loop->fb_block);
2269
251
    return SUCCESS;
2270
251
}
2271
2272
2273
/* Code generated for "try: <body> finally: <finalbody>" is as follows:
2274
2275
        SETUP_FINALLY           L
2276
        <code for body>
2277
        POP_BLOCK
2278
        <code for finalbody>
2279
        JUMP E
2280
    L:
2281
        <code for finalbody>
2282
    E:
2283
2284
   The special instructions use the block stack.  Each block
2285
   stack entry contains the instruction that created it (here
2286
   SETUP_FINALLY), the level of the value stack at the time the
2287
   block stack entry was created, and a label (here L).
2288
2289
   SETUP_FINALLY:
2290
    Pushes the current value stack level and the label
2291
    onto the block stack.
2292
   POP_BLOCK:
2293
    Pops en entry from the block stack.
2294
2295
   The block stack is unwound when an exception is raised:
2296
   when a SETUP_FINALLY entry is found, the raised and the caught
2297
   exceptions are pushed onto the value stack (and the exception
2298
   condition is cleared), and the interpreter jumps to the label
2299
   gotten from the block stack.
2300
*/
2301
2302
static int
2303
codegen_try_finally(compiler *c, stmt_ty s)
2304
54
{
2305
54
    location loc = LOC(s);
2306
2307
54
    NEW_JUMP_TARGET_LABEL(c, body);
2308
54
    NEW_JUMP_TARGET_LABEL(c, end);
2309
54
    NEW_JUMP_TARGET_LABEL(c, exit);
2310
54
    NEW_JUMP_TARGET_LABEL(c, cleanup);
2311
2312
    /* `try` block */
2313
54
    ADDOP_JUMP(c, loc, SETUP_FINALLY, end);
2314
2315
54
    USE_LABEL(c, body);
2316
54
    RETURN_IF_ERROR(
2317
54
        _PyCompile_PushFBlock(c, loc, COMPILE_FBLOCK_FINALLY_TRY, body, end,
2318
54
                              s->v.Try.finalbody));
2319
2320
54
    if (s->v.Try.handlers && asdl_seq_LEN(s->v.Try.handlers)) {
2321
0
        RETURN_IF_ERROR(codegen_try_except(c, s));
2322
0
    }
2323
54
    else {
2324
54
        VISIT_SEQ(c, stmt, s->v.Try.body);
2325
54
    }
2326
54
    ADDOP(c, NO_LOCATION, POP_BLOCK);
2327
54
    _PyCompile_PopFBlock(c, COMPILE_FBLOCK_FINALLY_TRY, body);
2328
54
    VISIT_SEQ(c, stmt, s->v.Try.finalbody);
2329
2330
54
    ADDOP_JUMP(c, NO_LOCATION, JUMP_NO_INTERRUPT, exit);
2331
    /* `finally` block */
2332
2333
54
    USE_LABEL(c, end);
2334
2335
54
    loc = NO_LOCATION;
2336
54
    ADDOP_JUMP(c, loc, SETUP_CLEANUP, cleanup);
2337
54
    ADDOP(c, loc, PUSH_EXC_INFO);
2338
54
    RETURN_IF_ERROR(
2339
54
        _PyCompile_PushFBlock(c, loc, COMPILE_FBLOCK_FINALLY_END, end, NO_LABEL, NULL));
2340
54
    VISIT_SEQ(c, stmt, s->v.Try.finalbody);
2341
54
    _PyCompile_PopFBlock(c, COMPILE_FBLOCK_FINALLY_END, end);
2342
2343
54
    loc = NO_LOCATION;
2344
54
    ADDOP_I(c, loc, RERAISE, 0);
2345
2346
54
    USE_LABEL(c, cleanup);
2347
54
    POP_EXCEPT_AND_RERAISE(c, loc);
2348
2349
54
    USE_LABEL(c, exit);
2350
54
    return SUCCESS;
2351
54
}
2352
2353
static int
2354
codegen_try_star_finally(compiler *c, stmt_ty s)
2355
0
{
2356
0
    location loc = LOC(s);
2357
2358
0
    NEW_JUMP_TARGET_LABEL(c, body);
2359
0
    NEW_JUMP_TARGET_LABEL(c, end);
2360
0
    NEW_JUMP_TARGET_LABEL(c, exit);
2361
0
    NEW_JUMP_TARGET_LABEL(c, cleanup);
2362
    /* `try` block */
2363
0
    ADDOP_JUMP(c, loc, SETUP_FINALLY, end);
2364
2365
0
    USE_LABEL(c, body);
2366
0
    RETURN_IF_ERROR(
2367
0
        _PyCompile_PushFBlock(c, loc, COMPILE_FBLOCK_FINALLY_TRY, body, end,
2368
0
                              s->v.TryStar.finalbody));
2369
2370
0
    if (s->v.TryStar.handlers && asdl_seq_LEN(s->v.TryStar.handlers)) {
2371
0
        RETURN_IF_ERROR(codegen_try_star_except(c, s));
2372
0
    }
2373
0
    else {
2374
0
        VISIT_SEQ(c, stmt, s->v.TryStar.body);
2375
0
    }
2376
0
    ADDOP(c, NO_LOCATION, POP_BLOCK);
2377
0
    _PyCompile_PopFBlock(c, COMPILE_FBLOCK_FINALLY_TRY, body);
2378
0
    VISIT_SEQ(c, stmt, s->v.TryStar.finalbody);
2379
2380
0
    ADDOP_JUMP(c, NO_LOCATION, JUMP_NO_INTERRUPT, exit);
2381
2382
    /* `finally` block */
2383
0
    USE_LABEL(c, end);
2384
2385
0
    loc = NO_LOCATION;
2386
0
    ADDOP_JUMP(c, loc, SETUP_CLEANUP, cleanup);
2387
0
    ADDOP(c, loc, PUSH_EXC_INFO);
2388
0
    RETURN_IF_ERROR(
2389
0
        _PyCompile_PushFBlock(c, loc, COMPILE_FBLOCK_FINALLY_END, end, NO_LABEL, NULL));
2390
2391
0
    VISIT_SEQ(c, stmt, s->v.TryStar.finalbody);
2392
2393
0
    _PyCompile_PopFBlock(c, COMPILE_FBLOCK_FINALLY_END, end);
2394
0
    loc = NO_LOCATION;
2395
0
    ADDOP_I(c, loc, RERAISE, 0);
2396
2397
0
    USE_LABEL(c, cleanup);
2398
0
    POP_EXCEPT_AND_RERAISE(c, loc);
2399
2400
0
    USE_LABEL(c, exit);
2401
0
    return SUCCESS;
2402
0
}
2403
2404
2405
/*
2406
   Code generated for "try: S except E1 as V1: S1 except E2 as V2: S2 ...":
2407
   (The contents of the value stack is shown in [], with the top
2408
   at the right; 'tb' is trace-back info, 'val' the exception's
2409
   associated value, and 'exc' the exception.)
2410
2411
   Value stack          Label   Instruction     Argument
2412
   []                           SETUP_FINALLY   L1
2413
   []                           <code for S>
2414
   []                           POP_BLOCK
2415
   []                           JUMP            L0
2416
2417
   [exc]                L1:     <evaluate E1>           )
2418
   [exc, E1]                    CHECK_EXC_MATCH         )
2419
   [exc, bool]                  POP_JUMP_IF_FALSE L2    ) only if E1
2420
   [exc]                        <assign to V1>  (or POP if no V1)
2421
   []                           <code for S1>
2422
                                JUMP            L0
2423
2424
   [exc]                L2:     <evaluate E2>
2425
   .............................etc.......................
2426
2427
   [exc]                Ln+1:   RERAISE     # re-raise exception
2428
2429
   []                   L0:     <next statement>
2430
2431
   Of course, parts are not generated if Vi or Ei is not present.
2432
*/
2433
static int
2434
codegen_try_except(compiler *c, stmt_ty s)
2435
778
{
2436
778
    location loc = LOC(s);
2437
778
    Py_ssize_t i, n;
2438
2439
778
    NEW_JUMP_TARGET_LABEL(c, body);
2440
778
    NEW_JUMP_TARGET_LABEL(c, except);
2441
778
    NEW_JUMP_TARGET_LABEL(c, end);
2442
778
    NEW_JUMP_TARGET_LABEL(c, cleanup);
2443
2444
778
    ADDOP_JUMP(c, loc, SETUP_FINALLY, except);
2445
2446
778
    USE_LABEL(c, body);
2447
778
    RETURN_IF_ERROR(
2448
778
        _PyCompile_PushFBlock(c, loc, COMPILE_FBLOCK_TRY_EXCEPT, body, NO_LABEL, NULL));
2449
778
    VISIT_SEQ(c, stmt, s->v.Try.body);
2450
778
    _PyCompile_PopFBlock(c, COMPILE_FBLOCK_TRY_EXCEPT, body);
2451
778
    ADDOP(c, NO_LOCATION, POP_BLOCK);
2452
778
    if (s->v.Try.orelse && asdl_seq_LEN(s->v.Try.orelse)) {
2453
88
        VISIT_SEQ(c, stmt, s->v.Try.orelse);
2454
88
    }
2455
778
    ADDOP_JUMP(c, NO_LOCATION, JUMP_NO_INTERRUPT, end);
2456
778
    n = asdl_seq_LEN(s->v.Try.handlers);
2457
2458
778
    USE_LABEL(c, except);
2459
2460
778
    ADDOP_JUMP(c, NO_LOCATION, SETUP_CLEANUP, cleanup);
2461
778
    ADDOP(c, NO_LOCATION, PUSH_EXC_INFO);
2462
2463
    /* Runtime will push a block here, so we need to account for that */
2464
778
    RETURN_IF_ERROR(
2465
778
        _PyCompile_PushFBlock(c, loc, COMPILE_FBLOCK_EXCEPTION_HANDLER,
2466
778
                              NO_LABEL, NO_LABEL, NULL));
2467
2468
1.60k
    for (i = 0; i < n; i++) {
2469
822
        excepthandler_ty handler = (excepthandler_ty)asdl_seq_GET(
2470
822
            s->v.Try.handlers, i);
2471
822
        location loc = LOC(handler);
2472
822
        if (!handler->v.ExceptHandler.type && i < n-1) {
2473
0
            return _PyCompile_Error(c, loc, "default 'except:' must be last");
2474
0
        }
2475
822
        NEW_JUMP_TARGET_LABEL(c, next_except);
2476
822
        except = next_except;
2477
822
        if (handler->v.ExceptHandler.type) {
2478
798
            VISIT(c, expr, handler->v.ExceptHandler.type);
2479
798
            ADDOP(c, loc, CHECK_EXC_MATCH);
2480
798
            ADDOP_JUMP(c, loc, POP_JUMP_IF_FALSE, except);
2481
798
        }
2482
822
        if (handler->v.ExceptHandler.name) {
2483
138
            NEW_JUMP_TARGET_LABEL(c, cleanup_end);
2484
138
            NEW_JUMP_TARGET_LABEL(c, cleanup_body);
2485
2486
138
            RETURN_IF_ERROR(
2487
138
                codegen_nameop(c, loc, handler->v.ExceptHandler.name, Store));
2488
2489
            /*
2490
              try:
2491
                  # body
2492
              except type as name:
2493
                  try:
2494
                      # body
2495
                  finally:
2496
                      name = None # in case body contains "del name"
2497
                      del name
2498
            */
2499
2500
            /* second try: */
2501
138
            ADDOP_JUMP(c, loc, SETUP_CLEANUP, cleanup_end);
2502
2503
138
            USE_LABEL(c, cleanup_body);
2504
138
            RETURN_IF_ERROR(
2505
138
                _PyCompile_PushFBlock(c, loc, COMPILE_FBLOCK_HANDLER_CLEANUP, cleanup_body,
2506
138
                                      NO_LABEL, handler->v.ExceptHandler.name));
2507
2508
            /* second # body */
2509
138
            VISIT_SEQ(c, stmt, handler->v.ExceptHandler.body);
2510
138
            _PyCompile_PopFBlock(c, COMPILE_FBLOCK_HANDLER_CLEANUP, cleanup_body);
2511
            /* name = None; del name; # Mark as artificial */
2512
138
            ADDOP(c, NO_LOCATION, POP_BLOCK);
2513
138
            ADDOP(c, NO_LOCATION, POP_BLOCK);
2514
138
            ADDOP(c, NO_LOCATION, POP_EXCEPT);
2515
138
            ADDOP_LOAD_CONST(c, NO_LOCATION, Py_None);
2516
138
            RETURN_IF_ERROR(
2517
138
                codegen_nameop(c, NO_LOCATION, handler->v.ExceptHandler.name, Store));
2518
138
            RETURN_IF_ERROR(
2519
138
                codegen_nameop(c, NO_LOCATION, handler->v.ExceptHandler.name, Del));
2520
138
            ADDOP_JUMP(c, NO_LOCATION, JUMP_NO_INTERRUPT, end);
2521
2522
            /* except: */
2523
138
            USE_LABEL(c, cleanup_end);
2524
2525
            /* name = None; del name; # artificial */
2526
138
            ADDOP_LOAD_CONST(c, NO_LOCATION, Py_None);
2527
138
            RETURN_IF_ERROR(
2528
138
                codegen_nameop(c, NO_LOCATION, handler->v.ExceptHandler.name, Store));
2529
138
            RETURN_IF_ERROR(
2530
138
                codegen_nameop(c, NO_LOCATION, handler->v.ExceptHandler.name, Del));
2531
2532
138
            ADDOP_I(c, NO_LOCATION, RERAISE, 1);
2533
138
        }
2534
684
        else {
2535
684
            NEW_JUMP_TARGET_LABEL(c, cleanup_body);
2536
2537
684
            ADDOP(c, loc, POP_TOP); /* exc_value */
2538
2539
684
            USE_LABEL(c, cleanup_body);
2540
684
            RETURN_IF_ERROR(
2541
684
                _PyCompile_PushFBlock(c, loc, COMPILE_FBLOCK_HANDLER_CLEANUP, cleanup_body,
2542
684
                                      NO_LABEL, NULL));
2543
2544
684
            VISIT_SEQ(c, stmt, handler->v.ExceptHandler.body);
2545
684
            _PyCompile_PopFBlock(c, COMPILE_FBLOCK_HANDLER_CLEANUP, cleanup_body);
2546
684
            ADDOP(c, NO_LOCATION, POP_BLOCK);
2547
684
            ADDOP(c, NO_LOCATION, POP_EXCEPT);
2548
684
            ADDOP_JUMP(c, NO_LOCATION, JUMP_NO_INTERRUPT, end);
2549
684
        }
2550
2551
822
        USE_LABEL(c, except);
2552
822
    }
2553
    /* artificial */
2554
778
    _PyCompile_PopFBlock(c, COMPILE_FBLOCK_EXCEPTION_HANDLER, NO_LABEL);
2555
778
    ADDOP_I(c, NO_LOCATION, RERAISE, 0);
2556
2557
778
    USE_LABEL(c, cleanup);
2558
778
    POP_EXCEPT_AND_RERAISE(c, NO_LOCATION);
2559
2560
778
    USE_LABEL(c, end);
2561
778
    return SUCCESS;
2562
778
}
2563
2564
/*
2565
   Code generated for "try: S except* E1 as V1: S1 except* E2 as V2: S2 ...":
2566
   (The contents of the value stack is shown in [], with the top
2567
   at the right; 'tb' is trace-back info, 'val' the exception instance,
2568
   and 'typ' the exception's type.)
2569
2570
   Value stack                   Label         Instruction     Argument
2571
   []                                         SETUP_FINALLY         L1
2572
   []                                         <code for S>
2573
   []                                         POP_BLOCK
2574
   []                                         JUMP                  L0
2575
2576
   [exc]                            L1:       BUILD_LIST   )  list for raised/reraised excs ("result")
2577
   [orig, res]                                COPY 2       )  make a copy of the original EG
2578
2579
   [orig, res, exc]                           <evaluate E1>
2580
   [orig, res, exc, E1]                       CHECK_EG_MATCH
2581
   [orig, res, rest/exc, match?]              COPY 1
2582
   [orig, res, rest/exc, match?, match?]      POP_JUMP_IF_NONE      C1
2583
2584
   [orig, res, rest, match]                   <assign to V1>  (or POP if no V1)
2585
2586
   [orig, res, rest]                          SETUP_FINALLY         R1
2587
   [orig, res, rest]                          <code for S1>
2588
   [orig, res, rest]                          JUMP                  L2
2589
2590
   [orig, res, rest, i, v]          R1:       LIST_APPEND   3 ) exc raised in except* body - add to res
2591
   [orig, res, rest, i]                       POP
2592
   [orig, res, rest]                          JUMP                  LE2
2593
2594
   [orig, res, rest]                L2:       NOP  ) for lineno
2595
   [orig, res, rest]                          JUMP                  LE2
2596
2597
   [orig, res, rest/exc, None]      C1:       POP
2598
2599
   [orig, res, rest]               LE2:       <evaluate E2>
2600
   .............................etc.......................
2601
2602
   [orig, res, rest]                Ln+1:     LIST_APPEND 1  ) add unhandled exc to res (could be None)
2603
2604
   [orig, res]                                CALL_INTRINSIC_2 PREP_RERAISE_STAR
2605
   [exc]                                      COPY 1
2606
   [exc, exc]                                 POP_JUMP_IF_NOT_NONE  RER
2607
   [exc]                                      POP_TOP
2608
   []                                         JUMP                  L0
2609
2610
   [exc]                            RER:      SWAP 2
2611
   [exc, prev_exc_info]                       POP_EXCEPT
2612
   [exc]                                      RERAISE               0
2613
2614
   []                               L0:       <next statement>
2615
*/
2616
static int
2617
codegen_try_star_except(compiler *c, stmt_ty s)
2618
0
{
2619
0
    location loc = LOC(s);
2620
2621
0
    NEW_JUMP_TARGET_LABEL(c, body);
2622
0
    NEW_JUMP_TARGET_LABEL(c, except);
2623
0
    NEW_JUMP_TARGET_LABEL(c, orelse);
2624
0
    NEW_JUMP_TARGET_LABEL(c, end);
2625
0
    NEW_JUMP_TARGET_LABEL(c, cleanup);
2626
0
    NEW_JUMP_TARGET_LABEL(c, reraise_star);
2627
2628
0
    ADDOP_JUMP(c, loc, SETUP_FINALLY, except);
2629
2630
0
    USE_LABEL(c, body);
2631
0
    RETURN_IF_ERROR(
2632
0
        _PyCompile_PushFBlock(c, loc, COMPILE_FBLOCK_TRY_EXCEPT, body, NO_LABEL, NULL));
2633
0
    VISIT_SEQ(c, stmt, s->v.TryStar.body);
2634
0
    _PyCompile_PopFBlock(c, COMPILE_FBLOCK_TRY_EXCEPT, body);
2635
0
    ADDOP(c, NO_LOCATION, POP_BLOCK);
2636
0
    ADDOP_JUMP(c, NO_LOCATION, JUMP_NO_INTERRUPT, orelse);
2637
0
    Py_ssize_t n = asdl_seq_LEN(s->v.TryStar.handlers);
2638
2639
0
    USE_LABEL(c, except);
2640
2641
0
    ADDOP_JUMP(c, NO_LOCATION, SETUP_CLEANUP, cleanup);
2642
0
    ADDOP(c, NO_LOCATION, PUSH_EXC_INFO);
2643
2644
    /* Runtime will push a block here, so we need to account for that */
2645
0
    RETURN_IF_ERROR(
2646
0
        _PyCompile_PushFBlock(c, loc, COMPILE_FBLOCK_EXCEPTION_GROUP_HANDLER,
2647
0
                              NO_LABEL, NO_LABEL, "except handler"));
2648
2649
0
    for (Py_ssize_t i = 0; i < n; i++) {
2650
0
        excepthandler_ty handler = (excepthandler_ty)asdl_seq_GET(
2651
0
            s->v.TryStar.handlers, i);
2652
0
        location loc = LOC(handler);
2653
0
        NEW_JUMP_TARGET_LABEL(c, next_except);
2654
0
        except = next_except;
2655
0
        NEW_JUMP_TARGET_LABEL(c, except_with_error);
2656
0
        NEW_JUMP_TARGET_LABEL(c, no_match);
2657
0
        if (i == 0) {
2658
            /* create empty list for exceptions raised/reraise in the except* blocks */
2659
            /*
2660
               [orig]       BUILD_LIST
2661
            */
2662
            /* Create a copy of the original EG */
2663
            /*
2664
               [orig, []]   COPY 2
2665
               [orig, [], exc]
2666
            */
2667
0
            ADDOP_I(c, loc, BUILD_LIST, 0);
2668
0
            ADDOP_I(c, loc, COPY, 2);
2669
0
        }
2670
0
        if (handler->v.ExceptHandler.type) {
2671
0
            VISIT(c, expr, handler->v.ExceptHandler.type);
2672
0
            ADDOP(c, loc, CHECK_EG_MATCH);
2673
0
            ADDOP_I(c, loc, COPY, 1);
2674
0
            ADDOP_JUMP(c, loc, POP_JUMP_IF_NONE, no_match);
2675
0
        }
2676
2677
0
        NEW_JUMP_TARGET_LABEL(c, cleanup_end);
2678
0
        NEW_JUMP_TARGET_LABEL(c, cleanup_body);
2679
2680
0
        if (handler->v.ExceptHandler.name) {
2681
0
            RETURN_IF_ERROR(
2682
0
                codegen_nameop(c, loc, handler->v.ExceptHandler.name, Store));
2683
0
        }
2684
0
        else {
2685
0
            ADDOP(c, loc, POP_TOP);  // match
2686
0
        }
2687
2688
        /*
2689
          try:
2690
              # body
2691
          except type as name:
2692
              try:
2693
                  # body
2694
              finally:
2695
                  name = None # in case body contains "del name"
2696
                  del name
2697
        */
2698
        /* second try: */
2699
0
        ADDOP_JUMP(c, loc, SETUP_CLEANUP, cleanup_end);
2700
2701
0
        USE_LABEL(c, cleanup_body);
2702
0
        RETURN_IF_ERROR(
2703
0
            _PyCompile_PushFBlock(c, loc, COMPILE_FBLOCK_HANDLER_CLEANUP, cleanup_body,
2704
0
                                  NO_LABEL, handler->v.ExceptHandler.name));
2705
2706
        /* second # body */
2707
0
        VISIT_SEQ(c, stmt, handler->v.ExceptHandler.body);
2708
0
        _PyCompile_PopFBlock(c, COMPILE_FBLOCK_HANDLER_CLEANUP, cleanup_body);
2709
        /* name = None; del name; # artificial */
2710
0
        ADDOP(c, NO_LOCATION, POP_BLOCK);
2711
0
        if (handler->v.ExceptHandler.name) {
2712
0
            ADDOP_LOAD_CONST(c, NO_LOCATION, Py_None);
2713
0
            RETURN_IF_ERROR(
2714
0
                codegen_nameop(c, NO_LOCATION, handler->v.ExceptHandler.name, Store));
2715
0
            RETURN_IF_ERROR(
2716
0
                codegen_nameop(c, NO_LOCATION, handler->v.ExceptHandler.name, Del));
2717
0
        }
2718
0
        ADDOP_JUMP(c, NO_LOCATION, JUMP_NO_INTERRUPT, except);
2719
2720
        /* except: */
2721
0
        USE_LABEL(c, cleanup_end);
2722
2723
        /* name = None; del name; # artificial */
2724
0
        if (handler->v.ExceptHandler.name) {
2725
0
            ADDOP_LOAD_CONST(c, NO_LOCATION, Py_None);
2726
0
            RETURN_IF_ERROR(
2727
0
                codegen_nameop(c, NO_LOCATION, handler->v.ExceptHandler.name, Store));
2728
0
            RETURN_IF_ERROR(
2729
0
                codegen_nameop(c, NO_LOCATION, handler->v.ExceptHandler.name, Del));
2730
0
        }
2731
2732
        /* add exception raised to the res list */
2733
0
        ADDOP_I(c, NO_LOCATION, LIST_APPEND, 3); // exc
2734
0
        ADDOP(c, NO_LOCATION, POP_TOP); // lasti
2735
0
        ADDOP_JUMP(c, NO_LOCATION, JUMP_NO_INTERRUPT, except_with_error);
2736
2737
0
        USE_LABEL(c, except);
2738
0
        ADDOP(c, NO_LOCATION, NOP);  // to hold a propagated location info
2739
0
        ADDOP_JUMP(c, NO_LOCATION, JUMP_NO_INTERRUPT, except_with_error);
2740
2741
0
        USE_LABEL(c, no_match);
2742
0
        ADDOP(c, loc, POP_TOP);  // match (None)
2743
2744
0
        USE_LABEL(c, except_with_error);
2745
2746
0
        if (i == n - 1) {
2747
            /* Add exc to the list (if not None it's the unhandled part of the EG) */
2748
0
            ADDOP_I(c, NO_LOCATION, LIST_APPEND, 1);
2749
0
            ADDOP_JUMP(c, NO_LOCATION, JUMP_NO_INTERRUPT, reraise_star);
2750
0
        }
2751
0
    }
2752
    /* artificial */
2753
0
    _PyCompile_PopFBlock(c, COMPILE_FBLOCK_EXCEPTION_GROUP_HANDLER, NO_LABEL);
2754
0
    NEW_JUMP_TARGET_LABEL(c, reraise);
2755
2756
0
    USE_LABEL(c, reraise_star);
2757
0
    ADDOP_I(c, NO_LOCATION, CALL_INTRINSIC_2, INTRINSIC_PREP_RERAISE_STAR);
2758
0
    ADDOP_I(c, NO_LOCATION, COPY, 1);
2759
0
    ADDOP_JUMP(c, NO_LOCATION, POP_JUMP_IF_NOT_NONE, reraise);
2760
2761
    /* Nothing to reraise */
2762
0
    ADDOP(c, NO_LOCATION, POP_TOP);
2763
0
    ADDOP(c, NO_LOCATION, POP_BLOCK);
2764
0
    ADDOP(c, NO_LOCATION, POP_EXCEPT);
2765
0
    ADDOP_JUMP(c, NO_LOCATION, JUMP_NO_INTERRUPT, end);
2766
2767
0
    USE_LABEL(c, reraise);
2768
0
    ADDOP(c, NO_LOCATION, POP_BLOCK);
2769
0
    ADDOP_I(c, NO_LOCATION, SWAP, 2);
2770
0
    ADDOP(c, NO_LOCATION, POP_EXCEPT);
2771
0
    ADDOP_I(c, NO_LOCATION, RERAISE, 0);
2772
2773
0
    USE_LABEL(c, cleanup);
2774
0
    POP_EXCEPT_AND_RERAISE(c, NO_LOCATION);
2775
2776
0
    USE_LABEL(c, orelse);
2777
0
    VISIT_SEQ(c, stmt, s->v.TryStar.orelse);
2778
2779
0
    USE_LABEL(c, end);
2780
0
    return SUCCESS;
2781
0
}
2782
2783
static int
2784
832
codegen_try(compiler *c, stmt_ty s) {
2785
832
    if (s->v.Try.finalbody && asdl_seq_LEN(s->v.Try.finalbody))
2786
54
        return codegen_try_finally(c, s);
2787
778
    else
2788
778
        return codegen_try_except(c, s);
2789
832
}
2790
2791
static int
2792
codegen_try_star(compiler *c, stmt_ty s)
2793
0
{
2794
0
    if (s->v.TryStar.finalbody && asdl_seq_LEN(s->v.TryStar.finalbody)) {
2795
0
        return codegen_try_star_finally(c, s);
2796
0
    }
2797
0
    else {
2798
0
        return codegen_try_star_except(c, s);
2799
0
    }
2800
0
}
2801
2802
static int
2803
codegen_import_as(compiler *c, location loc,
2804
                  identifier name, identifier asname)
2805
46
{
2806
    /* The IMPORT_NAME opcode was already generated.  This function
2807
       merely needs to bind the result to a name.
2808
2809
       If there is a dot in name, we need to split it and emit a
2810
       IMPORT_FROM for each name.
2811
    */
2812
46
    Py_ssize_t len = PyUnicode_GET_LENGTH(name);
2813
46
    Py_ssize_t dot = PyUnicode_FindChar(name, '.', 0, len, 1);
2814
46
    if (dot == -2) {
2815
0
        return ERROR;
2816
0
    }
2817
46
    if (dot != -1) {
2818
        /* Consume the base module name to get the first attribute */
2819
0
        while (1) {
2820
0
            Py_ssize_t pos = dot + 1;
2821
0
            PyObject *attr;
2822
0
            dot = PyUnicode_FindChar(name, '.', pos, len, 1);
2823
0
            if (dot == -2) {
2824
0
                return ERROR;
2825
0
            }
2826
0
            attr = PyUnicode_Substring(name, pos, (dot != -1) ? dot : len);
2827
0
            if (!attr) {
2828
0
                return ERROR;
2829
0
            }
2830
0
            ADDOP_N(c, loc, IMPORT_FROM, attr, names);
2831
0
            if (dot == -1) {
2832
0
                break;
2833
0
            }
2834
0
            ADDOP_I(c, loc, SWAP, 2);
2835
0
            ADDOP(c, loc, POP_TOP);
2836
0
        }
2837
0
        RETURN_IF_ERROR(codegen_nameop(c, loc, asname, Store));
2838
0
        ADDOP(c, loc, POP_TOP);
2839
0
        return SUCCESS;
2840
0
    }
2841
46
    return codegen_nameop(c, loc, asname, Store);
2842
46
}
2843
2844
static int
2845
codegen_import(compiler *c, stmt_ty s)
2846
574
{
2847
574
    location loc = LOC(s);
2848
    /* The Import node stores a module name like a.b.c as a single
2849
       string.  This is convenient for all cases except
2850
         import a.b.c as d
2851
       where we need to parse that string to extract the individual
2852
       module names.
2853
       XXX Perhaps change the representation to make this case simpler?
2854
     */
2855
574
    Py_ssize_t i, n = asdl_seq_LEN(s->v.Import.names);
2856
2857
574
    PyObject *zero = _PyLong_GetZero();  // borrowed reference
2858
1.18k
    for (i = 0; i < n; i++) {
2859
609
        alias_ty alias = (alias_ty)asdl_seq_GET(s->v.Import.names, i);
2860
609
        int r;
2861
2862
609
        ADDOP_LOAD_CONST(c, loc, zero);
2863
609
        ADDOP_LOAD_CONST(c, loc, Py_None);
2864
609
        ADDOP_NAME(c, loc, IMPORT_NAME, alias->name, names);
2865
2866
609
        if (alias->asname) {
2867
46
            r = codegen_import_as(c, loc, alias->name, alias->asname);
2868
46
            RETURN_IF_ERROR(r);
2869
46
        }
2870
563
        else {
2871
563
            identifier tmp = alias->name;
2872
563
            Py_ssize_t dot = PyUnicode_FindChar(
2873
563
                alias->name, '.', 0, PyUnicode_GET_LENGTH(alias->name), 1);
2874
563
            if (dot != -1) {
2875
27
                tmp = PyUnicode_Substring(alias->name, 0, dot);
2876
27
                if (tmp == NULL) {
2877
0
                    return ERROR;
2878
0
                }
2879
27
            }
2880
563
            r = codegen_nameop(c, loc, tmp, Store);
2881
563
            if (dot != -1) {
2882
27
                Py_DECREF(tmp);
2883
27
            }
2884
563
            RETURN_IF_ERROR(r);
2885
563
        }
2886
609
    }
2887
574
    return SUCCESS;
2888
574
}
2889
2890
static int
2891
codegen_from_import(compiler *c, stmt_ty s)
2892
304
{
2893
304
    Py_ssize_t n = asdl_seq_LEN(s->v.ImportFrom.names);
2894
2895
304
    ADDOP_LOAD_CONST_NEW(c, LOC(s), PyLong_FromLong(s->v.ImportFrom.level));
2896
2897
304
    PyObject *names = PyTuple_New(n);
2898
304
    if (!names) {
2899
0
        return ERROR;
2900
0
    }
2901
2902
    /* build up the names */
2903
862
    for (Py_ssize_t i = 0; i < n; i++) {
2904
558
        alias_ty alias = (alias_ty)asdl_seq_GET(s->v.ImportFrom.names, i);
2905
558
        PyTuple_SET_ITEM(names, i, Py_NewRef(alias->name));
2906
558
    }
2907
2908
304
    ADDOP_LOAD_CONST_NEW(c, LOC(s), names);
2909
2910
304
    if (s->v.ImportFrom.module) {
2911
296
        ADDOP_NAME(c, LOC(s), IMPORT_NAME, s->v.ImportFrom.module, names);
2912
296
    }
2913
8
    else {
2914
8
        _Py_DECLARE_STR(empty, "");
2915
8
        ADDOP_NAME(c, LOC(s), IMPORT_NAME, &_Py_STR(empty), names);
2916
8
    }
2917
843
    for (Py_ssize_t i = 0; i < n; i++) {
2918
558
        alias_ty alias = (alias_ty)asdl_seq_GET(s->v.ImportFrom.names, i);
2919
558
        identifier store_name;
2920
2921
558
        if (i == 0 && PyUnicode_READ_CHAR(alias->name, 0) == '*') {
2922
19
            assert(n == 1);
2923
19
            ADDOP_I(c, LOC(s), CALL_INTRINSIC_1, INTRINSIC_IMPORT_STAR);
2924
19
            ADDOP(c, NO_LOCATION, POP_TOP);
2925
19
            return SUCCESS;
2926
19
        }
2927
2928
539
        ADDOP_NAME(c, LOC(s), IMPORT_FROM, alias->name, names);
2929
539
        store_name = alias->name;
2930
539
        if (alias->asname) {
2931
75
            store_name = alias->asname;
2932
75
        }
2933
2934
539
        RETURN_IF_ERROR(codegen_nameop(c, LOC(s), store_name, Store));
2935
539
    }
2936
    /* remove imported module */
2937
285
    ADDOP(c, LOC(s), POP_TOP);
2938
285
    return SUCCESS;
2939
285
}
2940
2941
static int
2942
codegen_assert(compiler *c, stmt_ty s)
2943
125
{
2944
    /* Always emit a warning if the test is a non-zero length tuple */
2945
125
    if ((s->v.Assert.test->kind == Tuple_kind &&
2946
125
        asdl_seq_LEN(s->v.Assert.test->v.Tuple.elts) > 0) ||
2947
125
        (s->v.Assert.test->kind == Constant_kind &&
2948
125
         PyTuple_Check(s->v.Assert.test->v.Constant.value) &&
2949
125
         PyTuple_Size(s->v.Assert.test->v.Constant.value) > 0))
2950
0
    {
2951
0
        RETURN_IF_ERROR(
2952
0
            _PyCompile_Warn(c, LOC(s), "assertion is always true, "
2953
0
                                       "perhaps remove parentheses?"));
2954
0
    }
2955
125
    if (OPTIMIZATION_LEVEL(c)) {
2956
0
        return SUCCESS;
2957
0
    }
2958
125
    NEW_JUMP_TARGET_LABEL(c, end);
2959
125
    RETURN_IF_ERROR(codegen_jump_if(c, LOC(s), s->v.Assert.test, end, 1));
2960
125
    ADDOP_I(c, LOC(s), LOAD_COMMON_CONSTANT, CONSTANT_ASSERTIONERROR);
2961
125
    if (s->v.Assert.msg) {
2962
29
        VISIT(c, expr, s->v.Assert.msg);
2963
29
        ADDOP_I(c, LOC(s), CALL, 0);
2964
29
    }
2965
125
    ADDOP_I(c, LOC(s->v.Assert.test), RAISE_VARARGS, 1);
2966
2967
125
    USE_LABEL(c, end);
2968
125
    return SUCCESS;
2969
125
}
2970
2971
static int
2972
codegen_stmt_expr(compiler *c, location loc, expr_ty value)
2973
4.15k
{
2974
4.15k
    if (IS_INTERACTIVE_TOP_LEVEL(c)) {
2975
0
        VISIT(c, expr, value);
2976
0
        ADDOP_I(c, loc, CALL_INTRINSIC_1, INTRINSIC_PRINT);
2977
0
        ADDOP(c, NO_LOCATION, POP_TOP);
2978
0
        return SUCCESS;
2979
0
    }
2980
2981
4.15k
    if (value->kind == Constant_kind) {
2982
        /* ignore constant statement */
2983
2
        ADDOP(c, loc, NOP);
2984
2
        return SUCCESS;
2985
2
    }
2986
2987
4.15k
    VISIT(c, expr, value);
2988
4.15k
    ADDOP(c, NO_LOCATION, POP_TOP); /* artificial */
2989
4.15k
    return SUCCESS;
2990
4.15k
}
2991
2992
#define CODEGEN_COND_BLOCK(FUNC, C, S) \
2993
9.79k
    do { \
2994
9.79k
        _PyCompile_EnterConditionalBlock((C)); \
2995
9.79k
        int result = FUNC((C), (S)); \
2996
9.79k
        _PyCompile_LeaveConditionalBlock((C)); \
2997
9.79k
        return result; \
2998
9.79k
    } while(0)
2999
3000
static int
3001
codegen_visit_stmt(compiler *c, stmt_ty s)
3002
42.9k
{
3003
3004
42.9k
    switch (s->kind) {
3005
4.66k
    case FunctionDef_kind:
3006
4.66k
        return codegen_function(c, s, 0);
3007
1.12k
    case ClassDef_kind:
3008
1.12k
        return codegen_class(c, s);
3009
0
    case TypeAlias_kind:
3010
0
        return codegen_typealias(c, s);
3011
5.23k
    case Return_kind:
3012
5.23k
        return codegen_return(c, s);
3013
128
    case Delete_kind:
3014
128
        VISIT_SEQ(c, expr, s->v.Delete.targets);
3015
128
        break;
3016
13.4k
    case Assign_kind:
3017
13.4k
    {
3018
13.4k
        Py_ssize_t n = asdl_seq_LEN(s->v.Assign.targets);
3019
13.4k
        VISIT(c, expr, s->v.Assign.value);
3020
27.0k
        for (Py_ssize_t i = 0; i < n; i++) {
3021
13.6k
            if (i < n - 1) {
3022
165
                ADDOP_I(c, LOC(s), COPY, 1);
3023
165
            }
3024
13.6k
            VISIT(c, expr,
3025
13.6k
                  (expr_ty)asdl_seq_GET(s->v.Assign.targets, i));
3026
13.6k
        }
3027
13.4k
        break;
3028
13.4k
    }
3029
13.4k
    case AugAssign_kind:
3030
600
        return codegen_augassign(c, s);
3031
52
    case AnnAssign_kind:
3032
52
        return codegen_annassign(c, s);
3033
975
    case For_kind:
3034
975
        CODEGEN_COND_BLOCK(codegen_for, c, s);
3035
0
        break;
3036
290
    case While_kind:
3037
290
        CODEGEN_COND_BLOCK(codegen_while, c, s);
3038
0
        break;
3039
7.60k
    case If_kind:
3040
7.60k
        CODEGEN_COND_BLOCK(codegen_if, c, s);
3041
0
        break;
3042
5
    case Match_kind:
3043
5
        CODEGEN_COND_BLOCK(codegen_match, c, s);
3044
0
        break;
3045
1.72k
    case Raise_kind:
3046
1.72k
    {
3047
1.72k
        Py_ssize_t n = 0;
3048
1.72k
        if (s->v.Raise.exc) {
3049
1.64k
            VISIT(c, expr, s->v.Raise.exc);
3050
1.64k
            n++;
3051
1.64k
            if (s->v.Raise.cause) {
3052
130
                VISIT(c, expr, s->v.Raise.cause);
3053
130
                n++;
3054
130
            }
3055
1.64k
        }
3056
1.72k
        ADDOP_I(c, LOC(s), RAISE_VARARGS, (int)n);
3057
1.72k
        break;
3058
1.72k
    }
3059
1.72k
    case Try_kind:
3060
832
        CODEGEN_COND_BLOCK(codegen_try, c, s);
3061
0
        break;
3062
0
    case TryStar_kind:
3063
0
        CODEGEN_COND_BLOCK(codegen_try_star, c, s);
3064
0
        break;
3065
125
    case Assert_kind:
3066
125
        return codegen_assert(c, s);
3067
574
    case Import_kind:
3068
574
        return codegen_import(c, s);
3069
304
    case ImportFrom_kind:
3070
304
        return codegen_from_import(c, s);
3071
38
    case Global_kind:
3072
54
    case Nonlocal_kind:
3073
54
        break;
3074
4.15k
    case Expr_kind:
3075
4.15k
    {
3076
4.15k
        return codegen_stmt_expr(c, LOC(s), s->v.Expr.value);
3077
38
    }
3078
429
    case Pass_kind:
3079
429
    {
3080
429
        ADDOP(c, LOC(s), NOP);
3081
429
        break;
3082
429
    }
3083
429
    case Break_kind:
3084
278
    {
3085
278
        return codegen_break(c, LOC(s));
3086
429
    }
3087
251
    case Continue_kind:
3088
251
    {
3089
251
        return codegen_continue(c, LOC(s));
3090
429
    }
3091
90
    case With_kind:
3092
90
        CODEGEN_COND_BLOCK(codegen_with, c, s);
3093
0
        break;
3094
30
    case AsyncFunctionDef_kind:
3095
30
        return codegen_function(c, s, 1);
3096
2
    case AsyncWith_kind:
3097
2
        CODEGEN_COND_BLOCK(codegen_async_with, c, s);
3098
0
        break;
3099
0
    case AsyncFor_kind:
3100
0
        CODEGEN_COND_BLOCK(codegen_async_for, c, s);
3101
0
        break;
3102
42.9k
    }
3103
3104
15.7k
    return SUCCESS;
3105
42.9k
}
3106
3107
static int
3108
unaryop(unaryop_ty op)
3109
619
{
3110
619
    switch (op) {
3111
38
    case Invert:
3112
38
        return UNARY_INVERT;
3113
581
    case USub:
3114
581
        return UNARY_NEGATIVE;
3115
0
    default:
3116
0
        PyErr_Format(PyExc_SystemError,
3117
0
            "unary op %d should not be possible", op);
3118
0
        return 0;
3119
619
    }
3120
619
}
3121
3122
static int
3123
addop_binary(compiler *c, location loc, operator_ty binop,
3124
             bool inplace)
3125
4.12k
{
3126
4.12k
    int oparg;
3127
4.12k
    switch (binop) {
3128
2.00k
        case Add:
3129
2.00k
            oparg = inplace ? NB_INPLACE_ADD : NB_ADD;
3130
2.00k
            break;
3131
585
        case Sub:
3132
585
            oparg = inplace ? NB_INPLACE_SUBTRACT : NB_SUBTRACT;
3133
585
            break;
3134
231
        case Mult:
3135
231
            oparg = inplace ? NB_INPLACE_MULTIPLY : NB_MULTIPLY;
3136
231
            break;
3137
2
        case MatMult:
3138
2
            oparg = inplace ? NB_INPLACE_MATRIX_MULTIPLY : NB_MATRIX_MULTIPLY;
3139
2
            break;
3140
34
        case Div:
3141
34
            oparg = inplace ? NB_INPLACE_TRUE_DIVIDE : NB_TRUE_DIVIDE;
3142
34
            break;
3143
565
        case Mod:
3144
565
            oparg = inplace ? NB_INPLACE_REMAINDER : NB_REMAINDER;
3145
565
            break;
3146
44
        case Pow:
3147
44
            oparg = inplace ? NB_INPLACE_POWER : NB_POWER;
3148
44
            break;
3149
44
        case LShift:
3150
44
            oparg = inplace ? NB_INPLACE_LSHIFT : NB_LSHIFT;
3151
44
            break;
3152
48
        case RShift:
3153
48
            oparg = inplace ? NB_INPLACE_RSHIFT : NB_RSHIFT;
3154
48
            break;
3155
189
        case BitOr:
3156
189
            oparg = inplace ? NB_INPLACE_OR : NB_OR;
3157
189
            break;
3158
29
        case BitXor:
3159
29
            oparg = inplace ? NB_INPLACE_XOR : NB_XOR;
3160
29
            break;
3161
283
        case BitAnd:
3162
283
            oparg = inplace ? NB_INPLACE_AND : NB_AND;
3163
283
            break;
3164
71
        case FloorDiv:
3165
71
            oparg = inplace ? NB_INPLACE_FLOOR_DIVIDE : NB_FLOOR_DIVIDE;
3166
71
            break;
3167
0
        default:
3168
0
            PyErr_Format(PyExc_SystemError, "%s op %d should not be possible",
3169
0
                         inplace ? "inplace" : "binary", binop);
3170
0
            return ERROR;
3171
4.12k
    }
3172
4.12k
    ADDOP_I(c, loc, BINARY_OP, oparg);
3173
4.12k
    return SUCCESS;
3174
4.12k
}
3175
3176
3177
static int
3178
414
codegen_addop_yield(compiler *c, location loc) {
3179
414
    PySTEntryObject *ste = SYMTABLE_ENTRY(c);
3180
414
    if (ste->ste_generator && ste->ste_coroutine) {
3181
1
        ADDOP_I(c, loc, CALL_INTRINSIC_1, INTRINSIC_ASYNC_GEN_WRAP);
3182
1
    }
3183
414
    ADDOP_I(c, loc, YIELD_VALUE, 0);
3184
414
    ADDOP_I(c, loc, RESUME, RESUME_AFTER_YIELD);
3185
414
    return SUCCESS;
3186
414
}
3187
3188
static int
3189
codegen_load_classdict_freevar(compiler *c, location loc)
3190
76
{
3191
76
    ADDOP_N(c, loc, LOAD_DEREF, &_Py_ID(__classdict__), freevars);
3192
76
    return SUCCESS;
3193
76
}
3194
3195
static int
3196
codegen_nameop(compiler *c, location loc,
3197
               identifier name, expr_context_ty ctx)
3198
98.3k
{
3199
98.3k
    assert(!_PyUnicode_EqualToASCIIString(name, "None") &&
3200
98.3k
           !_PyUnicode_EqualToASCIIString(name, "True") &&
3201
98.3k
           !_PyUnicode_EqualToASCIIString(name, "False"));
3202
3203
98.3k
    PyObject *mangled = _PyCompile_MaybeMangle(c, name);
3204
98.3k
    if (!mangled) {
3205
0
        return ERROR;
3206
0
    }
3207
3208
98.3k
    int scope = _PyST_GetScope(SYMTABLE_ENTRY(c), mangled);
3209
98.3k
    RETURN_IF_ERROR(scope);
3210
98.3k
    _PyCompile_optype optype;
3211
98.3k
    Py_ssize_t arg = 0;
3212
98.3k
    if (_PyCompile_ResolveNameop(c, mangled, scope, &optype, &arg) < 0) {
3213
0
        Py_DECREF(mangled);
3214
0
        return ERROR;
3215
0
    }
3216
3217
    /* XXX Leave assert here, but handle __doc__ and the like better */
3218
98.3k
    assert(scope || PyUnicode_READ_CHAR(name, 0) == '_');
3219
3220
98.3k
    int op = 0;
3221
98.3k
    switch (optype) {
3222
2.04k
    case COMPILE_OP_DEREF:
3223
2.04k
        switch (ctx) {
3224
1.81k
        case Load:
3225
1.81k
            if (SYMTABLE_ENTRY(c)->ste_type == ClassBlock && !_PyCompile_IsInInlinedComp(c)) {
3226
0
                op = LOAD_FROM_DICT_OR_DEREF;
3227
                // First load the locals
3228
0
                if (codegen_addop_noarg(INSTR_SEQUENCE(c), LOAD_LOCALS, loc) < 0) {
3229
0
                    goto error;
3230
0
                }
3231
0
            }
3232
1.81k
            else if (SYMTABLE_ENTRY(c)->ste_can_see_class_scope) {
3233
0
                op = LOAD_FROM_DICT_OR_DEREF;
3234
                // First load the classdict
3235
0
                if (codegen_load_classdict_freevar(c, loc) < 0) {
3236
0
                    goto error;
3237
0
                }
3238
0
            }
3239
1.81k
            else {
3240
1.81k
                op = LOAD_DEREF;
3241
1.81k
            }
3242
1.81k
            break;
3243
1.81k
        case Store: op = STORE_DEREF; break;
3244
0
        case Del: op = DELETE_DEREF; break;
3245
2.04k
        }
3246
2.04k
        break;
3247
59.1k
    case COMPILE_OP_FAST:
3248
59.1k
        switch (ctx) {
3249
46.0k
        case Load: op = LOAD_FAST; break;
3250
12.7k
        case Store: op = STORE_FAST; break;
3251
302
        case Del: op = DELETE_FAST; break;
3252
59.1k
        }
3253
59.1k
        ADDOP_N(c, loc, op, mangled, varnames);
3254
59.1k
        return SUCCESS;
3255
15.8k
    case COMPILE_OP_GLOBAL:
3256
15.8k
        switch (ctx) {
3257
15.7k
        case Load:
3258
15.7k
            if (SYMTABLE_ENTRY(c)->ste_can_see_class_scope && scope == GLOBAL_IMPLICIT) {
3259
76
                op = LOAD_FROM_DICT_OR_GLOBALS;
3260
                // First load the classdict
3261
76
                if (codegen_load_classdict_freevar(c, loc) < 0) {
3262
0
                    goto error;
3263
0
                }
3264
15.6k
            } else {
3265
15.6k
                op = LOAD_GLOBAL;
3266
15.6k
            }
3267
15.7k
            break;
3268
15.7k
        case Store: op = STORE_GLOBAL; break;
3269
0
        case Del: op = DELETE_GLOBAL; break;
3270
15.8k
        }
3271
15.8k
        break;
3272
21.3k
    case COMPILE_OP_NAME:
3273
21.3k
        switch (ctx) {
3274
6.42k
        case Load:
3275
6.42k
            op = (SYMTABLE_ENTRY(c)->ste_type == ClassBlock
3276
6.42k
                    && _PyCompile_IsInInlinedComp(c))
3277
6.42k
                ? LOAD_GLOBAL
3278
6.42k
                : LOAD_NAME;
3279
6.42k
            break;
3280
14.8k
        case Store: op = STORE_NAME; break;
3281
55
        case Del: op = DELETE_NAME; break;
3282
21.3k
        }
3283
21.3k
        break;
3284
98.3k
    }
3285
3286
39.2k
    assert(op);
3287
39.2k
    Py_DECREF(mangled);
3288
39.2k
    if (op == LOAD_GLOBAL) {
3289
15.6k
        arg <<= 1;
3290
15.6k
    }
3291
39.2k
    ADDOP_I(c, loc, op, arg);
3292
39.2k
    return SUCCESS;
3293
3294
0
error:
3295
0
    Py_DECREF(mangled);
3296
0
    return ERROR;
3297
39.2k
}
3298
3299
static int
3300
codegen_boolop(compiler *c, expr_ty e)
3301
428
{
3302
428
    int jumpi;
3303
428
    Py_ssize_t i, n;
3304
428
    asdl_expr_seq *s;
3305
3306
428
    location loc = LOC(e);
3307
428
    assert(e->kind == BoolOp_kind);
3308
428
    if (e->v.BoolOp.op == And)
3309
176
        jumpi = JUMP_IF_FALSE;
3310
252
    else
3311
252
        jumpi = JUMP_IF_TRUE;
3312
428
    NEW_JUMP_TARGET_LABEL(c, end);
3313
428
    s = e->v.BoolOp.values;
3314
428
    n = asdl_seq_LEN(s) - 1;
3315
428
    assert(n >= 0);
3316
971
    for (i = 0; i < n; ++i) {
3317
543
        VISIT(c, expr, (expr_ty)asdl_seq_GET(s, i));
3318
543
        ADDOP_JUMP(c, loc, jumpi, end);
3319
543
        ADDOP(c, loc, POP_TOP);
3320
543
    }
3321
428
    VISIT(c, expr, (expr_ty)asdl_seq_GET(s, n));
3322
3323
428
    USE_LABEL(c, end);
3324
428
    return SUCCESS;
3325
428
}
3326
3327
static int
3328
starunpack_helper_impl(compiler *c, location loc,
3329
                       asdl_expr_seq *elts, PyObject *injected_arg, int pushed,
3330
                       int build, int add, int extend, int tuple)
3331
3.30k
{
3332
3.30k
    Py_ssize_t n = asdl_seq_LEN(elts);
3333
3.30k
    int big = n + pushed + (injected_arg ? 1 : 0) > _PY_STACK_USE_GUIDELINE;
3334
3.30k
    int seen_star = 0;
3335
11.4k
    for (Py_ssize_t i = 0; i < n; i++) {
3336
8.24k
        expr_ty elt = asdl_seq_GET(elts, i);
3337
8.24k
        if (elt->kind == Starred_kind) {
3338
74
            seen_star = 1;
3339
74
            break;
3340
74
        }
3341
8.24k
    }
3342
3.30k
    if (!seen_star && !big) {
3343
10.7k
        for (Py_ssize_t i = 0; i < n; i++) {
3344
7.54k
            expr_ty elt = asdl_seq_GET(elts, i);
3345
7.54k
            VISIT(c, expr, elt);
3346
7.54k
        }
3347
3.21k
        if (injected_arg) {
3348
0
            RETURN_IF_ERROR(codegen_nameop(c, loc, injected_arg, Load));
3349
0
            n++;
3350
0
        }
3351
3.21k
        if (tuple) {
3352
2.25k
            ADDOP_I(c, loc, BUILD_TUPLE, n+pushed);
3353
2.25k
        } else {
3354
965
            ADDOP_I(c, loc, build, n+pushed);
3355
965
        }
3356
3.21k
        return SUCCESS;
3357
3.21k
    }
3358
84
    int sequence_built = 0;
3359
84
    if (big) {
3360
10
        ADDOP_I(c, loc, build, pushed);
3361
10
        sequence_built = 1;
3362
10
    }
3363
790
    for (Py_ssize_t i = 0; i < n; i++) {
3364
706
        expr_ty elt = asdl_seq_GET(elts, i);
3365
706
        if (elt->kind == Starred_kind) {
3366
77
            if (sequence_built == 0) {
3367
74
                ADDOP_I(c, loc, build, i+pushed);
3368
74
                sequence_built = 1;
3369
74
            }
3370
77
            VISIT(c, expr, elt->v.Starred.value);
3371
77
            ADDOP_I(c, loc, extend, 1);
3372
77
        }
3373
629
        else {
3374
629
            VISIT(c, expr, elt);
3375
629
            if (sequence_built) {
3376
546
                ADDOP_I(c, loc, add, 1);
3377
546
            }
3378
629
        }
3379
706
    }
3380
84
    assert(sequence_built);
3381
84
    if (injected_arg) {
3382
0
        RETURN_IF_ERROR(codegen_nameop(c, loc, injected_arg, Load));
3383
0
        ADDOP_I(c, loc, add, 1);
3384
0
    }
3385
84
    if (tuple) {
3386
76
        ADDOP_I(c, loc, CALL_INTRINSIC_1, INTRINSIC_LIST_TO_TUPLE);
3387
76
    }
3388
84
    return SUCCESS;
3389
84
}
3390
3391
static int
3392
starunpack_helper(compiler *c, location loc,
3393
                  asdl_expr_seq *elts, int pushed,
3394
                  int build, int add, int extend, int tuple)
3395
3.19k
{
3396
3.19k
    return starunpack_helper_impl(c, loc, elts, NULL, pushed,
3397
3.19k
                                  build, add, extend, tuple);
3398
3.19k
}
3399
3400
static int
3401
unpack_helper(compiler *c, location loc, asdl_expr_seq *elts)
3402
1.16k
{
3403
1.16k
    Py_ssize_t n = asdl_seq_LEN(elts);
3404
1.16k
    int seen_star = 0;
3405
3.93k
    for (Py_ssize_t i = 0; i < n; i++) {
3406
2.76k
        expr_ty elt = asdl_seq_GET(elts, i);
3407
2.76k
        if (elt->kind == Starred_kind && !seen_star) {
3408
23
            if ((i >= (1 << 8)) ||
3409
23
                (n-i-1 >= (INT_MAX >> 8))) {
3410
0
                return _PyCompile_Error(c, loc,
3411
0
                    "too many expressions in "
3412
0
                    "star-unpacking assignment");
3413
0
            }
3414
23
            ADDOP_I(c, loc, UNPACK_EX, (i + ((n-i-1) << 8)));
3415
23
            seen_star = 1;
3416
23
        }
3417
2.74k
        else if (elt->kind == Starred_kind) {
3418
0
            return _PyCompile_Error(c, loc,
3419
0
                "multiple starred expressions in assignment");
3420
0
        }
3421
2.76k
    }
3422
1.16k
    if (!seen_star) {
3423
1.14k
        ADDOP_I(c, loc, UNPACK_SEQUENCE, n);
3424
1.14k
    }
3425
1.16k
    return SUCCESS;
3426
1.16k
}
3427
3428
static int
3429
assignment_helper(compiler *c, location loc, asdl_expr_seq *elts)
3430
1.16k
{
3431
1.16k
    Py_ssize_t n = asdl_seq_LEN(elts);
3432
1.16k
    RETURN_IF_ERROR(unpack_helper(c, loc, elts));
3433
3.93k
    for (Py_ssize_t i = 0; i < n; i++) {
3434
2.76k
        expr_ty elt = asdl_seq_GET(elts, i);
3435
2.76k
        VISIT(c, expr, elt->kind != Starred_kind ? elt : elt->v.Starred.value);
3436
2.76k
    }
3437
1.16k
    return SUCCESS;
3438
1.16k
}
3439
3440
static int
3441
codegen_list(compiler *c, expr_ty e)
3442
893
{
3443
893
    location loc = LOC(e);
3444
893
    asdl_expr_seq *elts = e->v.List.elts;
3445
893
    if (e->v.List.ctx == Store) {
3446
10
        return assignment_helper(c, loc, elts);
3447
10
    }
3448
883
    else if (e->v.List.ctx == Load) {
3449
883
        return starunpack_helper(c, loc, elts, 0,
3450
883
                                 BUILD_LIST, LIST_APPEND, LIST_EXTEND, 0);
3451
883
    }
3452
0
    else {
3453
0
        VISIT_SEQ(c, expr, elts);
3454
0
    }
3455
0
    return SUCCESS;
3456
893
}
3457
3458
static int
3459
codegen_tuple(compiler *c, expr_ty e)
3460
3.37k
{
3461
3.37k
    location loc = LOC(e);
3462
3.37k
    asdl_expr_seq *elts = e->v.Tuple.elts;
3463
3.37k
    if (e->v.Tuple.ctx == Store) {
3464
1.15k
        return assignment_helper(c, loc, elts);
3465
1.15k
    }
3466
2.21k
    else if (e->v.Tuple.ctx == Load) {
3467
2.21k
        return starunpack_helper(c, loc, elts, 0,
3468
2.21k
                                 BUILD_LIST, LIST_APPEND, LIST_EXTEND, 1);
3469
2.21k
    }
3470
0
    else {
3471
0
        VISIT_SEQ(c, expr, elts);
3472
0
    }
3473
0
    return SUCCESS;
3474
3.37k
}
3475
3476
static int
3477
codegen_set(compiler *c, expr_ty e)
3478
90
{
3479
90
    location loc = LOC(e);
3480
90
    return starunpack_helper(c, loc, e->v.Set.elts, 0,
3481
90
                             BUILD_SET, SET_ADD, SET_UPDATE, 0);
3482
90
}
3483
3484
static int
3485
codegen_subdict(compiler *c, expr_ty e, Py_ssize_t begin, Py_ssize_t end)
3486
817
{
3487
817
    Py_ssize_t i, n = end - begin;
3488
817
    int big = n*2 > _PY_STACK_USE_GUIDELINE;
3489
817
    location loc = LOC(e);
3490
817
    if (big) {
3491
672
        ADDOP_I(c, loc, BUILD_MAP, 0);
3492
672
    }
3493
12.9k
    for (i = begin; i < end; i++) {
3494
12.1k
        VISIT(c, expr, (expr_ty)asdl_seq_GET(e->v.Dict.keys, i));
3495
12.1k
        VISIT(c, expr, (expr_ty)asdl_seq_GET(e->v.Dict.values, i));
3496
12.1k
        if (big) {
3497
11.4k
            ADDOP_I(c, loc, MAP_ADD, 1);
3498
11.4k
        }
3499
12.1k
    }
3500
817
    if (!big) {
3501
145
        ADDOP_I(c, loc, BUILD_MAP, n);
3502
145
    }
3503
817
    return SUCCESS;
3504
817
}
3505
3506
static int
3507
codegen_dict(compiler *c, expr_ty e)
3508
369
{
3509
369
    location loc = LOC(e);
3510
369
    Py_ssize_t i, n, elements;
3511
369
    int have_dict;
3512
369
    int is_unpacking = 0;
3513
369
    n = asdl_seq_LEN(e->v.Dict.values);
3514
369
    have_dict = 0;
3515
369
    elements = 0;
3516
12.4k
    for (i = 0; i < n; i++) {
3517
12.1k
        is_unpacking = (expr_ty)asdl_seq_GET(e->v.Dict.keys, i) == NULL;
3518
12.1k
        if (is_unpacking) {
3519
16
            if (elements) {
3520
0
                RETURN_IF_ERROR(codegen_subdict(c, e, i - elements, i));
3521
0
                if (have_dict) {
3522
0
                    ADDOP_I(c, loc, DICT_UPDATE, 1);
3523
0
                }
3524
0
                have_dict = 1;
3525
0
                elements = 0;
3526
0
            }
3527
16
            if (have_dict == 0) {
3528
8
                ADDOP_I(c, loc, BUILD_MAP, 0);
3529
8
                have_dict = 1;
3530
8
            }
3531
16
            VISIT(c, expr, (expr_ty)asdl_seq_GET(e->v.Dict.values, i));
3532
16
            ADDOP_I(c, loc, DICT_UPDATE, 1);
3533
16
        }
3534
12.1k
        else {
3535
12.1k
            if (elements*2 > _PY_STACK_USE_GUIDELINE) {
3536
669
                RETURN_IF_ERROR(codegen_subdict(c, e, i - elements, i + 1));
3537
669
                if (have_dict) {
3538
614
                    ADDOP_I(c, loc, DICT_UPDATE, 1);
3539
614
                }
3540
669
                have_dict = 1;
3541
669
                elements = 0;
3542
669
            }
3543
11.4k
            else {
3544
11.4k
                elements++;
3545
11.4k
            }
3546
12.1k
        }
3547
12.1k
    }
3548
369
    if (elements) {
3549
148
        RETURN_IF_ERROR(codegen_subdict(c, e, n - elements, n));
3550
148
        if (have_dict) {
3551
54
            ADDOP_I(c, loc, DICT_UPDATE, 1);
3552
54
        }
3553
148
        have_dict = 1;
3554
148
    }
3555
369
    if (!have_dict) {
3556
212
        ADDOP_I(c, loc, BUILD_MAP, 0);
3557
212
    }
3558
369
    return SUCCESS;
3559
369
}
3560
3561
static int
3562
codegen_compare(compiler *c, expr_ty e)
3563
6.02k
{
3564
6.02k
    location loc = LOC(e);
3565
6.02k
    Py_ssize_t i, n;
3566
3567
6.02k
    RETURN_IF_ERROR(codegen_check_compare(c, e));
3568
6.02k
    VISIT(c, expr, e->v.Compare.left);
3569
6.02k
    assert(asdl_seq_LEN(e->v.Compare.ops) > 0);
3570
6.02k
    n = asdl_seq_LEN(e->v.Compare.ops) - 1;
3571
6.02k
    if (n == 0) {
3572
6.00k
        VISIT(c, expr, (expr_ty)asdl_seq_GET(e->v.Compare.comparators, 0));
3573
6.00k
        ADDOP_COMPARE(c, loc, asdl_seq_GET(e->v.Compare.ops, 0));
3574
6.00k
    }
3575
20
    else {
3576
20
        NEW_JUMP_TARGET_LABEL(c, cleanup);
3577
40
        for (i = 0; i < n; i++) {
3578
20
            VISIT(c, expr,
3579
20
                (expr_ty)asdl_seq_GET(e->v.Compare.comparators, i));
3580
20
            ADDOP_I(c, loc, SWAP, 2);
3581
20
            ADDOP_I(c, loc, COPY, 2);
3582
20
            ADDOP_COMPARE(c, loc, asdl_seq_GET(e->v.Compare.ops, i));
3583
20
            ADDOP_I(c, loc, COPY, 1);
3584
20
            ADDOP(c, loc, TO_BOOL);
3585
20
            ADDOP_JUMP(c, loc, POP_JUMP_IF_FALSE, cleanup);
3586
20
            ADDOP(c, loc, POP_TOP);
3587
20
        }
3588
20
        VISIT(c, expr, (expr_ty)asdl_seq_GET(e->v.Compare.comparators, n));
3589
20
        ADDOP_COMPARE(c, loc, asdl_seq_GET(e->v.Compare.ops, n));
3590
20
        NEW_JUMP_TARGET_LABEL(c, end);
3591
20
        ADDOP_JUMP(c, NO_LOCATION, JUMP_NO_INTERRUPT, end);
3592
3593
20
        USE_LABEL(c, cleanup);
3594
20
        ADDOP_I(c, loc, SWAP, 2);
3595
20
        ADDOP(c, loc, POP_TOP);
3596
3597
20
        USE_LABEL(c, end);
3598
20
    }
3599
6.02k
    return SUCCESS;
3600
6.02k
}
3601
3602
static PyTypeObject *
3603
infer_type(expr_ty e)
3604
2.96k
{
3605
2.96k
    switch (e->kind) {
3606
8
    case Tuple_kind:
3607
8
        return &PyTuple_Type;
3608
0
    case List_kind:
3609
0
    case ListComp_kind:
3610
0
        return &PyList_Type;
3611
0
    case Dict_kind:
3612
0
    case DictComp_kind:
3613
0
        return &PyDict_Type;
3614
0
    case Set_kind:
3615
0
    case SetComp_kind:
3616
0
        return &PySet_Type;
3617
0
    case GeneratorExp_kind:
3618
0
        return &PyGen_Type;
3619
0
    case Lambda_kind:
3620
0
        return &PyFunction_Type;
3621
0
    case TemplateStr_kind:
3622
0
    case Interpolation_kind:
3623
0
        return &_PyTemplate_Type;
3624
0
    case JoinedStr_kind:
3625
0
    case FormattedValue_kind:
3626
0
        return &PyUnicode_Type;
3627
1.29k
    case Constant_kind:
3628
1.29k
        return Py_TYPE(e->v.Constant.value);
3629
1.66k
    default:
3630
1.66k
        return NULL;
3631
2.96k
    }
3632
2.96k
}
3633
3634
static int
3635
check_caller(compiler *c, expr_ty e)
3636
11.6k
{
3637
11.6k
    switch (e->kind) {
3638
0
    case Constant_kind:
3639
0
    case Tuple_kind:
3640
0
    case List_kind:
3641
0
    case ListComp_kind:
3642
0
    case Dict_kind:
3643
0
    case DictComp_kind:
3644
0
    case Set_kind:
3645
0
    case SetComp_kind:
3646
0
    case GeneratorExp_kind:
3647
0
    case JoinedStr_kind:
3648
0
    case TemplateStr_kind:
3649
0
    case FormattedValue_kind:
3650
0
    case Interpolation_kind: {
3651
0
        location loc = LOC(e);
3652
0
        return _PyCompile_Warn(c, loc, "'%.200s' object is not callable; "
3653
0
                                       "perhaps you missed a comma?",
3654
0
                                       infer_type(e)->tp_name);
3655
0
    }
3656
11.6k
    default:
3657
11.6k
        return SUCCESS;
3658
11.6k
    }
3659
11.6k
}
3660
3661
static int
3662
check_subscripter(compiler *c, expr_ty e)
3663
2.96k
{
3664
2.96k
    PyObject *v;
3665
3666
2.96k
    switch (e->kind) {
3667
12
    case Constant_kind:
3668
12
        v = e->v.Constant.value;
3669
12
        if (!(v == Py_None || v == Py_Ellipsis ||
3670
12
              PyLong_Check(v) || PyFloat_Check(v) || PyComplex_Check(v) ||
3671
12
              PyAnySet_Check(v)))
3672
12
        {
3673
12
            return SUCCESS;
3674
12
        }
3675
0
        _Py_FALLTHROUGH;
3676
0
    case Set_kind:
3677
0
    case SetComp_kind:
3678
0
    case GeneratorExp_kind:
3679
0
    case TemplateStr_kind:
3680
0
    case Interpolation_kind:
3681
0
    case Lambda_kind: {
3682
0
        location loc = LOC(e);
3683
0
        return _PyCompile_Warn(c, loc, "'%.200s' object is not subscriptable; "
3684
0
                                       "perhaps you missed a comma?",
3685
0
                                       infer_type(e)->tp_name);
3686
0
    }
3687
2.94k
    default:
3688
2.94k
        return SUCCESS;
3689
2.96k
    }
3690
2.96k
}
3691
3692
static int
3693
check_index(compiler *c, expr_ty e, expr_ty s)
3694
2.96k
{
3695
2.96k
    PyObject *v;
3696
3697
2.96k
    PyTypeObject *index_type = infer_type(s);
3698
2.96k
    if (index_type == NULL
3699
2.96k
        || PyType_FastSubclass(index_type, Py_TPFLAGS_LONG_SUBCLASS)
3700
2.96k
        || index_type == &PySlice_Type) {
3701
2.85k
        return SUCCESS;
3702
2.85k
    }
3703
3704
109
    switch (e->kind) {
3705
0
    case Constant_kind:
3706
0
        v = e->v.Constant.value;
3707
0
        if (!(PyUnicode_Check(v) || PyBytes_Check(v) || PyTuple_Check(v))) {
3708
0
            return SUCCESS;
3709
0
        }
3710
0
        _Py_FALLTHROUGH;
3711
0
    case Tuple_kind:
3712
0
    case List_kind:
3713
0
    case ListComp_kind:
3714
0
    case JoinedStr_kind:
3715
0
    case FormattedValue_kind: {
3716
0
        location loc = LOC(e);
3717
0
        return _PyCompile_Warn(c, loc, "%.200s indices must be integers "
3718
0
                                       "or slices, not %.200s; "
3719
0
                                       "perhaps you missed a comma?",
3720
0
                                       infer_type(e)->tp_name,
3721
0
                                       index_type->tp_name);
3722
0
    }
3723
109
    default:
3724
109
        return SUCCESS;
3725
109
    }
3726
109
}
3727
3728
static int
3729
is_import_originated(compiler *c, expr_ty e)
3730
9.44k
{
3731
    /* Check whether the global scope has an import named
3732
     e, if it is a Name object. For not traversing all the
3733
     scope stack every time this function is called, it will
3734
     only check the global scope to determine whether something
3735
     is imported or not. */
3736
3737
9.44k
    if (e->kind != Name_kind) {
3738
2.22k
        return 0;
3739
2.22k
    }
3740
3741
7.22k
    long flags = _PyST_GetSymbol(SYMTABLE(c)->st_top, e->v.Name.id);
3742
7.22k
    RETURN_IF_ERROR(flags);
3743
7.22k
    return flags & DEF_IMPORT;
3744
7.22k
}
3745
3746
static int
3747
can_optimize_super_call(compiler *c, expr_ty attr)
3748
20.0k
{
3749
20.0k
    expr_ty e = attr->v.Attribute.value;
3750
20.0k
    if (e->kind != Call_kind ||
3751
20.0k
        e->v.Call.func->kind != Name_kind ||
3752
20.0k
        !_PyUnicode_EqualToASCIIString(e->v.Call.func->v.Name.id, "super") ||
3753
20.0k
        _PyUnicode_EqualToASCIIString(attr->v.Attribute.attr, "__class__") ||
3754
20.0k
        asdl_seq_LEN(e->v.Call.keywords) != 0) {
3755
19.8k
        return 0;
3756
19.8k
    }
3757
210
    Py_ssize_t num_args = asdl_seq_LEN(e->v.Call.args);
3758
3759
210
    PyObject *super_name = e->v.Call.func->v.Name.id;
3760
    // detect statically-visible shadowing of 'super' name
3761
210
    int scope = _PyST_GetScope(SYMTABLE_ENTRY(c), super_name);
3762
210
    RETURN_IF_ERROR(scope);
3763
210
    if (scope != GLOBAL_IMPLICIT) {
3764
0
        return 0;
3765
0
    }
3766
210
    scope = _PyST_GetScope(SYMTABLE(c)->st_top, super_name);
3767
210
    RETURN_IF_ERROR(scope);
3768
210
    if (scope != 0) {
3769
0
        return 0;
3770
0
    }
3771
3772
210
    if (num_args == 2) {
3773
153
        for (Py_ssize_t i = 0; i < num_args; i++) {
3774
102
            expr_ty elt = asdl_seq_GET(e->v.Call.args, i);
3775
102
            if (elt->kind == Starred_kind) {
3776
0
                return 0;
3777
0
            }
3778
102
        }
3779
        // exactly two non-starred args; we can just load
3780
        // the provided args
3781
51
        return 1;
3782
51
    }
3783
3784
159
    if (num_args != 0) {
3785
0
        return 0;
3786
0
    }
3787
    // we need the following for zero-arg super():
3788
3789
    // enclosing function should have at least one argument
3790
159
    if (METADATA(c)->u_argcount == 0 &&
3791
159
        METADATA(c)->u_posonlyargcount == 0) {
3792
0
        return 0;
3793
0
    }
3794
    // __class__ cell should be available
3795
159
    if (_PyCompile_GetRefType(c, &_Py_ID(__class__)) == FREE) {
3796
159
        return 1;
3797
159
    }
3798
0
    return 0;
3799
159
}
3800
3801
static int
3802
210
load_args_for_super(compiler *c, expr_ty e) {
3803
210
    location loc = LOC(e);
3804
3805
    // load super() global
3806
210
    PyObject *super_name = e->v.Call.func->v.Name.id;
3807
210
    RETURN_IF_ERROR(codegen_nameop(c, LOC(e->v.Call.func), super_name, Load));
3808
3809
210
    if (asdl_seq_LEN(e->v.Call.args) == 2) {
3810
51
        VISIT(c, expr, asdl_seq_GET(e->v.Call.args, 0));
3811
51
        VISIT(c, expr, asdl_seq_GET(e->v.Call.args, 1));
3812
51
        return SUCCESS;
3813
51
    }
3814
3815
    // load __class__ cell
3816
159
    PyObject *name = &_Py_ID(__class__);
3817
159
    assert(_PyCompile_GetRefType(c, name) == FREE);
3818
159
    RETURN_IF_ERROR(codegen_nameop(c, loc, name, Load));
3819
3820
    // load self (first argument)
3821
159
    Py_ssize_t i = 0;
3822
159
    PyObject *key, *value;
3823
159
    if (!PyDict_Next(METADATA(c)->u_varnames, &i, &key, &value)) {
3824
0
        return ERROR;
3825
0
    }
3826
159
    RETURN_IF_ERROR(codegen_nameop(c, loc, key, Load));
3827
3828
159
    return SUCCESS;
3829
159
}
3830
3831
// If an attribute access spans multiple lines, update the current start
3832
// location to point to the attribute name.
3833
static location
3834
update_start_location_to_match_attr(compiler *c, location loc,
3835
                                    expr_ty attr)
3836
29.7k
{
3837
29.7k
    assert(attr->kind == Attribute_kind);
3838
29.7k
    if (loc.lineno != attr->end_lineno) {
3839
122
        loc.lineno = attr->end_lineno;
3840
122
        int len = (int)PyUnicode_GET_LENGTH(attr->v.Attribute.attr);
3841
122
        if (len <= attr->end_col_offset) {
3842
122
            loc.col_offset = attr->end_col_offset - len;
3843
122
        }
3844
0
        else {
3845
            // GH-94694: Somebody's compiling weird ASTs. Just drop the columns:
3846
0
            loc.col_offset = -1;
3847
0
            loc.end_col_offset = -1;
3848
0
        }
3849
        // Make sure the end position still follows the start position, even for
3850
        // weird ASTs:
3851
122
        loc.end_lineno = Py_MAX(loc.lineno, loc.end_lineno);
3852
122
        if (loc.lineno == loc.end_lineno) {
3853
116
            loc.end_col_offset = Py_MAX(loc.col_offset, loc.end_col_offset);
3854
116
        }
3855
122
    }
3856
29.7k
    return loc;
3857
29.7k
}
3858
3859
static int
3860
maybe_optimize_function_call(compiler *c, expr_ty e, jump_target_label end)
3861
11.6k
{
3862
11.6k
    asdl_expr_seq *args = e->v.Call.args;
3863
11.6k
    asdl_keyword_seq *kwds = e->v.Call.keywords;
3864
11.6k
    expr_ty func = e->v.Call.func;
3865
3866
11.6k
    if (! (func->kind == Name_kind &&
3867
11.6k
           asdl_seq_LEN(args) == 1 &&
3868
11.6k
           asdl_seq_LEN(kwds) == 0 &&
3869
11.6k
           asdl_seq_GET(args, 0)->kind == GeneratorExp_kind))
3870
11.5k
    {
3871
11.5k
        return 0;
3872
11.5k
    }
3873
3874
86
    location loc = LOC(func);
3875
3876
86
    int optimized = 0;
3877
86
    NEW_JUMP_TARGET_LABEL(c, skip_optimization);
3878
3879
86
    int const_oparg = -1;
3880
86
    PyObject *initial_res = NULL;
3881
86
    int continue_jump_opcode = -1;
3882
86
    if (_PyUnicode_EqualToASCIIString(func->v.Name.id, "all")) {
3883
15
        const_oparg = CONSTANT_BUILTIN_ALL;
3884
15
        initial_res = Py_True;
3885
15
        continue_jump_opcode = POP_JUMP_IF_TRUE;
3886
15
    }
3887
71
    else if (_PyUnicode_EqualToASCIIString(func->v.Name.id, "any")) {
3888
29
        const_oparg = CONSTANT_BUILTIN_ANY;
3889
29
        initial_res = Py_False;
3890
29
        continue_jump_opcode = POP_JUMP_IF_FALSE;
3891
29
    }
3892
42
    else if (_PyUnicode_EqualToASCIIString(func->v.Name.id, "tuple")) {
3893
20
        const_oparg = CONSTANT_BUILTIN_TUPLE;
3894
20
    }
3895
86
    if (const_oparg != -1) {
3896
64
        ADDOP_I(c, loc, COPY, 1); // the function
3897
64
        ADDOP_I(c, loc, LOAD_COMMON_CONSTANT, const_oparg);
3898
64
        ADDOP_COMPARE(c, loc, Is);
3899
64
        ADDOP_JUMP(c, loc, POP_JUMP_IF_FALSE, skip_optimization);
3900
64
        ADDOP(c, loc, POP_TOP);
3901
3902
64
        if (const_oparg == CONSTANT_BUILTIN_TUPLE) {
3903
20
            ADDOP_I(c, loc, BUILD_LIST, 0);
3904
20
        }
3905
64
        expr_ty generator_exp = asdl_seq_GET(args, 0);
3906
64
        VISIT(c, expr, generator_exp);
3907
3908
64
        NEW_JUMP_TARGET_LABEL(c, loop);
3909
64
        NEW_JUMP_TARGET_LABEL(c, cleanup);
3910
3911
64
        ADDOP(c, loc, PUSH_NULL); // Push NULL index for loop
3912
64
        USE_LABEL(c, loop);
3913
64
        ADDOP_JUMP(c, loc, FOR_ITER, cleanup);
3914
64
        if (const_oparg == CONSTANT_BUILTIN_TUPLE) {
3915
20
            ADDOP_I(c, loc, LIST_APPEND, 3);
3916
20
            ADDOP_JUMP(c, loc, JUMP, loop);
3917
20
        }
3918
44
        else {
3919
44
            ADDOP(c, loc, TO_BOOL);
3920
44
            ADDOP_JUMP(c, loc, continue_jump_opcode, loop);
3921
44
        }
3922
3923
64
        ADDOP(c, NO_LOCATION, POP_ITER);
3924
64
        if (const_oparg != CONSTANT_BUILTIN_TUPLE) {
3925
44
            ADDOP_LOAD_CONST(c, loc, initial_res == Py_True ? Py_False : Py_True);
3926
44
        }
3927
64
        ADDOP_JUMP(c, loc, JUMP, end);
3928
3929
64
        USE_LABEL(c, cleanup);
3930
64
        ADDOP(c, NO_LOCATION, END_FOR);
3931
64
        ADDOP(c, NO_LOCATION, POP_ITER);
3932
64
        if (const_oparg == CONSTANT_BUILTIN_TUPLE) {
3933
20
            ADDOP_I(c, loc, CALL_INTRINSIC_1, INTRINSIC_LIST_TO_TUPLE);
3934
20
        }
3935
44
        else {
3936
44
            ADDOP_LOAD_CONST(c, loc, initial_res);
3937
44
        }
3938
3939
64
        optimized = 1;
3940
64
        ADDOP_JUMP(c, loc, JUMP, end);
3941
64
    }
3942
86
    USE_LABEL(c, skip_optimization);
3943
86
    return optimized;
3944
86
}
3945
3946
// Return 1 if the method call was optimized, 0 if not, and -1 on error.
3947
static int
3948
maybe_optimize_method_call(compiler *c, expr_ty e)
3949
19.4k
{
3950
19.4k
    Py_ssize_t argsl, i, kwdsl;
3951
19.4k
    expr_ty meth = e->v.Call.func;
3952
19.4k
    asdl_expr_seq *args = e->v.Call.args;
3953
19.4k
    asdl_keyword_seq *kwds = e->v.Call.keywords;
3954
3955
    /* Check that the call node is an attribute access */
3956
19.4k
    if (meth->kind != Attribute_kind || meth->v.Attribute.ctx != Load) {
3957
10.0k
        return 0;
3958
10.0k
    }
3959
3960
    /* Check that the base object is not something that is imported */
3961
9.44k
    int ret = is_import_originated(c, meth->v.Attribute.value);
3962
9.44k
    RETURN_IF_ERROR(ret);
3963
9.44k
    if (ret) {
3964
1.49k
        return 0;
3965
1.49k
    }
3966
3967
    /* Check that there aren't too many arguments */
3968
7.95k
    argsl = asdl_seq_LEN(args);
3969
7.95k
    kwdsl = asdl_seq_LEN(kwds);
3970
7.95k
    if (argsl + kwdsl + (kwdsl != 0) >= _PY_STACK_USE_GUIDELINE) {
3971
0
        return 0;
3972
0
    }
3973
    /* Check that there are no *varargs types of arguments. */
3974
16.0k
    for (i = 0; i < argsl; i++) {
3975
8.21k
        expr_ty elt = asdl_seq_GET(args, i);
3976
8.21k
        if (elt->kind == Starred_kind) {
3977
91
            return 0;
3978
91
        }
3979
8.21k
    }
3980
3981
8.27k
    for (i = 0; i < kwdsl; i++) {
3982
436
        keyword_ty kw = asdl_seq_GET(kwds, i);
3983
436
        if (kw->arg == NULL) {
3984
23
            return 0;
3985
23
        }
3986
436
    }
3987
3988
    /* Alright, we can optimize the code. */
3989
7.84k
    location loc = LOC(meth);
3990
3991
7.84k
    ret = can_optimize_super_call(c, meth);
3992
7.84k
    RETURN_IF_ERROR(ret);
3993
7.84k
    if (ret) {
3994
148
        RETURN_IF_ERROR(load_args_for_super(c, meth->v.Attribute.value));
3995
148
        int opcode = asdl_seq_LEN(meth->v.Attribute.value->v.Call.args) ?
3996
113
            LOAD_SUPER_METHOD : LOAD_ZERO_SUPER_METHOD;
3997
148
        ADDOP_NAME(c, loc, opcode, meth->v.Attribute.attr, names);
3998
148
        loc = update_start_location_to_match_attr(c, loc, meth);
3999
148
        ADDOP(c, loc, NOP);
4000
7.69k
    } else {
4001
7.69k
        VISIT(c, expr, meth->v.Attribute.value);
4002
7.69k
        loc = update_start_location_to_match_attr(c, loc, meth);
4003
7.69k
        ADDOP_NAME(c, loc, LOAD_METHOD, meth->v.Attribute.attr, names);
4004
7.69k
    }
4005
4006
7.84k
    VISIT_SEQ(c, expr, e->v.Call.args);
4007
4008
7.84k
    if (kwdsl) {
4009
279
        VISIT_SEQ(c, keyword, kwds);
4010
279
        RETURN_IF_ERROR(
4011
279
            codegen_call_simple_kw_helper(c, loc, kwds, kwdsl));
4012
279
        loc = update_start_location_to_match_attr(c, LOC(e), meth);
4013
279
        ADDOP_I(c, loc, CALL_KW, argsl + kwdsl);
4014
279
    }
4015
7.56k
    else {
4016
7.56k
        loc = update_start_location_to_match_attr(c, LOC(e), meth);
4017
7.56k
        ADDOP_I(c, loc, CALL, argsl);
4018
7.56k
    }
4019
7.84k
    return 1;
4020
7.84k
}
4021
4022
static int
4023
codegen_validate_keywords(compiler *c, asdl_keyword_seq *keywords)
4024
32.1k
{
4025
32.1k
    Py_ssize_t nkeywords = asdl_seq_LEN(keywords);
4026
35.9k
    for (Py_ssize_t i = 0; i < nkeywords; i++) {
4027
3.75k
        keyword_ty key = ((keyword_ty)asdl_seq_GET(keywords, i));
4028
3.75k
        if (key->arg == NULL) {
4029
230
            continue;
4030
230
        }
4031
10.1k
        for (Py_ssize_t j = i + 1; j < nkeywords; j++) {
4032
6.59k
            keyword_ty other = ((keyword_ty)asdl_seq_GET(keywords, j));
4033
6.59k
            if (other->arg && !PyUnicode_Compare(key->arg, other->arg)) {
4034
0
                return _PyCompile_Error(c, LOC(other), "keyword argument repeated: %U", key->arg);
4035
0
            }
4036
6.59k
        }
4037
3.52k
    }
4038
32.1k
    return SUCCESS;
4039
32.1k
}
4040
4041
static int
4042
codegen_call(compiler *c, expr_ty e)
4043
19.4k
{
4044
19.4k
    RETURN_IF_ERROR(codegen_validate_keywords(c, e->v.Call.keywords));
4045
19.4k
    int ret = maybe_optimize_method_call(c, e);
4046
19.4k
    if (ret < 0) {
4047
0
        return ERROR;
4048
0
    }
4049
19.4k
    if (ret == 1) {
4050
7.84k
        return SUCCESS;
4051
7.84k
    }
4052
11.6k
    NEW_JUMP_TARGET_LABEL(c, skip_normal_call);
4053
11.6k
    RETURN_IF_ERROR(check_caller(c, e->v.Call.func));
4054
11.6k
    VISIT(c, expr, e->v.Call.func);
4055
11.6k
    RETURN_IF_ERROR(maybe_optimize_function_call(c, e, skip_normal_call));
4056
11.6k
    location loc = LOC(e->v.Call.func);
4057
11.6k
    ADDOP(c, loc, PUSH_NULL);
4058
11.6k
    loc = LOC(e);
4059
11.6k
    ret = codegen_call_helper(c, loc, 0,
4060
11.6k
                              e->v.Call.args,
4061
11.6k
                              e->v.Call.keywords);
4062
11.6k
    USE_LABEL(c, skip_normal_call);
4063
11.6k
    return ret;
4064
11.6k
}
4065
4066
static int
4067
codegen_template_str(compiler *c, expr_ty e)
4068
1
{
4069
1
    location loc = LOC(e);
4070
1
    expr_ty value;
4071
4072
1
    Py_ssize_t value_count = asdl_seq_LEN(e->v.TemplateStr.values);
4073
1
    int last_was_interpolation = 1;
4074
1
    Py_ssize_t stringslen = 0;
4075
1
    for (Py_ssize_t i = 0; i < value_count; i++) {
4076
0
        value = asdl_seq_GET(e->v.TemplateStr.values, i);
4077
0
        if (value->kind == Interpolation_kind) {
4078
0
            if (last_was_interpolation) {
4079
0
                ADDOP_LOAD_CONST(c, loc, Py_NewRef(&_Py_STR(empty)));
4080
0
                stringslen++;
4081
0
            }
4082
0
            last_was_interpolation = 1;
4083
0
        }
4084
0
        else {
4085
0
            VISIT(c, expr, value);
4086
0
            stringslen++;
4087
0
            last_was_interpolation = 0;
4088
0
        }
4089
0
    }
4090
1
    if (last_was_interpolation) {
4091
1
        ADDOP_LOAD_CONST(c, loc, Py_NewRef(&_Py_STR(empty)));
4092
1
        stringslen++;
4093
1
    }
4094
1
    ADDOP_I(c, loc, BUILD_TUPLE, stringslen);
4095
4096
1
    Py_ssize_t interpolationslen = 0;
4097
1
    for (Py_ssize_t i = 0; i < value_count; i++) {
4098
0
        value = asdl_seq_GET(e->v.TemplateStr.values, i);
4099
0
        if (value->kind == Interpolation_kind) {
4100
0
            VISIT(c, expr, value);
4101
0
            interpolationslen++;
4102
0
        }
4103
0
    }
4104
1
    ADDOP_I(c, loc, BUILD_TUPLE, interpolationslen);
4105
1
    ADDOP(c, loc, BUILD_TEMPLATE);
4106
1
    return SUCCESS;
4107
1
}
4108
4109
static int
4110
codegen_joined_str(compiler *c, expr_ty e)
4111
773
{
4112
773
    location loc = LOC(e);
4113
773
    Py_ssize_t value_count = asdl_seq_LEN(e->v.JoinedStr.values);
4114
773
    if (value_count > _PY_STACK_USE_GUIDELINE) {
4115
0
        _Py_DECLARE_STR(empty, "");
4116
0
        ADDOP_LOAD_CONST_NEW(c, loc, Py_NewRef(&_Py_STR(empty)));
4117
0
        ADDOP_NAME(c, loc, LOAD_METHOD, &_Py_ID(join), names);
4118
0
        ADDOP_I(c, loc, BUILD_LIST, 0);
4119
0
        for (Py_ssize_t i = 0; i < asdl_seq_LEN(e->v.JoinedStr.values); i++) {
4120
0
            VISIT(c, expr, asdl_seq_GET(e->v.JoinedStr.values, i));
4121
0
            ADDOP_I(c, loc, LIST_APPEND, 1);
4122
0
        }
4123
0
        ADDOP_I(c, loc, CALL, 1);
4124
0
    }
4125
773
    else {
4126
773
        VISIT_SEQ(c, expr, e->v.JoinedStr.values);
4127
773
        if (value_count > 1) {
4128
754
            ADDOP_I(c, loc, BUILD_STRING, value_count);
4129
754
        }
4130
19
        else if (value_count == 0) {
4131
0
            _Py_DECLARE_STR(empty, "");
4132
0
            ADDOP_LOAD_CONST_NEW(c, loc, Py_NewRef(&_Py_STR(empty)));
4133
0
        }
4134
773
    }
4135
773
    return SUCCESS;
4136
773
}
4137
4138
static int
4139
codegen_interpolation(compiler *c, expr_ty e)
4140
0
{
4141
0
    location loc = LOC(e);
4142
4143
0
    VISIT(c, expr, e->v.Interpolation.value);
4144
0
    ADDOP_LOAD_CONST(c, loc, e->v.Interpolation.str);
4145
4146
0
    int oparg = 2;
4147
0
    if (e->v.Interpolation.format_spec) {
4148
0
        oparg++;
4149
0
        VISIT(c, expr, e->v.Interpolation.format_spec);
4150
0
    }
4151
4152
0
    int conversion = e->v.Interpolation.conversion;
4153
0
    if (conversion != -1) {
4154
0
        switch (conversion) {
4155
0
        case 's': oparg |= FVC_STR << 2;   break;
4156
0
        case 'r': oparg |= FVC_REPR << 2;  break;
4157
0
        case 'a': oparg |= FVC_ASCII << 2; break;
4158
0
        default:
4159
0
            PyErr_Format(PyExc_SystemError,
4160
0
                     "Unrecognized conversion character %d", conversion);
4161
0
            return ERROR;
4162
0
        }
4163
0
    }
4164
4165
0
    ADDOP_I(c, loc, BUILD_INTERPOLATION, oparg);
4166
0
    return SUCCESS;
4167
0
}
4168
4169
/* Used to implement f-strings. Format a single value. */
4170
static int
4171
codegen_formatted_value(compiler *c, expr_ty e)
4172
1.41k
{
4173
1.41k
    int conversion = e->v.FormattedValue.conversion;
4174
1.41k
    int oparg;
4175
4176
    /* The expression to be formatted. */
4177
1.41k
    VISIT(c, expr, e->v.FormattedValue.value);
4178
4179
1.41k
    location loc = LOC(e);
4180
1.41k
    if (conversion != -1) {
4181
1.06k
        switch (conversion) {
4182
521
        case 's': oparg = FVC_STR;   break;
4183
548
        case 'r': oparg = FVC_REPR;  break;
4184
0
        case 'a': oparg = FVC_ASCII; break;
4185
0
        default:
4186
0
            PyErr_Format(PyExc_SystemError,
4187
0
                     "Unrecognized conversion character %d", conversion);
4188
0
            return ERROR;
4189
1.06k
        }
4190
1.06k
        ADDOP_I(c, loc, CONVERT_VALUE, oparg);
4191
1.06k
    }
4192
1.41k
    if (e->v.FormattedValue.format_spec) {
4193
        /* Evaluate the format spec, and update our opcode arg. */
4194
17
        VISIT(c, expr, e->v.FormattedValue.format_spec);
4195
17
        ADDOP(c, loc, FORMAT_WITH_SPEC);
4196
1.39k
    } else {
4197
1.39k
        ADDOP(c, loc, FORMAT_SIMPLE);
4198
1.39k
    }
4199
1.41k
    return SUCCESS;
4200
1.41k
}
4201
4202
static int
4203
codegen_subkwargs(compiler *c, location loc,
4204
                  asdl_keyword_seq *keywords,
4205
                  Py_ssize_t begin, Py_ssize_t end)
4206
12
{
4207
12
    Py_ssize_t i, n = end - begin;
4208
12
    keyword_ty kw;
4209
12
    assert(n > 0);
4210
12
    int big = n*2 > _PY_STACK_USE_GUIDELINE;
4211
12
    if (big) {
4212
0
        ADDOP_I(c, NO_LOCATION, BUILD_MAP, 0);
4213
0
    }
4214
43
    for (i = begin; i < end; i++) {
4215
31
        kw = asdl_seq_GET(keywords, i);
4216
31
        ADDOP_LOAD_CONST(c, loc, kw->arg);
4217
31
        VISIT(c, expr, kw->value);
4218
31
        if (big) {
4219
0
            ADDOP_I(c, NO_LOCATION, MAP_ADD, 1);
4220
0
        }
4221
31
    }
4222
12
    if (!big) {
4223
12
        ADDOP_I(c, loc, BUILD_MAP, n);
4224
12
    }
4225
12
    return SUCCESS;
4226
12
}
4227
4228
/* Used by codegen_call_helper and maybe_optimize_method_call to emit
4229
 * a tuple of keyword names before CALL.
4230
 */
4231
static int
4232
codegen_call_simple_kw_helper(compiler *c, location loc,
4233
                              asdl_keyword_seq *keywords, Py_ssize_t nkwelts)
4234
826
{
4235
826
    PyObject *names;
4236
826
    names = PyTuple_New(nkwelts);
4237
826
    if (names == NULL) {
4238
0
        return ERROR;
4239
0
    }
4240
2.77k
    for (Py_ssize_t i = 0; i < nkwelts; i++) {
4241
1.94k
        keyword_ty kw = asdl_seq_GET(keywords, i);
4242
1.94k
        PyTuple_SET_ITEM(names, i, Py_NewRef(kw->arg));
4243
1.94k
    }
4244
826
    ADDOP_LOAD_CONST_NEW(c, loc, names);
4245
826
    return SUCCESS;
4246
826
}
4247
4248
/* shared code between codegen_call and codegen_class */
4249
static int
4250
codegen_call_helper_impl(compiler *c, location loc,
4251
                         int n, /* Args already pushed */
4252
                         asdl_expr_seq *args,
4253
                         PyObject *injected_arg,
4254
                         asdl_keyword_seq *keywords)
4255
12.7k
{
4256
12.7k
    Py_ssize_t i, nseen, nelts, nkwelts;
4257
4258
12.7k
    RETURN_IF_ERROR(codegen_validate_keywords(c, keywords));
4259
4260
12.7k
    nelts = asdl_seq_LEN(args);
4261
12.7k
    nkwelts = asdl_seq_LEN(keywords);
4262
4263
12.7k
    if (nelts + nkwelts*2 > _PY_STACK_USE_GUIDELINE) {
4264
2
         goto ex_call;
4265
2
    }
4266
29.7k
    for (i = 0; i < nelts; i++) {
4267
17.1k
        expr_ty elt = asdl_seq_GET(args, i);
4268
17.1k
        if (elt->kind == Starred_kind) {
4269
194
            goto ex_call;
4270
194
        }
4271
17.1k
    }
4272
14.0k
    for (i = 0; i < nkwelts; i++) {
4273
1.59k
        keyword_ty kw = asdl_seq_GET(keywords, i);
4274
1.59k
        if (kw->arg == NULL) {
4275
42
            goto ex_call;
4276
42
        }
4277
1.59k
    }
4278
4279
    /* No * or ** args, so can use faster calling sequence */
4280
29.3k
    for (i = 0; i < nelts; i++) {
4281
16.8k
        expr_ty elt = asdl_seq_GET(args, i);
4282
16.8k
        assert(elt->kind != Starred_kind);
4283
16.8k
        VISIT(c, expr, elt);
4284
16.8k
    }
4285
12.5k
    if (injected_arg) {
4286
0
        RETURN_IF_ERROR(codegen_nameop(c, loc, injected_arg, Load));
4287
0
        nelts++;
4288
0
    }
4289
12.5k
    if (nkwelts) {
4290
547
        VISIT_SEQ(c, keyword, keywords);
4291
547
        RETURN_IF_ERROR(
4292
547
            codegen_call_simple_kw_helper(c, loc, keywords, nkwelts));
4293
547
        ADDOP_I(c, loc, CALL_KW, n + nelts + nkwelts);
4294
547
    }
4295
11.9k
    else {
4296
11.9k
        ADDOP_I(c, loc, CALL, n + nelts);
4297
11.9k
    }
4298
12.5k
    return SUCCESS;
4299
4300
238
ex_call:
4301
4302
    /* Do positional arguments. */
4303
238
    if (n == 0 && nelts == 1 && ((expr_ty)asdl_seq_GET(args, 0))->kind == Starred_kind) {
4304
128
        VISIT(c, expr, ((expr_ty)asdl_seq_GET(args, 0))->v.Starred.value);
4305
128
    }
4306
110
    else {
4307
110
        RETURN_IF_ERROR(starunpack_helper_impl(c, loc, args, injected_arg, n,
4308
110
                                               BUILD_LIST, LIST_APPEND, LIST_EXTEND, 1));
4309
110
    }
4310
    /* Then keyword arguments */
4311
238
    if (nkwelts) {
4312
        /* Has a new dict been pushed */
4313
120
        int have_dict = 0;
4314
4315
120
        nseen = 0;  /* the number of keyword arguments on the stack following */
4316
266
        for (i = 0; i < nkwelts; i++) {
4317
146
            keyword_ty kw = asdl_seq_GET(keywords, i);
4318
146
            if (kw->arg == NULL) {
4319
                /* A keyword argument unpacking. */
4320
115
                if (nseen) {
4321
6
                    RETURN_IF_ERROR(codegen_subkwargs(c, loc, keywords, i - nseen, i));
4322
6
                    if (have_dict) {
4323
0
                        ADDOP_I(c, loc, DICT_MERGE, 1);
4324
0
                    }
4325
6
                    have_dict = 1;
4326
6
                    nseen = 0;
4327
6
                }
4328
115
                if (!have_dict) {
4329
108
                    ADDOP_I(c, loc, BUILD_MAP, 0);
4330
108
                    have_dict = 1;
4331
108
                }
4332
115
                VISIT(c, expr, kw->value);
4333
115
                ADDOP_I(c, loc, DICT_MERGE, 1);
4334
115
            }
4335
31
            else {
4336
31
                nseen++;
4337
31
            }
4338
146
        }
4339
120
        if (nseen) {
4340
            /* Pack up any trailing keyword arguments. */
4341
6
            RETURN_IF_ERROR(codegen_subkwargs(c, loc, keywords, nkwelts - nseen, nkwelts));
4342
6
            if (have_dict) {
4343
0
                ADDOP_I(c, loc, DICT_MERGE, 1);
4344
0
            }
4345
6
            have_dict = 1;
4346
6
        }
4347
120
        assert(have_dict);
4348
120
    }
4349
238
    if (nkwelts == 0) {
4350
118
        ADDOP(c, loc, PUSH_NULL);
4351
118
    }
4352
238
    ADDOP(c, loc, CALL_FUNCTION_EX);
4353
238
    return SUCCESS;
4354
238
}
4355
4356
static int
4357
codegen_call_helper(compiler *c, location loc,
4358
                    int n, /* Args already pushed */
4359
                    asdl_expr_seq *args,
4360
                    asdl_keyword_seq *keywords)
4361
12.7k
{
4362
12.7k
    return codegen_call_helper_impl(c, loc, n, args, NULL, keywords);
4363
12.7k
}
4364
4365
/* List and set comprehensions work by being inlined at the location where
4366
  they are defined. The isolation of iteration variables is provided by
4367
  pushing/popping clashing locals on the stack. Generator expressions work
4368
  by creating a nested function to perform the actual iteration.
4369
  This means that the iteration variables don't leak into the current scope.
4370
  See https://peps.python.org/pep-0709/ for additional information.
4371
  The defined function is called immediately following its definition, with the
4372
  result of that call being the result of the expression.
4373
  The LC/SC version returns the populated container, while the GE version is
4374
  flagged in symtable.c as a generator, so it returns the generator object
4375
  when the function is called.
4376
4377
  Possible cleanups:
4378
    - iterate over the generator sequence instead of using recursion
4379
*/
4380
4381
4382
static int
4383
codegen_comprehension_generator(compiler *c, location loc,
4384
                                asdl_comprehension_seq *generators, int gen_index,
4385
                                int depth,
4386
                                expr_ty elt, expr_ty val, int type,
4387
                                int iter_on_stack)
4388
462
{
4389
462
    comprehension_ty gen;
4390
462
    gen = (comprehension_ty)asdl_seq_GET(generators, gen_index);
4391
462
    if (gen->is_async) {
4392
0
        return codegen_async_comprehension_generator(
4393
0
            c, loc, generators, gen_index, depth, elt, val, type,
4394
0
            iter_on_stack);
4395
462
    } else {
4396
462
        return codegen_sync_comprehension_generator(
4397
462
            c, loc, generators, gen_index, depth, elt, val, type,
4398
462
            iter_on_stack);
4399
462
    }
4400
462
}
4401
4402
static int
4403
codegen_sync_comprehension_generator(compiler *c, location loc,
4404
                                     asdl_comprehension_seq *generators,
4405
                                     int gen_index, int depth,
4406
                                     expr_ty elt, expr_ty val, int type,
4407
                                     int iter_on_stack)
4408
462
{
4409
    /* generate code for the iterator, then each of the ifs,
4410
       and then write to the element */
4411
4412
462
    NEW_JUMP_TARGET_LABEL(c, start);
4413
462
    NEW_JUMP_TARGET_LABEL(c, if_cleanup);
4414
462
    NEW_JUMP_TARGET_LABEL(c, anchor);
4415
4416
462
    comprehension_ty gen = (comprehension_ty)asdl_seq_GET(generators,
4417
462
                                                          gen_index);
4418
4419
462
    if (!iter_on_stack) {
4420
239
        if (gen_index == 0) {
4421
218
            assert(METADATA(c)->u_argcount == 1);
4422
218
            ADDOP_I(c, loc, LOAD_FAST, 0);
4423
218
        }
4424
21
        else {
4425
            /* Sub-iter - calculate on the fly */
4426
            /* Fast path for the temporary variable assignment idiom:
4427
                for y in [f(x)]
4428
            */
4429
21
            asdl_expr_seq *elts;
4430
21
            switch (gen->iter->kind) {
4431
0
                case List_kind:
4432
0
                    elts = gen->iter->v.List.elts;
4433
0
                    break;
4434
0
                case Tuple_kind:
4435
0
                    elts = gen->iter->v.Tuple.elts;
4436
0
                    break;
4437
21
                default:
4438
21
                    elts = NULL;
4439
21
            }
4440
21
            if (asdl_seq_LEN(elts) == 1) {
4441
0
                expr_ty elt = asdl_seq_GET(elts, 0);
4442
0
                if (elt->kind != Starred_kind) {
4443
0
                    VISIT(c, expr, elt);
4444
0
                    start = NO_LABEL;
4445
0
                }
4446
0
            }
4447
21
            if (IS_JUMP_TARGET_LABEL(start)) {
4448
21
                VISIT(c, expr, gen->iter);
4449
21
            }
4450
21
        }
4451
239
    }
4452
4453
462
    if (IS_JUMP_TARGET_LABEL(start)) {
4454
462
        depth += 2;
4455
462
        ADDOP(c, LOC(gen->iter), GET_ITER);
4456
462
        USE_LABEL(c, start);
4457
462
        ADDOP_JUMP(c, LOC(gen->iter), FOR_ITER, anchor);
4458
462
    }
4459
462
    VISIT(c, expr, gen->target);
4460
4461
    /* XXX this needs to be cleaned up...a lot! */
4462
462
    Py_ssize_t n = asdl_seq_LEN(gen->ifs);
4463
542
    for (Py_ssize_t i = 0; i < n; i++) {
4464
80
        expr_ty e = (expr_ty)asdl_seq_GET(gen->ifs, i);
4465
80
        RETURN_IF_ERROR(codegen_jump_if(c, loc, e, if_cleanup, 0));
4466
80
    }
4467
4468
462
    if (++gen_index < asdl_seq_LEN(generators)) {
4469
21
        RETURN_IF_ERROR(
4470
21
            codegen_comprehension_generator(c, loc,
4471
21
                                            generators, gen_index, depth,
4472
21
                                            elt, val, type, 0));
4473
21
    }
4474
4475
462
    location elt_loc = LOC(elt);
4476
4477
    /* only append after the last for generator */
4478
462
    if (gen_index >= asdl_seq_LEN(generators)) {
4479
        /* comprehension specific code */
4480
441
        switch (type) {
4481
218
        case COMP_GENEXP:
4482
218
            VISIT(c, expr, elt);
4483
218
            ADDOP_YIELD(c, elt_loc);
4484
218
            ADDOP(c, elt_loc, POP_TOP);
4485
218
            break;
4486
218
        case COMP_LISTCOMP:
4487
187
            VISIT(c, expr, elt);
4488
187
            ADDOP_I(c, elt_loc, LIST_APPEND, depth + 1);
4489
187
            break;
4490
187
        case COMP_SETCOMP:
4491
1
            VISIT(c, expr, elt);
4492
1
            ADDOP_I(c, elt_loc, SET_ADD, depth + 1);
4493
1
            break;
4494
35
        case COMP_DICTCOMP:
4495
            /* With '{k: v}', k is evaluated before v, so we do
4496
               the same. */
4497
35
            VISIT(c, expr, elt);
4498
35
            VISIT(c, expr, val);
4499
35
            elt_loc = LOCATION(elt->lineno,
4500
35
                               val->end_lineno,
4501
35
                               elt->col_offset,
4502
35
                               val->end_col_offset);
4503
35
            ADDOP_I(c, elt_loc, MAP_ADD, depth + 1);
4504
35
            break;
4505
35
        default:
4506
0
            return ERROR;
4507
441
        }
4508
441
    }
4509
4510
462
    USE_LABEL(c, if_cleanup);
4511
462
    if (IS_JUMP_TARGET_LABEL(start)) {
4512
462
        ADDOP_JUMP(c, elt_loc, JUMP, start);
4513
4514
462
        USE_LABEL(c, anchor);
4515
        /* It is important for instrumentation that the `END_FOR` comes first.
4516
        * Iteration over a generator will jump to the first of these instructions,
4517
        * but a non-generator will jump to a later instruction.
4518
        */
4519
462
        ADDOP(c, NO_LOCATION, END_FOR);
4520
462
        ADDOP(c, NO_LOCATION, POP_ITER);
4521
462
    }
4522
4523
462
    return SUCCESS;
4524
462
}
4525
4526
static int
4527
codegen_async_comprehension_generator(compiler *c, location loc,
4528
                                      asdl_comprehension_seq *generators,
4529
                                      int gen_index, int depth,
4530
                                      expr_ty elt, expr_ty val, int type,
4531
                                      int iter_on_stack)
4532
0
{
4533
0
    NEW_JUMP_TARGET_LABEL(c, start);
4534
0
    NEW_JUMP_TARGET_LABEL(c, send);
4535
0
    NEW_JUMP_TARGET_LABEL(c, except);
4536
0
    NEW_JUMP_TARGET_LABEL(c, if_cleanup);
4537
4538
0
    comprehension_ty gen = (comprehension_ty)asdl_seq_GET(generators,
4539
0
                                                          gen_index);
4540
4541
0
    if (!iter_on_stack) {
4542
0
        if (gen_index == 0) {
4543
0
            assert(METADATA(c)->u_argcount == 1);
4544
0
            ADDOP_I(c, loc, LOAD_FAST, 0);
4545
0
        }
4546
0
        else {
4547
            /* Sub-iter - calculate on the fly */
4548
0
            VISIT(c, expr, gen->iter);
4549
0
        }
4550
0
    }
4551
0
    ADDOP(c, LOC(gen->iter), GET_AITER);
4552
4553
0
    USE_LABEL(c, start);
4554
    /* Runtime will push a block here, so we need to account for that */
4555
0
    RETURN_IF_ERROR(
4556
0
        _PyCompile_PushFBlock(c, loc, COMPILE_FBLOCK_ASYNC_COMPREHENSION_GENERATOR,
4557
0
                              start, NO_LABEL, NULL));
4558
4559
0
    ADDOP_JUMP(c, loc, SETUP_FINALLY, except);
4560
0
    ADDOP(c, loc, GET_ANEXT);
4561
0
    ADDOP_LOAD_CONST(c, loc, Py_None);
4562
0
    USE_LABEL(c, send);
4563
0
    ADD_YIELD_FROM(c, loc, 1);
4564
0
    ADDOP(c, loc, POP_BLOCK);
4565
0
    VISIT(c, expr, gen->target);
4566
4567
0
    Py_ssize_t n = asdl_seq_LEN(gen->ifs);
4568
0
    for (Py_ssize_t i = 0; i < n; i++) {
4569
0
        expr_ty e = (expr_ty)asdl_seq_GET(gen->ifs, i);
4570
0
        RETURN_IF_ERROR(codegen_jump_if(c, loc, e, if_cleanup, 0));
4571
0
    }
4572
4573
0
    depth++;
4574
0
    if (++gen_index < asdl_seq_LEN(generators)) {
4575
0
        RETURN_IF_ERROR(
4576
0
            codegen_comprehension_generator(c, loc,
4577
0
                                            generators, gen_index, depth,
4578
0
                                            elt, val, type, 0));
4579
0
    }
4580
4581
0
    location elt_loc = LOC(elt);
4582
    /* only append after the last for generator */
4583
0
    if (gen_index >= asdl_seq_LEN(generators)) {
4584
        /* comprehension specific code */
4585
0
        switch (type) {
4586
0
        case COMP_GENEXP:
4587
0
            VISIT(c, expr, elt);
4588
0
            ADDOP_YIELD(c, elt_loc);
4589
0
            ADDOP(c, elt_loc, POP_TOP);
4590
0
            break;
4591
0
        case COMP_LISTCOMP:
4592
0
            VISIT(c, expr, elt);
4593
0
            ADDOP_I(c, elt_loc, LIST_APPEND, depth + 1);
4594
0
            break;
4595
0
        case COMP_SETCOMP:
4596
0
            VISIT(c, expr, elt);
4597
0
            ADDOP_I(c, elt_loc, SET_ADD, depth + 1);
4598
0
            break;
4599
0
        case COMP_DICTCOMP:
4600
            /* With '{k: v}', k is evaluated before v, so we do
4601
               the same. */
4602
0
            VISIT(c, expr, elt);
4603
0
            VISIT(c, expr, val);
4604
0
            elt_loc = LOCATION(elt->lineno,
4605
0
                               val->end_lineno,
4606
0
                               elt->col_offset,
4607
0
                               val->end_col_offset);
4608
0
            ADDOP_I(c, elt_loc, MAP_ADD, depth + 1);
4609
0
            break;
4610
0
        default:
4611
0
            return ERROR;
4612
0
        }
4613
0
    }
4614
4615
0
    USE_LABEL(c, if_cleanup);
4616
0
    ADDOP_JUMP(c, elt_loc, JUMP, start);
4617
4618
0
    _PyCompile_PopFBlock(c, COMPILE_FBLOCK_ASYNC_COMPREHENSION_GENERATOR, start);
4619
4620
0
    USE_LABEL(c, except);
4621
4622
0
    ADDOP_JUMP(c, loc, END_ASYNC_FOR, send);
4623
4624
0
    return SUCCESS;
4625
0
}
4626
4627
static int
4628
codegen_push_inlined_comprehension_locals(compiler *c, location loc,
4629
                                          PySTEntryObject *comp,
4630
                                          _PyCompile_InlinedComprehensionState *state)
4631
223
{
4632
223
    int in_class_block = (SYMTABLE_ENTRY(c)->ste_type == ClassBlock) &&
4633
223
                          !_PyCompile_IsInInlinedComp(c);
4634
223
    PySTEntryObject *outer = SYMTABLE_ENTRY(c);
4635
    // iterate over names bound in the comprehension and ensure we isolate
4636
    // them from the outer scope as needed
4637
223
    PyObject *k, *v;
4638
223
    Py_ssize_t pos = 0;
4639
959
    while (PyDict_Next(comp->ste_symbols, &pos, &k, &v)) {
4640
736
        long symbol = PyLong_AsLong(v);
4641
736
        assert(symbol >= 0 || PyErr_Occurred());
4642
736
        RETURN_IF_ERROR(symbol);
4643
736
        long scope = SYMBOL_TO_SCOPE(symbol);
4644
4645
736
        long outsymbol = _PyST_GetSymbol(outer, k);
4646
736
        RETURN_IF_ERROR(outsymbol);
4647
736
        long outsc = SYMBOL_TO_SCOPE(outsymbol);
4648
4649
736
        if ((symbol & DEF_LOCAL && !(symbol & DEF_NONLOCAL)) || in_class_block) {
4650
            // local names bound in comprehension must be isolated from
4651
            // outer scope; push existing value (which may be NULL if
4652
            // not defined) on stack
4653
294
            if (state->pushed_locals == NULL) {
4654
223
                state->pushed_locals = PyList_New(0);
4655
223
                if (state->pushed_locals == NULL) {
4656
0
                    return ERROR;
4657
0
                }
4658
223
            }
4659
            // in the case of a cell, this will actually push the cell
4660
            // itself to the stack, then we'll create a new one for the
4661
            // comprehension and restore the original one after
4662
294
            ADDOP_NAME(c, loc, LOAD_FAST_AND_CLEAR, k, varnames);
4663
294
            if (scope == CELL) {
4664
0
                if (outsc == FREE) {
4665
0
                    ADDOP_NAME(c, loc, MAKE_CELL, k, freevars);
4666
0
                } else {
4667
0
                    ADDOP_NAME(c, loc, MAKE_CELL, k, cellvars);
4668
0
                }
4669
0
            }
4670
294
            if (PyList_Append(state->pushed_locals, k) < 0) {
4671
0
                return ERROR;
4672
0
            }
4673
294
        }
4674
736
    }
4675
223
    if (state->pushed_locals) {
4676
        // Outermost iterable expression was already evaluated and is on the
4677
        // stack, we need to swap it back to TOS. This also rotates the order of
4678
        // `pushed_locals` on the stack, but this will be reversed when we swap
4679
        // out the comprehension result in pop_inlined_comprehension_state
4680
223
        ADDOP_I(c, loc, SWAP, PyList_GET_SIZE(state->pushed_locals) + 1);
4681
4682
        // Add our own cleanup handler to restore comprehension locals in case
4683
        // of exception, so they have the correct values inside an exception
4684
        // handler or finally block.
4685
223
        NEW_JUMP_TARGET_LABEL(c, cleanup);
4686
223
        state->cleanup = cleanup;
4687
4688
        // no need to push an fblock for this "virtual" try/finally; there can't
4689
        // be return/continue/break inside a comprehension
4690
223
        ADDOP_JUMP(c, loc, SETUP_FINALLY, cleanup);
4691
223
    }
4692
223
    return SUCCESS;
4693
223
}
4694
4695
static int
4696
push_inlined_comprehension_state(compiler *c, location loc,
4697
                                 PySTEntryObject *comp,
4698
                                 _PyCompile_InlinedComprehensionState *state)
4699
223
{
4700
223
    RETURN_IF_ERROR(
4701
223
        _PyCompile_TweakInlinedComprehensionScopes(c, loc, comp, state));
4702
223
    RETURN_IF_ERROR(
4703
223
        codegen_push_inlined_comprehension_locals(c, loc, comp, state));
4704
223
    return SUCCESS;
4705
223
}
4706
4707
static int
4708
restore_inlined_comprehension_locals(compiler *c, location loc,
4709
                                     _PyCompile_InlinedComprehensionState *state)
4710
446
{
4711
446
    PyObject *k;
4712
    // pop names we pushed to stack earlier
4713
446
    Py_ssize_t npops = PyList_GET_SIZE(state->pushed_locals);
4714
    // Preserve the comprehension result (or exception) as TOS. This
4715
    // reverses the SWAP we did in push_inlined_comprehension_state
4716
    // to get the outermost iterable to TOS, so we can still just iterate
4717
    // pushed_locals in simple reverse order
4718
446
    ADDOP_I(c, loc, SWAP, npops + 1);
4719
1.03k
    for (Py_ssize_t i = npops - 1; i >= 0; --i) {
4720
588
        k = PyList_GetItem(state->pushed_locals, i);
4721
588
        if (k == NULL) {
4722
0
            return ERROR;
4723
0
        }
4724
588
        ADDOP_NAME(c, loc, STORE_FAST_MAYBE_NULL, k, varnames);
4725
588
    }
4726
446
    return SUCCESS;
4727
446
}
4728
4729
static int
4730
codegen_pop_inlined_comprehension_locals(compiler *c, location loc,
4731
                                         _PyCompile_InlinedComprehensionState *state)
4732
223
{
4733
223
    if (state->pushed_locals) {
4734
223
        ADDOP(c, NO_LOCATION, POP_BLOCK);
4735
4736
223
        NEW_JUMP_TARGET_LABEL(c, end);
4737
223
        ADDOP_JUMP(c, NO_LOCATION, JUMP_NO_INTERRUPT, end);
4738
4739
        // cleanup from an exception inside the comprehension
4740
223
        USE_LABEL(c, state->cleanup);
4741
        // discard incomplete comprehension result (beneath exc on stack)
4742
223
        ADDOP_I(c, NO_LOCATION, SWAP, 2);
4743
223
        ADDOP(c, NO_LOCATION, POP_TOP);
4744
223
        RETURN_IF_ERROR(restore_inlined_comprehension_locals(c, loc, state));
4745
223
        ADDOP_I(c, NO_LOCATION, RERAISE, 0);
4746
4747
223
        USE_LABEL(c, end);
4748
223
        RETURN_IF_ERROR(restore_inlined_comprehension_locals(c, loc, state));
4749
223
        Py_CLEAR(state->pushed_locals);
4750
223
    }
4751
223
    return SUCCESS;
4752
223
}
4753
4754
static int
4755
pop_inlined_comprehension_state(compiler *c, location loc,
4756
                                _PyCompile_InlinedComprehensionState *state)
4757
223
{
4758
223
    RETURN_IF_ERROR(codegen_pop_inlined_comprehension_locals(c, loc, state));
4759
223
    RETURN_IF_ERROR(_PyCompile_RevertInlinedComprehensionScopes(c, loc, state));
4760
223
    return SUCCESS;
4761
223
}
4762
4763
static int
4764
codegen_comprehension(compiler *c, expr_ty e, int type,
4765
                      identifier name, asdl_comprehension_seq *generators, expr_ty elt,
4766
                      expr_ty val)
4767
441
{
4768
441
    PyCodeObject *co = NULL;
4769
441
    _PyCompile_InlinedComprehensionState inline_state = {NULL, NULL, NULL, NO_LABEL};
4770
441
    comprehension_ty outermost;
4771
441
    PySTEntryObject *entry = _PySymtable_Lookup(SYMTABLE(c), (void *)e);
4772
441
    if (entry == NULL) {
4773
0
        goto error;
4774
0
    }
4775
441
    int is_inlined = entry->ste_comp_inlined;
4776
441
    int is_async_comprehension = entry->ste_coroutine;
4777
4778
441
    location loc = LOC(e);
4779
4780
441
    outermost = (comprehension_ty) asdl_seq_GET(generators, 0);
4781
441
    if (is_inlined) {
4782
223
        VISIT(c, expr, outermost->iter);
4783
223
        if (push_inlined_comprehension_state(c, loc, entry, &inline_state)) {
4784
0
            goto error;
4785
0
        }
4786
223
    }
4787
218
    else {
4788
        /* Receive outermost iter as an implicit argument */
4789
218
        _PyCompile_CodeUnitMetadata umd = {
4790
218
            .u_argcount = 1,
4791
218
        };
4792
218
        if (codegen_enter_scope(c, name, COMPILE_SCOPE_COMPREHENSION,
4793
218
                                (void *)e, e->lineno, NULL, &umd) < 0) {
4794
0
            goto error;
4795
0
        }
4796
218
    }
4797
441
    Py_CLEAR(entry);
4798
4799
441
    if (type != COMP_GENEXP) {
4800
223
        int op;
4801
223
        switch (type) {
4802
187
        case COMP_LISTCOMP:
4803
187
            op = BUILD_LIST;
4804
187
            break;
4805
1
        case COMP_SETCOMP:
4806
1
            op = BUILD_SET;
4807
1
            break;
4808
35
        case COMP_DICTCOMP:
4809
35
            op = BUILD_MAP;
4810
35
            break;
4811
0
        default:
4812
0
            PyErr_Format(PyExc_SystemError,
4813
0
                         "unknown comprehension type %d", type);
4814
0
            goto error_in_scope;
4815
223
        }
4816
4817
223
        ADDOP_I(c, loc, op, 0);
4818
223
        if (is_inlined) {
4819
223
            ADDOP_I(c, loc, SWAP, 2);
4820
223
        }
4821
223
    }
4822
4823
441
    if (codegen_comprehension_generator(c, loc, generators, 0, 0,
4824
441
                                        elt, val, type, is_inlined) < 0) {
4825
0
        goto error_in_scope;
4826
0
    }
4827
4828
441
    if (is_inlined) {
4829
223
        if (pop_inlined_comprehension_state(c, loc, &inline_state)) {
4830
0
            goto error;
4831
0
        }
4832
223
        return SUCCESS;
4833
223
    }
4834
4835
218
    if (type != COMP_GENEXP) {
4836
0
        ADDOP(c, LOC(e), RETURN_VALUE);
4837
0
    }
4838
218
    if (type == COMP_GENEXP) {
4839
218
        if (codegen_wrap_in_stopiteration_handler(c) < 0) {
4840
0
            goto error_in_scope;
4841
0
        }
4842
218
    }
4843
4844
218
    co = _PyCompile_OptimizeAndAssemble(c, 1);
4845
218
    _PyCompile_ExitScope(c);
4846
218
    if (co == NULL) {
4847
0
        goto error;
4848
0
    }
4849
4850
218
    loc = LOC(e);
4851
218
    if (codegen_make_closure(c, loc, co, 0) < 0) {
4852
0
        goto error;
4853
0
    }
4854
218
    Py_CLEAR(co);
4855
4856
218
    VISIT(c, expr, outermost->iter);
4857
218
    ADDOP_I(c, loc, CALL, 0);
4858
4859
218
    if (is_async_comprehension && type != COMP_GENEXP) {
4860
0
        ADDOP_I(c, loc, GET_AWAITABLE, 0);
4861
0
        ADDOP_LOAD_CONST(c, loc, Py_None);
4862
0
        ADD_YIELD_FROM(c, loc, 1);
4863
0
    }
4864
4865
218
    return SUCCESS;
4866
0
error_in_scope:
4867
0
    if (!is_inlined) {
4868
0
        _PyCompile_ExitScope(c);
4869
0
    }
4870
0
error:
4871
0
    Py_XDECREF(co);
4872
0
    Py_XDECREF(entry);
4873
0
    Py_XDECREF(inline_state.pushed_locals);
4874
0
    Py_XDECREF(inline_state.temp_symbols);
4875
0
    Py_XDECREF(inline_state.fast_hidden);
4876
0
    return ERROR;
4877
0
}
4878
4879
static int
4880
codegen_genexp(compiler *c, expr_ty e)
4881
218
{
4882
218
    assert(e->kind == GeneratorExp_kind);
4883
218
    _Py_DECLARE_STR(anon_genexpr, "<genexpr>");
4884
218
    return codegen_comprehension(c, e, COMP_GENEXP, &_Py_STR(anon_genexpr),
4885
218
                                 e->v.GeneratorExp.generators,
4886
218
                                 e->v.GeneratorExp.elt, NULL);
4887
218
}
4888
4889
static int
4890
codegen_listcomp(compiler *c, expr_ty e)
4891
187
{
4892
187
    assert(e->kind == ListComp_kind);
4893
187
    _Py_DECLARE_STR(anon_listcomp, "<listcomp>");
4894
187
    return codegen_comprehension(c, e, COMP_LISTCOMP, &_Py_STR(anon_listcomp),
4895
187
                                 e->v.ListComp.generators,
4896
187
                                 e->v.ListComp.elt, NULL);
4897
187
}
4898
4899
static int
4900
codegen_setcomp(compiler *c, expr_ty e)
4901
1
{
4902
1
    assert(e->kind == SetComp_kind);
4903
1
    _Py_DECLARE_STR(anon_setcomp, "<setcomp>");
4904
1
    return codegen_comprehension(c, e, COMP_SETCOMP, &_Py_STR(anon_setcomp),
4905
1
                                 e->v.SetComp.generators,
4906
1
                                 e->v.SetComp.elt, NULL);
4907
1
}
4908
4909
4910
static int
4911
codegen_dictcomp(compiler *c, expr_ty e)
4912
35
{
4913
35
    assert(e->kind == DictComp_kind);
4914
35
    _Py_DECLARE_STR(anon_dictcomp, "<dictcomp>");
4915
35
    return codegen_comprehension(c, e, COMP_DICTCOMP, &_Py_STR(anon_dictcomp),
4916
35
                                 e->v.DictComp.generators,
4917
35
                                 e->v.DictComp.key, e->v.DictComp.value);
4918
35
}
4919
4920
4921
static int
4922
codegen_visit_keyword(compiler *c, keyword_ty k)
4923
1.94k
{
4924
1.94k
    VISIT(c, expr, k->value);
4925
1.94k
    return SUCCESS;
4926
1.94k
}
4927
4928
4929
static int
4930
96
codegen_with_except_finish(compiler *c, jump_target_label cleanup) {
4931
96
    NEW_JUMP_TARGET_LABEL(c, suppress);
4932
96
    ADDOP(c, NO_LOCATION, TO_BOOL);
4933
96
    ADDOP_JUMP(c, NO_LOCATION, POP_JUMP_IF_TRUE, suppress);
4934
96
    ADDOP_I(c, NO_LOCATION, RERAISE, 2);
4935
4936
96
    USE_LABEL(c, suppress);
4937
96
    ADDOP(c, NO_LOCATION, POP_TOP); /* exc_value */
4938
96
    ADDOP(c, NO_LOCATION, POP_BLOCK);
4939
96
    ADDOP(c, NO_LOCATION, POP_EXCEPT);
4940
96
    ADDOP(c, NO_LOCATION, POP_TOP);
4941
96
    ADDOP(c, NO_LOCATION, POP_TOP);
4942
96
    ADDOP(c, NO_LOCATION, POP_TOP);
4943
96
    NEW_JUMP_TARGET_LABEL(c, exit);
4944
96
    ADDOP_JUMP(c, NO_LOCATION, JUMP_NO_INTERRUPT, exit);
4945
4946
96
    USE_LABEL(c, cleanup);
4947
96
    POP_EXCEPT_AND_RERAISE(c, NO_LOCATION);
4948
4949
96
    USE_LABEL(c, exit);
4950
96
    return SUCCESS;
4951
96
}
4952
4953
/*
4954
   Implements the async with statement.
4955
4956
   The semantics outlined in that PEP are as follows:
4957
4958
   async with EXPR as VAR:
4959
       BLOCK
4960
4961
   It is implemented roughly as:
4962
4963
   context = EXPR
4964
   exit = context.__aexit__  # not calling it
4965
   value = await context.__aenter__()
4966
   try:
4967
       VAR = value  # if VAR present in the syntax
4968
       BLOCK
4969
   finally:
4970
       if an exception was raised:
4971
           exc = copy of (exception, instance, traceback)
4972
       else:
4973
           exc = (None, None, None)
4974
       if not (await exit(*exc)):
4975
           raise
4976
 */
4977
static int
4978
codegen_async_with_inner(compiler *c, stmt_ty s, int pos)
4979
2
{
4980
2
    location loc = LOC(s);
4981
2
    withitem_ty item = asdl_seq_GET(s->v.AsyncWith.items, pos);
4982
4983
2
    assert(s->kind == AsyncWith_kind);
4984
4985
2
    NEW_JUMP_TARGET_LABEL(c, block);
4986
2
    NEW_JUMP_TARGET_LABEL(c, final);
4987
2
    NEW_JUMP_TARGET_LABEL(c, exit);
4988
2
    NEW_JUMP_TARGET_LABEL(c, cleanup);
4989
4990
    /* Evaluate EXPR */
4991
2
    VISIT(c, expr, item->context_expr);
4992
2
    loc = LOC(item->context_expr);
4993
2
    ADDOP_I(c, loc, COPY, 1);
4994
2
    ADDOP_I(c, loc, LOAD_SPECIAL, SPECIAL___AEXIT__);
4995
2
    ADDOP_I(c, loc, SWAP, 2);
4996
2
    ADDOP_I(c, loc, SWAP, 3);
4997
2
    ADDOP_I(c, loc, LOAD_SPECIAL, SPECIAL___AENTER__);
4998
2
    ADDOP_I(c, loc, CALL, 0);
4999
2
    ADDOP_I(c, loc, GET_AWAITABLE, 1);
5000
2
    ADDOP_LOAD_CONST(c, loc, Py_None);
5001
2
    ADD_YIELD_FROM(c, loc, 1);
5002
5003
2
    ADDOP_JUMP(c, loc, SETUP_WITH, final);
5004
5005
    /* SETUP_WITH pushes a finally block. */
5006
2
    USE_LABEL(c, block);
5007
2
    RETURN_IF_ERROR(_PyCompile_PushFBlock(c, loc, COMPILE_FBLOCK_ASYNC_WITH, block, final, s));
5008
5009
2
    if (item->optional_vars) {
5010
0
        VISIT(c, expr, item->optional_vars);
5011
0
    }
5012
2
    else {
5013
        /* Discard result from context.__aenter__() */
5014
2
        ADDOP(c, loc, POP_TOP);
5015
2
    }
5016
5017
2
    pos++;
5018
2
    if (pos == asdl_seq_LEN(s->v.AsyncWith.items)) {
5019
        /* BLOCK code */
5020
2
        VISIT_SEQ(c, stmt, s->v.AsyncWith.body);
5021
2
    }
5022
0
    else {
5023
0
        RETURN_IF_ERROR(codegen_async_with_inner(c, s, pos));
5024
0
    }
5025
5026
2
    _PyCompile_PopFBlock(c, COMPILE_FBLOCK_ASYNC_WITH, block);
5027
5028
2
    ADDOP(c, loc, POP_BLOCK);
5029
    /* End of body; start the cleanup */
5030
5031
    /* For successful outcome:
5032
     * call __exit__(None, None, None)
5033
     */
5034
2
    RETURN_IF_ERROR(codegen_call_exit_with_nones(c, loc));
5035
2
    ADDOP_I(c, loc, GET_AWAITABLE, 2);
5036
2
    ADDOP_LOAD_CONST(c, loc, Py_None);
5037
2
    ADD_YIELD_FROM(c, loc, 1);
5038
5039
2
    ADDOP(c, loc, POP_TOP);
5040
5041
2
    ADDOP_JUMP(c, loc, JUMP, exit);
5042
5043
    /* For exceptional outcome: */
5044
2
    USE_LABEL(c, final);
5045
5046
2
    ADDOP_JUMP(c, loc, SETUP_CLEANUP, cleanup);
5047
2
    ADDOP(c, loc, PUSH_EXC_INFO);
5048
2
    ADDOP(c, loc, WITH_EXCEPT_START);
5049
2
    ADDOP_I(c, loc, GET_AWAITABLE, 2);
5050
2
    ADDOP_LOAD_CONST(c, loc, Py_None);
5051
2
    ADD_YIELD_FROM(c, loc, 1);
5052
2
    RETURN_IF_ERROR(codegen_with_except_finish(c, cleanup));
5053
5054
2
    USE_LABEL(c, exit);
5055
2
    return SUCCESS;
5056
2
}
5057
5058
static int
5059
codegen_async_with(compiler *c, stmt_ty s)
5060
2
{
5061
2
    return codegen_async_with_inner(c, s, 0);
5062
2
}
5063
5064
5065
/*
5066
   Implements the with statement from PEP 343.
5067
   with EXPR as VAR:
5068
       BLOCK
5069
   is implemented as:
5070
        <code for EXPR>
5071
        SETUP_WITH  E
5072
        <code to store to VAR> or POP_TOP
5073
        <code for BLOCK>
5074
        LOAD_CONST (None, None, None)
5075
        CALL_FUNCTION_EX 0
5076
        JUMP  EXIT
5077
    E:  WITH_EXCEPT_START (calls EXPR.__exit__)
5078
        POP_JUMP_IF_TRUE T:
5079
        RERAISE
5080
    T:  POP_TOP (remove exception from stack)
5081
        POP_EXCEPT
5082
        POP_TOP
5083
    EXIT:
5084
 */
5085
5086
static int
5087
codegen_with_inner(compiler *c, stmt_ty s, int pos)
5088
94
{
5089
94
    withitem_ty item = asdl_seq_GET(s->v.With.items, pos);
5090
5091
94
    assert(s->kind == With_kind);
5092
5093
94
    NEW_JUMP_TARGET_LABEL(c, block);
5094
94
    NEW_JUMP_TARGET_LABEL(c, final);
5095
94
    NEW_JUMP_TARGET_LABEL(c, exit);
5096
94
    NEW_JUMP_TARGET_LABEL(c, cleanup);
5097
5098
    /* Evaluate EXPR */
5099
94
    VISIT(c, expr, item->context_expr);
5100
    /* Will push bound __exit__ */
5101
94
    location loc = LOC(item->context_expr);
5102
94
    ADDOP_I(c, loc, COPY, 1);
5103
94
    ADDOP_I(c, loc, LOAD_SPECIAL, SPECIAL___EXIT__);
5104
94
    ADDOP_I(c, loc, SWAP, 2);
5105
94
    ADDOP_I(c, loc, SWAP, 3);
5106
94
    ADDOP_I(c, loc, LOAD_SPECIAL, SPECIAL___ENTER__);
5107
94
    ADDOP_I(c, loc, CALL, 0);
5108
94
    ADDOP_JUMP(c, loc, SETUP_WITH, final);
5109
5110
    /* SETUP_WITH pushes a finally block. */
5111
94
    USE_LABEL(c, block);
5112
94
    RETURN_IF_ERROR(_PyCompile_PushFBlock(c, loc, COMPILE_FBLOCK_WITH, block, final, s));
5113
5114
94
    if (item->optional_vars) {
5115
32
        VISIT(c, expr, item->optional_vars);
5116
32
    }
5117
62
    else {
5118
    /* Discard result from context.__enter__() */
5119
62
        ADDOP(c, loc, POP_TOP);
5120
62
    }
5121
5122
94
    pos++;
5123
94
    if (pos == asdl_seq_LEN(s->v.With.items)) {
5124
        /* BLOCK code */
5125
90
        VISIT_SEQ(c, stmt, s->v.With.body);
5126
90
    }
5127
4
    else {
5128
4
        RETURN_IF_ERROR(codegen_with_inner(c, s, pos));
5129
4
    }
5130
5131
94
    ADDOP(c, NO_LOCATION, POP_BLOCK);
5132
94
    _PyCompile_PopFBlock(c, COMPILE_FBLOCK_WITH, block);
5133
5134
    /* End of body; start the cleanup. */
5135
5136
    /* For successful outcome:
5137
     * call __exit__(None, None, None)
5138
     */
5139
94
    RETURN_IF_ERROR(codegen_call_exit_with_nones(c, loc));
5140
94
    ADDOP(c, loc, POP_TOP);
5141
94
    ADDOP_JUMP(c, loc, JUMP, exit);
5142
5143
    /* For exceptional outcome: */
5144
94
    USE_LABEL(c, final);
5145
5146
94
    ADDOP_JUMP(c, loc, SETUP_CLEANUP, cleanup);
5147
94
    ADDOP(c, loc, PUSH_EXC_INFO);
5148
94
    ADDOP(c, loc, WITH_EXCEPT_START);
5149
94
    RETURN_IF_ERROR(codegen_with_except_finish(c, cleanup));
5150
5151
94
    USE_LABEL(c, exit);
5152
94
    return SUCCESS;
5153
94
}
5154
5155
static int
5156
codegen_with(compiler *c, stmt_ty s)
5157
90
{
5158
90
    return codegen_with_inner(c, s, 0);
5159
90
}
5160
5161
static int
5162
codegen_visit_expr(compiler *c, expr_ty e)
5163
185k
{
5164
185k
    if (Py_EnterRecursiveCall(" during compilation")) {
5165
0
        return ERROR;
5166
0
    }
5167
185k
    location loc = LOC(e);
5168
185k
    switch (e->kind) {
5169
33
    case NamedExpr_kind:
5170
33
        VISIT(c, expr, e->v.NamedExpr.value);
5171
33
        ADDOP_I(c, loc, COPY, 1);
5172
33
        VISIT(c, expr, e->v.NamedExpr.target);
5173
33
        break;
5174
428
    case BoolOp_kind:
5175
428
        return codegen_boolop(c, e);
5176
3.52k
    case BinOp_kind:
5177
3.52k
        VISIT(c, expr, e->v.BinOp.left);
5178
3.52k
        VISIT(c, expr, e->v.BinOp.right);
5179
3.52k
        ADDOP_BINARY(c, loc, e->v.BinOp.op);
5180
3.52k
        break;
5181
3.52k
    case UnaryOp_kind:
5182
679
        VISIT(c, expr, e->v.UnaryOp.operand);
5183
679
        if (e->v.UnaryOp.op == UAdd) {
5184
2
            ADDOP_I(c, loc, CALL_INTRINSIC_1, INTRINSIC_UNARY_POSITIVE);
5185
2
        }
5186
677
        else if (e->v.UnaryOp.op == Not) {
5187
58
            ADDOP(c, loc, TO_BOOL);
5188
58
            ADDOP(c, loc, UNARY_NOT);
5189
58
        }
5190
619
        else {
5191
619
            ADDOP(c, loc, unaryop(e->v.UnaryOp.op));
5192
619
        }
5193
679
        break;
5194
679
    case Lambda_kind:
5195
145
        return codegen_lambda(c, e);
5196
213
    case IfExp_kind:
5197
213
        return codegen_ifexp(c, e);
5198
369
    case Dict_kind:
5199
369
        return codegen_dict(c, e);
5200
90
    case Set_kind:
5201
90
        return codegen_set(c, e);
5202
218
    case GeneratorExp_kind:
5203
218
        return codegen_genexp(c, e);
5204
187
    case ListComp_kind:
5205
187
        return codegen_listcomp(c, e);
5206
1
    case SetComp_kind:
5207
1
        return codegen_setcomp(c, e);
5208
35
    case DictComp_kind:
5209
35
        return codegen_dictcomp(c, e);
5210
196
    case Yield_kind:
5211
196
        if (!_PyST_IsFunctionLike(SYMTABLE_ENTRY(c))) {
5212
0
            return _PyCompile_Error(c, loc, "'yield' outside function");
5213
0
        }
5214
196
        if (e->v.Yield.value) {
5215
193
            VISIT(c, expr, e->v.Yield.value);
5216
193
        }
5217
3
        else {
5218
3
            ADDOP_LOAD_CONST(c, loc, Py_None);
5219
3
        }
5220
196
        ADDOP_YIELD(c, loc);
5221
196
        break;
5222
196
    case YieldFrom_kind:
5223
33
        if (!_PyST_IsFunctionLike(SYMTABLE_ENTRY(c))) {
5224
0
            return _PyCompile_Error(c, loc, "'yield from' outside function");
5225
0
        }
5226
33
        if (SCOPE_TYPE(c) == COMPILE_SCOPE_ASYNC_FUNCTION) {
5227
0
            return _PyCompile_Error(c, loc, "'yield from' inside async function");
5228
0
        }
5229
33
        VISIT(c, expr, e->v.YieldFrom.value);
5230
33
        ADDOP(c, loc, GET_YIELD_FROM_ITER);
5231
33
        ADDOP_LOAD_CONST(c, loc, Py_None);
5232
33
        ADD_YIELD_FROM(c, loc, 0);
5233
33
        break;
5234
33
    case Await_kind:
5235
26
        VISIT(c, expr, e->v.Await.value);
5236
26
        ADDOP_I(c, loc, GET_AWAITABLE, 0);
5237
26
        ADDOP_LOAD_CONST(c, loc, Py_None);
5238
26
        ADD_YIELD_FROM(c, loc, 1);
5239
26
        break;
5240
6.02k
    case Compare_kind:
5241
6.02k
        return codegen_compare(c, e);
5242
19.4k
    case Call_kind:
5243
19.4k
        return codegen_call(c, e);
5244
46.5k
    case Constant_kind:
5245
46.5k
        ADDOP_LOAD_CONST(c, loc, e->v.Constant.value);
5246
46.5k
        break;
5247
46.5k
    case JoinedStr_kind:
5248
773
        return codegen_joined_str(c, e);
5249
1
    case TemplateStr_kind:
5250
1
        return codegen_template_str(c, e);
5251
1.41k
    case FormattedValue_kind:
5252
1.41k
        return codegen_formatted_value(c, e);
5253
0
    case Interpolation_kind:
5254
0
        return codegen_interpolation(c, e);
5255
    /* The following exprs can be assignment targets. */
5256
13.9k
    case Attribute_kind:
5257
13.9k
        if (e->v.Attribute.ctx == Load) {
5258
12.1k
            int ret = can_optimize_super_call(c, e);
5259
12.1k
            RETURN_IF_ERROR(ret);
5260
12.1k
            if (ret) {
5261
62
                RETURN_IF_ERROR(load_args_for_super(c, e->v.Attribute.value));
5262
62
                int opcode = asdl_seq_LEN(e->v.Attribute.value->v.Call.args) ?
5263
46
                    LOAD_SUPER_ATTR : LOAD_ZERO_SUPER_ATTR;
5264
62
                ADDOP_NAME(c, loc, opcode, e->v.Attribute.attr, names);
5265
62
                loc = update_start_location_to_match_attr(c, loc, e);
5266
62
                ADDOP(c, loc, NOP);
5267
62
                return SUCCESS;
5268
62
            }
5269
12.1k
        }
5270
13.8k
        RETURN_IF_ERROR(_PyCompile_MaybeAddStaticAttributeToClass(c, e));
5271
13.8k
        VISIT(c, expr, e->v.Attribute.value);
5272
13.8k
        loc = LOC(e);
5273
13.8k
        loc = update_start_location_to_match_attr(c, loc, e);
5274
13.8k
        switch (e->v.Attribute.ctx) {
5275
12.1k
        case Load:
5276
12.1k
            ADDOP_NAME(c, loc, LOAD_ATTR, e->v.Attribute.attr, names);
5277
12.1k
            break;
5278
12.1k
        case Store:
5279
1.71k
            ADDOP_NAME(c, loc, STORE_ATTR, e->v.Attribute.attr, names);
5280
1.71k
            break;
5281
1.71k
        case Del:
5282
21
            ADDOP_NAME(c, loc, DELETE_ATTR, e->v.Attribute.attr, names);
5283
21
            break;
5284
13.8k
        }
5285
13.8k
        break;
5286
13.8k
    case Subscript_kind:
5287
3.78k
        return codegen_subscript(c, e);
5288
0
    case Starred_kind:
5289
0
        switch (e->v.Starred.ctx) {
5290
0
        case Store:
5291
            /* In all legitimate cases, the Starred node was already replaced
5292
             * by codegen_list/codegen_tuple. XXX: is that okay? */
5293
0
            return _PyCompile_Error(c, loc,
5294
0
                "starred assignment target must be in a list or tuple");
5295
0
        default:
5296
0
            return _PyCompile_Error(c, loc,
5297
0
                "can't use starred expression here");
5298
0
        }
5299
0
        break;
5300
374
    case Slice_kind:
5301
374
        RETURN_IF_ERROR(codegen_slice(c, e));
5302
374
        break;
5303
82.2k
    case Name_kind:
5304
82.2k
        return codegen_nameop(c, loc, e->v.Name.id, e->v.Name.ctx);
5305
    /* child nodes of List and Tuple will have expr_context set */
5306
893
    case List_kind:
5307
893
        return codegen_list(c, e);
5308
3.37k
    case Tuple_kind:
5309
3.37k
        return codegen_tuple(c, e);
5310
185k
    }
5311
65.2k
    return SUCCESS;
5312
185k
}
5313
5314
static bool
5315
is_constant_slice(expr_ty s)
5316
4.19k
{
5317
4.19k
    return s->kind == Slice_kind &&
5318
4.19k
        (s->v.Slice.lower == NULL ||
5319
1.20k
         s->v.Slice.lower->kind == Constant_kind) &&
5320
4.19k
        (s->v.Slice.upper == NULL ||
5321
892
         s->v.Slice.upper->kind == Constant_kind) &&
5322
4.19k
        (s->v.Slice.step == NULL ||
5323
738
         s->v.Slice.step->kind == Constant_kind);
5324
4.19k
}
5325
5326
static bool
5327
should_apply_two_element_slice_optimization(expr_ty s)
5328
3.81k
{
5329
3.81k
    return !is_constant_slice(s) &&
5330
3.81k
           s->kind == Slice_kind &&
5331
3.81k
           s->v.Slice.step == NULL;
5332
3.81k
}
5333
5334
static int
5335
codegen_augassign(compiler *c, stmt_ty s)
5336
600
{
5337
600
    assert(s->kind == AugAssign_kind);
5338
600
    expr_ty e = s->v.AugAssign.target;
5339
5340
600
    location loc = LOC(e);
5341
5342
600
    switch (e->kind) {
5343
85
    case Attribute_kind:
5344
85
        VISIT(c, expr, e->v.Attribute.value);
5345
85
        ADDOP_I(c, loc, COPY, 1);
5346
85
        loc = update_start_location_to_match_attr(c, loc, e);
5347
85
        ADDOP_NAME(c, loc, LOAD_ATTR, e->v.Attribute.attr, names);
5348
85
        break;
5349
85
    case Subscript_kind:
5350
18
        VISIT(c, expr, e->v.Subscript.value);
5351
18
        if (should_apply_two_element_slice_optimization(e->v.Subscript.slice)) {
5352
0
            RETURN_IF_ERROR(codegen_slice_two_parts(c, e->v.Subscript.slice));
5353
0
            ADDOP_I(c, loc, COPY, 3);
5354
0
            ADDOP_I(c, loc, COPY, 3);
5355
0
            ADDOP_I(c, loc, COPY, 3);
5356
0
            ADDOP(c, loc, BINARY_SLICE);
5357
0
        }
5358
18
        else {
5359
18
            VISIT(c, expr, e->v.Subscript.slice);
5360
18
            ADDOP_I(c, loc, COPY, 2);
5361
18
            ADDOP_I(c, loc, COPY, 2);
5362
18
            ADDOP_I(c, loc, BINARY_OP, NB_SUBSCR);
5363
18
        }
5364
18
        break;
5365
497
    case Name_kind:
5366
497
        RETURN_IF_ERROR(codegen_nameop(c, loc, e->v.Name.id, Load));
5367
497
        break;
5368
497
    default:
5369
0
        PyErr_Format(PyExc_SystemError,
5370
0
            "invalid node type (%d) for augmented assignment",
5371
0
            e->kind);
5372
0
        return ERROR;
5373
600
    }
5374
5375
600
    loc = LOC(s);
5376
5377
600
    VISIT(c, expr, s->v.AugAssign.value);
5378
600
    ADDOP_INPLACE(c, loc, s->v.AugAssign.op);
5379
5380
600
    loc = LOC(e);
5381
5382
600
    switch (e->kind) {
5383
85
    case Attribute_kind:
5384
85
        loc = update_start_location_to_match_attr(c, loc, e);
5385
85
        ADDOP_I(c, loc, SWAP, 2);
5386
85
        ADDOP_NAME(c, loc, STORE_ATTR, e->v.Attribute.attr, names);
5387
85
        break;
5388
85
    case Subscript_kind:
5389
18
        if (should_apply_two_element_slice_optimization(e->v.Subscript.slice)) {
5390
0
            ADDOP_I(c, loc, SWAP, 4);
5391
0
            ADDOP_I(c, loc, SWAP, 3);
5392
0
            ADDOP_I(c, loc, SWAP, 2);
5393
0
            ADDOP(c, loc, STORE_SLICE);
5394
0
        }
5395
18
        else {
5396
18
            ADDOP_I(c, loc, SWAP, 3);
5397
18
            ADDOP_I(c, loc, SWAP, 2);
5398
18
            ADDOP(c, loc, STORE_SUBSCR);
5399
18
        }
5400
18
        break;
5401
497
    case Name_kind:
5402
497
        return codegen_nameop(c, loc, e->v.Name.id, Store);
5403
0
    default:
5404
0
        Py_UNREACHABLE();
5405
600
    }
5406
103
    return SUCCESS;
5407
600
}
5408
5409
static int
5410
codegen_check_ann_expr(compiler *c, expr_ty e)
5411
0
{
5412
0
    VISIT(c, expr, e);
5413
0
    ADDOP(c, LOC(e), POP_TOP);
5414
0
    return SUCCESS;
5415
0
}
5416
5417
static int
5418
codegen_check_annotation(compiler *c, stmt_ty s)
5419
0
{
5420
    /* Annotations of complex targets does not produce anything
5421
       under annotations future */
5422
0
    if (FUTURE_FEATURES(c) & CO_FUTURE_ANNOTATIONS) {
5423
0
        return SUCCESS;
5424
0
    }
5425
5426
    /* Annotations are only evaluated in a module or class. */
5427
0
    if (SCOPE_TYPE(c) == COMPILE_SCOPE_MODULE ||
5428
0
        SCOPE_TYPE(c) == COMPILE_SCOPE_CLASS) {
5429
0
        return codegen_check_ann_expr(c, s->v.AnnAssign.annotation);
5430
0
    }
5431
0
    return SUCCESS;
5432
0
}
5433
5434
static int
5435
codegen_check_ann_subscr(compiler *c, expr_ty e)
5436
0
{
5437
    /* We check that everything in a subscript is defined at runtime. */
5438
0
    switch (e->kind) {
5439
0
    case Slice_kind:
5440
0
        if (e->v.Slice.lower && codegen_check_ann_expr(c, e->v.Slice.lower) < 0) {
5441
0
            return ERROR;
5442
0
        }
5443
0
        if (e->v.Slice.upper && codegen_check_ann_expr(c, e->v.Slice.upper) < 0) {
5444
0
            return ERROR;
5445
0
        }
5446
0
        if (e->v.Slice.step && codegen_check_ann_expr(c, e->v.Slice.step) < 0) {
5447
0
            return ERROR;
5448
0
        }
5449
0
        return SUCCESS;
5450
0
    case Tuple_kind: {
5451
        /* extended slice */
5452
0
        asdl_expr_seq *elts = e->v.Tuple.elts;
5453
0
        Py_ssize_t i, n = asdl_seq_LEN(elts);
5454
0
        for (i = 0; i < n; i++) {
5455
0
            RETURN_IF_ERROR(codegen_check_ann_subscr(c, asdl_seq_GET(elts, i)));
5456
0
        }
5457
0
        return SUCCESS;
5458
0
    }
5459
0
    default:
5460
0
        return codegen_check_ann_expr(c, e);
5461
0
    }
5462
0
}
5463
5464
static int
5465
codegen_annassign(compiler *c, stmt_ty s)
5466
52
{
5467
52
    location loc = LOC(s);
5468
52
    expr_ty targ = s->v.AnnAssign.target;
5469
52
    bool future_annotations = FUTURE_FEATURES(c) & CO_FUTURE_ANNOTATIONS;
5470
52
    PyObject *mangled;
5471
5472
52
    assert(s->kind == AnnAssign_kind);
5473
5474
    /* We perform the actual assignment first. */
5475
52
    if (s->v.AnnAssign.value) {
5476
49
        VISIT(c, expr, s->v.AnnAssign.value);
5477
49
        VISIT(c, expr, targ);
5478
49
    }
5479
52
    switch (targ->kind) {
5480
52
    case Name_kind:
5481
        /* If we have a simple name in a module or class, store annotation. */
5482
52
        if (s->v.AnnAssign.simple &&
5483
52
            (SCOPE_TYPE(c) == COMPILE_SCOPE_MODULE ||
5484
52
             SCOPE_TYPE(c) == COMPILE_SCOPE_CLASS)) {
5485
50
            if (future_annotations) {
5486
0
                VISIT(c, annexpr, s->v.AnnAssign.annotation);
5487
0
                ADDOP_NAME(c, loc, LOAD_NAME, &_Py_ID(__annotations__), names);
5488
0
                mangled = _PyCompile_MaybeMangle(c, targ->v.Name.id);
5489
0
                ADDOP_LOAD_CONST_NEW(c, loc, mangled);
5490
0
                ADDOP(c, loc, STORE_SUBSCR);
5491
0
            }
5492
50
            else {
5493
50
                PyObject *conditional_annotation_index = NULL;
5494
50
                RETURN_IF_ERROR(_PyCompile_AddDeferredAnnotation(
5495
50
                    c, s, &conditional_annotation_index));
5496
50
                if (conditional_annotation_index != NULL) {
5497
1
                    ADDOP_NAME(
5498
1
                        c, loc,
5499
1
                        SCOPE_TYPE(c) == COMPILE_SCOPE_CLASS ? LOAD_DEREF : LOAD_NAME,
5500
1
                        &_Py_ID(__conditional_annotations__), cellvars);
5501
1
                    ADDOP_LOAD_CONST_NEW(c, loc, conditional_annotation_index);
5502
1
                    ADDOP_I(c, loc, SET_ADD, 1);
5503
1
                    ADDOP(c, loc, POP_TOP);
5504
1
                }
5505
50
            }
5506
50
        }
5507
52
        break;
5508
52
    case Attribute_kind:
5509
0
        if (!s->v.AnnAssign.value &&
5510
0
            codegen_check_ann_expr(c, targ->v.Attribute.value) < 0) {
5511
0
            return ERROR;
5512
0
        }
5513
0
        break;
5514
0
    case Subscript_kind:
5515
0
        if (!s->v.AnnAssign.value &&
5516
0
            (codegen_check_ann_expr(c, targ->v.Subscript.value) < 0 ||
5517
0
             codegen_check_ann_subscr(c, targ->v.Subscript.slice) < 0)) {
5518
0
                return ERROR;
5519
0
        }
5520
0
        break;
5521
0
    default:
5522
0
        PyErr_Format(PyExc_SystemError,
5523
0
                     "invalid node type (%d) for annotated assignment",
5524
0
                     targ->kind);
5525
0
        return ERROR;
5526
52
    }
5527
    /* Annotation is evaluated last. */
5528
52
    if (future_annotations && !s->v.AnnAssign.simple && codegen_check_annotation(c, s) < 0) {
5529
0
        return ERROR;
5530
0
    }
5531
52
    return SUCCESS;
5532
52
}
5533
5534
static int
5535
codegen_subscript(compiler *c, expr_ty e)
5536
3.78k
{
5537
3.78k
    location loc = LOC(e);
5538
3.78k
    expr_context_ty ctx = e->v.Subscript.ctx;
5539
5540
3.78k
    if (ctx == Load) {
5541
2.96k
        RETURN_IF_ERROR(check_subscripter(c, e->v.Subscript.value));
5542
2.96k
        RETURN_IF_ERROR(check_index(c, e->v.Subscript.value, e->v.Subscript.slice));
5543
2.96k
    }
5544
5545
3.78k
    VISIT(c, expr, e->v.Subscript.value);
5546
3.78k
    if (should_apply_two_element_slice_optimization(e->v.Subscript.slice) &&
5547
3.78k
        ctx != Del
5548
3.78k
    ) {
5549
455
        RETURN_IF_ERROR(codegen_slice_two_parts(c, e->v.Subscript.slice));
5550
455
        if (ctx == Load) {
5551
430
            ADDOP(c, loc, BINARY_SLICE);
5552
430
        }
5553
25
        else {
5554
25
            assert(ctx == Store);
5555
25
            ADDOP(c, loc, STORE_SLICE);
5556
25
        }
5557
455
    }
5558
3.32k
    else {
5559
3.32k
        VISIT(c, expr, e->v.Subscript.slice);
5560
3.32k
        switch (ctx) {
5561
2.53k
            case Load:
5562
2.53k
                ADDOP_I(c, loc, BINARY_OP, NB_SUBSCR);
5563
2.53k
                break;
5564
2.53k
            case Store:
5565
718
                ADDOP(c, loc, STORE_SUBSCR);
5566
718
                break;
5567
718
            case Del:
5568
80
                ADDOP(c, loc, DELETE_SUBSCR);
5569
80
                break;
5570
3.32k
        }
5571
3.32k
    }
5572
3.78k
    return SUCCESS;
5573
3.78k
}
5574
5575
static int
5576
codegen_slice_two_parts(compiler *c, expr_ty s)
5577
475
{
5578
475
    if (s->v.Slice.lower) {
5579
333
        VISIT(c, expr, s->v.Slice.lower);
5580
333
    }
5581
142
    else {
5582
142
        ADDOP_LOAD_CONST(c, LOC(s), Py_None);
5583
142
    }
5584
5585
475
    if (s->v.Slice.upper) {
5586
328
        VISIT(c, expr, s->v.Slice.upper);
5587
328
    }
5588
147
    else {
5589
147
        ADDOP_LOAD_CONST(c, LOC(s), Py_None);
5590
147
    }
5591
5592
475
    return 0;
5593
475
}
5594
5595
static int
5596
codegen_slice(compiler *c, expr_ty s)
5597
374
{
5598
374
    int n = 2;
5599
374
    assert(s->kind == Slice_kind);
5600
5601
374
    if (is_constant_slice(s)) {
5602
354
        PyObject *start = NULL;
5603
354
        if (s->v.Slice.lower) {
5604
208
            start = s->v.Slice.lower->v.Constant.value;
5605
208
        }
5606
354
        PyObject *stop = NULL;
5607
354
        if (s->v.Slice.upper) {
5608
121
            stop = s->v.Slice.upper->v.Constant.value;
5609
121
        }
5610
354
        PyObject *step = NULL;
5611
354
        if (s->v.Slice.step) {
5612
8
            step = s->v.Slice.step->v.Constant.value;
5613
8
        }
5614
354
        PyObject *slice = PySlice_New(start, stop, step);
5615
354
        if (slice == NULL) {
5616
0
            return ERROR;
5617
0
        }
5618
354
        ADDOP_LOAD_CONST_NEW(c, LOC(s), slice);
5619
354
        return SUCCESS;
5620
354
    }
5621
5622
20
    RETURN_IF_ERROR(codegen_slice_two_parts(c, s));
5623
5624
20
    if (s->v.Slice.step) {
5625
17
        n++;
5626
17
        VISIT(c, expr, s->v.Slice.step);
5627
17
    }
5628
5629
20
    ADDOP_I(c, LOC(s), BUILD_SLICE, n);
5630
20
    return SUCCESS;
5631
20
}
5632
5633
5634
// PEP 634: Structural Pattern Matching
5635
5636
// To keep things simple, all codegen_pattern_* routines follow the convention
5637
// of consuming TOS (the subject for the given pattern) and calling
5638
// jump_to_fail_pop on failure (no match).
5639
5640
// When calling into these routines, it's important that pc->on_top be kept
5641
// updated to reflect the current number of items that we are using on the top
5642
// of the stack: they will be popped on failure, and any name captures will be
5643
// stored *underneath* them on success. This lets us defer all names stores
5644
// until the *entire* pattern matches.
5645
5646
#define WILDCARD_CHECK(N) \
5647
11
    ((N)->kind == MatchAs_kind && !(N)->v.MatchAs.name)
5648
5649
#define WILDCARD_STAR_CHECK(N) \
5650
0
    ((N)->kind == MatchStar_kind && !(N)->v.MatchStar.name)
5651
5652
// Limit permitted subexpressions, even if the parser & AST validator let them through
5653
#define MATCH_VALUE_EXPR(N) \
5654
10
    ((N)->kind == Constant_kind || (N)->kind == Attribute_kind)
5655
5656
// Allocate or resize pc->fail_pop to allow for n items to be popped on failure.
5657
static int
5658
ensure_fail_pop(compiler *c, pattern_context *pc, Py_ssize_t n)
5659
14
{
5660
14
    Py_ssize_t size = n + 1;
5661
14
    if (size <= pc->fail_pop_size) {
5662
0
        return SUCCESS;
5663
0
    }
5664
14
    Py_ssize_t needed = sizeof(jump_target_label) * size;
5665
14
    jump_target_label *resized = PyMem_Realloc(pc->fail_pop, needed);
5666
14
    if (resized == NULL) {
5667
0
        PyErr_NoMemory();
5668
0
        return ERROR;
5669
0
    }
5670
14
    pc->fail_pop = resized;
5671
30
    while (pc->fail_pop_size < size) {
5672
16
        NEW_JUMP_TARGET_LABEL(c, new_block);
5673
16
        pc->fail_pop[pc->fail_pop_size++] = new_block;
5674
16
    }
5675
14
    return SUCCESS;
5676
14
}
5677
5678
// Use op to jump to the correct fail_pop block.
5679
static int
5680
jump_to_fail_pop(compiler *c, location loc,
5681
                 pattern_context *pc, int op)
5682
13
{
5683
    // Pop any items on the top of the stack, plus any objects we were going to
5684
    // capture on success:
5685
13
    Py_ssize_t pops = pc->on_top + PyList_GET_SIZE(pc->stores);
5686
13
    RETURN_IF_ERROR(ensure_fail_pop(c, pc, pops));
5687
13
    ADDOP_JUMP(c, loc, op, pc->fail_pop[pops]);
5688
13
    return SUCCESS;
5689
13
}
5690
5691
// Build all of the fail_pop blocks and reset fail_pop.
5692
static int
5693
emit_and_reset_fail_pop(compiler *c, location loc,
5694
                        pattern_context *pc)
5695
14
{
5696
14
    if (!pc->fail_pop_size) {
5697
0
        assert(pc->fail_pop == NULL);
5698
0
        return SUCCESS;
5699
0
    }
5700
16
    while (--pc->fail_pop_size) {
5701
2
        USE_LABEL(c, pc->fail_pop[pc->fail_pop_size]);
5702
2
        if (codegen_addop_noarg(INSTR_SEQUENCE(c), POP_TOP, loc) < 0) {
5703
0
            pc->fail_pop_size = 0;
5704
0
            PyMem_Free(pc->fail_pop);
5705
0
            pc->fail_pop = NULL;
5706
0
            return ERROR;
5707
0
        }
5708
2
    }
5709
14
    USE_LABEL(c, pc->fail_pop[0]);
5710
14
    PyMem_Free(pc->fail_pop);
5711
14
    pc->fail_pop = NULL;
5712
14
    return SUCCESS;
5713
14
}
5714
5715
static int
5716
codegen_error_duplicate_store(compiler *c, location loc, identifier n)
5717
0
{
5718
0
    return _PyCompile_Error(c, loc,
5719
0
        "multiple assignments to name %R in pattern", n);
5720
0
}
5721
5722
// Duplicate the effect of 3.10's ROT_* instructions using SWAPs.
5723
static int
5724
codegen_pattern_helper_rotate(compiler *c, location loc, Py_ssize_t count)
5725
2
{
5726
2
    while (1 < count) {
5727
0
        ADDOP_I(c, loc, SWAP, count--);
5728
0
    }
5729
2
    return SUCCESS;
5730
2
}
5731
5732
static int
5733
codegen_pattern_helper_store_name(compiler *c, location loc,
5734
                                  identifier n, pattern_context *pc)
5735
2
{
5736
2
    if (n == NULL) {
5737
0
        ADDOP(c, loc, POP_TOP);
5738
0
        return SUCCESS;
5739
0
    }
5740
    // Can't assign to the same name twice:
5741
2
    int duplicate = PySequence_Contains(pc->stores, n);
5742
2
    RETURN_IF_ERROR(duplicate);
5743
2
    if (duplicate) {
5744
0
        return codegen_error_duplicate_store(c, loc, n);
5745
0
    }
5746
    // Rotate this object underneath any items we need to preserve:
5747
2
    Py_ssize_t rotations = pc->on_top + PyList_GET_SIZE(pc->stores) + 1;
5748
2
    RETURN_IF_ERROR(codegen_pattern_helper_rotate(c, loc, rotations));
5749
2
    RETURN_IF_ERROR(PyList_Append(pc->stores, n));
5750
2
    return SUCCESS;
5751
2
}
5752
5753
5754
static int
5755
codegen_pattern_unpack_helper(compiler *c, location loc,
5756
                              asdl_pattern_seq *elts)
5757
0
{
5758
0
    Py_ssize_t n = asdl_seq_LEN(elts);
5759
0
    int seen_star = 0;
5760
0
    for (Py_ssize_t i = 0; i < n; i++) {
5761
0
        pattern_ty elt = asdl_seq_GET(elts, i);
5762
0
        if (elt->kind == MatchStar_kind && !seen_star) {
5763
0
            if ((i >= (1 << 8)) ||
5764
0
                (n-i-1 >= (INT_MAX >> 8))) {
5765
0
                return _PyCompile_Error(c, loc,
5766
0
                    "too many expressions in "
5767
0
                    "star-unpacking sequence pattern");
5768
0
            }
5769
0
            ADDOP_I(c, loc, UNPACK_EX, (i + ((n-i-1) << 8)));
5770
0
            seen_star = 1;
5771
0
        }
5772
0
        else if (elt->kind == MatchStar_kind) {
5773
0
            return _PyCompile_Error(c, loc,
5774
0
                "multiple starred expressions in sequence pattern");
5775
0
        }
5776
0
    }
5777
0
    if (!seen_star) {
5778
0
        ADDOP_I(c, loc, UNPACK_SEQUENCE, n);
5779
0
    }
5780
0
    return SUCCESS;
5781
0
}
5782
5783
static int
5784
pattern_helper_sequence_unpack(compiler *c, location loc,
5785
                               asdl_pattern_seq *patterns, Py_ssize_t star,
5786
                               pattern_context *pc)
5787
0
{
5788
0
    RETURN_IF_ERROR(codegen_pattern_unpack_helper(c, loc, patterns));
5789
0
    Py_ssize_t size = asdl_seq_LEN(patterns);
5790
    // We've now got a bunch of new subjects on the stack. They need to remain
5791
    // there after each subpattern match:
5792
0
    pc->on_top += size;
5793
0
    for (Py_ssize_t i = 0; i < size; i++) {
5794
        // One less item to keep track of each time we loop through:
5795
0
        pc->on_top--;
5796
0
        pattern_ty pattern = asdl_seq_GET(patterns, i);
5797
0
        RETURN_IF_ERROR(codegen_pattern_subpattern(c, pattern, pc));
5798
0
    }
5799
0
    return SUCCESS;
5800
0
}
5801
5802
// Like pattern_helper_sequence_unpack, but uses BINARY_OP/NB_SUBSCR instead of
5803
// UNPACK_SEQUENCE / UNPACK_EX. This is more efficient for patterns with a
5804
// starred wildcard like [first, *_] / [first, *_, last] / [*_, last] / etc.
5805
static int
5806
pattern_helper_sequence_subscr(compiler *c, location loc,
5807
                               asdl_pattern_seq *patterns, Py_ssize_t star,
5808
                               pattern_context *pc)
5809
0
{
5810
    // We need to keep the subject around for extracting elements:
5811
0
    pc->on_top++;
5812
0
    Py_ssize_t size = asdl_seq_LEN(patterns);
5813
0
    for (Py_ssize_t i = 0; i < size; i++) {
5814
0
        pattern_ty pattern = asdl_seq_GET(patterns, i);
5815
0
        if (WILDCARD_CHECK(pattern)) {
5816
0
            continue;
5817
0
        }
5818
0
        if (i == star) {
5819
0
            assert(WILDCARD_STAR_CHECK(pattern));
5820
0
            continue;
5821
0
        }
5822
0
        ADDOP_I(c, loc, COPY, 1);
5823
0
        if (i < star) {
5824
0
            ADDOP_LOAD_CONST_NEW(c, loc, PyLong_FromSsize_t(i));
5825
0
        }
5826
0
        else {
5827
            // The subject may not support negative indexing! Compute a
5828
            // nonnegative index:
5829
0
            ADDOP(c, loc, GET_LEN);
5830
0
            ADDOP_LOAD_CONST_NEW(c, loc, PyLong_FromSsize_t(size - i));
5831
0
            ADDOP_BINARY(c, loc, Sub);
5832
0
        }
5833
0
        ADDOP_I(c, loc, BINARY_OP, NB_SUBSCR);
5834
0
        RETURN_IF_ERROR(codegen_pattern_subpattern(c, pattern, pc));
5835
0
    }
5836
    // Pop the subject, we're done with it:
5837
0
    pc->on_top--;
5838
0
    ADDOP(c, loc, POP_TOP);
5839
0
    return SUCCESS;
5840
0
}
5841
5842
// Like codegen_pattern, but turn off checks for irrefutability.
5843
static int
5844
codegen_pattern_subpattern(compiler *c,
5845
                            pattern_ty p, pattern_context *pc)
5846
1
{
5847
1
    int allow_irrefutable = pc->allow_irrefutable;
5848
1
    pc->allow_irrefutable = 1;
5849
1
    RETURN_IF_ERROR(codegen_pattern(c, p, pc));
5850
1
    pc->allow_irrefutable = allow_irrefutable;
5851
1
    return SUCCESS;
5852
1
}
5853
5854
static int
5855
codegen_pattern_as(compiler *c, pattern_ty p, pattern_context *pc)
5856
2
{
5857
2
    assert(p->kind == MatchAs_kind);
5858
2
    if (p->v.MatchAs.pattern == NULL) {
5859
        // An irrefutable match:
5860
2
        if (!pc->allow_irrefutable) {
5861
0
            if (p->v.MatchAs.name) {
5862
0
                const char *e = "name capture %R makes remaining patterns unreachable";
5863
0
                return _PyCompile_Error(c, LOC(p), e, p->v.MatchAs.name);
5864
0
            }
5865
0
            const char *e = "wildcard makes remaining patterns unreachable";
5866
0
            return _PyCompile_Error(c, LOC(p), e);
5867
0
        }
5868
2
        return codegen_pattern_helper_store_name(c, LOC(p), p->v.MatchAs.name, pc);
5869
2
    }
5870
    // Need to make a copy for (possibly) storing later:
5871
0
    pc->on_top++;
5872
0
    ADDOP_I(c, LOC(p), COPY, 1);
5873
0
    RETURN_IF_ERROR(codegen_pattern(c, p->v.MatchAs.pattern, pc));
5874
    // Success! Store it:
5875
0
    pc->on_top--;
5876
0
    RETURN_IF_ERROR(codegen_pattern_helper_store_name(c, LOC(p), p->v.MatchAs.name, pc));
5877
0
    return SUCCESS;
5878
0
}
5879
5880
static int
5881
codegen_pattern_star(compiler *c, pattern_ty p, pattern_context *pc)
5882
0
{
5883
0
    assert(p->kind == MatchStar_kind);
5884
0
    RETURN_IF_ERROR(
5885
0
        codegen_pattern_helper_store_name(c, LOC(p), p->v.MatchStar.name, pc));
5886
0
    return SUCCESS;
5887
0
}
5888
5889
static int
5890
validate_kwd_attrs(compiler *c, asdl_identifier_seq *attrs, asdl_pattern_seq* patterns)
5891
0
{
5892
    // Any errors will point to the pattern rather than the arg name as the
5893
    // parser is only supplying identifiers rather than Name or keyword nodes
5894
0
    Py_ssize_t nattrs = asdl_seq_LEN(attrs);
5895
0
    for (Py_ssize_t i = 0; i < nattrs; i++) {
5896
0
        identifier attr = ((identifier)asdl_seq_GET(attrs, i));
5897
0
        for (Py_ssize_t j = i + 1; j < nattrs; j++) {
5898
0
            identifier other = ((identifier)asdl_seq_GET(attrs, j));
5899
0
            if (!PyUnicode_Compare(attr, other)) {
5900
0
                location loc = LOC((pattern_ty) asdl_seq_GET(patterns, j));
5901
0
                return _PyCompile_Error(c, loc, "attribute name repeated "
5902
0
                                                "in class pattern: %U", attr);
5903
0
            }
5904
0
        }
5905
0
    }
5906
0
    return SUCCESS;
5907
0
}
5908
5909
static int
5910
codegen_pattern_class(compiler *c, pattern_ty p, pattern_context *pc)
5911
2
{
5912
2
    assert(p->kind == MatchClass_kind);
5913
2
    asdl_pattern_seq *patterns = p->v.MatchClass.patterns;
5914
2
    asdl_identifier_seq *kwd_attrs = p->v.MatchClass.kwd_attrs;
5915
2
    asdl_pattern_seq *kwd_patterns = p->v.MatchClass.kwd_patterns;
5916
2
    Py_ssize_t nargs = asdl_seq_LEN(patterns);
5917
2
    Py_ssize_t nattrs = asdl_seq_LEN(kwd_attrs);
5918
2
    Py_ssize_t nkwd_patterns = asdl_seq_LEN(kwd_patterns);
5919
2
    if (nattrs != nkwd_patterns) {
5920
        // AST validator shouldn't let this happen, but if it does,
5921
        // just fail, don't crash out of the interpreter
5922
0
        const char * e = "kwd_attrs (%d) / kwd_patterns (%d) length mismatch in class pattern";
5923
0
        return _PyCompile_Error(c, LOC(p), e, nattrs, nkwd_patterns);
5924
0
    }
5925
2
    if (INT_MAX < nargs || INT_MAX < nargs + nattrs - 1) {
5926
0
        const char *e = "too many sub-patterns in class pattern %R";
5927
0
        return _PyCompile_Error(c, LOC(p), e, p->v.MatchClass.cls);
5928
0
    }
5929
2
    if (nattrs) {
5930
0
        RETURN_IF_ERROR(validate_kwd_attrs(c, kwd_attrs, kwd_patterns));
5931
0
    }
5932
2
    VISIT(c, expr, p->v.MatchClass.cls);
5933
2
    PyObject *attr_names = PyTuple_New(nattrs);
5934
2
    if (attr_names == NULL) {
5935
0
        return ERROR;
5936
0
    }
5937
2
    Py_ssize_t i;
5938
2
    for (i = 0; i < nattrs; i++) {
5939
0
        PyObject *name = asdl_seq_GET(kwd_attrs, i);
5940
0
        PyTuple_SET_ITEM(attr_names, i, Py_NewRef(name));
5941
0
    }
5942
2
    ADDOP_LOAD_CONST_NEW(c, LOC(p), attr_names);
5943
2
    ADDOP_I(c, LOC(p), MATCH_CLASS, nargs);
5944
2
    ADDOP_I(c, LOC(p), COPY, 1);
5945
2
    ADDOP_LOAD_CONST(c, LOC(p), Py_None);
5946
2
    ADDOP_I(c, LOC(p), IS_OP, 1);
5947
    // TOS is now a tuple of (nargs + nattrs) attributes (or None):
5948
2
    pc->on_top++;
5949
2
    RETURN_IF_ERROR(jump_to_fail_pop(c, LOC(p), pc, POP_JUMP_IF_FALSE));
5950
2
    ADDOP_I(c, LOC(p), UNPACK_SEQUENCE, nargs + nattrs);
5951
2
    pc->on_top += nargs + nattrs - 1;
5952
3
    for (i = 0; i < nargs + nattrs; i++) {
5953
1
        pc->on_top--;
5954
1
        pattern_ty pattern;
5955
1
        if (i < nargs) {
5956
            // Positional:
5957
1
            pattern = asdl_seq_GET(patterns, i);
5958
1
        }
5959
0
        else {
5960
            // Keyword:
5961
0
            pattern = asdl_seq_GET(kwd_patterns, i - nargs);
5962
0
        }
5963
1
        if (WILDCARD_CHECK(pattern)) {
5964
0
            ADDOP(c, LOC(p), POP_TOP);
5965
0
            continue;
5966
0
        }
5967
1
        RETURN_IF_ERROR(codegen_pattern_subpattern(c, pattern, pc));
5968
1
    }
5969
    // Success! Pop the tuple of attributes:
5970
2
    return SUCCESS;
5971
2
}
5972
5973
static int
5974
codegen_pattern_mapping_key(compiler *c, PyObject *seen, pattern_ty p, Py_ssize_t i)
5975
0
{
5976
0
    asdl_expr_seq *keys = p->v.MatchMapping.keys;
5977
0
    asdl_pattern_seq *patterns = p->v.MatchMapping.patterns;
5978
0
    expr_ty key = asdl_seq_GET(keys, i);
5979
0
    if (key == NULL) {
5980
0
        const char *e = "can't use NULL keys in MatchMapping "
5981
0
                        "(set 'rest' parameter instead)";
5982
0
        location loc = LOC((pattern_ty) asdl_seq_GET(patterns, i));
5983
0
        return _PyCompile_Error(c, loc, e);
5984
0
    }
5985
5986
0
    if (key->kind == Constant_kind) {
5987
0
        int in_seen = PySet_Contains(seen, key->v.Constant.value);
5988
0
        RETURN_IF_ERROR(in_seen);
5989
0
        if (in_seen) {
5990
0
            const char *e = "mapping pattern checks duplicate key (%R)";
5991
0
            return _PyCompile_Error(c, LOC(p), e, key->v.Constant.value);
5992
0
        }
5993
0
        RETURN_IF_ERROR(PySet_Add(seen, key->v.Constant.value));
5994
0
    }
5995
0
    else if (key->kind != Attribute_kind) {
5996
0
        const char *e = "mapping pattern keys may only match literals and attribute lookups";
5997
0
        return _PyCompile_Error(c, LOC(p), e);
5998
0
    }
5999
0
    VISIT(c, expr, key);
6000
0
    return SUCCESS;
6001
0
}
6002
6003
static int
6004
codegen_pattern_mapping(compiler *c, pattern_ty p,
6005
                        pattern_context *pc)
6006
0
{
6007
0
    assert(p->kind == MatchMapping_kind);
6008
0
    asdl_expr_seq *keys = p->v.MatchMapping.keys;
6009
0
    asdl_pattern_seq *patterns = p->v.MatchMapping.patterns;
6010
0
    Py_ssize_t size = asdl_seq_LEN(keys);
6011
0
    Py_ssize_t npatterns = asdl_seq_LEN(patterns);
6012
0
    if (size != npatterns) {
6013
        // AST validator shouldn't let this happen, but if it does,
6014
        // just fail, don't crash out of the interpreter
6015
0
        const char * e = "keys (%d) / patterns (%d) length mismatch in mapping pattern";
6016
0
        return _PyCompile_Error(c, LOC(p), e, size, npatterns);
6017
0
    }
6018
    // We have a double-star target if "rest" is set
6019
0
    PyObject *star_target = p->v.MatchMapping.rest;
6020
    // We need to keep the subject on top during the mapping and length checks:
6021
0
    pc->on_top++;
6022
0
    ADDOP(c, LOC(p), MATCH_MAPPING);
6023
0
    RETURN_IF_ERROR(jump_to_fail_pop(c, LOC(p), pc, POP_JUMP_IF_FALSE));
6024
0
    if (!size && !star_target) {
6025
        // If the pattern is just "{}", we're done! Pop the subject:
6026
0
        pc->on_top--;
6027
0
        ADDOP(c, LOC(p), POP_TOP);
6028
0
        return SUCCESS;
6029
0
    }
6030
0
    if (size) {
6031
        // If the pattern has any keys in it, perform a length check:
6032
0
        ADDOP(c, LOC(p), GET_LEN);
6033
0
        ADDOP_LOAD_CONST_NEW(c, LOC(p), PyLong_FromSsize_t(size));
6034
0
        ADDOP_COMPARE(c, LOC(p), GtE);
6035
0
        RETURN_IF_ERROR(jump_to_fail_pop(c, LOC(p), pc, POP_JUMP_IF_FALSE));
6036
0
    }
6037
0
    if (INT_MAX < size - 1) {
6038
0
        return _PyCompile_Error(c, LOC(p), "too many sub-patterns in mapping pattern");
6039
0
    }
6040
    // Collect all of the keys into a tuple for MATCH_KEYS and
6041
    // **rest. They can either be dotted names or literals:
6042
6043
    // Maintaining a set of Constant_kind kind keys allows us to raise a
6044
    // SyntaxError in the case of duplicates.
6045
0
    PyObject *seen = PySet_New(NULL);
6046
0
    if (seen == NULL) {
6047
0
        return ERROR;
6048
0
    }
6049
0
    for (Py_ssize_t i = 0; i < size; i++) {
6050
0
        if (codegen_pattern_mapping_key(c, seen, p, i) < 0) {
6051
0
            Py_DECREF(seen);
6052
0
            return ERROR;
6053
0
        }
6054
0
    }
6055
0
    Py_DECREF(seen);
6056
6057
    // all keys have been checked; there are no duplicates
6058
6059
0
    ADDOP_I(c, LOC(p), BUILD_TUPLE, size);
6060
0
    ADDOP(c, LOC(p), MATCH_KEYS);
6061
    // There's now a tuple of keys and a tuple of values on top of the subject:
6062
0
    pc->on_top += 2;
6063
0
    ADDOP_I(c, LOC(p), COPY, 1);
6064
0
    ADDOP_LOAD_CONST(c, LOC(p), Py_None);
6065
0
    ADDOP_I(c, LOC(p), IS_OP, 1);
6066
0
    RETURN_IF_ERROR(jump_to_fail_pop(c, LOC(p), pc, POP_JUMP_IF_FALSE));
6067
    // So far so good. Use that tuple of values on the stack to match
6068
    // sub-patterns against:
6069
0
    ADDOP_I(c, LOC(p), UNPACK_SEQUENCE, size);
6070
0
    pc->on_top += size - 1;
6071
0
    for (Py_ssize_t i = 0; i < size; i++) {
6072
0
        pc->on_top--;
6073
0
        pattern_ty pattern = asdl_seq_GET(patterns, i);
6074
0
        RETURN_IF_ERROR(codegen_pattern_subpattern(c, pattern, pc));
6075
0
    }
6076
    // If we get this far, it's a match! Whatever happens next should consume
6077
    // the tuple of keys and the subject:
6078
0
    pc->on_top -= 2;
6079
0
    if (star_target) {
6080
        // If we have a starred name, bind a dict of remaining items to it (this may
6081
        // seem a bit inefficient, but keys is rarely big enough to actually impact
6082
        // runtime):
6083
        // rest = dict(TOS1)
6084
        // for key in TOS:
6085
        //     del rest[key]
6086
0
        ADDOP_I(c, LOC(p), BUILD_MAP, 0);           // [subject, keys, empty]
6087
0
        ADDOP_I(c, LOC(p), SWAP, 3);                // [empty, keys, subject]
6088
0
        ADDOP_I(c, LOC(p), DICT_UPDATE, 2);         // [copy, keys]
6089
0
        ADDOP_I(c, LOC(p), UNPACK_SEQUENCE, size);  // [copy, keys...]
6090
0
        while (size) {
6091
0
            ADDOP_I(c, LOC(p), COPY, 1 + size--);   // [copy, keys..., copy]
6092
0
            ADDOP_I(c, LOC(p), SWAP, 2);            // [copy, keys..., copy, key]
6093
0
            ADDOP(c, LOC(p), DELETE_SUBSCR);        // [copy, keys...]
6094
0
        }
6095
0
        RETURN_IF_ERROR(codegen_pattern_helper_store_name(c, LOC(p), star_target, pc));
6096
0
    }
6097
0
    else {
6098
0
        ADDOP(c, LOC(p), POP_TOP);  // Tuple of keys.
6099
0
        ADDOP(c, LOC(p), POP_TOP);  // Subject.
6100
0
    }
6101
0
    return SUCCESS;
6102
0
}
6103
6104
static int
6105
codegen_pattern_or(compiler *c, pattern_ty p, pattern_context *pc)
6106
0
{
6107
0
    assert(p->kind == MatchOr_kind);
6108
0
    NEW_JUMP_TARGET_LABEL(c, end);
6109
0
    Py_ssize_t size = asdl_seq_LEN(p->v.MatchOr.patterns);
6110
0
    assert(size > 1);
6111
    // We're going to be messing with pc. Keep the original info handy:
6112
0
    pattern_context old_pc = *pc;
6113
0
    Py_INCREF(pc->stores);
6114
    // control is the list of names bound by the first alternative. It is used
6115
    // for checking different name bindings in alternatives, and for correcting
6116
    // the order in which extracted elements are placed on the stack.
6117
0
    PyObject *control = NULL;
6118
    // NOTE: We can't use returning macros anymore! goto error on error.
6119
0
    for (Py_ssize_t i = 0; i < size; i++) {
6120
0
        pattern_ty alt = asdl_seq_GET(p->v.MatchOr.patterns, i);
6121
0
        PyObject *pc_stores = PyList_New(0);
6122
0
        if (pc_stores == NULL) {
6123
0
            goto error;
6124
0
        }
6125
0
        Py_SETREF(pc->stores, pc_stores);
6126
        // An irrefutable sub-pattern must be last, if it is allowed at all:
6127
0
        pc->allow_irrefutable = (i == size - 1) && old_pc.allow_irrefutable;
6128
0
        pc->fail_pop = NULL;
6129
0
        pc->fail_pop_size = 0;
6130
0
        pc->on_top = 0;
6131
0
        if (codegen_addop_i(INSTR_SEQUENCE(c), COPY, 1, LOC(alt)) < 0 ||
6132
0
            codegen_pattern(c, alt, pc) < 0) {
6133
0
            goto error;
6134
0
        }
6135
        // Success!
6136
0
        Py_ssize_t nstores = PyList_GET_SIZE(pc->stores);
6137
0
        if (!i) {
6138
            // This is the first alternative, so save its stores as a "control"
6139
            // for the others (they can't bind a different set of names, and
6140
            // might need to be reordered):
6141
0
            assert(control == NULL);
6142
0
            control = Py_NewRef(pc->stores);
6143
0
        }
6144
0
        else if (nstores != PyList_GET_SIZE(control)) {
6145
0
            goto diff;
6146
0
        }
6147
0
        else if (nstores) {
6148
            // There were captures. Check to see if we differ from control:
6149
0
            Py_ssize_t icontrol = nstores;
6150
0
            while (icontrol--) {
6151
0
                PyObject *name = PyList_GET_ITEM(control, icontrol);
6152
0
                Py_ssize_t istores = PySequence_Index(pc->stores, name);
6153
0
                if (istores < 0) {
6154
0
                    PyErr_Clear();
6155
0
                    goto diff;
6156
0
                }
6157
0
                if (icontrol != istores) {
6158
                    // Reorder the names on the stack to match the order of the
6159
                    // names in control. There's probably a better way of doing
6160
                    // this; the current solution is potentially very
6161
                    // inefficient when each alternative subpattern binds lots
6162
                    // of names in different orders. It's fine for reasonable
6163
                    // cases, though, and the peephole optimizer will ensure
6164
                    // that the final code is as efficient as possible.
6165
0
                    assert(istores < icontrol);
6166
0
                    Py_ssize_t rotations = istores + 1;
6167
                    // Perform the same rotation on pc->stores:
6168
0
                    PyObject *rotated = PyList_GetSlice(pc->stores, 0,
6169
0
                                                        rotations);
6170
0
                    if (rotated == NULL ||
6171
0
                        PyList_SetSlice(pc->stores, 0, rotations, NULL) ||
6172
0
                        PyList_SetSlice(pc->stores, icontrol - istores,
6173
0
                                        icontrol - istores, rotated))
6174
0
                    {
6175
0
                        Py_XDECREF(rotated);
6176
0
                        goto error;
6177
0
                    }
6178
0
                    Py_DECREF(rotated);
6179
                    // That just did:
6180
                    // rotated = pc_stores[:rotations]
6181
                    // del pc_stores[:rotations]
6182
                    // pc_stores[icontrol-istores:icontrol-istores] = rotated
6183
                    // Do the same thing to the stack, using several
6184
                    // rotations:
6185
0
                    while (rotations--) {
6186
0
                        if (codegen_pattern_helper_rotate(c, LOC(alt), icontrol + 1) < 0) {
6187
0
                            goto error;
6188
0
                        }
6189
0
                    }
6190
0
                }
6191
0
            }
6192
0
        }
6193
0
        assert(control);
6194
0
        if (codegen_addop_j(INSTR_SEQUENCE(c), LOC(alt), JUMP, end) < 0 ||
6195
0
            emit_and_reset_fail_pop(c, LOC(alt), pc) < 0)
6196
0
        {
6197
0
            goto error;
6198
0
        }
6199
0
    }
6200
0
    Py_DECREF(pc->stores);
6201
0
    *pc = old_pc;
6202
0
    Py_INCREF(pc->stores);
6203
    // Need to NULL this for the PyMem_Free call in the error block.
6204
0
    old_pc.fail_pop = NULL;
6205
    // No match. Pop the remaining copy of the subject and fail:
6206
0
    if (codegen_addop_noarg(INSTR_SEQUENCE(c), POP_TOP, LOC(p)) < 0 ||
6207
0
        jump_to_fail_pop(c, LOC(p), pc, JUMP) < 0) {
6208
0
        goto error;
6209
0
    }
6210
6211
0
    USE_LABEL(c, end);
6212
0
    Py_ssize_t nstores = PyList_GET_SIZE(control);
6213
    // There's a bunch of stuff on the stack between where the new stores
6214
    // are and where they need to be:
6215
    // - The other stores.
6216
    // - A copy of the subject.
6217
    // - Anything else that may be on top of the stack.
6218
    // - Any previous stores we've already stashed away on the stack.
6219
0
    Py_ssize_t nrots = nstores + 1 + pc->on_top + PyList_GET_SIZE(pc->stores);
6220
0
    for (Py_ssize_t i = 0; i < nstores; i++) {
6221
        // Rotate this capture to its proper place on the stack:
6222
0
        if (codegen_pattern_helper_rotate(c, LOC(p), nrots) < 0) {
6223
0
            goto error;
6224
0
        }
6225
        // Update the list of previous stores with this new name, checking for
6226
        // duplicates:
6227
0
        PyObject *name = PyList_GET_ITEM(control, i);
6228
0
        int dupe = PySequence_Contains(pc->stores, name);
6229
0
        if (dupe < 0) {
6230
0
            goto error;
6231
0
        }
6232
0
        if (dupe) {
6233
0
            codegen_error_duplicate_store(c, LOC(p), name);
6234
0
            goto error;
6235
0
        }
6236
0
        if (PyList_Append(pc->stores, name)) {
6237
0
            goto error;
6238
0
        }
6239
0
    }
6240
0
    Py_DECREF(old_pc.stores);
6241
0
    Py_DECREF(control);
6242
    // NOTE: Returning macros are safe again.
6243
    // Pop the copy of the subject:
6244
0
    ADDOP(c, LOC(p), POP_TOP);
6245
0
    return SUCCESS;
6246
0
diff:
6247
0
    _PyCompile_Error(c, LOC(p), "alternative patterns bind different names");
6248
0
error:
6249
0
    PyMem_Free(old_pc.fail_pop);
6250
0
    Py_DECREF(old_pc.stores);
6251
0
    Py_XDECREF(control);
6252
0
    return ERROR;
6253
0
}
6254
6255
6256
static int
6257
codegen_pattern_sequence(compiler *c, pattern_ty p,
6258
                         pattern_context *pc)
6259
0
{
6260
0
    assert(p->kind == MatchSequence_kind);
6261
0
    asdl_pattern_seq *patterns = p->v.MatchSequence.patterns;
6262
0
    Py_ssize_t size = asdl_seq_LEN(patterns);
6263
0
    Py_ssize_t star = -1;
6264
0
    int only_wildcard = 1;
6265
0
    int star_wildcard = 0;
6266
    // Find a starred name, if it exists. There may be at most one:
6267
0
    for (Py_ssize_t i = 0; i < size; i++) {
6268
0
        pattern_ty pattern = asdl_seq_GET(patterns, i);
6269
0
        if (pattern->kind == MatchStar_kind) {
6270
0
            if (star >= 0) {
6271
0
                const char *e = "multiple starred names in sequence pattern";
6272
0
                return _PyCompile_Error(c, LOC(p), e);
6273
0
            }
6274
0
            star_wildcard = WILDCARD_STAR_CHECK(pattern);
6275
0
            only_wildcard &= star_wildcard;
6276
0
            star = i;
6277
0
            continue;
6278
0
        }
6279
0
        only_wildcard &= WILDCARD_CHECK(pattern);
6280
0
    }
6281
    // We need to keep the subject on top during the sequence and length checks:
6282
0
    pc->on_top++;
6283
0
    ADDOP(c, LOC(p), MATCH_SEQUENCE);
6284
0
    RETURN_IF_ERROR(jump_to_fail_pop(c, LOC(p), pc, POP_JUMP_IF_FALSE));
6285
0
    if (star < 0) {
6286
        // No star: len(subject) == size
6287
0
        ADDOP(c, LOC(p), GET_LEN);
6288
0
        ADDOP_LOAD_CONST_NEW(c, LOC(p), PyLong_FromSsize_t(size));
6289
0
        ADDOP_COMPARE(c, LOC(p), Eq);
6290
0
        RETURN_IF_ERROR(jump_to_fail_pop(c, LOC(p), pc, POP_JUMP_IF_FALSE));
6291
0
    }
6292
0
    else if (size > 1) {
6293
        // Star: len(subject) >= size - 1
6294
0
        ADDOP(c, LOC(p), GET_LEN);
6295
0
        ADDOP_LOAD_CONST_NEW(c, LOC(p), PyLong_FromSsize_t(size - 1));
6296
0
        ADDOP_COMPARE(c, LOC(p), GtE);
6297
0
        RETURN_IF_ERROR(jump_to_fail_pop(c, LOC(p), pc, POP_JUMP_IF_FALSE));
6298
0
    }
6299
    // Whatever comes next should consume the subject:
6300
0
    pc->on_top--;
6301
0
    if (only_wildcard) {
6302
        // Patterns like: [] / [_] / [_, _] / [*_] / [_, *_] / [_, _, *_] / etc.
6303
0
        ADDOP(c, LOC(p), POP_TOP);
6304
0
    }
6305
0
    else if (star_wildcard) {
6306
0
        RETURN_IF_ERROR(pattern_helper_sequence_subscr(c, LOC(p), patterns, star, pc));
6307
0
    }
6308
0
    else {
6309
0
        RETURN_IF_ERROR(pattern_helper_sequence_unpack(c, LOC(p), patterns, star, pc));
6310
0
    }
6311
0
    return SUCCESS;
6312
0
}
6313
6314
static int
6315
codegen_pattern_value(compiler *c, pattern_ty p, pattern_context *pc)
6316
10
{
6317
10
    assert(p->kind == MatchValue_kind);
6318
10
    expr_ty value = p->v.MatchValue.value;
6319
10
    if (!MATCH_VALUE_EXPR(value)) {
6320
0
        const char *e = "patterns may only match literals and attribute lookups";
6321
0
        return _PyCompile_Error(c, LOC(p), e);
6322
0
    }
6323
10
    VISIT(c, expr, value);
6324
10
    ADDOP_COMPARE(c, LOC(p), Eq);
6325
10
    ADDOP(c, LOC(p), TO_BOOL);
6326
10
    RETURN_IF_ERROR(jump_to_fail_pop(c, LOC(p), pc, POP_JUMP_IF_FALSE));
6327
10
    return SUCCESS;
6328
10
}
6329
6330
static int
6331
codegen_pattern_singleton(compiler *c, pattern_ty p, pattern_context *pc)
6332
1
{
6333
1
    assert(p->kind == MatchSingleton_kind);
6334
1
    ADDOP_LOAD_CONST(c, LOC(p), p->v.MatchSingleton.value);
6335
1
    ADDOP_COMPARE(c, LOC(p), Is);
6336
1
    RETURN_IF_ERROR(jump_to_fail_pop(c, LOC(p), pc, POP_JUMP_IF_FALSE));
6337
1
    return SUCCESS;
6338
1
}
6339
6340
static int
6341
codegen_pattern(compiler *c, pattern_ty p, pattern_context *pc)
6342
15
{
6343
15
    switch (p->kind) {
6344
10
        case MatchValue_kind:
6345
10
            return codegen_pattern_value(c, p, pc);
6346
1
        case MatchSingleton_kind:
6347
1
            return codegen_pattern_singleton(c, p, pc);
6348
0
        case MatchSequence_kind:
6349
0
            return codegen_pattern_sequence(c, p, pc);
6350
0
        case MatchMapping_kind:
6351
0
            return codegen_pattern_mapping(c, p, pc);
6352
2
        case MatchClass_kind:
6353
2
            return codegen_pattern_class(c, p, pc);
6354
0
        case MatchStar_kind:
6355
0
            return codegen_pattern_star(c, p, pc);
6356
2
        case MatchAs_kind:
6357
2
            return codegen_pattern_as(c, p, pc);
6358
0
        case MatchOr_kind:
6359
0
            return codegen_pattern_or(c, p, pc);
6360
15
    }
6361
    // AST validator shouldn't let this happen, but if it does,
6362
    // just fail, don't crash out of the interpreter
6363
0
    const char *e = "invalid match pattern node in AST (kind=%d)";
6364
0
    return _PyCompile_Error(c, LOC(p), e, p->kind);
6365
15
}
6366
6367
static int
6368
codegen_match_inner(compiler *c, stmt_ty s, pattern_context *pc)
6369
5
{
6370
5
    VISIT(c, expr, s->v.Match.subject);
6371
5
    NEW_JUMP_TARGET_LABEL(c, end);
6372
5
    Py_ssize_t cases = asdl_seq_LEN(s->v.Match.cases);
6373
5
    assert(cases > 0);
6374
5
    match_case_ty m = asdl_seq_GET(s->v.Match.cases, cases - 1);
6375
5
    int has_default = WILDCARD_CHECK(m->pattern) && 1 < cases;
6376
19
    for (Py_ssize_t i = 0; i < cases - has_default; i++) {
6377
14
        m = asdl_seq_GET(s->v.Match.cases, i);
6378
        // Only copy the subject if we're *not* on the last case:
6379
14
        if (i != cases - has_default - 1) {
6380
9
            ADDOP_I(c, LOC(m->pattern), COPY, 1);
6381
9
        }
6382
14
        pc->stores = PyList_New(0);
6383
14
        if (pc->stores == NULL) {
6384
0
            return ERROR;
6385
0
        }
6386
        // Irrefutable cases must be either guarded, last, or both:
6387
14
        pc->allow_irrefutable = m->guard != NULL || i == cases - 1;
6388
14
        pc->fail_pop = NULL;
6389
14
        pc->fail_pop_size = 0;
6390
14
        pc->on_top = 0;
6391
        // NOTE: Can't use returning macros here (they'll leak pc->stores)!
6392
14
        if (codegen_pattern(c, m->pattern, pc) < 0) {
6393
0
            Py_DECREF(pc->stores);
6394
0
            return ERROR;
6395
0
        }
6396
14
        assert(!pc->on_top);
6397
        // It's a match! Store all of the captured names (they're on the stack).
6398
14
        Py_ssize_t nstores = PyList_GET_SIZE(pc->stores);
6399
16
        for (Py_ssize_t n = 0; n < nstores; n++) {
6400
2
            PyObject *name = PyList_GET_ITEM(pc->stores, n);
6401
2
            if (codegen_nameop(c, LOC(m->pattern), name, Store) < 0) {
6402
0
                Py_DECREF(pc->stores);
6403
0
                return ERROR;
6404
0
            }
6405
2
        }
6406
14
        Py_DECREF(pc->stores);
6407
        // NOTE: Returning macros are safe again.
6408
14
        if (m->guard) {
6409
1
            RETURN_IF_ERROR(ensure_fail_pop(c, pc, 0));
6410
1
            RETURN_IF_ERROR(codegen_jump_if(c, LOC(m->pattern), m->guard, pc->fail_pop[0], 0));
6411
1
        }
6412
        // Success! Pop the subject off, we're done with it:
6413
14
        if (i != cases - has_default - 1) {
6414
            /* Use the next location to give better locations for branch events */
6415
9
            ADDOP(c, NEXT_LOCATION, POP_TOP);
6416
9
        }
6417
14
        VISIT_SEQ(c, stmt, m->body);
6418
14
        ADDOP_JUMP(c, NO_LOCATION, JUMP, end);
6419
        // If the pattern fails to match, we want the line number of the
6420
        // cleanup to be associated with the failed pattern, not the last line
6421
        // of the body
6422
14
        RETURN_IF_ERROR(emit_and_reset_fail_pop(c, LOC(m->pattern), pc));
6423
14
    }
6424
5
    if (has_default) {
6425
        // A trailing "case _" is common, and lets us save a bit of redundant
6426
        // pushing and popping in the loop above:
6427
5
        m = asdl_seq_GET(s->v.Match.cases, cases - 1);
6428
5
        if (cases == 1) {
6429
            // No matches. Done with the subject:
6430
0
            ADDOP(c, LOC(m->pattern), POP_TOP);
6431
0
        }
6432
5
        else {
6433
            // Show line coverage for default case (it doesn't create bytecode)
6434
5
            ADDOP(c, LOC(m->pattern), NOP);
6435
5
        }
6436
5
        if (m->guard) {
6437
0
            RETURN_IF_ERROR(codegen_jump_if(c, LOC(m->pattern), m->guard, end, 0));
6438
0
        }
6439
5
        VISIT_SEQ(c, stmt, m->body);
6440
5
    }
6441
5
    USE_LABEL(c, end);
6442
5
    return SUCCESS;
6443
5
}
6444
6445
static int
6446
codegen_match(compiler *c, stmt_ty s)
6447
5
{
6448
5
    pattern_context pc;
6449
5
    pc.fail_pop = NULL;
6450
5
    int result = codegen_match_inner(c, s, &pc);
6451
5
    PyMem_Free(pc.fail_pop);
6452
5
    return result;
6453
5
}
6454
6455
#undef WILDCARD_CHECK
6456
#undef WILDCARD_STAR_CHECK
6457
6458
6459
int
6460
_PyCodegen_AddReturnAtEnd(compiler *c, int addNone)
6461
6.58k
{
6462
    /* Make sure every instruction stream that falls off the end returns None.
6463
     * This also ensures that no jump target offsets are out of bounds.
6464
     */
6465
6.58k
    if (addNone) {
6466
6.51k
        ADDOP_LOAD_CONST(c, NO_LOCATION, Py_None);
6467
6.51k
    }
6468
6.58k
    ADDOP(c, NO_LOCATION, RETURN_VALUE);
6469
6.58k
    return SUCCESS;
6470
6.58k
}