Coverage Report

Created: 2026-04-12 06:54

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/cpython/Python/instrumentation.c
Line
Count
Source
1
#include "Python.h"
2
#include "pycore_bitutils.h"      // _Py_popcount32()
3
#include "pycore_call.h"          // _PyObject_VectorcallTstate()
4
#include "pycore_ceval.h"         // _PY_EVAL_EVENTS_BITS
5
#include "pycore_code.h"          // _PyCode_Clear_Executors()
6
#include "pycore_critical_section.h" // _Py_CRITICAL_SECTION_ASSERT_OBJECT_LOCKED()
7
#include "pycore_frame.h"         // PyFrameObject
8
#include "pycore_interpframe.h"   // _PyFrame_GetBytecode()
9
#include "pycore_long.h"          // _PyLong_GetZero()
10
#include "pycore_modsupport.h"    // _PyModule_CreateInitialized()
11
#include "pycore_namespace.h"     // _PyNamespace_New()
12
#include "pycore_opcode_metadata.h" // IS_VALID_OPCODE()
13
#include "pycore_opcode_utils.h"  // IS_CONDITIONAL_JUMP_OPCODE()
14
#include "pycore_optimizer.h"     // _PyExecutorObject
15
#include "pycore_pyatomic_ft_wrappers.h" // FT_ATOMIC_STORE_UINTPTR_RELEASE()
16
#include "pycore_pystate.h"       // _PyInterpreterState_GET()
17
#include "pycore_runtime_structs.h" // _PyCoMonitoringData
18
#include "pycore_tuple.h"         // _PyTuple_FromArraySteal()
19
20
#include "opcode_ids.h"
21
22
23
/* Uncomment this to dump debugging output when assertions fail */
24
// #define INSTRUMENT_DEBUG 1
25
26
#if defined(Py_DEBUG) && defined(Py_GIL_DISABLED)
27
28
#define ASSERT_WORLD_STOPPED_OR_LOCKED(obj)                         \
29
    if (!_PyInterpreterState_GET()->stoptheworld.world_stopped) {   \
30
        _Py_CRITICAL_SECTION_ASSERT_OBJECT_LOCKED(obj);             \
31
    }
32
#define ASSERT_WORLD_STOPPED() assert(_PyInterpreterState_GET()->stoptheworld.world_stopped);
33
34
#else
35
36
#define ASSERT_WORLD_STOPPED_OR_LOCKED(obj)
37
#define ASSERT_WORLD_STOPPED()
38
39
#endif
40
41
#ifdef Py_GIL_DISABLED
42
43
#define LOCK_CODE(code)                                             \
44
    assert(!_PyInterpreterState_GET()->stoptheworld.world_stopped); \
45
    Py_BEGIN_CRITICAL_SECTION(code)
46
47
#define UNLOCK_CODE()   Py_END_CRITICAL_SECTION()
48
49
#define MODIFY_BYTECODE(code, func, ...)                       \
50
    do {                                                       \
51
        PyCodeObject *co = (code);                             \
52
        for (Py_ssize_t i = 0; i < code->co_tlbc->size; i++) { \
53
            char *bc = co->co_tlbc->entries[i];                \
54
            if (bc == NULL) {                                  \
55
                continue;                                      \
56
            }                                                  \
57
            (func)(code, (_Py_CODEUNIT *)bc, __VA_ARGS__);           \
58
        }                                                      \
59
    } while (0)
60
61
#else
62
63
#define LOCK_CODE(code)
64
#define UNLOCK_CODE()
65
#define MODIFY_BYTECODE(code, func, ...) \
66
0
    (func)(code, _PyCode_CODE(code), __VA_ARGS__)
67
68
#endif
69
70
PyObject _PyInstrumentation_DISABLE = _PyObject_HEAD_INIT(&PyBaseObject_Type);
71
72
PyObject _PyInstrumentation_MISSING = _PyObject_HEAD_INIT(&PyBaseObject_Type);
73
74
static const int8_t EVENT_FOR_OPCODE[256] = {
75
    [RETURN_VALUE] = PY_MONITORING_EVENT_PY_RETURN,
76
    [INSTRUMENTED_RETURN_VALUE] = PY_MONITORING_EVENT_PY_RETURN,
77
    [CALL] = PY_MONITORING_EVENT_CALL,
78
    [INSTRUMENTED_CALL] = PY_MONITORING_EVENT_CALL,
79
    [CALL_KW] = PY_MONITORING_EVENT_CALL,
80
    [INSTRUMENTED_CALL_KW] = PY_MONITORING_EVENT_CALL,
81
    [CALL_FUNCTION_EX] = PY_MONITORING_EVENT_CALL,
82
    [INSTRUMENTED_CALL_FUNCTION_EX] = PY_MONITORING_EVENT_CALL,
83
    [LOAD_SUPER_ATTR] = PY_MONITORING_EVENT_CALL,
84
    [INSTRUMENTED_LOAD_SUPER_ATTR] = PY_MONITORING_EVENT_CALL,
85
    [RESUME] = -1,
86
    [YIELD_VALUE] = PY_MONITORING_EVENT_PY_YIELD,
87
    [INSTRUMENTED_YIELD_VALUE] = PY_MONITORING_EVENT_PY_YIELD,
88
    [JUMP_FORWARD] = PY_MONITORING_EVENT_JUMP,
89
    [JUMP_BACKWARD] = PY_MONITORING_EVENT_JUMP,
90
    [POP_JUMP_IF_FALSE] = PY_MONITORING_EVENT_BRANCH_RIGHT,
91
    [POP_JUMP_IF_TRUE] = PY_MONITORING_EVENT_BRANCH_RIGHT,
92
    [POP_JUMP_IF_NONE] = PY_MONITORING_EVENT_BRANCH_RIGHT,
93
    [POP_JUMP_IF_NOT_NONE] = PY_MONITORING_EVENT_BRANCH_RIGHT,
94
    [INSTRUMENTED_JUMP_FORWARD] = PY_MONITORING_EVENT_JUMP,
95
    [INSTRUMENTED_JUMP_BACKWARD] = PY_MONITORING_EVENT_JUMP,
96
    [INSTRUMENTED_POP_JUMP_IF_FALSE] = PY_MONITORING_EVENT_BRANCH_RIGHT,
97
    [INSTRUMENTED_POP_JUMP_IF_TRUE] = PY_MONITORING_EVENT_BRANCH_RIGHT,
98
    [INSTRUMENTED_POP_JUMP_IF_NONE] = PY_MONITORING_EVENT_BRANCH_RIGHT,
99
    [INSTRUMENTED_POP_JUMP_IF_NOT_NONE] = PY_MONITORING_EVENT_BRANCH_RIGHT,
100
    [FOR_ITER] = PY_MONITORING_EVENT_BRANCH_LEFT,
101
    [INSTRUMENTED_FOR_ITER] = PY_MONITORING_EVENT_BRANCH_LEFT,
102
    [POP_ITER] = PY_MONITORING_EVENT_BRANCH_RIGHT,
103
    [INSTRUMENTED_POP_ITER] = PY_MONITORING_EVENT_BRANCH_RIGHT,
104
    [END_FOR] = PY_MONITORING_EVENT_STOP_ITERATION,
105
    [INSTRUMENTED_END_FOR] = PY_MONITORING_EVENT_STOP_ITERATION,
106
    [END_SEND] = PY_MONITORING_EVENT_STOP_ITERATION,
107
    [INSTRUMENTED_END_SEND] = PY_MONITORING_EVENT_STOP_ITERATION,
108
    [NOT_TAKEN] = PY_MONITORING_EVENT_BRANCH_LEFT,
109
    [INSTRUMENTED_NOT_TAKEN] = PY_MONITORING_EVENT_BRANCH_LEFT,
110
    [END_ASYNC_FOR] = PY_MONITORING_EVENT_BRANCH_RIGHT,
111
};
112
113
static const uint8_t DE_INSTRUMENT[256] = {
114
    [INSTRUMENTED_RESUME] = RESUME,
115
    [INSTRUMENTED_RETURN_VALUE] = RETURN_VALUE,
116
    [INSTRUMENTED_CALL] = CALL,
117
    [INSTRUMENTED_CALL_KW] = CALL_KW,
118
    [INSTRUMENTED_CALL_FUNCTION_EX] = CALL_FUNCTION_EX,
119
    [INSTRUMENTED_YIELD_VALUE] = YIELD_VALUE,
120
    [INSTRUMENTED_JUMP_FORWARD] = JUMP_FORWARD,
121
    [INSTRUMENTED_JUMP_BACKWARD] = JUMP_BACKWARD,
122
    [INSTRUMENTED_POP_JUMP_IF_FALSE] = POP_JUMP_IF_FALSE,
123
    [INSTRUMENTED_POP_JUMP_IF_TRUE] = POP_JUMP_IF_TRUE,
124
    [INSTRUMENTED_POP_JUMP_IF_NONE] = POP_JUMP_IF_NONE,
125
    [INSTRUMENTED_POP_JUMP_IF_NOT_NONE] = POP_JUMP_IF_NOT_NONE,
126
    [INSTRUMENTED_FOR_ITER] = FOR_ITER,
127
    [INSTRUMENTED_POP_ITER] = POP_ITER,
128
    [INSTRUMENTED_END_FOR] = END_FOR,
129
    [INSTRUMENTED_END_SEND] = END_SEND,
130
    [INSTRUMENTED_LOAD_SUPER_ATTR] = LOAD_SUPER_ATTR,
131
    [INSTRUMENTED_NOT_TAKEN] = NOT_TAKEN,
132
    [INSTRUMENTED_END_ASYNC_FOR] = END_ASYNC_FOR,
133
};
134
135
static const uint8_t INSTRUMENTED_OPCODES[256] = {
136
    [RETURN_VALUE] = INSTRUMENTED_RETURN_VALUE,
137
    [INSTRUMENTED_RETURN_VALUE] = INSTRUMENTED_RETURN_VALUE,
138
    [CALL] = INSTRUMENTED_CALL,
139
    [INSTRUMENTED_CALL] = INSTRUMENTED_CALL,
140
    [CALL_KW] = INSTRUMENTED_CALL_KW,
141
    [INSTRUMENTED_CALL_KW] = INSTRUMENTED_CALL_KW,
142
    [CALL_FUNCTION_EX] = INSTRUMENTED_CALL_FUNCTION_EX,
143
    [INSTRUMENTED_CALL_FUNCTION_EX] = INSTRUMENTED_CALL_FUNCTION_EX,
144
    [YIELD_VALUE] = INSTRUMENTED_YIELD_VALUE,
145
    [INSTRUMENTED_YIELD_VALUE] = INSTRUMENTED_YIELD_VALUE,
146
    [RESUME] = INSTRUMENTED_RESUME,
147
    [INSTRUMENTED_RESUME] = INSTRUMENTED_RESUME,
148
    [JUMP_FORWARD] = INSTRUMENTED_JUMP_FORWARD,
149
    [INSTRUMENTED_JUMP_FORWARD] = INSTRUMENTED_JUMP_FORWARD,
150
    [JUMP_BACKWARD] = INSTRUMENTED_JUMP_BACKWARD,
151
    [INSTRUMENTED_JUMP_BACKWARD] = INSTRUMENTED_JUMP_BACKWARD,
152
    [POP_JUMP_IF_FALSE] = INSTRUMENTED_POP_JUMP_IF_FALSE,
153
    [INSTRUMENTED_POP_JUMP_IF_FALSE] = INSTRUMENTED_POP_JUMP_IF_FALSE,
154
    [POP_JUMP_IF_TRUE] = INSTRUMENTED_POP_JUMP_IF_TRUE,
155
    [INSTRUMENTED_POP_JUMP_IF_TRUE] = INSTRUMENTED_POP_JUMP_IF_TRUE,
156
    [POP_JUMP_IF_NONE] = INSTRUMENTED_POP_JUMP_IF_NONE,
157
    [INSTRUMENTED_POP_JUMP_IF_NONE] = INSTRUMENTED_POP_JUMP_IF_NONE,
158
    [POP_JUMP_IF_NOT_NONE] = INSTRUMENTED_POP_JUMP_IF_NOT_NONE,
159
    [INSTRUMENTED_POP_JUMP_IF_NOT_NONE] = INSTRUMENTED_POP_JUMP_IF_NOT_NONE,
160
    [END_FOR] = INSTRUMENTED_END_FOR,
161
    [INSTRUMENTED_END_FOR] = INSTRUMENTED_END_FOR,
162
    [END_SEND] = INSTRUMENTED_END_SEND,
163
    [INSTRUMENTED_END_SEND] = INSTRUMENTED_END_SEND,
164
    [FOR_ITER] = INSTRUMENTED_FOR_ITER,
165
    [INSTRUMENTED_FOR_ITER] = INSTRUMENTED_FOR_ITER,
166
    [POP_ITER] = INSTRUMENTED_POP_ITER,
167
    [INSTRUMENTED_POP_ITER] = INSTRUMENTED_POP_ITER,
168
    [LOAD_SUPER_ATTR] = INSTRUMENTED_LOAD_SUPER_ATTR,
169
    [INSTRUMENTED_LOAD_SUPER_ATTR] = INSTRUMENTED_LOAD_SUPER_ATTR,
170
    [NOT_TAKEN] = INSTRUMENTED_NOT_TAKEN,
171
    [INSTRUMENTED_NOT_TAKEN] = INSTRUMENTED_NOT_TAKEN,
172
    [END_ASYNC_FOR] = INSTRUMENTED_END_ASYNC_FOR,
173
    [INSTRUMENTED_END_ASYNC_FOR] = INSTRUMENTED_END_ASYNC_FOR,
174
175
    [INSTRUMENTED_LINE] = INSTRUMENTED_LINE,
176
    [INSTRUMENTED_INSTRUCTION] = INSTRUMENTED_INSTRUCTION,
177
};
178
179
static inline bool
180
opcode_has_event(int opcode)
181
0
{
182
0
    return (
183
0
        opcode != INSTRUMENTED_LINE &&
184
0
        INSTRUMENTED_OPCODES[opcode] > 0
185
0
    );
186
0
}
187
188
static inline bool
189
is_instrumented(int opcode)
190
0
{
191
0
    assert(opcode != 0);
192
0
    assert(opcode != RESERVED);
193
0
    return opcode < ENTER_EXECUTOR && opcode >= MIN_INSTRUMENTED_OPCODE;
194
0
}
195
196
#ifndef NDEBUG
197
static inline bool
198
monitors_equals(_Py_LocalMonitors a, _Py_LocalMonitors b)
199
{
200
    for (int i = 0; i < _PY_MONITORING_LOCAL_EVENTS; i++) {
201
        if (a.tools[i] != b.tools[i]) {
202
            return false;
203
        }
204
    }
205
    return true;
206
}
207
#endif
208
209
static inline _Py_LocalMonitors
210
monitors_sub(_Py_LocalMonitors a, _Py_LocalMonitors b)
211
0
{
212
0
    _Py_LocalMonitors res;
213
0
    for (int i = 0; i < _PY_MONITORING_LOCAL_EVENTS; i++) {
214
0
        res.tools[i] = a.tools[i] & ~b.tools[i];
215
0
    }
216
0
    return res;
217
0
}
218
219
#ifndef NDEBUG
220
static inline _Py_LocalMonitors
221
monitors_and(_Py_LocalMonitors a, _Py_LocalMonitors b)
222
{
223
    _Py_LocalMonitors res;
224
    for (int i = 0; i < _PY_MONITORING_LOCAL_EVENTS; i++) {
225
        res.tools[i] = a.tools[i] & b.tools[i];
226
    }
227
    return res;
228
}
229
#endif
230
231
/* The union of the *local* events in a and b.
232
 * Global events like RAISE are ignored.
233
 * Used for instrumentation, as only local
234
 * events get instrumented.
235
 */
236
static inline _Py_LocalMonitors
237
local_union(_Py_GlobalMonitors a, _Py_LocalMonitors b)
238
0
{
239
0
    _Py_LocalMonitors res;
240
0
    for (int i = 0; i < _PY_MONITORING_LOCAL_EVENTS; i++) {
241
0
        res.tools[i] = a.tools[i] | b.tools[i];
242
0
    }
243
0
    return res;
244
0
}
245
246
static inline bool
247
monitors_are_empty(_Py_LocalMonitors m)
248
0
{
249
0
    for (int i = 0; i < _PY_MONITORING_LOCAL_EVENTS; i++) {
250
0
        if (m.tools[i]) {
251
0
            return false;
252
0
        }
253
0
    }
254
0
    return true;
255
0
}
256
257
static inline bool
258
multiple_tools(_Py_LocalMonitors *m)
259
0
{
260
0
    for (int i = 0; i < _PY_MONITORING_LOCAL_EVENTS; i++) {
261
0
        if (_Py_popcount32(m->tools[i]) > 1) {
262
0
            return true;
263
0
        }
264
0
    }
265
0
    return false;
266
0
}
267
268
static inline _PyMonitoringEventSet
269
get_local_events(_Py_LocalMonitors *m, int tool_id)
270
0
{
271
0
    _PyMonitoringEventSet result = 0;
272
0
    for (int e = 0; e < _PY_MONITORING_LOCAL_EVENTS; e++) {
273
0
        if ((m->tools[e] >> tool_id) & 1) {
274
0
            result |= (1 << e);
275
0
        }
276
0
    }
277
0
    return result;
278
0
}
279
280
static inline _PyMonitoringEventSet
281
get_events(_Py_GlobalMonitors *m, int tool_id)
282
0
{
283
0
    _PyMonitoringEventSet result = 0;
284
0
    for (int e = 0; e < _PY_MONITORING_UNGROUPED_EVENTS; e++) {
285
0
        if ((m->tools[e] >> tool_id) & 1) {
286
0
            result |= (1 << e);
287
0
        }
288
0
    }
289
0
    return result;
290
0
}
291
292
/* Module code can have line 0, even though modules start at line 1,
293
 * so -1 is a legal delta. */
294
0
#define NO_LINE (-2)
295
296
/* Returns the line delta. Defined as:
297
 * if line is None:
298
 *     line_delta = NO_LINE
299
 * else:
300
 *     line_delta = line - first_line
301
 */
302
static int
303
compute_line_delta(PyCodeObject *code, int line)
304
0
{
305
0
    if (line < 0) {
306
0
        assert(line == -1);
307
0
        return NO_LINE;
308
0
    }
309
0
    int delta = line - code->co_firstlineno;
310
0
    assert(delta > NO_LINE);
311
0
    return delta;
312
0
}
313
314
static int
315
compute_line(PyCodeObject *code, int line_delta)
316
0
{
317
0
    if (line_delta == NO_LINE) {
318
0
        return -1;
319
0
    }
320
0
    assert(line_delta > NO_LINE);
321
0
    return code->co_firstlineno + line_delta;
322
0
}
323
324
int
325
_PyInstruction_GetLength(PyCodeObject *code, int offset)
326
0
{
327
0
    ASSERT_WORLD_STOPPED_OR_LOCKED(code);
328
329
0
    _Py_CODEUNIT inst = _Py_GetBaseCodeUnit(code, offset);
330
0
    return 1 + _PyOpcode_Caches[inst.op.code];
331
0
}
332
333
static inline uint8_t
334
get_original_opcode(_PyCoLineInstrumentationData *line_data, int index)
335
0
{
336
0
    return line_data->data[index*line_data->bytes_per_entry];
337
0
}
338
339
static inline uint8_t *
340
get_original_opcode_ptr(_PyCoLineInstrumentationData *line_data, int index)
341
0
{
342
0
    return &line_data->data[index*line_data->bytes_per_entry];
343
0
}
344
345
static inline void
346
set_original_opcode(_PyCoLineInstrumentationData *line_data, int index, uint8_t opcode)
347
0
{
348
0
    line_data->data[index*line_data->bytes_per_entry] = opcode;
349
0
}
350
351
static inline int
352
get_line_delta(_PyCoLineInstrumentationData *line_data, int index)
353
0
{
354
0
    uint8_t *ptr = &line_data->data[index*line_data->bytes_per_entry+1];
355
0
    assert(line_data->bytes_per_entry >= 2);
356
0
    uint32_t value = *ptr;
357
0
    for (int idx = 2; idx < line_data->bytes_per_entry; idx++) {
358
0
        ptr++;
359
0
        int shift = (idx-1)*8;
360
0
        value |= ((uint32_t)(*ptr)) << shift;
361
0
    }
362
0
    assert(value < INT_MAX);
363
    /* NO_LINE is stored as zero. */
364
0
    return ((int)value) + NO_LINE;
365
0
}
366
367
static inline void
368
set_line_delta(_PyCoLineInstrumentationData *line_data, int index, int line_delta)
369
0
{
370
    /* Store line_delta + 2 as we need -2 to represent no line number */
371
0
    assert(line_delta >= NO_LINE);
372
0
    uint32_t adjusted = line_delta - NO_LINE;
373
0
    uint8_t *ptr = &line_data->data[index*line_data->bytes_per_entry+1];
374
0
    assert(adjusted < (1ULL << ((line_data->bytes_per_entry-1)*8)));
375
0
    assert(line_data->bytes_per_entry >= 2);
376
0
    *ptr = adjusted & 0xff;
377
0
    for (int idx = 2; idx < line_data->bytes_per_entry; idx++) {
378
0
        ptr++;
379
0
        adjusted >>= 8;
380
0
        *ptr = adjusted & 0xff;
381
0
    }
382
0
}
383
384
#ifdef INSTRUMENT_DEBUG
385
386
static void
387
dump_instrumentation_data_tools(PyCodeObject *code, uint8_t *tools, int i, FILE*out)
388
{
389
    if (tools == NULL) {
390
        fprintf(out, "tools = NULL");
391
    }
392
    else {
393
        fprintf(out, "tools = %d", tools[i]);
394
    }
395
}
396
397
static void
398
dump_instrumentation_data_lines(PyCodeObject *code, _PyCoLineInstrumentationData *lines, int i, FILE*out)
399
{
400
    if (lines == NULL) {
401
        fprintf(out, ", lines = NULL");
402
    }
403
    else {
404
        int opcode = get_original_opcode(lines, i);
405
        int line_delta = get_line_delta(lines, i);
406
        if (opcode == 0) {
407
            fprintf(out, ", lines = {original_opcode = No LINE (0), line_delta = %d)", line_delta);
408
        }
409
        else {
410
            fprintf(out, ", lines = {original_opcode = %s, line_delta = %d)", _PyOpcode_OpName[opcode], line_delta);
411
        }
412
    }
413
}
414
415
static void
416
dump_instrumentation_data_line_tools(PyCodeObject *code, uint8_t *line_tools, int i, FILE*out)
417
{
418
    if (line_tools == NULL) {
419
        fprintf(out, ", line_tools = NULL");
420
    }
421
    else {
422
        fprintf(out, ", line_tools = %d", line_tools[i]);
423
    }
424
}
425
426
static void
427
dump_instrumentation_data_per_instruction(PyCodeObject *code, _PyCoMonitoringData *data, int i, FILE*out)
428
{
429
    if (data->per_instruction_opcodes == NULL) {
430
        fprintf(out, ", per-inst opcode = NULL");
431
    }
432
    else {
433
        fprintf(out, ", per-inst opcode = %s", _PyOpcode_OpName[data->per_instruction_opcodes[i]]);
434
    }
435
    if (data->per_instruction_tools == NULL) {
436
        fprintf(out, ", per-inst tools = NULL");
437
    }
438
    else {
439
        fprintf(out, ", per-inst tools = %d", data->per_instruction_tools[i]);
440
    }
441
}
442
443
static void
444
dump_global_monitors(const char *prefix, _Py_GlobalMonitors monitors, FILE*out)
445
{
446
    fprintf(out, "%s monitors:\n", prefix);
447
    for (int event = 0; event < _PY_MONITORING_UNGROUPED_EVENTS; event++) {
448
        fprintf(out, "    Event %d: Tools %x\n", event, monitors.tools[event]);
449
    }
450
}
451
452
static void
453
dump_local_monitors(const char *prefix, _Py_LocalMonitors monitors, FILE*out)
454
{
455
    fprintf(out, "%s monitors:\n", prefix);
456
    for (int event = 0; event < _PY_MONITORING_LOCAL_EVENTS; event++) {
457
        fprintf(out, "    Event %d: Tools %x\n", event, monitors.tools[event]);
458
    }
459
}
460
461
/** NOTE:
462
 * Do not use PyCode_Addr2Line to determine the line number in instrumentation,
463
 * as `PyCode_Addr2Line` uses the monitoring data if it is available.
464
 */
465
466
467
/* No error checking -- Don't use this for anything but experimental debugging */
468
static void
469
dump_instrumentation_data(PyCodeObject *code, int star, FILE*out)
470
{
471
    _PyCoMonitoringData *data = code->_co_monitoring;
472
    fprintf(out, "\n");
473
    PyObject_Print(code->co_name, out, Py_PRINT_RAW);
474
    fprintf(out, "\n");
475
    if (data == NULL) {
476
        fprintf(out, "NULL\n");
477
        return;
478
    }
479
    dump_global_monitors("Global", _PyInterpreterState_GET()->monitors, out);
480
    dump_local_monitors("Code", data->local_monitors, out);
481
    dump_local_monitors("Active", data->active_monitors, out);
482
    int code_len = (int)Py_SIZE(code);
483
    bool starred = false;
484
    PyCodeAddressRange range;
485
    _PyCode_InitAddressRange(code, &range);
486
    for (int i = 0; i < code_len; i += _PyInstruction_GetLength(code, i)) {
487
        _Py_CODEUNIT *instr = &_PyCode_CODE(code)[i];
488
        int opcode = instr->op.code;
489
        if (i == star) {
490
            fprintf(out, "**  ");
491
            starred = true;
492
        }
493
        fprintf(out, "Offset: %d, line: %d %s: ", i, _PyCode_CheckLineNumber(i*2, &range), _PyOpcode_OpName[opcode]);
494
        dump_instrumentation_data_tools(code, data->tools, i, out);
495
        dump_instrumentation_data_lines(code, data->lines, i, out);
496
        dump_instrumentation_data_line_tools(code, data->line_tools, i, out);
497
        dump_instrumentation_data_per_instruction(code, data, i, out);
498
        fprintf(out, "\n");
499
        ;
500
    }
501
    if (!starred && star >= 0) {
502
        fprintf(out, "Error offset not at valid instruction offset: %d\n", star);
503
        fprintf(out, "    ");
504
        dump_instrumentation_data_tools(code, data->tools, star, out);
505
        dump_instrumentation_data_lines(code, data->lines, star, out);
506
        dump_instrumentation_data_line_tools(code, data->line_tools, star, out);
507
        dump_instrumentation_data_per_instruction(code, data, star, out);
508
        fprintf(out, "\n");
509
    }
510
}
511
512
#define CHECK(test) do { \
513
    if (!(test)) { \
514
        dump_instrumentation_data(code, i, stderr); \
515
    } \
516
    assert(test); \
517
} while (0)
518
519
static bool
520
valid_opcode(int opcode)
521
{
522
    if (opcode == INSTRUMENTED_LINE) {
523
        return true;
524
    }
525
    if (IS_VALID_OPCODE(opcode) &&
526
        opcode != CACHE &&
527
        opcode != RESERVED &&
528
        opcode < 254)
529
    {
530
       return true;
531
    }
532
    return false;
533
}
534
535
static void
536
sanity_check_instrumentation(PyCodeObject *code)
537
{
538
    ASSERT_WORLD_STOPPED_OR_LOCKED(code);
539
540
    _PyCoMonitoringData *data = code->_co_monitoring;
541
    if (data == NULL) {
542
        return;
543
    }
544
    _Py_GlobalMonitors global_monitors = _PyInterpreterState_GET()->monitors;
545
    _Py_LocalMonitors active_monitors;
546
    if (code->_co_monitoring) {
547
        _Py_LocalMonitors local_monitors = code->_co_monitoring->local_monitors;
548
        active_monitors = local_union(global_monitors, local_monitors);
549
    }
550
    else {
551
        _Py_LocalMonitors empty = (_Py_LocalMonitors) { 0 };
552
        active_monitors = local_union(global_monitors, empty);
553
    }
554
    assert(monitors_equals(
555
        code->_co_monitoring->active_monitors,
556
        active_monitors));
557
    int code_len = (int)Py_SIZE(code);
558
    PyCodeAddressRange range;
559
    _PyCode_InitAddressRange(co, &range);
560
    for (int i = 0; i < code_len;) {
561
        _Py_CODEUNIT *instr = &_PyCode_CODE(code)[i];
562
        int opcode = instr->op.code;
563
        int base_opcode = _Py_GetBaseCodeUnit(code, i).op.code;
564
        CHECK(valid_opcode(opcode));
565
        CHECK(valid_opcode(base_opcode));
566
        if (opcode == INSTRUMENTED_INSTRUCTION) {
567
            opcode = data->per_instruction_opcodes[i];
568
            if (!is_instrumented(opcode)) {
569
                CHECK(_PyOpcode_Deopt[opcode] == opcode);
570
            }
571
        }
572
        if (opcode == INSTRUMENTED_LINE) {
573
            CHECK(data->lines);
574
            opcode = get_original_opcode(data->lines, i);
575
            CHECK(valid_opcode(opcode));
576
            CHECK(opcode != END_FOR);
577
            CHECK(opcode != RESUME);
578
            CHECK(opcode != RESUME_CHECK);
579
            CHECK(opcode != RESUME_CHECK_JIT);
580
            CHECK(opcode != INSTRUMENTED_RESUME);
581
            if (!is_instrumented(opcode)) {
582
                CHECK(_PyOpcode_Deopt[opcode] == opcode);
583
            }
584
            CHECK(opcode != INSTRUMENTED_LINE);
585
        }
586
        else if (data->lines) {
587
            /* If original_opcode is INSTRUMENTED_INSTRUCTION
588
             * *and* we are executing a INSTRUMENTED_LINE instruction
589
             * that has de-instrumented itself, then we will execute
590
             * an invalid INSTRUMENTED_INSTRUCTION */
591
            CHECK(get_original_opcode(data->lines, i) != INSTRUMENTED_INSTRUCTION);
592
        }
593
        if (opcode == INSTRUMENTED_INSTRUCTION) {
594
            CHECK(data->per_instruction_opcodes[i] != 0);
595
            opcode = data->per_instruction_opcodes[i];
596
        }
597
        if (is_instrumented(opcode)) {
598
            CHECK(DE_INSTRUMENT[opcode] == base_opcode);
599
            int event = EVENT_FOR_OPCODE[DE_INSTRUMENT[opcode]];
600
            if (event < 0) {
601
                /* RESUME fixup */
602
                event = instr->op.arg ? 1: 0;
603
            }
604
            CHECK(active_monitors.tools[event] != 0);
605
        }
606
        if (data->lines && get_original_opcode(data->lines, i)) {
607
            int line1 = compute_line(code, get_line_delta(data->lines, i));
608
            int line2 = _PyCode_CheckLineNumber(i*sizeof(_Py_CODEUNIT), &range);
609
            CHECK(line1 == line2);
610
        }
611
        CHECK(valid_opcode(opcode));
612
        if (data->tools) {
613
            uint8_t local_tools = data->tools[i];
614
            if (opcode_has_event(base_opcode)) {
615
                int event = EVENT_FOR_OPCODE[base_opcode];
616
                if (event == -1) {
617
                    /* RESUME fixup */
618
                    event = _PyCode_CODE(code)[i].op.arg;
619
                }
620
                CHECK((active_monitors.tools[event] & local_tools) == local_tools);
621
            }
622
            else {
623
                CHECK(local_tools == 0xff);
624
            }
625
        }
626
        i += _PyInstruction_GetLength(code, i);
627
        assert(i <= code_len);
628
    }
629
}
630
#else
631
632
0
#define CHECK(test) assert(test)
633
634
#endif
635
636
/* Get the underlying code unit, stripping instrumentation and ENTER_EXECUTOR */
637
_Py_CODEUNIT
638
_Py_GetBaseCodeUnit(PyCodeObject *code, int i)
639
1.01M
{
640
1.01M
    _Py_CODEUNIT *src_instr = _PyCode_CODE(code) + i;
641
1.01M
    _Py_CODEUNIT inst = {
642
1.01M
        .cache = FT_ATOMIC_LOAD_UINT16_RELAXED(*(uint16_t *)src_instr)};
643
1.01M
    int opcode = inst.op.code;
644
1.01M
    if (opcode < MIN_INSTRUMENTED_OPCODE) {
645
1.01M
        inst.op.code = _PyOpcode_Deopt[opcode];
646
1.01M
        assert(inst.op.code < MIN_SPECIALIZED_OPCODE);
647
1.01M
        return inst;
648
1.01M
    }
649
0
    if (opcode == ENTER_EXECUTOR) {
650
0
        _PyExecutorObject *exec = code->co_executors->executors[inst.op.arg];
651
0
        opcode = _PyOpcode_Deopt[exec->vm_data.opcode];
652
0
        inst.op.code = opcode;
653
0
        inst.op.arg = exec->vm_data.oparg;
654
0
        assert(inst.op.code < MIN_SPECIALIZED_OPCODE);
655
0
        return inst;
656
0
    }
657
0
    if (opcode == INSTRUMENTED_LINE) {
658
0
        opcode = get_original_opcode(code->_co_monitoring->lines, i);
659
0
    }
660
0
    if (opcode == INSTRUMENTED_INSTRUCTION) {
661
0
        opcode = code->_co_monitoring->per_instruction_opcodes[i];
662
0
    }
663
0
    CHECK(opcode != INSTRUMENTED_INSTRUCTION);
664
0
    CHECK(opcode != INSTRUMENTED_LINE);
665
0
    int deinstrumented = DE_INSTRUMENT[opcode];
666
0
    if (deinstrumented) {
667
0
        inst.op.code = deinstrumented;
668
0
    }
669
0
    else {
670
0
        inst.op.code = _PyOpcode_Deopt[opcode];
671
0
    }
672
0
    assert(inst.op.code < MIN_SPECIALIZED_OPCODE);
673
0
    return inst;
674
0
}
675
676
static void
677
de_instrument(PyCodeObject *code, _Py_CODEUNIT *bytecode, _PyCoMonitoringData *monitoring, int i,
678
              int event)
679
0
{
680
0
    assert(event != PY_MONITORING_EVENT_INSTRUCTION);
681
0
    assert(event != PY_MONITORING_EVENT_LINE);
682
683
0
    _Py_CODEUNIT *instr = &bytecode[i];
684
0
    uint8_t *opcode_ptr = &instr->op.code;
685
0
    int opcode = *opcode_ptr;
686
0
    assert(opcode != ENTER_EXECUTOR);
687
0
    if (opcode == INSTRUMENTED_LINE) {
688
0
        opcode_ptr = get_original_opcode_ptr(monitoring->lines, i);
689
0
        opcode = *opcode_ptr;
690
0
    }
691
0
    if (opcode == INSTRUMENTED_INSTRUCTION) {
692
0
        opcode_ptr = &monitoring->per_instruction_opcodes[i];
693
0
        opcode = *opcode_ptr;
694
0
    }
695
0
    int deinstrumented = DE_INSTRUMENT[opcode];
696
0
    if (deinstrumented == 0) {
697
0
        return;
698
0
    }
699
0
    CHECK(_PyOpcode_Deopt[deinstrumented] == deinstrumented);
700
0
    FT_ATOMIC_STORE_UINT8_RELAXED(*opcode_ptr, deinstrumented);
701
0
    if (_PyOpcode_Caches[deinstrumented]) {
702
0
        FT_ATOMIC_STORE_UINT16_RELAXED(instr[1].counter.value_and_backoff,
703
0
                                       adaptive_counter_warmup().value_and_backoff);
704
0
    }
705
0
}
706
707
static void
708
de_instrument_line(PyCodeObject *code, _Py_CODEUNIT *bytecode, _PyCoMonitoringData *monitoring,
709
                   int i)
710
0
{
711
0
    _Py_CODEUNIT *instr = &bytecode[i];
712
0
    int opcode = instr->op.code;
713
0
    if (opcode != INSTRUMENTED_LINE) {
714
0
        return;
715
0
    }
716
0
    _PyCoLineInstrumentationData *lines = monitoring->lines;
717
0
    int original_opcode = get_original_opcode(lines, i);
718
0
    if (original_opcode == INSTRUMENTED_INSTRUCTION) {
719
0
        set_original_opcode(lines, i, monitoring->per_instruction_opcodes[i]);
720
0
    }
721
0
    CHECK(original_opcode != 0);
722
0
    CHECK(original_opcode == _PyOpcode_Deopt[original_opcode]);
723
0
    FT_ATOMIC_STORE_UINT8(instr->op.code, original_opcode);
724
0
    if (_PyOpcode_Caches[original_opcode]) {
725
0
        FT_ATOMIC_STORE_UINT16_RELAXED(instr[1].counter.value_and_backoff,
726
0
                                       adaptive_counter_warmup().value_and_backoff);
727
0
    }
728
0
    assert(instr->op.code != INSTRUMENTED_LINE);
729
0
}
730
731
static void
732
de_instrument_per_instruction(PyCodeObject *code, _Py_CODEUNIT *bytecode,
733
                              _PyCoMonitoringData *monitoring, int i)
734
0
{
735
0
    _Py_CODEUNIT *instr = &bytecode[i];
736
0
    uint8_t *opcode_ptr = &instr->op.code;
737
0
    int opcode = *opcode_ptr;
738
0
    if (opcode == INSTRUMENTED_LINE) {
739
0
        opcode_ptr = get_original_opcode_ptr(monitoring->lines, i);
740
0
        opcode = *opcode_ptr;
741
0
    }
742
0
    if (opcode != INSTRUMENTED_INSTRUCTION) {
743
0
        return;
744
0
    }
745
0
    int original_opcode = monitoring->per_instruction_opcodes[i];
746
0
    CHECK(original_opcode != 0);
747
0
    CHECK(original_opcode == _PyOpcode_Deopt[original_opcode]);
748
0
    FT_ATOMIC_STORE_UINT8_RELAXED(*opcode_ptr, original_opcode);
749
0
    if (_PyOpcode_Caches[original_opcode]) {
750
0
        FT_ATOMIC_STORE_UINT16_RELAXED(instr[1].counter.value_and_backoff,
751
0
                                       adaptive_counter_warmup().value_and_backoff);
752
0
    }
753
0
    assert(*opcode_ptr != INSTRUMENTED_INSTRUCTION);
754
0
    assert(instr->op.code != INSTRUMENTED_INSTRUCTION);
755
0
}
756
757
static void
758
instrument(PyCodeObject *code, _Py_CODEUNIT *bytecode, _PyCoMonitoringData *monitoring, int i)
759
0
{
760
0
    _Py_CODEUNIT *instr = &bytecode[i];
761
0
    uint8_t *opcode_ptr = &instr->op.code;
762
0
    int opcode =*opcode_ptr;
763
0
    if (opcode == INSTRUMENTED_LINE) {
764
0
        opcode_ptr = get_original_opcode_ptr(monitoring->lines, i);
765
0
        opcode = *opcode_ptr;
766
0
    }
767
0
    if (opcode == INSTRUMENTED_INSTRUCTION) {
768
0
        opcode_ptr = &monitoring->per_instruction_opcodes[i];
769
0
        opcode = *opcode_ptr;
770
0
        CHECK(opcode != INSTRUMENTED_INSTRUCTION && opcode != INSTRUMENTED_LINE);
771
0
        CHECK(opcode == _PyOpcode_Deopt[opcode]);
772
0
    }
773
0
    CHECK(opcode != 0);
774
0
    if (!is_instrumented(opcode)) {
775
0
        int deopt = _PyOpcode_Deopt[opcode];
776
0
        int instrumented = INSTRUMENTED_OPCODES[deopt];
777
0
        assert(instrumented);
778
0
        FT_ATOMIC_STORE_UINT8_RELAXED(*opcode_ptr, instrumented);
779
0
        if (_PyOpcode_Caches[deopt]) {
780
0
            FT_ATOMIC_STORE_UINT16_RELAXED(instr[1].counter.value_and_backoff,
781
0
                                           adaptive_counter_warmup().value_and_backoff);
782
0
        }
783
0
    }
784
0
}
785
786
static void
787
instrument_line(PyCodeObject *code, _Py_CODEUNIT *bytecode, _PyCoMonitoringData *monitoring, int i)
788
0
{
789
0
    uint8_t *opcode_ptr = &bytecode[i].op.code;
790
0
    int opcode = *opcode_ptr;
791
0
    if (opcode == INSTRUMENTED_LINE) {
792
0
        return;
793
0
    }
794
0
    set_original_opcode(monitoring->lines, i, _PyOpcode_Deopt[opcode]);
795
0
    CHECK(get_line_delta(monitoring->lines, i) > NO_LINE);
796
0
    FT_ATOMIC_STORE_UINT8_RELAXED(*opcode_ptr, INSTRUMENTED_LINE);
797
0
}
798
799
static void
800
instrument_per_instruction(PyCodeObject *code, _Py_CODEUNIT *bytecode,
801
                           _PyCoMonitoringData *monitoring, int i)
802
0
{
803
0
    _Py_CODEUNIT *instr = &bytecode[i];
804
0
    uint8_t *opcode_ptr = &instr->op.code;
805
0
    int opcode = *opcode_ptr;
806
0
    if (opcode == INSTRUMENTED_LINE) {
807
0
        opcode_ptr = get_original_opcode_ptr(monitoring->lines, i);
808
0
        opcode = *opcode_ptr;
809
0
    }
810
0
    if (opcode == INSTRUMENTED_INSTRUCTION) {
811
0
        assert(monitoring->per_instruction_opcodes[i] > 0);
812
0
        return;
813
0
    }
814
0
    CHECK(opcode != 0);
815
0
    if (is_instrumented(opcode)) {
816
0
        monitoring->per_instruction_opcodes[i] = opcode;
817
0
    }
818
0
    else {
819
0
        assert(opcode != 0);
820
0
        assert(_PyOpcode_Deopt[opcode] != 0);
821
0
        assert(_PyOpcode_Deopt[opcode] != RESUME);
822
0
        monitoring->per_instruction_opcodes[i] = _PyOpcode_Deopt[opcode];
823
0
    }
824
0
    assert(monitoring->per_instruction_opcodes[i] > 0);
825
0
    FT_ATOMIC_STORE_UINT8_RELAXED(*opcode_ptr, INSTRUMENTED_INSTRUCTION);
826
0
}
827
828
static void
829
remove_tools(PyCodeObject * code, int offset, int event, int tools)
830
0
{
831
0
    ASSERT_WORLD_STOPPED_OR_LOCKED(code);
832
0
    assert(event != PY_MONITORING_EVENT_LINE);
833
0
    assert(event != PY_MONITORING_EVENT_INSTRUCTION);
834
0
    assert(PY_MONITORING_IS_INSTRUMENTED_EVENT(event));
835
0
    assert(opcode_has_event(_Py_GetBaseCodeUnit(code, offset).op.code));
836
0
    _PyCoMonitoringData *monitoring = code->_co_monitoring;
837
0
    assert(monitoring);
838
0
    bool should_de_instrument;
839
0
    if (monitoring->tools) {
840
0
        monitoring->tools[offset] &= ~tools;
841
0
        should_de_instrument = (monitoring->tools[offset] == 0);
842
0
    }
843
0
    else {
844
        /* Single tool */
845
0
        uint8_t single_tool = monitoring->active_monitors.tools[event];
846
0
        assert(_Py_popcount32(single_tool) <= 1);
847
0
        should_de_instrument = ((single_tool & tools) == single_tool);
848
0
    }
849
0
    if (should_de_instrument) {
850
0
        MODIFY_BYTECODE(code, de_instrument, monitoring, offset, event);
851
0
    }
852
0
}
853
854
#ifndef NDEBUG
855
static bool
856
tools_is_subset_for_event(PyCodeObject * code, int event, int tools)
857
{
858
    int global_tools = _PyInterpreterState_GET()->monitors.tools[event];
859
    int local_tools = code->_co_monitoring->local_monitors.tools[event];
860
    return tools == ((global_tools | local_tools) & tools);
861
}
862
#endif
863
864
static void
865
remove_line_tools(PyCodeObject * code, int offset, int tools)
866
0
{
867
0
    ASSERT_WORLD_STOPPED_OR_LOCKED(code);
868
869
0
    _PyCoMonitoringData *monitoring = code->_co_monitoring;
870
0
    assert(monitoring);
871
0
    bool should_de_instrument;
872
0
    if (monitoring->line_tools)
873
0
    {
874
0
        uint8_t *toolsptr = &monitoring->line_tools[offset];
875
0
        *toolsptr &= ~tools;
876
0
        should_de_instrument = (*toolsptr == 0);
877
0
    }
878
0
    else {
879
        /* Single tool */
880
0
        uint8_t single_tool = monitoring->active_monitors.tools[PY_MONITORING_EVENT_LINE];
881
0
        assert(_Py_popcount32(single_tool) <= 1);
882
0
        should_de_instrument = ((single_tool & tools) == single_tool);
883
0
    }
884
0
    if (should_de_instrument) {
885
0
        MODIFY_BYTECODE(code, de_instrument_line, monitoring, offset);
886
0
    }
887
0
}
888
889
static void
890
add_tools(PyCodeObject * code, int offset, int event, int tools)
891
0
{
892
0
    ASSERT_WORLD_STOPPED_OR_LOCKED(code);
893
0
    assert(event != PY_MONITORING_EVENT_LINE);
894
0
    assert(event != PY_MONITORING_EVENT_INSTRUCTION);
895
0
    assert(PY_MONITORING_IS_INSTRUMENTED_EVENT(event));
896
0
    assert(code->_co_monitoring);
897
0
    if (code->_co_monitoring &&
898
0
        code->_co_monitoring->tools
899
0
    ) {
900
0
        code->_co_monitoring->tools[offset] |= tools;
901
0
    }
902
0
    else {
903
        /* Single tool */
904
0
        assert(_Py_popcount32(tools) == 1);
905
0
        assert(tools_is_subset_for_event(code, event, tools));
906
0
    }
907
0
    MODIFY_BYTECODE(code, instrument, code->_co_monitoring, offset);
908
0
}
909
910
static void
911
add_line_tools(PyCodeObject * code, int offset, int tools)
912
0
{
913
0
    ASSERT_WORLD_STOPPED_OR_LOCKED(code);
914
915
0
    assert(tools_is_subset_for_event(code, PY_MONITORING_EVENT_LINE, tools));
916
0
    assert(code->_co_monitoring);
917
0
    if (code->_co_monitoring->line_tools) {
918
0
        code->_co_monitoring->line_tools[offset] |= tools;
919
0
    }
920
0
    else {
921
        /* Single tool */
922
0
        assert(_Py_popcount32(tools) == 1);
923
0
    }
924
0
    MODIFY_BYTECODE(code, instrument_line, code->_co_monitoring, offset);
925
0
}
926
927
928
static void
929
add_per_instruction_tools(PyCodeObject * code, int offset, int tools)
930
0
{
931
0
    ASSERT_WORLD_STOPPED_OR_LOCKED(code);
932
933
0
    assert(tools_is_subset_for_event(code, PY_MONITORING_EVENT_INSTRUCTION, tools));
934
0
    assert(code->_co_monitoring);
935
0
    if (code->_co_monitoring->per_instruction_tools) {
936
0
        code->_co_monitoring->per_instruction_tools[offset] |= tools;
937
0
    }
938
0
    else {
939
        /* Single tool */
940
0
        assert(_Py_popcount32(tools) == 1);
941
0
    }
942
0
    MODIFY_BYTECODE(code, instrument_per_instruction, code->_co_monitoring, offset);
943
0
}
944
945
946
static void
947
remove_per_instruction_tools(PyCodeObject * code, int offset, int tools)
948
0
{
949
0
    ASSERT_WORLD_STOPPED_OR_LOCKED(code);
950
951
0
    _PyCoMonitoringData *monitoring = code->_co_monitoring;
952
0
    assert(code->_co_monitoring);
953
0
    bool should_de_instrument;
954
0
    if (code->_co_monitoring->per_instruction_tools) {
955
0
        uint8_t *toolsptr = &code->_co_monitoring->per_instruction_tools[offset];
956
0
        *toolsptr &= ~tools;
957
0
        should_de_instrument = (*toolsptr == 0);
958
0
    }
959
0
    else {
960
        /* Single tool */
961
0
        uint8_t single_tool = code->_co_monitoring->active_monitors.tools[PY_MONITORING_EVENT_INSTRUCTION];
962
0
        assert(_Py_popcount32(single_tool) <= 1);
963
0
        should_de_instrument = ((single_tool & tools) == single_tool);
964
0
    }
965
0
    if (should_de_instrument) {
966
0
        MODIFY_BYTECODE(code, de_instrument_per_instruction, monitoring, offset);
967
0
    }
968
0
}
969
970
971
/* Return 1 if DISABLE returned, -1 if error, 0 otherwise */
972
static int
973
call_one_instrument(
974
    PyInterpreterState *interp, PyThreadState *tstate, PyObject **args,
975
    size_t nargsf, int8_t tool, int event)
976
0
{
977
0
    assert(0 <= tool && tool < 8);
978
0
    assert(tstate->tracing == 0);
979
0
    PyObject *instrument = interp->monitoring_callables[tool][event];
980
0
    if (instrument == NULL) {
981
0
        return 0;
982
0
    }
983
0
    int old_what = tstate->what_event;
984
0
    tstate->what_event = event;
985
0
    tstate->tracing++;
986
0
    PyObject *res = _PyObject_VectorcallTstate(tstate, instrument, args, nargsf, NULL);
987
0
    tstate->tracing--;
988
0
    tstate->what_event = old_what;
989
0
    if (res == NULL) {
990
0
        return -1;
991
0
    }
992
0
    Py_DECREF(res);
993
0
    return (res == &_PyInstrumentation_DISABLE);
994
0
}
995
996
static const int8_t MOST_SIGNIFICANT_BITS[16] = {
997
    -1, 0, 1, 1,
998
    2, 2, 2, 2,
999
    3, 3, 3, 3,
1000
    3, 3, 3, 3,
1001
};
1002
1003
/* We could use _Py_bit_length here, but that is designed for larger (32/64)
1004
 * bit ints, and can perform relatively poorly on platforms without the
1005
 * necessary intrinsics. */
1006
0
static inline int most_significant_bit(uint8_t bits) {
1007
0
    assert(bits != 0);
1008
0
    if (bits > 15) {
1009
0
        return MOST_SIGNIFICANT_BITS[bits>>4]+4;
1010
0
    }
1011
0
    return MOST_SIGNIFICANT_BITS[bits];
1012
0
}
1013
1014
static uint32_t
1015
global_version(PyInterpreterState *interp)
1016
45.5k
{
1017
45.5k
    uint32_t version = (uint32_t)_Py_atomic_load_uintptr_relaxed(
1018
45.5k
        &interp->ceval.instrumentation_version);
1019
#ifdef Py_DEBUG
1020
    PyThreadState *tstate = _PyThreadState_GET();
1021
    uint32_t thread_version =
1022
        (uint32_t)(_Py_atomic_load_uintptr_relaxed(&tstate->eval_breaker) &
1023
                   ~_PY_EVAL_EVENTS_MASK);
1024
    assert(thread_version == version);
1025
#endif
1026
45.5k
    return version;
1027
45.5k
}
1028
1029
/* Atomically set the given version in the given location, without touching
1030
   anything in _PY_EVAL_EVENTS_MASK. */
1031
static void
1032
set_version_raw(uintptr_t *ptr, uint32_t version)
1033
0
{
1034
0
    uintptr_t old = _Py_atomic_load_uintptr_relaxed(ptr);
1035
0
    uintptr_t new;
1036
0
    do {
1037
0
        new = (old & _PY_EVAL_EVENTS_MASK) | version;
1038
0
    } while (!_Py_atomic_compare_exchange_uintptr(ptr, &old, new));
1039
0
}
1040
1041
static void
1042
set_global_version(PyThreadState *tstate, uint32_t version)
1043
0
{
1044
0
    ASSERT_WORLD_STOPPED();
1045
1046
0
    assert((version & _PY_EVAL_EVENTS_MASK) == 0);
1047
0
    PyInterpreterState *interp = tstate->interp;
1048
0
    set_version_raw(&interp->ceval.instrumentation_version, version);
1049
1050
#ifdef Py_GIL_DISABLED
1051
    // Set the version on all threads in free-threaded builds.
1052
    _Py_FOR_EACH_TSTATE_BEGIN(interp, tstate) {
1053
        set_version_raw(&tstate->eval_breaker, version);
1054
    };
1055
    _Py_FOR_EACH_TSTATE_END(interp);
1056
#else
1057
    // Normal builds take the current version from instrumentation_version when
1058
    // attaching a thread, so we only have to set the current thread's version.
1059
0
    set_version_raw(&tstate->eval_breaker, version);
1060
0
#endif
1061
0
}
1062
1063
static bool
1064
is_version_up_to_date(PyCodeObject *code, PyInterpreterState *interp)
1065
45.5k
{
1066
45.5k
    ASSERT_WORLD_STOPPED_OR_LOCKED(code);
1067
45.5k
    return global_version(interp) == code->_co_instrumentation_version;
1068
45.5k
}
1069
1070
#ifndef NDEBUG
1071
static bool
1072
instrumentation_cross_checks(PyInterpreterState *interp, PyCodeObject *code)
1073
{
1074
    ASSERT_WORLD_STOPPED_OR_LOCKED(code);
1075
    _Py_LocalMonitors expected = local_union(
1076
        interp->monitors,
1077
        code->_co_monitoring->local_monitors);
1078
    return monitors_equals(code->_co_monitoring->active_monitors, expected);
1079
}
1080
1081
static int
1082
debug_check_sanity(PyInterpreterState *interp, PyCodeObject *code)
1083
{
1084
    int res;
1085
    LOCK_CODE(code);
1086
    res = is_version_up_to_date(code, interp) &&
1087
          instrumentation_cross_checks(interp, code);
1088
    UNLOCK_CODE();
1089
    return res;
1090
}
1091
1092
#endif
1093
1094
static inline uint8_t
1095
get_tools_for_instruction(PyCodeObject *code, PyInterpreterState *interp, int i, int event)
1096
0
{
1097
0
    uint8_t tools;
1098
0
    assert(event != PY_MONITORING_EVENT_LINE);
1099
0
    assert(event != PY_MONITORING_EVENT_INSTRUCTION);
1100
0
    if (event >= _PY_MONITORING_UNGROUPED_EVENTS) {
1101
0
        assert(event == PY_MONITORING_EVENT_C_RAISE ||
1102
0
                event == PY_MONITORING_EVENT_C_RETURN);
1103
0
        event = PY_MONITORING_EVENT_CALL;
1104
0
    }
1105
0
    if (PY_MONITORING_IS_INSTRUMENTED_EVENT(event)) {
1106
0
        CHECK(debug_check_sanity(interp, code));
1107
0
        if (code->_co_monitoring->tools) {
1108
0
            tools = code->_co_monitoring->tools[i];
1109
0
        }
1110
0
        else {
1111
0
            tools = code->_co_monitoring->active_monitors.tools[event];
1112
0
        }
1113
0
    }
1114
0
    else {
1115
0
        tools = interp->monitors.tools[event];
1116
0
    }
1117
0
    return tools;
1118
0
}
1119
1120
static const char *const event_names [] = {
1121
    [PY_MONITORING_EVENT_PY_START] = "PY_START",
1122
    [PY_MONITORING_EVENT_PY_RESUME] = "PY_RESUME",
1123
    [PY_MONITORING_EVENT_PY_RETURN] = "PY_RETURN",
1124
    [PY_MONITORING_EVENT_PY_YIELD] = "PY_YIELD",
1125
    [PY_MONITORING_EVENT_CALL] = "CALL",
1126
    [PY_MONITORING_EVENT_LINE] = "LINE",
1127
    [PY_MONITORING_EVENT_INSTRUCTION] = "INSTRUCTION",
1128
    [PY_MONITORING_EVENT_JUMP] = "JUMP",
1129
    [PY_MONITORING_EVENT_BRANCH] = "BRANCH",
1130
    [PY_MONITORING_EVENT_BRANCH_LEFT] = "BRANCH_LEFT",
1131
    [PY_MONITORING_EVENT_BRANCH_RIGHT] = "BRANCH_RIGHT",
1132
    [PY_MONITORING_EVENT_C_RETURN] = "C_RETURN",
1133
    [PY_MONITORING_EVENT_PY_THROW] = "PY_THROW",
1134
    [PY_MONITORING_EVENT_RAISE] = "RAISE",
1135
    [PY_MONITORING_EVENT_RERAISE] = "RERAISE",
1136
    [PY_MONITORING_EVENT_EXCEPTION_HANDLED] = "EXCEPTION_HANDLED",
1137
    [PY_MONITORING_EVENT_C_RAISE] = "C_RAISE",
1138
    [PY_MONITORING_EVENT_PY_UNWIND] = "PY_UNWIND",
1139
    [PY_MONITORING_EVENT_STOP_ITERATION] = "STOP_ITERATION",
1140
};
1141
1142
static int
1143
call_instrumentation_vector(
1144
    _Py_CODEUNIT *instr, PyThreadState *tstate, int event,
1145
    _PyInterpreterFrame *frame, _Py_CODEUNIT *arg2, Py_ssize_t nargs, PyObject *args[])
1146
0
{
1147
0
    if (tstate->tracing) {
1148
0
        return 0;
1149
0
    }
1150
0
    assert(!_PyErr_Occurred(tstate));
1151
0
    assert(args[0] == NULL);
1152
0
    PyCodeObject *code = _PyFrame_GetCode(frame);
1153
0
    assert(args[1] == NULL);
1154
0
    args[1] = (PyObject *)code;
1155
0
    int offset = (int)(instr - _PyFrame_GetBytecode(frame));
1156
    /* Offset visible to user should be the offset in bytes, as that is the
1157
     * convention for APIs involving code offsets. */
1158
0
    int bytes_arg2 = (int)(arg2 - _PyFrame_GetBytecode(frame)) * (int)sizeof(_Py_CODEUNIT);
1159
0
    PyObject *arg2_obj = PyLong_FromLong(bytes_arg2);
1160
0
    if (arg2_obj == NULL) {
1161
0
        return -1;
1162
0
    }
1163
0
    assert(args[2] == NULL);
1164
0
    args[2] = arg2_obj;
1165
0
    PyInterpreterState *interp = tstate->interp;
1166
0
    uint8_t tools = get_tools_for_instruction(code, interp, offset, event);
1167
0
    size_t nargsf = (size_t) nargs | PY_VECTORCALL_ARGUMENTS_OFFSET;
1168
0
    PyObject **callargs = &args[1];
1169
0
    int err = 0;
1170
0
    while (tools) {
1171
0
        int tool = most_significant_bit(tools);
1172
0
        assert(tool >= 0 && tool < 8);
1173
0
        assert(tools & (1 << tool));
1174
0
        tools ^= (1 << tool);
1175
0
        int res = call_one_instrument(interp, tstate, callargs, nargsf, tool, event);
1176
0
        if (res == 0) {
1177
            /* Nothing to do */
1178
0
        }
1179
0
        else if (res < 0) {
1180
            /* error */
1181
0
            err = -1;
1182
0
            break;
1183
0
        }
1184
0
        else {
1185
            /* DISABLE */
1186
0
            if (!PY_MONITORING_IS_INSTRUMENTED_EVENT(event)) {
1187
0
                PyErr_Format(PyExc_ValueError,
1188
0
                              "Cannot disable %s events. Callback removed.",
1189
0
                             event_names[event]);
1190
                /* Clear tool to prevent infinite loop */
1191
0
                Py_CLEAR(interp->monitoring_callables[tool][event]);
1192
0
                err = -1;
1193
0
                break;
1194
0
            }
1195
0
            else {
1196
0
                PyInterpreterState *interp = tstate->interp;
1197
0
                _PyEval_StopTheWorld(interp);
1198
0
                remove_tools(code, offset, event, 1 << tool);
1199
0
                _PyEval_StartTheWorld(interp);
1200
0
            }
1201
0
        }
1202
0
    }
1203
0
    Py_DECREF(arg2_obj);
1204
0
    return err;
1205
0
}
1206
1207
Py_NO_INLINE int
1208
_Py_call_instrumentation(
1209
    PyThreadState *tstate, int event,
1210
    _PyInterpreterFrame *frame, _Py_CODEUNIT *instr)
1211
0
{
1212
0
    PyObject *args[3] = { NULL, NULL, NULL };
1213
0
    return call_instrumentation_vector(instr, tstate, event, frame, instr, 2, args);
1214
0
}
1215
1216
Py_NO_INLINE int
1217
_Py_call_instrumentation_arg(
1218
    PyThreadState *tstate, int event,
1219
    _PyInterpreterFrame *frame, _Py_CODEUNIT *instr, PyObject *arg)
1220
0
{
1221
0
    PyObject *args[4] = { NULL, NULL, NULL, arg };
1222
0
    return call_instrumentation_vector(instr, tstate, event, frame, instr, 3, args);
1223
0
}
1224
1225
Py_NO_INLINE int
1226
_Py_call_instrumentation_2args(
1227
    PyThreadState *tstate, int event,
1228
    _PyInterpreterFrame *frame, _Py_CODEUNIT *instr, PyObject *arg0, PyObject *arg1)
1229
0
{
1230
0
    PyObject *args[5] = { NULL, NULL, NULL, arg0, arg1 };
1231
0
    return call_instrumentation_vector(instr, tstate, event, frame, instr, 4, args);
1232
0
}
1233
1234
Py_NO_INLINE _Py_CODEUNIT *
1235
_Py_call_instrumentation_jump(
1236
    _Py_CODEUNIT *instr, PyThreadState *tstate, int event,
1237
    _PyInterpreterFrame *frame, _Py_CODEUNIT *src, _Py_CODEUNIT *dest)
1238
0
{
1239
0
    assert(event == PY_MONITORING_EVENT_JUMP ||
1240
0
           event == PY_MONITORING_EVENT_BRANCH_RIGHT ||
1241
0
           event == PY_MONITORING_EVENT_BRANCH_LEFT);
1242
0
    int to = (int)(dest - _PyFrame_GetBytecode(frame));
1243
0
    PyObject *to_obj = PyLong_FromLong(to * (int)sizeof(_Py_CODEUNIT));
1244
0
    if (to_obj == NULL) {
1245
0
        return NULL;
1246
0
    }
1247
0
    PyObject *args[4] = { NULL, NULL, NULL, to_obj };
1248
0
    _Py_CODEUNIT *instr_ptr = frame->instr_ptr;
1249
0
    int err = call_instrumentation_vector(instr, tstate, event, frame, src, 3, args);
1250
0
    Py_DECREF(to_obj);
1251
0
    if (err) {
1252
0
        return NULL;
1253
0
    }
1254
0
    if (frame->instr_ptr != instr_ptr) {
1255
        /* The callback has caused a jump (by setting the line number) */
1256
0
        return frame->instr_ptr;
1257
0
    }
1258
0
    return dest;
1259
0
}
1260
1261
static void
1262
call_instrumentation_vector_protected(
1263
    PyThreadState *tstate, int event,
1264
    _PyInterpreterFrame *frame, _Py_CODEUNIT *instr, Py_ssize_t nargs, PyObject *args[])
1265
0
{
1266
0
    assert(_PyErr_Occurred(tstate));
1267
0
    PyObject *exc = _PyErr_GetRaisedException(tstate);
1268
0
    int err = call_instrumentation_vector(instr, tstate, event, frame, instr, nargs, args);
1269
0
    if (err) {
1270
0
        Py_XDECREF(exc);
1271
0
    }
1272
0
    else {
1273
0
        _PyErr_SetRaisedException(tstate, exc);
1274
0
    }
1275
0
    assert(_PyErr_Occurred(tstate));
1276
0
}
1277
1278
Py_NO_INLINE void
1279
_Py_call_instrumentation_exc2(
1280
    PyThreadState *tstate, int event,
1281
    _PyInterpreterFrame *frame, _Py_CODEUNIT *instr, PyObject *arg0, PyObject *arg1)
1282
0
{
1283
0
    assert(_PyErr_Occurred(tstate));
1284
0
    PyObject *args[5] = { NULL, NULL, NULL, arg0, arg1 };
1285
0
    call_instrumentation_vector_protected(tstate, event, frame, instr, 4, args);
1286
0
}
1287
1288
int
1289
_Py_Instrumentation_GetLine(PyCodeObject *code, _PyCoLineInstrumentationData *line_data, int index)
1290
0
{
1291
0
    assert(line_data != NULL);
1292
0
    assert(index < Py_SIZE(code));
1293
0
    int line_delta = get_line_delta(line_data, index);
1294
0
    int line = compute_line(code, line_delta);
1295
0
    return line;
1296
0
}
1297
1298
Py_NO_INLINE int
1299
_Py_call_instrumentation_line(PyThreadState *tstate, _PyInterpreterFrame* frame, _Py_CODEUNIT *instr, _Py_CODEUNIT *prev)
1300
0
{
1301
0
    PyCodeObject *code = _PyFrame_GetCode(frame);
1302
0
    assert(tstate->tracing == 0);
1303
0
    assert(debug_check_sanity(tstate->interp, code));
1304
0
    _Py_CODEUNIT *bytecode = _PyFrame_GetBytecode(frame);
1305
0
    int i = (int)(instr - bytecode);
1306
1307
0
    _PyCoMonitoringData *monitoring = code->_co_monitoring;
1308
0
    _PyCoLineInstrumentationData *line_data = monitoring->lines;
1309
0
    PyInterpreterState *interp = tstate->interp;
1310
0
    int line = _Py_Instrumentation_GetLine(code, line_data, i);
1311
0
    assert(line >= 0);
1312
0
    assert(prev != NULL);
1313
0
    int prev_index = (int)(prev - bytecode);
1314
0
    int prev_line = _Py_Instrumentation_GetLine(code, line_data, prev_index);
1315
0
    if (prev_line == line) {
1316
0
        int prev_opcode = bytecode[prev_index].op.code;
1317
        /* RESUME and INSTRUMENTED_RESUME are needed for the operation of
1318
            * instrumentation, so must never be hidden by an INSTRUMENTED_LINE.
1319
            */
1320
0
        if (prev_opcode != RESUME && prev_opcode != INSTRUMENTED_RESUME) {
1321
0
            goto done;
1322
0
        }
1323
0
    }
1324
1325
0
    uint8_t tools = code->_co_monitoring->line_tools != NULL ?
1326
0
        code->_co_monitoring->line_tools[i] :
1327
0
        (interp->monitors.tools[PY_MONITORING_EVENT_LINE] |
1328
0
         code->_co_monitoring->local_monitors.tools[PY_MONITORING_EVENT_LINE]
1329
0
        );
1330
    /* Special case sys.settrace to avoid boxing the line number,
1331
     * only to immediately unbox it. */
1332
0
    if (tools & (1 << PY_MONITORING_SYS_TRACE_ID)) {
1333
0
        if (tstate->c_tracefunc != NULL) {
1334
0
            PyFrameObject *frame_obj = _PyFrame_GetFrameObject(frame);
1335
0
            if (frame_obj == NULL) {
1336
0
                return -1;
1337
0
            }
1338
0
            if (frame_obj->f_trace_lines) {
1339
                /* Need to set tracing and what_event as if using
1340
                 * the instrumentation call. */
1341
0
                int old_what = tstate->what_event;
1342
0
                tstate->what_event = PY_MONITORING_EVENT_LINE;
1343
0
                tstate->tracing++;
1344
                /* Call c_tracefunc directly, having set the line number. */
1345
0
                Py_INCREF(frame_obj);
1346
0
                frame_obj->f_lineno = line;
1347
0
                int err = tstate->c_tracefunc(tstate->c_traceobj, frame_obj, PyTrace_LINE, Py_None);
1348
0
                frame_obj->f_lineno = 0;
1349
0
                tstate->tracing--;
1350
0
                tstate->what_event = old_what;
1351
0
                Py_DECREF(frame_obj);
1352
0
                if (err) {
1353
0
                    return -1;
1354
0
                }
1355
0
            }
1356
0
        }
1357
0
        tools &= (255 - (1 << PY_MONITORING_SYS_TRACE_ID));
1358
0
    }
1359
0
    if (tools == 0) {
1360
0
        goto done;
1361
0
    }
1362
0
    PyObject *line_obj = PyLong_FromLong(line);
1363
0
    if (line_obj == NULL) {
1364
0
        return -1;
1365
0
    }
1366
0
    PyObject *args[3] = { NULL, (PyObject *)code, line_obj };
1367
0
    do {
1368
0
        int tool = most_significant_bit(tools);
1369
0
        assert(tool >= 0 && tool < PY_MONITORING_SYS_PROFILE_ID);
1370
0
        assert(tools & (1 << tool));
1371
0
        tools &= ~(1 << tool);
1372
0
        int res = call_one_instrument(interp, tstate, &args[1],
1373
0
                                      2 | PY_VECTORCALL_ARGUMENTS_OFFSET,
1374
0
                                      tool, PY_MONITORING_EVENT_LINE);
1375
0
        if (res == 0) {
1376
            /* Nothing to do */
1377
0
        }
1378
0
        else if (res < 0) {
1379
            /* error */
1380
0
            Py_DECREF(line_obj);
1381
0
            return -1;
1382
0
        }
1383
0
        else {
1384
            /* DISABLE  */
1385
0
            PyInterpreterState *interp = tstate->interp;
1386
0
            _PyEval_StopTheWorld(interp);
1387
0
            remove_line_tools(code, i, 1 << tool);
1388
0
            _PyEval_StartTheWorld(interp);
1389
0
        }
1390
0
    } while (tools);
1391
0
    Py_DECREF(line_obj);
1392
0
    uint8_t original_opcode;
1393
0
done:
1394
0
    original_opcode = get_original_opcode(line_data, i);
1395
0
    assert(original_opcode != 0);
1396
0
    assert(original_opcode != INSTRUMENTED_LINE);
1397
0
    assert(_PyOpcode_Deopt[original_opcode] == original_opcode);
1398
0
    return original_opcode;
1399
0
}
1400
1401
Py_NO_INLINE int
1402
_Py_call_instrumentation_instruction(PyThreadState *tstate, _PyInterpreterFrame* frame, _Py_CODEUNIT *instr)
1403
0
{
1404
0
    PyCodeObject *code = _PyFrame_GetCode(frame);
1405
0
    int offset = (int)(instr - _PyFrame_GetBytecode(frame));
1406
0
    _PyCoMonitoringData *instrumentation_data = code->_co_monitoring;
1407
0
    assert(instrumentation_data->per_instruction_opcodes);
1408
0
    int next_opcode = instrumentation_data->per_instruction_opcodes[offset];
1409
0
    if (tstate->tracing) {
1410
0
        return next_opcode;
1411
0
    }
1412
0
    assert(debug_check_sanity(tstate->interp, code));
1413
0
    PyInterpreterState *interp = tstate->interp;
1414
0
    uint8_t tools = instrumentation_data->per_instruction_tools != NULL ?
1415
0
        instrumentation_data->per_instruction_tools[offset] :
1416
0
        (interp->monitors.tools[PY_MONITORING_EVENT_INSTRUCTION] |
1417
0
         code->_co_monitoring->local_monitors.tools[PY_MONITORING_EVENT_INSTRUCTION]
1418
0
        );
1419
0
    int bytes_offset = offset * (int)sizeof(_Py_CODEUNIT);
1420
0
    PyObject *offset_obj = PyLong_FromLong(bytes_offset);
1421
0
    if (offset_obj == NULL) {
1422
0
        return -1;
1423
0
    }
1424
0
    PyObject *args[3] = { NULL, (PyObject *)code, offset_obj };
1425
0
    while (tools) {
1426
0
        int tool = most_significant_bit(tools);
1427
0
        assert(tool >= 0 && tool < 8);
1428
0
        assert(tools & (1 << tool));
1429
0
        tools &= ~(1 << tool);
1430
0
        int res = call_one_instrument(interp, tstate, &args[1],
1431
0
                                      2 | PY_VECTORCALL_ARGUMENTS_OFFSET,
1432
0
                                      tool, PY_MONITORING_EVENT_INSTRUCTION);
1433
0
        if (res == 0) {
1434
            /* Nothing to do */
1435
0
        }
1436
0
        else if (res < 0) {
1437
            /* error */
1438
0
            Py_DECREF(offset_obj);
1439
0
            return -1;
1440
0
        }
1441
0
        else {
1442
            /* DISABLE  */
1443
0
            PyInterpreterState *interp = tstate->interp;
1444
0
            _PyEval_StopTheWorld(interp);
1445
0
            remove_per_instruction_tools(code, offset, 1 << tool);
1446
0
            _PyEval_StartTheWorld(interp);
1447
0
        }
1448
0
    }
1449
0
    Py_DECREF(offset_obj);
1450
0
    assert(next_opcode != 0);
1451
0
    return next_opcode;
1452
0
}
1453
1454
static void
1455
initialize_tools(PyCodeObject *code)
1456
0
{
1457
0
    ASSERT_WORLD_STOPPED_OR_LOCKED(code);
1458
0
    uint8_t* tools = code->_co_monitoring->tools;
1459
1460
0
    assert(tools != NULL);
1461
0
    int code_len = (int)Py_SIZE(code);
1462
0
    for (int i = 0; i < code_len; i++) {
1463
0
        _Py_CODEUNIT *instr = &_PyCode_CODE(code)[i];
1464
0
        int opcode = instr->op.code;
1465
0
        assert(opcode != ENTER_EXECUTOR);
1466
0
        if (opcode == INSTRUMENTED_LINE) {
1467
0
            opcode = get_original_opcode(code->_co_monitoring->lines, i);
1468
0
        }
1469
0
        if (opcode == INSTRUMENTED_INSTRUCTION) {
1470
0
            opcode = code->_co_monitoring->per_instruction_opcodes[i];
1471
0
        }
1472
0
        bool instrumented = is_instrumented(opcode);
1473
0
        if (instrumented) {
1474
0
            opcode = DE_INSTRUMENT[opcode];
1475
0
            assert(opcode != 0);
1476
0
        }
1477
0
        opcode = _PyOpcode_Deopt[opcode];
1478
0
        if (opcode_has_event(opcode)) {
1479
0
            if (instrumented) {
1480
0
                int8_t event;
1481
0
                if (opcode == RESUME) {
1482
0
                    event = instr->op.arg != 0;
1483
0
                }
1484
0
                else {
1485
0
                    event = EVENT_FOR_OPCODE[opcode];
1486
0
                    assert(event > 0);
1487
0
                }
1488
0
                assert(event >= 0);
1489
0
                assert(PY_MONITORING_IS_INSTRUMENTED_EVENT(event));
1490
0
                tools[i] = code->_co_monitoring->active_monitors.tools[event];
1491
0
                CHECK(tools[i] != 0);
1492
0
            }
1493
0
            else {
1494
0
                tools[i] = 0;
1495
0
            }
1496
0
        }
1497
#ifdef Py_DEBUG
1498
        /* Initialize tools for invalid locations to all ones to try to catch errors */
1499
        else {
1500
            tools[i] = 0xff;
1501
        }
1502
        for (int j = 1; j <= _PyOpcode_Caches[opcode]; j++) {
1503
            tools[i+j] = 0xff;
1504
        }
1505
#endif
1506
0
        i += _PyOpcode_Caches[opcode];
1507
0
    }
1508
0
}
1509
1510
static void
1511
initialize_lines(_PyCoLineInstrumentationData *line_data, PyCodeObject *code, int bytes_per_entry)
1512
0
{
1513
0
    ASSERT_WORLD_STOPPED_OR_LOCKED(code);
1514
0
    assert(line_data != NULL);
1515
0
    line_data->bytes_per_entry = bytes_per_entry;
1516
0
    int code_len = (int)Py_SIZE(code);
1517
0
    PyCodeAddressRange range;
1518
0
    _PyCode_InitAddressRange(code, &range);
1519
0
    int current_line = -1;
1520
0
    for (int i = 0; i < code_len; ) {
1521
0
        int opcode = _Py_GetBaseCodeUnit(code, i).op.code;
1522
0
        int line = _PyCode_CheckLineNumber(i*(int)sizeof(_Py_CODEUNIT), &range);
1523
0
        set_line_delta(line_data, i, compute_line_delta(code, line));
1524
0
        int length = _PyInstruction_GetLength(code, i);
1525
0
        if (i < code->_co_firsttraceable) {
1526
0
            set_original_opcode(line_data, i, 0);
1527
0
        }
1528
0
        else {
1529
0
            switch (opcode) {
1530
0
                case END_ASYNC_FOR:
1531
0
                case END_FOR:
1532
0
                case END_SEND:
1533
0
                case RESUME:
1534
0
                case POP_ITER:
1535
                    /* END_FOR cannot start a line, as it is skipped by FOR_ITER
1536
                    * END_SEND cannot start a line, as it is skipped by SEND
1537
                    * RESUME and POP_ITER must not be instrumented with INSTRUMENTED_LINE */
1538
0
                    set_original_opcode(line_data, i, 0);
1539
0
                    break;
1540
0
                default:
1541
                    /* Set original_opcode to the opcode iff the instruction
1542
                    * starts a line, and thus should be instrumented.
1543
                    * This saves having to perform this check every time the
1544
                    * we turn instrumentation on or off, and serves as a sanity
1545
                    * check when debugging.
1546
                    */
1547
0
                    if (line != current_line && line >= 0) {
1548
0
                        set_original_opcode(line_data, i, opcode);
1549
0
                        CHECK(get_line_delta(line_data, i) != NO_LINE);
1550
0
                    }
1551
0
                    else {
1552
0
                        set_original_opcode(line_data, i, 0);
1553
0
                    }
1554
0
                    current_line = line;
1555
0
            }
1556
0
        }
1557
0
        for (int j = 1; j < length; j++) {
1558
0
            set_original_opcode(line_data, i+j, 0);
1559
0
            set_line_delta(line_data, i+j, NO_LINE);
1560
0
        }
1561
0
        i += length;
1562
0
    }
1563
0
    for (int i = code->_co_firsttraceable; i < code_len; ) {
1564
0
        _Py_CODEUNIT inst =_Py_GetBaseCodeUnit(code, i);
1565
0
        int opcode = inst.op.code;
1566
0
        int oparg = 0;
1567
0
        while (opcode == EXTENDED_ARG) {
1568
0
            oparg = (oparg << 8) | inst.op.arg;
1569
0
            i++;
1570
0
            inst =_Py_GetBaseCodeUnit(code, i);
1571
0
            opcode = inst.op.code;
1572
0
        }
1573
0
        oparg = (oparg << 8) | inst.op.arg;
1574
0
        i += _PyInstruction_GetLength(code, i);
1575
0
        int target = -1;
1576
0
        switch (opcode) {
1577
0
            case POP_JUMP_IF_FALSE:
1578
0
            case POP_JUMP_IF_TRUE:
1579
0
            case POP_JUMP_IF_NONE:
1580
0
            case POP_JUMP_IF_NOT_NONE:
1581
0
            case JUMP_FORWARD:
1582
0
            {
1583
0
                target = i + oparg;
1584
0
                break;
1585
0
            }
1586
0
            case FOR_ITER:
1587
0
            case SEND:
1588
0
            {
1589
                /* Skip over END_FOR/END_SEND */
1590
0
                target = i + oparg + 1;
1591
0
                break;
1592
0
            }
1593
0
            case JUMP_BACKWARD:
1594
0
            case JUMP_BACKWARD_NO_INTERRUPT:
1595
0
            {
1596
0
                target = i - oparg;
1597
0
                break;
1598
0
            }
1599
0
            default:
1600
0
                continue;
1601
0
        }
1602
0
        assert(target >= 0);
1603
0
        if (get_line_delta(line_data, target) != NO_LINE) {
1604
0
            int opcode = _Py_GetBaseCodeUnit(code, target).op.code;
1605
0
            if (opcode != POP_ITER) {
1606
0
                set_original_opcode(line_data, target, opcode);
1607
0
            }
1608
0
        }
1609
0
    }
1610
    /* Scan exception table */
1611
0
    unsigned char *start = (unsigned char *)PyBytes_AS_STRING(code->co_exceptiontable);
1612
0
    unsigned char *end = start + PyBytes_GET_SIZE(code->co_exceptiontable);
1613
0
    unsigned char *scan = start;
1614
0
    while (scan < end) {
1615
0
        int start_offset, size, handler;
1616
0
        scan = parse_varint(scan, &start_offset);
1617
0
        assert(start_offset >= 0 && start_offset < code_len);
1618
0
        scan = parse_varint(scan, &size);
1619
0
        assert(size >= 0 && start_offset+size <= code_len);
1620
0
        scan = parse_varint(scan, &handler);
1621
0
        assert(handler >= 0 && handler < code_len);
1622
0
        int depth_and_lasti;
1623
0
        scan = parse_varint(scan, &depth_and_lasti);
1624
0
        int original_opcode = _Py_GetBaseCodeUnit(code, handler).op.code;
1625
        /* Skip if not the start of a line.
1626
         * END_ASYNC_FOR is a bit special as it marks the end of
1627
         * an `async for` loop, which should not generate its own
1628
         * line event. */
1629
0
        if (get_line_delta(line_data, handler) != NO_LINE && original_opcode != END_ASYNC_FOR) {
1630
0
            set_original_opcode(line_data, handler, original_opcode);
1631
0
        }
1632
0
    }
1633
0
}
1634
1635
static void
1636
initialize_line_tools(PyCodeObject *code, _Py_LocalMonitors *all_events)
1637
0
{
1638
0
    ASSERT_WORLD_STOPPED_OR_LOCKED(code);
1639
0
    uint8_t *line_tools = code->_co_monitoring->line_tools;
1640
1641
0
    assert(line_tools != NULL);
1642
0
    int code_len = (int)Py_SIZE(code);
1643
0
    for (int i = 0; i < code_len; i++) {
1644
0
        line_tools[i] = all_events->tools[PY_MONITORING_EVENT_LINE];
1645
0
    }
1646
0
}
1647
1648
static int
1649
allocate_instrumentation_data(PyCodeObject *code)
1650
0
{
1651
0
    ASSERT_WORLD_STOPPED_OR_LOCKED(code);
1652
1653
0
    if (code->_co_monitoring == NULL) {
1654
0
        _PyCoMonitoringData *monitoring = PyMem_Malloc(sizeof(_PyCoMonitoringData));
1655
0
        if (monitoring == NULL) {
1656
0
            PyErr_NoMemory();
1657
0
            return -1;
1658
0
        }
1659
0
        monitoring->local_monitors = (_Py_LocalMonitors){ 0 };
1660
0
        monitoring->active_monitors = (_Py_LocalMonitors){ 0 };
1661
0
        monitoring->tools = NULL;
1662
0
        monitoring->lines = NULL;
1663
0
        monitoring->line_tools = NULL;
1664
0
        monitoring->per_instruction_opcodes = NULL;
1665
0
        monitoring->per_instruction_tools = NULL;
1666
0
        _Py_atomic_store_ptr_release(&code->_co_monitoring, monitoring);
1667
0
    }
1668
0
    return 0;
1669
0
}
1670
1671
static int
1672
update_instrumentation_data(PyCodeObject *code, PyInterpreterState *interp)
1673
0
{
1674
0
    ASSERT_WORLD_STOPPED_OR_LOCKED(code);
1675
1676
0
    int code_len = (int)Py_SIZE(code);
1677
0
    if (allocate_instrumentation_data(code)) {
1678
0
        return -1;
1679
0
    }
1680
    // If the local monitors are out of date, clear them up
1681
0
    _Py_LocalMonitors *local_monitors = &code->_co_monitoring->local_monitors;
1682
0
    for (int i = 0; i < PY_MONITORING_TOOL_IDS; i++) {
1683
0
        if (code->_co_monitoring->tool_versions[i] != interp->monitoring_tool_versions[i]) {
1684
0
            for (int j = 0; j < _PY_MONITORING_LOCAL_EVENTS; j++) {
1685
0
                local_monitors->tools[j] &= ~(1 << i);
1686
0
            }
1687
0
        }
1688
0
    }
1689
1690
0
    _Py_LocalMonitors all_events = local_union(
1691
0
        interp->monitors,
1692
0
        code->_co_monitoring->local_monitors);
1693
0
    bool multitools = multiple_tools(&all_events);
1694
0
    if (code->_co_monitoring->tools == NULL && multitools) {
1695
0
        code->_co_monitoring->tools = PyMem_Malloc(code_len);
1696
0
        if (code->_co_monitoring->tools == NULL) {
1697
0
            PyErr_NoMemory();
1698
0
            return -1;
1699
0
        }
1700
0
        initialize_tools(code);
1701
0
    }
1702
0
    if (all_events.tools[PY_MONITORING_EVENT_LINE]) {
1703
0
        if (code->_co_monitoring->lines == NULL) {
1704
0
            PyCodeAddressRange range;
1705
0
            _PyCode_InitAddressRange(code, &range);
1706
0
            int max_line = code->co_firstlineno + 1;
1707
0
            _PyCode_InitAddressRange(code, &range);
1708
0
            for (int i = code->_co_firsttraceable; i < code_len; ) {
1709
0
                int line = _PyCode_CheckLineNumber(i*(int)sizeof(_Py_CODEUNIT), &range);
1710
0
                if (line > max_line) {
1711
0
                    max_line = line;
1712
0
                }
1713
0
                int length = _PyInstruction_GetLength(code, i);
1714
0
                i += length;
1715
0
            }
1716
0
            int bytes_per_entry;
1717
0
            int max_delta = max_line - code->co_firstlineno;
1718
            /* We store delta+2 in the table, so 253 is max for one byte */
1719
0
            if (max_delta < 256+NO_LINE) {
1720
0
                bytes_per_entry = 2;
1721
0
            }
1722
0
            else if (max_delta < (1 << 16)+NO_LINE) {
1723
0
                bytes_per_entry = 3;
1724
0
            }
1725
0
            else if (max_delta < (1 << 24)+NO_LINE) {
1726
0
                bytes_per_entry = 4;
1727
0
            }
1728
0
            else {
1729
0
                bytes_per_entry = 5;
1730
0
            }
1731
0
            _PyCoLineInstrumentationData *lines = PyMem_Malloc(1 + code_len * bytes_per_entry);
1732
0
            if (lines == NULL) {
1733
0
                PyErr_NoMemory();
1734
0
                return -1;
1735
0
            }
1736
0
            initialize_lines(lines, code, bytes_per_entry);
1737
0
            _Py_atomic_store_ptr_release(&code->_co_monitoring->lines, lines);
1738
0
        }
1739
0
        if (multitools && code->_co_monitoring->line_tools == NULL) {
1740
0
            code->_co_monitoring->line_tools = PyMem_Malloc(code_len);
1741
0
            if (code->_co_monitoring->line_tools == NULL) {
1742
0
                PyErr_NoMemory();
1743
0
                return -1;
1744
0
            }
1745
0
            initialize_line_tools(code, &all_events);
1746
0
        }
1747
0
    }
1748
0
    if (all_events.tools[PY_MONITORING_EVENT_INSTRUCTION]) {
1749
0
        if (code->_co_monitoring->per_instruction_opcodes == NULL) {
1750
0
            code->_co_monitoring->per_instruction_opcodes = PyMem_Malloc(code_len * sizeof(_PyCoLineInstrumentationData));
1751
0
            if (code->_co_monitoring->per_instruction_opcodes == NULL) {
1752
0
                PyErr_NoMemory();
1753
0
                return -1;
1754
0
            }
1755
            // Initialize all of the instructions so if local events change while another thread is executing
1756
            // we know what the original opcode was.
1757
0
            for (int i = 0; i < code_len; i++) {
1758
0
                int opcode = _PyCode_CODE(code)[i].op.code;
1759
0
                code->_co_monitoring->per_instruction_opcodes[i] = _PyOpcode_Deopt[opcode];
1760
0
            }
1761
0
        }
1762
0
        if (multitools && code->_co_monitoring->per_instruction_tools == NULL) {
1763
0
            code->_co_monitoring->per_instruction_tools = PyMem_Malloc(code_len);
1764
0
            if (code->_co_monitoring->per_instruction_tools == NULL) {
1765
0
                PyErr_NoMemory();
1766
0
                return -1;
1767
0
            }
1768
0
            for (int i = 0; i < code_len; i++) {
1769
0
                code->_co_monitoring->per_instruction_tools[i] = 0;
1770
0
            }
1771
0
        }
1772
0
    }
1773
0
    return 0;
1774
0
}
1775
1776
static int
1777
force_instrument_lock_held(PyCodeObject *code, PyInterpreterState *interp)
1778
0
{
1779
0
    ASSERT_WORLD_STOPPED_OR_LOCKED(code);
1780
1781
#ifdef _Py_TIER2
1782
    if (code->co_executors != NULL) {
1783
        _PyCode_Clear_Executors(code);
1784
    }
1785
    _Py_Executors_InvalidateDependency(interp, code, 1);
1786
#endif
1787
0
    int code_len = (int)Py_SIZE(code);
1788
    /* Exit early to avoid creating instrumentation
1789
     * data for potential statically allocated code
1790
     * objects.
1791
     * See https://github.com/python/cpython/issues/108390 */
1792
0
    if (code->co_flags & CO_NO_MONITORING_EVENTS) {
1793
0
        return 0;
1794
0
    }
1795
0
    if (update_instrumentation_data(code, interp)) {
1796
0
        return -1;
1797
0
    }
1798
0
    _Py_LocalMonitors active_events = local_union(
1799
0
        interp->monitors,
1800
0
        code->_co_monitoring->local_monitors);
1801
0
    _Py_LocalMonitors new_events;
1802
0
    _Py_LocalMonitors removed_events;
1803
1804
0
    bool restarted = interp->last_restart_version > code->_co_instrumentation_version;
1805
0
    if (restarted) {
1806
0
        removed_events = code->_co_monitoring->active_monitors;
1807
0
        new_events = active_events;
1808
0
    }
1809
0
    else {
1810
0
        removed_events = monitors_sub(code->_co_monitoring->active_monitors, active_events);
1811
0
        new_events = monitors_sub(active_events, code->_co_monitoring->active_monitors);
1812
0
        assert(monitors_are_empty(monitors_and(new_events, removed_events)));
1813
0
    }
1814
0
    code->_co_monitoring->active_monitors = active_events;
1815
0
    if (monitors_are_empty(new_events) && monitors_are_empty(removed_events)) {
1816
0
        goto done;
1817
0
    }
1818
    /* Insert instrumentation */
1819
0
    for (int i = code->_co_firsttraceable; i < code_len; i+= _PyInstruction_GetLength(code, i)) {
1820
0
        assert(_PyCode_CODE(code)[i].op.code != ENTER_EXECUTOR);
1821
0
        _Py_CODEUNIT instr = _Py_GetBaseCodeUnit(code, i);
1822
0
        CHECK(instr.op.code != 0);
1823
0
        int base_opcode = instr.op.code;
1824
0
        if (opcode_has_event(base_opcode)) {
1825
0
            int8_t event;
1826
0
            if (base_opcode == RESUME) {
1827
0
                event = instr.op.arg > 0;
1828
0
            }
1829
0
            else {
1830
0
                event = EVENT_FOR_OPCODE[base_opcode];
1831
0
                assert(event > 0);
1832
0
            }
1833
0
            uint8_t removed_tools = removed_events.tools[event];
1834
0
            if (removed_tools) {
1835
0
                remove_tools(code, i, event, removed_tools);
1836
0
            }
1837
0
            uint8_t new_tools = new_events.tools[event];
1838
0
            if (new_tools) {
1839
0
                add_tools(code, i, event, new_tools);
1840
0
            }
1841
0
        }
1842
0
    }
1843
1844
    // GH-103845: We need to remove both the line and instruction instrumentation before
1845
    // adding new ones, otherwise we may remove the newly added instrumentation.
1846
0
    uint8_t removed_line_tools = removed_events.tools[PY_MONITORING_EVENT_LINE];
1847
0
    uint8_t removed_per_instruction_tools = removed_events.tools[PY_MONITORING_EVENT_INSTRUCTION];
1848
1849
0
    if (removed_line_tools) {
1850
0
        _PyCoLineInstrumentationData *line_data = code->_co_monitoring->lines;
1851
0
        for (int i = code->_co_firsttraceable; i < code_len;) {
1852
0
            if (get_original_opcode(line_data, i)) {
1853
0
                remove_line_tools(code, i, removed_line_tools);
1854
0
            }
1855
0
            i += _PyInstruction_GetLength(code, i);
1856
0
        }
1857
0
    }
1858
0
    if (removed_per_instruction_tools) {
1859
0
        for (int i = code->_co_firsttraceable; i < code_len;) {
1860
0
            int opcode = _Py_GetBaseCodeUnit(code, i).op.code;
1861
0
            if (opcode == RESUME || opcode == END_FOR) {
1862
0
                i += _PyInstruction_GetLength(code, i);
1863
0
                continue;
1864
0
            }
1865
0
            remove_per_instruction_tools(code, i, removed_per_instruction_tools);
1866
0
            i += _PyInstruction_GetLength(code, i);
1867
0
        }
1868
0
    }
1869
#ifdef INSTRUMENT_DEBUG
1870
    sanity_check_instrumentation(code);
1871
#endif
1872
1873
0
    uint8_t new_line_tools = new_events.tools[PY_MONITORING_EVENT_LINE];
1874
0
    uint8_t new_per_instruction_tools = new_events.tools[PY_MONITORING_EVENT_INSTRUCTION];
1875
1876
0
    if (new_line_tools) {
1877
0
        _PyCoLineInstrumentationData *line_data = code->_co_monitoring->lines;
1878
0
        for (int i = code->_co_firsttraceable; i < code_len;) {
1879
0
            if (get_original_opcode(line_data, i)) {
1880
0
                add_line_tools(code, i, new_line_tools);
1881
0
            }
1882
0
            i += _PyInstruction_GetLength(code, i);
1883
0
        }
1884
0
    }
1885
0
    if (new_per_instruction_tools) {
1886
0
        for (int i = code->_co_firsttraceable; i < code_len;) {
1887
0
            int opcode = _Py_GetBaseCodeUnit(code, i).op.code;
1888
0
            if (opcode == RESUME || opcode == END_FOR) {
1889
0
                i += _PyInstruction_GetLength(code, i);
1890
0
                continue;
1891
0
            }
1892
0
            add_per_instruction_tools(code, i, new_per_instruction_tools);
1893
0
            i += _PyInstruction_GetLength(code, i);
1894
0
        }
1895
0
    }
1896
1897
0
done:
1898
0
    FT_ATOMIC_STORE_UINTPTR_RELEASE(code->_co_instrumentation_version,
1899
0
                                    global_version(interp));
1900
1901
#ifdef INSTRUMENT_DEBUG
1902
    sanity_check_instrumentation(code);
1903
#endif
1904
0
    return 0;
1905
0
}
1906
1907
static int
1908
instrument_lock_held(PyCodeObject *code, PyInterpreterState *interp)
1909
45.5k
{
1910
45.5k
    ASSERT_WORLD_STOPPED_OR_LOCKED(code);
1911
1912
45.5k
    if (is_version_up_to_date(code, interp)) {
1913
45.5k
        assert(
1914
45.5k
            interp->ceval.instrumentation_version == 0 ||
1915
45.5k
            instrumentation_cross_checks(interp, code)
1916
45.5k
        );
1917
45.5k
        return 0;
1918
45.5k
    }
1919
1920
0
    return force_instrument_lock_held(code, interp);
1921
45.5k
}
1922
1923
int
1924
_Py_Instrument(PyCodeObject *code, PyInterpreterState *interp)
1925
45.5k
{
1926
45.5k
    int res;
1927
45.5k
    LOCK_CODE(code);
1928
45.5k
    res = instrument_lock_held(code, interp);
1929
45.5k
    UNLOCK_CODE();
1930
45.5k
    return res;
1931
45.5k
}
1932
1933
#define C_RETURN_EVENTS \
1934
0
    ((1 << PY_MONITORING_EVENT_C_RETURN) | \
1935
0
     (1 << PY_MONITORING_EVENT_C_RAISE))
1936
1937
#define C_CALL_EVENTS \
1938
0
    (C_RETURN_EVENTS | (1 << PY_MONITORING_EVENT_CALL))
1939
1940
1941
static int
1942
instrument_all_executing_code_objects(PyInterpreterState *interp)
1943
0
{
1944
0
    ASSERT_WORLD_STOPPED();
1945
1946
0
    int err = 0;
1947
0
    _Py_FOR_EACH_TSTATE_BEGIN(interp, ts) {
1948
0
        _PyInterpreterFrame *frame = ts->current_frame;
1949
0
        while (frame) {
1950
0
            if (frame->owner < FRAME_OWNED_BY_INTERPRETER) {
1951
0
                err = instrument_lock_held(_PyFrame_GetCode(frame), interp);
1952
0
                if (err) {
1953
0
                    goto done;
1954
0
                }
1955
0
            }
1956
0
            frame = frame->previous;
1957
0
        }
1958
0
    }
1959
0
done:
1960
0
    _Py_FOR_EACH_TSTATE_END(interp);
1961
0
    return err;
1962
0
}
1963
1964
static void
1965
set_events(_Py_GlobalMonitors *m, int tool_id, _PyMonitoringEventSet events)
1966
0
{
1967
0
    assert(0 <= tool_id && tool_id < PY_MONITORING_TOOL_IDS);
1968
0
    for (int e = 0; e < _PY_MONITORING_UNGROUPED_EVENTS; e++) {
1969
0
        uint8_t *tools = &m->tools[e];
1970
0
        int active = (events >> e) & 1;
1971
0
        *tools &= ~(1 << tool_id);
1972
0
        *tools |= (active << tool_id);
1973
0
    }
1974
0
}
1975
1976
static void
1977
set_local_events(_Py_LocalMonitors *m, int tool_id, _PyMonitoringEventSet events)
1978
0
{
1979
0
    assert(0 <= tool_id && tool_id < PY_MONITORING_TOOL_IDS);
1980
0
    for (int e = 0; e < _PY_MONITORING_LOCAL_EVENTS; e++) {
1981
0
        uint8_t *tools = &m->tools[e];
1982
0
        int val = (events >> e) & 1;
1983
0
        *tools &= ~(1 << tool_id);
1984
0
        *tools |= (val << tool_id);
1985
0
    }
1986
0
}
1987
1988
static int
1989
check_tool(PyInterpreterState *interp, int tool_id)
1990
0
{
1991
0
    if (tool_id < PY_MONITORING_SYS_PROFILE_ID &&
1992
0
        interp->monitoring_tool_names[tool_id] == NULL)
1993
0
    {
1994
0
        PyErr_Format(PyExc_ValueError, "tool %d is not in use", tool_id);
1995
0
        return -1;
1996
0
    }
1997
0
    return 0;
1998
0
}
1999
2000
/* We share the eval-breaker with flags, so the monitoring
2001
 * version goes in the top 24 bits */
2002
0
#define MONITORING_VERSION_INCREMENT (1 << _PY_EVAL_EVENTS_BITS)
2003
2004
int
2005
_PyMonitoring_SetEvents(int tool_id, _PyMonitoringEventSet events)
2006
0
{
2007
0
    ASSERT_WORLD_STOPPED();
2008
0
    assert(0 <= tool_id && tool_id < PY_MONITORING_TOOL_IDS);
2009
0
    PyThreadState *tstate = _PyThreadState_GET();
2010
0
    PyInterpreterState *interp = tstate->interp;
2011
0
    assert(events < (1 << _PY_MONITORING_UNGROUPED_EVENTS));
2012
0
    if (check_tool(interp, tool_id)) {
2013
0
        return -1;
2014
0
    }
2015
2016
0
    uint32_t existing_events = get_events(&interp->monitors, tool_id);
2017
0
    if (existing_events == events) {
2018
0
        return 0;
2019
0
    }
2020
0
    uint32_t new_version = global_version(interp) + MONITORING_VERSION_INCREMENT;
2021
0
    if (new_version == 0) {
2022
0
        PyErr_Format(PyExc_OverflowError, "events set too many times");
2023
0
        return -1;
2024
0
    }
2025
0
    set_events(&interp->monitors, tool_id, events);
2026
0
    set_global_version(tstate, new_version);
2027
#ifdef _Py_TIER2
2028
    _Py_Executors_InvalidateAll(interp, 1);
2029
#endif
2030
0
    return instrument_all_executing_code_objects(interp);
2031
0
}
2032
2033
int
2034
_PyMonitoring_SetLocalEvents(PyCodeObject *code, int tool_id, _PyMonitoringEventSet events)
2035
0
{
2036
0
    ASSERT_WORLD_STOPPED();
2037
2038
0
    assert(0 <= tool_id && tool_id < PY_MONITORING_TOOL_IDS);
2039
0
    PyInterpreterState *interp = _PyInterpreterState_GET();
2040
0
    assert(events < (1 << _PY_MONITORING_LOCAL_EVENTS));
2041
0
    if (code->_co_firsttraceable >= Py_SIZE(code)) {
2042
0
        PyErr_Format(PyExc_SystemError, "cannot instrument shim code object '%U'", code->co_name);
2043
0
        return -1;
2044
0
    }
2045
0
    if (check_tool(interp, tool_id)) {
2046
0
        return -1;
2047
0
    }
2048
2049
0
    if (allocate_instrumentation_data(code)) {
2050
0
        return -1;
2051
0
    }
2052
2053
0
    code->_co_monitoring->tool_versions[tool_id] = interp->monitoring_tool_versions[tool_id];
2054
2055
0
    _Py_LocalMonitors *local = &code->_co_monitoring->local_monitors;
2056
0
    uint32_t existing_events = get_local_events(local, tool_id);
2057
0
    if (existing_events == events) {
2058
0
        return 0;
2059
0
    }
2060
0
    set_local_events(local, tool_id, events);
2061
2062
0
    return force_instrument_lock_held(code, interp);
2063
0
}
2064
2065
int
2066
_PyMonitoring_GetLocalEvents(PyCodeObject *code, int tool_id, _PyMonitoringEventSet *events)
2067
0
{
2068
0
    assert(0 <= tool_id && tool_id < PY_MONITORING_TOOL_IDS);
2069
0
    PyInterpreterState *interp = _PyInterpreterState_GET();
2070
0
    if (check_tool(interp, tool_id)) {
2071
0
        return -1;
2072
0
    }
2073
0
    if (code->_co_monitoring == NULL) {
2074
0
        *events = 0;
2075
0
        return 0;
2076
0
    }
2077
0
    _Py_LocalMonitors *local = &code->_co_monitoring->local_monitors;
2078
0
    *events = get_local_events(local, tool_id);
2079
0
    return 0;
2080
0
}
2081
2082
int _PyMonitoring_ClearToolId(int tool_id)
2083
0
{
2084
0
    assert(0 <= tool_id && tool_id < PY_MONITORING_TOOL_IDS);
2085
0
    PyInterpreterState *interp = _PyInterpreterState_GET();
2086
2087
0
    for (int i = 0; i < _PY_MONITORING_EVENTS; i++) {
2088
0
        PyObject *func = _PyMonitoring_RegisterCallback(tool_id, i, NULL);
2089
0
        if (func != NULL) {
2090
0
            Py_DECREF(func);
2091
0
        }
2092
0
    }
2093
2094
0
    _PyEval_StopTheWorld(interp);
2095
0
    if (_PyMonitoring_SetEvents(tool_id, 0) < 0) {
2096
0
        _PyEval_StartTheWorld(interp);
2097
0
        return -1;
2098
0
    }
2099
2100
0
    uint32_t version = global_version(interp) + MONITORING_VERSION_INCREMENT;
2101
0
    if (version == 0) {
2102
0
        PyErr_Format(PyExc_OverflowError, "events set too many times");
2103
0
        _PyEval_StartTheWorld(interp);
2104
0
        return -1;
2105
0
    }
2106
2107
    // monitoring_tool_versions[tool_id] is set to latest global version here to
2108
    //   1. invalidate local events on all existing code objects
2109
    //   2. be ready for the next call to set local events
2110
0
    interp->monitoring_tool_versions[tool_id] = version;
2111
2112
    // Set the new global version so all the code objects can refresh the
2113
    // instrumentation.
2114
0
    set_global_version(_PyThreadState_GET(), version);
2115
#ifdef _Py_TIER2
2116
    _Py_Executors_InvalidateAll(interp, 1);
2117
#endif
2118
0
    int res = instrument_all_executing_code_objects(interp);
2119
0
    _PyEval_StartTheWorld(interp);
2120
0
    return res;
2121
0
}
2122
2123
/*[clinic input]
2124
module monitoring
2125
[clinic start generated code]*/
2126
/*[clinic end generated code: output=da39a3ee5e6b4b0d input=37257f5987a360cf]*/
2127
/*[clinic end generated code]*/
2128
2129
#include "clinic/instrumentation.c.h"
2130
2131
static int
2132
check_valid_tool(int tool_id)
2133
0
{
2134
0
    if (tool_id < 0 || tool_id >= PY_MONITORING_SYS_PROFILE_ID) {
2135
0
        PyErr_Format(PyExc_ValueError, "invalid tool %d (must be between 0 and 5)", tool_id);
2136
0
        return -1;
2137
0
    }
2138
0
    return 0;
2139
0
}
2140
2141
/*[clinic input]
2142
monitoring.use_tool_id
2143
2144
    tool_id: int
2145
    name: object
2146
    /
2147
2148
[clinic start generated code]*/
2149
2150
static PyObject *
2151
monitoring_use_tool_id_impl(PyObject *module, int tool_id, PyObject *name)
2152
/*[clinic end generated code: output=30d76dc92b7cd653 input=ebc453761c621be1]*/
2153
0
{
2154
0
    if (check_valid_tool(tool_id))  {
2155
0
        return NULL;
2156
0
    }
2157
0
    if (!PyUnicode_Check(name)) {
2158
0
        PyErr_SetString(PyExc_ValueError, "tool name must be a str");
2159
0
        return NULL;
2160
0
    }
2161
0
    PyInterpreterState *interp = _PyInterpreterState_GET();
2162
0
    if (interp->monitoring_tool_names[tool_id] != NULL) {
2163
0
        PyErr_Format(PyExc_ValueError, "tool %d is already in use", tool_id);
2164
0
        return NULL;
2165
0
    }
2166
0
    interp->monitoring_tool_names[tool_id] = Py_NewRef(name);
2167
0
    Py_RETURN_NONE;
2168
0
}
2169
2170
/*[clinic input]
2171
monitoring.clear_tool_id
2172
2173
    tool_id: int
2174
    /
2175
2176
[clinic start generated code]*/
2177
2178
static PyObject *
2179
monitoring_clear_tool_id_impl(PyObject *module, int tool_id)
2180
/*[clinic end generated code: output=04defc23470b1be7 input=af643d6648a66163]*/
2181
0
{
2182
0
    if (check_valid_tool(tool_id))  {
2183
0
        return NULL;
2184
0
    }
2185
2186
0
    PyInterpreterState *interp = _PyInterpreterState_GET();
2187
2188
0
    if (interp->monitoring_tool_names[tool_id] != NULL) {
2189
0
        if (_PyMonitoring_ClearToolId(tool_id) < 0) {
2190
0
            return NULL;
2191
0
        }
2192
0
    }
2193
2194
0
    Py_RETURN_NONE;
2195
0
}
2196
2197
/*[clinic input]
2198
monitoring.free_tool_id
2199
2200
    tool_id: int
2201
    /
2202
2203
[clinic start generated code]*/
2204
2205
static PyObject *
2206
monitoring_free_tool_id_impl(PyObject *module, int tool_id)
2207
/*[clinic end generated code: output=86c2d2a1219a8591 input=a23fb6be3a8618e9]*/
2208
0
{
2209
0
    if (check_valid_tool(tool_id))  {
2210
0
        return NULL;
2211
0
    }
2212
0
    PyInterpreterState *interp = _PyInterpreterState_GET();
2213
2214
0
    if (interp->monitoring_tool_names[tool_id] != NULL) {
2215
0
        if (_PyMonitoring_ClearToolId(tool_id) < 0) {
2216
0
            return NULL;
2217
0
        }
2218
0
    }
2219
2220
0
    Py_CLEAR(interp->monitoring_tool_names[tool_id]);
2221
0
    Py_RETURN_NONE;
2222
0
}
2223
2224
/*[clinic input]
2225
monitoring.get_tool
2226
2227
    tool_id: int
2228
    /
2229
2230
[clinic start generated code]*/
2231
2232
static PyObject *
2233
monitoring_get_tool_impl(PyObject *module, int tool_id)
2234
/*[clinic end generated code: output=1c05a98b404a9a16 input=eeee9bebd0bcae9d]*/
2235
2236
/*[clinic end generated code]*/
2237
0
{
2238
0
    if (check_valid_tool(tool_id))  {
2239
0
        return NULL;
2240
0
    }
2241
0
    PyInterpreterState *interp = _PyInterpreterState_GET();
2242
0
    PyObject *name = interp->monitoring_tool_names[tool_id];
2243
0
    if (name == NULL) {
2244
0
        Py_RETURN_NONE;
2245
0
    }
2246
0
    return Py_NewRef(name);
2247
0
}
2248
2249
/*[clinic input]
2250
monitoring.register_callback
2251
2252
2253
    tool_id: int
2254
    event: int
2255
    func: object
2256
    /
2257
2258
[clinic start generated code]*/
2259
2260
static PyObject *
2261
monitoring_register_callback_impl(PyObject *module, int tool_id, int event,
2262
                                  PyObject *func)
2263
/*[clinic end generated code: output=e64daa363004030c input=df6d70ea4cf81007]*/
2264
0
{
2265
0
    if (check_valid_tool(tool_id))  {
2266
0
        return NULL;
2267
0
    }
2268
0
    if (_Py_popcount32(event) != 1) {
2269
0
        PyErr_SetString(PyExc_ValueError, "The callback can only be set for one event at a time");
2270
0
        return NULL;
2271
0
    }
2272
0
    int event_id = _Py_bit_length(event)-1;
2273
0
    if (event_id < 0 || event_id >= _PY_MONITORING_EVENTS) {
2274
0
        PyErr_Format(PyExc_ValueError, "invalid event %d", event);
2275
0
        return NULL;
2276
0
    }
2277
0
    if (PySys_Audit("sys.monitoring.register_callback", "O", func) < 0) {
2278
0
        return NULL;
2279
0
    }
2280
0
    if (func == Py_None) {
2281
0
        func = NULL;
2282
0
    }
2283
0
    func = _PyMonitoring_RegisterCallback(tool_id, event_id, func);
2284
0
    if (func == NULL) {
2285
0
        Py_RETURN_NONE;
2286
0
    }
2287
0
    return func;
2288
0
}
2289
2290
/*[clinic input]
2291
monitoring.get_events -> int
2292
2293
    tool_id: int
2294
    /
2295
2296
[clinic start generated code]*/
2297
2298
static int
2299
monitoring_get_events_impl(PyObject *module, int tool_id)
2300
/*[clinic end generated code: output=4450cc13f826c8c0 input=a64b238f76c4b2f7]*/
2301
0
{
2302
0
    if (check_valid_tool(tool_id))  {
2303
0
        return -1;
2304
0
    }
2305
0
    _Py_GlobalMonitors *m = &_PyInterpreterState_GET()->monitors;
2306
0
    _PyMonitoringEventSet event_set = get_events(m, tool_id);
2307
0
    return event_set;
2308
0
}
2309
2310
/*[clinic input]
2311
monitoring.set_events
2312
2313
    tool_id: int
2314
    event_set: int
2315
    /
2316
2317
[clinic start generated code]*/
2318
2319
static PyObject *
2320
monitoring_set_events_impl(PyObject *module, int tool_id, int event_set)
2321
/*[clinic end generated code: output=1916c1e49cfb5bdb input=a77ba729a242142b]*/
2322
0
{
2323
0
    if (check_valid_tool(tool_id))  {
2324
0
        return NULL;
2325
0
    }
2326
0
    if (event_set < 0 || event_set >= (1 << _PY_MONITORING_EVENTS)) {
2327
0
        PyErr_Format(PyExc_ValueError, "invalid event set 0x%x", event_set);
2328
0
        return NULL;
2329
0
    }
2330
0
    if ((event_set & C_RETURN_EVENTS) && (event_set & C_CALL_EVENTS) != C_CALL_EVENTS) {
2331
0
        PyErr_Format(PyExc_ValueError, "cannot set C_RETURN or C_RAISE events independently");
2332
0
        return NULL;
2333
0
    }
2334
0
    event_set &= ~C_RETURN_EVENTS;
2335
0
    if (event_set & (1 << PY_MONITORING_EVENT_BRANCH)) {
2336
0
        event_set &= ~(1 << PY_MONITORING_EVENT_BRANCH);
2337
0
        event_set |= (1 << PY_MONITORING_EVENT_BRANCH_RIGHT) | (1 << PY_MONITORING_EVENT_BRANCH_LEFT);
2338
0
    }
2339
0
    PyInterpreterState *interp = _PyInterpreterState_GET();
2340
0
    _PyEval_StopTheWorld(interp);
2341
0
    int err = _PyMonitoring_SetEvents(tool_id, event_set);
2342
0
    _PyEval_StartTheWorld(interp);
2343
0
    if (err) {
2344
0
        return NULL;
2345
0
    }
2346
0
    Py_RETURN_NONE;
2347
0
}
2348
2349
/*[clinic input]
2350
monitoring.get_local_events -> int
2351
2352
    tool_id: int
2353
    code: object
2354
    /
2355
2356
[clinic start generated code]*/
2357
2358
static int
2359
monitoring_get_local_events_impl(PyObject *module, int tool_id,
2360
                                 PyObject *code)
2361
/*[clinic end generated code: output=d3e92c1c9c1de8f9 input=bb0f927530386a94]*/
2362
0
{
2363
0
    if (!PyCode_Check(code)) {
2364
0
        PyErr_Format(
2365
0
            PyExc_TypeError,
2366
0
            "code must be a code object"
2367
0
        );
2368
0
        return -1;
2369
0
    }
2370
0
    if (check_valid_tool(tool_id))  {
2371
0
        return -1;
2372
0
    }
2373
0
    _PyMonitoringEventSet event_set = 0;
2374
0
    _PyCoMonitoringData *data = ((PyCodeObject *)code)->_co_monitoring;
2375
0
    if (data != NULL) {
2376
0
        for (int e = 0; e < _PY_MONITORING_LOCAL_EVENTS; e++) {
2377
0
            if ((data->local_monitors.tools[e] >> tool_id) & 1) {
2378
0
                event_set |= (1 << e);
2379
0
            }
2380
0
        }
2381
0
    }
2382
0
    return event_set;
2383
0
}
2384
2385
/*[clinic input]
2386
monitoring.set_local_events
2387
2388
    tool_id: int
2389
    code: object
2390
    event_set: int
2391
    /
2392
2393
[clinic start generated code]*/
2394
2395
static PyObject *
2396
monitoring_set_local_events_impl(PyObject *module, int tool_id,
2397
                                 PyObject *code, int event_set)
2398
/*[clinic end generated code: output=68cc755a65dfea99 input=5655ecd78d937a29]*/
2399
0
{
2400
0
    if (!PyCode_Check(code)) {
2401
0
        PyErr_Format(
2402
0
            PyExc_TypeError,
2403
0
            "code must be a code object"
2404
0
        );
2405
0
        return NULL;
2406
0
    }
2407
0
    if (check_valid_tool(tool_id))  {
2408
0
        return NULL;
2409
0
    }
2410
0
    if ((event_set & C_RETURN_EVENTS) && (event_set & C_CALL_EVENTS) != C_CALL_EVENTS) {
2411
0
        PyErr_Format(PyExc_ValueError, "cannot set C_RETURN or C_RAISE events independently");
2412
0
        return NULL;
2413
0
    }
2414
0
    event_set &= ~C_RETURN_EVENTS;
2415
0
    if (event_set & (1 << PY_MONITORING_EVENT_BRANCH)) {
2416
0
        event_set &= ~(1 << PY_MONITORING_EVENT_BRANCH);
2417
0
        event_set |= (1 << PY_MONITORING_EVENT_BRANCH_RIGHT) | (1 << PY_MONITORING_EVENT_BRANCH_LEFT);
2418
0
    }
2419
0
    if (event_set < 0 || event_set >= (1 << _PY_MONITORING_LOCAL_EVENTS)) {
2420
0
        PyErr_Format(PyExc_ValueError, "invalid local event set 0x%x", event_set);
2421
0
        return NULL;
2422
0
    }
2423
2424
0
    PyInterpreterState *interp = _PyInterpreterState_GET();
2425
0
    _PyEval_StopTheWorld(interp);
2426
0
    int err = _PyMonitoring_SetLocalEvents((PyCodeObject*)code, tool_id, event_set);
2427
0
    _PyEval_StartTheWorld(interp);
2428
0
    if (err) {
2429
0
        return NULL;
2430
0
    }
2431
0
    Py_RETURN_NONE;
2432
0
}
2433
2434
/*[clinic input]
2435
monitoring.restart_events
2436
2437
[clinic start generated code]*/
2438
2439
static PyObject *
2440
monitoring_restart_events_impl(PyObject *module)
2441
/*[clinic end generated code: output=e025dd5ba33314c4 input=add8a855063c8008]*/
2442
0
{
2443
    /* We want to ensure that:
2444
     * last restart version > instrumented version for all code objects
2445
     * last restart version < current version
2446
     */
2447
0
    PyThreadState *tstate = _PyThreadState_GET();
2448
0
    PyInterpreterState *interp = tstate->interp;
2449
2450
0
    _PyEval_StopTheWorld(interp);
2451
0
    uint32_t restart_version = global_version(interp) + MONITORING_VERSION_INCREMENT;
2452
0
    uint32_t new_version = restart_version + MONITORING_VERSION_INCREMENT;
2453
0
    if (new_version <= MONITORING_VERSION_INCREMENT) {
2454
0
        _PyEval_StartTheWorld(interp);
2455
0
        PyErr_Format(PyExc_OverflowError, "events set too many times");
2456
0
        return NULL;
2457
0
    }
2458
0
    interp->last_restart_version = restart_version;
2459
0
    set_global_version(tstate, new_version);
2460
#ifdef _Py_TIER2
2461
    _Py_Executors_InvalidateAll(interp, 1);
2462
#endif
2463
0
    int res = instrument_all_executing_code_objects(interp);
2464
0
    _PyEval_StartTheWorld(interp);
2465
2466
0
    if (res) {
2467
0
        return NULL;
2468
0
    }
2469
0
    Py_RETURN_NONE;
2470
0
}
2471
2472
static int
2473
add_power2_constant(PyObject *obj, const char *name, int i)
2474
684
{
2475
684
    PyObject *val = PyLong_FromLong(1<<i);
2476
684
    if (val == NULL) {
2477
0
        return -1;
2478
0
    }
2479
684
    int err = PyObject_SetAttrString(obj, name, val);
2480
684
    Py_DECREF(val);
2481
684
    return err;
2482
684
}
2483
2484
/*[clinic input]
2485
monitoring._all_events
2486
[clinic start generated code]*/
2487
2488
static PyObject *
2489
monitoring__all_events_impl(PyObject *module)
2490
/*[clinic end generated code: output=6b7581e2dbb690f6 input=62ee9672c17b7f0e]*/
2491
0
{
2492
0
    PyInterpreterState *interp = _PyInterpreterState_GET();
2493
0
    PyObject *res = PyDict_New();
2494
0
    if (res == NULL) {
2495
0
        return NULL;
2496
0
    }
2497
0
    for (int e = 0; e < _PY_MONITORING_UNGROUPED_EVENTS; e++) {
2498
0
        uint8_t tools = interp->monitors.tools[e];
2499
0
        if (tools == 0) {
2500
0
            continue;
2501
0
        }
2502
0
        PyObject *tools_obj = PyLong_FromLong(tools);
2503
0
        assert(tools_obj != NULL);
2504
0
        int err = PyDict_SetItemString(res, event_names[e], tools_obj);
2505
0
        Py_DECREF(tools_obj);
2506
0
        if (err < 0) {
2507
0
            Py_DECREF(res);
2508
0
            return NULL;
2509
0
        }
2510
0
    }
2511
0
    return res;
2512
0
}
2513
2514
static PyMethodDef methods[] = {
2515
    MONITORING_USE_TOOL_ID_METHODDEF
2516
    MONITORING_CLEAR_TOOL_ID_METHODDEF
2517
    MONITORING_FREE_TOOL_ID_METHODDEF
2518
    MONITORING_GET_TOOL_METHODDEF
2519
    MONITORING_REGISTER_CALLBACK_METHODDEF
2520
    MONITORING_GET_EVENTS_METHODDEF
2521
    MONITORING_SET_EVENTS_METHODDEF
2522
    MONITORING_GET_LOCAL_EVENTS_METHODDEF
2523
    MONITORING_SET_LOCAL_EVENTS_METHODDEF
2524
    MONITORING_RESTART_EVENTS_METHODDEF
2525
    MONITORING__ALL_EVENTS_METHODDEF
2526
    {NULL, NULL}  // sentinel
2527
};
2528
2529
static struct PyModuleDef monitoring_module = {
2530
    PyModuleDef_HEAD_INIT,
2531
    .m_name = "sys.monitoring",
2532
    .m_size = -1, /* multiple "initialization" just copies the module dict. */
2533
    .m_methods = methods,
2534
};
2535
2536
PyObject *_Py_CreateMonitoringObject(void)
2537
36
{
2538
36
    PyObject *mod = _PyModule_CreateInitialized(&monitoring_module, PYTHON_API_VERSION);
2539
36
    if (mod == NULL) {
2540
0
        return NULL;
2541
0
    }
2542
36
    if (PyObject_SetAttrString(mod, "DISABLE", &_PyInstrumentation_DISABLE)) {
2543
0
        goto error;
2544
0
    }
2545
36
    if (PyObject_SetAttrString(mod, "MISSING", &_PyInstrumentation_MISSING)) {
2546
0
        goto error;
2547
0
    }
2548
36
    PyObject *events = _PyNamespace_New(NULL);
2549
36
    if (events == NULL) {
2550
0
        goto error;
2551
0
    }
2552
36
    int err = PyObject_SetAttrString(mod, "events", events);
2553
36
    Py_DECREF(events);
2554
36
    if (err) {
2555
0
        goto error;
2556
0
    }
2557
720
    for (int i = 0; i < _PY_MONITORING_EVENTS; i++) {
2558
684
        if (add_power2_constant(events, event_names[i], i)) {
2559
0
            goto error;
2560
0
        }
2561
684
    }
2562
36
    err = PyObject_SetAttrString(events, "NO_EVENTS", _PyLong_GetZero());
2563
36
    if (err) goto error;
2564
36
    PyObject *val = PyLong_FromLong(PY_MONITORING_DEBUGGER_ID);
2565
36
    assert(val != NULL); /* Can't return NULL because the int is small. */
2566
36
    err = PyObject_SetAttrString(mod, "DEBUGGER_ID", val);
2567
36
    Py_DECREF(val);
2568
36
    if (err) goto error;
2569
36
    val = PyLong_FromLong(PY_MONITORING_COVERAGE_ID);
2570
36
    assert(val != NULL);
2571
36
    err = PyObject_SetAttrString(mod, "COVERAGE_ID", val);
2572
36
    Py_DECREF(val);
2573
36
    if (err) goto error;
2574
36
    val = PyLong_FromLong(PY_MONITORING_PROFILER_ID);
2575
36
    assert(val != NULL);
2576
36
    err = PyObject_SetAttrString(mod, "PROFILER_ID", val);
2577
36
    Py_DECREF(val);
2578
36
    if (err) goto error;
2579
36
    val = PyLong_FromLong(PY_MONITORING_OPTIMIZER_ID);
2580
36
    assert(val != NULL);
2581
36
    err = PyObject_SetAttrString(mod, "OPTIMIZER_ID", val);
2582
36
    Py_DECREF(val);
2583
36
    if (err) goto error;
2584
36
    return mod;
2585
0
error:
2586
0
    Py_DECREF(mod);
2587
0
    return NULL;
2588
36
}
2589
2590
2591
static int
2592
capi_call_instrumentation(PyMonitoringState *state, PyObject *codelike, int32_t offset,
2593
                          PyObject **args, Py_ssize_t nargs, int event)
2594
0
{
2595
0
    PyThreadState *tstate = _PyThreadState_GET();
2596
0
    PyInterpreterState *interp = tstate->interp;
2597
2598
0
    uint8_t tools = state->active;
2599
0
    assert(args[1] == NULL);
2600
0
    args[1] = codelike;
2601
0
    if (offset < 0) {
2602
0
        PyErr_SetString(PyExc_ValueError, "offset must be non-negative");
2603
0
        return -1;
2604
0
    }
2605
0
    if (event != PY_MONITORING_EVENT_LINE) {
2606
0
        PyObject *offset_obj = PyLong_FromLong(offset);
2607
0
        if (offset_obj == NULL) {
2608
0
            return -1;
2609
0
        }
2610
0
        assert(args[2] == NULL);
2611
0
        args[2] = offset_obj;
2612
0
    }
2613
0
    size_t nargsf = (size_t) nargs | PY_VECTORCALL_ARGUMENTS_OFFSET;
2614
0
    PyObject **callargs = &args[1];
2615
0
    int err = 0;
2616
2617
0
    while (tools) {
2618
0
        int tool = most_significant_bit(tools);
2619
0
        assert(tool >= 0 && tool < 8);
2620
0
        assert(tools & (1 << tool));
2621
0
        tools ^= (1 << tool);
2622
0
        int res = call_one_instrument(interp, tstate, callargs, nargsf, tool, event);
2623
0
        if (res == 0) {
2624
            /* Nothing to do */
2625
0
        }
2626
0
        else if (res < 0) {
2627
            /* error */
2628
0
            err = -1;
2629
0
            break;
2630
0
        }
2631
0
        else {
2632
            /* DISABLE */
2633
0
            if (!PY_MONITORING_IS_INSTRUMENTED_EVENT(event)) {
2634
0
                PyErr_Format(PyExc_ValueError,
2635
0
                             "Cannot disable %s events. Callback removed.",
2636
0
                             event_names[event]);
2637
                /* Clear tool to prevent infinite loop */
2638
0
                Py_CLEAR(interp->monitoring_callables[tool][event]);
2639
0
                err = -1;
2640
0
                break;
2641
0
            }
2642
0
            else {
2643
0
                state->active &= ~(1 << tool);
2644
0
            }
2645
0
        }
2646
0
    }
2647
0
    return err;
2648
0
}
2649
2650
int
2651
PyMonitoring_EnterScope(PyMonitoringState *state_array, uint64_t *version,
2652
                         const uint8_t *event_types, Py_ssize_t length)
2653
0
{
2654
0
    PyInterpreterState *interp = _PyInterpreterState_GET();
2655
0
    if (global_version(interp) == *version) {
2656
0
        return 0;
2657
0
    }
2658
2659
0
    _Py_GlobalMonitors *m = &interp->monitors;
2660
0
    for (Py_ssize_t i = 0; i < length; i++) {
2661
0
        int event = event_types[i];
2662
0
        state_array[i].active = m->tools[event];
2663
0
    }
2664
0
    *version = global_version(interp);
2665
0
    return 0;
2666
0
}
2667
2668
int
2669
PyMonitoring_ExitScope(void)
2670
0
{
2671
0
    return 0;
2672
0
}
2673
2674
int
2675
_PyMonitoring_FirePyStartEvent(PyMonitoringState *state, PyObject *codelike, int32_t offset)
2676
0
{
2677
0
    assert(state->active);
2678
0
    PyObject *args[3] = { NULL, NULL, NULL };
2679
0
    return capi_call_instrumentation(state, codelike, offset, args, 2,
2680
0
                                     PY_MONITORING_EVENT_PY_START);
2681
0
}
2682
2683
int
2684
_PyMonitoring_FirePyResumeEvent(PyMonitoringState *state, PyObject *codelike, int32_t offset)
2685
0
{
2686
0
    assert(state->active);
2687
0
    PyObject *args[3] = { NULL, NULL, NULL };
2688
0
    return capi_call_instrumentation(state, codelike, offset, args, 2,
2689
0
                                     PY_MONITORING_EVENT_PY_RESUME);
2690
0
}
2691
2692
2693
2694
int
2695
_PyMonitoring_FirePyReturnEvent(PyMonitoringState *state, PyObject *codelike, int32_t offset,
2696
                                PyObject* retval)
2697
0
{
2698
0
    assert(state->active);
2699
0
    PyObject *args[4] = { NULL, NULL, NULL, retval };
2700
0
    return capi_call_instrumentation(state, codelike, offset, args, 3,
2701
0
                                     PY_MONITORING_EVENT_PY_RETURN);
2702
0
}
2703
2704
int
2705
_PyMonitoring_FirePyYieldEvent(PyMonitoringState *state, PyObject *codelike, int32_t offset,
2706
                               PyObject* retval)
2707
0
{
2708
0
    assert(state->active);
2709
0
    PyObject *args[4] = { NULL, NULL, NULL, retval };
2710
0
    return capi_call_instrumentation(state, codelike, offset, args, 3,
2711
0
                                     PY_MONITORING_EVENT_PY_YIELD);
2712
0
}
2713
2714
int
2715
_PyMonitoring_FireCallEvent(PyMonitoringState *state, PyObject *codelike, int32_t offset,
2716
                            PyObject* callable, PyObject *arg0)
2717
0
{
2718
0
    assert(state->active);
2719
0
    PyObject *args[5] = { NULL, NULL, NULL, callable, arg0 };
2720
0
    return capi_call_instrumentation(state, codelike, offset, args, 4,
2721
0
                                     PY_MONITORING_EVENT_CALL);
2722
0
}
2723
2724
int
2725
_PyMonitoring_FireLineEvent(PyMonitoringState *state, PyObject *codelike, int32_t offset,
2726
                            int lineno)
2727
0
{
2728
0
    assert(state->active);
2729
0
    PyObject *lno = PyLong_FromLong(lineno);
2730
0
    if (lno == NULL) {
2731
0
        return -1;
2732
0
    }
2733
0
    PyObject *args[3] = { NULL, NULL, lno };
2734
0
    int res= capi_call_instrumentation(state, codelike, offset, args, 2,
2735
0
                                       PY_MONITORING_EVENT_LINE);
2736
0
    Py_DECREF(lno);
2737
0
    return res;
2738
0
}
2739
2740
int
2741
_PyMonitoring_FireJumpEvent(PyMonitoringState *state, PyObject *codelike, int32_t offset,
2742
                            PyObject *target_offset)
2743
0
{
2744
0
    assert(state->active);
2745
0
    PyObject *args[4] = { NULL, NULL, NULL, target_offset };
2746
0
    return capi_call_instrumentation(state, codelike, offset, args, 3,
2747
0
                                     PY_MONITORING_EVENT_JUMP);
2748
0
}
2749
2750
int
2751
_PyMonitoring_FireBranchEvent(PyMonitoringState *state, PyObject *codelike, int32_t offset,
2752
                              PyObject *target_offset)
2753
0
{
2754
0
    assert(state->active);
2755
0
    PyObject *args[4] = { NULL, NULL, NULL, target_offset };
2756
0
    return capi_call_instrumentation(state, codelike, offset, args, 3,
2757
0
                                     PY_MONITORING_EVENT_BRANCH_RIGHT);
2758
0
}
2759
2760
int
2761
_PyMonitoring_FireBranchRightEvent(PyMonitoringState *state, PyObject *codelike, int32_t offset,
2762
                              PyObject *target_offset)
2763
0
{
2764
0
    assert(state->active);
2765
0
    PyObject *args[4] = { NULL, NULL, NULL, target_offset };
2766
0
    return capi_call_instrumentation(state, codelike, offset, args, 3,
2767
0
                                     PY_MONITORING_EVENT_BRANCH_RIGHT);
2768
0
}
2769
2770
int
2771
_PyMonitoring_FireBranchLeftEvent(PyMonitoringState *state, PyObject *codelike, int32_t offset,
2772
                              PyObject *target_offset)
2773
0
{
2774
0
    assert(state->active);
2775
0
    PyObject *args[4] = { NULL, NULL, NULL, target_offset };
2776
0
    return capi_call_instrumentation(state, codelike, offset, args, 3,
2777
0
                                     PY_MONITORING_EVENT_BRANCH_LEFT);
2778
0
}
2779
2780
int
2781
_PyMonitoring_FireCReturnEvent(PyMonitoringState *state, PyObject *codelike, int32_t offset,
2782
                               PyObject *retval)
2783
0
{
2784
0
    assert(state->active);
2785
0
    PyObject *args[4] = { NULL, NULL, NULL, retval };
2786
0
    return capi_call_instrumentation(state, codelike, offset, args, 3,
2787
0
                                     PY_MONITORING_EVENT_C_RETURN);
2788
0
}
2789
2790
static inline int
2791
0
exception_event_setup(PyObject **exc, int event) {
2792
0
    *exc = PyErr_GetRaisedException();
2793
0
    if (*exc == NULL) {
2794
0
        PyErr_Format(PyExc_ValueError,
2795
0
                     "Firing event %d with no exception set",
2796
0
                     event);
2797
0
        return -1;
2798
0
    }
2799
0
    return 0;
2800
0
}
2801
2802
2803
static inline int
2804
0
exception_event_teardown(int err, PyObject *exc) {
2805
0
    if (err == 0) {
2806
0
        PyErr_SetRaisedException(exc);
2807
0
    }
2808
0
    else {
2809
0
        assert(PyErr_Occurred());
2810
0
        Py_XDECREF(exc);
2811
0
    }
2812
0
    return err;
2813
0
}
2814
2815
int
2816
_PyMonitoring_FirePyThrowEvent(PyMonitoringState *state, PyObject *codelike, int32_t offset)
2817
0
{
2818
0
    int event = PY_MONITORING_EVENT_PY_THROW;
2819
0
    assert(state->active);
2820
0
    PyObject *exc;
2821
0
    if (exception_event_setup(&exc, event) < 0) {
2822
0
        return -1;
2823
0
    }
2824
0
    PyObject *args[4] = { NULL, NULL, NULL, exc };
2825
0
    int err = capi_call_instrumentation(state, codelike, offset, args, 3, event);
2826
0
    return exception_event_teardown(err, exc);
2827
0
}
2828
2829
int
2830
_PyMonitoring_FireRaiseEvent(PyMonitoringState *state, PyObject *codelike, int32_t offset)
2831
0
{
2832
0
    int event = PY_MONITORING_EVENT_RAISE;
2833
0
    assert(state->active);
2834
0
    PyObject *exc;
2835
0
    if (exception_event_setup(&exc, event) < 0) {
2836
0
        return -1;
2837
0
    }
2838
0
    PyObject *args[4] = { NULL, NULL, NULL, exc };
2839
0
    int err = capi_call_instrumentation(state, codelike, offset, args, 3, event);
2840
0
    return exception_event_teardown(err, exc);
2841
0
}
2842
2843
int
2844
_PyMonitoring_FireCRaiseEvent(PyMonitoringState *state, PyObject *codelike, int32_t offset)
2845
0
{
2846
0
    int event = PY_MONITORING_EVENT_C_RAISE;
2847
0
    assert(state->active);
2848
0
    PyObject *exc;
2849
0
    if (exception_event_setup(&exc, event) < 0) {
2850
0
        return -1;
2851
0
    }
2852
0
    PyObject *args[4] = { NULL, NULL, NULL, exc };
2853
0
    int err = capi_call_instrumentation(state, codelike, offset, args, 3, event);
2854
0
    return exception_event_teardown(err, exc);
2855
0
}
2856
2857
int
2858
_PyMonitoring_FireReraiseEvent(PyMonitoringState *state, PyObject *codelike, int32_t offset)
2859
0
{
2860
0
    int event = PY_MONITORING_EVENT_RERAISE;
2861
0
    assert(state->active);
2862
0
    PyObject *exc;
2863
0
    if (exception_event_setup(&exc, event) < 0) {
2864
0
        return -1;
2865
0
    }
2866
0
    PyObject *args[4] = { NULL, NULL, NULL, exc };
2867
0
    int err = capi_call_instrumentation(state, codelike, offset, args, 3, event);
2868
0
    return exception_event_teardown(err, exc);
2869
0
}
2870
2871
int
2872
_PyMonitoring_FireExceptionHandledEvent(PyMonitoringState *state, PyObject *codelike, int32_t offset)
2873
0
{
2874
0
    int event = PY_MONITORING_EVENT_EXCEPTION_HANDLED;
2875
0
    assert(state->active);
2876
0
    PyObject *exc;
2877
0
    if (exception_event_setup(&exc, event) < 0) {
2878
0
        return -1;
2879
0
    }
2880
0
    PyObject *args[4] = { NULL, NULL, NULL, exc };
2881
0
    int err = capi_call_instrumentation(state, codelike, offset, args, 3, event);
2882
0
    return exception_event_teardown(err, exc);
2883
0
}
2884
2885
int
2886
_PyMonitoring_FirePyUnwindEvent(PyMonitoringState *state, PyObject *codelike, int32_t offset)
2887
0
{
2888
0
    int event = PY_MONITORING_EVENT_PY_UNWIND;
2889
0
    assert(state->active);
2890
0
    PyObject *exc;
2891
0
    if (exception_event_setup(&exc, event) < 0) {
2892
0
        return -1;
2893
0
    }
2894
0
    PyObject *args[4] = { NULL, NULL, NULL, exc };
2895
0
    int err = capi_call_instrumentation(state, codelike, offset, args, 3, event);
2896
0
    return exception_event_teardown(err, exc);
2897
0
}
2898
2899
int
2900
_PyMonitoring_FireStopIterationEvent(PyMonitoringState *state, PyObject *codelike, int32_t offset, PyObject *value)
2901
0
{
2902
0
    int event = PY_MONITORING_EVENT_STOP_ITERATION;
2903
0
    assert(state->active);
2904
0
    assert(!PyErr_Occurred());
2905
0
    PyErr_SetObject(PyExc_StopIteration, value);
2906
0
    PyObject *exc;
2907
0
    if (exception_event_setup(&exc, event) < 0) {
2908
0
        return -1;
2909
0
    }
2910
0
    PyObject *args[4] = { NULL, NULL, NULL, exc };
2911
0
    int err = capi_call_instrumentation(state, codelike, offset, args, 3, event);
2912
0
    Py_DECREF(exc);
2913
0
    return exception_event_teardown(err, NULL);
2914
0
}
2915
2916
2917
2918
/* Handle legacy BRANCH event */
2919
2920
typedef struct _PyLegacyBranchEventHandler {
2921
    PyObject_HEAD
2922
    vectorcallfunc vectorcall;
2923
    PyObject *handler;
2924
    bool right;
2925
    int tool_id;
2926
} _PyLegacyBranchEventHandler;
2927
2928
0
#define _PyLegacyBranchEventHandler_CAST(op)    ((_PyLegacyBranchEventHandler *)(op))
2929
2930
static void
2931
dealloc_branch_handler(PyObject *op)
2932
0
{
2933
0
    _PyLegacyBranchEventHandler *self = _PyLegacyBranchEventHandler_CAST(op);
2934
0
    Py_CLEAR(self->handler);
2935
0
    PyObject_Free(self);
2936
0
}
2937
2938
static PyTypeObject _PyLegacyBranchEventHandler_Type = {
2939
    PyVarObject_HEAD_INIT(&PyType_Type, 0)
2940
    "sys.monitoring.branch_event_handler",
2941
    sizeof(_PyLegacyBranchEventHandler),
2942
    .tp_dealloc = dealloc_branch_handler,
2943
    .tp_vectorcall_offset = offsetof(_PyLegacyBranchEventHandler, vectorcall),
2944
    .tp_flags = Py_TPFLAGS_DEFAULT | Py_TPFLAGS_BASETYPE |
2945
        Py_TPFLAGS_HAVE_VECTORCALL | Py_TPFLAGS_DISALLOW_INSTANTIATION,
2946
    .tp_call = PyVectorcall_Call,
2947
};
2948
2949
2950
static PyObject *
2951
branch_handler_vectorcall(
2952
    PyObject *op, PyObject *const *args,
2953
    size_t nargsf, PyObject *kwnames
2954
0
) {
2955
0
    _PyLegacyBranchEventHandler *self = _PyLegacyBranchEventHandler_CAST(op);
2956
    // Find the other instrumented instruction and remove tool
2957
    // The spec (PEP 669) allows spurious events after a DISABLE,
2958
    // so a best effort is good enough.
2959
0
    assert(PyVectorcall_NARGS(nargsf) >= 3);
2960
0
    PyCodeObject *code = (PyCodeObject *)args[0];
2961
0
    int src_offset = PyLong_AsLong(args[1]);
2962
0
    if (PyErr_Occurred()) {
2963
0
        return NULL;
2964
0
    }
2965
0
    _Py_CODEUNIT instr = _PyCode_CODE(code)[src_offset/2];
2966
0
    if (!is_instrumented(instr.op.code)) {
2967
        /* Already disabled */
2968
0
        return &_PyInstrumentation_DISABLE;
2969
0
    }
2970
0
    PyObject *res = PyObject_Vectorcall(self->handler, args, nargsf, kwnames);
2971
0
    if (res == &_PyInstrumentation_DISABLE) {
2972
        /* We need FOR_ITER and POP_JUMP_ to be the same size */
2973
0
        assert(INLINE_CACHE_ENTRIES_FOR_ITER == 1);
2974
0
        int offset;
2975
0
        int other_event;
2976
0
        if (instr.op.code == FOR_ITER) {
2977
0
            if (self->right) {
2978
0
                offset = src_offset/2;
2979
0
                other_event = PY_MONITORING_EVENT_BRANCH_LEFT;
2980
0
            }
2981
0
            else {
2982
                // We don't know where the POP_ITER is, so
2983
                // we cannot de-instrument it.
2984
0
                return res;
2985
0
            }
2986
0
        }
2987
0
        else if (IS_CONDITIONAL_JUMP_OPCODE(instr.op.code)) {
2988
0
            if (self->right) {
2989
0
                offset = src_offset/2 + 2;
2990
0
                other_event = PY_MONITORING_EVENT_BRANCH_LEFT;
2991
0
                assert(_Py_GetBaseCodeUnit(code, offset).op.code == NOT_TAKEN);
2992
0
            }
2993
0
            else {
2994
0
                offset = src_offset/2;
2995
0
                other_event = PY_MONITORING_EVENT_BRANCH_RIGHT;
2996
0
            }
2997
0
        }
2998
0
        else {
2999
            // Orphaned NOT_TAKEN -- Jump removed by the compiler
3000
0
            return res;
3001
0
        }
3002
0
        PyInterpreterState *interp = _PyInterpreterState_GET();
3003
0
        _PyEval_StopTheWorld(interp);
3004
0
        remove_tools(code, offset, other_event, 1 << self->tool_id);
3005
0
        _PyEval_StartTheWorld(interp);
3006
0
    }
3007
0
    return res;
3008
0
}
3009
3010
static PyObject *make_branch_handler(int tool_id, PyObject *handler, bool right)
3011
0
{
3012
0
    _PyLegacyBranchEventHandler *callback =
3013
0
        PyObject_NEW(_PyLegacyBranchEventHandler, &_PyLegacyBranchEventHandler_Type);
3014
0
    if (callback == NULL) {
3015
0
        return NULL;
3016
0
    }
3017
0
    callback->vectorcall = branch_handler_vectorcall;
3018
0
    callback->handler = Py_NewRef(handler);
3019
0
    callback->right = right;
3020
0
    callback->tool_id = tool_id;
3021
0
    return (PyObject *)callback;
3022
0
}
3023
3024
PyObject *
3025
_PyMonitoring_RegisterCallback(int tool_id, int event_id, PyObject *obj)
3026
0
{
3027
0
    assert(0 <= tool_id && tool_id < PY_MONITORING_TOOL_IDS);
3028
0
    assert(0 <= event_id && event_id < _PY_MONITORING_EVENTS);
3029
0
    PyObject *res;
3030
0
    if (event_id == PY_MONITORING_EVENT_BRANCH) {
3031
0
        PyObject *left, *right;
3032
0
        if (obj == NULL) {
3033
0
            left = NULL;
3034
0
            right = NULL;
3035
0
        }
3036
0
        else {
3037
0
            right = make_branch_handler(tool_id, obj, true);
3038
0
            if (right == NULL) {
3039
0
                return NULL;
3040
0
            }
3041
0
            left = make_branch_handler(tool_id, obj, false);
3042
0
            if (left == NULL) {
3043
0
                Py_DECREF(right);
3044
0
                return NULL;
3045
0
            }
3046
0
        }
3047
0
        PyInterpreterState *interp = _PyInterpreterState_GET();
3048
0
        _PyEval_StopTheWorld(interp);
3049
0
        PyObject *old_right = interp->monitoring_callables[tool_id][PY_MONITORING_EVENT_BRANCH_RIGHT];
3050
0
        interp->monitoring_callables[tool_id][PY_MONITORING_EVENT_BRANCH_RIGHT] = right;
3051
0
        res = interp->monitoring_callables[tool_id][PY_MONITORING_EVENT_BRANCH_LEFT];
3052
0
        interp->monitoring_callables[tool_id][PY_MONITORING_EVENT_BRANCH_LEFT] = left;
3053
0
        _PyEval_StartTheWorld(interp);
3054
0
        Py_XDECREF(old_right);
3055
0
    }
3056
0
    else {
3057
0
        PyInterpreterState *interp = _PyInterpreterState_GET();
3058
0
        _PyEval_StopTheWorld(interp);
3059
0
        res = interp->monitoring_callables[tool_id][event_id];
3060
0
        interp->monitoring_callables[tool_id][event_id] = Py_XNewRef(obj);
3061
0
        _PyEval_StartTheWorld(interp);
3062
0
    }
3063
0
    if (res != NULL && Py_TYPE(res) == &_PyLegacyBranchEventHandler_Type) {
3064
0
        _PyLegacyBranchEventHandler *wrapper = (_PyLegacyBranchEventHandler *)res;
3065
0
        res = Py_NewRef(wrapper->handler);
3066
0
        Py_DECREF(wrapper);
3067
0
    }
3068
0
    return res;
3069
0
}
3070
3071
/* Branch Iterator */
3072
3073
typedef struct {
3074
    PyObject_HEAD
3075
    PyCodeObject *bi_code;
3076
    int bi_offset;
3077
} branchesiterator;
3078
3079
0
#define branchesiterator_CAST(op)   ((branchesiterator *)(op))
3080
3081
static PyObject *
3082
0
int_triple(int a, int b, int c) {
3083
0
    PyObject *obja = PyLong_FromLong(a);
3084
0
    PyObject *objb = NULL;
3085
0
    PyObject *objc = NULL;
3086
0
    if (obja == NULL) {
3087
0
        goto error;
3088
0
    }
3089
0
    objb = PyLong_FromLong(b);
3090
0
    if (objb == NULL) {
3091
0
        goto error;
3092
0
    }
3093
0
    objc = PyLong_FromLong(c);
3094
0
    if (objc == NULL) {
3095
0
        goto error;
3096
0
    }
3097
0
    PyObject *array[3] = { obja, objb, objc };
3098
0
    return _PyTuple_FromArraySteal(array, 3);
3099
0
error:
3100
0
    Py_XDECREF(obja);
3101
0
    Py_XDECREF(objb);
3102
0
    Py_XDECREF(objc);
3103
0
    return NULL;
3104
0
}
3105
3106
static PyObject *
3107
branchesiter_next(PyObject *op)
3108
0
{
3109
0
    branchesiterator *bi = branchesiterator_CAST(op);
3110
0
    int offset = bi->bi_offset;
3111
0
    int oparg = 0;
3112
0
    while (offset < Py_SIZE(bi->bi_code)) {
3113
0
        _Py_CODEUNIT inst = _Py_GetBaseCodeUnit(bi->bi_code, offset);
3114
0
        int next_offset = offset + 1 + _PyOpcode_Caches[inst.op.code];
3115
0
        switch(inst.op.code) {
3116
0
            case EXTENDED_ARG:
3117
0
                oparg = (oparg << 8) | inst.op.arg;
3118
0
                break;
3119
0
            case FOR_ITER:
3120
0
                oparg = (oparg << 8) | inst.op.arg;
3121
0
                bi->bi_offset = next_offset;
3122
0
                int target = next_offset + oparg+2; // Skips END_FOR and POP_ITER
3123
0
                return int_triple(offset*2, next_offset*2, target*2);
3124
0
            case POP_JUMP_IF_FALSE:
3125
0
            case POP_JUMP_IF_TRUE:
3126
0
            case POP_JUMP_IF_NONE:
3127
0
            case POP_JUMP_IF_NOT_NONE:
3128
0
                oparg = (oparg << 8) | inst.op.arg;
3129
                /* Skip NOT_TAKEN */
3130
0
                int not_taken = next_offset + 1;
3131
0
                bi->bi_offset = not_taken;
3132
0
                return int_triple(offset*2, not_taken*2, (next_offset + oparg)*2);
3133
0
            case END_ASYNC_FOR:
3134
0
                oparg = (oparg << 8) | inst.op.arg;
3135
0
                int src_offset = next_offset - oparg;
3136
0
                bi->bi_offset = next_offset;
3137
0
                assert(_Py_GetBaseCodeUnit(bi->bi_code, src_offset).op.code == END_SEND);
3138
0
                assert(_Py_GetBaseCodeUnit(bi->bi_code, src_offset+1).op.code == NOT_TAKEN);
3139
0
                not_taken = src_offset + 2;
3140
0
                return int_triple(src_offset *2, not_taken*2, next_offset*2);
3141
0
            default:
3142
0
                oparg = 0;
3143
0
        }
3144
0
        offset = next_offset;
3145
0
    }
3146
0
    return NULL;
3147
0
}
3148
3149
static void
3150
branchesiter_dealloc(PyObject *op)
3151
0
{
3152
0
    branchesiterator *bi = branchesiterator_CAST(op);
3153
0
    Py_DECREF(bi->bi_code);
3154
0
    PyObject_Free(bi);
3155
0
}
3156
3157
static PyTypeObject _PyBranchesIterator = {
3158
    PyVarObject_HEAD_INIT(&PyType_Type, 0)
3159
    "line_iterator",                    /* tp_name */
3160
    sizeof(branchesiterator),           /* tp_basicsize */
3161
    0,                                  /* tp_itemsize */
3162
    /* methods */
3163
    .tp_dealloc = branchesiter_dealloc,
3164
    .tp_flags = Py_TPFLAGS_DEFAULT | Py_TPFLAGS_BASETYPE,
3165
    .tp_iter = PyObject_SelfIter,
3166
    .tp_iternext = branchesiter_next,
3167
    .tp_free = PyObject_Del,
3168
};
3169
3170
PyObject *
3171
_PyInstrumentation_BranchesIterator(PyCodeObject *code)
3172
0
{
3173
3174
0
    branchesiterator *bi = (branchesiterator *)PyType_GenericAlloc(&_PyBranchesIterator, 0);
3175
0
    if (bi == NULL) {
3176
0
        return NULL;
3177
0
    }
3178
0
    bi->bi_code = (PyCodeObject*)Py_NewRef(code);
3179
0
    bi->bi_offset = 0;
3180
0
    return (PyObject *)bi;
3181
0
}