Rename struct lttng_event to struct lttng_ust_event_recorder
[lttng-ust.git] / liblttng-ust / lttng-bytecode.c
1 /*
2 * SPDX-License-Identifier: MIT
3 *
4 * Copyright (C) 2010-2016 Mathieu Desnoyers <mathieu.desnoyers@efficios.com>
5 *
6 * LTTng UST bytecode code.
7 */
8
9 #define _LGPL_SOURCE
10 #include <stddef.h>
11 #include <stdint.h>
12
13 #include <urcu/rculist.h>
14
15 #include "context-internal.h"
16 #include "lttng-bytecode.h"
17 #include "ust-events-internal.h"
18
19 static const char *opnames[] = {
20 [ BYTECODE_OP_UNKNOWN ] = "UNKNOWN",
21
22 [ BYTECODE_OP_RETURN ] = "RETURN",
23
24 /* binary */
25 [ BYTECODE_OP_MUL ] = "MUL",
26 [ BYTECODE_OP_DIV ] = "DIV",
27 [ BYTECODE_OP_MOD ] = "MOD",
28 [ BYTECODE_OP_PLUS ] = "PLUS",
29 [ BYTECODE_OP_MINUS ] = "MINUS",
30 [ BYTECODE_OP_BIT_RSHIFT ] = "BIT_RSHIFT",
31 [ BYTECODE_OP_BIT_LSHIFT ] = "BIT_LSHIFT",
32 [ BYTECODE_OP_BIT_AND ] = "BIT_AND",
33 [ BYTECODE_OP_BIT_OR ] = "BIT_OR",
34 [ BYTECODE_OP_BIT_XOR ] = "BIT_XOR",
35
36 /* binary comparators */
37 [ BYTECODE_OP_EQ ] = "EQ",
38 [ BYTECODE_OP_NE ] = "NE",
39 [ BYTECODE_OP_GT ] = "GT",
40 [ BYTECODE_OP_LT ] = "LT",
41 [ BYTECODE_OP_GE ] = "GE",
42 [ BYTECODE_OP_LE ] = "LE",
43
44 /* string binary comparators */
45 [ BYTECODE_OP_EQ_STRING ] = "EQ_STRING",
46 [ BYTECODE_OP_NE_STRING ] = "NE_STRING",
47 [ BYTECODE_OP_GT_STRING ] = "GT_STRING",
48 [ BYTECODE_OP_LT_STRING ] = "LT_STRING",
49 [ BYTECODE_OP_GE_STRING ] = "GE_STRING",
50 [ BYTECODE_OP_LE_STRING ] = "LE_STRING",
51
52 /* s64 binary comparators */
53 [ BYTECODE_OP_EQ_S64 ] = "EQ_S64",
54 [ BYTECODE_OP_NE_S64 ] = "NE_S64",
55 [ BYTECODE_OP_GT_S64 ] = "GT_S64",
56 [ BYTECODE_OP_LT_S64 ] = "LT_S64",
57 [ BYTECODE_OP_GE_S64 ] = "GE_S64",
58 [ BYTECODE_OP_LE_S64 ] = "LE_S64",
59
60 /* double binary comparators */
61 [ BYTECODE_OP_EQ_DOUBLE ] = "EQ_DOUBLE",
62 [ BYTECODE_OP_NE_DOUBLE ] = "NE_DOUBLE",
63 [ BYTECODE_OP_GT_DOUBLE ] = "GT_DOUBLE",
64 [ BYTECODE_OP_LT_DOUBLE ] = "LT_DOUBLE",
65 [ BYTECODE_OP_GE_DOUBLE ] = "GE_DOUBLE",
66 [ BYTECODE_OP_LE_DOUBLE ] = "LE_DOUBLE",
67
68 /* Mixed S64-double binary comparators */
69 [ BYTECODE_OP_EQ_DOUBLE_S64 ] = "EQ_DOUBLE_S64",
70 [ BYTECODE_OP_NE_DOUBLE_S64 ] = "NE_DOUBLE_S64",
71 [ BYTECODE_OP_GT_DOUBLE_S64 ] = "GT_DOUBLE_S64",
72 [ BYTECODE_OP_LT_DOUBLE_S64 ] = "LT_DOUBLE_S64",
73 [ BYTECODE_OP_GE_DOUBLE_S64 ] = "GE_DOUBLE_S64",
74 [ BYTECODE_OP_LE_DOUBLE_S64 ] = "LE_DOUBLE_S64",
75
76 [ BYTECODE_OP_EQ_S64_DOUBLE ] = "EQ_S64_DOUBLE",
77 [ BYTECODE_OP_NE_S64_DOUBLE ] = "NE_S64_DOUBLE",
78 [ BYTECODE_OP_GT_S64_DOUBLE ] = "GT_S64_DOUBLE",
79 [ BYTECODE_OP_LT_S64_DOUBLE ] = "LT_S64_DOUBLE",
80 [ BYTECODE_OP_GE_S64_DOUBLE ] = "GE_S64_DOUBLE",
81 [ BYTECODE_OP_LE_S64_DOUBLE ] = "LE_S64_DOUBLE",
82
83 /* unary */
84 [ BYTECODE_OP_UNARY_PLUS ] = "UNARY_PLUS",
85 [ BYTECODE_OP_UNARY_MINUS ] = "UNARY_MINUS",
86 [ BYTECODE_OP_UNARY_NOT ] = "UNARY_NOT",
87 [ BYTECODE_OP_UNARY_PLUS_S64 ] = "UNARY_PLUS_S64",
88 [ BYTECODE_OP_UNARY_MINUS_S64 ] = "UNARY_MINUS_S64",
89 [ BYTECODE_OP_UNARY_NOT_S64 ] = "UNARY_NOT_S64",
90 [ BYTECODE_OP_UNARY_PLUS_DOUBLE ] = "UNARY_PLUS_DOUBLE",
91 [ BYTECODE_OP_UNARY_MINUS_DOUBLE ] = "UNARY_MINUS_DOUBLE",
92 [ BYTECODE_OP_UNARY_NOT_DOUBLE ] = "UNARY_NOT_DOUBLE",
93
94 /* logical */
95 [ BYTECODE_OP_AND ] = "AND",
96 [ BYTECODE_OP_OR ] = "OR",
97
98 /* load field ref */
99 [ BYTECODE_OP_LOAD_FIELD_REF ] = "LOAD_FIELD_REF",
100 [ BYTECODE_OP_LOAD_FIELD_REF_STRING ] = "LOAD_FIELD_REF_STRING",
101 [ BYTECODE_OP_LOAD_FIELD_REF_SEQUENCE ] = "LOAD_FIELD_REF_SEQUENCE",
102 [ BYTECODE_OP_LOAD_FIELD_REF_S64 ] = "LOAD_FIELD_REF_S64",
103 [ BYTECODE_OP_LOAD_FIELD_REF_DOUBLE ] = "LOAD_FIELD_REF_DOUBLE",
104
105 /* load from immediate operand */
106 [ BYTECODE_OP_LOAD_STRING ] = "LOAD_STRING",
107 [ BYTECODE_OP_LOAD_S64 ] = "LOAD_S64",
108 [ BYTECODE_OP_LOAD_DOUBLE ] = "LOAD_DOUBLE",
109
110 /* cast */
111 [ BYTECODE_OP_CAST_TO_S64 ] = "CAST_TO_S64",
112 [ BYTECODE_OP_CAST_DOUBLE_TO_S64 ] = "CAST_DOUBLE_TO_S64",
113 [ BYTECODE_OP_CAST_NOP ] = "CAST_NOP",
114
115 /* get context ref */
116 [ BYTECODE_OP_GET_CONTEXT_REF ] = "GET_CONTEXT_REF",
117 [ BYTECODE_OP_GET_CONTEXT_REF_STRING ] = "GET_CONTEXT_REF_STRING",
118 [ BYTECODE_OP_GET_CONTEXT_REF_S64 ] = "GET_CONTEXT_REF_S64",
119 [ BYTECODE_OP_GET_CONTEXT_REF_DOUBLE ] = "GET_CONTEXT_REF_DOUBLE",
120
121 /* load userspace field ref */
122 [ BYTECODE_OP_LOAD_FIELD_REF_USER_STRING ] = "LOAD_FIELD_REF_USER_STRING",
123 [ BYTECODE_OP_LOAD_FIELD_REF_USER_SEQUENCE ] = "LOAD_FIELD_REF_USER_SEQUENCE",
124
125 /*
126 * load immediate star globbing pattern (literal string)
127 * from immediate.
128 */
129 [ BYTECODE_OP_LOAD_STAR_GLOB_STRING ] = "LOAD_STAR_GLOB_STRING",
130
131 /* globbing pattern binary operator: apply to */
132 [ BYTECODE_OP_EQ_STAR_GLOB_STRING ] = "EQ_STAR_GLOB_STRING",
133 [ BYTECODE_OP_NE_STAR_GLOB_STRING ] = "NE_STAR_GLOB_STRING",
134
135 /*
136 * Instructions for recursive traversal through composed types.
137 */
138 [ BYTECODE_OP_GET_CONTEXT_ROOT ] = "GET_CONTEXT_ROOT",
139 [ BYTECODE_OP_GET_APP_CONTEXT_ROOT ] = "GET_APP_CONTEXT_ROOT",
140 [ BYTECODE_OP_GET_PAYLOAD_ROOT ] = "GET_PAYLOAD_ROOT",
141
142 [ BYTECODE_OP_GET_SYMBOL ] = "GET_SYMBOL",
143 [ BYTECODE_OP_GET_SYMBOL_FIELD ] = "GET_SYMBOL_FIELD",
144 [ BYTECODE_OP_GET_INDEX_U16 ] = "GET_INDEX_U16",
145 [ BYTECODE_OP_GET_INDEX_U64 ] = "GET_INDEX_U64",
146
147 [ BYTECODE_OP_LOAD_FIELD ] = "LOAD_FIELD",
148 [ BYTECODE_OP_LOAD_FIELD_S8 ] = "LOAD_FIELD_S8",
149 [ BYTECODE_OP_LOAD_FIELD_S16 ] = "LOAD_FIELD_S16",
150 [ BYTECODE_OP_LOAD_FIELD_S32 ] = "LOAD_FIELD_S32",
151 [ BYTECODE_OP_LOAD_FIELD_S64 ] = "LOAD_FIELD_S64",
152 [ BYTECODE_OP_LOAD_FIELD_U8 ] = "LOAD_FIELD_U8",
153 [ BYTECODE_OP_LOAD_FIELD_U16 ] = "LOAD_FIELD_U16",
154 [ BYTECODE_OP_LOAD_FIELD_U32 ] = "LOAD_FIELD_U32",
155 [ BYTECODE_OP_LOAD_FIELD_U64 ] = "LOAD_FIELD_U64",
156 [ BYTECODE_OP_LOAD_FIELD_STRING ] = "LOAD_FIELD_STRING",
157 [ BYTECODE_OP_LOAD_FIELD_SEQUENCE ] = "LOAD_FIELD_SEQUENCE",
158 [ BYTECODE_OP_LOAD_FIELD_DOUBLE ] = "LOAD_FIELD_DOUBLE",
159
160 [ BYTECODE_OP_UNARY_BIT_NOT ] = "UNARY_BIT_NOT",
161
162 [ BYTECODE_OP_RETURN_S64 ] = "RETURN_S64",
163 };
164
165 const char *lttng_bytecode_print_op(enum bytecode_op op)
166 {
167 if (op >= NR_BYTECODE_OPS)
168 return "UNKNOWN";
169 else
170 return opnames[op];
171 }
172
173 static
174 int apply_field_reloc(const struct lttng_event_desc *event_desc,
175 struct bytecode_runtime *runtime,
176 uint32_t runtime_len,
177 uint32_t reloc_offset,
178 const char *field_name,
179 enum bytecode_op bytecode_op)
180 {
181 const struct lttng_event_field *fields, *field = NULL;
182 unsigned int nr_fields, i;
183 struct load_op *op;
184 uint32_t field_offset = 0;
185
186 dbg_printf("Apply field reloc: %u %s\n", reloc_offset, field_name);
187
188 /* Lookup event by name */
189 if (!event_desc)
190 return -EINVAL;
191 fields = event_desc->fields;
192 if (!fields)
193 return -EINVAL;
194 nr_fields = event_desc->nr_fields;
195 for (i = 0; i < nr_fields; i++) {
196 if (fields[i].u.ext.nofilter) {
197 continue;
198 }
199 if (!strcmp(fields[i].name, field_name)) {
200 field = &fields[i];
201 break;
202 }
203 /* compute field offset */
204 switch (fields[i].type.atype) {
205 case atype_integer:
206 case atype_enum_nestable:
207 field_offset += sizeof(int64_t);
208 break;
209 case atype_array_nestable:
210 case atype_sequence_nestable:
211 field_offset += sizeof(unsigned long);
212 field_offset += sizeof(void *);
213 break;
214 case atype_string:
215 field_offset += sizeof(void *);
216 break;
217 case atype_float:
218 field_offset += sizeof(double);
219 break;
220 default:
221 return -EINVAL;
222 }
223 }
224 if (!field)
225 return -EINVAL;
226
227 /* Check if field offset is too large for 16-bit offset */
228 if (field_offset > FILTER_BYTECODE_MAX_LEN - 1)
229 return -EINVAL;
230
231 /* set type */
232 op = (struct load_op *) &runtime->code[reloc_offset];
233
234 switch (bytecode_op) {
235 case BYTECODE_OP_LOAD_FIELD_REF:
236 {
237 struct field_ref *field_ref;
238
239 field_ref = (struct field_ref *) op->data;
240 switch (field->type.atype) {
241 case atype_integer:
242 case atype_enum_nestable:
243 op->op = BYTECODE_OP_LOAD_FIELD_REF_S64;
244 break;
245 case atype_array_nestable:
246 case atype_sequence_nestable:
247 op->op = BYTECODE_OP_LOAD_FIELD_REF_SEQUENCE;
248 break;
249 case atype_string:
250 op->op = BYTECODE_OP_LOAD_FIELD_REF_STRING;
251 break;
252 case atype_float:
253 op->op = BYTECODE_OP_LOAD_FIELD_REF_DOUBLE;
254 break;
255 default:
256 return -EINVAL;
257 }
258 /* set offset */
259 field_ref->offset = (uint16_t) field_offset;
260 break;
261 }
262 default:
263 return -EINVAL;
264 }
265 return 0;
266 }
267
268 static
269 int apply_context_reloc(struct bytecode_runtime *runtime,
270 uint32_t runtime_len,
271 uint32_t reloc_offset,
272 const char *context_name,
273 enum bytecode_op bytecode_op)
274 {
275 struct load_op *op;
276 struct lttng_ctx_field *ctx_field;
277 int idx;
278 struct lttng_ctx **pctx = runtime->p.priv->pctx;
279
280 dbg_printf("Apply context reloc: %u %s\n", reloc_offset, context_name);
281
282 /* Get context index */
283 idx = lttng_get_context_index(*pctx, context_name);
284 if (idx < 0) {
285 if (lttng_context_is_app(context_name)) {
286 int ret;
287
288 ret = lttng_ust_add_app_context_to_ctx_rcu(context_name,
289 pctx);
290 if (ret)
291 return ret;
292 idx = lttng_get_context_index(*pctx, context_name);
293 if (idx < 0)
294 return -ENOENT;
295 } else {
296 return -ENOENT;
297 }
298 }
299 /* Check if idx is too large for 16-bit offset */
300 if (idx > FILTER_BYTECODE_MAX_LEN - 1)
301 return -EINVAL;
302
303 /* Get context return type */
304 ctx_field = &(*pctx)->fields[idx];
305 op = (struct load_op *) &runtime->code[reloc_offset];
306
307 switch (bytecode_op) {
308 case BYTECODE_OP_GET_CONTEXT_REF:
309 {
310 struct field_ref *field_ref;
311
312 field_ref = (struct field_ref *) op->data;
313 switch (ctx_field->event_field.type.atype) {
314 case atype_integer:
315 case atype_enum_nestable:
316 op->op = BYTECODE_OP_GET_CONTEXT_REF_S64;
317 break;
318 /* Sequence and array supported as string */
319 case atype_string:
320 case atype_array_nestable:
321 case atype_sequence_nestable:
322 op->op = BYTECODE_OP_GET_CONTEXT_REF_STRING;
323 break;
324 case atype_float:
325 op->op = BYTECODE_OP_GET_CONTEXT_REF_DOUBLE;
326 break;
327 case atype_dynamic:
328 op->op = BYTECODE_OP_GET_CONTEXT_REF;
329 break;
330 default:
331 return -EINVAL;
332 }
333 /* set offset to context index within channel contexts */
334 field_ref->offset = (uint16_t) idx;
335 break;
336 }
337 default:
338 return -EINVAL;
339 }
340 return 0;
341 }
342
343 static
344 int apply_reloc(const struct lttng_event_desc *event_desc,
345 struct bytecode_runtime *runtime,
346 uint32_t runtime_len,
347 uint32_t reloc_offset,
348 const char *name)
349 {
350 struct load_op *op;
351
352 dbg_printf("Apply reloc: %u %s\n", reloc_offset, name);
353
354 /* Ensure that the reloc is within the code */
355 if (runtime_len - reloc_offset < sizeof(uint16_t))
356 return -EINVAL;
357
358 op = (struct load_op *) &runtime->code[reloc_offset];
359 switch (op->op) {
360 case BYTECODE_OP_LOAD_FIELD_REF:
361 return apply_field_reloc(event_desc, runtime, runtime_len,
362 reloc_offset, name, op->op);
363 case BYTECODE_OP_GET_CONTEXT_REF:
364 return apply_context_reloc(runtime, runtime_len,
365 reloc_offset, name, op->op);
366 case BYTECODE_OP_GET_SYMBOL:
367 case BYTECODE_OP_GET_SYMBOL_FIELD:
368 /*
369 * Will be handled by load specialize phase or
370 * dynamically by interpreter.
371 */
372 return 0;
373 default:
374 ERR("Unknown reloc op type %u\n", op->op);
375 return -EINVAL;
376 }
377 return 0;
378 }
379
380 static
381 int bytecode_is_linked(struct lttng_ust_bytecode_node *bytecode,
382 struct cds_list_head *bytecode_runtime_head)
383 {
384 struct lttng_bytecode_runtime *bc_runtime;
385
386 cds_list_for_each_entry(bc_runtime, bytecode_runtime_head, node) {
387 if (bc_runtime->priv->bc == bytecode)
388 return 1;
389 }
390 return 0;
391 }
392
393 /*
394 * Take a bytecode with reloc table and link it to an event to create a
395 * bytecode runtime.
396 */
397 static
398 int link_bytecode(const struct lttng_event_desc *event_desc,
399 struct lttng_ctx **ctx,
400 struct lttng_ust_bytecode_node *bytecode,
401 struct cds_list_head *bytecode_runtime_head,
402 struct cds_list_head *insert_loc)
403 {
404 int ret, offset, next_offset;
405 struct bytecode_runtime *runtime = NULL;
406 struct lttng_ust_bytecode_runtime_private *runtime_priv = NULL;
407 size_t runtime_alloc_len;
408
409 if (!bytecode)
410 return 0;
411 /* Bytecode already linked */
412 if (bytecode_is_linked(bytecode, bytecode_runtime_head))
413 return 0;
414
415 dbg_printf("Linking...\n");
416
417 /* We don't need the reloc table in the runtime */
418 runtime_alloc_len = sizeof(*runtime) + bytecode->bc.reloc_offset;
419 runtime = zmalloc(runtime_alloc_len);
420 if (!runtime) {
421 ret = -ENOMEM;
422 goto alloc_error;
423 }
424 runtime_priv = zmalloc(sizeof(struct lttng_ust_bytecode_runtime_private));
425 if (!runtime_priv) {
426 free(runtime);
427 runtime = NULL;
428 ret = -ENOMEM;
429 goto alloc_error;
430 }
431 runtime->p.priv = runtime_priv;
432 runtime_priv->pub = runtime;
433 runtime_priv->bc = bytecode;
434 runtime_priv->pctx = ctx;
435 runtime->len = bytecode->bc.reloc_offset;
436 /* copy original bytecode */
437 memcpy(runtime->code, bytecode->bc.data, runtime->len);
438 /*
439 * apply relocs. Those are a uint16_t (offset in bytecode)
440 * followed by a string (field name).
441 */
442 for (offset = bytecode->bc.reloc_offset;
443 offset < bytecode->bc.len;
444 offset = next_offset) {
445 uint16_t reloc_offset =
446 *(uint16_t *) &bytecode->bc.data[offset];
447 const char *name =
448 (const char *) &bytecode->bc.data[offset + sizeof(uint16_t)];
449
450 ret = apply_reloc(event_desc, runtime, runtime->len, reloc_offset, name);
451 if (ret) {
452 goto link_error;
453 }
454 next_offset = offset + sizeof(uint16_t) + strlen(name) + 1;
455 }
456 /* Validate bytecode */
457 ret = lttng_bytecode_validate(runtime);
458 if (ret) {
459 goto link_error;
460 }
461 /* Specialize bytecode */
462 ret = lttng_bytecode_specialize(event_desc, runtime);
463 if (ret) {
464 goto link_error;
465 }
466
467 switch (bytecode->type) {
468 case LTTNG_UST_BYTECODE_NODE_TYPE_FILTER:
469 runtime->p.interpreter_funcs.filter = lttng_bytecode_filter_interpret;
470 break;
471 case LTTNG_UST_BYTECODE_NODE_TYPE_CAPTURE:
472 runtime->p.interpreter_funcs.capture = lttng_bytecode_capture_interpret;
473 break;
474 default:
475 abort();
476 }
477
478 runtime->p.priv->link_failed = 0;
479 cds_list_add_rcu(&runtime->p.node, insert_loc);
480 dbg_printf("Linking successful.\n");
481 return 0;
482
483 link_error:
484 switch (bytecode->type) {
485 case LTTNG_UST_BYTECODE_NODE_TYPE_FILTER:
486 runtime->p.interpreter_funcs.filter = lttng_bytecode_filter_interpret_false;
487 break;
488 case LTTNG_UST_BYTECODE_NODE_TYPE_CAPTURE:
489 runtime->p.interpreter_funcs.capture = lttng_bytecode_capture_interpret_false;
490 break;
491 default:
492 abort();
493 }
494
495 runtime_priv->link_failed = 1;
496 cds_list_add_rcu(&runtime->p.node, insert_loc);
497 alloc_error:
498 dbg_printf("Linking failed.\n");
499 return ret;
500 }
501
502 void lttng_bytecode_filter_sync_state(struct lttng_bytecode_runtime *runtime)
503 {
504 struct lttng_ust_bytecode_node *bc = runtime->priv->bc;
505
506 if (!bc->enabler->enabled || runtime->priv->link_failed)
507 runtime->interpreter_funcs.filter = lttng_bytecode_filter_interpret_false;
508 else
509 runtime->interpreter_funcs.filter = lttng_bytecode_filter_interpret;
510 }
511
512 void lttng_bytecode_capture_sync_state(struct lttng_bytecode_runtime *runtime)
513 {
514 struct lttng_ust_bytecode_node *bc = runtime->priv->bc;
515
516 if (!bc->enabler->enabled || runtime->priv->link_failed)
517 runtime->interpreter_funcs.capture = lttng_bytecode_capture_interpret_false;
518 else
519 runtime->interpreter_funcs.capture = lttng_bytecode_capture_interpret;
520 }
521
522 /*
523 * Given the lists of bytecode programs of an instance (trigger or event) and
524 * of a matching enabler, try to link all the enabler's bytecode programs with
525 * the instance.
526 *
527 * This function is called after we confirmed that name enabler and the
528 * instance are name matching (or glob pattern matching).
529 */
530 void lttng_enabler_link_bytecode(const struct lttng_event_desc *event_desc,
531 struct lttng_ctx **ctx,
532 struct cds_list_head *instance_bytecode_head,
533 struct cds_list_head *enabler_bytecode_head)
534 {
535 struct lttng_ust_bytecode_node *enabler_bc;
536 struct lttng_bytecode_runtime *runtime;
537
538 assert(event_desc);
539
540 /* Go over all the bytecode programs of the enabler. */
541 cds_list_for_each_entry(enabler_bc, enabler_bytecode_head, node) {
542 int found = 0, ret;
543 struct cds_list_head *insert_loc;
544
545 /*
546 * Check if the current enabler bytecode program is already
547 * linked with the instance.
548 */
549 cds_list_for_each_entry(runtime, instance_bytecode_head, node) {
550 if (runtime->priv->bc == enabler_bc) {
551 found = 1;
552 break;
553 }
554 }
555
556 /*
557 * Skip bytecode already linked, go to the next enabler
558 * bytecode program.
559 */
560 if (found)
561 continue;
562
563 /*
564 * Insert at specified priority (seqnum) in increasing
565 * order. If there already is a bytecode of the same priority,
566 * insert the new bytecode right after it.
567 */
568 cds_list_for_each_entry_reverse(runtime,
569 instance_bytecode_head, node) {
570 if (runtime->priv->bc->bc.seqnum <= enabler_bc->bc.seqnum) {
571 /* insert here */
572 insert_loc = &runtime->node;
573 goto add_within;
574 }
575 }
576
577 /* Add to head to list */
578 insert_loc = instance_bytecode_head;
579 add_within:
580 dbg_printf("linking bytecode\n");
581 ret = link_bytecode(event_desc, ctx, enabler_bc, instance_bytecode_head, insert_loc);
582 if (ret) {
583 dbg_printf("[lttng filter] warning: cannot link event bytecode\n");
584 }
585 }
586 }
587
588 /*
589 * We own the bytecode if we return success.
590 */
591 int lttng_filter_enabler_attach_bytecode(struct lttng_enabler *enabler,
592 struct lttng_ust_bytecode_node *bytecode)
593 {
594 cds_list_add(&bytecode->node, &enabler->filter_bytecode_head);
595 return 0;
596 }
597
598 static
599 void free_filter_runtime(struct cds_list_head *bytecode_runtime_head)
600 {
601 struct bytecode_runtime *runtime, *tmp;
602
603 cds_list_for_each_entry_safe(runtime, tmp, bytecode_runtime_head,
604 p.node) {
605 free(runtime->data);
606 free(runtime->p.priv);
607 free(runtime);
608 }
609 }
610
611 void lttng_free_event_recorder_filter_runtime(struct lttng_ust_event_recorder *event_recorder)
612 {
613 free_filter_runtime(&event_recorder->parent->filter_bytecode_runtime_head);
614 }
615
616 void lttng_free_event_notifier_filter_runtime(
617 struct lttng_event_notifier *event_notifier)
618 {
619 free_filter_runtime(&event_notifier->filter_bytecode_runtime_head);
620 }
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