Rename: field type -> field class
[babeltrace.git] / tests / lib / test_trace_ir_ref.c
CommitLineData
c9b3f44b 1/*
108b91d0 2 * test_trace_ir_ref.c
c9b3f44b 3 *
108b91d0 4 * Trace IR Reference Count test
c9b3f44b
JG
5 *
6 * Copyright 2016 - Jérémie Galarneau <jeremie.galarneau@efficios.com>
7 *
8 * This program is free software; you can redistribute it and/or modify
9 * it under the terms of the GNU General Public License as published by
10 * the Free Software Foundation; under version 2 of the License.
11 *
12 * This program is distributed in the hope that it will be useful,
13 * but WITHOUT ANY WARRANTY; without even the implied warranty of
14 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
15 * GNU General Public License for more details.
16 *
17 * You should have received a copy of the GNU General Public License along
18 * with this program; if not, write to the Free Software Foundation, Inc.,
19 * 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA.
20 */
21
22#include "tap/tap.h"
6271743c 23#include <babeltrace/ctf-writer/clock.h>
8deee039
PP
24#include <babeltrace/ctf-writer/event.h>
25#include <babeltrace/ctf-writer/fields.h>
6271743c 26#include <babeltrace/ctf-writer/stream-class.h>
8deee039
PP
27#include <babeltrace/ctf-writer/stream.h>
28#include <babeltrace/ctf-writer/trace.h>
29#include <babeltrace/ctf-writer/writer.h>
108b91d0
PP
30#include <babeltrace/trace-ir/clock-class.h>
31#include <babeltrace/trace-ir/event.h>
32#include <babeltrace/trace-ir/event-class.h>
33#include <babeltrace/trace-ir/fields.h>
34#include <babeltrace/trace-ir/stream-class.h>
35#include <babeltrace/trace-ir/stream.h>
36#include <babeltrace/trace-ir/trace.h>
c9b3f44b 37#include <babeltrace/object-internal.h>
3d9990ac 38#include <babeltrace/compat/stdlib-internal.h>
b8f13b8b 39#include <babeltrace/assert-internal.h>
851299b9 40#include "common.h"
c9b3f44b 41
7b33a0e0 42#define NR_TESTS 37
8bbe269d 43
c9b3f44b 44struct user {
839d52a5
PP
45 struct bt_trace *tc;
46 struct bt_stream_class *sc;
47 struct bt_event_class *ec;
48 struct bt_stream *stream;
49 struct bt_event *event;
c9b3f44b
JG
50};
51
8deee039
PP
52struct writer_user {
53 struct bt_ctf_writer *writer;
54 struct bt_ctf_trace *tc;
55 struct bt_ctf_stream_class *sc;
56 struct bt_ctf_event_class *ec;
57 struct bt_ctf_stream *stream;
58 struct bt_ctf_event *event;
59};
60
61const char *writer_user_names[] = {
6271743c
PP
62 "writer",
63 "trace",
64 "stream class",
65 "event class",
66 "stream",
67 "event",
68};
69
8deee039
PP
70static const size_t WRITER_USER_NR_ELEMENTS =
71 sizeof(struct writer_user) / sizeof(void *);
6271743c 72
c9b3f44b
JG
73/**
74 * Returns a structure containing the following fields:
75 * - uint8_t payload_8;
76 * - uint16_t payload_16;
77 * - uint32_t payload_32;
78 */
939190b3 79static struct bt_field_class *create_integer_struct(void)
c9b3f44b
JG
80{
81 int ret;
939190b3
PP
82 struct bt_field_class *structure = NULL;
83 struct bt_field_class *ui8 = NULL, *ui16 = NULL, *ui32 = NULL;
c9b3f44b 84
939190b3 85 structure = bt_field_class_structure_create();
7b33a0e0 86 BT_ASSERT(structure);
939190b3 87 ui8 = bt_field_class_unsigned_integer_create();
7b33a0e0 88 BT_ASSERT(ui8);
939190b3 89 ret = bt_field_class_integer_set_field_value_range(ui8, 8);
7b33a0e0 90 BT_ASSERT(ret == 0);
939190b3 91 ret = bt_field_class_structure_append_member(structure,
7b33a0e0
PP
92 "payload_8", ui8);
93 BT_ASSERT(ret == 0);
939190b3 94 ui16 = bt_field_class_unsigned_integer_create();
7b33a0e0 95 BT_ASSERT(ui16);
939190b3 96 ret = bt_field_class_integer_set_field_value_range(ui16, 16);
7b33a0e0 97 BT_ASSERT(ret == 0);
939190b3 98 ret = bt_field_class_structure_append_member(structure,
7b33a0e0
PP
99 "payload_16", ui16);
100 BT_ASSERT(ret == 0);
939190b3 101 ui32 = bt_field_class_unsigned_integer_create();
7b33a0e0 102 BT_ASSERT(ui32);
939190b3 103 ret = bt_field_class_integer_set_field_value_range(ui32, 32);
7b33a0e0 104 BT_ASSERT(ret == 0);
939190b3 105 ret = bt_field_class_structure_append_member(structure,
7b33a0e0
PP
106 "payload_32", ui32);
107 BT_ASSERT(ret == 0);
c9b3f44b
JG
108 BT_PUT(ui8);
109 BT_PUT(ui16);
110 BT_PUT(ui32);
111 return structure;
c9b3f44b
JG
112}
113
8deee039
PP
114static struct bt_ctf_field_type *create_writer_integer_struct(void)
115{
116 int ret;
117 struct bt_ctf_field_type *structure = NULL;
118 struct bt_ctf_field_type *ui8 = NULL, *ui16 = NULL, *ui32 = NULL;
119
120 structure = bt_ctf_field_type_structure_create();
7b33a0e0 121 BT_ASSERT(structure);
8deee039 122 ui8 = bt_ctf_field_type_integer_create(8);
7b33a0e0 123 BT_ASSERT(ui8);
8deee039
PP
124 ret = bt_ctf_field_type_structure_add_field(structure, ui8,
125 "payload_8");
7b33a0e0 126 BT_ASSERT(ret == 0);
8deee039 127 ui16 = bt_ctf_field_type_integer_create(16);
7b33a0e0 128 BT_ASSERT(ui16);
8deee039
PP
129 ret = bt_ctf_field_type_structure_add_field(structure, ui16,
130 "payload_16");
7b33a0e0 131 BT_ASSERT(ret == 0);
8deee039 132 ui32 = bt_ctf_field_type_integer_create(32);
7b33a0e0 133 BT_ASSERT(ui32);
8deee039
PP
134 ret = bt_ctf_field_type_structure_add_field(structure, ui32,
135 "payload_32");
7b33a0e0 136 BT_ASSERT(ret == 0);
8deee039
PP
137 BT_PUT(ui8);
138 BT_PUT(ui16);
139 BT_PUT(ui32);
140 return structure;
8deee039
PP
141}
142
c9b3f44b
JG
143/**
144 * A simple event has the following payload:
145 * - uint8_t payload_8;
146 * - uint16_t payload_16;
147 * - uint32_t payload_32;
148 */
7b33a0e0
PP
149static struct bt_event_class *create_simple_event(struct bt_stream_class *sc,
150 const char *name)
c9b3f44b
JG
151{
152 int ret;
839d52a5 153 struct bt_event_class *event = NULL;
939190b3 154 struct bt_field_class *payload = NULL;
c9b3f44b 155
b8f13b8b 156 BT_ASSERT(name);
7b33a0e0
PP
157 event = bt_event_class_create(sc);
158 BT_ASSERT(event);
159 ret = bt_event_class_set_name(event, name);
160 BT_ASSERT(ret == 0);
c9b3f44b 161 payload = create_integer_struct();
7b33a0e0 162 BT_ASSERT(payload);
939190b3 163 ret = bt_event_class_set_payload_field_class(event, payload);
7b33a0e0 164 BT_ASSERT(ret == 0);
c9b3f44b
JG
165 BT_PUT(payload);
166 return event;
c9b3f44b
JG
167}
168
169/**
170 * A complex event has the following payload:
171 * - uint8_t payload_8;
172 * - uint16_t payload_16;
173 * - uint32_t payload_32;
174 * - struct payload_struct:
175 * - uint8_t payload_8;
176 * - uint16_t payload_16;
177 * - uint32_t payload_32;
178 */
7b33a0e0
PP
179static struct bt_event_class *create_complex_event(struct bt_stream_class *sc,
180 const char *name)
c9b3f44b
JG
181{
182 int ret;
839d52a5 183 struct bt_event_class *event = NULL;
939190b3 184 struct bt_field_class *inner = NULL, *outer = NULL;
c9b3f44b 185
b8f13b8b 186 BT_ASSERT(name);
7b33a0e0
PP
187 event = bt_event_class_create(sc);
188 BT_ASSERT(event);
189 ret = bt_event_class_set_name(event, name);
190 BT_ASSERT(ret == 0);
27f4d205 191 outer = create_integer_struct();
7b33a0e0 192 BT_ASSERT(outer);
27f4d205 193 inner = create_integer_struct();
7b33a0e0 194 BT_ASSERT(inner);
939190b3 195 ret = bt_field_class_structure_append_member(outer,
7b33a0e0
PP
196 "payload_struct", inner);
197 BT_ASSERT(ret == 0);
939190b3 198 ret = bt_event_class_set_payload_field_class(event, outer);
7b33a0e0 199 BT_ASSERT(ret == 0);
c9b3f44b
JG
200 BT_PUT(inner);
201 BT_PUT(outer);
202 return event;
c9b3f44b
JG
203}
204
939190b3 205static void set_stream_class_field_classes(
839d52a5 206 struct bt_stream_class *stream_class)
da1cc671 207{
939190b3
PP
208 struct bt_field_class *packet_context_type;
209 struct bt_field_class *event_header_type;
210 struct bt_field_class *fc;
da1cc671
PP
211 int ret;
212
939190b3 213 packet_context_type = bt_field_class_structure_create();
b8f13b8b 214 BT_ASSERT(packet_context_type);
939190b3
PP
215 fc = bt_field_class_unsigned_integer_create();
216 BT_ASSERT(fc);
217 ret = bt_field_class_integer_set_field_value_range(fc, 32);
7b33a0e0 218 BT_ASSERT(ret == 0);
939190b3
PP
219 ret = bt_field_class_structure_append_member(packet_context_type,
220 "packet_size", fc);
b8f13b8b 221 BT_ASSERT(ret == 0);
939190b3
PP
222 bt_put(fc);
223 fc = bt_field_class_unsigned_integer_create();
224 BT_ASSERT(fc);
225 ret = bt_field_class_integer_set_field_value_range(fc, 32);
7b33a0e0 226 BT_ASSERT(ret == 0);
939190b3
PP
227 ret = bt_field_class_structure_append_member(packet_context_type,
228 "content_size", fc);
b8f13b8b 229 BT_ASSERT(ret == 0);
939190b3
PP
230 bt_put(fc);
231 event_header_type = bt_field_class_structure_create();
b8f13b8b 232 BT_ASSERT(event_header_type);
939190b3
PP
233 fc = bt_field_class_unsigned_integer_create();
234 BT_ASSERT(fc);
235 ret = bt_field_class_integer_set_field_value_range(fc, 32);
7b33a0e0 236 BT_ASSERT(ret == 0);
939190b3
PP
237 ret = bt_field_class_structure_append_member(event_header_type,
238 "id", fc);
b8f13b8b 239 BT_ASSERT(ret == 0);
939190b3
PP
240 bt_put(fc);
241 ret = bt_stream_class_set_packet_context_field_class(stream_class,
da1cc671 242 packet_context_type);
b8f13b8b 243 BT_ASSERT(ret == 0);
939190b3 244 ret = bt_stream_class_set_event_header_field_class(stream_class,
da1cc671 245 event_header_type);
b8f13b8b 246 BT_ASSERT(ret == 0);
da1cc671
PP
247 bt_put(packet_context_type);
248 bt_put(event_header_type);
249}
250
7b33a0e0 251static void create_sc1(struct bt_trace *trace)
c9b3f44b
JG
252{
253 int ret;
839d52a5
PP
254 struct bt_event_class *ec1 = NULL, *ec2 = NULL;
255 struct bt_stream_class *sc1 = NULL, *ret_stream = NULL;
c9b3f44b 256
7b33a0e0
PP
257 sc1 = bt_stream_class_create(trace);
258 BT_ASSERT(sc1);
259 ret = bt_stream_class_set_name(sc1, "sc1");
260 BT_ASSERT(ret == 0);
939190b3 261 set_stream_class_field_classes(sc1);
7b33a0e0
PP
262 ec1 = create_complex_event(sc1, "ec1");
263 BT_ASSERT(ec1);
264 ec2 = create_simple_event(sc1, "ec2");
265 BT_ASSERT(ec2);
266 ret_stream = bt_event_class_borrow_stream_class(ec1);
267 ok(ret_stream == sc1, "Borrow parent stream SC1 from EC1");
268 ret_stream = bt_event_class_borrow_stream_class(ec2);
269 ok(ret_stream == sc1, "Borrow parent stream SC1 from EC2");
c9b3f44b
JG
270 BT_PUT(ec1);
271 BT_PUT(ec2);
c9b3f44b 272 BT_PUT(sc1);
c9b3f44b
JG
273}
274
7b33a0e0 275static void create_sc2(struct bt_trace *trace)
c9b3f44b
JG
276{
277 int ret;
839d52a5
PP
278 struct bt_event_class *ec3 = NULL;
279 struct bt_stream_class *sc2 = NULL, *ret_stream = NULL;
c9b3f44b 280
7b33a0e0
PP
281 sc2 = bt_stream_class_create(trace);
282 BT_ASSERT(sc2);
283 ret = bt_stream_class_set_name(sc2, "sc2");
284 BT_ASSERT(ret == 0);
939190b3 285 set_stream_class_field_classes(sc2);
7b33a0e0
PP
286 ec3 = create_simple_event(sc2, "ec3");
287 ret_stream = bt_event_class_borrow_stream_class(ec3);
288 ok(ret_stream == sc2, "Borrow parent stream SC2 from EC3");
c9b3f44b 289 BT_PUT(ec3);
c9b3f44b 290 BT_PUT(sc2);
c9b3f44b
JG
291}
292
839d52a5 293static void set_trace_packet_header(struct bt_trace *trace)
da1cc671 294{
939190b3
PP
295 struct bt_field_class *packet_header_type;
296 struct bt_field_class *fc;
da1cc671
PP
297 int ret;
298
939190b3 299 packet_header_type = bt_field_class_structure_create();
b8f13b8b 300 BT_ASSERT(packet_header_type);
939190b3
PP
301 fc = bt_field_class_unsigned_integer_create();
302 BT_ASSERT(fc);
303 ret = bt_field_class_integer_set_field_value_range(fc, 32);
7b33a0e0 304 BT_ASSERT(ret == 0);
939190b3
PP
305 ret = bt_field_class_structure_append_member(packet_header_type,
306 "stream_id", fc);
b8f13b8b 307 BT_ASSERT(ret == 0);
939190b3
PP
308 bt_put(fc);
309 ret = bt_trace_set_packet_header_field_class(trace,
da1cc671 310 packet_header_type);
b8f13b8b 311 BT_ASSERT(ret == 0);
da1cc671
PP
312
313 bt_put(packet_header_type);
314}
315
839d52a5 316static struct bt_trace *create_tc1(void)
c9b3f44b 317{
839d52a5 318 struct bt_trace *tc1 = NULL;
c9b3f44b 319
839d52a5 320 tc1 = bt_trace_create();
7b33a0e0 321 BT_ASSERT(tc1);
da1cc671 322 set_trace_packet_header(tc1);
7b33a0e0
PP
323 create_sc1(tc1);
324 create_sc2(tc1);
c9b3f44b 325 return tc1;
c9b3f44b
JG
326}
327
839d52a5
PP
328static void init_weak_refs(struct bt_trace *tc,
329 struct bt_trace **tc1,
330 struct bt_stream_class **sc1,
331 struct bt_stream_class **sc2,
332 struct bt_event_class **ec1,
333 struct bt_event_class **ec2,
334 struct bt_event_class **ec3)
c9b3f44b
JG
335{
336 *tc1 = tc;
7b33a0e0
PP
337 *sc1 = bt_trace_borrow_stream_class_by_index(tc, 0);
338 *sc2 = bt_trace_borrow_stream_class_by_index(tc, 1);
339 *ec1 = bt_stream_class_borrow_event_class_by_index(*sc1, 0);
340 *ec2 = bt_stream_class_borrow_event_class_by_index(*sc1, 1);
341 *ec3 = bt_stream_class_borrow_event_class_by_index(*sc2, 0);
c9b3f44b
JG
342}
343
6271743c 344static void test_example_scenario(void)
c9b3f44b 345{
108b91d0
PP
346 /*
347 * Weak pointers to trace IR objects are to be used very
348 * carefully. This is NOT a good practice and is strongly
349 * discouraged; this is only done to facilitate the validation
350 * of expected reference counts without affecting them by taking
351 * "real" references to the objects.
c9b3f44b 352 */
839d52a5
PP
353 struct bt_trace *tc1 = NULL, *weak_tc1 = NULL;
354 struct bt_stream_class *weak_sc1 = NULL, *weak_sc2 = NULL;
355 struct bt_event_class *weak_ec1 = NULL, *weak_ec2 = NULL,
c9b3f44b
JG
356 *weak_ec3 = NULL;
357 struct user user_a = { 0 }, user_b = { 0 }, user_c = { 0 };
358
359 /* The only reference which exists at this point is on TC1. */
360 tc1 = create_tc1();
27f4d205 361 ok(tc1, "Initialize trace");
7b33a0e0 362 BT_ASSERT(tc1);
c9b3f44b
JG
363 init_weak_refs(tc1, &weak_tc1, &weak_sc1, &weak_sc2, &weak_ec1,
364 &weak_ec2, &weak_ec3);
1d7bf349 365 ok(bt_object_get_ref_count((void *) weak_sc1) == 0,
c9b3f44b 366 "Initial SC1 reference count is 0");
1d7bf349 367 ok(bt_object_get_ref_count((void *) weak_sc2) == 0,
c9b3f44b 368 "Initial SC2 reference count is 0");
1d7bf349 369 ok(bt_object_get_ref_count((void *) weak_ec1) == 0,
c9b3f44b 370 "Initial EC1 reference count is 0");
1d7bf349 371 ok(bt_object_get_ref_count((void *) weak_ec2) == 0,
c9b3f44b 372 "Initial EC2 reference count is 0");
1d7bf349 373 ok(bt_object_get_ref_count((void *) weak_ec3) == 0,
c9b3f44b
JG
374 "Initial EC3 reference count is 0");
375
376 /* User A has ownership of the trace. */
377 BT_MOVE(user_a.tc, tc1);
1d7bf349 378 ok(bt_object_get_ref_count((void *) user_a.tc) == 1,
c9b3f44b
JG
379 "TC1 reference count is 1");
380
381 /* User A acquires a reference to SC2 from TC1. */
7b33a0e0 382 user_a.sc = bt_get(bt_trace_borrow_stream_class_by_index(user_a.tc, 1));
c9b3f44b 383 ok(user_a.sc, "User A acquires SC2 from TC1");
1d7bf349 384 ok(bt_object_get_ref_count((void *) weak_tc1) == 2,
c9b3f44b 385 "TC1 reference count is 2");
1d7bf349 386 ok(bt_object_get_ref_count((void *) weak_sc2) == 1,
c9b3f44b
JG
387 "SC2 reference count is 1");
388
389 /* User A acquires a reference to EC3 from SC2. */
7b33a0e0
PP
390 user_a.ec = bt_get(
391 bt_stream_class_borrow_event_class_by_index(user_a.sc, 0));
c9b3f44b 392 ok(user_a.ec, "User A acquires EC3 from SC2");
1d7bf349 393 ok(bt_object_get_ref_count((void *) weak_tc1) == 2,
c9b3f44b 394 "TC1 reference count is 2");
1d7bf349 395 ok(bt_object_get_ref_count((void *) weak_sc2) == 2,
c9b3f44b 396 "SC2 reference count is 2");
1d7bf349 397 ok(bt_object_get_ref_count((void *) weak_ec3) == 1,
c9b3f44b
JG
398 "EC3 reference count is 1");
399
400 /* User A releases its reference to SC2. */
401 diag("User A releases SC2");
402 BT_PUT(user_a.sc);
403 /*
404 * We keep the pointer to SC2 around to validate its reference
405 * count.
406 */
1d7bf349 407 ok(bt_object_get_ref_count((void *) weak_tc1) == 2,
c9b3f44b 408 "TC1 reference count is 2");
1d7bf349 409 ok(bt_object_get_ref_count((void *) weak_sc2) == 1,
c9b3f44b 410 "SC2 reference count is 1");
1d7bf349 411 ok(bt_object_get_ref_count((void *) weak_ec3) == 1,
c9b3f44b
JG
412 "EC3 reference count is 1");
413
414 /* User A releases its reference to TC1. */
415 diag("User A releases TC1");
27f4d205 416 BT_PUT(user_a.tc);
c9b3f44b
JG
417 /*
418 * We keep the pointer to TC1 around to validate its reference
419 * count.
420 */
1d7bf349 421 ok(bt_object_get_ref_count((void *) weak_tc1) == 1,
c9b3f44b 422 "TC1 reference count is 1");
1d7bf349 423 ok(bt_object_get_ref_count((void *) weak_sc2) == 1,
c9b3f44b 424 "SC2 reference count is 1");
1d7bf349 425 ok(bt_object_get_ref_count((void *) weak_ec3) == 1,
c9b3f44b
JG
426 "EC3 reference count is 1");
427
428 /* User B acquires a reference to SC1. */
429 diag("User B acquires a reference to SC1");
430 user_b.sc = bt_get(weak_sc1);
1d7bf349 431 ok(bt_object_get_ref_count((void *) weak_tc1) == 2,
c9b3f44b 432 "TC1 reference count is 2");
1d7bf349 433 ok(bt_object_get_ref_count((void *) weak_sc1) == 1,
c9b3f44b
JG
434 "SC1 reference count is 1");
435
436 /* User C acquires a reference to EC1. */
437 diag("User C acquires a reference to EC1");
7b33a0e0
PP
438 user_c.ec = bt_get(
439 bt_stream_class_borrow_event_class_by_index(user_b.sc, 0));
1d7bf349 440 ok(bt_object_get_ref_count((void *) weak_ec1) == 1,
c9b3f44b 441 "EC1 reference count is 1");
1d7bf349 442 ok(bt_object_get_ref_count((void *) weak_sc1) == 2,
c9b3f44b
JG
443 "SC1 reference count is 2");
444
445 /* User A releases its reference on EC3. */
446 diag("User A releases its reference on EC3");
447 BT_PUT(user_a.ec);
1d7bf349 448 ok(bt_object_get_ref_count((void *) weak_ec3) == 0,
c9b3f44b 449 "EC3 reference count is 1");
1d7bf349 450 ok(bt_object_get_ref_count((void *) weak_sc2) == 0,
c9b3f44b 451 "SC2 reference count is 0");
1d7bf349 452 ok(bt_object_get_ref_count((void *) weak_tc1) == 1,
c9b3f44b
JG
453 "TC1 reference count is 1");
454
455 /* User B releases its reference on SC1. */
456 diag("User B releases its reference on SC1");
457 BT_PUT(user_b.sc);
1d7bf349 458 ok(bt_object_get_ref_count((void *) weak_sc1) == 1,
c9b3f44b
JG
459 "SC1 reference count is 1");
460
461 /*
462 * User C is the sole owner of an object and is keeping the whole
463 * trace hierarchy "alive" by holding a reference to EC1.
464 */
1d7bf349 465 ok(bt_object_get_ref_count((void *) weak_tc1) == 1,
c9b3f44b 466 "TC1 reference count is 1");
1d7bf349 467 ok(bt_object_get_ref_count((void *) weak_sc1) == 1,
c9b3f44b 468 "SC1 reference count is 1");
1d7bf349 469 ok(bt_object_get_ref_count((void *) weak_sc2) == 0,
c9b3f44b 470 "SC2 reference count is 0");
1d7bf349 471 ok(bt_object_get_ref_count((void *) weak_ec1) == 1,
c9b3f44b 472 "EC1 reference count is 1");
1d7bf349 473 ok(bt_object_get_ref_count((void *) weak_ec2) == 0,
c9b3f44b 474 "EC2 reference count is 0");
1d7bf349 475 ok(bt_object_get_ref_count((void *) weak_ec3) == 0,
c9b3f44b
JG
476 "EC3 reference count is 0");
477
478 /* Reclaim last reference held by User C. */
479 BT_PUT(user_c.ec);
6271743c
PP
480}
481
8deee039 482static void create_writer_user_full(struct writer_user *user)
6271743c 483{
9d6b510b 484 gchar *trace_path;
8deee039
PP
485 struct bt_ctf_field_type *ft;
486 struct bt_ctf_field *field;
6271743c
PP
487 struct bt_ctf_clock *clock;
488 int ret;
489
9d6b510b 490 trace_path = g_build_filename(g_get_tmp_dir(), "ctfwriter_XXXXXX", NULL);
6271743c
PP
491 if (!bt_mkdtemp(trace_path)) {
492 perror("# perror");
493 }
494
495 user->writer = bt_ctf_writer_create(trace_path);
b8f13b8b 496 BT_ASSERT(user->writer);
dc3fffef 497 ret = bt_ctf_writer_set_byte_order(user->writer,
8deee039 498 BT_CTF_BYTE_ORDER_LITTLE_ENDIAN);
b8f13b8b 499 BT_ASSERT(ret == 0);
6271743c 500 user->tc = bt_ctf_writer_get_trace(user->writer);
b8f13b8b 501 BT_ASSERT(user->tc);
8deee039 502 user->sc = bt_ctf_stream_class_create("sc");
b8f13b8b 503 BT_ASSERT(user->sc);
6271743c 504 clock = bt_ctf_clock_create("the_clock");
b8f13b8b 505 BT_ASSERT(clock);
81582b6b 506 ret = bt_ctf_writer_add_clock(user->writer, clock);
b8f13b8b 507 BT_ASSERT(!ret);
8deee039 508 ret = bt_ctf_stream_class_set_clock(user->sc, clock);
b8f13b8b 509 BT_ASSERT(!ret);
dc3fffef 510 BT_PUT(clock);
6271743c 511 user->stream = bt_ctf_writer_create_stream(user->writer, user->sc);
b8f13b8b 512 BT_ASSERT(user->stream);
8deee039 513 user->ec = bt_ctf_event_class_create("ec");
b8f13b8b 514 BT_ASSERT(user->ec);
8deee039 515 ft = create_writer_integer_struct();
b8f13b8b 516 BT_ASSERT(ft);
8deee039 517 ret = bt_ctf_event_class_set_payload_field_type(user->ec, ft);
6271743c 518 BT_PUT(ft);
b8f13b8b 519 BT_ASSERT(!ret);
8deee039 520 ret = bt_ctf_stream_class_add_event_class(user->sc, user->ec);
b8f13b8b 521 BT_ASSERT(!ret);
8deee039 522 user->event = bt_ctf_event_create(user->ec);
b8f13b8b 523 BT_ASSERT(user->event);
8deee039 524 field = bt_ctf_event_get_payload(user->event, "payload_8");
b8f13b8b 525 BT_ASSERT(field);
8deee039 526 ret = bt_ctf_field_integer_unsigned_set_value(field, 10);
b8f13b8b 527 BT_ASSERT(!ret);
6271743c 528 BT_PUT(field);
8deee039 529 field = bt_ctf_event_get_payload(user->event, "payload_16");
b8f13b8b 530 BT_ASSERT(field);
8deee039 531 ret = bt_ctf_field_integer_unsigned_set_value(field, 20);
b8f13b8b 532 BT_ASSERT(!ret);
6271743c 533 BT_PUT(field);
8deee039 534 field = bt_ctf_event_get_payload(user->event, "payload_32");
b8f13b8b 535 BT_ASSERT(field);
8deee039 536 ret = bt_ctf_field_integer_unsigned_set_value(field, 30);
b8f13b8b 537 BT_ASSERT(!ret);
6271743c 538 BT_PUT(field);
8deee039 539 ret = bt_ctf_stream_append_event(user->stream, user->event);
b8f13b8b 540 BT_ASSERT(!ret);
851299b9 541 recursive_rmdir(trace_path);
9d6b510b 542 g_free(trace_path);
6271743c
PP
543}
544
545static void test_put_order_swap(size_t *array, size_t a, size_t b)
546{
547 size_t temp = array[a];
548
549 array[a] = array[b];
550 array[b] = temp;
551}
552
553static void test_put_order_put_objects(size_t *array, size_t size)
554{
555 size_t i;
8deee039 556 struct writer_user user = { 0 };
6f2097e2 557 void **objects = (void *) &user;
6271743c 558
8deee039 559 create_writer_user_full(&user);
6271743c
PP
560 printf("# ");
561
562 for (i = 0; i < size; ++i) {
6f2097e2 563 void *obj = objects[array[i]];
6271743c 564
8deee039 565 printf("%s", writer_user_names[array[i]]);
6271743c
PP
566 BT_PUT(obj);
567
568 if (i < size - 1) {
569 printf(" -> ");
570 }
571 }
572
573 puts("");
574}
575
576static void test_put_order_permute(size_t *array, int k, size_t size)
577{
578 if (k == 0) {
579 test_put_order_put_objects(array, size);
580 } else {
581 int i;
582
583 for (i = k - 1; i >= 0; i--) {
584 size_t next_k = k - 1;
585
586 test_put_order_swap(array, i, next_k);
587 test_put_order_permute(array, next_k, size);
588 test_put_order_swap(array, i, next_k);
589 }
590 }
591}
592
593static void test_put_order(void)
594{
595 size_t i;
8deee039 596 size_t array[WRITER_USER_NR_ELEMENTS];
6271743c
PP
597
598 /* Initialize array of indexes */
8deee039 599 for (i = 0; i < WRITER_USER_NR_ELEMENTS; ++i) {
6271743c
PP
600 array[i] = i;
601 }
602
8deee039
PP
603 test_put_order_permute(array, WRITER_USER_NR_ELEMENTS,
604 WRITER_USER_NR_ELEMENTS);
6271743c
PP
605}
606
607/**
608 * The objective of this test is to implement and expand upon the scenario
609 * described in the reference counting documentation and ensure that any node of
610 * the Trace, Stream Class, Event Class, Stream and Event hiearchy keeps all
611 * other "alive" and reachable.
612 *
613 * External tools (e.g. valgrind) should be used to confirm that this
614 * known-good test does not leak memory.
615 */
616int main(int argc, char **argv)
617{
27f4d205 618 /* Initialize tap harness before any tests */
6271743c
PP
619 plan_tests(NR_TESTS);
620
621 test_example_scenario();
622 test_put_order();
623
c9b3f44b
JG
624 return exit_status();
625}
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