lib: rename `bt_object_{get,put}_no` -> `bt_object_{get,put}_ref_no`
[babeltrace.git] / src / lib / trace-ir / clock-class.c
CommitLineData
273b65be 1/*
f2b0325d 2 * Copyright 2017-2018 Philippe Proulx <pproulx@efficios.com>
de9dd397 3 * Copyright 2013, 2014 Jérémie Galarneau <jeremie.galarneau@efficios.com>
273b65be
JG
4 *
5 * Permission is hereby granted, free of charge, to any person obtaining a copy
6 * of this software and associated documentation files (the "Software"), to deal
7 * in the Software without restriction, including without limitation the rights
8 * to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
9 * copies of the Software, and to permit persons to whom the Software is
10 * furnished to do so, subject to the following conditions:
11 *
12 * The above copyright notice and this permission notice shall be included in
13 * all copies or substantial portions of the Software.
14 *
15 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
16 * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
17 * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
18 * AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
19 * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
20 * OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
21 * SOFTWARE.
22 */
23
b03487ab 24#define BT_LOG_TAG "LIB/CLOCK-CLASS"
1633ef46 25#include "lib/logging.h"
0f5e83e5 26
57952005 27#include "lib/assert-pre.h"
d126826c 28#include "common/uuid.h"
71c5da58
MJ
29#include <babeltrace2/trace-ir/clock-class-const.h>
30#include <babeltrace2/trace-ir/clock-class.h>
57952005
MJ
31#include "clock-class.h"
32#include "clock-snapshot.h"
33#include "utils.h"
34#include "compat/compiler.h"
71c5da58 35#include <babeltrace2/types.h>
57952005 36#include "compat/string.h"
273b65be 37#include <inttypes.h>
57952005
MJ
38#include "lib/object.h"
39#include "common/assert.h"
fb25b9e3 40#include "lib/func-status.h"
af90138b 41#include "lib/value.h"
5134570b 42
fa6cfec3
PP
43#define BT_ASSERT_PRE_DEV_CLOCK_CLASS_HOT(_cc) \
44 BT_ASSERT_PRE_DEV_HOT((_cc), "Clock class", ": %!+K", (_cc))
a6918753
PP
45
46static
7b33a0e0 47void destroy_clock_class(struct bt_object *obj)
c06116f3 48{
7b33a0e0 49 struct bt_clock_class *clock_class = (void *) obj;
c06116f3 50
7b33a0e0 51 BT_LIB_LOGD("Destroying clock class: %!+K", clock_class);
af90138b 52 BT_OBJECT_PUT_REF_AND_RESET(clock_class->user_attributes);
273b65be 53
7b33a0e0
PP
54 if (clock_class->name.str) {
55 g_string_free(clock_class->name.str, TRUE);
1248f5ea
PP
56 clock_class->name.str = NULL;
57 clock_class->name.value = NULL;
5134570b
PP
58 }
59
7b33a0e0
PP
60 if (clock_class->description.str) {
61 g_string_free(clock_class->description.str, TRUE);
1248f5ea
PP
62 clock_class->description.str = NULL;
63 clock_class->description.value = NULL;
273b65be
JG
64 }
65
ecbb78c0 66 bt_object_pool_finalize(&clock_class->cs_pool);
7b33a0e0 67 g_free(clock_class);
4c426c17
JG
68}
69
15260cc8 70static
ecbb78c0 71void free_clock_snapshot(struct bt_clock_snapshot *clock_snapshot,
7b33a0e0 72 struct bt_clock_class *clock_class)
15260cc8 73{
ecbb78c0 74 bt_clock_snapshot_destroy(clock_snapshot);
15260cc8
PP
75}
76
7b33a0e0
PP
77static inline
78void set_base_offset(struct bt_clock_class *clock_class)
a6918753 79{
35fa110e
PP
80 clock_class->base_offset.overflows = bt_util_get_base_offset_ns(
81 clock_class->offset_seconds, clock_class->offset_cycles,
82 clock_class->frequency, &clock_class->base_offset.value_ns);
a6918753
PP
83}
84
c0c2ed34 85struct bt_clock_class *bt_clock_class_create(bt_self_component *self_comp)
4c426c17
JG
86{
87 int ret;
839d52a5 88 struct bt_clock_class *clock_class = NULL;
4c426c17 89
c0c2ed34 90 BT_ASSERT_PRE_NON_NULL(self_comp, "Self component");
7b33a0e0 91 BT_LOGD_STR("Creating default clock class object");
15260cc8 92
839d52a5 93 clock_class = g_new0(struct bt_clock_class, 1);
ac0c6bdd 94 if (!clock_class) {
a8f90e5d 95 BT_LIB_LOGE_APPEND_CAUSE("Failed to allocate one clock class.");
4c426c17
JG
96 goto error;
97 }
98
7b33a0e0 99 bt_object_init_shared(&clock_class->base, destroy_clock_class);
af90138b
PP
100
101 clock_class->user_attributes = bt_value_map_create();
102 if (!clock_class->user_attributes) {
103 BT_LIB_LOGE_APPEND_CAUSE(
104 "Failed to create a map value object.");
105 goto error;
106 }
107
7b33a0e0
PP
108 clock_class->name.str = g_string_new(NULL);
109 if (!clock_class->name.str) {
a8f90e5d 110 BT_LIB_LOGE_APPEND_CAUSE("Failed to allocate a GString.");
7b33a0e0
PP
111 goto error;
112 }
85380e99 113
7b33a0e0
PP
114 clock_class->description.str = g_string_new(NULL);
115 if (!clock_class->description.str) {
a8f90e5d 116 BT_LIB_LOGE_APPEND_CAUSE("Failed to allocate a GString.");
7b33a0e0 117 goto error;
273b65be
JG
118 }
119
7b33a0e0 120 clock_class->frequency = UINT64_C(1000000000);
d608d675 121 clock_class->origin_is_unix_epoch = BT_TRUE;
7b33a0e0 122 set_base_offset(clock_class);
ecbb78c0
PP
123 ret = bt_object_pool_initialize(&clock_class->cs_pool,
124 (bt_object_pool_new_object_func) bt_clock_snapshot_new,
a6918753 125 (bt_object_pool_destroy_object_func)
ecbb78c0 126 free_clock_snapshot,
a6918753
PP
127 clock_class);
128 if (ret) {
a8f90e5d
PP
129 BT_LIB_LOGE_APPEND_CAUSE(
130 "Failed to initialize clock snapshot pool: ret=%d",
a6918753
PP
131 ret);
132 goto error;
133 }
134
7b33a0e0
PP
135 BT_LIB_LOGD("Created clock class object: %!+K", clock_class);
136 goto end;
137
273b65be 138error:
8138bfe1 139 BT_OBJECT_PUT_REF_AND_RESET(clock_class);
87d76bb1
JG
140
141end:
78cf9df6 142 return clock_class;
87d76bb1
JG
143}
144
78cf9df6 145const char *bt_clock_class_get_name(const struct bt_clock_class *clock_class)
87d76bb1 146{
fa6cfec3 147 BT_ASSERT_PRE_DEV_NON_NULL(clock_class, "Clock class");
7b33a0e0
PP
148 return clock_class->name.value;
149}
87d76bb1 150
fb25b9e3 151enum bt_clock_class_set_name_status bt_clock_class_set_name(
d10c1e1a 152 struct bt_clock_class *clock_class, const char *name)
7b33a0e0
PP
153{
154 BT_ASSERT_PRE_NON_NULL(clock_class, "Clock class");
155 BT_ASSERT_PRE_NON_NULL(name, "Name");
fa6cfec3 156 BT_ASSERT_PRE_DEV_CLOCK_CLASS_HOT(clock_class);
7b33a0e0
PP
157 g_string_assign(clock_class->name.str, name);
158 clock_class->name.value = clock_class->name.str->str;
a684a357 159 BT_LIB_LOGD("Set clock class's name: %!+K", clock_class);
fb25b9e3 160 return BT_FUNC_STATUS_OK;
7b33a0e0 161}
87d76bb1 162
78cf9df6
PP
163const char *bt_clock_class_get_description(
164 const struct bt_clock_class *clock_class)
7b33a0e0 165{
fa6cfec3 166 BT_ASSERT_PRE_DEV_NON_NULL(clock_class, "Clock class");
7b33a0e0 167 return clock_class->description.value;
273b65be
JG
168}
169
fb25b9e3 170enum bt_clock_class_set_description_status bt_clock_class_set_description(
d10c1e1a 171 struct bt_clock_class *clock_class, const char *descr)
273b65be 172{
7b33a0e0
PP
173 BT_ASSERT_PRE_NON_NULL(clock_class, "Clock class");
174 BT_ASSERT_PRE_NON_NULL(descr, "Description");
fa6cfec3 175 BT_ASSERT_PRE_DEV_CLOCK_CLASS_HOT(clock_class);
7b33a0e0
PP
176 g_string_assign(clock_class->description.str, descr);
177 clock_class->description.value = clock_class->description.str->str;
a684a357 178 BT_LIB_LOGD("Set clock class's description: %!+K",
7b33a0e0 179 clock_class);
fb25b9e3 180 return BT_FUNC_STATUS_OK;
273b65be
JG
181}
182
78cf9df6 183uint64_t bt_clock_class_get_frequency(const struct bt_clock_class *clock_class)
87d76bb1 184{
fa6cfec3 185 BT_ASSERT_PRE_DEV_NON_NULL(clock_class, "Clock class");
7b33a0e0 186 return clock_class->frequency;
87d76bb1
JG
187}
188
78cf9df6 189void bt_clock_class_set_frequency(struct bt_clock_class *clock_class,
7b33a0e0 190 uint64_t frequency)
273b65be 191{
7b33a0e0 192 BT_ASSERT_PRE_NON_NULL(clock_class, "Clock class");
fa6cfec3 193 BT_ASSERT_PRE_DEV_CLOCK_CLASS_HOT(clock_class);
7b33a0e0
PP
194 BT_ASSERT_PRE(frequency != UINT64_C(-1) && frequency != 0,
195 "Invalid frequency: %![cc-]+K, new-freq=%" PRIu64,
196 clock_class, frequency);
197 BT_ASSERT_PRE(clock_class->offset_cycles < frequency,
198 "Offset (cycles) is greater than clock class's frequency: "
199 "%![cc-]+K, new-freq=%" PRIu64, clock_class, frequency);
200 clock_class->frequency = frequency;
201 set_base_offset(clock_class);
a684a357 202 BT_LIB_LOGD("Set clock class's frequency: %!+K", clock_class);
273b65be
JG
203}
204
78cf9df6 205uint64_t bt_clock_class_get_precision(const struct bt_clock_class *clock_class)
87d76bb1 206{
fa6cfec3 207 BT_ASSERT_PRE_DEV_NON_NULL(clock_class, "Clock class");
7b33a0e0 208 return clock_class->precision;
87d76bb1
JG
209}
210
78cf9df6 211void bt_clock_class_set_precision(struct bt_clock_class *clock_class,
ac0c6bdd 212 uint64_t precision)
273b65be 213{
7b33a0e0 214 BT_ASSERT_PRE_NON_NULL(clock_class, "Clock class");
fa6cfec3 215 BT_ASSERT_PRE_DEV_CLOCK_CLASS_HOT(clock_class);
7b33a0e0
PP
216 BT_ASSERT_PRE(precision != UINT64_C(-1),
217 "Invalid precision: %![cc-]+K, new-precision=%" PRIu64,
218 clock_class, precision);
ac0c6bdd 219 clock_class->precision = precision;
a684a357 220 BT_LIB_LOGD("Set clock class's precision: %!+K", clock_class);
273b65be
JG
221}
222
78cf9df6 223void bt_clock_class_get_offset(const struct bt_clock_class *clock_class,
7b33a0e0 224 int64_t *seconds, uint64_t *cycles)
87d76bb1 225{
fa6cfec3
PP
226 BT_ASSERT_PRE_DEV_NON_NULL(clock_class, "Clock class");
227 BT_ASSERT_PRE_DEV_NON_NULL(seconds, "Seconds (output)");
228 BT_ASSERT_PRE_DEV_NON_NULL(cycles, "Cycles (output)");
7b33a0e0
PP
229 *seconds = clock_class->offset_seconds;
230 *cycles = clock_class->offset_cycles;
87d76bb1
JG
231}
232
78cf9df6 233void bt_clock_class_set_offset(struct bt_clock_class *clock_class,
7b33a0e0 234 int64_t seconds, uint64_t cycles)
273b65be 235{
7b33a0e0 236 BT_ASSERT_PRE_NON_NULL(clock_class, "Clock class");
fa6cfec3 237 BT_ASSERT_PRE_DEV_CLOCK_CLASS_HOT(clock_class);
7b33a0e0
PP
238 BT_ASSERT_PRE(cycles < clock_class->frequency,
239 "Offset (cycles) is greater than clock class's frequency: "
240 "%![cc-]+K, new-offset-cycles=%" PRIu64, clock_class, cycles);
241 clock_class->offset_seconds = seconds;
242 clock_class->offset_cycles = cycles;
243 set_base_offset(clock_class);
a684a357 244 BT_LIB_LOGD("Set clock class's offset: %!+K", clock_class);
273b65be
JG
245}
246
d608d675 247bt_bool bt_clock_class_origin_is_unix_epoch(const struct bt_clock_class *clock_class)
87d76bb1 248{
fa6cfec3 249 BT_ASSERT_PRE_DEV_NON_NULL(clock_class, "Clock class");
d608d675 250 return (bool) clock_class->origin_is_unix_epoch;
87d76bb1
JG
251}
252
d608d675
PP
253void bt_clock_class_set_origin_is_unix_epoch(struct bt_clock_class *clock_class,
254 bt_bool origin_is_unix_epoch)
273b65be 255{
7b33a0e0 256 BT_ASSERT_PRE_NON_NULL(clock_class, "Clock class");
fa6cfec3 257 BT_ASSERT_PRE_DEV_CLOCK_CLASS_HOT(clock_class);
d608d675 258 clock_class->origin_is_unix_epoch = (bool) origin_is_unix_epoch;
a684a357 259 BT_LIB_LOGD("Set clock class's origin is Unix epoch property: %!+K",
7b33a0e0 260 clock_class);
273b65be
JG
261}
262
78cf9df6 263bt_uuid bt_clock_class_get_uuid(const struct bt_clock_class *clock_class)
85b743f4 264{
fa6cfec3 265 BT_ASSERT_PRE_DEV_NON_NULL(clock_class, "Clock class");
7b33a0e0 266 return clock_class->uuid.value;
85b743f4
JG
267}
268
78cf9df6 269void bt_clock_class_set_uuid(struct bt_clock_class *clock_class,
7b33a0e0 270 bt_uuid uuid)
85b743f4 271{
7b33a0e0
PP
272 BT_ASSERT_PRE_NON_NULL(clock_class, "Clock class");
273 BT_ASSERT_PRE_NON_NULL(uuid, "UUID");
fa6cfec3 274 BT_ASSERT_PRE_DEV_CLOCK_CLASS_HOT(clock_class);
d126826c 275 bt_uuid_copy(clock_class->uuid.uuid, uuid);
7b33a0e0 276 clock_class->uuid.value = clock_class->uuid.uuid;
a684a357 277 BT_LIB_LOGD("Set clock class's UUID: %!+K", clock_class);
a6918753
PP
278}
279
280BT_HIDDEN
78cf9df6 281void _bt_clock_class_freeze(const struct bt_clock_class *clock_class)
a6918753 282{
a6918753 283 BT_ASSERT(clock_class);
6f57e458 284
7b33a0e0
PP
285 if (clock_class->frozen) {
286 return;
db3347ac
PP
287 }
288
af90138b
PP
289 BT_LIB_LOGD("Freezing clock class's user attributes: %!+v",
290 clock_class->user_attributes);
291 bt_value_freeze(clock_class->user_attributes);
7b33a0e0 292 BT_LIB_LOGD("Freezing clock class: %!+K", clock_class);
78cf9df6 293 ((struct bt_clock_class *) clock_class)->frozen = 1;
db3347ac 294}
a6918753 295
fb25b9e3
PP
296enum bt_clock_class_cycles_to_ns_from_origin_status
297bt_clock_class_cycles_to_ns_from_origin(
78cf9df6 298 const struct bt_clock_class *clock_class,
a6918753
PP
299 uint64_t cycles, int64_t *ns)
300{
301 int ret;
a6918753 302
fa6cfec3
PP
303 BT_ASSERT_PRE_DEV_NON_NULL(clock_class, "Clock class");
304 BT_ASSERT_PRE_DEV_NON_NULL(ns, "Nanoseconds (output)");
35fa110e 305 ret = bt_util_ns_from_origin_clock_class(clock_class, cycles, ns);
a6918753 306 if (ret) {
790240eb 307 BT_LIB_LOGE_APPEND_CAUSE("Cannot convert cycles to nanoseconds "
7b33a0e0
PP
308 "from origin for given clock class: "
309 "value overflows the signed 64-bit integer range: "
310 "%![cc-]+K, cycles=%" PRIu64,
311 clock_class, cycles);
f67e22d1 312 ret = BT_FUNC_STATUS_OVERFLOW_ERROR;
a6918753
PP
313 }
314
a6918753
PP
315 return ret;
316}
8c6884d9 317
af90138b
PP
318const struct bt_value *bt_clock_class_borrow_user_attributes_const(
319 const struct bt_clock_class *clock_class)
320{
321 BT_ASSERT_PRE_DEV_NON_NULL(clock_class, "Clock class");
322 return clock_class->user_attributes;
323}
324
325struct bt_value *bt_clock_class_borrow_user_attributes(
326 struct bt_clock_class *clock_class)
327{
328 return (void *) bt_clock_class_borrow_user_attributes_const(
329 (void *) clock_class);
330}
331
332void bt_clock_class_set_user_attributes(
333 struct bt_clock_class *clock_class,
334 const struct bt_value *user_attributes)
335{
336 BT_ASSERT_PRE_NON_NULL(clock_class, "Clock class");
337 BT_ASSERT_PRE_NON_NULL(user_attributes, "User attributes");
338 BT_ASSERT_PRE(user_attributes->type == BT_VALUE_TYPE_MAP,
339 "User attributes object is not a map value object.");
340 BT_ASSERT_PRE_DEV_CLOCK_CLASS_HOT(clock_class);
864aa43f 341 bt_object_put_ref_no_null_check(clock_class->user_attributes);
af90138b 342 clock_class->user_attributes = (void *) user_attributes;
864aa43f 343 bt_object_get_ref_no_null_check(clock_class->user_attributes);
af90138b
PP
344}
345
8c6884d9
PP
346void bt_clock_class_get_ref(const struct bt_clock_class *clock_class)
347{
348 bt_object_get_ref(clock_class);
349}
350
351void bt_clock_class_put_ref(const struct bt_clock_class *clock_class)
352{
353 bt_object_put_ref(clock_class);
354}
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