Fix: don't dereference NULL pointers
[lttng-ust.git] / liblttng-ust / lttng-ring-buffer-client.h
1 /*
2 * lttng-ring-buffer-client.h
3 *
4 * LTTng lib ring buffer client template.
5 *
6 * Copyright (C) 2010-2012 Mathieu Desnoyers <mathieu.desnoyers@efficios.com>
7 *
8 * This library is free software; you can redistribute it and/or
9 * modify it under the terms of the GNU Lesser General Public
10 * License as published by the Free Software Foundation; only
11 * version 2.1 of the License.
12 *
13 * This library is distributed in the hope that it will be useful,
14 * but WITHOUT ANY WARRANTY; without even the implied warranty of
15 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
16 * Lesser General Public License for more details.
17 *
18 * You should have received a copy of the GNU Lesser General Public
19 * License along with this library; if not, write to the Free Software
20 * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
21 */
22
23 #include <stdint.h>
24 #include <lttng/ust-events.h>
25 #include "lttng/bitfield.h"
26 #include "clock.h"
27 #include "lttng-tracer.h"
28 #include "../libringbuffer/frontend_types.h"
29
30 #define LTTNG_COMPACT_EVENT_BITS 5
31 #define LTTNG_COMPACT_TSC_BITS 27
32
33 /*
34 * Keep the natural field alignment for _each field_ within this structure if
35 * you ever add/remove a field from this header. Packed attribute is not used
36 * because gcc generates poor code on at least powerpc and mips. Don't ever
37 * let gcc add padding between the structure elements.
38 */
39
40 struct packet_header {
41 /* Trace packet header */
42 uint32_t magic; /*
43 * Trace magic number.
44 * contains endianness information.
45 */
46 uint8_t uuid[LTTNG_UST_UUID_LEN];
47 uint32_t stream_id;
48
49 struct {
50 /* Stream packet context */
51 uint64_t timestamp_begin; /* Cycle count at subbuffer start */
52 uint64_t timestamp_end; /* Cycle count at subbuffer end */
53 uint64_t content_size; /* Size of data in subbuffer */
54 uint64_t packet_size; /* Subbuffer size (include padding) */
55 unsigned long events_discarded; /*
56 * Events lost in this subbuffer since
57 * the beginning of the trace.
58 * (may overflow)
59 */
60 uint32_t cpu_id; /* CPU id associated with stream */
61 uint8_t header_end; /* End of header */
62 } ctx;
63 };
64
65
66 static inline uint64_t lib_ring_buffer_clock_read(struct channel *chan)
67 {
68 return trace_clock_read64();
69 }
70
71 static inline
72 size_t ctx_get_size(size_t offset, struct lttng_ctx *ctx)
73 {
74 int i;
75 size_t orig_offset = offset;
76
77 if (caa_likely(!ctx))
78 return 0;
79 offset += lib_ring_buffer_align(offset, ctx->largest_align);
80 for (i = 0; i < ctx->nr_fields; i++)
81 offset += ctx->fields[i].get_size(offset);
82 return offset - orig_offset;
83 }
84
85 static inline
86 void ctx_record(struct lttng_ust_lib_ring_buffer_ctx *bufctx,
87 struct lttng_channel *chan,
88 struct lttng_ctx *ctx)
89 {
90 int i;
91
92 if (caa_likely(!ctx))
93 return;
94 lib_ring_buffer_align_ctx(bufctx, ctx->largest_align);
95 for (i = 0; i < ctx->nr_fields; i++)
96 ctx->fields[i].record(&ctx->fields[i], bufctx, chan);
97 }
98
99 /*
100 * record_header_size - Calculate the header size and padding necessary.
101 * @config: ring buffer instance configuration
102 * @chan: channel
103 * @offset: offset in the write buffer
104 * @pre_header_padding: padding to add before the header (output)
105 * @ctx: reservation context
106 *
107 * Returns the event header size (including padding).
108 *
109 * The payload must itself determine its own alignment from the biggest type it
110 * contains.
111 */
112 static __inline__
113 unsigned char record_header_size(const struct lttng_ust_lib_ring_buffer_config *config,
114 struct channel *chan, size_t offset,
115 size_t *pre_header_padding,
116 struct lttng_ust_lib_ring_buffer_ctx *ctx)
117 {
118 struct lttng_channel *lttng_chan = channel_get_private(chan);
119 struct lttng_event *event = ctx->priv;
120 size_t orig_offset = offset;
121 size_t padding;
122
123 switch (lttng_chan->header_type) {
124 case 1: /* compact */
125 padding = lib_ring_buffer_align(offset, lttng_alignof(uint32_t));
126 offset += padding;
127 if (!(ctx->rflags & (RING_BUFFER_RFLAG_FULL_TSC | LTTNG_RFLAG_EXTENDED))) {
128 offset += sizeof(uint32_t); /* id and timestamp */
129 } else {
130 /* Minimum space taken by LTTNG_COMPACT_EVENT_BITS id */
131 offset += (LTTNG_COMPACT_EVENT_BITS + CHAR_BIT - 1) / CHAR_BIT;
132 /* Align extended struct on largest member */
133 offset += lib_ring_buffer_align(offset, lttng_alignof(uint64_t));
134 offset += sizeof(uint32_t); /* id */
135 offset += lib_ring_buffer_align(offset, lttng_alignof(uint64_t));
136 offset += sizeof(uint64_t); /* timestamp */
137 }
138 break;
139 case 2: /* large */
140 padding = lib_ring_buffer_align(offset, lttng_alignof(uint16_t));
141 offset += padding;
142 offset += sizeof(uint16_t);
143 if (!(ctx->rflags & (RING_BUFFER_RFLAG_FULL_TSC | LTTNG_RFLAG_EXTENDED))) {
144 offset += lib_ring_buffer_align(offset, lttng_alignof(uint32_t));
145 offset += sizeof(uint32_t); /* timestamp */
146 } else {
147 /* Align extended struct on largest member */
148 offset += lib_ring_buffer_align(offset, lttng_alignof(uint64_t));
149 offset += sizeof(uint32_t); /* id */
150 offset += lib_ring_buffer_align(offset, lttng_alignof(uint64_t));
151 offset += sizeof(uint64_t); /* timestamp */
152 }
153 break;
154 default:
155 padding = 0;
156 WARN_ON_ONCE(1);
157 }
158 offset += ctx_get_size(offset, event->ctx);
159 offset += ctx_get_size(offset, lttng_chan->ctx);
160
161 *pre_header_padding = padding;
162 return offset - orig_offset;
163 }
164
165 #include "../libringbuffer/api.h"
166 #include "lttng-rb-clients.h"
167
168 static
169 void lttng_write_event_header_slow(const struct lttng_ust_lib_ring_buffer_config *config,
170 struct lttng_ust_lib_ring_buffer_ctx *ctx,
171 uint32_t event_id);
172
173 /*
174 * lttng_write_event_header
175 *
176 * Writes the event header to the offset (already aligned on 32-bits).
177 *
178 * @config: ring buffer instance configuration
179 * @ctx: reservation context
180 * @event_id: event ID
181 */
182 static __inline__
183 void lttng_write_event_header(const struct lttng_ust_lib_ring_buffer_config *config,
184 struct lttng_ust_lib_ring_buffer_ctx *ctx,
185 uint32_t event_id)
186 {
187 struct lttng_channel *lttng_chan = channel_get_private(ctx->chan);
188 struct lttng_event *event = ctx->priv;
189
190 if (caa_unlikely(ctx->rflags))
191 goto slow_path;
192
193 switch (lttng_chan->header_type) {
194 case 1: /* compact */
195 {
196 uint32_t id_time = 0;
197
198 bt_bitfield_write(&id_time, uint32_t,
199 0,
200 LTTNG_COMPACT_EVENT_BITS,
201 event_id);
202 bt_bitfield_write(&id_time, uint32_t,
203 LTTNG_COMPACT_EVENT_BITS,
204 LTTNG_COMPACT_TSC_BITS,
205 ctx->tsc);
206 lib_ring_buffer_write(config, ctx, &id_time, sizeof(id_time));
207 break;
208 }
209 case 2: /* large */
210 {
211 uint32_t timestamp = (uint32_t) ctx->tsc;
212 uint16_t id = event_id;
213
214 lib_ring_buffer_write(config, ctx, &id, sizeof(id));
215 lib_ring_buffer_align_ctx(ctx, lttng_alignof(uint32_t));
216 lib_ring_buffer_write(config, ctx, &timestamp, sizeof(timestamp));
217 break;
218 }
219 default:
220 WARN_ON_ONCE(1);
221 }
222
223 ctx_record(ctx, lttng_chan, lttng_chan->ctx);
224 ctx_record(ctx, lttng_chan, event->ctx);
225 lib_ring_buffer_align_ctx(ctx, ctx->largest_align);
226
227 return;
228
229 slow_path:
230 lttng_write_event_header_slow(config, ctx, event_id);
231 }
232
233 static
234 void lttng_write_event_header_slow(const struct lttng_ust_lib_ring_buffer_config *config,
235 struct lttng_ust_lib_ring_buffer_ctx *ctx,
236 uint32_t event_id)
237 {
238 struct lttng_channel *lttng_chan = channel_get_private(ctx->chan);
239 struct lttng_event *event = ctx->priv;
240
241 switch (lttng_chan->header_type) {
242 case 1: /* compact */
243 if (!(ctx->rflags & (RING_BUFFER_RFLAG_FULL_TSC | LTTNG_RFLAG_EXTENDED))) {
244 uint32_t id_time = 0;
245
246 bt_bitfield_write(&id_time, uint32_t,
247 0,
248 LTTNG_COMPACT_EVENT_BITS,
249 event_id);
250 bt_bitfield_write(&id_time, uint32_t,
251 LTTNG_COMPACT_EVENT_BITS,
252 LTTNG_COMPACT_TSC_BITS,
253 ctx->tsc);
254 lib_ring_buffer_write(config, ctx, &id_time, sizeof(id_time));
255 } else {
256 uint8_t id = 0;
257 uint64_t timestamp = ctx->tsc;
258
259 bt_bitfield_write(&id, uint8_t,
260 0,
261 LTTNG_COMPACT_EVENT_BITS,
262 31);
263 lib_ring_buffer_write(config, ctx, &id, sizeof(id));
264 /* Align extended struct on largest member */
265 lib_ring_buffer_align_ctx(ctx, lttng_alignof(uint64_t));
266 lib_ring_buffer_write(config, ctx, &event_id, sizeof(event_id));
267 lib_ring_buffer_align_ctx(ctx, lttng_alignof(uint64_t));
268 lib_ring_buffer_write(config, ctx, &timestamp, sizeof(timestamp));
269 }
270 break;
271 case 2: /* large */
272 {
273 if (!(ctx->rflags & (RING_BUFFER_RFLAG_FULL_TSC | LTTNG_RFLAG_EXTENDED))) {
274 uint32_t timestamp = (uint32_t) ctx->tsc;
275 uint16_t id = event_id;
276
277 lib_ring_buffer_write(config, ctx, &id, sizeof(id));
278 lib_ring_buffer_align_ctx(ctx, lttng_alignof(uint32_t));
279 lib_ring_buffer_write(config, ctx, &timestamp, sizeof(timestamp));
280 } else {
281 uint16_t id = 65535;
282 uint64_t timestamp = ctx->tsc;
283
284 lib_ring_buffer_write(config, ctx, &id, sizeof(id));
285 /* Align extended struct on largest member */
286 lib_ring_buffer_align_ctx(ctx, lttng_alignof(uint64_t));
287 lib_ring_buffer_write(config, ctx, &event_id, sizeof(event_id));
288 lib_ring_buffer_align_ctx(ctx, lttng_alignof(uint64_t));
289 lib_ring_buffer_write(config, ctx, &timestamp, sizeof(timestamp));
290 }
291 break;
292 }
293 default:
294 WARN_ON_ONCE(1);
295 }
296 ctx_record(ctx, lttng_chan, lttng_chan->ctx);
297 ctx_record(ctx, lttng_chan, event->ctx);
298 lib_ring_buffer_align_ctx(ctx, ctx->largest_align);
299 }
300
301 static const struct lttng_ust_lib_ring_buffer_config client_config;
302
303 static uint64_t client_ring_buffer_clock_read(struct channel *chan)
304 {
305 return lib_ring_buffer_clock_read(chan);
306 }
307
308 static
309 size_t client_record_header_size(const struct lttng_ust_lib_ring_buffer_config *config,
310 struct channel *chan, size_t offset,
311 size_t *pre_header_padding,
312 struct lttng_ust_lib_ring_buffer_ctx *ctx)
313 {
314 return record_header_size(config, chan, offset,
315 pre_header_padding, ctx);
316 }
317
318 /**
319 * client_packet_header_size - called on buffer-switch to a new sub-buffer
320 *
321 * Return header size without padding after the structure. Don't use packed
322 * structure because gcc generates inefficient code on some architectures
323 * (powerpc, mips..)
324 */
325 static size_t client_packet_header_size(void)
326 {
327 return offsetof(struct packet_header, ctx.header_end);
328 }
329
330 static void client_buffer_begin(struct lttng_ust_lib_ring_buffer *buf, uint64_t tsc,
331 unsigned int subbuf_idx,
332 struct lttng_ust_shm_handle *handle)
333 {
334 struct channel *chan = shmp(handle, buf->backend.chan);
335 struct packet_header *header =
336 (struct packet_header *)
337 lib_ring_buffer_offset_address(&buf->backend,
338 subbuf_idx * chan->backend.subbuf_size,
339 handle);
340 struct lttng_channel *lttng_chan = channel_get_private(chan);
341
342 assert(header);
343 if (!header)
344 return;
345 header->magic = CTF_MAGIC_NUMBER;
346 memcpy(header->uuid, lttng_chan->uuid, sizeof(lttng_chan->uuid));
347 header->stream_id = lttng_chan->id;
348 header->ctx.timestamp_begin = tsc;
349 header->ctx.timestamp_end = 0;
350 header->ctx.content_size = ~0ULL; /* for debugging */
351 header->ctx.packet_size = ~0ULL;
352 header->ctx.events_discarded = 0;
353 header->ctx.cpu_id = buf->backend.cpu;
354 }
355
356 /*
357 * offset is assumed to never be 0 here : never deliver a completely empty
358 * subbuffer. data_size is between 1 and subbuf_size.
359 */
360 static void client_buffer_end(struct lttng_ust_lib_ring_buffer *buf, uint64_t tsc,
361 unsigned int subbuf_idx, unsigned long data_size,
362 struct lttng_ust_shm_handle *handle)
363 {
364 struct channel *chan = shmp(handle, buf->backend.chan);
365 struct packet_header *header =
366 (struct packet_header *)
367 lib_ring_buffer_offset_address(&buf->backend,
368 subbuf_idx * chan->backend.subbuf_size,
369 handle);
370 unsigned long records_lost = 0;
371
372 assert(header);
373 if (!header)
374 return;
375 header->ctx.timestamp_end = tsc;
376 header->ctx.content_size =
377 (uint64_t) data_size * CHAR_BIT; /* in bits */
378 header->ctx.packet_size =
379 (uint64_t) PAGE_ALIGN(data_size) * CHAR_BIT; /* in bits */
380
381 records_lost += lib_ring_buffer_get_records_lost_full(&client_config, buf);
382 records_lost += lib_ring_buffer_get_records_lost_wrap(&client_config, buf);
383 records_lost += lib_ring_buffer_get_records_lost_big(&client_config, buf);
384 header->ctx.events_discarded = records_lost;
385 }
386
387 static int client_buffer_create(struct lttng_ust_lib_ring_buffer *buf, void *priv,
388 int cpu, const char *name, struct lttng_ust_shm_handle *handle)
389 {
390 return 0;
391 }
392
393 static void client_buffer_finalize(struct lttng_ust_lib_ring_buffer *buf, void *priv, int cpu, struct lttng_ust_shm_handle *handle)
394 {
395 }
396
397 static struct packet_header *client_packet_header(struct lttng_ust_lib_ring_buffer *buf,
398 struct lttng_ust_shm_handle *handle)
399 {
400 return lib_ring_buffer_read_offset_address(&buf->backend, 0, handle);
401 }
402
403 static int client_timestamp_begin(struct lttng_ust_lib_ring_buffer *buf,
404 struct lttng_ust_shm_handle *handle,
405 uint64_t *timestamp_begin)
406 {
407 struct packet_header *header;
408
409 header = client_packet_header(buf, handle);
410 if (!header)
411 return -1;
412 *timestamp_begin = header->ctx.timestamp_begin;
413 return 0;
414 }
415
416 static int client_timestamp_end(struct lttng_ust_lib_ring_buffer *buf,
417 struct lttng_ust_shm_handle *handle,
418 uint64_t *timestamp_end)
419 {
420 struct packet_header *header;
421
422 header = client_packet_header(buf, handle);
423 if (!header)
424 return -1;
425 *timestamp_end = header->ctx.timestamp_end;
426 return 0;
427 }
428
429 static int client_events_discarded(struct lttng_ust_lib_ring_buffer *buf,
430 struct lttng_ust_shm_handle *handle,
431 uint64_t *events_discarded)
432 {
433 struct packet_header *header;
434
435 header = client_packet_header(buf, handle);
436 if (!header)
437 return -1;
438 *events_discarded = header->ctx.events_discarded;
439 return 0;
440 }
441
442 static int client_content_size(struct lttng_ust_lib_ring_buffer *buf,
443 struct lttng_ust_shm_handle *handle,
444 uint64_t *content_size)
445 {
446 struct packet_header *header;
447
448 header = client_packet_header(buf, handle);
449 if (!header)
450 return -1;
451 *content_size = header->ctx.content_size;
452 return 0;
453 }
454
455 static int client_packet_size(struct lttng_ust_lib_ring_buffer *buf,
456 struct lttng_ust_shm_handle *handle,
457 uint64_t *packet_size)
458 {
459 struct packet_header *header;
460
461 header = client_packet_header(buf, handle);
462 if (!header)
463 return -1;
464 *packet_size = header->ctx.packet_size;
465 return 0;
466 }
467
468 static int client_stream_id(struct lttng_ust_lib_ring_buffer *buf,
469 struct lttng_ust_shm_handle *handle,
470 uint64_t *stream_id)
471 {
472 struct packet_header *header;
473
474 header = client_packet_header(buf, handle);
475 if (!header)
476 return -1;
477 *stream_id = header->stream_id;
478 return 0;
479 }
480
481 static int client_current_timestamp(struct lttng_ust_lib_ring_buffer *buf,
482 struct lttng_ust_shm_handle *handle,
483 uint64_t *ts)
484 {
485 struct channel *chan;
486
487 chan = shmp(handle, handle->chan);
488 *ts = client_ring_buffer_clock_read(chan);
489
490 return 0;
491 }
492
493 static const
494 struct lttng_ust_client_lib_ring_buffer_client_cb client_cb = {
495 .parent = {
496 .ring_buffer_clock_read = client_ring_buffer_clock_read,
497 .record_header_size = client_record_header_size,
498 .subbuffer_header_size = client_packet_header_size,
499 .buffer_begin = client_buffer_begin,
500 .buffer_end = client_buffer_end,
501 .buffer_create = client_buffer_create,
502 .buffer_finalize = client_buffer_finalize,
503 },
504 .timestamp_begin = client_timestamp_begin,
505 .timestamp_end = client_timestamp_end,
506 .events_discarded = client_events_discarded,
507 .content_size = client_content_size,
508 .packet_size = client_packet_size,
509 .stream_id = client_stream_id,
510 .current_timestamp = client_current_timestamp,
511 };
512
513 static const struct lttng_ust_lib_ring_buffer_config client_config = {
514 .cb.ring_buffer_clock_read = client_ring_buffer_clock_read,
515 .cb.record_header_size = client_record_header_size,
516 .cb.subbuffer_header_size = client_packet_header_size,
517 .cb.buffer_begin = client_buffer_begin,
518 .cb.buffer_end = client_buffer_end,
519 .cb.buffer_create = client_buffer_create,
520 .cb.buffer_finalize = client_buffer_finalize,
521
522 .tsc_bits = LTTNG_COMPACT_TSC_BITS,
523 .alloc = RING_BUFFER_ALLOC_PER_CPU,
524 .sync = RING_BUFFER_SYNC_GLOBAL,
525 .mode = RING_BUFFER_MODE_TEMPLATE,
526 .backend = RING_BUFFER_PAGE,
527 .output = RING_BUFFER_MMAP,
528 .oops = RING_BUFFER_OOPS_CONSISTENCY,
529 .ipi = RING_BUFFER_NO_IPI_BARRIER,
530 .wakeup = LTTNG_CLIENT_WAKEUP,
531 .client_type = LTTNG_CLIENT_TYPE,
532
533 .cb_ptr = &client_cb.parent,
534 };
535
536 const struct lttng_ust_client_lib_ring_buffer_client_cb *LTTNG_CLIENT_CALLBACKS = &client_cb;
537
538 static
539 struct lttng_channel *_channel_create(const char *name,
540 void *buf_addr,
541 size_t subbuf_size, size_t num_subbuf,
542 unsigned int switch_timer_interval,
543 unsigned int read_timer_interval,
544 unsigned char *uuid,
545 uint32_t chan_id)
546 {
547 struct lttng_channel chan_priv_init;
548 struct lttng_ust_shm_handle *handle;
549 struct lttng_channel *lttng_chan;
550 void *priv;
551
552 memset(&chan_priv_init, 0, sizeof(chan_priv_init));
553 memcpy(chan_priv_init.uuid, uuid, LTTNG_UST_UUID_LEN);
554 chan_priv_init.id = chan_id;
555 handle = channel_create(&client_config, name,
556 &priv, __alignof__(struct lttng_channel),
557 sizeof(struct lttng_channel),
558 &chan_priv_init,
559 buf_addr, subbuf_size, num_subbuf,
560 switch_timer_interval, read_timer_interval);
561 if (!handle)
562 return NULL;
563 lttng_chan = priv;
564 lttng_chan->handle = handle;
565 lttng_chan->chan = shmp(handle, handle->chan);
566 return lttng_chan;
567 }
568
569 static
570 void lttng_channel_destroy(struct lttng_channel *chan)
571 {
572 channel_destroy(chan->chan, chan->handle, 1);
573 }
574
575 static
576 int lttng_event_reserve(struct lttng_ust_lib_ring_buffer_ctx *ctx,
577 uint32_t event_id)
578 {
579 struct lttng_channel *lttng_chan = channel_get_private(ctx->chan);
580 int ret, cpu;
581
582 cpu = lib_ring_buffer_get_cpu(&client_config);
583 if (cpu < 0)
584 return -EPERM;
585 ctx->cpu = cpu;
586
587 switch (lttng_chan->header_type) {
588 case 1: /* compact */
589 if (event_id > 30)
590 ctx->rflags |= LTTNG_RFLAG_EXTENDED;
591 break;
592 case 2: /* large */
593 if (event_id > 65534)
594 ctx->rflags |= LTTNG_RFLAG_EXTENDED;
595 break;
596 default:
597 WARN_ON_ONCE(1);
598 }
599
600 ret = lib_ring_buffer_reserve(&client_config, ctx);
601 if (ret)
602 goto put;
603 lttng_write_event_header(&client_config, ctx, event_id);
604 return 0;
605 put:
606 lib_ring_buffer_put_cpu(&client_config);
607 return ret;
608 }
609
610 static
611 void lttng_event_commit(struct lttng_ust_lib_ring_buffer_ctx *ctx)
612 {
613 lib_ring_buffer_commit(&client_config, ctx);
614 lib_ring_buffer_put_cpu(&client_config);
615 }
616
617 static
618 void lttng_event_write(struct lttng_ust_lib_ring_buffer_ctx *ctx, const void *src,
619 size_t len)
620 {
621 lib_ring_buffer_write(&client_config, ctx, src, len);
622 }
623
624 static
625 void lttng_event_strcpy(struct lttng_ust_lib_ring_buffer_ctx *ctx, const char *src,
626 size_t len)
627 {
628 lib_ring_buffer_strcpy(&client_config, ctx, src, len, '#');
629 }
630
631 #if 0
632 static
633 wait_queue_head_t *lttng_get_reader_wait_queue(struct channel *chan)
634 {
635 return &chan->read_wait;
636 }
637
638 static
639 wait_queue_head_t *lttng_get_hp_wait_queue(struct channel *chan)
640 {
641 return &chan->hp_wait;
642 }
643 #endif //0
644
645 static
646 int lttng_is_finalized(struct channel *chan)
647 {
648 return lib_ring_buffer_channel_is_finalized(chan);
649 }
650
651 static
652 int lttng_is_disabled(struct channel *chan)
653 {
654 return lib_ring_buffer_channel_is_disabled(chan);
655 }
656
657 static
658 int lttng_flush_buffer(struct channel *chan, struct lttng_ust_shm_handle *handle)
659 {
660 struct lttng_ust_lib_ring_buffer *buf;
661 int cpu;
662
663 for_each_channel_cpu(cpu, chan) {
664 int shm_fd, wait_fd, wakeup_fd;
665 uint64_t memory_map_size;
666
667 buf = channel_get_ring_buffer(&client_config, chan,
668 cpu, handle, &shm_fd, &wait_fd,
669 &wakeup_fd, &memory_map_size);
670 lib_ring_buffer_switch(&client_config, buf,
671 SWITCH_ACTIVE, handle);
672 }
673 return 0;
674 }
675
676 static struct lttng_transport lttng_relay_transport = {
677 .name = "relay-" RING_BUFFER_MODE_TEMPLATE_STRING "-mmap",
678 .ops = {
679 .channel_create = _channel_create,
680 .channel_destroy = lttng_channel_destroy,
681 .u.has_strcpy = 1,
682 .event_reserve = lttng_event_reserve,
683 .event_commit = lttng_event_commit,
684 .event_write = lttng_event_write,
685 .packet_avail_size = NULL, /* Would be racy anyway */
686 //.get_reader_wait_queue = lttng_get_reader_wait_queue,
687 //.get_hp_wait_queue = lttng_get_hp_wait_queue,
688 .is_finalized = lttng_is_finalized,
689 .is_disabled = lttng_is_disabled,
690 .flush_buffer = lttng_flush_buffer,
691 .event_strcpy = lttng_event_strcpy,
692 },
693 .client_config = &client_config,
694 };
695
696 void RING_BUFFER_MODE_TEMPLATE_INIT(void)
697 {
698 DBG("LTT : ltt ring buffer client \"%s\" init\n",
699 "relay-" RING_BUFFER_MODE_TEMPLATE_STRING "-mmap");
700 lttng_transport_register(&lttng_relay_transport);
701 }
702
703 void RING_BUFFER_MODE_TEMPLATE_EXIT(void)
704 {
705 DBG("LTT : ltt ring buffer client \"%s\" exit\n",
706 "relay-" RING_BUFFER_MODE_TEMPLATE_STRING "-mmap");
707 lttng_transport_unregister(&lttng_relay_transport);
708 }
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