3 Copyright (C) 2012-2013 Free Software Foundation, Inc.
4 Contributed by Hui Zhu <hui_zhu@mentor.com>
5 Contributed by Yao Qi <yao@codesourcery.com>
7 This file is part of GDB.
9 This program is free software; you can redistribute it and/or modify
10 it under the terms of the GNU General Public License as published by
11 the Free Software Foundation; either version 3 of the License, or
12 (at your option) any later version.
14 This program is distributed in the hope that it will be useful,
15 but WITHOUT ANY WARRANTY; without even the implied warranty of
16 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
17 GNU General Public License for more details.
19 You should have received a copy of the GNU General Public License
20 along with this program. If not, see <http://www.gnu.org/licenses/>. */
24 #include "tracepoint.h"
28 #include "completer.h"
32 /* GDB saves trace buffers and other information (such as trace
33 status) got from the remote target into Common Trace Format (CTF).
34 The following types of information are expected to save in CTF:
36 1. The length (in bytes) of register cache. Event "register" will
37 be defined in metadata, which includes the length.
39 2. Trace status. Event "status" is defined in metadata, which
40 includes all aspects of trace status.
42 3. Uploaded trace variables. Event "tsv_def" is defined in
43 metadata, which is about all aspects of a uploaded trace variable.
44 Uploaded tracepoints. Event "tp_def" is defined in meta, which
45 is about all aspects of an uploaded tracepoint. Note that the
46 "sequence" (a CTF type, which is a dynamically-sized array.) is
47 used for "actions" "step_actions" and "cmd_strings".
49 4. Trace frames. Each trace frame is composed by several blocks
50 of different types ('R', 'M', 'V'). One trace frame is saved in
51 one CTF packet and the blocks of this frame are saved as events.
52 4.1: The trace frame related information (such as the number of
53 tracepoint associated with this frame) is saved in the packet
55 4.2: The block 'M', 'R' and 'V' are saved in event "memory",
56 "register" and "tsv" respectively.
57 4.3: When iterating over events, babeltrace can't tell iterator
58 goes to a new packet, so we need a marker or anchor to tell GDB
59 that iterator goes into a new packet or frame. We define event
62 #define CTF_MAGIC 0xC1FC1FC1
63 #define CTF_SAVE_MAJOR 1
64 #define CTF_SAVE_MINOR 8
66 #define CTF_METADATA_NAME "metadata"
67 #define CTF_DATASTREAM_NAME "datastream"
69 /* Reserved event id. */
71 #define CTF_EVENT_ID_REGISTER 0
72 #define CTF_EVENT_ID_TSV 1
73 #define CTF_EVENT_ID_MEMORY 2
74 #define CTF_EVENT_ID_FRAME 3
75 #define CTF_EVENT_ID_STATUS 4
76 #define CTF_EVENT_ID_TSV_DEF 5
77 #define CTF_EVENT_ID_TP_DEF 6
79 /* The state kept while writing the CTF datastream file. */
81 struct trace_write_handler
83 /* File descriptor of metadata. */
85 /* File descriptor of traceframes. */
88 /* This is the content size of the current packet. */
91 /* This is the start offset of current packet. */
95 /* Write metadata in FORMAT. */
98 ctf_save_write_metadata (struct trace_write_handler *handler,
99 const char *format, ...)
103 va_start (args, format);
104 if (vfprintf (handler->metadata_fd, format, args) < 0)
105 error (_("Unable to write metadata file (%s)"),
106 safe_strerror (errno));
110 /* Write BUF of length SIZE to datastream file represented by
114 ctf_save_write (struct trace_write_handler *handler,
115 const gdb_byte *buf, size_t size)
117 if (fwrite (buf, size, 1, handler->datastream_fd) != 1)
118 error (_("Unable to write file for saving trace data (%s)"),
119 safe_strerror (errno));
121 handler->content_size += size;
126 /* Write a unsigned 32-bit integer to datastream file represented by
129 #define ctf_save_write_uint32(HANDLER, U32) \
130 ctf_save_write (HANDLER, (gdb_byte *) &U32, 4)
132 /* Write a signed 32-bit integer to datastream file represented by
135 #define ctf_save_write_int32(HANDLER, INT32) \
136 ctf_save_write ((HANDLER), (gdb_byte *) &(INT32), 4)
138 /* Set datastream file position. Update HANDLER->content_size
139 if WHENCE is SEEK_CUR. */
142 ctf_save_fseek (struct trace_write_handler *handler, long offset,
145 gdb_assert (whence != SEEK_END);
146 gdb_assert (whence != SEEK_SET
147 || offset <= handler->content_size + handler->packet_start);
149 if (fseek (handler->datastream_fd, offset, whence))
150 error (_("Unable to seek file for saving trace data (%s)"),
151 safe_strerror (errno));
153 if (whence == SEEK_CUR)
154 handler->content_size += offset;
159 /* Change the datastream file position to align on ALIGN_SIZE,
160 and write BUF to datastream file. The size of BUF is SIZE. */
163 ctf_save_align_write (struct trace_write_handler *handler,
165 size_t size, size_t align_size)
168 = (align_up (handler->content_size, align_size)
169 - handler->content_size);
171 if (ctf_save_fseek (handler, offset, SEEK_CUR))
174 if (ctf_save_write (handler, buf, size))
180 /* Write events to next new packet. */
183 ctf_save_next_packet (struct trace_write_handler *handler)
185 handler->packet_start += (handler->content_size + 4);
186 ctf_save_fseek (handler, handler->packet_start, SEEK_SET);
187 handler->content_size = 0;
190 /* Write the CTF metadata header. */
193 ctf_save_metadata_header (struct trace_write_handler *handler)
195 const char metadata_fmt[] =
199 " byte_order = %s;\n" /* be or le */
200 " packet.header := struct {\n"
206 " packet.context := struct {\n"
207 " uint32_t content_size;\n"
208 " uint32_t packet_size;\n"
211 " event.header := struct {\n"
216 ctf_save_write_metadata (handler, "/* CTF %d.%d */\n",
217 CTF_SAVE_MAJOR, CTF_SAVE_MINOR);
218 ctf_save_write_metadata (handler,
219 "typealias integer { size = 8; align = 8; "
220 "signed = false; encoding = ascii;}"
222 ctf_save_write_metadata (handler,
223 "typealias integer { size = 8; align = 8; "
226 ctf_save_write_metadata (handler,
227 "typealias integer { size = 16; align = 16;"
228 "signed = false; } := uint16_t;\n");
229 ctf_save_write_metadata (handler,
230 "typealias integer { size = 32; align = 32;"
231 "signed = false; } := uint32_t;\n");
232 ctf_save_write_metadata (handler,
233 "typealias integer { size = 64; align = 64;"
234 "signed = false; base = hex;}"
236 ctf_save_write_metadata (handler,
237 "typealias integer { size = 32; align = 32;"
238 "signed = true; } := int32_t;\n");
239 ctf_save_write_metadata (handler,
240 "typealias integer { size = 64; align = 64;"
241 "signed = true; } := int64_t;\n");
242 ctf_save_write_metadata (handler,
243 "typealias string { encoding = ascii;"
245 ctf_save_write_metadata (handler, "\n");
247 /* Get the byte order of the host and write CTF data in this byte
250 #define HOST_ENDIANNESS "be"
252 #define HOST_ENDIANNESS "le"
255 ctf_save_write_metadata (handler, metadata_fmt,
256 CTF_SAVE_MAJOR, CTF_SAVE_MINOR,
258 ctf_save_write_metadata (handler, "\n");
261 /* CTF trace writer. */
263 struct ctf_trace_file_writer
265 struct trace_file_writer base;
267 /* States related to writing CTF trace file. */
268 struct trace_write_handler tcs;
271 /* This is the implementation of trace_file_write_ops method
275 ctf_dtor (struct trace_file_writer *self)
277 struct ctf_trace_file_writer *writer
278 = (struct ctf_trace_file_writer *) self;
280 if (writer->tcs.metadata_fd != NULL)
281 fclose (writer->tcs.metadata_fd);
283 if (writer->tcs.datastream_fd != NULL)
284 fclose (writer->tcs.datastream_fd);
288 /* This is the implementation of trace_file_write_ops method
292 ctf_target_save (struct trace_file_writer *self,
295 /* Don't support save trace file to CTF format in the target. */
301 #define mkdir(pathname, mode) mkdir (pathname)
304 /* This is the implementation of trace_file_write_ops method
305 start. It creates the directory DIRNAME, metadata and datastream
309 ctf_start (struct trace_file_writer *self, const char *dirname)
312 struct cleanup *old_chain;
313 struct ctf_trace_file_writer *writer
314 = (struct ctf_trace_file_writer *) self;
316 mode_t hmode = S_IRUSR | S_IWUSR | S_IXUSR
323 | S_IROTH /* Defined in common/gdb_stat.h if not defined. */
329 /* Create DIRNAME. */
330 if (mkdir (dirname, hmode) && errno != EEXIST)
331 error (_("Unable to open directory '%s' for saving trace data (%s)"),
332 dirname, safe_strerror (errno));
334 memset (&writer->tcs, '\0', sizeof (writer->tcs));
336 file_name = xstrprintf ("%s/%s", dirname, CTF_METADATA_NAME);
337 old_chain = make_cleanup (xfree, file_name);
339 writer->tcs.metadata_fd = fopen (file_name, "w");
340 if (writer->tcs.metadata_fd == NULL)
341 error (_("Unable to open file '%s' for saving trace data (%s)"),
342 file_name, safe_strerror (errno));
343 do_cleanups (old_chain);
345 ctf_save_metadata_header (&writer->tcs);
347 file_name = xstrprintf ("%s/%s", dirname, CTF_DATASTREAM_NAME);
348 old_chain = make_cleanup (xfree, file_name);
349 writer->tcs.datastream_fd = fopen (file_name, "w");
350 if (writer->tcs.datastream_fd == NULL)
351 error (_("Unable to open file '%s' for saving trace data (%s)"),
352 file_name, safe_strerror (errno));
353 do_cleanups (old_chain);
356 /* This is the implementation of trace_file_write_ops method
357 write_header. Write the types of events on trace variable and
361 ctf_write_header (struct trace_file_writer *self)
363 struct ctf_trace_file_writer *writer
364 = (struct ctf_trace_file_writer *) self;
367 ctf_save_write_metadata (&writer->tcs, "\n");
368 ctf_save_write_metadata (&writer->tcs,
369 "event {\n\tname = \"memory\";\n\tid = %u;\n"
370 "\tfields := struct { \n"
371 "\t\tuint64_t address;\n"
372 "\t\tuint16_t length;\n"
373 "\t\tuint8_t contents[length];\n"
375 "};\n", CTF_EVENT_ID_MEMORY);
377 ctf_save_write_metadata (&writer->tcs, "\n");
378 ctf_save_write_metadata (&writer->tcs,
379 "event {\n\tname = \"tsv\";\n\tid = %u;\n"
380 "\tfields := struct { \n"
381 "\t\tuint64_t val;\n"
382 "\t\tuint32_t num;\n"
384 "};\n", CTF_EVENT_ID_TSV);
386 ctf_save_write_metadata (&writer->tcs, "\n");
387 ctf_save_write_metadata (&writer->tcs,
388 "event {\n\tname = \"frame\";\n\tid = %u;\n"
389 "\tfields := struct { \n"
391 "};\n", CTF_EVENT_ID_FRAME);
393 ctf_save_write_metadata (&writer->tcs, "\n");
394 ctf_save_write_metadata (&writer->tcs,
395 "event {\n\tname = \"tsv_def\";\n"
396 "\tid = %u;\n\tfields := struct { \n"
397 "\t\tint64_t initial_value;\n"
398 "\t\tint32_t number;\n"
399 "\t\tint32_t builtin;\n"
402 "};\n", CTF_EVENT_ID_TSV_DEF);
404 ctf_save_write_metadata (&writer->tcs, "\n");
405 ctf_save_write_metadata (&writer->tcs,
406 "event {\n\tname = \"tp_def\";\n"
407 "\tid = %u;\n\tfields := struct { \n"
408 "\t\tuint64_t addr;\n"
409 "\t\tuint64_t traceframe_usage;\n"
410 "\t\tint32_t number;\n"
411 "\t\tint32_t enabled;\n"
412 "\t\tint32_t step;\n"
413 "\t\tint32_t pass;\n"
414 "\t\tint32_t hit_count;\n"
415 "\t\tint32_t type;\n"
418 "\t\tuint32_t action_num;\n"
419 "\t\tchars actions[action_num];\n"
421 "\t\tuint32_t step_action_num;\n"
422 "\t\tchars step_actions[step_action_num];\n"
424 "\t\tchars at_string;\n"
425 "\t\tchars cond_string;\n"
427 "\t\tuint32_t cmd_num;\n"
428 "\t\tchars cmd_strings[cmd_num];\n"
430 "};\n", CTF_EVENT_ID_TP_DEF);
432 gdb_assert (writer->tcs.content_size == 0);
433 gdb_assert (writer->tcs.packet_start == 0);
435 /* Create a new packet to contain this event. */
436 self->ops->frame_ops->start (self, 0);
439 /* This is the implementation of trace_file_write_ops method
440 write_regblock_type. Write the type of register event in
444 ctf_write_regblock_type (struct trace_file_writer *self, int size)
446 struct ctf_trace_file_writer *writer
447 = (struct ctf_trace_file_writer *) self;
449 ctf_save_write_metadata (&writer->tcs, "\n");
451 ctf_save_write_metadata (&writer->tcs,
452 "event {\n\tname = \"register\";\n\tid = %u;\n"
453 "\tfields := struct { \n"
454 "\t\tascii contents[%d];\n"
457 CTF_EVENT_ID_REGISTER, size);
460 /* This is the implementation of trace_file_write_ops method
464 ctf_write_status (struct trace_file_writer *self,
465 struct trace_status *ts)
467 struct ctf_trace_file_writer *writer
468 = (struct ctf_trace_file_writer *) self;
472 ctf_save_write_metadata (&writer->tcs, "\n");
473 ctf_save_write_metadata (&writer->tcs,
474 "event {\n\tname = \"status\";\n\tid = %u;\n"
475 "\tfields := struct { \n"
476 "\t\tint32_t stop_reason;\n"
477 "\t\tint32_t stopping_tracepoint;\n"
478 "\t\tint32_t traceframe_count;\n"
479 "\t\tint32_t traceframes_created;\n"
480 "\t\tint32_t buffer_free;\n"
481 "\t\tint32_t buffer_size;\n"
482 "\t\tint32_t disconnected_tracing;\n"
483 "\t\tint32_t circular_buffer;\n"
486 CTF_EVENT_ID_STATUS);
488 id = CTF_EVENT_ID_STATUS;
490 ctf_save_align_write (&writer->tcs, (gdb_byte *) &id, 4, 4);
492 ctf_save_write_int32 (&writer->tcs, ts->stop_reason);
493 ctf_save_write_int32 (&writer->tcs, ts->stopping_tracepoint);
494 ctf_save_write_int32 (&writer->tcs, ts->traceframe_count);
495 ctf_save_write_int32 (&writer->tcs, ts->traceframes_created);
496 ctf_save_write_int32 (&writer->tcs, ts->buffer_free);
497 ctf_save_write_int32 (&writer->tcs, ts->buffer_size);
498 ctf_save_write_int32 (&writer->tcs, ts->disconnected_tracing);
499 ctf_save_write_int32 (&writer->tcs, ts->circular_buffer);
502 /* This is the implementation of trace_file_write_ops method
503 write_uploaded_tsv. */
506 ctf_write_uploaded_tsv (struct trace_file_writer *self,
507 struct uploaded_tsv *tsv)
509 struct ctf_trace_file_writer *writer
510 = (struct ctf_trace_file_writer *) self;
514 const gdb_byte zero = 0;
517 int32 = CTF_EVENT_ID_TSV_DEF;
518 ctf_save_align_write (&writer->tcs, (gdb_byte *) &int32, 4, 4);
521 int64 = tsv->initial_value;
522 ctf_save_align_write (&writer->tcs, (gdb_byte *) &int64, 8, 8);
525 ctf_save_write_int32 (&writer->tcs, tsv->number);
528 ctf_save_write_int32 (&writer->tcs, tsv->builtin);
531 if (tsv->name != NULL)
532 ctf_save_write (&writer->tcs, tsv->name, strlen (tsv->name));
533 ctf_save_write (&writer->tcs, &zero, 1);
536 /* This is the implementation of trace_file_write_ops method
537 write_uploaded_tp. */
540 ctf_write_uploaded_tp (struct trace_file_writer *self,
541 struct uploaded_tp *tp)
543 struct ctf_trace_file_writer *writer
544 = (struct ctf_trace_file_writer *) self;
548 const gdb_byte zero = 0;
553 int32 = CTF_EVENT_ID_TP_DEF;
554 ctf_save_align_write (&writer->tcs, (gdb_byte *) &int32, 4, 4);
558 ctf_save_align_write (&writer->tcs, (gdb_byte *) &int64, 8, 8);
560 /* traceframe_usage */
561 int64 = tp->traceframe_usage;
562 ctf_save_align_write (&writer->tcs, (gdb_byte *) &int64, 8, 8);
565 ctf_save_write_int32 (&writer->tcs, tp->number);
568 ctf_save_write_int32 (&writer->tcs, tp->enabled);
571 ctf_save_write_int32 (&writer->tcs, tp->step);
574 ctf_save_write_int32 (&writer->tcs, tp->pass);
577 ctf_save_write_int32 (&writer->tcs, tp->hit_count);
580 ctf_save_write_int32 (&writer->tcs, tp->type);
583 if (tp->cond != NULL)
584 ctf_save_write (&writer->tcs, tp->cond, strlen (tp->cond));
585 ctf_save_write (&writer->tcs, &zero, 1);
588 u32 = VEC_length (char_ptr, tp->actions);
589 ctf_save_align_write (&writer->tcs, (gdb_byte *) &u32, 4, 4);
590 for (a = 0; VEC_iterate (char_ptr, tp->actions, a, act); ++a)
591 ctf_save_write (&writer->tcs, act, strlen (act) + 1);
594 u32 = VEC_length (char_ptr, tp->step_actions);
595 ctf_save_align_write (&writer->tcs, (gdb_byte *) &u32, 4, 4);
596 for (a = 0; VEC_iterate (char_ptr, tp->step_actions, a, act); ++a)
597 ctf_save_write (&writer->tcs, act, strlen (act) + 1);
600 if (tp->at_string != NULL)
601 ctf_save_write (&writer->tcs, tp->at_string,
602 strlen (tp->at_string));
603 ctf_save_write (&writer->tcs, &zero, 1);
606 if (tp->cond_string != NULL)
607 ctf_save_write (&writer->tcs, tp->cond_string,
608 strlen (tp->cond_string));
609 ctf_save_write (&writer->tcs, &zero, 1);
612 u32 = VEC_length (char_ptr, tp->cmd_strings);
613 ctf_save_align_write (&writer->tcs, (gdb_byte *) &u32, 4, 4);
614 for (a = 0; VEC_iterate (char_ptr, tp->cmd_strings, a, act); ++a)
615 ctf_save_write (&writer->tcs, act, strlen (act) + 1);
619 /* This is the implementation of trace_file_write_ops method
620 write_definition_end. */
623 ctf_write_definition_end (struct trace_file_writer *self)
625 struct ctf_trace_file_writer *writer
626 = (struct ctf_trace_file_writer *) self;
628 self->ops->frame_ops->end (self);
631 /* The minimal file size of data stream. It is required by
634 #define CTF_FILE_MIN_SIZE 4096
636 /* This is the implementation of trace_file_write_ops method
640 ctf_end (struct trace_file_writer *self)
642 struct ctf_trace_file_writer *writer = (struct ctf_trace_file_writer *) self;
644 gdb_assert (writer->tcs.content_size == 0);
645 /* The babeltrace requires or assumes that the size of datastream
646 file is greater than 4096 bytes. If we don't generate enough
647 packets and events, create a fake packet which has zero event,
648 to use up the space. */
649 if (writer->tcs.packet_start < CTF_FILE_MIN_SIZE)
655 ctf_save_write_uint32 (&writer->tcs, u32);
659 ctf_save_write_uint32 (&writer->tcs, u32);
663 if (writer->tcs.packet_start + u32 < CTF_FILE_MIN_SIZE)
664 u32 = CTF_FILE_MIN_SIZE - writer->tcs.packet_start;
666 u32 *= TARGET_CHAR_BIT;
667 ctf_save_write_uint32 (&writer->tcs, u32);
671 ctf_save_write (&writer->tcs, (gdb_byte *) &u32, 2);
673 /* Enlarge the file to CTF_FILE_MIN_SIZE is it is still less
675 if (CTF_FILE_MIN_SIZE
676 > (writer->tcs.packet_start + writer->tcs.content_size))
680 /* Fake the content size to avoid assertion failure in
682 writer->tcs.content_size = (CTF_FILE_MIN_SIZE
683 - 1 - writer->tcs.packet_start);
684 ctf_save_fseek (&writer->tcs, CTF_FILE_MIN_SIZE - 1,
686 ctf_save_write (&writer->tcs, &b, 1);
691 /* This is the implementation of trace_frame_write_ops method
695 ctf_write_frame_start (struct trace_file_writer *self, uint16_t tpnum)
697 struct ctf_trace_file_writer *writer
698 = (struct ctf_trace_file_writer *) self;
699 uint32_t id = CTF_EVENT_ID_FRAME;
702 /* Step 1: Write packet context. */
705 ctf_save_write_uint32 (&writer->tcs, u32);
706 /* content_size and packet_size.. We still don't know the value,
708 ctf_save_fseek (&writer->tcs, 4, SEEK_CUR);
709 ctf_save_fseek (&writer->tcs, 4, SEEK_CUR);
710 /* Tracepoint number. */
711 ctf_save_write (&writer->tcs, (gdb_byte *) &tpnum, 2);
713 /* Step 2: Write event "frame". */
715 ctf_save_align_write (&writer->tcs, (gdb_byte *) &id, 4, 4);
718 /* This is the implementation of trace_frame_write_ops method
722 ctf_write_frame_r_block (struct trace_file_writer *self,
723 gdb_byte *buf, int32_t size)
725 struct ctf_trace_file_writer *writer
726 = (struct ctf_trace_file_writer *) self;
727 uint32_t id = CTF_EVENT_ID_REGISTER;
730 ctf_save_align_write (&writer->tcs, (gdb_byte *) &id, 4, 4);
732 /* array contents. */
733 ctf_save_align_write (&writer->tcs, buf, size, 1);
736 /* This is the implementation of trace_frame_write_ops method
737 write_m_block_header. */
740 ctf_write_frame_m_block_header (struct trace_file_writer *self,
741 uint64_t addr, uint16_t length)
743 struct ctf_trace_file_writer *writer
744 = (struct ctf_trace_file_writer *) self;
745 uint32_t event_id = CTF_EVENT_ID_MEMORY;
748 ctf_save_align_write (&writer->tcs, (gdb_byte *) &event_id, 4, 4);
751 ctf_save_align_write (&writer->tcs, (gdb_byte *) &addr, 8, 8);
754 ctf_save_align_write (&writer->tcs, (gdb_byte *) &length, 2, 2);
757 /* This is the implementation of trace_frame_write_ops method
758 write_m_block_memory. */
761 ctf_write_frame_m_block_memory (struct trace_file_writer *self,
762 gdb_byte *buf, uint16_t length)
764 struct ctf_trace_file_writer *writer
765 = (struct ctf_trace_file_writer *) self;
768 ctf_save_align_write (&writer->tcs, (gdb_byte *) buf, length, 1);
771 /* This is the implementation of trace_frame_write_ops method
775 ctf_write_frame_v_block (struct trace_file_writer *self,
776 int32_t num, uint64_t val)
778 struct ctf_trace_file_writer *writer
779 = (struct ctf_trace_file_writer *) self;
780 uint32_t id = CTF_EVENT_ID_TSV;
783 ctf_save_align_write (&writer->tcs, (gdb_byte *) &id, 4, 4);
786 ctf_save_align_write (&writer->tcs, (gdb_byte *) &val, 8, 8);
788 ctf_save_align_write (&writer->tcs, (gdb_byte *) &num, 4, 4);
791 /* This is the implementation of trace_frame_write_ops method
795 ctf_write_frame_end (struct trace_file_writer *self)
797 struct ctf_trace_file_writer *writer
798 = (struct ctf_trace_file_writer *) self;
802 /* Write the content size to packet header. */
803 ctf_save_fseek (&writer->tcs, writer->tcs.packet_start + 4,
805 u32 = writer->tcs.content_size * TARGET_CHAR_BIT;
807 t = writer->tcs.content_size;
808 ctf_save_write_uint32 (&writer->tcs, u32);
810 /* Write the packet size. */
811 u32 += 4 * TARGET_CHAR_BIT;
812 ctf_save_write_uint32 (&writer->tcs, u32);
814 writer->tcs.content_size = t;
816 /* Write zero at the end of the packet. */
817 ctf_save_fseek (&writer->tcs, writer->tcs.packet_start + t,
820 ctf_save_write_uint32 (&writer->tcs, u32);
821 writer->tcs.content_size = t;
823 ctf_save_next_packet (&writer->tcs);
826 /* Operations to write various types of trace frames into CTF
829 static const struct trace_frame_write_ops ctf_write_frame_ops =
831 ctf_write_frame_start,
832 ctf_write_frame_r_block,
833 ctf_write_frame_m_block_header,
834 ctf_write_frame_m_block_memory,
835 ctf_write_frame_v_block,
839 /* Operations to write trace buffers into CTF format. */
841 static const struct trace_file_write_ops ctf_write_ops =
847 ctf_write_regblock_type,
849 ctf_write_uploaded_tsv,
850 ctf_write_uploaded_tp,
851 ctf_write_definition_end,
853 &ctf_write_frame_ops,
857 /* Return a trace writer for CTF format. */
859 struct trace_file_writer *
860 ctf_trace_file_writer_new (void)
862 struct ctf_trace_file_writer *writer
863 = xmalloc (sizeof (struct ctf_trace_file_writer));
865 writer->base.ops = &ctf_write_ops;
867 return (struct trace_file_writer *) writer;
870 #if HAVE_LIBBABELTRACE
871 /* Use libbabeltrace to read CTF data. The libbabeltrace provides
872 iterator to iterate over each event in CTF data and APIs to get
873 details of event and packet, so it is very convenient to use
874 libbabeltrace to access events in CTF. */
876 #include <babeltrace/babeltrace.h>
877 #include <babeltrace/ctf/events.h>
878 #include <babeltrace/ctf/iterator.h>
880 /* The struct pointer for current CTF directory. */
881 static struct bt_context *ctx = NULL;
882 static struct bt_ctf_iter *ctf_iter = NULL;
883 /* The position of the first packet containing trace frame. */
884 static struct bt_iter_pos *start_pos;
886 /* The name of CTF directory. */
887 static char *trace_dirname;
889 static struct target_ops ctf_ops;
891 /* Destroy ctf iterator and context. */
896 if (ctf_iter != NULL)
898 bt_ctf_iter_destroy (ctf_iter);
903 bt_context_put (ctx);
908 /* Open CTF trace data in DIRNAME. */
911 ctf_open_dir (char *dirname)
914 struct bt_iter_pos begin_pos;
915 struct bt_iter_pos *pos;
917 ctx = bt_context_create ();
919 error (_("Unable to create bt_context"));
920 ret = bt_context_add_trace (ctx, dirname, "ctf", NULL, NULL, NULL);
924 error (_("Unable to use libbabeltrace on directory \"%s\""),
928 begin_pos.type = BT_SEEK_BEGIN;
929 ctf_iter = bt_ctf_iter_create (ctx, &begin_pos, NULL);
930 if (ctf_iter == NULL)
933 error (_("Unable to create bt_iterator"));
936 /* Iterate over events, and look for an event for register block
937 to set trace_regblock_size. */
939 /* Save the current position. */
940 pos = bt_iter_get_pos (bt_ctf_get_iter (ctf_iter));
941 gdb_assert (pos->type == BT_SEEK_RESTORE);
946 struct bt_ctf_event *event;
948 event = bt_ctf_iter_read_event (ctf_iter);
950 name = bt_ctf_event_name (event);
954 else if (strcmp (name, "register") == 0)
956 const struct bt_definition *scope
957 = bt_ctf_get_top_level_scope (event,
959 const struct bt_definition *array
960 = bt_ctf_get_field (event, scope, "contents");
963 = bt_ctf_get_array_len (bt_ctf_get_decl_from_def (array));
966 if (bt_iter_next (bt_ctf_get_iter (ctf_iter)) < 0)
970 /* Restore the position. */
971 bt_iter_set_pos (bt_ctf_get_iter (ctf_iter), pos);
974 #define SET_INT32_FIELD(EVENT, SCOPE, VAR, FIELD) \
975 (VAR)->FIELD = (int) bt_ctf_get_int64 (bt_ctf_get_field ((EVENT), \
979 /* EVENT is the "status" event and TS is filled in. */
982 ctf_read_status (struct bt_ctf_event *event, struct trace_status *ts)
984 const struct bt_definition *scope
985 = bt_ctf_get_top_level_scope (event, BT_EVENT_FIELDS);
987 SET_INT32_FIELD (event, scope, ts, stop_reason);
988 SET_INT32_FIELD (event, scope, ts, stopping_tracepoint);
989 SET_INT32_FIELD (event, scope, ts, traceframe_count);
990 SET_INT32_FIELD (event, scope, ts, traceframes_created);
991 SET_INT32_FIELD (event, scope, ts, buffer_free);
992 SET_INT32_FIELD (event, scope, ts, buffer_size);
993 SET_INT32_FIELD (event, scope, ts, disconnected_tracing);
994 SET_INT32_FIELD (event, scope, ts, circular_buffer);
996 bt_iter_next (bt_ctf_get_iter (ctf_iter));
999 /* Read the events "tsv_def" one by one, extract its contents and fill
1000 in the list UPLOADED_TSVS. */
1003 ctf_read_tsv (struct uploaded_tsv **uploaded_tsvs)
1005 gdb_assert (ctf_iter != NULL);
1009 struct bt_ctf_event *event;
1010 const struct bt_definition *scope;
1011 const struct bt_definition *def;
1013 struct uploaded_tsv *utsv = NULL;
1015 event = bt_ctf_iter_read_event (ctf_iter);
1016 scope = bt_ctf_get_top_level_scope (event,
1017 BT_STREAM_EVENT_HEADER);
1018 event_id = bt_ctf_get_uint64 (bt_ctf_get_field (event, scope,
1020 if (event_id != CTF_EVENT_ID_TSV_DEF)
1023 scope = bt_ctf_get_top_level_scope (event,
1026 def = bt_ctf_get_field (event, scope, "number");
1027 utsv = get_uploaded_tsv ((int32_t) bt_ctf_get_int64 (def),
1030 def = bt_ctf_get_field (event, scope, "builtin");
1031 utsv->builtin = (int32_t) bt_ctf_get_int64 (def);
1032 def = bt_ctf_get_field (event, scope, "initial_value");
1033 utsv->initial_value = bt_ctf_get_int64 (def);
1035 def = bt_ctf_get_field (event, scope, "name");
1036 utsv->name = xstrdup (bt_ctf_get_string (def));
1038 if (bt_iter_next (bt_ctf_get_iter (ctf_iter)) < 0)
1044 /* Read the value of element whose index is NUM from CTF and write it
1045 to the corresponding VAR->ARRAY. */
1047 #define SET_ARRAY_FIELD(EVENT, SCOPE, VAR, NUM, ARRAY) \
1051 const struct bt_definition *def; \
1053 u32 = (uint32_t) bt_ctf_get_uint64 (bt_ctf_get_field ((EVENT), \
1056 def = bt_ctf_get_field ((EVENT), (SCOPE), #ARRAY); \
1057 for (i = 0; i < u32; i++) \
1059 const struct bt_definition *element \
1060 = bt_ctf_get_index ((EVENT), def, i); \
1062 VEC_safe_push (char_ptr, (VAR)->ARRAY, \
1063 xstrdup (bt_ctf_get_string (element))); \
1068 /* Read a string from CTF and set VAR->FIELD. If the length of string
1069 is zero, set VAR->FIELD to NULL. */
1071 #define SET_STRING_FIELD(EVENT, SCOPE, VAR, FIELD) \
1074 const char *p = bt_ctf_get_string (bt_ctf_get_field ((EVENT), \
1078 if (strlen (p) > 0) \
1079 (VAR)->FIELD = xstrdup (p); \
1081 (VAR)->FIELD = NULL; \
1085 /* Read the events "tp_def" one by one, extract its contents and fill
1086 in the list UPLOADED_TPS. */
1089 ctf_read_tp (struct uploaded_tp **uploaded_tps)
1091 gdb_assert (ctf_iter != NULL);
1095 struct bt_ctf_event *event;
1096 const struct bt_definition *scope;
1100 struct uploaded_tp *utp = NULL;
1102 event = bt_ctf_iter_read_event (ctf_iter);
1103 scope = bt_ctf_get_top_level_scope (event,
1104 BT_STREAM_EVENT_HEADER);
1105 u32 = bt_ctf_get_uint64 (bt_ctf_get_field (event, scope,
1107 if (u32 != CTF_EVENT_ID_TP_DEF)
1110 scope = bt_ctf_get_top_level_scope (event,
1112 int32 = (int32_t) bt_ctf_get_int64 (bt_ctf_get_field (event,
1115 u64 = bt_ctf_get_uint64 (bt_ctf_get_field (event, scope,
1117 utp = get_uploaded_tp (int32, u64, uploaded_tps);
1119 SET_INT32_FIELD (event, scope, utp, enabled);
1120 SET_INT32_FIELD (event, scope, utp, step);
1121 SET_INT32_FIELD (event, scope, utp, pass);
1122 SET_INT32_FIELD (event, scope, utp, hit_count);
1123 SET_INT32_FIELD (event, scope, utp, type);
1125 /* Read 'cmd_strings'. */
1126 SET_ARRAY_FIELD (event, scope, utp, cmd_num, cmd_strings);
1127 /* Read 'actions'. */
1128 SET_ARRAY_FIELD (event, scope, utp, action_num, actions);
1129 /* Read 'step_actions'. */
1130 SET_ARRAY_FIELD (event, scope, utp, step_action_num,
1133 SET_STRING_FIELD(event, scope, utp, at_string);
1134 SET_STRING_FIELD(event, scope, utp, cond_string);
1136 if (bt_iter_next (bt_ctf_get_iter (ctf_iter)) < 0)
1141 /* This is the implementation of target_ops method to_open. Open CTF
1142 trace data, read trace status, trace state variables and tracepoint
1143 definitions from the first packet. Set the start position at the
1144 second packet which contains events on trace blocks. */
1147 ctf_open (char *dirname, int from_tty)
1149 struct bt_ctf_event *event;
1151 const struct bt_definition *scope;
1152 struct uploaded_tsv *uploaded_tsvs = NULL;
1153 struct uploaded_tp *uploaded_tps = NULL;
1156 error (_("No CTF directory specified."));
1158 ctf_open_dir (dirname);
1160 target_preopen (from_tty);
1162 /* Skip the first packet which about the trace status. The first
1163 event is "frame". */
1164 event = bt_ctf_iter_read_event (ctf_iter);
1165 scope = bt_ctf_get_top_level_scope (event, BT_STREAM_EVENT_HEADER);
1166 event_id = bt_ctf_get_uint64 (bt_ctf_get_field (event, scope, "id"));
1167 if (event_id != CTF_EVENT_ID_FRAME)
1168 error (_("Wrong event id of the first event"));
1169 /* The second event is "status". */
1170 bt_iter_next (bt_ctf_get_iter (ctf_iter));
1171 event = bt_ctf_iter_read_event (ctf_iter);
1172 scope = bt_ctf_get_top_level_scope (event, BT_STREAM_EVENT_HEADER);
1173 event_id = bt_ctf_get_uint64 (bt_ctf_get_field (event, scope, "id"));
1174 if (event_id != CTF_EVENT_ID_STATUS)
1175 error (_("Wrong event id of the second event"));
1176 ctf_read_status (event, current_trace_status ());
1178 ctf_read_tsv (&uploaded_tsvs);
1180 ctf_read_tp (&uploaded_tps);
1182 event = bt_ctf_iter_read_event (ctf_iter);
1183 /* EVENT can be NULL if we've already gone to the end of stream of
1187 scope = bt_ctf_get_top_level_scope (event,
1188 BT_STREAM_EVENT_HEADER);
1189 event_id = bt_ctf_get_uint64 (bt_ctf_get_field (event,
1191 if (event_id != CTF_EVENT_ID_FRAME)
1192 error (_("Wrong event id of the first event of the second packet"));
1195 start_pos = bt_iter_get_pos (bt_ctf_get_iter (ctf_iter));
1196 gdb_assert (start_pos->type == BT_SEEK_RESTORE);
1198 trace_dirname = xstrdup (dirname);
1199 push_target (&ctf_ops);
1201 merge_uploaded_trace_state_variables (&uploaded_tsvs);
1202 merge_uploaded_tracepoints (&uploaded_tps);
1205 /* This is the implementation of target_ops method to_close. Destroy
1206 CTF iterator and context. */
1212 xfree (trace_dirname);
1213 trace_dirname = NULL;
1216 /* This is the implementation of target_ops method to_files_info.
1217 Print the directory name of CTF trace data. */
1220 ctf_files_info (struct target_ops *t)
1222 printf_filtered ("\t`%s'\n", trace_dirname);
1225 /* This is the implementation of target_ops method to_fetch_registers.
1226 Iterate over events whose name is "register" in current frame,
1227 extract contents from events, and set REGCACHE with the contents.
1228 If no matched events are found, mark registers unavailable. */
1231 ctf_fetch_registers (struct target_ops *ops,
1232 struct regcache *regcache, int regno)
1234 struct gdbarch *gdbarch = get_regcache_arch (regcache);
1235 int offset, regn, regsize, pc_regno;
1237 struct bt_ctf_event *event = NULL;
1238 struct bt_iter_pos *pos;
1240 /* An uninitialized reg size says we're not going to be
1241 successful at getting register blocks. */
1242 if (trace_regblock_size == 0)
1245 gdb_assert (ctf_iter != NULL);
1246 /* Save the current position. */
1247 pos = bt_iter_get_pos (bt_ctf_get_iter (ctf_iter));
1248 gdb_assert (pos->type == BT_SEEK_RESTORE);
1253 struct bt_ctf_event *event1;
1255 event1 = bt_ctf_iter_read_event (ctf_iter);
1257 name = bt_ctf_event_name (event1);
1259 if (name == NULL || strcmp (name, "frame") == 0)
1261 else if (strcmp (name, "register") == 0)
1267 if (bt_iter_next (bt_ctf_get_iter (ctf_iter)) < 0)
1271 /* Restore the position. */
1272 bt_iter_set_pos (bt_ctf_get_iter (ctf_iter), pos);
1276 const struct bt_definition *scope
1277 = bt_ctf_get_top_level_scope (event,
1279 const struct bt_definition *array
1280 = bt_ctf_get_field (event, scope, "contents");
1282 regs = bt_ctf_get_char_array (array);
1283 /* Assume the block is laid out in GDB register number order,
1284 each register with the size that it has in GDB. */
1286 for (regn = 0; regn < gdbarch_num_regs (gdbarch); regn++)
1288 regsize = register_size (gdbarch, regn);
1289 /* Make sure we stay within block bounds. */
1290 if (offset + regsize >= trace_regblock_size)
1292 if (regcache_register_status (regcache, regn) == REG_UNKNOWN)
1296 regcache_raw_supply (regcache, regno, regs + offset);
1299 else if (regno == -1)
1301 regcache_raw_supply (regcache, regn, regs + offset);
1309 regs = alloca (trace_regblock_size);
1311 /* We get here if no register data has been found. Mark registers
1313 for (regn = 0; regn < gdbarch_num_regs (gdbarch); regn++)
1314 regcache_raw_supply (regcache, regn, NULL);
1316 /* We can often usefully guess that the PC is going to be the same
1317 as the address of the tracepoint. */
1318 pc_regno = gdbarch_pc_regnum (gdbarch);
1319 if (pc_regno >= 0 && (regno == -1 || regno == pc_regno))
1321 struct tracepoint *tp = get_tracepoint (get_tracepoint_number ());
1323 if (tp != NULL && tp->base.loc)
1325 /* But don't try to guess if tracepoint is multi-location... */
1326 if (tp->base.loc->next != NULL)
1328 warning (_("Tracepoint %d has multiple "
1329 "locations, cannot infer $pc"),
1333 /* ... or does while-stepping. */
1334 if (tp->step_count > 0)
1336 warning (_("Tracepoint %d does while-stepping, "
1337 "cannot infer $pc"),
1342 store_unsigned_integer (regs, register_size (gdbarch, pc_regno),
1343 gdbarch_byte_order (gdbarch),
1344 tp->base.loc->address);
1345 regcache_raw_supply (regcache, pc_regno, regs);
1350 /* This is the implementation of target_ops method to_xfer_partial.
1351 Iterate over events whose name is "memory" in
1352 current frame, extract the address and length from events. If
1353 OFFSET is within the range, read the contents from events to
1357 ctf_xfer_partial (struct target_ops *ops, enum target_object object,
1358 const char *annex, gdb_byte *readbuf,
1359 const gdb_byte *writebuf, ULONGEST offset,
1362 /* We're only doing regular memory for now. */
1363 if (object != TARGET_OBJECT_MEMORY)
1366 if (readbuf == NULL)
1367 error (_("ctf_xfer_partial: trace file is read-only"));
1369 if (get_traceframe_number () != -1)
1371 struct bt_iter_pos *pos;
1374 gdb_assert (ctf_iter != NULL);
1375 /* Save the current position. */
1376 pos = bt_iter_get_pos (bt_ctf_get_iter (ctf_iter));
1377 gdb_assert (pos->type == BT_SEEK_RESTORE);
1379 /* Iterate through the traceframe's blocks, looking for
1386 enum bfd_endian byte_order
1387 = gdbarch_byte_order (target_gdbarch ());
1388 const struct bt_definition *scope;
1389 const struct bt_definition *def;
1390 struct bt_ctf_event *event
1391 = bt_ctf_iter_read_event (ctf_iter);
1392 const char *name = bt_ctf_event_name (event);
1394 if (strcmp (name, "frame") == 0)
1396 else if (strcmp (name, "memory") != 0)
1398 if (bt_iter_next (bt_ctf_get_iter (ctf_iter)) < 0)
1404 scope = bt_ctf_get_top_level_scope (event,
1407 def = bt_ctf_get_field (event, scope, "address");
1408 maddr = bt_ctf_get_uint64 (def);
1409 def = bt_ctf_get_field (event, scope, "length");
1410 mlen = (uint16_t) bt_ctf_get_uint64 (def);
1412 /* If the block includes the first part of the desired
1413 range, return as much it has; GDB will re-request the
1414 remainder, which might be in a different block of this
1416 if (maddr <= offset && offset < (maddr + mlen))
1418 const struct bt_definition *array
1419 = bt_ctf_get_field (event, scope, "contents");
1420 const struct bt_declaration *decl
1421 = bt_ctf_get_decl_from_def (array);
1425 contents = xmalloc (mlen);
1427 for (k = 0; k < mlen; k++)
1429 const struct bt_definition *element
1430 = bt_ctf_get_index (event, array, k);
1432 contents[k] = (gdb_byte) bt_ctf_get_uint64 (element);
1435 amt = (maddr + mlen) - offset;
1439 memcpy (readbuf, &contents[offset - maddr], amt);
1443 /* Restore the position. */
1444 bt_iter_set_pos (bt_ctf_get_iter (ctf_iter), pos);
1449 if (bt_iter_next (bt_ctf_get_iter (ctf_iter)) < 0)
1453 /* Restore the position. */
1454 bt_iter_set_pos (bt_ctf_get_iter (ctf_iter), pos);
1457 /* It's unduly pedantic to refuse to look at the executable for
1458 read-only pieces; so do the equivalent of readonly regions aka
1460 if (exec_bfd != NULL)
1466 for (s = exec_bfd->sections; s; s = s->next)
1468 if ((s->flags & SEC_LOAD) == 0
1469 || (s->flags & SEC_READONLY) == 0)
1473 size = bfd_get_section_size (s);
1474 if (vma <= offset && offset < (vma + size))
1478 amt = (vma + size) - offset;
1482 amt = bfd_get_section_contents (exec_bfd, s,
1483 readbuf, offset - vma, amt);
1489 /* Indicate failure to find the requested memory block. */
1493 /* This is the implementation of target_ops method
1494 to_get_trace_state_variable_value.
1495 Iterate over events whose name is "tsv" in current frame. When the
1496 trace variable is found, set the value of it to *VAL and return
1497 true, otherwise return false. */
1500 ctf_get_trace_state_variable_value (int tsvnum, LONGEST *val)
1502 struct bt_iter_pos *pos;
1505 gdb_assert (ctf_iter != NULL);
1506 /* Save the current position. */
1507 pos = bt_iter_get_pos (bt_ctf_get_iter (ctf_iter));
1508 gdb_assert (pos->type == BT_SEEK_RESTORE);
1510 /* Iterate through the traceframe's blocks, looking for 'V'
1514 struct bt_ctf_event *event
1515 = bt_ctf_iter_read_event (ctf_iter);
1516 const char *name = bt_ctf_event_name (event);
1518 if (name == NULL || strcmp (name, "frame") == 0)
1520 else if (strcmp (name, "tsv") == 0)
1522 const struct bt_definition *scope;
1523 const struct bt_definition *def;
1525 scope = bt_ctf_get_top_level_scope (event,
1528 def = bt_ctf_get_field (event, scope, "num");
1529 if (tsvnum == (int32_t) bt_ctf_get_uint64 (def))
1531 def = bt_ctf_get_field (event, scope, "val");
1532 *val = bt_ctf_get_uint64 (def);
1538 if (bt_iter_next (bt_ctf_get_iter (ctf_iter)) < 0)
1542 /* Restore the position. */
1543 bt_iter_set_pos (bt_ctf_get_iter (ctf_iter), pos);
1548 /* Return the tracepoint number in "frame" event. */
1551 ctf_get_tpnum_from_frame_event (struct bt_ctf_event *event)
1553 /* The packet context of events has a field "tpnum". */
1554 const struct bt_definition *scope
1555 = bt_ctf_get_top_level_scope (event, BT_STREAM_PACKET_CONTEXT);
1557 = bt_ctf_get_uint64 (bt_ctf_get_field (event, scope, "tpnum"));
1562 /* Return the address at which the current frame was collected. */
1565 ctf_get_traceframe_address (void)
1567 struct bt_ctf_event *event = NULL;
1568 struct bt_iter_pos *pos;
1571 gdb_assert (ctf_iter != NULL);
1572 pos = bt_iter_get_pos (bt_ctf_get_iter (ctf_iter));
1573 gdb_assert (pos->type == BT_SEEK_RESTORE);
1578 struct bt_ctf_event *event1;
1580 event1 = bt_ctf_iter_read_event (ctf_iter);
1582 name = bt_ctf_event_name (event1);
1586 else if (strcmp (name, "frame") == 0)
1592 if (bt_iter_next (bt_ctf_get_iter (ctf_iter)) < 0)
1598 int tpnum = ctf_get_tpnum_from_frame_event (event);
1599 struct tracepoint *tp
1600 = get_tracepoint_by_number_on_target (tpnum);
1602 if (tp && tp->base.loc)
1603 addr = tp->base.loc->address;
1606 /* Restore the position. */
1607 bt_iter_set_pos (bt_ctf_get_iter (ctf_iter), pos);
1612 /* This is the implementation of target_ops method to_trace_find.
1613 Iterate the events whose name is "frame", extract the tracepoint
1614 number in it. Return traceframe number when matched. */
1617 ctf_trace_find (enum trace_find_type type, int num,
1618 CORE_ADDR addr1, CORE_ADDR addr2, int *tpp)
1623 struct bt_iter_pos pos;
1632 gdb_assert (ctf_iter != NULL);
1633 /* Set iterator back to the start. */
1634 bt_iter_set_pos (bt_ctf_get_iter (ctf_iter), start_pos);
1639 struct bt_ctf_event *event;
1642 event = bt_ctf_iter_read_event (ctf_iter);
1644 name = bt_ctf_event_name (event);
1646 if (event == NULL || name == NULL)
1649 if (strcmp (name, "frame") == 0)
1653 if (type == tfind_number)
1655 /* Looking for a specific trace frame. */
1661 /* Start from the _next_ trace frame. */
1662 if (tfnum > get_traceframe_number ())
1668 struct tracepoint *tp = get_tracepoint (num);
1671 && (tp->number_on_target
1672 == ctf_get_tpnum_from_frame_event (event)))
1677 tfaddr = ctf_get_traceframe_address ();
1678 if (tfaddr == addr1)
1682 tfaddr = ctf_get_traceframe_address ();
1683 if (addr1 <= tfaddr && tfaddr <= addr2)
1687 tfaddr = ctf_get_traceframe_address ();
1688 if (!(addr1 <= tfaddr && tfaddr <= addr2))
1692 internal_error (__FILE__, __LINE__, _("unknown tfind type"));
1699 *tpp = ctf_get_tpnum_from_frame_event (event);
1701 /* Skip the event "frame". */
1702 bt_iter_next (bt_ctf_get_iter (ctf_iter));
1709 if (bt_iter_next (bt_ctf_get_iter (ctf_iter)) < 0)
1716 /* This is the implementation of target_ops method to_has_stack.
1717 The target has a stack when GDB has already selected one trace
1721 ctf_has_stack (struct target_ops *ops)
1723 return get_traceframe_number () != -1;
1726 /* This is the implementation of target_ops method to_has_registers.
1727 The target has registers when GDB has already selected one trace
1731 ctf_has_registers (struct target_ops *ops)
1733 return get_traceframe_number () != -1;
1736 /* This is the implementation of target_ops method to_traceframe_info.
1737 Iterate the events whose name is "memory", in current
1738 frame, extract memory range information, and return them in
1741 static struct traceframe_info *
1742 ctf_traceframe_info (void)
1744 struct traceframe_info *info = XCNEW (struct traceframe_info);
1746 struct bt_iter_pos *pos;
1748 gdb_assert (ctf_iter != NULL);
1749 /* Save the current position. */
1750 pos = bt_iter_get_pos (bt_ctf_get_iter (ctf_iter));
1751 gdb_assert (pos->type == BT_SEEK_RESTORE);
1755 struct bt_ctf_event *event
1756 = bt_ctf_iter_read_event (ctf_iter);
1758 name = bt_ctf_event_name (event);
1760 if (name == NULL || strcmp (name, "register") == 0
1761 || strcmp (name, "frame") == 0)
1763 else if (strcmp (name, "memory") == 0)
1765 const struct bt_definition *scope
1766 = bt_ctf_get_top_level_scope (event,
1768 const struct bt_definition *def;
1769 struct mem_range *r;
1771 r = VEC_safe_push (mem_range_s, info->memory, NULL);
1772 def = bt_ctf_get_field (event, scope, "address");
1773 r->start = bt_ctf_get_uint64 (def);
1775 def = bt_ctf_get_field (event, scope, "length");
1776 r->length = (uint16_t) bt_ctf_get_uint64 (def);
1780 warning (_("Unhandled trace block type (%s) "
1781 "while building trace frame info."),
1785 if (bt_iter_next (bt_ctf_get_iter (ctf_iter)) < 0)
1788 while (name != NULL && strcmp (name, "frame") != 0);
1790 /* Restore the position. */
1791 bt_iter_set_pos (bt_ctf_get_iter (ctf_iter), pos);
1796 /* This is the implementation of target_ops method to_get_trace_status.
1797 The trace status for a file is that tracing can never be run. */
1800 ctf_get_trace_status (struct trace_status *ts)
1802 /* Other bits of trace status were collected as part of opening the
1803 trace files, so nothing to do here. */
1811 memset (&ctf_ops, 0, sizeof (ctf_ops));
1813 ctf_ops.to_shortname = "ctf";
1814 ctf_ops.to_longname = "CTF file";
1815 ctf_ops.to_doc = "Use a CTF directory as a target.\n\
1816 Specify the filename of the CTF directory.";
1817 ctf_ops.to_open = ctf_open;
1818 ctf_ops.to_close = ctf_close;
1819 ctf_ops.to_fetch_registers = ctf_fetch_registers;
1820 ctf_ops.to_xfer_partial = ctf_xfer_partial;
1821 ctf_ops.to_files_info = ctf_files_info;
1822 ctf_ops.to_get_trace_status = ctf_get_trace_status;
1823 ctf_ops.to_trace_find = ctf_trace_find;
1824 ctf_ops.to_get_trace_state_variable_value
1825 = ctf_get_trace_state_variable_value;
1826 ctf_ops.to_stratum = process_stratum;
1827 ctf_ops.to_has_stack = ctf_has_stack;
1828 ctf_ops.to_has_registers = ctf_has_registers;
1829 ctf_ops.to_traceframe_info = ctf_traceframe_info;
1830 ctf_ops.to_magic = OPS_MAGIC;
1835 /* -Wmissing-prototypes */
1837 extern initialize_file_ftype _initialize_ctf;
1839 /* module initialization */
1842 _initialize_ctf (void)
1844 #if HAVE_LIBBABELTRACE
1847 add_target_with_completer (&ctf_ops, filename_completer);