git-svn-id: http://ltt.polymtl.ca/svn@460 04897980-b3bd-0310-b5e0-8ef037075253
[lttv.git] / ltt / branches / poly / ltt / tracefile.c
... / ...
CommitLineData
1#include <stdio.h>
2#include <fcntl.h>
3#include <sys/stat.h>
4#include <sys/types.h>
5#include <dirent.h>
6#include <linux/errno.h>
7
8#include "parser.h"
9#include <ltt/ltt.h>
10#include "ltt-private.h"
11#include <ltt/trace.h>
12#include <ltt/facility.h>
13
14#define DIR_NAME_SIZE 256
15
16/* set the offset of the fields belonging to the event,
17 need the information of the archecture */
18void setFieldsOffset(LttTracefile *tf,LttEventType *evT,void *evD,LttTrace *t);
19
20/* get the size of the field type according to the archtecture's
21 size and endian type(info of the archecture) */
22int getFieldtypeSize(LttTracefile * tf, LttEventType * evT, int offsetRoot,
23 int offsetParent, LttField *fld, void *evD, LttTrace* t);
24
25/* read a fixed size or a block information from the file (fd) */
26int readFile(int fd, void * buf, size_t size, char * mesg);
27int readBlock(LttTracefile * tf, int whichBlock);
28
29/* calculate cycles per nsec for current block */
30void getCyclePerNsec(LttTracefile * t);
31
32/* reinitialize the info of the block which is already in the buffer */
33void updateTracefile(LttTracefile * tf);
34
35/* go to the next event */
36int skipEvent(LttTracefile * t);
37
38
39/* Functions to parse system.xml file (using glib xml parser) */
40static void parser_start_element (GMarkupParseContext *context,
41 const gchar *element_name,
42 const gchar **attribute_names,
43 const gchar **attribute_values,
44 gpointer user_data,
45 GError **error)
46{
47 int i=0;
48 LttSystemDescription* des = (LttSystemDescription* )user_data;
49 if(strcmp("system", element_name)){
50 g_warning("This is not system.xml file\n");
51 exit(1);
52 }
53
54 while(attribute_names[i]){
55 if(strcmp("node_name", attribute_names[i])==0){
56 des->node_name = g_strdup(attribute_values[i]);
57 }else if(strcmp("domainname", attribute_names[i])==0){
58 des->domain_name = g_strdup(attribute_values[i]);
59 }else if(strcmp("cpu", attribute_names[i])==0){
60 des->nb_cpu = atoi(attribute_values[i]);
61 }else if(strcmp("arch_size", attribute_names[i])==0){
62 if(strcmp(attribute_values[i],"LP32") == 0) des->size = LTT_LP32;
63 else if(strcmp(attribute_values[i],"ILP32") == 0) des->size = LTT_ILP32;
64 else if(strcmp(attribute_values[i],"LP64") == 0) des->size = LTT_LP64;
65 else if(strcmp(attribute_values[i],"ILP64") == 0) des->size = LTT_ILP64;
66 else if(strcmp(attribute_values[i],"UNKNOWN") == 0) des->size = LTT_UNKNOWN;
67 }else if(strcmp("endian", attribute_names[i])==0){
68 if(strcmp(attribute_values[i],"LITTLE_ENDIAN") == 0)
69 des->endian = LTT_LITTLE_ENDIAN;
70 else if(strcmp(attribute_values[i],"BIG_ENDIAN") == 0)
71 des->endian = LTT_BIG_ENDIAN;
72 }else if(strcmp("kernel_name", attribute_names[i])==0){
73 des->kernel_name = g_strdup(attribute_values[i]);
74 }else if(strcmp("kernel_release", attribute_names[i])==0){
75 des->kernel_release = g_strdup(attribute_values[i]);
76 }else if(strcmp("kernel_version", attribute_names[i])==0){
77 des->kernel_version = g_strdup(attribute_values[i]);
78 }else if(strcmp("machine", attribute_names[i])==0){
79 des->machine = g_strdup(attribute_values[i]);
80 }else if(strcmp("processor", attribute_names[i])==0){
81 des->processor = g_strdup(attribute_values[i]);
82 }else if(strcmp("hardware_platform", attribute_names[i])==0){
83 des->hardware_platform = g_strdup(attribute_values[i]);
84 }else if(strcmp("operating_system", attribute_names[i])==0){
85 des->operating_system = g_strdup(attribute_values[i]);
86 }else if(strcmp("ltt_major_version", attribute_names[i])==0){
87 des->ltt_major_version = atoi(attribute_values[i]);
88 }else if(strcmp("ltt_minor_version", attribute_names[i])==0){
89 des->ltt_minor_version = atoi(attribute_values[i]);
90 }else if(strcmp("ltt_block_size", attribute_names[i])==0){
91 des->ltt_block_size = atoi(attribute_values[i]);
92 }else{
93 g_warning("Not a valid attribute\n");
94 exit(1);
95 }
96 i++;
97 }
98}
99
100static void parser_end_element (GMarkupParseContext *context,
101 const gchar *element_name,
102 gpointer user_data,
103 GError **error)
104{
105}
106
107static void parser_characters (GMarkupParseContext *context,
108 const gchar *text,
109 gsize text_len,
110 gpointer user_data,
111 GError **error)
112{
113 LttSystemDescription* des = (LttSystemDescription* )user_data;
114 des->description = g_strdup(text);
115}
116
117
118/*****************************************************************************
119 *Function name
120 * ltt_tracefile_open : open a trace file, construct a LttTracefile
121 *Input params
122 * t : the trace containing the tracefile
123 * fileName : path name of the trace file
124 *Return value
125 * : a pointer to a tracefile
126 ****************************************************************************/
127
128LttTracefile* ltt_tracefile_open(LttTrace * t, char * fileName)
129{
130 LttTracefile * tf;
131 struct stat lTDFStat; /* Trace data file status */
132 BlockStart a_block_start;
133
134 tf = g_new(LttTracefile, 1);
135
136 //open the file
137 tf->name = g_strdup(fileName);
138 tf->trace = t;
139 tf->fd = open(fileName, O_RDONLY, 0);
140 if(tf->fd < 0){
141 g_error("Unable to open input data file %s\n", fileName);
142 }
143
144 // Get the file's status
145 if(fstat(tf->fd, &lTDFStat) < 0){
146 g_error("Unable to get the status of the input data file %s\n", fileName);
147 }
148
149 // Is the file large enough to contain a trace
150 if(lTDFStat.st_size < sizeof(BlockStart) + EVENT_HEADER_SIZE){
151 g_print("The input data file %s does not contain a trace\n", fileName);
152 g_free(tf->name);
153 close(tf->fd);
154 g_free(tf);
155 return NULL;
156 }
157
158 //store the size of the file
159 tf->file_size = lTDFStat.st_size;
160 tf->block_size = t->system_description->ltt_block_size;
161 tf->block_number = tf->file_size / tf->block_size;
162 tf->which_block = 0;
163
164 //allocate memory to contain the info of a block
165 tf->buffer = (void *) g_new(char, t->system_description->ltt_block_size);
166
167 //read the first block
168 if(readBlock(tf,1)) exit(1);
169
170 return tf;
171}
172
173
174/*****************************************************************************
175 *Open control and per cpu tracefiles
176 ****************************************************************************/
177
178void ltt_tracefile_open_cpu(LttTrace *t, char * tracefile_name)
179{
180 LttTracefile * tf;
181 tf = ltt_tracefile_open(t,tracefile_name);
182 if(!tf) return;
183 t->per_cpu_tracefile_number++;
184 g_ptr_array_add(t->per_cpu_tracefiles, tf);
185}
186
187void ltt_tracefile_open_control(LttTrace *t, char * control_name)
188{
189 LttTracefile * tf;
190 LttEvent * ev;
191 LttFacility * f;
192 guint16 evId;
193 void * pos;
194 FacilityLoad fLoad;
195 int i;
196
197 tf = ltt_tracefile_open(t,control_name);
198 if(!tf) return;
199 t->control_tracefile_number++;
200 g_ptr_array_add(t->control_tracefiles,tf);
201
202 //parse facilities tracefile to get base_id
203 if(strcmp(&control_name[strlen(control_name)-10],"facilities") ==0){
204 while(1){
205 ev = ltt_tracefile_read(tf);
206 if(!ev)return; // end of file
207
208 if(ev->event_id == TRACE_FACILITY_LOAD){
209 pos = ev->data;
210 fLoad.name = (char*)pos;
211 fLoad.checksum = *(LttChecksum*)(pos + strlen(fLoad.name));
212 fLoad.base_code = *(guint32 *)(pos + strlen(fLoad.name) + sizeof(LttChecksum));
213
214 for(i=0;i<t->facility_number;i++){
215 f = (LttFacility*)g_ptr_array_index(t->facilities,i);
216 if(strcmp(f->name,fLoad.name)==0 && fLoad.checksum==f->checksum){
217 f->base_id = fLoad.base_code;
218 break;
219 }
220 }
221 if(i==t->facility_number)
222 g_error("Facility: %s, checksum: %d is not founded\n",
223 fLoad.name,fLoad.checksum);
224 }else if(ev->event_id == TRACE_BLOCK_START){
225 continue;
226 }else if(ev->event_id == TRACE_BLOCK_END){
227 break;
228 }else g_error("Not valid facilities trace file\n");
229 }
230 }
231}
232
233/*****************************************************************************
234 *Function name
235 * ltt_tracefile_close: close a trace file,
236 *Input params
237 * t : tracefile which will be closed
238 ****************************************************************************/
239
240void ltt_tracefile_close(LttTracefile *t)
241{
242 g_free(t->name);
243 g_free(t->buffer);
244 close(t->fd);
245 g_free(t);
246}
247
248
249/*****************************************************************************
250 *Get system information
251 ****************************************************************************/
252void getSystemInfo(LttSystemDescription* des, char * pathname)
253{
254 FILE * fp;
255 char buf[DIR_NAME_SIZE];
256 char description[4*DIR_NAME_SIZE];
257
258 GMarkupParseContext * context;
259 GError * error;
260 GMarkupParser markup_parser =
261 {
262 parser_start_element,
263 parser_end_element,
264 parser_characters,
265 NULL, /* passthrough */
266 NULL /* error */
267 };
268
269 fp = fopen(pathname,"r");
270 if(!fp){
271 g_error("Can not open file : %s\n", pathname);
272 }
273
274 context = g_markup_parse_context_new(&markup_parser, 0, des,NULL);
275
276 while(fgets(buf,DIR_NAME_SIZE, fp) != NULL){
277 if(!g_markup_parse_context_parse(context, buf, DIR_NAME_SIZE, &error)){
278 g_warning("Can not parse xml file: \n%s\n", error->message);
279 exit(1);
280 }
281 }
282 fclose(fp);
283}
284
285/*****************************************************************************
286 *The following functions get facility/tracefile information
287 ****************************************************************************/
288
289void getFacilityInfo(LttTrace *t, char* eventdefs)
290{
291 DIR * dir;
292 struct dirent *entry;
293 char * ptr;
294 int i,j;
295 LttFacility * f;
296 LttEventType * et;
297 char name[DIR_NAME_SIZE];
298
299 dir = opendir(eventdefs);
300 if(!dir) g_error("Can not open directory: %s\n", eventdefs);
301
302 while((entry = readdir(dir)) != NULL){
303 ptr = &entry->d_name[strlen(entry->d_name)-4];
304 if(strcmp(ptr,".xml") != 0) continue;
305 strcpy(name,eventdefs);
306 strcat(name,entry->d_name);
307 ltt_facility_open(t,name);
308 }
309 closedir(dir);
310
311 for(j=0;j<t->facility_number;j++){
312 f = (LttFacility*)g_ptr_array_index(t->facilities, j);
313 for(i=0; i<f->event_number; i++){
314 et = f->events[i];
315 setFieldsOffset(NULL, et, NULL, t);
316 }
317 }
318}
319
320void getControlFileInfo(LttTrace *t, char* control)
321{
322 DIR * dir;
323 struct dirent *entry;
324 char name[DIR_NAME_SIZE];
325
326 dir = opendir(control);
327 if(!dir) g_error("Can not open directory: %s\n", control);
328
329 while((entry = readdir(dir)) != NULL){
330 if(strcmp(entry->d_name,"facilities") != 0 &&
331 strcmp(entry->d_name,"interrupts") != 0 &&
332 strcmp(entry->d_name,"processes") != 0) continue;
333
334 strcpy(name,control);
335 strcat(name,entry->d_name);
336 ltt_tracefile_open_control(t,name);
337 }
338 closedir(dir);
339}
340
341void getCpuFileInfo(LttTrace *t, char* cpu)
342{
343 DIR * dir;
344 struct dirent *entry;
345 char name[DIR_NAME_SIZE];
346
347 dir = opendir(cpu);
348 if(!dir) g_error("Can not open directory: %s\n", cpu);
349
350 while((entry = readdir(dir)) != NULL){
351 if(strcmp(entry->d_name,".") != 0 &&
352 strcmp(entry->d_name,"..") != 0 &&
353 strcmp(entry->d_name,".svn") != 0){
354 strcpy(name,cpu);
355 strcat(name,entry->d_name);
356 ltt_tracefile_open_cpu(t,name);
357 }else continue;
358 }
359 closedir(dir);
360}
361
362/*****************************************************************************
363 *A trace is specified as a pathname to the directory containing all the
364 *associated data (control tracefiles, per cpu tracefiles, event
365 *descriptions...).
366 *
367 *When a trace is closed, all the associated facilities, types and fields
368 *are released as well.
369 *
370 * MD : If pathname is already absolute, we do not add current working
371 * directory to it.
372 *
373 ****************************************************************************/
374
375void get_absolute_pathname(const char *pathname, char * abs_pathname)
376{
377 char * ptr, *ptr1;
378 size_t size = DIR_NAME_SIZE;
379 abs_pathname[0] = '\0';
380
381 if(pathname[0] == '/')
382 {
383 strcat(abs_pathname, pathname);
384 return;
385 }
386
387 if(!getcwd(abs_pathname, size)){
388 g_warning("Can not get current working directory\n");
389 strcat(abs_pathname, pathname);
390 return;
391 }
392
393 strcat(abs_pathname,"/");
394
395 ptr = (char*)pathname;
396 ptr1 = ptr + 1;
397 while(*ptr == '.' && *ptr1 == '.'){
398 ptr += 3;
399 ptr1 = ptr + 1;
400 }
401 strcat(abs_pathname,ptr);
402}
403
404LttTrace *ltt_trace_open(const char *pathname)
405{
406 LttTrace * t;
407 LttSystemDescription * sys_description;
408 char eventdefs[DIR_NAME_SIZE];
409 char info[DIR_NAME_SIZE];
410 char control[DIR_NAME_SIZE];
411 char cpu[DIR_NAME_SIZE];
412 char tmp[DIR_NAME_SIZE];
413 char abs_path[DIR_NAME_SIZE];
414 gboolean has_slash = FALSE;
415
416 get_absolute_pathname(pathname, abs_path);
417
418 //establish the pathname to different directories
419 if(abs_path[strlen(abs_path)-1] == '/')has_slash = TRUE;
420 strcpy(eventdefs,abs_path);
421 if(!has_slash)strcat(eventdefs,"/");
422 strcat(eventdefs,"eventdefs/");
423
424 strcpy(info,abs_path);
425 if(!has_slash)strcat(info,"/");
426 strcat(info,"info/");
427
428 strcpy(control,abs_path);
429 if(!has_slash)strcat(control,"/");
430 strcat(control,"control/");
431
432 strcpy(cpu,abs_path);
433 if(!has_slash)strcat(cpu,"/");
434 strcat(cpu,"cpu/");
435
436 //new trace
437 t = g_new(LttTrace, 1);
438 sys_description = g_new(LttSystemDescription, 1);
439 t->pathname = g_strdup(abs_path);
440 t->facility_number = 0;
441 t->control_tracefile_number = 0;
442 t->per_cpu_tracefile_number = 0;
443 t->system_description = sys_description;
444 t->control_tracefiles = g_ptr_array_new();
445 t->per_cpu_tracefiles = g_ptr_array_new();
446 t->facilities = g_ptr_array_new();
447 getDataEndianType(&(t->my_arch_size), &(t->my_arch_endian));
448
449 //get system description
450 strcpy(tmp,info);
451 strcat(tmp,"system.xml");
452 getSystemInfo(sys_description, tmp);
453
454 //get facilities info
455 getFacilityInfo(t,eventdefs);
456
457 //get control tracefile info
458 getControlFileInfo(t,control);
459
460 //get cpu tracefile info
461 getCpuFileInfo(t,cpu);
462
463 return t;
464}
465
466char * ltt_trace_name(LttTrace *t)
467{
468 return t->pathname;
469}
470
471
472/******************************************************************************
473 * When we copy a trace, we want all the opening actions to happen again :
474 * the trace will be reopened and totally independant from the original.
475 * That's why we call ltt_trace_open.
476 *****************************************************************************/
477LttTrace *ltt_trace_copy(LttTrace *self)
478{
479 return ltt_trace_open(self->pathname);
480}
481
482void ltt_trace_close(LttTrace *t)
483{
484 int i;
485 LttTracefile * tf;
486 LttFacility * f;
487
488 g_free(t->pathname);
489
490 //free system_description
491 g_free(t->system_description->description);
492 g_free(t->system_description->node_name);
493 g_free(t->system_description->domain_name);
494 g_free(t->system_description->kernel_name);
495 g_free(t->system_description->kernel_release);
496 g_free(t->system_description->kernel_version);
497 g_free(t->system_description->machine);
498 g_free(t->system_description->processor);
499 g_free(t->system_description->hardware_platform);
500 g_free(t->system_description->operating_system);
501 g_free(t->system_description);
502
503 //free control_tracefiles
504 for(i=0;i<t->control_tracefile_number;i++){
505 tf = (LttTracefile*)g_ptr_array_index(t->control_tracefiles,i);
506 ltt_tracefile_close(tf);
507 }
508 g_ptr_array_free(t->control_tracefiles, TRUE);
509
510 //free per_cpu_tracefiles
511 for(i=0;i<t->per_cpu_tracefile_number;i++){
512 tf = (LttTracefile*)g_ptr_array_index(t->per_cpu_tracefiles,i);
513 ltt_tracefile_close(tf);
514 }
515 g_ptr_array_free(t->per_cpu_tracefiles, TRUE);
516
517 //free facilities
518 for(i=0;i<t->facility_number;i++){
519 f = (LttFacility*)g_ptr_array_index(t->facilities,i);
520 ltt_facility_close(f);
521 }
522 g_ptr_array_free(t->facilities, TRUE);
523
524 g_free(t);
525
526 g_blow_chunks();
527}
528
529
530/*****************************************************************************
531 *Get the system description of the trace
532 ****************************************************************************/
533
534LttSystemDescription *ltt_trace_system_description(LttTrace *t)
535{
536 return t->system_description;
537}
538
539/*****************************************************************************
540 * The following functions discover the facilities of the trace
541 ****************************************************************************/
542
543unsigned ltt_trace_facility_number(LttTrace *t)
544{
545 return (unsigned)(t->facility_number);
546}
547
548LttFacility *ltt_trace_facility_get(LttTrace *t, unsigned i)
549{
550 return (LttFacility*)g_ptr_array_index(t->facilities, i);
551}
552
553/*****************************************************************************
554 *Function name
555 * ltt_trace_facility_find : find facilities in the trace
556 *Input params
557 * t : the trace
558 * name : facility name
559 *Output params
560 * position : position of the facility in the trace
561 *Return value
562 * : the number of facilities
563 ****************************************************************************/
564
565unsigned ltt_trace_facility_find(LttTrace *t, char *name, unsigned *position)
566{
567 int i, count=0;
568 LttFacility * f;
569 for(i=0;i<t->facility_number;i++){
570 f = (LttFacility*)g_ptr_array_index(t->facilities, i);
571 if(strcmp(f->name,name)==0){
572 count++;
573 if(count==1) *position = i;
574 }else{
575 if(count) break;
576 }
577 }
578 return count;
579}
580
581/*****************************************************************************
582 * Functions to discover all the event types in the trace
583 ****************************************************************************/
584
585unsigned ltt_trace_eventtype_number(LttTrace *t)
586{
587 int i;
588 unsigned count = 0;
589 LttFacility * f;
590 for(i=0;i<t->facility_number;i++){
591 f = (LttFacility*)g_ptr_array_index(t->facilities, i);
592 count += f->event_number;
593 }
594 return count;
595}
596
597LttFacility * ltt_trace_facility_by_id(LttTrace * trace, unsigned id)
598{
599 LttFacility * facility;
600 int i;
601 for(i=0;i<trace->facility_number;i++){
602 facility = (LttFacility*) g_ptr_array_index(trace->facilities,i);
603 if(id >= facility->base_id &&
604 id < facility->base_id + facility->event_number)
605 break;
606 }
607 if(i==trace->facility_number) return NULL;
608 else return facility;
609}
610
611LttEventType *ltt_trace_eventtype_get(LttTrace *t, unsigned evId)
612{
613 LttFacility * f;
614 f = ltt_trace_facility_by_id(t,evId);
615 if(!f) return NULL;
616 return f->events[evId - f->base_id];
617}
618
619/*****************************************************************************
620 *There is one "per cpu" tracefile for each CPU, numbered from 0 to
621 *the maximum number of CPU in the system. When the number of CPU installed
622 *is less than the maximum, some positions are unused. There are also a
623 *number of "control" tracefiles (facilities, interrupts...).
624 ****************************************************************************/
625unsigned ltt_trace_control_tracefile_number(LttTrace *t)
626{
627 return t->control_tracefile_number;
628}
629
630unsigned ltt_trace_per_cpu_tracefile_number(LttTrace *t)
631{
632 return t->per_cpu_tracefile_number;
633}
634
635/*****************************************************************************
636 *It is possible to search for the tracefiles by name or by CPU position.
637 *The index within the tracefiles of the same type is returned if found
638 *and a negative value otherwise.
639 ****************************************************************************/
640
641int ltt_trace_control_tracefile_find(LttTrace *t, char *name)
642{
643 LttTracefile * tracefile;
644 int i;
645 for(i=0;i<t->control_tracefile_number;i++){
646 tracefile = (LttTracefile*)g_ptr_array_index(t->control_tracefiles, i);
647 if(strcmp(tracefile->name, name)==0)break;
648 }
649 if(i == t->control_tracefile_number) return -1;
650 return i;
651}
652
653int ltt_trace_per_cpu_tracefile_find(LttTrace *t, unsigned i)
654{
655 LttTracefile * tracefile;
656 int j, name;
657 for(j=0;j<t->per_cpu_tracefile_number;j++){
658 tracefile = (LttTracefile*)g_ptr_array_index(t->per_cpu_tracefiles, j);
659 name = atoi(tracefile->name);
660 if(name == (int)i)break;
661 }
662 if(j == t->per_cpu_tracefile_number) return -1;
663 return j;
664}
665
666/*****************************************************************************
667 *Get a specific tracefile
668 ****************************************************************************/
669
670LttTracefile *ltt_trace_control_tracefile_get(LttTrace *t, unsigned i)
671{
672 return (LttTracefile*)g_ptr_array_index(t->control_tracefiles, i);
673}
674
675LttTracefile *ltt_trace_per_cpu_tracefile_get(LttTrace *t, unsigned i)
676{
677 return (LttTracefile*)g_ptr_array_index(t->per_cpu_tracefiles, i);
678}
679
680/*****************************************************************************
681 * Get the start time and end time of the trace
682 ****************************************************************************/
683
684void ltt_trace_time_span_get(LttTrace *t, LttTime *start, LttTime *end)
685{
686 LttTime startSmall, startTmp, endBig, endTmp;
687 int i, j=0;
688 LttTracefile * tf;
689
690 for(i=0;i<t->control_tracefile_number;i++){
691 tf = g_ptr_array_index(t->control_tracefiles, i);
692 readBlock(tf,1);
693 startTmp = tf->a_block_start->time;
694 readBlock(tf,tf->block_number);
695 endTmp = tf->a_block_end->time;
696 if(i==0){
697 startSmall = startTmp;
698 endBig = endTmp;
699 j = 1;
700 continue;
701 }
702 if(ltt_time_compare(startSmall,startTmp) > 0) startSmall = startTmp;
703 if(ltt_time_compare(endBig,endTmp) < 0) endBig = endTmp;
704 }
705
706 for(i=0;i<t->per_cpu_tracefile_number;i++){
707 tf = g_ptr_array_index(t->per_cpu_tracefiles, i);
708 readBlock(tf,1);
709 startTmp = tf->a_block_start->time;
710 readBlock(tf,tf->block_number);
711 endTmp = tf->a_block_end->time;
712 if(j == 0 && i==0){
713 startSmall = startTmp;
714 endBig = endTmp;
715 continue;
716 }
717 if(ltt_time_compare(startSmall,startTmp) > 0) startSmall = startTmp;
718 if(ltt_time_compare(endBig,endTmp) < 0) endBig = endTmp;
719 }
720
721 *start = startSmall;
722 *end = endBig;
723}
724
725
726/*****************************************************************************
727 *Get the name of a tracefile
728 ****************************************************************************/
729
730char *ltt_tracefile_name(LttTracefile *tf)
731{
732 return tf->name;
733}
734
735/*****************************************************************************
736 * Get the number of blocks in the tracefile
737 ****************************************************************************/
738
739unsigned ltt_tracefile_block_number(LttTracefile *tf)
740{
741 return tf->block_number;
742}
743
744/*****************************************************************************
745 *Function name
746 * ltt_tracefile_seek_time: seek to the first event of the trace with time
747 * larger or equal to time
748 *Input params
749 * t : tracefile
750 * time : criteria of the time
751 ****************************************************************************/
752void ltt_tracefile_find_time_block(LttTracefile *t, LttTime time,
753 int start_block, int end_block)
754{
755 int err, tmp_block, s, e;
756 int headTime;
757 int tailTime;
758
759 err=readBlock(t,start_block);
760 if(err) g_error("Can not read tracefile: %s\n", t->name);
761 if(start_block == end_block)return;
762
763 tailTime = ltt_time_compare(t->a_block_end->time, time);
764 if(tailTime >= 0) return;
765
766 err=readBlock(t,end_block);
767 if(err) g_error("Can not read tracefile: %s\n", t->name);
768 if(start_block+1 == end_block)return;
769
770 headTime = ltt_time_compare(t->a_block_start->time, time);
771 if(headTime <= 0 ) return;
772
773 tmp_block = (end_block + start_block)/2;
774 err=readBlock(t,tmp_block);
775 if(err) g_error("Can not read tracefile: %s\n", t->name);
776
777 headTime = ltt_time_compare(t->a_block_start->time, time);
778 tailTime = ltt_time_compare(t->a_block_end->time, time);
779 if(headTime <= 0 && tailTime >= 0) return;
780
781 if(headTime > 0){
782 s = start_block + 1;
783 e = tmp_block - 1;
784 if(s <= e)
785 ltt_tracefile_find_time_block(t, time, s, e);
786 else return;
787 }
788
789 if(tailTime < 0){
790 s = tmp_block + 1;
791 e = end_block - 1;
792 if(s <= e)
793 ltt_tracefile_find_time_block(t, time, s, e);
794 else return;
795 }
796}
797
798void ltt_tracefile_backward_find_time_block(LttTracefile *t, LttTime time)
799{
800 int t_time, h_time, err;
801 err=readBlock(t,t->which_block-1);
802 if(err) g_error("Can not read tracefile: %s\n", t->name);
803 h_time = ltt_time_compare(t->a_block_start->time, time);
804 t_time = ltt_time_compare(t->a_block_end->time, time);
805 if(h_time == 0){
806 int tmp;
807 if(t->which_block == 1) return;
808 err=readBlock(t,t->which_block-1);
809 if(err) g_error("Can not read tracefile: %s\n", t->name);
810 tmp = ltt_time_compare(t->a_block_end->time, time);
811 if(tmp == 0) return ltt_tracefile_seek_time(t, time);
812 err=readBlock(t,t->which_block+1);
813 if(err) g_error("Can not read tracefile: %s\n", t->name);
814 }else if(h_time > 0){
815 ltt_tracefile_find_time_block(t, time, 1, t->which_block);
816 return ltt_tracefile_seek_time(t, time) ;
817 }else{
818 if(t_time >= 0) return ltt_tracefile_seek_time(t, time);
819 err=readBlock(t,t->which_block+1);
820 if(err) g_error("Can not read tracefile: %s\n", t->name);
821 }
822}
823
824void ltt_tracefile_seek_time(LttTracefile *t, LttTime time)
825{
826 int err;
827 LttTime lttTime;
828 int headTime = ltt_time_compare(t->a_block_start->time, time);
829 int tailTime = ltt_time_compare(t->a_block_end->time, time);
830 LttEvent * ev;
831
832 if(headTime < 0 && tailTime > 0){
833 if(ltt_time_compare(t->a_block_end->time, t->current_event_time) !=0) {
834 lttTime = getEventTime(t);
835 err = ltt_time_compare(lttTime, time);
836 if(err > 0){
837 if(t->which_event==2 || (&t->prev_event_time,&time)<0){
838 return;
839 }else{
840 updateTracefile(t);
841 return ltt_tracefile_seek_time(t, time);
842 }
843 }else if(err < 0){
844 while(1){
845 ev = ltt_tracefile_read(t);
846 if(ev == NULL){
847 g_print("End of file\n");
848 return;
849 }
850 lttTime = getEventTime(t);
851 err = ltt_time_compare(lttTime, time);
852 if(err >= 0)return;
853 }
854 }else return;
855 }else{//we are at the end of the block
856 updateTracefile(t);
857 return ltt_tracefile_seek_time(t, time);
858 }
859 }else if(headTime >= 0){
860 if(t->which_block == 1){
861 updateTracefile(t);
862 }else{
863 if(ltt_time_compare(t->prev_block_end_time, time) >= 0 ||
864 (t->prev_block_end_time.tv_sec == 0 &&
865 t->prev_block_end_time.tv_nsec == 0 )){
866 ltt_tracefile_backward_find_time_block(t, time);
867 }else{
868 updateTracefile(t);
869 }
870 }
871 }else if(tailTime < 0){
872 if(t->which_block != t->block_number){
873 ltt_tracefile_find_time_block(t, time, t->which_block+1, t->block_number);
874 return ltt_tracefile_seek_time(t, time);
875 }else {
876 t->cur_event_pos = t->buffer + t->block_size;
877 g_print("End of file\n");
878 return;
879 }
880 }else if(tailTime == 0){
881 t->cur_event_pos = t->last_event_pos;
882 t->current_event_time = time;
883 t->cur_heart_beat_number = 0;
884 t->prev_event_time.tv_sec = 0;
885 t->prev_event_time.tv_nsec = 0;
886 return;
887 }
888}
889
890/*****************************************************************************
891 * Seek to the first event with position equal or larger to ep
892 ****************************************************************************/
893
894void ltt_tracefile_seek_position(LttTracefile *t, LttEventPosition *ep)
895{
896 //if we are at the right place, just return
897 if(t->which_block == ep->block_num && t->which_event == ep->event_num)
898 return;
899
900 if(t->which_block == ep->block_num) updateTracefile(t);
901 else readBlock(t,ep->block_num);
902
903 //event offset is availiable
904 if(ep->old_position){
905 t->cur_heart_beat_number = ep->heart_beat_number;
906 t->cur_event_pos = t->buffer + ep->event_offset;
907 return;
908 }
909
910 //only block number and event index are availiable
911 while(t->which_event < ep->event_num) ltt_tracefile_read(t);
912
913 return;
914}
915
916/*****************************************************************************
917 *Function name
918 * ltt_tracefile_read : read the current event, set the pointer to the next
919 *Input params
920 * t : tracefile
921 *Return value
922 * LttEvent * : an event to be processed
923 ****************************************************************************/
924
925LttEvent *ltt_tracefile_read(LttTracefile *t)
926{
927 LttEvent * lttEvent = &t->an_event;
928 int err;
929
930 if(t->cur_event_pos == t->buffer + t->block_size){
931 if(t->which_block == t->block_number){
932 return NULL;
933 }
934 err = readBlock(t, t->which_block + 1);
935 if(err)g_error("Can not read tracefile");
936 }
937
938 lttEvent->event_id = (int)(*(guint16 *)(t->cur_event_pos));
939 if(lttEvent->event_id == TRACE_TIME_HEARTBEAT)
940 t->cur_heart_beat_number++;
941
942 t->prev_event_time = t->current_event_time;
943 // t->current_event_time = getEventTime(t);
944
945 lttEvent->time_delta = *(guint32 *)(t->cur_event_pos + EVENT_ID_SIZE);
946 lttEvent->event_time = t->current_event_time;
947
948 lttEvent->tracefile = t;
949 lttEvent->data = t->cur_event_pos + EVENT_HEADER_SIZE;
950 lttEvent->which_block = t->which_block;
951 lttEvent->which_event = t->which_event;
952
953 //update the fields of the current event and go to the next event
954 err = skipEvent(t);
955 if(err == ERANGE) g_error("event id is out of range\n");
956
957 lttEvent->event_cycle_count = t->cur_cycle_count;
958
959 return lttEvent;
960}
961
962/****************************************************************************
963 *Function name
964 * readFile : wrap function to read from a file
965 *Input Params
966 * fd : file descriptor
967 * buf : buf to contain the content
968 * size : number of bytes to be read
969 * mesg : message to be printed if some thing goes wrong
970 *return value
971 * 0 : success
972 * EIO : can not read from the file
973 ****************************************************************************/
974
975int readFile(int fd, void * buf, size_t size, char * mesg)
976{
977 ssize_t nbBytes;
978 nbBytes = read(fd, buf, size);
979 if(nbBytes != size){
980 printf("%s\n",mesg);
981 return EIO;
982 }
983 return 0;
984}
985
986/****************************************************************************
987 *Function name
988 * readBlock : read a block from the file
989 *Input Params
990 * lttdes : ltt trace file
991 * whichBlock : the block which will be read
992 *return value
993 * 0 : success
994 * EINVAL : lseek fail
995 * EIO : can not read from the file
996 ****************************************************************************/
997
998int readBlock(LttTracefile * tf, int whichBlock)
999{
1000 off_t nbBytes;
1001 guint32 lostSize;
1002
1003 if(whichBlock - tf->which_block == 1 && tf->which_block != 0){
1004 tf->prev_block_end_time = tf->a_block_end->time;
1005 tf->prev_event_time = tf->a_block_end->time;
1006 }else{
1007 tf->prev_block_end_time.tv_sec = 0;
1008 tf->prev_block_end_time.tv_nsec = 0;
1009 tf->prev_event_time.tv_sec = 0;
1010 tf->prev_event_time.tv_nsec = 0;
1011 }
1012
1013 nbBytes=lseek(tf->fd,(off_t)((whichBlock-1)*tf->block_size), SEEK_SET);
1014 if(nbBytes == -1) return EINVAL;
1015
1016 if(readFile(tf->fd,tf->buffer,tf->block_size,"Unable to read a block"))
1017 return EIO;
1018
1019 tf->a_block_start=(BlockStart *) (tf->buffer + EVENT_HEADER_SIZE);
1020 lostSize = *(guint32 *)(tf->buffer + tf->block_size - sizeof(guint32));
1021 tf->a_block_end=(BlockEnd *)(tf->buffer + tf->block_size -
1022 lostSize + EVENT_HEADER_SIZE);
1023 tf->last_event_pos = tf->buffer + tf->block_size - lostSize;
1024
1025 tf->which_block = whichBlock;
1026 tf->which_event = 1;
1027 tf->cur_event_pos = tf->buffer;//the beginning of the block, block start ev
1028 tf->cur_heart_beat_number = 0;
1029
1030 getCyclePerNsec(tf);
1031
1032 tf->current_event_time = getEventTime(tf);
1033
1034 return 0;
1035}
1036
1037/*****************************************************************************
1038 *Function name
1039 * updateTracefile : reinitialize the info of the block which is already
1040 * in the buffer
1041 *Input params
1042 * tf : tracefile
1043 ****************************************************************************/
1044
1045void updateTracefile(LttTracefile * tf)
1046{
1047 tf->which_event = 1;
1048 tf->cur_event_pos = tf->buffer;
1049 tf->current_event_time = getEventTime(tf);
1050 tf->cur_heart_beat_number = 0;
1051
1052 tf->prev_event_time.tv_sec = 0;
1053 tf->prev_event_time.tv_nsec = 0;
1054}
1055
1056/*****************************************************************************
1057 *Function name
1058 * skipEvent : go to the next event, update the fields of the current event
1059 *Input params
1060 * t : tracefile
1061 *return value
1062 * 0 : success
1063 * ERANGE : event id is out of range
1064 ****************************************************************************/
1065
1066int skipEvent(LttTracefile * t)
1067{
1068 int evId, err;
1069 void * evData;
1070 LttEventType * evT;
1071 LttField * rootFld;
1072
1073 evId = (int)(*(guint16 *)(t->cur_event_pos));
1074 evData = t->cur_event_pos + EVENT_HEADER_SIZE;
1075
1076 evT = ltt_trace_eventtype_get(t->trace,(unsigned)evId);
1077
1078 if(evT) rootFld = evT->root_field;
1079 else return ERANGE;
1080
1081 if(rootFld){
1082 //event has string/sequence or the last event is not the same event
1083 if((evT->latest_block!=t->which_block || evT->latest_event!=t->which_event)
1084 && rootFld->field_fixed == 0){
1085 setFieldsOffset(t, evT, evData, t->trace);
1086 }
1087 t->cur_event_pos += EVENT_HEADER_SIZE + rootFld->field_size;
1088 }else t->cur_event_pos += EVENT_HEADER_SIZE;
1089
1090 evT->latest_block = t->which_block;
1091 evT->latest_event = t->which_event;
1092
1093 //the next event is in the next block
1094 if(evId == TRACE_BLOCK_END){
1095 t->cur_event_pos = t->buffer + t->block_size;
1096 }else{
1097 t->which_event++;
1098 t->current_event_time = getEventTime(t);
1099 }
1100
1101 return 0;
1102}
1103
1104/*****************************************************************************
1105 *Function name
1106 * getCyclePerNsec : calculate cycles per nsec for current block
1107 *Input Params
1108 * t : tracefile
1109 ****************************************************************************/
1110
1111void getCyclePerNsec(LttTracefile * t)
1112{
1113 LttTime lBufTotalTime; /* Total time for this buffer */
1114 LttCycleCount lBufTotalNSec; /* Total time for this buffer in nsecs */
1115 LttCycleCount lBufTotalCycle;/* Total cycles for this buffer */
1116
1117 /* Calculate the total time for this buffer */
1118 lBufTotalTime = ltt_time_sub(t->a_block_end->time, t->a_block_start->time);
1119
1120 /* Calculate the total cycles for this bufffer */
1121 lBufTotalCycle = t->a_block_end->cycle_count;
1122 lBufTotalCycle -= t->a_block_start->cycle_count;
1123
1124 /* Convert the total time to nsecs */
1125 lBufTotalNSec = lBufTotalTime.tv_sec;
1126 lBufTotalNSec *= NANOSECONDS_PER_SECOND;
1127 lBufTotalNSec += lBufTotalTime.tv_nsec;
1128
1129 t->cycle_per_nsec = (double)lBufTotalCycle / (double)lBufTotalNSec;
1130}
1131
1132/****************************************************************************
1133 *Function name
1134 * getEventTime : obtain the time of an event
1135 *Input params
1136 * tf : tracefile
1137 *Return value
1138 * LttTime : the time of the event
1139 ****************************************************************************/
1140
1141LttTime getEventTime(LttTracefile * tf)
1142{
1143 LttTime time;
1144 LttCycleCount cycle_count; // cycle count for the current event
1145 LttCycleCount lEventTotalCycle; // Total cycles from start for event
1146 double lEventNSec; // Total usecs from start for event
1147 LttTime lTimeOffset; // Time offset in struct LttTime
1148 guint16 evId;
1149 gint64 nanoSec, tmpCycleCount = (((guint64)1)<<32);
1150
1151 evId = *(guint16 *)tf->cur_event_pos;
1152 if(evId == TRACE_BLOCK_START){
1153 tf->count = 0;
1154 tf->pre_cycle_count = 0;
1155 tf->cur_cycle_count = tf->a_block_start->cycle_count;
1156 return tf->a_block_start->time;
1157 }else if(evId == TRACE_BLOCK_END){
1158 tf->count = 0;
1159 tf->pre_cycle_count = 0;
1160 tf->cur_cycle_count = tf->a_block_end->cycle_count;
1161 return tf->a_block_end->time;
1162 }
1163
1164 // Calculate total time in cycles from start of buffer for this event
1165 cycle_count = (LttCycleCount)*(guint32 *)(tf->cur_event_pos + EVENT_ID_SIZE);
1166
1167 if(cycle_count < tf->pre_cycle_count)tf->count++;
1168 tf->pre_cycle_count = cycle_count;
1169 cycle_count += tmpCycleCount * tf->count;
1170
1171 if(tf->cur_heart_beat_number > tf->count)
1172 cycle_count += tmpCycleCount * (tf->cur_heart_beat_number - tf->count);
1173
1174 tf->cur_cycle_count = cycle_count;
1175
1176 lEventTotalCycle = cycle_count;
1177 lEventTotalCycle -= tf->a_block_start->cycle_count;
1178
1179 // Convert it to nsecs
1180 lEventNSec = lEventTotalCycle / tf->cycle_per_nsec;
1181 nanoSec = lEventNSec;
1182
1183 // Determine offset in struct LttTime
1184 lTimeOffset.tv_nsec = nanoSec % NANOSECONDS_PER_SECOND;
1185 lTimeOffset.tv_sec = nanoSec / NANOSECONDS_PER_SECOND;
1186
1187 time = ltt_time_add(tf->a_block_start->time, lTimeOffset);
1188
1189 return time;
1190}
1191
1192/*****************************************************************************
1193 *Function name
1194 * setFieldsOffset : set offset of the fields
1195 *Input params
1196 * tracefile : opened trace file
1197 * evT : the event type
1198 * evD : event data, it may be NULL
1199 ****************************************************************************/
1200
1201void setFieldsOffset(LttTracefile *tf,LttEventType *evT,void *evD,LttTrace* t)
1202{
1203 LttField * rootFld = evT->root_field;
1204 // rootFld->base_address = evD;
1205
1206 if(rootFld)
1207 rootFld->field_size = getFieldtypeSize(tf, evT, 0,0,rootFld, evD,t);
1208}
1209
1210/*****************************************************************************
1211 *Function name
1212 * getFieldtypeSize: get the size of the field type (primitive type)
1213 *Input params
1214 * tracefile : opened trace file
1215 * evT : event type
1216 * offsetRoot : offset from the root
1217 * offsetParent : offset from the parrent
1218 * fld : field
1219 * evD : event data, it may be NULL
1220 *Return value
1221 * int : size of the field
1222 ****************************************************************************/
1223
1224int getFieldtypeSize(LttTracefile * t, LttEventType * evT, int offsetRoot,
1225 int offsetParent, LttField * fld, void *evD, LttTrace *trace)
1226{
1227 int size, size1, element_number, i, offset1, offset2;
1228 LttType * type = fld->field_type;
1229
1230 if(t){
1231 if(evT->latest_block==t->which_block && evT->latest_event==t->which_event){
1232 return fld->field_size;
1233 }
1234 }
1235
1236 if(fld->field_fixed == 1){
1237 if(fld == evT->root_field) return fld->field_size;
1238 }
1239
1240 if(type->type_class != LTT_STRUCT && type->type_class != LTT_ARRAY &&
1241 type->type_class != LTT_SEQUENCE && type->type_class != LTT_STRING){
1242 if(fld->field_fixed == -1){
1243 size = (int) ltt_type_size(trace, type);
1244 fld->field_fixed = 1;
1245 }else size = fld->field_size;
1246
1247 }else if(type->type_class == LTT_ARRAY){
1248 element_number = (int) type->element_number;
1249 if(fld->field_fixed == -1){
1250 size = getFieldtypeSize(t, evT, offsetRoot,0,fld->child[0], NULL, trace);
1251 if(size == 0){ //has string or sequence
1252 fld->field_fixed = 0;
1253 }else{
1254 fld->field_fixed = 1;
1255 size *= element_number;
1256 }
1257 }else if(fld->field_fixed == 0){// has string or sequence
1258 size = 0;
1259 for(i=0;i<element_number;i++){
1260 size += getFieldtypeSize(t, evT, offsetRoot+size,size,
1261 fld->child[0], evD+size, trace);
1262 }
1263 }else size = fld->field_size;
1264
1265 }else if(type->type_class == LTT_SEQUENCE){
1266 size1 = (int) ltt_type_size(trace, type);
1267 if(fld->field_fixed == -1){
1268 fld->sequ_number_size = size1;
1269 fld->field_fixed = 0;
1270 size = getFieldtypeSize(t, evT, offsetRoot,0,fld->child[0], NULL, trace);
1271 fld->element_size = size;
1272 }else{//0: sequence
1273 element_number = getIntNumber(size1,evD);
1274 type->element_number = element_number;
1275 if(fld->element_size > 0){
1276 size = element_number * fld->element_size;
1277 }else{//sequence has string or sequence
1278 size = 0;
1279 for(i=0;i<element_number;i++){
1280 size += getFieldtypeSize(t, evT, offsetRoot+size+size1,size+size1,
1281 fld->child[0], evD+size+size1, trace);
1282 }
1283 }
1284 size += size1;
1285 }
1286
1287 }else if(type->type_class == LTT_STRING){
1288 size = 0;
1289 if(fld->field_fixed == -1){
1290 fld->field_fixed = 0;
1291 }else{//0: string
1292 size = strlen((char*)evD) + 1; //include end : '\0'
1293 }
1294
1295 }else if(type->type_class == LTT_STRUCT){
1296 element_number = (int) type->element_number;
1297 size = 0;
1298 if(fld->field_fixed == -1){
1299 offset1 = offsetRoot;
1300 offset2 = 0;
1301 for(i=0;i<element_number;i++){
1302 size1=getFieldtypeSize(t, evT,offset1,offset2, fld->child[i], NULL, trace);
1303 if(size1 > 0 && size >= 0){
1304 size += size1;
1305 if(offset1 >= 0) offset1 += size1;
1306 offset2 += size1;
1307 }else{
1308 size = -1;
1309 offset1 = -1;
1310 offset2 = -1;
1311 }
1312 }
1313 if(size == -1){
1314 fld->field_fixed = 0;
1315 size = 0;
1316 }else fld->field_fixed = 1;
1317 }else if(fld->field_fixed == 0){
1318 offset1 = offsetRoot;
1319 offset2 = 0;
1320 for(i=0;i<element_number;i++){
1321 size=getFieldtypeSize(t,evT,offset1,offset2,fld->child[i],evD+offset2, trace);
1322 offset1 += size;
1323 offset2 += size;
1324 }
1325 size = offset2;
1326 }else size = fld->field_size;
1327 }
1328
1329 fld->offset_root = offsetRoot;
1330 fld->offset_parent = offsetParent;
1331 if(!evD){
1332 fld->fixed_root = (offsetRoot==-1) ? 0 : 1;
1333 fld->fixed_parent = (offsetParent==-1) ? 0 : 1;
1334 }
1335 fld->field_size = size;
1336
1337 return size;
1338}
1339
1340
1341/*****************************************************************************
1342 *Function name
1343 * getIntNumber : get an integer number
1344 *Input params
1345 * size : the size of the integer
1346 * evD : the event data
1347 *Return value
1348 * int : an integer
1349 ****************************************************************************/
1350
1351int getIntNumber(int size, void *evD)
1352{
1353 gint64 i;
1354 if(size == 1) i = *(gint8 *)evD;
1355 else if(size == 2) i = *(gint16 *)evD;
1356 else if(size == 4) i = *(gint32 *)evD;
1357 else if(size == 8) i = *(gint64 *)evD;
1358
1359 return (int) i;
1360}
1361
1362/*****************************************************************************
1363 *Function name
1364 * getDataEndianType : get the data type size and endian type of the local
1365 * machine
1366 *Input params
1367 * size : size of data type
1368 * endian : endian type, little or big
1369 ****************************************************************************/
1370
1371void getDataEndianType(LttArchSize * size, LttArchEndian * endian)
1372{
1373 int i = 1;
1374 char c = (char) i;
1375 int sizeInt=sizeof(int), sizeLong=sizeof(long), sizePointer=sizeof(void *);
1376
1377 if(c == 1) *endian = LTT_LITTLE_ENDIAN;
1378 else *endian = LTT_BIG_ENDIAN;
1379
1380 if(sizeInt == 2 && sizeLong == 4 && sizePointer == 4)
1381 *size = LTT_LP32;
1382 else if(sizeInt == 4 && sizeLong == 4 && sizePointer == 4)
1383 *size = LTT_ILP32;
1384 else if(sizeInt == 4 && sizeLong == 8 && sizePointer == 8)
1385 *size = LTT_LP64;
1386 else if(sizeInt == 8 && sizeLong == 8 && sizePointer == 8)
1387 *size = LTT_ILP64;
1388 else *size = LTT_UNKNOWN;
1389}
1390
1391/* get the node name of the system */
1392
1393char * ltt_trace_system_description_node_name (LttSystemDescription * s)
1394{
1395 return s->node_name;
1396}
1397
1398
1399/* get the domain name of the system */
1400
1401char * ltt_trace_system_description_domain_name (LttSystemDescription * s)
1402{
1403 return s->domain_name;
1404}
1405
1406
1407/* get the description of the system */
1408
1409char * ltt_trace_system_description_description (LttSystemDescription * s)
1410{
1411 return s->description;
1412}
1413
1414
1415/* get the start time of the trace */
1416
1417LttTime ltt_trace_system_description_trace_start_time(LttSystemDescription *s)
1418{
1419 return s->trace_start;
1420}
1421
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