network byte order + state multitraces fix
[lttv.git] / ltt / branches / poly / ltt / ltt-private.h
CommitLineData
449cb9d7 1/* This file is part of the Linux Trace Toolkit viewer
2 * Copyright (C) 2003-2004 Xiangxiu Yang
1b44b0b5 3 * 2006 Mathieu Desnoyers
449cb9d7 4 *
1b44b0b5 5 * This library is free software; you can redistribute it and/or
6 * modify it under the terms of the GNU Lesser General Public
7 * License Version 2.1 as published by the Free Software Foundation.
449cb9d7 8 *
1b44b0b5 9 * This library is distributed in the hope that it will be useful,
449cb9d7 10 * but WITHOUT ANY WARRANTY; without even the implied warranty of
1b44b0b5 11 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
12 * Lesser General Public License for more details.
449cb9d7 13 *
1b44b0b5 14 * You should have received a copy of the GNU Lesser General Public
15 * License along with this library; if not, write to the
16 * Free Software Foundation, Inc., 59 Temple Place - Suite 330,
17 * Boston, MA 02111-1307, USA.
449cb9d7 18 */
19
fcdf0ec2 20#ifndef LTT_PRIVATE_H
21#define LTT_PRIVATE_H
22
858bd80a 23#include <glib.h>
cbd41522 24#include <sys/types.h>
fcdf0ec2 25#include <ltt/ltt.h>
3b10b765 26#include <endian.h>
e3247aa5 27
eed2ef37 28
29#ifndef max
30#define max(a,b) ((a)>(b)?(a):(b))
31#endif
32
2312de30 33#ifndef min
34#define min(a,b) ((a)<(b)?(a):(b))
35#endif
36
37
eed2ef37 38
3aee1200 39#define LTT_MAGIC_NUMBER 0x00D6B7ED
40#define LTT_REV_MAGIC_NUMBER 0xEDB7D600
41
42#define NSEC_PER_USEC 1000
43
cbd41522 44#define LTT_PACKED_STRUCT __attribute__ ((packed))
45
3aee1200 46/* Hardcoded facilities */
47#define LTT_FACILITY_CORE 0
3b10b765 48
49/* Byte ordering */
50#define LTT_GET_BO(t) ((t)->reverse_bo)
51
52#define LTT_HAS_FLOAT(t) ((t)->float_word_order!=0)
53#define LTT_GET_FLOAT_BO(t) \
54 (((t)->float_word_order==__BYTE_ORDER)?0:1)
55
f104d082 56#define SEQUENCE_AVG_ELEMENTS 1000
57
3aee1200 58/* Hardcoded core events */
59enum ltt_core_events {
60 LTT_EVENT_FACILITY_LOAD,
61 LTT_EVENT_FACILITY_UNLOAD,
b77d1b57 62 LTT_EVENT_HEARTBEAT,
63 LTT_EVENT_STATE_DUMP_FACILITY_LOAD
3aee1200 64};
65
66
67#if 0
e3247aa5 68/* enumeration definition */
69
70typedef enum _BuildinEvent{
71 TRACE_FACILITY_LOAD = 0,
72 TRACE_BLOCK_START = 17,
73 TRACE_BLOCK_END = 18,
0d7aac52 74 TRACE_TIME_HEARTBEAT= 19
e3247aa5 75} BuildinEvent;
fcdf0ec2 76
7c6b3cd7 77
78/* structure definition */
79
e3247aa5 80typedef struct _FacilityLoad{
45e14832 81 gchar * name;
e3247aa5 82 LttChecksum checksum;
cbd41522 83 guint32 base_code;
e3247aa5 84} LTT_PACKED_STRUCT FacilityLoad;
85
86typedef struct _BlockStart {
3aee1200 87 LttTime time; //Time stamp of this block
e3247aa5 88 LttCycleCount cycle_count; //cycle count of the event
cbd41522 89 guint32 block_id; //block id
e3247aa5 90} LTT_PACKED_STRUCT BlockStart;
91
92typedef struct _BlockEnd {
3aee1200 93 LttTime time; //Time stamp of this block
e3247aa5 94 LttCycleCount cycle_count; //cycle count of the event
cbd41522 95 guint32 block_id; //block id
e3247aa5 96} LTT_PACKED_STRUCT BlockEnd;
3aee1200 97#endif //0
98
99
100typedef guint8 uint8_t;
101typedef guint16 uint16_t;
102typedef guint32 uint32_t;
103typedef guint64 uint64_t;
104
16fcbb80 105/* Hardcoded facility load event : this plus an preceding "name" string */
3aee1200 106struct LttFacilityLoad {
107 guint32 checksum;
108 guint32 id;
f104d082 109 guint32 int_size;
3aee1200 110 guint32 long_size;
111 guint32 pointer_size;
112 guint32 size_t_size;
f104d082 113 guint32 has_alignment;
16fcbb80 114} LTT_PACKED_STRUCT;
3aee1200 115
116struct LttFacilityUnload {
117 guint32 id;
16fcbb80 118} LTT_PACKED_STRUCT;
3aee1200 119
120struct LttStateDumpFacilityLoad {
121 guint32 checksum;
122 guint32 id;
f104d082 123 guint32 int_size;
3aee1200 124 guint32 long_size;
125 guint32 pointer_size;
126 guint32 size_t_size;
f104d082 127 guint32 has_alignment;
16fcbb80 128} LTT_PACKED_STRUCT;
e3247aa5 129
130typedef struct _TimeHeartbeat {
3aee1200 131 LttTime time; //Time stamp of this block
132 uint64_t cycle_count; //cycle count of the event
e3247aa5 133} LTT_PACKED_STRUCT TimeHeartbeat;
134
3aee1200 135struct ltt_event_header_hb {
136 uint32_t timestamp;
137 unsigned char facility_id;
138 unsigned char event_id;
139 uint16_t event_size;
16fcbb80 140} LTT_PACKED_STRUCT;
3aee1200 141
142struct ltt_event_header_nohb {
143 uint64_t timestamp;
144 unsigned char facility_id;
145 unsigned char event_id;
146 uint16_t event_size;
16fcbb80 147} LTT_PACKED_STRUCT;
3aee1200 148
b7576a11 149
150/* Block and trace headers */
151
152struct ltt_trace_header_any {
153 uint32_t magic_number;
154 uint32_t arch_type;
155 uint32_t arch_variant;
156 uint32_t float_word_order;
157 uint8_t arch_size;
158 uint8_t major_version;
159 uint8_t minor_version;
160 uint8_t flight_recorder;
161 uint8_t has_heartbeat;
162 uint8_t has_alignment; /* Event header alignment */
cb310b57 163 uint32_t freq_scale;
b7576a11 164} LTT_PACKED_STRUCT;
165
166
167/* For version 0.3 */
168
169struct ltt_trace_header_0_3 {
3aee1200 170 uint32_t magic_number;
171 uint32_t arch_type;
172 uint32_t arch_variant;
79257ba5 173 uint32_t float_word_order;
3aee1200 174 uint8_t arch_size;
b7576a11 175 uint8_t major_version;
176 uint8_t minor_version;
177 uint8_t flight_recorder;
178 uint8_t has_heartbeat;
179 uint8_t has_alignment; /* Event header alignment */
cb310b57 180 uint32_t freq_scale;
16fcbb80 181} LTT_PACKED_STRUCT;
3aee1200 182
cb310b57 183/* For version 0.7 */
986e2a7c 184
cb310b57 185struct ltt_trace_header_0_7 {
e939e5b2 186 uint32_t magic_number;
187 uint32_t arch_type;
188 uint32_t arch_variant;
189 uint32_t float_word_order;
190 uint8_t arch_size;
191 uint8_t major_version;
192 uint8_t minor_version;
193 uint8_t flight_recorder;
194 uint8_t has_heartbeat;
195 uint8_t has_alignment; /* Event header alignment */
cb310b57 196 uint32_t freq_scale;
e939e5b2 197 uint64_t start_freq;
198 uint64_t start_tsc;
199 uint64_t start_monotonic;
e939e5b2 200 uint64_t start_time_sec;
201 uint64_t start_time_usec;
202} LTT_PACKED_STRUCT;
203
204
3aee1200 205struct ltt_block_start_header {
206 struct {
3aee1200 207 uint64_t cycle_count;
986e2a7c 208 uint64_t freq;
3aee1200 209 } begin;
210 struct {
3aee1200 211 uint64_t cycle_count;
986e2a7c 212 uint64_t freq;
3aee1200 213 } end;
214 uint32_t lost_size; /* Size unused at the end of the buffer */
215 uint32_t buf_size; /* The size of this sub-buffer */
51551c6f 216 struct ltt_trace_header_any trace[0];
16fcbb80 217} LTT_PACKED_STRUCT;
3aee1200 218
e3247aa5 219
220struct _LttType{
f104d082 221// LTTV does not care about type names. Everything is a field.
222// GQuark type_name; //type name if it is a named type
45e14832 223 gchar * fmt;
f104d082 224 guint size;
e3247aa5 225 LttTypeEnum type_class; //which type
2312de30 226 GHashTable *enum_map; //maps enum labels to numbers.
f104d082 227 GArray *fields; // Array of LttFields, for array, sequence, union, struct.
228 GData *fields_by_name;
f0b795e0 229 guint network; // Is the type in network byte order ?
7c6b3cd7 230};
231
e3247aa5 232struct _LttEventType{
3aee1200 233 GQuark name;
45e14832 234 gchar * description;
f104d082 235 guint index; //id of the event type within the facility
e3247aa5 236 LttFacility * facility; //the facility that contains the event type
f104d082 237 GArray * fields; //event's fields (LttField)
238 GData *fields_by_name;
7c6b3cd7 239};
240
3aee1200 241/* Structure LttEvent and LttEventPosition must begin with the _exact_ same
242 * fields in the exact same order. LttEventPosition is a parent of LttEvent. */
c02ea99f 243struct _LttEvent{
3aee1200 244
245 /* Begin of LttEventPosition fields */
246 LttTracefile *tracefile;
247 unsigned int block;
eed2ef37 248 unsigned int offset;
3aee1200 249
250 /* Timekeeping */
251 uint64_t tsc; /* Current timestamp counter */
252
253 /* End of LttEventPosition fields */
254
cb310b57 255 guint32 timestamp; /* truncated timestamp */
3aee1200 256
257 unsigned char facility_id; /* facility ID are never reused. */
258 unsigned char event_id;
259
c02ea99f 260 LttTime event_time;
3aee1200 261
c02ea99f 262 void * data; //event data
77175651 263 guint data_size;
b77d1b57 264 guint event_size; //event_size field of the header :
265 //used to verify data_size from facility.
3aee1200 266
c02ea99f 267 int count; //the number of overflow of cycle count
2dee981d 268 gint64 overflow_nsec; //precalculated nsec for overflows
3aee1200 269};
dfb73233 270
3aee1200 271struct _LttEventPosition{
272 LttTracefile *tracefile;
273 unsigned int block;
eed2ef37 274 unsigned int offset;
3aee1200 275
276 /* Timekeeping */
277 uint64_t tsc; /* Current timestamp counter */
c02ea99f 278};
279
280
3aee1200 281enum field_status { FIELD_UNKNOWN, FIELD_VARIABLE, FIELD_FIXED };
282
e3247aa5 283struct _LttField{
f104d082 284 GQuark name;
285 gchar *description;
286 LttType field_type; //field type
287
288 off_t offset_root; //offset from the root
289 enum field_status fixed_root; //offset fixed according to the root
290
291 guint field_size; // size of the field
292 // Only if field type size is set to 0
293 // (it's variable), then the field_size should be
294 // dynamically calculated while reading the trace
295 // and put here. Otherwise, the field_size always
296 // equels the type size.
297 off_t array_offset; // offset of the beginning of the array (for array
298 // and sequences)
299 GArray * dynamic_offsets; // array of offsets calculated dynamically at
300 // each event for sequences and arrays that
301 // contain variable length fields.
7c6b3cd7 302};
303
e3247aa5 304struct _LttFacility{
3aee1200 305 LttTrace *trace;
3aee1200 306 GQuark name;
307 guint32 checksum; //checksum of the facility
308 guint32 id; //id of the facility
309
f104d082 310 guint32 int_size;
cb03932a 311 guint32 long_size;
f104d082 312 guint32 pointer_size;
3aee1200 313 guint32 size_t_size;
314 guint32 alignment;
315
3aee1200 316 GArray *events;
317 GData *events_by_name;
f104d082 318 // not necessary in LTTV GData *named_types;
3aee1200 319
320 unsigned char exists; /* 0 does not exist, 1 exists */
7c6b3cd7 321};
322
3aee1200 323typedef struct _LttBuffer {
324 void * head;
325 unsigned int index;
326
327 struct {
328 LttTime timestamp;
329 uint64_t cycle_count;
986e2a7c 330 uint64_t freq; /* Frequency in khz */
3aee1200 331 } begin;
332 struct {
333 LttTime timestamp;
334 uint64_t cycle_count;
986e2a7c 335 uint64_t freq; /* Frequency in khz */
3aee1200 336 } end;
337 uint32_t lost_size; /* Size unused at the end of the buffer */
338
339 /* Timekeeping */
340 uint64_t tsc; /* Current timestamp counter */
986e2a7c 341 uint64_t freq; /* Frequency in khz */
791dffa6 342 //double nsecs_per_cycle; /* Precalculated from freq */
343 guint32 cyc2ns_scale;
3aee1200 344} LttBuffer;
345
e3247aa5 346struct _LttTracefile{
3aee1200 347 gboolean cpu_online; //is the cpu online ?
d3d34f49 348 GQuark long_name; //tracefile complete filename
3aee1200 349 GQuark name; //tracefile name
350 guint cpu_num; //cpu number of the tracefile
e3247aa5 351 LttTrace * trace; //trace containing the tracefile
352 int fd; //file descriptor
353 off_t file_size; //file size
f628823c 354 //unsigned block_size; //block_size
f104d082 355 guint num_blocks; //number of blocks in the file
3aee1200 356 gboolean reverse_bo; //must we reverse byte order ?
3b10b765 357 gboolean float_word_order; //what is the byte order of floats ?
f104d082 358 size_t has_alignment; //alignment of events in the tracefile.
359 // 0 or the architecture size in bytes.
3aee1200 360
823820eb 361 size_t buffer_header_size;
362
3aee1200 363 /* Current event */
364 LttEvent event; //Event currently accessible in the trace
365
366 /* Current block */
367 LttBuffer buffer; //current buffer
368 guint32 buf_size; /* The size of blocks */
369
370 /* Time flow */
371 //unsigned int count; //the number of overflow of cycle count
372 //double nsec_per_cycle; //Nsec per cycle
373 //TimeHeartbeat * last_heartbeat; //last heartbeat
374
887208b7 375 //LttCycleCount cycles_per_nsec_reciprocal; // Optimisation for speed
3aee1200 376 //void * last_event_pos;
7c6b3cd7 377
3aee1200 378 //LttTime prev_block_end_time; //the end time of previous block
379 //LttTime prev_event_time; //the time of the previous event
380 //LttCycleCount pre_cycle_count; //previous cycle count of the event
e3247aa5 381};
7c6b3cd7 382
3aee1200 383struct _LttTrace{
384 GQuark pathname; //the pathname of the trace
385 //LttSystemDescription * system_description;//system description
386
387 GArray *facilities_by_num; /* fac_id as index in array */
388 GData *facilities_by_name; /* fac name (GQuark) as index */
389 /* Points to array of fac_id of all the
b56dcdf2 390 * facilities that has this name. */
391 guint num_cpu;
3aee1200 392
16fcbb80 393 guint32 arch_type;
394 guint32 arch_variant;
395 guint8 arch_size;
3aee1200 396 guint8 ltt_major_version;
397 guint8 ltt_minor_version;
398 guint8 flight_recorder;
399 guint8 has_heartbeat;
cb310b57 400 guint32 freq_scale;
791dffa6 401 uint64_t start_freq;
402 uint64_t start_tsc;
986e2a7c 403 uint64_t start_monotonic;
404 LttTime start_time;
88612d17 405 LttTime start_time_from_tsc;
3aee1200 406
407 GData *tracefiles; //tracefiles groups
80da81ad 408};
7c6b3cd7 409
a5dcde2f 410/* The characteristics of the system on which the trace was obtained
411 is described in a LttSystemDescription structure. */
412
413struct _LttSystemDescription {
45e14832 414 gchar *description;
415 gchar *node_name;
416 gchar *domain_name;
a5dcde2f 417 unsigned nb_cpu;
418 LttArchSize size;
419 LttArchEndian endian;
45e14832 420 gchar *kernel_name;
421 gchar *kernel_release;
422 gchar *kernel_version;
423 gchar *machine;
424 gchar *processor;
425 gchar *hardware_platform;
426 gchar *operating_system;
a5dcde2f 427 LttTime trace_start;
428 LttTime trace_end;
429};
430
7c6b3cd7 431/*****************************************************************************
432 macro for size of some data types
433 *****************************************************************************/
3aee1200 434// alignment -> dynamic!
435
436//#define TIMESTAMP_SIZE sizeof(guint32)
437//#define EVENT_ID_SIZE sizeof(guint16)
438//#define EVENT_HEADER_SIZE (TIMESTAMP_SIZE + EVENT_ID_SIZE)
439
7c6b3cd7 440
f104d082 441/* Calculate the offset needed to align the type.
442 * If has_alignment is 0, alignment is disactivated.
443 * else, the function returns the offset needed to
444 * align align_drift on the has_alignment value (should be
445 * the size of the architecture). */
446static inline unsigned int ltt_align(size_t align_drift,
447 size_t size_of_type,
448 size_t has_alignment)
449{
450 size_t alignment = min(has_alignment, size_of_type);
6dfb376e 451
f72cdf57 452 if(!has_alignment) return 0;
6dfb376e 453
f104d082 454 return ((alignment - align_drift) & (alignment-1));
455}
456
f104d082 457
fcdf0ec2 458#endif /* LTT_PRIVATE_H */
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