wakeup wait for cpu display
[lttv.git] / lttv / lttv / state.h
CommitLineData
9c312311 1/* This file is part of the Linux Trace Toolkit viewer
2 * Copyright (C) 2003-2004 Michel Dagenais
3 *
4 * This program is free software; you can redistribute it and/or modify
5 * it under the terms of the GNU General Public License Version 2 as
6 * published by the Free Software Foundation;
7 *
8 * This program is distributed in the hope that it will be useful,
9 * but WITHOUT ANY WARRANTY; without even the implied warranty of
10 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
11 * GNU General Public License for more details.
12 *
13 * You should have received a copy of the GNU General Public License
14 * along with this program; if not, write to the Free Software
15 * Foundation, Inc., 59 Temple Place - Suite 330, Boston,
16 * MA 02111-1307, USA.
17 */
18
dc877563 19#ifndef STATE_H
20#define STATE_H
21
ffd54a90 22#include <glib.h>
d8f124de 23#include <lttv/tracecontext.h>
dbb7bb09 24#include <stdio.h>
dc877563 25
dd025f91 26/* The operating system state, kept during the trace analysis,
dc877563 27 contains a subset of the real operating system state,
28 sufficient for the analysis, and possibly organized quite differently.
29
ffd54a90 30 The state information is added to LttvTracesetContext, LttvTraceContext
d3e01c7a 31 and LttvTracefileContext objects, used by process_traceset, through
dc877563 32 subtyping. The context objects already reflect the multiple tracefiles
33 (one per cpu) per trace and multiple traces per trace set. The state
308711e5 34 objects defined here simply add fields to the relevant context objects.
35
36 There is no traceset specific state yet. It may eventually contains such
37 things as clock differences over time.
38
39 The trace state currently consists in a process table.
40
41 The tracefile level state relates to the associated cpu. It contains the
42 position of the current event in the tracefile (since the state depends on
43 which events have been processed) and a pointer to the current process,
44 in the process table, being run on that cpu.
45
46 For each process in the process table, various informations such as exec
47 file name, pid, ppid and creation time are stored. Each process state also
48 contains an execution mode stack (e.g. irq within system call, called
49 from user mode). */
dc877563 50
a5ba1787 51/* Priority of state hooks */
52#define LTTV_PRIO_STATE 25
53
eed2ef37 54#define LTTV_STATE_SAVE_INTERVAL 50000
55
750eb11a 56/* Channel Quarks */
eed2ef37 57
58extern GQuark
750eb11a 59 LTT_CHANNEL_FD_STATE,
60 LTT_CHANNEL_GLOBAL_STATE,
61 LTT_CHANNEL_IRQ_STATE,
62 LTT_CHANNEL_MODULE_STATE,
63 LTT_CHANNEL_NETIF_STATE,
64 LTT_CHANNEL_SOFTIRQ_STATE,
65 LTT_CHANNEL_SWAP_STATE,
66 LTT_CHANNEL_SYSCALL_STATE,
67 LTT_CHANNEL_TASK_STATE,
68 LTT_CHANNEL_VM_STATE,
2d0d580c 69 LTT_CHANNEL_KPROBE_STATE,
750eb11a 70 LTT_CHANNEL_FS,
71 LTT_CHANNEL_KERNEL,
72 LTT_CHANNEL_MM,
73 LTT_CHANNEL_USERSPACE,
74 LTT_CHANNEL_BLOCK;
eed2ef37 75
76/* Events Quarks */
77
78extern GQuark
79 LTT_EVENT_SYSCALL_ENTRY,
80 LTT_EVENT_SYSCALL_EXIT,
81 LTT_EVENT_TRAP_ENTRY,
82 LTT_EVENT_TRAP_EXIT,
4e9bbbd3 83 LTT_EVENT_PAGE_FAULT_ENTRY,
84 LTT_EVENT_PAGE_FAULT_EXIT,
85 LTT_EVENT_PAGE_FAULT_NOSEM_ENTRY,
86 LTT_EVENT_PAGE_FAULT_NOSEM_EXIT,
eed2ef37 87 LTT_EVENT_IRQ_ENTRY,
88 LTT_EVENT_IRQ_EXIT,
a970363f 89 LTT_EVENT_SOFT_IRQ_RAISE,
faf074a3 90 LTT_EVENT_SOFT_IRQ_ENTRY,
91 LTT_EVENT_SOFT_IRQ_EXIT,
86c32a8f 92 LTT_EVENT_SCHED_SCHEDULE,
8c108c1c 93 LTT_EVENT_SCHED_TRY_WAKEUP,
86c32a8f 94 LTT_EVENT_PROCESS_FORK,
95 LTT_EVENT_KTHREAD_CREATE,
96 LTT_EVENT_PROCESS_EXIT,
97 LTT_EVENT_PROCESS_FREE,
b3fd4c02 98 LTT_EVENT_EXEC,
86c32a8f 99 LTT_EVENT_PROCESS_STATE,
c3b3b60b 100 LTT_EVENT_STATEDUMP_END,
80e0221b 101 LTT_EVENT_FUNCTION_ENTRY,
102 LTT_EVENT_FUNCTION_EXIT,
27811799 103 LTT_EVENT_THREAD_BRAND,
104 LTT_EVENT_REQUEST_ISSUE,
38b73700 105 LTT_EVENT_REQUEST_COMPLETE,
cf453ac7 106 LTT_EVENT_LIST_INTERRUPT,
dc6b2467 107 LTT_EVENT_SYS_CALL_TABLE,
4858a3ed 108 LTT_EVENT_SOFTIRQ_VEC,
2d0d580c 109 LTT_EVENT_KPROBE_TABLE,
8c108c1c
PMF
110 LTT_EVENT_KPROBE,
111 LTT_EVENT_OPEN,
112 LTT_EVENT_READ,
113 LTT_EVENT_POLL_EVENT;
eed2ef37 114
115/* Fields Quarks */
116
117extern GQuark
118 LTT_FIELD_SYSCALL_ID,
119 LTT_FIELD_TRAP_ID,
120 LTT_FIELD_IRQ_ID,
faf074a3 121 LTT_FIELD_SOFT_IRQ_ID,
f63ebe51 122 LTT_FIELD_PREV_PID,
123 LTT_FIELD_NEXT_PID,
124 LTT_FIELD_PREV_STATE,
eed2ef37 125 LTT_FIELD_PARENT_PID,
126 LTT_FIELD_CHILD_PID,
f4b88a7d 127 LTT_FIELD_PID,
fcc08e1e 128 LTT_FIELD_TGID,
b3fd4c02 129 LTT_FIELD_FILENAME,
130 LTT_FIELD_NAME,
e62e7f3a 131 LTT_FIELD_TYPE,
b3fd4c02 132 LTT_FIELD_MODE,
133 LTT_FIELD_SUBMODE,
14236daa 134 LTT_FIELD_STATUS,
80e0221b 135 LTT_FIELD_THIS_FN,
27811799 136 LTT_FIELD_CALL_SITE,
137 LTT_FIELD_MINOR,
138 LTT_FIELD_MAJOR,
38b73700 139 LTT_FIELD_OPERATION,
cf453ac7 140 LTT_FIELD_ACTION,
141 LTT_FIELD_ID,
142 LTT_FIELD_ADDRESS,
4858a3ed 143 LTT_FIELD_SYMBOL,
8c108c1c 144 LTT_FIELD_IP,
068572ab
CS
145 LTT_FIELD_FD,
146 LTT_FIELD_STATE,
147 LTT_FIELD_CPU_ID;
eed2ef37 148
ffd54a90 149typedef struct _LttvTracesetState LttvTracesetState;
150typedef struct _LttvTracesetStateClass LttvTracesetStateClass;
151
152typedef struct _LttvTraceState LttvTraceState;
153typedef struct _LttvTraceStateClass LttvTraceStateClass;
154
155typedef struct _LttvTracefileState LttvTracefileState;
156typedef struct _LttvTracefileStateClass LttvTracefileStateClass;
157
58c88a41 158gint lttv_state_hook_add_event_hooks(void *hook_data, void *call_data);
308711e5 159void lttv_state_add_event_hooks(LttvTracesetState *self);
160
58c88a41 161gint lttv_state_hook_remove_event_hooks(void *hook_data, void *call_data);
308711e5 162void lttv_state_remove_event_hooks(LttvTracesetState *self);
163
164void lttv_state_save_add_event_hooks(LttvTracesetState *self);
b56b5fec 165// Hook wrapper. call_data is a trace context.
166gint lttv_state_save_hook_add_event_hooks(void *hook_data, void *call_data);
dc877563 167
308711e5 168void lttv_state_save_remove_event_hooks(LttvTracesetState *self);
b56b5fec 169// Hook wrapper. call_data is a trace context.
170gint lttv_state_save_hook_remove_event_hooks(void *hook_data, void *call_data);
308711e5 171
dd025f91 172void lttv_state_traceset_seek_time_closest(LttvTracesetState *self, LttTime t);
dc877563 173
b445142a 174/* The LttvProcessState structure defines the current state for each process.
175 A process can make system calls (in some rare cases nested) and receive
176 interrupts/faults. For instance, a process may issue a system call,
177 generate a page fault while reading an argument from user space, and
178 get caught by an interrupt. To represent these nested states, an
179 execution mode stack is maintained. The stack bottom is normal user mode
180 and the top of stack is the current execution mode.
181
182 The execution mode stack tells about the process status, execution mode and
183 submode (interrupt, system call or IRQ number). All these could be
184 defined as enumerations but may need extensions (e.g. new process state).
185 GQuark are thus used. They are as easy to manipulate as integers but have
186 a string associated, just like enumerations.
dc877563 187
b445142a 188 The execution mode is one of "user mode", "kernel thread", "system call",
dc877563 189 "interrupt request", "fault". */
190
b445142a 191typedef GQuark LttvExecutionMode;
dc877563 192
b445142a 193extern LttvExecutionMode
ffd54a90 194 LTTV_STATE_USER_MODE,
195 LTTV_STATE_SYSCALL,
196 LTTV_STATE_TRAP,
b445142a 197 LTTV_STATE_IRQ,
faf074a3 198 LTTV_STATE_SOFT_IRQ,
b445142a 199 LTTV_STATE_MODE_UNKNOWN;
ffd54a90 200
dc877563 201
b445142a 202/* The submode number depends on the execution mode. For user mode or kernel
203 thread, which are the normal mode (execution mode stack bottom),
204 it is set to "none". For interrupt requests, faults and system calls,
205 it is set respectively to the interrupt name (e.g. "timer"), fault name
996acd92 206 (e.g. "page fault"), and system call name (e.g. "select"). */
dc877563 207
b445142a 208typedef GQuark LttvExecutionSubmode;
dc877563 209
b445142a 210extern LttvExecutionSubmode
211 LTTV_STATE_SUBMODE_NONE,
212 LTTV_STATE_SUBMODE_UNKNOWN;
dc877563 213
214/* The process status is one of "running", "wait-cpu" (runnable), or "wait-*"
215 where "*" describes the resource waited for (e.g. timer, process,
216 disk...). */
217
218typedef GQuark LttvProcessStatus;
219
ffd54a90 220extern LttvProcessStatus
221 LTTV_STATE_UNNAMED,
222 LTTV_STATE_WAIT_FORK,
223 LTTV_STATE_WAIT_CPU,
dbd243b1 224 LTTV_STATE_EXIT,
0828099d 225 LTTV_STATE_ZOMBIE,
ffd54a90 226 LTTV_STATE_WAIT,
791dffa6 227 LTTV_STATE_RUN,
228 LTTV_STATE_DEAD;
dc877563 229
c4a72569 230extern GQuark
231 LTTV_STATE_UNBRANDED;
232
e62e7f3a 233typedef GQuark LttvProcessType;
234
235extern LttvProcessType
236 LTTV_STATE_USER_THREAD,
80e0221b 237 LTTV_STATE_KERNEL_THREAD;
ffd54a90 238
44ffb95f 239typedef GQuark LttvCPUMode;
240extern LttvCPUMode
241 LTTV_CPU_UNKNOWN,
242 LTTV_CPU_IDLE,
598026ba 243 LTTV_CPU_BUSY,
d3d99fde 244 LTTV_CPU_IRQ,
d34141ca 245 LTTV_CPU_SOFT_IRQ,
d3d99fde 246 LTTV_CPU_TRAP;
44ffb95f 247
5e563da0 248typedef GQuark LttvIRQMode;
249extern LttvIRQMode
250 LTTV_IRQ_UNKNOWN,
251 LTTV_IRQ_IDLE,
252 LTTV_IRQ_BUSY;
253
27811799 254typedef GQuark LttvBdevMode;
255extern LttvBdevMode
256 LTTV_BDEV_UNKNOWN,
257 LTTV_BDEV_IDLE,
258 LTTV_BDEV_BUSY_READING,
259 LTTV_BDEV_BUSY_WRITING;
260
b445142a 261typedef struct _LttvExecutionState {
262 LttvExecutionMode t;
263 LttvExecutionSubmode n;
ba576a78 264 LttTime entry;
b445142a 265 LttTime change;
80e0221b 266 LttTime cum_cpu_time;
dc877563 267 LttvProcessStatus s;
b445142a 268} LttvExecutionState;
dc877563 269
dc877563 270typedef struct _LttvProcessState {
271 guint pid;
fcc08e1e 272 guint tgid;
3e561027 273 guint ppid;
b445142a 274 LttTime creation_time;
2a2fa4f0 275 LttTime insertion_time;
dc877563 276 GQuark name;
7b5f6cf1 277 GQuark brand;
b445142a 278 GQuark pid_time;
279 GArray *execution_stack; /* Array of LttvExecutionState */
280 LttvExecutionState *state; /* Top of interrupt stack */
e05fc742 281 /* WARNING : each time the execution_stack size is modified, the state
282 * must be reget : g_array_set_size can have to move the array.
283 * (Mathieu) */
348c6ba8 284 guint cpu; /* CPU where process is scheduled (being either in
285 the active or inactive runqueue)*/
286// guint last_tracefile_index; /* index in the trace for cpu tracefile */
80e0221b 287 LttvTracefileState *usertrace; /* Associated usertrace */
b445142a 288 /* opened file descriptors, address map?... */
80e0221b 289 GArray *user_stack; /* User space function call stack */
290 guint64 current_function;
291 LttvProcessType type; /* kernel thread or user space ? */
33bdc8dd 292 guint target_pid; /* target PID of the current event. */
c7620c79 293 guint free_events; /* 0 : none, 1 : free or exit dead, 2 : should delete */
8c108c1c 294 GHashTable *fds; /* hash table of int (file descriptor) -> GQuark (file name) */
dc877563 295} LttvProcessState;
296
348c6ba8 297#define ANY_CPU 0 /* For clarity sake : a call to lttv_state_find_process for
298 a PID != 0 will search on any cpu automatically. */
299
2a2fa4f0 300LttvProcessState *
348c6ba8 301lttv_state_find_process(LttvTraceState *ts, guint cpu, guint pid);
2a2fa4f0 302
2a2fa4f0 303LttvProcessState *
348c6ba8 304lttv_state_find_process_or_create(LttvTraceState *ts, guint cpu, guint pid,
d41c66bf 305 const LttTime *timestamp);
2a2fa4f0 306
307LttvProcessState *
b3fd4c02 308lttv_state_create_process(LttvTraceState *tcs, LttvProcessState *parent,
fcc08e1e 309 guint cpu, guint pid, guint tgid, GQuark name, const LttTime *timestamp);
b445142a 310
dbb7bb09 311void lttv_state_write(LttvTraceState *self, LttTime t, FILE *fp);
6d0cdf22 312void lttv_state_write_raw(LttvTraceState *self, LttTime t, FILE *fp);
b445142a 313
ffd54a90 314/* The LttvTracesetState, LttvTraceState and LttvTracefileState types
dc877563 315 inherit from the corresponding Context objects defined in processTrace. */
316
317#define LTTV_TRACESET_STATE_TYPE (lttv_traceset_state_get_type ())
ffd54a90 318#define LTTV_TRACESET_STATE(obj) (G_TYPE_CHECK_INSTANCE_CAST ((obj), LTTV_TRACESET_STATE_TYPE, LttvTracesetState))
319#define LTTV_TRACESET_STATE_CLASS(vtable) (G_TYPE_CHECK_CLASS_CAST ((vtable), LTTV_TRACESET_STATE_TYPE, LttvTracesetStateClass))
dc877563 320#define LTTV_IS_TRACESET_STATE(obj) (G_TYPE_CHECK_INSTANCE_TYPE ((obj), LTTV_TRACESET_STATE_TYPE))
321#define LTTV_IS_TRACESET_STATE_CLASS(vtable) (G_TYPE_CHECK_CLASS_TYPE ((vtable), LTTV_TRACESET_STATE_TYPE))
ffd54a90 322#define LTTV_TRACESET_STATE_GET_CLASS(inst) (G_TYPE_INSTANCE_GET_CLASS ((inst), LTTV_TRACESET_STATE_TYPE, LttvTracesetStateClass))
dc877563 323
ffd54a90 324struct _LttvTracesetState {
325 LttvTracesetContext parent;
dc877563 326};
327
328struct _LttvTracesetStateClass {
ffd54a90 329 LttvTracesetContextClass parent;
dc877563 330};
331
332GType lttv_traceset_state_get_type (void);
333
334
335#define LTTV_TRACE_STATE_TYPE (lttv_trace_state_get_type ())
336#define LTTV_TRACE_STATE(obj) (G_TYPE_CHECK_INSTANCE_CAST ((obj), LTTV_TRACE_STATE_TYPE, LttvTraceState))
337#define LTTV_TRACE_STATE_CLASS(vtable) (G_TYPE_CHECK_CLASS_CAST ((vtable), LTTV_TRACE_STATE_TYPE, LttvTraceStateClass))
338#define LTTV_IS_TRACE_STATE(obj) (G_TYPE_CHECK_INSTANCE_TYPE ((obj), LTTV_TRACE_STATE_TYPE))
339#define LTTV_IS_TRACE_STATE_CLASS(vtable) (G_TYPE_CHECK_CLASS_TYPE ((vtable), LTTV_TRACE_STATE_TYPE))
340#define LTTV_TRACE_STATE_GET_CLASS(inst) (G_TYPE_INSTANCE_GET_CLASS ((inst), LTTV_TRACE_STATE_TYPE, LttvTraceStateClass))
341
44ffb95f 342typedef struct _LttvCPUState {
d3d99fde 343 GArray *mode_stack;
165051d2 344 GArray *irq_stack;
16e4e89b 345 GArray *softirq_stack;
346 GArray *trap_stack;
44ffb95f 347} LttvCPUState;
348
5e563da0 349typedef struct _LttvIRQState {
350 GArray *mode_stack;
351} LttvIRQState;
352
0305fe77 353typedef struct _LttvSoftIRQState {
a970363f 354 guint pending; /* number of times it is pending */
0305fe77 355 guint running; /* number of times it is currently running (on different processors) */
356} LttvSoftIRQState;
357
38726a78 358typedef struct _LttvTrapState {
359 guint running; /* number of times it is currently running (on different processors) */
360} LttvTrapState;
361
27811799 362typedef struct _LttvBdevState {
363 GArray *mode_stack;
364} LttvBdevState;
365
1cd9058f
MD
366typedef struct _LttvNameTables {
367 GQuark *syscall_names;
368 guint nb_syscalls;
369 GQuark *trap_names;
370 guint nb_traps;
371 GQuark *irq_names;
372 guint nb_irqs;
373 GQuark *soft_irq_names;
374 guint nb_soft_irqs;
375 GHashTable *kprobe_hash;
376} LttvNameTables;
377
dc877563 378struct _LttvTraceState {
379 LttvTraceContext parent;
380
00e74b69 381 GHashTable *processes; /* LttvProcessState objects indexed by pid and
382 last_cpu */
80e0221b 383 GHashTable *usertraces; /* GPtrArray objects indexed by pid, containing
384 pointers to LttvTracefileState objects. */
308711e5 385 guint nb_event, save_interval;
dc877563 386 /* Block/char devices, locks, memory pages... */
b445142a 387 GQuark *eventtype_names;
1cd9058f 388 LttvNameTables *name_tables;
2a2fa4f0 389 LttTime *max_time_state_recomputed_in_seek;
2d0d580c 390 GHashTable *kprobe_hash;
348c6ba8 391
392 /* Array of per cpu running process */
393 LttvProcessState **running_process;
7df20ca4 394 gboolean has_precomputed_states;
44ffb95f 395 LttvCPUState *cpu_states; /* state of each cpu */
5e563da0 396 LttvIRQState *irq_states; /* state of each irq handler */
0305fe77 397 LttvSoftIRQState *soft_irq_states; /* state of each softirq */
38726a78 398 LttvTrapState *trap_states; /* state of each trap */
27811799 399 GHashTable *bdev_states; /* state of the block devices */
dc877563 400};
401
402struct _LttvTraceStateClass {
403 LttvTraceContextClass parent;
308711e5 404
405 void (*state_save) (LttvTraceState *self, LttvAttribute *container);
406 void (*state_restore) (LttvTraceState *self, LttvAttribute *container);
407 void (*state_saved_free) (LttvTraceState *self, LttvAttribute *container);
dc877563 408};
409
410GType lttv_trace_state_get_type (void);
411
308711e5 412void lttv_state_save(LttvTraceState *self, LttvAttribute *container);
413
414void lttv_state_restore(LttvTraceState *self, LttvAttribute *container);
415
f95bc830 416void lttv_state_state_saved_free(LttvTraceState *self,
308711e5 417 LttvAttribute *container);
418
b49e54b4 419int lttv_state_pop_state_cleanup(LttvProcessState *process,
80e0221b 420 LttvTracefileState *tfs);
dc877563 421
422#define LTTV_TRACEFILE_STATE_TYPE (lttv_tracefile_state_get_type ())
423#define LTTV_TRACEFILE_STATE(obj) (G_TYPE_CHECK_INSTANCE_CAST ((obj), LTTV_TRACEFILE_STATE_TYPE, LttvTracefileState))
424#define LTTV_TRACEFILE_STATE_CLASS(vtable) (G_TYPE_CHECK_CLASS_CAST ((vtable), LTTV_TRACEFILE_STATE_TYPE, LttvTracefileStateClass))
425#define LTTV_IS_TRACEFILE_STATE(obj) (G_TYPE_CHECK_INSTANCE_TYPE ((obj), LTTV_TRACEFILE_STATE_TYPE))
426#define LTTV_IS_TRACEFILE_STATE_CLASS(vtable) (G_TYPE_CHECK_CLASS_TYPE ((vtable), LTTV_TRACEFILE_STATE_TYPE))
427#define LTTV_TRACEFILE_STATE_GET_CLASS(inst) (G_TYPE_INSTANCE_GET_CLASS ((inst), LTTV_TRACEFILE_STATE_TYPE, LttvTracefileStateClass))
428
dc877563 429struct _LttvTracefileState {
430 LttvTracefileContext parent;
431
348c6ba8 432 GQuark tracefile_name;
44ffb95f 433 guint cpu; /* Current cpu of the tracefile */ /* perhaps merge in cpu_state */
434 LttvCPUState *cpu_state; /* cpu resource state */
dc877563 435};
436
437struct _LttvTracefileStateClass {
438 LttvTracefileContextClass parent;
439};
440
441GType lttv_tracefile_state_get_type (void);
442
33bdc8dd 443static inline guint lttv_state_get_target_pid(LttvTracefileState *tfs)
444{
445 LttvTraceState *ts = (LttvTraceState*)tfs->parent.t_context;
446 guint cpu = tfs->cpu;
447 LttvProcessState *process = ts->running_process[cpu];
448
e38d9ea0 449 if(tfs->parent.target_pid >= 0) return tfs->parent.target_pid;
33bdc8dd 450 else return process->pid;
451}
452
dc877563 453
6d0cdf22 454#define HDR_PROCESS 0
455#define HDR_ES 1
456#define HDR_USER_STACK 2
457#define HDR_USERTRACE 3
458#define HDR_PROCESS_STATE 4
459#define HDR_CPU 5
460#define HDR_TRACEFILE 6
461#define HDR_TRACESET 7
462#define HDR_TRACE 8
463#define HDR_QUARKS 9
464#define HDR_QUARK 10
465
67f72973 466/* Device number manipulation macros from kernel source */
467#define MINORBITS 20
468#define MINORMASK ((1U << MINORBITS) - 1)
469#define MAJOR(dev) ((unsigned int) ((dev) >> MINORBITS))
470#define MINOR(dev) ((unsigned int) ((dev) & MINORMASK))
471#define MKDEV(ma,mi) (((ma) << MINORBITS) | (mi))
6d0cdf22 472
b445142a 473#endif // STATE_H
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