Add pthread cleanup to listener (to cleanup mutex)
[ust.git] / libust / marker.c
CommitLineData
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1/*
2 * Copyright (C) 2007 Mathieu Desnoyers
3 *
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4 * This library is free software; you can redistribute it and/or
5 * modify it under the terms of the GNU Lesser General Public
6 * License as published by the Free Software Foundation; either
7 * version 2.1 of the License, or (at your option) any later version.
68c1021b 8 *
34e4b7db 9 * This library is distributed in the hope that it will be useful,
68c1021b 10 * but WITHOUT ANY WARRANTY; without even the implied warranty of
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11 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
12 * Lesser General Public License for more details.
68c1021b 13 *
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14 * You should have received a copy of the GNU Lesser General Public
15 * License along with this library; if not, write to the Free Software
16 * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
68c1021b 17 */
59b161cd 18
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19#include <stdlib.h>
20#include <errno.h>
769d0157 21#define _LGPL_SOURCE
b7ea1a1c 22#include <urcu-bp.h>
17bb07b4 23#include <urcu/rculist.h>
10c56168 24#include <urcu/hlist.h>
769d0157 25
518d7abb 26#include <ust/core.h>
93d0f2ea 27#include <ust/marker.h>
fbae86d6 28#include <ust/tracepoint.h>
909bc43f 29
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30#include "usterr.h"
31#include "channels.h"
32#include "tracercore.h"
c93858f1 33#include "tracer.h"
68c1021b 34
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35__thread long ust_reg_stack[500];
36volatile __thread long *ust_reg_stack_ptr = (long *) 0;
37
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38extern struct marker * const __start___markers_ptrs[] __attribute__((visibility("hidden")));
39extern struct marker * const __stop___markers_ptrs[] __attribute__((visibility("hidden")));
defa46a7 40
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41/* Set to 1 to enable marker debug output */
42static const int marker_debug;
43
44/*
45 * markers_mutex nests inside module_mutex. Markers mutex protects the builtin
46 * and module markers and the hash table.
47 */
48static DEFINE_MUTEX(markers_mutex);
49
0222e121 50static CDS_LIST_HEAD(libs);
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51
52
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53void lock_markers(void)
54{
f7b16408 55 pthread_mutex_lock(&markers_mutex);
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56}
57
58void unlock_markers(void)
59{
f7b16408 60 pthread_mutex_unlock(&markers_mutex);
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61}
62
63/*
64 * Marker hash table, containing the active markers.
65 * Protected by module_mutex.
66 */
67#define MARKER_HASH_BITS 6
68#define MARKER_TABLE_SIZE (1 << MARKER_HASH_BITS)
10c56168 69static struct cds_hlist_head marker_table[MARKER_TABLE_SIZE];
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70
71/*
72 * Note about RCU :
73 * It is used to make sure every handler has finished using its private data
74 * between two consecutive operation (add or remove) on a given marker. It is
75 * also used to delay the free of multiple probes array until a quiescent state
76 * is reached.
77 * marker entries modifications are protected by the markers_mutex.
78 */
79struct marker_entry {
10c56168 80 struct cds_hlist_node hlist;
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81 char *format;
82 char *name;
83 /* Probe wrapper */
75667d04 84 void (*call)(const struct marker *mdata, void *call_private, struct registers *regs, ...);
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85 struct marker_probe_closure single;
86 struct marker_probe_closure *multi;
87 int refcount; /* Number of times armed. 0 if disarmed. */
88 struct rcu_head rcu;
89 void *oldptr;
90 int rcu_pending;
91 u16 channel_id;
92 u16 event_id;
93 unsigned char ptype:1;
94 unsigned char format_allocated:1;
95 char channel[0]; /* Contains channel'\0'name'\0'format'\0' */
96};
97
98#ifdef CONFIG_MARKERS_USERSPACE
99static void marker_update_processes(void);
100#else
101static void marker_update_processes(void)
102{
103}
104#endif
105
106/**
107 * __mark_empty_function - Empty probe callback
108 * @mdata: marker data
109 * @probe_private: probe private data
110 * @call_private: call site private data
111 * @fmt: format string
112 * @...: variable argument list
113 *
114 * Empty callback provided as a probe to the markers. By providing this to a
115 * disabled marker, we make sure the execution flow is always valid even
116 * though the function pointer change and the marker enabling are two distinct
117 * operations that modifies the execution flow of preemptible code.
118 */
119notrace void __mark_empty_function(const struct marker *mdata,
75667d04 120 void *probe_private, struct registers *regs, void *call_private, const char *fmt, va_list *args)
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121{
122}
59b161cd 123//ust// EXPORT_SYMBOL_GPL(__mark_empty_function);
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124
125/*
126 * marker_probe_cb Callback that prepares the variable argument list for probes.
127 * @mdata: pointer of type struct marker
128 * @call_private: caller site private data
129 * @...: Variable argument list.
130 *
131 * Since we do not use "typical" pointer based RCU in the 1 argument case, we
0222e121 132 * need to put a full cmm_smp_rmb() in this branch. This is why we do not use
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133 * rcu_dereference() for the pointer read.
134 */
135notrace void marker_probe_cb(const struct marker *mdata,
75667d04 136 void *call_private, struct registers *regs, ...)
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137{
138 va_list args;
139 char ptype;
140
141 /*
142 * rcu_read_lock_sched does two things : disabling preemption to make
143 * sure the teardown of the callbacks can be done correctly when they
144 * are in modules and they insure RCU read coherency.
145 */
59b161cd 146//ust// rcu_read_lock_sched_notrace();
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147 ptype = mdata->ptype;
148 if (likely(!ptype)) {
149 marker_probe_func *func;
150 /* Must read the ptype before ptr. They are not data dependant,
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151 * so we put an explicit cmm_smp_rmb() here. */
152 cmm_smp_rmb();
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153 func = mdata->single.func;
154 /* Must read the ptr before private data. They are not data
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155 * dependant, so we put an explicit cmm_smp_rmb() here. */
156 cmm_smp_rmb();
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157 va_start(args, regs);
158 func(mdata, mdata->single.probe_private, regs, call_private,
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159 mdata->format, &args);
160 va_end(args);
161 } else {
162 struct marker_probe_closure *multi;
163 int i;
164 /*
165 * Read mdata->ptype before mdata->multi.
166 */
0222e121 167 cmm_smp_rmb();
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168 multi = mdata->multi;
169 /*
170 * multi points to an array, therefore accessing the array
171 * depends on reading multi. However, even in this case,
172 * we must insure that the pointer is read _before_ the array
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173 * data. Same as rcu_dereference, but we need a full cmm_smp_rmb()
174 * in the fast path, so put the explicit cmm_barrier here.
68c1021b 175 */
0222e121 176 cmm_smp_read_barrier_depends();
68c1021b 177 for (i = 0; multi[i].func; i++) {
75667d04 178 va_start(args, regs);
68c1021b 179 multi[i].func(mdata, multi[i].probe_private,
75667d04 180 regs, call_private, mdata->format, &args);
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181 va_end(args);
182 }
183 }
59b161cd 184//ust// rcu_read_unlock_sched_notrace();
68c1021b 185}
59b161cd 186//ust// EXPORT_SYMBOL_GPL(marker_probe_cb);
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187
188/*
189 * marker_probe_cb Callback that does not prepare the variable argument list.
190 * @mdata: pointer of type struct marker
191 * @call_private: caller site private data
192 * @...: Variable argument list.
193 *
194 * Should be connected to markers "MARK_NOARGS".
195 */
196static notrace void marker_probe_cb_noarg(const struct marker *mdata,
75667d04 197 void *call_private, struct registers *regs, ...)
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198{
199 va_list args; /* not initialized */
200 char ptype;
201
59b161cd 202//ust// rcu_read_lock_sched_notrace();
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203 ptype = mdata->ptype;
204 if (likely(!ptype)) {
205 marker_probe_func *func;
206 /* Must read the ptype before ptr. They are not data dependant,
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207 * so we put an explicit cmm_smp_rmb() here. */
208 cmm_smp_rmb();
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209 func = mdata->single.func;
210 /* Must read the ptr before private data. They are not data
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211 * dependant, so we put an explicit cmm_smp_rmb() here. */
212 cmm_smp_rmb();
75667d04 213 func(mdata, mdata->single.probe_private, regs, call_private,
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214 mdata->format, &args);
215 } else {
216 struct marker_probe_closure *multi;
217 int i;
218 /*
219 * Read mdata->ptype before mdata->multi.
220 */
0222e121 221 cmm_smp_rmb();
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222 multi = mdata->multi;
223 /*
224 * multi points to an array, therefore accessing the array
225 * depends on reading multi. However, even in this case,
226 * we must insure that the pointer is read _before_ the array
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227 * data. Same as rcu_dereference, but we need a full cmm_smp_rmb()
228 * in the fast path, so put the explicit cmm_barrier here.
68c1021b 229 */
0222e121 230 cmm_smp_read_barrier_depends();
68c1021b 231 for (i = 0; multi[i].func; i++)
75667d04 232 multi[i].func(mdata, multi[i].probe_private, regs,
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233 call_private, mdata->format, &args);
234 }
59b161cd 235//ust// rcu_read_unlock_sched_notrace();
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236}
237
238static void free_old_closure(struct rcu_head *head)
239{
1e4b909b 240 struct marker_entry *entry = _ust_container_of(head,
68c1021b 241 struct marker_entry, rcu);
909bc43f 242 free(entry->oldptr);
68c1021b 243 /* Make sure we free the data before setting the pending flag to 0 */
0222e121 244 cmm_smp_wmb();
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245 entry->rcu_pending = 0;
246}
247
248static void debug_print_probes(struct marker_entry *entry)
249{
250 int i;
251
252 if (!marker_debug)
253 return;
254
255 if (!entry->ptype) {
c1f20530 256 DBG("Single probe : %p %p",
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257 entry->single.func,
258 entry->single.probe_private);
259 } else {
260 for (i = 0; entry->multi[i].func; i++)
c1f20530 261 DBG("Multi probe %d : %p %p", i,
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262 entry->multi[i].func,
263 entry->multi[i].probe_private);
264 }
265}
266
267static struct marker_probe_closure *
268marker_entry_add_probe(struct marker_entry *entry,
269 marker_probe_func *probe, void *probe_private)
270{
271 int nr_probes = 0;
272 struct marker_probe_closure *old, *new;
273
274 WARN_ON(!probe);
275
276 debug_print_probes(entry);
277 old = entry->multi;
278 if (!entry->ptype) {
279 if (entry->single.func == probe &&
280 entry->single.probe_private == probe_private)
281 return ERR_PTR(-EBUSY);
282 if (entry->single.func == __mark_empty_function) {
283 /* 0 -> 1 probes */
284 entry->single.func = probe;
285 entry->single.probe_private = probe_private;
286 entry->refcount = 1;
287 entry->ptype = 0;
288 debug_print_probes(entry);
289 return NULL;
290 } else {
291 /* 1 -> 2 probes */
292 nr_probes = 1;
293 old = NULL;
294 }
295 } else {
296 /* (N -> N+1), (N != 0, 1) probes */
297 for (nr_probes = 0; old[nr_probes].func; nr_probes++)
298 if (old[nr_probes].func == probe
299 && old[nr_probes].probe_private
300 == probe_private)
301 return ERR_PTR(-EBUSY);
302 }
303 /* + 2 : one for new probe, one for NULL func */
909bc43f 304 new = zmalloc((nr_probes + 2) * sizeof(struct marker_probe_closure));
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305 if (new == NULL)
306 return ERR_PTR(-ENOMEM);
307 if (!old)
308 new[0] = entry->single;
309 else
310 memcpy(new, old,
311 nr_probes * sizeof(struct marker_probe_closure));
312 new[nr_probes].func = probe;
313 new[nr_probes].probe_private = probe_private;
314 entry->refcount = nr_probes + 1;
315 entry->multi = new;
316 entry->ptype = 1;
317 debug_print_probes(entry);
318 return old;
319}
320
321static struct marker_probe_closure *
322marker_entry_remove_probe(struct marker_entry *entry,
323 marker_probe_func *probe, void *probe_private)
324{
325 int nr_probes = 0, nr_del = 0, i;
326 struct marker_probe_closure *old, *new;
327
328 old = entry->multi;
329
330 debug_print_probes(entry);
331 if (!entry->ptype) {
332 /* 0 -> N is an error */
333 WARN_ON(entry->single.func == __mark_empty_function);
334 /* 1 -> 0 probes */
335 WARN_ON(probe && entry->single.func != probe);
336 WARN_ON(entry->single.probe_private != probe_private);
337 entry->single.func = __mark_empty_function;
338 entry->refcount = 0;
339 entry->ptype = 0;
340 debug_print_probes(entry);
341 return NULL;
342 } else {
343 /* (N -> M), (N > 1, M >= 0) probes */
344 for (nr_probes = 0; old[nr_probes].func; nr_probes++) {
345 if ((!probe || old[nr_probes].func == probe)
346 && old[nr_probes].probe_private
347 == probe_private)
348 nr_del++;
349 }
350 }
351
352 if (nr_probes - nr_del == 0) {
353 /* N -> 0, (N > 1) */
354 entry->single.func = __mark_empty_function;
355 entry->refcount = 0;
356 entry->ptype = 0;
357 } else if (nr_probes - nr_del == 1) {
358 /* N -> 1, (N > 1) */
359 for (i = 0; old[i].func; i++)
360 if ((probe && old[i].func != probe) ||
361 old[i].probe_private != probe_private)
362 entry->single = old[i];
363 entry->refcount = 1;
364 entry->ptype = 0;
365 } else {
366 int j = 0;
367 /* N -> M, (N > 1, M > 1) */
368 /* + 1 for NULL */
909bc43f 369 new = zmalloc((nr_probes - nr_del + 1) * sizeof(struct marker_probe_closure));
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370 if (new == NULL)
371 return ERR_PTR(-ENOMEM);
372 for (i = 0; old[i].func; i++)
373 if ((probe && old[i].func != probe) ||
374 old[i].probe_private != probe_private)
375 new[j++] = old[i];
376 entry->refcount = nr_probes - nr_del;
377 entry->ptype = 1;
378 entry->multi = new;
379 }
380 debug_print_probes(entry);
381 return old;
382}
383
384/*
385 * Get marker if the marker is present in the marker hash table.
386 * Must be called with markers_mutex held.
387 * Returns NULL if not present.
388 */
389static struct marker_entry *get_marker(const char *channel, const char *name)
390{
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391 struct cds_hlist_head *head;
392 struct cds_hlist_node *node;
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393 struct marker_entry *e;
394 size_t channel_len = strlen(channel) + 1;
395 size_t name_len = strlen(name) + 1;
396 u32 hash;
397
398 hash = jhash(channel, channel_len-1, 0) ^ jhash(name, name_len-1, 0);
399 head = &marker_table[hash & ((1 << MARKER_HASH_BITS)-1)];
10c56168 400 cds_hlist_for_each_entry(e, node, head, hlist) {
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401 if (!strcmp(channel, e->channel) && !strcmp(name, e->name))
402 return e;
403 }
404 return NULL;
405}
406
407/*
408 * Add the marker to the marker hash table. Must be called with markers_mutex
409 * held.
410 */
411static struct marker_entry *add_marker(const char *channel, const char *name,
412 const char *format)
413{
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414 struct cds_hlist_head *head;
415 struct cds_hlist_node *node;
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416 struct marker_entry *e;
417 size_t channel_len = strlen(channel) + 1;
418 size_t name_len = strlen(name) + 1;
419 size_t format_len = 0;
420 u32 hash;
421
422 hash = jhash(channel, channel_len-1, 0) ^ jhash(name, name_len-1, 0);
423 if (format)
424 format_len = strlen(format) + 1;
425 head = &marker_table[hash & ((1 << MARKER_HASH_BITS)-1)];
10c56168 426 cds_hlist_for_each_entry(e, node, head, hlist) {
68c1021b 427 if (!strcmp(channel, e->channel) && !strcmp(name, e->name)) {
c1f20530 428 DBG("Marker %s.%s busy", channel, name);
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429 return ERR_PTR(-EBUSY); /* Already there */
430 }
431 }
432 /*
1dba3e6c 433 * Using zmalloc here to allocate a variable length element. Could
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434 * cause some memory fragmentation if overused.
435 */
1dba3e6c 436 e = zmalloc(sizeof(struct marker_entry)
909bc43f 437 + channel_len + name_len + format_len);
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438 if (!e)
439 return ERR_PTR(-ENOMEM);
440 memcpy(e->channel, channel, channel_len);
441 e->name = &e->channel[channel_len];
442 memcpy(e->name, name, name_len);
443 if (format) {
eddb0f66 444 e->format = &e->name[name_len];
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445 memcpy(e->format, format, format_len);
446 if (strcmp(e->format, MARK_NOARGS) == 0)
447 e->call = marker_probe_cb_noarg;
448 else
449 e->call = marker_probe_cb;
450 trace_mark(metadata, core_marker_format,
451 "channel %s name %s format %s",
452 e->channel, e->name, e->format);
453 } else {
454 e->format = NULL;
455 e->call = marker_probe_cb;
456 }
457 e->single.func = __mark_empty_function;
458 e->single.probe_private = NULL;
459 e->multi = NULL;
460 e->ptype = 0;
461 e->format_allocated = 0;
462 e->refcount = 0;
463 e->rcu_pending = 0;
10c56168 464 cds_hlist_add_head(&e->hlist, head);
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465 return e;
466}
467
468/*
469 * Remove the marker from the marker hash table. Must be called with mutex_lock
470 * held.
471 */
472static int remove_marker(const char *channel, const char *name)
473{
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474 struct cds_hlist_head *head;
475 struct cds_hlist_node *node;
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476 struct marker_entry *e;
477 int found = 0;
478 size_t channel_len = strlen(channel) + 1;
479 size_t name_len = strlen(name) + 1;
480 u32 hash;
481 int ret;
482
483 hash = jhash(channel, channel_len-1, 0) ^ jhash(name, name_len-1, 0);
484 head = &marker_table[hash & ((1 << MARKER_HASH_BITS)-1)];
10c56168 485 cds_hlist_for_each_entry(e, node, head, hlist) {
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486 if (!strcmp(channel, e->channel) && !strcmp(name, e->name)) {
487 found = 1;
488 break;
489 }
490 }
491 if (!found)
492 return -ENOENT;
493 if (e->single.func != __mark_empty_function)
494 return -EBUSY;
10c56168 495 cds_hlist_del(&e->hlist);
68c1021b 496 if (e->format_allocated)
909bc43f 497 free(e->format);
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498 ret = ltt_channels_unregister(e->channel);
499 WARN_ON(ret);
500 /* Make sure the call_rcu has been executed */
6cb88bc0 501//ust// if (e->rcu_pending)
0222e121 502//ust// rcu_cmm_barrier_sched();
909bc43f 503 free(e);
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504 return 0;
505}
506
507/*
508 * Set the mark_entry format to the format found in the element.
509 */
510static int marker_set_format(struct marker_entry *entry, const char *format)
511{
909bc43f 512 entry->format = strdup(format);
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513 if (!entry->format)
514 return -ENOMEM;
515 entry->format_allocated = 1;
516
517 trace_mark(metadata, core_marker_format,
518 "channel %s name %s format %s",
519 entry->channel, entry->name, entry->format);
520 return 0;
521}
522
523/*
524 * Sets the probe callback corresponding to one marker.
525 */
526static int set_marker(struct marker_entry *entry, struct marker *elem,
527 int active)
528{
529 int ret = 0;
530 WARN_ON(strcmp(entry->name, elem->name) != 0);
531
532 if (entry->format) {
533 if (strcmp(entry->format, elem->format) != 0) {
5c2b2d70 534 ERR("Format mismatch for probe %s (%s), marker (%s)",
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535 entry->name,
536 entry->format,
537 elem->format);
538 return -EPERM;
539 }
540 } else {
541 ret = marker_set_format(entry, elem->format);
542 if (ret)
543 return ret;
544 }
545
546 /*
547 * probe_cb setup (statically known) is done here. It is
548 * asynchronous with the rest of execution, therefore we only
549 * pass from a "safe" callback (with argument) to an "unsafe"
550 * callback (does not set arguments).
551 */
552 elem->call = entry->call;
553 elem->channel_id = entry->channel_id;
554 elem->event_id = entry->event_id;
555 /*
556 * Sanity check :
557 * We only update the single probe private data when the ptr is
558 * set to a _non_ single probe! (0 -> 1 and N -> 1, N != 1)
559 */
560 WARN_ON(elem->single.func != __mark_empty_function
561 && elem->single.probe_private != entry->single.probe_private
562 && !elem->ptype);
563 elem->single.probe_private = entry->single.probe_private;
564 /*
565 * Make sure the private data is valid when we update the
566 * single probe ptr.
567 */
0222e121 568 cmm_smp_wmb();
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569 elem->single.func = entry->single.func;
570 /*
571 * We also make sure that the new probe callbacks array is consistent
572 * before setting a pointer to it.
573 */
574 rcu_assign_pointer(elem->multi, entry->multi);
575 /*
576 * Update the function or multi probe array pointer before setting the
577 * ptype.
578 */
0222e121 579 cmm_smp_wmb();
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580 elem->ptype = entry->ptype;
581
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582 if (elem->tp_name && (active ^ _imv_read(elem->state))) {
583 WARN_ON(!elem->tp_cb);
584 /*
585 * It is ok to directly call the probe registration because type
586 * checking has been done in the __trace_mark_tp() macro.
587 */
588
589 if (active) {
590 /*
591 * try_module_get should always succeed because we hold
592 * markers_mutex to get the tp_cb address.
593 */
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594//ust// ret = try_module_get(__module_text_address(
595//ust// (unsigned long)elem->tp_cb));
596//ust// BUG_ON(!ret);
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597 ret = tracepoint_probe_register_noupdate(
598 elem->tp_name,
9b9e13aa 599 elem->tp_cb, NULL);
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600 } else {
601 ret = tracepoint_probe_unregister_noupdate(
602 elem->tp_name,
9b9e13aa 603 elem->tp_cb, NULL);
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604 /*
605 * tracepoint_probe_update_all() must be called
606 * before the module containing tp_cb is unloaded.
607 */
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608//ust// module_put(__module_text_address(
609//ust// (unsigned long)elem->tp_cb));
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610 }
611 }
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612 elem->state__imv = active;
613
614 return ret;
615}
616
617/*
618 * Disable a marker and its probe callback.
619 * Note: only waiting an RCU period after setting elem->call to the empty
620 * function insures that the original callback is not used anymore. This insured
621 * by rcu_read_lock_sched around the call site.
622 */
623static void disable_marker(struct marker *elem)
624{
12e81b07
PMF
625 int ret;
626
627 /* leave "call" as is. It is known statically. */
628 if (elem->tp_name && _imv_read(elem->state)) {
629 WARN_ON(!elem->tp_cb);
630 /*
631 * It is ok to directly call the probe registration because type
632 * checking has been done in the __trace_mark_tp() macro.
633 */
634 ret = tracepoint_probe_unregister_noupdate(elem->tp_name,
9b9e13aa 635 elem->tp_cb, NULL);
12e81b07
PMF
636 WARN_ON(ret);
637 /*
638 * tracepoint_probe_update_all() must be called
639 * before the module containing tp_cb is unloaded.
640 */
59b161cd 641//ust// module_put(__module_text_address((unsigned long)elem->tp_cb));
12e81b07 642 }
68c1021b
PMF
643 elem->state__imv = 0;
644 elem->single.func = __mark_empty_function;
645 /* Update the function before setting the ptype */
0222e121 646 cmm_smp_wmb();
68c1021b
PMF
647 elem->ptype = 0; /* single probe */
648 /*
649 * Leave the private data and channel_id/event_id there, because removal
650 * is racy and should be done only after an RCU period. These are never
651 * used until the next initialization anyway.
652 */
653}
654
a5311005
PMF
655/*
656 * is_marker_enabled - Check if a marker is enabled
657 * @channel: channel name
658 * @name: marker name
659 *
660 * Returns 1 if the marker is enabled, 0 if disabled.
661 */
662int is_marker_enabled(const char *channel, const char *name)
663{
664 struct marker_entry *entry;
665
f7b16408 666 pthread_mutex_lock(&markers_mutex);
a5311005 667 entry = get_marker(channel, name);
f7b16408 668 pthread_mutex_unlock(&markers_mutex);
a5311005
PMF
669
670 return entry && !!entry->refcount;
671}
672
68c1021b
PMF
673/**
674 * marker_update_probe_range - Update a probe range
675 * @begin: beginning of the range
676 * @end: end of the range
677 *
678 * Updates the probe callback corresponding to a range of markers.
679 */
eb5d20c6
MD
680void marker_update_probe_range(struct marker * const *begin,
681 struct marker * const *end)
68c1021b 682{
eb5d20c6 683 struct marker * const *iter;
68c1021b
PMF
684 struct marker_entry *mark_entry;
685
f7b16408 686 pthread_mutex_lock(&markers_mutex);
68c1021b 687 for (iter = begin; iter < end; iter++) {
f08ebbe2
MD
688 if (!*iter)
689 continue; /* skip dummy */
eb5d20c6 690 mark_entry = get_marker((*iter)->channel, (*iter)->name);
68c1021b 691 if (mark_entry) {
eb5d20c6 692 set_marker(mark_entry, *iter, !!mark_entry->refcount);
68c1021b
PMF
693 /*
694 * ignore error, continue
695 */
4db647c5
PMF
696
697 /* This is added for UST. We emit a core_marker_id event
698 * for markers that are already registered to a probe
699 * upon library load. Otherwise, no core_marker_id will
700 * be generated for these markers. Is this the right thing
701 * to do?
702 */
703 trace_mark(metadata, core_marker_id,
704 "channel %s name %s event_id %hu "
705 "int #1u%zu long #1u%zu pointer #1u%zu "
706 "size_t #1u%zu alignment #1u%u",
eb5d20c6 707 (*iter)->channel, (*iter)->name, mark_entry->event_id,
4db647c5
PMF
708 sizeof(int), sizeof(long), sizeof(void *),
709 sizeof(size_t), ltt_get_alignment());
68c1021b 710 } else {
eb5d20c6 711 disable_marker(*iter);
68c1021b
PMF
712 }
713 }
f7b16408 714 pthread_mutex_unlock(&markers_mutex);
68c1021b
PMF
715}
716
772030fe
PMF
717static void lib_update_markers(void)
718{
719 struct lib *lib;
720
721 /* FIXME: we should probably take a mutex here on libs */
f7b16408 722//ust// pthread_mutex_lock(&module_mutex);
0222e121 723 cds_list_for_each_entry(lib, &libs, list)
772030fe
PMF
724 marker_update_probe_range(lib->markers_start,
725 lib->markers_start + lib->markers_count);
f7b16408 726//ust// pthread_mutex_unlock(&module_mutex);
772030fe
PMF
727}
728
68c1021b
PMF
729/*
730 * Update probes, removing the faulty probes.
731 *
732 * Internal callback only changed before the first probe is connected to it.
733 * Single probe private data can only be changed on 0 -> 1 and 2 -> 1
734 * transitions. All other transitions will leave the old private data valid.
735 * This makes the non-atomicity of the callback/private data updates valid.
736 *
737 * "special case" updates :
738 * 0 -> 1 callback
739 * 1 -> 0 callback
740 * 1 -> 2 callbacks
741 * 2 -> 1 callbacks
742 * Other updates all behave the same, just like the 2 -> 3 or 3 -> 2 updates.
743 * Site effect : marker_set_format may delete the marker entry (creating a
744 * replacement).
745 */
746static void marker_update_probes(void)
747{
c463904d 748 lib_update_markers();
12e81b07 749 tracepoint_probe_update_all();
68c1021b
PMF
750 /* Update immediate values */
751 core_imv_update();
474d745f 752//ust// module_imv_update(); /* FIXME: need to port for libs? */
68c1021b
PMF
753 marker_update_processes();
754}
755
756/**
757 * marker_probe_register - Connect a probe to a marker
758 * @channel: marker channel
759 * @name: marker name
760 * @format: format string
761 * @probe: probe handler
762 * @probe_private: probe private data
763 *
764 * private data must be a valid allocated memory address, or NULL.
765 * Returns 0 if ok, error value on error.
766 * The probe address must at least be aligned on the architecture pointer size.
767 */
768int marker_probe_register(const char *channel, const char *name,
769 const char *format, marker_probe_func *probe,
770 void *probe_private)
771{
772 struct marker_entry *entry;
773 int ret = 0, ret_err;
774 struct marker_probe_closure *old;
775 int first_probe = 0;
776
f7b16408 777 pthread_mutex_lock(&markers_mutex);
68c1021b
PMF
778 entry = get_marker(channel, name);
779 if (!entry) {
780 first_probe = 1;
781 entry = add_marker(channel, name, format);
782 if (IS_ERR(entry))
783 ret = PTR_ERR(entry);
784 if (ret)
785 goto end;
786 ret = ltt_channels_register(channel);
787 if (ret)
788 goto error_remove_marker;
789 ret = ltt_channels_get_index_from_name(channel);
790 if (ret < 0)
791 goto error_unregister_channel;
792 entry->channel_id = ret;
793 ret = ltt_channels_get_event_id(channel, name);
794 if (ret < 0)
795 goto error_unregister_channel;
796 entry->event_id = ret;
797 ret = 0;
798 trace_mark(metadata, core_marker_id,
799 "channel %s name %s event_id %hu "
800 "int #1u%zu long #1u%zu pointer #1u%zu "
801 "size_t #1u%zu alignment #1u%u",
802 channel, name, entry->event_id,
803 sizeof(int), sizeof(long), sizeof(void *),
804 sizeof(size_t), ltt_get_alignment());
805 } else if (format) {
806 if (!entry->format)
807 ret = marker_set_format(entry, format);
808 else if (strcmp(entry->format, format))
809 ret = -EPERM;
810 if (ret)
811 goto end;
812 }
813
814 /*
815 * If we detect that a call_rcu is pending for this marker,
816 * make sure it's executed now.
817 */
6cb88bc0 818//ust// if (entry->rcu_pending)
0222e121 819//ust// rcu_cmm_barrier_sched();
68c1021b
PMF
820 old = marker_entry_add_probe(entry, probe, probe_private);
821 if (IS_ERR(old)) {
822 ret = PTR_ERR(old);
823 if (first_probe)
824 goto error_unregister_channel;
825 else
826 goto end;
827 }
f7b16408 828 pthread_mutex_unlock(&markers_mutex);
68c1021b 829
79e36890 830 /* Activate marker if necessary */
68c1021b
PMF
831 marker_update_probes();
832
f7b16408 833 pthread_mutex_lock(&markers_mutex);
68c1021b
PMF
834 entry = get_marker(channel, name);
835 if (!entry)
836 goto end;
6cb88bc0 837//ust// if (entry->rcu_pending)
0222e121 838//ust// rcu_cmm_barrier_sched();
68c1021b
PMF
839 entry->oldptr = old;
840 entry->rcu_pending = 1;
841 /* write rcu_pending before calling the RCU callback */
0222e121 842 cmm_smp_wmb();
6cb88bc0
PMF
843//ust// call_rcu_sched(&entry->rcu, free_old_closure);
844 synchronize_rcu(); free_old_closure(&entry->rcu);
68c1021b
PMF
845 goto end;
846
847error_unregister_channel:
848 ret_err = ltt_channels_unregister(channel);
849 WARN_ON(ret_err);
850error_remove_marker:
851 ret_err = remove_marker(channel, name);
852 WARN_ON(ret_err);
853end:
f7b16408 854 pthread_mutex_unlock(&markers_mutex);
68c1021b
PMF
855 return ret;
856}
59b161cd 857//ust// EXPORT_SYMBOL_GPL(marker_probe_register);
68c1021b
PMF
858
859/**
860 * marker_probe_unregister - Disconnect a probe from a marker
861 * @channel: marker channel
862 * @name: marker name
863 * @probe: probe function pointer
864 * @probe_private: probe private data
865 *
866 * Returns the private data given to marker_probe_register, or an ERR_PTR().
867 * We do not need to call a synchronize_sched to make sure the probes have
868 * finished running before doing a module unload, because the module unload
869 * itself uses stop_machine(), which insures that every preempt disabled section
870 * have finished.
871 */
872int marker_probe_unregister(const char *channel, const char *name,
873 marker_probe_func *probe, void *probe_private)
874{
875 struct marker_entry *entry;
876 struct marker_probe_closure *old;
877 int ret = -ENOENT;
878
f7b16408 879 pthread_mutex_lock(&markers_mutex);
68c1021b
PMF
880 entry = get_marker(channel, name);
881 if (!entry)
882 goto end;
6cb88bc0 883//ust// if (entry->rcu_pending)
0222e121 884//ust// rcu_cmm_barrier_sched();
68c1021b 885 old = marker_entry_remove_probe(entry, probe, probe_private);
f7b16408 886 pthread_mutex_unlock(&markers_mutex);
68c1021b
PMF
887
888 marker_update_probes();
889
f7b16408 890 pthread_mutex_lock(&markers_mutex);
68c1021b
PMF
891 entry = get_marker(channel, name);
892 if (!entry)
893 goto end;
6cb88bc0 894//ust// if (entry->rcu_pending)
0222e121 895//ust// rcu_cmm_barrier_sched();
68c1021b
PMF
896 entry->oldptr = old;
897 entry->rcu_pending = 1;
898 /* write rcu_pending before calling the RCU callback */
0222e121 899 cmm_smp_wmb();
6cb88bc0
PMF
900//ust// call_rcu_sched(&entry->rcu, free_old_closure);
901 synchronize_rcu(); free_old_closure(&entry->rcu);
68c1021b
PMF
902 remove_marker(channel, name); /* Ignore busy error message */
903 ret = 0;
904end:
f7b16408 905 pthread_mutex_unlock(&markers_mutex);
68c1021b
PMF
906 return ret;
907}
59b161cd 908//ust// EXPORT_SYMBOL_GPL(marker_probe_unregister);
68c1021b
PMF
909
910static struct marker_entry *
911get_marker_from_private_data(marker_probe_func *probe, void *probe_private)
912{
913 struct marker_entry *entry;
914 unsigned int i;
10c56168
DG
915 struct cds_hlist_head *head;
916 struct cds_hlist_node *node;
68c1021b
PMF
917
918 for (i = 0; i < MARKER_TABLE_SIZE; i++) {
919 head = &marker_table[i];
10c56168 920 cds_hlist_for_each_entry(entry, node, head, hlist) {
68c1021b
PMF
921 if (!entry->ptype) {
922 if (entry->single.func == probe
923 && entry->single.probe_private
924 == probe_private)
925 return entry;
926 } else {
927 struct marker_probe_closure *closure;
928 closure = entry->multi;
929 for (i = 0; closure[i].func; i++) {
930 if (closure[i].func == probe &&
931 closure[i].probe_private
932 == probe_private)
933 return entry;
934 }
935 }
936 }
937 }
938 return NULL;
939}
940
941/**
942 * marker_probe_unregister_private_data - Disconnect a probe from a marker
943 * @probe: probe function
944 * @probe_private: probe private data
945 *
946 * Unregister a probe by providing the registered private data.
947 * Only removes the first marker found in hash table.
948 * Return 0 on success or error value.
949 * We do not need to call a synchronize_sched to make sure the probes have
950 * finished running before doing a module unload, because the module unload
951 * itself uses stop_machine(), which insures that every preempt disabled section
952 * have finished.
953 */
954int marker_probe_unregister_private_data(marker_probe_func *probe,
955 void *probe_private)
956{
957 struct marker_entry *entry;
958 int ret = 0;
959 struct marker_probe_closure *old;
909bc43f 960 char *channel = NULL, *name = NULL;
68c1021b 961
f7b16408 962 pthread_mutex_lock(&markers_mutex);
68c1021b
PMF
963 entry = get_marker_from_private_data(probe, probe_private);
964 if (!entry) {
965 ret = -ENOENT;
966 goto end;
967 }
6cb88bc0 968//ust// if (entry->rcu_pending)
0222e121 969//ust// rcu_cmm_barrier_sched();
68c1021b 970 old = marker_entry_remove_probe(entry, NULL, probe_private);
909bc43f
PMF
971 channel = strdup(entry->channel);
972 name = strdup(entry->name);
f7b16408 973 pthread_mutex_unlock(&markers_mutex);
68c1021b
PMF
974
975 marker_update_probes();
976
f7b16408 977 pthread_mutex_lock(&markers_mutex);
68c1021b
PMF
978 entry = get_marker(channel, name);
979 if (!entry)
980 goto end;
6cb88bc0 981//ust// if (entry->rcu_pending)
0222e121 982//ust// rcu_cmm_barrier_sched();
68c1021b
PMF
983 entry->oldptr = old;
984 entry->rcu_pending = 1;
985 /* write rcu_pending before calling the RCU callback */
0222e121 986 cmm_smp_wmb();
6cb88bc0
PMF
987//ust// call_rcu_sched(&entry->rcu, free_old_closure);
988 synchronize_rcu(); free_old_closure(&entry->rcu);
68c1021b
PMF
989 /* Ignore busy error message */
990 remove_marker(channel, name);
991end:
f7b16408 992 pthread_mutex_unlock(&markers_mutex);
909bc43f
PMF
993 free(channel);
994 free(name);
68c1021b
PMF
995 return ret;
996}
59b161cd 997//ust// EXPORT_SYMBOL_GPL(marker_probe_unregister_private_data);
68c1021b
PMF
998
999/**
1000 * marker_get_private_data - Get a marker's probe private data
1001 * @channel: marker channel
1002 * @name: marker name
1003 * @probe: probe to match
1004 * @num: get the nth matching probe's private data
1005 *
1006 * Returns the nth private data pointer (starting from 0) matching, or an
1007 * ERR_PTR.
1008 * Returns the private data pointer, or an ERR_PTR.
1009 * The private data pointer should _only_ be dereferenced if the caller is the
1010 * owner of the data, or its content could vanish. This is mostly used to
1011 * confirm that a caller is the owner of a registered probe.
1012 */
1013void *marker_get_private_data(const char *channel, const char *name,
1014 marker_probe_func *probe, int num)
1015{
10c56168
DG
1016 struct cds_hlist_head *head;
1017 struct cds_hlist_node *node;
68c1021b
PMF
1018 struct marker_entry *e;
1019 size_t channel_len = strlen(channel) + 1;
1020 size_t name_len = strlen(name) + 1;
1021 int i;
1022 u32 hash;
1023
1024 hash = jhash(channel, channel_len-1, 0) ^ jhash(name, name_len-1, 0);
1025 head = &marker_table[hash & ((1 << MARKER_HASH_BITS)-1)];
10c56168 1026 cds_hlist_for_each_entry(e, node, head, hlist) {
68c1021b
PMF
1027 if (!strcmp(channel, e->channel) && !strcmp(name, e->name)) {
1028 if (!e->ptype) {
1029 if (num == 0 && e->single.func == probe)
1030 return e->single.probe_private;
1031 } else {
1032 struct marker_probe_closure *closure;
1033 int match = 0;
1034 closure = e->multi;
1035 for (i = 0; closure[i].func; i++) {
1036 if (closure[i].func != probe)
1037 continue;
1038 if (match++ == num)
1039 return closure[i].probe_private;
1040 }
1041 }
1042 break;
1043 }
1044 }
1045 return ERR_PTR(-ENOENT);
1046}
59b161cd 1047//ust// EXPORT_SYMBOL_GPL(marker_get_private_data);
68c1021b
PMF
1048
1049/**
1050 * markers_compact_event_ids - Compact markers event IDs and reassign channels
1051 *
1052 * Called when no channel users are active by the channel infrastructure.
1053 * Called with lock_markers() and channel mutex held.
1054 */
59b161cd
PMF
1055//ust// void markers_compact_event_ids(void)
1056//ust// {
1057//ust// struct marker_entry *entry;
1058//ust// unsigned int i;
1059//ust// struct hlist_head *head;
1060//ust// struct hlist_node *node;
1061//ust// int ret;
1062//ust//
1063//ust// for (i = 0; i < MARKER_TABLE_SIZE; i++) {
1064//ust// head = &marker_table[i];
1065//ust// hlist_for_each_entry(entry, node, head, hlist) {
1066//ust// ret = ltt_channels_get_index_from_name(entry->channel);
1067//ust// WARN_ON(ret < 0);
1068//ust// entry->channel_id = ret;
1069//ust// ret = _ltt_channels_get_event_id(entry->channel,
1070//ust// entry->name);
1071//ust// WARN_ON(ret < 0);
1072//ust// entry->event_id = ret;
1073//ust// }
1074//ust// }
1075//ust// }
68c1021b 1076
9c67dc50 1077//ust//#ifdef CONFIG_MODULES
68c1021b 1078
772030fe
PMF
1079/*
1080 * Returns 0 if current not found.
1081 * Returns 1 if current found.
1082 */
1083int lib_get_iter_markers(struct marker_iter *iter)
1084{
1085 struct lib *iter_lib;
1086 int found = 0;
1087
f7b16408 1088//ust// pthread_mutex_lock(&module_mutex);
0222e121 1089 cds_list_for_each_entry(iter_lib, &libs, list) {
772030fe
PMF
1090 if (iter_lib < iter->lib)
1091 continue;
1092 else if (iter_lib > iter->lib)
1093 iter->marker = NULL;
1094 found = marker_get_iter_range(&iter->marker,
1095 iter_lib->markers_start,
1096 iter_lib->markers_start + iter_lib->markers_count);
1097 if (found) {
1098 iter->lib = iter_lib;
1099 break;
1100 }
1101 }
f7b16408 1102//ust// pthread_mutex_unlock(&module_mutex);
772030fe
PMF
1103 return found;
1104}
1105
68c1021b
PMF
1106/**
1107 * marker_get_iter_range - Get a next marker iterator given a range.
1108 * @marker: current markers (in), next marker (out)
1109 * @begin: beginning of the range
1110 * @end: end of the range
1111 *
1112 * Returns whether a next marker has been found (1) or not (0).
1113 * Will return the first marker in the range if the input marker is NULL.
1114 */
eb5d20c6
MD
1115int marker_get_iter_range(struct marker * const **marker,
1116 struct marker * const *begin,
1117 struct marker * const *end)
68c1021b 1118{
f08ebbe2 1119 if (!*marker && begin != end)
68c1021b 1120 *marker = begin;
f08ebbe2
MD
1121 while (*marker >= begin && *marker < end) {
1122 if (!**marker)
1123 (*marker)++; /* skip dummy */
1124 else
1125 return 1;
68c1021b 1126 }
68c1021b
PMF
1127 return 0;
1128}
59b161cd 1129//ust// EXPORT_SYMBOL_GPL(marker_get_iter_range);
68c1021b
PMF
1130
1131static void marker_get_iter(struct marker_iter *iter)
1132{
1133 int found = 0;
1134
98963de4 1135 found = lib_get_iter_markers(iter);
68c1021b
PMF
1136 if (!found)
1137 marker_iter_reset(iter);
1138}
1139
1140void marker_iter_start(struct marker_iter *iter)
1141{
1142 marker_get_iter(iter);
1143}
59b161cd 1144//ust// EXPORT_SYMBOL_GPL(marker_iter_start);
68c1021b
PMF
1145
1146void marker_iter_next(struct marker_iter *iter)
1147{
1148 iter->marker++;
1149 /*
1150 * iter->marker may be invalid because we blindly incremented it.
1151 * Make sure it is valid by marshalling on the markers, getting the
1152 * markers from following modules if necessary.
1153 */
1154 marker_get_iter(iter);
1155}
59b161cd 1156//ust// EXPORT_SYMBOL_GPL(marker_iter_next);
68c1021b
PMF
1157
1158void marker_iter_stop(struct marker_iter *iter)
1159{
1160}
59b161cd 1161//ust// EXPORT_SYMBOL_GPL(marker_iter_stop);
68c1021b
PMF
1162
1163void marker_iter_reset(struct marker_iter *iter)
1164{
98963de4 1165 iter->lib = NULL;
68c1021b
PMF
1166 iter->marker = NULL;
1167}
59b161cd 1168//ust// EXPORT_SYMBOL_GPL(marker_iter_reset);
68c1021b
PMF
1169
1170#ifdef CONFIG_MARKERS_USERSPACE
1171/*
1172 * must be called with current->user_markers_mutex held
1173 */
10c56168 1174static void free_user_marker(char __user *state, struct cds_hlist_head *head)
68c1021b
PMF
1175{
1176 struct user_marker *umark;
10c56168 1177 struct cds_hlist_node *pos, *n;
68c1021b 1178
10c56168 1179 cds_hlist_for_each_entry_safe(umark, pos, n, head, hlist) {
68c1021b 1180 if (umark->state == state) {
10c56168 1181 cds_hlist_del(&umark->hlist);
909bc43f 1182 free(umark);
68c1021b
PMF
1183 }
1184 }
1185}
1186
c1f20530
PMF
1187/*
1188 * Update current process.
1189 * Note that we have to wait a whole scheduler period before we are sure that
1190 * every running userspace threads have their markers updated.
1191 * (synchronize_sched() can be used to insure this).
1192 */
1193//ust// void marker_update_process(void)
59b161cd
PMF
1194//ust// {
1195//ust// struct user_marker *umark;
c1f20530 1196//ust// struct hlist_node *pos;
59b161cd 1197//ust// struct marker_entry *entry;
59b161cd 1198//ust//
f7b16408
PMF
1199//ust// pthread_mutex_lock(&markers_mutex);
1200//ust// pthread_mutex_lock(&current->group_leader->user_markers_mutex);
c1f20530
PMF
1201//ust// if (strcmp(current->comm, "testprog") == 0)
1202//ust// DBG("do update pending for testprog");
1203//ust// hlist_for_each_entry(umark, pos,
1204//ust// &current->group_leader->user_markers, hlist) {
1205//ust// DBG("Updating marker %s in %s", umark->name, current->comm);
59b161cd
PMF
1206//ust// entry = get_marker("userspace", umark->name);
1207//ust// if (entry) {
1208//ust// if (entry->format &&
1209//ust// strcmp(entry->format, umark->format) != 0) {
c1f20530 1210//ust// WARN("error, wrong format in process %s",
59b161cd 1211//ust// current->comm);
c1f20530 1212//ust// break;
59b161cd 1213//ust// }
c1f20530
PMF
1214//ust// if (put_user(!!entry->refcount, umark->state)) {
1215//ust// WARN("Marker in %s caused a fault",
1216//ust// current->comm);
1217//ust// break;
59b161cd 1218//ust// }
59b161cd 1219//ust// } else {
59b161cd 1220//ust// if (put_user(0, umark->state)) {
c1f20530
PMF
1221//ust// WARN("Marker in %s caused a fault", current->comm);
1222//ust// break;
59b161cd
PMF
1223//ust// }
1224//ust// }
59b161cd 1225//ust// }
c1f20530 1226//ust// clear_thread_flag(TIF_MARKER_PENDING);
f7b16408
PMF
1227//ust// pthread_mutex_unlock(&current->group_leader->user_markers_mutex);
1228//ust// pthread_mutex_unlock(&markers_mutex);
59b161cd 1229//ust// }
68c1021b 1230
68c1021b
PMF
1231/*
1232 * Called at process exit and upon do_execve().
1233 * We assume that when the leader exits, no more references can be done to the
1234 * leader structure by the other threads.
1235 */
1236void exit_user_markers(struct task_struct *p)
1237{
1238 struct user_marker *umark;
10c56168 1239 struct cds_hlist_node *pos, *n;
68c1021b
PMF
1240
1241 if (thread_group_leader(p)) {
f7b16408
PMF
1242 pthread_mutex_lock(&markers_mutex);
1243 pthread_mutex_lock(&p->user_markers_mutex);
10c56168 1244 cds_hlist_for_each_entry_safe(umark, pos, n, &p->user_markers,
68c1021b 1245 hlist)
909bc43f 1246 free(umark);
68c1021b
PMF
1247 INIT_HLIST_HEAD(&p->user_markers);
1248 p->user_markers_sequence++;
f7b16408
PMF
1249 pthread_mutex_unlock(&p->user_markers_mutex);
1250 pthread_mutex_unlock(&markers_mutex);
68c1021b
PMF
1251 }
1252}
1253
1254int is_marker_enabled(const char *channel, const char *name)
1255{
1256 struct marker_entry *entry;
1257
f7b16408 1258 pthread_mutex_lock(&markers_mutex);
68c1021b 1259 entry = get_marker(channel, name);
f7b16408 1260 pthread_mutex_unlock(&markers_mutex);
68c1021b
PMF
1261
1262 return entry && !!entry->refcount;
1263}
9c67dc50 1264//ust// #endif
68c1021b
PMF
1265
1266int marker_module_notify(struct notifier_block *self,
1267 unsigned long val, void *data)
1268{
1269 struct module *mod = data;
1270
1271 switch (val) {
1272 case MODULE_STATE_COMING:
1273 marker_update_probe_range(mod->markers,
1274 mod->markers + mod->num_markers);
1275 break;
1276 case MODULE_STATE_GOING:
1277 marker_update_probe_range(mod->markers,
1278 mod->markers + mod->num_markers);
1279 break;
1280 }
1281 return 0;
1282}
1283
1284struct notifier_block marker_module_nb = {
1285 .notifier_call = marker_module_notify,
1286 .priority = 0,
1287};
1288
59b161cd
PMF
1289//ust// static int init_markers(void)
1290//ust// {
1291//ust// return register_module_notifier(&marker_module_nb);
1292//ust// }
1293//ust// __initcall(init_markers);
1294/* TODO: call marker_module_nb() when a library is linked at runtime (dlopen)? */
68c1021b
PMF
1295
1296#endif /* CONFIG_MODULES */
1297
b73a4c47 1298void ltt_dump_marker_state(struct ust_trace *trace)
9c67dc50 1299{
48454c95 1300 struct marker_entry *entry;
9c67dc50 1301 struct ltt_probe_private_data call_data;
10c56168
DG
1302 struct cds_hlist_head *head;
1303 struct cds_hlist_node *node;
48454c95 1304 unsigned int i;
9c67dc50 1305
f7b16408 1306 pthread_mutex_lock(&markers_mutex);
9c67dc50
PMF
1307 call_data.trace = trace;
1308 call_data.serializer = NULL;
1309
48454c95
PMF
1310 for (i = 0; i < MARKER_TABLE_SIZE; i++) {
1311 head = &marker_table[i];
10c56168 1312 cds_hlist_for_each_entry(entry, node, head, hlist) {
48454c95 1313 __trace_mark(0, metadata, core_marker_id,
9c67dc50 1314 &call_data,
48454c95
PMF
1315 "channel %s name %s event_id %hu "
1316 "int #1u%zu long #1u%zu pointer #1u%zu "
1317 "size_t #1u%zu alignment #1u%u",
1318 entry->channel,
1319 entry->name,
1320 entry->event_id,
1321 sizeof(int), sizeof(long),
1322 sizeof(void *), sizeof(size_t),
1323 ltt_get_alignment());
1324 if (entry->format)
1325 __trace_mark(0, metadata,
1326 core_marker_format,
1327 &call_data,
1328 "channel %s name %s format %s",
1329 entry->channel,
1330 entry->name,
1331 entry->format);
1332 }
9c67dc50 1333 }
f7b16408 1334 pthread_mutex_unlock(&markers_mutex);
9c67dc50 1335}
59b161cd 1336//ust// EXPORT_SYMBOL_GPL(ltt_dump_marker_state);
98963de4 1337
20b37a31
PMF
1338static void (*new_marker_cb)(struct marker *) = NULL;
1339
1340void marker_set_new_marker_cb(void (*cb)(struct marker *))
1341{
1342 new_marker_cb = cb;
1343}
1344
eb5d20c6 1345static void new_markers(struct marker * const *start, struct marker * const *end)
20b37a31 1346{
eb5d20c6
MD
1347 if (new_marker_cb) {
1348 struct marker * const *m;
f08ebbe2
MD
1349
1350 for(m = start; m < end; m++) {
1351 if (*m)
1352 new_marker_cb(*m);
20b37a31
PMF
1353 }
1354 }
1355}
1356
eb5d20c6 1357int marker_register_lib(struct marker * const *markers_start, int markers_count)
98963de4 1358{
b467f7a7 1359 struct lib *pl, *iter;
98963de4 1360
1dba3e6c 1361 pl = (struct lib *) zmalloc(sizeof(struct lib));
98963de4
PMF
1362
1363 pl->markers_start = markers_start;
1364 pl->markers_count = markers_count;
1365
0b5207fa
PMF
1366 /* FIXME: maybe protect this with its own mutex? */
1367 lock_markers();
b467f7a7
MD
1368
1369 /*
1370 * We sort the libs by struct lib pointer address.
1371 */
1372 cds_list_for_each_entry_reverse(iter, &libs, list) {
1373 BUG_ON(iter == pl); /* Should never be in the list twice */
1374 if (iter < pl) {
1375 /* We belong to the location right after iter. */
1376 cds_list_add(&pl->list, &iter->list);
1377 goto lib_added;
1378 }
1379 }
1380 /* We should be added at the head of the list */
0222e121 1381 cds_list_add(&pl->list, &libs);
b467f7a7 1382lib_added:
0b5207fa 1383 unlock_markers();
98963de4 1384
20b37a31
PMF
1385 new_markers(markers_start, markers_start + markers_count);
1386
4db647c5
PMF
1387 /* FIXME: update just the loaded lib */
1388 lib_update_markers();
1389
f08ebbe2
MD
1390 /* markers_count - 1: skip dummy */
1391 DBG("just registered a markers section from %p and having %d markers", markers_start, markers_count - 1);
98963de4
PMF
1392
1393 return 0;
1394}
c463904d 1395
eb5d20c6 1396int marker_unregister_lib(struct marker * const *markers_start)
0b5207fa 1397{
24b6668c
PMF
1398 struct lib *lib;
1399
0b5207fa
PMF
1400 /*FIXME: implement; but before implementing, marker_register_lib must
1401 have appropriate locking. */
1402
24b6668c
PMF
1403 lock_markers();
1404
1405 /* FIXME: we should probably take a mutex here on libs */
f7b16408 1406//ust// pthread_mutex_lock(&module_mutex);
0222e121 1407 cds_list_for_each_entry(lib, &libs, list) {
24b6668c
PMF
1408 if(lib->markers_start == markers_start) {
1409 struct lib *lib2free = lib;
0222e121 1410 cds_list_del(&lib->list);
24b6668c
PMF
1411 free(lib2free);
1412 break;
1413 }
1414 }
1415
1416 unlock_markers();
1417
0b5207fa
PMF
1418 return 0;
1419}
1420
4db647c5
PMF
1421static int initialized = 0;
1422
1423void __attribute__((constructor)) init_markers(void)
c463904d 1424{
900e307e
MD
1425 if (!initialized) {
1426 marker_register_lib(__start___markers_ptrs,
1427 __stop___markers_ptrs
1428 - __start___markers_ptrs);
4db647c5
PMF
1429 initialized = 1;
1430 }
c463904d 1431}
24b6668c 1432
34d3c2d4 1433void __attribute__((destructor)) destroy_markers(void)
24b6668c 1434{
900e307e 1435 marker_unregister_lib(__start___markers_ptrs);
24b6668c 1436}
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