1 // SPDX-License-Identifier: GPL-2.0
7 #include <linux/kernel.h>
10 #include "thread-stack.h"
13 #include "namespaces.h"
17 #include <api/fs/fs.h>
19 int thread__init_map_groups(struct thread *thread, struct machine *machine)
21 pid_t pid = thread->pid_;
23 if (pid == thread->tid || pid == -1) {
24 thread->mg = map_groups__new(machine);
26 struct thread *leader = __machine__findnew_thread(machine, pid, pid);
28 thread->mg = map_groups__get(leader->mg);
33 return thread->mg ? 0 : -1;
36 struct thread *thread__new(pid_t pid, pid_t tid)
40 struct thread *thread = zalloc(sizeof(*thread));
47 INIT_LIST_HEAD(&thread->namespaces_list);
48 INIT_LIST_HEAD(&thread->comm_list);
49 init_rwsem(&thread->namespaces_lock);
50 init_rwsem(&thread->comm_lock);
52 comm_str = malloc(32);
56 snprintf(comm_str, 32, ":%d", tid);
57 comm = comm__new(comm_str, 0, false);
62 list_add(&comm->list, &thread->comm_list);
63 refcount_set(&thread->refcnt, 1);
64 RB_CLEAR_NODE(&thread->rb_node);
65 /* Thread holds first ref to nsdata. */
66 thread->nsinfo = nsinfo__new(pid);
76 void thread__delete(struct thread *thread)
78 struct namespaces *namespaces, *tmp_namespaces;
79 struct comm *comm, *tmp_comm;
81 BUG_ON(!RB_EMPTY_NODE(&thread->rb_node));
83 thread_stack__free(thread);
86 map_groups__put(thread->mg);
89 down_write(&thread->namespaces_lock);
90 list_for_each_entry_safe(namespaces, tmp_namespaces,
91 &thread->namespaces_list, list) {
92 list_del(&namespaces->list);
93 namespaces__free(namespaces);
95 up_write(&thread->namespaces_lock);
97 down_write(&thread->comm_lock);
98 list_for_each_entry_safe(comm, tmp_comm, &thread->comm_list, list) {
99 list_del(&comm->list);
102 up_write(&thread->comm_lock);
104 unwind__finish_access(thread);
105 nsinfo__zput(thread->nsinfo);
107 exit_rwsem(&thread->namespaces_lock);
108 exit_rwsem(&thread->comm_lock);
112 struct thread *thread__get(struct thread *thread)
115 refcount_inc(&thread->refcnt);
119 void thread__put(struct thread *thread)
121 if (thread && refcount_dec_and_test(&thread->refcnt)) {
123 * Remove it from the dead_threads list, as last reference
126 list_del_init(&thread->node);
127 thread__delete(thread);
131 static struct namespaces *__thread__namespaces(const struct thread *thread)
133 if (list_empty(&thread->namespaces_list))
136 return list_first_entry(&thread->namespaces_list, struct namespaces, list);
139 struct namespaces *thread__namespaces(const struct thread *thread)
141 struct namespaces *ns;
143 down_read((struct rw_semaphore *)&thread->namespaces_lock);
144 ns = __thread__namespaces(thread);
145 up_read((struct rw_semaphore *)&thread->namespaces_lock);
150 static int __thread__set_namespaces(struct thread *thread, u64 timestamp,
151 struct namespaces_event *event)
153 struct namespaces *new, *curr = __thread__namespaces(thread);
155 new = namespaces__new(event);
159 list_add(&new->list, &thread->namespaces_list);
161 if (timestamp && curr) {
163 * setns syscall must have changed few or all the namespaces
164 * of this thread. Update end time for the namespaces
167 curr = list_next_entry(new, list);
168 curr->end_time = timestamp;
174 int thread__set_namespaces(struct thread *thread, u64 timestamp,
175 struct namespaces_event *event)
179 down_write(&thread->namespaces_lock);
180 ret = __thread__set_namespaces(thread, timestamp, event);
181 up_write(&thread->namespaces_lock);
185 struct comm *thread__comm(const struct thread *thread)
187 if (list_empty(&thread->comm_list))
190 return list_first_entry(&thread->comm_list, struct comm, list);
193 struct comm *thread__exec_comm(const struct thread *thread)
195 struct comm *comm, *last = NULL, *second_last = NULL;
197 list_for_each_entry(comm, &thread->comm_list, list) {
205 * 'last' with no start time might be the parent's comm of a synthesized
206 * thread (created by processing a synthesized fork event). For a main
207 * thread, that is very probably wrong. Prefer a later comm to avoid
210 if (second_last && !last->start && thread->pid_ == thread->tid)
216 static int ____thread__set_comm(struct thread *thread, const char *str,
217 u64 timestamp, bool exec)
219 struct comm *new, *curr = thread__comm(thread);
221 /* Override the default :tid entry */
222 if (!thread->comm_set) {
223 int err = comm__override(curr, str, timestamp, exec);
227 new = comm__new(str, timestamp, exec);
230 list_add(&new->list, &thread->comm_list);
233 unwind__flush_access(thread);
236 thread->comm_set = true;
241 int __thread__set_comm(struct thread *thread, const char *str, u64 timestamp,
246 down_write(&thread->comm_lock);
247 ret = ____thread__set_comm(thread, str, timestamp, exec);
248 up_write(&thread->comm_lock);
252 int thread__set_comm_from_proc(struct thread *thread)
259 if (!(snprintf(path, sizeof(path), "%d/task/%d/comm",
260 thread->pid_, thread->tid) >= (int)sizeof(path)) &&
261 procfs__read_str(path, &comm, &sz) == 0) {
263 err = thread__set_comm(thread, comm, 0);
269 static const char *__thread__comm_str(const struct thread *thread)
271 const struct comm *comm = thread__comm(thread);
276 return comm__str(comm);
279 const char *thread__comm_str(const struct thread *thread)
283 down_read((struct rw_semaphore *)&thread->comm_lock);
284 str = __thread__comm_str(thread);
285 up_read((struct rw_semaphore *)&thread->comm_lock);
290 /* CHECKME: it should probably better return the max comm len from its comm list */
291 int thread__comm_len(struct thread *thread)
293 if (!thread->comm_len) {
294 const char *comm = thread__comm_str(thread);
297 thread->comm_len = strlen(comm);
300 return thread->comm_len;
303 size_t thread__fprintf(struct thread *thread, FILE *fp)
305 return fprintf(fp, "Thread %d %s\n", thread->tid, thread__comm_str(thread)) +
306 map_groups__fprintf(thread->mg, fp);
309 int thread__insert_map(struct thread *thread, struct map *map)
313 ret = unwind__prepare_access(thread, map, NULL);
317 map_groups__fixup_overlappings(thread->mg, map, stderr);
318 map_groups__insert(thread->mg, map);
323 static int __thread__prepare_access(struct thread *thread)
325 bool initialized = false;
327 struct maps *maps = &thread->mg->maps;
330 down_read(&maps->lock);
332 for (map = maps__first(maps); map; map = map__next(map)) {
333 err = unwind__prepare_access(thread, map, &initialized);
334 if (err || initialized)
338 up_read(&maps->lock);
343 static int thread__prepare_access(struct thread *thread)
347 if (symbol_conf.use_callchain)
348 err = __thread__prepare_access(thread);
353 static int thread__clone_map_groups(struct thread *thread,
354 struct thread *parent)
356 /* This is new thread, we share map groups for process. */
357 if (thread->pid_ == parent->pid_)
358 return thread__prepare_access(thread);
360 if (thread->mg == parent->mg) {
361 pr_debug("broken map groups on thread %d/%d parent %d/%d\n",
362 thread->pid_, thread->tid, parent->pid_, parent->tid);
366 /* But this one is new process, copy maps. */
367 if (map_groups__clone(thread, parent->mg) < 0)
373 int thread__fork(struct thread *thread, struct thread *parent, u64 timestamp)
375 if (parent->comm_set) {
376 const char *comm = thread__comm_str(parent);
380 err = thread__set_comm(thread, comm, timestamp);
385 thread->ppid = parent->tid;
386 return thread__clone_map_groups(thread, parent);
389 void thread__find_cpumode_addr_location(struct thread *thread, u64 addr,
390 struct addr_location *al)
393 const u8 cpumodes[] = {
394 PERF_RECORD_MISC_USER,
395 PERF_RECORD_MISC_KERNEL,
396 PERF_RECORD_MISC_GUEST_USER,
397 PERF_RECORD_MISC_GUEST_KERNEL
400 for (i = 0; i < ARRAY_SIZE(cpumodes); i++) {
401 thread__find_symbol(thread, cpumodes[i], addr, al);
407 struct thread *thread__main_thread(struct machine *machine, struct thread *thread)
409 if (thread->pid_ == thread->tid)
410 return thread__get(thread);
412 if (thread->pid_ == -1)
415 return machine__find_thread(machine, thread->pid_, thread->pid_);