1 // SPDX-License-Identifier: GPL-2.0-only 1 // SPDX-License-Identifier: GPL-2.0-only 2 /* 2 /* 3 * Detect Hung Task 3 * Detect Hung Task 4 * 4 * 5 * kernel/hung_task.c - kernel thread for dete 5 * kernel/hung_task.c - kernel thread for detecting tasks stuck in D state 6 * 6 * 7 */ 7 */ 8 8 9 #include <linux/mm.h> 9 #include <linux/mm.h> 10 #include <linux/cpu.h> 10 #include <linux/cpu.h> 11 #include <linux/nmi.h> 11 #include <linux/nmi.h> 12 #include <linux/init.h> 12 #include <linux/init.h> 13 #include <linux/delay.h> 13 #include <linux/delay.h> 14 #include <linux/freezer.h> 14 #include <linux/freezer.h> 15 #include <linux/kthread.h> 15 #include <linux/kthread.h> 16 #include <linux/lockdep.h> 16 #include <linux/lockdep.h> 17 #include <linux/export.h> 17 #include <linux/export.h> 18 #include <linux/panic_notifier.h> << 19 #include <linux/sysctl.h> 18 #include <linux/sysctl.h> 20 #include <linux/suspend.h> 19 #include <linux/suspend.h> 21 #include <linux/utsname.h> 20 #include <linux/utsname.h> 22 #include <linux/sched/signal.h> 21 #include <linux/sched/signal.h> 23 #include <linux/sched/debug.h> 22 #include <linux/sched/debug.h> 24 #include <linux/sched/sysctl.h> 23 #include <linux/sched/sysctl.h> 25 24 26 #include <trace/events/sched.h> 25 #include <trace/events/sched.h> 27 26 28 /* 27 /* 29 * The number of tasks checked: 28 * The number of tasks checked: 30 */ 29 */ 31 static int __read_mostly sysctl_hung_task_chec !! 30 int __read_mostly sysctl_hung_task_check_count = PID_MAX_LIMIT; 32 31 33 /* 32 /* 34 * Limit number of tasks checked in a batch. 33 * Limit number of tasks checked in a batch. 35 * 34 * 36 * This value controls the preemptibility of k 35 * This value controls the preemptibility of khungtaskd since preemption 37 * is disabled during the critical section. It 36 * is disabled during the critical section. It also controls the size of 38 * the RCU grace period. So it needs to be upp 37 * the RCU grace period. So it needs to be upper-bound. 39 */ 38 */ 40 #define HUNG_TASK_LOCK_BREAK (HZ / 10) 39 #define HUNG_TASK_LOCK_BREAK (HZ / 10) 41 40 42 /* 41 /* 43 * Zero means infinite timeout - no checking d 42 * Zero means infinite timeout - no checking done: 44 */ 43 */ 45 unsigned long __read_mostly sysctl_hung_task_t 44 unsigned long __read_mostly sysctl_hung_task_timeout_secs = CONFIG_DEFAULT_HUNG_TASK_TIMEOUT; 46 EXPORT_SYMBOL_GPL(sysctl_hung_task_timeout_sec << 47 45 48 /* 46 /* 49 * Zero (default value) means use sysctl_hung_ 47 * Zero (default value) means use sysctl_hung_task_timeout_secs: 50 */ 48 */ 51 static unsigned long __read_mostly sysctl_hung !! 49 unsigned long __read_mostly sysctl_hung_task_check_interval_secs; 52 50 53 static int __read_mostly sysctl_hung_task_warn !! 51 int __read_mostly sysctl_hung_task_warnings = 10; 54 52 55 static int __read_mostly did_panic; 53 static int __read_mostly did_panic; 56 static bool hung_task_show_lock; 54 static bool hung_task_show_lock; 57 static bool hung_task_call_panic; 55 static bool hung_task_call_panic; 58 static bool hung_task_show_all_bt; 56 static bool hung_task_show_all_bt; 59 57 60 static struct task_struct *watchdog_task; 58 static struct task_struct *watchdog_task; 61 59 62 #ifdef CONFIG_SMP 60 #ifdef CONFIG_SMP 63 /* 61 /* 64 * Should we dump all CPUs backtraces in a hun 62 * Should we dump all CPUs backtraces in a hung task event? 65 * Defaults to 0, can be changed via sysctl. 63 * Defaults to 0, can be changed via sysctl. 66 */ 64 */ 67 static unsigned int __read_mostly sysctl_hung_ !! 65 unsigned int __read_mostly sysctl_hung_task_all_cpu_backtrace; 68 #else << 69 #define sysctl_hung_task_all_cpu_backtrace 0 << 70 #endif /* CONFIG_SMP */ 66 #endif /* CONFIG_SMP */ 71 67 72 /* 68 /* 73 * Should we panic (and reboot, if panic_timeo 69 * Should we panic (and reboot, if panic_timeout= is set) when a 74 * hung task is detected: 70 * hung task is detected: 75 */ 71 */ 76 static unsigned int __read_mostly sysctl_hung_ !! 72 unsigned int __read_mostly sysctl_hung_task_panic = 77 IS_ENABLED(CONFIG_BOOTPARAM_HUNG_TASK_ !! 73 CONFIG_BOOTPARAM_HUNG_TASK_PANIC_VALUE; 78 74 79 static int 75 static int 80 hung_task_panic(struct notifier_block *this, u 76 hung_task_panic(struct notifier_block *this, unsigned long event, void *ptr) 81 { 77 { 82 did_panic = 1; 78 did_panic = 1; 83 79 84 return NOTIFY_DONE; 80 return NOTIFY_DONE; 85 } 81 } 86 82 87 static struct notifier_block panic_block = { 83 static struct notifier_block panic_block = { 88 .notifier_call = hung_task_panic, 84 .notifier_call = hung_task_panic, 89 }; 85 }; 90 86 91 static void check_hung_task(struct task_struct 87 static void check_hung_task(struct task_struct *t, unsigned long timeout) 92 { 88 { 93 unsigned long switch_count = t->nvcsw 89 unsigned long switch_count = t->nvcsw + t->nivcsw; 94 90 95 /* 91 /* 96 * Ensure the task is not frozen. 92 * Ensure the task is not frozen. 97 * Also, skip vfork and any other user 93 * Also, skip vfork and any other user process that freezer should skip. 98 */ 94 */ 99 if (unlikely(READ_ONCE(t->__state) & T !! 95 if (unlikely(t->flags & (PF_FROZEN | PF_FREEZER_SKIP))) 100 return; !! 96 return; 101 97 102 /* 98 /* 103 * When a freshly created task is sche 99 * When a freshly created task is scheduled once, changes its state to 104 * TASK_UNINTERRUPTIBLE without having 100 * TASK_UNINTERRUPTIBLE without having ever been switched out once, it 105 * musn't be checked. 101 * musn't be checked. 106 */ 102 */ 107 if (unlikely(!switch_count)) 103 if (unlikely(!switch_count)) 108 return; 104 return; 109 105 110 if (switch_count != t->last_switch_cou 106 if (switch_count != t->last_switch_count) { 111 t->last_switch_count = switch_ 107 t->last_switch_count = switch_count; 112 t->last_switch_time = jiffies; 108 t->last_switch_time = jiffies; 113 return; 109 return; 114 } 110 } 115 if (time_is_after_jiffies(t->last_swit 111 if (time_is_after_jiffies(t->last_switch_time + timeout * HZ)) 116 return; 112 return; 117 113 118 trace_sched_process_hang(t); 114 trace_sched_process_hang(t); 119 115 120 if (sysctl_hung_task_panic) { 116 if (sysctl_hung_task_panic) { 121 console_verbose(); 117 console_verbose(); 122 hung_task_show_lock = true; 118 hung_task_show_lock = true; 123 hung_task_call_panic = true; 119 hung_task_call_panic = true; 124 } 120 } 125 121 126 /* 122 /* 127 * Ok, the task did not get scheduled 123 * Ok, the task did not get scheduled for more than 2 minutes, 128 * complain: 124 * complain: 129 */ 125 */ 130 if (sysctl_hung_task_warnings || hung_ !! 126 if (sysctl_hung_task_warnings) { 131 if (sysctl_hung_task_warnings 127 if (sysctl_hung_task_warnings > 0) 132 sysctl_hung_task_warni 128 sysctl_hung_task_warnings--; 133 pr_err("INFO: task %s:%d block 129 pr_err("INFO: task %s:%d blocked for more than %ld seconds.\n", 134 t->comm, t->pid, (jiffi 130 t->comm, t->pid, (jiffies - t->last_switch_time) / HZ); 135 pr_err(" %s %s %.*s\n", 131 pr_err(" %s %s %.*s\n", 136 print_tainted(), init_ 132 print_tainted(), init_utsname()->release, 137 (int)strcspn(init_utsn 133 (int)strcspn(init_utsname()->version, " "), 138 init_utsname()->versio 134 init_utsname()->version); 139 pr_err("\"echo 0 > /proc/sys/k 135 pr_err("\"echo 0 > /proc/sys/kernel/hung_task_timeout_secs\"" 140 " disables this messag 136 " disables this message.\n"); 141 sched_show_task(t); 137 sched_show_task(t); 142 hung_task_show_lock = true; 138 hung_task_show_lock = true; 143 139 144 if (sysctl_hung_task_all_cpu_b 140 if (sysctl_hung_task_all_cpu_backtrace) 145 hung_task_show_all_bt 141 hung_task_show_all_bt = true; 146 if (!sysctl_hung_task_warnings << 147 pr_info("Future hung t << 148 } 142 } 149 143 150 touch_nmi_watchdog(); 144 touch_nmi_watchdog(); 151 } 145 } 152 146 153 /* 147 /* 154 * To avoid extending the RCU grace period for 148 * To avoid extending the RCU grace period for an unbounded amount of time, 155 * periodically exit the critical section and 149 * periodically exit the critical section and enter a new one. 156 * 150 * 157 * For preemptible RCU it is sufficient to cal 151 * For preemptible RCU it is sufficient to call rcu_read_unlock in order 158 * to exit the grace period. For classic RCU, 152 * to exit the grace period. For classic RCU, a reschedule is required. 159 */ 153 */ 160 static bool rcu_lock_break(struct task_struct 154 static bool rcu_lock_break(struct task_struct *g, struct task_struct *t) 161 { 155 { 162 bool can_cont; 156 bool can_cont; 163 157 164 get_task_struct(g); 158 get_task_struct(g); 165 get_task_struct(t); 159 get_task_struct(t); 166 rcu_read_unlock(); 160 rcu_read_unlock(); 167 cond_resched(); 161 cond_resched(); 168 rcu_read_lock(); 162 rcu_read_lock(); 169 can_cont = pid_alive(g) && pid_alive(t 163 can_cont = pid_alive(g) && pid_alive(t); 170 put_task_struct(t); 164 put_task_struct(t); 171 put_task_struct(g); 165 put_task_struct(g); 172 166 173 return can_cont; 167 return can_cont; 174 } 168 } 175 169 176 /* 170 /* 177 * Check whether a TASK_UNINTERRUPTIBLE does n 171 * Check whether a TASK_UNINTERRUPTIBLE does not get woken up for 178 * a really long time (120 seconds). If that h 172 * a really long time (120 seconds). If that happens, print out 179 * a warning. 173 * a warning. 180 */ 174 */ 181 static void check_hung_uninterruptible_tasks(u 175 static void check_hung_uninterruptible_tasks(unsigned long timeout) 182 { 176 { 183 int max_count = sysctl_hung_task_check 177 int max_count = sysctl_hung_task_check_count; 184 unsigned long last_break = jiffies; 178 unsigned long last_break = jiffies; 185 struct task_struct *g, *t; 179 struct task_struct *g, *t; 186 180 187 /* 181 /* 188 * If the system crashed already then 182 * If the system crashed already then all bets are off, 189 * do not report extra hung tasks: 183 * do not report extra hung tasks: 190 */ 184 */ 191 if (test_taint(TAINT_DIE) || did_panic 185 if (test_taint(TAINT_DIE) || did_panic) 192 return; 186 return; 193 187 194 hung_task_show_lock = false; 188 hung_task_show_lock = false; 195 rcu_read_lock(); 189 rcu_read_lock(); 196 for_each_process_thread(g, t) { 190 for_each_process_thread(g, t) { 197 unsigned int state; << 198 << 199 if (!max_count--) 191 if (!max_count--) 200 goto unlock; 192 goto unlock; 201 if (time_after(jiffies, last_b 193 if (time_after(jiffies, last_break + HUNG_TASK_LOCK_BREAK)) { 202 if (!rcu_lock_break(g, 194 if (!rcu_lock_break(g, t)) 203 goto unlock; 195 goto unlock; 204 last_break = jiffies; 196 last_break = jiffies; 205 } 197 } 206 /* !! 198 /* use "==" to skip the TASK_KILLABLE tasks waiting on NFS */ 207 * skip the TASK_KILLABLE task !! 199 if (t->state == TASK_UNINTERRUPTIBLE) 208 * skip the TASK_IDLE tasks -- << 209 */ << 210 state = READ_ONCE(t->__state); << 211 if ((state & TASK_UNINTERRUPTI << 212 !(state & TASK_WAKEKILL) & << 213 !(state & TASK_NOLOAD)) << 214 check_hung_task(t, tim 200 check_hung_task(t, timeout); 215 } 201 } 216 unlock: 202 unlock: 217 rcu_read_unlock(); 203 rcu_read_unlock(); 218 if (hung_task_show_lock) 204 if (hung_task_show_lock) 219 debug_show_all_locks(); 205 debug_show_all_locks(); 220 206 221 if (hung_task_show_all_bt) { 207 if (hung_task_show_all_bt) { 222 hung_task_show_all_bt = false; 208 hung_task_show_all_bt = false; 223 trigger_all_cpu_backtrace(); 209 trigger_all_cpu_backtrace(); 224 } 210 } 225 211 226 if (hung_task_call_panic) 212 if (hung_task_call_panic) 227 panic("hung_task: blocked task 213 panic("hung_task: blocked tasks"); 228 } 214 } 229 215 230 static long hung_timeout_jiffies(unsigned long 216 static long hung_timeout_jiffies(unsigned long last_checked, 231 unsigned long 217 unsigned long timeout) 232 { 218 { 233 /* timeout of 0 will disable the watch 219 /* timeout of 0 will disable the watchdog */ 234 return timeout ? last_checked - jiffie 220 return timeout ? last_checked - jiffies + timeout * HZ : 235 MAX_SCHEDULE_TIMEOUT; 221 MAX_SCHEDULE_TIMEOUT; 236 } 222 } 237 223 238 #ifdef CONFIG_SYSCTL << 239 /* 224 /* 240 * Process updating of timeout sysctl 225 * Process updating of timeout sysctl 241 */ 226 */ 242 static int proc_dohung_task_timeout_secs(const !! 227 int proc_dohung_task_timeout_secs(struct ctl_table *table, int write, 243 void *buffer !! 228 void *buffer, size_t *lenp, loff_t *ppos) 244 size_t *lenp << 245 { 229 { 246 int ret; 230 int ret; 247 231 248 ret = proc_doulongvec_minmax(table, wr 232 ret = proc_doulongvec_minmax(table, write, buffer, lenp, ppos); 249 233 250 if (ret || !write) 234 if (ret || !write) 251 goto out; 235 goto out; 252 236 253 wake_up_process(watchdog_task); 237 wake_up_process(watchdog_task); 254 238 255 out: 239 out: 256 return ret; 240 return ret; 257 } 241 } 258 242 259 /* << 260 * This is needed for proc_doulongvec_minmax o << 261 * and hung_task_check_interval_secs << 262 */ << 263 static const unsigned long hung_task_timeout_m << 264 static struct ctl_table hung_task_sysctls[] = << 265 #ifdef CONFIG_SMP << 266 { << 267 .procname = "hung_task_a << 268 .data = &sysctl_hung << 269 .maxlen = sizeof(int), << 270 .mode = 0644, << 271 .proc_handler = proc_dointve << 272 .extra1 = SYSCTL_ZERO, << 273 .extra2 = SYSCTL_ONE, << 274 }, << 275 #endif /* CONFIG_SMP */ << 276 { << 277 .procname = "hung_task_p << 278 .data = &sysctl_hung << 279 .maxlen = sizeof(int), << 280 .mode = 0644, << 281 .proc_handler = proc_dointve << 282 .extra1 = SYSCTL_ZERO, << 283 .extra2 = SYSCTL_ONE, << 284 }, << 285 { << 286 .procname = "hung_task_c << 287 .data = &sysctl_hung << 288 .maxlen = sizeof(int), << 289 .mode = 0644, << 290 .proc_handler = proc_dointve << 291 .extra1 = SYSCTL_ZERO, << 292 }, << 293 { << 294 .procname = "hung_task_t << 295 .data = &sysctl_hung << 296 .maxlen = sizeof(unsig << 297 .mode = 0644, << 298 .proc_handler = proc_dohung_ << 299 .extra2 = (void *)&hun << 300 }, << 301 { << 302 .procname = "hung_task_c << 303 .data = &sysctl_hung << 304 .maxlen = sizeof(unsig << 305 .mode = 0644, << 306 .proc_handler = proc_dohung_ << 307 .extra2 = (void *)&hun << 308 }, << 309 { << 310 .procname = "hung_task_w << 311 .data = &sysctl_hung << 312 .maxlen = sizeof(int), << 313 .mode = 0644, << 314 .proc_handler = proc_dointve << 315 .extra1 = SYSCTL_NEG_O << 316 }, << 317 }; << 318 << 319 static void __init hung_task_sysctl_init(void) << 320 { << 321 register_sysctl_init("kernel", hung_ta << 322 } << 323 #else << 324 #define hung_task_sysctl_init() do { } while ( << 325 #endif /* CONFIG_SYSCTL */ << 326 << 327 << 328 static atomic_t reset_hung_task = ATOMIC_INIT( 243 static atomic_t reset_hung_task = ATOMIC_INIT(0); 329 244 330 void reset_hung_task_detector(void) 245 void reset_hung_task_detector(void) 331 { 246 { 332 atomic_set(&reset_hung_task, 1); 247 atomic_set(&reset_hung_task, 1); 333 } 248 } 334 EXPORT_SYMBOL_GPL(reset_hung_task_detector); 249 EXPORT_SYMBOL_GPL(reset_hung_task_detector); 335 250 336 static bool hung_detector_suspended; 251 static bool hung_detector_suspended; 337 252 338 static int hungtask_pm_notify(struct notifier_ 253 static int hungtask_pm_notify(struct notifier_block *self, 339 unsigned long ac 254 unsigned long action, void *hcpu) 340 { 255 { 341 switch (action) { 256 switch (action) { 342 case PM_SUSPEND_PREPARE: 257 case PM_SUSPEND_PREPARE: 343 case PM_HIBERNATION_PREPARE: 258 case PM_HIBERNATION_PREPARE: 344 case PM_RESTORE_PREPARE: 259 case PM_RESTORE_PREPARE: 345 hung_detector_suspended = true 260 hung_detector_suspended = true; 346 break; 261 break; 347 case PM_POST_SUSPEND: 262 case PM_POST_SUSPEND: 348 case PM_POST_HIBERNATION: 263 case PM_POST_HIBERNATION: 349 case PM_POST_RESTORE: 264 case PM_POST_RESTORE: 350 hung_detector_suspended = fals 265 hung_detector_suspended = false; 351 break; 266 break; 352 default: 267 default: 353 break; 268 break; 354 } 269 } 355 return NOTIFY_OK; 270 return NOTIFY_OK; 356 } 271 } 357 272 358 /* 273 /* 359 * kthread which checks for tasks stuck in D s 274 * kthread which checks for tasks stuck in D state 360 */ 275 */ 361 static int watchdog(void *dummy) 276 static int watchdog(void *dummy) 362 { 277 { 363 unsigned long hung_last_checked = jiff 278 unsigned long hung_last_checked = jiffies; 364 279 365 set_user_nice(current, 0); 280 set_user_nice(current, 0); 366 281 367 for ( ; ; ) { 282 for ( ; ; ) { 368 unsigned long timeout = sysctl 283 unsigned long timeout = sysctl_hung_task_timeout_secs; 369 unsigned long interval = sysct 284 unsigned long interval = sysctl_hung_task_check_interval_secs; 370 long t; 285 long t; 371 286 372 if (interval == 0) 287 if (interval == 0) 373 interval = timeout; 288 interval = timeout; 374 interval = min_t(unsigned long 289 interval = min_t(unsigned long, interval, timeout); 375 t = hung_timeout_jiffies(hung_ 290 t = hung_timeout_jiffies(hung_last_checked, interval); 376 if (t <= 0) { 291 if (t <= 0) { 377 if (!atomic_xchg(&rese 292 if (!atomic_xchg(&reset_hung_task, 0) && 378 !hung_detector_sus 293 !hung_detector_suspended) 379 check_hung_uni 294 check_hung_uninterruptible_tasks(timeout); 380 hung_last_checked = ji 295 hung_last_checked = jiffies; 381 continue; 296 continue; 382 } 297 } 383 schedule_timeout_interruptible 298 schedule_timeout_interruptible(t); 384 } 299 } 385 300 386 return 0; 301 return 0; 387 } 302 } 388 303 389 static int __init hung_task_init(void) 304 static int __init hung_task_init(void) 390 { 305 { 391 atomic_notifier_chain_register(&panic_ 306 atomic_notifier_chain_register(&panic_notifier_list, &panic_block); 392 307 393 /* Disable hung task detector on suspe 308 /* Disable hung task detector on suspend */ 394 pm_notifier(hungtask_pm_notify, 0); 309 pm_notifier(hungtask_pm_notify, 0); 395 310 396 watchdog_task = kthread_run(watchdog, 311 watchdog_task = kthread_run(watchdog, NULL, "khungtaskd"); 397 hung_task_sysctl_init(); << 398 312 399 return 0; 313 return 0; 400 } 314 } 401 subsys_initcall(hung_task_init); 315 subsys_initcall(hung_task_init); 402 316
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