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1 #define _GNU_SOURCE
2 #include "pthread_impl.h"
3 #include "stdio_impl.h"
4 #include "libc.h"
5 #include "lock.h"
6 #include <sys/mman.h>
7 #include <string.h>
8 #include <stddef.h>
9 
dummy_0()10 static void dummy_0()
11 {
12 }
13 weak_alias(dummy_0, __acquire_ptc);
14 weak_alias(dummy_0, __release_ptc);
15 weak_alias(dummy_0, __pthread_tsd_run_dtors);
16 weak_alias(dummy_0, __do_orphaned_stdio_locks);
17 weak_alias(dummy_0, __dl_thread_cleanup);
18 weak_alias(dummy_0, __membarrier_init);
19 
20 static int tl_lock_count;
21 static int tl_lock_waiters;
22 
__tl_lock(void)23 void __tl_lock(void)
24 {
25 	int tid = __pthread_self()->tid;
26 	int val = __thread_list_lock;
27 	if (val == tid) {
28 		tl_lock_count++;
29 		return;
30 	}
31 	while ((val = a_cas(&__thread_list_lock, 0, tid)))
32 		__wait(&__thread_list_lock, &tl_lock_waiters, val, 0);
33 }
34 
__tl_unlock(void)35 void __tl_unlock(void)
36 {
37 	if (tl_lock_count) {
38 		tl_lock_count--;
39 		return;
40 	}
41 	a_store(&__thread_list_lock, 0);
42 	if (tl_lock_waiters) __wake(&__thread_list_lock, 1, 0);
43 }
44 
__tl_sync(pthread_t td)45 void __tl_sync(pthread_t td)
46 {
47 	a_barrier();
48 	int val = __thread_list_lock;
49 	if (!val) return;
50 	__wait(&__thread_list_lock, &tl_lock_waiters, val, 0);
51 	if (tl_lock_waiters) __wake(&__thread_list_lock, 1, 0);
52 }
53 
__pthread_exit(void * result)54 _Noreturn void __pthread_exit(void *result)
55 {
56 	pthread_t self = __pthread_self();
57 	sigset_t set;
58 
59 	self->canceldisable = 1;
60 	self->cancelasync = 0;
61 	self->result = result;
62 
63 	while (self->cancelbuf) {
64 		void (*f)(void *) = self->cancelbuf->__f;
65 		void *x = self->cancelbuf->__x;
66 		self->cancelbuf = self->cancelbuf->__next;
67 		f(x);
68 	}
69 
70 	__pthread_tsd_run_dtors();
71 
72 	/* Access to target the exiting thread with syscalls that use
73 	 * its kernel tid is controlled by killlock. For detached threads,
74 	 * any use past this point would have undefined behavior, but for
75 	 * joinable threads it's a valid usage that must be handled. */
76 	LOCK(self->killlock);
77 
78 	/* The thread list lock must be AS-safe, and thus requires
79 	 * application signals to be blocked before it can be taken. */
80 	__block_app_sigs(&set);
81 	__tl_lock();
82 
83 	/* If this is the only thread in the list, don't proceed with
84 	 * termination of the thread, but restore the previous lock and
85 	 * signal state to prepare for exit to call atexit handlers. */
86 	if (self->next == self) {
87 		__tl_unlock();
88 		__restore_sigs(&set);
89 		UNLOCK(self->killlock);
90 		exit(0);
91 	}
92 
93 	/* At this point we are committed to thread termination. Unlink
94 	 * the thread from the list. This change will not be visible
95 	 * until the lock is released, which only happens after SYS_exit
96 	 * has been called, via the exit futex address pointing at the lock. */
97 	libc.threads_minus_1--;
98 	self->next->prev = self->prev;
99 	self->prev->next = self->next;
100 	self->prev = self->next = self;
101 
102 	/* Process robust list in userspace to handle non-pshared mutexes
103 	 * and the detached thread case where the robust list head will
104 	 * be invalid when the kernel would process it. */
105 	__vm_lock();
106 	volatile void *volatile *rp;
107 	while ((rp=self->robust_list.head) && rp != &self->robust_list.head) {
108 		pthread_mutex_t *m = (void *)((char *)rp
109 			- offsetof(pthread_mutex_t, _m_next));
110 		int waiters = m->_m_waiters;
111 		int priv = (m->_m_type & 128) ^ 128;
112 		self->robust_list.pending = rp;
113 		self->robust_list.head = *rp;
114 		int cont = a_swap(&m->_m_lock, 0x40000000);
115 		self->robust_list.pending = 0;
116 		if (cont < 0 || waiters)
117 			__wake(&m->_m_lock, 1, priv);
118 	}
119 	__vm_unlock();
120 
121 	__do_orphaned_stdio_locks();
122 	__dl_thread_cleanup();
123 
124 	/* This atomic potentially competes with a concurrent pthread_detach
125 	 * call; the loser is responsible for freeing thread resources. */
126 	int state = a_cas(&self->detach_state, DT_JOINABLE, DT_EXITING);
127 
128 	if (state==DT_DETACHED && self->map_base) {
129 		/* Detached threads must block even implementation-internal
130 		 * signals, since they will not have a stack in their last
131 		 * moments of existence. */
132 		__block_all_sigs(&set);
133 
134 		/* Robust list will no longer be valid, and was already
135 		 * processed above, so unregister it with the kernel. */
136 		if (self->robust_list.off)
137 			__syscall(SYS_set_robust_list, 0, 3*sizeof(long));
138 
139 		/* Since __unmapself bypasses the normal munmap code path,
140 		 * explicitly wait for vmlock holders first. */
141 		__vm_wait();
142 
143 		/* The following call unmaps the thread's stack mapping
144 		 * and then exits without touching the stack. */
145 		__unmapself(self->map_base, self->map_size);
146 	}
147 
148 	/* Wake any joiner. */
149 	__wake(&self->detach_state, 1, 1);
150 
151 	/* After the kernel thread exits, its tid may be reused. Clear it
152 	 * to prevent inadvertent use and inform functions that would use
153 	 * it that it's no longer available. */
154 	self->tid = 0;
155 	UNLOCK(self->killlock);
156 
157 	for (;;) __syscall(SYS_exit, 0);
158 }
159 
__do_cleanup_push(struct __ptcb * cb)160 void __do_cleanup_push(struct __ptcb *cb)
161 {
162 	struct pthread *self = __pthread_self();
163 	cb->__next = self->cancelbuf;
164 	self->cancelbuf = cb;
165 }
166 
__do_cleanup_pop(struct __ptcb * cb)167 void __do_cleanup_pop(struct __ptcb *cb)
168 {
169 	__pthread_self()->cancelbuf = cb->__next;
170 }
171 
172 struct start_args {
173 	void *(*start_func)(void *);
174 	void *start_arg;
175 	pthread_attr_t *attr;
176 	volatile int *perr;
177 	unsigned long sig_mask[_NSIG/8/sizeof(long)];
178 };
179 
start(void * p)180 static int start(void *p)
181 {
182 	struct start_args *args = p;
183 	if (args->attr) {
184 		pthread_t self = __pthread_self();
185 		int ret = -__syscall(SYS_sched_setscheduler, self->tid,
186 			args->attr->_a_policy, &args->attr->_a_prio);
187 		if (a_swap(args->perr, ret)==-2)
188 			__wake(args->perr, 1, 1);
189 		if (ret) {
190 			self->detach_state = DT_DETACHED;
191 			__pthread_exit(0);
192 		}
193 	}
194 	__syscall(SYS_rt_sigprocmask, SIG_SETMASK, &args->sig_mask, 0, _NSIG/8);
195 	__pthread_exit(args->start_func(args->start_arg));
196 	return 0;
197 }
198 
start_c11(void * p)199 static int start_c11(void *p)
200 {
201 	struct start_args *args = p;
202 	int (*start)(void*) = (int(*)(void*)) args->start_func;
203 	__pthread_exit((void *)(uintptr_t)start(args->start_arg));
204 	return 0;
205 }
206 
207 #define ROUND(x) (((x)+PAGE_SIZE-1)&-PAGE_SIZE)
208 
209 /* pthread_key_create.c overrides this */
210 static volatile size_t dummy = 0;
211 weak_alias(dummy, __pthread_tsd_size);
212 static void *dummy_tsd[1] = { 0 };
213 weak_alias(dummy_tsd, __pthread_tsd_main);
214 
215 static FILE *volatile dummy_file = 0;
216 weak_alias(dummy_file, __stdin_used);
217 weak_alias(dummy_file, __stdout_used);
218 weak_alias(dummy_file, __stderr_used);
219 
init_file_lock(FILE * f)220 static void init_file_lock(FILE *f)
221 {
222 	if (f && f->lock<0) f->lock = 0;
223 }
224 
__pthread_create(pthread_t * restrict res,const pthread_attr_t * restrict attrp,void * (* entry)(void *),void * restrict arg)225 int __pthread_create(pthread_t *restrict res, const pthread_attr_t *restrict attrp, void *(*entry)(void *), void *restrict arg)
226 {
227 	int ret, c11 = (attrp == __ATTRP_C11_THREAD);
228 	size_t size, guard;
229 	struct pthread *self, *new;
230 	unsigned char *map = 0, *stack = 0, *tsd = 0, *stack_limit;
231 	unsigned flags = CLONE_VM | CLONE_FS | CLONE_FILES | CLONE_SIGHAND
232 		| CLONE_THREAD | CLONE_SYSVSEM | CLONE_SETTLS
233 		| CLONE_PARENT_SETTID | CLONE_CHILD_CLEARTID | CLONE_DETACHED;
234 	pthread_attr_t attr = { 0 };
235 	sigset_t set;
236 	volatile int err = -1;
237 
238 	if (!libc.can_do_threads) return ENOSYS;
239 	self = __pthread_self();
240 	if (!libc.threaded) {
241 		for (FILE *f=*__ofl_lock(); f; f=f->next)
242 			init_file_lock(f);
243 		__ofl_unlock();
244 		init_file_lock(__stdin_used);
245 		init_file_lock(__stdout_used);
246 		init_file_lock(__stderr_used);
247 		__syscall(SYS_rt_sigprocmask, SIG_UNBLOCK, SIGPT_SET, 0, _NSIG/8);
248 		self->tsd = (void **)__pthread_tsd_main;
249 		__membarrier_init();
250 		libc.threaded = 1;
251 	}
252 	if (attrp && !c11) attr = *attrp;
253 
254 	__acquire_ptc();
255 	if (!attrp || c11) {
256 		attr._a_stacksize = __default_stacksize;
257 		attr._a_guardsize = __default_guardsize;
258 	}
259 
260 	if (attr._a_stackaddr) {
261 		size_t need = libc.tls_size + __pthread_tsd_size;
262 		size = attr._a_stacksize;
263 		stack = (void *)(attr._a_stackaddr & -16);
264 		stack_limit = (void *)(attr._a_stackaddr - size);
265 		/* Use application-provided stack for TLS only when
266 		 * it does not take more than ~12% or 2k of the
267 		 * application's stack space. */
268 		if (need < size/8 && need < 2048) {
269 			tsd = stack - __pthread_tsd_size;
270 			stack = tsd - libc.tls_size;
271 			memset(stack, 0, need);
272 		} else {
273 			size = ROUND(need);
274 		}
275 		guard = 0;
276 	} else {
277 		guard = ROUND(attr._a_guardsize);
278 		size = guard + ROUND(attr._a_stacksize
279 			+ libc.tls_size +  __pthread_tsd_size);
280 	}
281 
282 	if (!tsd) {
283 		if (guard) {
284 			map = __mmap(0, size, PROT_NONE, MAP_PRIVATE|MAP_ANON, -1, 0);
285 			if (map == MAP_FAILED) goto fail;
286 			if (__mprotect(map+guard, size-guard, PROT_READ|PROT_WRITE)
287 			    && errno != ENOSYS) {
288 				__munmap(map, size);
289 				goto fail;
290 			}
291 		} else {
292 			map = __mmap(0, size, PROT_READ|PROT_WRITE, MAP_PRIVATE|MAP_ANON, -1, 0);
293 			if (map == MAP_FAILED) goto fail;
294 		}
295 		tsd = map + size - __pthread_tsd_size;
296 		if (!stack) {
297 			stack = tsd - libc.tls_size;
298 			stack_limit = map + guard;
299 		}
300 	}
301 
302 	new = __copy_tls(tsd - libc.tls_size);
303 	new->map_base = map;
304 	new->map_size = size;
305 	new->stack = stack;
306 	new->stack_size = stack - stack_limit;
307 	new->guard_size = guard;
308 	new->self = new;
309 	new->tsd = (void *)tsd;
310 	new->locale = &libc.global_locale;
311 	if (attr._a_detach) {
312 		new->detach_state = DT_DETACHED;
313 	} else {
314 		new->detach_state = DT_JOINABLE;
315 	}
316 	new->robust_list.head = &new->robust_list.head;
317 	new->CANARY = self->CANARY;
318 	new->sysinfo = self->sysinfo;
319 
320 	/* Setup argument structure for the new thread on its stack.
321 	 * It's safe to access from the caller only until the thread
322 	 * list is unlocked. */
323 	stack -= (uintptr_t)stack % sizeof(uintptr_t);
324 	stack -= sizeof(struct start_args);
325 	struct start_args *args = (void *)stack;
326 	args->start_func = entry;
327 	args->start_arg = arg;
328 	if (attr._a_sched) {
329 		args->attr = &attr;
330 		args->perr = &err;
331 	} else {
332 		args->attr = 0;
333 		args->perr = 0;
334 	}
335 
336 	/* Application signals (but not the synccall signal) must be
337 	 * blocked before the thread list lock can be taken, to ensure
338 	 * that the lock is AS-safe. */
339 	__block_app_sigs(&set);
340 
341 	/* Ensure SIGCANCEL is unblocked in new thread. This requires
342 	 * working with a copy of the set so we can restore the
343 	 * original mask in the calling thread. */
344 	memcpy(&args->sig_mask, &set, sizeof args->sig_mask);
345 	args->sig_mask[(SIGCANCEL-1)/8/sizeof(long)] &=
346 		~(1UL<<((SIGCANCEL-1)%(8*sizeof(long))));
347 
348 	__tl_lock();
349 	libc.threads_minus_1++;
350 	ret = __clone((c11 ? start_c11 : start), stack, flags, args, &new->tid, TP_ADJ(new), &__thread_list_lock);
351 
352 	/* If clone succeeded, new thread must be linked on the thread
353 	 * list before unlocking it, even if scheduling may still fail. */
354 	if (ret >= 0) {
355 		new->next = self->next;
356 		new->prev = self;
357 		new->next->prev = new;
358 		new->prev->next = new;
359 	}
360 	__tl_unlock();
361 	__restore_sigs(&set);
362 	__release_ptc();
363 
364 	if (ret < 0) {
365 		libc.threads_minus_1--;
366 		if (map) __munmap(map, size);
367 		return EAGAIN;
368 	}
369 
370 	if (attr._a_sched) {
371 		if (a_cas(&err, -1, -2)==-1)
372 			__wait(&err, 0, -2, 1);
373 		ret = err;
374 		if (ret) return ret;
375 	}
376 
377 	*res = new;
378 	return 0;
379 fail:
380 	__release_ptc();
381 	return EAGAIN;
382 }
383 
384 weak_alias(__pthread_exit, pthread_exit);
385 weak_alias(__pthread_create, pthread_create);
386