subr_lockdebug.c revision 1.57.2.2 1 1.57.2.2 martin /* $NetBSD: subr_lockdebug.c,v 1.57.2.2 2018/09/07 12:34:18 martin Exp $ */
2 1.2 ad
3 1.2 ad /*-
4 1.28 ad * Copyright (c) 2006, 2007, 2008 The NetBSD Foundation, Inc.
5 1.2 ad * All rights reserved.
6 1.2 ad *
7 1.2 ad * This code is derived from software contributed to The NetBSD Foundation
8 1.2 ad * by Andrew Doran.
9 1.2 ad *
10 1.2 ad * Redistribution and use in source and binary forms, with or without
11 1.2 ad * modification, are permitted provided that the following conditions
12 1.2 ad * are met:
13 1.2 ad * 1. Redistributions of source code must retain the above copyright
14 1.2 ad * notice, this list of conditions and the following disclaimer.
15 1.2 ad * 2. Redistributions in binary form must reproduce the above copyright
16 1.2 ad * notice, this list of conditions and the following disclaimer in the
17 1.2 ad * documentation and/or other materials provided with the distribution.
18 1.2 ad *
19 1.2 ad * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
20 1.2 ad * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
21 1.2 ad * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
22 1.2 ad * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
23 1.2 ad * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
24 1.2 ad * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
25 1.2 ad * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
26 1.2 ad * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
27 1.2 ad * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
28 1.2 ad * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
29 1.2 ad * POSSIBILITY OF SUCH DAMAGE.
30 1.2 ad */
31 1.2 ad
32 1.2 ad /*
33 1.11 ad * Basic lock debugging code shared among lock primitives.
34 1.2 ad */
35 1.2 ad
36 1.9 dsl #include <sys/cdefs.h>
37 1.57.2.2 martin __KERNEL_RCSID(0, "$NetBSD: subr_lockdebug.c,v 1.57.2.2 2018/09/07 12:34:18 martin Exp $");
38 1.9 dsl
39 1.54 ozaki #ifdef _KERNEL_OPT
40 1.2 ad #include "opt_ddb.h"
41 1.54 ozaki #endif
42 1.2 ad
43 1.2 ad #include <sys/param.h>
44 1.2 ad #include <sys/proc.h>
45 1.2 ad #include <sys/systm.h>
46 1.10 ad #include <sys/kernel.h>
47 1.2 ad #include <sys/kmem.h>
48 1.2 ad #include <sys/lockdebug.h>
49 1.2 ad #include <sys/sleepq.h>
50 1.10 ad #include <sys/cpu.h>
51 1.22 ad #include <sys/atomic.h>
52 1.26 ad #include <sys/lock.h>
53 1.43 matt #include <sys/rbtree.h>
54 1.57.2.1 martin #include <sys/ksyms.h>
55 1.16 yamt
56 1.25 ad #include <machine/lock.h>
57 1.25 ad
58 1.28 ad unsigned int ld_panic;
59 1.28 ad
60 1.2 ad #ifdef LOCKDEBUG
61 1.2 ad
62 1.2 ad #define LD_BATCH_SHIFT 9
63 1.2 ad #define LD_BATCH (1 << LD_BATCH_SHIFT)
64 1.2 ad #define LD_BATCH_MASK (LD_BATCH - 1)
65 1.2 ad #define LD_MAX_LOCKS 1048576
66 1.2 ad #define LD_SLOP 16
67 1.2 ad
68 1.2 ad #define LD_LOCKED 0x01
69 1.2 ad #define LD_SLEEPER 0x02
70 1.2 ad
71 1.23 ad #define LD_WRITE_LOCK 0x80000000
72 1.23 ad
73 1.2 ad typedef struct lockdebug {
74 1.42 rmind struct rb_node ld_rb_node;
75 1.34 ad __cpu_simple_lock_t ld_spinlock;
76 1.2 ad _TAILQ_ENTRY(struct lockdebug, volatile) ld_chain;
77 1.2 ad _TAILQ_ENTRY(struct lockdebug, volatile) ld_achain;
78 1.2 ad volatile void *ld_lock;
79 1.2 ad lockops_t *ld_lockops;
80 1.2 ad struct lwp *ld_lwp;
81 1.2 ad uintptr_t ld_locked;
82 1.2 ad uintptr_t ld_unlocked;
83 1.10 ad uintptr_t ld_initaddr;
84 1.2 ad uint16_t ld_shares;
85 1.2 ad uint16_t ld_cpu;
86 1.2 ad uint8_t ld_flags;
87 1.2 ad uint8_t ld_shwant; /* advisory */
88 1.2 ad uint8_t ld_exwant; /* advisory */
89 1.2 ad uint8_t ld_unused;
90 1.2 ad } volatile lockdebug_t;
91 1.2 ad
92 1.2 ad typedef _TAILQ_HEAD(lockdebuglist, struct lockdebug, volatile) lockdebuglist_t;
93 1.2 ad
94 1.34 ad __cpu_simple_lock_t ld_mod_lk;
95 1.13 matt lockdebuglist_t ld_free = TAILQ_HEAD_INITIALIZER(ld_free);
96 1.13 matt lockdebuglist_t ld_all = TAILQ_HEAD_INITIALIZER(ld_all);
97 1.2 ad int ld_nfree;
98 1.2 ad int ld_freeptr;
99 1.2 ad int ld_recurse;
100 1.5 ad bool ld_nomore;
101 1.2 ad lockdebug_t ld_prime[LD_BATCH];
102 1.2 ad
103 1.55 christos static void lockdebug_abort1(const char *, size_t, lockdebug_t *, int,
104 1.55 christos const char *, bool);
105 1.34 ad static int lockdebug_more(int);
106 1.5 ad static void lockdebug_init(void);
107 1.52 christos static void lockdebug_dump(lockdebug_t *, void (*)(const char *, ...)
108 1.52 christos __printflike(1, 2));
109 1.2 ad
110 1.16 yamt static signed int
111 1.42 rmind ld_rbto_compare_nodes(void *ctx, const void *n1, const void *n2)
112 1.16 yamt {
113 1.42 rmind const lockdebug_t *ld1 = n1;
114 1.42 rmind const lockdebug_t *ld2 = n2;
115 1.20 yamt const uintptr_t a = (uintptr_t)ld1->ld_lock;
116 1.20 yamt const uintptr_t b = (uintptr_t)ld2->ld_lock;
117 1.20 yamt
118 1.20 yamt if (a < b)
119 1.42 rmind return -1;
120 1.42 rmind if (a > b)
121 1.20 yamt return 1;
122 1.16 yamt return 0;
123 1.16 yamt }
124 1.16 yamt
125 1.16 yamt static signed int
126 1.42 rmind ld_rbto_compare_key(void *ctx, const void *n, const void *key)
127 1.16 yamt {
128 1.42 rmind const lockdebug_t *ld = n;
129 1.20 yamt const uintptr_t a = (uintptr_t)ld->ld_lock;
130 1.20 yamt const uintptr_t b = (uintptr_t)key;
131 1.20 yamt
132 1.20 yamt if (a < b)
133 1.42 rmind return -1;
134 1.42 rmind if (a > b)
135 1.20 yamt return 1;
136 1.16 yamt return 0;
137 1.16 yamt }
138 1.16 yamt
139 1.42 rmind static rb_tree_t ld_rb_tree;
140 1.16 yamt
141 1.42 rmind static const rb_tree_ops_t ld_rb_tree_ops = {
142 1.37 matt .rbto_compare_nodes = ld_rbto_compare_nodes,
143 1.37 matt .rbto_compare_key = ld_rbto_compare_key,
144 1.42 rmind .rbto_node_offset = offsetof(lockdebug_t, ld_rb_node),
145 1.42 rmind .rbto_context = NULL
146 1.16 yamt };
147 1.16 yamt
148 1.34 ad static inline lockdebug_t *
149 1.34 ad lockdebug_lookup1(volatile void *lock)
150 1.23 ad {
151 1.34 ad lockdebug_t *ld;
152 1.34 ad struct cpu_info *ci;
153 1.23 ad
154 1.34 ad ci = curcpu();
155 1.34 ad __cpu_simple_lock(&ci->ci_data.cpu_ld_lock);
156 1.34 ad ld = (lockdebug_t *)rb_tree_find_node(&ld_rb_tree, __UNVOLATILE(lock));
157 1.34 ad __cpu_simple_unlock(&ci->ci_data.cpu_ld_lock);
158 1.34 ad if (ld == NULL) {
159 1.34 ad return NULL;
160 1.34 ad }
161 1.34 ad __cpu_simple_lock(&ld->ld_spinlock);
162 1.23 ad
163 1.34 ad return ld;
164 1.2 ad }
165 1.2 ad
166 1.23 ad static void
167 1.34 ad lockdebug_lock_cpus(void)
168 1.2 ad {
169 1.34 ad CPU_INFO_ITERATOR cii;
170 1.34 ad struct cpu_info *ci;
171 1.2 ad
172 1.34 ad for (CPU_INFO_FOREACH(cii, ci)) {
173 1.34 ad __cpu_simple_lock(&ci->ci_data.cpu_ld_lock);
174 1.34 ad }
175 1.23 ad }
176 1.23 ad
177 1.23 ad static void
178 1.34 ad lockdebug_unlock_cpus(void)
179 1.23 ad {
180 1.34 ad CPU_INFO_ITERATOR cii;
181 1.34 ad struct cpu_info *ci;
182 1.23 ad
183 1.34 ad for (CPU_INFO_FOREACH(cii, ci)) {
184 1.34 ad __cpu_simple_unlock(&ci->ci_data.cpu_ld_lock);
185 1.34 ad }
186 1.2 ad }
187 1.2 ad
188 1.2 ad /*
189 1.19 yamt * lockdebug_lookup:
190 1.19 yamt *
191 1.19 yamt * Find a lockdebug structure by a pointer to a lock and return it locked.
192 1.19 yamt */
193 1.19 yamt static inline lockdebug_t *
194 1.55 christos lockdebug_lookup(const char *func, size_t line, volatile void *lock,
195 1.55 christos uintptr_t where)
196 1.19 yamt {
197 1.19 yamt lockdebug_t *ld;
198 1.19 yamt
199 1.34 ad ld = lockdebug_lookup1(lock);
200 1.42 rmind if (ld == NULL) {
201 1.55 christos panic("%s,%zu: uninitialized lock (lock=%p, from=%08"
202 1.55 christos PRIxPTR ")", func, line, lock, where);
203 1.42 rmind }
204 1.19 yamt return ld;
205 1.19 yamt }
206 1.19 yamt
207 1.19 yamt /*
208 1.2 ad * lockdebug_init:
209 1.2 ad *
210 1.2 ad * Initialize the lockdebug system. Allocate an initial pool of
211 1.2 ad * lockdebug structures before the VM system is up and running.
212 1.2 ad */
213 1.5 ad static void
214 1.2 ad lockdebug_init(void)
215 1.2 ad {
216 1.2 ad lockdebug_t *ld;
217 1.2 ad int i;
218 1.2 ad
219 1.34 ad TAILQ_INIT(&curcpu()->ci_data.cpu_ld_locks);
220 1.34 ad TAILQ_INIT(&curlwp->l_ld_locks);
221 1.34 ad __cpu_simple_lock_init(&curcpu()->ci_data.cpu_ld_lock);
222 1.34 ad __cpu_simple_lock_init(&ld_mod_lk);
223 1.15 matt
224 1.16 yamt rb_tree_init(&ld_rb_tree, &ld_rb_tree_ops);
225 1.16 yamt
226 1.2 ad ld = ld_prime;
227 1.2 ad for (i = 1, ld++; i < LD_BATCH; i++, ld++) {
228 1.34 ad __cpu_simple_lock_init(&ld->ld_spinlock);
229 1.2 ad TAILQ_INSERT_TAIL(&ld_free, ld, ld_chain);
230 1.2 ad TAILQ_INSERT_TAIL(&ld_all, ld, ld_achain);
231 1.2 ad }
232 1.2 ad ld_freeptr = 1;
233 1.2 ad ld_nfree = LD_BATCH - 1;
234 1.2 ad }
235 1.2 ad
236 1.2 ad /*
237 1.2 ad * lockdebug_alloc:
238 1.2 ad *
239 1.2 ad * A lock is being initialized, so allocate an associated debug
240 1.2 ad * structure.
241 1.2 ad */
242 1.16 yamt bool
243 1.55 christos lockdebug_alloc(const char *func, size_t line, volatile void *lock,
244 1.55 christos lockops_t *lo, uintptr_t initaddr)
245 1.2 ad {
246 1.2 ad struct cpu_info *ci;
247 1.2 ad lockdebug_t *ld;
248 1.34 ad int s;
249 1.2 ad
250 1.27 ad if (lo == NULL || panicstr != NULL || ld_panic)
251 1.16 yamt return false;
252 1.5 ad if (ld_freeptr == 0)
253 1.5 ad lockdebug_init();
254 1.2 ad
255 1.34 ad s = splhigh();
256 1.34 ad __cpu_simple_lock(&ld_mod_lk);
257 1.34 ad if ((ld = lockdebug_lookup1(lock)) != NULL) {
258 1.34 ad __cpu_simple_unlock(&ld_mod_lk);
259 1.55 christos lockdebug_abort1(func, line, ld, s, "already initialized",
260 1.55 christos true);
261 1.27 ad return false;
262 1.19 yamt }
263 1.19 yamt
264 1.2 ad /*
265 1.2 ad * Pinch a new debug structure. We may recurse because we call
266 1.2 ad * kmem_alloc(), which may need to initialize new locks somewhere
267 1.7 skrll * down the path. If not recursing, we try to maintain at least
268 1.2 ad * LD_SLOP structures free, which should hopefully be enough to
269 1.2 ad * satisfy kmem_alloc(). If we can't provide a structure, not to
270 1.2 ad * worry: we'll just mark the lock as not having an ID.
271 1.2 ad */
272 1.23 ad ci = curcpu();
273 1.2 ad ci->ci_lkdebug_recurse++;
274 1.2 ad if (TAILQ_EMPTY(&ld_free)) {
275 1.5 ad if (ci->ci_lkdebug_recurse > 1 || ld_nomore) {
276 1.2 ad ci->ci_lkdebug_recurse--;
277 1.34 ad __cpu_simple_unlock(&ld_mod_lk);
278 1.34 ad splx(s);
279 1.16 yamt return false;
280 1.2 ad }
281 1.34 ad s = lockdebug_more(s);
282 1.34 ad } else if (ci->ci_lkdebug_recurse == 1 && ld_nfree < LD_SLOP) {
283 1.34 ad s = lockdebug_more(s);
284 1.34 ad }
285 1.2 ad if ((ld = TAILQ_FIRST(&ld_free)) == NULL) {
286 1.34 ad __cpu_simple_unlock(&ld_mod_lk);
287 1.34 ad splx(s);
288 1.16 yamt return false;
289 1.2 ad }
290 1.2 ad TAILQ_REMOVE(&ld_free, ld, ld_chain);
291 1.2 ad ld_nfree--;
292 1.2 ad ci->ci_lkdebug_recurse--;
293 1.2 ad
294 1.34 ad if (ld->ld_lock != NULL) {
295 1.55 christos panic("%s,%zu: corrupt table ld %p", func, line, ld);
296 1.34 ad }
297 1.2 ad
298 1.2 ad /* Initialise the structure. */
299 1.2 ad ld->ld_lock = lock;
300 1.2 ad ld->ld_lockops = lo;
301 1.2 ad ld->ld_locked = 0;
302 1.2 ad ld->ld_unlocked = 0;
303 1.2 ad ld->ld_lwp = NULL;
304 1.10 ad ld->ld_initaddr = initaddr;
305 1.35 ad ld->ld_flags = (lo->lo_type == LOCKOPS_SLEEP ? LD_SLEEPER : 0);
306 1.34 ad lockdebug_lock_cpus();
307 1.42 rmind (void)rb_tree_insert_node(&ld_rb_tree, __UNVOLATILE(ld));
308 1.34 ad lockdebug_unlock_cpus();
309 1.34 ad __cpu_simple_unlock(&ld_mod_lk);
310 1.2 ad
311 1.34 ad splx(s);
312 1.16 yamt return true;
313 1.2 ad }
314 1.2 ad
315 1.2 ad /*
316 1.2 ad * lockdebug_free:
317 1.2 ad *
318 1.2 ad * A lock is being destroyed, so release debugging resources.
319 1.2 ad */
320 1.2 ad void
321 1.55 christos lockdebug_free(const char *func, size_t line, volatile void *lock)
322 1.2 ad {
323 1.2 ad lockdebug_t *ld;
324 1.34 ad int s;
325 1.2 ad
326 1.27 ad if (panicstr != NULL || ld_panic)
327 1.2 ad return;
328 1.2 ad
329 1.34 ad s = splhigh();
330 1.34 ad __cpu_simple_lock(&ld_mod_lk);
331 1.55 christos ld = lockdebug_lookup(func, line, lock,
332 1.55 christos (uintptr_t) __builtin_return_address(0));
333 1.16 yamt if (ld == NULL) {
334 1.34 ad __cpu_simple_unlock(&ld_mod_lk);
335 1.55 christos panic("%s,%zu: destroying uninitialized object %p"
336 1.55 christos "(ld_lock=%p)", func, line, lock, ld->ld_lock);
337 1.27 ad return;
338 1.2 ad }
339 1.27 ad if ((ld->ld_flags & LD_LOCKED) != 0 || ld->ld_shares != 0) {
340 1.34 ad __cpu_simple_unlock(&ld_mod_lk);
341 1.55 christos lockdebug_abort1(func, line, ld, s, "is locked or in use",
342 1.55 christos true);
343 1.27 ad return;
344 1.27 ad }
345 1.34 ad lockdebug_lock_cpus();
346 1.42 rmind rb_tree_remove_node(&ld_rb_tree, __UNVOLATILE(ld));
347 1.34 ad lockdebug_unlock_cpus();
348 1.2 ad ld->ld_lock = NULL;
349 1.2 ad TAILQ_INSERT_TAIL(&ld_free, ld, ld_chain);
350 1.2 ad ld_nfree++;
351 1.34 ad __cpu_simple_unlock(&ld->ld_spinlock);
352 1.34 ad __cpu_simple_unlock(&ld_mod_lk);
353 1.34 ad splx(s);
354 1.2 ad }
355 1.2 ad
356 1.2 ad /*
357 1.2 ad * lockdebug_more:
358 1.2 ad *
359 1.2 ad * Allocate a batch of debug structures and add to the free list.
360 1.34 ad * Must be called with ld_mod_lk held.
361 1.2 ad */
362 1.34 ad static int
363 1.34 ad lockdebug_more(int s)
364 1.2 ad {
365 1.2 ad lockdebug_t *ld;
366 1.2 ad void *block;
367 1.5 ad int i, base, m;
368 1.2 ad
369 1.35 ad /*
370 1.35 ad * Can't call kmem_alloc() if in interrupt context. XXX We could
371 1.35 ad * deadlock, because we don't know which locks the caller holds.
372 1.35 ad */
373 1.35 ad if (cpu_intr_p() || (curlwp->l_pflag & LP_INTR) != 0) {
374 1.35 ad return s;
375 1.35 ad }
376 1.35 ad
377 1.2 ad while (ld_nfree < LD_SLOP) {
378 1.34 ad __cpu_simple_unlock(&ld_mod_lk);
379 1.34 ad splx(s);
380 1.2 ad block = kmem_zalloc(LD_BATCH * sizeof(lockdebug_t), KM_SLEEP);
381 1.34 ad s = splhigh();
382 1.34 ad __cpu_simple_lock(&ld_mod_lk);
383 1.2 ad
384 1.2 ad if (ld_nfree > LD_SLOP) {
385 1.2 ad /* Somebody beat us to it. */
386 1.34 ad __cpu_simple_unlock(&ld_mod_lk);
387 1.34 ad splx(s);
388 1.2 ad kmem_free(block, LD_BATCH * sizeof(lockdebug_t));
389 1.34 ad s = splhigh();
390 1.34 ad __cpu_simple_lock(&ld_mod_lk);
391 1.2 ad continue;
392 1.2 ad }
393 1.2 ad
394 1.2 ad base = ld_freeptr;
395 1.2 ad ld_nfree += LD_BATCH;
396 1.2 ad ld = block;
397 1.2 ad base <<= LD_BATCH_SHIFT;
398 1.5 ad m = min(LD_MAX_LOCKS, base + LD_BATCH);
399 1.5 ad
400 1.5 ad if (m == LD_MAX_LOCKS)
401 1.5 ad ld_nomore = true;
402 1.2 ad
403 1.5 ad for (i = base; i < m; i++, ld++) {
404 1.34 ad __cpu_simple_lock_init(&ld->ld_spinlock);
405 1.2 ad TAILQ_INSERT_TAIL(&ld_free, ld, ld_chain);
406 1.2 ad TAILQ_INSERT_TAIL(&ld_all, ld, ld_achain);
407 1.2 ad }
408 1.2 ad
409 1.22 ad membar_producer();
410 1.2 ad }
411 1.34 ad
412 1.34 ad return s;
413 1.2 ad }
414 1.2 ad
415 1.2 ad /*
416 1.2 ad * lockdebug_wantlock:
417 1.2 ad *
418 1.56 pgoyette * Process the preamble to a lock acquire. The "shared"
419 1.56 pgoyette * parameter controls which ld_{ex,sh}want counter is
420 1.56 pgoyette * updated; a negative value of shared updates neither.
421 1.2 ad */
422 1.2 ad void
423 1.55 christos lockdebug_wantlock(const char *func, size_t line,
424 1.55 christos volatile void *lock, uintptr_t where, int shared)
425 1.2 ad {
426 1.2 ad struct lwp *l = curlwp;
427 1.2 ad lockdebug_t *ld;
428 1.3 thorpej bool recurse;
429 1.34 ad int s;
430 1.2 ad
431 1.2 ad (void)shared;
432 1.4 thorpej recurse = false;
433 1.2 ad
434 1.27 ad if (panicstr != NULL || ld_panic)
435 1.2 ad return;
436 1.2 ad
437 1.34 ad s = splhigh();
438 1.55 christos if ((ld = lockdebug_lookup(func, line, lock, where)) == NULL) {
439 1.34 ad splx(s);
440 1.2 ad return;
441 1.34 ad }
442 1.32 yamt if ((ld->ld_flags & LD_LOCKED) != 0 || ld->ld_shares != 0) {
443 1.2 ad if ((ld->ld_flags & LD_SLEEPER) != 0) {
444 1.49 mlelstv if (ld->ld_lwp == l)
445 1.4 thorpej recurse = true;
446 1.40 rmind } else if (ld->ld_cpu == (uint16_t)cpu_index(curcpu()))
447 1.4 thorpej recurse = true;
448 1.2 ad }
449 1.10 ad if (cpu_intr_p()) {
450 1.27 ad if ((ld->ld_flags & LD_SLEEPER) != 0) {
451 1.55 christos lockdebug_abort1(func, line, ld, s,
452 1.10 ad "acquiring sleep lock from interrupt context",
453 1.10 ad true);
454 1.27 ad return;
455 1.27 ad }
456 1.10 ad }
457 1.56 pgoyette if (shared > 0)
458 1.2 ad ld->ld_shwant++;
459 1.56 pgoyette else if (shared == 0)
460 1.2 ad ld->ld_exwant++;
461 1.27 ad if (recurse) {
462 1.55 christos lockdebug_abort1(func, line, ld, s, "locking against myself",
463 1.10 ad true);
464 1.27 ad return;
465 1.27 ad }
466 1.34 ad __cpu_simple_unlock(&ld->ld_spinlock);
467 1.34 ad splx(s);
468 1.2 ad }
469 1.2 ad
470 1.2 ad /*
471 1.2 ad * lockdebug_locked:
472 1.2 ad *
473 1.2 ad * Process a lock acquire operation.
474 1.2 ad */
475 1.2 ad void
476 1.55 christos lockdebug_locked(const char *func, size_t line,
477 1.55 christos volatile void *lock, void *cvlock, uintptr_t where, int shared)
478 1.2 ad {
479 1.2 ad struct lwp *l = curlwp;
480 1.2 ad lockdebug_t *ld;
481 1.34 ad int s;
482 1.2 ad
483 1.27 ad if (panicstr != NULL || ld_panic)
484 1.2 ad return;
485 1.2 ad
486 1.34 ad s = splhigh();
487 1.55 christos if ((ld = lockdebug_lookup(func, line, lock, where)) == NULL) {
488 1.34 ad splx(s);
489 1.2 ad return;
490 1.34 ad }
491 1.35 ad if (cvlock) {
492 1.35 ad KASSERT(ld->ld_lockops->lo_type == LOCKOPS_CV);
493 1.35 ad if (lock == (void *)&lbolt) {
494 1.35 ad /* nothing */
495 1.35 ad } else if (ld->ld_shares++ == 0) {
496 1.35 ad ld->ld_locked = (uintptr_t)cvlock;
497 1.35 ad } else if (cvlock != (void *)ld->ld_locked) {
498 1.55 christos lockdebug_abort1(func, line, ld, s,
499 1.55 christos "multiple locks used with condition variable",
500 1.55 christos true);
501 1.35 ad return;
502 1.35 ad }
503 1.35 ad } else if (shared) {
504 1.2 ad l->l_shlocks++;
505 1.45 yamt ld->ld_locked = where;
506 1.2 ad ld->ld_shares++;
507 1.2 ad ld->ld_shwant--;
508 1.2 ad } else {
509 1.27 ad if ((ld->ld_flags & LD_LOCKED) != 0) {
510 1.55 christos lockdebug_abort1(func, line, ld, s, "already locked",
511 1.34 ad true);
512 1.27 ad return;
513 1.27 ad }
514 1.2 ad ld->ld_flags |= LD_LOCKED;
515 1.2 ad ld->ld_locked = where;
516 1.2 ad ld->ld_exwant--;
517 1.2 ad if ((ld->ld_flags & LD_SLEEPER) != 0) {
518 1.34 ad TAILQ_INSERT_TAIL(&l->l_ld_locks, ld, ld_chain);
519 1.2 ad } else {
520 1.34 ad TAILQ_INSERT_TAIL(&curcpu()->ci_data.cpu_ld_locks,
521 1.34 ad ld, ld_chain);
522 1.2 ad }
523 1.2 ad }
524 1.40 rmind ld->ld_cpu = (uint16_t)cpu_index(curcpu());
525 1.32 yamt ld->ld_lwp = l;
526 1.34 ad __cpu_simple_unlock(&ld->ld_spinlock);
527 1.34 ad splx(s);
528 1.2 ad }
529 1.2 ad
530 1.2 ad /*
531 1.2 ad * lockdebug_unlocked:
532 1.2 ad *
533 1.2 ad * Process a lock release operation.
534 1.2 ad */
535 1.2 ad void
536 1.55 christos lockdebug_unlocked(const char *func, size_t line,
537 1.55 christos volatile void *lock, uintptr_t where, int shared)
538 1.2 ad {
539 1.2 ad struct lwp *l = curlwp;
540 1.2 ad lockdebug_t *ld;
541 1.34 ad int s;
542 1.2 ad
543 1.27 ad if (panicstr != NULL || ld_panic)
544 1.2 ad return;
545 1.2 ad
546 1.34 ad s = splhigh();
547 1.55 christos if ((ld = lockdebug_lookup(func, line, lock, where)) == NULL) {
548 1.34 ad splx(s);
549 1.2 ad return;
550 1.34 ad }
551 1.35 ad if (ld->ld_lockops->lo_type == LOCKOPS_CV) {
552 1.35 ad if (lock == (void *)&lbolt) {
553 1.35 ad /* nothing */
554 1.35 ad } else {
555 1.35 ad ld->ld_shares--;
556 1.35 ad }
557 1.35 ad } else if (shared) {
558 1.27 ad if (l->l_shlocks == 0) {
559 1.55 christos lockdebug_abort1(func, line, ld, s,
560 1.10 ad "no shared locks held by LWP", true);
561 1.27 ad return;
562 1.27 ad }
563 1.27 ad if (ld->ld_shares == 0) {
564 1.55 christos lockdebug_abort1(func, line, ld, s,
565 1.10 ad "no shared holds on this lock", true);
566 1.27 ad return;
567 1.27 ad }
568 1.2 ad l->l_shlocks--;
569 1.2 ad ld->ld_shares--;
570 1.45 yamt if (ld->ld_lwp == l) {
571 1.45 yamt ld->ld_unlocked = where;
572 1.32 yamt ld->ld_lwp = NULL;
573 1.45 yamt }
574 1.40 rmind if (ld->ld_cpu == (uint16_t)cpu_index(curcpu()))
575 1.32 yamt ld->ld_cpu = (uint16_t)-1;
576 1.2 ad } else {
577 1.27 ad if ((ld->ld_flags & LD_LOCKED) == 0) {
578 1.55 christos lockdebug_abort1(func, line, ld, s, "not locked", true);
579 1.27 ad return;
580 1.27 ad }
581 1.2 ad
582 1.2 ad if ((ld->ld_flags & LD_SLEEPER) != 0) {
583 1.27 ad if (ld->ld_lwp != curlwp) {
584 1.55 christos lockdebug_abort1(func, line, ld, s,
585 1.10 ad "not held by current LWP", true);
586 1.27 ad return;
587 1.27 ad }
588 1.34 ad TAILQ_REMOVE(&l->l_ld_locks, ld, ld_chain);
589 1.2 ad } else {
590 1.40 rmind if (ld->ld_cpu != (uint16_t)cpu_index(curcpu())) {
591 1.55 christos lockdebug_abort1(func, line, ld, s,
592 1.10 ad "not held by current CPU", true);
593 1.27 ad return;
594 1.27 ad }
595 1.34 ad TAILQ_REMOVE(&curcpu()->ci_data.cpu_ld_locks, ld,
596 1.34 ad ld_chain);
597 1.2 ad }
598 1.44 matt ld->ld_flags &= ~LD_LOCKED;
599 1.44 matt ld->ld_unlocked = where;
600 1.44 matt ld->ld_lwp = NULL;
601 1.2 ad }
602 1.34 ad __cpu_simple_unlock(&ld->ld_spinlock);
603 1.34 ad splx(s);
604 1.2 ad }
605 1.2 ad
606 1.2 ad /*
607 1.35 ad * lockdebug_wakeup:
608 1.35 ad *
609 1.35 ad * Process a wakeup on a condition variable.
610 1.35 ad */
611 1.35 ad void
612 1.55 christos lockdebug_wakeup(const char *func, size_t line, volatile void *lock,
613 1.55 christos uintptr_t where)
614 1.35 ad {
615 1.35 ad lockdebug_t *ld;
616 1.35 ad int s;
617 1.35 ad
618 1.35 ad if (panicstr != NULL || ld_panic || lock == (void *)&lbolt)
619 1.35 ad return;
620 1.35 ad
621 1.35 ad s = splhigh();
622 1.35 ad /* Find the CV... */
623 1.55 christos if ((ld = lockdebug_lookup(func, line, lock, where)) == NULL) {
624 1.35 ad splx(s);
625 1.35 ad return;
626 1.35 ad }
627 1.35 ad /*
628 1.35 ad * If it has any waiters, ensure that they are using the
629 1.35 ad * same interlock.
630 1.35 ad */
631 1.35 ad if (ld->ld_shares != 0 && !mutex_owned((kmutex_t *)ld->ld_locked)) {
632 1.55 christos lockdebug_abort1(func, line, ld, s, "interlocking mutex not "
633 1.35 ad "held during wakeup", true);
634 1.35 ad return;
635 1.35 ad }
636 1.35 ad __cpu_simple_unlock(&ld->ld_spinlock);
637 1.35 ad splx(s);
638 1.35 ad }
639 1.35 ad
640 1.35 ad /*
641 1.2 ad * lockdebug_barrier:
642 1.2 ad *
643 1.2 ad * Panic if we hold more than one specified spin lock, and optionally,
644 1.2 ad * if we hold sleep locks.
645 1.2 ad */
646 1.2 ad void
647 1.55 christos lockdebug_barrier(const char *func, size_t line, volatile void *spinlock,
648 1.55 christos int slplocks)
649 1.2 ad {
650 1.2 ad struct lwp *l = curlwp;
651 1.2 ad lockdebug_t *ld;
652 1.34 ad int s;
653 1.2 ad
654 1.27 ad if (panicstr != NULL || ld_panic)
655 1.2 ad return;
656 1.2 ad
657 1.34 ad s = splhigh();
658 1.34 ad if ((l->l_pflag & LP_INTR) == 0) {
659 1.34 ad TAILQ_FOREACH(ld, &curcpu()->ci_data.cpu_ld_locks, ld_chain) {
660 1.2 ad if (ld->ld_lock == spinlock) {
661 1.2 ad continue;
662 1.2 ad }
663 1.34 ad __cpu_simple_lock(&ld->ld_spinlock);
664 1.55 christos lockdebug_abort1(func, line, ld, s,
665 1.34 ad "spin lock held", true);
666 1.34 ad return;
667 1.2 ad }
668 1.2 ad }
669 1.34 ad if (slplocks) {
670 1.34 ad splx(s);
671 1.34 ad return;
672 1.34 ad }
673 1.34 ad if ((ld = TAILQ_FIRST(&l->l_ld_locks)) != NULL) {
674 1.34 ad __cpu_simple_lock(&ld->ld_spinlock);
675 1.55 christos lockdebug_abort1(func, line, ld, s, "sleep lock held", true);
676 1.34 ad return;
677 1.34 ad }
678 1.34 ad splx(s);
679 1.34 ad if (l->l_shlocks != 0) {
680 1.52 christos TAILQ_FOREACH(ld, &ld_all, ld_achain) {
681 1.52 christos if (ld->ld_lockops->lo_type == LOCKOPS_CV)
682 1.52 christos continue;
683 1.52 christos if (ld->ld_lwp == l)
684 1.52 christos lockdebug_dump(ld, printf);
685 1.52 christos }
686 1.55 christos panic("%s,%zu: holding %d shared locks", func, line,
687 1.55 christos l->l_shlocks);
688 1.2 ad }
689 1.2 ad }
690 1.2 ad
691 1.2 ad /*
692 1.10 ad * lockdebug_mem_check:
693 1.10 ad *
694 1.10 ad * Check for in-use locks within a memory region that is
695 1.16 yamt * being freed.
696 1.10 ad */
697 1.10 ad void
698 1.55 christos lockdebug_mem_check(const char *func, size_t line, void *base, size_t sz)
699 1.10 ad {
700 1.16 yamt lockdebug_t *ld;
701 1.34 ad struct cpu_info *ci;
702 1.23 ad int s;
703 1.10 ad
704 1.27 ad if (panicstr != NULL || ld_panic)
705 1.24 ad return;
706 1.24 ad
707 1.34 ad s = splhigh();
708 1.34 ad ci = curcpu();
709 1.34 ad __cpu_simple_lock(&ci->ci_data.cpu_ld_lock);
710 1.16 yamt ld = (lockdebug_t *)rb_tree_find_node_geq(&ld_rb_tree, base);
711 1.23 ad if (ld != NULL) {
712 1.23 ad const uintptr_t lock = (uintptr_t)ld->ld_lock;
713 1.23 ad
714 1.23 ad if ((uintptr_t)base > lock)
715 1.55 christos panic("%s,%zu: corrupt tree ld=%p, base=%p, sz=%zu",
716 1.55 christos func, line, ld, base, sz);
717 1.23 ad if (lock >= (uintptr_t)base + sz)
718 1.23 ad ld = NULL;
719 1.23 ad }
720 1.34 ad __cpu_simple_unlock(&ci->ci_data.cpu_ld_lock);
721 1.34 ad if (ld != NULL) {
722 1.34 ad __cpu_simple_lock(&ld->ld_spinlock);
723 1.55 christos lockdebug_abort1(func, line, ld, s,
724 1.34 ad "allocation contains active lock", !cold);
725 1.16 yamt return;
726 1.34 ad }
727 1.34 ad splx(s);
728 1.10 ad }
729 1.10 ad
730 1.10 ad /*
731 1.2 ad * lockdebug_dump:
732 1.2 ad *
733 1.2 ad * Dump information about a lock on panic, or for DDB.
734 1.2 ad */
735 1.2 ad static void
736 1.47 christos lockdebug_dump(lockdebug_t *ld, void (*pr)(const char *, ...)
737 1.47 christos __printflike(1, 2))
738 1.2 ad {
739 1.2 ad int sleeper = (ld->ld_flags & LD_SLEEPER);
740 1.2 ad
741 1.2 ad (*pr)(
742 1.2 ad "lock address : %#018lx type : %18s\n"
743 1.35 ad "initialized : %#018lx",
744 1.2 ad (long)ld->ld_lock, (sleeper ? "sleep/adaptive" : "spin"),
745 1.10 ad (long)ld->ld_initaddr);
746 1.2 ad
747 1.35 ad if (ld->ld_lockops->lo_type == LOCKOPS_CV) {
748 1.48 njoly (*pr)(" interlock: %#018lx\n", (long)ld->ld_locked);
749 1.35 ad } else {
750 1.35 ad (*pr)("\n"
751 1.35 ad "shared holds : %18u exclusive: %18u\n"
752 1.35 ad "shares wanted: %18u exclusive: %18u\n"
753 1.35 ad "current cpu : %18u last held: %18u\n"
754 1.35 ad "current lwp : %#018lx last held: %#018lx\n"
755 1.44 matt "last locked%c : %#018lx unlocked%c: %#018lx\n",
756 1.35 ad (unsigned)ld->ld_shares, ((ld->ld_flags & LD_LOCKED) != 0),
757 1.35 ad (unsigned)ld->ld_shwant, (unsigned)ld->ld_exwant,
758 1.40 rmind (unsigned)cpu_index(curcpu()), (unsigned)ld->ld_cpu,
759 1.35 ad (long)curlwp, (long)ld->ld_lwp,
760 1.44 matt ((ld->ld_flags & LD_LOCKED) ? '*' : ' '),
761 1.44 matt (long)ld->ld_locked,
762 1.44 matt ((ld->ld_flags & LD_LOCKED) ? ' ' : '*'),
763 1.44 matt (long)ld->ld_unlocked);
764 1.35 ad }
765 1.35 ad
766 1.2 ad if (ld->ld_lockops->lo_dump != NULL)
767 1.2 ad (*ld->ld_lockops->lo_dump)(ld->ld_lock);
768 1.2 ad
769 1.2 ad if (sleeper) {
770 1.2 ad (*pr)("\n");
771 1.2 ad turnstile_print(ld->ld_lock, pr);
772 1.2 ad }
773 1.2 ad }
774 1.2 ad
775 1.2 ad /*
776 1.27 ad * lockdebug_abort1:
777 1.2 ad *
778 1.27 ad * An error has been trapped - dump lock info and panic.
779 1.2 ad */
780 1.5 ad static void
781 1.55 christos lockdebug_abort1(const char *func, size_t line, lockdebug_t *ld, int s,
782 1.10 ad const char *msg, bool dopanic)
783 1.2 ad {
784 1.2 ad
785 1.27 ad /*
786 1.46 christos * Don't make the situation worse if the system is already going
787 1.27 ad * down in flames. Once a panic is triggered, lockdebug state
788 1.27 ad * becomes stale and cannot be trusted.
789 1.27 ad */
790 1.27 ad if (atomic_inc_uint_nv(&ld_panic) != 1) {
791 1.34 ad __cpu_simple_unlock(&ld->ld_spinlock);
792 1.34 ad splx(s);
793 1.27 ad return;
794 1.27 ad }
795 1.27 ad
796 1.55 christos printf_nolog("%s error: %s,%zu: %s\n\n", ld->ld_lockops->lo_name,
797 1.55 christos func, line, msg);
798 1.2 ad lockdebug_dump(ld, printf_nolog);
799 1.34 ad __cpu_simple_unlock(&ld->ld_spinlock);
800 1.34 ad splx(s);
801 1.2 ad printf_nolog("\n");
802 1.10 ad if (dopanic)
803 1.55 christos panic("LOCKDEBUG: %s error: %s,%zu: %s",
804 1.55 christos ld->ld_lockops->lo_name, func, line, msg);
805 1.2 ad }
806 1.2 ad
807 1.2 ad #endif /* LOCKDEBUG */
808 1.2 ad
809 1.2 ad /*
810 1.2 ad * lockdebug_lock_print:
811 1.2 ad *
812 1.2 ad * Handle the DDB 'show lock' command.
813 1.2 ad */
814 1.2 ad #ifdef DDB
815 1.57.2.1 martin #include <machine/db_machdep.h>
816 1.57.2.1 martin #include <ddb/db_interface.h>
817 1.57.2.1 martin
818 1.2 ad void
819 1.2 ad lockdebug_lock_print(void *addr, void (*pr)(const char *, ...))
820 1.2 ad {
821 1.2 ad #ifdef LOCKDEBUG
822 1.2 ad lockdebug_t *ld;
823 1.2 ad
824 1.2 ad TAILQ_FOREACH(ld, &ld_all, ld_achain) {
825 1.41 dyoung if (ld->ld_lock == NULL)
826 1.41 dyoung continue;
827 1.41 dyoung if (addr == NULL || ld->ld_lock == addr) {
828 1.2 ad lockdebug_dump(ld, pr);
829 1.41 dyoung if (addr != NULL)
830 1.41 dyoung return;
831 1.2 ad }
832 1.2 ad }
833 1.41 dyoung if (addr != NULL) {
834 1.41 dyoung (*pr)("Sorry, no record of a lock with address %p found.\n",
835 1.41 dyoung addr);
836 1.41 dyoung }
837 1.2 ad #else
838 1.2 ad (*pr)("Sorry, kernel not built with the LOCKDEBUG option.\n");
839 1.2 ad #endif /* LOCKDEBUG */
840 1.2 ad }
841 1.57.2.1 martin
842 1.57.2.1 martin #ifdef LOCKDEBUG
843 1.57.2.1 martin static void
844 1.57.2.1 martin lockdebug_show_all_locks_lwp(void (*pr)(const char *, ...), bool show_trace)
845 1.57.2.1 martin {
846 1.57.2.1 martin struct proc *p;
847 1.57.2.1 martin
848 1.57.2.1 martin LIST_FOREACH(p, &allproc, p_list) {
849 1.57.2.1 martin struct lwp *l;
850 1.57.2.1 martin LIST_FOREACH(l, &p->p_lwps, l_sibling) {
851 1.57.2.1 martin lockdebug_t *ld;
852 1.57.2.1 martin const char *sym;
853 1.57.2.1 martin int i = 0;
854 1.57.2.1 martin if (TAILQ_EMPTY(&l->l_ld_locks))
855 1.57.2.1 martin continue;
856 1.57.2.1 martin (*pr)("Locks held by an LWP (%s):\n",
857 1.57.2.1 martin l->l_name ? l->l_name : p->p_comm);
858 1.57.2.1 martin TAILQ_FOREACH(ld, &l->l_ld_locks, ld_chain) {
859 1.57.2.1 martin ksyms_getname(NULL, &sym,
860 1.57.2.1 martin (vaddr_t)ld->ld_initaddr,
861 1.57.2.1 martin KSYMS_CLOSEST|KSYMS_PROC|KSYMS_ANY);
862 1.57.2.1 martin (*pr)("Lock %d (initialized at %s)\n", i++, sym);
863 1.57.2.1 martin lockdebug_dump(ld, pr);
864 1.57.2.1 martin }
865 1.57.2.1 martin if (show_trace) {
866 1.57.2.1 martin db_stack_trace_print((db_expr_t)(intptr_t)l,
867 1.57.2.1 martin true,
868 1.57.2.1 martin 32 /* Limit just in case */,
869 1.57.2.1 martin "a", pr);
870 1.57.2.1 martin }
871 1.57.2.1 martin (*pr)("\n");
872 1.57.2.1 martin }
873 1.57.2.1 martin }
874 1.57.2.1 martin }
875 1.57.2.1 martin
876 1.57.2.1 martin static void
877 1.57.2.1 martin lockdebug_show_all_locks_cpu(void (*pr)(const char *, ...), bool show_trace)
878 1.57.2.1 martin {
879 1.57.2.1 martin lockdebug_t *ld;
880 1.57.2.1 martin CPU_INFO_ITERATOR cii;
881 1.57.2.1 martin struct cpu_info *ci;
882 1.57.2.1 martin const char *sym;
883 1.57.2.1 martin
884 1.57.2.1 martin for (CPU_INFO_FOREACH(cii, ci)) {
885 1.57.2.1 martin int i = 0;
886 1.57.2.1 martin if (TAILQ_EMPTY(&ci->ci_data.cpu_ld_locks))
887 1.57.2.1 martin continue;
888 1.57.2.1 martin (*pr)("Locks held on CPU %u:\n", ci->ci_index);
889 1.57.2.1 martin TAILQ_FOREACH(ld, &ci->ci_data.cpu_ld_locks, ld_chain) {
890 1.57.2.1 martin ksyms_getname(NULL, &sym,
891 1.57.2.1 martin (vaddr_t)ld->ld_initaddr,
892 1.57.2.1 martin KSYMS_CLOSEST|KSYMS_PROC|KSYMS_ANY);
893 1.57.2.1 martin (*pr)("Lock %d (initialized at %s)\n", i++, sym);
894 1.57.2.1 martin lockdebug_dump(ld, pr);
895 1.57.2.1 martin if (show_trace) {
896 1.57.2.1 martin db_stack_trace_print(
897 1.57.2.1 martin (db_expr_t)(intptr_t)ci->ci_curlwp,
898 1.57.2.1 martin true,
899 1.57.2.1 martin 32 /* Limit just in case */,
900 1.57.2.1 martin "a", pr);
901 1.57.2.1 martin }
902 1.57.2.1 martin (*pr)("\n");
903 1.57.2.1 martin }
904 1.57.2.1 martin }
905 1.57.2.1 martin }
906 1.57.2.1 martin #endif /* LOCKDEBUG */
907 1.57.2.1 martin
908 1.57.2.1 martin void
909 1.57.2.1 martin lockdebug_show_all_locks(void (*pr)(const char *, ...), const char *modif)
910 1.57.2.1 martin {
911 1.57.2.1 martin #ifdef LOCKDEBUG
912 1.57.2.1 martin bool show_trace = false;
913 1.57.2.1 martin if (modif[0] == 't')
914 1.57.2.1 martin show_trace = true;
915 1.57.2.1 martin
916 1.57.2.1 martin (*pr)("[Locks tracked through LWPs]\n");
917 1.57.2.1 martin lockdebug_show_all_locks_lwp(pr, show_trace);
918 1.57.2.1 martin (*pr)("\n");
919 1.57.2.1 martin
920 1.57.2.1 martin (*pr)("[Locks tracked through CPUs]\n");
921 1.57.2.1 martin lockdebug_show_all_locks_cpu(pr, show_trace);
922 1.57.2.1 martin (*pr)("\n");
923 1.57.2.1 martin #else
924 1.57.2.1 martin (*pr)("Sorry, kernel not built with the LOCKDEBUG option.\n");
925 1.57.2.1 martin #endif /* LOCKDEBUG */
926 1.57.2.1 martin }
927 1.57.2.1 martin
928 1.57.2.1 martin void
929 1.57.2.1 martin lockdebug_show_lockstats(void (*pr)(const char *, ...))
930 1.57.2.1 martin {
931 1.57.2.1 martin #ifdef LOCKDEBUG
932 1.57.2.1 martin lockdebug_t *ld;
933 1.57.2.1 martin void *_ld;
934 1.57.2.1 martin uint32_t n_null = 0;
935 1.57.2.1 martin uint32_t n_spin_mutex = 0;
936 1.57.2.1 martin uint32_t n_adaptive_mutex = 0;
937 1.57.2.1 martin uint32_t n_rwlock = 0;
938 1.57.2.1 martin uint32_t n_cv = 0;
939 1.57.2.1 martin uint32_t n_others = 0;
940 1.57.2.1 martin
941 1.57.2.1 martin RB_TREE_FOREACH(_ld, &ld_rb_tree) {
942 1.57.2.1 martin ld = _ld;
943 1.57.2.1 martin if (ld->ld_lock == NULL) {
944 1.57.2.1 martin n_null++;
945 1.57.2.1 martin continue;
946 1.57.2.1 martin }
947 1.57.2.1 martin if (ld->ld_lockops->lo_type == LOCKOPS_CV) {
948 1.57.2.1 martin n_cv++;
949 1.57.2.1 martin continue;
950 1.57.2.1 martin }
951 1.57.2.1 martin if (ld->ld_lockops->lo_name[0] == 'M') {
952 1.57.2.1 martin if (ld->ld_lockops->lo_type == LOCKOPS_SLEEP)
953 1.57.2.1 martin n_adaptive_mutex++;
954 1.57.2.1 martin else
955 1.57.2.1 martin n_spin_mutex++;
956 1.57.2.1 martin continue;
957 1.57.2.1 martin }
958 1.57.2.1 martin if (ld->ld_lockops->lo_name[0] == 'R') {
959 1.57.2.1 martin n_rwlock++;
960 1.57.2.1 martin continue;
961 1.57.2.1 martin }
962 1.57.2.1 martin n_others++;
963 1.57.2.1 martin }
964 1.57.2.1 martin (*pr)(
965 1.57.2.1 martin "condvar: %u\n"
966 1.57.2.1 martin "spin mutex: %u\n"
967 1.57.2.1 martin "adaptive mutex: %u\n"
968 1.57.2.1 martin "rwlock: %u\n"
969 1.57.2.1 martin "null locks: %u\n"
970 1.57.2.1 martin "others: %u\n",
971 1.57.2.1 martin n_cv, n_spin_mutex, n_adaptive_mutex, n_rwlock,
972 1.57.2.1 martin n_null, n_others);
973 1.57.2.1 martin #else
974 1.57.2.1 martin (*pr)("Sorry, kernel not built with the LOCKDEBUG option.\n");
975 1.57.2.1 martin #endif /* LOCKDEBUG */
976 1.57.2.1 martin }
977 1.2 ad #endif /* DDB */
978 1.2 ad
979 1.2 ad /*
980 1.57.2.2 martin * lockdebug_dismiss:
981 1.57.2.2 martin *
982 1.57.2.2 martin * The system is rebooting, and potentially from an unsafe
983 1.57.2.2 martin * place so avoid any future aborts.
984 1.57.2.2 martin */
985 1.57.2.2 martin void
986 1.57.2.2 martin lockdebug_dismiss(void)
987 1.57.2.2 martin {
988 1.57.2.2 martin
989 1.57.2.2 martin atomic_inc_uint_nv(&ld_panic);
990 1.57.2.2 martin }
991 1.57.2.2 martin
992 1.57.2.2 martin /*
993 1.2 ad * lockdebug_abort:
994 1.2 ad *
995 1.2 ad * An error has been trapped - dump lock info and call panic().
996 1.2 ad */
997 1.2 ad void
998 1.55 christos lockdebug_abort(const char *func, size_t line, volatile void *lock,
999 1.55 christos lockops_t *ops, const char *msg)
1000 1.2 ad {
1001 1.2 ad #ifdef LOCKDEBUG
1002 1.2 ad lockdebug_t *ld;
1003 1.34 ad int s;
1004 1.2 ad
1005 1.34 ad s = splhigh();
1006 1.55 christos if ((ld = lockdebug_lookup(func, line, lock,
1007 1.38 rafal (uintptr_t) __builtin_return_address(0))) != NULL) {
1008 1.55 christos lockdebug_abort1(func, line, ld, s, msg, true);
1009 1.34 ad return;
1010 1.2 ad }
1011 1.34 ad splx(s);
1012 1.2 ad #endif /* LOCKDEBUG */
1013 1.2 ad
1014 1.27 ad /*
1015 1.27 ad * Complain first on the occurrance only. Otherwise proceeed to
1016 1.27 ad * panic where we will `rendezvous' with other CPUs if the machine
1017 1.27 ad * is going down in flames.
1018 1.27 ad */
1019 1.27 ad if (atomic_inc_uint_nv(&ld_panic) == 1) {
1020 1.55 christos printf_nolog("%s error: %s,%zu: %s\n\n"
1021 1.27 ad "lock address : %#018lx\n"
1022 1.27 ad "current cpu : %18d\n"
1023 1.27 ad "current lwp : %#018lx\n",
1024 1.55 christos ops->lo_name, func, line, msg, (long)lock,
1025 1.40 rmind (int)cpu_index(curcpu()), (long)curlwp);
1026 1.27 ad (*ops->lo_dump)(lock);
1027 1.27 ad printf_nolog("\n");
1028 1.27 ad }
1029 1.2 ad
1030 1.55 christos panic("lock error: %s: %s,%zu: %s: lock %p cpu %d lwp %p",
1031 1.55 christos ops->lo_name, func, line, msg, lock, cpu_index(curcpu()), curlwp);
1032 1.2 ad }
1033