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1 #define	JEMALLOC_TCACHE_C_
2 #include "jemalloc/internal/jemalloc_internal.h"
3 
4 /******************************************************************************/
5 /* Data. */
6 
7 malloc_tsd_data(, tcache, tcache_t *, NULL)
8 malloc_tsd_data(, tcache_enabled, tcache_enabled_t, tcache_enabled_default)
9 
10 bool	opt_tcache = true;
11 ssize_t	opt_lg_tcache_max = LG_TCACHE_MAXCLASS_DEFAULT;
12 
13 tcache_bin_info_t	*tcache_bin_info;
14 static unsigned		stack_nelms; /* Total stack elms per tcache. */
15 
16 size_t			nhbins;
17 size_t			tcache_maxclass;
18 
19 /******************************************************************************/
20 
tcache_salloc(const void * ptr)21 size_t	tcache_salloc(const void *ptr)
22 {
23 
24 	return (arena_salloc(ptr, false));
25 }
26 
27 void
tcache_event_hard(tcache_t * tcache)28 tcache_event_hard(tcache_t *tcache)
29 {
30 	size_t binind = tcache->next_gc_bin;
31 	tcache_bin_t *tbin = &tcache->tbins[binind];
32 	tcache_bin_info_t *tbin_info = &tcache_bin_info[binind];
33 
34 	if (tbin->low_water > 0) {
35 		/*
36 		 * Flush (ceiling) 3/4 of the objects below the low water mark.
37 		 */
38 		if (binind < NBINS) {
39 			tcache_bin_flush_small(tbin, binind, tbin->ncached -
40 			    tbin->low_water + (tbin->low_water >> 2), tcache);
41 		} else {
42 			tcache_bin_flush_large(tbin, binind, tbin->ncached -
43 			    tbin->low_water + (tbin->low_water >> 2), tcache);
44 		}
45 		/*
46 		 * Reduce fill count by 2X.  Limit lg_fill_div such that the
47 		 * fill count is always at least 1.
48 		 */
49 		if ((tbin_info->ncached_max >> (tbin->lg_fill_div+1)) >= 1)
50 			tbin->lg_fill_div++;
51 	} else if (tbin->low_water < 0) {
52 		/*
53 		 * Increase fill count by 2X.  Make sure lg_fill_div stays
54 		 * greater than 0.
55 		 */
56 		if (tbin->lg_fill_div > 1)
57 			tbin->lg_fill_div--;
58 	}
59 	tbin->low_water = tbin->ncached;
60 
61 	tcache->next_gc_bin++;
62 	if (tcache->next_gc_bin == nhbins)
63 		tcache->next_gc_bin = 0;
64 	tcache->ev_cnt = 0;
65 }
66 
67 void *
tcache_alloc_small_hard(tcache_t * tcache,tcache_bin_t * tbin,size_t binind)68 tcache_alloc_small_hard(tcache_t *tcache, tcache_bin_t *tbin, size_t binind)
69 {
70 	void *ret;
71 
72 	arena_tcache_fill_small(tcache->arena, tbin, binind,
73 	    config_prof ? tcache->prof_accumbytes : 0);
74 	if (config_prof)
75 		tcache->prof_accumbytes = 0;
76 	ret = tcache_alloc_easy(tbin);
77 
78 	return (ret);
79 }
80 
81 void
tcache_bin_flush_small(tcache_bin_t * tbin,size_t binind,unsigned rem,tcache_t * tcache)82 tcache_bin_flush_small(tcache_bin_t *tbin, size_t binind, unsigned rem,
83     tcache_t *tcache)
84 {
85 	void *ptr;
86 	unsigned i, nflush, ndeferred;
87 	bool merged_stats = false;
88 
89 	assert(binind < NBINS);
90 	assert(rem <= tbin->ncached);
91 
92 	for (nflush = tbin->ncached - rem; nflush > 0; nflush = ndeferred) {
93 		/* Lock the arena bin associated with the first object. */
94 		arena_chunk_t *chunk = (arena_chunk_t *)CHUNK_ADDR2BASE(
95 		    tbin->avail[0]);
96 		arena_t *arena = chunk->arena;
97 		arena_bin_t *bin = &arena->bins[binind];
98 
99 		if (config_prof && arena == tcache->arena) {
100 			if (arena_prof_accum(arena, tcache->prof_accumbytes))
101 				prof_idump();
102 			tcache->prof_accumbytes = 0;
103 		}
104 
105 		malloc_mutex_lock(&bin->lock);
106 		if (config_stats && arena == tcache->arena) {
107 			assert(merged_stats == false);
108 			merged_stats = true;
109 			bin->stats.nflushes++;
110 			bin->stats.nrequests += tbin->tstats.nrequests;
111 			tbin->tstats.nrequests = 0;
112 		}
113 		ndeferred = 0;
114 		for (i = 0; i < nflush; i++) {
115 			ptr = tbin->avail[i];
116 			assert(ptr != NULL);
117 			chunk = (arena_chunk_t *)CHUNK_ADDR2BASE(ptr);
118 			if (chunk->arena == arena) {
119 				size_t pageind = ((uintptr_t)ptr -
120 				    (uintptr_t)chunk) >> LG_PAGE;
121 				arena_chunk_map_t *mapelm =
122 				    arena_mapp_get(chunk, pageind);
123 				if (config_fill && opt_junk) {
124 					arena_alloc_junk_small(ptr,
125 					    &arena_bin_info[binind], true);
126 				}
127 				arena_dalloc_bin_locked(arena, chunk, ptr,
128 				    mapelm);
129 			} else {
130 				/*
131 				 * This object was allocated via a different
132 				 * arena bin than the one that is currently
133 				 * locked.  Stash the object, so that it can be
134 				 * handled in a future pass.
135 				 */
136 				tbin->avail[ndeferred] = ptr;
137 				ndeferred++;
138 			}
139 		}
140 		malloc_mutex_unlock(&bin->lock);
141 	}
142 	if (config_stats && merged_stats == false) {
143 		/*
144 		 * The flush loop didn't happen to flush to this thread's
145 		 * arena, so the stats didn't get merged.  Manually do so now.
146 		 */
147 		arena_bin_t *bin = &tcache->arena->bins[binind];
148 		malloc_mutex_lock(&bin->lock);
149 		bin->stats.nflushes++;
150 		bin->stats.nrequests += tbin->tstats.nrequests;
151 		tbin->tstats.nrequests = 0;
152 		malloc_mutex_unlock(&bin->lock);
153 	}
154 
155 	memmove(tbin->avail, &tbin->avail[tbin->ncached - rem],
156 	    rem * sizeof(void *));
157 	tbin->ncached = rem;
158 	if ((int)tbin->ncached < tbin->low_water)
159 		tbin->low_water = tbin->ncached;
160 }
161 
162 void
tcache_bin_flush_large(tcache_bin_t * tbin,size_t binind,unsigned rem,tcache_t * tcache)163 tcache_bin_flush_large(tcache_bin_t *tbin, size_t binind, unsigned rem,
164     tcache_t *tcache)
165 {
166 	void *ptr;
167 	unsigned i, nflush, ndeferred;
168 	bool merged_stats = false;
169 
170 	assert(binind < nhbins);
171 	assert(rem <= tbin->ncached);
172 
173 	for (nflush = tbin->ncached - rem; nflush > 0; nflush = ndeferred) {
174 		/* Lock the arena associated with the first object. */
175 		arena_chunk_t *chunk = (arena_chunk_t *)CHUNK_ADDR2BASE(
176 		    tbin->avail[0]);
177 		arena_t *arena = chunk->arena;
178 		UNUSED bool idump;
179 
180 		if (config_prof)
181 			idump = false;
182 		malloc_mutex_lock(&arena->lock);
183 		if ((config_prof || config_stats) && arena == tcache->arena) {
184 			if (config_prof) {
185 				idump = arena_prof_accum_locked(arena,
186 				    tcache->prof_accumbytes);
187 				tcache->prof_accumbytes = 0;
188 			}
189 			if (config_stats) {
190 				merged_stats = true;
191 				arena->stats.nrequests_large +=
192 				    tbin->tstats.nrequests;
193 				arena->stats.lstats[binind - NBINS].nrequests +=
194 				    tbin->tstats.nrequests;
195 				tbin->tstats.nrequests = 0;
196 			}
197 		}
198 		ndeferred = 0;
199 		for (i = 0; i < nflush; i++) {
200 			ptr = tbin->avail[i];
201 			assert(ptr != NULL);
202 			chunk = (arena_chunk_t *)CHUNK_ADDR2BASE(ptr);
203 			if (chunk->arena == arena)
204 				arena_dalloc_large_locked(arena, chunk, ptr);
205 			else {
206 				/*
207 				 * This object was allocated via a different
208 				 * arena than the one that is currently locked.
209 				 * Stash the object, so that it can be handled
210 				 * in a future pass.
211 				 */
212 				tbin->avail[ndeferred] = ptr;
213 				ndeferred++;
214 			}
215 		}
216 		malloc_mutex_unlock(&arena->lock);
217 		if (config_prof && idump)
218 			prof_idump();
219 	}
220 	if (config_stats && merged_stats == false) {
221 		/*
222 		 * The flush loop didn't happen to flush to this thread's
223 		 * arena, so the stats didn't get merged.  Manually do so now.
224 		 */
225 		arena_t *arena = tcache->arena;
226 		malloc_mutex_lock(&arena->lock);
227 		arena->stats.nrequests_large += tbin->tstats.nrequests;
228 		arena->stats.lstats[binind - NBINS].nrequests +=
229 		    tbin->tstats.nrequests;
230 		tbin->tstats.nrequests = 0;
231 		malloc_mutex_unlock(&arena->lock);
232 	}
233 
234 	memmove(tbin->avail, &tbin->avail[tbin->ncached - rem],
235 	    rem * sizeof(void *));
236 	tbin->ncached = rem;
237 	if ((int)tbin->ncached < tbin->low_water)
238 		tbin->low_water = tbin->ncached;
239 }
240 
241 void
tcache_arena_associate(tcache_t * tcache,arena_t * arena)242 tcache_arena_associate(tcache_t *tcache, arena_t *arena)
243 {
244 
245 	if (config_stats) {
246 		/* Link into list of extant tcaches. */
247 		malloc_mutex_lock(&arena->lock);
248 		ql_elm_new(tcache, link);
249 		ql_tail_insert(&arena->tcache_ql, tcache, link);
250 		malloc_mutex_unlock(&arena->lock);
251 	}
252 	tcache->arena = arena;
253 }
254 
255 void
tcache_arena_dissociate(tcache_t * tcache)256 tcache_arena_dissociate(tcache_t *tcache)
257 {
258 
259 	if (config_stats) {
260 		/* Unlink from list of extant tcaches. */
261 		malloc_mutex_lock(&tcache->arena->lock);
262 		ql_remove(&tcache->arena->tcache_ql, tcache, link);
263 		tcache_stats_merge(tcache, tcache->arena);
264 		malloc_mutex_unlock(&tcache->arena->lock);
265 	}
266 }
267 
268 tcache_t *
tcache_get_hard(tcache_t * tcache,bool create)269 tcache_get_hard(tcache_t *tcache, bool create)
270 {
271 
272 	if (tcache == NULL) {
273 		if (create == false) {
274 			/*
275 			 * Creating a tcache here would cause
276 			 * allocation as a side effect of free().
277 			 * Ordinarily that would be okay since
278 			 * tcache_create() failure is a soft failure
279 			 * that doesn't propagate.  However, if TLS
280 			 * data are freed via free() as in glibc,
281 			 * subtle corruption could result from setting
282 			 * a TLS variable after its backing memory is
283 			 * freed.
284 			 */
285 			return (NULL);
286 		}
287 		if (tcache_enabled_get() == false) {
288 			tcache_enabled_set(false); /* Memoize. */
289 			return (NULL);
290 		}
291 		return (tcache_create(choose_arena(NULL)));
292 	}
293 	if (tcache == TCACHE_STATE_PURGATORY) {
294 		/*
295 		 * Make a note that an allocator function was called
296 		 * after tcache_thread_cleanup() was called.
297 		 */
298 		tcache = TCACHE_STATE_REINCARNATED;
299 		tcache_tsd_set(&tcache);
300 		return (NULL);
301 	}
302 	if (tcache == TCACHE_STATE_REINCARNATED)
303 		return (NULL);
304 	not_reached();
305 	return (NULL);
306 }
307 
308 tcache_t *
tcache_create(arena_t * arena)309 tcache_create(arena_t *arena)
310 {
311 	tcache_t *tcache;
312 	size_t size, stack_offset;
313 	unsigned i;
314 
315 	size = offsetof(tcache_t, tbins) + (sizeof(tcache_bin_t) * nhbins);
316 	/* Naturally align the pointer stacks. */
317 	size = PTR_CEILING(size);
318 	stack_offset = size;
319 	size += stack_nelms * sizeof(void *);
320 	/*
321 	 * Round up to the nearest multiple of the cacheline size, in order to
322 	 * avoid the possibility of false cacheline sharing.
323 	 *
324 	 * That this works relies on the same logic as in ipalloc(), but we
325 	 * cannot directly call ipalloc() here due to tcache bootstrapping
326 	 * issues.
327 	 */
328 	size = (size + CACHELINE_MASK) & (-CACHELINE);
329 
330 	if (size <= SMALL_MAXCLASS)
331 		tcache = (tcache_t *)arena_malloc_small(arena, size, true);
332 	else if (size <= tcache_maxclass)
333 		tcache = (tcache_t *)arena_malloc_large(arena, size, true);
334 	else
335 		tcache = (tcache_t *)icalloct(size, false, arena);
336 
337 	if (tcache == NULL)
338 		return (NULL);
339 
340 	tcache_arena_associate(tcache, arena);
341 
342 	assert((TCACHE_NSLOTS_SMALL_MAX & 1U) == 0);
343 	for (i = 0; i < nhbins; i++) {
344 		tcache->tbins[i].lg_fill_div = 1;
345 		tcache->tbins[i].avail = (void **)((uintptr_t)tcache +
346 		    (uintptr_t)stack_offset);
347 		stack_offset += tcache_bin_info[i].ncached_max * sizeof(void *);
348 	}
349 
350 	tcache_tsd_set(&tcache);
351 
352 	return (tcache);
353 }
354 
355 void
tcache_destroy(tcache_t * tcache)356 tcache_destroy(tcache_t *tcache)
357 {
358 	unsigned i;
359 	size_t tcache_size;
360 
361 	tcache_arena_dissociate(tcache);
362 
363 	for (i = 0; i < NBINS; i++) {
364 		tcache_bin_t *tbin = &tcache->tbins[i];
365 		tcache_bin_flush_small(tbin, i, 0, tcache);
366 
367 		if (config_stats && tbin->tstats.nrequests != 0) {
368 			arena_t *arena = tcache->arena;
369 			arena_bin_t *bin = &arena->bins[i];
370 			malloc_mutex_lock(&bin->lock);
371 			bin->stats.nrequests += tbin->tstats.nrequests;
372 			malloc_mutex_unlock(&bin->lock);
373 		}
374 	}
375 
376 	for (; i < nhbins; i++) {
377 		tcache_bin_t *tbin = &tcache->tbins[i];
378 		tcache_bin_flush_large(tbin, i, 0, tcache);
379 
380 		if (config_stats && tbin->tstats.nrequests != 0) {
381 			arena_t *arena = tcache->arena;
382 			malloc_mutex_lock(&arena->lock);
383 			arena->stats.nrequests_large += tbin->tstats.nrequests;
384 			arena->stats.lstats[i - NBINS].nrequests +=
385 			    tbin->tstats.nrequests;
386 			malloc_mutex_unlock(&arena->lock);
387 		}
388 	}
389 
390 	if (config_prof && tcache->prof_accumbytes > 0 &&
391 	    arena_prof_accum(tcache->arena, tcache->prof_accumbytes))
392 		prof_idump();
393 
394 	tcache_size = arena_salloc(tcache, false);
395 	if (tcache_size <= SMALL_MAXCLASS) {
396 		arena_chunk_t *chunk = CHUNK_ADDR2BASE(tcache);
397 		arena_t *arena = chunk->arena;
398 		size_t pageind = ((uintptr_t)tcache - (uintptr_t)chunk) >>
399 		    LG_PAGE;
400 		arena_chunk_map_t *mapelm = arena_mapp_get(chunk, pageind);
401 
402 		arena_dalloc_bin(arena, chunk, tcache, pageind, mapelm);
403 	} else if (tcache_size <= tcache_maxclass) {
404 		arena_chunk_t *chunk = CHUNK_ADDR2BASE(tcache);
405 		arena_t *arena = chunk->arena;
406 
407 		arena_dalloc_large(arena, chunk, tcache);
408 	} else
409 		idalloct(tcache, false);
410 }
411 
412 void
tcache_thread_cleanup(void * arg)413 tcache_thread_cleanup(void *arg)
414 {
415 	tcache_t *tcache = *(tcache_t **)arg;
416 
417 	if (tcache == TCACHE_STATE_DISABLED) {
418 		/* Do nothing. */
419 	} else if (tcache == TCACHE_STATE_REINCARNATED) {
420 		/*
421 		 * Another destructor called an allocator function after this
422 		 * destructor was called.  Reset tcache to
423 		 * TCACHE_STATE_PURGATORY in order to receive another callback.
424 		 */
425 		tcache = TCACHE_STATE_PURGATORY;
426 		tcache_tsd_set(&tcache);
427 	} else if (tcache == TCACHE_STATE_PURGATORY) {
428 		/*
429 		 * The previous time this destructor was called, we set the key
430 		 * to TCACHE_STATE_PURGATORY so that other destructors wouldn't
431 		 * cause re-creation of the tcache.  This time, do nothing, so
432 		 * that the destructor will not be called again.
433 		 */
434 	} else if (tcache != NULL) {
435 		assert(tcache != TCACHE_STATE_PURGATORY);
436 		tcache_destroy(tcache);
437 		tcache = TCACHE_STATE_PURGATORY;
438 		tcache_tsd_set(&tcache);
439 	}
440 }
441 
442 /* Caller must own arena->lock. */
443 void
tcache_stats_merge(tcache_t * tcache,arena_t * arena)444 tcache_stats_merge(tcache_t *tcache, arena_t *arena)
445 {
446 	unsigned i;
447 
448 	cassert(config_stats);
449 
450 	/* Merge and reset tcache stats. */
451 	for (i = 0; i < NBINS; i++) {
452 		arena_bin_t *bin = &arena->bins[i];
453 		tcache_bin_t *tbin = &tcache->tbins[i];
454 		malloc_mutex_lock(&bin->lock);
455 		bin->stats.nrequests += tbin->tstats.nrequests;
456 		malloc_mutex_unlock(&bin->lock);
457 		tbin->tstats.nrequests = 0;
458 	}
459 
460 	for (; i < nhbins; i++) {
461 		malloc_large_stats_t *lstats = &arena->stats.lstats[i - NBINS];
462 		tcache_bin_t *tbin = &tcache->tbins[i];
463 		arena->stats.nrequests_large += tbin->tstats.nrequests;
464 		lstats->nrequests += tbin->tstats.nrequests;
465 		tbin->tstats.nrequests = 0;
466 	}
467 }
468 
469 bool
tcache_boot0(void)470 tcache_boot0(void)
471 {
472 	unsigned i;
473 
474 	/*
475 	 * If necessary, clamp opt_lg_tcache_max, now that arena_maxclass is
476 	 * known.
477 	 */
478 	if (opt_lg_tcache_max < 0 || (1U << opt_lg_tcache_max) < SMALL_MAXCLASS)
479 		tcache_maxclass = SMALL_MAXCLASS;
480 	else if ((1U << opt_lg_tcache_max) > arena_maxclass)
481 		tcache_maxclass = arena_maxclass;
482 	else
483 		tcache_maxclass = (1U << opt_lg_tcache_max);
484 
485 	nhbins = NBINS + (tcache_maxclass >> LG_PAGE);
486 
487 	/* Initialize tcache_bin_info. */
488 	tcache_bin_info = (tcache_bin_info_t *)base_alloc(nhbins *
489 	    sizeof(tcache_bin_info_t));
490 	if (tcache_bin_info == NULL)
491 		return (true);
492 	stack_nelms = 0;
493 	for (i = 0; i < NBINS; i++) {
494 		if ((arena_bin_info[i].nregs << 1) <= TCACHE_NSLOTS_SMALL_MAX) {
495 			tcache_bin_info[i].ncached_max =
496 			    (arena_bin_info[i].nregs << 1);
497 		} else {
498 			tcache_bin_info[i].ncached_max =
499 			    TCACHE_NSLOTS_SMALL_MAX;
500 		}
501 		stack_nelms += tcache_bin_info[i].ncached_max;
502 	}
503 	for (; i < nhbins; i++) {
504 		tcache_bin_info[i].ncached_max = TCACHE_NSLOTS_LARGE;
505 		stack_nelms += tcache_bin_info[i].ncached_max;
506 	}
507 
508 	return (false);
509 }
510 
511 bool
tcache_boot1(void)512 tcache_boot1(void)
513 {
514 
515 	if (tcache_tsd_boot() || tcache_enabled_tsd_boot())
516 		return (true);
517 
518 	return (false);
519 }
520