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00025 #include "config.h"
00026 #include "system.h"
00027 #include "coretypes.h"
00028 #include "hashtab.h"
00029 #include "ggc.h"
00030 #include "toplev.h"
00031 #include "params.h"
00032 #include "hosthooks.h"
00033 #include "hosthooks-def.h"
00034
00035 #ifdef HAVE_SYS_RESOURCE_H
00036 # include <sys/resource.h>
00037 #endif
00038
00039 #ifdef HAVE_MMAP_FILE
00040 # include <sys/mman.h>
00041 # ifdef HAVE_MINCORE
00042
00043 # include <sys/types.h>
00044 # endif
00045 #endif
00046
00047 #ifndef MAP_FAILED
00048 # define MAP_FAILED ((void *)-1)
00049 #endif
00050
00051 #ifdef ENABLE_VALGRIND_CHECKING
00052 # ifdef HAVE_VALGRIND_MEMCHECK_H
00053 # include <valgrind/memcheck.h>
00054 # elif defined HAVE_MEMCHECK_H
00055 # include <memcheck.h>
00056 # else
00057 # include <valgrind.h>
00058 # endif
00059 #else
00060
00061 #define VALGRIND_DISCARD(x)
00062 #endif
00063
00064
00065 bool ggc_force_collect;
00066
00067
00068 static ggc_statistics *ggc_stats;
00069
00070 struct traversal_state;
00071
00072 static int ggc_htab_delete (void **, void *);
00073 static hashval_t saving_htab_hash (const void *);
00074 static int saving_htab_eq (const void *, const void *);
00075 static int call_count (void **, void *);
00076 static int call_alloc (void **, void *);
00077 static int compare_ptr_data (const void *, const void *);
00078 static void relocate_ptrs (void *, void *);
00079 static void write_pch_globals (const struct ggc_root_tab * const *tab,
00080 struct traversal_state *state);
00081 static double ggc_rlimit_bound (double);
00082
00083
00084
00085
00086
00087 static int
00088 ggc_htab_delete (void **slot, void *info)
00089 {
00090 const struct ggc_cache_tab *r = (const struct ggc_cache_tab *) info;
00091
00092 if (! (*r->marked_p) (*slot))
00093 htab_clear_slot (*r->base, slot);
00094 else
00095 (*r->cb) (*slot);
00096
00097 return 1;
00098 }
00099
00100
00101
00102 void
00103 ggc_mark_roots (void)
00104 {
00105 const struct ggc_root_tab *const *rt;
00106 const struct ggc_root_tab *rti;
00107 const struct ggc_cache_tab *const *ct;
00108 const struct ggc_cache_tab *cti;
00109 size_t i;
00110
00111 for (rt = gt_ggc_deletable_rtab; *rt; rt++)
00112 for (rti = *rt; rti->base != NULL; rti++)
00113 memset (rti->base, 0, rti->stride);
00114
00115 for (rt = gt_ggc_rtab; *rt; rt++)
00116 for (rti = *rt; rti->base != NULL; rti++)
00117 for (i = 0; i < rti->nelt; i++)
00118 (*rti->cb)(*(void **)((char *)rti->base + rti->stride * i));
00119
00120 ggc_mark_stringpool ();
00121
00122
00123
00124 for (ct = gt_ggc_cache_rtab; *ct; ct++)
00125 for (cti = *ct; cti->base != NULL; cti++)
00126 if (*cti->base)
00127 {
00128 ggc_set_mark (*cti->base);
00129 htab_traverse_noresize (*cti->base, ggc_htab_delete, (void *) cti);
00130 ggc_set_mark ((*cti->base)->entries);
00131 }
00132 }
00133
00134
00135 void *
00136 ggc_alloc_cleared_stat (size_t size MEM_STAT_DECL)
00137 {
00138 void *buf = ggc_alloc_stat (size PASS_MEM_STAT);
00139 memset (buf, 0, size);
00140 return buf;
00141 }
00142
00143
00144 void *
00145 ggc_realloc_stat (void *x, size_t size MEM_STAT_DECL)
00146 {
00147 void *r;
00148 size_t old_size;
00149
00150 if (x == NULL)
00151 return ggc_alloc_stat (size PASS_MEM_STAT);
00152
00153 old_size = ggc_get_size (x);
00154
00155 if (size <= old_size)
00156 {
00157
00158
00159
00160
00161
00162
00163
00164
00165
00166
00167 VALGRIND_DISCARD (VALGRIND_MAKE_NOACCESS ((char *) x + size,
00168 old_size - size));
00169 VALGRIND_DISCARD (VALGRIND_MAKE_READABLE (x, size));
00170 return x;
00171 }
00172
00173 r = ggc_alloc_stat (size PASS_MEM_STAT);
00174
00175
00176
00177
00178
00179 VALGRIND_DISCARD (VALGRIND_MAKE_READABLE (x, old_size));
00180
00181 memcpy (r, x, old_size);
00182
00183
00184 ggc_free (x);
00185
00186 return r;
00187 }
00188
00189
00190 void *
00191 ggc_calloc (size_t s1, size_t s2)
00192 {
00193 return ggc_alloc_cleared (s1 * s2);
00194 }
00195
00196
00197 void *
00198 ggc_splay_alloc (int sz, void *nl)
00199 {
00200 gcc_assert (!nl);
00201 return ggc_alloc (sz);
00202 }
00203
00204 void
00205 ggc_splay_dont_free (void * x ATTRIBUTE_UNUSED, void *nl)
00206 {
00207 gcc_assert (!nl);
00208 }
00209
00210
00211 #define SCALE(x) ((unsigned long) ((x) < 1024*10 \
00212 ? (x) \
00213 : ((x) < 1024*1024*10 \
00214 ? (x) / 1024 \
00215 : (x) / (1024*1024))))
00216 #define LABEL(x) ((x) < 1024*10 ? ' ' : ((x) < 1024*1024*10 ? 'k' : 'M'))
00217
00218 void
00219 ggc_print_common_statistics (FILE *stream ATTRIBUTE_UNUSED,
00220 ggc_statistics *stats)
00221 {
00222
00223
00224 ggc_stats = stats;
00225
00226
00227 ggc_collect ();
00228
00229
00230
00231
00232 ggc_stats = NULL;
00233 }
00234
00235
00236
00237 static htab_t saving_htab;
00238
00239 struct ptr_data
00240 {
00241 void *obj;
00242 void *note_ptr_cookie;
00243 gt_note_pointers note_ptr_fn;
00244 gt_handle_reorder reorder_fn;
00245 size_t size;
00246 void *new_addr;
00247 };
00248
00249 #define POINTER_HASH(x) (hashval_t)((long)x >> 3)
00250
00251
00252
00253 int
00254 gt_pch_note_object (void *obj, void *note_ptr_cookie,
00255 gt_note_pointers note_ptr_fn)
00256 {
00257 struct ptr_data **slot;
00258
00259 if (obj == NULL || obj == (void *) 1)
00260 return 0;
00261
00262 slot = (struct ptr_data **)
00263 htab_find_slot_with_hash (saving_htab, obj, POINTER_HASH (obj),
00264 INSERT);
00265 if (*slot != NULL)
00266 {
00267 gcc_assert ((*slot)->note_ptr_fn == note_ptr_fn
00268 && (*slot)->note_ptr_cookie == note_ptr_cookie);
00269 return 0;
00270 }
00271
00272 *slot = xcalloc (sizeof (struct ptr_data), 1);
00273 (*slot)->obj = obj;
00274 (*slot)->note_ptr_fn = note_ptr_fn;
00275 (*slot)->note_ptr_cookie = note_ptr_cookie;
00276 if (note_ptr_fn == gt_pch_p_S)
00277 (*slot)->size = strlen (obj) + 1;
00278 else
00279 (*slot)->size = ggc_get_size (obj);
00280 return 1;
00281 }
00282
00283
00284
00285 void
00286 gt_pch_note_reorder (void *obj, void *note_ptr_cookie,
00287 gt_handle_reorder reorder_fn)
00288 {
00289 struct ptr_data *data;
00290
00291 if (obj == NULL || obj == (void *) 1)
00292 return;
00293
00294 data = htab_find_with_hash (saving_htab, obj, POINTER_HASH (obj));
00295 gcc_assert (data && data->note_ptr_cookie == note_ptr_cookie);
00296
00297 data->reorder_fn = reorder_fn;
00298 }
00299
00300
00301
00302 static hashval_t
00303 saving_htab_hash (const void *p)
00304 {
00305 return POINTER_HASH (((struct ptr_data *)p)->obj);
00306 }
00307
00308 static int
00309 saving_htab_eq (const void *p1, const void *p2)
00310 {
00311 return ((struct ptr_data *)p1)->obj == p2;
00312 }
00313
00314
00315
00316 struct traversal_state
00317 {
00318 FILE *f;
00319 struct ggc_pch_data *d;
00320 size_t count;
00321 struct ptr_data **ptrs;
00322 size_t ptrs_i;
00323 };
00324
00325
00326
00327 static int
00328 call_count (void **slot, void *state_p)
00329 {
00330 struct ptr_data *d = (struct ptr_data *)*slot;
00331 struct traversal_state *state = (struct traversal_state *)state_p;
00332
00333 ggc_pch_count_object (state->d, d->obj, d->size, d->note_ptr_fn == gt_pch_p_S);
00334 state->count++;
00335 return 1;
00336 }
00337
00338 static int
00339 call_alloc (void **slot, void *state_p)
00340 {
00341 struct ptr_data *d = (struct ptr_data *)*slot;
00342 struct traversal_state *state = (struct traversal_state *)state_p;
00343
00344 d->new_addr = ggc_pch_alloc_object (state->d, d->obj, d->size, d->note_ptr_fn == gt_pch_p_S);
00345 state->ptrs[state->ptrs_i++] = d;
00346 return 1;
00347 }
00348
00349
00350
00351 static int
00352 compare_ptr_data (const void *p1_p, const void *p2_p)
00353 {
00354 struct ptr_data *p1 = *(struct ptr_data *const *)p1_p;
00355 struct ptr_data *p2 = *(struct ptr_data *const *)p2_p;
00356 return (((size_t)p1->new_addr > (size_t)p2->new_addr)
00357 - ((size_t)p1->new_addr < (size_t)p2->new_addr));
00358 }
00359
00360
00361
00362 static void
00363 relocate_ptrs (void *ptr_p, void *state_p)
00364 {
00365 void **ptr = (void **)ptr_p;
00366 struct traversal_state *state ATTRIBUTE_UNUSED
00367 = (struct traversal_state *)state_p;
00368 struct ptr_data *result;
00369
00370 if (*ptr == NULL || *ptr == (void *)1)
00371 return;
00372
00373 result = htab_find_with_hash (saving_htab, *ptr, POINTER_HASH (*ptr));
00374 gcc_assert (result);
00375 *ptr = result->new_addr;
00376 }
00377
00378
00379 static void
00380 write_pch_globals (const struct ggc_root_tab * const *tab,
00381 struct traversal_state *state)
00382 {
00383 const struct ggc_root_tab *const *rt;
00384 const struct ggc_root_tab *rti;
00385 size_t i;
00386
00387 for (rt = tab; *rt; rt++)
00388 for (rti = *rt; rti->base != NULL; rti++)
00389 for (i = 0; i < rti->nelt; i++)
00390 {
00391 void *ptr = *(void **)((char *)rti->base + rti->stride * i);
00392 struct ptr_data *new_ptr;
00393 if (ptr == NULL || ptr == (void *)1)
00394 {
00395 if (fwrite (&ptr, sizeof (void *), 1, state->f)
00396 != 1)
00397 fatal_error ("can't write PCH file: %m");
00398 }
00399 else
00400 {
00401 new_ptr = htab_find_with_hash (saving_htab, ptr,
00402 POINTER_HASH (ptr));
00403 if (fwrite (&new_ptr->new_addr, sizeof (void *), 1, state->f)
00404 != 1)
00405 fatal_error ("can't write PCH file: %m");
00406 }
00407 }
00408 }
00409
00410
00411
00412 struct mmap_info
00413 {
00414 size_t offset;
00415 size_t size;
00416 void *preferred_base;
00417 };
00418
00419
00420
00421 void
00422 gt_pch_save (FILE *f)
00423 {
00424 const struct ggc_root_tab *const *rt;
00425 const struct ggc_root_tab *rti;
00426 size_t i;
00427 struct traversal_state state;
00428 char *this_object = NULL;
00429 size_t this_object_size = 0;
00430 struct mmap_info mmi;
00431 const size_t mmap_offset_alignment = host_hooks.gt_pch_alloc_granularity();
00432
00433 gt_pch_save_stringpool ();
00434
00435 saving_htab = htab_create (50000, saving_htab_hash, saving_htab_eq, free);
00436
00437 for (rt = gt_ggc_rtab; *rt; rt++)
00438 for (rti = *rt; rti->base != NULL; rti++)
00439 for (i = 0; i < rti->nelt; i++)
00440 (*rti->pchw)(*(void **)((char *)rti->base + rti->stride * i));
00441
00442 for (rt = gt_pch_cache_rtab; *rt; rt++)
00443 for (rti = *rt; rti->base != NULL; rti++)
00444 for (i = 0; i < rti->nelt; i++)
00445 (*rti->pchw)(*(void **)((char *)rti->base + rti->stride * i));
00446
00447
00448 state.f = f;
00449 state.d = init_ggc_pch();
00450 state.count = 0;
00451 htab_traverse (saving_htab, call_count, &state);
00452
00453 mmi.size = ggc_pch_total_size (state.d);
00454
00455
00456
00457
00458
00459
00460 mmi.preferred_base = host_hooks.gt_pch_get_address (mmi.size, fileno (f));
00461
00462 ggc_pch_this_base (state.d, mmi.preferred_base);
00463
00464 state.ptrs = xmalloc (state.count * sizeof (*state.ptrs));
00465 state.ptrs_i = 0;
00466 htab_traverse (saving_htab, call_alloc, &state);
00467 qsort (state.ptrs, state.count, sizeof (*state.ptrs), compare_ptr_data);
00468
00469
00470 for (rt = gt_pch_scalar_rtab; *rt; rt++)
00471 for (rti = *rt; rti->base != NULL; rti++)
00472 if (fwrite (rti->base, rti->stride, 1, f) != 1)
00473 fatal_error ("can't write PCH file: %m");
00474
00475
00476 write_pch_globals (gt_ggc_rtab, &state);
00477 write_pch_globals (gt_pch_cache_rtab, &state);
00478
00479 ggc_pch_prepare_write (state.d, state.f);
00480
00481
00482
00483 {
00484 long o;
00485 o = ftell (state.f) + sizeof (mmi);
00486 if (o == -1)
00487 fatal_error ("can't get position in PCH file: %m");
00488 mmi.offset = mmap_offset_alignment - o % mmap_offset_alignment;
00489 if (mmi.offset == mmap_offset_alignment)
00490 mmi.offset = 0;
00491 mmi.offset += o;
00492 }
00493 if (fwrite (&mmi, sizeof (mmi), 1, state.f) != 1)
00494 fatal_error ("can't write PCH file: %m");
00495 if (mmi.offset != 0
00496 && fseek (state.f, mmi.offset, SEEK_SET) != 0)
00497 fatal_error ("can't write padding to PCH file: %m");
00498
00499
00500 for (i = 0; i < state.count; i++)
00501 {
00502 if (this_object_size < state.ptrs[i]->size)
00503 {
00504 this_object_size = state.ptrs[i]->size;
00505 this_object = xrealloc (this_object, this_object_size);
00506 }
00507 memcpy (this_object, state.ptrs[i]->obj, state.ptrs[i]->size);
00508 if (state.ptrs[i]->reorder_fn != NULL)
00509 state.ptrs[i]->reorder_fn (state.ptrs[i]->obj,
00510 state.ptrs[i]->note_ptr_cookie,
00511 relocate_ptrs, &state);
00512 state.ptrs[i]->note_ptr_fn (state.ptrs[i]->obj,
00513 state.ptrs[i]->note_ptr_cookie,
00514 relocate_ptrs, &state);
00515 ggc_pch_write_object (state.d, state.f, state.ptrs[i]->obj,
00516 state.ptrs[i]->new_addr, state.ptrs[i]->size,
00517 state.ptrs[i]->note_ptr_fn == gt_pch_p_S);
00518 if (state.ptrs[i]->note_ptr_fn != gt_pch_p_S)
00519 memcpy (state.ptrs[i]->obj, this_object, state.ptrs[i]->size);
00520 }
00521 ggc_pch_finish (state.d, state.f);
00522 gt_pch_fixup_stringpool ();
00523
00524 free (state.ptrs);
00525 htab_delete (saving_htab);
00526 }
00527
00528
00529
00530 void
00531 gt_pch_restore (FILE *f)
00532 {
00533 const struct ggc_root_tab *const *rt;
00534 const struct ggc_root_tab *rti;
00535 size_t i;
00536 struct mmap_info mmi;
00537 int result;
00538
00539
00540
00541
00542 for (rt = gt_ggc_deletable_rtab; *rt; rt++)
00543 for (rti = *rt; rti->base != NULL; rti++)
00544 memset (rti->base, 0, rti->stride);
00545
00546
00547 for (rt = gt_pch_scalar_rtab; *rt; rt++)
00548 for (rti = *rt; rti->base != NULL; rti++)
00549 if (fread (rti->base, rti->stride, 1, f) != 1)
00550 fatal_error ("can't read PCH file: %m");
00551
00552
00553 for (rt = gt_ggc_rtab; *rt; rt++)
00554 for (rti = *rt; rti->base != NULL; rti++)
00555 for (i = 0; i < rti->nelt; i++)
00556 if (fread ((char *)rti->base + rti->stride * i,
00557 sizeof (void *), 1, f) != 1)
00558 fatal_error ("can't read PCH file: %m");
00559
00560 for (rt = gt_pch_cache_rtab; *rt; rt++)
00561 for (rti = *rt; rti->base != NULL; rti++)
00562 for (i = 0; i < rti->nelt; i++)
00563 if (fread ((char *)rti->base + rti->stride * i,
00564 sizeof (void *), 1, f) != 1)
00565 fatal_error ("can't read PCH file: %m");
00566
00567 if (fread (&mmi, sizeof (mmi), 1, f) != 1)
00568 fatal_error ("can't read PCH file: %m");
00569
00570 result = host_hooks.gt_pch_use_address (mmi.preferred_base, mmi.size,
00571 fileno (f), mmi.offset);
00572 if (result < 0)
00573 fatal_error ("had to relocate PCH");
00574 if (result == 0)
00575 {
00576 if (fseek (f, mmi.offset, SEEK_SET) != 0
00577 || fread (mmi.preferred_base, mmi.size, 1, f) != 1)
00578 fatal_error ("can't read PCH file: %m");
00579 }
00580 else if (fseek (f, mmi.offset + mmi.size, SEEK_SET) != 0)
00581 fatal_error ("can't read PCH file: %m");
00582
00583 ggc_pch_read (f, mmi.preferred_base);
00584
00585 gt_pch_restore_stringpool ();
00586 }
00587
00588
00589
00590
00591
00592 void *
00593 default_gt_pch_get_address (size_t size ATTRIBUTE_UNUSED,
00594 int fd ATTRIBUTE_UNUSED)
00595 {
00596 return NULL;
00597 }
00598
00599
00600
00601
00602
00603
00604
00605 int
00606 default_gt_pch_use_address (void *base, size_t size, int fd ATTRIBUTE_UNUSED,
00607 size_t offset ATTRIBUTE_UNUSED)
00608 {
00609 void *addr = xmalloc (size);
00610 return (addr == base) - 1;
00611 }
00612
00613
00614
00615
00616
00617 size_t
00618 default_gt_pch_alloc_granularity (void)
00619 {
00620 return getpagesize();
00621 }
00622
00623 #if HAVE_MMAP_FILE
00624
00625
00626
00627
00628
00629 void *
00630 mmap_gt_pch_get_address (size_t size, int fd)
00631 {
00632 void *ret;
00633
00634 ret = mmap (NULL, size, PROT_READ | PROT_WRITE, MAP_PRIVATE, fd, 0);
00635 if (ret == (void *) MAP_FAILED)
00636 ret = NULL;
00637 else
00638 munmap (ret, size);
00639
00640 return ret;
00641 }
00642
00643
00644
00645
00646
00647
00648
00649
00650
00651 int
00652 mmap_gt_pch_use_address (void *base, size_t size, int fd, size_t offset)
00653 {
00654 void *addr;
00655
00656
00657
00658
00659 if (size == 0)
00660 return -1;
00661
00662 addr = mmap (base, size, PROT_READ | PROT_WRITE, MAP_PRIVATE,
00663 fd, offset);
00664
00665 return addr == base ? 1 : -1;
00666 }
00667 #endif
00668
00669
00670 static double
00671 ggc_rlimit_bound (double limit)
00672 {
00673 #if defined(HAVE_GETRLIMIT)
00674 struct rlimit rlim;
00675 # if defined (RLIMIT_AS)
00676
00677
00678 if (getrlimit (RLIMIT_AS, &rlim) == 0
00679 && rlim.rlim_cur != (rlim_t) RLIM_INFINITY
00680 && rlim.rlim_cur < limit)
00681 limit = rlim.rlim_cur;
00682 # elif defined (RLIMIT_DATA)
00683
00684
00685
00686 if (getrlimit (RLIMIT_DATA, &rlim) == 0
00687 && rlim.rlim_cur != (rlim_t) RLIM_INFINITY
00688 && rlim.rlim_cur < limit
00689
00690
00691
00692
00693
00694 && rlim.rlim_cur >= 8 * 1024 * 1024)
00695 limit = rlim.rlim_cur;
00696 # endif
00697 #endif
00698
00699 return limit;
00700 }
00701
00702
00703 int
00704 ggc_min_expand_heuristic (void)
00705 {
00706 double min_expand = physmem_total();
00707
00708
00709 min_expand = ggc_rlimit_bound (min_expand);
00710
00711
00712
00713 min_expand /= 1024*1024*1024;
00714 min_expand *= 70;
00715 min_expand = MIN (min_expand, 70);
00716 min_expand += 30;
00717
00718 return min_expand;
00719 }
00720
00721
00722 int
00723 ggc_min_heapsize_heuristic (void)
00724 {
00725 double phys_kbytes = physmem_total();
00726 double limit_kbytes = ggc_rlimit_bound (phys_kbytes * 2);
00727
00728 phys_kbytes /= 1024;
00729 limit_kbytes /= 1024;
00730
00731
00732
00733 phys_kbytes /= 8;
00734
00735 #if defined(HAVE_GETRLIMIT) && defined (RLIMIT_RSS)
00736
00737
00738 {
00739 struct rlimit rlim;
00740 if (getrlimit (RLIMIT_RSS, &rlim) == 0
00741 && rlim.rlim_cur != (rlim_t) RLIM_INFINITY)
00742 phys_kbytes = MIN (phys_kbytes, rlim.rlim_cur / 1024);
00743 }
00744 # endif
00745
00746
00747
00748
00749
00750 limit_kbytes = MAX (0, limit_kbytes - 16 * 1024);
00751 limit_kbytes = (limit_kbytes * 100) / (110 + ggc_min_expand_heuristic());
00752 phys_kbytes = MIN (phys_kbytes, limit_kbytes);
00753
00754 phys_kbytes = MAX (phys_kbytes, 4 * 1024);
00755 phys_kbytes = MIN (phys_kbytes, 128 * 1024);
00756
00757 return phys_kbytes;
00758 }
00759
00760 void
00761 init_ggc_heuristics (void)
00762 {
00763 #if !defined ENABLE_GC_CHECKING && !defined ENABLE_GC_ALWAYS_COLLECT
00764 set_param_value ("ggc-min-expand", ggc_min_expand_heuristic());
00765 set_param_value ("ggc-min-heapsize", ggc_min_heapsize_heuristic());
00766 #endif
00767 }
00768
00769 #ifdef GATHER_STATISTICS
00770
00771
00772 struct loc_descriptor
00773 {
00774 const char *file;
00775 int line;
00776 const char *function;
00777 int times;
00778 size_t allocated;
00779 size_t overhead;
00780 size_t freed;
00781 size_t collected;
00782 };
00783
00784
00785 static htab_t loc_hash;
00786
00787
00788 static hashval_t
00789 hash_descriptor (const void *p)
00790 {
00791 const struct loc_descriptor *d = p;
00792
00793 return htab_hash_pointer (d->function) | d->line;
00794 }
00795
00796 static int
00797 eq_descriptor (const void *p1, const void *p2)
00798 {
00799 const struct loc_descriptor *d = p1;
00800 const struct loc_descriptor *d2 = p2;
00801
00802 return (d->file == d2->file && d->line == d2->line
00803 && d->function == d2->function);
00804 }
00805
00806
00807 static htab_t ptr_hash;
00808 struct ptr_hash_entry
00809 {
00810 void *ptr;
00811 struct loc_descriptor *loc;
00812 size_t size;
00813 };
00814
00815
00816 static hashval_t
00817 hash_ptr (const void *p)
00818 {
00819 const struct ptr_hash_entry *d = p;
00820
00821 return htab_hash_pointer (d->ptr);
00822 }
00823
00824 static int
00825 eq_ptr (const void *p1, const void *p2)
00826 {
00827 const struct ptr_hash_entry *p = p1;
00828
00829 return (p->ptr == p2);
00830 }
00831
00832
00833 static struct loc_descriptor *
00834 loc_descriptor (const char *name, int line, const char *function)
00835 {
00836 struct loc_descriptor loc;
00837 struct loc_descriptor **slot;
00838
00839 loc.file = name;
00840 loc.line = line;
00841 loc.function = function;
00842 if (!loc_hash)
00843 loc_hash = htab_create (10, hash_descriptor, eq_descriptor, NULL);
00844
00845 slot = (struct loc_descriptor **) htab_find_slot (loc_hash, &loc, 1);
00846 if (*slot)
00847 return *slot;
00848 *slot = xcalloc (sizeof (**slot), 1);
00849 (*slot)->file = name;
00850 (*slot)->line = line;
00851 (*slot)->function = function;
00852 return *slot;
00853 }
00854
00855
00856 void
00857 ggc_record_overhead (size_t allocated, size_t overhead, void *ptr,
00858 const char *name, int line, const char *function)
00859 {
00860 struct loc_descriptor *loc = loc_descriptor (name, line, function);
00861 struct ptr_hash_entry *p = xmalloc (sizeof (struct ptr_hash_entry));
00862 PTR *slot;
00863
00864 p->ptr = ptr;
00865 p->loc = loc;
00866 p->size = allocated + overhead;
00867 if (!ptr_hash)
00868 ptr_hash = htab_create (10, hash_ptr, eq_ptr, NULL);
00869 slot = htab_find_slot_with_hash (ptr_hash, ptr, htab_hash_pointer (ptr), INSERT);
00870 gcc_assert (!*slot);
00871 *slot = p;
00872
00873 loc->times++;
00874 loc->allocated+=allocated;
00875 loc->overhead+=overhead;
00876 }
00877
00878
00879
00880 static int
00881 ggc_prune_ptr (void **slot, void *b ATTRIBUTE_UNUSED)
00882 {
00883 struct ptr_hash_entry *p = *slot;
00884 if (!ggc_marked_p (p->ptr))
00885 {
00886 p->loc->collected += p->size;
00887 htab_clear_slot (ptr_hash, slot);
00888 free (p);
00889 }
00890 return 1;
00891 }
00892
00893
00894
00895 void
00896 ggc_prune_overhead_list (void)
00897 {
00898 htab_traverse (ptr_hash, ggc_prune_ptr, NULL);
00899 }
00900
00901
00902 void ggc_free_overhead (void *ptr)
00903 {
00904 PTR *slot = htab_find_slot_with_hash (ptr_hash, ptr, htab_hash_pointer (ptr),
00905 NO_INSERT);
00906 struct ptr_hash_entry *p = *slot;
00907 p->loc->freed += p->size;
00908 htab_clear_slot (ptr_hash, slot);
00909 free (p);
00910 }
00911
00912
00913 static int
00914 cmp_statistic (const void *loc1, const void *loc2)
00915 {
00916 struct loc_descriptor *l1 = *(struct loc_descriptor **) loc1;
00917 struct loc_descriptor *l2 = *(struct loc_descriptor **) loc2;
00918 return ((l1->allocated + l1->overhead - l1->freed) -
00919 (l2->allocated + l2->overhead - l2->freed));
00920 }
00921
00922
00923 struct loc_descriptor **loc_array;
00924 static int
00925 add_statistics (void **slot, void *b)
00926 {
00927 int *n = (int *)b;
00928 loc_array[*n] = (struct loc_descriptor *) *slot;
00929 (*n)++;
00930 return 1;
00931 }
00932
00933
00934 #endif
00935 void dump_ggc_loc_statistics (void)
00936 {
00937 #ifdef GATHER_STATISTICS
00938 int nentries = 0;
00939 char s[4096];
00940 size_t collected = 0, freed = 0, allocated = 0, overhead = 0, times = 0;
00941 int i;
00942
00943 ggc_force_collect = true;
00944 ggc_collect ();
00945
00946 loc_array = xcalloc (sizeof (*loc_array), loc_hash->n_elements);
00947 fprintf (stderr, "-------------------------------------------------------\n");
00948 fprintf (stderr, "\n%-48s %10s %10s %10s %10s %10s\n",
00949 "source location", "Garbage", "Freed", "Leak", "Overhead", "Times");
00950 fprintf (stderr, "-------------------------------------------------------\n");
00951 htab_traverse (loc_hash, add_statistics, &nentries);
00952 qsort (loc_array, nentries, sizeof (*loc_array), cmp_statistic);
00953 for (i = 0; i < nentries; i++)
00954 {
00955 struct loc_descriptor *d = loc_array[i];
00956 allocated += d->allocated;
00957 times += d->times;
00958 freed += d->freed;
00959 collected += d->collected;
00960 overhead += d->overhead;
00961 }
00962 for (i = 0; i < nentries; i++)
00963 {
00964 struct loc_descriptor *d = loc_array[i];
00965 if (d->allocated)
00966 {
00967 const char *s1 = d->file;
00968 const char *s2;
00969 while ((s2 = strstr (s1, "gcc/")))
00970 s1 = s2 + 4;
00971 sprintf (s, "%s:%i (%s)", s1, d->line, d->function);
00972 s[48] = 0;
00973 fprintf (stderr, "%-48s %10li:%4.1f%% %10li:%4.1f%% %10li:%4.1f%% %10li:%4.1f%% %10li\n", s,
00974 (long)d->collected,
00975 (d->collected) * 100.0 / collected,
00976 (long)d->freed,
00977 (d->freed) * 100.0 / freed,
00978 (long)(d->allocated + d->overhead - d->freed - d->collected),
00979 (d->allocated + d->overhead - d->freed - d->collected) * 100.0
00980 / (allocated + overhead - freed - collected),
00981 (long)d->overhead,
00982 d->overhead * 100.0 / overhead,
00983 (long)d->times);
00984 }
00985 }
00986 fprintf (stderr, "%-48s %10ld %10ld %10ld %10ld %10ld\n",
00987 "Total", (long)collected, (long)freed,
00988 (long)(allocated + overhead - freed - collected), (long)overhead,
00989 (long)times);
00990 fprintf (stderr, "%-48s %10s %10s %10s %10s %10s\n",
00991 "source location", "Garbage", "Freed", "Leak", "Overhead", "Times");
00992 fprintf (stderr, "-------------------------------------------------------\n");
00993 #endif
00994 }