
* toplev.c (dump_memory_report): Call dump_vec_loc_statistics. * vec.c: Include hashtab.h (vec_descriptor, ptr_hash_entry): New structures. (vec_desc_hash, vec_ptr_map): New static variables. (hash_descriptor, eq_descriptor, hash_ptr, eq_ptr, vec_descriptor, register_overhead, free_overhead, vec_heap_free): New functions. (vec_gc_o_reserve_1): ggc_free when resizing to 0. (vec_heap_o_reserve_1): free when resizing to 0; add statistics. (cmp_statistic, add_statistics, dump_vec_loc_statistics): New functions. From-SVN: r140277
461 lines
12 KiB
C
461 lines
12 KiB
C
/* Vector API for GNU compiler.
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Copyright (C) 2004, 2005, 2006, 2007 Free Software Foundation, Inc.
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Contributed by Nathan Sidwell <nathan@codesourcery.com>
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This file is part of GCC.
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GCC is free software; you can redistribute it and/or modify it under
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the terms of the GNU General Public License as published by the Free
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Software Foundation; either version 3, or (at your option) any later
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version.
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GCC is distributed in the hope that it will be useful, but WITHOUT ANY
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WARRANTY; without even the implied warranty of MERCHANTABILITY or
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FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
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for more details.
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You should have received a copy of the GNU General Public License
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along with GCC; see the file COPYING3. If not see
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<http://www.gnu.org/licenses/>. */
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/* This file is compiled twice: once for the generator programs
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once for the compiler. */
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#ifdef GENERATOR_FILE
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#include "bconfig.h"
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#else
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#include "config.h"
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#endif
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#include "system.h"
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#include "ggc.h"
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#include "vec.h"
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#include "coretypes.h"
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#include "toplev.h"
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#include "hashtab.h"
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struct vec_prefix
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{
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unsigned num;
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unsigned alloc;
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void *vec[1];
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};
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#ifdef GATHER_STATISTICS
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/* Store information about each particular vector. */
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struct vec_descriptor
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{
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const char *function;
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const char *file;
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int line;
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size_t allocated;
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size_t times;
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size_t peak;
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};
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/* Hashtable mapping vec addresses to descriptors. */
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static htab_t vec_desc_hash;
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/* Hashtable helpers. */
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static hashval_t
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hash_descriptor (const void *p)
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{
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const struct vec_descriptor *const d =
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(const struct vec_descriptor *) p;
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return htab_hash_pointer (d->file) + d->line;
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}
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static int
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eq_descriptor (const void *p1, const void *p2)
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{
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const struct vec_descriptor *const d = (const struct vec_descriptor *) p1;
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const struct vec_descriptor *const l = (const struct vec_descriptor *) p2;
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return d->file == l->file && d->function == l->function && d->line == l->line;
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}
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/* Hashtable converting address of allocated field to loc descriptor. */
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static htab_t ptr_hash;
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struct ptr_hash_entry
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{
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void *ptr;
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struct vec_descriptor *loc;
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size_t allocated;
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};
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/* Hash table helpers functions. */
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static hashval_t
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hash_ptr (const void *p)
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{
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const struct ptr_hash_entry *const d = (const struct ptr_hash_entry *) p;
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return htab_hash_pointer (d->ptr);
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}
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static int
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eq_ptr (const void *p1, const void *p2)
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{
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const struct ptr_hash_entry *const p = (const struct ptr_hash_entry *) p1;
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return (p->ptr == p2);
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}
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/* Return descriptor for given call site, create new one if needed. */
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static struct vec_descriptor *
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vec_descriptor (const char *name, int line, const char *function)
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{
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struct vec_descriptor loc;
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struct vec_descriptor **slot;
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loc.file = name;
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loc.line = line;
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loc.function = function;
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if (!vec_desc_hash)
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vec_desc_hash = htab_create (10, hash_descriptor, eq_descriptor, NULL);
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slot = (struct vec_descriptor **) htab_find_slot (vec_desc_hash, &loc, 1);
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if (*slot)
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return *slot;
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*slot = XCNEW (struct vec_descriptor);
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(*slot)->file = name;
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(*slot)->line = line;
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(*slot)->function = function;
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(*slot)->allocated = 0;
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(*slot)->peak = 0;
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return *slot;
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}
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/* Account the overhead. */
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static void
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register_overhead (struct vec_prefix *ptr, size_t size,
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const char *name, int line, const char *function)
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{
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struct vec_descriptor *loc = vec_descriptor (name, line, function);
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struct ptr_hash_entry *p = XNEW (struct ptr_hash_entry);
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PTR *slot;
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p->ptr = ptr;
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p->loc = loc;
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p->allocated = size;
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if (!ptr_hash)
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ptr_hash = htab_create (10, hash_ptr, eq_ptr, NULL);
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slot = htab_find_slot_with_hash (ptr_hash, ptr, htab_hash_pointer (ptr), INSERT);
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gcc_assert (!*slot);
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*slot = p;
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loc->allocated += size;
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if (loc->peak < loc->allocated)
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loc->peak += loc->allocated;
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loc->times++;
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}
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/* Notice that the pointer has been freed. */
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static void
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free_overhead (struct vec_prefix *ptr)
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{
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PTR *slot = htab_find_slot_with_hash (ptr_hash, ptr, htab_hash_pointer (ptr),
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NO_INSERT);
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struct ptr_hash_entry *p = (struct ptr_hash_entry *) *slot;
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p->loc->allocated -= p->allocated;
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htab_clear_slot (ptr_hash, slot);
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free (p);
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}
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void
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vec_heap_free (void *ptr)
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{
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free_overhead ((struct vec_prefix *)ptr);
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free (ptr);
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}
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#endif
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/* Calculate the new ALLOC value, making sure that RESERVE slots are
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free. If EXACT grow exactly, otherwise grow exponentially. */
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static inline unsigned
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calculate_allocation (const struct vec_prefix *pfx, int reserve, bool exact)
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{
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unsigned alloc = 0;
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unsigned num = 0;
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gcc_assert (reserve >= 0);
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if (pfx)
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{
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alloc = pfx->alloc;
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num = pfx->num;
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}
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else if (!reserve)
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/* If there's no prefix, and we've not requested anything, then we
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will create a NULL vector. */
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return 0;
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/* We must have run out of room. */
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gcc_assert (alloc - num < (unsigned) reserve);
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if (exact)
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/* Exact size. */
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alloc = num + reserve;
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else
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{
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/* Exponential growth. */
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if (!alloc)
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alloc = 4;
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else if (alloc < 16)
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/* Double when small. */
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alloc = alloc * 2;
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else
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/* Grow slower when large. */
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alloc = (alloc * 3 / 2);
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/* If this is still too small, set it to the right size. */
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if (alloc < num + reserve)
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alloc = num + reserve;
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}
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return alloc;
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}
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/* Ensure there are at least RESERVE free slots in VEC. If EXACT grow
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exactly, else grow exponentially. As a special case, if VEC is
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NULL and RESERVE is 0, no vector will be created. The vector's
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trailing array is at VEC_OFFSET offset and consists of ELT_SIZE
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sized elements. */
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static void *
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vec_gc_o_reserve_1 (void *vec, int reserve, size_t vec_offset, size_t elt_size,
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bool exact MEM_STAT_DECL)
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{
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struct vec_prefix *pfx = (struct vec_prefix *) vec;
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unsigned alloc = alloc = calculate_allocation (pfx, reserve, exact);
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if (!alloc)
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{
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if (pfx)
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ggc_free (pfx);
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return NULL;
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}
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vec = ggc_realloc_stat (vec, vec_offset + alloc * elt_size PASS_MEM_STAT);
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((struct vec_prefix *)vec)->alloc = alloc;
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if (!pfx)
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((struct vec_prefix *)vec)->num = 0;
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return vec;
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}
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/* Ensure there are at least RESERVE free slots in VEC, growing
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exponentially. If RESERVE < 0 grow exactly, else grow
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exponentially. As a special case, if VEC is NULL, and RESERVE is
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0, no vector will be created. */
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void *
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vec_gc_p_reserve (void *vec, int reserve MEM_STAT_DECL)
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{
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return vec_gc_o_reserve_1 (vec, reserve,
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offsetof (struct vec_prefix, vec),
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sizeof (void *), false
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PASS_MEM_STAT);
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}
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/* Ensure there are at least RESERVE free slots in VEC, growing
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exactly. If RESERVE < 0 grow exactly, else grow exponentially. As
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a special case, if VEC is NULL, and RESERVE is 0, no vector will be
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created. */
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void *
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vec_gc_p_reserve_exact (void *vec, int reserve MEM_STAT_DECL)
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{
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return vec_gc_o_reserve_1 (vec, reserve,
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offsetof (struct vec_prefix, vec),
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sizeof (void *), true
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PASS_MEM_STAT);
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}
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/* As for vec_gc_p_reserve, but for object vectors. The vector's
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trailing array is at VEC_OFFSET offset and consists of ELT_SIZE
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sized elements. */
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void *
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vec_gc_o_reserve (void *vec, int reserve, size_t vec_offset, size_t elt_size
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MEM_STAT_DECL)
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{
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return vec_gc_o_reserve_1 (vec, reserve, vec_offset, elt_size, false
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PASS_MEM_STAT);
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}
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/* As for vec_gc_p_reserve_exact, but for object vectors. The
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vector's trailing array is at VEC_OFFSET offset and consists of
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ELT_SIZE sized elements. */
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void *
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vec_gc_o_reserve_exact (void *vec, int reserve, size_t vec_offset,
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size_t elt_size MEM_STAT_DECL)
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{
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return vec_gc_o_reserve_1 (vec, reserve, vec_offset, elt_size, true
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PASS_MEM_STAT);
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}
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/* As for vec_gc_o_reserve_1, but for heap allocated vectors. */
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static void *
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vec_heap_o_reserve_1 (void *vec, int reserve, size_t vec_offset,
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size_t elt_size, bool exact MEM_STAT_DECL)
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{
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struct vec_prefix *pfx = (struct vec_prefix *) vec;
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unsigned alloc = calculate_allocation (pfx, reserve, exact);
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if (!alloc)
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{
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if (pfx)
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vec_heap_free (pfx);
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return NULL;
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}
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#ifdef GATHER_STATISTICS
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if (vec)
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free_overhead (pfx);
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#endif
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vec = xrealloc (vec, vec_offset + alloc * elt_size);
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((struct vec_prefix *)vec)->alloc = alloc;
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if (!pfx)
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((struct vec_prefix *)vec)->num = 0;
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#ifdef GATHER_STATISTICS
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if (vec)
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register_overhead ((struct vec_prefix *)vec,
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vec_offset + alloc * elt_size PASS_MEM_STAT);
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#endif
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return vec;
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}
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/* As for vec_gc_p_reserve, but for heap allocated vectors. */
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void *
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vec_heap_p_reserve (void *vec, int reserve MEM_STAT_DECL)
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{
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return vec_heap_o_reserve_1 (vec, reserve,
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offsetof (struct vec_prefix, vec),
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sizeof (void *), false
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PASS_MEM_STAT);
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}
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/* As for vec_gc_p_reserve_exact, but for heap allocated vectors. */
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void *
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vec_heap_p_reserve_exact (void *vec, int reserve MEM_STAT_DECL)
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{
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return vec_heap_o_reserve_1 (vec, reserve,
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offsetof (struct vec_prefix, vec),
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sizeof (void *), true
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PASS_MEM_STAT);
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}
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/* As for vec_gc_o_reserve, but for heap allocated vectors. */
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void *
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vec_heap_o_reserve (void *vec, int reserve, size_t vec_offset, size_t elt_size
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MEM_STAT_DECL)
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{
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return vec_heap_o_reserve_1 (vec, reserve, vec_offset, elt_size, false
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PASS_MEM_STAT);
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}
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/* As for vec_gc_o_reserve_exact, but for heap allocated vectors. */
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void *
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vec_heap_o_reserve_exact (void *vec, int reserve, size_t vec_offset,
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size_t elt_size MEM_STAT_DECL)
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{
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return vec_heap_o_reserve_1 (vec, reserve, vec_offset, elt_size, true
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PASS_MEM_STAT);
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}
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#if ENABLE_CHECKING
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/* Issue a vector domain error, and then fall over. */
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void
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vec_assert_fail (const char *op, const char *struct_name,
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const char *file, unsigned int line, const char *function)
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{
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internal_error ("vector %s %s domain error, in %s at %s:%u",
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struct_name, op, function, trim_filename (file), line);
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}
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#endif
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#ifdef GATHER_STATISTICS
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/* Helper for qsort; sort descriptors by amount of memory consumed. */
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static int
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cmp_statistic (const void *loc1, const void *loc2)
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{
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const struct vec_descriptor *const l1 =
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*(const struct vec_descriptor *const *) loc1;
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const struct vec_descriptor *const l2 =
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*(const struct vec_descriptor *const *) loc2;
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long diff;
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diff = l1->allocated - l2->allocated;
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if (!diff)
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diff = l1->peak - l2->peak;
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if (!diff)
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diff = l1->times - l2->times;
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return diff > 0 ? 1 : diff < 0 ? -1 : 0;
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}
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/* Collect array of the descriptors from hashtable. */
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static struct vec_descriptor **loc_array;
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static int
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add_statistics (void **slot, void *b)
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{
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int *n = (int *)b;
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loc_array[*n] = (struct vec_descriptor *) *slot;
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(*n)++;
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return 1;
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}
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/* Dump per-site memory statistics. */
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#endif
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void
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dump_vec_loc_statistics (void)
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{
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#ifdef GATHER_STATISTICS
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int nentries = 0;
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char s[4096];
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size_t allocated = 0;
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size_t times = 0;
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int i;
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loc_array = XCNEWVEC (struct vec_descriptor *, vec_desc_hash->n_elements);
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fprintf (stderr, "Heap vectors:\n");
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fprintf (stderr, "\n%-48s %10s %10s %10s\n",
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"source location", "Leak", "Peak", "Times");
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fprintf (stderr, "-------------------------------------------------------\n");
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htab_traverse (vec_desc_hash, add_statistics, &nentries);
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qsort (loc_array, nentries, sizeof (*loc_array), cmp_statistic);
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for (i = 0; i < nentries; i++)
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{
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struct vec_descriptor *d = loc_array[i];
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allocated += d->allocated;
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times += d->times;
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}
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for (i = 0; i < nentries; i++)
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{
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struct vec_descriptor *d = loc_array[i];
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const char *s1 = d->file;
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const char *s2;
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while ((s2 = strstr (s1, "gcc/")))
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s1 = s2 + 4;
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sprintf (s, "%s:%i (%s)", s1, d->line, d->function);
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s[48] = 0;
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fprintf (stderr, "%-48s %10li:%4.1f%% %10li %10li:%4.1f%% \n", s,
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(long)d->allocated,
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(d->allocated) * 100.0 / allocated,
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(long)d->peak,
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(long)d->times,
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(d->times) * 100.0 / times);
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}
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fprintf (stderr, "%-48s %10ld %10ld\n",
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"Total", (long)allocated, (long)times);
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fprintf (stderr, "\n%-48s %10s %10s %10s\n",
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"source location", "Leak", "Peak", "Times");
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fprintf (stderr, "-------------------------------------------------------\n");
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#endif
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}
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