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blender-archive/source/blender/blenlib/intern/BLI_ghash.c

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C

/*
* ***** BEGIN GPL LICENSE BLOCK *****
*
* This program is free software; you can redistribute it and/or
* modify it under the terms of the GNU General Public License
* as published by the Free Software Foundation; either version 2
* of the License, or (at your option) any later version.
*
* This program is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
* GNU General Public License for more details.
*
* You should have received a copy of the GNU General Public License
* along with this program; if not, write to the Free Software Foundation,
* Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301, USA.
*
* The Original Code is Copyright (C) 2001-2002 by NaN Holding BV.
* All rights reserved.
*
* The Original Code is: all of this file.
*
* Contributor(s): none yet.
*
* ***** END GPL LICENSE BLOCK *****
* A general (pointer -> pointer) hash table ADT
*/
/** \file blender/blenlib/intern/BLI_ghash.c
* \ingroup bli
*/
#include <string.h>
#include <stdlib.h>
#include "MEM_guardedalloc.h"
#include "BLI_sys_types.h" /* for intptr_t support */
#include "BLI_utildefines.h"
#include "BLI_mempool.h"
#include "BLI_ghash.h"
/***/
#ifdef __GNUC__
# pragma GCC diagnostic error "-Wsign-conversion"
# pragma GCC diagnostic error "-Wsign-compare"
# pragma GCC diagnostic error "-Wconversion"
#endif
const unsigned int hashsizes[] = {
5, 11, 17, 37, 67, 131, 257, 521, 1031, 2053, 4099, 8209,
16411, 32771, 65537, 131101, 262147, 524309, 1048583, 2097169,
4194319, 8388617, 16777259, 33554467, 67108879, 134217757,
268435459
};
/***/
GHash *BLI_ghash_new(GHashHashFP hashfp, GHashCmpFP cmpfp, const char *info)
{
GHash *gh = MEM_mallocN(sizeof(*gh), info);
gh->hashfp = hashfp;
gh->cmpfp = cmpfp;
gh->entrypool = BLI_mempool_create(sizeof(Entry), 64, 64, 0);
gh->cursize = 0;
gh->nentries = 0;
gh->nbuckets = hashsizes[gh->cursize];
gh->buckets = MEM_callocN(gh->nbuckets * sizeof(*gh->buckets), "buckets");
return gh;
}
int BLI_ghash_size(GHash *gh)
{
return (int)gh->nentries;
}
void BLI_ghash_insert(GHash *gh, void *key, void *val)
{
unsigned int hash = gh->hashfp(key) % gh->nbuckets;
Entry *e = (Entry *)BLI_mempool_alloc(gh->entrypool);
e->next = gh->buckets[hash];
e->key = key;
e->val = val;
gh->buckets[hash] = e;
if (++gh->nentries > (float)gh->nbuckets / 2) {
Entry **old = gh->buckets;
unsigned int i, nold = gh->nbuckets;
gh->nbuckets = hashsizes[++gh->cursize];
gh->buckets = (Entry **)MEM_callocN(gh->nbuckets * sizeof(*gh->buckets), "buckets");
for (i = 0; i < nold; i++) {
for (e = old[i]; e; ) {
Entry *n = e->next;
hash = gh->hashfp(e->key) % gh->nbuckets;
e->next = gh->buckets[hash];
gh->buckets[hash] = e;
e = n;
}
}
MEM_freeN(old);
}
}
void *BLI_ghash_lookup(GHash *gh, const void *key)
{
const unsigned int hash = gh->hashfp(key) % gh->nbuckets;
Entry *e;
for (e = gh->buckets[hash]; e; e = e->next) {
if (gh->cmpfp(key, e->key) == 0) {
return e->val;
}
}
return NULL;
}
bool BLI_ghash_remove(GHash *gh, void *key, GHashKeyFreeFP keyfreefp, GHashValFreeFP valfreefp)
{
unsigned int hash = gh->hashfp(key) % gh->nbuckets;
Entry *e;
Entry *p = NULL;
for (e = gh->buckets[hash]; e; e = e->next) {
if (gh->cmpfp(key, e->key) == 0) {
Entry *n = e->next;
if (keyfreefp) keyfreefp(e->key);
if (valfreefp) valfreefp(e->val);
BLI_mempool_free(gh->entrypool, e);
/* correct but 'e' isn't used before return */
/* e = n; *//*UNUSED*/
if (p) p->next = n;
else gh->buckets[hash] = n;
gh->nentries--;
return true;
}
p = e;
}
return false;
}
void BLI_ghash_clear(GHash *gh, GHashKeyFreeFP keyfreefp, GHashValFreeFP valfreefp)
{
unsigned int i;
if (keyfreefp || valfreefp) {
for (i = 0; i < gh->nbuckets; i++) {
Entry *e;
for (e = gh->buckets[i]; e; ) {
Entry *n = e->next;
if (keyfreefp) keyfreefp(e->key);
if (valfreefp) valfreefp(e->val);
e = n;
}
}
}
gh->cursize = 0;
gh->nentries = 0;
gh->nbuckets = hashsizes[gh->cursize];
gh->buckets = MEM_recallocN(gh->buckets, gh->nbuckets * sizeof(*gh->buckets));
}
/* same as above but return the value,
* no free value argument since it will be returned */
void *BLI_ghash_pop(GHash *gh, void *key, GHashKeyFreeFP keyfreefp)
{
unsigned int hash = gh->hashfp(key) % gh->nbuckets;
Entry *e;
Entry *p = NULL;
for (e = gh->buckets[hash]; e; e = e->next) {
if (gh->cmpfp(key, e->key) == 0) {
Entry *n = e->next;
void *value = e->val;
if (keyfreefp) keyfreefp(e->key);
BLI_mempool_free(gh->entrypool, e);
/* correct but 'e' isn't used before return */
/* e = n; *//*UNUSED*/
if (p) p->next = n;
else gh->buckets[hash] = n;
gh->nentries--;
return value;
}
p = e;
}
return NULL;
}
bool BLI_ghash_haskey(GHash *gh, const void *key)
{
unsigned int hash = gh->hashfp(key) % gh->nbuckets;
Entry *e;
for (e = gh->buckets[hash]; e; e = e->next)
if (gh->cmpfp(key, e->key) == 0)
return true;
return false;
}
void BLI_ghash_free(GHash *gh, GHashKeyFreeFP keyfreefp, GHashValFreeFP valfreefp)
{
unsigned int i;
if (keyfreefp || valfreefp) {
for (i = 0; i < gh->nbuckets; i++) {
Entry *e;
for (e = gh->buckets[i]; e; ) {
Entry *n = e->next;
if (keyfreefp) keyfreefp(e->key);
if (valfreefp) valfreefp(e->val);
e = n;
}
}
}
MEM_freeN(gh->buckets);
BLI_mempool_destroy(gh->entrypool);
gh->buckets = NULL;
gh->nentries = 0;
gh->nbuckets = 0;
MEM_freeN(gh);
}
/***/
GHashIterator *BLI_ghashIterator_new(GHash *gh)
{
GHashIterator *ghi = MEM_mallocN(sizeof(*ghi), "ghash iterator");
ghi->gh = gh;
ghi->curEntry = NULL;
ghi->curBucket = (unsigned int)-1;
while (!ghi->curEntry) {
ghi->curBucket++;
if (ghi->curBucket == ghi->gh->nbuckets)
break;
ghi->curEntry = ghi->gh->buckets[ghi->curBucket];
}
return ghi;
}
void BLI_ghashIterator_init(GHashIterator *ghi, GHash *gh)
{
ghi->gh = gh;
ghi->curEntry = NULL;
ghi->curBucket = (unsigned int)-1;
while (!ghi->curEntry) {
ghi->curBucket++;
if (ghi->curBucket == ghi->gh->nbuckets)
break;
ghi->curEntry = ghi->gh->buckets[ghi->curBucket];
}
}
void BLI_ghashIterator_free(GHashIterator *ghi)
{
MEM_freeN(ghi);
}
void *BLI_ghashIterator_getKey(GHashIterator *ghi)
{
return ghi->curEntry ? ghi->curEntry->key : NULL;
}
void *BLI_ghashIterator_getValue(GHashIterator *ghi)
{
return ghi->curEntry ? ghi->curEntry->val : NULL;
}
void BLI_ghashIterator_step(GHashIterator *ghi)
{
if (ghi->curEntry) {
ghi->curEntry = ghi->curEntry->next;
while (!ghi->curEntry) {
ghi->curBucket++;
if (ghi->curBucket == ghi->gh->nbuckets)
break;
ghi->curEntry = ghi->gh->buckets[ghi->curBucket];
}
}
}
bool BLI_ghashIterator_done(GHashIterator *ghi)
{
return ghi->curEntry == NULL;
}
/***/
unsigned int BLI_ghashutil_ptrhash(const void *key)
{
return (unsigned int)(intptr_t)key;
}
int BLI_ghashutil_ptrcmp(const void *a, const void *b)
{
if (a == b)
return 0;
else
return (a < b) ? -1 : 1;
}
unsigned int BLI_ghashutil_inthash(const void *ptr)
{
uintptr_t key = (uintptr_t)ptr;
key += ~(key << 16);
key ^= (key >> 5);
key += (key << 3);
key ^= (key >> 13);
key += ~(key << 9);
key ^= (key >> 17);
return (unsigned int)(key & 0xffffffff);
}
int BLI_ghashutil_intcmp(const void *a, const void *b)
{
if (a == b)
return 0;
else
return (a < b) ? -1 : 1;
}
/**
* This function implements the widely used "djb" hash apparently posted
* by Daniel Bernstein to comp.lang.c some time ago. The 32 bit
* unsigned hash value starts at 5381 and for each byte 'c' in the
* string, is updated: <literal>hash = hash * 33 + c</literal>. This
* function uses the signed value of each byte.
*
* note: this is the same hash method that glib 2.34.0 uses.
*/
unsigned int BLI_ghashutil_strhash(const void *ptr)
{
const signed char *p;
unsigned int h = 5381;
for (p = ptr; *p != '\0'; p++) {
h = (h << 5) + h + (unsigned int)*p;
}
return h;
}
int BLI_ghashutil_strcmp(const void *a, const void *b)
{
return strcmp(a, b);
}
GHash *BLI_ghash_ptr_new(const char *info)
{
return BLI_ghash_new(BLI_ghashutil_ptrhash, BLI_ghashutil_ptrcmp, info);
}
GHash *BLI_ghash_str_new(const char *info)
{
return BLI_ghash_new(BLI_ghashutil_strhash, BLI_ghashutil_strcmp, info);
}
GHash *BLI_ghash_int_new(const char *info)
{
return BLI_ghash_new(BLI_ghashutil_inthash, BLI_ghashutil_intcmp, info);
}
GHash *BLI_ghash_pair_new(const char *info)
{
return BLI_ghash_new(BLI_ghashutil_pairhash, BLI_ghashutil_paircmp, info);
}
GHashPair *BLI_ghashutil_pairalloc(const void *first, const void *second)
{
GHashPair *pair = MEM_mallocN(sizeof(GHashPair), "GHashPair");
pair->first = first;
pair->second = second;
return pair;
}
unsigned int BLI_ghashutil_pairhash(const void *ptr)
{
const GHashPair *pair = ptr;
unsigned int hash = BLI_ghashutil_ptrhash(pair->first);
return hash ^ BLI_ghashutil_ptrhash(pair->second);
}
int BLI_ghashutil_paircmp(const void *a, const void *b)
{
const GHashPair *A = a;
const GHashPair *B = b;
int cmp = BLI_ghashutil_ptrcmp(A->first, B->first);
if (cmp == 0)
return BLI_ghashutil_ptrcmp(A->second, B->second);
return cmp;
}
void BLI_ghashutil_pairfree(void *ptr)
{
MEM_freeN(ptr);
}