1995-05-30 05:05:38 +00:00
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/* $RCSfile: hash.c,v $$Revision: 1.1.1.1 $$Date: 1994/09/10 06:27:54 $
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1994-09-10 06:27:55 +00:00
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*
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* Copyright (c) 1991, Larry Wall
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*
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* You may distribute under the terms of either the GNU General Public
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* License or the Artistic License, as specified in the README file.
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*
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* $Log: hash.c,v $
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1995-05-30 05:05:38 +00:00
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* Revision 1.1.1.1 1994/09/10 06:27:54 gclarkii
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* Initial import of Perl 4.046 bmaked
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*
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1994-09-10 06:27:55 +00:00
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* Revision 1.1.1.1 1993/08/23 21:30:10 nate
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* PERL!
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*
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* Revision 4.0.1.1 91/06/07 12:15:55 lwall
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* patch4: new copyright notice
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1995-05-30 05:05:38 +00:00
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*
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1994-09-10 06:27:55 +00:00
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* Revision 4.0 91/03/20 01:57:49 lwall
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* 4.0 baseline.
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1995-05-30 05:05:38 +00:00
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*
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1994-09-10 06:27:55 +00:00
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*/
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#include <stdio.h>
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#include "EXTERN.h"
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#include "handy.h"
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#include "util.h"
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#include "a2p.h"
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STR *
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hfetch(tb,key)
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register HASH *tb;
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char *key;
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{
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register char *s;
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register int i;
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register int hash;
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register HENT *entry;
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if (!tb)
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return Nullstr;
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for (s=key, i=0, hash = 0;
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/* while */ *s;
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s++, i++, hash *= 5) {
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hash += *s * coeff[i];
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}
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entry = tb->tbl_array[hash & tb->tbl_max];
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for (; entry; entry = entry->hent_next) {
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if (entry->hent_hash != hash) /* strings can't be equal */
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continue;
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if (strNE(entry->hent_key,key)) /* is this it? */
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continue;
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return entry->hent_val;
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}
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return Nullstr;
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}
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bool
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hstore(tb,key,val)
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register HASH *tb;
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char *key;
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STR *val;
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{
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register char *s;
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register int i;
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register int hash;
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register HENT *entry;
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register HENT **oentry;
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if (!tb)
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return FALSE;
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for (s=key, i=0, hash = 0;
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/* while */ *s;
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s++, i++, hash *= 5) {
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hash += *s * coeff[i];
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}
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oentry = &(tb->tbl_array[hash & tb->tbl_max]);
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i = 1;
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for (entry = *oentry; entry; i=0, entry = entry->hent_next) {
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if (entry->hent_hash != hash) /* strings can't be equal */
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continue;
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if (strNE(entry->hent_key,key)) /* is this it? */
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continue;
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/*NOSTRICT*/
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safefree((char*)entry->hent_val);
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entry->hent_val = val;
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return TRUE;
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}
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/*NOSTRICT*/
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entry = (HENT*) safemalloc(sizeof(HENT));
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entry->hent_key = savestr(key);
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entry->hent_val = val;
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entry->hent_hash = hash;
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entry->hent_next = *oentry;
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*oentry = entry;
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if (i) { /* initial entry? */
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tb->tbl_fill++;
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if ((tb->tbl_fill * 100 / (tb->tbl_max + 1)) > FILLPCT)
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hsplit(tb);
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}
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return FALSE;
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}
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#ifdef NOTUSED
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bool
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hdelete(tb,key)
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register HASH *tb;
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char *key;
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{
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register char *s;
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register int i;
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register int hash;
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register HENT *entry;
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register HENT **oentry;
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if (!tb)
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return FALSE;
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for (s=key, i=0, hash = 0;
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/* while */ *s;
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s++, i++, hash *= 5) {
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hash += *s * coeff[i];
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}
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oentry = &(tb->tbl_array[hash & tb->tbl_max]);
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entry = *oentry;
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i = 1;
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for (; entry; i=0, oentry = &entry->hent_next, entry = entry->hent_next) {
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if (entry->hent_hash != hash) /* strings can't be equal */
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continue;
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if (strNE(entry->hent_key,key)) /* is this it? */
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continue;
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safefree((char*)entry->hent_val);
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safefree(entry->hent_key);
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*oentry = entry->hent_next;
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safefree((char*)entry);
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if (i)
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tb->tbl_fill--;
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return TRUE;
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}
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return FALSE;
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}
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#endif
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hsplit(tb)
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HASH *tb;
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{
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int oldsize = tb->tbl_max + 1;
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register int newsize = oldsize * 2;
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register int i;
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register HENT **a;
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register HENT **b;
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register HENT *entry;
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register HENT **oentry;
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a = (HENT**) saferealloc((char*)tb->tbl_array, newsize * sizeof(HENT*));
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bzero((char*)&a[oldsize], oldsize * sizeof(HENT*)); /* zero second half */
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tb->tbl_max = --newsize;
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tb->tbl_array = a;
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for (i=0; i<oldsize; i++,a++) {
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if (!*a) /* non-existent */
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continue;
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b = a+oldsize;
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for (oentry = a, entry = *a; entry; entry = *oentry) {
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if ((entry->hent_hash & newsize) != i) {
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*oentry = entry->hent_next;
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entry->hent_next = *b;
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if (!*b)
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tb->tbl_fill++;
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*b = entry;
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continue;
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}
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else
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oentry = &entry->hent_next;
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}
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if (!*a) /* everything moved */
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tb->tbl_fill--;
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}
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}
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HASH *
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hnew()
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{
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register HASH *tb = (HASH*)safemalloc(sizeof(HASH));
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tb->tbl_array = (HENT**) safemalloc(8 * sizeof(HENT*));
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tb->tbl_fill = 0;
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tb->tbl_max = 7;
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hiterinit(tb); /* so each() will start off right */
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bzero((char*)tb->tbl_array, 8 * sizeof(HENT*));
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return tb;
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}
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#ifdef NOTUSED
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hshow(tb)
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register HASH *tb;
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{
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fprintf(stderr,"%5d %4d (%2d%%)\n",
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tb->tbl_max+1,
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tb->tbl_fill,
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tb->tbl_fill * 100 / (tb->tbl_max+1));
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}
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#endif
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hiterinit(tb)
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register HASH *tb;
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{
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tb->tbl_riter = -1;
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tb->tbl_eiter = Null(HENT*);
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return tb->tbl_fill;
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}
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HENT *
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hiternext(tb)
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register HASH *tb;
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{
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register HENT *entry;
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entry = tb->tbl_eiter;
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do {
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if (entry)
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entry = entry->hent_next;
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if (!entry) {
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tb->tbl_riter++;
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if (tb->tbl_riter > tb->tbl_max) {
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tb->tbl_riter = -1;
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break;
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}
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entry = tb->tbl_array[tb->tbl_riter];
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}
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} while (!entry);
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tb->tbl_eiter = entry;
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return entry;
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}
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char *
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hiterkey(entry)
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register HENT *entry;
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{
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return entry->hent_key;
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}
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STR *
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hiterval(entry)
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register HENT *entry;
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{
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return entry->hent_val;
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}
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