зеркало из https://github.com/github/ruby.git
560 строки
10 KiB
C
560 строки
10 KiB
C
/* This is a public domain general purpose hash table package written by Peter Moore @ UCB. */
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static char sccsid[] = "@(#) st.c 5.1 89/12/14 Crucible";
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#include "config.h"
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#include <stdio.h>
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#include "st.h"
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#ifdef NT
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#include <malloc.h>
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#endif
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typedef struct st_table_entry st_table_entry;
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struct st_table_entry {
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unsigned int hash;
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char *key;
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char *record;
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st_table_entry *next;
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};
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#define ST_DEFAULT_MAX_DENSITY 5
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#define ST_DEFAULT_INIT_TABLE_SIZE 11
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/*
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* DEFAULT_MAX_DENSITY is the default for the largest we allow the
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* average number of items per bin before increasing the number of
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* bins
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*
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* DEFAULT_INIT_TABLE_SIZE is the default for the number of bins
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* allocated initially
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*
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*/
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static int numcmp();
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static int numhash();
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static struct st_hash_type type_numhash = {
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numcmp,
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numhash,
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};
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extern int strcmp();
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static int strhash();
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static struct st_hash_type type_strhash = {
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strcmp,
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strhash,
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};
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#ifdef RUBY_PLATFORM
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#define xmalloc ruby_xmalloc
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#define xcalloc ruby_xcalloc
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#define xrealloc ruby_xrealloc
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#define xfree ruby_xfree
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void *xmalloc();
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void *xcalloc();
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void *xrealloc();
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void xfree();
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#endif
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static void rehash();
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#define alloc(type) (type*)xmalloc((unsigned)sizeof(type))
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#define Calloc(n,s) (char*)xcalloc((n),(s))
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#define EQUAL(table, x, y) ((*table->type->compare)(x, y) == 0)
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#define do_hash(key, table) (unsigned int)(*(table)->type->hash)((key))
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#define do_hash_bin(key, table) (do_hash(key, table)&(table)->num_bins)
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/*
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* MINSIZE is the minimum size of a dictionary.
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*/
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#define MINSIZE 8
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/*
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Table of prime numbers 2^n+a, 2<=n<=30.
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*/
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static long primes[] = {
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8 + 3,
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16 + 3,
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32 + 5,
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64 + 3,
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128 + 3,
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256 + 27,
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512 + 9,
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1024 + 9,
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2048 + 5,
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4096 + 83,
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8192 + 27,
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16384 + 43,
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32768 + 3,
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65536 + 45,
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131072 + 9,
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262144 + 39,
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524288 + 39,
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1048576 + 9,
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2097152 + 5,
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4194304 + 3,
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8388608 + 33,
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16777216 + 27,
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33554432 + 9,
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67108864 + 71,
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134217728 + 39,
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268435456 + 9,
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536870912 + 5,
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1073741824 + 83,
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0
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};
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static int
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new_size(size)
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int size;
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{
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int i, newsize;
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#if 1
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for (i=3; i<31; i++) {
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if ((1<<i) > size) return 1<<i;
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}
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return -1;
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#else
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for (i = 0, newsize = MINSIZE;
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i < sizeof(primes)/sizeof(primes[0]);
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i++, newsize <<= 1)
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{
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if (newsize > size) return primes[i];
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}
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/* Ran out of polynomials */
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return -1; /* should raise exception */
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#endif
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}
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#ifdef HASH_LOG
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static int collision = 0;
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static int init_st = 0;
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static void
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stat_col()
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{
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FILE *f = fopen("/tmp/col", "w");
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fprintf(f, "collision: %d\n", collision);
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fclose(f);
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}
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#endif
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st_table*
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st_init_table_with_size(type, size)
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struct st_hash_type *type;
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int size;
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{
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st_table *tbl;
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#ifdef HASH_LOG
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if (init_st == 0) {
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init_st = 1;
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atexit(stat_col);
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}
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#endif
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size = new_size(size); /* round up to prime number */
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tbl = alloc(st_table);
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tbl->type = type;
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tbl->num_entries = 0;
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tbl->num_bins = size-1;
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tbl->bins = (st_table_entry **)Calloc(size, sizeof(st_table_entry*));
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return tbl;
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}
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st_table*
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st_init_table(type)
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struct st_hash_type *type;
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{
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return st_init_table_with_size(type, 0);
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}
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st_table*
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st_init_numtable()
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{
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return st_init_table(&type_numhash);
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}
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st_table*
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st_init_numtable_with_size(size)
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int size;
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{
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return st_init_table_with_size(&type_numhash, size);
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}
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st_table*
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st_init_strtable()
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{
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return st_init_table(&type_strhash);
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}
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st_table*
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st_init_strtable_with_size(size)
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int size;
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{
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return st_init_table_with_size(&type_strhash, size);
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}
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void
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st_free_table(table)
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st_table *table;
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{
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register st_table_entry *ptr, *next;
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int i;
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for(i = 0; i <= table->num_bins; i++) {
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ptr = table->bins[i];
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while (ptr != 0) {
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next = ptr->next;
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free(ptr);
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ptr = next;
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}
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}
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free(table->bins);
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free(table);
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}
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#define PTR_NOT_EQUAL(table, ptr, hash_val, key) \
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((ptr) != 0 && (ptr->hash != (hash_val) || !EQUAL((table), (key), (ptr)->key)))
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#ifdef HASH_LOG
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#define COLLISION collision++
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#else
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#define COLLISION
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#endif
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#define FIND_ENTRY(table, ptr, hash_val, bin_pos) \
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bin_pos = hash_val&(table)->num_bins;\
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ptr = (table)->bins[bin_pos];\
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if (PTR_NOT_EQUAL(table, ptr, hash_val, key)) {\
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COLLISION;\
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while (PTR_NOT_EQUAL(table, ptr->next, hash_val, key)) {\
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ptr = ptr->next;\
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}\
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ptr = ptr->next;\
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}
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int
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st_lookup(table, key, value)
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st_table *table;
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register char *key;
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char **value;
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{
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unsigned int hash_val, bin_pos;
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register st_table_entry *ptr;
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hash_val = do_hash(key, table);
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FIND_ENTRY(table, ptr, hash_val, bin_pos);
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if (ptr == 0) {
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return 0;
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} else {
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if (value != 0) *value = ptr->record;
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return 1;
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}
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}
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#define ADD_DIRECT(table, key, value, hash_val, bin_pos)\
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{\
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st_table_entry *entry;\
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if (table->num_entries/(table->num_bins+1) > ST_DEFAULT_MAX_DENSITY) {\
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rehash(table);\
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bin_pos = hash_val & table->num_bins;\
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}\
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\
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entry = alloc(st_table_entry);\
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\
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entry->hash = hash_val;\
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entry->key = key;\
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entry->record = value;\
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entry->next = table->bins[bin_pos];\
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table->bins[bin_pos] = entry;\
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table->num_entries++;\
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}
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int
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st_insert(table, key, value)
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register st_table *table;
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register char *key;
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char *value;
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{
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unsigned int hash_val, bin_pos;
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register st_table_entry *ptr;
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hash_val = do_hash(key, table);
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FIND_ENTRY(table, ptr, hash_val, bin_pos);
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if (ptr == 0) {
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ADD_DIRECT(table, key, value, hash_val, bin_pos);
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return 0;
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} else {
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ptr->record = value;
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return 1;
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}
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}
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void
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st_add_direct(table, key, value)
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st_table *table;
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char *key;
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char *value;
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{
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unsigned int hash_val, bin_pos;
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hash_val = do_hash(key, table);
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bin_pos = hash_val & table->num_bins;
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ADD_DIRECT(table, key, value, hash_val, bin_pos);
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}
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static void
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rehash(table)
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register st_table *table;
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{
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register st_table_entry *ptr, *next, **new_bins;
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int i, old_num_bins = table->num_bins, new_num_bins;
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unsigned int hash_val;
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new_num_bins = new_size(old_num_bins+1);
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new_bins = (st_table_entry**)Calloc(new_num_bins, sizeof(st_table_entry*));
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new_num_bins--;
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for(i = 0; i <= old_num_bins; i++) {
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ptr = table->bins[i];
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while (ptr != 0) {
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next = ptr->next;
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hash_val = ptr->hash & new_num_bins;
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ptr->next = new_bins[hash_val];
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new_bins[hash_val] = ptr;
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ptr = next;
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}
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}
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free(table->bins);
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table->num_bins = new_num_bins;
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table->bins = new_bins;
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}
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st_table*
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st_copy(old_table)
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st_table *old_table;
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{
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st_table *new_table;
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st_table_entry *ptr, *entry;
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int i, num_bins = old_table->num_bins+1;
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new_table = alloc(st_table);
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if (new_table == 0) {
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return 0;
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}
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*new_table = *old_table;
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new_table->bins = (st_table_entry**)
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Calloc((unsigned)num_bins, sizeof(st_table_entry*));
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if (new_table->bins == 0) {
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free(new_table);
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return 0;
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}
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for(i = 0; i < num_bins; i++) {
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new_table->bins[i] = 0;
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ptr = old_table->bins[i];
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while (ptr != 0) {
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entry = alloc(st_table_entry);
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if (entry == 0) {
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free(new_table->bins);
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free(new_table);
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return 0;
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}
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*entry = *ptr;
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entry->next = new_table->bins[i];
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new_table->bins[i] = entry;
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ptr = ptr->next;
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}
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}
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return new_table;
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}
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int
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st_delete(table, key, value)
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register st_table *table;
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register char **key;
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char **value;
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{
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unsigned int hash_val;
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st_table_entry *tmp;
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register st_table_entry *ptr;
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hash_val = do_hash_bin(*key, table);
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ptr = table->bins[hash_val];
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if (ptr == 0) {
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if (value != 0) *value = 0;
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return 0;
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}
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if (EQUAL(table, *key, ptr->key)) {
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table->bins[hash_val] = ptr->next;
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table->num_entries--;
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if (value != 0) *value = ptr->record;
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*key = ptr->key;
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free(ptr);
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return 1;
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}
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for(; ptr->next != 0; ptr = ptr->next) {
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if (EQUAL(table, ptr->next->key, *key)) {
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tmp = ptr->next;
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ptr->next = ptr->next->next;
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table->num_entries--;
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if (value != 0) *value = tmp->record;
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*key = tmp->key;
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free(tmp);
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return 1;
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}
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}
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return 0;
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}
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int
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st_delete_safe(table, key, value, never)
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register st_table *table;
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register char **key;
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char **value;
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char *never;
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{
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unsigned int hash_val;
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register st_table_entry *ptr;
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hash_val = do_hash_bin(*key, table);
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ptr = table->bins[hash_val];
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if (ptr == 0) {
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if (value != 0) *value = 0;
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return 0;
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}
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for(; ptr != 0; ptr = ptr->next) {
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if ((ptr->key != never) && EQUAL(table, ptr->key, *key)) {
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table->num_entries--;
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*key = ptr->key;
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if (value != 0) *value = ptr->record;
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ptr->key = ptr->record = never;
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return 1;
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}
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}
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return 0;
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}
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static int
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delete_never(key, value, never)
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char *key, *value, *never;
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{
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if (value == never) return ST_DELETE;
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return ST_CONTINUE;
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}
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void
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st_cleanup_safe(table, never)
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st_table *table;
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char *never;
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{
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int num_entries = table->num_entries;
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st_foreach(table, delete_never, never);
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table->num_entries = num_entries;
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}
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void
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st_foreach(table, func, arg)
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st_table *table;
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enum st_retval (*func)();
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char *arg;
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{
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st_table_entry *ptr, *last, *tmp;
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enum st_retval retval;
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int i;
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for(i = 0; i <= table->num_bins; i++) {
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last = 0;
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for(ptr = table->bins[i]; ptr != 0;) {
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retval = (*func)(ptr->key, ptr->record, arg);
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switch (retval) {
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case ST_CONTINUE:
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last = ptr;
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ptr = ptr->next;
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break;
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case ST_STOP:
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return;
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case ST_DELETE:
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tmp = ptr;
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if (last == 0) {
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table->bins[i] = ptr->next;
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} else {
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last->next = ptr->next;
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}
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ptr = ptr->next;
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free(tmp);
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table->num_entries--;
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}
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}
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}
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}
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static int
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strhash(string)
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register char *string;
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{
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register int c;
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#ifdef HASH_ELFHASH
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register unsigned int h = 0, g;
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while ((c = *string++) != '\0') {
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h = ( h << 4 ) + c;
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if ( g = h & 0xF0000000 )
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h ^= g >> 24;
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h &= ~g;
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}
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return h;
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#elif HASH_PERL
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register int val = 0;
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while ((c = *string++) != '\0') {
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val = val*33 + c;
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}
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return val + (val>>5);
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#else
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register int val = 0;
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while ((c = *string++) != '\0') {
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val = val*997 + c;
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}
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return val + (val>>5);
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#endif
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}
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static int
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numcmp(x, y)
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long x, y;
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{
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return x != y;
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}
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static int
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numhash(n)
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long n;
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{
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return n;
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}
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