mirror of https://github.com/YosysHQ/abc.git
625 lines
12 KiB
C
625 lines
12 KiB
C
/*
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* Revision Control Information
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*
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* /projects/hsis/CVS/utilities/st/st.c,v
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* serdar
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* 1.1
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* 1993/07/29 01:00:13
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*
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*/
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#include <stdio.h>
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#include <stdlib.h>
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#include "st.h"
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#ifndef ABS
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# define ABS(a) ((a) < 0 ? -(a) : (a))
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#endif
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#ifndef ALLOC
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#define ALLOC(type, num) ((type *) malloc(sizeof(type) * (num)))
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#endif
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#ifndef FREE
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#define FREE(obj) ((obj) ? (free((char *) (obj)), (obj) = 0) : 0)
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#endif
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#ifndef REALLOC
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#define REALLOC(type, obj, num) \
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((obj) ? ((type *) realloc((char *)(obj), sizeof(type) * (num))) : \
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((type *) malloc(sizeof(type) * (num))))
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#endif
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#define ST_NUMCMP(x,y) ((x) != (y))
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#define ST_NUMHASH(x,size) (ABS((long)x)%(size))
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#define ST_PTRHASH(x,size) ((int)((unsigned long)(x)>>2)%size)
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#define EQUAL(func, x, y) \
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((((func) == st_numcmp) || ((func) == st_ptrcmp)) ?\
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(ST_NUMCMP((x),(y)) == 0) : ((*func)((x), (y)) == 0))
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#define do_hash(key, table)\
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((table->hash == st_ptrhash) ? ST_PTRHASH((key),(table)->num_bins) :\
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(table->hash == st_numhash) ? ST_NUMHASH((key), (table)->num_bins) :\
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(*table->hash)((key), (table)->num_bins))
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static int rehash();
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int st_numhash(), st_ptrhash(), st_numcmp(), st_ptrcmp();
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st_table *
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st_init_table_with_params(compare, hash, size, density, grow_factor,
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reorder_flag)
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int (*compare)();
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int (*hash)();
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int size;
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int density;
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double grow_factor;
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int reorder_flag;
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{
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int i;
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st_table *new;
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new = ALLOC(st_table, 1);
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if (new == NULL) {
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return NULL;
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}
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new->compare = compare;
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new->hash = hash;
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new->num_entries = 0;
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new->max_density = density;
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new->grow_factor = grow_factor;
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new->reorder_flag = reorder_flag;
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if (size <= 0) {
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size = 1;
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}
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new->num_bins = size;
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new->bins = ALLOC(st_table_entry *, size);
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if (new->bins == NULL) {
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FREE(new);
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return NULL;
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}
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for(i = 0; i < size; i++) {
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new->bins[i] = 0;
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}
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return new;
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}
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st_table *
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st_init_table(compare, hash)
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int (*compare)();
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int (*hash)();
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{
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return st_init_table_with_params(compare, hash, ST_DEFAULT_INIT_TABLE_SIZE,
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ST_DEFAULT_MAX_DENSITY,
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ST_DEFAULT_GROW_FACTOR,
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ST_DEFAULT_REORDER_FLAG);
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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 != NULL) {
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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, user_key)\
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(ptr != NULL && !EQUAL(table->compare, user_key, (ptr)->key))
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#define FIND_ENTRY(table, hash_val, key, ptr, last) \
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(last) = &(table)->bins[hash_val];\
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(ptr) = *(last);\
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while (PTR_NOT_EQUAL((table), (ptr), (key))) {\
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(last) = &(ptr)->next; (ptr) = *(last);\
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}\
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if ((ptr) != NULL && (table)->reorder_flag) {\
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*(last) = (ptr)->next;\
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(ptr)->next = (table)->bins[hash_val];\
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(table)->bins[hash_val] = (ptr);\
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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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int hash_val;
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register st_table_entry *ptr, **last;
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hash_val = do_hash(key, table);
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FIND_ENTRY(table, hash_val, key, ptr, last);
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if (ptr == NULL) {
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return 0;
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} else {
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if (value != NULL) {
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*value = ptr->record;
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}
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return 1;
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}
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}
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int
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st_lookup_int(table, key, value)
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st_table *table;
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register char *key;
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int *value;
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{
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int hash_val;
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register st_table_entry *ptr, **last;
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hash_val = do_hash(key, table);
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FIND_ENTRY(table, hash_val, key, ptr, last);
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if (ptr == NULL) {
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return 0;
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} else {
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if (value != 0) {
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*value = (long) ptr->record;
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}
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return 1;
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}
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}
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/* This macro does not check if memory allocation fails. Use at you own risk */
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#define ADD_DIRECT(table, key, value, hash_val, new)\
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{\
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if (table->num_entries/table->num_bins >= table->max_density) {\
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rehash(table);\
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hash_val = do_hash(key,table);\
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}\
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\
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new = ALLOC(st_table_entry, 1);\
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\
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new->key = key;\
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new->record = value;\
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new->next = table->bins[hash_val];\
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table->bins[hash_val] = new;\
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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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int hash_val;
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st_table_entry *new;
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register st_table_entry *ptr, **last;
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hash_val = do_hash(key, table);
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FIND_ENTRY(table, hash_val, key, ptr, last);
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if (ptr == NULL) {
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if (table->num_entries/table->num_bins >= table->max_density) {
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if (rehash(table) == ST_OUT_OF_MEM) {
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return ST_OUT_OF_MEM;
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}
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hash_val = do_hash(key, table);
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}
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new = ALLOC(st_table_entry, 1);
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if (new == NULL) {
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return ST_OUT_OF_MEM;
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}
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new->key = key;
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new->record = value;
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new->next = table->bins[hash_val];
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table->bins[hash_val] = new;
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table->num_entries++;
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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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int
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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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int hash_val;
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st_table_entry *new;
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hash_val = do_hash(key, table);
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if (table->num_entries / table->num_bins >= table->max_density) {
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if (rehash(table) == ST_OUT_OF_MEM) {
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return ST_OUT_OF_MEM;
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}
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}
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hash_val = do_hash(key, table);
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new = ALLOC(st_table_entry, 1);
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if (new == NULL) {
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return ST_OUT_OF_MEM;
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}
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new->key = key;
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new->record = value;
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new->next = table->bins[hash_val];
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table->bins[hash_val] = new;
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table->num_entries++;
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return 1;
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}
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int
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st_find_or_add(table, key, slot)
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st_table *table;
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char *key;
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char ***slot;
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{
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int hash_val;
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st_table_entry *new, *ptr, **last;
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hash_val = do_hash(key, table);
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FIND_ENTRY(table, hash_val, key, ptr, last);
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if (ptr == NULL) {
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if (table->num_entries / table->num_bins >= table->max_density) {
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if (rehash(table) == ST_OUT_OF_MEM) {
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return ST_OUT_OF_MEM;
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}
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hash_val = do_hash(key, table);
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}
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new = ALLOC(st_table_entry, 1);
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if (new == NULL) {
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return ST_OUT_OF_MEM;
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}
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new->key = key;
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new->record = (char *) 0;
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new->next = table->bins[hash_val];
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table->bins[hash_val] = new;
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table->num_entries++;
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if (slot != NULL) *slot = &new->record;
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return 0;
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} else {
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if (slot != NULL) *slot = &ptr->record;
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return 1;
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}
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}
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int
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st_find(table, key, slot)
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st_table *table;
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char *key;
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char ***slot;
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{
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int hash_val;
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st_table_entry *ptr, **last;
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hash_val = do_hash(key, table);
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FIND_ENTRY(table, hash_val, key, ptr, last);
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if (ptr == NULL) {
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return 0;
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} else {
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if (slot != NULL) {
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*slot = &ptr->record;
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}
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return 1;
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}
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}
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static int
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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, **old_bins;
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int i, old_num_bins, hash_val, old_num_entries;
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/* save old values */
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old_bins = table->bins;
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old_num_bins = table->num_bins;
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old_num_entries = table->num_entries;
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/* rehash */
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table->num_bins = (int)(table->grow_factor * old_num_bins);
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if (table->num_bins % 2 == 0) {
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table->num_bins += 1;
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}
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table->num_entries = 0;
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table->bins = ALLOC(st_table_entry *, table->num_bins);
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if (table->bins == NULL) {
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table->bins = old_bins;
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table->num_bins = old_num_bins;
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table->num_entries = old_num_entries;
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return ST_OUT_OF_MEM;
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}
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/* initialize */
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for (i = 0; i < table->num_bins; i++) {
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table->bins[i] = 0;
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}
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/* copy data over */
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for (i = 0; i < old_num_bins; i++) {
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ptr = old_bins[i];
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while (ptr != NULL) {
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next = ptr->next;
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hash_val = do_hash(ptr->key, table);
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ptr->next = table->bins[hash_val];
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table->bins[hash_val] = ptr;
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table->num_entries++;
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ptr = next;
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}
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}
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FREE(old_bins);
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return 1;
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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, *newptr, *next, *new;
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int i, j, num_bins = old_table->num_bins;
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new_table = ALLOC(st_table, 1);
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if (new_table == NULL) {
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return NULL;
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}
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*new_table = *old_table;
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new_table->bins = ALLOC(st_table_entry *, num_bins);
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if (new_table->bins == NULL) {
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FREE(new_table);
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return NULL;
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}
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for(i = 0; i < num_bins ; i++) {
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new_table->bins[i] = NULL;
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ptr = old_table->bins[i];
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while (ptr != NULL) {
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new = ALLOC(st_table_entry, 1);
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if (new == NULL) {
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for (j = 0; j <= i; j++) {
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newptr = new_table->bins[j];
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while (newptr != NULL) {
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next = newptr->next;
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FREE(newptr);
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newptr = next;
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}
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}
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FREE(new_table->bins);
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FREE(new_table);
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return NULL;
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}
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*new = *ptr;
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new->next = new_table->bins[i];
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new_table->bins[i] = new;
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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, keyp, value)
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register st_table *table;
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register char **keyp;
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char **value;
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{
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int hash_val;
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char *key = *keyp;
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register st_table_entry *ptr, **last;
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hash_val = do_hash(key, table);
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FIND_ENTRY(table, hash_val, key, ptr ,last);
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if (ptr == NULL) {
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return 0;
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}
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*last = ptr->next;
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if (value != NULL) *value = ptr->record;
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*keyp = ptr->key;
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FREE(ptr);
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table->num_entries--;
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return 1;
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}
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int
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st_delete_int(table, keyp, value)
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register st_table *table;
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register long *keyp;
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char **value;
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{
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int hash_val;
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char *key = (char *) *keyp;
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register st_table_entry *ptr, **last;
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hash_val = do_hash(key, table);
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FIND_ENTRY(table, hash_val, key, ptr ,last);
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if (ptr == NULL) {
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return 0;
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}
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*last = ptr->next;
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if (value != NULL) *value = ptr->record;
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*keyp = (long) ptr->key;
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FREE(ptr);
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table->num_entries--;
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return 1;
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}
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int
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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;
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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 = &table->bins[i]; ptr = *last;
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while (ptr != NULL) {
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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->next; ptr = *last;
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break;
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case ST_STOP:
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return 0;
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case ST_DELETE:
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*last = ptr->next;
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table->num_entries--; /* cstevens@ic */
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FREE(ptr);
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ptr = *last;
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}
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}
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}
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return 1;
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}
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int
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st_strhash(string, modulus)
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register char *string;
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int modulus;
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{
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register int val = 0;
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register int c;
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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 < 0) ? -val : val)%modulus;
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}
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int
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st_numhash(x, size)
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char *x;
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int size;
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{
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return ST_NUMHASH(x, size);
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}
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int
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st_ptrhash(x, size)
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char *x;
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int size;
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{
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return ST_PTRHASH(x, size);
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}
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int
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st_numcmp(x, y)
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char *x;
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char *y;
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{
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return ST_NUMCMP(x, y);
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}
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int
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st_ptrcmp(x, y)
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char *x;
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char *y;
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{
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return ST_NUMCMP(x, y);
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}
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st_generator *
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st_init_gen(table)
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st_table *table;
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{
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st_generator *gen;
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gen = ALLOC(st_generator, 1);
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if (gen == NULL) {
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return NULL;
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}
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gen->table = table;
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gen->entry = NULL;
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gen->index = 0;
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return gen;
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}
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int
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st_gen(gen, key_p, value_p)
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st_generator *gen;
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char **key_p;
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char **value_p;
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{
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register int i;
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if (gen->entry == NULL) {
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/* try to find next entry */
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for(i = gen->index; i < gen->table->num_bins; i++) {
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if (gen->table->bins[i] != NULL) {
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gen->index = i+1;
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gen->entry = gen->table->bins[i];
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break;
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}
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}
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if (gen->entry == NULL) {
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return 0; /* that's all folks ! */
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}
|
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}
|
||
*key_p = gen->entry->key;
|
||
if (value_p != 0) {
|
||
*value_p = gen->entry->record;
|
||
}
|
||
gen->entry = gen->entry->next;
|
||
return 1;
|
||
}
|
||
|
||
|
||
int
|
||
st_gen_int(gen, key_p, value_p)
|
||
st_generator *gen;
|
||
char **key_p;
|
||
long *value_p;
|
||
{
|
||
register int i;
|
||
|
||
if (gen->entry == NULL) {
|
||
/* try to find next entry */
|
||
for(i = gen->index; i < gen->table->num_bins; i++) {
|
||
if (gen->table->bins[i] != NULL) {
|
||
gen->index = i+1;
|
||
gen->entry = gen->table->bins[i];
|
||
break;
|
||
}
|
||
}
|
||
if (gen->entry == NULL) {
|
||
return 0; /* that's all folks ! */
|
||
}
|
||
}
|
||
*key_p = gen->entry->key;
|
||
if (value_p != 0) {
|
||
*value_p = (long) gen->entry->record;
|
||
}
|
||
gen->entry = gen->entry->next;
|
||
return 1;
|
||
}
|
||
|
||
|
||
void
|
||
st_free_gen(gen)
|
||
st_generator *gen;
|
||
{
|
||
FREE(gen);
|
||
}
|