Magomed Kostoev (mkostoevr)
0b8e3382ef
git-svn-id: svn://kolibrios.org@8601 a494cfbc-eb01-0410-851d-a64ba20cac60
351 lines
10 KiB
C
351 lines
10 KiB
C
// Copyright (c) 2020 Magomed Kostoev
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//
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// You may use, distribute and modify this code under the terms of the MIT license.
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//
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// You should have received a copy of the MIT license with this file. If not, please visit
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// https://opensource.org/licenses/MIT or boppan.org/MIT for full license details.
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// cdict.h - simple dictionaty implementation in C.
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//
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// Uses hash table with fixed (but configurable) size. Functions named using given type names:
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// cdict_<CDICT_KEY_T>_<CDICT_VAL_T>_<name>.
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//
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// See configuration below (in public "Input macros" section), also:
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// CDICT_INST: Instantiate the functions if defined.
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//
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// Minimal definitions for declaration: CDICT_KEY_T, CDICT_VAL_T
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// Minimal definitions for instantiation: CDICT_INST, CDICT_KEY_T, CDICT_VAL_T, CDICT_HASH_FN,
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// CDICT_CMP_FN
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//
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// WARNING: All used definitions will be undefined on header exit.
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//
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// Dependencies:
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// <stddef.h> or another source of size_t
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// <stdlib.h> or another source of malloc, and calloc
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// <assert.h> or another source of assert
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//
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// Internal macros for external declarations
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//
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#define CDICT_CAT2_IMPL(x, y) x ## _ ## y
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#define CDICT_CAT2(x, y) CDICT_CAT2_IMPL(x, y)
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/// Creates method name according to CDICT_KEY_T and CDICT_VAL_T
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#define CDICT_FUN(name) CDICT_CAT2(cdict, CDICT_CAT2(CDICT_KEY_T, CDICT_CAT2(CDICT_VAL_T, name)))
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#define cdict_init CDICT_FUN(init)
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#define cdict_init_ud CDICT_FUN(init_ud)
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#define cdict_init_pud CDICT_FUN(init_pud)
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#define cdict_add_pp CDICT_FUN(add_pp)
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#define cdict_add_vv CDICT_FUN(add_vv)
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#define cdict_get_p CDICT_FUN(get_p)
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#define cdict_get_v CDICT_FUN(get_v)
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#define cdict_error_message CDICT_FUN(error_message)
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#define cdict_hash CDICT_FUN(hash)
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#define cdict_keycmp CDICT_FUN(keycmp)
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#define cdict_chain_begin CDICT_FUN(begin)
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#define cdict_chain_next CDICT_FUN(next)
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#define CDictItem CDICT_CAT2(CDictItem, CDICT_CAT2(CDICT_KEY_T, CDICT_VAL_T))
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#define CDictItem_s CDICT_CAT2(CDictItem_s, CDICT_CAT2(CDICT_KEY_T, CDICT_VAL_T))
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#define CDict CDICT_CAT2(CDict, CDICT_CAT2(CDICT_KEY_T, CDICT_VAL_T))
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//
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// Input macros
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//
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/// Type of the dictionary's keys, named type only - used in functions names, default: CStr
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#ifndef CDICT_KEY_T
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typedef char *CStr;
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#define CDICT_CSTR_IS_THERE
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#define CDICT_KEY_T CStr
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#endif
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/// Type of the dictionary's values, named type only - used in functions names, default: CStr
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#ifndef CDICT_VAL_T
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#ifndef CDICT_CSTR_IS_THERE
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typedef char *CStr;
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#endif
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#define CDICT_VAL_T CStr
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#endif
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/// Type of user data
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#ifndef CDICT_USER_DATA_T
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#define CDICT_USER_DATA_T void *
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#endif
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//
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// Public interface
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//
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#define CDICT_NO_CHECK 0
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#define CDICT_REPLACE_EXIST 1
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#define CDICT_LEAVE_EXIST 2
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#define CDICT_ERR_SUCCESS 0
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#define CDICT_ERR_OUT_OF_MEMORY 1
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#define CDICT_ERR_THIS_IS_NULL 2
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#define CDICT_ERR_HASH_TABLE_IS_NULL 3
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#define CDICT_ERR_PKEY0_IS_NULL 4
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#define CDICT_ERR_PKEY1_IS_NULL 5
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#define CDICT_ERR_PKEY_IS_NULL 6
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#define CDICT_ERR_PVAL_IS_NULL 7
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typedef struct CDictItem_s {
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struct CDictItem_s *next_collision;
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CDICT_KEY_T key;
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CDICT_VAL_T val;
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} CDictItem;
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typedef struct {
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CDictItem **hash_table;
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CDICT_USER_DATA_T user_data;
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int error_code;
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} CDict;
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/// Initializes dictionary structure
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int cdict_init(CDict *s);
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/// Initializes dictionary structure with non-standard user data
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int cdict_init_ud(CDict *s, CDICT_USER_DATA_T user_data);
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/// Initializes dictionary structure with non-standard user data
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int cdict_init_pud(CDict *s, CDICT_USER_DATA_T *user_data);
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/// Inserts a value by key (receives pointers to val and key)
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CDictItem *cdict_add_pp(CDict *s, CDICT_KEY_T *pkey, CDICT_VAL_T *pval, int if_exists);
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/// Inserts a value by key (receives values of val and key)
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CDictItem *cdict_add_vv(CDict *s, CDICT_KEY_T key, CDICT_VAL_T val, int if_exists);
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/// Gives a value by key (receives a pointer to key)
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CDICT_VAL_T cdict_get_p(CDict *s, CDICT_KEY_T *pkey);
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/// Gives a vaule by key (receives a value of key)
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CDICT_VAL_T cdict_get_v(CDict *s, CDICT_KEY_T key);
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#ifdef CDICT_INST
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//
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// Input macros (instantiation edition)
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//
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/// The value returned on some error
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#ifndef CDICT_VAL_DEFAULT
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#define CDICT_VAL_DEFAULT (CDICT_VAL_T){ 0 }
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#endif
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/// Hashing function for the key type
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#ifndef CDICT_HASH_FN
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#include <string.h>
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#define CDICT_HASH_FN(pkey) strlen(*pkey) ^ (*pkey)[0]
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#else
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#define CDICT_HASH_FN_OVERRIDEN
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#endif
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/// Ammount of pointers to elements in hash table
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#ifndef CDICT_HASHTAB_SZ
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#define CDICT_HASHTAB_SZ 1024
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#endif
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/// Hash table allocator MUST return zeroed buffer
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#ifndef CDICT_HASHTAB_ALLOC_FN
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#include <stdlib.h>
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#define CDICT_HASHTAB_ALLOC_FN(cdict, size) calloc(1, size)
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#else
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#define CDICT_HASHTAB_ALLOCATORS_OVERRIDDEN
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#endif
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/// New hash table items allocator (should be just a function call)
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#ifndef CDICT_HASHTAB_ITEM_ALLOC_FN
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#include <stdlib.h>
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#define CDICT_HASHTAB_ITEM_ALLOC_FN(cdict, size) malloc(size)
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#define CDICT_HASHTAB_ITEM_FREE_FN(cdict, ptr) free(ptr)
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#else
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#ifndef CDICT_HASHTAB_ITEM_FREE_FN
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#error "CDICT_HASHTAB_ITEM_FREE_FN should be defiend along with CDICT_HASHTAB_ITEM_ALLOC_FN"
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#endif
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#define CDICT_HASHTAB_ITEM_ALLOCATORS_OVERRIDDEN
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#endif
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#ifdef CDICT_HASHTAB_ITEM_ALLOCATORS_OVERRIDDEN
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#error "FUCK!"
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#endif
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/// Replacement for assert from <assert.h>
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#ifndef CDICT_ASSERT_FN
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#include <assert.h>
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#define CDICT_ASSERT_FN(x) if (!x) { printf(__FILE__":%d: Disasserted", __LINE__); } assert(x)
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#endif
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/// Function for comparsion of keys, return should be the same as memcmp
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#ifndef CDICT_CMP_FN
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#include <string.h>
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#define CDICT_CMP_FN(pkey0, pkey1) strcmp(*pkey0, *pkey1)
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#else
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#define CDICT_CMP_FN_OVERRIDDEN
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#endif
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//
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// Internal macros (instantiation edition)
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//
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#define CDICT_ASSERT(x) ({ CDICT_ASSERT_FN(x); x; })
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// Should write the error code into strucure, but should not rewrite it's already set
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#define CDICT_IF_NULL_SET_ERR_RETURN(x, ec, res) if (x == NULL) { \
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if (s->error_code == CDICT_ERR_SUCCESS) s->error_code = ec; \
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return res; \
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}
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#define CDICT_IF_NULL_RETURN(x, res) if (x == NULL) return res
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//
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// Predeclarations
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//
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#ifdef CDICT_HASHTAB_ITEM_ALLOCATORS_OVERRIDDEN
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void *CDICT_HASHTAB_ITEM_ALLOC_FN(CDict *s, size_t size);
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void CDICT_HASHTAB_ITEM_FREE_FN(CDict *s, CDictItem *ptr);
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#endif
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#ifdef CDICT_HASHTAB_ALLOCATORS_OVERRIDDEN
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void *CDICT_HASHTAB_ALLOC_FN(CDict *s, size_t size);
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#endif
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#ifdef CDICT_HASH_FN_OVERRIDEN
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unsigned long CDICT_HASH_FN(CDICT_KEY_T *pkey);
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#endif
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#ifdef CDICT_CMP_FN_OVERRIDDEN
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int CDICT_CMP_FN(CDICT_KEY_T *pkey0, CDICT_KEY_T *pkey1);
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#endif
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//
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// The code
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//
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static size_t cdict_hash(CDICT_KEY_T *pkey) {
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return CDICT_HASH_FN(CDICT_ASSERT(pkey)) & (CDICT_HASHTAB_SZ - 1);
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}
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static int cdict_keycmp(CDICT_KEY_T *pkey0, CDICT_KEY_T *pkey1) {
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return CDICT_CMP_FN(CDICT_ASSERT(pkey0), CDICT_ASSERT(pkey1));
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}
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static CDictItem **cdict_chain_begin(CDict *s, CDICT_KEY_T *pkey) {
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CDICT_ASSERT(s);
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size_t hash = cdict_hash(CDICT_ASSERT(pkey));
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CDICT_IF_NULL_SET_ERR_RETURN(s->hash_table, CDICT_ERR_HASH_TABLE_IS_NULL, NULL);
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return &s->hash_table[hash];
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}
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static CDictItem **cdict_chain_next(CDictItem **ppit) {
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CDICT_ASSERT(ppit);
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CDICT_ASSERT(*ppit);
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return &(*ppit)->next_collision;
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}
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int cdict_init(CDict *s) {
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return cdict_init_pud(s, NULL);
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}
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int cdict_init_ud(CDict *s, CDICT_USER_DATA_T user_data) {
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return cdict_init_pud(s, &user_data);
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}
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int cdict_init_pud(CDict *s, CDICT_USER_DATA_T *user_data) {
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CDICT_IF_NULL_RETURN(s, 0);
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s->user_data = user_data ? *user_data : (CDICT_USER_DATA_T){ 0 };
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s->error_code = CDICT_ERR_SUCCESS;
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s->hash_table = CDICT_HASHTAB_ALLOC_FN(s, sizeof(*s->hash_table) * CDICT_HASHTAB_SZ);
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CDICT_IF_NULL_SET_ERR_RETURN(s->hash_table, CDICT_ERR_OUT_OF_MEMORY, 0);
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return 1;
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}
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CDictItem *cdict_add_pp(CDict *s, CDICT_KEY_T *pkey, CDICT_VAL_T *pval, int if_exists) {
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CDICT_IF_NULL_RETURN(s, NULL);
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CDICT_IF_NULL_SET_ERR_RETURN(pkey, CDICT_ERR_PKEY_IS_NULL, NULL);
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CDICT_IF_NULL_SET_ERR_RETURN(pval, CDICT_ERR_PVAL_IS_NULL, NULL);
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CDictItem *next_collision = NULL;
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CDictItem **ppit = cdict_chain_begin(s, pkey);
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CDICT_IF_NULL_RETURN(ppit, NULL);
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while (*ppit) {
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int exists = if_exists == CDICT_NO_CHECK ? 0 : !cdict_keycmp(pkey, &(*ppit)->key);
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if (exists) {
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if (if_exists == CDICT_LEAVE_EXIST) {
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return *ppit;
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} else if (if_exists == CDICT_REPLACE_EXIST) {
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next_collision = (*ppit)->next_collision;
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CDICT_HASHTAB_ITEM_FREE_FN(s, *ppit);
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break;
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}
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}
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ppit = cdict_chain_next(ppit);
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}
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*ppit = CDICT_HASHTAB_ITEM_ALLOC_FN(s, sizeof(**ppit));
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CDictItem *pit = *ppit;
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pit->key = *pkey;
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pit->val = *pval;
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pit->next_collision = next_collision;
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return pit;
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}
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CDictItem *cdict_add_vv(CDict *s, CDICT_KEY_T key, CDICT_VAL_T val, int if_exists) {
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return cdict_add_pp(s, &key, &val, if_exists);
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}
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CDICT_VAL_T cdict_get_p(CDict *s, CDICT_KEY_T *pkey) {
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CDICT_IF_NULL_RETURN(s, CDICT_VAL_DEFAULT);
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CDICT_IF_NULL_SET_ERR_RETURN(pkey, CDICT_ERR_PKEY_IS_NULL, CDICT_VAL_DEFAULT);
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CDictItem **ppit = cdict_chain_begin(s, pkey);
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CDICT_IF_NULL_RETURN(ppit, CDICT_VAL_DEFAULT);
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while (*ppit) {
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if (!cdict_keycmp(pkey, &(*ppit)->key)) {
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return (*ppit)->val;
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}
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ppit = cdict_chain_next(ppit);
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}
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return CDICT_VAL_DEFAULT;
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}
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CDICT_VAL_T cdict_get_v(CDict *s, CDICT_KEY_T key) {
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return cdict_get_p(s, &key);
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}
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#endif
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#undef CDICT_CAT2_IMPL
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#undef CDICT_CAT2
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#undef CDICT_FUN
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#undef cdict_init
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#undef cdict_init_ud
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#undef cdict_init_pud
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#undef cdict_add_pp
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#undef cdict_add_vv
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#undef cdict_get_p
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#undef cdict_get_v
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#undef CDICT_KEY_T
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#undef CDICT_VAL_T
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#undef CDICT_USER_DATA_T
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#ifdef CDICT_INST
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#undef CDICT_INST
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#undef CDICT_HASH_FN
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#undef CDICT_HASHTAB_SZ
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#undef CDICT_HASHTAB_ALLOC_FN
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#undef CDICT_HASHTAB_ITEM_ALLOC_FN
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#undef CDICT_HASHTAB_ITEM_FREE_FN
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#undef CDICT_ASSERT_FN
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#undef CDICT_CMP_FN
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#undef CDICT_ASSERT
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#undef CDICT_IF_NULL_RETURN
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#undef CDICT_IF_NULL_SET_ERR_RETURN
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#undef CDICT_HASHTAB_ITEM_ALLOCATORS_OVERRIDDEN
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#undef CDICT_HASHTAB_ALLOCATORS_OVERRIDDEN
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#undef CDICT_HASH_FN_OVERRIDEN
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#undef CDICT_CMP_FN_OVERRIDDEN
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#endif
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