| 1 | /*
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| 2 | * Copyright (c) 2010 Jiri Svoboda
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| 3 | * All rights reserved.
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| 4 | *
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| 5 | * Redistribution and use in source and binary forms, with or without
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| 6 | * modification, are permitted provided that the following conditions
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| 7 | * are met:
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| 8 | *
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| 9 | * - Redistributions of source code must retain the above copyright
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| 10 | * notice, this list of conditions and the following disclaimer.
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| 11 | * - Redistributions in binary form must reproduce the above copyright
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| 12 | * notice, this list of conditions and the following disclaimer in the
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| 13 | * documentation and/or other materials provided with the distribution.
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| 14 | * - The name of the author may not be used to endorse or promote products
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| 15 | * derived from this software without specific prior written permission.
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| 16 | *
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| 17 | * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
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| 18 | * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
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| 19 | * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
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| 20 | * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
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| 21 | * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
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| 22 | * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
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| 23 | * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
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| 24 | * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
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| 25 | * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
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| 26 | * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
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| 27 | */
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| 28 |
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| 29 | /** @file Run-time data representation.
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| 30 | *
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| 31 | * At run time SBI represents all data as a graph of interconnected @c var
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| 32 | * nodes (variable nodes). Any piece of memory addressable by the program
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| 33 | * (i.e. all variables) are stored in var nodes. However, var nodes are also
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| 34 | * used internally to implement value items. (I.e. values in value items
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| 35 | * have exactly the same structure as program variables).
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| 36 | *
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| 37 | * Unlike byte- or word-oriented memory on a real machine, var nodes provide
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| 38 | * structured and typed storage. (This typing is dynamic, however and has
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| 39 | * nothing to do with the static type system).
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| 40 | *
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| 41 | * There are several types of var nodes, one for each primitive type,
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| 42 | * reference, delegate, array, and object. A reference var node contains
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| 43 | * a pointer to another var node. Delegate var node points to some stree
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| 44 | * declaration. Array and object var nodes refer to a collection of child
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| 45 | * nodes (fields, elements).
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| 46 | */
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| 47 |
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| 48 | #include <stdlib.h>
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| 49 | #include <assert.h>
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| 50 | #include "bigint.h"
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| 51 | #include "mytypes.h"
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| 52 | #include "stree.h"
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| 53 | #include "symbol.h"
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| 54 | #include "strtab.h"
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| 55 |
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| 56 | #include "rdata.h"
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| 57 |
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| 58 | static void rdata_bool_copy(rdata_bool_t *src, rdata_bool_t **dest);
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| 59 | static void rdata_char_copy(rdata_char_t *src, rdata_char_t **dest);
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| 60 | static void rdata_int_copy(rdata_int_t *src, rdata_int_t **dest);
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| 61 | static void rdata_string_copy(rdata_string_t *src, rdata_string_t **dest);
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| 62 | static void rdata_ref_copy(rdata_ref_t *src, rdata_ref_t **dest);
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| 63 | static void rdata_deleg_copy(rdata_deleg_t *src, rdata_deleg_t **dest);
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| 64 | static void rdata_enum_copy(rdata_enum_t *src, rdata_enum_t **dest);
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| 65 | static void rdata_array_copy(rdata_array_t *src, rdata_array_t **dest);
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| 66 | static void rdata_object_copy(rdata_object_t *src, rdata_object_t **dest);
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| 67 | static void rdata_resource_copy(rdata_resource_t *src,
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| 68 | rdata_resource_t **dest);
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| 69 | static void rdata_symbol_copy(rdata_symbol_t *src, rdata_symbol_t **dest);
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| 70 |
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| 71 | static int rdata_array_get_dim(rdata_array_t *array);
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| 72 |
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| 73 | static void rdata_address_print(rdata_address_t *address);
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| 74 | static void rdata_var_print(rdata_var_t *var);
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| 75 |
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| 76 | /** Allocate new data item.
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| 77 | *
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| 78 | * @param ic Item class.
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| 79 | * @return New item.
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| 80 | */
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| 81 | rdata_item_t *rdata_item_new(item_class_t ic)
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| 82 | {
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| 83 | rdata_item_t *item;
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| 84 |
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| 85 | item = calloc(1, sizeof(rdata_item_t));
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| 86 | if (item == NULL) {
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| 87 | printf("Memory allocation failed.\n");
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| 88 | exit(1);
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| 89 | }
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| 90 |
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| 91 | item->ic = ic;
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| 92 | return item;
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| 93 | }
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| 94 |
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| 95 | /** Allocate new address.
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| 96 | *
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| 97 | * @return New address.
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| 98 | */
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| 99 | rdata_addr_var_t *rdata_addr_var_new(void)
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| 100 | {
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| 101 | rdata_addr_var_t *addr_var;
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| 102 |
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| 103 | addr_var = calloc(1, sizeof(rdata_addr_var_t));
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| 104 | if (addr_var == NULL) {
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| 105 | printf("Memory allocation failed.\n");
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| 106 | exit(1);
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| 107 | }
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| 108 |
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| 109 | return addr_var;
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| 110 | }
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| 111 |
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| 112 | /** Allocate new named property address.
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| 113 | *
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| 114 | * @return New named property address.
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| 115 | */
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| 116 | rdata_aprop_named_t *rdata_aprop_named_new(void)
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| 117 | {
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| 118 | rdata_aprop_named_t *aprop_named;
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| 119 |
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| 120 | aprop_named = calloc(1, sizeof(rdata_aprop_named_t));
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| 121 | if (aprop_named == NULL) {
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| 122 | printf("Memory allocation failed.\n");
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| 123 | exit(1);
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| 124 | }
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| 125 |
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| 126 | return aprop_named;
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| 127 | }
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| 128 |
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| 129 | /** Allocate new indexed property address.
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| 130 | *
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| 131 | * @return New indexed property address.
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| 132 | */
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| 133 | rdata_aprop_indexed_t *rdata_aprop_indexed_new(void)
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| 134 | {
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| 135 | rdata_aprop_indexed_t *aprop_indexed;
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| 136 |
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| 137 | aprop_indexed = calloc(1, sizeof(rdata_aprop_indexed_t));
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| 138 | if (aprop_indexed == NULL) {
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| 139 | printf("Memory allocation failed.\n");
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| 140 | exit(1);
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| 141 | }
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| 142 |
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| 143 | return aprop_indexed;
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| 144 | }
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| 145 |
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| 146 | /** Allocate new property address.
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| 147 | *
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| 148 | * @param apc Property address class.
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| 149 | * @return New property address.
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| 150 | */
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| 151 | rdata_addr_prop_t *rdata_addr_prop_new(aprop_class_t apc)
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| 152 | {
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| 153 | rdata_addr_prop_t *addr_prop;
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| 154 |
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| 155 | addr_prop = calloc(1, sizeof(rdata_addr_prop_t));
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| 156 | if (addr_prop == NULL) {
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| 157 | printf("Memory allocation failed.\n");
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| 158 | exit(1);
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| 159 | }
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| 160 |
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| 161 | addr_prop->apc = apc;
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| 162 | return addr_prop;
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| 163 | }
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| 164 |
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| 165 | /** Allocate new address.
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| 166 | *
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| 167 | * @param ac Address class.
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| 168 | * @return New address.
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| 169 | */
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| 170 | rdata_address_t *rdata_address_new(address_class_t ac)
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| 171 | {
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| 172 | rdata_address_t *address;
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| 173 |
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| 174 | address = calloc(1, sizeof(rdata_address_t));
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| 175 | if (address == NULL) {
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| 176 | printf("Memory allocation failed.\n");
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| 177 | exit(1);
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| 178 | }
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| 179 |
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| 180 | address->ac = ac;
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| 181 | return address;
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| 182 | }
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| 183 |
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| 184 | /** Allocate new value.
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| 185 | *
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| 186 | * @return New value.
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| 187 | */
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| 188 | rdata_value_t *rdata_value_new(void)
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| 189 | {
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| 190 | rdata_value_t *value;
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| 191 |
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| 192 | value = calloc(1, sizeof(rdata_value_t));
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| 193 | if (value == NULL) {
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| 194 | printf("Memory allocation failed.\n");
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| 195 | exit(1);
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| 196 | }
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| 197 |
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| 198 | return value;
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| 199 | }
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| 200 |
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| 201 | /** Allocate new var node.
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| 202 | *
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| 203 | * @param vc Var node class (varclass).
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| 204 | * @return New var node.
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| 205 | */
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| 206 | rdata_var_t *rdata_var_new(var_class_t vc)
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| 207 | {
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| 208 | rdata_var_t *var;
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| 209 |
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| 210 | var = calloc(1, sizeof(rdata_var_t));
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| 211 | if (var == NULL) {
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| 212 | printf("Memory allocation failed.\n");
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| 213 | exit(1);
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| 214 | }
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| 215 |
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| 216 | var->vc = vc;
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| 217 | return var;
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| 218 | }
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| 219 |
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| 220 | /** Allocate new reference.
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| 221 | *
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| 222 | * @return New reference.
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| 223 | */
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| 224 | rdata_ref_t *rdata_ref_new(void)
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| 225 | {
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| 226 | rdata_ref_t *ref;
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| 227 |
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| 228 | ref = calloc(1, sizeof(rdata_ref_t));
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| 229 | if (ref == NULL) {
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| 230 | printf("Memory allocation failed.\n");
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| 231 | exit(1);
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| 232 | }
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| 233 |
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| 234 | return ref;
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| 235 | }
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| 236 |
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| 237 | /** Allocate new delegate.
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| 238 | *
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| 239 | * @return New delegate.
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| 240 | */
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| 241 | rdata_deleg_t *rdata_deleg_new(void)
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| 242 | {
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| 243 | rdata_deleg_t *deleg;
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| 244 |
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| 245 | deleg = calloc(1, sizeof(rdata_deleg_t));
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| 246 | if (deleg == NULL) {
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| 247 | printf("Memory allocation failed.\n");
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| 248 | exit(1);
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| 249 | }
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| 250 |
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| 251 | return deleg;
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| 252 | }
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| 253 |
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| 254 | /** Allocate new enum value.
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| 255 | *
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| 256 | * @return New enum value.
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| 257 | */
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| 258 | rdata_enum_t *rdata_enum_new(void)
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| 259 | {
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| 260 | rdata_enum_t *enum_v;
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| 261 |
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| 262 | enum_v = calloc(1, sizeof(rdata_enum_t));
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| 263 | if (enum_v == NULL) {
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| 264 | printf("Memory allocation failed.\n");
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| 265 | exit(1);
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| 266 | }
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| 267 |
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| 268 | return enum_v;
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| 269 | }
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| 270 |
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| 271 | /** Allocate new array.
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| 272 | *
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| 273 | * @return New array.
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| 274 | */
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| 275 | rdata_array_t *rdata_array_new(int rank)
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| 276 | {
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| 277 | rdata_array_t *array;
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| 278 |
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| 279 | array = calloc(1, sizeof(rdata_array_t));
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| 280 | if (array == NULL) {
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| 281 | printf("Memory allocation failed.\n");
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| 282 | exit(1);
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| 283 | }
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| 284 |
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| 285 | array->rank = rank;
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| 286 | array->extent = calloc(rank, sizeof(int));
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| 287 | if (array == NULL) {
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| 288 | printf("Memory allocation failed.\n");
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| 289 | exit(1);
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| 290 | }
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| 291 |
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| 292 | return array;
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| 293 | }
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| 294 |
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| 295 | /** Allocate new object.
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| 296 | *
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| 297 | * @return New object.
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| 298 | */
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| 299 | rdata_object_t *rdata_object_new(void)
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| 300 | {
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| 301 | rdata_object_t *object;
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| 302 |
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| 303 | object = calloc(1, sizeof(rdata_object_t));
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| 304 | if (object == NULL) {
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| 305 | printf("Memory allocation failed.\n");
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| 306 | exit(1);
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| 307 | }
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| 308 |
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| 309 | return object;
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| 310 | }
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| 311 |
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| 312 | /** Allocate new boolean.
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| 313 | *
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| 314 | * @return New boolean.
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| 315 | */
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| 316 | rdata_bool_t *rdata_bool_new(void)
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| 317 | {
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| 318 | rdata_bool_t *bool_v;
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| 319 |
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| 320 | bool_v = calloc(1, sizeof(rdata_bool_t));
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| 321 | if (bool_v == NULL) {
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| 322 | printf("Memory allocation failed.\n");
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| 323 | exit(1);
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| 324 | }
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| 325 |
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| 326 | return bool_v;
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| 327 | }
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| 328 |
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| 329 | /** Allocate new character.
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| 330 | *
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| 331 | * @return New character.
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| 332 | */
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| 333 | rdata_char_t *rdata_char_new(void)
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| 334 | {
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| 335 | rdata_char_t *char_v;
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| 336 |
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| 337 | char_v = calloc(1, sizeof(rdata_char_t));
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| 338 | if (char_v == NULL) {
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| 339 | printf("Memory allocation failed.\n");
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| 340 | exit(1);
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| 341 | }
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| 342 |
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| 343 | return char_v;
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| 344 | }
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| 345 |
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| 346 | /** Allocate new integer.
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| 347 | *
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| 348 | * @return New integer.
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| 349 | */
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| 350 | rdata_int_t *rdata_int_new(void)
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| 351 | {
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| 352 | rdata_int_t *int_v;
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| 353 |
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| 354 | int_v = calloc(1, sizeof(rdata_int_t));
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| 355 | if (int_v == NULL) {
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| 356 | printf("Memory allocation failed.\n");
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| 357 | exit(1);
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| 358 | }
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| 359 |
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| 360 | return int_v;
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| 361 | }
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| 362 |
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| 363 | /** Allocate new string.
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| 364 | *
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| 365 | * @return New string.
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| 366 | */
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| 367 | rdata_string_t *rdata_string_new(void)
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| 368 | {
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| 369 | rdata_string_t *string_v;
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| 370 |
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| 371 | string_v = calloc(1, sizeof(rdata_string_t));
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| 372 | if (string_v == NULL) {
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| 373 | printf("Memory allocation failed.\n");
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| 374 | exit(1);
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| 375 | }
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| 376 |
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| 377 | return string_v;
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| 378 | }
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| 379 |
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| 380 | /** Allocate new resource.
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| 381 | *
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| 382 | * @return New resource.
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| 383 | */
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| 384 | rdata_resource_t *rdata_resource_new(void)
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| 385 | {
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| 386 | rdata_resource_t *resource_v;
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| 387 |
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| 388 | resource_v = calloc(1, sizeof(rdata_resource_t));
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| 389 | if (resource_v == NULL) {
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| 390 | printf("Memory allocation failed.\n");
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| 391 | exit(1);
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| 392 | }
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| 393 |
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| 394 | return resource_v;
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| 395 | }
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| 396 |
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| 397 | /** Allocate new symbol reference.
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| 398 | *
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| 399 | * @return New symbol reference.
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| 400 | */
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| 401 | rdata_symbol_t *rdata_symbol_new(void)
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| 402 | {
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| 403 | rdata_symbol_t *symbol_v;
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| 404 |
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| 405 | symbol_v = calloc(1, sizeof(rdata_symbol_t));
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| 406 | if (symbol_v == NULL) {
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| 407 | printf("Memory allocation failed.\n");
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| 408 | exit(1);
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| 409 | }
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| 410 |
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| 411 | return symbol_v;
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| 412 | }
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| 413 |
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| 414 | /** Allocate array elements.
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| 415 | *
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| 416 | * Allocates var nodes for elements of @a array.
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| 417 | *
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| 418 | * @param array Array.
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| 419 | */
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| 420 | void rdata_array_alloc_element(rdata_array_t *array)
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| 421 | {
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| 422 | int dim, idx;
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| 423 |
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| 424 | dim = rdata_array_get_dim(array);
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| 425 |
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| 426 | array->element = calloc(dim, sizeof(rdata_var_t *));
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| 427 | if (array->element == NULL) {
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| 428 | printf("Memory allocation failed.\n");
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| 429 | exit(1);
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| 430 | }
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| 431 |
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| 432 | for (idx = 0; idx < dim; ++idx) {
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| 433 | array->element[idx] = calloc(1, sizeof(rdata_var_t));
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| 434 | if (array->element[idx] == NULL) {
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| 435 | printf("Memory allocation failed.\n");
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| 436 | exit(1);
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| 437 | }
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| 438 | }
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| 439 | }
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| 440 |
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|---|
| 441 | /** Get array dimension.
|
|---|
| 442 | *
|
|---|
| 443 | * Dimension is the total number of elements in an array, in other words,
|
|---|
| 444 | * the product of all extents.
|
|---|
| 445 | *
|
|---|
| 446 | * @param array Array.
|
|---|
| 447 | */
|
|---|
| 448 | static int rdata_array_get_dim(rdata_array_t *array)
|
|---|
| 449 | {
|
|---|
| 450 | int didx, dim;
|
|---|
| 451 |
|
|---|
| 452 | dim = 1;
|
|---|
| 453 | for (didx = 0; didx < array->rank; ++didx)
|
|---|
| 454 | dim = dim * array->extent[didx];
|
|---|
| 455 |
|
|---|
| 456 | return dim;
|
|---|
| 457 | }
|
|---|
| 458 |
|
|---|
| 459 | /** Make copy of a variable.
|
|---|
| 460 | *
|
|---|
| 461 | * Creates a new var node that is an exact copy of an existing var node.
|
|---|
| 462 | * This can be thought of as a shallow copy.
|
|---|
| 463 | *
|
|---|
| 464 | * @param src Source var node.
|
|---|
| 465 | * @param dest Place to store pointer to new var node.
|
|---|
| 466 | */
|
|---|
| 467 | void rdata_var_copy(rdata_var_t *src, rdata_var_t **dest)
|
|---|
| 468 | {
|
|---|
| 469 | rdata_var_t *nvar;
|
|---|
| 470 |
|
|---|
| 471 | nvar = rdata_var_new(src->vc);
|
|---|
| 472 |
|
|---|
| 473 | switch (src->vc) {
|
|---|
| 474 | case vc_bool:
|
|---|
| 475 | rdata_bool_copy(src->u.bool_v, &nvar->u.bool_v);
|
|---|
| 476 | break;
|
|---|
| 477 | case vc_char:
|
|---|
| 478 | rdata_char_copy(src->u.char_v, &nvar->u.char_v);
|
|---|
| 479 | break;
|
|---|
| 480 | case vc_int:
|
|---|
| 481 | rdata_int_copy(src->u.int_v, &nvar->u.int_v);
|
|---|
| 482 | break;
|
|---|
| 483 | case vc_string:
|
|---|
| 484 | rdata_string_copy(src->u.string_v, &nvar->u.string_v);
|
|---|
| 485 | break;
|
|---|
| 486 | case vc_ref:
|
|---|
| 487 | rdata_ref_copy(src->u.ref_v, &nvar->u.ref_v);
|
|---|
| 488 | break;
|
|---|
| 489 | case vc_deleg:
|
|---|
| 490 | rdata_deleg_copy(src->u.deleg_v, &nvar->u.deleg_v);
|
|---|
| 491 | break;
|
|---|
| 492 | case vc_enum:
|
|---|
| 493 | rdata_enum_copy(src->u.enum_v, &nvar->u.enum_v);
|
|---|
| 494 | break;
|
|---|
| 495 | case vc_array:
|
|---|
| 496 | rdata_array_copy(src->u.array_v, &nvar->u.array_v);
|
|---|
| 497 | break;
|
|---|
| 498 | case vc_object:
|
|---|
| 499 | rdata_object_copy(src->u.object_v, &nvar->u.object_v);
|
|---|
| 500 | break;
|
|---|
| 501 | case vc_resource:
|
|---|
| 502 | rdata_resource_copy(src->u.resource_v, &nvar->u.resource_v);
|
|---|
| 503 | break;
|
|---|
| 504 | case vc_symbol:
|
|---|
| 505 | rdata_symbol_copy(src->u.symbol_v, &nvar->u.symbol_v);
|
|---|
| 506 | break;
|
|---|
| 507 | }
|
|---|
| 508 |
|
|---|
| 509 | *dest = nvar;
|
|---|
| 510 | }
|
|---|
| 511 |
|
|---|
| 512 | /** Copy boolean.
|
|---|
| 513 | *
|
|---|
| 514 | * @param src Source boolean.
|
|---|
| 515 | * @param dest Place to store pointer to new boolean.
|
|---|
| 516 | */
|
|---|
| 517 | static void rdata_bool_copy(rdata_bool_t *src, rdata_bool_t **dest)
|
|---|
| 518 | {
|
|---|
| 519 | *dest = rdata_bool_new();
|
|---|
| 520 | (*dest)->value = src->value;
|
|---|
| 521 | }
|
|---|
| 522 |
|
|---|
| 523 | /** Copy character.
|
|---|
| 524 | *
|
|---|
| 525 | * @param src Source character.
|
|---|
| 526 | * @param dest Place to store pointer to new character.
|
|---|
| 527 | */
|
|---|
| 528 | static void rdata_char_copy(rdata_char_t *src, rdata_char_t **dest)
|
|---|
| 529 | {
|
|---|
| 530 | *dest = rdata_char_new();
|
|---|
| 531 | bigint_clone(&src->value, &(*dest)->value);
|
|---|
| 532 | }
|
|---|
| 533 |
|
|---|
| 534 | /** Copy integer.
|
|---|
| 535 | *
|
|---|
| 536 | * @param src Source integer.
|
|---|
| 537 | * @param dest Place to store pointer to new integer.
|
|---|
| 538 | */
|
|---|
| 539 | static void rdata_int_copy(rdata_int_t *src, rdata_int_t **dest)
|
|---|
| 540 | {
|
|---|
| 541 | *dest = rdata_int_new();
|
|---|
| 542 | bigint_clone(&src->value, &(*dest)->value);
|
|---|
| 543 | }
|
|---|
| 544 |
|
|---|
| 545 | /** Copy string.
|
|---|
| 546 | *
|
|---|
| 547 | * @param src Source string.
|
|---|
| 548 | * @param dest Place to store pointer to new string.
|
|---|
| 549 | */
|
|---|
| 550 | static void rdata_string_copy(rdata_string_t *src, rdata_string_t **dest)
|
|---|
| 551 | {
|
|---|
| 552 | *dest = rdata_string_new();
|
|---|
| 553 | (*dest)->value = src->value;
|
|---|
| 554 | }
|
|---|
| 555 |
|
|---|
| 556 | /** Copy reference.
|
|---|
| 557 | *
|
|---|
| 558 | * @param src Source reference.
|
|---|
| 559 | * @param dest Place to store pointer to new reference.
|
|---|
| 560 | */
|
|---|
| 561 | static void rdata_ref_copy(rdata_ref_t *src, rdata_ref_t **dest)
|
|---|
| 562 | {
|
|---|
| 563 | *dest = rdata_ref_new();
|
|---|
| 564 | (*dest)->vref = src->vref;
|
|---|
| 565 | }
|
|---|
| 566 |
|
|---|
| 567 | /** Copy delegate.
|
|---|
| 568 | *
|
|---|
| 569 | * @param src Source delegate.
|
|---|
| 570 | * @param dest Place to store pointer to new delegate.
|
|---|
| 571 | */
|
|---|
| 572 | static void rdata_deleg_copy(rdata_deleg_t *src, rdata_deleg_t **dest)
|
|---|
| 573 | {
|
|---|
| 574 | *dest = rdata_deleg_new();
|
|---|
| 575 | (*dest)->obj = src->obj;
|
|---|
| 576 | (*dest)->sym = src->sym;
|
|---|
| 577 | }
|
|---|
| 578 |
|
|---|
| 579 | /** Copy enum value.
|
|---|
| 580 | *
|
|---|
| 581 | * @param src Source enum value.
|
|---|
| 582 | * @param dest Place to store pointer to new enum value.
|
|---|
| 583 | */
|
|---|
| 584 | static void rdata_enum_copy(rdata_enum_t *src, rdata_enum_t **dest)
|
|---|
| 585 | {
|
|---|
| 586 | *dest = rdata_enum_new();
|
|---|
| 587 | (*dest)->value = src->value;
|
|---|
| 588 | }
|
|---|
| 589 |
|
|---|
| 590 | /** Copy array.
|
|---|
| 591 | *
|
|---|
| 592 | * @param src Source array.
|
|---|
| 593 | * @param dest Place to store pointer to new array.
|
|---|
| 594 | */
|
|---|
| 595 | static void rdata_array_copy(rdata_array_t *src, rdata_array_t **dest)
|
|---|
| 596 | {
|
|---|
| 597 | (void) src; (void) dest;
|
|---|
| 598 | printf("Unimplemented: Copy array.\n");
|
|---|
| 599 | exit(1);
|
|---|
| 600 | }
|
|---|
| 601 |
|
|---|
| 602 | /** Copy object.
|
|---|
| 603 | *
|
|---|
| 604 | * @param src Source object.
|
|---|
| 605 | * @param dest Place to store pointer to new object.
|
|---|
| 606 | */
|
|---|
| 607 | static void rdata_object_copy(rdata_object_t *src, rdata_object_t **dest)
|
|---|
| 608 | {
|
|---|
| 609 | (void) src; (void) dest;
|
|---|
| 610 | printf("Unimplemented: Copy object.\n");
|
|---|
| 611 | abort();
|
|---|
| 612 | }
|
|---|
| 613 |
|
|---|
| 614 | /** Copy resource.
|
|---|
| 615 | *
|
|---|
| 616 | * @param src Source resource.
|
|---|
| 617 | * @param dest Place to store pointer to new resource.
|
|---|
| 618 | */
|
|---|
| 619 | static void rdata_resource_copy(rdata_resource_t *src, rdata_resource_t **dest)
|
|---|
| 620 | {
|
|---|
| 621 | *dest = rdata_resource_new();
|
|---|
| 622 | (*dest)->data = src->data;
|
|---|
| 623 | }
|
|---|
| 624 |
|
|---|
| 625 | /** Copy symbol.
|
|---|
| 626 | *
|
|---|
| 627 | * @param src Source symbol.
|
|---|
| 628 | * @param dest Place to store pointer to new symbol.
|
|---|
| 629 | */
|
|---|
| 630 | static void rdata_symbol_copy(rdata_symbol_t *src, rdata_symbol_t **dest)
|
|---|
| 631 | {
|
|---|
| 632 | *dest = rdata_symbol_new();
|
|---|
| 633 | (*dest)->sym = src->sym;
|
|---|
| 634 | }
|
|---|
| 635 |
|
|---|
| 636 | /** Read data from a variable.
|
|---|
| 637 | *
|
|---|
| 638 | * This copies data from the variable to a value item. Ideally any read access
|
|---|
| 639 | * to a program variable should go through this function. (Keep in mind
|
|---|
| 640 | * that although values are composed of var nodes internally, but are not
|
|---|
| 641 | * variables per se. Therefore this function is not used to read from values)
|
|---|
| 642 | *
|
|---|
| 643 | * @param var Variable to read from (var node where it is stored).
|
|---|
| 644 | * @param ritem Place to store pointer to new value item read from
|
|---|
| 645 | * the variable.
|
|---|
| 646 | */
|
|---|
| 647 | void rdata_var_read(rdata_var_t *var, rdata_item_t **ritem)
|
|---|
| 648 | {
|
|---|
| 649 | rdata_value_t *value;
|
|---|
| 650 | rdata_var_t *rvar;
|
|---|
| 651 |
|
|---|
| 652 | /* Perform a shallow copy of @a var. */
|
|---|
| 653 | rdata_var_copy(var, &rvar);
|
|---|
| 654 |
|
|---|
| 655 | value = rdata_value_new();
|
|---|
| 656 | value->var = rvar;
|
|---|
| 657 | *ritem = rdata_item_new(ic_value);
|
|---|
| 658 | (*ritem)->u.value = value;
|
|---|
| 659 | }
|
|---|
| 660 |
|
|---|
| 661 | /** Write data to a variable.
|
|---|
| 662 | *
|
|---|
| 663 | * This copies data to the variable from a value. Ideally any write access
|
|---|
| 664 | * to a program variable should go through this function. (Keep in mind
|
|---|
| 665 | * that even though values are composed of var nodes internally, but are not
|
|---|
| 666 | * variables per se. Therefore this function is not used to write to values)
|
|---|
| 667 | *
|
|---|
| 668 | * @param var Variable to write to (var node where it is stored).
|
|---|
| 669 | * @param value The value to write.
|
|---|
| 670 | */
|
|---|
| 671 | void rdata_var_write(rdata_var_t *var, rdata_value_t *value)
|
|---|
| 672 | {
|
|---|
| 673 | rdata_var_t *nvar;
|
|---|
| 674 |
|
|---|
| 675 | /* Perform a shallow copy of @c value->var. */
|
|---|
| 676 | rdata_var_copy(value->var, &nvar);
|
|---|
| 677 |
|
|---|
| 678 | /* XXX do this in a prettier way. */
|
|---|
| 679 |
|
|---|
| 680 | var->vc = nvar->vc;
|
|---|
| 681 | switch (nvar->vc) {
|
|---|
| 682 | case vc_bool: var->u.bool_v = nvar->u.bool_v; break;
|
|---|
| 683 | case vc_char: var->u.char_v = nvar->u.char_v; break;
|
|---|
| 684 | case vc_int: var->u.int_v = nvar->u.int_v; break;
|
|---|
| 685 | case vc_string: var->u.string_v = nvar->u.string_v; break;
|
|---|
| 686 | case vc_ref: var->u.ref_v = nvar->u.ref_v; break;
|
|---|
| 687 | case vc_deleg: var->u.deleg_v = nvar->u.deleg_v; break;
|
|---|
| 688 | case vc_enum: var->u.enum_v = nvar->u.enum_v; break;
|
|---|
| 689 | case vc_array: var->u.array_v = nvar->u.array_v; break;
|
|---|
| 690 | case vc_object: var->u.object_v = nvar->u.object_v; break;
|
|---|
| 691 | case vc_resource: var->u.resource_v = nvar->u.resource_v; break;
|
|---|
| 692 | case vc_symbol: var->u.symbol_v = nvar->u.symbol_v; break;
|
|---|
| 693 | }
|
|---|
| 694 |
|
|---|
| 695 | /* XXX We should free some stuff around here. */
|
|---|
| 696 | }
|
|---|
| 697 |
|
|---|
| 698 | /** Print data item in human-readable form.
|
|---|
| 699 | *
|
|---|
| 700 | * @param item Item to print.
|
|---|
| 701 | */
|
|---|
| 702 | void rdata_item_print(rdata_item_t *item)
|
|---|
| 703 | {
|
|---|
| 704 | if (item == NULL) {
|
|---|
| 705 | printf("none");
|
|---|
| 706 | return;
|
|---|
| 707 | }
|
|---|
| 708 |
|
|---|
| 709 | switch (item->ic) {
|
|---|
| 710 | case ic_address:
|
|---|
| 711 | printf("address:");
|
|---|
| 712 | rdata_address_print(item->u.address);
|
|---|
| 713 | break;
|
|---|
| 714 | case ic_value:
|
|---|
| 715 | printf("value:");
|
|---|
| 716 | rdata_value_print(item->u.value);
|
|---|
| 717 | break;
|
|---|
| 718 | }
|
|---|
| 719 | }
|
|---|
| 720 |
|
|---|
| 721 | /** Print address in human-readable form.
|
|---|
| 722 | *
|
|---|
| 723 | * Actually this displays contents of the var node that is being addressed.
|
|---|
| 724 | *
|
|---|
| 725 | * XXX Maybe we should really rather print the address and not the data
|
|---|
| 726 | * it is pointing to?
|
|---|
| 727 | *
|
|---|
| 728 | * @param item Address to print.
|
|---|
| 729 | */
|
|---|
| 730 | static void rdata_address_print(rdata_address_t *address)
|
|---|
| 731 | {
|
|---|
| 732 | switch (address->ac) {
|
|---|
| 733 | case ac_var:
|
|---|
| 734 | rdata_var_print(address->u.var_a->vref);
|
|---|
| 735 | break;
|
|---|
| 736 | case ac_prop:
|
|---|
| 737 | printf("Warning: Unimplemented: Print property address.\n");
|
|---|
| 738 | break;
|
|---|
| 739 | }
|
|---|
| 740 | }
|
|---|
| 741 |
|
|---|
| 742 | /** Print value in human-readable form.
|
|---|
| 743 | *
|
|---|
| 744 | * @param value Value to print.
|
|---|
| 745 | */
|
|---|
| 746 | void rdata_value_print(rdata_value_t *value)
|
|---|
| 747 | {
|
|---|
| 748 | rdata_var_print(value->var);
|
|---|
| 749 | }
|
|---|
| 750 |
|
|---|
| 751 | /** Print contents of var node in human-readable form.
|
|---|
| 752 | *
|
|---|
| 753 | * @param item Var node to print.
|
|---|
| 754 | */
|
|---|
| 755 | static void rdata_var_print(rdata_var_t *var)
|
|---|
| 756 | {
|
|---|
| 757 | int val;
|
|---|
| 758 |
|
|---|
| 759 | switch (var->vc) {
|
|---|
| 760 | case vc_bool:
|
|---|
| 761 | printf("bool(%s)", var->u.bool_v->value ? "true" : "false");
|
|---|
| 762 | break;
|
|---|
| 763 | case vc_char:
|
|---|
| 764 | printf("char(");
|
|---|
| 765 | if (bigint_get_value_int(&var->u.char_v->value, &val) == EOK)
|
|---|
| 766 | printf("'%c'", val);
|
|---|
| 767 | else
|
|---|
| 768 | printf("???:x%x\n", (unsigned) val);
|
|---|
| 769 | printf(")");
|
|---|
| 770 | break;
|
|---|
| 771 | case vc_int:
|
|---|
| 772 | printf("int(");
|
|---|
| 773 | bigint_print(&var->u.int_v->value);
|
|---|
| 774 | printf(")");
|
|---|
| 775 | break;
|
|---|
| 776 | case vc_string:
|
|---|
| 777 | printf("string(\"%s\")", var->u.string_v->value);
|
|---|
| 778 | break;
|
|---|
| 779 | case vc_ref:
|
|---|
| 780 | if (var->u.ref_v->vref != NULL) {
|
|---|
| 781 | printf("ref(");
|
|---|
| 782 | rdata_var_print(var->u.ref_v->vref);
|
|---|
| 783 | printf(")");
|
|---|
| 784 | } else {
|
|---|
| 785 | printf("nil");
|
|---|
| 786 | }
|
|---|
| 787 | break;
|
|---|
| 788 | case vc_deleg:
|
|---|
| 789 | printf("deleg(");
|
|---|
| 790 | if (var->u.deleg_v->sym != NULL) {
|
|---|
| 791 | if (var->u.deleg_v->obj != NULL) {
|
|---|
| 792 | rdata_var_print(var->u.deleg_v->obj);
|
|---|
| 793 | printf(",");
|
|---|
| 794 | }
|
|---|
| 795 | symbol_print_fqn(var->u.deleg_v->sym);
|
|---|
| 796 | } else {
|
|---|
| 797 | printf("nil");
|
|---|
| 798 | }
|
|---|
| 799 | printf(")");
|
|---|
| 800 | break;
|
|---|
| 801 | case vc_enum:
|
|---|
| 802 | symbol_print_fqn(
|
|---|
| 803 | enum_to_symbol(var->u.enum_v->value->outer_enum));
|
|---|
| 804 | printf(".%s",
|
|---|
| 805 | strtab_get_str(var->u.enum_v->value->name->sid));
|
|---|
| 806 | break;
|
|---|
| 807 | case vc_array:
|
|---|
| 808 | printf("array");
|
|---|
| 809 | break;
|
|---|
| 810 | case vc_object:
|
|---|
| 811 | printf("object");
|
|---|
| 812 | break;
|
|---|
| 813 | case vc_resource:
|
|---|
| 814 | printf("resource(%p)", var->u.resource_v->data);
|
|---|
| 815 | break;
|
|---|
| 816 | case vc_symbol:
|
|---|
| 817 | printf("symbol(");
|
|---|
| 818 | if (var->u.symbol_v->sym != NULL) {
|
|---|
| 819 | symbol_print_fqn(var->u.symbol_v->sym);
|
|---|
| 820 | } else {
|
|---|
| 821 | printf("nil");
|
|---|
| 822 | }
|
|---|
| 823 | printf(")");
|
|---|
| 824 | break;
|
|---|
| 825 | }
|
|---|
| 826 | }
|
|---|