libamxc  1.10.3
C Generic Data Containers
test_variant_int16.c
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54 
55 #include <sys/time.h>
56 #include <sys/resource.h>
57 
58 #include <stdlib.h>
59 #include <stdio.h>
60 #include <stdarg.h>
61 #include <stddef.h>
62 #include <setjmp.h>
63 #include <inttypes.h>
64 #include <limits.h>
65 #include <unistd.h>
66 #include <fcntl.h>
67 #include <cmocka.h>
68 
69 #include <amxc/amxc_variant.h>
70 #include <amxc_variant_priv.h>
71 
72 #include "test_variant_int16.h"
73 
74 #include <amxc/amxc_macros.h>
75 void test_variant_int16_copy(UNUSED void** state) {
77  amxc_var_t copy_var;
78 
79  assert_int_equal(amxc_var_init(&var), 0);
80  assert_int_equal(amxc_var_init(&copy_var), 0);
81  assert_int_equal(var.type_id, AMXC_VAR_ID_NULL);
82  assert_int_equal(amxc_var_set_type(&var, AMXC_VAR_ID_INT16), 0);
83  assert_int_equal(var.type_id, AMXC_VAR_ID_INT16);
84  var.data.i16 = 32767;
85 
86  assert_int_equal(amxc_var_copy(&copy_var, &var), 0);
87  assert_int_equal(copy_var.type_id, AMXC_VAR_ID_INT16);
88  assert_int_equal(copy_var.data.i16, 32767);
89 }
90 
93  amxc_var_t copy_var;
94 
95  assert_int_equal(amxc_var_init(&var), 0);
96  assert_int_equal(amxc_var_init(&copy_var), 0);
97  assert_int_equal(var.type_id, AMXC_VAR_ID_NULL);
98  assert_int_equal(amxc_var_set_type(&var, AMXC_VAR_ID_INT16), 0);
99  assert_int_equal(var.type_id, AMXC_VAR_ID_INT16);
100 
101  assert_int_equal(amxc_var_convert(&copy_var, &var, AMXC_VAR_ID_NULL), 0);
102  assert_int_equal(copy_var.type_id, AMXC_VAR_ID_NULL);
103  assert_ptr_equal(copy_var.data.data, NULL);
104  var.data.i16 = 0x8001;
105  assert_int_equal(amxc_var_convert(&copy_var, &var, AMXC_VAR_ID_CSTRING), 0);
106  assert_int_equal(copy_var.type_id, AMXC_VAR_ID_CSTRING);
107  assert_string_equal(copy_var.data.s, "-32767");
108 
109  var.data.i16 = 0xFFFF;
110  assert_int_equal(amxc_var_convert(&copy_var, &var, AMXC_VAR_ID_CSTRING), 0);
111  assert_int_equal(copy_var.type_id, AMXC_VAR_ID_CSTRING);
112  assert_string_equal(copy_var.data.s, "-1");
113 
114  var.data.i16 = 0xF000;
115  assert_int_not_equal(amxc_var_convert(&copy_var, &var, AMXC_VAR_ID_INT8), 0);
116  var.data.i16 = 0x1001;
117  assert_int_not_equal(amxc_var_convert(&copy_var, &var, AMXC_VAR_ID_INT8), 0);
118  var.data.i16 = 127;
119  assert_int_equal(amxc_var_convert(&copy_var, &var, AMXC_VAR_ID_INT8), 0);
120  assert_int_equal(copy_var.type_id, AMXC_VAR_ID_INT8);
121  assert_int_equal(copy_var.data.i8, 127);
122  var.data.i16 = -128;
123  assert_int_equal(amxc_var_convert(&copy_var, &var, AMXC_VAR_ID_INT8), 0);
124  assert_int_equal(copy_var.type_id, AMXC_VAR_ID_INT8);
125  assert_int_equal(copy_var.data.i8, -128);
126 
127  var.data.i16 = 1024;
128  assert_int_equal(amxc_var_convert(&copy_var, &var, AMXC_VAR_ID_INT32), 0);
129  assert_int_equal(copy_var.type_id, AMXC_VAR_ID_INT32);
130  assert_int_equal(copy_var.data.i32, 1024);
131  var.data.i16 = -1024;
132  assert_int_equal(amxc_var_convert(&copy_var, &var, AMXC_VAR_ID_INT32), 0);
133  assert_int_equal(copy_var.type_id, AMXC_VAR_ID_INT32);
134  assert_int_equal(copy_var.data.i32, -1024);
135 
136  var.data.i16 = -16766;
137  assert_int_equal(amxc_var_convert(&copy_var, &var, AMXC_VAR_ID_INT64), 0);
138  assert_int_equal(copy_var.type_id, AMXC_VAR_ID_INT64);
139  assert_int_equal(copy_var.data.i64, -16766);
140  var.data.i16 = 0x7FFF;
141  assert_int_equal(amxc_var_convert(&copy_var, &var, AMXC_VAR_ID_INT64), 0);
142  assert_int_equal(copy_var.type_id, AMXC_VAR_ID_INT64);
143  assert_int_equal(copy_var.data.i64, 0x7FFF);
144 
145  var.data.i16 = 256;
146  assert_int_not_equal(amxc_var_convert(&copy_var, &var, AMXC_VAR_ID_UINT8), 0);
147  var.data.i16 = 255;
148  assert_int_equal(amxc_var_convert(&copy_var, &var, AMXC_VAR_ID_UINT8), 0);
149  assert_int_equal(copy_var.type_id, AMXC_VAR_ID_UINT8);
150  assert_int_equal(copy_var.data.ui8, 255);
151  var.data.i16 = -255;
152  assert_int_equal(amxc_var_convert(&copy_var, &var, AMXC_VAR_ID_UINT8), 0);
153  assert_int_equal(copy_var.type_id, AMXC_VAR_ID_UINT8);
154  assert_int_equal(copy_var.data.ui8, 255);
155 
156  var.data.i16 = 255;
157  assert_int_equal(amxc_var_convert(&copy_var, &var, AMXC_VAR_ID_UINT16), 0);
158  assert_int_equal(copy_var.type_id, AMXC_VAR_ID_UINT16);
159  assert_int_equal(copy_var.data.ui16, 255);
160  var.data.i16 = -255;
161  assert_int_equal(amxc_var_convert(&copy_var, &var, AMXC_VAR_ID_UINT16), 0);
162  assert_int_equal(copy_var.type_id, AMXC_VAR_ID_UINT16);
163  assert_int_equal(copy_var.data.ui8, 255);
164 
165  var.data.i16 = INT16_MAX;
166  assert_int_equal(amxc_var_convert(&copy_var, &var, AMXC_VAR_ID_UINT32), 0);
167  assert_int_equal(copy_var.type_id, AMXC_VAR_ID_UINT32);
168  assert_int_equal(copy_var.data.ui32, INT16_MAX);
169  var.data.i16 = INT16_MIN;
170  assert_int_equal(amxc_var_convert(&copy_var, &var, AMXC_VAR_ID_UINT32), 0);
171  assert_int_equal(copy_var.type_id, AMXC_VAR_ID_UINT32);
172  assert_int_equal(copy_var.data.ui16, llabs(INT16_MIN));
173 
174  var.data.i16 = INT16_MAX;
175  assert_int_equal(amxc_var_convert(&copy_var, &var, AMXC_VAR_ID_UINT64), 0);
176  assert_int_equal(copy_var.type_id, AMXC_VAR_ID_UINT64);
177  assert_int_equal(copy_var.data.ui64, INT16_MAX);
178  var.data.i16 = INT16_MIN;
179  assert_int_equal(amxc_var_convert(&copy_var, &var, AMXC_VAR_ID_UINT64), 0);
180  assert_int_equal(copy_var.type_id, AMXC_VAR_ID_UINT64);
181  assert_int_equal(copy_var.data.ui64, llabs(INT16_MIN));
182 
183  var.data.i16 = 1000;
184  assert_int_equal(amxc_var_convert(&copy_var, &var, AMXC_VAR_ID_TIMESTAMP), 0);
185  assert_int_equal(copy_var.type_id, AMXC_VAR_ID_TIMESTAMP);
186  var.data.i16 = -1000;
187  assert_int_equal(amxc_var_convert(&copy_var, &var, AMXC_VAR_ID_TIMESTAMP), 0);
188  assert_int_equal(copy_var.type_id, AMXC_VAR_ID_TIMESTAMP);
189 
190  var.data.i16 = 0xF000;
191  assert_int_equal(amxc_var_convert(&copy_var, &var, AMXC_VAR_ID_BOOL), 0);
192  assert_int_equal(copy_var.type_id, AMXC_VAR_ID_BOOL);
193  assert_true(copy_var.data.b);
194  var.data.i16 = 0x00;
195  assert_int_equal(amxc_var_convert(&copy_var, &var, AMXC_VAR_ID_BOOL), 0);
196  assert_int_equal(copy_var.type_id, AMXC_VAR_ID_BOOL);
197  assert_false(copy_var.data.b);
198 
199  var.data.i16 = 100;
200  assert_int_equal(amxc_var_convert(&copy_var, &var, AMXC_VAR_ID_FLOAT), 0);
201  assert_int_equal(copy_var.type_id, AMXC_VAR_ID_FLOAT);
202  assert_true(copy_var.data.f == 100);
203 
204  assert_int_equal(amxc_var_convert(&copy_var, &var, AMXC_VAR_ID_DOUBLE), 0);
205  assert_int_equal(copy_var.type_id, AMXC_VAR_ID_DOUBLE);
206  assert_true(copy_var.data.d == 100);
207 
208  struct rlimit nofile = { 0, 0 };
209  assert_int_equal(getrlimit(RLIMIT_NOFILE, &nofile), 0);
210 
211  var.data.i16 = 0xE0;
212  assert_int_not_equal(amxc_var_convert(&copy_var, &var, AMXC_VAR_ID_FD), 0);
213  var.data.i16 = -1;
214  assert_int_not_equal(amxc_var_convert(&copy_var, &var, AMXC_VAR_ID_FD), 0);
215  var.data.i16 = STDIN_FILENO;
216  assert_int_equal(amxc_var_convert(&copy_var, &var, AMXC_VAR_ID_FD), 0);
217  assert_int_equal(copy_var.type_id, AMXC_VAR_ID_FD);
218  assert_int_equal(copy_var.data.fd, STDIN_FILENO);
219 
220  assert_int_not_equal(amxc_var_convert(&copy_var, &var, AMXC_VAR_ID_CUSTOM_BASE), 0);
221 }
222 
223 void test_variant_int16_compare(UNUSED void** state) {
224  amxc_var_t var1;
225  amxc_var_t var2;
226  int result = 0;
227 
228 
229  assert_int_equal(amxc_var_init(&var1), 0);
230  assert_int_equal(amxc_var_init(&var2), 0);
231  assert_int_equal(amxc_var_set_type(&var1, AMXC_VAR_ID_INT16), 0);
232  assert_int_equal(var1.type_id, AMXC_VAR_ID_INT16);
233  var1.data.i16 = 100;
234  assert_int_equal(amxc_var_set_type(&var2, AMXC_VAR_ID_INT16), 0);
235  assert_int_equal(var2.type_id, AMXC_VAR_ID_INT16);
236  var2.data.i16 = -100;
237 
238  assert_int_equal(amxc_var_compare(&var1, &var2, &result), 0);
239  assert_true(result > 0);
240 
241  assert_int_equal(amxc_var_compare(&var2, &var1, &result), 0);
242  assert_true(result < 0);
243 
244  var2.data.i16 = 100;
245  assert_int_equal(amxc_var_compare(&var2, &var1, &result), 0);
246  assert_true(result == 0);
247 
248 }
249 
250 void test_variant_int16_set_get(UNUSED void** state) {
251  amxc_var_t var1;
252 
253  assert_int_equal(amxc_var_init(&var1), 0);
254  assert_int_equal(amxc_var_set_int16_t(&var1, 1024), 0);
255  assert_int_equal(var1.type_id, AMXC_VAR_ID_INT16);
256  assert_true(var1.data.i16 = 1024);
257 
258  assert_true(amxc_var_get_int16_t(&var1) == 1024);
259  assert_true(amxc_var_dyncast(int16_t, &var1) == 1024);
260 
261  assert_int_not_equal(amxc_var_set_int16_t(NULL, 1024), 0);
262  assert_true(amxc_var_get_int16_t(NULL) == 0);
263 
264  assert_int_equal(amxc_var_constcast(int16_t, &var1), 1024);
265  assert_int_equal(amxc_var_constcast(int16_t, NULL), 0);
266 }
267 
268 void test_variant_int16_add(UNUSED void** state) {
269  amxc_var_t var;
270  const amxc_llist_t* list = NULL;
271  const amxc_htable_t* table = NULL;
272 
273  assert_int_equal(amxc_var_init(&var), 0);
274  assert_int_equal(amxc_var_set_type(&var, AMXC_VAR_ID_LIST), 0);
275  assert_ptr_not_equal(amxc_var_add(int16_t, &var, 123), NULL);
276  assert_ptr_not_equal(amxc_var_add(int16_t, &var, 456), NULL);
277 
278  assert_ptr_equal(amxc_var_add(int16_t, NULL, 123), NULL);
279  assert_ptr_equal(amxc_var_add(int16_t, NULL, 456), NULL);
280 
282  assert_int_equal(amxc_llist_size(list), 2);
284 
285  assert_int_equal(amxc_var_init(&var), 0);
286  assert_int_equal(amxc_var_set_type(&var, AMXC_VAR_ID_HTABLE), 0);
287  assert_ptr_not_equal(amxc_var_add_key(int16_t, &var, "B1", 123), NULL);
288  assert_ptr_not_equal(amxc_var_add_key(int16_t, &var, "B2", 456), NULL);
289 
290  assert_ptr_equal(amxc_var_add_key(int16_t, NULL, "B1", 123), NULL);
291  assert_ptr_equal(amxc_var_add_key(int16_t, NULL, "B2", 456), NULL);
292 
294  assert_int_equal(amxc_htable_size(table), 2);
296 }
#define UNUSED
Definition: amxc_macros.h:70
Ambiorix variant API header file.
AMXC_INLINE size_t amxc_htable_size(const amxc_htable_t *const htable)
Calculates the size of the hash table.
Definition: amxc_htable.h:334
size_t amxc_llist_size(const amxc_llist_t *const llist)
Calculates the size of the linked list.
Definition: amxc_llist.c:151
int16_t amxc_var_get_int16_t(const amxc_var_t *const var)
Conversion helper function.
int amxc_var_set_int16_t(amxc_var_t *const var, int16_t val)
Setter helper function.
#define AMXC_VAR_ID_UINT32
Unsigned 32 bit integer variant id.
Definition: amxc_variant.h:176
#define AMXC_VAR_ID_CUSTOM_BASE
Base variant id for custom variants.
Definition: amxc_variant.h:257
#define AMXC_VAR_ID_INT16
Signed 16 bit integer variant id.
Definition: amxc_variant.h:146
#define AMXC_VAR_ID_NULL
Null variant type id (aka void)
Definition: amxc_variant.h:128
#define AMXC_VAR_ID_CSTRING
C-string variant id (aka char *), null terminated string.
Definition: amxc_variant.h:134
#define AMXC_VAR_ID_UINT8
Unsigned 8 bit integer variant id.
Definition: amxc_variant.h:164
#define AMXC_VAR_ID_UINT64
Unsigned 64 bit integer variant id.
Definition: amxc_variant.h:182
#define AMXC_VAR_ID_DOUBLE
Double variant id.
Definition: amxc_variant.h:194
#define AMXC_VAR_ID_UINT16
Unsigned 16 bit integer variant id.
Definition: amxc_variant.h:170
#define AMXC_VAR_ID_FD
File descriptor variant id.
Definition: amxc_variant.h:218
#define AMXC_VAR_ID_BOOL
Boolean variant id.
Definition: amxc_variant.h:200
#define AMXC_VAR_ID_INT32
Signed 32 bit integer variant id.
Definition: amxc_variant.h:152
#define AMXC_VAR_ID_TIMESTAMP
Ambiorix timestamp variant id.
Definition: amxc_variant.h:224
#define AMXC_VAR_ID_FLOAT
Float variant id.
Definition: amxc_variant.h:188
#define AMXC_VAR_ID_LIST
Ambiorix Linked List variant id.
Definition: amxc_variant.h:206
#define AMXC_VAR_ID_HTABLE
Ambiorix Hash Table variant id.
Definition: amxc_variant.h:212
#define AMXC_VAR_ID_INT8
Signed 8 bit integer variant id.
Definition: amxc_variant.h:140
#define AMXC_VAR_ID_INT64
Signed 64 bit integer variant id.
Definition: amxc_variant.h:158
#define amxc_var_add_key(type, var, key, data)
Convenience macro for adding a variant to composite variant type.
Definition: amxc_variant.h:627
#define amxc_var_add(type, var, data)
Convenience macro for adding a variant to composite variant type.
Definition: amxc_variant.h:618
int amxc_var_set_type(amxc_var_t *const var, const uint32_t type)
Change the variant data type.
Definition: amxc_variant.c:261
#define amxc_var_dyncast(type, var)
Dynamic cast a variant to a certain type.
Definition: amxc_variant.h:678
int amxc_var_init(amxc_var_t *const var)
Initializes a variant.
Definition: amxc_variant.c:223
int amxc_var_copy(amxc_var_t *const dest, const amxc_var_t *const src)
Copy the type and data from one variant (source) in another variant (destination).
Definition: amxc_variant.c:285
void amxc_var_clean(amxc_var_t *const var)
Clean-up and reset variant.
Definition: amxc_variant.c:237
int amxc_var_convert(amxc_var_t *const dest, const amxc_var_t *src, const uint32_t type_id)
Converts one variant (source) to another variant(destination) using the specified variant type id.
Definition: amxc_variant.c:333
int amxc_var_compare(const amxc_var_t *const var1, const amxc_var_t *const var2, int *const result)
Compares two variants.
Definition: amxc_variant.c:397
#define amxc_var_constcast(type, var)
Takes the content from a variant.
Definition: amxc_variant.h:722
The hash table structure.
Definition: amxc_htable.h:175
The linked list structure.
Definition: amxc_llist.h:228
The variant struct definition.
Definition: amxc_variant.h:861
void * data
Definition: amxc_variant.h:883
uint32_t type_id
Definition: amxc_variant.h:864
static amxc_var_t * var
Definition: test_issue_58.c:77
void test_variant_int16_set_get(UNUSED void **state)
void test_variant_int16_copy(UNUSED void **state)
void test_variant_int16_convert_to(UNUSED void **state)
void test_variant_int16_compare(UNUSED void **state)
void test_variant_int16_add(UNUSED void **state)