libamxc  1.10.3
C Generic Data Containers
variant_uint64.c
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54 
55 #include <sys/resource.h>
56 
57 #include <stdlib.h>
58 #include <stdio.h>
59 #include <fcntl.h>
60 
61 #include <amxc_variant_priv.h>
62 
63 static int variant_uint64_to_string(amxc_var_t* const dest,
64  const amxc_var_t* const src) {
65  int retval = -1;
66  int check = 0;
67  int size_needed = snprintf(NULL, 0, "%" PRIu64, src->data.ui64);
68  dest->data.s = (char*) calloc(size_needed + 1, sizeof(char));
69 
70  when_null(dest->data.s, exit);
71 
72  check = snprintf(dest->data.s, size_needed + 1, "%" PRIu64, src->data.ui64);
73  if(check < 0) {
74  free(dest->data.s);
75  dest->data.s = NULL;
76  goto exit;
77  }
78 
79  retval = 0;
80 
81 exit:
82  return retval;
83 }
84 
85 static int variant_uint64_to_int8(amxc_var_t* const dest,
86  const amxc_var_t* const src) {
87  int retval = -1;
88 
89  /* verify overflow or underflow */
90  when_true(src->data.ui64 > INT8_MAX, exit);
91 
92  dest->data.i8 = (int8_t) src->data.ui64;
93  retval = 0;
94 
95 exit:
96  return retval;
97 }
98 
99 static int variant_uint64_to_int16(amxc_var_t* const dest,
100  const amxc_var_t* const src) {
101  int retval = -1;
102 
103  /* verify overflow or underflow */
104  when_true(src->data.ui64 > INT16_MAX, exit);
105 
106  dest->data.i16 = (int16_t) src->data.ui64;
107  retval = 0;
108 
109 exit:
110  return retval;
111 }
112 
113 static int variant_uint64_to_int32(amxc_var_t* const dest,
114  const amxc_var_t* const src) {
115  int retval = -1;
116 
117  /* verify overflow or underflow */
118  when_true(src->data.ui64 > INT32_MAX, exit);
119 
120  dest->data.i32 = (int32_t) src->data.ui64;
121  retval = 0;
122 
123 exit:
124  return retval;
125 }
126 
127 static int variant_uint64_to_int64(amxc_var_t* const dest,
128  const amxc_var_t* const src) {
129  int retval = -1;
130 
131  /* verify overflow or underflow */
132  when_true(src->data.ui64 > INT64_MAX, exit);
133 
134  dest->data.i64 = (int64_t) src->data.ui64;
135  retval = 0;
136 
137 exit:
138  return retval;
139 }
140 
141 static int variant_uint64_to_uint8(amxc_var_t* const dest,
142  const amxc_var_t* const src) {
143  int retval = -1;
144 
145  /* verify overflow or underflow */
146  when_true(src->data.ui64 > UINT8_MAX, exit);
147 
148  dest->data.ui8 = (uint8_t) src->data.ui64;
149  retval = 0;
150 
151 exit:
152  return retval;
153 }
154 
155 static int variant_uint64_to_uint16(amxc_var_t* const dest,
156  const amxc_var_t* const src) {
157  int retval = -1;
158 
159  /* verify overflow or underflow */
160  when_true(src->data.ui64 > UINT16_MAX, exit);
161 
162  dest->data.ui16 = (uint16_t) src->data.ui64;
163  retval = 0;
164 
165 exit:
166  return retval;
167 }
168 
169 static int variant_uint64_to_uint32(amxc_var_t* const dest,
170  const amxc_var_t* const src) {
171  int retval = -1;
172 
173  /* verify overflow or underflow */
174  when_true(src->data.ui64 > UINT32_MAX, exit);
175 
176  dest->data.ui32 = (uint32_t) src->data.ui64;
177  retval = 0;
178 
179 exit:
180  return retval;
181 }
182 
183 static int variant_uint64_to_float(amxc_var_t* const dest,
184  const amxc_var_t* const src) {
185  dest->data.f = (float) src->data.ui64;
186  return 0;
187 }
188 
189 static int variant_uint64_to_double(amxc_var_t* const dest,
190  const amxc_var_t* const src) {
191  dest->data.d = (double) src->data.ui64;
192  return 0;
193 }
194 
195 static int variant_uint64_to_bool(amxc_var_t* const dest,
196  const amxc_var_t* const src) {
197  dest->data.b = src->data.ui64 == 0 ? false : true;
198  return 0;
199 }
200 
201 static int variant_uint64_to_fd(amxc_var_t* const dest,
202  const amxc_var_t* const src) {
203  int retval = -1;
204  struct rlimit nofile = { 0, 0 };
205  when_failed(getrlimit(RLIMIT_NOFILE, &nofile), exit);
206 
207  when_true((rlim_t) src->data.ui64 > nofile.rlim_max, exit);
208  when_failed(fcntl((int) src->data.ui64, F_GETFD), exit);
209 
210  dest->data.fd = (int) src->data.ui64;
211  retval = 0;
212 
213 exit:
214  return retval;
215 }
216 
217 static int variant_uint64_to_ts(amxc_var_t* const dest,
218  const amxc_var_t* const src) {
219  int retval = -1;
220  dest->data.ts.sec = src->data.ui64;
221  if(amxc_ts_is_valid(&dest->data.ts)) {
222  retval = 0;
223  } else {
224  dest->data.ts.sec = 0;
225  }
226 
227  return retval;
228 }
229 
230 static int variant_uint64_convert_to(amxc_var_t* const dest,
231  const amxc_var_t* const src) {
232  int retval = -1;
233 
255  };
256 
257  if(dest->type_id >= AMXC_VAR_ID_CUSTOM_BASE) {
258  goto exit;
259  }
260 
261  if(convfn[dest->type_id] != NULL) {
262  if(dest->type_id == AMXC_VAR_ID_ANY) {
264  }
265  retval = convfn[dest->type_id](dest, src);
266  }
267 
268 exit:
269  return retval;
270 }
271 
272 static int variant_uint64_compare(const amxc_var_t* const lval,
273  const amxc_var_t* const rval,
274  int* const result) {
275  if(lval->data.ui64 == rval->data.ui64) {
276  *result = 0;
277  } else if(lval->data.ui64 > rval->data.ui64) {
278  *result = 1;
279  } else {
280  *result = -1;
281  }
282  return 0;
283 }
284 
286  .init = NULL,
287  .del = NULL,
288  .copy = amxc_var_default_copy,
289  .move = amxc_var_default_move,
290  .convert_from = NULL,
291  .convert_to = variant_uint64_convert_to,
292  .compare = variant_uint64_compare,
293  .get_key = NULL,
294  .set_key = NULL,
295  .get_index = NULL,
296  .set_index = NULL,
297  .type_id = 0,
298  .hit = { .ait = NULL, .key = NULL, .next = NULL },
299  .name = AMXC_VAR_NAME_UINT64
300 };
301 
304 }
305 
308 }
309 
310 int amxc_var_set_uint64_t(amxc_var_t* var, uint64_t val) {
311  int retval = -1;
312  when_null(var, exit);
313 
315 
316  var->data.ui64 = val;
317  retval = 0;
318 
319 exit:
320  return retval;
321 }
322 
324  uint64_t retval = 0;
325  amxc_var_t variant;
326  when_null(var, exit);
327 
328  amxc_var_init(&variant);
330  retval = variant.data.ui64;
331  amxc_var_clean(&variant);
332 
333 exit:
334  return retval;
335 }
336 
338  uint64_t retval = 0;
339  when_null(var, exit);
341 
342  retval = var->data.ui64;
343 
344 exit:
345  return retval;
346 }
347 
349  amxc_var_t* subvar = NULL;
350 
351  when_null(var, exit);
352  subvar = amxc_var_add_new(var);
353  when_null(subvar, exit);
354 
355  if(amxc_var_set_uint64_t(subvar, val) != 0) {
356  amxc_var_delete(&subvar);
357  }
358 
359 exit:
360  return subvar;
361 }
362 
363 amxc_var_t* amxc_var_add_new_key_uint64_t(amxc_var_t* const var, const char* key, uint64_t val) {
364  amxc_var_t* subvar = NULL;
365 
366  when_null(var, exit);
367  subvar = amxc_var_add_new_key(var, key);
368  when_null(subvar, exit);
369 
370  if(amxc_var_set_uint64_t(subvar, val) != 0) {
371  amxc_var_delete(&subvar);
372  }
373 
374 exit:
375  return subvar;
376 }
#define when_failed(x, l)
Definition: amxc_macros.h:142
#define when_true(x, l)
Definition: amxc_macros.h:134
#define CONSTRUCTOR
Definition: amxc_macros.h:86
#define when_null(x, l)
Definition: amxc_macros.h:126
#define DESTRUCTOR
Definition: amxc_macros.h:90
int PRIVATE amxc_var_default_convert_to_null(amxc_var_t *const dest, const amxc_var_t *const src)
int PRIVATE amxc_var_default_move(amxc_var_t *const dest, amxc_var_t *const src)
Definition: amxc_variant.c:142
uint32_t PRIVATE amxc_var_add_type(amxc_var_type_t *const type, const uint32_t index)
int PRIVATE amxc_var_default_convert_to_htable(amxc_var_t *const dest, const amxc_var_t *const src)
Definition: amxc_variant.c:174
int PRIVATE amxc_var_default_copy(amxc_var_t *const dest, const amxc_var_t *const src)
Definition: amxc_variant.c:136
int PRIVATE amxc_var_remove_type(amxc_var_type_t *const type)
int PRIVATE amxc_var_default_convert_to_list(amxc_var_t *const dest, const amxc_var_t *const src)
Definition: amxc_variant.c:155
bool amxc_ts_is_valid(const amxc_ts_t *tsp)
Checks if a timestamp is valid.
uint64_t amxc_var_get_uint64_t(const amxc_var_t *var)
Conversion helper function.
amxc_var_t * amxc_var_add_new_uint64_t(amxc_var_t *const var, uint64_t val)
Conversion helper function.
amxc_var_t * amxc_var_add_new_key_uint64_t(amxc_var_t *const var, const char *key, uint64_t val)
Conversion helper function.
int amxc_var_set_uint64_t(amxc_var_t *var, uint64_t val)
Setter helper function.
uint64_t amxc_var_get_const_uint64_t(const amxc_var_t *const var)
Conversion helper function.
#define AMXC_VAR_NAME_UINT64
Provides a name for variant id AMXC_VAR_ID_UINT64.
Definition: amxc_variant.h:324
#define AMXC_VAR_ID_CUSTOM_BASE
Base variant id for custom variants.
Definition: amxc_variant.h:257
#define AMXC_VAR_ID_UINT64
Unsigned 64 bit integer variant id.
Definition: amxc_variant.h:182
#define AMXC_VAR_ID_ANY
Special variant id, typically used in cast or conversion functions.
Definition: amxc_variant.h:247
int(* amxc_var_convert_fn_t)(amxc_var_t *const dest, const amxc_var_t *const src)
Variant type callback function prototype for dynamically converting one type to another.
int amxc_var_set_type(amxc_var_t *const var, const uint32_t type)
Change the variant data type.
Definition: amxc_variant.c:261
int amxc_var_init(amxc_var_t *const var)
Initializes a variant.
Definition: amxc_variant.c:223
amxc_var_t * amxc_var_add_new(amxc_var_t *const var)
Adds a new variant to a composite variant.
Definition: amxc_variant.c:551
void amxc_var_clean(amxc_var_t *const var)
Clean-up and reset variant.
Definition: amxc_variant.c:237
void amxc_var_delete(amxc_var_t **var)
Frees the previously allocated variant.
Definition: amxc_variant.c:207
amxc_var_t * amxc_var_add_new_key(amxc_var_t *const var, const char *key)
Adds a new variant with a key to a composite variant.
Definition: amxc_variant.c:526
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
A variant type structure.
amxc_var_new_fn_t init
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
static int variant_uint64_to_uint16(amxc_var_t *const dest, const amxc_var_t *const src)
static int variant_uint64_to_int8(amxc_var_t *const dest, const amxc_var_t *const src)
static int variant_uint64_to_int32(amxc_var_t *const dest, const amxc_var_t *const src)
static int variant_uint64_to_int64(amxc_var_t *const dest, const amxc_var_t *const src)
static int variant_uint64_to_fd(amxc_var_t *const dest, const amxc_var_t *const src)
static DESTRUCTOR void amxc_var_uint64_cleanup(void)
static int variant_uint64_to_float(amxc_var_t *const dest, const amxc_var_t *const src)
static int variant_uint64_convert_to(amxc_var_t *const dest, const amxc_var_t *const src)
static int variant_uint64_compare(const amxc_var_t *const lval, const amxc_var_t *const rval, int *const result)
static amxc_var_type_t amxc_variant_uint64
static int variant_uint64_to_bool(amxc_var_t *const dest, const amxc_var_t *const src)
static int variant_uint64_to_ts(amxc_var_t *const dest, const amxc_var_t *const src)
static int variant_uint64_to_double(amxc_var_t *const dest, const amxc_var_t *const src)
static int variant_uint64_to_uint8(amxc_var_t *const dest, const amxc_var_t *const src)
static CONSTRUCTOR void amxc_var_uint64_init(void)
static int variant_uint64_to_string(amxc_var_t *const dest, const amxc_var_t *const src)
static int variant_uint64_to_int16(amxc_var_t *const dest, const amxc_var_t *const src)
static int variant_uint64_to_uint32(amxc_var_t *const dest, const amxc_var_t *const src)