Changes in uspace/app/tester/float/softfloat1.c [000494d:02ce8a0] in mainline
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uspace/app/tester/float/softfloat1.c
r000494d r02ce8a0 34 34 #include <mul.h> 35 35 #include <div.h> 36 #include <comparison.h> 37 #include <conversion.h> 36 38 #include <bool.h> 37 39 #include "../tester.h" 38 40 39 #define OPERANDS 641 #define OPERANDS 10 40 42 #define PRECISION 10000 41 43 … … 43 45 44 46 typedef int32_t cmptype_t; 45 typedef void (* float_op_t)(float, float, float *, float_t *); 46 typedef void (* double_op_t)(double, double, double *, double_t *); 47 typedef void (* template_t)(void *, unsigned, unsigned, cmptype_t *, 47 48 typedef void (* uint_to_double_op_t)(unsigned int, double *, double_t *); 49 typedef void (* double_to_uint_op_t)(double, unsigned int *, unsigned int *); 50 typedef void (* float_binary_op_t)(float, float, float *, float_t *); 51 typedef void (* double_binary_op_t)(double, double, double *, double_t *); 52 typedef void (* double_cmp_op_t)(double, double, cmptype_t *, cmptype_t *); 53 54 typedef void (* template_unary_t)(void *, unsigned, cmptype_t *, cmptype_t *); 55 typedef void (* template_binary_t)(void *, unsigned, unsigned, cmptype_t *, 48 56 cmptype_t *); 49 57 50 static float fop_a[OPERANDS] = 51 {3.5, -2.1, 100.0, 50.0, -1024.0, 0.0}; 52 53 static float fop_b[OPERANDS] = 54 {-2.1, 100.0, 50.0, -1024.0, 3.5, 0.0}; 55 56 static double dop_a[OPERANDS] = 57 {3.5, -2.1, 100.0, 50.0, -1024.0, 0.0}; 58 59 static double dop_b[OPERANDS] = 60 {-2.1, 100.0, 50.0, -1024.0, 3.5, 0.0}; 58 #define NUMBERS \ 59 3.5, -2.1, 100.0, 50.0, -1024.0, 0.0, 768.3156, 1080.499999, -600.0, 1.0 60 61 static float fop_a[OPERANDS] = { 62 NUMBERS 63 }; 64 65 static double dop_a[OPERANDS] = { 66 NUMBERS 67 }; 68 69 static unsigned int uop_a[OPERANDS] = { 70 4, -100, 100, 50, 1024, 0, 1000000, -1U, 0x80000000U, 500 71 }; 61 72 62 73 static cmptype_t cmpabs(cmptype_t a) … … 68 79 } 69 80 70 static void 71 float_template(void *f, unsigned i, unsigned j, cmptype_t *pic, 81 static int dcmp(double a, double b) 82 { 83 if (a < b) 84 return -1; 85 else if (a > b) 86 return 1; 87 88 return 0; 89 } 90 91 static void 92 uint_to_double_template(void *f, unsigned i, cmptype_t *pic, cmptype_t *pisc) 93 { 94 double c; 95 double_t sc; 96 97 uint_to_double_op_t op = (uint_to_double_op_t) f; 98 99 op(uop_a[i], &c, &sc); 100 101 *pic = (cmptype_t) (c * PRECISION); 102 *pisc = (cmptype_t) (sc.val * PRECISION); 103 } 104 105 static void 106 double_to_uint_template(void *f, unsigned i, cmptype_t *pic, cmptype_t *pisc) 107 { 108 unsigned int c; 109 unsigned int sc; 110 111 double_to_uint_op_t op = (double_to_uint_op_t) f; 112 113 op(dop_a[i], &c, &sc); 114 115 *pic = (cmptype_t) c; 116 *pisc = (cmptype_t) sc; 117 } 118 119 120 static void 121 float_template_binary(void *f, unsigned i, unsigned j, cmptype_t *pic, 72 122 cmptype_t *pisc) 73 123 { … … 75 125 float_t sc; 76 126 77 float_ op_t op = (float_op_t) f;78 79 op(fop_a[i], fop_ b[j], &c, &sc);127 float_binary_op_t op = (float_binary_op_t) f; 128 129 op(fop_a[i], fop_a[j], &c, &sc); 80 130 81 131 *pic = (cmptype_t) (c * PRECISION); … … 84 134 85 135 static void 86 double_template (void *f, unsigned i, unsigned j, cmptype_t *pic,136 double_template_binary(void *f, unsigned i, unsigned j, cmptype_t *pic, 87 137 cmptype_t *pisc) 88 138 { … … 90 140 double_t sc; 91 141 92 double_ op_t op = (double_op_t) f;93 94 op(dop_a[i], dop_ b[j], &c, &sc);142 double_binary_op_t op = (double_binary_op_t) f; 143 144 op(dop_a[i], dop_a[j], &c, &sc); 95 145 96 146 *pic = (cmptype_t) (c * PRECISION); … … 98 148 } 99 149 100 static bool test_template(template_t template, void *f) 150 static void 151 double_compare_template(void *f, unsigned i, unsigned j, cmptype_t *pis, 152 cmptype_t *piss) 153 { 154 double_cmp_op_t op = (double_cmp_op_t) f; 155 156 op(dop_a[i], dop_a[j], pis, piss); 157 } 158 159 static bool test_template_unary(template_unary_t template, void *f) 160 { 161 bool correct = true; 162 163 for (unsigned int i = 0; i < OPERANDS; i++) { 164 cmptype_t ic; 165 cmptype_t isc; 166 167 template(f, i, &ic, &isc); 168 cmptype_t diff = cmpabs(ic - isc); 169 170 if (diff != 0) { 171 TPRINTF("i=%u diff=%" PRIdCMPTYPE "\n", i, diff); 172 correct = false; 173 } 174 } 175 176 return correct; 177 } 178 179 static bool test_template_binary(template_binary_t template, void *f) 101 180 { 102 181 bool correct = true; … … 121 200 } 122 201 202 static void uint_to_double_operator(unsigned int a, double *pc, double_t *psc) 203 { 204 *pc = (double) a; 205 psc->data = uint_to_double(a); 206 } 207 208 static void 209 double_to_uint_operator(double a, unsigned int *pc, unsigned int *psc) 210 { 211 double_t sa; 212 213 sa.val = a; 214 215 *pc = (unsigned int) a; 216 *psc = double_to_uint(sa.data); 217 } 218 219 static void 220 double_to_int_operator(double a, unsigned int *pc, unsigned int *psc) 221 { 222 double_t sa; 223 224 sa.val = a; 225 226 *pc = (int) a; 227 *psc = double_to_int(sa.data); 228 } 229 123 230 static void float_add_operator(float a, float b, float *pc, float_t *psc) 124 231 { … … 221 328 } 222 329 330 static void 331 double_cmp_operator(double a, double b, cmptype_t *pis, cmptype_t *piss) 332 { 333 *pis = dcmp(a, b); 334 335 double_t sa; 336 double_t sb; 337 338 sa.val = a; 339 sb.val = b; 340 341 if (is_double_lt(sa.data, sb.data)) 342 *piss = -1; 343 else if (is_double_gt(sa.data, sb.data)) 344 *piss = 1; 345 else if (is_double_eq(sa.data, sb.data)) 346 *piss = 0; 347 else 348 *piss = 42; 349 } 350 223 351 const char *test_softfloat1(void) 224 352 { 225 353 const char *err = NULL; 226 354 227 if (!test_template (float_template, float_add_operator)) {355 if (!test_template_binary(float_template_binary, float_add_operator)) { 228 356 err = "Float addition failed"; 229 357 TPRINTF("%s\n", err); 230 358 } 231 if (!test_template (float_template, float_mul_operator)) {359 if (!test_template_binary(float_template_binary, float_mul_operator)) { 232 360 err = "Float multiplication failed"; 233 361 TPRINTF("%s\n", err); 234 362 } 235 if (!test_template (float_template, float_div_operator)) {363 if (!test_template_binary(float_template_binary, float_div_operator)) { 236 364 err = "Float division failed"; 237 365 TPRINTF("%s\n", err); 238 366 } 239 if (!test_template (double_template, double_add_operator)) {367 if (!test_template_binary(double_template_binary, double_add_operator)) { 240 368 err = "Double addition failed"; 241 369 TPRINTF("%s\n", err); 242 370 } 243 if (!test_template (double_template, double_mul_operator)) {371 if (!test_template_binary(double_template_binary, double_mul_operator)) { 244 372 err = "Double multiplication failed"; 245 373 TPRINTF("%s\n", err); 246 374 } 247 if (!test_template (double_template, double_div_operator)) {375 if (!test_template_binary(double_template_binary, double_div_operator)) { 248 376 err = "Double division failed"; 249 377 TPRINTF("%s\n", err); 250 378 } 379 if (!test_template_binary(double_compare_template, double_cmp_operator)) { 380 err = "Double comparison failed"; 381 TPRINTF("%s\n", err); 382 } 383 if (!test_template_unary(uint_to_double_template, 384 uint_to_double_operator)) { 385 err = "Conversion from unsigned int to double failed"; 386 TPRINTF("%s\n", err); 387 } 388 if (!test_template_unary(double_to_uint_template, 389 double_to_uint_operator)) { 390 err = "Conversion from double to unsigned int failed"; 391 TPRINTF("%s\n", err); 392 } 393 if (!test_template_unary(double_to_uint_template, 394 double_to_int_operator)) { 395 err = "Conversion from double to signed int failed"; 396 TPRINTF("%s\n", err); 397 } 251 398 252 399 return err;
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