Viewing file: vrecps.c (7.22 KB) -rw-r--r-- Select action/file-type: (+) | (+) | (+) | Code (+) | Session (+) | (+) | SDB (+) | (+) | (+) | (+) | (+) | (+) |
#include <arm_neon.h> #include "arm-neon-ref.h" #include "compute-ref-data.h" #include <math.h>
/* Expected results with positive input. */ #if defined (__ARM_FEATURE_FP16_VECTOR_ARITHMETIC) VECT_VAR_DECL(expected, hfloat, 16, 4) [] = { 0xd70c, 0xd70c, 0xd70c, 0xd70c }; VECT_VAR_DECL(expected, hfloat, 16, 8) [] = { 0xcedc, 0xcedc, 0xcedc, 0xcedc, 0xcedc, 0xcedc, 0xcedc, 0xcedc }; #endif VECT_VAR_DECL(expected,hfloat,32,2) [] = { 0xc2e19eb7, 0xc2e19eb7 }; VECT_VAR_DECL(expected,hfloat,32,4) [] = { 0xc1db851f, 0xc1db851f, 0xc1db851f, 0xc1db851f };
/* Expected results with FP special values (NaN). */ #if defined (__ARM_FEATURE_FP16_VECTOR_ARITHMETIC) VECT_VAR_DECL(expected_fp1, hfloat, 16, 4) [] = { 0x7e00, 0x7e00, 0x7e00, 0x7e00 }; VECT_VAR_DECL(expected_fp1, hfloat, 16, 8) [] = { 0x7e00, 0x7e00, 0x7e00, 0x7e00, 0x7e00, 0x7e00, 0x7e00, 0x7e00 }; #endif VECT_VAR_DECL(expected_fp1,hfloat,32,2) [] = { 0x7fc00000, 0x7fc00000 }; VECT_VAR_DECL(expected_fp1,hfloat,32,4) [] = { 0x7fc00000, 0x7fc00000, 0x7fc00000, 0x7fc00000 };
/* Expected results with FP special values (infinity, 0) and normal values. */ #if defined (__ARM_FEATURE_FP16_VECTOR_ARITHMETIC) VECT_VAR_DECL(expected_fp2, hfloat, 16, 4) [] = { 0xfc00, 0xfc00, 0xfc00, 0xfc00 }; VECT_VAR_DECL(expected_fp2, hfloat, 16, 8) [] = { 0x4000, 0x4000, 0x4000, 0x4000, 0x4000, 0x4000, 0x4000, 0x4000 }; #endif VECT_VAR_DECL(expected_fp2,hfloat,32,2) [] = { 0xff800000, 0xff800000 }; VECT_VAR_DECL(expected_fp2,hfloat,32,4) [] = { 0x40000000, 0x40000000, 0x40000000, 0x40000000 };
/* Expected results with FP special values (infinity, 0). */ #if defined (__ARM_FEATURE_FP16_VECTOR_ARITHMETIC) VECT_VAR_DECL(expected_fp3, hfloat, 16, 4) [] = { 0x4000, 0x4000, 0x4000, 0x4000 }; VECT_VAR_DECL(expected_fp3, hfloat, 16, 8) [] = { 0x4000, 0x4000, 0x4000, 0x4000, 0x4000, 0x4000, 0x4000, 0x4000 }; #endif VECT_VAR_DECL(expected_fp3,hfloat,32,2) [] = { 0x40000000, 0x40000000 }; VECT_VAR_DECL(expected_fp3,hfloat,32,4) [] = { 0x40000000, 0x40000000, 0x40000000, 0x40000000 };
#define TEST_MSG "VRECPS/VRECPSQ" void exec_vrecps(void) { int i;
/* Basic test: y=vrecps(x), then store the result. */ #define TEST_VRECPS(Q, T1, T2, W, N) \ VECT_VAR(vector_res, T1, W, N) = \ vrecps##Q##_##T2##W(VECT_VAR(vector, T1, W, N), \ VECT_VAR(vector2, T1, W, N)); \ vst1##Q##_##T2##W(VECT_VAR(result, T1, W, N), \ VECT_VAR(vector_res, T1, W, N))
/* No need for integer variants. */ #if defined (__ARM_FEATURE_FP16_VECTOR_ARITHMETIC) DECL_VARIABLE(vector, float, 16, 4); DECL_VARIABLE(vector, float, 16, 8); #endif DECL_VARIABLE(vector, float, 32, 2); DECL_VARIABLE(vector, float, 32, 4);
#if defined (__ARM_FEATURE_FP16_VECTOR_ARITHMETIC) DECL_VARIABLE(vector2, float, 16, 4); DECL_VARIABLE(vector2, float, 16, 8); #endif DECL_VARIABLE(vector2, float, 32, 2); DECL_VARIABLE(vector2, float, 32, 4);
#if defined (__ARM_FEATURE_FP16_VECTOR_ARITHMETIC) DECL_VARIABLE(vector_res, float, 16, 4); DECL_VARIABLE(vector_res, float, 16, 8); #endif DECL_VARIABLE(vector_res, float, 32, 2); DECL_VARIABLE(vector_res, float, 32, 4);
clean_results ();
/* Choose init value arbitrarily. */ #if defined (__ARM_FEATURE_FP16_VECTOR_ARITHMETIC) VDUP(vector, , float, f, 16, 4, 12.9f); VDUP(vector, q, float, f, 16, 8, 9.2f); #endif VDUP(vector, , float, f, 32, 2, 12.9f); VDUP(vector, q, float, f, 32, 4, 9.2f);
#if defined (__ARM_FEATURE_FP16_VECTOR_ARITHMETIC) VDUP(vector2, , float, f, 16, 4, 8.9f); VDUP(vector2, q, float, f, 16, 8, 3.2f); #endif VDUP(vector2, , float, f, 32, 2, 8.9f); VDUP(vector2, q, float, f, 32, 4, 3.2f);
/* Apply the operator. */ #if defined (__ARM_FEATURE_FP16_VECTOR_ARITHMETIC) TEST_VRECPS(, float, f, 16, 4); TEST_VRECPS(q, float, f, 16, 8); #endif TEST_VRECPS(, float, f, 32, 2); TEST_VRECPS(q, float, f, 32, 4);
#define CMT " (positive input)" #if defined (__ARM_FEATURE_FP16_VECTOR_ARITHMETIC) CHECK_FP(TEST_MSG, float, 16, 4, PRIx16, expected, CMT); CHECK_FP(TEST_MSG, float, 16, 8, PRIx16, expected, CMT); #endif CHECK_FP(TEST_MSG, float, 32, 2, PRIx32, expected, CMT); CHECK_FP(TEST_MSG, float, 32, 4, PRIx32, expected, CMT);
/* Test FP variants with special input values (NaN). */ #if defined (__ARM_FEATURE_FP16_VECTOR_ARITHMETIC) VDUP(vector, , float, f, 16, 4, NAN); VDUP(vector2, q, float, f, 16, 8, NAN); #endif VDUP(vector, , float, f, 32, 2, NAN); VDUP(vector2, q, float, f, 32, 4, NAN);
/* Apply the operator. */ #if defined (__ARM_FEATURE_FP16_VECTOR_ARITHMETIC) TEST_VRECPS(, float, f, 16, 4); TEST_VRECPS(q, float, f, 16, 8); #endif TEST_VRECPS(, float, f, 32, 2); TEST_VRECPS(q, float, f, 32, 4);
#undef CMT #define CMT " FP special (NaN)" #if defined (__ARM_FEATURE_FP16_VECTOR_ARITHMETIC) CHECK_FP(TEST_MSG, float, 16, 4, PRIx16, expected_fp1, CMT); CHECK_FP(TEST_MSG, float, 16, 8, PRIx16, expected_fp1, CMT); #endif CHECK_FP(TEST_MSG, float, 32, 2, PRIx32, expected_fp1, CMT); CHECK_FP(TEST_MSG, float, 32, 4, PRIx32, expected_fp1, CMT);
/* Test FP variants with special input values (infinity, 0). */ #if defined (__ARM_FEATURE_FP16_VECTOR_ARITHMETIC) VDUP(vector, , float, f, 16, 4, HUGE_VALF); VDUP(vector, q, float, f, 16, 8, 0.0f); VDUP(vector2, q, float, f, 16, 8, 3.2f); /* Restore a normal value. */ #endif VDUP(vector, , float, f, 32, 2, HUGE_VALF); VDUP(vector, q, float, f, 32, 4, 0.0f); VDUP(vector2, q, float, f, 32, 4, 3.2f); /* Restore a normal value. */
/* Apply the operator. */ #if defined (__ARM_FEATURE_FP16_VECTOR_ARITHMETIC) TEST_VRECPS(, float, f, 16, 4); TEST_VRECPS(q, float, f, 16, 8); #endif TEST_VRECPS(, float, f, 32, 2); TEST_VRECPS(q, float, f, 32, 4);
#undef CMT #define CMT " FP special (infinity, 0) and normal value" #if defined (__ARM_FEATURE_FP16_VECTOR_ARITHMETIC) CHECK_FP(TEST_MSG, float, 16, 4, PRIx16, expected_fp2, CMT); CHECK_FP(TEST_MSG, float, 16, 8, PRIx16, expected_fp2, CMT); #endif CHECK_FP(TEST_MSG, float, 32, 2, PRIx32, expected_fp2, CMT); CHECK_FP(TEST_MSG, float, 32, 4, PRIx32, expected_fp2, CMT);
/* Test FP variants with only special input values (infinity, 0). */ #if defined (__ARM_FEATURE_FP16_VECTOR_ARITHMETIC) VDUP(vector, , float, f, 16, 4, HUGE_VALF); VDUP(vector, q, float, f, 16, 8, 0.0f); VDUP(vector2, , float, f, 16, 4, 0.0f); VDUP(vector2, q, float, f, 16, 8, HUGE_VALF); #endif VDUP(vector, , float, f, 32, 2, HUGE_VALF); VDUP(vector, q, float, f, 32, 4, 0.0f); VDUP(vector2, , float, f, 32, 2, 0.0f); VDUP(vector2, q, float, f, 32, 4, HUGE_VALF);
/* Apply the operator */ #if defined (__ARM_FEATURE_FP16_VECTOR_ARITHMETIC) TEST_VRECPS(, float, f, 16, 4); TEST_VRECPS(q, float, f, 16, 8); #endif TEST_VRECPS(, float, f, 32, 2); TEST_VRECPS(q, float, f, 32, 4);
#undef CMT #define CMT " FP special (infinity, 0)" #if defined (__ARM_FEATURE_FP16_VECTOR_ARITHMETIC) CHECK_FP(TEST_MSG, float, 16, 4, PRIx16, expected_fp3, CMT); CHECK_FP(TEST_MSG, float, 16, 8, PRIx16, expected_fp3, CMT); #endif CHECK_FP(TEST_MSG, float, 32, 2, PRIx32, expected_fp3, CMT); CHECK_FP(TEST_MSG, float, 32, 4, PRIx32, expected_fp3, CMT); }
int main (void) { exec_vrecps (); return 0; }
|