Mercurial > vec
annotate test/test_arith.h @ 4:75ab77f874e2
*: aligned generics, fixed altivec, aligned tests...
author | Paper <paper@tflc.us> |
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date | Wed, 23 Oct 2024 10:13:25 -0400 |
parents | 3c5545b1568f |
children | 945d410803f8 6ff0b7a44bb6 |
rev | line source |
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4
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1 #define CREATE_TEST(sign, psign, csign, bits, size, op, equiv) \ |
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2 static int test_arith_v##sign##int##bits##x##size##_##op(v##sign##int##bits##x##size a, v##sign##int##bits##x##size b) \ |
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3 { \ |
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4 V##csign##INT##bits##x##size##_ALIGNED_ARRAY(orig_a); \ |
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5 V##csign##INT##bits##x##size##_ALIGNED_ARRAY(orig_b); \ |
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6 V##csign##INT##bits##x##size##_ALIGNED_ARRAY(orig_c); \ |
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7 \ |
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8 v##sign##int##bits##x##size c = v##sign##int##bits##x##size##_##op(a, b); \ |
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9 \ |
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10 v##sign##int##bits##x##size##_store_aligned(a, orig_a); \ |
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11 v##sign##int##bits##x##size##_store_aligned(b, orig_b); \ |
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12 v##sign##int##bits##x##size##_store_aligned(c, orig_c); \ |
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13 \ |
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14 for (int i = 0; i < size; i++) { \ |
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15 if ((sign##int##bits##_t)(equiv) != orig_c[i]) { \ |
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16 fprintf(stderr, "v" #sign "int" #bits "x" #size "_" #op " test FAILED at index %d: (" #equiv ") [%" PRI ## psign ## bits "] does not equal result [%" PRI ## psign ## bits "]!\n", i, equiv, orig_c[i]); \ |
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17 print_v##sign##int##bits##x##size(stderr,a); \ |
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18 print_v##sign##int##bits##x##size(stderr,b); \ |
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19 print_v##sign##int##bits##x##size(stderr,c); \ |
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20 fprintf(stderr, "\n"); \ |
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21 return 1; \ |
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22 } \ |
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23 } \ |
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24 \ |
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25 return 0; \ |
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26 } |
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28 #define CREATE_TEST_SHIFT(sign, psign, csign, bits, size, op, equiv) \ |
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29 static int test_arith_v##sign##int##bits##x##size##_##op(v##sign##int##bits##x##size a, vuint##bits##x##size b) \ |
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30 { \ |
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31 V##csign##INT##bits##x##size##_ALIGNED_ARRAY(orig_a); \ |
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32 VUINT##bits##x##size##_ALIGNED_ARRAY(orig_b); \ |
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33 V##csign##INT##bits##x##size##_ALIGNED_ARRAY(orig_c); \ |
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34 \ |
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35 v##sign##int##bits##x##size c = v##sign##int##bits##x##size##_##op(a, b); \ |
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36 \ |
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37 v##sign##int##bits##x##size##_store_aligned(a, orig_a); \ |
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38 vuint##bits##x##size##_store_aligned(b, orig_b); \ |
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39 v##sign##int##bits##x##size##_store_aligned(c, orig_c); \ |
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40 \ |
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41 for (int i = 0; i < size; i++) { \ |
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42 if ((sign##int##bits##_t)(equiv) != orig_c[i]) { \ |
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43 fprintf(stderr, "v" #sign "int" #bits "x" #size "_" #op " test FAILED at index %d: (" #equiv ") [%" PRI ## psign ## bits "] does not equal result [%" PRI ## psign ## bits "]!\n", i, equiv, orig_c[i]); \ |
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44 print_v##sign##int##bits##x##size(stderr,a); \ |
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45 print_vuint##bits##x##size(stderr,b); \ |
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46 print_v##sign##int##bits##x##size(stderr,c); \ |
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47 fprintf(stderr, "\n"); \ |
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48 return 1; \ |
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49 } \ |
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50 } \ |
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51 \ |
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52 return 0; \ |
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53 } |
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54 |
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55 #define CREATE_TESTS(sign, psign, csign, bits, size) \ |
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56 CREATE_TEST(sign, psign, csign, bits, size, add, orig_a[i] + orig_b[i]) \ |
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57 CREATE_TEST(sign, psign, csign, bits, size, sub, orig_a[i] - orig_b[i]) \ |
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58 CREATE_TEST(sign, psign, csign, bits, size, mul, orig_a[i] * orig_b[i]) \ |
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59 CREATE_TEST(sign, psign, csign, bits, size, div, (orig_b[i]) ? (orig_a[i] / orig_b[i]) : 0) \ |
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60 CREATE_TEST(sign, psign, csign, bits, size, and, orig_a[i] & orig_b[i]) \ |
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61 CREATE_TEST(sign, psign, csign, bits, size, or, orig_a[i] | orig_b[i]) \ |
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62 CREATE_TEST(sign, psign, csign, bits, size, xor, orig_a[i] ^ orig_b[i]) \ |
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63 CREATE_TEST(sign, psign, csign, bits, size, avg, (orig_a[i] * orig_b[i]) / 2) \ |
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64 CREATE_TEST_SHIFT(sign, psign, csign, bits, size, rshift, vec_##sign##rshift(orig_a[i], orig_b[i])) \ |
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65 CREATE_TEST_SHIFT(sign, psign, csign, bits, size, lshift, vec_##sign##lshift(orig_a[i], orig_b[i])) \ |
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66 CREATE_TEST_SHIFT(sign, psign, csign, bits, size, lrshift, vec_##sign##lrshift(orig_a[i], orig_b[i])) |
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67 |
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68 #define CREATE_TESTS_2(bits, size) \ |
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69 CREATE_TESTS(, d, , bits, size) \ |
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70 CREATE_TESTS(u, u, U, bits, size) |
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71 |
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72 CREATE_TESTS_2(8, 16) |
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73 CREATE_TESTS_2(16, 8) |
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74 CREATE_TESTS_2(32, 4) |
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75 CREATE_TESTS_2(64, 2) |
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76 |
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77 #undef CREATE_TESTS_2 |
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78 #undef CREATE_TESTS |
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79 #undef CREATE_TEST |
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80 |
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81 static int test_arith(void) |
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82 { |
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83 int ret = 0; |
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84 |
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85 #define RUN_TESTS(sign, bits, size) \ |
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86 for (size_t i = 0U; i < ARRAY_SIZE(testval##sign##bits); i++) { \ |
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87 const v##sign##int##bits##x##size a = vtest##sign##bits##x##size(i); \ |
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88 for (size_t j = 0U; j < ARRAY_SIZE(testval##sign##bits); j++) { \ |
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89 const v##sign##int##bits##x##size b = vtest##sign##bits##x##size(j); \ |
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90 ret |= test_arith_v##sign##int##bits##x##size##_add(a, b); \ |
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91 ret |= test_arith_v##sign##int##bits##x##size##_sub(a, b); \ |
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92 ret |= test_arith_v##sign##int##bits##x##size##_mul(a, b); \ |
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93 ret |= test_arith_v##sign##int##bits##x##size##_div(a, b); \ |
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94 ret |= test_arith_v##sign##int##bits##x##size##_and(a, b); \ |
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95 ret |= test_arith_v##sign##int##bits##x##size##_or(a, b); \ |
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96 ret |= test_arith_v##sign##int##bits##x##size##_xor(a, b); \ |
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97 } \ |
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98 } \ |
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99 \ |
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100 for (size_t i = 0U; i < ARRAY_SIZE(testval##sign##bits); i++) { \ |
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101 const v##sign##int##bits##x##size a = vtest##sign##bits##x##size(i); \ |
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102 for (uint32_t j = 0U; j < bits; j++) { \ |
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103 const vuint##bits##x##size b = vuint##bits##x##size##_splat(j); \ |
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104 ret |= test_arith_v##sign##int##bits##x##size##_rshift(a, b); \ |
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105 ret |= test_arith_v##sign##int##bits##x##size##_lshift(a, b); \ |
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106 ret |= test_arith_v##sign##int##bits##x##size##_lrshift(a, b); \ |
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107 } \ |
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108 } |
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109 |
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110 #define RUN_TESTS_2(bits, size) \ |
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111 RUN_TESTS( , bits, size) \ |
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112 RUN_TESTS(u, bits, size) |
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113 |
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114 RUN_TESTS_2(8, 16) |
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115 RUN_TESTS_2(16, 8) |
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116 RUN_TESTS_2(32, 4) |
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117 RUN_TESTS_2(64, 2) |
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118 |
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119 #undef RUN_TESTS_2 |
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120 #undef RUN_TESTS |
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121 |
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122 return ret; |
3
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123 } |