target/mips: Add tests for integer add MSA instruction group
[qemu/ar7.git] / tests / tcg / mips / user / ase / msa / int-add / test_msa_adds_u_b.c
blobdf5d85f2e97a2e4aaceb64e07d4348722c71a96e
1 /*
2 * Test program for MSA instruction ADDS_U.B
4 * Copyright (C) 2019 Wave Computing, Inc.
5 * Copyright (C) 2019 Mateja Marjanovic <mateja.marjanovic@rt-rk.com>
7 * This program is free software: you can redistribute it and/or modify
8 * it under the terms of the GNU General Public License as published by
9 * the Free Software Foundation, either version 2 of the License, or
10 * (at your option) any later version.
12 * This program is distributed in the hope that it will be useful,
13 * but WITHOUT ANY WARRANTY; without even the implied warranty of
14 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
15 * GNU General Public License for more details.
17 * You should have received a copy of the GNU General Public License
18 * along with this program. If not, see <https://www.gnu.org/licenses/>.
22 #include <sys/time.h>
23 #include <stdint.h>
25 #include "../../../../include/wrappers_msa.h"
26 #include "../../../../include/test_inputs.h"
27 #include "../../../../include/test_utils.h"
29 #define TEST_COUNT_TOTAL ( \
30 (PATTERN_INPUTS_SHORT_COUNT) * (PATTERN_INPUTS_SHORT_COUNT) + \
31 (RANDOM_INPUTS_SHORT_COUNT) * (RANDOM_INPUTS_SHORT_COUNT))
34 int32_t main(void)
36 char *instruction_name = "ADDS_U.B";
37 int32_t ret;
38 uint32_t i, j;
39 struct timeval start, end;
40 double elapsed_time;
42 uint64_t b128_result[TEST_COUNT_TOTAL][2];
43 uint64_t b128_expect[TEST_COUNT_TOTAL][2] = {
44 { 0xffffffffffffffffULL, 0xffffffffffffffffULL, }, /* 0 */
45 { 0xffffffffffffffffULL, 0xffffffffffffffffULL, },
46 { 0xffffffffffffffffULL, 0xffffffffffffffffULL, },
47 { 0xffffffffffffffffULL, 0xffffffffffffffffULL, },
48 { 0xffffffffffffffffULL, 0xffffffffffffffffULL, },
49 { 0xffffffffffffffffULL, 0xffffffffffffffffULL, },
50 { 0xffffffffffffffffULL, 0xffffffffffffffffULL, },
51 { 0xffffffffffffffffULL, 0xffffffffffffffffULL, },
52 { 0xffffffffffffffffULL, 0xffffffffffffffffULL, }, /* 8 */
53 { 0x0000000000000000ULL, 0x0000000000000000ULL, },
54 { 0xaaaaaaaaaaaaaaaaULL, 0xaaaaaaaaaaaaaaaaULL, },
55 { 0x5555555555555555ULL, 0x5555555555555555ULL, },
56 { 0xccccccccccccccccULL, 0xccccccccccccccccULL, },
57 { 0x3333333333333333ULL, 0x3333333333333333ULL, },
58 { 0xe38e38e38e38e38eULL, 0x38e38e38e38e38e3ULL, },
59 { 0x1c71c71c71c71c71ULL, 0xc71c71c71c71c71cULL, },
60 { 0xffffffffffffffffULL, 0xffffffffffffffffULL, }, /* 16 */
61 { 0xaaaaaaaaaaaaaaaaULL, 0xaaaaaaaaaaaaaaaaULL, },
62 { 0xffffffffffffffffULL, 0xffffffffffffffffULL, },
63 { 0xffffffffffffffffULL, 0xffffffffffffffffULL, },
64 { 0xffffffffffffffffULL, 0xffffffffffffffffULL, },
65 { 0xddddddddddddddddULL, 0xddddddddddddddddULL, },
66 { 0xffffe2ffffe2ffffULL, 0xe2ffffe2ffffe2ffULL, },
67 { 0xc6ffffc6ffffc6ffULL, 0xffc6ffffc6ffffc6ULL, },
68 { 0xffffffffffffffffULL, 0xffffffffffffffffULL, }, /* 24 */
69 { 0x5555555555555555ULL, 0x5555555555555555ULL, },
70 { 0xffffffffffffffffULL, 0xffffffffffffffffULL, },
71 { 0xaaaaaaaaaaaaaaaaULL, 0xaaaaaaaaaaaaaaaaULL, },
72 { 0xffffffffffffffffULL, 0xffffffffffffffffULL, },
73 { 0x8888888888888888ULL, 0x8888888888888888ULL, },
74 { 0xffe38dffe38dffe3ULL, 0x8dffe38dffe38dffULL, },
75 { 0x71c6ff71c6ff71c6ULL, 0xff71c6ff71c6ff71ULL, },
76 { 0xffffffffffffffffULL, 0xffffffffffffffffULL, }, /* 32 */
77 { 0xccccccccccccccccULL, 0xccccccccccccccccULL, },
78 { 0xffffffffffffffffULL, 0xffffffffffffffffULL, },
79 { 0xffffffffffffffffULL, 0xffffffffffffffffULL, },
80 { 0xffffffffffffffffULL, 0xffffffffffffffffULL, },
81 { 0xffffffffffffffffULL, 0xffffffffffffffffULL, },
82 { 0xffffffffffffffffULL, 0xffffffffffffffffULL, },
83 { 0xe8ffffe8ffffe8ffULL, 0xffe8ffffe8ffffe8ULL, },
84 { 0xffffffffffffffffULL, 0xffffffffffffffffULL, }, /* 40 */
85 { 0x3333333333333333ULL, 0x3333333333333333ULL, },
86 { 0xddddddddddddddddULL, 0xddddddddddddddddULL, },
87 { 0x8888888888888888ULL, 0x8888888888888888ULL, },
88 { 0xffffffffffffffffULL, 0xffffffffffffffffULL, },
89 { 0x6666666666666666ULL, 0x6666666666666666ULL, },
90 { 0xffc16bffc16bffc1ULL, 0x6bffc16bffc16bffULL, },
91 { 0x4fa4fa4fa4fa4fa4ULL, 0xfa4fa4fa4fa4fa4fULL, },
92 { 0xffffffffffffffffULL, 0xffffffffffffffffULL, }, /* 48 */
93 { 0xe38e38e38e38e38eULL, 0x38e38e38e38e38e3ULL, },
94 { 0xffffe2ffffe2ffffULL, 0xe2ffffe2ffffe2ffULL, },
95 { 0xffe38dffe38dffe3ULL, 0x8dffe38dffe38dffULL, },
96 { 0xffffffffffffffffULL, 0xffffffffffffffffULL, },
97 { 0xffc16bffc16bffc1ULL, 0x6bffc16bffc16bffULL, },
98 { 0xffff70ffff70ffffULL, 0x70ffff70ffff70ffULL, },
99 { 0xffffffffffffffffULL, 0xffffffffffffffffULL, },
100 { 0xffffffffffffffffULL, 0xffffffffffffffffULL, }, /* 56 */
101 { 0x1c71c71c71c71c71ULL, 0xc71c71c71c71c71cULL, },
102 { 0xc6ffffc6ffffc6ffULL, 0xffc6ffffc6ffffc6ULL, },
103 { 0x71c6ff71c6ff71c6ULL, 0xff71c6ff71c6ff71ULL, },
104 { 0xe8ffffe8ffffe8ffULL, 0xffe8ffffe8ffffe8ULL, },
105 { 0x4fa4fa4fa4fa4fa4ULL, 0xfa4fa4fa4fa4fa4fULL, },
106 { 0xffffffffffffffffULL, 0xffffffffffffffffULL, },
107 { 0x38e2ff38e2ff38e2ULL, 0xff38e2ff38e2ff38ULL, },
108 { 0xffd4ffff50c4aa80ULL, 0x96ce16bcfff6ff18ULL, }, /* 64 */
109 { 0xffffe6ff75f5ff48ULL, 0x5dffc678ffbaffffULL, },
110 { 0xffc4ffffe1ffe0c0ULL, 0x72ffd1ffffa6d520ULL, },
111 { 0xf8b9fcff8693ff8eULL, 0xd8ff93ffffbdffacULL, },
112 { 0xffffe6ff75f5ff48ULL, 0x5dffc678ffbaffffULL, },
113 { 0xffff00c69affff10ULL, 0x24ffff342a7ea4ffULL, },
114 { 0xffffaeffffffff88ULL, 0x39ffffffc06a77ffULL, },
115 { 0xffff16b0abc4ff56ULL, 0x9ffffff2be81ffffULL, },
116 { 0xffc4ffffe1ffe0c0ULL, 0x72ffd1ffffa6d520ULL, }, /* 72 */
117 { 0xffffaeffffffff88ULL, 0x39ffffffc06a77ffULL, },
118 { 0xffb4ffffffffffffULL, 0x4effffffff564a28ULL, },
119 { 0xffa9c4f7ffffffceULL, 0xb4ffffffff6dffb4ULL, },
120 { 0xf8b9fcff8693ff8eULL, 0xd8ff93ffffbdffacULL, },
121 { 0xffff16b0abc4ff56ULL, 0x9ffffff2be81ffffULL, },
124 gettimeofday(&start, NULL);
126 for (i = 0; i < PATTERN_INPUTS_SHORT_COUNT; i++) {
127 for (j = 0; j < PATTERN_INPUTS_SHORT_COUNT; j++) {
128 do_msa_ADDS_U_B(b128_pattern[i], b128_pattern[j],
129 b128_result[PATTERN_INPUTS_SHORT_COUNT * i + j]);
133 for (i = 0; i < RANDOM_INPUTS_SHORT_COUNT; i++) {
134 for (j = 0; j < RANDOM_INPUTS_SHORT_COUNT; j++) {
135 do_msa_ADDS_U_B(b128_random[i], b128_random[j],
136 b128_result[((PATTERN_INPUTS_SHORT_COUNT) *
137 (PATTERN_INPUTS_SHORT_COUNT)) +
138 RANDOM_INPUTS_SHORT_COUNT * i + j]);
142 gettimeofday(&end, NULL);
144 elapsed_time = (end.tv_sec - start.tv_sec) * 1000.0;
145 elapsed_time += (end.tv_usec - start.tv_usec) / 1000.0;
147 ret = check_results(instruction_name, TEST_COUNT_TOTAL, elapsed_time,
148 &b128_result[0][0], &b128_expect[0][0]);
150 return ret;