File: benchmark_ssse3.cpp

package info (click to toggle)
emscripten 2.0.12~dfsg-2
  • links: PTS, VCS
  • area: main
  • in suites: bullseye
  • size: 108,440 kB
  • sloc: ansic: 510,324; cpp: 384,763; javascript: 84,341; python: 51,362; sh: 50,019; pascal: 4,159; makefile: 3,409; asm: 2,150; lisp: 1,869; ruby: 488; cs: 142
file content (64 lines) | stat: -rw-r--r-- 3,104 bytes parent folder | download | duplicates (2)
1
2
3
4
5
6
7
8
9
10
11
12
13
14
15
16
17
18
19
20
21
22
23
24
25
26
27
28
29
30
31
32
33
34
35
36
37
38
39
40
41
42
43
44
45
46
47
48
49
50
51
52
53
54
55
56
57
58
59
60
61
62
63
64
/*
 * Copyright 2020 The Emscripten Authors.  All rights reserved.
 * Emscripten is available under two separate licenses, the MIT license and the
 * University of Illinois/NCSA Open Source License.  Both these licenses can be
 * found in the LICENSE file.
 */
#include <tmmintrin.h>
#include "benchmark_sse.h"

int main()
{
	printf ("{ \"workload\": %u, \"results\": [\n", N);

	float *src_flt = alloc_float_buffer();
	float *src2_flt = alloc_float_buffer();
	float *dst_flt = alloc_float_buffer();
	for(int i = 0; i < N; ++i) src_flt[i] = (float)(1.0 + (double)rand() / RAND_MAX);
	for(int i = 0; i < N; ++i) src2_flt[i] = (float)(1.0 + (double)rand() / RAND_MAX);

	double *src_dbl = alloc_double_buffer();
	double *src2_dbl = alloc_double_buffer();
	double *dst_dbl = alloc_double_buffer();
	for(int i = 0; i < N; ++i) src_dbl[i] = 1.0 + (double)rand() / RAND_MAX;
	for(int i = 0; i < N; ++i) src2_dbl[i] = 1.0 + (double)rand() / RAND_MAX;

	int *src_int = alloc_int_buffer();
	int *src2_int = alloc_int_buffer();
	int *dst_int = alloc_int_buffer();
	for(int i = 0; i < N; ++i) src_int[i] = rand();
	for(int i = 0; i < N; ++i) src2_int[i] = rand();

	float scalarTime = 0.f;

	// Benchmarks start:
	SETCHART("abs");
	UNARYOP_I_I("_mm_abs_epi8", _mm_abs_epi8, _mm_load_si128((__m128i*)src_int));
	UNARYOP_I_I("_mm_abs_epi16", _mm_abs_epi16, _mm_load_si128((__m128i*)src_int));
	UNARYOP_I_I("_mm_abs_epi32", _mm_abs_epi32, _mm_load_si128((__m128i*)src_int));

	// TODO _mm_alignr_epi8

	SETCHART("horizontal add");
	BINARYOP_I_II("_mm_hadd_epi16", _mm_hadd_epi16, _mm_load_si128((__m128i*)src_int), _mm_load_si128((__m128i*)src2_int));
	BINARYOP_I_II("_mm_hadd_epi32", _mm_hadd_epi32, _mm_load_si128((__m128i*)src_int), _mm_load_si128((__m128i*)src2_int));
	BINARYOP_I_II("_mm_hadds_epi16", _mm_hadds_epi16, _mm_load_si128((__m128i*)src_int), _mm_load_si128((__m128i*)src2_int));

	SETCHART("horizontal sub");
	BINARYOP_I_II("_mm_hsub_epi16", _mm_hsub_epi16, _mm_load_si128((__m128i*)src_int), _mm_load_si128((__m128i*)src2_int));
	BINARYOP_I_II("_mm_hsub_epi32", _mm_hsub_epi32, _mm_load_si128((__m128i*)src_int), _mm_load_si128((__m128i*)src2_int));
	BINARYOP_I_II("_mm_hsubs_epi16", _mm_hsubs_epi16, _mm_load_si128((__m128i*)src_int), _mm_load_si128((__m128i*)src2_int));

	SETCHART("mul & shuffle");
	BINARYOP_I_II("_mm_maddubs_epi16", _mm_maddubs_epi16, _mm_load_si128((__m128i*)src_int), _mm_load_si128((__m128i*)src2_int));
	BINARYOP_I_II("_mm_mulhrs_epi16", _mm_mulhrs_epi16, _mm_load_si128((__m128i*)src_int), _mm_load_si128((__m128i*)src2_int));
	BINARYOP_I_II("_mm_shuffle_epi8", _mm_shuffle_epi8, _mm_load_si128((__m128i*)src_int), _mm_load_si128((__m128i*)src2_int));

	SETCHART("sign");
	BINARYOP_I_II("_mm_sign_epi8", _mm_sign_epi8, _mm_load_si128((__m128i*)src_int), _mm_load_si128((__m128i*)src2_int));
	BINARYOP_I_II("_mm_sign_epi16", _mm_sign_epi16, _mm_load_si128((__m128i*)src_int), _mm_load_si128((__m128i*)src2_int));
	BINARYOP_I_II("_mm_sign_epi32", _mm_sign_epi32, _mm_load_si128((__m128i*)src_int), _mm_load_si128((__m128i*)src2_int));

	// Benchmarks end:
	printf("]}\n");
}