Coverage Report

Created: 2025-12-28 06:36

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/zlib-ng/arch/x86/adler32_sse42.c
Line
Count
Source
1
/* adler32_sse42.c -- compute the Adler-32 checksum of a data stream
2
 * Copyright (C) 1995-2011 Mark Adler
3
 * Authors:
4
 *   Adam Stylinski <kungfujesus06@gmail.com>
5
 *   Brian Bockelman <bockelman@gmail.com>
6
 * For conditions of distribution and use, see copyright notice in zlib.h
7
 */
8
9
#include "zbuild.h"
10
#include "adler32_p.h"
11
#include "adler32_ssse3_p.h"
12
#include <immintrin.h>
13
14
#ifdef X86_SSE42
15
16
0
Z_INTERNAL uint32_t adler32_copy_sse42(uint32_t adler, uint8_t *dst, const uint8_t *src, size_t len) {
17
0
    uint32_t adler0, adler1;
18
0
    adler1 = (adler >> 16) & 0xffff;
19
0
    adler0 = adler & 0xffff;
20
21
0
rem_peel:
22
0
    if (UNLIKELY(len < 16))
23
0
       return adler32_copy_len_16(adler0, dst, src, len, adler1, 1);
24
25
0
    __m128i vbuf, vbuf_0;
26
0
    __m128i vs1_0, vs3, vs1, vs2, vs2_0, v_sad_sum1, v_short_sum2, v_short_sum2_0,
27
0
            v_sad_sum2, vsum2, vsum2_0;
28
0
    __m128i zero = _mm_setzero_si128();
29
0
    const __m128i dot2v = _mm_setr_epi8(32, 31, 30, 29, 28, 27, 26, 25, 24, 23, 22, 21, 20, 19, 18, 17);
30
0
    const __m128i dot2v_0 = _mm_setr_epi8(16, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1);
31
0
    const __m128i dot3v = _mm_set1_epi16(1);
32
0
    size_t k;
33
34
0
    while (len >= 16) {
35
36
0
        k = MIN(len, NMAX);
37
0
        k -= k % 16;
38
0
        len -= k;
39
40
0
        vs1 = _mm_cvtsi32_si128(adler0);
41
0
        vs2 = _mm_cvtsi32_si128(adler1);
42
43
0
        vs3 = _mm_setzero_si128();
44
0
        vs2_0 = _mm_setzero_si128();
45
0
        vs1_0 = vs1;
46
47
0
        while (k >= 32) {
48
            /*
49
               vs1 = adler + sum(c[i])
50
               vs2 = sum2 + 16 vs1 + sum( (16-i+1) c[i] )
51
            */
52
0
            vbuf = _mm_loadu_si128((__m128i*)src);
53
0
            vbuf_0 = _mm_loadu_si128((__m128i*)(src + 16));
54
0
            src += 32;
55
0
            k -= 32;
56
57
0
            v_sad_sum1 = _mm_sad_epu8(vbuf, zero);
58
0
            v_sad_sum2 = _mm_sad_epu8(vbuf_0, zero);
59
0
            _mm_storeu_si128((__m128i*)dst, vbuf);
60
0
            _mm_storeu_si128((__m128i*)(dst + 16), vbuf_0);
61
0
            dst += 32;
62
63
0
            v_short_sum2 = _mm_maddubs_epi16(vbuf, dot2v);
64
0
            v_short_sum2_0 = _mm_maddubs_epi16(vbuf_0, dot2v_0);
65
66
0
            vs1 = _mm_add_epi32(v_sad_sum1, vs1);
67
0
            vs3 = _mm_add_epi32(vs1_0, vs3);
68
69
0
            vsum2 = _mm_madd_epi16(v_short_sum2, dot3v);
70
0
            vsum2_0 = _mm_madd_epi16(v_short_sum2_0, dot3v);
71
0
            vs1 = _mm_add_epi32(v_sad_sum2, vs1);
72
0
            vs2 = _mm_add_epi32(vsum2, vs2);
73
0
            vs2_0 = _mm_add_epi32(vsum2_0, vs2_0);
74
0
            vs1_0 = vs1;
75
0
        }
76
77
0
        vs2 = _mm_add_epi32(vs2_0, vs2);
78
0
        vs3 = _mm_slli_epi32(vs3, 5);
79
0
        vs2 = _mm_add_epi32(vs3, vs2);
80
0
        vs3 = _mm_setzero_si128();
81
82
0
        while (k >= 16) {
83
            /*
84
               vs1 = adler + sum(c[i])
85
               vs2 = sum2 + 16 vs1 + sum( (16-i+1) c[i] )
86
            */
87
0
            vbuf = _mm_loadu_si128((__m128i*)src);
88
0
            src += 16;
89
0
            k -= 16;
90
91
0
            v_sad_sum1 = _mm_sad_epu8(vbuf, zero);
92
0
            v_short_sum2 = _mm_maddubs_epi16(vbuf, dot2v_0);
93
94
0
            vs1 = _mm_add_epi32(v_sad_sum1, vs1);
95
0
            vs3 = _mm_add_epi32(vs1_0, vs3);
96
0
            vsum2 = _mm_madd_epi16(v_short_sum2, dot3v);
97
0
            vs2 = _mm_add_epi32(vsum2, vs2);
98
0
            vs1_0 = vs1;
99
100
0
            _mm_storeu_si128((__m128i*)dst, vbuf);
101
0
            dst += 16;
102
0
        }
103
104
0
        vs3 = _mm_slli_epi32(vs3, 4);
105
0
        vs2 = _mm_add_epi32(vs2, vs3);
106
107
0
        adler0 = partial_hsum(vs1) % BASE;
108
0
        adler1 = hsum(vs2) % BASE;
109
0
    }
110
111
    /* If this is true, there's fewer than 16 elements remaining */
112
0
    if (len) {
113
0
        goto rem_peel;
114
0
    }
115
116
0
    return adler0 | (adler1 << 16);
117
0
}
118
119
#endif