Coverage Report

Created: 2026-08-31 06:47

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/zlib-ng/adler32_p.h
Line
Count
Source
1
/* adler32_p.h -- Private inline functions and macros shared with
2
 *                different computation of the Adler-32 checksum
3
 *                of a data stream.
4
 * Copyright (C) 1995-2011, 2016 Mark Adler
5
 * For conditions of distribution and use, see copyright notice in zlib.h
6
 */
7
8
#ifndef ADLER32_P_H
9
#define ADLER32_P_H
10
11
#include "zendian.h"
12
13
807k
#define BASE 65521U     /* largest prime smaller than 65536 */
14
20.7k
#define NMAX 5552
15
/* NMAX is the largest n such that 255n(n+1)/2 + (n+1)(BASE-1) <= 2^32-1 */
16
#define NMAX_ALIGNED32 (NMAX & ~31)
17
/* NMAX rounded down to a multiple of 32 is 5536 */
18
19
167k
#define ADLER_DO1(sum1, sum2, buf, i)  {(sum1) += buf[(i)]; (sum2) += (sum1);}
20
71.9k
#define ADLER_DO2(sum1, sum2, buf, i)  {ADLER_DO1(sum1, sum2, buf, i); ADLER_DO1(sum1, sum2, buf, i+1);}
21
23.8k
#define ADLER_DO4(sum1, sum2, buf, i)  {ADLER_DO2(sum1, sum2, buf, i); ADLER_DO2(sum1, sum2, buf, i+2);}
22
#define ADLER_DO8(sum1, sum2, buf, i)  {ADLER_DO4(sum1, sum2, buf, i); ADLER_DO4(sum1, sum2, buf, i+4);}
23
#define ADLER_DO16(sum1, sum2, buf)    {ADLER_DO8(sum1, sum2, buf, 0); ADLER_DO8(sum1, sum2, buf, 8);}
24
25
Z_FORCEINLINE static void adler32_copy_align(uint32_t *Z_RESTRICT adler, uint8_t *dst, const uint8_t *buf, size_t len,
26
0
                                             uint32_t *Z_RESTRICT sum2, const int MAX_LEN, const int COPY) {
27
0
    Z_UNUSED(MAX_LEN);
28
0
    if (len & 1) {
29
0
        if (COPY) {
30
0
            *dst = *buf;
31
0
            dst += 1;
32
0
        }
33
0
        ADLER_DO1(*adler, *sum2, buf, 0);
34
0
        buf += 1;
35
0
    }
36
0
    if (len & 2) {
37
0
        if (COPY) {
38
0
            memcpy(dst, buf, 2);
39
0
            dst += 2;
40
0
        }
41
0
        ADLER_DO2(*adler, *sum2, buf, 0);
42
0
        buf += 2;
43
0
    }
44
0
    while (len >= 4) {
45
0
        if (COPY) {
46
0
            memcpy(dst, buf, 4);
47
0
            dst += 4;
48
0
        }
49
0
        len -= 4;
50
0
        ADLER_DO4(*adler, *sum2, buf, 0);
51
0
        buf += 4;
52
0
    }
53
0
}
Unexecuted instantiation: adler32_ssse3.c:adler32_copy_align
Unexecuted instantiation: adler32_sse42.c:adler32_copy_align
Unexecuted instantiation: adler32_avx2.c:adler32_copy_align
Unexecuted instantiation: adler32_avx2_vnni.c:adler32_copy_align
Unexecuted instantiation: adler32_avx512.c:adler32_copy_align
Unexecuted instantiation: adler32_avx512_vnni.c:adler32_copy_align
Unexecuted instantiation: adler32_c.c:adler32_copy_align
54
55
/* SIMD Within A Register (SWAR) scalar adler32. Splits bytes into
56
 * even/odd lanes packed as 4x16-bit in uint64_t, with prefix sums for s2.
57
 * Reduction uses multiply-and-shift with positional weight constants.
58
 *
59
 * Technique pioneered by Michael Niedermayer <michaelni@gmx.at>.
60
 * Max chunk: 23 iterations * 8 bytes = 184 (255*23 = 5865 < 65535). */
61
#define ADLER32_SWAR_MAX_BYTES   (23 * 8)
62
46.3k
#define ADLER32_SWAR_EVEN_MASK   0x00FF00FF00FF00FFULL
63
46.3k
#define ADLER32_SWAR_HSUM        0x1000100010001ULL
64
65
Z_FORCEINLINE static void adler32_swar(uint32_t *adler, uint8_t *dst, const uint8_t *buf, size_t len,
66
23.1k
                                       uint32_t *sum2, const int COPY) {
67
23.1k
    uint64_t sum_even = 0, sum_odd = 0, prefix_even = 0, prefix_odd = 0;
68
69
23.1k
    *sum2 += *adler * (uint32_t)len;
70
71
23.1k
    const uint64_t *src64 = (const uint64_t *)buf;
72
73
23.1k
    while (len >= 16) {
74
0
        uint64_t v0 = src64[0];
75
0
        uint64_t v1 = src64[1];
76
0
        if (COPY) {
77
0
            memcpy(dst, &v0, sizeof(v0));
78
0
            memcpy(dst + 8, &v1, sizeof(v1));
79
0
            dst += 16;
80
0
        }
81
82
0
        prefix_even += sum_even;
83
0
        prefix_odd += sum_odd;
84
0
        sum_even +=  v0       & ADLER32_SWAR_EVEN_MASK;
85
0
        sum_odd  += (v0 >> 8) & ADLER32_SWAR_EVEN_MASK;
86
87
0
        prefix_even += sum_even;
88
0
        prefix_odd += sum_odd;
89
0
        sum_even +=  v1       & ADLER32_SWAR_EVEN_MASK;
90
0
        sum_odd  += (v1 >> 8) & ADLER32_SWAR_EVEN_MASK;
91
92
0
        src64 += 2;
93
0
        len -= 16;
94
0
    }
95
96
    /* Handle remaining 8 bytes if present */
97
23.1k
    if (len >= 8) {
98
23.1k
        uint64_t v = *src64;
99
23.1k
        if (COPY)
100
11.7k
            memcpy(dst, &v, sizeof(v));
101
102
23.1k
        prefix_even += sum_even;
103
23.1k
        prefix_odd += sum_odd;
104
23.1k
        sum_even +=  v       & ADLER32_SWAR_EVEN_MASK;
105
23.1k
        sum_odd  += (v >> 8) & ADLER32_SWAR_EVEN_MASK;
106
23.1k
    }
107
108
    /* Horizontal sum of 4x16-bit lanes for s1 */
109
23.1k
    *adler += (uint32_t)(((sum_even + sum_odd) * ADLER32_SWAR_HSUM) >> 48);
110
111
    /* Widen prefix sums to 32-bit pairs and horizontal sum for s2 */
112
23.1k
    uint64_t pe_lo = prefix_even & 0xFFFF0000FFFFULL;
113
23.1k
    uint64_t pe_hi = (prefix_even >> 16) & 0xFFFF0000FFFFULL;
114
23.1k
    uint64_t po_lo = prefix_odd & 0xFFFF0000FFFFULL;
115
23.1k
    uint64_t po_hi = (prefix_odd >> 16) & 0xFFFF0000FFFFULL;
116
117
23.1k
    *sum2 += (uint32_t)(((pe_lo + po_lo + pe_hi + po_hi) * 0x800000008ULL) >> 32);
118
119
    /* Positional weights [8,7,6,5,4,3,2,1] per 8-byte group for s2.
120
     * On big-endian the even mask captures odd-index memory bytes (b1,b3,b5,b7)
121
     * so HSUM (+1 per odd-index byte) must be applied to sum_even, not sum_odd. */
122
23.1k
#if BYTE_ORDER == LITTLE_ENDIAN
123
23.1k
    *sum2 += 2 * (uint32_t)((sum_even * 0x4000300020001ULL) >> 48)
124
23.1k
           +     (uint32_t)((sum_odd  * ADLER32_SWAR_HSUM) >> 48)
125
23.1k
           + 2 * (uint32_t)((sum_odd  * 0x3000200010000ULL) >> 48);
126
#else
127
    *sum2 += 2 * (uint32_t)((sum_even * 0x0000100020003ULL) >> 48)
128
           +     (uint32_t)((sum_even * ADLER32_SWAR_HSUM) >> 48)
129
           + 2 * (uint32_t)((sum_odd  * 0x1000200030004ULL) >> 48);
130
#endif
131
23.1k
}
adler32_ssse3.c:adler32_swar
Line
Count
Source
66
5.24k
                                       uint32_t *sum2, const int COPY) {
67
5.24k
    uint64_t sum_even = 0, sum_odd = 0, prefix_even = 0, prefix_odd = 0;
68
69
5.24k
    *sum2 += *adler * (uint32_t)len;
70
71
5.24k
    const uint64_t *src64 = (const uint64_t *)buf;
72
73
5.24k
    while (len >= 16) {
74
0
        uint64_t v0 = src64[0];
75
0
        uint64_t v1 = src64[1];
76
0
        if (COPY) {
77
0
            memcpy(dst, &v0, sizeof(v0));
78
0
            memcpy(dst + 8, &v1, sizeof(v1));
79
0
            dst += 16;
80
0
        }
81
82
0
        prefix_even += sum_even;
83
0
        prefix_odd += sum_odd;
84
0
        sum_even +=  v0       & ADLER32_SWAR_EVEN_MASK;
85
0
        sum_odd  += (v0 >> 8) & ADLER32_SWAR_EVEN_MASK;
86
87
0
        prefix_even += sum_even;
88
0
        prefix_odd += sum_odd;
89
0
        sum_even +=  v1       & ADLER32_SWAR_EVEN_MASK;
90
0
        sum_odd  += (v1 >> 8) & ADLER32_SWAR_EVEN_MASK;
91
92
0
        src64 += 2;
93
0
        len -= 16;
94
0
    }
95
96
    /* Handle remaining 8 bytes if present */
97
5.24k
    if (len >= 8) {
98
5.24k
        uint64_t v = *src64;
99
5.24k
        if (COPY)
100
0
            memcpy(dst, &v, sizeof(v));
101
102
5.24k
        prefix_even += sum_even;
103
5.24k
        prefix_odd += sum_odd;
104
5.24k
        sum_even +=  v       & ADLER32_SWAR_EVEN_MASK;
105
5.24k
        sum_odd  += (v >> 8) & ADLER32_SWAR_EVEN_MASK;
106
5.24k
    }
107
108
    /* Horizontal sum of 4x16-bit lanes for s1 */
109
5.24k
    *adler += (uint32_t)(((sum_even + sum_odd) * ADLER32_SWAR_HSUM) >> 48);
110
111
    /* Widen prefix sums to 32-bit pairs and horizontal sum for s2 */
112
5.24k
    uint64_t pe_lo = prefix_even & 0xFFFF0000FFFFULL;
113
5.24k
    uint64_t pe_hi = (prefix_even >> 16) & 0xFFFF0000FFFFULL;
114
5.24k
    uint64_t po_lo = prefix_odd & 0xFFFF0000FFFFULL;
115
5.24k
    uint64_t po_hi = (prefix_odd >> 16) & 0xFFFF0000FFFFULL;
116
117
5.24k
    *sum2 += (uint32_t)(((pe_lo + po_lo + pe_hi + po_hi) * 0x800000008ULL) >> 32);
118
119
    /* Positional weights [8,7,6,5,4,3,2,1] per 8-byte group for s2.
120
     * On big-endian the even mask captures odd-index memory bytes (b1,b3,b5,b7)
121
     * so HSUM (+1 per odd-index byte) must be applied to sum_even, not sum_odd. */
122
5.24k
#if BYTE_ORDER == LITTLE_ENDIAN
123
5.24k
    *sum2 += 2 * (uint32_t)((sum_even * 0x4000300020001ULL) >> 48)
124
5.24k
           +     (uint32_t)((sum_odd  * ADLER32_SWAR_HSUM) >> 48)
125
5.24k
           + 2 * (uint32_t)((sum_odd  * 0x3000200010000ULL) >> 48);
126
#else
127
    *sum2 += 2 * (uint32_t)((sum_even * 0x0000100020003ULL) >> 48)
128
           +     (uint32_t)((sum_even * ADLER32_SWAR_HSUM) >> 48)
129
           + 2 * (uint32_t)((sum_odd  * 0x1000200030004ULL) >> 48);
130
#endif
131
5.24k
}
adler32_sse42.c:adler32_swar
Line
Count
Source
66
5.34k
                                       uint32_t *sum2, const int COPY) {
67
5.34k
    uint64_t sum_even = 0, sum_odd = 0, prefix_even = 0, prefix_odd = 0;
68
69
5.34k
    *sum2 += *adler * (uint32_t)len;
70
71
5.34k
    const uint64_t *src64 = (const uint64_t *)buf;
72
73
5.34k
    while (len >= 16) {
74
0
        uint64_t v0 = src64[0];
75
0
        uint64_t v1 = src64[1];
76
0
        if (COPY) {
77
0
            memcpy(dst, &v0, sizeof(v0));
78
0
            memcpy(dst + 8, &v1, sizeof(v1));
79
0
            dst += 16;
80
0
        }
81
82
0
        prefix_even += sum_even;
83
0
        prefix_odd += sum_odd;
84
0
        sum_even +=  v0       & ADLER32_SWAR_EVEN_MASK;
85
0
        sum_odd  += (v0 >> 8) & ADLER32_SWAR_EVEN_MASK;
86
87
0
        prefix_even += sum_even;
88
0
        prefix_odd += sum_odd;
89
0
        sum_even +=  v1       & ADLER32_SWAR_EVEN_MASK;
90
0
        sum_odd  += (v1 >> 8) & ADLER32_SWAR_EVEN_MASK;
91
92
0
        src64 += 2;
93
0
        len -= 16;
94
0
    }
95
96
    /* Handle remaining 8 bytes if present */
97
5.34k
    if (len >= 8) {
98
5.34k
        uint64_t v = *src64;
99
5.34k
        if (COPY)
100
5.34k
            memcpy(dst, &v, sizeof(v));
101
102
5.34k
        prefix_even += sum_even;
103
5.34k
        prefix_odd += sum_odd;
104
5.34k
        sum_even +=  v       & ADLER32_SWAR_EVEN_MASK;
105
5.34k
        sum_odd  += (v >> 8) & ADLER32_SWAR_EVEN_MASK;
106
5.34k
    }
107
108
    /* Horizontal sum of 4x16-bit lanes for s1 */
109
5.34k
    *adler += (uint32_t)(((sum_even + sum_odd) * ADLER32_SWAR_HSUM) >> 48);
110
111
    /* Widen prefix sums to 32-bit pairs and horizontal sum for s2 */
112
5.34k
    uint64_t pe_lo = prefix_even & 0xFFFF0000FFFFULL;
113
5.34k
    uint64_t pe_hi = (prefix_even >> 16) & 0xFFFF0000FFFFULL;
114
5.34k
    uint64_t po_lo = prefix_odd & 0xFFFF0000FFFFULL;
115
5.34k
    uint64_t po_hi = (prefix_odd >> 16) & 0xFFFF0000FFFFULL;
116
117
5.34k
    *sum2 += (uint32_t)(((pe_lo + po_lo + pe_hi + po_hi) * 0x800000008ULL) >> 32);
118
119
    /* Positional weights [8,7,6,5,4,3,2,1] per 8-byte group for s2.
120
     * On big-endian the even mask captures odd-index memory bytes (b1,b3,b5,b7)
121
     * so HSUM (+1 per odd-index byte) must be applied to sum_even, not sum_odd. */
122
5.34k
#if BYTE_ORDER == LITTLE_ENDIAN
123
5.34k
    *sum2 += 2 * (uint32_t)((sum_even * 0x4000300020001ULL) >> 48)
124
5.34k
           +     (uint32_t)((sum_odd  * ADLER32_SWAR_HSUM) >> 48)
125
5.34k
           + 2 * (uint32_t)((sum_odd  * 0x3000200010000ULL) >> 48);
126
#else
127
    *sum2 += 2 * (uint32_t)((sum_even * 0x0000100020003ULL) >> 48)
128
           +     (uint32_t)((sum_even * ADLER32_SWAR_HSUM) >> 48)
129
           + 2 * (uint32_t)((sum_odd  * 0x1000200030004ULL) >> 48);
130
#endif
131
5.34k
}
adler32_avx2.c:adler32_swar
Line
Count
Source
66
12.5k
                                       uint32_t *sum2, const int COPY) {
67
12.5k
    uint64_t sum_even = 0, sum_odd = 0, prefix_even = 0, prefix_odd = 0;
68
69
12.5k
    *sum2 += *adler * (uint32_t)len;
70
71
12.5k
    const uint64_t *src64 = (const uint64_t *)buf;
72
73
12.5k
    while (len >= 16) {
74
0
        uint64_t v0 = src64[0];
75
0
        uint64_t v1 = src64[1];
76
0
        if (COPY) {
77
0
            memcpy(dst, &v0, sizeof(v0));
78
0
            memcpy(dst + 8, &v1, sizeof(v1));
79
0
            dst += 16;
80
0
        }
81
82
0
        prefix_even += sum_even;
83
0
        prefix_odd += sum_odd;
84
0
        sum_even +=  v0       & ADLER32_SWAR_EVEN_MASK;
85
0
        sum_odd  += (v0 >> 8) & ADLER32_SWAR_EVEN_MASK;
86
87
0
        prefix_even += sum_even;
88
0
        prefix_odd += sum_odd;
89
0
        sum_even +=  v1       & ADLER32_SWAR_EVEN_MASK;
90
0
        sum_odd  += (v1 >> 8) & ADLER32_SWAR_EVEN_MASK;
91
92
0
        src64 += 2;
93
0
        len -= 16;
94
0
    }
95
96
    /* Handle remaining 8 bytes if present */
97
12.5k
    if (len >= 8) {
98
12.5k
        uint64_t v = *src64;
99
12.5k
        if (COPY)
100
6.37k
            memcpy(dst, &v, sizeof(v));
101
102
12.5k
        prefix_even += sum_even;
103
12.5k
        prefix_odd += sum_odd;
104
12.5k
        sum_even +=  v       & ADLER32_SWAR_EVEN_MASK;
105
12.5k
        sum_odd  += (v >> 8) & ADLER32_SWAR_EVEN_MASK;
106
12.5k
    }
107
108
    /* Horizontal sum of 4x16-bit lanes for s1 */
109
12.5k
    *adler += (uint32_t)(((sum_even + sum_odd) * ADLER32_SWAR_HSUM) >> 48);
110
111
    /* Widen prefix sums to 32-bit pairs and horizontal sum for s2 */
112
12.5k
    uint64_t pe_lo = prefix_even & 0xFFFF0000FFFFULL;
113
12.5k
    uint64_t pe_hi = (prefix_even >> 16) & 0xFFFF0000FFFFULL;
114
12.5k
    uint64_t po_lo = prefix_odd & 0xFFFF0000FFFFULL;
115
12.5k
    uint64_t po_hi = (prefix_odd >> 16) & 0xFFFF0000FFFFULL;
116
117
12.5k
    *sum2 += (uint32_t)(((pe_lo + po_lo + pe_hi + po_hi) * 0x800000008ULL) >> 32);
118
119
    /* Positional weights [8,7,6,5,4,3,2,1] per 8-byte group for s2.
120
     * On big-endian the even mask captures odd-index memory bytes (b1,b3,b5,b7)
121
     * so HSUM (+1 per odd-index byte) must be applied to sum_even, not sum_odd. */
122
12.5k
#if BYTE_ORDER == LITTLE_ENDIAN
123
12.5k
    *sum2 += 2 * (uint32_t)((sum_even * 0x4000300020001ULL) >> 48)
124
12.5k
           +     (uint32_t)((sum_odd  * ADLER32_SWAR_HSUM) >> 48)
125
12.5k
           + 2 * (uint32_t)((sum_odd  * 0x3000200010000ULL) >> 48);
126
#else
127
    *sum2 += 2 * (uint32_t)((sum_even * 0x0000100020003ULL) >> 48)
128
           +     (uint32_t)((sum_even * ADLER32_SWAR_HSUM) >> 48)
129
           + 2 * (uint32_t)((sum_odd  * 0x1000200030004ULL) >> 48);
130
#endif
131
12.5k
}
Unexecuted instantiation: adler32_avx2_vnni.c:adler32_swar
Unexecuted instantiation: adler32_avx512.c:adler32_swar
Unexecuted instantiation: adler32_avx512_vnni.c:adler32_swar
Unexecuted instantiation: adler32_c.c:adler32_swar
132
133
Z_FORCEINLINE static uint32_t adler32_copy_tail(uint32_t adler, uint8_t *dst, const uint8_t *buf, size_t len,
134
45.6k
                                                uint32_t sum2, const int REBASE, const int MAX_LEN, const int COPY) {
135
45.6k
    if (len) {
136
44.7k
        Z_UNUSED(MAX_LEN);
137
        /* Process using packed 64-bit arithmetic when source is aligned */
138
67.9k
        while (len >= 8 && ((uintptr_t)buf & 7) == 0) {
139
23.1k
            size_t chunk = MIN(ALIGN_DOWN(len, (size_t)8), (size_t)ADLER32_SWAR_MAX_BYTES);
140
23.1k
            adler32_swar(&adler, dst, buf, chunk, &sum2, COPY);
141
23.1k
            buf += chunk;
142
23.1k
            if (COPY)
143
11.7k
                dst += chunk;
144
23.1k
            len -= chunk;
145
23.1k
        }
146
        /* DO4 loop avoids GCC x86 register pressure from hoisted DO8/DO16 loads. */
147
68.6k
        while (len >= 4) {
148
23.8k
            if (COPY) {
149
12.0k
                memcpy(dst, buf, 4);
150
12.0k
                dst += 4;
151
12.0k
            }
152
23.8k
            len -= 4;
153
23.8k
            ADLER_DO4(adler, sum2, buf, 0);
154
23.8k
            buf += 4;
155
23.8k
        }
156
44.7k
        if (len & 2) {
157
24.3k
            if (COPY) {
158
12.3k
                memcpy(dst, buf, 2);
159
12.3k
                dst += 2;
160
12.3k
            }
161
24.3k
            ADLER_DO2(adler, sum2, buf, 0);
162
24.3k
            buf += 2;
163
24.3k
        }
164
44.7k
        if (len & 1) {
165
23.7k
            if (COPY)
166
11.9k
                *dst = *buf;
167
23.7k
            ADLER_DO1(adler, sum2, buf, 0);
168
23.7k
        }
169
44.7k
    }
170
45.6k
    if (REBASE) {
171
44.7k
        adler %= BASE;
172
44.7k
        sum2 %= BASE;
173
44.7k
    }
174
    /* D = B * 65536 + A, see: https://en.wikipedia.org/wiki/Adler-32. */
175
45.6k
    return adler | (sum2 << 16);
176
45.6k
}
adler32_ssse3.c:adler32_copy_tail
Line
Count
Source
134
10.3k
                                                uint32_t sum2, const int REBASE, const int MAX_LEN, const int COPY) {
135
10.3k
    if (len) {
136
9.55k
        Z_UNUSED(MAX_LEN);
137
        /* Process using packed 64-bit arithmetic when source is aligned */
138
14.8k
        while (len >= 8 && ((uintptr_t)buf & 7) == 0) {
139
5.24k
            size_t chunk = MIN(ALIGN_DOWN(len, (size_t)8), (size_t)ADLER32_SWAR_MAX_BYTES);
140
5.24k
            adler32_swar(&adler, dst, buf, chunk, &sum2, COPY);
141
5.24k
            buf += chunk;
142
5.24k
            if (COPY)
143
0
                dst += chunk;
144
5.24k
            len -= chunk;
145
5.24k
        }
146
        /* DO4 loop avoids GCC x86 register pressure from hoisted DO8/DO16 loads. */
147
14.6k
        while (len >= 4) {
148
5.07k
            if (COPY) {
149
0
                memcpy(dst, buf, 4);
150
0
                dst += 4;
151
0
            }
152
5.07k
            len -= 4;
153
5.07k
            ADLER_DO4(adler, sum2, buf, 0);
154
5.07k
            buf += 4;
155
5.07k
        }
156
9.55k
        if (len & 2) {
157
5.16k
            if (COPY) {
158
0
                memcpy(dst, buf, 2);
159
0
                dst += 2;
160
0
            }
161
5.16k
            ADLER_DO2(adler, sum2, buf, 0);
162
5.16k
            buf += 2;
163
5.16k
        }
164
9.55k
        if (len & 1) {
165
5.01k
            if (COPY)
166
0
                *dst = *buf;
167
5.01k
            ADLER_DO1(adler, sum2, buf, 0);
168
5.01k
        }
169
9.55k
    }
170
10.3k
    if (REBASE) {
171
9.55k
        adler %= BASE;
172
9.55k
        sum2 %= BASE;
173
9.55k
    }
174
    /* D = B * 65536 + A, see: https://en.wikipedia.org/wiki/Adler-32. */
175
10.3k
    return adler | (sum2 << 16);
176
10.3k
}
adler32_sse42.c:adler32_copy_tail
Line
Count
Source
134
9.75k
                                                uint32_t sum2, const int REBASE, const int MAX_LEN, const int COPY) {
135
9.75k
    if (len) {
136
9.75k
        Z_UNUSED(MAX_LEN);
137
        /* Process using packed 64-bit arithmetic when source is aligned */
138
15.0k
        while (len >= 8 && ((uintptr_t)buf & 7) == 0) {
139
5.34k
            size_t chunk = MIN(ALIGN_DOWN(len, (size_t)8), (size_t)ADLER32_SWAR_MAX_BYTES);
140
5.34k
            adler32_swar(&adler, dst, buf, chunk, &sum2, COPY);
141
5.34k
            buf += chunk;
142
5.34k
            if (COPY)
143
5.34k
                dst += chunk;
144
5.34k
            len -= chunk;
145
5.34k
        }
146
        /* DO4 loop avoids GCC x86 register pressure from hoisted DO8/DO16 loads. */
147
14.9k
        while (len >= 4) {
148
5.16k
            if (COPY) {
149
5.16k
                memcpy(dst, buf, 4);
150
5.16k
                dst += 4;
151
5.16k
            }
152
5.16k
            len -= 4;
153
5.16k
            ADLER_DO4(adler, sum2, buf, 0);
154
5.16k
            buf += 4;
155
5.16k
        }
156
9.75k
        if (len & 2) {
157
5.26k
            if (COPY) {
158
5.26k
                memcpy(dst, buf, 2);
159
5.26k
                dst += 2;
160
5.26k
            }
161
5.26k
            ADLER_DO2(adler, sum2, buf, 0);
162
5.26k
            buf += 2;
163
5.26k
        }
164
9.75k
        if (len & 1) {
165
5.08k
            if (COPY)
166
5.08k
                *dst = *buf;
167
5.08k
            ADLER_DO1(adler, sum2, buf, 0);
168
5.08k
        }
169
9.75k
    }
170
9.75k
    if (REBASE) {
171
9.75k
        adler %= BASE;
172
9.75k
        sum2 %= BASE;
173
9.75k
    }
174
    /* D = B * 65536 + A, see: https://en.wikipedia.org/wiki/Adler-32. */
175
9.75k
    return adler | (sum2 << 16);
176
9.75k
}
adler32_avx2.c:adler32_copy_tail
Line
Count
Source
134
25.4k
                                                uint32_t sum2, const int REBASE, const int MAX_LEN, const int COPY) {
135
25.4k
    if (len) {
136
25.4k
        Z_UNUSED(MAX_LEN);
137
        /* Process using packed 64-bit arithmetic when source is aligned */
138
38.0k
        while (len >= 8 && ((uintptr_t)buf & 7) == 0) {
139
12.5k
            size_t chunk = MIN(ALIGN_DOWN(len, (size_t)8), (size_t)ADLER32_SWAR_MAX_BYTES);
140
12.5k
            adler32_swar(&adler, dst, buf, chunk, &sum2, COPY);
141
12.5k
            buf += chunk;
142
12.5k
            if (COPY)
143
6.37k
                dst += chunk;
144
12.5k
            len -= chunk;
145
12.5k
        }
146
        /* DO4 loop avoids GCC x86 register pressure from hoisted DO8/DO16 loads. */
147
39.0k
        while (len >= 4) {
148
13.5k
            if (COPY) {
149
6.86k
                memcpy(dst, buf, 4);
150
6.86k
                dst += 4;
151
6.86k
            }
152
13.5k
            len -= 4;
153
13.5k
            ADLER_DO4(adler, sum2, buf, 0);
154
13.5k
            buf += 4;
155
13.5k
        }
156
25.4k
        if (len & 2) {
157
13.9k
            if (COPY) {
158
7.04k
                memcpy(dst, buf, 2);
159
7.04k
                dst += 2;
160
7.04k
            }
161
13.9k
            ADLER_DO2(adler, sum2, buf, 0);
162
13.9k
            buf += 2;
163
13.9k
        }
164
25.4k
        if (len & 1) {
165
13.6k
            if (COPY)
166
6.84k
                *dst = *buf;
167
13.6k
            ADLER_DO1(adler, sum2, buf, 0);
168
13.6k
        }
169
25.4k
    }
170
25.4k
    if (REBASE) {
171
25.4k
        adler %= BASE;
172
25.4k
        sum2 %= BASE;
173
25.4k
    }
174
    /* D = B * 65536 + A, see: https://en.wikipedia.org/wiki/Adler-32. */
175
25.4k
    return adler | (sum2 << 16);
176
25.4k
}
Unexecuted instantiation: adler32_avx2_vnni.c:adler32_copy_tail
Unexecuted instantiation: adler32_avx512.c:adler32_copy_tail
Unexecuted instantiation: adler32_avx512_vnni.c:adler32_copy_tail
Unexecuted instantiation: adler32_c.c:adler32_copy_tail
177
178
#endif /* ADLER32_P_H */