Coverage Report

Created: 2026-03-31 06:56

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/libjxl/lib/jxl/modular/transform/rct.cc
Line
Count
Source
1
// Copyright (c) the JPEG XL Project Authors. All rights reserved.
2
//
3
// Use of this source code is governed by a BSD-style
4
// license that can be found in the LICENSE file.
5
6
#include "lib/jxl/modular/transform/rct.h"
7
8
#include <cstddef>
9
#include <cstdint>
10
#include <utility>
11
12
#include "lib/jxl/base/data_parallel.h"
13
#include "lib/jxl/base/status.h"
14
#include "lib/jxl/modular/modular_image.h"
15
#include "lib/jxl/modular/transform/transform.h"
16
#undef HWY_TARGET_INCLUDE
17
#define HWY_TARGET_INCLUDE "lib/jxl/modular/transform/rct.cc"
18
#include <hwy/foreach_target.h>
19
#include <hwy/highway.h>
20
HWY_BEFORE_NAMESPACE();
21
namespace jxl {
22
namespace HWY_NAMESPACE {
23
24
// These templates are not found via ADL.
25
using hwy::HWY_NAMESPACE::Add;
26
using hwy::HWY_NAMESPACE::ShiftRight;
27
using hwy::HWY_NAMESPACE::Sub;
28
29
template <int transform_type>
30
void InvRCTRow(const pixel_type* in0, const pixel_type* in1,
31
               const pixel_type* in2, pixel_type* out0, pixel_type* out1,
32
71.5k
               pixel_type* out2, size_t w) {
33
71.5k
  static_assert(transform_type >= 0 && transform_type < 7,
34
71.5k
                "Invalid transform type");
35
71.5k
  int second = transform_type >> 1;
36
71.5k
  int third = transform_type & 1;
37
38
71.5k
  size_t x = 0;
39
71.5k
  const HWY_FULL(pixel_type) d;
40
71.5k
  const size_t N = Lanes(d);
41
892k
  for (; x + N - 1 < w; x += N) {
42
820k
    if (transform_type == 6) {
43
469k
      auto Y = Load(d, in0 + x);
44
469k
      auto Co = Load(d, in1 + x);
45
469k
      auto Cg = Load(d, in2 + x);
46
469k
      Y = Sub(Y, ShiftRight<1>(Cg));
47
469k
      auto G = Add(Cg, Y);
48
469k
      Y = Sub(Y, ShiftRight<1>(Co));
49
469k
      auto R = Add(Y, Co);
50
469k
      Store(R, d, out0 + x);
51
469k
      Store(G, d, out1 + x);
52
469k
      Store(Y, d, out2 + x);
53
469k
    } else {
54
351k
      auto First = Load(d, in0 + x);
55
351k
      auto Second = Load(d, in1 + x);
56
351k
      auto Third = Load(d, in2 + x);
57
351k
      if (third) Third = Add(Third, First);
58
351k
      if (second == 1) {
59
246k
        Second = Add(Second, First);
60
246k
      } else if (second == 2) {
61
41.3k
        Second = Add(Second, ShiftRight<1>(Add(First, Third)));
62
41.3k
      }
63
351k
      Store(First, d, out0 + x);
64
351k
      Store(Second, d, out1 + x);
65
351k
      Store(Third, d, out2 + x);
66
351k
    }
67
820k
  }
68
136k
  for (; x < w; x++) {
69
65.4k
    if (transform_type == 6) {
70
25.4k
      pixel_type Y = in0[x];
71
25.4k
      pixel_type Co = in1[x];
72
25.4k
      pixel_type Cg = in2[x];
73
25.4k
      pixel_type tmp = PixelAdd(Y, -(Cg >> 1));
74
25.4k
      pixel_type G = PixelAdd(Cg, tmp);
75
25.4k
      pixel_type B = PixelAdd(tmp, -(Co >> 1));
76
25.4k
      pixel_type R = PixelAdd(B, Co);
77
25.4k
      out0[x] = R;
78
25.4k
      out1[x] = G;
79
25.4k
      out2[x] = B;
80
40.0k
    } else {
81
40.0k
      pixel_type First = in0[x];
82
40.0k
      pixel_type Second = in1[x];
83
40.0k
      pixel_type Third = in2[x];
84
40.0k
      if (third) Third = PixelAdd(Third, First);
85
40.0k
      if (second == 1) {
86
23.2k
        Second = PixelAdd(Second, First);
87
23.2k
      } else if (second == 2) {
88
10.8k
        Second = PixelAdd(Second, (PixelAdd(First, Third) >> 1));
89
10.8k
      }
90
40.0k
      out0[x] = First;
91
40.0k
      out1[x] = Second;
92
40.0k
      out2[x] = Third;
93
40.0k
    }
94
65.4k
  }
95
71.5k
}
Unexecuted instantiation: void jxl::N_SSE4::InvRCTRow<0>(int const*, int const*, int const*, int*, int*, int*, unsigned long)
Unexecuted instantiation: void jxl::N_SSE4::InvRCTRow<1>(int const*, int const*, int const*, int*, int*, int*, unsigned long)
Unexecuted instantiation: void jxl::N_SSE4::InvRCTRow<2>(int const*, int const*, int const*, int*, int*, int*, unsigned long)
Unexecuted instantiation: void jxl::N_SSE4::InvRCTRow<3>(int const*, int const*, int const*, int*, int*, int*, unsigned long)
Unexecuted instantiation: void jxl::N_SSE4::InvRCTRow<4>(int const*, int const*, int const*, int*, int*, int*, unsigned long)
Unexecuted instantiation: void jxl::N_SSE4::InvRCTRow<5>(int const*, int const*, int const*, int*, int*, int*, unsigned long)
Unexecuted instantiation: void jxl::N_SSE4::InvRCTRow<6>(int const*, int const*, int const*, int*, int*, int*, unsigned long)
Unexecuted instantiation: void jxl::N_AVX2::InvRCTRow<0>(int const*, int const*, int const*, int*, int*, int*, unsigned long)
void jxl::N_AVX2::InvRCTRow<1>(int const*, int const*, int const*, int*, int*, int*, unsigned long)
Line
Count
Source
32
4.01k
               pixel_type* out2, size_t w) {
33
4.01k
  static_assert(transform_type >= 0 && transform_type < 7,
34
4.01k
                "Invalid transform type");
35
4.01k
  int second = transform_type >> 1;
36
4.01k
  int third = transform_type & 1;
37
38
4.01k
  size_t x = 0;
39
4.01k
  const HWY_FULL(pixel_type) d;
40
4.01k
  const size_t N = Lanes(d);
41
67.9k
  for (; x + N - 1 < w; x += N) {
42
63.9k
    if (transform_type == 6) {
43
0
      auto Y = Load(d, in0 + x);
44
0
      auto Co = Load(d, in1 + x);
45
0
      auto Cg = Load(d, in2 + x);
46
0
      Y = Sub(Y, ShiftRight<1>(Cg));
47
0
      auto G = Add(Cg, Y);
48
0
      Y = Sub(Y, ShiftRight<1>(Co));
49
0
      auto R = Add(Y, Co);
50
0
      Store(R, d, out0 + x);
51
0
      Store(G, d, out1 + x);
52
0
      Store(Y, d, out2 + x);
53
63.9k
    } else {
54
63.9k
      auto First = Load(d, in0 + x);
55
63.9k
      auto Second = Load(d, in1 + x);
56
63.9k
      auto Third = Load(d, in2 + x);
57
63.9k
      if (third) Third = Add(Third, First);
58
63.9k
      if (second == 1) {
59
0
        Second = Add(Second, First);
60
63.9k
      } else if (second == 2) {
61
0
        Second = Add(Second, ShiftRight<1>(Add(First, Third)));
62
0
      }
63
63.9k
      Store(First, d, out0 + x);
64
63.9k
      Store(Second, d, out1 + x);
65
63.9k
      Store(Third, d, out2 + x);
66
63.9k
    }
67
63.9k
  }
68
10.0k
  for (; x < w; x++) {
69
6.00k
    if (transform_type == 6) {
70
0
      pixel_type Y = in0[x];
71
0
      pixel_type Co = in1[x];
72
0
      pixel_type Cg = in2[x];
73
0
      pixel_type tmp = PixelAdd(Y, -(Cg >> 1));
74
0
      pixel_type G = PixelAdd(Cg, tmp);
75
0
      pixel_type B = PixelAdd(tmp, -(Co >> 1));
76
0
      pixel_type R = PixelAdd(B, Co);
77
0
      out0[x] = R;
78
0
      out1[x] = G;
79
0
      out2[x] = B;
80
6.00k
    } else {
81
6.00k
      pixel_type First = in0[x];
82
6.00k
      pixel_type Second = in1[x];
83
6.00k
      pixel_type Third = in2[x];
84
6.00k
      if (third) Third = PixelAdd(Third, First);
85
6.00k
      if (second == 1) {
86
0
        Second = PixelAdd(Second, First);
87
6.00k
      } else if (second == 2) {
88
0
        Second = PixelAdd(Second, (PixelAdd(First, Third) >> 1));
89
0
      }
90
6.00k
      out0[x] = First;
91
6.00k
      out1[x] = Second;
92
6.00k
      out2[x] = Third;
93
6.00k
    }
94
6.00k
  }
95
4.01k
}
void jxl::N_AVX2::InvRCTRow<2>(int const*, int const*, int const*, int*, int*, int*, unsigned long)
Line
Count
Source
32
21.3k
               pixel_type* out2, size_t w) {
33
21.3k
  static_assert(transform_type >= 0 && transform_type < 7,
34
21.3k
                "Invalid transform type");
35
21.3k
  int second = transform_type >> 1;
36
21.3k
  int third = transform_type & 1;
37
38
21.3k
  size_t x = 0;
39
21.3k
  const HWY_FULL(pixel_type) d;
40
21.3k
  const size_t N = Lanes(d);
41
179k
  for (; x + N - 1 < w; x += N) {
42
158k
    if (transform_type == 6) {
43
0
      auto Y = Load(d, in0 + x);
44
0
      auto Co = Load(d, in1 + x);
45
0
      auto Cg = Load(d, in2 + x);
46
0
      Y = Sub(Y, ShiftRight<1>(Cg));
47
0
      auto G = Add(Cg, Y);
48
0
      Y = Sub(Y, ShiftRight<1>(Co));
49
0
      auto R = Add(Y, Co);
50
0
      Store(R, d, out0 + x);
51
0
      Store(G, d, out1 + x);
52
0
      Store(Y, d, out2 + x);
53
158k
    } else {
54
158k
      auto First = Load(d, in0 + x);
55
158k
      auto Second = Load(d, in1 + x);
56
158k
      auto Third = Load(d, in2 + x);
57
158k
      if (third) Third = Add(Third, First);
58
158k
      if (second == 1) {
59
158k
        Second = Add(Second, First);
60
158k
      } else if (second == 2) {
61
0
        Second = Add(Second, ShiftRight<1>(Add(First, Third)));
62
0
      }
63
158k
      Store(First, d, out0 + x);
64
158k
      Store(Second, d, out1 + x);
65
158k
      Store(Third, d, out2 + x);
66
158k
    }
67
158k
  }
68
35.2k
  for (; x < w; x++) {
69
13.8k
    if (transform_type == 6) {
70
0
      pixel_type Y = in0[x];
71
0
      pixel_type Co = in1[x];
72
0
      pixel_type Cg = in2[x];
73
0
      pixel_type tmp = PixelAdd(Y, -(Cg >> 1));
74
0
      pixel_type G = PixelAdd(Cg, tmp);
75
0
      pixel_type B = PixelAdd(tmp, -(Co >> 1));
76
0
      pixel_type R = PixelAdd(B, Co);
77
0
      out0[x] = R;
78
0
      out1[x] = G;
79
0
      out2[x] = B;
80
13.8k
    } else {
81
13.8k
      pixel_type First = in0[x];
82
13.8k
      pixel_type Second = in1[x];
83
13.8k
      pixel_type Third = in2[x];
84
13.8k
      if (third) Third = PixelAdd(Third, First);
85
13.8k
      if (second == 1) {
86
13.8k
        Second = PixelAdd(Second, First);
87
13.8k
      } else if (second == 2) {
88
0
        Second = PixelAdd(Second, (PixelAdd(First, Third) >> 1));
89
0
      }
90
13.8k
      out0[x] = First;
91
13.8k
      out1[x] = Second;
92
13.8k
      out2[x] = Third;
93
13.8k
    }
94
13.8k
  }
95
21.3k
}
void jxl::N_AVX2::InvRCTRow<3>(int const*, int const*, int const*, int*, int*, int*, unsigned long)
Line
Count
Source
32
5.83k
               pixel_type* out2, size_t w) {
33
5.83k
  static_assert(transform_type >= 0 && transform_type < 7,
34
5.83k
                "Invalid transform type");
35
5.83k
  int second = transform_type >> 1;
36
5.83k
  int third = transform_type & 1;
37
38
5.83k
  size_t x = 0;
39
5.83k
  const HWY_FULL(pixel_type) d;
40
5.83k
  const size_t N = Lanes(d);
41
93.4k
  for (; x + N - 1 < w; x += N) {
42
87.6k
    if (transform_type == 6) {
43
0
      auto Y = Load(d, in0 + x);
44
0
      auto Co = Load(d, in1 + x);
45
0
      auto Cg = Load(d, in2 + x);
46
0
      Y = Sub(Y, ShiftRight<1>(Cg));
47
0
      auto G = Add(Cg, Y);
48
0
      Y = Sub(Y, ShiftRight<1>(Co));
49
0
      auto R = Add(Y, Co);
50
0
      Store(R, d, out0 + x);
51
0
      Store(G, d, out1 + x);
52
0
      Store(Y, d, out2 + x);
53
87.6k
    } else {
54
87.6k
      auto First = Load(d, in0 + x);
55
87.6k
      auto Second = Load(d, in1 + x);
56
87.6k
      auto Third = Load(d, in2 + x);
57
87.6k
      if (third) Third = Add(Third, First);
58
87.6k
      if (second == 1) {
59
87.6k
        Second = Add(Second, First);
60
87.6k
      } else if (second == 2) {
61
0
        Second = Add(Second, ShiftRight<1>(Add(First, Third)));
62
0
      }
63
87.6k
      Store(First, d, out0 + x);
64
87.6k
      Store(Second, d, out1 + x);
65
87.6k
      Store(Third, d, out2 + x);
66
87.6k
    }
67
87.6k
  }
68
15.1k
  for (; x < w; x++) {
69
9.36k
    if (transform_type == 6) {
70
0
      pixel_type Y = in0[x];
71
0
      pixel_type Co = in1[x];
72
0
      pixel_type Cg = in2[x];
73
0
      pixel_type tmp = PixelAdd(Y, -(Cg >> 1));
74
0
      pixel_type G = PixelAdd(Cg, tmp);
75
0
      pixel_type B = PixelAdd(tmp, -(Co >> 1));
76
0
      pixel_type R = PixelAdd(B, Co);
77
0
      out0[x] = R;
78
0
      out1[x] = G;
79
0
      out2[x] = B;
80
9.36k
    } else {
81
9.36k
      pixel_type First = in0[x];
82
9.36k
      pixel_type Second = in1[x];
83
9.36k
      pixel_type Third = in2[x];
84
9.36k
      if (third) Third = PixelAdd(Third, First);
85
9.36k
      if (second == 1) {
86
9.36k
        Second = PixelAdd(Second, First);
87
9.36k
      } else if (second == 2) {
88
0
        Second = PixelAdd(Second, (PixelAdd(First, Third) >> 1));
89
0
      }
90
9.36k
      out0[x] = First;
91
9.36k
      out1[x] = Second;
92
9.36k
      out2[x] = Third;
93
9.36k
    }
94
9.36k
  }
95
5.83k
}
void jxl::N_AVX2::InvRCTRow<4>(int const*, int const*, int const*, int*, int*, int*, unsigned long)
Line
Count
Source
32
5.64k
               pixel_type* out2, size_t w) {
33
5.64k
  static_assert(transform_type >= 0 && transform_type < 7,
34
5.64k
                "Invalid transform type");
35
5.64k
  int second = transform_type >> 1;
36
5.64k
  int third = transform_type & 1;
37
38
5.64k
  size_t x = 0;
39
5.64k
  const HWY_FULL(pixel_type) d;
40
5.64k
  const size_t N = Lanes(d);
41
38.0k
  for (; x + N - 1 < w; x += N) {
42
32.3k
    if (transform_type == 6) {
43
0
      auto Y = Load(d, in0 + x);
44
0
      auto Co = Load(d, in1 + x);
45
0
      auto Cg = Load(d, in2 + x);
46
0
      Y = Sub(Y, ShiftRight<1>(Cg));
47
0
      auto G = Add(Cg, Y);
48
0
      Y = Sub(Y, ShiftRight<1>(Co));
49
0
      auto R = Add(Y, Co);
50
0
      Store(R, d, out0 + x);
51
0
      Store(G, d, out1 + x);
52
0
      Store(Y, d, out2 + x);
53
32.3k
    } else {
54
32.3k
      auto First = Load(d, in0 + x);
55
32.3k
      auto Second = Load(d, in1 + x);
56
32.3k
      auto Third = Load(d, in2 + x);
57
32.3k
      if (third) Third = Add(Third, First);
58
32.3k
      if (second == 1) {
59
0
        Second = Add(Second, First);
60
32.3k
      } else if (second == 2) {
61
32.3k
        Second = Add(Second, ShiftRight<1>(Add(First, Third)));
62
32.3k
      }
63
32.3k
      Store(First, d, out0 + x);
64
32.3k
      Store(Second, d, out1 + x);
65
32.3k
      Store(Third, d, out2 + x);
66
32.3k
    }
67
32.3k
  }
68
13.6k
  for (; x < w; x++) {
69
8.01k
    if (transform_type == 6) {
70
0
      pixel_type Y = in0[x];
71
0
      pixel_type Co = in1[x];
72
0
      pixel_type Cg = in2[x];
73
0
      pixel_type tmp = PixelAdd(Y, -(Cg >> 1));
74
0
      pixel_type G = PixelAdd(Cg, tmp);
75
0
      pixel_type B = PixelAdd(tmp, -(Co >> 1));
76
0
      pixel_type R = PixelAdd(B, Co);
77
0
      out0[x] = R;
78
0
      out1[x] = G;
79
0
      out2[x] = B;
80
8.01k
    } else {
81
8.01k
      pixel_type First = in0[x];
82
8.01k
      pixel_type Second = in1[x];
83
8.01k
      pixel_type Third = in2[x];
84
8.01k
      if (third) Third = PixelAdd(Third, First);
85
8.01k
      if (second == 1) {
86
0
        Second = PixelAdd(Second, First);
87
8.01k
      } else if (second == 2) {
88
8.01k
        Second = PixelAdd(Second, (PixelAdd(First, Third) >> 1));
89
8.01k
      }
90
8.01k
      out0[x] = First;
91
8.01k
      out1[x] = Second;
92
8.01k
      out2[x] = Third;
93
8.01k
    }
94
8.01k
  }
95
5.64k
}
void jxl::N_AVX2::InvRCTRow<5>(int const*, int const*, int const*, int*, int*, int*, unsigned long)
Line
Count
Source
32
1.32k
               pixel_type* out2, size_t w) {
33
1.32k
  static_assert(transform_type >= 0 && transform_type < 7,
34
1.32k
                "Invalid transform type");
35
1.32k
  int second = transform_type >> 1;
36
1.32k
  int third = transform_type & 1;
37
38
1.32k
  size_t x = 0;
39
1.32k
  const HWY_FULL(pixel_type) d;
40
1.32k
  const size_t N = Lanes(d);
41
10.2k
  for (; x + N - 1 < w; x += N) {
42
8.93k
    if (transform_type == 6) {
43
0
      auto Y = Load(d, in0 + x);
44
0
      auto Co = Load(d, in1 + x);
45
0
      auto Cg = Load(d, in2 + x);
46
0
      Y = Sub(Y, ShiftRight<1>(Cg));
47
0
      auto G = Add(Cg, Y);
48
0
      Y = Sub(Y, ShiftRight<1>(Co));
49
0
      auto R = Add(Y, Co);
50
0
      Store(R, d, out0 + x);
51
0
      Store(G, d, out1 + x);
52
0
      Store(Y, d, out2 + x);
53
8.93k
    } else {
54
8.93k
      auto First = Load(d, in0 + x);
55
8.93k
      auto Second = Load(d, in1 + x);
56
8.93k
      auto Third = Load(d, in2 + x);
57
8.93k
      if (third) Third = Add(Third, First);
58
8.93k
      if (second == 1) {
59
0
        Second = Add(Second, First);
60
8.93k
      } else if (second == 2) {
61
8.93k
        Second = Add(Second, ShiftRight<1>(Add(First, Third)));
62
8.93k
      }
63
8.93k
      Store(First, d, out0 + x);
64
8.93k
      Store(Second, d, out1 + x);
65
8.93k
      Store(Third, d, out2 + x);
66
8.93k
    }
67
8.93k
  }
68
4.11k
  for (; x < w; x++) {
69
2.79k
    if (transform_type == 6) {
70
0
      pixel_type Y = in0[x];
71
0
      pixel_type Co = in1[x];
72
0
      pixel_type Cg = in2[x];
73
0
      pixel_type tmp = PixelAdd(Y, -(Cg >> 1));
74
0
      pixel_type G = PixelAdd(Cg, tmp);
75
0
      pixel_type B = PixelAdd(tmp, -(Co >> 1));
76
0
      pixel_type R = PixelAdd(B, Co);
77
0
      out0[x] = R;
78
0
      out1[x] = G;
79
0
      out2[x] = B;
80
2.79k
    } else {
81
2.79k
      pixel_type First = in0[x];
82
2.79k
      pixel_type Second = in1[x];
83
2.79k
      pixel_type Third = in2[x];
84
2.79k
      if (third) Third = PixelAdd(Third, First);
85
2.79k
      if (second == 1) {
86
0
        Second = PixelAdd(Second, First);
87
2.79k
      } else if (second == 2) {
88
2.79k
        Second = PixelAdd(Second, (PixelAdd(First, Third) >> 1));
89
2.79k
      }
90
2.79k
      out0[x] = First;
91
2.79k
      out1[x] = Second;
92
2.79k
      out2[x] = Third;
93
2.79k
    }
94
2.79k
  }
95
1.32k
}
void jxl::N_AVX2::InvRCTRow<6>(int const*, int const*, int const*, int*, int*, int*, unsigned long)
Line
Count
Source
32
33.3k
               pixel_type* out2, size_t w) {
33
33.3k
  static_assert(transform_type >= 0 && transform_type < 7,
34
33.3k
                "Invalid transform type");
35
33.3k
  int second = transform_type >> 1;
36
33.3k
  int third = transform_type & 1;
37
38
33.3k
  size_t x = 0;
39
33.3k
  const HWY_FULL(pixel_type) d;
40
33.3k
  const size_t N = Lanes(d);
41
502k
  for (; x + N - 1 < w; x += N) {
42
469k
    if (transform_type == 6) {
43
469k
      auto Y = Load(d, in0 + x);
44
469k
      auto Co = Load(d, in1 + x);
45
469k
      auto Cg = Load(d, in2 + x);
46
469k
      Y = Sub(Y, ShiftRight<1>(Cg));
47
469k
      auto G = Add(Cg, Y);
48
469k
      Y = Sub(Y, ShiftRight<1>(Co));
49
469k
      auto R = Add(Y, Co);
50
469k
      Store(R, d, out0 + x);
51
469k
      Store(G, d, out1 + x);
52
469k
      Store(Y, d, out2 + x);
53
469k
    } else {
54
0
      auto First = Load(d, in0 + x);
55
0
      auto Second = Load(d, in1 + x);
56
0
      auto Third = Load(d, in2 + x);
57
0
      if (third) Third = Add(Third, First);
58
0
      if (second == 1) {
59
0
        Second = Add(Second, First);
60
0
      } else if (second == 2) {
61
0
        Second = Add(Second, ShiftRight<1>(Add(First, Third)));
62
0
      }
63
0
      Store(First, d, out0 + x);
64
0
      Store(Second, d, out1 + x);
65
0
      Store(Third, d, out2 + x);
66
0
    }
67
469k
  }
68
58.7k
  for (; x < w; x++) {
69
25.4k
    if (transform_type == 6) {
70
25.4k
      pixel_type Y = in0[x];
71
25.4k
      pixel_type Co = in1[x];
72
25.4k
      pixel_type Cg = in2[x];
73
25.4k
      pixel_type tmp = PixelAdd(Y, -(Cg >> 1));
74
25.4k
      pixel_type G = PixelAdd(Cg, tmp);
75
25.4k
      pixel_type B = PixelAdd(tmp, -(Co >> 1));
76
25.4k
      pixel_type R = PixelAdd(B, Co);
77
25.4k
      out0[x] = R;
78
25.4k
      out1[x] = G;
79
25.4k
      out2[x] = B;
80
25.4k
    } else {
81
0
      pixel_type First = in0[x];
82
0
      pixel_type Second = in1[x];
83
0
      pixel_type Third = in2[x];
84
0
      if (third) Third = PixelAdd(Third, First);
85
0
      if (second == 1) {
86
0
        Second = PixelAdd(Second, First);
87
0
      } else if (second == 2) {
88
0
        Second = PixelAdd(Second, (PixelAdd(First, Third) >> 1));
89
0
      }
90
0
      out0[x] = First;
91
0
      out1[x] = Second;
92
0
      out2[x] = Third;
93
0
    }
94
25.4k
  }
95
33.3k
}
Unexecuted instantiation: void jxl::N_SSE2::InvRCTRow<0>(int const*, int const*, int const*, int*, int*, int*, unsigned long)
Unexecuted instantiation: void jxl::N_SSE2::InvRCTRow<1>(int const*, int const*, int const*, int*, int*, int*, unsigned long)
Unexecuted instantiation: void jxl::N_SSE2::InvRCTRow<2>(int const*, int const*, int const*, int*, int*, int*, unsigned long)
Unexecuted instantiation: void jxl::N_SSE2::InvRCTRow<3>(int const*, int const*, int const*, int*, int*, int*, unsigned long)
Unexecuted instantiation: void jxl::N_SSE2::InvRCTRow<4>(int const*, int const*, int const*, int*, int*, int*, unsigned long)
Unexecuted instantiation: void jxl::N_SSE2::InvRCTRow<5>(int const*, int const*, int const*, int*, int*, int*, unsigned long)
Unexecuted instantiation: void jxl::N_SSE2::InvRCTRow<6>(int const*, int const*, int const*, int*, int*, int*, unsigned long)
96
97
3.55k
Status InvRCT(Image& input, size_t begin_c, size_t rct_type, ThreadPool* pool) {
98
3.55k
  JXL_RETURN_IF_ERROR(CheckEqualChannels(input, begin_c, begin_c + 2));
99
3.55k
  size_t m = begin_c;
100
3.55k
  Channel& c0 = input.channel[m + 0];
101
3.55k
  size_t w = c0.w;
102
3.55k
  size_t h = c0.h;
103
3.55k
  if (rct_type == 0) {  // noop
104
1.06k
    return true;
105
1.06k
  }
106
  // Permutation: 0=RGB, 1=GBR, 2=BRG, 3=RBG, 4=GRB, 5=BGR
107
2.49k
  int permutation = rct_type / 7;
108
2.49k
  JXL_ENSURE(permutation < 6);
109
  // 0-5 values have the low bit corresponding to Third and the high bits
110
  // corresponding to Second. 6 corresponds to YCoCg.
111
  //
112
  // Second: 0=nop, 1=SubtractFirst, 2=SubtractAvgFirstThird
113
  //
114
  // Third: 0=nop, 1=SubtractFirst
115
2.49k
  int custom = rct_type % 7;
116
  // Special case: permute-only. Swap channels around.
117
2.49k
  if (custom == 0) {
118
23
    Channel ch0 = std::move(input.channel[m]);
119
23
    Channel ch1 = std::move(input.channel[m + 1]);
120
23
    Channel ch2 = std::move(input.channel[m + 2]);
121
23
    input.channel[m + (permutation % 3)] = std::move(ch0);
122
23
    input.channel[m + ((permutation + 1 + permutation / 3) % 3)] =
123
23
        std::move(ch1);
124
23
    input.channel[m + ((permutation + 2 - permutation / 3) % 3)] =
125
23
        std::move(ch2);
126
23
    return true;
127
23
  }
128
2.47k
  constexpr decltype(&InvRCTRow<0>) inv_rct_row[] = {
129
2.47k
      InvRCTRow<0>, InvRCTRow<1>, InvRCTRow<2>, InvRCTRow<3>,
130
2.47k
      InvRCTRow<4>, InvRCTRow<5>, InvRCTRow<6>};
131
2.47k
  const auto process_row = [&](const uint32_t task,
132
71.5k
                               size_t /* thread */) -> Status {
133
71.5k
    const size_t y = task;
134
71.5k
    const pixel_type* in0 = input.channel[m].Row(y);
135
71.5k
    const pixel_type* in1 = input.channel[m + 1].Row(y);
136
71.5k
    const pixel_type* in2 = input.channel[m + 2].Row(y);
137
71.5k
    pixel_type* out0 = input.channel[m + (permutation % 3)].Row(y);
138
71.5k
    pixel_type* out1 =
139
71.5k
        input.channel[m + ((permutation + 1 + permutation / 3) % 3)].Row(y);
140
71.5k
    pixel_type* out2 =
141
71.5k
        input.channel[m + ((permutation + 2 - permutation / 3) % 3)].Row(y);
142
71.5k
    inv_rct_row[custom](in0, in1, in2, out0, out1, out2, w);
143
71.5k
    return true;
144
71.5k
  };
Unexecuted instantiation: rct.cc:jxl::N_SSE4::InvRCT(jxl::Image&, unsigned long, unsigned long, jxl::ThreadPool*)::$_0::operator()(unsigned int, unsigned long) const
rct.cc:jxl::N_AVX2::InvRCT(jxl::Image&, unsigned long, unsigned long, jxl::ThreadPool*)::$_0::operator()(unsigned int, unsigned long) const
Line
Count
Source
132
71.5k
                               size_t /* thread */) -> Status {
133
71.5k
    const size_t y = task;
134
71.5k
    const pixel_type* in0 = input.channel[m].Row(y);
135
71.5k
    const pixel_type* in1 = input.channel[m + 1].Row(y);
136
71.5k
    const pixel_type* in2 = input.channel[m + 2].Row(y);
137
71.5k
    pixel_type* out0 = input.channel[m + (permutation % 3)].Row(y);
138
71.5k
    pixel_type* out1 =
139
71.5k
        input.channel[m + ((permutation + 1 + permutation / 3) % 3)].Row(y);
140
71.5k
    pixel_type* out2 =
141
71.5k
        input.channel[m + ((permutation + 2 - permutation / 3) % 3)].Row(y);
142
71.5k
    inv_rct_row[custom](in0, in1, in2, out0, out1, out2, w);
143
71.5k
    return true;
144
71.5k
  };
Unexecuted instantiation: rct.cc:jxl::N_SSE2::InvRCT(jxl::Image&, unsigned long, unsigned long, jxl::ThreadPool*)::$_0::operator()(unsigned int, unsigned long) const
145
2.47k
  JXL_RETURN_IF_ERROR(
146
2.47k
      RunOnPool(pool, 0, h, ThreadPool::NoInit, process_row, "InvRCT"));
147
2.47k
  return true;
148
2.47k
}
Unexecuted instantiation: jxl::N_SSE4::InvRCT(jxl::Image&, unsigned long, unsigned long, jxl::ThreadPool*)
jxl::N_AVX2::InvRCT(jxl::Image&, unsigned long, unsigned long, jxl::ThreadPool*)
Line
Count
Source
97
3.55k
Status InvRCT(Image& input, size_t begin_c, size_t rct_type, ThreadPool* pool) {
98
3.55k
  JXL_RETURN_IF_ERROR(CheckEqualChannels(input, begin_c, begin_c + 2));
99
3.55k
  size_t m = begin_c;
100
3.55k
  Channel& c0 = input.channel[m + 0];
101
3.55k
  size_t w = c0.w;
102
3.55k
  size_t h = c0.h;
103
3.55k
  if (rct_type == 0) {  // noop
104
1.06k
    return true;
105
1.06k
  }
106
  // Permutation: 0=RGB, 1=GBR, 2=BRG, 3=RBG, 4=GRB, 5=BGR
107
2.49k
  int permutation = rct_type / 7;
108
2.49k
  JXL_ENSURE(permutation < 6);
109
  // 0-5 values have the low bit corresponding to Third and the high bits
110
  // corresponding to Second. 6 corresponds to YCoCg.
111
  //
112
  // Second: 0=nop, 1=SubtractFirst, 2=SubtractAvgFirstThird
113
  //
114
  // Third: 0=nop, 1=SubtractFirst
115
2.49k
  int custom = rct_type % 7;
116
  // Special case: permute-only. Swap channels around.
117
2.49k
  if (custom == 0) {
118
23
    Channel ch0 = std::move(input.channel[m]);
119
23
    Channel ch1 = std::move(input.channel[m + 1]);
120
23
    Channel ch2 = std::move(input.channel[m + 2]);
121
23
    input.channel[m + (permutation % 3)] = std::move(ch0);
122
23
    input.channel[m + ((permutation + 1 + permutation / 3) % 3)] =
123
23
        std::move(ch1);
124
23
    input.channel[m + ((permutation + 2 - permutation / 3) % 3)] =
125
23
        std::move(ch2);
126
23
    return true;
127
23
  }
128
2.47k
  constexpr decltype(&InvRCTRow<0>) inv_rct_row[] = {
129
2.47k
      InvRCTRow<0>, InvRCTRow<1>, InvRCTRow<2>, InvRCTRow<3>,
130
2.47k
      InvRCTRow<4>, InvRCTRow<5>, InvRCTRow<6>};
131
2.47k
  const auto process_row = [&](const uint32_t task,
132
2.47k
                               size_t /* thread */) -> Status {
133
2.47k
    const size_t y = task;
134
2.47k
    const pixel_type* in0 = input.channel[m].Row(y);
135
2.47k
    const pixel_type* in1 = input.channel[m + 1].Row(y);
136
2.47k
    const pixel_type* in2 = input.channel[m + 2].Row(y);
137
2.47k
    pixel_type* out0 = input.channel[m + (permutation % 3)].Row(y);
138
2.47k
    pixel_type* out1 =
139
2.47k
        input.channel[m + ((permutation + 1 + permutation / 3) % 3)].Row(y);
140
2.47k
    pixel_type* out2 =
141
2.47k
        input.channel[m + ((permutation + 2 - permutation / 3) % 3)].Row(y);
142
2.47k
    inv_rct_row[custom](in0, in1, in2, out0, out1, out2, w);
143
2.47k
    return true;
144
2.47k
  };
145
2.47k
  JXL_RETURN_IF_ERROR(
146
2.47k
      RunOnPool(pool, 0, h, ThreadPool::NoInit, process_row, "InvRCT"));
147
2.47k
  return true;
148
2.47k
}
Unexecuted instantiation: jxl::N_SSE2::InvRCT(jxl::Image&, unsigned long, unsigned long, jxl::ThreadPool*)
149
150
}  // namespace HWY_NAMESPACE
151
}  // namespace jxl
152
HWY_AFTER_NAMESPACE();
153
154
#if HWY_ONCE
155
namespace jxl {
156
157
HWY_EXPORT(InvRCT);
158
3.55k
Status InvRCT(Image& input, size_t begin_c, size_t rct_type, ThreadPool* pool) {
159
3.55k
  return HWY_DYNAMIC_DISPATCH(InvRCT)(input, begin_c, rct_type, pool);
160
3.55k
}
161
162
}  // namespace jxl
163
#endif