qr shader: add ec level and mask type bits
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parent
f6f7c03c14
commit
f3f3f305e8
2 changed files with 19 additions and 12 deletions
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@ -61,7 +61,7 @@ Material:
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m_Scale: {x: 1, y: 1}
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m_Offset: {x: 0, y: 0}
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m_Ints:
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- _Version: 63
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- _Version: 15
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m_Floats:
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- _BumpScale: 1
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- _Cutoff: 0.5
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@ -12,13 +12,16 @@ CGPROGRAM
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struct Input{float2 uv_;};
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uint _Version;
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// #define VERSION 15
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#define VERSION _Version
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#define WIDTH (21 + (VERSION-1)*4)
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#define WIDTH (17 + VERSION * 4)
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#define ALIGNERS ((VERSION / 7) + 2)
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#define ALIGNER_SPACING ((WIDTH - 8 - 5) / (ALIGNERS-1))
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#define ALIGNER_SPACING ((WIDTH - 13) / (ALIGNERS-1))
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#define MISALIGNMENT ((WIDTH - 13) % (ALIGNERS-1))
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#define EC_LEVEL (3)
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#define MASK_TYPE (4)
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#define FORMAT_BITS ((EC_LEVEL << 3) | MASK_TYPE)
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/*
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v = 15
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width = 77
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@ -29,6 +32,7 @@ CGPROGRAM
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#define WHITE 1
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#define BLACK 0
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#define PINK float4(1, .3, .5, 1)
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#define BLUE float4(0, .4, .7, 1)
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float4 finder_pattern(uint x, uint y) {
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if (x < 6 && x > 0 && y < 6 && y > 0) return !(x < 5 && x > 1 && y < 5 && y > 1);
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@ -51,6 +55,9 @@ CGPROGRAM
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if (px < 8 && py > WIDTH - 9) return finder_pattern(px, py - WIDTH + 7);
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if (px > WIDTH - 9 && py < 8) return finder_pattern(px - WIDTH + 7, py);
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// filler pixel
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if (px == 8 && py == WIDTH - 8) return 0;
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// Timing patterns
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if (px == 6) return py & 1;
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if (py == 6) return px & 1;
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@ -75,25 +82,25 @@ CGPROGRAM
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// }
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uint ax = x % ALIGNER_SPACING;
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uint ay = y % ALIGNER_SPACING;
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if (ax < 5 && ay < 5){
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// return PINK;
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// return (ax|ay) & 1;
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if (ax < 5 && ay < 5) {
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return (ax < 4 && ax > 0 && ay < 4 && ay > 0 && !(ax == 2 && ay == 2));
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}
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}
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// Format bits
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if (px == 8 && (py < 9 || py > WIDTH - 9)) return 0.8;
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if (py == 8 && (px < 9 || px > WIDTH - 9)) return 0.8;
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if (px < 5 && py == 8) return (FORMAT_BITS & (1 << (4 - px))) == 0;
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if (px == 8 && py > WIDTH - 6) return (FORMAT_BITS & (1 << py + 5 - WIDTH)) == 0;
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if (px == 8 && (py < 9 || py > WIDTH - 9)) return PINK;
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if (py == 8 && (px < 9 || px > WIDTH - 9)) return PINK;
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uint column = (WIDTH - px - (px > 6))/2;
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uint direction_up = column & 1;
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return column / 10.;
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return lerp(BLUE, PINK, column / (WIDTH/2.));
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// return direction_up;
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return 0.5;
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}
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void s (Input IN, inout SurfaceOutputStandard o) {o.Albedo = main(IN.uv_); }
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void s (Input IN, inout SurfaceOutputStandard o) { o.Albedo = main(IN.uv_); }
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ENDCG
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}}
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