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sfall/artifacts/example_mods/GlobalShaders/global.fx
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///////////////////////////////////////////////////////////////////////////////
// Blur filter setting
//
// min: blurFalloff 8, sharpness 10/8
// mid: blurFalloff 6, sharpness 8
// max: blurFalloff 4, sharpness 6
///////////////////////////////////////////////////////////////////////////////
#define blurFalloff 4.0
#define sharpness 6.0
///////////////////////////////////////////////////////////////////////////////
// Sharpen filter setting
//
// min: Sharpen 0.5, EdgeSharpen 1.0
// mid: Sharpen 1.0, EdgeSharpen -0.25
// max: Sharpen 1.75, EdgeSharpen -0.5 (1.5, -0.25)
///////////////////////////////////////////////////////////////////////////////
#define Sharpen 0.5
#define EdgeSharpen 1.0
texture bloomMap;
sampler s0;
sampler BloomSampler : samplerstate
{
Texture = bloomMap;
MinFilter = Linear;
MagFilter = Linear;
AddressU = Clamp;
AddressV = Clamp;
};
// Variables that set the width and height of the current game resolution from sfall
float w;
float h;
static const float2 resolution = float2(w, h);
static const float2 wPass = float2(1, 0);
static const float2 hPass = float2(0, 1);
float Brightness(float3 color)
{
return 0.299 * color.r + 0.587 * color.g + 0.114 * color.b;
}
float3 BlurFunction(float2 uv, float brightness, inout float totalWeight)
{
float3 pointColor = (tex2Dlod(s0, float4(uv, 0, 0)).rgb);
float diff = abs(brightness - Brightness(pointColor));
float weight = exp2((-0.25 * blurFalloff) - (diff * sharpness));
totalWeight += weight;
return pointColor * weight;
}
float4 BlurDeltaPassPS(float2 uv : TEXCOORD0, uniform float2 delta) : COLOR0
{
float3 sumColor = (tex2D(s0, uv).rgb);
float brightness = Brightness(sumColor);
delta *= (1 / resolution);
float totalWeight = 1;
float2 pointUV = uv + delta;
sumColor += BlurFunction(pointUV, brightness, totalWeight);
pointUV = uv - delta;
sumColor += BlurFunction(pointUV, brightness, totalWeight);
return float4((sumColor / totalWeight), 1);
}
static const float2 wDelta = float2(1, 0) * (1 / resolution);
static const float2 hDelta = float2(0, 1) * (1 / resolution);
float4 BlurPS(float4 color : COLOR0, float2 uv : TEXCOORD0) : COLOR0
{
float totalWeight = 1;
float3 sumColor = (tex2D(s0, uv).rgb);
float brightness = Brightness(sumColor);
float2 pointUV = uv + wDelta;
sumColor += BlurFunction(pointUV, brightness, totalWeight);
pointUV = uv - wDelta;
sumColor += BlurFunction(pointUV, brightness, totalWeight);
pointUV = uv + hDelta;
sumColor += BlurFunction(pointUV, brightness, totalWeight);
pointUV = uv - hDelta;
sumColor += BlurFunction(pointUV, brightness, totalWeight);
return float4((sumColor / totalWeight), 1);
}
///////////////////////////////////////////////////////////////////////////////
// Bloom effect setting
//
// min: BloomIntensity .8
// mid: BloomIntensity .85
// max: BloomIntensity .9
///////////////////////////////////////////////////////////////////////////////
#define BaseIntensity 1.2
#define BaseSaturation 1.0
#define BloomIntensity 0.8
#define BloomSaturation 0.35
#define BloomThreshold 0.35
#define BlurPower 0.002
// pseudo gauss blur
static const float2 offsets[12] = {
-0.326212, -0.405805,
-0.840144, -0.073580,
-0.695914, 0.457137,
-0.203345, 0.620716,
0.962340, -0.194983,
0.473434, -0.480026,
0.519456, 0.767022,
0.185461, -0.893124,
0.507431, 0.064425,
0.896420, 0.412458,
-0.321940, -0.932615,
-0.791559, -0.597705,
};
float4 AdjustSaturation(float4 color, float saturation)
{
float grey = dot(color, float3(0.3, 0.59, 0.11));
return lerp(grey, color, saturation);
}
float4 BloomPS(float4 color : COLOR0, float2 texCoord : TEXCOORD0) : COLOR0
{
float4 original = tex2D(s0, texCoord);
original = AdjustSaturation(original, BaseSaturation) * BaseIntensity;
float sum = (original.r + original.g + original.b) * 0.333;
if (sum >= 0.95) return original;
// bloom blur
float4 bloomBlur = tex2D(s0, texCoord);
for(int i = 0; i < 12; i++)
{
bloomBlur += tex2D(s0, texCoord + BlurPower * offsets[i]);
}
bloomBlur *= 0.085;
float intensity = BloomIntensity - lerp(0.0, 0.2, sum);
bloomBlur = AdjustSaturation(bloomBlur, BloomSaturation) * intensity;
bloomBlur = saturate((bloomBlur - BloomThreshold) / (1 - BloomThreshold));
return bloomBlur + original;
}
static const float CoefBlur = (Sharpen * 0.5);
static const float CoefOrig = (1 + CoefBlur);
// for the sharpen edge
#define SharpenEdge 0.4
static const float sharpenVal0 = (Sharpen * (1.5 + EdgeSharpen));
static const float sharpenVal1 = ((sharpenVal0 - 1) / 8.0);
// pixel "width"
static const float px = (1.0 / w);
static const float py = (1.0 / h);
// for the blur filter
#define mean 1.0
static const float dx = (mean * px);
static const float dy = (mean * py);
float4 SharpenComplexPS(float4 color : COLOR0, float2 texCoord : TEXCOORD0) : COLOR0
{
float4 c0 = tex2D(s0, texCoord); // get original pixel
// edge detection
// Get neighbor points
// [ c1, c2, c3 ]
// [ c4, c0, c5 ]
// [ c6, c7, c8 ]
float4 c1 = tex2D(s0, texCoord + float2(-px, -py));
float4 c2 = tex2D(s0, texCoord + float2( 0, -py));
float4 c3 = tex2D(s0, texCoord + float2( px, -py));
float4 c4 = tex2D(s0, texCoord + float2(-px, 0));
float4 c5 = tex2D(s0, texCoord + float2( px, 0));
float4 c6 = tex2D(s0, texCoord + float2(-px, py));
float4 c7 = tex2D(s0, texCoord + float2( 0, py));
float4 c8 = tex2D(s0, texCoord + float2( px, py));
// using Sobel filter
// horizontal gradient
// [ -1, 0, 1 ]
// [ -2, 0, 2 ]
// [ -1, 0, 1 ]
float delta1 = (c3 + 2 * c5 + c8) - (c1 + 2 * c4 + c6);
// vertical gradient
// [ -1, - 2, -1 ]
// [ 0, 0, 0 ]
// [ 1, 2, 1 ]
float4 c13 = c1 + c3;
float4 c68 = c6 + c8;
float delta2 = (c68 + 2 * c7) - (c13 + 2 * c2);
// computation
if (sqrt(mul(delta1, delta1) + mul(delta2, delta2)) > SharpenEdge) {
// if we have an edge, use sharpen
return c0 * sharpenVal0 - (c13 + c2 + c4 + c5 + c68 + c7) * sharpenVal1;
// Display edges in red...
//return float4( 1.0, 0.0, 0.0, 0.0 );
} else {
// else return corrected image
// compute blurred image (gaussian filter)
c1 = tex2D(s0, texCoord + float2(-dx, -dy));
c2 = tex2D(s0, texCoord + float2( 0, -dy));
c3 = tex2D(s0, texCoord + float2( dx, -dy));
c4 = tex2D(s0, texCoord + float2(-dx, 0));
c5 = tex2D(s0, texCoord + float2( dx, 0));
c6 = tex2D(s0, texCoord + float2(-dx, dy));
c7 = tex2D(s0, texCoord + float2( 0, dy));
c8 = tex2D(s0, texCoord + float2( dx, dy));
// gaussian filter
// [ 1, 2, 1 ]
// [ 2, 4, 2 ]
// [ 1, 2, 1 ]
// to normalize the values, we need to divide by the coeff sum
float4 flou = (c1 + c3 + c6 + c8 + 2 * (c2 + c4 + c5 + c7) + 4 * c0) * 0.0625; // 1 / (1+2+1+2+4+2+1+2+1) = 1 / 16 = 0.0625
// substract blurred image from original image
return (CoefOrig * c0 - CoefBlur * flou);
}
}
technique BlurBloom
{
//pass P0 { PixelShader = compile ps_3_0 BlurDeltaPassPS(wPass); }
//pass P1 { PixelShader = compile ps_3_0 BlurDeltaPassPS(hPass); }
pass P0 { PixelShader = compile ps_3_0 BlurPS(); }
pass P3 { PixelShader = compile ps_2_0 BloomPS(); }
pass P2 { PixelShader = compile ps_2_0 SharpenComplexPS(); }
}