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https://github.com/cemu-project/cemu_graphic_packs.git
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c87f1051f5
Scale to res bloom n blur, shadows 0x0011 are too broken to fix
132 lines
3.6 KiB
Plaintext
132 lines
3.6 KiB
Plaintext
<?php
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include 'Source/functions.php';
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$fullWidth = $argv[1];
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$fullHeight = $argv[2];
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$scaleFactorX = always_decimal_format($fullWidth / 1280.0);
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$scaleFactorY = always_decimal_format($fullHeight / 720.0);
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?>
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#version 420
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#extension GL_ARB_texture_gather : enable
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#extension GL_ARB_separate_shader_objects : enable
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// shader f015876e4c8e82f9
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//menu 2d blur
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const float resScale = <?=$scaleFactorX?>;
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uniform ivec4 uf_remappedPS[1];
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uniform float uf_alphaTestRef;
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layout(binding = 1) uniform sampler2D textureUnitPS1;// Tex1 addr 0xf4000800 res 1280x720x1 dim 1 tm: 4 format 001a compSel: 0 1 2 3 mipView: 0x0 (num 0x1) sliceView: 0x0 (num 0x1) Sampler1 ClampX/Y/Z: 2 2 0 border: 0
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layout(location = 0) in vec4 passParameterSem129;
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layout(location = 1) in vec4 passParameterSem128;
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layout(location = 0) out vec4 passPixelColor0;
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uniform vec2 uf_fragCoordScale;
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int clampFI32(int v)
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{
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if( v == 0x7FFFFFFF )
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return floatBitsToInt(1.0);
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else if( v == 0xFFFFFFFF )
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return floatBitsToInt(0.0);
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return floatBitsToInt(clamp(intBitsToFloat(v), 0.0, 1.0));
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}
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float mul_nonIEEE(float a, float b){ if( a == 0.0 || b == 0.0 ) return 0.0; return a*b; }
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void main()
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{
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vec4 R0f = vec4(0.0);
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vec4 R1f = vec4(0.0);
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vec4 R2f = vec4(0.0);
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vec4 R3f = vec4(0.0);
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vec4 R4f = vec4(0.0);
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vec4 R5f = vec4(0.0);
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vec4 R6f = vec4(0.0);
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vec4 R7f = vec4(0.0);
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vec4 R8f = vec4(0.0);
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vec4 R126f = vec4(0.0);
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vec4 R127f = vec4(0.0);
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float backupReg0f, backupReg1f, backupReg2f, backupReg3f, backupReg4f;
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vec4 PV0f = vec4(0.0), PV1f = vec4(0.0);
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float PS0f = 0.0, PS1f = 0.0;
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vec4 tempf = vec4(0.0);
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float tempResultf;
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int tempResulti;
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ivec4 ARi = ivec4(0);
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bool predResult = true;
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vec3 cubeMapSTM;
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int cubeMapFaceId;
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R0f = passParameterSem129;
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R1f = passParameterSem128;
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// 0
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R7f.x = intBitsToFloat(uf_remappedPS[0].z) * intBitsToFloat(0x3e124925);
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PV0f.z = mul_nonIEEE(R0f.w, intBitsToFloat(uf_remappedPS[0].w));
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PV0f.z *= 2.0;
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R8f.w = 1.0;
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PS0f = 1.0 / R1f.w;
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PS0f /= 2.0;
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// 1
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R127f.x = PV0f.z * intBitsToFloat(0x3ab60b61)/ resScale;
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R127f.y = PV0f.z * intBitsToFloat(0x3b360b61)/ resScale;
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PV1f.z = mul_nonIEEE(R1f.x, PS0f);
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PV1f.w = mul_nonIEEE(-(R1f.y), PS0f);
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R127f.w = PV0f.z * intBitsToFloat(0x3b888889)/ resScale;
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PS1f = R127f.w;
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// 2
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R6f.x = PV1f.z + 0.5;
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PV0f.x = R6f.x;
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R6f.y = PV1f.w + 0.5;
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PV0f.y = R6f.y;
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// 3
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R1f.x = PV0f.x;
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R1f.y = PV0f.y + -(R127f.x);
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R0f.z = PV0f.x;
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R0f.y = PV0f.y + R127f.x;
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PS1f = R0f.y;
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// 4
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R2f.x = R6f.x;
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R2f.y = R6f.y + -(R127f.y);
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R3f.z = R6f.x;
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R3f.y = R6f.y + R127f.y;
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PS0f = R3f.y;
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// 5
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R4f.x = R6f.x;
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R4f.y = R6f.y + -(R127f.w);
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R5f.z = R6f.x;
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R5f.y = R6f.y + R127f.w;
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PS1f = R5f.y;
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R1f.xyz = (texture(textureUnitPS1, R1f.xy).xyz);
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R0f.xyz = (texture(textureUnitPS1, R0f.zy).xyz);
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R2f.xyz = (texture(textureUnitPS1, R2f.xy).xyz);
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R3f.xyz = (texture(textureUnitPS1, R3f.zy).xyz);
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R4f.xyz = (texture(textureUnitPS1, R4f.xy).xyz);
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R5f.xyz = (texture(textureUnitPS1, R5f.zy).xyz);
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R6f.xyz = (texture(textureUnitPS1, R6f.xy).xyz);
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// 0
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backupReg0f = R0f.x;
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PV0f.x = R1f.x + backupReg0f;
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R127f.z = R1f.z + R0f.z;
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PV0f.w = R1f.y + R0f.y;
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// 1
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R127f.x = R2f.x + R3f.x;
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R127f.y = R6f.x + PV0f.x;
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R126f.z = R2f.z + R3f.z;
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R127f.w = R2f.y + R3f.y;
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R126f.w = R6f.y + PV0f.w;
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PS1f = R126f.w;
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// 2
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PV0f.x = R4f.y + R5f.y;
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PV0f.y = R4f.x + R5f.x;
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PV0f.w = R4f.z + R5f.z;
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// 3
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PV1f.x = PV0f.y + R127f.x;
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PV1f.y = PV0f.x + R127f.w;
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PV1f.z = R6f.z + R127f.z;
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PV1f.w = PV0f.w + R126f.z;
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// 4
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PV0f.y = PV1f.z + PV1f.w;
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PV0f.z = R126f.w + PV1f.y;
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PV0f.w = R127f.y + PV1f.x;
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// 5
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R8f.x = mul_nonIEEE(PV0f.w, R7f.x);
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R8f.y = mul_nonIEEE(PV0f.z, R7f.x);
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R8f.z = mul_nonIEEE(PV0f.y, R7f.x);
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// export
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if( ((vec4(R8f.x, R8f.y, R8f.z, R8f.w)).a >= uf_alphaTestRef) == false) discard;
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passPixelColor0 = vec4(R8f.x, R8f.y, R8f.z, R8f.w);
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}
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