116 lines
3.8 KiB
HLSL
116 lines
3.8 KiB
HLSL
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#include "def_effect.fx"
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//=============================================================================
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//Object
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VSOBJ_OUTPUT Object_VS( VSOBJ_INPUT In )
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{
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VSOBJ_OUTPUT Out = (VSOBJ_OUTPUT) 0;
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float4 pos = In.position;
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float3 normal = In.normal;
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float4 color = In.diffuse;
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float4 output_pos, pos_world;
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int b_index = In.indices[0];
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// transform position to screen space before changing it.
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pos_world = mul( pos, blendMatrices[b_index] );
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output_pos = mul( pos_world, view_proj_matrix );
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Out.position = output_pos;
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//apply fog
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float distfog = saturate((fFogDistEnd - output_pos.z)/(fFogDistEnd - fFogDistStart));
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float heightfog = saturate((fFogHeightEnd - pos_world.z)/(fFogHeightEnd - fFogHeightStart));
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Out.fog = min(distfog, heightfog);
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float3 N = normalize(mul(normal, (float3x3)blendMatrices[b_index])); // normal (view space)
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float nLength = length(Light_position - pos_world);
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float3 L = normalize(Light_position - pos_world);
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float Atten = 1/(1+Light_ambient.a*nLength);
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// eye-baseÀÇ half-way º¤ÅÍ
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float3 light_vector = -Light_direction_forsp;
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float3 eye_vector = Camera_position - pos_world;
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float3 halfway = normalize(normalize(light_vector) + normalize(eye_vector));
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float ddot = saturate(dot(N, L));
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float sdot = saturate(dot(N, halfway) + 0.1);
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Out.diffuse = Light_ambient + max(Light_diffuse * ddot * Atten, Light_specular * pow(sdot, 7)); // diffuse + ambient
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Out.diffuse.a = fVisibility;
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Out.texCoord1 = fUVAnimation.w*In.texCoord + fUVAnimation;
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float heightturm = (pos_world.z - fTerrainTextureCenter.z);
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float4 litproj = heightturm*float4(L.x, L.y, L.z, L.z);///L.z;
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Out.texCoord2 = fTerrain1stTextureScale * (pos_world - fTerrainTextureCenter - litproj);
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heightturm = (pos_world.z - fTerrainTextureCenterDusk.z);
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litproj = heightturm*float4(L.x, L.y, L.z, L.z);///L.z;
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Out.texCoord3 = fTerrain2ndTextureScale * (pos_world - fTerrainTextureCenterDusk - litproj);
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return Out;
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}
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VSOBJ_NOLIGHT_OUTPUT ObjectNoLight_VS( VSOBJ_INPUT In )
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{
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VSOBJ_NOLIGHT_OUTPUT Out = (VSOBJ_NOLIGHT_OUTPUT) 0;
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float4 pos = In.position;
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float3 normal = In.normal;
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float4 color = In.diffuse;
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float4 output_pos, pos_world;
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int b_index = In.indices[0];
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// transform position to screen space before changing it.
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pos_world = mul( pos, blendMatrices[b_index] );
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output_pos = mul( pos_world, view_proj_matrix );
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Out.position = output_pos;
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//apply fog
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float distfog = saturate((fFogDistEnd - output_pos.z)/(fFogDistEnd - fFogDistStart));
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float heightfog = saturate((fFogHeightEnd - pos_world.z)/(fFogHeightEnd - fFogHeightStart));
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Out.fog = min(distfog, heightfog);
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float3 N = normalize(mul(normal, (float3x3)blendMatrices[b_index])); // normal (view space)
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float nLength = length(Light_position - pos_world);
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float3 L = normalize(Light_position - pos_world);
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float Atten = 1/(1+Light_ambient.a*nLength);
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// eye-baseÀÇ half-way º¤ÅÍ
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float3 light_vector = -Light_direction_forsp;
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float3 eye_vector = Camera_position - pos_world;
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float3 halfway = normalize(normalize(light_vector) + normalize(eye_vector));
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//float ddot = saturate(dot(N, L));
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//float sdot = saturate(dot(normal, halfway));
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Out.diffuse = Light_ambient + Light_diffuse;// * ddot * Atten + Light_specular * pow(dotval, 7); // diffuse + ambient
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Out.diffuse.a = 1;//fVisibility;
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Out.texCoord = fUVAnimation.w*In.texCoord + fUVAnimation;
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return Out;
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}
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//=============================================================================
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//Object Mesh Å×Å©´Ð
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technique ObjectTech_2x
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{
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pass P0
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{
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VertexShader = compile vs_1_1 Object_VS();
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PixelShader = NULL;
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}
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}
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technique ObjectNoLightTech_2x
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{
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pass P0
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{
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VertexShader = compile vs_1_1 ObjectNoLight_VS();
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PixelShader = NULL;
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}
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} |