"\n"
"#if __VERSION__ >= 130\n"
"# ifdef VERTEX_SHADER\n"
-"# define varying out\n"
-"# define attribute in\n"
+"# define dp_varying out\n"
+"# define dp_attribute in\n"
"# endif\n"
"# ifdef FRAGMENT_SHADER\n"
"out vec4 dp_FragColor;\n"
-"# define gl_FragColor dp_FragColor\n"
-"# define varying in\n"
-"# define attribute in\n"
+"# define dp_varying in\n"
+"# define dp_attribute in\n"
"# endif\n"
-"# define texture1D texture\n"
-"# define texture2D texture\n"
-"# define texture3D texture\n"
-"# define textureCube texture\n"
+"# define dp_offsetmapping_dFdx dFdx\n"
+"# define dp_offsetmapping_dFdy dFdx\n"
+"# define dp_textureGrad textureGrad\n"
+"# define dp_texture2D texture\n"
+"# define dp_texture3D texture\n"
+"# define dp_textureCube texture\n"
"#else\n"
-"# define textureGrad(a,b,c,d) texture2D(a,b)\n"
-"# define dFdx(a) 0\n"
-"# define dFdy(a) 0\n"
+"# ifdef FRAGMENT_SHADER\n"
+"# define dp_FragColor gl_FragColor\n"
+"# endif\n"
+"# define dp_varying varying\n"
+"# define dp_attribute attribute\n"
+"# define dp_offsetmapping_dFdx(a) 0\n"
+"# define dp_offsetmapping_dFdy(a) 0\n"
+"# define dp_textureGrad(a,b,c,d) dp_texture2D(a,b)\n"
+"# define dp_texture2D texture2D\n"
+"# define dp_texture3D texture3D\n"
+"# define dp_textureCube textureCube\n"
"#endif\n"
"\n"
"#ifdef VERTEX_SHADER\n"
-"attribute vec4 Attrib_Position; // vertex\n"
-"attribute vec4 Attrib_Color; // color\n"
-"attribute vec4 Attrib_TexCoord0; // material texcoords\n"
-"attribute vec3 Attrib_TexCoord1; // svector\n"
-"attribute vec3 Attrib_TexCoord2; // tvector\n"
-"attribute vec3 Attrib_TexCoord3; // normal\n"
-"attribute vec4 Attrib_TexCoord4; // lightmap texcoords\n"
+"dp_attribute vec4 Attrib_Position; // vertex\n"
+"dp_attribute vec4 Attrib_Color; // color\n"
+"dp_attribute vec4 Attrib_TexCoord0; // material texcoords\n"
+"dp_attribute vec3 Attrib_TexCoord1; // svector\n"
+"dp_attribute vec3 Attrib_TexCoord2; // tvector\n"
+"dp_attribute vec3 Attrib_TexCoord3; // normal\n"
+"dp_attribute vec4 Attrib_TexCoord4; // lightmap texcoords\n"
"#endif\n"
-"varying mediump vec4 VertexColor;\n"
+"dp_varying mediump vec4 VertexColor;\n"
"\n"
"#if defined(USEFOGINSIDE) || defined(USEFOGOUTSIDE) || defined(USEFOGHEIGHTTEXTURE)\n"
"# define USEFOG\n"
"#ifdef FRAGMENT_SHADER\n"
"void main(void)\n"
"{\n"
-" gl_FragColor = VertexColor;\n"
+" dp_FragColor = VertexColor;\n"
"}\n"
"#endif\n"
"#else // !MODE_SHOWDEPTH\n"
"\n"
"\n"
"#ifdef MODE_POSTPROCESS\n"
-"varying mediump vec2 TexCoord1;\n"
-"varying mediump vec2 TexCoord2;\n"
+"dp_varying mediump vec2 TexCoord1;\n"
+"dp_varying mediump vec2 TexCoord2;\n"
"\n"
"#ifdef VERTEX_SHADER\n"
"void main(void)\n"
"uniform mediump vec2 PixelSize;\n"
"void main(void)\n"
"{\n"
-" gl_FragColor = texture2D(Texture_First, TexCoord1);\n"
+" dp_FragColor = dp_texture2D(Texture_First, TexCoord1);\n"
"#ifdef USEBLOOM\n"
-" gl_FragColor += max(vec4(0,0,0,0), texture2D(Texture_Second, TexCoord2) - BloomColorSubtract);\n"
+" dp_FragColor += max(vec4(0,0,0,0), dp_texture2D(Texture_Second, TexCoord2) - BloomColorSubtract);\n"
"#endif\n"
"#ifdef USEVIEWTINT\n"
-" gl_FragColor = mix(gl_FragColor, ViewTintColor, ViewTintColor.a);\n"
+" dp_FragColor = mix(dp_FragColor, ViewTintColor, ViewTintColor.a);\n"
"#endif\n"
"\n"
"#ifdef USEPOSTPROCESSING\n"
" // vec2 ts = textureSize(Texture_First, 0);\n"
" // vec2 px = vec2(1/ts.x, 1/ts.y);\n"
" vec2 px = PixelSize;\n"
-" vec3 x1 = texture2D(Texture_First, TexCoord1 + vec2(-px.x, px.y)).rgb;\n"
-" vec3 x2 = texture2D(Texture_First, TexCoord1 + vec2(-px.x, 0.0)).rgb;\n"
-" vec3 x3 = texture2D(Texture_First, TexCoord1 + vec2(-px.x,-px.y)).rgb;\n"
-" vec3 x4 = texture2D(Texture_First, TexCoord1 + vec2( px.x, px.y)).rgb;\n"
-" vec3 x5 = texture2D(Texture_First, TexCoord1 + vec2( px.x, 0.0)).rgb;\n"
-" vec3 x6 = texture2D(Texture_First, TexCoord1 + vec2( px.x,-px.y)).rgb;\n"
-" vec3 y1 = texture2D(Texture_First, TexCoord1 + vec2( px.x,-px.y)).rgb;\n"
-" vec3 y2 = texture2D(Texture_First, TexCoord1 + vec2( 0.0,-px.y)).rgb;\n"
-" vec3 y3 = texture2D(Texture_First, TexCoord1 + vec2(-px.x,-px.y)).rgb;\n"
-" vec3 y4 = texture2D(Texture_First, TexCoord1 + vec2( px.x, px.y)).rgb;\n"
-" vec3 y5 = texture2D(Texture_First, TexCoord1 + vec2( 0.0, px.y)).rgb;\n"
-" vec3 y6 = texture2D(Texture_First, TexCoord1 + vec2(-px.x, px.y)).rgb;\n"
+" vec3 x1 = dp_texture2D(Texture_First, TexCoord1 + vec2(-px.x, px.y)).rgb;\n"
+" vec3 x2 = dp_texture2D(Texture_First, TexCoord1 + vec2(-px.x, 0.0)).rgb;\n"
+" vec3 x3 = dp_texture2D(Texture_First, TexCoord1 + vec2(-px.x,-px.y)).rgb;\n"
+" vec3 x4 = dp_texture2D(Texture_First, TexCoord1 + vec2( px.x, px.y)).rgb;\n"
+" vec3 x5 = dp_texture2D(Texture_First, TexCoord1 + vec2( px.x, 0.0)).rgb;\n"
+" vec3 x6 = dp_texture2D(Texture_First, TexCoord1 + vec2( px.x,-px.y)).rgb;\n"
+" vec3 y1 = dp_texture2D(Texture_First, TexCoord1 + vec2( px.x,-px.y)).rgb;\n"
+" vec3 y2 = dp_texture2D(Texture_First, TexCoord1 + vec2( 0.0,-px.y)).rgb;\n"
+" vec3 y3 = dp_texture2D(Texture_First, TexCoord1 + vec2(-px.x,-px.y)).rgb;\n"
+" vec3 y4 = dp_texture2D(Texture_First, TexCoord1 + vec2( px.x, px.y)).rgb;\n"
+" vec3 y5 = dp_texture2D(Texture_First, TexCoord1 + vec2( 0.0, px.y)).rgb;\n"
+" vec3 y6 = dp_texture2D(Texture_First, TexCoord1 + vec2(-px.x, px.y)).rgb;\n"
" float px1 = -1.0 * dot(vec3(0.3, 0.59, 0.11), x1);\n"
" float px2 = -2.0 * dot(vec3(0.3, 0.59, 0.11), x2);\n"
" float px3 = -1.0 * dot(vec3(0.3, 0.59, 0.11), x3);\n"
" float py5 = 2.0 * dot(vec3(0.3, 0.59, 0.11), y5);\n"
" float py6 = 1.0 * dot(vec3(0.3, 0.59, 0.11), y6);\n"
" sobel = 0.25 * abs(px1 + px2 + px3 + px4 + px5 + px6) + 0.25 * abs(py1 + py2 + py3 + py4 + py5 + py6);\n"
-" gl_FragColor += texture2D(Texture_First, TexCoord1 + PixelSize*UserVec1.x*vec2(-0.987688, -0.156434)) * UserVec1.y;\n"
-" gl_FragColor += texture2D(Texture_First, TexCoord1 + PixelSize*UserVec1.x*vec2(-0.156434, -0.891007)) * UserVec1.y;\n"
-" gl_FragColor += texture2D(Texture_First, TexCoord1 + PixelSize*UserVec1.x*vec2( 0.891007, -0.453990)) * UserVec1.y;\n"
-" gl_FragColor += texture2D(Texture_First, TexCoord1 + PixelSize*UserVec1.x*vec2( 0.707107, 0.707107)) * UserVec1.y;\n"
-" gl_FragColor += texture2D(Texture_First, TexCoord1 + PixelSize*UserVec1.x*vec2(-0.453990, 0.891007)) * UserVec1.y;\n"
-" gl_FragColor /= (1.0 + 5.0 * UserVec1.y);\n"
-" gl_FragColor.rgb = gl_FragColor.rgb * (1.0 + UserVec2.x) + vec3(max(0.0, sobel - UserVec2.z))*UserVec2.y;\n"
+" dp_FragColor += dp_texture2D(Texture_First, TexCoord1 + PixelSize*UserVec1.x*vec2(-0.987688, -0.156434)) * UserVec1.y;\n"
+" dp_FragColor += dp_texture2D(Texture_First, TexCoord1 + PixelSize*UserVec1.x*vec2(-0.156434, -0.891007)) * UserVec1.y;\n"
+" dp_FragColor += dp_texture2D(Texture_First, TexCoord1 + PixelSize*UserVec1.x*vec2( 0.891007, -0.453990)) * UserVec1.y;\n"
+" dp_FragColor += dp_texture2D(Texture_First, TexCoord1 + PixelSize*UserVec1.x*vec2( 0.707107, 0.707107)) * UserVec1.y;\n"
+" dp_FragColor += dp_texture2D(Texture_First, TexCoord1 + PixelSize*UserVec1.x*vec2(-0.453990, 0.891007)) * UserVec1.y;\n"
+" dp_FragColor /= (1.0 + 5.0 * UserVec1.y);\n"
+" dp_FragColor.rgb = dp_FragColor.rgb * (1.0 + UserVec2.x) + vec3(max(0.0, sobel - UserVec2.z))*UserVec2.y;\n"
"#endif\n"
"\n"
"#ifdef USESATURATION\n"
" //apply saturation BEFORE gamma ramps, so v_glslgamma value does not matter\n"
-" float y = dot(gl_FragColor.rgb, vec3(0.299, 0.587, 0.114));\n"
+" float y = dot(dp_FragColor.rgb, vec3(0.299, 0.587, 0.114));\n"
" // 'vampire sight' effect, wheres red is compensated\n"
" #ifdef SATURATION_REDCOMPENSATE\n"
-" float rboost = max(0.0, (gl_FragColor.r - max(gl_FragColor.g, gl_FragColor.b))*(1.0 - Saturation));\n"
-" gl_FragColor.rgb = mix(vec3(y), gl_FragColor.rgb, Saturation);\n"
-" gl_FragColor.r += rboost;\n"
+" float rboost = max(0.0, (dp_FragColor.r - max(dp_FragColor.g, dp_FragColor.b))*(1.0 - Saturation));\n"
+" dp_FragColor.rgb = mix(vec3(y), dp_FragColor.rgb, Saturation);\n"
+" dp_FragColor.r += rboost;\n"
" #else\n"
" // normal desaturation\n"
-" //gl_FragColor = vec3(y) + (gl_FragColor.rgb - vec3(y)) * Saturation;\n"
-" gl_FragColor.rgb = mix(vec3(y), gl_FragColor.rgb, Saturation);\n"
+" //dp_FragColor = vec3(y) + (dp_FragColor.rgb - vec3(y)) * Saturation;\n"
+" dp_FragColor.rgb = mix(vec3(y), dp_FragColor.rgb, Saturation);\n"
" #endif\n"
"#endif\n"
"\n"
"#ifdef USEGAMMARAMPS\n"
-" gl_FragColor.r = texture2D(Texture_GammaRamps, vec2(gl_FragColor.r, 0)).r;\n"
-" gl_FragColor.g = texture2D(Texture_GammaRamps, vec2(gl_FragColor.g, 0)).g;\n"
-" gl_FragColor.b = texture2D(Texture_GammaRamps, vec2(gl_FragColor.b, 0)).b;\n"
+" dp_FragColor.r = dp_texture2D(Texture_GammaRamps, vec2(dp_FragColor.r, 0)).r;\n"
+" dp_FragColor.g = dp_texture2D(Texture_GammaRamps, vec2(dp_FragColor.g, 0)).g;\n"
+" dp_FragColor.b = dp_texture2D(Texture_GammaRamps, vec2(dp_FragColor.b, 0)).b;\n"
"#endif\n"
"}\n"
"#endif\n"
"\n"
"#ifdef MODE_GENERIC\n"
"#ifdef USEDIFFUSE\n"
-"varying mediump vec2 TexCoord1;\n"
+"dp_varying mediump vec2 TexCoord1;\n"
"#endif\n"
"#ifdef USESPECULAR\n"
-"varying mediump vec2 TexCoord2;\n"
+"dp_varying mediump vec2 TexCoord2;\n"
"#endif\n"
"#ifdef VERTEX_SHADER\n"
"void main(void)\n"
"void main(void)\n"
"{\n"
"#ifdef USEVIEWTINT\n"
-" gl_FragColor = VertexColor;\n"
+" dp_FragColor = VertexColor;\n"
"#else\n"
-" gl_FragColor = vec4(1.0, 1.0, 1.0, 1.0);\n"
+" dp_FragColor = vec4(1.0, 1.0, 1.0, 1.0);\n"
"#endif\n"
"#ifdef USEDIFFUSE\n"
-" gl_FragColor *= texture2D(Texture_First, TexCoord1);\n"
+" dp_FragColor *= dp_texture2D(Texture_First, TexCoord1);\n"
"#endif\n"
"\n"
"#ifdef USESPECULAR\n"
-" vec4 tex2 = texture2D(Texture_Second, TexCoord2);\n"
+" vec4 tex2 = dp_texture2D(Texture_Second, TexCoord2);\n"
"# ifdef USECOLORMAPPING\n"
-" gl_FragColor *= tex2;\n"
+" dp_FragColor *= tex2;\n"
"# endif\n"
"# ifdef USEGLOW\n"
-" gl_FragColor += tex2;\n"
+" dp_FragColor += tex2;\n"
"# endif\n"
"# ifdef USEVERTEXTEXTUREBLEND\n"
-" gl_FragColor = mix(gl_FragColor, tex2, tex2.a);\n"
+" dp_FragColor = mix(dp_FragColor, tex2, tex2.a);\n"
"# endif\n"
"#endif\n"
"}\n"
"\n"
"\n"
"#ifdef MODE_BLOOMBLUR\n"
-"varying mediump vec2 TexCoord;\n"
+"dp_varying mediump vec2 TexCoord;\n"
"#ifdef VERTEX_SHADER\n"
"void main(void)\n"
"{\n"
"{\n"
" int i;\n"
" vec2 tc = TexCoord;\n"
-" vec3 color = texture2D(Texture_First, tc).rgb;\n"
+" vec3 color = dp_texture2D(Texture_First, tc).rgb;\n"
" tc += BloomBlur_Parameters.xy;\n"
" for (i = 1;i < SAMPLES;i++)\n"
" {\n"
-" color += texture2D(Texture_First, tc).rgb;\n"
+" color += dp_texture2D(Texture_First, tc).rgb;\n"
" tc += BloomBlur_Parameters.xy;\n"
" }\n"
-" gl_FragColor = vec4(color * BloomBlur_Parameters.z + vec3(BloomBlur_Parameters.w), 1);\n"
+" dp_FragColor = vec4(color * BloomBlur_Parameters.z + vec3(BloomBlur_Parameters.w), 1);\n"
"}\n"
"#endif\n"
"#else // !MODE_BLOOMBLUR\n"
"#ifdef MODE_REFRACTION\n"
-"varying mediump vec2 TexCoord;\n"
-"varying highp vec4 ModelViewProjectionPosition;\n"
+"dp_varying mediump vec2 TexCoord;\n"
+"dp_varying highp vec4 ModelViewProjectionPosition;\n"
"uniform highp mat4 TexMatrix;\n"
"#ifdef VERTEX_SHADER\n"
"\n"
"void main(void)\n"
"{\n"
" vec2 ScreenScaleRefractReflectIW = ScreenScaleRefractReflect.xy * (1.0 / ModelViewProjectionPosition.w);\n"
-" //vec2 ScreenTexCoord = (ModelViewProjectionPosition.xy + normalize(vec3(texture2D(Texture_Normal, TexCoord)) - vec3(0.5)).xy * DistortScaleRefractReflect.xy * 100) * ScreenScaleRefractReflectIW + ScreenCenterRefractReflect.xy;\n"
+" //vec2 ScreenTexCoord = (ModelViewProjectionPosition.xy + normalize(vec3(dp_texture2D(Texture_Normal, TexCoord)) - vec3(0.5)).xy * DistortScaleRefractReflect.xy * 100) * ScreenScaleRefractReflectIW + ScreenCenterRefractReflect.xy;\n"
" vec2 SafeScreenTexCoord = ModelViewProjectionPosition.xy * ScreenScaleRefractReflectIW + ScreenCenterRefractReflect.xy;\n"
-" vec2 ScreenTexCoord = SafeScreenTexCoord + vec2(normalize(vec3(texture2D(Texture_Normal, TexCoord)) - vec3(0.5))).xy * DistortScaleRefractReflect.xy;\n"
+" vec2 ScreenTexCoord = SafeScreenTexCoord + vec2(normalize(vec3(dp_texture2D(Texture_Normal, TexCoord)) - vec3(0.5))).xy * DistortScaleRefractReflect.xy;\n"
" // FIXME temporary hack to detect the case that the reflection\n"
" // gets blackened at edges due to leaving the area that contains actual\n"
" // content.\n"
" // Remove this 'ack once we have a better way to stop this thing from\n"
" // 'appening.\n"
-" float f = min(1.0, length(texture2D(Texture_Refraction, ScreenTexCoord + vec2(0.01, 0.01)).rgb) / 0.05);\n"
-" f *= min(1.0, length(texture2D(Texture_Refraction, ScreenTexCoord + vec2(0.01, -0.01)).rgb) / 0.05);\n"
-" f *= min(1.0, length(texture2D(Texture_Refraction, ScreenTexCoord + vec2(-0.01, 0.01)).rgb) / 0.05);\n"
-" f *= min(1.0, length(texture2D(Texture_Refraction, ScreenTexCoord + vec2(-0.01, -0.01)).rgb) / 0.05);\n"
+" float f = min(1.0, length(dp_texture2D(Texture_Refraction, ScreenTexCoord + vec2(0.01, 0.01)).rgb) / 0.05);\n"
+" f *= min(1.0, length(dp_texture2D(Texture_Refraction, ScreenTexCoord + vec2(0.01, -0.01)).rgb) / 0.05);\n"
+" f *= min(1.0, length(dp_texture2D(Texture_Refraction, ScreenTexCoord + vec2(-0.01, 0.01)).rgb) / 0.05);\n"
+" f *= min(1.0, length(dp_texture2D(Texture_Refraction, ScreenTexCoord + vec2(-0.01, -0.01)).rgb) / 0.05);\n"
" ScreenTexCoord = mix(SafeScreenTexCoord, ScreenTexCoord, f);\n"
-" gl_FragColor = vec4(texture2D(Texture_Refraction, ScreenTexCoord).rgb, 1.0) * RefractColor;\n"
+" dp_FragColor = vec4(dp_texture2D(Texture_Refraction, ScreenTexCoord).rgb, 1.0) * RefractColor;\n"
"}\n"
"#endif\n"
"#else // !MODE_REFRACTION\n"
"\n"
"\n"
"#ifdef MODE_WATER\n"
-"varying mediump vec2 TexCoord;\n"
-"varying highp vec3 EyeVector;\n"
-"varying highp vec4 ModelViewProjectionPosition;\n"
+"dp_varying mediump vec2 TexCoord;\n"
+"dp_varying highp vec3 EyeVector;\n"
+"dp_varying highp vec4 ModelViewProjectionPosition;\n"
"#ifdef VERTEX_SHADER\n"
"uniform highp vec3 EyePosition;\n"
"uniform highp mat4 TexMatrix;\n"
"void main(void)\n"
"{\n"
" vec4 ScreenScaleRefractReflectIW = ScreenScaleRefractReflect * (1.0 / ModelViewProjectionPosition.w);\n"
-" //vec4 ScreenTexCoord = (ModelViewProjectionPosition.xyxy + normalize(vec3(texture2D(Texture_Normal, TexCoord)) - vec3(0.5)).xyxy * DistortScaleRefractReflect * 100) * ScreenScaleRefractReflectIW + ScreenCenterRefractReflect;\n"
+" //vec4 ScreenTexCoord = (ModelViewProjectionPosition.xyxy + normalize(vec3(dp_texture2D(Texture_Normal, TexCoord)) - vec3(0.5)).xyxy * DistortScaleRefractReflect * 100) * ScreenScaleRefractReflectIW + ScreenCenterRefractReflect;\n"
" vec4 SafeScreenTexCoord = ModelViewProjectionPosition.xyxy * ScreenScaleRefractReflectIW + ScreenCenterRefractReflect;\n"
" //SafeScreenTexCoord = gl_FragCoord.xyxy * vec4(1.0 / 1920.0, 1.0 / 1200.0, 1.0 / 1920.0, 1.0 / 1200.0);\n"
" // slight water animation via 2 layer scrolling (todo: tweak)\n"
" #ifdef USENORMALMAPSCROLLBLEND\n"
-" vec3 normal = texture2D(Texture_Normal, (TexCoord + vec2(0.08, 0.08)*ClientTime*NormalmapScrollBlend.x*0.5)*NormalmapScrollBlend.y).rgb - vec3(1.0);\n"
-" normal += texture2D(Texture_Normal, (TexCoord + vec2(-0.06, -0.09)*ClientTime*NormalmapScrollBlend.x)*NormalmapScrollBlend.y*0.75).rgb;\n"
+" vec3 normal = dp_texture2D(Texture_Normal, (TexCoord + vec2(0.08, 0.08)*ClientTime*NormalmapScrollBlend.x*0.5)*NormalmapScrollBlend.y).rgb - vec3(1.0);\n"
+" normal += dp_texture2D(Texture_Normal, (TexCoord + vec2(-0.06, -0.09)*ClientTime*NormalmapScrollBlend.x)*NormalmapScrollBlend.y*0.75).rgb;\n"
" vec4 ScreenTexCoord = SafeScreenTexCoord + vec2(normalize(normal) + vec3(0.15)).xyxy * DistortScaleRefractReflect;\n"
" #else\n"
-" vec4 ScreenTexCoord = SafeScreenTexCoord + vec2(normalize(vec3(texture2D(Texture_Normal, TexCoord)) - vec3(0.5))).xyxy * DistortScaleRefractReflect;\n"
+" vec4 ScreenTexCoord = SafeScreenTexCoord + vec2(normalize(vec3(dp_texture2D(Texture_Normal, TexCoord)) - vec3(0.5))).xyxy * DistortScaleRefractReflect;\n"
" #endif\n"
" // FIXME temporary hack to detect the case that the reflection\n"
" // gets blackened at edges due to leaving the area that contains actual\n"
" // content.\n"
" // Remove this 'ack once we have a better way to stop this thing from\n"
" // 'appening.\n"
-" float f = min(1.0, length(texture2D(Texture_Refraction, ScreenTexCoord.xy + vec2(0.005, 0.01)).rgb) / 0.002);\n"
-" f *= min(1.0, length(texture2D(Texture_Refraction, ScreenTexCoord.xy + vec2(0.005, -0.01)).rgb) / 0.002);\n"
-" f *= min(1.0, length(texture2D(Texture_Refraction, ScreenTexCoord.xy + vec2(-0.005, 0.01)).rgb) / 0.002);\n"
-" f *= min(1.0, length(texture2D(Texture_Refraction, ScreenTexCoord.xy + vec2(-0.005, -0.01)).rgb) / 0.002);\n"
+" float f = min(1.0, length(dp_texture2D(Texture_Refraction, ScreenTexCoord.xy + vec2(0.005, 0.01)).rgb) / 0.002);\n"
+" f *= min(1.0, length(dp_texture2D(Texture_Refraction, ScreenTexCoord.xy + vec2(0.005, -0.01)).rgb) / 0.002);\n"
+" f *= min(1.0, length(dp_texture2D(Texture_Refraction, ScreenTexCoord.xy + vec2(-0.005, 0.01)).rgb) / 0.002);\n"
+" f *= min(1.0, length(dp_texture2D(Texture_Refraction, ScreenTexCoord.xy + vec2(-0.005, -0.01)).rgb) / 0.002);\n"
" ScreenTexCoord.xy = mix(SafeScreenTexCoord.xy, ScreenTexCoord.xy, f);\n"
-" f = min(1.0, length(texture2D(Texture_Reflection, ScreenTexCoord.zw + vec2(0.005, 0.005)).rgb) / 0.002);\n"
-" f *= min(1.0, length(texture2D(Texture_Reflection, ScreenTexCoord.zw + vec2(0.005, -0.005)).rgb) / 0.002);\n"
-" f *= min(1.0, length(texture2D(Texture_Reflection, ScreenTexCoord.zw + vec2(-0.005, 0.005)).rgb) / 0.002);\n"
-" f *= min(1.0, length(texture2D(Texture_Reflection, ScreenTexCoord.zw + vec2(-0.005, -0.005)).rgb) / 0.002);\n"
+" f = min(1.0, length(dp_texture2D(Texture_Reflection, ScreenTexCoord.zw + vec2(0.005, 0.005)).rgb) / 0.002);\n"
+" f *= min(1.0, length(dp_texture2D(Texture_Reflection, ScreenTexCoord.zw + vec2(0.005, -0.005)).rgb) / 0.002);\n"
+" f *= min(1.0, length(dp_texture2D(Texture_Reflection, ScreenTexCoord.zw + vec2(-0.005, 0.005)).rgb) / 0.002);\n"
+" f *= min(1.0, length(dp_texture2D(Texture_Reflection, ScreenTexCoord.zw + vec2(-0.005, -0.005)).rgb) / 0.002);\n"
" ScreenTexCoord.zw = mix(SafeScreenTexCoord.zw, ScreenTexCoord.zw, f);\n"
" float Fresnel = pow(min(1.0, 1.0 - float(normalize(EyeVector).z)), 2.0) * ReflectFactor + ReflectOffset;\n"
-" gl_FragColor = mix(vec4(texture2D(Texture_Refraction, ScreenTexCoord.xy).rgb, 1) * RefractColor, vec4(texture2D(Texture_Reflection, ScreenTexCoord.zw).rgb, 1) * ReflectColor, Fresnel);\n"
+" dp_FragColor = mix(vec4(dp_texture2D(Texture_Refraction, ScreenTexCoord.xy).rgb, 1) * RefractColor, vec4(dp_texture2D(Texture_Reflection, ScreenTexCoord.zw).rgb, 1) * ReflectColor, Fresnel);\n"
"}\n"
"#endif\n"
"#else // !MODE_WATER\n"
"\n"
"// common definitions between vertex shader and fragment shader:\n"
"\n"
-"varying mediump vec4 TexCoordSurfaceLightmap;\n"
+"dp_varying mediump vec4 TexCoordSurfaceLightmap;\n"
"#ifdef USEVERTEXTEXTUREBLEND\n"
-"varying mediump vec2 TexCoord2;\n"
+"dp_varying mediump vec2 TexCoord2;\n"
"#endif\n"
"\n"
"#ifdef MODE_LIGHTSOURCE\n"
-"varying mediump vec3 CubeVector;\n"
+"dp_varying mediump vec3 CubeVector;\n"
"#endif\n"
"\n"
"#if (defined(MODE_LIGHTSOURCE) || defined(MODE_LIGHTDIRECTION)) && defined(USEDIFFUSE)\n"
-"varying mediump vec3 LightVector;\n"
+"dp_varying mediump vec3 LightVector;\n"
"#endif\n"
"\n"
"#ifdef USEEYEVECTOR\n"
-"varying highp vec4 EyeVectorFogDepth;\n"
+"dp_varying highp vec4 EyeVectorFogDepth;\n"
"#endif\n"
"\n"
"#if defined(MODE_LIGHTDIRECTIONMAP_MODELSPACE) || defined(MODE_DEFERREDGEOMETRY) || defined(USEREFLECTCUBE)\n"
-"varying highp vec4 VectorS; // direction of S texcoord (sometimes crudely called tangent)\n"
-"varying highp vec4 VectorT; // direction of T texcoord (sometimes crudely called binormal)\n"
-"varying highp vec4 VectorR; // direction of R texcoord (surface normal)\n"
+"dp_varying highp vec4 VectorS; // direction of S texcoord (sometimes crudely called tangent)\n"
+"dp_varying highp vec4 VectorT; // direction of T texcoord (sometimes crudely called binormal)\n"
+"dp_varying highp vec4 VectorR; // direction of R texcoord (surface normal)\n"
"#else\n"
"# ifdef USEFOG\n"
-"varying highp vec3 EyeVectorModelSpace;\n"
+"dp_varying highp vec3 EyeVectorModelSpace;\n"
"# endif\n"
"#endif\n"
"\n"
"#ifdef USEREFLECTION\n"
-"varying highp vec4 ModelViewProjectionPosition;\n"
+"dp_varying highp vec4 ModelViewProjectionPosition;\n"
"#endif\n"
"#ifdef MODE_DEFERREDLIGHTSOURCE\n"
"uniform highp vec3 LightPosition;\n"
-"varying highp vec4 ModelViewPosition;\n"
+"dp_varying highp vec4 ModelViewPosition;\n"
"#endif\n"
"\n"
"#ifdef MODE_LIGHTSOURCE\n"
"uniform highp vec4 FogPlane;\n"
"\n"
"#ifdef USESHADOWMAPORTHO\n"
-"varying highp vec3 ShadowMapTC;\n"
+"dp_varying highp vec3 ShadowMapTC;\n"
"#endif\n"
"\n"
"#ifdef USEBOUNCEGRID\n"
-"varying highp vec3 BounceGridTexCoord;\n"
+"dp_varying highp vec3 BounceGridTexCoord;\n"
"#endif\n"
"\n"
"\n"
" fc *= surfacecolor.a;\n"
"#endif\n"
"#ifdef USEFOGHEIGHTTEXTURE\n"
-" vec4 fogheightpixel = texture2D(Texture_FogHeightTexture, vec2(1,1) + vec2(FogPlaneVertexDist, FogPlaneViewDist) * (-2.0 * FogHeightFade));\n"
+" vec4 fogheightpixel = dp_texture2D(Texture_FogHeightTexture, vec2(1,1) + vec2(FogPlaneVertexDist, FogPlaneViewDist) * (-2.0 * FogHeightFade));\n"
" fogfrac = fogheightpixel.a;\n"
-" return mix(fogheightpixel.rgb * fc, surfacecolor.rgb, texture2D(Texture_FogMask, myhalf2(length(EyeVectorModelSpace)*fogfrac*FogRangeRecip, 0.0)).r);\n"
+" return mix(fogheightpixel.rgb * fc, surfacecolor.rgb, dp_texture2D(Texture_FogMask, myhalf2(length(EyeVectorModelSpace)*fogfrac*FogRangeRecip, 0.0)).r);\n"
"#else\n"
"# ifdef USEFOGOUTSIDE\n"
" fogfrac = min(0.0, FogPlaneVertexDist) / (FogPlaneVertexDist - FogPlaneViewDist) * min(1.0, min(0.0, FogPlaneVertexDist) * FogHeightFade);\n"
"# else\n"
" fogfrac = FogPlaneViewDist / (FogPlaneViewDist - max(0.0, FogPlaneVertexDist)) * min(1.0, (min(0.0, FogPlaneVertexDist) + FogPlaneViewDist) * FogHeightFade);\n"
"# endif\n"
-" return mix(fc, surfacecolor.rgb, texture2D(Texture_FogMask, myhalf2(length(EyeVectorModelSpace)*fogfrac*FogRangeRecip, 0.0)).r);\n"
+" return mix(fc, surfacecolor.rgb, dp_texture2D(Texture_FogMask, myhalf2(length(EyeVectorModelSpace)*fogfrac*FogRangeRecip, 0.0)).r);\n"
"#endif\n"
"}\n"
"#endif\n"
" vec3 OffsetVector = vec3(normalize(EyeVectorFogDepth.xyz).xy * OffsetMapping_Scale * vec2(-1, 1), -1);\n"
" vec3 RT = vec3(TexCoord, 1);\n"
" OffsetVector *= 0.1;\n"
-" RT += OffsetVector * step(textureGrad(Texture_Normal, RT.xy, dPdx, dPdy).a, RT.z);\n"
-" RT += OffsetVector * step(textureGrad(Texture_Normal, RT.xy, dPdx, dPdy).a, RT.z);\n"
-" RT += OffsetVector * step(textureGrad(Texture_Normal, RT.xy, dPdx, dPdy).a, RT.z);\n"
-" RT += OffsetVector * step(textureGrad(Texture_Normal, RT.xy, dPdx, dPdy).a, RT.z);\n"
-" RT += OffsetVector * step(textureGrad(Texture_Normal, RT.xy, dPdx, dPdy).a, RT.z);\n"
-" RT += OffsetVector * step(textureGrad(Texture_Normal, RT.xy, dPdx, dPdy).a, RT.z);\n"
-" RT += OffsetVector * step(textureGrad(Texture_Normal, RT.xy, dPdx, dPdy).a, RT.z);\n"
-" RT += OffsetVector * step(textureGrad(Texture_Normal, RT.xy, dPdx, dPdy).a, RT.z);\n"
-" RT += OffsetVector * step(textureGrad(Texture_Normal, RT.xy, dPdx, dPdy).a, RT.z);\n"
-" RT += OffsetVector * (step(textureGrad(Texture_Normal, RT.xy, dPdx, dPdy).a, RT.z) - 0.5);\n"
-" RT += OffsetVector * (step(textureGrad(Texture_Normal, RT.xy, dPdx, dPdy).a, RT.z) * 0.5 - 0.25);\n"
-" RT += OffsetVector * (step(textureGrad(Texture_Normal, RT.xy, dPdx, dPdy).a, RT.z) * 0.25 - 0.125);\n"
-" RT += OffsetVector * (step(textureGrad(Texture_Normal, RT.xy, dPdx, dPdy).a, RT.z) * 0.125 - 0.0625);\n"
-" RT += OffsetVector * (step(textureGrad(Texture_Normal, RT.xy, dPdx, dPdy).a, RT.z) * 0.0625 - 0.03125);\n"
+" RT += OffsetVector * step(dp_textureGrad(Texture_Normal, RT.xy, dPdx, dPdy).a, RT.z);\n"
+" RT += OffsetVector * step(dp_textureGrad(Texture_Normal, RT.xy, dPdx, dPdy).a, RT.z);\n"
+" RT += OffsetVector * step(dp_textureGrad(Texture_Normal, RT.xy, dPdx, dPdy).a, RT.z);\n"
+" RT += OffsetVector * step(dp_textureGrad(Texture_Normal, RT.xy, dPdx, dPdy).a, RT.z);\n"
+" RT += OffsetVector * step(dp_textureGrad(Texture_Normal, RT.xy, dPdx, dPdy).a, RT.z);\n"
+" RT += OffsetVector * step(dp_textureGrad(Texture_Normal, RT.xy, dPdx, dPdy).a, RT.z);\n"
+" RT += OffsetVector * step(dp_textureGrad(Texture_Normal, RT.xy, dPdx, dPdy).a, RT.z);\n"
+" RT += OffsetVector * step(dp_textureGrad(Texture_Normal, RT.xy, dPdx, dPdy).a, RT.z);\n"
+" RT += OffsetVector * step(dp_textureGrad(Texture_Normal, RT.xy, dPdx, dPdy).a, RT.z);\n"
+" RT += OffsetVector * (step(dp_textureGrad(Texture_Normal, RT.xy, dPdx, dPdy).a, RT.z) - 0.5);\n"
+" RT += OffsetVector * (step(dp_textureGrad(Texture_Normal, RT.xy, dPdx, dPdy).a, RT.z) * 0.5 - 0.25);\n"
+" RT += OffsetVector * (step(dp_textureGrad(Texture_Normal, RT.xy, dPdx, dPdy).a, RT.z) * 0.25 - 0.125);\n"
+" RT += OffsetVector * (step(dp_textureGrad(Texture_Normal, RT.xy, dPdx, dPdy).a, RT.z) * 0.125 - 0.0625);\n"
+" RT += OffsetVector * (step(dp_textureGrad(Texture_Normal, RT.xy, dPdx, dPdy).a, RT.z) * 0.0625 - 0.03125);\n"
" return RT.xy;\n"
"#else\n"
" // 2 sample offset mapping (only 2 samples because of ATI Radeon 9500-9800/X300 limits)\n"
" //vec2 OffsetVector = vec2(normalize(EyeVectorFogDepth.xy) * OffsetMapping_Scale * vec2(-1, 1));\n"
" vec2 OffsetVector = vec2(normalize(EyeVectorFogDepth.xyz).xy * OffsetMapping_Scale * vec2(-1, 1));\n"
" OffsetVector *= 0.5;\n"
-" TexCoord += OffsetVector * (1.0 - textureGrad(Texture_Normal, TexCoord, dPdx, dPdy).a);\n"
-" TexCoord += OffsetVector * (1.0 - textureGrad(Texture_Normal, TexCoord, dPdx, dPdy).a);\n"
+" TexCoord += OffsetVector * (1.0 - dp_textureGrad(Texture_Normal, TexCoord, dPdx, dPdy).a);\n"
+" TexCoord += OffsetVector * (1.0 - dp_textureGrad(Texture_Normal, TexCoord, dPdx, dPdy).a);\n"
" return TexCoord;\n"
"#endif\n"
"}\n"
"{\n"
" vec3 adir = abs(dir);\n"
" vec2 aparams = ShadowMap_Parameters.xy / max(max(adir.x, adir.y), adir.z);\n"
-" vec4 proj = textureCube(Texture_CubeProjection, dir);\n"
+" vec4 proj = dp_textureCube(Texture_CubeProjection, dir);\n"
" return vec3(mix(dir.xy, dir.zz, proj.xy) * aparams.x + proj.zw * ShadowMap_Parameters.z, aparams.y + ShadowMap_Parameters.w);\n"
"}\n"
"# else\n"
"# ifdef GL_EXT_gpu_shader4\n"
"# define texval(x, y) texture2DOffset(Texture_ShadowMap2D, center, ivec2(x, y)).r\n"
"# else\n"
-"# define texval(x, y) texture2D(Texture_ShadowMap2D, center + vec2(x, y)*ShadowMap_TextureScale).r \n"
+"# define texval(x, y) dp_texture2D(Texture_ShadowMap2D, center + vec2(x, y)*ShadowMap_TextureScale).r \n"
"# endif\n"
"# if USESHADOWMAPPCF > 1\n"
" vec2 center = shadowmaptc.xy - 0.5, offset = fract(center);\n"
"# endif\n"
"# endif\n"
"# else\n"
-" f = step(shadowmaptc.z, texture2D(Texture_ShadowMap2D, shadowmaptc.xy*ShadowMap_TextureScale).r);\n"
+" f = step(shadowmaptc.z, dp_texture2D(Texture_ShadowMap2D, shadowmaptc.xy*ShadowMap_TextureScale).r);\n"
"# endif\n"
"# endif\n"
"# ifdef USESHADOWMAPORTHO\n"
"{\n"
"#ifdef USEOFFSETMAPPING\n"
" // apply offsetmapping\n"
-" vec2 dPdx = dFdx(TexCoordSurfaceLightmap.xy);\n"
-" vec2 dPdy = dFdy(TexCoordSurfaceLightmap.xy);\n"
+" vec2 dPdx = dp_offsetmapping_dFdx(TexCoordSurfaceLightmap.xy);\n"
+" vec2 dPdy = dp_offsetmapping_dFdy(TexCoordSurfaceLightmap.xy);\n"
" vec2 TexCoordOffset = OffsetMapping(TexCoordSurfaceLightmap.xy, dPdx, dPdy);\n"
-"# define offsetMappedTexture2D(t) textureGrad(t, TexCoordOffset, dPdx, dPdy)\n"
+"# define offsetMappedTexture2D(t) dp_textureGrad(t, TexCoordOffset, dPdx, dPdy)\n"
"#else\n"
-"# define offsetMappedTexture2D(t) texture2D(t, TexCoordSurfaceLightmap.xy)\n"
+"# define offsetMappedTexture2D(t) dp_texture2D(t, TexCoordSurfaceLightmap.xy)\n"
"#endif\n"
"\n"
"#ifdef USEALPHAKILL\n"
"#endif\n"
"\n"
"#ifdef USEVERTEXTEXTUREBLEND\n"
-" vec3 surfacenormal = mix(vec3(texture2D(Texture_SecondaryNormal, TexCoord2)), vec3(offsetMappedTexture2D(Texture_Normal)), terrainblend) - vec3(0.5, 0.5, 0.5);\n"
-" float a = mix(texture2D(Texture_SecondaryGloss, TexCoord2).a, offsetMappedTexture2D(Texture_Gloss).a, terrainblend);\n"
+" vec3 surfacenormal = mix(vec3(dp_texture2D(Texture_SecondaryNormal, TexCoord2)), vec3(offsetMappedTexture2D(Texture_Normal)), terrainblend) - vec3(0.5, 0.5, 0.5);\n"
+" float a = mix(dp_texture2D(Texture_SecondaryGloss, TexCoord2).a, offsetMappedTexture2D(Texture_Gloss).a, terrainblend);\n"
"#else\n"
" vec3 surfacenormal = vec3(offsetMappedTexture2D(Texture_Normal)) - vec3(0.5, 0.5, 0.5);\n"
" float a = offsetMappedTexture2D(Texture_Gloss).a;\n"
"#endif\n"
"\n"
-" gl_FragColor = vec4(normalize(surfacenormal.x * VectorS + surfacenormal.y * VectorT + surfacenormal.z * VectorR) * 0.5 + vec3(0.5, 0.5, 0.5), a);\n"
+" dp_FragColor = vec4(normalize(surfacenormal.x * VectorS + surfacenormal.y * VectorT + surfacenormal.z * VectorR) * 0.5 + vec3(0.5, 0.5, 0.5), a);\n"
"}\n"
"#endif // FRAGMENT_SHADER\n"
"#else // !MODE_DEFERREDGEOMETRY\n"
" // calculate viewspace pixel position\n"
" vec2 ScreenTexCoord = gl_FragCoord.xy * PixelToScreenTexCoord;\n"
" vec3 position;\n"
-" position.z = ScreenToDepth.y / (texture2D(Texture_ScreenDepth, ScreenTexCoord).r + ScreenToDepth.x);\n"
+" position.z = ScreenToDepth.y / (dp_texture2D(Texture_ScreenDepth, ScreenTexCoord).r + ScreenToDepth.x);\n"
" position.xy = ModelViewPosition.xy * (position.z / ModelViewPosition.z);\n"
" // decode viewspace pixel normal\n"
-" myhalf4 normalmap = texture2D(Texture_ScreenNormalMap, ScreenTexCoord);\n"
+" myhalf4 normalmap = dp_texture2D(Texture_ScreenNormalMap, ScreenTexCoord);\n"
" myhalf3 surfacenormal = normalize(normalmap.rgb - myhalf3(0.5,0.5,0.5));\n"
" // surfacenormal = pixel normal in viewspace\n"
" // LightVector = pixel to light in viewspace\n"
" // CubeVector = position in lightspace\n"
" // eyevector = pixel to view in viewspace\n"
" vec3 CubeVector = vec3(ViewToLight * vec4(position,1));\n"
-" myhalf fade = myhalf(texture2D(Texture_Attenuation, vec2(length(CubeVector), 0.0)));\n"
+" myhalf fade = myhalf(dp_texture2D(Texture_Attenuation, vec2(length(CubeVector), 0.0)));\n"
"#ifdef USEDIFFUSE\n"
" // calculate diffuse shading\n"
" myhalf3 lightnormal = myhalf3(normalize(LightPosition - position));\n"
"#endif\n"
"\n"
"# ifdef USECUBEFILTER\n"
-" vec3 cubecolor = textureCube(Texture_Cube, CubeVector).rgb;\n"
+" vec3 cubecolor = dp_textureCube(Texture_Cube, CubeVector).rgb;\n"
" gl_FragData[0].rgb *= cubecolor;\n"
" gl_FragData[1].rgb *= cubecolor;\n"
"# endif\n"
"{\n"
"#ifdef USEOFFSETMAPPING\n"
" // apply offsetmapping\n"
-" vec2 dPdx = dFdx(TexCoordSurfaceLightmap.xy);\n"
-" vec2 dPdy = dFdy(TexCoordSurfaceLightmap.xy);\n"
+" vec2 dPdx = dp_offsetmapping_dFdx(TexCoordSurfaceLightmap.xy);\n"
+" vec2 dPdy = dp_offsetmapping_dFdy(TexCoordSurfaceLightmap.xy);\n"
" vec2 TexCoordOffset = OffsetMapping(TexCoordSurfaceLightmap.xy, dPdx, dPdy);\n"
-"# define offsetMappedTexture2D(t) textureGrad(t, TexCoordOffset, dPdx, dPdy)\n"
+"# define offsetMappedTexture2D(t) dp_textureGrad(t, TexCoordOffset, dPdx, dPdy)\n"
"#else\n"
-"# define offsetMappedTexture2D(t) texture2D(t, TexCoordSurfaceLightmap.xy)\n"
+"# define offsetMappedTexture2D(t) dp_texture2D(t, TexCoordSurfaceLightmap.xy)\n"
"#endif\n"
"\n"
" // combine the diffuse textures (base, pants, shirt)\n"
" myhalf terrainblend = clamp(myhalf(VertexColor.a) * color.a * 2.0 - 0.5, myhalf(0.0), myhalf(1.0));\n"
" //myhalf terrainblend = min(myhalf(VertexColor.a) * color.a * 2.0, myhalf(1.0));\n"
" //myhalf terrainblend = myhalf(VertexColor.a) * color.a > 0.5;\n"
-" color.rgb = mix(myhalf3(texture2D(Texture_SecondaryColor, TexCoord2)), color.rgb, terrainblend);\n"
+" color.rgb = mix(myhalf3(dp_texture2D(Texture_SecondaryColor, TexCoord2)), color.rgb, terrainblend);\n"
" color.a = 1.0;\n"
" //color = mix(myhalf4(1, 0, 0, 1), color, terrainblend);\n"
"#endif\n"
"\n"
" // get the surface normal\n"
"#ifdef USEVERTEXTEXTUREBLEND\n"
-" myhalf3 surfacenormal = normalize(mix(myhalf3(texture2D(Texture_SecondaryNormal, TexCoord2)), myhalf3(offsetMappedTexture2D(Texture_Normal)), terrainblend) - myhalf3(0.5, 0.5, 0.5));\n"
+" myhalf3 surfacenormal = normalize(mix(myhalf3(dp_texture2D(Texture_SecondaryNormal, TexCoord2)), myhalf3(offsetMappedTexture2D(Texture_Normal)), terrainblend) - myhalf3(0.5, 0.5, 0.5));\n"
"#else\n"
" myhalf3 surfacenormal = normalize(myhalf3(offsetMappedTexture2D(Texture_Normal)) - myhalf3(0.5, 0.5, 0.5));\n"
"#endif\n"
" myhalf3 diffusetex = color.rgb;\n"
"#if defined(USESPECULAR) || defined(USEDEFERREDLIGHTMAP)\n"
"# ifdef USEVERTEXTEXTUREBLEND\n"
-" myhalf4 glosstex = mix(myhalf4(texture2D(Texture_SecondaryGloss, TexCoord2)), myhalf4(offsetMappedTexture2D(Texture_Gloss)), terrainblend);\n"
+" myhalf4 glosstex = mix(myhalf4(dp_texture2D(Texture_SecondaryGloss, TexCoord2)), myhalf4(offsetMappedTexture2D(Texture_Gloss)), terrainblend);\n"
"# else\n"
" myhalf4 glosstex = myhalf4(offsetMappedTexture2D(Texture_Gloss));\n"
"# endif\n"
" vec3 TangentReflectVector = reflect(-EyeVectorFogDepth.xyz, surfacenormal);\n"
" vec3 ModelReflectVector = TangentReflectVector.x * VectorS.xyz + TangentReflectVector.y * VectorT.xyz + TangentReflectVector.z * VectorR.xyz;\n"
" vec3 ReflectCubeTexCoord = vec3(ModelToReflectCube * vec4(ModelReflectVector, 0));\n"
-" diffusetex += myhalf3(offsetMappedTexture2D(Texture_ReflectMask)) * myhalf3(textureCube(Texture_ReflectCube, ReflectCubeTexCoord));\n"
+" diffusetex += myhalf3(offsetMappedTexture2D(Texture_ReflectMask)) * myhalf3(dp_textureCube(Texture_ReflectCube, ReflectCubeTexCoord));\n"
"#endif\n"
"\n"
"\n"
" color.rgb = diffusetex * Color_Ambient;\n"
"#endif\n"
" color.rgb *= LightColor;\n"
-" color.rgb *= myhalf(texture2D(Texture_Attenuation, vec2(length(CubeVector), 0.0)));\n"
+" color.rgb *= myhalf(dp_texture2D(Texture_Attenuation, vec2(length(CubeVector), 0.0)));\n"
"#if defined(USESHADOWMAP2D)\n"
" color.rgb *= ShadowMapCompare(CubeVector);\n"
"#endif\n"
"# ifdef USECUBEFILTER\n"
-" color.rgb *= myhalf3(textureCube(Texture_Cube, CubeVector));\n"
+" color.rgb *= myhalf3(dp_textureCube(Texture_Cube, CubeVector));\n"
"# endif\n"
"#endif // MODE_LIGHTSOURCE\n"
"\n"
"#ifdef MODE_LIGHTDIRECTIONMAP_MODELSPACE\n"
"#define SHADING\n"
" // deluxemap lightmapping using light vectors in modelspace (q3map2 -light -deluxe)\n"
-" myhalf3 lightnormal_modelspace = myhalf3(texture2D(Texture_Deluxemap, TexCoordSurfaceLightmap.zw)) * 2.0 + myhalf3(-1.0, -1.0, -1.0);\n"
-" myhalf3 lightcolor = myhalf3(texture2D(Texture_Lightmap, TexCoordSurfaceLightmap.zw));\n"
+" myhalf3 lightnormal_modelspace = myhalf3(dp_texture2D(Texture_Deluxemap, TexCoordSurfaceLightmap.zw)) * 2.0 + myhalf3(-1.0, -1.0, -1.0);\n"
+" myhalf3 lightcolor = myhalf3(dp_texture2D(Texture_Lightmap, TexCoordSurfaceLightmap.zw));\n"
" // convert modelspace light vector to tangentspace\n"
" myhalf3 lightnormal;\n"
" lightnormal.x = dot(lightnormal_modelspace, myhalf3(VectorS));\n"
"#ifdef MODE_LIGHTDIRECTIONMAP_TANGENTSPACE\n"
"#define SHADING\n"
" // deluxemap lightmapping using light vectors in tangentspace (hmap2 -light)\n"
-" myhalf3 lightnormal = myhalf3(texture2D(Texture_Deluxemap, TexCoordSurfaceLightmap.zw)) * 2.0 + myhalf3(-1.0, -1.0, -1.0);\n"
-" myhalf3 lightcolor = myhalf3(texture2D(Texture_Lightmap, TexCoordSurfaceLightmap.zw));\n"
+" myhalf3 lightnormal = myhalf3(dp_texture2D(Texture_Deluxemap, TexCoordSurfaceLightmap.zw)) * 2.0 + myhalf3(-1.0, -1.0, -1.0);\n"
+" myhalf3 lightcolor = myhalf3(dp_texture2D(Texture_Lightmap, TexCoordSurfaceLightmap.zw));\n"
"#endif\n"
"\n"
"\n"
"\n"
"\n"
"#ifdef MODE_LIGHTMAP\n"
-" color.rgb = diffusetex * (Color_Ambient + myhalf3(texture2D(Texture_Lightmap, TexCoordSurfaceLightmap.zw)) * Color_Diffuse);\n"
+" color.rgb = diffusetex * (Color_Ambient + myhalf3(dp_texture2D(Texture_Lightmap, TexCoordSurfaceLightmap.zw)) * Color_Diffuse);\n"
"#endif // MODE_LIGHTMAP\n"
"#ifdef MODE_VERTEXCOLOR\n"
" color.rgb = diffusetex * (Color_Ambient + myhalf3(VertexColor.rgb) * Color_Diffuse);\n"
"\n"
"#ifdef USEDEFERREDLIGHTMAP\n"
" vec2 ScreenTexCoord = gl_FragCoord.xy * PixelToScreenTexCoord;\n"
-" color.rgb += diffusetex * myhalf3(texture2D(Texture_ScreenDiffuse, ScreenTexCoord)) * DeferredMod_Diffuse;\n"
-" color.rgb += glosstex.rgb * myhalf3(texture2D(Texture_ScreenSpecular, ScreenTexCoord)) * DeferredMod_Specular;\n"
+" color.rgb += diffusetex * myhalf3(dp_texture2D(Texture_ScreenDiffuse, ScreenTexCoord)) * DeferredMod_Diffuse;\n"
+" color.rgb += glosstex.rgb * myhalf3(dp_texture2D(Texture_ScreenSpecular, ScreenTexCoord)) * DeferredMod_Specular;\n"
"#endif\n"
"\n"
"#ifdef USEBOUNCEGRID\n"
-" color.rgb += diffusetex * myhalf3(texture3D(Texture_BounceGrid, BounceGridTexCoord)) * BounceGridIntensity;\n"
+" color.rgb += diffusetex * myhalf3(dp_texture3D(Texture_BounceGrid, BounceGridTexCoord)) * BounceGridIntensity;\n"
"#endif\n"
"\n"
"#ifdef USEGLOW\n"
"#ifdef USEVERTEXTEXTUREBLEND\n"
-" color.rgb += mix(myhalf3(texture2D(Texture_SecondaryGlow, TexCoord2)), myhalf3(offsetMappedTexture2D(Texture_Glow)), terrainblend) * Color_Glow;\n"
+" color.rgb += mix(myhalf3(dp_texture2D(Texture_SecondaryGlow, TexCoord2)), myhalf3(offsetMappedTexture2D(Texture_Glow)), terrainblend) * Color_Glow;\n"
"#else\n"
" color.rgb += myhalf3(offsetMappedTexture2D(Texture_Glow)) * Color_Glow;\n"
"#endif\n"
" // content.\n"
" // Remove this 'ack once we have a better way to stop this thing from\n"
" // 'appening.\n"
-" float f = min(1.0, length(texture2D(Texture_Reflection, ScreenTexCoord + vec2(0.01, 0.01)).rgb) / 0.05);\n"
-" f *= min(1.0, length(texture2D(Texture_Reflection, ScreenTexCoord + vec2(0.01, -0.01)).rgb) / 0.05);\n"
-" f *= min(1.0, length(texture2D(Texture_Reflection, ScreenTexCoord + vec2(-0.01, 0.01)).rgb) / 0.05);\n"
-" f *= min(1.0, length(texture2D(Texture_Reflection, ScreenTexCoord + vec2(-0.01, -0.01)).rgb) / 0.05);\n"
+" float f = min(1.0, length(dp_texture2D(Texture_Reflection, ScreenTexCoord + vec2(0.01, 0.01)).rgb) / 0.05);\n"
+" f *= min(1.0, length(dp_texture2D(Texture_Reflection, ScreenTexCoord + vec2(0.01, -0.01)).rgb) / 0.05);\n"
+" f *= min(1.0, length(dp_texture2D(Texture_Reflection, ScreenTexCoord + vec2(-0.01, 0.01)).rgb) / 0.05);\n"
+" f *= min(1.0, length(dp_texture2D(Texture_Reflection, ScreenTexCoord + vec2(-0.01, -0.01)).rgb) / 0.05);\n"
" ScreenTexCoord = mix(SafeScreenTexCoord, ScreenTexCoord, f);\n"
-" color.rgb = mix(color.rgb, myhalf3(texture2D(Texture_Reflection, ScreenTexCoord)) * ReflectColor.rgb, ReflectColor.a);\n"
+" color.rgb = mix(color.rgb, myhalf3(dp_texture2D(Texture_Reflection, ScreenTexCoord)) * ReflectColor.rgb, ReflectColor.a);\n"
"#endif\n"
"\n"
-" gl_FragColor = vec4(color);\n"
+" dp_FragColor = vec4(color);\n"
"}\n"
"#endif // FRAGMENT_SHADER\n"
"\n"