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Add dynamic light to sprites
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3 changed files with 445 additions and 15 deletions
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@ -130,6 +130,10 @@ namespace swrenderer
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__m128i shade_light = _mm_set_epi16(shade_constants.light_alpha, shade_constants.light_red, shade_constants.light_green, shade_constants.light_blue, shade_constants.light_alpha, shade_constants.light_red, shade_constants.light_green, shade_constants.light_blue);
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int desaturate = shade_constants.desaturate;
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<? } ?>
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__m128i dynlight = _mm_cvtsi32_si128(args.DynamicLight());
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dynlight = _mm_unpacklo_epi8(dynlight, _mm_setzero_si128());
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dynlight = _mm_shuffle_epi32(dynlight, _MM_SHUFFLE(1,0,1,0));
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int count = args.Count();
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int pitch = RenderViewport::Instance()->RenderTarget->GetPitch();
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@ -274,7 +278,9 @@ namespace swrenderer
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function Shade($blendVariant, $isSimpleShade)
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{
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if ($blendVariant == "copy" || $blendVariant == "shaded") return;
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?>
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__m128i material = fgcolor;
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<?
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if ($isSimpleShade == true)
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{ ?>
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fgcolor = _mm_srli_epi16(_mm_mullo_epi16(fgcolor, mlight), 8);
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@ -297,8 +303,11 @@ namespace swrenderer
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fgcolor = _mm_mullo_epi16(fgcolor, mlight);
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fgcolor = _mm_srli_epi16(_mm_add_epi16(shade_fade, fgcolor), 8);
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fgcolor = _mm_srli_epi16(_mm_mullo_epi16(fgcolor, shade_light), 8);
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<? }
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}
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<? } ?>
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fgcolor = _mm_add_epi16(fgcolor, _mm_srli_epi16(_mm_mullo_epi16(material, dynlight), 8));
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fgcolor = _mm_min_epi16(fgcolor, _mm_set1_epi16(255));
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<? }
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function Blend($blendVariant)
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{
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@ -246,28 +246,41 @@ namespace swrenderer
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float ly = (float)(lightX * ViewTanCos + lightY * ViewTanSin - pos.Y);
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float lz = (float)(lightZ - pos.Z);
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bool is_point_light = (node->lightsource->flags4 & MF4_ATTENUATE) != 0;
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// Attenuated lights disabled for sprites for now to keep consistency with the GL renderer
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//bool is_point_light = (node->lightsource->flags4 & MF4_ATTENUATE) != 0;
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float LdotL = lx * lx + ly * ly + lz * lz;
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float NdotL = is_point_light ? -ly : 0.0f;
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float NdotL = 1.0f;//is_point_light ? -ly : 1.0f;
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float radius = node->lightsource->GetRadius();
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if (radius * radius >= LdotL && NdotL > 0.0f)
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{
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uint32_t red = light->GetRed();
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uint32_t green = light->GetGreen();
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uint32_t blue = light->GetBlue();
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float distance = sqrt(LdotL);
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float attenuation = distance / radius * NdotL;
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lit_red += red * attenuation;
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lit_red += green * attenuation;
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lit_red += blue * attenuation;
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float attenuation = (1.0f - distance / radius) * NdotL;
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if (attenuation > 0.0f)
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{
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float red = light->GetRed() * (1.0f / 255.0f);
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float green = light->GetGreen() * (1.0f / 255.0f);
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float blue = light->GetBlue() * (1.0f / 255.0f);
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/*if (light->IsSubtractive())
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{
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float bright = FVector3(lr, lg, lb).Length();
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FVector3 lightColor(lr, lg, lb);
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red = (bright - lr) * -1;
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green = (bright - lg) * -1;
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blue = (bright - lb) * -1;
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}*/
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lit_red += red * attenuation;
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lit_green += green * attenuation;
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lit_blue += blue * attenuation;
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}
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}
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}
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node = node->nextLight;
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}
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lit_red = MIN(lit_red, 255.0f);
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lit_green = MIN(lit_green, 255.0f);
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lit_blue = MIN(lit_blue, 255.0f);
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lit_red = clamp(lit_red * 255.0f, 0.0f, 255.0f);
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lit_green = clamp(lit_green * 255.0f, 0.0f, 255.0f);
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lit_blue = clamp(lit_blue * 255.0f, 0.0f, 255.0f);
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vis->dynlightcolor = (((uint32_t)lit_red) << 16) | (((uint32_t)lit_green) << 8) | ((uint32_t)lit_blue);
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}
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else
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