// lighten precision mediump float; uniform sampler2D _MainTex; uniform sampler2D baseTex; uniform float _alpha; uniform int blendAlphaState; // 1: pre-multiplied, 2: straight uniform int fgAlphaState; uniform int bgAlphaState; varying vec2 uv0; varying vec2 uv1; const float Eps = 1e-6; vec4 LightenBlendStraight(vec4 fg, vec4 bg) { float alpha = fg.a + bg.a - fg.a * bg.a; vec3 color = max(fg.rgb, bg.rgb); color = fg.rgb * fg.a * (1.0 - bg.a) + bg.rgb * bg.a * (1.0 - fg.a) + fg.a * bg.a * color; return vec4(color / max(alpha, Eps), alpha); } vec4 LightenBlendPreMul(vec4 fg, vec4 bg) { float alpha = fg.a + bg.a - fg.a * bg.a; vec3 color = fg.rgb * (1.0 - bg.a) + bg.rgb * (1.0 - fg.a) + max(fg.rgb * bg.a, bg.rgb * fg.a); return vec4(color, alpha); } void main (void) { vec4 bg = texture2D(baseTex, uv1); vec4 fg = texture2D(_MainTex, uv0); if (blendAlphaState == 2) { // straight if (fgAlphaState != blendAlphaState && fg.a > 0.0) { fg.rgb /= fg.a; } if (bgAlphaState != blendAlphaState && bg.a > 0.0) { bg.rgb /= bg.a; } } else { if (fgAlphaState != 0 && fgAlphaState != blendAlphaState) { fg.rgb *= fg.a; } if (bgAlphaState != 0 && bgAlphaState != blendAlphaState) { bg.rgb *= bg.a; } } if (blendAlphaState == 2) { // straight alpha fg.a *= min(_alpha, 1.0); gl_FragColor = LightenBlendStraight(fg, bg); } else { // pre multiply fg *= min(_alpha, 1.0); gl_FragColor = LightenBlendPreMul(fg, bg); } }