"use strict";var t=Object.defineProperty;var n=Object.getOwnPropertyDescriptor;var o=Object.getOwnPropertyNames;var h=Object.prototype.hasOwnProperty;var s=(e,a)=>{for(var i in a)t(e,i,{get:a[i],enumerable:!0})},f=(e,a,i,r)=>{if(a&&typeof a=="object"||typeof a=="function")for(let l of o(a))!h.call(e,l)&&l!==i&&t(e,l,{get:()=>a[l],enumerable:!(r=n(a,l))||r.enumerable});return e};var p=e=>f(t({},"__esModule",{value:!0}),e);var g={};s(g,{REGION_PAINT_SKSL:()=>u});module.exports=p(g);const u=` uniform shader originTex; uniform shader paintColorTex; uniform shader lowFreqTex; uniform shader highFreqTex; uniform float colorBaseOpacity; uniform float lLightOpacity; uniform float textureOpacity; uniform float showOrigin; float luminance(half3 c) { return dot(c, half3(0.2126, 0.7152, 0.0722)); } half3 setLuminance(float lum, half3 base) { float diff = lum - luminance(base); return base + diff; } half3 luminosityBlend(half3 base, half3 blend) { return setLuminance(luminance(blend), base); } half3 overlayBlend(half3 base, half3 blend) { half3 low = 2.0 * base * blend; half3 high = 1.0 - 2.0 * (1.0 - base) * (1.0 - blend); return mix(low, high, step(half3(0.5), base)); } half4 main(float2 coord) { half4 origin = originTex.eval(coord); if (showOrigin > 0.5) { return origin; } half4 paintEntry = paintColorTex.eval(coord); // The paintColorMap uses Unpremul alpha: painted pixels \u2192 (R,G,B,255), // transparent pixels \u2192 (0,0,0,0). GPU bilinear sampling interpolates // straight-alpha values, so at boundaries rgb = trueColor * sampled.a // (contaminated with black from the transparent neighbour). // // Unpremultiply to recover the true paint color: // trueColor = sampled.rgb / sampled.a // This eliminates dark fringing at region boundaries. float pa = paintEntry.a + 0.0001; paintEntry.rgb /= pa; // Gate sub-pixel alpha to kill residual sampling noise. // Thresholds are deliberately low (\u22481.3\u20133.8 in byte space) because // post-unpremul the RGB is correct at any alpha \u2265 0 \u2014 we only need // to suppress samples that contribute negligibly to the final blend. // Using *= preserves the smooth edge; higher-alpha samples pass through. paintEntry.a *= smoothstep(0.005, 0.015, paintEntry.a); half3 paintRgb = paintEntry.rgb; half lowL = lowFreqTex.eval(coord).r; half highL = highFreqTex.eval(coord).r; half3 base = paintRgb * colorBaseOpacity; half3 lit = luminosityBlend(base, half3(lowL)); half3 withLight = mix(base, lit, lLightOpacity); half3 tex = overlayBlend(withLight, half3(highL)); half3 finalRgb = mix(withLight, tex, textureOpacity); // Soft edge blend using the (feathered) alpha from the paint color map as coverage. half3 blended = mix(origin.rgb, finalRgb, paintEntry.a); return half4(blended, 1.0); } `;