Simplify transition code
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6e61e8f1fc
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f9a19bd621
@ -1667,7 +1667,7 @@ void ImProcFunctions::softproc(const LabImage* bufcolorig, const LabImage* bufco
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for (int ir = 0; ir < bfh; ir++)
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for (int jr = 0; jr < bfw; jr++) {
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float X, Y, Z;
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float L = bufcolorig->L[ir][jr];
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float a = bufcolorig->a[ir][jr];
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@ -1682,7 +1682,7 @@ void ImProcFunctions::softproc(const LabImage* bufcolorig, const LabImage* bufco
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tmpImage->r(ir, jr) = X;
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tmpImage->g(ir, jr) = Y;
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tmpImage->b(ir, jr) = Z;
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ble[ir][jr] = Y / 32768.f;
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}
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@ -1739,18 +1739,18 @@ void ImProcFunctions::softproc(const LabImage* bufcolorig, const LabImage* bufco
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if (rad != 0.f) {
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float blur = rad;
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blur = blur < 0.f ? -1.f / blur : 1.f + blur;
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// int r1 = max(int(4 / sk * blur + 0.5), 1);
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// int r1 = max(int(4 / sk * blur + 0.5), 1);
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int r2 = max(int(25 / sk * blur + 0.5), 1);
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rtengine::guidedFilter(guid, ble, ble, r2, epsil, multiThread);
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// rtengine::guidedFilter(guid, blechro, blechro, r1, 0.5 * epsil, multiThread);
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}
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/*
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// float blur = 10.f / sk * (thres + 0.8f * rad);
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rtengine::guidedFilter(guid, ble, ble, blur, epsil, multiThread, 4);
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*/
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/*
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// float blur = 10.f / sk * (thres + 0.8f * rad);
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rtengine::guidedFilter(guid, ble, ble, blur, epsil, multiThread, 4);
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*/
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#ifdef _OPENMP
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@ -1759,11 +1759,11 @@ void ImProcFunctions::softproc(const LabImage* bufcolorig, const LabImage* bufco
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for (int ir = 0; ir < bfh; ir++)
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for (int jr = 0; jr < bfw; jr++) {
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// float2 sincosval = xsincosf(hue[ir][jr]);
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// float2 sincosval = xsincosf(hue[ir][jr]);
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bufcolfin->L[ir][jr] = 32768.f * ble[ir][jr];
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// bufcolfin->a[ir][jr] = 32768.f * sincosval.y * blechro[ir][jr];
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// bufcolfin->b[ir][jr] = 32768.f * sincosval.x * blechro[ir][jr];
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// bufcolfin->a[ir][jr] = 32768.f * sincosval.y * blechro[ir][jr];
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// bufcolfin->b[ir][jr] = 32768.f * sincosval.x * blechro[ir][jr];
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}
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}
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@ -2083,71 +2083,37 @@ void ImProcFunctions::DeNoise_Local(int call, const struct local_params& lp, La
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}
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switch (zone) {
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case 1: { // inside transition zone
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float difL, difa, difb;
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if (zone > 0) {
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float difL, difa, difb;
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if (call == 2 /*|| call == 1 || call == 3 */) { //simpleprocess
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difL = tmp1.L[loy - begy][lox - begx] - original->L[y][x];
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difa = tmp1.a[loy - begy][lox - begx] - original->a[y][x];
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difb = tmp1.b[loy - begy][lox - begx] - original->b[y][x];
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} else { //dcrop
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difL = tmp1.L[y][x] - original->L[y][x];
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difa = tmp1.a[y][x] - original->a[y][x];
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difb = tmp1.b[y][x] - original->b[y][x];
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if (call == 2 /*|| call == 1 || call == 3 */) { //simpleprocess
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difL = tmp1.L[loy - begy][lox - begx] - original->L[y][x];
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difa = tmp1.a[loy - begy][lox - begx] - original->a[y][x];
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difb = tmp1.b[loy - begy][lox - begx] - original->b[y][x];
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} else { //dcrop
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difL = tmp1.L[y][x] - original->L[y][x];
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difa = tmp1.a[y][x] - original->a[y][x];
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difb = tmp1.b[y][x] - original->b[y][x];
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}
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difL *= localFactor * reducdEL;
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difa *= localFactor * reducdEa;
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difb *= localFactor * reducdEb;
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transformed->L[y][x] = CLIP(original->L[y][x] + difL);
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transformed->a[y][x] = CLIPC((original->a[y][x] + difa) * factnoise);
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transformed->b[y][x] = CLIPC((original->b[y][x] + difb) * factnoise) ;
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if (blshow) {
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transformed->L[y][x] = CLIP(12000.f + 10.f * difL);// * 10.f empirical to can visualize modifications
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transformed->a[y][x] = CLIPC(10.f * difa);// * 10.f empirical to can visualize modifications
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transformed->b[y][x] = CLIPC(10.f * difb);// * 10.f empirical to can visualize modifications
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} else if (previewbl) {
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transformed->a[y][x] = 0.f;
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transformed->b[y][x] = (10.f * difb);// * 10.f empirical to can visualize modifications
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}
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break;
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}
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case 2: { // inside selection => full effect, no transition
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float difL, difa, difb;
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difL *= localFactor * reducdEL;
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difa *= localFactor * reducdEa;
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difb *= localFactor * reducdEb;
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transformed->L[y][x] = CLIP(original->L[y][x] + difL);
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transformed->a[y][x] = CLIPC((original->a[y][x] + difa) * factnoise);
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transformed->b[y][x] = CLIPC((original->b[y][x] + difb) * factnoise) ;
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if (call == 2 /*|| call == 1 || call == 3 */) { //simpleprocess
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difL = tmp1.L[loy - begy][lox - begx] - original->L[y][x];
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difa = tmp1.a[loy - begy][lox - begx] - original->a[y][x];
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difb = tmp1.b[loy - begy][lox - begx] - original->b[y][x];
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} else { //dcrop
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difL = tmp1.L[y][x] - original->L[y][x];
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difa = tmp1.a[y][x] - original->a[y][x];
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difb = tmp1.b[y][x] - original->b[y][x];
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}
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difL *= reducdEL;
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difa *= reducdEa;
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difb *= reducdEb;
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transformed->L[y][x] = CLIP(original->L[y][x] + difL);
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transformed->a[y][x] = CLIPC((original->a[y][x] + difa) * factnoise);
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transformed->b[y][x] = CLIPC((original->b[y][x] + difb) * factnoise);
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if (blshow) {
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transformed->L[y][x] = CLIP(12000.f + 10.f * difL);// * 10.f empirical to can visualize modifications
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transformed->a[y][x] = CLIPC(10.f * difa);// * 10.f empirical to can visualize modifications
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transformed->b[y][x] = CLIPC(10.f * difb);// * 10.f empirical to can visualize modifications
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} else if (previewbl) {
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transformed->a[y][x] = 0.f;
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transformed->b[y][x] = (10.f * difb);// * 10.f empirical to can visualize modifications
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}
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if (blshow) {
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transformed->L[y][x] = CLIP(12000.f + 10.f * difL);// * 10.f empirical to can visualize modifications
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transformed->a[y][x] = CLIPC(10.f * difa);// * 10.f empirical to can visualize modifications
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transformed->b[y][x] = CLIPC(10.f * difb);// * 10.f empirical to can visualize modifications
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} else if (previewbl) {
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transformed->a[y][x] = 0.f;
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transformed->b[y][x] = (10.f * difb);// * 10.f empirical to can visualize modifications
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}
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}
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}
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@ -2295,7 +2261,7 @@ void ImProcFunctions::InverseReti_Local(const struct local_params & lp, const fl
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float kab = 1.f;
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balancedeltaE(kL, kab);
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LabImage *origblur = new LabImage(GW, GH);
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std::unique_ptr<LabImage> origblur(new LabImage(GW, GH));
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float radius = 3.f / sk;
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#ifdef _OPENMP
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@ -2400,7 +2366,6 @@ void ImProcFunctions::InverseReti_Local(const struct local_params & lp, const fl
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}
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}
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delete origblur;
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}
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@ -2855,28 +2820,14 @@ static void blendmask(const local_params& lp, int xstart, int ystart, int cx, in
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originalmas->L[y][x] = CLIP(bufexporig->L[y][x] - bufmaskor->L[y][x]);
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originalmas->a[y][x] = CLIPC(bufexporig->a[y][x] * (1.f - bufmaskor->a[y][x]));
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originalmas->b[y][x] = CLIPC(bufexporig->b[y][x] * (1.f - bufmaskor->b[y][x]));
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switch (zone) {
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case 1: {
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original->L[y + ystart][x + xstart] += (bl * localFactor * bufmaskor->L[y][x]);
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original->a[y + ystart][x + xstart] *= (1.f + bl * localFactor * bufmaskor->a[y][x]);
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original->b[y + ystart][x + xstart] *= (1.f + bl * localFactor * bufmaskor->b[y][x]);
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original->L[y + ystart][x + xstart] = CLIP(original->L[y + ystart][x + xstart]);
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original->a[y + ystart][x + xstart] = CLIPC(original->a[y + ystart][x + xstart]);
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original->b[y + ystart][x + xstart] = CLIPC(original->b[y + ystart][x + xstart]);
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break;
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}
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original->L[y + ystart][x + xstart] += (bl * localFactor * bufmaskor->L[y][x]);
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original->a[y + ystart][x + xstart] *= (1.f + bl * localFactor * bufmaskor->a[y][x]);
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original->b[y + ystart][x + xstart] *= (1.f + bl * localFactor * bufmaskor->b[y][x]);
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original->L[y + ystart][x + xstart] = CLIP(original->L[y + ystart][x + xstart]);
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original->a[y + ystart][x + xstart] = CLIPC(original->a[y + ystart][x + xstart]);
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original->b[y + ystart][x + xstart] = CLIPC(original->b[y + ystart][x + xstart]);
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case 2: {
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original->L[y + ystart][x + xstart] += (bl * bufmaskor->L[y][x]);
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original->a[y + ystart][x + xstart] *= (1.f + bl * bufmaskor->a[y][x]);
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original->b[y + ystart][x + xstart] *= (1.f + bl * bufmaskor->b[y][x]);
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original->L[y + ystart][x + xstart] = CLIP(original->L[y + ystart][x + xstart]);
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original->a[y + ystart][x + xstart] = CLIPC(original->a[y + ystart][x + xstart]);
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original->b[y + ystart][x + xstart] = CLIPC(original->b[y + ystart][x + xstart]);
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}
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}
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}
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} else if (inv == 1) {
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localFactor = 1.f - localFactor;
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@ -3687,7 +3638,7 @@ void ImProcFunctions::maskcalccol(bool invmask, bool pde, int bfw, int bfh, int
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ble[ir][jr] = bufmaskblurcol->L[ir][jr] / 32768.f;
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hue[ir][jr] = xatan2f(bufmaskblurcol->b[ir][jr], bufmaskblurcol->a[ir][jr]);
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float chromah = sqrt(SQR(bufmaskblurcol->b[ir][jr]) + SQR(bufmaskblurcol->a[ir][jr]));
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blechro[ir][jr] = chromah / 32768.f;//must be good perhaps more or less, only incidence on LIM blea bleb
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float X, Y, Z;
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float L = bufcolorig->L[ir][jr];
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@ -3968,7 +3919,7 @@ void ImProcFunctions::InverseSharp_Local(float **loctemp, const float hueref, co
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float kab = 1.f;
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balancedeltaE(kL, kab);
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LabImage *origblur = new LabImage(GW, GH);
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std::unique_ptr<LabImage> origblur(new LabImage(GW, GH));
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float radius = 3.f / sk;
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#ifdef _OPENMP
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@ -4039,7 +3990,6 @@ void ImProcFunctions::InverseSharp_Local(float **loctemp, const float hueref, co
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}
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}
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}
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delete origblur;
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}
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@ -4165,7 +4115,7 @@ void ImProcFunctions::Exclude_Local(float **deltaso, float hueref, float chromar
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sobelref = log1p(sobelref);
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LabImage *origblur = new LabImage(GW, GH);
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std::unique_ptr<LabImage> origblur(new LabImage(GW, GH));
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const float radius = 3.f / sk;
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@ -4248,38 +4198,22 @@ void ImProcFunctions::Exclude_Local(float **deltaso, float hueref, float chromar
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const float affde = reducdE;
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if (rL > 32.768f) { //to avoid crash with very low gamut in rare cases ex : L=0.01 a=0.5 b=-0.9
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switch (zone) {
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if (zone > 0) {
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case 1: { // inside transition zone
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const float difL = (rsv->L[loy - begy][lox - begx] - original->L[y][x]) * localFactor;
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transformed->L[y][x] = CLIP(original->L[y][x] + difL * affsob * affde);
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const float difL = (rsv->L[loy - begy][lox - begx] - original->L[y][x]) * localFactor;
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transformed->L[y][x] = CLIP(original->L[y][x] + difL * affsob * affde);
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const float difa = (rsv->a[loy - begy][lox - begx] - original->a[y][x]) * localFactor;
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transformed->a[y][x] = CLIPC(original->a[y][x] + difa * affsob * affde);
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const float difa = (rsv->a[loy - begy][lox - begx] - original->a[y][x]) * localFactor;
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transformed->a[y][x] = CLIPC(original->a[y][x] + difa * affsob * affde);
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const float difb = (rsv->b[loy - begy][lox - begx] - original->b[y][x]) * localFactor;
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transformed->b[y][x] = CLIPC(original->b[y][x] + difb * affsob * affde);
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const float difb = (rsv->b[loy - begy][lox - begx] - original->b[y][x]) * localFactor;
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transformed->b[y][x] = CLIPC(original->b[y][x] + difb * affsob * affde);
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break;
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}
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case 2: { // inside selection => full effect, no transition
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const float difL = rsv->L[loy - begy][lox - begx] - original->L[y][x];
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transformed->L[y][x] = CLIP(original->L[y][x] + difL * affsob * affde);
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const float difa = rsv->a[loy - begy][lox - begx] - original->a[y][x];;
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transformed->a[y][x] = CLIPC(original->a[y][x] + difa * affsob * affde);
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const float difb = rsv->b[loy - begy][lox - begx] - original->b[y][x];
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transformed->b[y][x] = CLIPC(original->b[y][x] + difb * affsob * affde);
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}
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}
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}
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}
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}
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}
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delete origblur;
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}
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}
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@ -4493,11 +4427,11 @@ void ImProcFunctions::transit_shapedetect2(int senstype, const LabImage * bufexp
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transformed->b[y + ystart][x + xstart] = CLIPC(difb);
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} else if (previewexp || previewvib || previewcol || previewSH || previewtm) {//show deltaE
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if (fabs(difb) < 500.f) {//if too low to be view use L
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if(difb < 0.f) {
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difb -= 0.5f * diflc;
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} else {
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difb += 0.5f * diflc;
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}
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if (difb < 0.f) {
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difb -= 0.5f * diflc;
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} else {
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difb += 0.5f * diflc;
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}
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}
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transformed->a[y + ystart][x + xstart] = 0.f;
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@ -8167,8 +8101,8 @@ void ImProcFunctions::Lab_Local(int call, int sp, float** shbuffer, LabImage * o
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rtengine::guidedFilter(guid, ble, ble, r2, epsil, multiThread);
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rtengine::guidedFilter(guid, blechro, blechro, r1, 0.3 * epsil, multiThread);
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// guidedFilter(guid, ble, ble, lp.radmabl * 10.f / sk, 0.001, multiThread, 4);
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// guidedFilter(guid, ble, ble, lp.radmabl * 10.f / sk, 0.001, multiThread, 4);
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}
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LUTf lutTonemaskbl(65536);
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