mirror of
https://github.com/hrydgard/ppsspp.git
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202 lines
5.5 KiB
Plaintext
202 lines
5.5 KiB
Plaintext
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/*
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AA shader 4.o / AA shader 4.o - filtro
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Copyright (C) 2014 guest(r) - guest.r@gmail.com
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This program is free software; you can redistribute it and/or
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modify it under the terms of the GNU General Public License
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as published by the Free Software Foundation; either version 2
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of the License, or (at your option) any later version.
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This program is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with this program; if not, write to the Free Software
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Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA.
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*/
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// Modified as video aware smoothing effect for PPSSPP.
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// Some variable definitions had to be moved inside functions(and so repeated) due to glsl->hlsl auto translation failing.
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// Also auto translation fails with bool uniform, which is why u_video is defined as float.
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#ifdef GL_ES
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precision mediump float;
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precision mediump int;
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#endif
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uniform sampler2D sampler0;
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uniform float u_video;
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//===========
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varying vec2 v_texcoord0;
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const vec3 dt = vec3(1.0,1.0,1.0);
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vec3 texture2d (vec2 texcoord) {
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float scale = 1.0;
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if (u_video==1.0){
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scale = 2.0;
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} else {
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scale = 7.0;
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}
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vec4 yx = vec4(1.0/480.0,1.0/272.0,-1.0/480.0,-1.0/272.0)/scale;
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vec4 xy = vec4(2.0/480.0,2.0/272.0,-2.0/480.0,-2.0/272.0)/scale;
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vec3 s00 = texture2D(sampler0, texcoord + yx.zw).xyz;
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vec3 s20 = texture2D(sampler0, texcoord + yx.xw).xyz;
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vec3 s22 = texture2D(sampler0, texcoord + yx.xy).xyz;
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vec3 s02 = texture2D(sampler0, texcoord + yx.zy).xyz;
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float m1=dot(abs(s00-s22),dt)+0.001;
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float m2=dot(abs(s02-s20),dt)+0.001;
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return 0.5*(m2*(s00+s22)+m1*(s02+s20))/(m1+m2);
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}
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vec3 texture2dd (vec2 texcoord) {
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float scale = 1.0;
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if (u_video==1.0){
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scale = 2.0;
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} else {
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scale = 7.0;
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}
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vec4 yx = vec4(1.0/480.0,1.0/272.0,-1.0/480.0,-1.0/272.0)/scale;
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vec4 xy = vec4(2.0/480.0,2.0/272.0,-2.0/480.0,-2.0/272.0)/scale;
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vec3 c11 = texture2D(sampler0, texcoord ).xyz;
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vec3 c00 = texture2D(sampler0, texcoord + xy.zw).xyz;
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vec3 c20 = texture2D(sampler0, texcoord + xy.xw).xyz;
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vec3 c22 = texture2D(sampler0, texcoord + xy.xy).xyz;
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vec3 c02 = texture2D(sampler0, texcoord + xy.zy).xyz;
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vec3 s00 = texture2D(sampler0, texcoord + yx.zw).xyz;
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vec3 s20 = texture2D(sampler0, texcoord + yx.xw).xyz;
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vec3 s22 = texture2D(sampler0, texcoord + yx.xy).xyz;
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vec3 s02 = texture2D(sampler0, texcoord + yx.zy).xyz;
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float d1=dot(abs(c00-c22),dt)+0.001;
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float d2=dot(abs(c20-c02),dt)+0.001;
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float m1=dot(abs(s00-s22),dt)+0.001;
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float m2=dot(abs(s02-s20),dt)+0.001;
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vec3 t2=(d1*(c20+c02)+d2*(c00+c22))/(2.0*(d1+d2));
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return 0.25*(c11+t2+(m2*(s00+s22)+m1*(s02+s20))/(m1+m2));
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}
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void main() {
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float scale = 7.0;
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bool filtro = false;
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if (u_video==1.0){
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scale = 2.0;
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filtro = true;
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} else {
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scale = 7.0;
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filtro = false;
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}
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// Calculating texel coordinates
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vec2 size = vec2(480.0,272.0)*scale;
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vec2 inv_size = vec2(1.0/480.0,1.0/272.0)/scale;
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vec2 OGL2Pos = v_texcoord0 * size;
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vec2 fp = fract(OGL2Pos);
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vec2 dx = vec2(inv_size.x,0.0);
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vec2 dy = vec2(0.0, inv_size.y);
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vec2 g1 = vec2(inv_size.x,inv_size.y);
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vec2 g2 = vec2(-inv_size.x,inv_size.y);
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vec2 pC4 = floor(OGL2Pos) * inv_size + 0.5*inv_size;
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// Reading the texels
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vec3 C0 = texture2d(pC4 - g1);
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vec3 C1 = texture2d(pC4 - dy);
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vec3 C2 = texture2d(pC4 - g2);
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vec3 C3 = texture2d(pC4 - dx);
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vec3 C4 = texture2d(pC4 );
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vec3 C5 = texture2d(pC4 + dx);
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vec3 C6 = texture2d(pC4 + g2);
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vec3 C7 = texture2d(pC4 + dy);
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vec3 C8 = texture2d(pC4 + g1);
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vec3 ul, ur, dl, dr;
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float m1, m2;
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m1 = dot(abs(C0-C4),dt)+0.001;
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m2 = dot(abs(C1-C3),dt)+0.001;
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ul = (m2*(C0+C4)+m1*(C1+C3))/(m1+m2);
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m1 = dot(abs(C1-C5),dt)+0.001;
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m2 = dot(abs(C2-C4),dt)+0.001;
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ur = (m2*(C1+C5)+m1*(C2+C4))/(m1+m2);
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m1 = dot(abs(C3-C7),dt)+0.001;
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m2 = dot(abs(C6-C4),dt)+0.001;
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dl = (m2*(C3+C7)+m1*(C6+C4))/(m1+m2);
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m1 = dot(abs(C4-C8),dt)+0.001;
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m2 = dot(abs(C5-C7),dt)+0.001;
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dr = (m2*(C4+C8)+m1*(C5+C7))/(m1+m2);
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vec3 result = vec3(0.5*((dr*fp.x+dl*(1.0-fp.x))*fp.y+(ur*fp.x+ul*(1.0-fp.x))*(1.0-fp.y)));
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if(filtro){
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vec3 c11 = 0.5*((dr*fp.x+dl*(1.0-fp.x))*fp.y+(ur*fp.x+ul*(1.0-fp.x))*(1.0-fp.y));
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inv_size = vec2(2.0/480.0,2.0/272.0)/scale;;
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dx = vec2(inv_size.x,0.0);
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dy = vec2(0.0,inv_size.y);
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g1 = vec2( inv_size.x,inv_size.y);
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g2 = vec2(-inv_size.x,inv_size.y);
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pC4 = v_texcoord0;
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C0 = texture2dd(pC4-g1);
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C1 = texture2dd(pC4-dy);
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C2 = texture2dd(pC4-g2);
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C3 = texture2dd(pC4-dx);
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C4 = texture2dd(pC4 );
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C5 = texture2dd(pC4+dx);
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C6 = texture2dd(pC4+g2);
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C7 = texture2dd(pC4+dy);
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C8 = texture2dd(pC4+g1);
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vec3 mn1 = min(min(C0,C1),C2);
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vec3 mn2 = min(min(C3,C4),C5);
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vec3 mn3 = min(min(C6,C7),C8);
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vec3 mx1 = max(max(C0,C1),C2);
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vec3 mx2 = max(max(C3,C4),C5);
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vec3 mx3 = max(max(C6,C7),C8);
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mn1 = min(min(mn1,mn2),mn3);
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mx1 = max(max(mx1,mx2),mx3);
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vec3 dif1 = abs(c11-mn1) + 0.0001*dt;
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vec3 dif2 = abs(c11-mx1) + 0.0001*dt;
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float filterparam = 2.0;
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dif1=vec3(pow(dif1.x,filterparam),pow(dif1.y,filterparam),pow(dif1.z,filterparam));
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dif2=vec3(pow(dif2.x,filterparam),pow(dif2.y,filterparam),pow(dif2.z,filterparam));
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c11.r = (dif1.x*mx1.x + dif2.x*mn1.x)/(dif1.x + dif2.x);
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c11.g = (dif1.y*mx1.y + dif2.y*mn1.y)/(dif1.y + dif2.y);
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c11.b = (dif1.z*mx1.z + dif2.z*mn1.z)/(dif1.z + dif2.z);
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result = c11;
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}
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gl_FragColor.xyz=result.xyz;
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gl_FragColor.a = 1.0;
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}
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