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solv:: lazy version of inv_exp
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2
hyper.h
2
hyper.h
@ -5631,7 +5631,7 @@ namespace kite {
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namespace solv {
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namespace solv {
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extern transmatrix local_perspective;
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extern transmatrix local_perspective;
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hrmap *new_map();
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hrmap *new_map();
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hyperpoint inverse_exp(hyperpoint h);
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hyperpoint inverse_exp(hyperpoint h, bool lazy);
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transmatrix get_solmul(const transmatrix T, const transmatrix V);
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transmatrix get_solmul(const transmatrix T, const transmatrix V);
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extern string solshader;
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extern string solshader;
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@ -320,7 +320,7 @@ void applymodel(hyperpoint H, hyperpoint& ret) {
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}
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}
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case mdSolPerspective: {
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case mdSolPerspective: {
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auto S = solv::inverse_exp(H);
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auto S = solv::inverse_exp(H, false);
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ld ratio = vid.xres / current_display->tanfov / current_display->radius / 2;
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ld ratio = vid.xres / current_display->tanfov / current_display->radius / 2;
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ret[0] = S[0]/S[2] * ratio;
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ret[0] = S[0]/S[2] * ratio;
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ret[1] = S[1]/S[2] * ratio;
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ret[1] = S[1]/S[2] * ratio;
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21
sol.cpp
21
sol.cpp
@ -111,21 +111,26 @@ namespace solv {
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return 0.5 - atan((0.5-x) / y) / M_PI;
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return 0.5 - atan((0.5-x) / y) / M_PI;
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}
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}
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pt inverse_exp(pt h) {
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pt inverse_exp(pt h, bool lazy) {
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load_table();
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load_table();
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ld ix = h[0] >= 0. ? x_to_ix(h[0]) : -x_to_ix(-h[0]);
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ld ix = h[0] >= 0. ? x_to_ix(h[0]) : x_to_ix(-h[0]);
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ld iy = h[1] >= 0. ? x_to_ix(h[1]) : -x_to_ix(-h[1]);
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ld iy = h[1] >= 0. ? x_to_ix(h[1]) : x_to_ix(-h[1]);
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ld iz = tanh(h[2]);
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ld iz = tanh(h[2]);
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if(ix < 0.) ix = -ix;
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if(h[2] < 0.) { iz = -iz; swap(ix, iy); }
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if(iy < 0.) iy = -iy;
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if(iz < 0.) { iz = -iz; ld s = ix; ix = iy; iy = s; }
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ix *= PRECX-1;
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ix *= PRECX-1;
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iy *= PRECY-1;
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iy *= PRECY-1;
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iz *= PRECZ-1;
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iz *= PRECZ-1;
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if(lazy) {
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auto r = inverse_exp_table[(iz*PRECY+iy)*PRECX+ix];
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hyperpoint res = C0;
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for(int i=0; i<3; i++) res[i] = r[i];
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return res;
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}
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if(ix >= PRECX-1) ix = PRECX-2;
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if(ix >= PRECX-1) ix = PRECX-2;
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if(iy >= PRECX-1) iy = PRECX-2;
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if(iy >= PRECX-1) iy = PRECX-2;
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@ -135,7 +140,7 @@ namespace solv {
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int ay = iy, by = ay+1;
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int ay = iy, by = ay+1;
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int az = iz, bz = az+1;
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int az = iz, bz = az+1;
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pt res;
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pt res = C0;
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#define S0(x,y,z) inverse_exp_table[(z*PRECY+y)*PRECX+x][t]
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#define S0(x,y,z) inverse_exp_table[(z*PRECY+y)*PRECX+x][t]
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#define S1(x,y) (S0(x,y,az) * (bz-iz) + S0(x,y,bz) * (iz-az))
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#define S1(x,y) (S0(x,y,az) * (bz-iz) + S0(x,y,bz) * (iz-az))
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