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conformal:: used dialog::add_action() in the model dialog
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parent
44c1b43b1c
commit
bc664736e7
136
conformal.cpp
136
conformal.cpp
@ -657,49 +657,117 @@ namespace conformal {
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dialog::addSelItem(XLAT("Projection at the ground level"), fts3(vid.alpha), 'p');
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dialog::addSelItem(XLAT("Projection at the ground level"), fts3(vid.alpha), 'p');
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}
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}
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if(model_has_orientation())
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if(model_has_orientation()) {
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dialog::addSelItem(XLAT("model orientation"), fts(model_orientation), 'l');
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dialog::addSelItem(XLAT("model orientation"), fts(model_orientation), 'l');
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dialog::add_action([] () {
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dialog::editNumber(model_orientation, 0, 360, 90, 0, XLAT("model orientation"), "");
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});
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}
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if(pmodel == mdPolynomial) {
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if(pmodel == mdPolynomial) {
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dialog::addSelItem(XLAT("coefficient"),
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dialog::addSelItem(XLAT("coefficient"),
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fts4(polygonal::coefr[polygonal::coefid]), 'x');
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fts4(polygonal::coefr[polygonal::coefid]), 'x');
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dialog::add_action([] () {
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polygonal::maxcoef = max(polygonal::maxcoef, polygonal::coefid);
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int ci = polygonal::coefid + 1;
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dialog::editNumber(polygonal::coefr[polygonal::coefid], -10, 10, .01/ci/ci, 0, XLAT("coefficient"), "");
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});
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dialog::addSelItem(XLAT("coefficient (imaginary)"),
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dialog::addSelItem(XLAT("coefficient (imaginary)"),
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fts4(polygonal::coefi[polygonal::coefid]), 'y');
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fts4(polygonal::coefi[polygonal::coefid]), 'y');
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dialog::add_action([] () {
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polygonal::maxcoef = max(polygonal::maxcoef, polygonal::coefid);
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int ci = polygonal::coefid + 1;
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dialog::editNumber(polygonal::coefi[polygonal::coefid], -10, 10, .01/ci/ci, 0, XLAT("coefficient (imaginary)"), "");
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});
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dialog::addSelItem(XLAT("which coefficient"), its(polygonal::coefid), 'n');
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dialog::addSelItem(XLAT("which coefficient"), its(polygonal::coefid), 'n');
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dialog::add_action([] () {
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dialog::editNumber(polygonal::coefid, 0, polygonal::MSI-1, 1, 0, XLAT("which coefficient"), "");
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dialog::bound_low(0); dialog::bound_up(polygonal::MSI-1);
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});
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}
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}
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if(pmodel == mdHalfplane) {
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if(pmodel == mdHalfplane) {
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dialog::addSelItem(XLAT("half-plane scale"), fts(halfplane_scale), 'b');
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dialog::addSelItem(XLAT("half-plane scale"), fts(halfplane_scale), 'b');
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dialog::add_action([] () {
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dialog::editNumber(model_orientation, 0, 2, 0.25, 1, XLAT("halfplane scale"), "");
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});
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}
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}
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if(pmodel == mdBall)
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if(pmodel == mdBall) {
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dialog::addSelItem(XLAT("projection in ball model"), fts3(vid.ballproj), 'x');
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dialog::addSelItem(XLAT("projection in ball model"), fts3(vid.ballproj), 'x');
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dialog::add_action([] () {
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dialog::editNumber(vid.ballproj, 0, 100, .1, 0, XLAT("projection in ball model"),
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"This parameter affects the ball model the same way as the projection parameter affects the disk model.");
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});
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}
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if(pmodel == mdPolygonal) {
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if(pmodel == mdPolygonal) {
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dialog::addSelItem(XLAT("polygon sides"), its(polygonal::SI), 'x');
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dialog::addSelItem(XLAT("polygon sides"), its(polygonal::SI), 'x');
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dialog::add_action([] () {
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dialog::editNumber(polygonal::SI, 3, 10, 1, 4, XLAT("polygon sides"), "");
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dialog::reaction = polygonal::solve;
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});
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dialog::addSelItem(XLAT("star factor"), fts(polygonal::STAR), 'y');
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dialog::addSelItem(XLAT("star factor"), fts(polygonal::STAR), 'y');
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dialog::add_action([]() {
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dialog::editNumber(polygonal::STAR, -1, 1, .1, 0, XLAT("star factor"), "");
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dialog::reaction = polygonal::solve;
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});
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dialog::addSelItem(XLAT("degree of the approximation"), its(polygonal::deg), 'n');
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dialog::addSelItem(XLAT("degree of the approximation"), its(polygonal::deg), 'n');
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dialog::add_action([](){
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dialog::editNumber(polygonal::deg, 2, polygonal::MSI-1, 1, 2, XLAT("degree of the approximation"), "");
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dialog::reaction = polygonal::solve;
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dialog::bound_low(0); dialog::bound_up(polygonal::MSI-1);
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});
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}
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}
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if(pmodel == mdBall || pmodel == mdHyperboloid || pmodel == mdHemisphere) {
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if(pmodel == mdBall || pmodel == mdHyperboloid || pmodel == mdHemisphere) {
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dialog::addSelItem(XLAT("camera rotation in 3D models"), fts3(vid.ballangle), 'b');
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dialog::addSelItem(XLAT("camera rotation in 3D models"), fts3(vid.ballangle), 'b');
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dialog::add_action(config_camera_rotation);
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}
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}
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if(pmodel == mdHyperboloid)
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if(pmodel == mdHyperboloid) {
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dialog::addSelItem(XLAT("maximum z coordinate to show"), fts3(top_z), 'l');
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dialog::addSelItem(XLAT("maximum z coordinate to show"), fts3(top_z), 'l');
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dialog::add_action([](){
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dialog::editNumber(top_z, 1, 20, 0.25, 4, XLAT("maximum z coordinate to show"), "");
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});
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}
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if(model_has_transition())
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if(model_has_transition()) {
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dialog::addSelItem(XLAT("model transition"), fts3(model_transition), 't');
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dialog::addSelItem(XLAT("model transition"), fts3(model_transition), 't');
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dialog::add_action([]() {
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dialog::editNumber(model_transition, 0, 1, 0.1, 1, XLAT("model transition"),
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"You can change this parameter for a transition from another model to this one."
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);
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});
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}
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if(among(pmodel, mdJoukowsky, mdJoukowskyInverted, mdSpiral))
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if(among(pmodel, mdJoukowsky, mdJoukowskyInverted, mdSpiral)) {
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dialog::addSelItem(XLAT("Möbius transformations"), fts3(vid.skiprope), 'S');
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dialog::addSelItem(XLAT("Möbius transformations"), fts3(vid.skiprope), 'S');
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dialog::add_action([](){
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dialog::editNumber(vid.skiprope, 0, 360, 15, 0, XLAT("Möbius transformations"), "");
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});
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}
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if(pmodel == mdHemisphere && euclid) {
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if(pmodel == mdHemisphere && euclid) {
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dialog::addSelItem(XLAT("parameter"), fts3(vid.euclid_to_sphere), 'l');
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dialog::addSelItem(XLAT("parameter"), fts3(vid.euclid_to_sphere), 'l');
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dialog::add_action([] () {
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dialog::editNumber(vid.euclid_to_sphere, 0, 10, .1, 1, XLAT("parameter"),
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"Stereographic projection to a sphere. Choose the radius of the sphere."
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);
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dialog::scaleLog();
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});
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}
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}
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if(pmodel == mdTwoPoint) {
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if(pmodel == mdTwoPoint) {
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dialog::addSelItem(XLAT("parameter"), fts3(vid.twopoint_param), 'b');
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dialog::addSelItem(XLAT("parameter"), fts3(vid.twopoint_param), 'b');
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dialog::add_action([](){
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dialog::editNumber(vid.twopoint_param, 0, 10, .1, 1, XLAT("parameter"),
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"This model maps the world so that the distances from two points "
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"are kept. This parameter gives the distance from the two points to "
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"the center."
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);
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dialog::scaleLog();
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});
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}
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}
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dialog::addSelItem(XLAT("vertical stretch"), fts3(vid.stretch), 's');
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dialog::addSelItem(XLAT("vertical stretch"), fts3(vid.stretch), 's');
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@ -727,18 +795,6 @@ namespace conformal {
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else if(uni == 'u')
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else if(uni == 'u')
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pushScreen(rug::show);
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pushScreen(rug::show);
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#endif
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#endif
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else if(uni == 'l' && model_has_orientation())
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dialog::editNumber(model_orientation, 0, 360, 90, 0, XLAT("model orientation"), "");
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else if(uni == 'l' && pmodel == mdHyperboloid)
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dialog::editNumber(top_z, 1, 20, 0.25, 4, XLAT("maximum z coordinate to show"), "");
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else if(uni == 't')
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dialog::editNumber(model_transition, 0, 1, 0.1, 1, XLAT("model transition"),
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"You can change this parameter for a transition from another model to this one."
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);
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else if(uni == 'S')
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dialog::editNumber(vid.skiprope, 0, 360, 15, 0, XLAT("Möbius transformations"), "");
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else if(uni == 'b' && pmodel == mdHalfplane)
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dialog::editNumber(model_orientation, 0, 2, 0.25, 1, XLAT("halfplane scale"), "");
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else if(uni == 's') {
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else if(uni == 's') {
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dialog::editNumber(vid.stretch, 0, 10, .1, 1, XLAT("vertical stretch"),
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dialog::editNumber(vid.stretch, 0, 10, .1, 1, XLAT("vertical stretch"),
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"Vertical stretch factor."
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"Vertical stretch factor."
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@ -766,52 +822,6 @@ namespace conformal {
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}
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}
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else if(uni == 'a')
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else if(uni == 'a')
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pushScreen(history_menu);
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pushScreen(history_menu);
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else if(uni == 'l' && pmodel == mdHemisphere && euclid) {
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dialog::editNumber(vid.euclid_to_sphere, 0, 10, .1, 1, XLAT("parameter"),
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"Stereographic projection to a sphere. Choose the radius of the sphere."
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);
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dialog::scaleLog();
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}
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else if(uni == 'b' && pmodel == mdTwoPoint) {
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dialog::editNumber(vid.twopoint_param, 0, 10, .1, 1, XLAT("parameter"),
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"This model maps the world so that the distances from two points "
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"are kept. This parameter gives the distance from the two points to "
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"the center."
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);
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dialog::scaleLog();
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}
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else if(uni == 'b')
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config_camera_rotation();
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else if(uni == 'x' && pmodel == mdBall)
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dialog::editNumber(vid.ballproj, 0, 100, .1, 0, XLAT("projection in ball model"),
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"This parameter affects the ball model the same way as the projection parameter affects the disk model.");
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else if(sym == 'x' && pmodel == mdPolygonal) {
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dialog::editNumber(polygonal::SI, 3, 10, 1, 4, XLAT("polygon sides"), "");
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dialog::reaction = polygonal::solve;
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}
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else if(sym == 'y' && pmodel == mdPolygonal) {
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dialog::editNumber(polygonal::STAR, -1, 1, .1, 0, XLAT("star factor"), "");
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dialog::reaction = polygonal::solve;
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}
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else if(sym == 'n' && pmodel == mdPolygonal) {
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dialog::editNumber(polygonal::deg, 2, polygonal::MSI-1, 1, 2, XLAT("degree of the approximation"), "");
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dialog::reaction = polygonal::solve;
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dialog::bound_low(0); dialog::bound_up(polygonal::MSI-1);
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}
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else if(sym == 'x' && pmodel == mdPolynomial) {
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polygonal::maxcoef = max(polygonal::maxcoef, polygonal::coefid);
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int ci = polygonal::coefid + 1;
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dialog::editNumber(polygonal::coefr[polygonal::coefid], -10, 10, .01/ci/ci, 0, XLAT("coefficient"), "");
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}
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else if(sym == 'y' && pmodel == mdPolynomial) {
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polygonal::maxcoef = max(polygonal::maxcoef, polygonal::coefid);
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int ci = polygonal::coefid + 1;
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dialog::editNumber(polygonal::coefi[polygonal::coefid], -10, 10, .01/ci/ci, 0, XLAT("coefficient (imaginary)"), "");
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}
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else if(sym == 'n' && pmodel == mdPolynomial) {
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dialog::editNumber(polygonal::coefid, 0, polygonal::MSI-1, 1, 0, XLAT("which coefficient"), "");
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dialog::bound_low(0); dialog::bound_up(polygonal::MSI-1);
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}
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else if(sym == 'r') {
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else if(sym == 'r') {
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if(rotation < 0) rotation = 0;
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if(rotation < 0) rotation = 0;
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dialog::editNumber(rotation, 0, 360, 90, 0, XLAT("rotation"),
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dialog::editNumber(rotation, 0, 360, 90, 0, XLAT("rotation"),
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