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ads-game:: ds-game more game-y
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@ -2,25 +2,111 @@ namespace hr {
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namespace ads_game {
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vector<ld> shape_disk;
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void set_default_keys();
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transmatrix dscurrent, dscurrent_ship;
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vector<shipstate> ds_states;
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vector<unique_ptr<ads_object>> rocks;
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void init_ds_game() {
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for(int i=0; i<500; i++) {
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hyperpoint h = random_spin3() * C0;
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println(hlog, "h = ", h);
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transmatrix T = gpushxto0(h);
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dynamicval<eGeometry> g(geometry, gSpace435);
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for(int i=0; i<4; i++) T[i][3] = T[3][i] = i == 3;
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transmatrix worldline = inverse(T);
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worldline = worldline * spin(randd() * TAU);
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worldline = worldline * lorentz(0, 3, randd());
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auto r = std::make_unique<ads_object> (oRock, nullptr, ads_matrix(worldline, 0), 0xFFFFFFFF);
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r->shape = &shape_disk;
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rocks.emplace_back(std::move(r));
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}
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shape_disk.clear();
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for(int d=0; d<=360; d += 15) {
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shape_disk.push_back(sin(d*degree) * 0.1 * scale);
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shape_disk.push_back(cos(d*degree) * 0.1 * scale);
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}
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}
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void ds_gen_particles(int qty, transmatrix from, color_t col, ld spd, ld t, ld spread = 1) {
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for(int i=0; i<qty; i++) {
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auto r = std::make_unique<ads_object>(oParticle, nullptr, ads_matrix(from * spin(randd() * TAU * spread) * lorentz(0, 3, (.5 + randd() * .5) * spd), 0), col );
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r->shape = &shape_particle;
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r->life_end = randd() * t;
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r->life_start = 0;
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rocks.emplace_back(std::move(r));
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}
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}
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void ds_handle_crashes() {
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if(paused) return;
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vector<ads_object*> dmissiles;
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vector<ads_object*> drocks;
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for(auto m: displayed) {
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if(m->type == oMissile)
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dmissiles.push_back(m);
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if(m->type == oRock)
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drocks.push_back(m);
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}
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for(auto m: dmissiles) {
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hyperpoint h = kleinize(m->pt_main.h);
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for(auto r: drocks) {
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if(pointcrash(h, r->pts)) {
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m->life_end = m->pt_main.shift;
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r->life_end = r->pt_main.shift;
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dynamicval<eGeometry> g(geometry, gSpace435);
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ds_gen_particles(rpoisson(crash_particle_qty), m->at.T * lorentz(2, 3, m->life_end), missile_color, crash_particle_rapidity, crash_particle_life);
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ds_gen_particles(rpoisson(crash_particle_qty), r->at.T * lorentz(2, 3, r->life_end), r->col, crash_particle_rapidity, crash_particle_life);
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pdata.score++;
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int qty = 2 + rpoisson(1);
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for(int i=0; i<qty; i++) {
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auto r1 = std::make_unique<ads_object> (oRock, nullptr, ads_matrix(r->at.T * lorentz(2, 3, r->life_end) * spin(randd() * TAU) * lorentz(0, 3, randd() * ds_split_speed), 0), 0xFFFFFFFF);
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r1->shape = &shape_disk;
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r1->life_start = 0;
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rocks.emplace_back(std::move(r1));
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}
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break;
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}
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}
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}
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}
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void ds_fire() {
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if(!pdata.ammo) return;
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pdata.ammo--;
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dynamicval<eGeometry> g(geometry, gSpace435);
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transmatrix S0 = inverse(dscurrent) * spin(ang*degree);
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transmatrix S1 = S0 * lorentz(0, 3, missile_rapidity);
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auto r = std::make_unique<ads_object> (oMissile, nullptr, ads_matrix(S1, 0), 0xC0C0FFFF);
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r->shape = &shape_missile;
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r->life_start = 0;
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rocks.emplace_back(std::move(r));
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}
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bool ds_turn(int idelta) {
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multi::handleInput(idelta);
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ld delta = idelta / anims::period;
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if(!(cmode & sm::NORMAL)) return false;
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// todo handle_crashes();
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ds_handle_crashes();
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auto& a = multi::actionspressed;
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auto& la = multi::lactionpressed;
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// todo if(a[16+4] && !la[16+4] && !paused) fire();
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if(a[16+4] && !la[16+4] && !paused) ds_fire();
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if(a[16+5] && !la[16+5]) {
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paused = !paused;
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if(paused) {
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@ -51,7 +137,7 @@ bool ds_turn(int idelta) {
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if(!paused) {
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pdata.fuel -= delta*accel*mul;
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// todo gen_particles(rpoisson(delta*accel*mul*fuel_particle_qty), vctr, ads_inverse(current * vctrV) * spin(ang*degree+M_PI) * rots::uxpush(0.06 * scale), rsrc_color[rtFuel], fuel_particle_rapidity, fuel_particle_life, 0.02);
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ds_gen_particles(rpoisson(delta*accel*mul*fuel_particle_qty), inverse(dscurrent) * spin(ang*degree+M_PI) * rots::uxpush(0.06 * scale), rsrc_color[rtFuel], fuel_particle_rapidity, fuel_particle_life, 0.02);
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}
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ld tc = 0;
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@ -78,13 +164,17 @@ bool ds_turn(int idelta) {
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}
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}
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else view_pt += tc;
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if(a[16+4] && !la[16+4] && false) {
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if(ds_states.size())
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ds_states.back().duration = HUGE_VAL;
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dscurrent = random_spin3();
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}
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}
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return true;
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}
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vector<transmatrix> opoints;
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hyperpoint pov = point30(0, 0, 1);
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cross_result ds_cross0(transmatrix T) {
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@ -101,64 +191,60 @@ cross_result ds_cross0(transmatrix T) {
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return res;
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}
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transmatrix tpt(ld x, ld y) {
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return cspin(0, 2, x * scale) * cspin(1, 2, y * scale);
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}
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void view_ds_game() {
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displayed.clear();
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if(opoints.empty()) {
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for(int i=0; i<500; i++) {
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hyperpoint h = random_spin3() * C0;
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println(hlog, "h = ", h);
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transmatrix T = gpushxto0(h);
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dynamicval<eGeometry> g(geometry, gSpace435);
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for(int i=0; i<4; i++) T[i][3] = T[3][i] = i == 3;
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transmatrix worldline = inverse(T);
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worldline = worldline * spin(randd() * TAU);
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worldline = worldline * lorentz(0, 3, randd());
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opoints.push_back(worldline);
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}
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}
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if(1) {
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make_shape();
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for(auto& worldline: opoints) {
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for(auto& r: rocks) {
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auto& rock = *r;
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poly_outline = 0xFF;
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cross_result cr;
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transmatrix at;
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vector<hyperpoint> circle;
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if(1) {
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dynamicval<eGeometry> g(geometry, gSpace435);
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cr = ds_cross0(dscurrent * worldline);
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rock.pt_main = ds_cross0(dscurrent * rock.at.T);
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at = dscurrent * worldline * lorentz(2, 3, cr.shift);
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if(rock.pt_main.shift < rock.life_start) continue;
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if(rock.pt_main.shift > rock.life_end) continue;
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for(int d=0; d<=360; d += 5) {
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transmatrix T = at * spin(d*degree) * cspin(0, 2, 0.1);
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auto cr1 = ds_cross0(T);
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circle.push_back(cr1.h);
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transmatrix at1 = dscurrent * rock.at.T * lorentz(2, 3, rock.pt_main.shift);
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rock.pts.clear();
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auto& sh = *rock.shape;
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for(int i=0; i<isize(sh); i+=2) {
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transmatrix at2 = at1 * tpt(sh[i], sh[i+1]);
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auto cr1 = ds_cross0(at2);
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rock.pts.push_back(cr1);
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}
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}
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vector<hyperpoint> circle_flat;
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for(auto c: circle) circle_flat.push_back(c / (1 + c[2]));
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for(auto c: rock.pts) circle_flat.push_back(c.h / (1 + c.h[2]));
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ld area = 0;
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for(int i=0; i<isize(circle)-1; i++)
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for(int i=0; i<isize(circle_flat)-1; i++)
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area += (circle_flat[i] ^ circle_flat[i+1]) [2];
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if(area > 0) continue;
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// queuepolyat(shiftless(rgpushxto0(cr.h)), cgi.shGem[0], 0xFFFFFFF, PPR::LINE);
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for(auto p: circle) curvepoint(p);
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queuecurve(shiftless(Id), 0xFFFFFFFF, 0xFFFFFFFF, PPR::LINE);
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for(auto p: rock.pts) curvepoint(p.h);
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color_t out = rock.col;
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queuecurve(shiftless(Id), out, rock.col, PPR::LINE);
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if(view_proper_times) {
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string str = format(tformat, cr.shift / time_unit);
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queuestr(shiftless(rgpushxto0(cr.h)), .1, str, 0xFFFF00, 8);
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string str = format(tformat, rock.pt_main.shift / time_unit);
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queuestr(shiftless(rgpushxto0(rock.pt_main.h)), .1, str, 0xFFFF00, 8);
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}
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if(rock.pt_main.h[2] > 0.1 && rock.life_end == HUGE_VAL) {
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displayed.push_back(&rock);
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}
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}
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@ -174,7 +260,7 @@ void view_ds_game() {
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auto& shape = shape_ship;
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for(int i=0; i<isize(shape); i += 2) {
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transmatrix at1 = at * cspin(0, 2, shape[i] * scale) * cspin(1, 2, shape[i+1] * scale);
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transmatrix at1 = at * tpt(shape[i], shape[i+1]);
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pts.push_back(ds_cross0(at1).h);
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}
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@ -213,6 +299,7 @@ void view_ds_game() {
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void run_ds_game() {
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set_default_keys();
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init_ds_game();
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rogueviz::rv_hook(hooks_frame, 100, view_ds_game);
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rogueviz::rv_hook(shmup::hooks_turn, 0, ds_turn);
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@ -99,4 +99,8 @@ cell *starting_point;
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int max_gen_per_frame = 3;
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int draw_per_frame = 1000;
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/* for DS */
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ld ds_split_speed = 0.1;
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}}
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