#include "simulation/Elements.h" //#TPT-Directive ElementClass Element_DTEC PT_DTEC 162 Element_DTEC::Element_DTEC() { Identifier = "DEFAULT_PT_DTEC"; Name = "DTEC"; Colour = PIXPACK(0xFD9D18); MenuVisible = 1; MenuSection = SC_SENSOR; Enabled = 1; Advection = 0.0f; AirDrag = 0.00f * CFDS; AirLoss = 0.96f; Loss = 0.00f; Collision = 0.0f; Gravity = 0.0f; Diffusion = 0.00f; HotAir = 0.000f * CFDS; Falldown = 0; Flammable = 0; Explosive = 0; Meltable = 0; Hardness = 1; Weight = 100; Temperature = R_TEMP+0.0f +273.15f; HeatConduct = 0; Description = "Detector, creates a spark when something with its ctype is nearby."; Properties = TYPE_SOLID; LowPressure = IPL; LowPressureTransition = NT; HighPressure = IPH; HighPressureTransition = NT; LowTemperature = ITL; LowTemperatureTransition = NT; HighTemperature = ITH; HighTemperatureTransition = NT; Update = &Element_DTEC::update; } //#TPT-Directive ElementHeader Element_DTEC static int update(UPDATE_FUNC_ARGS) int Element_DTEC::update(UPDATE_FUNC_ARGS) { int r, rx, ry, rt, rd = parts[i].tmp2; if (rd > 25) parts[i].tmp2 = rd = 25; if (parts[i].life) { parts[i].life = 0; for (rx=-2; rx<3; rx++) for (ry=-2; ry<3; ry++) if (BOUNDS_CHECK && (rx || ry)) { r = pmap[y+ry][x+rx]; if (!r) continue; rt = TYP(r); if (sim->parts_avg(i,ID(r),PT_INSL) != PT_INSL) { if ((sim->elements[rt].Properties&PROP_CONDUCTS) && !(rt==PT_WATR||rt==PT_SLTW||rt==PT_NTCT||rt==PT_PTCT||rt==PT_INWR) && parts[ID(r)].life==0) { parts[ID(r)].life = 4; parts[ID(r)].ctype = rt; sim->part_change_type(ID(r),x+rx,y+ry,PT_SPRK); } } } } bool setFilt = false; int photonWl = 0; for (rx=-rd; rx=0 && y+ry>=0 && x+rxphotons[y+ry][x+rx]; if(!r) continue; if (TYP(r) == parts[i].ctype && (parts[i].ctype != PT_LIFE || parts[i].tmp == parts[ID(r)].ctype || !parts[i].tmp)) parts[i].life = 1; if (TYP(r) == PT_PHOT || (TYP(r) == PT_BRAY && parts[ID(r)].tmp!=2)) { setFilt = true; photonWl = parts[ID(r)].ctype; } } if (setFilt) { int nx, ny; for (rx=-1; rx<2; rx++) for (ry=-1; ry<2; ry++) if (BOUNDS_CHECK && (rx || ry)) { r = pmap[y+ry][x+rx]; if (!r) continue; nx = x+rx; ny = y+ry; while (TYP(r)==PT_FILT) { parts[ID(r)].ctype = photonWl; nx += rx; ny += ry; if (nx<0 || ny<0 || nx>=XRES || ny>=YRES) break; r = pmap[ny][nx]; } } } return 0; } Element_DTEC::~Element_DTEC() {}