232 lines
5.9 KiB
C++
232 lines
5.9 KiB
C++
#include "simulation/Elements.h"
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//#TPT-Directive ElementClass Element_VIBR PT_VIBR 165
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Element_VIBR::Element_VIBR()
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{
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Identifier = "DEFAULT_PT_VIBR";
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Name = "VIBR";
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Colour = PIXPACK(0x002900);
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MenuVisible = 1;
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MenuSection = SC_SOLIDS;
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Enabled = 1;
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Advection = 0.0f;
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AirDrag = 0.00f * CFDS;
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AirLoss = 0.85f;
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Loss = 0.00f;
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Collision = 0.0f;
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Gravity = 0.0f;
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Diffusion = 0.00f;
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HotAir = 0.000f * CFDS;
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Falldown = 0;
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Flammable = 0;
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Explosive = 0;
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Meltable = 0;
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Hardness = 0;
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Weight = 100;
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Temperature = R_TEMP+0.0f +273.15f;
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HeatConduct = 251;
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Description = "Vibranium. Stores energy and releases it in violent explosions.";
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State = ST_SOLID;
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Properties = TYPE_SOLID|PROP_LIFE_DEC;
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LowPressure = IPL;
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LowPressureTransition = NT;
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HighPressure = IPH;
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HighPressureTransition = NT;
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LowTemperature = ITL;
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LowTemperatureTransition = NT;
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HighTemperature = ITH;
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HighTemperatureTransition = NT;
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Update = &Element_VIBR::update;
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Graphics = &Element_VIBR::graphics;
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}
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void transferProp(UPDATE_FUNC_ARGS, int propOffset)
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{
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int r, rx, ry, trade, transfer;
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for (trade = 0; trade < 9; trade++)
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{
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int random = rand();
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rx = random%7-3;
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ry = (random>>3)%7-3;
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if (x+rx>=0 && y+ry>0 && x+rx<XRES && y+ry<YRES && (rx || ry))
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{
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r = pmap[y+ry][x+rx];
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if ((r&0xFF)!=PT_VIBR)
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continue;
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if (*((int*)(((char*)&parts[i])+propOffset)) > *((int*)(((char*)&parts[r>>8])+propOffset)))
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{
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transfer = *((int*)(((char*)&parts[i])+propOffset)) - *((int*)(((char*)&parts[r>>8])+propOffset));
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if (transfer == 1)
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{
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*((int*)(((char*)&parts[r>>8])+propOffset)) += 1;
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*((int*)(((char*)&parts[i])+propOffset)) -= 1;
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trade = 9;
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}
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else if (transfer > 0)
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{
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*((int*)(((char*)&parts[r>>8])+propOffset)) += transfer/2;
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*((int*)(((char*)&parts[i])+propOffset)) -= transfer/2;
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trade = 9;
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}
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}
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}
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}
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}
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//#TPT-Directive ElementHeader Element_VIBR static int update(UPDATE_FUNC_ARGS)
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int Element_VIBR::update(UPDATE_FUNC_ARGS) {
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int r, rx, ry, transfer, trade;
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if (!parts[i].life)
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{
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//Heat absorption code
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if (parts[i].temp>274.65f)
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{
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parts[i].ctype++;
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parts[i].temp-=3;
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}
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if (parts[i].temp<271.65f)
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{
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parts[i].ctype--;
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parts[i].temp+=3;
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}
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//Pressure absorption code
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if (sim->pv[y/CELL][x/CELL]>2.5)
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{
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parts[i].tmp++;
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sim->pv[y/CELL][x/CELL]--;
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}
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if (sim->pv[y/CELL][x/CELL]<-2.5)
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{
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parts[i].tmp--;
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sim->pv[y/CELL][x/CELL]++;
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}
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}
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//Release sparks before explode
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if (parts[i].life && parts[i].life < 300)
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{
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rx = rand()%3-1;
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ry = rand()%3-1;
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r = pmap[y+ry][x+rx];
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if ((r&0xFF) && (r&0xFF) != PT_BREC && (sim->elements[r&0xFF].Properties&PROP_CONDUCTS) && !parts[r>>8].life)
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{
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parts[r>>8].life = 4;
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parts[r>>8].ctype = r>>8;
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sim->part_change_type(r>>8,x+rx,y+ry,PT_SPRK);
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}
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}
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//initiate explosion counter
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if (!parts[i].life && (parts[i].ctype > 1200 || parts[i].tmp > 100 || parts[i].tmp2 > 100))
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parts[i].life = 750;
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//Release all heat
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if (parts[i].life && parts[i].life < 500)
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{
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int random = rand();
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rx = random%7-3;
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ry = (random>>3)%7-3;
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if(x+rx>=0 && y+ry>0 && x+rx<XRES && y+ry<YRES)
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{
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r = pmap[y+ry][x+rx];
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if ((r&0xFF) && (r&0xFF)!=PT_VIBR)
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{
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parts[r>>8].temp += parts[i].ctype*6;
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parts[i].ctype -= parts[i].ctype*2;
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}
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}
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}
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//Explosion code
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if (parts[i].life == 1)
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{
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sim->create_part(i, x, y, PT_EXOT);
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parts[i].tmp2 = 100;
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int random = rand(), index;
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index = sim->create_part(-3,x+(random&3)-1,y+((random>>2)&3)-1,PT_ELEC);
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if (index != -1)
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parts[index].temp = 7000;
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index = sim->create_part(-3,x+((random>>4)&3)-1,y+((random>>6)&3)-1,PT_NEUT);
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if (index != -1)
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parts[index].temp = 7000;
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index = sim->create_part(-3,x+((random>>8)&3)-1,y+((random>>10)&3)-1,PT_PHOT);
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if (index != -1)
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parts[index].temp = 7000;
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index = sim->create_part(-3,x+((random>>12)&3)-1,y+rand()%3-1,PT_BREC);
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if (index != -1)
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parts[index].temp = 7000;
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parts[i].temp=9000;
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sim->pv[y/CELL][x/CELL]=200;
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}
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//Neighbor check loop
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for (rx=-2; rx<3; rx++)
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for (ry=-2; ry<3; ry++)
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if (x+rx>=0 && y+ry>0 && x+rx<XRES && y+ry<YRES && (rx || ry))
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{
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r = pmap[y+ry][x+rx];
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if (!r)
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continue;
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//Melts into EXOT
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if ((r&0xFF)==PT_EXOT && !(rand()%250))
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{
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sim->part_change_type(i,x,y,PT_EXOT);
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}
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//Absorbs energy particles
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if (sim->elements[r&0xFF].Properties & TYPE_ENERGY)
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{
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parts[i].tmp2++;
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sim->kill_part(r>>8);
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}
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if ((r&0xFF)==PT_BOYL)
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{
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sim->part_change_type(i,x,y,PT_BVBR);
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}
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}
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transferProp(UPDATE_FUNC_SUBCALL_ARGS, offsetof(Particle, tmp));
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transferProp(UPDATE_FUNC_SUBCALL_ARGS, offsetof(Particle, tmp2));
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transferProp(UPDATE_FUNC_SUBCALL_ARGS, offsetof(Particle, ctype));
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return 0;
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}
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//#TPT-Directive ElementHeader Element_VIBR static int graphics(GRAPHICS_FUNC_ARGS)
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int Element_VIBR::graphics(GRAPHICS_FUNC_ARGS)
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{
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float maxtemp = std::max((float)cpart->tmp, cpart->temp);
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int gradient = std::max(cpart->ctype/12.0f, (float)cpart->tmp);
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gradient = std::max(gradient, cpart->tmp2);
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if (gradient >= 100 || cpart->life)
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{
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*pixel_mode = PMODE_NONE;
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*pixel_mode |= FIRE_BLEND;
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*firea = 90;
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*colr = 146;
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*colg = 158;
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*colb = 113;
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*firer = *colr;
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*fireg = *colg;
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*fireb = *colb;
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}
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else if (gradient >= 94 && gradient < 100)
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{
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*colr += (int)restrict_flt((gradient-94)*19.7+100,100,218);
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*colg += (int)restrict_flt((gradient-94)*17.5+87,87,192);
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*colb += (int)restrict_flt((gradient-94)*19.7+100,100,218);
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}
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else if (gradient >= 63 && gradient < 94)
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{
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*colr += (int)restrict_flt((gradient-63)*1.58+51,51,100);
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*colg += (int)restrict_flt((gradient-63)*1.03+55,55,87);
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*colb += (int)restrict_flt((gradient-63)*1.58+51,51,100);
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}
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else if (gradient > 31 && gradient < 63)
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{
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*colr += (int)restrict_flt((gradient-31)*1.59,0,51);
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*colg += (int)restrict_flt((gradient-31)*1.72,0,55);
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*colb += (int)restrict_flt((gradient-31)*1.59,0,51);
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}
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return 0;
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}
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Element_VIBR::~Element_VIBR() {} |