DTEC, generates a spark when something with it's ctype is nearby

This commit is contained in:
Simon Robertshaw 2012-08-28 14:17:01 +01:00
parent 29619e9ebf
commit 4263e3aab7
2 changed files with 105 additions and 0 deletions

View File

@ -2691,6 +2691,12 @@ int Simulation::create_part(int p, int x, int y, int tv)
parts[pmap[y][x]>>8].ctype = t;
if (t==PT_LIFE && v<NGOLALT && (pmap[y][x]&0xFF)!=PT_STOR) parts[pmap[y][x]>>8].tmp = v;
}
else if ((pmap[y][x]&0xFF) == PT_DTEC && (pmap[y][x]&0xFF) != t)
{
parts[pmap[y][x]>>8].ctype = t;
if (t==PT_LIFE && v<NGOLALT)
parts[pmap[y][x]>>8].tmp = v;
}
return -1;
}
if (photons[y][x] && (elements[t].Properties & TYPE_ENERGY))
@ -2900,6 +2906,9 @@ int Simulation::create_part(int p, int x, int y, int tv)
case PT_BIZR: case PT_BIZRG: case PT_BIZRS:
parts[i].ctype = 0x47FFFF;
break;
case PT_DTEC:
parts[i].tmp2 = 2;
break;
default:
if (t==PT_FIGH)
{

View File

@ -0,0 +1,96 @@
#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_ELEC;
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 = "Creates a spark when something with its ctype is nearby";
State = ST_SOLID;
Properties = TYPE_SOLID;
LowPressure = IPL;
LowPressureTransition = NT;
HighPressure = IPH;
HighPressureTransition = NT;
LowTemperature = ITL;
LowTemperatureTransition = NT;
HighTemperature = ITH;
HighTemperatureTransition = NT;
Update = &Element_DTEC::update;
}
int in_radius(int rd, int x, int y)
{
return (pow((double)x,2)*pow((double)rd,2)+pow((double)y,2)*pow((double)rd,2)<=pow((double)rd,2)*pow((double)rd,2));
}
//#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 (x+rx>=0 && y+ry>0 && x+rx<XRES && y+ry<YRES && (rx || ry))
{
r = pmap[y+ry][x+rx];
if (!r)
continue;
rt = parts[r>>8].type;
if (sim->parts_avg(i,r>>8,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[r>>8].life==0 && in_radius(rd, rx, ry))
{
parts[r>>8].life = 4;
parts[r>>8].ctype = rt;
sim->part_change_type(r>>8,x+rx,y+ry,PT_SPRK);
}
}
}
}
for (rx=-rd; rx<rd+1; rx++)
for (ry=-rd; ry<rd+1; ry++)
if (x+rx>=0 && y+ry>0 && x+rx<XRES && y+ry<YRES && (rx || ry))
{
r = pmap[y+ry][x+rx];
if (!r)
continue;
if (parts[r>>8].type == parts[i].ctype && (parts[i].ctype != PT_LIFE || parts[i].tmp == parts[r>>8].tmp))
parts[i].life = 1;
}
return 0;
}
Element_DTEC::~Element_DTEC() {}