320 lines
9.8 KiB
C++
320 lines
9.8 KiB
C++
#include "simulation/Elements.h"
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//#TPT-Directive ElementClass Element_PSTN PT_PSTN 168
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Element_PSTN::Element_PSTN()
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{
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Identifier = "DEFAULT_PT_PSTN";
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Name = "PSTN";
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Colour = PIXPACK(0xAA9999);
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MenuVisible = 1;
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MenuSection = SC_FORCE;
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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 = 0.90f;
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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 = 0;
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Description = "Piston, extends and pushes particles";
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State = ST_SOLID;
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Properties = TYPE_SOLID;
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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_PSTN::update;
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Graphics = &Element_PSTN::graphics;
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}
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//#TPT-Directive ElementHeader Element_PSTN static int tempParts[128];
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int Element_PSTN::tempParts[128];
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#define PISTON_INACTIVE 0x00
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#define PISTON_RETRACT 0x01
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#define PISTON_EXTEND 0x02
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#define MAX_FRAME 0x0F
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#define DEFAULT_LIMIT 0x1F
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#define DEFAULT_ARM_LIMIT 0xFF
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//#TPT-Directive ElementHeader Element_PSTN static int update(UPDATE_FUNC_ARGS)
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int Element_PSTN::update(UPDATE_FUNC_ARGS)
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{
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if(parts[i].life)
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return 0;
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int maxSize = parts[i].tmp ? parts[i].tmp : DEFAULT_LIMIT;
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int armLimit = parts[i].tmp2 ? parts[i].tmp2 : DEFAULT_ARM_LIMIT;
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int state = 0;
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int r, nxx, nyy, nxi, nyi, rx, ry;
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int directionX = 0, directionY = 0;
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if (state == PISTON_INACTIVE) {
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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) && (!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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if ((r&0xFF)==PT_SPRK && parts[r>>8].life==3) {
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if(parts[r>>8].ctype == PT_PSCN)
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state = PISTON_EXTEND;
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else
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state = PISTON_RETRACT;
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}
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}
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}
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if(state == PISTON_EXTEND || state == PISTON_RETRACT) {
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for (rx=-1; rx<2; rx++)
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for (ry=-1; ry<2; ry++)
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if (x+rx>=0 && y+ry>0 && x+rx<XRES && y+ry<YRES && (rx || ry) && (!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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if ((r&0xFF) == PT_PSTN)
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{
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bool movedPiston = false;
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bool foundEnd = false;
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int pistonEndX, pistonEndY;
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int pistonCount = 0;
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int newSpace = 0;
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int armCount = 0;
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directionX = rx;
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directionY = ry;
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for (nxx = 0, nyy = 0, nxi = directionX, nyi = directionY; ; nyy += nyi, nxx += nxi) {
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if (!(x+nxi+nxx<XRES && y+nyi+nyy<YRES && x+nxi+nxx >= 0 && y+nyi+nyy >= 0)) {
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break;
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}
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r = pmap[y+nyi+nyy][x+nxi+nxx];
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if((r&0xFF)==PT_PSTN) {
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if(parts[r>>8].life)
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armCount++;
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else if (armCount)
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{
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pistonEndX = x+nxi+nxx;
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pistonEndY = y+nyi+nyy;
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foundEnd = true;
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break;
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}
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else
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pistonCount++;
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} else {
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pistonEndX = x+nxi+nxx;
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pistonEndY = y+nyi+nyy;
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foundEnd = true;
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break;
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}
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}
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if(foundEnd) {
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if(state == PISTON_EXTEND) {
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if(armCount+pistonCount > armLimit)
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pistonCount = armLimit-armCount;
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if(pistonCount > 0) {
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newSpace = MoveStack(sim, pistonEndX, pistonEndY, directionX, directionY, maxSize, pistonCount, false, parts[i].ctype, true);
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if(newSpace) {
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//Create new piston section
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for(int j = 0; j < newSpace; j++) {
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int nr = sim->create_part(-3, pistonEndX+(nxi*j), pistonEndY+(nyi*j), PT_PSTN);
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if (nr > -1) {
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parts[nr].life = 1;
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}
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}
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movedPiston = true;
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}
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}
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} else if(state == PISTON_RETRACT) {
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if(pistonCount > armCount)
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pistonCount = armCount;
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if(armCount) {
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MoveStack(sim, pistonEndX, pistonEndY, directionX, directionY, maxSize, pistonCount, true, parts[i].ctype, true);
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movedPiston = true;
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}
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}
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}
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if (movedPiston)
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return 0;
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}
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}
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}
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return 0;
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}
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//#TPT-Directive ElementHeader Element_PSTN static int CanMoveStack(Simulation * sim, int stackX, int stackY, int directionX, int directionY, int maxSize, int amount, bool retract, int block)
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int Element_PSTN::CanMoveStack(Simulation * sim, int stackX, int stackY, int directionX, int directionY, int maxSize, int amount, bool retract, int block)
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{
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int posX, posY, r, spaces = 0, currentPos = 0;
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if (amount == 0)
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return 0;
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for(posX = stackX, posY = stackY; currentPos < maxSize + amount; posX += directionX, posY += directionY) {
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if (!(posX < XRES && posY < YRES && posX >= 0 && posY >= 0)) {
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break;
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}
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r = sim->pmap[posY][posX];
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if (sim->IsWallBlocking(posX, posY, 0) || (block && (r&0xFF) == block))
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break;
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if(!r) {
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spaces++;
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tempParts[currentPos++] = -1;
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if(spaces >= amount)
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break;
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} else {
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if(currentPos < maxSize && !retract)
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tempParts[currentPos++] = r>>8;
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else
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return spaces;
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}
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}
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if (spaces)
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return currentPos;
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else
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return 0;
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}
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//#TPT-Directive ElementHeader Element_PSTN static int MoveStack(Simulation * sim, int stackX, int stackY, int directionX, int directionY, int maxSize, int amount, bool retract, int block, bool sticky, int callDepth = 0)
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int Element_PSTN::MoveStack(Simulation * sim, int stackX, int stackY, int directionX, int directionY, int maxSize, int amount, bool retract, int block, bool sticky, int callDepth)
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{
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bool foundParts = false;
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int posX, posY, r, spaces = 0, currentPos = 0;
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r = sim->pmap[stackY][stackX];
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if(!callDepth && (r&0xFF) == PT_FRME) {
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int newY = !!directionX, newX = !!directionY;
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int realDirectionX = retract?-directionX:directionX;
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int realDirectionY = retract?-directionY:directionY;
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int maxRight = MAX_FRAME, maxLeft = MAX_FRAME;
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//check if we can push all the FRME
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for(int c = retract; c < MAX_FRAME; c++) {
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posY = stackY + (c*newY);
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posX = stackX + (c*newX);
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if (posX < XRES && posY < YRES && posX >= 0 && posY >= 0 && (sim->pmap[posY][posX]&0xFF) == PT_FRME) {
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int val = CanMoveStack(sim, posX+realDirectionX, posY+realDirectionY, realDirectionX, realDirectionY, maxSize, amount, retract, block);
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if(val < amount)
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amount = val;
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} else {
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maxRight = c;
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break;
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}
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}
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for(int c = 1; c < MAX_FRAME; c++) {
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posY = stackY - (c*newY);
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posX = stackX - (c*newX);
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if (posX < XRES && posY < YRES && posX >= 0 && posY >= 0 && (sim->pmap[posY][posX]&0xFF) == PT_FRME) {
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int val = CanMoveStack(sim, posX+realDirectionX, posY+realDirectionY, realDirectionX, realDirectionY, maxSize, amount, retract, block);
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if(val < amount)
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amount = val;
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} else {
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maxLeft = c;
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break;
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}
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}
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//If the piston is pushing frame, iterate out from the centre to the edge and push everything resting on frame
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for(int c = 1; c < maxRight; c++) {
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posY = stackY + (c*newY);
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posX = stackX + (c*newX);
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MoveStack(sim, posX, posY, directionX, directionY, maxSize, amount, retract, block, !sim->parts[sim->pmap[posY][posX]>>8].tmp, 1);
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}
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for(int c = 1; c < maxLeft; c++) {
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posY = stackY - (c*newY);
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posX = stackX - (c*newX);
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MoveStack(sim, posX, posY, directionX, directionY, maxSize, amount, retract, block, !sim->parts[sim->pmap[posY][posX]>>8].tmp, 1);
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}
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//Remove arm section if retracting with FRME
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if (retract)
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for(int j = 1; j <= amount; j++)
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sim->kill_part(sim->pmap[stackY+(directionY*-j)][stackX+(directionX*-j)]>>8);
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return MoveStack(sim, stackX, stackY, directionX, directionY, maxSize, amount, retract, block, !sim->parts[sim->pmap[stackY][stackX]>>8].tmp, 1);
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}
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if(retract){
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//Remove arm section if retracting without FRME
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if (!callDepth)
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for(int j = 1; j <= amount; j++)
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sim->kill_part(sim->pmap[stackY+(directionY*-j)][stackX+(directionX*-j)]>>8);
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bool foundEnd = false;
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for(posX = stackX, posY = stackY; currentPos < maxSize; posX += directionX, posY += directionY) {
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if (!(posX < XRES && posY < YRES && posX >= 0 && posY >= 0)) {
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break;
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}
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r = sim->pmap[posY][posX];
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if(!r || (r&0xFF) == block || (!sticky && (r&0xFF) != PT_FRME)) {
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break;
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} else {
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foundParts = true;
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tempParts[currentPos++] = r>>8;
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}
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}
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if(foundParts) {
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//Move particles
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for(int j = 0; j < currentPos; j++) {
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int jP = tempParts[j];
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sim->pmap[(int)(sim->parts[jP].y + 0.5f)][(int)(sim->parts[jP].x + 0.5f)] = 0;
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sim->parts[jP].x += (float)((-directionX)*amount);
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sim->parts[jP].y += (float)((-directionY)*amount);
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sim->pmap[(int)(sim->parts[jP].y + 0.5f)][(int)(sim->parts[jP].x + 0.5f)] = sim->parts[jP].type|(jP<<8);
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}
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return amount;
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}
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if(!foundParts && foundEnd)
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return amount;
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} else {
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currentPos = CanMoveStack(sim, stackX, stackY, directionX, directionY, maxSize, amount, retract, block);
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if(currentPos){
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//Move particles
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int possibleMovement = 0;
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for(int j = currentPos-1; j >= 0; j--) {
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int jP = tempParts[j];
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if(jP < 0) {
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possibleMovement++;
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continue;
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}
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if(!possibleMovement)
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continue;
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sim->pmap[(int)(sim->parts[jP].y + 0.5f)][(int)(sim->parts[jP].x + 0.5f)] = 0;
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sim->parts[jP].x += (float)(directionX*possibleMovement);
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sim->parts[jP].y += (float)(directionY*possibleMovement);
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sim->pmap[(int)(sim->parts[jP].y + 0.5f)][(int)(sim->parts[jP].x + 0.5f)] = sim->parts[jP].type|(jP<<8);
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}
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return possibleMovement;
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}
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if(!foundParts && spaces)
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return spaces;
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}
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return 0;
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}
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//#TPT-Directive ElementHeader Element_PSTN static int graphics(GRAPHICS_FUNC_ARGS)
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int Element_PSTN::graphics(GRAPHICS_FUNC_ARGS)
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{
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if(cpart->life)
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{
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*colr -= 60;
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*colg -= 60;
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}
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return 0;
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}
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Element_PSTN::~Element_PSTN() {}
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