Fix piston retraction
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@ -54,13 +54,14 @@ int Element_PSTN::tempParts[128];
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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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//#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].ctype)
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return 0;
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int maxSize = parts[i].tmp ? parts[i].tmp : 15;
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int maxSize = parts[i].tmp ? parts[i].tmp : DEFAULT_LIMIT;
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int state = parts[i].tmp2;
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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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@ -190,32 +191,27 @@ int Element_PSTN::MoveStack(Simulation * sim, int stackX, int stackY, int direct
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return biggestMove;
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}
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if(retract){
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//Warning: retraction does not scan to see if it has space
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for(posX = stackX, posY = stackY; currentPos < size; 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) {
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spaces++;
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foundEnd = true;
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if(spaces >= amount)
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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(amount > spaces)
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amount = spaces;
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if(foundParts && foundEnd) {
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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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int nPx = (int)(sim->parts[jP].x + 0.5f);
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int nPy = (int)(sim->parts[jP].y + 0.5f);
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sim->pmap[nPy][nPx] = sim->parts[jP].type|(jP<<8);
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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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@ -243,11 +239,10 @@ int Element_PSTN::MoveStack(Simulation * sim, int stackX, int stackY, int direct
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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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int nPx = (int)(sim->parts[jP].x + 0.5f);
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int nPy = (int)(sim->parts[jP].y + 0.5f);
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sim->pmap[nPy][nPx] = sim->parts[jP].type|(jP<<8);
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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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