Rearrange some code, make heat transfer run faster
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54f9f872b9
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cf1ef72584
@ -105,5 +105,16 @@ int update_legacy_all(UPDATE_FUNC_ARGS) {
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part_change_type(i,x,y,PT_WATR);
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}
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}
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if (t==PT_WTRV && pv[y/CELL][x/CELL]>4.0f)
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part_change_type(i,x,y,PT_DSTW);
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if (t==PT_OIL && pv[y/CELL][x/CELL]<-6.0f)
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part_change_type(i,x,y,PT_GAS);
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if (t==PT_GAS && pv[y/CELL][x/CELL]>6.0f)
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part_change_type(i,x,y,PT_OIL);
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if (t==PT_DESL && pv[y/CELL][x/CELL]>12.0f)
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{
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part_change_type(i,x,y,PT_FIRE);
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parts[i].life = rand()%50+120;
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}
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return 0;
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}
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196
src/powder.c
196
src/powder.c
@ -1093,7 +1093,7 @@ void update_particles_i(pixel *vid, int start, int inc)
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float c_heat = 0.0f;
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int h_count = 0;
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int starti = (start*-1);
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unsigned surround[24];
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int surround[24];
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int surround_hconduct[8];
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float pGravX, pGravY, pGravD;
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@ -1247,8 +1247,7 @@ void update_particles_i(pixel *vid, int start, int inc)
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}
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}
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}
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CGOL++;
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if (ISGOL==1&&CGOL>=GSPEED)//GSPEED is frames per generation
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if (ISGOL==1&&++CGOL>=GSPEED)//GSPEED is frames per generation
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{
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CGOL=0;
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ISGOL=0;
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@ -1333,7 +1332,7 @@ void update_particles_i(pixel *vid, int start, int inc)
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y = (int)(parts[i].y+0.5f);
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if (x<0 || y<0 || x>=XRES || y>=YRES ||
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if (x<CELL || y<CELL || x>=XRES-CELL || y>=YRES-CELL ||
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((bmap[y/CELL][x/CELL]==WL_WALL ||
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bmap[y/CELL][x/CELL]==WL_WALLELEC ||
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bmap[y/CELL][x/CELL]==WL_ALLOWAIR ||
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@ -1383,10 +1382,10 @@ void update_particles_i(pixel *vid, int start, int inc)
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if ((ptypes[t].explosive&2) && pv[y/CELL][x/CELL]>2.5f)
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{
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parts[i].life = rand()%80+180;
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rt = parts[i].type = PT_FIRE;
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parts[i].temp = ptypes[PT_FIRE].heat + (ptypes[rt].flammable/2);
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pv[y/CELL][x/CELL] += 0.25f * CFDS;
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parts[i].temp = restrict_flt(ptypes[PT_FIRE].heat + (ptypes[t].flammable/2), MIN_TEMP, MAX_TEMP);
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t = PT_FIRE;
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part_change_type(i,x,y,t);
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pv[y/CELL][x/CELL] += 0.25f * CFDS;
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}
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parts[i].vx *= ptypes[t].loss;
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@ -1423,82 +1422,20 @@ void update_particles_i(pixel *vid, int start, int inc)
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parts[i].vy += ptypes[t].diffusion*(rand()/(0.5f*RAND_MAX)-1.0f);
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}
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// interpolator
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#if defined(WIN32) && !defined(__GNUC__)
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mv = max(fabsf(parts[i].vx), fabsf(parts[i].vy));
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#else
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mv = fmaxf(fabsf(parts[i].vx), fabsf(parts[i].vy));
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#endif
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if (mv < ISTP)
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{
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parts[i].x += parts[i].vx;
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parts[i].y += parts[i].vy;
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ix = parts[i].x;
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iy = parts[i].y;
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}
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else
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{
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dx = parts[i].vx*ISTP/mv;
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dy = parts[i].vy*ISTP/mv;
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ix = parts[i].x;
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iy = parts[i].y;
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while (1)
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{
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mv -= ISTP;
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if (mv <= 0.0f)
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{
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// nothing found
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parts[i].x += parts[i].vx;
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parts[i].y += parts[i].vy;
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ix = parts[i].x;
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iy = parts[i].y;
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break;
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}
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ix += dx;
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iy += dy;
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nx = (int)(ix+0.5f);
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ny = (int)(iy+0.5f);
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if (nx<0 || ny<0 || nx>=XRES || ny>=YRES || pmap[ny][nx] || (bmap[ny/CELL][nx/CELL] && bmap[ny/CELL][nx/CELL]!=WL_STREAM))
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{
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parts[i].x = ix;
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parts[i].y = iy;
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break;
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}
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}
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}
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if (x<CELL || x>=XRES-CELL || y<CELL || y>=YRES-CELL)
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{
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kill_part(i);
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continue;
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}
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#if CELL<=1
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#error Cell size <= 1 means pmap bounds could be exceeded
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// if cell size is decreased to <= 1, the code that sets surround[] would need altering to check
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// that pmap accesses are within bounds
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#endif
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surround[0] = pmap[y-1][x-1];
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surround[1] = pmap[y-1][x];
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surround[2] = pmap[y-1][x+1];
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surround[3] = pmap[y][x-1];
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surround[4] = pmap[y][x+1];
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surround[5] = pmap[y+1][x-1];
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surround[6] = pmap[y+1][x];
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surround[7] = pmap[y+1][x+1];
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a = nt = 0;
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for (j=0,nx=-1; nx<2; nx++)
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j = a = nt = 0;
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for (nx=-1; nx<2; nx++)
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for (ny=-1; ny<2; ny++) {
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if (nx||ny){
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surround[j] = r = pmap[y+ny][x+nx];
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j++;
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if (!bmap[(y+ny)/CELL][(x+nx)/CELL] || bmap[(y+ny)/CELL][(x+nx)/CELL]==WL_STREAM)
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{
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if (!surround[j])
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if (!(r&0xFF))
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a = 1;
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if ((surround[j]&0xFF)!=t)
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if ((r&0xFF)!=t)
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nt = 1;
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}
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if (nx||ny) j++;
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}
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}
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if (!legacy_enable)
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@ -1509,7 +1446,7 @@ void update_particles_i(pixel *vid, int start, int inc)
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{
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for (j=0; j<8; j++)
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{
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surround_hconduct[j] = 0;
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surround_hconduct[j] = -1;
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r = surround[j];
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if ((r>>8)>=NPART || !r)
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continue;
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@ -1518,16 +1455,17 @@ void update_particles_i(pixel *vid, int start, int inc)
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&&(t!=PT_FILT||(rt!=PT_BRAY&&rt!=PT_BIZR&&rt!=PT_BIZRG))
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&&(rt!=PT_FILT||(t!=PT_BRAY&&t!=PT_PHOT&&t!=PT_BIZR&&t!=PT_BIZRG)))
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{
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surround_hconduct[j] = 1;
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h_count++;
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surround_hconduct[j] = r>>8;
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c_heat += parts[r>>8].temp;
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h_count++;
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}
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}
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pt = parts[i].temp = (c_heat+parts[i].temp)/(h_count+1);
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for (j=0; j<8; j++)
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{
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if (surround_hconduct[j])
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parts[surround[j]>>8].temp = pt;
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if (surround_hconduct[j]>=0)
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parts[surround_hconduct[j]].temp = pt;
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}
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s = 1;
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@ -1621,7 +1559,11 @@ void update_particles_i(pixel *vid, int start, int inc)
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}
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}
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if (ptypes[t].properties&PROP_LIFE)
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{
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parts[i].temp = restrict_flt(parts[i].temp-50.0f, MIN_TEMP, MAX_TEMP);
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ISGOL=1;
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}
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if ((ptypes[t].properties&PROP_CONDUCTS) || t==PT_SPRK)
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{
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nx = x % CELL;
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@ -1683,18 +1625,6 @@ void update_particles_i(pixel *vid, int start, int inc)
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}
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}
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nx = (int)(parts[i].x+0.5f);
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ny = (int)(parts[i].y+0.5f);
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if (nx<CELL || nx>=XRES-CELL ||
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ny<CELL || ny>=YRES-CELL)
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{
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parts[i].x = lx;
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parts[i].y = ly;
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kill_part(i);
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continue;
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}
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if (ptypes[t].update_func)
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{
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if ((*(ptypes[t].update_func))(i,x,y,a))
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@ -1702,31 +1632,65 @@ void update_particles_i(pixel *vid, int start, int inc)
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}
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if (legacy_enable)
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update_legacy_all(i,x,y,a);
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if (ptypes[t].properties&PROP_LIFE)
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{
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if (parts[i].temp>0)
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parts[i].temp -= 50.0f;
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ISGOL=1;
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}
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if (legacy_enable)
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{
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if (t==PT_WTRV && pv[y/CELL][x/CELL]>4.0f)
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parts[i].type = PT_DSTW;
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if (t==PT_OIL && pv[y/CELL][x/CELL]<-6.0f)
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parts[i].type = PT_GAS;
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if (t==PT_GAS && pv[y/CELL][x/CELL]>6.0f)
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parts[i].type = PT_OIL;
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if (t==PT_DESL && pv[y/CELL][x/CELL]>12.0f)
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{
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parts[i].type = PT_FIRE;
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parts[i].life = rand()%50+120;
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}
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}
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killed:
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if (parts[i].type == PT_NONE)
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continue;
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if (parts[i].type == PT_PHOT) {
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// interpolator
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#if defined(WIN32) && !defined(__GNUC__)
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mv = max(fabsf(parts[i].vx), fabsf(parts[i].vy));
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#else
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mv = fmaxf(fabsf(parts[i].vx), fabsf(parts[i].vy));
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#endif
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if (mv < ISTP)
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{
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parts[i].x += parts[i].vx;
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parts[i].y += parts[i].vy;
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ix = parts[i].x;
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iy = parts[i].y;
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}
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else
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{
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dx = parts[i].vx*ISTP/mv;
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dy = parts[i].vy*ISTP/mv;
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ix = parts[i].x;
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iy = parts[i].y;
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while (1)
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{
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mv -= ISTP;
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if (mv <= 0.0f)
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{
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// nothing found
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parts[i].x += parts[i].vx;
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parts[i].y += parts[i].vy;
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ix = parts[i].x;
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iy = parts[i].y;
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break;
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}
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ix += dx;
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iy += dy;
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nx = (int)(ix+0.5f);
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ny = (int)(iy+0.5f);
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if (nx<0 || ny<0 || nx>=XRES || ny>=YRES || pmap[ny][nx] || (bmap[ny/CELL][nx/CELL] && bmap[ny/CELL][nx/CELL]!=WL_STREAM))
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{
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parts[i].x = ix;
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parts[i].y = iy;
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break;
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}
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}
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}
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nx = (int)(parts[i].x+0.5f);
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ny = (int)(parts[i].y+0.5f);
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if (nx<CELL || nx>=XRES-CELL || ny<CELL || ny>=YRES-CELL)
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{
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kill_part(i);
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continue;
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}
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if (t == PT_PHOT) {
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rt = pmap[ny][nx] & 0xFF;
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lt = pmap[y][x] & 0xFF;
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