INWR should cool after being sparked; and correct function parameters
Also correct grule size and replicate existing freezing point behaviour for lava with strange ctypes.
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@ -687,9 +687,9 @@ static part_transition ptransitions[PT_NUM] =
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#undef ST
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static int grule[NGOL][9] =
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static int grule[NGOL][10] =
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{
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// 0,1,2,3,4,5,6,7,8,STATES live=1 spawn=2 spawn&live=3 States are kind of how long until it dies, normal ones use two states(living,dead) for others the intermediate states live but do nothing
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// 0,1,2,3,4,5,6,7,8,STATES live=1 spawn=2 spawn&live=3 States are kind of how long until it dies, normal ones use two states(living,dead) for others the intermediate states live but do nothing
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{0,0,0,0,0,0,0,0,0,2},//blank
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{0,0,1,3,0,0,0,0,0,2},//GOL
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{0,0,1,3,0,0,2,0,0,2},//HLIF
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@ -804,7 +804,7 @@ static void create_gain_photon(int pp);
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void kill_part(int i);
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#if defined(WIN32) && !defined(__GNUC__)
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extern _inline void part_change_type(int n, int x, int y, int t);
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extern _inline void part_change_type(int i, int x, int y, int t);
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#else
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extern inline void part_change_type(int i, int x, int y, int t);
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#endif
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@ -5,7 +5,7 @@ int update_SPRK(UPDATE_FUNC_ARGS) {
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int r, rx, ry, rt, conduct_sprk, nearp, pavg, ct = parts[i].ctype;
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if (parts[i].life<=0)
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{
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if (ct==PT_WATR||ct==PT_SLTW||ct==PT_PSCN||ct==PT_NSCN||ct==PT_ETRD)
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if (ct==PT_WATR||ct==PT_SLTW||ct==PT_PSCN||ct==PT_NSCN||ct==PT_ETRD||ct==PT_INWR)
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parts[i].temp = R_TEMP + 273.15f;
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if (!ct)
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ct = PT_METL;
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@ -450,7 +450,7 @@ void kill_part(int i)
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}
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#if defined(WIN32) && !defined(__GNUC__)
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_inline void part_change_type(int n, int x, int y, int t)
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_inline void part_change_type(int i, int x, int y, int t)
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#else
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inline void part_change_type(int i, int x, int y, int t)
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#endif
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@ -465,7 +465,7 @@ inline void part_change_type(int i, int x, int y, int t)
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}
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#if defined(WIN32) && !defined(__GNUC__)
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_inline int create_n_parts(int n, int x, int y, int t)
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_inline int create_n_parts(int n, int x, int y, float vx, float vy, int t)
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#else
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inline int create_n_parts(int n, int x, int y, float vx, float vy, int t)
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#endif
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@ -1124,7 +1124,7 @@ void update_particles_i(pixel *vid, int start, int inc)
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float mv, dx, dy, ix, iy, lx, ly, nrx, nry, dp;
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int fin_x, fin_y, clear_x, clear_y;
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float fin_xf, fin_yf, clear_xf, clear_yf;
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float nn, ct1, ct2;
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float nn, ct1, ct2, swappage;
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float pt = R_TEMP;
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float c_heat = 0.0f;
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int h_count = 0;
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@ -1467,7 +1467,6 @@ void update_particles_i(pixel *vid, int start, int inc)
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if (!legacy_enable)
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{
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if (y-2 >= 0 && y-2 < YRES && (ptypes[t].properties&TYPE_LIQUID)) {
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float swappage;
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r = pmap[y-2][x];
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if (!((r>>8)>=NPART || !r || parts[i].type != (r&0xFF))) {
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if (parts[i].temp>parts[r>>8].temp) {
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@ -1539,6 +1538,7 @@ void update_particles_i(pixel *vid, int start, int inc)
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if (parts[i].ctype&&parts[i].ctype!=PT_LAVA) {
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if (ptransitions[parts[i].ctype].tht==PT_LAVA&&pt>=ptransitions[parts[i].ctype].thv) s = 0;
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else if (parts[i].ctype==PT_THRM&&pt>=ptransitions[PT_BMTL].thv) s = 0;
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else if (pt>=973.0f) s = 0; // freezing point for lava with any other (not listed in ptransitions as turning into lava) ctype
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else {
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t = parts[i].ctype;
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parts[i].ctype = PT_NONE;
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