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utils2.pas
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utils2.pas
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unit utils2;
(********************************************************************
This file is part of Ironseed.
Ironseed is free software: you can redistribute it and/or modify
it under the terms of the GNU General Public License as published by
the Free Software Foundation, either version 3 of the License, or
(at your option) any later version.
Ironseed is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
GNU General Public License for more details.
You should have received a copy of the GNU General Public License
along with Ironseed. If not, see <http://www.gnu.org/licenses/>.
********************************************************************)
{*********************************************
Overlayable Utilites for IronSeed
Copyright:
1994 Channel 7, Destiny: Virtual
2013 y-salnikov
2020 Matija Nalis <mnalis-git@voyager.hr>
**********************************************}
{$I-}
{$O+}
interface
procedure adjustplanets(t: integer);
procedure adjustsystem;
procedure redoscreen(x,y,z: integer);
procedure createplanet(xc,yc: integer);
procedure readyplanet;
procedure createstar(c,xc,yc: integer);
procedure readystar;
procedure removedata;
procedure dothatartifactthing(n: integer);
procedure reloadbackground;
procedure makeastoroidfield;
procedure makecloud;
procedure drawastoroid;
procedure getname(n: integer);
procedure addgunnode;
procedure addstuff(n, limit: integer);
procedure getstuffamounts(
const state : Integer;
var ele : array{[0..16]} of integer;
var mat : array{[0..20]} of Integer;
var cmp : array{[0..22]} of Integer);
function getplanetorbit(planet : Integer): Integer;
function getplanetbyorbit(sys, orbit : Integer): Integer;
procedure planettravel(sys, index : Integer);
procedure gotoorbit(sys, n : Integer);
function GetTechnologyLevel(plan : Integer) : Integer;
implementation
uses utils_, data, journey, gmouse, usecode, display, saveload, comm, utils, weird;
type
scandatatype= array[0..11] of byte;
scantype= array[0..16] of scandatatype;
var
a,b,j,i,index: integer;
function GetTechnologyLevel(plan : Integer) : Integer;
var
i,techlvl : integer;
begin
if tempplan^[plan].orbit=0 then
begin
GetTechnologyLevel:=0;
exit;
end;
techlvl:=-2;
case tempplan^[plan].system of
93,138,78,191,171,221:
begin
GetTechnologyLevel:=6*256;
exit;
end;
45: if chevent(27) then
begin
GetTechnologyLevel:=0;
exit;
end
else
begin
GetTechnologyLevel:=6*256;
exit;
end;
end;
case tempplan^[plan].state of
2: case tempplan^[plan].mode of
2: techlvl:=-1;
3: techlvl:=tempplan^[plan].age div 15000000;
end;
3: begin
techlvl:=(tempplan^[plan].mode-1)*256;
case tempplan^[plan].mode of
1: techlvl:=techlvl+(tempplan^[plan].age div 1500000);
2: techlvl:=techlvl+(tempplan^[plan].age div 1000);
3: techlvl:=techlvl+(tempplan^[plan].age div 800);
end;
end;
4: begin
techlvl:=(tempplan^[plan].mode+2)*256;
case tempplan^[plan].mode of
1: techlvl:=techlvl+(tempplan^[plan].age div 400);
2: techlvl:=techlvl+(tempplan^[plan].age div 200);
end;
end;
5: case tempplan^[plan].mode of
1: begin
i:=tempplan^[plan].age div 100000000;
if i>9 then i:=9;
techlvl:=techlvl+i;
end;
2: techlvl:=-1;
end;
6: if tempplan^[curplan].mode=2 then techlvl:=6*256; {void dwellers}
end; { case }
GetTechnologyLevel := techlvl;
end;
procedure reloadbackground;
var temp: pscreentype;
begin
new(temp);
backgrx:=random(320);
backgry:=random(200);
loadscreen(loc_data()+'main',temp);
loadscreen(loc_data()+'cloud',backgr);
for j:=0 to 319 do
begin
x:=j+backgrx;
if x>319 then x:=x-320;
for i:=0 to 199 do
begin
y:=i+backgry;
if y>199 then y:=y-200;
if temp^[i,j]=255 then screen[i,j]:=backgr^[y,x];
end;
end;
dispose(temp);
end;
function getsubamount(item : Integer; ele : array{[0..16]} of Integer; mat : array{[0..20]} of Integer) : Integer;
var
i, j, n : Integer;
tt : Integer;
begin
getsubamount := 0;
for i := 1 to maxcargo do
begin
if cargo[i].index = item then
begin
tt := 99;
for j := 1 to 3 do
begin
n := prtcargo[i, j];
case n of
ID_FIRST_ELEMENT..ID_LAST_ELEMENT: begin
n := ele[(n - ID_FIRST_ELEMENT) div 10];
end;
ID_UNKNOWN_MATERIAL..4999: begin
n := mat[n - ID_UNKNOWN_MATERIAL];
end;
ID_UNKNOWN_COMPONENT..3999: begin
n := getsubamount(n, ele, mat);
end;
end; { case }
if n < tt then tt := n;
end;
getsubamount := tt;
exit;
end;
end;
end; { getsubamounts }
procedure getstuffamounts(
const state : Integer;
var ele : array{[0..16]} of integer;
var mat : array{[0..20]} of Integer;
var cmp : array{[0..22]} of Integer);
var
scanfile : file of scantype;
temp : ^scantype;
i, j, k, n : Integer;
tly, tt, cub : Integer;
begin
{load scan data}
new(temp);
assign(scanfile,loc_data()+'scan.dta');
reset(scanfile);
if ioresult<>0 then errorhandler('scan.dta',1);
read(scanfile,temp^);
if ioresult<>0 then errorhandler('scan.dta',5);
close(scanfile);
{copy element amounts}
for i:=0 to 16 do
ele[i] := temp^[i,state];
dispose(temp);
{compute material amounts}
for i:=1 to 19 do
begin
mat[i] := 0;
n := i + ID_UNKNOWN_MATERIAL;
for j:=1 to maxcargo do
if cargo[j].index = n then
begin
tt := 99;
tly := 0;
cub := 1;
for k := 1 to 3 do
begin
n := ele[(prtcargo[j,k] - ID_FIRST_ELEMENT) div 10];
inc(tly, n);
if n < tt then
tt := n;
cub := cub * n;
end;
if tt > 0 then
mat[i] := tly
else
mat[i] := 0;
break;
end;
end;
mat[0] := 0;
mat[20] := 0;
{compute component counts}
for i := 1 to 20 do
cmp[i] := getsubamount(i + ID_UNKNOWN_COMPONENT, ele, mat);
cmp[0] := 0;
cmp[21] := 0;
cmp[22] := 0;
end; { getamounts }
procedure addstuff(n, limit: integer);
var
ele : array[0..16] of integer;
mat : array[0..20] of Integer;
cmp : array[0..22] of Integer;
i, j, r : Integer;
lim : Integer;
total : Integer;
{s : string[10];}
begin
if (tempplan^[n].bots and 7) = 0 then
exit;
ele[0]:=0; mat[0]:=0; cmp[0]:=0; // to turn off warnings, variables are actually correctly initialized by function below
getstuffamounts(tempplan^[n].state, ele, mat, cmp);
total := 0;
lim := limit;
{for i := 0 to 16 do
begin
str(ele[i], s);
printxy(0, i * 6, s);
end;
for i := 0 to 20 do
begin
str(mat[i], s);
printxy(16, i * 6, s);
end;
for i := 0 to 20 do
begin
str(cmp[i], s);
printxy(32, i * 6, s);
end;}
case (tempplan^[n].bots and 7) of
1 : begin {elements}
for i := 0 to 16 do
inc(total, ele[i]);
for i := 1 to 7 do
begin
if tempplan^[n].cache[i] = 0 then
begin
r := random(total);
j := 0;
while (j < 16) and (r >= ele[j]) do
begin
dec(r, ele[j]);
inc(j);
end;
tempplan^[n].cache[i] := ID_FIRST_ELEMENT + j * 10;
dec(lim);
if lim <= 0 then
break;
end;
end;
end;
2, 5 : begin {materials}
for i := 0 to 20 do
begin
mat[i] := mat[i] * 2;
inc(total, mat[i]);
end;
inc(mat[0]); {unknown material}
inc(mat[20]); {worthless junk}
inc(total, 2);
for i := 1 to 7 do
begin
if (tempplan^[n].cache[i] = 0) or ((tempplan^[n].cache[i] = ID_WORTHLESS_JUNK) and (random(2) = 0)) then
begin
r := random(total);
j := 0;
while (j < 20) and (r >= mat[j]) do
begin
dec(r, mat[j]);
inc(j);
end;
tempplan^[n].cache[i] := ID_UNKNOWN_MATERIAL + j;
dec(lim);
if lim <= 0 then
break;
end;
end;
end;
3..4 : begin {components}
for i := 0 to 22 do
begin
cmp[i] := cmp[i] * 2;
inc(total, cmp[i]);
end;
inc(cmp[0]); {unknown component}
inc(cmp[22]); {worthless junk}
inc(total, 2);
for i := 1 to 7 do
begin
if (tempplan^[n].cache[i] = 0) or ((tempplan^[n].cache[i] = ID_WORTHLESS_JUNK) and (random(2) = 0)) then
begin
r := random(total);
j := 0;
while (j < 22) and (r >= cmp[j]) do
begin
dec(r, cmp[j]);
inc(j);
end;
if j = 22 then
tempplan^[n].cache[i] := ID_WORTHLESS_JUNK
else
tempplan^[n].cache[i] := ID_UNKNOWN_COMPONENT + j;
dec(lim);
if lim <= 0 then
break;
end;
end;
end;
end; { case }
end;
(*var scanfile : file of scantype;
temp : ^scantype;
a,total,b,c,t,tt,tly,cnt : integer;
tempcreate : ^creationtype;
creafile : file of creationtype;
amounts : array[0..20] of Integer;
lim : Integer;
{s : string[10];}
begin
new(temp);
assign(scanfile,loc_data()+'scan.dta');
reset(scanfile);
if ioresult<>0 then errorhandler('scan.dta',1);
read(scanfile,temp^);
if ioresult<>0 then errorhandler('scan.dta',5);
close(scanfile);
lim := limit;
if (tempplan^[n].bots and 7)=1 then
begin
total:=0;
for a:=0 to 16 do inc(total,temp^[a,tempplan^[n].state]);
for c:=1 to 7 do
if tempplan^[n].cache[c]=0 then
begin
b:=random(total);
a:=0;
repeat
dec(b,temp^[a,tempplan^[n].state]);
inc(a);
until (b<0) or (a=17);
a:=(a-1)*10+ID_FIRST_ELEMENT;
tempplan^[n].cache[c]:=a;
dec(lim);
if lim <= 0 then break;
end;
end
else if (tempplan^[n].bots and 7)=2 then
begin
new(tempcreate);
assign(creafile,loc_data()+'creation.dta');
reset(creafile);
if ioresult<>0 then errorhandler('creation.dta',1);
total:=0;
for j:=0 to 20 do
amounts[j] := 0;
for j:=1 to totalcreation do
begin
read(creafile,tempcreate^);
if ioresult<>0 then errorhandler('creation.dta',5);
if(tempcreate^.index >= ID_UNKNOWN_MATERIAL) and (tempcreate^.index <= ID_WORTHLESS_JUNK) then
begin
tt:=99;
tly:=0;
for i:=1 to 3 do
if (tempcreate^.parts[i]>=ID_FIRST_ELEMENT) then
begin
cnt := temp^[(tempcreate^.parts[i]-ID_FIRST_ELEMENT) div 10,tempplan^[n].state];
if tt > cnt then tt := cnt;
inc(tly, cnt);
end;
if tt = 99 then
tt := 0;
if tt > 0 then
begin
inc(total, tly + tly);
amounts[tempcreate^.index - ID_UNKNOWN_MATERIAL] := tly + tly;
end else
amounts[tempcreate^.index - ID_UNKNOWN_MATERIAL] := 0;
{str(tempcreate^.index, s);
printxy(0,(tempcreate^.index - ID_UNKNOWN_MATERIAL) * 6, s);
str(tt, s);
printxy(40,(tempcreate^.index - ID_UNKNOWN_MATERIAL) * 6, s);
str(tly, s);
printxy(60,(tempcreate^.index - ID_UNKNOWN_MATERIAL) * 6, s);}
end;
end;
{give a chance for unkowns and worthless junk}
inc(amounts[0]);
inc(amounts[20]);
inc(total, 2);
if total > 0 then
for c:=1 to 7 do
if (tempplan^[n].cache[c]=0) or (tempplan^[n].cache[c]=ID_WORTHLESS_JUNK) then
begin
t := random(total);
for j := 0 to 20 do
begin
if t < amounts[j] then
begin
tempplan^[n].cache[c] := j + ID_UNKNOWN_MATERIAL;
break;
end;
dec(t, amounts[j]);
end;
dec(lim);
if lim <= 0 then break;
end;
close(creafile);
dispose(tempcreate);
end;
dispose(temp);
end;*)
procedure adjustplanets(t: integer);
var j,olds: integer;
begin
randomize;
for j:=1 to 1000 do
begin
if tempplan^[j].bots >0 then
begin
{clear depletion stat}
tempplan^[j].bots := tempplan^[j].bots and 7;
if tempplan^[j].bots>0 then
addstuff(j, 7);
end;
with tempplan^[j] do
begin
age:=age+t;
olds:=state;
case state of
0:case mode of
1,2:if age>=1000000000 then
begin
age:=0;
inc(mode);
end;
3: if age>=500000000 then
begin
age:=0;
mode:=1;
state:=1;
end;
end;
1:case mode of
1: if age>=500000000 then
begin
age:=0;
mode:=2;
end;
2: if age>=400000000 then
begin
age:=0;
mode:=3;
end;
3: if age>=300000000 then
begin
age:=0;
mode:=1;
state:=2;
end;
end;
2:case mode of
1: if age>=200000000 then
begin
age:=0;
mode:=2;
end;
2: if age>=150000000 then
begin
age:=0;
mode:=3;
end;
3: begin
if age>=150000000 then
begin
age:=0;
mode:=1;
state:=3;
end;
if random(40)=0 then
begin
age:=0;
state:=5;
mode:=2;
end;
end;
end;
3:case mode of
1: begin
if age>=15000000 then
begin
age:=0;
mode:=2;
end;
if random(40)=0 then
begin
age:=0;
state:=5;
mode:=2;
end;
end;
2: if age>=10000 then
begin
age:=0;
mode:=3;
end;
3: if age>=8000 then
begin
age:=0;
mode:=1;
state:=4;
end;
end;
4:case mode of
1: if age>=4000 then
begin
age:=0;
mode:=2;
end;
2: begin
if age>=2000 then
begin
age:=0;
mode:=3;
end;
if random(40)=0 then
begin
if random(2)=0 then mode:=1
else mode:=2;
state:=6;
age:=0;
end;
end;
3: begin
if age>=4000 then
begin
age:=0;
mode:=1;
state:=5;
end;
if random(40)=0 then
begin
if random(2)=0 then mode:=1
else mode:=2;
state:=6;
age:=0;
end;
end;
end;
5:case mode of
1: if age>=3000 then
begin
age:=0;
mode:=2;
end;
2: begin
if age>=8000 then
begin
age:=0;
mode:=3;
end;
if random(40)=0 then
begin
age:=0;
state:=2;
mode:=3;
end;
end;
3:;
end;
6:if (mode=1) and (age>=100000) then
begin
age:=0;
mode:=2;
end;
end;
if (olds<>state) then
begin
fillchar(cache,sizeof(cache),0);
bots:=0;
notes:=0;
end;
end;
end;
end;
procedure getname(n: integer);
type nametype= string[12];
var str1: nametype;
f: file of nametype;
begin
assign(f,loc_data()+'sysname.dta');
reset(f);
if ioresult<>0 then errorhandler('data/sysname.txt',1);
seek(f,n-1);
if ioresult<>0 then errorhandler('data/sysname.txt',6);
read(f,str1);
if ioresult<>0 then errorhandler('data/sysname.txt',6);
systems[n].name:=str1;
close(f);
end;
procedure adjustsystem;
begin
if systems[tempplan^[curplan].system].visits=0 then
getname(tempplan^[curplan].system);
inc(systems[tempplan^[curplan].system].visits);
systems[tempplan^[curplan].system].datey:=ship.stardate[3];
systems[tempplan^[curplan].system].datem:=ship.stardate[1];
if systems[tempplan^[curplan].system].visits<255 then inc(tempplan^[j].visits);
tempplan^[j].datey:=ship.stardate[3];
tempplan^[j].datem:=ship.stardate[1];
end;
procedure redoscreen(x,y,z: integer);
var dist: real;
index,time: integer;
str1: string[4];
begin
dist:=sqr((x-ship.posx)/10);
dist:=dist + sqr((y-ship.posy)/10);
dist:=dist + sqr((z-ship.posz)/10);
dist:=sqrt(dist);
if (random(85)+15)<ship.damages[DMG_ENGINES] then
begin
tcolor:=94;
println;
print('NAVIGATION: Ship off course!');
ship.posx:=x-3+random(7);
ship.posy:=y-3+random(7);
ship.posz:=z-3+random(7);
end
else
begin
ship.posx:=x;
ship.posy:=y;
ship.posz:=z;
end;
targetready:=false;
ship.battery:=32000;
checkstats;
showplanet:=false;
for j:=1 to nearbymax do nearby[j].index:=0;
i:=0;
for j:=1 to 250 do
begin
x:=systems[j].x-ship.posx;
y:=systems[j].y-ship.posy;
z:=systems[j].z-ship.posz;
if (abs(x)<400) and (abs(y)<400)
and (abs(z)<400) then
begin
inc(i);
if i>nearbymax then errorhandler('NEARBY STRUCTURE OVERFLOW #1.',6);
nearby[i].index:=j;
nearby[i].x:=x/10;
nearby[i].y:=y/10;
nearby[i].z:=z/10;
systems[j].notes:=systems[j].notes or 1;
end;
end;
move(nearby,nearbybackup,sizeof(nearbyarraytype));
mousehide;
compressfile(loc_tmp()+'current',@screen);
scr_fillchar(screen,sizeof(screen),0);
tcolor:=47;
bkcolor:=0;
time:=round(dist*2)+1;
printxy(42,187,'Acceleration to near light speed...');
mouseshow;
for j:=0 to round(dist*2) do
begin
addlotstime(false, false, random(4000)+4000);
dec(time);
str(time,str1);
if length(str1)<4 then for i:=length(str1)+1 to 4 do str1[i]:=#20;
str1[0]:=#4;
bkcolor:=0;
printxy(222,187,str1);
end;
bkcolor:=3;
tcolor:=31;
{fading;}
fadestopmod(-FADEFULL_STEP, FADEFULL_DELAY);
mousehide;
loadscreen(loc_tmp()+'current',@screen);
showtime;
index:=0;
for j:=1 to nearbymax do
if (systems[nearby[j].index].x=ship.posx) and
(systems[nearby[j].index].y=ship.posy) and
(systems[nearby[j].index].z=ship.posz) then
begin
index:=j;
j:=nearbymax;
end;
if index<>0 then
begin
ship.stardate[3]:=ship.stardate[3]+round(dist);
j:=findfirstplanet(nearby[index].index);
ship.orbiting:=0;
curplan:=j;
showtime;
adjustsystem;
adjustplanets(round(dist));
readystar;
end
else
begin
curplan:=0;
ship.orbiting:=0;
reloadbackground;
fadein;
end;
mouseshow;
if ship.options[OPT_AUTOSAVE]=1 then savegamedata(0,31);
target:=0;
for j:=1 to random(4)+1 do
begin
i:=random(7)+1;
if ship.damages[i]<90 then inc(ship.damages[i]);
end;
if index<>0 then
begin
for j:=0 to maxeventsystems do
if eventsystems[j]=nearby[index].index then event(eventstorun[j]);
end;
end;
{Creates a planet by having a 'cursor' randomly wander over the planet in single pixel steps raise the terrain below it.}
procedure createplanet(xc,yc: integer);
var x1,y1 : integer;
a : longint;
str1 : string[3];
tl, i : Integer;
begin
i:=0;
x1:=xc;
y1:=yc;
randseed:=tempplan^[curplan].seed;
for a:=1 to 75000 do
begin
inc(i);
x1:=x1-1+random(3);
y1:=y1-1+random(3);
if x1>240 then x1:=1 else if x1<1 then x1:=240;
if y1>120 then y1:=1 else if y1<1 then y1:=120;
if landform^[x1,y1]<240 then landform^[x1,y1]:=landform^[x1,y1]+7;
if i=1125 then
begin
inc(index);
str((200-index):3,str1);
printxy(90,170,str1);
i:=0;
end;
end;
tl := GetTechnologyLevel(curplan);
if tl > 0 then
begin
tl := hi(tl) * 10 + lo(tl);
tl := tl * tl div 10;
for a:=1 to tl do
begin
{for i := 1 to 5 do}
x1 := random(240);
y1 := random(120);
if landform^[x1,y1] > water then
begin
landform^[x1,y1] := 255;
{inc(x1);
if x1 > 240 then x1 := 1;
landform^[x1,y1] := 255;}
end;
end;
end;
end;
procedure makeswirl(x, y, sz : Integer);
var
c : byte;
begin
if y <= 60 then
case sz of
2 : begin
c := landform^[x,y-1];
landform^[x,y-1] := landform^[x+1,y] - random(3);
landform^[x+1,y] := c - random(3);
end;
3 : begin
c := landform^[x,y-1];
landform^[x,y-1] := landform^[x+2,y] - random(3);
landform^[x+2,y] := c - random(3);
c := landform^[x+1,y-1];
landform^[x+1,y-1] := landform^[x+1,y] - random(3);
landform^[x+1,y] := c - random(3);
end;
4 : begin
c := landform^[x,y-1];
landform^[x,y-1] := landform^[x+3,y] - random(3);
landform^[x+3,y] := c - random(3);
c := landform^[x+1,y-1];
landform^[x+1,y-1] := landform^[x+2,y] - random(3);
landform^[x+2,y] := c - random(3);
c := landform^[x+2,y-2];
landform^[x+2,y-2] := landform^[x+1,y+1] - random(3);
landform^[x+1,y+1] := c - random(3);
c := landform^[x+1,y-2];
landform^[x+1,y-2] := landform^[x+2,y+1] - random(3);
landform^[x+2,y+1] := c - random(3);
end;
end { case }
else
case sz of
2 : begin
c := landform^[x+1,y-1];
landform^[x+1,y-1] := landform^[x,y] - random(3);
landform^[x,y] := c - random(3);
end;
3 : begin
c := landform^[x,y];
landform^[x,y] := landform^[x+2,y-1] - random(3);
landform^[x+2,y-1] := c - random(3);
c := landform^[x+1,y-1];
landform^[x+1,y-1] := landform^[x+1,y] - random(3);
landform^[x+1,y] := c - random(3);
end;
4 : begin
c := landform^[x,y];
landform^[x,y] := landform^[x+3,y-1] - random(3);
landform^[x+3,y-1] := c - random(3);
c := landform^[x+1,y];
landform^[x+1,y] := landform^[x+2,y-1] - random(3);
landform^[x+2,y-1] := c - random(3);
c := landform^[x+2,y-2];
landform^[x+2,y-2] := landform^[x+1,y+1] - random(3);
landform^[x+1,y+1] := c - random(3);
c := landform^[x+1,y-2];
landform^[x+1,y-2] := landform^[x+2,y+1] - random(3);
landform^[x+2,y+1] := c - random(3);
end;
end; { case }
end;
procedure creategasplanet;
var x1,y1 : integer;
a,b,c : integer;
c1, c2, c3 : Integer;
sz,sz2,sz21 : Integer;
sz22 : Integer;
cnt,d,d2 : Integer;
x, y : Integer;
xx : Integer;
begin
randseed:=tempplan^[curplan].seed;
{decide on colours}
if random(2) > 0 then
begin
c1 := 32;
c2 := 48;
c3 := 64;
end else begin
c1 := 112;
c2 := 128;
c3 := 96;
end;
{create bands}
b := 0;
a := 1;
for y1 := 60 downto 1 do
begin
dec(a);
if a = 0 then
begin
a := (60 - abs(y1 - 60)) div 10;
a := a + 6 + random(a + 5);
if (a < y1) and ((a + 5) > y1) then
a := y1 shr 1;
b := (b + random(2) + 1) mod 3;
case b of
0 : c := c1 + 8 + random(5);
1 : c := c2 + 8 + random(5);
2 : c := c3 + 8 + random(5);
end; { case }
end;
for x1 := 1 to 240 do
begin
landform^[x1, y1] := c + random(2);
landform^[x1, 121 - y1] := c + random(2);
end;
end;
{border turbulence}
for y1 := 3 to 119 do
if (landform^[1, y1] and $f0) <> (landform^[1, y1 - 1] and $f0) then
begin
x1 := 1;
while x1 <= 240 do
begin
b := random(4) + 1;
if b + x1 > 241 then
b := 241 - x1;
makeswirl(x1, y1, b);
inc(x1, b);
end;
inc(y1,2);
end;
{Spots}
cnt := 6 + random(5);
for i := 1 to cnt do
begin
case random(3) of
0 : c := c1 + 2 + random(4);
1 : c := c2 + 2 + random(4);
2 : c := c3 + 2 + random(4);
end; { case }
if i = 1 then
sz := 15 + random(5)
else
sz := 2 + random(6);
sz2 := sz * sz;
sz21 := (sz - 1) * (sz - 1);
sz22 := (sz - 2) * (sz - 2);
x := random(240);
y := random(110 - sz - sz) + 5 + sz;
for x1 := -sz to sz do
begin
xx := x1 + x;
if xx < 1 then inc(xx, 240) else if xx > 240 then dec(xx, 240);
d := round(sqrt(sz2 - x1 * x1));
for y1 := -d to d do
begin
d2 := (x1 * x1) + (y1 * y1);
if d2 > (sz21) then
inc(landform^[xx,y1+y], 1 + random(2))
else if d2 > (sz22) then
landform^[xx,y1+y] := c - 1 - random(2)
else
landform^[xx,y1+y] := c + random(2);
end;
end
end;
randomize;
{ a:=1;
c:=112;
randseed:=tempplan^[curplan].seed;
for j:=1 to 240 do
for i:=1 to 120 do
begin