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namespace inv {
bool on ;
int usedup [ ittypes ] ;
int remaining [ ittypes ] ;
int rseed ;
bool usedForbidden ;
void init ( ) {
rseed = hrandpos ( ) ;
usedForbidden = false ;
for ( int i = 0 ; i < ittypes ; i + + ) usedup [ i ] = 0 ;
}
static const int MIRRORED = 1000 ;
static const int TESTMIRRORED = 900 ;
struct lateextraorb {
eItem treasure ;
eItem orb ;
} ;
vector < lateextraorb > lateextraorbs = {
{ itPower , itOrbFlash } ,
{ itPower , itOrbSpeed } ,
{ itPower , itOrbAether } ,
{ itPower , itOrbWinter } ,
{ itTrollEgg , itOrbFish } ,
{ itTrollEgg , itOrbStunning } ,
{ itTrollEgg , itOrbLuck } ,
{ itTrollEgg , itOrbLife } ,
{ itTrollEgg , itOrbDigging } ,
{ itTrollEgg , itOrbSpace } ,
{ itFulgurite , itOrbLightning } ,
{ itWindstone , itOrbSpeed } ,
{ itDragon , itOrbDragon } ,
{ itSlime , itOrbFlash } ,
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{ itDodeca , itOrbShield } ,
{ itGreenGrass , itOrbHorns } ,
{ itGreenGrass , itOrbShield } ,
{ itGreenGrass , itOrbThorns }
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} ;
int mirrorqty0 ( eItem orb ) {
if ( shmup : : on & & isShmupLifeOrb ( orb ) )
return 3 ;
if ( orb = = itOrbWater ) return 10 ;
if ( orb = = itOrbSummon ) return 9 ;
if ( orb = = itOrbEmpathy ) return 9 ;
if ( orb = = itOrbMatter ) return 9 ;
if ( orb = = itOrbLuck ) return 8 ;
if ( orb = = itOrbSpace ) return 7 ;
if ( orb = = itOrbWinter ) return 6 ;
if ( orb = = itOrbLife ) return 6 ;
if ( orb = = itOrbLove ) return 6 ;
if ( orb = = itOrbRecall ) return 6 ;
if ( orb = = itOrbDigging ) return 6 ;
if ( orb = = itOrbTime ) return 5 ;
if ( orb = = itOrbAir ) return 5 ;
if ( orb = = itOrbFish ) return 5 ;
if ( orb = = itOrbStunning ) return 5 ;
if ( orb = = itOrbUndeath ) return 5 ;
if ( orb = = itOrb37 ) return 5 ;
if ( orb = = itOrbDomination ) return 5 ;
if ( orb = = itOrbBull ) return 5 ;
if ( orb = = itOrbHorns ) return 5 ;
if ( orb = = itOrbAether ) return 4 ;
if ( orb = = itOrbInvis ) return 4 ;
if ( orb = = itOrbFire ) return 4 ;
if ( orb = = itOrbDragon ) return 4 ;
if ( orb = = itOrbIllusion ) return 4 ;
if ( orb = = itOrbDiscord ) return 4 ;
if ( orb = = itOrbBeauty ) return 4 ;
if ( orb = = itOrbMirror ) return 1 ;
return 3 ;
}
int mirrorqty ( eItem orb ) {
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if ( orb = = itOrbMirror ) return 1 ;
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return int ( mirrorqty0 ( orb ) * sqrt ( 1.000001 + items [ itPower ] / 20. ) ) ;
}
mt19937 invr ;
void sirand ( int i ) {
invr . seed ( i ) ;
}
int irand ( int i ) {
return invr ( ) % i ;
}
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eItem whichorbinfo ;
string orbinfoline , extra ;
string extraline ( eItem it , string s ) {
return " " + XLAT1 ( iinf [ it ] . name ) + " ( " + s + " ) " ;
}
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void gainOrbs ( eItem it , eItem o ) {
int qty = items [ it ] ;
if ( it = = itHolyGrail ) {
remaining [ itOrbIllusion ] + = qty ;
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if ( it = = itOrbIllusion ) {
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orbinfoline + = XLAT ( " Unlocked by: %1 in %2 " , it , landof ( it ) ) ;
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orbinfoline + = XLAT ( " (next at %1) " , its ( qty + 1 ) ) ;
}
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}
else {
bool nextfound = false ;
if ( qty > = 10 ) remaining [ o ] + + ;
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else {
if ( whichorbinfo = = o ) {
if ( it = = itHyperstone ) {
extra + = extraline ( it , " 10 " ) ;
}
else {
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orbinfoline + = XLAT ( " Unlocked by: %1 in %2 " , it , landof ( it ) ) ;
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orbinfoline + = XLAT ( " (next at %1) " , its ( 10 ) ) ;
}
}
nextfound = true ;
}
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int last = 10 ;
for ( int k = 0 ; k < 30 | | ! nextfound ; k + + ) {
int maxstep = 15 + 5 * k ;
if ( o = = itOrbMirror )
maxstep + = 5 * ( k - 1 ) * ( k - 2 ) ;
else
maxstep + = ( k - 1 ) * ( k - 2 ) ;
int xnext ;
if ( k > = 30 | | o = = itOrbMirror ) {
xnext = last + maxstep / 2 ; last = xnext - 1 ;
maxstep = 1 ;
}
else
xnext = last + 1 + irand ( maxstep ) ;
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if ( xnext > qty & & ! nextfound ) {
if ( whichorbinfo = = o ) {
if ( it = = itHyperstone ) {
extra + = extraline ( it , its ( last + maxstep ) ) ;
}
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else {
orbinfoline + = XLAT ( " Unlocked by: %1 in %2 " , it , landof ( it ) ) ;
if ( maxstep = = 1 )
orbinfoline + = XLAT ( " (next at %1) " , its ( last + 1 ) ) ;
else
orbinfoline + = XLAT ( " (next at %1 to %2) " , its ( last + 1 ) , its ( last + maxstep ) ) ;
}
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}
nextfound = true ;
}
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if ( xnext < = qty ) remaining [ o ] + + ;
last = xnext ;
}
}
}
int nextp2 ( int i ) {
int z = 1 ;
while ( z < = i ) z < < = 1 ;
return z ;
}
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void gainMirrors ( eItem forwhich ) {
int qtl = items [ forwhich ] ;
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while ( qtl > 0 ) qtl > > = 1 , remaining [ itOrbMirror ] + + ;
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if ( whichorbinfo = = itOrbMirror )
extra + = extraline ( forwhich , its ( nextp2 ( items [ which ] ) ) ) ;
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}
vector < eItem > offensiveOrbs = {
itOrbFlash , itOrbLightning , itOrbPsi , itOrbThorns ,
itOrbFreedom , itOrbSword , itOrbSword2 ,
itOrbHorns , itOrbDragon , itOrbStunning
} ;
vector < eItem > elementalOrbs = { itOrbFire , itOrbWater , itOrbDigging , itOrbAir } ;
vector < eItem > demonicOrbs = { itOrbFire , itOrbHorns , itOrbSummon } ;
bool isIn ( eItem o , vector < eItem > & l ) {
for ( auto it : l ) if ( it = = o ) return true ;
return false ;
}
void gainRandomOrbs ( vector < eItem > orblist , eItem which , int each , int reduce ) {
const int qoff = size ( orblist ) ;
for ( int i = 1 ; i < qoff ; i + + ) swap ( orblist [ i ] , orblist [ irand ( 1 + i ) ] ) ;
for ( int i = 0 ; i < 20 ; i + + ) {
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int nextat = ( i + 1 ) * each + reduce ;
if ( items [ which ] > = nextat ) {
remaining [ orblist [ i % qoff ] ] + + ;
}
else {
if ( isIn ( whichorbinfo , orblist ) )
extra + = extraline ( which , its ( nextat ) + " ? " ) ;
break ;
}
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}
}
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void gainGuestOrbs ( ) {
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for ( int k = 0 ; k < ORBLINES ; k + + ) {
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auto & oi = orbinfos [ k ] ;
if ( oi . flags & orbgenflags : : OSM_AT10 ) {
eItem it = treasureType ( oi . l ) ;
if ( items [ it ] > = 10 ) {
remaining [ oi . orb ] + + ;
}
if ( whichorbinfo = = oi . orb ) extra + = extraline ( it , " 10 " ) ;
}
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}
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}
void gainLove ( ) {
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if ( princess : : reviveAt ) {
remaining [ itOrbLove ] + + ;
int s = gold ( NO_LOVE ) ;
int last = princess : : reviveAt ;
for ( int k = 0 ; ; k + + ) {
int nextstep = 50 + 20 * k ;
last + = nextstep ;
if ( last > s ) {
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if ( whichorbinfo = = itOrbLove ) {
orbinfoline + = XLAT ( " Unlocked by: %1 in %2 " , itSavedPrincess , laPrincessQuest ) ;
orbinfoline + = XLAT ( " (next at %1) " , its ( last ) ) ;
}
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break ;
}
else { last + = nextstep ; remaining [ itOrbLove ] + + ; }
}
}
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}
void gainLate ( eItem tr , eItem orb ) {
int at = 10 + irand ( 41 ) ;
int itr = items [ tr ] ;
if ( itr > = at ) remaining [ orb ] + + ;
if ( whichorbinfo = = orb )
extra + = extraline ( tr , itr > = at ? ( its ( at ) + " ! " ) : " 10-50 " ) ;
}
void compute ( ) {
extra = " " ;
orbinfoline = " " ;
for ( int i = 0 ; i < ittypes ; i + + ) remaining [ i ] = - usedup [ i ] ;
for ( int i = 0 ; i < ittypes ; i + + ) if ( usedup [ i ] > = TESTMIRRORED ) {
remaining [ i ] + = MIRRORED ;
remaining [ i ] - = mirrorqty0 ( eItem ( i ) ) ;
remaining [ i ] + = mirrorqty ( eItem ( i ) ) ;
}
sirand ( rseed ) ;
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gainGuestOrbs ( ) ;
gainOrbs ( itShard , itOrbMirror ) ;
gainOrbs ( itHyperstone , itOrbMirror ) ;
gainOrbs ( itDiamond , itOrbFlash ) ;
gainOrbs ( itGold , itOrbLife ) ;
gainOrbs ( itSpice , itOrbShield ) ;
gainOrbs ( itRuby , itOrbLightning ) ;
gainOrbs ( itElixir , itOrbSpeed ) ;
gainOrbs ( itBone , itGreenStone ) ;
gainOrbs ( itHell , itOrbYendor ) ;
gainOrbs ( itStatue , itOrbTeleport ) ;
gainOrbs ( itFeather , itOrbSafety ) ;
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gainOrbs ( itSapphire , itOrbMorph ) ;
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gainOrbs ( itFernFlower , itOrbThorns ) ;
gainOrbs ( itWine , itOrbAether ) ;
gainOrbs ( itSilver , itOrbDigging ) ;
gainOrbs ( itRoyalJelly , itOrbInvis ) ;
gainOrbs ( itEmerald , itOrbPsi ) ;
gainOrbs ( itPower , itOrbFire ) ;
gainOrbs ( itHolyGrail , itOrbIllusion ) ;
gainOrbs ( itGrimoire , itOrbDragon ) ;
gainOrbs ( itPirate , itOrbTime ) ;
gainOrbs ( itRedGem , itOrbSpace ) ;
gainOrbs ( itBombEgg , itOrbFriend ) ;
gainOrbs ( itCoast , itOrbEmpathy ) ;
gainOrbs ( itWhirlpool , itOrbWater ) ;
gainOrbs ( itPalace , itOrbDiscord ) ;
gainOrbs ( itFjord , itOrbFish ) ;
gainOrbs ( itSavedPrincess , itOrbLove ) ;
gainOrbs ( itIvory , itOrbMatter ) ;
gainOrbs ( itZebra , itOrbFrog ) ;
gainOrbs ( itElemental , itOrbSummon ) ;
gainOrbs ( itFulgurite , itOrbStunning ) ;
gainOrbs ( itMutant , itOrbLuck ) ;
gainOrbs ( itMutant2 , itOrbFreedom ) ;
gainOrbs ( itLotus , itOrbUndeath ) ;
gainOrbs ( itWindstone , itOrbAir ) ;
gainOrbs ( itRose , itOrbBeauty ) ;
gainOrbs ( itCoral , itOrb37 ) ;
gainOrbs ( itBabyTortoise , itOrbShell ) ;
gainOrbs ( itApple , itOrbEnergy ) ;
gainOrbs ( itDragon , itOrbDomination ) ;
gainOrbs ( itKraken , itOrbSword ) ;
gainOrbs ( itBarrow , itOrbSword2 ) ;
gainOrbs ( itTrollEgg , itOrbStone ) ;
gainOrbs ( itSlime , itOrbRecall ) ;
gainOrbs ( itAmethyst , itOrbNature ) ;
gainOrbs ( itDodeca , itOrbDash ) ;
gainOrbs ( itGreenGrass , itOrbBull ) ;
gainOrbs ( itBull , itOrbHorns ) ;
if ( items [ itOrbYendor ] ) remaining [ itOrbMirror ] + + ;
gainMirrors ( itOrbYendor ) ;
gainMirrors ( itHolyGrail ) ;
gainLove ( ) ;
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gainRandomOrbs ( offensiveOrbs , itBone , 25 , 0 ) ;
gainRandomOrbs ( elementalOrbs , itElemental , 12 , 0 ) ;
gainRandomOrbs ( demonicOrbs , itHell , 20 , 100 ) ;
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gainOrbs ( itLavaLily , itOrbLava ) ;
gainOrbs ( itHunting , itOrbSide3 ) ;
gainOrbs ( itBlizzard , itOrbWinter ) ;
gainOrbs ( itTerra , itOrbSide1 ) ;
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for ( auto & it : lateextraorbs ) gainLate ( it . treasure , it . orb ) ;
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if ( items [ itOrbLove ] & & ! items [ itSavedPrincess ] ) items [ itSavedPrincess ] = 1 ;
int & r = remaining [ itGreenStone ] ;
if ( items [ itBone ] > = 0 ) {
for ( int i = 0 ; i < ittypes ; i + + ) if ( i ! = itGreenStone ) {
r + = usedup [ i ] ;
if ( usedup [ i ] > = TESTMIRRORED ) r - = ( MIRRORED - mirrorqty0 ( eItem ( i ) ) ) ;
}
}
items [ itGreenStone ] + = r ;
usedup [ itGreenStone ] + = r ;
r = 0 ;
if ( shmup : : on ) for ( int i = 0 ; i < ittypes ; i + + ) {
if ( remaining [ i ] & & isShmupLifeOrb ( eItem ( i ) ) ) {
gainLife ( ) ;
remaining [ i ] - - ;
usedup [ i ] + + ;
}
}
items [ itInventory ] = 0 ;
for ( int i = 0 ; i < ittypes ; i + + )
if ( i ! = itGreenStone & & i ! = itOrbYendor )
items [ itInventory ] + = remaining [ i ] ;
}
map < char , eItem > orbmap ;
string orbkeys = " zfwplSetsTaMIYgCcPOWAFydLGRUkouE.,bVNxDjJZnrvhBm0123456789 " ;
typedef pair < int , int > pxy ;
vector < pxy > orbcoord ;
int sq ( pxy p ) {
int zz = ( 2 * p . first + p . second ) * ( 2 * p . first + p . second ) + 3 * p . second * p . second ;
zz * = 20 ; zz + = abs ( p . second ) ;
zz * = 20 ; zz + = abs ( p . first ) ;
zz * = 4 ; zz + = ( p . first > 0 ) * 2 + ( p . second > 0 ) ;
return zz ;
}
bool plain ;
eItem which ;
bool mirroring ;
const char * helptext =
" You are playing in the Orb Strategy Mode. Collecting treasure "
" gives you access to magical Orb powers. In this mode, "
" unlocking requirements are generally higher, and "
" several quests and lands "
" give you extremely powerful Orbs of the Mirror. \n " ;
void evokeBeautyAt ( cell * c ) {
forCellEx ( c2 , c )
if ( c2 - > monst & & ! isFriendly ( c2 - > monst ) & & ! isIvy ( c2 - > monst ) ) {
c2 - > stuntime + = 3 ;
checkStunKill ( c2 ) ;
}
}
void evokeOrb ( eItem it ) {
if ( it = = itOrbFreedom )
for ( int i = 0 ; i < numplayers ( ) ; i + + )
if ( multi : : playerActive ( i ) )
checkFreedom ( playerpos ( i ) ) ;
if ( it = = itOrbBeauty ) {
for ( int i = 0 ; i < numplayers ( ) ; i + + )
if ( multi : : playerActive ( i ) )
evokeBeautyAt ( playerpos ( i ) ) ;
if ( items [ itOrbEmpathy ] )
for ( cell * c : dcal ) if ( isFriendly ( c - > monst ) )
evokeBeautyAt ( c ) ;
}
if ( it = = itOrbSword | | it = = itOrbSword2 ) {
for ( int i = 0 ; i < numplayers ( ) ; i + + )
if ( multi : : playerActive ( i ) ) {
cwt . c = playerpos ( i ) ;
multi : : cpid = i ;
swordAttackStatic ( it = = itOrbSword2 ) ;
}
}
}
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string osminfo ( eItem orb ) {
string s = XLAT ( " Number of uses left: %1 " , its ( remaining [ orb ] ) ) ;
int us = usedup [ orb ] ;
if ( us > = TESTMIRRORED ) s + = XLAT ( " (mirrored) " ) , us = us - MIRRORED + mirrorqty0 ( orb ) ;
if ( us ) s + = XLAT ( " (used %1 times) " , its ( us ) ) ;
return s ;
}
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void show ( ) {
if ( remaining [ itOrbSword ] ) items [ itOrbSword ] + + ;
if ( remaining [ itOrbSword2 ] ) items [ itOrbSword2 ] + + ;
gamescreen ( 2 ) ;
if ( remaining [ itOrbSword ] ) items [ itOrbSword ] - - ;
if ( remaining [ itOrbSword2 ] ) items [ itOrbSword2 ] - - ;
cmode = sm : : CENTER ;
orbcoord . clear ( ) ;
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for ( int y = - 3 ; y < = 3 ; y + + ) for ( int x = - 5 ; x < = 5 ; x + + ) if ( x + y < = 5 & & x + y > = - 5 & & ( x | | y ) )
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orbcoord . emplace_back ( x , y ) ;
sort ( orbcoord . begin ( ) , orbcoord . end ( ) , [ ] ( pxy p1 , pxy p2 ) {
return sq ( p1 ) < sq ( p2 ) ; } ) ;
ld rad = min ( vid . xres , vid . yres ) / 20 ;
ld rad3 = int ( rad * sqrt ( 3 ) ) ;
compute ( ) ;
orbmap . clear ( ) ;
which = itNone ;
if ( plain ) dialog : : init ( XLAT ( mirroring ? " mirror what? " : " inventory " ) , forecolor , 150 , 100 ) ;
int j = 0 , oc = 6 ;
for ( int i = 0 ; i < ittypes ; i + + ) {
eItem o = eItem ( i ) ;
if ( itemclass ( o ) = = IC_ORB ) {
char c = orbkeys [ j + + ] ;
if ( remaining [ i ] | | usedup [ i ] ) {
orbmap [ c ] = o ;
if ( plain )
dialog : : addSelItem ( XLAT1 ( iinf [ o ] . name ) , its ( remaining [ i ] ) , c ) ;
else {
auto pos = orbcoord [ oc + + ] ;
ld px = vid . xcenter + 2 * rad * pos . first + rad * pos . second ;
ld py = vid . ycenter + pos . second * rad3 ;
int icol = iinf [ o ] . color ;
if ( ! remaining [ i ] ) icol = gradient ( icol , 0 , 0 , .5 , 1 ) ;
bool gg = graphglyph ( ) ;
if ( ! hiliteclick ) {
if ( gg ) {
initquickqueue ( ) ;
transmatrix V = atscreenpos ( px , py , rad * 2 ) ;
drawItemType ( o , NULL , V , icol , ticks / 3 + i * 137 , false ) ;
quickqueue ( ) ;
}
int tcol = remaining [ i ] ? darkenedby ( icol , 1 ) : 0 ;
if ( remaining [ i ] ! = 1 | | ! gg )
displaystr ( px , py , 2 , gg ? rad : rad * 3 / 2 , remaining [ i ] < = 0 ? " X " : remaining [ i ] = = 1 ? " o " : its ( remaining [ i ] ) , tcol , 8 ) ;
}
bool b = hypot ( mousex - px , mousey - py ) < rad ;
if ( b ) {
getcstat = c ,
which = o ;
}
}
}
}
}
if ( plain ) {
dialog : : addBreak ( 750 ) ;
dialog : : addItem ( XLAT ( " help " ) , SDLK_F1 ) ;
dialog : : addItem ( XLAT ( " return to the game " ) , ' i ' ) ;
dialog : : display ( ) ;
which = orbmap [ getcstat ] ;
}
else {
if ( which = = itNone ) {
displaystr ( vid . xres / 2 , vid . fsize * 2 , 2 , vid . fsize * 2 , XLAT ( " Which orb to use? " ) , 0xC0C0C0 , 8 ) ;
}
else {
int icol = iinf [ which ] . color ;
displaystr ( vid . xres / 2 , vid . fsize * 2 , 2 , vid . fsize * 2 , XLAT1 ( iinf [ which ] . name ) , icol , 8 ) ;
if ( mirroring )
displaystr ( vid . xres / 2 , vid . fsize * 4 , 2 , vid . fsize , usedup [ which ] > = TESTMIRRORED ? XLAT ( " already mirrored " ) : XLAT ( " Uses to gain: %1 " , its ( mirrorqty ( which ) ) ) , icol , 8 ) ;
else {
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whichorbinfo = which ;
compute ( ) ;
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displaystr ( vid . xres / 2 , vid . fsize * 4 , 2 , vid . fsize , orbinfoline , icol , 8 ) ;
if ( extra ! = " " )
displaystr ( vid . xres / 2 , vid . fsize * 5 , 2 , vid . fsize , XLAT ( " Extras: " ) + extra , icol , 8 ) ;
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}
if ( remaining [ which ] ! = 1 | | usedup [ which ] ) {
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displaystr ( vid . xres / 2 , vid . yres - vid . fsize * 6 , 2 , vid . fsize , osminfo ( which ) , icol , 8 ) ;
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}
# if ISMOBILE==0
string hot = XLAT1 ( " Hotkey: " ) ; hot + = getcstat ;
displaystr ( vid . xres / 2 , vid . yres - vid . fsize * 5 , 2 , vid . fsize , hot , icol , 8 ) ;
# endif
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eOrbLandRelation olr = getOLR ( which , getPrizeLand ( ) ) ;
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int col = 0 ;
if ( olr = = olrDangerous ) col = 0xC00000 ;
if ( olr = = olrUseless ) col = 0x808080 ;
if ( olr = = olrForbidden ) col = 0x804000 ;
if ( col )
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displaystr ( vid . xres / 2 , vid . yres - vid . fsize * 4 , 2 , vid . fsize , XLAT ( olrDescriptions [ olr ] , cwt . c - > land , itNone , treasureType ( cwt . c - > land ) ) , col , 8 ) ;
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}
}
dialog : : displayPageButtons ( 3 , 0 ) ;
mouseovers = " " ;
keyhandler = [ ] ( int sym , int uni ) {
if ( plain ) dialog : : handleNavigation ( sym , uni ) ;
if ( orbmap . count ( uni ) ) {
eItem orb = orbmap [ uni ] ;
if ( remaining [ orb ] < = 0 ) ;
else if ( orb = = itOrbMirror ) {
mirroring = ! mirroring ;
// an amusing message
if ( remaining [ itOrbMirror ] > = 2 & & ! mirroring )
addMessage ( XLAT ( " You mirror %the1. " , orb ) ) ;
if ( mirroring ) {
bool next = false ;
forCellEx ( c2 , cwt . c ) if ( c2 - > wall = = waMirror | | c2 - > wall = = waCloud | | c2 - > wall = = waMirrorWall )
next = true ;
if ( ! next ) {
addMessage ( XLAT ( " You need to stand next to a magic mirror or cloud to use %the1. " , itOrbMirror ) ) ;
mirroring = false ;
}
}
}
else if ( mirroring ) {
if ( usedup [ orb ] > = TESTMIRRORED ) {
addMessage ( XLAT ( " Each orb type can be mirrored only once. " ) ) ;
mirroring = false ;
}
else if ( remaining [ orb ] > 0 ) {
usedup [ itOrbMirror ] + + ;
usedup [ orb ] + = MIRRORED ;
usedup [ orb ] - = mirrorqty0 ( orb ) ;
addMessage ( XLAT ( " You mirror %the1. " , orb ) ) ;
mirroring = false ;
}
else mirroring = false ;
}
else if ( ( isHaunted ( cwt . c - > land ) | | cwt . c - > land = = laDungeon ) & & orb = = itOrbSafety ) {
addMessage ( XLAT ( " This would only move you deeper into the trap! " ) ) ;
}
else {
eItem it = cwt . c - > item ;
cwt . c - > item = orbmap [ uni ] ;
collectItem ( cwt . c , true ) ;
if ( ! cwt . c - > item ) usedup [ orbmap [ uni ] ] + + ;
if ( getOLR ( it , getPrizeLand ( ) ) )
usedForbidden = true ;
cwt . c - > item = it ;
evokeOrb ( orbmap [ uni ] ) ;
checkmove ( ) ;
popScreenAll ( ) ;
}
}
else if ( uni = = ' 1 ' ) plain = ! plain ;
else if ( sym = = SDLK_F1 )
gotoHelp ( which ? generateHelpForItem ( which ) : NODESCYET ) ;
else if ( doexiton ( sym , uni ) ) {
if ( mirroring ) mirroring = false ;
popScreen ( ) ;
}
} ;
}
void applyBox ( eItem it ) {
applyBoxNum ( usedup [ it ] ) ;
}
int incheck ;
void check ( int delta ) {
incheck + = delta ;
for ( int i = 0 ; i < ittypes ; i + + ) {
eItem it = eItem ( i ) ;
if ( itemclass ( it ) = = IC_ORB )
items [ it ] + = delta * remaining [ it ] * orbcharges ( it ) ;
}
}
}
2017-07-22 23:33:27 +00:00