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  // The ttl variable is a counter, decreased for each subsequent replication,
== sourcecode ==
  // the child that get rezzed with a ttl value of zero will not procreate.
 
=== selfrep.lsl ===
  integer ttl = 3;
 
   
// Global variables
  integer gintGeneration;                    // The Generation we are. Iterates with each replication.
  integer gintMaxGeneration = 5;              // Maximum allowed Generations. Replication stops at this Generation-Count.
   
  vector gvecStandardNull = <9.5,0,0>;       // Position to rez Object to.
  rotation grotStandardNull = <0,0,0,0.0>;    // Rotation to rez Object to.
 
  rez_child()
  rez_child()
  {
  {
     // Check if we're allowed to create any more offspring
     // Check if we're allowed to create any more offspring
     if(ttl > 0)
    //llSay(0, "ok, rez!");
     if(gintGeneration < gintMaxGeneration)
     {
     {
         // Offspring ttl should be one closer to zero
         // Satellite still over my land? 
         integer ttl_child = ttl - 1;
         if (llOverMyLand(llGetKey())) {
 
            // if yes, rez the inventory-item at the distance of standardnull in front of us.
        // Rez child one meter above me
            llRezObject("Metastasis Unit", (gvecStandardNull*llGetRot())+llGetPos(), ZERO_VECTOR, llGetRot(), gintGeneration+1);
        llRezObject("1000er", llGetPos()+<0,0,1>, <0,0,0>, <0,0,0,0>, ttl_child);
        }
     }
     }
  }
  }
 
 
  default
  default
  {
  {
    // If you touch me, we'll have babies!
    touch_start(integer total_number)
    {
        rez_child();
    }
     // llRezObject throws event object_rez on the parent with the offspring as parameter   
     // llRezObject throws event object_rez on the parent with the offspring as parameter   
     object_rez(key child)  
     object_rez(key child)  
     {  
     {  
         // Give copy of child to child
         // Give copy of child to child
         llGiveInventory(child, llKey2Name(child));  
         llGiveInventory(child, llKey2Name(child));
     }  
     }  
   
   
     // When rezzed, the event on_rez is called on me as the child
     // When rezzed, the event on_rez is called on me as the child
     on_rez(integer ttl_in)
     on_rez(integer pintGeneration)
     {
     {
       
         // Save child (this one) ttl;
         // Save child (this one) ttl;
         ttl = ttl_in;
         gintGeneration = pintGeneration;
       
        // show the generation
        llSetText((string)gintGeneration,<1,1,1>,1.0);
        // llSensorRepeat( "", "", AGENT, range, TWO_PI, rate );
    }
 
    link_message(integer sender_num, integer num, string msg, key id) {
        if (msg == "replicate") {
            rez_child();
        }
     }
     }
}


=== sensor.lsl ===
// boolean that keeps aggro/friendly mode.
integer intState = FALSE;
 
// the index for the
integer intListenPointer = 0;
// all needed rotations for a crystalline-form in an array
list glRotations = [
    // the six 2D-Plane rotations
    <0,0,0>,
    <0,0,60>,
    <0,0,120>,
    <0,0,180>,
    <0,0,240>,
    <0,0,300>,
   
    // the three upper rotations
  <35,315,45>,
  <35,45,135>,
  <305,0,270>,
 
  // the three lower rotations
  <35,315,225>,
  <35,45,315>,
  <305,0,90>
  ];
   
   
// the rotation-function.
// rotates the entity to object to the next position in the global Rotations-Array
object_rotateby() {
         
    rotation rotDelta;
    rotation new_rot;   
    integer intZufall =  (integer)llFrand(11.9);
   
    rotDelta = llEuler2Rot( llList2Vector(glRotations,intZufall) *  DEG_TO_RAD );
    new_rot = ZERO_ROTATION * rotDelta;
    llSetRot(new_rot);
     
    intListenPointer = intListenPointer + 1;
    if (intListenPointer >= 11) intListenPointer = 0;
}
   
object_init(integer pintOldPointer) {
    llSetStatus(STATUS_PHYSICS,FALSE);
    llListenRemove(pintOldPointer);
    intListenPointer = llListen(0, "", llGetOwner(), "");
    llSetTimerEvent(15);
}
 
default
{
 
    state_entry()
    {
        object_init(intListenPointer);
    }
   
    on_rez(integer pintGeneration)
    {
        object_init(intListenPointer);
       
        if (pintGeneration>0) {
        // Children are aggro.
              intState = TRUE; 
        }
    }
   
    sensor(integer total_number) // total_number is the number of avatars detected.
    {
        //llWhisper(0, (string)total_number + " debris-items detected - rotate 60 degrees" );
        //object_rotateby();
    }
 
    no_sensor() {
       
        if (intState) {
            //llSay(0, "No debris detected, replicate");
          llMessageLinked(LINK_THIS, 0, "replicate", "");
        }
    }
   
     // Because of the script-delay we have to connect the grand-child rezzing  
     // Because of the script-delay we have to connect the grand-child rezzing  
     // to the 'changed' event, which happens when someone (the parent) has
     // to the 'changed' event, which happens when someone (the parent) has
Zeile 47: Zeile 146:
         if(change == CHANGED_INVENTORY)
         if(change == CHANGED_INVENTORY)
         {
         {
            rez_child();         
          // rez_child();         
         }
         }
     }
     }
       
    timer() {
        if (intState) {
            object_rotateby();
            llSensor("Metastasis Unit","", SCRIPTED, 12.5, PI_BY_TWO / 3);
        }
    }
 
    listen( integer channel, string name, key id, string message ){
       
        if (message == "metastasis off") {
            intState = FALSE;
            llSay(0, "Metastasis Unit offline: Service shutdown");
        } else if (message == "metastasis on") {
            intState = TRUE;   
            llSay(0, "Metastasis Unit online: Service up");
        } else if (message == "metastasis fall") {
            intState = FALSE;   
            llSay(0, "Metastasis Unit physics enabled");
            llSetStatus(STATUS_PHYSICS,TRUE);
        } else if (message == "metastasis delete") {
            intState = FALSE;   
            llSay(0, "Metastasis Unit self suicide");
            llDie();
        }
    }
         
    // another quite funny feature.
    //collision_start( integer num_detected) {
    //   
    //    llSetStatus(STATUS_PHYSICS,TRUE);
    //}
                     
  }
  }
[[Kategorie:Gaming]]

Aktuelle Version vom 26. April 2007, 03:58 Uhr

sourcecode

selfrep.lsl

// Global variables
integer gintGeneration;                     // The Generation we are. Iterates with each replication.
integer gintMaxGeneration = 5;              // Maximum allowed Generations. Replication stops at this Generation-Count.
   
vector gvecStandardNull = <9.5,0,0>;        // Position to rez Object to.
rotation grotStandardNull = <0,0,0,0.0>;    // Rotation to rez Object to.
 
rez_child()
{
   // Check if we're allowed to create any more offspring
   //llSay(0, "ok, rez!");
   if(gintGeneration < gintMaxGeneration)
   {
       // Satellite still over my land?  
       if (llOverMyLand(llGetKey())) {
           // if yes, rez the inventory-item at the distance of standardnull in front of us.
           llRezObject("Metastasis Unit", (gvecStandardNull*llGetRot())+llGetPos(), ZERO_VECTOR, llGetRot(), gintGeneration+1);
       }
   }
}
 
default
{
   // llRezObject throws event object_rez on the parent with the offspring as parameter   
   object_rez(key child) 
   { 
       // Give copy of child to child
       llGiveInventory(child, llKey2Name(child));  
   } 
    
   // When rezzed, the event on_rez is called on me as the child
   on_rez(integer pintGeneration)
   {
       
       // Save child (this one) ttl;
       gintGeneration = pintGeneration;
       
       // show the generation
       llSetText((string)gintGeneration,<1,1,1>,1.0);
       // llSensorRepeat( "", "", AGENT, range, TWO_PI, rate );
   }
 
   link_message(integer sender_num, integer num, string msg, key id) {
       if (msg == "replicate") {
            rez_child(); 
       }
   }
}


sensor.lsl

// boolean that keeps aggro/friendly mode.
integer intState = FALSE;
  
// the index for the 
integer intListenPointer = 0;

// all needed rotations for a crystalline-form in an array
list glRotations = [
   // the six 2D-Plane rotations
   <0,0,0>,
   <0,0,60>,
   <0,0,120>,
   <0,0,180>,
   <0,0,240>,
   <0,0,300>,
   
   // the three upper rotations
  <35,315,45>,
  <35,45,135>,
  <305,0,270>,
  
  // the three lower rotations
  <35,315,225>,
  <35,45,315>,
  <305,0,90>
  ];
   
    
// the rotation-function.
// rotates the entity to object to the next position in the global Rotations-Array
object_rotateby() {
         
   rotation rotDelta;
   rotation new_rot;    
   integer intZufall =  (integer)llFrand(11.9);
   
   rotDelta = llEuler2Rot( llList2Vector(glRotations,intZufall) *  DEG_TO_RAD );
   new_rot = ZERO_ROTATION * rotDelta;
   llSetRot(new_rot);
      
   intListenPointer = intListenPointer + 1;
   if (intListenPointer >= 11) intListenPointer = 0;
}
    
object_init(integer pintOldPointer) {
   llSetStatus(STATUS_PHYSICS,FALSE);
   llListenRemove(pintOldPointer);
   intListenPointer = llListen(0, "", llGetOwner(), "");
   llSetTimerEvent(15);
}
  
default
{
 
   state_entry()
   {
        object_init(intListenPointer);
   }
   
   on_rez(integer pintGeneration)
   {
        object_init(intListenPointer);
       
       if (pintGeneration>0) {
       // Children are aggro.
             intState = TRUE;  
       }
   }
   
   sensor(integer total_number) // total_number is the number of avatars detected.
   {
       //llWhisper(0, (string)total_number + " debris-items detected - rotate 60 degrees" );
       //object_rotateby();
   }
  
   no_sensor() {
       
       if (intState) {
           //llSay(0, "No debris detected, replicate");
          llMessageLinked(LINK_THIS, 0, "replicate", "");
       }
   }
   
   // Because of the script-delay we have to connect the grand-child rezzing 
   // to the 'changed' event, which happens when someone (the parent) has
   // given me (as the child) something (a copy of myself)
   changed(integer change)
   {
       if(change == CHANGED_INVENTORY)
       {
          // rez_child();        
       }
   }
       
   timer() {
       if (intState) {
           object_rotateby(); 
           llSensor("Metastasis Unit","", SCRIPTED, 12.5, PI_BY_TWO / 3);
       }
   }
  
   listen( integer channel, string name, key id, string message ){
       
       if (message == "metastasis off") {
           intState = FALSE;
           llSay(0, "Metastasis Unit offline: Service shutdown");
       } else if (message == "metastasis on") {
           intState = TRUE;    
           llSay(0, "Metastasis Unit online: Service up");
       } else if (message == "metastasis fall") {
           intState = FALSE;    
           llSay(0, "Metastasis Unit physics enabled");
           llSetStatus(STATUS_PHYSICS,TRUE);
       } else if (message == "metastasis delete") {
           intState = FALSE;    
           llSay(0, "Metastasis Unit self suicide");
           llDie();
       }
   }
         
   // another quite funny feature. 
   //collision_start( integer num_detected) {
   //    
   //    llSetStatus(STATUS_PHYSICS,TRUE);
   //}
                      
}