PRIM GLOW

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Revision as of 08:36, 26 July 2008 by Chaz Longstaff (talk | contribs) (added a simple 1 line example to make syntax stand out on its own)
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Description

Constant: integer PRIM_GLOW = 25;

The integer constant PRIM_GLOW has the value 25

PRIM_GLOW is used to get or set the glow status of the face. Use the integer number 25 if the compiler rejects the named constant.

llSetPrimitiveParams

[ PRIM_GLOW, integer face, float intensity ]
• integer face face number or ALL_SIDES
• float intensity ranges from 0.0 to 1.0

When used with llSetPrimitiveParams & llSetLinkPrimitiveParams

llGetPrimitiveParams

llGetPrimitiveParams([ PRIM_GLOW, integer face ]);

Returns the list [ float intensity ]

• integer face face number or ALL_SIDES

• float intensity ranges from 0.0 to 1.0

Caveats:

  • If face is ALL_SIDES then the PRIM_GLOW works on all sides.
  • If face indicates a face that does not exist the PRIM_GLOW return is [ 0.0 ]

Caveats


Related Articles

Constants

•  CHANGED_TEXTURE

Functions

•  llSetPrimitiveParams
•  llSetLinkPrimitiveParams
•  llGetPrimitiveParams

Events

•  changed

Examples

basic syntax <lsl> // adjust as desired .3 to a float number from 0 to 1.0 inclusive // adjust as desired ALL_SIDES to specific prim faces if desired

llSetPrimitiveParams( [ PRIM_GLOW, ALL_SIDES, .3 ] ) ; </lsl>


<lsl>//Each time the prim is touched, the intensity of the glow is increased (until it maxes out and cycles back to zero). integer PRIM_GLOW = 25; integer steps = 10; integer counter = 0;

default {

   touch_start(integer total_number) 
   { 
       llSetPrimitiveParams( [ PRIM_GLOW, ALL_SIDES,  counter / (steps - 1.0) ]);
       counter = (counter + 1) % steps;
   } 

}</lsl><lsl>//Each time the prim is touched, the intensity of the glow is decreased (until it hits zero and cycles back to one). integer PRIM_GLOW = 25; integer steps = 10; integer counter = 0;

default {

   touch_start(integer total_number) 
   { 
       llSetPrimitiveParams( [ PRIM_GLOW, ALL_SIDES,  counter / (steps - 1.0) ]);
       counter = (counter + steps - 1) % steps;
   } 

}</lsl>

Deep Notes