Capture the Trig Function from an Option Menu Button

Roger Guay irog at mac.com
Mon Dec 10 15:10:54 EST 2012


Thanks, Jim. I would never have caught that!


On Dec 10, 2012, at 11:37 AM, Jim Hurley <jhurley0305 at sbcglobal.net> wrote:

> Roger, 
> 
> One caveat. This is a good exampe the caution one must exercise in using the Do.
> 
> Instead of: 
> 
>>> replace "sine" with "sin" in tTrigFunction
>>> replace "cosine" with "cos" in tTrigFunction
>>> replace "tangent" with "tan" in tTrigFunction
> 
> Use:
> 
>>> replace "cosine" with "cos" in tTrigFunction
> 
>>> replace "sine" with "sin" in tTrigFunction
>>> replace "tangent" with "tan" in tTrigFunction
> 
> If you replace "sine" with "sin" you also change "cosine" to "cosin" (There is a "sine" in "cosine") 
> So reverse the order of these first two.
> 
> Jim
> 
> 
> 
>> ------------------------------
>> 
>> Message: 3
>> Date: Mon, 10 Dec 2012 09:42:55 -0800
>> From: Roger Guay <irog at mac.com>
>> To: How to use LiveCode <use-livecode at lists.runrev.com>
>> Subject: Re: Capture the Trig Function from an Option Menu Button
>> Message-ID: <2F8EAA01-F970-48E0-AF7A-7733AF7E4FB3 at mac.com>
>> Content-Type: text/plain; CHARSET=US-ASCII
>> 
>> This script is amazingly fast! And so are you, having apparently produced it in less than an hour!! My script appears to be slightly slower using a switch/case structure. I'll test it out when I get a moment.
>> 
>> Thanks very much,
>> Roger
>> 
>> 
>> On Dec 10, 2012, at 8:59 AM, Jim Hurley <jhurley0305 at sbcglobal.net> wrote:
>> 
>>> It turns out that Do is fast enough. Here is the Do script:
>>> (The script might read a litle better by using "x" in the repeat loop instead of "i".)
>>> 
>>> on mouseUp
>>> put the label of btn "myOptionMenu" into tTrigFunction
>>> --It might be necessary  to take care in using the following replacements 
>>> replace "sine" with "sin" in tTrigFunction
>>> replace "cosine" with "cos" in tTrigFunction
>>> replace "tangent" with "tan" in tTrigFunction
>>> put round(the width of this card/2) into x0
>>> put  round(the height of this card/2) into y0
>>> put 50 into Amp--Amplitude of the trig curve
>>> set the points of grc "myCurve" to empty
>>> wait 0 millisec -- Force a screen refresh on the Mac
>>> repeat with i = 1 to 360--maybe with a step of 2 or 4
>>>    put i*pi/180 into tAngle
>>>     get   "put the " & tTrigFunction  & " of " & tAngle &  " into y " 
>>>    do it
>>>    put round(Amp*y) into y
>>>    put i into x
>>>    put x+ x0, y+y0 into tPoint
>>>    put tPoint & cr after tPoints
>>>    --Uncomment the following to see the curve evolve
>>>    --set the points of grc "myCurve" to tPoints
>>>    --wait 0 millisec
>>> end repeat
>>> set the points of grc "myCurve" to tPoints
>>> end mouseUp
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>> 
>> 
> 
> 
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