<?xml version="1.0" encoding="utf-8" standalone="yes"?>

<?xml-stylesheet href="./_c74_ref.xsl" type="text/xsl"?>

<!--This is an automatically generated file. DO NOT EDIT THIS FILE DIRECTLY. Rather, use the _ref.xml files found in the 'edits' folder.-->
<c74object name="mc.where~" module="" category="Multichannel">
	<digest>
		Report Elapsed and Remaining Time of a Phasor (multichannel)
	</digest>
	<description>
		The <o>where~</o> object generates two signals: one reports the elapsed time since the reset of a phasor ramp; the other predicts of the remaining time until the phasor resets again. You can use these time values to synchronize events to specific times within a ramp instead of its relative phase. For example, if you want something to happen at 30 milliseconds before the phasor is scheduled to reset, you can wait until the remaining time signal has a value of 30 or less. <o>where~</o> has a direction detection feature so it can report the elapsed and remaining time of ramps that go from 1 to 0 (as produced by a <o>phasor~</o> object with negative frequency) in addition to ramps that go from 0 to 1.
	</description>
	<!--METADATA-->
	<metadatalist>
		<metadata name="author">
			Cycling '74
		</metadata>
		<metadata name="tag">
			MSP
		</metadata>
	</metadatalist>
	<!--INLETS-->
	<inletlist>
		<inlet id="0" type="signal">
			<digest>
				Input
			</digest>
			<description>
				The phasor to be analyzed
			</description>
		</inlet>
		<inlet id="1" type="signal">
			<digest>
			</digest>
			<description>
				TEXT_HERE
			</description>
		</inlet>
	</inletlist>
	<!--OUTLETS-->
	<outletlist>
		<outlet id="0" type="signal">
			<digest>
				Elapsed Time
			</digest>
			<description>
				The left outlet reports a running count of milliseconds since the phasor reset.
			</description>
		</outlet>
		<outlet id="1" type="signal">
			<digest>
				Predicted Time Until Reset
			</digest>
			<description>
				The right outlet reports a running estimate of the time remaiing until the phasor resets again.
			</description>
		</outlet>
	</outletlist>
	<!--ARGUMENTS-->
	<objarglist>
		<objarg id="0" name="OBJARG_NAME" type="OBJARG_TYPE" optional="0">
			<digest>
				TEXT_HERE
			</digest>
			<description>
				TEXT_HERE
			</description>
		</objarg>
	</objarglist>
	<!--MESSAGES-->
	<methodlist>
		<method name="signal">
			<arglist />
			<digest>
				Input
			</digest>
			<description>
				The phasor to be analyzed
			</description>
		</method>
	</methodlist>
	<!--ATTRIBUTES-->
	<!--EXAMPLE-->
	<examplelist>
		<example caption="" img="" />
	</examplelist>
	<!--SEEALSO-->
	<seealsolist>
		<seealso name="phasor~" />
		<seealso name="spike~" />
		<seealso name="timer" />
		<seealso name="what~" />
	</seealsolist>
	<mcwrapper>
		<mcwrappermethod name="applymessages" />
		<mcwrappermethod name="applynvalues" />
		<mcwrappermethod name="applyvalues" />
		<mcwrappermethod name="decide" />
		<mcwrappermethod name="deviate" />
		<mcwrappermethod name="ease.in_back" />
		<mcwrappermethod name="ease.in_bounce" />
		<mcwrappermethod name="ease.in_circular" />
		<mcwrappermethod name="ease.in_cubic" />
		<mcwrappermethod name="ease.in_elastic" />
		<mcwrappermethod name="ease.in_exponential" />
		<mcwrappermethod name="ease.in_out_back" />
		<mcwrappermethod name="ease.in_out_bounce" />
		<mcwrappermethod name="ease.in_out_circular" />
		<mcwrappermethod name="ease.in_out_cubic" />
		<mcwrappermethod name="ease.in_out_elastic" />
		<mcwrappermethod name="ease.in_out_exponential" />
		<mcwrappermethod name="ease.in_out_quadratic" />
		<mcwrappermethod name="ease.in_out_quartic" />
		<mcwrappermethod name="ease.in_out_quintic" />
		<mcwrappermethod name="ease.in_out_sine" />
		<mcwrappermethod name="ease.in_quadratic" />
		<mcwrappermethod name="ease.in_quartic" />
		<mcwrappermethod name="ease.in_quintic" />
		<mcwrappermethod name="ease.in_sine" />
		<mcwrappermethod name="ease.linear" />
		<mcwrappermethod name="ease.out_back" />
		<mcwrappermethod name="ease.out_bounce" />
		<mcwrappermethod name="ease.out_circular" />
		<mcwrappermethod name="ease.out_cubic" />
		<mcwrappermethod name="ease.out_elastic" />
		<mcwrappermethod name="ease.out_quadratic" />
		<mcwrappermethod name="ease.out_quartic" />
		<mcwrappermethod name="ease.out_quintic" />
		<mcwrappermethod name="ease.out_sine" />
		<mcwrappermethod name="exponential" />
		<mcwrappermethod name="generate" />
		<mcwrappermethod name="harmonic" />
		<mcwrappermethod name="increment" />
		<mcwrappermethod name="randomrange" />
		<mcwrappermethod name="replicatenvalues" />
		<mcwrappermethod name="replicatevalues" />
		<mcwrappermethod name="scaledexponential" />
		<mcwrappermethod name="setvalue" />
		<mcwrappermethod name="setvaluerange" />
		<mcwrappermethod name="smoothstep" />
		<mcwrappermethod name="spread" />
		<mcwrappermethod name="spreadexclusive" />
		<mcwrappermethod name="spreadincludefirst" />
		<mcwrappermethod name="spreadincludesecond" />
		<mcwrappermethod name="spreadinclusive" />
		<mcwrappermethod name="subharmonic" />
		<mcwrapperattr name="busymapname" />
		<mcwrapperattr name="bz" />
		<mcwrapperattr name="bzname" />
		<mcwrapperattr name="chans" />
		<mcwrapperattr name="fun" />
		<mcwrapperattr name="initialvalues" />
		<mcwrapperattr name="op" />
		<mcwrapperattr name="target" />
		<mcwrapperattr name="usebusymap" />
		<mcwrapperattr name="values" />
		<mcwrapperattr name="voiceprob" />
		<mcwrapperattr name="zero" />
	</mcwrapper>
</c74object>
