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Embedded Software and Motor Control Libraries for PXR40xx

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Note<br />

The shift amount cannot exceed in magnitude the bit-width of<br />

the shifted value, that means it must be within the range 0...31.<br />

Otherwise the result of the function is undefined. Due to<br />

effectivity reason this function is implemented as inline <strong>and</strong><br />

thus is not ANSI-C compliant.<br />

4.173.5 Re-entrancy<br />

The function is re-entrant.<br />

4.173.6 Code Example<br />

#include "mlib.h"<br />

tFrac32 f32In1;<br />

tFrac32 f32Out;<br />

tU16 u16In2;<br />

void main(void)<br />

{<br />

// first input = 0.25<br />

f32In1 = FRAC32 (0.25);<br />

// second input = 1<br />

u16In2 = 1;<br />

}<br />

// output should be 0x10000000 ~ FRAC32(0.125)<br />

f32Out = MLIB_ShR_F32(f32In1, u16In2);<br />

// output should be 0x10000000 ~ FRAC32(0.125)<br />

f32Out = MLIB_ShR (f32In1, u16In2, Define F32);<br />

// ##############################################################<br />

// Available only if 32-bit fractional implementation selected<br />

// as default<br />

// ##############################################################<br />

// output should be 0x10000000 ~ FRAC32(0.125)<br />

f32Out = MLIB_ShR (f32In1, u16In2);<br />

4.174 Function MLIB_ShR_F16<br />

This function shifts the first parameter to right by number defined by second parameter.<br />

4.174.1 Declaration<br />

tFrac16 MLIB_ShR_F16(register tFrac16 f16In1, register tU16 u16In2);<br />

<strong>Embedded</strong> <strong>Software</strong> <strong>and</strong> <strong>Motor</strong> <strong>Control</strong> <strong>Libraries</strong> <strong>for</strong> <strong>PXR40xx</strong>, Rev. 1.0<br />

Chapter 4 API References<br />

Freescale Semiconductor, Inc. 659

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