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/**
*
* @file xtmrctr_selftest.c
* @addtogroup tmrctr_v4_0
* @{
*
* Contains diagnostic/self-test functions for the XTmrCtr component.
*
* <pre>
* MODIFICATION HISTORY:
*
* Ver Who Date Changes
* ----- ---- -------- -----------------------------------------------
* 1.00b jhl 02/06/02 First release
* 1.10b mta 03/21/07 Updated to new coding style
* 2.00a ktn 10/30/09 Updated to use HAL API's. _m is removed from all the macro
* definitions.
* </pre>
*
******************************************************************************/
/***************************** Include Files *********************************/
#include "xil_io.h"
#include "xtmrctr.h"
#include "xtmrctr_i.h"
/************************** Constant Definitions *****************************/
/**************************** Type Definitions *******************************/
/***************** Macros (Inline Functions) Definitions *********************/
/************************** Function Prototypes ******************************/
/************************** Variable Definitions *****************************/
/*****************************************************************************/
/**
*
* Runs a self-test on the driver/device. This test verifies that the specified
* timer counter of the device can be enabled and increments.
*
* @param InstancePtr is a pointer to the XTmrCtr instance.
* @param TmrCtrNumber is the timer counter of the device to operate on.
* Each device may contain multiple timer counters. The timer
* number is a zero based number with a range of
* 0 - (XTC_DEVICE_TIMER_COUNT - 1).
*
* @return
* - XST_SUCCESS if self-test was successful
* - XST_FAILURE if the timer is not incrementing.
*
* @note
*
* This is a destructive test using the provided timer. The current settings
* of the timer are returned to the initialized values and all settings at the
* time this function is called are overwritten.
*
******************************************************************************/
int XTmrCtr_SelfTest(XTmrCtr * InstancePtr, u8 TmrCtrNumber)
{
u32 TimerCount1 = 0;
u32 TimerCount2 = 0;
u16 Count = 0;
Xil_AssertNonvoid(InstancePtr != NULL);
Xil_AssertNonvoid(TmrCtrNumber < XTC_DEVICE_TIMER_COUNT);
Xil_AssertNonvoid(InstancePtr->IsReady == XIL_COMPONENT_IS_READY);
/*
* Set the Capture register to 0
*/
XTmrCtr_WriteReg(InstancePtr->BaseAddress, TmrCtrNumber,
XTC_TLR_OFFSET, 0);
/*
* Reset the timer and the interrupt
*/
XTmrCtr_WriteReg(InstancePtr->BaseAddress, TmrCtrNumber,
XTC_TCSR_OFFSET,
XTC_CSR_INT_OCCURED_MASK | XTC_CSR_LOAD_MASK);
/*
* Set the control/status register to enable timer
*/
XTmrCtr_WriteReg(InstancePtr->BaseAddress, TmrCtrNumber,
XTC_TCSR_OFFSET, XTC_CSR_ENABLE_TMR_MASK);
/*
* Read the timer
*/
TimerCount1 = XTmrCtr_ReadReg(InstancePtr->BaseAddress,
TmrCtrNumber, XTC_TCR_OFFSET);
/*
* Make sure timer is incrementing if the Count rolls over to zero
* and the timer still has not incremented an error is returned
*/
do {
TimerCount2 = XTmrCtr_ReadReg(InstancePtr->BaseAddress,
TmrCtrNumber, XTC_TCR_OFFSET);
Count++;
}
while ((TimerCount1 == TimerCount2) && (Count != 0));
/*
* Reset the timer and the interrupt
*/
XTmrCtr_WriteReg(InstancePtr->BaseAddress, TmrCtrNumber,
XTC_TCSR_OFFSET,
XTC_CSR_INT_OCCURED_MASK | XTC_CSR_LOAD_MASK);
/*
* Set the control/status register to 0 to complete initialization
* this disables the timer completely and allows it to be used again
*/
XTmrCtr_WriteReg(InstancePtr->BaseAddress, TmrCtrNumber,
XTC_TCSR_OFFSET, 0);
if (TimerCount1 == TimerCount2) {
return XST_FAILURE;
}
else {
return XST_SUCCESS;
}
}
/** @} */