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path: root/FreeRTOS-Labs/Demo/FreeRTOS_Plus_TCP_and_FAT_Windows_Simulator/Run-time-stats-utils.c
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/*
    FreeRTOS V9.0.0 - Copyright (C) 2016 Real Time Engineers Ltd.
    All rights reserved

    VISIT http://www.FreeRTOS.org TO ENSURE YOU ARE USING THE LATEST VERSION.

    This file is part of the FreeRTOS distribution.

    FreeRTOS is free software; you can redistribute it and/or modify it under
    the terms of the GNU General Public License (version 2) as published by the
    Free Software Foundation >>!AND MODIFIED BY!<< the FreeRTOS exception.

    ***************************************************************************
    >>!   NOTE: The modification to the GPL is included to allow you to     !<<
    >>!   distribute a combined work that includes FreeRTOS without being   !<<
    >>!   obliged to provide the source code for proprietary components     !<<
    >>!   outside of the FreeRTOS kernel.                                   !<<
    ***************************************************************************

    FreeRTOS is distributed in the hope that it will be useful, but WITHOUT ANY
    WARRANTY; without even the implied warranty of MERCHANTABILITY or FITNESS
    FOR A PARTICULAR PURPOSE.  Full license text is available on the following
    link: http://www.freertos.org/a00114.html

    ***************************************************************************
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*/

/*
 * Utility functions required to gather run time statistics.  See:
 * http://www.freertos.org/rtos-run-time-stats.html
 *
 * Note that this is a simulated port, where simulated time is a lot slower than
 * real time, therefore the run time counter values have no real meaningful
 * units.
 *
 * Also note that it is assumed this demo is going to be used for short periods
 * of time only, and therefore timer overflows are not handled.
*/

/* FreeRTOS includes. */
#include <FreeRTOS.h>

/* Variables used in the creation of the run time stats time base.  Run time
stats record how much time each task spends in the Running state. */
static long long llInitialRunTimeCounterValue = 0LL, llTicksPerHundedthMillisecond = 0LL;

/*-----------------------------------------------------------*/

void vConfigureTimerForRunTimeStats( void )
{
LARGE_INTEGER liPerformanceCounterFrequency, liInitialRunTimeValue;

	/* Initialise the variables used to create the run time stats time base.
	Run time stats record how much time each task spends in the Running
	state. */

	if( QueryPerformanceFrequency( &liPerformanceCounterFrequency ) == 0 )
	{
		llTicksPerHundedthMillisecond = 1;
	}
	else
	{
		/* How many times does the performance counter increment in 1/100th
		millisecond. */
		llTicksPerHundedthMillisecond = liPerformanceCounterFrequency.QuadPart / 100000LL;

		/* What is the performance counter value now, this will be subtracted
		from readings taken at run time. */
		QueryPerformanceCounter( &liInitialRunTimeValue );
		llInitialRunTimeCounterValue = liInitialRunTimeValue.QuadPart;
	}
}
/*-----------------------------------------------------------*/

uint32_t ulGetRunTimeCounterValue( void )
{
LARGE_INTEGER liCurrentCount;
uint32_t ulReturn;

	/* What is the performance counter value now? */
	QueryPerformanceCounter( &liCurrentCount );

	/* Subtract the performance counter value reading taken when the
	application started to get a count from that reference point, then
	scale to (simulated) 1/100ths of a millisecond. */
	if( llTicksPerHundedthMillisecond == 0 )
	{
		/* The trace macros can call this function before the kernel has been
		started, in which case llTicksPerHundedthMillisecond will not have been
		initialised. */
		ulReturn = 0;
	}
	else
	{
		ulReturn = ( uint32_t ) ( ( liCurrentCount.QuadPart - llInitialRunTimeCounterValue ) / llTicksPerHundedthMillisecond );
	}

	return ulReturn;
}
/*-----------------------------------------------------------*/