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📄 xadcps_selftest.c

📁 自学ZedBoard:使用IP通过ARM PS访问FPGA(源代码)
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/******************************************************************************** (c) Copyright 2011 Xilinx, Inc. All rights reserved.** This file contains confidential and proprietary information of Xilinx, Inc.* and is protected under U.S. and international copyright and other* intellectual property laws.** DISCLAIMER* This disclaimer is not a license and does not grant any rights to the* materials distributed herewith. Except as otherwise provided in a valid* license issued to you by Xilinx, and to the maximum extent permitted by* applicable law: (1) THESE MATERIALS ARE MADE AVAILABLE "AS IS" AND WITH ALL* FAULTS, AND XILINX HEREBY DISCLAIMS ALL WARRANTIES AND CONDITIONS, EXPRESS,* IMPLIED, OR STATUTORY, INCLUDING BUT NOT LIMITED TO WARRANTIES OF* MERCHANTABILITY, NON-INFRINGEMENT, OR FITNESS FOR ANY PARTICULAR PURPOSE;* and (2) Xilinx shall not be liable (whether in contract or tort, including* negligence, or under any other theory of liability) for any loss or damage* of any kind or nature related to, arising under or in connection with these* materials, including for any direct, or any indirect, special, incidental,* or consequential loss or damage (including loss of data, profits, goodwill,* or any type of loss or damage suffered as a result of any action brought by* a third party) even if such damage or loss was reasonably foreseeable or* Xilinx had been advised of the possibility of the same.** CRITICAL APPLICATIONS* Xilinx products are not designed or intended to be fail-safe, or for use in* any application requiring fail-safe performance, such as life-support or* safety devices or systems, Class III medical devices, nuclear facilities,* applications related to the deployment of airbags, or any other applications* that could lead to death, personal injury, or severe property or* environmental damage (individually and collectively, "Critical* Applications"). Customer assumes the sole risk and liability of any use of* Xilinx products in Critical Applications, subject only to applicable laws* and regulations governing limitations on product liability.** THIS COPYRIGHT NOTICE AND DISCLAIMER MUST BE RETAINED AS PART OF THIS FILE* AT ALL TIMES.*******************************************************************************//*****************************************************************************//**** @file xadcps_selftest.c** This file contains a diagnostic self test function for the XAdcPs driver.* The self test function does a simple read/write test of the Alarm Threshold* Register.** See xadcps.h for more information.** @note	None.** <pre>** MODIFICATION HISTORY:** Ver   Who    Date     Changes* ----- -----  -------- -----------------------------------------------------* 1.00a ssb    12/22/11 First release based on the XPS/AXI xadc driver** </pre>******************************************************************************//***************************** Include Files ********************************/#include "xadcps.h"/************************** Constant Definitions ****************************//* * The following constant defines the test value to be written * to the Alarm Threshold Register */#define XADCPS_ATR_TEST_VALUE 		0x55/**************************** Type Definitions ******************************//***************** Macros (Inline Functions) Definitions ********************//************************** Variable Definitions ****************************//************************** Function Prototypes *****************************//*****************************************************************************//**** Run a self-test on the driver/device. The test*	- Resets the device,*	- Writes a value into the Alarm Threshold register and reads it back*	for comparison.*	- Resets the device again.*** @param	InstancePtr is a pointer to the XAdcPs instance.** @return*		- XST_SUCCESS if the value read from the Alarm Threshold*		register is the same as the value written.*		- XST_FAILURE Otherwise** @note		This is a destructive test in that resets of the device are*		performed. Refer to the device specification for the*		device status after the reset operation.*******************************************************************************/int XAdcPs_SelfTest(XAdcPs *InstancePtr){	int Status;	u32 RegValue;	/*	 * Assert the argument	 */	Xil_AssertNonvoid(InstancePtr != NULL);	Xil_AssertNonvoid(InstancePtr->IsReady == XIL_COMPONENT_IS_READY);	/*	 * Reset the device to get it back to its default state	 */	XAdcPs_Reset(InstancePtr);	/*	 * Write a value into the Alarm Threshold registers, read it back, and	 * do the comparison	 */	XAdcPs_SetAlarmThreshold(InstancePtr, XADCPS_ATR_VCCINT_UPPER,				  XADCPS_ATR_TEST_VALUE);	RegValue = XAdcPs_GetAlarmThreshold(InstancePtr, XADCPS_ATR_VCCINT_UPPER);	if (RegValue == XADCPS_ATR_TEST_VALUE) {		Status = XST_SUCCESS;	} else {		Status = XST_FAILURE;	}	/*	 * Reset the device again to its default state.	 */	XAdcPs_Reset(InstancePtr);	/*	 * Return the test result.	 */	return Status;}

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