iicps: Deleted repeated start example.
This patch deletes repeated start example. Signed-off-by: P L Sai Krishna <lakshmis@xilinx.com>
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/******************************************************************************
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*
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* Copyright (C) 2014 Xilinx, Inc. All rights reserved.
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*
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* Permission is hereby granted, free of charge, to any person obtaining a copy
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* of this software and associated documentation files (the "Software"), to deal
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* in the Software without restriction, including without limitation the rights
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* to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
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* copies of the Software, and to permit persons to whom the Software is
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* furnished to do so, subject to the following conditions:
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*
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* The above copyright notice and this permission notice shall be included in
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* all copies or substantial portions of the Software.
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*
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* Use of the Software is limited solely to applications:
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* (a) running on a Xilinx device, or
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* (b) that interact with a Xilinx device through a bus or interconnect.
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*
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* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
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* IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
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* FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
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* XILINX CONSORTIUM BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY,
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* WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF
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* OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
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* SOFTWARE.
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*
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* Except as contained in this notice, the name of the Xilinx shall not be used
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* in advertising or otherwise to promote the sale, use or other dealings in
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* this Software without prior written authorization from Xilinx.
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*
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******************************************************************************/
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/*****************************************************************************/
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/**
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* @file xiicps_repeated_start_example.c
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*
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* This file consists of a repeated start example using xiicps driver
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* in polled mode. The slave used is an EEPROM.
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*
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* The example is tested with a 2Kb/8Kb serial IIC EEPROM (ST M24C02/M24C08).
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* The WP pin of this EEPROM is hardwired to ground in the HW in which this
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* was tested.
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* This example can be used directly to read upto 16 pages
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* from start address in this EEPROM (Since single address byte).
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*
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* The AddressType should be u8 as the address pointer in the on-board
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* EEPROM is 1 bytes.
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*
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* This code assumes that no Operating System is being used.
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*
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* @note
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*
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* None.
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*
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* <pre>
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* MODIFICATION HISTORY:
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*
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* Ver Who Date Changes
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* ----- ---- -------- ---------------------------------------------------------
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* 2.1 hk 03/15/10 First release
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*
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* </pre>
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*
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******************************************************************************/
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/***************************** Include Files *********************************/
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#include "xparameters.h"
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#include "sleep.h"
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#include "xiicps.h"
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#include "xil_printf.h"
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/************************** Constant Definitions *****************************/
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/*
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* The following constants map to the XPAR parameters created in the
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* xparameters.h file. They are defined here such that a user can easily
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* change all the needed parameters in one place.
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*/
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#define IIC_DEVICE_ID XPAR_XIICPS_0_DEVICE_ID
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/*
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* The following constant defines the address of the IIC Slave device on the
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* IIC bus. Note that since the address is only 7 bits, this constant is the
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* address divided by 2.
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*/
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#define IIC_SLAVE_ADDR 0x54
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#define IIC_SCLK_RATE 100000
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#define IIC_MUX_ADDRESS 0x74
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/*
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* The page size determines how much data should be written at a time.
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* The write function should be called with this as a maximum byte count.
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*/
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#define PAGE_SIZE 16
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/*
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* The Starting address in the IIC EEPROM on which this test is performed.
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*/
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#define EEPROM_START_ADDRESS 0
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/**************************** Type Definitions *******************************/
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/*
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* The AddressType should be u8 as the address pointer in the on-board
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* EEPROM is 1 bytes.
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*/
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typedef u8 AddressType;
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/***************** Macros (Inline Functions) Definitions *********************/
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/************************** Function Prototypes ******************************/
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int IicPsRepeatedStartExample(void);
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int EepromWriteData(u16 ByteCount);
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int MuxInit(void);
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int EepromReadDataRepStart(u8 *BufferPtr, u16 ByteCount);
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/************************** Variable Definitions *****************************/
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XIicPs IicInstance; /* The instance of the IIC device. */
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/*
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* Write buffer for writing a page.
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*/
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u8 WriteBuffer[sizeof(AddressType) + PAGE_SIZE];
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u8 ReadBuffer[PAGE_SIZE*20]; /* Read buffer for reading a page. */
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/************************** Function Definitions *****************************/
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/*****************************************************************************/
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/**
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* Main function to call the Iic repeated start example.
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*
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* @param None.
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*
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* @return XST_SUCCESS if successful else XST_FAILURE.
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*
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* @note None.
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*
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******************************************************************************/
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int main(void)
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{
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int Status;
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xil_printf("IIC Repeated Start Example Test \r\n");
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/*
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* Run the Iic repeated start example.
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*/
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Status = IicPsRepeatedStartExample();
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if (Status != XST_SUCCESS) {
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xil_printf("IIC Repeated Start Example Test Failed\r\n");
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return XST_FAILURE;
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}
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xil_printf("Successfully ran IIC Repeated Start Example Test\r\n");
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return XST_SUCCESS;
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}
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/*****************************************************************************/
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/**
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* This function writes, reads, and verifies the data to the IIC EEPROM.
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* Page write is used. Buffered read with repeated start option is done.
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*
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* @param None.
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*
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* @return XST_SUCCESS if successful else XST_FAILURE.
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*
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* @note None.
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*
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******************************************************************************/
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int IicPsRepeatedStartExample(void)
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{
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u32 Index;
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int Status;
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XIicPs_Config *ConfigPtr; /* Pointer to configuration data */
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AddressType Address = EEPROM_START_ADDRESS;
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AddressType AddressTemp;
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int PageCnt;
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int NumPages = 16;
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/*
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* Initialize the IIC driver so that it is ready to use.
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*/
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ConfigPtr = XIicPs_LookupConfig(IIC_DEVICE_ID);
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if (ConfigPtr == NULL) {
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return XST_FAILURE;
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}
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Status = XIicPs_CfgInitialize(&IicInstance, ConfigPtr,
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ConfigPtr->BaseAddress);
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if (Status != XST_SUCCESS) {
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return XST_FAILURE;
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}
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/*
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* Set the IIC serial clock rate.
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*/
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XIicPs_SetSClk(&IicInstance, IIC_SCLK_RATE);
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/*
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* Set the channel value in IIC Mux.
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*/
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Status = MuxInit();
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if (Status != XST_SUCCESS) {
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return XST_FAILURE;
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}
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AddressTemp = Address;
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for(PageCnt = 0; PageCnt < NumPages; PageCnt++) {
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/*
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* Initialize the data to write and the read buffer.
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*/
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if (sizeof(AddressTemp) == 1) {
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WriteBuffer[0] = (u8) (AddressTemp);
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} else {
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WriteBuffer[0] = (u8) (AddressTemp >> 8);
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WriteBuffer[1] = (u8) (AddressTemp);
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}
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for (Index = 0; Index < PAGE_SIZE; Index++) {
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WriteBuffer[sizeof(AddressTemp) + Index] = 0xFF;
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ReadBuffer[Index] = 0;
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}
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/*
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* Write to the EEPROM.
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*/
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Status = EepromWriteData(sizeof(AddressTemp) + PAGE_SIZE);
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if (Status != XST_SUCCESS) {
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return XST_FAILURE;
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}
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AddressTemp += PAGE_SIZE;
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}
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/*
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* Read from the EEPROM.
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*/
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Status = EepromReadDataRepStart(ReadBuffer, PAGE_SIZE*NumPages);
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if (Status != XST_SUCCESS) {
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return XST_FAILURE;
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}
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/*
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* Verify the data read against the data written.
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*/
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for (Index = 0; Index < PAGE_SIZE*NumPages; Index++) {
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if (ReadBuffer[Index] !=
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WriteBuffer[Index%PAGE_SIZE + sizeof(Address)]) {
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return XST_FAILURE;
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}
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ReadBuffer[Index] = 0;
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}
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AddressTemp = Address;
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for(PageCnt = 0; PageCnt < NumPages; PageCnt++) {
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/*
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* Initialize the data to write and the read buffer.
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*/
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if (sizeof(AddressTemp) == 1) {
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WriteBuffer[0] = (u8) (AddressTemp);
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} else {
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WriteBuffer[0] = (u8) (AddressTemp >> 8);
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WriteBuffer[1] = (u8) (AddressTemp);
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}
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for (Index = 0; Index < PAGE_SIZE; Index++) {
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WriteBuffer[sizeof(AddressTemp) + Index] = Index + 10;
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ReadBuffer[Index] = 0;
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}
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/*
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* Write to the EEPROM.
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*/
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Status = EepromWriteData(sizeof(AddressTemp) + PAGE_SIZE);
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if (Status != XST_SUCCESS) {
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return XST_FAILURE;
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}
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AddressTemp += PAGE_SIZE;
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}
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/*
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* Read from the EEPROM.
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*/
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Status = EepromReadDataRepStart(ReadBuffer, PAGE_SIZE*NumPages);
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if (Status != XST_SUCCESS) {
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return XST_FAILURE;
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}
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/*
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* Verify the data read against the data written.
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*/
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for (Index = 0; Index < PAGE_SIZE*NumPages; Index++) {
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if (ReadBuffer[Index] !=
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WriteBuffer[Index%PAGE_SIZE + sizeof(Address)]) {
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return XST_FAILURE;
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}
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ReadBuffer[Index] = 0;
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}
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return XST_SUCCESS;
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}
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/*****************************************************************************/
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/**
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* This function writes a buffer of data to the IIC serial EEPROM.
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*
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* @param ByteCount contains the number of bytes in the buffer to be
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* written.
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*
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* @return XST_SUCCESS if successful else XST_FAILURE.
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*
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* @note The Byte count should not exceed the page size of the EEPROM as
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* noted by the constant PAGE_SIZE.
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*
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******************************************************************************/
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int EepromWriteData(u16 ByteCount)
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{
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int Status;
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/*
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* Send the Data.
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*/
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Status = XIicPs_MasterSendPolled(&IicInstance, WriteBuffer,
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ByteCount, IIC_SLAVE_ADDR);
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if (Status != XST_SUCCESS) {
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return XST_FAILURE;
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}
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/*
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* Wait until bus is idle to start another transfer.
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*/
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if (!(IicInstance.IsRepeatedStart)) {
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while (XIicPs_BusIsBusy(&IicInstance));
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}
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/*
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* Wait for a bit of time to allow the programming to complete
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*/
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usleep(250000);
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return XST_SUCCESS;
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}
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/*****************************************************************************/
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/**
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* This function reads data from the IIC serial EEPROM into a specified buffer.
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*
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* @param BufferPtr contains the address of the data buffer to be filled.
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* @param ByteCount contains the number of bytes in the buffer to be read.
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*
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* @return XST_SUCCESS if successful else XST_FAILURE.
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*
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* @note None.
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*
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******************************************************************************/
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int EepromReadDataRepStart(u8 *BufferPtr, u16 ByteCount)
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{
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int Status;
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AddressType Address = EEPROM_START_ADDRESS;
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/*
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* Enable repeated start option.
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* This call will give an indication to the driver.
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* The hold bit is actually set before beginning the following transfer
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*/
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XIicPs_SetOptions(&IicInstance, XIICPS_REP_START_OPTION);
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/*
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* Position the Pointer in EEPROM.
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*/
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if (sizeof(Address) == 1) {
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WriteBuffer[0] = (u8) (Address);
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}
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else {
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WriteBuffer[0] = (u8) (Address >> 8);
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WriteBuffer[1] = (u8) (Address);
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}
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Status = EepromWriteData(sizeof(Address));
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if (Status != XST_SUCCESS) {
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return XST_FAILURE;
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}
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/*
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* Disbale repeated start option.
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* This call will give an indication to the driver.
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* The hold bit is actually reset when the following transfer ends.
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*/
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XIicPs_ClearOptions(&IicInstance, XIICPS_REP_START_OPTION);
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/*
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* Receive the Data.
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*/
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Status = XIicPs_MasterRecvPolled(&IicInstance, BufferPtr,
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ByteCount, IIC_SLAVE_ADDR);
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if (Status != XST_SUCCESS) {
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return XST_FAILURE;
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}
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/*
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* Wait until bus is idle to start another transfer.
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*/
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while (XIicPs_BusIsBusy(&IicInstance));
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return XST_SUCCESS;
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}
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/*****************************************************************************/
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/**
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* This function initializes the IIC MUX to select EEPROM.
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*
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* @param None.
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*
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* @return XST_SUCCESS if pass, otherwise XST_FAILURE.
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*
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* @note None.
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*
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****************************************************************************/
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int MuxInit(void)
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{
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u8 WriteBuffer;
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u8 MuxIicAddr = IIC_MUX_ADDRESS;
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u8 Buffer = 0;
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int Status = 0;
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/*
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* Channel select value for EEPROM.
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*/
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WriteBuffer = 0x04;
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/*
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* Send the Data.
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*/
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Status = XIicPs_MasterSendPolled(&IicInstance, &WriteBuffer,1,
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MuxIicAddr);
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if (Status != XST_SUCCESS) {
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return XST_FAILURE;
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}
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/*
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* Wait until bus is idle to start another transfer.
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*/
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while (XIicPs_BusIsBusy(&IicInstance));
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/*
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* Receive the Data.
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*/
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Status = XIicPs_MasterRecvPolled(&IicInstance, &Buffer,1, MuxIicAddr);
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if (Status != XST_SUCCESS) {
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return XST_FAILURE;
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}
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/*
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* Wait until bus is idle to start another transfer.
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*/
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while (XIicPs_BusIsBusy(&IicInstance));
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return XST_SUCCESS;
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}
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