252 lines
7.5 KiB
C
252 lines
7.5 KiB
C
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/******************************************************************************
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*
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* Copyright (C) 2007 - 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 mbox_example.c
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*
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* This file contains a design example for using the Mailbox hardware and driver
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* XMbox
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*
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* The example assumes there are two processors availabile in the system that
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* are expected to inter-communicate.
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*
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* This example has been tested on ML505 Hardware Evaluation board.
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*
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* @note
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*
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* These code fragments will illustrate how the XMbox component can be used to:
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* - Initialize the Mailbox core
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* - Pass data between two processes
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*
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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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* 1.00a va First release
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* 1.00a ecm 06/09/07 Cleanup, new coding standard, check into XCS
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* 3.01a sdm 05/06/10 Cleanup for coding guidelines
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*</pre>
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*******************************************************************************/
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/***************************** Include Files **********************************/
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#include "xmbox.h"
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#include "xstatus.h"
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#include "xparameters.h"
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/************************** Constant Definitions *****************************/
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#define MSGSIZ 1024 /* Size of the actual Message */
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#define HELLO_SIZE 40 /* Size of the Hello Message */
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#if XPAR_CPU_ID == 2
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#define MY_CPU_ID 1
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#else
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#define MY_CPU_ID XPAR_CPU_ID
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#endif
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/**************************** Type Definitions *******************************/
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/***************** Macros (Inline Functions) Definitions *********************/
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#define printf xil_printf /* A smaller footprint printf */
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/************************** Variable Definitions *****************************/
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char *Role[2] = { "PRODUCER",
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"CONSUMER" };
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extern char data[];
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char *SendMsg = data;
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char RecvMsg[MSGSIZ] __attribute__ ((aligned(4)));
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u32 temp1pad = 0;
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char *hello = "Hello! The Producer greets the Consumer...";
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u32 temp2pad = 0;
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char *rhello = "Hello! The Consumer greets the Producer...";
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/************************** Function Prototypes ******************************/
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int ProdCon (void);
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/*****************************************************************************/
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/**
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* This function is the main function for the mailbox example.
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*
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* @param None.
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*
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* @return XST_SUCCESS if successful, XST_FAILURE if unsuccessful.
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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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printf ("-- Entering main() --\r\n");
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printf ("PRODCON :\tStarts.\r\n");
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Status = ProdCon();
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if (Status != XST_SUCCESS) {
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printf ("PRODCON :\tFailed.\r\n");
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} else {
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printf ("PRODCON :\tSucceeded.\r\n");
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}
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printf ("PRODCON :\tEnds.\r\n");
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printf ("-- Exiting main() --\r\n");
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return Status;
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}
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/******************************************************************************/
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/**
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*
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* This function performs the producer and consumer console functionality.
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* At compile time the role, producer or consumer, is determined.
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*
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* @param None.
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*
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* @return XST_SUCCESS.
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*
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* @note None.
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*
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*******************************************************************************/
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int ProdCon ()
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{
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XMbox Mbox;
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XMbox_Config *ConfigPtr;
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int Status;
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u32 NumBytes;
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u32 Sent;
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u32 Rcvd;
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int Index;
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printf ("(%s):\tStarts.\r\n", Role[MY_CPU_ID]);
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/*
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* Lookup configuration data in the device configuration table.
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* Use this configuration info down below when initializing this
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* component.
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*/
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ConfigPtr = XMbox_LookupConfig(XPAR_MBOX_4_DEVICE_ID );
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if (ConfigPtr == (XMbox_Config *)NULL) {
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printf ("(%s):\tLookupConfig Failed.%8.8x\r\n",
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Role[MY_CPU_ID], XPAR_MBOX_4_DEVICE_ID );
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return XST_FAILURE;
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}
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/*
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* Perform the rest of the initialization
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*/
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Status = XMbox_CfgInitialize(&Mbox, ConfigPtr, 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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#if MY_CPU_ID == 0
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/* First send the hello */
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printf ("CPU 0 WriteBlocking call\n");
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/* Write a message to the Mbox */
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XMbox_WriteBlocking(&Mbox, (u32*)((u8*)hello), HELLO_SIZE);
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printf ("(%s):\tsent %d bytes.\r\n", Role[MY_CPU_ID], HELLO_SIZE);
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printf ("(%s):\tSuccessfully sent the message --> \r\n\r\n\t--[%s]--\r\n\r\n", Role[MY_CPU_ID], hello);
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#else
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/* First recv the hello */
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printf ("CPU 1 ReadBlocking call\n");
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/* Read a message from the Mbox */
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XMbox_ReadBlocking(&Mbox, (u32*)(RecvMsg), HELLO_SIZE);
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printf ("(%s):\tSuccessfully Rcvd the message --> \r\n\r\n\t--[%s]--\r\n\r\n", Role[MY_CPU_ID], RecvMsg);
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#endif
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#if MY_CPU_ID == 0
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/* Now get back a hello */
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/* Read a message from the Mbox */
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printf ("CPU 0 ReadBlocking call\n");
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XMbox_ReadBlocking (&Mbox, (u32*)(RecvMsg), HELLO_SIZE);
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printf ("(%s):\tSuccessfully Rcvd the message --> \r\n\r\n\t--[%s]--\r\n\r\n", Role[MY_CPU_ID], RecvMsg);
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#else
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/* First recv the hello */
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NumBytes = 0;
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/* Write a message to the Mbox */
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printf ("CPU 1 WriteBlocking call\n");
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XMbox_WriteBlocking (&Mbox, (u32*)((u8*)rhello), HELLO_SIZE);
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printf ("(%s):\tsent %d bytes.\r\n", Role[MY_CPU_ID], Sent);
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printf ("(%s):\tSuccessfully sent the message --> \r\n\r\n\t--[%s]--\r\n\r\n",
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Role[MY_CPU_ID], rhello);
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#endif
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#if MY_CPU_ID == 0
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/* Now send the full message */
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printf ("(%s):\tNow sending the actual message -->\r\n",
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Role[MY_CPU_ID]);
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/* Write a message to the Mbox */
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XMbox_WriteBlocking (&Mbox, (u32*)(SendMsg), MSGSIZ);
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printf ("(%s):\tSuccessfully sent the full message.\r\n",
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Role[MY_CPU_ID]);
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#else
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/* Now recv the full message */
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printf ("(%s):\tNow receiving the actual message -->\r\n",
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Role[MY_CPU_ID]);
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/* Read a message from the Mbox */
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XMbox_ReadBlocking (&Mbox, (u32*)(RecvMsg), MSGSIZ);
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printf ("(%s):\tSuccessfully Rcvd the full message.\r\n",
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Role[MY_CPU_ID]);
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if (memcmp (RecvMsg, data, MSGSIZ)) {
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printf ("(%s):\tError! Rcvd message does not match expected.\r\n",
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Role[MY_CPU_ID]);
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return XST_FAILURE;
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} else {
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printf ("(%s):\tSuccess! Rcvd message does match expected.\r\n",
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Role[MY_CPU_ID]);
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}
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#endif
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printf ("(%s):\tEnds.\r\n", Role[MY_CPU_ID]);
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return XST_SUCCESS;
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}
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