446 lines
13 KiB
C
446 lines
13 KiB
C
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/******************************************************************************
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*
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* Copyright (C) 2008 - 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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*
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* @file xtft_example.c
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*
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* This file contains a design example using the driver functions of the XTft
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* driver. This example shows the usage of the driver/device to
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* - Write a character and write a string of characters
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* - Draw a line
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* - Turn ON/OFF the TFT Device
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*
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*
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* @note
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*
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* TFT_FRAME_ADDR specifies the starting address of the 2MB space for storing the
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* frame data and has to be defined by the user based on the system memory map.
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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 sg 03/24/08 First release
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* 1.00a sg 09/24/08 Updated the example to update the Video Memory Base
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* Address with the Memory specified by the application
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* 2.00a ktn 07/09/09 Updated the example to poll the Vsync(Video address
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* latch) status bit before writing to the Address
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* Register (AR)
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* 4.00a bss 01/22/13 Updated the example to use DDR_HIGH_ADDR to support
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* for some AXI memory controllers, User needs to define
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* it with a valid address.
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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 "xtft.h"
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#include "xparameters.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 TFT_DEVICE_ID XPAR_TFT_0_DEVICE_ID
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#ifdef XPAR_V6DDR_0_S_AXI_HIGHADDR
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#define DDR_HIGH_ADDR XPAR_V6DDR_0_S_AXI_HIGHADDR
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#elif XPAR_S6DDR_0_S0_AXI_HIGHADDR
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#define DDR_HIGH_ADDR XPAR_S6DDR_0_S0_AXI_HIGHADDR
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#elif XPAR_AXI_7SDDR_0_S_AXI_HIGHADDR
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#define DDR_HIGH_ADDR XPAR_AXI_7SDDR_0_S_AXI_HIGHADDR
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#elif XPAR_MPMC_0_MPMC_HIGHADDR
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#define DDR_HIGH_ADDR XPAR_MPMC_0_MPMC_HIGHADDR
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#endif
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#ifndef DDR_HIGH_ADDR
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#warning "CHECK FOR THE VALID DDR ADDRESS IN XPARAMETERS.H"
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#endif
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/**
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* User has to specify a 2MB memory space for filling the frame data.
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* This constant has to be updated based on the memory map of the
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* system.
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*/
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#define TFT_FRAME_ADDR DDR_HIGH_ADDR - 0x001FFFFF
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/**************************** Type Definitions ******************************/
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/***************** Macros (Inline Functions) Definitions ********************/
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/**
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* Color Values.
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*/
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#define FGCOLOR_VALUE 0x0000FF00 /**< Foreground Color - Green */
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#define BGCOLOR_VALUE 0x0 /**< Background Color - Black */
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#define WHITECOLOR_VALUE 0x00FFFFFF /**< Color - White */
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/**
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* Start and End point Coordinates for the line.
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*/
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#define X1POS 100 /**< Column Start Position */
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#define X2POS 100 /**< Column End Position */
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#define Y1POS 50 /**< Row Start Position */
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#define Y2POS 450 /**< Row End Position */
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/************************** Function Prototypes *****************************/
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static int TftWriteString(XTft *InstancePtr, const u8 *CharValue);
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static int TftDrawLine(XTft *InstancePtr, u32 ColStartPos, u32 RowStartPos,
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u32 ColEndPos, u32 RowEndPos, u32 PixelVal);
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int TftExample(u32 TftDeviceId);
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/************************** Variable Definitions ****************************/
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static XTft TftInstance;
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/************************** Function Definitions ****************************/
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/*****************************************************************************/
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/**
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*
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* Main function that invokes the Tft example.
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*
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* @param None.
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*
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* @return
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* - XST_SUCCESS if successful.
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* - 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()
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{
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int Status;
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Status = TftExample(TFT_DEVICE_ID);
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if ( Status != XST_SUCCESS) {
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return XST_FAILURE;
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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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*
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* This is the example function which performs the following operations on
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* the TFT device -
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* - Set the color values of foreground and background
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* - Write two characters (S) one after another
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* - Write a string of characters
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* - Draw a line and scroll the screen once
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* - Disable the display (The screen goes blank)
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* - Scroll the screen once and draw a line
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* - Enable the TFT display
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*
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* @param TftDeviceId is the unique Id of the device.
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*
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* @return
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* - XST_SUCCESS if successful.
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* - 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 TftExample(u32 TftDeviceId)
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{
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int Status;
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u8 VarChar;
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XTft_Config *TftConfigPtr;
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/*
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* Get address of the XTft_Config structure for the given device id.
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*/
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TftConfigPtr = XTft_LookupConfig(TftDeviceId);
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if (TftConfigPtr == (XTft_Config *)NULL) {
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return XST_FAILURE;
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}
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/*
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* Initialize all the TftInstance members and fills the screen with
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* default background color.
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*/
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Status = XTft_CfgInitialize(&TftInstance, TftConfigPtr,
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TftConfigPtr->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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* Wait till Vsync(Video address latch) status bit is set before writing
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* the frame address into the Address Register. This ensures that the
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* current frame has been displayed and we can display a new frame of
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* data. Checking the Vsync state ensures that there is no data flicker
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* when displaying frames in real time though there is some delay due to
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* polling.
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*/
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while (XTft_GetVsyncStatus(&TftInstance) !=
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XTFT_IESR_VADDRLATCH_STATUS_MASK);
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/*
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* Change the Video Memory Base Address from default value to
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* a valid Memory Address and clear the screen.
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*/
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XTft_SetFrameBaseAddr(&TftInstance, TFT_FRAME_ADDR);
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XTft_ClearScreen(&TftInstance);
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/*
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* Initialize the variable VarChar to the value to be displayed on the
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* screen.
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* Set the foreground and background colors.
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*/
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VarChar = 'S';
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XTft_SetColor(&TftInstance, FGCOLOR_VALUE, BGCOLOR_VALUE);
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/*
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* Write the character two times starting from top left corner
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* (i.e. origin) of screen.
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*/
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XTft_Write(&TftInstance, VarChar);
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XTft_Write(&TftInstance, VarChar);
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/*
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* Write a string which is displayed next to the two characters
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* written previously.
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*/
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Status = TftWriteString(&TftInstance, (u8*)"TFT CONTROLLER\n");
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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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* Draw a line between the coordinates (X1,Y1) and (X2,Y2) which
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* displays a vertical line in white color.
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* Scroll the screen, so the two characters and string will be
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* erased on screen.
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*/
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Status = TftDrawLine(&TftInstance, X1POS, Y1POS, X2POS, Y2POS,
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WHITECOLOR_VALUE);
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if (Status != XST_SUCCESS) {
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return XST_FAILURE;
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}
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XTft_Scroll(&TftInstance);
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/*
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* Disable the display, the screen will be turned off.
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*/
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XTft_DisableDisplay(&TftInstance);
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/*
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* Even though the screen is turned off, we can still do operations on
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* video memory.
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* Scroll the screen.
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* Draw a line between the coordinates (X1 + 10,Y1) and (X2,Y2) which
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* is displayed at different position as X1 has some offset.
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*/
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XTft_Scroll(&TftInstance);
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Status = TftDrawLine(&TftInstance, X1POS + 10, Y1POS, X2POS + 10,
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Y2POS, WHITECOLOR_VALUE);
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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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* Enable the display. Screen will display two lines in white color.
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* The first line from the left of screen is slightly above the
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* second one indicating the scroll was successful.
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*/
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XTft_EnableDisplay(&TftInstance);
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return XST_SUCCESS;
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}
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/*****************************************************************************/
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/**
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* Write a string of characters to the TFT.
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*
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* @param InstancePtr is a pointer to the XTft instance.
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* @param CharValue is a pointer to the character array to be written
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* to the TFT screen.
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*
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* @return
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* - XST_SUCCESS if successful.
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* - 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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static int TftWriteString(XTft *InstancePtr, const u8 *CharValue)
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{
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/*
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* Writes a character from the string to the screen
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* until it reaches null or end of the string.
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*/
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while (*CharValue != 0) {
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XTft_Write(InstancePtr, *CharValue);
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CharValue++;
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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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* Draws a line between two points with a specified color.
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*
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* @param InstancePtr is a pointer to the XTft instance.
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* @param ColStartPos is the Start point of Column.
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* The valid value is 0 to (XTFT_DISPLAY_WIDTH - 1).
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* @param RowStartPos is the Start point of Row.
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* The valid value is 0 to (XTFT_DISPLAY_HEIGHT - 1).
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* @param ColEndPos is the End point of Column.
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* The valid value is 0 to (XTFT_DISPLAY_WIDTH - 1).
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* @param RowEndPos is the End point of Row.
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* The valid value is 0 to (XTFT_DISPLAY_HEIGHT - 1).
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* @param PixelVal is the Color Value to be put at pixel.
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*
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* @return
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* - XST_SUCCESS if successful.
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* - 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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static int TftDrawLine(XTft *InstancePtr, u32 ColStartPos, u32 RowStartPos,
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u32 ColEndPos, u32 RowEndPos, u32 PixelVal)
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{
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u32 Slope;
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u32 YIntercept;
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u32 Xmin;
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u32 Ymin;
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u32 Xmax;
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u32 Ymax;
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u32 Index1;
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u32 Index2;
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u32 Mx;
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/*
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* Check whether the given position of X,Y dimensions
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* are below the limits of the screen.
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*/
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if (ColStartPos >= 0 && ColStartPos <= (XTFT_DISPLAY_WIDTH - 1) &&
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ColEndPos >= 0 && ColEndPos <= (XTFT_DISPLAY_WIDTH - 1) &&
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RowStartPos >= 0 && RowStartPos <= (XTFT_DISPLAY_HEIGHT - 1) &&
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RowEndPos >= 0 && RowEndPos <= (XTFT_DISPLAY_HEIGHT - 1)) {
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/*
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* Check the exception case where slope can be infinite
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* that is vertical line.
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*/
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if (ColEndPos-ColStartPos != 0) {
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/*
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* Calculate slope.
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*/
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Slope = ((RowEndPos - RowStartPos) /
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(ColEndPos - ColStartPos) * 100000);
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/*
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* Calculate y intercept.
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*/
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YIntercept = RowStartPos -
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((Slope / 100000) * ColStartPos);
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} else {
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/*
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* Divide by zero.
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*/
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Slope = 0;
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YIntercept = (-1);
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}
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/*
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* Update the min and max position by conditional checking.
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*/
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if (ColEndPos < ColStartPos) {
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Xmin = ColEndPos;
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Xmax = ColStartPos;
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} else {
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Xmin = ColStartPos;
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Xmax = ColEndPos;
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}
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if (RowEndPos < RowStartPos) {
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Ymin = RowEndPos;
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Ymax = RowStartPos;
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} else {
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Ymin = RowStartPos;
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Ymax = RowEndPos;
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}
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/*
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* Increment X and Y position values and calculate
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* slope at the corresponding x position. Check the condition
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* for general line equation and set the pixel. Otherwise check
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* for the case of vertical line.
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*/
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for (Index1 = Xmin; Index1 <= Xmax; Index1++) {
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Mx = (Slope * Index1) / 100000;
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for (Index2 = Ymin; Index2 <= Ymax; Index2++) {
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if ((Index2 - Mx) == YIntercept) {
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/*
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* Calculate visible line.
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*/
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XTft_SetPixel(InstancePtr, Index1,
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Index2, PixelVal);
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}
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else {
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/*
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* Divide by zero.
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*/
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if((Slope == 0) &&
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(YIntercept == -1)) {
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/*
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* Vertical line.
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*/
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XTft_SetPixel(InstancePtr,
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Index1, Index2,
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PixelVal);
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}
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}
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}
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}
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return XST_SUCCESS;
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} else {
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return XST_FAILURE;
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}
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}
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