270 lines
11 KiB
C
270 lines
11 KiB
C
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/*
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******************************************************************************
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* @file HAL_LCD.c
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* @version V1.0.0
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* @date 2020
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* @brief LCD HAL module driver.
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* This file provides firmware functions to manage the following
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* functionalities of the Universal Asynchronous Receiver Transmitter Peripheral (LCD).
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* @ Initialization and de-initialization functions
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* @ IO operation functions
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* @ Peripheral Control functions
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******************************************************************************
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*/
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#include "ACM32Fxx_HAL.h"
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/*********************************************************************************
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* Function : HAL_LCD_MspInit
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* Description : Initialize the LCD MSP.
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* Input : hcan : pointer to a LCD structure that contains
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* the configuration information for LCD module
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* Output :
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* Author : CWT Data : 2020年
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**********************************************************************************/
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__weak void HAL_LCD_MspInit(LCD_HandleTypeDef *hlcd)
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{
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/* NOTE : This function only enable lcd clk and config NVIC
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Because lcd's SEG and COM is different,so the gpio of lcd need user config self.*/
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/* Enable LCD clock */
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System_Module_Enable(EN_LCD);
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/* Enable the LCD Frame interrupt */
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hlcd->Instance->CR1 |= LCD_CR1_IE;
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NVIC_ClearPendingIRQ(LCD_IRQn);
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NVIC_SetPriority(LCD_IRQn, 5);
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NVIC_EnableIRQ(LCD_IRQn);
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}
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/*********************************************************************************
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* Function : HAL_LCD_MspDeInit
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* Description : DeInitialize the LCD MSP.
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* Input : hcan : pointer to a LCD structure that contains
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* the configuration information for LCD module
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* Output :
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* Author : CWT Data : 2020年
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**********************************************************************************/
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void HAL_LCD_MspDeInit(LCD_HandleTypeDef *hlcd)
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{
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/* Disable LCD clock */
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System_Module_Disable(EN_LCD);
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}
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/*********************************************************************************
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* Function : HAL_LCD_Init
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* Description : Initialize the LCD.
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* Input : hcan : pointer to a LCD structure that contains
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* the configuration information for LCD module
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* Output :
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* Author : CWT Data : 2020年
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**********************************************************************************/
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HAL_StatusTypeDef HAL_LCD_Init(LCD_HandleTypeDef *hlcd)
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{
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/* Check the parameters */
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if(!IS_LCD_PERIPH(hlcd->Instance)) return HAL_ERROR;
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if(!IS_LCD_DUTY(hlcd->Init.Duty)) return HAL_ERROR;
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if(!IS_LCD_BIAS(hlcd->Init.Bias)) return HAL_ERROR;
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if(!IS_LCD_Driving_Waveform(hlcd->Init.Driving_Waveform)) return HAL_ERROR;
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if(!IS_LCD_BiasSrc(hlcd->Init.BiasSrc)) return HAL_ERROR;
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if(!IS_LCD_DisplayMode(hlcd->Init.DisplayMode)) return HAL_ERROR;
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if(!IS_LCD_LCDFrequency(hlcd->Init.LCDFrequency)) return HAL_ERROR;
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if(!IS_LCD_BlinkEN(hlcd->Init.BlinkEN)) return HAL_ERROR;
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if(!IS_LCD_BlinkFrequency(hlcd->Init.BlinkFrequency)) return HAL_ERROR;
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/* Reset the RST_LCD */
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System_Module_Reset(RST_LCD);
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HAL_LCD_MspInit(hlcd);
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hlcd->Instance->CR0|=(LCD_CR0_LCDEN|hlcd->Init.LCDFrequency|hlcd->Init.Bias|hlcd->Init.Duty|hlcd->Init.BiasSrc|hlcd->Init.Driving_Waveform);
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hlcd->Instance->CR1|=(hlcd->Init.BlinkEN|hlcd->Init.BlinkFrequency|hlcd->Init.DisplayMode);
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if(hlcd->Init.Driving_Waveform==LCD_Driving_Waveform_A)
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{
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hlcd->Instance->CR0&=~(LCD_CR0_WSEL);
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}
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if(hlcd->Init.Duty==LCD_DUTY_STATIC)
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{
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if(!IS_LCD_StaticPower(hlcd->Init.StaticPower)) return HAL_ERROR;
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hlcd->Instance->CR0|=hlcd->Init.StaticPower;
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}
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else
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{
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hlcd->Instance->CR0&=~(LCD_CR0_STATIC);//当DUTY选择非静态时,该位必须设置为0
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}
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return HAL_OK;
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}
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/*********************************************************************************
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* Function : HAL_LCD_DeInit
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* Description : DeInitialize the LCD.
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* Input : hcan : pointer to a LCD structure that contains
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* the configuration information for LCD module
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* Output :
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* Author : CWT Data : 2020年
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**********************************************************************************/
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HAL_StatusTypeDef HAL_LCD_DeInit(LCD_HandleTypeDef *hlcd)
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{
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/* Check the parameters */
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if(!IS_LCD_PERIPH(hlcd->Instance)) return HAL_ERROR;
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/* Reset the CAN peripheral */
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CLEAR_BIT(hlcd->Instance->CR0, LCD_CR0_LCDEN);
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HAL_LCD_MspDeInit(hlcd);
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/* Return function status */
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return HAL_OK;
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}
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/*********************************************************************************
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* Function : HAL_LCD_InResConfig
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* Description : Initialize the LCD When LCD BiasSrc is LCD_BiasSrc_InRes_Seg31_35_Normal or LCD_BiasSrc_InRes_Seg31_35_Cap.
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* Input : hlcd : pointer to a LCD structure that contains
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* the configuration information for LCD module
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* LCD_InResInitStruct:LCD_InResInitTypeDef
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* Output :
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* Author : CWT Data : 2020年
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**********************************************************************************/
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HAL_StatusTypeDef HAL_LCD_InResConfig(LCD_HandleTypeDef *hlcd,LCD_InResInitTypeDef* LCD_InResInitStruct)
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{
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/* Check the parameters */
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if(!IS_LCD_PERIPH(hlcd->Instance)) return HAL_ERROR;
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/* Config when BiasSrc is Inside Resistance Mod */
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if(hlcd->Init.BiasSrc!=LCD_BiasSrc_ExRes_Seg31_35_Cap)
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{
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/* Check the parameters */
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if(!IS_LCD_BiasRes(LCD_InResInitStruct->BiasRes)) return HAL_ERROR;
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if(!IS_LCD_DriveMod(LCD_InResInitStruct->DriveMod)) return HAL_ERROR;
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if(!IS_LCD_FastCharge(LCD_InResInitStruct->FastCharge)) return HAL_ERROR;
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if(!IS_LCD_Contrast(LCD_InResInitStruct->Contrast)) return HAL_ERROR;
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/* Config LCD Contrast and Bias Resistance and DriveMod */
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hlcd->Instance->CR0|=(LCD_InResInitStruct->Contrast);
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hlcd->Instance->CR1|=(LCD_InResInitStruct->BiasRes|LCD_InResInitStruct->DriveMod);
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/* Config LCD PONTime when DriveMod is Fast Charge and Fast Charge(FCC) is Enable. */
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if(LCD_InResInitStruct->FastCharge==LCD_FastCharge_Enable && LCD_InResInitStruct->DriveMod==LCD_DriveMod_FC)
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{
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if(!IS_LCD_PONTime(LCD_InResInitStruct->PONTime)) return HAL_ERROR;
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hlcd->Instance->CR1|=(LCD_InResInitStruct->PONTime<<18);
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}
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}
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return HAL_OK;
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}
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/*********************************************************************************
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* Function : HAL_LCD_SegComConfig
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* Description : Config the LCD SEG and COM enable/disable.
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* Input : hlcd : pointer to a LCD structure that contains
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* the configuration information for LCD module
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* SegCom:LCD_SegComInitTypeDef
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* Output :
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* Author : CWT Data : 2020年
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**********************************************************************************/
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HAL_StatusTypeDef HAL_LCD_SegComConfig(LCD_HandleTypeDef *hlcd,LCD_SegComInitTypeDef *SegCom)
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{
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/* Check the parameters */
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if(!IS_LCD_PERIPH(hlcd->Instance)) return HAL_ERROR;
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hlcd->Instance->LCD_POEN0=SegCom->SEG0_31;
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hlcd->Instance->LCD_POEN1=SegCom->Stc_SEG32_39_COM0_8.SEG32_39_COM0_8;
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return HAL_OK;
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}
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/*********************************************************************************
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* Function : HAL_LCD_Write
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* Description : Write LCD RAMx.
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* Input : hlcd : pointer to a LCD structure that contains
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* the configuration information for LCD module
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* LCDRAMIndex:LCD RAM index
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* Data:The data you want to write
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* Output :
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* Author : CWT Data : 2020年
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**********************************************************************************/
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HAL_StatusTypeDef HAL_LCD_Write(LCD_HandleTypeDef *hlcd, uint32_t LCDRAMIndex, uint32_t Data)
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{
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/* Check the parameters */
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if(!IS_LCD_PERIPH(hlcd->Instance)) return HAL_ERROR;
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if(LCDRAMIndex>15) return HAL_ERROR;
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/* Wrete Data bytes to LCD RAM register */
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hlcd->Instance->LCD_RAM[LCDRAMIndex]=Data;
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return HAL_OK;
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}
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/*********************************************************************************
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* Function : HAL_LCD_Clear
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* Description : Clear LCD RAMx.
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* Input : hlcd : pointer to a LCD structure that contains
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* the configuration information for LCD module
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* Output :
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* Author : CWT Data : 2020年
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**********************************************************************************/
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HAL_StatusTypeDef HAL_LCD_Clear(LCD_HandleTypeDef *hlcd)
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{
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uint8_t LCDRAMIndex=0;
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/* Check the parameters */
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if(!IS_LCD_PERIPH(hlcd->Instance)) return HAL_ERROR;
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/* Clear the LCD_RAM registers */
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for(LCDRAMIndex = 0; LCDRAMIndex <= 15; LCDRAMIndex++)
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{
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hlcd->Instance->LCD_RAM[LCDRAMIndex] = 0U;
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}
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return HAL_OK;
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}
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/*********************************************************************************
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* Function : HAL_LCD_Start_DMA
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* Description : Start lcd dma transfer
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* Input : hlcd : pointer to a LCD structure that contains
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* the configuration information for LCD module
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* pData:The data want to transfer
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* Length:transfer Size
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* Output :
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* Author : CWT Data : 2020年
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**********************************************************************************/
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HAL_StatusTypeDef HAL_LCD_Start_DMA(LCD_HandleTypeDef *hlcd, uint32_t *pData, uint32_t Length)
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{
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/* Check the parameters */
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if(!IS_LCD_PERIPH(hlcd->Instance)) return HAL_ERROR;
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hlcd->Instance->CR1 |= LCD_CR1_DMAEN;
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if (HAL_DMA_Start_IT(hlcd->DMA_Handle,(uint32_t)pData,(uint32_t)(&hlcd->Instance->LCD_RAM[0]), Length))
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{
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return HAL_ERROR;
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}
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return HAL_OK;
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}
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/*********************************************************************************
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* Function : HAL_LCD_Stop_DMA
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* Description : Stop lcd dma transfer
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* Input : hlcd : pointer to a LCD structure that contains
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* the configuration information for LCD module
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* pData:The data want to transfer
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* Length:transfer Size
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* Output :
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* Author : CWT Data : 2020年
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**********************************************************************************/
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HAL_StatusTypeDef HAL_LCD_Stop_DMA(LCD_HandleTypeDef *hlcd)
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{
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HAL_StatusTypeDef status = HAL_OK;
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/* Check the parameters */
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if(!IS_LCD_PERIPH(hlcd->Instance)) return HAL_ERROR;
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hlcd->Instance->CR1 &=~ LCD_CR1_DMAEN;
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status = HAL_DMA_Abort(hlcd->DMA_Handle);
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return status;
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}
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/*********************************************************************************
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* Function : HAL_LCD_IRQHandler
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* Description : HAL_LCD_IRQHandler
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* Input : hlcd : pointer to a LCD structure that contains
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* the configuration information for LCD module
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* Output :
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* Author : CWT Data : 2020年
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**********************************************************************************/
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void HAL_LCD_IRQHandler(LCD_HandleTypeDef *hlcd)
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{
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hlcd->Instance->INTCLR &=~ (LCD_INTCLR_INTFT);
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}
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