/** ******************************************************************************* * @file hc32_ll_ots.h * @brief This file contains all the functions prototypes of the OTS driver * library. @verbatim Change Logs: Date Author Notes 2022-03-31 CDT First version 2023-06-30 CDT Modify API OTS_DeInit() @endverbatim ******************************************************************************* * Copyright (C) 2022-2023, Xiaohua Semiconductor Co., Ltd. All rights reserved. * * This software component is licensed by XHSC under BSD 3-Clause license * (the "License"); You may not use this file except in compliance with the * License. You may obtain a copy of the License at: * opensource.org/licenses/BSD-3-Clause * ******************************************************************************* */ #ifndef __HC32_LL_OTS_H__ #define __HC32_LL_OTS_H__ /* C binding of definitions if building with C++ compiler */ #ifdef __cplusplus extern "C" { #endif /******************************************************************************* * Include files ******************************************************************************/ #include "hc32_ll_def.h" #include "hc32f4xx.h" #include "hc32f4xx_conf.h" /** * @addtogroup LL_Driver * @{ */ /** * @addtogroup LL_OTS * @{ */ #if (LL_OTS_ENABLE == DDL_ON) /******************************************************************************* * Global type definitions ('typedef') ******************************************************************************/ /** * @defgroup OTS_Global_Types OTS Global Types * @{ */ /** * @brief OTS initialization structure. */ typedef struct { uint16_t u16ClockSrc; /*!< Specifies clock source for OTS. This parameter can be a value of @ref OTS_Clock_Source */ uint16_t u16AutoOffEn; /*!< Enable or disable OTS automatic-off(after sampled temperature). This parameter can be a value of @ref OTS_Auto_Off_En */ float32_t f32SlopeK; /*!< K: Temperature slope (calculated by calibration experiment). If you want to use the default parameters(slope K and offset M), specify both 'f32SlopeK' and 'f32OffsetM' as ZERO. */ float32_t f32OffsetM; /*!< M: Temperature offset (calculated by calibration experiment). If you want to use the default parameters(slope K and offset M), specify both 'f32SlopeK' and 'f32OffsetM' as ZERO. */ } stc_ots_init_t; /** * @} */ /******************************************************************************* * Global pre-processor symbols/macros ('#define') ******************************************************************************/ /** * @defgroup OTS_Global_Macros OTS Global Macros * @{ */ /** * @defgroup OTS_Clock_Source OTS Clock Source * @{ */ #define OTS_CLK_XTAL (0x0U) /*!< Select XTAL as OTS clock. */ #define OTS_CLK_HRC (OTS_CTL_OTSCK) /*!< Select HRC as OTS clock */ /** * @} */ /** * @defgroup OTS_Auto_Off_En OTS Automatic Off Function Control * @{ */ #define OTS_AUTO_OFF_DISABLE (0x0U) /*!< OTS automatically turned off when sampled done. */ #define OTS_AUTO_OFF_ENABLE (OTS_CTL_TSSTP) /*!< OTS is still on when sampled done. */ /** * @} */ /** * @defgroup OTS_Param_Temp_Cond OTS Parameter Temperature Condition * @{ */ #define OTS_PARAM_TEMP_COND_TN40 (0U) /*!< -40 degrees Celsius. */ #define OTS_PARAM_TEMP_COND_T25 (1U) /*!< 25 degrees Celsius. */ #define OTS_PARAM_TEMP_COND_T125 (2U) /*!< 125 degrees Celsius. */ /** * @} */ /** * @} */ /******************************************************************************* * Global variable definitions ('extern') ******************************************************************************/ /******************************************************************************* Global function prototypes (definition in C source) ******************************************************************************/ /** * @addtogroup OTS_Global_Functions * @{ */ /** * @brief Start OTS. * @param None * @retval None */ __STATIC_INLINE void OTS_Start(void) { WRITE_REG32(bCM_OTS->CTL_b.OTSST, 1U); } /** * @brief Stop OTS. * @param None * @retval None */ __STATIC_INLINE void OTS_Stop(void) { WRITE_REG32(bCM_OTS->CTL_b.OTSST, 0U); } int32_t OTS_Init(const stc_ots_init_t *pstcOTSInit); int32_t OTS_StructInit(stc_ots_init_t *pstcOTSInit); int32_t OTS_DeInit(void); int32_t OTS_Polling(float32_t *pf32Temp, uint32_t u32Timeout); void OTS_IntCmd(en_functional_state_t enNewState); int32_t OTS_ScalingExperiment(uint16_t *pu16Dr1, uint16_t *pu16Dr2, uint16_t *pu16Ecr, float32_t *pf32A, uint32_t u32Timeout); float32_t OTS_CalculateTemp(void); /** * @} */ #endif /* LL_OTS_ENABLE */ /** * @} */ /** * @} */ #ifdef __cplusplus } #endif #endif /* __HC32_LL_OTS_H__ */ /******************************************************************************* * EOF (not truncated) ******************************************************************************/