The official Mbed 2 C/C++ SDK provides the software platform and libraries to build your applications.

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mbed 2

This is the mbed 2 library. If you'd like to learn about Mbed OS please see the mbed-os docs.

Committer:
<>
Date:
Thu Oct 27 16:45:56 2016 +0100
Revision:
128:9bcdf88f62b0
Parent:
TARGET_NUCLEO_L053R8/stm32l0xx_hal_tsc.h@119:aae6fcc7d9bb
Child:
130:d75b3fe1f5cb
Release 128 of the mbed library

Ports for Upcoming Targets


Fixes and Changes

2966: Add kw24 support https://github.com/ARMmbed/mbed-os/pull/2966
3068: MultiTech mDot - clean up PeripheralPins.c and add new pin names https://github.com/ARMmbed/mbed-os/pull/3068
3089: Kinetis HAL: Remove clock initialization code from serial and ticker https://github.com/ARMmbed/mbed-os/pull/3089
2943: [NRF5] NVIC_SetVector functionality https://github.com/ARMmbed/mbed-os/pull/2943
2938: InterruptIn changes in NCS36510 HAL. https://github.com/ARMmbed/mbed-os/pull/2938
3108: Fix sleep function for NRF52. https://github.com/ARMmbed/mbed-os/pull/3108
3076: STM32F1: Correct timer master value reading https://github.com/ARMmbed/mbed-os/pull/3076
3085: Add LOWPOWERTIMER capability for NUCLEO_F303ZE https://github.com/ARMmbed/mbed-os/pull/3085
3046: [BEETLE] Update BLE stack on Beetle board https://github.com/ARMmbed/mbed-os/pull/3046
3122: [Silicon Labs] Update of Silicon Labs HAL https://github.com/ARMmbed/mbed-os/pull/3122
3022: OnSemi RAM usage fix https://github.com/ARMmbed/mbed-os/pull/3022
3121: STM32F3: Correct UART4 and UART5 defines when using DEVICE_SERIAL_ASYNCH https://github.com/ARMmbed/mbed-os/pull/3121
3142: Targets- NUMAKER_PFM_NUC47216 remove mbed 2 https://github.com/ARMmbed/mbed-os/pull/3142

Who changed what in which revision?

UserRevisionLine numberNew contents of line
bogdanm 84:0b3ab51c8877 1 /**
bogdanm 84:0b3ab51c8877 2 ******************************************************************************
bogdanm 84:0b3ab51c8877 3 * @file stm32l0xx_hal_tsc.h
bogdanm 84:0b3ab51c8877 4 * @author MCD Application Team
Kojto 119:aae6fcc7d9bb 5 * @version V1.5.0
Kojto 119:aae6fcc7d9bb 6 * @date 8-January-2016
bogdanm 84:0b3ab51c8877 7 * @brief This file contains all the functions prototypes for the TSC firmware
bogdanm 84:0b3ab51c8877 8 * library.
bogdanm 84:0b3ab51c8877 9 ******************************************************************************
bogdanm 84:0b3ab51c8877 10 * @attention
bogdanm 84:0b3ab51c8877 11 *
Kojto 119:aae6fcc7d9bb 12 * <h2><center>&copy; COPYRIGHT(c) 2016 STMicroelectronics</center></h2>
bogdanm 84:0b3ab51c8877 13 *
bogdanm 84:0b3ab51c8877 14 * Redistribution and use in source and binary forms, with or without modification,
bogdanm 84:0b3ab51c8877 15 * are permitted provided that the following conditions are met:
bogdanm 84:0b3ab51c8877 16 * 1. Redistributions of source code must retain the above copyright notice,
bogdanm 84:0b3ab51c8877 17 * this list of conditions and the following disclaimer.
bogdanm 84:0b3ab51c8877 18 * 2. Redistributions in binary form must reproduce the above copyright notice,
bogdanm 84:0b3ab51c8877 19 * this list of conditions and the following disclaimer in the documentation
bogdanm 84:0b3ab51c8877 20 * and/or other materials provided with the distribution.
bogdanm 84:0b3ab51c8877 21 * 3. Neither the name of STMicroelectronics nor the names of its contributors
bogdanm 84:0b3ab51c8877 22 * may be used to endorse or promote products derived from this software
bogdanm 84:0b3ab51c8877 23 * without specific prior written permission.
bogdanm 84:0b3ab51c8877 24 *
bogdanm 84:0b3ab51c8877 25 * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS"
bogdanm 84:0b3ab51c8877 26 * AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
bogdanm 84:0b3ab51c8877 27 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
bogdanm 84:0b3ab51c8877 28 * DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE
bogdanm 84:0b3ab51c8877 29 * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
bogdanm 84:0b3ab51c8877 30 * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR
bogdanm 84:0b3ab51c8877 31 * SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER
bogdanm 84:0b3ab51c8877 32 * CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY,
bogdanm 84:0b3ab51c8877 33 * OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
bogdanm 84:0b3ab51c8877 34 * OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
bogdanm 84:0b3ab51c8877 35 *
bogdanm 84:0b3ab51c8877 36 ******************************************************************************
bogdanm 84:0b3ab51c8877 37 */
bogdanm 84:0b3ab51c8877 38
Kojto 119:aae6fcc7d9bb 39 #if !defined (STM32L011xx) && !defined (STM32L021xx) && !defined (STM32L031xx) && !defined (STM32L041xx) && !defined (STM32L051xx) && !defined (STM32L061xx) && !defined (STM32L071xx) && !defined (STM32L081xx)
bogdanm 84:0b3ab51c8877 40 /* Define to prevent recursive inclusion -------------------------------------*/
bogdanm 84:0b3ab51c8877 41 #ifndef __STM32L0xx_TSC_H
bogdanm 84:0b3ab51c8877 42 #define __STM32L0xx_TSC_H
bogdanm 84:0b3ab51c8877 43
bogdanm 84:0b3ab51c8877 44 #ifdef __cplusplus
bogdanm 84:0b3ab51c8877 45 extern "C" {
bogdanm 84:0b3ab51c8877 46 #endif
bogdanm 84:0b3ab51c8877 47
bogdanm 84:0b3ab51c8877 48 /* Includes ------------------------------------------------------------------*/
bogdanm 84:0b3ab51c8877 49 #include "stm32l0xx_hal_def.h"
bogdanm 84:0b3ab51c8877 50
bogdanm 84:0b3ab51c8877 51 /** @addtogroup STM32L0xx_HAL_Driver
bogdanm 84:0b3ab51c8877 52 * @{
bogdanm 84:0b3ab51c8877 53 */
bogdanm 84:0b3ab51c8877 54
Kojto 119:aae6fcc7d9bb 55 /** @defgroup TSC TSC
bogdanm 84:0b3ab51c8877 56 * @{
bogdanm 84:0b3ab51c8877 57 */
bogdanm 84:0b3ab51c8877 58
Kojto 119:aae6fcc7d9bb 59 /** @defgroup TSC_Exported_Types TSC Exported Types
Kojto 119:aae6fcc7d9bb 60 * @{
Kojto 119:aae6fcc7d9bb 61 */
bogdanm 84:0b3ab51c8877 62 /* Exported types ------------------------------------------------------------*/
bogdanm 84:0b3ab51c8877 63
bogdanm 84:0b3ab51c8877 64 /**
bogdanm 84:0b3ab51c8877 65 * @brief TSC state structure definition
bogdanm 84:0b3ab51c8877 66 */
bogdanm 84:0b3ab51c8877 67 typedef enum
bogdanm 84:0b3ab51c8877 68 {
bogdanm 84:0b3ab51c8877 69 HAL_TSC_STATE_RESET = 0x00, /*!< TSC registers have their reset value */
bogdanm 84:0b3ab51c8877 70 HAL_TSC_STATE_READY = 0x01, /*!< TSC registers are initialized or acquisition is completed with success */
bogdanm 84:0b3ab51c8877 71 HAL_TSC_STATE_BUSY = 0x02, /*!< TSC initialization or acquisition is on-going */
bogdanm 84:0b3ab51c8877 72 HAL_TSC_STATE_ERROR = 0x03 /*!< Acquisition is completed with max count error */
bogdanm 84:0b3ab51c8877 73 } HAL_TSC_StateTypeDef;
bogdanm 84:0b3ab51c8877 74
bogdanm 84:0b3ab51c8877 75 /**
bogdanm 84:0b3ab51c8877 76 * @brief TSC group status structure definition
bogdanm 84:0b3ab51c8877 77 */
bogdanm 84:0b3ab51c8877 78 typedef enum
bogdanm 84:0b3ab51c8877 79 {
bogdanm 84:0b3ab51c8877 80 TSC_GROUP_ONGOING = 0x00, /*!< Acquisition on group is on-going or not started */
bogdanm 84:0b3ab51c8877 81 TSC_GROUP_COMPLETED = 0x01 /*!< Acquisition on group is completed with success (no max count error) */
bogdanm 84:0b3ab51c8877 82 } TSC_GroupStatusTypeDef;
bogdanm 84:0b3ab51c8877 83
bogdanm 84:0b3ab51c8877 84 /**
bogdanm 84:0b3ab51c8877 85 * @brief TSC init structure definition
bogdanm 84:0b3ab51c8877 86 */
bogdanm 84:0b3ab51c8877 87 typedef struct
bogdanm 84:0b3ab51c8877 88 {
bogdanm 84:0b3ab51c8877 89 uint32_t CTPulseHighLength; /*!< Charge-transfer high pulse length */
bogdanm 84:0b3ab51c8877 90 uint32_t CTPulseLowLength; /*!< Charge-transfer low pulse length */
bogdanm 84:0b3ab51c8877 91 uint32_t SpreadSpectrum; /*!< Spread spectrum activation */
bogdanm 84:0b3ab51c8877 92 uint32_t SpreadSpectrumDeviation; /*!< Spread spectrum deviation */
bogdanm 84:0b3ab51c8877 93 uint32_t SpreadSpectrumPrescaler; /*!< Spread spectrum prescaler */
bogdanm 84:0b3ab51c8877 94 uint32_t PulseGeneratorPrescaler; /*!< Pulse generator prescaler */
bogdanm 84:0b3ab51c8877 95 uint32_t MaxCountValue; /*!< Max count value */
bogdanm 84:0b3ab51c8877 96 uint32_t IODefaultMode; /*!< IO default mode */
bogdanm 84:0b3ab51c8877 97 uint32_t SynchroPinPolarity; /*!< Synchro pin polarity */
bogdanm 84:0b3ab51c8877 98 uint32_t AcquisitionMode; /*!< Acquisition mode */
bogdanm 84:0b3ab51c8877 99 uint32_t MaxCountInterrupt; /*!< Max count interrupt activation */
bogdanm 84:0b3ab51c8877 100 uint32_t ChannelIOs; /*!< Channel IOs mask */
bogdanm 84:0b3ab51c8877 101 uint32_t ShieldIOs; /*!< Shield IOs mask */
bogdanm 84:0b3ab51c8877 102 uint32_t SamplingIOs; /*!< Sampling IOs mask */
bogdanm 84:0b3ab51c8877 103 } TSC_InitTypeDef;
bogdanm 84:0b3ab51c8877 104
bogdanm 84:0b3ab51c8877 105 /**
bogdanm 84:0b3ab51c8877 106 * @brief TSC IOs configuration structure definition
bogdanm 84:0b3ab51c8877 107 */
bogdanm 84:0b3ab51c8877 108 typedef struct
bogdanm 84:0b3ab51c8877 109 {
bogdanm 84:0b3ab51c8877 110 uint32_t ChannelIOs; /*!< Channel IOs mask */
bogdanm 84:0b3ab51c8877 111 uint32_t ShieldIOs; /*!< Shield IOs mask */
bogdanm 84:0b3ab51c8877 112 uint32_t SamplingIOs; /*!< Sampling IOs mask */
bogdanm 84:0b3ab51c8877 113 } TSC_IOConfigTypeDef;
bogdanm 84:0b3ab51c8877 114
bogdanm 84:0b3ab51c8877 115 /**
bogdanm 84:0b3ab51c8877 116 * @brief TSC handle Structure definition
bogdanm 84:0b3ab51c8877 117 */
bogdanm 84:0b3ab51c8877 118 typedef struct
bogdanm 84:0b3ab51c8877 119 {
bogdanm 84:0b3ab51c8877 120 TSC_TypeDef *Instance; /*!< Register base address */
bogdanm 84:0b3ab51c8877 121 TSC_InitTypeDef Init; /*!< Initialization parameters */
bogdanm 84:0b3ab51c8877 122 __IO HAL_TSC_StateTypeDef State; /*!< Peripheral state */
bogdanm 84:0b3ab51c8877 123 HAL_LockTypeDef Lock; /*!< Lock feature */
bogdanm 84:0b3ab51c8877 124 } TSC_HandleTypeDef;
bogdanm 84:0b3ab51c8877 125
Kojto 119:aae6fcc7d9bb 126
Kojto 119:aae6fcc7d9bb 127 /**
Kojto 119:aae6fcc7d9bb 128 * @}
Kojto 119:aae6fcc7d9bb 129 */
Kojto 119:aae6fcc7d9bb 130
bogdanm 84:0b3ab51c8877 131 /* Exported constants --------------------------------------------------------*/
bogdanm 84:0b3ab51c8877 132
Kojto 119:aae6fcc7d9bb 133 /** @defgroup TSC_Exported_Constants TSC Exported Constants
bogdanm 84:0b3ab51c8877 134 * @{
bogdanm 84:0b3ab51c8877 135 */
bogdanm 84:0b3ab51c8877 136
bogdanm 84:0b3ab51c8877 137
bogdanm 84:0b3ab51c8877 138 #define TSC_CTPH_1CYCLE ((uint32_t)((uint32_t) 0 << 28))
bogdanm 84:0b3ab51c8877 139 #define TSC_CTPH_2CYCLES ((uint32_t)((uint32_t) 1 << 28))
bogdanm 84:0b3ab51c8877 140 #define TSC_CTPH_3CYCLES ((uint32_t)((uint32_t) 2 << 28))
bogdanm 84:0b3ab51c8877 141 #define TSC_CTPH_4CYCLES ((uint32_t)((uint32_t) 3 << 28))
bogdanm 84:0b3ab51c8877 142 #define TSC_CTPH_5CYCLES ((uint32_t)((uint32_t) 4 << 28))
bogdanm 84:0b3ab51c8877 143 #define TSC_CTPH_6CYCLES ((uint32_t)((uint32_t) 5 << 28))
bogdanm 84:0b3ab51c8877 144 #define TSC_CTPH_7CYCLES ((uint32_t)((uint32_t) 6 << 28))
bogdanm 84:0b3ab51c8877 145 #define TSC_CTPH_8CYCLES ((uint32_t)((uint32_t) 7 << 28))
bogdanm 84:0b3ab51c8877 146 #define TSC_CTPH_9CYCLES ((uint32_t)((uint32_t) 8 << 28))
bogdanm 84:0b3ab51c8877 147 #define TSC_CTPH_10CYCLES ((uint32_t)((uint32_t) 9 << 28))
bogdanm 84:0b3ab51c8877 148 #define TSC_CTPH_11CYCLES ((uint32_t)((uint32_t)10 << 28))
bogdanm 84:0b3ab51c8877 149 #define TSC_CTPH_12CYCLES ((uint32_t)((uint32_t)11 << 28))
bogdanm 84:0b3ab51c8877 150 #define TSC_CTPH_13CYCLES ((uint32_t)((uint32_t)12 << 28))
bogdanm 84:0b3ab51c8877 151 #define TSC_CTPH_14CYCLES ((uint32_t)((uint32_t)13 << 28))
bogdanm 84:0b3ab51c8877 152 #define TSC_CTPH_15CYCLES ((uint32_t)((uint32_t)14 << 28))
bogdanm 84:0b3ab51c8877 153 #define TSC_CTPH_16CYCLES ((uint32_t)((uint32_t)15 << 28))
bogdanm 84:0b3ab51c8877 154
bogdanm 84:0b3ab51c8877 155 #define TSC_CTPL_1CYCLE ((uint32_t)((uint32_t) 0 << 24))
bogdanm 84:0b3ab51c8877 156 #define TSC_CTPL_2CYCLES ((uint32_t)((uint32_t) 1 << 24))
bogdanm 84:0b3ab51c8877 157 #define TSC_CTPL_3CYCLES ((uint32_t)((uint32_t) 2 << 24))
bogdanm 84:0b3ab51c8877 158 #define TSC_CTPL_4CYCLES ((uint32_t)((uint32_t) 3 << 24))
bogdanm 84:0b3ab51c8877 159 #define TSC_CTPL_5CYCLES ((uint32_t)((uint32_t) 4 << 24))
bogdanm 84:0b3ab51c8877 160 #define TSC_CTPL_6CYCLES ((uint32_t)((uint32_t) 5 << 24))
bogdanm 84:0b3ab51c8877 161 #define TSC_CTPL_7CYCLES ((uint32_t)((uint32_t) 6 << 24))
bogdanm 84:0b3ab51c8877 162 #define TSC_CTPL_8CYCLES ((uint32_t)((uint32_t) 7 << 24))
bogdanm 84:0b3ab51c8877 163 #define TSC_CTPL_9CYCLES ((uint32_t)((uint32_t) 8 << 24))
bogdanm 84:0b3ab51c8877 164 #define TSC_CTPL_10CYCLES ((uint32_t)((uint32_t) 9 << 24))
bogdanm 84:0b3ab51c8877 165 #define TSC_CTPL_11CYCLES ((uint32_t)((uint32_t)10 << 24))
bogdanm 84:0b3ab51c8877 166 #define TSC_CTPL_12CYCLES ((uint32_t)((uint32_t)11 << 24))
bogdanm 84:0b3ab51c8877 167 #define TSC_CTPL_13CYCLES ((uint32_t)((uint32_t)12 << 24))
bogdanm 84:0b3ab51c8877 168 #define TSC_CTPL_14CYCLES ((uint32_t)((uint32_t)13 << 24))
bogdanm 84:0b3ab51c8877 169 #define TSC_CTPL_15CYCLES ((uint32_t)((uint32_t)14 << 24))
bogdanm 84:0b3ab51c8877 170 #define TSC_CTPL_16CYCLES ((uint32_t)((uint32_t)15 << 24))
bogdanm 84:0b3ab51c8877 171
bogdanm 84:0b3ab51c8877 172 #define TSC_SS_PRESC_DIV1 ((uint32_t)0)
bogdanm 84:0b3ab51c8877 173 #define TSC_SS_PRESC_DIV2 (TSC_CR_SSPSC)
bogdanm 84:0b3ab51c8877 174
bogdanm 84:0b3ab51c8877 175 #define TSC_PG_PRESC_DIV1 ((uint32_t)(0 << 12))
bogdanm 84:0b3ab51c8877 176 #define TSC_PG_PRESC_DIV2 ((uint32_t)(1 << 12))
bogdanm 84:0b3ab51c8877 177 #define TSC_PG_PRESC_DIV4 ((uint32_t)(2 << 12))
bogdanm 84:0b3ab51c8877 178 #define TSC_PG_PRESC_DIV8 ((uint32_t)(3 << 12))
bogdanm 84:0b3ab51c8877 179 #define TSC_PG_PRESC_DIV16 ((uint32_t)(4 << 12))
bogdanm 84:0b3ab51c8877 180 #define TSC_PG_PRESC_DIV32 ((uint32_t)(5 << 12))
bogdanm 84:0b3ab51c8877 181 #define TSC_PG_PRESC_DIV64 ((uint32_t)(6 << 12))
bogdanm 84:0b3ab51c8877 182 #define TSC_PG_PRESC_DIV128 ((uint32_t)(7 << 12))
bogdanm 84:0b3ab51c8877 183 #define TSC_MCV_255 ((uint32_t)(0 << 5))
bogdanm 84:0b3ab51c8877 184 #define TSC_MCV_511 ((uint32_t)(1 << 5))
bogdanm 84:0b3ab51c8877 185 #define TSC_MCV_1023 ((uint32_t)(2 << 5))
bogdanm 84:0b3ab51c8877 186 #define TSC_MCV_2047 ((uint32_t)(3 << 5))
bogdanm 84:0b3ab51c8877 187 #define TSC_MCV_4095 ((uint32_t)(4 << 5))
bogdanm 84:0b3ab51c8877 188 #define TSC_MCV_8191 ((uint32_t)(5 << 5))
bogdanm 84:0b3ab51c8877 189 #define TSC_MCV_16383 ((uint32_t)(6 << 5))
bogdanm 84:0b3ab51c8877 190
bogdanm 84:0b3ab51c8877 191 #define TSC_IODEF_OUT_PP_LOW ((uint32_t)0)
bogdanm 84:0b3ab51c8877 192 #define TSC_IODEF_IN_FLOAT (TSC_CR_IODEF)
bogdanm 84:0b3ab51c8877 193
Kojto 96:487b796308b0 194 #define TSC_SYNC_POLARITY_FALLING ((uint32_t)0)
Kojto 96:487b796308b0 195 #define TSC_SYNC_POLARITY_RISING (TSC_CR_SYNCPOL)
bogdanm 84:0b3ab51c8877 196
bogdanm 84:0b3ab51c8877 197 #define TSC_ACQ_MODE_NORMAL ((uint32_t)0)
bogdanm 92:4fc01daae5a5 198 #define TSC_ACQ_MODE_SYNCHRO (TSC_CR_AM)
bogdanm 84:0b3ab51c8877 199
bogdanm 84:0b3ab51c8877 200 #define TSC_IOMODE_UNUSED ((uint32_t)0)
bogdanm 84:0b3ab51c8877 201 #define TSC_IOMODE_CHANNEL ((uint32_t)1)
bogdanm 84:0b3ab51c8877 202 #define TSC_IOMODE_SHIELD ((uint32_t)2)
bogdanm 84:0b3ab51c8877 203 #define TSC_IOMODE_SAMPLING ((uint32_t)3)
bogdanm 84:0b3ab51c8877 204
Kojto 119:aae6fcc7d9bb 205 /** @defgroup TSC_interrupts_definition TSC Interrupts Definition
bogdanm 84:0b3ab51c8877 206 * @{
bogdanm 84:0b3ab51c8877 207 */
bogdanm 84:0b3ab51c8877 208 #define TSC_IT_EOA ((uint32_t)TSC_IER_EOAIE)
bogdanm 84:0b3ab51c8877 209 #define TSC_IT_MCE ((uint32_t)TSC_IER_MCEIE)
bogdanm 84:0b3ab51c8877 210 /**
bogdanm 84:0b3ab51c8877 211 * @}
bogdanm 84:0b3ab51c8877 212 */
bogdanm 84:0b3ab51c8877 213
Kojto 119:aae6fcc7d9bb 214 /** @defgroup TSC_flags_definition TSC Flags Definition
bogdanm 84:0b3ab51c8877 215 * @{
bogdanm 84:0b3ab51c8877 216 */
bogdanm 84:0b3ab51c8877 217 #define TSC_FLAG_EOA ((uint32_t)TSC_ISR_EOAF)
bogdanm 84:0b3ab51c8877 218 #define TSC_FLAG_MCE ((uint32_t)TSC_ISR_MCEF)
bogdanm 84:0b3ab51c8877 219 /**
bogdanm 84:0b3ab51c8877 220 * @}
bogdanm 84:0b3ab51c8877 221 */
bogdanm 84:0b3ab51c8877 222
bogdanm 84:0b3ab51c8877 223 #define TSC_NB_OF_GROUPS (8)
bogdanm 84:0b3ab51c8877 224
bogdanm 84:0b3ab51c8877 225 #define TSC_GROUP1 ((uint32_t)0x00000001)
bogdanm 84:0b3ab51c8877 226 #define TSC_GROUP2 ((uint32_t)0x00000002)
bogdanm 84:0b3ab51c8877 227 #define TSC_GROUP3 ((uint32_t)0x00000004)
bogdanm 84:0b3ab51c8877 228 #define TSC_GROUP4 ((uint32_t)0x00000008)
bogdanm 84:0b3ab51c8877 229 #define TSC_GROUP5 ((uint32_t)0x00000010)
bogdanm 84:0b3ab51c8877 230 #define TSC_GROUP6 ((uint32_t)0x00000020)
bogdanm 84:0b3ab51c8877 231 #define TSC_GROUP7 ((uint32_t)0x00000040)
bogdanm 84:0b3ab51c8877 232 #define TSC_GROUP8 ((uint32_t)0x00000080)
bogdanm 84:0b3ab51c8877 233 #define TSC_ALL_GROUPS ((uint32_t)0x000000FF)
bogdanm 84:0b3ab51c8877 234
bogdanm 84:0b3ab51c8877 235 #define TSC_GROUP1_IDX ((uint32_t)0)
bogdanm 84:0b3ab51c8877 236 #define TSC_GROUP2_IDX ((uint32_t)1)
bogdanm 84:0b3ab51c8877 237 #define TSC_GROUP3_IDX ((uint32_t)2)
bogdanm 84:0b3ab51c8877 238 #define TSC_GROUP4_IDX ((uint32_t)3)
bogdanm 84:0b3ab51c8877 239 #define TSC_GROUP5_IDX ((uint32_t)4)
bogdanm 84:0b3ab51c8877 240 #define TSC_GROUP6_IDX ((uint32_t)5)
bogdanm 84:0b3ab51c8877 241 #define TSC_GROUP7_IDX ((uint32_t)6)
bogdanm 84:0b3ab51c8877 242 #define TSC_GROUP8_IDX ((uint32_t)7)
bogdanm 84:0b3ab51c8877 243
bogdanm 84:0b3ab51c8877 244 #define TSC_GROUP1_IO1 ((uint32_t)0x00000001)
bogdanm 84:0b3ab51c8877 245 #define TSC_GROUP1_IO2 ((uint32_t)0x00000002)
bogdanm 84:0b3ab51c8877 246 #define TSC_GROUP1_IO3 ((uint32_t)0x00000004)
bogdanm 84:0b3ab51c8877 247 #define TSC_GROUP1_IO4 ((uint32_t)0x00000008)
bogdanm 84:0b3ab51c8877 248 #define TSC_GROUP1_ALL_IOS ((uint32_t)0x0000000F)
bogdanm 84:0b3ab51c8877 249
bogdanm 84:0b3ab51c8877 250 #define TSC_GROUP2_IO1 ((uint32_t)0x00000010)
bogdanm 84:0b3ab51c8877 251 #define TSC_GROUP2_IO2 ((uint32_t)0x00000020)
bogdanm 84:0b3ab51c8877 252 #define TSC_GROUP2_IO3 ((uint32_t)0x00000040)
bogdanm 84:0b3ab51c8877 253 #define TSC_GROUP2_IO4 ((uint32_t)0x00000080)
bogdanm 84:0b3ab51c8877 254 #define TSC_GROUP2_ALL_IOS ((uint32_t)0x000000F0)
bogdanm 84:0b3ab51c8877 255
bogdanm 84:0b3ab51c8877 256 #define TSC_GROUP3_IO1 ((uint32_t)0x00000100)
bogdanm 84:0b3ab51c8877 257 #define TSC_GROUP3_IO2 ((uint32_t)0x00000200)
bogdanm 84:0b3ab51c8877 258 #define TSC_GROUP3_IO3 ((uint32_t)0x00000400)
bogdanm 84:0b3ab51c8877 259 #define TSC_GROUP3_IO4 ((uint32_t)0x00000800)
bogdanm 84:0b3ab51c8877 260 #define TSC_GROUP3_ALL_IOS ((uint32_t)0x00000F00)
bogdanm 84:0b3ab51c8877 261
bogdanm 84:0b3ab51c8877 262 #define TSC_GROUP4_IO1 ((uint32_t)0x00001000)
bogdanm 84:0b3ab51c8877 263 #define TSC_GROUP4_IO2 ((uint32_t)0x00002000)
bogdanm 84:0b3ab51c8877 264 #define TSC_GROUP4_IO3 ((uint32_t)0x00004000)
bogdanm 84:0b3ab51c8877 265 #define TSC_GROUP4_IO4 ((uint32_t)0x00008000)
bogdanm 84:0b3ab51c8877 266 #define TSC_GROUP4_ALL_IOS ((uint32_t)0x0000F000)
bogdanm 84:0b3ab51c8877 267
bogdanm 84:0b3ab51c8877 268 #define TSC_GROUP5_IO1 ((uint32_t)0x00010000)
bogdanm 84:0b3ab51c8877 269 #define TSC_GROUP5_IO2 ((uint32_t)0x00020000)
bogdanm 84:0b3ab51c8877 270 #define TSC_GROUP5_IO3 ((uint32_t)0x00040000)
bogdanm 84:0b3ab51c8877 271 #define TSC_GROUP5_IO4 ((uint32_t)0x00080000)
bogdanm 84:0b3ab51c8877 272 #define TSC_GROUP5_ALL_IOS ((uint32_t)0x000F0000)
bogdanm 84:0b3ab51c8877 273
bogdanm 84:0b3ab51c8877 274 #define TSC_GROUP6_IO1 ((uint32_t)0x00100000)
bogdanm 84:0b3ab51c8877 275 #define TSC_GROUP6_IO2 ((uint32_t)0x00200000)
bogdanm 84:0b3ab51c8877 276 #define TSC_GROUP6_IO3 ((uint32_t)0x00400000)
bogdanm 84:0b3ab51c8877 277 #define TSC_GROUP6_IO4 ((uint32_t)0x00800000)
bogdanm 84:0b3ab51c8877 278 #define TSC_GROUP6_ALL_IOS ((uint32_t)0x00F00000)
bogdanm 84:0b3ab51c8877 279
bogdanm 84:0b3ab51c8877 280 #define TSC_GROUP7_IO1 ((uint32_t)0x01000000)
bogdanm 84:0b3ab51c8877 281 #define TSC_GROUP7_IO2 ((uint32_t)0x02000000)
bogdanm 84:0b3ab51c8877 282 #define TSC_GROUP7_IO3 ((uint32_t)0x04000000)
bogdanm 84:0b3ab51c8877 283 #define TSC_GROUP7_IO4 ((uint32_t)0x08000000)
bogdanm 84:0b3ab51c8877 284 #define TSC_GROUP7_ALL_IOS ((uint32_t)0x0F000000)
bogdanm 84:0b3ab51c8877 285
bogdanm 84:0b3ab51c8877 286 #define TSC_GROUP8_IO1 ((uint32_t)0x10000000)
bogdanm 84:0b3ab51c8877 287 #define TSC_GROUP8_IO2 ((uint32_t)0x20000000)
bogdanm 84:0b3ab51c8877 288 #define TSC_GROUP8_IO3 ((uint32_t)0x40000000)
bogdanm 84:0b3ab51c8877 289 #define TSC_GROUP8_IO4 ((uint32_t)0x80000000)
bogdanm 84:0b3ab51c8877 290 #define TSC_GROUP8_ALL_IOS ((uint32_t)0xF0000000)
bogdanm 84:0b3ab51c8877 291
bogdanm 84:0b3ab51c8877 292 #define TSC_ALL_GROUPS_ALL_IOS ((uint32_t)0xFFFFFFFF)
bogdanm 84:0b3ab51c8877 293
bogdanm 84:0b3ab51c8877 294 /**
bogdanm 84:0b3ab51c8877 295 * @}
bogdanm 84:0b3ab51c8877 296 */
bogdanm 84:0b3ab51c8877 297
Kojto 119:aae6fcc7d9bb 298 /* Exported macros -----------------------------------------------------------*/
Kojto 119:aae6fcc7d9bb 299
Kojto 119:aae6fcc7d9bb 300 /** @defgroup TSC_Exported_Macros TSC Exported Macros
Kojto 119:aae6fcc7d9bb 301 * @{
Kojto 119:aae6fcc7d9bb 302 */
bogdanm 84:0b3ab51c8877 303
bogdanm 84:0b3ab51c8877 304 /** @brief Reset TSC handle state
bogdanm 84:0b3ab51c8877 305 * @param __HANDLE__: TSC handle
bogdanm 84:0b3ab51c8877 306 * @retval None
bogdanm 84:0b3ab51c8877 307 */
bogdanm 84:0b3ab51c8877 308 #define __HAL_TSC_RESET_HANDLE_STATE(__HANDLE__) ((__HANDLE__)->State = HAL_TSC_STATE_RESET)
bogdanm 84:0b3ab51c8877 309
bogdanm 84:0b3ab51c8877 310 /**
bogdanm 84:0b3ab51c8877 311 * @brief Enable the TSC peripheral.
bogdanm 84:0b3ab51c8877 312 * @param __HANDLE__: TSC handle
bogdanm 84:0b3ab51c8877 313 * @retval None
bogdanm 84:0b3ab51c8877 314 */
bogdanm 84:0b3ab51c8877 315 #define __HAL_TSC_ENABLE(__HANDLE__) ((__HANDLE__)->Instance->CR |= TSC_CR_TSCE)
bogdanm 84:0b3ab51c8877 316
bogdanm 84:0b3ab51c8877 317 /**
bogdanm 84:0b3ab51c8877 318 * @brief Disable the TSC peripheral.
bogdanm 84:0b3ab51c8877 319 * @param __HANDLE__: TSC handle
bogdanm 84:0b3ab51c8877 320 * @retval None
bogdanm 84:0b3ab51c8877 321 */
bogdanm 84:0b3ab51c8877 322 #define __HAL_TSC_DISABLE(__HANDLE__) ((__HANDLE__)->Instance->CR &= (uint32_t)(~TSC_CR_TSCE))
bogdanm 84:0b3ab51c8877 323
bogdanm 84:0b3ab51c8877 324 /**
bogdanm 84:0b3ab51c8877 325 * @brief Start acquisition
bogdanm 84:0b3ab51c8877 326 * @param __HANDLE__: TSC handle
bogdanm 84:0b3ab51c8877 327 * @retval None
bogdanm 84:0b3ab51c8877 328 */
bogdanm 84:0b3ab51c8877 329 #define __HAL_TSC_START_ACQ(__HANDLE__) ((__HANDLE__)->Instance->CR |= TSC_CR_START)
bogdanm 84:0b3ab51c8877 330
bogdanm 84:0b3ab51c8877 331 /**
bogdanm 84:0b3ab51c8877 332 * @brief Stop acquisition
bogdanm 84:0b3ab51c8877 333 * @param __HANDLE__: TSC handle
bogdanm 84:0b3ab51c8877 334 * @retval None
bogdanm 84:0b3ab51c8877 335 */
bogdanm 84:0b3ab51c8877 336 #define __HAL_TSC_STOP_ACQ(__HANDLE__) ((__HANDLE__)->Instance->CR &= (uint32_t)(~TSC_CR_START))
bogdanm 84:0b3ab51c8877 337
bogdanm 84:0b3ab51c8877 338 /**
bogdanm 84:0b3ab51c8877 339 * @brief Set IO default mode to output push-pull low
bogdanm 84:0b3ab51c8877 340 * @param __HANDLE__: TSC handle
bogdanm 84:0b3ab51c8877 341 * @retval None
bogdanm 84:0b3ab51c8877 342 */
bogdanm 84:0b3ab51c8877 343 #define __HAL_TSC_SET_IODEF_OUTPPLOW(__HANDLE__) ((__HANDLE__)->Instance->CR &= (uint32_t)(~TSC_CR_IODEF))
bogdanm 84:0b3ab51c8877 344
bogdanm 84:0b3ab51c8877 345 /**
bogdanm 84:0b3ab51c8877 346 * @brief Set IO default mode to input floating
bogdanm 84:0b3ab51c8877 347 * @param __HANDLE__: TSC handle
bogdanm 84:0b3ab51c8877 348 * @retval None
bogdanm 84:0b3ab51c8877 349 */
bogdanm 84:0b3ab51c8877 350 #define __HAL_TSC_SET_IODEF_INFLOAT(__HANDLE__) ((__HANDLE__)->Instance->CR |= TSC_CR_IODEF)
bogdanm 84:0b3ab51c8877 351
bogdanm 84:0b3ab51c8877 352 /**
bogdanm 84:0b3ab51c8877 353 * @brief Set synchronization polarity to falling edge
bogdanm 84:0b3ab51c8877 354 * @param __HANDLE__: TSC handle
bogdanm 84:0b3ab51c8877 355 * @retval None
bogdanm 84:0b3ab51c8877 356 */
bogdanm 84:0b3ab51c8877 357 #define __HAL_TSC_SET_SYNC_POL_FALL(__HANDLE__) ((__HANDLE__)->Instance->CR &= (uint32_t)(~TSC_CR_SYNCPOL))
bogdanm 84:0b3ab51c8877 358
bogdanm 84:0b3ab51c8877 359 /**
bogdanm 84:0b3ab51c8877 360 * @brief Set synchronization polarity to rising edge and high level
bogdanm 84:0b3ab51c8877 361 * @param __HANDLE__: TSC handle
bogdanm 84:0b3ab51c8877 362 * @retval None
bogdanm 84:0b3ab51c8877 363 */
bogdanm 84:0b3ab51c8877 364 #define __HAL_TSC_SET_SYNC_POL_RISE_HIGH(__HANDLE__) ((__HANDLE__)->Instance->CR |= TSC_CR_SYNCPOL)
bogdanm 84:0b3ab51c8877 365
bogdanm 84:0b3ab51c8877 366 /**
bogdanm 84:0b3ab51c8877 367 * @brief Enable TSC interrupt.
bogdanm 84:0b3ab51c8877 368 * @param __HANDLE__: TSC handle
bogdanm 84:0b3ab51c8877 369 * @param __INTERRUPT__: TSC interrupt
bogdanm 84:0b3ab51c8877 370 * @retval None
bogdanm 84:0b3ab51c8877 371 */
bogdanm 84:0b3ab51c8877 372 #define __HAL_TSC_ENABLE_IT(__HANDLE__, __INTERRUPT__) ((__HANDLE__)->Instance->IER |= (__INTERRUPT__))
bogdanm 84:0b3ab51c8877 373
bogdanm 84:0b3ab51c8877 374 /**
bogdanm 84:0b3ab51c8877 375 * @brief Disable TSC interrupt.
bogdanm 84:0b3ab51c8877 376 * @param __HANDLE__: TSC handle
bogdanm 84:0b3ab51c8877 377 * @param __INTERRUPT__: TSC interrupt
bogdanm 84:0b3ab51c8877 378 * @retval None
bogdanm 84:0b3ab51c8877 379 */
bogdanm 84:0b3ab51c8877 380 #define __HAL_TSC_DISABLE_IT(__HANDLE__, __INTERRUPT__) ((__HANDLE__)->Instance->IER &= (uint32_t)(~(__INTERRUPT__)))
bogdanm 84:0b3ab51c8877 381
bogdanm 84:0b3ab51c8877 382 /** @brief Check if the specified TSC interrupt source is enabled or disabled.
bogdanm 84:0b3ab51c8877 383 * @param __HANDLE__: TSC Handle
bogdanm 84:0b3ab51c8877 384 * @param __INTERRUPT__: TSC interrupt
bogdanm 84:0b3ab51c8877 385 * @retval SET or RESET
bogdanm 84:0b3ab51c8877 386 */
bogdanm 84:0b3ab51c8877 387 #define __HAL_TSC_GET_IT_SOURCE(__HANDLE__, __INTERRUPT__) ((((__HANDLE__)->Instance->IER & (__INTERRUPT__)) == (__INTERRUPT__)) ? SET : RESET)
bogdanm 84:0b3ab51c8877 388
bogdanm 84:0b3ab51c8877 389 /**
bogdanm 84:0b3ab51c8877 390 * @brief Get the selected TSC's flag status.
bogdanm 84:0b3ab51c8877 391 * @param __HANDLE__: TSC handle
bogdanm 84:0b3ab51c8877 392 * @param __FLAG__: TSC flag
bogdanm 84:0b3ab51c8877 393 * @retval SET or RESET
bogdanm 84:0b3ab51c8877 394 */
bogdanm 84:0b3ab51c8877 395 #define __HAL_TSC_GET_FLAG(__HANDLE__, __FLAG__) ((((__HANDLE__)->Instance->ISR & (__FLAG__)) == (__FLAG__)) ? SET : RESET)
bogdanm 84:0b3ab51c8877 396
bogdanm 84:0b3ab51c8877 397 /**
bogdanm 84:0b3ab51c8877 398 * @brief Clear the TSC's pending flag.
bogdanm 84:0b3ab51c8877 399 * @param __HANDLE__: TSC handle
bogdanm 84:0b3ab51c8877 400 * @param __FLAG__: TSC flag
bogdanm 84:0b3ab51c8877 401 * @retval None
bogdanm 84:0b3ab51c8877 402 */
bogdanm 92:4fc01daae5a5 403 #define __HAL_TSC_CLEAR_FLAG(__HANDLE__, __FLAG__) ((__HANDLE__)->Instance->ICR = (__FLAG__))
bogdanm 84:0b3ab51c8877 404
bogdanm 84:0b3ab51c8877 405 /**
bogdanm 84:0b3ab51c8877 406 * @brief Enable schmitt trigger hysteresis on a group of IOs
bogdanm 84:0b3ab51c8877 407 * @param __HANDLE__: TSC handle
bogdanm 84:0b3ab51c8877 408 * @param __GX_IOY_MASK__: IOs mask
bogdanm 84:0b3ab51c8877 409 * @retval None
bogdanm 84:0b3ab51c8877 410 */
bogdanm 84:0b3ab51c8877 411 #define __HAL_TSC_ENABLE_HYSTERESIS(__HANDLE__, __GX_IOY_MASK__) ((__HANDLE__)->Instance->IOHCR |= (__GX_IOY_MASK__))
bogdanm 84:0b3ab51c8877 412
bogdanm 84:0b3ab51c8877 413 /**
bogdanm 84:0b3ab51c8877 414 * @brief Disable schmitt trigger hysteresis on a group of IOs
bogdanm 84:0b3ab51c8877 415 * @param __HANDLE__: TSC handle
bogdanm 84:0b3ab51c8877 416 * @param __GX_IOY_MASK__: IOs mask
bogdanm 84:0b3ab51c8877 417 * @retval None
bogdanm 84:0b3ab51c8877 418 */
bogdanm 84:0b3ab51c8877 419 #define __HAL_TSC_DISABLE_HYSTERESIS(__HANDLE__, __GX_IOY_MASK__) ((__HANDLE__)->Instance->IOHCR &= (uint32_t)(~(__GX_IOY_MASK__)))
bogdanm 84:0b3ab51c8877 420
bogdanm 84:0b3ab51c8877 421 /**
bogdanm 84:0b3ab51c8877 422 * @brief Open analog switch on a group of IOs
bogdanm 84:0b3ab51c8877 423 * @param __HANDLE__: TSC handle
bogdanm 84:0b3ab51c8877 424 * @param __GX_IOY_MASK__: IOs mask
bogdanm 84:0b3ab51c8877 425 * @retval None
bogdanm 84:0b3ab51c8877 426 */
bogdanm 84:0b3ab51c8877 427 #define __HAL_TSC_OPEN_ANALOG_SWITCH(__HANDLE__, __GX_IOY_MASK__) ((__HANDLE__)->Instance->IOASCR &= (uint32_t)(~(__GX_IOY_MASK__)))
bogdanm 84:0b3ab51c8877 428
bogdanm 84:0b3ab51c8877 429 /**
bogdanm 84:0b3ab51c8877 430 * @brief Close analog switch on a group of IOs
bogdanm 84:0b3ab51c8877 431 * @param __HANDLE__: TSC handle
bogdanm 84:0b3ab51c8877 432 * @param __GX_IOY_MASK__: IOs mask
bogdanm 84:0b3ab51c8877 433 * @retval None
bogdanm 84:0b3ab51c8877 434 */
bogdanm 84:0b3ab51c8877 435 #define __HAL_TSC_CLOSE_ANALOG_SWITCH(__HANDLE__, __GX_IOY_MASK__) ((__HANDLE__)->Instance->IOASCR |= (__GX_IOY_MASK__))
bogdanm 84:0b3ab51c8877 436
bogdanm 84:0b3ab51c8877 437 /**
bogdanm 84:0b3ab51c8877 438 * @brief Enable a group of IOs in channel mode
bogdanm 84:0b3ab51c8877 439 * @param __HANDLE__: TSC handle
bogdanm 84:0b3ab51c8877 440 * @param __GX_IOY_MASK__: IOs mask
bogdanm 84:0b3ab51c8877 441 * @retval None
bogdanm 84:0b3ab51c8877 442 */
bogdanm 84:0b3ab51c8877 443 #define __HAL_TSC_ENABLE_CHANNEL(__HANDLE__, __GX_IOY_MASK__) ((__HANDLE__)->Instance->IOCCR |= (__GX_IOY_MASK__))
bogdanm 84:0b3ab51c8877 444
bogdanm 84:0b3ab51c8877 445 /**
bogdanm 84:0b3ab51c8877 446 * @brief Disable a group of channel IOs
bogdanm 84:0b3ab51c8877 447 * @param __HANDLE__: TSC handle
bogdanm 84:0b3ab51c8877 448 * @param __GX_IOY_MASK__: IOs mask
bogdanm 84:0b3ab51c8877 449 * @retval None
bogdanm 84:0b3ab51c8877 450 */
bogdanm 84:0b3ab51c8877 451 #define __HAL_TSC_DISABLE_CHANNEL(__HANDLE__, __GX_IOY_MASK__) ((__HANDLE__)->Instance->IOCCR &= (uint32_t)(~(__GX_IOY_MASK__)))
bogdanm 84:0b3ab51c8877 452
bogdanm 84:0b3ab51c8877 453 /**
bogdanm 84:0b3ab51c8877 454 * @brief Enable a group of IOs in sampling mode
bogdanm 84:0b3ab51c8877 455 * @param __HANDLE__: TSC handle
bogdanm 84:0b3ab51c8877 456 * @param __GX_IOY_MASK__: IOs mask
bogdanm 84:0b3ab51c8877 457 * @retval None
bogdanm 84:0b3ab51c8877 458 */
bogdanm 84:0b3ab51c8877 459 #define __HAL_TSC_ENABLE_SAMPLING(__HANDLE__, __GX_IOY_MASK__) ((__HANDLE__)->Instance->IOSCR |= (__GX_IOY_MASK__))
bogdanm 84:0b3ab51c8877 460
bogdanm 84:0b3ab51c8877 461 /**
bogdanm 84:0b3ab51c8877 462 * @brief Disable a group of sampling IOs
bogdanm 84:0b3ab51c8877 463 * @param __HANDLE__: TSC handle
bogdanm 84:0b3ab51c8877 464 * @param __GX_IOY_MASK__: IOs mask
bogdanm 84:0b3ab51c8877 465 * @retval None
bogdanm 84:0b3ab51c8877 466 */
bogdanm 84:0b3ab51c8877 467 #define __HAL_TSC_DISABLE_SAMPLING(__HANDLE__, __GX_IOY_MASK__) ((__HANDLE__)->Instance->IOSCR &= (uint32_t)(~(__GX_IOY_MASK__)))
bogdanm 84:0b3ab51c8877 468
bogdanm 84:0b3ab51c8877 469 /**
bogdanm 84:0b3ab51c8877 470 * @brief Enable acquisition groups
bogdanm 84:0b3ab51c8877 471 * @param __HANDLE__: TSC handle
bogdanm 84:0b3ab51c8877 472 * @param __GX_MASK__: Groups mask
bogdanm 84:0b3ab51c8877 473 * @retval None
bogdanm 84:0b3ab51c8877 474 */
bogdanm 84:0b3ab51c8877 475 #define __HAL_TSC_ENABLE_GROUP(__HANDLE__, __GX_MASK__) ((__HANDLE__)->Instance->IOGCSR |= (__GX_MASK__))
bogdanm 84:0b3ab51c8877 476
bogdanm 84:0b3ab51c8877 477 /**
bogdanm 84:0b3ab51c8877 478 * @brief Disable acquisition groups
bogdanm 84:0b3ab51c8877 479 * @param __HANDLE__: TSC handle
bogdanm 84:0b3ab51c8877 480 * @param __GX_MASK__: Groups mask
bogdanm 84:0b3ab51c8877 481 * @retval None
bogdanm 84:0b3ab51c8877 482 */
bogdanm 84:0b3ab51c8877 483 #define __HAL_TSC_DISABLE_GROUP(__HANDLE__, __GX_MASK__) ((__HANDLE__)->Instance->IOGCSR &= (uint32_t)(~(__GX_MASK__)))
bogdanm 84:0b3ab51c8877 484
bogdanm 84:0b3ab51c8877 485 /** @brief Gets acquisition group status
bogdanm 84:0b3ab51c8877 486 * @param __HANDLE__: TSC Handle
bogdanm 84:0b3ab51c8877 487 * @param __GX_INDEX__: Group index
bogdanm 84:0b3ab51c8877 488 * @retval SET or RESET
bogdanm 84:0b3ab51c8877 489 */
bogdanm 84:0b3ab51c8877 490 #define __HAL_TSC_GET_GROUP_STATUS(__HANDLE__, __GX_INDEX__) \
bogdanm 84:0b3ab51c8877 491 ((((__HANDLE__)->Instance->IOGCSR & (uint32_t)((uint32_t)1 << ((__GX_INDEX__) + (uint32_t)16))) == (uint32_t)((uint32_t)1 << ((__GX_INDEX__) + (uint32_t)16))) ? TSC_GROUP_COMPLETED : TSC_GROUP_ONGOING)
bogdanm 84:0b3ab51c8877 492
Kojto 119:aae6fcc7d9bb 493 /**
Kojto 119:aae6fcc7d9bb 494 * @}
Kojto 119:aae6fcc7d9bb 495 */
Kojto 119:aae6fcc7d9bb 496
Kojto 119:aae6fcc7d9bb 497 /* Private macros ------------------------------------------------------------*/
Kojto 119:aae6fcc7d9bb 498
Kojto 119:aae6fcc7d9bb 499 /** @defgroup TSC_Private_Macros TSC Private Macros
Kojto 119:aae6fcc7d9bb 500 * @{
Kojto 119:aae6fcc7d9bb 501 */
Kojto 119:aae6fcc7d9bb 502 #define IS_TSC_ALL_INSTANCE(PERIPH) ((PERIPH) == TSC)
Kojto 119:aae6fcc7d9bb 503
Kojto 119:aae6fcc7d9bb 504 #define IS_TSC_CTPH(VAL) (((VAL) == TSC_CTPH_1CYCLE) || \
Kojto 119:aae6fcc7d9bb 505 ((VAL) == TSC_CTPH_2CYCLES) || \
Kojto 119:aae6fcc7d9bb 506 ((VAL) == TSC_CTPH_3CYCLES) || \
Kojto 119:aae6fcc7d9bb 507 ((VAL) == TSC_CTPH_4CYCLES) || \
Kojto 119:aae6fcc7d9bb 508 ((VAL) == TSC_CTPH_5CYCLES) || \
Kojto 119:aae6fcc7d9bb 509 ((VAL) == TSC_CTPH_6CYCLES) || \
Kojto 119:aae6fcc7d9bb 510 ((VAL) == TSC_CTPH_7CYCLES) || \
Kojto 119:aae6fcc7d9bb 511 ((VAL) == TSC_CTPH_8CYCLES) || \
Kojto 119:aae6fcc7d9bb 512 ((VAL) == TSC_CTPH_9CYCLES) || \
Kojto 119:aae6fcc7d9bb 513 ((VAL) == TSC_CTPH_10CYCLES) || \
Kojto 119:aae6fcc7d9bb 514 ((VAL) == TSC_CTPH_11CYCLES) || \
Kojto 119:aae6fcc7d9bb 515 ((VAL) == TSC_CTPH_12CYCLES) || \
Kojto 119:aae6fcc7d9bb 516 ((VAL) == TSC_CTPH_13CYCLES) || \
Kojto 119:aae6fcc7d9bb 517 ((VAL) == TSC_CTPH_14CYCLES) || \
Kojto 119:aae6fcc7d9bb 518 ((VAL) == TSC_CTPH_15CYCLES) || \
Kojto 119:aae6fcc7d9bb 519 ((VAL) == TSC_CTPH_16CYCLES))
Kojto 119:aae6fcc7d9bb 520 #define IS_TSC_CTPL(VAL) (((VAL) == TSC_CTPL_1CYCLE) || \
Kojto 119:aae6fcc7d9bb 521 ((VAL) == TSC_CTPL_2CYCLES) || \
Kojto 119:aae6fcc7d9bb 522 ((VAL) == TSC_CTPL_3CYCLES) || \
Kojto 119:aae6fcc7d9bb 523 ((VAL) == TSC_CTPL_4CYCLES) || \
Kojto 119:aae6fcc7d9bb 524 ((VAL) == TSC_CTPL_5CYCLES) || \
Kojto 119:aae6fcc7d9bb 525 ((VAL) == TSC_CTPL_6CYCLES) || \
Kojto 119:aae6fcc7d9bb 526 ((VAL) == TSC_CTPL_7CYCLES) || \
Kojto 119:aae6fcc7d9bb 527 ((VAL) == TSC_CTPL_8CYCLES) || \
Kojto 119:aae6fcc7d9bb 528 ((VAL) == TSC_CTPL_9CYCLES) || \
Kojto 119:aae6fcc7d9bb 529 ((VAL) == TSC_CTPL_10CYCLES) || \
Kojto 119:aae6fcc7d9bb 530 ((VAL) == TSC_CTPL_11CYCLES) || \
Kojto 119:aae6fcc7d9bb 531 ((VAL) == TSC_CTPL_12CYCLES) || \
Kojto 119:aae6fcc7d9bb 532 ((VAL) == TSC_CTPL_13CYCLES) || \
Kojto 119:aae6fcc7d9bb 533 ((VAL) == TSC_CTPL_14CYCLES) || \
Kojto 119:aae6fcc7d9bb 534 ((VAL) == TSC_CTPL_15CYCLES) || \
Kojto 119:aae6fcc7d9bb 535 ((VAL) == TSC_CTPL_16CYCLES))
Kojto 119:aae6fcc7d9bb 536
Kojto 119:aae6fcc7d9bb 537 #define IS_TSC_SS(VAL) (((VAL) == DISABLE) || ((VAL) == ENABLE))
Kojto 119:aae6fcc7d9bb 538
Kojto 119:aae6fcc7d9bb 539 #define IS_TSC_SSD(VAL) (((VAL) == 0) || (((VAL) > 0) && ((VAL) < 128)))
Kojto 119:aae6fcc7d9bb 540 #define IS_TSC_SS_PRESC(VAL) (((VAL) == TSC_SS_PRESC_DIV1) || ((VAL) == TSC_SS_PRESC_DIV2))
Kojto 119:aae6fcc7d9bb 541 #define IS_TSC_PG_PRESC(VAL) (((VAL) == TSC_PG_PRESC_DIV1) || \
Kojto 119:aae6fcc7d9bb 542 ((VAL) == TSC_PG_PRESC_DIV2) || \
Kojto 119:aae6fcc7d9bb 543 ((VAL) == TSC_PG_PRESC_DIV4) || \
Kojto 119:aae6fcc7d9bb 544 ((VAL) == TSC_PG_PRESC_DIV8) || \
Kojto 119:aae6fcc7d9bb 545 ((VAL) == TSC_PG_PRESC_DIV16) || \
Kojto 119:aae6fcc7d9bb 546 ((VAL) == TSC_PG_PRESC_DIV32) || \
Kojto 119:aae6fcc7d9bb 547 ((VAL) == TSC_PG_PRESC_DIV64) || \
Kojto 119:aae6fcc7d9bb 548 ((VAL) == TSC_PG_PRESC_DIV128))
Kojto 119:aae6fcc7d9bb 549
Kojto 119:aae6fcc7d9bb 550 #define IS_TSC_MCV(VAL) (((VAL) == TSC_MCV_255) || \
Kojto 119:aae6fcc7d9bb 551 ((VAL) == TSC_MCV_511) || \
Kojto 119:aae6fcc7d9bb 552 ((VAL) == TSC_MCV_1023) || \
Kojto 119:aae6fcc7d9bb 553 ((VAL) == TSC_MCV_2047) || \
Kojto 119:aae6fcc7d9bb 554 ((VAL) == TSC_MCV_4095) || \
Kojto 119:aae6fcc7d9bb 555 ((VAL) == TSC_MCV_8191) || \
Kojto 119:aae6fcc7d9bb 556 ((VAL) == TSC_MCV_16383))
Kojto 119:aae6fcc7d9bb 557 #define IS_TSC_IODEF(VAL) (((VAL) == TSC_IODEF_OUT_PP_LOW) || ((VAL) == TSC_IODEF_IN_FLOAT))
Kojto 119:aae6fcc7d9bb 558 #define IS_TSC_SYNC_POL(VAL) (((VAL) == TSC_SYNC_POLARITY_FALLING) || ((VAL) == TSC_SYNC_POLARITY_RISING))
Kojto 119:aae6fcc7d9bb 559 #define IS_TSC_ACQ_MODE(VAL) (((VAL) == TSC_ACQ_MODE_NORMAL) || ((VAL) == TSC_ACQ_MODE_SYNCHRO))
Kojto 119:aae6fcc7d9bb 560 #define IS_TSC_IOMODE(VAL) (((VAL) == TSC_IOMODE_UNUSED) || \
Kojto 119:aae6fcc7d9bb 561 ((VAL) == TSC_IOMODE_CHANNEL) || \
Kojto 119:aae6fcc7d9bb 562 ((VAL) == TSC_IOMODE_SHIELD) || \
Kojto 119:aae6fcc7d9bb 563 ((VAL) == TSC_IOMODE_SAMPLING))
Kojto 119:aae6fcc7d9bb 564 #define IS_TSC_MCE_IT(VAL) (((VAL) == DISABLE) || ((VAL) == ENABLE))
Kojto 119:aae6fcc7d9bb 565
Kojto 119:aae6fcc7d9bb 566 #define IS_TSC_GROUP_INDEX(VAL) (((VAL) == 0) || (((VAL) > 0) && ((VAL) < TSC_NB_OF_GROUPS)))
Kojto 119:aae6fcc7d9bb 567
Kojto 119:aae6fcc7d9bb 568 /**
Kojto 119:aae6fcc7d9bb 569 * @}
Kojto 119:aae6fcc7d9bb 570 */
Kojto 119:aae6fcc7d9bb 571
bogdanm 84:0b3ab51c8877 572 /* Exported functions --------------------------------------------------------*/
bogdanm 84:0b3ab51c8877 573
Kojto 119:aae6fcc7d9bb 574 /** @defgroup TSC_Exported_Functions TSC Exported Functions
Kojto 119:aae6fcc7d9bb 575 * @{
Kojto 119:aae6fcc7d9bb 576 */
Kojto 119:aae6fcc7d9bb 577
Kojto 119:aae6fcc7d9bb 578 /** @defgroup TSC_Exported_Functions_Group1 Initialization and de-initialization functions
Kojto 119:aae6fcc7d9bb 579 * @{
Kojto 119:aae6fcc7d9bb 580 */
bogdanm 84:0b3ab51c8877 581 /* Initialization and de-initialization functions *****************************/
bogdanm 84:0b3ab51c8877 582 HAL_StatusTypeDef HAL_TSC_Init(TSC_HandleTypeDef* htsc);
bogdanm 84:0b3ab51c8877 583 HAL_StatusTypeDef HAL_TSC_DeInit(TSC_HandleTypeDef *htsc);
bogdanm 84:0b3ab51c8877 584 void HAL_TSC_MspInit(TSC_HandleTypeDef* htsc);
bogdanm 84:0b3ab51c8877 585 void HAL_TSC_MspDeInit(TSC_HandleTypeDef* htsc);
Kojto 119:aae6fcc7d9bb 586 /**
Kojto 119:aae6fcc7d9bb 587 * @}
Kojto 119:aae6fcc7d9bb 588 */
bogdanm 84:0b3ab51c8877 589
Kojto 119:aae6fcc7d9bb 590 /** @defgroup HAL_TSC_Exported_Functions_Group2 IO operation functions
Kojto 119:aae6fcc7d9bb 591 * @{
Kojto 119:aae6fcc7d9bb 592 */
bogdanm 84:0b3ab51c8877 593 /* IO operation functions *****************************************************/
bogdanm 84:0b3ab51c8877 594 HAL_StatusTypeDef HAL_TSC_Start(TSC_HandleTypeDef* htsc);
bogdanm 84:0b3ab51c8877 595 HAL_StatusTypeDef HAL_TSC_Start_IT(TSC_HandleTypeDef* htsc);
bogdanm 84:0b3ab51c8877 596 HAL_StatusTypeDef HAL_TSC_Stop(TSC_HandleTypeDef* htsc);
bogdanm 84:0b3ab51c8877 597 HAL_StatusTypeDef HAL_TSC_Stop_IT(TSC_HandleTypeDef* htsc);
Kojto 119:aae6fcc7d9bb 598 HAL_StatusTypeDef HAL_TSC_PollForAcquisition(TSC_HandleTypeDef* htsc);
bogdanm 84:0b3ab51c8877 599 TSC_GroupStatusTypeDef HAL_TSC_GroupGetStatus(TSC_HandleTypeDef* htsc, uint32_t gx_index);
bogdanm 84:0b3ab51c8877 600 uint32_t HAL_TSC_GroupGetValue(TSC_HandleTypeDef* htsc, uint32_t gx_index);
bogdanm 84:0b3ab51c8877 601
Kojto 119:aae6fcc7d9bb 602 /**
Kojto 119:aae6fcc7d9bb 603 * @}
Kojto 119:aae6fcc7d9bb 604 */
Kojto 119:aae6fcc7d9bb 605 /** @defgroup HAL_TSC_Exported_Functions_Group3 Peripheral Control functions
Kojto 119:aae6fcc7d9bb 606 * @{
Kojto 119:aae6fcc7d9bb 607 */
bogdanm 84:0b3ab51c8877 608 /* Peripheral Control functions ***********************************************/
bogdanm 84:0b3ab51c8877 609 HAL_StatusTypeDef HAL_TSC_IOConfig(TSC_HandleTypeDef* htsc, TSC_IOConfigTypeDef* config);
bogdanm 84:0b3ab51c8877 610 HAL_StatusTypeDef HAL_TSC_IODischarge(TSC_HandleTypeDef* htsc, uint32_t choice);
bogdanm 84:0b3ab51c8877 611
Kojto 119:aae6fcc7d9bb 612 /**
Kojto 119:aae6fcc7d9bb 613 * @}
Kojto 119:aae6fcc7d9bb 614 */
Kojto 119:aae6fcc7d9bb 615 /** @defgroup HAL_TSC_Exported_Functions_Group4 State callback and error Functions
Kojto 119:aae6fcc7d9bb 616 * @{
Kojto 119:aae6fcc7d9bb 617 */
bogdanm 84:0b3ab51c8877 618 /* Peripheral State and Error functions ***************************************/
bogdanm 84:0b3ab51c8877 619 HAL_TSC_StateTypeDef HAL_TSC_GetState(TSC_HandleTypeDef* htsc);
bogdanm 84:0b3ab51c8877 620 void HAL_TSC_IRQHandler(TSC_HandleTypeDef* htsc);
bogdanm 84:0b3ab51c8877 621
bogdanm 84:0b3ab51c8877 622 /* Callback functions *********************************************************/
bogdanm 84:0b3ab51c8877 623 void HAL_TSC_ConvCpltCallback(TSC_HandleTypeDef* htsc);
bogdanm 84:0b3ab51c8877 624 void HAL_TSC_ErrorCallback(TSC_HandleTypeDef* htsc);
bogdanm 84:0b3ab51c8877 625
bogdanm 84:0b3ab51c8877 626 /**
bogdanm 84:0b3ab51c8877 627 * @}
Kojto 119:aae6fcc7d9bb 628 */
Kojto 119:aae6fcc7d9bb 629
Kojto 119:aae6fcc7d9bb 630 /**
Kojto 119:aae6fcc7d9bb 631 * @}
Kojto 119:aae6fcc7d9bb 632 */
Kojto 119:aae6fcc7d9bb 633
Kojto 119:aae6fcc7d9bb 634 /* Define the private group ***********************************/
Kojto 119:aae6fcc7d9bb 635 /**************************************************************/
Kojto 119:aae6fcc7d9bb 636 /** @defgroup TSC_Private TSC Private
Kojto 119:aae6fcc7d9bb 637 * @{
Kojto 119:aae6fcc7d9bb 638 */
Kojto 119:aae6fcc7d9bb 639 /**
Kojto 119:aae6fcc7d9bb 640 * @}
Kojto 119:aae6fcc7d9bb 641 */
Kojto 119:aae6fcc7d9bb 642 /**************************************************************/
Kojto 119:aae6fcc7d9bb 643
Kojto 119:aae6fcc7d9bb 644 /**
Kojto 119:aae6fcc7d9bb 645 * @}
bogdanm 84:0b3ab51c8877 646 */
bogdanm 84:0b3ab51c8877 647
bogdanm 84:0b3ab51c8877 648 /**
bogdanm 84:0b3ab51c8877 649 * @}
bogdanm 84:0b3ab51c8877 650 */
bogdanm 84:0b3ab51c8877 651
bogdanm 84:0b3ab51c8877 652 #ifdef __cplusplus
bogdanm 84:0b3ab51c8877 653 }
bogdanm 84:0b3ab51c8877 654 #endif
bogdanm 84:0b3ab51c8877 655
bogdanm 84:0b3ab51c8877 656 #endif /*__STM32L0xx_TSC_H */
Kojto 119:aae6fcc7d9bb 657 #endif /* #if !defined (STM32L011xx) && !defined (STM32L021xx) && !defined (STM32L031xx) && !defined (STM32L041xx) && !defined (STM32L051xx) && !defined (STM32L061xx) && !defined (STM32L071xx) && !defined (STM32L081xx) */
bogdanm 84:0b3ab51c8877 658
bogdanm 84:0b3ab51c8877 659 /************************ (C) COPYRIGHT STMicroelectronics *****END OF FILE****/
Kojto 96:487b796308b0 660