mbed(SerialHalfDuplex入り)

Fork of mbed by mbed official

Committer:
yusuke_kyo
Date:
Wed Apr 08 08:04:18 2015 +0000
Revision:
98:01a414ca7d6d
Parent:
93:e188a91d3eaa
remove SerialHalfDuplex.h

Who changed what in which revision?

UserRevisionLine numberNew contents of line
Kojto 93:e188a91d3eaa 1 /**
Kojto 93:e188a91d3eaa 2 ******************************************************************************
Kojto 93:e188a91d3eaa 3 * @file stm32f3xx_hal_tim_ex.h
Kojto 93:e188a91d3eaa 4 * @author MCD Application Team
Kojto 93:e188a91d3eaa 5 * @version V1.1.0
Kojto 93:e188a91d3eaa 6 * @date 12-Sept-2014
Kojto 93:e188a91d3eaa 7 * @brief Header file of TIM HAL Extended module.
Kojto 93:e188a91d3eaa 8 ******************************************************************************
Kojto 93:e188a91d3eaa 9 * @attention
Kojto 93:e188a91d3eaa 10 *
Kojto 93:e188a91d3eaa 11 * <h2><center>&copy; COPYRIGHT(c) 2014 STMicroelectronics</center></h2>
Kojto 93:e188a91d3eaa 12 *
Kojto 93:e188a91d3eaa 13 * Redistribution and use in source and binary forms, with or without modification,
Kojto 93:e188a91d3eaa 14 * are permitted provided that the following conditions are met:
Kojto 93:e188a91d3eaa 15 * 1. Redistributions of source code must retain the above copyright notice,
Kojto 93:e188a91d3eaa 16 * this list of conditions and the following disclaimer.
Kojto 93:e188a91d3eaa 17 * 2. Redistributions in binary form must reproduce the above copyright notice,
Kojto 93:e188a91d3eaa 18 * this list of conditions and the following disclaimer in the documentation
Kojto 93:e188a91d3eaa 19 * and/or other materials provided with the distribution.
Kojto 93:e188a91d3eaa 20 * 3. Neither the name of STMicroelectronics nor the names of its contributors
Kojto 93:e188a91d3eaa 21 * may be used to endorse or promote products derived from this software
Kojto 93:e188a91d3eaa 22 * without specific prior written permission.
Kojto 93:e188a91d3eaa 23 *
Kojto 93:e188a91d3eaa 24 * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS"
Kojto 93:e188a91d3eaa 25 * AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
Kojto 93:e188a91d3eaa 26 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
Kojto 93:e188a91d3eaa 27 * DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE
Kojto 93:e188a91d3eaa 28 * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
Kojto 93:e188a91d3eaa 29 * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR
Kojto 93:e188a91d3eaa 30 * SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER
Kojto 93:e188a91d3eaa 31 * CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY,
Kojto 93:e188a91d3eaa 32 * OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
Kojto 93:e188a91d3eaa 33 * OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
Kojto 93:e188a91d3eaa 34 *
Kojto 93:e188a91d3eaa 35 ******************************************************************************
Kojto 93:e188a91d3eaa 36 */
Kojto 93:e188a91d3eaa 37
Kojto 93:e188a91d3eaa 38 /* Define to prevent recursive inclusion -------------------------------------*/
Kojto 93:e188a91d3eaa 39 #ifndef __STM32F3xx_HAL_TIM_EX_H
Kojto 93:e188a91d3eaa 40 #define __STM32F3xx_HAL_TIM_EX_H
Kojto 93:e188a91d3eaa 41
Kojto 93:e188a91d3eaa 42 #ifdef __cplusplus
Kojto 93:e188a91d3eaa 43 extern "C" {
Kojto 93:e188a91d3eaa 44 #endif
Kojto 93:e188a91d3eaa 45
Kojto 93:e188a91d3eaa 46 /* Includes ------------------------------------------------------------------*/
Kojto 93:e188a91d3eaa 47 #include "stm32f3xx_hal_def.h"
Kojto 93:e188a91d3eaa 48
Kojto 93:e188a91d3eaa 49 /** @addtogroup STM32F3xx_HAL_Driver
Kojto 93:e188a91d3eaa 50 * @{
Kojto 93:e188a91d3eaa 51 */
Kojto 93:e188a91d3eaa 52
Kojto 93:e188a91d3eaa 53 /** @addtogroup TIMEx
Kojto 93:e188a91d3eaa 54 * @{
Kojto 93:e188a91d3eaa 55 */
Kojto 93:e188a91d3eaa 56
Kojto 93:e188a91d3eaa 57 /* Exported types ------------------------------------------------------------*/
Kojto 93:e188a91d3eaa 58 /** @defgroup TIMEx_Exported_Types TIM Extended Exported Types
Kojto 93:e188a91d3eaa 59 * @{
Kojto 93:e188a91d3eaa 60 */
Kojto 93:e188a91d3eaa 61
Kojto 93:e188a91d3eaa 62 /**
Kojto 93:e188a91d3eaa 63 * @brief TIM Hall sensor Configuration Structure definition
Kojto 93:e188a91d3eaa 64 */
Kojto 93:e188a91d3eaa 65
Kojto 93:e188a91d3eaa 66 typedef struct
Kojto 93:e188a91d3eaa 67 {
Kojto 93:e188a91d3eaa 68
Kojto 93:e188a91d3eaa 69 uint32_t IC1Polarity; /*!< Specifies the active edge of the input signal.
Kojto 93:e188a91d3eaa 70 This parameter can be a value of @ref TIM_Input_Capture_Polarity */
Kojto 93:e188a91d3eaa 71
Kojto 93:e188a91d3eaa 72 uint32_t IC1Prescaler; /*!< Specifies the Input Capture Prescaler.
Kojto 93:e188a91d3eaa 73 This parameter can be a value of @ref TIM_Input_Capture_Prescaler */
Kojto 93:e188a91d3eaa 74
Kojto 93:e188a91d3eaa 75 uint32_t IC1Filter; /*!< Specifies the input capture filter.
Kojto 93:e188a91d3eaa 76 This parameter can be a number between Min_Data = 0x0 and Max_Data = 0xF */
Kojto 93:e188a91d3eaa 77 uint32_t Commutation_Delay; /*!< Specifies the pulse value to be loaded into the Capture Compare Register.
Kojto 93:e188a91d3eaa 78 This parameter can be a number between Min_Data = 0x0000 and Max_Data = 0xFFFF */
Kojto 93:e188a91d3eaa 79 } TIM_HallSensor_InitTypeDef;
Kojto 93:e188a91d3eaa 80
Kojto 93:e188a91d3eaa 81 #if defined(STM32F373xC) || defined(STM32F378xx)
Kojto 93:e188a91d3eaa 82 /**
Kojto 93:e188a91d3eaa 83 * @brief TIM Master configuration Structure definition
Kojto 93:e188a91d3eaa 84 * @note STM32F373xC and STM32F378xx: timer instances provide a single TRGO
Kojto 93:e188a91d3eaa 85 * output
Kojto 93:e188a91d3eaa 86 */
Kojto 93:e188a91d3eaa 87 typedef struct {
Kojto 93:e188a91d3eaa 88 uint32_t MasterOutputTrigger; /*!< Trigger output (TRGO) selection
Kojto 93:e188a91d3eaa 89 This parameter can be a value of @ref TIM_Master_Mode_Selection */
Kojto 93:e188a91d3eaa 90 uint32_t MasterSlaveMode; /*!< Master/slave mode selection
Kojto 93:e188a91d3eaa 91 This parameter can be a value of @ref TIM_Master_Slave_Mode */
Kojto 93:e188a91d3eaa 92 }TIM_MasterConfigTypeDef;
Kojto 93:e188a91d3eaa 93
Kojto 93:e188a91d3eaa 94 /**
Kojto 93:e188a91d3eaa 95 * @brief TIM Break and Dead time configuration Structure definition
Kojto 93:e188a91d3eaa 96 * @note STM32F373xC and STM32F378xx: single break input with configurable polarity.
Kojto 93:e188a91d3eaa 97 */
Kojto 93:e188a91d3eaa 98 typedef struct
Kojto 93:e188a91d3eaa 99 {
Kojto 93:e188a91d3eaa 100 uint32_t OffStateRunMode; /*!< TIM off state in run mode
Kojto 93:e188a91d3eaa 101 This parameter can be a value of @ref TIM_OSSR_Off_State_Selection_for_Run_mode_state */
Kojto 93:e188a91d3eaa 102 uint32_t OffStateIDLEMode; /*!< TIM off state in IDLE mode
Kojto 93:e188a91d3eaa 103 This parameter can be a value of @ref TIM_OSSI_Off_State_Selection_for_Idle_mode_state */
Kojto 93:e188a91d3eaa 104 uint32_t LockLevel; /*!< TIM Lock level
Kojto 93:e188a91d3eaa 105 This parameter can be a value of @ref TIM_Lock_level */
Kojto 93:e188a91d3eaa 106 uint32_t DeadTime; /*!< TIM dead Time
Kojto 93:e188a91d3eaa 107 This parameter can be a number between Min_Data = 0x00 and Max_Data = 0xFF */
Kojto 93:e188a91d3eaa 108 uint32_t BreakState; /*!< TIM Break State
Kojto 93:e188a91d3eaa 109 This parameter can be a value of @ref TIM_Break_Input_enable_disable */
Kojto 93:e188a91d3eaa 110 uint32_t BreakPolarity; /*!< TIM Break input polarity
Kojto 93:e188a91d3eaa 111 This parameter can be a value of @ref TIM_Break_Polarity */
Kojto 93:e188a91d3eaa 112 uint32_t AutomaticOutput; /*!< TIM Automatic Output Enable state
Kojto 93:e188a91d3eaa 113 This parameter can be a value of @ref TIM_AOE_Bit_Set_Reset */
Kojto 93:e188a91d3eaa 114 } TIM_BreakDeadTimeConfigTypeDef;
Kojto 93:e188a91d3eaa 115
Kojto 93:e188a91d3eaa 116 #endif /* STM32F373xC || STM32F378xx */
Kojto 93:e188a91d3eaa 117
Kojto 93:e188a91d3eaa 118 #if defined(STM32F302xE) || defined(STM32F303xE) || defined(STM32F398xx) || \
Kojto 93:e188a91d3eaa 119 defined(STM32F302xC) || defined(STM32F303xC) || defined(STM32F358xx) || \
Kojto 93:e188a91d3eaa 120 defined(STM32F303x8) || defined(STM32F334x8) || defined(STM32F328xx) || \
Kojto 93:e188a91d3eaa 121 defined(STM32F301x8) || defined(STM32F302x8) || defined(STM32F318xx)
Kojto 93:e188a91d3eaa 122 /**
Kojto 93:e188a91d3eaa 123 * @brief TIM Break input(s) and Dead time configuration Structure definition
Kojto 93:e188a91d3eaa 124 * @note 2 break inputs can be configured (BKIN and BKIN2) with configurable
Kojto 93:e188a91d3eaa 125 * filter and polarity.
Kojto 93:e188a91d3eaa 126 */
Kojto 93:e188a91d3eaa 127 typedef struct
Kojto 93:e188a91d3eaa 128 {
Kojto 93:e188a91d3eaa 129 uint32_t OffStateRunMode; /*!< TIM off state in run mode
Kojto 93:e188a91d3eaa 130 This parameter can be a value of @ref TIM_OSSR_Off_State_Selection_for_Run_mode_state */
Kojto 93:e188a91d3eaa 131 uint32_t OffStateIDLEMode; /*!< TIM off state in IDLE mode
Kojto 93:e188a91d3eaa 132 This parameter can be a value of @ref TIM_OSSI_Off_State_Selection_for_Idle_mode_state */
Kojto 93:e188a91d3eaa 133 uint32_t LockLevel; /*!< TIM Lock level
Kojto 93:e188a91d3eaa 134 This parameter can be a value of @ref TIM_Lock_level */
Kojto 93:e188a91d3eaa 135 uint32_t DeadTime; /*!< TIM dead Time
Kojto 93:e188a91d3eaa 136 This parameter can be a number between Min_Data = 0x00 and Max_Data = 0xFF */
Kojto 93:e188a91d3eaa 137 uint32_t BreakState; /*!< TIM Break State
Kojto 93:e188a91d3eaa 138 This parameter can be a value of @ref TIM_Break_Input_enable_disable */
Kojto 93:e188a91d3eaa 139 uint32_t BreakPolarity; /*!< TIM Break input polarity
Kojto 93:e188a91d3eaa 140 This parameter can be a value of @ref TIM_Break_Polarity */
Kojto 93:e188a91d3eaa 141 uint32_t BreakFilter; /*!< Specifies the brek input filter.
Kojto 93:e188a91d3eaa 142 This parameter can be a number between Min_Data = 0x0 and Max_Data = 0xF */
Kojto 93:e188a91d3eaa 143 uint32_t Break2State; /*!< TIM Break2 State
Kojto 93:e188a91d3eaa 144 This parameter can be a value of @ref TIMEx_Break2_Input_enable_disable */
Kojto 93:e188a91d3eaa 145 uint32_t Break2Polarity; /*!< TIM Break2 input polarity
Kojto 93:e188a91d3eaa 146 This parameter can be a value of @ref TIMEx_Break2_Polarity */
Kojto 93:e188a91d3eaa 147 uint32_t Break2Filter; /*!< TIM break2 input filter.
Kojto 93:e188a91d3eaa 148 This parameter can be a number between Min_Data = 0x0 and Max_Data = 0xF */
Kojto 93:e188a91d3eaa 149 uint32_t AutomaticOutput; /*!< TIM Automatic Output Enable state
Kojto 93:e188a91d3eaa 150 This parameter can be a value of @ref TIM_AOE_Bit_Set_Reset */
Kojto 93:e188a91d3eaa 151 } TIM_BreakDeadTimeConfigTypeDef;
Kojto 93:e188a91d3eaa 152
Kojto 93:e188a91d3eaa 153 /**
Kojto 93:e188a91d3eaa 154 * @brief TIM Master configuration Structure definition
Kojto 93:e188a91d3eaa 155 * @note Advanced timers provide TRGO2 internal line which is redirected
Kojto 93:e188a91d3eaa 156 * to the ADC
Kojto 93:e188a91d3eaa 157 */
Kojto 93:e188a91d3eaa 158 typedef struct {
Kojto 93:e188a91d3eaa 159 uint32_t MasterOutputTrigger; /*!< Trigger output (TRGO) selection
Kojto 93:e188a91d3eaa 160 This parameter can be a value of @ref TIM_Master_Mode_Selection */
Kojto 93:e188a91d3eaa 161 uint32_t MasterOutputTrigger2; /*!< Trigger output2 (TRGO2) selection
Kojto 93:e188a91d3eaa 162 This parameter can be a value of @ref TIMEx_Master_Mode_Selection_2 */
Kojto 93:e188a91d3eaa 163 uint32_t MasterSlaveMode; /*!< Master/slave mode selection
Kojto 93:e188a91d3eaa 164 This parameter can be a value of @ref TIM_Master_Slave_Mode */
Kojto 93:e188a91d3eaa 165 }TIM_MasterConfigTypeDef;
Kojto 93:e188a91d3eaa 166 #endif /* STM32F302xE || STM32F303xE || STM32F398xx || */
Kojto 93:e188a91d3eaa 167 /* STM32F302xC || STM32F303xC || STM32F358xx || */
Kojto 93:e188a91d3eaa 168 /* STM32F303x8 || STM32F334x8 || STM32F328xx || */
Kojto 93:e188a91d3eaa 169 /* STM32F301x8 || STM32F302x8 || STM32F318xx */
Kojto 93:e188a91d3eaa 170 /**
Kojto 93:e188a91d3eaa 171 * @}
Kojto 93:e188a91d3eaa 172 */
Kojto 93:e188a91d3eaa 173
Kojto 93:e188a91d3eaa 174 /* Exported constants --------------------------------------------------------*/
Kojto 93:e188a91d3eaa 175 /** @defgroup TIMEx_Exported_Constants TIM Extended Exported Constants
Kojto 93:e188a91d3eaa 176 * @{
Kojto 93:e188a91d3eaa 177 */
Kojto 93:e188a91d3eaa 178
Kojto 93:e188a91d3eaa 179 #if defined(STM32F373xC) || defined(STM32F378xx)
Kojto 93:e188a91d3eaa 180 /** @defgroup TIMEx_Channel TIM Extended Channel
Kojto 93:e188a91d3eaa 181 * @{
Kojto 93:e188a91d3eaa 182 */
Kojto 93:e188a91d3eaa 183 #define TIM_CHANNEL_1 ((uint32_t)0x0000)
Kojto 93:e188a91d3eaa 184 #define TIM_CHANNEL_2 ((uint32_t)0x0004)
Kojto 93:e188a91d3eaa 185 #define TIM_CHANNEL_3 ((uint32_t)0x0008)
Kojto 93:e188a91d3eaa 186 #define TIM_CHANNEL_4 ((uint32_t)0x000C)
Kojto 93:e188a91d3eaa 187 #define TIM_CHANNEL_ALL ((uint32_t)0x0018)
Kojto 93:e188a91d3eaa 188
Kojto 93:e188a91d3eaa 189 #define IS_TIM_CHANNELS(CHANNEL) (((CHANNEL) == TIM_CHANNEL_1) || \
Kojto 93:e188a91d3eaa 190 ((CHANNEL) == TIM_CHANNEL_2) || \
Kojto 93:e188a91d3eaa 191 ((CHANNEL) == TIM_CHANNEL_3) || \
Kojto 93:e188a91d3eaa 192 ((CHANNEL) == TIM_CHANNEL_4) || \
Kojto 93:e188a91d3eaa 193 ((CHANNEL) == TIM_CHANNEL_ALL))
Kojto 93:e188a91d3eaa 194
Kojto 93:e188a91d3eaa 195 #define IS_TIM_PWMI_CHANNELS(CHANNEL) (((CHANNEL) == TIM_CHANNEL_1) || \
Kojto 93:e188a91d3eaa 196 ((CHANNEL) == TIM_CHANNEL_2))
Kojto 93:e188a91d3eaa 197
Kojto 93:e188a91d3eaa 198 #define IS_TIM_OPM_CHANNELS(CHANNEL) (((CHANNEL) == TIM_CHANNEL_1) || \
Kojto 93:e188a91d3eaa 199 ((CHANNEL) == TIM_CHANNEL_2))
Kojto 93:e188a91d3eaa 200
Kojto 93:e188a91d3eaa 201 #define IS_TIM_COMPLEMENTARY_CHANNELS(CHANNEL) (((CHANNEL) == TIM_CHANNEL_1) || \
Kojto 93:e188a91d3eaa 202 ((CHANNEL) == TIM_CHANNEL_2) || \
Kojto 93:e188a91d3eaa 203 ((CHANNEL) == TIM_CHANNEL_3))
Kojto 93:e188a91d3eaa 204 /**
Kojto 93:e188a91d3eaa 205 * @}
Kojto 93:e188a91d3eaa 206 */
Kojto 93:e188a91d3eaa 207
Kojto 93:e188a91d3eaa 208 /** @defgroup TIMEx_Output_Compare_and_PWM_modes TIM Extended Output Compare and PWM Modes
Kojto 93:e188a91d3eaa 209 * @{
Kojto 93:e188a91d3eaa 210 */
Kojto 93:e188a91d3eaa 211
Kojto 93:e188a91d3eaa 212 #define TIM_OCMODE_TIMING ((uint32_t)0x0000)
Kojto 93:e188a91d3eaa 213 #define TIM_OCMODE_ACTIVE ((uint32_t)TIM_CCMR1_OC1M_0)
Kojto 93:e188a91d3eaa 214 #define TIM_OCMODE_INACTIVE ((uint32_t)TIM_CCMR1_OC1M_1)
Kojto 93:e188a91d3eaa 215 #define TIM_OCMODE_TOGGLE ((uint32_t)TIM_CCMR1_OC1M_0 | TIM_CCMR1_OC1M_1)
Kojto 93:e188a91d3eaa 216 #define TIM_OCMODE_PWM1 ((uint32_t)TIM_CCMR1_OC1M_1 | TIM_CCMR1_OC1M_2)
Kojto 93:e188a91d3eaa 217 #define TIM_OCMODE_PWM2 ((uint32_t)TIM_CCMR1_OC1M)
Kojto 93:e188a91d3eaa 218 #define TIM_OCMODE_FORCED_ACTIVE ((uint32_t)TIM_CCMR1_OC1M_0 | TIM_CCMR1_OC1M_2)
Kojto 93:e188a91d3eaa 219 #define TIM_OCMODE_FORCED_INACTIVE ((uint32_t)TIM_CCMR1_OC1M_2)
Kojto 93:e188a91d3eaa 220
Kojto 93:e188a91d3eaa 221 #define IS_TIM_PWM_MODE(MODE) (((MODE) == TIM_OCMODE_PWM1) || \
Kojto 93:e188a91d3eaa 222 ((MODE) == TIM_OCMODE_PWM2))
Kojto 93:e188a91d3eaa 223
Kojto 93:e188a91d3eaa 224 #define IS_TIM_OC_MODE(MODE) (((MODE) == TIM_OCMODE_TIMING) || \
Kojto 93:e188a91d3eaa 225 ((MODE) == TIM_OCMODE_ACTIVE) || \
Kojto 93:e188a91d3eaa 226 ((MODE) == TIM_OCMODE_INACTIVE) || \
Kojto 93:e188a91d3eaa 227 ((MODE) == TIM_OCMODE_TOGGLE) || \
Kojto 93:e188a91d3eaa 228 ((MODE) == TIM_OCMODE_FORCED_ACTIVE) || \
Kojto 93:e188a91d3eaa 229 ((MODE) == TIM_OCMODE_FORCED_INACTIVE))
Kojto 93:e188a91d3eaa 230 /**
Kojto 93:e188a91d3eaa 231 * @}
Kojto 93:e188a91d3eaa 232 */
Kojto 93:e188a91d3eaa 233
Kojto 93:e188a91d3eaa 234 /** @defgroup TIMEx_ClearInput_Source TIM Extended Clear Input Source
Kojto 93:e188a91d3eaa 235 * @{
Kojto 93:e188a91d3eaa 236 */
Kojto 93:e188a91d3eaa 237 #define TIM_CLEARINPUTSOURCE_ETR ((uint32_t)0x0001)
Kojto 93:e188a91d3eaa 238 #define TIM_CLEARINPUTSOURCE_NONE ((uint32_t)0x0000)
Kojto 93:e188a91d3eaa 239
Kojto 93:e188a91d3eaa 240 #define IS_TIM_CLEARINPUT_SOURCE(SOURCE) (((SOURCE) == TIM_CLEARINPUTSOURCE_NONE) || \
Kojto 93:e188a91d3eaa 241 ((SOURCE) == TIM_CLEARINPUTSOURCE_ETR))
Kojto 93:e188a91d3eaa 242 /**
Kojto 93:e188a91d3eaa 243 * @}
Kojto 93:e188a91d3eaa 244 */
Kojto 93:e188a91d3eaa 245
Kojto 93:e188a91d3eaa 246 /** @defgroup TIMEx_Slave_Mode TIM Extended Slave Mode
Kojto 93:e188a91d3eaa 247 * @{
Kojto 93:e188a91d3eaa 248 */
Kojto 93:e188a91d3eaa 249
Kojto 93:e188a91d3eaa 250 #define TIM_SLAVEMODE_DISABLE ((uint32_t)0x0000)
Kojto 93:e188a91d3eaa 251 #define TIM_SLAVEMODE_RESET ((uint16_t)0x0004)
Kojto 93:e188a91d3eaa 252 #define TIM_SLAVEMODE_GATED ((uint16_t)0x0005)
Kojto 93:e188a91d3eaa 253 #define TIM_SLAVEMODE_TRIGGER ((uint16_t)0x0006)
Kojto 93:e188a91d3eaa 254 #define TIM_SLAVEMODE_EXTERNAL1 ((uint16_t)0x0007)
Kojto 93:e188a91d3eaa 255
Kojto 93:e188a91d3eaa 256 #define IS_TIM_SLAVE_MODE(MODE) (((MODE) == TIM_SLAVEMODE_DISABLE) || \
Kojto 93:e188a91d3eaa 257 ((MODE) == TIM_SLAVEMODE_RESET) || \
Kojto 93:e188a91d3eaa 258 ((MODE) == TIM_SLAVEMODE_GATED) || \
Kojto 93:e188a91d3eaa 259 ((MODE) == TIM_SLAVEMODE_TRIGGER) || \
Kojto 93:e188a91d3eaa 260 ((MODE) == TIM_SLAVEMODE_EXTERNAL1))
Kojto 93:e188a91d3eaa 261 /**
Kojto 93:e188a91d3eaa 262 * @}
Kojto 93:e188a91d3eaa 263 */
Kojto 93:e188a91d3eaa 264
Kojto 93:e188a91d3eaa 265 /** @defgroup TIMEx_Event_Source TIM Extended Event Source
Kojto 93:e188a91d3eaa 266 * @{
Kojto 93:e188a91d3eaa 267 */
Kojto 93:e188a91d3eaa 268
Kojto 93:e188a91d3eaa 269 #define TIM_EventSource_Update TIM_EGR_UG /*!< Reinitialize the counter and generates an update of the registers */
Kojto 93:e188a91d3eaa 270 #define TIM_EventSource_CC1 TIM_EGR_CC1G /*!< A capture/compare event is generated on channel 1 */
Kojto 93:e188a91d3eaa 271 #define TIM_EventSource_CC2 TIM_EGR_CC2G /*!< A capture/compare event is generated on channel 2 */
Kojto 93:e188a91d3eaa 272 #define TIM_EventSource_CC3 TIM_EGR_CC3G /*!< A capture/compare event is generated on channel 3 */
Kojto 93:e188a91d3eaa 273 #define TIM_EventSource_CC4 TIM_EGR_CC4G /*!< A capture/compare event is generated on channel 4 */
Kojto 93:e188a91d3eaa 274 #define TIM_EventSource_COM TIM_EGR_COMG /*!< A commutation event is generated */
Kojto 93:e188a91d3eaa 275 #define TIM_EventSource_Trigger TIM_EGR_TG /*!< A trigger event is generated */
Kojto 93:e188a91d3eaa 276 #define TIM_EventSource_Break TIM_EGR_BG /*!< A break event is generated */
Kojto 93:e188a91d3eaa 277 #define IS_TIM_EVENT_SOURCE(SOURCE) ((((SOURCE) & 0xFFFFFF00) == 0x00000000) && ((SOURCE) != 0x00000000))
Kojto 93:e188a91d3eaa 278
Kojto 93:e188a91d3eaa 279 /**
Kojto 93:e188a91d3eaa 280 * @}
Kojto 93:e188a91d3eaa 281 */
Kojto 93:e188a91d3eaa 282
Kojto 93:e188a91d3eaa 283 /** @defgroup TIMEx_DMA_Base_address TIM Extended DMA BAse Address
Kojto 93:e188a91d3eaa 284 * @{
Kojto 93:e188a91d3eaa 285 */
Kojto 93:e188a91d3eaa 286
Kojto 93:e188a91d3eaa 287 #define TIM_DMABase_CR1 (0x00000000)
Kojto 93:e188a91d3eaa 288 #define TIM_DMABase_CR2 (0x00000001)
Kojto 93:e188a91d3eaa 289 #define TIM_DMABase_SMCR (0x00000002)
Kojto 93:e188a91d3eaa 290 #define TIM_DMABase_DIER (0x00000003)
Kojto 93:e188a91d3eaa 291 #define TIM_DMABase_SR (0x00000004)
Kojto 93:e188a91d3eaa 292 #define TIM_DMABase_EGR (0x00000005)
Kojto 93:e188a91d3eaa 293 #define TIM_DMABase_CCMR1 (0x00000006)
Kojto 93:e188a91d3eaa 294 #define TIM_DMABase_CCMR2 (0x00000007)
Kojto 93:e188a91d3eaa 295 #define TIM_DMABase_CCER (0x00000008)
Kojto 93:e188a91d3eaa 296 #define TIM_DMABase_CNT (0x00000009)
Kojto 93:e188a91d3eaa 297 #define TIM_DMABase_PSC (0x0000000A)
Kojto 93:e188a91d3eaa 298 #define TIM_DMABase_ARR (0x0000000B)
Kojto 93:e188a91d3eaa 299 #define TIM_DMABase_RCR (0x0000000C)
Kojto 93:e188a91d3eaa 300 #define TIM_DMABase_CCR1 (0x0000000D)
Kojto 93:e188a91d3eaa 301 #define TIM_DMABase_CCR2 (0x0000000E)
Kojto 93:e188a91d3eaa 302 #define TIM_DMABase_CCR3 (0x0000000F)
Kojto 93:e188a91d3eaa 303 #define TIM_DMABase_CCR4 (0x00000010)
Kojto 93:e188a91d3eaa 304 #define TIM_DMABase_BDTR (0x00000011)
Kojto 93:e188a91d3eaa 305 #define TIM_DMABase_DCR (0x00000012)
Kojto 93:e188a91d3eaa 306 #define TIM_DMABase_OR (0x00000013)
Kojto 93:e188a91d3eaa 307 #define IS_TIM_DMA_BASE(BASE) (((BASE) == TIM_DMABase_CR1) || \
Kojto 93:e188a91d3eaa 308 ((BASE) == TIM_DMABase_CR2) || \
Kojto 93:e188a91d3eaa 309 ((BASE) == TIM_DMABase_SMCR) || \
Kojto 93:e188a91d3eaa 310 ((BASE) == TIM_DMABase_DIER) || \
Kojto 93:e188a91d3eaa 311 ((BASE) == TIM_DMABase_SR) || \
Kojto 93:e188a91d3eaa 312 ((BASE) == TIM_DMABase_EGR) || \
Kojto 93:e188a91d3eaa 313 ((BASE) == TIM_DMABase_CCMR1) || \
Kojto 93:e188a91d3eaa 314 ((BASE) == TIM_DMABase_CCMR2) || \
Kojto 93:e188a91d3eaa 315 ((BASE) == TIM_DMABase_CCER) || \
Kojto 93:e188a91d3eaa 316 ((BASE) == TIM_DMABase_CNT) || \
Kojto 93:e188a91d3eaa 317 ((BASE) == TIM_DMABase_PSC) || \
Kojto 93:e188a91d3eaa 318 ((BASE) == TIM_DMABase_ARR) || \
Kojto 93:e188a91d3eaa 319 ((BASE) == TIM_DMABase_RCR) || \
Kojto 93:e188a91d3eaa 320 ((BASE) == TIM_DMABase_CCR1) || \
Kojto 93:e188a91d3eaa 321 ((BASE) == TIM_DMABase_CCR2) || \
Kojto 93:e188a91d3eaa 322 ((BASE) == TIM_DMABase_CCR3) || \
Kojto 93:e188a91d3eaa 323 ((BASE) == TIM_DMABase_CCR4) || \
Kojto 93:e188a91d3eaa 324 ((BASE) == TIM_DMABase_BDTR) || \
Kojto 93:e188a91d3eaa 325 ((BASE) == TIM_DMABase_DCR) || \
Kojto 93:e188a91d3eaa 326 ((BASE) == TIM_DMABase_OR))
Kojto 93:e188a91d3eaa 327 /**
Kojto 93:e188a91d3eaa 328 * @}
Kojto 93:e188a91d3eaa 329 */
Kojto 93:e188a91d3eaa 330 #endif /* STM32F373xC || STM32F378xx */
Kojto 93:e188a91d3eaa 331
Kojto 93:e188a91d3eaa 332 #if defined(STM32F302xE) || defined(STM32F303xE) || defined(STM32F398xx) || \
Kojto 93:e188a91d3eaa 333 defined(STM32F302xC) || defined(STM32F303xC) || defined(STM32F358xx) || \
Kojto 93:e188a91d3eaa 334 defined(STM32F303x8) || defined(STM32F334x8) || defined(STM32F328xx) || \
Kojto 93:e188a91d3eaa 335 defined(STM32F301x8) || defined(STM32F302x8) || defined(STM32F318xx)
Kojto 93:e188a91d3eaa 336 /** @defgroup TIMEx_Channel TIM Extended Channel
Kojto 93:e188a91d3eaa 337 * @{
Kojto 93:e188a91d3eaa 338 */
Kojto 93:e188a91d3eaa 339
Kojto 93:e188a91d3eaa 340 #define TIM_CHANNEL_1 ((uint32_t)0x0000)
Kojto 93:e188a91d3eaa 341 #define TIM_CHANNEL_2 ((uint32_t)0x0004)
Kojto 93:e188a91d3eaa 342 #define TIM_CHANNEL_3 ((uint32_t)0x0008)
Kojto 93:e188a91d3eaa 343 #define TIM_CHANNEL_4 ((uint32_t)0x000C)
Kojto 93:e188a91d3eaa 344 #define TIM_CHANNEL_5 ((uint32_t)0x0010)
Kojto 93:e188a91d3eaa 345 #define TIM_CHANNEL_6 ((uint32_t)0x0014)
Kojto 93:e188a91d3eaa 346 #define TIM_CHANNEL_ALL ((uint32_t)0x003C)
Kojto 93:e188a91d3eaa 347
Kojto 93:e188a91d3eaa 348 #define IS_TIM_CHANNELS(CHANNEL) (((CHANNEL) == TIM_CHANNEL_1) || \
Kojto 93:e188a91d3eaa 349 ((CHANNEL) == TIM_CHANNEL_2) || \
Kojto 93:e188a91d3eaa 350 ((CHANNEL) == TIM_CHANNEL_3) || \
Kojto 93:e188a91d3eaa 351 ((CHANNEL) == TIM_CHANNEL_4) || \
Kojto 93:e188a91d3eaa 352 ((CHANNEL) == TIM_CHANNEL_5) || \
Kojto 93:e188a91d3eaa 353 ((CHANNEL) == TIM_CHANNEL_6) || \
Kojto 93:e188a91d3eaa 354 ((CHANNEL) == TIM_CHANNEL_ALL))
Kojto 93:e188a91d3eaa 355
Kojto 93:e188a91d3eaa 356 #define IS_TIM_PWMI_CHANNELS(CHANNEL) (((CHANNEL) == TIM_CHANNEL_1) || \
Kojto 93:e188a91d3eaa 357 ((CHANNEL) == TIM_CHANNEL_2))
Kojto 93:e188a91d3eaa 358
Kojto 93:e188a91d3eaa 359 #define IS_TIM_OPM_CHANNELS(CHANNEL) (((CHANNEL) == TIM_CHANNEL_1) || \
Kojto 93:e188a91d3eaa 360 ((CHANNEL) == TIM_CHANNEL_2))
Kojto 93:e188a91d3eaa 361
Kojto 93:e188a91d3eaa 362 #define IS_TIM_COMPLEMENTARY_CHANNELS(CHANNEL) (((CHANNEL) == TIM_CHANNEL_1) || \
Kojto 93:e188a91d3eaa 363 ((CHANNEL) == TIM_CHANNEL_2) || \
Kojto 93:e188a91d3eaa 364 ((CHANNEL) == TIM_CHANNEL_3))
Kojto 93:e188a91d3eaa 365 /**
Kojto 93:e188a91d3eaa 366 * @}
Kojto 93:e188a91d3eaa 367 */
Kojto 93:e188a91d3eaa 368
Kojto 93:e188a91d3eaa 369 /** @defgroup TIMEx_Output_Compare_and_PWM_modes TIM Extended Output Compare and PWM Modes
Kojto 93:e188a91d3eaa 370 * @{
Kojto 93:e188a91d3eaa 371 */
Kojto 93:e188a91d3eaa 372 #define TIM_OCMODE_TIMING ((uint32_t)0x0000)
Kojto 93:e188a91d3eaa 373 #define TIM_OCMODE_ACTIVE ((uint32_t)TIM_CCMR1_OC1M_0)
Kojto 93:e188a91d3eaa 374 #define TIM_OCMODE_INACTIVE ((uint32_t)TIM_CCMR1_OC1M_1)
Kojto 93:e188a91d3eaa 375 #define TIM_OCMODE_TOGGLE ((uint32_t)TIM_CCMR1_OC1M_1 | TIM_CCMR1_OC1M_0)
Kojto 93:e188a91d3eaa 376 #define TIM_OCMODE_PWM1 ((uint32_t)TIM_CCMR1_OC1M_2 | TIM_CCMR1_OC1M_1)
Kojto 93:e188a91d3eaa 377 #define TIM_OCMODE_PWM2 ((uint32_t)TIM_CCMR1_OC1M_2 | TIM_CCMR1_OC1M_1 | TIM_CCMR1_OC1M_0)
Kojto 93:e188a91d3eaa 378 #define TIM_OCMODE_FORCED_ACTIVE ((uint32_t)TIM_CCMR1_OC1M_2 | TIM_CCMR1_OC1M_0)
Kojto 93:e188a91d3eaa 379 #define TIM_OCMODE_FORCED_INACTIVE ((uint32_t)TIM_CCMR1_OC1M_2)
Kojto 93:e188a91d3eaa 380
Kojto 93:e188a91d3eaa 381 #define TIM_OCMODE_RETRIGERRABLE_OPM1 ((uint32_t)TIM_CCMR1_OC1M_3)
Kojto 93:e188a91d3eaa 382 #define TIM_OCMODE_RETRIGERRABLE_OPM2 ((uint32_t)TIM_CCMR1_OC1M_3 | TIM_CCMR1_OC1M_0)
Kojto 93:e188a91d3eaa 383 #define TIM_OCMODE_COMBINED_PWM1 ((uint32_t)TIM_CCMR1_OC1M_3 | TIM_CCMR1_OC1M_2)
Kojto 93:e188a91d3eaa 384 #define TIM_OCMODE_COMBINED_PWM2 ((uint32_t)TIM_CCMR1_OC1M_3 | TIM_CCMR1_OC1M_0 | TIM_CCMR1_OC1M_2)
Kojto 93:e188a91d3eaa 385 #define TIM_OCMODE_ASSYMETRIC_PWM1 ((uint32_t)TIM_CCMR1_OC1M_3 | TIM_CCMR1_OC1M_1 | TIM_CCMR1_OC1M_2)
Kojto 93:e188a91d3eaa 386 #define TIM_OCMODE_ASSYMETRIC_PWM2 ((uint32_t)TIM_CCMR1_OC1M_3 | TIM_CCMR1_OC1M)
Kojto 93:e188a91d3eaa 387
Kojto 93:e188a91d3eaa 388 #define IS_TIM_PWM_MODE(MODE) (((MODE) == TIM_OCMODE_PWM1) || \
Kojto 93:e188a91d3eaa 389 ((MODE) == TIM_OCMODE_PWM2) || \
Kojto 93:e188a91d3eaa 390 ((MODE) == TIM_OCMODE_COMBINED_PWM1) || \
Kojto 93:e188a91d3eaa 391 ((MODE) == TIM_OCMODE_COMBINED_PWM2) || \
Kojto 93:e188a91d3eaa 392 ((MODE) == TIM_OCMODE_ASSYMETRIC_PWM1) || \
Kojto 93:e188a91d3eaa 393 ((MODE) == TIM_OCMODE_ASSYMETRIC_PWM2))
Kojto 93:e188a91d3eaa 394
Kojto 93:e188a91d3eaa 395 #define IS_TIM_OC_MODE(MODE) (((MODE) == TIM_OCMODE_TIMING) || \
Kojto 93:e188a91d3eaa 396 ((MODE) == TIM_OCMODE_ACTIVE) || \
Kojto 93:e188a91d3eaa 397 ((MODE) == TIM_OCMODE_INACTIVE) || \
Kojto 93:e188a91d3eaa 398 ((MODE) == TIM_OCMODE_TOGGLE) || \
Kojto 93:e188a91d3eaa 399 ((MODE) == TIM_OCMODE_FORCED_ACTIVE) || \
Kojto 93:e188a91d3eaa 400 ((MODE) == TIM_OCMODE_FORCED_INACTIVE) || \
Kojto 93:e188a91d3eaa 401 ((MODE) == TIM_OCMODE_RETRIGERRABLE_OPM1) || \
Kojto 93:e188a91d3eaa 402 ((MODE) == TIM_OCMODE_RETRIGERRABLE_OPM2))
Kojto 93:e188a91d3eaa 403 /**
Kojto 93:e188a91d3eaa 404 * @}
Kojto 93:e188a91d3eaa 405 */
Kojto 93:e188a91d3eaa 406
Kojto 93:e188a91d3eaa 407 /** @defgroup TIMEx_ClearInput_Source TIM Extended Clear Input Source
Kojto 93:e188a91d3eaa 408 * @{
Kojto 93:e188a91d3eaa 409 */
Kojto 93:e188a91d3eaa 410 #define TIM_CLEARINPUTSOURCE_ETR ((uint32_t)0x0001)
Kojto 93:e188a91d3eaa 411 #define TIM_CLEARINPUTSOURCE_OCREFCLR ((uint32_t)0x0002)
Kojto 93:e188a91d3eaa 412 #define TIM_CLEARINPUTSOURCE_NONE ((uint32_t)0x0000)
Kojto 93:e188a91d3eaa 413
Kojto 93:e188a91d3eaa 414 #define IS_TIM_CLEARINPUT_SOURCE(MODE) (((MODE) == TIM_CLEARINPUTSOURCE_ETR) || \
Kojto 93:e188a91d3eaa 415 ((MODE) == TIM_CLEARINPUTSOURCE_OCREFCLR) || \
Kojto 93:e188a91d3eaa 416 ((MODE) == TIM_CLEARINPUTSOURCE_NONE))
Kojto 93:e188a91d3eaa 417 /**
Kojto 93:e188a91d3eaa 418 * @}
Kojto 93:e188a91d3eaa 419 */
Kojto 93:e188a91d3eaa 420
Kojto 93:e188a91d3eaa 421 /** @defgroup TIMEx_BreakInput_Filter TIM Extended Break Input Filter
Kojto 93:e188a91d3eaa 422 * @{
Kojto 93:e188a91d3eaa 423 */
Kojto 93:e188a91d3eaa 424
Kojto 93:e188a91d3eaa 425 #define IS_TIM_BREAK_FILTER(BRKFILTER) ((BRKFILTER) <= 0xF)
Kojto 93:e188a91d3eaa 426 /**
Kojto 93:e188a91d3eaa 427 * @}
Kojto 93:e188a91d3eaa 428 */
Kojto 93:e188a91d3eaa 429
Kojto 93:e188a91d3eaa 430 /** @defgroup TIMEx_Break2_Input_enable_disable TIMEX Break input 2 Enable
Kojto 93:e188a91d3eaa 431 * @{
Kojto 93:e188a91d3eaa 432 */
Kojto 93:e188a91d3eaa 433 #define TIM_BREAK2_DISABLE ((uint32_t)0x00000000)
Kojto 93:e188a91d3eaa 434 #define TIM_BREAK2_ENABLE ((uint32_t)TIM_BDTR_BK2E)
Kojto 93:e188a91d3eaa 435
Kojto 93:e188a91d3eaa 436 #define IS_TIM_BREAK2_STATE(STATE) (((STATE) == TIM_BREAK2_ENABLE) || \
Kojto 93:e188a91d3eaa 437 ((STATE) == TIM_BREAK2_DISABLE))
Kojto 93:e188a91d3eaa 438 /**
Kojto 93:e188a91d3eaa 439 * @}
Kojto 93:e188a91d3eaa 440 */
Kojto 93:e188a91d3eaa 441 /** @defgroup TIMEx_Break2_Polarity TIM Extended Break Input 2 Polarity
Kojto 93:e188a91d3eaa 442 * @{
Kojto 93:e188a91d3eaa 443 */
Kojto 93:e188a91d3eaa 444 #define TIM_BREAK2POLARITY_LOW ((uint32_t)0x00000000)
Kojto 93:e188a91d3eaa 445 #define TIM_BREAK2POLARITY_HIGH ((uint32_t)TIM_BDTR_BK2P)
Kojto 93:e188a91d3eaa 446
Kojto 93:e188a91d3eaa 447 #define IS_TIM_BREAK2_POLARITY(POLARITY) (((POLARITY) == TIM_BREAK2POLARITY_LOW) || \
Kojto 93:e188a91d3eaa 448 ((POLARITY) == TIM_BREAK2POLARITY_HIGH))
Kojto 93:e188a91d3eaa 449 /**
Kojto 93:e188a91d3eaa 450 * @}
Kojto 93:e188a91d3eaa 451 */
Kojto 93:e188a91d3eaa 452
Kojto 93:e188a91d3eaa 453 /** @defgroup TIMEx_Master_Mode_Selection_2 TIM Extended Master Mode Selection 2 (TRGO2)
Kojto 93:e188a91d3eaa 454 * @{
Kojto 93:e188a91d3eaa 455 */
Kojto 93:e188a91d3eaa 456 #define TIM_TRGO2_RESET ((uint32_t)0x00000000)
Kojto 93:e188a91d3eaa 457 #define TIM_TRGO2_ENABLE ((uint32_t)(TIM_CR2_MMS2_0))
Kojto 93:e188a91d3eaa 458 #define TIM_TRGO2_UPDATE ((uint32_t)(TIM_CR2_MMS2_1))
Kojto 93:e188a91d3eaa 459 #define TIM_TRGO2_OC1 ((uint32_t)(TIM_CR2_MMS2_1 | TIM_CR2_MMS2_0))
Kojto 93:e188a91d3eaa 460 #define TIM_TRGO2_OC1REF ((uint32_t)(TIM_CR2_MMS2_2))
Kojto 93:e188a91d3eaa 461 #define TIM_TRGO2_OC2REF ((uint32_t)(TIM_CR2_MMS2_2 | TIM_CR2_MMS2_0))
Kojto 93:e188a91d3eaa 462 #define TIM_TRGO2_OC3REF ((uint32_t)(TIM_CR2_MMS2_2 | TIM_CR2_MMS2_1))
Kojto 93:e188a91d3eaa 463 #define TIM_TRGO2_OC4REF ((uint32_t)(TIM_CR2_MMS2_2 | TIM_CR2_MMS2_1 | TIM_CR2_MMS2_0))
Kojto 93:e188a91d3eaa 464 #define TIM_TRGO2_OC5REF ((uint32_t)(TIM_CR2_MMS2_3))
Kojto 93:e188a91d3eaa 465 #define TIM_TRGO2_OC6REF ((uint32_t)(TIM_CR2_MMS2_3 | TIM_CR2_MMS2_0))
Kojto 93:e188a91d3eaa 466 #define TIM_TRGO2_OC4REF_RISINGFALLING ((uint32_t)(TIM_CR2_MMS2_3 | TIM_CR2_MMS2_1))
Kojto 93:e188a91d3eaa 467 #define TIM_TRGO2_OC6REF_RISINGFALLING ((uint32_t)(TIM_CR2_MMS2_3 | TIM_CR2_MMS2_1 | TIM_CR2_MMS2_0))
Kojto 93:e188a91d3eaa 468 #define TIM_TRGO2_OC4REF_RISING_OC6REF_RISING ((uint32_t)(TIM_CR2_MMS2_3 | TIM_CR2_MMS2_2))
Kojto 93:e188a91d3eaa 469 #define TIM_TRGO2_OC4REF_RISING_OC6REF_FALLING ((uint32_t)(TIM_CR2_MMS2_3 | TIM_CR2_MMS2_2 | TIM_CR2_MMS2_0))
Kojto 93:e188a91d3eaa 470 #define TIM_TRGO2_OC5REF_RISING_OC6REF_RISING ((uint32_t)(TIM_CR2_MMS2_3 | TIM_CR2_MMS2_2 |TIM_CR2_MMS2_1))
Kojto 93:e188a91d3eaa 471 #define TIM_TRGO2_OC5REF_RISING_OC6REF_FALLING ((uint32_t)(TIM_CR2_MMS2_3 | TIM_CR2_MMS2_2 | TIM_CR2_MMS2_1 | TIM_CR2_MMS2_0))
Kojto 93:e188a91d3eaa 472
Kojto 93:e188a91d3eaa 473 #define IS_TIM_TRGO2_SOURCE(SOURCE) (((SOURCE) == TIM_TRGO2_RESET) || \
Kojto 93:e188a91d3eaa 474 ((SOURCE) == TIM_TRGO2_ENABLE) || \
Kojto 93:e188a91d3eaa 475 ((SOURCE) == TIM_TRGO2_UPDATE) || \
Kojto 93:e188a91d3eaa 476 ((SOURCE) == TIM_TRGO2_OC1) || \
Kojto 93:e188a91d3eaa 477 ((SOURCE) == TIM_TRGO2_OC1REF) || \
Kojto 93:e188a91d3eaa 478 ((SOURCE) == TIM_TRGO2_OC2REF) || \
Kojto 93:e188a91d3eaa 479 ((SOURCE) == TIM_TRGO2_OC3REF) || \
Kojto 93:e188a91d3eaa 480 ((SOURCE) == TIM_TRGO2_OC3REF) || \
Kojto 93:e188a91d3eaa 481 ((SOURCE) == TIM_TRGO2_OC4REF) || \
Kojto 93:e188a91d3eaa 482 ((SOURCE) == TIM_TRGO2_OC5REF) || \
Kojto 93:e188a91d3eaa 483 ((SOURCE) == TIM_TRGO2_OC6REF) || \
Kojto 93:e188a91d3eaa 484 ((SOURCE) == TIM_TRGO2_OC4REF_RISINGFALLING) || \
Kojto 93:e188a91d3eaa 485 ((SOURCE) == TIM_TRGO2_OC6REF_RISINGFALLING) || \
Kojto 93:e188a91d3eaa 486 ((SOURCE) == TIM_TRGO2_OC4REF_RISING_OC6REF_RISING) || \
Kojto 93:e188a91d3eaa 487 ((SOURCE) == TIM_TRGO2_OC4REF_RISING_OC6REF_FALLING) || \
Kojto 93:e188a91d3eaa 488 ((SOURCE) == TIM_TRGO2_OC5REF_RISING_OC6REF_RISING) || \
Kojto 93:e188a91d3eaa 489 ((SOURCE) == TIM_TRGO2_OC5REF_RISING_OC6REF_FALLING))
Kojto 93:e188a91d3eaa 490 /**
Kojto 93:e188a91d3eaa 491 * @}
Kojto 93:e188a91d3eaa 492 */
Kojto 93:e188a91d3eaa 493
Kojto 93:e188a91d3eaa 494 /** @defgroup TIMEx_Slave_Mode TIM Extended Slave mode
Kojto 93:e188a91d3eaa 495 * @{
Kojto 93:e188a91d3eaa 496 */
Kojto 93:e188a91d3eaa 497 #define TIM_SLAVEMODE_DISABLE ((uint32_t)0x0000)
Kojto 93:e188a91d3eaa 498 #define TIM_SLAVEMODE_RESET ((uint32_t)(TIM_SMCR_SMS_2))
Kojto 93:e188a91d3eaa 499 #define TIM_SLAVEMODE_GATED ((uint32_t)(TIM_SMCR_SMS_2 | TIM_SMCR_SMS_0))
Kojto 93:e188a91d3eaa 500 #define TIM_SLAVEMODE_TRIGGER ((uint32_t)(TIM_SMCR_SMS_2 | TIM_SMCR_SMS_1))
Kojto 93:e188a91d3eaa 501 #define TIM_SLAVEMODE_EXTERNAL1 ((uint32_t)(TIM_SMCR_SMS_2 | TIM_SMCR_SMS_1 | TIM_SMCR_SMS_0))
Kojto 93:e188a91d3eaa 502 #define TIM_SLAVEMODE_COMBINED_RESETTRIGGER ((uint32_t)(TIM_SMCR_SMS_3))
Kojto 93:e188a91d3eaa 503
Kojto 93:e188a91d3eaa 504 #define IS_TIM_SLAVE_MODE(MODE) (((MODE) == TIM_SLAVEMODE_DISABLE) || \
Kojto 93:e188a91d3eaa 505 ((MODE) == TIM_SLAVEMODE_RESET) || \
Kojto 93:e188a91d3eaa 506 ((MODE) == TIM_SLAVEMODE_GATED) || \
Kojto 93:e188a91d3eaa 507 ((MODE) == TIM_SLAVEMODE_TRIGGER) || \
Kojto 93:e188a91d3eaa 508 ((MODE) == TIM_SLAVEMODE_EXTERNAL1) || \
Kojto 93:e188a91d3eaa 509 ((MODE) == TIM_SLAVEMODE_COMBINED_RESETTRIGGER))
Kojto 93:e188a91d3eaa 510 /**
Kojto 93:e188a91d3eaa 511 * @}
Kojto 93:e188a91d3eaa 512 */
Kojto 93:e188a91d3eaa 513
Kojto 93:e188a91d3eaa 514 /** @defgroup TIM_Event_Source TIM Extended Event Source
Kojto 93:e188a91d3eaa 515 * @{
Kojto 93:e188a91d3eaa 516 */
Kojto 93:e188a91d3eaa 517
Kojto 93:e188a91d3eaa 518 #define TIM_EventSource_Update TIM_EGR_UG /*!< Reinitialize the counter and generates an update of the registers */
Kojto 93:e188a91d3eaa 519 #define TIM_EventSource_CC1 TIM_EGR_CC1G /*!< A capture/compare event is generated on channel 1 */
Kojto 93:e188a91d3eaa 520 #define TIM_EventSource_CC2 TIM_EGR_CC2G /*!< A capture/compare event is generated on channel 2 */
Kojto 93:e188a91d3eaa 521 #define TIM_EventSource_CC3 TIM_EGR_CC3G /*!< A capture/compare event is generated on channel 3 */
Kojto 93:e188a91d3eaa 522 #define TIM_EventSource_CC4 TIM_EGR_CC4G /*!< A capture/compare event is generated on channel 4 */
Kojto 93:e188a91d3eaa 523 #define TIM_EventSource_COM TIM_EGR_COMG /*!< A commutation event is generated */
Kojto 93:e188a91d3eaa 524 #define TIM_EventSource_Trigger TIM_EGR_TG /*!< A trigger event is generated */
Kojto 93:e188a91d3eaa 525 #define TIM_EventSource_Break TIM_EGR_BG /*!< A break event is generated */
Kojto 93:e188a91d3eaa 526 #define TIM_EventSource_Break2 TIM_EGR_B2G /*!< A break 2 event is generated */
Kojto 93:e188a91d3eaa 527 #define IS_TIM_EVENT_SOURCE(SOURCE) ((((SOURCE) & 0xFFFFFE00) == 0x00000000) && ((SOURCE) != 0x00000000))
Kojto 93:e188a91d3eaa 528
Kojto 93:e188a91d3eaa 529 /**
Kojto 93:e188a91d3eaa 530 * @}
Kojto 93:e188a91d3eaa 531 */
Kojto 93:e188a91d3eaa 532
Kojto 93:e188a91d3eaa 533 /** @defgroup TIM_DMA_Base_address TIM Extended DMA Base Address
Kojto 93:e188a91d3eaa 534 * @{
Kojto 93:e188a91d3eaa 535 */
Kojto 93:e188a91d3eaa 536
Kojto 93:e188a91d3eaa 537 #define TIM_DMABase_CR1 (0x00000000)
Kojto 93:e188a91d3eaa 538 #define TIM_DMABase_CR2 (0x00000001)
Kojto 93:e188a91d3eaa 539 #define TIM_DMABase_SMCR (0x00000002)
Kojto 93:e188a91d3eaa 540 #define TIM_DMABase_DIER (0x00000003)
Kojto 93:e188a91d3eaa 541 #define TIM_DMABase_SR (0x00000004)
Kojto 93:e188a91d3eaa 542 #define TIM_DMABase_EGR (0x00000005)
Kojto 93:e188a91d3eaa 543 #define TIM_DMABase_CCMR1 (0x00000006)
Kojto 93:e188a91d3eaa 544 #define TIM_DMABase_CCMR2 (0x00000007)
Kojto 93:e188a91d3eaa 545 #define TIM_DMABase_CCER (0x00000008)
Kojto 93:e188a91d3eaa 546 #define TIM_DMABase_CNT (0x00000009)
Kojto 93:e188a91d3eaa 547 #define TIM_DMABase_PSC (0x0000000A)
Kojto 93:e188a91d3eaa 548 #define TIM_DMABase_ARR (0x0000000B)
Kojto 93:e188a91d3eaa 549 #define TIM_DMABase_RCR (0x0000000C)
Kojto 93:e188a91d3eaa 550 #define TIM_DMABase_CCR1 (0x0000000D)
Kojto 93:e188a91d3eaa 551 #define TIM_DMABase_CCR2 (0x0000000E)
Kojto 93:e188a91d3eaa 552 #define TIM_DMABase_CCR3 (0x0000000F)
Kojto 93:e188a91d3eaa 553 #define TIM_DMABase_CCR4 (0x00000010)
Kojto 93:e188a91d3eaa 554 #define TIM_DMABase_BDTR (0x00000011)
Kojto 93:e188a91d3eaa 555 #define TIM_DMABase_DCR (0x00000012)
Kojto 93:e188a91d3eaa 556 #define TIM_DMABase_CCMR3 (0x00000015)
Kojto 93:e188a91d3eaa 557 #define TIM_DMABase_CCR5 (0x00000016)
Kojto 93:e188a91d3eaa 558 #define TIM_DMABase_CCR6 (0x00000017)
Kojto 93:e188a91d3eaa 559 #define TIM_DMABase_OR (0x00000018)
Kojto 93:e188a91d3eaa 560 #define IS_TIM_DMA_BASE(BASE) (((BASE) == TIM_DMABase_CR1) || \
Kojto 93:e188a91d3eaa 561 ((BASE) == TIM_DMABase_CR2) || \
Kojto 93:e188a91d3eaa 562 ((BASE) == TIM_DMABase_SMCR) || \
Kojto 93:e188a91d3eaa 563 ((BASE) == TIM_DMABase_DIER) || \
Kojto 93:e188a91d3eaa 564 ((BASE) == TIM_DMABase_SR) || \
Kojto 93:e188a91d3eaa 565 ((BASE) == TIM_DMABase_EGR) || \
Kojto 93:e188a91d3eaa 566 ((BASE) == TIM_DMABase_CCMR1) || \
Kojto 93:e188a91d3eaa 567 ((BASE) == TIM_DMABase_CCMR2) || \
Kojto 93:e188a91d3eaa 568 ((BASE) == TIM_DMABase_CCER) || \
Kojto 93:e188a91d3eaa 569 ((BASE) == TIM_DMABase_CNT) || \
Kojto 93:e188a91d3eaa 570 ((BASE) == TIM_DMABase_PSC) || \
Kojto 93:e188a91d3eaa 571 ((BASE) == TIM_DMABase_ARR) || \
Kojto 93:e188a91d3eaa 572 ((BASE) == TIM_DMABase_RCR) || \
Kojto 93:e188a91d3eaa 573 ((BASE) == TIM_DMABase_CCR1) || \
Kojto 93:e188a91d3eaa 574 ((BASE) == TIM_DMABase_CCR2) || \
Kojto 93:e188a91d3eaa 575 ((BASE) == TIM_DMABase_CCR3) || \
Kojto 93:e188a91d3eaa 576 ((BASE) == TIM_DMABase_CCR4) || \
Kojto 93:e188a91d3eaa 577 ((BASE) == TIM_DMABase_BDTR) || \
Kojto 93:e188a91d3eaa 578 ((BASE) == TIM_DMABase_CCMR3) || \
Kojto 93:e188a91d3eaa 579 ((BASE) == TIM_DMABase_CCR5) || \
Kojto 93:e188a91d3eaa 580 ((BASE) == TIM_DMABase_CCR6) || \
Kojto 93:e188a91d3eaa 581 ((BASE) == TIM_DMABase_OR))
Kojto 93:e188a91d3eaa 582 /**
Kojto 93:e188a91d3eaa 583 * @}
Kojto 93:e188a91d3eaa 584 */
Kojto 93:e188a91d3eaa 585 #endif /* STM32F302xE || STM32F303xE || STM32F398xx || */
Kojto 93:e188a91d3eaa 586 /* STM32F302xC || STM32F303xC || STM32F358xx || */
Kojto 93:e188a91d3eaa 587 /* STM32F303x8 || STM32F334x8 || STM32F328xx || */
Kojto 93:e188a91d3eaa 588 /* STM32F301x8 || STM32F302x8 || STM32F318xx */
Kojto 93:e188a91d3eaa 589
Kojto 93:e188a91d3eaa 590 #if defined(STM32F302xE) || \
Kojto 93:e188a91d3eaa 591 defined(STM32F302xC) || \
Kojto 93:e188a91d3eaa 592 defined(STM32F303x8) || defined(STM32F334x8) || defined(STM32F328xx) || \
Kojto 93:e188a91d3eaa 593 defined(STM32F301x8) || defined(STM32F302x8) || defined(STM32F318xx)
Kojto 93:e188a91d3eaa 594 /** @defgroup TIMEx_Remap TIM Extended Remapping
Kojto 93:e188a91d3eaa 595 * @{
Kojto 93:e188a91d3eaa 596 */
Kojto 93:e188a91d3eaa 597 #define TIM_TIM1_ADC1_NONE (0x00000000) /* !< TIM1_ETR is not connected to any AWD (analog watchdog)*/
Kojto 93:e188a91d3eaa 598 #define TIM_TIM1_ADC1_AWD1 (0x00000001) /* !< TIM1_ETR is connected to ADC1 AWD1 */
Kojto 93:e188a91d3eaa 599 #define TIM_TIM1_ADC1_AWD2 (0x00000002) /* !< TIM1_ETR is connected to ADC1 AWD2 */
Kojto 93:e188a91d3eaa 600 #define TIM_TIM1_ADC1_AWD3 (0x00000003) /* !< TIM1_ETR is connected to ADC1 AWD3 */
Kojto 93:e188a91d3eaa 601 #define TIM_TIM16_GPIO (0x00000000) /* !< TIM16 TI1 is connected to GPIO */
Kojto 93:e188a91d3eaa 602 #define TIM_TIM16_RTC (0x00000001) /* !< TIM16 TI1 is connected to RTC_clock */
Kojto 93:e188a91d3eaa 603 #define TIM_TIM16_HSE (0x00000002) /* !< TIM16 TI1 is connected to HSE/32 */
Kojto 93:e188a91d3eaa 604 #define TIM_TIM16_MCO (0x00000003) /* !< TIM16 TI1 is connected to MCO */
Kojto 93:e188a91d3eaa 605
Kojto 93:e188a91d3eaa 606 #define IS_TIM_REMAP(REMAP) (((REMAP) == TIM_TIM1_ADC1_NONE) ||\
Kojto 93:e188a91d3eaa 607 ((REMAP) == TIM_TIM1_ADC1_AWD1) ||\
Kojto 93:e188a91d3eaa 608 ((REMAP) == TIM_TIM1_ADC1_AWD2) ||\
Kojto 93:e188a91d3eaa 609 ((REMAP) == TIM_TIM1_ADC1_AWD3) ||\
Kojto 93:e188a91d3eaa 610 ((REMAP) == TIM_TIM16_GPIO) ||\
Kojto 93:e188a91d3eaa 611 ((REMAP) == TIM_TIM16_RTC) ||\
Kojto 93:e188a91d3eaa 612 ((REMAP) == TIM_TIM16_HSE) ||\
Kojto 93:e188a91d3eaa 613 ((REMAP) == TIM_TIM16_MCO))
Kojto 93:e188a91d3eaa 614 /**
Kojto 93:e188a91d3eaa 615 * @}
Kojto 93:e188a91d3eaa 616 */
Kojto 93:e188a91d3eaa 617 #endif /* STM32F302xE || */
Kojto 93:e188a91d3eaa 618 /* STM32F302xC || */
Kojto 93:e188a91d3eaa 619 /* STM32F303x8 || STM32F334x8 || STM32F328xx || */
Kojto 93:e188a91d3eaa 620 /* STM32F301x8 || STM32F302x8 || STM32F318xx || */
Kojto 93:e188a91d3eaa 621
Kojto 93:e188a91d3eaa 622 #if defined(STM32F303xC) || defined(STM32F358xx)
Kojto 93:e188a91d3eaa 623 /** @defgroup TIMEx_Remap TIM Extended Remapping 1
Kojto 93:e188a91d3eaa 624 * @{
Kojto 93:e188a91d3eaa 625 */
Kojto 93:e188a91d3eaa 626 #define TIM_TIM1_ADC1_NONE (0x00000000) /* !< TIM1_ETR is not connected to any AWD (analog watchdog)*/
Kojto 93:e188a91d3eaa 627 #define TIM_TIM1_ADC1_AWD1 (0x00000001) /* !< TIM1_ETR is connected to ADC1 AWD1 */
Kojto 93:e188a91d3eaa 628 #define TIM_TIM1_ADC1_AWD2 (0x00000002) /* !< TIM1_ETR is connected to ADC1 AWD2 */
Kojto 93:e188a91d3eaa 629 #define TIM_TIM1_ADC1_AWD3 (0x00000003) /* !< TIM1_ETR is connected to ADC1 AWD3 */
Kojto 93:e188a91d3eaa 630 #define TIM_TIM8_ADC2_NONE (0x00000000) /* !< TIM8_ETR is not connected to any AWD (analog watchdog) */
Kojto 93:e188a91d3eaa 631 #define TIM_TIM8_ADC2_AWD1 (0x00000001) /* !< TIM8_ETR is connected to ADC2 AWD1 */
Kojto 93:e188a91d3eaa 632 #define TIM_TIM8_ADC2_AWD2 (0x00000002) /* !< TIM8_ETR is connected to ADC2 AWD2 */
Kojto 93:e188a91d3eaa 633 #define TIM_TIM8_ADC2_AWD3 (0x00000003) /* !< TIM8_ETR is connected to ADC2 AWD3 */
Kojto 93:e188a91d3eaa 634 #define TIM_TIM16_GPIO (0x00000000) /* !< TIM16 TI1 is connected to GPIO */
Kojto 93:e188a91d3eaa 635 #define TIM_TIM16_RTC (0x00000001) /* !< TIM16 TI1 is connected to RTC_clock */
Kojto 93:e188a91d3eaa 636 #define TIM_TIM16_HSE (0x00000002) /* !< TIM16 TI1 is connected to HSE/32 */
Kojto 93:e188a91d3eaa 637 #define TIM_TIM16_MCO (0x00000003) /* !< TIM16 TI1 is connected to MCO */
Kojto 93:e188a91d3eaa 638
Kojto 93:e188a91d3eaa 639 #define IS_TIM_REMAP(REMAP1) (((REMAP1) == TIM_TIM1_ADC1_NONE) ||\
Kojto 93:e188a91d3eaa 640 ((REMAP1) == TIM_TIM1_ADC1_AWD1) ||\
Kojto 93:e188a91d3eaa 641 ((REMAP1) == TIM_TIM1_ADC1_AWD2) ||\
Kojto 93:e188a91d3eaa 642 ((REMAP1) == TIM_TIM1_ADC1_AWD3) ||\
Kojto 93:e188a91d3eaa 643 ((REMAP1) == TIM_TIM8_ADC2_NONE) ||\
Kojto 93:e188a91d3eaa 644 ((REMAP1) == TIM_TIM8_ADC2_AWD1) ||\
Kojto 93:e188a91d3eaa 645 ((REMAP1) == TIM_TIM8_ADC2_AWD2) ||\
Kojto 93:e188a91d3eaa 646 ((REMAP1) == TIM_TIM8_ADC2_AWD3) ||\
Kojto 93:e188a91d3eaa 647 ((REMAP1) == TIM_TIM16_GPIO) ||\
Kojto 93:e188a91d3eaa 648 ((REMAP1) == TIM_TIM16_RTC) ||\
Kojto 93:e188a91d3eaa 649 ((REMAP1) == TIM_TIM16_HSE) ||\
Kojto 93:e188a91d3eaa 650 ((REMAP1) == TIM_TIM16_MCO))
Kojto 93:e188a91d3eaa 651 /**
Kojto 93:e188a91d3eaa 652 * @}
Kojto 93:e188a91d3eaa 653 */
Kojto 93:e188a91d3eaa 654
Kojto 93:e188a91d3eaa 655 /** @defgroup TIMEx_Remap2 TIM Extended Remapping 2
Kojto 93:e188a91d3eaa 656 * @{
Kojto 93:e188a91d3eaa 657 */
Kojto 93:e188a91d3eaa 658 #define TIM_TIM1_ADC4_NONE (0x00000000) /* !< TIM1_ETR is not connected to any AWD (analog watchdog)*/
Kojto 93:e188a91d3eaa 659 #define TIM_TIM1_ADC4_AWD1 (0x00000004) /* !< TIM1_ETR is connected to ADC4 AWD1 */
Kojto 93:e188a91d3eaa 660 #define TIM_TIM1_ADC4_AWD2 (0x00000008) /* !< TIM1_ETR is connected to ADC4 AWD2 */
Kojto 93:e188a91d3eaa 661 #define TIM_TIM1_ADC4_AWD3 (0x0000000C) /* !< TIM1_ETR is connected to ADC4 AWD3 */
Kojto 93:e188a91d3eaa 662 #define TIM_TIM8_ADC3_NONE (0x00000000) /* !< TIM8_ETR is not connected to any AWD (analog watchdog) */
Kojto 93:e188a91d3eaa 663 #define TIM_TIM8_ADC3_AWD1 (0x00000004) /* !< TIM8_ETR is connected to ADC3 AWD1 */
Kojto 93:e188a91d3eaa 664 #define TIM_TIM8_ADC3_AWD2 (0x00000008) /* !< TIM8_ETR is connected to ADC3 AWD2 */
Kojto 93:e188a91d3eaa 665 #define TIM_TIM8_ADC3_AWD3 (0x0000000C) /* !< TIM8_ETR is connected to ADC3 AWD3 */
Kojto 93:e188a91d3eaa 666 #define TIM_TIM16_NONE (0x00000000) /* !< Non significant value for TIM16 */
Kojto 93:e188a91d3eaa 667
Kojto 93:e188a91d3eaa 668 #define IS_TIM_REMAP2(REMAP2) (((REMAP2) == TIM_TIM1_ADC4_NONE) ||\
Kojto 93:e188a91d3eaa 669 ((REMAP2) == TIM_TIM1_ADC4_AWD1) ||\
Kojto 93:e188a91d3eaa 670 ((REMAP2) == TIM_TIM1_ADC4_AWD2) ||\
Kojto 93:e188a91d3eaa 671 ((REMAP2) == TIM_TIM1_ADC4_AWD3) ||\
Kojto 93:e188a91d3eaa 672 ((REMAP2) == TIM_TIM8_ADC3_NONE) ||\
Kojto 93:e188a91d3eaa 673 ((REMAP2) == TIM_TIM8_ADC3_AWD1) ||\
Kojto 93:e188a91d3eaa 674 ((REMAP2) == TIM_TIM8_ADC3_AWD2) ||\
Kojto 93:e188a91d3eaa 675 ((REMAP2) == TIM_TIM8_ADC3_AWD3) ||\
Kojto 93:e188a91d3eaa 676 ((REMAP2) == TIM_TIM16_NONE))
Kojto 93:e188a91d3eaa 677 /**
Kojto 93:e188a91d3eaa 678 * @}
Kojto 93:e188a91d3eaa 679 */
Kojto 93:e188a91d3eaa 680 #endif /* STM32F303xC || STM32F358xx */
Kojto 93:e188a91d3eaa 681
Kojto 93:e188a91d3eaa 682 #if defined(STM32F303xE) || defined(STM32F398xx)
Kojto 93:e188a91d3eaa 683 /** @defgroup TIMEx_Remap TIM Extended Remapping 1
Kojto 93:e188a91d3eaa 684 * @{
Kojto 93:e188a91d3eaa 685 */
Kojto 93:e188a91d3eaa 686 #define TIM_TIM1_ADC1_NONE (0x00000000) /* !< TIM1_ETR is not connected to any AWD (analog watchdog)*/
Kojto 93:e188a91d3eaa 687 #define TIM_TIM1_ADC1_AWD1 (0x00000001) /* !< TIM1_ETR is connected to ADC1 AWD1 */
Kojto 93:e188a91d3eaa 688 #define TIM_TIM1_ADC1_AWD2 (0x00000002) /* !< TIM1_ETR is connected to ADC1 AWD2 */
Kojto 93:e188a91d3eaa 689 #define TIM_TIM1_ADC1_AWD3 (0x00000003) /* !< TIM1_ETR is connected to ADC1 AWD3 */
Kojto 93:e188a91d3eaa 690 #define TIM_TIM8_ADC2_NONE (0x00000000) /* !< TIM8_ETR is not connected to any AWD (analog watchdog) */
Kojto 93:e188a91d3eaa 691 #define TIM_TIM8_ADC2_AWD1 (0x00000001) /* !< TIM8_ETR is connected to ADC2 AWD1 */
Kojto 93:e188a91d3eaa 692 #define TIM_TIM8_ADC2_AWD2 (0x00000002) /* !< TIM8_ETR is connected to ADC2 AWD2 */
Kojto 93:e188a91d3eaa 693 #define TIM_TIM8_ADC2_AWD3 (0x00000003) /* !< TIM8_ETR is connected to ADC2 AWD3 */
Kojto 93:e188a91d3eaa 694 #define TIM_TIM16_GPIO (0x00000000) /* !< TIM16 TI1 is connected to GPIO */
Kojto 93:e188a91d3eaa 695 #define TIM_TIM16_RTC (0x00000001) /* !< TIM16 TI1 is connected to RTC_clock */
Kojto 93:e188a91d3eaa 696 #define TIM_TIM16_HSE (0x00000002) /* !< TIM16 TI1 is connected to HSE/32 */
Kojto 93:e188a91d3eaa 697 #define TIM_TIM16_MCO (0x00000003) /* !< TIM16 TI1 is connected to MCO */
Kojto 93:e188a91d3eaa 698 #define TIM_TIM20_ADC3_NONE (0x00000000) /* !< TIM20_ETR is not connected to any AWD (analog watchdog) */
Kojto 93:e188a91d3eaa 699 #define TIM_TIM20_ADC3_AWD1 (0x00000001) /* !< TIM20_ETR is connected to ADC3 AWD1 */
Kojto 93:e188a91d3eaa 700 #define TIM_TIM20_ADC3_AWD2 (0x00000002) /* !< TIM20_ETR is connected to ADC3 AWD2 */
Kojto 93:e188a91d3eaa 701 #define TIM_TIM20_ADC3_AWD3 (0x00000003) /* !< TIM20_ETR is connected to ADC3 AWD3 */
Kojto 93:e188a91d3eaa 702
Kojto 93:e188a91d3eaa 703 #define IS_TIM_REMAP(REMAP1) (((REMAP1) == TIM_TIM1_ADC1_NONE) ||\
Kojto 93:e188a91d3eaa 704 ((REMAP1) == TIM_TIM1_ADC1_AWD1) ||\
Kojto 93:e188a91d3eaa 705 ((REMAP1) == TIM_TIM1_ADC1_AWD2) ||\
Kojto 93:e188a91d3eaa 706 ((REMAP1) == TIM_TIM1_ADC1_AWD3) ||\
Kojto 93:e188a91d3eaa 707 ((REMAP1) == TIM_TIM8_ADC2_NONE) ||\
Kojto 93:e188a91d3eaa 708 ((REMAP1) == TIM_TIM8_ADC2_AWD1) ||\
Kojto 93:e188a91d3eaa 709 ((REMAP1) == TIM_TIM8_ADC2_AWD2) ||\
Kojto 93:e188a91d3eaa 710 ((REMAP1) == TIM_TIM8_ADC2_AWD3) ||\
Kojto 93:e188a91d3eaa 711 ((REMAP1) == TIM_TIM16_GPIO) ||\
Kojto 93:e188a91d3eaa 712 ((REMAP1) == TIM_TIM16_RTC) ||\
Kojto 93:e188a91d3eaa 713 ((REMAP1) == TIM_TIM16_HSE) ||\
Kojto 93:e188a91d3eaa 714 ((REMAP1) == TIM_TIM16_MCO) ||\
Kojto 93:e188a91d3eaa 715 ((REMAP1) == TIM_TIM20_ADC3_NONE) ||\
Kojto 93:e188a91d3eaa 716 ((REMAP1) == TIM_TIM20_ADC3_AWD1) ||\
Kojto 93:e188a91d3eaa 717 ((REMAP1) == TIM_TIM20_ADC3_AWD2) ||\
Kojto 93:e188a91d3eaa 718 ((REMAP1) == TIM_TIM20_ADC3_AWD3))
Kojto 93:e188a91d3eaa 719 /**
Kojto 93:e188a91d3eaa 720 * @}
Kojto 93:e188a91d3eaa 721 */
Kojto 93:e188a91d3eaa 722
Kojto 93:e188a91d3eaa 723 /** @defgroup TIMEx_Remap2 TIM Extended Remapping 2
Kojto 93:e188a91d3eaa 724 * @{
Kojto 93:e188a91d3eaa 725 */
Kojto 93:e188a91d3eaa 726 #define TIM_TIM1_ADC4_NONE (0x00000000) /* !< TIM1_ETR is not connected to any AWD (analog watchdog)*/
Kojto 93:e188a91d3eaa 727 #define TIM_TIM1_ADC4_AWD1 (0x00000004) /* !< TIM1_ETR is connected to ADC4 AWD1 */
Kojto 93:e188a91d3eaa 728 #define TIM_TIM1_ADC4_AWD2 (0x00000008) /* !< TIM1_ETR is connected to ADC4 AWD2 */
Kojto 93:e188a91d3eaa 729 #define TIM_TIM1_ADC4_AWD3 (0x0000000C) /* !< TIM1_ETR is connected to ADC4 AWD3 */
Kojto 93:e188a91d3eaa 730 #define TIM_TIM8_ADC3_NONE (0x00000000) /* !< TIM8_ETR is not connected to any AWD (analog watchdog) */
Kojto 93:e188a91d3eaa 731 #define TIM_TIM8_ADC3_AWD1 (0x00000004) /* !< TIM8_ETR is connected to ADC3 AWD1 */
Kojto 93:e188a91d3eaa 732 #define TIM_TIM8_ADC3_AWD2 (0x00000008) /* !< TIM8_ETR is connected to ADC3 AWD2 */
Kojto 93:e188a91d3eaa 733 #define TIM_TIM8_ADC3_AWD3 (0x0000000C) /* !< TIM8_ETR is connected to ADC3 AWD3 */
Kojto 93:e188a91d3eaa 734 #define TIM_TIM16_NONE (0x00000000) /* !< Non significant value for TIM16 */
Kojto 93:e188a91d3eaa 735 #define TIM_TIM20_ADC4_NONE (0x00000000) /* !< TIM20_ETR is not connected to any AWD (analog watchdog) */
Kojto 93:e188a91d3eaa 736 #define TIM_TIM20_ADC4_AWD1 (0x00000004) /* !< TIM20_ETR is connected to ADC4 AWD1 */
Kojto 93:e188a91d3eaa 737 #define TIM_TIM20_ADC4_AWD2 (0x00000008) /* !< TIM20_ETR is connected to ADC4 AWD2 */
Kojto 93:e188a91d3eaa 738 #define TIM_TIM20_ADC4_AWD3 (0x0000000C) /* !< TIM20_ETR is connected to ADC4 AWD3 */
Kojto 93:e188a91d3eaa 739
Kojto 93:e188a91d3eaa 740 #define IS_TIM_REMAP2(REMAP2) (((REMAP2) == TIM_TIM1_ADC4_NONE) ||\
Kojto 93:e188a91d3eaa 741 ((REMAP2) == TIM_TIM1_ADC4_AWD1) ||\
Kojto 93:e188a91d3eaa 742 ((REMAP2) == TIM_TIM1_ADC4_AWD2) ||\
Kojto 93:e188a91d3eaa 743 ((REMAP2) == TIM_TIM1_ADC4_AWD3) ||\
Kojto 93:e188a91d3eaa 744 ((REMAP2) == TIM_TIM8_ADC3_NONE) ||\
Kojto 93:e188a91d3eaa 745 ((REMAP2) == TIM_TIM8_ADC3_AWD1) ||\
Kojto 93:e188a91d3eaa 746 ((REMAP2) == TIM_TIM8_ADC3_AWD2) ||\
Kojto 93:e188a91d3eaa 747 ((REMAP2) == TIM_TIM8_ADC3_AWD3) ||\
Kojto 93:e188a91d3eaa 748 ((REMAP2) == TIM_TIM16_NONE) ||\
Kojto 93:e188a91d3eaa 749 ((REMAP2) == TIM_TIM20_ADC4_NONE) ||\
Kojto 93:e188a91d3eaa 750 ((REMAP2) == TIM_TIM20_ADC4_AWD1) ||\
Kojto 93:e188a91d3eaa 751 ((REMAP2) == TIM_TIM20_ADC4_AWD2) ||\
Kojto 93:e188a91d3eaa 752 ((REMAP2) == TIM_TIM20_ADC4_AWD3))
Kojto 93:e188a91d3eaa 753 /**
Kojto 93:e188a91d3eaa 754 * @}
Kojto 93:e188a91d3eaa 755 */
Kojto 93:e188a91d3eaa 756 #endif /* STM32F303xE || STM32F398xx */
Kojto 93:e188a91d3eaa 757
Kojto 93:e188a91d3eaa 758
Kojto 93:e188a91d3eaa 759 #if defined(STM32F373xC) || defined(STM32F378xx)
Kojto 93:e188a91d3eaa 760 /** @defgroup TIMEx_Remap TIM Extended remapping
Kojto 93:e188a91d3eaa 761 * @{
Kojto 93:e188a91d3eaa 762 */
Kojto 93:e188a91d3eaa 763
Kojto 93:e188a91d3eaa 764 #define TIM_TIM2_TIM8_TRGO (0x00000000) /*!< TIM8 TRGOUT is connected to TIM2_ITR1 */
Kojto 93:e188a91d3eaa 765 #define TIM_TIM2_ETH_PTP (0x00000400) /*!< PTP trigger output is connected to TIM2_ITR1 */
Kojto 93:e188a91d3eaa 766 #define TIM_TIM2_USBFS_SOF (0x00000800) /*!< OTG FS SOF is connected to the TIM2_ITR1 input */
Kojto 93:e188a91d3eaa 767 #define TIM_TIM2_USBHS_SOF (0x00000C00) /*!< OTG HS SOF is connected to the TIM2_ITR1 input */
Kojto 93:e188a91d3eaa 768 #define TIM_TIM14_GPIO (0x00000000) /* !< TIM14 TI1 is connected to GPIO */
Kojto 93:e188a91d3eaa 769 #define TIM_TIM14_RTC (0x00000001) /* !< TIM14 TI1 is connected to RTC_clock */
Kojto 93:e188a91d3eaa 770 #define TIM_TIM14_HSE (0x00000002) /* !< TIM14 TI1 is connected to HSE/32 */
Kojto 93:e188a91d3eaa 771 #define TIM_TIM14_MCO (0x00000003) /* !< TIM14 TI1 is connected to MCO */
Kojto 93:e188a91d3eaa 772
Kojto 93:e188a91d3eaa 773 #define IS_TIM_REMAP(REMAP) (((REMAP) == TIM_TIM2_TIM8_TRGO) ||\
Kojto 93:e188a91d3eaa 774 ((REMAP) == TIM_TIM2_ETH_PTP) ||\
Kojto 93:e188a91d3eaa 775 ((REMAP) == TIM_TIM2_USBFS_SOF) ||\
Kojto 93:e188a91d3eaa 776 ((REMAP) == TIM_TIM2_USBHS_SOF) ||\
Kojto 93:e188a91d3eaa 777 ((REMAP) == TIM_TIM14_GPIO) ||\
Kojto 93:e188a91d3eaa 778 ((REMAP) == TIM_TIM14_RTC) ||\
Kojto 93:e188a91d3eaa 779 ((REMAP) == TIM_TIM14_HSE) ||\
Kojto 93:e188a91d3eaa 780 ((REMAP) == TIM_TIM14_MCO))
Kojto 93:e188a91d3eaa 781
Kojto 93:e188a91d3eaa 782 /**
Kojto 93:e188a91d3eaa 783 * @}
Kojto 93:e188a91d3eaa 784 */
Kojto 93:e188a91d3eaa 785 #endif /* STM32F373xC || STM32F378xx */
Kojto 93:e188a91d3eaa 786
Kojto 93:e188a91d3eaa 787 #if defined(STM32F302xE) || defined(STM32F303xE) || defined(STM32F398xx) || \
Kojto 93:e188a91d3eaa 788 defined(STM32F302xC) || defined(STM32F303xC) || defined(STM32F358xx) || \
Kojto 93:e188a91d3eaa 789 defined(STM32F303x8) || defined(STM32F334x8) || defined(STM32F328xx) || \
Kojto 93:e188a91d3eaa 790 defined(STM32F301x8) || defined(STM32F302x8) || defined(STM32F318xx)
Kojto 93:e188a91d3eaa 791 /** @defgroup TIMEx_Group_Channel5 Group Channel 5 and Channel 1, 2 or 3
Kojto 93:e188a91d3eaa 792 * @{
Kojto 93:e188a91d3eaa 793 */
Kojto 93:e188a91d3eaa 794 #define TIM_GROUPCH5_NONE (uint32_t)0x00000000 /* !< No effect of OC5REF on OC1REFC, OC2REFC and OC3REFC */
Kojto 93:e188a91d3eaa 795 #define TIM_GROUPCH5_OC1REFC (TIM_CCR5_GC5C1) /* !< OC1REFC is the logical AND of OC1REFC and OC5REF */
Kojto 93:e188a91d3eaa 796 #define TIM_GROUPCH5_OC2REFC (TIM_CCR5_GC5C2) /* !< OC2REFC is the logical AND of OC2REFC and OC5REF */
Kojto 93:e188a91d3eaa 797 #define TIM_GROUPCH5_OC3REFC (TIM_CCR5_GC5C3) /* !< OC3REFC is the logical AND of OC3REFC and OC5REF */
Kojto 93:e188a91d3eaa 798
Kojto 93:e188a91d3eaa 799 #define IS_TIM_GROUPCH5(OCREF) ((((OCREF) & 0x1FFFFFFF) == 0x00000000))
Kojto 93:e188a91d3eaa 800 /**
Kojto 93:e188a91d3eaa 801 * @}
Kojto 93:e188a91d3eaa 802 */
Kojto 93:e188a91d3eaa 803 #endif /* STM32F302xE || STM32F303xE || STM32F398xx || */
Kojto 93:e188a91d3eaa 804 /* STM32F302xC || STM32F303xC || STM32F358xx || */
Kojto 93:e188a91d3eaa 805 /* STM32F303x8 || STM32F334x8 || STM32F328xx || */
Kojto 93:e188a91d3eaa 806 /* STM32F301x8 || STM32F302x8 || STM32F318xx */
Kojto 93:e188a91d3eaa 807
Kojto 93:e188a91d3eaa 808 /** @defgroup TIM_Clock_Filter TIM Clock Filter
Kojto 93:e188a91d3eaa 809 * @{
Kojto 93:e188a91d3eaa 810 */
Kojto 93:e188a91d3eaa 811 #define IS_TIM_DEADTIME(DEADTIME) ((DEADTIME) <= 0xFF)
Kojto 93:e188a91d3eaa 812 /**
Kojto 93:e188a91d3eaa 813 * @}
Kojto 93:e188a91d3eaa 814 */
Kojto 93:e188a91d3eaa 815
Kojto 93:e188a91d3eaa 816 /**
Kojto 93:e188a91d3eaa 817 * @}
Kojto 93:e188a91d3eaa 818 */
Kojto 93:e188a91d3eaa 819
Kojto 93:e188a91d3eaa 820 /* Exported macro ------------------------------------------------------------*/
Kojto 93:e188a91d3eaa 821 /** @defgroup TIMEx_Exported_Macros TIM Extended Exported Macros
Kojto 93:e188a91d3eaa 822 * @{
Kojto 93:e188a91d3eaa 823 */
Kojto 93:e188a91d3eaa 824
Kojto 93:e188a91d3eaa 825 #if defined(STM32F373xC) || defined(STM32F378xx)
Kojto 93:e188a91d3eaa 826 /**
Kojto 93:e188a91d3eaa 827 * @brief Sets the TIM Capture Compare Register value on runtime without
Kojto 93:e188a91d3eaa 828 * calling another time ConfigChannel function.
Kojto 93:e188a91d3eaa 829 * @param __HANDLE__: TIM handle.
Kojto 93:e188a91d3eaa 830 * @param __CHANNEL__ : TIM Channels to be configured.
Kojto 93:e188a91d3eaa 831 * This parameter can be one of the following values:
Kojto 93:e188a91d3eaa 832 * @arg TIM_CHANNEL_1: TIM Channel 1 selected
Kojto 93:e188a91d3eaa 833 * @arg TIM_CHANNEL_2: TIM Channel 2 selected
Kojto 93:e188a91d3eaa 834 * @arg TIM_CHANNEL_3: TIM Channel 3 selected
Kojto 93:e188a91d3eaa 835 * @arg TIM_CHANNEL_4: TIM Channel 4 selected
Kojto 93:e188a91d3eaa 836 * @param __COMPARE__: specifies the Capture Compare register new value.
Kojto 93:e188a91d3eaa 837 * @retval None
Kojto 93:e188a91d3eaa 838 */
Kojto 93:e188a91d3eaa 839 #define __HAL_TIM_SetCompare(__HANDLE__, __CHANNEL__, __COMPARE__) \
Kojto 93:e188a91d3eaa 840 (*(__IO uint32_t *)(&((__HANDLE__)->Instance->CCR1) + ((__CHANNEL__) >> 2)) = (__COMPARE__))
Kojto 93:e188a91d3eaa 841
Kojto 93:e188a91d3eaa 842 /**
Kojto 93:e188a91d3eaa 843 * @brief Gets the TIM Capture Compare Register value on runtime
Kojto 93:e188a91d3eaa 844 * @param __HANDLE__: TIM handle.
Kojto 93:e188a91d3eaa 845 * @param __CHANNEL__ : TIM Channel associated with the capture compare register
Kojto 93:e188a91d3eaa 846 * This parameter can be one of the following values:
Kojto 93:e188a91d3eaa 847 * @arg TIM_CHANNEL_1: get capture/compare 1 register value
Kojto 93:e188a91d3eaa 848 * @arg TIM_CHANNEL_2: get capture/compare 2 register value
Kojto 93:e188a91d3eaa 849 * @arg TIM_CHANNEL_3: get capture/compare 3 register value
Kojto 93:e188a91d3eaa 850 * @arg TIM_CHANNEL_4: get capture/compare 4 register value
Kojto 93:e188a91d3eaa 851 * @retval None
Kojto 93:e188a91d3eaa 852 */
Kojto 93:e188a91d3eaa 853 #define __HAL_TIM_GetCompare(__HANDLE__, __CHANNEL__) \
Kojto 93:e188a91d3eaa 854 (*(__IO uint32_t *)(&((__HANDLE__)->Instance->CCR1) + ((__CHANNEL__) >> 2)))
Kojto 93:e188a91d3eaa 855 #endif /* STM32F373xC || STM32F378xx */
Kojto 93:e188a91d3eaa 856
Kojto 93:e188a91d3eaa 857 #if defined(STM32F302xE) || defined(STM32F303xE) || defined(STM32F398xx) || \
Kojto 93:e188a91d3eaa 858 defined(STM32F302xC) || defined(STM32F303xC) || defined(STM32F358xx) || \
Kojto 93:e188a91d3eaa 859 defined(STM32F303x8) || defined(STM32F334x8) || defined(STM32F328xx) || \
Kojto 93:e188a91d3eaa 860 defined(STM32F301x8) || defined(STM32F302x8) || defined(STM32F318xx)
Kojto 93:e188a91d3eaa 861 /**
Kojto 93:e188a91d3eaa 862 * @brief Sets the TIM Capture Compare Register value on runtime without
Kojto 93:e188a91d3eaa 863 * calling another time ConfigChannel function.
Kojto 93:e188a91d3eaa 864 * @param __HANDLE__: TIM handle.
Kojto 93:e188a91d3eaa 865 * @param __CHANNEL__ : TIM Channels to be configured.
Kojto 93:e188a91d3eaa 866 * This parameter can be one of the following values:
Kojto 93:e188a91d3eaa 867 * @arg TIM_CHANNEL_1: TIM Channel 1 selected
Kojto 93:e188a91d3eaa 868 * @arg TIM_CHANNEL_2: TIM Channel 2 selected
Kojto 93:e188a91d3eaa 869 * @arg TIM_CHANNEL_3: TIM Channel 3 selected
Kojto 93:e188a91d3eaa 870 * @arg TIM_CHANNEL_4: TIM Channel 4 selected
Kojto 93:e188a91d3eaa 871 * @arg TIM_CHANNEL_5: TIM Channel 5 selected
Kojto 93:e188a91d3eaa 872 * @arg TIM_CHANNEL_6: TIM Channel 6 selected
Kojto 93:e188a91d3eaa 873 * @param __COMPARE__: specifies the Capture Compare register new value.
Kojto 93:e188a91d3eaa 874 * @retval None
Kojto 93:e188a91d3eaa 875 */
Kojto 93:e188a91d3eaa 876 #define __HAL_TIM_SetCompare(__HANDLE__, __CHANNEL__, __COMPARE__) \
Kojto 93:e188a91d3eaa 877 (((__CHANNEL__) == TIM_CHANNEL_1) ? ((__HANDLE__)->Instance->CCR1 = (__COMPARE__)) :\
Kojto 93:e188a91d3eaa 878 ((__CHANNEL__) == TIM_CHANNEL_2) ? ((__HANDLE__)->Instance->CCR2 = (__COMPARE__)) :\
Kojto 93:e188a91d3eaa 879 ((__CHANNEL__) == TIM_CHANNEL_3) ? ((__HANDLE__)->Instance->CCR3 = (__COMPARE__)) :\
Kojto 93:e188a91d3eaa 880 ((__CHANNEL__) == TIM_CHANNEL_4) ? ((__HANDLE__)->Instance->CCR4 = (__COMPARE__)) :\
Kojto 93:e188a91d3eaa 881 ((__CHANNEL__) == TIM_CHANNEL_5) ? ((__HANDLE__)->Instance->CCR5 = (__COMPARE__)) :\
Kojto 93:e188a91d3eaa 882 ((__HANDLE__)->Instance->CCR6 |= (__COMPARE__)))
Kojto 93:e188a91d3eaa 883
Kojto 93:e188a91d3eaa 884 /**
Kojto 93:e188a91d3eaa 885 * @brief Gets the TIM Capture Compare Register value on runtime
Kojto 93:e188a91d3eaa 886 * @param __HANDLE__: TIM handle.
Kojto 93:e188a91d3eaa 887 * @param __CHANNEL__ : TIM Channel associated with the capture compare register
Kojto 93:e188a91d3eaa 888 * This parameter can be one of the following values:
Kojto 93:e188a91d3eaa 889 * @arg TIM_CHANNEL_1: get capture/compare 1 register value
Kojto 93:e188a91d3eaa 890 * @arg TIM_CHANNEL_2: get capture/compare 2 register value
Kojto 93:e188a91d3eaa 891 * @arg TIM_CHANNEL_3: get capture/compare 3 register value
Kojto 93:e188a91d3eaa 892 * @arg TIM_CHANNEL_4: get capture/compare 4 register value
Kojto 93:e188a91d3eaa 893 * @arg TIM_CHANNEL_5: get capture/compare 5 register value
Kojto 93:e188a91d3eaa 894 * @arg TIM_CHANNEL_6: get capture/compare 6 register value
Kojto 93:e188a91d3eaa 895 * @retval None
Kojto 93:e188a91d3eaa 896 */
Kojto 93:e188a91d3eaa 897 #define __HAL_TIM_GetCompare(__HANDLE__, __CHANNEL__) \
Kojto 93:e188a91d3eaa 898 (((__CHANNEL__) == TIM_CHANNEL_1) ? ((__HANDLE__)->Instance->CCR1) :\
Kojto 93:e188a91d3eaa 899 ((__CHANNEL__) == TIM_CHANNEL_2) ? ((__HANDLE__)->Instance->CCR2) :\
Kojto 93:e188a91d3eaa 900 ((__CHANNEL__) == TIM_CHANNEL_3) ? ((__HANDLE__)->Instance->CCR3) :\
Kojto 93:e188a91d3eaa 901 ((__CHANNEL__) == TIM_CHANNEL_4) ? ((__HANDLE__)->Instance->CCR4) :\
Kojto 93:e188a91d3eaa 902 ((__CHANNEL__) == TIM_CHANNEL_5) ? ((__HANDLE__)->Instance->CCR5) :\
Kojto 93:e188a91d3eaa 903 ((__HANDLE__)->Instance->CCR6))
Kojto 93:e188a91d3eaa 904 #endif /* STM32F302xE || STM32F303xE || STM32F398xx || */
Kojto 93:e188a91d3eaa 905 /* STM32F302xC || STM32F303xC || STM32F358xx || */
Kojto 93:e188a91d3eaa 906 /* STM32F303x8 || STM32F334x8 || STM32F328xx || */
Kojto 93:e188a91d3eaa 907 /* STM32F301x8 || STM32F302x8 || STM32F318xx */
Kojto 93:e188a91d3eaa 908 /**
Kojto 93:e188a91d3eaa 909 * @}
Kojto 93:e188a91d3eaa 910 */
Kojto 93:e188a91d3eaa 911
Kojto 93:e188a91d3eaa 912 /* Exported functions --------------------------------------------------------*/
Kojto 93:e188a91d3eaa 913 /** @addtogroup TIMEx_Exported_Functions TIM Extended Exported Functions
Kojto 93:e188a91d3eaa 914 * @{
Kojto 93:e188a91d3eaa 915 */
Kojto 93:e188a91d3eaa 916
Kojto 93:e188a91d3eaa 917 /** @addtogroup TIMEx_Exported_Functions_Group1 Extended Timer Hall Sensor functions
Kojto 93:e188a91d3eaa 918 * @brief Timer Hall Sensor functions
Kojto 93:e188a91d3eaa 919 * @{
Kojto 93:e188a91d3eaa 920 */
Kojto 93:e188a91d3eaa 921 /* Timer Hall Sensor functions **********************************************/
Kojto 93:e188a91d3eaa 922 HAL_StatusTypeDef HAL_TIMEx_HallSensor_Init(TIM_HandleTypeDef *htim, TIM_HallSensor_InitTypeDef* sConfig);
Kojto 93:e188a91d3eaa 923 HAL_StatusTypeDef HAL_TIMEx_HallSensor_DeInit(TIM_HandleTypeDef *htim);
Kojto 93:e188a91d3eaa 924
Kojto 93:e188a91d3eaa 925 void HAL_TIMEx_HallSensor_MspInit(TIM_HandleTypeDef *htim);
Kojto 93:e188a91d3eaa 926 void HAL_TIMEx_HallSensor_MspDeInit(TIM_HandleTypeDef *htim);
Kojto 93:e188a91d3eaa 927
Kojto 93:e188a91d3eaa 928 /* Blocking mode: Polling */
Kojto 93:e188a91d3eaa 929 HAL_StatusTypeDef HAL_TIMEx_HallSensor_Start(TIM_HandleTypeDef *htim);
Kojto 93:e188a91d3eaa 930 HAL_StatusTypeDef HAL_TIMEx_HallSensor_Stop(TIM_HandleTypeDef *htim);
Kojto 93:e188a91d3eaa 931 /* Non-Blocking mode: Interrupt */
Kojto 93:e188a91d3eaa 932 HAL_StatusTypeDef HAL_TIMEx_HallSensor_Start_IT(TIM_HandleTypeDef *htim);
Kojto 93:e188a91d3eaa 933 HAL_StatusTypeDef HAL_TIMEx_HallSensor_Stop_IT(TIM_HandleTypeDef *htim);
Kojto 93:e188a91d3eaa 934 /* Non-Blocking mode: DMA */
Kojto 93:e188a91d3eaa 935 HAL_StatusTypeDef HAL_TIMEx_HallSensor_Start_DMA(TIM_HandleTypeDef *htim, uint32_t *pData, uint16_t Length);
Kojto 93:e188a91d3eaa 936 HAL_StatusTypeDef HAL_TIMEx_HallSensor_Stop_DMA(TIM_HandleTypeDef *htim);
Kojto 93:e188a91d3eaa 937 /**
Kojto 93:e188a91d3eaa 938 * @}
Kojto 93:e188a91d3eaa 939 */
Kojto 93:e188a91d3eaa 940
Kojto 93:e188a91d3eaa 941 /** @addtogroup TIMEx_Exported_Functions_Group2 Extended Timer Complementary Output Compare functions
Kojto 93:e188a91d3eaa 942 * @brief Timer Complementary Output Compare functions
Kojto 93:e188a91d3eaa 943 * @{
Kojto 93:e188a91d3eaa 944 */
Kojto 93:e188a91d3eaa 945 /* Timer Complementary Output Compare functions *****************************/
Kojto 93:e188a91d3eaa 946 /* Blocking mode: Polling */
Kojto 93:e188a91d3eaa 947 HAL_StatusTypeDef HAL_TIMEx_OCN_Start(TIM_HandleTypeDef *htim, uint32_t Channel);
Kojto 93:e188a91d3eaa 948 HAL_StatusTypeDef HAL_TIMEx_OCN_Stop(TIM_HandleTypeDef *htim, uint32_t Channel);
Kojto 93:e188a91d3eaa 949
Kojto 93:e188a91d3eaa 950 /* Non-Blocking mode: Interrupt */
Kojto 93:e188a91d3eaa 951 HAL_StatusTypeDef HAL_TIMEx_OCN_Start_IT(TIM_HandleTypeDef *htim, uint32_t Channel);
Kojto 93:e188a91d3eaa 952 HAL_StatusTypeDef HAL_TIMEx_OCN_Stop_IT(TIM_HandleTypeDef *htim, uint32_t Channel);
Kojto 93:e188a91d3eaa 953
Kojto 93:e188a91d3eaa 954 /* Non-Blocking mode: DMA */
Kojto 93:e188a91d3eaa 955 HAL_StatusTypeDef HAL_TIMEx_OCN_Start_DMA(TIM_HandleTypeDef *htim, uint32_t Channel, uint32_t *pData, uint16_t Length);
Kojto 93:e188a91d3eaa 956 HAL_StatusTypeDef HAL_TIMEx_OCN_Stop_DMA(TIM_HandleTypeDef *htim, uint32_t Channel);
Kojto 93:e188a91d3eaa 957 /**
Kojto 93:e188a91d3eaa 958 * @}
Kojto 93:e188a91d3eaa 959 */
Kojto 93:e188a91d3eaa 960
Kojto 93:e188a91d3eaa 961 /** @addtogroup TIMEx_Exported_Functions_Group3 Extended Timer Complementary PWM functions
Kojto 93:e188a91d3eaa 962 * @brief Timer Complementary PWM functions
Kojto 93:e188a91d3eaa 963 * @{
Kojto 93:e188a91d3eaa 964 */
Kojto 93:e188a91d3eaa 965 /* Timer Complementary PWM functions ****************************************/
Kojto 93:e188a91d3eaa 966 /* Blocking mode: Polling */
Kojto 93:e188a91d3eaa 967 HAL_StatusTypeDef HAL_TIMEx_PWMN_Start(TIM_HandleTypeDef *htim, uint32_t Channel);
Kojto 93:e188a91d3eaa 968 HAL_StatusTypeDef HAL_TIMEx_PWMN_Stop(TIM_HandleTypeDef *htim, uint32_t Channel);
Kojto 93:e188a91d3eaa 969
Kojto 93:e188a91d3eaa 970 /* Non-Blocking mode: Interrupt */
Kojto 93:e188a91d3eaa 971 HAL_StatusTypeDef HAL_TIMEx_PWMN_Start_IT(TIM_HandleTypeDef *htim, uint32_t Channel);
Kojto 93:e188a91d3eaa 972 HAL_StatusTypeDef HAL_TIMEx_PWMN_Stop_IT(TIM_HandleTypeDef *htim, uint32_t Channel);
Kojto 93:e188a91d3eaa 973 /* Non-Blocking mode: DMA */
Kojto 93:e188a91d3eaa 974 HAL_StatusTypeDef HAL_TIMEx_PWMN_Start_DMA(TIM_HandleTypeDef *htim, uint32_t Channel, uint32_t *pData, uint16_t Length);
Kojto 93:e188a91d3eaa 975 HAL_StatusTypeDef HAL_TIMEx_PWMN_Stop_DMA(TIM_HandleTypeDef *htim, uint32_t Channel);
Kojto 93:e188a91d3eaa 976 /**
Kojto 93:e188a91d3eaa 977 * @}
Kojto 93:e188a91d3eaa 978 */
Kojto 93:e188a91d3eaa 979
Kojto 93:e188a91d3eaa 980 /** @addtogroup TIMEx_Exported_Functions_Group4 Extended Timer Complementary One Pulse functions
Kojto 93:e188a91d3eaa 981 * @brief Timer Complementary One Pulse functions
Kojto 93:e188a91d3eaa 982 * @{
Kojto 93:e188a91d3eaa 983 */
Kojto 93:e188a91d3eaa 984 /* Timer Complementary One Pulse functions **********************************/
Kojto 93:e188a91d3eaa 985 /* Blocking mode: Polling */
Kojto 93:e188a91d3eaa 986 HAL_StatusTypeDef HAL_TIMEx_OnePulseN_Start(TIM_HandleTypeDef *htim, uint32_t OutputChannel);
Kojto 93:e188a91d3eaa 987 HAL_StatusTypeDef HAL_TIMEx_OnePulseN_Stop(TIM_HandleTypeDef *htim, uint32_t OutputChannel);
Kojto 93:e188a91d3eaa 988
Kojto 93:e188a91d3eaa 989 /* Non-Blocking mode: Interrupt */
Kojto 93:e188a91d3eaa 990 HAL_StatusTypeDef HAL_TIMEx_OnePulseN_Start_IT(TIM_HandleTypeDef *htim, uint32_t OutputChannel);
Kojto 93:e188a91d3eaa 991 HAL_StatusTypeDef HAL_TIMEx_OnePulseN_Stop_IT(TIM_HandleTypeDef *htim, uint32_t OutputChannel);
Kojto 93:e188a91d3eaa 992 /**
Kojto 93:e188a91d3eaa 993 * @}
Kojto 93:e188a91d3eaa 994 */
Kojto 93:e188a91d3eaa 995
Kojto 93:e188a91d3eaa 996 /** @addtogroup TIMEx_Exported_Functions_Group5 Extended Peripheral Control functions
Kojto 93:e188a91d3eaa 997 * @brief Peripheral Control functions
Kojto 93:e188a91d3eaa 998 * @{
Kojto 93:e188a91d3eaa 999 */
Kojto 93:e188a91d3eaa 1000 /* Extended Control functions ************************************************/
Kojto 93:e188a91d3eaa 1001 HAL_StatusTypeDef HAL_TIMEx_ConfigCommutationEvent(TIM_HandleTypeDef *htim, uint32_t InputTrigger, uint32_t CommutationSource);
Kojto 93:e188a91d3eaa 1002 HAL_StatusTypeDef HAL_TIMEx_ConfigCommutationEvent_IT(TIM_HandleTypeDef *htim, uint32_t InputTrigger, uint32_t CommutationSource);
Kojto 93:e188a91d3eaa 1003 HAL_StatusTypeDef HAL_TIMEx_ConfigCommutationEvent_DMA(TIM_HandleTypeDef *htim, uint32_t InputTrigger, uint32_t CommutationSource);
Kojto 93:e188a91d3eaa 1004 HAL_StatusTypeDef HAL_TIMEx_MasterConfigSynchronization(TIM_HandleTypeDef *htim, TIM_MasterConfigTypeDef * sMasterConfig);
Kojto 93:e188a91d3eaa 1005 HAL_StatusTypeDef HAL_TIMEx_ConfigBreakDeadTime(TIM_HandleTypeDef *htim, TIM_BreakDeadTimeConfigTypeDef *sBreakDeadTimeConfig);
Kojto 93:e188a91d3eaa 1006
Kojto 93:e188a91d3eaa 1007 #if defined(STM32F303xE) || defined(STM32F398xx) || \
Kojto 93:e188a91d3eaa 1008 defined(STM32F303xC) || defined(STM32F358xx)
Kojto 93:e188a91d3eaa 1009 HAL_StatusTypeDef HAL_TIMEx_RemapConfig(TIM_HandleTypeDef *htim, uint32_t Remap1, uint32_t Remap2);
Kojto 93:e188a91d3eaa 1010 #endif /* STM32F303xE || STM32F398xx || */
Kojto 93:e188a91d3eaa 1011 /* STM32F303xC || STM32F358xx */
Kojto 93:e188a91d3eaa 1012
Kojto 93:e188a91d3eaa 1013 #if defined(STM32F302xE) || \
Kojto 93:e188a91d3eaa 1014 defined(STM32F302xC) || \
Kojto 93:e188a91d3eaa 1015 defined(STM32F303x8) || defined(STM32F334x8) || defined(STM32F328xx) || \
Kojto 93:e188a91d3eaa 1016 defined(STM32F301x8) || defined(STM32F302x8) || defined(STM32F318xx) || \
Kojto 93:e188a91d3eaa 1017 defined(STM32F373xC) || defined(STM32F378xx)
Kojto 93:e188a91d3eaa 1018 HAL_StatusTypeDef HAL_TIMEx_RemapConfig(TIM_HandleTypeDef *htim, uint32_t Remap);
Kojto 93:e188a91d3eaa 1019 #endif /* STM32F302xE || */
Kojto 93:e188a91d3eaa 1020 /* STM32F302xC || */
Kojto 93:e188a91d3eaa 1021 /* STM32F303x8 || STM32F334x8 || STM32F328xx || */
Kojto 93:e188a91d3eaa 1022 /* STM32F301x8 || STM32F302x8 || STM32F318xx || */
Kojto 93:e188a91d3eaa 1023 /* STM32F373xC || STM32F378xx */
Kojto 93:e188a91d3eaa 1024
Kojto 93:e188a91d3eaa 1025 #if defined(STM32F302xE) || defined(STM32F303xE) || defined(STM32F398xx) || \
Kojto 93:e188a91d3eaa 1026 defined(STM32F302xC) || defined(STM32F303xC) || defined(STM32F358xx) || \
Kojto 93:e188a91d3eaa 1027 defined(STM32F303x8) || defined(STM32F334x8) || defined(STM32F328xx) || \
Kojto 93:e188a91d3eaa 1028 defined(STM32F301x8) || defined(STM32F302x8) || defined(STM32F318xx)
Kojto 93:e188a91d3eaa 1029 HAL_StatusTypeDef HAL_TIMEx_GroupChannel5(TIM_HandleTypeDef *htim, uint32_t Channels);
Kojto 93:e188a91d3eaa 1030 #endif /* STM32F302xE || STM32F303xE || STM32F398xx || */
Kojto 93:e188a91d3eaa 1031 /* STM32F302xC || STM32F303xC || STM32F358xx || */
Kojto 93:e188a91d3eaa 1032 /* STM32F303x8 || STM32F334x8 || STM32F328xx || */
Kojto 93:e188a91d3eaa 1033 /* STM32F301x8 || STM32F302x8 || STM32F318xx */
Kojto 93:e188a91d3eaa 1034 /**
Kojto 93:e188a91d3eaa 1035 * @}
Kojto 93:e188a91d3eaa 1036 */
Kojto 93:e188a91d3eaa 1037
Kojto 93:e188a91d3eaa 1038 /** @addtogroup TIMEx_Exported_Functions_Group6 Extended Callbacks functions
Kojto 93:e188a91d3eaa 1039 * @brief Extended Callbacks functions
Kojto 93:e188a91d3eaa 1040 * @{
Kojto 93:e188a91d3eaa 1041 */
Kojto 93:e188a91d3eaa 1042 /* Extended Callback *********************************************************/
Kojto 93:e188a91d3eaa 1043 void HAL_TIMEx_CommutationCallback(TIM_HandleTypeDef *htim);
Kojto 93:e188a91d3eaa 1044 void HAL_TIMEx_BreakCallback(TIM_HandleTypeDef *htim);
Kojto 93:e188a91d3eaa 1045 void HAL_TIMEx_DMACommutationCplt(DMA_HandleTypeDef *hdma);
Kojto 93:e188a91d3eaa 1046 /**
Kojto 93:e188a91d3eaa 1047 * @}
Kojto 93:e188a91d3eaa 1048 */
Kojto 93:e188a91d3eaa 1049
Kojto 93:e188a91d3eaa 1050 /** @addtogroup TIMEx_Exported_Functions_Group7 Extended Peripheral State functions
Kojto 93:e188a91d3eaa 1051 * @brief Extended Peripheral State functions
Kojto 93:e188a91d3eaa 1052 * @{
Kojto 93:e188a91d3eaa 1053 */
Kojto 93:e188a91d3eaa 1054 /* Extended Peripheral State functions **************************************/
Kojto 93:e188a91d3eaa 1055 HAL_TIM_StateTypeDef HAL_TIMEx_HallSensor_GetState(TIM_HandleTypeDef *htim);
Kojto 93:e188a91d3eaa 1056 /**
Kojto 93:e188a91d3eaa 1057 * @}
Kojto 93:e188a91d3eaa 1058 */
Kojto 93:e188a91d3eaa 1059
Kojto 93:e188a91d3eaa 1060 /**
Kojto 93:e188a91d3eaa 1061 * @}
Kojto 93:e188a91d3eaa 1062 */
Kojto 93:e188a91d3eaa 1063
Kojto 93:e188a91d3eaa 1064 /**
Kojto 93:e188a91d3eaa 1065 * @}
Kojto 93:e188a91d3eaa 1066 */
Kojto 93:e188a91d3eaa 1067
Kojto 93:e188a91d3eaa 1068 /**
Kojto 93:e188a91d3eaa 1069 * @}
Kojto 93:e188a91d3eaa 1070 */
Kojto 93:e188a91d3eaa 1071
Kojto 93:e188a91d3eaa 1072 #ifdef __cplusplus
Kojto 93:e188a91d3eaa 1073 }
Kojto 93:e188a91d3eaa 1074 #endif
Kojto 93:e188a91d3eaa 1075
Kojto 93:e188a91d3eaa 1076
Kojto 93:e188a91d3eaa 1077 #endif /* __STM32F3xx_HAL_TIM_EX_H */
Kojto 93:e188a91d3eaa 1078
Kojto 93:e188a91d3eaa 1079 /************************ (C) COPYRIGHT STMicroelectronics *****END OF FILE****/