1 /**
2   ******************************************************************************
3   * @file    stm32wbaxx_hal_tim.h
4   * @author  MCD Application Team
5   * @brief   Header file of TIM HAL module.
6   ******************************************************************************
7   * @attention
8   *
9   * Copyright (c) 2022 STMicroelectronics.
10   * All rights reserved.
11   *
12   * This software is licensed under terms that can be found in the LICENSE file
13   * in the root directory of this software component.
14   * If no LICENSE file comes with this software, it is provided AS-IS.
15   *
16   ******************************************************************************
17   */
18 
19 /* Define to prevent recursive inclusion -------------------------------------*/
20 #ifndef STM32WBAxx_HAL_TIM_H
21 #define STM32WBAxx_HAL_TIM_H
22 
23 #ifdef __cplusplus
24 extern "C" {
25 #endif
26 
27 /* Includes ------------------------------------------------------------------*/
28 #include "stm32wbaxx_hal_def.h"
29 
30 /** @addtogroup STM32WBAxx_HAL_Driver
31   * @{
32   */
33 
34 /** @addtogroup TIM
35   * @{
36   */
37 
38 /* Exported types ------------------------------------------------------------*/
39 /** @defgroup TIM_Exported_Types TIM Exported Types
40   * @{
41   */
42 
43 /**
44   * @brief  TIM Time base Configuration Structure definition
45   */
46 typedef struct
47 {
48   uint32_t Prescaler;         /*!< Specifies the prescaler value used to divide the TIM clock.
49                                    This parameter can be a number between Min_Data = 0x0000 and Max_Data = 0xFFFF
50                                    Macro __HAL_TIM_CALC_PSC() can be used to calculate prescaler value */
51 
52   uint32_t CounterMode;       /*!< Specifies the counter mode.
53                                    This parameter can be a value of @ref TIM_Counter_Mode */
54 
55   uint32_t Period;            /*!< Specifies the period value to be loaded into the active
56                                    Auto-Reload Register at the next update event.
57                                    This parameter can be a number between Min_Data = 0x0000 and Max_Data = 0xFFFF
58                                    (or 0xFFEF if dithering is activated)Macros __HAL_TIM_CALC_PERIOD(),
59                                     __HAL_TIM_CALC_PERIOD_DITHER(),__HAL_TIM_CALC_PERIOD_BY_DELAY(),
60                                     __HAL_TIM_CALC_PERIOD_DITHER_BY_DELAY()can be used to calculate Period value */
61 
62   uint32_t ClockDivision;     /*!< Specifies the clock division.
63                                    This parameter can be a value of @ref TIM_ClockDivision */
64 
65   uint32_t RepetitionCounter;  /*!< Specifies the repetition counter value. Each time the RCR downcounter
66                                     reaches zero, an update event is generated and counting restarts
67                                     from the RCR value (N).
68                                     This means in PWM mode that (N+1) corresponds to:
69                                         - the number of PWM periods in edge-aligned mode
70                                         - the number of half PWM period in center-aligned mode
71                                      GP timers: this parameter must be a number between Min_Data = 0x00 and
72                                      Max_Data = 0xFF.
73                                      Advanced timers: this parameter must be a number between Min_Data = 0x0000 and
74                                      Max_Data = 0xFFFF. */
75 
76   uint32_t AutoReloadPreload;  /*!< Specifies the auto-reload preload.
77                                    This parameter can be a value of @ref TIM_AutoReloadPreload */
78 } TIM_Base_InitTypeDef;
79 
80 /**
81   * @brief  TIM Output Compare Configuration Structure definition
82   */
83 typedef struct
84 {
85   uint32_t OCMode;        /*!< Specifies the TIM mode.
86                                This parameter can be a value of @ref TIM_Output_Compare_and_PWM_modes */
87 
88   uint32_t Pulse;         /*!< Specifies the pulse value to be loaded into the Capture Compare Register.
89                                This parameter can be a number between Min_Data = 0x0000 and Max_Data = 0xFFFF
90                                (or 0xFFEF if dithering is activated)
91                                Macros __HAL_TIM_CALC_PULSE(), __HAL_TIM_CALC_PULSE_DITHER() can be used to calculate
92                                Pulse value */
93 
94   uint32_t OCPolarity;    /*!< Specifies the output polarity.
95                                This parameter can be a value of @ref TIM_Output_Compare_Polarity */
96 
97   uint32_t OCNPolarity;   /*!< Specifies the complementary output polarity.
98                                This parameter can be a value of @ref TIM_Output_Compare_N_Polarity
99                                @note This parameter is valid only for timer instances supporting break feature. */
100 
101   uint32_t OCFastMode;    /*!< Specifies the Fast mode state.
102                                This parameter can be a value of @ref TIM_Output_Fast_State
103                                @note This parameter is valid only in PWM1 and PWM2 mode. */
104 
105 
106   uint32_t OCIdleState;   /*!< Specifies the TIM Output Compare pin state during Idle state.
107                                This parameter can be a value of @ref TIM_Output_Compare_Idle_State
108                                @note This parameter is valid only for timer instances supporting break feature. */
109 
110   uint32_t OCNIdleState;  /*!< Specifies the TIM Output Compare pin state during Idle state.
111                                This parameter can be a value of @ref TIM_Output_Compare_N_Idle_State
112                                @note This parameter is valid only for timer instances supporting break feature. */
113 } TIM_OC_InitTypeDef;
114 
115 /**
116   * @brief  TIM One Pulse Mode Configuration Structure definition
117   */
118 typedef struct
119 {
120   uint32_t OCMode;        /*!< Specifies the TIM mode.
121                                This parameter can be a value of @ref TIM_Output_Compare_and_PWM_modes */
122 
123   uint32_t Pulse;         /*!< Specifies the pulse value to be loaded into the Capture Compare Register.
124                                This parameter can be a number between Min_Data = 0x0000 and Max_Data = 0xFFFF
125                                (or 0xFFEF if dithering is activated)
126                                Macros __HAL_TIM_CALC_PULSE(), __HAL_TIM_CALC_PULSE_DITHER() can be used to calculate
127                                Pulse value */
128 
129   uint32_t OCPolarity;    /*!< Specifies the output polarity.
130                                This parameter can be a value of @ref TIM_Output_Compare_Polarity */
131 
132   uint32_t OCNPolarity;   /*!< Specifies the complementary output polarity.
133                                This parameter can be a value of @ref TIM_Output_Compare_N_Polarity
134                                @note This parameter is valid only for timer instances supporting break feature. */
135 
136   uint32_t OCIdleState;   /*!< Specifies the TIM Output Compare pin state during Idle state.
137                                This parameter can be a value of @ref TIM_Output_Compare_Idle_State
138                                @note This parameter is valid only for timer instances supporting break feature. */
139 
140   uint32_t OCNIdleState;  /*!< Specifies the TIM Output Compare pin state during Idle state.
141                                This parameter can be a value of @ref TIM_Output_Compare_N_Idle_State
142                                @note This parameter is valid only for timer instances supporting break feature. */
143 
144   uint32_t ICPolarity;    /*!< Specifies the active edge of the input signal.
145                                This parameter can be a value of @ref TIM_Input_Capture_Polarity */
146 
147   uint32_t ICSelection;   /*!< Specifies the input.
148                               This parameter can be a value of @ref TIM_Input_Capture_Selection */
149 
150   uint32_t ICFilter;      /*!< Specifies the input capture filter.
151                               This parameter can be a number between Min_Data = 0x0 and Max_Data = 0xF */
152 } TIM_OnePulse_InitTypeDef;
153 
154 /**
155   * @brief  TIM Input Capture Configuration Structure definition
156   */
157 typedef struct
158 {
159   uint32_t  ICPolarity;  /*!< Specifies the active edge of the input signal.
160                               This parameter can be a value of @ref TIM_Input_Capture_Polarity */
161 
162   uint32_t ICSelection;  /*!< Specifies the input.
163                               This parameter can be a value of @ref TIM_Input_Capture_Selection */
164 
165   uint32_t ICPrescaler;  /*!< Specifies the Input Capture Prescaler.
166                               This parameter can be a value of @ref TIM_Input_Capture_Prescaler */
167 
168   uint32_t ICFilter;     /*!< Specifies the input capture filter.
169                               This parameter can be a number between Min_Data = 0x0 and Max_Data = 0xF */
170 } TIM_IC_InitTypeDef;
171 
172 /**
173   * @brief  TIM Encoder Configuration Structure definition
174   */
175 typedef struct
176 {
177   uint32_t EncoderMode;   /*!< Specifies the active edge of the input signal.
178                                This parameter can be a value of @ref TIM_Encoder_Mode */
179 
180   uint32_t IC1Polarity;   /*!< Specifies the active edge of the input signal.
181                                This parameter can be a value of @ref TIM_Encoder_Input_Polarity */
182 
183   uint32_t IC1Selection;  /*!< Specifies the input.
184                                This parameter can be a value of @ref TIM_Input_Capture_Selection */
185 
186   uint32_t IC1Prescaler;  /*!< Specifies the Input Capture Prescaler.
187                                This parameter can be a value of @ref TIM_Input_Capture_Prescaler */
188 
189   uint32_t IC1Filter;     /*!< Specifies the input capture filter.
190                                This parameter can be a number between Min_Data = 0x0 and Max_Data = 0xF */
191 
192   uint32_t IC2Polarity;   /*!< Specifies the active edge of the input signal.
193                                This parameter can be a value of @ref TIM_Encoder_Input_Polarity */
194 
195   uint32_t IC2Selection;  /*!< Specifies the input.
196                               This parameter can be a value of @ref TIM_Input_Capture_Selection */
197 
198   uint32_t IC2Prescaler;  /*!< Specifies the Input Capture Prescaler.
199                                This parameter can be a value of @ref TIM_Input_Capture_Prescaler */
200 
201   uint32_t IC2Filter;     /*!< Specifies the input capture filter.
202                                This parameter can be a number between Min_Data = 0x0 and Max_Data = 0xF */
203 } TIM_Encoder_InitTypeDef;
204 
205 /**
206   * @brief  Clock Configuration Handle Structure definition
207   */
208 typedef struct
209 {
210   uint32_t ClockSource;     /*!< TIM clock sources
211                                  This parameter can be a value of @ref TIM_Clock_Source */
212   uint32_t ClockPolarity;   /*!< TIM clock polarity
213                                  This parameter can be a value of @ref TIM_Clock_Polarity */
214   uint32_t ClockPrescaler;  /*!< TIM clock prescaler
215                                  This parameter can be a value of @ref TIM_Clock_Prescaler */
216   uint32_t ClockFilter;     /*!< TIM clock filter
217                                  This parameter can be a number between Min_Data = 0x0 and Max_Data = 0xF */
218 } TIM_ClockConfigTypeDef;
219 
220 /**
221   * @brief  TIM Clear Input Configuration Handle Structure definition
222   */
223 typedef struct
224 {
225   uint32_t ClearInputState;      /*!< TIM clear Input state
226                                       This parameter can be ENABLE or DISABLE */
227   uint32_t ClearInputSource;     /*!< TIM clear Input sources
228                                       This parameter can be a value of @ref TIM_ClearInput_Source */
229   uint32_t ClearInputPolarity;   /*!< TIM Clear Input polarity
230                                       This parameter can be a value of @ref TIM_ClearInput_Polarity */
231   uint32_t ClearInputPrescaler;  /*!< TIM Clear Input prescaler
232                                       This parameter must be 0: When OCRef clear feature is used with ETR source,
233                                       ETR prescaler must be off */
234   uint32_t ClearInputFilter;     /*!< TIM Clear Input filter
235                                       This parameter can be a number between Min_Data = 0x0 and Max_Data = 0xF */
236 } TIM_ClearInputConfigTypeDef;
237 
238 /**
239   * @brief  TIM Master configuration Structure definition
240   * @note   Advanced timers provide TRGO2 internal line which is redirected
241   *         to the ADC
242   */
243 typedef struct
244 {
245   uint32_t  MasterOutputTrigger;   /*!< Trigger output (TRGO) selection
246                                         This parameter can be a value of @ref TIM_Master_Mode_Selection */
247   uint32_t  MasterOutputTrigger2;  /*!< Trigger output2 (TRGO2) selection
248                                         This parameter can be a value of @ref TIM_Master_Mode_Selection_2 */
249   uint32_t  MasterSlaveMode;       /*!< Master/slave mode selection
250                                         This parameter can be a value of @ref TIM_Master_Slave_Mode
251                                         @note When the Master/slave mode is enabled, the effect of
252                                         an event on the trigger input (TRGI) is delayed to allow a
253                                         perfect synchronization between the current timer and its
254                                         slaves (through TRGO). It is not mandatory in case of timer
255                                         synchronization mode. */
256 } TIM_MasterConfigTypeDef;
257 
258 /**
259   * @brief  TIM Slave configuration Structure definition
260   */
261 typedef struct
262 {
263   uint32_t  SlaveMode;         /*!< Slave mode selection
264                                     This parameter can be a value of @ref TIM_Slave_Mode */
265   uint32_t  InputTrigger;      /*!< Input Trigger source
266                                     This parameter can be a value of @ref TIM_Trigger_Selection */
267   uint32_t  TriggerPolarity;   /*!< Input Trigger polarity
268                                     This parameter can be a value of @ref TIM_Trigger_Polarity */
269   uint32_t  TriggerPrescaler;  /*!< Input trigger prescaler
270                                     This parameter can be a value of @ref TIM_Trigger_Prescaler */
271   uint32_t  TriggerFilter;     /*!< Input trigger filter
272                                     This parameter can be a number between Min_Data = 0x0 and Max_Data = 0xF  */
273 
274 } TIM_SlaveConfigTypeDef;
275 
276 /**
277   * @brief  TIM Break input(s) and Dead time configuration Structure definition
278   * @note   2 break inputs can be configured (BKIN and BKIN2) with configurable
279   *        filter and polarity.
280   */
281 typedef struct
282 {
283   uint32_t OffStateRunMode;      /*!< TIM off state in run mode, This parameter can be a value of @ref TIM_OSSR_Off_State_Selection_for_Run_mode_state */
284 
285   uint32_t OffStateIDLEMode;     /*!< TIM off state in IDLE mode, This parameter can be a value of @ref TIM_OSSI_Off_State_Selection_for_Idle_mode_state */
286 
287   uint32_t LockLevel;            /*!< TIM Lock level, This parameter can be a value of @ref TIM_Lock_level */
288 
289   uint32_t DeadTime;             /*!< TIM dead Time, This parameter can be a number between Min_Data = 0x00 and Max_Data = 0xFF */
290 
291   uint32_t BreakState;           /*!< TIM Break State, This parameter can be a value of @ref TIM_Break_Input_enable_disable */
292 
293   uint32_t BreakPolarity;        /*!< TIM Break input polarity, This parameter can be a value of @ref TIM_Break_Polarity */
294 
295   uint32_t BreakFilter;          /*!< Specifies the break input filter.This parameter can be a number between Min_Data = 0x0 and Max_Data = 0xF */
296 
297   uint32_t BreakAFMode;          /*!< Specifies the alternate function mode of the break input.This parameter can be a value of @ref TIM_Break_Input_AF_Mode */
298 
299   uint32_t Break2State;          /*!< TIM Break2 State, This parameter can be a value of @ref TIM_Break2_Input_enable_disable */
300 
301   uint32_t Break2Polarity;       /*!< TIM Break2 input polarity, This parameter can be a value of @ref TIM_Break2_Polarity */
302 
303   uint32_t Break2Filter;         /*!< TIM break2 input filter.This parameter can be a number between Min_Data = 0x0 and Max_Data = 0xF */
304 
305   uint32_t Break2AFMode;         /*!< Specifies the alternate function mode of the break2 input.This parameter can be a value of @ref TIM_Break2_Input_AF_Mode */
306 
307   uint32_t AutomaticOutput;      /*!< TIM Automatic Output Enable state, This parameter can be a value of @ref TIM_AOE_Bit_Set_Reset */
308 
309 } TIM_BreakDeadTimeConfigTypeDef;
310 
311 /**
312   * @brief  HAL State structures definition
313   */
314 typedef enum
315 {
316   HAL_TIM_STATE_RESET             = 0x00U,    /*!< Peripheral not yet initialized or disabled  */
317   HAL_TIM_STATE_READY             = 0x01U,    /*!< Peripheral Initialized and ready for use    */
318   HAL_TIM_STATE_BUSY              = 0x02U,    /*!< An internal process is ongoing              */
319   HAL_TIM_STATE_TIMEOUT           = 0x03U,    /*!< Timeout state                               */
320   HAL_TIM_STATE_ERROR             = 0x04U     /*!< Reception process is ongoing                */
321 } HAL_TIM_StateTypeDef;
322 
323 /**
324   * @brief  TIM Channel States definition
325   */
326 typedef enum
327 {
328   HAL_TIM_CHANNEL_STATE_RESET             = 0x00U,    /*!< TIM Channel initial state                         */
329   HAL_TIM_CHANNEL_STATE_READY             = 0x01U,    /*!< TIM Channel ready for use                         */
330   HAL_TIM_CHANNEL_STATE_BUSY              = 0x02U,    /*!< An internal process is ongoing on the TIM channel */
331 } HAL_TIM_ChannelStateTypeDef;
332 
333 /**
334   * @brief  DMA Burst States definition
335   */
336 typedef enum
337 {
338   HAL_DMA_BURST_STATE_RESET             = 0x00U,    /*!< DMA Burst initial state */
339   HAL_DMA_BURST_STATE_READY             = 0x01U,    /*!< DMA Burst ready for use */
340   HAL_DMA_BURST_STATE_BUSY              = 0x02U,    /*!< Ongoing DMA Burst       */
341 } HAL_TIM_DMABurstStateTypeDef;
342 
343 /**
344   * @brief  HAL Active channel structures definition
345   */
346 typedef enum
347 {
348   HAL_TIM_ACTIVE_CHANNEL_1        = 0x01U,    /*!< The active channel is 1     */
349   HAL_TIM_ACTIVE_CHANNEL_2        = 0x02U,    /*!< The active channel is 2     */
350   HAL_TIM_ACTIVE_CHANNEL_3        = 0x04U,    /*!< The active channel is 3     */
351   HAL_TIM_ACTIVE_CHANNEL_4        = 0x08U,    /*!< The active channel is 4     */
352   HAL_TIM_ACTIVE_CHANNEL_5        = 0x10U,    /*!< The active channel is 5     */
353   HAL_TIM_ACTIVE_CHANNEL_6        = 0x20U,    /*!< The active channel is 6     */
354   HAL_TIM_ACTIVE_CHANNEL_CLEARED  = 0x00U     /*!< All active channels cleared */
355 } HAL_TIM_ActiveChannel;
356 
357 /**
358   * @brief  TIM Time Base Handle Structure definition
359   */
360 #if (USE_HAL_TIM_REGISTER_CALLBACKS == 1)
361 typedef struct __TIM_HandleTypeDef
362 #else
363 typedef struct
364 #endif /* USE_HAL_TIM_REGISTER_CALLBACKS */
365 {
366   TIM_TypeDef                        *Instance;         /*!< Register base address                             */
367   TIM_Base_InitTypeDef               Init;              /*!< TIM Time Base required parameters                 */
368   HAL_TIM_ActiveChannel              Channel;           /*!< Active channel                                    */
369   DMA_HandleTypeDef                  *hdma[7];          /*!< DMA Handlers array
370                                                              This array is accessed by a @ref DMA_Handle_index */
371   HAL_LockTypeDef                    Lock;              /*!< Locking object                                    */
372   __IO HAL_TIM_StateTypeDef          State;             /*!< TIM operation state                               */
373   __IO HAL_TIM_ChannelStateTypeDef   ChannelState[6];   /*!< TIM channel operation state                       */
374   __IO HAL_TIM_ChannelStateTypeDef   ChannelNState[4];  /*!< TIM complementary channel operation state         */
375   __IO HAL_TIM_DMABurstStateTypeDef  DMABurstState;     /*!< DMA burst operation state                         */
376 
377 #if (USE_HAL_TIM_REGISTER_CALLBACKS == 1)
378   void (* Base_MspInitCallback)(struct __TIM_HandleTypeDef *htim);              /*!< TIM Base Msp Init Callback                              */
379   void (* Base_MspDeInitCallback)(struct __TIM_HandleTypeDef *htim);            /*!< TIM Base Msp DeInit Callback                            */
380   void (* IC_MspInitCallback)(struct __TIM_HandleTypeDef *htim);                /*!< TIM IC Msp Init Callback                                */
381   void (* IC_MspDeInitCallback)(struct __TIM_HandleTypeDef *htim);              /*!< TIM IC Msp DeInit Callback                              */
382   void (* OC_MspInitCallback)(struct __TIM_HandleTypeDef *htim);                /*!< TIM OC Msp Init Callback                                */
383   void (* OC_MspDeInitCallback)(struct __TIM_HandleTypeDef *htim);              /*!< TIM OC Msp DeInit Callback                              */
384   void (* PWM_MspInitCallback)(struct __TIM_HandleTypeDef *htim);               /*!< TIM PWM Msp Init Callback                               */
385   void (* PWM_MspDeInitCallback)(struct __TIM_HandleTypeDef *htim);             /*!< TIM PWM Msp DeInit Callback                             */
386   void (* OnePulse_MspInitCallback)(struct __TIM_HandleTypeDef *htim);          /*!< TIM One Pulse Msp Init Callback                         */
387   void (* OnePulse_MspDeInitCallback)(struct __TIM_HandleTypeDef *htim);        /*!< TIM One Pulse Msp DeInit Callback                       */
388   void (* Encoder_MspInitCallback)(struct __TIM_HandleTypeDef *htim);           /*!< TIM Encoder Msp Init Callback                           */
389   void (* Encoder_MspDeInitCallback)(struct __TIM_HandleTypeDef *htim);         /*!< TIM Encoder Msp DeInit Callback                         */
390   void (* HallSensor_MspInitCallback)(struct __TIM_HandleTypeDef *htim);        /*!< TIM Hall Sensor Msp Init Callback                       */
391   void (* HallSensor_MspDeInitCallback)(struct __TIM_HandleTypeDef *htim);      /*!< TIM Hall Sensor Msp DeInit Callback                     */
392   void (* PeriodElapsedCallback)(struct __TIM_HandleTypeDef *htim);             /*!< TIM Period Elapsed Callback                             */
393   void (* PeriodElapsedHalfCpltCallback)(struct __TIM_HandleTypeDef *htim);     /*!< TIM Period Elapsed half complete Callback               */
394   void (* TriggerCallback)(struct __TIM_HandleTypeDef *htim);                   /*!< TIM Trigger Callback                                    */
395   void (* TriggerHalfCpltCallback)(struct __TIM_HandleTypeDef *htim);           /*!< TIM Trigger half complete Callback                      */
396   void (* IC_CaptureCallback)(struct __TIM_HandleTypeDef *htim);                /*!< TIM Input Capture Callback                              */
397   void (* IC_CaptureHalfCpltCallback)(struct __TIM_HandleTypeDef *htim);        /*!< TIM Input Capture half complete Callback                */
398   void (* OC_DelayElapsedCallback)(struct __TIM_HandleTypeDef *htim);           /*!< TIM Output Compare Delay Elapsed Callback               */
399   void (* PWM_PulseFinishedCallback)(struct __TIM_HandleTypeDef *htim);         /*!< TIM PWM Pulse Finished Callback                         */
400   void (* PWM_PulseFinishedHalfCpltCallback)(struct __TIM_HandleTypeDef *htim); /*!< TIM PWM Pulse Finished half complete Callback           */
401   void (* ErrorCallback)(struct __TIM_HandleTypeDef *htim);                     /*!< TIM Error Callback                                      */
402   void (* CommutationCallback)(struct __TIM_HandleTypeDef *htim);               /*!< TIM Commutation Callback                                */
403   void (* CommutationHalfCpltCallback)(struct __TIM_HandleTypeDef *htim);       /*!< TIM Commutation half complete Callback                  */
404   void (* BreakCallback)(struct __TIM_HandleTypeDef *htim);                     /*!< TIM Break Callback                                      */
405   void (* Break2Callback)(struct __TIM_HandleTypeDef *htim);                    /*!< TIM Break2 Callback                                     */
406   void (* EncoderIndexCallback)(struct __TIM_HandleTypeDef *htim);              /*!< TIM Encoder Index Callback                              */
407   void (* DirectionChangeCallback)(struct __TIM_HandleTypeDef *htim);           /*!< TIM Direction Change Callback                           */
408   void (* IndexErrorCallback)(struct __TIM_HandleTypeDef *htim);                /*!< TIM Index Error Callback                                */
409   void (* TransitionErrorCallback)(struct __TIM_HandleTypeDef *htim);           /*!< TIM Transition Error Callback                           */
410 #endif /* USE_HAL_TIM_REGISTER_CALLBACKS */
411 } TIM_HandleTypeDef;
412 
413 #if (USE_HAL_TIM_REGISTER_CALLBACKS == 1)
414 /**
415   * @brief  HAL TIM Callback ID enumeration definition
416   */
417 typedef enum
418 {
419   HAL_TIM_BASE_MSPINIT_CB_ID              = 0x00U   /*!< TIM Base MspInit Callback ID                               */
420   , HAL_TIM_BASE_MSPDEINIT_CB_ID          = 0x01U   /*!< TIM Base MspDeInit Callback ID                             */
421   , HAL_TIM_IC_MSPINIT_CB_ID              = 0x02U   /*!< TIM IC MspInit Callback ID                                 */
422   , HAL_TIM_IC_MSPDEINIT_CB_ID            = 0x03U   /*!< TIM IC MspDeInit Callback ID                               */
423   , HAL_TIM_OC_MSPINIT_CB_ID              = 0x04U   /*!< TIM OC MspInit Callback ID                                 */
424   , HAL_TIM_OC_MSPDEINIT_CB_ID            = 0x05U   /*!< TIM OC MspDeInit Callback ID                               */
425   , HAL_TIM_PWM_MSPINIT_CB_ID             = 0x06U   /*!< TIM PWM MspInit Callback ID                                */
426   , HAL_TIM_PWM_MSPDEINIT_CB_ID           = 0x07U   /*!< TIM PWM MspDeInit Callback ID                              */
427   , HAL_TIM_ONE_PULSE_MSPINIT_CB_ID       = 0x08U   /*!< TIM One Pulse MspInit Callback ID                          */
428   , HAL_TIM_ONE_PULSE_MSPDEINIT_CB_ID     = 0x09U   /*!< TIM One Pulse MspDeInit Callback ID                        */
429   , HAL_TIM_ENCODER_MSPINIT_CB_ID         = 0x0AU   /*!< TIM Encoder MspInit Callback ID                            */
430   , HAL_TIM_ENCODER_MSPDEINIT_CB_ID       = 0x0BU   /*!< TIM Encoder MspDeInit Callback ID                          */
431   , HAL_TIM_HALL_SENSOR_MSPINIT_CB_ID     = 0x0CU   /*!< TIM Hall Sensor MspDeInit Callback ID                      */
432   , HAL_TIM_HALL_SENSOR_MSPDEINIT_CB_ID   = 0x0DU   /*!< TIM Hall Sensor MspDeInit Callback ID                      */
433   , HAL_TIM_PERIOD_ELAPSED_CB_ID          = 0x0EU   /*!< TIM Period Elapsed Callback ID                             */
434   , HAL_TIM_PERIOD_ELAPSED_HALF_CB_ID     = 0x0FU   /*!< TIM Period Elapsed half complete Callback ID               */
435   , HAL_TIM_TRIGGER_CB_ID                 = 0x10U   /*!< TIM Trigger Callback ID                                    */
436   , HAL_TIM_TRIGGER_HALF_CB_ID            = 0x11U   /*!< TIM Trigger half complete Callback ID                      */
437   , HAL_TIM_IC_CAPTURE_CB_ID              = 0x12U   /*!< TIM Input Capture Callback ID                              */
438   , HAL_TIM_IC_CAPTURE_HALF_CB_ID         = 0x13U   /*!< TIM Input Capture half complete Callback ID                */
439   , HAL_TIM_OC_DELAY_ELAPSED_CB_ID        = 0x14U   /*!< TIM Output Compare Delay Elapsed Callback ID               */
440   , HAL_TIM_PWM_PULSE_FINISHED_CB_ID      = 0x15U   /*!< TIM PWM Pulse Finished Callback ID                         */
441   , HAL_TIM_PWM_PULSE_FINISHED_HALF_CB_ID = 0x16U   /*!< TIM PWM Pulse Finished half complete Callback ID           */
442   , HAL_TIM_ERROR_CB_ID                   = 0x17U   /*!< TIM Error Callback ID                                      */
443   , HAL_TIM_COMMUTATION_CB_ID             = 0x18U   /*!< TIM Commutation Callback ID                                */
444   , HAL_TIM_COMMUTATION_HALF_CB_ID        = 0x19U   /*!< TIM Commutation half complete Callback ID                  */
445   , HAL_TIM_BREAK_CB_ID                   = 0x1AU   /*!< TIM Break Callback ID                                      */
446   , HAL_TIM_BREAK2_CB_ID                  = 0x1BU   /*!< TIM Break2 Callback ID                                     */
447   , HAL_TIM_ENCODER_INDEX_CB_ID           = 0x1CU   /*!< TIM Encoder Index Callback ID                              */
448   , HAL_TIM_DIRECTION_CHANGE_CB_ID        = 0x1DU   /*!< TIM Direction Change Callback ID                           */
449   , HAL_TIM_INDEX_ERROR_CB_ID             = 0x1EU   /*!< TIM Index Error Callback ID                                */
450   , HAL_TIM_TRANSITION_ERROR_CB_ID        = 0x1FU   /*!< TIM Transition Error Callback ID                           */
451 } HAL_TIM_CallbackIDTypeDef;
452 
453 /**
454   * @brief  HAL TIM Callback pointer definition
455   */
456 typedef  void (*pTIM_CallbackTypeDef)(TIM_HandleTypeDef *htim);  /*!< pointer to the TIM callback function */
457 
458 #endif /* USE_HAL_TIM_REGISTER_CALLBACKS */
459 
460 /**
461   * @}
462   */
463 /* End of exported types -----------------------------------------------------*/
464 
465 /* Exported constants --------------------------------------------------------*/
466 /** @defgroup TIM_Exported_Constants TIM Exported Constants
467   * @{
468   */
469 
470 /** @defgroup TIM_ClearInput_Source TIM Clear Input Source
471   * @{
472   */
473 #define TIM_CLEARINPUTSOURCE_NONE     0xFFFFFFFFU                               /*!< OCREF_CLR is disabled */
474 #define TIM_CLEARINPUTSOURCE_ETR      0x00000001U                               /*!< OCREF_CLR is connected to ETRF input */
475 #define TIM_CLEARINPUTSOURCE_COMP1    0x00000000U                               /*!< OCREF_CLR_INT is connected to COMP1 output */
476 #define TIM_CLEARINPUTSOURCE_COMP2    TIM_AF2_OCRSEL_0                          /*!< OCREF_CLR_INT is connected to COMP2 output */
477 /**
478   * @}
479   */
480 
481 /** @defgroup TIM_DMA_Base_address TIM DMA Base Address
482   * @{
483   */
484 #define TIM_DMABASE_CR1                    0x00000000U
485 #define TIM_DMABASE_CR2                    0x00000001U
486 #define TIM_DMABASE_SMCR                   0x00000002U
487 #define TIM_DMABASE_DIER                   0x00000003U
488 #define TIM_DMABASE_SR                     0x00000004U
489 #define TIM_DMABASE_EGR                    0x00000005U
490 #define TIM_DMABASE_CCMR1                  0x00000006U
491 #define TIM_DMABASE_CCMR2                  0x00000007U
492 #define TIM_DMABASE_CCER                   0x00000008U
493 #define TIM_DMABASE_CNT                    0x00000009U
494 #define TIM_DMABASE_PSC                    0x0000000AU
495 #define TIM_DMABASE_ARR                    0x0000000BU
496 #define TIM_DMABASE_RCR                    0x0000000CU
497 #define TIM_DMABASE_CCR1                   0x0000000DU
498 #define TIM_DMABASE_CCR2                   0x0000000EU
499 #define TIM_DMABASE_CCR3                   0x0000000FU
500 #define TIM_DMABASE_CCR4                   0x00000010U
501 #define TIM_DMABASE_BDTR                   0x00000011U
502 #define TIM_DMABASE_CCR5                   0x00000012U
503 #define TIM_DMABASE_CCR6                   0x00000013U
504 #define TIM_DMABASE_CCMR3                  0x00000014U
505 #define TIM_DMABASE_DTR2                   0x00000015U
506 #define TIM_DMABASE_ECR                    0x00000016U
507 #define TIM_DMABASE_TISEL                  0x00000017U
508 #define TIM_DMABASE_AF1                    0x00000018U
509 #define TIM_DMABASE_AF2                    0x00000019U
510 #define TIM_DMABASE_OR                     0x0000001AU
511 /**
512   * @}
513   */
514 
515 /** @defgroup TIM_Event_Source TIM Event Source
516   * @{
517   */
518 #define TIM_EVENTSOURCE_UPDATE              TIM_EGR_UG     /*!< Reinitialize the counter and generates an update of the registers */
519 #define TIM_EVENTSOURCE_CC1                 TIM_EGR_CC1G   /*!< A capture/compare event is generated on channel 1 */
520 #define TIM_EVENTSOURCE_CC2                 TIM_EGR_CC2G   /*!< A capture/compare event is generated on channel 2 */
521 #define TIM_EVENTSOURCE_CC3                 TIM_EGR_CC3G   /*!< A capture/compare event is generated on channel 3 */
522 #define TIM_EVENTSOURCE_CC4                 TIM_EGR_CC4G   /*!< A capture/compare event is generated on channel 4 */
523 #define TIM_EVENTSOURCE_COM                 TIM_EGR_COMG   /*!< A commutation event is generated */
524 #define TIM_EVENTSOURCE_TRIGGER             TIM_EGR_TG     /*!< A trigger event is generated */
525 #define TIM_EVENTSOURCE_BREAK               TIM_EGR_BG     /*!< A break event is generated */
526 #define TIM_EVENTSOURCE_BREAK2              TIM_EGR_B2G    /*!< A break 2 event is generated */
527 /**
528   * @}
529   */
530 
531 /** @defgroup TIM_Input_Channel_Polarity TIM Input Channel polarity
532   * @{
533   */
534 #define  TIM_INPUTCHANNELPOLARITY_RISING      0x00000000U                       /*!< Polarity for TIx source */
535 #define  TIM_INPUTCHANNELPOLARITY_FALLING     TIM_CCER_CC1P                     /*!< Polarity for TIx source */
536 #define  TIM_INPUTCHANNELPOLARITY_BOTHEDGE    (TIM_CCER_CC1P | TIM_CCER_CC1NP)  /*!< Polarity for TIx source */
537 /**
538   * @}
539   */
540 
541 /** @defgroup TIM_ETR_Polarity TIM ETR Polarity
542   * @{
543   */
544 #define TIM_ETRPOLARITY_INVERTED              TIM_SMCR_ETP                      /*!< Polarity for ETR source */
545 #define TIM_ETRPOLARITY_NONINVERTED           0x00000000U                       /*!< Polarity for ETR source */
546 /**
547   * @}
548   */
549 
550 /** @defgroup TIM_ETR_Prescaler TIM ETR Prescaler
551   * @{
552   */
553 #define TIM_ETRPRESCALER_DIV1                 0x00000000U                       /*!< No prescaler is used */
554 #define TIM_ETRPRESCALER_DIV2                 TIM_SMCR_ETPS_0                   /*!< ETR input source is divided by 2 */
555 #define TIM_ETRPRESCALER_DIV4                 TIM_SMCR_ETPS_1                   /*!< ETR input source is divided by 4 */
556 #define TIM_ETRPRESCALER_DIV8                 TIM_SMCR_ETPS                     /*!< ETR input source is divided by 8 */
557 /**
558   * @}
559   */
560 
561 /** @defgroup TIM_Counter_Mode TIM Counter Mode
562   * @{
563   */
564 #define TIM_COUNTERMODE_UP                 0x00000000U                          /*!< Counter used as up-counter   */
565 #define TIM_COUNTERMODE_DOWN               TIM_CR1_DIR                          /*!< Counter used as down-counter */
566 #define TIM_COUNTERMODE_CENTERALIGNED1     TIM_CR1_CMS_0                        /*!< Center-aligned mode 1        */
567 #define TIM_COUNTERMODE_CENTERALIGNED2     TIM_CR1_CMS_1                        /*!< Center-aligned mode 2        */
568 #define TIM_COUNTERMODE_CENTERALIGNED3     TIM_CR1_CMS                          /*!< Center-aligned mode 3        */
569 /**
570   * @}
571   */
572 
573 /** @defgroup TIM_Update_Interrupt_Flag_Remap TIM Update Interrupt Flag Remap
574   * @{
575   */
576 #define TIM_UIFREMAP_DISABLE               0x00000000U                          /*!< Update interrupt flag remap disabled */
577 #define TIM_UIFREMAP_ENABLE                TIM_CR1_UIFREMAP                     /*!< Update interrupt flag remap enabled */
578 /**
579   * @}
580   */
581 
582 /** @defgroup TIM_ClockDivision TIM Clock Division
583   * @{
584   */
585 #define TIM_CLOCKDIVISION_DIV1             0x00000000U                          /*!< Clock division: tDTS=tCK_INT   */
586 #define TIM_CLOCKDIVISION_DIV2             TIM_CR1_CKD_0                        /*!< Clock division: tDTS=2*tCK_INT */
587 #define TIM_CLOCKDIVISION_DIV4             TIM_CR1_CKD_1                        /*!< Clock division: tDTS=4*tCK_INT */
588 /**
589   * @}
590   */
591 
592 /** @defgroup TIM_Output_Compare_State TIM Output Compare State
593   * @{
594   */
595 #define TIM_OUTPUTSTATE_DISABLE            0x00000000U                          /*!< Capture/Compare 1 output disabled */
596 #define TIM_OUTPUTSTATE_ENABLE             TIM_CCER_CC1E                        /*!< Capture/Compare 1 output enabled */
597 /**
598   * @}
599   */
600 
601 /** @defgroup TIM_AutoReloadPreload TIM Auto-Reload Preload
602   * @{
603   */
604 #define TIM_AUTORELOAD_PRELOAD_DISABLE                0x00000000U               /*!< TIMx_ARR register is not buffered */
605 #define TIM_AUTORELOAD_PRELOAD_ENABLE                 TIM_CR1_ARPE              /*!< TIMx_ARR register is buffered */
606 
607 /**
608   * @}
609   */
610 
611 /** @defgroup TIM_Output_Fast_State TIM Output Fast State
612   * @{
613   */
614 #define TIM_OCFAST_DISABLE                 0x00000000U                          /*!< Output Compare fast disable */
615 #define TIM_OCFAST_ENABLE                  TIM_CCMR1_OC1FE                      /*!< Output Compare fast enable  */
616 /**
617   * @}
618   */
619 
620 /** @defgroup TIM_Output_Compare_N_State TIM Complementary Output Compare State
621   * @{
622   */
623 #define TIM_OUTPUTNSTATE_DISABLE           0x00000000U                          /*!< OCxN is disabled  */
624 #define TIM_OUTPUTNSTATE_ENABLE            TIM_CCER_CC1NE                       /*!< OCxN is enabled   */
625 /**
626   * @}
627   */
628 
629 /** @defgroup TIM_Output_Compare_Polarity TIM Output Compare Polarity
630   * @{
631   */
632 #define TIM_OCPOLARITY_HIGH                0x00000000U                          /*!< Capture/Compare output polarity  */
633 #define TIM_OCPOLARITY_LOW                 TIM_CCER_CC1P                        /*!< Capture/Compare output polarity  */
634 /**
635   * @}
636   */
637 
638 /** @defgroup TIM_Output_Compare_N_Polarity TIM Complementary Output Compare Polarity
639   * @{
640   */
641 #define TIM_OCNPOLARITY_HIGH               0x00000000U                          /*!< Capture/Compare complementary output polarity */
642 #define TIM_OCNPOLARITY_LOW                TIM_CCER_CC1NP                       /*!< Capture/Compare complementary output polarity */
643 /**
644   * @}
645   */
646 
647 /** @defgroup TIM_Output_Compare_Idle_State TIM Output Compare Idle State
648   * @{
649   */
650 #define TIM_OCIDLESTATE_SET                TIM_CR2_OIS1                         /*!< Output Idle state: OCx=1 when MOE=0 */
651 #define TIM_OCIDLESTATE_RESET              0x00000000U                          /*!< Output Idle state: OCx=0 when MOE=0 */
652 /**
653   * @}
654   */
655 
656 /** @defgroup TIM_Output_Compare_N_Idle_State TIM Complementary Output Compare Idle State
657   * @{
658   */
659 #define TIM_OCNIDLESTATE_SET               TIM_CR2_OIS1N                        /*!< Complementary output Idle state: OCxN=1 when MOE=0 */
660 #define TIM_OCNIDLESTATE_RESET             0x00000000U                          /*!< Complementary output Idle state: OCxN=0 when MOE=0 */
661 /**
662   * @}
663   */
664 
665 /** @defgroup TIM_Input_Capture_Polarity TIM Input Capture Polarity
666   * @{
667   */
668 #define  TIM_ICPOLARITY_RISING             TIM_INPUTCHANNELPOLARITY_RISING      /*!< Capture triggered by rising edge on timer input                  */
669 #define  TIM_ICPOLARITY_FALLING            TIM_INPUTCHANNELPOLARITY_FALLING     /*!< Capture triggered by falling edge on timer input                 */
670 #define  TIM_ICPOLARITY_BOTHEDGE           TIM_INPUTCHANNELPOLARITY_BOTHEDGE    /*!< Capture triggered by both rising and falling edges on timer input*/
671 /**
672   * @}
673   */
674 
675 /** @defgroup TIM_Encoder_Input_Polarity TIM Encoder Input Polarity
676   * @{
677   */
678 #define  TIM_ENCODERINPUTPOLARITY_RISING   TIM_INPUTCHANNELPOLARITY_RISING      /*!< Encoder input with rising edge polarity  */
679 #define  TIM_ENCODERINPUTPOLARITY_FALLING  TIM_INPUTCHANNELPOLARITY_FALLING     /*!< Encoder input with falling edge polarity */
680 /**
681   * @}
682   */
683 
684 /** @defgroup TIM_Input_Capture_Selection TIM Input Capture Selection
685   * @{
686   */
687 #define TIM_ICSELECTION_DIRECTTI           TIM_CCMR1_CC1S_0                     /*!< TIM Input 1, 2, 3 or 4 is selected to be connected to IC1, IC2, IC3 or IC4, respectively */
688 #define TIM_ICSELECTION_INDIRECTTI         TIM_CCMR1_CC1S_1                     /*!< TIM Input 1, 2, 3 or 4 is selected to be connected to IC2, IC1, IC4 or IC3, respectively */
689 #define TIM_ICSELECTION_TRC                TIM_CCMR1_CC1S                       /*!< TIM Input 1, 2, 3 or 4 is selected to be connected to TRC */
690 /**
691   * @}
692   */
693 
694 /** @defgroup TIM_Input_Capture_Prescaler TIM Input Capture Prescaler
695   * @{
696   */
697 #define TIM_ICPSC_DIV1                     0x00000000U                          /*!< Capture performed each time an edge is detected on the capture input */
698 #define TIM_ICPSC_DIV2                     TIM_CCMR1_IC1PSC_0                   /*!< Capture performed once every 2 events                                */
699 #define TIM_ICPSC_DIV4                     TIM_CCMR1_IC1PSC_1                   /*!< Capture performed once every 4 events                                */
700 #define TIM_ICPSC_DIV8                     TIM_CCMR1_IC1PSC                     /*!< Capture performed once every 8 events                                */
701 /**
702   * @}
703   */
704 
705 /** @defgroup TIM_One_Pulse_Mode TIM One Pulse Mode
706   * @{
707   */
708 #define TIM_OPMODE_SINGLE                  TIM_CR1_OPM                          /*!< Counter stops counting at the next update event */
709 #define TIM_OPMODE_REPETITIVE              0x00000000U                          /*!< Counter is not stopped at update event          */
710 /**
711   * @}
712   */
713 
714 /** @defgroup TIM_Encoder_Mode TIM Encoder Mode
715   * @{
716   */
717 #define TIM_ENCODERMODE_TI1                      TIM_SMCR_SMS_0                                                      /*!< Quadrature encoder mode 1, x2 mode, counts up/down on TI1FP1 edge depending on TI2FP2 level  */
718 #define TIM_ENCODERMODE_TI2                      TIM_SMCR_SMS_1                                                      /*!< Quadrature encoder mode 2, x2 mode, counts up/down on TI2FP2 edge depending on TI1FP1 level. */
719 #define TIM_ENCODERMODE_TI12                     (TIM_SMCR_SMS_1 | TIM_SMCR_SMS_0)                                   /*!< Quadrature encoder mode 3, x4 mode, counts up/down on both TI1FP1 and TI2FP2 edges depending on the level of the other input. */
720 #define TIM_ENCODERMODE_CLOCKPLUSDIRECTION_X2    (TIM_SMCR_SMS_3 | TIM_SMCR_SMS_1)                                   /*!< Encoder mode: Clock plus direction, x2 mode */
721 #define TIM_ENCODERMODE_CLOCKPLUSDIRECTION_X1    (TIM_SMCR_SMS_3 | TIM_SMCR_SMS_1 | TIM_SMCR_SMS_0)                  /*!< Encoder mode: Clock plus direction, x1 mode, TI2FP2 edge sensitivity is set by CC2P */
722 #define TIM_ENCODERMODE_DIRECTIONALCLOCK_X2      (TIM_SMCR_SMS_3 | TIM_SMCR_SMS_2)                                   /*!< Encoder mode: Directional Clock, x2 mode */
723 #define TIM_ENCODERMODE_DIRECTIONALCLOCK_X1_TI12 (TIM_SMCR_SMS_3 | TIM_SMCR_SMS_2 | TIM_SMCR_SMS_0)                  /*!< Encoder mode: Directional Clock, x1 mode, TI1FP1 and TI2FP2 edge sensitivity is set by CC1P and CC2P */
724 #define TIM_ENCODERMODE_X1_TI1                   (TIM_SMCR_SMS_3 | TIM_SMCR_SMS_2 | TIM_SMCR_SMS_1)                  /*!< Quadrature encoder mode: x1 mode, counting on TI1FP1 edges only, edge sensitivity is set by CC1P */
725 #define TIM_ENCODERMODE_X1_TI2                   (TIM_SMCR_SMS_3 | TIM_SMCR_SMS_2 | TIM_SMCR_SMS_1 | TIM_SMCR_SMS_0) /*!< Quadrature encoder mode: x1 mode, counting on TI2FP2 edges only, edge sensitivity is set by CC1P */
726 /**
727   * @}
728   */
729 
730 /** @defgroup TIM_Interrupt_definition TIM interrupt Definition
731   * @{
732   */
733 #define TIM_IT_UPDATE                      TIM_DIER_UIE                         /*!< Update interrupt            */
734 #define TIM_IT_CC1                         TIM_DIER_CC1IE                       /*!< Capture/Compare 1 interrupt */
735 #define TIM_IT_CC2                         TIM_DIER_CC2IE                       /*!< Capture/Compare 2 interrupt */
736 #define TIM_IT_CC3                         TIM_DIER_CC3IE                       /*!< Capture/Compare 3 interrupt */
737 #define TIM_IT_CC4                         TIM_DIER_CC4IE                       /*!< Capture/Compare 4 interrupt */
738 #define TIM_IT_COM                         TIM_DIER_COMIE                       /*!< Commutation interrupt       */
739 #define TIM_IT_TRIGGER                     TIM_DIER_TIE                         /*!< Trigger interrupt           */
740 #define TIM_IT_BREAK                       TIM_DIER_BIE                         /*!< Break interrupt             */
741 #define TIM_IT_IDX                         TIM_DIER_IDXIE                       /*!< Index interrupt             */
742 #define TIM_IT_DIR                         TIM_DIER_DIRIE                       /*!< Direction change interrupt  */
743 #define TIM_IT_IERR                        TIM_DIER_IERRIE                      /*!< Index error interrupt       */
744 #define TIM_IT_TERR                        TIM_DIER_TERRIE                      /*!< Transition error interrupt  */
745 /**
746   * @}
747   */
748 
749 /** @defgroup TIM_Commutation_Source  TIM Commutation Source
750   * @{
751   */
752 #define TIM_COMMUTATION_TRGI              TIM_CR2_CCUS                          /*!< When Capture/compare control bits are preloaded, they are updated by setting the COMG bit or when an rising edge occurs on trigger input */
753 #define TIM_COMMUTATION_SOFTWARE          0x00000000U                           /*!< When Capture/compare control bits are preloaded, they are updated by setting the COMG bit */
754 /**
755   * @}
756   */
757 
758 /** @defgroup TIM_DMA_sources TIM DMA Sources
759   * @{
760   */
761 #define TIM_DMA_UPDATE                     TIM_DIER_UDE                         /*!< DMA request is triggered by the update event */
762 #define TIM_DMA_CC1                        TIM_DIER_CC1DE                       /*!< DMA request is triggered by the capture/compare macth 1 event */
763 #define TIM_DMA_CC2                        TIM_DIER_CC2DE                       /*!< DMA request is triggered by the capture/compare macth 2 event event */
764 #define TIM_DMA_CC3                        TIM_DIER_CC3DE                       /*!< DMA request is triggered by the capture/compare macth 3 event event */
765 #define TIM_DMA_CC4                        TIM_DIER_CC4DE                       /*!< DMA request is triggered by the capture/compare macth 4 event event */
766 #define TIM_DMA_COM                        TIM_DIER_COMDE                       /*!< DMA request is triggered by the commutation event */
767 #define TIM_DMA_TRIGGER                    TIM_DIER_TDE                         /*!< DMA request is triggered by the trigger event */
768 /**
769   * @}
770   */
771 
772 /** @defgroup TIM_CC_DMA_Request CCx DMA request selection
773   * @{
774   */
775 #define TIM_CCDMAREQUEST_CC                 0x00000000U                         /*!< CCx DMA request sent when capture or compare match event occurs */
776 #define TIM_CCDMAREQUEST_UPDATE             TIM_CR2_CCDS                        /*!< CCx DMA requests sent when update event occurs */
777 /**
778   * @}
779   */
780 
781 /** @defgroup TIM_Flag_definition TIM Flag Definition
782   * @{
783   */
784 #define TIM_FLAG_UPDATE                    TIM_SR_UIF                           /*!< Update interrupt flag         */
785 #define TIM_FLAG_CC1                       TIM_SR_CC1IF                         /*!< Capture/Compare 1 interrupt flag */
786 #define TIM_FLAG_CC2                       TIM_SR_CC2IF                         /*!< Capture/Compare 2 interrupt flag */
787 #define TIM_FLAG_CC3                       TIM_SR_CC3IF                         /*!< Capture/Compare 3 interrupt flag */
788 #define TIM_FLAG_CC4                       TIM_SR_CC4IF                         /*!< Capture/Compare 4 interrupt flag */
789 #define TIM_FLAG_CC5                       TIM_SR_CC5IF                         /*!< Capture/Compare 5 interrupt flag */
790 #define TIM_FLAG_CC6                       TIM_SR_CC6IF                         /*!< Capture/Compare 6 interrupt flag */
791 #define TIM_FLAG_COM                       TIM_SR_COMIF                         /*!< Commutation interrupt flag    */
792 #define TIM_FLAG_TRIGGER                   TIM_SR_TIF                           /*!< Trigger interrupt flag        */
793 #define TIM_FLAG_BREAK                     TIM_SR_BIF                           /*!< Break interrupt flag          */
794 #define TIM_FLAG_BREAK2                    TIM_SR_B2IF                          /*!< Break 2 interrupt flag        */
795 #define TIM_FLAG_SYSTEM_BREAK              TIM_SR_SBIF                          /*!< System Break interrupt flag   */
796 #define TIM_FLAG_CC1OF                     TIM_SR_CC1OF                         /*!< Capture 1 overcapture flag    */
797 #define TIM_FLAG_CC2OF                     TIM_SR_CC2OF                         /*!< Capture 2 overcapture flag    */
798 #define TIM_FLAG_CC3OF                     TIM_SR_CC3OF                         /*!< Capture 3 overcapture flag    */
799 #define TIM_FLAG_CC4OF                     TIM_SR_CC4OF                         /*!< Capture 4 overcapture flag    */
800 #define TIM_FLAG_IDX                       TIM_SR_IDXF                          /*!< Encoder index flag            */
801 #define TIM_FLAG_DIR                       TIM_SR_DIRF                          /*!< Direction change flag         */
802 #define TIM_FLAG_IERR                      TIM_SR_IERRF                         /*!< Index error flag              */
803 #define TIM_FLAG_TERR                      TIM_SR_TERRF                         /*!< Transition error flag         */
804 /**
805   * @}
806   */
807 
808 /** @defgroup TIM_Channel TIM Channel
809   * @{
810   */
811 #define TIM_CHANNEL_1                      0x00000000U                          /*!< Capture/compare channel 1 identifier      */
812 #define TIM_CHANNEL_2                      0x00000004U                          /*!< Capture/compare channel 2 identifier      */
813 #define TIM_CHANNEL_3                      0x00000008U                          /*!< Capture/compare channel 3 identifier      */
814 #define TIM_CHANNEL_4                      0x0000000CU                          /*!< Capture/compare channel 4 identifier      */
815 #define TIM_CHANNEL_5                      0x00000010U                          /*!< Compare channel 5 identifier              */
816 #define TIM_CHANNEL_6                      0x00000014U                          /*!< Compare channel 6 identifier              */
817 #define TIM_CHANNEL_ALL                    0x0000003CU                          /*!< Global Capture/compare channel identifier  */
818 /**
819   * @}
820   */
821 
822 /** @defgroup TIM_Clock_Source TIM Clock Source
823   * @{
824   */
825 #define TIM_CLOCKSOURCE_INTERNAL    TIM_SMCR_ETPS_0      /*!< Internal clock source                                 */
826 #define TIM_CLOCKSOURCE_ETRMODE1    TIM_TS_ETRF          /*!< External clock source mode 1 (ETRF)                   */
827 #define TIM_CLOCKSOURCE_ETRMODE2    TIM_SMCR_ETPS_1      /*!< External clock source mode 2                          */
828 #define TIM_CLOCKSOURCE_TI1ED       TIM_TS_TI1F_ED       /*!< External clock source mode 1 (TTI1FP1 + edge detect.) */
829 #define TIM_CLOCKSOURCE_TI1         TIM_TS_TI1FP1        /*!< External clock source mode 1 (TTI1FP1)                */
830 #define TIM_CLOCKSOURCE_TI2         TIM_TS_TI2FP2        /*!< External clock source mode 1 (TTI2FP2)                */
831 #define TIM_CLOCKSOURCE_ITR0        TIM_TS_ITR0          /*!< External clock source mode 1 (ITR0)                   */
832 #define TIM_CLOCKSOURCE_ITR1        TIM_TS_ITR1          /*!< External clock source mode 1 (ITR1)                   */
833 #define TIM_CLOCKSOURCE_ITR2        TIM_TS_ITR2          /*!< External clock source mode 1 (ITR2)                   */
834 #define TIM_CLOCKSOURCE_ITR4        TIM_TS_ITR4          /*!< External clock source mode 1 (ITR4)                   */
835 #define TIM_CLOCKSOURCE_ITR5        TIM_TS_ITR5          /*!< External clock source mode 1 (ITR5)                   */
836 #define TIM_CLOCKSOURCE_ITR6        TIM_TS_ITR6          /*!< External clock source mode 1 (ITR6)                   */
837 #define TIM_CLOCKSOURCE_ITR7        TIM_TS_ITR7          /*!< External clock source mode 1 (ITR7)                   */
838 #define TIM_CLOCKSOURCE_ITR8        TIM_TS_ITR8          /*!< External clock source mode 1 (ITR8)                   */
839 /**
840   * @}
841   */
842 
843 /** @defgroup TIM_Clock_Polarity TIM Clock Polarity
844   * @{
845   */
846 #define TIM_CLOCKPOLARITY_INVERTED           TIM_ETRPOLARITY_INVERTED           /*!< Polarity for ETRx clock sources */
847 #define TIM_CLOCKPOLARITY_NONINVERTED        TIM_ETRPOLARITY_NONINVERTED        /*!< Polarity for ETRx clock sources */
848 #define TIM_CLOCKPOLARITY_RISING             TIM_INPUTCHANNELPOLARITY_RISING    /*!< Polarity for TIx clock sources */
849 #define TIM_CLOCKPOLARITY_FALLING            TIM_INPUTCHANNELPOLARITY_FALLING   /*!< Polarity for TIx clock sources */
850 #define TIM_CLOCKPOLARITY_BOTHEDGE           TIM_INPUTCHANNELPOLARITY_BOTHEDGE  /*!< Polarity for TIx clock sources */
851 /**
852   * @}
853   */
854 
855 /** @defgroup TIM_Clock_Prescaler TIM Clock Prescaler
856   * @{
857   */
858 #define TIM_CLOCKPRESCALER_DIV1                 TIM_ETRPRESCALER_DIV1           /*!< No prescaler is used                                                     */
859 #define TIM_CLOCKPRESCALER_DIV2                 TIM_ETRPRESCALER_DIV2           /*!< Prescaler for External ETR Clock: Capture performed once every 2 events. */
860 #define TIM_CLOCKPRESCALER_DIV4                 TIM_ETRPRESCALER_DIV4           /*!< Prescaler for External ETR Clock: Capture performed once every 4 events. */
861 #define TIM_CLOCKPRESCALER_DIV8                 TIM_ETRPRESCALER_DIV8           /*!< Prescaler for External ETR Clock: Capture performed once every 8 events. */
862 /**
863   * @}
864   */
865 
866 /** @defgroup TIM_ClearInput_Polarity TIM Clear Input Polarity
867   * @{
868   */
869 #define TIM_CLEARINPUTPOLARITY_INVERTED           TIM_ETRPOLARITY_INVERTED      /*!< Polarity for ETRx pin */
870 #define TIM_CLEARINPUTPOLARITY_NONINVERTED        TIM_ETRPOLARITY_NONINVERTED   /*!< Polarity for ETRx pin */
871 /**
872   * @}
873   */
874 
875 /** @defgroup TIM_ClearInput_Prescaler TIM Clear Input Prescaler
876   * @{
877   */
878 #define TIM_CLEARINPUTPRESCALER_DIV1              TIM_ETRPRESCALER_DIV1         /*!< No prescaler is used                                                   */
879 #define TIM_CLEARINPUTPRESCALER_DIV2              TIM_ETRPRESCALER_DIV2         /*!< Prescaler for External ETR pin: Capture performed once every 2 events. */
880 #define TIM_CLEARINPUTPRESCALER_DIV4              TIM_ETRPRESCALER_DIV4         /*!< Prescaler for External ETR pin: Capture performed once every 4 events. */
881 #define TIM_CLEARINPUTPRESCALER_DIV8              TIM_ETRPRESCALER_DIV8         /*!< Prescaler for External ETR pin: Capture performed once every 8 events. */
882 /**
883   * @}
884   */
885 
886 /** @defgroup TIM_OSSR_Off_State_Selection_for_Run_mode_state TIM OSSR OffState Selection for Run mode state
887   * @{
888   */
889 #define TIM_OSSR_ENABLE                          TIM_BDTR_OSSR                  /*!< When inactive, OC/OCN outputs are enabled (still controlled by the timer)           */
890 #define TIM_OSSR_DISABLE                         0x00000000U                    /*!< When inactive, OC/OCN outputs are disabled (not controlled any longer by the timer) */
891 /**
892   * @}
893   */
894 
895 /** @defgroup TIM_OSSI_Off_State_Selection_for_Idle_mode_state TIM OSSI OffState Selection for Idle mode state
896   * @{
897   */
898 #define TIM_OSSI_ENABLE                          TIM_BDTR_OSSI                  /*!< When inactive, OC/OCN outputs are enabled (still controlled by the timer)           */
899 #define TIM_OSSI_DISABLE                         0x00000000U                    /*!< When inactive, OC/OCN outputs are disabled (not controlled any longer by the timer) */
900 /**
901   * @}
902   */
903 /** @defgroup TIM_Lock_level  TIM Lock level
904   * @{
905   */
906 #define TIM_LOCKLEVEL_OFF                  0x00000000U                          /*!< LOCK OFF     */
907 #define TIM_LOCKLEVEL_1                    TIM_BDTR_LOCK_0                      /*!< LOCK Level 1 */
908 #define TIM_LOCKLEVEL_2                    TIM_BDTR_LOCK_1                      /*!< LOCK Level 2 */
909 #define TIM_LOCKLEVEL_3                    TIM_BDTR_LOCK                        /*!< LOCK Level 3 */
910 /**
911   * @}
912   */
913 
914 /** @defgroup TIM_Break_Input_enable_disable TIM Break Input Enable
915   * @{
916   */
917 #define TIM_BREAK_ENABLE                   TIM_BDTR_BKE                         /*!< Break input BRK is enabled  */
918 #define TIM_BREAK_DISABLE                  0x00000000U                          /*!< Break input BRK is disabled */
919 /**
920   * @}
921   */
922 
923 /** @defgroup TIM_Break_Polarity TIM Break Input Polarity
924   * @{
925   */
926 #define TIM_BREAKPOLARITY_LOW              0x00000000U                          /*!< Break input BRK is active low  */
927 #define TIM_BREAKPOLARITY_HIGH             TIM_BDTR_BKP                         /*!< Break input BRK is active high */
928 /**
929   * @}
930   */
931 
932 /** @defgroup TIM_Break_Input_AF_Mode TIM Break Input Alternate Function Mode
933   * @{
934   */
935 #define TIM_BREAK_AFMODE_INPUT             0x00000000U                          /*!< Break input BRK in input mode */
936 #define TIM_BREAK_AFMODE_BIDIRECTIONAL     TIM_BDTR_BKBID                       /*!< Break input BRK in bidirectional mode */
937 /**
938   * @}
939   */
940 
941 /** @defgroup TIM_Break2_Input_enable_disable TIM Break input 2 Enable
942   * @{
943   */
944 #define TIM_BREAK2_DISABLE                 0x00000000U                          /*!< Break input BRK2 is disabled  */
945 #define TIM_BREAK2_ENABLE                  TIM_BDTR_BK2E                        /*!< Break input BRK2 is enabled  */
946 /**
947   * @}
948   */
949 
950 /** @defgroup TIM_Break2_Polarity TIM Break Input 2 Polarity
951   * @{
952   */
953 #define TIM_BREAK2POLARITY_LOW             0x00000000U                          /*!< Break input BRK2 is active low   */
954 #define TIM_BREAK2POLARITY_HIGH            TIM_BDTR_BK2P                        /*!< Break input BRK2 is active high  */
955 /**
956   * @}
957   */
958 
959 /** @defgroup TIM_Break2_Input_AF_Mode TIM Break2 Input Alternate Function Mode
960   * @{
961   */
962 #define TIM_BREAK2_AFMODE_INPUT            0x00000000U                          /*!< Break2 input BRK2 in input mode */
963 #define TIM_BREAK2_AFMODE_BIDIRECTIONAL    TIM_BDTR_BK2BID                      /*!< Break2 input BRK2 in bidirectional mode */
964 /**
965   * @}
966   */
967 
968 /** @defgroup TIM_AOE_Bit_Set_Reset TIM Automatic Output Enable
969   * @{
970   */
971 #define TIM_AUTOMATICOUTPUT_DISABLE        0x00000000U                          /*!< MOE can be set only by software */
972 #define TIM_AUTOMATICOUTPUT_ENABLE         TIM_BDTR_AOE                         /*!< MOE can be set by software or automatically at the next update event (if none of the break inputs BRK and BRK2 is active) */
973 /**
974   * @}
975   */
976 
977 /** @defgroup TIM_Group_Channel5 TIM Group Channel 5 and Channel 1, 2 or 3
978   * @{
979   */
980 #define TIM_GROUPCH5_NONE                  0x00000000U                          /*!< No effect of OC5REF on OC1REFC, OC2REFC and OC3REFC */
981 #define TIM_GROUPCH5_OC1REFC               TIM_CCR5_GC5C1                       /*!< OC1REFC is the logical AND of OC1REFC and OC5REF    */
982 #define TIM_GROUPCH5_OC2REFC               TIM_CCR5_GC5C2                       /*!< OC2REFC is the logical AND of OC2REFC and OC5REF    */
983 #define TIM_GROUPCH5_OC3REFC               TIM_CCR5_GC5C3                       /*!< OC3REFC is the logical AND of OC3REFC and OC5REF    */
984 /**
985   * @}
986   */
987 
988 /** @defgroup TIM_Master_Mode_Selection TIM Master Mode Selection
989   * @{
990   */
991 #define TIM_TRGO_RESET            0x00000000U                                      /*!< TIMx_EGR.UG bit is used as trigger output (TRGO)              */
992 #define TIM_TRGO_ENABLE           TIM_CR2_MMS_0                                    /*!< TIMx_CR1.CEN bit is used as trigger output (TRGO)             */
993 #define TIM_TRGO_UPDATE           TIM_CR2_MMS_1                                    /*!< Update event is used as trigger output (TRGO)                 */
994 #define TIM_TRGO_OC1              (TIM_CR2_MMS_1 | TIM_CR2_MMS_0)                  /*!< Capture or a compare match 1 is used as trigger output (TRGO) */
995 #define TIM_TRGO_OC1REF           TIM_CR2_MMS_2                                    /*!< OC1REF signal is used as trigger output (TRGO)                */
996 #define TIM_TRGO_OC2REF           (TIM_CR2_MMS_2 | TIM_CR2_MMS_0)                  /*!< OC2REF signal is used as trigger output(TRGO)                 */
997 #define TIM_TRGO_OC3REF           (TIM_CR2_MMS_2 | TIM_CR2_MMS_1)                  /*!< OC3REF signal is used as trigger output(TRGO)                 */
998 #define TIM_TRGO_OC4REF           (TIM_CR2_MMS_2 | TIM_CR2_MMS_1 | TIM_CR2_MMS_0)  /*!< OC4REF signal is used as trigger output(TRGO)                 */
999 #define TIM_TRGO_ENCODER_CLK      TIM_CR2_MMS_3                                    /*!< Encoder clock is used as trigger output(TRGO)                 */
1000 /**
1001   * @}
1002   */
1003 
1004 /** @defgroup TIM_Master_Mode_Selection_2 TIM Master Mode Selection 2 (TRGO2)
1005   * @{
1006   */
1007 #define TIM_TRGO2_RESET                          0x00000000U                                                         /*!< TIMx_EGR.UG bit is used as trigger output (TRGO2)              */
1008 #define TIM_TRGO2_ENABLE                         TIM_CR2_MMS2_0                                                      /*!< TIMx_CR1.CEN bit is used as trigger output (TRGO2)             */
1009 #define TIM_TRGO2_UPDATE                         TIM_CR2_MMS2_1                                                      /*!< Update event is used as trigger output (TRGO2)                 */
1010 #define TIM_TRGO2_OC1                            (TIM_CR2_MMS2_1 | TIM_CR2_MMS2_0)                                   /*!< Capture or a compare match 1 is used as trigger output (TRGO2) */
1011 #define TIM_TRGO2_OC1REF                         TIM_CR2_MMS2_2                                                      /*!< OC1REF signal is used as trigger output (TRGO2)                */
1012 #define TIM_TRGO2_OC2REF                         (TIM_CR2_MMS2_2 | TIM_CR2_MMS2_0)                                   /*!< OC2REF signal is used as trigger output (TRGO2)                */
1013 #define TIM_TRGO2_OC3REF                         (TIM_CR2_MMS2_2 | TIM_CR2_MMS2_1)                                   /*!< OC3REF signal is used as trigger output (TRGO2)                */
1014 #define TIM_TRGO2_OC4REF                         (TIM_CR2_MMS2_2 | TIM_CR2_MMS2_1 | TIM_CR2_MMS2_0)                  /*!< OC4REF signal is used as trigger output (TRGO2)                */
1015 #define TIM_TRGO2_OC5REF                         TIM_CR2_MMS2_3                                                      /*!< OC5REF signal is used as trigger output (TRGO2)                */
1016 #define TIM_TRGO2_OC6REF                         (TIM_CR2_MMS2_3 | TIM_CR2_MMS2_0)                                   /*!< OC6REF signal is used as trigger output (TRGO2)                */
1017 #define TIM_TRGO2_OC4REF_RISINGFALLING           (TIM_CR2_MMS2_3 | TIM_CR2_MMS2_1)                                   /*!< OC4REF rising or falling edges generate pulses on TRGO2        */
1018 #define TIM_TRGO2_OC6REF_RISINGFALLING           (TIM_CR2_MMS2_3 | TIM_CR2_MMS2_1 | TIM_CR2_MMS2_0)                  /*!< OC6REF rising or falling edges generate pulses on TRGO2        */
1019 #define TIM_TRGO2_OC4REF_RISING_OC6REF_RISING    (TIM_CR2_MMS2_3 | TIM_CR2_MMS2_2)                                   /*!< OC4REF or OC6REF rising edges generate pulses on TRGO2         */
1020 #define TIM_TRGO2_OC4REF_RISING_OC6REF_FALLING   (TIM_CR2_MMS2_3 | TIM_CR2_MMS2_2 | TIM_CR2_MMS2_0)                  /*!< OC4REF rising or OC6REF falling edges generate pulses on TRGO2 */
1021 #define TIM_TRGO2_OC5REF_RISING_OC6REF_RISING    (TIM_CR2_MMS2_3 | TIM_CR2_MMS2_2 |TIM_CR2_MMS2_1)                   /*!< OC5REF or OC6REF rising edges generate pulses on TRGO2         */
1022 #define TIM_TRGO2_OC5REF_RISING_OC6REF_FALLING   (TIM_CR2_MMS2_3 | TIM_CR2_MMS2_2 | TIM_CR2_MMS2_1 | TIM_CR2_MMS2_0) /*!< OC5REF or OC6REF rising edges generate pulses on TRGO2         */
1023 /**
1024   * @}
1025   */
1026 
1027 /** @defgroup TIM_Master_Slave_Mode TIM Master/Slave Mode
1028   * @{
1029   */
1030 #define TIM_MASTERSLAVEMODE_ENABLE         TIM_SMCR_MSM                         /*!< No action */
1031 #define TIM_MASTERSLAVEMODE_DISABLE        0x00000000U                          /*!< Master/slave mode is selected */
1032 /**
1033   * @}
1034   */
1035 
1036 /** @defgroup TIM_Slave_Mode TIM Slave mode
1037   * @{
1038   */
1039 #define TIM_SLAVEMODE_DISABLE                0x00000000U                                        /*!< Slave mode disabled           */
1040 #define TIM_SLAVEMODE_RESET                  TIM_SMCR_SMS_2                                     /*!< Reset Mode                    */
1041 #define TIM_SLAVEMODE_GATED                  (TIM_SMCR_SMS_2 | TIM_SMCR_SMS_0)                  /*!< Gated Mode                    */
1042 #define TIM_SLAVEMODE_TRIGGER                (TIM_SMCR_SMS_2 | TIM_SMCR_SMS_1)                  /*!< Trigger Mode                  */
1043 #define TIM_SLAVEMODE_EXTERNAL1              (TIM_SMCR_SMS_2 | TIM_SMCR_SMS_1 | TIM_SMCR_SMS_0) /*!< External Clock Mode 1         */
1044 #define TIM_SLAVEMODE_COMBINED_RESETTRIGGER  TIM_SMCR_SMS_3                                     /*!< Combined reset + trigger mode */
1045 #define TIM_SLAVEMODE_COMBINED_GATEDRESET    (TIM_SMCR_SMS_3 | TIM_SMCR_SMS_0)                  /*!< Combined gated + reset mode   */
1046 /**
1047   * @}
1048   */
1049 
1050 /** @defgroup TIM_Output_Compare_and_PWM_modes TIM Output Compare and PWM Modes
1051   * @{
1052   */
1053 #define TIM_OCMODE_TIMING                   0x00000000U                                              /*!< Frozen                                 */
1054 #define TIM_OCMODE_ACTIVE                   TIM_CCMR1_OC1M_0                                         /*!< Set channel to active level on match   */
1055 #define TIM_OCMODE_INACTIVE                 TIM_CCMR1_OC1M_1                                         /*!< Set channel to inactive level on match */
1056 #define TIM_OCMODE_TOGGLE                   (TIM_CCMR1_OC1M_1 | TIM_CCMR1_OC1M_0)                    /*!< Toggle                                 */
1057 #define TIM_OCMODE_PWM1                     (TIM_CCMR1_OC1M_2 | TIM_CCMR1_OC1M_1)                    /*!< PWM mode 1                             */
1058 #define TIM_OCMODE_PWM2                     (TIM_CCMR1_OC1M_2 | TIM_CCMR1_OC1M_1 | TIM_CCMR1_OC1M_0) /*!< PWM mode 2                             */
1059 #define TIM_OCMODE_FORCED_ACTIVE            (TIM_CCMR1_OC1M_2 | TIM_CCMR1_OC1M_0)                    /*!< Force active level                     */
1060 #define TIM_OCMODE_FORCED_INACTIVE          TIM_CCMR1_OC1M_2                                         /*!< Force inactive level                   */
1061 #define TIM_OCMODE_RETRIGERRABLE_OPM1      TIM_CCMR1_OC1M_3                                          /*!< Retrigerrable OPM mode 1               */
1062 #define TIM_OCMODE_RETRIGERRABLE_OPM2      (TIM_CCMR1_OC1M_3 | TIM_CCMR1_OC1M_0)                     /*!< Retrigerrable OPM mode 2               */
1063 #define TIM_OCMODE_COMBINED_PWM1           (TIM_CCMR1_OC1M_3 | TIM_CCMR1_OC1M_2)                     /*!< Combined PWM mode 1                    */
1064 #define TIM_OCMODE_COMBINED_PWM2           (TIM_CCMR1_OC1M_3 | TIM_CCMR1_OC1M_0 | TIM_CCMR1_OC1M_2)  /*!< Combined PWM mode 2                    */
1065 #define TIM_OCMODE_ASYMMETRIC_PWM1         (TIM_CCMR1_OC1M_3 | TIM_CCMR1_OC1M_1 | TIM_CCMR1_OC1M_2)  /*!< Asymmetric PWM mode 1                  */
1066 #define TIM_OCMODE_ASYMMETRIC_PWM2         TIM_CCMR1_OC1M                                            /*!< Asymmetric PWM mode 2                  */
1067 #define TIM_OCMODE_PULSE_ON_COMPARE        (TIM_CCMR2_OC3M_3 | TIM_CCMR2_OC3M_1)                     /*!< Pulse on compare (CH3&CH4 only)        */
1068 #define TIM_OCMODE_DIRECTION_OUTPUT        (TIM_CCMR2_OC3M_3 | TIM_CCMR2_OC3M_1 | TIM_CCMR2_OC3M_0)  /*!< Direction output (CH3&CH4 only)        */
1069 /**
1070   * @}
1071   */
1072 
1073 /** @defgroup TIM_Trigger_Selection TIM Trigger Selection
1074   * @{
1075   */
1076 #define TIM_TS_ITR0          0x00000000U                                                       /*!< Internal Trigger 0 (ITR0)              */
1077 #define TIM_TS_ITR1          TIM_SMCR_TS_0                                                     /*!< Internal Trigger 1 (ITR1)              */
1078 #define TIM_TS_ITR2          TIM_SMCR_TS_1                                                     /*!< Internal Trigger 2 (ITR2)              */
1079 #define TIM_TS_ITR7          (TIM_SMCR_TS_0 | TIM_SMCR_TS_1 | TIM_SMCR_TS_3)                   /*!< Internal Trigger 7 (ITR7)              */
1080 #define TIM_TS_ITR8          (TIM_SMCR_TS_2 | TIM_SMCR_TS_3)                                   /*!< Internal Trigger 8 (ITR8)              */
1081 #define TIM_TS_TI1F_ED       TIM_SMCR_TS_2                                                     /*!< TI1 Edge Detector (TI1F_ED)            */
1082 #define TIM_TS_TI1FP1        (TIM_SMCR_TS_0 | TIM_SMCR_TS_2)                                   /*!< Filtered Timer Input 1 (TI1FP1)        */
1083 #define TIM_TS_TI2FP2        (TIM_SMCR_TS_1 | TIM_SMCR_TS_2)                                   /*!< Filtered Timer Input 2 (TI2FP2)        */
1084 #define TIM_TS_ETRF          (TIM_SMCR_TS_0 | TIM_SMCR_TS_1 | TIM_SMCR_TS_2)                   /*!< Filtered External Trigger input (ETRF) */
1085 #define TIM_TS_NONE          0x0000FFFFU                                                       /*!< No trigger selected                    */
1086 /**
1087   * @}
1088   */
1089 
1090 /** @defgroup TIM_Trigger_Polarity TIM Trigger Polarity
1091   * @{
1092   */
1093 #define TIM_TRIGGERPOLARITY_INVERTED           TIM_ETRPOLARITY_INVERTED               /*!< Polarity for ETRx trigger sources             */
1094 #define TIM_TRIGGERPOLARITY_NONINVERTED        TIM_ETRPOLARITY_NONINVERTED            /*!< Polarity for ETRx trigger sources             */
1095 #define TIM_TRIGGERPOLARITY_RISING             TIM_INPUTCHANNELPOLARITY_RISING        /*!< Polarity for TIxFPx or TI1_ED trigger sources */
1096 #define TIM_TRIGGERPOLARITY_FALLING            TIM_INPUTCHANNELPOLARITY_FALLING       /*!< Polarity for TIxFPx or TI1_ED trigger sources */
1097 #define TIM_TRIGGERPOLARITY_BOTHEDGE           TIM_INPUTCHANNELPOLARITY_BOTHEDGE      /*!< Polarity for TIxFPx or TI1_ED trigger sources */
1098 /**
1099   * @}
1100   */
1101 
1102 /** @defgroup TIM_Trigger_Prescaler TIM Trigger Prescaler
1103   * @{
1104   */
1105 #define TIM_TRIGGERPRESCALER_DIV1             TIM_ETRPRESCALER_DIV1             /*!< No prescaler is used                                                       */
1106 #define TIM_TRIGGERPRESCALER_DIV2             TIM_ETRPRESCALER_DIV2             /*!< Prescaler for External ETR Trigger: Capture performed once every 2 events. */
1107 #define TIM_TRIGGERPRESCALER_DIV4             TIM_ETRPRESCALER_DIV4             /*!< Prescaler for External ETR Trigger: Capture performed once every 4 events. */
1108 #define TIM_TRIGGERPRESCALER_DIV8             TIM_ETRPRESCALER_DIV8             /*!< Prescaler for External ETR Trigger: Capture performed once every 8 events. */
1109 /**
1110   * @}
1111   */
1112 
1113 /** @defgroup TIM_TI1_Selection TIM TI1 Input Selection
1114   * @{
1115   */
1116 #define TIM_TI1SELECTION_CH1               0x00000000U                          /*!< The TIMx_CH1 pin is connected to TI1 input */
1117 #define TIM_TI1SELECTION_XORCOMBINATION    TIM_CR2_TI1S                         /*!< The TIMx_CH1, CH2 and CH3 pins are connected to the TI1 input (XOR combination) */
1118 /**
1119   * @}
1120   */
1121 
1122 /** @defgroup TIM_DMA_Burst_Length TIM DMA Burst Length
1123   * @{
1124   */
1125 #define TIM_DMABURSTLENGTH_1TRANSFER       0x00000000U                          /*!< The transfer is done to 1 register starting from TIMx_CR1 + TIMx_DCR.DBA   */
1126 #define TIM_DMABURSTLENGTH_2TRANSFERS      0x00000100U                          /*!< The transfer is done to 2 registers starting from TIMx_CR1 + TIMx_DCR.DBA  */
1127 #define TIM_DMABURSTLENGTH_3TRANSFERS      0x00000200U                          /*!< The transfer is done to 3 registers starting from TIMx_CR1 + TIMx_DCR.DBA  */
1128 #define TIM_DMABURSTLENGTH_4TRANSFERS      0x00000300U                          /*!< The transfer is done to 4 registers starting from TIMx_CR1 + TIMx_DCR.DBA  */
1129 #define TIM_DMABURSTLENGTH_5TRANSFERS      0x00000400U                          /*!< The transfer is done to 5 registers starting from TIMx_CR1 + TIMx_DCR.DBA  */
1130 #define TIM_DMABURSTLENGTH_6TRANSFERS      0x00000500U                          /*!< The transfer is done to 6 registers starting from TIMx_CR1 + TIMx_DCR.DBA  */
1131 #define TIM_DMABURSTLENGTH_7TRANSFERS      0x00000600U                          /*!< The transfer is done to 7 registers starting from TIMx_CR1 + TIMx_DCR.DBA  */
1132 #define TIM_DMABURSTLENGTH_8TRANSFERS      0x00000700U                          /*!< The transfer is done to 8 registers starting from TIMx_CR1 + TIMx_DCR.DBA  */
1133 #define TIM_DMABURSTLENGTH_9TRANSFERS      0x00000800U                          /*!< The transfer is done to 9 registers starting from TIMx_CR1 + TIMx_DCR.DBA  */
1134 #define TIM_DMABURSTLENGTH_10TRANSFERS     0x00000900U                          /*!< The transfer is done to 10 registers starting from TIMx_CR1 + TIMx_DCR.DBA */
1135 #define TIM_DMABURSTLENGTH_11TRANSFERS     0x00000A00U                          /*!< The transfer is done to 11 registers starting from TIMx_CR1 + TIMx_DCR.DBA */
1136 #define TIM_DMABURSTLENGTH_12TRANSFERS     0x00000B00U                          /*!< The transfer is done to 12 registers starting from TIMx_CR1 + TIMx_DCR.DBA */
1137 #define TIM_DMABURSTLENGTH_13TRANSFERS     0x00000C00U                          /*!< The transfer is done to 13 registers starting from TIMx_CR1 + TIMx_DCR.DBA */
1138 #define TIM_DMABURSTLENGTH_14TRANSFERS     0x00000D00U                          /*!< The transfer is done to 14 registers starting from TIMx_CR1 + TIMx_DCR.DBA */
1139 #define TIM_DMABURSTLENGTH_15TRANSFERS     0x00000E00U                          /*!< The transfer is done to 15 registers starting from TIMx_CR1 + TIMx_DCR.DBA */
1140 #define TIM_DMABURSTLENGTH_16TRANSFERS     0x00000F00U                          /*!< The transfer is done to 16 registers starting from TIMx_CR1 + TIMx_DCR.DBA */
1141 #define TIM_DMABURSTLENGTH_17TRANSFERS     0x00001000U                          /*!< The transfer is done to 17 registers starting from TIMx_CR1 + TIMx_DCR.DBA */
1142 #define TIM_DMABURSTLENGTH_18TRANSFERS     0x00001100U                          /*!< The transfer is done to 18 registers starting from TIMx_CR1 + TIMx_DCR.DBA */
1143 #define TIM_DMABURSTLENGTH_19TRANSFERS     0x00001200U                          /*!< The transfer is done to 19 registers starting from TIMx_CR1 + TIMx_DCR.DBA */
1144 #define TIM_DMABURSTLENGTH_20TRANSFERS     0x00001300U                          /*!< The transfer is done to 20 registers starting from TIMx_CR1 + TIMx_DCR.DBA */
1145 #define TIM_DMABURSTLENGTH_21TRANSFERS     0x00001400U                          /*!< The transfer is done to 21 registers starting from TIMx_CR1 + TIMx_DCR.DBA */
1146 #define TIM_DMABURSTLENGTH_22TRANSFERS     0x00001500U                          /*!< The transfer is done to 22 registers starting from TIMx_CR1 + TIMx_DCR.DBA */
1147 #define TIM_DMABURSTLENGTH_23TRANSFERS     0x00001600U                          /*!< The transfer is done to 23 registers starting from TIMx_CR1 + TIMx_DCR.DBA */
1148 #define TIM_DMABURSTLENGTH_24TRANSFERS     0x00001700U                          /*!< The transfer is done to 24 registers starting from TIMx_CR1 + TIMx_DCR.DBA */
1149 #define TIM_DMABURSTLENGTH_25TRANSFERS     0x00001800U                          /*!< The transfer is done to 25 registers starting from TIMx_CR1 + TIMx_DCR.DBA */
1150 #define TIM_DMABURSTLENGTH_26TRANSFERS     0x00001900U                          /*!< The transfer is done to 26 registers starting from TIMx_CR1 + TIMx_DCR.DBA */
1151 /**
1152   * @}
1153   */
1154 
1155 /** @defgroup DMA_Handle_index TIM DMA Handle Index
1156   * @{
1157   */
1158 #define TIM_DMA_ID_UPDATE                ((uint16_t) 0x0000)       /*!< Index of the DMA handle used for Update DMA requests */
1159 #define TIM_DMA_ID_CC1                   ((uint16_t) 0x0001)       /*!< Index of the DMA handle used for Capture/Compare 1 DMA requests */
1160 #define TIM_DMA_ID_CC2                   ((uint16_t) 0x0002)       /*!< Index of the DMA handle used for Capture/Compare 2 DMA requests */
1161 #define TIM_DMA_ID_CC3                   ((uint16_t) 0x0003)       /*!< Index of the DMA handle used for Capture/Compare 3 DMA requests */
1162 #define TIM_DMA_ID_CC4                   ((uint16_t) 0x0004)       /*!< Index of the DMA handle used for Capture/Compare 4 DMA requests */
1163 #define TIM_DMA_ID_COMMUTATION           ((uint16_t) 0x0005)       /*!< Index of the DMA handle used for Commutation DMA requests */
1164 #define TIM_DMA_ID_TRIGGER               ((uint16_t) 0x0006)       /*!< Index of the DMA handle used for Trigger DMA requests */
1165 /**
1166   * @}
1167   */
1168 
1169 /** @defgroup Channel_CC_State TIM Capture/Compare Channel State
1170   * @{
1171   */
1172 #define TIM_CCx_ENABLE                   0x00000001U                            /*!< Input or output channel is enabled */
1173 #define TIM_CCx_DISABLE                  0x00000000U                            /*!< Input or output channel is disabled */
1174 #define TIM_CCxN_ENABLE                  0x00000004U                            /*!< Complementary output channel is enabled */
1175 #define TIM_CCxN_DISABLE                 0x00000000U                            /*!< Complementary output channel is enabled */
1176 /**
1177   * @}
1178   */
1179 
1180 /** @defgroup TIM_Break_System TIM Break System
1181   * @{
1182   */
1183 #define TIM_BREAK_SYSTEM_ECC                 SYSCFG_CFGR2_ECCL   /*!< Enables and locks the ECC error signal with Break Input of TIM1/16/17 */
1184 #define TIM_BREAK_SYSTEM_PVD                 SYSCFG_CFGR2_PVDL   /*!< Enables and locks the PVD connection with TIM1/16/17 Break Input and also the PVDE and PLS bits of the Power Control Interface */
1185 #define TIM_BREAK_SYSTEM_SRAM2_PARITY_ERROR  SYSCFG_CFGR2_SPL    /*!< Enables and locks the SRAM2_PARITY error signal with Break Input of TIM1/16/17 */
1186 #define TIM_BREAK_SYSTEM_LOCKUP              SYSCFG_CFGR2_CLL    /*!< Enables and locks the LOCKUP output of CortexM4 with Break Input of TIM1/16/17 */
1187 /**
1188   * @}
1189   */
1190 
1191 /**
1192   * @}
1193   */
1194 /* End of exported constants -------------------------------------------------*/
1195 
1196 /* Exported macros -----------------------------------------------------------*/
1197 /** @defgroup TIM_Exported_Macros TIM Exported Macros
1198   * @{
1199   */
1200 
1201 /** @brief  Reset TIM handle state.
1202   * @param  __HANDLE__ TIM handle.
1203   * @retval None
1204   */
1205 #if (USE_HAL_TIM_REGISTER_CALLBACKS == 1)
1206 #define __HAL_TIM_RESET_HANDLE_STATE(__HANDLE__) do {                                                               \
1207                                                       (__HANDLE__)->State            = HAL_TIM_STATE_RESET;         \
1208                                                       (__HANDLE__)->ChannelState[0]  = HAL_TIM_CHANNEL_STATE_RESET; \
1209                                                       (__HANDLE__)->ChannelState[1]  = HAL_TIM_CHANNEL_STATE_RESET; \
1210                                                       (__HANDLE__)->ChannelState[2]  = HAL_TIM_CHANNEL_STATE_RESET; \
1211                                                       (__HANDLE__)->ChannelState[3]  = HAL_TIM_CHANNEL_STATE_RESET; \
1212                                                       (__HANDLE__)->ChannelState[4]  = HAL_TIM_CHANNEL_STATE_RESET; \
1213                                                       (__HANDLE__)->ChannelState[5]  = HAL_TIM_CHANNEL_STATE_RESET; \
1214                                                       (__HANDLE__)->ChannelNState[0] = HAL_TIM_CHANNEL_STATE_RESET; \
1215                                                       (__HANDLE__)->ChannelNState[1] = HAL_TIM_CHANNEL_STATE_RESET; \
1216                                                       (__HANDLE__)->ChannelNState[2] = HAL_TIM_CHANNEL_STATE_RESET; \
1217                                                       (__HANDLE__)->ChannelNState[3] = HAL_TIM_CHANNEL_STATE_RESET; \
1218                                                       (__HANDLE__)->DMABurstState    = HAL_DMA_BURST_STATE_RESET;   \
1219                                                       (__HANDLE__)->Base_MspInitCallback         = NULL;            \
1220                                                       (__HANDLE__)->Base_MspDeInitCallback       = NULL;            \
1221                                                       (__HANDLE__)->IC_MspInitCallback           = NULL;            \
1222                                                       (__HANDLE__)->IC_MspDeInitCallback         = NULL;            \
1223                                                       (__HANDLE__)->OC_MspInitCallback           = NULL;            \
1224                                                       (__HANDLE__)->OC_MspDeInitCallback         = NULL;            \
1225                                                       (__HANDLE__)->PWM_MspInitCallback          = NULL;            \
1226                                                       (__HANDLE__)->PWM_MspDeInitCallback        = NULL;            \
1227                                                       (__HANDLE__)->OnePulse_MspInitCallback     = NULL;            \
1228                                                       (__HANDLE__)->OnePulse_MspDeInitCallback   = NULL;            \
1229                                                       (__HANDLE__)->Encoder_MspInitCallback      = NULL;            \
1230                                                       (__HANDLE__)->Encoder_MspDeInitCallback    = NULL;            \
1231                                                       (__HANDLE__)->HallSensor_MspInitCallback   = NULL;            \
1232                                                       (__HANDLE__)->HallSensor_MspDeInitCallback = NULL;            \
1233                                                      } while(0)
1234 #else
1235 #define __HAL_TIM_RESET_HANDLE_STATE(__HANDLE__) do {                                                               \
1236                                                       (__HANDLE__)->State            = HAL_TIM_STATE_RESET;         \
1237                                                       (__HANDLE__)->ChannelState[0]  = HAL_TIM_CHANNEL_STATE_RESET; \
1238                                                       (__HANDLE__)->ChannelState[1]  = HAL_TIM_CHANNEL_STATE_RESET; \
1239                                                       (__HANDLE__)->ChannelState[2]  = HAL_TIM_CHANNEL_STATE_RESET; \
1240                                                       (__HANDLE__)->ChannelState[3]  = HAL_TIM_CHANNEL_STATE_RESET; \
1241                                                       (__HANDLE__)->ChannelState[4]  = HAL_TIM_CHANNEL_STATE_RESET; \
1242                                                       (__HANDLE__)->ChannelState[5]  = HAL_TIM_CHANNEL_STATE_RESET; \
1243                                                       (__HANDLE__)->ChannelNState[0] = HAL_TIM_CHANNEL_STATE_RESET; \
1244                                                       (__HANDLE__)->ChannelNState[1] = HAL_TIM_CHANNEL_STATE_RESET; \
1245                                                       (__HANDLE__)->ChannelNState[2] = HAL_TIM_CHANNEL_STATE_RESET; \
1246                                                       (__HANDLE__)->ChannelNState[3] = HAL_TIM_CHANNEL_STATE_RESET; \
1247                                                       (__HANDLE__)->DMABurstState    = HAL_DMA_BURST_STATE_RESET;   \
1248                                                      } while(0)
1249 #endif /* USE_HAL_TIM_REGISTER_CALLBACKS */
1250 
1251 /**
1252   * @brief  Enable the TIM peripheral.
1253   * @param  __HANDLE__ TIM handle
1254   * @retval None
1255   */
1256 #define __HAL_TIM_ENABLE(__HANDLE__)                 ((__HANDLE__)->Instance->CR1|=(TIM_CR1_CEN))
1257 
1258 /**
1259   * @brief  Enable the TIM main Output.
1260   * @param  __HANDLE__ TIM handle
1261   * @retval None
1262   */
1263 #define __HAL_TIM_MOE_ENABLE(__HANDLE__)             ((__HANDLE__)->Instance->BDTR|=(TIM_BDTR_MOE))
1264 
1265 /**
1266   * @brief  Disable the TIM peripheral.
1267   * @param  __HANDLE__ TIM handle
1268   * @retval None
1269   */
1270 #define __HAL_TIM_DISABLE(__HANDLE__) \
1271   do { \
1272     if (((__HANDLE__)->Instance->CCER & TIM_CCER_CCxE_MASK) == 0UL) \
1273     { \
1274       if(((__HANDLE__)->Instance->CCER & TIM_CCER_CCxNE_MASK) == 0UL) \
1275       { \
1276         (__HANDLE__)->Instance->CR1 &= ~(TIM_CR1_CEN); \
1277       } \
1278     } \
1279   } while(0)
1280 
1281 /**
1282   * @brief  Disable the TIM main Output.
1283   * @param  __HANDLE__ TIM handle
1284   * @retval None
1285   * @note The Main Output Enable of a timer instance is disabled only if all the CCx and CCxN channels have been
1286   *       disabled
1287   */
1288 #define __HAL_TIM_MOE_DISABLE(__HANDLE__) \
1289   do { \
1290     if (((__HANDLE__)->Instance->CCER & TIM_CCER_CCxE_MASK) == 0UL) \
1291     { \
1292       if(((__HANDLE__)->Instance->CCER & TIM_CCER_CCxNE_MASK) == 0UL) \
1293       { \
1294         (__HANDLE__)->Instance->BDTR &= ~(TIM_BDTR_MOE); \
1295       } \
1296     } \
1297   } while(0)
1298 
1299 /**
1300   * @brief  Disable the TIM main Output.
1301   * @param  __HANDLE__ TIM handle
1302   * @retval None
1303   * @note The Main Output Enable of a timer instance is disabled unconditionally
1304   */
1305 #define __HAL_TIM_MOE_DISABLE_UNCONDITIONALLY(__HANDLE__)  (__HANDLE__)->Instance->BDTR &= ~(TIM_BDTR_MOE)
1306 
1307 /** @brief  Enable the specified TIM interrupt.
1308   * @param  __HANDLE__ specifies the TIM Handle.
1309   * @param  __INTERRUPT__ specifies the TIM interrupt source to enable.
1310   *          This parameter can be one of the following values:
1311   *            @arg TIM_IT_UPDATE: Update interrupt
1312   *            @arg TIM_IT_CC1:   Capture/Compare 1 interrupt
1313   *            @arg TIM_IT_CC2:  Capture/Compare 2 interrupt
1314   *            @arg TIM_IT_CC3:  Capture/Compare 3 interrupt
1315   *            @arg TIM_IT_CC4:  Capture/Compare 4 interrupt
1316   *            @arg TIM_IT_COM:   Commutation interrupt
1317   *            @arg TIM_IT_TRIGGER: Trigger interrupt
1318   *            @arg TIM_IT_BREAK: Break interrupt
1319   *            @arg TIM_IT_IDX: Index interrupt
1320   *            @arg TIM_IT_DIR: Direction change interrupt
1321   *            @arg TIM_IT_IERR: Index error interrupt
1322   *            @arg TIM_IT_TERR: Transition error interrupt
1323   * @retval None
1324   */
1325 #define __HAL_TIM_ENABLE_IT(__HANDLE__, __INTERRUPT__)    ((__HANDLE__)->Instance->DIER |= (__INTERRUPT__))
1326 
1327 /** @brief  Disable the specified TIM interrupt.
1328   * @param  __HANDLE__ specifies the TIM Handle.
1329   * @param  __INTERRUPT__ specifies the TIM interrupt source to disable.
1330   *          This parameter can be one of the following values:
1331   *            @arg TIM_IT_UPDATE: Update interrupt
1332   *            @arg TIM_IT_CC1:   Capture/Compare 1 interrupt
1333   *            @arg TIM_IT_CC2:  Capture/Compare 2 interrupt
1334   *            @arg TIM_IT_CC3:  Capture/Compare 3 interrupt
1335   *            @arg TIM_IT_CC4:  Capture/Compare 4 interrupt
1336   *            @arg TIM_IT_COM:   Commutation interrupt
1337   *            @arg TIM_IT_TRIGGER: Trigger interrupt
1338   *            @arg TIM_IT_BREAK: Break interrupt
1339   *            @arg TIM_IT_IDX: Index interrupt
1340   *            @arg TIM_IT_DIR: Direction change interrupt
1341   *            @arg TIM_IT_IERR: Index error interrupt
1342   *            @arg TIM_IT_TERR: Transition error interrupt
1343   * @retval None
1344   */
1345 #define __HAL_TIM_DISABLE_IT(__HANDLE__, __INTERRUPT__)   ((__HANDLE__)->Instance->DIER &= ~(__INTERRUPT__))
1346 
1347 /** @brief  Enable the specified DMA request.
1348   * @param  __HANDLE__ specifies the TIM Handle.
1349   * @param  __DMA__ specifies the TIM DMA request to enable.
1350   *          This parameter can be one of the following values:
1351   *            @arg TIM_DMA_UPDATE: Update DMA request
1352   *            @arg TIM_DMA_CC1:   Capture/Compare 1 DMA request
1353   *            @arg TIM_DMA_CC2:  Capture/Compare 2 DMA request
1354   *            @arg TIM_DMA_CC3:  Capture/Compare 3 DMA request
1355   *            @arg TIM_DMA_CC4:  Capture/Compare 4 DMA request
1356   *            @arg TIM_DMA_COM:   Commutation DMA request
1357   *            @arg TIM_DMA_TRIGGER: Trigger DMA request
1358   * @retval None
1359   */
1360 #define __HAL_TIM_ENABLE_DMA(__HANDLE__, __DMA__)         ((__HANDLE__)->Instance->DIER |= (__DMA__))
1361 
1362 /** @brief  Disable the specified DMA request.
1363   * @param  __HANDLE__ specifies the TIM Handle.
1364   * @param  __DMA__ specifies the TIM DMA request to disable.
1365   *          This parameter can be one of the following values:
1366   *            @arg TIM_DMA_UPDATE: Update DMA request
1367   *            @arg TIM_DMA_CC1:   Capture/Compare 1 DMA request
1368   *            @arg TIM_DMA_CC2:  Capture/Compare 2 DMA request
1369   *            @arg TIM_DMA_CC3:  Capture/Compare 3 DMA request
1370   *            @arg TIM_DMA_CC4:  Capture/Compare 4 DMA request
1371   *            @arg TIM_DMA_COM:   Commutation DMA request
1372   *            @arg TIM_DMA_TRIGGER: Trigger DMA request
1373   * @retval None
1374   */
1375 #define __HAL_TIM_DISABLE_DMA(__HANDLE__, __DMA__)        ((__HANDLE__)->Instance->DIER &= ~(__DMA__))
1376 
1377 /** @brief  Check whether the specified TIM interrupt flag is set or not.
1378   * @param  __HANDLE__ specifies the TIM Handle.
1379   * @param  __FLAG__ specifies the TIM interrupt flag to check.
1380   *        This parameter can be one of the following values:
1381   *            @arg TIM_FLAG_UPDATE: Update interrupt flag
1382   *            @arg TIM_FLAG_CC1: Capture/Compare 1 interrupt flag
1383   *            @arg TIM_FLAG_CC2: Capture/Compare 2 interrupt flag
1384   *            @arg TIM_FLAG_CC3: Capture/Compare 3 interrupt flag
1385   *            @arg TIM_FLAG_CC4: Capture/Compare 4 interrupt flag
1386   *            @arg TIM_FLAG_CC5: Compare 5 interrupt flag
1387   *            @arg TIM_FLAG_CC6: Compare 6 interrupt flag
1388   *            @arg TIM_FLAG_COM:  Commutation interrupt flag
1389   *            @arg TIM_FLAG_TRIGGER: Trigger interrupt flag
1390   *            @arg TIM_FLAG_BREAK: Break interrupt flag
1391   *            @arg TIM_FLAG_BREAK2: Break 2 interrupt flag
1392   *            @arg TIM_FLAG_SYSTEM_BREAK: System Break interrupt flag
1393   *            @arg TIM_FLAG_CC1OF: Capture/Compare 1 overcapture flag
1394   *            @arg TIM_FLAG_CC2OF: Capture/Compare 2 overcapture flag
1395   *            @arg TIM_FLAG_CC3OF: Capture/Compare 3 overcapture flag
1396   *            @arg TIM_FLAG_CC4OF: Capture/Compare 4 overcapture flag
1397   *            @arg TIM_FLAG_IDX: Index interrupt flag
1398   *            @arg TIM_FLAG_DIR: Direction change interrupt flag
1399   *            @arg TIM_FLAG_IERR: Index error interrupt flag
1400   *            @arg TIM_FLAG_TERR: Transition error interrupt flag
1401   * @retval The new state of __FLAG__ (TRUE or FALSE).
1402   */
1403 #define __HAL_TIM_GET_FLAG(__HANDLE__, __FLAG__)          (((__HANDLE__)->Instance->SR &(__FLAG__)) == (__FLAG__))
1404 
1405 /** @brief  Clear the specified TIM interrupt flag.
1406   * @param  __HANDLE__ specifies the TIM Handle.
1407   * @param  __FLAG__ specifies the TIM interrupt flag to clear.
1408   *        This parameter can be one of the following values:
1409   *            @arg TIM_FLAG_UPDATE: Update interrupt flag
1410   *            @arg TIM_FLAG_CC1: Capture/Compare 1 interrupt flag
1411   *            @arg TIM_FLAG_CC2: Capture/Compare 2 interrupt flag
1412   *            @arg TIM_FLAG_CC3: Capture/Compare 3 interrupt flag
1413   *            @arg TIM_FLAG_CC4: Capture/Compare 4 interrupt flag
1414   *            @arg TIM_FLAG_CC5: Compare 5 interrupt flag
1415   *            @arg TIM_FLAG_CC6: Compare 6 interrupt flag
1416   *            @arg TIM_FLAG_COM:  Commutation interrupt flag
1417   *            @arg TIM_FLAG_TRIGGER: Trigger interrupt flag
1418   *            @arg TIM_FLAG_BREAK: Break interrupt flag
1419   *            @arg TIM_FLAG_BREAK2: Break 2 interrupt flag
1420   *            @arg TIM_FLAG_SYSTEM_BREAK: System Break interrupt flag
1421   *            @arg TIM_FLAG_CC1OF: Capture/Compare 1 overcapture flag
1422   *            @arg TIM_FLAG_CC2OF: Capture/Compare 2 overcapture flag
1423   *            @arg TIM_FLAG_CC3OF: Capture/Compare 3 overcapture flag
1424   *            @arg TIM_FLAG_CC4OF: Capture/Compare 4 overcapture flag
1425   *            @arg TIM_FLAG_IDX: Index interrupt flag
1426   *            @arg TIM_FLAG_DIR: Direction change interrupt flag
1427   *            @arg TIM_FLAG_IERR: Index error interrupt flag
1428   *            @arg TIM_FLAG_TERR: Transition error interrupt flag
1429   * @retval The new state of __FLAG__ (TRUE or FALSE).
1430   */
1431 #define __HAL_TIM_CLEAR_FLAG(__HANDLE__, __FLAG__)        ((__HANDLE__)->Instance->SR = ~(__FLAG__))
1432 
1433 /**
1434   * @brief  Check whether the specified TIM interrupt source is enabled or not.
1435   * @param  __HANDLE__ TIM handle
1436   * @param  __INTERRUPT__ specifies the TIM interrupt source to check.
1437   *          This parameter can be one of the following values:
1438   *            @arg TIM_IT_UPDATE: Update interrupt
1439   *            @arg TIM_IT_CC1:   Capture/Compare 1 interrupt
1440   *            @arg TIM_IT_CC2:  Capture/Compare 2 interrupt
1441   *            @arg TIM_IT_CC3:  Capture/Compare 3 interrupt
1442   *            @arg TIM_IT_CC4:  Capture/Compare 4 interrupt
1443   *            @arg TIM_IT_COM:   Commutation interrupt
1444   *            @arg TIM_IT_TRIGGER: Trigger interrupt
1445   *            @arg TIM_IT_BREAK: Break interrupt
1446   *            @arg TIM_IT_IDX: Index interrupt
1447   *            @arg TIM_IT_DIR: Direction change interrupt
1448   *            @arg TIM_IT_IERR: Index error interrupt
1449   *            @arg TIM_IT_TERR: Transition error interrupt
1450   * @retval The state of TIM_IT (SET or RESET).
1451   */
1452 #define __HAL_TIM_GET_IT_SOURCE(__HANDLE__, __INTERRUPT__) ((((__HANDLE__)->Instance->DIER & (__INTERRUPT__)) \
1453                                                              == (__INTERRUPT__)) ? SET : RESET)
1454 
1455 /** @brief Clear the TIM interrupt pending bits.
1456   * @param  __HANDLE__ TIM handle
1457   * @param  __INTERRUPT__ specifies the interrupt pending bit to clear.
1458   *          This parameter can be one of the following values:
1459   *            @arg TIM_IT_UPDATE: Update interrupt
1460   *            @arg TIM_IT_CC1:   Capture/Compare 1 interrupt
1461   *            @arg TIM_IT_CC2:  Capture/Compare 2 interrupt
1462   *            @arg TIM_IT_CC3:  Capture/Compare 3 interrupt
1463   *            @arg TIM_IT_CC4:  Capture/Compare 4 interrupt
1464   *            @arg TIM_IT_COM:   Commutation interrupt
1465   *            @arg TIM_IT_TRIGGER: Trigger interrupt
1466   *            @arg TIM_IT_BREAK: Break interrupt
1467   *            @arg TIM_IT_IDX: Index interrupt
1468   *            @arg TIM_IT_DIR: Direction change interrupt
1469   *            @arg TIM_IT_IERR: Index error interrupt
1470   *            @arg TIM_IT_TERR: Transition error interrupt
1471   * @retval None
1472   */
1473 #define __HAL_TIM_CLEAR_IT(__HANDLE__, __INTERRUPT__)      ((__HANDLE__)->Instance->SR = ~(__INTERRUPT__))
1474 
1475 /**
1476   * @brief  Force a continuous copy of the update interrupt flag (UIF) into the timer counter register (bit 31).
1477   * @note This allows both the counter value and a potential roll-over condition signalled by the UIFCPY flag to be read
1478   *       in an atomic way.
1479   * @param  __HANDLE__ TIM handle.
1480   * @retval None
1481 mode.
1482   */
1483 #define __HAL_TIM_UIFREMAP_ENABLE(__HANDLE__)    (((__HANDLE__)->Instance->CR1 |= TIM_CR1_UIFREMAP))
1484 
1485 /**
1486   * @brief  Disable update interrupt flag (UIF) remapping.
1487   * @param  __HANDLE__ TIM handle.
1488   * @retval None
1489 mode.
1490   */
1491 #define __HAL_TIM_UIFREMAP_DISABLE(__HANDLE__)    (((__HANDLE__)->Instance->CR1 &= ~TIM_CR1_UIFREMAP))
1492 
1493 /**
1494   * @brief  Get update interrupt flag (UIF) copy status.
1495   * @param  __COUNTER__ Counter value.
1496   * @retval The state of UIFCPY (TRUE or FALSE).
1497 mode.
1498   */
1499 #define __HAL_TIM_GET_UIFCPY(__COUNTER__)    (((__COUNTER__) & (TIM_CNT_UIFCPY)) == (TIM_CNT_UIFCPY))
1500 
1501 /**
1502   * @brief  Indicates whether or not the TIM Counter is used as downcounter.
1503   * @param  __HANDLE__ TIM handle.
1504   * @retval False (Counter used as upcounter) or True (Counter used as downcounter)
1505   * @note This macro is particularly useful to get the counting mode when the timer operates in Center-aligned mode
1506   *       or Encoder mode.
1507   */
1508 #define __HAL_TIM_IS_TIM_COUNTING_DOWN(__HANDLE__)    (((__HANDLE__)->Instance->CR1 &(TIM_CR1_DIR)) == (TIM_CR1_DIR))
1509 
1510 /**
1511   * @brief  Set the TIM Prescaler on runtime.
1512   * @param  __HANDLE__ TIM handle.
1513   * @param  __PRESC__ specifies the Prescaler new value.
1514   * @retval None
1515   */
1516 #define __HAL_TIM_SET_PRESCALER(__HANDLE__, __PRESC__)       ((__HANDLE__)->Instance->PSC = (__PRESC__))
1517 
1518 /**
1519   * @brief  Set the TIM Counter Register value on runtime.
1520   * Note Please check if the bit 31 of CNT register is used as UIF copy or not, this may affect the counter range in
1521   *      case of 32 bits counter TIM instance.
1522   *      Bit 31 of CNT can be enabled/disabled using __HAL_TIM_UIFREMAP_ENABLE()/__HAL_TIM_UIFREMAP_DISABLE() macros.
1523   * @param  __HANDLE__ TIM handle.
1524   * @param  __COUNTER__ specifies the Counter register new value.
1525   * @retval None
1526   */
1527 #define __HAL_TIM_SET_COUNTER(__HANDLE__, __COUNTER__)  ((__HANDLE__)->Instance->CNT = (__COUNTER__))
1528 
1529 /**
1530   * @brief  Get the TIM Counter Register value on runtime.
1531   * @param  __HANDLE__ TIM handle.
1532   * @retval 16-bit or 32-bit value of the timer counter register (TIMx_CNT)
1533   */
1534 #define __HAL_TIM_GET_COUNTER(__HANDLE__)  ((__HANDLE__)->Instance->CNT)
1535 
1536 /**
1537   * @brief  Set the TIM Autoreload Register value on runtime without calling another time any Init function.
1538   * @param  __HANDLE__ TIM handle.
1539   * @param  __AUTORELOAD__ specifies the Counter register new value.
1540   * @retval None
1541   */
1542 #define __HAL_TIM_SET_AUTORELOAD(__HANDLE__, __AUTORELOAD__) \
1543   do{                                                    \
1544     (__HANDLE__)->Instance->ARR = (__AUTORELOAD__);  \
1545     (__HANDLE__)->Init.Period = (__AUTORELOAD__);    \
1546   } while(0)
1547 
1548 /**
1549   * @brief  Get the TIM Autoreload Register value on runtime.
1550   * @param  __HANDLE__ TIM handle.
1551   * @retval 16-bit or 32-bit value of the timer auto-reload register(TIMx_ARR)
1552   */
1553 #define __HAL_TIM_GET_AUTORELOAD(__HANDLE__)  ((__HANDLE__)->Instance->ARR)
1554 
1555 /**
1556   * @brief  Set the TIM Clock Division value on runtime without calling another time any Init function.
1557   * @param  __HANDLE__ TIM handle.
1558   * @param  __CKD__ specifies the clock division value.
1559   *          This parameter can be one of the following value:
1560   *            @arg TIM_CLOCKDIVISION_DIV1: tDTS=tCK_INT
1561   *            @arg TIM_CLOCKDIVISION_DIV2: tDTS=2*tCK_INT
1562   *            @arg TIM_CLOCKDIVISION_DIV4: tDTS=4*tCK_INT
1563   * @retval None
1564   */
1565 #define __HAL_TIM_SET_CLOCKDIVISION(__HANDLE__, __CKD__) \
1566   do{                                                   \
1567     (__HANDLE__)->Instance->CR1 &= (~TIM_CR1_CKD);  \
1568     (__HANDLE__)->Instance->CR1 |= (__CKD__);       \
1569     (__HANDLE__)->Init.ClockDivision = (__CKD__);   \
1570   } while(0)
1571 
1572 /**
1573   * @brief  Get the TIM Clock Division value on runtime.
1574   * @param  __HANDLE__ TIM handle.
1575   * @retval The clock division can be one of the following values:
1576   *            @arg TIM_CLOCKDIVISION_DIV1: tDTS=tCK_INT
1577   *            @arg TIM_CLOCKDIVISION_DIV2: tDTS=2*tCK_INT
1578   *            @arg TIM_CLOCKDIVISION_DIV4: tDTS=4*tCK_INT
1579   */
1580 #define __HAL_TIM_GET_CLOCKDIVISION(__HANDLE__)  ((__HANDLE__)->Instance->CR1 & TIM_CR1_CKD)
1581 
1582 /**
1583   * @brief  Set the TIM Input Capture prescaler on runtime without calling another time HAL_TIM_IC_ConfigChannel()
1584   *         function.
1585   * @param  __HANDLE__ TIM handle.
1586   * @param  __CHANNEL__ TIM Channels to be configured.
1587   *          This parameter can be one of the following values:
1588   *            @arg TIM_CHANNEL_1: TIM Channel 1 selected
1589   *            @arg TIM_CHANNEL_2: TIM Channel 2 selected
1590   *            @arg TIM_CHANNEL_3: TIM Channel 3 selected
1591   *            @arg TIM_CHANNEL_4: TIM Channel 4 selected
1592   * @param  __ICPSC__ specifies the Input Capture4 prescaler new value.
1593   *          This parameter can be one of the following values:
1594   *            @arg TIM_ICPSC_DIV1: no prescaler
1595   *            @arg TIM_ICPSC_DIV2: capture is done once every 2 events
1596   *            @arg TIM_ICPSC_DIV4: capture is done once every 4 events
1597   *            @arg TIM_ICPSC_DIV8: capture is done once every 8 events
1598   * @retval None
1599   */
1600 #define __HAL_TIM_SET_ICPRESCALER(__HANDLE__, __CHANNEL__, __ICPSC__) \
1601   do{                                                    \
1602     TIM_RESET_ICPRESCALERVALUE((__HANDLE__), (__CHANNEL__));  \
1603     TIM_SET_ICPRESCALERVALUE((__HANDLE__), (__CHANNEL__), (__ICPSC__)); \
1604   } while(0)
1605 
1606 /**
1607   * @brief  Get the TIM Input Capture prescaler on runtime.
1608   * @param  __HANDLE__ TIM handle.
1609   * @param  __CHANNEL__ TIM Channels to be configured.
1610   *          This parameter can be one of the following values:
1611   *            @arg TIM_CHANNEL_1: get input capture 1 prescaler value
1612   *            @arg TIM_CHANNEL_2: get input capture 2 prescaler value
1613   *            @arg TIM_CHANNEL_3: get input capture 3 prescaler value
1614   *            @arg TIM_CHANNEL_4: get input capture 4 prescaler value
1615   * @retval The input capture prescaler can be one of the following values:
1616   *            @arg TIM_ICPSC_DIV1: no prescaler
1617   *            @arg TIM_ICPSC_DIV2: capture is done once every 2 events
1618   *            @arg TIM_ICPSC_DIV4: capture is done once every 4 events
1619   *            @arg TIM_ICPSC_DIV8: capture is done once every 8 events
1620   */
1621 #define __HAL_TIM_GET_ICPRESCALER(__HANDLE__, __CHANNEL__)  \
1622   (((__CHANNEL__) == TIM_CHANNEL_1) ? ((__HANDLE__)->Instance->CCMR1 & TIM_CCMR1_IC1PSC) :\
1623    ((__CHANNEL__) == TIM_CHANNEL_2) ? (((__HANDLE__)->Instance->CCMR1 & TIM_CCMR1_IC2PSC) >> 8U) :\
1624    ((__CHANNEL__) == TIM_CHANNEL_3) ? ((__HANDLE__)->Instance->CCMR2 & TIM_CCMR2_IC3PSC) :\
1625    (((__HANDLE__)->Instance->CCMR2 & TIM_CCMR2_IC4PSC)) >> 8U)
1626 
1627 /**
1628   * @brief  Set the TIM Capture Compare Register value on runtime without calling another time ConfigChannel function.
1629   * @param  __HANDLE__ TIM handle.
1630   * @param  __CHANNEL__ TIM Channels to be configured.
1631   *          This parameter can be one of the following values:
1632   *            @arg TIM_CHANNEL_1: TIM Channel 1 selected
1633   *            @arg TIM_CHANNEL_2: TIM Channel 2 selected
1634   *            @arg TIM_CHANNEL_3: TIM Channel 3 selected
1635   *            @arg TIM_CHANNEL_4: TIM Channel 4 selected
1636   *            @arg TIM_CHANNEL_5: TIM Channel 5 selected
1637   *            @arg TIM_CHANNEL_6: TIM Channel 6 selected
1638   * @param  __COMPARE__ specifies the Capture Compare register new value.
1639   * @retval None
1640   */
1641 #define __HAL_TIM_SET_COMPARE(__HANDLE__, __CHANNEL__, __COMPARE__) \
1642   (((__CHANNEL__) == TIM_CHANNEL_1) ? ((__HANDLE__)->Instance->CCR1 = (__COMPARE__)) :\
1643    ((__CHANNEL__) == TIM_CHANNEL_2) ? ((__HANDLE__)->Instance->CCR2 = (__COMPARE__)) :\
1644    ((__CHANNEL__) == TIM_CHANNEL_3) ? ((__HANDLE__)->Instance->CCR3 = (__COMPARE__)) :\
1645    ((__CHANNEL__) == TIM_CHANNEL_4) ? ((__HANDLE__)->Instance->CCR4 = (__COMPARE__)) :\
1646    ((__CHANNEL__) == TIM_CHANNEL_5) ? ((__HANDLE__)->Instance->CCR5 = (__COMPARE__)) :\
1647    ((__HANDLE__)->Instance->CCR6 = (__COMPARE__)))
1648 
1649 /**
1650   * @brief  Get the TIM Capture Compare Register value on runtime.
1651   * @param  __HANDLE__ TIM handle.
1652   * @param  __CHANNEL__ TIM Channel associated with the capture compare register
1653   *          This parameter can be one of the following values:
1654   *            @arg TIM_CHANNEL_1: get capture/compare 1 register value
1655   *            @arg TIM_CHANNEL_2: get capture/compare 2 register value
1656   *            @arg TIM_CHANNEL_3: get capture/compare 3 register value
1657   *            @arg TIM_CHANNEL_4: get capture/compare 4 register value
1658   *            @arg TIM_CHANNEL_5: get capture/compare 5 register value
1659   *            @arg TIM_CHANNEL_6: get capture/compare 6 register value
1660   * @retval 16-bit or 32-bit value of the capture/compare register (TIMx_CCRy)
1661   */
1662 #define __HAL_TIM_GET_COMPARE(__HANDLE__, __CHANNEL__) \
1663   (((__CHANNEL__) == TIM_CHANNEL_1) ? ((__HANDLE__)->Instance->CCR1) :\
1664    ((__CHANNEL__) == TIM_CHANNEL_2) ? ((__HANDLE__)->Instance->CCR2) :\
1665    ((__CHANNEL__) == TIM_CHANNEL_3) ? ((__HANDLE__)->Instance->CCR3) :\
1666    ((__CHANNEL__) == TIM_CHANNEL_4) ? ((__HANDLE__)->Instance->CCR4) :\
1667    ((__CHANNEL__) == TIM_CHANNEL_5) ? ((__HANDLE__)->Instance->CCR5) :\
1668    ((__HANDLE__)->Instance->CCR6))
1669 
1670 /**
1671   * @brief  Set the TIM Output compare preload.
1672   * @param  __HANDLE__ TIM handle.
1673   * @param  __CHANNEL__ TIM Channels to be configured.
1674   *          This parameter can be one of the following values:
1675   *            @arg TIM_CHANNEL_1: TIM Channel 1 selected
1676   *            @arg TIM_CHANNEL_2: TIM Channel 2 selected
1677   *            @arg TIM_CHANNEL_3: TIM Channel 3 selected
1678   *            @arg TIM_CHANNEL_4: TIM Channel 4 selected
1679   *            @arg TIM_CHANNEL_5: TIM Channel 5 selected
1680   *            @arg TIM_CHANNEL_6: TIM Channel 6 selected
1681   * @retval None
1682   */
1683 #define __HAL_TIM_ENABLE_OCxPRELOAD(__HANDLE__, __CHANNEL__)    \
1684   (((__CHANNEL__) == TIM_CHANNEL_1) ? ((__HANDLE__)->Instance->CCMR1 |= TIM_CCMR1_OC1PE) :\
1685    ((__CHANNEL__) == TIM_CHANNEL_2) ? ((__HANDLE__)->Instance->CCMR1 |= TIM_CCMR1_OC2PE) :\
1686    ((__CHANNEL__) == TIM_CHANNEL_3) ? ((__HANDLE__)->Instance->CCMR2 |= TIM_CCMR2_OC3PE) :\
1687    ((__CHANNEL__) == TIM_CHANNEL_4) ? ((__HANDLE__)->Instance->CCMR2 |= TIM_CCMR2_OC4PE) :\
1688    ((__CHANNEL__) == TIM_CHANNEL_5) ? ((__HANDLE__)->Instance->CCMR3 |= TIM_CCMR3_OC5PE) :\
1689    ((__HANDLE__)->Instance->CCMR3 |= TIM_CCMR3_OC6PE))
1690 
1691 /**
1692   * @brief  Reset the TIM Output compare preload.
1693   * @param  __HANDLE__ TIM handle.
1694   * @param  __CHANNEL__ TIM Channels to be configured.
1695   *          This parameter can be one of the following values:
1696   *            @arg TIM_CHANNEL_1: TIM Channel 1 selected
1697   *            @arg TIM_CHANNEL_2: TIM Channel 2 selected
1698   *            @arg TIM_CHANNEL_3: TIM Channel 3 selected
1699   *            @arg TIM_CHANNEL_4: TIM Channel 4 selected
1700   *            @arg TIM_CHANNEL_5: TIM Channel 5 selected
1701   *            @arg TIM_CHANNEL_6: TIM Channel 6 selected
1702   * @retval None
1703   */
1704 #define __HAL_TIM_DISABLE_OCxPRELOAD(__HANDLE__, __CHANNEL__)    \
1705   (((__CHANNEL__) == TIM_CHANNEL_1) ? ((__HANDLE__)->Instance->CCMR1 &= ~TIM_CCMR1_OC1PE) :\
1706    ((__CHANNEL__) == TIM_CHANNEL_2) ? ((__HANDLE__)->Instance->CCMR1 &= ~TIM_CCMR1_OC2PE) :\
1707    ((__CHANNEL__) == TIM_CHANNEL_3) ? ((__HANDLE__)->Instance->CCMR2 &= ~TIM_CCMR2_OC3PE) :\
1708    ((__CHANNEL__) == TIM_CHANNEL_4) ? ((__HANDLE__)->Instance->CCMR2 &= ~TIM_CCMR2_OC4PE) :\
1709    ((__CHANNEL__) == TIM_CHANNEL_5) ? ((__HANDLE__)->Instance->CCMR3 &= ~TIM_CCMR3_OC5PE) :\
1710    ((__HANDLE__)->Instance->CCMR3 &= ~TIM_CCMR3_OC6PE))
1711 
1712 /**
1713   * @brief  Enable fast mode for a given channel.
1714   * @param  __HANDLE__ TIM handle.
1715   * @param  __CHANNEL__ TIM Channels to be configured.
1716   *          This parameter can be one of the following values:
1717   *            @arg TIM_CHANNEL_1: TIM Channel 1 selected
1718   *            @arg TIM_CHANNEL_2: TIM Channel 2 selected
1719   *            @arg TIM_CHANNEL_3: TIM Channel 3 selected
1720   *            @arg TIM_CHANNEL_4: TIM Channel 4 selected
1721   *            @arg TIM_CHANNEL_5: TIM Channel 5 selected
1722   *            @arg TIM_CHANNEL_6: TIM Channel 6 selected
1723   * @note  When fast mode is enabled an active edge on the trigger input acts
1724   *        like a compare match on CCx output. Delay to sample the trigger
1725   *        input and to activate CCx output is reduced to 3 clock cycles.
1726   * @note  Fast mode acts only if the channel is configured in PWM1 or PWM2 mode.
1727   * @retval None
1728   */
1729 #define __HAL_TIM_ENABLE_OCxFAST(__HANDLE__, __CHANNEL__)    \
1730   (((__CHANNEL__) == TIM_CHANNEL_1) ? ((__HANDLE__)->Instance->CCMR1 |= TIM_CCMR1_OC1FE) :\
1731    ((__CHANNEL__) == TIM_CHANNEL_2) ? ((__HANDLE__)->Instance->CCMR1 |= TIM_CCMR1_OC2FE) :\
1732    ((__CHANNEL__) == TIM_CHANNEL_3) ? ((__HANDLE__)->Instance->CCMR2 |= TIM_CCMR2_OC3FE) :\
1733    ((__CHANNEL__) == TIM_CHANNEL_4) ? ((__HANDLE__)->Instance->CCMR2 |= TIM_CCMR2_OC4FE) :\
1734    ((__CHANNEL__) == TIM_CHANNEL_5) ? ((__HANDLE__)->Instance->CCMR3 |= TIM_CCMR3_OC5FE) :\
1735    ((__HANDLE__)->Instance->CCMR3 |= TIM_CCMR3_OC6FE))
1736 
1737 /**
1738   * @brief  Disable fast mode for a given channel.
1739   * @param  __HANDLE__ TIM handle.
1740   * @param  __CHANNEL__ TIM Channels to be configured.
1741   *          This parameter can be one of the following values:
1742   *            @arg TIM_CHANNEL_1: TIM Channel 1 selected
1743   *            @arg TIM_CHANNEL_2: TIM Channel 2 selected
1744   *            @arg TIM_CHANNEL_3: TIM Channel 3 selected
1745   *            @arg TIM_CHANNEL_4: TIM Channel 4 selected
1746   *            @arg TIM_CHANNEL_5: TIM Channel 5 selected
1747   *            @arg TIM_CHANNEL_6: TIM Channel 6 selected
1748   * @note  When fast mode is disabled CCx output behaves normally depending
1749   *        on counter and CCRx values even when the trigger is ON. The minimum
1750   *        delay to activate CCx output when an active edge occurs on the
1751   *        trigger input is 5 clock cycles.
1752   * @retval None
1753   */
1754 #define __HAL_TIM_DISABLE_OCxFAST(__HANDLE__, __CHANNEL__)    \
1755   (((__CHANNEL__) == TIM_CHANNEL_1) ? ((__HANDLE__)->Instance->CCMR1 &= ~TIM_CCMR1_OC1FE) :\
1756    ((__CHANNEL__) == TIM_CHANNEL_2) ? ((__HANDLE__)->Instance->CCMR1 &= ~TIM_CCMR1_OC2FE) :\
1757    ((__CHANNEL__) == TIM_CHANNEL_3) ? ((__HANDLE__)->Instance->CCMR2 &= ~TIM_CCMR2_OC3FE) :\
1758    ((__CHANNEL__) == TIM_CHANNEL_4) ? ((__HANDLE__)->Instance->CCMR2 &= ~TIM_CCMR2_OC4FE) :\
1759    ((__CHANNEL__) == TIM_CHANNEL_5) ? ((__HANDLE__)->Instance->CCMR3 &= ~TIM_CCMR3_OC5FE) :\
1760    ((__HANDLE__)->Instance->CCMR3 &= ~TIM_CCMR3_OC6FE))
1761 
1762 /**
1763   * @brief  Set the Update Request Source (URS) bit of the TIMx_CR1 register.
1764   * @param  __HANDLE__ TIM handle.
1765   * @note  When the URS bit of the TIMx_CR1 register is set, only counter
1766   *        overflow/underflow generates an update interrupt or DMA request (if
1767   *        enabled)
1768   * @retval None
1769   */
1770 #define __HAL_TIM_URS_ENABLE(__HANDLE__)  ((__HANDLE__)->Instance->CR1|= TIM_CR1_URS)
1771 
1772 /**
1773   * @brief  Reset the Update Request Source (URS) bit of the TIMx_CR1 register.
1774   * @param  __HANDLE__ TIM handle.
1775   * @note  When the URS bit of the TIMx_CR1 register is reset, any of the
1776   *        following events generate an update interrupt or DMA request (if
1777   *        enabled):
1778   *           _ Counter overflow underflow
1779   *           _ Setting the UG bit
1780   *           _ Update generation through the slave mode controller
1781   * @retval None
1782   */
1783 #define __HAL_TIM_URS_DISABLE(__HANDLE__)  ((__HANDLE__)->Instance->CR1&=~TIM_CR1_URS)
1784 
1785 /**
1786   * @brief  Set the TIM Capture x input polarity on runtime.
1787   * @param  __HANDLE__ TIM handle.
1788   * @param  __CHANNEL__ TIM Channels to be configured.
1789   *          This parameter can be one of the following values:
1790   *            @arg TIM_CHANNEL_1: TIM Channel 1 selected
1791   *            @arg TIM_CHANNEL_2: TIM Channel 2 selected
1792   *            @arg TIM_CHANNEL_3: TIM Channel 3 selected
1793   *            @arg TIM_CHANNEL_4: TIM Channel 4 selected
1794   * @param  __POLARITY__ Polarity for TIx source
1795   *            @arg TIM_INPUTCHANNELPOLARITY_RISING: Rising Edge
1796   *            @arg TIM_INPUTCHANNELPOLARITY_FALLING: Falling Edge
1797   *            @arg TIM_INPUTCHANNELPOLARITY_BOTHEDGE: Rising and Falling Edge
1798   * @retval None
1799   */
1800 #define __HAL_TIM_SET_CAPTUREPOLARITY(__HANDLE__, __CHANNEL__, __POLARITY__)    \
1801   do{                                                                     \
1802     TIM_RESET_CAPTUREPOLARITY((__HANDLE__), (__CHANNEL__));               \
1803     TIM_SET_CAPTUREPOLARITY((__HANDLE__), (__CHANNEL__), (__POLARITY__)); \
1804   }while(0)
1805 
1806 /** @brief  Select the Capture/compare DMA request source.
1807   * @param  __HANDLE__ specifies the TIM Handle.
1808   * @param  __CCDMA__ specifies Capture/compare DMA request source
1809   *          This parameter can be one of the following values:
1810   *            @arg TIM_CCDMAREQUEST_CC: CCx DMA request generated on Capture/Compare event
1811   *            @arg TIM_CCDMAREQUEST_UPDATE: CCx DMA request generated on Update event
1812   * @retval None
1813   */
1814 #define __HAL_TIM_SELECT_CCDMAREQUEST(__HANDLE__, __CCDMA__)    \
1815   MODIFY_REG((__HANDLE__)->Instance->CR2, TIM_CR2_CCDS, (__CCDMA__))
1816 
1817 /**
1818   * @}
1819   */
1820 /* End of exported macros ----------------------------------------------------*/
1821 
1822 /* Private constants ---------------------------------------------------------*/
1823 /** @defgroup TIM_Private_Constants TIM Private Constants
1824   * @{
1825   */
1826 /* The counter of a timer instance is disabled only if all the CCx and CCxN
1827    channels have been disabled */
1828 #define TIM_CCER_CCxE_MASK  ((uint32_t)(TIM_CCER_CC1E | TIM_CCER_CC2E | TIM_CCER_CC3E | TIM_CCER_CC4E))
1829 #define TIM_CCER_CCxNE_MASK ((uint32_t)(TIM_CCER_CC1NE | TIM_CCER_CC2NE | TIM_CCER_CC3NE | TIM_CCER_CC4NE))
1830 /**
1831   * @}
1832   */
1833 /* End of private constants --------------------------------------------------*/
1834 
1835 /* Private macros ------------------------------------------------------------*/
1836 /** @defgroup TIM_Private_Macros TIM Private Macros
1837   * @{
1838   */
1839 #define IS_TIM_CLEARINPUT_SOURCE(__MODE__)  (((__MODE__) == TIM_CLEARINPUTSOURCE_ETR)      || \
1840                                              ((__MODE__) == TIM_CLEARINPUTSOURCE_COMP1)    || \
1841                                              ((__MODE__) == TIM_CLEARINPUTSOURCE_COMP2)    || \
1842                                              ((__MODE__) == TIM_CLEARINPUTSOURCE_NONE))
1843 
1844 #define IS_TIM_DMA_BASE(__BASE__) (((__BASE__) == TIM_DMABASE_CR1)   || \
1845                                    ((__BASE__) == TIM_DMABASE_CR2)   || \
1846                                    ((__BASE__) == TIM_DMABASE_SMCR)  || \
1847                                    ((__BASE__) == TIM_DMABASE_DIER)  || \
1848                                    ((__BASE__) == TIM_DMABASE_SR)    || \
1849                                    ((__BASE__) == TIM_DMABASE_EGR)   || \
1850                                    ((__BASE__) == TIM_DMABASE_CCMR1) || \
1851                                    ((__BASE__) == TIM_DMABASE_CCMR2) || \
1852                                    ((__BASE__) == TIM_DMABASE_CCER)  || \
1853                                    ((__BASE__) == TIM_DMABASE_CNT)   || \
1854                                    ((__BASE__) == TIM_DMABASE_PSC)   || \
1855                                    ((__BASE__) == TIM_DMABASE_ARR)   || \
1856                                    ((__BASE__) == TIM_DMABASE_RCR)   || \
1857                                    ((__BASE__) == TIM_DMABASE_CCR1)  || \
1858                                    ((__BASE__) == TIM_DMABASE_CCR2)  || \
1859                                    ((__BASE__) == TIM_DMABASE_CCR3)  || \
1860                                    ((__BASE__) == TIM_DMABASE_CCR4)  || \
1861                                    ((__BASE__) == TIM_DMABASE_BDTR)  || \
1862                                    ((__BASE__) == TIM_DMABASE_CCMR3) || \
1863                                    ((__BASE__) == TIM_DMABASE_CCR5)  || \
1864                                    ((__BASE__) == TIM_DMABASE_CCR6)  || \
1865                                    ((__BASE__) == TIM_DMABASE_AF1)   || \
1866                                    ((__BASE__) == TIM_DMABASE_AF2)   || \
1867                                    ((__BASE__) == TIM_DMABASE_TISEL) || \
1868                                    ((__BASE__) == TIM_DMABASE_DTR2)  || \
1869                                    ((__BASE__) == TIM_DMABASE_ECR)  || \
1870                                    ((__BASE__) == TIM_DMABASE_OR))
1871 
1872 #define IS_TIM_EVENT_SOURCE(__SOURCE__) ((((__SOURCE__) & 0xFFFFFE00U) == 0x00000000U) && ((__SOURCE__) != 0x00000000U))
1873 
1874 #define IS_TIM_COUNTER_MODE(__MODE__)      (((__MODE__) == TIM_COUNTERMODE_UP)              || \
1875                                             ((__MODE__) == TIM_COUNTERMODE_DOWN)            || \
1876                                             ((__MODE__) == TIM_COUNTERMODE_CENTERALIGNED1)  || \
1877                                             ((__MODE__) == TIM_COUNTERMODE_CENTERALIGNED2)  || \
1878                                             ((__MODE__) == TIM_COUNTERMODE_CENTERALIGNED3))
1879 
1880 #define IS_TIM_UIFREMAP_MODE(__MODE__)     (((__MODE__) == TIM_UIFREMAP_DISABLE) || \
1881                                             ((__MODE__) == TIM_UIFREMAP_ENABLE))
1882 
1883 #define IS_TIM_CLOCKDIVISION_DIV(__DIV__)  (((__DIV__) == TIM_CLOCKDIVISION_DIV1) || \
1884                                             ((__DIV__) == TIM_CLOCKDIVISION_DIV2) || \
1885                                             ((__DIV__) == TIM_CLOCKDIVISION_DIV4))
1886 
1887 #define IS_TIM_AUTORELOAD_PRELOAD(PRELOAD) (((PRELOAD) == TIM_AUTORELOAD_PRELOAD_DISABLE) || \
1888                                             ((PRELOAD) == TIM_AUTORELOAD_PRELOAD_ENABLE))
1889 
1890 #define IS_TIM_FAST_STATE(__STATE__)       (((__STATE__) == TIM_OCFAST_DISABLE) || \
1891                                             ((__STATE__) == TIM_OCFAST_ENABLE))
1892 
1893 #define IS_TIM_OC_POLARITY(__POLARITY__)   (((__POLARITY__) == TIM_OCPOLARITY_HIGH) || \
1894                                             ((__POLARITY__) == TIM_OCPOLARITY_LOW))
1895 
1896 #define IS_TIM_OCN_POLARITY(__POLARITY__)  (((__POLARITY__) == TIM_OCNPOLARITY_HIGH) || \
1897                                             ((__POLARITY__) == TIM_OCNPOLARITY_LOW))
1898 
1899 #define IS_TIM_OCIDLE_STATE(__STATE__)     (((__STATE__) == TIM_OCIDLESTATE_SET) || \
1900                                             ((__STATE__) == TIM_OCIDLESTATE_RESET))
1901 
1902 #define IS_TIM_OCNIDLE_STATE(__STATE__)    (((__STATE__) == TIM_OCNIDLESTATE_SET) || \
1903                                             ((__STATE__) == TIM_OCNIDLESTATE_RESET))
1904 
1905 #define IS_TIM_ENCODERINPUT_POLARITY(__POLARITY__)   (((__POLARITY__) == TIM_ENCODERINPUTPOLARITY_RISING)   || \
1906                                                       ((__POLARITY__) == TIM_ENCODERINPUTPOLARITY_FALLING))
1907 
1908 #define IS_TIM_IC_POLARITY(__POLARITY__)   (((__POLARITY__) == TIM_ICPOLARITY_RISING)   || \
1909                                             ((__POLARITY__) == TIM_ICPOLARITY_FALLING)  || \
1910                                             ((__POLARITY__) == TIM_ICPOLARITY_BOTHEDGE))
1911 
1912 #define IS_TIM_IC_SELECTION(__SELECTION__) (((__SELECTION__) == TIM_ICSELECTION_DIRECTTI) || \
1913                                             ((__SELECTION__) == TIM_ICSELECTION_INDIRECTTI) || \
1914                                             ((__SELECTION__) == TIM_ICSELECTION_TRC))
1915 
1916 #define IS_TIM_IC_PRESCALER(__PRESCALER__) (((__PRESCALER__) == TIM_ICPSC_DIV1) || \
1917                                             ((__PRESCALER__) == TIM_ICPSC_DIV2) || \
1918                                             ((__PRESCALER__) == TIM_ICPSC_DIV4) || \
1919                                             ((__PRESCALER__) == TIM_ICPSC_DIV8))
1920 
1921 #define IS_TIM_CCX_CHANNEL(__INSTANCE__, __CHANNEL__) (IS_TIM_CCX_INSTANCE(__INSTANCE__, __CHANNEL__) && \
1922                                                        ((__CHANNEL__) != (TIM_CHANNEL_5)) && \
1923                                                        ((__CHANNEL__) != (TIM_CHANNEL_6)))
1924 
1925 #define IS_TIM_OPM_MODE(__MODE__)          (((__MODE__) == TIM_OPMODE_SINGLE) || \
1926                                             ((__MODE__) == TIM_OPMODE_REPETITIVE))
1927 
1928 #define IS_TIM_ENCODER_MODE(__MODE__)      (((__MODE__) == TIM_ENCODERMODE_TI1)                      || \
1929                                             ((__MODE__) == TIM_ENCODERMODE_TI2)                      || \
1930                                             ((__MODE__) == TIM_ENCODERMODE_TI12)                     || \
1931                                             ((__MODE__) == TIM_ENCODERMODE_CLOCKPLUSDIRECTION_X2)    || \
1932                                             ((__MODE__) == TIM_ENCODERMODE_CLOCKPLUSDIRECTION_X1)    || \
1933                                             ((__MODE__) == TIM_ENCODERMODE_DIRECTIONALCLOCK_X2)      || \
1934                                             ((__MODE__) == TIM_ENCODERMODE_DIRECTIONALCLOCK_X1_TI12) || \
1935                                             ((__MODE__) == TIM_ENCODERMODE_X1_TI1)                   || \
1936                                             ((__MODE__) == TIM_ENCODERMODE_X1_TI2))
1937 
1938 #define IS_TIM_DMA_SOURCE(__SOURCE__) ((((__SOURCE__) & 0xFFFF80FFU) == 0x00000000U) && ((__SOURCE__) != 0x00000000U))
1939 
1940 #define IS_TIM_CHANNELS(__CHANNEL__)       (((__CHANNEL__) == TIM_CHANNEL_1) || \
1941                                             ((__CHANNEL__) == TIM_CHANNEL_2) || \
1942                                             ((__CHANNEL__) == TIM_CHANNEL_3) || \
1943                                             ((__CHANNEL__) == TIM_CHANNEL_4) || \
1944                                             ((__CHANNEL__) == TIM_CHANNEL_5) || \
1945                                             ((__CHANNEL__) == TIM_CHANNEL_6) || \
1946                                             ((__CHANNEL__) == TIM_CHANNEL_ALL))
1947 
1948 #define IS_TIM_OPM_CHANNELS(__CHANNEL__)   (((__CHANNEL__) == TIM_CHANNEL_1) || \
1949                                             ((__CHANNEL__) == TIM_CHANNEL_2))
1950 
1951 #define IS_TIM_PERIOD(__HANDLE__, __PERIOD__) ((IS_TIM_32B_COUNTER_INSTANCE(((__HANDLE__)->Instance)) == 0U) ? \
1952                                                (((__PERIOD__) > 0U) && ((__PERIOD__) <= 0x0000FFFFU)) :        \
1953                                                ((__PERIOD__) > 0U))
1954 
1955 #define IS_TIM_COMPLEMENTARY_CHANNELS(__CHANNEL__) (((__CHANNEL__) == TIM_CHANNEL_1) || \
1956                                                     ((__CHANNEL__) == TIM_CHANNEL_2) || \
1957                                                     ((__CHANNEL__) == TIM_CHANNEL_3) || \
1958                                                     ((__CHANNEL__) == TIM_CHANNEL_4))
1959 
1960 #define IS_TIM_CLOCKSOURCE(__CLOCK__) (((__CLOCK__) == TIM_CLOCKSOURCE_INTERNAL) || \
1961                                        ((__CLOCK__) == TIM_CLOCKSOURCE_ETRMODE1) || \
1962                                        ((__CLOCK__) == TIM_CLOCKSOURCE_ETRMODE2) || \
1963                                        ((__CLOCK__) == TIM_CLOCKSOURCE_TI1ED)    || \
1964                                        ((__CLOCK__) == TIM_CLOCKSOURCE_TI1)      || \
1965                                        ((__CLOCK__) == TIM_CLOCKSOURCE_TI2)      || \
1966                                        ((__CLOCK__) == TIM_CLOCKSOURCE_ITR0)     || \
1967                                        ((__CLOCK__) == TIM_CLOCKSOURCE_ITR1)     || \
1968                                        ((__CLOCK__) == TIM_CLOCKSOURCE_ITR2)     || \
1969                                        ((__CLOCK__) == TIM_CLOCKSOURCE_ITR7)     || \
1970                                        ((__CLOCK__) == TIM_CLOCKSOURCE_ITR8))
1971 
1972 #define IS_TIM_CLOCKPOLARITY(__POLARITY__) (((__POLARITY__) == TIM_CLOCKPOLARITY_INVERTED)    || \
1973                                             ((__POLARITY__) == TIM_CLOCKPOLARITY_NONINVERTED) || \
1974                                             ((__POLARITY__) == TIM_CLOCKPOLARITY_RISING)      || \
1975                                             ((__POLARITY__) == TIM_CLOCKPOLARITY_FALLING)     || \
1976                                             ((__POLARITY__) == TIM_CLOCKPOLARITY_BOTHEDGE))
1977 
1978 #define IS_TIM_CLOCKPRESCALER(__PRESCALER__) (((__PRESCALER__) == TIM_CLOCKPRESCALER_DIV1) || \
1979                                               ((__PRESCALER__) == TIM_CLOCKPRESCALER_DIV2) || \
1980                                               ((__PRESCALER__) == TIM_CLOCKPRESCALER_DIV4) || \
1981                                               ((__PRESCALER__) == TIM_CLOCKPRESCALER_DIV8))
1982 
1983 #define IS_TIM_CLOCKFILTER(__ICFILTER__)      ((__ICFILTER__) <= 0xFU)
1984 
1985 #define IS_TIM_CLEARINPUT_POLARITY(__POLARITY__) (((__POLARITY__) == TIM_CLEARINPUTPOLARITY_INVERTED) || \
1986                                                   ((__POLARITY__) == TIM_CLEARINPUTPOLARITY_NONINVERTED))
1987 
1988 #define IS_TIM_CLEARINPUT_PRESCALER(__PRESCALER__) (((__PRESCALER__) == TIM_CLEARINPUTPRESCALER_DIV1) || \
1989                                                     ((__PRESCALER__) == TIM_CLEARINPUTPRESCALER_DIV2) || \
1990                                                     ((__PRESCALER__) == TIM_CLEARINPUTPRESCALER_DIV4) || \
1991                                                     ((__PRESCALER__) == TIM_CLEARINPUTPRESCALER_DIV8))
1992 
1993 #define IS_TIM_CLEARINPUT_FILTER(__ICFILTER__) ((__ICFILTER__) <= 0xFU)
1994 
1995 #define IS_TIM_OSSR_STATE(__STATE__)       (((__STATE__) == TIM_OSSR_ENABLE) || \
1996                                             ((__STATE__) == TIM_OSSR_DISABLE))
1997 
1998 #define IS_TIM_OSSI_STATE(__STATE__)       (((__STATE__) == TIM_OSSI_ENABLE) || \
1999                                             ((__STATE__) == TIM_OSSI_DISABLE))
2000 
2001 #define IS_TIM_LOCK_LEVEL(__LEVEL__)       (((__LEVEL__) == TIM_LOCKLEVEL_OFF) || \
2002                                             ((__LEVEL__) == TIM_LOCKLEVEL_1)   || \
2003                                             ((__LEVEL__) == TIM_LOCKLEVEL_2)   || \
2004                                             ((__LEVEL__) == TIM_LOCKLEVEL_3))
2005 
2006 #define IS_TIM_BREAK_FILTER(__BRKFILTER__) ((__BRKFILTER__) <= 0xFUL)
2007 
2008 #define IS_TIM_BREAK_STATE(__STATE__)      (((__STATE__) == TIM_BREAK_ENABLE) || \
2009                                             ((__STATE__) == TIM_BREAK_DISABLE))
2010 
2011 #define IS_TIM_BREAK_POLARITY(__POLARITY__) (((__POLARITY__) == TIM_BREAKPOLARITY_LOW) || \
2012                                              ((__POLARITY__) == TIM_BREAKPOLARITY_HIGH))
2013 
2014 #define IS_TIM_BREAK_AFMODE(__AFMODE__) (((__AFMODE__) == TIM_BREAK_AFMODE_INPUT) || \
2015                                          ((__AFMODE__) == TIM_BREAK_AFMODE_BIDIRECTIONAL))
2016 
2017 
2018 #define IS_TIM_BREAK2_STATE(__STATE__)     (((__STATE__) == TIM_BREAK2_ENABLE) || \
2019                                             ((__STATE__) == TIM_BREAK2_DISABLE))
2020 
2021 #define IS_TIM_BREAK2_POLARITY(__POLARITY__) (((__POLARITY__) == TIM_BREAK2POLARITY_LOW) || \
2022                                               ((__POLARITY__) == TIM_BREAK2POLARITY_HIGH))
2023 
2024 #define IS_TIM_BREAK2_AFMODE(__AFMODE__) (((__AFMODE__) == TIM_BREAK2_AFMODE_INPUT) || \
2025                                           ((__AFMODE__) == TIM_BREAK2_AFMODE_BIDIRECTIONAL))
2026 
2027 
2028 #define IS_TIM_AUTOMATIC_OUTPUT_STATE(__STATE__) (((__STATE__) == TIM_AUTOMATICOUTPUT_ENABLE) || \
2029                                                   ((__STATE__) == TIM_AUTOMATICOUTPUT_DISABLE))
2030 
2031 #define IS_TIM_GROUPCH5(__OCREF__) ((((__OCREF__) & 0x1FFFFFFFU) == 0x00000000U))
2032 
2033 #define IS_TIM_TRGO_SOURCE(__SOURCE__) (((__SOURCE__) == TIM_TRGO_RESET)  || \
2034                                         ((__SOURCE__) == TIM_TRGO_ENABLE) || \
2035                                         ((__SOURCE__) == TIM_TRGO_UPDATE) || \
2036                                         ((__SOURCE__) == TIM_TRGO_OC1)    || \
2037                                         ((__SOURCE__) == TIM_TRGO_OC1REF) || \
2038                                         ((__SOURCE__) == TIM_TRGO_OC2REF) || \
2039                                         ((__SOURCE__) == TIM_TRGO_OC3REF) || \
2040                                         ((__SOURCE__) == TIM_TRGO_OC4REF) || \
2041                                         ((__SOURCE__) == TIM_TRGO_ENCODER_CLK))
2042 
2043 #define IS_TIM_TRGO2_SOURCE(__SOURCE__) (((__SOURCE__) == TIM_TRGO2_RESET)                        || \
2044                                          ((__SOURCE__) == TIM_TRGO2_ENABLE)                       || \
2045                                          ((__SOURCE__) == TIM_TRGO2_UPDATE)                       || \
2046                                          ((__SOURCE__) == TIM_TRGO2_OC1)                          || \
2047                                          ((__SOURCE__) == TIM_TRGO2_OC1REF)                       || \
2048                                          ((__SOURCE__) == TIM_TRGO2_OC2REF)                       || \
2049                                          ((__SOURCE__) == TIM_TRGO2_OC3REF)                       || \
2050                                          ((__SOURCE__) == TIM_TRGO2_OC3REF)                       || \
2051                                          ((__SOURCE__) == TIM_TRGO2_OC4REF)                       || \
2052                                          ((__SOURCE__) == TIM_TRGO2_OC5REF)                       || \
2053                                          ((__SOURCE__) == TIM_TRGO2_OC6REF)                       || \
2054                                          ((__SOURCE__) == TIM_TRGO2_OC4REF_RISINGFALLING)         || \
2055                                          ((__SOURCE__) == TIM_TRGO2_OC6REF_RISINGFALLING)         || \
2056                                          ((__SOURCE__) == TIM_TRGO2_OC4REF_RISING_OC6REF_RISING)  || \
2057                                          ((__SOURCE__) == TIM_TRGO2_OC4REF_RISING_OC6REF_FALLING) || \
2058                                          ((__SOURCE__) == TIM_TRGO2_OC5REF_RISING_OC6REF_RISING)  || \
2059                                          ((__SOURCE__) == TIM_TRGO2_OC5REF_RISING_OC6REF_FALLING))
2060 
2061 #define IS_TIM_MSM_STATE(__STATE__)      (((__STATE__) == TIM_MASTERSLAVEMODE_ENABLE) || \
2062                                           ((__STATE__) == TIM_MASTERSLAVEMODE_DISABLE))
2063 
2064 #define IS_TIM_SLAVE_MODE(__MODE__) (((__MODE__) == TIM_SLAVEMODE_DISABLE)               || \
2065                                      ((__MODE__) == TIM_SLAVEMODE_RESET)                 || \
2066                                      ((__MODE__) == TIM_SLAVEMODE_GATED)                 || \
2067                                      ((__MODE__) == TIM_SLAVEMODE_TRIGGER)               || \
2068                                      ((__MODE__) == TIM_SLAVEMODE_EXTERNAL1)             || \
2069                                      ((__MODE__) == TIM_SLAVEMODE_COMBINED_RESETTRIGGER) || \
2070                                      ((__MODE__) == TIM_SLAVEMODE_COMBINED_GATEDRESET))
2071 
2072 #define IS_TIM_PWM_MODE(__MODE__) (((__MODE__) == TIM_OCMODE_PWM1)               || \
2073                                    ((__MODE__) == TIM_OCMODE_PWM2)               || \
2074                                    ((__MODE__) == TIM_OCMODE_COMBINED_PWM1)      || \
2075                                    ((__MODE__) == TIM_OCMODE_COMBINED_PWM2)      || \
2076                                    ((__MODE__) == TIM_OCMODE_ASYMMETRIC_PWM1)    || \
2077                                    ((__MODE__) == TIM_OCMODE_ASYMMETRIC_PWM2))
2078 
2079 #define IS_TIM_OC_MODE(__MODE__)  (((__MODE__) == TIM_OCMODE_TIMING)             || \
2080                                    ((__MODE__) == TIM_OCMODE_ACTIVE)             || \
2081                                    ((__MODE__) == TIM_OCMODE_INACTIVE)           || \
2082                                    ((__MODE__) == TIM_OCMODE_TOGGLE)             || \
2083                                    ((__MODE__) == TIM_OCMODE_FORCED_ACTIVE)      || \
2084                                    ((__MODE__) == TIM_OCMODE_FORCED_INACTIVE)    || \
2085                                    ((__MODE__) == TIM_OCMODE_RETRIGERRABLE_OPM1) || \
2086                                    ((__MODE__) == TIM_OCMODE_RETRIGERRABLE_OPM2) || \
2087                                    ((__MODE__) == TIM_OCMODE_DIRECTION_OUTPUT)   || \
2088                                    ((__MODE__) == TIM_OCMODE_PULSE_ON_COMPARE))
2089 
2090 #define IS_TIM_INTERNAL_TRIGGEREVENT_SELECTION(__SELECTION__) (((__SELECTION__) == TIM_TS_ITR0) || \
2091                                                                ((__SELECTION__) == TIM_TS_ITR1) || \
2092                                                                ((__SELECTION__) == TIM_TS_ITR2) || \
2093                                                                ((__SELECTION__) == TIM_TS_ITR7) || \
2094                                                                ((__SELECTION__) == TIM_TS_ITR8) || \
2095                                                                ((__SELECTION__) == TIM_TS_NONE))
2096 
2097 #define IS_TIM_TRIGGERPOLARITY(__POLARITY__)   (((__POLARITY__) == TIM_TRIGGERPOLARITY_INVERTED   ) || \
2098                                                 ((__POLARITY__) == TIM_TRIGGERPOLARITY_NONINVERTED) || \
2099                                                 ((__POLARITY__) == TIM_TRIGGERPOLARITY_RISING     ) || \
2100                                                 ((__POLARITY__) == TIM_TRIGGERPOLARITY_FALLING    ) || \
2101                                                 ((__POLARITY__) == TIM_TRIGGERPOLARITY_BOTHEDGE   ))
2102 
2103 #define IS_TIM_TRIGGERPRESCALER(__PRESCALER__) (((__PRESCALER__) == TIM_TRIGGERPRESCALER_DIV1) || \
2104                                                 ((__PRESCALER__) == TIM_TRIGGERPRESCALER_DIV2) || \
2105                                                 ((__PRESCALER__) == TIM_TRIGGERPRESCALER_DIV4) || \
2106                                                 ((__PRESCALER__) == TIM_TRIGGERPRESCALER_DIV8))
2107 
2108 #define IS_TIM_TRIGGERFILTER(__ICFILTER__) ((__ICFILTER__) <= 0xFU)
2109 
2110 #define IS_TIM_TI1SELECTION(__TI1SELECTION__)  (((__TI1SELECTION__) == TIM_TI1SELECTION_CH1) || \
2111                                                 ((__TI1SELECTION__) == TIM_TI1SELECTION_XORCOMBINATION))
2112 
2113 #define IS_TIM_DMA_LENGTH(__LENGTH__)      (((__LENGTH__) == TIM_DMABURSTLENGTH_1TRANSFER)   || \
2114                                             ((__LENGTH__) == TIM_DMABURSTLENGTH_2TRANSFERS)  || \
2115                                             ((__LENGTH__) == TIM_DMABURSTLENGTH_3TRANSFERS)  || \
2116                                             ((__LENGTH__) == TIM_DMABURSTLENGTH_4TRANSFERS)  || \
2117                                             ((__LENGTH__) == TIM_DMABURSTLENGTH_5TRANSFERS)  || \
2118                                             ((__LENGTH__) == TIM_DMABURSTLENGTH_6TRANSFERS)  || \
2119                                             ((__LENGTH__) == TIM_DMABURSTLENGTH_7TRANSFERS)  || \
2120                                             ((__LENGTH__) == TIM_DMABURSTLENGTH_8TRANSFERS)  || \
2121                                             ((__LENGTH__) == TIM_DMABURSTLENGTH_9TRANSFERS)  || \
2122                                             ((__LENGTH__) == TIM_DMABURSTLENGTH_10TRANSFERS) || \
2123                                             ((__LENGTH__) == TIM_DMABURSTLENGTH_11TRANSFERS) || \
2124                                             ((__LENGTH__) == TIM_DMABURSTLENGTH_12TRANSFERS) || \
2125                                             ((__LENGTH__) == TIM_DMABURSTLENGTH_13TRANSFERS) || \
2126                                             ((__LENGTH__) == TIM_DMABURSTLENGTH_14TRANSFERS) || \
2127                                             ((__LENGTH__) == TIM_DMABURSTLENGTH_15TRANSFERS) || \
2128                                             ((__LENGTH__) == TIM_DMABURSTLENGTH_16TRANSFERS) || \
2129                                             ((__LENGTH__) == TIM_DMABURSTLENGTH_17TRANSFERS) || \
2130                                             ((__LENGTH__) == TIM_DMABURSTLENGTH_18TRANSFERS) || \
2131                                             ((__LENGTH__) == TIM_DMABURSTLENGTH_19TRANSFERS) || \
2132                                             ((__LENGTH__) == TIM_DMABURSTLENGTH_20TRANSFERS) || \
2133                                             ((__LENGTH__) == TIM_DMABURSTLENGTH_21TRANSFERS) || \
2134                                             ((__LENGTH__) == TIM_DMABURSTLENGTH_22TRANSFERS) || \
2135                                             ((__LENGTH__) == TIM_DMABURSTLENGTH_23TRANSFERS) || \
2136                                             ((__LENGTH__) == TIM_DMABURSTLENGTH_24TRANSFERS) || \
2137                                             ((__LENGTH__) == TIM_DMABURSTLENGTH_25TRANSFERS) || \
2138                                             ((__LENGTH__) == TIM_DMABURSTLENGTH_26TRANSFERS))
2139 
2140 #define IS_TIM_DMA_DATA_LENGTH(LENGTH) (((LENGTH) >= 0x1U) && ((LENGTH) < 0x10000U))
2141 
2142 #define IS_TIM_IC_FILTER(__ICFILTER__)   ((__ICFILTER__) <= 0xFU)
2143 
2144 #define IS_TIM_DEADTIME(__DEADTIME__)    ((__DEADTIME__) <= 0xFFU)
2145 
2146 #define IS_TIM_BREAK_SYSTEM(__CONFIG__)    (((__CONFIG__) == TIM_BREAK_SYSTEM_ECC)                  || \
2147                                             ((__CONFIG__) == TIM_BREAK_SYSTEM_PVD)                  || \
2148                                             ((__CONFIG__) == TIM_BREAK_SYSTEM_SRAM2_PARITY_ERROR)   || \
2149                                             ((__CONFIG__) == TIM_BREAK_SYSTEM_LOCKUP))
2150 
2151 #define IS_TIM_SLAVEMODE_TRIGGER_ENABLED(__TRIGGER__) (((__TRIGGER__) == TIM_SLAVEMODE_TRIGGER) || \
2152                                                        ((__TRIGGER__) == TIM_SLAVEMODE_COMBINED_RESETTRIGGER))
2153 
2154 #define TIM_SET_ICPRESCALERVALUE(__HANDLE__, __CHANNEL__, __ICPSC__) \
2155   (((__CHANNEL__) == TIM_CHANNEL_1) ? ((__HANDLE__)->Instance->CCMR1 |= (__ICPSC__)) :\
2156    ((__CHANNEL__) == TIM_CHANNEL_2) ? ((__HANDLE__)->Instance->CCMR1 |= ((__ICPSC__) << 8U)) :\
2157    ((__CHANNEL__) == TIM_CHANNEL_3) ? ((__HANDLE__)->Instance->CCMR2 |= (__ICPSC__)) :\
2158    ((__HANDLE__)->Instance->CCMR2 |= ((__ICPSC__) << 8U)))
2159 
2160 #define TIM_RESET_ICPRESCALERVALUE(__HANDLE__, __CHANNEL__) \
2161   (((__CHANNEL__) == TIM_CHANNEL_1) ? ((__HANDLE__)->Instance->CCMR1 &= ~TIM_CCMR1_IC1PSC) :\
2162    ((__CHANNEL__) == TIM_CHANNEL_2) ? ((__HANDLE__)->Instance->CCMR1 &= ~TIM_CCMR1_IC2PSC) :\
2163    ((__CHANNEL__) == TIM_CHANNEL_3) ? ((__HANDLE__)->Instance->CCMR2 &= ~TIM_CCMR2_IC3PSC) :\
2164    ((__HANDLE__)->Instance->CCMR2 &= ~TIM_CCMR2_IC4PSC))
2165 
2166 #define TIM_SET_CAPTUREPOLARITY(__HANDLE__, __CHANNEL__, __POLARITY__) \
2167   (((__CHANNEL__) == TIM_CHANNEL_1) ? ((__HANDLE__)->Instance->CCER |= (__POLARITY__)) :\
2168    ((__CHANNEL__) == TIM_CHANNEL_2) ? ((__HANDLE__)->Instance->CCER |= ((__POLARITY__) << 4U)) :\
2169    ((__CHANNEL__) == TIM_CHANNEL_3) ? ((__HANDLE__)->Instance->CCER |= ((__POLARITY__) << 8U)) :\
2170    ((__HANDLE__)->Instance->CCER |= (((__POLARITY__) << 12U))))
2171 
2172 #define TIM_RESET_CAPTUREPOLARITY(__HANDLE__, __CHANNEL__) \
2173   (((__CHANNEL__) == TIM_CHANNEL_1) ? ((__HANDLE__)->Instance->CCER &= ~(TIM_CCER_CC1P | TIM_CCER_CC1NP)) :\
2174    ((__CHANNEL__) == TIM_CHANNEL_2) ? ((__HANDLE__)->Instance->CCER &= ~(TIM_CCER_CC2P | TIM_CCER_CC2NP)) :\
2175    ((__CHANNEL__) == TIM_CHANNEL_3) ? ((__HANDLE__)->Instance->CCER &= ~(TIM_CCER_CC3P | TIM_CCER_CC3NP)) :\
2176    ((__HANDLE__)->Instance->CCER &= ~(TIM_CCER_CC4P | TIM_CCER_CC4NP)))
2177 
2178 #define TIM_CHANNEL_STATE_GET(__HANDLE__, __CHANNEL__)\
2179   (((__CHANNEL__) == TIM_CHANNEL_1) ? (__HANDLE__)->ChannelState[0] :\
2180    ((__CHANNEL__) == TIM_CHANNEL_2) ? (__HANDLE__)->ChannelState[1] :\
2181    ((__CHANNEL__) == TIM_CHANNEL_3) ? (__HANDLE__)->ChannelState[2] :\
2182    ((__CHANNEL__) == TIM_CHANNEL_4) ? (__HANDLE__)->ChannelState[3] :\
2183    ((__CHANNEL__) == TIM_CHANNEL_5) ? (__HANDLE__)->ChannelState[4] :\
2184    (__HANDLE__)->ChannelState[5])
2185 
2186 #define TIM_CHANNEL_STATE_SET(__HANDLE__, __CHANNEL__, __CHANNEL_STATE__) \
2187   (((__CHANNEL__) == TIM_CHANNEL_1) ? ((__HANDLE__)->ChannelState[0] = (__CHANNEL_STATE__)) :\
2188    ((__CHANNEL__) == TIM_CHANNEL_2) ? ((__HANDLE__)->ChannelState[1] = (__CHANNEL_STATE__)) :\
2189    ((__CHANNEL__) == TIM_CHANNEL_3) ? ((__HANDLE__)->ChannelState[2] = (__CHANNEL_STATE__)) :\
2190    ((__CHANNEL__) == TIM_CHANNEL_4) ? ((__HANDLE__)->ChannelState[3] = (__CHANNEL_STATE__)) :\
2191    ((__CHANNEL__) == TIM_CHANNEL_5) ? ((__HANDLE__)->ChannelState[4] = (__CHANNEL_STATE__)) :\
2192    ((__HANDLE__)->ChannelState[5] = (__CHANNEL_STATE__)))
2193 
2194 #define TIM_CHANNEL_STATE_SET_ALL(__HANDLE__,  __CHANNEL_STATE__) do { \
2195                                                                        (__HANDLE__)->ChannelState[0]  = \
2196                                                                        (__CHANNEL_STATE__);  \
2197                                                                        (__HANDLE__)->ChannelState[1]  = \
2198                                                                        (__CHANNEL_STATE__);  \
2199                                                                        (__HANDLE__)->ChannelState[2]  = \
2200                                                                        (__CHANNEL_STATE__);  \
2201                                                                        (__HANDLE__)->ChannelState[3]  = \
2202                                                                        (__CHANNEL_STATE__);  \
2203                                                                        (__HANDLE__)->ChannelState[4]  = \
2204                                                                        (__CHANNEL_STATE__);  \
2205                                                                        (__HANDLE__)->ChannelState[5]  = \
2206                                                                        (__CHANNEL_STATE__);  \
2207                                                                      } while(0)
2208 
2209 #define TIM_CHANNEL_N_STATE_GET(__HANDLE__, __CHANNEL__)\
2210   (((__CHANNEL__) == TIM_CHANNEL_1) ? (__HANDLE__)->ChannelNState[0] :\
2211    ((__CHANNEL__) == TIM_CHANNEL_2) ? (__HANDLE__)->ChannelNState[1] :\
2212    ((__CHANNEL__) == TIM_CHANNEL_3) ? (__HANDLE__)->ChannelNState[2] :\
2213    (__HANDLE__)->ChannelNState[3])
2214 
2215 #define TIM_CHANNEL_N_STATE_SET(__HANDLE__, __CHANNEL__, __CHANNEL_STATE__) \
2216   (((__CHANNEL__) == TIM_CHANNEL_1) ? ((__HANDLE__)->ChannelNState[0] = (__CHANNEL_STATE__)) :\
2217    ((__CHANNEL__) == TIM_CHANNEL_2) ? ((__HANDLE__)->ChannelNState[1] = (__CHANNEL_STATE__)) :\
2218    ((__CHANNEL__) == TIM_CHANNEL_3) ? ((__HANDLE__)->ChannelNState[2] = (__CHANNEL_STATE__)) :\
2219    ((__HANDLE__)->ChannelNState[3] = (__CHANNEL_STATE__)))
2220 
2221 #define TIM_CHANNEL_N_STATE_SET_ALL(__HANDLE__,  __CHANNEL_STATE__) do { \
2222                                                                          (__HANDLE__)->ChannelNState[0] = \
2223                                                                          (__CHANNEL_STATE__);  \
2224                                                                          (__HANDLE__)->ChannelNState[1] = \
2225                                                                          (__CHANNEL_STATE__);  \
2226                                                                          (__HANDLE__)->ChannelNState[2] = \
2227                                                                          (__CHANNEL_STATE__);  \
2228                                                                          (__HANDLE__)->ChannelNState[3] = \
2229                                                                          (__CHANNEL_STATE__);  \
2230                                                                        } while(0)
2231 
2232 /**
2233   * @}
2234   */
2235 /* End of private macros -----------------------------------------------------*/
2236 
2237 /* Include TIM HAL Extended module */
2238 #include "stm32wbaxx_hal_tim_ex.h"
2239 
2240 /* Exported functions --------------------------------------------------------*/
2241 /** @addtogroup TIM_Exported_Functions TIM Exported Functions
2242   * @{
2243   */
2244 
2245 /** @addtogroup TIM_Exported_Functions_Group1 TIM Time Base functions
2246   *  @brief   Time Base functions
2247   * @{
2248   */
2249 /* Time Base functions ********************************************************/
2250 HAL_StatusTypeDef HAL_TIM_Base_Init(TIM_HandleTypeDef *htim);
2251 HAL_StatusTypeDef HAL_TIM_Base_DeInit(TIM_HandleTypeDef *htim);
2252 void HAL_TIM_Base_MspInit(TIM_HandleTypeDef *htim);
2253 void HAL_TIM_Base_MspDeInit(TIM_HandleTypeDef *htim);
2254 /* Blocking mode: Polling */
2255 HAL_StatusTypeDef HAL_TIM_Base_Start(TIM_HandleTypeDef *htim);
2256 HAL_StatusTypeDef HAL_TIM_Base_Stop(TIM_HandleTypeDef *htim);
2257 /* Non-Blocking mode: Interrupt */
2258 HAL_StatusTypeDef HAL_TIM_Base_Start_IT(TIM_HandleTypeDef *htim);
2259 HAL_StatusTypeDef HAL_TIM_Base_Stop_IT(TIM_HandleTypeDef *htim);
2260 /* Non-Blocking mode: DMA */
2261 HAL_StatusTypeDef HAL_TIM_Base_Start_DMA(TIM_HandleTypeDef *htim, const uint32_t *pData, uint16_t Length);
2262 HAL_StatusTypeDef HAL_TIM_Base_Stop_DMA(TIM_HandleTypeDef *htim);
2263 /**
2264   * @}
2265   */
2266 
2267 /** @addtogroup TIM_Exported_Functions_Group2 TIM Output Compare functions
2268   *  @brief   TIM Output Compare functions
2269   * @{
2270   */
2271 /* Timer Output Compare functions *********************************************/
2272 HAL_StatusTypeDef HAL_TIM_OC_Init(TIM_HandleTypeDef *htim);
2273 HAL_StatusTypeDef HAL_TIM_OC_DeInit(TIM_HandleTypeDef *htim);
2274 void HAL_TIM_OC_MspInit(TIM_HandleTypeDef *htim);
2275 void HAL_TIM_OC_MspDeInit(TIM_HandleTypeDef *htim);
2276 /* Blocking mode: Polling */
2277 HAL_StatusTypeDef HAL_TIM_OC_Start(TIM_HandleTypeDef *htim, uint32_t Channel);
2278 HAL_StatusTypeDef HAL_TIM_OC_Stop(TIM_HandleTypeDef *htim, uint32_t Channel);
2279 /* Non-Blocking mode: Interrupt */
2280 HAL_StatusTypeDef HAL_TIM_OC_Start_IT(TIM_HandleTypeDef *htim, uint32_t Channel);
2281 HAL_StatusTypeDef HAL_TIM_OC_Stop_IT(TIM_HandleTypeDef *htim, uint32_t Channel);
2282 /* Non-Blocking mode: DMA */
2283 HAL_StatusTypeDef HAL_TIM_OC_Start_DMA(TIM_HandleTypeDef *htim, uint32_t Channel, const uint32_t *pData,
2284                                        uint16_t Length);
2285 HAL_StatusTypeDef HAL_TIM_OC_Stop_DMA(TIM_HandleTypeDef *htim, uint32_t Channel);
2286 /**
2287   * @}
2288   */
2289 
2290 /** @addtogroup TIM_Exported_Functions_Group3 TIM PWM functions
2291   *  @brief   TIM PWM functions
2292   * @{
2293   */
2294 /* Timer PWM functions ********************************************************/
2295 HAL_StatusTypeDef HAL_TIM_PWM_Init(TIM_HandleTypeDef *htim);
2296 HAL_StatusTypeDef HAL_TIM_PWM_DeInit(TIM_HandleTypeDef *htim);
2297 void HAL_TIM_PWM_MspInit(TIM_HandleTypeDef *htim);
2298 void HAL_TIM_PWM_MspDeInit(TIM_HandleTypeDef *htim);
2299 /* Blocking mode: Polling */
2300 HAL_StatusTypeDef HAL_TIM_PWM_Start(TIM_HandleTypeDef *htim, uint32_t Channel);
2301 HAL_StatusTypeDef HAL_TIM_PWM_Stop(TIM_HandleTypeDef *htim, uint32_t Channel);
2302 /* Non-Blocking mode: Interrupt */
2303 HAL_StatusTypeDef HAL_TIM_PWM_Start_IT(TIM_HandleTypeDef *htim, uint32_t Channel);
2304 HAL_StatusTypeDef HAL_TIM_PWM_Stop_IT(TIM_HandleTypeDef *htim, uint32_t Channel);
2305 /* Non-Blocking mode: DMA */
2306 HAL_StatusTypeDef HAL_TIM_PWM_Start_DMA(TIM_HandleTypeDef *htim, uint32_t Channel, const uint32_t *pData,
2307                                         uint16_t Length);
2308 HAL_StatusTypeDef HAL_TIM_PWM_Stop_DMA(TIM_HandleTypeDef *htim, uint32_t Channel);
2309 /**
2310   * @}
2311   */
2312 
2313 /** @addtogroup TIM_Exported_Functions_Group4 TIM Input Capture functions
2314   *  @brief   TIM Input Capture functions
2315   * @{
2316   */
2317 /* Timer Input Capture functions **********************************************/
2318 HAL_StatusTypeDef HAL_TIM_IC_Init(TIM_HandleTypeDef *htim);
2319 HAL_StatusTypeDef HAL_TIM_IC_DeInit(TIM_HandleTypeDef *htim);
2320 void HAL_TIM_IC_MspInit(TIM_HandleTypeDef *htim);
2321 void HAL_TIM_IC_MspDeInit(TIM_HandleTypeDef *htim);
2322 /* Blocking mode: Polling */
2323 HAL_StatusTypeDef HAL_TIM_IC_Start(TIM_HandleTypeDef *htim, uint32_t Channel);
2324 HAL_StatusTypeDef HAL_TIM_IC_Stop(TIM_HandleTypeDef *htim, uint32_t Channel);
2325 /* Non-Blocking mode: Interrupt */
2326 HAL_StatusTypeDef HAL_TIM_IC_Start_IT(TIM_HandleTypeDef *htim, uint32_t Channel);
2327 HAL_StatusTypeDef HAL_TIM_IC_Stop_IT(TIM_HandleTypeDef *htim, uint32_t Channel);
2328 /* Non-Blocking mode: DMA */
2329 HAL_StatusTypeDef HAL_TIM_IC_Start_DMA(TIM_HandleTypeDef *htim, uint32_t Channel, uint32_t *pData, uint16_t Length);
2330 HAL_StatusTypeDef HAL_TIM_IC_Stop_DMA(TIM_HandleTypeDef *htim, uint32_t Channel);
2331 /**
2332   * @}
2333   */
2334 
2335 /** @addtogroup TIM_Exported_Functions_Group5 TIM One Pulse functions
2336   *  @brief   TIM One Pulse functions
2337   * @{
2338   */
2339 /* Timer One Pulse functions **************************************************/
2340 HAL_StatusTypeDef HAL_TIM_OnePulse_Init(TIM_HandleTypeDef *htim, uint32_t OnePulseMode);
2341 HAL_StatusTypeDef HAL_TIM_OnePulse_DeInit(TIM_HandleTypeDef *htim);
2342 void HAL_TIM_OnePulse_MspInit(TIM_HandleTypeDef *htim);
2343 void HAL_TIM_OnePulse_MspDeInit(TIM_HandleTypeDef *htim);
2344 /* Blocking mode: Polling */
2345 HAL_StatusTypeDef HAL_TIM_OnePulse_Start(TIM_HandleTypeDef *htim, uint32_t OutputChannel);
2346 HAL_StatusTypeDef HAL_TIM_OnePulse_Stop(TIM_HandleTypeDef *htim, uint32_t OutputChannel);
2347 /* Non-Blocking mode: Interrupt */
2348 HAL_StatusTypeDef HAL_TIM_OnePulse_Start_IT(TIM_HandleTypeDef *htim, uint32_t OutputChannel);
2349 HAL_StatusTypeDef HAL_TIM_OnePulse_Stop_IT(TIM_HandleTypeDef *htim, uint32_t OutputChannel);
2350 /**
2351   * @}
2352   */
2353 
2354 /** @addtogroup TIM_Exported_Functions_Group6 TIM Encoder functions
2355   *  @brief   TIM Encoder functions
2356   * @{
2357   */
2358 /* Timer Encoder functions ****************************************************/
2359 HAL_StatusTypeDef HAL_TIM_Encoder_Init(TIM_HandleTypeDef *htim, const TIM_Encoder_InitTypeDef *sConfig);
2360 HAL_StatusTypeDef HAL_TIM_Encoder_DeInit(TIM_HandleTypeDef *htim);
2361 void HAL_TIM_Encoder_MspInit(TIM_HandleTypeDef *htim);
2362 void HAL_TIM_Encoder_MspDeInit(TIM_HandleTypeDef *htim);
2363 /* Blocking mode: Polling */
2364 HAL_StatusTypeDef HAL_TIM_Encoder_Start(TIM_HandleTypeDef *htim, uint32_t Channel);
2365 HAL_StatusTypeDef HAL_TIM_Encoder_Stop(TIM_HandleTypeDef *htim, uint32_t Channel);
2366 /* Non-Blocking mode: Interrupt */
2367 HAL_StatusTypeDef HAL_TIM_Encoder_Start_IT(TIM_HandleTypeDef *htim, uint32_t Channel);
2368 HAL_StatusTypeDef HAL_TIM_Encoder_Stop_IT(TIM_HandleTypeDef *htim, uint32_t Channel);
2369 /* Non-Blocking mode: DMA */
2370 HAL_StatusTypeDef HAL_TIM_Encoder_Start_DMA(TIM_HandleTypeDef *htim, uint32_t Channel, uint32_t *pData1,
2371                                             uint32_t *pData2, uint16_t Length);
2372 HAL_StatusTypeDef HAL_TIM_Encoder_Stop_DMA(TIM_HandleTypeDef *htim, uint32_t Channel);
2373 /**
2374   * @}
2375   */
2376 
2377 /** @addtogroup TIM_Exported_Functions_Group7 TIM IRQ handler management
2378   *  @brief   IRQ handler management
2379   * @{
2380   */
2381 /* Interrupt Handler functions  ***********************************************/
2382 void HAL_TIM_IRQHandler(TIM_HandleTypeDef *htim);
2383 /**
2384   * @}
2385   */
2386 
2387 /** @defgroup TIM_Exported_Functions_Group8 TIM Peripheral Control functions
2388   *  @brief   Peripheral Control functions
2389   * @{
2390   */
2391 /* Control functions  *********************************************************/
2392 HAL_StatusTypeDef HAL_TIM_OC_ConfigChannel(TIM_HandleTypeDef *htim, const TIM_OC_InitTypeDef *sConfig,
2393                                            uint32_t Channel);
2394 HAL_StatusTypeDef HAL_TIM_PWM_ConfigChannel(TIM_HandleTypeDef *htim, const TIM_OC_InitTypeDef *sConfig,
2395                                             uint32_t Channel);
2396 HAL_StatusTypeDef HAL_TIM_IC_ConfigChannel(TIM_HandleTypeDef *htim, const TIM_IC_InitTypeDef *sConfig,
2397                                            uint32_t Channel);
2398 HAL_StatusTypeDef HAL_TIM_OnePulse_ConfigChannel(TIM_HandleTypeDef *htim, TIM_OnePulse_InitTypeDef *sConfig,
2399                                                  uint32_t OutputChannel,  uint32_t InputChannel);
2400 HAL_StatusTypeDef HAL_TIM_ConfigOCrefClear(TIM_HandleTypeDef *htim,
2401                                            const TIM_ClearInputConfigTypeDef *sClearInputConfig,
2402                                            uint32_t Channel);
2403 HAL_StatusTypeDef HAL_TIM_ConfigClockSource(TIM_HandleTypeDef *htim, const TIM_ClockConfigTypeDef *sClockSourceConfig);
2404 HAL_StatusTypeDef HAL_TIM_ConfigTI1Input(TIM_HandleTypeDef *htim, uint32_t TI1_Selection);
2405 HAL_StatusTypeDef HAL_TIM_SlaveConfigSynchro(TIM_HandleTypeDef *htim, const TIM_SlaveConfigTypeDef *sSlaveConfig);
2406 HAL_StatusTypeDef HAL_TIM_SlaveConfigSynchro_IT(TIM_HandleTypeDef *htim, const TIM_SlaveConfigTypeDef *sSlaveConfig);
2407 HAL_StatusTypeDef HAL_TIM_DMABurst_WriteStart(TIM_HandleTypeDef *htim, uint32_t BurstBaseAddress,
2408                                               uint32_t BurstRequestSrc, const uint32_t  *BurstBuffer,
2409                                               uint32_t  BurstLength);
2410 HAL_StatusTypeDef HAL_TIM_DMABurst_MultiWriteStart(TIM_HandleTypeDef *htim, uint32_t BurstBaseAddress,
2411                                                    uint32_t BurstRequestSrc, const uint32_t *BurstBuffer,
2412                                                    uint32_t BurstLength,  uint32_t DataLength);
2413 HAL_StatusTypeDef HAL_TIM_DMABurst_WriteStop(TIM_HandleTypeDef *htim, uint32_t BurstRequestSrc);
2414 HAL_StatusTypeDef HAL_TIM_DMABurst_ReadStart(TIM_HandleTypeDef *htim, uint32_t BurstBaseAddress,
2415                                              uint32_t BurstRequestSrc, uint32_t  *BurstBuffer, uint32_t  BurstLength);
2416 HAL_StatusTypeDef HAL_TIM_DMABurst_MultiReadStart(TIM_HandleTypeDef *htim, uint32_t BurstBaseAddress,
2417                                                   uint32_t BurstRequestSrc, uint32_t  *BurstBuffer,
2418                                                   uint32_t  BurstLength, uint32_t  DataLength);
2419 HAL_StatusTypeDef HAL_TIM_DMABurst_ReadStop(TIM_HandleTypeDef *htim, uint32_t BurstRequestSrc);
2420 HAL_StatusTypeDef HAL_TIM_GenerateEvent(TIM_HandleTypeDef *htim, uint32_t EventSource);
2421 uint32_t HAL_TIM_ReadCapturedValue(const TIM_HandleTypeDef *htim, uint32_t Channel);
2422 /**
2423   * @}
2424   */
2425 
2426 /** @defgroup TIM_Exported_Functions_Group9 TIM Callbacks functions
2427   *  @brief   TIM Callbacks functions
2428   * @{
2429   */
2430 /* Callback in non blocking modes (Interrupt and DMA) *************************/
2431 void HAL_TIM_PeriodElapsedCallback(TIM_HandleTypeDef *htim);
2432 void HAL_TIM_PeriodElapsedHalfCpltCallback(TIM_HandleTypeDef *htim);
2433 void HAL_TIM_OC_DelayElapsedCallback(TIM_HandleTypeDef *htim);
2434 void HAL_TIM_IC_CaptureCallback(TIM_HandleTypeDef *htim);
2435 void HAL_TIM_IC_CaptureHalfCpltCallback(TIM_HandleTypeDef *htim);
2436 void HAL_TIM_PWM_PulseFinishedCallback(TIM_HandleTypeDef *htim);
2437 void HAL_TIM_PWM_PulseFinishedHalfCpltCallback(TIM_HandleTypeDef *htim);
2438 void HAL_TIM_TriggerCallback(TIM_HandleTypeDef *htim);
2439 void HAL_TIM_TriggerHalfCpltCallback(TIM_HandleTypeDef *htim);
2440 void HAL_TIM_ErrorCallback(TIM_HandleTypeDef *htim);
2441 
2442 /* Callbacks Register/UnRegister functions  ***********************************/
2443 #if (USE_HAL_TIM_REGISTER_CALLBACKS == 1)
2444 HAL_StatusTypeDef HAL_TIM_RegisterCallback(TIM_HandleTypeDef *htim, HAL_TIM_CallbackIDTypeDef CallbackID,
2445                                            pTIM_CallbackTypeDef pCallback);
2446 HAL_StatusTypeDef HAL_TIM_UnRegisterCallback(TIM_HandleTypeDef *htim, HAL_TIM_CallbackIDTypeDef CallbackID);
2447 #endif /* USE_HAL_TIM_REGISTER_CALLBACKS */
2448 
2449 /**
2450   * @}
2451   */
2452 
2453 /** @defgroup TIM_Exported_Functions_Group10 TIM Peripheral State functions
2454   *  @brief  Peripheral State functions
2455   * @{
2456   */
2457 /* Peripheral State functions  ************************************************/
2458 HAL_TIM_StateTypeDef HAL_TIM_Base_GetState(const TIM_HandleTypeDef *htim);
2459 HAL_TIM_StateTypeDef HAL_TIM_OC_GetState(const TIM_HandleTypeDef *htim);
2460 HAL_TIM_StateTypeDef HAL_TIM_PWM_GetState(const TIM_HandleTypeDef *htim);
2461 HAL_TIM_StateTypeDef HAL_TIM_IC_GetState(const TIM_HandleTypeDef *htim);
2462 HAL_TIM_StateTypeDef HAL_TIM_OnePulse_GetState(const TIM_HandleTypeDef *htim);
2463 HAL_TIM_StateTypeDef HAL_TIM_Encoder_GetState(const TIM_HandleTypeDef *htim);
2464 
2465 /* Peripheral Channel state functions  ************************************************/
2466 HAL_TIM_ActiveChannel HAL_TIM_GetActiveChannel(const TIM_HandleTypeDef *htim);
2467 HAL_TIM_ChannelStateTypeDef HAL_TIM_GetChannelState(const TIM_HandleTypeDef *htim,  uint32_t Channel);
2468 HAL_TIM_DMABurstStateTypeDef HAL_TIM_DMABurstState(const TIM_HandleTypeDef *htim);
2469 /**
2470   * @}
2471   */
2472 
2473 /**
2474   * @}
2475   */
2476 /* End of exported functions -------------------------------------------------*/
2477 
2478 /* Private functions----------------------------------------------------------*/
2479 /** @defgroup TIM_Private_Functions TIM Private Functions
2480   * @{
2481   */
2482 void TIM_Base_SetConfig(TIM_TypeDef *TIMx, const TIM_Base_InitTypeDef *Structure);
2483 void TIM_TI1_SetConfig(TIM_TypeDef *TIMx, uint32_t TIM_ICPolarity, uint32_t TIM_ICSelection, uint32_t TIM_ICFilter);
2484 void TIM_OC2_SetConfig(TIM_TypeDef *TIMx, const TIM_OC_InitTypeDef *OC_Config);
2485 void TIM_ETR_SetConfig(TIM_TypeDef *TIMx, uint32_t TIM_ExtTRGPrescaler,
2486                        uint32_t TIM_ExtTRGPolarity, uint32_t ExtTRGFilter);
2487 
2488 void TIM_DMADelayPulseHalfCplt(DMA_HandleTypeDef *hdma);
2489 void TIM_DMAError(DMA_HandleTypeDef *hdma);
2490 void TIM_DMACaptureCplt(DMA_HandleTypeDef *hdma);
2491 void TIM_DMACaptureHalfCplt(DMA_HandleTypeDef *hdma);
2492 void TIM_CCxChannelCmd(TIM_TypeDef *TIMx, uint32_t Channel, uint32_t ChannelState);
2493 HAL_StatusTypeDef TIM_DMA_Start_IT(DMA_HandleTypeDef *hdma, uint32_t src, uint32_t dst,
2494                                    uint32_t length);
2495 
2496 #if (USE_HAL_TIM_REGISTER_CALLBACKS == 1)
2497 void TIM_ResetCallback(TIM_HandleTypeDef *htim);
2498 #endif /* USE_HAL_TIM_REGISTER_CALLBACKS */
2499 
2500 /**
2501   * @}
2502   */
2503 /* End of private functions --------------------------------------------------*/
2504 
2505 /**
2506   * @}
2507   */
2508 
2509 /**
2510   * @}
2511   */
2512 
2513 #ifdef __cplusplus
2514 }
2515 #endif
2516 
2517 #endif /* STM32WBAxx_HAL_TIM_H */
2518