1 /**
2 ******************************************************************************
3 * @file stm32wlxx_hal_gpio.c
4 * @author MCD Application Team
5 * @brief GPIO HAL module driver.
6 * This file provides firmware functions to manage the following
7 * functionalities of the General Purpose Input/Output (GPIO) peripheral:
8 * + Initialization and de-initialization functions
9 * + IO operation functions
10 ******************************************************************************
11 * @attention
12 *
13 * Copyright (c) 2020 STMicroelectronics.
14 * All rights reserved.
15 *
16 * This software is licensed under terms that can be found in the LICENSE file
17 * in the root directory of this software component.
18 * If no LICENSE file comes with this software, it is provided AS-IS.
19 *
20 ******************************************************************************
21 @verbatim
22 ==============================================================================
23 ##### GPIO Peripheral features #####
24 ==============================================================================
25 [..]
26 (+) Each port bit of the general-purpose I/O (GPIO) ports can be individually
27 configured by software in several modes:
28 (++) Input mode
29 (++) Analog mode
30 (++) Output mode
31 (++) Alternate function mode
32 (++) External interrupt/event lines
33
34 (+) During and just after reset, the alternate functions and external interrupt
35 lines are not active and the I/O ports are configured in input floating mode.
36
37 (+) All GPIO pins have weak internal pull-up and pull-down resistors, which can be
38 activated or not.
39
40 (+) In Output or Alternate mode, each IO can be configured on open-drain or push-pull
41 type and the IO speed can be selected depending on the VDD value.
42
43 (+) The microcontroller IO pins are connected to onboard peripherals/modules through a
44 multiplexer that allows only one peripheral alternate function (AF) connected
45 to an IO pin at a time. In this way, there can be no conflict between peripherals
46 sharing the same IO pin.
47
48 (+) All ports have external interrupt/event capability. To use external interrupt
49 lines, the port must be configured in input mode. All available GPIO pins are
50 connected to the 16 external interrupt/event lines from EXTI0 to EXTI15.
51
52 (+) The external interrupt/event controller consists of up to 28 edge detectors
53 (16 lines are connected to GPIO) for generating event/interrupt requests (each
54 input line can be independently configured to select the type (interrupt or event)
55 and the corresponding trigger event (rising or falling or both). Each line can
56 also be masked independently.
57
58 ##### How to use this driver #####
59 ==============================================================================
60 [..]
61 (#) Enable the GPIO AHB clock using the following function: __HAL_RCC_GPIOx_CLK_ENABLE().
62
63 (#) Configure the GPIO pin(s) using HAL_GPIO_Init().
64 (++) Configure the IO mode using "Mode" member from GPIO_InitTypeDef structure
65 (++) Activate Pull-up, Pull-down resistor using "Pull" member from GPIO_InitTypeDef
66 structure.
67 (++) In case of Output or alternate function mode selection: the speed is
68 configured through "Speed" member from GPIO_InitTypeDef structure.
69 (++) In alternate mode is selection, the alternate function connected to the IO
70 is configured through "Alternate" member from GPIO_InitTypeDef structure.
71 (++) Analog mode is required when a pin is to be used as ADC channel
72 or DAC output.
73 (++) In case of external interrupt/event selection the "Mode" member from
74 GPIO_InitTypeDef structure select the type (interrupt or event) and
75 the corresponding trigger event (rising or falling or both).
76
77 (#) In case of external interrupt/event mode selection, configure NVIC IRQ priority
78 mapped to the EXTI line using HAL_NVIC_SetPriority() and enable it using
79 HAL_NVIC_EnableIRQ().
80
81 (#) To get the level of a pin configured in input mode use HAL_GPIO_ReadPin().
82
83 (#) To set/reset the level of a pin configured in output mode use
84 HAL_GPIO_WritePin()/HAL_GPIO_TogglePin().
85
86 (#) To set the level of several pins and reset level of several other pins in
87 same cycle, use HAL_GPIO_WriteMultipleStatePin().
88
89
90 (#) To lock pin configuration until next reset use HAL_GPIO_LockPin().
91
92 (#) During and just after reset, the alternate functions are not
93 active and the GPIO pins are configured in input floating mode (except JTAG
94 pins).
95
96 (#) The LSE oscillator pins OSC32_IN and OSC32_OUT can be used as general purpose
97 (PC14 and PC15, respectively) when the LSE oscillator is off. The LSE has
98 priority over the GPIO function.
99
100 (#) The HSE oscillator pins OSC_IN/OSC_OUT can be used as
101 general purpose PH0 and PH1, respectively, when the HSE oscillator is off.
102 The HSE has priority over the GPIO function.
103
104 @endverbatim
105 ******************************************************************************
106 */
107
108 /* Includes ------------------------------------------------------------------*/
109 #include "stm32wlxx_hal.h"
110
111 /** @addtogroup STM32WLxx_HAL_Driver
112 * @{
113 */
114
115 /** @addtogroup GPIO
116 * @{
117 */
118
119 #ifdef HAL_GPIO_MODULE_ENABLED
120
121 /* Private typedef -----------------------------------------------------------*/
122 /* Private defines ------------------------------------------------------------*/
123 /** @addtogroup GPIO_Private_Constants GPIO Private Constants
124 * @{
125 */
126 #define GPIO_NUMBER (16U)
127 /**
128 * @}
129 */
130
131 /* Private macros ------------------------------------------------------------*/
132 /* Private variables ---------------------------------------------------------*/
133 /* Private function prototypes -----------------------------------------------*/
134 /* Exported functions --------------------------------------------------------*/
135
136 /** @addtogroup GPIO_Exported_Functions
137 * @{
138 */
139
140 /** @addtogroup GPIO_Exported_Functions_Group1
141 * @brief Initialization and Configuration functions
142 *
143 @verbatim
144 ===============================================================================
145 ##### Initialization and de-initialization functions #####
146 ===============================================================================
147
148 @endverbatim
149 * @{
150 */
151
152 /**
153 * @brief Initialize the GPIOx peripheral according to the specified parameters in the GPIO_Init.
154 * @param GPIOx where x can be (A..H) to select the GPIO peripheral for STM32WLxx family
155 * @param GPIO_Init pointer to a GPIO_InitTypeDef structure that contains
156 * the configuration information for the specified GPIO peripheral.
157 * @retval None
158 */
HAL_GPIO_Init(GPIO_TypeDef * GPIOx,GPIO_InitTypeDef * GPIO_Init)159 void HAL_GPIO_Init(GPIO_TypeDef *GPIOx, GPIO_InitTypeDef *GPIO_Init)
160 {
161 uint32_t position = 0x00u;
162 uint32_t iocurrent;
163 uint32_t temp;
164
165 /* Check the parameters */
166 assert_param(IS_GPIO_ALL_INSTANCE(GPIOx));
167 assert_param(IS_GPIO_PIN(GPIO_Init->Pin));
168 assert_param(IS_GPIO_MODE(GPIO_Init->Mode));
169 assert_param(IS_GPIO_PULL(GPIO_Init->Pull));
170
171 /* Configure the port pins */
172 while (((GPIO_Init->Pin) >> position) != 0x00u)
173 {
174 /* Get current io position */
175 iocurrent = (GPIO_Init->Pin) & (1uL << position);
176
177 if (iocurrent != 0x00u)
178 {
179 /*--------------------- GPIO Mode Configuration ------------------------*/
180 /* In case of Output or Alternate function mode selection */
181 if (((GPIO_Init->Mode & GPIO_MODE) == MODE_OUTPUT) || ((GPIO_Init->Mode & GPIO_MODE) == MODE_AF))
182 {
183 /* Check the Speed parameter */
184 assert_param(IS_GPIO_SPEED(GPIO_Init->Speed));
185 /* Configure the IO Speed */
186 temp = GPIOx->OSPEEDR;
187 temp &= ~(GPIO_OSPEEDR_OSPEED0 << (position * 2U));
188 temp |= (GPIO_Init->Speed << (position * 2U));
189 GPIOx->OSPEEDR = temp;
190
191 /* Configure the IO Output Type */
192 temp = GPIOx->OTYPER;
193 temp &= ~(GPIO_OTYPER_OT0 << position) ;
194 temp |= (((GPIO_Init->Mode & OUTPUT_TYPE) >> OUTPUT_TYPE_Pos) << position);
195 GPIOx->OTYPER = temp;
196 }
197
198 /* Activate the Pull-up or Pull down resistor for the current IO */
199 if ((GPIO_Init->Mode & GPIO_MODE) != MODE_ANALOG)
200 {
201 temp = GPIOx->PUPDR;
202 temp &= ~(GPIO_PUPDR_PUPD0 << (position * 2U));
203 temp |= ((GPIO_Init->Pull) << (position * 2U));
204 GPIOx->PUPDR = temp;
205 }
206
207 /* In case of Alternate function mode selection */
208 if ((GPIO_Init->Mode & GPIO_MODE) == MODE_AF)
209 {
210 /* Check the Alternate function parameters */
211 assert_param(IS_GPIO_AF_INSTANCE(GPIOx));
212 assert_param(IS_GPIO_AF(GPIO_Init->Alternate));
213
214 /* Configure Alternate function mapped with the current IO */
215 temp = GPIOx->AFR[position >> 3U];
216 temp &= ~(0xFU << ((position & 0x07U) * 4U));
217 temp |= ((GPIO_Init->Alternate) << ((position & 0x07U) * 4U));
218 GPIOx->AFR[position >> 3u] = temp;
219 }
220
221 /* Configure IO Direction mode (Input, Output, Alternate or Analog) */
222 temp = GPIOx->MODER;
223 temp &= ~(GPIO_MODER_MODE0 << (position * 2U));
224 temp |= ((GPIO_Init->Mode & GPIO_MODE) << (position * 2U));
225 GPIOx->MODER = temp;
226
227 /*--------------------- EXTI Mode Configuration ------------------------*/
228 /* Configure the External Interrupt or event for the current IO */
229 if ((GPIO_Init->Mode & EXTI_MODE) != 0x00u)
230 {
231 temp = SYSCFG->EXTICR[position >> 2u];
232 temp &= ~(0x07uL << (4U * (position & 0x03U)));
233 temp |= (GPIO_GET_INDEX(GPIOx) << (4U * (position & 0x03U)));
234 SYSCFG->EXTICR[position >> 2u] = temp;
235
236 /* Clear Rising Falling edge configuration */
237 temp = EXTI->RTSR1;
238 temp &= ~(iocurrent);
239 if ((GPIO_Init->Mode & TRIGGER_RISING) != 0x00u)
240 {
241 temp |= iocurrent;
242 }
243 EXTI->RTSR1 = temp;
244
245 temp = EXTI->FTSR1;
246 temp &= ~(iocurrent);
247 if ((GPIO_Init->Mode & TRIGGER_FALLING) != 0x00u)
248 {
249 temp |= iocurrent;
250 }
251 EXTI->FTSR1 = temp;
252
253 /* Clear EXTI line configuration */
254 #ifdef CORE_CM0PLUS
255 temp = EXTI->C2IMR1;
256 #else
257 temp = EXTI->IMR1;
258 #endif /* CORE_CM0PLUS */
259 temp &= ~(iocurrent);
260 if ((GPIO_Init->Mode & EXTI_IT) != 0x00u)
261 {
262 temp |= iocurrent;
263 }
264 #ifdef CORE_CM0PLUS
265 EXTI->C2IMR1 = temp;
266 #else
267 EXTI->IMR1 = temp;
268 #endif /* CORE_CM0PLUS */
269
270 #ifdef CORE_CM0PLUS
271 temp = EXTI->C2EMR1;
272 #else
273 temp = EXTI->EMR1;
274 #endif /* CORE_CM0PLUS */
275 temp &= ~(iocurrent);
276 if ((GPIO_Init->Mode & EXTI_EVT) != 0x00u)
277 {
278 temp |= iocurrent;
279 }
280 #ifdef CORE_CM0PLUS
281 EXTI->C2EMR1 = temp;
282 #else
283 EXTI->EMR1 = temp;
284 #endif /* CORE_CM0PLUS */
285 }
286 }
287
288 position++;
289 }
290 }
291
292 /**
293 * @brief De-initialize the GPIOx peripheral registers to their default reset values.
294 * @param GPIOx where x can be (A..H) to select the GPIO peripheral for STM32WLxx family
295 * @param GPIO_Pin specifies the port bit to be written.
296 * This parameter can be any combination of GPIO_PIN_x where x can be (0..15).
297 * @retval None
298 */
HAL_GPIO_DeInit(GPIO_TypeDef * GPIOx,uint32_t GPIO_Pin)299 void HAL_GPIO_DeInit(GPIO_TypeDef *GPIOx, uint32_t GPIO_Pin)
300 {
301 uint32_t position = 0x00u;
302 uint32_t iocurrent;
303 uint32_t tmp;
304
305 /* Check the parameters */
306 assert_param(IS_GPIO_ALL_INSTANCE(GPIOx));
307 assert_param(IS_GPIO_PIN(GPIO_Pin));
308
309 /* Configure the port pins */
310 while ((GPIO_Pin >> position) != 0x00u)
311 {
312 /* Get current io position */
313 iocurrent = (GPIO_Pin) & (1uL << position);
314
315 if (iocurrent != 0x00u)
316 {
317 /*------------------------- EXTI Mode Configuration --------------------*/
318 /* Clear the External Interrupt or Event for the current IO */
319
320 tmp = SYSCFG->EXTICR[position >> 2u];
321 tmp &= (0x07uL << (4U * (position & 0x03U)));
322 if (tmp == (GPIO_GET_INDEX(GPIOx) << (4U * (position & 0x03U))))
323 {
324 /* Clear EXTI line configuration */
325 #ifdef CORE_CM0PLUS
326 EXTI->C2IMR1 &= ~(iocurrent);
327 EXTI->C2EMR1 &= ~(iocurrent);
328 #else
329 EXTI->IMR1 &= ~(iocurrent);
330 EXTI->EMR1 &= ~(iocurrent);
331 #endif /* CORE_CM0PLUS */
332
333 /* Clear Rising Falling edge configuration */
334 EXTI->RTSR1 &= ~(iocurrent);
335 EXTI->FTSR1 &= ~(iocurrent);
336
337 /* Clear EXTICR configuration */
338 tmp = 0x07uL << (4u * (position & 0x03U));
339 SYSCFG->EXTICR[position >> 2u] &= ~tmp;
340 }
341
342 /*------------------------- GPIO Mode Configuration --------------------*/
343 /* Configure IO in Analog Mode */
344 GPIOx->MODER |= (GPIO_MODER_MODE0 << (position * 2U));
345
346 /* Configure the default Alternate Function in current IO */
347 GPIOx->AFR[position >> 3U] &= ~(0xFU << ((position & 0x07U) * 4U)) ;
348
349 /* Configure the default value for IO Speed */
350 GPIOx->OSPEEDR &= ~(GPIO_OSPEEDR_OSPEED0 << (position * 2U));
351
352 /* Configure the default value IO Output Type */
353 GPIOx->OTYPER &= ~(GPIO_OTYPER_OT0 << position) ;
354
355 /* Deactivate the Pull-up and Pull-down resistor for the current IO */
356 GPIOx->PUPDR &= ~(GPIO_PUPDR_PUPD0 << (position * 2U));
357 }
358
359 position++;
360 }
361 }
362
363 /**
364 * @}
365 */
366
367 /** @addtogroup GPIO_Exported_Functions_Group2
368 * @brief GPIO Read, Write, Toggle, Lock and EXTI management functions.
369 *
370 @verbatim
371 ===============================================================================
372 ##### IO operation functions #####
373 ===============================================================================
374
375 @endverbatim
376 * @{
377 */
378
379 /**
380 * @brief Read the specified input port pin.
381 * @param GPIOx where x can be (A..F) to select the GPIO peripheral for STM32WLxx family
382 * @param GPIO_Pin specifies the port bit to read.
383 * This parameter can be any combination of GPIO_PIN_x where x can be (0..15).
384 * @retval The input port pin value.
385 */
HAL_GPIO_ReadPin(GPIO_TypeDef * GPIOx,uint16_t GPIO_Pin)386 GPIO_PinState HAL_GPIO_ReadPin(GPIO_TypeDef *GPIOx, uint16_t GPIO_Pin)
387 {
388 GPIO_PinState bitstatus;
389
390 /* Check the parameters */
391 assert_param(IS_GPIO_PIN(GPIO_Pin));
392
393 if ((GPIOx->IDR & GPIO_Pin) != 0x00u)
394 {
395 bitstatus = GPIO_PIN_SET;
396 }
397 else
398 {
399 bitstatus = GPIO_PIN_RESET;
400 }
401 return bitstatus;
402 }
403
404 /**
405 * @brief Set or clear the selected data port bit.
406 * @note This function uses GPIOx_BSRR and GPIOx_BRR registers to allow atomic read/modify
407 * accesses. In this way, there is no risk of an IRQ occurring between
408 * the read and the modify access.
409 * @param GPIOx where x can be (A..F) to select the GPIO peripheral for STM32WLxx family
410 * @param GPIO_Pin specifies the port bit to be written.
411 * This parameter can be any combination of GPIO_PIN_x where x can be (0..15).
412 * @param PinState specifies the value to be written to the selected bit.
413 * This parameter can be one of the GPIO_PinState enum values:
414 * @arg GPIO_PIN_RESET: to clear the port pin
415 * @arg GPIO_PIN_SET: to set the port pin
416 * @retval None
417 */
HAL_GPIO_WritePin(GPIO_TypeDef * GPIOx,uint16_t GPIO_Pin,GPIO_PinState PinState)418 void HAL_GPIO_WritePin(GPIO_TypeDef *GPIOx, uint16_t GPIO_Pin, GPIO_PinState PinState)
419 {
420 /* Check the parameters */
421 assert_param(IS_GPIO_PIN(GPIO_Pin));
422 assert_param(IS_GPIO_PIN_ACTION(PinState));
423
424 if (PinState != GPIO_PIN_RESET)
425 {
426 GPIOx->BSRR = (uint32_t)GPIO_Pin;
427 }
428 else
429 {
430 GPIOx->BRR = (uint32_t)GPIO_Pin;
431 }
432 }
433
434 /**
435 * @brief Set and clear several pins of a dedicated port in same cycle.
436 * @note This function uses GPIOx_BSRR and GPIOx_BRR registers to allow atomic read/modify
437 * accesses.
438 * @param GPIOx where x can be (A..F) to select the GPIO peripheral for STM32WLxx family
439 * @param PinReset specifies the port bits to be reset
440 * This parameter can be any combination of GPIO_Pin_x where x can be (0..15) or zero.
441 * @param PinSet specifies the port bits to be set
442 * This parameter can be any combination of GPIO_Pin_x where x can be (0..15) or zero.
443 * @note Both PinReset and PinSet combinations shall not get any common bit, else
444 * assert would be triggered.
445 * @note At least one of the two parameters used to set or reset shall be different from zero.
446 * @retval None
447 */
HAL_GPIO_WriteMultipleStatePin(GPIO_TypeDef * GPIOx,uint16_t PinReset,uint16_t PinSet)448 void HAL_GPIO_WriteMultipleStatePin(GPIO_TypeDef *GPIOx, uint16_t PinReset, uint16_t PinSet)
449 {
450 uint32_t tmp;
451
452 /* Check the parameters */
453 /* Make sure at least one parameter is different from zero and that there is no common pin */
454 assert_param(IS_GPIO_PIN((uint32_t)PinReset | (uint32_t)PinSet));
455 assert_param(IS_GPIO_COMMON_PIN(PinReset, PinSet));
456
457 tmp = (((uint32_t)PinReset << 16) | PinSet);
458 GPIOx->BSRR = tmp;
459 }
460
461 /**
462 * @brief Toggle the specified GPIO pin.
463 * @param GPIOx where x can be (A..H) to select the GPIO peripheral for STM32WLxx family
464 * @param GPIO_Pin specifies the pin to be toggled.
465 * This parameter can be any combination of GPIO_Pin_x where x can be (0..15).
466 * @retval None
467 */
HAL_GPIO_TogglePin(GPIO_TypeDef * GPIOx,uint16_t GPIO_Pin)468 void HAL_GPIO_TogglePin(GPIO_TypeDef *GPIOx, uint16_t GPIO_Pin)
469 {
470 uint32_t odr;
471
472 /* Check the parameters */
473 assert_param(IS_GPIO_PIN(GPIO_Pin));
474
475 /* get current Output Data Register value */
476 odr = GPIOx->ODR;
477
478 /* Set selected pins that were at low level, and reset ones that were high */
479 GPIOx->BSRR = ((odr & GPIO_Pin) << GPIO_NUMBER) | (~odr & GPIO_Pin);
480 }
481
482 /**
483 * @brief Lock GPIO Pins configuration registers.
484 * @note The locked registers are GPIOx_MODER, GPIOx_OTYPER, GPIOx_OSPEEDR,
485 * GPIOx_PUPDR, GPIOx_AFRL and GPIOx_AFRH.
486 * @note The configuration of the locked GPIO pins can no longer be modified
487 * until the next reset.
488 * @param GPIOx where x can be (A..H) to select the GPIO peripheral for STM32WLxx family
489 * @param GPIO_Pin specifies the port bits to be locked.
490 * This parameter can be any combination of GPIO_Pin_x where x can be (0..15).
491 * @retval None
492 */
HAL_GPIO_LockPin(GPIO_TypeDef * GPIOx,uint16_t GPIO_Pin)493 HAL_StatusTypeDef HAL_GPIO_LockPin(GPIO_TypeDef *GPIOx, uint16_t GPIO_Pin)
494 {
495 __IO uint32_t tmp = GPIO_LCKR_LCKK;
496
497 /* Check the parameters */
498 assert_param(IS_GPIO_LOCK_INSTANCE(GPIOx));
499 assert_param(IS_GPIO_PIN(GPIO_Pin));
500
501 /* Apply lock key write sequence */
502 tmp |= GPIO_Pin;
503 /* Set LCKx bit(s): LCKK='1' + LCK[15-0] */
504 GPIOx->LCKR = tmp;
505 /* Reset LCKx bit(s): LCKK='0' + LCK[15-0] */
506 GPIOx->LCKR = GPIO_Pin;
507 /* Set LCKx bit(s): LCKK='1' + LCK[15-0] */
508 GPIOx->LCKR = tmp;
509 /* Read LCKK register. This read is mandatory to complete key lock sequence */
510 tmp = GPIOx->LCKR;
511
512 /* read again in order to confirm lock is active */
513 if ((GPIOx->LCKR & GPIO_LCKR_LCKK) != 0x00u)
514 {
515 return HAL_OK;
516 }
517 else
518 {
519 return HAL_ERROR;
520 }
521 }
522
523 /**
524 * @brief Handle EXTI interrupt request.
525 * @param GPIO_Pin Specifies the port pin connected to corresponding EXTI line.
526 * @retval None
527 */
HAL_GPIO_EXTI_IRQHandler(uint16_t GPIO_Pin)528 void HAL_GPIO_EXTI_IRQHandler(uint16_t GPIO_Pin)
529 {
530 /* EXTI line interrupt detected */
531 if (__HAL_GPIO_EXTI_GET_IT(GPIO_Pin) != 0x00u)
532 {
533 __HAL_GPIO_EXTI_CLEAR_IT(GPIO_Pin);
534 HAL_GPIO_EXTI_Callback(GPIO_Pin);
535 }
536 }
537
538 /**
539 * @brief EXTI line detection callback.
540 * @param GPIO_Pin Specifies the port pin connected to corresponding EXTI line.
541 * @retval None
542 */
HAL_GPIO_EXTI_Callback(uint16_t GPIO_Pin)543 __weak void HAL_GPIO_EXTI_Callback(uint16_t GPIO_Pin)
544 {
545 /* Prevent unused argument(s) compilation warning */
546 UNUSED(GPIO_Pin);
547
548 /* NOTE: This function should not be modified, when the callback is needed,
549 the HAL_GPIO_EXTI_Callback could be implemented in the user file
550 */
551 }
552
553 /**
554 * @}
555 */
556
557
558 /**
559 * @}
560 */
561
562 #endif /* HAL_GPIO_MODULE_ENABLED */
563 /**
564 * @}
565 */
566
567 /**
568 * @}
569 */
570