df71d3444d
seperate files from latest SDK (currently 14.2.0) from good old non- secure bootloader sdk 11
359 lines
12 KiB
C
359 lines
12 KiB
C
/**
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* Copyright (c) 2015 - 2017, Nordic Semiconductor ASA
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*
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* All rights reserved.
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*
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* Redistribution and use in source and binary forms, with or without modification,
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* are permitted provided that the following conditions are met:
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*
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* 1. Redistributions of source code must retain the above copyright notice, this
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* list of conditions and the following disclaimer.
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*
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* 2. Redistributions in binary form, except as embedded into a Nordic
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* Semiconductor ASA integrated circuit in a product or a software update for
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* such product, must reproduce the above copyright notice, this list of
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* conditions and the following disclaimer in the documentation and/or other
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* materials provided with the distribution.
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*
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* 3. Neither the name of Nordic Semiconductor ASA nor the names of its
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* contributors may be used to endorse or promote products derived from this
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* software without specific prior written permission.
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*
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* 4. This software, with or without modification, must only be used with a
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* Nordic Semiconductor ASA integrated circuit.
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*
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* 5. Any software provided in binary form under this license must not be reverse
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* engineered, decompiled, modified and/or disassembled.
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*
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* THIS SOFTWARE IS PROVIDED BY NORDIC SEMICONDUCTOR ASA "AS IS" AND ANY EXPRESS
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* OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
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* OF MERCHANTABILITY, NONINFRINGEMENT, AND FITNESS FOR A PARTICULAR PURPOSE ARE
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* DISCLAIMED. IN NO EVENT SHALL NORDIC SEMICONDUCTOR ASA OR CONTRIBUTORS BE
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* LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
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* CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE
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* GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
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* HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
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* LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT
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* OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
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*
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*/
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#ifndef NRF_DRV_COMMON_H__
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#define NRF_DRV_COMMON_H__
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#include <stdint.h>
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#include <stdbool.h>
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#include "nrf.h"
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#include "sdk_errors.h"
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#include "sdk_common.h"
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#include "nrf_assert.h"
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#ifdef __cplusplus
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extern "C" {
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#endif
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#ifdef NRF51
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#ifdef SOFTDEVICE_PRESENT
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#define INTERRUPT_PRIORITY_IS_VALID(pri) (((pri) == 1) || ((pri) == 3))
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#else
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#define INTERRUPT_PRIORITY_IS_VALID(pri) ((pri) < 4)
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#endif //SOFTDEVICE_PRESENT
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#else
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#ifdef SOFTDEVICE_PRESENT
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#define INTERRUPT_PRIORITY_IS_VALID(pri) ((((pri) > 1) && ((pri) < 4)) || \
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(((pri) > 4) && ((pri) < 8)))
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#else
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#define INTERRUPT_PRIORITY_IS_VALID(pri) ((pri) < 8)
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#endif //SOFTDEVICE_PRESENT
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#endif //NRF52
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#define INTERRUPT_PRIORITY_VALIDATION(pri) STATIC_ASSERT(INTERRUPT_PRIORITY_IS_VALID((pri)))
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#define INTERRUPT_PRIORITY_ASSERT(pri) ASSERT(INTERRUPT_PRIORITY_IS_VALID((pri)))
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/**
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* @defgroup nrf_drv_common Peripheral drivers common module
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* @{
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* @ingroup nrf_drivers
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*/
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/**
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* @brief Offset of event registers in every peripheral instance.
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*
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* This is the offset where event registers start in every peripheral.
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*/
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#define NRF_DRV_COMMON_EVREGS_OFFSET 0x100U
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/**
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* @brief The flag that is set when POWER_CLOCK ISR is implemented in common module
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*
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* This flag means that the function POWER_CLOCK_IRQHandler is implemented in
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* nrf_drv_common.c file. In the @c clock and @c power modules functions
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* nrf_drv_clock_onIRQ nrf_drv_power_onIRQ should be implemented
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* and they would be called from common implementation.
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*
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* None of the checking is done here.
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* The implementation functions in @c clock and @c power are required to handle
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* correctly the case when they are called without any event bit set.
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*/
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#define NRF_DRV_COMMON_POWER_CLOCK_ISR (NRF_MODULE_ENABLED(CLOCK) && NRF_MODULE_ENABLED(POWER))
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/**
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* @brief Driver state.
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*/
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typedef enum
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{
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NRF_DRV_STATE_UNINITIALIZED, /**< Uninitialized. */
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NRF_DRV_STATE_INITIALIZED, /**< Initialized but powered off. */
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NRF_DRV_STATE_POWERED_ON
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} nrf_drv_state_t;
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/**
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* @brief Driver power state selection.
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*/
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typedef enum
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{
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NRF_DRV_PWR_CTRL_ON, /**< Power on request. */
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NRF_DRV_PWR_CTRL_OFF /**< Power off request. */
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} nrf_drv_pwr_ctrl_t;
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/**
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* @brief IRQ handler type.
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*/
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typedef void (*nrf_drv_irq_handler_t)(void);
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#if NRF_MODULE_ENABLED(PERIPHERAL_RESOURCE_SHARING)
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/**
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* @brief Function for acquiring shared peripheral resources associated with
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* the specified peripheral.
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*
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* Certain resources and registers are shared among peripherals that have
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* the same ID (for example: SPI0, SPIM0, SPIS0, TWI0, TWIM0, and TWIS0).
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* Only one of them can be utilized at a given time. This function reserves
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* proper resources to be used by the specified peripheral.
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* If PERIPHERAL_RESOURCE_SHARING_ENABLED is set to a non-zero value, IRQ
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* handlers for peripherals that are sharing resources with others are
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* implemented by the nrf_drv_common module instead of individual drivers.
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* The drivers must then specify their interrupt handling routines and
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* register them by using this function.
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*
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* @param[in] p_per_base Requested peripheral base pointer.
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* @param[in] handler Interrupt handler to register. May be NULL
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* if interrupts are not used for the peripheral.
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*
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* @retval NRF_SUCCESS If resources were acquired successfully.
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* @retval NRF_ERROR_BUSY If resources were already acquired.
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* @retval NRF_ERROR_INVALID_PARAM If the specified peripheral is not enabled
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* or the peripheral does not share resources
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* with other peripherals.
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*/
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ret_code_t nrf_drv_common_per_res_acquire(void const * p_per_base,
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nrf_drv_irq_handler_t handler);
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/**
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* @brief Function for releasing shared resources reserved previously by
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* @ref nrf_drv_common_per_res_acquire() for the specified peripheral.
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*
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* @param[in] p_per_base Requested peripheral base pointer.
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*/
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void nrf_drv_common_per_res_release(void const * p_per_base);
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#endif // NRF_MODULE_ENABLED(PERIPHERAL_RESOURCE_SHARING)
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/**
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* @brief Function sets priority and enables NVIC interrupt
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*
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* @note Function checks if correct priority is used when softdevice is present
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*
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* @param[in] IRQn Interrupt id
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* @param[in] priority Interrupt priority
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*/
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void nrf_drv_common_irq_enable(IRQn_Type IRQn, uint8_t priority);
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#if NRF_MODULE_ENABLED(POWER)
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/**
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* @brief Disable power IRQ
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*
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* Power and clock peripheral uses the same IRQ.
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* This function disables POWER_CLOCK IRQ only if CLOCK driver
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* is uninitialized.
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*
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* @sa nrf_drv_common_power_clock_irq_init
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*/
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void nrf_drv_common_power_irq_disable(void);
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#endif
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#if NRF_MODULE_ENABLED(CLOCK)
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/**
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* @brief Disable clock IRQ
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*
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* Power and clock peripheral uses the same IRQ.
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* This function disables POWER_CLOCK IRQ only if POWER driver
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* is uninitialized.
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*
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* @sa nrf_drv_common_power_clock_irq_init
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*/
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void nrf_drv_common_clock_irq_disable(void);
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#endif
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/**
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* @brief Check if interrupt is enabled
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*
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* Function that checks if selected interrupt is enabled.
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*
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* @param[in] IRQn Interrupt id
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*
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* @retval true Selected IRQ is enabled.
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* @retval false Selected IRQ is disabled.
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*/
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__STATIC_INLINE bool nrf_drv_common_irq_enable_check(IRQn_Type IRQn);
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/**
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* @brief Function disables NVIC interrupt
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*
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* @param[in] IRQn Interrupt id
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*/
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__STATIC_INLINE void nrf_drv_common_irq_disable(IRQn_Type IRQn);
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/**
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* @brief Convert bit position to event code
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*
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* Function for converting the bit position in INTEN register to event code
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* that is equivalent to the offset of the event register from the beginning
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* of peripheral instance.
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*
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* For example the result of this function can be casted directly to
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* the types like @ref nrf_twis_event_t or @ref nrf_rng_event_t
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*
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* @param bit Bit position in INTEN register
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* @return Event code to be casted to the right enum type or to be used in functions like
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* @ref nrf_rng_event_get
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*
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* @sa nrf_drv_event_to_bitpos
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*/
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__STATIC_INLINE uint32_t nrf_drv_bitpos_to_event(uint32_t bit);
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/**
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* @brief Convert event code to bit position
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*
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* This function can be used to get bit position in INTEN register from event code.
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*
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* @param event Event code that may be casted from enum values from types like
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* @ref nrf_twis_event_t or @ref nrf_rng_event_t
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* @return Bit position in INTEN register that corresponds to the given code.
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*
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* @sa nrf_drv_bitpos_to_event
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*/
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__STATIC_INLINE uint32_t nrf_drv_event_to_bitpos(uint32_t event);
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/**
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* @brief Get interrupt number connected with given instance
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*
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* Function returns interrupt number for a given instance of any peripheral.
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* @param[in] pinst Pointer to peripheral registry
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* @return Interrupt number
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*/
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__STATIC_INLINE IRQn_Type nrf_drv_get_IRQn(void const * const pinst);
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#if NRF_MODULE_ENABLED(CLOCK) || NRF_MODULE_ENABLED(POWER)
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/**
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* @brief Enable and setup power clock IRQ
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*
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* This function would be called from @ref nrf_drv_clock and @ref nrf_drv_power
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* to enable related interrupt.
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* This function avoids multiple interrupt configuration.
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*
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* @note
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* This function is aviable only if @ref nrf_drv_clock or @ref nrf_drv_power
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* module is enabled.
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*
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* @note
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* If both @ref nrf_drv_clock and @ref nrf_drv_power modules are enabled,
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* during the compilation the check is made that
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* @ref CLOCK_CONFIG_IRQ_PRIORITY equals @ref POWER_CONFIG_IRQ_PRIORITY.
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*
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* @sa nrf_drv_common_power_irq_disable
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* @sa nrf_drv_common_clock_irq_disable
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*/
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__STATIC_INLINE void nrf_drv_common_power_clock_irq_init(void);
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#endif
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/**
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* @brief Check if given object is in RAM
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*
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* Function for analyzing if given location is placed in RAM.
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* This function is used to determine if we have address that can be supported by EasyDMA.
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* @param[in] ptr Pointer to the object
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* @retval true Object is located in RAM
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* @retval false Object is not located in RAM
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*/
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__STATIC_INLINE bool nrf_drv_is_in_RAM(void const * const ptr);
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#ifndef SUPPRESS_INLINE_IMPLEMENTATION
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__STATIC_INLINE bool nrf_drv_common_irq_enable_check(IRQn_Type IRQn)
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{
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return 0 != (NVIC->ISER[(((uint32_t)(int32_t)IRQn) >> 5UL)] &
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(uint32_t)(1UL << (((uint32_t)(int32_t)IRQn) & 0x1FUL)));
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}
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__STATIC_INLINE void nrf_drv_common_irq_disable(IRQn_Type IRQn)
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{
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NVIC_DisableIRQ(IRQn);
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}
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__STATIC_INLINE uint32_t nrf_drv_bitpos_to_event(uint32_t bit)
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{
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return NRF_DRV_COMMON_EVREGS_OFFSET + bit * sizeof(uint32_t);
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}
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__STATIC_INLINE uint32_t nrf_drv_event_to_bitpos(uint32_t event)
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{
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return (event - NRF_DRV_COMMON_EVREGS_OFFSET) / sizeof(uint32_t);
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}
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__STATIC_INLINE IRQn_Type nrf_drv_get_IRQn(void const * const pinst)
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{
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uint8_t ret = (uint8_t)((uint32_t)pinst>>12U);
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return (IRQn_Type) ret;
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}
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#if NRF_MODULE_ENABLED(CLOCK) || NRF_MODULE_ENABLED(POWER)
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__STATIC_INLINE void nrf_drv_common_power_clock_irq_init(void)
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{
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if (!nrf_drv_common_irq_enable_check(POWER_CLOCK_IRQn))
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{
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nrf_drv_common_irq_enable(
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POWER_CLOCK_IRQn,
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#if NRF_DRV_COMMON_POWER_CLOCK_ISR
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#if CLOCK_CONFIG_IRQ_PRIORITY != POWER_CONFIG_IRQ_PRIORITY
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#error CLOCK_CONFIG_IRQ_PRIORITY and POWER_CONFIG_IRQ_PRIORITY have to be the same.
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#endif
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CLOCK_CONFIG_IRQ_PRIORITY
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#elif NRF_MODULE_ENABLED(CLOCK)
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CLOCK_CONFIG_IRQ_PRIORITY
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#elif NRF_MODULE_ENABLED(POWER)
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POWER_CONFIG_IRQ_PRIORITY
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#endif
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);
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}
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}
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#endif
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__STATIC_INLINE bool nrf_drv_is_in_RAM(void const * const ptr)
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{
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return ((((uintptr_t)ptr) & 0xE0000000u) == 0x20000000u);
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}
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#endif // SUPPRESS_INLINE_IMPLEMENTATION
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#ifdef __cplusplus
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}
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#endif
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#endif // NRF_DRV_COMMON_H__
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/** @} */
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