257 lines
		
	
	
		
			9.8 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
		
		
			
		
	
	
			257 lines
		
	
	
		
			9.8 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
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								/*
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								Copyright (c) 2009-2017 ARM Limited. All rights reserved.
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								    SPDX-License-Identifier: Apache-2.0
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								Licensed under the Apache License, Version 2.0 (the License); you may
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								not use this file except in compliance with the License.
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								You may obtain a copy of the License at
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								    www.apache.org/licenses/LICENSE-2.0
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								Unless required by applicable law or agreed to in writing, software
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								distributed under the License is distributed on an AS IS BASIS, WITHOUT
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								WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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								See the License for the specific language governing permissions and
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								limitations under the License.
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								NOTICE: This file has been modified by Nordic Semiconductor ASA.
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								*/
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								/* NOTE: Template files (including this one) are application specific and therefore expected to
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								   be copied into the application project folder prior to its use! */
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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 "system_nrf52840.h"
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								/*lint ++flb "Enter library region" */
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								#define __SYSTEM_CLOCK_64M      (64000000UL)
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								static bool errata_36(void);
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								static bool errata_66(void);
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								static bool errata_98(void);
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								static bool errata_103(void);
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								static bool errata_115(void);
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								static bool errata_120(void);
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								static bool errata_136(void);
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								#if defined ( __CC_ARM )
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								    uint32_t SystemCoreClock __attribute__((used)) = __SYSTEM_CLOCK_64M;
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								#elif defined ( __ICCARM__ )
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								    __root uint32_t SystemCoreClock = __SYSTEM_CLOCK_64M;
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								#elif defined ( __GNUC__ )
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								    uint32_t SystemCoreClock __attribute__((used)) = __SYSTEM_CLOCK_64M;
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								#endif
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								void SystemCoreClockUpdate(void)
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								{
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								    SystemCoreClock = __SYSTEM_CLOCK_64M;
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								}
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								void SystemInit(void)
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								{
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								    /* Enable SWO trace functionality. If ENABLE_SWO is not defined, SWO pin will be used as GPIO (see Product
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								       Specification to see which one). */
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								    #if defined (ENABLE_SWO)
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								        CoreDebug->DEMCR |= CoreDebug_DEMCR_TRCENA_Msk;
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								        NRF_CLOCK->TRACECONFIG |= CLOCK_TRACECONFIG_TRACEMUX_Serial << CLOCK_TRACECONFIG_TRACEMUX_Pos;
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								        NRF_P1->PIN_CNF[0] = (GPIO_PIN_CNF_DRIVE_H0H1 << GPIO_PIN_CNF_DRIVE_Pos) | (GPIO_PIN_CNF_INPUT_Connect << GPIO_PIN_CNF_INPUT_Pos) | (GPIO_PIN_CNF_DIR_Output << GPIO_PIN_CNF_DIR_Pos);
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								    #endif
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								    /* Enable Trace functionality. If ENABLE_TRACE is not defined, TRACE pins will be used as GPIOs (see Product
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								       Specification to see which ones). */
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								    #if defined (ENABLE_TRACE)
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								        CoreDebug->DEMCR |= CoreDebug_DEMCR_TRCENA_Msk;
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								        NRF_CLOCK->TRACECONFIG |= CLOCK_TRACECONFIG_TRACEMUX_Parallel << CLOCK_TRACECONFIG_TRACEMUX_Pos;
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								        NRF_P0->PIN_CNF[7]  = (GPIO_PIN_CNF_DRIVE_H0H1 << GPIO_PIN_CNF_DRIVE_Pos) | (GPIO_PIN_CNF_INPUT_Connect << GPIO_PIN_CNF_INPUT_Pos) | (GPIO_PIN_CNF_DIR_Output << GPIO_PIN_CNF_DIR_Pos);
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								        NRF_P1->PIN_CNF[0]  = (GPIO_PIN_CNF_DRIVE_H0H1 << GPIO_PIN_CNF_DRIVE_Pos) | (GPIO_PIN_CNF_INPUT_Connect << GPIO_PIN_CNF_INPUT_Pos) | (GPIO_PIN_CNF_DIR_Output << GPIO_PIN_CNF_DIR_Pos);
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								        NRF_P0->PIN_CNF[12] = (GPIO_PIN_CNF_DRIVE_H0H1 << GPIO_PIN_CNF_DRIVE_Pos) | (GPIO_PIN_CNF_INPUT_Connect << GPIO_PIN_CNF_INPUT_Pos) | (GPIO_PIN_CNF_DIR_Output << GPIO_PIN_CNF_DIR_Pos);
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								        NRF_P0->PIN_CNF[11] = (GPIO_PIN_CNF_DRIVE_H0H1 << GPIO_PIN_CNF_DRIVE_Pos) | (GPIO_PIN_CNF_INPUT_Connect << GPIO_PIN_CNF_INPUT_Pos) | (GPIO_PIN_CNF_DIR_Output << GPIO_PIN_CNF_DIR_Pos);
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								        NRF_P1->PIN_CNF[9]  = (GPIO_PIN_CNF_DRIVE_H0H1 << GPIO_PIN_CNF_DRIVE_Pos) | (GPIO_PIN_CNF_INPUT_Connect << GPIO_PIN_CNF_INPUT_Pos) | (GPIO_PIN_CNF_DIR_Output << GPIO_PIN_CNF_DIR_Pos);
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								    #endif
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								    /* Workaround for Errata 36 "CLOCK: Some registers are not reset when expected" found at the Errata document
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								       for your device located at https://infocenter.nordicsemi.com/  */
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								    if (errata_36()){
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								        NRF_CLOCK->EVENTS_DONE = 0;
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								        NRF_CLOCK->EVENTS_CTTO = 0;
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								        NRF_CLOCK->CTIV = 0;
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								    }
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								    /* Workaround for Errata 66 "TEMP: Linearity specification not met with default settings" found at the Errata document
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								       for your device located at https://infocenter.nordicsemi.com/  */
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								    if (errata_66()){
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								        NRF_TEMP->A0 = NRF_FICR->TEMP.A0;
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								        NRF_TEMP->A1 = NRF_FICR->TEMP.A1;
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								        NRF_TEMP->A2 = NRF_FICR->TEMP.A2;
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								        NRF_TEMP->A3 = NRF_FICR->TEMP.A3;
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								        NRF_TEMP->A4 = NRF_FICR->TEMP.A4;
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								        NRF_TEMP->A5 = NRF_FICR->TEMP.A5;
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								        NRF_TEMP->B0 = NRF_FICR->TEMP.B0;
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								        NRF_TEMP->B1 = NRF_FICR->TEMP.B1;
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								        NRF_TEMP->B2 = NRF_FICR->TEMP.B2;
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								        NRF_TEMP->B3 = NRF_FICR->TEMP.B3;
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								        NRF_TEMP->B4 = NRF_FICR->TEMP.B4;
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								        NRF_TEMP->B5 = NRF_FICR->TEMP.B5;
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								        NRF_TEMP->T0 = NRF_FICR->TEMP.T0;
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								        NRF_TEMP->T1 = NRF_FICR->TEMP.T1;
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								        NRF_TEMP->T2 = NRF_FICR->TEMP.T2;
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								        NRF_TEMP->T3 = NRF_FICR->TEMP.T3;
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								        NRF_TEMP->T4 = NRF_FICR->TEMP.T4;
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								    }
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								    /* Workaround for Errata 98 "NFCT: Not able to communicate with the peer" found at the Errata document
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								       for your device located at https://infocenter.nordicsemi.com/  */
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								    if (errata_98()){
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								        *(volatile uint32_t *)0x4000568Cul = 0x00038148ul;
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								    }
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								    /* Workaround for Errata 103 "CCM: Wrong reset value of CCM MAXPACKETSIZE" found at the Errata document
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								       for your device located at https://infocenter.nordicsemi.com/  */
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								    if (errata_103()){
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								        NRF_CCM->MAXPACKETSIZE = 0xFBul;
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								    }
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								    /* Workaround for Errata 115 "RAM: RAM content cannot be trusted upon waking up from System ON Idle or System OFF mode" found at the Errata document
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								       for your device located at https://infocenter.nordicsemi.com/  */
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								    if (errata_115()){
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								        *(volatile uint32_t *)0x40000EE4 = (*(volatile uint32_t *)0x40000EE4 & 0xFFFFFFF0) | (*(uint32_t *)0x10000258 & 0x0000000F);
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								    }
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								    /* Workaround for Errata 120 "QSPI: Data read or written is corrupted" found at the Errata document
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								       for your device located at https://infocenter.nordicsemi.com/  */
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								    if (errata_120()){
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								        *(volatile uint32_t *)0x40029640ul = 0x200ul;
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								    }
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								    /* Workaround for Errata 136 "System: Bits in RESETREAS are set when they should not be" found at the Errata document
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								       for your device located at https://infocenter.nordicsemi.com/  */
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								    if (errata_136()){
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								        if (NRF_POWER->RESETREAS & POWER_RESETREAS_RESETPIN_Msk){
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								            NRF_POWER->RESETREAS =  ~POWER_RESETREAS_RESETPIN_Msk;
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								        }
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								    }
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								    /* Enable the FPU if the compiler used floating point unit instructions. __FPU_USED is a MACRO defined by the
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								     * compiler. Since the FPU consumes energy, remember to disable FPU use in the compiler if floating point unit
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								     * operations are not used in your code. */
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								    #if (__FPU_USED == 1)
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								        SCB->CPACR |= (3UL << 20) | (3UL << 22);
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								        __DSB();
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								        __ISB();
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								    #endif
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								    /* Configure NFCT pins as GPIOs if NFCT is not to be used in your code. If CONFIG_NFCT_PINS_AS_GPIOS is not defined,
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								       two GPIOs (see Product Specification to see which ones) will be reserved for NFC and will not be available as
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								       normal GPIOs. */
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								    #if defined (CONFIG_NFCT_PINS_AS_GPIOS)
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								        if ((NRF_UICR->NFCPINS & UICR_NFCPINS_PROTECT_Msk) == (UICR_NFCPINS_PROTECT_NFC << UICR_NFCPINS_PROTECT_Pos)){
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								            NRF_NVMC->CONFIG = NVMC_CONFIG_WEN_Wen << NVMC_CONFIG_WEN_Pos;
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								            while (NRF_NVMC->READY == NVMC_READY_READY_Busy){}
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								            NRF_UICR->NFCPINS &= ~UICR_NFCPINS_PROTECT_Msk;
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								            while (NRF_NVMC->READY == NVMC_READY_READY_Busy){}
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								            NRF_NVMC->CONFIG = NVMC_CONFIG_WEN_Ren << NVMC_CONFIG_WEN_Pos;
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								            while (NRF_NVMC->READY == NVMC_READY_READY_Busy){}
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								            NVIC_SystemReset();
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								        }
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								    #endif
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								    /* Configure GPIO pads as pPin Reset pin if Pin Reset capabilities desired. If CONFIG_GPIO_AS_PINRESET is not
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								      defined, pin reset will not be available. One GPIO (see Product Specification to see which one) will then be
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								      reserved for PinReset and not available as normal GPIO. */
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								    #if defined (CONFIG_GPIO_AS_PINRESET)
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								        if (((NRF_UICR->PSELRESET[0] & UICR_PSELRESET_CONNECT_Msk) != (UICR_PSELRESET_CONNECT_Connected << UICR_PSELRESET_CONNECT_Pos)) ||
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								            ((NRF_UICR->PSELRESET[1] & UICR_PSELRESET_CONNECT_Msk) != (UICR_PSELRESET_CONNECT_Connected << UICR_PSELRESET_CONNECT_Pos))){
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								            NRF_NVMC->CONFIG = NVMC_CONFIG_WEN_Wen << NVMC_CONFIG_WEN_Pos;
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								            while (NRF_NVMC->READY == NVMC_READY_READY_Busy){}
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								            NRF_UICR->PSELRESET[0] = 18;
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								            while (NRF_NVMC->READY == NVMC_READY_READY_Busy){}
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								            NRF_UICR->PSELRESET[1] = 18;
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								            while (NRF_NVMC->READY == NVMC_READY_READY_Busy){}
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								            NRF_NVMC->CONFIG = NVMC_CONFIG_WEN_Ren << NVMC_CONFIG_WEN_Pos;
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								            while (NRF_NVMC->READY == NVMC_READY_READY_Busy){}
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								            NVIC_SystemReset();
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								        }
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								    #endif
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								    SystemCoreClockUpdate();
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								}
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								static bool errata_36(void)
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								{
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								    if ((*(uint32_t *)0x10000130ul == 0x8ul) && (*(uint32_t *)0x10000134ul == 0x0ul)){
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								        return true;
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								    }
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								    return false;
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								}
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								static bool errata_66(void)
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								{
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								    if ((*(uint32_t *)0x10000130ul == 0x8ul) && (*(uint32_t *)0x10000134ul == 0x0ul)){
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								        return true;
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								    }
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								    return false;
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								}
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								static bool errata_98(void)
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								{
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								    if ((*(uint32_t *)0x10000130ul == 0x8ul) && (*(uint32_t *)0x10000134ul == 0x0ul)){
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								        return true;
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								    }
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								    return false;
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								}
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								static bool errata_103(void)
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								{
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| 
								 | 
							
								    if ((*(uint32_t *)0x10000130ul == 0x8ul) && (*(uint32_t *)0x10000134ul == 0x0ul)){
							 | 
						||
| 
								 | 
							
								        return true;
							 | 
						||
| 
								 | 
							
								    }
							 | 
						||
| 
								 | 
							
								    
							 | 
						||
| 
								 | 
							
								    return false;
							 | 
						||
| 
								 | 
							
								}
							 | 
						||
| 
								 | 
							
								
							 | 
						||
| 
								 | 
							
								
							 | 
						||
| 
								 | 
							
								static bool errata_115(void)
							 | 
						||
| 
								 | 
							
								{
							 | 
						||
| 
								 | 
							
								    if ((*(uint32_t *)0x10000130ul == 0x8ul) && (*(uint32_t *)0x10000134ul == 0x0ul)){
							 | 
						||
| 
								 | 
							
								        return true;
							 | 
						||
| 
								 | 
							
								    }
							 | 
						||
| 
								 | 
							
								    
							 | 
						||
| 
								 | 
							
								    return false;
							 | 
						||
| 
								 | 
							
								}
							 | 
						||
| 
								 | 
							
								
							 | 
						||
| 
								 | 
							
								
							 | 
						||
| 
								 | 
							
								static bool errata_120(void)
							 | 
						||
| 
								 | 
							
								{
							 | 
						||
| 
								 | 
							
								    if ((*(uint32_t *)0x10000130ul == 0x8ul) && (*(uint32_t *)0x10000134ul == 0x0ul)){
							 | 
						||
| 
								 | 
							
								        return true;
							 | 
						||
| 
								 | 
							
								    }
							 | 
						||
| 
								 | 
							
								    
							 | 
						||
| 
								 | 
							
								    return false;
							 | 
						||
| 
								 | 
							
								}
							 | 
						||
| 
								 | 
							
								
							 | 
						||
| 
								 | 
							
								
							 | 
						||
| 
								 | 
							
								static bool errata_136(void)
							 | 
						||
| 
								 | 
							
								{
							 | 
						||
| 
								 | 
							
								    if ((*(uint32_t *)0x10000130ul == 0x8ul) && (*(uint32_t *)0x10000134ul == 0x0ul)){
							 | 
						||
| 
								 | 
							
								        return true;
							 | 
						||
| 
								 | 
							
								    }
							 | 
						||
| 
								 | 
							
								    
							 | 
						||
| 
								 | 
							
								    return false;
							 | 
						||
| 
								 | 
							
								}
							 | 
						||
| 
								 | 
							
								
							 | 
						||
| 
								 | 
							
								/*lint --flb "Leave library region" */
							 |