mirror of
https://github.com/firewalkwithm3/Sensor-Watch.git
synced 2024-11-22 19:20:30 +08:00
225 lines
9.6 KiB
C
Executable file
225 lines
9.6 KiB
C
Executable file
/**
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* \file
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*
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* \brief gcc starttup file for SAML22
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*
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* Copyright (c) 2018 Microchip Technology Inc.
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*
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* \asf_license_start
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*
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* \page License
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*
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* SPDX-License-Identifier: Apache-2.0
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*
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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 Licence at
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*
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* http://www.apache.org/licenses/LICENSE-2.0
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*
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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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*
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* \asf_license_stop
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*
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*/
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#include "saml22.h"
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/* Initialize segments */
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extern uint32_t _sfixed;
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extern uint32_t _efixed;
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extern uint32_t _etext;
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extern uint32_t _srelocate;
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extern uint32_t _erelocate;
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extern uint32_t _szero;
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extern uint32_t _ezero;
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extern uint32_t _sstack;
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extern uint32_t _estack;
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/** \cond DOXYGEN_SHOULD_SKIP_THIS */
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int main(void);
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/** \endcond */
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void __libc_init_array(void);
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/* Default empty handler */
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void Dummy_Handler(void);
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/* Cortex-M0+ core handlers */
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void NonMaskableInt_Handler ( void ) __attribute__ ((weak, alias("Dummy_Handler")));
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void HardFault_Handler ( void ) __attribute__ ((weak, alias("Dummy_Handler")));
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void SVCall_Handler ( void ) __attribute__ ((weak, alias("Dummy_Handler")));
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void PendSV_Handler ( void ) __attribute__ ((weak, alias("Dummy_Handler")));
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void SysTick_Handler ( void ) __attribute__ ((weak, alias("Dummy_Handler")));
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/* Peripherals handlers */
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void SYSTEM_Handler ( void ) __attribute__ ((weak, alias("Dummy_Handler"))); /* MCLK, OSC32KCTRL, OSCCTRL, PAC, PM, SUPC, TAL */
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void WDT_Handler ( void ) __attribute__ ((weak, alias("Dummy_Handler")));
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void RTC_Handler ( void ) __attribute__ ((weak, alias("Dummy_Handler")));
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void EIC_Handler ( void ) __attribute__ ((weak, alias("Dummy_Handler")));
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void FREQM_Handler ( void ) __attribute__ ((weak, alias("Dummy_Handler")));
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#ifdef ID_USB
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void USB_Handler ( void ) __attribute__ ((weak, alias("Dummy_Handler")));
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#endif
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void NVMCTRL_Handler ( void ) __attribute__ ((weak, alias("Dummy_Handler")));
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void DMAC_Handler ( void ) __attribute__ ((weak, alias("Dummy_Handler")));
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void EVSYS_Handler ( void ) __attribute__ ((weak, alias("Dummy_Handler")));
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void SERCOM0_Handler ( void ) __attribute__ ((weak, alias("Dummy_Handler")));
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void SERCOM1_Handler ( void ) __attribute__ ((weak, alias("Dummy_Handler")));
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void SERCOM2_Handler ( void ) __attribute__ ((weak, alias("Dummy_Handler")));
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#ifdef ID_SERCOM3
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void SERCOM3_Handler ( void ) __attribute__ ((weak, alias("Dummy_Handler")));
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#endif
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#ifdef ID_SERCOM4
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void SERCOM4_Handler ( void ) __attribute__ ((weak, alias("Dummy_Handler")));
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#endif
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#ifdef ID_SERCOM5
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void SERCOM5_Handler ( void ) __attribute__ ((weak, alias("Dummy_Handler")));
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#endif
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void TCC0_Handler ( void ) __attribute__ ((weak, alias("Dummy_Handler")));
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void TC0_Handler ( void ) __attribute__ ((weak, alias("Dummy_Handler")));
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void TC1_Handler ( void ) __attribute__ ((weak, alias("Dummy_Handler")));
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void TC2_Handler ( void ) __attribute__ ((weak, alias("Dummy_Handler")));
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void TC3_Handler ( void ) __attribute__ ((weak, alias("Dummy_Handler")));
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void ADC_Handler ( void ) __attribute__ ((weak, alias("Dummy_Handler")));
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void AC_Handler ( void ) __attribute__ ((weak, alias("Dummy_Handler")));
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#ifdef ID_PTC
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void PTC_Handler ( void ) __attribute__ ((weak, alias("Dummy_Handler")));
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#endif
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void SLCD_Handler ( void ) __attribute__ ((weak, alias("Dummy_Handler")));
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#ifdef ID_AES
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void AES_Handler ( void ) __attribute__ ((weak, alias("Dummy_Handler")));
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#endif
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#ifdef ID_TRNG
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void TRNG_Handler ( void ) __attribute__ ((weak, alias("Dummy_Handler")));
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#endif
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/* Exception Table */
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__attribute__ ((section(".vectors")))
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const DeviceVectors exception_table = {
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/* Configure Initial Stack Pointer, using linker-generated symbols */
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.pvStack = (void*) (&_estack),
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.pfnReset_Handler = (void*) Reset_Handler,
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.pfnNonMaskableInt_Handler = (void*) NonMaskableInt_Handler,
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.pfnHardFault_Handler = (void*) HardFault_Handler,
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.pvReservedM12 = (void*) (0UL), /* Reserved */
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.pvReservedM11 = (void*) (0UL), /* Reserved */
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.pvReservedM10 = (void*) (0UL), /* Reserved */
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.pvReservedM9 = (void*) (0UL), /* Reserved */
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.pvReservedM8 = (void*) (0UL), /* Reserved */
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.pvReservedM7 = (void*) (0UL), /* Reserved */
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.pvReservedM6 = (void*) (0UL), /* Reserved */
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.pfnSVCall_Handler = (void*) SVCall_Handler,
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.pvReservedM4 = (void*) (0UL), /* Reserved */
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.pvReservedM3 = (void*) (0UL), /* Reserved */
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.pfnPendSV_Handler = (void*) PendSV_Handler,
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.pfnSysTick_Handler = (void*) SysTick_Handler,
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/* Configurable interrupts */
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.pfnSYSTEM_Handler = (void*) SYSTEM_Handler, /* 0 Main Clock, 32k Oscillators Control, Oscillators Control, Peripheral Access Controller, Power Manager, Supply Controller, Trigger Allocator */
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.pfnWDT_Handler = (void*) WDT_Handler, /* 1 Watchdog Timer */
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.pfnRTC_Handler = (void*) RTC_Handler, /* 2 Real-Time Counter */
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.pfnEIC_Handler = (void*) EIC_Handler, /* 3 External Interrupt Controller */
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.pfnFREQM_Handler = (void*) FREQM_Handler, /* 4 Frequency Meter */
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#ifdef ID_USB
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.pfnUSB_Handler = (void*) USB_Handler, /* 5 Universal Serial Bus */
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#else
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.pvReserved5 = (void*) (0UL), /* 5 Reserved */
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#endif
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.pfnNVMCTRL_Handler = (void*) NVMCTRL_Handler, /* 6 Non-Volatile Memory Controller */
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.pfnDMAC_Handler = (void*) DMAC_Handler, /* 7 Direct Memory Access Controller */
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.pfnEVSYS_Handler = (void*) EVSYS_Handler, /* 8 Event System Interface */
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.pfnSERCOM0_Handler = (void*) SERCOM0_Handler, /* 9 Serial Communication Interface 0 */
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.pfnSERCOM1_Handler = (void*) SERCOM1_Handler, /* 10 Serial Communication Interface 1 */
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.pfnSERCOM2_Handler = (void*) SERCOM2_Handler, /* 11 Serial Communication Interface 2 */
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#ifdef ID_SERCOM3
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.pfnSERCOM3_Handler = (void*) SERCOM3_Handler, /* 12 Serial Communication Interface 3 */
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#else
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.pvReserved12 = (void*) (0UL), /* 12 Reserved */
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#endif
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#ifdef ID_SERCOM4
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.pfnSERCOM4_Handler = (void*) SERCOM4_Handler, /* 13 Serial Communication Interface 4 */
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#else
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.pvReserved13 = (void*) (0UL), /* 13 Reserved */
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#endif
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#ifdef ID_SERCOM5
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.pfnSERCOM5_Handler = (void*) SERCOM5_Handler, /* 14 Serial Communication Interface 5 */
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#else
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.pvReserved14 = (void*) (0UL), /* 14 Reserved */
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#endif
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.pfnTCC0_Handler = (void*) TCC0_Handler, /* 15 Timer Counter Control */
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.pfnTC0_Handler = (void*) TC0_Handler, /* 16 Basic Timer Counter 0 */
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.pfnTC1_Handler = (void*) TC1_Handler, /* 17 Basic Timer Counter 1 */
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.pfnTC2_Handler = (void*) TC2_Handler, /* 18 Basic Timer Counter 2 */
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.pfnTC3_Handler = (void*) TC3_Handler, /* 19 Basic Timer Counter 3 */
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.pfnADC_Handler = (void*) ADC_Handler, /* 20 Analog Digital Converter */
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.pfnAC_Handler = (void*) AC_Handler, /* 21 Analog Comparators */
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#ifdef ID_PTC
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.pfnPTC_Handler = (void*) PTC_Handler, /* 22 Peripheral Touch Controller */
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#else
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.pvReserved22 = (void*) (0UL), /* 22 Reserved */
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#endif
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.pfnSLCD_Handler = (void*) SLCD_Handler, /* 23 Segment Liquid Crystal Display Controller */
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#ifdef ID_AES
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.pfnAES_Handler = (void*) AES_Handler, /* 24 Advanced Encryption Standard */
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#else
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.pvReserved24 = (void*) (0UL), /* 24 Reserved */
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#endif
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#ifdef ID_TRNG
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.pfnTRNG_Handler = (void*) TRNG_Handler /* 25 True Random Generator */
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#else
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.pvReserved25 = (void*) (0UL) /* 25 Reserved */
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#endif
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};
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/**
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* \brief This is the code that gets called on processor reset.
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* To initialize the device, and call the main() routine.
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*/
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void Reset_Handler(void)
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{
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uint32_t *pSrc, *pDest;
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/* Initialize the relocate segment */
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pSrc = &_etext;
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pDest = &_srelocate;
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if (pSrc != pDest) {
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for (; pDest < &_erelocate;) {
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*pDest++ = *pSrc++;
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}
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}
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/* Clear the zero segment */
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for (pDest = &_szero; pDest < &_ezero;) {
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*pDest++ = 0;
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}
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/* Set the vector table base address */
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pSrc = (uint32_t *) & _sfixed;
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SCB->VTOR = ((uint32_t) pSrc & SCB_VTOR_TBLOFF_Msk);
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/* Initialize the C library */
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__libc_init_array();
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/* Branch to main function */
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main();
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/* Infinite loop */
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while (1);
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}
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/**
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* \brief Default interrupt handler for unused IRQs.
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*/
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void Dummy_Handler(void)
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{
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NVIC_SystemReset();
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}
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