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The DFU uses the UART peripheral (with IRQ/ISR) for the debug output console. Before starting the main application we should make sure this configuration is reset to avoid interference (particularly the IRQ/ISR). This is not too important though since the main application reconfigures the UART for console output. Other peripheral could also be disabled (e.g. all other PIO used by DFU), but most of them also get configured by the main application. Change-Id: I8234d1b85938ad6393094c08183f613ad09ee01b
222 lines
8.0 KiB
C
222 lines
8.0 KiB
C
/* ----------------------------------------------------------------------------
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* ATMEL Microcontroller Software Support
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* ----------------------------------------------------------------------------
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* Copyright (c) 2010, Atmel Corporation
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* Copyright (C) 2017, Harald Welte <laforge@gnumonks.org>
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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
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* modification, are permitted provided that the following conditions are met:
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*
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* - Redistributions of source code must retain the above copyright notice,
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* this list of conditions and the disclaimer below.
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*
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* Atmel's name may not be used to endorse or promote products derived from
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* this software without specific prior written permission.
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*
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* DISCLAIMER: THIS SOFTWARE IS PROVIDED BY ATMEL "AS IS" AND ANY EXPRESS OR
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* IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF
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* MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NON-INFRINGEMENT ARE
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* DISCLAIMED. IN NO EVENT SHALL ATMEL BE LIABLE FOR ANY DIRECT, INDIRECT,
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* INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
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* LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA,
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* OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF
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* LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING
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* NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE,
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* EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
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* ----------------------------------------------------------------------------
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*/
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/*----------------------------------------------------------------------------
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* Headers
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*----------------------------------------------------------------------------*/
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#include "board.h"
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#include "board_lowlevel.h"
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/*----------------------------------------------------------------------------
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* Exported variables
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*----------------------------------------------------------------------------*/
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/* Stack Configuration */
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#define STACK_SIZE 0x900 /** Stack size (in DWords) */
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__attribute__ ((aligned(8),section(".stack")))
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uint32_t pdwStack[STACK_SIZE] ;
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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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/*----------------------------------------------------------------------------
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* ProtoTypes
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*----------------------------------------------------------------------------*/
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/** \cond DOXYGEN_SHOULD_SKIP_THIS */
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extern int main( void ) ;
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/** \endcond */
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void ResetException( void ) ;
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/*------------------------------------------------------------------------------
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* Exception Table
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*------------------------------------------------------------------------------*/
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__attribute__((section(".vectors")))
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IntFunc exception_table[] = {
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/* Configure Initial Stack Pointer, using linker-generated symbols */
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(IntFunc)(&pdwStack[STACK_SIZE-1]),
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ResetException,
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NMI_Handler,
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HardFault_Handler,
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MemManage_Handler,
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BusFault_Handler,
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UsageFault_Handler,
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0, 0, 0, 0, /* Reserved */
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SVC_Handler,
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DebugMon_Handler,
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0, /* Reserved */
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PendSV_Handler,
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SysTick_Handler,
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/* Configurable interrupts */
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SUPC_IrqHandler, /* 0 Supply Controller */
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RSTC_IrqHandler, /* 1 Reset Controller */
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RTC_IrqHandler, /* 2 Real Time Clock */
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RTT_IrqHandler, /* 3 Real Time Timer */
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WDT_IrqHandler, /* 4 Watchdog Timer */
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PMC_IrqHandler, /* 5 PMC */
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EEFC_IrqHandler, /* 6 EEFC */
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IrqHandlerNotUsed, /* 7 Reserved */
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UART0_IrqHandler, /* 8 UART0 */
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UART1_IrqHandler, /* 9 UART1 */
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SMC_IrqHandler, /* 10 SMC */
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PIOA_IrqHandler, /* 11 Parallel IO Controller A */
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PIOB_IrqHandler, /* 12 Parallel IO Controller B */
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PIOC_IrqHandler, /* 13 Parallel IO Controller C */
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USART0_IrqHandler, /* 14 USART 0 */
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USART1_IrqHandler, /* 15 USART 1 */
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IrqHandlerNotUsed, /* 16 Reserved */
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IrqHandlerNotUsed, /* 17 Reserved */
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MCI_IrqHandler, /* 18 MCI */
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TWI0_IrqHandler, /* 19 TWI 0 */
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TWI1_IrqHandler, /* 20 TWI 1 */
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SPI_IrqHandler, /* 21 SPI */
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SSC_IrqHandler, /* 22 SSC */
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TC0_IrqHandler, /* 23 Timer Counter 0 */
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TC1_IrqHandler, /* 24 Timer Counter 1 */
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TC2_IrqHandler, /* 25 Timer Counter 2 */
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TC3_IrqHandler, /* 26 Timer Counter 3 */
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TC4_IrqHandler, /* 27 Timer Counter 4 */
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TC5_IrqHandler, /* 28 Timer Counter 5 */
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ADC_IrqHandler, /* 29 ADC controller */
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DAC_IrqHandler, /* 30 DAC controller */
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PWM_IrqHandler, /* 31 PWM */
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CRCCU_IrqHandler, /* 32 CRC Calculation Unit */
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ACC_IrqHandler, /* 33 Analog Comparator */
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USBD_IrqHandler, /* 34 USB Device Port */
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IrqHandlerNotUsed /* 35 not used */
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};
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#if defined(BOARD_USB_DFU) && defined(APPLICATION_dfu)
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#include "usb/device/dfu/dfu.h"
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static void BootIntoApp(void)
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{
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unsigned int *pSrc;
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void (*appReset)(void);
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pSrc = (unsigned int *) ((unsigned char *)IFLASH_ADDR + BOARD_DFU_BOOT_SIZE);
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/* set vector table to application vector table (store at the beginning of the application) */
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SCB->VTOR = (unsigned int)(pSrc);
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/* set stack pointer to address provided in the beginning of the application (loaded into a register first) */
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__asm__ volatile ("MSR msp,%0" : :"r"(*pSrc));
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/* start application (by jumping to the reset function which address is stored as second entry of the vector table) */
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appReset = (void(*)(void))pSrc[1];
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g_dfu->state = DFU_STATE_appIDLE;
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appReset();
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}
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#endif
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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 ResetException( void )
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{
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uint32_t *pSrc, *pDest ;
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/* Low level Initialize */
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LowLevelInit() ;
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#if defined(BOARD_USB_DFU) && defined(APPLICATION_dfu)
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/* we are before the text segment has been relocated, so g_dfu is
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* not initialized yet */
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g_dfu = &_g_dfu;
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if ((g_dfu->magic != USB_DFU_MAGIC) && !USBDFU_OverrideEnterDFU()) {
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/* start application if valid
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* the application starts with the vector table
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* the first entry in the vector table is the initial stack pointer (SP) address
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* the stack will be placed in RAM, which begins at 0x2000 0000
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* there is up to 48 KB of RAM (0xc000)
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* since the stack grown "downwards" it should start at the end of the RAM: max 0x2000 c000
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* if the SP is not in this range (e.g. flash has been erased) there is no valid application
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* the second entry in the vector table is the reset address, corresponding to the application start
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*/
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if (((*((uint32_t*)(IFLASH_ADDR+BOARD_DFU_BOOT_SIZE)))&0xFFFF0000)==0x20000000) {
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UART_Exit();
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__disable_irq();
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BootIntoApp();
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/* Infinite loop */
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while ( 1 ) ;
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}
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}
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#endif
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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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{
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for ( ; pDest < &_erelocate ; )
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{
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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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{
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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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if ( ((uint32_t)pSrc >= IRAM_ADDR) && ((uint32_t)pSrc < IRAM_ADDR+IRAM_SIZE) )
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{
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SCB->VTOR |= 1 << SCB_VTOR_TBLBASE_Pos ;
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}
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/* App should have disabled interrupts during the transition */
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__enable_irq();
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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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