355 lines
		
	
	
		
			12 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
		
		
			
		
	
	
			355 lines
		
	
	
		
			12 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
|   | //*****************************************************************************
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|  | //   +--+       
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|  | //   | ++----+   
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|  | //   +-++    |  
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|  | //     |     |  
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|  | //   +-+--+  |   
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|  | //   | +--+--+  
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|  | //   +----+    Copyright (c) 2012 Code Red Technologies Ltd.
 | ||
|  | //
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|  | // NXP LPC13U Microcontroller Startup code for use with Red Suite
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|  | //
 | ||
|  | // Version : 120202
 | ||
|  | //
 | ||
|  | // Software License Agreement
 | ||
|  | // 
 | ||
|  | // The software is owned by Code Red Technologies and/or its suppliers, and is 
 | ||
|  | // protected under applicable copyright laws.  All rights are reserved.  Any 
 | ||
|  | // use in violation of the foregoing restrictions may subject the user to criminal 
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|  | // sanctions under applicable laws, as well as to civil liability for the breach 
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|  | // of the terms and conditions of this license.
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|  | // 
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|  | // THIS SOFTWARE IS PROVIDED "AS IS".  NO WARRANTIES, WHETHER EXPRESS, IMPLIED
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|  | // OR STATUTORY, INCLUDING, BUT NOT LIMITED TO, IMPLIED WARRANTIES OF
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|  | // MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE APPLY TO THIS SOFTWARE.
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|  | // USE OF THIS SOFTWARE FOR COMMERCIAL DEVELOPMENT AND/OR EDUCATION IS SUBJECT
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|  | // TO A CURRENT END USER LICENSE AGREEMENT (COMMERCIAL OR EDUCATIONAL) WITH
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|  | // CODE RED TECHNOLOGIES LTD. 
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|  | //
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|  | //*****************************************************************************
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|  | #if defined (__cplusplus)
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|  | #ifdef __REDLIB__
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|  | #error Redlib does not support C++
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|  | #else
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|  | //*****************************************************************************
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|  | //
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|  | // The entry point for the C++ library startup
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|  | //
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|  | //*****************************************************************************
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|  | extern "C" { | ||
|  | 	extern void __libc_init_array(void); | ||
|  | } | ||
|  | #endif
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|  | #endif
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|  | 
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|  | #define WEAK __attribute__ ((weak))
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|  | #define ALIAS(f) __attribute__ ((weak, alias (#f)))
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|  | 
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|  | // Code Red - if CMSIS is being used, then SystemInit() routine
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|  | // will be called by startup code rather than in application's main()
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|  | #if defined (__USE_CMSIS)
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|  | #include "LPC13Uxx.h"
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|  | #endif
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|  | 
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|  | //*****************************************************************************
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|  | #if defined (__cplusplus)
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|  | extern "C" { | ||
|  | #endif
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|  | 
 | ||
|  | //*****************************************************************************
 | ||
|  | //
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|  | // Forward declaration of the default handlers. These are aliased.
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|  | // When the application defines a handler (with the same name), this will 
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|  | // automatically take precedence over these weak definitions
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|  | //
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|  | //*****************************************************************************
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|  | void ResetISR(void); | ||
|  | WEAK void NMI_Handler(void); | ||
|  | WEAK void HardFault_Handler(void); | ||
|  | WEAK void MemManage_Handler(void); | ||
|  | WEAK void BusFault_Handler(void); | ||
|  | WEAK void UsageFault_Handler(void); | ||
|  | WEAK void SVC_Handler(void); | ||
|  | WEAK void DebugMon_Handler(void); | ||
|  | WEAK void PendSV_Handler(void); | ||
|  | WEAK void SysTick_Handler(void); | ||
|  | WEAK void IntDefaultHandler(void); | ||
|  | //*****************************************************************************
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|  | //
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|  | // Forward declaration of the specific IRQ handlers. These are aliased
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|  | // to the IntDefaultHandler, which is a 'forever' loop. When the application
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|  | // defines a handler (with the same name), this will automatically take 
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|  | // precedence over these weak definitions
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|  | //
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|  | //*****************************************************************************
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|  | void PIN_INT0_IRQHandler(void) ALIAS(IntDefaultHandler); | ||
|  | void PIN_INT1_IRQHandler(void) ALIAS(IntDefaultHandler); | ||
|  | void PIN_INT2_IRQHandler(void) ALIAS(IntDefaultHandler); | ||
|  | void PIN_INT3_IRQHandler(void) ALIAS(IntDefaultHandler); | ||
|  | void PIN_INT4_IRQHandler(void) ALIAS(IntDefaultHandler); | ||
|  | void PIN_INT5_IRQHandler(void) ALIAS(IntDefaultHandler); | ||
|  | void PIN_INT6_IRQHandler(void) ALIAS(IntDefaultHandler); | ||
|  | void PIN_INT7_IRQHandler(void) ALIAS(IntDefaultHandler); | ||
|  | void GINT0_IRQHandler(void) ALIAS(IntDefaultHandler); | ||
|  | void GINT1_IRQHandler(void) ALIAS(IntDefaultHandler); | ||
|  | void OSTIMER_IRQHandler(void) ALIAS(IntDefaultHandler); | ||
|  | void SSP1_IRQHandler(void) ALIAS(IntDefaultHandler); | ||
|  | void I2C_IRQHandler(void) ALIAS(IntDefaultHandler); | ||
|  | void CT16B0_IRQHandler(void) ALIAS(IntDefaultHandler); | ||
|  | void CT16B1_IRQHandler(void) ALIAS(IntDefaultHandler); | ||
|  | void CT32B0_IRQHandler(void) ALIAS(IntDefaultHandler); | ||
|  | void CT32B1_IRQHandler(void) ALIAS(IntDefaultHandler); | ||
|  | void SSP0_IRQHandler(void) ALIAS(IntDefaultHandler); | ||
|  | void USART_IRQHandler(void) ALIAS(IntDefaultHandler); | ||
|  | void USB_IRQHandler(void) ALIAS(IntDefaultHandler); | ||
|  | void USB_FIQHandler(void) ALIAS(IntDefaultHandler); | ||
|  | void ADC_IRQHandler(void) ALIAS(IntDefaultHandler); | ||
|  | void WDT_IRQHandler(void) ALIAS(IntDefaultHandler); | ||
|  | void BOD_IRQHandler(void) ALIAS(IntDefaultHandler); | ||
|  | void FMC_IRQHandler(void) ALIAS(IntDefaultHandler); | ||
|  | void OSCFAIL_IRQHandler(void) ALIAS(IntDefaultHandler); | ||
|  | void PVTCIRCUIT_IRQHandler(void) ALIAS(IntDefaultHandler); | ||
|  | void USBWakeup_IRQHandler(void) ALIAS(IntDefaultHandler); | ||
|  | 
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|  | //*****************************************************************************
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|  | //
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|  | // The entry point for the application.
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|  | // __main() is the entry point for Redlib based applications
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|  | // main() is the entry point for Newlib based applications
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|  | //
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|  | //*****************************************************************************
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|  | #if defined (__REDLIB__)
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|  | extern void __main(void); | ||
|  | #endif
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|  | extern int main(void); | ||
|  | //*****************************************************************************
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|  | //
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|  | // External declaration for the pointer to the stack top from the Linker Script
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|  | //
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|  | //*****************************************************************************
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|  | extern void _vStackTop(void); | ||
|  | 
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|  | //*****************************************************************************
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|  | #if defined (__cplusplus)
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|  | } // extern "C"
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|  | #endif
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|  | //*****************************************************************************
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|  | //
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|  | // The vector table.  Note that the proper constructs must be placed on this to
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|  | // ensure that it ends up at physical address 0x0000.0000.
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|  | //
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|  | //*****************************************************************************
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|  | extern void (* const g_pfnVectors[])(void); | ||
|  | __attribute__ ((section(".isr_vector"))) | ||
|  | void (* const g_pfnVectors[])(void) = { | ||
|  | 	// Core Level - CM3
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|  | 		&_vStackTop, // The initial stack pointer
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|  | 		ResetISR, // The reset handler
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|  | 		NMI_Handler, // The NMI handler
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|  | 		HardFault_Handler, // The hard fault handler
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|  | 		MemManage_Handler, // The MPU fault handler
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|  | 		BusFault_Handler, // The bus fault handler
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|  | 		UsageFault_Handler, // The usage fault handler
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|  | 		0, // Reserved
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|  | 		0, // Reserved
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|  | 		0, // Reserved
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|  | 		0, // Reserved
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|  | 		SVC_Handler, // SVCall handler
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|  | 		DebugMon_Handler, // Debug monitor handler
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|  | 		0, // Reserved
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|  | 		PendSV_Handler, // The PendSV handler
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|  | 		SysTick_Handler, // The SysTick handler
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|  | 
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|  |         // LPC13U External Interrupts
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|  | 		PIN_INT0_IRQHandler,	// All GPIO pin can be routed to PIN_INTx
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|  | 		PIN_INT1_IRQHandler, | ||
|  | 		PIN_INT2_IRQHandler, | ||
|  | 		PIN_INT3_IRQHandler, | ||
|  | 		PIN_INT4_IRQHandler, | ||
|  | 		PIN_INT5_IRQHandler, | ||
|  | 		PIN_INT6_IRQHandler, | ||
|  | 		PIN_INT7_IRQHandler, | ||
|  | 		GINT0_IRQHandler, | ||
|  | 		GINT1_IRQHandler,		// PIO0 (0:7)
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|  | 		0, | ||
|  | 		0, | ||
|  | 		OSTIMER_IRQHandler, | ||
|  | 		0, | ||
|  | 		SSP1_IRQHandler,		// SSP1
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|  | 		I2C_IRQHandler,        	//  I2C
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|  | 		CT16B0_IRQHandler,		// 16-bit Timer0
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|  | 		CT16B1_IRQHandler,      // 16-bit Timer1
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|  | 		CT32B0_IRQHandler,      // 32-bit Timer0
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|  | 		CT32B1_IRQHandler,      // 32-bit Timer1
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|  | 		SSP0_IRQHandler,        // SSP0
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|  | 		USART_IRQHandler,       // USART
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|  | 		USB_IRQHandler,         // USB IRQ
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|  | 		USB_FIQHandler,         // USB FIQ
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|  | 		ADC_IRQHandler,         // A/D Converter
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|  | 		WDT_IRQHandler,         // Watchdog timer
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|  | 		BOD_IRQHandler,         // Brown Out Detect
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|  | 		FMC_IRQHandler,         // IP2111 Flash Memory Controller
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|  | 		OSCFAIL_IRQHandler,     // OSC FAIL
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|  | 		PVTCIRCUIT_IRQHandler,  // PVT CIRCUIT
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|  | 		USBWakeup_IRQHandler,   // USB wake up
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|  | 		0, | ||
|  | 	}; | ||
|  | 
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|  | //*****************************************************************************
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|  | // Functions to carry out the initialization of RW and BSS data sections. These
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|  | // are written as separate functions rather than being inlined within the
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|  | // ResetISR() function in order to cope with MCUs with multiple banks of
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|  | // memory.
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|  | //*****************************************************************************
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|  | __attribute__ ((section(".after_vectors"))) | ||
|  | void data_init(unsigned int romstart, unsigned int start, unsigned int len) { | ||
|  | 	unsigned int *pulDest = (unsigned int*) start; | ||
|  | 	unsigned int *pulSrc = (unsigned int*) romstart; | ||
|  | 	unsigned int loop; | ||
|  | 	for (loop = 0; loop < len; loop = loop + 4) | ||
|  | 		*pulDest++ = *pulSrc++; | ||
|  | } | ||
|  | 
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|  | __attribute__ ((section(".after_vectors"))) | ||
|  | void bss_init(unsigned int start, unsigned int len) { | ||
|  | 	unsigned int *pulDest = (unsigned int*) start; | ||
|  | 	unsigned int loop; | ||
|  | 	for (loop = 0; loop < len; loop = loop + 4) | ||
|  | 		*pulDest++ = 0; | ||
|  | } | ||
|  | 
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|  | //*****************************************************************************
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|  | // The following symbols are constructs generated by the linker, indicating
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|  | // the location of various points in the "Global Section Table". This table is
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|  | // created by the linker via the Code Red managed linker script mechanism. It
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|  | // contains the load address, execution address and length of each RW data
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|  | // section and the execution and length of each BSS (zero initialized) section.
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|  | //*****************************************************************************
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|  | extern unsigned int __data_section_table; | ||
|  | extern unsigned int __data_section_table_end; | ||
|  | extern unsigned int __bss_section_table; | ||
|  | extern unsigned int __bss_section_table_end; | ||
|  | 
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|  | //*****************************************************************************
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|  | // Reset entry point for your code.
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|  | // Sets up a simple runtime environment and initializes the C/C++
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|  | // library.
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|  | //*****************************************************************************
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|  | __attribute__ ((section(".after_vectors"))) | ||
|  | void | ||
|  | ResetISR(void) { | ||
|  | 
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|  |     //
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|  |     // Copy the data sections from flash to SRAM.
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|  |     //
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|  | 	unsigned int LoadAddr, ExeAddr, SectionLen; | ||
|  | 	unsigned int *SectionTableAddr; | ||
|  | 
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|  | 	// Load base address of Global Section Table
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|  | 	SectionTableAddr = &__data_section_table; | ||
|  | 
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|  |     // Copy the data sections from flash to SRAM.
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|  | 	while (SectionTableAddr < &__data_section_table_end) { | ||
|  | 		LoadAddr = *SectionTableAddr++; | ||
|  | 		ExeAddr = *SectionTableAddr++; | ||
|  | 		SectionLen = *SectionTableAddr++; | ||
|  | 		data_init(LoadAddr, ExeAddr, SectionLen); | ||
|  | 	} | ||
|  | 	// At this point, SectionTableAddr = &__bss_section_table;
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|  | 	// Zero fill the bss segment
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|  | 	while (SectionTableAddr < &__bss_section_table_end) { | ||
|  | 		ExeAddr = *SectionTableAddr++; | ||
|  | 		SectionLen = *SectionTableAddr++; | ||
|  | 		bss_init(ExeAddr, SectionLen); | ||
|  | 	} | ||
|  | 
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|  | #ifdef __USE_CMSIS
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|  | 	SystemInit(); | ||
|  | #endif
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|  | 
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|  | #if defined (__cplusplus)
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|  | 	//
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|  | 	// Call C++ library initialisation
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|  | 	//
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|  | 	__libc_init_array(); | ||
|  | #endif
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|  | 
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|  | #if defined (__REDLIB__)
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|  | 	// Call the Redlib library, which in turn calls main()
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|  | 	__main() ; | ||
|  | #else
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|  | 	main(); | ||
|  | #endif
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|  | 	//
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|  | 	// main() shouldn't return, but if it does, we'll just enter an infinite loop
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|  | 	//
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|  | 	while (1) { | ||
|  | 		; | ||
|  | 	} | ||
|  | } | ||
|  | 
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|  | //*****************************************************************************
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|  | // Default exception handlers. Override the ones here by defining your own
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|  | // handler routines in your application code.
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|  | //*****************************************************************************
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|  | __attribute__ ((section(".after_vectors"))) | ||
|  | void NMI_Handler(void) { | ||
|  | 	while (1) { | ||
|  | 	} | ||
|  | } | ||
|  | __attribute__ ((section(".after_vectors"))) | ||
|  | void HardFault_Handler(void) { | ||
|  | 	while (1) { | ||
|  | 	} | ||
|  | } | ||
|  | __attribute__ ((section(".after_vectors"))) | ||
|  | void MemManage_Handler(void) { | ||
|  | 	while (1) { | ||
|  | 	} | ||
|  | } | ||
|  | __attribute__ ((section(".after_vectors"))) | ||
|  | void BusFault_Handler(void) { | ||
|  | 	while (1) { | ||
|  | 	} | ||
|  | } | ||
|  | __attribute__ ((section(".after_vectors"))) | ||
|  | void UsageFault_Handler(void) { | ||
|  | 	while (1) { | ||
|  | 	} | ||
|  | } | ||
|  | __attribute__ ((section(".after_vectors"))) | ||
|  | void SVC_Handler(void) { | ||
|  | 	while (1) { | ||
|  | 	} | ||
|  | } | ||
|  | __attribute__ ((section(".after_vectors"))) | ||
|  | void DebugMon_Handler(void) { | ||
|  | 	while (1) { | ||
|  | 	} | ||
|  | } | ||
|  | __attribute__ ((section(".after_vectors"))) | ||
|  | void PendSV_Handler(void) { | ||
|  | 	while (1) { | ||
|  | 	} | ||
|  | } | ||
|  | __attribute__ ((section(".after_vectors"))) | ||
|  | void SysTick_Handler(void) { | ||
|  | 	while (1) { | ||
|  | 	} | ||
|  | } | ||
|  | 
 | ||
|  | //*****************************************************************************
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|  | //
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|  | // Processor ends up here if an unexpected interrupt occurs or a handler
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|  | // is not present in the application code.
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|  | //
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|  | //*****************************************************************************
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|  | __attribute__ ((section(".after_vectors"))) | ||
|  | void IntDefaultHandler(void) { | ||
|  | 	//
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|  | 	// Go into an infinite loop.
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|  | 	//
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|  | 	while (1) { | ||
|  | 	} | ||
|  | } |