Beginnings of GCC Cortex-A port - not yet completely converted from IAR version.
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/*
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FreeRTOS V8.0.0:rc1 - Copyright (C) 2014 Real Time Engineers Ltd.
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All rights reserved
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VISIT http://www.FreeRTOS.org TO ENSURE YOU ARE USING THE LATEST VERSION.
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***************************************************************************
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* *
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* FreeRTOS provides completely free yet professionally developed, *
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* robust, strictly quality controlled, supported, and cross *
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* platform software that has become a de facto standard. *
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* *
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* Help yourself get started quickly and support the FreeRTOS *
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* project by purchasing a FreeRTOS tutorial book, reference *
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* manual, or both from: http://www.FreeRTOS.org/Documentation *
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* *
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* Thank you! *
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* *
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***************************************************************************
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This file is part of the FreeRTOS distribution.
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FreeRTOS is free software; you can redistribute it and/or modify it under
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the terms of the GNU General Public License (version 2) as published by the
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Free Software Foundation >>!AND MODIFIED BY!<< the FreeRTOS exception.
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>>! NOTE: The modification to the GPL is included to allow you to distribute
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>>! a combined work that includes FreeRTOS without being obliged to provide
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>>! the source code for proprietary components outside of the FreeRTOS
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>>! kernel.
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FreeRTOS is distributed in the hope that it will be useful, but WITHOUT ANY
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WARRANTY; without even the implied warranty of MERCHANTABILITY or FITNESS
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FOR A PARTICULAR PURPOSE. Full license text is available from the following
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link: http://www.freertos.org/a00114.html
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1 tab == 4 spaces!
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***************************************************************************
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* *
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* Having a problem? Start by reading the FAQ "My application does *
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* not run, what could be wrong?" *
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* *
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* http://www.FreeRTOS.org/FAQHelp.html *
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* *
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***************************************************************************
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http://www.FreeRTOS.org - Documentation, books, training, latest versions,
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license and Real Time Engineers Ltd. contact details.
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http://www.FreeRTOS.org/plus - A selection of FreeRTOS ecosystem products,
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including FreeRTOS+Trace - an indispensable productivity tool, a DOS
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compatible FAT file system, and our tiny thread aware UDP/IP stack.
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http://www.OpenRTOS.com - Real Time Engineers ltd license FreeRTOS to High
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Integrity Systems to sell under the OpenRTOS brand. Low cost OpenRTOS
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licenses offer ticketed support, indemnification and middleware.
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http://www.SafeRTOS.com - High Integrity Systems also provide a safety
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||||
engineered and independently SIL3 certified version for use in safety and
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mission critical applications that require provable dependability.
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1 tab == 4 spaces!
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*/
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/* Standard includes. */
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#include <stdlib.h>
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/* Scheduler includes. */
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#include "FreeRTOS.h"
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#include "task.h"
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#ifndef configINTERRUPT_CONTROLLER_BASE_ADDRESS
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#error configINTERRUPT_CONTROLLER_BASE_ADDRESS must be defined. See http://www.freertos.org/Using-FreeRTOS-on-Cortex-A-Embedded-Processors.html
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#endif
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#ifndef configINTERRUPT_CONTROLLER_CPU_INTERFACE_OFFSET
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#error configINTERRUPT_CONTROLLER_CPU_INTERFACE_OFFSET must be defined. See http://www.freertos.org/Using-FreeRTOS-on-Cortex-A-Embedded-Processors.html
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#endif
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#ifndef configUNIQUE_INTERRUPT_PRIORITIES
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#error configUNIQUE_INTERRUPT_PRIORITIES must be defined. See http://www.freertos.org/Using-FreeRTOS-on-Cortex-A-Embedded-Processors.html
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#endif
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#ifndef configSETUP_TICK_INTERRUPT
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#error configSETUP_TICK_INTERRUPT() must be defined. See http://www.freertos.org/Using-FreeRTOS-on-Cortex-A-Embedded-Processors.html
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#endif /* configSETUP_TICK_INTERRUPT */
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#ifndef configMAX_API_CALL_INTERRUPT_PRIORITY
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#error configMAX_API_CALL_INTERRUPT_PRIORITY must be defined. See http://www.freertos.org/Using-FreeRTOS-on-Cortex-A-Embedded-Processors.html
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#endif
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#if configMAX_API_CALL_INTERRUPT_PRIORITY == 0
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#error configMAX_API_CALL_INTERRUPT_PRIORITY must not be set to 0
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#endif
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#if configMAX_API_CALL_INTERRUPT_PRIORITY > configUNIQUE_INTERRUPT_PRIORITIES
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#error configMAX_API_CALL_INTERRUPT_PRIORITY must be less than or equal to configUNIQUE_INTERRUPT_PRIORITIES as the lower the numeric priority value the higher the logical interrupt priority
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#endif
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#if configUSE_PORT_OPTIMISED_TASK_SELECTION == 1
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/* Check the configuration. */
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#if( configMAX_PRIORITIES > 32 )
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#error configUSE_PORT_OPTIMISED_TASK_SELECTION can only be set to 1 when configMAX_PRIORITIES is less than or equal to 32. It is very rare that a system requires more than 10 to 15 difference priorities as tasks that share a priority will time slice.
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#endif
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#endif /* configUSE_PORT_OPTIMISED_TASK_SELECTION */
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/* In case security extensions are implemented. */
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#if configMAX_API_CALL_INTERRUPT_PRIORITY <= ( configUNIQUE_INTERRUPT_PRIORITIES / 2 )
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#error configMAX_API_CALL_INTERRUPT_PRIORITY must be greater than ( configUNIQUE_INTERRUPT_PRIORITIES / 2 )
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#endif
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/* A critical section is exited when the critical section nesting count reaches
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this value. */
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#define portNO_CRITICAL_NESTING ( ( uint32_t ) 0 )
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/* In all GICs 255 can be written to the priority mask register to unmask all
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(but the lowest) interrupt priority. */
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#define portUNMASK_VALUE ( 0xFF )
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/* Tasks are not created with a floating point context, but can be given a
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floating point context after they have been created. A variable is stored as
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part of the tasks context that holds portNO_FLOATING_POINT_CONTEXT if the task
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does not have an FPU context, or any other value if the task does have an FPU
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context. */
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#define portNO_FLOATING_POINT_CONTEXT ( ( StackType_t ) 0 )
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/* Constants required to setup the initial task context. */
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#define portINITIAL_SPSR ( ( StackType_t ) 0x1f ) /* System mode, ARM mode, interrupts enabled. */
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#define portTHUMB_MODE_BIT ( ( StackType_t ) 0x20 )
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#define portINTERRUPT_ENABLE_BIT ( 0x80UL )
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#define portTHUMB_MODE_ADDRESS ( 0x01UL )
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/* Used by portASSERT_IF_INTERRUPT_PRIORITY_INVALID() when ensuring the binary
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point is zero. */
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#define portBINARY_POINT_BITS ( ( uint8_t ) 0x03 )
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/* Masks all bits in the APSR other than the mode bits. */
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#define portAPSR_MODE_BITS_MASK ( 0x1F )
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/* The value of the mode bits in the APSR when the CPU is executing in user
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mode. */
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#define portAPSR_USER_MODE ( 0x10 )
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/* Macro to unmask all interrupt priorities. */
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#define portCLEAR_INTERRUPT_MASK() \
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{ \
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__asm volatile ( "cpsid i" ); \
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portICCPMR_PRIORITY_MASK_REGISTER = portUNMASK_VALUE; \
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__asm( "DSB \n" \
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"ISB \n" ); \
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__asm volatile( "cpsie i" ); \
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}
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/*-----------------------------------------------------------*/
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/*
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* Starts the first task executing. This function is necessarily written in
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* assembly code so is implemented in portASM.s.
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*/
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extern void vPortRestoreTaskContext( void );
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/*-----------------------------------------------------------*/
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/* A variable is used to keep track of the critical section nesting. This
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variable has to be stored as part of the task context and must be initialised to
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a non zero value to ensure interrupts don't inadvertently become unmasked before
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the scheduler starts. As it is stored as part of the task context it will
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automatically be set to 0 when the first task is started. */
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volatile uint32_t ulCriticalNesting = 9999UL;
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/* Saved as part of the task context. If ulPortTaskHasFPUContext is non-zero then
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a floating point context must be saved and restored for the task. */
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uint32_t ulPortTaskHasFPUContext = pdFALSE;
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/* Set to 1 to pend a context switch from an ISR. */
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uint32_t ulPortYieldRequired = pdFALSE;
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/* Counts the interrupt nesting depth. A context switch is only performed if
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if the nesting depth is 0. */
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uint32_t ulPortInterruptNesting = 0UL;
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__attribute__(( used )) const uint32_t ulICCIAR = portICCIAR_INTERRUPT_ACKNOWLEDGE_REGISTER_ADDRESS;
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__attribute__(( used )) const uint32_t ulICCEOIR = portICCEOIR_END_OF_INTERRUPT_REGISTER_ADDRESS;
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/*-----------------------------------------------------------*/
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/*
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* See header file for description.
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*/
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StackType_t *pxPortInitialiseStack( StackType_t *pxTopOfStack, TaskFunction_t pxCode, void *pvParameters )
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{
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/* Setup the initial stack of the task. The stack is set exactly as
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expected by the portRESTORE_CONTEXT() macro.
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The fist real value on the stack is the status register, which is set for
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system mode, with interrupts enabled. A few NULLs are added first to ensure
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GDB does not try decoding a non-existent return address. */
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*pxTopOfStack = ( StackType_t ) NULL;
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pxTopOfStack--;
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*pxTopOfStack = ( StackType_t ) NULL;
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pxTopOfStack--;
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*pxTopOfStack = ( StackType_t ) NULL;
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pxTopOfStack--;
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*pxTopOfStack = ( StackType_t ) portINITIAL_SPSR;
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if( ( ( uint32_t ) pxCode & portTHUMB_MODE_ADDRESS ) != 0x00UL )
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{
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/* The task will start in THUMB mode. */
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*pxTopOfStack |= portTHUMB_MODE_BIT;
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}
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pxTopOfStack--;
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/* Next the return address, which in this case is the start of the task. */
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*pxTopOfStack = ( StackType_t ) pxCode;
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pxTopOfStack--;
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/* Next all the registers other than the stack pointer. */
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*pxTopOfStack = ( StackType_t ) 0x00000000; /* R14 */
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pxTopOfStack--;
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*pxTopOfStack = ( StackType_t ) 0x12121212; /* R12 */
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pxTopOfStack--;
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*pxTopOfStack = ( StackType_t ) 0x11111111; /* R11 */
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pxTopOfStack--;
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*pxTopOfStack = ( StackType_t ) 0x10101010; /* R10 */
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pxTopOfStack--;
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*pxTopOfStack = ( StackType_t ) 0x09090909; /* R9 */
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pxTopOfStack--;
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*pxTopOfStack = ( StackType_t ) 0x08080808; /* R8 */
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pxTopOfStack--;
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*pxTopOfStack = ( StackType_t ) 0x07070707; /* R7 */
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pxTopOfStack--;
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*pxTopOfStack = ( StackType_t ) 0x06060606; /* R6 */
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pxTopOfStack--;
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*pxTopOfStack = ( StackType_t ) 0x05050505; /* R5 */
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pxTopOfStack--;
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*pxTopOfStack = ( StackType_t ) 0x04040404; /* R4 */
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pxTopOfStack--;
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*pxTopOfStack = ( StackType_t ) 0x03030303; /* R3 */
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pxTopOfStack--;
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*pxTopOfStack = ( StackType_t ) 0x02020202; /* R2 */
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pxTopOfStack--;
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*pxTopOfStack = ( StackType_t ) 0x01010101; /* R1 */
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pxTopOfStack--;
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*pxTopOfStack = ( StackType_t ) pvParameters; /* R0 */
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pxTopOfStack--;
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/* The task will start with a critical nesting count of 0 as interrupts are
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enabled. */
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*pxTopOfStack = portNO_CRITICAL_NESTING;
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pxTopOfStack--;
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/* The task will start without a floating point context. A task that uses
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the floating point hardware must call vPortTaskUsesFPU() before executing
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any floating point instructions. */
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*pxTopOfStack = portNO_FLOATING_POINT_CONTEXT;
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return pxTopOfStack;
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}
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/*-----------------------------------------------------------*/
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BaseType_t xPortStartScheduler( void )
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{
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uint32_t ulAPSR;
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/* Only continue if the CPU is not in User mode. The CPU must be in a
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Privileged mode for the scheduler to start. */
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__asm volatile ( "MRS %0, APSR" : "=r" ( ulAPSR ) );
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ulAPSR &= portAPSR_MODE_BITS_MASK;
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configASSERT( ulAPSR != portAPSR_USER_MODE );
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if( ulAPSR != portAPSR_USER_MODE )
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{
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/* Only continue if the binary point value is set to its lowest possible
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setting. See the comments in vPortValidateInterruptPriority() below for
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more information. */
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configASSERT( ( portICCBPR_BINARY_POINT_REGISTER & portBINARY_POINT_BITS ) <= portMAX_BINARY_POINT_VALUE );
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if( ( portICCBPR_BINARY_POINT_REGISTER & portBINARY_POINT_BITS ) <= portMAX_BINARY_POINT_VALUE )
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{
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/* Start the timer that generates the tick ISR. */
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configSETUP_TICK_INTERRUPT();
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__asm volatile( "cpsie i" );
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vPortRestoreTaskContext();
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}
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}
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/* Will only get here if xTaskStartScheduler() was called with the CPU in
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a non-privileged mode or the binary point register was not set to its lowest
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possible value. */
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return 0;
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}
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/*-----------------------------------------------------------*/
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void vPortEndScheduler( void )
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{
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/* Not implemented in ports where there is nothing to return to.
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Artificially force an assert. */
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configASSERT( ulCriticalNesting == 1000UL );
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}
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/*-----------------------------------------------------------*/
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void vPortEnterCritical( void )
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{
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/* Disable interrupts as per portDISABLE_INTERRUPTS(); */
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ulPortSetInterruptMask();
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/* Now interrupts are disabled ulCriticalNesting can be accessed
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directly. Increment ulCriticalNesting to keep a count of how many times
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portENTER_CRITICAL() has been called. */
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ulCriticalNesting++;
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}
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/*-----------------------------------------------------------*/
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void vPortExitCritical( void )
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{
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if( ulCriticalNesting > portNO_CRITICAL_NESTING )
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{
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/* Decrement the nesting count as the critical section is being
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exited. */
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ulCriticalNesting--;
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/* If the nesting level has reached zero then all interrupt
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priorities must be re-enabled. */
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if( ulCriticalNesting == portNO_CRITICAL_NESTING )
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{
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/* Critical nesting has reached zero so all interrupt priorities
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should be unmasked. */
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portCLEAR_INTERRUPT_MASK();
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}
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}
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}
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/*-----------------------------------------------------------*/
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void FreeRTOS_Tick_Handler( void )
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{
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/* Set interrupt mask before altering scheduler structures. The tick
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handler runs at the lowest priority, so interrupts cannot already be masked,
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so there is no need to save and restore the current mask value. */
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__asm volatile( "cpsid i" );
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portICCPMR_PRIORITY_MASK_REGISTER = ( configMAX_API_CALL_INTERRUPT_PRIORITY << portPRIORITY_SHIFT );
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__asm( "dsb \n"
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"isb \n"
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"cpsie i ");
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/* Increment the RTOS tick. */
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if( xTaskIncrementTick() != pdFALSE )
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{
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ulPortYieldRequired = pdTRUE;
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}
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/* Ensure all interrupt priorities are active again. */
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portCLEAR_INTERRUPT_MASK();
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}
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/*-----------------------------------------------------------*/
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void vPortTaskUsesFPU( void )
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{
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uint32_t ulInitialFPSCR = 0;
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/* A task is registering the fact that it needs an FPU context. Set the
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FPU flag (which is saved as part of the task context). */
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ulPortTaskHasFPUContext = pdTRUE;
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/* Initialise the floating point status register. */
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__asm( "FMXR FPSCR, %0" :: "r" (ulInitialFPSCR) );
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}
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/*-----------------------------------------------------------*/
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void vPortClearInterruptMask( uint32_t ulNewMaskValue )
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{
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if( ulNewMaskValue == pdFALSE )
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{
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portCLEAR_INTERRUPT_MASK();
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}
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}
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/*-----------------------------------------------------------*/
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uint32_t ulPortSetInterruptMask( void )
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{
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uint32_t ulReturn;
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__asm volatile ( "cpsid i" );
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if( portICCPMR_PRIORITY_MASK_REGISTER == ( configMAX_API_CALL_INTERRUPT_PRIORITY << portPRIORITY_SHIFT ) )
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{
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/* Interrupts were already masked. */
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ulReturn = pdTRUE;
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}
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else
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{
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ulReturn = pdFALSE;
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portICCPMR_PRIORITY_MASK_REGISTER = ( configMAX_API_CALL_INTERRUPT_PRIORITY << portPRIORITY_SHIFT );
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__asm( "dsb \n"
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"isb \n" );
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}
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__asm volatile ( "cpsie i" );
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return ulReturn;
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}
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/*-----------------------------------------------------------*/
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#if( configASSERT_DEFINED == 1 )
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void vPortValidateInterruptPriority( void )
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{
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/* The following assertion will fail if a service routine (ISR) for
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an interrupt that has been assigned a priority above
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configMAX_SYSCALL_INTERRUPT_PRIORITY calls an ISR safe FreeRTOS API
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function. ISR safe FreeRTOS API functions must *only* be called
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from interrupts that have been assigned a priority at or below
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configMAX_SYSCALL_INTERRUPT_PRIORITY.
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Numerically low interrupt priority numbers represent logically high
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interrupt priorities, therefore the priority of the interrupt must
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be set to a value equal to or numerically *higher* than
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configMAX_SYSCALL_INTERRUPT_PRIORITY.
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FreeRTOS maintains separate thread and ISR API functions to ensure
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interrupt entry is as fast and simple as possible.
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The following links provide detailed information:
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http://www.freertos.org/RTOS-Cortex-M3-M4.html
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http://www.freertos.org/FAQHelp.html */
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configASSERT( portICCRPR_RUNNING_PRIORITY_REGISTER >= ( configMAX_API_CALL_INTERRUPT_PRIORITY << portPRIORITY_SHIFT ) );
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/* Priority grouping: The interrupt controller (GIC) allows the bits
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that define each interrupt's priority to be split between bits that
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define the interrupt's pre-emption priority bits and bits that define
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the interrupt's sub-priority. For simplicity all bits must be defined
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to be pre-emption priority bits. The following assertion will fail if
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this is not the case (if some bits represent a sub-priority).
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The priority grouping is configured by the GIC's binary point register
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(ICCBPR). Writting 0 to ICCBPR will ensure it is set to its lowest
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possible value (which may be above 0). */
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configASSERT( ( portICCBPR_BINARY_POINT_REGISTER & portBINARY_POINT_BITS ) <= portMAX_BINARY_POINT_VALUE );
|
||||
}
|
||||
|
||||
#endif /* configASSERT_DEFINED */
|
||||
/*-----------------------------------------------------------*/
|
||||
|
||||
void vPortRestoreTaskContext( void )
|
||||
{
|
||||
}
|
||||
|
||||
void vPortRestoreContext( void )
|
||||
{
|
||||
}
|
||||
/*-----------------------------------------------------------*/
|
||||
|
||||
|
@ -0,0 +1,221 @@
|
||||
/*
|
||||
FreeRTOS V8.0.0:rc1 - Copyright (C) 2014 Real Time Engineers Ltd.
|
||||
All rights reserved
|
||||
|
||||
|
||||
***************************************************************************
|
||||
* *
|
||||
* FreeRTOS tutorial books are available in pdf and paperback. *
|
||||
* Complete, revised, and edited pdf reference manuals are also *
|
||||
* available. *
|
||||
* *
|
||||
* Purchasing FreeRTOS documentation will not only help you, by *
|
||||
* ensuring you get running as quickly as possible and with an *
|
||||
* in-depth knowledge of how to use FreeRTOS, it will also help *
|
||||
* the FreeRTOS project to continue with its mission of providing *
|
||||
* professional grade, cross platform, de facto standard solutions *
|
||||
* for microcontrollers - completely free of charge! *
|
||||
* *
|
||||
* >>> See http://www.FreeRTOS.org/Documentation for details. <<< *
|
||||
* *
|
||||
* Thank you for using FreeRTOS, and thank you for your support! *
|
||||
* *
|
||||
***************************************************************************
|
||||
|
||||
|
||||
This file is part of the FreeRTOS distribution.
|
||||
|
||||
FreeRTOS is free software; you can redistribute it and/or modify it under
|
||||
the terms of the GNU General Public License (version 2) as published by the
|
||||
Free Software Foundation AND MODIFIED BY the FreeRTOS exception.
|
||||
>>>NOTE<<< The modification to the GPL is included to allow you to
|
||||
distribute a combined work that includes FreeRTOS without being obliged to
|
||||
provide the source code for proprietary components outside of the FreeRTOS
|
||||
kernel. FreeRTOS is distributed in the hope that it will be useful, but
|
||||
WITHOUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY
|
||||
or FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for
|
||||
more details. You should have received a copy of the GNU General Public
|
||||
License and the FreeRTOS license exception along with FreeRTOS; if not it
|
||||
can be viewed here: http://www.freertos.org/a00114.html and also obtained
|
||||
by writing to Richard Barry, contact details for whom are available on the
|
||||
FreeRTOS WEB site.
|
||||
|
||||
1 tab == 4 spaces!
|
||||
|
||||
http://www.FreeRTOS.org - Documentation, latest information, license and
|
||||
contact details.
|
||||
|
||||
http://www.SafeRTOS.com - A version that is certified for use in safety
|
||||
critical systems.
|
||||
|
||||
http://www.OpenRTOS.com - Commercial support, development, porting,
|
||||
licensing and training services.
|
||||
*/
|
||||
|
||||
|
||||
.org 0
|
||||
.text
|
||||
|
||||
.set SYS_MODE, 0x1f
|
||||
.set SVC_MODE, 0x13
|
||||
.set IRQ_MODE, 0x12
|
||||
|
||||
.extern _boot
|
||||
.extern vTaskSwitchContext
|
||||
.extern ulICCIAR
|
||||
.extern ulICCEOIR
|
||||
|
||||
.global _vector_table
|
||||
.global FIQInterrupt
|
||||
.global Undefined
|
||||
.global PrefetchAbortHandler
|
||||
.global DataAbortInterrupt
|
||||
.global FreeRTOS_IRQ_Handler
|
||||
.global FreeRTOS_SWI_Handler
|
||||
|
||||
.section .vectors
|
||||
|
||||
_vector_table:
|
||||
B _boot
|
||||
B Undefined
|
||||
ldr pc, _swi
|
||||
B PrefetchAbortHandler
|
||||
B DataAbortHandler
|
||||
NOP /* Placeholder for address exception vector*/
|
||||
LDR PC, _irq
|
||||
B FIQHandler
|
||||
|
||||
_irq: .word FreeRTOS_IRQ_Handler
|
||||
_swi: .word FreeRTOS_SWI_Handler
|
||||
|
||||
/******************************************************************************
|
||||
* SVC handler is used to start the scheduler and yield a task.
|
||||
*****************************************************************************/
|
||||
FreeRTOS_SWI_Handler:
|
||||
|
||||
/* Save the context of the current task and select a new task to run. */
|
||||
// portSAVE_CONTEXT
|
||||
LDR R0, =vTaskSwitchContext
|
||||
BLX R0
|
||||
|
||||
vPortRestoreTaskContext:
|
||||
// portRESTORE_CONTEXT
|
||||
|
||||
FreeRTOS_IRQ_Handler:
|
||||
/* Return to the interrupted instruction. */
|
||||
SUB lr, lr, #4
|
||||
|
||||
/* Push the return address and SPSR. */
|
||||
PUSH {lr}
|
||||
MRS lr, SPSR
|
||||
PUSH {lr}
|
||||
|
||||
/* Change to supervisor mode to allow reentry. */
|
||||
CPS #SVC_MODE
|
||||
|
||||
/* Push used registers. */
|
||||
PUSH {r0-r4, r12}
|
||||
|
||||
/* Increment nesting count. r3 holds the address of ulPortInterruptNesting
|
||||
for future use. r1 holds the original ulPortInterruptNesting value for
|
||||
future use. */
|
||||
LDR r3, =ulPortInterruptNesting
|
||||
LDR r1, [r3]
|
||||
ADD r4, r1, #1
|
||||
STR r4, [r3]
|
||||
|
||||
/* Read value from the interrupt acknowledge register, which is stored in r0
|
||||
for future parameter and interrupt clearing use. */
|
||||
LDR r2, ulICCIARConst
|
||||
LDR r0, [r2]
|
||||
|
||||
/* Ensure bit 2 of the stack pointer is clear. r2 holds the bit 2 value for
|
||||
future use. */
|
||||
MOV r2, sp
|
||||
AND r2, r2, #4
|
||||
SUB sp, sp, r2
|
||||
|
||||
/* Call the interrupt handler. */
|
||||
PUSH {r0-r3, lr}
|
||||
BL vApplicationIRQHandler
|
||||
POP {r0-r3, lr}
|
||||
ADD sp, sp, r2
|
||||
|
||||
CPSID i
|
||||
|
||||
/* Write the value read from ICCIAR to ICCEOIR. */
|
||||
LDR r4, ulICCEOIRConst
|
||||
STR r0, [r4]
|
||||
|
||||
/* Restore the old nesting count. */
|
||||
STR r1, [r3]
|
||||
|
||||
/* A context switch is never performed if the nesting count is not 0. */
|
||||
CMP r1, #0
|
||||
BNE exit_without_switch
|
||||
|
||||
/* Did the interrupt request a context switch? r1 holds the address of
|
||||
ulPortYieldRequired and r0 the value of ulPortYieldRequired for future
|
||||
use. */
|
||||
LDR r1, =ulPortYieldRequired
|
||||
LDR r0, [r1]
|
||||
CMP r0, #0
|
||||
BNE switch_before_exit
|
||||
|
||||
exit_without_switch:
|
||||
/* No context switch. Restore used registers, LR_irq and SPSR before
|
||||
returning. */
|
||||
POP {r0-r4, r12}
|
||||
CPS #IRQ_MODE
|
||||
POP {LR}
|
||||
MSR SPSR_cxsf, LR
|
||||
POP {LR}
|
||||
MOVS PC, LR
|
||||
|
||||
switch_before_exit:
|
||||
/* A context swtich is to be performed. Clear the context switch pending
|
||||
flag. */
|
||||
MOV r0, #0
|
||||
STR r0, [r1]
|
||||
|
||||
/* Restore used registers, LR-irq and SPSR before saving the context
|
||||
to the task stack. */
|
||||
POP {r0-r4, r12}
|
||||
CPS #IRQ_MODE
|
||||
POP {LR}
|
||||
MSR SPSR_cxsf, LR
|
||||
POP {LR}
|
||||
// portSAVE_CONTEXT
|
||||
|
||||
/* Call the function that selects the new task to execute.
|
||||
vTaskSwitchContext() if vTaskSwitchContext() uses LDRD or STRD
|
||||
instructions, or 8 byte aligned stack allocated data. LR does not need
|
||||
saving as a new LR will be loaded by portRESTORE_CONTEXT anyway. */
|
||||
BL vTaskSwitchContext
|
||||
|
||||
/* Restore the context of, and branch to, the task selected to execute
|
||||
next. */
|
||||
// portRESTORE_CONTEXT
|
||||
|
||||
ulICCIARConst: .word ulICCIAR
|
||||
ulICCEOIRConst: .word ulICCEOIR
|
||||
|
||||
|
||||
Undefined:
|
||||
B .
|
||||
|
||||
PrefetchAbortHandler:
|
||||
B .
|
||||
|
||||
FIQHandler:
|
||||
B .
|
||||
|
||||
DataAbortHandler:
|
||||
B .
|
||||
|
||||
.end
|
||||
|
||||
|
||||
|
||||
|
||||
|
@ -0,0 +1,145 @@
|
||||
;/*
|
||||
; FreeRTOS V8.0.0:rc1 - Copyright (C) 2014 Real Time Engineers Ltd.
|
||||
; All rights reserved
|
||||
;
|
||||
;
|
||||
; ***************************************************************************
|
||||
; * *
|
||||
; * FreeRTOS tutorial books are available in pdf and paperback. *
|
||||
; * Complete, revised, and edited pdf reference manuals are also *
|
||||
; * available. *
|
||||
; * *
|
||||
; * Purchasing FreeRTOS documentation will not only help you, by *
|
||||
; * ensuring you get running as quickly as possible and with an *
|
||||
; * in-depth knowledge of how to use FreeRTOS, it will also help *
|
||||
; * the FreeRTOS project to continue with its mission of providing *
|
||||
; * professional grade, cross platform, de facto standard solutions *
|
||||
; * for microcontrollers - completely free of charge! *
|
||||
; * *
|
||||
; * >>> See http://www.FreeRTOS.org/Documentation for details. <<< *
|
||||
; * *
|
||||
; * Thank you for using FreeRTOS, and thank you for your support! *
|
||||
; * *
|
||||
; ***************************************************************************
|
||||
;
|
||||
;
|
||||
; This file is part of the FreeRTOS distribution.
|
||||
;
|
||||
; FreeRTOS is free software; you can redistribute it and/or modify it under
|
||||
; the terms of the GNU General Public License (version 2) as published by the
|
||||
; Free Software Foundation AND MODIFIED BY the FreeRTOS exception.
|
||||
; >>>NOTE<<< The modification to the GPL is included to allow you to
|
||||
; distribute a combined work that includes FreeRTOS without being obliged to
|
||||
; provide the source code for proprietary components outside of the FreeRTOS
|
||||
; kernel. FreeRTOS is distributed in the hope that it will be useful, but
|
||||
; WITHOUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY
|
||||
; or FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for
|
||||
; more details. You should have received a copy of the GNU General Public
|
||||
; License and the FreeRTOS license exception along with FreeRTOS; if not it
|
||||
; can be viewed here: http://www.freertos.org/a00114.html and also obtained
|
||||
; by writing to Richard Barry, contact details for whom are available on the
|
||||
; FreeRTOS WEB site.
|
||||
;
|
||||
; 1 tab == 4 spaces!
|
||||
;
|
||||
; http://www.FreeRTOS.org - Documentation, latest information, license and
|
||||
; contact details.
|
||||
;
|
||||
; http://www.SafeRTOS.com - A version that is certified for use in safety
|
||||
; critical systems.
|
||||
;
|
||||
; http://www.OpenRTOS.com - Commercial support, development, porting,
|
||||
; licensing and training services.
|
||||
;*/
|
||||
|
||||
EXTERN vTaskSwitchContext
|
||||
EXTERN ulCriticalNesting
|
||||
EXTERN pxCurrentTCB
|
||||
EXTERN ulPortTaskHasFPUContext
|
||||
EXTERN ulAsmAPIPriorityMask
|
||||
|
||||
portSAVE_CONTEXT macro
|
||||
|
||||
; Save the LR and SPSR onto the system mode stack before switching to
|
||||
; system mode to save the remaining system mode registers
|
||||
SRSDB sp!, #SYS_MODE
|
||||
CPS #SYS_MODE
|
||||
PUSH {R0-R12, R14}
|
||||
|
||||
; Push the critical nesting count
|
||||
LDR R2, =ulCriticalNesting
|
||||
LDR R1, [R2]
|
||||
PUSH {R1}
|
||||
|
||||
; Does the task have a floating point context that needs saving? If
|
||||
; ulPortTaskHasFPUContext is 0 then no.
|
||||
LDR R2, =ulPortTaskHasFPUContext
|
||||
LDR R3, [R2]
|
||||
CMP R3, #0
|
||||
|
||||
; Save the floating point context, if any
|
||||
FMRXNE R1, FPSCR
|
||||
VPUSHNE {D0-D15}
|
||||
VPUSHNE {D16-D31}
|
||||
PUSHNE {R1}
|
||||
|
||||
; Save ulPortTaskHasFPUContext itself
|
||||
PUSH {R3}
|
||||
|
||||
; Save the stack pointer in the TCB
|
||||
LDR R0, =pxCurrentTCB
|
||||
LDR R1, [R0]
|
||||
STR SP, [R1]
|
||||
|
||||
endm
|
||||
|
||||
; /**********************************************************************/
|
||||
|
||||
portRESTORE_CONTEXT macro
|
||||
|
||||
; Switch to system mode
|
||||
CPS #SYS_MODE
|
||||
|
||||
; Set the SP to point to the stack of the task being restored.
|
||||
LDR R0, =pxCurrentTCB
|
||||
LDR R1, [R0]
|
||||
LDR SP, [R1]
|
||||
|
||||
; Is there a floating point context to restore? If the restored
|
||||
; ulPortTaskHasFPUContext is zero then no.
|
||||
LDR R0, =ulPortTaskHasFPUContext
|
||||
POP {R1}
|
||||
STR R1, [R0]
|
||||
CMP R1, #0
|
||||
|
||||
; Restore the floating point context, if any
|
||||
LDMFDNE SP!, {R0}
|
||||
VPOPNE {D16-D31}
|
||||
VPOPNE {D0-D15}
|
||||
VMSRNE FPSCR, R0
|
||||
|
||||
; Restore the critical section nesting depth
|
||||
LDR R0, =ulCriticalNesting
|
||||
POP {R1}
|
||||
STR R1, [R0]
|
||||
|
||||
; Ensure the priority mask is correct for the critical nesting depth
|
||||
LDR R2, =portICCPMR_PRIORITY_MASK_REGISTER_ADDRESS
|
||||
CMP R1, #0
|
||||
MOVEQ R4, #255
|
||||
LDRNE R4, =( configMAX_API_CALL_INTERRUPT_PRIORITY << portPRIORITY_SHIFT )
|
||||
STR R4, [r2]
|
||||
|
||||
; Restore all system mode registers other than the SP (which is already
|
||||
; being used)
|
||||
POP {R0-R12, R14}
|
||||
|
||||
; Return to the task code, loading CPSR on the way.
|
||||
RFEIA sp!
|
||||
|
||||
endm
|
||||
|
||||
|
||||
|
||||
|
||||
|
@ -0,0 +1,226 @@
|
||||
/*
|
||||
FreeRTOS V8.0.0:rc1 - Copyright (C) 2014 Real Time Engineers Ltd.
|
||||
All rights reserved
|
||||
|
||||
VISIT http://www.FreeRTOS.org TO ENSURE YOU ARE USING THE LATEST VERSION.
|
||||
|
||||
***************************************************************************
|
||||
* *
|
||||
* FreeRTOS provides completely free yet professionally developed, *
|
||||
* robust, strictly quality controlled, supported, and cross *
|
||||
* platform software that has become a de facto standard. *
|
||||
* *
|
||||
* Help yourself get started quickly and support the FreeRTOS *
|
||||
* project by purchasing a FreeRTOS tutorial book, reference *
|
||||
* manual, or both from: http://www.FreeRTOS.org/Documentation *
|
||||
* *
|
||||
* Thank you! *
|
||||
* *
|
||||
***************************************************************************
|
||||
|
||||
This file is part of the FreeRTOS distribution.
|
||||
|
||||
FreeRTOS is free software; you can redistribute it and/or modify it under
|
||||
the terms of the GNU General Public License (version 2) as published by the
|
||||
Free Software Foundation >>!AND MODIFIED BY!<< the FreeRTOS exception.
|
||||
|
||||
>>! NOTE: The modification to the GPL is included to allow you to distribute
|
||||
>>! a combined work that includes FreeRTOS without being obliged to provide
|
||||
>>! the source code for proprietary components outside of the FreeRTOS
|
||||
>>! kernel.
|
||||
|
||||
FreeRTOS is distributed in the hope that it will be useful, but WITHOUT ANY
|
||||
WARRANTY; without even the implied warranty of MERCHANTABILITY or FITNESS
|
||||
FOR A PARTICULAR PURPOSE. Full license text is available from the following
|
||||
link: http://www.freertos.org/a00114.html
|
||||
|
||||
1 tab == 4 spaces!
|
||||
|
||||
***************************************************************************
|
||||
* *
|
||||
* Having a problem? Start by reading the FAQ "My application does *
|
||||
* not run, what could be wrong?" *
|
||||
* *
|
||||
* http://www.FreeRTOS.org/FAQHelp.html *
|
||||
* *
|
||||
***************************************************************************
|
||||
|
||||
http://www.FreeRTOS.org - Documentation, books, training, latest versions,
|
||||
license and Real Time Engineers Ltd. contact details.
|
||||
|
||||
http://www.FreeRTOS.org/plus - A selection of FreeRTOS ecosystem products,
|
||||
including FreeRTOS+Trace - an indispensable productivity tool, a DOS
|
||||
compatible FAT file system, and our tiny thread aware UDP/IP stack.
|
||||
|
||||
http://www.OpenRTOS.com - Real Time Engineers ltd license FreeRTOS to High
|
||||
Integrity Systems to sell under the OpenRTOS brand. Low cost OpenRTOS
|
||||
licenses offer ticketed support, indemnification and middleware.
|
||||
|
||||
http://www.SafeRTOS.com - High Integrity Systems also provide a safety
|
||||
engineered and independently SIL3 certified version for use in safety and
|
||||
mission critical applications that require provable dependability.
|
||||
|
||||
1 tab == 4 spaces!
|
||||
*/
|
||||
|
||||
#ifndef PORTMACRO_H
|
||||
#define PORTMACRO_H
|
||||
|
||||
#ifdef __cplusplus
|
||||
extern "C" {
|
||||
#endif
|
||||
|
||||
/*-----------------------------------------------------------
|
||||
* Port specific definitions.
|
||||
*
|
||||
* The settings in this file configure FreeRTOS correctly for the given hardware
|
||||
* and compiler.
|
||||
*
|
||||
* These settings should not be altered.
|
||||
*-----------------------------------------------------------
|
||||
*/
|
||||
|
||||
/* Type definitions. */
|
||||
#define portCHAR char
|
||||
#define portFLOAT float
|
||||
#define portDOUBLE double
|
||||
#define portLONG long
|
||||
#define portSHORT short
|
||||
#define portSTACK_TYPE uint32_t
|
||||
#define portBASE_TYPE long
|
||||
|
||||
typedef portSTACK_TYPE StackType_t;
|
||||
typedef long BaseType_t;
|
||||
typedef unsigned long UBaseType_t;
|
||||
|
||||
typedef uint32_t TickType_t;
|
||||
#define portMAX_DELAY ( TickType_t ) 0xffffffffUL
|
||||
|
||||
/*-----------------------------------------------------------*/
|
||||
|
||||
/* Hardware specifics. */
|
||||
#define portSTACK_GROWTH ( -1 )
|
||||
#define portTICK_PERIOD_MS ( ( TickType_t ) 1000 / configTICK_RATE_HZ )
|
||||
#define portBYTE_ALIGNMENT 8
|
||||
|
||||
/*-----------------------------------------------------------*/
|
||||
|
||||
/* Task utilities. */
|
||||
|
||||
/* Called at the end of an ISR that can cause a context switch. */
|
||||
#define portEND_SWITCHING_ISR( xSwitchRequired )\
|
||||
{ \
|
||||
extern uint32_t ulPortYieldRequired; \
|
||||
\
|
||||
if( xSwitchRequired != pdFALSE ) \
|
||||
{ \
|
||||
ulPortYieldRequired = pdTRUE; \
|
||||
} \
|
||||
}
|
||||
|
||||
#define portYIELD_FROM_ISR( x ) portEND_SWITCHING_ISR( x )
|
||||
#define portYIELD() __asm( "SWI 0" );
|
||||
|
||||
|
||||
/*-----------------------------------------------------------
|
||||
* Critical section control
|
||||
*----------------------------------------------------------*/
|
||||
|
||||
extern void vPortEnterCritical( void );
|
||||
extern void vPortExitCritical( void );
|
||||
extern uint32_t ulPortSetInterruptMask( void );
|
||||
extern void vPortClearInterruptMask( uint32_t ulNewMaskValue );
|
||||
|
||||
/* These macros do not globally disable/enable interrupts. They do mask off
|
||||
interrupts that have a priority below configMAX_API_CALL_INTERRUPT_PRIORITY. */
|
||||
#define portENTER_CRITICAL() vPortEnterCritical();
|
||||
#define portEXIT_CRITICAL() vPortExitCritical();
|
||||
#define portDISABLE_INTERRUPTS() ulPortSetInterruptMask()
|
||||
#define portENABLE_INTERRUPTS() vPortClearInterruptMask( 0 )
|
||||
#define portSET_INTERRUPT_MASK_FROM_ISR() ulPortSetInterruptMask()
|
||||
#define portCLEAR_INTERRUPT_MASK_FROM_ISR(x) vPortClearInterruptMask(x)
|
||||
|
||||
/*-----------------------------------------------------------*/
|
||||
|
||||
/* Task function macros as described on the FreeRTOS.org WEB site. These are
|
||||
not required for this port but included in case common demo code that uses these
|
||||
macros is used. */
|
||||
#define portTASK_FUNCTION_PROTO( vFunction, pvParameters ) void vFunction( void *pvParameters )
|
||||
#define portTASK_FUNCTION( vFunction, pvParameters ) void vFunction( void *pvParameters )
|
||||
|
||||
/* Prototype of the FreeRTOS tick handler. This must be installed as the
|
||||
handler for whichever peripheral is used to generate the RTOS tick. */
|
||||
void FreeRTOS_Tick_Handler( void );
|
||||
|
||||
/* Any task that uses the floating point unit MUST call vPortTaskUsesFPU()
|
||||
before any floating point instructions are executed. */
|
||||
void vPortTaskUsesFPU( void );
|
||||
#define portTASK_USES_FLOATING_POINT() vPortTaskUsesFPU()
|
||||
|
||||
#define portLOWEST_INTERRUPT_PRIORITY ( ( ( uint32_t ) configUNIQUE_INTERRUPT_PRIORITIES ) - 1UL )
|
||||
#define portLOWEST_USABLE_INTERRUPT_PRIORITY ( portLOWEST_INTERRUPT_PRIORITY - 1UL )
|
||||
|
||||
/* Architecture specific optimisations. */
|
||||
#if configUSE_PORT_OPTIMISED_TASK_SELECTION == 1
|
||||
|
||||
/* Store/clear the ready priorities in a bit map. */
|
||||
#define portRECORD_READY_PRIORITY( uxPriority, uxReadyPriorities ) ( uxReadyPriorities ) |= ( 1UL << ( uxPriority ) )
|
||||
#define portRESET_READY_PRIORITY( uxPriority, uxReadyPriorities ) ( uxReadyPriorities ) &= ~( 1UL << ( uxPriority ) )
|
||||
|
||||
/*-----------------------------------------------------------*/
|
||||
|
||||
#define portGET_HIGHEST_PRIORITY( uxTopPriority, uxReadyPriorities ) uxTopPriority = ( 31 - __builtin_clz( uxReadyPriorities ) )
|
||||
|
||||
#endif /* configUSE_PORT_OPTIMISED_TASK_SELECTION */
|
||||
|
||||
#ifdef configASSERT
|
||||
void vPortValidateInterruptPriority( void );
|
||||
#define portASSERT_IF_INTERRUPT_PRIORITY_INVALID() vPortValidateInterruptPriority()
|
||||
#endif /* configASSERT */
|
||||
|
||||
#define portNOP() __asm volatile( "NOP" )
|
||||
|
||||
|
||||
#ifdef __cplusplus
|
||||
} /* extern C */
|
||||
#endif
|
||||
|
||||
|
||||
/* The number of bits to shift for an interrupt priority is dependent on the
|
||||
number of bits implemented by the interrupt controller. */
|
||||
#if configUNIQUE_INTERRUPT_PRIORITIES == 16
|
||||
#define portPRIORITY_SHIFT 4
|
||||
#define portMAX_BINARY_POINT_VALUE 3
|
||||
#elif configUNIQUE_INTERRUPT_PRIORITIES == 32
|
||||
#define portPRIORITY_SHIFT 3
|
||||
#define portMAX_BINARY_POINT_VALUE 2
|
||||
#elif configUNIQUE_INTERRUPT_PRIORITIES == 64
|
||||
#define portPRIORITY_SHIFT 2
|
||||
#define portMAX_BINARY_POINT_VALUE 1
|
||||
#elif configUNIQUE_INTERRUPT_PRIORITIES == 128
|
||||
#define portPRIORITY_SHIFT 1
|
||||
#define portMAX_BINARY_POINT_VALUE 0
|
||||
#elif configUNIQUE_INTERRUPT_PRIORITIES == 256
|
||||
#define portPRIORITY_SHIFT 0
|
||||
#define portMAX_BINARY_POINT_VALUE 0
|
||||
#else
|
||||
#error Invalid configUNIQUE_INTERRUPT_PRIORITIES setting. configUNIQUE_INTERRUPT_PRIORITIES must be set to the number of unique priorities implemented by the target hardware
|
||||
#endif
|
||||
|
||||
/* Interrupt controller access addresses. */
|
||||
#define portICCPMR_PRIORITY_MASK_OFFSET ( 0x04 )
|
||||
#define portICCIAR_INTERRUPT_ACKNOWLEDGE_OFFSET ( 0x0C )
|
||||
#define portICCEOIR_END_OF_INTERRUPT_OFFSET ( 0x10 )
|
||||
#define portICCBPR_BINARY_POINT_OFFSET ( 0x08 )
|
||||
#define portICCRPR_RUNNING_PRIORITY_OFFSET ( 0x14 )
|
||||
|
||||
#define portINTERRUPT_CONTROLLER_CPU_INTERFACE_ADDRESS ( configINTERRUPT_CONTROLLER_BASE_ADDRESS + configINTERRUPT_CONTROLLER_CPU_INTERFACE_OFFSET )
|
||||
#define portICCPMR_PRIORITY_MASK_REGISTER ( *( ( volatile uint8_t * ) ( portINTERRUPT_CONTROLLER_CPU_INTERFACE_ADDRESS + portICCPMR_PRIORITY_MASK_OFFSET ) ) )
|
||||
#define portICCIAR_INTERRUPT_ACKNOWLEDGE_REGISTER_ADDRESS ( portINTERRUPT_CONTROLLER_CPU_INTERFACE_ADDRESS + portICCIAR_INTERRUPT_ACKNOWLEDGE_OFFSET )
|
||||
#define portICCEOIR_END_OF_INTERRUPT_REGISTER_ADDRESS ( portINTERRUPT_CONTROLLER_CPU_INTERFACE_ADDRESS + portICCEOIR_END_OF_INTERRUPT_OFFSET )
|
||||
#define portICCPMR_PRIORITY_MASK_REGISTER_ADDRESS ( portINTERRUPT_CONTROLLER_CPU_INTERFACE_ADDRESS + portICCPMR_PRIORITY_MASK_OFFSET )
|
||||
#define portICCBPR_BINARY_POINT_REGISTER ( *( ( const volatile uint32_t * ) ( portINTERRUPT_CONTROLLER_CPU_INTERFACE_ADDRESS + portICCBPR_BINARY_POINT_OFFSET ) ) )
|
||||
#define portICCRPR_RUNNING_PRIORITY_REGISTER ( *( ( const volatile uint8_t * ) ( portINTERRUPT_CONTROLLER_CPU_INTERFACE_ADDRESS + portICCRPR_RUNNING_PRIORITY_OFFSET ) ) )
|
||||
|
||||
#endif /* PORTMACRO_H */
|
||||
|
Loading…
Reference in New Issue