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239 lines
7.4 KiB
C
239 lines
7.4 KiB
C
/*
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* FreeRTOS Kernel <DEVELOPMENT BRANCH>
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* Copyright (C) 2021 Amazon.com, Inc. or its affiliates. All Rights Reserved.
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*
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* SPDX-License-Identifier: MIT
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*
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* Permission is hereby granted, free of charge, to any person obtaining a copy of
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* this software and associated documentation files (the "Software"), to deal in
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* the Software without restriction, including without limitation the rights to
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* use, copy, modify, merge, publish, distribute, sublicense, and/or sell copies of
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* the Software, and to permit persons to whom the Software is furnished to do so,
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* subject to the following conditions:
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*
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* The above copyright notice and this permission notice shall be included in all
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* copies or substantial portions of the Software.
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*
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* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
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* IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, FITNESS
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* FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR
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* COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER
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* IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN
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* CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE.
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*
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* https://www.FreeRTOS.org
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* https://github.com/FreeRTOS
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*
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*/
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/* Scheduler includes. */
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#include "FreeRTOS.h"
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#include "task.h"
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/*-----------------------------------------------------------
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* Implementation of functions defined in portable.h for the HCS12 port.
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*----------------------------------------------------------*/
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/*
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* Configure a timer to generate the RTOS tick at the frequency specified
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* within FreeRTOSConfig.h.
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*/
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static void prvSetupTimerInterrupt( void );
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/* Interrupt service routines have to be in non-banked memory - as does the
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scheduler startup function. */
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#pragma CODE_SEG __NEAR_SEG NON_BANKED
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/* Manual context switch function. This is the SWI ISR. */
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void interrupt vPortYield( void );
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/* Tick context switch function. This is the timer ISR. */
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void interrupt vPortTickInterrupt( void );
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/* Simply called by xPortStartScheduler(). xPortStartScheduler() does not
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start the scheduler directly because the header file containing the
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xPortStartScheduler() prototype is part of the common kernel code, and
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therefore cannot use the CODE_SEG pragma. */
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static BaseType_t xBankedStartScheduler( void );
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#pragma CODE_SEG DEFAULT
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/* Calls to portENTER_CRITICAL() can be nested. When they are nested the
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critical section should not be left (i.e. interrupts should not be re-enabled)
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until the nesting depth reaches 0. This variable simply tracks the nesting
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depth. Each task maintains it's own critical nesting depth variable so
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uxCriticalNesting is saved and restored from the task stack during a context
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switch. */
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volatile UBaseType_t uxCriticalNesting = 0xff;
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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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/*
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Place a few bytes of known values on the bottom of the stack.
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This can be uncommented to provide useful stack markers when debugging.
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*pxTopOfStack = ( StackType_t ) 0x11;
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pxTopOfStack--;
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*pxTopOfStack = ( StackType_t ) 0x22;
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pxTopOfStack--;
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*pxTopOfStack = ( StackType_t ) 0x33;
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pxTopOfStack--;
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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. In this case the stack as
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expected by the HCS12 RTI instruction. */
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/* The address of the task function is placed in the stack byte at a time. */
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*pxTopOfStack = ( StackType_t ) *( ((StackType_t *) (&pxCode) ) + 1 );
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pxTopOfStack--;
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*pxTopOfStack = ( StackType_t ) *( ((StackType_t *) (&pxCode) ) + 0 );
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pxTopOfStack--;
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/* Next are all the registers that form part of the task context. */
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/* Y register */
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*pxTopOfStack = ( StackType_t ) 0xff;
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pxTopOfStack--;
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*pxTopOfStack = ( StackType_t ) 0xee;
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pxTopOfStack--;
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/* X register */
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*pxTopOfStack = ( StackType_t ) 0xdd;
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pxTopOfStack--;
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*pxTopOfStack = ( StackType_t ) 0xcc;
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pxTopOfStack--;
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/* A register contains parameter high byte. */
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*pxTopOfStack = ( StackType_t ) *( ((StackType_t *) (&pvParameters) ) + 0 );
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pxTopOfStack--;
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/* B register contains parameter low byte. */
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*pxTopOfStack = ( StackType_t ) *( ((StackType_t *) (&pvParameters) ) + 1 );
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pxTopOfStack--;
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/* CCR: Note that when the task starts interrupts will be enabled since
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"I" bit of CCR is cleared */
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*pxTopOfStack = ( StackType_t ) 0x00;
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pxTopOfStack--;
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#ifdef BANKED_MODEL
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/* The page of the task. */
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*pxTopOfStack = ( StackType_t ) ( ( int ) pxCode );
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pxTopOfStack--;
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#endif
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/* Finally the critical nesting depth is initialised with 0 (not within
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a critical section). */
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*pxTopOfStack = ( StackType_t ) 0x00;
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return pxTopOfStack;
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}
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/*-----------------------------------------------------------*/
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void vPortEndScheduler( void )
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{
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/* It is unlikely that the HCS12 port will get stopped. */
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}
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/*-----------------------------------------------------------*/
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static void prvSetupTimerInterrupt( void )
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{
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TickTimer_SetFreqHz( configTICK_RATE_HZ );
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TickTimer_Enable();
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}
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/*-----------------------------------------------------------*/
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BaseType_t xPortStartScheduler( void )
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{
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/* xPortStartScheduler() does not start the scheduler directly because
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the header file containing the xPortStartScheduler() prototype is part
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of the common kernel code, and therefore cannot use the CODE_SEG pragma.
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Instead it simply calls the locally defined xBankedStartScheduler() -
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which does use the CODE_SEG pragma. */
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return xBankedStartScheduler();
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}
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/*-----------------------------------------------------------*/
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#pragma CODE_SEG __NEAR_SEG NON_BANKED
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static BaseType_t xBankedStartScheduler( void )
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{
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/* Configure the timer that will generate the RTOS tick. Interrupts are
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disabled when this function is called. */
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prvSetupTimerInterrupt();
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/* Restore the context of the first task. */
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portRESTORE_CONTEXT();
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/* Simulate the end of an interrupt to start the scheduler off. */
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__asm( "rti" );
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/* Should not get here! */
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return pdFALSE;
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}
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/*-----------------------------------------------------------*/
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/*
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* Context switch functions. These are both interrupt service routines.
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*/
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/*
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* Manual context switch forced by calling portYIELD(). This is the SWI
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* handler.
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*/
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void interrupt vPortYield( void )
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{
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portSAVE_CONTEXT();
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vTaskSwitchContext();
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portRESTORE_CONTEXT();
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}
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/*-----------------------------------------------------------*/
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/*
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* RTOS tick interrupt service routine. If the cooperative scheduler is
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* being used then this simply increments the tick count. If the
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* preemptive scheduler is being used a context switch can occur.
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*/
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void interrupt vPortTickInterrupt( void )
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{
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#if configUSE_PREEMPTION == 1
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{
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/* A context switch might happen so save the context. */
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portSAVE_CONTEXT();
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/* Increment the tick ... */
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if( xTaskIncrementTick() != pdFALSE )
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{
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vTaskSwitchContext();
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}
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TFLG1 = 1;
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/* Restore the context of a task - which may be a different task
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to that interrupted. */
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portRESTORE_CONTEXT();
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}
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#else
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{
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xTaskIncrementTick();
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TFLG1 = 1;
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}
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#endif
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}
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#pragma CODE_SEG DEFAULT
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