forked from Imagelibrary/rtems
* Jump table for single entry point removed. * include/rtems/directives.h, src/entrytable.c: Removed. * include/Makefile.am, src/Makefile.am, src/exinit.c: Modified to reflect above.
329 lines
7.9 KiB
C
329 lines
7.9 KiB
C
/*
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* Initialization Manager
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*
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* COPYRIGHT (c) 1989-1999.
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* On-Line Applications Research Corporation (OAR).
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*
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* The license and distribution terms for this file may be
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* found in the file LICENSE in this distribution or at
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* http://www.OARcorp.com/rtems/license.html.
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*
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* $Id$
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*/
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/*
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* SCORE_INIT and SAPI_INIT are defined so all of the super core and
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* super API data will be included in this object file.
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*/
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#define SAPI_INIT
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#define SCORE_INIT
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#include <rtems/system.h>
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#include <rtems/config.h>
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#include <rtems/debug.h>
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#include <rtems/extension.h>
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#include <rtems/fatal.h>
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#include <rtems/init.h>
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#include <rtems/io.h>
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#include <rtems/score/sysstate.h>
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#include <rtems/score/apiext.h>
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#include <rtems/score/apimutex.h>
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#include <rtems/score/copyrt.h>
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#include <rtems/score/heap.h>
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#include <rtems/score/interr.h>
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#include <rtems/score/isr.h>
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#if defined(RTEMS_MULTIPROCESSING)
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#include <rtems/score/mpci.h>
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#endif
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#include <rtems/score/priority.h>
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#include <rtems/score/thread.h>
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#include <rtems/score/tod.h>
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#include <rtems/score/userext.h>
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#include <rtems/score/watchdog.h>
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#include <rtems/score/wkspace.h>
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#include <rtems/sptables.h>
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#include <rtems/rtems/rtemsapi.h>
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#ifdef RTEMS_POSIX_API
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#include <rtems/posix/posixapi.h>
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#endif
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#ifdef RTEMS_ITRON_API
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#include <rtems/itron/itronapi.h>
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#endif
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Objects_Information *_Internal_Objects[ OBJECTS_INTERNAL_CLASSES_LAST + 1 ];
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/*PAGE
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*
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* rtems_initialize_executive
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*
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* This directive initializes all the kernels data structures
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* to the states necessary for the kernel to begin execution. All
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* include files that contain global variable definitions should be
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* included in this file. The system threads and initialization threads
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* are created and started by this routine. This routine then
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* initiates multithreading.
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*
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* Input parameters:
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* configuration_table - pointer to the user's configuration table
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* cpu_table - pointer to the user's CPU configuration table
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*
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* Output parameters: NONE
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*/
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void rtems_initialize_executive(
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rtems_configuration_table *configuration_table,
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rtems_cpu_table *cpu_table
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)
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{
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rtems_interrupt_level bsp_level;
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bsp_level = rtems_initialize_executive_early(configuration_table, cpu_table);
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rtems_initialize_executive_late( bsp_level );
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}
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rtems_interrupt_level rtems_initialize_executive_early(
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rtems_configuration_table *configuration_table,
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rtems_cpu_table *cpu_table
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)
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{
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rtems_interrupt_level bsp_level;
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rtems_multiprocessing_table *multiprocessing_table;
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/*
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* Dispatching and interrupts are disabled until the end of the
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* initialization sequence. This prevents an inadvertent context
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* switch before the executive is initialized.
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*/
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_ISR_Disable( bsp_level );
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if ( configuration_table == NULL )
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_Internal_error_Occurred(
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INTERNAL_ERROR_CORE,
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TRUE,
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INTERNAL_ERROR_NO_CONFIGURATION_TABLE
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);
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/*
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* Initialize the system state based on whether this is an MP system.
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*/
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#if defined(RTEMS_MULTIPROCESSING)
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multiprocessing_table = configuration_table->User_multiprocessing_table;
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_System_state_Handler_initialization(
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(multiprocessing_table) ? TRUE : FALSE
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);
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#else
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multiprocessing_table = NULL;
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_System_state_Handler_initialization( FALSE );
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#endif
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/*
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* Provided just for user convenience.
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*/
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_Configuration_Table = configuration_table;
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_Configuration_MP_table = multiprocessing_table;
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/*
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* Internally we view single processor systems as a very restricted
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* multiprocessor system.
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*/
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if ( multiprocessing_table == NULL )
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multiprocessing_table =
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(void *)&_Initialization_Default_multiprocessing_table;
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if ( cpu_table == NULL )
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_Internal_error_Occurred(
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INTERNAL_ERROR_CORE,
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TRUE,
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INTERNAL_ERROR_NO_CPU_TABLE
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);
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_CPU_Initialize( cpu_table, _Thread_Dispatch );
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/*
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* Do this as early as possible to insure no debugging output
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* is even attempted to be printed.
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*/
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_Debug_Manager_initialization();
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_API_extensions_Initialization();
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_Thread_Dispatch_initialization();
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_Workspace_Handler_initialization(
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(void *)configuration_table->work_space_start,
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configuration_table->work_space_size
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);
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_User_extensions_Handler_initialization(
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configuration_table->number_of_initial_extensions,
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configuration_table->User_extension_table
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);
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_ISR_Handler_initialization();
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_Objects_Handler_initialization(
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multiprocessing_table->node,
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multiprocessing_table->maximum_nodes,
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multiprocessing_table->maximum_global_objects
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);
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_Objects_Information_table[OBJECTS_INTERNAL_API] = _Internal_Objects;
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_Priority_Handler_initialization();
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_Watchdog_Handler_initialization();
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_TOD_Handler_initialization( configuration_table->microseconds_per_tick );
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_Thread_Handler_initialization(
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configuration_table->ticks_per_timeslice,
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configuration_table->maximum_extensions,
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multiprocessing_table->maximum_proxies
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);
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#if defined(RTEMS_MULTIPROCESSING)
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_MPCI_Handler_initialization(
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multiprocessing_table->User_mpci_table,
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RTEMS_TIMEOUT
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);
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#endif
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/* MANAGERS */
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_RTEMS_API_Initialize( configuration_table );
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_Extension_Manager_initialization( configuration_table->maximum_extensions );
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_IO_Manager_initialization(
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configuration_table->Device_driver_table,
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configuration_table->number_of_device_drivers,
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configuration_table->maximum_drivers,
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configuration_table->maximum_devices
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);
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#ifdef RTEMS_POSIX_API
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_POSIX_API_Initialize( configuration_table );
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#endif
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#ifdef RTEMS_ITRON_API
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_ITRON_API_Initialize( configuration_table );
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#endif
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_System_state_Set( SYSTEM_STATE_BEFORE_MULTITASKING );
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/*
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* No threads should be created before this point!!!
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* _Thread_Executing and _Thread_Heir are not set.
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*
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* At this point all API extensions are in place. After the call to
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* _Thread_Create_idle() _Thread_Executing and _Thread_Heir will be set.
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*/
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_Thread_Create_idle();
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/*
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* Scheduling can properly occur now as long as we avoid dispatching.
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*/
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if ( cpu_table->pretasking_hook )
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(*cpu_table->pretasking_hook)();
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#if defined(RTEMS_MULTIPROCESSING)
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_MPCI_Create_server();
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#endif
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/*
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* Run the API and BSPs predriver hook.
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*/
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_API_extensions_Run_predriver();
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if ( _CPU_Table.predriver_hook )
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(*_CPU_Table.predriver_hook)();
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/*
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* Initialize all the device drivers and initialize the MPCI layer.
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*
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* NOTE: The MPCI may be build upon a device driver.
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*/
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_IO_Initialize_all_drivers();
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#if defined(RTEMS_MULTIPROCESSING)
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if ( _System_state_Is_multiprocessing ) {
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_MPCI_Initialization();
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_MPCI_Internal_packets_Send_process_packet(
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MPCI_PACKETS_SYSTEM_VERIFY
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);
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}
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#endif
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/*
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* Run the APIs and BSPs postdriver hooks.
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*
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* The API extensions are supposed to create user initialization tasks.
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*/
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_API_extensions_Run_postdriver();
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if ( _CPU_Table.postdriver_hook )
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(*_CPU_Table.postdriver_hook)();
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return bsp_level;
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}
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void rtems_initialize_executive_late(
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rtems_interrupt_level bsp_level
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)
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{
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_System_state_Set( SYSTEM_STATE_BEGIN_MULTITASKING );
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_Thread_Start_multitasking();
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/*
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* Restore the interrupt level to what the BSP had. Technically,
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* this is unnecessary since the BSP should have all interrupts
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* disabled when rtems_initialize_executive is invoked. But this keeps
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* the ISR Disable/Enable calls paired.
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*/
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_ISR_Enable( bsp_level );
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}
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/*PAGE
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*
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* rtems_shutdown_executive
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*
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* This kernel routine shutdowns the executive. It halts multitasking
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* and returns control to the application execution "thread" which
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* initialially invoked the rtems_initialize_executive directive.
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*
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* Input parameters: NONE
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*
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* Output parameters: NONE
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*/
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void rtems_shutdown_executive(
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unsigned32 result
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)
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{
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if ( _System_state_Current != SYSTEM_STATE_SHUTDOWN ) {
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_System_state_Set( SYSTEM_STATE_SHUTDOWN );
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_Thread_Stop_multitasking();
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}
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}
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