forked from Imagelibrary/rtems
Use interrupt critical section test support. Do not print end of test message in case of failure.
171 lines
3.8 KiB
C
171 lines
3.8 KiB
C
/*
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* Classic API Signal to Task from ISR
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*
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* COPYRIGHT (c) 1989-2011.
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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.rtems.org/license/LICENSE.
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*/
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#ifdef HAVE_CONFIG_H
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#include "config.h"
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#endif
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#define CONFIGURE_INIT
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#include "system.h"
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#include <intrcritical.h>
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#include <rtems/rtems/eventimpl.h>
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const char rtems_test_name[] = "SPINTRCRITICAL 21";
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/*
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* ERROR CHECKING NOTE:
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*
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* We are either at dispatch disable level 1 or 2. Either way, it is
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* safer not to check the dispatch level explicitly so we are using
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* fatal_directive_check_status_only() not directive_failed().
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*/
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static volatile bool case_hit;
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static rtems_id main_task;
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static rtems_id other_task;
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static rtems_timer_service_routine test_event_from_isr(
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rtems_id timer,
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void *arg
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)
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{
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rtems_status_code status;
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if ( _Event_Sync_state == THREAD_BLOCKING_OPERATION_NOTHING_HAPPENED ) {
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/*
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* This event send hits the critical section but sends to
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* another task so doesn't impact this critical section.
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*/
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status = rtems_event_send( other_task, 0x02 );
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fatal_directive_check_status_only( status, RTEMS_SUCCESSFUL, "event send" );
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/*
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* This event send hits the main task but doesn't satisfy
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* it's blocking condition so it will still block
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*/
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status = rtems_event_send( main_task, 0x02 );
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fatal_directive_check_status_only( status, RTEMS_SUCCESSFUL, "event send" );
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case_hit = true;
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}
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status = rtems_event_send( main_task, 0x01 );
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fatal_directive_check_status_only( status, RTEMS_SUCCESSFUL, "event send" );
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}
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static bool test_body_event_from_isr( void *arg )
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{
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rtems_status_code status;
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rtems_event_set out;
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(void) arg;
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status = rtems_event_receive( 0x01, RTEMS_DEFAULT_OPTIONS, 0, &out );
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rtems_test_assert( status == RTEMS_SUCCESSFUL );
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return case_hit;
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}
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static rtems_timer_service_routine test_event_with_timeout_from_isr(
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rtems_id timer,
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void *arg
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)
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{
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rtems_status_code status;
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if ( _Event_Sync_state == THREAD_BLOCKING_OPERATION_NOTHING_HAPPENED ) {
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/*
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* We want to catch the task while it is blocking. Otherwise
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* just send and make it happy.
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*/
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case_hit = true;
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}
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status = rtems_event_send( main_task, 0x01 );
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fatal_directive_check_status_only( status, RTEMS_SUCCESSFUL, "event send" );
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}
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static bool test_body_event_with_timeout_from_isr( void *arg )
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{
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rtems_status_code status;
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rtems_event_set out;
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(void) arg;
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status = rtems_event_receive( 0x01, RTEMS_DEFAULT_OPTIONS, 1, &out );
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rtems_test_assert( status == RTEMS_SUCCESSFUL || status == RTEMS_TIMEOUT );
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return case_hit;
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}
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rtems_task Init(
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rtems_task_argument argument
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)
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{
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rtems_status_code status;
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TEST_BEGIN();
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main_task = rtems_task_self();
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status = rtems_task_create(
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0xa5a5a5a5,
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1,
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RTEMS_MINIMUM_STACK_SIZE,
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RTEMS_DEFAULT_MODES,
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RTEMS_DEFAULT_ATTRIBUTES,
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&other_task
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);
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directive_failed( status, "rtems_task_create" );
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/*
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* Test Event send successful from ISR -- receive is forever
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*/
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case_hit = false;
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interrupt_critical_section_test(
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test_body_event_from_isr,
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NULL,
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test_event_from_isr
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);
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printf(
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"Event sent from ISR hitting synchronization point has %soccurred\n",
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case_hit ? "" : "NOT "
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);
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rtems_test_assert( case_hit );
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/*
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* Test Event send successful from ISR -- receive has timeout
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*/
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case_hit = false;
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interrupt_critical_section_test(
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test_body_event_with_timeout_from_isr,
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NULL,
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test_event_with_timeout_from_isr
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);
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printf(
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"Event sent from ISR (with timeout) hitting synchronization "
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"point has %soccurred\n",
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case_hit ? "" : "NOT "
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);
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rtems_test_assert( case_hit );
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TEST_END();
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rtems_test_exit( 0 );
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}
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