Mercurial > flash_v2
view packages/kernel/current/tests/klock.c @ 126:518f42066aba ecos-sw-2000-09-19
Merge from eCos master repository on 2000-09-19-06:25:26-BST
| author | jlarmour |
|---|---|
| date | Tue, 19 Sep 2000 05:53:51 +0000 |
| parents | 0ec04793409a |
| children | 0ae0bc38e387 |
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/*================================================================= // // kthread1.c // // Kernel C API Thread test 1 // //========================================================================== //####COPYRIGHTBEGIN#### // // ------------------------------------------- // The contents of this file are subject to the Red Hat eCos Public License // Version 1.1 (the "License"); you may not use this file except in // compliance with the License. You may obtain a copy of the License at // http://www.redhat.com/ // // Software distributed under the License is distributed on an "AS IS" // basis, WITHOUT WARRANTY OF ANY KIND, either express or implied. See the // License for the specific language governing rights and limitations under // the License. // // The Original Code is eCos - Embedded Configurable Operating System, // released September 30, 1998. // // The Initial Developer of the Original Code is Red Hat. // Portions created by Red Hat are // Copyright (C) 1998, 1999, 2000 Red Hat, Inc. // All Rights Reserved. // ------------------------------------------- // //####COPYRIGHTEND#### //========================================================================== //#####DESCRIPTIONBEGIN#### // // Author(s): dsm // Contributors: dsm // Date: 1998-03-18 // Description: Tests some basic thread functions. //####DESCRIPTIONEND#### */ //========================================================================== #include <cyg/kernel/kapi.h> #include <cyg/infra/testcase.h> //========================================================================== #ifdef CYGFUN_KERNEL_API_C //========================================================================== #include "testaux.h" #include <cyg/hal/hal_arch.h> // for CYGNUM_HAL_STACK_SIZE_TYPICAL //========================================================================== #ifdef CYGNUM_HAL_STACK_SIZE_TYPICAL #define STACKSIZE CYGNUM_HAL_STACK_SIZE_TYPICAL #else #define STACKSIZE 2000 #endif //========================================================================== static char stack[2][STACKSIZE]; static cyg_thread thread[2]; static cyg_handle_t pt0,pt1; static cyg_mutex_t mx; static cyg_cond_t cv; static cyg_sem_t sem; static cyg_flag_t fl; static cyg_mbox mbox; static cyg_handle_t mbh; volatile static int thread0_state = 0; volatile static int thread1_state = 0; //========================================================================== static void entry0( cyg_addrword_t data ) { void *mbret; CHECK( 222 == (int)data ); // Do everything with the scheduler locked. cyg_scheduler_lock(); // -------------------------------------------------- // Mutex test cyg_mutex_lock( &mx ); thread0_state = 1; // Get thread 2 running. cyg_thread_resume(pt1); thread0_state = 2; cyg_cond_wait( &cv ); thread0_state = 3; while( thread1_state < 2 ) cyg_thread_yield(); cyg_cond_broadcast( &cv ); thread0_state = 4; cyg_mutex_unlock( &mx ); thread0_state = 5; // -------------------------------------------------- // Semaphore test cyg_semaphore_wait( &sem ); thread0_state = 6; cyg_semaphore_post( &sem ); thread0_state = 7; while( thread1_state < 7 ) cyg_thread_yield(); // -------------------------------------------------- // Flags test cyg_flag_wait( &fl, 1, CYG_FLAG_WAITMODE_OR|CYG_FLAG_WAITMODE_CLR); thread0_state = 8; cyg_flag_setbits( &fl, 2 ); thread0_state = 9; // -------------------------------------------------- // Message box test mbret = cyg_mbox_get( mbh ); CYG_TEST_CHECK( mbret == (void *)0xAAAAAAAA , "bad result from cyg_mbox_timed_get()"); thread0_state = 10; cyg_mbox_put( mbh, (void *)0xBBBBBBBB ); thread0_state = 11; // -------------------------------------------------- thread0_state = 999; cyg_thread_yield(); cyg_thread_yield(); cyg_thread_yield(); CYG_TEST_CHECK( thread0_state == 999, "thread 0 not in exit state"); CYG_TEST_CHECK( thread1_state == 999, "thread 1 not in exit state"); CYG_TEST_PASS_FINISH("Kernel C API Thread 1 OK"); } //========================================================================== static void entry1( cyg_addrword_t data ) { cyg_bool res; void *mbret; CHECK( 333 == (int)data ); // Do everything with the scheduler locked. cyg_scheduler_lock(); // -------------------------------------------------- // Mutex test cyg_mutex_lock( &mx ); thread1_state = 1; while( thread0_state < 2 ) cyg_thread_yield(); cyg_cond_signal( &cv ); thread1_state = 2; res = cyg_cond_timed_wait( &cv, cyg_current_time()+10 ); CYG_TEST_CHECK( res , "FALSE result from cyg_cond_timed_wait()" ); thread1_state = 3; cyg_mutex_unlock( &mx ); thread1_state = 4; // -------------------------------------------------- // Semaphore test while( thread0_state < 5 ) cyg_thread_yield(); cyg_semaphore_post( &sem ); thread1_state = 5; while( thread0_state < 6 ) cyg_thread_yield(); thread1_state = 6; res = cyg_semaphore_timed_wait( &sem, cyg_current_time()+10 ); CYG_TEST_CHECK( res , "FALSE result from cyg_semaphore_timed_wait()" ); thread1_state = 7; // -------------------------------------------------- // Flags test cyg_flag_setbits( &fl, 1 ); thread1_state = 8; cyg_flag_timed_wait( &fl, 2, CYG_FLAG_WAITMODE_OR|CYG_FLAG_WAITMODE_CLR, cyg_current_time()+10 ); thread1_state = 9; // -------------------------------------------------- // Message box test cyg_mbox_timed_put( mbh, (void *)0xAAAAAAAA, cyg_current_time()+10 ); thread1_state = 10; mbret = cyg_mbox_timed_get( mbh, cyg_current_time()+10); CYG_TEST_CHECK( mbret == (void *)0xBBBBBBBB , "bad result from cyg_mbox_timed_get()"); thread1_state = 9; // -------------------------------------------------- thread1_state = 999; cyg_thread_exit(); } //========================================================================== void kthread1_main( void ) { CYG_TEST_INIT(); cyg_thread_create(4, entry0, (cyg_addrword_t)222, "kthread1-0", (void *)stack[0], STACKSIZE, &pt0, &thread[0] ); cyg_thread_create(4, entry1, (cyg_addrword_t)333, "kthread1-1", (void *)stack[1], STACKSIZE, &pt1, &thread[1] ); // Init all the objects cyg_mutex_init( &mx ); cyg_cond_init( &cv, &mx ); cyg_semaphore_init( &sem, 0 ); cyg_flag_init( &fl ); cyg_mbox_create( &mbh, &mbox ); cyg_thread_resume(pt0); cyg_scheduler_start(); CYG_TEST_FAIL_FINISH("Not reached"); } //========================================================================== externC void cyg_start( void ) { kthread1_main(); } //========================================================================== #else /* def CYGFUN_KERNEL_API_C */ //========================================================================== externC void cyg_start( void ) { CYG_TEST_INIT(); CYG_TEST_NA("Kernel C API layer disabled"); } //========================================================================== #endif /* def CYGFUN_KERNEL_API_C */ //========================================================================== /* EOF kthread1.c */
