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[/] [openrisc/] [trunk/] [rtos/] [ecos-2.0/] [packages/] [services/] [memalloc/] [common/] [v2_0/] [tests/] [kmemvar1.c] - Blame information for rev 174

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/*==========================================================================
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//
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//        kmemvar1.cxx
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//
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//        Kernel C API Variable memory pool test 1
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//
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//==========================================================================
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//####ECOSGPLCOPYRIGHTBEGIN####
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// -------------------------------------------
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// This file is part of eCos, the Embedded Configurable Operating System.
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// Copyright (C) 1998, 1999, 2000, 2001, 2002 Red Hat, Inc.
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//
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// eCos is free software; you can redistribute it and/or modify it under
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// the terms of the GNU General Public License as published by the Free
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// Software Foundation; either version 2 or (at your option) any later version.
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//
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// eCos 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
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// FITNESS FOR A PARTICULAR PURPOSE.  See the GNU General Public License
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// for more details.
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//
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// You should have received a copy of the GNU General Public License along
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// with eCos; if not, write to the Free Software Foundation, Inc.,
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// 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA.
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//
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// As a special exception, if other files instantiate templates or use macros
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// or inline functions from this file, or you compile this file and link it
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// with other works to produce a work based on this file, this file does not
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// by itself cause the resulting work to be covered by the GNU General Public
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// License. However the source code for this file must still be made available
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// in accordance with section (3) of the GNU General Public License.
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//
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// This exception does not invalidate any other reasons why a work based on
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// this file might be covered by the GNU General Public License.
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//
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// Alternative licenses for eCos may be arranged by contacting Red Hat, Inc.
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// at http://sources.redhat.com/ecos/ecos-license/
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// -------------------------------------------
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//####ECOSGPLCOPYRIGHTEND####
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//==========================================================================
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//#####DESCRIPTIONBEGIN####
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//
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// Author(s):     dsm
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// Contributors:  dsm
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// Date:          1998-06-08
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// Description:   Tests basic variable memory pool functionality
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//####DESCRIPTIONEND####
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*/
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#include <pkgconf/memalloc.h>
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#include <cyg/infra/testcase.h>
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#ifdef CYGFUN_MEMALLOC_KAPI
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#include <cyg/hal/hal_arch.h>           // CYGNUM_HAL_STACK_SIZE_TYPICAL
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#include <pkgconf/kernel.h>
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#include <cyg/kernel/kapi.h>
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#define NTHREADS 2
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#define STACKSIZE CYGNUM_HAL_STACK_SIZE_TYPICAL
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static cyg_handle_t thread[NTHREADS];
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static cyg_thread thread_obj[NTHREADS];
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static char stack[NTHREADS][STACKSIZE];
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#define MEMSIZE 10240
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static cyg_uint8 mem[2][MEMSIZE];
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static cyg_mempool_var mempool_obj[2];
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static cyg_handle_t mempool0, mempool1;
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static void check_in_mp0(cyg_uint8 *p, cyg_int32 size)
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{
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    CYG_TEST_CHECK(NULL != p,
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                   "Allocation failed");
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    CYG_TEST_CHECK(mem[0] <= p && p+size < mem[1],
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                   "Block outside memory pool");
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}
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static void entry0( cyg_addrword_t data )
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{
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    cyg_uint8 *p0, *p1;
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    cyg_int32 most_of_mem=MEMSIZE/4*3;
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    cyg_mempool_info info0, info1, info2;
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    cyg_mempool_var_get_info(mempool0, &info0);
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    CYG_TEST_CHECK(mem[0] == info0.base, "get_arena: base wrong");
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    CYG_TEST_CHECK(MEMSIZE == info0.size, "get_arena: size wrong");
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    CYG_TEST_CHECK(0 < info0.maxfree && info0.maxfree <= info0.size,
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                   "get_arena: maxfree wildly wrong");
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    CYG_TEST_CHECK(-1 == info0.blocksize, "get_blocksize wrong" );
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    CYG_TEST_CHECK(info0.totalmem > 0, "Negative total memory" );
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    CYG_TEST_CHECK(info0.freemem > 0, "Negative free memory" );
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    CYG_TEST_CHECK(info0.totalmem <= MEMSIZE,
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                   "info.totalsize: Too much memory");
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    CYG_TEST_CHECK(info0.freemem <= info0.totalmem ,
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                   "More memory free than possible" );
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    CYG_TEST_CHECK( !cyg_mempool_var_waiting(mempool0),
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                    "Thread waiting for memory; there shouldn't be");
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    CYG_TEST_CHECK( NULL == cyg_mempool_var_try_alloc(mempool0, MEMSIZE+1),
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                    "Managed to allocate too much memory");
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#ifdef CYGSEM_MEMALLOC_ALLOCATOR_VARIABLE_THREADAWARE
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    p0 = cyg_mempool_var_alloc(mempool0, most_of_mem);
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    check_in_mp0(p0, most_of_mem);
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    cyg_mempool_var_get_info(mempool0, &info1);
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    CYG_TEST_CHECK(info1.freemem > 0, "Negative free memory" );
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    CYG_TEST_CHECK(info1.freemem < info0.freemem,
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                   "Free memory didn't decrease after allocation" );
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    CYG_TEST_CHECK( NULL == cyg_mempool_var_try_alloc(mempool0, most_of_mem),
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                    "Managed to allocate too much memory");
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    cyg_mempool_var_free(mempool0, p0);
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    cyg_mempool_var_get_info(mempool0, &info2);
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    CYG_TEST_CHECK(info2.freemem > info1.freemem,
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                   "Free memory didn't increase after free" );
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#endif
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    // should be able to reallocate now memory is free
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    p0 = cyg_mempool_var_try_alloc(mempool0, most_of_mem);
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    check_in_mp0(p0, most_of_mem);
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    p1 = cyg_mempool_var_try_alloc(mempool0, 10);
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    check_in_mp0(p1, 10);
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    CYG_TEST_CHECK(p1+10 <= p0 || p1 >= p0+MEMSIZE,
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                   "Ranges of allocated memory overlap");
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    cyg_mempool_var_free(mempool0, p0);
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    cyg_mempool_var_free(mempool0, p1);
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#ifdef CYGSEM_MEMALLOC_ALLOCATOR_VARIABLE_THREADAWARE
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# ifdef CYGFUN_KERNEL_THREADS_TIMER
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    // This shouldn't have to wait
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    p0 = cyg_mempool_var_timed_alloc(mempool0, most_of_mem,
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                                     cyg_current_time()+100000);
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    check_in_mp0(p0, most_of_mem);
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    p1 = cyg_mempool_var_timed_alloc(mempool0, most_of_mem,
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                                     cyg_current_time()+2);
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    CYG_TEST_CHECK(NULL == p1, "Timed alloc unexpectedly worked");
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    p1 = cyg_mempool_var_timed_alloc(mempool0, 10,
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                                     cyg_current_time()+2);
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    check_in_mp0(p1, 10);
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    // Expect thread 1 to have run while processing previous timed
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    // allocation.  It should therefore tbe waiting.
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    CYG_TEST_CHECK(cyg_mempool_var_waiting(mempool1), "There should be a thread waiting");
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# endif
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#endif
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    CYG_TEST_PASS_FINISH("Kernel C API Variable memory pool 1 OK");
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}
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#ifdef CYGSEM_MEMALLOC_ALLOCATOR_VARIABLE_THREADAWARE
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static void entry1( cyg_addrword_t data )
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{
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    cyg_mempool_var_alloc(mempool1, MEMSIZE+1);
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    CYG_TEST_FAIL("Oversized alloc returned");
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}
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#endif
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void kmemvar1_main( void )
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{
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    CYG_TEST_INIT();
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    CYG_TEST_INFO("Starting Kernel C API Variable memory pool 1 test");
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    cyg_thread_create(4, entry0 , (cyg_addrword_t)0, "kmemvar1-0",
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        (void *)stack[0], STACKSIZE, &thread[0], &thread_obj[0]);
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    cyg_thread_resume(thread[0]);
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#ifdef CYGSEM_MEMALLOC_ALLOCATOR_VARIABLE_THREADAWARE
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    cyg_thread_create(4, entry1 , (cyg_addrword_t)1, "kmemvar1-1",
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        (void *)stack[1], STACKSIZE, &thread[1], &thread_obj[1]);
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    cyg_thread_resume(thread[1]);
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#endif
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    cyg_mempool_var_create(mem[0], MEMSIZE, &mempool0, &mempool_obj[0]);
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    cyg_mempool_var_create(mem[1], MEMSIZE, &mempool1, &mempool_obj[1]);
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    cyg_scheduler_start();
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    CYG_TEST_FAIL_FINISH("Not reached");
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}
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externC void
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cyg_start( void )
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{
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    kmemvar1_main();
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}
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#else /* ifdef CYGFUN_MEMALLOC_KAPI */
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externC void
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cyg_start( void )
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{
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    CYG_TEST_INIT();
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    CYG_TEST_NA("Kernel C API layer disabled");
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}
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#endif /* ifdef CYGFUN_MEMALLOC_KAPI */
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/* EOF kmemvar1.c */

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