forked from Imagelibrary/rtems
Make <rtems/score/atomic.h> available for all RTEMS configurations. Use inline functions instead of macros. Use ISR disable/enable on uni-processor configurations to ensure atomicity. Update #2273.
255 lines
7.5 KiB
C
255 lines
7.5 KiB
C
/*
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* Copyright (c) 2013-2014 embedded brains GmbH. All rights reserved.
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*
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* embedded brains GmbH
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* Dornierstr. 4
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* 82178 Puchheim
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* Germany
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* <rtems@embedded-brains.de>
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*
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* Copyright (c) 2013 Deng Hengyi.
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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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#include <rtems/score/atomic.h>
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#include <stdio.h>
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#include <rtems.h>
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#include "tmacros.h"
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const char rtems_test_name[] = "SPATOMIC 1";
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typedef struct {
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Atomic_Uint atomic_int_value;
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Atomic_Ulong atomic_value;
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} test_context;
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static test_context test_instance;
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static void test_static_and_dynamic_initialization(void)
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{
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static Atomic_Uint static_uint =
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ATOMIC_INITIALIZER_UINT(0xc01dc0feU);
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static Atomic_Ulong static_ulong =
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ATOMIC_INITIALIZER_ULONG(0xdeadbeefUL);
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static Atomic_Pointer static_ptr =
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ATOMIC_INITIALIZER_PTR(&static_ptr);
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static Atomic_Flag static_flag = ATOMIC_INITIALIZER_FLAG;
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Atomic_Uint stack_uint;
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Atomic_Ulong stack_ulong;
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Atomic_Pointer stack_ptr;
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Atomic_Flag stack_flag;
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puts("=== static and dynamic initialization test case ===");
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_Atomic_Init_uint(&stack_uint, 0xc01dc0feU);
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_Atomic_Init_ulong(&stack_ulong, 0xdeadbeefUL);
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_Atomic_Init_ptr(&stack_ptr, &static_ptr);
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_Atomic_Flag_clear(&stack_flag, ATOMIC_ORDER_RELAXED);
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rtems_test_assert(
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memcmp(&stack_uint, &static_uint, sizeof(stack_uint)) == 0
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);
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rtems_test_assert(
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memcmp(&stack_ulong, &static_ulong, sizeof(stack_ulong)) == 0
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);
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rtems_test_assert(
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memcmp(&stack_ptr, &static_ptr, sizeof(stack_ptr)) == 0
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);
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rtems_test_assert(
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memcmp(&stack_flag, &static_flag, sizeof(stack_flag)) == 0
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);
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rtems_test_assert(
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_Atomic_Load_uint(&stack_uint, ATOMIC_ORDER_RELAXED) == 0xc01dc0feU
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);
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rtems_test_assert(
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_Atomic_Load_ulong(&stack_ulong, ATOMIC_ORDER_RELAXED) == 0xdeadbeefUL
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);
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rtems_test_assert(
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_Atomic_Load_ptr(&stack_ptr, ATOMIC_ORDER_RELAXED) == &static_ptr
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);
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rtems_test_assert(
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!_Atomic_Flag_test_and_set(&stack_flag, ATOMIC_ORDER_RELAXED)
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);
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}
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typedef void (*simple_test_body)(test_context *ctx);
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static void test_simple_atomic_add_body(test_context *ctx)
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{
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unsigned int ia = 8, ib = 4;
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unsigned int ic;
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unsigned long a = 2, b = 1;
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unsigned long c;
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puts("=== atomic simple add test case ===");
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_Atomic_Store_uint(&ctx->atomic_int_value, ia, ATOMIC_ORDER_RELAXED);
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_Atomic_Fetch_add_uint(&ctx->atomic_int_value, ib, ATOMIC_ORDER_RELAXED);
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ic = _Atomic_Load_uint(&ctx->atomic_int_value, ATOMIC_ORDER_RELAXED);
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rtems_test_assert(ic == (ia + ib));
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_Atomic_Store_ulong(&ctx->atomic_value, a, ATOMIC_ORDER_RELAXED);
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_Atomic_Fetch_add_ulong(&ctx->atomic_value, b, ATOMIC_ORDER_RELAXED);
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c = _Atomic_Load_ulong(&ctx->atomic_value, ATOMIC_ORDER_RELAXED);
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rtems_test_assert(c == (a + b));
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}
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static void test_simple_atomic_sub_body(test_context *ctx)
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{
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unsigned int ia = 8, ib = 4;
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unsigned int ic;
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unsigned long a = 2, b = 1;
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unsigned long c;
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puts("=== atomic simple sub test case ===");
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_Atomic_Store_uint(&ctx->atomic_int_value, ia, ATOMIC_ORDER_RELAXED);
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_Atomic_Fetch_sub_uint(&ctx->atomic_int_value, ib, ATOMIC_ORDER_RELAXED);
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ic = _Atomic_Load_uint(&ctx->atomic_int_value, ATOMIC_ORDER_RELAXED);
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rtems_test_assert(ic == (ia - ib));
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_Atomic_Store_ulong(&ctx->atomic_value, a, ATOMIC_ORDER_RELAXED);
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_Atomic_Fetch_sub_ulong(&ctx->atomic_value, b, ATOMIC_ORDER_RELAXED);
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c = _Atomic_Load_ulong(&ctx->atomic_value, ATOMIC_ORDER_RELAXED);
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rtems_test_assert(c == (a - b));
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}
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static void test_simple_atomic_or_body(test_context *ctx)
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{
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unsigned int ia = 8, ib = 4;
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unsigned int ic;
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unsigned long a = 2, b = 1;
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unsigned long c;
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puts("=== atomic simple or test case ===");
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_Atomic_Store_uint(&ctx->atomic_int_value, ia, ATOMIC_ORDER_RELAXED);
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_Atomic_Fetch_or_uint(&ctx->atomic_int_value, ib, ATOMIC_ORDER_RELAXED);
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ic = _Atomic_Load_uint(&ctx->atomic_int_value, ATOMIC_ORDER_RELAXED);
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rtems_test_assert(ic == (ia | ib));
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_Atomic_Store_ulong(&ctx->atomic_value, a, ATOMIC_ORDER_RELAXED);
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_Atomic_Fetch_or_ulong(&ctx->atomic_value, b, ATOMIC_ORDER_RELAXED);
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c = _Atomic_Load_ulong(&ctx->atomic_value, ATOMIC_ORDER_RELAXED);
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rtems_test_assert(c == (a | b));
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}
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static void test_simple_atomic_and_body(test_context *ctx)
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{
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unsigned int ia = 8, ib = 4;
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unsigned int ic;
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unsigned long a = 2, b = 1;
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unsigned long c;
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puts("=== atomic simple and test case ===");
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_Atomic_Store_uint(&ctx->atomic_int_value, ia, ATOMIC_ORDER_RELAXED);
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_Atomic_Fetch_and_uint(&ctx->atomic_int_value, ib, ATOMIC_ORDER_RELAXED);
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ic = _Atomic_Load_uint(&ctx->atomic_int_value, ATOMIC_ORDER_RELAXED);
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rtems_test_assert(ic == (ia & ib));
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_Atomic_Store_ulong(&ctx->atomic_value, a, ATOMIC_ORDER_RELAXED);
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_Atomic_Fetch_and_ulong(&ctx->atomic_value, b, ATOMIC_ORDER_RELAXED);
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c = _Atomic_Load_ulong(&ctx->atomic_value, ATOMIC_ORDER_RELAXED);
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rtems_test_assert(c == (a & b));
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}
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static void test_simple_atomic_exchange_body(test_context *ctx)
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{
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unsigned int ia = 8, ib = 4;
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unsigned int ic;
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unsigned long a = 2, b = 1;
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unsigned long c;
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puts("=== atomic simple exchange test case ===");
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_Atomic_Store_uint(&ctx->atomic_int_value, ia, ATOMIC_ORDER_RELAXED);
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_Atomic_Exchange_uint(&ctx->atomic_int_value, ib, ATOMIC_ORDER_RELAXED);
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ic = _Atomic_Load_uint(&ctx->atomic_int_value, ATOMIC_ORDER_RELAXED);
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rtems_test_assert(ic == ib);
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_Atomic_Store_ulong(&ctx->atomic_value, a, ATOMIC_ORDER_RELAXED);
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_Atomic_Exchange_ulong(&ctx->atomic_value, b, ATOMIC_ORDER_RELAXED);
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c = _Atomic_Load_ulong(&ctx->atomic_value, ATOMIC_ORDER_RELAXED);
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rtems_test_assert(c == b);
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}
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static void test_simple_atomic_compare_exchange_body(test_context *ctx)
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{
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unsigned int ia = 8, ib = 4;
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unsigned int ic;
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unsigned long a = 2, b = 1;
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unsigned long c;
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puts("=== atomic simple compare exchange test case ===");
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_Atomic_Store_uint(&ctx->atomic_int_value, ia, ATOMIC_ORDER_RELAXED);
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_Atomic_Compare_exchange_uint(&ctx->atomic_int_value, &ia, ib,
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ATOMIC_ORDER_RELAXED, ATOMIC_ORDER_RELAXED);
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ic = _Atomic_Load_uint(&ctx->atomic_int_value, ATOMIC_ORDER_RELAXED);
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rtems_test_assert(ic == ib);
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_Atomic_Store_ulong(&ctx->atomic_value, a, ATOMIC_ORDER_RELAXED);
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_Atomic_Compare_exchange_ulong(&ctx->atomic_value, &a, b,
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ATOMIC_ORDER_RELAXED, ATOMIC_ORDER_RELAXED);
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c = _Atomic_Load_ulong(&ctx->atomic_value, ATOMIC_ORDER_RELAXED);
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rtems_test_assert(c == b);
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}
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static const simple_test_body simple_test_bodies[] = {
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test_simple_atomic_add_body,
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test_simple_atomic_sub_body,
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test_simple_atomic_or_body,
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test_simple_atomic_and_body,
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test_simple_atomic_exchange_body,
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test_simple_atomic_compare_exchange_body,
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};
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#define SIMPLE_TEST_COUNT RTEMS_ARRAY_SIZE(simple_test_bodies)
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static void simple_tests(void)
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{
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test_context *ctx = &test_instance;
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size_t test;
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for (test = 0; test < SIMPLE_TEST_COUNT; ++test) {
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const simple_test_body *test_body = &simple_test_bodies[test];
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(*test_body)(ctx);
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}
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}
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static void Init(rtems_task_argument arg)
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{
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TEST_BEGIN();
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test_static_and_dynamic_initialization();
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simple_tests();
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TEST_END();
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rtems_test_exit(0);
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}
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#define CONFIGURE_APPLICATION_DOES_NOT_NEED_CLOCK_DRIVER
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#define CONFIGURE_APPLICATION_NEEDS_CONSOLE_DRIVER
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#define CONFIGURE_MAXIMUM_TASKS 1
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#define CONFIGURE_INITIAL_EXTENSIONS RTEMS_TEST_INITIAL_EXTENSION
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#define CONFIGURE_RTEMS_INIT_TASKS_TABLE
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#define CONFIGURE_INIT
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#include <rtems/confdefs.h>
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