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410 lines
10 KiB
C
410 lines
10 KiB
C
/* SPDX-License-Identifier: BSD-2-Clause */
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/**
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* @file
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*
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* @ingroup NewlibReqFutexWake
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*/
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/*
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* Copyright (C) 2021 embedded brains GmbH & Co. KG
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*
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* Redistribution and use in source and binary forms, with or without
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* modification, are permitted provided that the following conditions
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* are met:
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* 1. Redistributions of source code must retain the above copyright
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* notice, this list of conditions and the following disclaimer.
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* 2. Redistributions in binary form must reproduce the above copyright
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* notice, this list of conditions and the following disclaimer in the
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* documentation and/or other materials provided with the distribution.
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*
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* THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS"
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* AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
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* IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
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* ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE
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* LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
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* CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
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* SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
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* INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
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* CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
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* ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
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* POSSIBILITY OF SUCH DAMAGE.
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*/
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/*
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* This file is part of the RTEMS quality process and was automatically
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* generated. If you find something that needs to be fixed or
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* worded better please post a report or patch to an RTEMS mailing list
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* or raise a bug report:
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*
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* https://www.rtems.org/bugs.html
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*
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* For information on updating and regenerating please refer to the How-To
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* section in the Software Requirements Engineering chapter of the
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* RTEMS Software Engineering manual. The manual is provided as a part of
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* a release. For development sources please refer to the online
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* documentation at:
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*
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* https://docs.rtems.org
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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 <limits.h>
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#include <rtems.h>
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#include <sys/lock.h>
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#include "tr-tq-flush-fifo.h"
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#include "tx-thread-queue.h"
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#include <rtems/test.h>
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/**
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* @defgroup NewlibReqFutexWake spec:/newlib/req/futex-wake
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*
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* @ingroup TestsuitesValidationNoClock0
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*
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* @{
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*/
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typedef enum {
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NewlibReqFutexWake_Pre_Count_NegativeOrZero,
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NewlibReqFutexWake_Pre_Count_Positive,
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NewlibReqFutexWake_Pre_Count_NA
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} NewlibReqFutexWake_Pre_Count;
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typedef enum {
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NewlibReqFutexWake_Post_Result_Count,
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NewlibReqFutexWake_Post_Result_NA
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} NewlibReqFutexWake_Post_Result;
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typedef enum {
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NewlibReqFutexWake_Post_Flush_No,
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NewlibReqFutexWake_Post_Flush_Yes,
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NewlibReqFutexWake_Post_Flush_NA
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} NewlibReqFutexWake_Post_Flush;
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typedef struct {
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uint8_t Skip : 1;
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uint8_t Pre_Count_NA : 1;
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uint8_t Post_Result : 1;
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uint8_t Post_Flush : 2;
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} NewlibReqFutexWake_Entry;
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/**
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* @brief Test context for spec:/newlib/req/futex-wake test case.
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*/
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typedef struct {
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/**
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* @brief This member contains the thread queue test context.
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*/
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TQContext tq_ctx;
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/**
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* @brief This member provides the futex object.
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*/
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struct _Futex_Control futex;
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/**
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* @brief This member provides the futex state.
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*/
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int state;
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struct {
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/**
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* @brief This member defines the pre-condition states for the next action.
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*/
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size_t pcs[ 1 ];
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/**
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* @brief If this member is true, then the test action loop is executed.
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*/
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bool in_action_loop;
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/**
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* @brief This member contains the next transition map index.
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*/
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size_t index;
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/**
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* @brief This member contains the current transition map entry.
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*/
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NewlibReqFutexWake_Entry entry;
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/**
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* @brief If this member is true, then the current transition variant
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* should be skipped.
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*/
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bool skip;
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} Map;
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} NewlibReqFutexWake_Context;
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static NewlibReqFutexWake_Context
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NewlibReqFutexWake_Instance;
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static const char * const NewlibReqFutexWake_PreDesc_Count[] = {
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"NegativeOrZero",
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"Positive",
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"NA"
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};
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static const char * const * const NewlibReqFutexWake_PreDesc[] = {
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NewlibReqFutexWake_PreDesc_Count,
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NULL
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};
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typedef NewlibReqFutexWake_Context Context;
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static Context *ToContext( TQContext *tq_ctx )
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{
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return RTEMS_CONTAINER_OF( tq_ctx, Context, tq_ctx );
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}
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static Status_Control Enqueue( TQContext *tq_ctx, TQWait wait )
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{
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(void) wait;
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Context *ctx;
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int count;
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int eno;
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ctx = ToContext( tq_ctx );
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count = _Futex_Wake( &ctx->futex, -1 );
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T_eq_int( count, 0 );
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count = _Futex_Wake( &ctx->futex, 0 );
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T_eq_int( count, 0 );
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eno = _Futex_Wait( &ctx->futex, &ctx->state, 0 );
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T_eq_int( eno, 0 );
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return STATUS_BUILD( 0, eno );
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}
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static uint32_t Flush( TQContext *tq_ctx, uint32_t thread_count, bool all )
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{
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Context *ctx;
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int count;
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(void) thread_count;
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ctx = ToContext( tq_ctx );
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if ( all ) {
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count = _Futex_Wake( &ctx->futex, INT_MAX );
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} else {
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count = _Futex_Wake( &ctx->futex, 1 );
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}
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return (uint32_t) count;
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}
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static void NewlibReqFutexWake_Pre_Count_Prepare(
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NewlibReqFutexWake_Pre_Count state
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)
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{
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switch ( state ) {
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case NewlibReqFutexWake_Pre_Count_NegativeOrZero: {
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/*
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* While the `count` parameter is less or equal to than zero.
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*/
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/* This state is prepared by Enqueue() */
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break;
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}
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case NewlibReqFutexWake_Pre_Count_Positive: {
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/*
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* While the `count` parameter is greater than zero.
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*/
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/* This state is prepared by Flush() */
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break;
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}
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case NewlibReqFutexWake_Pre_Count_NA:
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break;
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}
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}
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static void NewlibReqFutexWake_Post_Result_Check(
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NewlibReqFutexWake_Post_Result state
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)
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{
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switch ( state ) {
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case NewlibReqFutexWake_Post_Result_Count: {
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/*
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* The return status of _Futex_Wake() shall be the count of threads
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* extracted from the thread queue of the futex object.
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*/
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/* This result is checked by Flush() */
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break;
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}
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case NewlibReqFutexWake_Post_Result_NA:
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break;
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}
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}
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static void NewlibReqFutexWake_Post_Flush_Check(
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NewlibReqFutexWake_Context *ctx,
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NewlibReqFutexWake_Post_Flush state
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)
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{
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switch ( state ) {
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case NewlibReqFutexWake_Post_Flush_No: {
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/*
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* No thread shall be extracted from the thread queue of the futex
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* object.
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*/
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/* This state is checked by Enqueue() */
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break;
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}
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case NewlibReqFutexWake_Post_Flush_Yes: {
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/*
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* The first count threads specified by the `count` parameter shall be
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* extracted from the thread queue of the futex object in FIFO order.
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*/
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ScoreTqReqFlushFifo_Run( &ctx->tq_ctx, true );
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break;
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}
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case NewlibReqFutexWake_Post_Flush_NA:
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break;
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}
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}
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static void NewlibReqFutexWake_Setup( NewlibReqFutexWake_Context *ctx )
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{
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memset( ctx, 0, sizeof( *ctx ) );
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ctx->tq_ctx.discipline = TQ_FIFO;
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ctx->tq_ctx.wait = TQ_WAIT_FOREVER;
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ctx->tq_ctx.enqueue_prepare = TQDoNothing;
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ctx->tq_ctx.enqueue = Enqueue;
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ctx->tq_ctx.enqueue_done = TQDoNothing;
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ctx->tq_ctx.flush = Flush;
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ctx->tq_ctx.surrender = TQDoNothingSuccessfully;
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ctx->tq_ctx.convert_status = TQConvertStatusPOSIX;
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TQInitialize( &ctx->tq_ctx );
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}
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static void NewlibReqFutexWake_Setup_Wrap( void *arg )
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{
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NewlibReqFutexWake_Context *ctx;
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ctx = arg;
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ctx->Map.in_action_loop = false;
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NewlibReqFutexWake_Setup( ctx );
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}
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static void NewlibReqFutexWake_Teardown( NewlibReqFutexWake_Context *ctx )
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{
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TQDestroy( &ctx->tq_ctx );
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}
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static void NewlibReqFutexWake_Teardown_Wrap( void *arg )
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{
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NewlibReqFutexWake_Context *ctx;
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ctx = arg;
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ctx->Map.in_action_loop = false;
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NewlibReqFutexWake_Teardown( ctx );
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}
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static void NewlibReqFutexWake_Prepare( NewlibReqFutexWake_Context *ctx )
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{
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_Futex_Initialize( &ctx->futex );
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}
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static void NewlibReqFutexWake_Action( void )
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{
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/* The action is performed in the `Flush` post-condition `All` state. */
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}
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static void NewlibReqFutexWake_Cleanup( NewlibReqFutexWake_Context *ctx )
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{
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_Futex_Destroy( &ctx->futex );
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}
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static const NewlibReqFutexWake_Entry
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NewlibReqFutexWake_Entries[] = {
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{ 0, 0, NewlibReqFutexWake_Post_Result_Count,
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NewlibReqFutexWake_Post_Flush_No },
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{ 0, 0, NewlibReqFutexWake_Post_Result_Count,
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NewlibReqFutexWake_Post_Flush_Yes }
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};
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static const uint8_t
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NewlibReqFutexWake_Map[] = {
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0, 1
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};
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static size_t NewlibReqFutexWake_Scope( void *arg, char *buf, size_t n )
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{
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NewlibReqFutexWake_Context *ctx;
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ctx = arg;
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if ( ctx->Map.in_action_loop ) {
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return T_get_scope( NewlibReqFutexWake_PreDesc, buf, n, ctx->Map.pcs );
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}
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return 0;
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}
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static T_fixture NewlibReqFutexWake_Fixture = {
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.setup = NewlibReqFutexWake_Setup_Wrap,
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.stop = NULL,
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.teardown = NewlibReqFutexWake_Teardown_Wrap,
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.scope = NewlibReqFutexWake_Scope,
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.initial_context = &NewlibReqFutexWake_Instance
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};
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static inline NewlibReqFutexWake_Entry NewlibReqFutexWake_PopEntry(
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NewlibReqFutexWake_Context *ctx
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)
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{
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size_t index;
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index = ctx->Map.index;
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ctx->Map.index = index + 1;
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return NewlibReqFutexWake_Entries[
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NewlibReqFutexWake_Map[ index ]
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];
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}
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static void NewlibReqFutexWake_TestVariant( NewlibReqFutexWake_Context *ctx )
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{
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NewlibReqFutexWake_Pre_Count_Prepare( ctx->Map.pcs[ 0 ] );
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NewlibReqFutexWake_Action();
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NewlibReqFutexWake_Post_Result_Check( ctx->Map.entry.Post_Result );
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NewlibReqFutexWake_Post_Flush_Check( ctx, ctx->Map.entry.Post_Flush );
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}
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/**
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* @fn void T_case_body_NewlibReqFutexWake( void )
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*/
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T_TEST_CASE_FIXTURE( NewlibReqFutexWake, &NewlibReqFutexWake_Fixture )
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{
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NewlibReqFutexWake_Context *ctx;
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ctx = T_fixture_context();
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ctx->Map.in_action_loop = true;
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ctx->Map.index = 0;
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for (
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ctx->Map.pcs[ 0 ] = NewlibReqFutexWake_Pre_Count_NegativeOrZero;
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ctx->Map.pcs[ 0 ] < NewlibReqFutexWake_Pre_Count_NA;
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++ctx->Map.pcs[ 0 ]
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) {
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ctx->Map.entry = NewlibReqFutexWake_PopEntry( ctx );
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NewlibReqFutexWake_Prepare( ctx );
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NewlibReqFutexWake_TestVariant( ctx );
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NewlibReqFutexWake_Cleanup( ctx );
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}
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}
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/** @} */
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