source: rtems/cpukit/include/rtems/score/schedulerprioritysmp.h @ e58f1cd3

5
Last change on this file since e58f1cd3 was 7097962, checked in by Sebastian Huber <sebastian.huber@…>, on 08/29/18 at 07:43:44

score: Add thread pin/unpin support

Add support to temporarily pin a thread to its current processor. This
may be used to access per-processor data structures in critical sections
with enabled thread dispatching, e.g. a pinned thread is allowed to
block.

Update #3508.

  • Property mode set to 100644
File size: 4.5 KB
Line 
1/**
2 * @file
3 *
4 * @ingroup ScoreSchedulerPrioritySMP
5 *
6 * @brief Deterministic Priority SMP Scheduler API
7 */
8
9/*
10 * Copyright (c) 2013, 2018 embedded brains GmbH.  All rights reserved.
11 *
12 *  embedded brains GmbH
13 *  Dornierstr. 4
14 *  82178 Puchheim
15 *  Germany
16 *  <rtems@embedded-brains.de>
17 *
18 * The license and distribution terms for this file may be
19 * found in the file LICENSE in this distribution or at
20 * http://www.rtems.org/license/LICENSE.
21 */
22
23#ifndef _RTEMS_SCORE_SCHEDULERPRIORITYSMP_H
24#define _RTEMS_SCORE_SCHEDULERPRIORITYSMP_H
25
26#include <rtems/score/scheduler.h>
27#include <rtems/score/schedulerpriority.h>
28#include <rtems/score/schedulersmp.h>
29
30#ifdef __cplusplus
31extern "C" {
32#endif /* __cplusplus */
33
34/**
35 * @defgroup ScoreSchedulerPrioritySMP Deterministic Priority SMP Scheduler
36 *
37 * @ingroup ScoreSchedulerSMP
38 *
39 * This is an implementation of the global fixed priority scheduler (G-FP).  It
40 * uses one ready chain per priority to ensure constant time insert operations.
41 * The scheduled chain uses linear insert operations and has at most processor
42 * count entries.  Since the processor and priority count are constants all
43 * scheduler operations complete in a bounded execution time.
44 *
45 * The thread preempt mode will be ignored.
46 *
47 * @{
48 */
49
50/**
51 * @brief Scheduler context specialization for Deterministic Priority SMP
52 * schedulers.
53 */
54typedef struct {
55  Scheduler_SMP_Context    Base;
56  Priority_bit_map_Control Bit_map;
57  Chain_Control            Ready[ RTEMS_ZERO_LENGTH_ARRAY ];
58} Scheduler_priority_SMP_Context;
59
60/**
61 * @brief Scheduler node specialization for Deterministic Priority SMP
62 * schedulers.
63 */
64typedef struct {
65  /**
66   * @brief SMP scheduler node.
67   */
68  Scheduler_SMP_Node Base;
69
70  /**
71   * @brief The associated ready queue of this node.
72   */
73  Scheduler_priority_Ready_queue Ready_queue;
74} Scheduler_priority_SMP_Node;
75
76/**
77 * @brief Entry points for the Priority SMP Scheduler.
78 */
79#define SCHEDULER_PRIORITY_SMP_ENTRY_POINTS \
80  { \
81    _Scheduler_priority_SMP_Initialize, \
82    _Scheduler_default_Schedule, \
83    _Scheduler_priority_SMP_Yield, \
84    _Scheduler_priority_SMP_Block, \
85    _Scheduler_priority_SMP_Unblock, \
86    _Scheduler_priority_SMP_Update_priority, \
87    _Scheduler_default_Map_priority, \
88    _Scheduler_default_Unmap_priority, \
89    _Scheduler_priority_SMP_Ask_for_help, \
90    _Scheduler_priority_SMP_Reconsider_help_request, \
91    _Scheduler_priority_SMP_Withdraw_node, \
92    _Scheduler_default_Pin_or_unpin, \
93    _Scheduler_default_Pin_or_unpin, \
94    _Scheduler_priority_SMP_Add_processor, \
95    _Scheduler_priority_SMP_Remove_processor, \
96    _Scheduler_priority_SMP_Node_initialize, \
97    _Scheduler_default_Node_destroy, \
98    _Scheduler_default_Release_job, \
99    _Scheduler_default_Cancel_job, \
100    _Scheduler_default_Tick, \
101    _Scheduler_SMP_Start_idle \
102    SCHEDULER_OPERATION_DEFAULT_GET_SET_AFFINITY \
103  }
104
105void _Scheduler_priority_SMP_Initialize( const Scheduler_Control *scheduler );
106
107void _Scheduler_priority_SMP_Node_initialize(
108  const Scheduler_Control *scheduler,
109  Scheduler_Node          *node,
110  Thread_Control          *the_thread,
111  Priority_Control         priority
112);
113
114void _Scheduler_priority_SMP_Block(
115  const Scheduler_Control *scheduler,
116  Thread_Control          *thread,
117  Scheduler_Node          *node
118);
119
120void _Scheduler_priority_SMP_Unblock(
121  const Scheduler_Control *scheduler,
122  Thread_Control          *thread,
123  Scheduler_Node          *node
124);
125
126void _Scheduler_priority_SMP_Update_priority(
127  const Scheduler_Control *scheduler,
128  Thread_Control          *the_thread,
129  Scheduler_Node          *node
130);
131
132bool _Scheduler_priority_SMP_Ask_for_help(
133  const Scheduler_Control *scheduler,
134  Thread_Control          *the_thread,
135  Scheduler_Node          *node
136);
137
138void _Scheduler_priority_SMP_Reconsider_help_request(
139  const Scheduler_Control *scheduler,
140  Thread_Control          *the_thread,
141  Scheduler_Node          *node
142);
143
144void _Scheduler_priority_SMP_Withdraw_node(
145  const Scheduler_Control *scheduler,
146  Thread_Control          *the_thread,
147  Scheduler_Node          *node,
148  Thread_Scheduler_state   next_state
149);
150
151void _Scheduler_priority_SMP_Add_processor(
152  const Scheduler_Control *scheduler,
153  Thread_Control          *idle
154);
155
156Thread_Control *_Scheduler_priority_SMP_Remove_processor(
157  const Scheduler_Control *scheduler,
158  struct Per_CPU_Control  *cpu
159);
160
161void _Scheduler_priority_SMP_Yield(
162  const Scheduler_Control *scheduler,
163  Thread_Control          *thread,
164  Scheduler_Node          *node
165);
166
167/** @} */
168
169#ifdef __cplusplus
170}
171#endif /* __cplusplus */
172
173#endif /* _RTEMS_SCORE_SCHEDULERPRIORITYSMP_H */
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