source: rtems/c/src/exec/score/src/coremutex.c @ b2e8026

4.104.114.84.95
Last change on this file since b2e8026 was b2e8026, checked in by Joel Sherrill <joel.sherrill@…>, on 08/13/96 at 15:43:12

fixed spacing

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1/*
2 *  Mutex Handler
3 *
4 *  DESCRIPTION:
5 *
6 *  This package is the implementation of the Mutex Handler.
7 *  This handler provides synchronization and mutual exclusion capabilities.
8 *
9 *  COPYRIGHT (c) 1989, 1990, 1991, 1992, 1993, 1994.
10 *  On-Line Applications Research Corporation (OAR).
11 *  All rights assigned to U.S. Government, 1994.
12 *
13 *  This material may be reproduced by or for the U.S. Government pursuant
14 *  to the copyright license under the clause at DFARS 252.227-7013.  This
15 *  notice must appear in all copies of this file and its derivatives.
16 *
17 *  $Id$
18 */
19
20#include <rtems/system.h>
21#include <rtems/score/isr.h>
22#include <rtems/score/coremutex.h>
23#include <rtems/score/states.h>
24#include <rtems/score/thread.h>
25#include <rtems/score/threadq.h>
26
27/*PAGE
28 *
29 *  _CORE_mutex_Initialize
30 *
31 *  This routine initializes a mutex at create time and set the control
32 *  structure according to the values passed.
33 *
34 *  Input parameters:
35 *    the_mutex             - the mutex control block to initialize
36 *    the_class             - the API class of the object
37 *    the_mutex_attributes  - the mutex attributes specified at create time
38 *    initial_lock          - mutex initial lock or unlocked status
39 *    proxy_extract_callout - MP specific extract callout
40 *
41 *  Output parameters:  NONE
42 */
43
44void _CORE_mutex_Initialize(
45  CORE_mutex_Control           *the_mutex,
46  Objects_Classes               the_class,
47  CORE_mutex_Attributes        *the_mutex_attributes,
48  unsigned32                    initial_lock,
49  Thread_queue_Extract_callout  proxy_extract_callout
50)
51{
52
53/* Add this to the RTEMS environment later ?????????
54  rtems_assert( initial_lock == CORE_MUTEX_LOCKED ||
55                initial_lock == CORE_MUTEX_UNLOCKED );
56 */
57
58  the_mutex->Attributes = *the_mutex_attributes;
59  the_mutex->lock          = initial_lock;
60
61  if ( initial_lock == CORE_MUTEX_LOCKED ) {
62    the_mutex->nest_count = 1;
63    the_mutex->holder     = _Thread_Executing;
64    the_mutex->holder_id  = _Thread_Executing->Object.id;
65    _Thread_Executing->resource_count++;
66  } else {
67    the_mutex->nest_count = 0;
68    the_mutex->holder     = NULL;
69    the_mutex->holder_id  = 0;
70  }
71
72  _Thread_queue_Initialize(
73    &the_mutex->Wait_queue,
74    the_class,
75    _CORE_mutex_Is_priority( the_mutex_attributes ) ?
76      THREAD_QUEUE_DISCIPLINE_PRIORITY : THREAD_QUEUE_DISCIPLINE_FIFO,
77    STATES_WAITING_FOR_MUTEX,
78    proxy_extract_callout,
79    CORE_MUTEX_TIMEOUT
80  );
81}
82
83/*PAGE
84 *
85 *  _CORE_mutex_Seize
86 *
87 *  This routine attempts to allocate a mutex to the calling thread.
88 *
89 *  Input parameters:
90 *    the_mutex - pointer to mutex control block
91 *    id        - id of object to wait on
92 *    wait      - TRUE if wait is allowed, FALSE otherwise
93 *    timeout   - number of ticks to wait (0 means forever)
94 *
95 *  Output parameters:  NONE
96 *
97 *  INTERRUPT LATENCY:
98 *    available
99 *    wait
100 */
101
102void _CORE_mutex_Seize(
103  CORE_mutex_Control  *the_mutex,
104  Objects_Id           id,
105  boolean              wait,
106  Watchdog_Interval    timeout
107)
108{
109  Thread_Control *executing;
110  ISR_Level       level;
111
112  executing = _Thread_Executing;
113  switch ( the_mutex->Attributes.discipline ) {
114    case CORE_MUTEX_DISCIPLINES_FIFO:
115    case CORE_MUTEX_DISCIPLINES_PRIORITY:
116    case CORE_MUTEX_DISCIPLINES_PRIORITY_INHERIT:
117      break;
118    case CORE_MUTEX_DISCIPLINES_PRIORITY_CEILING:
119      if ( executing->current_priority <
120                              the_mutex->Attributes.priority_ceiling) {
121        executing->Wait.return_code = CORE_MUTEX_STATUS_CEILING_VIOLATED;
122        return;
123      }
124  }
125  executing->Wait.return_code = CORE_MUTEX_STATUS_SUCCESSFUL;
126  _ISR_Disable( level );
127  if ( ! _CORE_mutex_Is_locked( the_mutex ) ) {
128    the_mutex->lock       = CORE_MUTEX_LOCKED;
129    the_mutex->holder     = executing;
130    the_mutex->holder_id  = executing->Object.id;
131    the_mutex->nest_count = 1;
132    executing->resource_count++;
133    _ISR_Enable( level );
134    switch ( the_mutex->Attributes.discipline ) {
135      case CORE_MUTEX_DISCIPLINES_FIFO:
136      case CORE_MUTEX_DISCIPLINES_PRIORITY:
137      case CORE_MUTEX_DISCIPLINES_PRIORITY_INHERIT:
138        /* already the highest priority */
139        break;
140      case CORE_MUTEX_DISCIPLINES_PRIORITY_CEILING:
141      if ( the_mutex->Attributes.priority_ceiling <
142                                           executing->current_priority ) {
143        _Thread_Change_priority(
144          the_mutex->holder,
145          the_mutex->Attributes.priority_ceiling
146        );
147      }
148    }
149    return;
150  }
151
152  if ( _Objects_Are_ids_equal(
153              _Thread_Executing->Object.id, the_mutex->holder_id ) ) {
154    if ( _CORE_mutex_Is_nesting_allowed( &the_mutex->Attributes ) )
155      the_mutex->nest_count++;
156    else
157      executing->Wait.return_code = CORE_MUTEX_STATUS_NESTING_NOT_ALLOWED;
158
159    _ISR_Enable( level );
160    return;
161  }
162
163  if ( !wait ) {
164    _ISR_Enable( level );
165    executing->Wait.return_code = CORE_MUTEX_STATUS_UNSATISFIED_NOWAIT;
166    return;
167  }
168
169  _Thread_queue_Enter_critical_section( &the_mutex->Wait_queue );
170  executing->Wait.queue = &the_mutex->Wait_queue;
171  executing->Wait.id    = id;
172  _ISR_Enable( level );
173
174  switch ( the_mutex->Attributes.discipline ) {
175    case CORE_MUTEX_DISCIPLINES_FIFO:
176    case CORE_MUTEX_DISCIPLINES_PRIORITY:
177    case CORE_MUTEX_DISCIPLINES_PRIORITY_CEILING:
178      break;
179    case CORE_MUTEX_DISCIPLINES_PRIORITY_INHERIT:
180      if ( the_mutex->holder->current_priority > executing->current_priority ) {
181        _Thread_Change_priority(
182          the_mutex->holder,
183          executing->current_priority
184        );
185      }
186      break;
187  }
188
189  _Thread_queue_Enqueue( &the_mutex->Wait_queue, timeout );
190
191  if ( _Thread_Executing->Wait.return_code == CORE_MUTEX_STATUS_SUCCESSFUL ) {
192    switch ( the_mutex->Attributes.discipline ) {
193      case CORE_MUTEX_DISCIPLINES_FIFO:
194      case CORE_MUTEX_DISCIPLINES_PRIORITY:
195      case CORE_MUTEX_DISCIPLINES_PRIORITY_INHERIT:
196        break;
197      case CORE_MUTEX_DISCIPLINES_PRIORITY_CEILING:
198        if ( the_mutex->Attributes.priority_ceiling <
199                                           executing->current_priority ) {
200          _Thread_Change_priority(
201            executing,
202            the_mutex->Attributes.priority_ceiling
203          );
204        };
205        break;
206    }
207  }
208}
209
210/*
211 *  _CORE_mutex_Surrender
212 *
213 *  DESCRIPTION:
214 *
215 *  This routine frees a unit to the mutex.  If a task was blocked waiting for
216 *  a unit from this mutex, then that task will be readied and the unit
217 *  given to that task.  Otherwise, the unit will be returned to the mutex.
218 *
219 *  Input parameters:
220 *    the_mutex            - the mutex to be flushed
221 *    id                   - id of parent mutex
222 *    api_mutex_mp_support - api dependent MP support actions
223 *
224 *  Output parameters:
225 *    CORE_MUTEX_STATUS_SUCCESSFUL - if successful
226 *    core error code              - if unsuccessful
227 */
228
229CORE_mutex_Status _CORE_mutex_Surrender(
230  CORE_mutex_Control                *the_mutex,
231  Objects_Id                         id,
232  CORE_mutex_API_mp_support_callout  api_mutex_mp_support
233)
234{
235  Thread_Control *the_thread;
236  Thread_Control *executing;
237
238  executing = _Thread_Executing;
239
240  if ( !_Objects_Are_ids_equal(
241           _Thread_Executing->Object.id, the_mutex->holder_id ) )
242    return( CORE_MUTEX_STATUS_NOT_OWNER_OF_RESOURCE );
243
244  the_mutex->nest_count--;
245
246  if ( the_mutex->nest_count != 0 )
247    return( CORE_MUTEX_STATUS_SUCCESSFUL );
248
249  _Thread_Executing->resource_count--;
250  the_mutex->holder    = NULL;
251  the_mutex->holder_id = 0;
252
253  /*
254   *  Whether or not someone is waiting for the mutex, an
255   *  inherited priority must be lowered if this is the last
256   *  mutex (i.e. resource) this task has.
257   */
258
259  switch ( the_mutex->Attributes.discipline ) {
260    case CORE_MUTEX_DISCIPLINES_FIFO:
261    case CORE_MUTEX_DISCIPLINES_PRIORITY:
262      break;
263    case CORE_MUTEX_DISCIPLINES_PRIORITY_CEILING:
264    case CORE_MUTEX_DISCIPLINES_PRIORITY_INHERIT:
265      if ( executing->resource_count == 0 &&
266           executing->real_priority !=
267           executing->current_priority ) {
268         _Thread_Change_priority( executing, executing->real_priority );
269      }
270      break;
271  }
272
273
274  if ( ( the_thread = _Thread_queue_Dequeue( &the_mutex->Wait_queue ) ) ) {
275
276    if ( !_Objects_Is_local_id( the_thread->Object.id ) ) {
277     
278      the_mutex->holder     = NULL;
279      the_mutex->holder_id  = the_thread->Object.id;
280      the_mutex->nest_count = 1;
281
282      ( *api_mutex_mp_support)( the_thread, id );
283
284    } else {
285
286      the_mutex->holder     = the_thread;
287      the_mutex->holder_id  = the_thread->Object.id;
288      the_thread->resource_count++;
289      the_mutex->nest_count = 1;
290
291     /*
292      *  No special action for priority inheritance or priority ceiling
293      *  because the_thread is guaranteed to be the highest priority
294      *  thread waiting for the mutex.
295      */
296    }
297  } else
298    the_mutex->lock = CORE_MUTEX_UNLOCKED;
299
300  return( CORE_MUTEX_STATUS_SUCCESSFUL );
301}
302
303/*PAGE
304 *
305 *  _CORE_mutex_Flush
306 *
307 *  This function a flushes the mutex's task wait queue.
308 *
309 *  Input parameters:
310 *    the_mutex              - the mutex to be flushed
311 *    remote_extract_callout - function to invoke remotely
312 *    status                 - status to pass to thread
313 *
314 *  Output parameters:  NONE
315 */
316
317void _CORE_mutex_Flush(
318  CORE_mutex_Control         *the_mutex,
319  Thread_queue_Flush_callout  remote_extract_callout,
320  unsigned32                  status
321)
322{
323  _Thread_queue_Flush(
324    &the_mutex->Wait_queue,
325    remote_extract_callout,
326    status
327  );
328}
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