source: rtems/cpukit/score/src/coremsgsubmit.c @ 2bc236ba

4.104.114.84.95
Last change on this file since 2bc236ba was a0ed4ed, checked in by Ralf Corsepius <ralf.corsepius@…>, on 04/18/04 at 06:13:55

Remove stray white spaces.

  • Property mode set to 100644
File size: 5.3 KB
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1/*
2 *  CORE Message Queue Handler
3 *
4 *  DESCRIPTION:
5 *
6 *  This package is the implementation of the CORE Message Queue Handler.
7 *  This core object provides task synchronization and communication functions
8 *  via messages passed to queue objects.
9 *
10 *  COPYRIGHT (c) 1989-1999.
11 *  On-Line Applications Research Corporation (OAR).
12 *
13 *  The license and distribution terms for this file may be
14 *  found in the file LICENSE in this distribution or at
15 *  http://www.rtems.com/license/LICENSE.
16 *
17 *  $Id$
18 */
19
20#include <rtems/system.h>
21#include <rtems/score/chain.h>
22#include <rtems/score/isr.h>
23#include <rtems/score/object.h>
24#include <rtems/score/coremsg.h>
25#include <rtems/score/states.h>
26#include <rtems/score/thread.h>
27#include <rtems/score/wkspace.h>
28#if defined(RTEMS_MULTIPROCESSING)
29#include <rtems/score/mpci.h>
30#endif
31
32/*PAGE
33 *
34 *  _CORE_message_queue_Submit
35 *
36 *  This routine implements the send and urgent message functions. It
37 *  processes a message that is to be submitted to the designated
38 *  message queue.  The message will either be processed as a
39 *  send message which it will be inserted at the rear of the queue
40 *  or it will be processed as an urgent message which will be inserted
41 *  at the front of the queue.
42 *
43 *  Input parameters:
44 *    the_message_queue            - message is submitted to this message queue
45 *    buffer                       - pointer to message buffer
46 *    size                         - size in bytes of message to send
47 *    id                           - id of message queue
48 *    api_message_queue_mp_support - api specific mp support callout
49 *    submit_type                  - send or urgent message
50 *
51 *  Output parameters:
52 *    CORE_MESSAGE_QUEUE_SUCCESSFUL - if successful
53 *    error code                    - if unsuccessful
54 */
55
56CORE_message_queue_Status _CORE_message_queue_Submit(
57  CORE_message_queue_Control                *the_message_queue,
58  void                                      *buffer,
59  uint32_t                                   size,
60  Objects_Id                                 id,
61  CORE_message_queue_API_mp_support_callout  api_message_queue_mp_support,
62  CORE_message_queue_Submit_types            submit_type,
63  boolean                                    wait,
64  Watchdog_Interval                          timeout
65)
66{
67  ISR_Level                            level;
68  CORE_message_queue_Buffer_control   *the_message;
69  Thread_Control                      *the_thread;
70
71  if ( size > the_message_queue->maximum_message_size ) {
72    return CORE_MESSAGE_QUEUE_STATUS_INVALID_SIZE;
73  }
74
75  /*
76   *  Is there a thread currently waiting on this message queue?
77   */
78
79  if ( the_message_queue->number_of_pending_messages == 0 ) {
80    the_thread = _Thread_queue_Dequeue( &the_message_queue->Wait_queue );
81    if ( the_thread ) {
82      _CORE_message_queue_Copy_buffer(
83        buffer,
84        the_thread->Wait.return_argument,
85        size
86      );
87      *(uint32_t   *)the_thread->Wait.return_argument_1 = size;
88      the_thread->Wait.count = submit_type;
89
90#if defined(RTEMS_MULTIPROCESSING)
91      if ( !_Objects_Is_local_id( the_thread->Object.id ) )
92        (*api_message_queue_mp_support) ( the_thread, id );
93#endif
94      return CORE_MESSAGE_QUEUE_STATUS_SUCCESSFUL;
95    }
96  }
97
98  /*
99   *  No one waiting on the message queue at this time, so attempt to
100   *  queue the message up for a future receive.
101   */
102
103  if ( the_message_queue->number_of_pending_messages <
104       the_message_queue->maximum_pending_messages ) {
105
106    the_message =
107        _CORE_message_queue_Allocate_message_buffer( the_message_queue );
108
109    /*
110     *  NOTE: If the system is consistent, this error should never occur.
111     */
112
113    if ( !the_message ) {
114      return CORE_MESSAGE_QUEUE_STATUS_UNSATISFIED;
115    }
116
117    _CORE_message_queue_Copy_buffer(
118      buffer,
119      the_message->Contents.buffer,
120      size
121    );
122    the_message->Contents.size = size;
123    the_message->priority  = submit_type;
124
125    _CORE_message_queue_Insert_message(
126       the_message_queue,
127       the_message,
128       submit_type
129    );
130    return CORE_MESSAGE_QUEUE_STATUS_SUCCESSFUL;
131  }
132
133  /*
134   *  No message buffers were available so we may need to return an
135   *  overflow error or block the sender until the message is placed
136   *  on the queue.
137   */
138
139  if ( !wait ) {
140    return CORE_MESSAGE_QUEUE_STATUS_TOO_MANY;
141  }
142
143  /*
144   *  Do NOT block on a send if the caller is in an ISR.  It is
145   *  deadly to block in an ISR.
146   */
147
148  if ( _ISR_Is_in_progress() ) {
149    return CORE_MESSAGE_QUEUE_STATUS_UNSATISFIED;
150  }
151
152  /*
153   *  WARNING!! executing should NOT be used prior to this point.
154   *  Thus the unusual choice to open a new scope and declare
155   *  it as a variable.  Doing this emphasizes how dangerous it
156   *  would be to use this variable prior to here.
157   */
158
159  {
160    Thread_Control  *executing = _Thread_Executing;
161
162    _ISR_Disable( level );
163    _Thread_queue_Enter_critical_section( &the_message_queue->Wait_queue );
164    executing->Wait.queue              = &the_message_queue->Wait_queue;
165    executing->Wait.id                 = id;
166    executing->Wait.return_argument    = buffer;
167    executing->Wait.return_argument_1  = (void *)size;
168    executing->Wait.count              = submit_type;
169    _ISR_Enable( level );
170
171    _Thread_queue_Enqueue( &the_message_queue->Wait_queue, timeout );
172  }
173
174  return CORE_MESSAGE_QUEUE_STATUS_UNSATISFIED_WAIT;
175}
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