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511 giacomo 1
/*
2
 * Project: S.Ha.R.K.
3
 *
4
 * Coordinators:
5
 *   Giorgio Buttazzo    <giorgio@sssup.it>
6
 *   Paolo Gai           <pj@gandalf.sssup.it>
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 *
8
 * Authors     :
9
 *   Giacomo Guidi       <giacomo@gandalf.sssup.it>
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 *   (see the web pages for full authors list)
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 *
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 * ReTiS Lab (Scuola Superiore S.Anna - Pisa - Italy)
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 *
14
 * http://www.sssup.it
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 * http://retis.sssup.it
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 * http://shark.sssup.it
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 */
18
 
19
/*
20
 * Copyright (C) 2000,2002 Paolo Gai
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 *
22
 * This program is free software; you can redistribute it and/or modify
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 * it under the terms of the GNU General Public License as published by
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 * the Free Software Foundation; either version 2 of the License, or
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 * (at your option) any later version.
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 *
27
 * This program is distributed in the hope that it will be useful,
28
 * but WITHOUT ANY WARRANTY; without even the implied warranty of
29
 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
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 * GNU General Public License for more details.
31
 *
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 * You should have received a copy of the GNU General Public License
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 * along with this program; if not, write to the Free Software
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 * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA  02111-1307  USA
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 *
36
 */
37
 
38
/* Interrupt Driver Module */
39
 
40
#include <modules/intdrive.h>
41
#include <kernel/model.h>
42
#include <kernel/descr.h>
43
#include <kernel/var.h>
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#include <kernel/func.h>
45
 
46
#include <ll/i386/64bit.h>
47
 
48
/*+ Status used in the level +*/
49
#define INTDRIVE_READY         MODULE_STATUS_BASE    /*+ - Ready status        +*/
50
#define INTDRIVE_WCET_VIOLATED MODULE_STATUS_BASE+2  /*+ when wcet is finished +*/
51
#define INTDRIVE_IDLE          MODULE_STATUS_BASE+3  /*+ to wait the replenish +*/
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#define INTDRIVE_WAIT          MODULE_STATUS_BASE+4  /*+ to wait the activation */
53
 
54
//#define INTDRIVE_DEBUG
55
 
56
/*+ the level redefinition for the IntDrive +*/
57
typedef struct {
58
  level_des l;     /*+ the standard level descriptor          +*/
59
 
60
  TIME replenish_period;
61
  TIME capacity;
62
 
522 mauro 63
  struct timespec act_time;
64
 
511 giacomo 65
  int avail;
66
 
528 giacomo 67
  struct timespec replenish_expires;
511 giacomo 68
  int replenish_timer;
69
  int wcet_timer;
70
 
71
  int act_number;   /*+ the activation number                  +*/
72
 
73
  int flags;        /*+ the init flags...                      +*/
74
 
75
  bandwidth_t U;    /*+ the used bandwidth                     +*/
76
 
77
} INTDRIVE_level_des;
78
 
79
PID INTDRIVE_task = NIL;
80
 
81
/* Replenish the capacity */
82
static void INTDRIVE_timer(void *arg)
83
{
84
 
85
  INTDRIVE_level_des *lev = (INTDRIVE_level_des *)(arg);
86
 
87
  lev->replenish_timer = NIL;
88
 
89
  #ifdef INTDRIVE_DEBUG
90
    kern_printf("(INTD:TIMER)");
91
  #endif
92
 
93
  if (INTDRIVE_task == NIL) return;
94
 
95
  lev->avail = lev->capacity;
96
 
97
  switch (proc_table[INTDRIVE_task].status) {
98
 
99
    case INTDRIVE_IDLE:
100
      if (lev->act_number) {
101
        proc_table[INTDRIVE_task].status = INTDRIVE_READY;
102
        event_need_reschedule();
103
      } else {
104
        proc_table[INTDRIVE_task].status = INTDRIVE_WAIT;
105
      }
106
      break;
107
 
108
  }
109
 
110
}
111
 
112
 
113
static void INTDRIVE_wcet_timer(void *arg)
114
{
115
 
116
  INTDRIVE_level_des *lev = (INTDRIVE_level_des *)(arg);
117
 
118
  lev->wcet_timer = NIL;
119
 
120
  kern_raise(XWCET_VIOLATION,INTDRIVE_task);
121
 
122
}
123
 
124
static PID INTDRIVE_public_scheduler(LEVEL l)
125
{
126
 
127
  if (proc_table[INTDRIVE_task].status == INTDRIVE_READY ||
128
        proc_table[INTDRIVE_task].status == EXE)
129
    return INTDRIVE_task;
130
  else
131
    return NIL;
132
 
133
}
134
 
135
static int INTDRIVE_public_create(LEVEL l, PID p, TASK_MODEL *m)
136
{
137
 
138
  HARD_TASK_MODEL *h;
139
 
140
  if (m->pclass != HARD_PCLASS) return -1;
141
  if (m->level != 0 && m->level != l) return -1;
142
  h = (HARD_TASK_MODEL *)m;
143
  if (!h->wcet && h->periodicity != INTDRIVE) return -1;
144
 
145
  if (INTDRIVE_task != NIL) return -1;
146
 
147
  INTDRIVE_task = p;
148
 
149
  proc_table[INTDRIVE_task].wcet = h->wcet;
150
  proc_table[INTDRIVE_task].status = INTDRIVE_WAIT;
151
  proc_table[INTDRIVE_task].control &= ~CONTROL_CAP;
152
 
153
  return 0;
154
 
155
}
156
 
157
static void INTDRIVE_public_dispatch(LEVEL l, PID p, int nostop)
158
{
159
 
160
  INTDRIVE_level_des *lev = (INTDRIVE_level_des *)(level_table[l]);
161
  struct timespec time;
522 mauro 162
 
163
  kern_gettime(&(lev->act_time));
164
  TIMESPEC_ASSIGN(&time,&(lev->act_time));
511 giacomo 165
  ADDUSEC2TIMESPEC(proc_table[INTDRIVE_task].wcet,&time);
166
 
167
  lev->wcet_timer = kern_event_post(&time,INTDRIVE_wcet_timer,(void *)lev);  
168
 
169
}
170
 
171
static void INTDRIVE_public_epilogue(LEVEL l, PID p)
172
{
173
 
698 giacomo 174
  struct timespec time, acttime;
511 giacomo 175
 
176
  INTDRIVE_level_des *lev = (INTDRIVE_level_des *)(level_table[l]);
177
 
178
  if (lev->wcet_timer != NIL)
179
    kern_event_delete(lev->wcet_timer);
180
 
698 giacomo 181
  kern_gettime(&acttime);
182
  SUBTIMESPEC(&acttime, &(lev->act_time), &time);
528 giacomo 183
  lev->avail -= TIMESPEC2USEC(&time);
511 giacomo 184
 
185
}
186
 
657 anton 187
static void INTDRIVE_public_activate(LEVEL l, PID p, struct timespec *t)
511 giacomo 188
{
189
 
190
  INTDRIVE_level_des *lev = (INTDRIVE_level_des *)(level_table[l]);
191
 
192
  if (proc_table[INTDRIVE_task].status == INTDRIVE_WAIT) {
543 giacomo 193
 
511 giacomo 194
    proc_table[INTDRIVE_task].status = INTDRIVE_READY;
543 giacomo 195
 
196
    lev->act_number++; 
197
 
511 giacomo 198
  } else {
199
 
200
    if (proc_table[INTDRIVE_task].status == INTDRIVE_IDLE ||
543 giacomo 201
        proc_table[INTDRIVE_task].status == INTDRIVE_READY ||
202
        proc_table[INTDRIVE_task].status == EXE) {
511 giacomo 203
 
204
        #ifdef INTDRIVE_DEBUG
205
          kern_printf("(INTD:WAIT_REC)");
206
        #endif
207
 
208
        lev->act_number++;
209
 
210
    }
211
 
212
  }
213
 
214
  if (lev->replenish_timer == NIL) {
524 giacomo 215
 
528 giacomo 216
    kern_gettime(&(lev->replenish_expires));
217
    ADDUSEC2TIMESPEC(lev->replenish_period,&(lev->replenish_expires));
218
    lev->replenish_timer = kern_event_post(&(lev->replenish_expires),INTDRIVE_timer,(void *)lev);
524 giacomo 219
 
511 giacomo 220
  }
221
 
222
}
223
 
224
static void INTDRIVE_public_unblock(LEVEL l, PID p)
225
{
226
  /* Insert task in the correct position */
227
  proc_table[INTDRIVE_task].status = INTDRIVE_READY;
228
 
229
}
230
 
231
static void INTDRIVE_public_block(LEVEL l, PID p)
232
{
233
 
234
}
235
 
236
static int INTDRIVE_public_message(LEVEL l, PID p, void *m)
237
{
238
  INTDRIVE_level_des *lev = (INTDRIVE_level_des *)(level_table[l]);
698 giacomo 239
  struct timespec time, acttime;
528 giacomo 240
  int temp,delta_time;;
511 giacomo 241
 
543 giacomo 242
  lev->act_number--;
243
 
511 giacomo 244
  if (lev->wcet_timer != NIL)
245
    kern_event_delete(lev->wcet_timer);
246
 
698 giacomo 247
  kern_gettime(&acttime);
248
  SUBTIMESPEC(&acttime, &(lev->act_time), &time);
528 giacomo 249
  lev->avail -= TIMESPEC2USEC(&time);
511 giacomo 250
 
251
  #ifdef INTDRIVE_DEBUG
252
    kern_printf("(INTD:AV:%d)",(int)(lev->avail));
253
  #endif
254
 
255
  if (lev->avail < 0) {
256
    proc_table[INTDRIVE_task].status = INTDRIVE_IDLE;
528 giacomo 257
    temp = -lev->avail;
258
    mul32div32to32(temp,lev->replenish_period,lev->capacity,delta_time);
511 giacomo 259
 
260
    if (lev->replenish_timer != NIL)
261
      kern_event_delete(lev->replenish_timer);
262
 
528 giacomo 263
    ADDUSEC2TIMESPEC(delta_time,&(lev->replenish_expires));                                                                      lev->replenish_timer = kern_event_post(&(lev->replenish_expires),INTDRIVE_timer,(void *)lev);
511 giacomo 264
 
265
    #ifdef INTDRIVE_DEBUG
528 giacomo 266
      kern_printf("(INTD:IDLE:%d)",delta_time);
511 giacomo 267
    #endif
268
 
269
  } else {
270
    if (lev->act_number) {
271
      proc_table[INTDRIVE_task].status = INTDRIVE_READY;
272
 
273
      #ifdef INTDRIVE_DEBUG
274
        kern_printf("(INTD:NEXT_ACT)");
275
      #endif
276
 
277
    } else {
278
 
279
      #ifdef INTDRIVE_DEBUG
280
        kern_printf("(INTD:WAIT_ACT)");
281
      #endif
282
 
283
      proc_table[INTDRIVE_task].status = INTDRIVE_WAIT;
284
 
285
    }
286
  }
287
 
288
  return 0;
522 mauro 289
 
511 giacomo 290
}
291
 
292
static void INTDRIVE_public_end(LEVEL l, PID p)
293
{
294
 
295
  INTDRIVE_level_des *lev = (INTDRIVE_level_des *)(level_table[l]);
296
 
297
  if (lev->replenish_timer != NIL)
298
    kern_event_delete(lev->replenish_timer);
299
 
524 giacomo 300
  if (lev->wcet_timer != NIL)
301
    kern_event_delete(lev->wcet_timer);
302
 
511 giacomo 303
  proc_table[INTDRIVE_task].status = INTDRIVE_IDLE;
304
 
305
}
306
 
307
/* Registration functions */
308
 
309
/*+ Registration function: +*/
310
LEVEL INTDRIVE_register_level(TIME capacity, TIME replenish_period, int flags)
311
{
312
  LEVEL l;            /* the level that we register */
313
  INTDRIVE_level_des *lev;
314
 
315
  printk("INTDRIVE_register_level\n");
316
 
317
  /* request an entry in the level_table */
318
  l = level_alloc_descriptor(sizeof(INTDRIVE_level_des));
319
 
320
  lev = (INTDRIVE_level_des *)level_table[l];
321
 
322
  lev->l.public_scheduler = INTDRIVE_public_scheduler;
323
  lev->l.public_guarantee = NULL;
324
  lev->l.public_create    = INTDRIVE_public_create;
325
  lev->l.public_end       = INTDRIVE_public_end;
326
  lev->l.public_dispatch  = INTDRIVE_public_dispatch;
327
  lev->l.public_epilogue  = INTDRIVE_public_epilogue;
328
  lev->l.public_activate  = INTDRIVE_public_activate;
329
  lev->l.public_unblock   = INTDRIVE_public_unblock;
330
  lev->l.public_block     = INTDRIVE_public_block;
331
  lev->l.public_message   = INTDRIVE_public_message;
332
 
522 mauro 333
  NULL_TIMESPEC(&(lev->act_time));
334
 
511 giacomo 335
  lev->capacity = capacity;
336
  lev->replenish_period = replenish_period;
337
  lev->replenish_timer = NIL;
338
  lev->wcet_timer = NIL;
339
  lev->flags = flags;
340
  lev->act_number = 0;
522 mauro 341
  lev->avail = capacity;
511 giacomo 342
  mul32div32to32(MAX_BANDWIDTH,lev->capacity,lev->replenish_period,lev->U);
343
 
344
  return l;
345
}
346
 
347
bandwidth_t INTDRIVE_usedbandwidth(LEVEL l)
348
{
349
  INTDRIVE_level_des *lev = (INTDRIVE_level_des *)(level_table[l]);
350
 
351
  return lev->U;
352
}
353