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/*
2
 * Project: S.Ha.R.K.
3
 *
4
 * Coordinators:
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 *   Giorgio Buttazzo    <giorgio@sssup.it>
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 *   Paolo Gai           <pj@gandalf.sssup.it>
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 *
8
 * Authors     :
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 *   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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 *
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 * 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) 2002 Paolo Gai
21
 *
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 * 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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 *
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 * 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
30
 * GNU General Public License for more details.
31
 *
32
 * You should have received a copy of the GNU General Public License
33
 * along with this program; if not, write to the Free Software
34
 * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA  02111-1307  USA
35
 *
36
 */
37
 
38
#include "kernel/kern.h"
39
 
40
#include "modules/edf.h"
41
#include "modules/cbs.h"
42
 
43
#include "pthread.h"
44
#include "modules/posix.h"
45
 
46
#include "fsf.h"
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#include "grubstar.h"
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#include "fsf_server.h"
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#include "modules/dummy.h"
50
 
51
#include "modules/sem.h"
52
#include "modules/pi.h"
53
#include "modules/pc.h"
54
 
55
#include "modules/hartport.h"
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#include "modules/cabs.h"
57
 
58
#include "drivers/keyb.h"
59
#include <stdlib.h>
60
 
61
// --------------------------------------------------
62
// --------------------------------------------------
63
// Init Part
64
// --------------------------------------------------
65
// --------------------------------------------------
66
 
67
/*+ sysyem tick in us +*/
68
#define TICK 0
69
 
70
/*+ RR tick in us +*/
71
#define RRTICK 10000
72
 
73
int grubstar_level;
74
int posix_level;
75
 
76
 
77
TIME __kernel_register_levels__(void *arg)
78
{
79
  struct multiboot_info *mb = (struct multiboot_info *)arg;
80
 
81
  EDF_register_level(EDF_ENABLE_ALL);
82
  posix_level=POSIX_register_level(RRTICK, 1, mb, 32);
83
  grubstar_level = GRUBSTAR_register_level(5, 0);
84
  FSF_register_module(posix_level,grubstar_level, (int)(MAX_BANDWIDTH * 0.9));
85
  dummy_register_level();
86
 
87
  // for the keyboard...
88
  CBS_register_level(CBS_ENABLE_ALL, 0);
89
 
90
  PI_register_module();
91
  PC_register_module();
92
 
93
  SEM_register_module();
94
 
95
  PTHREAD_register_module(1, 0, 1);
96
 
97
  return TICK;
98
 
99
}
100
 
101
 
102
TASK __init__(void *arg)
103
{
104
  struct multiboot_info *mb = (struct multiboot_info *)arg;
105
 
106
  HARTPORT_init();
107
 
108
  KEYB_init(NULL);
109
 
110
  __call_main__(mb);
111
 
112
  return (void *)0;
113
 
114
}
115
 
116
// --------------------------------------------------
117
// --------------------------------------------------
118
// The Test
119
// --------------------------------------------------
120
// --------------------------------------------------
121
 
122
pthread_t j1 = -1;
123
pthread_t j2 = -1;
124
pthread_t j3 = -1;
125
pthread_t j4 = -1;
126
fsf_server_id_t server1 = -1;
127
fsf_server_id_t server2 = -1;
128
fsf_server_id_t server3 = -1;
129
fsf_server_id_t server4 = -1;
130
fsf_contract_parameters_t contract1, contract2;
131
 
132
 
133
#define TASK_PERIOD 1000000
134
 
135
void *periodic_star(void *arg)
136
{
137
  struct timespec actual,end,next_time;
138
  int actpersecond,act,cycle;
139
  int mean,nmean;
140
  bool was_deadline_missed, was_budget_overran;
141
 
142
  act = 0;
143
  actpersecond = 0;
144
  mean = 0;
145
  nmean = 0;
146
  cycle = 0;
147
  for (;;) {
148
 
149
    kern_gettime(&actual);
150
    cycle++;
151
 
152
    if (act == 0) {
153
      TIMESPEC_ASSIGN(&end,&actual);
154
      end.tv_sec++;
155
    }
156
 
157
    if (TIMESPEC_A_LT_B(&actual,&end)) {
158
      act++;
159
    } else {
160
      actpersecond = act;
161
      act = 0;
162
      mean = (mean * nmean + actpersecond) / (nmean+1);
163
      nmean++;
164
    }
165
 
166
      printf_xy(0,exec_shadow,WHITE,"Thread %3d Act_per_Second = %8d Mean = %8d Cycle = %8d",
167
                                        exec_shadow,actpersecond,mean,cycle);
168
    kern_gettime(&next_time);
169
    ADDUSEC2TIMESPEC(TASK_PERIOD, &next_time);
170
    fsf_schedule_next_timed_job(&next_time, NULL, NULL, &was_deadline_missed, &was_budget_overran);
171
 
172
  }
173
 
174
  return NULL;
175
 
176
}
177
 
178
void *star(void *arg)
179
{
180
  struct timespec actual,end;
181
  int actpersecond,act;
182
  int mean,nmean,cycle;
183
 
184
  act = 0;
185
  actpersecond = 0;
186
  mean = 0;
187
  nmean = 0;
188
  cycle = 0;
189
  for (;;) {
190
 
191
    cycle++;
192
    kern_gettime(&actual);
193
 
194
    if (act == 0) {
195
      TIMESPEC_ASSIGN(&end,&actual);
196
      end.tv_sec++;
197
    }
198
 
199
    if (TIMESPEC_A_LT_B(&actual,&end)) {
200
      act++;
201
    } else {
202
      actpersecond = act;
203
      act = 0;
204
      mean = (mean * nmean + actpersecond) / (nmean+1);
205
      nmean++;
206
    }
207
 
208
      printf_xy(0,exec_shadow,WHITE,"Thread %3d Act_per_Second = %8d Mean = %8d Cycle = %8d",
209
                                    exec_shadow,actpersecond,mean,cycle);
210
 
211
  }
212
 
213
  return NULL;
214
 
215
}
216
 
217
void *edftask(void *arg)
218
{
219
  int i,j;
220
  while(1) {
221
  for (i=0;i<5; i++) {
222
    for (j=0; j<10; j++);
223
    //cputc('#');
224
    //cputs((char *)(arg));
225
  }
226
 
227
  task_endcycle();
228
  }
229
 
230
  return NULL;
231
}
232
 
233
 
234
void create()
235
{
236
  HARD_TASK_MODEL mhard;
237
 
238
  struct timespec period1 = {0,100000000};
239
  struct timespec period2 = {0,100000000};
240
  struct timespec budget1 = {0,30000000};
241
  struct timespec budget2 = {0,30000000};
242
 
243
  PID t1, t2;
244
  int err;
245
 
246
  FSF_start_service_task();
247
 
248
  kern_printf("(Start Create)");
249
 
250
  hard_task_default_model(mhard);
251
  hard_task_def_ctrl_jet(mhard);
252
  hard_task_def_mit(mhard,32000);
253
  hard_task_def_wcet(mhard,3000);
254
  hard_task_def_arg(mhard,(void *)"X");
255
  hard_task_def_group(mhard,1);
256
  hard_task_def_periodic(mhard);
257
 
258
  //t1 = task_create("X", edftask, &mhard, NULL);
259
  //if (t1 == NIL) {
260
  //  perror("Could not create task X ...");
261
  //  sys_end();
262
  //}
263
 
264
  hard_task_def_mit(mhard,32000);
265
  hard_task_def_wcet(mhard,3000);
266
  hard_task_def_arg(mhard,(void *)"Y");
267
  //t2 = task_create("Y", edftask, &mhard, NULL);
268
  //if (t2 == NIL) {
269
  //  perror("Could not create task Y ...");
270
  //  sys_end();
271
  //}
272
 
273
  //group_activate(1);
274
 
275
  err = pthread_create(&j1, NULL, star, (void *)"A");
276
  if (err) {
277
    perror("Could not create task A ...");
278
    sys_end();
279
  }
280
 
281
  err = pthread_create(&j2, NULL, periodic_star, (void *)"B");
282
  if (err) {
283
    perror("Could not create task B ...");
284
    sys_end();
285
  }
286
 
287
  err = pthread_create(&j3, NULL, star, (void *)"C");
288
  if (err) {
289
    perror("Could not create task C ...");
290
    sys_end();
291
  }
292
 
293
  err = pthread_create(&j4, NULL, periodic_star, (void *)"D");
294
  if (err) {
295
    perror("Could not create task D ...");
296
    sys_end();
297
  }
298
 
299
  fsf_initialize_contract(&contract1);
300
  fsf_set_contract_basic_parameters(&contract1,&budget1,&period1,FSF_DEFAULT_WORKLOAD);
301
  fsf_initialize_contract(&contract2);
302
  fsf_set_contract_basic_parameters(&contract2,&budget2,&period2,FSF_DEFAULT_WORKLOAD);
303
 
304
  kern_printf("(End Create)");
305
 
306
}
307
 
308
int main(int argc, char **argv)
309
{
310
 
311
  char ch = 0;
312
  int err;
313
 
314
  create();
315
 
316
  do {
317
    ch = keyb_getch(BLOCK);
318
 
319
    switch(ch) {
320
      case '1':
321
        err = fsf_bind_thread_to_server(server1,j1);
322
        kern_printf("(%d)",err);
323
        break;
324
      case '2':
325
        err = fsf_bind_thread_to_server(server2,j2);
326
        kern_printf("(%d)",err);
327
        break;
328
      case '3':
329
        err = fsf_bind_thread_to_server(server1,j3);
330
        kern_printf("(%d)",err);
331
        break;
332
      case '4':
333
        err = fsf_bind_thread_to_server(server2,j4);
334
        kern_printf("(%d)",err);
335
        break;
336
      case '5':
337
        err = fsf_unbind_thread_from_server(j1);
338
        kern_printf("(%d)",err);
339
        break;
340
      case '6':
341
        err = fsf_unbind_thread_from_server(j2);
342
        kern_printf("(%d)",err);
343
        break;
344
      case '7':
345
        err = fsf_unbind_thread_from_server(j3);
346
        kern_printf("(%d)",err);
347
        break;
348
      case '8':
349
        err = fsf_unbind_thread_from_server(j4);
350
        kern_printf("(%d)",err);
351
        break;
352
      case 'q':
353
        err = fsf_negotiate_contract(&contract1,&server1);
354
        cprintf("(%d)",err);
355
        break;
356
      case 'w':
357
        err = fsf_negotiate_contract(&contract2,&server2);
358
        kern_printf("(%d)",err);
359
        break;
360
      case 'e':
361
        err = fsf_negotiate_contract(&contract1,&server3);
362
        kern_printf("(%d)",err);
363
        break;
364
      case 'r':
365
        err = fsf_cancel_contract(server1);
366
        kern_printf("(%d)",err);
367
        break;
368
      case 't':
369
        err = fsf_cancel_contract(server2);
370
        kern_printf("(%d)",err);
371
        break;
372
      case 'y':
373
        err = fsf_cancel_contract(server3);
374
        kern_printf("(%d)",err);
375
        break;
376
 
377
    }
378
 
379
  } while(ch != ESC);
380
 
381
  sys_end();
382
 
383
  return 0;
384
 
385
}
386