Rev 279 | Rev 830 | Go to most recent revision | Details | Compare with Previous | Last modification | View Log | RSS feed
Rev | Author | Line No. | Line |
---|---|---|---|
221 | giacomo | 1 | /* |
2 | * Project: S.Ha.R.K. |
||
3 | * |
||
4 | * Coordinators: |
||
5 | * Giorgio Buttazzo <giorgio@sssup.it> |
||
6 | * Paolo Gai <pj@gandalf.sssup.it> |
||
7 | * |
||
8 | * Authors : |
||
9 | * Paolo Gai <pj@gandalf.sssup.it> |
||
10 | * Massimiliano Giorgi <massy@gandalf.sssup.it> |
||
11 | * Luca Abeni <luca@gandalf.sssup.it> |
||
12 | * (see the web pages for full authors list) |
||
13 | * |
||
14 | * ReTiS Lab (Scuola Superiore S.Anna - Pisa - Italy) |
||
15 | * |
||
16 | * http://www.sssup.it |
||
17 | * http://retis.sssup.it |
||
18 | * http://shark.sssup.it |
||
19 | */ |
||
20 | |||
21 | /* |
||
22 | * Copyright (C) 2002 Paolo Gai |
||
23 | * |
||
24 | * This program is free software; you can redistribute it and/or modify |
||
25 | * it under the terms of the GNU General Public License as published by |
||
26 | * the Free Software Foundation; either version 2 of the License, or |
||
27 | * (at your option) any later version. |
||
28 | * |
||
29 | * This program is distributed in the hope that it will be useful, |
||
30 | * but WITHOUT ANY WARRANTY; without even the implied warranty of |
||
31 | * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the |
||
32 | * GNU General Public License for more details. |
||
33 | * |
||
34 | * You should have received a copy of the GNU General Public License |
||
35 | * along with this program; if not, write to the Free Software |
||
36 | * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA |
||
37 | * |
||
38 | */ |
||
39 | |||
40 | #include "cbsstar.h" |
||
41 | |||
42 | /* |
||
43 | * DEBUG stuffs begin |
||
44 | */ |
||
263 | giacomo | 45 | //#define CBSSTAR_DEBUG |
221 | giacomo | 46 | #ifdef CBSSTAR_DEBUG |
47 | |||
48 | static __inline__ void fake_printf(char *fmt, ...) {} |
||
49 | |||
50 | #define cbsstar_printf kern_printf |
||
51 | #define cbsstar_printf2 kern_printf |
||
52 | #define cbsstar_printf3 kern_printf |
||
53 | |||
54 | //#define cbsstar_printf fake_printf |
||
55 | //#define cbsstar_printf2 fake_printf |
||
56 | //#define cbsstar_printf3 fake_printf |
||
57 | |||
58 | #endif |
||
59 | /* |
||
60 | * DEBUG stuffs end |
||
61 | */ |
||
62 | |||
63 | /* this structure contains the status for a single budget */ |
||
64 | struct budget_struct { |
||
65 | TIME Q; /* budget */ |
||
66 | TIME T; /* period */ |
||
67 | |||
68 | struct timespec dline; /* deadline */ |
||
69 | int dline_timer; /* oslib event for budget reactivation*/ |
||
70 | int avail; /* current budget */ |
||
71 | |||
72 | LEVEL l; /* Current CBSSTAR level */ |
||
73 | int loc_sched_id; /* Local scheduler id */ |
||
74 | LEVEL loc_sched_level; /* Local scheduler level */ |
||
75 | |||
76 | PID current; /* the task currently put in execution */ |
||
77 | int flags; |
||
78 | |||
79 | IQUEUE tasks; /* a FIFO queue for the tasks handled |
||
80 | using the budget */ |
||
81 | |||
82 | }; |
||
83 | |||
241 | giacomo | 84 | #define CBSSTAR_NOACTIVE 0 |
85 | #define CBSSTAR_ACTIVE 1 |
||
221 | giacomo | 86 | |
87 | typedef struct { |
||
88 | level_des l; /* the standard level descriptor */ |
||
89 | |||
90 | struct budget_struct *b; /* the budgets! */ |
||
91 | int n; /* the maximum index for the budgets */ |
||
92 | int freebudgets; /* number of free budgets; starts from n */ |
||
93 | |||
94 | int tb[MAX_PROC]; /* link task->budget (used in guest_end) */ |
||
95 | |||
263 | giacomo | 96 | bandwidth_t U; /*+ the used bandwidth by the server +*/ |
221 | giacomo | 97 | |
98 | int cap_lev; |
||
279 | giacomo | 99 | struct timespec cap_lasttime; |
221 | giacomo | 100 | |
101 | LEVEL scheduling_level; |
||
102 | |||
103 | } CBSSTAR_level_des; |
||
104 | |||
105 | |||
106 | static void CBSSTAR_deadline_timer_hardreservation(void *a) |
||
107 | { |
||
108 | struct budget_struct *b = a; |
||
109 | PID p; |
||
263 | giacomo | 110 | |
221 | giacomo | 111 | #ifdef CBSSTAR_DEBUG |
112 | cbsstar_printf("(CS:HrdRes:"); |
||
113 | #endif |
||
114 | |||
115 | b->dline_timer = NIL; |
||
116 | |||
117 | /* we modify the deadline according to rule 4 ... */ |
||
118 | /* there is a while because if the wcet is << than the system tick |
||
119 | we need to postpone the deadline many times */ |
||
120 | |||
121 | b->avail += b->Q; |
||
122 | if (b->avail > b->Q) b->avail = b->Q; |
||
123 | |||
124 | if (b->avail > 0) b->flags = CBSSTAR_ACTIVE; |
||
125 | |||
126 | /* avail may be <0 because a task executed via a shadow fo many time |
||
127 | b->current == NIL only if the prec task was finished and there |
||
128 | was not any other task to be put in the ready queue |
||
129 | ... we are now activating the next task */ |
||
130 | if (b->current == NIL && b->flags) { |
||
131 | if (iq_query_first(&(b->tasks)) != NIL) { |
||
263 | giacomo | 132 | CBSSTAR_level_des *lev; |
221 | giacomo | 133 | JOB_TASK_MODEL job; |
134 | |||
135 | p = iq_getfirst(&b->tasks); |
||
136 | |||
137 | #ifdef CBSSTAR_DEBUG |
||
138 | cbsstar_printf("%d",p); |
||
139 | #endif |
||
140 | |||
141 | kern_gettime(&b->dline); |
||
142 | ADDUSEC2TIMESPEC(b->T, &b->dline); |
||
143 | |||
144 | b->current = p; |
||
145 | |||
263 | giacomo | 146 | lev = (CBSSTAR_level_des *)(level_table[b->l]); |
221 | giacomo | 147 | |
148 | job_task_default_model(job, b->dline); |
||
149 | job_task_def_noexc(job); |
||
150 | level_table[ lev->scheduling_level ]-> |
||
151 | private_insert(lev->scheduling_level, p, (TASK_MODEL *)&job); |
||
152 | |||
153 | event_need_reschedule(); |
||
154 | |||
155 | } |
||
234 | giacomo | 156 | } |
241 | giacomo | 157 | |
158 | if (b->flags == CBSSTAR_NOACTIVE) { |
||
159 | kern_gettime(&b->dline); |
||
160 | ADDUSEC2TIMESPEC(b->T, &b->dline); |
||
161 | |||
221 | giacomo | 162 | b->dline_timer=kern_event_post(&b->dline, CBSSTAR_deadline_timer_hardreservation, b); |
241 | giacomo | 163 | } |
221 | giacomo | 164 | |
241 | giacomo | 165 | #ifdef CBSSTAR_DEBUG |
166 | cbsstar_printf(")"); |
||
167 | #endif |
||
237 | giacomo | 168 | |
241 | giacomo | 169 | } |
170 | |||
221 | giacomo | 171 | static void CBSSTAR_activation(CBSSTAR_level_des *lev, |
241 | giacomo | 172 | PID p, |
173 | struct timespec *acttime) |
||
221 | giacomo | 174 | { |
175 | JOB_TASK_MODEL job; |
||
176 | struct budget_struct *b = &lev->b[lev->tb[p]]; |
||
177 | /* we have to check if the deadline and the wcet are correct before |
||
178 | activating a new task or an old task... */ |
||
179 | |||
241 | giacomo | 180 | /* we have to check if the deadline and the wcet are correct before |
181 | * activating a new task or an old task... */ |
||
182 | |||
183 | /* check 1: if the deadline is before than the actual scheduling time */ |
||
184 | |||
185 | /* check 2: if ( avail_time >= (cbs_dline - acttime)* (wcet/period) ) |
||
186 | * (rule 7 in the CBS article!) */ |
||
187 | TIME t; |
||
188 | struct timespec t2,t3; |
||
189 | |||
190 | t = (b->T * b->avail) / b->Q; |
||
191 | t3.tv_sec = t / 1000000; |
||
192 | t3.tv_nsec = (t % 1000000) * 1000; |
||
193 | |||
194 | SUBTIMESPEC(&b->dline, acttime, &t2); |
||
195 | if (/* 1 */ TIMESPEC_A_LT_B(&b->dline, acttime) || |
||
196 | /* 2 */ TIMESPEC_A_GT_B(&t3, &t2) ) { |
||
197 | TIMESPEC_ASSIGN(&b->dline, acttime); |
||
198 | ADDUSEC2TIMESPEC(b->T, &b->dline); |
||
199 | b->avail=b->Q; |
||
200 | b->flags=CBSSTAR_ACTIVE; |
||
237 | giacomo | 201 | } |
221 | giacomo | 202 | |
203 | /* record the current task inserted in the master module */ |
||
204 | b->current = p; |
||
205 | |||
206 | job_task_default_model(job, b->dline); |
||
207 | job_task_def_noexc(job); |
||
208 | level_table[ lev->scheduling_level ]-> |
||
209 | private_insert(lev->scheduling_level, p, (TASK_MODEL *)&job); |
||
210 | |||
211 | } |
||
212 | |||
213 | static void CBSSTAR_account_capacity(CBSSTAR_level_des *lev, PID p) |
||
214 | { |
||
215 | struct timespec ty; |
||
216 | TIME tx; |
||
217 | struct budget_struct *b = &lev->b[lev->tb[p]]; |
||
218 | |||
219 | if (lev->cap_lev != NIL && b->current == p) { |
||
220 | kern_event_delete(lev->cap_lev); |
||
221 | lev->cap_lev = NIL; |
||
222 | } |
||
223 | |||
279 | giacomo | 224 | SUBTIMESPEC(&schedule_time, &lev->cap_lasttime, &ty); |
221 | giacomo | 225 | tx = TIMESPEC2USEC(&ty); |
263 | giacomo | 226 | b->avail -= tx; |
221 | giacomo | 227 | |
228 | #ifdef CBSSTAR_DEBUG |
||
263 | giacomo | 229 | kern_printf("(CS:Cap p%d av=%d)", p, b->avail); |
221 | giacomo | 230 | #endif |
231 | |||
234 | giacomo | 232 | if (b->avail <= 0) b->flags = CBSSTAR_NOACTIVE; |
221 | giacomo | 233 | |
241 | giacomo | 234 | if (TIMESPEC_A_LT_B(&b->dline, &schedule_time)) { |
235 | /* we modify the deadline ... */ |
||
236 | TIMESPEC_ASSIGN(&b->dline, &schedule_time); |
||
237 | ADDUSEC2TIMESPEC(b->T, &b->dline); |
||
238 | } |
||
221 | giacomo | 239 | |
241 | giacomo | 240 | if (b->flags == CBSSTAR_NOACTIVE && b->dline_timer == NIL) { |
241 | b->dline_timer=kern_event_post(&b->dline, CBSSTAR_deadline_timer_hardreservation, b); |
||
242 | } |
||
243 | |||
221 | giacomo | 244 | } |
245 | |||
246 | |||
247 | /* The on-line guarantee is enabled only if the appropriate flag is set... */ |
||
248 | static int CBSSTAR_public_guarantee(LEVEL l, bandwidth_t *freebandwidth) |
||
249 | { |
||
250 | CBSSTAR_level_des *lev = (CBSSTAR_level_des *)(level_table[l]); |
||
251 | |||
252 | #ifdef CBSSTAR_DEBUG |
||
253 | cbsstar_printf("(CS:Gua)"); |
||
254 | #endif |
||
255 | |||
256 | if (*freebandwidth >= lev->U) { |
||
257 | *freebandwidth -= lev->U; |
||
258 | return 1; |
||
259 | } |
||
260 | else |
||
261 | return 0; |
||
262 | } |
||
263 | |||
264 | static void capacity_handler(void *l) |
||
265 | { |
||
266 | |||
267 | CBSSTAR_level_des *lev = l; |
||
268 | lev->cap_lev = NIL; |
||
269 | event_need_reschedule(); |
||
270 | |||
271 | } |
||
272 | |||
273 | static int CBSSTAR_private_eligible(LEVEL l, PID p) |
||
274 | { |
||
275 | CBSSTAR_level_des *lev = (CBSSTAR_level_des *)(level_table[l]); |
||
276 | struct budget_struct *b = &lev->b[lev->tb[p]]; |
||
277 | JOB_TASK_MODEL job; |
||
278 | |||
279 | /* we have to check if the deadline and the wcet are correct... |
||
280 | if the CBSSTAR level schedules in background with respect to others |
||
281 | levels, there can be the case in witch a task is scheduled by |
||
282 | schedule_time > CBSSTAR_deadline; in this case (not covered in the |
||
283 | article because if there is only the standard scheduling policy |
||
284 | this never apply) we reassign the deadline */ |
||
285 | if (b->current == p) { |
||
286 | if ( TIMESPEC_A_LT_B(&b->dline, &schedule_time)) { |
||
287 | if (lev->cap_lev!=NIL) { |
||
288 | kern_event_delete(lev->cap_lev); |
||
289 | lev->cap_lev=NIL; |
||
290 | } |
||
291 | |||
292 | /* we kill the current activation */ |
||
293 | level_table[ lev->scheduling_level ]-> |
||
294 | private_extract(lev->scheduling_level, p); |
||
295 | /* we modify the deadline ... */ |
||
296 | TIMESPEC_ASSIGN(&b->dline, &schedule_time); |
||
297 | ADDUSEC2TIMESPEC(b->T, &b->dline); |
||
298 | |||
299 | /* and the capacity */ |
||
300 | b->avail = b->Q; |
||
301 | b->flags = CBSSTAR_ACTIVE; |
||
302 | |||
303 | if (b->dline_timer!=NIL) { |
||
304 | kern_event_delete(b->dline_timer); |
||
305 | b->dline_timer=NIL; |
||
306 | } |
||
307 | |||
308 | /* and, finally, we reinsert the task in the master level */ |
||
309 | job_task_default_model(job, b->dline); |
||
310 | job_task_def_noexc(job); |
||
311 | level_table[ lev->scheduling_level ]-> |
||
312 | private_insert(lev->scheduling_level, p, (TASK_MODEL *)&job); |
||
313 | |||
314 | return -1; |
||
315 | |||
316 | } |
||
317 | } |
||
318 | |||
319 | return 0; |
||
320 | |||
321 | } |
||
322 | |||
323 | static void CBSSTAR_private_insert(LEVEL l, PID p, TASK_MODEL *m) |
||
324 | { |
||
325 | /* A task has been activated for some reason. Basically, the task is |
||
326 | inserted in the queue if the queue is empty, otherwise the task is |
||
327 | inserted into the master module, and an oslib event is posted. */ |
||
328 | |||
329 | CBSSTAR_level_des *lev = (CBSSTAR_level_des *)(level_table[l]); |
||
330 | BUDGET_TASK_MODEL *budget; |
||
331 | |||
332 | if (m->pclass != BUDGET_PCLASS || |
||
333 | (m->level != 0 && m->level != l)) { |
||
334 | kern_raise(XINVALID_TASK, p); |
||
335 | return; |
||
336 | } |
||
337 | budget = (BUDGET_TASK_MODEL *)m; |
||
338 | |||
339 | #ifdef CBSSTAR_DEBUG |
||
340 | cbsstar_printf("(CS:PriIns:%d:%d", p, budget->b); |
||
341 | #endif |
||
342 | |||
343 | if (budget->b == -1) |
||
344 | return; |
||
345 | |||
346 | lev->tb[p] = budget->b; |
||
347 | |||
348 | if (lev->b[budget->b].current == NIL && lev->b[budget->b].flags ) { |
||
349 | /* This is the first task in the budget, |
||
350 | the task have to be inserted into the master module */ |
||
241 | giacomo | 351 | struct timespec t; |
352 | kern_gettime(&t); |
||
353 | CBSSTAR_activation(lev,p,&t); |
||
221 | giacomo | 354 | } else { |
355 | /* The budget is not empty, another task is already into the |
||
356 | master module, so the task is inserted at the end of the budget |
||
357 | queue */ |
||
358 | iq_insertlast(p,&lev->b[budget->b].tasks); |
||
359 | } |
||
360 | |||
361 | #ifdef CBSSTAR_DEBUG |
||
362 | cbsstar_printf(")"); |
||
363 | #endif |
||
364 | |||
365 | } |
||
366 | |||
367 | static void CBSSTAR_private_extract(LEVEL l, PID p) |
||
368 | { |
||
369 | CBSSTAR_level_des *lev = (CBSSTAR_level_des *)(level_table[l]); |
||
370 | |||
371 | #ifdef CBSSTAR_DEBUG |
||
372 | kern_printf("(CS:Ext:%d)", p); |
||
373 | #endif |
||
374 | |||
375 | /* a task is removed from execution for some reasons. It must be |
||
376 | that it is the first in its budget queue (only the first task in |
||
377 | a budget queue is put into execution!) */ |
||
378 | |||
379 | /* remove the task from execution (or from the ready queue) */ |
||
380 | if (lev->b[lev->tb[p]].current == p) { |
||
381 | |||
241 | giacomo | 382 | CBSSTAR_account_capacity(lev,p); |
221 | giacomo | 383 | /* remove the task from the master module */ |
384 | level_table[ lev->scheduling_level ]-> |
||
385 | private_extract(lev->scheduling_level, p); |
||
386 | |||
387 | /* check if the buffer has someone else to schedule */ |
||
388 | if (iq_query_first(&lev->b[lev->tb[p]].tasks) == NIL) { |
||
389 | /* the buffer has no tasks! */ |
||
390 | lev->b[lev->tb[p]].current = NIL; |
||
391 | } |
||
392 | else if (lev->b[lev->tb[p]].flags) { |
||
393 | /* if so, insert the new task into the master module */ |
||
394 | PID n; |
||
241 | giacomo | 395 | struct timespec t; |
396 | |||
397 | kern_gettime(&t); |
||
237 | giacomo | 398 | n = iq_getfirst(&lev->b[lev->tb[p]].tasks); |
241 | giacomo | 399 | CBSSTAR_activation(lev,n,&t); // it modifies b[lev->tb[p]].current |
221 | giacomo | 400 | } |
401 | else |
||
402 | lev->b[lev->tb[p]].current=NIL; |
||
403 | |||
404 | } |
||
405 | else { |
||
406 | iq_extract(p, &lev->b[lev->tb[p]].tasks); |
||
407 | } |
||
408 | } |
||
409 | |||
410 | static void CBSSTAR_private_dispatch(LEVEL l, PID p, int nostop) |
||
411 | { |
||
412 | CBSSTAR_level_des *lev = (CBSSTAR_level_des *)(level_table[l]); |
||
413 | struct timespec ty; |
||
414 | |||
415 | #ifdef CBSSTAR_DEBUG |
||
416 | kern_printf("(CS:Dsp:%d)", p); |
||
417 | #endif |
||
418 | |||
419 | /* the current task (that is the only one inserted in the master module |
||
420 | for the corresponding budget) is dispatched. Note that the current |
||
421 | task is not inserted in any FIFO queue, so the task does not have to |
||
422 | be extracted! */ |
||
423 | |||
424 | /* ... then, we dispatch it to the master level */ |
||
425 | level_table[ lev->scheduling_level ]-> |
||
426 | private_dispatch(lev->scheduling_level,p,nostop); |
||
427 | |||
428 | /* ...and finally, we have to post a capacity event */ |
||
429 | if (!nostop) { |
||
430 | TIMESPEC_ASSIGN(&ty, &schedule_time); |
||
279 | giacomo | 431 | TIMESPEC_ASSIGN(&lev->cap_lasttime, &schedule_time); |
221 | giacomo | 432 | ADDUSEC2TIMESPEC(lev->b[lev->tb[p]].avail,&ty); |
433 | lev->cap_lev = kern_event_post(&ty,capacity_handler, lev); |
||
279 | giacomo | 434 | |
221 | giacomo | 435 | } |
436 | |||
437 | } |
||
438 | |||
439 | static void CBSSTAR_private_epilogue(LEVEL l, PID p) |
||
440 | { |
||
441 | CBSSTAR_level_des *lev = (CBSSTAR_level_des *)(level_table[l]); |
||
442 | struct budget_struct *b = &lev->b[lev->tb[p]]; |
||
443 | |||
444 | #ifdef CBSSTAR_DEBUG |
||
445 | kern_printf("(CS:Epi:%d)",p); |
||
446 | #endif |
||
447 | |||
448 | if (p==b->current) { |
||
449 | |||
450 | CBSSTAR_account_capacity(lev,p); |
||
451 | |||
452 | // L'evento di capacità va cancellato perchè sarà ripristinato nella successiva dispatch |
||
453 | /* we have to check if the capacity is still available */ |
||
454 | if (b->flags) { |
||
455 | /* there is capacity available, maybe it is simply a preemption; |
||
456 | the task have to return to the ready queue */ |
||
457 | level_table[ lev->scheduling_level ]-> |
||
458 | private_epilogue(lev->scheduling_level,p); |
||
459 | |||
460 | } else { |
||
461 | /* we kill the current activation */ |
||
462 | level_table[ lev->scheduling_level ]-> |
||
463 | private_extract(lev->scheduling_level, p); |
||
464 | |||
465 | iq_insertfirst(p, &b->tasks); |
||
466 | b->current = NIL; |
||
467 | |||
468 | } |
||
469 | |||
470 | } |
||
471 | |||
472 | } |
||
473 | |||
474 | /* Registration functions }*/ |
||
475 | |||
476 | /*+ Registration function: |
||
477 | int flags the init flags ... see CBSSTAR.h +*/ |
||
478 | LEVEL CBSSTAR_register_level(int n, LEVEL master) |
||
479 | { |
||
480 | LEVEL l; /* the level that we register */ |
||
481 | CBSSTAR_level_des *lev; /* for readableness only */ |
||
482 | PID i; /* a counter */ |
||
483 | |||
263 | giacomo | 484 | printk("CBSSTAR_register_level\n"); |
221 | giacomo | 485 | |
486 | /* request an entry in the level_table */ |
||
487 | l = level_alloc_descriptor(sizeof(CBSSTAR_level_des)); |
||
488 | |||
489 | lev = (CBSSTAR_level_des *)level_table[l]; |
||
490 | |||
491 | /* fill the standard descriptor */ |
||
492 | lev->l.private_insert = CBSSTAR_private_insert; |
||
493 | lev->l.private_extract = CBSSTAR_private_extract; |
||
494 | lev->l.private_eligible = CBSSTAR_private_eligible; |
||
495 | lev->l.private_dispatch = CBSSTAR_private_dispatch; |
||
496 | lev->l.private_epilogue = CBSSTAR_private_epilogue; |
||
497 | |||
498 | lev->l.public_guarantee = CBSSTAR_public_guarantee; |
||
499 | |||
500 | /* fill the CBSSTAR descriptor part */ |
||
501 | lev->b = (struct budget_struct *)kern_alloc(sizeof(struct budget_struct)*n); |
||
502 | |||
503 | for (i=0; i<n; i++) { |
||
504 | lev->b[i].Q = 0; |
||
505 | lev->b[i].T = 0; |
||
506 | NULL_TIMESPEC(&lev->b[i].dline); |
||
507 | lev->b[i].dline_timer = NIL; |
||
508 | lev->b[i].avail = 0; |
||
509 | lev->b[i].current = -1; |
||
241 | giacomo | 510 | lev->b[i].flags = CBSSTAR_ACTIVE; |
221 | giacomo | 511 | lev->b[i].l=l; |
241 | giacomo | 512 | iq_init(&lev->b[i].tasks, /* &freedesc */NULL, 0); |
221 | giacomo | 513 | } |
514 | |||
515 | lev->n = n; |
||
516 | lev->freebudgets = 0; |
||
517 | |||
518 | for (i=0; i<MAX_PROC; i++) |
||
519 | lev->tb[i] = NIL; |
||
520 | |||
521 | lev->U = 0; |
||
522 | lev->cap_lev = NIL; |
||
279 | giacomo | 523 | NULL_TIMESPEC(&lev->cap_lasttime); |
221 | giacomo | 524 | lev->scheduling_level = master; |
525 | |||
526 | return l; |
||
527 | |||
528 | } |
||
529 | |||
530 | int CBSSTAR_setbudget(LEVEL l, TIME Q, TIME T, LEVEL local_scheduler_level, int scheduler_id) |
||
531 | { |
||
532 | CBSSTAR_level_des *lev = (CBSSTAR_level_des *)(level_table[l]); |
||
533 | int r; |
||
534 | |||
535 | #ifdef CBSSTAR_DEBUG |
||
536 | cbsstar_printf("(CS:SetBud)"); |
||
537 | #endif |
||
538 | |||
539 | for (r = 0; r < lev->n; r++) |
||
540 | if (lev->b[r].Q == 0) break; |
||
541 | |||
542 | if (r != lev->n) { |
||
543 | bandwidth_t b; |
||
544 | b = (MAX_BANDWIDTH / T) * Q; |
||
545 | |||
546 | /* really update lev->U, checking an overflow... */ |
||
547 | if (Q< T && MAX_BANDWIDTH - lev->U > b) { |
||
548 | |||
549 | lev->U += b; |
||
550 | lev->freebudgets++; |
||
551 | |||
552 | lev->b[r].Q = Q; |
||
553 | lev->b[r].T = T; |
||
241 | giacomo | 554 | lev->b[r].avail = Q; |
555 | lev->b[r].flags = CBSSTAR_ACTIVE; |
||
221 | giacomo | 556 | lev->b[r].loc_sched_id = scheduler_id; |
557 | lev->b[r].loc_sched_level = local_scheduler_level; |
||
558 | |||
559 | return r; |
||
560 | } |
||
561 | else |
||
562 | return -2; |
||
563 | } |
||
564 | else |
||
565 | return -1; |
||
566 | } |
||
567 | |||
568 | int CBSSTAR_removebudget(LEVEL l, int budget) |
||
569 | { |
||
570 | |||
571 | CBSSTAR_level_des *lev = (CBSSTAR_level_des *)(level_table[l]); |
||
572 | |||
573 | bandwidth_t b; |
||
574 | |||
575 | b = (MAX_BANDWIDTH / lev->b[budget].T) * lev->b[budget].Q; |
||
576 | |||
577 | lev->U -= b; |
||
578 | |||
579 | lev->b[budget].Q = 0; |
||
580 | lev->b[budget].T = 0; |
||
581 | NULL_TIMESPEC(&lev->b[budget].dline); |
||
582 | lev->b[budget].dline_timer = NIL; |
||
583 | lev->b[budget].avail = 0; |
||
584 | lev->b[budget].current = -1; |
||
241 | giacomo | 585 | lev->b[budget].flags = CBSSTAR_ACTIVE; |
221 | giacomo | 586 | |
587 | return 0; |
||
588 | |||
589 | } |
||
590 | |||
591 | int CBSSTAR_adjust_budget(LEVEL l, TIME Q, TIME T, int budget) |
||
592 | { |
||
593 | |||
594 | CBSSTAR_level_des *lev = (CBSSTAR_level_des *)(level_table[l]); |
||
595 | |||
596 | lev->b[budget].Q = Q; |
||
597 | lev->b[budget].T = T; |
||
598 | |||
599 | return 0; |
||
600 | |||
601 | } |
||
602 | |||
603 | int CBSSTAR_getbudgetinfo(LEVEL l, TIME *Q, TIME *T, int budget) |
||
604 | { |
||
605 | |||
606 | CBSSTAR_level_des *lev = (CBSSTAR_level_des *)(level_table[l]); |
||
607 | |||
608 | *Q = lev->b[budget].Q; |
||
609 | *T = lev->b[budget].T; |
||
610 | |||
611 | return 0; |
||
612 | |||
613 | } |
||
614 | |||
288 | giacomo | 615 | int CBSSTAR_get_last_reclaiming(LEVEL l, PID p) |
273 | giacomo | 616 | { |
617 | |||
618 | return 0; |
||
619 | |||
620 | } |
||
621 | |||
221 | giacomo | 622 | int CBSSTAR_is_active(LEVEL l, int budget) |
623 | { |
||
624 | CBSSTAR_level_des *lev = (CBSSTAR_level_des *)(level_table[l]); |
||
625 | |||
626 | return lev->b[budget].flags; |
||
627 | |||
628 | } |
||
629 | |||
630 | int CBSSTAR_get_local_scheduler_level_from_budget(LEVEL l, int budget) |
||
631 | { |
||
632 | CBSSTAR_level_des *lev = (CBSSTAR_level_des *)(level_table[l]); |
||
633 | |||
634 | return lev->b[budget].loc_sched_level; |
||
635 | |||
636 | } |
||
637 | |||
638 | int CBSSTAR_get_local_scheduler_level_from_pid(LEVEL l, PID p) |
||
639 | { |
||
640 | CBSSTAR_level_des *lev = (CBSSTAR_level_des *)(level_table[l]); |
||
641 | |||
642 | return lev->b[lev->tb[p]].loc_sched_level; |
||
643 | |||
644 | } |
||
645 | |||
646 | int CBSSTAR_get_local_scheduler_id_from_budget(LEVEL l, int budget) |
||
647 | { |
||
648 | CBSSTAR_level_des *lev = (CBSSTAR_level_des *)(level_table[l]); |
||
649 | |||
650 | return lev->b[budget].loc_sched_id; |
||
651 | |||
652 | } |
||
653 | |||
654 | int CBSSTAR_get_local_scheduler_id_from_pid(LEVEL l, PID p) |
||
655 | { |
||
656 | CBSSTAR_level_des *lev = (CBSSTAR_level_des *)(level_table[l]); |
||
657 | |||
658 | return lev->b[lev->tb[p]].loc_sched_id; |
||
659 | |||
660 | } |
||
661 |