rf_states.c revision 1.15 1 1.15 oster /* $NetBSD: rf_states.c,v 1.15 2000/10/20 02:24:45 oster Exp $ */
2 1.1 oster /*
3 1.1 oster * Copyright (c) 1995 Carnegie-Mellon University.
4 1.1 oster * All rights reserved.
5 1.1 oster *
6 1.1 oster * Author: Mark Holland, William V. Courtright II, Robby Findler
7 1.1 oster *
8 1.1 oster * Permission to use, copy, modify and distribute this software and
9 1.1 oster * its documentation is hereby granted, provided that both the copyright
10 1.1 oster * notice and this permission notice appear in all copies of the
11 1.1 oster * software, derivative works or modified versions, and any portions
12 1.1 oster * thereof, and that both notices appear in supporting documentation.
13 1.1 oster *
14 1.1 oster * CARNEGIE MELLON ALLOWS FREE USE OF THIS SOFTWARE IN ITS "AS IS"
15 1.1 oster * CONDITION. CARNEGIE MELLON DISCLAIMS ANY LIABILITY OF ANY KIND
16 1.1 oster * FOR ANY DAMAGES WHATSOEVER RESULTING FROM THE USE OF THIS SOFTWARE.
17 1.1 oster *
18 1.1 oster * Carnegie Mellon requests users of this software to return to
19 1.1 oster *
20 1.1 oster * Software Distribution Coordinator or Software.Distribution (at) CS.CMU.EDU
21 1.1 oster * School of Computer Science
22 1.1 oster * Carnegie Mellon University
23 1.1 oster * Pittsburgh PA 15213-3890
24 1.1 oster *
25 1.1 oster * any improvements or extensions that they make and grant Carnegie the
26 1.1 oster * rights to redistribute these changes.
27 1.1 oster */
28 1.1 oster
29 1.1 oster #include <sys/errno.h>
30 1.1 oster
31 1.1 oster #include "rf_archs.h"
32 1.1 oster #include "rf_threadstuff.h"
33 1.1 oster #include "rf_raid.h"
34 1.1 oster #include "rf_dag.h"
35 1.1 oster #include "rf_desc.h"
36 1.1 oster #include "rf_aselect.h"
37 1.1 oster #include "rf_general.h"
38 1.1 oster #include "rf_states.h"
39 1.1 oster #include "rf_dagutils.h"
40 1.1 oster #include "rf_driver.h"
41 1.1 oster #include "rf_engine.h"
42 1.1 oster #include "rf_map.h"
43 1.1 oster #include "rf_etimer.h"
44 1.10 oster #include "rf_kintf.h"
45 1.1 oster
46 1.1 oster /* prototypes for some of the available states.
47 1.1 oster
48 1.1 oster States must:
49 1.1 oster
50 1.1 oster - not block.
51 1.1 oster
52 1.1 oster - either schedule rf_ContinueRaidAccess as a callback and return
53 1.1 oster RF_TRUE, or complete all of their work and return RF_FALSE.
54 1.1 oster
55 1.1 oster - increment desc->state when they have finished their work.
56 1.1 oster */
57 1.1 oster
58 1.6 oster static char *
59 1.6 oster StateName(RF_AccessState_t state)
60 1.1 oster {
61 1.6 oster switch (state) {
62 1.6 oster case rf_QuiesceState:return "QuiesceState";
63 1.6 oster case rf_MapState:
64 1.6 oster return "MapState";
65 1.6 oster case rf_LockState:
66 1.6 oster return "LockState";
67 1.6 oster case rf_CreateDAGState:
68 1.6 oster return "CreateDAGState";
69 1.6 oster case rf_ExecuteDAGState:
70 1.6 oster return "ExecuteDAGState";
71 1.6 oster case rf_ProcessDAGState:
72 1.6 oster return "ProcessDAGState";
73 1.6 oster case rf_CleanupState:
74 1.6 oster return "CleanupState";
75 1.6 oster case rf_LastState:
76 1.6 oster return "LastState";
77 1.6 oster case rf_IncrAccessesCountState:
78 1.6 oster return "IncrAccessesCountState";
79 1.6 oster case rf_DecrAccessesCountState:
80 1.6 oster return "DecrAccessesCountState";
81 1.6 oster default:
82 1.6 oster return "!!! UnnamedState !!!";
83 1.6 oster }
84 1.6 oster }
85 1.6 oster
86 1.6 oster void
87 1.6 oster rf_ContinueRaidAccess(RF_RaidAccessDesc_t * desc)
88 1.6 oster {
89 1.6 oster int suspended = RF_FALSE;
90 1.6 oster int current_state_index = desc->state;
91 1.6 oster RF_AccessState_t current_state = desc->states[current_state_index];
92 1.12 oster int unit = desc->raidPtr->raidid;
93 1.6 oster
94 1.6 oster do {
95 1.6 oster
96 1.6 oster current_state_index = desc->state;
97 1.6 oster current_state = desc->states[current_state_index];
98 1.6 oster
99 1.6 oster switch (current_state) {
100 1.6 oster
101 1.6 oster case rf_QuiesceState:
102 1.6 oster suspended = rf_State_Quiesce(desc);
103 1.6 oster break;
104 1.6 oster case rf_IncrAccessesCountState:
105 1.6 oster suspended = rf_State_IncrAccessCount(desc);
106 1.6 oster break;
107 1.6 oster case rf_MapState:
108 1.6 oster suspended = rf_State_Map(desc);
109 1.6 oster break;
110 1.6 oster case rf_LockState:
111 1.6 oster suspended = rf_State_Lock(desc);
112 1.6 oster break;
113 1.6 oster case rf_CreateDAGState:
114 1.6 oster suspended = rf_State_CreateDAG(desc);
115 1.6 oster break;
116 1.6 oster case rf_ExecuteDAGState:
117 1.6 oster suspended = rf_State_ExecuteDAG(desc);
118 1.6 oster break;
119 1.6 oster case rf_ProcessDAGState:
120 1.6 oster suspended = rf_State_ProcessDAG(desc);
121 1.6 oster break;
122 1.6 oster case rf_CleanupState:
123 1.6 oster suspended = rf_State_Cleanup(desc);
124 1.6 oster break;
125 1.6 oster case rf_DecrAccessesCountState:
126 1.6 oster suspended = rf_State_DecrAccessCount(desc);
127 1.6 oster break;
128 1.6 oster case rf_LastState:
129 1.6 oster suspended = rf_State_LastState(desc);
130 1.6 oster break;
131 1.6 oster }
132 1.6 oster
133 1.6 oster /* after this point, we cannot dereference desc since desc may
134 1.6 oster * have been freed. desc is only freed in LastState, so if we
135 1.6 oster * renter this function or loop back up, desc should be valid. */
136 1.6 oster
137 1.6 oster if (rf_printStatesDebug) {
138 1.12 oster printf("raid%d: State: %-24s StateIndex: %3i desc: 0x%ld %s\n",
139 1.12 oster unit, StateName(current_state),
140 1.12 oster current_state_index, (long) desc,
141 1.12 oster suspended ? "callback scheduled" : "looping");
142 1.6 oster }
143 1.6 oster } while (!suspended && current_state != rf_LastState);
144 1.6 oster
145 1.6 oster return;
146 1.6 oster }
147 1.6 oster
148 1.6 oster
149 1.6 oster void
150 1.6 oster rf_ContinueDagAccess(RF_DagList_t * dagList)
151 1.6 oster {
152 1.6 oster RF_AccTraceEntry_t *tracerec = &(dagList->desc->tracerec);
153 1.6 oster RF_RaidAccessDesc_t *desc;
154 1.6 oster RF_DagHeader_t *dag_h;
155 1.6 oster RF_Etimer_t timer;
156 1.6 oster int i;
157 1.6 oster
158 1.6 oster desc = dagList->desc;
159 1.6 oster
160 1.6 oster timer = tracerec->timer;
161 1.6 oster RF_ETIMER_STOP(timer);
162 1.6 oster RF_ETIMER_EVAL(timer);
163 1.6 oster tracerec->specific.user.exec_us = RF_ETIMER_VAL_US(timer);
164 1.6 oster RF_ETIMER_START(tracerec->timer);
165 1.6 oster
166 1.6 oster /* skip to dag which just finished */
167 1.6 oster dag_h = dagList->dags;
168 1.6 oster for (i = 0; i < dagList->numDagsDone; i++) {
169 1.6 oster dag_h = dag_h->next;
170 1.6 oster }
171 1.6 oster
172 1.6 oster /* check to see if retry is required */
173 1.6 oster if (dag_h->status == rf_rollBackward) {
174 1.6 oster /* when a dag fails, mark desc status as bad and allow all
175 1.6 oster * other dags in the desc to execute to completion. then,
176 1.6 oster * free all dags and start over */
177 1.6 oster desc->status = 1; /* bad status */
178 1.6 oster {
179 1.13 oster printf("raid%d: DAG failure: %c addr 0x%lx (%ld) nblk 0x%x (%d) buf 0x%lx\n",
180 1.13 oster desc->raidPtr->raidid, desc->type,
181 1.13 oster (long) desc->raidAddress,
182 1.13 oster (long) desc->raidAddress, (int) desc->numBlocks,
183 1.13 oster (int) desc->numBlocks,
184 1.13 oster (unsigned long) (desc->bufPtr));
185 1.6 oster }
186 1.6 oster }
187 1.6 oster dagList->numDagsDone++;
188 1.6 oster rf_ContinueRaidAccess(desc);
189 1.6 oster }
190 1.6 oster
191 1.6 oster int
192 1.6 oster rf_State_LastState(RF_RaidAccessDesc_t * desc)
193 1.1 oster {
194 1.6 oster void (*callbackFunc) (RF_CBParam_t) = desc->callbackFunc;
195 1.6 oster RF_CBParam_t callbackArg;
196 1.2 drochner
197 1.6 oster callbackArg.p = desc->callbackArg;
198 1.8 oster
199 1.8 oster /*
200 1.8 oster * If this is not an async request, wake up the caller
201 1.8 oster */
202 1.8 oster if (desc->async_flag == 0)
203 1.8 oster wakeup(desc->bp);
204 1.15 oster
205 1.15 oster /*
206 1.15 oster * That's all the IO for this one... unbusy the 'disk'.
207 1.15 oster */
208 1.15 oster
209 1.15 oster rf_disk_unbusy(desc);
210 1.15 oster
211 1.8 oster /*
212 1.8 oster * Wakeup any requests waiting to go.
213 1.8 oster */
214 1.8 oster
215 1.8 oster RF_LOCK_MUTEX(((RF_Raid_t *) desc->raidPtr)->mutex);
216 1.8 oster ((RF_Raid_t *) desc->raidPtr)->openings++;
217 1.8 oster RF_UNLOCK_MUTEX(((RF_Raid_t *) desc->raidPtr)->mutex);
218 1.10 oster
219 1.10 oster /* wake up any pending IO */
220 1.10 oster raidstart(((RF_Raid_t *) desc->raidPtr));
221 1.10 oster
222 1.8 oster /* printf("Calling biodone on 0x%x\n",desc->bp); */
223 1.8 oster biodone(desc->bp); /* access came through ioctl */
224 1.3 explorer
225 1.6 oster if (callbackFunc)
226 1.6 oster callbackFunc(callbackArg);
227 1.6 oster rf_FreeRaidAccDesc(desc);
228 1.6 oster
229 1.6 oster return RF_FALSE;
230 1.6 oster }
231 1.6 oster
232 1.6 oster int
233 1.6 oster rf_State_IncrAccessCount(RF_RaidAccessDesc_t * desc)
234 1.6 oster {
235 1.6 oster RF_Raid_t *raidPtr;
236 1.6 oster
237 1.6 oster raidPtr = desc->raidPtr;
238 1.6 oster /* Bummer. We have to do this to be 100% safe w.r.t. the increment
239 1.6 oster * below */
240 1.6 oster RF_LOCK_MUTEX(raidPtr->access_suspend_mutex);
241 1.6 oster raidPtr->accs_in_flight++; /* used to detect quiescence */
242 1.6 oster RF_UNLOCK_MUTEX(raidPtr->access_suspend_mutex);
243 1.6 oster
244 1.6 oster desc->state++;
245 1.6 oster return RF_FALSE;
246 1.6 oster }
247 1.6 oster
248 1.6 oster int
249 1.6 oster rf_State_DecrAccessCount(RF_RaidAccessDesc_t * desc)
250 1.6 oster {
251 1.6 oster RF_Raid_t *raidPtr;
252 1.6 oster
253 1.6 oster raidPtr = desc->raidPtr;
254 1.6 oster
255 1.6 oster RF_LOCK_MUTEX(raidPtr->access_suspend_mutex);
256 1.6 oster raidPtr->accs_in_flight--;
257 1.6 oster if (raidPtr->accesses_suspended && raidPtr->accs_in_flight == 0) {
258 1.6 oster rf_SignalQuiescenceLock(raidPtr, raidPtr->reconDesc);
259 1.6 oster }
260 1.6 oster rf_UpdateUserStats(raidPtr, RF_ETIMER_VAL_US(desc->timer), desc->numBlocks);
261 1.6 oster RF_UNLOCK_MUTEX(raidPtr->access_suspend_mutex);
262 1.6 oster
263 1.6 oster desc->state++;
264 1.6 oster return RF_FALSE;
265 1.6 oster }
266 1.6 oster
267 1.6 oster int
268 1.6 oster rf_State_Quiesce(RF_RaidAccessDesc_t * desc)
269 1.6 oster {
270 1.6 oster RF_AccTraceEntry_t *tracerec = &desc->tracerec;
271 1.6 oster RF_Etimer_t timer;
272 1.6 oster int suspended = RF_FALSE;
273 1.6 oster RF_Raid_t *raidPtr;
274 1.6 oster
275 1.6 oster raidPtr = desc->raidPtr;
276 1.6 oster
277 1.6 oster RF_ETIMER_START(timer);
278 1.6 oster RF_ETIMER_START(desc->timer);
279 1.6 oster
280 1.6 oster RF_LOCK_MUTEX(raidPtr->access_suspend_mutex);
281 1.6 oster if (raidPtr->accesses_suspended) {
282 1.6 oster RF_CallbackDesc_t *cb;
283 1.6 oster cb = rf_AllocCallbackDesc();
284 1.6 oster /* XXX the following cast is quite bogus...
285 1.6 oster * rf_ContinueRaidAccess takes a (RF_RaidAccessDesc_t *) as an
286 1.6 oster * argument.. GO */
287 1.6 oster cb->callbackFunc = (void (*) (RF_CBParam_t)) rf_ContinueRaidAccess;
288 1.6 oster cb->callbackArg.p = (void *) desc;
289 1.6 oster cb->next = raidPtr->quiesce_wait_list;
290 1.6 oster raidPtr->quiesce_wait_list = cb;
291 1.6 oster suspended = RF_TRUE;
292 1.6 oster }
293 1.6 oster RF_UNLOCK_MUTEX(raidPtr->access_suspend_mutex);
294 1.6 oster
295 1.6 oster RF_ETIMER_STOP(timer);
296 1.6 oster RF_ETIMER_EVAL(timer);
297 1.6 oster tracerec->specific.user.suspend_ovhd_us += RF_ETIMER_VAL_US(timer);
298 1.6 oster
299 1.6 oster if (suspended && rf_quiesceDebug)
300 1.6 oster printf("Stalling access due to quiescence lock\n");
301 1.6 oster
302 1.6 oster desc->state++;
303 1.6 oster return suspended;
304 1.6 oster }
305 1.6 oster
306 1.6 oster int
307 1.6 oster rf_State_Map(RF_RaidAccessDesc_t * desc)
308 1.6 oster {
309 1.6 oster RF_Raid_t *raidPtr = desc->raidPtr;
310 1.6 oster RF_AccTraceEntry_t *tracerec = &desc->tracerec;
311 1.6 oster RF_Etimer_t timer;
312 1.6 oster
313 1.6 oster RF_ETIMER_START(timer);
314 1.6 oster
315 1.6 oster if (!(desc->asmap = rf_MapAccess(raidPtr, desc->raidAddress, desc->numBlocks,
316 1.6 oster desc->bufPtr, RF_DONT_REMAP)))
317 1.6 oster RF_PANIC();
318 1.6 oster
319 1.6 oster RF_ETIMER_STOP(timer);
320 1.6 oster RF_ETIMER_EVAL(timer);
321 1.6 oster tracerec->specific.user.map_us = RF_ETIMER_VAL_US(timer);
322 1.6 oster
323 1.6 oster desc->state++;
324 1.6 oster return RF_FALSE;
325 1.6 oster }
326 1.6 oster
327 1.6 oster int
328 1.6 oster rf_State_Lock(RF_RaidAccessDesc_t * desc)
329 1.6 oster {
330 1.6 oster RF_AccTraceEntry_t *tracerec = &desc->tracerec;
331 1.6 oster RF_Raid_t *raidPtr = desc->raidPtr;
332 1.6 oster RF_AccessStripeMapHeader_t *asmh = desc->asmap;
333 1.6 oster RF_AccessStripeMap_t *asm_p;
334 1.6 oster RF_Etimer_t timer;
335 1.6 oster int suspended = RF_FALSE;
336 1.6 oster
337 1.6 oster RF_ETIMER_START(timer);
338 1.6 oster if (!(raidPtr->Layout.map->flags & RF_NO_STRIPE_LOCKS)) {
339 1.6 oster RF_StripeNum_t lastStripeID = -1;
340 1.6 oster
341 1.6 oster /* acquire each lock that we don't already hold */
342 1.6 oster for (asm_p = asmh->stripeMap; asm_p; asm_p = asm_p->next) {
343 1.6 oster RF_ASSERT(RF_IO_IS_R_OR_W(desc->type));
344 1.6 oster if (!rf_suppressLocksAndLargeWrites &&
345 1.6 oster asm_p->parityInfo &&
346 1.6 oster !(desc->flags & RF_DAG_SUPPRESS_LOCKS) &&
347 1.6 oster !(asm_p->flags & RF_ASM_FLAGS_LOCK_TRIED)) {
348 1.6 oster asm_p->flags |= RF_ASM_FLAGS_LOCK_TRIED;
349 1.6 oster RF_ASSERT(asm_p->stripeID > lastStripeID); /* locks must be
350 1.6 oster * acquired
351 1.6 oster * hierarchically */
352 1.6 oster lastStripeID = asm_p->stripeID;
353 1.6 oster /* XXX the cast to (void (*)(RF_CBParam_t))
354 1.6 oster * below is bogus! GO */
355 1.6 oster RF_INIT_LOCK_REQ_DESC(asm_p->lockReqDesc, desc->type,
356 1.6 oster (void (*) (struct buf *)) rf_ContinueRaidAccess, desc, asm_p,
357 1.6 oster raidPtr->Layout.dataSectorsPerStripe);
358 1.6 oster if (rf_AcquireStripeLock(raidPtr->lockTable, asm_p->stripeID,
359 1.6 oster &asm_p->lockReqDesc)) {
360 1.6 oster suspended = RF_TRUE;
361 1.6 oster break;
362 1.6 oster }
363 1.6 oster }
364 1.6 oster if (desc->type == RF_IO_TYPE_WRITE &&
365 1.6 oster raidPtr->status[asm_p->physInfo->row] == rf_rs_reconstructing) {
366 1.6 oster if (!(asm_p->flags & RF_ASM_FLAGS_FORCE_TRIED)) {
367 1.6 oster int val;
368 1.6 oster
369 1.6 oster asm_p->flags |= RF_ASM_FLAGS_FORCE_TRIED;
370 1.6 oster /* XXX the cast below is quite
371 1.6 oster * bogus!!! XXX GO */
372 1.6 oster val = rf_ForceOrBlockRecon(raidPtr, asm_p,
373 1.6 oster (void (*) (RF_Raid_t *, void *)) rf_ContinueRaidAccess, desc);
374 1.6 oster if (val == 0) {
375 1.6 oster asm_p->flags |= RF_ASM_FLAGS_RECON_BLOCKED;
376 1.6 oster } else {
377 1.6 oster suspended = RF_TRUE;
378 1.6 oster break;
379 1.6 oster }
380 1.6 oster } else {
381 1.6 oster if (rf_pssDebug) {
382 1.13 oster printf("raid%d: skipping force/block because already done, psid %ld\n",
383 1.13 oster desc->raidPtr->raidid,
384 1.13 oster (long) asm_p->stripeID);
385 1.6 oster }
386 1.6 oster }
387 1.6 oster } else {
388 1.6 oster if (rf_pssDebug) {
389 1.13 oster printf("raid%d: skipping force/block because not write or not under recon, psid %ld\n",
390 1.13 oster desc->raidPtr->raidid,
391 1.13 oster (long) asm_p->stripeID);
392 1.6 oster }
393 1.6 oster }
394 1.6 oster }
395 1.6 oster
396 1.6 oster RF_ETIMER_STOP(timer);
397 1.6 oster RF_ETIMER_EVAL(timer);
398 1.6 oster tracerec->specific.user.lock_us += RF_ETIMER_VAL_US(timer);
399 1.6 oster
400 1.6 oster if (suspended)
401 1.6 oster return (RF_TRUE);
402 1.6 oster }
403 1.6 oster desc->state++;
404 1.6 oster return (RF_FALSE);
405 1.1 oster }
406 1.1 oster /*
407 1.1 oster * the following three states create, execute, and post-process dags
408 1.1 oster * the error recovery unit is a single dag.
409 1.1 oster * by default, SelectAlgorithm creates an array of dags, one per parity stripe
410 1.1 oster * in some tricky cases, multiple dags per stripe are created
411 1.1 oster * - dags within a parity stripe are executed sequentially (arbitrary order)
412 1.1 oster * - dags for distinct parity stripes are executed concurrently
413 1.1 oster *
414 1.1 oster * repeat until all dags complete successfully -or- dag selection fails
415 1.1 oster *
416 1.1 oster * while !done
417 1.1 oster * create dag(s) (SelectAlgorithm)
418 1.1 oster * if dag
419 1.1 oster * execute dag (DispatchDAG)
420 1.1 oster * if dag successful
421 1.1 oster * done (SUCCESS)
422 1.1 oster * else
423 1.1 oster * !done (RETRY - start over with new dags)
424 1.1 oster * else
425 1.1 oster * done (FAIL)
426 1.1 oster */
427 1.6 oster int
428 1.6 oster rf_State_CreateDAG(RF_RaidAccessDesc_t * desc)
429 1.1 oster {
430 1.6 oster RF_AccTraceEntry_t *tracerec = &desc->tracerec;
431 1.6 oster RF_Etimer_t timer;
432 1.6 oster RF_DagHeader_t *dag_h;
433 1.6 oster int i, selectStatus;
434 1.6 oster
435 1.6 oster /* generate a dag for the access, and fire it off. When the dag
436 1.6 oster * completes, we'll get re-invoked in the next state. */
437 1.6 oster RF_ETIMER_START(timer);
438 1.6 oster /* SelectAlgorithm returns one or more dags */
439 1.6 oster selectStatus = rf_SelectAlgorithm(desc, desc->flags | RF_DAG_SUPPRESS_LOCKS);
440 1.6 oster if (rf_printDAGsDebug)
441 1.6 oster for (i = 0; i < desc->numStripes; i++)
442 1.6 oster rf_PrintDAGList(desc->dagArray[i].dags);
443 1.6 oster RF_ETIMER_STOP(timer);
444 1.6 oster RF_ETIMER_EVAL(timer);
445 1.6 oster /* update time to create all dags */
446 1.6 oster tracerec->specific.user.dag_create_us = RF_ETIMER_VAL_US(timer);
447 1.6 oster
448 1.6 oster desc->status = 0; /* good status */
449 1.6 oster
450 1.6 oster if (selectStatus) {
451 1.6 oster /* failed to create a dag */
452 1.6 oster /* this happens when there are too many faults or incomplete
453 1.6 oster * dag libraries */
454 1.14 oster printf("[Failed to create a DAG]\n");
455 1.6 oster RF_PANIC();
456 1.6 oster } else {
457 1.6 oster /* bind dags to desc */
458 1.6 oster for (i = 0; i < desc->numStripes; i++) {
459 1.6 oster dag_h = desc->dagArray[i].dags;
460 1.6 oster while (dag_h) {
461 1.6 oster dag_h->bp = (struct buf *) desc->bp;
462 1.6 oster dag_h->tracerec = tracerec;
463 1.6 oster dag_h = dag_h->next;
464 1.6 oster }
465 1.6 oster }
466 1.6 oster desc->flags |= RF_DAG_DISPATCH_RETURNED;
467 1.6 oster desc->state++; /* next state should be rf_State_ExecuteDAG */
468 1.6 oster }
469 1.6 oster return RF_FALSE;
470 1.1 oster }
471 1.1 oster
472 1.1 oster
473 1.1 oster
474 1.1 oster /* the access has an array of dagLists, one dagList per parity stripe.
475 1.1 oster * fire the first dag in each parity stripe (dagList).
476 1.1 oster * dags within a stripe (dagList) must be executed sequentially
477 1.1 oster * - this preserves atomic parity update
478 1.1 oster * dags for independents parity groups (stripes) are fired concurrently */
479 1.1 oster
480 1.6 oster int
481 1.6 oster rf_State_ExecuteDAG(RF_RaidAccessDesc_t * desc)
482 1.1 oster {
483 1.6 oster int i;
484 1.6 oster RF_DagHeader_t *dag_h;
485 1.6 oster RF_DagList_t *dagArray = desc->dagArray;
486 1.6 oster
487 1.6 oster /* next state is always rf_State_ProcessDAG important to do this
488 1.6 oster * before firing the first dag (it may finish before we leave this
489 1.6 oster * routine) */
490 1.6 oster desc->state++;
491 1.6 oster
492 1.6 oster /* sweep dag array, a stripe at a time, firing the first dag in each
493 1.6 oster * stripe */
494 1.6 oster for (i = 0; i < desc->numStripes; i++) {
495 1.6 oster RF_ASSERT(dagArray[i].numDags > 0);
496 1.6 oster RF_ASSERT(dagArray[i].numDagsDone == 0);
497 1.6 oster RF_ASSERT(dagArray[i].numDagsFired == 0);
498 1.6 oster RF_ETIMER_START(dagArray[i].tracerec.timer);
499 1.6 oster /* fire first dag in this stripe */
500 1.6 oster dag_h = dagArray[i].dags;
501 1.6 oster RF_ASSERT(dag_h);
502 1.6 oster dagArray[i].numDagsFired++;
503 1.6 oster /* XXX Yet another case where we pass in a conflicting
504 1.6 oster * function pointer :-( XXX GO */
505 1.6 oster rf_DispatchDAG(dag_h, (void (*) (void *)) rf_ContinueDagAccess, &dagArray[i]);
506 1.6 oster }
507 1.6 oster
508 1.6 oster /* the DAG will always call the callback, even if there was no
509 1.6 oster * blocking, so we are always suspended in this state */
510 1.6 oster return RF_TRUE;
511 1.1 oster }
512 1.1 oster
513 1.1 oster
514 1.1 oster
515 1.1 oster /* rf_State_ProcessDAG is entered when a dag completes.
516 1.1 oster * first, check to all dags in the access have completed
517 1.1 oster * if not, fire as many dags as possible */
518 1.1 oster
519 1.6 oster int
520 1.6 oster rf_State_ProcessDAG(RF_RaidAccessDesc_t * desc)
521 1.1 oster {
522 1.6 oster RF_AccessStripeMapHeader_t *asmh = desc->asmap;
523 1.6 oster RF_Raid_t *raidPtr = desc->raidPtr;
524 1.6 oster RF_DagHeader_t *dag_h;
525 1.6 oster int i, j, done = RF_TRUE;
526 1.6 oster RF_DagList_t *dagArray = desc->dagArray;
527 1.6 oster RF_Etimer_t timer;
528 1.6 oster
529 1.6 oster /* check to see if this is the last dag */
530 1.6 oster for (i = 0; i < desc->numStripes; i++)
531 1.6 oster if (dagArray[i].numDags != dagArray[i].numDagsDone)
532 1.6 oster done = RF_FALSE;
533 1.6 oster
534 1.6 oster if (done) {
535 1.6 oster if (desc->status) {
536 1.6 oster /* a dag failed, retry */
537 1.6 oster RF_ETIMER_START(timer);
538 1.6 oster /* free all dags */
539 1.6 oster for (i = 0; i < desc->numStripes; i++) {
540 1.6 oster rf_FreeDAG(desc->dagArray[i].dags);
541 1.6 oster }
542 1.6 oster rf_MarkFailuresInASMList(raidPtr, asmh);
543 1.6 oster /* back up to rf_State_CreateDAG */
544 1.6 oster desc->state = desc->state - 2;
545 1.6 oster return RF_FALSE;
546 1.6 oster } else {
547 1.6 oster /* move on to rf_State_Cleanup */
548 1.6 oster desc->state++;
549 1.6 oster }
550 1.6 oster return RF_FALSE;
551 1.6 oster } else {
552 1.6 oster /* more dags to execute */
553 1.6 oster /* see if any are ready to be fired. if so, fire them */
554 1.6 oster /* don't fire the initial dag in a list, it's fired in
555 1.6 oster * rf_State_ExecuteDAG */
556 1.6 oster for (i = 0; i < desc->numStripes; i++) {
557 1.6 oster if ((dagArray[i].numDagsDone < dagArray[i].numDags)
558 1.6 oster && (dagArray[i].numDagsDone == dagArray[i].numDagsFired)
559 1.6 oster && (dagArray[i].numDagsFired > 0)) {
560 1.6 oster RF_ETIMER_START(dagArray[i].tracerec.timer);
561 1.6 oster /* fire next dag in this stripe */
562 1.6 oster /* first, skip to next dag awaiting execution */
563 1.6 oster dag_h = dagArray[i].dags;
564 1.6 oster for (j = 0; j < dagArray[i].numDagsDone; j++)
565 1.6 oster dag_h = dag_h->next;
566 1.6 oster dagArray[i].numDagsFired++;
567 1.6 oster /* XXX and again we pass a different function
568 1.6 oster * pointer.. GO */
569 1.6 oster rf_DispatchDAG(dag_h, (void (*) (void *)) rf_ContinueDagAccess,
570 1.6 oster &dagArray[i]);
571 1.6 oster }
572 1.6 oster }
573 1.6 oster return RF_TRUE;
574 1.6 oster }
575 1.1 oster }
576 1.1 oster /* only make it this far if all dags complete successfully */
577 1.6 oster int
578 1.6 oster rf_State_Cleanup(RF_RaidAccessDesc_t * desc)
579 1.1 oster {
580 1.6 oster RF_AccTraceEntry_t *tracerec = &desc->tracerec;
581 1.6 oster RF_AccessStripeMapHeader_t *asmh = desc->asmap;
582 1.6 oster RF_Raid_t *raidPtr = desc->raidPtr;
583 1.6 oster RF_AccessStripeMap_t *asm_p;
584 1.6 oster RF_DagHeader_t *dag_h;
585 1.6 oster RF_Etimer_t timer;
586 1.11 oster int i;
587 1.6 oster
588 1.6 oster desc->state++;
589 1.6 oster
590 1.6 oster timer = tracerec->timer;
591 1.6 oster RF_ETIMER_STOP(timer);
592 1.6 oster RF_ETIMER_EVAL(timer);
593 1.6 oster tracerec->specific.user.dag_retry_us = RF_ETIMER_VAL_US(timer);
594 1.6 oster
595 1.6 oster /* the RAID I/O is complete. Clean up. */
596 1.6 oster tracerec->specific.user.dag_retry_us = 0;
597 1.6 oster
598 1.6 oster RF_ETIMER_START(timer);
599 1.6 oster if (desc->flags & RF_DAG_RETURN_DAG) {
600 1.6 oster /* copy dags into paramDAG */
601 1.6 oster *(desc->paramDAG) = desc->dagArray[0].dags;
602 1.6 oster dag_h = *(desc->paramDAG);
603 1.6 oster for (i = 1; i < desc->numStripes; i++) {
604 1.6 oster /* concatenate dags from remaining stripes */
605 1.6 oster RF_ASSERT(dag_h);
606 1.6 oster while (dag_h->next)
607 1.6 oster dag_h = dag_h->next;
608 1.6 oster dag_h->next = desc->dagArray[i].dags;
609 1.6 oster }
610 1.6 oster } else {
611 1.6 oster /* free all dags */
612 1.6 oster for (i = 0; i < desc->numStripes; i++) {
613 1.6 oster rf_FreeDAG(desc->dagArray[i].dags);
614 1.6 oster }
615 1.6 oster }
616 1.6 oster
617 1.6 oster RF_ETIMER_STOP(timer);
618 1.6 oster RF_ETIMER_EVAL(timer);
619 1.6 oster tracerec->specific.user.cleanup_us = RF_ETIMER_VAL_US(timer);
620 1.6 oster
621 1.6 oster RF_ETIMER_START(timer);
622 1.6 oster if (!(raidPtr->Layout.map->flags & RF_NO_STRIPE_LOCKS)) {
623 1.6 oster for (asm_p = asmh->stripeMap; asm_p; asm_p = asm_p->next) {
624 1.6 oster if (!rf_suppressLocksAndLargeWrites &&
625 1.6 oster asm_p->parityInfo &&
626 1.6 oster !(desc->flags & RF_DAG_SUPPRESS_LOCKS)) {
627 1.6 oster RF_ASSERT_VALID_LOCKREQ(&asm_p->lockReqDesc);
628 1.11 oster rf_ReleaseStripeLock(raidPtr->lockTable,
629 1.11 oster asm_p->stripeID,
630 1.11 oster &asm_p->lockReqDesc);
631 1.6 oster }
632 1.6 oster if (asm_p->flags & RF_ASM_FLAGS_RECON_BLOCKED) {
633 1.6 oster rf_UnblockRecon(raidPtr, asm_p);
634 1.6 oster }
635 1.6 oster }
636 1.6 oster }
637 1.6 oster RF_ETIMER_STOP(timer);
638 1.6 oster RF_ETIMER_EVAL(timer);
639 1.6 oster tracerec->specific.user.lock_us += RF_ETIMER_VAL_US(timer);
640 1.6 oster
641 1.6 oster RF_ETIMER_START(timer);
642 1.6 oster if (desc->flags & RF_DAG_RETURN_ASM)
643 1.6 oster *(desc->paramASM) = asmh;
644 1.6 oster else
645 1.6 oster rf_FreeAccessStripeMap(asmh);
646 1.6 oster RF_ETIMER_STOP(timer);
647 1.6 oster RF_ETIMER_EVAL(timer);
648 1.6 oster tracerec->specific.user.cleanup_us += RF_ETIMER_VAL_US(timer);
649 1.6 oster
650 1.6 oster RF_ETIMER_STOP(desc->timer);
651 1.6 oster RF_ETIMER_EVAL(desc->timer);
652 1.6 oster
653 1.6 oster timer = desc->tracerec.tot_timer;
654 1.6 oster RF_ETIMER_STOP(timer);
655 1.6 oster RF_ETIMER_EVAL(timer);
656 1.6 oster desc->tracerec.total_us = RF_ETIMER_VAL_US(timer);
657 1.1 oster
658 1.6 oster rf_LogTraceRec(raidPtr, tracerec);
659 1.1 oster
660 1.6 oster desc->flags |= RF_DAG_ACCESS_COMPLETE;
661 1.1 oster
662 1.6 oster return RF_FALSE;
663 1.1 oster }
664