rf_reconbuffer.c revision 1.27 1 1.27 oster /* $NetBSD: rf_reconbuffer.c,v 1.27 2021/07/23 00:54:45 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
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 /***************************************************
30 1.1 oster *
31 1.1 oster * rf_reconbuffer.c -- reconstruction buffer manager
32 1.1 oster *
33 1.1 oster ***************************************************/
34 1.6 lukem
35 1.6 lukem #include <sys/cdefs.h>
36 1.27 oster __KERNEL_RCSID(0, "$NetBSD: rf_reconbuffer.c,v 1.27 2021/07/23 00:54:45 oster Exp $");
37 1.1 oster
38 1.1 oster #include "rf_raid.h"
39 1.1 oster #include "rf_reconbuffer.h"
40 1.1 oster #include "rf_acctrace.h"
41 1.1 oster #include "rf_etimer.h"
42 1.1 oster #include "rf_general.h"
43 1.1 oster #include "rf_revent.h"
44 1.1 oster #include "rf_reconutil.h"
45 1.1 oster #include "rf_nwayxor.h"
46 1.1 oster
47 1.7 oster #ifdef DEBUG
48 1.7 oster
49 1.1 oster #define Dprintf1(s,a) if (rf_reconbufferDebug) printf(s,a)
50 1.1 oster #define Dprintf2(s,a,b) if (rf_reconbufferDebug) printf(s,a,b)
51 1.1 oster #define Dprintf3(s,a,b,c) if (rf_reconbufferDebug) printf(s,a,b,c)
52 1.1 oster #define Dprintf4(s,a,b,c,d) if (rf_reconbufferDebug) printf(s,a,b,c,d)
53 1.1 oster #define Dprintf5(s,a,b,c,d,e) if (rf_reconbufferDebug) printf(s,a,b,c,d,e)
54 1.7 oster
55 1.7 oster #else /* DEBUG */
56 1.7 oster
57 1.7 oster #define Dprintf1(s,a) {}
58 1.7 oster #define Dprintf2(s,a,b) {}
59 1.7 oster #define Dprintf3(s,a,b,c) {}
60 1.7 oster #define Dprintf4(s,a,b,c,d) {}
61 1.7 oster #define Dprintf5(s,a,b,c,d,e) {}
62 1.7 oster
63 1.7 oster #endif
64 1.1 oster
65 1.5 oster /*****************************************************************************
66 1.1 oster *
67 1.5 oster * Submit a reconstruction buffer to the manager for XOR. We can only
68 1.5 oster * submit a buffer if (1) we can xor into an existing buffer, which
69 1.5 oster * means we don't have to acquire a new one, (2) we can acquire a
70 1.5 oster * floating recon buffer, or (3) the caller has indicated that we are
71 1.5 oster * allowed to keep the submitted buffer.
72 1.1 oster *
73 1.1 oster * Returns non-zero if and only if we were not able to submit.
74 1.5 oster * In this case, we append the current disk ID to the wait list on the
75 1.22 perry * indicated RU, so that it will be re-enabled when we acquire a buffer
76 1.5 oster * for this RU.
77 1.1 oster *
78 1.5 oster ****************************************************************************/
79 1.1 oster
80 1.1 oster /*
81 1.1 oster * nWayXorFuncs[i] is a pointer to a function that will xor "i"
82 1.1 oster * bufs into the accumulating sum.
83 1.1 oster */
84 1.13 jdolecek static const RF_VoidFuncPtr nWayXorFuncs[] = {
85 1.3 oster NULL,
86 1.3 oster (RF_VoidFuncPtr) rf_nWayXor1,
87 1.3 oster (RF_VoidFuncPtr) rf_nWayXor2,
88 1.3 oster (RF_VoidFuncPtr) rf_nWayXor3,
89 1.3 oster (RF_VoidFuncPtr) rf_nWayXor4,
90 1.3 oster (RF_VoidFuncPtr) rf_nWayXor5,
91 1.3 oster (RF_VoidFuncPtr) rf_nWayXor6,
92 1.3 oster (RF_VoidFuncPtr) rf_nWayXor7,
93 1.3 oster (RF_VoidFuncPtr) rf_nWayXor8,
94 1.3 oster (RF_VoidFuncPtr) rf_nWayXor9
95 1.1 oster };
96 1.3 oster
97 1.15 oster /*
98 1.15 oster * rbuf - the recon buffer to submit
99 1.15 oster * keep_it - whether we can keep this buffer or we have to return it
100 1.15 oster * use_committed - whether to use a committed or an available recon buffer
101 1.15 oster */
102 1.22 perry int
103 1.15 oster rf_SubmitReconBuffer(RF_ReconBuffer_t *rbuf, int keep_it, int use_committed)
104 1.1 oster {
105 1.13 jdolecek const RF_LayoutSW_t *lp;
106 1.3 oster int rc;
107 1.1 oster
108 1.3 oster lp = rbuf->raidPtr->Layout.map;
109 1.3 oster rc = lp->SubmitReconBuffer(rbuf, keep_it, use_committed);
110 1.3 oster return (rc);
111 1.1 oster }
112 1.1 oster
113 1.15 oster /*
114 1.15 oster * rbuf - the recon buffer to submit
115 1.15 oster * keep_it - whether we can keep this buffer or we have to return it
116 1.15 oster * use_committed - whether to use a committed or an available recon buffer
117 1.15 oster */
118 1.22 perry int
119 1.22 perry rf_SubmitReconBufferBasic(RF_ReconBuffer_t *rbuf, int keep_it,
120 1.15 oster int use_committed)
121 1.1 oster {
122 1.3 oster RF_Raid_t *raidPtr = rbuf->raidPtr;
123 1.3 oster RF_RaidLayout_t *layoutPtr = &raidPtr->Layout;
124 1.14 oster RF_ReconCtrl_t *reconCtrlPtr = raidPtr->reconControl;
125 1.3 oster RF_ReconParityStripeStatus_t *pssPtr;
126 1.3 oster RF_ReconBuffer_t *targetRbuf, *t = NULL; /* temporary rbuf
127 1.3 oster * pointers */
128 1.24 christos void *ta; /* temporary data buffer pointer */
129 1.26 christos RF_CallbackValueDesc_t *cb, *p;
130 1.19 oster int retcode = 0;
131 1.3 oster
132 1.3 oster RF_Etimer_t timer;
133 1.3 oster
134 1.3 oster /* makes no sense to have a submission from the failed disk */
135 1.3 oster RF_ASSERT(rbuf);
136 1.3 oster RF_ASSERT(rbuf->col != reconCtrlPtr->fcol);
137 1.3 oster
138 1.14 oster Dprintf4("RECON: submission by col %d for psid %ld ru %d (failed offset %ld)\n",
139 1.14 oster rbuf->col, (long) rbuf->parityStripeID, rbuf->which_ru, (long) rbuf->failedDiskSectorOffset);
140 1.3 oster
141 1.14 oster RF_LOCK_PSS_MUTEX(raidPtr, rbuf->parityStripeID);
142 1.3 oster
143 1.25 mrg rf_lock_mutex2(reconCtrlPtr->rb_mutex);
144 1.21 oster while(reconCtrlPtr->rb_lock) {
145 1.25 mrg rf_wait_cond2(reconCtrlPtr->rb_cv, reconCtrlPtr->rb_mutex);
146 1.21 oster }
147 1.21 oster reconCtrlPtr->rb_lock = 1;
148 1.25 mrg rf_unlock_mutex2(reconCtrlPtr->rb_mutex);
149 1.3 oster
150 1.19 oster pssPtr = rf_LookupRUStatus(raidPtr, reconCtrlPtr->pssTable, rbuf->parityStripeID, rbuf->which_ru, RF_PSS_NONE, NULL);
151 1.3 oster RF_ASSERT(pssPtr); /* if it didn't exist, we wouldn't have gotten
152 1.3 oster * an rbuf for it */
153 1.3 oster
154 1.3 oster /* check to see if enough buffers have accumulated to do an XOR. If
155 1.3 oster * so, there's no need to acquire a floating rbuf. Before we can do
156 1.3 oster * any XORing, we must have acquired a destination buffer. If we
157 1.3 oster * have, then we can go ahead and do the XOR if (1) including this
158 1.3 oster * buffer, enough bufs have accumulated, or (2) this is the last
159 1.3 oster * submission for this stripe. Otherwise, we have to go acquire a
160 1.3 oster * floating rbuf. */
161 1.3 oster
162 1.3 oster targetRbuf = (RF_ReconBuffer_t *) pssPtr->rbuf;
163 1.3 oster if ((targetRbuf != NULL) &&
164 1.3 oster ((pssPtr->xorBufCount == rf_numBufsToAccumulate - 1) || (targetRbuf->count + pssPtr->xorBufCount + 1 == layoutPtr->numDataCol))) {
165 1.3 oster pssPtr->rbufsForXor[pssPtr->xorBufCount++] = rbuf; /* install this buffer */
166 1.14 oster Dprintf2("RECON: col %d invoking a %d-way XOR\n", rbuf->col, pssPtr->xorBufCount);
167 1.3 oster RF_ETIMER_START(timer);
168 1.3 oster rf_MultiWayReconXor(raidPtr, pssPtr);
169 1.3 oster RF_ETIMER_STOP(timer);
170 1.3 oster RF_ETIMER_EVAL(timer);
171 1.3 oster raidPtr->accumXorTimeUs += RF_ETIMER_VAL_US(timer);
172 1.3 oster if (!keep_it) {
173 1.18 oster #if RF_ACC_TRACE > 0
174 1.3 oster raidPtr->recon_tracerecs[rbuf->col].xor_us = RF_ETIMER_VAL_US(timer);
175 1.3 oster RF_ETIMER_STOP(raidPtr->recon_tracerecs[rbuf->col].recon_timer);
176 1.3 oster RF_ETIMER_EVAL(raidPtr->recon_tracerecs[rbuf->col].recon_timer);
177 1.3 oster raidPtr->recon_tracerecs[rbuf->col].specific.recon.recon_return_to_submit_us +=
178 1.3 oster RF_ETIMER_VAL_US(raidPtr->recon_tracerecs[rbuf->col].recon_timer);
179 1.3 oster RF_ETIMER_START(raidPtr->recon_tracerecs[rbuf->col].recon_timer);
180 1.3 oster
181 1.3 oster rf_LogTraceRec(raidPtr, &raidPtr->recon_tracerecs[rbuf->col]);
182 1.18 oster #endif
183 1.3 oster }
184 1.3 oster rf_CheckForFullRbuf(raidPtr, reconCtrlPtr, pssPtr, layoutPtr->numDataCol);
185 1.3 oster
186 1.3 oster /* if use_committed is on, we _must_ consume a buffer off the
187 1.3 oster * committed list. */
188 1.3 oster if (use_committed) {
189 1.3 oster t = reconCtrlPtr->committedRbufs;
190 1.3 oster RF_ASSERT(t);
191 1.3 oster reconCtrlPtr->committedRbufs = t->next;
192 1.14 oster rf_ReleaseFloatingReconBuffer(raidPtr, t);
193 1.3 oster }
194 1.3 oster if (keep_it) {
195 1.14 oster RF_UNLOCK_PSS_MUTEX(raidPtr, rbuf->parityStripeID);
196 1.25 mrg rf_lock_mutex2(reconCtrlPtr->rb_mutex);
197 1.21 oster reconCtrlPtr->rb_lock = 0;
198 1.25 mrg rf_broadcast_cond2(reconCtrlPtr->rb_cv);
199 1.25 mrg rf_unlock_mutex2(reconCtrlPtr->rb_mutex);
200 1.3 oster rf_FreeReconBuffer(rbuf);
201 1.3 oster return (retcode);
202 1.3 oster }
203 1.3 oster goto out;
204 1.3 oster }
205 1.3 oster /* set the value of "t", which we'll use as the rbuf from here on */
206 1.3 oster if (keep_it) {
207 1.3 oster t = rbuf;
208 1.3 oster } else {
209 1.3 oster if (use_committed) { /* if a buffer has been committed to
210 1.3 oster * us, use it */
211 1.3 oster t = reconCtrlPtr->committedRbufs;
212 1.3 oster RF_ASSERT(t);
213 1.3 oster reconCtrlPtr->committedRbufs = t->next;
214 1.3 oster t->next = NULL;
215 1.3 oster } else
216 1.3 oster if (reconCtrlPtr->floatingRbufs) {
217 1.3 oster t = reconCtrlPtr->floatingRbufs;
218 1.3 oster reconCtrlPtr->floatingRbufs = t->next;
219 1.3 oster t->next = NULL;
220 1.3 oster }
221 1.3 oster }
222 1.3 oster
223 1.3 oster /* If we weren't able to acquire a buffer, append to the end of the
224 1.3 oster * buf list in the recon ctrl struct. */
225 1.3 oster if (!t) {
226 1.3 oster RF_ASSERT(!keep_it && !use_committed);
227 1.17 hannken Dprintf1("RECON: col %d failed to acquire floating rbuf\n", rbuf->col);
228 1.3 oster
229 1.3 oster raidPtr->procsInBufWait++;
230 1.3 oster if ((raidPtr->procsInBufWait == raidPtr->numCol - 1) && (raidPtr->numFullReconBuffers == 0)) {
231 1.3 oster printf("Buffer wait deadlock detected. Exiting.\n");
232 1.14 oster rf_PrintPSStatusTable(raidPtr);
233 1.3 oster RF_PANIC();
234 1.3 oster }
235 1.3 oster pssPtr->flags |= RF_PSS_BUFFERWAIT;
236 1.27 oster cb = rf_AllocCallbackValueDesc(raidPtr); /* append to buf wait list in
237 1.27 oster * recon ctrl structure */
238 1.3 oster cb->col = rbuf->col;
239 1.26 christos cb->v = rbuf->parityStripeID;
240 1.3 oster cb->next = NULL;
241 1.3 oster if (!reconCtrlPtr->bufferWaitList)
242 1.3 oster reconCtrlPtr->bufferWaitList = cb;
243 1.3 oster else { /* might want to maintain head/tail pointers
244 1.3 oster * here rather than search for end of list */
245 1.3 oster for (p = reconCtrlPtr->bufferWaitList; p->next; p = p->next);
246 1.3 oster p->next = cb;
247 1.3 oster }
248 1.3 oster retcode = 1;
249 1.3 oster goto out;
250 1.3 oster }
251 1.17 hannken Dprintf1("RECON: col %d acquired rbuf\n", rbuf->col);
252 1.18 oster #if RF_ACC_TRACE > 0
253 1.3 oster RF_ETIMER_STOP(raidPtr->recon_tracerecs[rbuf->col].recon_timer);
254 1.3 oster RF_ETIMER_EVAL(raidPtr->recon_tracerecs[rbuf->col].recon_timer);
255 1.3 oster raidPtr->recon_tracerecs[rbuf->col].specific.recon.recon_return_to_submit_us +=
256 1.3 oster RF_ETIMER_VAL_US(raidPtr->recon_tracerecs[rbuf->col].recon_timer);
257 1.3 oster RF_ETIMER_START(raidPtr->recon_tracerecs[rbuf->col].recon_timer);
258 1.3 oster
259 1.3 oster rf_LogTraceRec(raidPtr, &raidPtr->recon_tracerecs[rbuf->col]);
260 1.18 oster #endif
261 1.3 oster
262 1.3 oster /* initialize the buffer */
263 1.3 oster if (t != rbuf) {
264 1.3 oster t->col = reconCtrlPtr->fcol;
265 1.3 oster t->parityStripeID = rbuf->parityStripeID;
266 1.3 oster t->which_ru = rbuf->which_ru;
267 1.3 oster t->failedDiskSectorOffset = rbuf->failedDiskSectorOffset;
268 1.3 oster t->spCol = rbuf->spCol;
269 1.3 oster t->spOffset = rbuf->spOffset;
270 1.3 oster
271 1.3 oster ta = t->buffer;
272 1.3 oster t->buffer = rbuf->buffer;
273 1.3 oster rbuf->buffer = ta; /* swap buffers */
274 1.3 oster }
275 1.3 oster /* the first installation always gets installed as the destination
276 1.3 oster * buffer. subsequent installations get stacked up to allow for
277 1.3 oster * multi-way XOR */
278 1.3 oster if (!pssPtr->rbuf) {
279 1.3 oster pssPtr->rbuf = t;
280 1.3 oster t->count = 1;
281 1.3 oster } else
282 1.3 oster pssPtr->rbufsForXor[pssPtr->xorBufCount++] = t; /* install this buffer */
283 1.3 oster
284 1.3 oster rf_CheckForFullRbuf(raidPtr, reconCtrlPtr, pssPtr, layoutPtr->numDataCol); /* the buffer is full if
285 1.3 oster * G=2 */
286 1.3 oster
287 1.3 oster out:
288 1.14 oster RF_UNLOCK_PSS_MUTEX(raidPtr, rbuf->parityStripeID);
289 1.25 mrg rf_lock_mutex2(reconCtrlPtr->rb_mutex);
290 1.21 oster reconCtrlPtr->rb_lock = 0;
291 1.25 mrg rf_broadcast_cond2(reconCtrlPtr->rb_cv);
292 1.25 mrg rf_unlock_mutex2(reconCtrlPtr->rb_mutex);
293 1.3 oster return (retcode);
294 1.1 oster }
295 1.15 oster /* pssPtr - the pss descriptor for this parity stripe */
296 1.22 perry int
297 1.15 oster rf_MultiWayReconXor(RF_Raid_t *raidPtr, RF_ReconParityStripeStatus_t *pssPtr)
298 1.1 oster {
299 1.3 oster int i, numBufs = pssPtr->xorBufCount;
300 1.3 oster int numBytes = rf_RaidAddressToByte(raidPtr, raidPtr->Layout.sectorsPerStripeUnit * raidPtr->Layout.SUsPerRU);
301 1.3 oster RF_ReconBuffer_t **rbufs = (RF_ReconBuffer_t **) pssPtr->rbufsForXor;
302 1.3 oster RF_ReconBuffer_t *targetRbuf = (RF_ReconBuffer_t *) pssPtr->rbuf;
303 1.3 oster
304 1.3 oster RF_ASSERT(pssPtr->rbuf != NULL);
305 1.3 oster RF_ASSERT(numBufs > 0 && numBufs < RF_PS_MAX_BUFS);
306 1.2 oster #ifdef _KERNEL
307 1.1 oster #ifndef __NetBSD__
308 1.3 oster thread_block(); /* yield the processor before doing a big XOR */
309 1.1 oster #endif
310 1.3 oster #endif /* _KERNEL */
311 1.3 oster /*
312 1.3 oster * XXX
313 1.3 oster *
314 1.3 oster * What if more than 9 bufs?
315 1.3 oster */
316 1.3 oster nWayXorFuncs[numBufs] (pssPtr->rbufsForXor, targetRbuf, numBytes / sizeof(long));
317 1.3 oster
318 1.3 oster /* release all the reconstruction buffers except the last one, which
319 1.4 soren * belongs to the disk whose submission caused this XOR to take place */
320 1.3 oster for (i = 0; i < numBufs - 1; i++) {
321 1.3 oster if (rbufs[i]->type == RF_RBUF_TYPE_FLOATING)
322 1.14 oster rf_ReleaseFloatingReconBuffer(raidPtr, rbufs[i]);
323 1.3 oster else
324 1.3 oster if (rbufs[i]->type == RF_RBUF_TYPE_FORCED)
325 1.3 oster rf_FreeReconBuffer(rbufs[i]);
326 1.3 oster else
327 1.3 oster RF_ASSERT(0);
328 1.3 oster }
329 1.3 oster targetRbuf->count += pssPtr->xorBufCount;
330 1.3 oster pssPtr->xorBufCount = 0;
331 1.3 oster return (0);
332 1.1 oster }
333 1.1 oster /* removes one full buffer from one of the full-buffer lists and returns it.
334 1.1 oster *
335 1.1 oster * ASSUMES THE RB_MUTEX IS UNLOCKED AT ENTRY.
336 1.1 oster */
337 1.3 oster RF_ReconBuffer_t *
338 1.15 oster rf_GetFullReconBuffer(RF_ReconCtrl_t *reconCtrlPtr)
339 1.1 oster {
340 1.3 oster RF_ReconBuffer_t *p;
341 1.1 oster
342 1.25 mrg rf_lock_mutex2(reconCtrlPtr->rb_mutex);
343 1.21 oster while(reconCtrlPtr->rb_lock) {
344 1.25 mrg rf_wait_cond2(reconCtrlPtr->rb_cv, reconCtrlPtr->rb_mutex);
345 1.21 oster }
346 1.21 oster reconCtrlPtr->rb_lock = 1;
347 1.25 mrg rf_unlock_mutex2(reconCtrlPtr->rb_mutex);
348 1.1 oster
349 1.3 oster if ((p = reconCtrlPtr->fullBufferList) != NULL) {
350 1.3 oster reconCtrlPtr->fullBufferList = p->next;
351 1.3 oster p->next = NULL;
352 1.3 oster }
353 1.25 mrg rf_lock_mutex2(reconCtrlPtr->rb_mutex);
354 1.21 oster reconCtrlPtr->rb_lock = 0;
355 1.25 mrg rf_broadcast_cond2(reconCtrlPtr->rb_cv);
356 1.25 mrg rf_unlock_mutex2(reconCtrlPtr->rb_mutex);
357 1.3 oster return (p);
358 1.1 oster }
359 1.1 oster
360 1.1 oster
361 1.5 oster /* if the reconstruction buffer is full, move it to the full list,
362 1.5 oster * which is maintained sorted by failed disk sector offset
363 1.1 oster *
364 1.5 oster * ASSUMES THE RB_MUTEX IS LOCKED AT ENTRY. */
365 1.22 perry int
366 1.22 perry rf_CheckForFullRbuf(RF_Raid_t *raidPtr, RF_ReconCtrl_t *reconCtrl,
367 1.15 oster RF_ReconParityStripeStatus_t *pssPtr, int numDataCol)
368 1.1 oster {
369 1.3 oster RF_ReconBuffer_t *p, *pt, *rbuf = (RF_ReconBuffer_t *) pssPtr->rbuf;
370 1.1 oster
371 1.3 oster if (rbuf->count == numDataCol) {
372 1.3 oster raidPtr->numFullReconBuffers++;
373 1.3 oster Dprintf2("RECON: rbuf for psid %ld ru %d has filled\n",
374 1.3 oster (long) rbuf->parityStripeID, rbuf->which_ru);
375 1.3 oster if (!reconCtrl->fullBufferList || (rbuf->failedDiskSectorOffset < reconCtrl->fullBufferList->failedDiskSectorOffset)) {
376 1.3 oster Dprintf2("RECON: rbuf for psid %ld ru %d is head of list\n",
377 1.3 oster (long) rbuf->parityStripeID, rbuf->which_ru);
378 1.3 oster rbuf->next = reconCtrl->fullBufferList;
379 1.3 oster reconCtrl->fullBufferList = rbuf;
380 1.3 oster } else {
381 1.3 oster for (pt = reconCtrl->fullBufferList, p = pt->next; p && p->failedDiskSectorOffset < rbuf->failedDiskSectorOffset; pt = p, p = p->next);
382 1.3 oster rbuf->next = p;
383 1.3 oster pt->next = rbuf;
384 1.3 oster Dprintf2("RECON: rbuf for psid %ld ru %d is in list\n",
385 1.3 oster (long) rbuf->parityStripeID, rbuf->which_ru);
386 1.3 oster }
387 1.3 oster rbuf->pssPtr = pssPtr;
388 1.3 oster pssPtr->rbuf = NULL;
389 1.14 oster rf_CauseReconEvent(raidPtr, rbuf->col, NULL, RF_REVENT_BUFREADY);
390 1.3 oster }
391 1.3 oster return (0);
392 1.1 oster }
393 1.1 oster
394 1.1 oster
395 1.1 oster /* release a floating recon buffer for someone else to use.
396 1.1 oster * assumes the rb_mutex is LOCKED at entry
397 1.1 oster */
398 1.22 perry void
399 1.15 oster rf_ReleaseFloatingReconBuffer(RF_Raid_t *raidPtr, RF_ReconBuffer_t *rbuf)
400 1.1 oster {
401 1.14 oster RF_ReconCtrl_t *rcPtr = raidPtr->reconControl;
402 1.26 christos RF_CallbackValueDesc_t *cb;
403 1.3 oster
404 1.3 oster Dprintf2("RECON: releasing rbuf for psid %ld ru %d\n",
405 1.3 oster (long) rbuf->parityStripeID, rbuf->which_ru);
406 1.1 oster
407 1.3 oster /* if anyone is waiting on buffers, wake one of them up. They will
408 1.3 oster * subsequently wake up anyone else waiting on their RU */
409 1.3 oster if (rcPtr->bufferWaitList) {
410 1.3 oster rbuf->next = rcPtr->committedRbufs;
411 1.3 oster rcPtr->committedRbufs = rbuf;
412 1.3 oster cb = rcPtr->bufferWaitList;
413 1.3 oster rcPtr->bufferWaitList = cb->next;
414 1.14 oster rf_CauseReconEvent(raidPtr, cb->col, (void *) 1, RF_REVENT_BUFCLEAR); /* arg==1 => we've
415 1.3 oster * committed a buffer */
416 1.27 oster rf_FreeCallbackValueDesc(raidPtr, cb);
417 1.3 oster raidPtr->procsInBufWait--;
418 1.3 oster } else {
419 1.3 oster rbuf->next = rcPtr->floatingRbufs;
420 1.3 oster rcPtr->floatingRbufs = rbuf;
421 1.3 oster }
422 1.1 oster }
423