rf_cvscan.c revision 1.3 1 1.3 oster /* $NetBSD: rf_cvscan.c,v 1.3 1999/01/26 02:33:51 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 * cvscan.c -- prioritized cvscan disk queueing code.
32 1.1 oster *
33 1.1 oster * Nov 9, 1994, adapted from raidSim version (MCH)
34 1.1 oster *
35 1.1 oster ******************************************************************************/
36 1.1 oster
37 1.1 oster #include "rf_types.h"
38 1.1 oster #include "rf_alloclist.h"
39 1.1 oster #include "rf_stripelocks.h"
40 1.1 oster #include "rf_layout.h"
41 1.1 oster #include "rf_diskqueue.h"
42 1.1 oster #include "rf_cvscan.h"
43 1.1 oster #include "rf_debugMem.h"
44 1.1 oster #include "rf_general.h"
45 1.1 oster #include "rf_sys.h"
46 1.1 oster
47 1.1 oster #define DO_CHECK_STATE(_hdr_) CheckCvscanState((_hdr_), __FILE__, __LINE__)
48 1.1 oster
49 1.1 oster #define pri_ok(p) ( ((p) == RF_IO_NORMAL_PRIORITY) || ((p) == RF_IO_LOW_PRIORITY))
50 1.1 oster
51 1.1 oster static void CheckCvscanState(RF_CvscanHeader_t *hdr, char *file, int line)
52 1.1 oster {
53 1.1 oster long i, key;
54 1.1 oster RF_DiskQueueData_t *tmp;
55 1.1 oster
56 1.1 oster if( hdr->left != (RF_DiskQueueData_t *) NULL )
57 1.1 oster RF_ASSERT( hdr->left->sectorOffset < hdr->cur_block );
58 1.1 oster for( key=hdr->cur_block, i=0, tmp=hdr->left;
59 1.1 oster tmp != (RF_DiskQueueData_t *) NULL;
60 1.1 oster key=tmp->sectorOffset, i++, tmp=tmp->next )
61 1.1 oster RF_ASSERT( tmp->sectorOffset <= key
62 1.1 oster && tmp->priority == hdr->nxt_priority && pri_ok(tmp->priority) );
63 1.1 oster RF_ASSERT( i == hdr->left_cnt );
64 1.1 oster
65 1.1 oster for( key=hdr->cur_block, i=0, tmp=hdr->right;
66 1.1 oster tmp != (RF_DiskQueueData_t *) NULL;
67 1.1 oster key=tmp->sectorOffset, i++, tmp=tmp->next )
68 1.1 oster {
69 1.1 oster RF_ASSERT(key <= tmp->sectorOffset);
70 1.1 oster RF_ASSERT(tmp->priority == hdr->nxt_priority);
71 1.1 oster RF_ASSERT(pri_ok(tmp->priority));
72 1.1 oster }
73 1.1 oster RF_ASSERT( i == hdr->right_cnt );
74 1.1 oster
75 1.1 oster for( key=hdr->nxt_priority-1, tmp=hdr->burner;
76 1.1 oster tmp != (RF_DiskQueueData_t *) NULL;
77 1.1 oster key=tmp->priority, tmp=tmp->next )
78 1.1 oster {
79 1.1 oster RF_ASSERT(tmp);
80 1.1 oster RF_ASSERT(hdr);
81 1.1 oster RF_ASSERT(pri_ok(tmp->priority));
82 1.1 oster RF_ASSERT(key >= tmp->priority);
83 1.1 oster RF_ASSERT(tmp->priority < hdr->nxt_priority);
84 1.1 oster }
85 1.1 oster }
86 1.1 oster
87 1.1 oster
88 1.1 oster
89 1.1 oster static void PriorityInsert(RF_DiskQueueData_t **list_ptr, RF_DiskQueueData_t *req )
90 1.1 oster {
91 1.1 oster /*
92 1.1 oster ** insert block pointed to by req in to list whose first
93 1.1 oster ** entry is pointed to by the pointer that list_ptr points to
94 1.1 oster ** ie., list_ptr is a grandparent of the first entry
95 1.1 oster */
96 1.1 oster
97 1.1 oster for( ; (*list_ptr)!=(RF_DiskQueueData_t *)NULL &&
98 1.1 oster (*list_ptr)->priority > req->priority;
99 1.1 oster list_ptr = &((*list_ptr)->next) ) {}
100 1.1 oster req->next = (*list_ptr);
101 1.1 oster (*list_ptr) = req;
102 1.1 oster }
103 1.1 oster
104 1.1 oster
105 1.1 oster
106 1.1 oster static void ReqInsert(RF_DiskQueueData_t **list_ptr, RF_DiskQueueData_t *req, RF_CvscanArmDir_t order)
107 1.1 oster {
108 1.1 oster /*
109 1.1 oster ** insert block pointed to by req in to list whose first
110 1.1 oster ** entry is pointed to by the pointer that list_ptr points to
111 1.1 oster ** ie., list_ptr is a grandparent of the first entry
112 1.1 oster */
113 1.1 oster
114 1.1 oster for( ; (*list_ptr)!=(RF_DiskQueueData_t *)NULL &&
115 1.1 oster
116 1.1 oster ( (order==rf_cvscan_RIGHT && (*list_ptr)->sectorOffset <= req->sectorOffset)
117 1.1 oster || (order==rf_cvscan_LEFT && (*list_ptr)->sectorOffset > req->sectorOffset) );
118 1.1 oster list_ptr = &((*list_ptr)->next) ) {}
119 1.1 oster req->next = (*list_ptr);
120 1.1 oster (*list_ptr) = req;
121 1.1 oster }
122 1.1 oster
123 1.1 oster
124 1.1 oster
125 1.1 oster static RF_DiskQueueData_t *ReqDequeue(RF_DiskQueueData_t **list_ptr)
126 1.1 oster {
127 1.1 oster RF_DiskQueueData_t * ret = (*list_ptr);
128 1.1 oster if( (*list_ptr) != (RF_DiskQueueData_t *) NULL ) {
129 1.1 oster (*list_ptr) = (*list_ptr)->next;
130 1.1 oster }
131 1.1 oster return( ret );
132 1.1 oster }
133 1.1 oster
134 1.1 oster
135 1.1 oster
136 1.1 oster static void ReBalance(RF_CvscanHeader_t *hdr)
137 1.1 oster {
138 1.1 oster /* DO_CHECK_STATE(hdr); */
139 1.1 oster while( hdr->right != (RF_DiskQueueData_t *) NULL
140 1.1 oster && hdr->right->sectorOffset < hdr->cur_block ) {
141 1.1 oster hdr->right_cnt--;
142 1.1 oster hdr->left_cnt++;
143 1.1 oster ReqInsert( &hdr->left, ReqDequeue( &hdr->right ), rf_cvscan_LEFT );
144 1.1 oster }
145 1.1 oster /* DO_CHECK_STATE(hdr); */
146 1.1 oster }
147 1.1 oster
148 1.1 oster
149 1.1 oster
150 1.1 oster static void Transfer(RF_DiskQueueData_t **to_list_ptr, RF_DiskQueueData_t **from_list_ptr )
151 1.1 oster {
152 1.1 oster RF_DiskQueueData_t *gp;
153 1.1 oster for( gp=(*from_list_ptr); gp != (RF_DiskQueueData_t *) NULL; ) {
154 1.1 oster RF_DiskQueueData_t *p = gp->next;
155 1.1 oster PriorityInsert( to_list_ptr, gp );
156 1.1 oster gp = p;
157 1.1 oster }
158 1.1 oster (*from_list_ptr) = (RF_DiskQueueData_t *) NULL;
159 1.1 oster }
160 1.1 oster
161 1.1 oster
162 1.1 oster
163 1.1 oster static void RealEnqueue(RF_CvscanHeader_t *hdr, RF_DiskQueueData_t *req)
164 1.1 oster {
165 1.1 oster RF_ASSERT(req->priority == RF_IO_NORMAL_PRIORITY || req->priority == RF_IO_LOW_PRIORITY);
166 1.1 oster
167 1.1 oster DO_CHECK_STATE(hdr);
168 1.1 oster if( hdr->left_cnt == 0 && hdr->right_cnt == 0 ) {
169 1.1 oster hdr->nxt_priority = req->priority;
170 1.1 oster }
171 1.1 oster if( req->priority > hdr->nxt_priority ) {
172 1.1 oster /*
173 1.1 oster ** dump all other outstanding requests on the back burner
174 1.1 oster */
175 1.1 oster Transfer( &hdr->burner, &hdr->left );
176 1.1 oster Transfer( &hdr->burner, &hdr->right );
177 1.1 oster hdr->left_cnt = 0;
178 1.1 oster hdr->right_cnt = 0;
179 1.1 oster hdr->nxt_priority = req->priority;
180 1.1 oster }
181 1.1 oster if( req->priority < hdr->nxt_priority ) {
182 1.1 oster /*
183 1.1 oster ** yet another low priority task!
184 1.1 oster */
185 1.1 oster PriorityInsert( &hdr->burner, req );
186 1.1 oster } else {
187 1.1 oster if( req->sectorOffset < hdr->cur_block ) {
188 1.1 oster /* this request is to the left of the current arms */
189 1.1 oster ReqInsert( &hdr->left, req, rf_cvscan_LEFT );
190 1.1 oster hdr->left_cnt++;
191 1.1 oster } else {
192 1.1 oster /* this request is to the right of the current arms */
193 1.1 oster ReqInsert( &hdr->right, req, rf_cvscan_RIGHT );
194 1.1 oster hdr->right_cnt++;
195 1.1 oster }
196 1.1 oster }
197 1.1 oster DO_CHECK_STATE(hdr);
198 1.1 oster }
199 1.1 oster
200 1.1 oster
201 1.1 oster
202 1.1 oster void rf_CvscanEnqueue(void *q_in, RF_DiskQueueData_t *elem, int priority)
203 1.1 oster {
204 1.1 oster RF_CvscanHeader_t *hdr = (RF_CvscanHeader_t *) q_in;
205 1.1 oster RealEnqueue( hdr, elem /*req*/ );
206 1.1 oster }
207 1.1 oster
208 1.1 oster
209 1.1 oster
210 1.1 oster RF_DiskQueueData_t *rf_CvscanDequeue(void *q_in)
211 1.1 oster {
212 1.1 oster RF_CvscanHeader_t *hdr = (RF_CvscanHeader_t *) q_in;
213 1.1 oster long range, i, sum_dist_left, sum_dist_right;
214 1.1 oster RF_DiskQueueData_t *ret;
215 1.1 oster RF_DiskQueueData_t *tmp;
216 1.1 oster
217 1.1 oster DO_CHECK_STATE(hdr);
218 1.1 oster
219 1.1 oster if( hdr->left_cnt == 0 && hdr->right_cnt == 0 ) return( (RF_DiskQueueData_t *) NULL );
220 1.1 oster
221 1.1 oster range = RF_MIN( hdr->range_for_avg, RF_MIN(hdr->left_cnt,hdr->right_cnt));
222 1.1 oster for( i=0, tmp=hdr->left, sum_dist_left=
223 1.1 oster ((hdr->direction==rf_cvscan_RIGHT)?range*hdr->change_penalty:0);
224 1.1 oster tmp != (RF_DiskQueueData_t *) NULL && i < range;
225 1.1 oster tmp = tmp->next, i++ ) {
226 1.1 oster sum_dist_left += hdr->cur_block - tmp->sectorOffset;
227 1.1 oster }
228 1.1 oster for( i=0, tmp=hdr->right, sum_dist_right=
229 1.1 oster ((hdr->direction==rf_cvscan_LEFT)?range*hdr->change_penalty:0);
230 1.1 oster tmp != (RF_DiskQueueData_t *) NULL && i < range;
231 1.1 oster tmp = tmp->next, i++ ) {
232 1.1 oster sum_dist_right += tmp->sectorOffset - hdr->cur_block;
233 1.1 oster }
234 1.1 oster
235 1.1 oster if( hdr->right_cnt == 0 || sum_dist_left < sum_dist_right ) {
236 1.1 oster hdr->direction = rf_cvscan_LEFT;
237 1.1 oster hdr->cur_block = hdr->left->sectorOffset + hdr->left->numSector;
238 1.1 oster hdr->left_cnt = RF_MAX(hdr->left_cnt-1,0);
239 1.1 oster tmp = hdr->left;
240 1.1 oster ret = (ReqDequeue(&hdr->left))/*->parent*/;
241 1.1 oster } else {
242 1.1 oster hdr->direction = rf_cvscan_RIGHT;
243 1.1 oster hdr->cur_block = hdr->right->sectorOffset + hdr->right->numSector;
244 1.1 oster hdr->right_cnt = RF_MAX(hdr->right_cnt-1,0);
245 1.1 oster tmp = hdr->right;
246 1.1 oster ret = (ReqDequeue(&hdr->right))/*->parent*/;
247 1.1 oster }
248 1.1 oster ReBalance( hdr );
249 1.1 oster
250 1.1 oster if( hdr->left_cnt == 0 && hdr->right_cnt == 0
251 1.1 oster && hdr->burner != (RF_DiskQueueData_t *) NULL ) {
252 1.1 oster /*
253 1.1 oster ** restore low priority requests for next dequeue
254 1.1 oster */
255 1.1 oster RF_DiskQueueData_t *burner = hdr->burner;
256 1.1 oster hdr->nxt_priority = burner->priority;
257 1.1 oster while( burner != (RF_DiskQueueData_t *) NULL
258 1.1 oster && burner->priority == hdr->nxt_priority ) {
259 1.1 oster RF_DiskQueueData_t *next = burner->next;
260 1.1 oster RealEnqueue( hdr, burner );
261 1.1 oster burner = next;
262 1.1 oster }
263 1.1 oster hdr->burner = burner;
264 1.1 oster }
265 1.1 oster DO_CHECK_STATE(hdr);
266 1.1 oster return( ret );
267 1.1 oster }
268 1.1 oster
269 1.1 oster
270 1.1 oster
271 1.1 oster RF_DiskQueueData_t *rf_CvscanPeek(void *q_in)
272 1.1 oster {
273 1.1 oster RF_CvscanHeader_t *hdr = (RF_CvscanHeader_t *) q_in;
274 1.1 oster long range, i, sum_dist_left, sum_dist_right;
275 1.1 oster RF_DiskQueueData_t *tmp, *headElement;
276 1.1 oster
277 1.1 oster DO_CHECK_STATE(hdr);
278 1.1 oster
279 1.1 oster if( hdr->left_cnt == 0 && hdr->right_cnt == 0 )
280 1.1 oster headElement = NULL;
281 1.1 oster else {
282 1.1 oster range = RF_MIN( hdr->range_for_avg, RF_MIN(hdr->left_cnt,hdr->right_cnt));
283 1.1 oster for( i=0, tmp=hdr->left, sum_dist_left=
284 1.1 oster ((hdr->direction==rf_cvscan_RIGHT)?range*hdr->change_penalty:0);
285 1.1 oster tmp != (RF_DiskQueueData_t *) NULL && i < range;
286 1.1 oster tmp = tmp->next, i++ ) {
287 1.1 oster sum_dist_left += hdr->cur_block - tmp->sectorOffset;
288 1.1 oster }
289 1.1 oster for( i=0, tmp=hdr->right, sum_dist_right=
290 1.1 oster ((hdr->direction==rf_cvscan_LEFT)?range*hdr->change_penalty:0);
291 1.1 oster tmp != (RF_DiskQueueData_t *) NULL && i < range;
292 1.1 oster tmp = tmp->next, i++ ) {
293 1.1 oster sum_dist_right += tmp->sectorOffset - hdr->cur_block;
294 1.1 oster }
295 1.1 oster
296 1.1 oster if( hdr->right_cnt == 0 || sum_dist_left < sum_dist_right )
297 1.1 oster headElement = hdr->left;
298 1.1 oster else
299 1.1 oster headElement = hdr->right;
300 1.1 oster }
301 1.1 oster return(headElement);
302 1.1 oster }
303 1.1 oster
304 1.1 oster
305 1.1 oster
306 1.1 oster /*
307 1.1 oster ** CVSCAN( 1, 0 ) is Shortest Seek Time First (SSTF)
308 1.1 oster ** lowest average response time
309 1.1 oster ** CVSCAN( 1, infinity ) is SCAN
310 1.1 oster ** lowest response time standard deviation
311 1.1 oster */
312 1.1 oster
313 1.1 oster
314 1.1 oster int rf_CvscanConfigure()
315 1.1 oster {
316 1.1 oster return(0);
317 1.1 oster }
318 1.1 oster
319 1.1 oster
320 1.1 oster
321 1.1 oster void *rf_CvscanCreate(RF_SectorCount_t sectPerDisk,
322 1.1 oster RF_AllocListElem_t *clList,
323 1.1 oster RF_ShutdownList_t **listp)
324 1.1 oster {
325 1.1 oster RF_CvscanHeader_t *hdr;
326 1.1 oster long range = 2; /* Currently no mechanism to change these */
327 1.1 oster long penalty = sectPerDisk / 5;
328 1.1 oster
329 1.1 oster RF_MallocAndAdd(hdr, sizeof(RF_CvscanHeader_t), (RF_CvscanHeader_t *), clList);
330 1.1 oster bzero((char *)hdr, sizeof(RF_CvscanHeader_t));
331 1.1 oster hdr->range_for_avg = RF_MAX( range, 1 );
332 1.1 oster hdr->change_penalty = RF_MAX( penalty, 0 );
333 1.1 oster hdr->direction = rf_cvscan_RIGHT;
334 1.1 oster hdr->cur_block = 0;
335 1.1 oster hdr->left_cnt = hdr->right_cnt = 0;
336 1.1 oster hdr->left = hdr->right = (RF_DiskQueueData_t *) NULL;
337 1.1 oster hdr->burner = (RF_DiskQueueData_t *) NULL;
338 1.1 oster DO_CHECK_STATE(hdr);
339 1.1 oster
340 1.1 oster return( (void *) hdr );
341 1.1 oster }
342 1.1 oster
343 1.1 oster
344 1.1 oster #if defined(__NetBSD__) && defined(_KERNEL)
345 1.1 oster /* PrintCvscanQueue is not used, so we ignore it... */
346 1.1 oster #else
347 1.1 oster static void PrintCvscanQueue(RF_CvscanHeader_t *hdr)
348 1.1 oster {
349 1.1 oster RF_DiskQueueData_t *tmp;
350 1.1 oster
351 1.1 oster printf( "CVSCAN(%d,%d) at %d going %s\n",
352 1.1 oster (int)hdr->range_for_avg,
353 1.1 oster (int)hdr->change_penalty,
354 1.1 oster (int)hdr->cur_block,
355 1.1 oster (hdr->direction==rf_cvscan_LEFT)?"LEFT":"RIGHT" );
356 1.1 oster printf( "\tLeft(%d): ", hdr->left_cnt );
357 1.1 oster for( tmp = hdr->left; tmp != (RF_DiskQueueData_t *) NULL; tmp = tmp->next)
358 1.1 oster printf( "(%d,%ld,%d) ",
359 1.1 oster (int) tmp->sectorOffset,
360 1.1 oster (long) (tmp->sectorOffset + tmp->numSector),
361 1.1 oster tmp->priority );
362 1.1 oster printf( "\n" );
363 1.1 oster printf( "\tRight(%d): ", hdr->right_cnt );
364 1.1 oster for( tmp = hdr->right; tmp != (RF_DiskQueueData_t *) NULL; tmp = tmp->next)
365 1.1 oster printf( "(%d,%ld,%d) ",
366 1.1 oster (int) tmp->sectorOffset,
367 1.1 oster (long) (tmp->sectorOffset + tmp->numSector),
368 1.1 oster tmp->priority );
369 1.1 oster printf( "\n" );
370 1.1 oster printf( "\tBurner: " );
371 1.1 oster for( tmp = hdr->burner; tmp != (RF_DiskQueueData_t *) NULL; tmp = tmp->next)
372 1.1 oster printf( "(%d,%ld,%d) ",
373 1.1 oster (int) tmp->sectorOffset,
374 1.1 oster (long) (tmp->sectorOffset + tmp->numSector),
375 1.1 oster tmp->priority );
376 1.1 oster printf( "\n" );
377 1.1 oster }
378 1.1 oster #endif
379 1.1 oster
380 1.1 oster
381 1.1 oster /* promotes reconstruction accesses for the given stripeID to normal priority.
382 1.1 oster * returns 1 if an access was found and zero otherwise. Normally, we should
383 1.1 oster * only have one or zero entries in the burner queue, so execution time should
384 1.1 oster * be short.
385 1.1 oster */
386 1.1 oster int rf_CvscanPromote(void *q_in, RF_StripeNum_t parityStripeID, RF_ReconUnitNum_t which_ru)
387 1.1 oster {
388 1.1 oster RF_CvscanHeader_t *hdr = (RF_CvscanHeader_t *) q_in;
389 1.2 oster RF_DiskQueueData_t *trailer = NULL, *tmp = hdr->burner, *tlist = NULL;
390 1.1 oster int retval=0;
391 1.1 oster
392 1.1 oster DO_CHECK_STATE(hdr);
393 1.1 oster while (tmp) { /* handle entries at the front of the list */
394 1.1 oster if (tmp->parityStripeID == parityStripeID && tmp->which_ru == which_ru) {
395 1.1 oster hdr->burner = tmp->next;
396 1.1 oster tmp->priority = RF_IO_NORMAL_PRIORITY;
397 1.1 oster tmp->next = tlist; tlist=tmp;
398 1.1 oster tmp = hdr->burner;
399 1.1 oster } else break;
400 1.1 oster }
401 1.1 oster if (tmp) {trailer=tmp; tmp=tmp->next;}
402 1.1 oster while (tmp) { /* handle entries on the rest of the list */
403 1.1 oster if (tmp->parityStripeID == parityStripeID && tmp->which_ru == which_ru) {
404 1.1 oster trailer->next = tmp->next;
405 1.1 oster tmp->priority = RF_IO_NORMAL_PRIORITY;
406 1.1 oster tmp->next = tlist; tlist=tmp; /* insert on a temp queue */
407 1.1 oster tmp = trailer->next;
408 1.1 oster } else {
409 1.1 oster trailer=tmp; tmp=tmp->next;
410 1.1 oster }
411 1.1 oster }
412 1.1 oster while (tlist) {
413 1.1 oster retval++;
414 1.1 oster tmp = tlist->next;
415 1.1 oster RealEnqueue(hdr, tlist);
416 1.1 oster tlist = tmp;
417 1.1 oster }
418 1.1 oster RF_ASSERT(retval==0 || retval==1);
419 1.1 oster DO_CHECK_STATE((RF_CvscanHeader_t *)q_in);
420 1.1 oster return(retval);
421 1.1 oster }
422 1.1 oster
423