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rf_fifo.c revision 1.3.8.1
      1  1.3.8.1  bouyer /*	$NetBSD: rf_fifo.c,v 1.3.8.1 2000/11/20 11:42:54 bouyer 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      1.3   oster  * rf_fifo.c --  prioritized fifo queue code.
     32      1.1   oster  * There are only two priority levels: hi and lo.
     33      1.1   oster  *
     34      1.1   oster  * Aug 4, 1994, adapted from raidSim version (MCH)
     35      1.1   oster  *
     36      1.1   oster  ***************************************************/
     37      1.1   oster 
     38      1.1   oster #include "rf_types.h"
     39      1.1   oster #include "rf_alloclist.h"
     40      1.1   oster #include "rf_stripelocks.h"
     41      1.1   oster #include "rf_layout.h"
     42      1.1   oster #include "rf_diskqueue.h"
     43      1.1   oster #include "rf_fifo.h"
     44      1.1   oster #include "rf_debugMem.h"
     45      1.1   oster #include "rf_general.h"
     46      1.1   oster #include "rf_options.h"
     47  1.3.8.1  bouyer #include "rf_raid.h"
     48  1.3.8.1  bouyer #include "rf_types.h"
     49      1.1   oster 
     50      1.1   oster /* just malloc a header, zero it (via calloc), and return it */
     51      1.1   oster /*ARGSUSED*/
     52      1.3   oster void   *
     53      1.3   oster rf_FifoCreate(sectPerDisk, clList, listp)
     54      1.3   oster 	RF_SectorCount_t sectPerDisk;
     55      1.3   oster 	RF_AllocListElem_t *clList;
     56      1.3   oster 	RF_ShutdownList_t **listp;
     57      1.1   oster {
     58      1.3   oster 	RF_FifoHeader_t *q;
     59      1.1   oster 
     60      1.3   oster 	RF_CallocAndAdd(q, 1, sizeof(RF_FifoHeader_t), (RF_FifoHeader_t *), clList);
     61      1.3   oster 	q->hq_count = q->lq_count = 0;
     62      1.3   oster 	return ((void *) q);
     63      1.1   oster }
     64      1.1   oster 
     65      1.3   oster void
     66      1.3   oster rf_FifoEnqueue(q_in, elem, priority)
     67      1.3   oster 	void   *q_in;
     68      1.3   oster 	RF_DiskQueueData_t *elem;
     69      1.3   oster 	int     priority;
     70      1.1   oster {
     71      1.3   oster 	RF_FifoHeader_t *q = (RF_FifoHeader_t *) q_in;
     72      1.1   oster 
     73      1.3   oster 	RF_ASSERT(priority == RF_IO_NORMAL_PRIORITY || priority == RF_IO_LOW_PRIORITY);
     74      1.1   oster 
     75      1.3   oster 	elem->next = NULL;
     76      1.3   oster 	if (priority == RF_IO_NORMAL_PRIORITY) {
     77      1.3   oster 		if (!q->hq_tail) {
     78      1.3   oster 			RF_ASSERT(q->hq_count == 0 && q->hq_head == NULL);
     79      1.3   oster 			q->hq_head = q->hq_tail = elem;
     80      1.3   oster 		} else {
     81      1.3   oster 			RF_ASSERT(q->hq_count != 0 && q->hq_head != NULL);
     82      1.3   oster 			q->hq_tail->next = elem;
     83      1.3   oster 			q->hq_tail = elem;
     84      1.3   oster 		}
     85      1.3   oster 		q->hq_count++;
     86      1.3   oster 	} else {
     87      1.3   oster 		RF_ASSERT(elem->next == NULL);
     88      1.3   oster 		if (rf_fifoDebug) {
     89  1.3.8.1  bouyer 			printf("raid%d: fifo: ENQ lopri\n",
     90  1.3.8.1  bouyer 			       elem->raidPtr->raidid);
     91      1.3   oster 		}
     92      1.3   oster 		if (!q->lq_tail) {
     93      1.3   oster 			RF_ASSERT(q->lq_count == 0 && q->lq_head == NULL);
     94      1.3   oster 			q->lq_head = q->lq_tail = elem;
     95      1.3   oster 		} else {
     96      1.3   oster 			RF_ASSERT(q->lq_count != 0 && q->lq_head != NULL);
     97      1.3   oster 			q->lq_tail->next = elem;
     98      1.3   oster 			q->lq_tail = elem;
     99      1.3   oster 		}
    100      1.3   oster 		q->lq_count++;
    101      1.3   oster 	}
    102      1.3   oster 	if ((q->hq_count + q->lq_count) != elem->queue->queueLength) {
    103      1.3   oster 		printf("Queue lengths differ!: %d %d %d\n",
    104      1.3   oster 		    q->hq_count, q->lq_count, (int) elem->queue->queueLength);
    105      1.3   oster 		printf("%d %d %d %d\n",
    106      1.3   oster 		    (int) elem->queue->numOutstanding,
    107      1.3   oster 		    (int) elem->queue->maxOutstanding,
    108      1.3   oster 		    (int) elem->queue->row,
    109      1.3   oster 		    (int) elem->queue->col);
    110      1.3   oster 	}
    111      1.3   oster 	RF_ASSERT((q->hq_count + q->lq_count) == elem->queue->queueLength);
    112      1.1   oster }
    113      1.1   oster 
    114      1.3   oster RF_DiskQueueData_t *
    115      1.3   oster rf_FifoDequeue(q_in)
    116      1.3   oster 	void   *q_in;
    117      1.1   oster {
    118      1.3   oster 	RF_FifoHeader_t *q = (RF_FifoHeader_t *) q_in;
    119      1.3   oster 	RF_DiskQueueData_t *nd;
    120      1.1   oster 
    121      1.3   oster 	RF_ASSERT(q);
    122      1.3   oster 	if (q->hq_head) {
    123      1.3   oster 		RF_ASSERT(q->hq_count != 0 && q->hq_tail != NULL);
    124      1.3   oster 		nd = q->hq_head;
    125      1.3   oster 		q->hq_head = q->hq_head->next;
    126      1.3   oster 		if (!q->hq_head)
    127      1.3   oster 			q->hq_tail = NULL;
    128      1.3   oster 		nd->next = NULL;
    129      1.3   oster 		q->hq_count--;
    130      1.3   oster 	} else
    131      1.3   oster 		if (q->lq_head) {
    132      1.3   oster 			RF_ASSERT(q->lq_count != 0 && q->lq_tail != NULL);
    133      1.3   oster 			nd = q->lq_head;
    134      1.3   oster 			q->lq_head = q->lq_head->next;
    135      1.3   oster 			if (!q->lq_head)
    136      1.3   oster 				q->lq_tail = NULL;
    137      1.3   oster 			nd->next = NULL;
    138      1.3   oster 			q->lq_count--;
    139      1.3   oster 			if (rf_fifoDebug) {
    140  1.3.8.1  bouyer 				printf("raid%d: fifo: DEQ lopri %lx\n",
    141  1.3.8.1  bouyer 				       nd->raidPtr->raidid, (long) nd);
    142      1.3   oster 			}
    143      1.3   oster 		} else {
    144      1.3   oster 			RF_ASSERT(q->hq_count == 0 && q->lq_count == 0 && q->hq_tail == NULL && q->lq_tail == NULL);
    145      1.3   oster 			nd = NULL;
    146      1.3   oster 		}
    147      1.3   oster 	return (nd);
    148      1.1   oster }
    149      1.1   oster 
    150      1.1   oster /* Return ptr to item at head of queue.  Used to examine request
    151      1.1   oster  * info without actually dequeueing the request.
    152      1.1   oster  */
    153      1.3   oster RF_DiskQueueData_t *
    154      1.3   oster rf_FifoPeek(void *q_in)
    155      1.1   oster {
    156      1.3   oster 	RF_DiskQueueData_t *headElement = NULL;
    157      1.3   oster 	RF_FifoHeader_t *q = (RF_FifoHeader_t *) q_in;
    158      1.1   oster 
    159      1.3   oster 	RF_ASSERT(q);
    160      1.3   oster 	if (q->hq_head)
    161      1.3   oster 		headElement = q->hq_head;
    162      1.3   oster 	else
    163      1.3   oster 		if (q->lq_head)
    164      1.3   oster 			headElement = q->lq_head;
    165      1.3   oster 	return (headElement);
    166      1.1   oster }
    167      1.1   oster /* We sometimes need to promote a low priority access to a regular priority access.
    168      1.1   oster  * Currently, this is only used when the user wants to write a stripe which is currently
    169      1.1   oster  * under reconstruction.
    170      1.1   oster  * This routine will promote all accesses tagged with the indicated parityStripeID from
    171      1.1   oster  * the low priority queue to the end of the normal priority queue.
    172      1.1   oster  * We assume the queue is locked upon entry.
    173      1.1   oster  */
    174      1.3   oster int
    175      1.3   oster rf_FifoPromote(q_in, parityStripeID, which_ru)
    176      1.3   oster 	void   *q_in;
    177      1.3   oster 	RF_StripeNum_t parityStripeID;
    178      1.3   oster 	RF_ReconUnitNum_t which_ru;
    179      1.1   oster {
    180      1.3   oster 	RF_FifoHeader_t *q = (RF_FifoHeader_t *) q_in;
    181      1.3   oster 	RF_DiskQueueData_t *lp = q->lq_head, *pt = NULL;	/* lp = lo-pri queue
    182      1.3   oster 								 * pointer, pt = trailer */
    183      1.3   oster 	int     retval = 0;
    184      1.3   oster 
    185      1.3   oster 	while (lp) {
    186      1.3   oster 
    187      1.3   oster 		/* search for the indicated parity stripe in the low-pri queue */
    188      1.3   oster 		if (lp->parityStripeID == parityStripeID && lp->which_ru == which_ru) {
    189      1.3   oster 			/* printf("FifoPromote:  promoting access for psid
    190      1.3   oster 			 * %ld\n",parityStripeID); */
    191      1.3   oster 			if (pt)
    192      1.3   oster 				pt->next = lp->next;	/* delete an entry other
    193      1.3   oster 							 * than the first */
    194      1.3   oster 			else
    195      1.3   oster 				q->lq_head = lp->next;	/* delete the head entry */
    196      1.3   oster 
    197      1.3   oster 			if (!q->lq_head)
    198      1.3   oster 				q->lq_tail = NULL;	/* we deleted the only
    199      1.3   oster 							 * entry */
    200      1.3   oster 			else
    201      1.3   oster 				if (lp == q->lq_tail)
    202      1.3   oster 					q->lq_tail = pt;	/* we deleted the tail
    203      1.3   oster 								 * entry */
    204      1.3   oster 
    205      1.3   oster 			lp->next = NULL;
    206      1.3   oster 			q->lq_count--;
    207      1.3   oster 
    208      1.3   oster 			if (q->hq_tail) {
    209      1.3   oster 				q->hq_tail->next = lp;
    210      1.3   oster 				q->hq_tail = lp;
    211      1.3   oster 			}
    212      1.3   oster 			 /* append to hi-priority queue */
    213      1.3   oster 			else {
    214      1.3   oster 				q->hq_head = q->hq_tail = lp;
    215      1.3   oster 			}
    216      1.3   oster 			q->hq_count++;
    217      1.3   oster 
    218      1.3   oster 			/* UpdateShortestSeekFinishTimeForced(lp->requestPtr,
    219      1.3   oster 			 * lp->diskState); *//* deal with this later, if ever */
    220      1.3   oster 
    221      1.3   oster 			lp = (pt) ? pt->next : q->lq_head;	/* reset low-pri pointer
    222      1.3   oster 								 * and continue */
    223      1.3   oster 			retval++;
    224      1.3   oster 
    225      1.3   oster 		} else {
    226      1.3   oster 			pt = lp;
    227      1.3   oster 			lp = lp->next;
    228      1.3   oster 		}
    229      1.3   oster 	}
    230      1.3   oster 
    231      1.3   oster 	/* sanity check.  delete this if you ever put more than one entry in
    232      1.3   oster 	 * the low-pri queue */
    233      1.3   oster 	RF_ASSERT(retval == 0 || retval == 1);
    234      1.3   oster 	return (retval);
    235      1.1   oster }
    236