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rf_diskqueue.c revision 1.8
      1  1.8  oster /*	$NetBSD: rf_diskqueue.c,v 1.8 2000/01/07 03:43:39 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_diskqueue.c -- higher-level disk queue code
     32  1.1  oster  *
     33  1.1  oster  * the routines here are a generic wrapper around the actual queueing
     34  1.6  oster  * routines.  The code here implements thread scheduling, synchronization,
     35  1.1  oster  * and locking ops (see below) on top of the lower-level queueing code.
     36  1.1  oster  *
     37  1.1  oster  * to support atomic RMW, we implement "locking operations".  When a locking op
     38  1.1  oster  * is dispatched to the lower levels of the driver, the queue is locked, and no further
     39  1.1  oster  * I/Os are dispatched until the queue receives & completes a corresponding "unlocking
     40  1.1  oster  * operation".  This code relies on the higher layers to guarantee that a locking
     41  1.1  oster  * op will always be eventually followed by an unlocking op.  The model is that
     42  1.1  oster  * the higher layers are structured so locking and unlocking ops occur in pairs, i.e.
     43  1.1  oster  * an unlocking op cannot be generated until after a locking op reports completion.
     44  1.1  oster  * There is no good way to check to see that an unlocking op "corresponds" to the
     45  1.1  oster  * op that currently has the queue locked, so we make no such attempt.  Since by
     46  1.1  oster  * definition there can be only one locking op outstanding on a disk, this should
     47  1.1  oster  * not be a problem.
     48  1.1  oster  *
     49  1.1  oster  * In the kernel, we allow multiple I/Os to be concurrently dispatched to the disk
     50  1.1  oster  * driver.  In order to support locking ops in this environment, when we decide to
     51  1.1  oster  * do a locking op, we stop dispatching new I/Os and wait until all dispatched I/Os
     52  1.1  oster  * have completed before dispatching the locking op.
     53  1.1  oster  *
     54  1.1  oster  * Unfortunately, the code is different in the 3 different operating states
     55  1.1  oster  * (user level, kernel, simulator).  In the kernel, I/O is non-blocking, and
     56  1.1  oster  * we have no disk threads to dispatch for us.  Therefore, we have to dispatch
     57  1.6  oster  * new I/Os to the scsi driver at the time of enqueue, and also at the time
     58  1.6  oster  * of completion.  At user level, I/O is blocking, and so only the disk threads
     59  1.6  oster  * may dispatch I/Os.  Thus at user level, all we can do at enqueue time is
     60  1.1  oster  * enqueue and wake up the disk thread to do the dispatch.
     61  1.1  oster  *
     62  1.1  oster  ***************************************************************************************/
     63  1.1  oster 
     64  1.1  oster #include "rf_types.h"
     65  1.1  oster #include "rf_threadstuff.h"
     66  1.1  oster #include "rf_raid.h"
     67  1.1  oster #include "rf_diskqueue.h"
     68  1.1  oster #include "rf_alloclist.h"
     69  1.1  oster #include "rf_acctrace.h"
     70  1.1  oster #include "rf_etimer.h"
     71  1.1  oster #include "rf_configure.h"
     72  1.1  oster #include "rf_general.h"
     73  1.1  oster #include "rf_freelist.h"
     74  1.1  oster #include "rf_debugprint.h"
     75  1.1  oster #include "rf_shutdown.h"
     76  1.1  oster #include "rf_cvscan.h"
     77  1.1  oster #include "rf_sstf.h"
     78  1.1  oster #include "rf_fifo.h"
     79  1.1  oster 
     80  1.1  oster static int init_dqd(RF_DiskQueueData_t *);
     81  1.1  oster static void clean_dqd(RF_DiskQueueData_t *);
     82  1.1  oster static void rf_ShutdownDiskQueueSystem(void *);
     83  1.1  oster /* From rf_kintf.c */
     84  1.6  oster int     rf_DispatchKernelIO(RF_DiskQueue_t *, RF_DiskQueueData_t *);
     85  1.1  oster 
     86  1.1  oster 
     87  1.1  oster #define Dprintf1(s,a)         if (rf_queueDebug) rf_debug_printf(s,(void *)((unsigned long)a),NULL,NULL,NULL,NULL,NULL,NULL,NULL)
     88  1.1  oster #define Dprintf2(s,a,b)       if (rf_queueDebug) rf_debug_printf(s,(void *)((unsigned long)a),(void *)((unsigned long)b),NULL,NULL,NULL,NULL,NULL,NULL)
     89  1.1  oster #define Dprintf3(s,a,b,c)     if (rf_queueDebug) rf_debug_printf(s,(void *)((unsigned long)a),(void *)((unsigned long)b),(void *)((unsigned long)c),NULL,NULL,NULL,NULL,NULL)
     90  1.1  oster #define Dprintf4(s,a,b,c,d)   if (rf_queueDebug) rf_debug_printf(s,(void *)((unsigned long)a),(void *)((unsigned long)b),(void *)((unsigned long)c),(void *)((unsigned long)d),NULL,NULL,NULL,NULL)
     91  1.1  oster #define Dprintf5(s,a,b,c,d,e) if (rf_queueDebug) rf_debug_printf(s,(void *)((unsigned long)a),(void *)((unsigned long)b),(void *)((unsigned long)c),(void *)((unsigned long)d),(void *)((unsigned long)e),NULL,NULL,NULL)
     92  1.1  oster 
     93  1.1  oster 
     94  1.1  oster #define SIGNAL_DISK_QUEUE(_q_,_wh_)
     95  1.1  oster #define WAIT_DISK_QUEUE(_q_,_wh_)
     96  1.1  oster 
     97  1.1  oster /*****************************************************************************************
     98  1.1  oster  *
     99  1.1  oster  * the disk queue switch defines all the functions used in the different queueing
    100  1.1  oster  * disciplines
    101  1.1  oster  *    queue ID, init routine, enqueue routine, dequeue routine
    102  1.1  oster  *
    103  1.1  oster  ****************************************************************************************/
    104  1.1  oster 
    105  1.1  oster static RF_DiskQueueSW_t diskqueuesw[] = {
    106  1.6  oster 	{"fifo",		/* FIFO */
    107  1.6  oster 		rf_FifoCreate,
    108  1.6  oster 		rf_FifoEnqueue,
    109  1.6  oster 		rf_FifoDequeue,
    110  1.6  oster 		rf_FifoPeek,
    111  1.1  oster 	rf_FifoPromote},
    112  1.1  oster 
    113  1.6  oster 	{"cvscan",		/* cvscan */
    114  1.6  oster 		rf_CvscanCreate,
    115  1.6  oster 		rf_CvscanEnqueue,
    116  1.6  oster 		rf_CvscanDequeue,
    117  1.6  oster 		rf_CvscanPeek,
    118  1.6  oster 	rf_CvscanPromote},
    119  1.6  oster 
    120  1.6  oster 	{"sstf",		/* shortest seek time first */
    121  1.6  oster 		rf_SstfCreate,
    122  1.6  oster 		rf_SstfEnqueue,
    123  1.6  oster 		rf_SstfDequeue,
    124  1.6  oster 		rf_SstfPeek,
    125  1.1  oster 	rf_SstfPromote},
    126  1.1  oster 
    127  1.6  oster 	{"scan",		/* SCAN (two-way elevator) */
    128  1.6  oster 		rf_ScanCreate,
    129  1.6  oster 		rf_SstfEnqueue,
    130  1.6  oster 		rf_ScanDequeue,
    131  1.6  oster 		rf_ScanPeek,
    132  1.1  oster 	rf_SstfPromote},
    133  1.1  oster 
    134  1.6  oster 	{"cscan",		/* CSCAN (one-way elevator) */
    135  1.6  oster 		rf_CscanCreate,
    136  1.6  oster 		rf_SstfEnqueue,
    137  1.6  oster 		rf_CscanDequeue,
    138  1.6  oster 		rf_CscanPeek,
    139  1.1  oster 	rf_SstfPromote},
    140  1.1  oster 
    141  1.5  oster #if !defined(_KERNEL) && RF_INCLUDE_QUEUE_RANDOM > 0
    142  1.1  oster 	/* to make a point to Chris :-> */
    143  1.6  oster 	{"random",		/* random */
    144  1.6  oster 		rf_FifoCreate,
    145  1.6  oster 		rf_FifoEnqueue,
    146  1.6  oster 		rf_RandomDequeue,
    147  1.6  oster 		rf_RandomPeek,
    148  1.1  oster 	rf_FifoPromote},
    149  1.6  oster #endif				/* !KERNEL && RF_INCLUDE_QUEUE_RANDOM > 0 */
    150  1.1  oster };
    151  1.1  oster #define NUM_DISK_QUEUE_TYPES (sizeof(diskqueuesw)/sizeof(RF_DiskQueueSW_t))
    152  1.1  oster 
    153  1.1  oster static RF_FreeList_t *rf_dqd_freelist;
    154  1.1  oster 
    155  1.1  oster #define RF_MAX_FREE_DQD 256
    156  1.1  oster #define RF_DQD_INC       16
    157  1.1  oster #define RF_DQD_INITIAL   64
    158  1.1  oster 
    159  1.1  oster #include <sys/buf.h>
    160  1.1  oster 
    161  1.6  oster static int
    162  1.6  oster init_dqd(dqd)
    163  1.6  oster 	RF_DiskQueueData_t *dqd;
    164  1.6  oster {
    165  1.6  oster 	/* XXX not sure if the following malloc is appropriate... probably not
    166  1.6  oster 	 * quite... */
    167  1.6  oster 	dqd->bp = (struct buf *) malloc(sizeof(struct buf), M_RAIDFRAME, M_NOWAIT);
    168  1.1  oster 	if (dqd->bp == NULL) {
    169  1.6  oster 		return (ENOMEM);
    170  1.1  oster 	}
    171  1.6  oster 	memset(dqd->bp, 0, sizeof(struct buf));	/* if you don't do it, nobody
    172  1.6  oster 						 * else will.. */
    173  1.6  oster 	return (0);
    174  1.1  oster }
    175  1.1  oster 
    176  1.6  oster static void
    177  1.6  oster clean_dqd(dqd)
    178  1.6  oster 	RF_DiskQueueData_t *dqd;
    179  1.1  oster {
    180  1.6  oster 	free(dqd->bp, M_RAIDFRAME);
    181  1.6  oster }
    182  1.6  oster /* configures a single disk queue */
    183  1.7  oster int config_disk_queue(RF_Raid_t *, RF_DiskQueue_t *, RF_RowCol_t,
    184  1.7  oster 		      RF_RowCol_t, RF_DiskQueueSW_t *,
    185  1.7  oster 		      RF_SectorCount_t, dev_t, int,
    186  1.7  oster 		      RF_ShutdownList_t **,
    187  1.7  oster 		      RF_AllocListElem_t *);
    188  1.7  oster int
    189  1.6  oster config_disk_queue(
    190  1.6  oster     RF_Raid_t * raidPtr,
    191  1.6  oster     RF_DiskQueue_t * diskqueue,
    192  1.6  oster     RF_RowCol_t r,		/* row & col -- debug only.  BZZT not any
    193  1.6  oster 				 * more... */
    194  1.6  oster     RF_RowCol_t c,
    195  1.6  oster     RF_DiskQueueSW_t * p,
    196  1.6  oster     RF_SectorCount_t sectPerDisk,
    197  1.6  oster     dev_t dev,
    198  1.6  oster     int maxOutstanding,
    199  1.6  oster     RF_ShutdownList_t ** listp,
    200  1.6  oster     RF_AllocListElem_t * clList)
    201  1.6  oster {
    202  1.6  oster 	int     rc;
    203  1.6  oster 
    204  1.6  oster 	diskqueue->row = r;
    205  1.6  oster 	diskqueue->col = c;
    206  1.6  oster 	diskqueue->qPtr = p;
    207  1.6  oster 	diskqueue->qHdr = (p->Create) (sectPerDisk, clList, listp);
    208  1.6  oster 	diskqueue->dev = dev;
    209  1.6  oster 	diskqueue->numOutstanding = 0;
    210  1.6  oster 	diskqueue->queueLength = 0;
    211  1.6  oster 	diskqueue->maxOutstanding = maxOutstanding;
    212  1.6  oster 	diskqueue->curPriority = RF_IO_NORMAL_PRIORITY;
    213  1.6  oster 	diskqueue->nextLockingOp = NULL;
    214  1.6  oster 	diskqueue->unlockingOp = NULL;
    215  1.6  oster 	diskqueue->numWaiting = 0;
    216  1.6  oster 	diskqueue->flags = 0;
    217  1.6  oster 	diskqueue->raidPtr = raidPtr;
    218  1.6  oster 	diskqueue->rf_cinfo = &raidPtr->raid_cinfo[r][c];
    219  1.6  oster 	rc = rf_create_managed_mutex(listp, &diskqueue->mutex);
    220  1.6  oster 	if (rc) {
    221  1.6  oster 		RF_ERRORMSG3("Unable to init mutex file %s line %d rc=%d\n", __FILE__,
    222  1.6  oster 		    __LINE__, rc);
    223  1.6  oster 		return (rc);
    224  1.6  oster 	}
    225  1.6  oster 	rc = rf_create_managed_cond(listp, &diskqueue->cond);
    226  1.6  oster 	if (rc) {
    227  1.6  oster 		RF_ERRORMSG3("Unable to init cond file %s line %d rc=%d\n", __FILE__,
    228  1.6  oster 		    __LINE__, rc);
    229  1.6  oster 		return (rc);
    230  1.6  oster 	}
    231  1.6  oster 	return (0);
    232  1.1  oster }
    233  1.1  oster 
    234  1.6  oster static void
    235  1.6  oster rf_ShutdownDiskQueueSystem(ignored)
    236  1.6  oster 	void   *ignored;
    237  1.6  oster {
    238  1.6  oster 	RF_FREELIST_DESTROY_CLEAN(rf_dqd_freelist, next, (RF_DiskQueueData_t *), clean_dqd);
    239  1.1  oster }
    240  1.1  oster 
    241  1.6  oster int
    242  1.6  oster rf_ConfigureDiskQueueSystem(listp)
    243  1.6  oster 	RF_ShutdownList_t **listp;
    244  1.6  oster {
    245  1.6  oster 	int     rc;
    246  1.6  oster 
    247  1.6  oster 	RF_FREELIST_CREATE(rf_dqd_freelist, RF_MAX_FREE_DQD,
    248  1.6  oster 	    RF_DQD_INC, sizeof(RF_DiskQueueData_t));
    249  1.6  oster 	if (rf_dqd_freelist == NULL)
    250  1.6  oster 		return (ENOMEM);
    251  1.6  oster 	rc = rf_ShutdownCreate(listp, rf_ShutdownDiskQueueSystem, NULL);
    252  1.6  oster 	if (rc) {
    253  1.6  oster 		RF_ERRORMSG3("Unable to add to shutdown list file %s line %d rc=%d\n",
    254  1.6  oster 		    __FILE__, __LINE__, rc);
    255  1.6  oster 		rf_ShutdownDiskQueueSystem(NULL);
    256  1.6  oster 		return (rc);
    257  1.6  oster 	}
    258  1.6  oster 	RF_FREELIST_PRIME_INIT(rf_dqd_freelist, RF_DQD_INITIAL, next,
    259  1.6  oster 	    (RF_DiskQueueData_t *), init_dqd);
    260  1.6  oster 	return (0);
    261  1.6  oster }
    262  1.6  oster 
    263  1.6  oster int
    264  1.6  oster rf_ConfigureDiskQueues(
    265  1.6  oster     RF_ShutdownList_t ** listp,
    266  1.6  oster     RF_Raid_t * raidPtr,
    267  1.6  oster     RF_Config_t * cfgPtr)
    268  1.6  oster {
    269  1.6  oster 	RF_DiskQueue_t **diskQueues, *spareQueues;
    270  1.6  oster 	RF_DiskQueueSW_t *p;
    271  1.6  oster 	RF_RowCol_t r, c;
    272  1.6  oster 	int     rc, i;
    273  1.6  oster 
    274  1.6  oster 	raidPtr->maxQueueDepth = cfgPtr->maxOutstandingDiskReqs;
    275  1.6  oster 
    276  1.6  oster 	for (p = NULL, i = 0; i < NUM_DISK_QUEUE_TYPES; i++) {
    277  1.6  oster 		if (!strcmp(diskqueuesw[i].queueType, cfgPtr->diskQueueType)) {
    278  1.6  oster 			p = &diskqueuesw[i];
    279  1.6  oster 			break;
    280  1.6  oster 		}
    281  1.6  oster 	}
    282  1.6  oster 	if (p == NULL) {
    283  1.6  oster 		RF_ERRORMSG2("Unknown queue type \"%s\".  Using %s\n", cfgPtr->diskQueueType, diskqueuesw[0].queueType);
    284  1.6  oster 		p = &diskqueuesw[0];
    285  1.6  oster 	}
    286  1.6  oster 	RF_CallocAndAdd(diskQueues, raidPtr->numRow, sizeof(RF_DiskQueue_t *), (RF_DiskQueue_t **), raidPtr->cleanupList);
    287  1.6  oster 	if (diskQueues == NULL) {
    288  1.6  oster 		return (ENOMEM);
    289  1.6  oster 	}
    290  1.6  oster 	raidPtr->Queues = diskQueues;
    291  1.6  oster 	for (r = 0; r < raidPtr->numRow; r++) {
    292  1.7  oster 		RF_CallocAndAdd(diskQueues[r], raidPtr->numCol +
    293  1.7  oster 				 ((r == 0) ? RF_MAXSPARE : 0),
    294  1.7  oster 				sizeof(RF_DiskQueue_t), (RF_DiskQueue_t *),
    295  1.7  oster 				raidPtr->cleanupList);
    296  1.6  oster 		if (diskQueues[r] == NULL)
    297  1.6  oster 			return (ENOMEM);
    298  1.6  oster 		for (c = 0; c < raidPtr->numCol; c++) {
    299  1.6  oster 			rc = config_disk_queue(raidPtr, &diskQueues[r][c], r, c, p,
    300  1.6  oster 			    raidPtr->sectorsPerDisk, raidPtr->Disks[r][c].dev,
    301  1.6  oster 			    cfgPtr->maxOutstandingDiskReqs, listp, raidPtr->cleanupList);
    302  1.6  oster 			if (rc)
    303  1.6  oster 				return (rc);
    304  1.6  oster 		}
    305  1.6  oster 	}
    306  1.6  oster 
    307  1.6  oster 	spareQueues = &raidPtr->Queues[0][raidPtr->numCol];
    308  1.6  oster 	for (r = 0; r < raidPtr->numSpare; r++) {
    309  1.6  oster 		rc = config_disk_queue(raidPtr, &spareQueues[r],
    310  1.6  oster 		    0, raidPtr->numCol + r, p,
    311  1.6  oster 		    raidPtr->sectorsPerDisk,
    312  1.6  oster 		    raidPtr->Disks[0][raidPtr->numCol + r].dev,
    313  1.6  oster 		    cfgPtr->maxOutstandingDiskReqs, listp,
    314  1.6  oster 		    raidPtr->cleanupList);
    315  1.6  oster 		if (rc)
    316  1.6  oster 			return (rc);
    317  1.6  oster 	}
    318  1.6  oster 	return (0);
    319  1.6  oster }
    320  1.1  oster /* Enqueue a disk I/O
    321  1.1  oster  *
    322  1.1  oster  * Unfortunately, we have to do things differently in the different
    323  1.1  oster  * environments (simulator, user-level, kernel).
    324  1.1  oster  * At user level, all I/O is blocking, so we have 1 or more threads/disk
    325  1.1  oster  * and the thread that enqueues is different from the thread that dequeues.
    326  1.1  oster  * In the kernel, I/O is non-blocking and so we'd like to have multiple
    327  1.1  oster  * I/Os outstanding on the physical disks when possible.
    328  1.1  oster  *
    329  1.1  oster  * when any request arrives at a queue, we have two choices:
    330  1.1  oster  *    dispatch it to the lower levels
    331  1.1  oster  *    queue it up
    332  1.1  oster  *
    333  1.1  oster  * kernel rules for when to do what:
    334  1.1  oster  *    locking request:  queue empty => dispatch and lock queue,
    335  1.1  oster  *                      else queue it
    336  1.1  oster  *    unlocking req  :  always dispatch it
    337  1.1  oster  *    normal req     :  queue empty => dispatch it & set priority
    338  1.1  oster  *                      queue not full & priority is ok => dispatch it
    339  1.1  oster  *                      else queue it
    340  1.1  oster  *
    341  1.1  oster  * user-level rules:
    342  1.1  oster  *    always enqueue.  In the special case of an unlocking op, enqueue
    343  1.1  oster  *    in a special way that will cause the unlocking op to be the next
    344  1.1  oster  *    thing dequeued.
    345  1.1  oster  *
    346  1.1  oster  * simulator rules:
    347  1.1  oster  *    Do the same as at user level, with the sleeps and wakeups suppressed.
    348  1.1  oster  */
    349  1.6  oster void
    350  1.6  oster rf_DiskIOEnqueue(queue, req, pri)
    351  1.6  oster 	RF_DiskQueue_t *queue;
    352  1.6  oster 	RF_DiskQueueData_t *req;
    353  1.6  oster 	int     pri;
    354  1.6  oster {
    355  1.6  oster 	RF_ETIMER_START(req->qtime);
    356  1.6  oster 	RF_ASSERT(req->type == RF_IO_TYPE_NOP || req->numSector);
    357  1.6  oster 	req->priority = pri;
    358  1.6  oster 
    359  1.6  oster 	if (rf_queueDebug && (req->numSector == 0)) {
    360  1.6  oster 		printf("Warning: Enqueueing zero-sector access\n");
    361  1.6  oster 	}
    362  1.6  oster 	/*
    363  1.6  oster          * kernel
    364  1.6  oster          */
    365  1.6  oster 	RF_LOCK_QUEUE_MUTEX(queue, "DiskIOEnqueue");
    366  1.6  oster 	/* locking request */
    367  1.6  oster 	if (RF_LOCKING_REQ(req)) {
    368  1.6  oster 		if (RF_QUEUE_EMPTY(queue)) {
    369  1.6  oster 			Dprintf3("Dispatching pri %d locking op to r %d c %d (queue empty)\n", pri, queue->row, queue->col);
    370  1.6  oster 			RF_LOCK_QUEUE(queue);
    371  1.6  oster 			rf_DispatchKernelIO(queue, req);
    372  1.6  oster 		} else {
    373  1.6  oster 			queue->queueLength++;	/* increment count of number
    374  1.6  oster 						 * of requests waiting in this
    375  1.6  oster 						 * queue */
    376  1.6  oster 			Dprintf3("Enqueueing pri %d locking op to r %d c %d (queue not empty)\n", pri, queue->row, queue->col);
    377  1.6  oster 			req->queue = (void *) queue;
    378  1.6  oster 			(queue->qPtr->Enqueue) (queue->qHdr, req, pri);
    379  1.6  oster 		}
    380  1.6  oster 	}
    381  1.6  oster 	/* unlocking request */
    382  1.6  oster 	else
    383  1.6  oster 		if (RF_UNLOCKING_REQ(req)) {	/* we'll do the actual unlock
    384  1.6  oster 						 * when this I/O completes */
    385  1.6  oster 			Dprintf3("Dispatching pri %d unlocking op to r %d c %d\n", pri, queue->row, queue->col);
    386  1.6  oster 			RF_ASSERT(RF_QUEUE_LOCKED(queue));
    387  1.6  oster 			rf_DispatchKernelIO(queue, req);
    388  1.6  oster 		}
    389  1.6  oster 	/* normal request */
    390  1.6  oster 		else
    391  1.6  oster 			if (RF_OK_TO_DISPATCH(queue, req)) {
    392  1.6  oster 				Dprintf3("Dispatching pri %d regular op to r %d c %d (ok to dispatch)\n", pri, queue->row, queue->col);
    393  1.6  oster 				rf_DispatchKernelIO(queue, req);
    394  1.6  oster 			} else {
    395  1.6  oster 				queue->queueLength++;	/* increment count of
    396  1.6  oster 							 * number of requests
    397  1.6  oster 							 * waiting in this queue */
    398  1.6  oster 				Dprintf3("Enqueueing pri %d regular op to r %d c %d (not ok to dispatch)\n", pri, queue->row, queue->col);
    399  1.6  oster 				req->queue = (void *) queue;
    400  1.6  oster 				(queue->qPtr->Enqueue) (queue->qHdr, req, pri);
    401  1.6  oster 			}
    402  1.6  oster 	RF_UNLOCK_QUEUE_MUTEX(queue, "DiskIOEnqueue");
    403  1.1  oster }
    404  1.6  oster 
    405  1.1  oster 
    406  1.1  oster /* get the next set of I/Os started, kernel version only */
    407  1.6  oster void
    408  1.6  oster rf_DiskIOComplete(queue, req, status)
    409  1.6  oster 	RF_DiskQueue_t *queue;
    410  1.6  oster 	RF_DiskQueueData_t *req;
    411  1.6  oster 	int     status;
    412  1.6  oster {
    413  1.6  oster 	int     done = 0;
    414  1.6  oster 
    415  1.6  oster 	RF_LOCK_QUEUE_MUTEX(queue, "DiskIOComplete");
    416  1.6  oster 
    417  1.6  oster 	/* unlock the queue: (1) after an unlocking req completes (2) after a
    418  1.6  oster 	 * locking req fails */
    419  1.6  oster 	if (RF_UNLOCKING_REQ(req) || (RF_LOCKING_REQ(req) && status)) {
    420  1.6  oster 		Dprintf2("DiskIOComplete: unlocking queue at r %d c %d\n", queue->row, queue->col);
    421  1.6  oster 		RF_ASSERT(RF_QUEUE_LOCKED(queue) && (queue->unlockingOp == NULL));
    422  1.6  oster 		RF_UNLOCK_QUEUE(queue);
    423  1.6  oster 	}
    424  1.6  oster 	queue->numOutstanding--;
    425  1.6  oster 	RF_ASSERT(queue->numOutstanding >= 0);
    426  1.6  oster 
    427  1.6  oster 	/* dispatch requests to the disk until we find one that we can't. */
    428  1.6  oster 	/* no reason to continue once we've filled up the queue */
    429  1.6  oster 	/* no reason to even start if the queue is locked */
    430  1.6  oster 
    431  1.6  oster 	while (!done && !RF_QUEUE_FULL(queue) && !RF_QUEUE_LOCKED(queue)) {
    432  1.6  oster 		if (queue->nextLockingOp) {
    433  1.6  oster 			req = queue->nextLockingOp;
    434  1.6  oster 			queue->nextLockingOp = NULL;
    435  1.6  oster 			Dprintf3("DiskIOComplete: a pri %d locking req was pending at r %d c %d\n", req->priority, queue->row, queue->col);
    436  1.6  oster 		} else {
    437  1.6  oster 			req = (queue->qPtr->Dequeue) (queue->qHdr);
    438  1.6  oster 			if (req != NULL) {
    439  1.6  oster 				Dprintf3("DiskIOComplete: extracting pri %d req from queue at r %d c %d\n", req->priority, queue->row, queue->col);
    440  1.6  oster 			} else {
    441  1.6  oster 				Dprintf1("DiskIOComplete: no more requests to extract.\n", "");
    442  1.6  oster 			}
    443  1.6  oster 		}
    444  1.6  oster 		if (req) {
    445  1.6  oster 			queue->queueLength--;	/* decrement count of number
    446  1.6  oster 						 * of requests waiting in this
    447  1.6  oster 						 * queue */
    448  1.6  oster 			RF_ASSERT(queue->queueLength >= 0);
    449  1.6  oster 		}
    450  1.6  oster 		if (!req)
    451  1.6  oster 			done = 1;
    452  1.6  oster 		else
    453  1.6  oster 			if (RF_LOCKING_REQ(req)) {
    454  1.6  oster 				if (RF_QUEUE_EMPTY(queue)) {	/* dispatch it */
    455  1.6  oster 					Dprintf3("DiskIOComplete: dispatching pri %d locking req to r %d c %d (queue empty)\n", req->priority, queue->row, queue->col);
    456  1.6  oster 					RF_LOCK_QUEUE(queue);
    457  1.6  oster 					rf_DispatchKernelIO(queue, req);
    458  1.6  oster 					done = 1;
    459  1.6  oster 				} else {	/* put it aside to wait for
    460  1.6  oster 						 * the queue to drain */
    461  1.6  oster 					Dprintf3("DiskIOComplete: postponing pri %d locking req to r %d c %d\n", req->priority, queue->row, queue->col);
    462  1.6  oster 					RF_ASSERT(queue->nextLockingOp == NULL);
    463  1.6  oster 					queue->nextLockingOp = req;
    464  1.6  oster 					done = 1;
    465  1.6  oster 				}
    466  1.6  oster 			} else
    467  1.6  oster 				if (RF_UNLOCKING_REQ(req)) {	/* should not happen:
    468  1.6  oster 								 * unlocking ops should
    469  1.6  oster 								 * not get queued */
    470  1.6  oster 					RF_ASSERT(RF_QUEUE_LOCKED(queue));	/* support it anyway for
    471  1.6  oster 										 * the future */
    472  1.6  oster 					Dprintf3("DiskIOComplete: dispatching pri %d unl req to r %d c %d (SHOULD NOT SEE THIS)\n", req->priority, queue->row, queue->col);
    473  1.6  oster 					rf_DispatchKernelIO(queue, req);
    474  1.6  oster 					done = 1;
    475  1.6  oster 				} else
    476  1.6  oster 					if (RF_OK_TO_DISPATCH(queue, req)) {
    477  1.6  oster 						Dprintf3("DiskIOComplete: dispatching pri %d regular req to r %d c %d (ok to dispatch)\n", req->priority, queue->row, queue->col);
    478  1.6  oster 						rf_DispatchKernelIO(queue, req);
    479  1.6  oster 					} else {	/* we can't dispatch it,
    480  1.6  oster 							 * so just re-enqueue
    481  1.6  oster 							 * it.  */
    482  1.6  oster 						/* potential trouble here if
    483  1.6  oster 						 * disk queues batch reqs */
    484  1.6  oster 						Dprintf3("DiskIOComplete: re-enqueueing pri %d regular req to r %d c %d\n", req->priority, queue->row, queue->col);
    485  1.6  oster 						queue->queueLength++;
    486  1.6  oster 						(queue->qPtr->Enqueue) (queue->qHdr, req, req->priority);
    487  1.6  oster 						done = 1;
    488  1.6  oster 					}
    489  1.6  oster 	}
    490  1.6  oster 
    491  1.6  oster 	RF_UNLOCK_QUEUE_MUTEX(queue, "DiskIOComplete");
    492  1.1  oster }
    493  1.1  oster /* promotes accesses tagged with the given parityStripeID from low priority
    494  1.1  oster  * to normal priority.  This promotion is optional, meaning that a queue
    495  1.1  oster  * need not implement it.  If there is no promotion routine associated with
    496  1.1  oster  * a queue, this routine does nothing and returns -1.
    497  1.1  oster  */
    498  1.6  oster int
    499  1.6  oster rf_DiskIOPromote(queue, parityStripeID, which_ru)
    500  1.6  oster 	RF_DiskQueue_t *queue;
    501  1.6  oster 	RF_StripeNum_t parityStripeID;
    502  1.6  oster 	RF_ReconUnitNum_t which_ru;
    503  1.6  oster {
    504  1.6  oster 	int     retval;
    505  1.6  oster 
    506  1.6  oster 	if (!queue->qPtr->Promote)
    507  1.6  oster 		return (-1);
    508  1.6  oster 	RF_LOCK_QUEUE_MUTEX(queue, "DiskIOPromote");
    509  1.6  oster 	retval = (queue->qPtr->Promote) (queue->qHdr, parityStripeID, which_ru);
    510  1.6  oster 	RF_UNLOCK_QUEUE_MUTEX(queue, "DiskIOPromote");
    511  1.6  oster 	return (retval);
    512  1.6  oster }
    513  1.6  oster 
    514  1.6  oster RF_DiskQueueData_t *
    515  1.6  oster rf_CreateDiskQueueData(
    516  1.6  oster     RF_IoType_t typ,
    517  1.6  oster     RF_SectorNum_t ssect,
    518  1.6  oster     RF_SectorCount_t nsect,
    519  1.6  oster     caddr_t buf,
    520  1.6  oster     RF_StripeNum_t parityStripeID,
    521  1.6  oster     RF_ReconUnitNum_t which_ru,
    522  1.6  oster     int (*wakeF) (void *, int),
    523  1.6  oster     void *arg,
    524  1.6  oster     RF_DiskQueueData_t * next,
    525  1.6  oster     RF_AccTraceEntry_t * tracerec,
    526  1.6  oster     void *raidPtr,
    527  1.6  oster     RF_DiskQueueDataFlags_t flags,
    528  1.6  oster     void *kb_proc)
    529  1.6  oster {
    530  1.6  oster 	RF_DiskQueueData_t *p;
    531  1.6  oster 
    532  1.6  oster 	RF_FREELIST_GET_INIT(rf_dqd_freelist, p, next, (RF_DiskQueueData_t *), init_dqd);
    533  1.6  oster 
    534  1.6  oster 	p->sectorOffset = ssect + rf_protectedSectors;
    535  1.6  oster 	p->numSector = nsect;
    536  1.6  oster 	p->type = typ;
    537  1.6  oster 	p->buf = buf;
    538  1.6  oster 	p->parityStripeID = parityStripeID;
    539  1.6  oster 	p->which_ru = which_ru;
    540  1.6  oster 	p->CompleteFunc = wakeF;
    541  1.6  oster 	p->argument = arg;
    542  1.6  oster 	p->next = next;
    543  1.6  oster 	p->tracerec = tracerec;
    544  1.6  oster 	p->priority = RF_IO_NORMAL_PRIORITY;
    545  1.6  oster 	p->AuxFunc = NULL;
    546  1.6  oster 	p->buf2 = NULL;
    547  1.6  oster 	p->raidPtr = raidPtr;
    548  1.6  oster 	p->flags = flags;
    549  1.6  oster 	p->b_proc = kb_proc;
    550  1.6  oster 	return (p);
    551  1.6  oster }
    552  1.6  oster 
    553  1.6  oster RF_DiskQueueData_t *
    554  1.6  oster rf_CreateDiskQueueDataFull(
    555  1.6  oster     RF_IoType_t typ,
    556  1.6  oster     RF_SectorNum_t ssect,
    557  1.6  oster     RF_SectorCount_t nsect,
    558  1.6  oster     caddr_t buf,
    559  1.6  oster     RF_StripeNum_t parityStripeID,
    560  1.6  oster     RF_ReconUnitNum_t which_ru,
    561  1.6  oster     int (*wakeF) (void *, int),
    562  1.6  oster     void *arg,
    563  1.6  oster     RF_DiskQueueData_t * next,
    564  1.6  oster     RF_AccTraceEntry_t * tracerec,
    565  1.6  oster     int priority,
    566  1.6  oster     int (*AuxFunc) (void *,...),
    567  1.6  oster     caddr_t buf2,
    568  1.6  oster     void *raidPtr,
    569  1.6  oster     RF_DiskQueueDataFlags_t flags,
    570  1.6  oster     void *kb_proc)
    571  1.6  oster {
    572  1.6  oster 	RF_DiskQueueData_t *p;
    573  1.6  oster 
    574  1.6  oster 	RF_FREELIST_GET_INIT(rf_dqd_freelist, p, next, (RF_DiskQueueData_t *), init_dqd);
    575  1.6  oster 
    576  1.6  oster 	p->sectorOffset = ssect + rf_protectedSectors;
    577  1.6  oster 	p->numSector = nsect;
    578  1.6  oster 	p->type = typ;
    579  1.6  oster 	p->buf = buf;
    580  1.6  oster 	p->parityStripeID = parityStripeID;
    581  1.6  oster 	p->which_ru = which_ru;
    582  1.6  oster 	p->CompleteFunc = wakeF;
    583  1.6  oster 	p->argument = arg;
    584  1.6  oster 	p->next = next;
    585  1.6  oster 	p->tracerec = tracerec;
    586  1.6  oster 	p->priority = priority;
    587  1.6  oster 	p->AuxFunc = AuxFunc;
    588  1.6  oster 	p->buf2 = buf2;
    589  1.6  oster 	p->raidPtr = raidPtr;
    590  1.6  oster 	p->flags = flags;
    591  1.6  oster 	p->b_proc = kb_proc;
    592  1.6  oster 	return (p);
    593  1.6  oster }
    594  1.6  oster 
    595  1.6  oster void
    596  1.6  oster rf_FreeDiskQueueData(p)
    597  1.6  oster 	RF_DiskQueueData_t *p;
    598  1.1  oster {
    599  1.6  oster 	RF_FREELIST_FREE_CLEAN(rf_dqd_freelist, p, next, clean_dqd);
    600  1.1  oster }
    601