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gregl | 
3.1 | 
/* Copyright (c) 1997 Silicon Graphics, Inc. */ | 
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#ifndef lint | 
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static char SCCSid[] = "$SunId$ SGI"; | 
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#endif | 
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/* | 
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 * Routines for managing holodeck files | 
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 * | 
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 *      9/30/97 GWLarson | 
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 */ | 
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#include "holo.h" | 
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#ifndef CACHESIZE | 
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#define CACHESIZE       16      /* default cache size (Mbytes, 0==inf) */ | 
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#endif | 
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#ifndef FREEBEAMS | 
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gregl | 
3.5 | 
#define FREEBEAMS       512     /* maximum beams to free at a time */ | 
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gregl | 
3.1 | 
#endif | 
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#ifndef PCTFREE | 
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gregl | 
3.5 | 
#define PCTFREE         20      /* maximum fraction to free (%) */ | 
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gregl | 
3.1 | 
#endif | 
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gregl | 
3.7 | 
/* define MAXFRAG if you want to limit fragment tracking memory */ | 
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gregl | 
3.6 | 
#ifndef BSD | 
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#define write   writebuf        /* safe i/o routines */ | 
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#define read    readbuf | 
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#endif | 
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gregl | 
3.4 | 
 | 
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#define FRAGBLK         64      /* number of fragments to allocate at a time */ | 
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gregl | 
3.1 | 
int     hdcachesize = CACHESIZE*1024*1024;      /* target cache size (bytes) */ | 
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unsigned long   hdclock;        /* clock value */ | 
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| 37 | 
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HOLO    *hdlist[HDMAX+1];       /* holodeck pointers (NULL term.) */ | 
| 38 | 
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| 39 | 
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static struct fragment { | 
| 40 | 
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        short   nlinks;         /* number of holodeck sections using us */ | 
| 41 | 
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        short   nfrags;         /* number of known fragments */ | 
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gregl | 
3.4 | 
        BEAMI   *fi;            /* fragments, descending file position */ | 
| 43 | 
gregl | 
3.1 | 
        long    flen;           /* last known file length */ | 
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gregl | 
3.4 | 
} *hdfrag;              /* fragment lists, indexed by file descriptor */ | 
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gregl | 
3.1 | 
 | 
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gregl | 
3.4 | 
static int      nhdfrags;       /* size of hdfrag array */ | 
| 47 | 
gregl | 
3.1 | 
 | 
| 48 | 
gregl | 
3.4 | 
 | 
| 49 | 
gregl | 
3.1 | 
hdattach(fd)            /* start tracking file fragments for some section */ | 
| 50 | 
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register int    fd; | 
| 51 | 
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{ | 
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gregl | 
3.4 | 
        if (fd >= nhdfrags) { | 
| 53 | 
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                if (nhdfrags) | 
| 54 | 
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                        hdfrag = (struct fragment *)realloc((char *)hdfrag, | 
| 55 | 
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                                        (fd+1)*sizeof(struct fragment)); | 
| 56 | 
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                else | 
| 57 | 
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                        hdfrag = (struct fragment *)malloc( | 
| 58 | 
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                                        (fd+1)*sizeof(struct fragment)); | 
| 59 | 
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                if (hdfrag == NULL) | 
| 60 | 
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                        error(SYSTEM, "out of memory in hdattach"); | 
| 61 | 
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                bzero((char *)(hdfrag+nhdfrags), | 
| 62 | 
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                                (fd+1-nhdfrags)*sizeof(struct fragment)); | 
| 63 | 
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                nhdfrags = fd+1; | 
| 64 | 
gregl | 
3.1 | 
        } | 
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gregl | 
3.4 | 
        hdfrag[fd].nlinks++; | 
| 66 | 
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        hdfrag[fd].flen = lseek(fd, 0L, 2);     /* get file length */ | 
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gregl | 
3.1 | 
} | 
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| 70 | 
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/* Do we need a routine to locate file fragments given known occupants? */ | 
| 71 | 
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| 73 | 
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hdrelease(fd)           /* stop tracking file fragments for some section */ | 
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register int    fd; | 
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{ | 
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gregl | 
3.8 | 
        if (fd < 0 | fd >= nhdfrags || !hdfrag[fd].nlinks) | 
| 77 | 
gregl | 
3.1 | 
                return; | 
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gregl | 
3.4 | 
        if (!--hdfrag[fd].nlinks && hdfrag[fd].nfrags) { | 
| 79 | 
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                free((char *)hdfrag[fd].fi); | 
| 80 | 
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                hdfrag[fd].fi = NULL; | 
| 81 | 
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                hdfrag[fd].nfrags = 0; | 
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gregl | 
3.1 | 
        } | 
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} | 
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gregl | 
3.6 | 
markdirty(hp)                   /* mark holodeck section directory dirty */ | 
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register HOLO   *hp; | 
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{ | 
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        static BEAMI    smudge = {0, -1}; | 
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| 91 | 
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        if (hp->dirty)          /* already marked? */ | 
| 92 | 
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                return; | 
| 93 | 
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        hp->dirty = 1; | 
| 94 | 
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        if (lseek(hp->fd, biglob(hp)->fo+(nbeams(hp)-1)*sizeof(BEAMI), 0) < 0 | 
| 95 | 
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                        || write(hp->fd, (char *)&smudge, | 
| 96 | 
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                                        sizeof(BEAMI)) != sizeof(BEAMI)) | 
| 97 | 
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                error(SYSTEM, "seek/write error in markdirty"); | 
| 98 | 
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} | 
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gregl | 
3.1 | 
HOLO * | 
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hdinit(fd, hproto)      /* initialize a holodeck section in a file */ | 
| 103 | 
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int     fd;                     /* corresponding file descriptor */ | 
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HDGRID  *hproto;                /* holodeck section grid */ | 
| 105 | 
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{ | 
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        long    fpos; | 
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        register HOLO   *hp; | 
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        register int    n; | 
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                                        /* prepare for system errors */ | 
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        errno = 0; | 
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        if ((fpos = lseek(fd, 0L, 1)) < 0) | 
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                error(SYSTEM, "cannot determine holodeck file position"); | 
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        if (hproto == NULL) {           /* assume we're loading it */ | 
| 114 | 
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                HDGRID  hpr; | 
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                                                /* load header */ | 
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                if (read(fd, (char *)&hpr, sizeof(HDGRID)) != sizeof(HDGRID)) | 
| 117 | 
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                        error(SYSTEM, "cannot load holodeck header"); | 
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                                                /* allocate grid */ | 
| 119 | 
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                if ((hp = hdalloc(&hpr)) == NULL) | 
| 120 | 
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                        goto memerr; | 
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                                                /* load beam directory */ | 
| 122 | 
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                n = nbeams(hp)*sizeof(BEAMI); | 
| 123 | 
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                if (read(fd, (char *)(hp->bi+1), n) != n) | 
| 124 | 
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                        error(SYSTEM, "failure loading holodeck directory"); | 
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gregl | 
3.6 | 
                                                /* check that it's clean */ | 
| 126 | 
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                if (hp->bi[nbeams(hp)].fo < 0) | 
| 127 | 
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                        error(USER, "dirty holodeck section"); | 
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gregl | 
3.1 | 
        } else {                        /* assume we're creating it */ | 
| 129 | 
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                if ((hp = hdalloc(hproto)) == NULL) | 
| 130 | 
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                        goto memerr; | 
| 131 | 
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                                                /* write header and skeleton */ | 
| 132 | 
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                n = nbeams(hp)*sizeof(BEAMI); | 
| 133 | 
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                if (write(fd, (char *)hproto, sizeof(HDGRID)) != | 
| 134 | 
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                                        sizeof(HDGRID) || | 
| 135 | 
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                                write(fd, (char *)(hp->bi+1), n) != n) | 
| 136 | 
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                        error(SYSTEM, "cannot write header to holodeck file"); | 
| 137 | 
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        } | 
| 138 | 
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        hp->fd = fd;     | 
| 139 | 
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        hp->dirty = 0; | 
| 140 | 
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        biglob(hp)->fo = fpos + sizeof(HDGRID); | 
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        biglob(hp)->nrd = 0;            /* count rays on disk */ | 
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        for (n = nbeams(hp); n > 0; n--) | 
| 143 | 
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                biglob(hp)->nrd += hp->bi[n].nrd; | 
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                                        /* add to holodeck list */ | 
| 145 | 
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        for (n = 0; n < HDMAX; n++) | 
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                if (hdlist[n] == NULL) { | 
| 147 | 
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                        hdlist[n] = hp; | 
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                        break; | 
| 149 | 
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                } | 
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                                        /* start tracking fragments (last) */ | 
| 151 | 
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        hdattach(fd); | 
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                                        /* all done */ | 
| 153 | 
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        return(hp); | 
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memerr: | 
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        error(SYSTEM, "cannot allocate holodeck grid"); | 
| 156 | 
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} | 
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| 159 | 
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int | 
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hdsync(hp)                      /* update directory on disk if necessary */ | 
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register HOLO   *hp; | 
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{ | 
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        register int    j, n; | 
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| 165 | 
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        if (hp == NULL) {               /* do all */ | 
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                n = 0; | 
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                for (j = 0; hdlist[j] != NULL; j++) | 
| 168 | 
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                        n += hdsync(hdlist[j]); | 
| 169 | 
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                return(n); | 
| 170 | 
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        } | 
| 171 | 
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        if (!hp->dirty)                 /* check first */ | 
| 172 | 
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                return(0); | 
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gregl | 
3.3 | 
        errno = 0; | 
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gregl | 
3.1 | 
        if (lseek(hp->fd, biglob(hp)->fo, 0) < 0) | 
| 175 | 
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                error(SYSTEM, "cannot seek on holodeck file"); | 
| 176 | 
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        n = nbeams(hp)*sizeof(BEAMI); | 
| 177 | 
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        if (write(hp->fd, (char *)(hp->bi+1), n) != n) | 
| 178 | 
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                error(SYSTEM, "cannot update holodeck section directory"); | 
| 179 | 
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        hp->dirty = 0; | 
| 180 | 
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        return(1); | 
| 181 | 
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} | 
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| 184 | 
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long | 
| 185 | 
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hdmemuse(all)           /* return memory usage (in bytes) */ | 
| 186 | 
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int     all;                    /* include overhead (painful) */ | 
| 187 | 
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{ | 
| 188 | 
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        long    total = 0; | 
| 189 | 
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        register int    i, j; | 
| 190 | 
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| 191 | 
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        for (j = 0; hdlist[j] != NULL; j++) { | 
| 192 | 
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                total += blglob(hdlist[j])->nrm * sizeof(RAYVAL); | 
| 193 | 
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                if (all) { | 
| 194 | 
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                        total += sizeof(HOLO) + sizeof(BEAM *) + | 
| 195 | 
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                                        nbeams(hdlist[j]) * | 
| 196 | 
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                                                (sizeof(BEAM *)+sizeof(BEAMI)); | 
| 197 | 
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                        for (i = nbeams(hdlist[j]); i > 0; i--) | 
| 198 | 
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                                if (hdlist[j]->bl[i] != NULL) | 
| 199 | 
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                                        total += sizeof(BEAM); | 
| 200 | 
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                } | 
| 201 | 
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        } | 
| 202 | 
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        if (all) | 
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gregl | 
3.4 | 
                for (j = 0; j < nhdfrags; j++) { | 
| 204 | 
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                        total += sizeof(struct fragment); | 
| 205 | 
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                        if (hdfrag[j].nfrags) | 
| 206 | 
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                                total += FRAGBLK*sizeof(BEAMI) * | 
| 207 | 
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                                        ((hdfrag[j].nfrags-1)/FRAGBLK + 1) ; | 
| 208 | 
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                } | 
| 209 | 
gregl | 
3.1 | 
        return(total); | 
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gregl | 
3.8 | 
} | 
| 211 | 
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| 212 | 
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| 213 | 
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long | 
| 214 | 
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hdfilen(fd)             /* return file length for fd */ | 
| 215 | 
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int     fd; | 
| 216 | 
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{ | 
| 217 | 
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        long    fpos, flen; | 
| 218 | 
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| 219 | 
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        if (fd < 0) | 
| 220 | 
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                return(-1); | 
| 221 | 
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        if (fd >= nhdfrags || !hdfrag[fd].nlinks) { | 
| 222 | 
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                if ((fpos = lseek(fd, 0L, 1)) < 0) | 
| 223 | 
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                        return(-1); | 
| 224 | 
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                flen = lseek(fd, 0L, 2); | 
| 225 | 
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                lseek(fd, fpos, 0); | 
| 226 | 
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                return(flen); | 
| 227 | 
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        } | 
| 228 | 
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        return(hdfrag[fd].flen); | 
| 229 | 
gregl | 
3.1 | 
} | 
| 230 | 
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| 231 | 
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| 232 | 
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long | 
| 233 | 
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hdfiluse(fd, all)       /* compute file usage (in bytes) */ | 
| 234 | 
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int     fd;                     /* open file descriptor to check */ | 
| 235 | 
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int     all;                    /* include overhead and unflushed data */ | 
| 236 | 
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{ | 
| 237 | 
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        long    total = 0; | 
| 238 | 
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        register int    i, j; | 
| 239 | 
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| 240 | 
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        for (j = 0; hdlist[j] != NULL; j++) { | 
| 241 | 
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                if (hdlist[j]->fd != fd) | 
| 242 | 
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                        continue; | 
| 243 | 
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                total += biglob(hdlist[j])->nrd * sizeof(RAYVAL); | 
| 244 | 
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                if (all) { | 
| 245 | 
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                        for (i = nbeams(hdlist[j]); i > 0; i--) | 
| 246 | 
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                                if (hdlist[j]->bl[i] != NULL) | 
| 247 | 
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                                        total += sizeof(RAYVAL) * | 
| 248 | 
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                                                (hdlist[j]->bl[i]->nrm - | 
| 249 | 
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                                                hdlist[j]->bi[i].nrd); | 
| 250 | 
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                        total += sizeof(HDGRID) + | 
| 251 | 
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                                        nbeams(hdlist[j])*sizeof(BEAMI); | 
| 252 | 
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                } | 
| 253 | 
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        } | 
| 254 | 
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        return(total);          /* does not include fragments */ | 
| 255 | 
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} | 
| 256 | 
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| 257 | 
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| 258 | 
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RAYVAL * | 
| 259 | 
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hdnewrays(hp, i, nr)    /* allocate space for add'l rays and return pointer */ | 
| 260 | 
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register HOLO   *hp; | 
| 261 | 
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register int    i; | 
| 262 | 
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int     nr;                     /* number of new rays desired */ | 
| 263 | 
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{ | 
| 264 | 
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        RAYVAL  *p; | 
| 265 | 
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        int     n; | 
| 266 | 
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| 267 | 
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        if (nr <= 0) | 
| 268 | 
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                return(NULL); | 
| 269 | 
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        if (i < 1 | i > nbeams(hp)) | 
| 270 | 
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                error(CONSISTENCY, "bad beam index given to hdnewrays"); | 
| 271 | 
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        if (hp->bl[i] != NULL) | 
| 272 | 
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                hp->bl[i]->tick = hdclock;      /* preempt swap */ | 
| 273 | 
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        if (hdcachesize > 0 && hdmemuse(0) >= hdcachesize) | 
| 274 | 
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                hdfreecache(PCTFREE, NULL);     /* free some space */ | 
| 275 | 
gregl | 
3.3 | 
        errno = 0; | 
| 276 | 
gregl | 
3.1 | 
        if (hp->bl[i] == NULL) {                /* allocate (and load) */ | 
| 277 | 
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                n = hp->bi[i].nrd + nr; | 
| 278 | 
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  | 
                if ((hp->bl[i] = (BEAM *)malloc(hdbsiz(n))) == NULL) | 
| 279 | 
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  | 
                        goto memerr; | 
| 280 | 
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                blglob(hp)->nrm += n; | 
| 281 | 
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                if (n = hp->bl[i]->nrm = hp->bi[i].nrd) { | 
| 282 | 
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                        if (lseek(hp->fd, hp->bi[i].fo, 0) < 0) | 
| 283 | 
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                                error(SYSTEM, "seek error on holodeck file"); | 
| 284 | 
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                        n *= sizeof(RAYVAL); | 
| 285 | 
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  | 
                        if (read(hp->fd, (char *)hdbray(hp->bl[i]), n) != n) | 
| 286 | 
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                                error(SYSTEM, | 
| 287 | 
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  | 
                                "error reading beam from holodeck file"); | 
| 288 | 
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                } | 
| 289 | 
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        } else {                                /* just grow in memory */ | 
| 290 | 
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  | 
                hp->bl[i] = (BEAM *)realloc( (char *)hp->bl[i], | 
| 291 | 
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  | 
                                hdbsiz(hp->bl[i]->nrm + nr) ); | 
| 292 | 
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  | 
                if (hp->bl[i] == NULL) | 
| 293 | 
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                        goto memerr; | 
| 294 | 
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                blglob(hp)->nrm += nr; | 
| 295 | 
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  | 
        } | 
| 296 | 
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  | 
        p = hdbray(hp->bl[i]) + hp->bl[i]->nrm; | 
| 297 | 
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  | 
        hp->bl[i]->nrm += nr;                   /* update in-core structure */ | 
| 298 | 
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  | 
        bzero((char *)p, nr*sizeof(RAYVAL)); | 
| 299 | 
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        hp->bl[i]->tick = ++hdclock;            /* update LRU clock */ | 
| 300 | 
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        blglob(hp)->tick = hdclock; | 
| 301 | 
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        return(p);                              /* point to new rays */ | 
| 302 | 
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  | 
memerr: | 
| 303 | 
  | 
  | 
        error(SYSTEM, "out of memory in hdnewrays"); | 
| 304 | 
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} | 
| 305 | 
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| 306 | 
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| 307 | 
  | 
  | 
BEAM * | 
| 308 | 
  | 
  | 
hdgetbeam(hp, i)        /* get beam (from file if necessary) */ | 
| 309 | 
  | 
  | 
register HOLO   *hp; | 
| 310 | 
  | 
  | 
register int    i; | 
| 311 | 
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{ | 
| 312 | 
  | 
  | 
        register int    n; | 
| 313 | 
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 | 
| 314 | 
  | 
  | 
        if (i < 1 | i > nbeams(hp)) | 
| 315 | 
  | 
  | 
                error(CONSISTENCY, "bad beam index given to hdgetbeam"); | 
| 316 | 
  | 
  | 
        if (hp->bl[i] == NULL) {                /* load from disk */ | 
| 317 | 
  | 
  | 
                if (!(n = hp->bi[i].nrd)) | 
| 318 | 
  | 
  | 
                        return(NULL); | 
| 319 | 
  | 
  | 
                if (hdcachesize > 0 && hdmemuse(0) >= hdcachesize) | 
| 320 | 
  | 
  | 
                        hdfreecache(PCTFREE, NULL);     /* get free space */ | 
| 321 | 
  | 
  | 
                errno = 0; | 
| 322 | 
  | 
  | 
                if ((hp->bl[i] = (BEAM *)malloc(hdbsiz(n))) == NULL) | 
| 323 | 
  | 
  | 
                        error(SYSTEM, "cannot allocate memory for beam"); | 
| 324 | 
  | 
  | 
                blglob(hp)->nrm += hp->bl[i]->nrm = n; | 
| 325 | 
  | 
  | 
                if (lseek(hp->fd, hp->bi[i].fo, 0) < 0) | 
| 326 | 
  | 
  | 
                        error(SYSTEM, "seek error on holodeck file"); | 
| 327 | 
  | 
  | 
                n *= sizeof(RAYVAL); | 
| 328 | 
  | 
  | 
                if (read(hp->fd, (char *)hdbray(hp->bl[i]), n) != n) | 
| 329 | 
  | 
  | 
                        error(SYSTEM, "error reading beam from holodeck file"); | 
| 330 | 
  | 
  | 
        } | 
| 331 | 
  | 
  | 
        hp->bl[i]->tick = ++hdclock;    /* update LRU clock */ | 
| 332 | 
  | 
  | 
        blglob(hp)->tick = hdclock; | 
| 333 | 
  | 
  | 
        return(hp->bl[i]); | 
| 334 | 
  | 
  | 
} | 
| 335 | 
  | 
  | 
 | 
| 336 | 
  | 
  | 
 | 
| 337 | 
  | 
  | 
int | 
| 338 | 
gregl | 
3.11 | 
hdsyncbi(hp, i)                 /* sync beam in memory with beam on disk */ | 
| 339 | 
gregl | 
3.1 | 
register HOLO   *hp; | 
| 340 | 
  | 
  | 
register int    i; | 
| 341 | 
  | 
  | 
{ | 
| 342 | 
gregl | 
3.11 | 
        unsigned int    nrays = hp->bl[i]->nrm; | 
| 343 | 
  | 
  | 
        long    nfo; | 
| 344 | 
  | 
  | 
        unsigned int    n; | 
| 345 | 
  | 
  | 
                                        /* is current fragment OK? */ | 
| 346 | 
  | 
  | 
        if (nrays == hp->bi[i].nrd) | 
| 347 | 
gregl | 
3.1 | 
                return(0); | 
| 348 | 
gregl | 
3.11 | 
                                        /* check file status */ | 
| 349 | 
  | 
  | 
        if (hp->dirty < 0) | 
| 350 | 
  | 
  | 
                return(-1); | 
| 351 | 
gregl | 
3.1 | 
 | 
| 352 | 
gregl | 
3.4 | 
        if (hp->fd >= nhdfrags || !hdfrag[hp->fd].nlinks) /* untracked */ | 
| 353 | 
gregl | 
3.1 | 
                hp->bi[i].fo = lseek(hp->fd, 0L, 2); | 
| 354 | 
  | 
  | 
 | 
| 355 | 
  | 
  | 
        else if (hp->bi[i].fo + hp->bi[i].nrd*sizeof(RAYVAL) == | 
| 356 | 
gregl | 
3.4 | 
                        hdfrag[hp->fd].flen)            /* EOF special case */ | 
| 357 | 
gregl | 
3.11 | 
                hdfrag[hp->fd].flen = (nfo=hp->bi[i].fo) + nrays*sizeof(RAYVAL); | 
| 358 | 
gregl | 
3.1 | 
 | 
| 359 | 
  | 
  | 
        else {                                          /* general case */ | 
| 360 | 
gregl | 
3.4 | 
                register struct fragment        *f = &hdfrag[hp->fd]; | 
| 361 | 
gregl | 
3.1 | 
                register int    j, k; | 
| 362 | 
  | 
  | 
                                        /* relinquish old fragment */ | 
| 363 | 
gregl | 
3.2 | 
                if (hp->bi[i].nrd) { | 
| 364 | 
gregl | 
3.5 | 
                        j = f->nfrags++; | 
| 365 | 
gregl | 
3.4 | 
#ifdef MAXFRAG | 
| 366 | 
gregl | 
3.5 | 
                        if (j >= MAXFRAG-1) | 
| 367 | 
gregl | 
3.2 | 
                                f->nfrags--; | 
| 368 | 
gregl | 
3.4 | 
#endif | 
| 369 | 
gregl | 
3.5 | 
                        if (j % FRAGBLK == 0) {         /* more frag. space */ | 
| 370 | 
gregl | 
3.4 | 
                                if (f->fi == NULL) | 
| 371 | 
  | 
  | 
                                        f->fi = (BEAMI *)malloc( | 
| 372 | 
  | 
  | 
                                                        FRAGBLK*sizeof(BEAMI)); | 
| 373 | 
  | 
  | 
                                else | 
| 374 | 
  | 
  | 
                                        f->fi = (BEAMI *)realloc((char *)f->fi, | 
| 375 | 
gregl | 
3.5 | 
                                                (j+FRAGBLK)*sizeof(BEAMI)); | 
| 376 | 
gregl | 
3.4 | 
                                if (f->fi == NULL) | 
| 377 | 
  | 
  | 
                                        error(SYSTEM, | 
| 378 | 
gregl | 
3.11 | 
                                                "out of memory in hdsyncbi"); | 
| 379 | 
gregl | 
3.4 | 
                        } | 
| 380 | 
gregl | 
3.5 | 
                        for ( ; ; j--) {        /* insert in descending list */ | 
| 381 | 
  | 
  | 
                                if (!j || hp->bi[i].fo < f->fi[j-1].fo) { | 
| 382 | 
gregl | 
3.2 | 
                                        f->fi[j].fo = hp->bi[i].fo; | 
| 383 | 
  | 
  | 
                                        f->fi[j].nrd = hp->bi[i].nrd; | 
| 384 | 
  | 
  | 
                                        break; | 
| 385 | 
  | 
  | 
                                } | 
| 386 | 
  | 
  | 
                                copystruct(f->fi+j, f->fi+j-1); | 
| 387 | 
gregl | 
3.1 | 
                        } | 
| 388 | 
  | 
  | 
                                        /* coalesce adjacent fragments */ | 
| 389 | 
gregl | 
3.2 | 
                        for (j = k = 0; k < f->nfrags; j++, k++) { | 
| 390 | 
gregl | 
3.3 | 
                                if (k > j) | 
| 391 | 
gregl | 
3.2 | 
                                        copystruct(f->fi+j, f->fi+k); | 
| 392 | 
gregl | 
3.3 | 
                                while (k+1 < f->nfrags && f->fi[k+1].fo + | 
| 393 | 
  | 
  | 
                                                f->fi[k+1].nrd*sizeof(RAYVAL) | 
| 394 | 
  | 
  | 
                                                        == f->fi[j].fo) { | 
| 395 | 
gregl | 
3.2 | 
                                        f->fi[j].fo -= | 
| 396 | 
  | 
  | 
                                                f->fi[++k].nrd*sizeof(RAYVAL); | 
| 397 | 
gregl | 
3.3 | 
                                        f->fi[j].nrd += f->fi[k].nrd; | 
| 398 | 
  | 
  | 
                                } | 
| 399 | 
gregl | 
3.2 | 
                        } | 
| 400 | 
  | 
  | 
                        f->nfrags = j; | 
| 401 | 
gregl | 
3.1 | 
                } | 
| 402 | 
  | 
  | 
                k = -1;                 /* find closest-sized fragment */ | 
| 403 | 
gregl | 
3.11 | 
                for (j = nrays ? f->nfrags : 0; j-- > 0; ) | 
| 404 | 
gregl | 
3.1 | 
                        if (f->fi[j].nrd >= nrays && | 
| 405 | 
gregl | 
3.3 | 
                                        (k < 0 || f->fi[j].nrd < f->fi[k].nrd)) | 
| 406 | 
  | 
  | 
                                if (f->fi[k=j].nrd == nrays) | 
| 407 | 
  | 
  | 
                                        break; | 
| 408 | 
gregl | 
3.1 | 
                if (k < 0) {            /* no fragment -- extend file */ | 
| 409 | 
gregl | 
3.11 | 
                        nfo = f->flen; | 
| 410 | 
gregl | 
3.1 | 
                        f->flen += nrays*sizeof(RAYVAL); | 
| 411 | 
  | 
  | 
                } else {                /* else use fragment */ | 
| 412 | 
gregl | 
3.11 | 
                        nfo = f->fi[k].fo; | 
| 413 | 
gregl | 
3.1 | 
                        if (f->fi[k].nrd == nrays) {    /* delete fragment */ | 
| 414 | 
  | 
  | 
                                f->nfrags--; | 
| 415 | 
  | 
  | 
                                for (j = k; j < f->nfrags; j++) | 
| 416 | 
  | 
  | 
                                        copystruct(f->fi+j, f->fi+j+1); | 
| 417 | 
  | 
  | 
                        } else {                        /* else shrink it */ | 
| 418 | 
  | 
  | 
                                f->fi[k].fo += nrays*sizeof(RAYVAL); | 
| 419 | 
  | 
  | 
                                f->fi[k].nrd -= nrays; | 
| 420 | 
  | 
  | 
                        } | 
| 421 | 
  | 
  | 
                } | 
| 422 | 
  | 
  | 
        } | 
| 423 | 
gregl | 
3.11 | 
        if (nrays) {            /* write the new fragment */ | 
| 424 | 
  | 
  | 
                errno = 0; | 
| 425 | 
  | 
  | 
                if (lseek(hp->fd, nfo, 0) < 0) | 
| 426 | 
  | 
  | 
                        error(SYSTEM, "cannot seek on holodeck file"); | 
| 427 | 
  | 
  | 
                n = hp->bl[i]->nrm * sizeof(RAYVAL); | 
| 428 | 
  | 
  | 
                if (write(hp->fd, (char *)hdbray(hp->bl[i]), n) != n) { | 
| 429 | 
  | 
  | 
                        hp->dirty = -1;         /* avoid recursive error */ | 
| 430 | 
  | 
  | 
                        error(SYSTEM, "write error in hdsyncbi"); | 
| 431 | 
  | 
  | 
                } | 
| 432 | 
  | 
  | 
        } | 
| 433 | 
gregl | 
3.1 | 
        biglob(hp)->nrd += nrays - hp->bi[i].nrd; | 
| 434 | 
  | 
  | 
        hp->bi[i].nrd = nrays; | 
| 435 | 
gregl | 
3.11 | 
        hp->bi[i].fo = nfo; | 
| 436 | 
gregl | 
3.6 | 
        markdirty(hp);          /* section directory now out of date */ | 
| 437 | 
gregl | 
3.1 | 
        return(1); | 
| 438 | 
  | 
  | 
} | 
| 439 | 
  | 
  | 
 | 
| 440 | 
  | 
  | 
 | 
| 441 | 
  | 
  | 
int | 
| 442 | 
  | 
  | 
hdfreebeam(hp, i)               /* free beam, writing if dirty */ | 
| 443 | 
  | 
  | 
register HOLO   *hp; | 
| 444 | 
  | 
  | 
register int    i; | 
| 445 | 
  | 
  | 
{ | 
| 446 | 
gregl | 
3.11 | 
        int     nchanged; | 
| 447 | 
gregl | 
3.1 | 
 | 
| 448 | 
  | 
  | 
        if (hp == NULL) {               /* clear all holodecks */ | 
| 449 | 
  | 
  | 
                nchanged = 0; | 
| 450 | 
  | 
  | 
                for (i = 0; hdlist[i] != NULL; i++) | 
| 451 | 
  | 
  | 
                        nchanged += hdfreebeam(hdlist[i], 0); | 
| 452 | 
  | 
  | 
                return(nchanged); | 
| 453 | 
  | 
  | 
        } | 
| 454 | 
  | 
  | 
        if (i == 0) {                   /* clear entire holodeck */ | 
| 455 | 
  | 
  | 
                nchanged = 0; | 
| 456 | 
gregl | 
3.10 | 
                for (i = nbeams(hp); i > 0; i--) | 
| 457 | 
  | 
  | 
                        if (hp->bl[i] != NULL) | 
| 458 | 
  | 
  | 
                                nchanged += hdfreebeam(hp, i); | 
| 459 | 
gregl | 
3.1 | 
                return(nchanged); | 
| 460 | 
  | 
  | 
        } | 
| 461 | 
  | 
  | 
        if (i < 1 | i > nbeams(hp)) | 
| 462 | 
  | 
  | 
                error(CONSISTENCY, "bad beam index to hdfreebeam"); | 
| 463 | 
  | 
  | 
        if (hp->bl[i] == NULL) | 
| 464 | 
  | 
  | 
                return(0); | 
| 465 | 
  | 
  | 
                                        /* check for additions */ | 
| 466 | 
  | 
  | 
        nchanged = hp->bl[i]->nrm - hp->bi[i].nrd; | 
| 467 | 
gregl | 
3.11 | 
        if (nchanged) | 
| 468 | 
  | 
  | 
                hdsyncbi(hp, i);                        /* write new fragment */ | 
| 469 | 
gregl | 
3.1 | 
        blglob(hp)->nrm -= hp->bl[i]->nrm; | 
| 470 | 
  | 
  | 
        free((char *)hp->bl[i]);                /* free memory */ | 
| 471 | 
  | 
  | 
        hp->bl[i] = NULL; | 
| 472 | 
  | 
  | 
        return(nchanged); | 
| 473 | 
  | 
  | 
} | 
| 474 | 
  | 
  | 
 | 
| 475 | 
  | 
  | 
 | 
| 476 | 
gregl | 
3.10 | 
int | 
| 477 | 
  | 
  | 
hdkillbeam(hp, i)               /* delete beam from holodeck */ | 
| 478 | 
  | 
  | 
register HOLO   *hp; | 
| 479 | 
  | 
  | 
register int    i; | 
| 480 | 
  | 
  | 
{ | 
| 481 | 
  | 
  | 
        static BEAM     emptybeam; | 
| 482 | 
gregl | 
3.11 | 
        int     nchanged; | 
| 483 | 
gregl | 
3.10 | 
 | 
| 484 | 
  | 
  | 
        if (hp == NULL) {               /* clobber all holodecks */ | 
| 485 | 
  | 
  | 
                nchanged = 0; | 
| 486 | 
  | 
  | 
                for (i = 0; hdlist[i] != NULL; i++) | 
| 487 | 
  | 
  | 
                        nchanged += hdkillbeam(hdlist[i], 0); | 
| 488 | 
  | 
  | 
                return(nchanged); | 
| 489 | 
  | 
  | 
        } | 
| 490 | 
  | 
  | 
        if (i == 0) {                   /* clobber entire holodeck */ | 
| 491 | 
  | 
  | 
                nchanged = 0; | 
| 492 | 
  | 
  | 
                for (i = nbeams(hp); i > 0; i--) | 
| 493 | 
  | 
  | 
                        if (hp->bi[i].nrd > 0 || hp->bl[i] != NULL) | 
| 494 | 
  | 
  | 
                                nchanged += hdkillbeam(hp, i); | 
| 495 | 
  | 
  | 
#ifdef DEBUG | 
| 496 | 
  | 
  | 
                if (biglob(hp)->nrd != 0 | blglob(hp)->nrm != 0) | 
| 497 | 
  | 
  | 
                        error(CONSISTENCY, "bad beam count in hdkillbeam"); | 
| 498 | 
  | 
  | 
#endif | 
| 499 | 
  | 
  | 
                return(nchanged); | 
| 500 | 
  | 
  | 
        } | 
| 501 | 
  | 
  | 
        if (i < 1 | i > nbeams(hp)) | 
| 502 | 
  | 
  | 
                error(CONSISTENCY, "bad beam index to hdkillbeam"); | 
| 503 | 
  | 
  | 
        if (hp->bl[i] != NULL) {        /* free memory */ | 
| 504 | 
  | 
  | 
                blglob(hp)->nrm -= nchanged = hp->bl[i]->nrm; | 
| 505 | 
  | 
  | 
                free((char *)hp->bl[i]); | 
| 506 | 
  | 
  | 
        } else | 
| 507 | 
  | 
  | 
                nchanged = hp->bi[i].nrd; | 
| 508 | 
  | 
  | 
        if (hp->bi[i].nrd) {            /* free file fragment */ | 
| 509 | 
  | 
  | 
                hp->bl[i] = &emptybeam; | 
| 510 | 
gregl | 
3.11 | 
                hdsyncbi(hp, i); | 
| 511 | 
gregl | 
3.10 | 
        } | 
| 512 | 
  | 
  | 
        hp->bl[i] = NULL; | 
| 513 | 
  | 
  | 
        return(nchanged); | 
| 514 | 
  | 
  | 
} | 
| 515 | 
  | 
  | 
 | 
| 516 | 
  | 
  | 
 | 
| 517 | 
gregl | 
3.1 | 
hdlrulist(ha, ba, n, hp)        /* add beams from holodeck to LRU list */ | 
| 518 | 
  | 
  | 
register HOLO   *ha[];                  /* section list (NULL terminated) */ | 
| 519 | 
  | 
  | 
register int    ba[];                   /* beam index to go with section */ | 
| 520 | 
  | 
  | 
int     n;                              /* length of arrays minus 1 */ | 
| 521 | 
  | 
  | 
register HOLO   *hp;                    /* section we're adding from */ | 
| 522 | 
  | 
  | 
{ | 
| 523 | 
  | 
  | 
        register int    i, j; | 
| 524 | 
  | 
  | 
        int     nents; | 
| 525 | 
  | 
  | 
                                        /* find last entry in LRU list */ | 
| 526 | 
  | 
  | 
        for (j = 0; ha[j] != NULL; j++) | 
| 527 | 
  | 
  | 
                ; | 
| 528 | 
  | 
  | 
        nents = j; | 
| 529 | 
  | 
  | 
                                        /* insert each beam from hp */ | 
| 530 | 
gregl | 
3.10 | 
        for (i = nbeams(hp); i > 0; i--) { | 
| 531 | 
gregl | 
3.1 | 
                if (hp->bl[i] == NULL)          /* check if loaded */ | 
| 532 | 
  | 
  | 
                        continue; | 
| 533 | 
  | 
  | 
                if ((j = ++nents) > n)          /* grow list if we can */ | 
| 534 | 
  | 
  | 
                        nents--; | 
| 535 | 
  | 
  | 
                for ( ; ; ) {                   /* bubble into place */ | 
| 536 | 
  | 
  | 
                        if (!--j || hp->bl[i]->tick >= | 
| 537 | 
  | 
  | 
                                        ha[j-1]->bl[ba[j-1]]->tick) { | 
| 538 | 
  | 
  | 
                                ha[j] = hp; | 
| 539 | 
  | 
  | 
                                ba[j] = i; | 
| 540 | 
  | 
  | 
                                break; | 
| 541 | 
  | 
  | 
                        } | 
| 542 | 
  | 
  | 
                        ha[j] = ha[j-1]; | 
| 543 | 
  | 
  | 
                        ba[j] = ba[j-1]; | 
| 544 | 
  | 
  | 
                } | 
| 545 | 
  | 
  | 
        } | 
| 546 | 
  | 
  | 
        ha[nents] = NULL;               /* all done */ | 
| 547 | 
  | 
  | 
        ba[nents] = 0; | 
| 548 | 
  | 
  | 
} | 
| 549 | 
  | 
  | 
 | 
| 550 | 
  | 
  | 
 | 
| 551 | 
  | 
  | 
hdfreecache(pct, honly)         /* free up cache space, writing changes */ | 
| 552 | 
  | 
  | 
int     pct;                            /* maximum percentage to free */ | 
| 553 | 
  | 
  | 
register HOLO   *honly;                 /* NULL means check all */ | 
| 554 | 
  | 
  | 
{ | 
| 555 | 
  | 
  | 
        HOLO    *hp[FREEBEAMS+1]; | 
| 556 | 
  | 
  | 
        int     bn[FREEBEAMS+1]; | 
| 557 | 
  | 
  | 
        int     freetarget; | 
| 558 | 
  | 
  | 
        register int    i; | 
| 559 | 
  | 
  | 
                                                /* compute free target */ | 
| 560 | 
  | 
  | 
        freetarget = (honly != NULL) ? blglob(honly)->nrm : | 
| 561 | 
  | 
  | 
                        hdmemuse(0)/sizeof(RAYVAL) ; | 
| 562 | 
  | 
  | 
        freetarget = freetarget*pct/100; | 
| 563 | 
  | 
  | 
                                                /* find least recently used */ | 
| 564 | 
  | 
  | 
        hp[0] = NULL; | 
| 565 | 
  | 
  | 
        bn[0] = 0; | 
| 566 | 
  | 
  | 
        if (honly != NULL) | 
| 567 | 
  | 
  | 
                hdlrulist(hp, bn, FREEBEAMS, honly); | 
| 568 | 
  | 
  | 
        else | 
| 569 | 
  | 
  | 
                for (i = 0; hdlist[i] != NULL; i++) | 
| 570 | 
  | 
  | 
                        hdlrulist(hp, bn, FREEBEAMS, hdlist[i]); | 
| 571 | 
  | 
  | 
                                                /* free LRU beams */ | 
| 572 | 
  | 
  | 
        for (i = 0; hp[i] != NULL; i++) { | 
| 573 | 
  | 
  | 
                hdfreebeam(hp[i], bn[i]); | 
| 574 | 
  | 
  | 
                if ((freetarget -= hp[i]->bi[bn[i]].nrd) <= 0) | 
| 575 | 
  | 
  | 
                        break; | 
| 576 | 
  | 
  | 
        } | 
| 577 | 
  | 
  | 
        hdsync(honly);          /* synchronize directories as necessary */ | 
| 578 | 
  | 
  | 
} | 
| 579 | 
  | 
  | 
 | 
| 580 | 
  | 
  | 
 | 
| 581 | 
  | 
  | 
hddone(hp)              /* clean up holodeck section and free */ | 
| 582 | 
  | 
  | 
register HOLO   *hp;            /* NULL means clean up all */ | 
| 583 | 
  | 
  | 
{ | 
| 584 | 
  | 
  | 
        register int    i; | 
| 585 | 
  | 
  | 
 | 
| 586 | 
  | 
  | 
        if (hp == NULL) {               /* NULL means clean up everything */ | 
| 587 | 
  | 
  | 
                while (hdlist[0] != NULL) | 
| 588 | 
  | 
  | 
                        hddone(hdlist[0]); | 
| 589 | 
  | 
  | 
                return; | 
| 590 | 
  | 
  | 
        } | 
| 591 | 
  | 
  | 
                                        /* flush all data and free memory */ | 
| 592 | 
  | 
  | 
        hdflush(hp); | 
| 593 | 
  | 
  | 
                                        /* release fragment resources */ | 
| 594 | 
  | 
  | 
        hdrelease(hp->fd); | 
| 595 | 
  | 
  | 
                                        /* remove hp from active list */ | 
| 596 | 
  | 
  | 
        for (i = 0; hdlist[i] != NULL; i++) | 
| 597 | 
  | 
  | 
                if (hdlist[i] == hp) { | 
| 598 | 
  | 
  | 
                        while ((hdlist[i] = hdlist[i+1]) != NULL) | 
| 599 | 
  | 
  | 
                                i++; | 
| 600 | 
  | 
  | 
                        break; | 
| 601 | 
  | 
  | 
                } | 
| 602 | 
  | 
  | 
        free((char *)hp->bl);           /* free beam list */ | 
| 603 | 
  | 
  | 
        free((char *)hp);               /* free holodeck struct */ | 
| 604 | 
  | 
  | 
} |