MAXBSIZE
while ((rcount = read(from_fd, buf, MAXBSIZE)) > 0) {
static char buf[MAXBSIZE];
buflen = sizeof(u_char) * MAXBSIZE;
static char buffer[MAXBSIZE];
if (fs->fs_magic != FS_MAGIC || fs->fs_bsize > MAXBSIZE ||
if (fs->fs_magic != FS_MAGIC || fs->fs_bsize > MAXBSIZE ||
char buf[MAXBSIZE];
struct ufs1_dinode ibuf[MAXBSIZE / sizeof (struct ufs1_dinode)];
if ((BlockSize = sblock->fs_bsize * BLKFACTOR) > MAXBSIZE)
BlockSize = MAXBSIZE;
#define MAXINOPB (MAXBSIZE / sizeof(struct ufs1_dinode))
#define MAXNINDIR (MAXBSIZE / sizeof(daddr_t))
char sblock_buf[MAXBSIZE];
char dblk[MAXBSIZE];
char pad[MAXBSIZE];
char pad[MAXBSIZE];
char pad[MAXBSIZE];
static char ablk[MAXBSIZE];
static char i1blk[MAXBSIZE];
static char i2blk[MAXBSIZE];
static char i3blk[MAXBSIZE];
char buf[MAXBSIZE];
static struct ufs1_dinode zino[MAXBSIZE/sizeof(struct ufs1_dinode)]; /* some inodes */
char pad[MAXBSIZE];
static char ablk[MAXBSIZE]; /* a block */
static char i1blk[MAXBSIZE]; /* some indirect blocks */
static char i2blk[MAXBSIZE];
static char i3blk[MAXBSIZE];
char pad[MAXBSIZE];
struct ufs1_dinode zino[MAXBSIZE / sizeof(struct ufs1_dinode)];
if (sblock.fs_bsize < MAXBSIZE) {
#define MAXINOPB (MAXBSIZE / sizeof(struct ufs1_dinode))
char buf[MAXBSIZE];
char dummy[MAXBSIZE];
if (stbuf.st_blksize >= TP_BSIZE && stbuf.st_blksize <= MAXBSIZE)
static long fssize = MAXBSIZE;
static char clearedbuf[MAXBSIZE];
char buf[MAXBSIZE / TP_BSIZE][TP_BSIZE];
char pad[MAXBSIZE];
fs->fs_bsize <= MAXBSIZE &&
fs->fs_bsize > MAXBSIZE || fs->fs_bsize < sizeof(struct fs)) {
/*maxsize*/MAXBSIZE, /*nsegments*/ADW_SGSIZE,
/*maxsize*/MAXBSIZE, /*nsegments*/AMD_NSEG,
/* maxsize */ MAXBSIZE,
/*maxsize*/ MAXBSIZE,
MAXBSIZE, VGE_NSEG_NEW, /* maxsize, nsegments */
MAXBSIZE, /* maxsize */
MAXBSIZE, /* maxsegsize */
MAXBSIZE, AMR_NSEG, /* maxsize, nsegments */
MAXBSIZE, AMR_NSEG, /* maxsize, nsegments */
MAXBSIZE, /* maxsegsize */
MAXBSIZE, AMR_NSEG, /* maxsize, nsegments */
MAXBSIZE, /* maxsegsize */
MAXBSIZE, CISS_MAX_SG_ELEMENTS, /* maxsize, nsegments */
/*maxsize*/MAXBSIZE, /*nsegments*/dpt->sgsize,
/*maxsize*/MAXBSIZE, /*nsegments*/IDA_NSEG,
/*maxsize*/MAXBSIZE, /*nsegments*/IDA_NSEG,
/*maxsize*/MAXBSIZE, /*nsegments*/GDT_MAXSG,
MAXBSIZE, MLX_NSEG, /* maxsize, nsegments */
MAXBSIZE, MLX_NSEG, /* maxsize, nsegments */
MAXBSIZE, MLY_MAX_SGENTRIES, /* maxsize, nsegments */
MAXBSIZE, MLY_MAX_SGENTRIES, /* maxsize, nsegments */
if (tr->tr_length > MAXBSIZE)
MAXBSIZE, TWE_MAX_SGL_LENGTH, /* maxsize, nsegments */
MAXBSIZE, TWE_MAX_SGL_LENGTH,/* maxsize, nsegments */
MAXBSIZE, 1, /* maxsize, nsegments */
int len = umin(length, MAXBSIZE); /* maximum block device transfer is MAXBSIZE */
entsz > MAXBSIZE / entries ||
aiov.iov_len = MAXBSIZE;
auio.uio_resid = MAXBSIZE;
IO_VMIO | ((MAXBSIZE / bsize) << 16),
if (size > MAXBSIZE)
panic("getblk: size(%d) > MAXBSIZE(%d)", size, MAXBSIZE);
count = totalspace / MAXBSIZE;
if (totalspace > MAXBSIZE * BD_WAKE_SIZE)
totalspace = MAXBSIZE * BD_WAKE_SIZE;
totalspace -= MAXBSIZE;
MAXBSIZE * n);
bp->b_kvasize = MAXBSIZE;
hibufspace = lmax(3 * maxbufspace / 4, maxbufspace - MAXBSIZE * 10);
if (lobufspace > hibufspace - MAXBSIZE)
lobufspace = hibufspace - MAXBSIZE;
tmpseq += howmany(uio->uio_resid, MAXBSIZE);
chunk = MAXBSIZE - (uoff_t)offset % MAXBSIZE;
virtual2_end - virtual2_start) / (MAXBSIZE * 2)) {
virtual2_end - virtual2_start) / (MAXBSIZE * 2);
((vm_offset_t)(nbuf + 16) * MAXBSIZE) +
((vm_offset_t)(nbuf + 16) * MAXBSIZE));
if (nbuf > (virtual_end - virtual_start) / (MAXBSIZE * 4)) {
nbuf = (virtual_end - virtual_start) / (MAXBSIZE * 4);
(nbuf * MAXBSIZE * 2) +
(nbuf * MAXBSIZE * 2));
*ap->a_runp = MAXBSIZE;
if (ap->a_loffset < MAXBSIZE)
*ap->a_runb = MAXBSIZE;
tmpseq += howmany(uio->uio_resid, MAXBSIZE);
MAXBSIZE, (size_t)seqcount, &nbp);
(ap->a_ioflag >> IO_SEQSHIFT) * MAXBSIZE, &bp);
seqcount * MAXBSIZE,
*ap->a_runp = MAXBSIZE - (ap->a_loffset & (MAXBSIZE - 1));
*ap->a_runb = ap->a_loffset & (MAXBSIZE - 1);
#if HAMMER_CLUSTER_SIZE > MAXBSIZE
#define HAMMER_CLUSTER_SIZE MAXBSIZE
seqcount = howmany(uio->uio_resid, MAXBSIZE);
seqcount * MAXBSIZE,
KKASSERT(lblksize <= MAXBSIZE);
seqcount * MAXBSIZE,
else if (nbytes > MAXBSIZE)
*ap->a_runp = MAXBSIZE;
if (logical_block_size < DEV_BSIZE || logical_block_size > MAXBSIZE
MAXBSIZE,
SecPerClust * pmp->pm_BlkPerSec > MAXBSIZE / DEV_BSIZE) {
seqcount * MAXBSIZE, &bp);
seqcount = (int)((off_t)(ioflag >> IO_SEQSHIFT) * biosize / MAXBSIZE);
if (nmp->nm_wsize > MAXBSIZE)
nmp->nm_wsize = MAXBSIZE;
if (nmp->nm_rsize > MAXBSIZE)
nmp->nm_rsize = MAXBSIZE;
MAXBSIZE - off));
mp->mnt_iosize_max = MAXBSIZE;
*ap->a_runp = MAXBSIZE - (ap->a_loffset & (MAXBSIZE - 1));
*ap->a_runb = ap->a_loffset & (MAXBSIZE - 1);
seqcount * MAXBSIZE,
*size = min(*size, MAXBSIZE);
seqcount * MAXBSIZE,
bsize, seqcount * MAXBSIZE, &bp);
if (newfs->fs_magic != FS_MAGIC || newfs->fs_bsize > MAXBSIZE ||
if (fs->fs_magic != FS_MAGIC || fs->fs_bsize > MAXBSIZE ||
if((bfr = (char *)malloc(MAXBSIZE)) == NULL)
while (fgets(bfr, MAXBSIZE, infp) != NULL) {
u_char buf[MAXBSIZE];
while ((len = read(fd, buf, MAXBSIZE))) {
while ((len = read(fd, buf, MAXBSIZE)) != 0) {
char buf[MAXBSIZE];
char buf1[MAXBSIZE];
char buf2[MAXBSIZE];
seqcount * MAXBSIZE,
KKASSERT(lblksize <= MAXBSIZE);
pmp->pm_fatblocksize = MAXBSIZE;
static char buf[MAXBSIZE];
while ((rcount = read(from_fd, buf, MAXBSIZE)) > 0) {