MEGABYTE
#define GIGABYTE (KILOBYTE * MEGABYTE)
mult = MEGABYTE;
mult = MEGABYTE;
#define GIGABYTE (KILOBYTE * MEGABYTE)
else if ((pagesize % MEGABYTE) == 0)
pagesize / MEGABYTE);
size = mbytes * MEGABYTE + bytes;
size = mbytes * MEGABYTE + bytes;
size = mbytes * MEGABYTE + bytes;
pages = (increment - DB_VMPAGESIZE) / MEGABYTE;
relative = (increment - DB_VMPAGESIZE) % MEGABYTE;
MEGABYTE, pages, relative, 0, SEEK_CUR)) != 0)
pages = increment / MEGABYTE;
relative = increment % MEGABYTE;
MEGABYTE, pages, relative, 1, SEEK_END)) != 0)
#define DEFAULT_MAX (10 * MEGABYTE) /* 10 Mb. */
if ((lp->stat.st_w_bytes += len) >= MEGABYTE) {
lp->stat.st_w_bytes -= MEGABYTE;
if ((lp->stat.st_wc_bytes += len) >= MEGABYTE) {
lp->stat.st_wc_bytes -= MEGABYTE;
last_pgno = mbytes * (MEGABYTE / pagesize);
if (mbytes > maxmap / MEGABYTE ||
(mbytes == maxmap / MEGABYTE && bytes >= maxmap % MEGABYTE))
dbmfp->len = (size_t)mbytes * MEGABYTE + bytes;
*mbytesp = sb.st_size / MEGABYTE;
*bytesp = sb.st_size % MEGABYTE;
#define DEFAULT_INPUT_SIZE (1 * MEGABYTE)
#define DEFAULT_RELEASE_SIZE (MEGABYTE / 2)
AV_MEM_DIVISOR, 16 * MEGABYTE));
size_t chunksize = 2 * MEGABYTE;
{ "mM", MEGABYTE },
#define GIGABYTE (1024 * MEGABYTE)