TABSIZE
char table[TABSIZE]; /* Eratosthenes sieve of odd numbers */
fact_lim + pattern_size <= TABSIZE;
memcpy(&table[fact_lim], pattern, TABSIZE-fact_lim);
if (stop-start > TABSIZE+TABSIZE) {
tab_lim = &table[TABSIZE]; /* sieve it all */
fact_lim = usqrt(start + TABSIZE + TABSIZE + 1);
fact_lim+pattern_size<=TABSIZE; fact_lim+=pattern_size) {
memcpy(&table[fact_lim], pattern, TABSIZE-fact_lim);
if (stop-start > TABSIZE+TABSIZE) {
tab_lim = &table[TABSIZE]; /* sieve it all */
(double)(start)+TABSIZE+TABSIZE+1.0);
char table[TABSIZE]; /* Eratosthenes sieve of odd numbers */
tabsize = TABSIZE;
TABSIZE
NCURSES_WRAPPED_VAR(int, TABSIZE);
#define TABSIZE NCURSES_PUBLIC_VAR(TABSIZE())
extern NCURSES_EXPORT_VAR(int) TABSIZE;
#define ptrTabsize(sp) &TABSIZE
#define SET_TABSIZE(value) TABSIZE = value
NCURSES_PUBLIC_VAR(TABSIZE) (void)
NCURSES_EXPORT_VAR(int) TABSIZE = 8;
TABSIZE = value;
TABSIZE = my_tabsize;
TABSIZE = my_tabsize;
T(("TABSIZE = %d", TABSIZE));
tabsize = TABSIZE;
#define MAX_SPC_DESC ((TABSIZE) ? (TABSIZE) : 8)
#define MAX_SPC_COLS ((TABSIZE) ? (TABSIZE) : 8)
len += TABSIZE - 1;
tabs = (TABSTOP - len + TABSIZE - 1)/TABSIZE;
#define TABSTOP (TABSIZE*TABCOUNT)
cnt = 8 - (i % TABSIZE);
cnt = 8 - (i % TABSIZE);