split
x.split = 0; /* XXX gcc */
short split; /* split "$@" / call waitlast $() */
if (quote && x.split)
if (quote && !x.split)
if (quote && x.split) {
if (x.split)
xp->split = c == '@'; /* $@ */
xp->split = p[1] == '@'; /* ${foo[@]} */
xp->split = 0; /* no waitlast() */
xp->split = 1; /* waitlast() */
static const double split = 0x1p27 + 1.0;
p = a * split;
p = b * split;
static const long double split = 0x1p32L + 1.0;
static const long double split = 0x1p57L + 1.0;
p = a * split;
p = b * split;
nfields = split(buf, fields, sizeof(fields) / sizeof(fields[0]),
static size_t split(char *, const char *[], size_t, char *, size_t);
split(linebuf, name);
split(linebuf, name);
split(linebuf, name);
static void split(char *, char *);
int h, v, split, horzval, lineval;
split = reg & TX3912_VIDEOCTRL1_DISPSPLIT;
if ((val == TX3912_VIDEOCTRL1_BITSEL_8BITCOLOR) && !split) {
lineval = (split ? v / 2 : v) - 1;
Boolean split, /* TSB Register[12] */
(split? (TSBsize + 1) : TSBsize);
if (split) {
*retbuf = split(strings, len, num);
msg->u.watch.vec = split(body, msg->hdr.len,
split(bktr, (volatile u_int **) &dma_prog,
split(bktr, (volatile u_int **) &dma_prog,
split(bktr,(volatile u_int **) &dma_prog,
split(bktr, (volatile u_int **) &dma_prog,
split(bktr, (volatile u_int **) &dma_prog,
split(bktr, (volatile u_int **) &dma_prog,
split(bktr, (volatile u_int **) &dma_prog,
split(bktr, (volatile u_int **) &dma_prog,
split(bktr,(volatile u_int **) &dma_prog,
split(bktr, (volatile u_int **) &dma_prog,
split(bktr, (volatile u_int **) &dma_prog,
split(bktr, (volatile u_int **) &dma_prog,
static bool_t split(bktr_reg_t *, volatile u_int **, int, u_int, int,
nf = split(inbuf, f, MAXF, "\t\t");
nshould = split(f4, &should[1], NSHOULD-1, ",");
(void) split(buf, fields, MNF, argv[2]);
nf = split(string, fields, NF, seps);
nf = split(buf, fields, RNF, tests[n].seps);
int split(char *string, char *fields[], int nfields, const char *sep);
unsigned char pkt[], size_t pktsize, size_t split)
args.pkt = init_mchain2(&mb1, &mb2, pkt, pktsize, split);
unsigned char pkt[], size_t pktsize, size_t split)
args.pkt = init_mchain2(&mb1, &mb2, pkt, pktsize, split);
unsigned char pkt[], size_t pktsize, size_t split)
mb1->m_next = (split < pktsize) ? mb2 : NULL;
mb1->m_len = (split < pktsize) ? split : pktsize;
if (split < pktsize) {
mb2->m_data = (char *)&pkt[split];
mb2->m_len = pktsize - split;
return interp_prog_mchain2(insns, P, sizeof(P), split) == res;
test_ldw_abs(size_t split)
return interp_prog_mchain2(insns, P, sizeof(P), split) == res;
test_ldb_ind(size_t split)
return interp_prog_mchain2(insns, P, sizeof(P), split) == res;
test_ldw_ind(size_t split)
return interp_prog_mchain2(insns, P, sizeof(P), split) == res;
test_ldh_ind(size_t split)
return interp_prog_mchain2(insns, P, sizeof(P), split) == res;
test_msh(size_t split)
return interp_prog_mchain2(insns, P, sizeof(P), split) == res;
test_ldb_abs_overflow(size_t split)
return interp_prog_mchain2(insns, P, sizeof(P), split) == 0;
test_ldh_abs_overflow(size_t split)
return interp_prog_mchain2(insns, P, sizeof(P), split) == 0;
test_ldw_abs_overflow(size_t split)
return interp_prog_mchain2(insns, P, sizeof(P), split) == 0;
test_ldb_ind_overflow1(size_t split)
return interp_prog_mchain2(insns, P, sizeof(P), split) == 0;
test_ldb_ind_overflow2(size_t split)
return interp_prog_mchain2(insns, P, sizeof(P), split) == 0;
test_ldb_ind_overflow3(size_t split)
return interp_prog_mchain2(insns, P, sizeof(P), split) == 0;
test_ldh_ind_overflow1(size_t split)
return interp_prog_mchain2(insns, P, sizeof(P), split) == 0;
test_ldh_ind_overflow2(size_t split)
return interp_prog_mchain2(insns, P, sizeof(P), split) == 0;
test_ldh_ind_overflow3(size_t split)
return interp_prog_mchain2(insns, P, sizeof(P), split) == 0;
test_ldw_ind_overflow1(size_t split)
return interp_prog_mchain2(insns, P, sizeof(P), split) == 0;
test_ldw_ind_overflow2(size_t split)
return interp_prog_mchain2(insns, P, sizeof(P), split) == 0;
test_ldw_ind_overflow3(size_t split)
return interp_prog_mchain2(insns, P, sizeof(P), split) == 0;
test_msh_overflow(size_t split)
return interp_prog_mchain2(insns, P, sizeof(P), split) == 0;
test_ldb_abs(size_t split)
return interp_prog_mchain2(insns, P, sizeof(P), split) == res;
test_ldh_abs(size_t split)
return exec_prog_mchain2(insns, insn_count, P, sizeof(P), split) == res;
test_ldw_abs(size_t split)
return exec_prog_mchain2(insns, insn_count, P, sizeof(P), split) == res;
test_ldb_ind(size_t split)
return exec_prog_mchain2(insns, insn_count, P, sizeof(P), split) == res;
test_ldw_ind(size_t split)
return exec_prog_mchain2(insns, insn_count, P, sizeof(P), split) == res;
test_ldh_ind(size_t split)
return exec_prog_mchain2(insns, insn_count, P, sizeof(P), split) == res;
test_msh(size_t split)
return exec_prog_mchain2(insns, insn_count, P, sizeof(P), split) == res;
test_ldb_abs_overflow(size_t split)
return exec_prog_mchain2(insns, insn_count, P, sizeof(P), split) == 0;
test_ldh_abs_overflow(size_t split)
return exec_prog_mchain2(insns, insn_count, P, sizeof(P), split) == 0;
test_ldw_abs_overflow(size_t split)
return exec_prog_mchain2(insns, insn_count, P, sizeof(P), split) == 0;
test_ldb_ind_overflow1(size_t split)
return exec_prog_mchain2(insns, insn_count, P, sizeof(P), split) == 0;
test_ldb_ind_overflow2(size_t split)
return exec_prog_mchain2(insns, insn_count, P, sizeof(P), split) == 0;
test_ldb_ind_overflow3(size_t split)
return exec_prog_mchain2(insns, insn_count, P, sizeof(P), split) == 0;
test_ldh_ind_overflow1(size_t split)
return exec_prog_mchain2(insns, insn_count, P, sizeof(P), split) == 0;
test_ldh_ind_overflow2(size_t split)
return exec_prog_mchain2(insns, insn_count, P, sizeof(P), split) == 0;
test_ldh_ind_overflow3(size_t split)
return exec_prog_mchain2(insns, insn_count, P, sizeof(P), split) == 0;
test_ldw_ind_overflow1(size_t split)
return exec_prog_mchain2(insns, insn_count, P, sizeof(P), split) == 0;
test_ldw_ind_overflow2(size_t split)
return exec_prog_mchain2(insns, insn_count, P, sizeof(P), split) == 0;
test_ldw_ind_overflow3(size_t split)
return exec_prog_mchain2(insns, insn_count, P, sizeof(P), split) == 0;
test_msh_overflow(size_t split)
return exec_prog_mchain2(insns, insn_count, P, sizeof(P), split) == 0;
test_ldb_abs(size_t split)
return exec_prog_mchain2(insns, insn_count, P, sizeof(P), split) == res;
test_ldh_abs(size_t split)
if (split(cp, l, buf, sizeof buf, &unit)) {
if (split(at, strlen(at), atbuf, sizeof atbuf, atunit)) {
if (split(name, strlen(name), base, sizeof base, &unit)) {
if (split(at, l+1, base, sizeof base, &unit)) {
if (split(name, strlen(name), buf, sizeof(buf), &unit)) {
if (split(name, strlen(name), base, sizeof base, &unit)) {
static int split(const char *, size_t, char *, size_t, int *);
split(cp, add_space);
static void split(const wchar_t *, int);
LINENUM i, j, split;
split = -1;
split = i;
if (split == -1) {
j = split + 1;
while (i < split || j <= pat_end) {
ch1 = i < split ? pch_char(i) : -1;
while (i < split && ch1 == '!') {
ch1 = i < split ? pch_char(i) : -1;
i, split, j);