word1
z_word_t word1;
word1 = crc1 ^ words[1];
crc1 = crc_braid_table[0][word1 & 0xff];
crc1 ^= crc_braid_table[k][(word1 >> (k << 3)) & 0xff];
z_word_t crc1, word1;
word1 = crc1 ^ words[1];
crc1 = crc_braid_big_table[0][word1 & 0xff];
crc1 ^= crc_braid_big_table[k][(word1 >> (k << 3)) & 0xff];
char *word1 = "1234567890", *word2 = "12345678901234567890";
buf = vmalloc(strlen(word1));
memcpy(buf->v, word1, buf->l);
char *word1 = "1234567890", *word2 = "12345678901234567890";
buf = vmalloc(strlen(word1));
memcpy(buf->v, word1, buf->l);
if (!word1(&d) && !(word0(&d) & 0xfffff))
x = i > 32 ? word0(&d) << (64 - i) | word1(&d) >> (i - 32)
: word1(&d) << (32 - i);
if (!word1(&d) && !(word0(&d) & Bndry_mask)
if (jj1 == 0 && mode != 1 && !(word1(&d) & 1)
&& !(word1(&d) & 1)
word1(&d) = 0;
#define d1 word1(&d)
word1(&d) = d1 >> 16 | d1 << 16;
#define d1 word1(&d)
d1 = word1(&d) >> 16 | word1(&d) << 16;
&& word1(&rv0) == Tiny1)
word1(&rv) = Tiny1;
if (dsign || word1(&rv) || word0(&rv) & Bndry_mask) {
word1(&rv0) = 0;
word1(&rv0) = 0;
if (word0(&rv) == 0 && word1(&rv) == 0)
word1(&rv) = 0;
word1(&rv) = bits[0];
word1(&rv) = NAN_WORD1;
word1(&rv) = Big1;
word1(&rv) = 0;
word1(&rv) = 0;
word1(&rv) = Big1;
word1(&rv) = Big1;
word1(&rv) = 0;
word1(&rv) &= 0xffffffffU << j;
word1(&rv) = 1;
word1(&rv) = Tiny1;
if (!word1(&rv)
if (word0(&rv) == Big0 && word1(&rv) == Big1)
if (dsign || word1(&rv) || word0(&rv) & Bndry_mask
&& word1(&rv) == (
if (word0(&rv) == Big0 && word1(&rv) == Big1)
word1(&rv) = 0;
else if (!(word0(&rv) & Bndry_mask) && !word1(&rv)) {
word1(&rv) = 0xffffffff;
word1(&u) = 0;
else if (!(word1(&rv) & Lsb))
if (!(word1(&rv) & LSB))
else if (word1(&rv) || word0(&rv) & Bndry_mask) {
if (word1(&rv) == Tiny1 && !word0(&rv))
if (word0(&rv0) == Big0 && word1(&rv0) == Big1)
word1(&rv) = Big1;
word1(&u[1]) = word1(&u[0]);
word1(&u[1]) = 0;
word1(&u[0]) = 0;
word1(&u[0]) = word1(&u[1]) = 0;
word1(&u[1]) = 0xffffffffL;
word1(&u[0]) = 0xffffffffL;
word1(&u[0]) = word1(&u[1]) = bits[0];
word1(&u[0]) = bits[0];
word1(&u[0]) = bits[0];
L = word1(d) << 16 | word1(d) >> 16;
if ( (L = word1(d)) !=0)
dval(d), UL word0(d), UL word1(d), buf);
dval(&d1), UL word0(&d1), UL word1(&d1));
y = word1(&d);
word1(&d) = y;
printf(fmt, dval(&d), UL word0(&d), UL word1(&d), se);
d = %.17g = 0x%lx %lx\n", dval(&d1), UL word0(&d1), UL word1(&d1),
dval(&d), UL word0(&d), UL word1(&d));
x = word1(&d);
word1(&d) = z;
word1(&d) = x + 1;
dval(&d), UL word0(&d), UL word1(&d));
word1(&d) = z;
word1(&d) = x - 1;
dval(&d), UL word0(&d), UL word1(&d));
word1(&a) = 0;
word1(&a) = 0;
word1(&a) = L >= 31 ? 1 : 1 << (31 - L);
int word1;
HYPERVISOR_update_descriptor(uint64_t ma, uint32_t word1, uint32_t word2)
_harg("1" (ma1), "2" (ma2), "3" (word1), "4" (word2)),
int word1, sig;
word1 = insn->is_word1;
fpu_to_mem = word1 & 0x2000;
if (word1 & 0x0800) {
reglist = frame->f_regs[(word1 & 0x70) >> 4];
reglist = word1;
int word1, sig = 0;
word1 = insn->is_word1;
format = (word1 >> 10) & 7;
regnum = (word1 >> 7) & 7;
if ((word1 & 0x4000) == 0) {
switch (word1 & 0x7f) {
res = fpu_sincos(fe, word1 & 7);
int word1, sig;
word1 = insn->is_word1;
format = (word1 >> 10) & 7;
regnum = (word1 >> 7) & 7;
if ((word1 & 0x4000) == 0) {
int word1, sig;
word1 = insn->is_word1;
format = (word1 >> 10) & 7;
regnum = (word1 >> 7) & 7;
uint64_t word1 = work[1];
m->m_len = m->m_pkthdr.len = (word1 & PIP_WQE_WORD1_LEN) >> 48;