UINT64_MAX
nextidx = UINT64_MAX;
if (nextidx == UINT64_MAX) {
nextidx = UINT64_MAX;
if (nextidx == UINT64_MAX) {
uint64_t min_y = UINT64_MAX;
uint64_t min_x = UINT64_MAX;
assert(NULL == rpst_iterate_first(&t, UINT64_MAX, 0, UINT64_MAX, &it));
assert(min_y == 0 || 0 == query(min_y - 1, 0, UINT64_MAX));
assert(max_x == UINT64_MAX ||
0 == query(UINT64_MAX, max_x + 1, UINT64_MAX));
assert(min_x == 0 || 0 == query(UINT64_MAX, 0, min_x - 1));
done = query(UINT64_MAX, 0, UINT64_MAX);
query(UINT64_MAX, 10, 10);
return UINT64_MAX;
TEMPLATE(uint64, uint64_t, 0, UINT64_MAX)
if (pnv->pnv_unsigned == UINT64_MAX && errno == ERANGE)
if (value > UINT64_MAX)
|| value > UINT64_MAX)
_CITRUS_PROP_READ_UINT_COMMON(num, uint64_t, UINT64_MAX)
ticks -= (UINT64_MAX - curr + last);
ticks -= (UINT64_MAX - cur + prev);
unusedirqs = UINT64_MAX;
#define SODIUM_SIZE_MAX SODIUM_MIN(UINT64_MAX, SIZE_MAX)
#define SODIUM_SIZE_MAX SODIUM_MIN(UINT64_MAX, SIZE_MAX)
#define SODIUM_SIZE_MAX SODIUM_MIN(UINT64_MAX, SIZE_MAX)
#define SODIUM_SIZE_MAX SODIUM_MIN(UINT64_MAX, SIZE_MAX)
maxaddr = MIN(UINT64_MAX, ~(bus_addr_t)0);
if ((margs->sz == 0) || (margs->sz == UINT64_MAX))
if (margs->sz > (UINT64_MAX >> 60))
if (margs->sz > (UINT64_MAX >> 50))
if (margs->sz > (UINT64_MAX >> 40))
if (margs->sz > (UINT64_MAX >> 30))
if (margs->sz > (UINT64_MAX >> 20))
if (margs->sz > (UINT64_MAX >> 10))
if ((margs->baseaddr == 0) || (margs->baseaddr == UINT64_MAX))
if ((margs->irq == 0) || (margs->irq == UINT64_MAX))
if ((margs->id == 0) || (margs->id == UINT64_MAX))
flp->nfsfl_end = UINT64_MAX - flp->nfsfl_off;
lyp, NFSLAYOUTIOMODE_ANY, 0, UINT64_MAX,
UINT64_MAX,
UINT64_MAX,
memlimit = UINT64_MAX;
if (s >= UINT64_MAX - CPUFREQ_LATENCY_MAX)
#define EVENTFD_MAXVAL (UINT64_MAX - 1)
#define WG_REJECT_AFTER_MESSAGES (UINT64_MAX - (1 << 13))
tid = dnvlist_get_number(req, "id", UINT64_MAX);
type = dnvlist_get_number(req, "type", UINT64_MAX);
type = dnvlist_get_number(req, "code-type", UINT64_MAX);
uint64_t id = dnvlist_get_number(req, "id", UINT64_MAX);
ver = dnvlist_get_number(req, "version", UINT64_MAX);
if (__predict_false(ver != UINT64_MAX && ver != NPF_VERSION)) {
np_id = dnvlist_get_number(nat, "nat-policy", UINT64_MAX);
ATF_CHECK_EQ_MSG((n = ffs64(UINT64_MAX)), 0x01, "n=%d", n);
ATF_CHECK_EQ_MSG((n = fls64(UINT64_MAX)), 0x40, "n=%d", n);
ATF_CHECK_EQ(value, UINT64_MAX);
ATF_CHECK_EQ(value, UINT64_MAX);
ATF_REQUIRE(sdp_put_uint(&test, (uintmax_t)UINT64_MAX));
ATF_REQUIRE(sdp_put_uint64(&test, (uint64_t)UINT64_MAX));
ATF_REQUIRE(eventfd_write(efd, UINT64_MAX - 1) == 0);
ATF_REQUIRE(kev[0].data == (int64_t)(UINT64_MAX - 1));
eventfd_write(ctx->efd, UINT64_MAX - 1) == -1);
eventfd_write(ctx->efd, UINT64_MAX - 1) == -1);
ATF_REQUIRE(kev[0].data == (int64_t)(UINT64_MAX - 1));
eventfd_write(ctx->efd, UINT64_MAX - 1) == -1);
ATF_REQUIRE(eventfd_write(ctx.efd, UINT64_MAX - 1) == 0);
ATF_REQUIRE(efd_value == UINT64_MAX - 1);
efd_value = UINT64_MAX - 1;
ATF_REQUIRE(eventfd_write(ctx.efd, UINT64_MAX - 1) == 0);
ATF_REQUIRE(efd_value == UINT64_MAX - 1);
efd_value = UINT64_MAX - 1;
ATF_REQUIRE(eventfd_write(ctx.efd, UINT64_MAX - 1) == 0);
ATF_REQUIRE(efd_value == UINT64_MAX - 1);
if (res.rlim_max == UINT64_MAX) /* Overflow. */
prop_number_t n_uint64_max = prop_number_create_unsigned(UINT64_MAX);
val.v_uint64 == UINT64_MAX);
ATF_REQUIRE(prop_dictionary_set_uint64(dict, "uint64", UINT64_MAX));
ATF_REQUIRE(val.v_uint64 == UINT64_MAX);
ret = lzma_index_decoder(&strm, &this_index, UINT64_MAX);
if ((ret = lzma_stream_decoder(&strm, UINT64_MAX, flags)) != LZMA_OK)
0, MIN(OFF_MAX, UINT64_MAX));
((off_t)(MIN(OFF_MAX, UINT64_MAX) - \
assert(S->offset <= MIN(UINT64_MAX, OFF_MAX));
((nwritten >= (UINT64_MAX / 100)) ?
__CTASSERT(OFF_MAX <= UINT64_MAX);
__CTASSERT(OFF_MAX <= UINT64_MAX);
assert(offset <= MIN(OFF_MAX, UINT64_MAX));
if ((MIN(OFF_MAX, UINT64_MAX) - offset) < (end - start))
assert((size_t)n_read <= (MIN(OFF_MAX, UINT64_MAX) - offset));
c.umax = UINT64_MAX;
c.umax = c.smin >= 0 ? (uint64_t)c.smax : UINT64_MAX;
c.umax = UINT64_MAX;
c.umax = c.smin >= 0 ? (uint64_t)c.smax : UINT64_MAX;
c.umax = c.smin >= 0 ? (uint64_t)c.smax : UINT64_MAX;
: UINT64_MAX;
c.umax = minimum >= 0 ? (uint64_t)maximum : UINT64_MAX;
#if UINTMAX_MAX >= UINT64_MAX
if ( $2 > UINT64_MAX)