guard
static struct monst *guard;
#define EGD ((struct egd *)(&(guard->mextra[0])))
mondead(guard);
guard = 0;
guard = mtmp;
guard = 0;
if(++u.uinvault % 50 == 0 && (!guard || gdlevel != dlevel)) {
if(!(guard = makemon(&pm_guard,x,y))) return;
guard->isgd = guard->mpeaceful = 1;
if(!cansee(guard->mx, guard->my)) {
mondead(guard);
guard = 0;
pmon(guard);
mondead(guard);
guard = 0;
if(!guard || gdlevel != dlevel){
if(dist(guard->mx,guard->my) > 1 || EGD->gddone) {
x = guard->mx;
y = guard->my;
guard->mx = nx;
guard->my = ny;
pmon(guard);
guard = 0;
if(mtmp == guard)
guard = mtmp2;
else if (va >= vme.end + vme.guard + vme.fspace)
guard = base + size - guardsize;
guard = base;
if (guardsize != 0 && mprotect(guard, guardsize, PROT_NONE) == -1) {
caddr_t guard;
guard = inexact >> 31; \
if (guard && (sticky || odd)) { \
guard = odd; \
inexact |= guard; \
guard = inexact >> 31; \
guard = inexact >> 31; \
guard = Dhidden(srcA); \
guard = 0; \
#define Dbl_to_sgl_mantissa(srcA,srcB,dest,inexact,guard,sticky,odd) \
guard = Dbit3p2(srcB); \
inexact = guard | sticky; \
#define Dbl_to_sgl_denormalized(srcA,srcB,exp,dest,inexact,guard,sticky,odd,tiny) \
#define Dbl_denormalize(opndp1,opndp2,exponent,guard,sticky,inexact) \
guard = (Dallp2(opndp2) >> (-(exponent))) & 1; \
guard = (Dallp1(opndp1) >> (-32-(exponent))) & 1; \
inexact = guard | sticky; \
guard = 0; \
#define Sgl_denormalize(opnd,exponent,guard,sticky,inexact) \
guard = (Sall(opnd) >> (-(exponent))) & 1; \
inexact = (guard) | (sticky); \
guard = 0; \
guard(mutex)(&xcp_mutex);
guard(mutex)(&xcp_mutex);
guard(mutex)(&xcp_mutex);
guard(mutex)(&aconnector->hpd_lock);
guard(mutex)(&dm->dc_lock);
guard(mutex)(&dev->mode_config.mutex);
guard(mutex)(&dev->mode_config.mutex);
guard(mutex)(&aconnector->hpd_lock);
guard(mutex)(&aconnector->hpd_lock);
guard(mutex)(&hdcp_w->mutex);
guard(mutex)(&hdcp_w->mutex);
guard(mutex)(&hdcp_w->mutex);
guard(mutex)(&hdcp_work->mutex);
guard(mutex)(&hdcp_work->mutex);
guard(mutex)(&hdcp_work->mutex);
guard(mutex)(&hdcp_work->mutex);
guard(mutex)(&hdcp_work->mutex);
guard(mutex)(&psp->dtm_context.mutex);
guard(mutex)(&hdcp_w->mutex);
guard(mutex)(&adev->pm.mutex);
guard(mutex)(&dev->master_mutex);
guard(mutex)(&dev->master_mutex);
guard(mutex)(&dev->master_mutex);
guard(mutex)(&dev->master_mutex);
guard(mutex)(&dev->master_mutex);
guard(mutex)(&dev->master_mutex);
guard(mutex)(&dev->object_name_lock);
u32 alignment, unsigned int guard,
if (guard)
flags |= PIN_OFFSET_GUARD | (guard * I915_GTT_PAGE_SIZE);
u32 alignment, unsigned int guard,
gte += (vma_res->start - vma_res->guard) / I915_GTT_PAGE_SIZE;
end = gte + vma_res->guard / I915_GTT_PAGE_SIZE;
end += (vma_res->node_size + vma_res->guard) / I915_GTT_PAGE_SIZE;
start = (vma_res->start - vma_res->guard) / I915_GTT_PAGE_SIZE;
end = start + vma_res->guard / I915_GTT_PAGE_SIZE;
end += (vma_res->node_size + vma_res->guard) / I915_GTT_PAGE_SIZE;
gte += (vma_res->start - vma_res->guard) / I915_GTT_PAGE_SIZE;
end = gte + vma_res->guard / I915_GTT_PAGE_SIZE;
end += (vma_res->node_size + vma_res->guard) / I915_GTT_PAGE_SIZE;
__i915_vma_size(vma), vma->size, vma->guard);
vma->guard < (flags & PIN_OFFSET_MASK))
unsigned long color, guard;
guard = vma->guard; /* retain guard across rebinds */
guard = max_t(u32, guard, flags & PIN_OFFSET_MASK);
guard = ALIGN(guard, alignment);
if (size > end - 2 * guard) {
if (offset < guard || offset + size > end - guard)
size + 2 * guard,
offset - guard,
size += 2 * guard;
vma->guard = guard;
return vma->node.size - 2 * vma->guard;
return vma->node.start + vma->guard;
#define VMA_RES_START(_node) ((_node)->start - (_node)->guard)
#define VMA_RES_LAST(_node) ((_node)->start + (_node)->node_size + (_node)->guard - 1)
u32 guard;
u32 guard)
vma_res->guard = guard;
u32 guard; /* padding allocated around vma->pages within the node */
*(long *)(guard_va + off) = disk_hib.guard;
hib->guard = __guard_local;
struct timespec guard;
fxdr_nfsv3time(tl, &guard);
(preat.va_ctime.tv_sec != guard.tv_sec ||
preat.va_ctime.tv_nsec != guard.tv_nsec))
long guard;
#define VMMAP_FREE_START(_entry) ((_entry)->end + (_entry)->guard)
#define VMMAP_FREE_END(_entry) ((_entry)->end + (_entry)->guard + \
entry->guard, entry->fspace);
entry->guard, entry->fspace);
e1->guard = e2->guard;
entry->guard = 0;
first->guard = 0;
next->guard = 0;
orig->guard = MIN(orig->guard, split - orig->end);
orig->guard = 0;
entry->guard,
entry->start, entry->end, entry->guard, entry->fspace,
res, res->start, res->end, res->guard, res->fspace);
entry->guard = 2 * PAGE_SIZE;
entry->guard = PAGE_SIZE;
entry->guard > PAGE_SIZE) {
entry->guard = PAGE_SIZE;
entry->guard = 0;
kve->kve_guard = entry->guard;
vsize_t guard; /* bytes in guard */
char *filename, *guard, *tmp, *tmp2;
guard = strdup(filename);
if (guard == NULL) {
tmp = guard;
tmp2 = extendfile(guard, "_H_RPCGEN");
free(guard);
guard = tmp2;
return (guard);
char *guard;
guard = generate_guard(outfilename ? outfilename : infile);
guard = generate_guard("STDIN");
fprintf(fout, "#ifndef _%s\n#define _%s\n\n", guard,
guard);
fprintf(fout, "\n#endif /* !_%s */\n", guard);
free(guard);
cmdq_guard(struct cmdq_item *item, const char *guard, int flags)
control_write_guard(c, guard, t, number, flags);
control_write_guard(struct client *c, const char *guard, long t, u_int number,
if (strcmp(guard, "begin") == 0)
xasprintf(&line, "%%%s %ld %u %d", guard, t, number, flags);
if (strcmp(guard, "begin") != 0 && cs->guard_depth > 0 &&