VM_PHYSSEG_MAX
phys_ram_seg_t mem_clusters[VM_PHYSSEG_MAX];
phys_ram_seg_t mem_clusters[VM_PHYSSEG_MAX]; /* low size bits overloaded */
if (mem_cluster_cnt < VM_PHYSSEG_MAX) { /* XXX */
phys_ram_seg_t mem_clusters[VM_PHYSSEG_MAX];
if (mem_cluster_cnt >= VM_PHYSSEG_MAX) {
int mem_reserved[VM_PHYSSEG_MAX]; /* the cluster is reserved, i.e. not free */
phys_ram_seg_t mem_clusters[VM_PHYSSEG_MAX];
phys_ram_seg_t mem_clusters[VM_PHYSSEG_MAX];
phys_ram_seg_t mem_clusters[VM_PHYSSEG_MAX];
for (i = 0; i < VM_PHYSSEG_MAX; Pmt--) {
phys_ram_seg_t mem_clusters[VM_PHYSSEG_MAX];
phys_ram_seg_t mem_clusters[VM_PHYSSEG_MAX];
phys_ram_seg_t mem_clusters[VM_PHYSSEG_MAX];
phys_ram_seg_t mem_clusters[VM_PHYSSEG_MAX];
for (i = 0; i < VM_PHYSSEG_MAX && blockaddr != 0;
phys_ram_seg_t mem_clusters[VM_PHYSSEG_MAX];
phys_ram_seg_t mem_clusters[VM_PHYSSEG_MAX];
for (i = 0; i < VM_PHYSSEG_MAX; i++)
phys_ram_seg_t mem_clusters[VM_PHYSSEG_MAX];
phys_ram_seg_t mem_clusters[VM_PHYSSEG_MAX];
phys_ram_seg_t mem_clusters[VM_PHYSSEG_MAX];
phys_ram_seg_t mem_clusters[VM_PHYSSEG_MAX];
phys_ram_seg_t mem_clusters[VM_PHYSSEG_MAX];
phys_ram_seg_t new_segs[VM_PHYSSEG_MAX];
KASSERT(new_nsegs < VM_PHYSSEG_MAX);
phys_ram_seg_t mem_clusters[VM_PHYSSEG_MAX];
(mem_cluster_cnt < VM_PHYSSEG_MAX)) {
phys_ram_seg_t mem_clusters[VM_PHYSSEG_MAX];
extern phys_ram_seg_t mem_clusters[VM_PHYSSEG_MAX];
phys_ram_seg_t mem_clseters[VM_PHYSSEG_MAX];
phys_ram_seg_t mem_clusters[VM_PHYSSEG_MAX];
phys_ram_seg_t mem_clusters[VM_PHYSSEG_MAX];
KASSERT(mem_cluster_cnt < VM_PHYSSEG_MAX);
extern phys_ram_seg_t mem_clusters[VM_PHYSSEG_MAX];
phys_ram_seg_t mem_clusters[VM_PHYSSEG_MAX];
#ifndef VM_PHYSSEG_MAX
for (i = 0, j = 0; i < VM_PHYSSEG_MAX; i++) {
for (memcl = 0; memcl < VM_PHYSSEG_MAX; memcl++) {
for (n = 0, i = 0; i < VM_PHYSSEG_MAX; i++) {
if (bid->bootinfo_mem_nsegments == VM_PHYSSEG_MAX) {
phys_seg_list_t phys_seg_list[VM_PHYSSEG_MAX];
for (i = 0; i < VM_PHYSSEG_MAX; i++) {
for (i = 0; i < VM_PHYSSEG_MAX; i++) {
for (i = 0; i < VM_PHYSSEG_MAX; i++) {
phys_ram_seg_t mem_clusters[VM_PHYSSEG_MAX];
for (vmememsize = 0, i = 1; i < VM_PHYSSEG_MAX; i++) {
phys_ram_seg_t mem_clusters[VM_PHYSSEG_MAX];
phys_ram_seg_t mem_clusters[VM_PHYSSEG_MAX];
phys_ram_seg_t mem_clusters[VM_PHYSSEG_MAX];
phys_ram_seg_t mem_clusters[VM_PHYSSEG_MAX];
(mem_cluster_cnt < VM_PHYSSEG_MAX)) {
phys_ram_seg_t mem_clusters[VM_PHYSSEG_MAX];
for (i = 0; mem_cluster_cnt < VM_PHYSSEG_MAX; i++) {
__CTASSERT(SUN3X_NPHYS_RAM_SEGS <= VM_PHYSSEG_MAX);
__CTASSERT(__arraycount(memlist) + 1 <= VM_PHYSSEG_MAX);
if (++n == VM_PHYSSEG_MAX)
if (i > 0 && n < VM_PHYSSEG_MAX) {
} else if (n == VM_PHYSSEG_MAX) {
struct bi_memmap_entry entry[VM_PHYSSEG_MAX - 1];
if (msgbuf_p_cnt == VM_PHYSSEG_MAX) {
struct msgbuf_p_seg msgbuf_p_seg[VM_PHYSSEG_MAX];
extern phys_ram_seg_t mem_clusters[VM_PHYSSEG_MAX];
if (mem_cluster_cnt >= VM_PHYSSEG_MAX) {
#define UVM_PHYSSEG_BOOT_UNPLUG_MAX VM_PHYSSEG_MAX
static struct uvm_physseg uvm_physseg[VM_PHYSSEG_MAX];
KASSERT(nseg <= VM_PHYSSEG_MAX);
(struct uvm_physseg *)p < (uvm_physseg + VM_PHYSSEG_MAX)) {
if ((sz / sizeof(struct uvm_physseg)) >= VM_PHYSSEG_MAX)
VM_PHYSSEG_MAX, pfn, pfn + pages + 1);
#if VM_PHYSSEG_MAX == 1
static struct uvm_physseg vm_physmem[VM_PHYSSEG_MAX] __read_mostly;
if (vm_nphysmem == VM_PHYSSEG_MAX) {
VM_PHYSSEG_MAX, (long long)start, (long long)end);
#if VM_PHYSSEG_MAX == 1
#if VM_PHYSSEG_MAX == 1
#if VM_PHYSSEG_MAX == 1
} while (VM_PHYSSEG_MAX > 1 && __predict_false(++ps < end));
#if VM_PHYSSEG_MAX > 1
#if !defined(VM_PHYSSEG_MAX)
#if VM_PHYSSEG_MAX > 1
#if VM_PHYSSEG_MAX > 1
#if VM_PHYSSEG_MAX > 1
#if VM_PHYSSEG_MAX > 1
#if VM_PHYSSEG_MAX > 2
#if VM_PHYSSEG_MAX > 1
#if VM_PHYSSEG_MAX > 1
#if VM_PHYSSEG_MAX > 2
#if VM_PHYSSEG_MAX > 1
#if VM_PHYSSEG_MAX > 2
#if VM_PHYSSEG_MAX > 1
#if VM_PHYSSEG_MAX > 2
#if VM_PHYSSEG_MAX > 1
#if VM_PHYSSEG_MAX > 2
#if VM_PHYSSEG_MAX > 1
#if VM_PHYSSEG_MAX > 2
#if VM_PHYSSEG_MAX > 1
#if VM_PHYSSEG_MAX > 1
#if VM_PHYSSEG_MAX > 1
#if VM_PHYSSEG_MAX > 1
#if VM_PHYSSEG_MAX == 1
#if VM_PHYSSEG_MAX > 1
#if VM_PHYSSEG_MAX == 1
#if VM_PHYSSEG_MAX > 1
#if VM_PHYSSEG_MAX == 1
#if VM_PHYSSEG_MAX > 1
uvm_physseg_alloc((VM_PHYSSEG_MAX + 1) * sizeof(struct uvm_physseg));
ATF_REQUIRE(uvm_physseg_alloc(VM_PHYSSEG_MAX * sizeof(struct uvm_physseg)));
ATF_REQUIRE(uvm_physseg_alloc(2 * VM_PHYSSEG_MAX * sizeof(struct uvm_physseg)));
#if VM_PHYSSEG_MAX > 1
seg = uvm_physseg_alloc((VM_PHYSSEG_MAX - 1) * sizeof(*seg));
uvm_physseg_free(seg, (VM_PHYSSEG_MAX - 1) * sizeof(struct uvm_physseg));
seg = uvm_physseg_alloc(2 * VM_PHYSSEG_MAX * sizeof(struct uvm_physseg));
uvm_physseg_free(seg, 2 * VM_PHYSSEG_MAX * sizeof(struct uvm_physseg));
#if VM_PHYSSEG_MAX > 1
seg = uvm_physseg_alloc(VM_PHYSSEG_MAX * sizeof(*seg));
#if VM_PHYSSEG_MAX > 2
#if VM_PHYSSEG_MAX > 1
#if VM_PHYSSEG_MAX > 2
#if VM_PHYSSEG_MAX > 2
#if VM_PHYSSEG_MAX > 2
#if VM_PHYSSEG_MAX > 1
#if VM_PHYSSEG_MAX > 2
#if VM_PHYSSEG_MAX > 2
#if VM_PHYSSEG_MAX == 1
#if VM_PHYSSEG_MAX > 1
#if VM_PHYSSEG_MAX > 1
#if VM_PHYSSEG_MAX == 1
#if VM_PHYSSEG_MAX > 1
#if VM_PHYSSEG_MAX > 1
#if !defined(VM_PHYSSEG_MAX)
ATF_REQUIRE_EQ(VM_PHYSSEG_MAX, uvm_physseg_get_entries());
ATF_REQUIRE_EQ(VM_PHYSSEG_MAX, uvm_physseg_get_entries());
ATF_REQUIRE_EQ(VM_PHYSSEG_MAX, uvm_physseg_get_entries());
ATF_REQUIRE_EQ(VM_PHYSSEG_MAX, uvm_physseg_get_entries());
ATF_REQUIRE_EQ(VM_PHYSSEG_MAX, uvm_physseg_get_entries());
ATF_REQUIRE_EQ(VM_PHYSSEG_MAX, uvm_physseg_get_entries());
ATF_REQUIRE_EQ(VM_PHYSSEG_MAX, uvm_physseg_get_entries());