env/vtophys: expand vtophys map value to 64 bits

Split the ref_count field of the bottom level of the vtophys map tree to
a separate array so that the pfn_2mb field can be expanded to a full 64
bits again.  This doesn't change behavior for the current use as a page
frame number; it is setup work for storing an arbitrary 64-bit pointer
value in the bottom level.

Change-Id: I0bc44df3edc9df4a479229d69c2f3884d43a340d
Signed-off-by: Daniel Verkamp <daniel.verkamp@intel.com>
This commit is contained in:
Daniel Verkamp 2017-02-01 11:12:45 -07:00
parent 6f8a505d23
commit a9133b405a

View File

@ -64,16 +64,12 @@
#define MAP_128TB_IDX(vfn_2mb) ((vfn_2mb) >> (SHIFT_1GB - SHIFT_2MB))
#define MAP_1GB_IDX(vfn_2mb) ((vfn_2mb) & ((1ULL << (SHIFT_1GB - SHIFT_2MB + 1)) - 1))
/* Max value for a 48-bit PFN. */
#define INVALID_PFN (0xFFFFFFFFFFFFULL)
/* Max value for a 16-bit ref count. */
#define VTOPHYS_MAX_REF_COUNT (0xFFFF)
/* Physical page frame number of a single 2MB page. */
struct map_2mb {
uint64_t pfn_2mb : 48;
uint64_t ref_count : 16;
uint64_t pfn_2mb;
};
/* Second-level map table indexed by bits [21..29] of the virtual address.
@ -82,6 +78,7 @@ struct map_2mb {
*/
struct map_1gb {
struct map_2mb map[1ULL << (SHIFT_1GB - SHIFT_2MB + 1)];
uint16_t ref_count[1ULL << (SHIFT_1GB - SHIFT_2MB + 1)];
};
/* Top-level map table indexed by bits [30..46] of the virtual address.
@ -94,13 +91,11 @@ struct map_128tb {
static struct map_128tb vtophys_map_128tb = {};
static pthread_mutex_t vtophys_mutex = PTHREAD_MUTEX_INITIALIZER;
static struct map_2mb *
vtophys_get_map(uint64_t vfn_2mb)
static struct map_1gb *
vtophys_get_map_1gb(uint64_t vfn_2mb)
{
struct map_1gb *map_1gb;
struct map_2mb *map_2mb;
uint64_t idx_128tb = MAP_128TB_IDX(vfn_2mb);
uint64_t idx_1gb = MAP_1GB_IDX(vfn_2mb);
map_1gb = vtophys_map_128tb.map[idx_128tb];
@ -113,7 +108,8 @@ vtophys_get_map(uint64_t vfn_2mb)
map_1gb = malloc(sizeof(struct map_1gb));
if (map_1gb) {
/* initialize all entries to all 0xFF (SPDK_VTOPHYS_ERROR) */
memset(map_1gb, 0xFF, sizeof(struct map_1gb));
memset(map_1gb->map, 0xFF, sizeof(map_1gb->map));
memset(map_1gb->ref_count, 0, sizeof(map_1gb->ref_count));
vtophys_map_128tb.map[idx_128tb] = map_1gb;
}
}
@ -126,8 +122,21 @@ vtophys_get_map(uint64_t vfn_2mb)
}
}
map_2mb = &map_1gb->map[idx_1gb];
return map_2mb;
return map_1gb;
}
static struct map_2mb *
vtophys_get_map_2mb(uint64_t vfn_2mb)
{
struct map_1gb *map_1gb;
uint64_t idx_1gb = MAP_1GB_IDX(vfn_2mb);
map_1gb = vtophys_get_map_1gb(vfn_2mb);
if (!map_1gb) {
return NULL;
}
return &map_1gb->map[idx_1gb];
}
static uint64_t
@ -175,23 +184,29 @@ vtophys_get_pfn_2mb(uint64_t vfn_2mb)
}
fprintf(stderr, "could not find 2MB vfn 0x%jx in DPDK mem config\n", vfn_2mb);
return INVALID_PFN;
return SPDK_VTOPHYS_ERROR;
}
static void
_spdk_vtophys_register_one(uint64_t vfn_2mb)
{
struct map_1gb *map_1gb;
uint64_t idx_1gb = MAP_1GB_IDX(vfn_2mb);
struct map_2mb *map_2mb;
uint16_t *ref_count;
void *vaddr;
uint64_t paddr;
map_2mb = vtophys_get_map(vfn_2mb);
if (!map_2mb) {
map_1gb = vtophys_get_map_1gb(vfn_2mb);
if (!map_1gb) {
fprintf(stderr, "could not get vfn_2mb %p map\n", (void *)vfn_2mb);
return;
}
if (map_2mb->pfn_2mb == INVALID_PFN) {
map_2mb = &map_1gb->map[idx_1gb];
ref_count = &map_1gb->ref_count[idx_1gb];
if (map_2mb->pfn_2mb == SPDK_VTOPHYS_ERROR) {
vaddr = (void *)(vfn_2mb << SHIFT_2MB);
paddr = vtophys_get_dpdk_paddr(vaddr);
if (paddr == RTE_BAD_PHYS_ADDR) {
@ -200,37 +215,43 @@ _spdk_vtophys_register_one(uint64_t vfn_2mb)
}
map_2mb->pfn_2mb = paddr >> SHIFT_2MB;
map_2mb->ref_count = 0;
*ref_count = 0;
}
if (map_2mb->ref_count == VTOPHYS_MAX_REF_COUNT) {
if (*ref_count == VTOPHYS_MAX_REF_COUNT) {
fprintf(stderr, "ref count for %p already at %d\n",
(void *)(vfn_2mb << SHIFT_2MB), VTOPHYS_MAX_REF_COUNT);
return;
}
map_2mb->ref_count++;
(*ref_count)++;
}
static void
_spdk_vtophys_unregister_one(uint64_t vfn_2mb)
{
struct map_1gb *map_1gb;
uint64_t idx_1gb = MAP_1GB_IDX(vfn_2mb);
struct map_2mb *map_2mb;
uint16_t *ref_count;
map_2mb = vtophys_get_map(vfn_2mb);
if (!map_2mb) {
map_1gb = vtophys_get_map_1gb(vfn_2mb);
if (!map_1gb) {
fprintf(stderr, "could not get vfn_2mb %p map\n", (void *)vfn_2mb);
return;
}
if (map_2mb->pfn_2mb == INVALID_PFN || map_2mb->ref_count == 0) {
map_2mb = &map_1gb->map[idx_1gb];
ref_count = &map_1gb->ref_count[idx_1gb];
if (map_2mb->pfn_2mb == SPDK_VTOPHYS_ERROR || *ref_count == 0) {
fprintf(stderr, "vaddr %p not registered\n", (void *)(vfn_2mb << SHIFT_2MB));
return;
}
map_2mb->ref_count--;
if (map_2mb->ref_count == 0) {
map_2mb->pfn_2mb = INVALID_PFN;
(*ref_count)--;
if (*ref_count == 0) {
map_2mb->pfn_2mb = SPDK_VTOPHYS_ERROR;
}
}
@ -300,15 +321,15 @@ spdk_vtophys(void *buf)
vfn_2mb = vaddr >> SHIFT_2MB;
map_2mb = vtophys_get_map(vfn_2mb);
map_2mb = vtophys_get_map_2mb(vfn_2mb);
if (!map_2mb) {
return SPDK_VTOPHYS_ERROR;
}
pfn_2mb = map_2mb->pfn_2mb;
if (pfn_2mb == INVALID_PFN) {
if (pfn_2mb == SPDK_VTOPHYS_ERROR) {
pfn_2mb = vtophys_get_pfn_2mb(vfn_2mb);
if (pfn_2mb == INVALID_PFN) {
if (pfn_2mb == SPDK_VTOPHYS_ERROR) {
return SPDK_VTOPHYS_ERROR;
}
map_2mb->pfn_2mb = pfn_2mb;