#include <rte_malloc.h>
#include <rte_memzone.h>
#include <rte_memcpy.h>
-#include <rte_tailq.h>
#include <rte_eal.h>
#include <rte_eal_memconfig.h>
#include <rte_per_lcore.h>
TAILQ_HEAD(rte_lpm6_list, rte_tailq_entry);
+static struct rte_tailq_elem rte_lpm6_tailq = {
+ .name = "RTE_LPM6",
+};
+EAL_REGISTER_TAILQ(rte_lpm6_tailq)
+
/** Tbl entry structure. It is the same for both tbl24 and tbl8 */
struct rte_lpm6_tbl_entry {
uint32_t next_hop: 21; /**< Next hop / next table to be checked. */
/** Rules tbl entry structure. */
struct rte_lpm6_rule {
uint8_t ip[RTE_LPM6_IPV6_ADDR_SIZE]; /**< Rule IP address. */
- uint8_t next_hop; /**< Rule next hop. */
+ uint32_t next_hop; /**< Rule next hop. */
uint8_t depth; /**< Rule depth. */
};
uint64_t mem_size, rules_size;
struct rte_lpm6_list *lpm_list;
- /* Check that we have an initialised tail queue */
- if ((lpm_list =
- RTE_TAILQ_LOOKUP_BY_IDX(RTE_TAILQ_LPM6, rte_lpm6_list)) == NULL) {
- rte_errno = E_RTE_NO_TAILQ;
- return NULL;
- }
+ lpm_list = RTE_TAILQ_CAST(rte_lpm6_tailq.head, rte_lpm6_list);
RTE_BUILD_BUG_ON(sizeof(struct rte_lpm6_tbl_entry) != sizeof(uint32_t));
if (strncmp(name, lpm->name, RTE_LPM6_NAMESIZE) == 0)
break;
}
- if (te != NULL)
+ lpm = NULL;
+ if (te != NULL) {
+ rte_errno = EEXIST;
goto exit;
+ }
/* allocate tailq entry */
te = rte_zmalloc("LPM6_TAILQ_ENTRY", sizeof(*te), 0);
(size_t)rules_size, RTE_CACHE_LINE_SIZE, socket_id);
if (lpm->rules_tbl == NULL) {
- RTE_LOG(ERR, LPM, "LPM memory allocation failed\n");
+ RTE_LOG(ERR, LPM, "LPM rules_tbl allocation failed\n");
rte_free(lpm);
+ lpm = NULL;
rte_free(te);
goto exit;
}
struct rte_tailq_entry *te;
struct rte_lpm6_list *lpm_list;
- /* Check that we have an initialised tail queue */
- if ((lpm_list = RTE_TAILQ_LOOKUP_BY_IDX(RTE_TAILQ_LPM6,
- rte_lpm6_list)) == NULL) {
- rte_errno = E_RTE_NO_TAILQ;
- return NULL;
- }
+ lpm_list = RTE_TAILQ_CAST(rte_lpm6_tailq.head, rte_lpm6_list);
rte_rwlock_read_lock(RTE_EAL_TAILQ_RWLOCK);
TAILQ_FOREACH(te, lpm_list, next) {
if (lpm == NULL)
return;
- /* check that we have an initialised tail queue */
- if ((lpm_list =
- RTE_TAILQ_LOOKUP_BY_IDX(RTE_TAILQ_LPM, rte_lpm6_list)) == NULL) {
- rte_errno = E_RTE_NO_TAILQ;
- return;
- }
+ lpm_list = RTE_TAILQ_CAST(rte_lpm6_tailq.head, rte_lpm6_list);
rte_rwlock_write_lock(RTE_EAL_TAILQ_RWLOCK);
if (te->data == (void *) lpm)
break;
}
- if (te == NULL) {
- rte_rwlock_write_unlock(RTE_EAL_TAILQ_RWLOCK);
- return;
- }
- TAILQ_REMOVE(lpm_list, te, next);
+ if (te != NULL)
+ TAILQ_REMOVE(lpm_list, te, next);
rte_rwlock_write_unlock(RTE_EAL_TAILQ_RWLOCK);
+ rte_free(lpm->rules_tbl);
rte_free(lpm);
rte_free(te);
}
* the nexthop if so. Otherwise it adds a new rule if enough space is available.
*/
static inline int32_t
-rule_add(struct rte_lpm6 *lpm, uint8_t *ip, uint8_t next_hop, uint8_t depth)
+rule_add(struct rte_lpm6 *lpm, uint8_t *ip, uint32_t next_hop, uint8_t depth)
{
uint32_t rule_index;
*/
static void
expand_rule(struct rte_lpm6 *lpm, uint32_t tbl8_gindex, uint8_t depth,
- uint8_t next_hop)
+ uint32_t next_hop)
{
uint32_t tbl8_group_end, tbl8_gindex_next, j;
static inline int
add_step(struct rte_lpm6 *lpm, struct rte_lpm6_tbl_entry *tbl,
struct rte_lpm6_tbl_entry **tbl_next, uint8_t *ip, uint8_t bytes,
- uint8_t first_byte, uint8_t depth, uint8_t next_hop)
+ uint8_t first_byte, uint8_t depth, uint32_t next_hop)
{
uint32_t tbl_index, tbl_range, tbl8_group_start, tbl8_group_end, i;
int32_t tbl8_gindex;
* Add a route
*/
int
-rte_lpm6_add(struct rte_lpm6 *lpm, uint8_t *ip, uint8_t depth,
+rte_lpm6_add_v20(struct rte_lpm6 *lpm, uint8_t *ip, uint8_t depth,
uint8_t next_hop)
+{
+ return rte_lpm6_add_v1705(lpm, ip, depth, next_hop);
+}
+VERSION_SYMBOL(rte_lpm6_add, _v20, 2.0);
+
+int
+rte_lpm6_add_v1705(struct rte_lpm6 *lpm, uint8_t *ip, uint8_t depth,
+ uint32_t next_hop)
{
struct rte_lpm6_tbl_entry *tbl;
struct rte_lpm6_tbl_entry *tbl_next;
return status;
}
+BIND_DEFAULT_SYMBOL(rte_lpm6_add, _v1705, 17.05);
+MAP_STATIC_SYMBOL(int rte_lpm6_add(struct rte_lpm6 *lpm, uint8_t *ip,
+ uint8_t depth, uint32_t next_hop),
+ rte_lpm6_add_v1705);
/*
* Takes a pointer to a table entry and inspect one level.
static inline int
lookup_step(const struct rte_lpm6 *lpm, const struct rte_lpm6_tbl_entry *tbl,
const struct rte_lpm6_tbl_entry **tbl_next, uint8_t *ip,
- uint8_t first_byte, uint8_t *next_hop)
+ uint8_t first_byte, uint32_t *next_hop)
{
uint32_t tbl8_index, tbl_entry;
return 1;
} else {
/* If not extended then we can have a match. */
- *next_hop = (uint8_t)tbl_entry;
+ *next_hop = ((uint32_t)tbl_entry & RTE_LPM6_TBL8_BITMASK);
return (tbl_entry & RTE_LPM6_LOOKUP_SUCCESS) ? 0 : -ENOENT;
}
}
* Looks up an IP
*/
int
-rte_lpm6_lookup(const struct rte_lpm6 *lpm, uint8_t *ip, uint8_t *next_hop)
+rte_lpm6_lookup_v20(const struct rte_lpm6 *lpm, uint8_t *ip, uint8_t *next_hop)
+{
+ uint32_t next_hop32 = 0;
+ int32_t status;
+
+ /* DEBUG: Check user input arguments. */
+ if (next_hop == NULL)
+ return -EINVAL;
+
+ status = rte_lpm6_lookup_v1705(lpm, ip, &next_hop32);
+ if (status == 0)
+ *next_hop = (uint8_t)next_hop32;
+
+ return status;
+}
+VERSION_SYMBOL(rte_lpm6_lookup, _v20, 2.0);
+
+int
+rte_lpm6_lookup_v1705(const struct rte_lpm6 *lpm, uint8_t *ip,
+ uint32_t *next_hop)
{
const struct rte_lpm6_tbl_entry *tbl;
- const struct rte_lpm6_tbl_entry *tbl_next;
+ const struct rte_lpm6_tbl_entry *tbl_next = NULL;
int status;
uint8_t first_byte;
uint32_t tbl24_index;
return status;
}
+BIND_DEFAULT_SYMBOL(rte_lpm6_lookup, _v1705, 17.05);
+MAP_STATIC_SYMBOL(int rte_lpm6_lookup(const struct rte_lpm6 *lpm, uint8_t *ip,
+ uint32_t *next_hop), rte_lpm6_lookup_v1705);
/*
* Looks up a group of IP addresses
*/
int
-rte_lpm6_lookup_bulk_func(const struct rte_lpm6 *lpm,
+rte_lpm6_lookup_bulk_func_v20(const struct rte_lpm6 *lpm,
uint8_t ips[][RTE_LPM6_IPV6_ADDR_SIZE],
int16_t * next_hops, unsigned n)
{
unsigned i;
const struct rte_lpm6_tbl_entry *tbl;
- const struct rte_lpm6_tbl_entry *tbl_next;
- uint32_t tbl24_index;
- uint8_t first_byte, next_hop;
+ const struct rte_lpm6_tbl_entry *tbl_next = NULL;
+ uint32_t tbl24_index, next_hop;
+ uint8_t first_byte;
int status;
/* DEBUG: Check user input arguments. */
if (status < 0)
next_hops[i] = -1;
else
- next_hops[i] = next_hop;
+ next_hops[i] = (int16_t)next_hop;
+ }
+
+ return 0;
+}
+VERSION_SYMBOL(rte_lpm6_lookup_bulk_func, _v20, 2.0);
+
+int
+rte_lpm6_lookup_bulk_func_v1705(const struct rte_lpm6 *lpm,
+ uint8_t ips[][RTE_LPM6_IPV6_ADDR_SIZE],
+ int32_t *next_hops, unsigned int n)
+{
+ unsigned int i;
+ const struct rte_lpm6_tbl_entry *tbl;
+ const struct rte_lpm6_tbl_entry *tbl_next = NULL;
+ uint32_t tbl24_index, next_hop;
+ uint8_t first_byte;
+ int status;
+
+ /* DEBUG: Check user input arguments. */
+ if ((lpm == NULL) || (ips == NULL) || (next_hops == NULL))
+ return -EINVAL;
+
+ for (i = 0; i < n; i++) {
+ first_byte = LOOKUP_FIRST_BYTE;
+ tbl24_index = (ips[i][0] << BYTES2_SIZE) |
+ (ips[i][1] << BYTE_SIZE) | ips[i][2];
+
+ /* Calculate pointer to the first entry to be inspected */
+ tbl = &lpm->tbl24[tbl24_index];
+
+ do {
+ /* Continue inspecting following levels
+ * until success or failure
+ */
+ status = lookup_step(lpm, tbl, &tbl_next, ips[i],
+ first_byte++, &next_hop);
+ tbl = tbl_next;
+ } while (status == 1);
+
+ if (status < 0)
+ next_hops[i] = -1;
+ else
+ next_hops[i] = (int32_t)next_hop;
}
return 0;
}
+BIND_DEFAULT_SYMBOL(rte_lpm6_lookup_bulk_func, _v1705, 17.05);
+MAP_STATIC_SYMBOL(int rte_lpm6_lookup_bulk_func(const struct rte_lpm6 *lpm,
+ uint8_t ips[][RTE_LPM6_IPV6_ADDR_SIZE],
+ int32_t *next_hops, unsigned int n),
+ rte_lpm6_lookup_bulk_func_v1705);
/*
* Finds a rule in rule table.
* Look for a rule in the high-level rules table
*/
int
-rte_lpm6_is_rule_present(struct rte_lpm6 *lpm, uint8_t *ip, uint8_t depth,
-uint8_t *next_hop)
+rte_lpm6_is_rule_present_v20(struct rte_lpm6 *lpm, uint8_t *ip, uint8_t depth,
+ uint8_t *next_hop)
+{
+ uint32_t next_hop32 = 0;
+ int32_t status;
+
+ /* DEBUG: Check user input arguments. */
+ if (next_hop == NULL)
+ return -EINVAL;
+
+ status = rte_lpm6_is_rule_present_v1705(lpm, ip, depth, &next_hop32);
+ if (status > 0)
+ *next_hop = (uint8_t)next_hop32;
+
+ return status;
+
+}
+VERSION_SYMBOL(rte_lpm6_is_rule_present, _v20, 2.0);
+
+int
+rte_lpm6_is_rule_present_v1705(struct rte_lpm6 *lpm, uint8_t *ip, uint8_t depth,
+ uint32_t *next_hop)
{
uint8_t ip_masked[RTE_LPM6_IPV6_ADDR_SIZE];
int32_t rule_index;
/* If rule is not found return 0. */
return 0;
}
+BIND_DEFAULT_SYMBOL(rte_lpm6_is_rule_present, _v1705, 17.05);
+MAP_STATIC_SYMBOL(int rte_lpm6_is_rule_present(struct rte_lpm6 *lpm,
+ uint8_t *ip, uint8_t depth, uint32_t *next_hop),
+ rte_lpm6_is_rule_present_v1705);
/*
* Delete a rule from the rule table.