numam-dpdk/app/test-crypto-perf/cperf_options.h
Pablo de Lara c4f916e332 app/crypto-perf: support multiple queue pairs
Add support for multiple queue pairs, when there are
more logical cores available than crypto devices enabled.
For instance, if there are 4 cores available and
2 crypto devices, each device will have two queue pairs.

This is useful to have multiple logical cores using
a single crypto device, without needing to initialize
a crypto device per core.

Signed-off-by: Pablo de Lara <pablo.de.lara.guarch@intel.com>
Acked-by: Akhil Goyal <akhil.goyal@nxp.com>
2017-10-12 15:14:45 +01:00

141 lines
3.1 KiB
C

#ifndef _CPERF_OPTIONS_
#define _CPERF_OPTIONS_
#include <rte_crypto.h>
#define CPERF_PTEST_TYPE ("ptest")
#define CPERF_SILENT ("silent")
#define CPERF_POOL_SIZE ("pool-sz")
#define CPERF_TOTAL_OPS ("total-ops")
#define CPERF_BURST_SIZE ("burst-sz")
#define CPERF_BUFFER_SIZE ("buffer-sz")
#define CPERF_SEGMENT_SIZE ("segment-sz")
#define CPERF_DESC_NB ("desc-nb")
#define CPERF_DEVTYPE ("devtype")
#define CPERF_OPTYPE ("optype")
#define CPERF_SESSIONLESS ("sessionless")
#define CPERF_OUT_OF_PLACE ("out-of-place")
#define CPERF_TEST_FILE ("test-file")
#define CPERF_TEST_NAME ("test-name")
#define CPERF_CIPHER_ALGO ("cipher-algo")
#define CPERF_CIPHER_OP ("cipher-op")
#define CPERF_CIPHER_KEY_SZ ("cipher-key-sz")
#define CPERF_CIPHER_IV_SZ ("cipher-iv-sz")
#define CPERF_AUTH_ALGO ("auth-algo")
#define CPERF_AUTH_OP ("auth-op")
#define CPERF_AUTH_KEY_SZ ("auth-key-sz")
#define CPERF_AUTH_IV_SZ ("auth-iv-sz")
#define CPERF_AEAD_ALGO ("aead-algo")
#define CPERF_AEAD_OP ("aead-op")
#define CPERF_AEAD_KEY_SZ ("aead-key-sz")
#define CPERF_AEAD_IV_SZ ("aead-iv-sz")
#define CPERF_AEAD_AAD_SZ ("aead-aad-sz")
#define CPERF_DIGEST_SZ ("digest-sz")
#define CPERF_CSV ("csv-friendly")
/* benchmark-specific options */
#define CPERF_PMDCC_DELAY_MS ("pmd-cyclecount-delay-ms")
#define MAX_LIST 32
enum cperf_perf_test_type {
CPERF_TEST_TYPE_THROUGHPUT,
CPERF_TEST_TYPE_LATENCY,
CPERF_TEST_TYPE_VERIFY,
CPERF_TEST_TYPE_PMDCC
};
extern const char *cperf_test_type_strs[];
enum cperf_op_type {
CPERF_CIPHER_ONLY = 1,
CPERF_AUTH_ONLY,
CPERF_CIPHER_THEN_AUTH,
CPERF_AUTH_THEN_CIPHER,
CPERF_AEAD
};
extern const char *cperf_op_type_strs[];
struct cperf_options {
enum cperf_perf_test_type test;
uint32_t pool_sz;
uint32_t total_ops;
uint32_t segment_sz;
uint32_t test_buffer_size;
uint32_t nb_descriptors;
uint16_t nb_qps;
uint32_t sessionless:1;
uint32_t out_of_place:1;
uint32_t silent:1;
uint32_t csv:1;
enum rte_crypto_cipher_algorithm cipher_algo;
enum rte_crypto_cipher_operation cipher_op;
uint16_t cipher_key_sz;
uint16_t cipher_iv_sz;
enum rte_crypto_auth_algorithm auth_algo;
enum rte_crypto_auth_operation auth_op;
uint16_t auth_key_sz;
uint16_t auth_iv_sz;
enum rte_crypto_aead_algorithm aead_algo;
enum rte_crypto_aead_operation aead_op;
uint16_t aead_key_sz;
uint16_t aead_iv_sz;
uint16_t aead_aad_sz;
uint16_t digest_sz;
char device_type[RTE_CRYPTODEV_NAME_LEN];
enum cperf_op_type op_type;
char *test_file;
char *test_name;
uint32_t buffer_size_list[MAX_LIST];
uint8_t buffer_size_count;
uint32_t max_buffer_size;
uint32_t min_buffer_size;
uint32_t inc_buffer_size;
uint32_t burst_size_list[MAX_LIST];
uint8_t burst_size_count;
uint32_t max_burst_size;
uint32_t min_burst_size;
uint32_t inc_burst_size;
/* pmd-cyclecount specific options */
uint32_t pmdcc_delay;
};
void
cperf_options_default(struct cperf_options *options);
int
cperf_options_parse(struct cperf_options *options,
int argc, char **argv);
int
cperf_options_check(struct cperf_options *options);
void
cperf_options_dump(struct cperf_options *options);
#endif