New upstream version 18.02
[deb_dpdk.git] / test / test / test_pmd_ring_perf.c
1 /* SPDX-License-Identifier: BSD-3-Clause
2  * Copyright(c) 2015 Intel Corporation
3  */
4
5
6 #include <stdio.h>
7 #include <inttypes.h>
8 #include <rte_ring.h>
9 #include <rte_cycles.h>
10 #include <rte_launch.h>
11 #include <rte_ethdev.h>
12 #include <rte_eth_ring.h>
13
14 #include "test.h"
15
16 #define RING_NAME "RING_PERF"
17 #define RING_SIZE 4096
18 #define MAX_BURST 32
19
20 /*
21  * the sizes to enqueue and dequeue in testing
22  * (marked volatile so they won't be seen as compile-time constants)
23  */
24 static const volatile unsigned bulk_sizes[] = { 1, 8, 32 };
25
26 /* The ring structure used for tests */
27 static struct rte_ring *r;
28 static uint16_t ring_ethdev_port;
29
30 /* Get cycle counts for dequeuing from an empty ring. Should be 2 or 3 cycles */
31 static void
32 test_empty_dequeue(void)
33 {
34         const unsigned iter_shift = 26;
35         const unsigned iterations = 1 << iter_shift;
36         unsigned i = 0;
37         void *burst[MAX_BURST];
38
39         const uint64_t sc_start = rte_rdtsc();
40         for (i = 0; i < iterations; i++)
41                 rte_ring_sc_dequeue_bulk(r, burst, bulk_sizes[0], NULL);
42         const uint64_t sc_end = rte_rdtsc();
43
44         const uint64_t eth_start = rte_rdtsc();
45         for (i = 0; i < iterations; i++)
46                 rte_eth_rx_burst(ring_ethdev_port, 0, (void *)burst,
47                                 bulk_sizes[0]);
48         const uint64_t eth_end = rte_rdtsc();
49
50         printf("Ring empty dequeue  : %.1F\n",
51                         (double)(sc_end - sc_start) / iterations);
52         printf("Ethdev empty dequeue: %.1F\n",
53                         (double)(eth_end - eth_start) / iterations);
54 }
55
56 /*
57  * Test function that determines how long an enqueue + dequeue of a single item
58  * takes on a single lcore. Result is for comparison with the bulk enq+deq.
59  */
60 static void
61 test_single_enqueue_dequeue(void)
62 {
63         const unsigned iter_shift = 24;
64         const unsigned iterations = 1 << iter_shift;
65         unsigned i = 0;
66         void *burst = NULL;
67         struct rte_mbuf *mburst[1] = { NULL };
68
69         const uint64_t sc_start = rte_rdtsc_precise();
70         rte_compiler_barrier();
71         for (i = 0; i < iterations; i++) {
72                 rte_ring_enqueue_bulk(r, &burst, 1, NULL);
73                 rte_ring_dequeue_bulk(r, &burst, 1, NULL);
74         }
75         const uint64_t sc_end = rte_rdtsc_precise();
76         rte_compiler_barrier();
77
78         const uint64_t eth_start = rte_rdtsc_precise();
79         rte_compiler_barrier();
80         for (i = 0; i < iterations; i++) {
81                 rte_eth_tx_burst(ring_ethdev_port, 0, mburst, 1);
82                 rte_eth_rx_burst(ring_ethdev_port, 0, mburst, 1);
83         }
84         const uint64_t eth_end = rte_rdtsc_precise();
85         rte_compiler_barrier();
86
87         printf("Ring single enq/dequeue  : %"PRIu64"\n",
88                         (sc_end-sc_start) >> iter_shift);
89         printf("Ethdev single enq/dequeue: %"PRIu64"\n",
90                         (eth_end-eth_start) >> iter_shift);
91 }
92
93 /* Times enqueue and dequeue on a single lcore */
94 static void
95 test_bulk_enqueue_dequeue(void)
96 {
97         const unsigned iter_shift = 23;
98         const unsigned iterations = 1 << iter_shift;
99         unsigned sz, i = 0;
100         struct rte_mbuf *burst[MAX_BURST] = {0};
101
102         for (sz = 0; sz < sizeof(bulk_sizes)/sizeof(bulk_sizes[0]); sz++) {
103                 const uint64_t sc_start = rte_rdtsc();
104                 for (i = 0; i < iterations; i++) {
105                         rte_ring_sp_enqueue_bulk(r, (void *)burst,
106                                         bulk_sizes[sz], NULL);
107                         rte_ring_sc_dequeue_bulk(r, (void *)burst,
108                                         bulk_sizes[sz], NULL);
109                 }
110                 const uint64_t sc_end = rte_rdtsc();
111
112                 const uint64_t eth_start = rte_rdtsc_precise();
113                 rte_compiler_barrier();
114                 for (i = 0; i < iterations; i++) {
115                         rte_eth_tx_burst(ring_ethdev_port, 0, burst, bulk_sizes[sz]);
116                         rte_eth_rx_burst(ring_ethdev_port, 0, burst, bulk_sizes[sz]);
117                 }
118                 const uint64_t eth_end = rte_rdtsc_precise();
119                 rte_compiler_barrier();
120
121                 double sc_avg = ((double)(sc_end-sc_start) /
122                                 (iterations * bulk_sizes[sz]));
123                 double eth_avg = ((double)(eth_end-eth_start) /
124                                 (iterations * bulk_sizes[sz]));
125
126                 printf("ring bulk enq/deq (size: %u) : %.1F\n", bulk_sizes[sz],
127                                 sc_avg);
128                 printf("ethdev bulk enq/deq (size:%u): %.1F\n", bulk_sizes[sz],
129                                 eth_avg);
130
131                 printf("\n");
132         }
133 }
134
135 static int
136 test_ring_pmd_perf(void)
137 {
138         r = rte_ring_create(RING_NAME, RING_SIZE, rte_socket_id(),
139                         RING_F_SP_ENQ|RING_F_SC_DEQ);
140         if (r == NULL && (r = rte_ring_lookup(RING_NAME)) == NULL)
141                 return -1;
142
143         ring_ethdev_port = rte_eth_from_ring(r);
144
145         printf("\n### Testing const single element enq/deq ###\n");
146         test_single_enqueue_dequeue();
147
148         printf("\n### Testing empty dequeue ###\n");
149         test_empty_dequeue();
150
151         printf("\n### Testing using a single lcore ###\n");
152         test_bulk_enqueue_dequeue();
153
154         return 0;
155 }
156
157 REGISTER_TEST_COMMAND(ring_pmd_perf_autotest, test_ring_pmd_perf);