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-rw-r--r--app/test-pmd/testpmd.c779
1 files changed, 580 insertions, 199 deletions
diff --git a/app/test-pmd/testpmd.c b/app/test-pmd/testpmd.c
index ee48db2a..9c0edcae 100644
--- a/app/test-pmd/testpmd.c
+++ b/app/test-pmd/testpmd.c
@@ -27,6 +27,7 @@
#include <rte_log.h>
#include <rte_debug.h>
#include <rte_cycles.h>
+#include <rte_malloc_heap.h>
#include <rte_memory.h>
#include <rte_memcpy.h>
#include <rte_launch.h>
@@ -63,6 +64,22 @@
#include "testpmd.h"
+#ifndef MAP_HUGETLB
+/* FreeBSD may not have MAP_HUGETLB (in fact, it probably doesn't) */
+#define HUGE_FLAG (0x40000)
+#else
+#define HUGE_FLAG MAP_HUGETLB
+#endif
+
+#ifndef MAP_HUGE_SHIFT
+/* older kernels (or FreeBSD) will not have this define */
+#define HUGE_SHIFT (26)
+#else
+#define HUGE_SHIFT MAP_HUGE_SHIFT
+#endif
+
+#define EXTMEM_HEAP_NAME "extmem"
+
uint16_t verbose_level = 0; /**< Silent by default. */
int testpmd_logtype; /**< Log type for testpmd logs */
@@ -88,9 +105,13 @@ uint8_t numa_support = 1; /**< numa enabled by default */
uint8_t socket_num = UMA_NO_CONFIG;
/*
- * Use ANONYMOUS mapped memory (might be not physically continuous) for mbufs.
+ * Select mempool allocation type:
+ * - native: use regular DPDK memory
+ * - anon: use regular DPDK memory to create mempool, but populate using
+ * anonymous memory (may not be IOVA-contiguous)
+ * - xmem: use externally allocated hugepage memory
*/
-uint8_t mp_anon = 0;
+uint8_t mp_alloc_type = MP_ALLOC_NATIVE;
/*
* Store specified sockets on which memory pool to be used by ports
@@ -157,6 +178,7 @@ struct fwd_engine * fwd_engines[] = {
&tx_only_engine,
&csum_fwd_engine,
&icmp_echo_engine,
+ &noisy_vnf_engine,
#if defined RTE_LIBRTE_PMD_SOFTNIC
&softnic_fwd_engine,
#endif
@@ -253,6 +275,40 @@ int16_t tx_free_thresh = RTE_PMD_PARAM_UNSET;
int16_t tx_rs_thresh = RTE_PMD_PARAM_UNSET;
/*
+ * Configurable value of buffered packets before sending.
+ */
+uint16_t noisy_tx_sw_bufsz;
+
+/*
+ * Configurable value of packet buffer timeout.
+ */
+uint16_t noisy_tx_sw_buf_flush_time;
+
+/*
+ * Configurable value for size of VNF internal memory area
+ * used for simulating noisy neighbour behaviour
+ */
+uint64_t noisy_lkup_mem_sz;
+
+/*
+ * Configurable value of number of random writes done in
+ * VNF simulation memory area.
+ */
+uint64_t noisy_lkup_num_writes;
+
+/*
+ * Configurable value of number of random reads done in
+ * VNF simulation memory area.
+ */
+uint64_t noisy_lkup_num_reads;
+
+/*
+ * Configurable value of number of random reads/writes done in
+ * VNF simulation memory area.
+ */
+uint64_t noisy_lkup_num_reads_writes;
+
+/*
* Receive Side Scaling (RSS) configuration.
*/
uint64_t rss_hf = ETH_RSS_IP; /* RSS IP by default. */
@@ -289,6 +345,24 @@ uint8_t rmv_interrupt = 1; /* enabled by default */
uint8_t hot_plug = 0; /**< hotplug disabled by default. */
+/* After attach, port setup is called on event or by iterator */
+bool setup_on_probe_event = true;
+
+/* Pretty printing of ethdev events */
+static const char * const eth_event_desc[] = {
+ [RTE_ETH_EVENT_UNKNOWN] = "unknown",
+ [RTE_ETH_EVENT_INTR_LSC] = "link state change",
+ [RTE_ETH_EVENT_QUEUE_STATE] = "queue state",
+ [RTE_ETH_EVENT_INTR_RESET] = "reset",
+ [RTE_ETH_EVENT_VF_MBOX] = "VF mbox",
+ [RTE_ETH_EVENT_IPSEC] = "IPsec",
+ [RTE_ETH_EVENT_MACSEC] = "MACsec",
+ [RTE_ETH_EVENT_INTR_RMV] = "device removal",
+ [RTE_ETH_EVENT_NEW] = "device probed",
+ [RTE_ETH_EVENT_DESTROY] = "device released",
+ [RTE_ETH_EVENT_MAX] = NULL,
+};
+
/*
* Display or mask ether events
* Default to all events except VF_MBOX
@@ -334,7 +408,6 @@ lcoreid_t latencystats_lcore_id = -1;
*/
struct rte_eth_rxmode rx_mode = {
.max_rx_pkt_len = ETHER_MAX_LEN, /**< Default maximum frame length. */
- .offloads = DEV_RX_OFFLOAD_CRC_STRIP,
};
struct rte_eth_txmode tx_mode = {
@@ -426,18 +499,16 @@ struct nvgre_encap_conf nvgre_encap_conf = {
};
/* Forward function declarations */
+static void setup_attached_port(portid_t pi);
static void map_port_queue_stats_mapping_registers(portid_t pi,
struct rte_port *port);
static void check_all_ports_link_status(uint32_t port_mask);
static int eth_event_callback(portid_t port_id,
enum rte_eth_event_type type,
void *param, void *ret_param);
-static void eth_dev_event_callback(char *device_name,
+static void eth_dev_event_callback(const char *device_name,
enum rte_dev_event_type type,
void *param);
-static int eth_dev_event_callback_register(void);
-static int eth_dev_event_callback_unregister(void);
-
/*
* Check if all the ports are started.
@@ -476,6 +547,8 @@ set_default_fwd_lcores_config(void)
nb_lc = 0;
for (i = 0; i < RTE_MAX_LCORE; i++) {
+ if (!rte_lcore_is_enabled(i))
+ continue;
sock_num = rte_lcore_to_socket_id(i);
if (new_socket_id(sock_num)) {
if (num_sockets >= RTE_MAX_NUMA_NODES) {
@@ -485,8 +558,6 @@ set_default_fwd_lcores_config(void)
}
socket_ids[num_sockets++] = sock_num;
}
- if (!rte_lcore_is_enabled(i))
- continue;
if (i == rte_get_master_lcore())
continue;
fwd_lcores_cpuids[nb_lc++] = i;
@@ -513,9 +584,21 @@ set_default_fwd_ports_config(void)
portid_t pt_id;
int i = 0;
- RTE_ETH_FOREACH_DEV(pt_id)
+ RTE_ETH_FOREACH_DEV(pt_id) {
fwd_ports_ids[i++] = pt_id;
+ /* Update sockets info according to the attached device */
+ int socket_id = rte_eth_dev_socket_id(pt_id);
+ if (socket_id >= 0 && new_socket_id(socket_id)) {
+ if (num_sockets >= RTE_MAX_NUMA_NODES) {
+ rte_exit(EXIT_FAILURE,
+ "Total sockets greater than %u\n",
+ RTE_MAX_NUMA_NODES);
+ }
+ socket_ids[num_sockets++] = socket_id;
+ }
+ }
+
nb_cfg_ports = nb_ports;
nb_fwd_ports = nb_ports;
}
@@ -528,6 +611,236 @@ set_def_fwd_config(void)
set_default_fwd_ports_config();
}
+/* extremely pessimistic estimation of memory required to create a mempool */
+static int
+calc_mem_size(uint32_t nb_mbufs, uint32_t mbuf_sz, size_t pgsz, size_t *out)
+{
+ unsigned int n_pages, mbuf_per_pg, leftover;
+ uint64_t total_mem, mbuf_mem, obj_sz;
+
+ /* there is no good way to predict how much space the mempool will
+ * occupy because it will allocate chunks on the fly, and some of those
+ * will come from default DPDK memory while some will come from our
+ * external memory, so just assume 128MB will be enough for everyone.
+ */
+ uint64_t hdr_mem = 128 << 20;
+
+ /* account for possible non-contiguousness */
+ obj_sz = rte_mempool_calc_obj_size(mbuf_sz, 0, NULL);
+ if (obj_sz > pgsz) {
+ TESTPMD_LOG(ERR, "Object size is bigger than page size\n");
+ return -1;
+ }
+
+ mbuf_per_pg = pgsz / obj_sz;
+ leftover = (nb_mbufs % mbuf_per_pg) > 0;
+ n_pages = (nb_mbufs / mbuf_per_pg) + leftover;
+
+ mbuf_mem = n_pages * pgsz;
+
+ total_mem = RTE_ALIGN(hdr_mem + mbuf_mem, pgsz);
+
+ if (total_mem > SIZE_MAX) {
+ TESTPMD_LOG(ERR, "Memory size too big\n");
+ return -1;
+ }
+ *out = (size_t)total_mem;
+
+ return 0;
+}
+
+static inline uint32_t
+bsf64(uint64_t v)
+{
+ return (uint32_t)__builtin_ctzll(v);
+}
+
+static inline uint32_t
+log2_u64(uint64_t v)
+{
+ if (v == 0)
+ return 0;
+ v = rte_align64pow2(v);
+ return bsf64(v);
+}
+
+static int
+pagesz_flags(uint64_t page_sz)
+{
+ /* as per mmap() manpage, all page sizes are log2 of page size
+ * shifted by MAP_HUGE_SHIFT
+ */
+ int log2 = log2_u64(page_sz);
+
+ return (log2 << HUGE_SHIFT);
+}
+
+static void *
+alloc_mem(size_t memsz, size_t pgsz, bool huge)
+{
+ void *addr;
+ int flags;
+
+ /* allocate anonymous hugepages */
+ flags = MAP_ANONYMOUS | MAP_PRIVATE;
+ if (huge)
+ flags |= HUGE_FLAG | pagesz_flags(pgsz);
+
+ addr = mmap(NULL, memsz, PROT_READ | PROT_WRITE, flags, -1, 0);
+ if (addr == MAP_FAILED)
+ return NULL;
+
+ return addr;
+}
+
+struct extmem_param {
+ void *addr;
+ size_t len;
+ size_t pgsz;
+ rte_iova_t *iova_table;
+ unsigned int iova_table_len;
+};
+
+static int
+create_extmem(uint32_t nb_mbufs, uint32_t mbuf_sz, struct extmem_param *param,
+ bool huge)
+{
+ uint64_t pgsizes[] = {RTE_PGSIZE_2M, RTE_PGSIZE_1G, /* x86_64, ARM */
+ RTE_PGSIZE_16M, RTE_PGSIZE_16G}; /* POWER */
+ unsigned int cur_page, n_pages, pgsz_idx;
+ size_t mem_sz, cur_pgsz;
+ rte_iova_t *iovas = NULL;
+ void *addr;
+ int ret;
+
+ for (pgsz_idx = 0; pgsz_idx < RTE_DIM(pgsizes); pgsz_idx++) {
+ /* skip anything that is too big */
+ if (pgsizes[pgsz_idx] > SIZE_MAX)
+ continue;
+
+ cur_pgsz = pgsizes[pgsz_idx];
+
+ /* if we were told not to allocate hugepages, override */
+ if (!huge)
+ cur_pgsz = sysconf(_SC_PAGESIZE);
+
+ ret = calc_mem_size(nb_mbufs, mbuf_sz, cur_pgsz, &mem_sz);
+ if (ret < 0) {
+ TESTPMD_LOG(ERR, "Cannot calculate memory size\n");
+ return -1;
+ }
+
+ /* allocate our memory */
+ addr = alloc_mem(mem_sz, cur_pgsz, huge);
+
+ /* if we couldn't allocate memory with a specified page size,
+ * that doesn't mean we can't do it with other page sizes, so
+ * try another one.
+ */
+ if (addr == NULL)
+ continue;
+
+ /* store IOVA addresses for every page in this memory area */
+ n_pages = mem_sz / cur_pgsz;
+
+ iovas = malloc(sizeof(*iovas) * n_pages);
+
+ if (iovas == NULL) {
+ TESTPMD_LOG(ERR, "Cannot allocate memory for iova addresses\n");
+ goto fail;
+ }
+ /* lock memory if it's not huge pages */
+ if (!huge)
+ mlock(addr, mem_sz);
+
+ /* populate IOVA addresses */
+ for (cur_page = 0; cur_page < n_pages; cur_page++) {
+ rte_iova_t iova;
+ size_t offset;
+ void *cur;
+
+ offset = cur_pgsz * cur_page;
+ cur = RTE_PTR_ADD(addr, offset);
+
+ /* touch the page before getting its IOVA */
+ *(volatile char *)cur = 0;
+
+ iova = rte_mem_virt2iova(cur);
+
+ iovas[cur_page] = iova;
+ }
+
+ break;
+ }
+ /* if we couldn't allocate anything */
+ if (iovas == NULL)
+ return -1;
+
+ param->addr = addr;
+ param->len = mem_sz;
+ param->pgsz = cur_pgsz;
+ param->iova_table = iovas;
+ param->iova_table_len = n_pages;
+
+ return 0;
+fail:
+ if (iovas)
+ free(iovas);
+ if (addr)
+ munmap(addr, mem_sz);
+
+ return -1;
+}
+
+static int
+setup_extmem(uint32_t nb_mbufs, uint32_t mbuf_sz, bool huge)
+{
+ struct extmem_param param;
+ int socket_id, ret;
+
+ memset(&param, 0, sizeof(param));
+
+ /* check if our heap exists */
+ socket_id = rte_malloc_heap_get_socket(EXTMEM_HEAP_NAME);
+ if (socket_id < 0) {
+ /* create our heap */
+ ret = rte_malloc_heap_create(EXTMEM_HEAP_NAME);
+ if (ret < 0) {
+ TESTPMD_LOG(ERR, "Cannot create heap\n");
+ return -1;
+ }
+ }
+
+ ret = create_extmem(nb_mbufs, mbuf_sz, &param, huge);
+ if (ret < 0) {
+ TESTPMD_LOG(ERR, "Cannot create memory area\n");
+ return -1;
+ }
+
+ /* we now have a valid memory area, so add it to heap */
+ ret = rte_malloc_heap_memory_add(EXTMEM_HEAP_NAME,
+ param.addr, param.len, param.iova_table,
+ param.iova_table_len, param.pgsz);
+
+ /* when using VFIO, memory is automatically mapped for DMA by EAL */
+
+ /* not needed any more */
+ free(param.iova_table);
+
+ if (ret < 0) {
+ TESTPMD_LOG(ERR, "Cannot add memory to heap\n");
+ munmap(param.addr, param.len);
+ return -1;
+ }
+
+ /* success */
+
+ TESTPMD_LOG(DEBUG, "Allocated %zuMB of external memory\n",
+ param.len >> 20);
+
+ return 0;
+}
+
/*
* Configuration initialisation done once at init time.
*/
@@ -546,27 +859,59 @@ mbuf_pool_create(uint16_t mbuf_seg_size, unsigned nb_mbuf,
"create a new mbuf pool <%s>: n=%u, size=%u, socket=%u\n",
pool_name, nb_mbuf, mbuf_seg_size, socket_id);
- if (mp_anon != 0) {
- rte_mp = rte_mempool_create_empty(pool_name, nb_mbuf,
- mb_size, (unsigned) mb_mempool_cache,
- sizeof(struct rte_pktmbuf_pool_private),
- socket_id, 0);
- if (rte_mp == NULL)
- goto err;
-
- if (rte_mempool_populate_anon(rte_mp) == 0) {
- rte_mempool_free(rte_mp);
- rte_mp = NULL;
- goto err;
- }
- rte_pktmbuf_pool_init(rte_mp, NULL);
- rte_mempool_obj_iter(rte_mp, rte_pktmbuf_init, NULL);
- } else {
- /* wrapper to rte_mempool_create() */
- TESTPMD_LOG(INFO, "preferred mempool ops selected: %s\n",
- rte_mbuf_best_mempool_ops());
- rte_mp = rte_pktmbuf_pool_create(pool_name, nb_mbuf,
- mb_mempool_cache, 0, mbuf_seg_size, socket_id);
+ switch (mp_alloc_type) {
+ case MP_ALLOC_NATIVE:
+ {
+ /* wrapper to rte_mempool_create() */
+ TESTPMD_LOG(INFO, "preferred mempool ops selected: %s\n",
+ rte_mbuf_best_mempool_ops());
+ rte_mp = rte_pktmbuf_pool_create(pool_name, nb_mbuf,
+ mb_mempool_cache, 0, mbuf_seg_size, socket_id);
+ break;
+ }
+ case MP_ALLOC_ANON:
+ {
+ rte_mp = rte_mempool_create_empty(pool_name, nb_mbuf,
+ mb_size, (unsigned int) mb_mempool_cache,
+ sizeof(struct rte_pktmbuf_pool_private),
+ socket_id, 0);
+ if (rte_mp == NULL)
+ goto err;
+
+ if (rte_mempool_populate_anon(rte_mp) == 0) {
+ rte_mempool_free(rte_mp);
+ rte_mp = NULL;
+ goto err;
+ }
+ rte_pktmbuf_pool_init(rte_mp, NULL);
+ rte_mempool_obj_iter(rte_mp, rte_pktmbuf_init, NULL);
+ break;
+ }
+ case MP_ALLOC_XMEM:
+ case MP_ALLOC_XMEM_HUGE:
+ {
+ int heap_socket;
+ bool huge = mp_alloc_type == MP_ALLOC_XMEM_HUGE;
+
+ if (setup_extmem(nb_mbuf, mbuf_seg_size, huge) < 0)
+ rte_exit(EXIT_FAILURE, "Could not create external memory\n");
+
+ heap_socket =
+ rte_malloc_heap_get_socket(EXTMEM_HEAP_NAME);
+ if (heap_socket < 0)
+ rte_exit(EXIT_FAILURE, "Could not get external memory socket ID\n");
+
+ TESTPMD_LOG(INFO, "preferred mempool ops selected: %s\n",
+ rte_mbuf_best_mempool_ops());
+ rte_mp = rte_pktmbuf_pool_create(pool_name, nb_mbuf,
+ mb_mempool_cache, 0, mbuf_seg_size,
+ heap_socket);
+ break;
+ }
+ default:
+ {
+ rte_exit(EXIT_FAILURE, "Invalid mempool creation mode\n");
+ }
}
err:
@@ -707,12 +1052,6 @@ init_config(void)
memset(port_per_socket,0,RTE_MAX_NUMA_NODES);
- if (numa_support) {
- memset(port_numa, NUMA_NO_CONFIG, RTE_MAX_ETHPORTS);
- memset(rxring_numa, NUMA_NO_CONFIG, RTE_MAX_ETHPORTS);
- memset(txring_numa, NUMA_NO_CONFIG, RTE_MAX_ETHPORTS);
- }
-
/* Configuration of logical cores. */
fwd_lcores = rte_zmalloc("testpmd: fwd_lcores",
sizeof(struct fwd_lcore *) * nb_lcores,
@@ -739,23 +1078,26 @@ init_config(void)
port->dev_conf.rxmode = rx_mode;
rte_eth_dev_info_get(pid, &port->dev_info);
- if (!(port->dev_info.rx_offload_capa &
- DEV_RX_OFFLOAD_CRC_STRIP))
- port->dev_conf.rxmode.offloads &=
- ~DEV_RX_OFFLOAD_CRC_STRIP;
if (!(port->dev_info.tx_offload_capa &
DEV_TX_OFFLOAD_MBUF_FAST_FREE))
port->dev_conf.txmode.offloads &=
~DEV_TX_OFFLOAD_MBUF_FAST_FREE;
+ if (!(port->dev_info.tx_offload_capa &
+ DEV_TX_OFFLOAD_MATCH_METADATA))
+ port->dev_conf.txmode.offloads &=
+ ~DEV_TX_OFFLOAD_MATCH_METADATA;
if (numa_support) {
if (port_numa[pid] != NUMA_NO_CONFIG)
port_per_socket[port_numa[pid]]++;
else {
uint32_t socket_id = rte_eth_dev_socket_id(pid);
- /* if socket_id is invalid, set to 0 */
+ /*
+ * if socket_id is invalid,
+ * set to the first available socket.
+ */
if (check_socket_id(socket_id) < 0)
- socket_id = 0;
+ socket_id = socket_ids[0];
port_per_socket[socket_id]++;
}
}
@@ -772,6 +1114,7 @@ init_config(void)
/* set flag to initialize port/queue */
port->need_reconfig = 1;
port->need_reconfig_queues = 1;
+ port->tx_metadata = 0;
}
/*
@@ -911,9 +1254,12 @@ init_fwd_streams(void)
else {
port->socket_id = rte_eth_dev_socket_id(pid);
- /* if socket_id is invalid, set to 0 */
+ /*
+ * if socket_id is invalid,
+ * set to the first available socket.
+ */
if (check_socket_id(port->socket_id) < 0)
- port->socket_id = 0;
+ port->socket_id = socket_ids[0];
}
}
else {
@@ -1045,8 +1391,9 @@ fwd_port_stats_display(portid_t port_id, struct rte_eth_stats *stats)
(uint64_t) (stats->ipackets + stats->imissed));
if (cur_fwd_eng == &csum_fwd_engine)
- printf(" Bad-ipcsum: %-14"PRIu64" Bad-l4csum: %-14"PRIu64" \n",
- port->rx_bad_ip_csum, port->rx_bad_l4_csum);
+ printf(" Bad-ipcsum: %-14"PRIu64" Bad-l4csum: %-14"PRIu64"Bad-outer-l4csum: %-14"PRIu64"\n",
+ port->rx_bad_ip_csum, port->rx_bad_l4_csum,
+ port->rx_bad_outer_l4_csum);
if ((stats->ierrors + stats->rx_nombuf) > 0) {
printf(" RX-error: %-"PRIu64"\n", stats->ierrors);
printf(" RX-nombufs: %-14"PRIu64"\n", stats->rx_nombuf);
@@ -1064,8 +1411,9 @@ fwd_port_stats_display(portid_t port_id, struct rte_eth_stats *stats)
(uint64_t) (stats->ipackets + stats->imissed));
if (cur_fwd_eng == &csum_fwd_engine)
- printf(" Bad-ipcsum:%14"PRIu64" Bad-l4csum:%14"PRIu64"\n",
- port->rx_bad_ip_csum, port->rx_bad_l4_csum);
+ printf(" Bad-ipcsum:%14"PRIu64" Bad-l4csum:%14"PRIu64" Bad-outer-l4csum: %-14"PRIu64"\n",
+ port->rx_bad_ip_csum, port->rx_bad_l4_csum,
+ port->rx_bad_outer_l4_csum);
if ((stats->ierrors + stats->rx_nombuf) > 0) {
printf(" RX-error:%"PRIu64"\n", stats->ierrors);
printf(" RX-nombufs: %14"PRIu64"\n",
@@ -1129,7 +1477,9 @@ fwd_stream_stats_display(streamid_t stream_id)
/* if checksum mode */
if (cur_fwd_eng == &csum_fwd_engine) {
printf(" RX- bad IP checksum: %-14u Rx- bad L4 checksum: "
- "%-14u\n", fs->rx_bad_ip_csum, fs->rx_bad_l4_csum);
+ "%-14u Rx- bad outer L4 checksum: %-14u\n",
+ fs->rx_bad_ip_csum, fs->rx_bad_l4_csum,
+ fs->rx_bad_outer_l4_csum);
}
#ifdef RTE_TEST_PMD_RECORD_BURST_STATS
@@ -1283,31 +1633,6 @@ launch_packet_forwarding(lcore_function_t *pkt_fwd_on_lcore)
}
/*
- * Update the forward ports list.
- */
-void
-update_fwd_ports(portid_t new_pid)
-{
- unsigned int i;
- unsigned int new_nb_fwd_ports = 0;
- int move = 0;
-
- for (i = 0; i < nb_fwd_ports; ++i) {
- if (port_id_is_invalid(fwd_ports_ids[i], DISABLED_WARN))
- move = 1;
- else if (move)
- fwd_ports_ids[new_nb_fwd_ports++] = fwd_ports_ids[i];
- else
- new_nb_fwd_ports++;
- }
- if (new_pid < RTE_MAX_ETHPORTS)
- fwd_ports_ids[new_nb_fwd_ports++] = new_pid;
-
- nb_fwd_ports = new_nb_fwd_ports;
- nb_cfg_ports = new_nb_fwd_ports;
-}
-
-/*
* Launch packet forwarding configuration.
*/
void
@@ -1383,6 +1708,7 @@ start_packet_forwarding(int with_tx_first)
fwd_streams[sm_id]->fwd_dropped = 0;
fwd_streams[sm_id]->rx_bad_ip_csum = 0;
fwd_streams[sm_id]->rx_bad_l4_csum = 0;
+ fwd_streams[sm_id]->rx_bad_outer_l4_csum = 0;
#ifdef RTE_TEST_PMD_RECORD_BURST_STATS
memset(&fwd_streams[sm_id]->rx_burst_stats, 0,
@@ -1488,6 +1814,9 @@ stop_packet_forwarding(void)
ports[fwd_streams[sm_id]->rx_port].rx_bad_l4_csum =
rx_bad_l4_csum;
+ ports[fwd_streams[sm_id]->rx_port].rx_bad_outer_l4_csum +=
+ fwd_streams[sm_id]->rx_bad_outer_l4_csum;
+
#ifdef RTE_TEST_PMD_RECORD_CORE_CYCLES
fwd_cycles = (uint64_t) (fwd_cycles +
fwd_streams[sm_id]->core_cycles);
@@ -1620,18 +1949,6 @@ port_is_started(portid_t port_id)
return 1;
}
-static int
-port_is_closed(portid_t port_id)
-{
- if (port_id_is_invalid(port_id, ENABLED_WARN))
- return 0;
-
- if (ports[port_id].port_status != RTE_PORT_CLOSED)
- return 0;
-
- return 1;
-}
-
int
start_port(portid_t pid)
{
@@ -1640,7 +1957,6 @@ start_port(portid_t pid)
queueid_t qi;
struct rte_port *port;
struct ether_addr mac_addr;
- enum rte_eth_event_type event_type;
if (port_id_is_invalid(pid, ENABLED_WARN))
return 0;
@@ -1670,7 +1986,7 @@ start_port(portid_t pid)
return -1;
}
}
-
+ configure_rxtx_dump_callbacks(0);
printf("Configuring Port %d (socket %u)\n", pi,
port->socket_id);
/* configure port */
@@ -1769,7 +2085,7 @@ start_port(portid_t pid)
return -1;
}
}
-
+ configure_rxtx_dump_callbacks(verbose_level);
/* start port */
if (rte_eth_dev_start(pi) < 0) {
printf("Fail to start port %d\n", pi);
@@ -1796,20 +2112,6 @@ start_port(portid_t pid)
need_check_link_status = 1;
}
- for (event_type = RTE_ETH_EVENT_UNKNOWN;
- event_type < RTE_ETH_EVENT_MAX;
- event_type++) {
- diag = rte_eth_dev_callback_register(RTE_ETH_ALL,
- event_type,
- eth_event_callback,
- NULL);
- if (diag) {
- printf("Failed to setup even callback for event %d\n",
- event_type);
- return -1;
- }
- }
-
if (need_check_link_status == 1 && !no_link_check)
check_all_ports_link_status(RTE_PORT_ALL);
else if (need_check_link_status == 0)
@@ -1868,6 +2170,28 @@ stop_port(portid_t pid)
printf("Done\n");
}
+static void
+remove_invalid_ports_in(portid_t *array, portid_t *total)
+{
+ portid_t i;
+ portid_t new_total = 0;
+
+ for (i = 0; i < *total; i++)
+ if (!port_id_is_invalid(array[i], DISABLED_WARN)) {
+ array[new_total] = array[i];
+ new_total++;
+ }
+ *total = new_total;
+}
+
+static void
+remove_invalid_ports(void)
+{
+ remove_invalid_ports_in(ports_ids, &nb_ports);
+ remove_invalid_ports_in(fwd_ports_ids, &nb_fwd_ports);
+ nb_cfg_ports = nb_fwd_ports;
+}
+
void
close_port(portid_t pid)
{
@@ -1910,6 +2234,8 @@ close_port(portid_t pid)
port_flow_flush(pi);
rte_eth_dev_close(pi);
+ remove_invalid_ports();
+
if (rte_atomic16_cmpset(&(port->port_status),
RTE_PORT_HANDLING, RTE_PORT_CLOSED) == 0)
printf("Port %d cannot be set to closed\n", pi);
@@ -1959,44 +2285,11 @@ reset_port(portid_t pid)
printf("Done\n");
}
-static int
-eth_dev_event_callback_register(void)
-{
- int ret;
-
- /* register the device event callback */
- ret = rte_dev_event_callback_register(NULL,
- eth_dev_event_callback, NULL);
- if (ret) {
- printf("Failed to register device event callback\n");
- return -1;
- }
-
- return 0;
-}
-
-
-static int
-eth_dev_event_callback_unregister(void)
-{
- int ret;
-
- /* unregister the device event callback */
- ret = rte_dev_event_callback_unregister(NULL,
- eth_dev_event_callback, NULL);
- if (ret < 0) {
- printf("Failed to unregister device event callback\n");
- return -1;
- }
-
- return 0;
-}
-
void
attach_port(char *identifier)
{
- portid_t pi = 0;
- unsigned int socket_id;
+ portid_t pi;
+ struct rte_dev_iterator iterator;
printf("Attaching a new port...\n");
@@ -2005,61 +2298,97 @@ attach_port(char *identifier)
return;
}
- if (rte_eth_dev_attach(identifier, &pi))
+ if (rte_dev_probe(identifier) != 0) {
+ TESTPMD_LOG(ERR, "Failed to attach port %s\n", identifier);
return;
+ }
+
+ /* first attach mode: event */
+ if (setup_on_probe_event) {
+ /* new ports are detected on RTE_ETH_EVENT_NEW event */
+ for (pi = 0; pi < RTE_MAX_ETHPORTS; pi++)
+ if (ports[pi].port_status == RTE_PORT_HANDLING &&
+ ports[pi].need_setup != 0)
+ setup_attached_port(pi);
+ return;
+ }
+
+ /* second attach mode: iterator */
+ RTE_ETH_FOREACH_MATCHING_DEV(pi, identifier, &iterator) {
+ /* setup ports matching the devargs used for probing */
+ if (port_is_forwarding(pi))
+ continue; /* port was already attached before */
+ setup_attached_port(pi);
+ }
+}
+
+static void
+setup_attached_port(portid_t pi)
+{
+ unsigned int socket_id;
socket_id = (unsigned)rte_eth_dev_socket_id(pi);
- /* if socket_id is invalid, set to 0 */
+ /* if socket_id is invalid, set to the first available socket. */
if (check_socket_id(socket_id) < 0)
- socket_id = 0;
+ socket_id = socket_ids[0];
reconfig(pi, socket_id);
rte_eth_promiscuous_enable(pi);
- ports_ids[nb_ports] = pi;
- nb_ports = rte_eth_dev_count_avail();
-
+ ports_ids[nb_ports++] = pi;
+ fwd_ports_ids[nb_fwd_ports++] = pi;
+ nb_cfg_ports = nb_fwd_ports;
+ ports[pi].need_setup = 0;
ports[pi].port_status = RTE_PORT_STOPPED;
- update_fwd_ports(pi);
-
printf("Port %d is attached. Now total ports is %d\n", pi, nb_ports);
printf("Done\n");
}
void
-detach_port(portid_t port_id)
+detach_port_device(portid_t port_id)
{
- char name[RTE_ETH_NAME_MAX_LEN];
- uint16_t i;
+ struct rte_device *dev;
+ portid_t sibling;
- printf("Detaching a port...\n");
+ printf("Removing a device...\n");
- if (!port_is_closed(port_id)) {
- printf("Please close port first\n");
+ dev = rte_eth_devices[port_id].device;
+ if (dev == NULL) {
+ printf("Device already removed\n");
return;
}
- if (ports[port_id].flow_list)
- port_flow_flush(port_id);
+ if (ports[port_id].port_status != RTE_PORT_CLOSED) {
+ if (ports[port_id].port_status != RTE_PORT_STOPPED) {
+ printf("Port not stopped\n");
+ return;
+ }
+ printf("Port was not closed\n");
+ if (ports[port_id].flow_list)
+ port_flow_flush(port_id);
+ }
- if (rte_eth_dev_detach(port_id, name)) {
- TESTPMD_LOG(ERR, "Failed to detach port %u\n", port_id);
+ if (rte_dev_remove(dev) != 0) {
+ TESTPMD_LOG(ERR, "Failed to detach device %s\n", dev->name);
return;
}
- for (i = 0; i < nb_ports; i++) {
- if (ports_ids[i] == port_id) {
- ports_ids[i] = ports_ids[nb_ports-1];
- ports_ids[nb_ports-1] = 0;
- break;
+ for (sibling = 0; sibling < RTE_MAX_ETHPORTS; sibling++) {
+ if (rte_eth_devices[sibling].device != dev)
+ continue;
+ /* reset mapping between old ports and removed device */
+ rte_eth_devices[sibling].device = NULL;
+ if (ports[sibling].port_status != RTE_PORT_CLOSED) {
+ /* sibling ports are forced to be closed */
+ ports[sibling].port_status = RTE_PORT_CLOSED;
+ printf("Port %u is closed\n", sibling);
}
}
- nb_ports = rte_eth_dev_count_avail();
- update_fwd_ports(RTE_MAX_ETHPORTS);
+ remove_invalid_ports();
- printf("Port %u is detached. Now total ports is %d\n",
- port_id, nb_ports);
+ printf("Device of port %u is detached\n", port_id);
+ printf("Now total ports is %d\n", nb_ports);
printf("Done\n");
return;
}
@@ -2092,20 +2421,32 @@ pmd_test_exit(void)
*/
device = rte_eth_devices[pt_id].device;
if (device && !strcmp(device->driver->name, "net_virtio_user"))
- detach_port(pt_id);
+ detach_port_device(pt_id);
}
}
if (hot_plug) {
ret = rte_dev_event_monitor_stop();
- if (ret)
+ if (ret) {
RTE_LOG(ERR, EAL,
"fail to stop device event monitor.");
+ return;
+ }
- ret = eth_dev_event_callback_unregister();
- if (ret)
+ ret = rte_dev_event_callback_unregister(NULL,
+ eth_dev_event_callback, NULL);
+ if (ret < 0) {
+ RTE_LOG(ERR, EAL,
+ "fail to unregister device event callback.\n");
+ return;
+ }
+
+ ret = rte_dev_hotplug_handle_disable();
+ if (ret) {
RTE_LOG(ERR, EAL,
- "fail to unregister all event callbacks.");
+ "fail to disable hotplug handling.\n");
+ return;
+ }
}
printf("\nBye...\n");
@@ -2192,7 +2533,7 @@ rmv_event_callback(void *arg)
stop_port(port_id);
no_link_check = org_no_link_check;
close_port(port_id);
- detach_port(port_id);
+ detach_port_device(port_id);
if (need_to_start)
start_packet_forwarding(0);
}
@@ -2202,38 +2543,27 @@ static int
eth_event_callback(portid_t port_id, enum rte_eth_event_type type, void *param,
void *ret_param)
{
- static const char * const event_desc[] = {
- [RTE_ETH_EVENT_UNKNOWN] = "Unknown",
- [RTE_ETH_EVENT_INTR_LSC] = "LSC",
- [RTE_ETH_EVENT_QUEUE_STATE] = "Queue state",
- [RTE_ETH_EVENT_INTR_RESET] = "Interrupt reset",
- [RTE_ETH_EVENT_VF_MBOX] = "VF Mbox",
- [RTE_ETH_EVENT_IPSEC] = "IPsec",
- [RTE_ETH_EVENT_MACSEC] = "MACsec",
- [RTE_ETH_EVENT_INTR_RMV] = "device removal",
- [RTE_ETH_EVENT_NEW] = "device probed",
- [RTE_ETH_EVENT_DESTROY] = "device released",
- [RTE_ETH_EVENT_MAX] = NULL,
- };
-
RTE_SET_USED(param);
RTE_SET_USED(ret_param);
if (type >= RTE_ETH_EVENT_MAX) {
- fprintf(stderr, "\nPort %" PRIu8 ": %s called upon invalid event %d\n",
+ fprintf(stderr, "\nPort %" PRIu16 ": %s called upon invalid event %d\n",
port_id, __func__, type);
fflush(stderr);
} else if (event_print_mask & (UINT32_C(1) << type)) {
- printf("\nPort %" PRIu8 ": %s event\n", port_id,
- event_desc[type]);
+ printf("\nPort %" PRIu16 ": %s event\n", port_id,
+ eth_event_desc[type]);
fflush(stdout);
}
- if (port_id_is_invalid(port_id, DISABLED_WARN))
- return 0;
-
switch (type) {
+ case RTE_ETH_EVENT_NEW:
+ ports[port_id].need_setup = 1;
+ ports[port_id].port_status = RTE_PORT_HANDLING;
+ break;
case RTE_ETH_EVENT_INTR_RMV:
+ if (port_id_is_invalid(port_id, DISABLED_WARN))
+ break;
if (rte_eal_alarm_set(100000,
rmv_event_callback, (void *)(intptr_t)port_id))
fprintf(stderr, "Could not set up deferred device removal\n");
@@ -2244,11 +2574,36 @@ eth_event_callback(portid_t port_id, enum rte_eth_event_type type, void *param,
return 0;
}
+static int
+register_eth_event_callback(void)
+{
+ int ret;
+ enum rte_eth_event_type event;
+
+ for (event = RTE_ETH_EVENT_UNKNOWN;
+ event < RTE_ETH_EVENT_MAX; event++) {
+ ret = rte_eth_dev_callback_register(RTE_ETH_ALL,
+ event,
+ eth_event_callback,
+ NULL);
+ if (ret != 0) {
+ TESTPMD_LOG(ERR, "Failed to register callback for "
+ "%s event\n", eth_event_desc[event]);
+ return -1;
+ }
+ }
+
+ return 0;
+}
+
/* This function is used by the interrupt thread */
static void
-eth_dev_event_callback(char *device_name, enum rte_dev_event_type type,
+eth_dev_event_callback(const char *device_name, enum rte_dev_event_type type,
__rte_unused void *arg)
{
+ uint16_t port_id;
+ int ret;
+
if (type >= RTE_DEV_EVENT_MAX) {
fprintf(stderr, "%s called upon invalid event %d\n",
__func__, type);
@@ -2259,9 +2614,13 @@ eth_dev_event_callback(char *device_name, enum rte_dev_event_type type,
case RTE_DEV_EVENT_REMOVE:
RTE_LOG(ERR, EAL, "The device: %s has been removed!\n",
device_name);
- /* TODO: After finish failure handle, begin to stop
- * packet forward, stop port, close port, detach port.
- */
+ ret = rte_eth_dev_get_port_by_name(device_name, &port_id);
+ if (ret) {
+ RTE_LOG(ERR, EAL, "can not get port by device %s!\n",
+ device_name);
+ return;
+ }
+ rmv_event_callback((void *)(intptr_t)port_id);
break;
case RTE_DEV_EVENT_ADD:
RTE_LOG(ERR, EAL, "The device: %s has been added!\n",
@@ -2650,6 +3009,11 @@ init_port(void)
"rte_zmalloc(%d struct rte_port) failed\n",
RTE_MAX_ETHPORTS);
}
+
+ /* Initialize ports NUMA structures */
+ memset(port_numa, NUMA_NO_CONFIG, RTE_MAX_ETHPORTS);
+ memset(rxring_numa, NUMA_NO_CONFIG, RTE_MAX_ETHPORTS);
+ memset(txring_numa, NUMA_NO_CONFIG, RTE_MAX_ETHPORTS);
}
static void
@@ -2716,6 +3080,10 @@ main(int argc, char** argv)
rte_panic("Cannot register log type");
rte_log_set_level(testpmd_logtype, RTE_LOG_DEBUG);
+ ret = register_eth_event_callback();
+ if (ret != 0)
+ rte_panic("Cannot register for ethdev events");
+
#ifdef RTE_LIBRTE_PDUMP
/* initialize packet capture framework */
rte_pdump_init(NULL);
@@ -2784,14 +3152,27 @@ main(int argc, char** argv)
init_config();
if (hot_plug) {
- /* enable hot plug monitoring */
+ ret = rte_dev_hotplug_handle_enable();
+ if (ret) {
+ RTE_LOG(ERR, EAL,
+ "fail to enable hotplug handling.");
+ return -1;
+ }
+
ret = rte_dev_event_monitor_start();
if (ret) {
- rte_errno = EINVAL;
+ RTE_LOG(ERR, EAL,
+ "fail to start device event monitoring.");
return -1;
}
- eth_dev_event_callback_register();
+ ret = rte_dev_event_callback_register(NULL,
+ eth_dev_event_callback, NULL);
+ if (ret) {
+ RTE_LOG(ERR, EAL,
+ "fail to register device event callback\n");
+ return -1;
+ }
}
if (start_port(RTE_PORT_ALL) != 0)