/*-
- * Copyright (c) 2016 Solarflare Communications Inc.
+ * BSD LICENSE
+ *
+ * Copyright (c) 2016-2017 Solarflare Communications Inc.
* All rights reserved.
*
* This software was jointly developed between OKTET Labs (under contract
#include "sfc_ev.h"
#include "sfc_rx.h"
#include "sfc_tx.h"
+#include "sfc_kvargs.h"
/* Initial delay when waiting for event queue init complete event */
/* Management event queue polling period in microseconds */
#define SFC_MGMT_EV_QPOLL_PERIOD_US (US_PER_S)
+static const char *
+sfc_evq_type2str(enum sfc_evq_type type)
+{
+ switch (type) {
+ case SFC_EVQ_TYPE_MGMT:
+ return "mgmt-evq";
+ case SFC_EVQ_TYPE_RX:
+ return "rx-evq";
+ case SFC_EVQ_TYPE_TX:
+ return "tx-evq";
+ default:
+ SFC_ASSERT(B_FALSE);
+ return NULL;
+ }
+}
static boolean_t
sfc_ev_initialized(void *arg)
}
static boolean_t
-sfc_ev_rx(void *arg, __rte_unused uint32_t label, uint32_t id,
- uint32_t size, uint16_t flags)
+sfc_ev_nop_rx(void *arg, uint32_t label, uint32_t id,
+ uint32_t size, uint16_t flags)
{
struct sfc_evq *evq = arg;
- struct sfc_rxq *rxq;
+
+ sfc_err(evq->sa,
+ "EVQ %u unexpected Rx event label=%u id=%#x size=%u flags=%#x",
+ evq->evq_index, label, id, size, flags);
+ return B_TRUE;
+}
+
+static boolean_t
+sfc_ev_efx_rx(void *arg, __rte_unused uint32_t label, uint32_t id,
+ uint32_t size, uint16_t flags)
+{
+ struct sfc_evq *evq = arg;
+ struct sfc_efx_rxq *rxq;
unsigned int stop;
unsigned int pending_id;
unsigned int delta;
unsigned int i;
- struct sfc_rx_sw_desc *rxd;
+ struct sfc_efx_rx_sw_desc *rxd;
if (unlikely(evq->exception))
goto done;
- rxq = evq->rxq;
+ rxq = sfc_efx_rxq_by_dp_rxq(evq->dp_rxq);
SFC_ASSERT(rxq != NULL);
SFC_ASSERT(rxq->evq == evq);
- SFC_ASSERT(rxq->state & SFC_RXQ_STARTED);
+ SFC_ASSERT(rxq->flags & SFC_EFX_RXQ_FLAG_STARTED);
stop = (id + 1) & rxq->ptr_mask;
pending_id = rxq->pending & rxq->ptr_mask;
evq->exception = B_TRUE;
sfc_err(evq->sa,
"EVQ %u RxQ %u invalid RX abort "
- "(id=%#x size=%u flags=%#x); needs restart\n",
- evq->evq_index, sfc_rxq_sw_index(rxq),
+ "(id=%#x size=%u flags=%#x); needs restart",
+ evq->evq_index, rxq->dp.dpq.queue_id,
id, size, flags);
goto done;
}
sfc_err(evq->sa,
"EVQ %u RxQ %u completion out of order "
- "(id=%#x delta=%u flags=%#x); needs restart\n",
- evq->evq_index, sfc_rxq_sw_index(rxq), id, delta,
- flags);
+ "(id=%#x delta=%u flags=%#x); needs restart",
+ evq->evq_index, rxq->dp.dpq.queue_id,
+ id, delta, flags);
goto done;
}
return B_FALSE;
}
+static boolean_t
+sfc_ev_dp_rx(void *arg, __rte_unused uint32_t label, uint32_t id,
+ __rte_unused uint32_t size, __rte_unused uint16_t flags)
+{
+ struct sfc_evq *evq = arg;
+ struct sfc_dp_rxq *dp_rxq;
+
+ dp_rxq = evq->dp_rxq;
+ SFC_ASSERT(dp_rxq != NULL);
+
+ SFC_ASSERT(evq->sa->dp_rx->qrx_ev != NULL);
+ return evq->sa->dp_rx->qrx_ev(dp_rxq, id);
+}
+
+static boolean_t
+sfc_ev_nop_tx(void *arg, uint32_t label, uint32_t id)
+{
+ struct sfc_evq *evq = arg;
+
+ sfc_err(evq->sa, "EVQ %u unexpected Tx event label=%u id=%#x",
+ evq->evq_index, label, id);
+ return B_TRUE;
+}
+
static boolean_t
sfc_ev_tx(void *arg, __rte_unused uint32_t label, uint32_t id)
{
struct sfc_evq *evq = arg;
- struct sfc_txq *txq;
+ struct sfc_dp_txq *dp_txq;
+ struct sfc_efx_txq *txq;
unsigned int stop;
unsigned int delta;
- txq = evq->txq;
+ dp_txq = evq->dp_txq;
+ SFC_ASSERT(dp_txq != NULL);
- SFC_ASSERT(txq != NULL);
+ txq = sfc_efx_txq_by_dp_txq(dp_txq);
SFC_ASSERT(txq->evq == evq);
- if (unlikely((txq->state & SFC_TXQ_STARTED) == 0))
+ if (unlikely((txq->flags & SFC_EFX_TXQ_FLAG_STARTED) == 0))
goto done;
stop = (id + 1) & txq->ptr_mask;
return B_FALSE;
}
+static boolean_t
+sfc_ev_dp_tx(void *arg, __rte_unused uint32_t label, uint32_t id)
+{
+ struct sfc_evq *evq = arg;
+ struct sfc_dp_txq *dp_txq;
+
+ dp_txq = evq->dp_txq;
+ SFC_ASSERT(dp_txq != NULL);
+
+ SFC_ASSERT(evq->sa->dp_tx->qtx_ev != NULL);
+ return evq->sa->dp_tx->qtx_ev(dp_txq, id);
+}
+
static boolean_t
sfc_ev_exception(void *arg, __rte_unused uint32_t code,
__rte_unused uint32_t data)
return B_TRUE;
}
+static boolean_t
+sfc_ev_nop_rxq_flush_done(void *arg, uint32_t rxq_hw_index)
+{
+ struct sfc_evq *evq = arg;
+
+ sfc_err(evq->sa, "EVQ %u unexpected RxQ %u flush done",
+ evq->evq_index, rxq_hw_index);
+ return B_TRUE;
+}
+
static boolean_t
sfc_ev_rxq_flush_done(void *arg, __rte_unused uint32_t rxq_hw_index)
{
struct sfc_evq *evq = arg;
+ struct sfc_dp_rxq *dp_rxq;
struct sfc_rxq *rxq;
- rxq = evq->rxq;
+ dp_rxq = evq->dp_rxq;
+ SFC_ASSERT(dp_rxq != NULL);
+
+ rxq = sfc_rxq_by_dp_rxq(dp_rxq);
SFC_ASSERT(rxq != NULL);
SFC_ASSERT(rxq->hw_index == rxq_hw_index);
SFC_ASSERT(rxq->evq == evq);
return B_FALSE;
}
+static boolean_t
+sfc_ev_nop_rxq_flush_failed(void *arg, uint32_t rxq_hw_index)
+{
+ struct sfc_evq *evq = arg;
+
+ sfc_err(evq->sa, "EVQ %u unexpected RxQ %u flush failed",
+ evq->evq_index, rxq_hw_index);
+ return B_TRUE;
+}
+
static boolean_t
sfc_ev_rxq_flush_failed(void *arg, __rte_unused uint32_t rxq_hw_index)
{
struct sfc_evq *evq = arg;
+ struct sfc_dp_rxq *dp_rxq;
struct sfc_rxq *rxq;
- rxq = evq->rxq;
+ dp_rxq = evq->dp_rxq;
+ SFC_ASSERT(dp_rxq != NULL);
+
+ rxq = sfc_rxq_by_dp_rxq(dp_rxq);
SFC_ASSERT(rxq != NULL);
SFC_ASSERT(rxq->hw_index == rxq_hw_index);
SFC_ASSERT(rxq->evq == evq);
return B_FALSE;
}
+static boolean_t
+sfc_ev_nop_txq_flush_done(void *arg, uint32_t txq_hw_index)
+{
+ struct sfc_evq *evq = arg;
+
+ sfc_err(evq->sa, "EVQ %u unexpected TxQ %u flush done",
+ evq->evq_index, txq_hw_index);
+ return B_TRUE;
+}
+
static boolean_t
sfc_ev_txq_flush_done(void *arg, __rte_unused uint32_t txq_hw_index)
{
struct sfc_evq *evq = arg;
+ struct sfc_dp_txq *dp_txq;
struct sfc_txq *txq;
- txq = evq->txq;
+ dp_txq = evq->dp_txq;
+ SFC_ASSERT(dp_txq != NULL);
+
+ txq = sfc_txq_by_dp_txq(dp_txq);
SFC_ASSERT(txq != NULL);
SFC_ASSERT(txq->hw_index == txq_hw_index);
SFC_ASSERT(txq->evq == evq);
return B_TRUE;
}
+static boolean_t
+sfc_ev_nop_link_change(void *arg, __rte_unused efx_link_mode_t link_mode)
+{
+ struct sfc_evq *evq = arg;
+
+ sfc_err(evq->sa, "EVQ %u unexpected link change event",
+ evq->evq_index);
+ return B_TRUE;
+}
+
static boolean_t
sfc_ev_link_change(void *arg, efx_link_mode_t link_mode)
{
struct sfc_adapter *sa = evq->sa;
struct rte_eth_link *dev_link = &sa->eth_dev->data->dev_link;
struct rte_eth_link new_link;
+ uint64_t new_link_u64;
+ uint64_t old_link_u64;
EFX_STATIC_ASSERT(sizeof(*dev_link) == sizeof(rte_atomic64_t));
sfc_port_link_mode_to_info(link_mode, &new_link);
- rte_atomic64_set((rte_atomic64_t *)dev_link, *(uint64_t *)&new_link);
+
+ new_link_u64 = *(uint64_t *)&new_link;
+ do {
+ old_link_u64 = rte_atomic64_read((rte_atomic64_t *)dev_link);
+ if (old_link_u64 == new_link_u64)
+ break;
+
+ if (rte_atomic64_cmpset((volatile uint64_t *)dev_link,
+ old_link_u64, new_link_u64)) {
+ evq->sa->port.lsc_seq++;
+ break;
+ }
+ } while (B_TRUE);
return B_FALSE;
}
static const efx_ev_callbacks_t sfc_ev_callbacks = {
.eec_initialized = sfc_ev_initialized,
- .eec_rx = sfc_ev_rx,
- .eec_tx = sfc_ev_tx,
+ .eec_rx = sfc_ev_nop_rx,
+ .eec_tx = sfc_ev_nop_tx,
+ .eec_exception = sfc_ev_exception,
+ .eec_rxq_flush_done = sfc_ev_nop_rxq_flush_done,
+ .eec_rxq_flush_failed = sfc_ev_nop_rxq_flush_failed,
+ .eec_txq_flush_done = sfc_ev_nop_txq_flush_done,
+ .eec_software = sfc_ev_software,
+ .eec_sram = sfc_ev_sram,
+ .eec_wake_up = sfc_ev_wake_up,
+ .eec_timer = sfc_ev_timer,
+ .eec_link_change = sfc_ev_link_change,
+};
+
+static const efx_ev_callbacks_t sfc_ev_callbacks_efx_rx = {
+ .eec_initialized = sfc_ev_initialized,
+ .eec_rx = sfc_ev_efx_rx,
+ .eec_tx = sfc_ev_nop_tx,
+ .eec_exception = sfc_ev_exception,
+ .eec_rxq_flush_done = sfc_ev_rxq_flush_done,
+ .eec_rxq_flush_failed = sfc_ev_rxq_flush_failed,
+ .eec_txq_flush_done = sfc_ev_nop_txq_flush_done,
+ .eec_software = sfc_ev_software,
+ .eec_sram = sfc_ev_sram,
+ .eec_wake_up = sfc_ev_wake_up,
+ .eec_timer = sfc_ev_timer,
+ .eec_link_change = sfc_ev_nop_link_change,
+};
+
+static const efx_ev_callbacks_t sfc_ev_callbacks_dp_rx = {
+ .eec_initialized = sfc_ev_initialized,
+ .eec_rx = sfc_ev_dp_rx,
+ .eec_tx = sfc_ev_nop_tx,
.eec_exception = sfc_ev_exception,
.eec_rxq_flush_done = sfc_ev_rxq_flush_done,
.eec_rxq_flush_failed = sfc_ev_rxq_flush_failed,
+ .eec_txq_flush_done = sfc_ev_nop_txq_flush_done,
+ .eec_software = sfc_ev_software,
+ .eec_sram = sfc_ev_sram,
+ .eec_wake_up = sfc_ev_wake_up,
+ .eec_timer = sfc_ev_timer,
+ .eec_link_change = sfc_ev_nop_link_change,
+};
+
+static const efx_ev_callbacks_t sfc_ev_callbacks_efx_tx = {
+ .eec_initialized = sfc_ev_initialized,
+ .eec_rx = sfc_ev_nop_rx,
+ .eec_tx = sfc_ev_tx,
+ .eec_exception = sfc_ev_exception,
+ .eec_rxq_flush_done = sfc_ev_nop_rxq_flush_done,
+ .eec_rxq_flush_failed = sfc_ev_nop_rxq_flush_failed,
.eec_txq_flush_done = sfc_ev_txq_flush_done,
.eec_software = sfc_ev_software,
.eec_sram = sfc_ev_sram,
.eec_wake_up = sfc_ev_wake_up,
.eec_timer = sfc_ev_timer,
- .eec_link_change = sfc_ev_link_change,
+ .eec_link_change = sfc_ev_nop_link_change,
+};
+
+static const efx_ev_callbacks_t sfc_ev_callbacks_dp_tx = {
+ .eec_initialized = sfc_ev_initialized,
+ .eec_rx = sfc_ev_nop_rx,
+ .eec_tx = sfc_ev_dp_tx,
+ .eec_exception = sfc_ev_exception,
+ .eec_rxq_flush_done = sfc_ev_nop_rxq_flush_done,
+ .eec_rxq_flush_failed = sfc_ev_nop_rxq_flush_failed,
+ .eec_txq_flush_done = sfc_ev_txq_flush_done,
+ .eec_software = sfc_ev_software,
+ .eec_sram = sfc_ev_sram,
+ .eec_wake_up = sfc_ev_wake_up,
+ .eec_timer = sfc_ev_timer,
+ .eec_link_change = sfc_ev_nop_link_change,
};
/* Synchronize the DMA memory for reading not required */
- efx_ev_qpoll(evq->common, &evq->read_ptr, &sfc_ev_callbacks, evq);
+ efx_ev_qpoll(evq->common, &evq->read_ptr, evq->callbacks, evq);
if (unlikely(evq->exception) && sfc_adapter_trylock(evq->sa)) {
struct sfc_adapter *sa = evq->sa;
int rc;
- if ((evq->rxq != NULL) && (evq->rxq->state & SFC_RXQ_RUNNING)) {
- unsigned int rxq_sw_index = sfc_rxq_sw_index(evq->rxq);
+ if (evq->dp_rxq != NULL) {
+ unsigned int rxq_sw_index;
+
+ rxq_sw_index = evq->dp_rxq->dpq.queue_id;
sfc_warn(sa,
"restart RxQ %u because of exception on its EvQ %u",
rxq_sw_index);
}
- if (evq->txq != NULL) {
- unsigned int txq_sw_index = sfc_txq_sw_index(evq->txq);
+ if (evq->dp_txq != NULL) {
+ unsigned int txq_sw_index;
+
+ txq_sw_index = evq->dp_txq->dpq.queue_id;
sfc_warn(sa,
"restart TxQ %u because of exception on its EvQ %u",
/* Create the common code event queue */
rc = efx_ev_qcreate(sa->nic, sw_index, esmp, evq_info->entries,
- 0 /* unused on EF10 */, 0,
- EFX_EVQ_FLAGS_TYPE_THROUGHPUT |
- EFX_EVQ_FLAGS_NOTIFY_DISABLED,
+ 0 /* unused on EF10 */, 0, evq_info->flags,
&evq->common);
if (rc != 0)
goto fail_ev_qcreate;
+ SFC_ASSERT(evq->dp_rxq == NULL || evq->dp_txq == NULL);
+ if (evq->dp_rxq != 0) {
+ if (strcmp(sa->dp_rx->dp.name, SFC_KVARG_DATAPATH_EFX) == 0)
+ evq->callbacks = &sfc_ev_callbacks_efx_rx;
+ else
+ evq->callbacks = &sfc_ev_callbacks_dp_rx;
+ } else if (evq->dp_txq != 0) {
+ if (strcmp(sa->dp_tx->dp.name, SFC_KVARG_DATAPATH_EFX) == 0)
+ evq->callbacks = &sfc_ev_callbacks_efx_tx;
+ else
+ evq->callbacks = &sfc_ev_callbacks_dp_tx;
+ } else {
+ evq->callbacks = &sfc_ev_callbacks;
+ }
+
evq->init_state = SFC_EVQ_STARTING;
/* Wait for the initialization event */
return;
evq->init_state = SFC_EVQ_INITIALIZED;
+ evq->callbacks = NULL;
evq->read_ptr = 0;
evq->exception = B_FALSE;
rc = rte_eal_alarm_set(SFC_MGMT_EV_QPOLL_PERIOD_US,
sfc_ev_mgmt_periodic_qpoll, sa);
- if (rc != 0)
- sfc_panic(sa,
- "cannot rearm management EVQ polling alarm (rc=%d)",
- rc);
+ if (rc == -ENOTSUP) {
+ sfc_warn(sa, "alarms are not supported");
+ sfc_warn(sa, "management EVQ must be polled indirectly using no-wait link status update");
+ } else if (rc != 0) {
+ sfc_err(sa,
+ "cannot rearm management EVQ polling alarm (rc=%d)",
+ rc);
+ }
}
static void
if (rc != 0)
goto fail_mgmt_evq_start;
+ if (sa->intr.lsc_intr) {
+ rc = sfc_ev_qprime(sa->evq_info[sa->mgmt_evq_index].evq);
+ if (rc != 0)
+ goto fail_evq0_prime;
+ }
+
rte_spinlock_unlock(&sa->mgmt_evq_lock);
/*
return 0;
+fail_evq0_prime:
+ sfc_ev_qstop(sa, 0);
+
fail_mgmt_evq_start:
rte_spinlock_unlock(&sa->mgmt_evq_lock);
efx_ev_fini(sa->nic);
int
sfc_ev_qinit(struct sfc_adapter *sa, unsigned int sw_index,
+ enum sfc_evq_type type, unsigned int type_index,
unsigned int entries, int socket_id)
{
struct sfc_evq_info *evq_info;
struct sfc_evq *evq;
int rc;
- sfc_log_init(sa, "sw_index=%u", sw_index);
+ sfc_log_init(sa, "sw_index=%u type=%s type_index=%u",
+ sw_index, sfc_evq_type2str(type), type_index);
evq_info = &sa->evq_info[sw_index];
SFC_ASSERT(entries <= evq_info->max_entries);
evq_info->entries = entries;
+ rc = ENOMEM;
evq = rte_zmalloc_socket("sfc-evq", sizeof(*evq), RTE_CACHE_LINE_SIZE,
socket_id);
if (evq == NULL)
- return ENOMEM;
+ goto fail_evq_alloc;
evq->sa = sa;
evq->evq_index = sw_index;
+ evq->type = type;
/* Allocate DMA space */
- rc = sfc_dma_alloc(sa, "evq", sw_index, EFX_EVQ_SIZE(evq_info->entries),
+ rc = sfc_dma_alloc(sa, sfc_evq_type2str(type), type_index,
+ EFX_EVQ_SIZE(evq_info->entries),
socket_id, &evq->mem);
if (rc != 0)
- return rc;
+ goto fail_dma_alloc;
evq->init_state = SFC_EVQ_INITIALIZED;
evq_info->evq = evq;
return 0;
+
+fail_dma_alloc:
+ rte_free(evq);
+
+fail_evq_alloc:
+
+ sfc_log_init(sa, "failed %d", rc);
+ return rc;
}
void
SFC_ASSERT(rte_is_power_of_2(max_entries));
evq_info->max_entries = max_entries;
+ evq_info->flags = sa->evq_flags |
+ ((sa->intr.lsc_intr && sw_index == sa->mgmt_evq_index) ?
+ EFX_EVQ_FLAGS_NOTIFY_INTERRUPT :
+ EFX_EVQ_FLAGS_NOTIFY_DISABLED);
+
+ return 0;
+}
+
+static int
+sfc_kvarg_perf_profile_handler(__rte_unused const char *key,
+ const char *value_str, void *opaque)
+{
+ uint64_t *value = opaque;
+
+ if (strcasecmp(value_str, SFC_KVARG_PERF_PROFILE_THROUGHPUT) == 0)
+ *value = EFX_EVQ_FLAGS_TYPE_THROUGHPUT;
+ else if (strcasecmp(value_str, SFC_KVARG_PERF_PROFILE_LOW_LATENCY) == 0)
+ *value = EFX_EVQ_FLAGS_TYPE_LOW_LATENCY;
+ else if (strcasecmp(value_str, SFC_KVARG_PERF_PROFILE_AUTO) == 0)
+ *value = EFX_EVQ_FLAGS_TYPE_AUTO;
+ else
+ return -EINVAL;
return 0;
}
sfc_log_init(sa, "entry");
+ sa->evq_flags = EFX_EVQ_FLAGS_TYPE_THROUGHPUT;
+ rc = sfc_kvargs_process(sa, SFC_KVARG_PERF_PROFILE,
+ sfc_kvarg_perf_profile_handler,
+ &sa->evq_flags);
+ if (rc != 0) {
+ sfc_err(sa, "invalid %s parameter value",
+ SFC_KVARG_PERF_PROFILE);
+ goto fail_kvarg_perf_profile;
+ }
+
sa->evq_count = sfc_ev_qcount(sa);
sa->mgmt_evq_index = 0;
rte_spinlock_init(&sa->mgmt_evq_lock);
goto fail_ev_qinit_info;
}
- rc = sfc_ev_qinit(sa, sa->mgmt_evq_index, SFC_MGMT_EVQ_ENTRIES,
- sa->socket_id);
+ rc = sfc_ev_qinit(sa, sa->mgmt_evq_index, SFC_EVQ_TYPE_MGMT, 0,
+ SFC_MGMT_EVQ_ENTRIES, sa->socket_id);
if (rc != 0)
goto fail_mgmt_evq_init;
fail_evqs_alloc:
sa->evq_count = 0;
+
+fail_kvarg_perf_profile:
sfc_log_init(sa, "failed %d", rc);
return rc;
}