ethtool.c 33.4 KB
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// SPDX-License-Identifier: GPL-2.0-only
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/****************************************************************************
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 * Driver for Solarflare network controllers and boards
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 * Copyright 2005-2006 Fen Systems Ltd.
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 * Copyright 2006-2013 Solarflare Communications Inc.
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 */

#include <linux/netdevice.h>
#include <linux/ethtool.h>
#include <linux/rtnetlink.h>
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#include <linux/in.h>
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#include "net_driver.h"
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#include "workarounds.h"
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#include "selftest.h"
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#include "efx.h"
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#include "efx_channels.h"
#include "rx_common.h"
#include "tx_common.h"
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#include "ethtool_common.h"
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#include "filter.h"
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#include "nic.h"
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#define EFX_ETHTOOL_EEPROM_MAGIC 0xEFAB

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/**************************************************************************
 *
 * Ethtool operations
 *
 **************************************************************************
 */

/* Identify device by flashing LEDs */
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static int efx_ethtool_phys_id(struct net_device *net_dev,
			       enum ethtool_phys_id_state state)
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{
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	struct efx_nic *efx = netdev_priv(net_dev);
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	enum efx_led_mode mode = EFX_LED_DEFAULT;
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	switch (state) {
	case ETHTOOL_ID_ON:
		mode = EFX_LED_ON;
		break;
	case ETHTOOL_ID_OFF:
		mode = EFX_LED_OFF;
		break;
	case ETHTOOL_ID_INACTIVE:
		mode = EFX_LED_DEFAULT;
		break;
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	case ETHTOOL_ID_ACTIVE:
		return 1;	/* cycle on/off once per second */
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	}
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	efx->type->set_id_led(efx, mode);
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	return 0;
}

/* This must be called with rtnl_lock held. */
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static int
efx_ethtool_get_link_ksettings(struct net_device *net_dev,
			       struct ethtool_link_ksettings *cmd)
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{
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	struct efx_nic *efx = netdev_priv(net_dev);
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	struct efx_link_state *link_state = &efx->link_state;
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	u32 supported;
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	mutex_lock(&efx->mac_lock);
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	efx->phy_op->get_link_ksettings(efx, cmd);
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	mutex_unlock(&efx->mac_lock);

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	/* Both MACs support pause frames (bidirectional and respond-only) */
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	ethtool_convert_link_mode_to_legacy_u32(&supported,
						cmd->link_modes.supported);

	supported |= SUPPORTED_Pause | SUPPORTED_Asym_Pause;

	ethtool_convert_legacy_u32_to_link_mode(cmd->link_modes.supported,
						supported);
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	if (LOOPBACK_INTERNAL(efx)) {
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		cmd->base.speed = link_state->speed;
		cmd->base.duplex = link_state->fd ? DUPLEX_FULL : DUPLEX_HALF;
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	}
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	return 0;
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}

/* This must be called with rtnl_lock held. */
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static int
efx_ethtool_set_link_ksettings(struct net_device *net_dev,
			       const struct ethtool_link_ksettings *cmd)
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{
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	struct efx_nic *efx = netdev_priv(net_dev);
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	int rc;

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	/* GMAC does not support 1000Mbps HD */
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	if ((cmd->base.speed == SPEED_1000) &&
	    (cmd->base.duplex != DUPLEX_FULL)) {
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		netif_dbg(efx, drv, efx->net_dev,
			  "rejecting unsupported 1000Mbps HD setting\n");
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		return -EINVAL;
	}

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	mutex_lock(&efx->mac_lock);
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	rc = efx->phy_op->set_link_ksettings(efx, cmd);
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	mutex_unlock(&efx->mac_lock);
	return rc;
}

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static int efx_ethtool_get_regs_len(struct net_device *net_dev)
{
	return efx_nic_get_regs_len(netdev_priv(net_dev));
}

static void efx_ethtool_get_regs(struct net_device *net_dev,
				 struct ethtool_regs *regs, void *buf)
{
	struct efx_nic *efx = netdev_priv(net_dev);

	regs->version = efx->type->revision;
	efx_nic_get_regs(efx, buf);
}

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static void efx_ethtool_self_test(struct net_device *net_dev,
				  struct ethtool_test *test, u64 *data)
{
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	struct efx_nic *efx = netdev_priv(net_dev);
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	struct efx_self_tests *efx_tests;
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	bool already_up;
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	int rc = -ENOMEM;

	efx_tests = kzalloc(sizeof(*efx_tests), GFP_KERNEL);
	if (!efx_tests)
		goto fail;

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	if (efx->state != STATE_READY) {
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		rc = -EBUSY;
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		goto out;
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	}

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	netif_info(efx, drv, efx->net_dev, "starting %sline testing\n",
		   (test->flags & ETH_TEST_FL_OFFLINE) ? "off" : "on");

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	/* We need rx buffers and interrupts. */
	already_up = (efx->net_dev->flags & IFF_UP);
	if (!already_up) {
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		rc = dev_open(efx->net_dev, NULL);
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		if (rc) {
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			netif_err(efx, drv, efx->net_dev,
				  "failed opening device.\n");
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			goto out;
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		}
	}

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	rc = efx_selftest(efx, efx_tests, test->flags);
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	if (!already_up)
		dev_close(efx->net_dev);

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	netif_info(efx, drv, efx->net_dev, "%s %sline self-tests\n",
		   rc == 0 ? "passed" : "failed",
		   (test->flags & ETH_TEST_FL_OFFLINE) ? "off" : "on");
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out:
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	efx_ethtool_fill_self_tests(efx, efx_tests, NULL, data);
	kfree(efx_tests);
fail:
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	if (rc)
		test->flags |= ETH_TEST_FL_FAILED;
}

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/* Restart autonegotiation */
static int efx_ethtool_nway_reset(struct net_device *net_dev)
{
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	struct efx_nic *efx = netdev_priv(net_dev);
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	return mdio45_nway_restart(&efx->mdio);
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}

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/*
 * Each channel has a single IRQ and moderation timer, started by any
 * completion (or other event).  Unless the module parameter
 * separate_tx_channels is set, IRQs and moderation are therefore
 * shared between RX and TX completions.  In this case, when RX IRQ
 * moderation is explicitly changed then TX IRQ moderation is
 * automatically changed too, but otherwise we fail if the two values
 * are requested to be different.
 *
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 * The hardware does not support a limit on the number of completions
 * before an IRQ, so we do not use the max_frames fields.  We should
 * report and require that max_frames == (usecs != 0), but this would
 * invalidate existing user documentation.
 *
 * The hardware does not have distinct settings for interrupt
 * moderation while the previous IRQ is being handled, so we should
 * not use the 'irq' fields.  However, an earlier developer
 * misunderstood the meaning of the 'irq' fields and the driver did
 * not support the standard fields.  To avoid invalidating existing
 * user documentation, we report and accept changes through either the
 * standard or 'irq' fields.  If both are changed at the same time, we
 * prefer the standard field.
 *
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 * We implement adaptive IRQ moderation, but use a different algorithm
 * from that assumed in the definition of struct ethtool_coalesce.
 * Therefore we do not use any of the adaptive moderation parameters
 * in it.
 */

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static int efx_ethtool_get_coalesce(struct net_device *net_dev,
				    struct ethtool_coalesce *coalesce)
{
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	struct efx_nic *efx = netdev_priv(net_dev);
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	unsigned int tx_usecs, rx_usecs;
	bool rx_adaptive;
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	efx_get_irq_moderation(efx, &tx_usecs, &rx_usecs, &rx_adaptive);
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	coalesce->tx_coalesce_usecs = tx_usecs;
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	coalesce->tx_coalesce_usecs_irq = tx_usecs;
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	coalesce->rx_coalesce_usecs = rx_usecs;
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	coalesce->rx_coalesce_usecs_irq = rx_usecs;
	coalesce->use_adaptive_rx_coalesce = rx_adaptive;
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	return 0;
}

static int efx_ethtool_set_coalesce(struct net_device *net_dev,
				    struct ethtool_coalesce *coalesce)
{
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	struct efx_nic *efx = netdev_priv(net_dev);
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	struct efx_channel *channel;
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	unsigned int tx_usecs, rx_usecs;
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	bool adaptive, rx_may_override_tx;
	int rc;
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	if (coalesce->use_adaptive_tx_coalesce)
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		return -EINVAL;
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	efx_get_irq_moderation(efx, &tx_usecs, &rx_usecs, &adaptive);

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	if (coalesce->rx_coalesce_usecs != rx_usecs)
		rx_usecs = coalesce->rx_coalesce_usecs;
	else
		rx_usecs = coalesce->rx_coalesce_usecs_irq;

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	adaptive = coalesce->use_adaptive_rx_coalesce;
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	/* If channels are shared, TX IRQ moderation can be quietly
	 * overridden unless it is changed from its old value.
	 */
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	rx_may_override_tx = (coalesce->tx_coalesce_usecs == tx_usecs &&
			      coalesce->tx_coalesce_usecs_irq == tx_usecs);
	if (coalesce->tx_coalesce_usecs != tx_usecs)
		tx_usecs = coalesce->tx_coalesce_usecs;
	else
		tx_usecs = coalesce->tx_coalesce_usecs_irq;
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	rc = efx_init_irq_moderation(efx, tx_usecs, rx_usecs, adaptive,
				     rx_may_override_tx);
	if (rc != 0)
		return rc;

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	efx_for_each_channel(channel, efx)
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		efx->type->push_irq_moderation(channel);
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	return 0;
}

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static void efx_ethtool_get_ringparam(struct net_device *net_dev,
				      struct ethtool_ringparam *ring)
{
	struct efx_nic *efx = netdev_priv(net_dev);

	ring->rx_max_pending = EFX_MAX_DMAQ_SIZE;
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	ring->tx_max_pending = EFX_TXQ_MAX_ENT(efx);
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	ring->rx_pending = efx->rxq_entries;
	ring->tx_pending = efx->txq_entries;
}

static int efx_ethtool_set_ringparam(struct net_device *net_dev,
				     struct ethtool_ringparam *ring)
{
	struct efx_nic *efx = netdev_priv(net_dev);
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	u32 txq_entries;
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	if (ring->rx_mini_pending || ring->rx_jumbo_pending ||
	    ring->rx_pending > EFX_MAX_DMAQ_SIZE ||
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	    ring->tx_pending > EFX_TXQ_MAX_ENT(efx))
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		return -EINVAL;

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	if (ring->rx_pending < EFX_RXQ_MIN_ENT) {
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		netif_err(efx, drv, efx->net_dev,
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			  "RX queues cannot be smaller than %u\n",
			  EFX_RXQ_MIN_ENT);
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		return -EINVAL;
	}

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	txq_entries = max(ring->tx_pending, EFX_TXQ_MIN_ENT(efx));
	if (txq_entries != ring->tx_pending)
		netif_warn(efx, drv, efx->net_dev,
			   "increasing TX queue size to minimum of %u\n",
			   txq_entries);

	return efx_realloc_channels(efx, ring->rx_pending, txq_entries);
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}

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static int efx_ethtool_set_pauseparam(struct net_device *net_dev,
				      struct ethtool_pauseparam *pause)
{
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	struct efx_nic *efx = netdev_priv(net_dev);
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	u8 wanted_fc, old_fc;
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	u32 old_adv;
	int rc = 0;

	mutex_lock(&efx->mac_lock);
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	wanted_fc = ((pause->rx_pause ? EFX_FC_RX : 0) |
		     (pause->tx_pause ? EFX_FC_TX : 0) |
		     (pause->autoneg ? EFX_FC_AUTO : 0));

	if ((wanted_fc & EFX_FC_TX) && !(wanted_fc & EFX_FC_RX)) {
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		netif_dbg(efx, drv, efx->net_dev,
			  "Flow control unsupported: tx ON rx OFF\n");
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		rc = -EINVAL;
		goto out;
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	}

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	if ((wanted_fc & EFX_FC_AUTO) && !efx->link_advertising[0]) {
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		netif_dbg(efx, drv, efx->net_dev,
			  "Autonegotiation is disabled\n");
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		rc = -EINVAL;
		goto out;
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	}

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	/* Hook for Falcon bug 11482 workaround */
	if (efx->type->prepare_enable_fc_tx &&
	    (wanted_fc & EFX_FC_TX) && !(efx->wanted_fc & EFX_FC_TX))
		efx->type->prepare_enable_fc_tx(efx);
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	old_adv = efx->link_advertising[0];
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	old_fc = efx->wanted_fc;
	efx_link_set_wanted_fc(efx, wanted_fc);
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	if (efx->link_advertising[0] != old_adv ||
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	    (efx->wanted_fc ^ old_fc) & EFX_FC_AUTO) {
		rc = efx->phy_op->reconfigure(efx);
		if (rc) {
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			netif_err(efx, drv, efx->net_dev,
				  "Unable to advertise requested flow "
				  "control setting\n");
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			goto out;
		}
	}
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	/* Reconfigure the MAC. The PHY *may* generate a link state change event
	 * if the user just changed the advertised capabilities, but there's no
	 * harm doing this twice */
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	efx_mac_reconfigure(efx);
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out:
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	mutex_unlock(&efx->mac_lock);
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	return rc;
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}

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static void efx_ethtool_get_wol(struct net_device *net_dev,
				struct ethtool_wolinfo *wol)
{
	struct efx_nic *efx = netdev_priv(net_dev);
	return efx->type->get_wol(efx, wol);
}


static int efx_ethtool_set_wol(struct net_device *net_dev,
			       struct ethtool_wolinfo *wol)
{
	struct efx_nic *efx = netdev_priv(net_dev);
	return efx->type->set_wol(efx, wol->wolopts);
}

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static int efx_ethtool_reset(struct net_device *net_dev, u32 *flags)
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{
	struct efx_nic *efx = netdev_priv(net_dev);
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	int rc;
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	rc = efx->type->map_reset_flags(flags);
	if (rc < 0)
		return rc;
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	return efx_reset(efx, rc);
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}

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/* MAC address mask including only I/G bit */
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static const u8 mac_addr_ig_mask[ETH_ALEN] __aligned(2) = {0x01, 0, 0, 0, 0, 0};
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#define IP4_ADDR_FULL_MASK	((__force __be32)~0)
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#define IP_PROTO_FULL_MASK	0xFF
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#define PORT_FULL_MASK		((__force __be16)~0)
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#define ETHER_TYPE_FULL_MASK	((__force __be16)~0)
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static inline void ip6_fill_mask(__be32 *mask)
{
	mask[0] = mask[1] = mask[2] = mask[3] = ~(__be32)0;
}

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static int efx_ethtool_get_class_rule(struct efx_nic *efx,
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				      struct ethtool_rx_flow_spec *rule,
				      u32 *rss_context)
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{
	struct ethtool_tcpip4_spec *ip_entry = &rule->h_u.tcp_ip4_spec;
	struct ethtool_tcpip4_spec *ip_mask = &rule->m_u.tcp_ip4_spec;
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	struct ethtool_usrip4_spec *uip_entry = &rule->h_u.usr_ip4_spec;
	struct ethtool_usrip4_spec *uip_mask = &rule->m_u.usr_ip4_spec;
	struct ethtool_tcpip6_spec *ip6_entry = &rule->h_u.tcp_ip6_spec;
	struct ethtool_tcpip6_spec *ip6_mask = &rule->m_u.tcp_ip6_spec;
	struct ethtool_usrip6_spec *uip6_entry = &rule->h_u.usr_ip6_spec;
	struct ethtool_usrip6_spec *uip6_mask = &rule->m_u.usr_ip6_spec;
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	struct ethhdr *mac_entry = &rule->h_u.ether_spec;
	struct ethhdr *mac_mask = &rule->m_u.ether_spec;
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	struct efx_filter_spec spec;
	int rc;

	rc = efx_filter_get_filter_safe(efx, EFX_FILTER_PRI_MANUAL,
					rule->location, &spec);
	if (rc)
		return rc;

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	if (spec.dmaq_id == EFX_FILTER_RX_DMAQ_ID_DROP)
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		rule->ring_cookie = RX_CLS_FLOW_DISC;
	else
		rule->ring_cookie = spec.dmaq_id;

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	if ((spec.match_flags & EFX_FILTER_MATCH_ETHER_TYPE) &&
	    spec.ether_type == htons(ETH_P_IP) &&
	    (spec.match_flags & EFX_FILTER_MATCH_IP_PROTO) &&
	    (spec.ip_proto == IPPROTO_TCP || spec.ip_proto == IPPROTO_UDP) &&
	    !(spec.match_flags &
	      ~(EFX_FILTER_MATCH_ETHER_TYPE | EFX_FILTER_MATCH_OUTER_VID |
		EFX_FILTER_MATCH_LOC_HOST | EFX_FILTER_MATCH_REM_HOST |
		EFX_FILTER_MATCH_IP_PROTO |
		EFX_FILTER_MATCH_LOC_PORT | EFX_FILTER_MATCH_REM_PORT))) {
		rule->flow_type = ((spec.ip_proto == IPPROTO_TCP) ?
				   TCP_V4_FLOW : UDP_V4_FLOW);
		if (spec.match_flags & EFX_FILTER_MATCH_LOC_HOST) {
			ip_entry->ip4dst = spec.loc_host[0];
			ip_mask->ip4dst = IP4_ADDR_FULL_MASK;
		}
		if (spec.match_flags & EFX_FILTER_MATCH_REM_HOST) {
			ip_entry->ip4src = spec.rem_host[0];
			ip_mask->ip4src = IP4_ADDR_FULL_MASK;
		}
		if (spec.match_flags & EFX_FILTER_MATCH_LOC_PORT) {
			ip_entry->pdst = spec.loc_port;
			ip_mask->pdst = PORT_FULL_MASK;
		}
		if (spec.match_flags & EFX_FILTER_MATCH_REM_PORT) {
			ip_entry->psrc = spec.rem_port;
			ip_mask->psrc = PORT_FULL_MASK;
		}
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	} else if ((spec.match_flags & EFX_FILTER_MATCH_ETHER_TYPE) &&
	    spec.ether_type == htons(ETH_P_IPV6) &&
	    (spec.match_flags & EFX_FILTER_MATCH_IP_PROTO) &&
	    (spec.ip_proto == IPPROTO_TCP || spec.ip_proto == IPPROTO_UDP) &&
	    !(spec.match_flags &
	      ~(EFX_FILTER_MATCH_ETHER_TYPE | EFX_FILTER_MATCH_OUTER_VID |
		EFX_FILTER_MATCH_LOC_HOST | EFX_FILTER_MATCH_REM_HOST |
		EFX_FILTER_MATCH_IP_PROTO |
		EFX_FILTER_MATCH_LOC_PORT | EFX_FILTER_MATCH_REM_PORT))) {
		rule->flow_type = ((spec.ip_proto == IPPROTO_TCP) ?
				   TCP_V6_FLOW : UDP_V6_FLOW);
		if (spec.match_flags & EFX_FILTER_MATCH_LOC_HOST) {
			memcpy(ip6_entry->ip6dst, spec.loc_host,
			       sizeof(ip6_entry->ip6dst));
			ip6_fill_mask(ip6_mask->ip6dst);
		}
		if (spec.match_flags & EFX_FILTER_MATCH_REM_HOST) {
			memcpy(ip6_entry->ip6src, spec.rem_host,
			       sizeof(ip6_entry->ip6src));
			ip6_fill_mask(ip6_mask->ip6src);
		}
		if (spec.match_flags & EFX_FILTER_MATCH_LOC_PORT) {
			ip6_entry->pdst = spec.loc_port;
			ip6_mask->pdst = PORT_FULL_MASK;
		}
		if (spec.match_flags & EFX_FILTER_MATCH_REM_PORT) {
			ip6_entry->psrc = spec.rem_port;
			ip6_mask->psrc = PORT_FULL_MASK;
		}
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	} else if (!(spec.match_flags &
		     ~(EFX_FILTER_MATCH_LOC_MAC | EFX_FILTER_MATCH_LOC_MAC_IG |
		       EFX_FILTER_MATCH_REM_MAC | EFX_FILTER_MATCH_ETHER_TYPE |
		       EFX_FILTER_MATCH_OUTER_VID))) {
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		rule->flow_type = ETHER_FLOW;
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		if (spec.match_flags &
		    (EFX_FILTER_MATCH_LOC_MAC | EFX_FILTER_MATCH_LOC_MAC_IG)) {
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			ether_addr_copy(mac_entry->h_dest, spec.loc_mac);
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			if (spec.match_flags & EFX_FILTER_MATCH_LOC_MAC)
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				eth_broadcast_addr(mac_mask->h_dest);
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			else
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				ether_addr_copy(mac_mask->h_dest,
						mac_addr_ig_mask);
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		}
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		if (spec.match_flags & EFX_FILTER_MATCH_REM_MAC) {
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			ether_addr_copy(mac_entry->h_source, spec.rem_mac);
			eth_broadcast_addr(mac_mask->h_source);
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		}
		if (spec.match_flags & EFX_FILTER_MATCH_ETHER_TYPE) {
			mac_entry->h_proto = spec.ether_type;
			mac_mask->h_proto = ETHER_TYPE_FULL_MASK;
		}
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	} else if (spec.match_flags & EFX_FILTER_MATCH_ETHER_TYPE &&
		   spec.ether_type == htons(ETH_P_IP) &&
		   !(spec.match_flags &
		     ~(EFX_FILTER_MATCH_ETHER_TYPE | EFX_FILTER_MATCH_OUTER_VID |
		       EFX_FILTER_MATCH_LOC_HOST | EFX_FILTER_MATCH_REM_HOST |
		       EFX_FILTER_MATCH_IP_PROTO))) {
		rule->flow_type = IPV4_USER_FLOW;
		uip_entry->ip_ver = ETH_RX_NFC_IP4;
		if (spec.match_flags & EFX_FILTER_MATCH_IP_PROTO) {
			uip_mask->proto = IP_PROTO_FULL_MASK;
			uip_entry->proto = spec.ip_proto;
		}
		if (spec.match_flags & EFX_FILTER_MATCH_LOC_HOST) {
			uip_entry->ip4dst = spec.loc_host[0];
			uip_mask->ip4dst = IP4_ADDR_FULL_MASK;
		}
		if (spec.match_flags & EFX_FILTER_MATCH_REM_HOST) {
			uip_entry->ip4src = spec.rem_host[0];
			uip_mask->ip4src = IP4_ADDR_FULL_MASK;
		}
	} else if (spec.match_flags & EFX_FILTER_MATCH_ETHER_TYPE &&
		   spec.ether_type == htons(ETH_P_IPV6) &&
		   !(spec.match_flags &
		     ~(EFX_FILTER_MATCH_ETHER_TYPE | EFX_FILTER_MATCH_OUTER_VID |
		       EFX_FILTER_MATCH_LOC_HOST | EFX_FILTER_MATCH_REM_HOST |
		       EFX_FILTER_MATCH_IP_PROTO))) {
		rule->flow_type = IPV6_USER_FLOW;
		if (spec.match_flags & EFX_FILTER_MATCH_IP_PROTO) {
			uip6_mask->l4_proto = IP_PROTO_FULL_MASK;
			uip6_entry->l4_proto = spec.ip_proto;
		}
		if (spec.match_flags & EFX_FILTER_MATCH_LOC_HOST) {
			memcpy(uip6_entry->ip6dst, spec.loc_host,
			       sizeof(uip6_entry->ip6dst));
			ip6_fill_mask(uip6_mask->ip6dst);
		}
		if (spec.match_flags & EFX_FILTER_MATCH_REM_HOST) {
			memcpy(uip6_entry->ip6src, spec.rem_host,
			       sizeof(uip6_entry->ip6src));
			ip6_fill_mask(uip6_mask->ip6src);
		}
550 551 552 553
	} else {
		/* The above should handle all filters that we insert */
		WARN_ON(1);
		return -EINVAL;
554 555
	}

556 557 558 559
	if (spec.match_flags & EFX_FILTER_MATCH_OUTER_VID) {
		rule->flow_type |= FLOW_EXT;
		rule->h_ext.vlan_tci = spec.outer_vid;
		rule->m_ext.vlan_tci = htons(0xfff);
560
	}
561

562 563 564 565 566
	if (spec.flags & EFX_FILTER_FLAG_RX_RSS) {
		rule->flow_type |= FLOW_RSS;
		*rss_context = spec.rss_context;
	}

567 568 569
	return rc;
}

570 571
static int
efx_ethtool_get_rxnfc(struct net_device *net_dev,
572
		      struct ethtool_rxnfc *info, u32 *rule_locs)
573 574
{
	struct efx_nic *efx = netdev_priv(net_dev);
575
	u32 rss_context = 0;
576
	s32 rc = 0;
577 578 579 580 581 582 583

	switch (info->cmd) {
	case ETHTOOL_GRXRINGS:
		info->data = efx->n_rx_channels;
		return 0;

	case ETHTOOL_GRXFH: {
584 585
		struct efx_rss_context *ctx = &efx->rss_context;

586
		mutex_lock(&efx->rss_lock);
587
		if (info->flow_type & FLOW_RSS && info->rss_context) {
588 589 590 591 592
			ctx = efx_find_rss_context_entry(efx, info->rss_context);
			if (!ctx) {
				rc = -ENOENT;
				goto out_unlock;
			}
593
		}
594
		info->data = 0;
595
		if (!efx_rss_active(ctx)) /* No RSS */
596
			goto out_unlock;
597
		switch (info->flow_type & ~FLOW_RSS) {
598
		case UDP_V4_FLOW:
599
			if (ctx->rx_hash_udp_4tuple)
600
				/* fall through */
601
		case TCP_V4_FLOW:
602
				info->data |= RXH_L4_B_0_1 | RXH_L4_B_2_3;
603 604 605 606 607 608
			/* fall through */
		case SCTP_V4_FLOW:
		case AH_ESP_V4_FLOW:
		case IPV4_FLOW:
			info->data |= RXH_IP_SRC | RXH_IP_DST;
			break;
609
		case UDP_V6_FLOW:
610
			if (ctx->rx_hash_udp_4tuple)
611
				/* fall through */
612
		case TCP_V6_FLOW:
613
				info->data |= RXH_L4_B_0_1 | RXH_L4_B_2_3;
614 615 616 617 618 619 620 621 622
			/* fall through */
		case SCTP_V6_FLOW:
		case AH_ESP_V6_FLOW:
		case IPV6_FLOW:
			info->data |= RXH_IP_SRC | RXH_IP_DST;
			break;
		default:
			break;
		}
623 624 625
out_unlock:
		mutex_unlock(&efx->rss_lock);
		return rc;
626 627
	}

628 629 630 631 632 633 634 635 636 637 638 639
	case ETHTOOL_GRXCLSRLCNT:
		info->data = efx_filter_get_rx_id_limit(efx);
		if (info->data == 0)
			return -EOPNOTSUPP;
		info->data |= RX_CLS_LOC_SPECIAL;
		info->rule_cnt =
			efx_filter_count_rx_used(efx, EFX_FILTER_PRI_MANUAL);
		return 0;

	case ETHTOOL_GRXCLSRULE:
		if (efx_filter_get_rx_id_limit(efx) == 0)
			return -EOPNOTSUPP;
640 641 642 643 644 645
		rc = efx_ethtool_get_class_rule(efx, &info->fs, &rss_context);
		if (rc < 0)
			return rc;
		if (info->fs.flow_type & FLOW_RSS)
			info->rss_context = rss_context;
		return 0;
646

647
	case ETHTOOL_GRXCLSRLALL:
648 649 650 651 652 653 654 655 656 657
		info->data = efx_filter_get_rx_id_limit(efx);
		if (info->data == 0)
			return -EOPNOTSUPP;
		rc = efx_filter_get_rx_ids(efx, EFX_FILTER_PRI_MANUAL,
					   rule_locs, info->rule_cnt);
		if (rc < 0)
			return rc;
		info->rule_cnt = rc;
		return 0;

658 659 660 661 662
	default:
		return -EOPNOTSUPP;
	}
}

663 664 665 666 667 668 669 670 671 672
static inline bool ip6_mask_is_full(__be32 mask[4])
{
	return !~(mask[0] & mask[1] & mask[2] & mask[3]);
}

static inline bool ip6_mask_is_empty(__be32 mask[4])
{
	return !(mask[0] | mask[1] | mask[2] | mask[3]);
}

673
static int efx_ethtool_set_class_rule(struct efx_nic *efx,
674 675
				      struct ethtool_rx_flow_spec *rule,
				      u32 rss_context)
676
{
677 678
	struct ethtool_tcpip4_spec *ip_entry = &rule->h_u.tcp_ip4_spec;
	struct ethtool_tcpip4_spec *ip_mask = &rule->m_u.tcp_ip4_spec;
679 680 681 682 683 684
	struct ethtool_usrip4_spec *uip_entry = &rule->h_u.usr_ip4_spec;
	struct ethtool_usrip4_spec *uip_mask = &rule->m_u.usr_ip4_spec;
	struct ethtool_tcpip6_spec *ip6_entry = &rule->h_u.tcp_ip6_spec;
	struct ethtool_tcpip6_spec *ip6_mask = &rule->m_u.tcp_ip6_spec;
	struct ethtool_usrip6_spec *uip6_entry = &rule->h_u.usr_ip6_spec;
	struct ethtool_usrip6_spec *uip6_mask = &rule->m_u.usr_ip6_spec;
685
	u32 flow_type = rule->flow_type & ~(FLOW_EXT | FLOW_RSS);
686 687
	struct ethhdr *mac_entry = &rule->h_u.ether_spec;
	struct ethhdr *mac_mask = &rule->m_u.ether_spec;
688
	enum efx_filter_flags flags = 0;
689
	struct efx_filter_spec spec;
690
	int rc;
691

692
	/* Check that user wants us to choose the location */
693
	if (rule->location != RX_CLS_LOC_ANY)
694 695
		return -EINVAL;

696 697 698
	/* Range-check ring_cookie */
	if (rule->ring_cookie >= efx->n_rx_channels &&
	    rule->ring_cookie != RX_CLS_FLOW_DISC)
699 700
		return -EINVAL;

701 702
	/* Check for unsupported extensions */
	if ((rule->flow_type & FLOW_EXT) &&
703
	    (rule->m_ext.vlan_etype || rule->m_ext.data[0] ||
704 705 706
	     rule->m_ext.data[1]))
		return -EINVAL;

707 708 709 710 711 712
	if (efx->rx_scatter)
		flags |= EFX_FILTER_FLAG_RX_SCATTER;
	if (rule->flow_type & FLOW_RSS)
		flags |= EFX_FILTER_FLAG_RX_RSS;

	efx_filter_init_rx(&spec, EFX_FILTER_PRI_MANUAL, flags,
713
			   (rule->ring_cookie == RX_CLS_FLOW_DISC) ?
B
Ben Hutchings 已提交
714
			   EFX_FILTER_RX_DMAQ_ID_DROP : rule->ring_cookie);
715

716 717 718
	if (rule->flow_type & FLOW_RSS)
		spec.rss_context = rss_context;

719
	switch (flow_type) {
720
	case TCP_V4_FLOW:
721 722 723 724
	case UDP_V4_FLOW:
		spec.match_flags = (EFX_FILTER_MATCH_ETHER_TYPE |
				    EFX_FILTER_MATCH_IP_PROTO);
		spec.ether_type = htons(ETH_P_IP);
725 726
		spec.ip_proto = flow_type == TCP_V4_FLOW ? IPPROTO_TCP
							 : IPPROTO_UDP;
727 728 729 730 731 732 733 734 735 736 737 738 739 740 741 742 743 744 745 746 747 748 749 750 751
		if (ip_mask->ip4dst) {
			if (ip_mask->ip4dst != IP4_ADDR_FULL_MASK)
				return -EINVAL;
			spec.match_flags |= EFX_FILTER_MATCH_LOC_HOST;
			spec.loc_host[0] = ip_entry->ip4dst;
		}
		if (ip_mask->ip4src) {
			if (ip_mask->ip4src != IP4_ADDR_FULL_MASK)
				return -EINVAL;
			spec.match_flags |= EFX_FILTER_MATCH_REM_HOST;
			spec.rem_host[0] = ip_entry->ip4src;
		}
		if (ip_mask->pdst) {
			if (ip_mask->pdst != PORT_FULL_MASK)
				return -EINVAL;
			spec.match_flags |= EFX_FILTER_MATCH_LOC_PORT;
			spec.loc_port = ip_entry->pdst;
		}
		if (ip_mask->psrc) {
			if (ip_mask->psrc != PORT_FULL_MASK)
				return -EINVAL;
			spec.match_flags |= EFX_FILTER_MATCH_REM_PORT;
			spec.rem_port = ip_entry->psrc;
		}
		if (ip_mask->tos)
752 753
			return -EINVAL;
		break;
754

755 756 757 758 759
	case TCP_V6_FLOW:
	case UDP_V6_FLOW:
		spec.match_flags = (EFX_FILTER_MATCH_ETHER_TYPE |
				    EFX_FILTER_MATCH_IP_PROTO);
		spec.ether_type = htons(ETH_P_IPV6);
760 761
		spec.ip_proto = flow_type == TCP_V6_FLOW ? IPPROTO_TCP
							 : IPPROTO_UDP;
762 763 764 765 766 767 768 769 770 771 772 773 774 775 776 777 778 779 780 781 782 783 784 785 786 787 788 789 790 791 792 793 794 795 796 797 798 799 800 801 802 803 804 805 806 807 808 809 810 811 812 813 814 815 816 817 818 819 820 821 822 823 824 825 826 827 828 829 830 831 832 833 834 835 836 837 838 839 840
		if (!ip6_mask_is_empty(ip6_mask->ip6dst)) {
			if (!ip6_mask_is_full(ip6_mask->ip6dst))
				return -EINVAL;
			spec.match_flags |= EFX_FILTER_MATCH_LOC_HOST;
			memcpy(spec.loc_host, ip6_entry->ip6dst, sizeof(spec.loc_host));
		}
		if (!ip6_mask_is_empty(ip6_mask->ip6src)) {
			if (!ip6_mask_is_full(ip6_mask->ip6src))
				return -EINVAL;
			spec.match_flags |= EFX_FILTER_MATCH_REM_HOST;
			memcpy(spec.rem_host, ip6_entry->ip6src, sizeof(spec.rem_host));
		}
		if (ip6_mask->pdst) {
			if (ip6_mask->pdst != PORT_FULL_MASK)
				return -EINVAL;
			spec.match_flags |= EFX_FILTER_MATCH_LOC_PORT;
			spec.loc_port = ip6_entry->pdst;
		}
		if (ip6_mask->psrc) {
			if (ip6_mask->psrc != PORT_FULL_MASK)
				return -EINVAL;
			spec.match_flags |= EFX_FILTER_MATCH_REM_PORT;
			spec.rem_port = ip6_entry->psrc;
		}
		if (ip6_mask->tclass)
			return -EINVAL;
		break;

	case IPV4_USER_FLOW:
		if (uip_mask->l4_4_bytes || uip_mask->tos || uip_mask->ip_ver ||
		    uip_entry->ip_ver != ETH_RX_NFC_IP4)
			return -EINVAL;
		spec.match_flags = EFX_FILTER_MATCH_ETHER_TYPE;
		spec.ether_type = htons(ETH_P_IP);
		if (uip_mask->ip4dst) {
			if (uip_mask->ip4dst != IP4_ADDR_FULL_MASK)
				return -EINVAL;
			spec.match_flags |= EFX_FILTER_MATCH_LOC_HOST;
			spec.loc_host[0] = uip_entry->ip4dst;
		}
		if (uip_mask->ip4src) {
			if (uip_mask->ip4src != IP4_ADDR_FULL_MASK)
				return -EINVAL;
			spec.match_flags |= EFX_FILTER_MATCH_REM_HOST;
			spec.rem_host[0] = uip_entry->ip4src;
		}
		if (uip_mask->proto) {
			if (uip_mask->proto != IP_PROTO_FULL_MASK)
				return -EINVAL;
			spec.match_flags |= EFX_FILTER_MATCH_IP_PROTO;
			spec.ip_proto = uip_entry->proto;
		}
		break;

	case IPV6_USER_FLOW:
		if (uip6_mask->l4_4_bytes || uip6_mask->tclass)
			return -EINVAL;
		spec.match_flags = EFX_FILTER_MATCH_ETHER_TYPE;
		spec.ether_type = htons(ETH_P_IPV6);
		if (!ip6_mask_is_empty(uip6_mask->ip6dst)) {
			if (!ip6_mask_is_full(uip6_mask->ip6dst))
				return -EINVAL;
			spec.match_flags |= EFX_FILTER_MATCH_LOC_HOST;
			memcpy(spec.loc_host, uip6_entry->ip6dst, sizeof(spec.loc_host));
		}
		if (!ip6_mask_is_empty(uip6_mask->ip6src)) {
			if (!ip6_mask_is_full(uip6_mask->ip6src))
				return -EINVAL;
			spec.match_flags |= EFX_FILTER_MATCH_REM_HOST;
			memcpy(spec.rem_host, uip6_entry->ip6src, sizeof(spec.rem_host));
		}
		if (uip6_mask->l4_proto) {
			if (uip6_mask->l4_proto != IP_PROTO_FULL_MASK)
				return -EINVAL;
			spec.match_flags |= EFX_FILTER_MATCH_IP_PROTO;
			spec.ip_proto = uip6_entry->l4_proto;
		}
		break;

841 842 843 844 845 846 847
	case ETHER_FLOW:
		if (!is_zero_ether_addr(mac_mask->h_dest)) {
			if (ether_addr_equal(mac_mask->h_dest,
					     mac_addr_ig_mask))
				spec.match_flags |= EFX_FILTER_MATCH_LOC_MAC_IG;
			else if (is_broadcast_ether_addr(mac_mask->h_dest))
				spec.match_flags |= EFX_FILTER_MATCH_LOC_MAC;
848
			else
849
				return -EINVAL;
850
			ether_addr_copy(spec.loc_mac, mac_entry->h_dest);
851
		}
852 853 854 855
		if (!is_zero_ether_addr(mac_mask->h_source)) {
			if (!is_broadcast_ether_addr(mac_mask->h_source))
				return -EINVAL;
			spec.match_flags |= EFX_FILTER_MATCH_REM_MAC;
856
			ether_addr_copy(spec.rem_mac, mac_entry->h_source);
857 858 859 860 861 862
		}
		if (mac_mask->h_proto) {
			if (mac_mask->h_proto != ETHER_TYPE_FULL_MASK)
				return -EINVAL;
			spec.match_flags |= EFX_FILTER_MATCH_ETHER_TYPE;
			spec.ether_type = mac_entry->h_proto;
863
		}
864
		break;
865

866 867 868 869
	default:
		return -EINVAL;
	}

870 871 872 873 874 875 876
	if ((rule->flow_type & FLOW_EXT) && rule->m_ext.vlan_tci) {
		if (rule->m_ext.vlan_tci != htons(0xfff))
			return -EINVAL;
		spec.match_flags |= EFX_FILTER_MATCH_OUTER_VID;
		spec.outer_vid = rule->h_ext.vlan_tci;
	}

877 878 879
	rc = efx_filter_insert_filter(efx, &spec, true);
	if (rc < 0)
		return rc;
880

881 882 883 884 885 886 887 888 889 890 891 892 893 894
	rule->location = rc;
	return 0;
}

static int efx_ethtool_set_rxnfc(struct net_device *net_dev,
				 struct ethtool_rxnfc *info)
{
	struct efx_nic *efx = netdev_priv(net_dev);

	if (efx_filter_get_rx_id_limit(efx) == 0)
		return -EOPNOTSUPP;

	switch (info->cmd) {
	case ETHTOOL_SRXCLSRLINS:
895 896
		return efx_ethtool_set_class_rule(efx, &info->fs,
						  info->rss_context);
897 898 899 900 901 902 903 904

	case ETHTOOL_SRXCLSRLDEL:
		return efx_filter_remove_id_safe(efx, EFX_FILTER_PRI_MANUAL,
						 info->fs.location);

	default:
		return -EOPNOTSUPP;
	}
905 906
}

907
static u32 efx_ethtool_get_rxfh_indir_size(struct net_device *net_dev)
908 909 910
{
	struct efx_nic *efx = netdev_priv(net_dev);

911 912 913
	if (efx->n_rx_channels == 1)
		return 0;
	return ARRAY_SIZE(efx->rss_context.rx_indir_table);
914 915
}

916 917 918 919 920 921 922
static u32 efx_ethtool_get_rxfh_key_size(struct net_device *net_dev)
{
	struct efx_nic *efx = netdev_priv(net_dev);

	return efx->type->rx_hash_key_size;
}

923 924
static int efx_ethtool_get_rxfh(struct net_device *net_dev, u32 *indir, u8 *key,
				u8 *hfunc)
925 926
{
	struct efx_nic *efx = netdev_priv(net_dev);
927 928 929 930 931
	int rc;

	rc = efx->type->rx_pull_rss_config(efx);
	if (rc)
		return rc;
932

933 934 935
	if (hfunc)
		*hfunc = ETH_RSS_HASH_TOP;
	if (indir)
936 937
		memcpy(indir, efx->rss_context.rx_indir_table,
		       sizeof(efx->rss_context.rx_indir_table));
938
	if (key)
939 940
		memcpy(key, efx->rss_context.rx_hash_key,
		       efx->type->rx_hash_key_size);
941 942 943
	return 0;
}

944 945
static int efx_ethtool_set_rxfh(struct net_device *net_dev, const u32 *indir,
				const u8 *key, const u8 hfunc)
946 947 948
{
	struct efx_nic *efx = netdev_priv(net_dev);

949 950
	/* Hash function is Toeplitz, cannot be changed */
	if (hfunc != ETH_RSS_HASH_NO_CHANGE && hfunc != ETH_RSS_HASH_TOP)
951
		return -EOPNOTSUPP;
952
	if (!indir && !key)
953
		return 0;
954

955
	if (!key)
956
		key = efx->rss_context.rx_hash_key;
957
	if (!indir)
958
		indir = efx->rss_context.rx_indir_table;
959 960

	return efx->type->rx_push_rss_config(efx, true, indir, key);
961 962
}

963 964 965 966 967
static int efx_ethtool_get_rxfh_context(struct net_device *net_dev, u32 *indir,
					u8 *key, u8 *hfunc, u32 rss_context)
{
	struct efx_nic *efx = netdev_priv(net_dev);
	struct efx_rss_context *ctx;
968
	int rc = 0;
969 970 971

	if (!efx->type->rx_pull_rss_context_config)
		return -EOPNOTSUPP;
972 973 974 975 976 977 978

	mutex_lock(&efx->rss_lock);
	ctx = efx_find_rss_context_entry(efx, rss_context);
	if (!ctx) {
		rc = -ENOENT;
		goto out_unlock;
	}
979 980
	rc = efx->type->rx_pull_rss_context_config(efx, ctx);
	if (rc)
981
		goto out_unlock;
982 983 984 985 986 987 988

	if (hfunc)
		*hfunc = ETH_RSS_HASH_TOP;
	if (indir)
		memcpy(indir, ctx->rx_indir_table, sizeof(ctx->rx_indir_table));
	if (key)
		memcpy(key, ctx->rx_hash_key, efx->type->rx_hash_key_size);
989 990 991
out_unlock:
	mutex_unlock(&efx->rss_lock);
	return rc;
992 993 994 995 996 997 998 999 1000 1001 1002 1003 1004 1005 1006 1007 1008
}

static int efx_ethtool_set_rxfh_context(struct net_device *net_dev,
					const u32 *indir, const u8 *key,
					const u8 hfunc, u32 *rss_context,
					bool delete)
{
	struct efx_nic *efx = netdev_priv(net_dev);
	struct efx_rss_context *ctx;
	bool allocated = false;
	int rc;

	if (!efx->type->rx_push_rss_context_config)
		return -EOPNOTSUPP;
	/* Hash function is Toeplitz, cannot be changed */
	if (hfunc != ETH_RSS_HASH_NO_CHANGE && hfunc != ETH_RSS_HASH_TOP)
		return -EOPNOTSUPP;
1009 1010 1011

	mutex_lock(&efx->rss_lock);

1012
	if (*rss_context == ETH_RXFH_CONTEXT_ALLOC) {
1013
		if (delete) {
1014
			/* alloc + delete == Nothing to do */
1015 1016 1017 1018 1019 1020 1021 1022
			rc = -EINVAL;
			goto out_unlock;
		}
		ctx = efx_alloc_rss_context_entry(efx);
		if (!ctx) {
			rc = -ENOMEM;
			goto out_unlock;
		}
1023 1024 1025 1026 1027 1028
		ctx->context_id = EFX_EF10_RSS_CONTEXT_INVALID;
		/* Initialise indir table and key to defaults */
		efx_set_default_rx_indir_table(efx, ctx);
		netdev_rss_key_fill(ctx->rx_hash_key, sizeof(ctx->rx_hash_key));
		allocated = true;
	} else {
1029 1030 1031 1032 1033
		ctx = efx_find_rss_context_entry(efx, *rss_context);
		if (!ctx) {
			rc = -ENOENT;
			goto out_unlock;
		}
1034 1035 1036 1037 1038 1039 1040
	}

	if (delete) {
		/* delete this context */
		rc = efx->type->rx_push_rss_context_config(efx, ctx, NULL, NULL);
		if (!rc)
			efx_free_rss_context_entry(ctx);
1041
		goto out_unlock;
1042 1043 1044 1045 1046 1047 1048 1049 1050 1051 1052 1053
	}

	if (!key)
		key = ctx->rx_hash_key;
	if (!indir)
		indir = ctx->rx_indir_table;

	rc = efx->type->rx_push_rss_context_config(efx, ctx, indir, key);
	if (rc && allocated)
		efx_free_rss_context_entry(ctx);
	else
		*rss_context = ctx->user_id;
1054 1055
out_unlock:
	mutex_unlock(&efx->rss_lock);
1056 1057 1058
	return rc;
}

1059 1060
static int efx_ethtool_get_ts_info(struct net_device *net_dev,
				   struct ethtool_ts_info *ts_info)
1061 1062 1063 1064 1065 1066 1067 1068 1069 1070 1071 1072
{
	struct efx_nic *efx = netdev_priv(net_dev);

	/* Software capabilities */
	ts_info->so_timestamping = (SOF_TIMESTAMPING_RX_SOFTWARE |
				    SOF_TIMESTAMPING_SOFTWARE);
	ts_info->phc_index = -1;

	efx_ptp_get_ts_info(efx, ts_info);
	return 0;
}

1073 1074 1075 1076 1077 1078 1079 1080 1081 1082 1083 1084 1085 1086 1087 1088 1089 1090 1091 1092 1093 1094 1095 1096 1097 1098 1099 1100 1101 1102 1103 1104 1105
static int efx_ethtool_get_module_eeprom(struct net_device *net_dev,
					 struct ethtool_eeprom *ee,
					 u8 *data)
{
	struct efx_nic *efx = netdev_priv(net_dev);
	int ret;

	if (!efx->phy_op || !efx->phy_op->get_module_eeprom)
		return -EOPNOTSUPP;

	mutex_lock(&efx->mac_lock);
	ret = efx->phy_op->get_module_eeprom(efx, ee, data);
	mutex_unlock(&efx->mac_lock);

	return ret;
}

static int efx_ethtool_get_module_info(struct net_device *net_dev,
				       struct ethtool_modinfo *modinfo)
{
	struct efx_nic *efx = netdev_priv(net_dev);
	int ret;

	if (!efx->phy_op || !efx->phy_op->get_module_info)
		return -EOPNOTSUPP;

	mutex_lock(&efx->mac_lock);
	ret = efx->phy_op->get_module_info(efx, modinfo);
	mutex_unlock(&efx->mac_lock);

	return ret;
}

1106 1107 1108 1109 1110 1111 1112 1113 1114 1115 1116 1117 1118 1119 1120 1121 1122 1123 1124 1125 1126 1127 1128 1129 1130 1131 1132 1133 1134 1135
static int efx_ethtool_get_fecparam(struct net_device *net_dev,
				    struct ethtool_fecparam *fecparam)
{
	struct efx_nic *efx = netdev_priv(net_dev);
	int rc;

	if (!efx->phy_op || !efx->phy_op->get_fecparam)
		return -EOPNOTSUPP;
	mutex_lock(&efx->mac_lock);
	rc = efx->phy_op->get_fecparam(efx, fecparam);
	mutex_unlock(&efx->mac_lock);

	return rc;
}

static int efx_ethtool_set_fecparam(struct net_device *net_dev,
				    struct ethtool_fecparam *fecparam)
{
	struct efx_nic *efx = netdev_priv(net_dev);
	int rc;

	if (!efx->phy_op || !efx->phy_op->get_fecparam)
		return -EOPNOTSUPP;
	mutex_lock(&efx->mac_lock);
	rc = efx->phy_op->set_fecparam(efx, fecparam);
	mutex_unlock(&efx->mac_lock);

	return rc;
}

1136
const struct ethtool_ops efx_ethtool_ops = {
1137
	.get_drvinfo		= efx_ethtool_get_drvinfo,
1138 1139
	.get_regs_len		= efx_ethtool_get_regs_len,
	.get_regs		= efx_ethtool_get_regs,
1140 1141
	.get_msglevel		= efx_ethtool_get_msglevel,
	.set_msglevel		= efx_ethtool_set_msglevel,
1142
	.nway_reset		= efx_ethtool_nway_reset,
1143
	.get_link		= ethtool_op_get_link,
1144 1145
	.get_coalesce		= efx_ethtool_get_coalesce,
	.set_coalesce		= efx_ethtool_set_coalesce,
1146 1147
	.get_ringparam		= efx_ethtool_get_ringparam,
	.set_ringparam		= efx_ethtool_set_ringparam,
1148 1149
	.get_pauseparam         = efx_ethtool_get_pauseparam,
	.set_pauseparam         = efx_ethtool_set_pauseparam,
1150
	.get_sset_count		= efx_ethtool_get_sset_count,
1151
	.self_test		= efx_ethtool_self_test,
1152
	.get_strings		= efx_ethtool_get_strings,
1153
	.set_phys_id		= efx_ethtool_phys_id,
1154
	.get_ethtool_stats	= efx_ethtool_get_stats,
1155 1156
	.get_wol                = efx_ethtool_get_wol,
	.set_wol                = efx_ethtool_set_wol,
1157
	.reset			= efx_ethtool_reset,
1158
	.get_rxnfc		= efx_ethtool_get_rxnfc,
1159
	.set_rxnfc		= efx_ethtool_set_rxnfc,
1160
	.get_rxfh_indir_size	= efx_ethtool_get_rxfh_indir_size,
1161
	.get_rxfh_key_size	= efx_ethtool_get_rxfh_key_size,
1162 1163
	.get_rxfh		= efx_ethtool_get_rxfh,
	.set_rxfh		= efx_ethtool_set_rxfh,
1164 1165
	.get_rxfh_context	= efx_ethtool_get_rxfh_context,
	.set_rxfh_context	= efx_ethtool_set_rxfh_context,
1166
	.get_ts_info		= efx_ethtool_get_ts_info,
1167 1168
	.get_module_info	= efx_ethtool_get_module_info,
	.get_module_eeprom	= efx_ethtool_get_module_eeprom,
1169 1170
	.get_link_ksettings	= efx_ethtool_get_link_ksettings,
	.set_link_ksettings	= efx_ethtool_set_link_ksettings,
1171 1172
	.get_fecparam		= efx_ethtool_get_fecparam,
	.set_fecparam		= efx_ethtool_set_fecparam,
1173
};