ice_virtchnl_pf.c 94.3 KB
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// SPDX-License-Identifier: GPL-2.0
/* Copyright (c) 2018, Intel Corporation. */

#include "ice.h"
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#include "ice_base.h"
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#include "ice_lib.h"

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/**
 * ice_validate_vf_id - helper to check if VF ID is valid
 * @pf: pointer to the PF structure
 * @vf_id: the ID of the VF to check
 */
static int ice_validate_vf_id(struct ice_pf *pf, int vf_id)
{
	if (vf_id >= pf->num_alloc_vfs) {
		dev_err(ice_pf_to_dev(pf), "Invalid VF ID: %d\n", vf_id);
		return -EINVAL;
	}
	return 0;
}

/**
 * ice_check_vf_init - helper to check if VF init complete
 * @pf: pointer to the PF structure
 * @vf: the pointer to the VF to check
 */
static int ice_check_vf_init(struct ice_pf *pf, struct ice_vf *vf)
{
	if (!test_bit(ICE_VF_STATE_INIT, vf->vf_states)) {
		dev_err(ice_pf_to_dev(pf), "VF ID: %d in reset. Try again.\n",
			vf->vf_id);
		return -EBUSY;
	}
	return 0;
}

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/**
 * ice_vc_vf_broadcast - Broadcast a message to all VFs on PF
 * @pf: pointer to the PF structure
 * @v_opcode: operation code
 * @v_retval: return value
 * @msg: pointer to the msg buffer
 * @msglen: msg length
 */
static void
ice_vc_vf_broadcast(struct ice_pf *pf, enum virtchnl_ops v_opcode,
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		    enum virtchnl_status_code v_retval, u8 *msg, u16 msglen)
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{
	struct ice_hw *hw = &pf->hw;
	int i;

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	ice_for_each_vf(pf, i) {
		struct ice_vf *vf = &pf->vf[i];

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		/* Not all vfs are enabled so skip the ones that are not */
		if (!test_bit(ICE_VF_STATE_INIT, vf->vf_states) &&
		    !test_bit(ICE_VF_STATE_ACTIVE, vf->vf_states))
			continue;

		/* Ignore return value on purpose - a given VF may fail, but
		 * we need to keep going and send to all of them
		 */
		ice_aq_send_msg_to_vf(hw, vf->vf_id, v_opcode, v_retval, msg,
				      msglen, NULL);
	}
}

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/**
 * ice_set_pfe_link - Set the link speed/status of the virtchnl_pf_event
 * @vf: pointer to the VF structure
 * @pfe: pointer to the virtchnl_pf_event to set link speed/status for
 * @ice_link_speed: link speed specified by ICE_AQ_LINK_SPEED_*
 * @link_up: whether or not to set the link up/down
 */
static void
ice_set_pfe_link(struct ice_vf *vf, struct virtchnl_pf_event *pfe,
		 int ice_link_speed, bool link_up)
{
	if (vf->driver_caps & VIRTCHNL_VF_CAP_ADV_LINK_SPEED) {
		pfe->event_data.link_event_adv.link_status = link_up;
		/* Speed in Mbps */
		pfe->event_data.link_event_adv.link_speed =
			ice_conv_link_speed_to_virtchnl(true, ice_link_speed);
	} else {
		pfe->event_data.link_event.link_status = link_up;
		/* Legacy method for virtchnl link speeds */
		pfe->event_data.link_event.link_speed =
			(enum virtchnl_link_speed)
			ice_conv_link_speed_to_virtchnl(false, ice_link_speed);
	}
}

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/**
 * ice_vf_has_no_qs_ena - check if the VF has any Rx or Tx queues enabled
 * @vf: the VF to check
 *
 * Returns true if the VF has no Rx and no Tx queues enabled and returns false
 * otherwise
 */
static bool ice_vf_has_no_qs_ena(struct ice_vf *vf)
{
	return (!bitmap_weight(vf->rxq_ena, ICE_MAX_BASE_QS_PER_VF) &&
		!bitmap_weight(vf->txq_ena, ICE_MAX_BASE_QS_PER_VF));
}

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/**
 * ice_is_vf_link_up - check if the VF's link is up
 * @vf: VF to check if link is up
 */
static bool ice_is_vf_link_up(struct ice_vf *vf)
{
	struct ice_pf *pf = vf->pf;

	if (ice_check_vf_init(pf, vf))
		return false;

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	if (ice_vf_has_no_qs_ena(vf))
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		return false;
	else if (vf->link_forced)
		return vf->link_up;
	else
		return pf->hw.port_info->phy.link_info.link_info &
			ICE_AQ_LINK_UP;
}

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/**
 * ice_vc_notify_vf_link_state - Inform a VF of link status
 * @vf: pointer to the VF structure
 *
 * send a link status message to a single VF
 */
static void ice_vc_notify_vf_link_state(struct ice_vf *vf)
{
	struct virtchnl_pf_event pfe = { 0 };
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	struct ice_hw *hw = &vf->pf->hw;
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	pfe.event = VIRTCHNL_EVENT_LINK_CHANGE;
	pfe.severity = PF_EVENT_SEVERITY_INFO;

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	if (ice_is_vf_link_up(vf))
		ice_set_pfe_link(vf, &pfe,
				 hw->port_info->phy.link_info.link_speed, true);
	else
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		ice_set_pfe_link(vf, &pfe, ICE_AQ_LINK_SPEED_UNKNOWN, false);
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	ice_aq_send_msg_to_vf(hw, vf->vf_id, VIRTCHNL_OP_EVENT,
			      VIRTCHNL_STATUS_SUCCESS, (u8 *)&pfe,
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			      sizeof(pfe), NULL);
}

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/**
 * ice_free_vf_res - Free a VF's resources
 * @vf: pointer to the VF info
 */
static void ice_free_vf_res(struct ice_vf *vf)
{
	struct ice_pf *pf = vf->pf;
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	int i, last_vector_idx;
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	/* First, disable VF's configuration API to prevent OS from
	 * accessing the VF's VSI after it's freed or invalidated.
	 */
	clear_bit(ICE_VF_STATE_INIT, vf->vf_states);

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	/* free VSI and disconnect it from the parent uplink */
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	if (vf->lan_vsi_idx) {
		ice_vsi_release(pf->vsi[vf->lan_vsi_idx]);
		vf->lan_vsi_idx = 0;
		vf->lan_vsi_num = 0;
		vf->num_mac = 0;
	}

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	last_vector_idx = vf->first_vector_idx + pf->num_vf_msix - 1;
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	/* Disable interrupts so that VF starts in a known state */
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	for (i = vf->first_vector_idx; i <= last_vector_idx; i++) {
		wr32(&pf->hw, GLINT_DYN_CTL(i), GLINT_DYN_CTL_CLEARPBA_M);
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		ice_flush(&pf->hw);
	}
	/* reset some of the state variables keeping track of the resources */
	clear_bit(ICE_VF_STATE_MC_PROMISC, vf->vf_states);
	clear_bit(ICE_VF_STATE_UC_PROMISC, vf->vf_states);
}

/**
 * ice_dis_vf_mappings
 * @vf: pointer to the VF structure
 */
static void ice_dis_vf_mappings(struct ice_vf *vf)
{
	struct ice_pf *pf = vf->pf;
	struct ice_vsi *vsi;
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	struct device *dev;
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	int first, last, v;
	struct ice_hw *hw;

	hw = &pf->hw;
	vsi = pf->vsi[vf->lan_vsi_idx];

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	dev = ice_pf_to_dev(pf);
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	wr32(hw, VPINT_ALLOC(vf->vf_id), 0);
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	wr32(hw, VPINT_ALLOC_PCI(vf->vf_id), 0);
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	first = vf->first_vector_idx;
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	last = first + pf->num_vf_msix - 1;
	for (v = first; v <= last; v++) {
		u32 reg;

		reg = (((1 << GLINT_VECT2FUNC_IS_PF_S) &
			GLINT_VECT2FUNC_IS_PF_M) |
		       ((hw->pf_id << GLINT_VECT2FUNC_PF_NUM_S) &
			GLINT_VECT2FUNC_PF_NUM_M));
		wr32(hw, GLINT_VECT2FUNC(v), reg);
	}

	if (vsi->tx_mapping_mode == ICE_VSI_MAP_CONTIG)
		wr32(hw, VPLAN_TX_QBASE(vf->vf_id), 0);
	else
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		dev_err(dev, "Scattered mode for VF Tx queues is not yet implemented\n");
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	if (vsi->rx_mapping_mode == ICE_VSI_MAP_CONTIG)
		wr32(hw, VPLAN_RX_QBASE(vf->vf_id), 0);
	else
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		dev_err(dev, "Scattered mode for VF Rx queues is not yet implemented\n");
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}

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/**
 * ice_sriov_free_msix_res - Reset/free any used MSIX resources
 * @pf: pointer to the PF structure
 *
 * If MSIX entries from the pf->irq_tracker were needed then we need to
 * reset the irq_tracker->end and give back the entries we needed to
 * num_avail_sw_msix.
 *
 * If no MSIX entries were taken from the pf->irq_tracker then just clear
 * the pf->sriov_base_vector.
 *
 * Returns 0 on success, and -EINVAL on error.
 */
static int ice_sriov_free_msix_res(struct ice_pf *pf)
{
	struct ice_res_tracker *res;

	if (!pf)
		return -EINVAL;

	res = pf->irq_tracker;
	if (!res)
		return -EINVAL;

	/* give back irq_tracker resources used */
	if (pf->sriov_base_vector < res->num_entries) {
		res->end = res->num_entries;
		pf->num_avail_sw_msix +=
			res->num_entries - pf->sriov_base_vector;
	}

	pf->sriov_base_vector = 0;

	return 0;
}

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/**
 * ice_set_vf_state_qs_dis - Set VF queues state to disabled
 * @vf: pointer to the VF structure
 */
void ice_set_vf_state_qs_dis(struct ice_vf *vf)
{
	/* Clear Rx/Tx enabled queues flag */
	bitmap_zero(vf->txq_ena, ICE_MAX_BASE_QS_PER_VF);
	bitmap_zero(vf->rxq_ena, ICE_MAX_BASE_QS_PER_VF);
	clear_bit(ICE_VF_STATE_QS_ENA, vf->vf_states);
}

/**
 * ice_dis_vf_qs - Disable the VF queues
 * @vf: pointer to the VF structure
 */
static void ice_dis_vf_qs(struct ice_vf *vf)
{
	struct ice_pf *pf = vf->pf;
	struct ice_vsi *vsi;

	vsi = pf->vsi[vf->lan_vsi_idx];

	ice_vsi_stop_lan_tx_rings(vsi, ICE_NO_RESET, vf->vf_id);
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	ice_vsi_stop_all_rx_rings(vsi);
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	ice_set_vf_state_qs_dis(vf);
}

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/**
 * ice_free_vfs - Free all VFs
 * @pf: pointer to the PF structure
 */
void ice_free_vfs(struct ice_pf *pf)
{
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	struct device *dev = ice_pf_to_dev(pf);
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	struct ice_hw *hw = &pf->hw;
	int tmp, i;

	if (!pf->vf)
		return;

	while (test_and_set_bit(__ICE_VF_DIS, pf->state))
		usleep_range(1000, 2000);

	/* Avoid wait time by stopping all VFs at the same time */
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	ice_for_each_vf(pf, i)
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		if (test_bit(ICE_VF_STATE_QS_ENA, pf->vf[i].vf_states))
			ice_dis_vf_qs(&pf->vf[i]);
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	/* Disable IOV before freeing resources. This lets any VF drivers
	 * running in the host get themselves cleaned up before we yank
	 * the carpet out from underneath their feet.
	 */
	if (!pci_vfs_assigned(pf->pdev))
		pci_disable_sriov(pf->pdev);
	else
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		dev_warn(dev, "VFs are assigned - not disabling SR-IOV\n");
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	tmp = pf->num_alloc_vfs;
	pf->num_vf_qps = 0;
	pf->num_alloc_vfs = 0;
	for (i = 0; i < tmp; i++) {
		if (test_bit(ICE_VF_STATE_INIT, pf->vf[i].vf_states)) {
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			/* disable VF qp mappings and set VF disable state */
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			ice_dis_vf_mappings(&pf->vf[i]);
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			set_bit(ICE_VF_STATE_DIS, pf->vf[i].vf_states);
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			ice_free_vf_res(&pf->vf[i]);
		}
	}

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	if (ice_sriov_free_msix_res(pf))
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		dev_err(dev, "Failed to free MSIX resources used by SR-IOV\n");
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	devm_kfree(dev, pf->vf);
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	pf->vf = NULL;

	/* This check is for when the driver is unloaded while VFs are
	 * assigned. Setting the number of VFs to 0 through sysfs is caught
	 * before this function ever gets called.
	 */
	if (!pci_vfs_assigned(pf->pdev)) {
		int vf_id;

		/* Acknowledge VFLR for all VFs. Without this, VFs will fail to
		 * work correctly when SR-IOV gets re-enabled.
		 */
		for (vf_id = 0; vf_id < tmp; vf_id++) {
			u32 reg_idx, bit_idx;

			reg_idx = (hw->func_caps.vf_base_id + vf_id) / 32;
			bit_idx = (hw->func_caps.vf_base_id + vf_id) % 32;
			wr32(hw, GLGEN_VFLRSTAT(reg_idx), BIT(bit_idx));
		}
	}
	clear_bit(__ICE_VF_DIS, pf->state);
	clear_bit(ICE_FLAG_SRIOV_ENA, pf->flags);
}

/**
 * ice_trigger_vf_reset - Reset a VF on HW
 * @vf: pointer to the VF structure
 * @is_vflr: true if VFLR was issued, false if not
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 * @is_pfr: true if the reset was triggered due to a previous PFR
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 *
 * Trigger hardware to start a reset for a particular VF. Expects the caller
 * to wait the proper amount of time to allow hardware to reset the VF before
 * it cleans up and restores VF functionality.
 */
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static void ice_trigger_vf_reset(struct ice_vf *vf, bool is_vflr, bool is_pfr)
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{
	struct ice_pf *pf = vf->pf;
	u32 reg, reg_idx, bit_idx;
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	struct device *dev;
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	struct ice_hw *hw;
	int vf_abs_id, i;

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	dev = ice_pf_to_dev(pf);
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	hw = &pf->hw;
	vf_abs_id = vf->vf_id + hw->func_caps.vf_base_id;

	/* Inform VF that it is no longer active, as a warning */
	clear_bit(ICE_VF_STATE_ACTIVE, vf->vf_states);

	/* Disable VF's configuration API during reset. The flag is re-enabled
	 * in ice_alloc_vf_res(), when it's safe again to access VF's VSI.
	 * It's normally disabled in ice_free_vf_res(), but it's safer
	 * to do it earlier to give some time to finish to any VF config
	 * functions that may still be running at this point.
	 */
	clear_bit(ICE_VF_STATE_INIT, vf->vf_states);
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	/* VF_MBX_ARQLEN is cleared by PFR, so the driver needs to clear it
	 * in the case of VFR. If this is done for PFR, it can mess up VF
	 * resets because the VF driver may already have started cleanup
	 * by the time we get here.
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	 */
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	if (!is_pfr)
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		wr32(hw, VF_MBX_ARQLEN(vf->vf_id), 0);
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	/* In the case of a VFLR, the HW has already reset the VF and we
	 * just need to clean up, so don't hit the VFRTRIG register.
	 */
	if (!is_vflr) {
		/* reset VF using VPGEN_VFRTRIG reg */
		reg = rd32(hw, VPGEN_VFRTRIG(vf->vf_id));
		reg |= VPGEN_VFRTRIG_VFSWR_M;
		wr32(hw, VPGEN_VFRTRIG(vf->vf_id), reg);
	}
	/* clear the VFLR bit in GLGEN_VFLRSTAT */
	reg_idx = (vf_abs_id) / 32;
	bit_idx = (vf_abs_id) % 32;
	wr32(hw, GLGEN_VFLRSTAT(reg_idx), BIT(bit_idx));
	ice_flush(hw);

	wr32(hw, PF_PCI_CIAA,
	     VF_DEVICE_STATUS | (vf_abs_id << PF_PCI_CIAA_VF_NUM_S));
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	for (i = 0; i < ICE_PCI_CIAD_WAIT_COUNT; i++) {
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		reg = rd32(hw, PF_PCI_CIAD);
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		/* no transactions pending so stop polling */
		if ((reg & VF_TRANS_PENDING_M) == 0)
			break;

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		dev_err(dev, "VF %d PCI transactions stuck\n", vf->vf_id);
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		udelay(ICE_PCI_CIAD_WAIT_DELAY_US);
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	}
}

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/**
 * ice_vsi_manage_pvid - Enable or disable port VLAN for VSI
 * @vsi: the VSI to update
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 * @pvid_info: VLAN ID and QoS used to set the PVID VSI context field
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 * @enable: true for enable PVID false for disable
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 */
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static int ice_vsi_manage_pvid(struct ice_vsi *vsi, u16 pvid_info, bool enable)
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{
	struct ice_hw *hw = &vsi->back->hw;
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	struct ice_aqc_vsi_props *info;
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	struct ice_vsi_ctx *ctxt;
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	enum ice_status status;
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	int ret = 0;

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	ctxt = kzalloc(sizeof(*ctxt), GFP_KERNEL);
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	if (!ctxt)
		return -ENOMEM;
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	ctxt->info = vsi->info;
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	info = &ctxt->info;
	if (enable) {
		info->vlan_flags = ICE_AQ_VSI_VLAN_MODE_UNTAGGED |
			ICE_AQ_VSI_PVLAN_INSERT_PVID |
			ICE_AQ_VSI_VLAN_EMOD_STR;
		info->sw_flags2 |= ICE_AQ_VSI_SW_FLAG_RX_VLAN_PRUNE_ENA;
	} else {
		info->vlan_flags = ICE_AQ_VSI_VLAN_EMOD_NOTHING |
			ICE_AQ_VSI_VLAN_MODE_ALL;
		info->sw_flags2 &= ~ICE_AQ_VSI_SW_FLAG_RX_VLAN_PRUNE_ENA;
	}

	info->pvid = cpu_to_le16(pvid_info);
	info->valid_sections = cpu_to_le16(ICE_AQ_VSI_PROP_VLAN_VALID |
					   ICE_AQ_VSI_PROP_SW_VALID);
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	status = ice_update_vsi(hw, vsi->idx, ctxt, NULL);
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	if (status) {
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		dev_info(ice_hw_to_dev(hw), "update VSI for port VLAN failed, err %d aq_err %d\n",
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			 status, hw->adminq.sq_last_status);
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		ret = -EIO;
		goto out;
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	}

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	vsi->info.vlan_flags = info->vlan_flags;
	vsi->info.sw_flags2 = info->sw_flags2;
	vsi->info.pvid = info->pvid;
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out:
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	kfree(ctxt);
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	return ret;
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}

/**
 * ice_vf_vsi_setup - Set up a VF VSI
 * @pf: board private structure
 * @pi: pointer to the port_info instance
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 * @vf_id: defines VF ID to which this VSI connects.
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 *
 * Returns pointer to the successfully allocated VSI struct on success,
 * otherwise returns NULL on failure.
 */
static struct ice_vsi *
ice_vf_vsi_setup(struct ice_pf *pf, struct ice_port_info *pi, u16 vf_id)
{
	return ice_vsi_setup(pf, pi, ICE_VSI_VF, vf_id);
}

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/**
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 * ice_calc_vf_first_vector_idx - Calculate MSIX vector index in the PF space
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 * @pf: pointer to PF structure
 * @vf: pointer to VF that the first MSIX vector index is being calculated for
 *
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 * This returns the first MSIX vector index in PF space that is used by this VF.
 * This index is used when accessing PF relative registers such as
 * GLINT_VECT2FUNC and GLINT_DYN_CTL.
 * This will always be the OICR index in the AVF driver so any functionality
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 * using vf->first_vector_idx for queue configuration will have to increment by
 * 1 to avoid meddling with the OICR index.
 */
static int ice_calc_vf_first_vector_idx(struct ice_pf *pf, struct ice_vf *vf)
{
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	return pf->sriov_base_vector + vf->vf_id * pf->num_vf_msix;
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}

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/**
 * ice_alloc_vsi_res - Setup VF VSI and its resources
 * @vf: pointer to the VF structure
 *
 * Returns 0 on success, negative value on failure
 */
static int ice_alloc_vsi_res(struct ice_vf *vf)
{
	struct ice_pf *pf = vf->pf;
	LIST_HEAD(tmp_add_list);
	u8 broadcast[ETH_ALEN];
	struct ice_vsi *vsi;
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	struct device *dev;
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	int status = 0;

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	dev = ice_pf_to_dev(pf);
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	/* first vector index is the VFs OICR index */
	vf->first_vector_idx = ice_calc_vf_first_vector_idx(pf, vf);

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	vsi = ice_vf_vsi_setup(pf, pf->hw.port_info, vf->vf_id);
	if (!vsi) {
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		dev_err(dev, "Failed to create VF VSI\n");
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		return -ENOMEM;
	}

	vf->lan_vsi_idx = vsi->idx;
	vf->lan_vsi_num = vsi->vsi_num;

	/* Check if port VLAN exist before, and restore it accordingly */
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	if (vf->port_vlan_info) {
		ice_vsi_manage_pvid(vsi, vf->port_vlan_info, true);
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		if (ice_vsi_add_vlan(vsi, vf->port_vlan_info & VLAN_VID_MASK))
			dev_warn(ice_pf_to_dev(pf), "Failed to add Port VLAN %d filter for VF %d\n",
				 vf->port_vlan_info & VLAN_VID_MASK, vf->vf_id);
	} else {
		/* set VLAN 0 filter by default when no port VLAN is
		 * enabled. If a port VLAN is enabled we don't want
		 * untagged broadcast/multicast traffic seen on the VF
		 * interface.
		 */
		if (ice_vsi_add_vlan(vsi, 0))
			dev_warn(ice_pf_to_dev(pf), "Failed to add VLAN 0 filter for VF %d, MDD events will trigger. Reset the VF, disable spoofchk, or enable 8021q module on the guest\n",
				 vf->vf_id);
555
	}
556 557 558 559 560 561 562 563 564 565 566 567 568 569 570 571

	eth_broadcast_addr(broadcast);

	status = ice_add_mac_to_list(vsi, &tmp_add_list, broadcast);
	if (status)
		goto ice_alloc_vsi_res_exit;

	if (is_valid_ether_addr(vf->dflt_lan_addr.addr)) {
		status = ice_add_mac_to_list(vsi, &tmp_add_list,
					     vf->dflt_lan_addr.addr);
		if (status)
			goto ice_alloc_vsi_res_exit;
	}

	status = ice_add_mac(&pf->hw, &tmp_add_list);
	if (status)
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		dev_err(dev, "could not add mac filters error %d\n", status);
573 574
	else
		vf->num_mac = 1;
575 576 577

	/* Clear this bit after VF initialization since we shouldn't reclaim
	 * and reassign interrupts for synchronous or asynchronous VFR events.
578
	 * We don't want to reconfigure interrupts since AVF driver doesn't
579 580 581 582
	 * expect vector assignment to be changed unless there is a request for
	 * more vectors.
	 */
ice_alloc_vsi_res_exit:
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	ice_free_fltr_list(dev, &tmp_add_list);
584 585 586 587 588 589 590 591 592
	return status;
}

/**
 * ice_alloc_vf_res - Allocate VF resources
 * @vf: pointer to the VF structure
 */
static int ice_alloc_vf_res(struct ice_vf *vf)
{
593 594
	struct ice_pf *pf = vf->pf;
	int tx_rx_queue_left;
595 596
	int status;

597 598 599
	/* Update number of VF queues, in case VF had requested for queue
	 * changes
	 */
600 601
	tx_rx_queue_left = min_t(int, ice_get_avail_txq_count(pf),
				 ice_get_avail_rxq_count(pf));
602 603 604 605 606
	tx_rx_queue_left += ICE_DFLT_QS_PER_VF;
	if (vf->num_req_qs && vf->num_req_qs <= tx_rx_queue_left &&
	    vf->num_req_qs != vf->num_vf_qs)
		vf->num_vf_qs = vf->num_req_qs;

607 608 609 610 611
	/* setup VF VSI and necessary resources */
	status = ice_alloc_vsi_res(vf);
	if (status)
		goto ice_alloc_vf_res_exit;

612 613 614 615 616 617 618 619 620 621 622 623 624 625 626 627 628 629 630 631 632 633 634 635
	if (vf->trusted)
		set_bit(ICE_VIRTCHNL_VF_CAP_PRIVILEGE, &vf->vf_caps);
	else
		clear_bit(ICE_VIRTCHNL_VF_CAP_PRIVILEGE, &vf->vf_caps);

	/* VF is now completely initialized */
	set_bit(ICE_VF_STATE_INIT, vf->vf_states);

	return status;

ice_alloc_vf_res_exit:
	ice_free_vf_res(vf);
	return status;
}

/**
 * ice_ena_vf_mappings
 * @vf: pointer to the VF structure
 *
 * Enable VF vectors and queues allocation by writing the details into
 * respective registers.
 */
static void ice_ena_vf_mappings(struct ice_vf *vf)
{
636
	int abs_vf_id, abs_first, abs_last;
637 638
	struct ice_pf *pf = vf->pf;
	struct ice_vsi *vsi;
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	struct device *dev;
640 641 642 643
	int first, last, v;
	struct ice_hw *hw;
	u32 reg;

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	dev = ice_pf_to_dev(pf);
645 646
	hw = &pf->hw;
	vsi = pf->vsi[vf->lan_vsi_idx];
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	first = vf->first_vector_idx;
648
	last = (first + pf->num_vf_msix) - 1;
649 650
	abs_first = first + pf->hw.func_caps.common_cap.msix_vector_first_id;
	abs_last = (abs_first + pf->num_vf_msix) - 1;
651 652 653
	abs_vf_id = vf->vf_id + hw->func_caps.vf_base_id;

	/* VF Vector allocation */
654 655
	reg = (((abs_first << VPINT_ALLOC_FIRST_S) & VPINT_ALLOC_FIRST_M) |
	       ((abs_last << VPINT_ALLOC_LAST_S) & VPINT_ALLOC_LAST_M) |
656 657 658
	       VPINT_ALLOC_VALID_M);
	wr32(hw, VPINT_ALLOC(vf->vf_id), reg);

659 660 661
	reg = (((abs_first << VPINT_ALLOC_PCI_FIRST_S)
		 & VPINT_ALLOC_PCI_FIRST_M) |
	       ((abs_last << VPINT_ALLOC_PCI_LAST_S) & VPINT_ALLOC_PCI_LAST_M) |
662 663
	       VPINT_ALLOC_PCI_VALID_M);
	wr32(hw, VPINT_ALLOC_PCI(vf->vf_id), reg);
664 665 666 667 668 669 670 671 672
	/* map the interrupts to its functions */
	for (v = first; v <= last; v++) {
		reg = (((abs_vf_id << GLINT_VECT2FUNC_VF_NUM_S) &
			GLINT_VECT2FUNC_VF_NUM_M) |
		       ((hw->pf_id << GLINT_VECT2FUNC_PF_NUM_S) &
			GLINT_VECT2FUNC_PF_NUM_M));
		wr32(hw, GLINT_VECT2FUNC(v), reg);
	}

673 674 675 676
	/* Map mailbox interrupt. We put an explicit 0 here to remind us that
	 * VF admin queue interrupts will go to VF MSI-X vector 0.
	 */
	wr32(hw, VPINT_MBX_CTL(abs_vf_id), VPINT_MBX_CTL_CAUSE_ENA_M | 0);
677 678 679
	/* set regardless of mapping mode */
	wr32(hw, VPLAN_TXQ_MAPENA(vf->vf_id), VPLAN_TXQ_MAPENA_TX_ENA_M);

680 681 682 683 684 685 686 687 688 689 690 691
	/* VF Tx queues allocation */
	if (vsi->tx_mapping_mode == ICE_VSI_MAP_CONTIG) {
		/* set the VF PF Tx queue range
		 * VFNUMQ value should be set to (number of queues - 1). A value
		 * of 0 means 1 queue and a value of 255 means 256 queues
		 */
		reg = (((vsi->txq_map[0] << VPLAN_TX_QBASE_VFFIRSTQ_S) &
			VPLAN_TX_QBASE_VFFIRSTQ_M) |
		       (((vsi->alloc_txq - 1) << VPLAN_TX_QBASE_VFNUMQ_S) &
			VPLAN_TX_QBASE_VFNUMQ_M));
		wr32(hw, VPLAN_TX_QBASE(vf->vf_id), reg);
	} else {
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		dev_err(dev, "Scattered mode for VF Tx queues is not yet implemented\n");
693 694
	}

695 696 697
	/* set regardless of mapping mode */
	wr32(hw, VPLAN_RXQ_MAPENA(vf->vf_id), VPLAN_RXQ_MAPENA_RX_ENA_M);

698 699 700 701 702 703 704 705 706 707 708 709
	/* VF Rx queues allocation */
	if (vsi->rx_mapping_mode == ICE_VSI_MAP_CONTIG) {
		/* set the VF PF Rx queue range
		 * VFNUMQ value should be set to (number of queues - 1). A value
		 * of 0 means 1 queue and a value of 255 means 256 queues
		 */
		reg = (((vsi->rxq_map[0] << VPLAN_RX_QBASE_VFFIRSTQ_S) &
			VPLAN_RX_QBASE_VFFIRSTQ_M) |
		       (((vsi->alloc_txq - 1) << VPLAN_RX_QBASE_VFNUMQ_S) &
			VPLAN_RX_QBASE_VFNUMQ_M));
		wr32(hw, VPLAN_RX_QBASE(vf->vf_id), reg);
	} else {
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		dev_err(dev, "Scattered mode for VF Rx queues is not yet implemented\n");
711 712 713 714 715 716 717 718 719 720 721 722 723 724 725 726 727 728 729 730 731 732 733 734 735 736 737 738 739 740 741 742 743 744 745 746 747 748 749 750 751 752
	}
}

/**
 * ice_determine_res
 * @pf: pointer to the PF structure
 * @avail_res: available resources in the PF structure
 * @max_res: maximum resources that can be given per VF
 * @min_res: minimum resources that can be given per VF
 *
 * Returns non-zero value if resources (queues/vectors) are available or
 * returns zero if PF cannot accommodate for all num_alloc_vfs.
 */
static int
ice_determine_res(struct ice_pf *pf, u16 avail_res, u16 max_res, u16 min_res)
{
	bool checked_min_res = false;
	int res;

	/* start by checking if PF can assign max number of resources for
	 * all num_alloc_vfs.
	 * if yes, return number per VF
	 * If no, divide by 2 and roundup, check again
	 * repeat the loop till we reach a point where even minimum resources
	 * are not available, in that case return 0
	 */
	res = max_res;
	while ((res >= min_res) && !checked_min_res) {
		int num_all_res;

		num_all_res = pf->num_alloc_vfs * res;
		if (num_all_res <= avail_res)
			return res;

		if (res == min_res)
			checked_min_res = true;

		res = DIV_ROUND_UP(res, 2);
	}
	return 0;
}

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/**
 * ice_calc_vf_reg_idx - Calculate the VF's register index in the PF space
 * @vf: VF to calculate the register index for
 * @q_vector: a q_vector associated to the VF
 */
int ice_calc_vf_reg_idx(struct ice_vf *vf, struct ice_q_vector *q_vector)
{
	struct ice_pf *pf;

	if (!vf || !q_vector)
		return -EINVAL;

	pf = vf->pf;

	/* always add one to account for the OICR being the first MSIX */
	return pf->sriov_base_vector + pf->num_vf_msix * vf->vf_id +
		q_vector->v_idx + 1;
}

/**
 * ice_get_max_valid_res_idx - Get the max valid resource index
 * @res: pointer to the resource to find the max valid index for
 *
 * Start from the end of the ice_res_tracker and return right when we find the
 * first res->list entry with the ICE_RES_VALID_BIT set. This function is only
 * valid for SR-IOV because it is the only consumer that manipulates the
 * res->end and this is always called when res->end is set to res->num_entries.
 */
static int ice_get_max_valid_res_idx(struct ice_res_tracker *res)
{
	int i;

	if (!res)
		return -EINVAL;

	for (i = res->num_entries - 1; i >= 0; i--)
		if (res->list[i] & ICE_RES_VALID_BIT)
			return i;

	return 0;
}

/**
 * ice_sriov_set_msix_res - Set any used MSIX resources
 * @pf: pointer to PF structure
 * @num_msix_needed: number of MSIX vectors needed for all SR-IOV VFs
 *
 * This function allows SR-IOV resources to be taken from the end of the PF's
 * allowed HW MSIX vectors so in many cases the irq_tracker will not
 * be needed. In these cases we just set the pf->sriov_base_vector and return
 * success.
 *
 * If SR-IOV needs to use any pf->irq_tracker entries it updates the
 * irq_tracker->end based on the first entry needed for SR-IOV. This makes it
 * so any calls to ice_get_res() using the irq_tracker will not try to use
 * resources at or beyond the newly set value.
 *
 * Return 0 on success, and -EINVAL when there are not enough MSIX vectors in
 * in the PF's space available for SR-IOV.
 */
static int ice_sriov_set_msix_res(struct ice_pf *pf, u16 num_msix_needed)
{
	int max_valid_res_idx = ice_get_max_valid_res_idx(pf->irq_tracker);
	u16 pf_total_msix_vectors =
		pf->hw.func_caps.common_cap.num_msix_vectors;
	struct ice_res_tracker *res = pf->irq_tracker;
	int sriov_base_vector;

	if (max_valid_res_idx < 0)
		return max_valid_res_idx;

	sriov_base_vector = pf_total_msix_vectors - num_msix_needed;

	/* make sure we only grab irq_tracker entries from the list end and
	 * that we have enough available MSIX vectors
	 */
	if (sriov_base_vector <= max_valid_res_idx)
		return -EINVAL;

	pf->sriov_base_vector = sriov_base_vector;

	/* dip into irq_tracker entries and update used resources */
	if (num_msix_needed > (pf_total_msix_vectors - res->num_entries)) {
		pf->num_avail_sw_msix -=
			res->num_entries - pf->sriov_base_vector;
		res->end = pf->sriov_base_vector;
	}

	return 0;
}

844 845 846 847 848 849 850 851 852 853
/**
 * ice_check_avail_res - check if vectors and queues are available
 * @pf: pointer to the PF structure
 *
 * This function is where we calculate actual number of resources for VF VSIs,
 * we don't reserve ahead of time during probe. Returns success if vectors and
 * queues resources are available, otherwise returns error code
 */
static int ice_check_avail_res(struct ice_pf *pf)
{
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	int max_valid_res_idx = ice_get_max_valid_res_idx(pf->irq_tracker);
	u16 num_msix, num_txq, num_rxq, num_avail_msix;
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	struct device *dev = ice_pf_to_dev(pf);
857

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	if (!pf->num_alloc_vfs || max_valid_res_idx < 0)
859 860
		return -EINVAL;

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	/* add 1 to max_valid_res_idx to account for it being 0-based */
	num_avail_msix = pf->hw.func_caps.common_cap.num_msix_vectors -
		(max_valid_res_idx + 1);

865 866 867 868 869 870 871 872 873 874 875 876 877 878 879 880
	/* Grab from HW interrupts common pool
	 * Note: By the time the user decides it needs more vectors in a VF
	 * its already too late since one must decide this prior to creating the
	 * VF interface. So the best we can do is take a guess as to what the
	 * user might want.
	 *
	 * We have two policies for vector allocation:
	 * 1. if num_alloc_vfs is from 1 to 16, then we consider this as small
	 * number of NFV VFs used for NFV appliances, since this is a special
	 * case, we try to assign maximum vectors per VF (65) as much as
	 * possible, based on determine_resources algorithm.
	 * 2. if num_alloc_vfs is from 17 to 256, then its large number of
	 * regular VFs which are not used for any special purpose. Hence try to
	 * grab default interrupt vectors (5 as supported by AVF driver).
	 */
	if (pf->num_alloc_vfs <= 16) {
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		num_msix = ice_determine_res(pf, num_avail_msix,
882 883 884
					     ICE_MAX_INTR_PER_VF,
					     ICE_MIN_INTR_PER_VF);
	} else if (pf->num_alloc_vfs <= ICE_MAX_VF_COUNT) {
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		num_msix = ice_determine_res(pf, num_avail_msix,
886 887 888
					     ICE_DFLT_INTR_PER_VF,
					     ICE_MIN_INTR_PER_VF);
	} else {
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Brett Creeley 已提交
889
		dev_err(dev, "Number of VFs %d exceeds max VF count %d\n",
890 891 892 893 894 895 896 897 898 899 900 901 902 903
			pf->num_alloc_vfs, ICE_MAX_VF_COUNT);
		return -EIO;
	}

	if (!num_msix)
		return -EIO;

	/* Grab from the common pool
	 * start by requesting Default queues (4 as supported by AVF driver),
	 * Note that, the main difference between queues and vectors is, latter
	 * can only be reserved at init time but queues can be requested by VF
	 * at runtime through Virtchnl, that is the reason we start by reserving
	 * few queues.
	 */
904 905
	num_txq = ice_determine_res(pf, ice_get_avail_txq_count(pf),
				    ICE_DFLT_QS_PER_VF, ICE_MIN_QS_PER_VF);
906

907 908
	num_rxq = ice_determine_res(pf, ice_get_avail_rxq_count(pf),
				    ICE_DFLT_QS_PER_VF, ICE_MIN_QS_PER_VF);
909 910 911 912

	if (!num_txq || !num_rxq)
		return -EIO;

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	if (ice_sriov_set_msix_res(pf, num_msix * pf->num_alloc_vfs))
		return -EINVAL;

916 917 918 919 920 921 922 923 924 925 926 927 928 929 930 931 932 933 934 935 936 937 938 939 940 941 942 943 944 945 946 947 948 949 950 951 952 953 954 955 956 957 958 959 960 961 962 963 964 965 966 967 968 969 970 971 972 973
	/* since AVF driver works with only queue pairs which means, it expects
	 * to have equal number of Rx and Tx queues, so take the minimum of
	 * available Tx or Rx queues
	 */
	pf->num_vf_qps = min_t(int, num_txq, num_rxq);
	pf->num_vf_msix = num_msix;

	return 0;
}

/**
 * ice_cleanup_and_realloc_vf - Clean up VF and reallocate resources after reset
 * @vf: pointer to the VF structure
 *
 * Cleanup a VF after the hardware reset is finished. Expects the caller to
 * have verified whether the reset is finished properly, and ensure the
 * minimum amount of wait time has passed. Reallocate VF resources back to make
 * VF state active
 */
static void ice_cleanup_and_realloc_vf(struct ice_vf *vf)
{
	struct ice_pf *pf = vf->pf;
	struct ice_hw *hw;
	u32 reg;

	hw = &pf->hw;

	/* PF software completes the flow by notifying VF that reset flow is
	 * completed. This is done by enabling hardware by clearing the reset
	 * bit in the VPGEN_VFRTRIG reg and setting VFR_STATE in the VFGEN_RSTAT
	 * register to VFR completed (done at the end of this function)
	 * By doing this we allow HW to access VF memory at any point. If we
	 * did it any sooner, HW could access memory while it was being freed
	 * in ice_free_vf_res(), causing an IOMMU fault.
	 *
	 * On the other hand, this needs to be done ASAP, because the VF driver
	 * is waiting for this to happen and may report a timeout. It's
	 * harmless, but it gets logged into Guest OS kernel log, so best avoid
	 * it.
	 */
	reg = rd32(hw, VPGEN_VFRTRIG(vf->vf_id));
	reg &= ~VPGEN_VFRTRIG_VFSWR_M;
	wr32(hw, VPGEN_VFRTRIG(vf->vf_id), reg);

	/* reallocate VF resources to finish resetting the VSI state */
	if (!ice_alloc_vf_res(vf)) {
		ice_ena_vf_mappings(vf);
		set_bit(ICE_VF_STATE_ACTIVE, vf->vf_states);
		clear_bit(ICE_VF_STATE_DIS, vf->vf_states);
	}

	/* Tell the VF driver the reset is done. This needs to be done only
	 * after VF has been fully initialized, because the VF driver may
	 * request resources immediately after setting this flag.
	 */
	wr32(hw, VFGEN_RSTAT(vf->vf_id), VIRTCHNL_VFR_VFACTIVE);
}

974 975 976 977 978 979 980 981 982 983 984 985 986 987 988 989 990 991 992
/**
 * ice_vf_set_vsi_promisc - set given VF VSI to given promiscuous mode(s)
 * @vf: pointer to the VF info
 * @vsi: the VSI being configured
 * @promisc_m: mask of promiscuous config bits
 * @rm_promisc: promisc flag request from the VF to remove or add filter
 *
 * This function configures VF VSI promiscuous mode, based on the VF requests,
 * for Unicast, Multicast and VLAN
 */
static enum ice_status
ice_vf_set_vsi_promisc(struct ice_vf *vf, struct ice_vsi *vsi, u8 promisc_m,
		       bool rm_promisc)
{
	struct ice_pf *pf = vf->pf;
	enum ice_status status = 0;
	struct ice_hw *hw;

	hw = &pf->hw;
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993
	if (vsi->num_vlan) {
994 995
		status = ice_set_vlan_vsi_promisc(hw, vsi->idx, promisc_m,
						  rm_promisc);
996
	} else if (vf->port_vlan_info) {
997 998
		if (rm_promisc)
			status = ice_clear_vsi_promisc(hw, vsi->idx, promisc_m,
999
						       vf->port_vlan_info);
1000 1001
		else
			status = ice_set_vsi_promisc(hw, vsi->idx, promisc_m,
1002
						     vf->port_vlan_info);
1003 1004 1005 1006 1007 1008 1009 1010 1011 1012 1013 1014
	} else {
		if (rm_promisc)
			status = ice_clear_vsi_promisc(hw, vsi->idx, promisc_m,
						       0);
		else
			status = ice_set_vsi_promisc(hw, vsi->idx, promisc_m,
						     0);
	}

	return status;
}

1015 1016 1017 1018 1019 1020 1021 1022 1023 1024 1025
/**
 * ice_config_res_vfs - Finalize allocation of VFs resources in one go
 * @pf: pointer to the PF structure
 *
 * This function is being called as last part of resetting all VFs, or when
 * configuring VFs for the first time, where there is no resource to be freed
 * Returns true if resources were properly allocated for all VFs, and false
 * otherwise.
 */
static bool ice_config_res_vfs(struct ice_pf *pf)
{
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	struct device *dev = ice_pf_to_dev(pf);
1027 1028 1029 1030
	struct ice_hw *hw = &pf->hw;
	int v;

	if (ice_check_avail_res(pf)) {
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		dev_err(dev, "Cannot allocate VF resources, try with fewer number of VFs\n");
1032 1033 1034 1035 1036 1037 1038 1039
		return false;
	}

	/* rearm global interrupts */
	if (test_and_clear_bit(__ICE_OICR_INTR_DIS, pf->state))
		ice_irq_dynamic_ena(hw, NULL, NULL);

	/* Finish resetting each VF and allocate resources */
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	ice_for_each_vf(pf, v) {
1041 1042 1043
		struct ice_vf *vf = &pf->vf[v];

		vf->num_vf_qs = pf->num_vf_qps;
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Brett Creeley 已提交
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		dev_dbg(dev, "VF-id %d has %d queues configured\n", vf->vf_id,
			vf->num_vf_qs);
1046 1047 1048 1049 1050 1051 1052 1053 1054
		ice_cleanup_and_realloc_vf(vf);
	}

	ice_flush(hw);
	clear_bit(__ICE_VF_DIS, pf->state);

	return true;
}

1055 1056 1057 1058 1059 1060 1061 1062 1063 1064 1065 1066 1067 1068
/**
 * ice_reset_all_vfs - reset all allocated VFs in one go
 * @pf: pointer to the PF structure
 * @is_vflr: true if VFLR was issued, false if not
 *
 * First, tell the hardware to reset each VF, then do all the waiting in one
 * chunk, and finally finish restoring each VF after the wait. This is useful
 * during PF routines which need to reset all VFs, as otherwise it must perform
 * these resets in a serialized fashion.
 *
 * Returns true if any VFs were reset, and false otherwise.
 */
bool ice_reset_all_vfs(struct ice_pf *pf, bool is_vflr)
{
B
Brett Creeley 已提交
1069
	struct device *dev = ice_pf_to_dev(pf);
1070
	struct ice_hw *hw = &pf->hw;
1071
	struct ice_vf *vf;
1072 1073 1074 1075 1076 1077 1078 1079 1080 1081 1082
	int v, i;

	/* If we don't have any VFs, then there is nothing to reset */
	if (!pf->num_alloc_vfs)
		return false;

	/* If VFs have been disabled, there is no need to reset */
	if (test_and_set_bit(__ICE_VF_DIS, pf->state))
		return false;

	/* Begin reset on all VFs at once */
B
Brett Creeley 已提交
1083
	ice_for_each_vf(pf, v)
M
Mitch Williams 已提交
1084
		ice_trigger_vf_reset(&pf->vf[v], is_vflr, true);
1085

B
Brett Creeley 已提交
1086
	ice_for_each_vf(pf, v) {
1087 1088 1089 1090 1091 1092 1093 1094 1095
		struct ice_vsi *vsi;

		vf = &pf->vf[v];
		vsi = pf->vsi[vf->lan_vsi_idx];
		if (test_bit(ICE_VF_STATE_QS_ENA, vf->vf_states))
			ice_dis_vf_qs(vf);
		ice_dis_vsi_txq(vsi->port_info, vsi->idx, 0, 0, NULL, NULL,
				NULL, ICE_VF_RESET, vf->vf_id, NULL);
	}
1096 1097 1098 1099 1100 1101 1102 1103 1104 1105 1106 1107

	/* HW requires some time to make sure it can flush the FIFO for a VF
	 * when it resets it. Poll the VPGEN_VFRSTAT register for each VF in
	 * sequence to make sure that it has completed. We'll keep track of
	 * the VFs using a simple iterator that increments once that VF has
	 * finished resetting.
	 */
	for (i = 0, v = 0; i < 10 && v < pf->num_alloc_vfs; i++) {
		/* Check each VF in sequence */
		while (v < pf->num_alloc_vfs) {
			u32 reg;

1108
			vf = &pf->vf[v];
1109
			reg = rd32(hw, VPGEN_VFRSTAT(vf->vf_id));
1110 1111 1112
			if (!(reg & VPGEN_VFRSTAT_VFRD_M)) {
				/* only delay if the check failed */
				usleep_range(10, 20);
1113
				break;
1114
			}
1115 1116 1117 1118 1119 1120 1121 1122 1123 1124 1125 1126

			/* If the current VF has finished resetting, move on
			 * to the next VF in sequence.
			 */
			v++;
		}
	}

	/* Display a warning if at least one VF didn't manage to reset in
	 * time, but continue on with the operation.
	 */
	if (v < pf->num_alloc_vfs)
B
Brett Creeley 已提交
1127
		dev_warn(dev, "VF reset check timeout\n");
1128 1129

	/* free VF resources to begin resetting the VSI state */
B
Brett Creeley 已提交
1130
	ice_for_each_vf(pf, v) {
1131 1132 1133 1134 1135 1136 1137 1138 1139 1140 1141
		vf = &pf->vf[v];

		ice_free_vf_res(vf);

		/* Free VF queues as well, and reallocate later.
		 * If a given VF has different number of queues
		 * configured, the request for update will come
		 * via mailbox communication.
		 */
		vf->num_vf_qs = 0;
	}
1142

B
Brett Creeley 已提交
1143
	if (ice_sriov_free_msix_res(pf))
B
Brett Creeley 已提交
1144
		dev_err(dev, "Failed to free MSIX resources used by SR-IOV\n");
B
Brett Creeley 已提交
1145

1146
	if (!ice_config_res_vfs(pf))
1147 1148 1149 1150 1151
		return false;

	return true;
}

1152 1153 1154 1155 1156 1157 1158 1159 1160 1161 1162 1163 1164 1165 1166 1167 1168 1169 1170
/**
 * ice_is_vf_disabled
 * @vf: pointer to the VF info
 *
 * Returns true if the PF or VF is disabled, false otherwise.
 */
static bool ice_is_vf_disabled(struct ice_vf *vf)
{
	struct ice_pf *pf = vf->pf;

	/* If the PF has been disabled, there is no need resetting VF until
	 * PF is active again. Similarly, if the VF has been disabled, this
	 * means something else is resetting the VF, so we shouldn't continue.
	 * Otherwise, set disable VF state bit for actual reset, and continue.
	 */
	return (test_bit(__ICE_VF_DIS, pf->state) ||
		test_bit(ICE_VF_STATE_DIS, vf->vf_states));
}

1171 1172 1173 1174 1175 1176 1177 1178 1179 1180
/**
 * ice_reset_vf - Reset a particular VF
 * @vf: pointer to the VF structure
 * @is_vflr: true if VFLR was issued, false if not
 *
 * Returns true if the VF is reset, false otherwise.
 */
static bool ice_reset_vf(struct ice_vf *vf, bool is_vflr)
{
	struct ice_pf *pf = vf->pf;
1181
	struct ice_vsi *vsi;
B
Brett Creeley 已提交
1182
	struct device *dev;
1183
	struct ice_hw *hw;
1184
	bool rsd = false;
1185
	u8 promisc_m;
1186 1187 1188
	u32 reg;
	int i;

B
Brett Creeley 已提交
1189 1190
	dev = ice_pf_to_dev(pf);

1191
	if (ice_is_vf_disabled(vf)) {
B
Brett Creeley 已提交
1192 1193
		dev_dbg(dev, "VF is already disabled, there is no need for resetting it, telling VM, all is fine %d\n",
			vf->vf_id);
1194 1195
		return true;
	}
1196

1197 1198
	/* Set VF disable bit state here, before triggering reset */
	set_bit(ICE_VF_STATE_DIS, vf->vf_states);
M
Mitch Williams 已提交
1199
	ice_trigger_vf_reset(vf, is_vflr, false);
1200

1201 1202
	vsi = pf->vsi[vf->lan_vsi_idx];

1203 1204
	if (test_bit(ICE_VF_STATE_QS_ENA, vf->vf_states))
		ice_dis_vf_qs(vf);
1205 1206 1207 1208 1209 1210

	/* Call Disable LAN Tx queue AQ whether or not queues are
	 * enabled. This is needed for successful completion of VFR.
	 */
	ice_dis_vsi_txq(vsi->port_info, vsi->idx, 0, 0, NULL, NULL,
			NULL, ICE_VF_RESET, vf->vf_id, NULL);
1211

1212
	hw = &pf->hw;
1213 1214 1215 1216 1217 1218 1219 1220 1221 1222 1223 1224 1225
	/* poll VPGEN_VFRSTAT reg to make sure
	 * that reset is complete
	 */
	for (i = 0; i < 10; i++) {
		/* VF reset requires driver to first reset the VF and then
		 * poll the status register to make sure that the reset
		 * completed successfully.
		 */
		reg = rd32(hw, VPGEN_VFRSTAT(vf->vf_id));
		if (reg & VPGEN_VFRSTAT_VFRD_M) {
			rsd = true;
			break;
		}
1226 1227 1228

		/* only sleep if the reset is not done */
		usleep_range(10, 20);
1229 1230 1231 1232 1233 1234
	}

	/* Display a warning if VF didn't manage to reset in time, but need to
	 * continue on with the operation.
	 */
	if (!rsd)
B
Brett Creeley 已提交
1235
		dev_warn(dev, "VF reset check timeout on VF %d\n", vf->vf_id);
1236

1237 1238 1239 1240 1241
	/* disable promiscuous modes in case they were enabled
	 * ignore any error if disabling process failed
	 */
	if (test_bit(ICE_VF_STATE_UC_PROMISC, vf->vf_states) ||
	    test_bit(ICE_VF_STATE_MC_PROMISC, vf->vf_states)) {
1242
		if (vf->port_vlan_info || vsi->num_vlan)
1243 1244 1245 1246 1247 1248
			promisc_m = ICE_UCAST_VLAN_PROMISC_BITS;
		else
			promisc_m = ICE_UCAST_PROMISC_BITS;

		vsi = pf->vsi[vf->lan_vsi_idx];
		if (ice_vf_set_vsi_promisc(vf, vsi, promisc_m, true))
B
Brett Creeley 已提交
1249
			dev_err(dev, "disabling promiscuous mode failed\n");
1250 1251
	}

1252 1253 1254 1255 1256 1257 1258 1259 1260 1261
	/* free VF resources to begin resetting the VSI state */
	ice_free_vf_res(vf);

	ice_cleanup_and_realloc_vf(vf);

	ice_flush(hw);

	return true;
}

1262 1263 1264 1265 1266 1267 1268 1269
/**
 * ice_vc_notify_link_state - Inform all VFs on a PF of link status
 * @pf: pointer to the PF structure
 */
void ice_vc_notify_link_state(struct ice_pf *pf)
{
	int i;

B
Brett Creeley 已提交
1270
	ice_for_each_vf(pf, i)
1271 1272 1273
		ice_vc_notify_vf_link_state(&pf->vf[i]);
}

1274 1275 1276 1277 1278 1279 1280 1281 1282 1283 1284 1285 1286 1287 1288
/**
 * ice_vc_notify_reset - Send pending reset message to all VFs
 * @pf: pointer to the PF structure
 *
 * indicate a pending reset to all VFs on a given PF
 */
void ice_vc_notify_reset(struct ice_pf *pf)
{
	struct virtchnl_pf_event pfe;

	if (!pf->num_alloc_vfs)
		return;

	pfe.event = VIRTCHNL_EVENT_RESET_IMPENDING;
	pfe.severity = PF_EVENT_SEVERITY_CERTAIN_DOOM;
1289
	ice_vc_vf_broadcast(pf, VIRTCHNL_OP_EVENT, VIRTCHNL_STATUS_SUCCESS,
1290 1291 1292
			    (u8 *)&pfe, sizeof(struct virtchnl_pf_event));
}

1293 1294 1295 1296 1297 1298 1299
/**
 * ice_vc_notify_vf_reset - Notify VF of a reset event
 * @vf: pointer to the VF structure
 */
static void ice_vc_notify_vf_reset(struct ice_vf *vf)
{
	struct virtchnl_pf_event pfe;
J
Jesse Brandeburg 已提交
1300
	struct ice_pf *pf;
1301

J
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1302 1303 1304 1305 1306
	if (!vf)
		return;

	pf = vf->pf;
	if (ice_validate_vf_id(pf, vf->vf_id))
1307 1308
		return;

1309 1310 1311 1312 1313 1314
	/* Bail out if VF is in disabled state, neither initialized, nor active
	 * state - otherwise proceed with notifications
	 */
	if ((!test_bit(ICE_VF_STATE_INIT, vf->vf_states) &&
	     !test_bit(ICE_VF_STATE_ACTIVE, vf->vf_states)) ||
	    test_bit(ICE_VF_STATE_DIS, vf->vf_states))
1315 1316 1317 1318
		return;

	pfe.event = VIRTCHNL_EVENT_RESET_IMPENDING;
	pfe.severity = PF_EVENT_SEVERITY_CERTAIN_DOOM;
J
Jesse Brandeburg 已提交
1319
	ice_aq_send_msg_to_vf(&pf->hw, vf->vf_id, VIRTCHNL_OP_EVENT,
1320 1321
			      VIRTCHNL_STATUS_SUCCESS, (u8 *)&pfe, sizeof(pfe),
			      NULL);
1322 1323
}

1324 1325 1326 1327 1328 1329 1330
/**
 * ice_alloc_vfs - Allocate and set up VFs resources
 * @pf: pointer to the PF structure
 * @num_alloc_vfs: number of VFs to allocate
 */
static int ice_alloc_vfs(struct ice_pf *pf, u16 num_alloc_vfs)
{
B
Brett Creeley 已提交
1331
	struct device *dev = ice_pf_to_dev(pf);
1332 1333 1334 1335 1336
	struct ice_hw *hw = &pf->hw;
	struct ice_vf *vfs;
	int i, ret;

	/* Disable global interrupt 0 so we don't try to handle the VFLR. */
B
Brett Creeley 已提交
1337
	wr32(hw, GLINT_DYN_CTL(pf->oicr_idx),
1338
	     ICE_ITR_NONE << GLINT_DYN_CTL_ITR_INDX_S);
1339
	set_bit(__ICE_OICR_INTR_DIS, pf->state);
1340 1341 1342 1343 1344 1345 1346 1347
	ice_flush(hw);

	ret = pci_enable_sriov(pf->pdev, num_alloc_vfs);
	if (ret) {
		pf->num_alloc_vfs = 0;
		goto err_unroll_intr;
	}
	/* allocate memory */
B
Brett Creeley 已提交
1348
	vfs = devm_kcalloc(dev, num_alloc_vfs, sizeof(*vfs), GFP_KERNEL);
1349 1350
	if (!vfs) {
		ret = -ENOMEM;
1351
		goto err_pci_disable_sriov;
1352 1353
	}
	pf->vf = vfs;
B
Brett Creeley 已提交
1354
	pf->num_alloc_vfs = num_alloc_vfs;
1355 1356

	/* apply default profile */
B
Brett Creeley 已提交
1357
	ice_for_each_vf(pf, i) {
1358 1359 1360 1361 1362 1363 1364 1365 1366
		vfs[i].pf = pf;
		vfs[i].vf_sw_id = pf->first_sw;
		vfs[i].vf_id = i;

		/* assign default capabilities */
		set_bit(ICE_VIRTCHNL_VF_CAP_L2, &vfs[i].vf_caps);
		vfs[i].spoofchk = true;
	}

1367 1368
	/* VF resources get allocated with initialization */
	if (!ice_config_res_vfs(pf)) {
1369
		ret = -EIO;
1370
		goto err_unroll_sriov;
1371
	}
1372

1373
	return ret;
1374 1375

err_unroll_sriov:
1376
	pf->vf = NULL;
B
Brett Creeley 已提交
1377
	devm_kfree(dev, vfs);
1378 1379 1380
	vfs = NULL;
	pf->num_alloc_vfs = 0;
err_pci_disable_sriov:
1381 1382 1383 1384
	pci_disable_sriov(pf->pdev);
err_unroll_intr:
	/* rearm interrupts here */
	ice_irq_dynamic_ena(hw, NULL, NULL);
1385
	clear_bit(__ICE_OICR_INTR_DIS, pf->state);
1386 1387 1388 1389
	return ret;
}

/**
1390 1391
 * ice_pf_state_is_nominal - checks the PF for nominal state
 * @pf: pointer to PF to check
1392 1393 1394 1395 1396 1397 1398 1399 1400 1401 1402 1403 1404 1405 1406 1407 1408 1409 1410 1411 1412 1413 1414 1415 1416 1417 1418 1419 1420 1421
 *
 * Check the PF's state for a collection of bits that would indicate
 * the PF is in a state that would inhibit normal operation for
 * driver functionality.
 *
 * Returns true if PF is in a nominal state.
 * Returns false otherwise
 */
static bool ice_pf_state_is_nominal(struct ice_pf *pf)
{
	DECLARE_BITMAP(check_bits, __ICE_STATE_NBITS) = { 0 };

	if (!pf)
		return false;

	bitmap_set(check_bits, 0, __ICE_STATE_NOMINAL_CHECK_BITS);
	if (bitmap_intersects(pf->state, check_bits, __ICE_STATE_NBITS))
		return false;

	return true;
}

/**
 * ice_pci_sriov_ena - Enable or change number of VFs
 * @pf: pointer to the PF structure
 * @num_vfs: number of VFs to allocate
 */
static int ice_pci_sriov_ena(struct ice_pf *pf, int num_vfs)
{
	int pre_existing_vfs = pci_num_vf(pf->pdev);
B
Brett Creeley 已提交
1422
	struct device *dev = ice_pf_to_dev(pf);
1423 1424 1425 1426 1427 1428 1429 1430 1431
	int err;

	if (!ice_pf_state_is_nominal(pf)) {
		dev_err(dev, "Cannot enable SR-IOV, device not ready\n");
		return -EBUSY;
	}

	if (!test_bit(ICE_FLAG_SRIOV_CAPABLE, pf->flags)) {
		dev_err(dev, "This device is not capable of SR-IOV\n");
1432
		return -EOPNOTSUPP;
1433 1434 1435 1436 1437 1438 1439 1440 1441 1442 1443 1444 1445 1446 1447 1448 1449 1450 1451 1452 1453 1454 1455 1456 1457 1458 1459 1460 1461 1462 1463 1464 1465 1466
	}

	if (pre_existing_vfs && pre_existing_vfs != num_vfs)
		ice_free_vfs(pf);
	else if (pre_existing_vfs && pre_existing_vfs == num_vfs)
		return num_vfs;

	if (num_vfs > pf->num_vfs_supported) {
		dev_err(dev, "Can't enable %d VFs, max VFs supported is %d\n",
			num_vfs, pf->num_vfs_supported);
		return -ENOTSUPP;
	}

	dev_info(dev, "Allocating %d VFs\n", num_vfs);
	err = ice_alloc_vfs(pf, num_vfs);
	if (err) {
		dev_err(dev, "Failed to enable SR-IOV: %d\n", err);
		return err;
	}

	set_bit(ICE_FLAG_SRIOV_ENA, pf->flags);
	return num_vfs;
}

/**
 * ice_sriov_configure - Enable or change number of VFs via sysfs
 * @pdev: pointer to a pci_dev structure
 * @num_vfs: number of VFs to allocate
 *
 * This function is called when the user updates the number of VFs in sysfs.
 */
int ice_sriov_configure(struct pci_dev *pdev, int num_vfs)
{
	struct ice_pf *pf = pci_get_drvdata(pdev);
B
Brett Creeley 已提交
1467
	struct device *dev = ice_pf_to_dev(pf);
1468

T
Tony Nguyen 已提交
1469
	if (ice_is_safe_mode(pf)) {
B
Brett Creeley 已提交
1470
		dev_err(dev, "SR-IOV cannot be configured - Device is in Safe Mode\n");
T
Tony Nguyen 已提交
1471 1472 1473
		return -EOPNOTSUPP;
	}

1474 1475 1476 1477 1478 1479
	if (num_vfs)
		return ice_pci_sriov_ena(pf, num_vfs);

	if (!pci_vfs_assigned(pdev)) {
		ice_free_vfs(pf);
	} else {
B
Brett Creeley 已提交
1480
		dev_err(dev, "can't free VFs because some are assigned to VMs.\n");
1481 1482 1483 1484 1485
		return -EBUSY;
	}

	return 0;
}
1486 1487 1488 1489 1490

/**
 * ice_process_vflr_event - Free VF resources via IRQ calls
 * @pf: pointer to the PF structure
 *
1491
 * called from the VFLR IRQ handler to
1492 1493 1494 1495 1496 1497 1498 1499
 * free up VF resources and state variables
 */
void ice_process_vflr_event(struct ice_pf *pf)
{
	struct ice_hw *hw = &pf->hw;
	int vf_id;
	u32 reg;

1500
	if (!test_and_clear_bit(__ICE_VFLR_EVENT_PENDING, pf->state) ||
1501 1502 1503
	    !pf->num_alloc_vfs)
		return;

B
Brett Creeley 已提交
1504
	ice_for_each_vf(pf, vf_id) {
1505 1506 1507 1508 1509 1510 1511 1512 1513 1514 1515 1516
		struct ice_vf *vf = &pf->vf[vf_id];
		u32 reg_idx, bit_idx;

		reg_idx = (hw->func_caps.vf_base_id + vf_id) / 32;
		bit_idx = (hw->func_caps.vf_base_id + vf_id) % 32;
		/* read GLGEN_VFLRSTAT register to find out the flr VFs */
		reg = rd32(hw, GLGEN_VFLRSTAT(reg_idx));
		if (reg & BIT(bit_idx))
			/* GLGEN_VFLRSTAT bit will be cleared in ice_reset_vf */
			ice_reset_vf(vf, true);
	}
}
1517 1518

/**
1519
 * ice_vc_reset_vf - Perform software reset on the VF after informing the AVF
1520 1521
 * @vf: pointer to the VF info
 */
1522
static void ice_vc_reset_vf(struct ice_vf *vf)
1523 1524 1525 1526 1527
{
	ice_vc_notify_vf_reset(vf);
	ice_reset_vf(vf, false);
}

1528 1529 1530 1531 1532 1533 1534 1535 1536 1537 1538 1539 1540 1541 1542 1543 1544 1545 1546 1547 1548 1549 1550 1551 1552 1553 1554 1555 1556 1557 1558 1559 1560 1561 1562 1563 1564 1565 1566 1567 1568 1569 1570 1571 1572 1573 1574 1575 1576 1577 1578 1579 1580 1581 1582 1583 1584 1585 1586 1587 1588 1589 1590 1591 1592 1593
/**
 * ice_get_vf_from_pfq - get the VF who owns the PF space queue passed in
 * @pf: PF used to index all VFs
 * @pfq: queue index relative to the PF's function space
 *
 * If no VF is found who owns the pfq then return NULL, otherwise return a
 * pointer to the VF who owns the pfq
 */
static struct ice_vf *ice_get_vf_from_pfq(struct ice_pf *pf, u16 pfq)
{
	int vf_id;

	ice_for_each_vf(pf, vf_id) {
		struct ice_vf *vf = &pf->vf[vf_id];
		struct ice_vsi *vsi;
		u16 rxq_idx;

		vsi = pf->vsi[vf->lan_vsi_idx];

		ice_for_each_rxq(vsi, rxq_idx)
			if (vsi->rxq_map[rxq_idx] == pfq)
				return vf;
	}

	return NULL;
}

/**
 * ice_globalq_to_pfq - convert from global queue index to PF space queue index
 * @pf: PF used for conversion
 * @globalq: global queue index used to convert to PF space queue index
 */
static u32 ice_globalq_to_pfq(struct ice_pf *pf, u32 globalq)
{
	return globalq - pf->hw.func_caps.common_cap.rxq_first_id;
}

/**
 * ice_vf_lan_overflow_event - handle LAN overflow event for a VF
 * @pf: PF that the LAN overflow event happened on
 * @event: structure holding the event information for the LAN overflow event
 *
 * Determine if the LAN overflow event was caused by a VF queue. If it was not
 * caused by a VF, do nothing. If a VF caused this LAN overflow event trigger a
 * reset on the offending VF.
 */
void
ice_vf_lan_overflow_event(struct ice_pf *pf, struct ice_rq_event_info *event)
{
	u32 gldcb_rtctq, queue;
	struct ice_vf *vf;

	gldcb_rtctq = le32_to_cpu(event->desc.params.lan_overflow.prtdcb_ruptq);
	dev_dbg(ice_pf_to_dev(pf), "GLDCB_RTCTQ: 0x%08x\n", gldcb_rtctq);

	/* event returns device global Rx queue number */
	queue = (gldcb_rtctq & GLDCB_RTCTQ_RXQNUM_M) >>
		GLDCB_RTCTQ_RXQNUM_S;

	vf = ice_get_vf_from_pfq(pf, ice_globalq_to_pfq(pf, queue));
	if (!vf)
		return;

	ice_vc_reset_vf(vf);
}

1594 1595 1596 1597 1598 1599 1600 1601 1602 1603
/**
 * ice_vc_send_msg_to_vf - Send message to VF
 * @vf: pointer to the VF info
 * @v_opcode: virtual channel opcode
 * @v_retval: virtual channel return value
 * @msg: pointer to the msg buffer
 * @msglen: msg length
 *
 * send msg to VF
 */
1604
static int
1605 1606
ice_vc_send_msg_to_vf(struct ice_vf *vf, u32 v_opcode,
		      enum virtchnl_status_code v_retval, u8 *msg, u16 msglen)
1607 1608
{
	enum ice_status aq_ret;
B
Brett Creeley 已提交
1609
	struct device *dev;
1610 1611
	struct ice_pf *pf;

J
Jesse Brandeburg 已提交
1612
	if (!vf)
1613 1614 1615
		return -EINVAL;

	pf = vf->pf;
J
Jesse Brandeburg 已提交
1616 1617
	if (ice_validate_vf_id(pf, vf->vf_id))
		return -EINVAL;
1618

B
Brett Creeley 已提交
1619 1620
	dev = ice_pf_to_dev(pf);

1621 1622 1623
	/* single place to detect unsuccessful return values */
	if (v_retval) {
		vf->num_inval_msgs++;
B
Brett Creeley 已提交
1624 1625
		dev_info(dev, "VF %d failed opcode %d, retval: %d\n", vf->vf_id,
			 v_opcode, v_retval);
1626
		if (vf->num_inval_msgs > ICE_DFLT_NUM_INVAL_MSGS_ALLOWED) {
1627
			dev_err(dev, "Number of invalid messages exceeded for VF %d\n",
1628
				vf->vf_id);
B
Brett Creeley 已提交
1629
			dev_err(dev, "Use PF Control I/F to enable the VF\n");
1630 1631 1632 1633 1634 1635 1636 1637 1638 1639 1640
			set_bit(ICE_VF_STATE_DIS, vf->vf_states);
			return -EIO;
		}
	} else {
		vf->num_valid_msgs++;
		/* reset the invalid counter, if a valid message is received. */
		vf->num_inval_msgs = 0;
	}

	aq_ret = ice_aq_send_msg_to_vf(&pf->hw, vf->vf_id, v_opcode, v_retval,
				       msg, msglen, NULL);
1641
	if (aq_ret && pf->hw.mailboxq.sq_last_status != ICE_AQ_RC_ENOSYS) {
1642
		dev_info(dev, "Unable to send the message to VF %d ret %d aq_err %d\n",
1643
			 vf->vf_id, aq_ret, pf->hw.mailboxq.sq_last_status);
1644 1645 1646 1647 1648 1649 1650 1651 1652 1653 1654 1655 1656 1657 1658 1659 1660 1661 1662 1663 1664 1665 1666 1667
		return -EIO;
	}

	return 0;
}

/**
 * ice_vc_get_ver_msg
 * @vf: pointer to the VF info
 * @msg: pointer to the msg buffer
 *
 * called from the VF to request the API version used by the PF
 */
static int ice_vc_get_ver_msg(struct ice_vf *vf, u8 *msg)
{
	struct virtchnl_version_info info = {
		VIRTCHNL_VERSION_MAJOR, VIRTCHNL_VERSION_MINOR
	};

	vf->vf_ver = *(struct virtchnl_version_info *)msg;
	/* VFs running the 1.0 API expect to get 1.0 back or they will cry. */
	if (VF_IS_V10(&vf->vf_ver))
		info.minor = VIRTCHNL_VERSION_MINOR_NO_VF_CAPS;

1668 1669
	return ice_vc_send_msg_to_vf(vf, VIRTCHNL_OP_VERSION,
				     VIRTCHNL_STATUS_SUCCESS, (u8 *)&info,
1670 1671 1672 1673 1674 1675 1676 1677 1678 1679 1680 1681
				     sizeof(struct virtchnl_version_info));
}

/**
 * ice_vc_get_vf_res_msg
 * @vf: pointer to the VF info
 * @msg: pointer to the msg buffer
 *
 * called from the VF to request its resources
 */
static int ice_vc_get_vf_res_msg(struct ice_vf *vf, u8 *msg)
{
1682
	enum virtchnl_status_code v_ret = VIRTCHNL_STATUS_SUCCESS;
1683 1684 1685 1686 1687 1688
	struct virtchnl_vf_resource *vfres = NULL;
	struct ice_pf *pf = vf->pf;
	struct ice_vsi *vsi;
	int len = 0;
	int ret;

J
Jesse Brandeburg 已提交
1689
	if (ice_check_vf_init(pf, vf)) {
1690
		v_ret = VIRTCHNL_STATUS_ERR_PARAM;
1691 1692 1693 1694 1695
		goto err;
	}

	len = sizeof(struct virtchnl_vf_resource);

1696
	vfres = kzalloc(len, GFP_KERNEL);
1697
	if (!vfres) {
1698
		v_ret = VIRTCHNL_STATUS_ERR_NO_MEMORY;
1699 1700 1701 1702 1703 1704 1705 1706 1707 1708 1709 1710
		len = 0;
		goto err;
	}
	if (VF_IS_V11(&vf->vf_ver))
		vf->driver_caps = *(u32 *)msg;
	else
		vf->driver_caps = VIRTCHNL_VF_OFFLOAD_L2 |
				  VIRTCHNL_VF_OFFLOAD_RSS_REG |
				  VIRTCHNL_VF_OFFLOAD_VLAN;

	vfres->vf_cap_flags = VIRTCHNL_VF_OFFLOAD_L2;
	vsi = pf->vsi[vf->lan_vsi_idx];
1711
	if (!vsi) {
1712
		v_ret = VIRTCHNL_STATUS_ERR_PARAM;
1713 1714 1715
		goto err;
	}

1716 1717 1718 1719 1720 1721 1722 1723 1724 1725 1726 1727 1728 1729 1730 1731 1732 1733 1734 1735 1736 1737 1738 1739 1740 1741 1742 1743 1744 1745 1746 1747 1748 1749 1750 1751 1752 1753 1754 1755 1756 1757 1758 1759 1760 1761
	if (!vsi->info.pvid)
		vfres->vf_cap_flags |= VIRTCHNL_VF_OFFLOAD_VLAN;

	if (vf->driver_caps & VIRTCHNL_VF_OFFLOAD_RSS_PF) {
		vfres->vf_cap_flags |= VIRTCHNL_VF_OFFLOAD_RSS_PF;
	} else {
		if (vf->driver_caps & VIRTCHNL_VF_OFFLOAD_RSS_AQ)
			vfres->vf_cap_flags |= VIRTCHNL_VF_OFFLOAD_RSS_AQ;
		else
			vfres->vf_cap_flags |= VIRTCHNL_VF_OFFLOAD_RSS_REG;
	}

	if (vf->driver_caps & VIRTCHNL_VF_OFFLOAD_RSS_PCTYPE_V2)
		vfres->vf_cap_flags |= VIRTCHNL_VF_OFFLOAD_RSS_PCTYPE_V2;

	if (vf->driver_caps & VIRTCHNL_VF_OFFLOAD_ENCAP)
		vfres->vf_cap_flags |= VIRTCHNL_VF_OFFLOAD_ENCAP;

	if (vf->driver_caps & VIRTCHNL_VF_OFFLOAD_ENCAP_CSUM)
		vfres->vf_cap_flags |= VIRTCHNL_VF_OFFLOAD_ENCAP_CSUM;

	if (vf->driver_caps & VIRTCHNL_VF_OFFLOAD_RX_POLLING)
		vfres->vf_cap_flags |= VIRTCHNL_VF_OFFLOAD_RX_POLLING;

	if (vf->driver_caps & VIRTCHNL_VF_OFFLOAD_WB_ON_ITR)
		vfres->vf_cap_flags |= VIRTCHNL_VF_OFFLOAD_WB_ON_ITR;

	if (vf->driver_caps & VIRTCHNL_VF_OFFLOAD_REQ_QUEUES)
		vfres->vf_cap_flags |= VIRTCHNL_VF_OFFLOAD_REQ_QUEUES;

	if (vf->driver_caps & VIRTCHNL_VF_CAP_ADV_LINK_SPEED)
		vfres->vf_cap_flags |= VIRTCHNL_VF_CAP_ADV_LINK_SPEED;

	vfres->num_vsis = 1;
	/* Tx and Rx queue are equal for VF */
	vfres->num_queue_pairs = vsi->num_txq;
	vfres->max_vectors = pf->num_vf_msix;
	vfres->rss_key_size = ICE_VSIQF_HKEY_ARRAY_SIZE;
	vfres->rss_lut_size = ICE_VSIQF_HLUT_ARRAY_SIZE;

	vfres->vsi_res[0].vsi_id = vf->lan_vsi_num;
	vfres->vsi_res[0].vsi_type = VIRTCHNL_VSI_SRIOV;
	vfres->vsi_res[0].num_queue_pairs = vsi->num_txq;
	ether_addr_copy(vfres->vsi_res[0].default_mac_addr,
			vf->dflt_lan_addr.addr);

1762 1763 1764
	/* match guest capabilities */
	vf->driver_caps = vfres->vf_cap_flags;

1765 1766 1767 1768
	set_bit(ICE_VF_STATE_ACTIVE, vf->vf_states);

err:
	/* send the response back to the VF */
1769
	ret = ice_vc_send_msg_to_vf(vf, VIRTCHNL_OP_GET_VF_RESOURCES, v_ret,
1770 1771
				    (u8 *)vfres, len);

1772
	kfree(vfres);
1773 1774 1775 1776 1777 1778 1779 1780 1781 1782 1783 1784 1785 1786 1787 1788 1789 1790 1791
	return ret;
}

/**
 * ice_vc_reset_vf_msg
 * @vf: pointer to the VF info
 *
 * called from the VF to reset itself,
 * unlike other virtchnl messages, PF driver
 * doesn't send the response back to the VF
 */
static void ice_vc_reset_vf_msg(struct ice_vf *vf)
{
	if (test_bit(ICE_VF_STATE_ACTIVE, vf->vf_states))
		ice_reset_vf(vf, false);
}

/**
 * ice_find_vsi_from_id
1792
 * @pf: the PF structure to search for the VSI
1793
 * @id: ID of the VSI it is searching for
1794
 *
1795
 * searches for the VSI with the given ID
1796 1797 1798 1799 1800
 */
static struct ice_vsi *ice_find_vsi_from_id(struct ice_pf *pf, u16 id)
{
	int i;

1801
	ice_for_each_vsi(pf, i)
1802 1803 1804 1805 1806 1807 1808 1809 1810
		if (pf->vsi[i] && pf->vsi[i]->vsi_num == id)
			return pf->vsi[i];

	return NULL;
}

/**
 * ice_vc_isvalid_vsi_id
 * @vf: pointer to the VF info
1811
 * @vsi_id: VF relative VSI ID
1812
 *
1813
 * check for the valid VSI ID
1814 1815 1816 1817 1818 1819 1820 1821 1822 1823 1824 1825 1826 1827
 */
static bool ice_vc_isvalid_vsi_id(struct ice_vf *vf, u16 vsi_id)
{
	struct ice_pf *pf = vf->pf;
	struct ice_vsi *vsi;

	vsi = ice_find_vsi_from_id(pf, vsi_id);

	return (vsi && (vsi->vf_id == vf->vf_id));
}

/**
 * ice_vc_isvalid_q_id
 * @vf: pointer to the VF info
1828 1829
 * @vsi_id: VSI ID
 * @qid: VSI relative queue ID
1830
 *
1831
 * check for the valid queue ID
1832 1833 1834 1835 1836 1837 1838 1839
 */
static bool ice_vc_isvalid_q_id(struct ice_vf *vf, u16 vsi_id, u8 qid)
{
	struct ice_vsi *vsi = ice_find_vsi_from_id(vf->pf, vsi_id);
	/* allocated Tx and Rx queues should be always equal for VF VSI */
	return (vsi && (qid < vsi->alloc_txq));
}

1840 1841 1842 1843 1844
/**
 * ice_vc_isvalid_ring_len
 * @ring_len: length of ring
 *
 * check for the valid ring count, should be multiple of ICE_REQ_DESC_MULTIPLE
1845
 * or zero
1846 1847 1848
 */
static bool ice_vc_isvalid_ring_len(u16 ring_len)
{
1849 1850
	return ring_len == 0 ||
	       (ring_len >= ICE_MIN_NUM_DESC &&
1851 1852 1853 1854
		ring_len <= ICE_MAX_NUM_DESC &&
		!(ring_len % ICE_REQ_DESC_MULTIPLE));
}

1855 1856 1857 1858 1859 1860 1861 1862 1863
/**
 * ice_vc_config_rss_key
 * @vf: pointer to the VF info
 * @msg: pointer to the msg buffer
 *
 * Configure the VF's RSS key
 */
static int ice_vc_config_rss_key(struct ice_vf *vf, u8 *msg)
{
1864
	enum virtchnl_status_code v_ret = VIRTCHNL_STATUS_SUCCESS;
1865 1866
	struct virtchnl_rss_key *vrk =
		(struct virtchnl_rss_key *)msg;
1867
	struct ice_pf *pf = vf->pf;
J
Jesse Brandeburg 已提交
1868
	struct ice_vsi *vsi;
1869 1870

	if (!test_bit(ICE_VF_STATE_ACTIVE, vf->vf_states)) {
1871
		v_ret = VIRTCHNL_STATUS_ERR_PARAM;
1872 1873 1874 1875
		goto error_param;
	}

	if (!ice_vc_isvalid_vsi_id(vf, vrk->vsi_id)) {
1876
		v_ret = VIRTCHNL_STATUS_ERR_PARAM;
1877 1878 1879
		goto error_param;
	}

1880
	if (vrk->key_len != ICE_VSIQF_HKEY_ARRAY_SIZE) {
1881
		v_ret = VIRTCHNL_STATUS_ERR_PARAM;
1882 1883 1884
		goto error_param;
	}

1885
	if (!test_bit(ICE_FLAG_RSS_ENA, vf->pf->flags)) {
1886
		v_ret = VIRTCHNL_STATUS_ERR_PARAM;
1887 1888 1889
		goto error_param;
	}

1890 1891
	vsi = pf->vsi[vf->lan_vsi_idx];
	if (!vsi) {
1892
		v_ret = VIRTCHNL_STATUS_ERR_PARAM;
1893 1894 1895
		goto error_param;
	}

1896 1897
	if (ice_set_rss(vsi, vrk->key, NULL, 0))
		v_ret = VIRTCHNL_STATUS_ERR_ADMIN_QUEUE_ERROR;
1898
error_param:
1899
	return ice_vc_send_msg_to_vf(vf, VIRTCHNL_OP_CONFIG_RSS_KEY, v_ret,
1900 1901 1902 1903 1904 1905 1906 1907 1908 1909 1910 1911 1912
				     NULL, 0);
}

/**
 * ice_vc_config_rss_lut
 * @vf: pointer to the VF info
 * @msg: pointer to the msg buffer
 *
 * Configure the VF's RSS LUT
 */
static int ice_vc_config_rss_lut(struct ice_vf *vf, u8 *msg)
{
	struct virtchnl_rss_lut *vrl = (struct virtchnl_rss_lut *)msg;
1913
	enum virtchnl_status_code v_ret = VIRTCHNL_STATUS_SUCCESS;
1914
	struct ice_pf *pf = vf->pf;
J
Jesse Brandeburg 已提交
1915
	struct ice_vsi *vsi;
1916 1917

	if (!test_bit(ICE_VF_STATE_ACTIVE, vf->vf_states)) {
1918
		v_ret = VIRTCHNL_STATUS_ERR_PARAM;
1919 1920 1921 1922
		goto error_param;
	}

	if (!ice_vc_isvalid_vsi_id(vf, vrl->vsi_id)) {
1923
		v_ret = VIRTCHNL_STATUS_ERR_PARAM;
1924 1925 1926
		goto error_param;
	}

1927
	if (vrl->lut_entries != ICE_VSIQF_HLUT_ARRAY_SIZE) {
1928
		v_ret = VIRTCHNL_STATUS_ERR_PARAM;
1929 1930 1931
		goto error_param;
	}

1932
	if (!test_bit(ICE_FLAG_RSS_ENA, vf->pf->flags)) {
1933
		v_ret = VIRTCHNL_STATUS_ERR_PARAM;
1934 1935 1936
		goto error_param;
	}

1937 1938
	vsi = pf->vsi[vf->lan_vsi_idx];
	if (!vsi) {
1939
		v_ret = VIRTCHNL_STATUS_ERR_PARAM;
1940 1941 1942
		goto error_param;
	}

1943 1944
	if (ice_set_rss(vsi, NULL, vrl->lut, ICE_VSIQF_HLUT_ARRAY_SIZE))
		v_ret = VIRTCHNL_STATUS_ERR_ADMIN_QUEUE_ERROR;
1945
error_param:
1946
	return ice_vc_send_msg_to_vf(vf, VIRTCHNL_OP_CONFIG_RSS_LUT, v_ret,
1947 1948 1949
				     NULL, 0);
}

B
Brett Creeley 已提交
1950 1951 1952 1953 1954 1955 1956 1957 1958 1959 1960 1961 1962 1963 1964 1965 1966 1967 1968 1969 1970 1971 1972 1973 1974 1975 1976 1977 1978 1979 1980 1981 1982 1983 1984 1985
/**
 * ice_set_vf_spoofchk
 * @netdev: network interface device structure
 * @vf_id: VF identifier
 * @ena: flag to enable or disable feature
 *
 * Enable or disable VF spoof checking
 */
int ice_set_vf_spoofchk(struct net_device *netdev, int vf_id, bool ena)
{
	struct ice_netdev_priv *np = netdev_priv(netdev);
	struct ice_pf *pf = np->vsi->back;
	struct ice_vsi_ctx *ctx;
	struct ice_vsi *vf_vsi;
	enum ice_status status;
	struct device *dev;
	struct ice_vf *vf;
	int ret = 0;

	dev = ice_pf_to_dev(pf);
	if (ice_validate_vf_id(pf, vf_id))
		return -EINVAL;

	vf = &pf->vf[vf_id];

	if (ice_check_vf_init(pf, vf))
		return -EBUSY;

	vf_vsi = pf->vsi[vf->lan_vsi_idx];
	if (!vf_vsi) {
		netdev_err(netdev, "VSI %d for VF %d is null\n",
			   vf->lan_vsi_idx, vf->vf_id);
		return -EINVAL;
	}

	if (vf_vsi->type != ICE_VSI_VF) {
1986
		netdev_err(netdev, "Type %d of VSI %d for VF %d is no ICE_VSI_VF\n",
B
Brett Creeley 已提交
1987 1988 1989 1990 1991 1992 1993 1994 1995 1996 1997 1998 1999 2000 2001 2002 2003 2004 2005 2006 2007 2008 2009 2010 2011 2012 2013 2014 2015
			   vf_vsi->type, vf_vsi->vsi_num, vf->vf_id);
		return -ENODEV;
	}

	if (ena == vf->spoofchk) {
		dev_dbg(dev, "VF spoofchk already %s\n", ena ? "ON" : "OFF");
		return 0;
	}

	ctx = kzalloc(sizeof(*ctx), GFP_KERNEL);
	if (!ctx)
		return -ENOMEM;

	ctx->info.sec_flags = vf_vsi->info.sec_flags;
	ctx->info.valid_sections = cpu_to_le16(ICE_AQ_VSI_PROP_SECURITY_VALID);
	if (ena) {
		ctx->info.sec_flags |=
			ICE_AQ_VSI_SEC_FLAG_ENA_MAC_ANTI_SPOOF |
			(ICE_AQ_VSI_SEC_TX_VLAN_PRUNE_ENA <<
			 ICE_AQ_VSI_SEC_TX_PRUNE_ENA_S);
	} else {
		ctx->info.sec_flags &=
			~(ICE_AQ_VSI_SEC_FLAG_ENA_MAC_ANTI_SPOOF |
			  (ICE_AQ_VSI_SEC_TX_VLAN_PRUNE_ENA <<
			   ICE_AQ_VSI_SEC_TX_PRUNE_ENA_S));
	}

	status = ice_update_vsi(&pf->hw, vf_vsi->idx, ctx, NULL);
	if (status) {
2016
		dev_err(dev, "Failed to %sable spoofchk on VF %d VSI %d\n error %d",
B
Brett Creeley 已提交
2017 2018 2019 2020 2021 2022 2023 2024 2025 2026 2027 2028 2029 2030
			ena ? "en" : "dis", vf->vf_id, vf_vsi->vsi_num, status);
		ret = -EIO;
		goto out;
	}

	/* only update spoofchk state and VSI context on success */
	vf_vsi->info.sec_flags = ctx->info.sec_flags;
	vf->spoofchk = ena;

out:
	kfree(ctx);
	return ret;
}

2031 2032 2033 2034 2035 2036 2037 2038 2039
/**
 * ice_vc_get_stats_msg
 * @vf: pointer to the VF info
 * @msg: pointer to the msg buffer
 *
 * called from the VF to get VSI stats
 */
static int ice_vc_get_stats_msg(struct ice_vf *vf, u8 *msg)
{
2040
	enum virtchnl_status_code v_ret = VIRTCHNL_STATUS_SUCCESS;
2041 2042
	struct virtchnl_queue_select *vqs =
		(struct virtchnl_queue_select *)msg;
J
Jesse Brandeburg 已提交
2043
	struct ice_eth_stats stats = { 0 };
2044
	struct ice_pf *pf = vf->pf;
2045 2046 2047
	struct ice_vsi *vsi;

	if (!test_bit(ICE_VF_STATE_ACTIVE, vf->vf_states)) {
2048
		v_ret = VIRTCHNL_STATUS_ERR_PARAM;
2049 2050 2051 2052
		goto error_param;
	}

	if (!ice_vc_isvalid_vsi_id(vf, vqs->vsi_id)) {
2053
		v_ret = VIRTCHNL_STATUS_ERR_PARAM;
2054 2055 2056
		goto error_param;
	}

2057
	vsi = pf->vsi[vf->lan_vsi_idx];
2058
	if (!vsi) {
2059
		v_ret = VIRTCHNL_STATUS_ERR_PARAM;
2060 2061 2062 2063 2064 2065 2066 2067 2068
		goto error_param;
	}

	ice_update_eth_stats(vsi);

	stats = vsi->eth_stats;

error_param:
	/* send the response to the VF */
2069
	return ice_vc_send_msg_to_vf(vf, VIRTCHNL_OP_GET_STATS, v_ret,
2070 2071 2072 2073 2074 2075 2076 2077 2078 2079 2080 2081
				     (u8 *)&stats, sizeof(stats));
}

/**
 * ice_vc_ena_qs_msg
 * @vf: pointer to the VF info
 * @msg: pointer to the msg buffer
 *
 * called from the VF to enable all or specific queue(s)
 */
static int ice_vc_ena_qs_msg(struct ice_vf *vf, u8 *msg)
{
2082
	enum virtchnl_status_code v_ret = VIRTCHNL_STATUS_SUCCESS;
2083 2084
	struct virtchnl_queue_select *vqs =
	    (struct virtchnl_queue_select *)msg;
2085
	struct ice_pf *pf = vf->pf;
2086
	struct ice_vsi *vsi;
2087 2088
	unsigned long q_map;
	u16 vf_q_id;
2089 2090

	if (!test_bit(ICE_VF_STATE_ACTIVE, vf->vf_states)) {
2091
		v_ret = VIRTCHNL_STATUS_ERR_PARAM;
2092 2093 2094 2095
		goto error_param;
	}

	if (!ice_vc_isvalid_vsi_id(vf, vqs->vsi_id)) {
2096
		v_ret = VIRTCHNL_STATUS_ERR_PARAM;
2097 2098 2099 2100
		goto error_param;
	}

	if (!vqs->rx_queues && !vqs->tx_queues) {
2101
		v_ret = VIRTCHNL_STATUS_ERR_PARAM;
2102 2103 2104
		goto error_param;
	}

2105 2106 2107 2108 2109 2110
	if (vqs->rx_queues > ICE_MAX_BASE_QS_PER_VF ||
	    vqs->tx_queues > ICE_MAX_BASE_QS_PER_VF) {
		v_ret = VIRTCHNL_STATUS_ERR_PARAM;
		goto error_param;
	}

2111
	vsi = pf->vsi[vf->lan_vsi_idx];
2112
	if (!vsi) {
2113
		v_ret = VIRTCHNL_STATUS_ERR_PARAM;
2114 2115 2116 2117 2118 2119 2120
		goto error_param;
	}

	/* Enable only Rx rings, Tx rings were enabled by the FW when the
	 * Tx queue group list was configured and the context bits were
	 * programmed using ice_vsi_cfg_txqs
	 */
2121 2122 2123 2124 2125 2126 2127 2128 2129 2130 2131
	q_map = vqs->rx_queues;
	for_each_set_bit(vf_q_id, &q_map, ICE_MAX_BASE_QS_PER_VF) {
		if (!ice_vc_isvalid_q_id(vf, vqs->vsi_id, vf_q_id)) {
			v_ret = VIRTCHNL_STATUS_ERR_PARAM;
			goto error_param;
		}

		/* Skip queue if enabled */
		if (test_bit(vf_q_id, vf->rxq_ena))
			continue;

2132
		if (ice_vsi_ctrl_one_rx_ring(vsi, true, vf_q_id, true)) {
2133
			dev_err(ice_pf_to_dev(vsi->back), "Failed to enable Rx ring %d on VSI %d\n",
2134 2135 2136 2137 2138 2139 2140 2141 2142 2143 2144 2145 2146 2147 2148 2149 2150 2151 2152 2153 2154 2155
				vf_q_id, vsi->vsi_num);
			v_ret = VIRTCHNL_STATUS_ERR_PARAM;
			goto error_param;
		}

		set_bit(vf_q_id, vf->rxq_ena);
	}

	vsi = pf->vsi[vf->lan_vsi_idx];
	q_map = vqs->tx_queues;
	for_each_set_bit(vf_q_id, &q_map, ICE_MAX_BASE_QS_PER_VF) {
		if (!ice_vc_isvalid_q_id(vf, vqs->vsi_id, vf_q_id)) {
			v_ret = VIRTCHNL_STATUS_ERR_PARAM;
			goto error_param;
		}

		/* Skip queue if enabled */
		if (test_bit(vf_q_id, vf->txq_ena))
			continue;

		set_bit(vf_q_id, vf->txq_ena);
	}
2156 2157

	/* Set flag to indicate that queues are enabled */
2158
	if (v_ret == VIRTCHNL_STATUS_SUCCESS)
2159
		set_bit(ICE_VF_STATE_QS_ENA, vf->vf_states);
2160 2161 2162

error_param:
	/* send the response to the VF */
2163
	return ice_vc_send_msg_to_vf(vf, VIRTCHNL_OP_ENABLE_QUEUES, v_ret,
2164 2165 2166 2167 2168 2169 2170 2171 2172 2173 2174 2175 2176
				     NULL, 0);
}

/**
 * ice_vc_dis_qs_msg
 * @vf: pointer to the VF info
 * @msg: pointer to the msg buffer
 *
 * called from the VF to disable all or specific
 * queue(s)
 */
static int ice_vc_dis_qs_msg(struct ice_vf *vf, u8 *msg)
{
2177
	enum virtchnl_status_code v_ret = VIRTCHNL_STATUS_SUCCESS;
2178 2179
	struct virtchnl_queue_select *vqs =
	    (struct virtchnl_queue_select *)msg;
2180
	struct ice_pf *pf = vf->pf;
2181
	struct ice_vsi *vsi;
2182 2183
	unsigned long q_map;
	u16 vf_q_id;
2184 2185

	if (!test_bit(ICE_VF_STATE_ACTIVE, vf->vf_states) &&
2186
	    !test_bit(ICE_VF_STATE_QS_ENA, vf->vf_states)) {
2187
		v_ret = VIRTCHNL_STATUS_ERR_PARAM;
2188 2189 2190 2191
		goto error_param;
	}

	if (!ice_vc_isvalid_vsi_id(vf, vqs->vsi_id)) {
2192
		v_ret = VIRTCHNL_STATUS_ERR_PARAM;
2193 2194 2195 2196
		goto error_param;
	}

	if (!vqs->rx_queues && !vqs->tx_queues) {
2197
		v_ret = VIRTCHNL_STATUS_ERR_PARAM;
2198 2199 2200
		goto error_param;
	}

2201 2202 2203 2204 2205 2206
	if (vqs->rx_queues > ICE_MAX_BASE_QS_PER_VF ||
	    vqs->tx_queues > ICE_MAX_BASE_QS_PER_VF) {
		v_ret = VIRTCHNL_STATUS_ERR_PARAM;
		goto error_param;
	}

2207
	vsi = pf->vsi[vf->lan_vsi_idx];
2208
	if (!vsi) {
2209
		v_ret = VIRTCHNL_STATUS_ERR_PARAM;
2210 2211 2212
		goto error_param;
	}

2213 2214 2215 2216 2217 2218 2219 2220 2221 2222 2223 2224 2225 2226 2227 2228 2229 2230 2231 2232
	if (vqs->tx_queues) {
		q_map = vqs->tx_queues;

		for_each_set_bit(vf_q_id, &q_map, ICE_MAX_BASE_QS_PER_VF) {
			struct ice_ring *ring = vsi->tx_rings[vf_q_id];
			struct ice_txq_meta txq_meta = { 0 };

			if (!ice_vc_isvalid_q_id(vf, vqs->vsi_id, vf_q_id)) {
				v_ret = VIRTCHNL_STATUS_ERR_PARAM;
				goto error_param;
			}

			/* Skip queue if not enabled */
			if (!test_bit(vf_q_id, vf->txq_ena))
				continue;

			ice_fill_txq_meta(vsi, ring, &txq_meta);

			if (ice_vsi_stop_tx_ring(vsi, ICE_NO_RESET, vf->vf_id,
						 ring, &txq_meta)) {
2233
				dev_err(ice_pf_to_dev(vsi->back), "Failed to stop Tx ring %d on VSI %d\n",
2234 2235 2236 2237 2238 2239 2240 2241
					vf_q_id, vsi->vsi_num);
				v_ret = VIRTCHNL_STATUS_ERR_PARAM;
				goto error_param;
			}

			/* Clear enabled queues flag */
			clear_bit(vf_q_id, vf->txq_ena);
		}
2242 2243
	}

2244 2245 2246 2247 2248 2249 2250 2251 2252 2253
	q_map = vqs->rx_queues;
	/* speed up Rx queue disable by batching them if possible */
	if (q_map &&
	    bitmap_equal(&q_map, vf->rxq_ena, ICE_MAX_BASE_QS_PER_VF)) {
		if (ice_vsi_stop_all_rx_rings(vsi)) {
			dev_err(ice_pf_to_dev(vsi->back), "Failed to stop all Rx rings on VSI %d\n",
				vsi->vsi_num);
			v_ret = VIRTCHNL_STATUS_ERR_PARAM;
			goto error_param;
		}
2254

2255 2256
		bitmap_zero(vf->rxq_ena, ICE_MAX_BASE_QS_PER_VF);
	} else if (q_map) {
2257 2258 2259 2260 2261 2262 2263 2264 2265 2266
		for_each_set_bit(vf_q_id, &q_map, ICE_MAX_BASE_QS_PER_VF) {
			if (!ice_vc_isvalid_q_id(vf, vqs->vsi_id, vf_q_id)) {
				v_ret = VIRTCHNL_STATUS_ERR_PARAM;
				goto error_param;
			}

			/* Skip queue if not enabled */
			if (!test_bit(vf_q_id, vf->rxq_ena))
				continue;

2267 2268
			if (ice_vsi_ctrl_one_rx_ring(vsi, false, vf_q_id,
						     true)) {
2269
				dev_err(ice_pf_to_dev(vsi->back), "Failed to stop Rx ring %d on VSI %d\n",
2270 2271 2272 2273 2274 2275 2276 2277
					vf_q_id, vsi->vsi_num);
				v_ret = VIRTCHNL_STATUS_ERR_PARAM;
				goto error_param;
			}

			/* Clear enabled queues flag */
			clear_bit(vf_q_id, vf->rxq_ena);
		}
2278 2279 2280
	}

	/* Clear enabled queues flag */
2281
	if (v_ret == VIRTCHNL_STATUS_SUCCESS && ice_vf_has_no_qs_ena(vf))
2282
		clear_bit(ICE_VF_STATE_QS_ENA, vf->vf_states);
2283 2284 2285

error_param:
	/* send the response to the VF */
2286
	return ice_vc_send_msg_to_vf(vf, VIRTCHNL_OP_DISABLE_QUEUES, v_ret,
2287 2288 2289 2290 2291 2292 2293 2294 2295 2296 2297 2298
				     NULL, 0);
}

/**
 * ice_vc_cfg_irq_map_msg
 * @vf: pointer to the VF info
 * @msg: pointer to the msg buffer
 *
 * called from the VF to configure the IRQ to queue map
 */
static int ice_vc_cfg_irq_map_msg(struct ice_vf *vf, u8 *msg)
{
2299
	enum virtchnl_status_code v_ret = VIRTCHNL_STATUS_SUCCESS;
2300
	struct virtchnl_irq_map_info *irqmap_info;
2301 2302 2303
	u16 vsi_id, vsi_q_id, vector_id;
	struct virtchnl_vector_map *map;
	struct ice_pf *pf = vf->pf;
2304
	u16 num_q_vectors_mapped;
2305
	struct ice_vsi *vsi;
2306 2307 2308
	unsigned long qmap;
	int i;

2309
	irqmap_info = (struct virtchnl_irq_map_info *)msg;
2310 2311 2312 2313 2314 2315
	num_q_vectors_mapped = irqmap_info->num_vectors;

	/* Check to make sure number of VF vectors mapped is not greater than
	 * number of VF vectors originally allocated, and check that
	 * there is actually at least a single VF queue vector mapped
	 */
2316
	if (!test_bit(ICE_VF_STATE_ACTIVE, vf->vf_states) ||
2317 2318
	    pf->num_vf_msix < num_q_vectors_mapped ||
	    !irqmap_info->num_vectors) {
2319
		v_ret = VIRTCHNL_STATUS_ERR_PARAM;
2320 2321 2322
		goto error_param;
	}

2323 2324 2325 2326 2327 2328
	vsi = pf->vsi[vf->lan_vsi_idx];
	if (!vsi) {
		v_ret = VIRTCHNL_STATUS_ERR_PARAM;
		goto error_param;
	}

2329 2330
	for (i = 0; i < num_q_vectors_mapped; i++) {
		struct ice_q_vector *q_vector;
2331

2332 2333 2334 2335
		map = &irqmap_info->vecmap[i];

		vector_id = map->vector_id;
		vsi_id = map->vsi_id;
2336 2337 2338 2339 2340
		/* vector_id is always 0-based for each VF, and can never be
		 * larger than or equal to the max allowed interrupts per VF
		 */
		if (!(vector_id < ICE_MAX_INTR_PER_VF) ||
		    !ice_vc_isvalid_vsi_id(vf, vsi_id) ||
2341 2342 2343 2344 2345 2346 2347 2348 2349 2350 2351 2352 2353 2354
		    (!vector_id && (map->rxq_map || map->txq_map))) {
			v_ret = VIRTCHNL_STATUS_ERR_PARAM;
			goto error_param;
		}

		/* No need to map VF miscellaneous or rogue vector */
		if (!vector_id)
			continue;

		/* Subtract non queue vector from vector_id passed by VF
		 * to get actual number of VSI queue vector array index
		 */
		q_vector = vsi->q_vectors[vector_id - ICE_NONQ_VECS_VF];
		if (!q_vector) {
2355
			v_ret = VIRTCHNL_STATUS_ERR_PARAM;
2356 2357 2358 2359 2360
			goto error_param;
		}

		/* lookout for the invalid queue index */
		qmap = map->rxq_map;
2361
		q_vector->num_ring_rx = 0;
2362 2363
		for_each_set_bit(vsi_q_id, &qmap, ICE_MAX_BASE_QS_PER_VF) {
			if (!ice_vc_isvalid_q_id(vf, vsi_id, vsi_q_id)) {
2364
				v_ret = VIRTCHNL_STATUS_ERR_PARAM;
2365 2366
				goto error_param;
			}
2367 2368 2369
			q_vector->num_ring_rx++;
			q_vector->rx.itr_idx = map->rxitr_idx;
			vsi->rx_rings[vsi_q_id]->q_vector = q_vector;
2370 2371
			ice_cfg_rxq_interrupt(vsi, vsi_q_id, vector_id,
					      q_vector->rx.itr_idx);
2372 2373 2374
		}

		qmap = map->txq_map;
2375
		q_vector->num_ring_tx = 0;
2376 2377
		for_each_set_bit(vsi_q_id, &qmap, ICE_MAX_BASE_QS_PER_VF) {
			if (!ice_vc_isvalid_q_id(vf, vsi_id, vsi_q_id)) {
2378
				v_ret = VIRTCHNL_STATUS_ERR_PARAM;
2379 2380
				goto error_param;
			}
2381 2382 2383
			q_vector->num_ring_tx++;
			q_vector->tx.itr_idx = map->txitr_idx;
			vsi->tx_rings[vsi_q_id]->q_vector = q_vector;
2384 2385
			ice_cfg_txq_interrupt(vsi, vsi_q_id, vector_id,
					      q_vector->tx.itr_idx);
2386 2387 2388 2389 2390
		}
	}

error_param:
	/* send the response to the VF */
2391
	return ice_vc_send_msg_to_vf(vf, VIRTCHNL_OP_CONFIG_IRQ_MAP, v_ret,
2392 2393 2394 2395 2396 2397 2398 2399 2400 2401 2402 2403
				     NULL, 0);
}

/**
 * ice_vc_cfg_qs_msg
 * @vf: pointer to the VF info
 * @msg: pointer to the msg buffer
 *
 * called from the VF to configure the Rx/Tx queues
 */
static int ice_vc_cfg_qs_msg(struct ice_vf *vf, u8 *msg)
{
2404
	enum virtchnl_status_code v_ret = VIRTCHNL_STATUS_SUCCESS;
2405 2406 2407
	struct virtchnl_vsi_queue_config_info *qci =
	    (struct virtchnl_vsi_queue_config_info *)msg;
	struct virtchnl_queue_pair_info *qpi;
2408
	u16 num_rxq = 0, num_txq = 0;
2409
	struct ice_pf *pf = vf->pf;
2410 2411 2412 2413
	struct ice_vsi *vsi;
	int i;

	if (!test_bit(ICE_VF_STATE_ACTIVE, vf->vf_states)) {
2414
		v_ret = VIRTCHNL_STATUS_ERR_PARAM;
2415 2416 2417 2418
		goto error_param;
	}

	if (!ice_vc_isvalid_vsi_id(vf, qci->vsi_id)) {
2419
		v_ret = VIRTCHNL_STATUS_ERR_PARAM;
2420 2421 2422
		goto error_param;
	}

2423 2424
	vsi = pf->vsi[vf->lan_vsi_idx];
	if (!vsi) {
2425
		v_ret = VIRTCHNL_STATUS_ERR_PARAM;
2426 2427 2428
		goto error_param;
	}

2429 2430
	if (qci->num_queue_pairs > ICE_MAX_BASE_QS_PER_VF ||
	    qci->num_queue_pairs > min_t(u16, vsi->alloc_txq, vsi->alloc_rxq)) {
2431
		dev_err(ice_pf_to_dev(pf), "VF-%d requesting more than supported number of queues: %d\n",
2432
			vf->vf_id, min_t(u16, vsi->alloc_txq, vsi->alloc_rxq));
2433 2434 2435 2436
		v_ret = VIRTCHNL_STATUS_ERR_PARAM;
		goto error_param;
	}

2437 2438 2439 2440 2441
	for (i = 0; i < qci->num_queue_pairs; i++) {
		qpi = &qci->qpair[i];
		if (qpi->txq.vsi_id != qci->vsi_id ||
		    qpi->rxq.vsi_id != qci->vsi_id ||
		    qpi->rxq.queue_id != qpi->txq.queue_id ||
2442
		    qpi->txq.headwb_enabled ||
2443 2444
		    !ice_vc_isvalid_ring_len(qpi->txq.ring_len) ||
		    !ice_vc_isvalid_ring_len(qpi->rxq.ring_len) ||
2445
		    !ice_vc_isvalid_q_id(vf, qci->vsi_id, qpi->txq.queue_id)) {
2446
			v_ret = VIRTCHNL_STATUS_ERR_PARAM;
2447 2448 2449
			goto error_param;
		}
		/* copy Tx queue info from VF into VSI */
2450 2451 2452 2453
		if (qpi->txq.ring_len > 0) {
			num_txq++;
			vsi->tx_rings[i]->dma = qpi->txq.dma_ring_addr;
			vsi->tx_rings[i]->count = qpi->txq.ring_len;
2454
		}
2455 2456 2457 2458 2459 2460 2461 2462 2463 2464 2465 2466 2467 2468 2469 2470 2471 2472 2473 2474

		/* copy Rx queue info from VF into VSI */
		if (qpi->rxq.ring_len > 0) {
			num_rxq++;
			vsi->rx_rings[i]->dma = qpi->rxq.dma_ring_addr;
			vsi->rx_rings[i]->count = qpi->rxq.ring_len;

			if (qpi->rxq.databuffer_size != 0 &&
			    (qpi->rxq.databuffer_size > ((16 * 1024) - 128) ||
			     qpi->rxq.databuffer_size < 1024)) {
				v_ret = VIRTCHNL_STATUS_ERR_PARAM;
				goto error_param;
			}
			vsi->rx_buf_len = qpi->rxq.databuffer_size;
			vsi->rx_rings[i]->rx_buf_len = vsi->rx_buf_len;
			if (qpi->rxq.max_pkt_size >= (16 * 1024) ||
			    qpi->rxq.max_pkt_size < 64) {
				v_ret = VIRTCHNL_STATUS_ERR_PARAM;
				goto error_param;
			}
2475
		}
2476

2477 2478 2479 2480 2481 2482
		vsi->max_frame = qpi->rxq.max_pkt_size;
	}

	/* VF can request to configure less than allocated queues
	 * or default allocated queues. So update the VSI with new number
	 */
2483 2484
	vsi->num_txq = num_txq;
	vsi->num_rxq = num_rxq;
2485
	/* All queues of VF VSI are in TC 0 */
2486 2487
	vsi->tc_cfg.tc_info[0].qcount_tx = num_txq;
	vsi->tc_cfg.tc_info[0].qcount_rx = num_rxq;
2488

2489 2490
	if (ice_vsi_cfg_lan_txqs(vsi) || ice_vsi_cfg_rxqs(vsi))
		v_ret = VIRTCHNL_STATUS_ERR_ADMIN_QUEUE_ERROR;
2491 2492 2493

error_param:
	/* send the response to the VF */
2494
	return ice_vc_send_msg_to_vf(vf, VIRTCHNL_OP_CONFIG_VSI_QUEUES, v_ret,
2495 2496 2497 2498 2499 2500 2501 2502 2503 2504 2505 2506 2507 2508 2509 2510 2511 2512 2513 2514 2515 2516 2517 2518 2519 2520 2521 2522 2523 2524
				     NULL, 0);
}

/**
 * ice_is_vf_trusted
 * @vf: pointer to the VF info
 */
static bool ice_is_vf_trusted(struct ice_vf *vf)
{
	return test_bit(ICE_VIRTCHNL_VF_CAP_PRIVILEGE, &vf->vf_caps);
}

/**
 * ice_can_vf_change_mac
 * @vf: pointer to the VF info
 *
 * Return true if the VF is allowed to change its MAC filters, false otherwise
 */
static bool ice_can_vf_change_mac(struct ice_vf *vf)
{
	/* If the VF MAC address has been set administratively (via the
	 * ndo_set_vf_mac command), then deny permission to the VF to
	 * add/delete unicast MAC addresses, unless the VF is trusted
	 */
	if (vf->pf_set_mac && !ice_is_vf_trusted(vf))
		return false;

	return true;
}

2525 2526 2527 2528 2529 2530 2531 2532 2533 2534 2535 2536 2537 2538 2539 2540 2541 2542 2543 2544 2545 2546 2547 2548 2549 2550 2551 2552 2553 2554 2555 2556 2557 2558 2559 2560 2561 2562 2563 2564 2565 2566 2567 2568 2569 2570 2571 2572 2573 2574 2575 2576 2577 2578 2579 2580 2581 2582 2583 2584 2585 2586 2587 2588 2589 2590 2591 2592 2593 2594 2595 2596 2597 2598 2599 2600 2601
/**
 * ice_vc_add_mac_addr - attempt to add the MAC address passed in
 * @vf: pointer to the VF info
 * @vsi: pointer to the VF's VSI
 * @mac_addr: MAC address to add
 */
static int
ice_vc_add_mac_addr(struct ice_vf *vf, struct ice_vsi *vsi, u8 *mac_addr)
{
	struct device *dev = ice_pf_to_dev(vf->pf);
	enum ice_status status;

	/* default unicast MAC already added */
	if (ether_addr_equal(mac_addr, vf->dflt_lan_addr.addr))
		return 0;

	if (is_unicast_ether_addr(mac_addr) && !ice_can_vf_change_mac(vf)) {
		dev_err(dev, "VF attempting to override administratively set MAC address, bring down and up the VF interface to resume normal operation\n");
		return -EPERM;
	}

	status = ice_vsi_cfg_mac_fltr(vsi, mac_addr, true);
	if (status == ICE_ERR_ALREADY_EXISTS) {
		dev_err(dev, "MAC %pM already exists for VF %d\n", mac_addr,
			vf->vf_id);
		return -EEXIST;
	} else if (status) {
		dev_err(dev, "Failed to add MAC %pM for VF %d\n, error %d\n",
			mac_addr, vf->vf_id, status);
		return -EIO;
	}

	/* only set dflt_lan_addr once */
	if (is_zero_ether_addr(vf->dflt_lan_addr.addr) &&
	    is_unicast_ether_addr(mac_addr))
		ether_addr_copy(vf->dflt_lan_addr.addr, mac_addr);

	vf->num_mac++;

	return 0;
}

/**
 * ice_vc_del_mac_addr - attempt to delete the MAC address passed in
 * @vf: pointer to the VF info
 * @vsi: pointer to the VF's VSI
 * @mac_addr: MAC address to delete
 */
static int
ice_vc_del_mac_addr(struct ice_vf *vf, struct ice_vsi *vsi, u8 *mac_addr)
{
	struct device *dev = ice_pf_to_dev(vf->pf);
	enum ice_status status;

	if (!ice_can_vf_change_mac(vf) &&
	    ether_addr_equal(mac_addr, vf->dflt_lan_addr.addr))
		return 0;

	status = ice_vsi_cfg_mac_fltr(vsi, mac_addr, false);
	if (status == ICE_ERR_DOES_NOT_EXIST) {
		dev_err(dev, "MAC %pM does not exist for VF %d\n", mac_addr,
			vf->vf_id);
		return -ENOENT;
	} else if (status) {
		dev_err(dev, "Failed to delete MAC %pM for VF %d, error %d\n",
			mac_addr, vf->vf_id, status);
		return -EIO;
	}

	if (ether_addr_equal(mac_addr, vf->dflt_lan_addr.addr))
		eth_zero_addr(vf->dflt_lan_addr.addr);

	vf->num_mac--;

	return 0;
}

2602 2603 2604 2605
/**
 * ice_vc_handle_mac_addr_msg
 * @vf: pointer to the VF info
 * @msg: pointer to the msg buffer
2606
 * @set: true if MAC filters are being set, false otherwise
2607
 *
2608
 * add guest MAC address filter
2609 2610 2611 2612
 */
static int
ice_vc_handle_mac_addr_msg(struct ice_vf *vf, u8 *msg, bool set)
{
2613 2614
	int (*ice_vc_cfg_mac)
		(struct ice_vf *vf, struct ice_vsi *vsi, u8 *mac_addr);
2615
	enum virtchnl_status_code v_ret = VIRTCHNL_STATUS_SUCCESS;
2616 2617 2618 2619 2620 2621 2622
	struct virtchnl_ether_addr_list *al =
	    (struct virtchnl_ether_addr_list *)msg;
	struct ice_pf *pf = vf->pf;
	enum virtchnl_ops vc_op;
	struct ice_vsi *vsi;
	int i;

2623
	if (set) {
2624
		vc_op = VIRTCHNL_OP_ADD_ETH_ADDR;
2625 2626
		ice_vc_cfg_mac = ice_vc_add_mac_addr;
	} else {
2627
		vc_op = VIRTCHNL_OP_DEL_ETH_ADDR;
2628 2629
		ice_vc_cfg_mac = ice_vc_del_mac_addr;
	}
2630 2631 2632

	if (!test_bit(ICE_VF_STATE_ACTIVE, vf->vf_states) ||
	    !ice_vc_isvalid_vsi_id(vf, al->vsi_id)) {
2633
		v_ret = VIRTCHNL_STATUS_ERR_PARAM;
2634 2635 2636
		goto handle_mac_exit;
	}

2637 2638 2639 2640
	/* If this VF is not privileged, then we can't add more than a
	 * limited number of addresses. Check to make sure that the
	 * additions do not push us over the limit.
	 */
2641 2642
	if (set && !ice_is_vf_trusted(vf) &&
	    (vf->num_mac + al->num_elements) > ICE_MAX_MACADDR_PER_VF) {
2643
		dev_err(ice_pf_to_dev(pf), "Can't add more MAC addresses, because VF-%d is not trusted, switch the VF to trusted mode in order to add more functionalities\n",
2644
			vf->vf_id);
2645
		v_ret = VIRTCHNL_STATUS_ERR_PARAM;
2646 2647 2648 2649
		goto handle_mac_exit;
	}

	vsi = pf->vsi[vf->lan_vsi_idx];
2650
	if (!vsi) {
2651
		v_ret = VIRTCHNL_STATUS_ERR_PARAM;
2652 2653
		goto handle_mac_exit;
	}
2654 2655

	for (i = 0; i < al->num_elements; i++) {
2656 2657
		u8 *mac_addr = al->list[i].addr;
		int result;
2658

2659 2660 2661
		if (is_broadcast_ether_addr(mac_addr) ||
		    is_zero_ether_addr(mac_addr))
			continue;
2662

2663 2664 2665 2666 2667
		result = ice_vc_cfg_mac(vf, vsi, mac_addr);
		if (result == -EEXIST || result == -ENOENT) {
			continue;
		} else if (result) {
			v_ret = VIRTCHNL_STATUS_ERR_ADMIN_QUEUE_ERROR;
2668 2669 2670 2671 2672 2673
			goto handle_mac_exit;
		}
	}

handle_mac_exit:
	/* send the response to the VF */
2674
	return ice_vc_send_msg_to_vf(vf, vc_op, v_ret, NULL, 0);
2675 2676 2677 2678 2679 2680 2681 2682 2683 2684 2685 2686 2687 2688 2689 2690 2691 2692 2693 2694 2695 2696 2697 2698 2699 2700 2701 2702 2703 2704 2705 2706
}

/**
 * ice_vc_add_mac_addr_msg
 * @vf: pointer to the VF info
 * @msg: pointer to the msg buffer
 *
 * add guest MAC address filter
 */
static int ice_vc_add_mac_addr_msg(struct ice_vf *vf, u8 *msg)
{
	return ice_vc_handle_mac_addr_msg(vf, msg, true);
}

/**
 * ice_vc_del_mac_addr_msg
 * @vf: pointer to the VF info
 * @msg: pointer to the msg buffer
 *
 * remove guest MAC address filter
 */
static int ice_vc_del_mac_addr_msg(struct ice_vf *vf, u8 *msg)
{
	return ice_vc_handle_mac_addr_msg(vf, msg, false);
}

/**
 * ice_vc_request_qs_msg
 * @vf: pointer to the VF info
 * @msg: pointer to the msg buffer
 *
 * VFs get a default number of queues but can use this message to request a
2707
 * different number. If the request is successful, PF will reset the VF and
2708
 * return 0. If unsuccessful, PF will send message informing VF of number of
2709
 * available queue pairs via virtchnl message response to VF.
2710 2711 2712
 */
static int ice_vc_request_qs_msg(struct ice_vf *vf, u8 *msg)
{
2713
	enum virtchnl_status_code v_ret = VIRTCHNL_STATUS_SUCCESS;
2714 2715
	struct virtchnl_vf_res_request *vfres =
		(struct virtchnl_vf_res_request *)msg;
2716
	u16 req_queues = vfres->num_queue_pairs;
2717
	struct ice_pf *pf = vf->pf;
2718 2719
	u16 max_allowed_vf_queues;
	u16 tx_rx_queue_left;
B
Brett Creeley 已提交
2720
	struct device *dev;
T
Tony Nguyen 已提交
2721
	u16 cur_queues;
2722

B
Brett Creeley 已提交
2723
	dev = ice_pf_to_dev(pf);
2724
	if (!test_bit(ICE_VF_STATE_ACTIVE, vf->vf_states)) {
2725
		v_ret = VIRTCHNL_STATUS_ERR_PARAM;
2726 2727 2728
		goto error_param;
	}

2729
	cur_queues = vf->num_vf_qs;
2730 2731
	tx_rx_queue_left = min_t(u16, ice_get_avail_txq_count(pf),
				 ice_get_avail_rxq_count(pf));
2732
	max_allowed_vf_queues = tx_rx_queue_left + cur_queues;
2733
	if (!req_queues) {
B
Brett Creeley 已提交
2734
		dev_err(dev, "VF %d tried to request 0 queues. Ignoring.\n",
2735
			vf->vf_id);
2736
	} else if (req_queues > ICE_MAX_BASE_QS_PER_VF) {
B
Brett Creeley 已提交
2737
		dev_err(dev, "VF %d tried to request more than %d queues.\n",
2738 2739
			vf->vf_id, ICE_MAX_BASE_QS_PER_VF);
		vfres->num_queue_pairs = ICE_MAX_BASE_QS_PER_VF;
2740 2741
	} else if (req_queues > cur_queues &&
		   req_queues - cur_queues > tx_rx_queue_left) {
2742
		dev_warn(dev, "VF %d requested %u more queues, but only %u left.\n",
2743
			 vf->vf_id, req_queues - cur_queues, tx_rx_queue_left);
2744
		vfres->num_queue_pairs = min_t(u16, max_allowed_vf_queues,
2745
					       ICE_MAX_BASE_QS_PER_VF);
2746 2747 2748
	} else {
		/* request is successful, then reset VF */
		vf->num_req_qs = req_queues;
2749
		ice_vc_reset_vf(vf);
B
Brett Creeley 已提交
2750
		dev_info(dev, "VF %d granted request of %u queues.\n",
2751 2752 2753 2754 2755 2756 2757
			 vf->vf_id, req_queues);
		return 0;
	}

error_param:
	/* send the response to the VF */
	return ice_vc_send_msg_to_vf(vf, VIRTCHNL_OP_REQUEST_QUEUES,
2758
				     v_ret, (u8 *)vfres, sizeof(*vfres));
2759 2760
}

2761 2762 2763 2764
/**
 * ice_set_vf_port_vlan
 * @netdev: network interface device structure
 * @vf_id: VF identifier
2765
 * @vlan_id: VLAN ID being set
2766 2767 2768
 * @qos: priority setting
 * @vlan_proto: VLAN protocol
 *
2769
 * program VF Port VLAN ID and/or QoS
2770 2771 2772 2773 2774
 */
int
ice_set_vf_port_vlan(struct net_device *netdev, int vf_id, u16 vlan_id, u8 qos,
		     __be16 vlan_proto)
{
J
Jesse Brandeburg 已提交
2775
	struct ice_pf *pf = ice_netdev_to_pf(netdev);
2776
	struct ice_vsi *vsi;
B
Brett Creeley 已提交
2777
	struct device *dev;
2778
	struct ice_vf *vf;
B
Brett Creeley 已提交
2779
	u16 vlanprio;
2780 2781
	int ret = 0;

B
Brett Creeley 已提交
2782
	dev = ice_pf_to_dev(pf);
J
Jesse Brandeburg 已提交
2783
	if (ice_validate_vf_id(pf, vf_id))
2784 2785
		return -EINVAL;

B
Brett Creeley 已提交
2786 2787 2788
	if (vlan_id >= VLAN_N_VID || qos > 7) {
		dev_err(dev, "Invalid Port VLAN parameters for VF %d, ID %d, QoS %d\n",
			vf_id, vlan_id, qos);
2789 2790 2791 2792
		return -EINVAL;
	}

	if (vlan_proto != htons(ETH_P_8021Q)) {
B
Brett Creeley 已提交
2793
		dev_err(dev, "VF VLAN protocol is not supported\n");
2794 2795 2796 2797 2798
		return -EPROTONOSUPPORT;
	}

	vf = &pf->vf[vf_id];
	vsi = pf->vsi[vf->lan_vsi_idx];
J
Jesse Brandeburg 已提交
2799
	if (ice_check_vf_init(pf, vf))
2800 2801
		return -EBUSY;

B
Brett Creeley 已提交
2802 2803 2804
	vlanprio = vlan_id | (qos << VLAN_PRIO_SHIFT);

	if (vf->port_vlan_info == vlanprio) {
2805
		/* duplicate request, so just return success */
B
Brett Creeley 已提交
2806
		dev_dbg(dev, "Duplicate pvid %d request\n", vlanprio);
2807 2808 2809 2810
		return ret;
	}

	if (vlan_id || qos) {
2811 2812 2813 2814 2815 2816 2817
		/* remove VLAN 0 filter set by default when transitioning from
		 * no port VLAN to a port VLAN. No change to old port VLAN on
		 * failure.
		 */
		ret = ice_vsi_kill_vlan(vsi, 0);
		if (ret)
			return ret;
2818
		ret = ice_vsi_manage_pvid(vsi, vlanprio, true);
2819
		if (ret)
2820
			return ret;
2821
	} else {
2822 2823 2824 2825 2826 2827
		/* add VLAN 0 filter back when transitioning from port VLAN to
		 * no port VLAN. No change to old port VLAN on failure.
		 */
		ret = ice_vsi_add_vlan(vsi, 0);
		if (ret)
			return ret;
2828 2829 2830
		ret = ice_vsi_manage_pvid(vsi, 0, false);
		if (ret)
			goto error_manage_pvid;
2831 2832 2833
	}

	if (vlan_id) {
B
Brett Creeley 已提交
2834
		dev_info(dev, "Setting VLAN %d, QoS 0x%x on VF %d\n",
2835 2836
			 vlan_id, qos, vf_id);

2837
		/* add VLAN filter for the port VLAN */
2838 2839
		ret = ice_vsi_add_vlan(vsi, vlan_id);
		if (ret)
2840
			goto error_manage_pvid;
2841
	}
2842 2843 2844
	/* remove old port VLAN filter with valid VLAN ID or QoS fields */
	if (vf->port_vlan_info)
		ice_vsi_kill_vlan(vsi, vf->port_vlan_info & VLAN_VID_MASK);
2845

2846
	/* keep port VLAN information persistent on resets */
2847
	vf->port_vlan_info = le16_to_cpu(vsi->info.pvid);
2848

2849
error_manage_pvid:
2850 2851 2852
	return ret;
}

2853 2854 2855 2856 2857 2858 2859 2860 2861 2862 2863
/**
 * ice_vf_vlan_offload_ena - determine if capabilities support VLAN offloads
 * @caps: VF driver negotiated capabilities
 *
 * Return true if VIRTCHNL_VF_OFFLOAD_VLAN capability is set, else return false
 */
static bool ice_vf_vlan_offload_ena(u32 caps)
{
	return !!(caps & VIRTCHNL_VF_OFFLOAD_VLAN);
}

2864 2865 2866 2867 2868 2869
/**
 * ice_vc_process_vlan_msg
 * @vf: pointer to the VF info
 * @msg: pointer to the msg buffer
 * @add_v: Add VLAN if true, otherwise delete VLAN
 *
2870
 * Process virtchnl op to add or remove programmed guest VLAN ID
2871 2872 2873
 */
static int ice_vc_process_vlan_msg(struct ice_vf *vf, u8 *msg, bool add_v)
{
2874
	enum virtchnl_status_code v_ret = VIRTCHNL_STATUS_SUCCESS;
2875 2876 2877
	struct virtchnl_vlan_filter_list *vfl =
	    (struct virtchnl_vlan_filter_list *)msg;
	struct ice_pf *pf = vf->pf;
2878
	bool vlan_promisc = false;
2879
	struct ice_vsi *vsi;
B
Brett Creeley 已提交
2880
	struct device *dev;
2881 2882 2883
	struct ice_hw *hw;
	int status = 0;
	u8 promisc_m;
2884 2885
	int i;

B
Brett Creeley 已提交
2886
	dev = ice_pf_to_dev(pf);
2887
	if (!test_bit(ICE_VF_STATE_ACTIVE, vf->vf_states)) {
2888
		v_ret = VIRTCHNL_STATUS_ERR_PARAM;
2889 2890 2891
		goto error_param;
	}

2892 2893 2894 2895 2896
	if (!ice_vf_vlan_offload_ena(vf->driver_caps)) {
		v_ret = VIRTCHNL_STATUS_ERR_PARAM;
		goto error_param;
	}

2897
	if (!ice_vc_isvalid_vsi_id(vf, vfl->vsi_id)) {
2898
		v_ret = VIRTCHNL_STATUS_ERR_PARAM;
2899 2900 2901 2902
		goto error_param;
	}

	for (i = 0; i < vfl->num_elements; i++) {
B
Brett Creeley 已提交
2903
		if (vfl->vlan_id[i] >= VLAN_N_VID) {
2904
			v_ret = VIRTCHNL_STATUS_ERR_PARAM;
2905 2906
			dev_err(dev, "invalid VF VLAN id %d\n",
				vfl->vlan_id[i]);
2907 2908 2909 2910
			goto error_param;
		}
	}

2911
	hw = &pf->hw;
2912
	vsi = pf->vsi[vf->lan_vsi_idx];
2913
	if (!vsi) {
2914
		v_ret = VIRTCHNL_STATUS_ERR_PARAM;
2915 2916 2917
		goto error_param;
	}

B
Brett Creeley 已提交
2918 2919
	if (add_v && !ice_is_vf_trusted(vf) &&
	    vsi->num_vlan >= ICE_MAX_VLAN_PER_VF) {
2920
		dev_info(dev, "VF-%d is not trusted, switch the VF to trusted mode, in order to add more VLAN addresses\n",
B
Brett Creeley 已提交
2921 2922 2923 2924 2925 2926 2927
			 vf->vf_id);
		/* There is no need to let VF know about being not trusted,
		 * so we can just return success message here
		 */
		goto error_param;
	}

2928
	if (vsi->info.pvid) {
2929
		v_ret = VIRTCHNL_STATUS_ERR_PARAM;
2930 2931 2932
		goto error_param;
	}

2933 2934 2935 2936
	if (test_bit(ICE_VF_STATE_UC_PROMISC, vf->vf_states) ||
	    test_bit(ICE_VF_STATE_MC_PROMISC, vf->vf_states))
		vlan_promisc = true;

2937 2938 2939 2940
	if (add_v) {
		for (i = 0; i < vfl->num_elements; i++) {
			u16 vid = vfl->vlan_id[i];

2941
			if (!ice_is_vf_trusted(vf) &&
B
Brett Creeley 已提交
2942
			    vsi->num_vlan >= ICE_MAX_VLAN_PER_VF) {
2943
				dev_info(dev, "VF-%d is not trusted, switch the VF to trusted mode, in order to add more VLAN addresses\n",
2944 2945 2946 2947 2948 2949 2950 2951
					 vf->vf_id);
				/* There is no need to let VF know about being
				 * not trusted, so we can just return success
				 * message here as well.
				 */
				goto error_param;
			}

B
Brett Creeley 已提交
2952 2953 2954 2955 2956 2957 2958 2959 2960
			/* we add VLAN 0 by default for each VF so we can enable
			 * Tx VLAN anti-spoof without triggering MDD events so
			 * we don't need to add it again here
			 */
			if (!vid)
				continue;

			status = ice_vsi_add_vlan(vsi, vid);
			if (status) {
2961
				v_ret = VIRTCHNL_STATUS_ERR_PARAM;
2962 2963
				goto error_param;
			}
2964

2965 2966 2967
			/* Enable VLAN pruning when non-zero VLAN is added */
			if (!vlan_promisc && vid &&
			    !ice_vsi_is_vlan_pruning_ena(vsi)) {
2968 2969
				status = ice_cfg_vlan_pruning(vsi, true, false);
				if (status) {
2970
					v_ret = VIRTCHNL_STATUS_ERR_PARAM;
2971
					dev_err(dev, "Enable VLAN pruning on VLAN ID: %d failed error-%d\n",
2972 2973 2974
						vid, status);
					goto error_param;
				}
2975
			} else if (vlan_promisc) {
2976 2977 2978 2979 2980 2981
				/* Enable Ucast/Mcast VLAN promiscuous mode */
				promisc_m = ICE_PROMISC_VLAN_TX |
					    ICE_PROMISC_VLAN_RX;

				status = ice_set_vsi_promisc(hw, vsi->idx,
							     promisc_m, vid);
2982 2983
				if (status) {
					v_ret = VIRTCHNL_STATUS_ERR_PARAM;
2984
					dev_err(dev, "Enable Unicast/multicast promiscuous mode on VLAN ID:%d failed error-%d\n",
2985
						vid, status);
2986
				}
2987 2988 2989
			}
		}
	} else {
2990 2991 2992 2993 2994 2995 2996 2997 2998
		/* In case of non_trusted VF, number of VLAN elements passed
		 * to PF for removal might be greater than number of VLANs
		 * filter programmed for that VF - So, use actual number of
		 * VLANS added earlier with add VLAN opcode. In order to avoid
		 * removing VLAN that doesn't exist, which result to sending
		 * erroneous failed message back to the VF
		 */
		int num_vf_vlan;

B
Brett Creeley 已提交
2999
		num_vf_vlan = vsi->num_vlan;
3000
		for (i = 0; i < vfl->num_elements && i < num_vf_vlan; i++) {
3001 3002
			u16 vid = vfl->vlan_id[i];

B
Brett Creeley 已提交
3003 3004 3005 3006 3007 3008 3009
			/* we add VLAN 0 by default for each VF so we can enable
			 * Tx VLAN anti-spoof without triggering MDD events so
			 * we don't want a VIRTCHNL request to remove it
			 */
			if (!vid)
				continue;

3010 3011 3012
			/* Make sure ice_vsi_kill_vlan is successful before
			 * updating VLAN information
			 */
B
Brett Creeley 已提交
3013 3014
			status = ice_vsi_kill_vlan(vsi, vid);
			if (status) {
3015
				v_ret = VIRTCHNL_STATUS_ERR_PARAM;
3016 3017 3018
				goto error_param;
			}

3019 3020 3021
			/* Disable VLAN pruning when only VLAN 0 is left */
			if (vsi->num_vlan == 1 &&
			    ice_vsi_is_vlan_pruning_ena(vsi))
3022
				ice_cfg_vlan_pruning(vsi, false, false);
3023 3024 3025 3026 3027

			/* Disable Unicast/Multicast VLAN promiscuous mode */
			if (vlan_promisc) {
				promisc_m = ICE_PROMISC_VLAN_TX |
					    ICE_PROMISC_VLAN_RX;
3028

3029 3030
				ice_clear_vsi_promisc(hw, vsi->idx,
						      promisc_m, vid);
3031 3032 3033 3034 3035 3036 3037
			}
		}
	}

error_param:
	/* send the response to the VF */
	if (add_v)
3038
		return ice_vc_send_msg_to_vf(vf, VIRTCHNL_OP_ADD_VLAN, v_ret,
3039 3040
					     NULL, 0);
	else
3041
		return ice_vc_send_msg_to_vf(vf, VIRTCHNL_OP_DEL_VLAN, v_ret,
3042 3043 3044 3045 3046 3047 3048 3049
					     NULL, 0);
}

/**
 * ice_vc_add_vlan_msg
 * @vf: pointer to the VF info
 * @msg: pointer to the msg buffer
 *
3050
 * Add and program guest VLAN ID
3051 3052 3053 3054 3055 3056 3057 3058 3059 3060 3061
 */
static int ice_vc_add_vlan_msg(struct ice_vf *vf, u8 *msg)
{
	return ice_vc_process_vlan_msg(vf, msg, true);
}

/**
 * ice_vc_remove_vlan_msg
 * @vf: pointer to the VF info
 * @msg: pointer to the msg buffer
 *
3062
 * remove programmed guest VLAN ID
3063 3064 3065 3066 3067 3068 3069 3070 3071 3072 3073 3074 3075 3076
 */
static int ice_vc_remove_vlan_msg(struct ice_vf *vf, u8 *msg)
{
	return ice_vc_process_vlan_msg(vf, msg, false);
}

/**
 * ice_vc_ena_vlan_stripping
 * @vf: pointer to the VF info
 *
 * Enable VLAN header stripping for a given VF
 */
static int ice_vc_ena_vlan_stripping(struct ice_vf *vf)
{
3077
	enum virtchnl_status_code v_ret = VIRTCHNL_STATUS_SUCCESS;
3078 3079 3080 3081
	struct ice_pf *pf = vf->pf;
	struct ice_vsi *vsi;

	if (!test_bit(ICE_VF_STATE_ACTIVE, vf->vf_states)) {
3082
		v_ret = VIRTCHNL_STATUS_ERR_PARAM;
3083 3084 3085
		goto error_param;
	}

3086 3087 3088 3089 3090
	if (!ice_vf_vlan_offload_ena(vf->driver_caps)) {
		v_ret = VIRTCHNL_STATUS_ERR_PARAM;
		goto error_param;
	}

3091 3092
	vsi = pf->vsi[vf->lan_vsi_idx];
	if (ice_vsi_manage_vlan_stripping(vsi, true))
3093
		v_ret = VIRTCHNL_STATUS_ERR_PARAM;
3094 3095 3096

error_param:
	return ice_vc_send_msg_to_vf(vf, VIRTCHNL_OP_ENABLE_VLAN_STRIPPING,
3097
				     v_ret, NULL, 0);
3098 3099 3100 3101 3102 3103 3104 3105 3106 3107
}

/**
 * ice_vc_dis_vlan_stripping
 * @vf: pointer to the VF info
 *
 * Disable VLAN header stripping for a given VF
 */
static int ice_vc_dis_vlan_stripping(struct ice_vf *vf)
{
3108
	enum virtchnl_status_code v_ret = VIRTCHNL_STATUS_SUCCESS;
3109 3110 3111 3112
	struct ice_pf *pf = vf->pf;
	struct ice_vsi *vsi;

	if (!test_bit(ICE_VF_STATE_ACTIVE, vf->vf_states)) {
3113
		v_ret = VIRTCHNL_STATUS_ERR_PARAM;
3114 3115 3116
		goto error_param;
	}

3117 3118 3119 3120 3121
	if (!ice_vf_vlan_offload_ena(vf->driver_caps)) {
		v_ret = VIRTCHNL_STATUS_ERR_PARAM;
		goto error_param;
	}

3122
	vsi = pf->vsi[vf->lan_vsi_idx];
3123
	if (!vsi) {
3124
		v_ret = VIRTCHNL_STATUS_ERR_PARAM;
3125 3126 3127
		goto error_param;
	}

3128
	if (ice_vsi_manage_vlan_stripping(vsi, false))
3129
		v_ret = VIRTCHNL_STATUS_ERR_PARAM;
3130 3131 3132

error_param:
	return ice_vc_send_msg_to_vf(vf, VIRTCHNL_OP_DISABLE_VLAN_STRIPPING,
3133
				     v_ret, NULL, 0);
3134 3135
}

3136 3137 3138 3139 3140 3141 3142 3143 3144 3145 3146 3147 3148 3149 3150 3151 3152 3153 3154 3155 3156 3157 3158 3159 3160 3161 3162
/**
 * ice_vf_init_vlan_stripping - enable/disable VLAN stripping on initialization
 * @vf: VF to enable/disable VLAN stripping for on initialization
 *
 * If the VIRTCHNL_VF_OFFLOAD_VLAN flag is set enable VLAN stripping, else if
 * the flag is cleared then we want to disable stripping. For example, the flag
 * will be cleared when port VLANs are configured by the administrator before
 * passing the VF to the guest or if the AVF driver doesn't support VLAN
 * offloads.
 */
static int ice_vf_init_vlan_stripping(struct ice_vf *vf)
{
	struct ice_vsi *vsi = vf->pf->vsi[vf->lan_vsi_idx];

	if (!vsi)
		return -EINVAL;

	/* don't modify stripping if port VLAN is configured */
	if (vsi->info.pvid)
		return 0;

	if (ice_vf_vlan_offload_ena(vf->driver_caps))
		return ice_vsi_manage_vlan_stripping(vsi, true);
	else
		return ice_vsi_manage_vlan_stripping(vsi, false);
}

3163 3164 3165 3166 3167 3168 3169 3170 3171 3172 3173 3174 3175 3176 3177
/**
 * ice_vc_process_vf_msg - Process request from VF
 * @pf: pointer to the PF structure
 * @event: pointer to the AQ event
 *
 * called from the common asq/arq handler to
 * process request from VF
 */
void ice_vc_process_vf_msg(struct ice_pf *pf, struct ice_rq_event_info *event)
{
	u32 v_opcode = le32_to_cpu(event->desc.cookie_high);
	s16 vf_id = le16_to_cpu(event->desc.retval);
	u16 msglen = event->msg_len;
	u8 *msg = event->msg_buf;
	struct ice_vf *vf = NULL;
B
Brett Creeley 已提交
3178
	struct device *dev;
3179 3180
	int err = 0;

B
Brett Creeley 已提交
3181
	dev = ice_pf_to_dev(pf);
J
Jesse Brandeburg 已提交
3182
	if (ice_validate_vf_id(pf, vf_id)) {
3183 3184 3185 3186 3187 3188 3189 3190 3191 3192 3193 3194 3195 3196 3197
		err = -EINVAL;
		goto error_handler;
	}

	vf = &pf->vf[vf_id];

	/* Check if VF is disabled. */
	if (test_bit(ICE_VF_STATE_DIS, vf->vf_states)) {
		err = -EPERM;
		goto error_handler;
	}

	/* Perform basic checks on the msg */
	err = virtchnl_vc_validate_vf_msg(&vf->vf_ver, v_opcode, msg, msglen);
	if (err) {
3198
		if (err == VIRTCHNL_STATUS_ERR_PARAM)
3199 3200 3201 3202 3203 3204 3205
			err = -EPERM;
		else
			err = -EINVAL;
	}

error_handler:
	if (err) {
3206 3207
		ice_vc_send_msg_to_vf(vf, v_opcode, VIRTCHNL_STATUS_ERR_PARAM,
				      NULL, 0);
B
Brett Creeley 已提交
3208
		dev_err(dev, "Invalid message from VF %d, opcode %d, len %d, error %d\n",
3209 3210 3211 3212 3213 3214 3215 3216 3217 3218
			vf_id, v_opcode, msglen, err);
		return;
	}

	switch (v_opcode) {
	case VIRTCHNL_OP_VERSION:
		err = ice_vc_get_ver_msg(vf, msg);
		break;
	case VIRTCHNL_OP_GET_VF_RESOURCES:
		err = ice_vc_get_vf_res_msg(vf, msg);
3219
		if (ice_vf_init_vlan_stripping(vf))
3220
			dev_err(dev, "Failed to initialize VLAN stripping for VF %d\n",
3221
				vf->vf_id);
3222
		ice_vc_notify_vf_link_state(vf);
3223 3224 3225 3226 3227 3228 3229 3230 3231 3232 3233 3234 3235 3236 3237 3238 3239 3240 3241 3242 3243 3244 3245 3246 3247 3248 3249 3250 3251 3252 3253 3254 3255 3256 3257 3258 3259 3260 3261 3262 3263 3264 3265 3266 3267 3268 3269 3270 3271
		break;
	case VIRTCHNL_OP_RESET_VF:
		ice_vc_reset_vf_msg(vf);
		break;
	case VIRTCHNL_OP_ADD_ETH_ADDR:
		err = ice_vc_add_mac_addr_msg(vf, msg);
		break;
	case VIRTCHNL_OP_DEL_ETH_ADDR:
		err = ice_vc_del_mac_addr_msg(vf, msg);
		break;
	case VIRTCHNL_OP_CONFIG_VSI_QUEUES:
		err = ice_vc_cfg_qs_msg(vf, msg);
		break;
	case VIRTCHNL_OP_ENABLE_QUEUES:
		err = ice_vc_ena_qs_msg(vf, msg);
		ice_vc_notify_vf_link_state(vf);
		break;
	case VIRTCHNL_OP_DISABLE_QUEUES:
		err = ice_vc_dis_qs_msg(vf, msg);
		break;
	case VIRTCHNL_OP_REQUEST_QUEUES:
		err = ice_vc_request_qs_msg(vf, msg);
		break;
	case VIRTCHNL_OP_CONFIG_IRQ_MAP:
		err = ice_vc_cfg_irq_map_msg(vf, msg);
		break;
	case VIRTCHNL_OP_CONFIG_RSS_KEY:
		err = ice_vc_config_rss_key(vf, msg);
		break;
	case VIRTCHNL_OP_CONFIG_RSS_LUT:
		err = ice_vc_config_rss_lut(vf, msg);
		break;
	case VIRTCHNL_OP_GET_STATS:
		err = ice_vc_get_stats_msg(vf, msg);
		break;
	case VIRTCHNL_OP_ADD_VLAN:
		err = ice_vc_add_vlan_msg(vf, msg);
		break;
	case VIRTCHNL_OP_DEL_VLAN:
		err = ice_vc_remove_vlan_msg(vf, msg);
		break;
	case VIRTCHNL_OP_ENABLE_VLAN_STRIPPING:
		err = ice_vc_ena_vlan_stripping(vf);
		break;
	case VIRTCHNL_OP_DISABLE_VLAN_STRIPPING:
		err = ice_vc_dis_vlan_stripping(vf);
		break;
	case VIRTCHNL_OP_UNKNOWN:
	default:
B
Brett Creeley 已提交
3272 3273
		dev_err(dev, "Unsupported opcode %d from VF %d\n", v_opcode,
			vf_id);
3274 3275
		err = ice_vc_send_msg_to_vf(vf, v_opcode,
					    VIRTCHNL_STATUS_ERR_NOT_SUPPORTED,
3276 3277 3278 3279 3280 3281 3282
					    NULL, 0);
		break;
	}
	if (err) {
		/* Helper function cares less about error return values here
		 * as it is busy with pending work.
		 */
B
Brett Creeley 已提交
3283
		dev_info(dev, "PF failed to honor VF %d, opcode %d, error %d\n",
3284 3285 3286 3287
			 vf_id, v_opcode, err);
	}
}

3288 3289 3290 3291 3292 3293 3294 3295
/**
 * ice_get_vf_cfg
 * @netdev: network interface device structure
 * @vf_id: VF identifier
 * @ivi: VF configuration structure
 *
 * return VF configuration
 */
3296 3297
int
ice_get_vf_cfg(struct net_device *netdev, int vf_id, struct ifla_vf_info *ivi)
3298
{
J
Jesse Brandeburg 已提交
3299
	struct ice_pf *pf = ice_netdev_to_pf(netdev);
3300 3301
	struct ice_vf *vf;

J
Jesse Brandeburg 已提交
3302
	if (ice_validate_vf_id(pf, vf_id))
3303 3304 3305 3306
		return -EINVAL;

	vf = &pf->vf[vf_id];

J
Jesse Brandeburg 已提交
3307
	if (ice_check_vf_init(pf, vf))
3308 3309 3310 3311 3312 3313
		return -EBUSY;

	ivi->vf = vf_id;
	ether_addr_copy(ivi->mac, vf->dflt_lan_addr.addr);

	/* VF configuration for VLAN and applicable QoS */
B
Brett Creeley 已提交
3314 3315
	ivi->vlan = vf->port_vlan_info & VLAN_VID_MASK;
	ivi->qos = (vf->port_vlan_info & VLAN_PRIO_MASK) >> VLAN_PRIO_SHIFT;
3316 3317 3318 3319 3320 3321 3322 3323 3324 3325 3326 3327 3328 3329

	ivi->trusted = vf->trusted;
	ivi->spoofchk = vf->spoofchk;
	if (!vf->link_forced)
		ivi->linkstate = IFLA_VF_LINK_STATE_AUTO;
	else if (vf->link_up)
		ivi->linkstate = IFLA_VF_LINK_STATE_ENABLE;
	else
		ivi->linkstate = IFLA_VF_LINK_STATE_DISABLE;
	ivi->max_tx_rate = vf->tx_rate;
	ivi->min_tx_rate = 0;
	return 0;
}

3330 3331 3332 3333 3334 3335 3336 3337 3338 3339 3340 3341 3342 3343 3344 3345 3346
/**
 * ice_wait_on_vf_reset
 * @vf: The VF being resseting
 *
 * Poll to make sure a given VF is ready after reset
 */
static void ice_wait_on_vf_reset(struct ice_vf *vf)
{
	int i;

	for (i = 0; i < ICE_MAX_VF_RESET_WAIT; i++) {
		if (test_bit(ICE_VF_STATE_INIT, vf->vf_states))
			break;
		msleep(20);
	}
}

3347 3348 3349 3350
/**
 * ice_set_vf_mac
 * @netdev: network interface device structure
 * @vf_id: VF identifier
3351
 * @mac: MAC address
3352
 *
3353
 * program VF MAC address
3354 3355 3356
 */
int ice_set_vf_mac(struct net_device *netdev, int vf_id, u8 *mac)
{
J
Jesse Brandeburg 已提交
3357
	struct ice_pf *pf = ice_netdev_to_pf(netdev);
3358 3359 3360
	struct ice_vf *vf;
	int ret = 0;

J
Jesse Brandeburg 已提交
3361
	if (ice_validate_vf_id(pf, vf_id))
3362 3363 3364
		return -EINVAL;

	vf = &pf->vf[vf_id];
3365 3366 3367 3368 3369 3370 3371 3372 3373
	/* Don't set MAC on disabled VF */
	if (ice_is_vf_disabled(vf))
		return -EINVAL;

	/* In case VF is in reset mode, wait until it is completed. Depending
	 * on factors like queue disabling routine, this could take ~250ms
	 */
	ice_wait_on_vf_reset(vf);

J
Jesse Brandeburg 已提交
3374
	if (ice_check_vf_init(pf, vf))
3375 3376 3377 3378 3379 3380 3381
		return -EBUSY;

	if (is_zero_ether_addr(mac) || is_multicast_ether_addr(mac)) {
		netdev_err(netdev, "%pM not a valid unicast address\n", mac);
		return -EINVAL;
	}

3382
	/* copy MAC into dflt_lan_addr and trigger a VF reset. The reset
3383 3384 3385 3386 3387 3388
	 * flow will use the updated dflt_lan_addr and add a MAC filter
	 * using ice_add_mac. Also set pf_set_mac to indicate that the PF has
	 * set the MAC address for this VF.
	 */
	ether_addr_copy(vf->dflt_lan_addr.addr, mac);
	vf->pf_set_mac = true;
3389
	netdev_info(netdev, "MAC on VF %d set to %pM. VF driver will be reinitialized\n",
3390 3391
		    vf_id, mac);

3392
	ice_vc_reset_vf(vf);
3393 3394 3395 3396 3397 3398 3399 3400 3401 3402 3403 3404 3405
	return ret;
}

/**
 * ice_set_vf_trust
 * @netdev: network interface device structure
 * @vf_id: VF identifier
 * @trusted: Boolean value to enable/disable trusted VF
 *
 * Enable or disable a given VF as trusted
 */
int ice_set_vf_trust(struct net_device *netdev, int vf_id, bool trusted)
{
J
Jesse Brandeburg 已提交
3406
	struct ice_pf *pf = ice_netdev_to_pf(netdev);
3407 3408
	struct ice_vf *vf;

J
Jesse Brandeburg 已提交
3409
	if (ice_validate_vf_id(pf, vf_id))
3410 3411 3412
		return -EINVAL;

	vf = &pf->vf[vf_id];
3413 3414 3415 3416 3417 3418 3419 3420 3421
	/* Don't set Trusted Mode on disabled VF */
	if (ice_is_vf_disabled(vf))
		return -EINVAL;

	/* In case VF is in reset mode, wait until it is completed. Depending
	 * on factors like queue disabling routine, this could take ~250ms
	 */
	ice_wait_on_vf_reset(vf);

J
Jesse Brandeburg 已提交
3422
	if (ice_check_vf_init(pf, vf))
3423 3424 3425 3426 3427 3428 3429
		return -EBUSY;

	/* Check if already trusted */
	if (trusted == vf->trusted)
		return 0;

	vf->trusted = trusted;
3430
	ice_vc_reset_vf(vf);
3431
	dev_info(ice_pf_to_dev(pf), "VF %u is now %strusted\n",
3432 3433 3434 3435 3436 3437 3438 3439 3440 3441 3442 3443 3444 3445 3446
		 vf_id, trusted ? "" : "un");

	return 0;
}

/**
 * ice_set_vf_link_state
 * @netdev: network interface device structure
 * @vf_id: VF identifier
 * @link_state: required link state
 *
 * Set VF's link state, irrespective of physical link state status
 */
int ice_set_vf_link_state(struct net_device *netdev, int vf_id, int link_state)
{
J
Jesse Brandeburg 已提交
3447
	struct ice_pf *pf = ice_netdev_to_pf(netdev);
3448 3449
	struct ice_vf *vf;

J
Jesse Brandeburg 已提交
3450
	if (ice_validate_vf_id(pf, vf_id))
3451 3452 3453
		return -EINVAL;

	vf = &pf->vf[vf_id];
J
Jesse Brandeburg 已提交
3454
	if (ice_check_vf_init(pf, vf))
3455 3456 3457 3458 3459 3460 3461 3462 3463 3464 3465 3466 3467 3468 3469 3470 3471 3472
		return -EBUSY;

	switch (link_state) {
	case IFLA_VF_LINK_STATE_AUTO:
		vf->link_forced = false;
		break;
	case IFLA_VF_LINK_STATE_ENABLE:
		vf->link_forced = true;
		vf->link_up = true;
		break;
	case IFLA_VF_LINK_STATE_DISABLE:
		vf->link_forced = true;
		vf->link_up = false;
		break;
	default:
		return -EINVAL;
	}

3473
	ice_vc_notify_vf_link_state(vf);
3474 3475 3476

	return 0;
}
J
Jesse Brandeburg 已提交
3477 3478 3479 3480 3481 3482 3483 3484 3485 3486 3487 3488 3489 3490 3491 3492 3493 3494 3495 3496 3497 3498 3499 3500 3501 3502 3503 3504 3505 3506 3507 3508 3509 3510 3511 3512 3513 3514 3515 3516 3517 3518 3519 3520 3521

/**
 * ice_get_vf_stats - populate some stats for the VF
 * @netdev: the netdev of the PF
 * @vf_id: the host OS identifier (0-255)
 * @vf_stats: pointer to the OS memory to be initialized
 */
int ice_get_vf_stats(struct net_device *netdev, int vf_id,
		     struct ifla_vf_stats *vf_stats)
{
	struct ice_pf *pf = ice_netdev_to_pf(netdev);
	struct ice_eth_stats *stats;
	struct ice_vsi *vsi;
	struct ice_vf *vf;

	if (ice_validate_vf_id(pf, vf_id))
		return -EINVAL;

	vf = &pf->vf[vf_id];

	if (ice_check_vf_init(pf, vf))
		return -EBUSY;

	vsi = pf->vsi[vf->lan_vsi_idx];
	if (!vsi)
		return -EINVAL;

	ice_update_eth_stats(vsi);
	stats = &vsi->eth_stats;

	memset(vf_stats, 0, sizeof(*vf_stats));

	vf_stats->rx_packets = stats->rx_unicast + stats->rx_broadcast +
		stats->rx_multicast;
	vf_stats->tx_packets = stats->tx_unicast + stats->tx_broadcast +
		stats->tx_multicast;
	vf_stats->rx_bytes   = stats->rx_bytes;
	vf_stats->tx_bytes   = stats->tx_bytes;
	vf_stats->broadcast  = stats->rx_broadcast;
	vf_stats->multicast  = stats->rx_multicast;
	vf_stats->rx_dropped = stats->rx_discards;
	vf_stats->tx_dropped = stats->tx_discards;

	return 0;
}