bnx2x_vfpf.c 57.3 KB
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/* bnx2x_vfpf.c: Broadcom Everest network driver.
 *
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 * Copyright 2009-2013 Broadcom Corporation
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 *
 * Unless you and Broadcom execute a separate written software license
 * agreement governing use of this software, this software is licensed to you
 * under the terms of the GNU General Public License version 2, available
 * at http://www.gnu.org/licenses/old-licenses/gpl-2.0.html (the "GPL").
 *
 * Notwithstanding the above, under no circumstances may you combine this
 * software in any way with any other Broadcom software provided under a
 * license other than the GPL, without Broadcom's express prior written
 * consent.
 *
 * Maintained by: Eilon Greenstein <eilong@broadcom.com>
 * Written by: Shmulik Ravid <shmulikr@broadcom.com>
 *	       Ariel Elior <ariele@broadcom.com>
 */

#include "bnx2x.h"
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#include "bnx2x_cmn.h"
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#include <linux/crc32.h>
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static int bnx2x_vfpf_teardown_queue(struct bnx2x *bp, int qidx);

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/* place a given tlv on the tlv buffer at a given offset */
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static void bnx2x_add_tlv(struct bnx2x *bp, void *tlvs_list,
			  u16 offset, u16 type, u16 length)
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{
	struct channel_tlv *tl =
		(struct channel_tlv *)(tlvs_list + offset);

	tl->type = type;
	tl->length = length;
}

/* Clear the mailbox and init the header of the first tlv */
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static void bnx2x_vfpf_prep(struct bnx2x *bp, struct vfpf_first_tlv *first_tlv,
			    u16 type, u16 length)
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{
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	mutex_lock(&bp->vf2pf_mutex);

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	DP(BNX2X_MSG_IOV, "preparing to send %d tlv over vf pf channel\n",
	   type);

	/* Clear mailbox */
	memset(bp->vf2pf_mbox, 0, sizeof(struct bnx2x_vf_mbx_msg));

	/* init type and length */
	bnx2x_add_tlv(bp, &first_tlv->tl, 0, type, length);

	/* init first tlv header */
	first_tlv->resp_msg_offset = sizeof(bp->vf2pf_mbox->req);
}

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/* releases the mailbox */
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static void bnx2x_vfpf_finalize(struct bnx2x *bp,
				struct vfpf_first_tlv *first_tlv)
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{
	DP(BNX2X_MSG_IOV, "done sending [%d] tlv over vf pf channel\n",
	   first_tlv->tl.type);

	mutex_unlock(&bp->vf2pf_mutex);
}

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/* Finds a TLV by type in a TLV buffer; If found, returns pointer to the TLV */
static void *bnx2x_search_tlv_list(struct bnx2x *bp, void *tlvs_list,
				   enum channel_tlvs req_tlv)
{
	struct channel_tlv *tlv = (struct channel_tlv *)tlvs_list;

	do {
		if (tlv->type == req_tlv)
			return tlv;

		if (!tlv->length) {
			BNX2X_ERR("Found TLV with length 0\n");
			return NULL;
		}

		tlvs_list += tlv->length;
		tlv = (struct channel_tlv *)tlvs_list;
	} while (tlv->type != CHANNEL_TLV_LIST_END);

	DP(BNX2X_MSG_IOV, "TLV list does not contain %d TLV\n", req_tlv);

	return NULL;
}

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/* list the types and lengths of the tlvs on the buffer */
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static void bnx2x_dp_tlv_list(struct bnx2x *bp, void *tlvs_list)
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{
	int i = 1;
	struct channel_tlv *tlv = (struct channel_tlv *)tlvs_list;

	while (tlv->type != CHANNEL_TLV_LIST_END) {
		/* output tlv */
		DP(BNX2X_MSG_IOV, "TLV number %d: type %d, length %d\n", i,
		   tlv->type, tlv->length);

		/* advance to next tlv */
		tlvs_list += tlv->length;

		/* cast general tlv list pointer to channel tlv header*/
		tlv = (struct channel_tlv *)tlvs_list;

		i++;

		/* break condition for this loop */
		if (i > MAX_TLVS_IN_LIST) {
			WARN(true, "corrupt tlvs");
			return;
		}
	}

	/* output last tlv */
	DP(BNX2X_MSG_IOV, "TLV number %d: type %d, length %d\n", i,
	   tlv->type, tlv->length);
}
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/* test whether we support a tlv type */
bool bnx2x_tlv_supported(u16 tlvtype)
{
	return CHANNEL_TLV_NONE < tlvtype && tlvtype < CHANNEL_TLV_MAX;
}

static inline int bnx2x_pfvf_status_codes(int rc)
{
	switch (rc) {
	case 0:
		return PFVF_STATUS_SUCCESS;
	case -ENOMEM:
		return PFVF_STATUS_NO_RESOURCE;
	default:
		return PFVF_STATUS_FAILURE;
	}
}

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static int bnx2x_send_msg2pf(struct bnx2x *bp, u8 *done, dma_addr_t msg_mapping)
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{
	struct cstorm_vf_zone_data __iomem *zone_data =
		REG_ADDR(bp, PXP_VF_ADDR_CSDM_GLOBAL_START);
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	int tout = 100, interval = 100; /* wait for 10 seconds */
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	if (*done) {
		BNX2X_ERR("done was non zero before message to pf was sent\n");
		WARN_ON(true);
		return -EINVAL;
	}

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	/* if PF indicated channel is down avoid sending message. Return success
	 * so calling flow can continue
	 */
	bnx2x_sample_bulletin(bp);
	if (bp->old_bulletin.valid_bitmap & 1 << CHANNEL_DOWN) {
		DP(BNX2X_MSG_IOV, "detecting channel down. Aborting message\n");
		*done = PFVF_STATUS_SUCCESS;
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		return -EINVAL;
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	}

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	/* Write message address */
	writel(U64_LO(msg_mapping),
	       &zone_data->non_trigger.vf_pf_channel.msg_addr_lo);
	writel(U64_HI(msg_mapping),
	       &zone_data->non_trigger.vf_pf_channel.msg_addr_hi);

	/* make sure the address is written before FW accesses it */
	wmb();

	/* Trigger the PF FW */
	writeb(1, &zone_data->trigger.vf_pf_channel.addr_valid);

	/* Wait for PF to complete */
	while ((tout >= 0) && (!*done)) {
		msleep(interval);
		tout -= 1;

		/* progress indicator - HV can take its own sweet time in
		 * answering VFs...
		 */
		DP_CONT(BNX2X_MSG_IOV, ".");
	}

	if (!*done) {
		BNX2X_ERR("PF response has timed out\n");
		return -EAGAIN;
	}
	DP(BNX2X_MSG_SP, "Got a response from PF\n");
	return 0;
}

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static int bnx2x_get_vf_id(struct bnx2x *bp, u32 *vf_id)
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{
	u32 me_reg;
	int tout = 10, interval = 100; /* Wait for 1 sec */

	do {
		/* pxp traps vf read of doorbells and returns me reg value */
		me_reg = readl(bp->doorbells);
		if (GOOD_ME_REG(me_reg))
			break;

		msleep(interval);

		BNX2X_ERR("Invalid ME register value: 0x%08x\n. Is pf driver up?",
			  me_reg);
	} while (tout-- > 0);

	if (!GOOD_ME_REG(me_reg)) {
		BNX2X_ERR("Invalid ME register value: 0x%08x\n", me_reg);
		return -EINVAL;
	}

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	DP(BNX2X_MSG_IOV, "valid ME register value: 0x%08x\n", me_reg);
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	*vf_id = (me_reg & ME_REG_VF_NUM_MASK) >> ME_REG_VF_NUM_SHIFT;

	return 0;
}

int bnx2x_vfpf_acquire(struct bnx2x *bp, u8 tx_count, u8 rx_count)
{
	int rc = 0, attempts = 0;
	struct vfpf_acquire_tlv *req = &bp->vf2pf_mbox->req.acquire;
	struct pfvf_acquire_resp_tlv *resp = &bp->vf2pf_mbox->resp.acquire_resp;
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	struct vfpf_port_phys_id_resp_tlv *phys_port_resp;
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	u32 vf_id;
	bool resources_acquired = false;

	/* clear mailbox and prep first tlv */
	bnx2x_vfpf_prep(bp, &req->first_tlv, CHANNEL_TLV_ACQUIRE, sizeof(*req));

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	if (bnx2x_get_vf_id(bp, &vf_id)) {
		rc = -EAGAIN;
		goto out;
	}
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	req->vfdev_info.vf_id = vf_id;
	req->vfdev_info.vf_os = 0;

	req->resc_request.num_rxqs = rx_count;
	req->resc_request.num_txqs = tx_count;
	req->resc_request.num_sbs = bp->igu_sb_cnt;
	req->resc_request.num_mac_filters = VF_ACQUIRE_MAC_FILTERS;
	req->resc_request.num_mc_filters = VF_ACQUIRE_MC_FILTERS;

	/* pf 2 vf bulletin board address */
	req->bulletin_addr = bp->pf2vf_bulletin_mapping;

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	/* Request physical port identifier */
	bnx2x_add_tlv(bp, req, req->first_tlv.tl.length,
		      CHANNEL_TLV_PHYS_PORT_ID, sizeof(struct channel_tlv));

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	/* add list termination tlv */
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	bnx2x_add_tlv(bp, req,
		      req->first_tlv.tl.length + sizeof(struct channel_tlv),
		      CHANNEL_TLV_LIST_END,
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		      sizeof(struct channel_list_end_tlv));

	/* output tlvs list */
	bnx2x_dp_tlv_list(bp, req);

	while (!resources_acquired) {
		DP(BNX2X_MSG_SP, "attempting to acquire resources\n");

		/* send acquire request */
		rc = bnx2x_send_msg2pf(bp,
				       &resp->hdr.status,
				       bp->vf2pf_mbox_mapping);

		/* PF timeout */
		if (rc)
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			goto out;
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		/* copy acquire response from buffer to bp */
		memcpy(&bp->acquire_resp, resp, sizeof(bp->acquire_resp));

		attempts++;

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		/* test whether the PF accepted our request. If not, humble
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		 * the request and try again.
		 */
		if (bp->acquire_resp.hdr.status == PFVF_STATUS_SUCCESS) {
			DP(BNX2X_MSG_SP, "resources acquired\n");
			resources_acquired = true;
		} else if (bp->acquire_resp.hdr.status ==
			   PFVF_STATUS_NO_RESOURCE &&
			   attempts < VF_ACQUIRE_THRESH) {
			DP(BNX2X_MSG_SP,
			   "PF unwilling to fulfill resource request. Try PF recommended amount\n");

			/* humble our request */
			req->resc_request.num_txqs =
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				min(req->resc_request.num_txqs,
				    bp->acquire_resp.resc.num_txqs);
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			req->resc_request.num_rxqs =
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				min(req->resc_request.num_rxqs,
				    bp->acquire_resp.resc.num_rxqs);
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			req->resc_request.num_sbs =
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				min(req->resc_request.num_sbs,
				    bp->acquire_resp.resc.num_sbs);
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			req->resc_request.num_mac_filters =
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				min(req->resc_request.num_mac_filters,
				    bp->acquire_resp.resc.num_mac_filters);
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			req->resc_request.num_vlan_filters =
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				min(req->resc_request.num_vlan_filters,
				    bp->acquire_resp.resc.num_vlan_filters);
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			req->resc_request.num_mc_filters =
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				min(req->resc_request.num_mc_filters,
				    bp->acquire_resp.resc.num_mc_filters);
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			/* Clear response buffer */
			memset(&bp->vf2pf_mbox->resp, 0,
			       sizeof(union pfvf_tlvs));
		} else {
			/* PF reports error */
			BNX2X_ERR("Failed to get the requested amount of resources: %d. Breaking...\n",
				  bp->acquire_resp.hdr.status);
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			rc = -EAGAIN;
			goto out;
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		}
	}

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	/* Retrieve physical port id (if possible) */
	phys_port_resp = (struct vfpf_port_phys_id_resp_tlv *)
			 bnx2x_search_tlv_list(bp, resp,
					       CHANNEL_TLV_PHYS_PORT_ID);
	if (phys_port_resp) {
		memcpy(bp->phys_port_id, phys_port_resp->id, ETH_ALEN);
		bp->flags |= HAS_PHYS_PORT_ID;
	}

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	/* get HW info */
	bp->common.chip_id |= (bp->acquire_resp.pfdev_info.chip_num & 0xffff);
	bp->link_params.chip_id = bp->common.chip_id;
	bp->db_size = bp->acquire_resp.pfdev_info.db_size;
	bp->common.int_block = INT_BLOCK_IGU;
	bp->common.chip_port_mode = CHIP_2_PORT_MODE;
	bp->igu_dsb_id = -1;
	bp->mf_ov = 0;
	bp->mf_mode = 0;
	bp->common.flash_size = 0;
	bp->flags |=
		NO_WOL_FLAG | NO_ISCSI_OOO_FLAG | NO_ISCSI_FLAG | NO_FCOE_FLAG;
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	bp->igu_sb_cnt = bp->acquire_resp.resc.num_sbs;
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	bp->igu_base_sb = bp->acquire_resp.resc.hw_sbs[0].hw_sb_id;
	strlcpy(bp->fw_ver, bp->acquire_resp.pfdev_info.fw_ver,
		sizeof(bp->fw_ver));

	if (is_valid_ether_addr(bp->acquire_resp.resc.current_mac_addr))
		memcpy(bp->dev->dev_addr,
		       bp->acquire_resp.resc.current_mac_addr,
		       ETH_ALEN);

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out:
	bnx2x_vfpf_finalize(bp, &req->first_tlv);
	return rc;
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}

int bnx2x_vfpf_release(struct bnx2x *bp)
{
	struct vfpf_release_tlv *req = &bp->vf2pf_mbox->req.release;
	struct pfvf_general_resp_tlv *resp = &bp->vf2pf_mbox->resp.general_resp;
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	u32 rc, vf_id;
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	/* clear mailbox and prep first tlv */
	bnx2x_vfpf_prep(bp, &req->first_tlv, CHANNEL_TLV_RELEASE, sizeof(*req));

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	if (bnx2x_get_vf_id(bp, &vf_id)) {
		rc = -EAGAIN;
		goto out;
	}
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	req->vf_id = vf_id;

	/* add list termination tlv */
	bnx2x_add_tlv(bp, req, req->first_tlv.tl.length, CHANNEL_TLV_LIST_END,
		      sizeof(struct channel_list_end_tlv));

	/* output tlvs list */
	bnx2x_dp_tlv_list(bp, req);

	/* send release request */
	rc = bnx2x_send_msg2pf(bp, &resp->hdr.status, bp->vf2pf_mbox_mapping);

	if (rc)
		/* PF timeout */
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		goto out;

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	if (resp->hdr.status == PFVF_STATUS_SUCCESS) {
		/* PF released us */
		DP(BNX2X_MSG_SP, "vf released\n");
	} else {
		/* PF reports error */
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		BNX2X_ERR("PF failed our release request - are we out of sync? Response status: %d\n",
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			  resp->hdr.status);
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		rc = -EAGAIN;
		goto out;
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	}
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out:
	bnx2x_vfpf_finalize(bp, &req->first_tlv);
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	return rc;
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}

/* Tell PF about SB addresses */
int bnx2x_vfpf_init(struct bnx2x *bp)
{
	struct vfpf_init_tlv *req = &bp->vf2pf_mbox->req.init;
	struct pfvf_general_resp_tlv *resp = &bp->vf2pf_mbox->resp.general_resp;
	int rc, i;

	/* clear mailbox and prep first tlv */
	bnx2x_vfpf_prep(bp, &req->first_tlv, CHANNEL_TLV_INIT, sizeof(*req));

	/* status blocks */
	for_each_eth_queue(bp, i)
		req->sb_addr[i] = (dma_addr_t)bnx2x_fp(bp, i,
						       status_blk_mapping);

	/* statistics - requests only supports single queue for now */
	req->stats_addr = bp->fw_stats_data_mapping +
			  offsetof(struct bnx2x_fw_stats_data, queue_stats);

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	req->stats_stride = sizeof(struct per_queue_stats);

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	/* add list termination tlv */
	bnx2x_add_tlv(bp, req, req->first_tlv.tl.length, CHANNEL_TLV_LIST_END,
		      sizeof(struct channel_list_end_tlv));

	/* output tlvs list */
	bnx2x_dp_tlv_list(bp, req);

	rc = bnx2x_send_msg2pf(bp, &resp->hdr.status, bp->vf2pf_mbox_mapping);
	if (rc)
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		goto out;
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	if (resp->hdr.status != PFVF_STATUS_SUCCESS) {
		BNX2X_ERR("INIT VF failed: %d. Breaking...\n",
			  resp->hdr.status);
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		rc = -EAGAIN;
		goto out;
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	}

	DP(BNX2X_MSG_SP, "INIT VF Succeeded\n");
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out:
	bnx2x_vfpf_finalize(bp, &req->first_tlv);

	return rc;
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}

/* CLOSE VF - opposite to INIT_VF */
void bnx2x_vfpf_close_vf(struct bnx2x *bp)
{
	struct vfpf_close_tlv *req = &bp->vf2pf_mbox->req.close;
	struct pfvf_general_resp_tlv *resp = &bp->vf2pf_mbox->resp.general_resp;
	int i, rc;
	u32 vf_id;

	/* If we haven't got a valid VF id, there is no sense to
	 * continue with sending messages
	 */
	if (bnx2x_get_vf_id(bp, &vf_id))
		goto free_irq;

	/* Close the queues */
	for_each_queue(bp, i)
		bnx2x_vfpf_teardown_queue(bp, i);

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	/* remove mac */
	bnx2x_vfpf_config_mac(bp, bp->dev->dev_addr, bp->fp->index, false);

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	/* clear mailbox and prep first tlv */
	bnx2x_vfpf_prep(bp, &req->first_tlv, CHANNEL_TLV_CLOSE, sizeof(*req));

	req->vf_id = vf_id;

	/* add list termination tlv */
	bnx2x_add_tlv(bp, req, req->first_tlv.tl.length, CHANNEL_TLV_LIST_END,
		      sizeof(struct channel_list_end_tlv));

	/* output tlvs list */
	bnx2x_dp_tlv_list(bp, req);

	rc = bnx2x_send_msg2pf(bp, &resp->hdr.status, bp->vf2pf_mbox_mapping);

	if (rc)
		BNX2X_ERR("Sending CLOSE failed. rc was: %d\n", rc);

	else if (resp->hdr.status != PFVF_STATUS_SUCCESS)
		BNX2X_ERR("Sending CLOSE failed: pf response was %d\n",
			  resp->hdr.status);

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	bnx2x_vfpf_finalize(bp, &req->first_tlv);

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free_irq:
	/* Disable HW interrupts, NAPI */
	bnx2x_netif_stop(bp, 0);
	/* Delete all NAPI objects */
	bnx2x_del_all_napi(bp);

	/* Release IRQs */
	bnx2x_free_irq(bp);
}

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static void bnx2x_leading_vfq_init(struct bnx2x *bp, struct bnx2x_virtf *vf,
				   struct bnx2x_vf_queue *q)
{
	u8 cl_id = vfq_cl_id(vf, q);
	u8 func_id = FW_VF_HANDLE(vf->abs_vfid);

	/* mac */
	bnx2x_init_mac_obj(bp, &q->mac_obj,
			   cl_id, q->cid, func_id,
			   bnx2x_vf_sp(bp, vf, mac_rdata),
			   bnx2x_vf_sp_map(bp, vf, mac_rdata),
			   BNX2X_FILTER_MAC_PENDING,
			   &vf->filter_state,
			   BNX2X_OBJ_TYPE_RX_TX,
			   &bp->macs_pool);
	/* vlan */
	bnx2x_init_vlan_obj(bp, &q->vlan_obj,
			    cl_id, q->cid, func_id,
			    bnx2x_vf_sp(bp, vf, vlan_rdata),
			    bnx2x_vf_sp_map(bp, vf, vlan_rdata),
			    BNX2X_FILTER_VLAN_PENDING,
			    &vf->filter_state,
			    BNX2X_OBJ_TYPE_RX_TX,
			    &bp->vlans_pool);

	/* mcast */
	bnx2x_init_mcast_obj(bp, &vf->mcast_obj, cl_id,
			     q->cid, func_id, func_id,
			     bnx2x_vf_sp(bp, vf, mcast_rdata),
			     bnx2x_vf_sp_map(bp, vf, mcast_rdata),
			     BNX2X_FILTER_MCAST_PENDING,
			     &vf->filter_state,
			     BNX2X_OBJ_TYPE_RX_TX);

	/* rss */
	bnx2x_init_rss_config_obj(bp, &vf->rss_conf_obj, cl_id, q->cid,
				  func_id, func_id,
				  bnx2x_vf_sp(bp, vf, rss_rdata),
				  bnx2x_vf_sp_map(bp, vf, rss_rdata),
				  BNX2X_FILTER_RSS_CONF_PENDING,
				  &vf->filter_state,
				  BNX2X_OBJ_TYPE_RX_TX);

	vf->leading_rss = cl_id;
	q->is_leading = true;
551
	q->sp_initialized = true;
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}

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/* ask the pf to open a queue for the vf */
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int bnx2x_vfpf_setup_q(struct bnx2x *bp, struct bnx2x_fastpath *fp,
		       bool is_leading)
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{
	struct vfpf_setup_q_tlv *req = &bp->vf2pf_mbox->req.setup_q;
	struct pfvf_general_resp_tlv *resp = &bp->vf2pf_mbox->resp.general_resp;
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	u8 fp_idx = fp->index;
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	u16 tpa_agg_size = 0, flags = 0;
	int rc;

	/* clear mailbox and prep first tlv */
	bnx2x_vfpf_prep(bp, &req->first_tlv, CHANNEL_TLV_SETUP_Q, sizeof(*req));

	/* select tpa mode to request */
	if (!fp->disable_tpa) {
		flags |= VFPF_QUEUE_FLG_TPA;
		flags |= VFPF_QUEUE_FLG_TPA_IPV6;
		if (fp->mode == TPA_MODE_GRO)
			flags |= VFPF_QUEUE_FLG_TPA_GRO;
		tpa_agg_size = TPA_AGG_SIZE;
	}

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	if (is_leading)
		flags |= VFPF_QUEUE_FLG_LEADING_RSS;

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	/* calculate queue flags */
	flags |= VFPF_QUEUE_FLG_STATS;
	flags |= VFPF_QUEUE_FLG_CACHE_ALIGN;
	flags |= VFPF_QUEUE_FLG_VLAN;
	DP(NETIF_MSG_IFUP, "vlan removal enabled\n");

	/* Common */
	req->vf_qid = fp_idx;
	req->param_valid = VFPF_RXQ_VALID | VFPF_TXQ_VALID;

	/* Rx */
	req->rxq.rcq_addr = fp->rx_comp_mapping;
	req->rxq.rcq_np_addr = fp->rx_comp_mapping + BCM_PAGE_SIZE;
	req->rxq.rxq_addr = fp->rx_desc_mapping;
	req->rxq.sge_addr = fp->rx_sge_mapping;
	req->rxq.vf_sb = fp_idx;
	req->rxq.sb_index = HC_INDEX_ETH_RX_CQ_CONS;
	req->rxq.hc_rate = bp->rx_ticks ? 1000000/bp->rx_ticks : 0;
	req->rxq.mtu = bp->dev->mtu;
	req->rxq.buf_sz = fp->rx_buf_size;
	req->rxq.sge_buf_sz = BCM_PAGE_SIZE * PAGES_PER_SGE;
	req->rxq.tpa_agg_sz = tpa_agg_size;
	req->rxq.max_sge_pkt = SGE_PAGE_ALIGN(bp->dev->mtu) >> SGE_PAGE_SHIFT;
	req->rxq.max_sge_pkt = ((req->rxq.max_sge_pkt + PAGES_PER_SGE - 1) &
			  (~(PAGES_PER_SGE-1))) >> PAGES_PER_SGE_SHIFT;
	req->rxq.flags = flags;
	req->rxq.drop_flags = 0;
	req->rxq.cache_line_log = BNX2X_RX_ALIGN_SHIFT;
	req->rxq.stat_id = -1; /* No stats at the moment */

	/* Tx */
	req->txq.txq_addr = fp->txdata_ptr[FIRST_TX_COS_INDEX]->tx_desc_mapping;
	req->txq.vf_sb = fp_idx;
	req->txq.sb_index = HC_INDEX_ETH_TX_CQ_CONS_COS0;
	req->txq.hc_rate = bp->tx_ticks ? 1000000/bp->tx_ticks : 0;
	req->txq.flags = flags;
	req->txq.traffic_type = LLFC_TRAFFIC_TYPE_NW;

	/* add list termination tlv */
	bnx2x_add_tlv(bp, req, req->first_tlv.tl.length, CHANNEL_TLV_LIST_END,
		      sizeof(struct channel_list_end_tlv));

	/* output tlvs list */
	bnx2x_dp_tlv_list(bp, req);

	rc = bnx2x_send_msg2pf(bp, &resp->hdr.status, bp->vf2pf_mbox_mapping);
	if (rc)
		BNX2X_ERR("Sending SETUP_Q message for queue[%d] failed!\n",
			  fp_idx);

	if (resp->hdr.status != PFVF_STATUS_SUCCESS) {
		BNX2X_ERR("Status of SETUP_Q for queue[%d] is %d\n",
			  fp_idx, resp->hdr.status);
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		rc = -EINVAL;
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	}
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	bnx2x_vfpf_finalize(bp, &req->first_tlv);

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	return rc;
}

640
static int bnx2x_vfpf_teardown_queue(struct bnx2x *bp, int qidx)
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{
	struct vfpf_q_op_tlv *req = &bp->vf2pf_mbox->req.q_op;
	struct pfvf_general_resp_tlv *resp = &bp->vf2pf_mbox->resp.general_resp;
	int rc;

	/* clear mailbox and prep first tlv */
	bnx2x_vfpf_prep(bp, &req->first_tlv, CHANNEL_TLV_TEARDOWN_Q,
			sizeof(*req));

	req->vf_qid = qidx;

	/* add list termination tlv */
	bnx2x_add_tlv(bp, req, req->first_tlv.tl.length, CHANNEL_TLV_LIST_END,
		      sizeof(struct channel_list_end_tlv));

	/* output tlvs list */
	bnx2x_dp_tlv_list(bp, req);

	rc = bnx2x_send_msg2pf(bp, &resp->hdr.status, bp->vf2pf_mbox_mapping);

	if (rc) {
		BNX2X_ERR("Sending TEARDOWN for queue %d failed: %d\n", qidx,
			  rc);
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		goto out;
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	}

	/* PF failed the transaction */
	if (resp->hdr.status != PFVF_STATUS_SUCCESS) {
		BNX2X_ERR("TEARDOWN for queue %d failed: %d\n", qidx,
			  resp->hdr.status);
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		rc = -EINVAL;
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	}

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out:
	bnx2x_vfpf_finalize(bp, &req->first_tlv);
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	return rc;
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}

/* request pf to add a mac for the vf */
681
int bnx2x_vfpf_config_mac(struct bnx2x *bp, u8 *addr, u8 vf_qid, bool set)
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{
	struct vfpf_set_q_filters_tlv *req = &bp->vf2pf_mbox->req.set_q_filters;
	struct pfvf_general_resp_tlv *resp = &bp->vf2pf_mbox->resp.general_resp;
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	struct pf_vf_bulletin_content bulletin = bp->pf2vf_bulletin->content;
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	int rc = 0;
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	/* clear mailbox and prep first tlv */
	bnx2x_vfpf_prep(bp, &req->first_tlv, CHANNEL_TLV_SET_Q_FILTERS,
			sizeof(*req));

	req->flags = VFPF_SET_Q_FILTERS_MAC_VLAN_CHANGED;
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	req->vf_qid = vf_qid;
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	req->n_mac_vlan_filters = 1;
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	req->filters[0].flags = VFPF_Q_FILTER_DEST_MAC_VALID;
	if (set)
		req->filters[0].flags |= VFPF_Q_FILTER_SET_MAC;
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	/* sample bulletin board for new mac */
	bnx2x_sample_bulletin(bp);

	/* copy mac from device to request */
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	memcpy(req->filters[0].mac, addr, ETH_ALEN);
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	/* add list termination tlv */
	bnx2x_add_tlv(bp, req, req->first_tlv.tl.length, CHANNEL_TLV_LIST_END,
		      sizeof(struct channel_list_end_tlv));

	/* output tlvs list */
	bnx2x_dp_tlv_list(bp, req);

	/* send message to pf */
	rc = bnx2x_send_msg2pf(bp, &resp->hdr.status, bp->vf2pf_mbox_mapping);
	if (rc) {
		BNX2X_ERR("failed to send message to pf. rc was %d\n", rc);
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		goto out;
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	}

	/* failure may mean PF was configured with a new mac for us */
	while (resp->hdr.status == PFVF_STATUS_FAILURE) {
		DP(BNX2X_MSG_IOV,
		   "vfpf SET MAC failed. Check bulletin board for new posts\n");

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		/* copy mac from bulletin to device */
		memcpy(bp->dev->dev_addr, bulletin.mac, ETH_ALEN);

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		/* check if bulletin board was updated */
		if (bnx2x_sample_bulletin(bp) == PFVF_BULLETIN_UPDATED) {
			/* copy mac from device to request */
			memcpy(req->filters[0].mac, bp->dev->dev_addr,
			       ETH_ALEN);

			/* send message to pf */
			rc = bnx2x_send_msg2pf(bp, &resp->hdr.status,
					       bp->vf2pf_mbox_mapping);
		} else {
			/* no new info in bulletin */
			break;
		}
	}

	if (resp->hdr.status != PFVF_STATUS_SUCCESS) {
		BNX2X_ERR("vfpf SET MAC failed: %d\n", resp->hdr.status);
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		rc = -EINVAL;
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	}
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out:
	bnx2x_vfpf_finalize(bp, &req->first_tlv);
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	return 0;
}

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/* request pf to config rss table for vf queues*/
int bnx2x_vfpf_config_rss(struct bnx2x *bp,
			  struct bnx2x_config_rss_params *params)
{
	struct pfvf_general_resp_tlv *resp = &bp->vf2pf_mbox->resp.general_resp;
	struct vfpf_rss_tlv *req = &bp->vf2pf_mbox->req.update_rss;
	int rc = 0;

	/* clear mailbox and prep first tlv */
	bnx2x_vfpf_prep(bp, &req->first_tlv, CHANNEL_TLV_UPDATE_RSS,
			sizeof(*req));

	/* add list termination tlv */
	bnx2x_add_tlv(bp, req, req->first_tlv.tl.length, CHANNEL_TLV_LIST_END,
		      sizeof(struct channel_list_end_tlv));

	memcpy(req->ind_table, params->ind_table, T_ETH_INDIRECTION_TABLE_SIZE);
	memcpy(req->rss_key, params->rss_key, sizeof(params->rss_key));
	req->ind_table_size = T_ETH_INDIRECTION_TABLE_SIZE;
	req->rss_key_size = T_ETH_RSS_KEY;
	req->rss_result_mask = params->rss_result_mask;

	/* flags handled individually for backward/forward compatability */
	if (params->rss_flags & (1 << BNX2X_RSS_MODE_DISABLED))
		req->rss_flags |= VFPF_RSS_MODE_DISABLED;
	if (params->rss_flags & (1 << BNX2X_RSS_MODE_REGULAR))
		req->rss_flags |= VFPF_RSS_MODE_REGULAR;
	if (params->rss_flags & (1 << BNX2X_RSS_SET_SRCH))
		req->rss_flags |= VFPF_RSS_SET_SRCH;
	if (params->rss_flags & (1 << BNX2X_RSS_IPV4))
		req->rss_flags |= VFPF_RSS_IPV4;
	if (params->rss_flags & (1 << BNX2X_RSS_IPV4_TCP))
		req->rss_flags |= VFPF_RSS_IPV4_TCP;
	if (params->rss_flags & (1 << BNX2X_RSS_IPV4_UDP))
		req->rss_flags |= VFPF_RSS_IPV4_UDP;
	if (params->rss_flags & (1 << BNX2X_RSS_IPV6))
		req->rss_flags |= VFPF_RSS_IPV6;
	if (params->rss_flags & (1 << BNX2X_RSS_IPV6_TCP))
		req->rss_flags |= VFPF_RSS_IPV6_TCP;
	if (params->rss_flags & (1 << BNX2X_RSS_IPV6_UDP))
		req->rss_flags |= VFPF_RSS_IPV6_UDP;

	DP(BNX2X_MSG_IOV, "rss flags %x\n", req->rss_flags);

	/* output tlvs list */
	bnx2x_dp_tlv_list(bp, req);

	/* send message to pf */
	rc = bnx2x_send_msg2pf(bp, &resp->hdr.status, bp->vf2pf_mbox_mapping);
	if (rc) {
		BNX2X_ERR("failed to send message to pf. rc was %d\n", rc);
		goto out;
	}

	if (resp->hdr.status != PFVF_STATUS_SUCCESS) {
808 809 810 811 812 813 814
		/* Since older drivers don't support this feature (and VF has
		 * no way of knowing other than failing this), don't propagate
		 * an error in this case.
		 */
		DP(BNX2X_MSG_IOV,
		   "Failed to send rss message to PF over VF-PF channel [%d]\n",
		   resp->hdr.status);
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	}
out:
	bnx2x_vfpf_finalize(bp, &req->first_tlv);

819
	return rc;
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}

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int bnx2x_vfpf_set_mcast(struct net_device *dev)
{
	struct bnx2x *bp = netdev_priv(dev);
	struct vfpf_set_q_filters_tlv *req = &bp->vf2pf_mbox->req.set_q_filters;
	struct pfvf_general_resp_tlv *resp = &bp->vf2pf_mbox->resp.general_resp;
	int rc, i = 0;
	struct netdev_hw_addr *ha;

	if (bp->state != BNX2X_STATE_OPEN) {
		DP(NETIF_MSG_IFUP, "state is %x, returning\n", bp->state);
		return -EINVAL;
	}

	/* clear mailbox and prep first tlv */
	bnx2x_vfpf_prep(bp, &req->first_tlv, CHANNEL_TLV_SET_Q_FILTERS,
			sizeof(*req));

	/* Get Rx mode requested */
	DP(NETIF_MSG_IFUP, "dev->flags = %x\n", dev->flags);

	netdev_for_each_mc_addr(ha, dev) {
		DP(NETIF_MSG_IFUP, "Adding mcast MAC: %pM\n",
		   bnx2x_mc_addr(ha));
		memcpy(req->multicast[i], bnx2x_mc_addr(ha), ETH_ALEN);
		i++;
	}

	/* We support four PFVF_MAX_MULTICAST_PER_VF mcast
	  * addresses tops
	  */
	if (i >= PFVF_MAX_MULTICAST_PER_VF) {
		DP(NETIF_MSG_IFUP,
		   "VF supports not more than %d multicast MAC addresses\n",
		   PFVF_MAX_MULTICAST_PER_VF);
		return -EINVAL;
	}

	req->n_multicast = i;
	req->flags |= VFPF_SET_Q_FILTERS_MULTICAST_CHANGED;
	req->vf_qid = 0;

	/* add list termination tlv */
	bnx2x_add_tlv(bp, req, req->first_tlv.tl.length, CHANNEL_TLV_LIST_END,
		      sizeof(struct channel_list_end_tlv));

	/* output tlvs list */
	bnx2x_dp_tlv_list(bp, req);
	rc = bnx2x_send_msg2pf(bp, &resp->hdr.status, bp->vf2pf_mbox_mapping);
	if (rc) {
		BNX2X_ERR("Sending a message failed: %d\n", rc);
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		goto out;
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	}

	if (resp->hdr.status != PFVF_STATUS_SUCCESS) {
		BNX2X_ERR("Set Rx mode/multicast failed: %d\n",
			  resp->hdr.status);
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		rc = -EINVAL;
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	}
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out:
	bnx2x_vfpf_finalize(bp, &req->first_tlv);
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	return 0;
}

int bnx2x_vfpf_storm_rx_mode(struct bnx2x *bp)
{
	int mode = bp->rx_mode;
	struct vfpf_set_q_filters_tlv *req = &bp->vf2pf_mbox->req.set_q_filters;
	struct pfvf_general_resp_tlv *resp = &bp->vf2pf_mbox->resp.general_resp;
	int rc;

	/* clear mailbox and prep first tlv */
	bnx2x_vfpf_prep(bp, &req->first_tlv, CHANNEL_TLV_SET_Q_FILTERS,
			sizeof(*req));

	DP(NETIF_MSG_IFUP, "Rx mode is %d\n", mode);

899 900
	/* Ignore everything accept MODE_NONE */
	if (mode  == BNX2X_RX_MODE_NONE) {
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		req->rx_mask = VFPF_RX_MASK_ACCEPT_NONE;
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	} else {
		/* Current PF driver will not look at the specific flags,
		 * but they are required when working with older drivers on hv.
		 */
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		req->rx_mask = VFPF_RX_MASK_ACCEPT_MATCHED_MULTICAST;
		req->rx_mask |= VFPF_RX_MASK_ACCEPT_MATCHED_UNICAST;
		req->rx_mask |= VFPF_RX_MASK_ACCEPT_BROADCAST;
	}

	req->flags |= VFPF_SET_Q_FILTERS_RX_MASK_CHANGED;
	req->vf_qid = 0;

	/* add list termination tlv */
	bnx2x_add_tlv(bp, req, req->first_tlv.tl.length, CHANNEL_TLV_LIST_END,
		      sizeof(struct channel_list_end_tlv));

	/* output tlvs list */
	bnx2x_dp_tlv_list(bp, req);

	rc = bnx2x_send_msg2pf(bp, &resp->hdr.status, bp->vf2pf_mbox_mapping);
	if (rc)
		BNX2X_ERR("Sending a message failed: %d\n", rc);

	if (resp->hdr.status != PFVF_STATUS_SUCCESS) {
		BNX2X_ERR("Set Rx mode failed: %d\n", resp->hdr.status);
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		rc = -EINVAL;
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	}
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	bnx2x_vfpf_finalize(bp, &req->first_tlv);
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	return rc;
}

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/* General service functions */
static void storm_memset_vf_mbx_ack(struct bnx2x *bp, u16 abs_fid)
{
	u32 addr = BAR_CSTRORM_INTMEM +
		   CSTORM_VF_PF_CHANNEL_STATE_OFFSET(abs_fid);

	REG_WR8(bp, addr, VF_PF_CHANNEL_STATE_READY);
}

static void storm_memset_vf_mbx_valid(struct bnx2x *bp, u16 abs_fid)
{
	u32 addr = BAR_CSTRORM_INTMEM +
		   CSTORM_VF_PF_CHANNEL_VALID_OFFSET(abs_fid);

	REG_WR8(bp, addr, 1);
}

static inline void bnx2x_set_vf_mbxs_valid(struct bnx2x *bp)
{
	int i;

	for_each_vf(bp, i)
		storm_memset_vf_mbx_valid(bp, bnx2x_vf(bp, i, abs_vfid));
}

960
/* enable vf_pf mailbox (aka vf-pf-channel) */
961 962 963 964 965 966 967 968 969 970 971
void bnx2x_vf_enable_mbx(struct bnx2x *bp, u8 abs_vfid)
{
	bnx2x_vf_flr_clnup_epilog(bp, abs_vfid);

	/* enable the mailbox in the FW */
	storm_memset_vf_mbx_ack(bp, abs_vfid);
	storm_memset_vf_mbx_valid(bp, abs_vfid);

	/* enable the VF access to the mailbox */
	bnx2x_vf_enable_access(bp, abs_vfid);
}
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/* this works only on !E1h */
static int bnx2x_copy32_vf_dmae(struct bnx2x *bp, u8 from_vf,
				dma_addr_t pf_addr, u8 vfid, u32 vf_addr_hi,
				u32 vf_addr_lo, u32 len32)
{
	struct dmae_command dmae;

	if (CHIP_IS_E1x(bp)) {
		BNX2X_ERR("Chip revision does not support VFs\n");
		return DMAE_NOT_RDY;
	}

	if (!bp->dmae_ready) {
		BNX2X_ERR("DMAE is not ready, can not copy\n");
		return DMAE_NOT_RDY;
	}

	/* set opcode and fixed command fields */
	bnx2x_prep_dmae_with_comp(bp, &dmae, DMAE_SRC_PCI, DMAE_DST_PCI);

	if (from_vf) {
		dmae.opcode_iov = (vfid << DMAE_COMMAND_SRC_VFID_SHIFT) |
			(DMAE_SRC_VF << DMAE_COMMAND_SRC_VFPF_SHIFT) |
			(DMAE_DST_PF << DMAE_COMMAND_DST_VFPF_SHIFT);

		dmae.opcode |= (DMAE_C_DST << DMAE_COMMAND_C_FUNC_SHIFT);

		dmae.src_addr_lo = vf_addr_lo;
		dmae.src_addr_hi = vf_addr_hi;
		dmae.dst_addr_lo = U64_LO(pf_addr);
		dmae.dst_addr_hi = U64_HI(pf_addr);
	} else {
		dmae.opcode_iov = (vfid << DMAE_COMMAND_DST_VFID_SHIFT) |
			(DMAE_DST_VF << DMAE_COMMAND_DST_VFPF_SHIFT) |
			(DMAE_SRC_PF << DMAE_COMMAND_SRC_VFPF_SHIFT);

		dmae.opcode |= (DMAE_C_SRC << DMAE_COMMAND_C_FUNC_SHIFT);

		dmae.src_addr_lo = U64_LO(pf_addr);
		dmae.src_addr_hi = U64_HI(pf_addr);
		dmae.dst_addr_lo = vf_addr_lo;
		dmae.dst_addr_hi = vf_addr_hi;
	}
	dmae.len = len32;

	/* issue the command and wait for completion */
1019
	return bnx2x_issue_dmae_with_comp(bp, &dmae, bnx2x_sp(bp, wb_comp));
1020 1021
}

1022 1023
static void bnx2x_vf_mbx_resp_single_tlv(struct bnx2x *bp,
					 struct bnx2x_virtf *vf)
1024 1025 1026 1027 1028 1029 1030 1031 1032
{
	struct bnx2x_vf_mbx *mbx = BP_VF_MBX(bp, vf->index);
	u16 length, type;

	/* prepare response */
	type = mbx->first_tlv.tl.type;
	length = type == CHANNEL_TLV_ACQUIRE ?
		sizeof(struct pfvf_acquire_resp_tlv) :
		sizeof(struct pfvf_general_resp_tlv);
1033 1034
	bnx2x_add_tlv(bp, &mbx->msg->resp, 0, type, length);
	bnx2x_add_tlv(bp, &mbx->msg->resp, length, CHANNEL_TLV_LIST_END,
1035
		      sizeof(struct channel_list_end_tlv));
1036 1037 1038
}

static void bnx2x_vf_mbx_resp_send_msg(struct bnx2x *bp,
1039 1040
				       struct bnx2x_virtf *vf,
				       int vf_rc)
1041 1042 1043 1044 1045 1046 1047
{
	struct bnx2x_vf_mbx *mbx = BP_VF_MBX(bp, vf->index);
	struct pfvf_general_resp_tlv *resp = &mbx->msg->resp.general_resp;
	dma_addr_t pf_addr;
	u64 vf_addr;
	int rc;

1048 1049 1050 1051
	bnx2x_dp_tlv_list(bp, resp);
	DP(BNX2X_MSG_IOV, "mailbox vf address hi 0x%x, lo 0x%x, offset 0x%x\n",
	   mbx->vf_addr_hi, mbx->vf_addr_lo, mbx->first_tlv.resp_msg_offset);

1052
	resp->hdr.status = bnx2x_pfvf_status_codes(vf_rc);
1053

1054 1055 1056 1057 1058 1059
	/* send response */
	vf_addr = HILO_U64(mbx->vf_addr_hi, mbx->vf_addr_lo) +
		  mbx->first_tlv.resp_msg_offset;
	pf_addr = mbx->msg_mapping +
		  offsetof(struct bnx2x_vf_mbx_msg, resp);

1060 1061
	/* Copy the response buffer. The first u64 is written afterwards, as
	 * the vf is sensitive to the header being written
1062
	 */
1063 1064 1065 1066 1067 1068 1069 1070 1071 1072
	vf_addr += sizeof(u64);
	pf_addr += sizeof(u64);
	rc = bnx2x_copy32_vf_dmae(bp, false, pf_addr, vf->abs_vfid,
				  U64_HI(vf_addr),
				  U64_LO(vf_addr),
				  (sizeof(union pfvf_tlvs) - sizeof(u64))/4);
	if (rc) {
		BNX2X_ERR("Failed to copy response body to VF %d\n",
			  vf->abs_vfid);
		goto mbx_error;
1073
	}
1074 1075
	vf_addr -= sizeof(u64);
	pf_addr -= sizeof(u64);
1076 1077 1078 1079 1080 1081 1082 1083 1084 1085 1086 1087 1088 1089 1090 1091 1092 1093 1094

	/* ack the FW */
	storm_memset_vf_mbx_ack(bp, vf->abs_vfid);
	mmiowb();

	/* copy the response header including status-done field,
	 * must be last dmae, must be after FW is acked
	 */
	rc = bnx2x_copy32_vf_dmae(bp, false, pf_addr, vf->abs_vfid,
				  U64_HI(vf_addr),
				  U64_LO(vf_addr),
				  sizeof(u64)/4);

	/* unlock channel mutex */
	bnx2x_unlock_vf_pf_channel(bp, vf, mbx->first_tlv.tl.type);

	if (rc) {
		BNX2X_ERR("Failed to copy response status to VF %d\n",
			  vf->abs_vfid);
1095
		goto mbx_error;
1096 1097
	}
	return;
1098 1099

mbx_error:
1100
	bnx2x_vf_release(bp, vf);
1101 1102
}

1103
static void bnx2x_vf_mbx_resp(struct bnx2x *bp,
1104 1105
			      struct bnx2x_virtf *vf,
			      int rc)
1106 1107
{
	bnx2x_vf_mbx_resp_single_tlv(bp, vf);
1108
	bnx2x_vf_mbx_resp_send_msg(bp, vf, rc);
1109 1110 1111 1112 1113 1114 1115 1116 1117 1118 1119 1120 1121 1122 1123 1124 1125 1126 1127 1128 1129 1130 1131 1132 1133
}

static void bnx2x_vf_mbx_resp_phys_port(struct bnx2x *bp,
					struct bnx2x_virtf *vf,
					void *buffer,
					u16 *offset)
{
	struct vfpf_port_phys_id_resp_tlv *port_id;

	if (!(bp->flags & HAS_PHYS_PORT_ID))
		return;

	bnx2x_add_tlv(bp, buffer, *offset, CHANNEL_TLV_PHYS_PORT_ID,
		      sizeof(struct vfpf_port_phys_id_resp_tlv));

	port_id = (struct vfpf_port_phys_id_resp_tlv *)
		  (((u8 *)buffer) + *offset);
	memcpy(port_id->id, bp->phys_port_id, ETH_ALEN);

	/* Offset should continue representing the offset to the tail
	 * of TLV data (outside this function scope)
	 */
	*offset += sizeof(struct vfpf_port_phys_id_resp_tlv);
}

1134 1135 1136 1137 1138 1139 1140
static void bnx2x_vf_mbx_acquire_resp(struct bnx2x *bp, struct bnx2x_virtf *vf,
				      struct bnx2x_vf_mbx *mbx, int vfop_status)
{
	int i;
	struct pfvf_acquire_resp_tlv *resp = &mbx->msg->resp.acquire_resp;
	struct pf_vf_resc *resc = &resp->resc;
	u8 status = bnx2x_pfvf_status_codes(vfop_status);
1141
	u16 length;
1142 1143 1144 1145 1146

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

	/* fill in pfdev info */
	resp->pfdev_info.chip_num = bp->common.chip_id;
A
Ariel Elior 已提交
1147
	resp->pfdev_info.db_size = bp->db_size;
1148 1149
	resp->pfdev_info.indices_per_sb = HC_SB_MAX_INDICES_E2;
	resp->pfdev_info.pf_cap = (PFVF_CAP_RSS |
1150 1151
				   PFVF_CAP_TPA |
				   PFVF_CAP_TPA_UPDATE);
1152 1153 1154 1155 1156 1157 1158 1159 1160 1161 1162 1163 1164 1165 1166 1167 1168 1169
	bnx2x_fill_fw_str(bp, resp->pfdev_info.fw_ver,
			  sizeof(resp->pfdev_info.fw_ver));

	if (status == PFVF_STATUS_NO_RESOURCE ||
	    status == PFVF_STATUS_SUCCESS) {
		/* set resources numbers, if status equals NO_RESOURCE these
		 * are max possible numbers
		 */
		resc->num_rxqs = vf_rxq_count(vf) ? :
			bnx2x_vf_max_queue_cnt(bp, vf);
		resc->num_txqs = vf_txq_count(vf) ? :
			bnx2x_vf_max_queue_cnt(bp, vf);
		resc->num_sbs = vf_sb_count(vf);
		resc->num_mac_filters = vf_mac_rules_cnt(vf);
		resc->num_vlan_filters = vf_vlan_rules_cnt(vf);
		resc->num_mc_filters = 0;

		if (status == PFVF_STATUS_SUCCESS) {
1170 1171 1172 1173
			/* fill in the allocated resources */
			struct pf_vf_bulletin_content *bulletin =
				BP_VF_BULLETIN(bp, vf->index);

1174 1175 1176 1177 1178 1179 1180 1181
			for_each_vfq(vf, i)
				resc->hw_qid[i] =
					vfq_qzone_id(vf, vfq_get(vf, i));

			for_each_vf_sb(vf, i) {
				resc->hw_sbs[i].hw_sb_id = vf_igu_sb(vf, i);
				resc->hw_sbs[i].sb_qid = vf_hc_qzone(vf, i);
			}
1182 1183 1184 1185 1186 1187

			/* if a mac has been set for this vf, supply it */
			if (bulletin->valid_bitmap & 1 << MAC_ADDR_VALID) {
				memcpy(resc->current_mac_addr, bulletin->mac,
				       ETH_ALEN);
			}
1188 1189 1190 1191 1192 1193 1194 1195 1196 1197 1198 1199 1200 1201 1202 1203 1204 1205 1206 1207 1208 1209 1210 1211 1212 1213 1214 1215
		}
	}

	DP(BNX2X_MSG_IOV, "VF[%d] ACQUIRE_RESPONSE: pfdev_info- chip_num=0x%x, db_size=%d, idx_per_sb=%d, pf_cap=0x%x\n"
	   "resources- n_rxq-%d, n_txq-%d, n_sbs-%d, n_macs-%d, n_vlans-%d, n_mcs-%d, fw_ver: '%s'\n",
	   vf->abs_vfid,
	   resp->pfdev_info.chip_num,
	   resp->pfdev_info.db_size,
	   resp->pfdev_info.indices_per_sb,
	   resp->pfdev_info.pf_cap,
	   resc->num_rxqs,
	   resc->num_txqs,
	   resc->num_sbs,
	   resc->num_mac_filters,
	   resc->num_vlan_filters,
	   resc->num_mc_filters,
	   resp->pfdev_info.fw_ver);

	DP_CONT(BNX2X_MSG_IOV, "hw_qids- [ ");
	for (i = 0; i < vf_rxq_count(vf); i++)
		DP_CONT(BNX2X_MSG_IOV, "%d ", resc->hw_qid[i]);
	DP_CONT(BNX2X_MSG_IOV, "], sb_info- [ ");
	for (i = 0; i < vf_sb_count(vf); i++)
		DP_CONT(BNX2X_MSG_IOV, "%d:%d ",
			resc->hw_sbs[i].hw_sb_id,
			resc->hw_sbs[i].sb_qid);
	DP_CONT(BNX2X_MSG_IOV, "]\n");

1216 1217 1218 1219 1220 1221 1222 1223 1224 1225 1226 1227 1228 1229 1230
	/* prepare response */
	length = sizeof(struct pfvf_acquire_resp_tlv);
	bnx2x_add_tlv(bp, &mbx->msg->resp, 0, CHANNEL_TLV_ACQUIRE, length);

	/* Handle possible VF requests for physical port identifiers.
	 * 'length' should continue to indicate the offset of the first empty
	 * place in the buffer (i.e., where next TLV should be inserted)
	 */
	if (bnx2x_search_tlv_list(bp, &mbx->msg->req,
				  CHANNEL_TLV_PHYS_PORT_ID))
		bnx2x_vf_mbx_resp_phys_port(bp, vf, &mbx->msg->resp, &length);

	bnx2x_add_tlv(bp, &mbx->msg->resp, length, CHANNEL_TLV_LIST_END,
		      sizeof(struct channel_list_end_tlv));

1231
	/* send the response */
1232
	bnx2x_vf_mbx_resp_send_msg(bp, vf, vfop_status);
1233 1234 1235 1236 1237 1238 1239 1240 1241 1242 1243 1244 1245 1246 1247 1248 1249 1250 1251 1252
}

static void bnx2x_vf_mbx_acquire(struct bnx2x *bp, struct bnx2x_virtf *vf,
				 struct bnx2x_vf_mbx *mbx)
{
	int rc;
	struct vfpf_acquire_tlv *acquire = &mbx->msg->req.acquire;

	/* log vfdef info */
	DP(BNX2X_MSG_IOV,
	   "VF[%d] ACQUIRE: vfdev_info- vf_id %d, vf_os %d resources- n_rxq-%d, n_txq-%d, n_sbs-%d, n_macs-%d, n_vlans-%d, n_mcs-%d\n",
	   vf->abs_vfid, acquire->vfdev_info.vf_id, acquire->vfdev_info.vf_os,
	   acquire->resc_request.num_rxqs, acquire->resc_request.num_txqs,
	   acquire->resc_request.num_sbs, acquire->resc_request.num_mac_filters,
	   acquire->resc_request.num_vlan_filters,
	   acquire->resc_request.num_mc_filters);

	/* acquire the resources */
	rc = bnx2x_vf_acquire(bp, vf, &acquire->resc_request);

1253 1254 1255
	/* store address of vf's bulletin board */
	vf->bulletin_map = acquire->bulletin_addr;

1256 1257 1258 1259
	/* response */
	bnx2x_vf_mbx_acquire_resp(bp, vf, mbx, rc);
}

1260 1261 1262 1263
static void bnx2x_vf_mbx_init_vf(struct bnx2x *bp, struct bnx2x_virtf *vf,
			      struct bnx2x_vf_mbx *mbx)
{
	struct vfpf_init_tlv *init = &mbx->msg->req.init;
1264
	int rc;
1265 1266 1267 1268

	/* record ghost addresses from vf message */
	vf->spq_map = init->spq_addr;
	vf->fw_stat_map = init->stats_addr;
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Ariel Elior 已提交
1269
	vf->stats_stride = init->stats_stride;
1270
	rc = bnx2x_vf_init(bp, vf, (dma_addr_t *)init->sb_addr);
1271

A
Ariel Elior 已提交
1272 1273 1274 1275
	/* set VF multiqueue statistics collection mode */
	if (init->flags & VFPF_INIT_FLG_STATS_COALESCE)
		vf->cfg_flags |= VF_CFG_STATS_COALESCE;

1276
	/* response */
1277
	bnx2x_vf_mbx_resp(bp, vf, rc);
1278 1279
}

1280
/* convert MBX queue-flags to standard SP queue-flags */
A
Ariel Elior 已提交
1281
static void bnx2x_vf_mbx_set_q_flags(struct bnx2x *bp, u32 mbx_q_flags,
1282 1283 1284 1285 1286 1287 1288 1289 1290 1291 1292 1293 1294 1295 1296 1297 1298 1299
				     unsigned long *sp_q_flags)
{
	if (mbx_q_flags & VFPF_QUEUE_FLG_TPA)
		__set_bit(BNX2X_Q_FLG_TPA, sp_q_flags);
	if (mbx_q_flags & VFPF_QUEUE_FLG_TPA_IPV6)
		__set_bit(BNX2X_Q_FLG_TPA_IPV6, sp_q_flags);
	if (mbx_q_flags & VFPF_QUEUE_FLG_TPA_GRO)
		__set_bit(BNX2X_Q_FLG_TPA_GRO, sp_q_flags);
	if (mbx_q_flags & VFPF_QUEUE_FLG_STATS)
		__set_bit(BNX2X_Q_FLG_STATS, sp_q_flags);
	if (mbx_q_flags & VFPF_QUEUE_FLG_VLAN)
		__set_bit(BNX2X_Q_FLG_VLAN, sp_q_flags);
	if (mbx_q_flags & VFPF_QUEUE_FLG_COS)
		__set_bit(BNX2X_Q_FLG_COS, sp_q_flags);
	if (mbx_q_flags & VFPF_QUEUE_FLG_HC)
		__set_bit(BNX2X_Q_FLG_HC, sp_q_flags);
	if (mbx_q_flags & VFPF_QUEUE_FLG_DHC)
		__set_bit(BNX2X_Q_FLG_DHC, sp_q_flags);
A
Ariel Elior 已提交
1300 1301
	if (mbx_q_flags & VFPF_QUEUE_FLG_LEADING_RSS)
		__set_bit(BNX2X_Q_FLG_LEADING_RSS, sp_q_flags);
A
Ariel Elior 已提交
1302

1303
	/* outer vlan removal is set according to PF's multi function mode */
A
Ariel Elior 已提交
1304 1305
	if (IS_MF_SD(bp))
		__set_bit(BNX2X_Q_FLG_OV, sp_q_flags);
1306 1307 1308 1309 1310 1311
}

static void bnx2x_vf_mbx_setup_q(struct bnx2x *bp, struct bnx2x_virtf *vf,
				 struct bnx2x_vf_mbx *mbx)
{
	struct vfpf_setup_q_tlv *setup_q = &mbx->msg->req.setup_q;
1312 1313
	struct bnx2x_vf_queue_construct_params qctor;
	int rc = 0;
1314 1315 1316 1317 1318

	/* verify vf_qid */
	if (setup_q->vf_qid >= vf_rxq_count(vf)) {
		BNX2X_ERR("vf_qid %d invalid, max queue count is %d\n",
			  setup_q->vf_qid, vf_rxq_count(vf));
1319
		rc = -EINVAL;
1320 1321 1322 1323 1324 1325 1326 1327 1328 1329 1330 1331 1332
		goto response;
	}

	/* tx queues must be setup alongside rx queues thus if the rx queue
	 * is not marked as valid there's nothing to do.
	 */
	if (setup_q->param_valid & (VFPF_RXQ_VALID|VFPF_TXQ_VALID)) {
		struct bnx2x_vf_queue *q = vfq_get(vf, setup_q->vf_qid);
		unsigned long q_type = 0;

		struct bnx2x_queue_init_params *init_p;
		struct bnx2x_queue_setup_params *setup_p;

A
Ariel Elior 已提交
1333 1334 1335
		if (bnx2x_vfq_is_leading(q))
			bnx2x_leading_vfq_init(bp, vf, q);

1336
		/* re-init the VF operation context */
1337 1338 1339 1340
		memset(&qctor, 0 ,
		       sizeof(struct bnx2x_vf_queue_construct_params));
		setup_p = &qctor.prep_qsetup;
		init_p =  &qctor.qstate.params.init;
1341 1342 1343 1344 1345 1346 1347 1348 1349 1350 1351 1352 1353 1354 1355 1356 1357

		/* activate immediately */
		__set_bit(BNX2X_Q_FLG_ACTIVE, &setup_p->flags);

		if (setup_q->param_valid & VFPF_TXQ_VALID) {
			struct bnx2x_txq_setup_params *txq_params =
				&setup_p->txq_params;

			__set_bit(BNX2X_Q_TYPE_HAS_TX, &q_type);

			/* save sb resource index */
			q->sb_idx = setup_q->txq.vf_sb;

			/* tx init */
			init_p->tx.hc_rate = setup_q->txq.hc_rate;
			init_p->tx.sb_cq_index = setup_q->txq.sb_index;

A
Ariel Elior 已提交
1358
			bnx2x_vf_mbx_set_q_flags(bp, setup_q->txq.flags,
1359 1360 1361
						 &init_p->tx.flags);

			/* tx setup - flags */
A
Ariel Elior 已提交
1362
			bnx2x_vf_mbx_set_q_flags(bp, setup_q->txq.flags,
1363 1364 1365 1366 1367 1368 1369 1370 1371 1372 1373 1374 1375 1376 1377 1378 1379 1380 1381 1382 1383 1384 1385 1386 1387 1388 1389
						 &setup_p->flags);

			/* tx setup - general, nothing */

			/* tx setup - tx */
			txq_params->dscr_map = setup_q->txq.txq_addr;
			txq_params->sb_cq_index = setup_q->txq.sb_index;
			txq_params->traffic_type = setup_q->txq.traffic_type;

			bnx2x_vfop_qctor_dump_tx(bp, vf, init_p, setup_p,
						 q->index, q->sb_idx);
		}

		if (setup_q->param_valid & VFPF_RXQ_VALID) {
			struct bnx2x_rxq_setup_params *rxq_params =
							&setup_p->rxq_params;

			__set_bit(BNX2X_Q_TYPE_HAS_RX, &q_type);

			/* Note: there is no support for different SBs
			 * for TX and RX
			 */
			q->sb_idx = setup_q->rxq.vf_sb;

			/* rx init */
			init_p->rx.hc_rate = setup_q->rxq.hc_rate;
			init_p->rx.sb_cq_index = setup_q->rxq.sb_index;
A
Ariel Elior 已提交
1390
			bnx2x_vf_mbx_set_q_flags(bp, setup_q->rxq.flags,
1391 1392 1393
						 &init_p->rx.flags);

			/* rx setup - flags */
A
Ariel Elior 已提交
1394
			bnx2x_vf_mbx_set_q_flags(bp, setup_q->rxq.flags,
1395 1396 1397 1398 1399 1400 1401 1402 1403 1404 1405 1406 1407 1408 1409 1410 1411 1412 1413
						 &setup_p->flags);

			/* rx setup - general */
			setup_p->gen_params.mtu = setup_q->rxq.mtu;

			/* rx setup - rx */
			rxq_params->drop_flags = setup_q->rxq.drop_flags;
			rxq_params->dscr_map = setup_q->rxq.rxq_addr;
			rxq_params->sge_map = setup_q->rxq.sge_addr;
			rxq_params->rcq_map = setup_q->rxq.rcq_addr;
			rxq_params->rcq_np_map = setup_q->rxq.rcq_np_addr;
			rxq_params->buf_sz = setup_q->rxq.buf_sz;
			rxq_params->tpa_agg_sz = setup_q->rxq.tpa_agg_sz;
			rxq_params->max_sges_pkt = setup_q->rxq.max_sge_pkt;
			rxq_params->sge_buf_sz = setup_q->rxq.sge_buf_sz;
			rxq_params->cache_line_log =
				setup_q->rxq.cache_line_log;
			rxq_params->sb_cq_index = setup_q->rxq.sb_index;

1414 1415 1416 1417 1418 1419 1420 1421
			/* rx setup - multicast engine */
			if (bnx2x_vfq_is_leading(q)) {
				u8 mcast_id = FW_VF_HANDLE(vf->abs_vfid);

				rxq_params->mcast_engine_id = mcast_id;
				__set_bit(BNX2X_Q_FLG_MCAST, &setup_p->flags);
			}

1422 1423 1424 1425
			bnx2x_vfop_qctor_dump_rx(bp, vf, init_p, setup_p,
						 q->index, q->sb_idx);
		}
		/* complete the preparations */
1426
		bnx2x_vfop_qctor_prep(bp, vf, q, &qctor, q_type);
1427

1428 1429
		rc = bnx2x_vf_queue_setup(bp, vf, q->index, &qctor);
		if (rc)
1430 1431 1432
			goto response;
	}
response:
1433
	bnx2x_vf_mbx_resp(bp, vf, rc);
1434 1435
}

1436 1437 1438
static int bnx2x_vf_mbx_macvlan_list(struct bnx2x *bp,
				     struct bnx2x_virtf *vf,
				     struct vfpf_set_q_filters_tlv *tlv,
1439
				     struct bnx2x_vf_mac_vlan_filters **pfl,
1440 1441 1442
				     u32 type_flag)
{
	int i, j;
1443
	struct bnx2x_vf_mac_vlan_filters *fl = NULL;
1444 1445
	size_t fsz;

1446 1447 1448
	fsz = tlv->n_mac_vlan_filters *
	      sizeof(struct bnx2x_vf_mac_vlan_filter) +
	      sizeof(struct bnx2x_vf_mac_vlan_filters);
1449 1450 1451 1452 1453 1454 1455 1456 1457 1458 1459 1460

	fl = kzalloc(fsz, GFP_KERNEL);
	if (!fl)
		return -ENOMEM;

	for (i = 0, j = 0; i < tlv->n_mac_vlan_filters; i++) {
		struct vfpf_q_mac_vlan_filter *msg_filter = &tlv->filters[i];

		if ((msg_filter->flags & type_flag) != type_flag)
			continue;
		if (type_flag == VFPF_Q_FILTER_DEST_MAC_VALID) {
			fl->filters[j].mac = msg_filter->mac;
1461
			fl->filters[j].type = BNX2X_VF_FILTER_MAC;
1462 1463
		} else {
			fl->filters[j].vid = msg_filter->vlan_tag;
1464
			fl->filters[j].type = BNX2X_VF_FILTER_VLAN;
1465 1466 1467 1468
		}
		fl->filters[j].add =
			(msg_filter->flags & VFPF_Q_FILTER_SET_MAC) ?
			true : false;
1469
		fl->count++;
1470
	}
1471
	if (!fl->count)
1472 1473 1474 1475 1476 1477 1478 1479 1480 1481 1482 1483 1484 1485 1486 1487 1488 1489 1490 1491 1492 1493 1494 1495 1496 1497 1498 1499 1500 1501 1502 1503 1504 1505 1506 1507 1508 1509 1510
		kfree(fl);
	else
		*pfl = fl;

	return 0;
}

static void bnx2x_vf_mbx_dp_q_filter(struct bnx2x *bp, int msglvl, int idx,
				       struct vfpf_q_mac_vlan_filter *filter)
{
	DP(msglvl, "MAC-VLAN[%d] -- flags=0x%x\n", idx, filter->flags);
	if (filter->flags & VFPF_Q_FILTER_VLAN_TAG_VALID)
		DP_CONT(msglvl, ", vlan=%d", filter->vlan_tag);
	if (filter->flags & VFPF_Q_FILTER_DEST_MAC_VALID)
		DP_CONT(msglvl, ", MAC=%pM", filter->mac);
	DP_CONT(msglvl, "\n");
}

static void bnx2x_vf_mbx_dp_q_filters(struct bnx2x *bp, int msglvl,
				       struct vfpf_set_q_filters_tlv *filters)
{
	int i;

	if (filters->flags & VFPF_SET_Q_FILTERS_MAC_VLAN_CHANGED)
		for (i = 0; i < filters->n_mac_vlan_filters; i++)
			bnx2x_vf_mbx_dp_q_filter(bp, msglvl, i,
						 &filters->filters[i]);

	if (filters->flags & VFPF_SET_Q_FILTERS_RX_MASK_CHANGED)
		DP(msglvl, "RX-MASK=0x%x\n", filters->rx_mask);

	if (filters->flags & VFPF_SET_Q_FILTERS_MULTICAST_CHANGED)
		for (i = 0; i < filters->n_multicast; i++)
			DP(msglvl, "MULTICAST=%pM\n", filters->multicast[i]);
}

#define VFPF_MAC_FILTER		VFPF_Q_FILTER_DEST_MAC_VALID
#define VFPF_VLAN_FILTER	VFPF_Q_FILTER_VLAN_TAG_VALID

1511
static int bnx2x_vf_mbx_qfilters(struct bnx2x *bp, struct bnx2x_virtf *vf)
1512
{
1513
	int rc = 0;
1514 1515 1516 1517

	struct vfpf_set_q_filters_tlv *msg =
		&BP_VF_MBX(bp, vf->index)->msg->req.set_q_filters;

1518 1519 1520 1521
	/* check for any mac/vlan changes */
	if (msg->flags & VFPF_SET_Q_FILTERS_MAC_VLAN_CHANGED) {
		/* build mac list */
		struct bnx2x_vf_mac_vlan_filters *fl = NULL;
1522

1523 1524 1525 1526
		rc = bnx2x_vf_mbx_macvlan_list(bp, vf, msg, &fl,
					       VFPF_MAC_FILTER);
		if (rc)
			goto op_err;
1527

1528
		if (fl) {
1529

1530 1531 1532 1533 1534
			/* set mac list */
			rc = bnx2x_vf_mac_vlan_config_list(bp, vf, fl,
							   msg->vf_qid,
							   false);
			if (rc)
1535 1536 1537
				goto op_err;
		}

1538 1539
		/* build vlan list */
		fl = NULL;
1540

1541 1542 1543 1544 1545 1546 1547 1548 1549 1550 1551
		rc = bnx2x_vf_mbx_macvlan_list(bp, vf, msg, &fl,
					       VFPF_VLAN_FILTER);
		if (rc)
			goto op_err;

		if (fl) {
			/* set vlan list */
			rc = bnx2x_vf_mac_vlan_config_list(bp, vf, fl,
							   msg->vf_qid,
							   false);
			if (rc)
1552 1553
				goto op_err;
		}
1554
	}
1555

1556 1557 1558 1559
	if (msg->flags & VFPF_SET_Q_FILTERS_RX_MASK_CHANGED) {
		unsigned long accept = 0;
		struct pf_vf_bulletin_content *bulletin =
					BP_VF_BULLETIN(bp, vf->index);
1560

1561 1562
		/* Ignore VF requested mode; instead set a regular mode */
		if (msg->rx_mask !=  VFPF_RX_MASK_ACCEPT_NONE) {
1563 1564 1565
			__set_bit(BNX2X_ACCEPT_UNICAST, &accept);
			__set_bit(BNX2X_ACCEPT_MULTICAST, &accept);
			__set_bit(BNX2X_ACCEPT_BROADCAST, &accept);
1566
		}
1567

1568 1569 1570 1571 1572 1573
		/* A packet arriving the vf's mac should be accepted
		 * with any vlan, unless a vlan has already been
		 * configured.
		 */
		if (!(bulletin->valid_bitmap & (1 << VLAN_VALID)))
			__set_bit(BNX2X_ACCEPT_ANY_VLAN, &accept);
1574

1575 1576 1577 1578
		/* set rx-mode */
		rc = bnx2x_vf_rxmode(bp, vf, msg->vf_qid, accept);
		if (rc)
			goto op_err;
1579 1580
	}

1581 1582 1583 1584 1585 1586
	if (msg->flags & VFPF_SET_Q_FILTERS_MULTICAST_CHANGED) {
		/* set mcasts */
		rc = bnx2x_vf_mcast(bp, vf, msg->multicast,
				    msg->n_multicast, false);
		if (rc)
			goto op_err;
1587
	}
1588 1589 1590 1591 1592
op_err:
	if (rc)
		BNX2X_ERR("QFILTERS[%d:%d] error: rc %d\n",
			  vf->abs_vfid, msg->vf_qid, rc);
	return rc;
1593 1594
}

1595 1596 1597
static int bnx2x_filters_validate_mac(struct bnx2x *bp,
				      struct bnx2x_virtf *vf,
				      struct vfpf_set_q_filters_tlv *filters)
1598
{
1599
	struct pf_vf_bulletin_content *bulletin = BP_VF_BULLETIN(bp, vf->index);
1600
	int rc = 0;
1601

1602 1603 1604 1605 1606 1607 1608 1609 1610 1611
	/* if a mac was already set for this VF via the set vf mac ndo, we only
	 * accept mac configurations of that mac. Why accept them at all?
	 * because PF may have been unable to configure the mac at the time
	 * since queue was not set up.
	 */
	if (bulletin->valid_bitmap & 1 << MAC_ADDR_VALID) {
		/* once a mac was set by ndo can only accept a single mac... */
		if (filters->n_mac_vlan_filters > 1) {
			BNX2X_ERR("VF[%d] requested the addition of multiple macs after set_vf_mac ndo was called\n",
				  vf->abs_vfid);
1612
			rc = -EPERM;
1613 1614 1615 1616 1617
			goto response;
		}

		/* ...and only the mac set by the ndo */
		if (filters->n_mac_vlan_filters == 1 &&
1618
		    !ether_addr_equal(filters->filters->mac, bulletin->mac)) {
1619 1620 1621
			BNX2X_ERR("VF[%d] requested the addition of a mac address not matching the one configured by set_vf_mac ndo\n",
				  vf->abs_vfid);

1622
			rc = -EPERM;
1623 1624 1625
			goto response;
		}
	}
1626 1627 1628 1629 1630 1631 1632 1633 1634 1635 1636 1637

response:
	return rc;
}

static int bnx2x_filters_validate_vlan(struct bnx2x *bp,
				       struct bnx2x_virtf *vf,
				       struct vfpf_set_q_filters_tlv *filters)
{
	struct pf_vf_bulletin_content *bulletin = BP_VF_BULLETIN(bp, vf->index);
	int rc = 0;

1638 1639 1640 1641 1642 1643 1644 1645 1646 1647
	/* if vlan was set by hypervisor we don't allow guest to config vlan */
	if (bulletin->valid_bitmap & 1 << VLAN_VALID) {
		int i;

		/* search for vlan filters */
		for (i = 0; i < filters->n_mac_vlan_filters; i++) {
			if (filters->filters[i].flags &
			    VFPF_Q_FILTER_VLAN_TAG_VALID) {
				BNX2X_ERR("VF[%d] attempted to configure vlan but one was already set by Hypervisor. Aborting request\n",
					  vf->abs_vfid);
1648
				rc = -EPERM;
1649 1650 1651 1652
				goto response;
			}
		}
	}
1653

1654
	/* verify vf_qid */
1655 1656 1657 1658 1659 1660 1661 1662 1663 1664 1665 1666 1667 1668
	if (filters->vf_qid > vf_rxq_count(vf)) {
		rc = -EPERM;
		goto response;
	}

response:
	return rc;
}

static void bnx2x_vf_mbx_set_q_filters(struct bnx2x *bp,
				       struct bnx2x_virtf *vf,
				       struct bnx2x_vf_mbx *mbx)
{
	struct vfpf_set_q_filters_tlv *filters = &mbx->msg->req.set_q_filters;
1669
	int rc;
1670

1671 1672
	rc = bnx2x_filters_validate_mac(bp, vf, filters);
	if (rc)
1673 1674
		goto response;

1675 1676
	rc = bnx2x_filters_validate_vlan(bp, vf, filters);
	if (rc)
1677 1678 1679 1680 1681 1682 1683 1684 1685
		goto response;

	DP(BNX2X_MSG_IOV, "VF[%d] Q_FILTERS: queue[%d]\n",
	   vf->abs_vfid,
	   filters->vf_qid);

	/* print q_filter message */
	bnx2x_vf_mbx_dp_q_filters(bp, BNX2X_MSG_IOV, filters);

1686
	rc = bnx2x_vf_mbx_qfilters(bp, vf);
1687
response:
1688
	bnx2x_vf_mbx_resp(bp, vf, rc);
1689 1690
}

1691 1692 1693 1694
static void bnx2x_vf_mbx_teardown_q(struct bnx2x *bp, struct bnx2x_virtf *vf,
				    struct bnx2x_vf_mbx *mbx)
{
	int qid = mbx->msg->req.q_op.vf_qid;
1695
	int rc;
1696 1697 1698 1699

	DP(BNX2X_MSG_IOV, "VF[%d] Q_TEARDOWN: vf_qid=%d\n",
	   vf->abs_vfid, qid);

1700 1701
	rc = bnx2x_vf_queue_teardown(bp, vf, qid);
	bnx2x_vf_mbx_resp(bp, vf, rc);
1702 1703
}

1704 1705 1706
static void bnx2x_vf_mbx_close_vf(struct bnx2x *bp, struct bnx2x_virtf *vf,
				  struct bnx2x_vf_mbx *mbx)
{
1707
	int rc;
1708 1709 1710

	DP(BNX2X_MSG_IOV, "VF[%d] VF_CLOSE\n", vf->abs_vfid);

1711 1712
	rc = bnx2x_vf_close(bp, vf);
	bnx2x_vf_mbx_resp(bp, vf, rc);
1713 1714
}

1715 1716 1717
static void bnx2x_vf_mbx_release_vf(struct bnx2x *bp, struct bnx2x_virtf *vf,
				    struct bnx2x_vf_mbx *mbx)
{
1718
	int rc;
1719 1720 1721

	DP(BNX2X_MSG_IOV, "VF[%d] VF_RELEASE\n", vf->abs_vfid);

1722 1723
	rc = bnx2x_vf_free(bp, vf);
	bnx2x_vf_mbx_resp(bp, vf, rc);
1724 1725
}

A
Ariel Elior 已提交
1726 1727 1728
static void bnx2x_vf_mbx_update_rss(struct bnx2x *bp, struct bnx2x_virtf *vf,
				    struct bnx2x_vf_mbx *mbx)
{
1729
	struct bnx2x_config_rss_params rss;
A
Ariel Elior 已提交
1730
	struct vfpf_rss_tlv *rss_tlv = &mbx->msg->req.update_rss;
1731
	int rc = 0;
A
Ariel Elior 已提交
1732 1733 1734 1735 1736

	if (rss_tlv->ind_table_size != T_ETH_INDIRECTION_TABLE_SIZE ||
	    rss_tlv->rss_key_size != T_ETH_RSS_KEY) {
		BNX2X_ERR("failing rss configuration of vf %d due to size mismatch\n",
			  vf->index);
1737
		rc = -EINVAL;
A
Ariel Elior 已提交
1738 1739 1740
		goto mbx_resp;
	}

1741 1742
	memset(&rss, 0, sizeof(struct bnx2x_config_rss_params));

A
Ariel Elior 已提交
1743
	/* set vfop params according to rss tlv */
1744
	memcpy(rss.ind_table, rss_tlv->ind_table,
A
Ariel Elior 已提交
1745
	       T_ETH_INDIRECTION_TABLE_SIZE);
1746 1747 1748
	memcpy(rss.rss_key, rss_tlv->rss_key, sizeof(rss_tlv->rss_key));
	rss.rss_obj = &vf->rss_conf_obj;
	rss.rss_result_mask = rss_tlv->rss_result_mask;
A
Ariel Elior 已提交
1749 1750

	/* flags handled individually for backward/forward compatability */
1751 1752
	rss.rss_flags = 0;
	rss.ramrod_flags = 0;
1753

A
Ariel Elior 已提交
1754
	if (rss_tlv->rss_flags & VFPF_RSS_MODE_DISABLED)
1755
		__set_bit(BNX2X_RSS_MODE_DISABLED, &rss.rss_flags);
A
Ariel Elior 已提交
1756
	if (rss_tlv->rss_flags & VFPF_RSS_MODE_REGULAR)
1757
		__set_bit(BNX2X_RSS_MODE_REGULAR, &rss.rss_flags);
A
Ariel Elior 已提交
1758
	if (rss_tlv->rss_flags & VFPF_RSS_SET_SRCH)
1759
		__set_bit(BNX2X_RSS_SET_SRCH, &rss.rss_flags);
A
Ariel Elior 已提交
1760
	if (rss_tlv->rss_flags & VFPF_RSS_IPV4)
1761
		__set_bit(BNX2X_RSS_IPV4, &rss.rss_flags);
A
Ariel Elior 已提交
1762
	if (rss_tlv->rss_flags & VFPF_RSS_IPV4_TCP)
1763
		__set_bit(BNX2X_RSS_IPV4_TCP, &rss.rss_flags);
A
Ariel Elior 已提交
1764
	if (rss_tlv->rss_flags & VFPF_RSS_IPV4_UDP)
1765
		__set_bit(BNX2X_RSS_IPV4_UDP, &rss.rss_flags);
A
Ariel Elior 已提交
1766
	if (rss_tlv->rss_flags & VFPF_RSS_IPV6)
1767
		__set_bit(BNX2X_RSS_IPV6, &rss.rss_flags);
A
Ariel Elior 已提交
1768
	if (rss_tlv->rss_flags & VFPF_RSS_IPV6_TCP)
1769
		__set_bit(BNX2X_RSS_IPV6_TCP, &rss.rss_flags);
A
Ariel Elior 已提交
1770
	if (rss_tlv->rss_flags & VFPF_RSS_IPV6_UDP)
1771
		__set_bit(BNX2X_RSS_IPV6_UDP, &rss.rss_flags);
A
Ariel Elior 已提交
1772 1773 1774 1775 1776 1777

	if ((!(rss_tlv->rss_flags & VFPF_RSS_IPV4_TCP) &&
	     rss_tlv->rss_flags & VFPF_RSS_IPV4_UDP) ||
	    (!(rss_tlv->rss_flags & VFPF_RSS_IPV6_TCP) &&
	     rss_tlv->rss_flags & VFPF_RSS_IPV6_UDP)) {
		BNX2X_ERR("about to hit a FW assert. aborting...\n");
1778
		rc = -EINVAL;
A
Ariel Elior 已提交
1779 1780 1781
		goto mbx_resp;
	}

1782
	rc = bnx2x_vf_rss_update(bp, vf, &rss);
A
Ariel Elior 已提交
1783
mbx_resp:
1784
	bnx2x_vf_mbx_resp(bp, vf, rc);
A
Ariel Elior 已提交
1785 1786
}

1787 1788 1789 1790 1791 1792 1793 1794 1795 1796 1797 1798 1799 1800 1801 1802 1803 1804 1805 1806 1807 1808 1809 1810 1811 1812
static int bnx2x_validate_tpa_params(struct bnx2x *bp,
				       struct vfpf_tpa_tlv *tpa_tlv)
{
	int rc = 0;

	if (tpa_tlv->tpa_client_info.max_sges_for_packet >
	    U_ETH_MAX_SGES_FOR_PACKET) {
		rc = -EINVAL;
		BNX2X_ERR("TPA update: max_sges received %d, max is %d\n",
			  tpa_tlv->tpa_client_info.max_sges_for_packet,
			  U_ETH_MAX_SGES_FOR_PACKET);
	}

	if (tpa_tlv->tpa_client_info.max_tpa_queues > MAX_AGG_QS(bp)) {
		rc = -EINVAL;
		BNX2X_ERR("TPA update: max_tpa_queues received %d, max is %d\n",
			  tpa_tlv->tpa_client_info.max_tpa_queues,
			  MAX_AGG_QS(bp));
	}

	return rc;
}

static void bnx2x_vf_mbx_update_tpa(struct bnx2x *bp, struct bnx2x_virtf *vf,
				    struct bnx2x_vf_mbx *mbx)
{
1813
	struct bnx2x_queue_update_tpa_params vf_op_params;
1814
	struct vfpf_tpa_tlv *tpa_tlv = &mbx->msg->req.update_tpa;
1815
	int rc = 0;
1816

1817
	memset(&vf_op_params, 0, sizeof(vf_op_params));
1818 1819 1820 1821

	if (bnx2x_validate_tpa_params(bp, tpa_tlv))
		goto mbx_resp;

1822
	vf_op_params.complete_on_both_clients =
1823
		tpa_tlv->tpa_client_info.complete_on_both_clients;
1824
	vf_op_params.dont_verify_thr =
1825
		tpa_tlv->tpa_client_info.dont_verify_thr;
1826
	vf_op_params.max_agg_sz =
1827
		tpa_tlv->tpa_client_info.max_agg_size;
1828
	vf_op_params.max_sges_pkt =
1829
		tpa_tlv->tpa_client_info.max_sges_for_packet;
1830
	vf_op_params.max_tpa_queues =
1831
		tpa_tlv->tpa_client_info.max_tpa_queues;
1832
	vf_op_params.sge_buff_sz =
1833
		tpa_tlv->tpa_client_info.sge_buff_size;
1834
	vf_op_params.sge_pause_thr_high =
1835
		tpa_tlv->tpa_client_info.sge_pause_thr_high;
1836
	vf_op_params.sge_pause_thr_low =
1837
		tpa_tlv->tpa_client_info.sge_pause_thr_low;
1838
	vf_op_params.tpa_mode =
1839
		tpa_tlv->tpa_client_info.tpa_mode;
1840
	vf_op_params.update_ipv4 =
1841
		tpa_tlv->tpa_client_info.update_ipv4;
1842
	vf_op_params.update_ipv6 =
1843 1844
		tpa_tlv->tpa_client_info.update_ipv6;

1845
	rc = bnx2x_vf_tpa_update(bp, vf, tpa_tlv, &vf_op_params);
1846 1847

mbx_resp:
1848
	bnx2x_vf_mbx_resp(bp, vf, rc);
1849 1850
}

1851 1852 1853 1854 1855 1856 1857 1858
/* dispatch request */
static void bnx2x_vf_mbx_request(struct bnx2x *bp, struct bnx2x_virtf *vf,
				  struct bnx2x_vf_mbx *mbx)
{
	int i;

	/* check if tlv type is known */
	if (bnx2x_tlv_supported(mbx->first_tlv.tl.type)) {
1859 1860 1861 1862 1863
		/* Lock the per vf op mutex and note the locker's identity.
		 * The unlock will take place in mbx response.
		 */
		bnx2x_lock_vf_pf_channel(bp, vf, mbx->first_tlv.tl.type);

1864 1865
		/* switch on the opcode */
		switch (mbx->first_tlv.tl.type) {
1866 1867
		case CHANNEL_TLV_ACQUIRE:
			bnx2x_vf_mbx_acquire(bp, vf, mbx);
1868
			return;
1869 1870
		case CHANNEL_TLV_INIT:
			bnx2x_vf_mbx_init_vf(bp, vf, mbx);
1871
			return;
1872 1873
		case CHANNEL_TLV_SETUP_Q:
			bnx2x_vf_mbx_setup_q(bp, vf, mbx);
1874
			return;
1875 1876
		case CHANNEL_TLV_SET_Q_FILTERS:
			bnx2x_vf_mbx_set_q_filters(bp, vf, mbx);
1877
			return;
1878 1879
		case CHANNEL_TLV_TEARDOWN_Q:
			bnx2x_vf_mbx_teardown_q(bp, vf, mbx);
1880
			return;
1881 1882
		case CHANNEL_TLV_CLOSE:
			bnx2x_vf_mbx_close_vf(bp, vf, mbx);
1883
			return;
1884 1885
		case CHANNEL_TLV_RELEASE:
			bnx2x_vf_mbx_release_vf(bp, vf, mbx);
1886
			return;
A
Ariel Elior 已提交
1887 1888
		case CHANNEL_TLV_UPDATE_RSS:
			bnx2x_vf_mbx_update_rss(bp, vf, mbx);
1889
			return;
1890 1891 1892
		case CHANNEL_TLV_UPDATE_TPA:
			bnx2x_vf_mbx_update_tpa(bp, vf, mbx);
			return;
1893
		}
1894

1895 1896 1897 1898 1899 1900 1901
	} else {
		/* unknown TLV - this may belong to a VF driver from the future
		 * - a version written after this PF driver was written, which
		 * supports features unknown as of yet. Too bad since we don't
		 * support them. Or this may be because someone wrote a crappy
		 * VF driver and is sending garbage over the channel.
		 */
Y
Yuval Mintz 已提交
1902 1903 1904
		BNX2X_ERR("unknown TLV. type %d length %d vf->state was %d. first 20 bytes of mailbox buffer:\n",
			  mbx->first_tlv.tl.type, mbx->first_tlv.tl.length,
			  vf->state);
1905 1906 1907
		for (i = 0; i < 20; i++)
			DP_CONT(BNX2X_MSG_IOV, "%x ",
				mbx->msg->req.tlv_buf_size.tlv_buffer[i]);
1908
	}
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1910 1911 1912
	/* can we respond to VF (do we have an address for it?) */
	if (vf->state == VF_ACQUIRED || vf->state == VF_ENABLED) {
		/* notify the VF that we do not support this request */
1913
		bnx2x_vf_mbx_resp(bp, vf, PFVF_STATUS_NOT_SUPPORTED);
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	} else {
		/* can't send a response since this VF is unknown to us
		 * just ack the FW to release the mailbox and unlock
		 * the channel.
		 */
		storm_memset_vf_mbx_ack(bp, vf->abs_vfid);
		/* Firmware ack should be written before unlocking channel */
		mmiowb();
		bnx2x_unlock_vf_pf_channel(bp, vf, mbx->first_tlv.tl.type);
1923 1924 1925
	}
}

1926 1927
void bnx2x_vf_mbx_schedule(struct bnx2x *bp,
			   struct vf_pf_event_data *vfpf_event)
1928 1929 1930 1931 1932 1933 1934 1935 1936 1937 1938 1939 1940
{
	u8 vf_idx;

	DP(BNX2X_MSG_IOV,
	   "vf pf event received: vfid %d, address_hi %x, address lo %x",
	   vfpf_event->vf_id, vfpf_event->msg_addr_hi, vfpf_event->msg_addr_lo);
	/* Sanity checks consider removing later */

	/* check if the vf_id is valid */
	if (vfpf_event->vf_id - BP_VFDB(bp)->sriov.first_vf_in_pf >
	    BNX2X_NR_VIRTFN(bp)) {
		BNX2X_ERR("Illegal vf_id %d max allowed: %d\n",
			  vfpf_event->vf_id, BNX2X_NR_VIRTFN(bp));
1941
		return;
1942
	}
1943

1944 1945
	vf_idx = bnx2x_vf_idx_by_abs_fid(bp, vfpf_event->vf_id);

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	/* Update VFDB with current message and schedule its handling */
	mutex_lock(&BP_VFDB(bp)->event_mutex);
	BP_VF_MBX(bp, vf_idx)->vf_addr_hi = vfpf_event->msg_addr_hi;
	BP_VF_MBX(bp, vf_idx)->vf_addr_lo = vfpf_event->msg_addr_lo;
	BP_VFDB(bp)->event_occur |= (1ULL << vf_idx);
	mutex_unlock(&BP_VFDB(bp)->event_mutex);
1952

1953 1954
	bnx2x_schedule_iov_task(bp, BNX2X_IOV_HANDLE_VF_MSG);
}
1955

1956 1957 1958 1959 1960 1961 1962
/* handle new vf-pf messages */
void bnx2x_vf_mbx(struct bnx2x *bp)
{
	struct bnx2x_vfdb *vfdb = BP_VFDB(bp);
	u64 events;
	u8 vf_idx;
	int rc;
1963

1964 1965
	if (!vfdb)
		return;
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1967 1968 1969 1970
	mutex_lock(&vfdb->event_mutex);
	events = vfdb->event_occur;
	vfdb->event_occur = 0;
	mutex_unlock(&vfdb->event_mutex);
1971

1972 1973 1974
	for_each_vf(bp, vf_idx) {
		struct bnx2x_vf_mbx *mbx = BP_VF_MBX(bp, vf_idx);
		struct bnx2x_virtf *vf = BP_VF(bp, vf_idx);
1975

1976 1977 1978 1979 1980 1981 1982 1983 1984 1985 1986 1987 1988 1989 1990 1991 1992
		/* Handle VFs which have pending events */
		if (!(events & (1ULL << vf_idx)))
			continue;

		DP(BNX2X_MSG_IOV,
		   "Handling vf pf event vfid %d, address: [%x:%x], resp_offset 0x%x\n",
		   vf_idx, mbx->vf_addr_hi, mbx->vf_addr_lo,
		   mbx->first_tlv.resp_msg_offset);

		/* dmae to get the VF request */
		rc = bnx2x_copy32_vf_dmae(bp, true, mbx->msg_mapping,
					  vf->abs_vfid, mbx->vf_addr_hi,
					  mbx->vf_addr_lo,
					  sizeof(union vfpf_tlvs)/4);
		if (rc) {
			BNX2X_ERR("Failed to copy request VF %d\n",
				  vf->abs_vfid);
1993
			bnx2x_vf_release(bp, vf);
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			return;
		}

		/* process the VF message header */
		mbx->first_tlv = mbx->msg->req.first_tlv;

		/* Clean response buffer to refrain from falsely
		 * seeing chains.
		 */
		memset(&mbx->msg->resp, 0, sizeof(union pfvf_tlvs));

		/* dispatch the request (will prepare the response) */
		bnx2x_vf_mbx_request(bp, vf, mbx);
	}
2008
}
2009 2010 2011 2012 2013 2014 2015 2016 2017 2018 2019 2020 2021 2022 2023 2024 2025

/* propagate local bulletin board to vf */
int bnx2x_post_vf_bulletin(struct bnx2x *bp, int vf)
{
	struct pf_vf_bulletin_content *bulletin = BP_VF_BULLETIN(bp, vf);
	dma_addr_t pf_addr = BP_VF_BULLETIN_DMA(bp)->mapping +
		vf * BULLETIN_CONTENT_SIZE;
	dma_addr_t vf_addr = bnx2x_vf(bp, vf, bulletin_map);
	int rc;

	/* can only update vf after init took place */
	if (bnx2x_vf(bp, vf, state) != VF_ENABLED &&
	    bnx2x_vf(bp, vf, state) != VF_ACQUIRED)
		return 0;

	/* increment bulletin board version and compute crc */
	bulletin->version++;
2026
	bulletin->length = BULLETIN_CONTENT_SIZE;
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	bulletin->crc = bnx2x_crc_vf_bulletin(bp, bulletin);

	/* propagate bulletin board via dmae to vm memory */
	rc = bnx2x_copy32_vf_dmae(bp, false, pf_addr,
				  bnx2x_vf(bp, vf, abs_vfid), U64_HI(vf_addr),
2032
				  U64_LO(vf_addr), bulletin->length / 4);
2033 2034
	return rc;
}