rvu_nix.c 98.7 KB
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// SPDX-License-Identifier: GPL-2.0
/* Marvell OcteonTx2 RVU Admin Function driver
 *
 * Copyright (C) 2018 Marvell International Ltd.
 *
 * This program is free software; you can redistribute it and/or modify
 * it under the terms of the GNU General Public License version 2 as
 * published by the Free Software Foundation.
 */

#include <linux/module.h>
#include <linux/pci.h>

#include "rvu_struct.h"
#include "rvu_reg.h"
#include "rvu.h"
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#include "npc.h"
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#include "cgx.h"

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static void nix_free_tx_vtag_entries(struct rvu *rvu, u16 pcifunc);
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static int rvu_nix_get_bpid(struct rvu *rvu, struct nix_bp_cfg_req *req,
			    int type, int chan_id);
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enum mc_tbl_sz {
	MC_TBL_SZ_256,
	MC_TBL_SZ_512,
	MC_TBL_SZ_1K,
	MC_TBL_SZ_2K,
	MC_TBL_SZ_4K,
	MC_TBL_SZ_8K,
	MC_TBL_SZ_16K,
	MC_TBL_SZ_32K,
	MC_TBL_SZ_64K,
};

enum mc_buf_cnt {
	MC_BUF_CNT_8,
	MC_BUF_CNT_16,
	MC_BUF_CNT_32,
	MC_BUF_CNT_64,
	MC_BUF_CNT_128,
	MC_BUF_CNT_256,
	MC_BUF_CNT_512,
	MC_BUF_CNT_1024,
	MC_BUF_CNT_2048,
};

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enum nix_makr_fmt_indexes {
	NIX_MARK_CFG_IP_DSCP_RED,
	NIX_MARK_CFG_IP_DSCP_YELLOW,
	NIX_MARK_CFG_IP_DSCP_YELLOW_RED,
	NIX_MARK_CFG_IP_ECN_RED,
	NIX_MARK_CFG_IP_ECN_YELLOW,
	NIX_MARK_CFG_IP_ECN_YELLOW_RED,
	NIX_MARK_CFG_VLAN_DEI_RED,
	NIX_MARK_CFG_VLAN_DEI_YELLOW,
	NIX_MARK_CFG_VLAN_DEI_YELLOW_RED,
	NIX_MARK_CFG_MAX,
};

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/* For now considering MC resources needed for broadcast
 * pkt replication only. i.e 256 HWVFs + 12 PFs.
 */
#define MC_TBL_SIZE	MC_TBL_SZ_512
#define MC_BUF_CNT	MC_BUF_CNT_128

struct mce {
	struct hlist_node	node;
	u16			pcifunc;
};

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int rvu_get_next_nix_blkaddr(struct rvu *rvu, int blkaddr)
{
	int i = 0;

	/*If blkaddr is 0, return the first nix block address*/
	if (blkaddr == 0)
		return rvu->nix_blkaddr[blkaddr];

	while (i + 1 < MAX_NIX_BLKS) {
		if (rvu->nix_blkaddr[i] == blkaddr)
			return rvu->nix_blkaddr[i + 1];
		i++;
	}

	return 0;
}

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bool is_nixlf_attached(struct rvu *rvu, u16 pcifunc)
{
	struct rvu_pfvf *pfvf = rvu_get_pfvf(rvu, pcifunc);
	int blkaddr;

	blkaddr = rvu_get_blkaddr(rvu, BLKTYPE_NIX, pcifunc);
	if (!pfvf->nixlf || blkaddr < 0)
		return false;
	return true;
}

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int rvu_get_nixlf_count(struct rvu *rvu)
{
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	int blkaddr = 0, max = 0;
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	struct rvu_block *block;

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	blkaddr = rvu_get_next_nix_blkaddr(rvu, blkaddr);
	while (blkaddr) {
		block = &rvu->hw->block[blkaddr];
		max += block->lf.max;
		blkaddr = rvu_get_next_nix_blkaddr(rvu, blkaddr);
	}
	return max;
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}

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int nix_get_nixlf(struct rvu *rvu, u16 pcifunc, int *nixlf, int *nix_blkaddr)
{
	struct rvu_pfvf *pfvf = rvu_get_pfvf(rvu, pcifunc);
	struct rvu_hwinfo *hw = rvu->hw;
	int blkaddr;

	blkaddr = rvu_get_blkaddr(rvu, BLKTYPE_NIX, pcifunc);
	if (!pfvf->nixlf || blkaddr < 0)
		return NIX_AF_ERR_AF_LF_INVALID;

	*nixlf = rvu_get_lf(rvu, &hw->block[blkaddr], pcifunc, 0);
	if (*nixlf < 0)
		return NIX_AF_ERR_AF_LF_INVALID;

	if (nix_blkaddr)
		*nix_blkaddr = blkaddr;

	return 0;
}

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static void nix_mce_list_init(struct nix_mce_list *list, int max)
{
	INIT_HLIST_HEAD(&list->head);
	list->count = 0;
	list->max = max;
}

static u16 nix_alloc_mce_list(struct nix_mcast *mcast, int count)
{
	int idx;

	if (!mcast)
		return 0;

	idx = mcast->next_free_mce;
	mcast->next_free_mce += count;
	return idx;
}

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struct nix_hw *get_nix_hw(struct rvu_hwinfo *hw, int blkaddr)
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{
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	int nix_blkaddr = 0, i = 0;
	struct rvu *rvu = hw->rvu;
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	nix_blkaddr = rvu_get_next_nix_blkaddr(rvu, nix_blkaddr);
	while (nix_blkaddr) {
		if (blkaddr == nix_blkaddr && hw->nix)
			return &hw->nix[i];
		nix_blkaddr = rvu_get_next_nix_blkaddr(rvu, nix_blkaddr);
		i++;
	}
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	return NULL;
}

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static void nix_rx_sync(struct rvu *rvu, int blkaddr)
{
	int err;

	/*Sync all in flight RX packets to LLC/DRAM */
	rvu_write64(rvu, blkaddr, NIX_AF_RX_SW_SYNC, BIT_ULL(0));
	err = rvu_poll_reg(rvu, blkaddr, NIX_AF_RX_SW_SYNC, BIT_ULL(0), true);
	if (err)
		dev_err(rvu->dev, "NIX RX software sync failed\n");
}

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static bool is_valid_txschq(struct rvu *rvu, int blkaddr,
			    int lvl, u16 pcifunc, u16 schq)
{
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	struct rvu_hwinfo *hw = rvu->hw;
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	struct nix_txsch *txsch;
	struct nix_hw *nix_hw;
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	u16 map_func;
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	nix_hw = get_nix_hw(rvu->hw, blkaddr);
	if (!nix_hw)
		return false;

	txsch = &nix_hw->txsch[lvl];
	/* Check out of bounds */
	if (schq >= txsch->schq.max)
		return false;

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	mutex_lock(&rvu->rsrc_lock);
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	map_func = TXSCH_MAP_FUNC(txsch->pfvf_map[schq]);
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	mutex_unlock(&rvu->rsrc_lock);
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	/* TLs aggegating traffic are shared across PF and VFs */
	if (lvl >= hw->cap.nix_tx_aggr_lvl) {
		if (rvu_get_pf(map_func) != rvu_get_pf(pcifunc))
			return false;
		else
			return true;
	}
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	if (map_func != pcifunc)
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		return false;

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	return true;
}

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static int nix_interface_init(struct rvu *rvu, u16 pcifunc, int type, int nixlf)
{
	struct rvu_pfvf *pfvf = rvu_get_pfvf(rvu, pcifunc);
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	int pkind, pf, vf, lbkid;
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	u8 cgx_id, lmac_id;
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	int err;
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	pf = rvu_get_pf(pcifunc);
	if (!is_pf_cgxmapped(rvu, pf) && type != NIX_INTF_TYPE_LBK)
		return 0;

	switch (type) {
	case NIX_INTF_TYPE_CGX:
		pfvf->cgx_lmac = rvu->pf2cgxlmac_map[pf];
		rvu_get_cgx_lmac_id(pfvf->cgx_lmac, &cgx_id, &lmac_id);

		pkind = rvu_npc_get_pkind(rvu, pf);
		if (pkind < 0) {
			dev_err(rvu->dev,
				"PF_Func 0x%x: Invalid pkind\n", pcifunc);
			return -EINVAL;
		}
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		pfvf->rx_chan_base = NIX_CHAN_CGX_LMAC_CHX(cgx_id, lmac_id, 0);
		pfvf->tx_chan_base = pfvf->rx_chan_base;
		pfvf->rx_chan_cnt = 1;
		pfvf->tx_chan_cnt = 1;
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		cgx_set_pkind(rvu_cgx_pdata(cgx_id, rvu), lmac_id, pkind);
		rvu_npc_set_pkind(rvu, pkind, pfvf);
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		/* By default we enable pause frames */
		if ((pcifunc & RVU_PFVF_FUNC_MASK) == 0)
			cgx_lmac_set_pause_frm(rvu_cgx_pdata(cgx_id, rvu),
					       lmac_id, true, true);
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		break;
	case NIX_INTF_TYPE_LBK:
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		vf = (pcifunc & RVU_PFVF_FUNC_MASK) - 1;
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		/* If NIX1 block is present on the silicon then NIXes are
		 * assigned alternatively for lbk interfaces. NIX0 should
		 * send packets on lbk link 1 channels and NIX1 should send
		 * on lbk link 0 channels for the communication between
		 * NIX0 and NIX1.
		 */
		lbkid = 0;
		if (rvu->hw->lbk_links > 1)
			lbkid = vf & 0x1 ? 0 : 1;

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		/* Note that AF's VFs work in pairs and talk over consecutive
		 * loopback channels.Therefore if odd number of AF VFs are
		 * enabled then the last VF remains with no pair.
		 */
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		pfvf->rx_chan_base = NIX_CHAN_LBK_CHX(lbkid, vf);
		pfvf->tx_chan_base = vf & 0x1 ?
					NIX_CHAN_LBK_CHX(lbkid, vf - 1) :
					NIX_CHAN_LBK_CHX(lbkid, vf + 1);
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		pfvf->rx_chan_cnt = 1;
		pfvf->tx_chan_cnt = 1;
		rvu_npc_install_promisc_entry(rvu, pcifunc, nixlf,
					      pfvf->rx_chan_base, false);
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		break;
	}
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	/* Add a UCAST forwarding rule in MCAM with this NIXLF attached
	 * RVU PF/VF's MAC address.
	 */
	rvu_npc_install_ucast_entry(rvu, pcifunc, nixlf,
				    pfvf->rx_chan_base, pfvf->mac_addr);

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	/* Add this PF_FUNC to bcast pkt replication list */
	err = nix_update_bcast_mce_list(rvu, pcifunc, true);
	if (err) {
		dev_err(rvu->dev,
			"Bcast list, failed to enable PF_FUNC 0x%x\n",
			pcifunc);
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		return err;
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	}
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	rvu_npc_install_bcast_match_entry(rvu, pcifunc,
					  nixlf, pfvf->rx_chan_base);
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	pfvf->maxlen = NIC_HW_MIN_FRS;
	pfvf->minlen = NIC_HW_MIN_FRS;
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	return 0;
}

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static void nix_interface_deinit(struct rvu *rvu, u16 pcifunc, u8 nixlf)
{
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	struct rvu_pfvf *pfvf = rvu_get_pfvf(rvu, pcifunc);
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	int err;

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	pfvf->maxlen = 0;
	pfvf->minlen = 0;

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	/* Remove this PF_FUNC from bcast pkt replication list */
	err = nix_update_bcast_mce_list(rvu, pcifunc, false);
	if (err) {
		dev_err(rvu->dev,
			"Bcast list, failed to disable PF_FUNC 0x%x\n",
			pcifunc);
	}
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	/* Free and disable any MCAM entries used by this NIX LF */
	rvu_npc_disable_mcam_entries(rvu, pcifunc, nixlf);
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}

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int rvu_mbox_handler_nix_bp_disable(struct rvu *rvu,
				    struct nix_bp_cfg_req *req,
				    struct msg_rsp *rsp)
{
	u16 pcifunc = req->hdr.pcifunc;
	struct rvu_pfvf *pfvf;
	int blkaddr, pf, type;
	u16 chan_base, chan;
	u64 cfg;

	pf = rvu_get_pf(pcifunc);
	type = is_afvf(pcifunc) ? NIX_INTF_TYPE_LBK : NIX_INTF_TYPE_CGX;
	if (!is_pf_cgxmapped(rvu, pf) && type != NIX_INTF_TYPE_LBK)
		return 0;

	pfvf = rvu_get_pfvf(rvu, pcifunc);
	blkaddr = rvu_get_blkaddr(rvu, BLKTYPE_NIX, pcifunc);

	chan_base = pfvf->rx_chan_base + req->chan_base;
	for (chan = chan_base; chan < (chan_base + req->chan_cnt); chan++) {
		cfg = rvu_read64(rvu, blkaddr, NIX_AF_RX_CHANX_CFG(chan));
		rvu_write64(rvu, blkaddr, NIX_AF_RX_CHANX_CFG(chan),
			    cfg & ~BIT_ULL(16));
	}
	return 0;
}

static int rvu_nix_get_bpid(struct rvu *rvu, struct nix_bp_cfg_req *req,
			    int type, int chan_id)
{
	int bpid, blkaddr, lmac_chan_cnt;
	struct rvu_hwinfo *hw = rvu->hw;
	u16 cgx_bpid_cnt, lbk_bpid_cnt;
	struct rvu_pfvf *pfvf;
	u8 cgx_id, lmac_id;
	u64 cfg;

	blkaddr = rvu_get_blkaddr(rvu, BLKTYPE_NIX, req->hdr.pcifunc);
	cfg = rvu_read64(rvu, blkaddr, NIX_AF_CONST);
	lmac_chan_cnt = cfg & 0xFF;

	cgx_bpid_cnt = hw->cgx_links * lmac_chan_cnt;
	lbk_bpid_cnt = hw->lbk_links * ((cfg >> 16) & 0xFF);

	pfvf = rvu_get_pfvf(rvu, req->hdr.pcifunc);

	/* Backpressure IDs range division
	 * CGX channles are mapped to (0 - 191) BPIDs
	 * LBK channles are mapped to (192 - 255) BPIDs
	 * SDP channles are mapped to (256 - 511) BPIDs
	 *
	 * Lmac channles and bpids mapped as follows
	 * cgx(0)_lmac(0)_chan(0 - 15) = bpid(0 - 15)
	 * cgx(0)_lmac(1)_chan(0 - 15) = bpid(16 - 31) ....
	 * cgx(1)_lmac(0)_chan(0 - 15) = bpid(64 - 79) ....
	 */
	switch (type) {
	case NIX_INTF_TYPE_CGX:
		if ((req->chan_base + req->chan_cnt) > 15)
			return -EINVAL;
		rvu_get_cgx_lmac_id(pfvf->cgx_lmac, &cgx_id, &lmac_id);
		/* Assign bpid based on cgx, lmac and chan id */
		bpid = (cgx_id * hw->lmac_per_cgx * lmac_chan_cnt) +
			(lmac_id * lmac_chan_cnt) + req->chan_base;

		if (req->bpid_per_chan)
			bpid += chan_id;
		if (bpid > cgx_bpid_cnt)
			return -EINVAL;
		break;

	case NIX_INTF_TYPE_LBK:
		if ((req->chan_base + req->chan_cnt) > 63)
			return -EINVAL;
		bpid = cgx_bpid_cnt + req->chan_base;
		if (req->bpid_per_chan)
			bpid += chan_id;
		if (bpid > (cgx_bpid_cnt + lbk_bpid_cnt))
			return -EINVAL;
		break;
	default:
		return -EINVAL;
	}
	return bpid;
}

int rvu_mbox_handler_nix_bp_enable(struct rvu *rvu,
				   struct nix_bp_cfg_req *req,
				   struct nix_bp_cfg_rsp *rsp)
{
	int blkaddr, pf, type, chan_id = 0;
	u16 pcifunc = req->hdr.pcifunc;
	struct rvu_pfvf *pfvf;
	u16 chan_base, chan;
	s16 bpid, bpid_base;
	u64 cfg;

	pf = rvu_get_pf(pcifunc);
	type = is_afvf(pcifunc) ? NIX_INTF_TYPE_LBK : NIX_INTF_TYPE_CGX;

	/* Enable backpressure only for CGX mapped PFs and LBK interface */
	if (!is_pf_cgxmapped(rvu, pf) && type != NIX_INTF_TYPE_LBK)
		return 0;

	pfvf = rvu_get_pfvf(rvu, pcifunc);
	blkaddr = rvu_get_blkaddr(rvu, BLKTYPE_NIX, pcifunc);

	bpid_base = rvu_nix_get_bpid(rvu, req, type, chan_id);
	chan_base = pfvf->rx_chan_base + req->chan_base;
	bpid = bpid_base;

	for (chan = chan_base; chan < (chan_base + req->chan_cnt); chan++) {
		if (bpid < 0) {
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			dev_warn(rvu->dev, "Fail to enable backpressure\n");
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			return -EINVAL;
		}

		cfg = rvu_read64(rvu, blkaddr, NIX_AF_RX_CHANX_CFG(chan));
		rvu_write64(rvu, blkaddr, NIX_AF_RX_CHANX_CFG(chan),
			    cfg | (bpid & 0xFF) | BIT_ULL(16));
		chan_id++;
		bpid = rvu_nix_get_bpid(rvu, req, type, chan_id);
	}

	for (chan = 0; chan < req->chan_cnt; chan++) {
		/* Map channel and bpid assign to it */
		rsp->chan_bpid[chan] = ((req->chan_base + chan) & 0x7F) << 10 |
					(bpid_base & 0x3FF);
		if (req->bpid_per_chan)
			bpid_base++;
	}
	rsp->chan_cnt = req->chan_cnt;

	return 0;
}

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static void nix_setup_lso_tso_l3(struct rvu *rvu, int blkaddr,
				 u64 format, bool v4, u64 *fidx)
{
	struct nix_lso_format field = {0};

	/* IP's Length field */
	field.layer = NIX_TXLAYER_OL3;
	/* In ipv4, length field is at offset 2 bytes, for ipv6 it's 4 */
	field.offset = v4 ? 2 : 4;
	field.sizem1 = 1; /* i.e 2 bytes */
	field.alg = NIX_LSOALG_ADD_PAYLEN;
	rvu_write64(rvu, blkaddr,
		    NIX_AF_LSO_FORMATX_FIELDX(format, (*fidx)++),
		    *(u64 *)&field);

	/* No ID field in IPv6 header */
	if (!v4)
		return;

	/* IP's ID field */
	field.layer = NIX_TXLAYER_OL3;
	field.offset = 4;
	field.sizem1 = 1; /* i.e 2 bytes */
	field.alg = NIX_LSOALG_ADD_SEGNUM;
	rvu_write64(rvu, blkaddr,
		    NIX_AF_LSO_FORMATX_FIELDX(format, (*fidx)++),
		    *(u64 *)&field);
}

static void nix_setup_lso_tso_l4(struct rvu *rvu, int blkaddr,
				 u64 format, u64 *fidx)
{
	struct nix_lso_format field = {0};

	/* TCP's sequence number field */
	field.layer = NIX_TXLAYER_OL4;
	field.offset = 4;
	field.sizem1 = 3; /* i.e 4 bytes */
	field.alg = NIX_LSOALG_ADD_OFFSET;
	rvu_write64(rvu, blkaddr,
		    NIX_AF_LSO_FORMATX_FIELDX(format, (*fidx)++),
		    *(u64 *)&field);

	/* TCP's flags field */
	field.layer = NIX_TXLAYER_OL4;
	field.offset = 12;
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	field.sizem1 = 1; /* 2 bytes */
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	field.alg = NIX_LSOALG_TCP_FLAGS;
	rvu_write64(rvu, blkaddr,
		    NIX_AF_LSO_FORMATX_FIELDX(format, (*fidx)++),
		    *(u64 *)&field);
}

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static void nix_setup_lso(struct rvu *rvu, struct nix_hw *nix_hw, int blkaddr)
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{
	u64 cfg, idx, fidx = 0;

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	/* Get max HW supported format indices */
	cfg = (rvu_read64(rvu, blkaddr, NIX_AF_CONST1) >> 48) & 0xFF;
	nix_hw->lso.total = cfg;

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	/* Enable LSO */
	cfg = rvu_read64(rvu, blkaddr, NIX_AF_LSO_CFG);
	/* For TSO, set first and middle segment flags to
	 * mask out PSH, RST & FIN flags in TCP packet
	 */
	cfg &= ~((0xFFFFULL << 32) | (0xFFFFULL << 16));
	cfg |= (0xFFF2ULL << 32) | (0xFFF2ULL << 16);
	rvu_write64(rvu, blkaddr, NIX_AF_LSO_CFG, cfg | BIT_ULL(63));

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	/* Setup default static LSO formats
	 *
	 * Configure format fields for TCPv4 segmentation offload
	 */
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	idx = NIX_LSO_FORMAT_IDX_TSOV4;
	nix_setup_lso_tso_l3(rvu, blkaddr, idx, true, &fidx);
	nix_setup_lso_tso_l4(rvu, blkaddr, idx, &fidx);

	/* Set rest of the fields to NOP */
	for (; fidx < 8; fidx++) {
		rvu_write64(rvu, blkaddr,
			    NIX_AF_LSO_FORMATX_FIELDX(idx, fidx), 0x0ULL);
	}
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	nix_hw->lso.in_use++;
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	/* Configure format fields for TCPv6 segmentation offload */
	idx = NIX_LSO_FORMAT_IDX_TSOV6;
	fidx = 0;
	nix_setup_lso_tso_l3(rvu, blkaddr, idx, false, &fidx);
	nix_setup_lso_tso_l4(rvu, blkaddr, idx, &fidx);

	/* Set rest of the fields to NOP */
	for (; fidx < 8; fidx++) {
		rvu_write64(rvu, blkaddr,
			    NIX_AF_LSO_FORMATX_FIELDX(idx, fidx), 0x0ULL);
	}
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	nix_hw->lso.in_use++;
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}

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static void nix_ctx_free(struct rvu *rvu, struct rvu_pfvf *pfvf)
{
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	kfree(pfvf->rq_bmap);
	kfree(pfvf->sq_bmap);
	kfree(pfvf->cq_bmap);
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	if (pfvf->rq_ctx)
		qmem_free(rvu->dev, pfvf->rq_ctx);
	if (pfvf->sq_ctx)
		qmem_free(rvu->dev, pfvf->sq_ctx);
	if (pfvf->cq_ctx)
		qmem_free(rvu->dev, pfvf->cq_ctx);
	if (pfvf->rss_ctx)
		qmem_free(rvu->dev, pfvf->rss_ctx);
	if (pfvf->nix_qints_ctx)
		qmem_free(rvu->dev, pfvf->nix_qints_ctx);
	if (pfvf->cq_ints_ctx)
		qmem_free(rvu->dev, pfvf->cq_ints_ctx);

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	pfvf->rq_bmap = NULL;
	pfvf->cq_bmap = NULL;
	pfvf->sq_bmap = NULL;
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	pfvf->rq_ctx = NULL;
	pfvf->sq_ctx = NULL;
	pfvf->cq_ctx = NULL;
	pfvf->rss_ctx = NULL;
	pfvf->nix_qints_ctx = NULL;
	pfvf->cq_ints_ctx = NULL;
}

static int nixlf_rss_ctx_init(struct rvu *rvu, int blkaddr,
			      struct rvu_pfvf *pfvf, int nixlf,
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			      int rss_sz, int rss_grps, int hwctx_size,
			      u64 way_mask)
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{
	int err, grp, num_indices;

	/* RSS is not requested for this NIXLF */
	if (!rss_sz)
		return 0;
	num_indices = rss_sz * rss_grps;

	/* Alloc NIX RSS HW context memory and config the base */
	err = qmem_alloc(rvu->dev, &pfvf->rss_ctx, num_indices, hwctx_size);
	if (err)
		return err;

	rvu_write64(rvu, blkaddr, NIX_AF_LFX_RSS_BASE(nixlf),
		    (u64)pfvf->rss_ctx->iova);

	/* Config full RSS table size, enable RSS and caching */
	rvu_write64(rvu, blkaddr, NIX_AF_LFX_RSS_CFG(nixlf),
		    BIT_ULL(36) | BIT_ULL(4) |
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		    ilog2(num_indices / MAX_RSS_INDIR_TBL_SIZE) |
		    way_mask << 20);
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	/* Config RSS group offset and sizes */
	for (grp = 0; grp < rss_grps; grp++)
		rvu_write64(rvu, blkaddr, NIX_AF_LFX_RSS_GRPX(nixlf, grp),
			    ((ilog2(rss_sz) - 1) << 16) | (rss_sz * grp));
	return 0;
}

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static int nix_aq_enqueue_wait(struct rvu *rvu, struct rvu_block *block,
			       struct nix_aq_inst_s *inst)
{
	struct admin_queue *aq = block->aq;
	struct nix_aq_res_s *result;
	int timeout = 1000;
	u64 reg, head;

	result = (struct nix_aq_res_s *)aq->res->base;

	/* Get current head pointer where to append this instruction */
	reg = rvu_read64(rvu, block->addr, NIX_AF_AQ_STATUS);
	head = (reg >> 4) & AQ_PTR_MASK;

	memcpy((void *)(aq->inst->base + (head * aq->inst->entry_sz)),
	       (void *)inst, aq->inst->entry_sz);
	memset(result, 0, sizeof(*result));
	/* sync into memory */
	wmb();

	/* Ring the doorbell and wait for result */
	rvu_write64(rvu, block->addr, NIX_AF_AQ_DOOR, 1);
	while (result->compcode == NIX_AQ_COMP_NOTDONE) {
		cpu_relax();
		udelay(1);
		timeout--;
		if (!timeout)
			return -EBUSY;
	}

	if (result->compcode != NIX_AQ_COMP_GOOD)
		/* TODO: Replace this with some error code */
		return -EBUSY;

	return 0;
}

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static int rvu_nix_blk_aq_enq_inst(struct rvu *rvu, struct nix_hw *nix_hw,
				   struct nix_aq_enq_req *req,
				   struct nix_aq_enq_rsp *rsp)
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{
	struct rvu_hwinfo *hw = rvu->hw;
	u16 pcifunc = req->hdr.pcifunc;
	int nixlf, blkaddr, rc = 0;
	struct nix_aq_inst_s inst;
	struct rvu_block *block;
	struct admin_queue *aq;
	struct rvu_pfvf *pfvf;
	void *ctx, *mask;
664
	bool ena;
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	u64 cfg;

667
	blkaddr = nix_hw->blkaddr;
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	block = &hw->block[blkaddr];
	aq = block->aq;
	if (!aq) {
		dev_warn(rvu->dev, "%s: NIX AQ not initialized\n", __func__);
		return NIX_AF_ERR_AQ_ENQUEUE;
	}

675
	pfvf = rvu_get_pfvf(rvu, pcifunc);
676
	nixlf = rvu_get_lf(rvu, block, pcifunc, 0);
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	/* Skip NIXLF check for broadcast MCE entry init */
	if (!(!rsp && req->ctype == NIX_AQ_CTYPE_MCE)) {
		if (!pfvf->nixlf || nixlf < 0)
			return NIX_AF_ERR_AF_LF_INVALID;
	}
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	switch (req->ctype) {
	case NIX_AQ_CTYPE_RQ:
		/* Check if index exceeds max no of queues */
		if (!pfvf->rq_ctx || req->qidx >= pfvf->rq_ctx->qsize)
			rc = NIX_AF_ERR_AQ_ENQUEUE;
		break;
	case NIX_AQ_CTYPE_SQ:
		if (!pfvf->sq_ctx || req->qidx >= pfvf->sq_ctx->qsize)
			rc = NIX_AF_ERR_AQ_ENQUEUE;
		break;
	case NIX_AQ_CTYPE_CQ:
		if (!pfvf->cq_ctx || req->qidx >= pfvf->cq_ctx->qsize)
			rc = NIX_AF_ERR_AQ_ENQUEUE;
		break;
	case NIX_AQ_CTYPE_RSS:
		/* Check if RSS is enabled and qidx is within range */
		cfg = rvu_read64(rvu, blkaddr, NIX_AF_LFX_RSS_CFG(nixlf));
		if (!(cfg & BIT_ULL(4)) || !pfvf->rss_ctx ||
		    (req->qidx >= (256UL << (cfg & 0xF))))
			rc = NIX_AF_ERR_AQ_ENQUEUE;
		break;
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	case NIX_AQ_CTYPE_MCE:
		cfg = rvu_read64(rvu, blkaddr, NIX_AF_RX_MCAST_CFG);
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Rakesh Babu 已提交
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		/* Check if index exceeds MCE list length */
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		if (!nix_hw->mcast.mce_ctx ||
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		    (req->qidx >= (256UL << (cfg & 0xF))))
			rc = NIX_AF_ERR_AQ_ENQUEUE;

		/* Adding multicast lists for requests from PF/VFs is not
		 * yet supported, so ignore this.
		 */
		if (rsp)
			rc = NIX_AF_ERR_AQ_ENQUEUE;
		break;
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	default:
		rc = NIX_AF_ERR_AQ_ENQUEUE;
	}

	if (rc)
		return rc;

	/* Check if SQ pointed SMQ belongs to this PF/VF or not */
	if (req->ctype == NIX_AQ_CTYPE_SQ &&
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	    ((req->op == NIX_AQ_INSTOP_INIT && req->sq.ena) ||
	     (req->op == NIX_AQ_INSTOP_WRITE &&
	      req->sq_mask.ena && req->sq_mask.smq && req->sq.ena))) {
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		if (!is_valid_txschq(rvu, blkaddr, NIX_TXSCH_LVL_SMQ,
				     pcifunc, req->sq.smq))
			return NIX_AF_ERR_AQ_ENQUEUE;
	}

	memset(&inst, 0, sizeof(struct nix_aq_inst_s));
	inst.lf = nixlf;
	inst.cindex = req->qidx;
	inst.ctype = req->ctype;
	inst.op = req->op;
	/* Currently we are not supporting enqueuing multiple instructions,
	 * so always choose first entry in result memory.
	 */
	inst.res_addr = (u64)aq->res->iova;

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	/* Hardware uses same aq->res->base for updating result of
	 * previous instruction hence wait here till it is done.
	 */
	spin_lock(&aq->lock);

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	/* Clean result + context memory */
	memset(aq->res->base, 0, aq->res->entry_sz);
	/* Context needs to be written at RES_ADDR + 128 */
	ctx = aq->res->base + 128;
	/* Mask needs to be written at RES_ADDR + 256 */
	mask = aq->res->base + 256;

	switch (req->op) {
	case NIX_AQ_INSTOP_WRITE:
		if (req->ctype == NIX_AQ_CTYPE_RQ)
			memcpy(mask, &req->rq_mask,
			       sizeof(struct nix_rq_ctx_s));
		else if (req->ctype == NIX_AQ_CTYPE_SQ)
			memcpy(mask, &req->sq_mask,
			       sizeof(struct nix_sq_ctx_s));
		else if (req->ctype == NIX_AQ_CTYPE_CQ)
			memcpy(mask, &req->cq_mask,
			       sizeof(struct nix_cq_ctx_s));
		else if (req->ctype == NIX_AQ_CTYPE_RSS)
			memcpy(mask, &req->rss_mask,
			       sizeof(struct nix_rsse_s));
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		else if (req->ctype == NIX_AQ_CTYPE_MCE)
			memcpy(mask, &req->mce_mask,
			       sizeof(struct nix_rx_mce_s));
775
		fallthrough;
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	case NIX_AQ_INSTOP_INIT:
		if (req->ctype == NIX_AQ_CTYPE_RQ)
			memcpy(ctx, &req->rq, sizeof(struct nix_rq_ctx_s));
		else if (req->ctype == NIX_AQ_CTYPE_SQ)
			memcpy(ctx, &req->sq, sizeof(struct nix_sq_ctx_s));
		else if (req->ctype == NIX_AQ_CTYPE_CQ)
			memcpy(ctx, &req->cq, sizeof(struct nix_cq_ctx_s));
		else if (req->ctype == NIX_AQ_CTYPE_RSS)
			memcpy(ctx, &req->rss, sizeof(struct nix_rsse_s));
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		else if (req->ctype == NIX_AQ_CTYPE_MCE)
			memcpy(ctx, &req->mce, sizeof(struct nix_rx_mce_s));
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		break;
	case NIX_AQ_INSTOP_NOP:
	case NIX_AQ_INSTOP_READ:
	case NIX_AQ_INSTOP_LOCK:
	case NIX_AQ_INSTOP_UNLOCK:
		break;
	default:
		rc = NIX_AF_ERR_AQ_ENQUEUE;
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		spin_unlock(&aq->lock);
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		return rc;
	}

	/* Submit the instruction to AQ */
	rc = nix_aq_enqueue_wait(rvu, block, &inst);
	if (rc) {
		spin_unlock(&aq->lock);
		return rc;
	}

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	/* Set RQ/SQ/CQ bitmap if respective queue hw context is enabled */
	if (req->op == NIX_AQ_INSTOP_INIT) {
		if (req->ctype == NIX_AQ_CTYPE_RQ && req->rq.ena)
			__set_bit(req->qidx, pfvf->rq_bmap);
		if (req->ctype == NIX_AQ_CTYPE_SQ && req->sq.ena)
			__set_bit(req->qidx, pfvf->sq_bmap);
		if (req->ctype == NIX_AQ_CTYPE_CQ && req->cq.ena)
			__set_bit(req->qidx, pfvf->cq_bmap);
	}

	if (req->op == NIX_AQ_INSTOP_WRITE) {
		if (req->ctype == NIX_AQ_CTYPE_RQ) {
			ena = (req->rq.ena & req->rq_mask.ena) |
				(test_bit(req->qidx, pfvf->rq_bmap) &
				~req->rq_mask.ena);
			if (ena)
				__set_bit(req->qidx, pfvf->rq_bmap);
			else
				__clear_bit(req->qidx, pfvf->rq_bmap);
		}
		if (req->ctype == NIX_AQ_CTYPE_SQ) {
			ena = (req->rq.ena & req->sq_mask.ena) |
				(test_bit(req->qidx, pfvf->sq_bmap) &
				~req->sq_mask.ena);
			if (ena)
				__set_bit(req->qidx, pfvf->sq_bmap);
			else
				__clear_bit(req->qidx, pfvf->sq_bmap);
		}
		if (req->ctype == NIX_AQ_CTYPE_CQ) {
			ena = (req->rq.ena & req->cq_mask.ena) |
				(test_bit(req->qidx, pfvf->cq_bmap) &
				~req->cq_mask.ena);
			if (ena)
				__set_bit(req->qidx, pfvf->cq_bmap);
			else
				__clear_bit(req->qidx, pfvf->cq_bmap);
		}
	}

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	if (rsp) {
		/* Copy read context into mailbox */
848
		if (req->op == NIX_AQ_INSTOP_READ) {
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			if (req->ctype == NIX_AQ_CTYPE_RQ)
				memcpy(&rsp->rq, ctx,
				       sizeof(struct nix_rq_ctx_s));
			else if (req->ctype == NIX_AQ_CTYPE_SQ)
				memcpy(&rsp->sq, ctx,
				       sizeof(struct nix_sq_ctx_s));
			else if (req->ctype == NIX_AQ_CTYPE_CQ)
				memcpy(&rsp->cq, ctx,
				       sizeof(struct nix_cq_ctx_s));
			else if (req->ctype == NIX_AQ_CTYPE_RSS)
				memcpy(&rsp->rss, ctx,
860
				       sizeof(struct nix_rsse_s));
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			else if (req->ctype == NIX_AQ_CTYPE_MCE)
				memcpy(&rsp->mce, ctx,
				       sizeof(struct nix_rx_mce_s));
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		}
	}

	spin_unlock(&aq->lock);
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	return 0;
}

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static int rvu_nix_aq_enq_inst(struct rvu *rvu, struct nix_aq_enq_req *req,
			       struct nix_aq_enq_rsp *rsp)
{
	struct nix_hw *nix_hw;
	int blkaddr;

	blkaddr = rvu_get_blkaddr(rvu, BLKTYPE_NIX, req->hdr.pcifunc);
	if (blkaddr < 0)
		return NIX_AF_ERR_AF_LF_INVALID;

	nix_hw =  get_nix_hw(rvu->hw, blkaddr);
	if (!nix_hw)
		return -EINVAL;

	return rvu_nix_blk_aq_enq_inst(rvu, nix_hw, req, rsp);
}

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static const char *nix_get_ctx_name(int ctype)
{
	switch (ctype) {
	case NIX_AQ_CTYPE_CQ:
		return "CQ";
	case NIX_AQ_CTYPE_SQ:
		return "SQ";
	case NIX_AQ_CTYPE_RQ:
		return "RQ";
	case NIX_AQ_CTYPE_RSS:
		return "RSS";
	}
	return "";
}

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static int nix_lf_hwctx_disable(struct rvu *rvu, struct hwctx_disable_req *req)
{
	struct rvu_pfvf *pfvf = rvu_get_pfvf(rvu, req->hdr.pcifunc);
	struct nix_aq_enq_req aq_req;
	unsigned long *bmap;
	int qidx, q_cnt = 0;
	int err = 0, rc;

	if (!pfvf->cq_ctx || !pfvf->sq_ctx || !pfvf->rq_ctx)
		return NIX_AF_ERR_AQ_ENQUEUE;

	memset(&aq_req, 0, sizeof(struct nix_aq_enq_req));
	aq_req.hdr.pcifunc = req->hdr.pcifunc;

	if (req->ctype == NIX_AQ_CTYPE_CQ) {
		aq_req.cq.ena = 0;
		aq_req.cq_mask.ena = 1;
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		aq_req.cq.bp_ena = 0;
		aq_req.cq_mask.bp_ena = 1;
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		q_cnt = pfvf->cq_ctx->qsize;
		bmap = pfvf->cq_bmap;
	}
	if (req->ctype == NIX_AQ_CTYPE_SQ) {
		aq_req.sq.ena = 0;
		aq_req.sq_mask.ena = 1;
		q_cnt = pfvf->sq_ctx->qsize;
		bmap = pfvf->sq_bmap;
	}
	if (req->ctype == NIX_AQ_CTYPE_RQ) {
		aq_req.rq.ena = 0;
		aq_req.rq_mask.ena = 1;
		q_cnt = pfvf->rq_ctx->qsize;
		bmap = pfvf->rq_bmap;
	}

	aq_req.ctype = req->ctype;
	aq_req.op = NIX_AQ_INSTOP_WRITE;

	for (qidx = 0; qidx < q_cnt; qidx++) {
		if (!test_bit(qidx, bmap))
			continue;
		aq_req.qidx = qidx;
		rc = rvu_nix_aq_enq_inst(rvu, &aq_req, NULL);
		if (rc) {
			err = rc;
			dev_err(rvu->dev, "Failed to disable %s:%d context\n",
949
				nix_get_ctx_name(req->ctype), qidx);
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		}
	}

	return err;
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}

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#ifdef CONFIG_NDC_DIS_DYNAMIC_CACHING
static int nix_lf_hwctx_lockdown(struct rvu *rvu, struct nix_aq_enq_req *req)
{
	struct nix_aq_enq_req lock_ctx_req;
	int err;

	if (req->op != NIX_AQ_INSTOP_INIT)
		return 0;

	if (req->ctype == NIX_AQ_CTYPE_MCE ||
	    req->ctype == NIX_AQ_CTYPE_DYNO)
		return 0;

	memset(&lock_ctx_req, 0, sizeof(struct nix_aq_enq_req));
	lock_ctx_req.hdr.pcifunc = req->hdr.pcifunc;
	lock_ctx_req.ctype = req->ctype;
	lock_ctx_req.op = NIX_AQ_INSTOP_LOCK;
	lock_ctx_req.qidx = req->qidx;
	err = rvu_nix_aq_enq_inst(rvu, &lock_ctx_req, NULL);
	if (err)
		dev_err(rvu->dev,
			"PFUNC 0x%x: Failed to lock NIX %s:%d context\n",
			req->hdr.pcifunc,
			nix_get_ctx_name(req->ctype), req->qidx);
	return err;
}

int rvu_mbox_handler_nix_aq_enq(struct rvu *rvu,
				struct nix_aq_enq_req *req,
				struct nix_aq_enq_rsp *rsp)
{
	int err;

	err = rvu_nix_aq_enq_inst(rvu, req, rsp);
	if (!err)
		err = nix_lf_hwctx_lockdown(rvu, req);
	return err;
}
#else

996
int rvu_mbox_handler_nix_aq_enq(struct rvu *rvu,
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				struct nix_aq_enq_req *req,
				struct nix_aq_enq_rsp *rsp)
{
	return rvu_nix_aq_enq_inst(rvu, req, rsp);
}
1002
#endif
1003 1004 1005 1006 1007 1008 1009 1010
/* CN10K mbox handler */
int rvu_mbox_handler_nix_cn10k_aq_enq(struct rvu *rvu,
				      struct nix_cn10k_aq_enq_req *req,
				      struct nix_cn10k_aq_enq_rsp *rsp)
{
	return rvu_nix_aq_enq_inst(rvu, (struct nix_aq_enq_req *)req,
				  (struct nix_aq_enq_rsp *)rsp);
}
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1012
int rvu_mbox_handler_nix_hwctx_disable(struct rvu *rvu,
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				       struct hwctx_disable_req *req,
				       struct msg_rsp *rsp)
{
	return nix_lf_hwctx_disable(rvu, req);
}

1019
int rvu_mbox_handler_nix_lf_alloc(struct rvu *rvu,
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				  struct nix_lf_alloc_req *req,
				  struct nix_lf_alloc_rsp *rsp)
{
1023
	int nixlf, qints, hwctx_size, intf, err, rc = 0;
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	struct rvu_hwinfo *hw = rvu->hw;
	u16 pcifunc = req->hdr.pcifunc;
	struct rvu_block *block;
	struct rvu_pfvf *pfvf;
	u64 cfg, ctx_cfg;
	int blkaddr;

	if (!req->rq_cnt || !req->sq_cnt || !req->cq_cnt)
		return NIX_AF_ERR_PARAM;

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	if (req->way_mask)
		req->way_mask &= 0xFFFF;

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	pfvf = rvu_get_pfvf(rvu, pcifunc);
	blkaddr = rvu_get_blkaddr(rvu, BLKTYPE_NIX, pcifunc);
	if (!pfvf->nixlf || blkaddr < 0)
		return NIX_AF_ERR_AF_LF_INVALID;

	block = &hw->block[blkaddr];
	nixlf = rvu_get_lf(rvu, block, pcifunc, 0);
	if (nixlf < 0)
		return NIX_AF_ERR_AF_LF_INVALID;

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	/* Check if requested 'NIXLF <=> NPALF' mapping is valid */
	if (req->npa_func) {
		/* If default, use 'this' NIXLF's PFFUNC */
		if (req->npa_func == RVU_DEFAULT_PF_FUNC)
			req->npa_func = pcifunc;
		if (!is_pffunc_map_valid(rvu, req->npa_func, BLKTYPE_NPA))
			return NIX_AF_INVAL_NPA_PF_FUNC;
	}

	/* Check if requested 'NIXLF <=> SSOLF' mapping is valid */
	if (req->sso_func) {
		/* If default, use 'this' NIXLF's PFFUNC */
		if (req->sso_func == RVU_DEFAULT_PF_FUNC)
			req->sso_func = pcifunc;
		if (!is_pffunc_map_valid(rvu, req->sso_func, BLKTYPE_SSO))
			return NIX_AF_INVAL_SSO_PF_FUNC;
	}

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	/* If RSS is being enabled, check if requested config is valid.
	 * RSS table size should be power of two, otherwise
	 * RSS_GRP::OFFSET + adder might go beyond that group or
	 * won't be able to use entire table.
	 */
	if (req->rss_sz && (req->rss_sz > MAX_RSS_INDIR_TBL_SIZE ||
			    !is_power_of_2(req->rss_sz)))
		return NIX_AF_ERR_RSS_SIZE_INVALID;

	if (req->rss_sz &&
	    (!req->rss_grps || req->rss_grps > MAX_RSS_GROUPS))
		return NIX_AF_ERR_RSS_GRPS_INVALID;

	/* Reset this NIX LF */
	err = rvu_lf_reset(rvu, block, nixlf);
	if (err) {
		dev_err(rvu->dev, "Failed to reset NIX%d LF%d\n",
			block->addr - BLKADDR_NIX0, nixlf);
		return NIX_AF_ERR_LF_RESET;
	}

	ctx_cfg = rvu_read64(rvu, blkaddr, NIX_AF_CONST3);

	/* Alloc NIX RQ HW context memory and config the base */
	hwctx_size = 1UL << ((ctx_cfg >> 4) & 0xF);
	err = qmem_alloc(rvu->dev, &pfvf->rq_ctx, req->rq_cnt, hwctx_size);
	if (err)
		goto free_mem;

1094 1095 1096 1097
	pfvf->rq_bmap = kcalloc(req->rq_cnt, sizeof(long), GFP_KERNEL);
	if (!pfvf->rq_bmap)
		goto free_mem;

1098 1099 1100 1101
	rvu_write64(rvu, blkaddr, NIX_AF_LFX_RQS_BASE(nixlf),
		    (u64)pfvf->rq_ctx->iova);

	/* Set caching and queue count in HW */
1102
	cfg = BIT_ULL(36) | (req->rq_cnt - 1) | req->way_mask << 20;
1103 1104 1105 1106 1107 1108 1109 1110
	rvu_write64(rvu, blkaddr, NIX_AF_LFX_RQS_CFG(nixlf), cfg);

	/* Alloc NIX SQ HW context memory and config the base */
	hwctx_size = 1UL << (ctx_cfg & 0xF);
	err = qmem_alloc(rvu->dev, &pfvf->sq_ctx, req->sq_cnt, hwctx_size);
	if (err)
		goto free_mem;

1111 1112 1113 1114
	pfvf->sq_bmap = kcalloc(req->sq_cnt, sizeof(long), GFP_KERNEL);
	if (!pfvf->sq_bmap)
		goto free_mem;

1115 1116
	rvu_write64(rvu, blkaddr, NIX_AF_LFX_SQS_BASE(nixlf),
		    (u64)pfvf->sq_ctx->iova);
1117 1118

	cfg = BIT_ULL(36) | (req->sq_cnt - 1) | req->way_mask << 20;
1119 1120 1121 1122 1123 1124 1125 1126
	rvu_write64(rvu, blkaddr, NIX_AF_LFX_SQS_CFG(nixlf), cfg);

	/* Alloc NIX CQ HW context memory and config the base */
	hwctx_size = 1UL << ((ctx_cfg >> 8) & 0xF);
	err = qmem_alloc(rvu->dev, &pfvf->cq_ctx, req->cq_cnt, hwctx_size);
	if (err)
		goto free_mem;

1127 1128 1129 1130
	pfvf->cq_bmap = kcalloc(req->cq_cnt, sizeof(long), GFP_KERNEL);
	if (!pfvf->cq_bmap)
		goto free_mem;

1131 1132
	rvu_write64(rvu, blkaddr, NIX_AF_LFX_CQS_BASE(nixlf),
		    (u64)pfvf->cq_ctx->iova);
1133 1134

	cfg = BIT_ULL(36) | (req->cq_cnt - 1) | req->way_mask << 20;
1135 1136 1137 1138
	rvu_write64(rvu, blkaddr, NIX_AF_LFX_CQS_CFG(nixlf), cfg);

	/* Initialize receive side scaling (RSS) */
	hwctx_size = 1UL << ((ctx_cfg >> 12) & 0xF);
1139 1140
	err = nixlf_rss_ctx_init(rvu, blkaddr, pfvf, nixlf, req->rss_sz,
				 req->rss_grps, hwctx_size, req->way_mask);
1141 1142 1143 1144 1145 1146 1147 1148 1149 1150 1151 1152 1153
	if (err)
		goto free_mem;

	/* Alloc memory for CQINT's HW contexts */
	cfg = rvu_read64(rvu, blkaddr, NIX_AF_CONST2);
	qints = (cfg >> 24) & 0xFFF;
	hwctx_size = 1UL << ((ctx_cfg >> 24) & 0xF);
	err = qmem_alloc(rvu->dev, &pfvf->cq_ints_ctx, qints, hwctx_size);
	if (err)
		goto free_mem;

	rvu_write64(rvu, blkaddr, NIX_AF_LFX_CINTS_BASE(nixlf),
		    (u64)pfvf->cq_ints_ctx->iova);
1154 1155 1156

	rvu_write64(rvu, blkaddr, NIX_AF_LFX_CINTS_CFG(nixlf),
		    BIT_ULL(36) | req->way_mask << 20);
1157 1158 1159 1160 1161 1162 1163 1164 1165 1166 1167

	/* Alloc memory for QINT's HW contexts */
	cfg = rvu_read64(rvu, blkaddr, NIX_AF_CONST2);
	qints = (cfg >> 12) & 0xFFF;
	hwctx_size = 1UL << ((ctx_cfg >> 20) & 0xF);
	err = qmem_alloc(rvu->dev, &pfvf->nix_qints_ctx, qints, hwctx_size);
	if (err)
		goto free_mem;

	rvu_write64(rvu, blkaddr, NIX_AF_LFX_QINTS_BASE(nixlf),
		    (u64)pfvf->nix_qints_ctx->iova);
1168 1169
	rvu_write64(rvu, blkaddr, NIX_AF_LFX_QINTS_CFG(nixlf),
		    BIT_ULL(36) | req->way_mask << 20);
1170

1171 1172 1173 1174 1175 1176 1177
	/* Setup VLANX TPID's.
	 * Use VLAN1 for 802.1Q
	 * and VLAN0 for 802.1AD.
	 */
	cfg = (0x8100ULL << 16) | 0x88A8ULL;
	rvu_write64(rvu, blkaddr, NIX_AF_LFX_TX_CFG(nixlf), cfg);

1178 1179 1180
	/* Enable LMTST for this NIX LF */
	rvu_write64(rvu, blkaddr, NIX_AF_LFX_TX_CFG2(nixlf), BIT_ULL(0));

1181 1182
	/* Set CQE/WQE size, NPA_PF_FUNC for SQBs and also SSO_PF_FUNC */
	if (req->npa_func)
1183
		cfg = req->npa_func;
1184
	if (req->sso_func)
1185 1186 1187 1188 1189 1190 1191 1192
		cfg |= (u64)req->sso_func << 16;

	cfg |= (u64)req->xqe_sz << 33;
	rvu_write64(rvu, blkaddr, NIX_AF_LFX_CFG(nixlf), cfg);

	/* Config Rx pkt length, csum checks and apad  enable / disable */
	rvu_write64(rvu, blkaddr, NIX_AF_LFX_RX_CFG(nixlf), req->rx_cfg);

1193 1194 1195 1196
	/* Configure pkind for TX parse config */
	cfg = NPC_TX_DEF_PKIND;
	rvu_write64(rvu, blkaddr, NIX_AF_LFX_TX_PARSE_CFG(nixlf), cfg);

1197 1198
	intf = is_afvf(pcifunc) ? NIX_INTF_TYPE_LBK : NIX_INTF_TYPE_CGX;
	err = nix_interface_init(rvu, pcifunc, intf, nixlf);
1199 1200 1201
	if (err)
		goto free_mem;

1202 1203 1204
	/* Disable NPC entries as NIXLF's contexts are not initialized yet */
	rvu_npc_disable_default_entries(rvu, pcifunc, nixlf);

1205 1206 1207 1208 1209
	/* Configure RX VTAG Type 7 (strip) for vf vlan */
	rvu_write64(rvu, blkaddr,
		    NIX_AF_LFX_RX_VTAG_TYPEX(nixlf, NIX_AF_LFX_RX_VTAG_TYPE7),
		    VTAGSIZE_T4 | VTAG_STRIP);

1210 1211 1212 1213 1214 1215 1216 1217 1218 1219 1220 1221 1222
	goto exit;

free_mem:
	nix_ctx_free(rvu, pfvf);
	rc = -ENOMEM;

exit:
	/* Set macaddr of this PF/VF */
	ether_addr_copy(rsp->mac_addr, pfvf->mac_addr);

	/* set SQB size info */
	cfg = rvu_read64(rvu, blkaddr, NIX_AF_SQ_CONST);
	rsp->sqb_size = (cfg >> 34) & 0xFFFF;
1223 1224 1225 1226
	rsp->rx_chan_base = pfvf->rx_chan_base;
	rsp->tx_chan_base = pfvf->tx_chan_base;
	rsp->rx_chan_cnt = pfvf->rx_chan_cnt;
	rsp->tx_chan_cnt = pfvf->tx_chan_cnt;
1227 1228
	rsp->lso_tsov4_idx = NIX_LSO_FORMAT_IDX_TSOV4;
	rsp->lso_tsov6_idx = NIX_LSO_FORMAT_IDX_TSOV6;
1229 1230 1231 1232 1233 1234 1235 1236
	/* Get HW supported stat count */
	cfg = rvu_read64(rvu, blkaddr, NIX_AF_CONST1);
	rsp->lf_rx_stats = ((cfg >> 32) & 0xFF);
	rsp->lf_tx_stats = ((cfg >> 24) & 0xFF);
	/* Get count of CQ IRQs and error IRQs supported per LF */
	cfg = rvu_read64(rvu, blkaddr, NIX_AF_CONST2);
	rsp->qints = ((cfg >> 12) & 0xFFF);
	rsp->cints = ((cfg >> 24) & 0xFFF);
1237 1238 1239 1240
	rsp->cgx_links = hw->cgx_links;
	rsp->lbk_links = hw->lbk_links;
	rsp->sdp_links = hw->sdp_links;

1241 1242 1243
	return rc;
}

1244
int rvu_mbox_handler_nix_lf_free(struct rvu *rvu, struct nix_lf_free_req *req,
1245 1246 1247 1248 1249 1250 1251 1252 1253 1254 1255 1256 1257 1258 1259 1260 1261 1262
				 struct msg_rsp *rsp)
{
	struct rvu_hwinfo *hw = rvu->hw;
	u16 pcifunc = req->hdr.pcifunc;
	struct rvu_block *block;
	int blkaddr, nixlf, err;
	struct rvu_pfvf *pfvf;

	pfvf = rvu_get_pfvf(rvu, pcifunc);
	blkaddr = rvu_get_blkaddr(rvu, BLKTYPE_NIX, pcifunc);
	if (!pfvf->nixlf || blkaddr < 0)
		return NIX_AF_ERR_AF_LF_INVALID;

	block = &hw->block[blkaddr];
	nixlf = rvu_get_lf(rvu, block, pcifunc, 0);
	if (nixlf < 0)
		return NIX_AF_ERR_AF_LF_INVALID;

1263 1264 1265 1266 1267
	if (req->flags & NIX_LF_DISABLE_FLOWS)
		rvu_npc_disable_mcam_entries(rvu, pcifunc, nixlf);
	else
		rvu_npc_free_mcam_entries(rvu, pcifunc, nixlf);

1268 1269 1270 1271
	/* Free any tx vtag def entries used by this NIX LF */
	if (!(req->flags & NIX_LF_DONT_FREE_TX_VTAG))
		nix_free_tx_vtag_entries(rvu, pcifunc);

1272 1273
	nix_interface_deinit(rvu, pcifunc, nixlf);

1274 1275 1276 1277 1278 1279 1280 1281 1282 1283 1284 1285 1286
	/* Reset this NIX LF */
	err = rvu_lf_reset(rvu, block, nixlf);
	if (err) {
		dev_err(rvu->dev, "Failed to reset NIX%d LF%d\n",
			block->addr - BLKADDR_NIX0, nixlf);
		return NIX_AF_ERR_LF_RESET;
	}

	nix_ctx_free(rvu, pfvf);

	return 0;
}

1287 1288 1289 1290 1291 1292 1293 1294 1295 1296 1297 1298 1299 1300 1301 1302 1303 1304 1305 1306 1307 1308 1309 1310 1311 1312 1313 1314 1315 1316 1317 1318 1319 1320 1321
int rvu_mbox_handler_nix_mark_format_cfg(struct rvu *rvu,
					 struct nix_mark_format_cfg  *req,
					 struct nix_mark_format_cfg_rsp *rsp)
{
	u16 pcifunc = req->hdr.pcifunc;
	struct nix_hw *nix_hw;
	struct rvu_pfvf *pfvf;
	int blkaddr, rc;
	u32 cfg;

	pfvf = rvu_get_pfvf(rvu, pcifunc);
	blkaddr = rvu_get_blkaddr(rvu, BLKTYPE_NIX, pcifunc);
	if (!pfvf->nixlf || blkaddr < 0)
		return NIX_AF_ERR_AF_LF_INVALID;

	nix_hw = get_nix_hw(rvu->hw, blkaddr);
	if (!nix_hw)
		return -EINVAL;

	cfg = (((u32)req->offset & 0x7) << 16) |
	      (((u32)req->y_mask & 0xF) << 12) |
	      (((u32)req->y_val & 0xF) << 8) |
	      (((u32)req->r_mask & 0xF) << 4) | ((u32)req->r_val & 0xF);

	rc = rvu_nix_reserve_mark_format(rvu, nix_hw, blkaddr, cfg);
	if (rc < 0) {
		dev_err(rvu->dev, "No mark_format_ctl for (pf:%d, vf:%d)",
			rvu_get_pf(pcifunc), pcifunc & RVU_PFVF_FUNC_MASK);
		return NIX_AF_ERR_MARK_CFG_FAIL;
	}

	rsp->mark_format_idx = rc;
	return 0;
}

1322 1323 1324 1325 1326 1327 1328 1329 1330 1331 1332 1333 1334 1335 1336 1337 1338 1339 1340 1341 1342 1343 1344 1345 1346 1347 1348 1349 1350 1351 1352 1353 1354 1355 1356 1357 1358 1359 1360 1361 1362 1363 1364 1365 1366
/* Disable shaping of pkts by a scheduler queue
 * at a given scheduler level.
 */
static void nix_reset_tx_shaping(struct rvu *rvu, int blkaddr,
				 int lvl, int schq)
{
	u64  cir_reg = 0, pir_reg = 0;
	u64  cfg;

	switch (lvl) {
	case NIX_TXSCH_LVL_TL1:
		cir_reg = NIX_AF_TL1X_CIR(schq);
		pir_reg = 0; /* PIR not available at TL1 */
		break;
	case NIX_TXSCH_LVL_TL2:
		cir_reg = NIX_AF_TL2X_CIR(schq);
		pir_reg = NIX_AF_TL2X_PIR(schq);
		break;
	case NIX_TXSCH_LVL_TL3:
		cir_reg = NIX_AF_TL3X_CIR(schq);
		pir_reg = NIX_AF_TL3X_PIR(schq);
		break;
	case NIX_TXSCH_LVL_TL4:
		cir_reg = NIX_AF_TL4X_CIR(schq);
		pir_reg = NIX_AF_TL4X_PIR(schq);
		break;
	}

	if (!cir_reg)
		return;
	cfg = rvu_read64(rvu, blkaddr, cir_reg);
	rvu_write64(rvu, blkaddr, cir_reg, cfg & ~BIT_ULL(0));

	if (!pir_reg)
		return;
	cfg = rvu_read64(rvu, blkaddr, pir_reg);
	rvu_write64(rvu, blkaddr, pir_reg, cfg & ~BIT_ULL(0));
}

static void nix_reset_tx_linkcfg(struct rvu *rvu, int blkaddr,
				 int lvl, int schq)
{
	struct rvu_hwinfo *hw = rvu->hw;
	int link;

1367 1368 1369
	if (lvl >= hw->cap.nix_tx_aggr_lvl)
		return;

1370 1371 1372 1373
	/* Reset TL4's SDP link config */
	if (lvl == NIX_TXSCH_LVL_TL4)
		rvu_write64(rvu, blkaddr, NIX_AF_TL4X_SDP_LINK_CFG(schq), 0x00);

1374
	if (lvl != NIX_TXSCH_LVL_TL2)
1375 1376
		return;

1377
	/* Reset TL2's CGX or LBK link config */
1378 1379 1380 1381 1382
	for (link = 0; link < (hw->cgx_links + hw->lbk_links); link++)
		rvu_write64(rvu, blkaddr,
			    NIX_AF_TL3_TL2X_LINKX_CFG(schq, link), 0x00);
}

1383
static int nix_get_tx_link(struct rvu *rvu, u16 pcifunc)
1384
{
1385 1386 1387
	struct rvu_hwinfo *hw = rvu->hw;
	int pf = rvu_get_pf(pcifunc);
	u8 cgx_id = 0, lmac_id = 0;
1388

1389 1390 1391 1392 1393 1394
	if (is_afvf(pcifunc)) {/* LBK links */
		return hw->cgx_links;
	} else if (is_pf_cgxmapped(rvu, pf)) {
		rvu_get_cgx_lmac_id(rvu->pf2cgxlmac_map[pf], &cgx_id, &lmac_id);
		return (cgx_id * hw->lmac_per_cgx) + lmac_id;
	}
1395

1396 1397 1398
	/* SDP link */
	return hw->cgx_links + hw->lbk_links;
}
1399

1400 1401 1402 1403 1404
static void nix_get_txschq_range(struct rvu *rvu, u16 pcifunc,
				 int link, int *start, int *end)
{
	struct rvu_hwinfo *hw = rvu->hw;
	int pf = rvu_get_pf(pcifunc);
1405

1406 1407 1408 1409 1410 1411 1412 1413 1414 1415
	if (is_afvf(pcifunc)) { /* LBK links */
		*start = hw->cap.nix_txsch_per_cgx_lmac * link;
		*end = *start + hw->cap.nix_txsch_per_lbk_lmac;
	} else if (is_pf_cgxmapped(rvu, pf)) { /* CGX links */
		*start = hw->cap.nix_txsch_per_cgx_lmac * link;
		*end = *start + hw->cap.nix_txsch_per_cgx_lmac;
	} else { /* SDP link */
		*start = (hw->cap.nix_txsch_per_cgx_lmac * hw->cgx_links) +
			(hw->cap.nix_txsch_per_lbk_lmac * hw->lbk_links);
		*end = *start + hw->cap.nix_txsch_per_sdp_lmac;
1416
	}
1417
}
1418

1419 1420 1421 1422 1423 1424 1425 1426 1427 1428 1429
static int nix_check_txschq_alloc_req(struct rvu *rvu, int lvl, u16 pcifunc,
				      struct nix_hw *nix_hw,
				      struct nix_txsch_alloc_req *req)
{
	struct rvu_hwinfo *hw = rvu->hw;
	int schq, req_schq, free_cnt;
	struct nix_txsch *txsch;
	int link, start, end;

	txsch = &nix_hw->txsch[lvl];
	req_schq = req->schq_contig[lvl] + req->schq[lvl];
1430

1431 1432
	if (!req_schq)
		return 0;
1433

1434
	link = nix_get_tx_link(rvu, pcifunc);
1435

1436 1437 1438 1439 1440
	/* For traffic aggregating scheduler level, one queue is enough */
	if (lvl >= hw->cap.nix_tx_aggr_lvl) {
		if (req_schq != 1)
			return NIX_AF_ERR_TLX_ALLOC_FAIL;
		return 0;
1441 1442
	}

1443 1444 1445 1446 1447 1448 1449 1450 1451 1452 1453
	/* Get free SCHQ count and check if request can be accomodated */
	if (hw->cap.nix_fixed_txschq_mapping) {
		nix_get_txschq_range(rvu, pcifunc, link, &start, &end);
		schq = start + (pcifunc & RVU_PFVF_FUNC_MASK);
		if (end <= txsch->schq.max && schq < end &&
		    !test_bit(schq, txsch->schq.bmap))
			free_cnt = 1;
		else
			free_cnt = 0;
	} else {
		free_cnt = rvu_rsrc_free_count(&txsch->schq);
1454 1455
	}

1456 1457 1458 1459 1460 1461 1462 1463
	if (free_cnt < req_schq || req_schq > MAX_TXSCHQ_PER_FUNC)
		return NIX_AF_ERR_TLX_ALLOC_FAIL;

	/* If contiguous queues are needed, check for availability */
	if (!hw->cap.nix_fixed_txschq_mapping && req->schq_contig[lvl] &&
	    !rvu_rsrc_check_contig(&txsch->schq, req->schq_contig[lvl]))
		return NIX_AF_ERR_TLX_ALLOC_FAIL;

1464 1465 1466
	return 0;
}

1467 1468 1469 1470 1471 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 1511 1512 1513 1514 1515 1516 1517 1518 1519 1520 1521 1522 1523 1524 1525 1526 1527 1528 1529 1530 1531 1532 1533 1534 1535 1536 1537 1538 1539 1540 1541 1542 1543 1544 1545 1546 1547 1548 1549 1550
static void nix_txsch_alloc(struct rvu *rvu, struct nix_txsch *txsch,
			    struct nix_txsch_alloc_rsp *rsp,
			    int lvl, int start, int end)
{
	struct rvu_hwinfo *hw = rvu->hw;
	u16 pcifunc = rsp->hdr.pcifunc;
	int idx, schq;

	/* For traffic aggregating levels, queue alloc is based
	 * on transmit link to which PF_FUNC is mapped to.
	 */
	if (lvl >= hw->cap.nix_tx_aggr_lvl) {
		/* A single TL queue is allocated */
		if (rsp->schq_contig[lvl]) {
			rsp->schq_contig[lvl] = 1;
			rsp->schq_contig_list[lvl][0] = start;
		}

		/* Both contig and non-contig reqs doesn't make sense here */
		if (rsp->schq_contig[lvl])
			rsp->schq[lvl] = 0;

		if (rsp->schq[lvl]) {
			rsp->schq[lvl] = 1;
			rsp->schq_list[lvl][0] = start;
		}
		return;
	}

	/* Adjust the queue request count if HW supports
	 * only one queue per level configuration.
	 */
	if (hw->cap.nix_fixed_txschq_mapping) {
		idx = pcifunc & RVU_PFVF_FUNC_MASK;
		schq = start + idx;
		if (idx >= (end - start) || test_bit(schq, txsch->schq.bmap)) {
			rsp->schq_contig[lvl] = 0;
			rsp->schq[lvl] = 0;
			return;
		}

		if (rsp->schq_contig[lvl]) {
			rsp->schq_contig[lvl] = 1;
			set_bit(schq, txsch->schq.bmap);
			rsp->schq_contig_list[lvl][0] = schq;
			rsp->schq[lvl] = 0;
		} else if (rsp->schq[lvl]) {
			rsp->schq[lvl] = 1;
			set_bit(schq, txsch->schq.bmap);
			rsp->schq_list[lvl][0] = schq;
		}
		return;
	}

	/* Allocate contiguous queue indices requesty first */
	if (rsp->schq_contig[lvl]) {
		schq = bitmap_find_next_zero_area(txsch->schq.bmap,
						  txsch->schq.max, start,
						  rsp->schq_contig[lvl], 0);
		if (schq >= end)
			rsp->schq_contig[lvl] = 0;
		for (idx = 0; idx < rsp->schq_contig[lvl]; idx++) {
			set_bit(schq, txsch->schq.bmap);
			rsp->schq_contig_list[lvl][idx] = schq;
			schq++;
		}
	}

	/* Allocate non-contiguous queue indices */
	if (rsp->schq[lvl]) {
		idx = 0;
		for (schq = start; schq < end; schq++) {
			if (!test_bit(schq, txsch->schq.bmap)) {
				set_bit(schq, txsch->schq.bmap);
				rsp->schq_list[lvl][idx++] = schq;
			}
			if (idx == rsp->schq[lvl])
				break;
		}
		/* Update how many were allocated */
		rsp->schq[lvl] = idx;
	}
}

1551
int rvu_mbox_handler_nix_txsch_alloc(struct rvu *rvu,
1552 1553 1554
				     struct nix_txsch_alloc_req *req,
				     struct nix_txsch_alloc_rsp *rsp)
{
1555
	struct rvu_hwinfo *hw = rvu->hw;
1556
	u16 pcifunc = req->hdr.pcifunc;
1557 1558
	int link, blkaddr, rc = 0;
	int lvl, idx, start, end;
1559 1560 1561
	struct nix_txsch *txsch;
	struct rvu_pfvf *pfvf;
	struct nix_hw *nix_hw;
1562
	u32 *pfvf_map;
1563 1564 1565 1566 1567 1568 1569 1570 1571 1572 1573
	u16 schq;

	pfvf = rvu_get_pfvf(rvu, pcifunc);
	blkaddr = rvu_get_blkaddr(rvu, BLKTYPE_NIX, pcifunc);
	if (!pfvf->nixlf || blkaddr < 0)
		return NIX_AF_ERR_AF_LF_INVALID;

	nix_hw = get_nix_hw(rvu->hw, blkaddr);
	if (!nix_hw)
		return -EINVAL;

1574
	mutex_lock(&rvu->rsrc_lock);
1575

1576 1577 1578 1579 1580 1581
	/* Check if request is valid as per HW capabilities
	 * and can be accomodated.
	 */
	for (lvl = 0; lvl < NIX_TXSCH_LVL_CNT; lvl++) {
		rc = nix_check_txschq_alloc_req(rvu, lvl, pcifunc, nix_hw, req);
		if (rc)
1582 1583 1584
			goto err;
	}

1585
	/* Allocate requested Tx scheduler queues */
1586 1587
	for (lvl = 0; lvl < NIX_TXSCH_LVL_CNT; lvl++) {
		txsch = &nix_hw->txsch[lvl];
1588
		pfvf_map = txsch->pfvf_map;
1589

1590 1591 1592
		if (!req->schq[lvl] && !req->schq_contig[lvl])
			continue;

1593 1594
		rsp->schq[lvl] = req->schq[lvl];
		rsp->schq_contig[lvl] = req->schq_contig[lvl];
1595

1596 1597 1598 1599 1600 1601 1602 1603 1604 1605
		link = nix_get_tx_link(rvu, pcifunc);

		if (lvl >= hw->cap.nix_tx_aggr_lvl) {
			start = link;
			end = link;
		} else if (hw->cap.nix_fixed_txschq_mapping) {
			nix_get_txschq_range(rvu, pcifunc, link, &start, &end);
		} else {
			start = 0;
			end = txsch->schq.max;
1606 1607
		}

1608
		nix_txsch_alloc(rvu, txsch, rsp, lvl, start, end);
1609

1610 1611 1612 1613 1614
		/* Reset queue config */
		for (idx = 0; idx < req->schq_contig[lvl]; idx++) {
			schq = rsp->schq_contig_list[lvl][idx];
			if (!(TXSCH_MAP_FLAGS(pfvf_map[schq]) &
			    NIX_TXSCHQ_CFG_DONE))
1615
				pfvf_map[schq] = TXSCH_MAP(pcifunc, 0);
1616 1617
			nix_reset_tx_linkcfg(rvu, blkaddr, lvl, schq);
			nix_reset_tx_shaping(rvu, blkaddr, lvl, schq);
1618 1619 1620
		}

		for (idx = 0; idx < req->schq[lvl]; idx++) {
1621 1622 1623 1624
			schq = rsp->schq_list[lvl][idx];
			if (!(TXSCH_MAP_FLAGS(pfvf_map[schq]) &
			    NIX_TXSCHQ_CFG_DONE))
				pfvf_map[schq] = TXSCH_MAP(pcifunc, 0);
1625 1626 1627 1628
			nix_reset_tx_linkcfg(rvu, blkaddr, lvl, schq);
			nix_reset_tx_shaping(rvu, blkaddr, lvl, schq);
		}
	}
1629 1630 1631 1632 1633 1634

	rsp->aggr_level = hw->cap.nix_tx_aggr_lvl;
	rsp->aggr_lvl_rr_prio = TXSCH_TL1_DFLT_RR_PRIO;
	rsp->link_cfg_lvl = rvu_read64(rvu, blkaddr,
				       NIX_AF_PSE_CHANNEL_LEVEL) & 0x01 ?
				       NIX_TXSCH_LVL_TL3 : NIX_TXSCH_LVL_TL2;
1635 1636 1637 1638
	goto exit;
err:
	rc = NIX_AF_ERR_TLX_ALLOC_FAIL;
exit:
1639
	mutex_unlock(&rvu->rsrc_lock);
1640 1641 1642
	return rc;
}

1643 1644 1645 1646 1647 1648 1649 1650 1651 1652 1653 1654 1655 1656 1657 1658 1659 1660 1661 1662 1663 1664 1665 1666 1667 1668 1669 1670 1671 1672 1673 1674 1675 1676 1677 1678 1679 1680
static void nix_smq_flush(struct rvu *rvu, int blkaddr,
			  int smq, u16 pcifunc, int nixlf)
{
	int pf = rvu_get_pf(pcifunc);
	u8 cgx_id = 0, lmac_id = 0;
	int err, restore_tx_en = 0;
	u64 cfg;

	/* enable cgx tx if disabled */
	if (is_pf_cgxmapped(rvu, pf)) {
		rvu_get_cgx_lmac_id(rvu->pf2cgxlmac_map[pf], &cgx_id, &lmac_id);
		restore_tx_en = !cgx_lmac_tx_enable(rvu_cgx_pdata(cgx_id, rvu),
						    lmac_id, true);
	}

	cfg = rvu_read64(rvu, blkaddr, NIX_AF_SMQX_CFG(smq));
	/* Do SMQ flush and set enqueue xoff */
	cfg |= BIT_ULL(50) | BIT_ULL(49);
	rvu_write64(rvu, blkaddr, NIX_AF_SMQX_CFG(smq), cfg);

	/* Disable backpressure from physical link,
	 * otherwise SMQ flush may stall.
	 */
	rvu_cgx_enadis_rx_bp(rvu, pf, false);

	/* Wait for flush to complete */
	err = rvu_poll_reg(rvu, blkaddr,
			   NIX_AF_SMQX_CFG(smq), BIT_ULL(49), true);
	if (err)
		dev_err(rvu->dev,
			"NIXLF%d: SMQ%d flush failed\n", nixlf, smq);

	rvu_cgx_enadis_rx_bp(rvu, pf, true);
	/* restore cgx tx state */
	if (restore_tx_en)
		cgx_lmac_tx_enable(rvu_cgx_pdata(cgx_id, rvu), lmac_id, false);
}

1681 1682 1683 1684 1685 1686 1687 1688 1689 1690 1691 1692 1693 1694 1695 1696 1697 1698 1699 1700
static int nix_txschq_free(struct rvu *rvu, u16 pcifunc)
{
	int blkaddr, nixlf, lvl, schq, err;
	struct rvu_hwinfo *hw = rvu->hw;
	struct nix_txsch *txsch;
	struct nix_hw *nix_hw;

	blkaddr = rvu_get_blkaddr(rvu, BLKTYPE_NIX, pcifunc);
	if (blkaddr < 0)
		return NIX_AF_ERR_AF_LF_INVALID;

	nix_hw = get_nix_hw(rvu->hw, blkaddr);
	if (!nix_hw)
		return -EINVAL;

	nixlf = rvu_get_lf(rvu, &hw->block[blkaddr], pcifunc, 0);
	if (nixlf < 0)
		return NIX_AF_ERR_AF_LF_INVALID;

	/* Disable TL2/3 queue links before SMQ flush*/
1701
	mutex_lock(&rvu->rsrc_lock);
1702
	for (lvl = NIX_TXSCH_LVL_TL4; lvl < NIX_TXSCH_LVL_CNT; lvl++) {
1703
		if (lvl != NIX_TXSCH_LVL_TL2 && lvl != NIX_TXSCH_LVL_TL4)
1704 1705 1706 1707
			continue;

		txsch = &nix_hw->txsch[lvl];
		for (schq = 0; schq < txsch->schq.max; schq++) {
1708
			if (TXSCH_MAP_FUNC(txsch->pfvf_map[schq]) != pcifunc)
1709 1710 1711 1712 1713 1714 1715 1716
				continue;
			nix_reset_tx_linkcfg(rvu, blkaddr, lvl, schq);
		}
	}

	/* Flush SMQs */
	txsch = &nix_hw->txsch[NIX_TXSCH_LVL_SMQ];
	for (schq = 0; schq < txsch->schq.max; schq++) {
1717
		if (TXSCH_MAP_FUNC(txsch->pfvf_map[schq]) != pcifunc)
1718
			continue;
1719
		nix_smq_flush(rvu, blkaddr, schq, pcifunc, nixlf);
1720 1721 1722 1723
	}

	/* Now free scheduler queues to free pool */
	for (lvl = 0; lvl < NIX_TXSCH_LVL_CNT; lvl++) {
1724 1725 1726 1727
		 /* TLs above aggregation level are shared across all PF
		  * and it's VFs, hence skip freeing them.
		  */
		if (lvl >= hw->cap.nix_tx_aggr_lvl)
1728 1729
			continue;

1730 1731
		txsch = &nix_hw->txsch[lvl];
		for (schq = 0; schq < txsch->schq.max; schq++) {
1732
			if (TXSCH_MAP_FUNC(txsch->pfvf_map[schq]) != pcifunc)
1733 1734
				continue;
			rvu_free_rsrc(&txsch->schq, schq);
1735
			txsch->pfvf_map[schq] = TXSCH_MAP(0, NIX_TXSCHQ_FREE);
1736 1737
		}
	}
1738
	mutex_unlock(&rvu->rsrc_lock);
1739 1740 1741 1742 1743 1744 1745 1746 1747 1748

	/* Sync cached info for this LF in NDC-TX to LLC/DRAM */
	rvu_write64(rvu, blkaddr, NIX_AF_NDC_TX_SYNC, BIT_ULL(12) | nixlf);
	err = rvu_poll_reg(rvu, blkaddr, NIX_AF_NDC_TX_SYNC, BIT_ULL(12), true);
	if (err)
		dev_err(rvu->dev, "NDC-TX sync failed for NIXLF %d\n", nixlf);

	return 0;
}

1749 1750 1751 1752 1753
static int nix_txschq_free_one(struct rvu *rvu,
			       struct nix_txsch_free_req *req)
{
	struct rvu_hwinfo *hw = rvu->hw;
	u16 pcifunc = req->hdr.pcifunc;
1754
	int lvl, schq, nixlf, blkaddr;
1755 1756 1757 1758 1759 1760 1761 1762 1763 1764 1765 1766 1767 1768 1769 1770 1771 1772 1773 1774
	struct nix_txsch *txsch;
	struct nix_hw *nix_hw;
	u32 *pfvf_map;

	blkaddr = rvu_get_blkaddr(rvu, BLKTYPE_NIX, pcifunc);
	if (blkaddr < 0)
		return NIX_AF_ERR_AF_LF_INVALID;

	nix_hw = get_nix_hw(rvu->hw, blkaddr);
	if (!nix_hw)
		return -EINVAL;

	nixlf = rvu_get_lf(rvu, &hw->block[blkaddr], pcifunc, 0);
	if (nixlf < 0)
		return NIX_AF_ERR_AF_LF_INVALID;

	lvl = req->schq_lvl;
	schq = req->schq;
	txsch = &nix_hw->txsch[lvl];

1775 1776
	if (lvl >= hw->cap.nix_tx_aggr_lvl || schq >= txsch->schq.max)
		return 0;
1777 1778 1779 1780 1781 1782 1783 1784 1785 1786 1787 1788

	pfvf_map = txsch->pfvf_map;
	mutex_lock(&rvu->rsrc_lock);

	if (TXSCH_MAP_FUNC(pfvf_map[schq]) != pcifunc) {
		mutex_unlock(&rvu->rsrc_lock);
		goto err;
	}

	/* Flush if it is a SMQ. Onus of disabling
	 * TL2/3 queue links before SMQ flush is on user
	 */
1789 1790
	if (lvl == NIX_TXSCH_LVL_SMQ)
		nix_smq_flush(rvu, blkaddr, schq, pcifunc, nixlf);
1791 1792 1793

	/* Free the resource */
	rvu_free_rsrc(&txsch->schq, schq);
1794
	txsch->pfvf_map[schq] = TXSCH_MAP(0, NIX_TXSCHQ_FREE);
1795 1796 1797 1798 1799 1800
	mutex_unlock(&rvu->rsrc_lock);
	return 0;
err:
	return NIX_AF_ERR_TLX_INVALID;
}

1801
int rvu_mbox_handler_nix_txsch_free(struct rvu *rvu,
1802 1803 1804
				    struct nix_txsch_free_req *req,
				    struct msg_rsp *rsp)
{
1805 1806 1807 1808
	if (req->flags & TXSCHQ_FREE_ALL)
		return nix_txschq_free(rvu, req->hdr.pcifunc);
	else
		return nix_txschq_free_one(rvu, req);
1809 1810
}

1811 1812
static bool is_txschq_hierarchy_valid(struct rvu *rvu, u16 pcifunc, int blkaddr,
				      int lvl, u64 reg, u64 regval)
1813 1814 1815 1816 1817 1818 1819 1820 1821 1822 1823 1824 1825 1826 1827 1828 1829 1830 1831 1832 1833 1834 1835 1836 1837 1838 1839 1840 1841 1842 1843 1844 1845 1846 1847 1848
{
	u64 regbase = reg & 0xFFFF;
	u16 schq, parent;

	if (!rvu_check_valid_reg(TXSCHQ_HWREGMAP, lvl, reg))
		return false;

	schq = TXSCHQ_IDX(reg, TXSCHQ_IDX_SHIFT);
	/* Check if this schq belongs to this PF/VF or not */
	if (!is_valid_txschq(rvu, blkaddr, lvl, pcifunc, schq))
		return false;

	parent = (regval >> 16) & 0x1FF;
	/* Validate MDQ's TL4 parent */
	if (regbase == NIX_AF_MDQX_PARENT(0) &&
	    !is_valid_txschq(rvu, blkaddr, NIX_TXSCH_LVL_TL4, pcifunc, parent))
		return false;

	/* Validate TL4's TL3 parent */
	if (regbase == NIX_AF_TL4X_PARENT(0) &&
	    !is_valid_txschq(rvu, blkaddr, NIX_TXSCH_LVL_TL3, pcifunc, parent))
		return false;

	/* Validate TL3's TL2 parent */
	if (regbase == NIX_AF_TL3X_PARENT(0) &&
	    !is_valid_txschq(rvu, blkaddr, NIX_TXSCH_LVL_TL2, pcifunc, parent))
		return false;

	/* Validate TL2's TL1 parent */
	if (regbase == NIX_AF_TL2X_PARENT(0) &&
	    !is_valid_txschq(rvu, blkaddr, NIX_TXSCH_LVL_TL1, pcifunc, parent))
		return false;

	return true;
}

1849
static bool is_txschq_shaping_valid(struct rvu_hwinfo *hw, int lvl, u64 reg)
1850
{
1851
	u64 regbase;
1852

1853 1854
	if (hw->cap.nix_shaping)
		return true;
1855

1856 1857 1858 1859
	/* If shaping and coloring is not supported, then
	 * *_CIR and *_PIR registers should not be configured.
	 */
	regbase = reg & 0xFFFF;
1860

1861 1862 1863 1864 1865 1866 1867 1868 1869 1870 1871 1872 1873 1874 1875 1876 1877 1878 1879 1880 1881 1882 1883
	switch (lvl) {
	case NIX_TXSCH_LVL_TL1:
		if (regbase == NIX_AF_TL1X_CIR(0))
			return false;
		break;
	case NIX_TXSCH_LVL_TL2:
		if (regbase == NIX_AF_TL2X_CIR(0) ||
		    regbase == NIX_AF_TL2X_PIR(0))
			return false;
		break;
	case NIX_TXSCH_LVL_TL3:
		if (regbase == NIX_AF_TL3X_CIR(0) ||
		    regbase == NIX_AF_TL3X_PIR(0))
			return false;
		break;
	case NIX_TXSCH_LVL_TL4:
		if (regbase == NIX_AF_TL4X_CIR(0) ||
		    regbase == NIX_AF_TL4X_PIR(0))
			return false;
		break;
	}
	return true;
}
1884

1885 1886 1887 1888 1889
static void nix_tl1_default_cfg(struct rvu *rvu, struct nix_hw *nix_hw,
				u16 pcifunc, int blkaddr)
{
	u32 *pfvf_map;
	int schq;
1890

1891 1892 1893 1894 1895 1896 1897 1898 1899 1900 1901
	schq = nix_get_tx_link(rvu, pcifunc);
	pfvf_map = nix_hw->txsch[NIX_TXSCH_LVL_TL1].pfvf_map;
	/* Skip if PF has already done the config */
	if (TXSCH_MAP_FLAGS(pfvf_map[schq]) & NIX_TXSCHQ_CFG_DONE)
		return;
	rvu_write64(rvu, blkaddr, NIX_AF_TL1X_TOPOLOGY(schq),
		    (TXSCH_TL1_DFLT_RR_PRIO << 1));
	rvu_write64(rvu, blkaddr, NIX_AF_TL1X_SCHEDULE(schq),
		    TXSCH_TL1_DFLT_RR_QTM);
	rvu_write64(rvu, blkaddr, NIX_AF_TL1X_CIR(schq), 0x00);
	pfvf_map[schq] = TXSCH_SET_FLAG(pfvf_map[schq], NIX_TXSCHQ_CFG_DONE);
1902 1903
}

1904
int rvu_mbox_handler_nix_txschq_cfg(struct rvu *rvu,
1905 1906 1907 1908
				    struct nix_txschq_config *req,
				    struct msg_rsp *rsp)
{
	struct rvu_hwinfo *hw = rvu->hw;
1909
	u16 pcifunc = req->hdr.pcifunc;
1910 1911 1912 1913
	u64 reg, regval, schq_regbase;
	struct nix_txsch *txsch;
	struct nix_hw *nix_hw;
	int blkaddr, idx, err;
1914
	int nixlf, schq;
1915
	u32 *pfvf_map;
1916 1917 1918 1919 1920

	if (req->lvl >= NIX_TXSCH_LVL_CNT ||
	    req->num_regs > MAX_REGS_PER_MBOX_MSG)
		return NIX_AF_INVAL_TXSCHQ_CFG;

1921
	err = nix_get_nixlf(rvu, pcifunc, &nixlf, &blkaddr);
1922
	if (err)
1923
		return err;
1924 1925 1926 1927 1928 1929

	nix_hw = get_nix_hw(rvu->hw, blkaddr);
	if (!nix_hw)
		return -EINVAL;

	txsch = &nix_hw->txsch[req->lvl];
1930 1931
	pfvf_map = txsch->pfvf_map;

1932 1933 1934 1935 1936 1937 1938
	if (req->lvl >= hw->cap.nix_tx_aggr_lvl &&
	    pcifunc & RVU_PFVF_FUNC_MASK) {
		mutex_lock(&rvu->rsrc_lock);
		if (req->lvl == NIX_TXSCH_LVL_TL1)
			nix_tl1_default_cfg(rvu, nix_hw, pcifunc, blkaddr);
		mutex_unlock(&rvu->rsrc_lock);
		return 0;
1939 1940
	}

1941 1942 1943 1944 1945
	for (idx = 0; idx < req->num_regs; idx++) {
		reg = req->reg[idx];
		regval = req->regval[idx];
		schq_regbase = reg & 0xFFFF;

1946 1947
		if (!is_txschq_hierarchy_valid(rvu, pcifunc, blkaddr,
					       txsch->lvl, reg, regval))
1948 1949
			return NIX_AF_INVAL_TXSCHQ_CFG;

1950 1951 1952 1953
		/* Check if shaping and coloring is supported */
		if (!is_txschq_shaping_valid(hw, req->lvl, reg))
			continue;

1954 1955 1956 1957 1958 1959 1960 1961
		/* Replace PF/VF visible NIXLF slot with HW NIXLF id */
		if (schq_regbase == NIX_AF_SMQX_CFG(0)) {
			nixlf = rvu_get_lf(rvu, &hw->block[blkaddr],
					   pcifunc, 0);
			regval &= ~(0x7FULL << 24);
			regval |= ((u64)nixlf << 24);
		}

1962 1963 1964 1965 1966 1967 1968 1969
		/* Clear 'BP_ENA' config, if it's not allowed */
		if (!hw->cap.nix_tx_link_bp) {
			if (schq_regbase == NIX_AF_TL4X_SDP_LINK_CFG(0) ||
			    (schq_regbase & 0xFF00) ==
			    NIX_AF_TL3_TL2X_LINKX_CFG(0, 0))
				regval &= ~BIT_ULL(13);
		}

1970 1971 1972 1973 1974
		/* Mark config as done for TL1 by PF */
		if (schq_regbase >= NIX_AF_TL1X_SCHEDULE(0) &&
		    schq_regbase <= NIX_AF_TL1X_GREEN_BYTES(0)) {
			schq = TXSCHQ_IDX(reg, TXSCHQ_IDX_SHIFT);
			mutex_lock(&rvu->rsrc_lock);
1975 1976
			pfvf_map[schq] = TXSCH_SET_FLAG(pfvf_map[schq],
							NIX_TXSCHQ_CFG_DONE);
1977 1978 1979
			mutex_unlock(&rvu->rsrc_lock);
		}

1980 1981 1982
		/* SMQ flush is special hence split register writes such
		 * that flush first and write rest of the bits later.
		 */
1983 1984
		if (schq_regbase == NIX_AF_SMQX_CFG(0) &&
		    (regval & BIT_ULL(49))) {
1985 1986 1987
			schq = TXSCHQ_IDX(reg, TXSCHQ_IDX_SHIFT);
			nix_smq_flush(rvu, blkaddr, schq, pcifunc, nixlf);
			regval &= ~BIT_ULL(49);
1988
		}
1989
		rvu_write64(rvu, blkaddr, reg, regval);
1990
	}
1991

1992 1993 1994
	return 0;
}

1995 1996 1997
static int nix_rx_vtag_cfg(struct rvu *rvu, int nixlf, int blkaddr,
			   struct nix_vtag_config *req)
{
1998
	u64 regval = req->vtag_size;
1999

2000 2001
	if (req->rx.vtag_type > NIX_AF_LFX_RX_VTAG_TYPE7 ||
	    req->vtag_size > VTAGSIZE_T8)
2002 2003
		return -EINVAL;

2004 2005 2006 2007
	/* RX VTAG Type 7 reserved for vf vlan */
	if (req->rx.vtag_type == NIX_AF_LFX_RX_VTAG_TYPE7)
		return NIX_AF_ERR_RX_VTAG_INUSE;

2008 2009 2010
	if (req->rx.capture_vtag)
		regval |= BIT_ULL(5);
	if (req->rx.strip_vtag)
2011 2012 2013 2014 2015 2016 2017
		regval |= BIT_ULL(4);

	rvu_write64(rvu, blkaddr,
		    NIX_AF_LFX_RX_VTAG_TYPEX(nixlf, req->rx.vtag_type), regval);
	return 0;
}

2018 2019 2020 2021 2022 2023 2024 2025 2026 2027 2028 2029 2030 2031 2032 2033 2034 2035 2036 2037 2038 2039 2040 2041 2042 2043 2044 2045 2046 2047 2048 2049 2050 2051 2052 2053 2054 2055 2056 2057 2058 2059 2060 2061 2062 2063 2064 2065 2066 2067 2068 2069 2070 2071 2072 2073 2074 2075 2076 2077 2078 2079 2080 2081 2082 2083 2084 2085 2086 2087 2088 2089 2090 2091 2092 2093 2094 2095
static int nix_tx_vtag_free(struct rvu *rvu, int blkaddr,
			    u16 pcifunc, int index)
{
	struct nix_hw *nix_hw = get_nix_hw(rvu->hw, blkaddr);
	struct nix_txvlan *vlan = &nix_hw->txvlan;

	if (vlan->entry2pfvf_map[index] != pcifunc)
		return NIX_AF_ERR_PARAM;

	rvu_write64(rvu, blkaddr,
		    NIX_AF_TX_VTAG_DEFX_DATA(index), 0x0ull);
	rvu_write64(rvu, blkaddr,
		    NIX_AF_TX_VTAG_DEFX_CTL(index), 0x0ull);

	vlan->entry2pfvf_map[index] = 0;
	rvu_free_rsrc(&vlan->rsrc, index);

	return 0;
}

static void nix_free_tx_vtag_entries(struct rvu *rvu, u16 pcifunc)
{
	struct nix_txvlan *vlan;
	struct nix_hw *nix_hw;
	int index, blkaddr;

	blkaddr = rvu_get_blkaddr(rvu, BLKTYPE_NIX, pcifunc);
	if (blkaddr < 0)
		return;

	nix_hw = get_nix_hw(rvu->hw, blkaddr);
	vlan = &nix_hw->txvlan;

	mutex_lock(&vlan->rsrc_lock);
	/* Scan all the entries and free the ones mapped to 'pcifunc' */
	for (index = 0; index < vlan->rsrc.max; index++) {
		if (vlan->entry2pfvf_map[index] == pcifunc)
			nix_tx_vtag_free(rvu, blkaddr, pcifunc, index);
	}
	mutex_unlock(&vlan->rsrc_lock);
}

static int nix_tx_vtag_alloc(struct rvu *rvu, int blkaddr,
			     u64 vtag, u8 size)
{
	struct nix_hw *nix_hw = get_nix_hw(rvu->hw, blkaddr);
	struct nix_txvlan *vlan = &nix_hw->txvlan;
	u64 regval;
	int index;

	mutex_lock(&vlan->rsrc_lock);

	index = rvu_alloc_rsrc(&vlan->rsrc);
	if (index < 0) {
		mutex_unlock(&vlan->rsrc_lock);
		return index;
	}

	mutex_unlock(&vlan->rsrc_lock);

	regval = size ? vtag : vtag << 32;

	rvu_write64(rvu, blkaddr,
		    NIX_AF_TX_VTAG_DEFX_DATA(index), regval);
	rvu_write64(rvu, blkaddr,
		    NIX_AF_TX_VTAG_DEFX_CTL(index), size);

	return index;
}

static int nix_tx_vtag_decfg(struct rvu *rvu, int blkaddr,
			     struct nix_vtag_config *req)
{
	struct nix_hw *nix_hw = get_nix_hw(rvu->hw, blkaddr);
	struct nix_txvlan *vlan = &nix_hw->txvlan;
	u16 pcifunc = req->hdr.pcifunc;
	int idx0 = req->tx.vtag0_idx;
	int idx1 = req->tx.vtag1_idx;
2096
	int err = 0;
2097 2098 2099 2100 2101 2102 2103 2104 2105 2106 2107 2108 2109 2110 2111 2112 2113 2114 2115 2116 2117 2118 2119 2120 2121 2122 2123 2124 2125 2126 2127 2128 2129 2130 2131 2132 2133 2134 2135 2136 2137 2138 2139 2140 2141 2142 2143 2144 2145 2146 2147 2148 2149 2150 2151 2152 2153 2154 2155 2156 2157

	if (req->tx.free_vtag0 && req->tx.free_vtag1)
		if (vlan->entry2pfvf_map[idx0] != pcifunc ||
		    vlan->entry2pfvf_map[idx1] != pcifunc)
			return NIX_AF_ERR_PARAM;

	mutex_lock(&vlan->rsrc_lock);

	if (req->tx.free_vtag0) {
		err = nix_tx_vtag_free(rvu, blkaddr, pcifunc, idx0);
		if (err)
			goto exit;
	}

	if (req->tx.free_vtag1)
		err = nix_tx_vtag_free(rvu, blkaddr, pcifunc, idx1);

exit:
	mutex_unlock(&vlan->rsrc_lock);
	return err;
}

static int nix_tx_vtag_cfg(struct rvu *rvu, int blkaddr,
			   struct nix_vtag_config *req,
			   struct nix_vtag_config_rsp *rsp)
{
	struct nix_hw *nix_hw = get_nix_hw(rvu->hw, blkaddr);
	struct nix_txvlan *vlan = &nix_hw->txvlan;
	u16 pcifunc = req->hdr.pcifunc;

	if (req->tx.cfg_vtag0) {
		rsp->vtag0_idx =
			nix_tx_vtag_alloc(rvu, blkaddr,
					  req->tx.vtag0, req->vtag_size);

		if (rsp->vtag0_idx < 0)
			return NIX_AF_ERR_TX_VTAG_NOSPC;

		vlan->entry2pfvf_map[rsp->vtag0_idx] = pcifunc;
	}

	if (req->tx.cfg_vtag1) {
		rsp->vtag1_idx =
			nix_tx_vtag_alloc(rvu, blkaddr,
					  req->tx.vtag1, req->vtag_size);

		if (rsp->vtag1_idx < 0)
			goto err_free;

		vlan->entry2pfvf_map[rsp->vtag1_idx] = pcifunc;
	}

	return 0;

err_free:
	if (req->tx.cfg_vtag0)
		nix_tx_vtag_free(rvu, blkaddr, pcifunc, rsp->vtag0_idx);

	return NIX_AF_ERR_TX_VTAG_NOSPC;
}

2158
int rvu_mbox_handler_nix_vtag_cfg(struct rvu *rvu,
2159
				  struct nix_vtag_config *req,
2160
				  struct nix_vtag_config_rsp *rsp)
2161 2162 2163 2164
{
	u16 pcifunc = req->hdr.pcifunc;
	int blkaddr, nixlf, err;

2165 2166 2167
	err = nix_get_nixlf(rvu, pcifunc, &nixlf, &blkaddr);
	if (err)
		return err;
2168 2169

	if (req->cfg_type) {
2170
		/* rx vtag configuration */
2171 2172 2173 2174
		err = nix_rx_vtag_cfg(rvu, nixlf, blkaddr, req);
		if (err)
			return NIX_AF_ERR_PARAM;
	} else {
2175 2176 2177 2178 2179 2180 2181 2182 2183 2184
		/* tx vtag configuration */
		if ((req->tx.cfg_vtag0 || req->tx.cfg_vtag1) &&
		    (req->tx.free_vtag0 || req->tx.free_vtag1))
			return NIX_AF_ERR_PARAM;

		if (req->tx.cfg_vtag0 || req->tx.cfg_vtag1)
			return nix_tx_vtag_cfg(rvu, blkaddr, req, rsp);

		if (req->tx.free_vtag0 || req->tx.free_vtag1)
			return nix_tx_vtag_decfg(rvu, blkaddr, req);
2185 2186 2187 2188 2189
	}

	return 0;
}

2190 2191
static int nix_blk_setup_mce(struct rvu *rvu, struct nix_hw *nix_hw,
			     int mce, u8 op, u16 pcifunc, int next, bool eol)
2192 2193 2194 2195
{
	struct nix_aq_enq_req aq_req;
	int err;

2196
	aq_req.hdr.pcifunc = 0;
2197 2198 2199 2200 2201 2202 2203 2204 2205 2206 2207 2208 2209 2210
	aq_req.ctype = NIX_AQ_CTYPE_MCE;
	aq_req.op = op;
	aq_req.qidx = mce;

	/* Forward bcast pkts to RQ0, RSS not needed */
	aq_req.mce.op = 0;
	aq_req.mce.index = 0;
	aq_req.mce.eol = eol;
	aq_req.mce.pf_func = pcifunc;
	aq_req.mce.next = next;

	/* All fields valid */
	*(u64 *)(&aq_req.mce_mask) = ~0ULL;

2211
	err = rvu_nix_blk_aq_enq_inst(rvu, nix_hw, &aq_req, NULL);
2212 2213 2214 2215 2216 2217 2218 2219
	if (err) {
		dev_err(rvu->dev, "Failed to setup Bcast MCE for PF%d:VF%d\n",
			rvu_get_pf(pcifunc), pcifunc & RVU_PFVF_FUNC_MASK);
		return err;
	}
	return 0;
}

2220
static int nix_update_mce_list(struct nix_mce_list *mce_list,
2221
			       u16 pcifunc, bool add)
2222 2223 2224 2225 2226 2227 2228 2229 2230 2231 2232 2233 2234 2235 2236 2237 2238 2239 2240 2241 2242 2243 2244 2245 2246
{
	struct mce *mce, *tail = NULL;
	bool delete = false;

	/* Scan through the current list */
	hlist_for_each_entry(mce, &mce_list->head, node) {
		/* If already exists, then delete */
		if (mce->pcifunc == pcifunc && !add) {
			delete = true;
			break;
		}
		tail = mce;
	}

	if (delete) {
		hlist_del(&mce->node);
		kfree(mce);
		mce_list->count--;
		return 0;
	}

	if (!add)
		return 0;

	/* Add a new one to the list, at the tail */
2247
	mce = kzalloc(sizeof(*mce), GFP_KERNEL);
2248 2249 2250 2251 2252 2253 2254 2255 2256 2257 2258
	if (!mce)
		return -ENOMEM;
	mce->pcifunc = pcifunc;
	if (!tail)
		hlist_add_head(&mce->node, &mce_list->head);
	else
		hlist_add_behind(&mce->node, &tail->node);
	mce_list->count++;
	return 0;
}

2259
int nix_update_bcast_mce_list(struct rvu *rvu, u16 pcifunc, bool add)
2260
{
2261
	int err = 0, idx, next_idx, last_idx;
2262 2263 2264 2265
	struct nix_mce_list *mce_list;
	struct nix_mcast *mcast;
	struct nix_hw *nix_hw;
	struct rvu_pfvf *pfvf;
2266
	struct mce *mce;
2267 2268
	int blkaddr;

2269 2270 2271 2272
	/* Broadcast pkt replication is not needed for AF's VFs, hence skip */
	if (is_afvf(pcifunc))
		return 0;

2273 2274 2275 2276 2277 2278 2279 2280 2281 2282 2283 2284 2285 2286 2287 2288 2289 2290 2291 2292 2293 2294 2295
	blkaddr = rvu_get_blkaddr(rvu, BLKTYPE_NIX, pcifunc);
	if (blkaddr < 0)
		return 0;

	nix_hw = get_nix_hw(rvu->hw, blkaddr);
	if (!nix_hw)
		return 0;

	mcast = &nix_hw->mcast;

	/* Get this PF/VF func's MCE index */
	pfvf = rvu_get_pfvf(rvu, pcifunc & ~RVU_PFVF_FUNC_MASK);
	idx = pfvf->bcast_mce_idx + (pcifunc & RVU_PFVF_FUNC_MASK);

	mce_list = &pfvf->bcast_mce_list;
	if (idx > (pfvf->bcast_mce_idx + mce_list->max)) {
		dev_err(rvu->dev,
			"%s: Idx %d > max MCE idx %d, for PF%d bcast list\n",
			__func__, idx, mce_list->max,
			pcifunc >> RVU_PFVF_PF_SHIFT);
		return -EINVAL;
	}

2296
	mutex_lock(&mcast->mce_lock);
2297

2298
	err = nix_update_mce_list(mce_list, pcifunc, add);
2299 2300 2301 2302
	if (err)
		goto end;

	/* Disable MCAM entry in NPC */
2303
	if (!mce_list->count) {
2304
		rvu_npc_enable_bcast_entry(rvu, pcifunc, false);
2305
		goto end;
2306
	}
2307 2308

	/* Dump the updated list to HW */
2309 2310
	idx = pfvf->bcast_mce_idx;
	last_idx = idx + mce_list->count - 1;
2311
	hlist_for_each_entry(mce, &mce_list->head, node) {
2312 2313 2314 2315
		if (idx > last_idx)
			break;

		next_idx = idx + 1;
2316
		/* EOL should be set in last MCE */
2317 2318 2319
		err = nix_blk_setup_mce(rvu, nix_hw, idx, NIX_AQ_INSTOP_WRITE,
					mce->pcifunc, next_idx,
					(next_idx > last_idx) ? true : false);
2320 2321
		if (err)
			goto end;
2322
		idx++;
2323 2324 2325
	}

end:
2326
	mutex_unlock(&mcast->mce_lock);
2327 2328 2329
	return err;
}

2330 2331 2332 2333 2334 2335 2336 2337 2338 2339 2340 2341 2342 2343 2344 2345 2346 2347
static int nix_setup_bcast_tables(struct rvu *rvu, struct nix_hw *nix_hw)
{
	struct nix_mcast *mcast = &nix_hw->mcast;
	int err, pf, numvfs, idx;
	struct rvu_pfvf *pfvf;
	u16 pcifunc;
	u64 cfg;

	/* Skip PF0 (i.e AF) */
	for (pf = 1; pf < (rvu->cgx_mapped_pfs + 1); pf++) {
		cfg = rvu_read64(rvu, BLKADDR_RVUM, RVU_PRIV_PFX_CFG(pf));
		/* If PF is not enabled, nothing to do */
		if (!((cfg >> 20) & 0x01))
			continue;
		/* Get numVFs attached to this PF */
		numvfs = (cfg >> 12) & 0xFF;

		pfvf = &rvu->pf[pf];
2348 2349 2350 2351 2352

		/* This NIX0/1 block mapped to PF ? */
		if (pfvf->nix_blkaddr != nix_hw->blkaddr)
			continue;

2353 2354 2355 2356 2357 2358 2359 2360 2361 2362 2363 2364 2365 2366
		/* Save the start MCE */
		pfvf->bcast_mce_idx = nix_alloc_mce_list(mcast, numvfs + 1);

		nix_mce_list_init(&pfvf->bcast_mce_list, numvfs + 1);

		for (idx = 0; idx < (numvfs + 1); idx++) {
			/* idx-0 is for PF, followed by VFs */
			pcifunc = (pf << RVU_PFVF_PF_SHIFT);
			pcifunc |= idx;
			/* Add dummy entries now, so that we don't have to check
			 * for whether AQ_OP should be INIT/WRITE later on.
			 * Will be updated when a NIXLF is attached/detached to
			 * these PF/VFs.
			 */
2367 2368 2369 2370
			err = nix_blk_setup_mce(rvu, nix_hw,
						pfvf->bcast_mce_idx + idx,
						NIX_AQ_INSTOP_INIT,
						pcifunc, 0, true);
2371 2372 2373 2374 2375 2376 2377 2378 2379 2380 2381 2382 2383 2384 2385 2386 2387 2388 2389 2390 2391 2392 2393 2394 2395 2396 2397 2398 2399 2400 2401 2402 2403 2404 2405 2406 2407 2408 2409 2410 2411 2412 2413 2414 2415 2416
			if (err)
				return err;
		}
	}
	return 0;
}

static int nix_setup_mcast(struct rvu *rvu, struct nix_hw *nix_hw, int blkaddr)
{
	struct nix_mcast *mcast = &nix_hw->mcast;
	struct rvu_hwinfo *hw = rvu->hw;
	int err, size;

	size = (rvu_read64(rvu, blkaddr, NIX_AF_CONST3) >> 16) & 0x0F;
	size = (1ULL << size);

	/* Alloc memory for multicast/mirror replication entries */
	err = qmem_alloc(rvu->dev, &mcast->mce_ctx,
			 (256UL << MC_TBL_SIZE), size);
	if (err)
		return -ENOMEM;

	rvu_write64(rvu, blkaddr, NIX_AF_RX_MCAST_BASE,
		    (u64)mcast->mce_ctx->iova);

	/* Set max list length equal to max no of VFs per PF  + PF itself */
	rvu_write64(rvu, blkaddr, NIX_AF_RX_MCAST_CFG,
		    BIT_ULL(36) | (hw->max_vfs_per_pf << 4) | MC_TBL_SIZE);

	/* Alloc memory for multicast replication buffers */
	size = rvu_read64(rvu, blkaddr, NIX_AF_MC_MIRROR_CONST) & 0xFFFF;
	err = qmem_alloc(rvu->dev, &mcast->mcast_buf,
			 (8UL << MC_BUF_CNT), size);
	if (err)
		return -ENOMEM;

	rvu_write64(rvu, blkaddr, NIX_AF_RX_MCAST_BUF_BASE,
		    (u64)mcast->mcast_buf->iova);

	/* Alloc pkind for NIX internal RX multicast/mirror replay */
	mcast->replay_pkind = rvu_alloc_rsrc(&hw->pkind.rsrc);

	rvu_write64(rvu, blkaddr, NIX_AF_RX_MCAST_BUF_CFG,
		    BIT_ULL(63) | (mcast->replay_pkind << 24) |
		    BIT_ULL(20) | MC_BUF_CNT);

2417
	mutex_init(&mcast->mce_lock);
2418 2419 2420 2421

	return nix_setup_bcast_tables(rvu, nix_hw);
}

2422 2423 2424 2425 2426 2427 2428 2429 2430 2431 2432 2433 2434 2435 2436 2437 2438 2439 2440 2441 2442 2443 2444 2445 2446
static int nix_setup_txvlan(struct rvu *rvu, struct nix_hw *nix_hw)
{
	struct nix_txvlan *vlan = &nix_hw->txvlan;
	int err;

	/* Allocate resource bimap for tx vtag def registers*/
	vlan->rsrc.max = NIX_TX_VTAG_DEF_MAX;
	err = rvu_alloc_bitmap(&vlan->rsrc);
	if (err)
		return -ENOMEM;

	/* Alloc memory for saving entry to RVU PFFUNC allocation mapping */
	vlan->entry2pfvf_map = devm_kcalloc(rvu->dev, vlan->rsrc.max,
					    sizeof(u16), GFP_KERNEL);
	if (!vlan->entry2pfvf_map)
		goto free_mem;

	mutex_init(&vlan->rsrc_lock);
	return 0;

free_mem:
	kfree(vlan->rsrc.bmap);
	return -ENOMEM;
}

2447 2448 2449
static int nix_setup_txschq(struct rvu *rvu, struct nix_hw *nix_hw, int blkaddr)
{
	struct nix_txsch *txsch;
2450
	int err, lvl, schq;
2451 2452 2453 2454 2455 2456 2457 2458 2459 2460 2461 2462 2463 2464 2465 2466 2467 2468 2469 2470 2471 2472 2473 2474 2475 2476 2477 2478 2479 2480 2481 2482 2483 2484 2485
	u64 cfg, reg;

	/* Get scheduler queue count of each type and alloc
	 * bitmap for each for alloc/free/attach operations.
	 */
	for (lvl = 0; lvl < NIX_TXSCH_LVL_CNT; lvl++) {
		txsch = &nix_hw->txsch[lvl];
		txsch->lvl = lvl;
		switch (lvl) {
		case NIX_TXSCH_LVL_SMQ:
			reg = NIX_AF_MDQ_CONST;
			break;
		case NIX_TXSCH_LVL_TL4:
			reg = NIX_AF_TL4_CONST;
			break;
		case NIX_TXSCH_LVL_TL3:
			reg = NIX_AF_TL3_CONST;
			break;
		case NIX_TXSCH_LVL_TL2:
			reg = NIX_AF_TL2_CONST;
			break;
		case NIX_TXSCH_LVL_TL1:
			reg = NIX_AF_TL1_CONST;
			break;
		}
		cfg = rvu_read64(rvu, blkaddr, reg);
		txsch->schq.max = cfg & 0xFFFF;
		err = rvu_alloc_bitmap(&txsch->schq);
		if (err)
			return err;

		/* Allocate memory for scheduler queues to
		 * PF/VF pcifunc mapping info.
		 */
		txsch->pfvf_map = devm_kcalloc(rvu->dev, txsch->schq.max,
2486
					       sizeof(u32), GFP_KERNEL);
2487 2488
		if (!txsch->pfvf_map)
			return -ENOMEM;
2489 2490
		for (schq = 0; schq < txsch->schq.max; schq++)
			txsch->pfvf_map[schq] = TXSCH_MAP(0, NIX_TXSCHQ_FREE);
2491 2492 2493 2494
	}
	return 0;
}

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 2525 2526 2527 2528 2529 2530 2531 2532 2533 2534 2535 2536 2537 2538 2539 2540 2541 2542 2543 2544 2545
int rvu_nix_reserve_mark_format(struct rvu *rvu, struct nix_hw *nix_hw,
				int blkaddr, u32 cfg)
{
	int fmt_idx;

	for (fmt_idx = 0; fmt_idx < nix_hw->mark_format.in_use; fmt_idx++) {
		if (nix_hw->mark_format.cfg[fmt_idx] == cfg)
			return fmt_idx;
	}
	if (fmt_idx >= nix_hw->mark_format.total)
		return -ERANGE;

	rvu_write64(rvu, blkaddr, NIX_AF_MARK_FORMATX_CTL(fmt_idx), cfg);
	nix_hw->mark_format.cfg[fmt_idx] = cfg;
	nix_hw->mark_format.in_use++;
	return fmt_idx;
}

static int nix_af_mark_format_setup(struct rvu *rvu, struct nix_hw *nix_hw,
				    int blkaddr)
{
	u64 cfgs[] = {
		[NIX_MARK_CFG_IP_DSCP_RED]         = 0x10003,
		[NIX_MARK_CFG_IP_DSCP_YELLOW]      = 0x11200,
		[NIX_MARK_CFG_IP_DSCP_YELLOW_RED]  = 0x11203,
		[NIX_MARK_CFG_IP_ECN_RED]          = 0x6000c,
		[NIX_MARK_CFG_IP_ECN_YELLOW]       = 0x60c00,
		[NIX_MARK_CFG_IP_ECN_YELLOW_RED]   = 0x60c0c,
		[NIX_MARK_CFG_VLAN_DEI_RED]        = 0x30008,
		[NIX_MARK_CFG_VLAN_DEI_YELLOW]     = 0x30800,
		[NIX_MARK_CFG_VLAN_DEI_YELLOW_RED] = 0x30808,
	};
	int i, rc;
	u64 total;

	total = (rvu_read64(rvu, blkaddr, NIX_AF_PSE_CONST) & 0xFF00) >> 8;
	nix_hw->mark_format.total = (u8)total;
	nix_hw->mark_format.cfg = devm_kcalloc(rvu->dev, total, sizeof(u32),
					       GFP_KERNEL);
	if (!nix_hw->mark_format.cfg)
		return -ENOMEM;
	for (i = 0; i < NIX_MARK_CFG_MAX; i++) {
		rc = rvu_nix_reserve_mark_format(rvu, nix_hw, blkaddr, cfgs[i]);
		if (rc < 0)
			dev_err(rvu->dev, "Err %d in setup mark format %d\n",
				i, rc);
	}

	return 0;
}

2546
int rvu_mbox_handler_nix_stats_rst(struct rvu *rvu, struct msg_req *req,
2547 2548 2549
				   struct msg_rsp *rsp)
{
	u16 pcifunc = req->hdr.pcifunc;
2550
	int i, nixlf, blkaddr, err;
2551 2552
	u64 stats;

2553 2554 2555
	err = nix_get_nixlf(rvu, pcifunc, &nixlf, &blkaddr);
	if (err)
		return err;
2556 2557 2558 2559 2560 2561 2562 2563 2564 2565 2566 2567 2568 2569 2570

	/* Get stats count supported by HW */
	stats = rvu_read64(rvu, blkaddr, NIX_AF_CONST1);

	/* Reset tx stats */
	for (i = 0; i < ((stats >> 24) & 0xFF); i++)
		rvu_write64(rvu, blkaddr, NIX_AF_LFX_TX_STATX(nixlf, i), 0);

	/* Reset rx stats */
	for (i = 0; i < ((stats >> 32) & 0xFF); i++)
		rvu_write64(rvu, blkaddr, NIX_AF_LFX_RX_STATX(nixlf, i), 0);

	return 0;
}

2571
/* Returns the ALG index to be set into NPC_RX_ACTION */
2572
static int get_flowkey_alg_idx(struct nix_hw *nix_hw, u32 flow_cfg)
2573
{
2574
	int i;
2575

2576 2577 2578 2579
	/* Scan over exiting algo entries to find a match */
	for (i = 0; i < nix_hw->flowkey.in_use; i++)
		if (nix_hw->flowkey.flowkey[i] == flow_cfg)
			return i;
2580

2581
	return -ERANGE;
2582 2583
}

2584
static int set_flowkey_fields(struct nix_rx_flowkey_alg *alg, u32 flow_cfg)
2585
{
2586 2587 2588 2589 2590
	int idx, nr_field, key_off, field_marker, keyoff_marker;
	int max_key_off, max_bit_pos, group_member;
	struct nix_rx_flowkey_alg *field;
	struct nix_rx_flowkey_alg tmp;
	u32 key_type, valid_key;
2591
	int l4_key_offset;
2592 2593

	if (!alg)
2594
		return -EINVAL;
2595

2596 2597 2598 2599 2600 2601
#define FIELDS_PER_ALG  5
#define MAX_KEY_OFF	40
	/* Clear all fields */
	memset(alg, 0, sizeof(uint64_t) * FIELDS_PER_ALG);

	/* Each of the 32 possible flow key algorithm definitions should
2602 2603 2604 2605 2606 2607
	 * fall into above incremental config (except ALG0). Otherwise a
	 * single NPC MCAM entry is not sufficient for supporting RSS.
	 *
	 * If a different definition or combination needed then NPC MCAM
	 * has to be programmed to filter such pkts and it's action should
	 * point to this definition to calculate flowtag or hash.
2608 2609 2610 2611 2612 2613 2614 2615
	 *
	 * The `for loop` goes over _all_ protocol field and the following
	 * variables depicts the state machine forward progress logic.
	 *
	 * keyoff_marker - Enabled when hash byte length needs to be accounted
	 * in field->key_offset update.
	 * field_marker - Enabled when a new field needs to be selected.
	 * group_member - Enabled when protocol is part of a group.
2616
	 */
2617 2618 2619 2620 2621 2622 2623 2624 2625 2626 2627 2628 2629

	keyoff_marker = 0; max_key_off = 0; group_member = 0;
	nr_field = 0; key_off = 0; field_marker = 1;
	field = &tmp; max_bit_pos = fls(flow_cfg);
	for (idx = 0;
	     idx < max_bit_pos && nr_field < FIELDS_PER_ALG &&
	     key_off < MAX_KEY_OFF; idx++) {
		key_type = BIT(idx);
		valid_key = flow_cfg & key_type;
		/* Found a field marker, reset the field values */
		if (field_marker)
			memset(&tmp, 0, sizeof(tmp));

2630 2631
		field_marker = true;
		keyoff_marker = true;
2632
		switch (key_type) {
2633
		case NIX_FLOW_KEY_TYPE_PORT:
2634 2635 2636 2637
			field->sel_chan = true;
			/* This should be set to 1, when SEL_CHAN is set */
			field->bytesm1 = 1;
			break;
2638 2639 2640 2641 2642 2643 2644
		case NIX_FLOW_KEY_TYPE_IPV4_PROTO:
			field->lid = NPC_LID_LC;
			field->hdr_offset = 9; /* offset */
			field->bytesm1 = 0; /* 1 byte */
			field->ltype_match = NPC_LT_LC_IP;
			field->ltype_mask = 0xF;
			break;
2645
		case NIX_FLOW_KEY_TYPE_IPV4:
2646
		case NIX_FLOW_KEY_TYPE_INNR_IPV4:
2647 2648
			field->lid = NPC_LID_LC;
			field->ltype_match = NPC_LT_LC_IP;
2649 2650 2651 2652
			if (key_type == NIX_FLOW_KEY_TYPE_INNR_IPV4) {
				field->lid = NPC_LID_LG;
				field->ltype_match = NPC_LT_LG_TU_IP;
			}
2653 2654 2655
			field->hdr_offset = 12; /* SIP offset */
			field->bytesm1 = 7; /* SIP + DIP, 8 bytes */
			field->ltype_mask = 0xF; /* Match only IPv4 */
2656
			keyoff_marker = false;
2657
			break;
2658
		case NIX_FLOW_KEY_TYPE_IPV6:
2659
		case NIX_FLOW_KEY_TYPE_INNR_IPV6:
2660 2661
			field->lid = NPC_LID_LC;
			field->ltype_match = NPC_LT_LC_IP6;
2662 2663 2664 2665
			if (key_type == NIX_FLOW_KEY_TYPE_INNR_IPV6) {
				field->lid = NPC_LID_LG;
				field->ltype_match = NPC_LT_LG_TU_IP6;
			}
2666 2667 2668 2669
			field->hdr_offset = 8; /* SIP offset */
			field->bytesm1 = 31; /* SIP + DIP, 32 bytes */
			field->ltype_mask = 0xF; /* Match only IPv6 */
			break;
2670 2671 2672
		case NIX_FLOW_KEY_TYPE_TCP:
		case NIX_FLOW_KEY_TYPE_UDP:
		case NIX_FLOW_KEY_TYPE_SCTP:
2673 2674 2675
		case NIX_FLOW_KEY_TYPE_INNR_TCP:
		case NIX_FLOW_KEY_TYPE_INNR_UDP:
		case NIX_FLOW_KEY_TYPE_INNR_SCTP:
2676
			field->lid = NPC_LID_LD;
2677 2678 2679 2680
			if (key_type == NIX_FLOW_KEY_TYPE_INNR_TCP ||
			    key_type == NIX_FLOW_KEY_TYPE_INNR_UDP ||
			    key_type == NIX_FLOW_KEY_TYPE_INNR_SCTP)
				field->lid = NPC_LID_LH;
2681
			field->bytesm1 = 3; /* Sport + Dport, 4 bytes */
2682 2683 2684 2685 2686 2687 2688 2689 2690 2691 2692 2693 2694 2695 2696

			/* Enum values for NPC_LID_LD and NPC_LID_LG are same,
			 * so no need to change the ltype_match, just change
			 * the lid for inner protocols
			 */
			BUILD_BUG_ON((int)NPC_LT_LD_TCP !=
				     (int)NPC_LT_LH_TU_TCP);
			BUILD_BUG_ON((int)NPC_LT_LD_UDP !=
				     (int)NPC_LT_LH_TU_UDP);
			BUILD_BUG_ON((int)NPC_LT_LD_SCTP !=
				     (int)NPC_LT_LH_TU_SCTP);

			if ((key_type == NIX_FLOW_KEY_TYPE_TCP ||
			     key_type == NIX_FLOW_KEY_TYPE_INNR_TCP) &&
			    valid_key) {
2697
				field->ltype_match |= NPC_LT_LD_TCP;
2698
				group_member = true;
2699 2700
			} else if ((key_type == NIX_FLOW_KEY_TYPE_UDP ||
				    key_type == NIX_FLOW_KEY_TYPE_INNR_UDP) &&
2701
				   valid_key) {
2702
				field->ltype_match |= NPC_LT_LD_UDP;
2703
				group_member = true;
2704 2705
			} else if ((key_type == NIX_FLOW_KEY_TYPE_SCTP ||
				    key_type == NIX_FLOW_KEY_TYPE_INNR_SCTP) &&
2706
				   valid_key) {
2707
				field->ltype_match |= NPC_LT_LD_SCTP;
2708 2709
				group_member = true;
			}
2710
			field->ltype_mask = ~field->ltype_match;
2711 2712
			if (key_type == NIX_FLOW_KEY_TYPE_SCTP ||
			    key_type == NIX_FLOW_KEY_TYPE_INNR_SCTP) {
2713 2714 2715 2716 2717 2718 2719 2720 2721 2722 2723
				/* Handle the case where any of the group item
				 * is enabled in the group but not the final one
				 */
				if (group_member) {
					valid_key = true;
					group_member = false;
				}
			} else {
				field_marker = false;
				keyoff_marker = false;
			}
2724 2725 2726 2727 2728 2729

			/* TCP/UDP/SCTP and ESP/AH falls at same offset so
			 * remember the TCP key offset of 40 byte hash key.
			 */
			if (key_type == NIX_FLOW_KEY_TYPE_TCP)
				l4_key_offset = key_off;
2730
			break;
2731 2732 2733 2734 2735 2736 2737 2738 2739 2740 2741 2742 2743 2744 2745 2746 2747 2748 2749 2750 2751 2752 2753 2754 2755 2756 2757 2758 2759 2760 2761 2762 2763 2764 2765 2766 2767 2768 2769 2770 2771 2772 2773 2774 2775 2776 2777 2778 2779 2780 2781 2782 2783 2784 2785 2786 2787 2788 2789 2790 2791 2792
		case NIX_FLOW_KEY_TYPE_NVGRE:
			field->lid = NPC_LID_LD;
			field->hdr_offset = 4; /* VSID offset */
			field->bytesm1 = 2;
			field->ltype_match = NPC_LT_LD_NVGRE;
			field->ltype_mask = 0xF;
			break;
		case NIX_FLOW_KEY_TYPE_VXLAN:
		case NIX_FLOW_KEY_TYPE_GENEVE:
			field->lid = NPC_LID_LE;
			field->bytesm1 = 2;
			field->hdr_offset = 4;
			field->ltype_mask = 0xF;
			field_marker = false;
			keyoff_marker = false;

			if (key_type == NIX_FLOW_KEY_TYPE_VXLAN && valid_key) {
				field->ltype_match |= NPC_LT_LE_VXLAN;
				group_member = true;
			}

			if (key_type == NIX_FLOW_KEY_TYPE_GENEVE && valid_key) {
				field->ltype_match |= NPC_LT_LE_GENEVE;
				group_member = true;
			}

			if (key_type == NIX_FLOW_KEY_TYPE_GENEVE) {
				if (group_member) {
					field->ltype_mask = ~field->ltype_match;
					field_marker = true;
					keyoff_marker = true;
					valid_key = true;
					group_member = false;
				}
			}
			break;
		case NIX_FLOW_KEY_TYPE_ETH_DMAC:
		case NIX_FLOW_KEY_TYPE_INNR_ETH_DMAC:
			field->lid = NPC_LID_LA;
			field->ltype_match = NPC_LT_LA_ETHER;
			if (key_type == NIX_FLOW_KEY_TYPE_INNR_ETH_DMAC) {
				field->lid = NPC_LID_LF;
				field->ltype_match = NPC_LT_LF_TU_ETHER;
			}
			field->hdr_offset = 0;
			field->bytesm1 = 5; /* DMAC 6 Byte */
			field->ltype_mask = 0xF;
			break;
		case NIX_FLOW_KEY_TYPE_IPV6_EXT:
			field->lid = NPC_LID_LC;
			field->hdr_offset = 40; /* IPV6 hdr */
			field->bytesm1 = 0; /* 1 Byte ext hdr*/
			field->ltype_match = NPC_LT_LC_IP6_EXT;
			field->ltype_mask = 0xF;
			break;
		case NIX_FLOW_KEY_TYPE_GTPU:
			field->lid = NPC_LID_LE;
			field->hdr_offset = 4;
			field->bytesm1 = 3; /* 4 bytes TID*/
			field->ltype_match = NPC_LT_LE_GTPU;
			field->ltype_mask = 0xF;
			break;
2793 2794 2795 2796 2797 2798 2799 2800
		case NIX_FLOW_KEY_TYPE_VLAN:
			field->lid = NPC_LID_LB;
			field->hdr_offset = 2; /* Skip TPID (2-bytes) */
			field->bytesm1 = 1; /* 2 Bytes (Actually 12 bits) */
			field->ltype_match = NPC_LT_LB_CTAG;
			field->ltype_mask = 0xF;
			field->fn_mask = 1; /* Mask out the first nibble */
			break;
2801 2802 2803 2804 2805 2806 2807 2808 2809 2810 2811 2812 2813 2814
		case NIX_FLOW_KEY_TYPE_AH:
		case NIX_FLOW_KEY_TYPE_ESP:
			field->hdr_offset = 0;
			field->bytesm1 = 7; /* SPI + sequence number */
			field->ltype_mask = 0xF;
			field->lid = NPC_LID_LE;
			field->ltype_match = NPC_LT_LE_ESP;
			if (key_type == NIX_FLOW_KEY_TYPE_AH) {
				field->lid = NPC_LID_LD;
				field->ltype_match = NPC_LT_LD_AH;
				field->hdr_offset = 4;
				keyoff_marker = false;
			}
			break;
2815
		}
2816 2817 2818 2819
		field->ena = 1;

		/* Found a valid flow key type */
		if (valid_key) {
2820 2821 2822 2823 2824 2825
			/* Use the key offset of TCP/UDP/SCTP fields
			 * for ESP/AH fields.
			 */
			if (key_type == NIX_FLOW_KEY_TYPE_ESP ||
			    key_type == NIX_FLOW_KEY_TYPE_AH)
				key_off = l4_key_offset;
2826 2827 2828 2829 2830 2831 2832 2833 2834 2835 2836 2837 2838 2839
			field->key_offset = key_off;
			memcpy(&alg[nr_field], field, sizeof(*field));
			max_key_off = max(max_key_off, field->bytesm1 + 1);

			/* Found a field marker, get the next field */
			if (field_marker)
				nr_field++;
		}

		/* Found a keyoff marker, update the new key_off */
		if (keyoff_marker) {
			key_off += max_key_off;
			max_key_off = 0;
		}
2840
	}
2841 2842 2843 2844 2845
	/* Processed all the flow key types */
	if (idx == max_bit_pos && key_off <= MAX_KEY_OFF)
		return 0;
	else
		return NIX_AF_ERR_RSS_NOSPC_FIELD;
2846 2847
}

2848
static int reserve_flowkey_alg_idx(struct rvu *rvu, int blkaddr, u32 flow_cfg)
2849
{
2850 2851 2852
	u64 field[FIELDS_PER_ALG];
	struct nix_hw *hw;
	int fid, rc;
2853

2854 2855 2856
	hw = get_nix_hw(rvu->hw, blkaddr);
	if (!hw)
		return -EINVAL;
2857

2858 2859 2860
	/* No room to add new flow hash algoritham */
	if (hw->flowkey.in_use >= NIX_FLOW_KEY_ALG_MAX)
		return NIX_AF_ERR_RSS_NOSPC_ALGO;
2861

2862 2863 2864 2865 2866 2867 2868 2869 2870 2871 2872 2873 2874 2875 2876 2877 2878 2879 2880 2881 2882 2883 2884 2885 2886 2887
	/* Generate algo fields for the given flow_cfg */
	rc = set_flowkey_fields((struct nix_rx_flowkey_alg *)field, flow_cfg);
	if (rc)
		return rc;

	/* Update ALGX_FIELDX register with generated fields */
	for (fid = 0; fid < FIELDS_PER_ALG; fid++)
		rvu_write64(rvu, blkaddr,
			    NIX_AF_RX_FLOW_KEY_ALGX_FIELDX(hw->flowkey.in_use,
							   fid), field[fid]);

	/* Store the flow_cfg for futher lookup */
	rc = hw->flowkey.in_use;
	hw->flowkey.flowkey[rc] = flow_cfg;
	hw->flowkey.in_use++;

	return rc;
}

int rvu_mbox_handler_nix_rss_flowkey_cfg(struct rvu *rvu,
					 struct nix_rss_flowkey_cfg *req,
					 struct nix_rss_flowkey_cfg_rsp *rsp)
{
	u16 pcifunc = req->hdr.pcifunc;
	int alg_idx, nixlf, blkaddr;
	struct nix_hw *nix_hw;
2888
	int err;
2889

2890 2891 2892
	err = nix_get_nixlf(rvu, pcifunc, &nixlf, &blkaddr);
	if (err)
		return err;
2893 2894 2895 2896 2897 2898 2899 2900 2901 2902 2903 2904 2905 2906 2907 2908 2909 2910 2911 2912 2913 2914 2915 2916 2917 2918 2919 2920 2921 2922 2923

	nix_hw = get_nix_hw(rvu->hw, blkaddr);
	if (!nix_hw)
		return -EINVAL;

	alg_idx = get_flowkey_alg_idx(nix_hw, req->flowkey_cfg);
	/* Failed to get algo index from the exiting list, reserve new  */
	if (alg_idx < 0) {
		alg_idx = reserve_flowkey_alg_idx(rvu, blkaddr,
						  req->flowkey_cfg);
		if (alg_idx < 0)
			return alg_idx;
	}
	rsp->alg_idx = alg_idx;
	rvu_npc_update_flowkey_alg_idx(rvu, pcifunc, nixlf, req->group,
				       alg_idx, req->mcam_index);
	return 0;
}

static int nix_rx_flowkey_alg_cfg(struct rvu *rvu, int blkaddr)
{
	u32 flowkey_cfg, minkey_cfg;
	int alg, fid, rc;

	/* Disable all flow key algx fieldx */
	for (alg = 0; alg < NIX_FLOW_KEY_ALG_MAX; alg++) {
		for (fid = 0; fid < FIELDS_PER_ALG; fid++)
			rvu_write64(rvu, blkaddr,
				    NIX_AF_RX_FLOW_KEY_ALGX_FIELDX(alg, fid),
				    0);
	}
2924 2925

	/* IPv4/IPv6 SIP/DIPs */
2926
	flowkey_cfg = NIX_FLOW_KEY_TYPE_IPV4 | NIX_FLOW_KEY_TYPE_IPV6;
2927 2928 2929
	rc = reserve_flowkey_alg_idx(rvu, blkaddr, flowkey_cfg);
	if (rc < 0)
		return rc;
2930 2931 2932

	/* TCPv4/v6 4-tuple, SIP, DIP, Sport, Dport */
	minkey_cfg = flowkey_cfg;
2933
	flowkey_cfg = minkey_cfg | NIX_FLOW_KEY_TYPE_TCP;
2934 2935 2936
	rc = reserve_flowkey_alg_idx(rvu, blkaddr, flowkey_cfg);
	if (rc < 0)
		return rc;
2937 2938

	/* UDPv4/v6 4-tuple, SIP, DIP, Sport, Dport */
2939
	flowkey_cfg = minkey_cfg | NIX_FLOW_KEY_TYPE_UDP;
2940 2941 2942
	rc = reserve_flowkey_alg_idx(rvu, blkaddr, flowkey_cfg);
	if (rc < 0)
		return rc;
2943 2944

	/* SCTPv4/v6 4-tuple, SIP, DIP, Sport, Dport */
2945
	flowkey_cfg = minkey_cfg | NIX_FLOW_KEY_TYPE_SCTP;
2946 2947 2948
	rc = reserve_flowkey_alg_idx(rvu, blkaddr, flowkey_cfg);
	if (rc < 0)
		return rc;
2949 2950

	/* TCP/UDP v4/v6 4-tuple, rest IP pkts 2-tuple */
2951 2952
	flowkey_cfg = minkey_cfg | NIX_FLOW_KEY_TYPE_TCP |
			NIX_FLOW_KEY_TYPE_UDP;
2953 2954 2955
	rc = reserve_flowkey_alg_idx(rvu, blkaddr, flowkey_cfg);
	if (rc < 0)
		return rc;
2956 2957

	/* TCP/SCTP v4/v6 4-tuple, rest IP pkts 2-tuple */
2958 2959
	flowkey_cfg = minkey_cfg | NIX_FLOW_KEY_TYPE_TCP |
			NIX_FLOW_KEY_TYPE_SCTP;
2960 2961 2962
	rc = reserve_flowkey_alg_idx(rvu, blkaddr, flowkey_cfg);
	if (rc < 0)
		return rc;
2963 2964

	/* UDP/SCTP v4/v6 4-tuple, rest IP pkts 2-tuple */
2965 2966
	flowkey_cfg = minkey_cfg | NIX_FLOW_KEY_TYPE_UDP |
			NIX_FLOW_KEY_TYPE_SCTP;
2967 2968 2969
	rc = reserve_flowkey_alg_idx(rvu, blkaddr, flowkey_cfg);
	if (rc < 0)
		return rc;
2970 2971

	/* TCP/UDP/SCTP v4/v6 4-tuple, rest IP pkts 2-tuple */
2972 2973
	flowkey_cfg = minkey_cfg | NIX_FLOW_KEY_TYPE_TCP |
		      NIX_FLOW_KEY_TYPE_UDP | NIX_FLOW_KEY_TYPE_SCTP;
2974 2975 2976
	rc = reserve_flowkey_alg_idx(rvu, blkaddr, flowkey_cfg);
	if (rc < 0)
		return rc;
2977

2978
	return 0;
2979 2980
}

2981
int rvu_mbox_handler_nix_set_mac_addr(struct rvu *rvu,
2982 2983 2984
				      struct nix_set_mac_addr *req,
				      struct msg_rsp *rsp)
{
2985
	bool from_vf = req->hdr.pcifunc & RVU_PFVF_FUNC_MASK;
2986
	u16 pcifunc = req->hdr.pcifunc;
2987
	int blkaddr, nixlf, err;
2988 2989
	struct rvu_pfvf *pfvf;

2990 2991 2992
	err = nix_get_nixlf(rvu, pcifunc, &nixlf, &blkaddr);
	if (err)
		return err;
2993

2994
	pfvf = rvu_get_pfvf(rvu, pcifunc);
2995

2996 2997 2998 2999
	/* VF can't overwrite admin(PF) changes */
	if (from_vf && pfvf->pf_set_vf_cfg)
		return -EPERM;

3000 3001 3002 3003
	ether_addr_copy(pfvf->mac_addr, req->mac_addr);

	rvu_npc_install_ucast_entry(rvu, pcifunc, nixlf,
				    pfvf->rx_chan_base, req->mac_addr);
3004

3005 3006 3007
	return 0;
}

3008 3009 3010 3011 3012 3013 3014 3015 3016 3017 3018 3019 3020 3021 3022 3023 3024
int rvu_mbox_handler_nix_get_mac_addr(struct rvu *rvu,
				      struct msg_req *req,
				      struct nix_get_mac_addr_rsp *rsp)
{
	u16 pcifunc = req->hdr.pcifunc;
	struct rvu_pfvf *pfvf;

	if (!is_nixlf_attached(rvu, pcifunc))
		return NIX_AF_ERR_AF_LF_INVALID;

	pfvf = rvu_get_pfvf(rvu, pcifunc);

	ether_addr_copy(rsp->mac_addr, pfvf->mac_addr);

	return 0;
}

3025
int rvu_mbox_handler_nix_set_rx_mode(struct rvu *rvu, struct nix_rx_mode *req,
3026 3027 3028 3029
				     struct msg_rsp *rsp)
{
	bool allmulti = false, disable_promisc = false;
	u16 pcifunc = req->hdr.pcifunc;
3030
	int blkaddr, nixlf, err;
3031 3032
	struct rvu_pfvf *pfvf;

3033 3034 3035
	err = nix_get_nixlf(rvu, pcifunc, &nixlf, &blkaddr);
	if (err)
		return err;
3036

3037
	pfvf = rvu_get_pfvf(rvu, pcifunc);
3038 3039 3040 3041 3042 3043 3044 3045 3046 3047 3048 3049 3050 3051 3052 3053

	if (req->mode & NIX_RX_MODE_PROMISC)
		allmulti = false;
	else if (req->mode & NIX_RX_MODE_ALLMULTI)
		allmulti = true;
	else
		disable_promisc = true;

	if (disable_promisc)
		rvu_npc_disable_promisc_entry(rvu, pcifunc, nixlf);
	else
		rvu_npc_install_promisc_entry(rvu, pcifunc, nixlf,
					      pfvf->rx_chan_base, allmulti);
	return 0;
}

3054 3055 3056 3057 3058 3059 3060 3061 3062 3063 3064 3065 3066 3067 3068 3069 3070 3071 3072 3073 3074 3075 3076 3077 3078 3079 3080 3081 3082 3083 3084 3085 3086 3087 3088 3089 3090 3091 3092 3093 3094 3095 3096 3097 3098 3099 3100 3101 3102 3103 3104 3105 3106 3107 3108 3109 3110 3111 3112 3113 3114 3115 3116 3117 3118 3119 3120 3121 3122 3123 3124 3125 3126 3127 3128 3129 3130
static void nix_find_link_frs(struct rvu *rvu,
			      struct nix_frs_cfg *req, u16 pcifunc)
{
	int pf = rvu_get_pf(pcifunc);
	struct rvu_pfvf *pfvf;
	int maxlen, minlen;
	int numvfs, hwvf;
	int vf;

	/* Update with requester's min/max lengths */
	pfvf = rvu_get_pfvf(rvu, pcifunc);
	pfvf->maxlen = req->maxlen;
	if (req->update_minlen)
		pfvf->minlen = req->minlen;

	maxlen = req->maxlen;
	minlen = req->update_minlen ? req->minlen : 0;

	/* Get this PF's numVFs and starting hwvf */
	rvu_get_pf_numvfs(rvu, pf, &numvfs, &hwvf);

	/* For each VF, compare requested max/minlen */
	for (vf = 0; vf < numvfs; vf++) {
		pfvf =  &rvu->hwvf[hwvf + vf];
		if (pfvf->maxlen > maxlen)
			maxlen = pfvf->maxlen;
		if (req->update_minlen &&
		    pfvf->minlen && pfvf->minlen < minlen)
			minlen = pfvf->minlen;
	}

	/* Compare requested max/minlen with PF's max/minlen */
	pfvf = &rvu->pf[pf];
	if (pfvf->maxlen > maxlen)
		maxlen = pfvf->maxlen;
	if (req->update_minlen &&
	    pfvf->minlen && pfvf->minlen < minlen)
		minlen = pfvf->minlen;

	/* Update the request with max/min PF's and it's VF's max/min */
	req->maxlen = maxlen;
	if (req->update_minlen)
		req->minlen = minlen;
}

int rvu_mbox_handler_nix_set_hw_frs(struct rvu *rvu, struct nix_frs_cfg *req,
				    struct msg_rsp *rsp)
{
	struct rvu_hwinfo *hw = rvu->hw;
	u16 pcifunc = req->hdr.pcifunc;
	int pf = rvu_get_pf(pcifunc);
	int blkaddr, schq, link = -1;
	struct nix_txsch *txsch;
	u64 cfg, lmac_fifo_len;
	struct nix_hw *nix_hw;
	u8 cgx = 0, lmac = 0;

	blkaddr = rvu_get_blkaddr(rvu, BLKTYPE_NIX, pcifunc);
	if (blkaddr < 0)
		return NIX_AF_ERR_AF_LF_INVALID;

	nix_hw = get_nix_hw(rvu->hw, blkaddr);
	if (!nix_hw)
		return -EINVAL;

	if (!req->sdp_link && req->maxlen > NIC_HW_MAX_FRS)
		return NIX_AF_ERR_FRS_INVALID;

	if (req->update_minlen && req->minlen < NIC_HW_MIN_FRS)
		return NIX_AF_ERR_FRS_INVALID;

	/* Check if requester wants to update SMQ's */
	if (!req->update_smq)
		goto rx_frscfg;

	/* Update min/maxlen in each of the SMQ attached to this PF/VF */
	txsch = &nix_hw->txsch[NIX_TXSCH_LVL_SMQ];
3131
	mutex_lock(&rvu->rsrc_lock);
3132
	for (schq = 0; schq < txsch->schq.max; schq++) {
3133
		if (TXSCH_MAP_FUNC(txsch->pfvf_map[schq]) != pcifunc)
3134 3135 3136 3137 3138 3139 3140
			continue;
		cfg = rvu_read64(rvu, blkaddr, NIX_AF_SMQX_CFG(schq));
		cfg = (cfg & ~(0xFFFFULL << 8)) | ((u64)req->maxlen << 8);
		if (req->update_minlen)
			cfg = (cfg & ~0x7FULL) | ((u64)req->minlen & 0x7F);
		rvu_write64(rvu, blkaddr, NIX_AF_SMQX_CFG(schq), cfg);
	}
3141
	mutex_unlock(&rvu->rsrc_lock);
3142 3143 3144 3145 3146 3147 3148 3149 3150 3151 3152 3153 3154 3155 3156 3157 3158 3159 3160 3161 3162 3163 3164 3165 3166 3167 3168 3169 3170 3171 3172 3173 3174 3175 3176 3177 3178 3179 3180 3181 3182 3183 3184 3185 3186

rx_frscfg:
	/* Check if config is for SDP link */
	if (req->sdp_link) {
		if (!hw->sdp_links)
			return NIX_AF_ERR_RX_LINK_INVALID;
		link = hw->cgx_links + hw->lbk_links;
		goto linkcfg;
	}

	/* Check if the request is from CGX mapped RVU PF */
	if (is_pf_cgxmapped(rvu, pf)) {
		/* Get CGX and LMAC to which this PF is mapped and find link */
		rvu_get_cgx_lmac_id(rvu->pf2cgxlmac_map[pf], &cgx, &lmac);
		link = (cgx * hw->lmac_per_cgx) + lmac;
	} else if (pf == 0) {
		/* For VFs of PF0 ingress is LBK port, so config LBK link */
		link = hw->cgx_links;
	}

	if (link < 0)
		return NIX_AF_ERR_RX_LINK_INVALID;

	nix_find_link_frs(rvu, req, pcifunc);

linkcfg:
	cfg = rvu_read64(rvu, blkaddr, NIX_AF_RX_LINKX_CFG(link));
	cfg = (cfg & ~(0xFFFFULL << 16)) | ((u64)req->maxlen << 16);
	if (req->update_minlen)
		cfg = (cfg & ~0xFFFFULL) | req->minlen;
	rvu_write64(rvu, blkaddr, NIX_AF_RX_LINKX_CFG(link), cfg);

	if (req->sdp_link || pf == 0)
		return 0;

	/* Update transmit credits for CGX links */
	lmac_fifo_len =
		CGX_FIFO_LEN / cgx_get_lmac_cnt(rvu_cgx_pdata(cgx, rvu));
	cfg = rvu_read64(rvu, blkaddr, NIX_AF_TX_LINKX_NORM_CREDIT(link));
	cfg &= ~(0xFFFFFULL << 12);
	cfg |=  ((lmac_fifo_len - req->maxlen) / 16) << 12;
	rvu_write64(rvu, blkaddr, NIX_AF_TX_LINKX_NORM_CREDIT(link), cfg);
	return 0;
}

3187 3188 3189
int rvu_mbox_handler_nix_set_rx_cfg(struct rvu *rvu, struct nix_rx_cfg *req,
				    struct msg_rsp *rsp)
{
3190
	int nixlf, blkaddr, err;
3191 3192
	u64 cfg;

3193 3194 3195
	err = nix_get_nixlf(rvu, req->hdr.pcifunc, &nixlf, &blkaddr);
	if (err)
		return err;
3196 3197 3198 3199 3200 3201 3202 3203 3204 3205 3206 3207 3208 3209 3210 3211 3212 3213 3214 3215 3216 3217 3218

	cfg = rvu_read64(rvu, blkaddr, NIX_AF_LFX_RX_CFG(nixlf));
	/* Set the interface configuration */
	if (req->len_verify & BIT(0))
		cfg |= BIT_ULL(41);
	else
		cfg &= ~BIT_ULL(41);

	if (req->len_verify & BIT(1))
		cfg |= BIT_ULL(40);
	else
		cfg &= ~BIT_ULL(40);

	if (req->csum_verify & BIT(0))
		cfg |= BIT_ULL(37);
	else
		cfg &= ~BIT_ULL(37);

	rvu_write64(rvu, blkaddr, NIX_AF_LFX_RX_CFG(nixlf), cfg);

	return 0;
}

3219 3220 3221 3222 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
static void nix_link_config(struct rvu *rvu, int blkaddr)
{
	struct rvu_hwinfo *hw = rvu->hw;
	int cgx, lmac_cnt, slink, link;
	u64 tx_credits;

	/* Set default min/max packet lengths allowed on NIX Rx links.
	 *
	 * With HW reset minlen value of 60byte, HW will treat ARP pkts
	 * as undersize and report them to SW as error pkts, hence
	 * setting it to 40 bytes.
	 */
	for (link = 0; link < (hw->cgx_links + hw->lbk_links); link++) {
		rvu_write64(rvu, blkaddr, NIX_AF_RX_LINKX_CFG(link),
			    NIC_HW_MAX_FRS << 16 | NIC_HW_MIN_FRS);
	}

	if (hw->sdp_links) {
		link = hw->cgx_links + hw->lbk_links;
		rvu_write64(rvu, blkaddr, NIX_AF_RX_LINKX_CFG(link),
			    SDP_HW_MAX_FRS << 16 | NIC_HW_MIN_FRS);
	}

	/* Set credits for Tx links assuming max packet length allowed.
	 * This will be reconfigured based on MTU set for PF/VF.
	 */
	for (cgx = 0; cgx < hw->cgx; cgx++) {
		lmac_cnt = cgx_get_lmac_cnt(rvu_cgx_pdata(cgx, rvu));
		tx_credits = ((CGX_FIFO_LEN / lmac_cnt) - NIC_HW_MAX_FRS) / 16;
		/* Enable credits and set credit pkt count to max allowed */
		tx_credits =  (tx_credits << 12) | (0x1FF << 2) | BIT_ULL(1);
		slink = cgx * hw->lmac_per_cgx;
		for (link = slink; link < (slink + lmac_cnt); link++) {
			rvu_write64(rvu, blkaddr,
				    NIX_AF_TX_LINKX_NORM_CREDIT(link),
				    tx_credits);
		}
	}

	/* Set Tx credits for LBK link */
	slink = hw->cgx_links;
	for (link = slink; link < (slink + hw->lbk_links); link++) {
		tx_credits = 1000; /* 10 * max LBK datarate = 10 * 100Gbps */
		/* Enable credits and set credit pkt count to max allowed */
		tx_credits =  (tx_credits << 12) | (0x1FF << 2) | BIT_ULL(1);
		rvu_write64(rvu, blkaddr,
			    NIX_AF_TX_LINKX_NORM_CREDIT(link), tx_credits);
	}
}

3269 3270 3271 3272 3273 3274 3275 3276 3277 3278 3279 3280 3281 3282 3283 3284 3285 3286
static int nix_calibrate_x2p(struct rvu *rvu, int blkaddr)
{
	int idx, err;
	u64 status;

	/* Start X2P bus calibration */
	rvu_write64(rvu, blkaddr, NIX_AF_CFG,
		    rvu_read64(rvu, blkaddr, NIX_AF_CFG) | BIT_ULL(9));
	/* Wait for calibration to complete */
	err = rvu_poll_reg(rvu, blkaddr,
			   NIX_AF_STATUS, BIT_ULL(10), false);
	if (err) {
		dev_err(rvu->dev, "NIX X2P bus calibration failed\n");
		return err;
	}

	status = rvu_read64(rvu, blkaddr, NIX_AF_STATUS);
	/* Check if CGX devices are ready */
3287 3288 3289 3290
	for (idx = 0; idx < rvu->cgx_cnt_max; idx++) {
		/* Skip when cgx port is not available */
		if (!rvu_cgx_pdata(idx, rvu) ||
		    (status & (BIT_ULL(16 + idx))))
3291 3292 3293 3294 3295 3296 3297 3298 3299 3300 3301 3302 3303 3304 3305 3306 3307 3308 3309 3310 3311 3312 3313 3314 3315 3316 3317 3318 3319 3320 3321 3322
			continue;
		dev_err(rvu->dev,
			"CGX%d didn't respond to NIX X2P calibration\n", idx);
		err = -EBUSY;
	}

	/* Check if LBK is ready */
	if (!(status & BIT_ULL(19))) {
		dev_err(rvu->dev,
			"LBK didn't respond to NIX X2P calibration\n");
		err = -EBUSY;
	}

	/* Clear 'calibrate_x2p' bit */
	rvu_write64(rvu, blkaddr, NIX_AF_CFG,
		    rvu_read64(rvu, blkaddr, NIX_AF_CFG) & ~BIT_ULL(9));
	if (err || (status & 0x3FFULL))
		dev_err(rvu->dev,
			"NIX X2P calibration failed, status 0x%llx\n", status);
	if (err)
		return err;
	return 0;
}

static int nix_aq_init(struct rvu *rvu, struct rvu_block *block)
{
	u64 cfg;
	int err;

	/* Set admin queue endianness */
	cfg = rvu_read64(rvu, block->addr, NIX_AF_CFG);
#ifdef __BIG_ENDIAN
3323
	cfg |= BIT_ULL(8);
3324 3325
	rvu_write64(rvu, block->addr, NIX_AF_CFG, cfg);
#else
3326
	cfg &= ~BIT_ULL(8);
3327 3328 3329 3330 3331 3332
	rvu_write64(rvu, block->addr, NIX_AF_CFG, cfg);
#endif

	/* Do not bypass NDC cache */
	cfg = rvu_read64(rvu, block->addr, NIX_AF_NDC_CFG);
	cfg &= ~0x3FFEULL;
3333 3334 3335 3336
#ifdef CONFIG_NDC_DIS_DYNAMIC_CACHING
	/* Disable caching of SQB aka SQEs */
	cfg |= 0x04ULL;
#endif
3337 3338 3339 3340 3341 3342 3343 3344 3345 3346 3347 3348 3349 3350 3351 3352 3353 3354
	rvu_write64(rvu, block->addr, NIX_AF_NDC_CFG, cfg);

	/* Result structure can be followed by RQ/SQ/CQ context at
	 * RES + 128bytes and a write mask at RES + 256 bytes, depending on
	 * operation type. Alloc sufficient result memory for all operations.
	 */
	err = rvu_aq_alloc(rvu, &block->aq,
			   Q_COUNT(AQ_SIZE), sizeof(struct nix_aq_inst_s),
			   ALIGN(sizeof(struct nix_aq_res_s), 128) + 256);
	if (err)
		return err;

	rvu_write64(rvu, block->addr, NIX_AF_AQ_CFG, AQ_SIZE);
	rvu_write64(rvu, block->addr,
		    NIX_AF_AQ_BASE, (u64)block->aq->inst->iova);
	return 0;
}

R
Rakesh Babu 已提交
3355
static int rvu_nix_block_init(struct rvu *rvu, struct nix_hw *nix_hw)
3356
{
3357
	const struct npc_lt_def_cfg *ltdefs;
3358
	struct rvu_hwinfo *hw = rvu->hw;
R
Rakesh Babu 已提交
3359
	int blkaddr = nix_hw->blkaddr;
3360
	struct rvu_block *block;
R
Rakesh Babu 已提交
3361
	int err;
3362
	u64 cfg;
3363 3364 3365

	block = &hw->block[blkaddr];

3366 3367 3368 3369 3370
	if (is_rvu_96xx_B0(rvu)) {
		/* As per a HW errata in 96xx A0/B0 silicon, NIX may corrupt
		 * internal state when conditional clocks are turned off.
		 * Hence enable them.
		 */
3371
		rvu_write64(rvu, blkaddr, NIX_AF_CFG,
3372 3373 3374 3375 3376 3377 3378 3379 3380 3381 3382 3383 3384
			    rvu_read64(rvu, blkaddr, NIX_AF_CFG) | 0x40ULL);

		/* Set chan/link to backpressure TL3 instead of TL2 */
		rvu_write64(rvu, blkaddr, NIX_AF_PSE_CHANNEL_LEVEL, 0x01);

		/* Disable SQ manager's sticky mode operation (set TM6 = 0)
		 * This sticky mode is known to cause SQ stalls when multiple
		 * SQs are mapped to same SMQ and transmitting pkts at a time.
		 */
		cfg = rvu_read64(rvu, blkaddr, NIX_AF_SQM_DBG_CTL_STATUS);
		cfg &= ~BIT_ULL(15);
		rvu_write64(rvu, blkaddr, NIX_AF_SQM_DBG_CTL_STATUS, cfg);
	}
3385

3386
	ltdefs = rvu->kpu.lt_def;
3387 3388 3389 3390 3391
	/* Calibrate X2P bus to check if CGX/LBK links are fine */
	err = nix_calibrate_x2p(rvu, blkaddr);
	if (err)
		return err;

3392 3393 3394 3395 3396
	/* Set num of links of each type */
	cfg = rvu_read64(rvu, blkaddr, NIX_AF_CONST);
	hw->cgx = (cfg >> 12) & 0xF;
	hw->lmac_per_cgx = (cfg >> 8) & 0xF;
	hw->cgx_links = hw->cgx * hw->lmac_per_cgx;
3397
	hw->lbk_links = (cfg >> 24) & 0xF;
3398 3399
	hw->sdp_links = 1;

3400 3401 3402 3403 3404 3405 3406 3407
	/* Initialize admin queue */
	err = nix_aq_init(rvu, block);
	if (err)
		return err;

	/* Restore CINT timer delay to HW reset values */
	rvu_write64(rvu, blkaddr, NIX_AF_CINT_DELAY, 0x0ULL);

R
Rakesh Babu 已提交
3408 3409
	if (is_block_implemented(hw, blkaddr)) {
		err = nix_setup_txschq(rvu, nix_hw, blkaddr);
3410 3411
		if (err)
			return err;
3412

R
Rakesh Babu 已提交
3413
		err = nix_af_mark_format_setup(rvu, nix_hw, blkaddr);
3414 3415 3416
		if (err)
			return err;

R
Rakesh Babu 已提交
3417
		err = nix_setup_mcast(rvu, nix_hw, blkaddr);
3418 3419
		if (err)
			return err;
3420

3421 3422 3423 3424
		err = nix_setup_txvlan(rvu, nix_hw);
		if (err)
			return err;

3425
		/* Configure segmentation offload formats */
R
Rakesh Babu 已提交
3426
		nix_setup_lso(rvu, nix_hw, blkaddr);
3427

3428
		/* Config Outer/Inner L2, IP, TCP, UDP and SCTP NPC layer info.
3429 3430 3431 3432
		 * This helps HW protocol checker to identify headers
		 * and validate length and checksums.
		 */
		rvu_write64(rvu, blkaddr, NIX_AF_RX_DEF_OL2,
3433 3434
			    (ltdefs->rx_ol2.lid << 8) | (ltdefs->rx_ol2.ltype_match << 4) |
			    ltdefs->rx_ol2.ltype_mask);
3435
		rvu_write64(rvu, blkaddr, NIX_AF_RX_DEF_OIP4,
3436 3437
			    (ltdefs->rx_oip4.lid << 8) | (ltdefs->rx_oip4.ltype_match << 4) |
			    ltdefs->rx_oip4.ltype_mask);
3438
		rvu_write64(rvu, blkaddr, NIX_AF_RX_DEF_IIP4,
3439 3440
			    (ltdefs->rx_iip4.lid << 8) | (ltdefs->rx_iip4.ltype_match << 4) |
			    ltdefs->rx_iip4.ltype_mask);
3441
		rvu_write64(rvu, blkaddr, NIX_AF_RX_DEF_OIP6,
3442 3443
			    (ltdefs->rx_oip6.lid << 8) | (ltdefs->rx_oip6.ltype_match << 4) |
			    ltdefs->rx_oip6.ltype_mask);
3444
		rvu_write64(rvu, blkaddr, NIX_AF_RX_DEF_IIP6,
3445 3446
			    (ltdefs->rx_iip6.lid << 8) | (ltdefs->rx_iip6.ltype_match << 4) |
			    ltdefs->rx_iip6.ltype_mask);
3447
		rvu_write64(rvu, blkaddr, NIX_AF_RX_DEF_OTCP,
3448 3449
			    (ltdefs->rx_otcp.lid << 8) | (ltdefs->rx_otcp.ltype_match << 4) |
			    ltdefs->rx_otcp.ltype_mask);
3450
		rvu_write64(rvu, blkaddr, NIX_AF_RX_DEF_ITCP,
3451 3452
			    (ltdefs->rx_itcp.lid << 8) | (ltdefs->rx_itcp.ltype_match << 4) |
			    ltdefs->rx_itcp.ltype_mask);
3453
		rvu_write64(rvu, blkaddr, NIX_AF_RX_DEF_OUDP,
3454 3455
			    (ltdefs->rx_oudp.lid << 8) | (ltdefs->rx_oudp.ltype_match << 4) |
			    ltdefs->rx_oudp.ltype_mask);
3456
		rvu_write64(rvu, blkaddr, NIX_AF_RX_DEF_IUDP,
3457 3458
			    (ltdefs->rx_iudp.lid << 8) | (ltdefs->rx_iudp.ltype_match << 4) |
			    ltdefs->rx_iudp.ltype_mask);
3459
		rvu_write64(rvu, blkaddr, NIX_AF_RX_DEF_OSCTP,
3460 3461
			    (ltdefs->rx_osctp.lid << 8) | (ltdefs->rx_osctp.ltype_match << 4) |
			    ltdefs->rx_osctp.ltype_mask);
3462
		rvu_write64(rvu, blkaddr, NIX_AF_RX_DEF_ISCTP,
3463 3464
			    (ltdefs->rx_isctp.lid << 8) | (ltdefs->rx_isctp.ltype_match << 4) |
			    ltdefs->rx_isctp.ltype_mask);
3465

3466 3467 3468
		err = nix_rx_flowkey_alg_cfg(rvu, blkaddr);
		if (err)
			return err;
3469 3470 3471

		/* Initialize CGX/LBK/SDP link credits, min/max pkt lengths */
		nix_link_config(rvu, blkaddr);
3472 3473 3474

		/* Enable Channel backpressure */
		rvu_write64(rvu, blkaddr, NIX_AF_RX_CFG, BIT_ULL(0));
3475
	}
3476 3477 3478
	return 0;
}

R
Rakesh Babu 已提交
3479
int rvu_nix_init(struct rvu *rvu)
3480 3481
{
	struct rvu_hwinfo *hw = rvu->hw;
R
Rakesh Babu 已提交
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
	struct nix_hw *nix_hw;
	int blkaddr = 0, err;
	int i = 0;

	hw->nix = devm_kcalloc(rvu->dev, MAX_NIX_BLKS, sizeof(struct nix_hw),
			       GFP_KERNEL);
	if (!hw->nix)
		return -ENOMEM;

	blkaddr = rvu_get_next_nix_blkaddr(rvu, blkaddr);
	while (blkaddr) {
		nix_hw = &hw->nix[i];
		nix_hw->rvu = rvu;
		nix_hw->blkaddr = blkaddr;
		err = rvu_nix_block_init(rvu, nix_hw);
		if (err)
			return err;
		blkaddr = rvu_get_next_nix_blkaddr(rvu, blkaddr);
		i++;
	}

	return 0;
}

static void rvu_nix_block_freemem(struct rvu *rvu, int blkaddr,
				  struct rvu_block *block)
{
3509
	struct nix_txsch *txsch;
3510
	struct nix_mcast *mcast;
3511
	struct nix_txvlan *vlan;
3512
	struct nix_hw *nix_hw;
R
Rakesh Babu 已提交
3513
	int lvl;
3514 3515

	rvu_aq_free(rvu, block->aq);
3516

R
Rakesh Babu 已提交
3517
	if (is_block_implemented(rvu->hw, blkaddr)) {
3518 3519 3520 3521 3522 3523 3524 3525
		nix_hw = get_nix_hw(rvu->hw, blkaddr);
		if (!nix_hw)
			return;

		for (lvl = 0; lvl < NIX_TXSCH_LVL_CNT; lvl++) {
			txsch = &nix_hw->txsch[lvl];
			kfree(txsch->schq.bmap);
		}
3526

3527 3528 3529 3530 3531
		vlan = &nix_hw->txvlan;
		kfree(vlan->rsrc.bmap);
		mutex_destroy(&vlan->rsrc_lock);
		devm_kfree(rvu->dev, vlan->entry2pfvf_map);

3532 3533 3534
		mcast = &nix_hw->mcast;
		qmem_free(rvu->dev, mcast->mce_ctx);
		qmem_free(rvu->dev, mcast->mcast_buf);
3535
		mutex_destroy(&mcast->mce_lock);
3536
	}
3537
}
3538

R
Rakesh Babu 已提交
3539 3540 3541 3542 3543 3544 3545 3546 3547 3548 3549 3550 3551 3552
void rvu_nix_freemem(struct rvu *rvu)
{
	struct rvu_hwinfo *hw = rvu->hw;
	struct rvu_block *block;
	int blkaddr = 0;

	blkaddr = rvu_get_next_nix_blkaddr(rvu, blkaddr);
	while (blkaddr) {
		block = &hw->block[blkaddr];
		rvu_nix_block_freemem(rvu, blkaddr, block);
		blkaddr = rvu_get_next_nix_blkaddr(rvu, blkaddr);
	}
}

3553 3554 3555 3556 3557 3558
int rvu_mbox_handler_nix_lf_start_rx(struct rvu *rvu, struct msg_req *req,
				     struct msg_rsp *rsp)
{
	u16 pcifunc = req->hdr.pcifunc;
	int nixlf, err;

3559
	err = nix_get_nixlf(rvu, pcifunc, &nixlf, NULL);
3560 3561 3562 3563
	if (err)
		return err;

	rvu_npc_enable_default_entries(rvu, pcifunc, nixlf);
3564

3565 3566
	npc_mcam_enable_flows(rvu, pcifunc);

3567
	return rvu_cgx_start_stop_io(rvu, pcifunc, true);
3568 3569 3570 3571 3572 3573 3574 3575
}

int rvu_mbox_handler_nix_lf_stop_rx(struct rvu *rvu, struct msg_req *req,
				    struct msg_rsp *rsp)
{
	u16 pcifunc = req->hdr.pcifunc;
	int nixlf, err;

3576
	err = nix_get_nixlf(rvu, pcifunc, &nixlf, NULL);
3577 3578 3579 3580
	if (err)
		return err;

	rvu_npc_disable_default_entries(rvu, pcifunc, nixlf);
3581

3582 3583
	npc_mcam_disable_flows(rvu, pcifunc);

3584
	return rvu_cgx_start_stop_io(rvu, pcifunc, false);
3585
}
3586 3587 3588 3589 3590 3591 3592 3593 3594 3595

void rvu_nix_lf_teardown(struct rvu *rvu, u16 pcifunc, int blkaddr, int nixlf)
{
	struct rvu_pfvf *pfvf = rvu_get_pfvf(rvu, pcifunc);
	struct hwctx_disable_req ctx_req;
	int err;

	ctx_req.hdr.pcifunc = pcifunc;

	/* Cleanup NPC MCAM entries, free Tx scheduler queues being used */
3596 3597
	rvu_npc_disable_mcam_entries(rvu, pcifunc, nixlf);
	rvu_npc_free_mcam_entries(rvu, pcifunc, nixlf);
3598 3599 3600 3601
	nix_interface_deinit(rvu, pcifunc, nixlf);
	nix_rx_sync(rvu, blkaddr);
	nix_txschq_free(rvu, pcifunc);

3602 3603
	rvu_cgx_start_stop_io(rvu, pcifunc, false);

3604 3605 3606 3607 3608 3609 3610 3611 3612 3613 3614 3615 3616 3617 3618 3619 3620 3621 3622 3623 3624 3625 3626
	if (pfvf->sq_ctx) {
		ctx_req.ctype = NIX_AQ_CTYPE_SQ;
		err = nix_lf_hwctx_disable(rvu, &ctx_req);
		if (err)
			dev_err(rvu->dev, "SQ ctx disable failed\n");
	}

	if (pfvf->rq_ctx) {
		ctx_req.ctype = NIX_AQ_CTYPE_RQ;
		err = nix_lf_hwctx_disable(rvu, &ctx_req);
		if (err)
			dev_err(rvu->dev, "RQ ctx disable failed\n");
	}

	if (pfvf->cq_ctx) {
		ctx_req.ctype = NIX_AQ_CTYPE_CQ;
		err = nix_lf_hwctx_disable(rvu, &ctx_req);
		if (err)
			dev_err(rvu->dev, "CQ ctx disable failed\n");
	}

	nix_ctx_free(rvu, pfvf);
}
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#define NIX_AF_LFX_TX_CFG_PTP_EN	BIT_ULL(32)

static int rvu_nix_lf_ptp_tx_cfg(struct rvu *rvu, u16 pcifunc, bool enable)
{
	struct rvu_hwinfo *hw = rvu->hw;
	struct rvu_block *block;
	int blkaddr;
	int nixlf;
	u64 cfg;

	blkaddr = rvu_get_blkaddr(rvu, BLKTYPE_NIX, pcifunc);
	if (blkaddr < 0)
		return NIX_AF_ERR_AF_LF_INVALID;

	block = &hw->block[blkaddr];
	nixlf = rvu_get_lf(rvu, block, pcifunc, 0);
	if (nixlf < 0)
		return NIX_AF_ERR_AF_LF_INVALID;

	cfg = rvu_read64(rvu, blkaddr, NIX_AF_LFX_TX_CFG(nixlf));

	if (enable)
		cfg |= NIX_AF_LFX_TX_CFG_PTP_EN;
	else
		cfg &= ~NIX_AF_LFX_TX_CFG_PTP_EN;

	rvu_write64(rvu, blkaddr, NIX_AF_LFX_TX_CFG(nixlf), cfg);

	return 0;
}

int rvu_mbox_handler_nix_lf_ptp_tx_enable(struct rvu *rvu, struct msg_req *req,
					  struct msg_rsp *rsp)
{
	return rvu_nix_lf_ptp_tx_cfg(rvu, req->hdr.pcifunc, true);
}

int rvu_mbox_handler_nix_lf_ptp_tx_disable(struct rvu *rvu, struct msg_req *req,
					   struct msg_rsp *rsp)
{
	return rvu_nix_lf_ptp_tx_cfg(rvu, req->hdr.pcifunc, false);
}

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int rvu_mbox_handler_nix_lso_format_cfg(struct rvu *rvu,
					struct nix_lso_format_cfg *req,
					struct nix_lso_format_cfg_rsp *rsp)
{
	u16 pcifunc = req->hdr.pcifunc;
	struct nix_hw *nix_hw;
	struct rvu_pfvf *pfvf;
	int blkaddr, idx, f;
	u64 reg;

	pfvf = rvu_get_pfvf(rvu, pcifunc);
	blkaddr = rvu_get_blkaddr(rvu, BLKTYPE_NIX, pcifunc);
	if (!pfvf->nixlf || blkaddr < 0)
		return NIX_AF_ERR_AF_LF_INVALID;

	nix_hw = get_nix_hw(rvu->hw, blkaddr);
	if (!nix_hw)
		return -EINVAL;

	/* Find existing matching LSO format, if any */
	for (idx = 0; idx < nix_hw->lso.in_use; idx++) {
		for (f = 0; f < NIX_LSO_FIELD_MAX; f++) {
			reg = rvu_read64(rvu, blkaddr,
					 NIX_AF_LSO_FORMATX_FIELDX(idx, f));
			if (req->fields[f] != (reg & req->field_mask))
				break;
		}

		if (f == NIX_LSO_FIELD_MAX)
			break;
	}

	if (idx < nix_hw->lso.in_use) {
		/* Match found */
		rsp->lso_format_idx = idx;
		return 0;
	}

	if (nix_hw->lso.in_use == nix_hw->lso.total)
		return NIX_AF_ERR_LSO_CFG_FAIL;

	rsp->lso_format_idx = nix_hw->lso.in_use++;

	for (f = 0; f < NIX_LSO_FIELD_MAX; f++)
		rvu_write64(rvu, blkaddr,
			    NIX_AF_LSO_FORMATX_FIELDX(rsp->lso_format_idx, f),
			    req->fields[f]);

	return 0;
}
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void rvu_nix_reset_mac(struct rvu_pfvf *pfvf, int pcifunc)
{
	bool from_vf = !!(pcifunc & RVU_PFVF_FUNC_MASK);

	/* overwrite vf mac address with default_mac */
	if (from_vf)
		ether_addr_copy(pfvf->mac_addr, pfvf->default_mac);
}