bnx2x_cmn.c 92.5 KB
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/* bnx2x_cmn.c: Broadcom Everest network driver.
 *
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 * Copyright (c) 2007-2011 Broadcom Corporation
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 *
 * This program is free software; you can redistribute it and/or modify
 * it under the terms of the GNU General Public License as published by
 * the Free Software Foundation.
 *
 * Maintained by: Eilon Greenstein <eilong@broadcom.com>
 * Written by: Eliezer Tamir
 * Based on code from Michael Chan's bnx2 driver
 * UDP CSUM errata workaround by Arik Gendelman
 * Slowpath and fastpath rework by Vladislav Zolotarov
 * Statistics and Link management by Yitchak Gertner
 *
 */

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#define pr_fmt(fmt) KBUILD_MODNAME ": " fmt

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#include <linux/etherdevice.h>
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#include <linux/if_vlan.h>
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#include <linux/interrupt.h>
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#include <linux/ip.h>
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#include <net/ipv6.h>
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#include <net/ip6_checksum.h>
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#include <linux/firmware.h>
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#include <linux/prefetch.h>
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#include "bnx2x_cmn.h"
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#include "bnx2x_init.h"
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#include "bnx2x_sp.h"
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/**
 * bnx2x_bz_fp - zero content of the fastpath structure.
 *
 * @bp:		driver handle
 * @index:	fastpath index to be zeroed
 *
 * Makes sure the contents of the bp->fp[index].napi is kept
 * intact.
 */
static inline void bnx2x_bz_fp(struct bnx2x *bp, int index)
{
	struct bnx2x_fastpath *fp = &bp->fp[index];
	struct napi_struct orig_napi = fp->napi;
	/* bzero bnx2x_fastpath contents */
	memset(fp, 0, sizeof(*fp));

	/* Restore the NAPI object as it has been already initialized */
	fp->napi = orig_napi;
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	fp->bp = bp;
	fp->index = index;
	if (IS_ETH_FP(fp))
		fp->max_cos = bp->max_cos;
	else
		/* Special queues support only one CoS */
		fp->max_cos = 1;

	/*
	 * set the tpa flag for each queue. The tpa flag determines the queue
	 * minimal size so it must be set prior to queue memory allocation
	 */
	fp->disable_tpa = ((bp->flags & TPA_ENABLE_FLAG) == 0);

#ifdef BCM_CNIC
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	/* We don't want TPA on an FCoE L2 ring */
	if (IS_FCOE_FP(fp))
		fp->disable_tpa = 1;
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#endif
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}

/**
 * bnx2x_move_fp - move content of the fastpath structure.
 *
 * @bp:		driver handle
 * @from:	source FP index
 * @to:		destination FP index
 *
 * Makes sure the contents of the bp->fp[to].napi is kept
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 * intact. This is done by first copying the napi struct from
 * the target to the source, and then mem copying the entire
 * source onto the target
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 */
static inline void bnx2x_move_fp(struct bnx2x *bp, int from, int to)
{
	struct bnx2x_fastpath *from_fp = &bp->fp[from];
	struct bnx2x_fastpath *to_fp = &bp->fp[to];
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	/* Copy the NAPI object as it has been already initialized */
	from_fp->napi = to_fp->napi;

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	/* Move bnx2x_fastpath contents */
	memcpy(to_fp, from_fp, sizeof(*to_fp));
	to_fp->index = to;
}

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int load_count[2][3] = { {0} }; /* per-path: 0-common, 1-port0, 2-port1 */

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/* free skb in the packet ring at pos idx
 * return idx of last bd freed
 */
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static u16 bnx2x_free_tx_pkt(struct bnx2x *bp, struct bnx2x_fp_txdata *txdata,
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			     u16 idx)
{
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	struct sw_tx_bd *tx_buf = &txdata->tx_buf_ring[idx];
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	struct eth_tx_start_bd *tx_start_bd;
	struct eth_tx_bd *tx_data_bd;
	struct sk_buff *skb = tx_buf->skb;
	u16 bd_idx = TX_BD(tx_buf->first_bd), new_cons;
	int nbd;

	/* prefetch skb end pointer to speedup dev_kfree_skb() */
	prefetch(&skb->end);

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	DP(BNX2X_MSG_FP, "fp[%d]: pkt_idx %d  buff @(%p)->skb %p\n",
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	   txdata->txq_index, idx, tx_buf, skb);
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	/* unmap first bd */
	DP(BNX2X_MSG_OFF, "free bd_idx %d\n", bd_idx);
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	tx_start_bd = &txdata->tx_desc_ring[bd_idx].start_bd;
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	dma_unmap_single(&bp->pdev->dev, BD_UNMAP_ADDR(tx_start_bd),
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			 BD_UNMAP_LEN(tx_start_bd), DMA_TO_DEVICE);
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	nbd = le16_to_cpu(tx_start_bd->nbd) - 1;
#ifdef BNX2X_STOP_ON_ERROR
	if ((nbd - 1) > (MAX_SKB_FRAGS + 2)) {
		BNX2X_ERR("BAD nbd!\n");
		bnx2x_panic();
	}
#endif
	new_cons = nbd + tx_buf->first_bd;

	/* Get the next bd */
	bd_idx = TX_BD(NEXT_TX_IDX(bd_idx));

	/* Skip a parse bd... */
	--nbd;
	bd_idx = TX_BD(NEXT_TX_IDX(bd_idx));

	/* ...and the TSO split header bd since they have no mapping */
	if (tx_buf->flags & BNX2X_TSO_SPLIT_BD) {
		--nbd;
		bd_idx = TX_BD(NEXT_TX_IDX(bd_idx));
	}

	/* now free frags */
	while (nbd > 0) {

		DP(BNX2X_MSG_OFF, "free frag bd_idx %d\n", bd_idx);
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		tx_data_bd = &txdata->tx_desc_ring[bd_idx].reg_bd;
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		dma_unmap_page(&bp->pdev->dev, BD_UNMAP_ADDR(tx_data_bd),
			       BD_UNMAP_LEN(tx_data_bd), DMA_TO_DEVICE);
		if (--nbd)
			bd_idx = TX_BD(NEXT_TX_IDX(bd_idx));
	}

	/* release skb */
	WARN_ON(!skb);
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	dev_kfree_skb_any(skb);
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	tx_buf->first_bd = 0;
	tx_buf->skb = NULL;

	return new_cons;
}

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int bnx2x_tx_int(struct bnx2x *bp, struct bnx2x_fp_txdata *txdata)
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{
	struct netdev_queue *txq;
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	u16 hw_cons, sw_cons, bd_cons = txdata->tx_bd_cons;
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#ifdef BNX2X_STOP_ON_ERROR
	if (unlikely(bp->panic))
		return -1;
#endif

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	txq = netdev_get_tx_queue(bp->dev, txdata->txq_index);
	hw_cons = le16_to_cpu(*txdata->tx_cons_sb);
	sw_cons = txdata->tx_pkt_cons;
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	while (sw_cons != hw_cons) {
		u16 pkt_cons;

		pkt_cons = TX_BD(sw_cons);

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		DP(NETIF_MSG_TX_DONE, "queue[%d]: hw_cons %u  sw_cons %u "
				      " pkt_cons %u\n",
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		   txdata->txq_index, hw_cons, sw_cons, pkt_cons);
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		bd_cons = bnx2x_free_tx_pkt(bp, txdata, pkt_cons);
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		sw_cons++;
	}

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	txdata->tx_pkt_cons = sw_cons;
	txdata->tx_bd_cons = bd_cons;
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	/* Need to make the tx_bd_cons update visible to start_xmit()
	 * before checking for netif_tx_queue_stopped().  Without the
	 * memory barrier, there is a small possibility that
	 * start_xmit() will miss it and cause the queue to be stopped
	 * forever.
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	 * On the other hand we need an rmb() here to ensure the proper
	 * ordering of bit testing in the following
	 * netif_tx_queue_stopped(txq) call.
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	 */
	smp_mb();

	if (unlikely(netif_tx_queue_stopped(txq))) {
		/* Taking tx_lock() is needed to prevent reenabling the queue
		 * while it's empty. This could have happen if rx_action() gets
		 * suspended in bnx2x_tx_int() after the condition before
		 * netif_tx_wake_queue(), while tx_action (bnx2x_start_xmit()):
		 *
		 * stops the queue->sees fresh tx_bd_cons->releases the queue->
		 * sends some packets consuming the whole queue again->
		 * stops the queue
		 */

		__netif_tx_lock(txq, smp_processor_id());

		if ((netif_tx_queue_stopped(txq)) &&
		    (bp->state == BNX2X_STATE_OPEN) &&
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		    (bnx2x_tx_avail(bp, txdata) >= MAX_SKB_FRAGS + 3))
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			netif_tx_wake_queue(txq);

		__netif_tx_unlock(txq);
	}
	return 0;
}

static inline void bnx2x_update_last_max_sge(struct bnx2x_fastpath *fp,
					     u16 idx)
{
	u16 last_max = fp->last_max_sge;

	if (SUB_S16(idx, last_max) > 0)
		fp->last_max_sge = idx;
}

static void bnx2x_update_sge_prod(struct bnx2x_fastpath *fp,
				  struct eth_fast_path_rx_cqe *fp_cqe)
{
	struct bnx2x *bp = fp->bp;
	u16 sge_len = SGE_PAGE_ALIGN(le16_to_cpu(fp_cqe->pkt_len) -
				     le16_to_cpu(fp_cqe->len_on_bd)) >>
		      SGE_PAGE_SHIFT;
	u16 last_max, last_elem, first_elem;
	u16 delta = 0;
	u16 i;

	if (!sge_len)
		return;

	/* First mark all used pages */
	for (i = 0; i < sge_len; i++)
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		BIT_VEC64_CLEAR_BIT(fp->sge_mask,
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			RX_SGE(le16_to_cpu(fp_cqe->sgl_or_raw_data.sgl[i])));
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	DP(NETIF_MSG_RX_STATUS, "fp_cqe->sgl[%d] = %d\n",
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	   sge_len - 1, le16_to_cpu(fp_cqe->sgl_or_raw_data.sgl[sge_len - 1]));
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	/* Here we assume that the last SGE index is the biggest */
	prefetch((void *)(fp->sge_mask));
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	bnx2x_update_last_max_sge(fp,
		le16_to_cpu(fp_cqe->sgl_or_raw_data.sgl[sge_len - 1]));
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	last_max = RX_SGE(fp->last_max_sge);
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	last_elem = last_max >> BIT_VEC64_ELEM_SHIFT;
	first_elem = RX_SGE(fp->rx_sge_prod) >> BIT_VEC64_ELEM_SHIFT;
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	/* If ring is not full */
	if (last_elem + 1 != first_elem)
		last_elem++;

	/* Now update the prod */
	for (i = first_elem; i != last_elem; i = NEXT_SGE_MASK_ELEM(i)) {
		if (likely(fp->sge_mask[i]))
			break;

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		fp->sge_mask[i] = BIT_VEC64_ELEM_ONE_MASK;
		delta += BIT_VEC64_ELEM_SZ;
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	}

	if (delta > 0) {
		fp->rx_sge_prod += delta;
		/* clear page-end entries */
		bnx2x_clear_sge_mask_next_elems(fp);
	}

	DP(NETIF_MSG_RX_STATUS,
	   "fp->last_max_sge = %d  fp->rx_sge_prod = %d\n",
	   fp->last_max_sge, fp->rx_sge_prod);
}

static void bnx2x_tpa_start(struct bnx2x_fastpath *fp, u16 queue,
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			    struct sk_buff *skb, u16 cons, u16 prod,
			    struct eth_fast_path_rx_cqe *cqe)
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{
	struct bnx2x *bp = fp->bp;
	struct sw_rx_bd *cons_rx_buf = &fp->rx_buf_ring[cons];
	struct sw_rx_bd *prod_rx_buf = &fp->rx_buf_ring[prod];
	struct eth_rx_bd *prod_bd = &fp->rx_desc_ring[prod];
	dma_addr_t mapping;
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	struct bnx2x_agg_info *tpa_info = &fp->tpa_info[queue];
	struct sw_rx_bd *first_buf = &tpa_info->first_buf;
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	/* print error if current state != stop */
	if (tpa_info->tpa_state != BNX2X_TPA_STOP)
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		BNX2X_ERR("start of bin not in stop [%d]\n", queue);

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	/* Try to map an empty skb from the aggregation info  */
	mapping = dma_map_single(&bp->pdev->dev,
				 first_buf->skb->data,
				 fp->rx_buf_size, DMA_FROM_DEVICE);
	/*
	 *  ...if it fails - move the skb from the consumer to the producer
	 *  and set the current aggregation state as ERROR to drop it
	 *  when TPA_STOP arrives.
	 */

	if (unlikely(dma_mapping_error(&bp->pdev->dev, mapping))) {
		/* Move the BD from the consumer to the producer */
		bnx2x_reuse_rx_skb(fp, cons, prod);
		tpa_info->tpa_state = BNX2X_TPA_ERROR;
		return;
	}
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	/* move empty skb from pool to prod */
	prod_rx_buf->skb = first_buf->skb;
	dma_unmap_addr_set(prod_rx_buf, mapping, mapping);
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	/* point prod_bd to new skb */
	prod_bd->addr_hi = cpu_to_le32(U64_HI(mapping));
	prod_bd->addr_lo = cpu_to_le32(U64_LO(mapping));

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	/* move partial skb from cons to pool (don't unmap yet) */
	*first_buf = *cons_rx_buf;

	/* mark bin state as START */
	tpa_info->parsing_flags =
		le16_to_cpu(cqe->pars_flags.flags);
	tpa_info->vlan_tag = le16_to_cpu(cqe->vlan_tag);
	tpa_info->tpa_state = BNX2X_TPA_START;
	tpa_info->len_on_bd = le16_to_cpu(cqe->len_on_bd);
	tpa_info->placement_offset = cqe->placement_offset;

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#ifdef BNX2X_STOP_ON_ERROR
	fp->tpa_queue_used |= (1 << queue);
#ifdef _ASM_GENERIC_INT_L64_H
	DP(NETIF_MSG_RX_STATUS, "fp->tpa_queue_used = 0x%lx\n",
#else
	DP(NETIF_MSG_RX_STATUS, "fp->tpa_queue_used = 0x%llx\n",
#endif
	   fp->tpa_queue_used);
#endif
}

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/* Timestamp option length allowed for TPA aggregation:
 *
 *		nop nop kind length echo val
 */
#define TPA_TSTAMP_OPT_LEN	12
/**
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 * bnx2x_set_lro_mss - calculate the approximate value of the MSS
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 *
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 * @bp:			driver handle
 * @parsing_flags:	parsing flags from the START CQE
 * @len_on_bd:		total length of the first packet for the
 *			aggregation.
 *
 * Approximate value of the MSS for this aggregation calculated using
 * the first packet of it.
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 */
static inline u16 bnx2x_set_lro_mss(struct bnx2x *bp, u16 parsing_flags,
				    u16 len_on_bd)
{
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	/*
	 * TPA arrgregation won't have either IP options or TCP options
	 * other than timestamp or IPv6 extension headers.
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	 */
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	u16 hdrs_len = ETH_HLEN + sizeof(struct tcphdr);

	if (GET_FLAG(parsing_flags, PARSING_FLAGS_OVER_ETHERNET_PROTOCOL) ==
	    PRS_FLAG_OVERETH_IPV6)
		hdrs_len += sizeof(struct ipv6hdr);
	else /* IPv4 */
		hdrs_len += sizeof(struct iphdr);
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	/* Check if there was a TCP timestamp, if there is it's will
	 * always be 12 bytes length: nop nop kind length echo val.
	 *
	 * Otherwise FW would close the aggregation.
	 */
	if (parsing_flags & PARSING_FLAGS_TIME_STAMP_EXIST_FLAG)
		hdrs_len += TPA_TSTAMP_OPT_LEN;

	return len_on_bd - hdrs_len;
}

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static int bnx2x_fill_frag_skb(struct bnx2x *bp, struct bnx2x_fastpath *fp,
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			       u16 queue, struct sk_buff *skb,
			       struct eth_end_agg_rx_cqe *cqe,
			       u16 cqe_idx)
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{
	struct sw_rx_page *rx_pg, old_rx_pg;
	u32 i, frag_len, frag_size, pages;
	int err;
	int j;
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	struct bnx2x_agg_info *tpa_info = &fp->tpa_info[queue];
	u16 len_on_bd = tpa_info->len_on_bd;
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	frag_size = le16_to_cpu(cqe->pkt_len) - len_on_bd;
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	pages = SGE_PAGE_ALIGN(frag_size) >> SGE_PAGE_SHIFT;

	/* This is needed in order to enable forwarding support */
	if (frag_size)
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		skb_shinfo(skb)->gso_size = bnx2x_set_lro_mss(bp,
					tpa_info->parsing_flags, len_on_bd);
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#ifdef BNX2X_STOP_ON_ERROR
	if (pages > min_t(u32, 8, MAX_SKB_FRAGS)*SGE_PAGE_SIZE*PAGES_PER_SGE) {
		BNX2X_ERR("SGL length is too long: %d. CQE index is %d\n",
			  pages, cqe_idx);
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		BNX2X_ERR("cqe->pkt_len = %d\n", cqe->pkt_len);
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		bnx2x_panic();
		return -EINVAL;
	}
#endif

	/* Run through the SGL and compose the fragmented skb */
	for (i = 0, j = 0; i < pages; i += PAGES_PER_SGE, j++) {
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		u16 sge_idx = RX_SGE(le16_to_cpu(cqe->sgl_or_raw_data.sgl[j]));
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		/* FW gives the indices of the SGE as if the ring is an array
		   (meaning that "next" element will consume 2 indices) */
		frag_len = min(frag_size, (u32)(SGE_PAGE_SIZE*PAGES_PER_SGE));
		rx_pg = &fp->rx_page_ring[sge_idx];
		old_rx_pg = *rx_pg;

		/* If we fail to allocate a substitute page, we simply stop
		   where we are and drop the whole packet */
		err = bnx2x_alloc_rx_sge(bp, fp, sge_idx);
		if (unlikely(err)) {
			fp->eth_q_stats.rx_skb_alloc_failed++;
			return err;
		}

		/* Unmap the page as we r going to pass it to the stack */
		dma_unmap_page(&bp->pdev->dev,
			       dma_unmap_addr(&old_rx_pg, mapping),
			       SGE_PAGE_SIZE*PAGES_PER_SGE, DMA_FROM_DEVICE);

		/* Add one frag and update the appropriate fields in the skb */
		skb_fill_page_desc(skb, j, old_rx_pg.page, 0, frag_len);

		skb->data_len += frag_len;
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		skb->truesize += SGE_PAGE_SIZE * PAGES_PER_SGE;
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		skb->len += frag_len;

		frag_size -= frag_len;
	}

	return 0;
}

static void bnx2x_tpa_stop(struct bnx2x *bp, struct bnx2x_fastpath *fp,
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			   u16 queue, struct eth_end_agg_rx_cqe *cqe,
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			   u16 cqe_idx)
{
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	struct bnx2x_agg_info *tpa_info = &fp->tpa_info[queue];
	struct sw_rx_bd *rx_buf = &tpa_info->first_buf;
	u8 pad = tpa_info->placement_offset;
	u16 len = tpa_info->len_on_bd;
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	struct sk_buff *skb = rx_buf->skb;
	/* alloc new skb */
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	struct sk_buff *new_skb;
	u8 old_tpa_state = tpa_info->tpa_state;

	tpa_info->tpa_state = BNX2X_TPA_STOP;

	/* If we there was an error during the handling of the TPA_START -
	 * drop this aggregation.
	 */
	if (old_tpa_state == BNX2X_TPA_ERROR)
		goto drop;

	/* Try to allocate the new skb */
	new_skb = netdev_alloc_skb(bp->dev, fp->rx_buf_size);
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	/* Unmap skb in the pool anyway, as we are going to change
	   pool entry status to BNX2X_TPA_STOP even if new skb allocation
	   fails. */
	dma_unmap_single(&bp->pdev->dev, dma_unmap_addr(rx_buf, mapping),
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			 fp->rx_buf_size, DMA_FROM_DEVICE);
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	if (likely(new_skb)) {
		prefetch(skb);
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		prefetch(((char *)(skb)) + L1_CACHE_BYTES);
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#ifdef BNX2X_STOP_ON_ERROR
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		if (pad + len > fp->rx_buf_size) {
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			BNX2X_ERR("skb_put is about to fail...  "
				  "pad %d  len %d  rx_buf_size %d\n",
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				  pad, len, fp->rx_buf_size);
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			bnx2x_panic();
			return;
		}
#endif

		skb_reserve(skb, pad);
		skb_put(skb, len);

		skb->protocol = eth_type_trans(skb, bp->dev);
		skb->ip_summed = CHECKSUM_UNNECESSARY;

518 519 520
		if (!bnx2x_fill_frag_skb(bp, fp, queue, skb, cqe, cqe_idx)) {
			if (tpa_info->parsing_flags & PARSING_FLAGS_VLAN)
				__vlan_hwaccel_put_tag(skb, tpa_info->vlan_tag);
521
			napi_gro_receive(&fp->napi, skb);
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		} else {
			DP(NETIF_MSG_RX_STATUS, "Failed to allocate new pages"
			   " - dropping packet!\n");
525
			dev_kfree_skb_any(skb);
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526 527 528 529
		}


		/* put new skb in bin */
530
		rx_buf->skb = new_skb;
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531

532
		return;
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	}

535 536 537 538 539
drop:
	/* drop the packet and keep the buffer in the bin */
	DP(NETIF_MSG_RX_STATUS,
	   "Failed to allocate or map a new skb - dropping packet!\n");
	fp->eth_q_stats.rx_skb_alloc_failed++;
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540 541 542 543 544 545 546 547 548 549 550 551 552 553 554 555 556 557 558 559 560 561 562 563 564 565 566 567 568 569 570 571 572 573 574 575 576 577 578 579 580 581 582 583 584 585 586 587 588 589 590 591 592
}

/* Set Toeplitz hash value in the skb using the value from the
 * CQE (calculated by HW).
 */
static inline void bnx2x_set_skb_rxhash(struct bnx2x *bp, union eth_rx_cqe *cqe,
					struct sk_buff *skb)
{
	/* Set Toeplitz hash from CQE */
	if ((bp->dev->features & NETIF_F_RXHASH) &&
	    (cqe->fast_path_cqe.status_flags &
	     ETH_FAST_PATH_RX_CQE_RSS_HASH_FLG))
		skb->rxhash =
		le32_to_cpu(cqe->fast_path_cqe.rss_hash_result);
}

int bnx2x_rx_int(struct bnx2x_fastpath *fp, int budget)
{
	struct bnx2x *bp = fp->bp;
	u16 bd_cons, bd_prod, bd_prod_fw, comp_ring_cons;
	u16 hw_comp_cons, sw_comp_cons, sw_comp_prod;
	int rx_pkt = 0;

#ifdef BNX2X_STOP_ON_ERROR
	if (unlikely(bp->panic))
		return 0;
#endif

	/* CQ "next element" is of the size of the regular element,
	   that's why it's ok here */
	hw_comp_cons = le16_to_cpu(*fp->rx_cons_sb);
	if ((hw_comp_cons & MAX_RCQ_DESC_CNT) == MAX_RCQ_DESC_CNT)
		hw_comp_cons++;

	bd_cons = fp->rx_bd_cons;
	bd_prod = fp->rx_bd_prod;
	bd_prod_fw = bd_prod;
	sw_comp_cons = fp->rx_comp_cons;
	sw_comp_prod = fp->rx_comp_prod;

	/* Memory barrier necessary as speculative reads of the rx
	 * buffer can be ahead of the index in the status block
	 */
	rmb();

	DP(NETIF_MSG_RX_STATUS,
	   "queue[%d]:  hw_comp_cons %u  sw_comp_cons %u\n",
	   fp->index, hw_comp_cons, sw_comp_cons);

	while (sw_comp_cons != hw_comp_cons) {
		struct sw_rx_bd *rx_buf = NULL;
		struct sk_buff *skb;
		union eth_rx_cqe *cqe;
593
		struct eth_fast_path_rx_cqe *cqe_fp;
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		u8 cqe_fp_flags;
595
		enum eth_rx_cqe_type cqe_fp_type;
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		u16 len, pad;

598 599 600 601 602
#ifdef BNX2X_STOP_ON_ERROR
		if (unlikely(bp->panic))
			return 0;
#endif

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		comp_ring_cons = RCQ_BD(sw_comp_cons);
		bd_prod = RX_BD(bd_prod);
		bd_cons = RX_BD(bd_cons);

		/* Prefetch the page containing the BD descriptor
		   at producer's index. It will be needed when new skb is
		   allocated */
		prefetch((void *)(PAGE_ALIGN((unsigned long)
					     (&fp->rx_desc_ring[bd_prod])) -
				  PAGE_SIZE + 1));

		cqe = &fp->rx_comp_ring[comp_ring_cons];
615 616 617
		cqe_fp = &cqe->fast_path_cqe;
		cqe_fp_flags = cqe_fp->type_error_flags;
		cqe_fp_type = cqe_fp_flags & ETH_FAST_PATH_RX_CQE_TYPE;
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		DP(NETIF_MSG_RX_STATUS, "CQE type %x  err %x  status %x"
		   "  queue %x  vlan %x  len %u\n", CQE_TYPE(cqe_fp_flags),
621 622 623
		   cqe_fp_flags, cqe_fp->status_flags,
		   le32_to_cpu(cqe_fp->rss_hash_result),
		   le16_to_cpu(cqe_fp->vlan_tag), le16_to_cpu(cqe_fp->pkt_len));
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		/* is this a slowpath msg? */
626
		if (unlikely(CQE_TYPE_SLOW(cqe_fp_type))) {
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			bnx2x_sp_event(fp, cqe);
			goto next_cqe;

		/* this is an rx packet */
		} else {
			rx_buf = &fp->rx_buf_ring[bd_cons];
			skb = rx_buf->skb;
			prefetch(skb);

636 637 638 639 640 641 642 643 644 645
			if (!CQE_TYPE_FAST(cqe_fp_type)) {
#ifdef BNX2X_STOP_ON_ERROR
				/* sanity check */
				if (fp->disable_tpa &&
				    (CQE_TYPE_START(cqe_fp_type) ||
				     CQE_TYPE_STOP(cqe_fp_type)))
					BNX2X_ERR("START/STOP packet while "
						  "disable_tpa type %x\n",
						  CQE_TYPE(cqe_fp_type));
#endif
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647 648
				if (CQE_TYPE_START(cqe_fp_type)) {
					u16 queue = cqe_fp->queue_index;
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					DP(NETIF_MSG_RX_STATUS,
					   "calling tpa_start on queue %d\n",
					   queue);

					bnx2x_tpa_start(fp, queue, skb,
654 655
							bd_cons, bd_prod,
							cqe_fp);
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657
					/* Set Toeplitz hash for LRO skb */
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					bnx2x_set_skb_rxhash(bp, cqe, skb);

					goto next_rx;
661 662 663 664

				} else {
					u16 queue =
						cqe->end_agg_cqe.queue_index;
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					DP(NETIF_MSG_RX_STATUS,
					   "calling tpa_stop on queue %d\n",
					   queue);

669 670 671
					bnx2x_tpa_stop(bp, fp, queue,
						       &cqe->end_agg_cqe,
						       comp_ring_cons);
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#ifdef BNX2X_STOP_ON_ERROR
					if (bp->panic)
						return 0;
#endif

677
					bnx2x_update_sge_prod(fp, cqe_fp);
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					goto next_cqe;
				}
			}
681 682 683
			/* non TPA */
			len = le16_to_cpu(cqe_fp->pkt_len);
			pad = cqe_fp->placement_offset;
684
			dma_sync_single_for_cpu(&bp->pdev->dev,
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					dma_unmap_addr(rx_buf, mapping),
686 687
						       pad + RX_COPY_THRESH,
						       DMA_FROM_DEVICE);
688
			prefetch(((char *)(skb)) + L1_CACHE_BYTES);
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			/* is this an error packet? */
			if (unlikely(cqe_fp_flags & ETH_RX_ERROR_FALGS)) {
				DP(NETIF_MSG_RX_ERR,
				   "ERROR  flags %x  rx packet %u\n",
				   cqe_fp_flags, sw_comp_cons);
				fp->eth_q_stats.rx_err_discard_pkt++;
				goto reuse_rx;
			}

			/* Since we don't have a jumbo ring
			 * copy small packets if mtu > 1500
			 */
			if ((bp->dev->mtu > ETH_MAX_PACKET_SIZE) &&
			    (len <= RX_COPY_THRESH)) {
				struct sk_buff *new_skb;

706
				new_skb = netdev_alloc_skb(bp->dev, len + pad);
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				if (new_skb == NULL) {
					DP(NETIF_MSG_RX_ERR,
					   "ERROR  packet dropped "
					   "because of alloc failure\n");
					fp->eth_q_stats.rx_skb_alloc_failed++;
					goto reuse_rx;
				}

				/* aligned copy */
				skb_copy_from_linear_data_offset(skb, pad,
						    new_skb->data + pad, len);
				skb_reserve(new_skb, pad);
				skb_put(new_skb, len);

721
				bnx2x_reuse_rx_skb(fp, bd_cons, bd_prod);
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				skb = new_skb;

			} else
			if (likely(bnx2x_alloc_rx_skb(bp, fp, bd_prod) == 0)) {
				dma_unmap_single(&bp->pdev->dev,
					dma_unmap_addr(rx_buf, mapping),
729
						 fp->rx_buf_size,
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						 DMA_FROM_DEVICE);
				skb_reserve(skb, pad);
				skb_put(skb, len);

			} else {
				DP(NETIF_MSG_RX_ERR,
				   "ERROR  packet dropped because "
				   "of alloc failure\n");
				fp->eth_q_stats.rx_skb_alloc_failed++;
reuse_rx:
740
				bnx2x_reuse_rx_skb(fp, bd_cons, bd_prod);
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				goto next_rx;
			}

			skb->protocol = eth_type_trans(skb, bp->dev);

			/* Set Toeplitz hash for a none-LRO skb */
			bnx2x_set_skb_rxhash(bp, cqe, skb);

749
			skb_checksum_none_assert(skb);
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751
			if (bp->dev->features & NETIF_F_RXCSUM) {
752

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				if (likely(BNX2X_RX_CSUM_OK(cqe)))
					skb->ip_summed = CHECKSUM_UNNECESSARY;
				else
					fp->eth_q_stats.hw_csum_err++;
			}
		}

760
		skb_record_rx_queue(skb, fp->rx_queue);
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762 763
		if (le16_to_cpu(cqe_fp->pars_flags.flags) &
		    PARSING_FLAGS_VLAN)
764
			__vlan_hwaccel_put_tag(skb,
765
					       le16_to_cpu(cqe_fp->vlan_tag));
766
		napi_gro_receive(&fp->napi, skb);
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next_rx:
		rx_buf->skb = NULL;

		bd_cons = NEXT_RX_IDX(bd_cons);
		bd_prod = NEXT_RX_IDX(bd_prod);
		bd_prod_fw = NEXT_RX_IDX(bd_prod_fw);
		rx_pkt++;
next_cqe:
		sw_comp_prod = NEXT_RCQ_IDX(sw_comp_prod);
		sw_comp_cons = NEXT_RCQ_IDX(sw_comp_cons);

		if (rx_pkt == budget)
			break;
	} /* while */

	fp->rx_bd_cons = bd_cons;
	fp->rx_bd_prod = bd_prod_fw;
	fp->rx_comp_cons = sw_comp_cons;
	fp->rx_comp_prod = sw_comp_prod;

	/* Update producers */
	bnx2x_update_rx_prod(bp, fp, bd_prod_fw, sw_comp_prod,
			     fp->rx_sge_prod);

	fp->rx_pkt += rx_pkt;
	fp->rx_calls++;

	return rx_pkt;
}

static irqreturn_t bnx2x_msix_fp_int(int irq, void *fp_cookie)
{
	struct bnx2x_fastpath *fp = fp_cookie;
	struct bnx2x *bp = fp->bp;
803
	u8 cos;
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805 806 807 808
	DP(BNX2X_MSG_FP, "got an MSI-X interrupt on IDX:SB "
			 "[fp %d fw_sd %d igusb %d]\n",
	   fp->index, fp->fw_sb_id, fp->igu_sb_id);
	bnx2x_ack_sb(bp, fp->igu_sb_id, USTORM_ID, 0, IGU_INT_DISABLE, 0);
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#ifdef BNX2X_STOP_ON_ERROR
	if (unlikely(bp->panic))
		return IRQ_HANDLED;
#endif

	/* Handle Rx and Tx according to MSI-X vector */
	prefetch(fp->rx_cons_sb);
817 818 819 820

	for_each_cos_in_tx_queue(fp, cos)
		prefetch(fp->txdata[cos].tx_cons_sb);

821
	prefetch(&fp->sb_running_index[SM_RX_ID]);
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	napi_schedule(&bnx2x_fp(bp, fp->index, napi));

	return IRQ_HANDLED;
}

/* HW Lock for shared dual port PHYs */
void bnx2x_acquire_phy_lock(struct bnx2x *bp)
{
	mutex_lock(&bp->port.phy_mutex);

	if (bp->port.need_hw_lock)
		bnx2x_acquire_hw_lock(bp, HW_LOCK_RESOURCE_MDIO);
}

void bnx2x_release_phy_lock(struct bnx2x *bp)
{
	if (bp->port.need_hw_lock)
		bnx2x_release_hw_lock(bp, HW_LOCK_RESOURCE_MDIO);

	mutex_unlock(&bp->port.phy_mutex);
}

844 845 846 847 848
/* calculates MF speed according to current linespeed and MF configuration */
u16 bnx2x_get_mf_speed(struct bnx2x *bp)
{
	u16 line_speed = bp->link_vars.line_speed;
	if (IS_MF(bp)) {
849 850 851 852 853
		u16 maxCfg = bnx2x_extract_max_cfg(bp,
						   bp->mf_config[BP_VN(bp)]);

		/* Calculate the current MAX line speed limit for the MF
		 * devices
854
		 */
855 856 857
		if (IS_MF_SI(bp))
			line_speed = (line_speed * maxCfg) / 100;
		else { /* SD mode */
858 859 860 861
			u16 vn_max_rate = maxCfg * 100;

			if (vn_max_rate < line_speed)
				line_speed = vn_max_rate;
862
		}
863 864 865 866 867
	}

	return line_speed;
}

868 869 870 871 872 873 874 875 876 877 878 879 880 881 882 883 884 885 886 887 888 889 890 891 892 893 894 895 896 897 898 899 900 901 902 903 904 905 906 907 908 909 910 911 912 913
/**
 * bnx2x_fill_report_data - fill link report data to report
 *
 * @bp:		driver handle
 * @data:	link state to update
 *
 * It uses a none-atomic bit operations because is called under the mutex.
 */
static inline void bnx2x_fill_report_data(struct bnx2x *bp,
					  struct bnx2x_link_report_data *data)
{
	u16 line_speed = bnx2x_get_mf_speed(bp);

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

	/* Fill the report data: efective line speed */
	data->line_speed = line_speed;

	/* Link is down */
	if (!bp->link_vars.link_up || (bp->flags & MF_FUNC_DIS))
		__set_bit(BNX2X_LINK_REPORT_LINK_DOWN,
			  &data->link_report_flags);

	/* Full DUPLEX */
	if (bp->link_vars.duplex == DUPLEX_FULL)
		__set_bit(BNX2X_LINK_REPORT_FD, &data->link_report_flags);

	/* Rx Flow Control is ON */
	if (bp->link_vars.flow_ctrl & BNX2X_FLOW_CTRL_RX)
		__set_bit(BNX2X_LINK_REPORT_RX_FC_ON, &data->link_report_flags);

	/* Tx Flow Control is ON */
	if (bp->link_vars.flow_ctrl & BNX2X_FLOW_CTRL_TX)
		__set_bit(BNX2X_LINK_REPORT_TX_FC_ON, &data->link_report_flags);
}

/**
 * bnx2x_link_report - report link status to OS.
 *
 * @bp:		driver handle
 *
 * Calls the __bnx2x_link_report() under the same locking scheme
 * as a link/PHY state managing code to ensure a consistent link
 * reporting.
 */

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void bnx2x_link_report(struct bnx2x *bp)
{
916 917 918 919
	bnx2x_acquire_phy_lock(bp);
	__bnx2x_link_report(bp);
	bnx2x_release_phy_lock(bp);
}
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921 922 923 924 925 926 927 928 929 930 931
/**
 * __bnx2x_link_report - report link status to OS.
 *
 * @bp:		driver handle
 *
 * None atomic inmlementation.
 * Should be called under the phy_lock.
 */
void __bnx2x_link_report(struct bnx2x *bp)
{
	struct bnx2x_link_report_data cur_data;
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933 934 935 936 937 938 939 940 941 942 943 944 945 946 947 948
	/* reread mf_cfg */
	if (!CHIP_IS_E1(bp))
		bnx2x_read_mf_cfg(bp);

	/* Read the current link report info */
	bnx2x_fill_report_data(bp, &cur_data);

	/* Don't report link down or exactly the same link status twice */
	if (!memcmp(&cur_data, &bp->last_reported_link, sizeof(cur_data)) ||
	    (test_bit(BNX2X_LINK_REPORT_LINK_DOWN,
		      &bp->last_reported_link.link_report_flags) &&
	     test_bit(BNX2X_LINK_REPORT_LINK_DOWN,
		      &cur_data.link_report_flags)))
		return;

	bp->link_cnt++;
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950 951 952 953
	/* We are going to report a new link parameters now -
	 * remember the current data for the next time.
	 */
	memcpy(&bp->last_reported_link, &cur_data, sizeof(cur_data));
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955 956 957 958 959 960
	if (test_bit(BNX2X_LINK_REPORT_LINK_DOWN,
		     &cur_data.link_report_flags)) {
		netif_carrier_off(bp->dev);
		netdev_err(bp->dev, "NIC Link is Down\n");
		return;
	} else {
961 962 963
		const char *duplex;
		const char *flow;

964
		netif_carrier_on(bp->dev);
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966 967
		if (test_and_clear_bit(BNX2X_LINK_REPORT_FD,
				       &cur_data.link_report_flags))
968
			duplex = "full";
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		else
970
			duplex = "half";
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972 973 974 975 976 977 978 979 980
		/* Handle the FC at the end so that only these flags would be
		 * possibly set. This way we may easily check if there is no FC
		 * enabled.
		 */
		if (cur_data.link_report_flags) {
			if (test_bit(BNX2X_LINK_REPORT_RX_FC_ON,
				     &cur_data.link_report_flags)) {
				if (test_bit(BNX2X_LINK_REPORT_TX_FC_ON,
				     &cur_data.link_report_flags))
981 982 983
					flow = "ON - receive & transmit";
				else
					flow = "ON - receive";
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984
			} else {
985
				flow = "ON - transmit";
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986
			}
987 988
		} else {
			flow = "none";
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989
		}
990 991
		netdev_info(bp->dev, "NIC Link is Up, %d Mbps %s duplex, Flow control: %s\n",
			    cur_data.line_speed, duplex, flow);
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992 993 994 995 996 997
	}
}

void bnx2x_init_rx_rings(struct bnx2x *bp)
{
	int func = BP_FUNC(bp);
998
	u16 ring_prod;
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999
	int i, j;
1000

1001
	/* Allocate TPA resources */
V
Vladislav Zolotarov 已提交
1002
	for_each_rx_queue(bp, j) {
1003
		struct bnx2x_fastpath *fp = &bp->fp[j];
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1005 1006 1007
		DP(NETIF_MSG_IFUP,
		   "mtu %d  rx_buf_size %d\n", bp->dev->mtu, fp->rx_buf_size);

1008
		if (!fp->disable_tpa) {
1009
			/* Fill the per-aggregtion pool */
1010
			for (i = 0; i < MAX_AGG_QS(bp); i++) {
1011 1012 1013 1014 1015 1016 1017 1018
				struct bnx2x_agg_info *tpa_info =
					&fp->tpa_info[i];
				struct sw_rx_bd *first_buf =
					&tpa_info->first_buf;

				first_buf->skb = netdev_alloc_skb(bp->dev,
						       fp->rx_buf_size);
				if (!first_buf->skb) {
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					BNX2X_ERR("Failed to allocate TPA "
						  "skb pool for queue[%d] - "
						  "disabling TPA on this "
						  "queue!\n", j);
					bnx2x_free_tpa_pool(bp, fp, i);
					fp->disable_tpa = 1;
					break;
				}
1027 1028
				dma_unmap_addr_set(first_buf, mapping, 0);
				tpa_info->tpa_state = BNX2X_TPA_STOP;
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1029
			}
1030 1031 1032 1033 1034 1035 1036 1037 1038 1039 1040 1041 1042 1043

			/* "next page" elements initialization */
			bnx2x_set_next_page_sgl(fp);

			/* set SGEs bit mask */
			bnx2x_init_sge_ring_bit_mask(fp);

			/* Allocate SGEs and initialize the ring elements */
			for (i = 0, ring_prod = 0;
			     i < MAX_RX_SGE_CNT*NUM_RX_SGE_PAGES; i++) {

				if (bnx2x_alloc_rx_sge(bp, fp, ring_prod) < 0) {
					BNX2X_ERR("was only able to allocate "
						  "%d rx sges\n", i);
1044 1045
					BNX2X_ERR("disabling TPA for "
						  "queue[%d]\n", j);
1046
					/* Cleanup already allocated elements */
1047 1048 1049
					bnx2x_free_rx_sge_range(bp, fp,
								ring_prod);
					bnx2x_free_tpa_pool(bp, fp,
1050
							    MAX_AGG_QS(bp));
1051 1052 1053 1054 1055 1056 1057 1058
					fp->disable_tpa = 1;
					ring_prod = 0;
					break;
				}
				ring_prod = NEXT_SGE_IDX(ring_prod);
			}

			fp->rx_sge_prod = ring_prod;
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		}
	}

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	for_each_rx_queue(bp, j) {
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		struct bnx2x_fastpath *fp = &bp->fp[j];

		fp->rx_bd_cons = 0;

1067 1068 1069 1070 1071 1072 1073
		/* Activate BD ring */
		/* Warning!
		 * this will generate an interrupt (to the TSTORM)
		 * must only be done after chip is initialized
		 */
		bnx2x_update_rx_prod(bp, fp, fp->rx_bd_prod, fp->rx_comp_prod,
				     fp->rx_sge_prod);
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		if (j != 0)
			continue;

1078
		if (CHIP_IS_E1(bp)) {
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			REG_WR(bp, BAR_USTRORM_INTMEM +
			       USTORM_MEM_WORKAROUND_ADDRESS_OFFSET(func),
			       U64_LO(fp->rx_comp_mapping));
			REG_WR(bp, BAR_USTRORM_INTMEM +
			       USTORM_MEM_WORKAROUND_ADDRESS_OFFSET(func) + 4,
			       U64_HI(fp->rx_comp_mapping));
		}
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	}
}
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static void bnx2x_free_tx_skbs(struct bnx2x *bp)
{
	int i;
1092
	u8 cos;
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1093

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	for_each_tx_queue(bp, i) {
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		struct bnx2x_fastpath *fp = &bp->fp[i];
1096 1097
		for_each_cos_in_tx_queue(fp, cos) {
			struct bnx2x_fp_txdata *txdata = &fp->txdata[cos];
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1099 1100
			u16 sw_prod = txdata->tx_pkt_prod;
			u16 sw_cons = txdata->tx_pkt_cons;
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1102
			while (sw_cons != sw_prod) {
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				bnx2x_free_tx_pkt(bp, txdata, TX_BD(sw_cons));
1104 1105
				sw_cons++;
			}
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		}
	}
}

1110 1111 1112 1113 1114 1115 1116 1117 1118 1119 1120 1121 1122 1123 1124 1125 1126 1127 1128 1129 1130 1131 1132 1133
static void bnx2x_free_rx_bds(struct bnx2x_fastpath *fp)
{
	struct bnx2x *bp = fp->bp;
	int i;

	/* ring wasn't allocated */
	if (fp->rx_buf_ring == NULL)
		return;

	for (i = 0; i < NUM_RX_BD; i++) {
		struct sw_rx_bd *rx_buf = &fp->rx_buf_ring[i];
		struct sk_buff *skb = rx_buf->skb;

		if (skb == NULL)
			continue;
		dma_unmap_single(&bp->pdev->dev,
				 dma_unmap_addr(rx_buf, mapping),
				 fp->rx_buf_size, DMA_FROM_DEVICE);

		rx_buf->skb = NULL;
		dev_kfree_skb(skb);
	}
}

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static void bnx2x_free_rx_skbs(struct bnx2x *bp)
{
1136
	int j;
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1137

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	for_each_rx_queue(bp, j) {
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		struct bnx2x_fastpath *fp = &bp->fp[j];

1141
		bnx2x_free_rx_bds(fp);
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		if (!fp->disable_tpa)
1144
			bnx2x_free_tpa_pool(bp, fp, MAX_AGG_QS(bp));
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	}
}

void bnx2x_free_skbs(struct bnx2x *bp)
{
	bnx2x_free_tx_skbs(bp);
	bnx2x_free_rx_skbs(bp);
}

1154 1155 1156 1157 1158 1159 1160 1161 1162 1163 1164 1165 1166 1167 1168 1169 1170
void bnx2x_update_max_mf_config(struct bnx2x *bp, u32 value)
{
	/* load old values */
	u32 mf_cfg = bp->mf_config[BP_VN(bp)];

	if (value != bnx2x_extract_max_cfg(bp, mf_cfg)) {
		/* leave all but MAX value */
		mf_cfg &= ~FUNC_MF_CFG_MAX_BW_MASK;

		/* set new MAX value */
		mf_cfg |= (value << FUNC_MF_CFG_MAX_BW_SHIFT)
				& FUNC_MF_CFG_MAX_BW_MASK;

		bnx2x_fw_command(bp, DRV_MSG_CODE_SET_MF_BW, mf_cfg);
	}
}

1171 1172 1173 1174 1175 1176 1177
/**
 * bnx2x_free_msix_irqs - free previously requested MSI-X IRQ vectors
 *
 * @bp:		driver handle
 * @nvecs:	number of vectors to be released
 */
static void bnx2x_free_msix_irqs(struct bnx2x *bp, int nvecs)
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{
1179
	int i, offset = 0;
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1181 1182 1183
	if (nvecs == offset)
		return;
	free_irq(bp->msix_table[offset].vector, bp->dev);
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1184
	DP(NETIF_MSG_IFDOWN, "released sp irq (%d)\n",
1185 1186
	   bp->msix_table[offset].vector);
	offset++;
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1187
#ifdef BCM_CNIC
1188 1189
	if (nvecs == offset)
		return;
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1190 1191
	offset++;
#endif
1192

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	for_each_eth_queue(bp, i) {
1194 1195 1196 1197
		if (nvecs == offset)
			return;
		DP(NETIF_MSG_IFDOWN, "about to release fp #%d->%d "
		   "irq\n", i, bp->msix_table[offset].vector);
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1198

1199
		free_irq(bp->msix_table[offset++].vector, &bp->fp[i]);
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1200 1201 1202
	}
}

1203
void bnx2x_free_irq(struct bnx2x *bp)
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{
1205
	if (bp->flags & USING_MSIX_FLAG)
1206
		bnx2x_free_msix_irqs(bp, BNX2X_NUM_ETH_QUEUES(bp) +
1207
				     CNIC_PRESENT + 1);
1208 1209 1210
	else if (bp->flags & USING_MSI_FLAG)
		free_irq(bp->pdev->irq, bp->dev);
	else
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		free_irq(bp->pdev->irq, bp->dev);
}

1214
int bnx2x_enable_msix(struct bnx2x *bp)
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1215
{
1216
	int msix_vec = 0, i, rc, req_cnt;
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1218 1219 1220 1221
	bp->msix_table[msix_vec].entry = msix_vec;
	DP(NETIF_MSG_IFUP, "msix_table[0].entry = %d (slowpath)\n",
	   bp->msix_table[0].entry);
	msix_vec++;
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1222 1223

#ifdef BCM_CNIC
1224 1225 1226 1227
	bp->msix_table[msix_vec].entry = msix_vec;
	DP(NETIF_MSG_IFUP, "msix_table[%d].entry = %d (CNIC)\n",
	   bp->msix_table[msix_vec].entry, bp->msix_table[msix_vec].entry);
	msix_vec++;
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1228
#endif
1229
	/* We need separate vectors for ETH queues only (not FCoE) */
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1230
	for_each_eth_queue(bp, i) {
1231
		bp->msix_table[msix_vec].entry = msix_vec;
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1232
		DP(NETIF_MSG_IFUP, "msix_table[%d].entry = %d "
1233 1234
		   "(fastpath #%u)\n", msix_vec, msix_vec, i);
		msix_vec++;
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1235 1236
	}

1237
	req_cnt = BNX2X_NUM_ETH_QUEUES(bp) + CNIC_PRESENT + 1;
1238 1239

	rc = pci_enable_msix(bp->pdev, &bp->msix_table[0], req_cnt);
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1240 1241 1242 1243 1244 1245

	/*
	 * reconfigure number of tx/rx queues according to available
	 * MSI-X vectors
	 */
	if (rc >= BNX2X_MIN_MSIX_VEC_CNT) {
1246 1247
		/* how less vectors we will have? */
		int diff = req_cnt - rc;
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1248 1249 1250 1251 1252 1253 1254 1255 1256 1257 1258

		DP(NETIF_MSG_IFUP,
		   "Trying to use less MSI-X vectors: %d\n", rc);

		rc = pci_enable_msix(bp->pdev, &bp->msix_table[0], rc);

		if (rc) {
			DP(NETIF_MSG_IFUP,
			   "MSI-X is not attainable  rc %d\n", rc);
			return rc;
		}
1259 1260 1261 1262
		/*
		 * decrease number of queues by number of unallocated entries
		 */
		bp->num_queues -= diff;
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1263 1264 1265 1266

		DP(NETIF_MSG_IFUP, "New queue configuration set: %d\n",
				  bp->num_queues);
	} else if (rc) {
1267 1268 1269
		/* fall to INTx if not enough memory */
		if (rc == -ENOMEM)
			bp->flags |= DISABLE_MSI_FLAG;
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1270 1271 1272 1273 1274 1275 1276 1277 1278 1279 1280
		DP(NETIF_MSG_IFUP, "MSI-X is not attainable  rc %d\n", rc);
		return rc;
	}

	bp->flags |= USING_MSIX_FLAG;

	return 0;
}

static int bnx2x_req_msix_irqs(struct bnx2x *bp)
{
1281
	int i, rc, offset = 0;
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1282

1283 1284
	rc = request_irq(bp->msix_table[offset++].vector,
			 bnx2x_msix_sp_int, 0,
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1285 1286 1287 1288 1289 1290 1291 1292 1293
			 bp->dev->name, bp->dev);
	if (rc) {
		BNX2X_ERR("request sp irq failed\n");
		return -EBUSY;
	}

#ifdef BCM_CNIC
	offset++;
#endif
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1294
	for_each_eth_queue(bp, i) {
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1295 1296 1297 1298
		struct bnx2x_fastpath *fp = &bp->fp[i];
		snprintf(fp->name, sizeof(fp->name), "%s-fp-%d",
			 bp->dev->name, i);

1299
		rc = request_irq(bp->msix_table[offset].vector,
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				 bnx2x_msix_fp_int, 0, fp->name, fp);
		if (rc) {
1302 1303 1304
			BNX2X_ERR("request fp #%d irq (%d) failed  rc %d\n", i,
			      bp->msix_table[offset].vector, rc);
			bnx2x_free_msix_irqs(bp, offset);
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1305 1306 1307
			return -EBUSY;
		}

1308
		offset++;
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1309 1310
	}

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1311
	i = BNX2X_NUM_ETH_QUEUES(bp);
1312
	offset = 1 + CNIC_PRESENT;
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1313 1314 1315 1316 1317 1318 1319 1320 1321
	netdev_info(bp->dev, "using MSI-X  IRQs: sp %d  fp[%d] %d"
	       " ... fp[%d] %d\n",
	       bp->msix_table[0].vector,
	       0, bp->msix_table[offset].vector,
	       i - 1, bp->msix_table[offset + i - 1].vector);

	return 0;
}

1322
int bnx2x_enable_msi(struct bnx2x *bp)
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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
{
	int rc;

	rc = pci_enable_msi(bp->pdev);
	if (rc) {
		DP(NETIF_MSG_IFUP, "MSI is not attainable\n");
		return -1;
	}
	bp->flags |= USING_MSI_FLAG;

	return 0;
}

static int bnx2x_req_irq(struct bnx2x *bp)
{
	unsigned long flags;
	int rc;

	if (bp->flags & USING_MSI_FLAG)
		flags = 0;
	else
		flags = IRQF_SHARED;

	rc = request_irq(bp->pdev->irq, bnx2x_interrupt, flags,
			 bp->dev->name, bp->dev);
	return rc;
}

1351 1352 1353 1354 1355 1356 1357 1358 1359 1360 1361 1362 1363 1364 1365 1366 1367 1368 1369 1370 1371 1372 1373 1374 1375
static inline int bnx2x_setup_irqs(struct bnx2x *bp)
{
	int rc = 0;
	if (bp->flags & USING_MSIX_FLAG) {
		rc = bnx2x_req_msix_irqs(bp);
		if (rc)
			return rc;
	} else {
		bnx2x_ack_int(bp);
		rc = bnx2x_req_irq(bp);
		if (rc) {
			BNX2X_ERR("IRQ request failed  rc %d, aborting\n", rc);
			return rc;
		}
		if (bp->flags & USING_MSI_FLAG) {
			bp->dev->irq = bp->pdev->irq;
			netdev_info(bp->dev, "using MSI  IRQ %d\n",
			       bp->pdev->irq);
		}
	}

	return 0;
}

static inline void bnx2x_napi_enable(struct bnx2x *bp)
D
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1376 1377 1378
{
	int i;

1379
	for_each_rx_queue(bp, i)
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1380 1381 1382
		napi_enable(&bnx2x_fp(bp, i, napi));
}

1383
static inline void bnx2x_napi_disable(struct bnx2x *bp)
D
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1384 1385 1386
{
	int i;

1387
	for_each_rx_queue(bp, i)
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1388 1389 1390 1391 1392
		napi_disable(&bnx2x_fp(bp, i, napi));
}

void bnx2x_netif_start(struct bnx2x *bp)
{
1393 1394 1395 1396 1397
	if (netif_running(bp->dev)) {
		bnx2x_napi_enable(bp);
		bnx2x_int_enable(bp);
		if (bp->state == BNX2X_STATE_OPEN)
			netif_tx_wake_all_queues(bp->dev);
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	}
}

void bnx2x_netif_stop(struct bnx2x *bp, int disable_hw)
{
	bnx2x_int_disable_sync(bp, disable_hw);
	bnx2x_napi_disable(bp);
}

1407 1408 1409
u16 bnx2x_select_queue(struct net_device *dev, struct sk_buff *skb)
{
	struct bnx2x *bp = netdev_priv(dev);
1410

1411
#ifdef BCM_CNIC
1412
	if (!NO_FCOE(bp)) {
1413 1414 1415 1416 1417 1418 1419 1420 1421 1422 1423 1424 1425
		struct ethhdr *hdr = (struct ethhdr *)skb->data;
		u16 ether_type = ntohs(hdr->h_proto);

		/* Skip VLAN tag if present */
		if (ether_type == ETH_P_8021Q) {
			struct vlan_ethhdr *vhdr =
				(struct vlan_ethhdr *)skb->data;

			ether_type = ntohs(vhdr->h_vlan_encapsulated_proto);
		}

		/* If ethertype is FCoE or FIP - use FCoE ring */
		if ((ether_type == ETH_P_FCOE) || (ether_type == ETH_P_FIP))
1426
			return bnx2x_fcoe_tx(bp, txq_index);
1427 1428
	}
#endif
1429
	/* select a non-FCoE queue */
1430
	return __skb_tx_hash(dev, skb, BNX2X_NUM_ETH_QUEUES(bp));
1431 1432
}

1433 1434 1435 1436
void bnx2x_set_num_queues(struct bnx2x *bp)
{
	switch (bp->multi_mode) {
	case ETH_RSS_MODE_DISABLED:
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1437
		bp->num_queues = 1;
1438 1439 1440
		break;
	case ETH_RSS_MODE_REGULAR:
		bp->num_queues = bnx2x_calc_num_queues(bp);
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1441
		break;
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1442

D
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1443
	default:
1444
		bp->num_queues = 1;
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1445 1446
		break;
	}
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1447 1448

	/* Add special queues */
1449
	bp->num_queues += NON_ETH_CONTEXT_USE;
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1450 1451
}

1452 1453 1454 1455 1456 1457 1458 1459 1460 1461 1462 1463 1464 1465 1466 1467 1468 1469 1470 1471 1472 1473
/**
 * bnx2x_set_real_num_queues - configure netdev->real_num_[tx,rx]_queues
 *
 * @bp:		Driver handle
 *
 * We currently support for at most 16 Tx queues for each CoS thus we will
 * allocate a multiple of 16 for ETH L2 rings according to the value of the
 * bp->max_cos.
 *
 * If there is an FCoE L2 queue the appropriate Tx queue will have the next
 * index after all ETH L2 indices.
 *
 * If the actual number of Tx queues (for each CoS) is less than 16 then there
 * will be the holes at the end of each group of 16 ETh L2 indices (0..15,
 * 16..31,...) with indicies that are not coupled with any real Tx queue.
 *
 * The proper configuration of skb->queue_mapping is handled by
 * bnx2x_select_queue() and __skb_tx_hash().
 *
 * bnx2x_setup_tc() takes care of the proper TC mappings so that __skb_tx_hash()
 * will return a proper Tx index if TC is enabled (netdev->num_tc > 0).
 */
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1474 1475
static inline int bnx2x_set_real_num_queues(struct bnx2x *bp)
{
1476
	int rc, tx, rx;
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1477

1478 1479
	tx = MAX_TXQS_PER_COS * bp->max_cos;
	rx = BNX2X_NUM_ETH_QUEUES(bp);
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1480

1481 1482 1483 1484 1485 1486
/* account for fcoe queue */
#ifdef BCM_CNIC
	if (!NO_FCOE(bp)) {
		rx += FCOE_PRESENT;
		tx += FCOE_PRESENT;
	}
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1487
#endif
1488 1489 1490 1491 1492 1493 1494 1495 1496 1497 1498 1499 1500 1501 1502

	rc = netif_set_real_num_tx_queues(bp->dev, tx);
	if (rc) {
		BNX2X_ERR("Failed to set real number of Tx queues: %d\n", rc);
		return rc;
	}
	rc = netif_set_real_num_rx_queues(bp->dev, rx);
	if (rc) {
		BNX2X_ERR("Failed to set real number of Rx queues: %d\n", rc);
		return rc;
	}

	DP(NETIF_MSG_DRV, "Setting real num queues to (tx, rx) (%d, %d)\n",
			  tx, rx);

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	return rc;
}

1506 1507 1508 1509 1510 1511 1512 1513 1514 1515 1516 1517 1518 1519 1520 1521 1522
static inline void bnx2x_set_rx_buf_size(struct bnx2x *bp)
{
	int i;

	for_each_queue(bp, i) {
		struct bnx2x_fastpath *fp = &bp->fp[i];

		/* Always use a mini-jumbo MTU for the FCoE L2 ring */
		if (IS_FCOE_IDX(i))
			/*
			 * Although there are no IP frames expected to arrive to
			 * this ring we still want to add an
			 * IP_HEADER_ALIGNMENT_PADDING to prevent a buffer
			 * overrun attack.
			 */
			fp->rx_buf_size =
				BNX2X_FCOE_MINI_JUMBO_MTU + ETH_OVREHEAD +
1523
				BNX2X_FW_RX_ALIGN + IP_HEADER_ALIGNMENT_PADDING;
1524 1525
		else
			fp->rx_buf_size =
1526 1527
				bp->dev->mtu + ETH_OVREHEAD +
				BNX2X_FW_RX_ALIGN + IP_HEADER_ALIGNMENT_PADDING;
1528 1529 1530
	}
}

1531 1532 1533 1534 1535 1536 1537 1538 1539 1540 1541 1542 1543 1544 1545 1546 1547 1548 1549 1550 1551 1552 1553 1554 1555 1556 1557 1558 1559 1560 1561 1562 1563 1564 1565 1566 1567 1568 1569 1570 1571 1572 1573 1574 1575 1576 1577 1578 1579 1580 1581 1582 1583 1584 1585 1586 1587 1588 1589 1590 1591 1592 1593 1594 1595 1596 1597 1598 1599 1600 1601 1602 1603 1604 1605 1606 1607 1608 1609 1610 1611 1612 1613 1614 1615 1616 1617 1618 1619 1620 1621 1622 1623 1624 1625 1626 1627 1628 1629 1630 1631 1632 1633 1634 1635 1636 1637 1638 1639 1640 1641 1642 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 1681 1682 1683 1684 1685 1686 1687 1688 1689 1690 1691 1692 1693 1694 1695 1696 1697 1698 1699 1700 1701 1702 1703 1704 1705 1706 1707
static inline int bnx2x_init_rss_pf(struct bnx2x *bp)
{
	int i;
	u8 ind_table[T_ETH_INDIRECTION_TABLE_SIZE] = {0};
	u8 num_eth_queues = BNX2X_NUM_ETH_QUEUES(bp);

	/*
	 * Prepare the inital contents fo the indirection table if RSS is
	 * enabled
	 */
	if (bp->multi_mode != ETH_RSS_MODE_DISABLED) {
		for (i = 0; i < sizeof(ind_table); i++)
			ind_table[i] =
				bp->fp->cl_id +	(i % num_eth_queues);
	}

	/*
	 * For 57710 and 57711 SEARCHER configuration (rss_keys) is
	 * per-port, so if explicit configuration is needed , do it only
	 * for a PMF.
	 *
	 * For 57712 and newer on the other hand it's a per-function
	 * configuration.
	 */
	return bnx2x_config_rss_pf(bp, ind_table,
				   bp->port.pmf || !CHIP_IS_E1x(bp));
}

int bnx2x_config_rss_pf(struct bnx2x *bp, u8 *ind_table, bool config_hash)
{
	struct bnx2x_config_rss_params params = {0};
	int i;

	/* Although RSS is meaningless when there is a single HW queue we
	 * still need it enabled in order to have HW Rx hash generated.
	 *
	 * if (!is_eth_multi(bp))
	 *      bp->multi_mode = ETH_RSS_MODE_DISABLED;
	 */

	params.rss_obj = &bp->rss_conf_obj;

	__set_bit(RAMROD_COMP_WAIT, &params.ramrod_flags);

	/* RSS mode */
	switch (bp->multi_mode) {
	case ETH_RSS_MODE_DISABLED:
		__set_bit(BNX2X_RSS_MODE_DISABLED, &params.rss_flags);
		break;
	case ETH_RSS_MODE_REGULAR:
		__set_bit(BNX2X_RSS_MODE_REGULAR, &params.rss_flags);
		break;
	case ETH_RSS_MODE_VLAN_PRI:
		__set_bit(BNX2X_RSS_MODE_VLAN_PRI, &params.rss_flags);
		break;
	case ETH_RSS_MODE_E1HOV_PRI:
		__set_bit(BNX2X_RSS_MODE_E1HOV_PRI, &params.rss_flags);
		break;
	case ETH_RSS_MODE_IP_DSCP:
		__set_bit(BNX2X_RSS_MODE_IP_DSCP, &params.rss_flags);
		break;
	default:
		BNX2X_ERR("Unknown multi_mode: %d\n", bp->multi_mode);
		return -EINVAL;
	}

	/* If RSS is enabled */
	if (bp->multi_mode != ETH_RSS_MODE_DISABLED) {
		/* RSS configuration */
		__set_bit(BNX2X_RSS_IPV4, &params.rss_flags);
		__set_bit(BNX2X_RSS_IPV4_TCP, &params.rss_flags);
		__set_bit(BNX2X_RSS_IPV6, &params.rss_flags);
		__set_bit(BNX2X_RSS_IPV6_TCP, &params.rss_flags);

		/* Hash bits */
		params.rss_result_mask = MULTI_MASK;

		memcpy(params.ind_table, ind_table, sizeof(params.ind_table));

		if (config_hash) {
			/* RSS keys */
			for (i = 0; i < sizeof(params.rss_key) / 4; i++)
				params.rss_key[i] = random32();

			__set_bit(BNX2X_RSS_SET_SRCH, &params.rss_flags);
		}
	}

	return bnx2x_config_rss(bp, &params);
}

static inline int bnx2x_init_hw(struct bnx2x *bp, u32 load_code)
{
	struct bnx2x_func_state_params func_params = {0};

	/* Prepare parameters for function state transitions */
	__set_bit(RAMROD_COMP_WAIT, &func_params.ramrod_flags);

	func_params.f_obj = &bp->func_obj;
	func_params.cmd = BNX2X_F_CMD_HW_INIT;

	func_params.params.hw_init.load_phase = load_code;

	return bnx2x_func_state_change(bp, &func_params);
}

/*
 * Cleans the object that have internal lists without sending
 * ramrods. Should be run when interrutps are disabled.
 */
static void bnx2x_squeeze_objects(struct bnx2x *bp)
{
	int rc;
	unsigned long ramrod_flags = 0, vlan_mac_flags = 0;
	struct bnx2x_mcast_ramrod_params rparam = {0};
	struct bnx2x_vlan_mac_obj *mac_obj = &bp->fp->mac_obj;

	/***************** Cleanup MACs' object first *************************/

	/* Wait for completion of requested */
	__set_bit(RAMROD_COMP_WAIT, &ramrod_flags);
	/* Perform a dry cleanup */
	__set_bit(RAMROD_DRV_CLR_ONLY, &ramrod_flags);

	/* Clean ETH primary MAC */
	__set_bit(BNX2X_ETH_MAC, &vlan_mac_flags);
	rc = mac_obj->delete_all(bp, &bp->fp->mac_obj, &vlan_mac_flags,
				 &ramrod_flags);
	if (rc != 0)
		BNX2X_ERR("Failed to clean ETH MACs: %d\n", rc);

	/* Cleanup UC list */
	vlan_mac_flags = 0;
	__set_bit(BNX2X_UC_LIST_MAC, &vlan_mac_flags);
	rc = mac_obj->delete_all(bp, mac_obj, &vlan_mac_flags,
				 &ramrod_flags);
	if (rc != 0)
		BNX2X_ERR("Failed to clean UC list MACs: %d\n", rc);

	/***************** Now clean mcast object *****************************/
	rparam.mcast_obj = &bp->mcast_obj;
	__set_bit(RAMROD_DRV_CLR_ONLY, &rparam.ramrod_flags);

	/* Add a DEL command... */
	rc = bnx2x_config_mcast(bp, &rparam, BNX2X_MCAST_CMD_DEL);
	if (rc < 0)
		BNX2X_ERR("Failed to add a new DEL command to a multi-cast "
			  "object: %d\n", rc);

	/* ...and wait until all pending commands are cleared */
	rc = bnx2x_config_mcast(bp, &rparam, BNX2X_MCAST_CMD_CONT);
	while (rc != 0) {
		if (rc < 0) {
			BNX2X_ERR("Failed to clean multi-cast object: %d\n",
				  rc);
			return;
		}

		rc = bnx2x_config_mcast(bp, &rparam, BNX2X_MCAST_CMD_CONT);
	}
}

#ifndef BNX2X_STOP_ON_ERROR
#define LOAD_ERROR_EXIT(bp, label) \
	do { \
		(bp)->state = BNX2X_STATE_ERROR; \
		goto label; \
	} while (0)
#else
#define LOAD_ERROR_EXIT(bp, label) \
	do { \
		(bp)->state = BNX2X_STATE_ERROR; \
		(bp)->panic = 1; \
		return -EBUSY; \
	} while (0)
#endif

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Dmitry Kravkov 已提交
1708 1709 1710
/* must be called with rtnl_lock */
int bnx2x_nic_load(struct bnx2x *bp, int load_mode)
{
1711
	int port = BP_PORT(bp);
D
Dmitry Kravkov 已提交
1712 1713 1714 1715 1716 1717 1718 1719 1720 1721
	u32 load_code;
	int i, rc;

#ifdef BNX2X_STOP_ON_ERROR
	if (unlikely(bp->panic))
		return -EPERM;
#endif

	bp->state = BNX2X_STATE_OPENING_WAIT4_LOAD;

1722 1723 1724 1725 1726 1727 1728
	/* Set the initial link reported state to link down */
	bnx2x_acquire_phy_lock(bp);
	memset(&bp->last_reported_link, 0, sizeof(bp->last_reported_link));
	__set_bit(BNX2X_LINK_REPORT_LINK_DOWN,
		&bp->last_reported_link.link_report_flags);
	bnx2x_release_phy_lock(bp);

1729 1730 1731
	/* must be called before memory allocation and HW init */
	bnx2x_ilt_set_info(bp);

1732 1733 1734 1735
	/*
	 * Zero fastpath structures preserving invariants like napi, which are
	 * allocated only once, fp index, max_cos, bp pointer.
	 * Also set fp->disable_tpa.
1736 1737 1738 1739
	 */
	for_each_queue(bp, i)
		bnx2x_bz_fp(bp, i);

1740

1741 1742 1743
	/* Set the receive queues buffer size */
	bnx2x_set_rx_buf_size(bp);

1744
	if (bnx2x_alloc_mem(bp))
D
Dmitry Kravkov 已提交
1745
		return -ENOMEM;
1746

1747 1748 1749 1750
	/* As long as bnx2x_alloc_mem() may possibly update
	 * bp->num_queues, bnx2x_set_real_num_queues() should always
	 * come after it.
	 */
V
Vladislav Zolotarov 已提交
1751
	rc = bnx2x_set_real_num_queues(bp);
1752
	if (rc) {
V
Vladislav Zolotarov 已提交
1753
		BNX2X_ERR("Unable to set real_num_queues\n");
1754
		LOAD_ERROR_EXIT(bp, load_error0);
D
Dmitry Kravkov 已提交
1755 1756
	}

1757 1758 1759 1760 1761 1762
	/* configure multi cos mappings in kernel.
	 * this configuration may be overriden by a multi class queue discipline
	 * or by a dcbx negotiation result.
	 */
	bnx2x_setup_tc(bp->dev, bp->max_cos);

D
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1763 1764 1765
	bnx2x_napi_enable(bp);

	/* Send LOAD_REQUEST command to MCP
1766 1767 1768 1769
	 * Returns the type of LOAD command:
	 * if it is the first port to be initialized
	 * common blocks should be initialized, otherwise - not
	 */
D
Dmitry Kravkov 已提交
1770
	if (!BP_NOMCP(bp)) {
Y
Yaniv Rosner 已提交
1771
		load_code = bnx2x_fw_command(bp, DRV_MSG_CODE_LOAD_REQ, 0);
D
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1772 1773 1774
		if (!load_code) {
			BNX2X_ERR("MCP response failure, aborting\n");
			rc = -EBUSY;
1775
			LOAD_ERROR_EXIT(bp, load_error1);
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Dmitry Kravkov 已提交
1776 1777 1778
		}
		if (load_code == FW_MSG_CODE_DRV_LOAD_REFUSED) {
			rc = -EBUSY; /* other port in diagnostic mode */
1779
			LOAD_ERROR_EXIT(bp, load_error1);
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1780 1781 1782
		}

	} else {
D
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1783
		int path = BP_PATH(bp);
D
Dmitry Kravkov 已提交
1784

D
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1785 1786 1787 1788 1789 1790 1791 1792 1793
		DP(NETIF_MSG_IFUP, "NO MCP - load counts[%d]      %d, %d, %d\n",
		   path, load_count[path][0], load_count[path][1],
		   load_count[path][2]);
		load_count[path][0]++;
		load_count[path][1 + port]++;
		DP(NETIF_MSG_IFUP, "NO MCP - new load counts[%d]  %d, %d, %d\n",
		   path, load_count[path][0], load_count[path][1],
		   load_count[path][2]);
		if (load_count[path][0] == 1)
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1794
			load_code = FW_MSG_CODE_DRV_LOAD_COMMON;
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1795
		else if (load_count[path][1 + port] == 1)
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1796 1797 1798 1799 1800 1801
			load_code = FW_MSG_CODE_DRV_LOAD_PORT;
		else
			load_code = FW_MSG_CODE_DRV_LOAD_FUNCTION;
	}

	if ((load_code == FW_MSG_CODE_DRV_LOAD_COMMON) ||
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	    (load_code == FW_MSG_CODE_DRV_LOAD_COMMON_CHIP) ||
1803
	    (load_code == FW_MSG_CODE_DRV_LOAD_PORT)) {
D
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1804
		bp->port.pmf = 1;
1805 1806 1807 1808 1809 1810 1811 1812
		/*
		 * We need the barrier to ensure the ordering between the
		 * writing to bp->port.pmf here and reading it from the
		 * bnx2x_periodic_task().
		 */
		smp_mb();
		queue_delayed_work(bnx2x_wq, &bp->period_task, 0);
	} else
D
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1813
		bp->port.pmf = 0;
1814

D
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1815 1816
	DP(NETIF_MSG_LINK, "pmf %d\n", bp->port.pmf);

1817 1818 1819
	/* Init Function state controlling object */
	bnx2x__init_func_obj(bp);

D
Dmitry Kravkov 已提交
1820 1821 1822 1823
	/* Initialize HW */
	rc = bnx2x_init_hw(bp, load_code);
	if (rc) {
		BNX2X_ERR("HW init failed, aborting\n");
Y
Yaniv Rosner 已提交
1824
		bnx2x_fw_command(bp, DRV_MSG_CODE_LOAD_DONE, 0);
1825
		LOAD_ERROR_EXIT(bp, load_error2);
D
Dmitry Kravkov 已提交
1826 1827
	}

1828 1829
	/* Connect to IRQs */
	rc = bnx2x_setup_irqs(bp);
1830 1831
	if (rc) {
		bnx2x_fw_command(bp, DRV_MSG_CODE_LOAD_DONE, 0);
1832
		LOAD_ERROR_EXIT(bp, load_error2);
1833 1834
	}

D
Dmitry Kravkov 已提交
1835 1836 1837
	/* Setup NIC internals and enable interrupts */
	bnx2x_nic_init(bp, load_code);

1838 1839 1840
	/* Init per-function objects */
	bnx2x_init_bp_objs(bp);

D
Dmitry Kravkov 已提交
1841 1842
	if (((load_code == FW_MSG_CODE_DRV_LOAD_COMMON) ||
	    (load_code == FW_MSG_CODE_DRV_LOAD_COMMON_CHIP)) &&
1843 1844 1845 1846 1847 1848 1849 1850 1851 1852 1853
	    (bp->common.shmem2_base)) {
		if (SHMEM2_HAS(bp, dcc_support))
			SHMEM2_WR(bp, dcc_support,
				  (SHMEM_DCC_SUPPORT_DISABLE_ENABLE_PF_TLV |
				   SHMEM_DCC_SUPPORT_BANDWIDTH_ALLOCATION_TLV));
	}

	bp->state = BNX2X_STATE_OPENING_WAIT4_PORT;
	rc = bnx2x_func_start(bp);
	if (rc) {
		BNX2X_ERR("Function start failed!\n");
1854
		bnx2x_fw_command(bp, DRV_MSG_CODE_LOAD_DONE, 0);
1855 1856
		LOAD_ERROR_EXIT(bp, load_error3);
	}
D
Dmitry Kravkov 已提交
1857 1858 1859

	/* Send LOAD_DONE command to MCP */
	if (!BP_NOMCP(bp)) {
Y
Yaniv Rosner 已提交
1860
		load_code = bnx2x_fw_command(bp, DRV_MSG_CODE_LOAD_DONE, 0);
D
Dmitry Kravkov 已提交
1861 1862 1863
		if (!load_code) {
			BNX2X_ERR("MCP response failure, aborting\n");
			rc = -EBUSY;
1864
			LOAD_ERROR_EXIT(bp, load_error3);
D
Dmitry Kravkov 已提交
1865 1866 1867
		}
	}

1868
	rc = bnx2x_setup_leading(bp);
D
Dmitry Kravkov 已提交
1869 1870
	if (rc) {
		BNX2X_ERR("Setup leading failed!\n");
1871
		LOAD_ERROR_EXIT(bp, load_error3);
D
Dmitry Kravkov 已提交
1872
	}
D
Dmitry Kravkov 已提交
1873 1874

#ifdef BCM_CNIC
1875
	/* Enable Timer scan */
1876
	REG_WR(bp, TM_REG_EN_LINEAR0_TIMER + port*4, 1);
D
Dmitry Kravkov 已提交
1877
#endif
D
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1878

1879
	for_each_nondefault_queue(bp, i) {
1880
		rc = bnx2x_setup_queue(bp, &bp->fp[i], 0);
1881
		if (rc)
1882
			LOAD_ERROR_EXIT(bp, load_error4);
1883 1884
	}

1885 1886 1887 1888
	rc = bnx2x_init_rss_pf(bp);
	if (rc)
		LOAD_ERROR_EXIT(bp, load_error4);

1889 1890 1891
	/* Now when Clients are configured we are ready to work */
	bp->state = BNX2X_STATE_OPEN;

1892 1893 1894 1895
	/* Configure a ucast MAC */
	rc = bnx2x_set_eth_mac(bp, true);
	if (rc)
		LOAD_ERROR_EXIT(bp, load_error4);
1896

1897 1898 1899 1900 1901
	if (bp->pending_max) {
		bnx2x_update_max_mf_config(bp, bp->pending_max);
		bp->pending_max = 0;
	}

D
Dmitry Kravkov 已提交
1902 1903 1904
	if (bp->port.pmf)
		bnx2x_initial_phy_init(bp, load_mode);

1905 1906 1907 1908
	/* Start fast path */

	/* Initialize Rx filter. */
	netif_addr_lock_bh(bp->dev);
1909
	bnx2x_set_rx_mode(bp->dev);
1910
	netif_addr_unlock_bh(bp->dev);
1911

1912
	/* Start the Tx */
D
Dmitry Kravkov 已提交
1913 1914
	switch (load_mode) {
	case LOAD_NORMAL:
1915 1916
		/* Tx queue should be only reenabled */
		netif_tx_wake_all_queues(bp->dev);
D
Dmitry Kravkov 已提交
1917 1918 1919 1920
		break;

	case LOAD_OPEN:
		netif_tx_start_all_queues(bp->dev);
1921
		smp_mb__after_clear_bit();
D
Dmitry Kravkov 已提交
1922 1923 1924 1925 1926 1927 1928 1929 1930 1931
		break;

	case LOAD_DIAG:
		bp->state = BNX2X_STATE_DIAG;
		break;

	default:
		break;
	}

D
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1932 1933 1934
	if (bp->port.pmf)
		bnx2x_update_drv_flags(bp, DRV_FLAGS_DCB_CONFIGURED, 0);
	else
D
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1935 1936 1937 1938 1939 1940
		bnx2x__link_status_update(bp);

	/* start the timer */
	mod_timer(&bp->timer, jiffies + bp->current_interval);

#ifdef BCM_CNIC
1941 1942
	/* re-read iscsi info */
	bnx2x_get_iscsi_info(bp);
D
Dmitry Kravkov 已提交
1943 1944 1945 1946 1947 1948
	bnx2x_setup_cnic_irq_info(bp);
	if (bp->state == BNX2X_STATE_OPEN)
		bnx2x_cnic_notify(bp, CNIC_CTL_START_CMD);
#endif
	bnx2x_inc_load_cnt(bp);

1949 1950 1951 1952 1953 1954
	/* Wait for all pending SP commands to complete */
	if (!bnx2x_wait_sp_comp(bp, ~0x0UL)) {
		BNX2X_ERR("Timeout waiting for SP elements to complete\n");
		bnx2x_nic_unload(bp, UNLOAD_CLOSE);
		return -EBUSY;
	}
1955

1956
	bnx2x_dcbx_init(bp);
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1957 1958
	return 0;

1959
#ifndef BNX2X_STOP_ON_ERROR
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1960
load_error4:
1961
#ifdef BCM_CNIC
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1962
	/* Disable Timer scan */
1963
	REG_WR(bp, TM_REG_EN_LINEAR0_TIMER + port*4, 0);
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1964 1965 1966
#endif
load_error3:
	bnx2x_int_disable_sync(bp, 1);
1967

1968 1969 1970
	/* Clean queueable objects */
	bnx2x_squeeze_objects(bp);

D
Dmitry Kravkov 已提交
1971 1972
	/* Free SKBs, SGEs, TPA pool and driver internals */
	bnx2x_free_skbs(bp);
V
Vladislav Zolotarov 已提交
1973
	for_each_rx_queue(bp, i)
D
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1974
		bnx2x_free_rx_sge_range(bp, bp->fp + i, NUM_RX_SGE);
1975

D
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1976
	/* Release IRQs */
1977 1978 1979 1980 1981 1982 1983 1984
	bnx2x_free_irq(bp);
load_error2:
	if (!BP_NOMCP(bp)) {
		bnx2x_fw_command(bp, DRV_MSG_CODE_UNLOAD_REQ_WOL_MCP, 0);
		bnx2x_fw_command(bp, DRV_MSG_CODE_UNLOAD_DONE, 0);
	}

	bp->port.pmf = 0;
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1985 1986
load_error1:
	bnx2x_napi_disable(bp);
1987
load_error0:
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1988 1989 1990
	bnx2x_free_mem(bp);

	return rc;
1991
#endif /* ! BNX2X_STOP_ON_ERROR */
D
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1992 1993 1994 1995 1996 1997
}

/* must be called with rtnl_lock */
int bnx2x_nic_unload(struct bnx2x *bp, int unload_mode)
{
	int i;
1998 1999 2000 2001 2002 2003 2004 2005 2006 2007 2008
	bool global = false;

	if ((bp->state == BNX2X_STATE_CLOSED) ||
	    (bp->state == BNX2X_STATE_ERROR)) {
		/* We can get here if the driver has been unloaded
		 * during parity error recovery and is either waiting for a
		 * leader to complete or for other functions to unload and
		 * then ifdown has been issued. In this case we want to
		 * unload and let other functions to complete a recovery
		 * process.
		 */
D
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2009 2010
		bp->recovery_state = BNX2X_RECOVERY_DONE;
		bp->is_leader = 0;
2011 2012 2013 2014
		bnx2x_release_leader_lock(bp);
		smp_mb();

		DP(NETIF_MSG_HW, "Releasing a leadership...\n");
D
Dmitry Kravkov 已提交
2015 2016 2017 2018

		return -EINVAL;
	}

2019 2020 2021 2022 2023 2024 2025 2026
	/*
	 * It's important to set the bp->state to the value different from
	 * BNX2X_STATE_OPEN and only then stop the Tx. Otherwise bnx2x_tx_int()
	 * may restart the Tx from the NAPI context (see bnx2x_tx_int()).
	 */
	bp->state = BNX2X_STATE_CLOSING_WAIT4_HALT;
	smp_mb();

2027 2028 2029
	/* Stop Tx */
	bnx2x_tx_disable(bp);

D
Dmitry Kravkov 已提交
2030 2031 2032 2033 2034 2035 2036
#ifdef BCM_CNIC
	bnx2x_cnic_notify(bp, CNIC_CTL_STOP_CMD);
#endif

	bp->rx_mode = BNX2X_RX_MODE_NONE;

	del_timer_sync(&bp->timer);
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Dmitry Kravkov 已提交
2037

2038 2039 2040 2041
	/* Set ALWAYS_ALIVE bit in shmem */
	bp->fw_drv_pulse_wr_seq |= DRV_PULSE_ALWAYS_ALIVE;

	bnx2x_drv_pulse(bp);
D
Dmitry Kravkov 已提交
2042

D
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2043
	bnx2x_stats_handle(bp, STATS_EVENT_STOP);
D
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2044 2045 2046 2047

	/* Cleanup the chip if needed */
	if (unload_mode != UNLOAD_RECOVERY)
		bnx2x_chip_cleanup(bp, unload_mode);
2048
	else {
2049 2050 2051 2052 2053 2054 2055 2056 2057 2058 2059 2060 2061 2062
		/* Send the UNLOAD_REQUEST to the MCP */
		bnx2x_send_unload_req(bp, unload_mode);

		/*
		 * Prevent transactions to host from the functions on the
		 * engine that doesn't reset global blocks in case of global
		 * attention once gloabl blocks are reset and gates are opened
		 * (the engine which leader will perform the recovery
		 * last).
		 */
		if (!CHIP_IS_E1x(bp))
			bnx2x_pf_disable(bp);

		/* Disable HW interrupts, NAPI */
2063 2064 2065
		bnx2x_netif_stop(bp, 1);

		/* Release IRQs */
2066
		bnx2x_free_irq(bp);
2067 2068 2069

		/* Report UNLOAD_DONE to MCP */
		bnx2x_send_unload_done(bp);
2070
	}
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Dmitry Kravkov 已提交
2071

2072 2073 2074 2075 2076 2077
	/*
	 * At this stage no more interrupts will arrive so we may safly clean
	 * the queueable objects here in case they failed to get cleaned so far.
	 */
	bnx2x_squeeze_objects(bp);

2078 2079 2080
	/* There should be no more pending SP commands at this stage */
	bp->sp_state = 0;

D
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2081 2082 2083 2084
	bp->port.pmf = 0;

	/* Free SKBs, SGEs, TPA pool and driver internals */
	bnx2x_free_skbs(bp);
V
Vladislav Zolotarov 已提交
2085
	for_each_rx_queue(bp, i)
D
Dmitry Kravkov 已提交
2086
		bnx2x_free_rx_sge_range(bp, bp->fp + i, NUM_RX_SGE);
2087

D
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2088 2089 2090 2091
	bnx2x_free_mem(bp);

	bp->state = BNX2X_STATE_CLOSED;

2092 2093 2094 2095 2096 2097 2098 2099 2100 2101 2102 2103
	/* Check if there are pending parity attentions. If there are - set
	 * RECOVERY_IN_PROGRESS.
	 */
	if (bnx2x_chk_parity_attn(bp, &global, false)) {
		bnx2x_set_reset_in_progress(bp);

		/* Set RESET_IS_GLOBAL if needed */
		if (global)
			bnx2x_set_reset_global(bp);
	}


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2104 2105 2106
	/* The last driver must disable a "close the gate" if there is no
	 * parity attention or "process kill" pending.
	 */
2107
	if (!bnx2x_dec_load_cnt(bp) && bnx2x_reset_is_done(bp, BP_PATH(bp)))
D
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2108 2109 2110 2111
		bnx2x_disable_close_the_gate(bp);

	return 0;
}
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2112

D
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2113 2114 2115 2116
int bnx2x_set_power_state(struct bnx2x *bp, pci_power_t state)
{
	u16 pmcsr;

2117 2118 2119 2120 2121 2122
	/* If there is no power capability, silently succeed */
	if (!bp->pm_cap) {
		DP(NETIF_MSG_HW, "No power capability. Breaking.\n");
		return 0;
	}

D
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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 2158 2159 2160 2161 2162 2163 2164 2165 2166 2167
	pci_read_config_word(bp->pdev, bp->pm_cap + PCI_PM_CTRL, &pmcsr);

	switch (state) {
	case PCI_D0:
		pci_write_config_word(bp->pdev, bp->pm_cap + PCI_PM_CTRL,
				      ((pmcsr & ~PCI_PM_CTRL_STATE_MASK) |
				       PCI_PM_CTRL_PME_STATUS));

		if (pmcsr & PCI_PM_CTRL_STATE_MASK)
			/* delay required during transition out of D3hot */
			msleep(20);
		break;

	case PCI_D3hot:
		/* If there are other clients above don't
		   shut down the power */
		if (atomic_read(&bp->pdev->enable_cnt) != 1)
			return 0;
		/* Don't shut down the power for emulation and FPGA */
		if (CHIP_REV_IS_SLOW(bp))
			return 0;

		pmcsr &= ~PCI_PM_CTRL_STATE_MASK;
		pmcsr |= 3;

		if (bp->wol)
			pmcsr |= PCI_PM_CTRL_PME_ENABLE;

		pci_write_config_word(bp->pdev, bp->pm_cap + PCI_PM_CTRL,
				      pmcsr);

		/* No more memory access after this point until
		* device is brought back to D0.
		*/
		break;

	default:
		return -EINVAL;
	}
	return 0;
}

/*
 * net_device service functions
 */
2168
int bnx2x_poll(struct napi_struct *napi, int budget)
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2169 2170
{
	int work_done = 0;
2171
	u8 cos;
D
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2172 2173 2174 2175 2176 2177 2178 2179 2180 2181 2182 2183
	struct bnx2x_fastpath *fp = container_of(napi, struct bnx2x_fastpath,
						 napi);
	struct bnx2x *bp = fp->bp;

	while (1) {
#ifdef BNX2X_STOP_ON_ERROR
		if (unlikely(bp->panic)) {
			napi_complete(napi);
			return 0;
		}
#endif

2184 2185 2186 2187
		for_each_cos_in_tx_queue(fp, cos)
			if (bnx2x_tx_queue_has_work(&fp->txdata[cos]))
				bnx2x_tx_int(bp, &fp->txdata[cos]);

D
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2188 2189 2190 2191 2192 2193 2194 2195 2196 2197 2198

		if (bnx2x_has_rx_work(fp)) {
			work_done += bnx2x_rx_int(fp, budget - work_done);

			/* must not complete if we consumed full budget */
			if (work_done >= budget)
				break;
		}

		/* Fall out from the NAPI loop if needed */
		if (!(bnx2x_has_rx_work(fp) || bnx2x_has_tx_work(fp))) {
V
Vladislav Zolotarov 已提交
2199 2200 2201 2202 2203 2204 2205 2206 2207 2208 2209
#ifdef BCM_CNIC
			/* No need to update SB for FCoE L2 ring as long as
			 * it's connected to the default SB and the SB
			 * has been updated when NAPI was scheduled.
			 */
			if (IS_FCOE_FP(fp)) {
				napi_complete(napi);
				break;
			}
#endif

D
Dmitry Kravkov 已提交
2210
			bnx2x_update_fpsb_idx(fp);
D
Dmitry Kravkov 已提交
2211 2212 2213 2214 2215 2216 2217 2218 2219 2220 2221 2222 2223
			/* bnx2x_has_rx_work() reads the status block,
			 * thus we need to ensure that status block indices
			 * have been actually read (bnx2x_update_fpsb_idx)
			 * prior to this check (bnx2x_has_rx_work) so that
			 * we won't write the "newer" value of the status block
			 * to IGU (if there was a DMA right after
			 * bnx2x_has_rx_work and if there is no rmb, the memory
			 * reading (bnx2x_update_fpsb_idx) may be postponed
			 * to right before bnx2x_ack_sb). In this case there
			 * will never be another interrupt until there is
			 * another update of the status block, while there
			 * is still unhandled work.
			 */
D
Dmitry Kravkov 已提交
2224 2225 2226 2227 2228
			rmb();

			if (!(bnx2x_has_rx_work(fp) || bnx2x_has_tx_work(fp))) {
				napi_complete(napi);
				/* Re-enable interrupts */
2229 2230 2231 2232
				DP(NETIF_MSG_HW,
				   "Update index to %d\n", fp->fp_hc_idx);
				bnx2x_ack_sb(bp, fp->igu_sb_id, USTORM_ID,
					     le16_to_cpu(fp->fp_hc_idx),
D
Dmitry Kravkov 已提交
2233 2234 2235 2236 2237 2238 2239 2240 2241 2242 2243 2244 2245 2246 2247 2248
					     IGU_INT_ENABLE, 1);
				break;
			}
		}
	}

	return work_done;
}

/* we split the first BD into headers and data BDs
 * to ease the pain of our fellow microcode engineers
 * we use one mapping for both BDs
 * So far this has only been observed to happen
 * in Other Operating Systems(TM)
 */
static noinline u16 bnx2x_tx_split(struct bnx2x *bp,
2249
				   struct bnx2x_fp_txdata *txdata,
D
Dmitry Kravkov 已提交
2250 2251 2252 2253 2254 2255 2256 2257 2258 2259 2260 2261 2262 2263 2264 2265 2266 2267 2268 2269
				   struct sw_tx_bd *tx_buf,
				   struct eth_tx_start_bd **tx_bd, u16 hlen,
				   u16 bd_prod, int nbd)
{
	struct eth_tx_start_bd *h_tx_bd = *tx_bd;
	struct eth_tx_bd *d_tx_bd;
	dma_addr_t mapping;
	int old_len = le16_to_cpu(h_tx_bd->nbytes);

	/* first fix first BD */
	h_tx_bd->nbd = cpu_to_le16(nbd);
	h_tx_bd->nbytes = cpu_to_le16(hlen);

	DP(NETIF_MSG_TX_QUEUED,	"TSO split header size is %d "
	   "(%x:%x) nbd %d\n", h_tx_bd->nbytes, h_tx_bd->addr_hi,
	   h_tx_bd->addr_lo, h_tx_bd->nbd);

	/* now get a new data BD
	 * (after the pbd) and fill it */
	bd_prod = TX_BD(NEXT_TX_IDX(bd_prod));
2270
	d_tx_bd = &txdata->tx_desc_ring[bd_prod].reg_bd;
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Dmitry Kravkov 已提交
2271 2272 2273 2274 2275 2276 2277 2278 2279 2280 2281 2282 2283 2284 2285 2286 2287 2288 2289 2290 2291 2292 2293 2294 2295 2296 2297 2298 2299 2300 2301 2302 2303 2304 2305 2306 2307 2308 2309 2310 2311 2312

	mapping = HILO_U64(le32_to_cpu(h_tx_bd->addr_hi),
			   le32_to_cpu(h_tx_bd->addr_lo)) + hlen;

	d_tx_bd->addr_hi = cpu_to_le32(U64_HI(mapping));
	d_tx_bd->addr_lo = cpu_to_le32(U64_LO(mapping));
	d_tx_bd->nbytes = cpu_to_le16(old_len - hlen);

	/* this marks the BD as one that has no individual mapping */
	tx_buf->flags |= BNX2X_TSO_SPLIT_BD;

	DP(NETIF_MSG_TX_QUEUED,
	   "TSO split data size is %d (%x:%x)\n",
	   d_tx_bd->nbytes, d_tx_bd->addr_hi, d_tx_bd->addr_lo);

	/* update tx_bd */
	*tx_bd = (struct eth_tx_start_bd *)d_tx_bd;

	return bd_prod;
}

static inline u16 bnx2x_csum_fix(unsigned char *t_header, u16 csum, s8 fix)
{
	if (fix > 0)
		csum = (u16) ~csum_fold(csum_sub(csum,
				csum_partial(t_header - fix, fix, 0)));

	else if (fix < 0)
		csum = (u16) ~csum_fold(csum_add(csum,
				csum_partial(t_header, -fix, 0)));

	return swab16(csum);
}

static inline u32 bnx2x_xmit_type(struct bnx2x *bp, struct sk_buff *skb)
{
	u32 rc;

	if (skb->ip_summed != CHECKSUM_PARTIAL)
		rc = XMIT_PLAIN;

	else {
2313
		if (vlan_get_protocol(skb) == htons(ETH_P_IPV6)) {
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Dmitry Kravkov 已提交
2314 2315 2316 2317 2318 2319 2320 2321 2322 2323 2324
			rc = XMIT_CSUM_V6;
			if (ipv6_hdr(skb)->nexthdr == IPPROTO_TCP)
				rc |= XMIT_CSUM_TCP;

		} else {
			rc = XMIT_CSUM_V4;
			if (ip_hdr(skb)->protocol == IPPROTO_TCP)
				rc |= XMIT_CSUM_TCP;
		}
	}

2325 2326 2327 2328
	if (skb_is_gso_v6(skb))
		rc |= XMIT_GSO_V6 | XMIT_CSUM_TCP | XMIT_CSUM_V6;
	else if (skb_is_gso(skb))
		rc |= XMIT_GSO_V4 | XMIT_CSUM_V4 | XMIT_CSUM_TCP;
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2329 2330 2331 2332 2333 2334 2335 2336 2337 2338 2339 2340 2341 2342 2343 2344 2345 2346 2347 2348 2349 2350 2351 2352 2353 2354 2355 2356 2357 2358 2359 2360 2361 2362 2363 2364 2365 2366 2367 2368 2369

	return rc;
}

#if (MAX_SKB_FRAGS >= MAX_FETCH_BD - 3)
/* check if packet requires linearization (packet is too fragmented)
   no need to check fragmentation if page size > 8K (there will be no
   violation to FW restrictions) */
static int bnx2x_pkt_req_lin(struct bnx2x *bp, struct sk_buff *skb,
			     u32 xmit_type)
{
	int to_copy = 0;
	int hlen = 0;
	int first_bd_sz = 0;

	/* 3 = 1 (for linear data BD) + 2 (for PBD and last BD) */
	if (skb_shinfo(skb)->nr_frags >= (MAX_FETCH_BD - 3)) {

		if (xmit_type & XMIT_GSO) {
			unsigned short lso_mss = skb_shinfo(skb)->gso_size;
			/* Check if LSO packet needs to be copied:
			   3 = 1 (for headers BD) + 2 (for PBD and last BD) */
			int wnd_size = MAX_FETCH_BD - 3;
			/* Number of windows to check */
			int num_wnds = skb_shinfo(skb)->nr_frags - wnd_size;
			int wnd_idx = 0;
			int frag_idx = 0;
			u32 wnd_sum = 0;

			/* Headers length */
			hlen = (int)(skb_transport_header(skb) - skb->data) +
				tcp_hdrlen(skb);

			/* Amount of data (w/o headers) on linear part of SKB*/
			first_bd_sz = skb_headlen(skb) - hlen;

			wnd_sum  = first_bd_sz;

			/* Calculate the first sum - it's special */
			for (frag_idx = 0; frag_idx < wnd_size - 1; frag_idx++)
				wnd_sum +=
E
Eric Dumazet 已提交
2370
					skb_frag_size(&skb_shinfo(skb)->frags[frag_idx]);
D
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2371 2372 2373 2374 2375 2376 2377 2378 2379 2380 2381 2382 2383 2384 2385

			/* If there was data on linear skb data - check it */
			if (first_bd_sz > 0) {
				if (unlikely(wnd_sum < lso_mss)) {
					to_copy = 1;
					goto exit_lbl;
				}

				wnd_sum -= first_bd_sz;
			}

			/* Others are easier: run through the frag list and
			   check all windows */
			for (wnd_idx = 0; wnd_idx <= num_wnds; wnd_idx++) {
				wnd_sum +=
E
Eric Dumazet 已提交
2386
			  skb_frag_size(&skb_shinfo(skb)->frags[wnd_idx + wnd_size - 1]);
D
Dmitry Kravkov 已提交
2387 2388 2389 2390 2391 2392

				if (unlikely(wnd_sum < lso_mss)) {
					to_copy = 1;
					break;
				}
				wnd_sum -=
E
Eric Dumazet 已提交
2393
					skb_frag_size(&skb_shinfo(skb)->frags[wnd_idx]);
D
Dmitry Kravkov 已提交
2394 2395 2396 2397 2398 2399 2400 2401 2402 2403 2404 2405 2406 2407 2408 2409 2410 2411 2412 2413
			}
		} else {
			/* in non-LSO too fragmented packet should always
			   be linearized */
			to_copy = 1;
		}
	}

exit_lbl:
	if (unlikely(to_copy))
		DP(NETIF_MSG_TX_QUEUED,
		   "Linearization IS REQUIRED for %s packet. "
		   "num_frags %d  hlen %d  first_bd_sz %d\n",
		   (xmit_type & XMIT_GSO) ? "LSO" : "non-LSO",
		   skb_shinfo(skb)->nr_frags, hlen, first_bd_sz);

	return to_copy;
}
#endif

2414 2415
static inline void bnx2x_set_pbd_gso_e2(struct sk_buff *skb, u32 *parsing_data,
					u32 xmit_type)
D
Dmitry Kravkov 已提交
2416
{
2417 2418 2419
	*parsing_data |= (skb_shinfo(skb)->gso_size <<
			      ETH_TX_PARSE_BD_E2_LSO_MSS_SHIFT) &
			      ETH_TX_PARSE_BD_E2_LSO_MSS;
D
Dmitry Kravkov 已提交
2420 2421
	if ((xmit_type & XMIT_GSO_V6) &&
	    (ipv6_hdr(skb)->nexthdr == NEXTHDR_IPV6))
2422
		*parsing_data |= ETH_TX_PARSE_BD_E2_IPV6_WITH_EXT_HDR;
D
Dmitry Kravkov 已提交
2423 2424 2425
}

/**
2426
 * bnx2x_set_pbd_gso - update PBD in GSO case.
D
Dmitry Kravkov 已提交
2427
 *
2428 2429 2430
 * @skb:	packet skb
 * @pbd:	parse BD
 * @xmit_type:	xmit flags
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2431 2432 2433 2434 2435 2436 2437 2438 2439 2440 2441 2442 2443 2444 2445 2446 2447 2448 2449 2450 2451 2452 2453 2454
 */
static inline void bnx2x_set_pbd_gso(struct sk_buff *skb,
				     struct eth_tx_parse_bd_e1x *pbd,
				     u32 xmit_type)
{
	pbd->lso_mss = cpu_to_le16(skb_shinfo(skb)->gso_size);
	pbd->tcp_send_seq = swab32(tcp_hdr(skb)->seq);
	pbd->tcp_flags = pbd_tcp_flags(skb);

	if (xmit_type & XMIT_GSO_V4) {
		pbd->ip_id = swab16(ip_hdr(skb)->id);
		pbd->tcp_pseudo_csum =
			swab16(~csum_tcpudp_magic(ip_hdr(skb)->saddr,
						  ip_hdr(skb)->daddr,
						  0, IPPROTO_TCP, 0));

	} else
		pbd->tcp_pseudo_csum =
			swab16(~csum_ipv6_magic(&ipv6_hdr(skb)->saddr,
						&ipv6_hdr(skb)->daddr,
						0, IPPROTO_TCP, 0));

	pbd->global_data |= ETH_TX_PARSE_BD_E1X_PSEUDO_CS_WITHOUT_LEN;
}
D
Dmitry Kravkov 已提交
2455

D
Dmitry Kravkov 已提交
2456
/**
2457
 * bnx2x_set_pbd_csum_e2 - update PBD with checksum and return header length
D
Dmitry Kravkov 已提交
2458
 *
2459 2460 2461 2462
 * @bp:			driver handle
 * @skb:		packet skb
 * @parsing_data:	data to be updated
 * @xmit_type:		xmit flags
D
Dmitry Kravkov 已提交
2463
 *
2464
 * 57712 related
D
Dmitry Kravkov 已提交
2465 2466
 */
static inline  u8 bnx2x_set_pbd_csum_e2(struct bnx2x *bp, struct sk_buff *skb,
2467
	u32 *parsing_data, u32 xmit_type)
D
Dmitry Kravkov 已提交
2468
{
2469 2470 2471 2472
	*parsing_data |=
			((((u8 *)skb_transport_header(skb) - skb->data) >> 1) <<
			ETH_TX_PARSE_BD_E2_TCP_HDR_START_OFFSET_W_SHIFT) &
			ETH_TX_PARSE_BD_E2_TCP_HDR_START_OFFSET_W;
D
Dmitry Kravkov 已提交
2473

2474 2475 2476 2477
	if (xmit_type & XMIT_CSUM_TCP) {
		*parsing_data |= ((tcp_hdrlen(skb) / 4) <<
			ETH_TX_PARSE_BD_E2_TCP_HDR_LENGTH_DW_SHIFT) &
			ETH_TX_PARSE_BD_E2_TCP_HDR_LENGTH_DW;
D
Dmitry Kravkov 已提交
2478

2479 2480 2481 2482 2483 2484 2485
		return skb_transport_header(skb) + tcp_hdrlen(skb) - skb->data;
	} else
		/* We support checksum offload for TCP and UDP only.
		 * No need to pass the UDP header length - it's a constant.
		 */
		return skb_transport_header(skb) +
				sizeof(struct udphdr) - skb->data;
D
Dmitry Kravkov 已提交
2486 2487
}

2488 2489 2490 2491 2492 2493 2494 2495 2496 2497 2498 2499 2500 2501 2502 2503
static inline void bnx2x_set_sbd_csum(struct bnx2x *bp, struct sk_buff *skb,
	struct eth_tx_start_bd *tx_start_bd, u32 xmit_type)
{
	tx_start_bd->bd_flags.as_bitfield |= ETH_TX_BD_FLAGS_L4_CSUM;

	if (xmit_type & XMIT_CSUM_V4)
		tx_start_bd->bd_flags.as_bitfield |=
					ETH_TX_BD_FLAGS_IP_CSUM;
	else
		tx_start_bd->bd_flags.as_bitfield |=
					ETH_TX_BD_FLAGS_IPV6;

	if (!(xmit_type & XMIT_CSUM_TCP))
		tx_start_bd->bd_flags.as_bitfield |= ETH_TX_BD_FLAGS_IS_UDP;
}

D
Dmitry Kravkov 已提交
2504
/**
2505
 * bnx2x_set_pbd_csum - update PBD with checksum and return header length
D
Dmitry Kravkov 已提交
2506
 *
2507 2508 2509 2510
 * @bp:		driver handle
 * @skb:	packet skb
 * @pbd:	parse BD to be updated
 * @xmit_type:	xmit flags
D
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2511 2512 2513 2514 2515
 */
static inline u8 bnx2x_set_pbd_csum(struct bnx2x *bp, struct sk_buff *skb,
	struct eth_tx_parse_bd_e1x *pbd,
	u32 xmit_type)
{
2516
	u8 hlen = (skb_network_header(skb) - skb->data) >> 1;
D
Dmitry Kravkov 已提交
2517 2518 2519 2520 2521 2522 2523

	/* for now NS flag is not used in Linux */
	pbd->global_data =
		(hlen | ((skb->protocol == cpu_to_be16(ETH_P_8021Q)) <<
			 ETH_TX_PARSE_BD_E1X_LLC_SNAP_EN_SHIFT));

	pbd->ip_hlen_w = (skb_transport_header(skb) -
2524
			skb_network_header(skb)) >> 1;
D
Dmitry Kravkov 已提交
2525

2526 2527 2528 2529 2530 2531 2532
	hlen += pbd->ip_hlen_w;

	/* We support checksum offload for TCP and UDP only */
	if (xmit_type & XMIT_CSUM_TCP)
		hlen += tcp_hdrlen(skb) / 2;
	else
		hlen += sizeof(struct udphdr) / 2;
D
Dmitry Kravkov 已提交
2533 2534 2535 2536 2537 2538 2539 2540 2541 2542 2543 2544 2545 2546 2547 2548 2549 2550 2551 2552 2553 2554 2555 2556 2557

	pbd->total_hlen_w = cpu_to_le16(hlen);
	hlen = hlen*2;

	if (xmit_type & XMIT_CSUM_TCP) {
		pbd->tcp_pseudo_csum = swab16(tcp_hdr(skb)->check);

	} else {
		s8 fix = SKB_CS_OFF(skb); /* signed! */

		DP(NETIF_MSG_TX_QUEUED,
		   "hlen %d  fix %d  csum before fix %x\n",
		   le16_to_cpu(pbd->total_hlen_w), fix, SKB_CS(skb));

		/* HW bug: fixup the CSUM */
		pbd->tcp_pseudo_csum =
			bnx2x_csum_fix(skb_transport_header(skb),
				       SKB_CS(skb), fix);

		DP(NETIF_MSG_TX_QUEUED, "csum after fix %x\n",
		   pbd->tcp_pseudo_csum);
	}

	return hlen;
}
D
Dmitry Kravkov 已提交
2558

D
Dmitry Kravkov 已提交
2559 2560 2561 2562 2563 2564 2565
/* called with netif_tx_lock
 * bnx2x_tx_int() runs without netif_tx_lock unless it needs to call
 * netif_wake_queue()
 */
netdev_tx_t bnx2x_start_xmit(struct sk_buff *skb, struct net_device *dev)
{
	struct bnx2x *bp = netdev_priv(dev);
2566

D
Dmitry Kravkov 已提交
2567 2568
	struct bnx2x_fastpath *fp;
	struct netdev_queue *txq;
2569
	struct bnx2x_fp_txdata *txdata;
D
Dmitry Kravkov 已提交
2570
	struct sw_tx_bd *tx_buf;
2571
	struct eth_tx_start_bd *tx_start_bd, *first_bd;
D
Dmitry Kravkov 已提交
2572
	struct eth_tx_bd *tx_data_bd, *total_pkt_bd = NULL;
2573
	struct eth_tx_parse_bd_e1x *pbd_e1x = NULL;
D
Dmitry Kravkov 已提交
2574
	struct eth_tx_parse_bd_e2 *pbd_e2 = NULL;
2575
	u32 pbd_e2_parsing_data = 0;
D
Dmitry Kravkov 已提交
2576
	u16 pkt_prod, bd_prod;
2577
	int nbd, txq_index, fp_index, txdata_index;
D
Dmitry Kravkov 已提交
2578 2579 2580 2581 2582 2583 2584 2585 2586 2587 2588 2589 2590
	dma_addr_t mapping;
	u32 xmit_type = bnx2x_xmit_type(bp, skb);
	int i;
	u8 hlen = 0;
	__le16 pkt_size = 0;
	struct ethhdr *eth;
	u8 mac_type = UNICAST_ADDRESS;

#ifdef BNX2X_STOP_ON_ERROR
	if (unlikely(bp->panic))
		return NETDEV_TX_BUSY;
#endif

2591 2592 2593 2594 2595 2596 2597 2598 2599 2600 2601 2602 2603 2604 2605 2606 2607 2608 2609 2610 2611 2612 2613
	txq_index = skb_get_queue_mapping(skb);
	txq = netdev_get_tx_queue(dev, txq_index);

	BUG_ON(txq_index >= MAX_ETH_TXQ_IDX(bp) + FCOE_PRESENT);

	/* decode the fastpath index and the cos index from the txq */
	fp_index = TXQ_TO_FP(txq_index);
	txdata_index = TXQ_TO_COS(txq_index);

#ifdef BCM_CNIC
	/*
	 * Override the above for the FCoE queue:
	 *   - FCoE fp entry is right after the ETH entries.
	 *   - FCoE L2 queue uses bp->txdata[0] only.
	 */
	if (unlikely(!NO_FCOE(bp) && (txq_index ==
				      bnx2x_fcoe_tx(bp, txq_index)))) {
		fp_index = FCOE_IDX;
		txdata_index = 0;
	}
#endif

	/* enable this debug print to view the transmission queue being used
2614
	DP(BNX2X_MSG_FP, "indices: txq %d, fp %d, txdata %d\n",
2615
	   txq_index, fp_index, txdata_index); */
D
Dmitry Kravkov 已提交
2616

2617
	/* locate the fastpath and the txdata */
D
Dmitry Kravkov 已提交
2618
	fp = &bp->fp[fp_index];
2619 2620 2621 2622
	txdata = &fp->txdata[txdata_index];

	/* enable this debug print to view the tranmission details
	DP(BNX2X_MSG_FP,"transmitting packet cid %d fp index %d txdata_index %d"
2623
			" tx_data ptr %p fp pointer %p\n",
2624
	   txdata->cid, fp_index, txdata_index, txdata, fp); */
D
Dmitry Kravkov 已提交
2625

2626 2627
	if (unlikely(bnx2x_tx_avail(bp, txdata) <
		     (skb_shinfo(skb)->nr_frags + 3))) {
D
Dmitry Kravkov 已提交
2628 2629 2630 2631 2632 2633
		fp->eth_q_stats.driver_xoff++;
		netif_tx_stop_queue(txq);
		BNX2X_ERR("BUG! Tx ring full when queue awake!\n");
		return NETDEV_TX_BUSY;
	}

D
Dmitry Kravkov 已提交
2634 2635
	DP(NETIF_MSG_TX_QUEUED, "queue[%d]: SKB: summed %x  protocol %x  "
				"protocol(%x,%x) gso type %x  xmit_type %x\n",
2636
	   txq_index, skb->ip_summed, skb->protocol, ipv6_hdr(skb)->nexthdr,
D
Dmitry Kravkov 已提交
2637 2638 2639 2640 2641 2642 2643 2644 2645 2646 2647 2648 2649 2650 2651 2652 2653 2654 2655 2656 2657 2658 2659 2660 2661 2662 2663
	   ip_hdr(skb)->protocol, skb_shinfo(skb)->gso_type, xmit_type);

	eth = (struct ethhdr *)skb->data;

	/* set flag according to packet type (UNICAST_ADDRESS is default)*/
	if (unlikely(is_multicast_ether_addr(eth->h_dest))) {
		if (is_broadcast_ether_addr(eth->h_dest))
			mac_type = BROADCAST_ADDRESS;
		else
			mac_type = MULTICAST_ADDRESS;
	}

#if (MAX_SKB_FRAGS >= MAX_FETCH_BD - 3)
	/* First, check if we need to linearize the skb (due to FW
	   restrictions). No need to check fragmentation if page size > 8K
	   (there will be no violation to FW restrictions) */
	if (bnx2x_pkt_req_lin(bp, skb, xmit_type)) {
		/* Statistics of linearization */
		bp->lin_cnt++;
		if (skb_linearize(skb) != 0) {
			DP(NETIF_MSG_TX_QUEUED, "SKB linearization failed - "
			   "silently dropping this SKB\n");
			dev_kfree_skb_any(skb);
			return NETDEV_TX_OK;
		}
	}
#endif
2664 2665 2666 2667 2668 2669 2670 2671 2672
	/* Map skb linear data for DMA */
	mapping = dma_map_single(&bp->pdev->dev, skb->data,
				 skb_headlen(skb), DMA_TO_DEVICE);
	if (unlikely(dma_mapping_error(&bp->pdev->dev, mapping))) {
		DP(NETIF_MSG_TX_QUEUED, "SKB mapping failed - "
		   "silently dropping this SKB\n");
		dev_kfree_skb_any(skb);
		return NETDEV_TX_OK;
	}
D
Dmitry Kravkov 已提交
2673 2674 2675 2676 2677 2678 2679 2680 2681
	/*
	Please read carefully. First we use one BD which we mark as start,
	then we have a parsing info BD (used for TSO or xsum),
	and only then we have the rest of the TSO BDs.
	(don't forget to mark the last one as last,
	and to unmap only AFTER you write to the BD ...)
	And above all, all pdb sizes are in words - NOT DWORDS!
	*/

2682 2683 2684
	/* get current pkt produced now - advance it just before sending packet
	 * since mapping of pages may fail and cause packet to be dropped
	 */
2685 2686
	pkt_prod = txdata->tx_pkt_prod;
	bd_prod = TX_BD(txdata->tx_bd_prod);
D
Dmitry Kravkov 已提交
2687

2688 2689 2690 2691
	/* get a tx_buf and first BD
	 * tx_start_bd may be changed during SPLIT,
	 * but first_bd will always stay first
	 */
2692 2693
	tx_buf = &txdata->tx_buf_ring[TX_BD(pkt_prod)];
	tx_start_bd = &txdata->tx_desc_ring[bd_prod].start_bd;
2694
	first_bd = tx_start_bd;
D
Dmitry Kravkov 已提交
2695 2696

	tx_start_bd->bd_flags.as_bitfield = ETH_TX_BD_FLAGS_START_BD;
D
Dmitry Kravkov 已提交
2697 2698 2699
	SET_FLAG(tx_start_bd->general_data, ETH_TX_START_BD_ETH_ADDR_TYPE,
		 mac_type);

D
Dmitry Kravkov 已提交
2700
	/* header nbd */
D
Dmitry Kravkov 已提交
2701
	SET_FLAG(tx_start_bd->general_data, ETH_TX_START_BD_HDR_NBDS, 1);
D
Dmitry Kravkov 已提交
2702 2703

	/* remember the first BD of the packet */
2704
	tx_buf->first_bd = txdata->tx_bd_prod;
D
Dmitry Kravkov 已提交
2705 2706 2707 2708 2709
	tx_buf->skb = skb;
	tx_buf->flags = 0;

	DP(NETIF_MSG_TX_QUEUED,
	   "sending pkt %u @%p  next_idx %u  bd %u @%p\n",
2710
	   pkt_prod, tx_buf, txdata->tx_pkt_prod, bd_prod, tx_start_bd);
D
Dmitry Kravkov 已提交
2711

2712
	if (vlan_tx_tag_present(skb)) {
2713 2714 2715 2716
		tx_start_bd->vlan_or_ethertype =
		    cpu_to_le16(vlan_tx_tag_get(skb));
		tx_start_bd->bd_flags.as_bitfield |=
		    (X_ETH_OUTBAND_VLAN << ETH_TX_BD_FLAGS_VLAN_MODE_SHIFT);
D
Dmitry Kravkov 已提交
2717
	} else
2718
		tx_start_bd->vlan_or_ethertype = cpu_to_le16(pkt_prod);
D
Dmitry Kravkov 已提交
2719 2720 2721 2722

	/* turn on parsing and get a BD */
	bd_prod = TX_BD(NEXT_TX_IDX(bd_prod));

2723 2724
	if (xmit_type & XMIT_CSUM)
		bnx2x_set_sbd_csum(bp, skb, tx_start_bd, xmit_type);
D
Dmitry Kravkov 已提交
2725

2726
	if (!CHIP_IS_E1x(bp)) {
2727
		pbd_e2 = &txdata->tx_desc_ring[bd_prod].parse_bd_e2;
D
Dmitry Kravkov 已提交
2728 2729 2730
		memset(pbd_e2, 0, sizeof(struct eth_tx_parse_bd_e2));
		/* Set PBD in checksum offload case */
		if (xmit_type & XMIT_CSUM)
2731 2732 2733
			hlen = bnx2x_set_pbd_csum_e2(bp, skb,
						     &pbd_e2_parsing_data,
						     xmit_type);
2734 2735 2736 2737 2738 2739 2740 2741 2742 2743 2744 2745 2746 2747
		if (IS_MF_SI(bp)) {
			/*
			 * fill in the MAC addresses in the PBD - for local
			 * switching
			 */
			bnx2x_set_fw_mac_addr(&pbd_e2->src_mac_addr_hi,
					      &pbd_e2->src_mac_addr_mid,
					      &pbd_e2->src_mac_addr_lo,
					      eth->h_source);
			bnx2x_set_fw_mac_addr(&pbd_e2->dst_mac_addr_hi,
					      &pbd_e2->dst_mac_addr_mid,
					      &pbd_e2->dst_mac_addr_lo,
					      eth->h_dest);
		}
D
Dmitry Kravkov 已提交
2748
	} else {
2749
		pbd_e1x = &txdata->tx_desc_ring[bd_prod].parse_bd_e1x;
D
Dmitry Kravkov 已提交
2750 2751 2752 2753
		memset(pbd_e1x, 0, sizeof(struct eth_tx_parse_bd_e1x));
		/* Set PBD in checksum offload case */
		if (xmit_type & XMIT_CSUM)
			hlen = bnx2x_set_pbd_csum(bp, skb, pbd_e1x, xmit_type);
D
Dmitry Kravkov 已提交
2754 2755 2756

	}

D
Dmitry Kravkov 已提交
2757
	/* Setup the data pointer of the first BD of the packet */
D
Dmitry Kravkov 已提交
2758 2759
	tx_start_bd->addr_hi = cpu_to_le32(U64_HI(mapping));
	tx_start_bd->addr_lo = cpu_to_le32(U64_LO(mapping));
2760
	nbd = 2; /* start_bd + pbd + frags (updated when pages are mapped) */
D
Dmitry Kravkov 已提交
2761 2762 2763 2764 2765 2766 2767
	tx_start_bd->nbytes = cpu_to_le16(skb_headlen(skb));
	pkt_size = tx_start_bd->nbytes;

	DP(NETIF_MSG_TX_QUEUED, "first bd @%p  addr (%x:%x)  nbd %d"
	   "  nbytes %d  flags %x  vlan %x\n",
	   tx_start_bd, tx_start_bd->addr_hi, tx_start_bd->addr_lo,
	   le16_to_cpu(tx_start_bd->nbd), le16_to_cpu(tx_start_bd->nbytes),
2768 2769
	   tx_start_bd->bd_flags.as_bitfield,
	   le16_to_cpu(tx_start_bd->vlan_or_ethertype));
D
Dmitry Kravkov 已提交
2770 2771 2772 2773 2774 2775 2776 2777 2778 2779 2780

	if (xmit_type & XMIT_GSO) {

		DP(NETIF_MSG_TX_QUEUED,
		   "TSO packet len %d  hlen %d  total len %d  tso size %d\n",
		   skb->len, hlen, skb_headlen(skb),
		   skb_shinfo(skb)->gso_size);

		tx_start_bd->bd_flags.as_bitfield |= ETH_TX_BD_FLAGS_SW_LSO;

		if (unlikely(skb_headlen(skb) > hlen))
2781 2782 2783
			bd_prod = bnx2x_tx_split(bp, txdata, tx_buf,
						 &tx_start_bd, hlen,
						 bd_prod, ++nbd);
2784
		if (!CHIP_IS_E1x(bp))
2785 2786
			bnx2x_set_pbd_gso_e2(skb, &pbd_e2_parsing_data,
					     xmit_type);
D
Dmitry Kravkov 已提交
2787 2788
		else
			bnx2x_set_pbd_gso(skb, pbd_e1x, xmit_type);
D
Dmitry Kravkov 已提交
2789
	}
2790 2791 2792 2793 2794 2795 2796

	/* Set the PBD's parsing_data field if not zero
	 * (for the chips newer than 57711).
	 */
	if (pbd_e2_parsing_data)
		pbd_e2->parsing_data = cpu_to_le32(pbd_e2_parsing_data);

D
Dmitry Kravkov 已提交
2797 2798
	tx_data_bd = (struct eth_tx_bd *)tx_start_bd;

D
Dmitry Kravkov 已提交
2799
	/* Handle fragmented skb */
D
Dmitry Kravkov 已提交
2800 2801 2802
	for (i = 0; i < skb_shinfo(skb)->nr_frags; i++) {
		skb_frag_t *frag = &skb_shinfo(skb)->frags[i];

E
Eric Dumazet 已提交
2803 2804
		mapping = skb_frag_dma_map(&bp->pdev->dev, frag, 0,
					   skb_frag_size(frag), DMA_TO_DEVICE);
2805 2806 2807 2808 2809 2810 2811 2812 2813 2814 2815
		if (unlikely(dma_mapping_error(&bp->pdev->dev, mapping))) {

			DP(NETIF_MSG_TX_QUEUED, "Unable to map page - "
						"dropping packet...\n");

			/* we need unmap all buffers already mapped
			 * for this SKB;
			 * first_bd->nbd need to be properly updated
			 * before call to bnx2x_free_tx_pkt
			 */
			first_bd->nbd = cpu_to_le16(nbd);
2816 2817
			bnx2x_free_tx_pkt(bp, txdata,
					  TX_BD(txdata->tx_pkt_prod));
2818 2819 2820
			return NETDEV_TX_OK;
		}

D
Dmitry Kravkov 已提交
2821
		bd_prod = TX_BD(NEXT_TX_IDX(bd_prod));
2822
		tx_data_bd = &txdata->tx_desc_ring[bd_prod].reg_bd;
D
Dmitry Kravkov 已提交
2823
		if (total_pkt_bd == NULL)
2824
			total_pkt_bd = &txdata->tx_desc_ring[bd_prod].reg_bd;
D
Dmitry Kravkov 已提交
2825 2826 2827

		tx_data_bd->addr_hi = cpu_to_le32(U64_HI(mapping));
		tx_data_bd->addr_lo = cpu_to_le32(U64_LO(mapping));
E
Eric Dumazet 已提交
2828 2829
		tx_data_bd->nbytes = cpu_to_le16(skb_frag_size(frag));
		le16_add_cpu(&pkt_size, skb_frag_size(frag));
2830
		nbd++;
D
Dmitry Kravkov 已提交
2831 2832 2833 2834 2835 2836 2837 2838 2839

		DP(NETIF_MSG_TX_QUEUED,
		   "frag %d  bd @%p  addr (%x:%x)  nbytes %d\n",
		   i, tx_data_bd, tx_data_bd->addr_hi, tx_data_bd->addr_lo,
		   le16_to_cpu(tx_data_bd->nbytes));
	}

	DP(NETIF_MSG_TX_QUEUED, "last bd @%p\n", tx_data_bd);

2840 2841 2842
	/* update with actual num BDs */
	first_bd->nbd = cpu_to_le16(nbd);

D
Dmitry Kravkov 已提交
2843 2844 2845 2846 2847 2848 2849 2850
	bd_prod = TX_BD(NEXT_TX_IDX(bd_prod));

	/* now send a tx doorbell, counting the next BD
	 * if the packet contains or ends with it
	 */
	if (TX_BD_POFF(bd_prod) < nbd)
		nbd++;

2851 2852 2853 2854 2855 2856 2857
	/* total_pkt_bytes should be set on the first data BD if
	 * it's not an LSO packet and there is more than one
	 * data BD. In this case pkt_size is limited by an MTU value.
	 * However we prefer to set it for an LSO packet (while we don't
	 * have to) in order to save some CPU cycles in a none-LSO
	 * case, when we much more care about them.
	 */
D
Dmitry Kravkov 已提交
2858 2859 2860
	if (total_pkt_bd != NULL)
		total_pkt_bd->total_pkt_bytes = pkt_size;

2861
	if (pbd_e1x)
D
Dmitry Kravkov 已提交
2862
		DP(NETIF_MSG_TX_QUEUED,
2863
		   "PBD (E1X) @%p  ip_data %x  ip_hlen %u  ip_id %u  lso_mss %u"
D
Dmitry Kravkov 已提交
2864
		   "  tcp_flags %x  xsum %x  seq %u  hlen %u\n",
2865 2866 2867 2868
		   pbd_e1x, pbd_e1x->global_data, pbd_e1x->ip_hlen_w,
		   pbd_e1x->ip_id, pbd_e1x->lso_mss, pbd_e1x->tcp_flags,
		   pbd_e1x->tcp_pseudo_csum, pbd_e1x->tcp_send_seq,
		    le16_to_cpu(pbd_e1x->total_hlen_w));
D
Dmitry Kravkov 已提交
2869 2870 2871 2872 2873 2874 2875
	if (pbd_e2)
		DP(NETIF_MSG_TX_QUEUED,
		   "PBD (E2) @%p  dst %x %x %x src %x %x %x parsing_data %x\n",
		   pbd_e2, pbd_e2->dst_mac_addr_hi, pbd_e2->dst_mac_addr_mid,
		   pbd_e2->dst_mac_addr_lo, pbd_e2->src_mac_addr_hi,
		   pbd_e2->src_mac_addr_mid, pbd_e2->src_mac_addr_lo,
		   pbd_e2->parsing_data);
D
Dmitry Kravkov 已提交
2876 2877
	DP(NETIF_MSG_TX_QUEUED, "doorbell: nbd %d  bd %u\n", nbd, bd_prod);

2878
	txdata->tx_pkt_prod++;
D
Dmitry Kravkov 已提交
2879 2880 2881 2882 2883 2884 2885 2886 2887
	/*
	 * Make sure that the BD data is updated before updating the producer
	 * since FW might read the BD right after the producer is updated.
	 * This is only applicable for weak-ordered memory model archs such
	 * as IA-64. The following barrier is also mandatory since FW will
	 * assumes packets must have BDs.
	 */
	wmb();

2888
	txdata->tx_db.data.prod += nbd;
D
Dmitry Kravkov 已提交
2889
	barrier();
D
Dmitry Kravkov 已提交
2890

2891
	DOORBELL(bp, txdata->cid, txdata->tx_db.raw);
D
Dmitry Kravkov 已提交
2892 2893 2894

	mmiowb();

2895
	txdata->tx_bd_prod += nbd;
D
Dmitry Kravkov 已提交
2896

2897
	if (unlikely(bnx2x_tx_avail(bp, txdata) < MAX_SKB_FRAGS + 3)) {
D
Dmitry Kravkov 已提交
2898 2899 2900 2901 2902 2903 2904 2905
		netif_tx_stop_queue(txq);

		/* paired memory barrier is in bnx2x_tx_int(), we have to keep
		 * ordering of set_bit() in netif_tx_stop_queue() and read of
		 * fp->bd_tx_cons */
		smp_mb();

		fp->eth_q_stats.driver_xoff++;
2906
		if (bnx2x_tx_avail(bp, txdata) >= MAX_SKB_FRAGS + 3)
D
Dmitry Kravkov 已提交
2907 2908
			netif_tx_wake_queue(txq);
	}
2909
	txdata->tx_pkt++;
D
Dmitry Kravkov 已提交
2910 2911 2912

	return NETDEV_TX_OK;
}
D
Dmitry Kravkov 已提交
2913

2914 2915 2916 2917 2918 2919 2920 2921 2922 2923 2924 2925 2926 2927 2928 2929 2930 2931 2932 2933 2934 2935 2936 2937 2938
/**
 * bnx2x_setup_tc - routine to configure net_device for multi tc
 *
 * @netdev: net device to configure
 * @tc: number of traffic classes to enable
 *
 * callback connected to the ndo_setup_tc function pointer
 */
int bnx2x_setup_tc(struct net_device *dev, u8 num_tc)
{
	int cos, prio, count, offset;
	struct bnx2x *bp = netdev_priv(dev);

	/* setup tc must be called under rtnl lock */
	ASSERT_RTNL();

	/* no traffic classes requested. aborting */
	if (!num_tc) {
		netdev_reset_tc(dev);
		return 0;
	}

	/* requested to support too many traffic classes */
	if (num_tc > bp->max_cos) {
		DP(NETIF_MSG_TX_ERR, "support for too many traffic classes"
2939
				     " requested: %d. max supported is %d\n",
2940 2941 2942 2943 2944 2945
				     num_tc, bp->max_cos);
		return -EINVAL;
	}

	/* declare amount of supported traffic classes */
	if (netdev_set_num_tc(dev, num_tc)) {
2946
		DP(NETIF_MSG_TX_ERR, "failed to declare %d traffic classes\n",
2947 2948 2949 2950 2951 2952 2953
				     num_tc);
		return -EINVAL;
	}

	/* configure priority to traffic class mapping */
	for (prio = 0; prio < BNX2X_MAX_PRIORITY; prio++) {
		netdev_set_prio_tc_map(dev, prio, bp->prio_to_cos[prio]);
2954
		DP(BNX2X_MSG_SP, "mapping priority %d to tc %d\n",
2955 2956 2957 2958 2959 2960 2961 2962
		   prio, bp->prio_to_cos[prio]);
	}


	/* Use this configuration to diffrentiate tc0 from other COSes
	   This can be used for ets or pfc, and save the effort of setting
	   up a multio class queue disc or negotiating DCBX with a switch
	netdev_set_prio_tc_map(dev, 0, 0);
2963
	DP(BNX2X_MSG_SP, "mapping priority %d to tc %d\n", 0, 0);
2964 2965
	for (prio = 1; prio < 16; prio++) {
		netdev_set_prio_tc_map(dev, prio, 1);
2966
		DP(BNX2X_MSG_SP, "mapping priority %d to tc %d\n", prio, 1);
2967 2968 2969 2970 2971 2972 2973
	} */

	/* configure traffic class to transmission queue mapping */
	for (cos = 0; cos < bp->max_cos; cos++) {
		count = BNX2X_NUM_ETH_QUEUES(bp);
		offset = cos * MAX_TXQS_PER_COS;
		netdev_set_tc_queue(dev, cos, count, offset);
2974
		DP(BNX2X_MSG_SP, "mapping tc %d to offset %d count %d\n",
2975 2976 2977 2978 2979 2980
		   cos, offset, count);
	}

	return 0;
}

D
Dmitry Kravkov 已提交
2981 2982 2983 2984 2985
/* called with rtnl_lock */
int bnx2x_change_mac_addr(struct net_device *dev, void *p)
{
	struct sockaddr *addr = p;
	struct bnx2x *bp = netdev_priv(dev);
2986
	int rc = 0;
D
Dmitry Kravkov 已提交
2987 2988 2989 2990

	if (!is_valid_ether_addr((u8 *)(addr->sa_data)))
		return -EINVAL;

2991 2992 2993 2994 2995 2996
	if (netif_running(dev))  {
		rc = bnx2x_set_eth_mac(bp, false);
		if (rc)
			return rc;
	}

D
Dmitry Kravkov 已提交
2997
	memcpy(dev->dev_addr, addr->sa_data, dev->addr_len);
2998

2999
	if (netif_running(dev))
3000
		rc = bnx2x_set_eth_mac(bp, true);
D
Dmitry Kravkov 已提交
3001

3002
	return rc;
D
Dmitry Kravkov 已提交
3003 3004
}

3005 3006 3007 3008
static void bnx2x_free_fp_mem_at(struct bnx2x *bp, int fp_index)
{
	union host_hc_status_block *sb = &bnx2x_fp(bp, fp_index, status_blk);
	struct bnx2x_fastpath *fp = &bp->fp[fp_index];
3009
	u8 cos;
3010 3011 3012 3013 3014 3015 3016 3017 3018 3019

	/* Common */
#ifdef BCM_CNIC
	if (IS_FCOE_IDX(fp_index)) {
		memset(sb, 0, sizeof(union host_hc_status_block));
		fp->status_blk_mapping = 0;

	} else {
#endif
		/* status blocks */
3020
		if (!CHIP_IS_E1x(bp))
3021 3022 3023 3024 3025 3026 3027 3028 3029 3030 3031 3032 3033 3034 3035 3036 3037 3038 3039 3040 3041 3042 3043 3044 3045 3046 3047 3048 3049 3050 3051 3052 3053 3054 3055 3056 3057
			BNX2X_PCI_FREE(sb->e2_sb,
				       bnx2x_fp(bp, fp_index,
						status_blk_mapping),
				       sizeof(struct host_hc_status_block_e2));
		else
			BNX2X_PCI_FREE(sb->e1x_sb,
				       bnx2x_fp(bp, fp_index,
						status_blk_mapping),
				       sizeof(struct host_hc_status_block_e1x));
#ifdef BCM_CNIC
	}
#endif
	/* Rx */
	if (!skip_rx_queue(bp, fp_index)) {
		bnx2x_free_rx_bds(fp);

		/* fastpath rx rings: rx_buf rx_desc rx_comp */
		BNX2X_FREE(bnx2x_fp(bp, fp_index, rx_buf_ring));
		BNX2X_PCI_FREE(bnx2x_fp(bp, fp_index, rx_desc_ring),
			       bnx2x_fp(bp, fp_index, rx_desc_mapping),
			       sizeof(struct eth_rx_bd) * NUM_RX_BD);

		BNX2X_PCI_FREE(bnx2x_fp(bp, fp_index, rx_comp_ring),
			       bnx2x_fp(bp, fp_index, rx_comp_mapping),
			       sizeof(struct eth_fast_path_rx_cqe) *
			       NUM_RCQ_BD);

		/* SGE ring */
		BNX2X_FREE(bnx2x_fp(bp, fp_index, rx_page_ring));
		BNX2X_PCI_FREE(bnx2x_fp(bp, fp_index, rx_sge_ring),
			       bnx2x_fp(bp, fp_index, rx_sge_mapping),
			       BCM_PAGE_SIZE * NUM_RX_SGE_PAGES);
	}

	/* Tx */
	if (!skip_tx_queue(bp, fp_index)) {
		/* fastpath tx rings: tx_buf tx_desc */
3058 3059 3060 3061
		for_each_cos_in_tx_queue(fp, cos) {
			struct bnx2x_fp_txdata *txdata = &fp->txdata[cos];

			DP(BNX2X_MSG_SP,
3062
			   "freeing tx memory of fp %d cos %d cid %d\n",
3063 3064 3065 3066 3067 3068 3069
			   fp_index, cos, txdata->cid);

			BNX2X_FREE(txdata->tx_buf_ring);
			BNX2X_PCI_FREE(txdata->tx_desc_ring,
				txdata->tx_desc_mapping,
				sizeof(union eth_tx_bd_types) * NUM_TX_BD);
		}
3070 3071 3072 3073 3074 3075 3076 3077 3078 3079 3080 3081 3082 3083
	}
	/* end of fastpath */
}

void bnx2x_free_fp_mem(struct bnx2x *bp)
{
	int i;
	for_each_queue(bp, i)
		bnx2x_free_fp_mem_at(bp, i);
}

static inline void set_sb_shortcuts(struct bnx2x *bp, int index)
{
	union host_hc_status_block status_blk = bnx2x_fp(bp, index, status_blk);
3084
	if (!CHIP_IS_E1x(bp)) {
3085 3086 3087 3088 3089 3090 3091 3092 3093 3094 3095 3096 3097 3098 3099 3100 3101
		bnx2x_fp(bp, index, sb_index_values) =
			(__le16 *)status_blk.e2_sb->sb.index_values;
		bnx2x_fp(bp, index, sb_running_index) =
			(__le16 *)status_blk.e2_sb->sb.running_index;
	} else {
		bnx2x_fp(bp, index, sb_index_values) =
			(__le16 *)status_blk.e1x_sb->sb.index_values;
		bnx2x_fp(bp, index, sb_running_index) =
			(__le16 *)status_blk.e1x_sb->sb.running_index;
	}
}

static int bnx2x_alloc_fp_mem_at(struct bnx2x *bp, int index)
{
	union host_hc_status_block *sb;
	struct bnx2x_fastpath *fp = &bp->fp[index];
	int ring_size = 0;
3102
	u8 cos;
3103
	int rx_ring_size = 0;
3104 3105

	/* if rx_ring_size specified - use it */
3106
	if (!bp->rx_ring_size) {
3107

3108 3109 3110 3111 3112 3113 3114 3115 3116
		rx_ring_size = MAX_RX_AVAIL/BNX2X_NUM_RX_QUEUES(bp);

		/* allocate at least number of buffers required by FW */
		rx_ring_size = max_t(int, bp->disable_tpa ? MIN_RX_SIZE_NONTPA :
				     MIN_RX_SIZE_TPA, rx_ring_size);

		bp->rx_ring_size = rx_ring_size;
	} else
		rx_ring_size = bp->rx_ring_size;
3117 3118 3119 3120 3121 3122 3123

	/* Common */
	sb = &bnx2x_fp(bp, index, status_blk);
#ifdef BCM_CNIC
	if (!IS_FCOE_IDX(index)) {
#endif
		/* status blocks */
3124
		if (!CHIP_IS_E1x(bp))
3125 3126 3127 3128 3129 3130 3131 3132 3133 3134
			BNX2X_PCI_ALLOC(sb->e2_sb,
				&bnx2x_fp(bp, index, status_blk_mapping),
				sizeof(struct host_hc_status_block_e2));
		else
			BNX2X_PCI_ALLOC(sb->e1x_sb,
				&bnx2x_fp(bp, index, status_blk_mapping),
			    sizeof(struct host_hc_status_block_e1x));
#ifdef BCM_CNIC
	}
#endif
3135 3136 3137 3138 3139 3140

	/* FCoE Queue uses Default SB and doesn't ACK the SB, thus no need to
	 * set shortcuts for it.
	 */
	if (!IS_FCOE_IDX(index))
		set_sb_shortcuts(bp, index);
3141 3142 3143 3144

	/* Tx */
	if (!skip_tx_queue(bp, index)) {
		/* fastpath tx rings: tx_buf tx_desc */
3145 3146 3147 3148
		for_each_cos_in_tx_queue(fp, cos) {
			struct bnx2x_fp_txdata *txdata = &fp->txdata[cos];

			DP(BNX2X_MSG_SP, "allocating tx memory of "
3149
					 "fp %d cos %d\n",
3150 3151 3152
			   index, cos);

			BNX2X_ALLOC(txdata->tx_buf_ring,
3153
				sizeof(struct sw_tx_bd) * NUM_TX_BD);
3154 3155
			BNX2X_PCI_ALLOC(txdata->tx_desc_ring,
				&txdata->tx_desc_mapping,
3156
				sizeof(union eth_tx_bd_types) * NUM_TX_BD);
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 3187 3188 3189 3190 3191 3192 3193 3194 3195 3196 3197 3198 3199
	}

	/* Rx */
	if (!skip_rx_queue(bp, index)) {
		/* fastpath rx rings: rx_buf rx_desc rx_comp */
		BNX2X_ALLOC(bnx2x_fp(bp, index, rx_buf_ring),
				sizeof(struct sw_rx_bd) * NUM_RX_BD);
		BNX2X_PCI_ALLOC(bnx2x_fp(bp, index, rx_desc_ring),
				&bnx2x_fp(bp, index, rx_desc_mapping),
				sizeof(struct eth_rx_bd) * NUM_RX_BD);

		BNX2X_PCI_ALLOC(bnx2x_fp(bp, index, rx_comp_ring),
				&bnx2x_fp(bp, index, rx_comp_mapping),
				sizeof(struct eth_fast_path_rx_cqe) *
				NUM_RCQ_BD);

		/* SGE ring */
		BNX2X_ALLOC(bnx2x_fp(bp, index, rx_page_ring),
				sizeof(struct sw_rx_page) * NUM_RX_SGE);
		BNX2X_PCI_ALLOC(bnx2x_fp(bp, index, rx_sge_ring),
				&bnx2x_fp(bp, index, rx_sge_mapping),
				BCM_PAGE_SIZE * NUM_RX_SGE_PAGES);
		/* RX BD ring */
		bnx2x_set_next_page_rx_bd(fp);

		/* CQ ring */
		bnx2x_set_next_page_rx_cq(fp);

		/* BDs */
		ring_size = bnx2x_alloc_rx_bds(fp, rx_ring_size);
		if (ring_size < rx_ring_size)
			goto alloc_mem_err;
	}

	return 0;

/* handles low memory cases */
alloc_mem_err:
	BNX2X_ERR("Unable to allocate full memory for queue %d (size %d)\n",
						index, ring_size);
	/* FW will drop all packets if queue is not big enough,
	 * In these cases we disable the queue
3200
	 * Min size is different for OOO, TPA and non-TPA queues
3201 3202
	 */
	if (ring_size < (fp->disable_tpa ?
D
Dmitry Kravkov 已提交
3203
				MIN_RX_SIZE_NONTPA : MIN_RX_SIZE_TPA)) {
3204 3205 3206 3207 3208 3209 3210 3211 3212 3213 3214 3215 3216 3217
			/* release memory allocated for this queue */
			bnx2x_free_fp_mem_at(bp, index);
			return -ENOMEM;
	}
	return 0;
}

int bnx2x_alloc_fp_mem(struct bnx2x *bp)
{
	int i;

	/**
	 * 1. Allocate FP for leading - fatal if error
	 * 2. {CNIC} Allocate FCoE FP - fatal if error
3218 3219
	 * 3. {CNIC} Allocate OOO + FWD - disable OOO if error
	 * 4. Allocate RSS - fix number of queues if error
3220 3221 3222 3223 3224
	 */

	/* leading */
	if (bnx2x_alloc_fp_mem_at(bp, 0))
		return -ENOMEM;
3225

3226
#ifdef BCM_CNIC
3227 3228 3229 3230 3231 3232 3233
	if (!NO_FCOE(bp))
		/* FCoE */
		if (bnx2x_alloc_fp_mem_at(bp, FCOE_IDX))
			/* we will fail load process instead of mark
			 * NO_FCOE_FLAG
			 */
			return -ENOMEM;
3234
#endif
3235

3236 3237 3238 3239 3240 3241 3242 3243 3244 3245 3246 3247 3248 3249 3250 3251 3252
	/* RSS */
	for_each_nondefault_eth_queue(bp, i)
		if (bnx2x_alloc_fp_mem_at(bp, i))
			break;

	/* handle memory failures */
	if (i != BNX2X_NUM_ETH_QUEUES(bp)) {
		int delta = BNX2X_NUM_ETH_QUEUES(bp) - i;

		WARN_ON(delta < 0);
#ifdef BCM_CNIC
		/**
		 * move non eth FPs next to last eth FP
		 * must be done in that order
		 * FCOE_IDX < FWD_IDX < OOO_IDX
		 */

3253
		/* move FCoE fp even NO_FCOE_FLAG is on */
3254 3255 3256 3257 3258 3259 3260 3261 3262
		bnx2x_move_fp(bp, FCOE_IDX, FCOE_IDX - delta);
#endif
		bp->num_queues -= delta;
		BNX2X_ERR("Adjusted num of queues from %d to %d\n",
			  bp->num_queues + delta, bp->num_queues);
	}

	return 0;
}
3263

3264 3265 3266 3267 3268 3269 3270 3271 3272 3273 3274 3275
void bnx2x_free_mem_bp(struct bnx2x *bp)
{
	kfree(bp->fp);
	kfree(bp->msix_table);
	kfree(bp->ilt);
}

int __devinit bnx2x_alloc_mem_bp(struct bnx2x *bp)
{
	struct bnx2x_fastpath *fp;
	struct msix_entry *tbl;
	struct bnx2x_ilt *ilt;
3276 3277 3278 3279 3280 3281 3282
	int msix_table_size = 0;

	/*
	 * The biggest MSI-X table we might need is as a maximum number of fast
	 * path IGU SBs plus default SB (for PF).
	 */
	msix_table_size = bp->igu_sb_cnt + 1;
3283

3284 3285 3286
	/* fp array: RSS plus CNIC related L2 queues */
	fp = kzalloc((BNX2X_MAX_RSS_COUNT(bp) + NON_ETH_CONTEXT_USE) *
		     sizeof(*fp), GFP_KERNEL);
3287 3288 3289 3290 3291
	if (!fp)
		goto alloc_err;
	bp->fp = fp;

	/* msix table */
3292
	tbl = kzalloc(msix_table_size * sizeof(*tbl), GFP_KERNEL);
3293 3294 3295 3296 3297 3298 3299 3300 3301 3302 3303 3304 3305 3306 3307 3308 3309
	if (!tbl)
		goto alloc_err;
	bp->msix_table = tbl;

	/* ilt */
	ilt = kzalloc(sizeof(*ilt), GFP_KERNEL);
	if (!ilt)
		goto alloc_err;
	bp->ilt = ilt;

	return 0;
alloc_err:
	bnx2x_free_mem_bp(bp);
	return -ENOMEM;

}

3310
int bnx2x_reload_if_running(struct net_device *dev)
3311 3312 3313 3314 3315 3316 3317 3318 3319 3320
{
	struct bnx2x *bp = netdev_priv(dev);

	if (unlikely(!netif_running(dev)))
		return 0;

	bnx2x_nic_unload(bp, UNLOAD_NORMAL);
	return bnx2x_nic_load(bp, LOAD_NORMAL);
}

Y
Yaniv Rosner 已提交
3321 3322 3323 3324 3325 3326 3327 3328 3329 3330 3331 3332 3333 3334 3335 3336 3337 3338 3339 3340 3341 3342 3343 3344 3345 3346 3347 3348 3349 3350 3351 3352 3353 3354 3355 3356 3357 3358 3359 3360 3361 3362 3363 3364 3365 3366 3367 3368 3369
int bnx2x_get_cur_phy_idx(struct bnx2x *bp)
{
	u32 sel_phy_idx = 0;
	if (bp->link_params.num_phys <= 1)
		return INT_PHY;

	if (bp->link_vars.link_up) {
		sel_phy_idx = EXT_PHY1;
		/* In case link is SERDES, check if the EXT_PHY2 is the one */
		if ((bp->link_vars.link_status & LINK_STATUS_SERDES_LINK) &&
		    (bp->link_params.phy[EXT_PHY2].supported & SUPPORTED_FIBRE))
			sel_phy_idx = EXT_PHY2;
	} else {

		switch (bnx2x_phy_selection(&bp->link_params)) {
		case PORT_HW_CFG_PHY_SELECTION_HARDWARE_DEFAULT:
		case PORT_HW_CFG_PHY_SELECTION_FIRST_PHY:
		case PORT_HW_CFG_PHY_SELECTION_FIRST_PHY_PRIORITY:
		       sel_phy_idx = EXT_PHY1;
		       break;
		case PORT_HW_CFG_PHY_SELECTION_SECOND_PHY:
		case PORT_HW_CFG_PHY_SELECTION_SECOND_PHY_PRIORITY:
		       sel_phy_idx = EXT_PHY2;
		       break;
		}
	}

	return sel_phy_idx;

}
int bnx2x_get_link_cfg_idx(struct bnx2x *bp)
{
	u32 sel_phy_idx = bnx2x_get_cur_phy_idx(bp);
	/*
	 * The selected actived PHY is always after swapping (in case PHY
	 * swapping is enabled). So when swapping is enabled, we need to reverse
	 * the configuration
	 */

	if (bp->link_params.multi_phy_config &
	    PORT_HW_CFG_PHY_SWAPPED_ENABLED) {
		if (sel_phy_idx == EXT_PHY1)
			sel_phy_idx = EXT_PHY2;
		else if (sel_phy_idx == EXT_PHY2)
			sel_phy_idx = EXT_PHY1;
	}
	return LINK_CONFIG_IDX(sel_phy_idx);
}

3370 3371 3372 3373 3374 3375 3376 3377 3378 3379 3380 3381 3382 3383 3384 3385 3386 3387 3388 3389 3390 3391 3392
#if defined(NETDEV_FCOE_WWNN) && defined(BCM_CNIC)
int bnx2x_fcoe_get_wwn(struct net_device *dev, u64 *wwn, int type)
{
	struct bnx2x *bp = netdev_priv(dev);
	struct cnic_eth_dev *cp = &bp->cnic_eth_dev;

	switch (type) {
	case NETDEV_FCOE_WWNN:
		*wwn = HILO_U64(cp->fcoe_wwn_node_name_hi,
				cp->fcoe_wwn_node_name_lo);
		break;
	case NETDEV_FCOE_WWPN:
		*wwn = HILO_U64(cp->fcoe_wwn_port_name_hi,
				cp->fcoe_wwn_port_name_lo);
		break;
	default:
		return -EINVAL;
	}

	return 0;
}
#endif

D
Dmitry Kravkov 已提交
3393 3394 3395 3396 3397 3398
/* called with rtnl_lock */
int bnx2x_change_mtu(struct net_device *dev, int new_mtu)
{
	struct bnx2x *bp = netdev_priv(dev);

	if (bp->recovery_state != BNX2X_RECOVERY_DONE) {
3399
		pr_err("Handling parity error recovery. Try again later\n");
D
Dmitry Kravkov 已提交
3400 3401 3402 3403 3404 3405 3406 3407 3408 3409 3410 3411 3412
		return -EAGAIN;
	}

	if ((new_mtu > ETH_MAX_JUMBO_PACKET_SIZE) ||
	    ((new_mtu + ETH_HLEN) < ETH_MIN_PACKET_SIZE))
		return -EINVAL;

	/* This does not race with packet allocation
	 * because the actual alloc size is
	 * only updated as part of load
	 */
	dev->mtu = new_mtu;

3413 3414 3415 3416 3417 3418 3419 3420 3421 3422 3423 3424 3425 3426 3427 3428 3429 3430
	return bnx2x_reload_if_running(dev);
}

u32 bnx2x_fix_features(struct net_device *dev, u32 features)
{
	struct bnx2x *bp = netdev_priv(dev);

	/* TPA requires Rx CSUM offloading */
	if (!(features & NETIF_F_RXCSUM) || bp->disable_tpa)
		features &= ~NETIF_F_LRO;

	return features;
}

int bnx2x_set_features(struct net_device *dev, u32 features)
{
	struct bnx2x *bp = netdev_priv(dev);
	u32 flags = bp->flags;
3431
	bool bnx2x_reload = false;
3432 3433 3434 3435 3436 3437

	if (features & NETIF_F_LRO)
		flags |= TPA_ENABLE_FLAG;
	else
		flags &= ~TPA_ENABLE_FLAG;

3438 3439 3440 3441 3442 3443 3444 3445 3446 3447 3448 3449
	if (features & NETIF_F_LOOPBACK) {
		if (bp->link_params.loopback_mode != LOOPBACK_BMAC) {
			bp->link_params.loopback_mode = LOOPBACK_BMAC;
			bnx2x_reload = true;
		}
	} else {
		if (bp->link_params.loopback_mode != LOOPBACK_NONE) {
			bp->link_params.loopback_mode = LOOPBACK_NONE;
			bnx2x_reload = true;
		}
	}

3450 3451
	if (flags ^ bp->flags) {
		bp->flags = flags;
3452 3453
		bnx2x_reload = true;
	}
3454

3455
	if (bnx2x_reload) {
3456 3457 3458
		if (bp->recovery_state == BNX2X_RECOVERY_DONE)
			return bnx2x_reload_if_running(dev);
		/* else: bnx2x_nic_load() will be called at end of recovery */
D
Dmitry Kravkov 已提交
3459 3460
	}

3461
	return 0;
D
Dmitry Kravkov 已提交
3462 3463 3464 3465 3466 3467 3468 3469 3470 3471
}

void bnx2x_tx_timeout(struct net_device *dev)
{
	struct bnx2x *bp = netdev_priv(dev);

#ifdef BNX2X_STOP_ON_ERROR
	if (!bp->panic)
		bnx2x_panic();
#endif
3472 3473 3474 3475 3476

	smp_mb__before_clear_bit();
	set_bit(BNX2X_SP_RTNL_TX_TIMEOUT, &bp->sp_rtnl_state);
	smp_mb__after_clear_bit();

D
Dmitry Kravkov 已提交
3477
	/* This allows the netif to be shutdown gracefully before resetting */
3478
	schedule_delayed_work(&bp->sp_rtnl_task, 0);
D
Dmitry Kravkov 已提交
3479 3480 3481 3482 3483 3484 3485 3486 3487 3488 3489 3490 3491 3492 3493 3494 3495 3496 3497 3498 3499 3500 3501 3502 3503 3504 3505 3506 3507 3508 3509 3510 3511 3512 3513 3514 3515 3516 3517 3518 3519 3520 3521 3522 3523 3524
}

int bnx2x_suspend(struct pci_dev *pdev, pm_message_t state)
{
	struct net_device *dev = pci_get_drvdata(pdev);
	struct bnx2x *bp;

	if (!dev) {
		dev_err(&pdev->dev, "BAD net device from bnx2x_init_one\n");
		return -ENODEV;
	}
	bp = netdev_priv(dev);

	rtnl_lock();

	pci_save_state(pdev);

	if (!netif_running(dev)) {
		rtnl_unlock();
		return 0;
	}

	netif_device_detach(dev);

	bnx2x_nic_unload(bp, UNLOAD_CLOSE);

	bnx2x_set_power_state(bp, pci_choose_state(pdev, state));

	rtnl_unlock();

	return 0;
}

int bnx2x_resume(struct pci_dev *pdev)
{
	struct net_device *dev = pci_get_drvdata(pdev);
	struct bnx2x *bp;
	int rc;

	if (!dev) {
		dev_err(&pdev->dev, "BAD net device from bnx2x_init_one\n");
		return -ENODEV;
	}
	bp = netdev_priv(dev);

	if (bp->recovery_state != BNX2X_RECOVERY_DONE) {
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		pr_err("Handling parity error recovery. Try again later\n");
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		return -EAGAIN;
	}

	rtnl_lock();

	pci_restore_state(pdev);

	if (!netif_running(dev)) {
		rtnl_unlock();
		return 0;
	}

	bnx2x_set_power_state(bp, PCI_D0);
	netif_device_attach(dev);

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	/* Since the chip was reset, clear the FW sequence number */
	bp->fw_seq = 0;
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	rc = bnx2x_nic_load(bp, LOAD_OPEN);

	rtnl_unlock();

	return rc;
}
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void bnx2x_set_ctx_validation(struct bnx2x *bp, struct eth_context *cxt,
			      u32 cid)
{
	/* ustorm cxt validation */
	cxt->ustorm_ag_context.cdu_usage =
		CDU_RSRVD_VALUE_TYPE_A(HW_CID(bp, cid),
			CDU_REGION_NUMBER_UCM_AG, ETH_CONNECTION_TYPE);
	/* xcontext validation */
	cxt->xstorm_ag_context.cdu_reserved =
		CDU_RSRVD_VALUE_TYPE_A(HW_CID(bp, cid),
			CDU_REGION_NUMBER_XCM_AG, ETH_CONNECTION_TYPE);
}

static inline void storm_memset_hc_timeout(struct bnx2x *bp, u8 port,
					     u8 fw_sb_id, u8 sb_index,
					     u8 ticks)
{

	u32 addr = BAR_CSTRORM_INTMEM +
		   CSTORM_STATUS_BLOCK_DATA_TIMEOUT_OFFSET(fw_sb_id, sb_index);
	REG_WR8(bp, addr, ticks);
	DP(NETIF_MSG_HW, "port %x fw_sb_id %d sb_index %d ticks %d\n",
			  port, fw_sb_id, sb_index, ticks);
}

static inline void storm_memset_hc_disable(struct bnx2x *bp, u8 port,
					     u16 fw_sb_id, u8 sb_index,
					     u8 disable)
{
	u32 enable_flag = disable ? 0 : (1 << HC_INDEX_DATA_HC_ENABLED_SHIFT);
	u32 addr = BAR_CSTRORM_INTMEM +
		   CSTORM_STATUS_BLOCK_DATA_FLAGS_OFFSET(fw_sb_id, sb_index);
	u16 flags = REG_RD16(bp, addr);
	/* clear and set */
	flags &= ~HC_INDEX_DATA_HC_ENABLED;
	flags |= enable_flag;
	REG_WR16(bp, addr, flags);
	DP(NETIF_MSG_HW, "port %x fw_sb_id %d sb_index %d disable %d\n",
			  port, fw_sb_id, sb_index, disable);
}

void bnx2x_update_coalesce_sb_index(struct bnx2x *bp, u8 fw_sb_id,
				    u8 sb_index, u8 disable, u16 usec)
{
	int port = BP_PORT(bp);
	u8 ticks = usec / BNX2X_BTR;

	storm_memset_hc_timeout(bp, port, fw_sb_id, sb_index, ticks);

	disable = disable ? 1 : (usec ? 0 : 1);
	storm_memset_hc_disable(bp, port, fw_sb_id, sb_index, disable);
}