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be2net: Refactor wrb_fill_hdr() routine
The WRB header is setup by wrb_fill_hdr() routine. This routine currently gets some of the WRB params as args and figures out rest of the WRB params by looking at various fields in skb (like gso, checksum, vlan-tag etc). All these params could instead be retrieved from the skb into a structure and passed to this routine. This separates wrb_fill_hdr() to only provide chip-specific code to fill the WRB. This also makes it simple to support chips with different WRB formats. Signed-off-by: Sriharsha Basavapatna <sriharsha.basavapatna@emulex.com> Signed-off-by: David S. Miller <davem@davemloft.net>
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69994d17ab
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@ -417,6 +417,39 @@ struct rss_info {
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u8 rss_hkey[RSS_HASH_KEY_LEN];
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};
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/* Macros to read/write the 'features' word of be_wrb_params structure.
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*/
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#define BE_WRB_F_BIT(name) BE_WRB_F_##name##_BIT
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#define BE_WRB_F_MASK(name) BIT_MASK(BE_WRB_F_##name##_BIT)
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#define BE_WRB_F_GET(word, name) \
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(((word) & (BE_WRB_F_MASK(name))) >> BE_WRB_F_BIT(name))
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#define BE_WRB_F_SET(word, name, val) \
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((word) |= (((val) << BE_WRB_F_BIT(name)) & BE_WRB_F_MASK(name)))
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/* Feature/offload bits */
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enum {
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BE_WRB_F_CRC_BIT, /* Ethernet CRC */
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BE_WRB_F_IPCS_BIT, /* IP csum */
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BE_WRB_F_TCPCS_BIT, /* TCP csum */
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BE_WRB_F_UDPCS_BIT, /* UDP csum */
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BE_WRB_F_LSO_BIT, /* LSO */
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BE_WRB_F_LSO6_BIT, /* LSO6 */
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BE_WRB_F_VLAN_BIT, /* VLAN */
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BE_WRB_F_VLAN_SKIP_HW_BIT /* Skip VLAN tag (workaround) */
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};
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/* The structure below provides a HW-agnostic abstraction of WRB params
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* retrieved from a TX skb. This is in turn passed to chip specific routines
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* during transmit, to set the corresponding params in the WRB.
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*/
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struct be_wrb_params {
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u32 features; /* Feature bits */
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u16 vlan_tag; /* VLAN tag */
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u16 lso_mss; /* MSS for LSO */
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};
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struct be_adapter {
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struct pci_dev *pdev;
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struct net_device *netdev;
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@ -727,48 +727,71 @@ static u16 skb_ip_proto(struct sk_buff *skb)
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ip_hdr(skb)->protocol : ipv6_hdr(skb)->nexthdr;
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}
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static void wrb_fill_hdr(struct be_adapter *adapter, struct be_eth_hdr_wrb *hdr,
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struct sk_buff *skb, u32 wrb_cnt, u32 len,
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bool skip_hw_vlan)
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static void be_get_wrb_params_from_skb(struct be_adapter *adapter,
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struct sk_buff *skb,
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struct be_wrb_params *wrb_params)
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{
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u16 vlan_tag, proto;
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memset(hdr, 0, sizeof(*hdr));
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SET_TX_WRB_HDR_BITS(crc, hdr, 1);
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u16 proto;
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if (skb_is_gso(skb)) {
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SET_TX_WRB_HDR_BITS(lso, hdr, 1);
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SET_TX_WRB_HDR_BITS(lso_mss, hdr, skb_shinfo(skb)->gso_size);
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BE_WRB_F_SET(wrb_params->features, LSO, 1);
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wrb_params->lso_mss = skb_shinfo(skb)->gso_size;
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if (skb_is_gso_v6(skb) && !lancer_chip(adapter))
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SET_TX_WRB_HDR_BITS(lso6, hdr, 1);
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BE_WRB_F_SET(wrb_params->features, LSO6, 1);
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} else if (skb->ip_summed == CHECKSUM_PARTIAL) {
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if (skb->encapsulation) {
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SET_TX_WRB_HDR_BITS(ipcs, hdr, 1);
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BE_WRB_F_SET(wrb_params->features, IPCS, 1);
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proto = skb_inner_ip_proto(skb);
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} else {
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proto = skb_ip_proto(skb);
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}
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if (proto == IPPROTO_TCP)
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SET_TX_WRB_HDR_BITS(tcpcs, hdr, 1);
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BE_WRB_F_SET(wrb_params->features, TCPCS, 1);
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else if (proto == IPPROTO_UDP)
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SET_TX_WRB_HDR_BITS(udpcs, hdr, 1);
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BE_WRB_F_SET(wrb_params->features, UDPCS, 1);
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}
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if (skb_vlan_tag_present(skb)) {
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SET_TX_WRB_HDR_BITS(vlan, hdr, 1);
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vlan_tag = be_get_tx_vlan_tag(adapter, skb);
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SET_TX_WRB_HDR_BITS(vlan_tag, hdr, vlan_tag);
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BE_WRB_F_SET(wrb_params->features, VLAN, 1);
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wrb_params->vlan_tag = be_get_tx_vlan_tag(adapter, skb);
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}
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SET_TX_WRB_HDR_BITS(num_wrb, hdr, wrb_cnt);
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SET_TX_WRB_HDR_BITS(len, hdr, len);
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BE_WRB_F_SET(wrb_params->features, CRC, 1);
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}
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/* Hack to skip HW VLAN tagging needs evt = 1, compl = 0
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* When this hack is not needed, the evt bit is set while ringing DB
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static void wrb_fill_hdr(struct be_adapter *adapter,
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struct be_eth_hdr_wrb *hdr,
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struct be_wrb_params *wrb_params,
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struct sk_buff *skb)
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{
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memset(hdr, 0, sizeof(*hdr));
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SET_TX_WRB_HDR_BITS(crc, hdr,
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BE_WRB_F_GET(wrb_params->features, CRC));
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SET_TX_WRB_HDR_BITS(ipcs, hdr,
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BE_WRB_F_GET(wrb_params->features, IPCS));
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SET_TX_WRB_HDR_BITS(tcpcs, hdr,
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BE_WRB_F_GET(wrb_params->features, TCPCS));
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SET_TX_WRB_HDR_BITS(udpcs, hdr,
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BE_WRB_F_GET(wrb_params->features, UDPCS));
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SET_TX_WRB_HDR_BITS(lso, hdr,
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BE_WRB_F_GET(wrb_params->features, LSO));
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SET_TX_WRB_HDR_BITS(lso6, hdr,
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BE_WRB_F_GET(wrb_params->features, LSO6));
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SET_TX_WRB_HDR_BITS(lso_mss, hdr, wrb_params->lso_mss);
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/* Hack to skip HW VLAN tagging needs evt = 1, compl = 0. When this
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* hack is not needed, the evt bit is set while ringing DB.
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*/
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if (skip_hw_vlan)
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SET_TX_WRB_HDR_BITS(event, hdr, 1);
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SET_TX_WRB_HDR_BITS(event, hdr,
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BE_WRB_F_GET(wrb_params->features, VLAN_SKIP_HW));
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SET_TX_WRB_HDR_BITS(vlan, hdr,
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BE_WRB_F_GET(wrb_params->features, VLAN));
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SET_TX_WRB_HDR_BITS(vlan_tag, hdr, wrb_params->vlan_tag);
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SET_TX_WRB_HDR_BITS(num_wrb, hdr, skb_wrb_cnt(skb));
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SET_TX_WRB_HDR_BITS(len, hdr, skb->len);
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}
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static void unmap_tx_frag(struct device *dev, struct be_eth_wrb *wrb,
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@ -790,7 +813,8 @@ static void unmap_tx_frag(struct device *dev, struct be_eth_wrb *wrb,
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/* Returns the number of WRBs used up by the skb */
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static u32 be_xmit_enqueue(struct be_adapter *adapter, struct be_tx_obj *txo,
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struct sk_buff *skb, bool skip_hw_vlan)
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struct sk_buff *skb,
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struct be_wrb_params *wrb_params)
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{
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u32 i, copied = 0, wrb_cnt = skb_wrb_cnt(skb);
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struct device *dev = &adapter->pdev->dev;
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@ -802,7 +826,7 @@ static u32 be_xmit_enqueue(struct be_adapter *adapter, struct be_tx_obj *txo,
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u16 head = txq->head;
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hdr = queue_head_node(txq);
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wrb_fill_hdr(adapter, hdr, skb, wrb_cnt, skb->len, skip_hw_vlan);
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wrb_fill_hdr(adapter, hdr, wrb_params, skb);
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be_dws_cpu_to_le(hdr, sizeof(*hdr));
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queue_head_inc(txq);
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@ -869,7 +893,8 @@ static inline int qnq_async_evt_rcvd(struct be_adapter *adapter)
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static struct sk_buff *be_insert_vlan_in_pkt(struct be_adapter *adapter,
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struct sk_buff *skb,
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bool *skip_hw_vlan)
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struct be_wrb_params
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*wrb_params)
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{
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u16 vlan_tag = 0;
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@ -886,8 +911,7 @@ static struct sk_buff *be_insert_vlan_in_pkt(struct be_adapter *adapter,
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/* f/w workaround to set skip_hw_vlan = 1, informs the F/W to
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* skip VLAN insertion
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*/
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if (skip_hw_vlan)
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*skip_hw_vlan = true;
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BE_WRB_F_SET(wrb_params->features, VLAN_SKIP_HW, 1);
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}
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if (vlan_tag) {
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@ -905,8 +929,7 @@ static struct sk_buff *be_insert_vlan_in_pkt(struct be_adapter *adapter,
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vlan_tag);
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if (unlikely(!skb))
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return skb;
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if (skip_hw_vlan)
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*skip_hw_vlan = true;
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BE_WRB_F_SET(wrb_params->features, VLAN_SKIP_HW, 1);
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}
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return skb;
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@ -946,7 +969,8 @@ static int be_ipv6_tx_stall_chk(struct be_adapter *adapter, struct sk_buff *skb)
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static struct sk_buff *be_lancer_xmit_workarounds(struct be_adapter *adapter,
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struct sk_buff *skb,
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bool *skip_hw_vlan)
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struct be_wrb_params
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*wrb_params)
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{
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struct vlan_ethhdr *veh = (struct vlan_ethhdr *)skb->data;
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unsigned int eth_hdr_len;
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@ -970,7 +994,7 @@ static struct sk_buff *be_lancer_xmit_workarounds(struct be_adapter *adapter,
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*/
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if (be_pvid_tagging_enabled(adapter) &&
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veh->h_vlan_proto == htons(ETH_P_8021Q))
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*skip_hw_vlan = true;
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BE_WRB_F_SET(wrb_params->features, VLAN_SKIP_HW, 1);
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/* HW has a bug wherein it will calculate CSUM for VLAN
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* pkts even though it is disabled.
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@ -978,7 +1002,7 @@ static struct sk_buff *be_lancer_xmit_workarounds(struct be_adapter *adapter,
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*/
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if (skb->ip_summed != CHECKSUM_PARTIAL &&
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skb_vlan_tag_present(skb)) {
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skb = be_insert_vlan_in_pkt(adapter, skb, skip_hw_vlan);
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skb = be_insert_vlan_in_pkt(adapter, skb, wrb_params);
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if (unlikely(!skb))
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goto err;
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}
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@ -1000,7 +1024,7 @@ static struct sk_buff *be_lancer_xmit_workarounds(struct be_adapter *adapter,
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*/
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if (be_ipv6_tx_stall_chk(adapter, skb) &&
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be_vlan_tag_tx_chk(adapter, skb)) {
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skb = be_insert_vlan_in_pkt(adapter, skb, skip_hw_vlan);
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skb = be_insert_vlan_in_pkt(adapter, skb, wrb_params);
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if (unlikely(!skb))
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goto err;
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}
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@ -1014,7 +1038,7 @@ err:
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static struct sk_buff *be_xmit_workarounds(struct be_adapter *adapter,
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struct sk_buff *skb,
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bool *skip_hw_vlan)
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struct be_wrb_params *wrb_params)
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{
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/* Lancer, SH-R ASICs have a bug wherein Packets that are 32 bytes or
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* less may cause a transmit stall on that port. So the work-around is
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@ -1026,7 +1050,7 @@ static struct sk_buff *be_xmit_workarounds(struct be_adapter *adapter,
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}
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if (BEx_chip(adapter) || lancer_chip(adapter)) {
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skb = be_lancer_xmit_workarounds(adapter, skb, skip_hw_vlan);
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skb = be_lancer_xmit_workarounds(adapter, skb, wrb_params);
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if (!skb)
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return NULL;
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}
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@ -1060,18 +1084,21 @@ static void be_xmit_flush(struct be_adapter *adapter, struct be_tx_obj *txo)
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static netdev_tx_t be_xmit(struct sk_buff *skb, struct net_device *netdev)
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{
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bool skip_hw_vlan = false, flush = !skb->xmit_more;
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struct be_adapter *adapter = netdev_priv(netdev);
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u16 q_idx = skb_get_queue_mapping(skb);
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struct be_tx_obj *txo = &adapter->tx_obj[q_idx];
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struct be_wrb_params wrb_params = { 0 };
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struct be_queue_info *txq = &txo->q;
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bool flush = !skb->xmit_more;
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u16 wrb_cnt;
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skb = be_xmit_workarounds(adapter, skb, &skip_hw_vlan);
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skb = be_xmit_workarounds(adapter, skb, &wrb_params);
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if (unlikely(!skb))
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goto drop;
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wrb_cnt = be_xmit_enqueue(adapter, txo, skb, skip_hw_vlan);
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be_get_wrb_params_from_skb(adapter, skb, &wrb_params);
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wrb_cnt = be_xmit_enqueue(adapter, txo, skb, &wrb_params);
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if (unlikely(!wrb_cnt)) {
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dev_kfree_skb_any(skb);
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goto drop;
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