2 * Copyright 2008-2010 Cisco Systems, Inc. All rights reserved.
3 * Copyright 2007 Nuova Systems, Inc. All rights reserved.
5 * This program is free software; you may redistribute it and/or modify
6 * it under the terms of the GNU General Public License as published by
7 * the Free Software Foundation; version 2 of the License.
9 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND,
10 * EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF
11 * MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND
12 * NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS
13 * BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN
14 * ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN
15 * CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
20 #include <linux/module.h>
21 #include <linux/kernel.h>
22 #include <linux/string.h>
23 #include <linux/errno.h>
24 #include <linux/types.h>
25 #include <linux/init.h>
26 #include <linux/interrupt.h>
27 #include <linux/workqueue.h>
28 #include <linux/pci.h>
29 #include <linux/netdevice.h>
30 #include <linux/etherdevice.h>
32 #include <linux/if_ether.h>
33 #include <linux/if_vlan.h>
36 #include <linux/ipv6.h>
37 #include <linux/tcp.h>
38 #include <linux/rtnetlink.h>
39 #include <linux/prefetch.h>
40 #include <net/ip6_checksum.h>
41 #include <linux/ktime.h>
42 #include <linux/numa.h>
43 #ifdef CONFIG_RFS_ACCEL
44 #include <linux/cpu_rmap.h>
46 #include <linux/crash_dump.h>
47 #include <net/busy_poll.h>
48 #include <net/vxlan.h>
49 #include <net/netdev_queues.h>
51 #include "cq_enet_desc.h"
53 #include "vnic_intr.h"
54 #include "vnic_stats.h"
60 #include "enic_clsf.h"
62 #define ENIC_NOTIFY_TIMER_PERIOD (2 * HZ)
63 #define WQ_ENET_MAX_DESC_LEN (1 << WQ_ENET_LEN_BITS)
64 #define MAX_TSO (1 << 16)
65 #define ENIC_DESC_MAX_SPLITS (MAX_TSO / WQ_ENET_MAX_DESC_LEN + 1)
67 #define PCI_DEVICE_ID_CISCO_VIC_ENET 0x0043 /* ethernet vnic */
68 #define PCI_DEVICE_ID_CISCO_VIC_ENET_DYN 0x0044 /* enet dynamic vnic */
69 #define PCI_DEVICE_ID_CISCO_VIC_ENET_VF 0x0071 /* enet SRIOV VF */
71 #define RX_COPYBREAK_DEFAULT 256
73 /* Supported devices */
74 static const struct pci_device_id enic_id_table
[] = {
75 { PCI_VDEVICE(CISCO
, PCI_DEVICE_ID_CISCO_VIC_ENET
) },
76 { PCI_VDEVICE(CISCO
, PCI_DEVICE_ID_CISCO_VIC_ENET_DYN
) },
77 { PCI_VDEVICE(CISCO
, PCI_DEVICE_ID_CISCO_VIC_ENET_VF
) },
78 { 0, } /* end of table */
81 MODULE_DESCRIPTION(DRV_DESCRIPTION
);
82 MODULE_AUTHOR("Scott Feldman <scofeldm@cisco.com>");
83 MODULE_LICENSE("GPL");
84 MODULE_DEVICE_TABLE(pci
, enic_id_table
);
86 #define ENIC_LARGE_PKT_THRESHOLD 1000
87 #define ENIC_MAX_COALESCE_TIMERS 10
88 /* Interrupt moderation table, which will be used to decide the
89 * coalescing timer values
90 * {rx_rate in Mbps, mapping percentage of the range}
92 static struct enic_intr_mod_table mod_table
[ENIC_MAX_COALESCE_TIMERS
+ 1] = {
106 /* This table helps the driver to pick different ranges for rx coalescing
107 * timer depending on the link speed.
109 static struct enic_intr_mod_range mod_range
[ENIC_MAX_LINK_SPEEDS
] = {
110 {0, 0}, /* 0 - 4 Gbps */
111 {0, 3}, /* 4 - 10 Gbps */
112 {3, 6}, /* 10 - 40 Gbps */
115 static void enic_init_affinity_hint(struct enic
*enic
)
117 int numa_node
= dev_to_node(&enic
->pdev
->dev
);
120 for (i
= 0; i
< enic
->intr_count
; i
++) {
121 if (enic_is_err_intr(enic
, i
) || enic_is_notify_intr(enic
, i
) ||
122 (cpumask_available(enic
->msix
[i
].affinity_mask
) &&
123 !cpumask_empty(enic
->msix
[i
].affinity_mask
)))
125 if (zalloc_cpumask_var(&enic
->msix
[i
].affinity_mask
,
127 cpumask_set_cpu(cpumask_local_spread(i
, numa_node
),
128 enic
->msix
[i
].affinity_mask
);
132 static void enic_free_affinity_hint(struct enic
*enic
)
136 for (i
= 0; i
< enic
->intr_count
; i
++) {
137 if (enic_is_err_intr(enic
, i
) || enic_is_notify_intr(enic
, i
))
139 free_cpumask_var(enic
->msix
[i
].affinity_mask
);
143 static void enic_set_affinity_hint(struct enic
*enic
)
148 for (i
= 0; i
< enic
->intr_count
; i
++) {
149 if (enic_is_err_intr(enic
, i
) ||
150 enic_is_notify_intr(enic
, i
) ||
151 !cpumask_available(enic
->msix
[i
].affinity_mask
) ||
152 cpumask_empty(enic
->msix
[i
].affinity_mask
))
154 err
= irq_update_affinity_hint(enic
->msix_entry
[i
].vector
,
155 enic
->msix
[i
].affinity_mask
);
157 netdev_warn(enic
->netdev
, "irq_update_affinity_hint failed, err %d\n",
161 for (i
= 0; i
< enic
->wq_count
; i
++) {
162 int wq_intr
= enic_msix_wq_intr(enic
, i
);
164 if (cpumask_available(enic
->msix
[wq_intr
].affinity_mask
) &&
165 !cpumask_empty(enic
->msix
[wq_intr
].affinity_mask
))
166 netif_set_xps_queue(enic
->netdev
,
167 enic
->msix
[wq_intr
].affinity_mask
,
172 static void enic_unset_affinity_hint(struct enic
*enic
)
176 for (i
= 0; i
< enic
->intr_count
; i
++)
177 irq_update_affinity_hint(enic
->msix_entry
[i
].vector
, NULL
);
180 static int enic_udp_tunnel_set_port(struct net_device
*netdev
,
181 unsigned int table
, unsigned int entry
,
182 struct udp_tunnel_info
*ti
)
184 struct enic
*enic
= netdev_priv(netdev
);
187 spin_lock_bh(&enic
->devcmd_lock
);
189 err
= vnic_dev_overlay_offload_cfg(enic
->vdev
,
190 OVERLAY_CFG_VXLAN_PORT_UPDATE
,
195 err
= vnic_dev_overlay_offload_ctrl(enic
->vdev
, OVERLAY_FEATURE_VXLAN
,
196 enic
->vxlan
.patch_level
);
200 enic
->vxlan
.vxlan_udp_port_number
= ntohs(ti
->port
);
202 spin_unlock_bh(&enic
->devcmd_lock
);
207 static int enic_udp_tunnel_unset_port(struct net_device
*netdev
,
208 unsigned int table
, unsigned int entry
,
209 struct udp_tunnel_info
*ti
)
211 struct enic
*enic
= netdev_priv(netdev
);
214 spin_lock_bh(&enic
->devcmd_lock
);
216 err
= vnic_dev_overlay_offload_ctrl(enic
->vdev
, OVERLAY_FEATURE_VXLAN
,
217 OVERLAY_OFFLOAD_DISABLE
);
221 enic
->vxlan
.vxlan_udp_port_number
= 0;
224 spin_unlock_bh(&enic
->devcmd_lock
);
229 static const struct udp_tunnel_nic_info enic_udp_tunnels
= {
230 .set_port
= enic_udp_tunnel_set_port
,
231 .unset_port
= enic_udp_tunnel_unset_port
,
233 { .n_entries
= 1, .tunnel_types
= UDP_TUNNEL_TYPE_VXLAN
, },
235 }, enic_udp_tunnels_v4
= {
236 .set_port
= enic_udp_tunnel_set_port
,
237 .unset_port
= enic_udp_tunnel_unset_port
,
238 .flags
= UDP_TUNNEL_NIC_INFO_IPV4_ONLY
,
240 { .n_entries
= 1, .tunnel_types
= UDP_TUNNEL_TYPE_VXLAN
, },
244 static netdev_features_t
enic_features_check(struct sk_buff
*skb
,
245 struct net_device
*dev
,
246 netdev_features_t features
)
248 const struct ethhdr
*eth
= (struct ethhdr
*)skb_inner_mac_header(skb
);
249 struct enic
*enic
= netdev_priv(dev
);
254 if (!skb
->encapsulation
)
257 features
= vxlan_features_check(skb
, features
);
259 switch (vlan_get_protocol(skb
)) {
260 case htons(ETH_P_IPV6
):
261 if (!(enic
->vxlan
.flags
& ENIC_VXLAN_OUTER_IPV6
))
263 proto
= ipv6_hdr(skb
)->nexthdr
;
265 case htons(ETH_P_IP
):
266 proto
= ip_hdr(skb
)->protocol
;
272 switch (eth
->h_proto
) {
273 case ntohs(ETH_P_IPV6
):
274 if (!(enic
->vxlan
.flags
& ENIC_VXLAN_INNER_IPV6
))
277 case ntohs(ETH_P_IP
):
284 if (proto
== IPPROTO_UDP
) {
286 port
= be16_to_cpu(udph
->dest
);
289 /* HW supports offload of only one UDP port. Remove CSUM and GSO MASK
290 * for other UDP port tunnels
292 if (port
!= enic
->vxlan
.vxlan_udp_port_number
)
298 return features
& ~(NETIF_F_CSUM_MASK
| NETIF_F_GSO_MASK
);
301 int enic_is_dynamic(struct enic
*enic
)
303 return enic
->pdev
->device
== PCI_DEVICE_ID_CISCO_VIC_ENET_DYN
;
306 int enic_sriov_enabled(struct enic
*enic
)
308 return (enic
->priv_flags
& ENIC_SRIOV_ENABLED
) ? 1 : 0;
311 static int enic_is_sriov_vf(struct enic
*enic
)
313 return enic
->pdev
->device
== PCI_DEVICE_ID_CISCO_VIC_ENET_VF
;
316 int enic_is_valid_vf(struct enic
*enic
, int vf
)
318 #ifdef CONFIG_PCI_IOV
319 return vf
>= 0 && vf
< enic
->num_vfs
;
325 static void enic_free_wq_buf(struct vnic_wq
*wq
, struct vnic_wq_buf
*buf
)
327 struct enic
*enic
= vnic_dev_priv(wq
->vdev
);
330 dma_unmap_single(&enic
->pdev
->dev
, buf
->dma_addr
, buf
->len
,
333 dma_unmap_page(&enic
->pdev
->dev
, buf
->dma_addr
, buf
->len
,
337 dev_kfree_skb_any(buf
->os_buf
);
340 static void enic_wq_free_buf(struct vnic_wq
*wq
,
341 struct cq_desc
*cq_desc
, struct vnic_wq_buf
*buf
, void *opaque
)
343 struct enic
*enic
= vnic_dev_priv(wq
->vdev
);
345 enic
->wq
[wq
->index
].stats
.cq_work
++;
346 enic
->wq
[wq
->index
].stats
.cq_bytes
+= buf
->len
;
347 enic_free_wq_buf(wq
, buf
);
350 static int enic_wq_service(struct vnic_dev
*vdev
, struct cq_desc
*cq_desc
,
351 u8 type
, u16 q_number
, u16 completed_index
, void *opaque
)
353 struct enic
*enic
= vnic_dev_priv(vdev
);
355 spin_lock(&enic
->wq
[q_number
].lock
);
357 vnic_wq_service(&enic
->wq
[q_number
].vwq
, cq_desc
,
358 completed_index
, enic_wq_free_buf
,
361 if (netif_tx_queue_stopped(netdev_get_tx_queue(enic
->netdev
, q_number
)) &&
362 vnic_wq_desc_avail(&enic
->wq
[q_number
].vwq
) >=
363 (MAX_SKB_FRAGS
+ ENIC_DESC_MAX_SPLITS
)) {
364 netif_wake_subqueue(enic
->netdev
, q_number
);
365 enic
->wq
[q_number
].stats
.wake
++;
368 spin_unlock(&enic
->wq
[q_number
].lock
);
373 static bool enic_log_q_error(struct enic
*enic
)
379 for (i
= 0; i
< enic
->wq_count
; i
++) {
380 error_status
= vnic_wq_error_status(&enic
->wq
[i
].vwq
);
383 netdev_err(enic
->netdev
, "WQ[%d] error_status %d\n",
387 for (i
= 0; i
< enic
->rq_count
; i
++) {
388 error_status
= vnic_rq_error_status(&enic
->rq
[i
].vrq
);
391 netdev_err(enic
->netdev
, "RQ[%d] error_status %d\n",
398 static void enic_msglvl_check(struct enic
*enic
)
400 u32 msg_enable
= vnic_dev_msg_lvl(enic
->vdev
);
402 if (msg_enable
!= enic
->msg_enable
) {
403 netdev_info(enic
->netdev
, "msg lvl changed from 0x%x to 0x%x\n",
404 enic
->msg_enable
, msg_enable
);
405 enic
->msg_enable
= msg_enable
;
409 static void enic_mtu_check(struct enic
*enic
)
411 u32 mtu
= vnic_dev_mtu(enic
->vdev
);
412 struct net_device
*netdev
= enic
->netdev
;
414 if (mtu
&& mtu
!= enic
->port_mtu
) {
415 enic
->port_mtu
= mtu
;
416 if (enic_is_dynamic(enic
) || enic_is_sriov_vf(enic
)) {
417 mtu
= max_t(int, ENIC_MIN_MTU
,
418 min_t(int, ENIC_MAX_MTU
, mtu
));
419 if (mtu
!= netdev
->mtu
)
420 schedule_work(&enic
->change_mtu_work
);
422 if (mtu
< netdev
->mtu
)
424 "interface MTU (%d) set higher "
425 "than switch port MTU (%d)\n",
431 static void enic_link_check(struct enic
*enic
)
433 int link_status
= vnic_dev_link_status(enic
->vdev
);
434 int carrier_ok
= netif_carrier_ok(enic
->netdev
);
436 if (link_status
&& !carrier_ok
) {
437 netdev_info(enic
->netdev
, "Link UP\n");
438 netif_carrier_on(enic
->netdev
);
439 } else if (!link_status
&& carrier_ok
) {
440 netdev_info(enic
->netdev
, "Link DOWN\n");
441 netif_carrier_off(enic
->netdev
);
445 static void enic_notify_check(struct enic
*enic
)
447 enic_msglvl_check(enic
);
448 enic_mtu_check(enic
);
449 enic_link_check(enic
);
452 #define ENIC_TEST_INTR(pba, i) (pba & (1 << i))
454 static irqreturn_t
enic_isr_legacy(int irq
, void *data
)
456 struct net_device
*netdev
= data
;
457 struct enic
*enic
= netdev_priv(netdev
);
458 unsigned int io_intr
= ENIC_LEGACY_IO_INTR
;
459 unsigned int err_intr
= ENIC_LEGACY_ERR_INTR
;
460 unsigned int notify_intr
= ENIC_LEGACY_NOTIFY_INTR
;
463 vnic_intr_mask(&enic
->intr
[io_intr
]);
465 pba
= vnic_intr_legacy_pba(enic
->legacy_pba
);
467 vnic_intr_unmask(&enic
->intr
[io_intr
]);
468 return IRQ_NONE
; /* not our interrupt */
471 if (ENIC_TEST_INTR(pba
, notify_intr
)) {
472 enic_notify_check(enic
);
473 vnic_intr_return_all_credits(&enic
->intr
[notify_intr
]);
476 if (ENIC_TEST_INTR(pba
, err_intr
)) {
477 vnic_intr_return_all_credits(&enic
->intr
[err_intr
]);
478 enic_log_q_error(enic
);
479 /* schedule recovery from WQ/RQ error */
480 schedule_work(&enic
->reset
);
484 if (ENIC_TEST_INTR(pba
, io_intr
))
485 napi_schedule_irqoff(&enic
->napi
[0]);
487 vnic_intr_unmask(&enic
->intr
[io_intr
]);
492 static irqreturn_t
enic_isr_msi(int irq
, void *data
)
494 struct enic
*enic
= data
;
496 /* With MSI, there is no sharing of interrupts, so this is
497 * our interrupt and there is no need to ack it. The device
498 * is not providing per-vector masking, so the OS will not
499 * write to PCI config space to mask/unmask the interrupt.
500 * We're using mask_on_assertion for MSI, so the device
501 * automatically masks the interrupt when the interrupt is
502 * generated. Later, when exiting polling, the interrupt
503 * will be unmasked (see enic_poll).
505 * Also, the device uses the same PCIe Traffic Class (TC)
506 * for Memory Write data and MSI, so there are no ordering
507 * issues; the MSI will always arrive at the Root Complex
508 * _after_ corresponding Memory Writes (i.e. descriptor
512 napi_schedule_irqoff(&enic
->napi
[0]);
517 static irqreturn_t
enic_isr_msix(int irq
, void *data
)
519 struct napi_struct
*napi
= data
;
521 napi_schedule_irqoff(napi
);
526 static irqreturn_t
enic_isr_msix_err(int irq
, void *data
)
528 struct enic
*enic
= data
;
529 unsigned int intr
= enic_msix_err_intr(enic
);
531 vnic_intr_return_all_credits(&enic
->intr
[intr
]);
533 if (enic_log_q_error(enic
))
534 /* schedule recovery from WQ/RQ error */
535 schedule_work(&enic
->reset
);
540 static irqreturn_t
enic_isr_msix_notify(int irq
, void *data
)
542 struct enic
*enic
= data
;
543 unsigned int intr
= enic_msix_notify_intr(enic
);
545 enic_notify_check(enic
);
546 vnic_intr_return_all_credits(&enic
->intr
[intr
]);
551 static int enic_queue_wq_skb_cont(struct enic
*enic
, struct vnic_wq
*wq
,
552 struct sk_buff
*skb
, unsigned int len_left
,
555 const skb_frag_t
*frag
;
558 /* Queue additional data fragments */
559 for (frag
= skb_shinfo(skb
)->frags
; len_left
; frag
++) {
560 len_left
-= skb_frag_size(frag
);
561 dma_addr
= skb_frag_dma_map(&enic
->pdev
->dev
, frag
, 0,
564 if (unlikely(enic_dma_map_check(enic
, dma_addr
)))
566 enic_queue_wq_desc_cont(wq
, skb
, dma_addr
, skb_frag_size(frag
),
567 (len_left
== 0), /* EOP? */
574 static int enic_queue_wq_skb_vlan(struct enic
*enic
, struct vnic_wq
*wq
,
575 struct sk_buff
*skb
, int vlan_tag_insert
,
576 unsigned int vlan_tag
, int loopback
)
578 unsigned int head_len
= skb_headlen(skb
);
579 unsigned int len_left
= skb
->len
- head_len
;
580 int eop
= (len_left
== 0);
584 dma_addr
= dma_map_single(&enic
->pdev
->dev
, skb
->data
, head_len
,
586 if (unlikely(enic_dma_map_check(enic
, dma_addr
)))
589 /* Queue the main skb fragment. The fragments are no larger
590 * than max MTU(9000)+ETH_HDR_LEN(14) bytes, which is less
591 * than WQ_ENET_MAX_DESC_LEN length. So only one descriptor
592 * per fragment is queued.
594 enic_queue_wq_desc(wq
, skb
, dma_addr
, head_len
, vlan_tag_insert
,
595 vlan_tag
, eop
, loopback
);
598 err
= enic_queue_wq_skb_cont(enic
, wq
, skb
, len_left
, loopback
);
600 /* The enic_queue_wq_desc() above does not do HW checksum */
601 enic
->wq
[wq
->index
].stats
.csum_none
++;
602 enic
->wq
[wq
->index
].stats
.packets
++;
603 enic
->wq
[wq
->index
].stats
.bytes
+= skb
->len
;
608 static int enic_queue_wq_skb_csum_l4(struct enic
*enic
, struct vnic_wq
*wq
,
609 struct sk_buff
*skb
, int vlan_tag_insert
,
610 unsigned int vlan_tag
, int loopback
)
612 unsigned int head_len
= skb_headlen(skb
);
613 unsigned int len_left
= skb
->len
- head_len
;
614 unsigned int hdr_len
= skb_checksum_start_offset(skb
);
615 unsigned int csum_offset
= hdr_len
+ skb
->csum_offset
;
616 int eop
= (len_left
== 0);
620 dma_addr
= dma_map_single(&enic
->pdev
->dev
, skb
->data
, head_len
,
622 if (unlikely(enic_dma_map_check(enic
, dma_addr
)))
625 /* Queue the main skb fragment. The fragments are no larger
626 * than max MTU(9000)+ETH_HDR_LEN(14) bytes, which is less
627 * than WQ_ENET_MAX_DESC_LEN length. So only one descriptor
628 * per fragment is queued.
630 enic_queue_wq_desc_csum_l4(wq
, skb
, dma_addr
, head_len
, csum_offset
,
631 hdr_len
, vlan_tag_insert
, vlan_tag
, eop
,
635 err
= enic_queue_wq_skb_cont(enic
, wq
, skb
, len_left
, loopback
);
637 enic
->wq
[wq
->index
].stats
.csum_partial
++;
638 enic
->wq
[wq
->index
].stats
.packets
++;
639 enic
->wq
[wq
->index
].stats
.bytes
+= skb
->len
;
644 static void enic_preload_tcp_csum_encap(struct sk_buff
*skb
)
646 const struct ethhdr
*eth
= (struct ethhdr
*)skb_inner_mac_header(skb
);
648 switch (eth
->h_proto
) {
649 case ntohs(ETH_P_IP
):
650 inner_ip_hdr(skb
)->check
= 0;
651 inner_tcp_hdr(skb
)->check
=
652 ~csum_tcpudp_magic(inner_ip_hdr(skb
)->saddr
,
653 inner_ip_hdr(skb
)->daddr
, 0,
656 case ntohs(ETH_P_IPV6
):
657 inner_tcp_hdr(skb
)->check
=
658 ~csum_ipv6_magic(&inner_ipv6_hdr(skb
)->saddr
,
659 &inner_ipv6_hdr(skb
)->daddr
, 0,
663 WARN_ONCE(1, "Non ipv4/ipv6 inner pkt for encap offload");
668 static void enic_preload_tcp_csum(struct sk_buff
*skb
)
670 /* Preload TCP csum field with IP pseudo hdr calculated
671 * with IP length set to zero. HW will later add in length
672 * to each TCP segment resulting from the TSO.
675 if (skb
->protocol
== cpu_to_be16(ETH_P_IP
)) {
676 ip_hdr(skb
)->check
= 0;
677 tcp_hdr(skb
)->check
= ~csum_tcpudp_magic(ip_hdr(skb
)->saddr
,
678 ip_hdr(skb
)->daddr
, 0, IPPROTO_TCP
, 0);
679 } else if (skb
->protocol
== cpu_to_be16(ETH_P_IPV6
)) {
680 tcp_v6_gso_csum_prep(skb
);
684 static int enic_queue_wq_skb_tso(struct enic
*enic
, struct vnic_wq
*wq
,
685 struct sk_buff
*skb
, unsigned int mss
,
686 int vlan_tag_insert
, unsigned int vlan_tag
,
689 unsigned int frag_len_left
= skb_headlen(skb
);
690 unsigned int len_left
= skb
->len
- frag_len_left
;
691 int eop
= (len_left
== 0);
692 unsigned int offset
= 0;
693 unsigned int hdr_len
;
699 if (skb
->encapsulation
) {
700 hdr_len
= skb_inner_tcp_all_headers(skb
);
701 enic_preload_tcp_csum_encap(skb
);
702 enic
->wq
[wq
->index
].stats
.encap_tso
++;
704 hdr_len
= skb_tcp_all_headers(skb
);
705 enic_preload_tcp_csum(skb
);
706 enic
->wq
[wq
->index
].stats
.tso
++;
709 /* Queue WQ_ENET_MAX_DESC_LEN length descriptors
710 * for the main skb fragment
712 while (frag_len_left
) {
713 len
= min(frag_len_left
, (unsigned int)WQ_ENET_MAX_DESC_LEN
);
714 dma_addr
= dma_map_single(&enic
->pdev
->dev
,
715 skb
->data
+ offset
, len
,
717 if (unlikely(enic_dma_map_check(enic
, dma_addr
)))
719 enic_queue_wq_desc_tso(wq
, skb
, dma_addr
, len
, mss
, hdr_len
,
720 vlan_tag_insert
, vlan_tag
,
721 eop
&& (len
== frag_len_left
), loopback
);
722 frag_len_left
-= len
;
729 /* Queue WQ_ENET_MAX_DESC_LEN length descriptors
730 * for additional data fragments
732 for (frag
= skb_shinfo(skb
)->frags
; len_left
; frag
++) {
733 len_left
-= skb_frag_size(frag
);
734 frag_len_left
= skb_frag_size(frag
);
737 while (frag_len_left
) {
738 len
= min(frag_len_left
,
739 (unsigned int)WQ_ENET_MAX_DESC_LEN
);
740 dma_addr
= skb_frag_dma_map(&enic
->pdev
->dev
, frag
,
743 if (unlikely(enic_dma_map_check(enic
, dma_addr
)))
745 enic_queue_wq_desc_cont(wq
, skb
, dma_addr
, len
,
747 (len
== frag_len_left
),/*EOP*/
749 frag_len_left
-= len
;
755 /* calculate how many packets tso sent */
756 len
= skb
->len
- hdr_len
;
760 enic
->wq
[wq
->index
].stats
.packets
+= pkts
;
761 enic
->wq
[wq
->index
].stats
.bytes
+= (len
+ (pkts
* hdr_len
));
766 static inline int enic_queue_wq_skb_encap(struct enic
*enic
, struct vnic_wq
*wq
,
769 unsigned int vlan_tag
, int loopback
)
771 unsigned int head_len
= skb_headlen(skb
);
772 unsigned int len_left
= skb
->len
- head_len
;
773 /* Hardware will overwrite the checksum fields, calculating from
774 * scratch and ignoring the value placed by software.
776 * mss[2], mss[1], mss[0] bits are set
778 unsigned int mss_or_csum
= 7;
779 int eop
= (len_left
== 0);
783 dma_addr
= dma_map_single(&enic
->pdev
->dev
, skb
->data
, head_len
,
785 if (unlikely(enic_dma_map_check(enic
, dma_addr
)))
788 enic_queue_wq_desc_ex(wq
, skb
, dma_addr
, head_len
, mss_or_csum
, 0,
789 vlan_tag_insert
, vlan_tag
,
790 WQ_ENET_OFFLOAD_MODE_CSUM
, eop
, 1 /* SOP */, eop
,
793 err
= enic_queue_wq_skb_cont(enic
, wq
, skb
, len_left
, loopback
);
795 enic
->wq
[wq
->index
].stats
.encap_csum
++;
796 enic
->wq
[wq
->index
].stats
.packets
++;
797 enic
->wq
[wq
->index
].stats
.bytes
+= skb
->len
;
802 static inline int enic_queue_wq_skb(struct enic
*enic
,
803 struct vnic_wq
*wq
, struct sk_buff
*skb
)
805 unsigned int mss
= skb_shinfo(skb
)->gso_size
;
806 unsigned int vlan_tag
= 0;
807 int vlan_tag_insert
= 0;
811 if (skb_vlan_tag_present(skb
)) {
812 /* VLAN tag from trunking driver */
814 vlan_tag
= skb_vlan_tag_get(skb
);
815 enic
->wq
[wq
->index
].stats
.add_vlan
++;
816 } else if (enic
->loop_enable
) {
817 vlan_tag
= enic
->loop_tag
;
822 err
= enic_queue_wq_skb_tso(enic
, wq
, skb
, mss
,
823 vlan_tag_insert
, vlan_tag
,
825 else if (skb
->encapsulation
)
826 err
= enic_queue_wq_skb_encap(enic
, wq
, skb
, vlan_tag_insert
,
828 else if (skb
->ip_summed
== CHECKSUM_PARTIAL
)
829 err
= enic_queue_wq_skb_csum_l4(enic
, wq
, skb
, vlan_tag_insert
,
832 err
= enic_queue_wq_skb_vlan(enic
, wq
, skb
, vlan_tag_insert
,
835 struct vnic_wq_buf
*buf
;
837 buf
= wq
->to_use
->prev
;
838 /* while not EOP of previous pkt && queue not empty.
839 * For all non EOP bufs, os_buf is NULL.
841 while (!buf
->os_buf
&& (buf
->next
!= wq
->to_clean
)) {
842 enic_free_wq_buf(wq
, buf
);
843 wq
->ring
.desc_avail
++;
846 wq
->to_use
= buf
->next
;
852 /* netif_tx_lock held, process context with BHs disabled, or BH */
853 static netdev_tx_t
enic_hard_start_xmit(struct sk_buff
*skb
,
854 struct net_device
*netdev
)
856 struct enic
*enic
= netdev_priv(netdev
);
858 unsigned int txq_map
;
859 struct netdev_queue
*txq
;
861 txq_map
= skb_get_queue_mapping(skb
) % enic
->wq_count
;
862 wq
= &enic
->wq
[txq_map
].vwq
;
865 dev_kfree_skb_any(skb
);
866 enic
->wq
[wq
->index
].stats
.null_pkt
++;
870 txq
= netdev_get_tx_queue(netdev
, txq_map
);
872 /* Non-TSO sends must fit within ENIC_NON_TSO_MAX_DESC descs,
873 * which is very likely. In the off chance it's going to take
874 * more than * ENIC_NON_TSO_MAX_DESC, linearize the skb.
877 if (skb_shinfo(skb
)->gso_size
== 0 &&
878 skb_shinfo(skb
)->nr_frags
+ 1 > ENIC_NON_TSO_MAX_DESC
&&
879 skb_linearize(skb
)) {
880 dev_kfree_skb_any(skb
);
881 enic
->wq
[wq
->index
].stats
.skb_linear_fail
++;
885 spin_lock(&enic
->wq
[txq_map
].lock
);
887 if (vnic_wq_desc_avail(wq
) <
888 skb_shinfo(skb
)->nr_frags
+ ENIC_DESC_MAX_SPLITS
) {
889 netif_tx_stop_queue(txq
);
890 /* This is a hard error, log it */
891 netdev_err(netdev
, "BUG! Tx ring full when queue awake!\n");
892 spin_unlock(&enic
->wq
[txq_map
].lock
);
893 enic
->wq
[wq
->index
].stats
.desc_full_awake
++;
894 return NETDEV_TX_BUSY
;
897 if (enic_queue_wq_skb(enic
, wq
, skb
))
900 if (vnic_wq_desc_avail(wq
) < MAX_SKB_FRAGS
+ ENIC_DESC_MAX_SPLITS
) {
901 netif_tx_stop_queue(txq
);
902 enic
->wq
[wq
->index
].stats
.stopped
++;
904 skb_tx_timestamp(skb
);
905 if (!netdev_xmit_more() || netif_xmit_stopped(txq
))
906 vnic_wq_doorbell(wq
);
909 spin_unlock(&enic
->wq
[txq_map
].lock
);
914 /* rcu_read_lock potentially held, nominally process context */
915 static void enic_get_stats(struct net_device
*netdev
,
916 struct rtnl_link_stats64
*net_stats
)
918 struct enic
*enic
= netdev_priv(netdev
);
919 struct vnic_stats
*stats
;
920 u64 pkt_truncated
= 0;
925 err
= enic_dev_stats_dump(enic
, &stats
);
926 /* return only when dma_alloc_coherent fails in vnic_dev_stats_dump
927 * For other failures, like devcmd failure, we return previously
933 net_stats
->tx_packets
= stats
->tx
.tx_frames_ok
;
934 net_stats
->tx_bytes
= stats
->tx
.tx_bytes_ok
;
935 net_stats
->tx_errors
= stats
->tx
.tx_errors
;
936 net_stats
->tx_dropped
= stats
->tx
.tx_drops
;
938 net_stats
->rx_packets
= stats
->rx
.rx_frames_ok
;
939 net_stats
->rx_bytes
= stats
->rx
.rx_bytes_ok
;
940 net_stats
->rx_errors
= stats
->rx
.rx_errors
;
941 net_stats
->multicast
= stats
->rx
.rx_multicast_frames_ok
;
943 for (i
= 0; i
< enic
->rq_count
; i
++) {
944 struct enic_rq_stats
*rqs
= &enic
->rq
[i
].stats
;
946 if (!enic
->rq
[i
].vrq
.ctrl
)
948 pkt_truncated
+= rqs
->pkt_truncated
;
949 bad_fcs
+= rqs
->bad_fcs
;
951 net_stats
->rx_over_errors
= pkt_truncated
;
952 net_stats
->rx_crc_errors
= bad_fcs
;
953 net_stats
->rx_dropped
= stats
->rx
.rx_no_bufs
+ stats
->rx
.rx_drop
;
956 static int enic_mc_sync(struct net_device
*netdev
, const u8
*mc_addr
)
958 struct enic
*enic
= netdev_priv(netdev
);
960 if (enic
->mc_count
== ENIC_MULTICAST_PERFECT_FILTERS
) {
961 unsigned int mc_count
= netdev_mc_count(netdev
);
963 netdev_warn(netdev
, "Registering only %d out of %d multicast addresses\n",
964 ENIC_MULTICAST_PERFECT_FILTERS
, mc_count
);
969 enic_dev_add_addr(enic
, mc_addr
);
975 static int enic_mc_unsync(struct net_device
*netdev
, const u8
*mc_addr
)
977 struct enic
*enic
= netdev_priv(netdev
);
979 enic_dev_del_addr(enic
, mc_addr
);
985 static int enic_uc_sync(struct net_device
*netdev
, const u8
*uc_addr
)
987 struct enic
*enic
= netdev_priv(netdev
);
989 if (enic
->uc_count
== ENIC_UNICAST_PERFECT_FILTERS
) {
990 unsigned int uc_count
= netdev_uc_count(netdev
);
992 netdev_warn(netdev
, "Registering only %d out of %d unicast addresses\n",
993 ENIC_UNICAST_PERFECT_FILTERS
, uc_count
);
998 enic_dev_add_addr(enic
, uc_addr
);
1004 static int enic_uc_unsync(struct net_device
*netdev
, const u8
*uc_addr
)
1006 struct enic
*enic
= netdev_priv(netdev
);
1008 enic_dev_del_addr(enic
, uc_addr
);
1014 void enic_reset_addr_lists(struct enic
*enic
)
1016 struct net_device
*netdev
= enic
->netdev
;
1018 __dev_uc_unsync(netdev
, NULL
);
1019 __dev_mc_unsync(netdev
, NULL
);
1026 static int enic_set_mac_addr(struct net_device
*netdev
, char *addr
)
1028 struct enic
*enic
= netdev_priv(netdev
);
1030 if (enic_is_dynamic(enic
) || enic_is_sriov_vf(enic
)) {
1031 if (!is_valid_ether_addr(addr
) && !is_zero_ether_addr(addr
))
1032 return -EADDRNOTAVAIL
;
1034 if (!is_valid_ether_addr(addr
))
1035 return -EADDRNOTAVAIL
;
1038 eth_hw_addr_set(netdev
, addr
);
1043 static int enic_set_mac_address_dynamic(struct net_device
*netdev
, void *p
)
1045 struct enic
*enic
= netdev_priv(netdev
);
1046 struct sockaddr
*saddr
= p
;
1047 char *addr
= saddr
->sa_data
;
1050 if (netif_running(enic
->netdev
)) {
1051 err
= enic_dev_del_station_addr(enic
);
1056 err
= enic_set_mac_addr(netdev
, addr
);
1060 if (netif_running(enic
->netdev
)) {
1061 err
= enic_dev_add_station_addr(enic
);
1069 static int enic_set_mac_address(struct net_device
*netdev
, void *p
)
1071 struct sockaddr
*saddr
= p
;
1072 char *addr
= saddr
->sa_data
;
1073 struct enic
*enic
= netdev_priv(netdev
);
1076 err
= enic_dev_del_station_addr(enic
);
1080 err
= enic_set_mac_addr(netdev
, addr
);
1084 return enic_dev_add_station_addr(enic
);
1087 /* netif_tx_lock held, BHs disabled */
1088 static void enic_set_rx_mode(struct net_device
*netdev
)
1090 struct enic
*enic
= netdev_priv(netdev
);
1092 int multicast
= (netdev
->flags
& IFF_MULTICAST
) ? 1 : 0;
1093 int broadcast
= (netdev
->flags
& IFF_BROADCAST
) ? 1 : 0;
1094 int promisc
= (netdev
->flags
& IFF_PROMISC
) ||
1095 netdev_uc_count(netdev
) > ENIC_UNICAST_PERFECT_FILTERS
;
1096 int allmulti
= (netdev
->flags
& IFF_ALLMULTI
) ||
1097 netdev_mc_count(netdev
) > ENIC_MULTICAST_PERFECT_FILTERS
;
1098 unsigned int flags
= netdev
->flags
|
1099 (allmulti
? IFF_ALLMULTI
: 0) |
1100 (promisc
? IFF_PROMISC
: 0);
1102 if (enic
->flags
!= flags
) {
1103 enic
->flags
= flags
;
1104 enic_dev_packet_filter(enic
, directed
,
1105 multicast
, broadcast
, promisc
, allmulti
);
1109 __dev_uc_sync(netdev
, enic_uc_sync
, enic_uc_unsync
);
1111 __dev_mc_sync(netdev
, enic_mc_sync
, enic_mc_unsync
);
1115 /* netif_tx_lock held, BHs disabled */
1116 static void enic_tx_timeout(struct net_device
*netdev
, unsigned int txqueue
)
1118 struct enic
*enic
= netdev_priv(netdev
);
1119 schedule_work(&enic
->tx_hang_reset
);
1122 static int enic_set_vf_mac(struct net_device
*netdev
, int vf
, u8
*mac
)
1124 struct enic
*enic
= netdev_priv(netdev
);
1125 struct enic_port_profile
*pp
;
1128 ENIC_PP_BY_INDEX(enic
, vf
, pp
, &err
);
1132 if (is_valid_ether_addr(mac
) || is_zero_ether_addr(mac
)) {
1133 if (vf
== PORT_SELF_VF
) {
1134 memcpy(pp
->vf_mac
, mac
, ETH_ALEN
);
1138 * For sriov vf's set the mac in hw
1140 ENIC_DEVCMD_PROXY_BY_INDEX(vf
, err
, enic
,
1141 vnic_dev_set_mac_addr
, mac
);
1142 return enic_dev_status_to_errno(err
);
1148 static int enic_set_vf_port(struct net_device
*netdev
, int vf
,
1149 struct nlattr
*port
[])
1151 static const u8 zero_addr
[ETH_ALEN
] = {};
1152 struct enic
*enic
= netdev_priv(netdev
);
1153 struct enic_port_profile prev_pp
;
1154 struct enic_port_profile
*pp
;
1155 int err
= 0, restore_pp
= 1;
1157 ENIC_PP_BY_INDEX(enic
, vf
, pp
, &err
);
1161 if (!port
[IFLA_PORT_REQUEST
])
1164 memcpy(&prev_pp
, pp
, sizeof(*enic
->pp
));
1165 memset(pp
, 0, sizeof(*enic
->pp
));
1167 pp
->set
|= ENIC_SET_REQUEST
;
1168 pp
->request
= nla_get_u8(port
[IFLA_PORT_REQUEST
]);
1170 if (port
[IFLA_PORT_PROFILE
]) {
1171 if (nla_len(port
[IFLA_PORT_PROFILE
]) != PORT_PROFILE_MAX
) {
1172 memcpy(pp
, &prev_pp
, sizeof(*pp
));
1175 pp
->set
|= ENIC_SET_NAME
;
1176 memcpy(pp
->name
, nla_data(port
[IFLA_PORT_PROFILE
]),
1180 if (port
[IFLA_PORT_INSTANCE_UUID
]) {
1181 if (nla_len(port
[IFLA_PORT_INSTANCE_UUID
]) != PORT_UUID_MAX
) {
1182 memcpy(pp
, &prev_pp
, sizeof(*pp
));
1185 pp
->set
|= ENIC_SET_INSTANCE
;
1186 memcpy(pp
->instance_uuid
,
1187 nla_data(port
[IFLA_PORT_INSTANCE_UUID
]), PORT_UUID_MAX
);
1190 if (port
[IFLA_PORT_HOST_UUID
]) {
1191 if (nla_len(port
[IFLA_PORT_HOST_UUID
]) != PORT_UUID_MAX
) {
1192 memcpy(pp
, &prev_pp
, sizeof(*pp
));
1195 pp
->set
|= ENIC_SET_HOST
;
1196 memcpy(pp
->host_uuid
,
1197 nla_data(port
[IFLA_PORT_HOST_UUID
]), PORT_UUID_MAX
);
1200 if (vf
== PORT_SELF_VF
) {
1201 /* Special case handling: mac came from IFLA_VF_MAC */
1202 if (!is_zero_ether_addr(prev_pp
.vf_mac
))
1203 memcpy(pp
->mac_addr
, prev_pp
.vf_mac
, ETH_ALEN
);
1205 if (is_zero_ether_addr(netdev
->dev_addr
))
1206 eth_hw_addr_random(netdev
);
1208 /* SR-IOV VF: get mac from adapter */
1209 ENIC_DEVCMD_PROXY_BY_INDEX(vf
, err
, enic
,
1210 vnic_dev_get_mac_addr
, pp
->mac_addr
);
1212 netdev_err(netdev
, "Error getting mac for vf %d\n", vf
);
1213 memcpy(pp
, &prev_pp
, sizeof(*pp
));
1214 return enic_dev_status_to_errno(err
);
1218 err
= enic_process_set_pp_request(enic
, vf
, &prev_pp
, &restore_pp
);
1221 /* Things are still the way they were: Implicit
1222 * DISASSOCIATE failed
1224 memcpy(pp
, &prev_pp
, sizeof(*pp
));
1226 memset(pp
, 0, sizeof(*pp
));
1227 if (vf
== PORT_SELF_VF
)
1228 eth_hw_addr_set(netdev
, zero_addr
);
1231 /* Set flag to indicate that the port assoc/disassoc
1232 * request has been sent out to fw
1234 pp
->set
|= ENIC_PORT_REQUEST_APPLIED
;
1236 /* If DISASSOCIATE, clean up all assigned/saved macaddresses */
1237 if (pp
->request
== PORT_REQUEST_DISASSOCIATE
) {
1238 eth_zero_addr(pp
->mac_addr
);
1239 if (vf
== PORT_SELF_VF
)
1240 eth_hw_addr_set(netdev
, zero_addr
);
1244 if (vf
== PORT_SELF_VF
)
1245 eth_zero_addr(pp
->vf_mac
);
1250 static int enic_get_vf_port(struct net_device
*netdev
, int vf
,
1251 struct sk_buff
*skb
)
1253 struct enic
*enic
= netdev_priv(netdev
);
1254 u16 response
= PORT_PROFILE_RESPONSE_SUCCESS
;
1255 struct enic_port_profile
*pp
;
1258 ENIC_PP_BY_INDEX(enic
, vf
, pp
, &err
);
1262 if (!(pp
->set
& ENIC_PORT_REQUEST_APPLIED
))
1265 err
= enic_process_get_pp_request(enic
, vf
, pp
->request
, &response
);
1269 if (nla_put_u16(skb
, IFLA_PORT_REQUEST
, pp
->request
) ||
1270 nla_put_u16(skb
, IFLA_PORT_RESPONSE
, response
) ||
1271 ((pp
->set
& ENIC_SET_NAME
) &&
1272 nla_put(skb
, IFLA_PORT_PROFILE
, PORT_PROFILE_MAX
, pp
->name
)) ||
1273 ((pp
->set
& ENIC_SET_INSTANCE
) &&
1274 nla_put(skb
, IFLA_PORT_INSTANCE_UUID
, PORT_UUID_MAX
,
1275 pp
->instance_uuid
)) ||
1276 ((pp
->set
& ENIC_SET_HOST
) &&
1277 nla_put(skb
, IFLA_PORT_HOST_UUID
, PORT_UUID_MAX
, pp
->host_uuid
)))
1278 goto nla_put_failure
;
1285 static void enic_free_rq_buf(struct vnic_rq
*rq
, struct vnic_rq_buf
*buf
)
1287 struct enic
*enic
= vnic_dev_priv(rq
->vdev
);
1292 dma_unmap_single(&enic
->pdev
->dev
, buf
->dma_addr
, buf
->len
,
1294 dev_kfree_skb_any(buf
->os_buf
);
1298 static int enic_rq_alloc_buf(struct vnic_rq
*rq
)
1300 struct enic
*enic
= vnic_dev_priv(rq
->vdev
);
1301 struct net_device
*netdev
= enic
->netdev
;
1302 struct sk_buff
*skb
;
1303 unsigned int len
= netdev
->mtu
+ VLAN_ETH_HLEN
;
1304 unsigned int os_buf_index
= 0;
1305 dma_addr_t dma_addr
;
1306 struct vnic_rq_buf
*buf
= rq
->to_use
;
1309 enic_queue_rq_desc(rq
, buf
->os_buf
, os_buf_index
, buf
->dma_addr
,
1314 skb
= netdev_alloc_skb_ip_align(netdev
, len
);
1316 enic
->rq
[rq
->index
].stats
.no_skb
++;
1320 dma_addr
= dma_map_single(&enic
->pdev
->dev
, skb
->data
, len
,
1322 if (unlikely(enic_dma_map_check(enic
, dma_addr
))) {
1327 enic_queue_rq_desc(rq
, skb
, os_buf_index
,
1333 static void enic_intr_update_pkt_size(struct vnic_rx_bytes_counter
*pkt_size
,
1336 if (ENIC_LARGE_PKT_THRESHOLD
<= pkt_len
)
1337 pkt_size
->large_pkt_bytes_cnt
+= pkt_len
;
1339 pkt_size
->small_pkt_bytes_cnt
+= pkt_len
;
1342 static bool enic_rxcopybreak(struct net_device
*netdev
, struct sk_buff
**skb
,
1343 struct vnic_rq_buf
*buf
, u16 len
)
1345 struct enic
*enic
= netdev_priv(netdev
);
1346 struct sk_buff
*new_skb
;
1348 if (len
> enic
->rx_copybreak
)
1350 new_skb
= netdev_alloc_skb_ip_align(netdev
, len
);
1353 dma_sync_single_for_cpu(&enic
->pdev
->dev
, buf
->dma_addr
, len
,
1355 memcpy(new_skb
->data
, (*skb
)->data
, len
);
1361 static void enic_rq_indicate_buf(struct vnic_rq
*rq
,
1362 struct cq_desc
*cq_desc
, struct vnic_rq_buf
*buf
,
1363 int skipped
, void *opaque
)
1365 struct enic
*enic
= vnic_dev_priv(rq
->vdev
);
1366 struct net_device
*netdev
= enic
->netdev
;
1367 struct sk_buff
*skb
;
1368 struct vnic_cq
*cq
= &enic
->cq
[enic_cq_rq(enic
, rq
->index
)];
1369 struct enic_rq_stats
*rqstats
= &enic
->rq
[rq
->index
].stats
;
1371 u8 type
, color
, eop
, sop
, ingress_port
, vlan_stripped
;
1372 u8 fcoe
, fcoe_sof
, fcoe_fc_crc_ok
, fcoe_enc_error
, fcoe_eof
;
1373 u8 tcp_udp_csum_ok
, udp
, tcp
, ipv4_csum_ok
;
1374 u8 ipv6
, ipv4
, ipv4_fragment
, fcs_ok
, rss_type
, csum_not_calc
;
1376 u16 q_number
, completed_index
, bytes_written
, vlan_tci
, checksum
;
1378 bool outer_csum_ok
= true, encap
= false;
1382 rqstats
->desc_skip
++;
1388 cq_enet_rq_desc_dec((struct cq_enet_rq_desc
*)cq_desc
,
1389 &type
, &color
, &q_number
, &completed_index
,
1390 &ingress_port
, &fcoe
, &eop
, &sop
, &rss_type
,
1391 &csum_not_calc
, &rss_hash
, &bytes_written
,
1392 &packet_error
, &vlan_stripped
, &vlan_tci
, &checksum
,
1393 &fcoe_sof
, &fcoe_fc_crc_ok
, &fcoe_enc_error
,
1394 &fcoe_eof
, &tcp_udp_csum_ok
, &udp
, &tcp
,
1395 &ipv4_csum_ok
, &ipv6
, &ipv4
, &ipv4_fragment
,
1401 if (bytes_written
> 0)
1403 else if (bytes_written
== 0)
1404 rqstats
->pkt_truncated
++;
1407 dma_unmap_single(&enic
->pdev
->dev
, buf
->dma_addr
, buf
->len
,
1409 dev_kfree_skb_any(skb
);
1415 if (eop
&& bytes_written
> 0) {
1419 rqstats
->bytes
+= bytes_written
;
1420 if (!enic_rxcopybreak(netdev
, &skb
, buf
, bytes_written
)) {
1422 dma_unmap_single(&enic
->pdev
->dev
, buf
->dma_addr
,
1423 buf
->len
, DMA_FROM_DEVICE
);
1425 prefetch(skb
->data
- NET_IP_ALIGN
);
1427 skb_put(skb
, bytes_written
);
1428 skb
->protocol
= eth_type_trans(skb
, netdev
);
1429 skb_record_rx_queue(skb
, q_number
);
1430 if ((netdev
->features
& NETIF_F_RXHASH
) && rss_hash
&&
1433 case CQ_ENET_RQ_DESC_RSS_TYPE_TCP_IPv4
:
1434 case CQ_ENET_RQ_DESC_RSS_TYPE_TCP_IPv6
:
1435 case CQ_ENET_RQ_DESC_RSS_TYPE_TCP_IPv6_EX
:
1436 skb_set_hash(skb
, rss_hash
, PKT_HASH_TYPE_L4
);
1437 rqstats
->l4_rss_hash
++;
1439 case CQ_ENET_RQ_DESC_RSS_TYPE_IPv4
:
1440 case CQ_ENET_RQ_DESC_RSS_TYPE_IPv6
:
1441 case CQ_ENET_RQ_DESC_RSS_TYPE_IPv6_EX
:
1442 skb_set_hash(skb
, rss_hash
, PKT_HASH_TYPE_L3
);
1443 rqstats
->l3_rss_hash
++;
1447 if (enic
->vxlan
.vxlan_udp_port_number
) {
1448 switch (enic
->vxlan
.patch_level
) {
1452 outer_csum_ok
= fcoe_fc_crc_ok
;
1457 (rss_hash
& BIT(0))) {
1459 outer_csum_ok
= (rss_hash
& BIT(1)) &&
1460 (rss_hash
& BIT(2));
1466 /* Hardware does not provide whole packet checksum. It only
1467 * provides pseudo checksum. Since hw validates the packet
1468 * checksum but not provide us the checksum value. use
1469 * CHECSUM_UNNECESSARY.
1471 * In case of encap pkt tcp_udp_csum_ok/tcp_udp_csum_ok is
1472 * inner csum_ok. outer_csum_ok is set by hw when outer udp
1473 * csum is correct or is zero.
1475 if ((netdev
->features
& NETIF_F_RXCSUM
) && !csum_not_calc
&&
1476 tcp_udp_csum_ok
&& outer_csum_ok
&&
1477 (ipv4_csum_ok
|| ipv6
)) {
1478 skb
->ip_summed
= CHECKSUM_UNNECESSARY
;
1479 skb
->csum_level
= encap
;
1481 rqstats
->csum_unnecessary_encap
++;
1483 rqstats
->csum_unnecessary
++;
1486 if (vlan_stripped
) {
1487 __vlan_hwaccel_put_tag(skb
, htons(ETH_P_8021Q
), vlan_tci
);
1488 rqstats
->vlan_stripped
++;
1490 skb_mark_napi_id(skb
, &enic
->napi
[rq
->index
]);
1491 if (!(netdev
->features
& NETIF_F_GRO
))
1492 netif_receive_skb(skb
);
1494 napi_gro_receive(&enic
->napi
[q_number
], skb
);
1495 if (enic
->rx_coalesce_setting
.use_adaptive_rx_coalesce
)
1496 enic_intr_update_pkt_size(&cq
->pkt_size_counter
,
1502 rqstats
->pkt_truncated
++;
1503 dma_unmap_single(&enic
->pdev
->dev
, buf
->dma_addr
, buf
->len
,
1505 dev_kfree_skb_any(skb
);
1510 static int enic_rq_service(struct vnic_dev
*vdev
, struct cq_desc
*cq_desc
,
1511 u8 type
, u16 q_number
, u16 completed_index
, void *opaque
)
1513 struct enic
*enic
= vnic_dev_priv(vdev
);
1515 vnic_rq_service(&enic
->rq
[q_number
].vrq
, cq_desc
,
1516 completed_index
, VNIC_RQ_RETURN_DESC
,
1517 enic_rq_indicate_buf
, opaque
);
1522 static void enic_set_int_moderation(struct enic
*enic
, struct vnic_rq
*rq
)
1524 unsigned int intr
= enic_msix_rq_intr(enic
, rq
->index
);
1525 struct vnic_cq
*cq
= &enic
->cq
[enic_cq_rq(enic
, rq
->index
)];
1526 u32 timer
= cq
->tobe_rx_coal_timeval
;
1528 if (cq
->tobe_rx_coal_timeval
!= cq
->cur_rx_coal_timeval
) {
1529 vnic_intr_coalescing_timer_set(&enic
->intr
[intr
], timer
);
1530 cq
->cur_rx_coal_timeval
= cq
->tobe_rx_coal_timeval
;
1534 static void enic_calc_int_moderation(struct enic
*enic
, struct vnic_rq
*rq
)
1536 struct enic_rx_coal
*rx_coal
= &enic
->rx_coalesce_setting
;
1537 struct vnic_cq
*cq
= &enic
->cq
[enic_cq_rq(enic
, rq
->index
)];
1538 struct vnic_rx_bytes_counter
*pkt_size_counter
= &cq
->pkt_size_counter
;
1544 ktime_t now
= ktime_get();
1546 delta
= ktime_us_delta(now
, cq
->prev_ts
);
1547 if (delta
< ENIC_AIC_TS_BREAK
)
1551 traffic
= pkt_size_counter
->large_pkt_bytes_cnt
+
1552 pkt_size_counter
->small_pkt_bytes_cnt
;
1553 /* The table takes Mbps
1554 * traffic *= 8 => bits
1555 * traffic *= (10^6 / delta) => bps
1556 * traffic /= 10^6 => Mbps
1558 * Combining, traffic *= (8 / delta)
1562 traffic
= delta
> UINT_MAX
? 0 : traffic
/ (u32
)delta
;
1564 for (index
= 0; index
< ENIC_MAX_COALESCE_TIMERS
; index
++)
1565 if (traffic
< mod_table
[index
].rx_rate
)
1567 range_start
= (pkt_size_counter
->small_pkt_bytes_cnt
>
1568 pkt_size_counter
->large_pkt_bytes_cnt
<< 1) ?
1569 rx_coal
->small_pkt_range_start
:
1570 rx_coal
->large_pkt_range_start
;
1571 timer
= range_start
+ ((rx_coal
->range_end
- range_start
) *
1572 mod_table
[index
].range_percent
/ 100);
1574 cq
->tobe_rx_coal_timeval
= (timer
+ cq
->tobe_rx_coal_timeval
) >> 1;
1576 pkt_size_counter
->large_pkt_bytes_cnt
= 0;
1577 pkt_size_counter
->small_pkt_bytes_cnt
= 0;
1580 static int enic_poll(struct napi_struct
*napi
, int budget
)
1582 struct net_device
*netdev
= napi
->dev
;
1583 struct enic
*enic
= netdev_priv(netdev
);
1584 unsigned int cq_rq
= enic_cq_rq(enic
, 0);
1585 unsigned int cq_wq
= enic_cq_wq(enic
, 0);
1586 unsigned int intr
= ENIC_LEGACY_IO_INTR
;
1587 unsigned int rq_work_to_do
= budget
;
1588 unsigned int wq_work_to_do
= ENIC_WQ_NAPI_BUDGET
;
1589 unsigned int work_done
, rq_work_done
= 0, wq_work_done
;
1592 wq_work_done
= vnic_cq_service(&enic
->cq
[cq_wq
], wq_work_to_do
,
1593 enic_wq_service
, NULL
);
1596 rq_work_done
= vnic_cq_service(&enic
->cq
[cq_rq
],
1597 rq_work_to_do
, enic_rq_service
, NULL
);
1599 /* Accumulate intr event credits for this polling
1600 * cycle. An intr event is the completion of a
1601 * a WQ or RQ packet.
1604 work_done
= rq_work_done
+ wq_work_done
;
1607 vnic_intr_return_credits(&enic
->intr
[intr
],
1609 0 /* don't unmask intr */,
1610 0 /* don't reset intr timer */);
1612 err
= vnic_rq_fill(&enic
->rq
[0].vrq
, enic_rq_alloc_buf
);
1614 /* Buffer allocation failed. Stay in polling
1615 * mode so we can try to fill the ring again.
1619 rq_work_done
= rq_work_to_do
;
1620 if (enic
->rx_coalesce_setting
.use_adaptive_rx_coalesce
)
1621 /* Call the function which refreshes the intr coalescing timer
1622 * value based on the traffic.
1624 enic_calc_int_moderation(enic
, &enic
->rq
[0].vrq
);
1626 if ((rq_work_done
< budget
) && napi_complete_done(napi
, rq_work_done
)) {
1628 /* Some work done, but not enough to stay in polling,
1632 if (enic
->rx_coalesce_setting
.use_adaptive_rx_coalesce
)
1633 enic_set_int_moderation(enic
, &enic
->rq
[0].vrq
);
1634 vnic_intr_unmask(&enic
->intr
[intr
]);
1635 enic
->rq
[0].stats
.napi_complete
++;
1637 enic
->rq
[0].stats
.napi_repoll
++;
1640 return rq_work_done
;
1643 #ifdef CONFIG_RFS_ACCEL
1644 static void enic_free_rx_cpu_rmap(struct enic
*enic
)
1646 free_irq_cpu_rmap(enic
->netdev
->rx_cpu_rmap
);
1647 enic
->netdev
->rx_cpu_rmap
= NULL
;
1650 static void enic_set_rx_cpu_rmap(struct enic
*enic
)
1654 if (vnic_dev_get_intr_mode(enic
->vdev
) == VNIC_DEV_INTR_MODE_MSIX
) {
1655 enic
->netdev
->rx_cpu_rmap
= alloc_irq_cpu_rmap(enic
->rq_count
);
1656 if (unlikely(!enic
->netdev
->rx_cpu_rmap
))
1658 for (i
= 0; i
< enic
->rq_count
; i
++) {
1659 res
= irq_cpu_rmap_add(enic
->netdev
->rx_cpu_rmap
,
1660 enic
->msix_entry
[i
].vector
);
1661 if (unlikely(res
)) {
1662 enic_free_rx_cpu_rmap(enic
);
1671 static void enic_free_rx_cpu_rmap(struct enic
*enic
)
1675 static void enic_set_rx_cpu_rmap(struct enic
*enic
)
1679 #endif /* CONFIG_RFS_ACCEL */
1681 static int enic_poll_msix_wq(struct napi_struct
*napi
, int budget
)
1683 struct net_device
*netdev
= napi
->dev
;
1684 struct enic
*enic
= netdev_priv(netdev
);
1685 unsigned int wq_index
= (napi
- &enic
->napi
[0]) - enic
->rq_count
;
1686 struct vnic_wq
*wq
= &enic
->wq
[wq_index
].vwq
;
1689 unsigned int wq_work_to_do
= ENIC_WQ_NAPI_BUDGET
;
1690 unsigned int wq_work_done
;
1691 unsigned int wq_irq
;
1694 cq
= enic_cq_wq(enic
, wq_irq
);
1695 intr
= enic_msix_wq_intr(enic
, wq_irq
);
1696 wq_work_done
= vnic_cq_service(&enic
->cq
[cq
], wq_work_to_do
,
1697 enic_wq_service
, NULL
);
1699 vnic_intr_return_credits(&enic
->intr
[intr
], wq_work_done
,
1700 0 /* don't unmask intr */,
1701 1 /* reset intr timer */);
1702 if (!wq_work_done
) {
1703 napi_complete(napi
);
1704 vnic_intr_unmask(&enic
->intr
[intr
]);
1711 static int enic_poll_msix_rq(struct napi_struct
*napi
, int budget
)
1713 struct net_device
*netdev
= napi
->dev
;
1714 struct enic
*enic
= netdev_priv(netdev
);
1715 unsigned int rq
= (napi
- &enic
->napi
[0]);
1716 unsigned int cq
= enic_cq_rq(enic
, rq
);
1717 unsigned int intr
= enic_msix_rq_intr(enic
, rq
);
1718 unsigned int work_to_do
= budget
;
1719 unsigned int work_done
= 0;
1726 work_done
= vnic_cq_service(&enic
->cq
[cq
],
1727 work_to_do
, enic_rq_service
, NULL
);
1729 /* Return intr event credits for this polling
1730 * cycle. An intr event is the completion of a
1735 vnic_intr_return_credits(&enic
->intr
[intr
],
1737 0 /* don't unmask intr */,
1738 0 /* don't reset intr timer */);
1740 err
= vnic_rq_fill(&enic
->rq
[rq
].vrq
, enic_rq_alloc_buf
);
1742 /* Buffer allocation failed. Stay in polling mode
1743 * so we can try to fill the ring again.
1747 work_done
= work_to_do
;
1748 if (enic
->rx_coalesce_setting
.use_adaptive_rx_coalesce
)
1749 /* Call the function which refreshes the intr coalescing timer
1750 * value based on the traffic.
1752 enic_calc_int_moderation(enic
, &enic
->rq
[rq
].vrq
);
1754 if ((work_done
< budget
) && napi_complete_done(napi
, work_done
)) {
1756 /* Some work done, but not enough to stay in polling,
1760 if (enic
->rx_coalesce_setting
.use_adaptive_rx_coalesce
)
1761 enic_set_int_moderation(enic
, &enic
->rq
[rq
].vrq
);
1762 vnic_intr_unmask(&enic
->intr
[intr
]);
1763 enic
->rq
[rq
].stats
.napi_complete
++;
1765 enic
->rq
[rq
].stats
.napi_repoll
++;
1771 static void enic_notify_timer(struct timer_list
*t
)
1773 struct enic
*enic
= from_timer(enic
, t
, notify_timer
);
1775 enic_notify_check(enic
);
1777 mod_timer(&enic
->notify_timer
,
1778 round_jiffies(jiffies
+ ENIC_NOTIFY_TIMER_PERIOD
));
1781 static void enic_free_intr(struct enic
*enic
)
1783 struct net_device
*netdev
= enic
->netdev
;
1786 enic_free_rx_cpu_rmap(enic
);
1787 switch (vnic_dev_get_intr_mode(enic
->vdev
)) {
1788 case VNIC_DEV_INTR_MODE_INTX
:
1789 free_irq(enic
->pdev
->irq
, netdev
);
1791 case VNIC_DEV_INTR_MODE_MSI
:
1792 free_irq(enic
->pdev
->irq
, enic
);
1794 case VNIC_DEV_INTR_MODE_MSIX
:
1795 for (i
= 0; i
< enic
->intr_count
; i
++)
1796 if (enic
->msix
[i
].requested
)
1797 free_irq(enic
->msix_entry
[i
].vector
,
1798 enic
->msix
[i
].devid
);
1805 static int enic_request_intr(struct enic
*enic
)
1807 struct net_device
*netdev
= enic
->netdev
;
1808 unsigned int i
, intr
;
1811 enic_set_rx_cpu_rmap(enic
);
1812 switch (vnic_dev_get_intr_mode(enic
->vdev
)) {
1814 case VNIC_DEV_INTR_MODE_INTX
:
1816 err
= request_irq(enic
->pdev
->irq
, enic_isr_legacy
,
1817 IRQF_SHARED
, netdev
->name
, netdev
);
1820 case VNIC_DEV_INTR_MODE_MSI
:
1822 err
= request_irq(enic
->pdev
->irq
, enic_isr_msi
,
1823 0, netdev
->name
, enic
);
1826 case VNIC_DEV_INTR_MODE_MSIX
:
1828 for (i
= 0; i
< enic
->rq_count
; i
++) {
1829 intr
= enic_msix_rq_intr(enic
, i
);
1830 snprintf(enic
->msix
[intr
].devname
,
1831 sizeof(enic
->msix
[intr
].devname
),
1832 "%s-rx-%u", netdev
->name
, i
);
1833 enic
->msix
[intr
].isr
= enic_isr_msix
;
1834 enic
->msix
[intr
].devid
= &enic
->napi
[i
];
1837 for (i
= 0; i
< enic
->wq_count
; i
++) {
1838 int wq
= enic_cq_wq(enic
, i
);
1840 intr
= enic_msix_wq_intr(enic
, i
);
1841 snprintf(enic
->msix
[intr
].devname
,
1842 sizeof(enic
->msix
[intr
].devname
),
1843 "%s-tx-%u", netdev
->name
, i
);
1844 enic
->msix
[intr
].isr
= enic_isr_msix
;
1845 enic
->msix
[intr
].devid
= &enic
->napi
[wq
];
1848 intr
= enic_msix_err_intr(enic
);
1849 snprintf(enic
->msix
[intr
].devname
,
1850 sizeof(enic
->msix
[intr
].devname
),
1851 "%s-err", netdev
->name
);
1852 enic
->msix
[intr
].isr
= enic_isr_msix_err
;
1853 enic
->msix
[intr
].devid
= enic
;
1855 intr
= enic_msix_notify_intr(enic
);
1856 snprintf(enic
->msix
[intr
].devname
,
1857 sizeof(enic
->msix
[intr
].devname
),
1858 "%s-notify", netdev
->name
);
1859 enic
->msix
[intr
].isr
= enic_isr_msix_notify
;
1860 enic
->msix
[intr
].devid
= enic
;
1862 for (i
= 0; i
< enic
->intr_count
; i
++)
1863 enic
->msix
[i
].requested
= 0;
1865 for (i
= 0; i
< enic
->intr_count
; i
++) {
1866 err
= request_irq(enic
->msix_entry
[i
].vector
,
1867 enic
->msix
[i
].isr
, 0,
1868 enic
->msix
[i
].devname
,
1869 enic
->msix
[i
].devid
);
1871 enic_free_intr(enic
);
1874 enic
->msix
[i
].requested
= 1;
1886 static void enic_synchronize_irqs(struct enic
*enic
)
1890 switch (vnic_dev_get_intr_mode(enic
->vdev
)) {
1891 case VNIC_DEV_INTR_MODE_INTX
:
1892 case VNIC_DEV_INTR_MODE_MSI
:
1893 synchronize_irq(enic
->pdev
->irq
);
1895 case VNIC_DEV_INTR_MODE_MSIX
:
1896 for (i
= 0; i
< enic
->intr_count
; i
++)
1897 synchronize_irq(enic
->msix_entry
[i
].vector
);
1904 static void enic_set_rx_coal_setting(struct enic
*enic
)
1908 struct enic_rx_coal
*rx_coal
= &enic
->rx_coalesce_setting
;
1910 /* 1. Read the link speed from fw
1911 * 2. Pick the default range for the speed
1912 * 3. Update it in enic->rx_coalesce_setting
1914 speed
= vnic_dev_port_speed(enic
->vdev
);
1915 if (ENIC_LINK_SPEED_10G
< speed
)
1916 index
= ENIC_LINK_40G_INDEX
;
1917 else if (ENIC_LINK_SPEED_4G
< speed
)
1918 index
= ENIC_LINK_10G_INDEX
;
1920 index
= ENIC_LINK_4G_INDEX
;
1922 rx_coal
->small_pkt_range_start
= mod_range
[index
].small_pkt_range_start
;
1923 rx_coal
->large_pkt_range_start
= mod_range
[index
].large_pkt_range_start
;
1924 rx_coal
->range_end
= ENIC_RX_COALESCE_RANGE_END
;
1926 /* Start with the value provided by UCSM */
1927 for (index
= 0; index
< enic
->rq_count
; index
++)
1928 enic
->cq
[index
].cur_rx_coal_timeval
=
1929 enic
->config
.intr_timer_usec
;
1931 rx_coal
->use_adaptive_rx_coalesce
= 1;
1934 static int enic_dev_notify_set(struct enic
*enic
)
1938 spin_lock_bh(&enic
->devcmd_lock
);
1939 switch (vnic_dev_get_intr_mode(enic
->vdev
)) {
1940 case VNIC_DEV_INTR_MODE_INTX
:
1941 err
= vnic_dev_notify_set(enic
->vdev
, ENIC_LEGACY_NOTIFY_INTR
);
1943 case VNIC_DEV_INTR_MODE_MSIX
:
1944 err
= vnic_dev_notify_set(enic
->vdev
,
1945 enic_msix_notify_intr(enic
));
1948 err
= vnic_dev_notify_set(enic
->vdev
, -1 /* no intr */);
1951 spin_unlock_bh(&enic
->devcmd_lock
);
1956 static void enic_notify_timer_start(struct enic
*enic
)
1958 switch (vnic_dev_get_intr_mode(enic
->vdev
)) {
1959 case VNIC_DEV_INTR_MODE_MSI
:
1960 mod_timer(&enic
->notify_timer
, jiffies
);
1963 /* Using intr for notification for INTx/MSI-X */
1968 /* rtnl lock is held, process context */
1969 static int enic_open(struct net_device
*netdev
)
1971 struct enic
*enic
= netdev_priv(netdev
);
1975 err
= enic_request_intr(enic
);
1977 netdev_err(netdev
, "Unable to request irq.\n");
1980 enic_init_affinity_hint(enic
);
1981 enic_set_affinity_hint(enic
);
1983 err
= enic_dev_notify_set(enic
);
1986 "Failed to alloc notify buffer, aborting.\n");
1987 goto err_out_free_intr
;
1990 for (i
= 0; i
< enic
->rq_count
; i
++) {
1991 /* enable rq before updating rq desc */
1992 vnic_rq_enable(&enic
->rq
[i
].vrq
);
1993 vnic_rq_fill(&enic
->rq
[i
].vrq
, enic_rq_alloc_buf
);
1994 /* Need at least one buffer on ring to get going */
1995 if (vnic_rq_desc_used(&enic
->rq
[i
].vrq
) == 0) {
1996 netdev_err(netdev
, "Unable to alloc receive buffers\n");
1998 goto err_out_free_rq
;
2002 for (i
= 0; i
< enic
->wq_count
; i
++)
2003 vnic_wq_enable(&enic
->wq
[i
].vwq
);
2005 if (!enic_is_dynamic(enic
) && !enic_is_sriov_vf(enic
))
2006 enic_dev_add_station_addr(enic
);
2008 enic_set_rx_mode(netdev
);
2010 netif_tx_wake_all_queues(netdev
);
2012 for (i
= 0; i
< enic
->rq_count
; i
++)
2013 napi_enable(&enic
->napi
[i
]);
2015 if (vnic_dev_get_intr_mode(enic
->vdev
) == VNIC_DEV_INTR_MODE_MSIX
)
2016 for (i
= 0; i
< enic
->wq_count
; i
++)
2017 napi_enable(&enic
->napi
[enic_cq_wq(enic
, i
)]);
2018 enic_dev_enable(enic
);
2020 for (i
= 0; i
< enic
->intr_count
; i
++)
2021 vnic_intr_unmask(&enic
->intr
[i
]);
2023 enic_notify_timer_start(enic
);
2024 enic_rfs_timer_start(enic
);
2029 for (i
= 0; i
< enic
->rq_count
; i
++) {
2030 ret
= vnic_rq_disable(&enic
->rq
[i
].vrq
);
2032 vnic_rq_clean(&enic
->rq
[i
].vrq
, enic_free_rq_buf
);
2034 enic_dev_notify_unset(enic
);
2036 enic_unset_affinity_hint(enic
);
2037 enic_free_intr(enic
);
2042 /* rtnl lock is held, process context */
2043 static int enic_stop(struct net_device
*netdev
)
2045 struct enic
*enic
= netdev_priv(netdev
);
2049 for (i
= 0; i
< enic
->intr_count
; i
++) {
2050 vnic_intr_mask(&enic
->intr
[i
]);
2051 (void)vnic_intr_masked(&enic
->intr
[i
]); /* flush write */
2054 enic_synchronize_irqs(enic
);
2056 del_timer_sync(&enic
->notify_timer
);
2057 enic_rfs_flw_tbl_free(enic
);
2059 enic_dev_disable(enic
);
2061 for (i
= 0; i
< enic
->rq_count
; i
++)
2062 napi_disable(&enic
->napi
[i
]);
2064 netif_carrier_off(netdev
);
2065 if (vnic_dev_get_intr_mode(enic
->vdev
) == VNIC_DEV_INTR_MODE_MSIX
)
2066 for (i
= 0; i
< enic
->wq_count
; i
++)
2067 napi_disable(&enic
->napi
[enic_cq_wq(enic
, i
)]);
2068 netif_tx_disable(netdev
);
2070 if (!enic_is_dynamic(enic
) && !enic_is_sriov_vf(enic
))
2071 enic_dev_del_station_addr(enic
);
2073 for (i
= 0; i
< enic
->wq_count
; i
++) {
2074 err
= vnic_wq_disable(&enic
->wq
[i
].vwq
);
2078 for (i
= 0; i
< enic
->rq_count
; i
++) {
2079 err
= vnic_rq_disable(&enic
->rq
[i
].vrq
);
2084 enic_dev_notify_unset(enic
);
2085 enic_unset_affinity_hint(enic
);
2086 enic_free_intr(enic
);
2088 for (i
= 0; i
< enic
->wq_count
; i
++)
2089 vnic_wq_clean(&enic
->wq
[i
].vwq
, enic_free_wq_buf
);
2090 for (i
= 0; i
< enic
->rq_count
; i
++)
2091 vnic_rq_clean(&enic
->rq
[i
].vrq
, enic_free_rq_buf
);
2092 for (i
= 0; i
< enic
->cq_count
; i
++)
2093 vnic_cq_clean(&enic
->cq
[i
]);
2094 for (i
= 0; i
< enic
->intr_count
; i
++)
2095 vnic_intr_clean(&enic
->intr
[i
]);
2100 static int _enic_change_mtu(struct net_device
*netdev
, int new_mtu
)
2102 bool running
= netif_running(netdev
);
2107 err
= enic_stop(netdev
);
2112 WRITE_ONCE(netdev
->mtu
, new_mtu
);
2115 err
= enic_open(netdev
);
2123 static int enic_change_mtu(struct net_device
*netdev
, int new_mtu
)
2125 struct enic
*enic
= netdev_priv(netdev
);
2127 if (enic_is_dynamic(enic
) || enic_is_sriov_vf(enic
))
2130 if (netdev
->mtu
> enic
->port_mtu
)
2132 "interface MTU (%d) set higher than port MTU (%d)\n",
2133 netdev
->mtu
, enic
->port_mtu
);
2135 return _enic_change_mtu(netdev
, new_mtu
);
2138 static void enic_change_mtu_work(struct work_struct
*work
)
2140 struct enic
*enic
= container_of(work
, struct enic
, change_mtu_work
);
2141 struct net_device
*netdev
= enic
->netdev
;
2142 int new_mtu
= vnic_dev_mtu(enic
->vdev
);
2145 (void)_enic_change_mtu(netdev
, new_mtu
);
2148 netdev_info(netdev
, "interface MTU set as %d\n", netdev
->mtu
);
2151 #ifdef CONFIG_NET_POLL_CONTROLLER
2152 static void enic_poll_controller(struct net_device
*netdev
)
2154 struct enic
*enic
= netdev_priv(netdev
);
2155 struct vnic_dev
*vdev
= enic
->vdev
;
2156 unsigned int i
, intr
;
2158 switch (vnic_dev_get_intr_mode(vdev
)) {
2159 case VNIC_DEV_INTR_MODE_MSIX
:
2160 for (i
= 0; i
< enic
->rq_count
; i
++) {
2161 intr
= enic_msix_rq_intr(enic
, i
);
2162 enic_isr_msix(enic
->msix_entry
[intr
].vector
,
2166 for (i
= 0; i
< enic
->wq_count
; i
++) {
2167 intr
= enic_msix_wq_intr(enic
, i
);
2168 enic_isr_msix(enic
->msix_entry
[intr
].vector
,
2169 &enic
->napi
[enic_cq_wq(enic
, i
)]);
2173 case VNIC_DEV_INTR_MODE_MSI
:
2174 enic_isr_msi(enic
->pdev
->irq
, enic
);
2176 case VNIC_DEV_INTR_MODE_INTX
:
2177 enic_isr_legacy(enic
->pdev
->irq
, netdev
);
2185 static int enic_dev_wait(struct vnic_dev
*vdev
,
2186 int (*start
)(struct vnic_dev
*, int),
2187 int (*finished
)(struct vnic_dev
*, int *),
2194 err
= start(vdev
, arg
);
2198 /* Wait for func to complete...2 seconds max
2201 time
= jiffies
+ (HZ
* 2);
2204 err
= finished(vdev
, &done
);
2211 schedule_timeout_uninterruptible(HZ
/ 10);
2213 } while (time_after(time
, jiffies
));
2218 static int enic_dev_open(struct enic
*enic
)
2221 u32 flags
= CMD_OPENF_IG_DESCCACHE
;
2223 err
= enic_dev_wait(enic
->vdev
, vnic_dev_open
,
2224 vnic_dev_open_done
, flags
);
2226 dev_err(enic_get_dev(enic
), "vNIC device open failed, err %d\n",
2232 static int enic_dev_soft_reset(struct enic
*enic
)
2236 err
= enic_dev_wait(enic
->vdev
, vnic_dev_soft_reset
,
2237 vnic_dev_soft_reset_done
, 0);
2239 netdev_err(enic
->netdev
, "vNIC soft reset failed, err %d\n",
2245 static int enic_dev_hang_reset(struct enic
*enic
)
2249 err
= enic_dev_wait(enic
->vdev
, vnic_dev_hang_reset
,
2250 vnic_dev_hang_reset_done
, 0);
2252 netdev_err(enic
->netdev
, "vNIC hang reset failed, err %d\n",
2258 int __enic_set_rsskey(struct enic
*enic
)
2260 union vnic_rss_key
*rss_key_buf_va
;
2261 dma_addr_t rss_key_buf_pa
;
2262 int i
, kidx
, bidx
, err
;
2264 rss_key_buf_va
= dma_alloc_coherent(&enic
->pdev
->dev
,
2265 sizeof(union vnic_rss_key
),
2266 &rss_key_buf_pa
, GFP_ATOMIC
);
2267 if (!rss_key_buf_va
)
2270 for (i
= 0; i
< ENIC_RSS_LEN
; i
++) {
2271 kidx
= i
/ ENIC_RSS_BYTES_PER_KEY
;
2272 bidx
= i
% ENIC_RSS_BYTES_PER_KEY
;
2273 rss_key_buf_va
->key
[kidx
].b
[bidx
] = enic
->rss_key
[i
];
2275 spin_lock_bh(&enic
->devcmd_lock
);
2276 err
= enic_set_rss_key(enic
,
2278 sizeof(union vnic_rss_key
));
2279 spin_unlock_bh(&enic
->devcmd_lock
);
2281 dma_free_coherent(&enic
->pdev
->dev
, sizeof(union vnic_rss_key
),
2282 rss_key_buf_va
, rss_key_buf_pa
);
2287 static int enic_set_rsskey(struct enic
*enic
)
2289 netdev_rss_key_fill(enic
->rss_key
, ENIC_RSS_LEN
);
2291 return __enic_set_rsskey(enic
);
2294 static int enic_set_rsscpu(struct enic
*enic
, u8 rss_hash_bits
)
2296 dma_addr_t rss_cpu_buf_pa
;
2297 union vnic_rss_cpu
*rss_cpu_buf_va
= NULL
;
2301 rss_cpu_buf_va
= dma_alloc_coherent(&enic
->pdev
->dev
,
2302 sizeof(union vnic_rss_cpu
),
2303 &rss_cpu_buf_pa
, GFP_ATOMIC
);
2304 if (!rss_cpu_buf_va
)
2307 for (i
= 0; i
< (1 << rss_hash_bits
); i
++)
2308 (*rss_cpu_buf_va
).cpu
[i
/4].b
[i
%4] = i
% enic
->rq_count
;
2310 spin_lock_bh(&enic
->devcmd_lock
);
2311 err
= enic_set_rss_cpu(enic
,
2313 sizeof(union vnic_rss_cpu
));
2314 spin_unlock_bh(&enic
->devcmd_lock
);
2316 dma_free_coherent(&enic
->pdev
->dev
, sizeof(union vnic_rss_cpu
),
2317 rss_cpu_buf_va
, rss_cpu_buf_pa
);
2322 static int enic_set_niccfg(struct enic
*enic
, u8 rss_default_cpu
,
2323 u8 rss_hash_type
, u8 rss_hash_bits
, u8 rss_base_cpu
, u8 rss_enable
)
2325 const u8 tso_ipid_split_en
= 0;
2326 const u8 ig_vlan_strip_en
= 1;
2329 /* Enable VLAN tag stripping.
2332 spin_lock_bh(&enic
->devcmd_lock
);
2333 err
= enic_set_nic_cfg(enic
,
2334 rss_default_cpu
, rss_hash_type
,
2335 rss_hash_bits
, rss_base_cpu
,
2336 rss_enable
, tso_ipid_split_en
,
2338 spin_unlock_bh(&enic
->devcmd_lock
);
2343 static int enic_set_rss_nic_cfg(struct enic
*enic
)
2345 struct device
*dev
= enic_get_dev(enic
);
2346 const u8 rss_default_cpu
= 0;
2347 const u8 rss_hash_bits
= 7;
2348 const u8 rss_base_cpu
= 0;
2351 u8 rss_enable
= ENIC_SETTING(enic
, RSS
) && (enic
->rq_count
> 1);
2353 spin_lock_bh(&enic
->devcmd_lock
);
2354 res
= vnic_dev_capable_rss_hash_type(enic
->vdev
, &rss_hash_type
);
2355 spin_unlock_bh(&enic
->devcmd_lock
);
2357 /* defaults for old adapters
2359 rss_hash_type
= NIC_CFG_RSS_HASH_TYPE_IPV4
|
2360 NIC_CFG_RSS_HASH_TYPE_TCP_IPV4
|
2361 NIC_CFG_RSS_HASH_TYPE_IPV6
|
2362 NIC_CFG_RSS_HASH_TYPE_TCP_IPV6
;
2366 if (!enic_set_rsskey(enic
)) {
2367 if (enic_set_rsscpu(enic
, rss_hash_bits
)) {
2369 dev_warn(dev
, "RSS disabled, "
2370 "Failed to set RSS cpu indirection table.");
2374 dev_warn(dev
, "RSS disabled, Failed to set RSS key.\n");
2378 return enic_set_niccfg(enic
, rss_default_cpu
, rss_hash_type
,
2379 rss_hash_bits
, rss_base_cpu
, rss_enable
);
2382 static void enic_set_api_busy(struct enic
*enic
, bool busy
)
2384 spin_lock(&enic
->enic_api_lock
);
2385 enic
->enic_api_busy
= busy
;
2386 spin_unlock(&enic
->enic_api_lock
);
2389 static void enic_reset(struct work_struct
*work
)
2391 struct enic
*enic
= container_of(work
, struct enic
, reset
);
2393 if (!netif_running(enic
->netdev
))
2398 /* Stop any activity from infiniband */
2399 enic_set_api_busy(enic
, true);
2401 enic_stop(enic
->netdev
);
2402 enic_dev_soft_reset(enic
);
2403 enic_reset_addr_lists(enic
);
2404 enic_init_vnic_resources(enic
);
2405 enic_set_rss_nic_cfg(enic
);
2406 enic_dev_set_ig_vlan_rewrite_mode(enic
);
2407 enic_open(enic
->netdev
);
2409 /* Allow infiniband to fiddle with the device again */
2410 enic_set_api_busy(enic
, false);
2412 call_netdevice_notifiers(NETDEV_REBOOT
, enic
->netdev
);
2417 static void enic_tx_hang_reset(struct work_struct
*work
)
2419 struct enic
*enic
= container_of(work
, struct enic
, tx_hang_reset
);
2423 /* Stop any activity from infiniband */
2424 enic_set_api_busy(enic
, true);
2426 enic_dev_hang_notify(enic
);
2427 enic_stop(enic
->netdev
);
2428 enic_dev_hang_reset(enic
);
2429 enic_reset_addr_lists(enic
);
2430 enic_init_vnic_resources(enic
);
2431 enic_set_rss_nic_cfg(enic
);
2432 enic_dev_set_ig_vlan_rewrite_mode(enic
);
2433 enic_open(enic
->netdev
);
2435 /* Allow infiniband to fiddle with the device again */
2436 enic_set_api_busy(enic
, false);
2438 call_netdevice_notifiers(NETDEV_REBOOT
, enic
->netdev
);
2443 static int enic_set_intr_mode(struct enic
*enic
)
2448 /* Set interrupt mode (INTx, MSI, MSI-X) depending
2449 * on system capabilities.
2454 if (enic
->config
.intr_mode
< 1 &&
2455 enic
->intr_avail
>= ENIC_MSIX_MIN_INTR
) {
2456 for (i
= 0; i
< enic
->intr_avail
; i
++)
2457 enic
->msix_entry
[i
].entry
= i
;
2459 num_intr
= pci_enable_msix_range(enic
->pdev
, enic
->msix_entry
,
2463 vnic_dev_set_intr_mode(enic
->vdev
,
2464 VNIC_DEV_INTR_MODE_MSIX
);
2465 enic
->intr_avail
= num_intr
;
2475 if (enic
->config
.intr_mode
< 2 &&
2476 enic
->intr_avail
>= 1 &&
2477 !pci_enable_msi(enic
->pdev
)) {
2478 enic
->intr_avail
= 1;
2479 vnic_dev_set_intr_mode(enic
->vdev
, VNIC_DEV_INTR_MODE_MSI
);
2486 * (the first INTR is used for WQ/RQ)
2487 * (the second INTR is used for WQ/RQ errors)
2488 * (the last INTR is used for notifications)
2491 if (enic
->config
.intr_mode
< 3 &&
2492 enic
->intr_avail
>= 3) {
2493 enic
->intr_avail
= 3;
2494 vnic_dev_set_intr_mode(enic
->vdev
, VNIC_DEV_INTR_MODE_INTX
);
2498 vnic_dev_set_intr_mode(enic
->vdev
, VNIC_DEV_INTR_MODE_UNKNOWN
);
2503 static void enic_clear_intr_mode(struct enic
*enic
)
2505 switch (vnic_dev_get_intr_mode(enic
->vdev
)) {
2506 case VNIC_DEV_INTR_MODE_MSIX
:
2507 pci_disable_msix(enic
->pdev
);
2509 case VNIC_DEV_INTR_MODE_MSI
:
2510 pci_disable_msi(enic
->pdev
);
2516 vnic_dev_set_intr_mode(enic
->vdev
, VNIC_DEV_INTR_MODE_UNKNOWN
);
2519 static int enic_adjust_resources(struct enic
*enic
)
2521 unsigned int max_queues
;
2522 unsigned int rq_default
;
2523 unsigned int rq_avail
;
2524 unsigned int wq_avail
;
2526 if (enic
->rq_avail
< 1 || enic
->wq_avail
< 1 || enic
->cq_avail
< 2) {
2527 dev_err(enic_get_dev(enic
),
2528 "Not enough resources available rq: %d wq: %d cq: %d\n",
2529 enic
->rq_avail
, enic
->wq_avail
,
2534 if (is_kdump_kernel()) {
2535 dev_info(enic_get_dev(enic
), "Running from within kdump kernel. Using minimal resources\n");
2538 enic
->config
.rq_desc_count
= ENIC_MIN_RQ_DESCS
;
2539 enic
->config
.wq_desc_count
= ENIC_MIN_WQ_DESCS
;
2540 enic
->config
.mtu
= min_t(u16
, 1500, enic
->config
.mtu
);
2543 /* if RSS isn't set, then we can only use one RQ */
2544 if (!ENIC_SETTING(enic
, RSS
))
2547 switch (vnic_dev_get_intr_mode(enic
->vdev
)) {
2548 case VNIC_DEV_INTR_MODE_INTX
:
2549 case VNIC_DEV_INTR_MODE_MSI
:
2553 enic
->intr_count
= enic
->intr_avail
;
2555 case VNIC_DEV_INTR_MODE_MSIX
:
2556 /* Adjust the number of wqs/rqs/cqs/interrupts that will be
2557 * used based on which resource is the most constrained
2559 wq_avail
= min(enic
->wq_avail
, ENIC_WQ_MAX
);
2560 rq_default
= netif_get_num_default_rss_queues();
2561 rq_avail
= min3(enic
->rq_avail
, ENIC_RQ_MAX
, rq_default
);
2562 max_queues
= min(enic
->cq_avail
,
2563 enic
->intr_avail
- ENIC_MSIX_RESERVED_INTR
);
2564 if (wq_avail
+ rq_avail
<= max_queues
) {
2565 enic
->rq_count
= rq_avail
;
2566 enic
->wq_count
= wq_avail
;
2568 /* recalculate wq/rq count */
2569 if (rq_avail
< wq_avail
) {
2570 enic
->rq_count
= min(rq_avail
, max_queues
/ 2);
2571 enic
->wq_count
= max_queues
- enic
->rq_count
;
2573 enic
->wq_count
= min(wq_avail
, max_queues
/ 2);
2574 enic
->rq_count
= max_queues
- enic
->wq_count
;
2577 enic
->cq_count
= enic
->rq_count
+ enic
->wq_count
;
2578 enic
->intr_count
= enic
->cq_count
+ ENIC_MSIX_RESERVED_INTR
;
2582 dev_err(enic_get_dev(enic
), "Unknown interrupt mode\n");
2589 static void enic_get_queue_stats_rx(struct net_device
*dev
, int idx
,
2590 struct netdev_queue_stats_rx
*rxs
)
2592 struct enic
*enic
= netdev_priv(dev
);
2593 struct enic_rq_stats
*rqstats
= &enic
->rq
[idx
].stats
;
2595 rxs
->bytes
= rqstats
->bytes
;
2596 rxs
->packets
= rqstats
->packets
;
2597 rxs
->hw_drops
= rqstats
->bad_fcs
+ rqstats
->pkt_truncated
;
2598 rxs
->hw_drop_overruns
= rqstats
->pkt_truncated
;
2599 rxs
->csum_unnecessary
= rqstats
->csum_unnecessary
+
2600 rqstats
->csum_unnecessary_encap
;
2603 static void enic_get_queue_stats_tx(struct net_device
*dev
, int idx
,
2604 struct netdev_queue_stats_tx
*txs
)
2606 struct enic
*enic
= netdev_priv(dev
);
2607 struct enic_wq_stats
*wqstats
= &enic
->wq
[idx
].stats
;
2609 txs
->bytes
= wqstats
->bytes
;
2610 txs
->packets
= wqstats
->packets
;
2611 txs
->csum_none
= wqstats
->csum_none
;
2612 txs
->needs_csum
= wqstats
->csum_partial
+ wqstats
->encap_csum
+
2614 txs
->hw_gso_packets
= wqstats
->tso
;
2615 txs
->stop
= wqstats
->stopped
;
2616 txs
->wake
= wqstats
->wake
;
2619 static void enic_get_base_stats(struct net_device
*dev
,
2620 struct netdev_queue_stats_rx
*rxs
,
2621 struct netdev_queue_stats_tx
*txs
)
2626 rxs
->hw_drop_overruns
= 0;
2627 rxs
->csum_unnecessary
= 0;
2631 txs
->needs_csum
= 0;
2632 txs
->hw_gso_packets
= 0;
2637 static const struct net_device_ops enic_netdev_dynamic_ops
= {
2638 .ndo_open
= enic_open
,
2639 .ndo_stop
= enic_stop
,
2640 .ndo_start_xmit
= enic_hard_start_xmit
,
2641 .ndo_get_stats64
= enic_get_stats
,
2642 .ndo_validate_addr
= eth_validate_addr
,
2643 .ndo_set_rx_mode
= enic_set_rx_mode
,
2644 .ndo_set_mac_address
= enic_set_mac_address_dynamic
,
2645 .ndo_change_mtu
= enic_change_mtu
,
2646 .ndo_vlan_rx_add_vid
= enic_vlan_rx_add_vid
,
2647 .ndo_vlan_rx_kill_vid
= enic_vlan_rx_kill_vid
,
2648 .ndo_tx_timeout
= enic_tx_timeout
,
2649 .ndo_set_vf_port
= enic_set_vf_port
,
2650 .ndo_get_vf_port
= enic_get_vf_port
,
2651 .ndo_set_vf_mac
= enic_set_vf_mac
,
2652 #ifdef CONFIG_NET_POLL_CONTROLLER
2653 .ndo_poll_controller
= enic_poll_controller
,
2655 #ifdef CONFIG_RFS_ACCEL
2656 .ndo_rx_flow_steer
= enic_rx_flow_steer
,
2658 .ndo_features_check
= enic_features_check
,
2661 static const struct net_device_ops enic_netdev_ops
= {
2662 .ndo_open
= enic_open
,
2663 .ndo_stop
= enic_stop
,
2664 .ndo_start_xmit
= enic_hard_start_xmit
,
2665 .ndo_get_stats64
= enic_get_stats
,
2666 .ndo_validate_addr
= eth_validate_addr
,
2667 .ndo_set_mac_address
= enic_set_mac_address
,
2668 .ndo_set_rx_mode
= enic_set_rx_mode
,
2669 .ndo_change_mtu
= enic_change_mtu
,
2670 .ndo_vlan_rx_add_vid
= enic_vlan_rx_add_vid
,
2671 .ndo_vlan_rx_kill_vid
= enic_vlan_rx_kill_vid
,
2672 .ndo_tx_timeout
= enic_tx_timeout
,
2673 .ndo_set_vf_port
= enic_set_vf_port
,
2674 .ndo_get_vf_port
= enic_get_vf_port
,
2675 .ndo_set_vf_mac
= enic_set_vf_mac
,
2676 #ifdef CONFIG_NET_POLL_CONTROLLER
2677 .ndo_poll_controller
= enic_poll_controller
,
2679 #ifdef CONFIG_RFS_ACCEL
2680 .ndo_rx_flow_steer
= enic_rx_flow_steer
,
2682 .ndo_features_check
= enic_features_check
,
2685 static const struct netdev_stat_ops enic_netdev_stat_ops
= {
2686 .get_queue_stats_rx
= enic_get_queue_stats_rx
,
2687 .get_queue_stats_tx
= enic_get_queue_stats_tx
,
2688 .get_base_stats
= enic_get_base_stats
,
2691 static void enic_free_enic_resources(struct enic
*enic
)
2705 kfree(enic
->msix_entry
);
2706 enic
->msix_entry
= NULL
;
2715 static int enic_alloc_enic_resources(struct enic
*enic
)
2717 enic
->wq
= kcalloc(enic
->wq_avail
, sizeof(struct enic_wq
), GFP_KERNEL
);
2721 enic
->rq
= kcalloc(enic
->rq_avail
, sizeof(struct enic_rq
), GFP_KERNEL
);
2725 enic
->cq
= kcalloc(enic
->cq_avail
, sizeof(struct vnic_cq
), GFP_KERNEL
);
2729 enic
->napi
= kcalloc(enic
->wq_avail
+ enic
->rq_avail
,
2730 sizeof(struct napi_struct
), GFP_KERNEL
);
2734 enic
->msix_entry
= kcalloc(enic
->intr_avail
, sizeof(struct msix_entry
),
2736 if (!enic
->msix_entry
)
2739 enic
->msix
= kcalloc(enic
->intr_avail
, sizeof(struct enic_msix_entry
),
2744 enic
->intr
= kcalloc(enic
->intr_avail
, sizeof(struct vnic_intr
),
2752 enic_free_enic_resources(enic
);
2756 static void enic_dev_deinit(struct enic
*enic
)
2760 for (i
= 0; i
< enic
->rq_count
; i
++)
2761 __netif_napi_del(&enic
->napi
[i
]);
2763 if (vnic_dev_get_intr_mode(enic
->vdev
) == VNIC_DEV_INTR_MODE_MSIX
)
2764 for (i
= 0; i
< enic
->wq_count
; i
++)
2765 __netif_napi_del(&enic
->napi
[enic_cq_wq(enic
, i
)]);
2767 /* observe RCU grace period after __netif_napi_del() calls */
2770 enic_free_vnic_resources(enic
);
2771 enic_clear_intr_mode(enic
);
2772 enic_free_affinity_hint(enic
);
2773 enic_free_enic_resources(enic
);
2776 static int enic_dev_init(struct enic
*enic
)
2778 struct device
*dev
= enic_get_dev(enic
);
2779 struct net_device
*netdev
= enic
->netdev
;
2783 /* Get interrupt coalesce timer info */
2784 err
= enic_dev_intr_coal_timer_info(enic
);
2786 dev_warn(dev
, "Using default conversion factor for "
2787 "interrupt coalesce timer\n");
2788 vnic_dev_intr_coal_timer_info_default(enic
->vdev
);
2791 /* Get vNIC configuration
2794 err
= enic_get_vnic_config(enic
);
2796 dev_err(dev
, "Get vNIC configuration failed, aborting\n");
2800 /* Get available resource counts
2803 enic_get_res_counts(enic
);
2805 err
= enic_alloc_enic_resources(enic
);
2807 dev_err(dev
, "Failed to allocate enic resources\n");
2811 /* Set interrupt mode based on system capabilities */
2813 err
= enic_set_intr_mode(enic
);
2815 dev_err(dev
, "Failed to set intr mode based on resource "
2816 "counts and system capabilities, aborting\n");
2817 goto err_out_free_vnic_resources
;
2820 /* Adjust resource counts based on most constrained resources */
2821 err
= enic_adjust_resources(enic
);
2823 dev_err(dev
, "Failed to adjust resources\n");
2824 goto err_out_free_vnic_resources
;
2827 /* Allocate and configure vNIC resources
2830 err
= enic_alloc_vnic_resources(enic
);
2832 dev_err(dev
, "Failed to alloc vNIC resources, aborting\n");
2833 goto err_out_free_vnic_resources
;
2836 enic_init_vnic_resources(enic
);
2838 err
= enic_set_rss_nic_cfg(enic
);
2840 dev_err(dev
, "Failed to config nic, aborting\n");
2841 goto err_out_free_vnic_resources
;
2844 switch (vnic_dev_get_intr_mode(enic
->vdev
)) {
2846 netif_napi_add(netdev
, &enic
->napi
[0], enic_poll
);
2848 case VNIC_DEV_INTR_MODE_MSIX
:
2849 for (i
= 0; i
< enic
->rq_count
; i
++) {
2850 netif_napi_add(netdev
, &enic
->napi
[i
],
2853 for (i
= 0; i
< enic
->wq_count
; i
++)
2854 netif_napi_add(netdev
,
2855 &enic
->napi
[enic_cq_wq(enic
, i
)],
2862 err_out_free_vnic_resources
:
2863 enic_free_affinity_hint(enic
);
2864 enic_clear_intr_mode(enic
);
2865 enic_free_vnic_resources(enic
);
2866 enic_free_enic_resources(enic
);
2871 static void enic_iounmap(struct enic
*enic
)
2875 for (i
= 0; i
< ARRAY_SIZE(enic
->bar
); i
++)
2876 if (enic
->bar
[i
].vaddr
)
2877 iounmap(enic
->bar
[i
].vaddr
);
2880 static int enic_probe(struct pci_dev
*pdev
, const struct pci_device_id
*ent
)
2882 struct device
*dev
= &pdev
->dev
;
2883 struct net_device
*netdev
;
2888 #ifdef CONFIG_PCI_IOV
2893 /* Allocate net device structure and initialize. Private
2894 * instance data is initialized to zero.
2897 netdev
= alloc_etherdev_mqs(sizeof(struct enic
),
2898 ENIC_RQ_MAX
, ENIC_WQ_MAX
);
2902 pci_set_drvdata(pdev
, netdev
);
2904 SET_NETDEV_DEV(netdev
, &pdev
->dev
);
2906 enic
= netdev_priv(netdev
);
2907 enic
->netdev
= netdev
;
2910 /* Setup PCI resources
2913 err
= pci_enable_device_mem(pdev
);
2915 dev_err(dev
, "Cannot enable PCI device, aborting\n");
2916 goto err_out_free_netdev
;
2919 err
= pci_request_regions(pdev
, DRV_NAME
);
2921 dev_err(dev
, "Cannot request PCI regions, aborting\n");
2922 goto err_out_disable_device
;
2925 pci_set_master(pdev
);
2927 /* Query PCI controller on system for DMA addressing
2928 * limitation for the device. Try 47-bit first, and
2932 err
= dma_set_mask_and_coherent(&pdev
->dev
, DMA_BIT_MASK(47));
2934 err
= dma_set_mask_and_coherent(&pdev
->dev
, DMA_BIT_MASK(32));
2936 dev_err(dev
, "No usable DMA configuration, aborting\n");
2937 goto err_out_release_regions
;
2943 /* Map vNIC resources from BAR0-5
2946 for (i
= 0; i
< ARRAY_SIZE(enic
->bar
); i
++) {
2947 if (!(pci_resource_flags(pdev
, i
) & IORESOURCE_MEM
))
2949 enic
->bar
[i
].len
= pci_resource_len(pdev
, i
);
2950 enic
->bar
[i
].vaddr
= pci_iomap(pdev
, i
, enic
->bar
[i
].len
);
2951 if (!enic
->bar
[i
].vaddr
) {
2952 dev_err(dev
, "Cannot memory-map BAR %d, aborting\n", i
);
2954 goto err_out_iounmap
;
2956 enic
->bar
[i
].bus_addr
= pci_resource_start(pdev
, i
);
2959 /* Register vNIC device
2962 enic
->vdev
= vnic_dev_register(NULL
, enic
, pdev
, enic
->bar
,
2963 ARRAY_SIZE(enic
->bar
));
2965 dev_err(dev
, "vNIC registration failed, aborting\n");
2967 goto err_out_iounmap
;
2970 err
= vnic_devcmd_init(enic
->vdev
);
2973 goto err_out_vnic_unregister
;
2975 #ifdef CONFIG_PCI_IOV
2976 /* Get number of subvnics */
2977 pos
= pci_find_ext_capability(pdev
, PCI_EXT_CAP_ID_SRIOV
);
2979 pci_read_config_word(pdev
, pos
+ PCI_SRIOV_TOTAL_VF
,
2981 if (enic
->num_vfs
) {
2982 err
= pci_enable_sriov(pdev
, enic
->num_vfs
);
2984 dev_err(dev
, "SRIOV enable failed, aborting."
2985 " pci_enable_sriov() returned %d\n",
2987 goto err_out_vnic_unregister
;
2989 enic
->priv_flags
|= ENIC_SRIOV_ENABLED
;
2990 num_pps
= enic
->num_vfs
;
2995 /* Allocate structure for port profiles */
2996 enic
->pp
= kcalloc(num_pps
, sizeof(*enic
->pp
), GFP_KERNEL
);
2999 goto err_out_disable_sriov_pp
;
3002 /* Issue device open to get device in known state
3005 err
= enic_dev_open(enic
);
3007 dev_err(dev
, "vNIC dev open failed, aborting\n");
3008 goto err_out_disable_sriov
;
3011 /* Setup devcmd lock
3014 spin_lock_init(&enic
->devcmd_lock
);
3015 spin_lock_init(&enic
->enic_api_lock
);
3018 * Set ingress vlan rewrite mode before vnic initialization
3021 err
= enic_dev_set_ig_vlan_rewrite_mode(enic
);
3024 "Failed to set ingress vlan rewrite mode, aborting.\n");
3025 goto err_out_dev_close
;
3028 /* Issue device init to initialize the vnic-to-switch link.
3029 * We'll start with carrier off and wait for link UP
3030 * notification later to turn on carrier. We don't need
3031 * to wait here for the vnic-to-switch link initialization
3032 * to complete; link UP notification is the indication that
3033 * the process is complete.
3036 netif_carrier_off(netdev
);
3038 /* Do not call dev_init for a dynamic vnic.
3039 * For a dynamic vnic, init_prov_info will be
3040 * called later by an upper layer.
3043 if (!enic_is_dynamic(enic
)) {
3044 err
= vnic_dev_init(enic
->vdev
, 0);
3046 dev_err(dev
, "vNIC dev init failed, aborting\n");
3047 goto err_out_dev_close
;
3051 err
= enic_dev_init(enic
);
3053 dev_err(dev
, "Device initialization failed, aborting\n");
3054 goto err_out_dev_close
;
3057 netif_set_real_num_tx_queues(netdev
, enic
->wq_count
);
3058 netif_set_real_num_rx_queues(netdev
, enic
->rq_count
);
3060 /* Setup notification timer, HW reset task, and wq locks
3063 timer_setup(&enic
->notify_timer
, enic_notify_timer
, 0);
3065 enic_rfs_flw_tbl_init(enic
);
3066 enic_set_rx_coal_setting(enic
);
3067 INIT_WORK(&enic
->reset
, enic_reset
);
3068 INIT_WORK(&enic
->tx_hang_reset
, enic_tx_hang_reset
);
3069 INIT_WORK(&enic
->change_mtu_work
, enic_change_mtu_work
);
3071 for (i
= 0; i
< enic
->wq_count
; i
++)
3072 spin_lock_init(&enic
->wq
[i
].lock
);
3074 /* Register net device
3077 enic
->port_mtu
= enic
->config
.mtu
;
3079 err
= enic_set_mac_addr(netdev
, enic
->mac_addr
);
3081 dev_err(dev
, "Invalid MAC address, aborting\n");
3082 goto err_out_dev_deinit
;
3085 enic
->tx_coalesce_usecs
= enic
->config
.intr_timer_usec
;
3086 /* rx coalesce time already got initialized. This gets used
3087 * if adaptive coal is turned off
3089 enic
->rx_coalesce_usecs
= enic
->tx_coalesce_usecs
;
3091 if (enic_is_dynamic(enic
) || enic_is_sriov_vf(enic
))
3092 netdev
->netdev_ops
= &enic_netdev_dynamic_ops
;
3094 netdev
->netdev_ops
= &enic_netdev_ops
;
3095 netdev
->stat_ops
= &enic_netdev_stat_ops
;
3097 netdev
->watchdog_timeo
= 2 * HZ
;
3098 enic_set_ethtool_ops(netdev
);
3100 netdev
->features
|= NETIF_F_HW_VLAN_CTAG_TX
| NETIF_F_HW_VLAN_CTAG_RX
;
3101 if (ENIC_SETTING(enic
, LOOP
)) {
3102 netdev
->features
&= ~NETIF_F_HW_VLAN_CTAG_TX
;
3103 enic
->loop_enable
= 1;
3104 enic
->loop_tag
= enic
->config
.loop_tag
;
3105 dev_info(dev
, "loopback tag=0x%04x\n", enic
->loop_tag
);
3107 if (ENIC_SETTING(enic
, TXCSUM
))
3108 netdev
->hw_features
|= NETIF_F_SG
| NETIF_F_HW_CSUM
;
3109 if (ENIC_SETTING(enic
, TSO
))
3110 netdev
->hw_features
|= NETIF_F_TSO
|
3111 NETIF_F_TSO6
| NETIF_F_TSO_ECN
;
3112 if (ENIC_SETTING(enic
, RSS
))
3113 netdev
->hw_features
|= NETIF_F_RXHASH
;
3114 if (ENIC_SETTING(enic
, RXCSUM
))
3115 netdev
->hw_features
|= NETIF_F_RXCSUM
;
3116 if (ENIC_SETTING(enic
, VXLAN
)) {
3120 netdev
->hw_enc_features
|= NETIF_F_RXCSUM
|
3124 NETIF_F_GSO_UDP_TUNNEL
|
3126 NETIF_F_GSO_UDP_TUNNEL_CSUM
;
3127 netdev
->hw_features
|= netdev
->hw_enc_features
;
3128 /* get bit mask from hw about supported offload bit level
3129 * BIT(0) = fw supports patch_level 0
3131 * fcoe_fc_crc_ok = outer csum ok
3132 * BIT(1) = always set by fw
3133 * BIT(2) = fw supports patch_level 2
3134 * BIT(0) in rss_hash = encap
3135 * BIT(1,2) in rss_hash = outer_ip_csum_ok/
3137 * used in enic_rq_indicate_buf
3139 err
= vnic_dev_get_supported_feature_ver(enic
->vdev
,
3144 enic
->vxlan
.flags
= (u8
)a1
;
3145 /* mask bits that are supported by driver
3147 patch_level
&= BIT_ULL(0) | BIT_ULL(2);
3148 patch_level
= fls(patch_level
);
3149 patch_level
= patch_level
? patch_level
- 1 : 0;
3150 enic
->vxlan
.patch_level
= patch_level
;
3152 if (vnic_dev_get_res_count(enic
->vdev
, RES_TYPE_WQ
) == 1 ||
3153 enic
->vxlan
.flags
& ENIC_VXLAN_MULTI_WQ
) {
3154 netdev
->udp_tunnel_nic_info
= &enic_udp_tunnels_v4
;
3155 if (enic
->vxlan
.flags
& ENIC_VXLAN_OUTER_IPV6
)
3156 netdev
->udp_tunnel_nic_info
= &enic_udp_tunnels
;
3160 netdev
->features
|= netdev
->hw_features
;
3161 netdev
->vlan_features
|= netdev
->features
;
3163 #ifdef CONFIG_RFS_ACCEL
3164 netdev
->hw_features
|= NETIF_F_NTUPLE
;
3168 netdev
->features
|= NETIF_F_HIGHDMA
;
3170 netdev
->priv_flags
|= IFF_UNICAST_FLT
;
3172 /* MTU range: 68 - 9000 */
3173 netdev
->min_mtu
= ENIC_MIN_MTU
;
3174 netdev
->max_mtu
= ENIC_MAX_MTU
;
3175 netdev
->mtu
= enic
->port_mtu
;
3177 err
= register_netdev(netdev
);
3179 dev_err(dev
, "Cannot register net device, aborting\n");
3180 goto err_out_dev_deinit
;
3182 enic
->rx_copybreak
= RX_COPYBREAK_DEFAULT
;
3187 enic_dev_deinit(enic
);
3189 vnic_dev_close(enic
->vdev
);
3190 err_out_disable_sriov
:
3192 err_out_disable_sriov_pp
:
3193 #ifdef CONFIG_PCI_IOV
3194 if (enic_sriov_enabled(enic
)) {
3195 pci_disable_sriov(pdev
);
3196 enic
->priv_flags
&= ~ENIC_SRIOV_ENABLED
;
3199 err_out_vnic_unregister
:
3200 vnic_dev_unregister(enic
->vdev
);
3203 err_out_release_regions
:
3204 pci_release_regions(pdev
);
3205 err_out_disable_device
:
3206 pci_disable_device(pdev
);
3207 err_out_free_netdev
:
3208 free_netdev(netdev
);
3213 static void enic_remove(struct pci_dev
*pdev
)
3215 struct net_device
*netdev
= pci_get_drvdata(pdev
);
3218 struct enic
*enic
= netdev_priv(netdev
);
3220 cancel_work_sync(&enic
->reset
);
3221 cancel_work_sync(&enic
->change_mtu_work
);
3222 unregister_netdev(netdev
);
3223 enic_dev_deinit(enic
);
3224 vnic_dev_close(enic
->vdev
);
3225 #ifdef CONFIG_PCI_IOV
3226 if (enic_sriov_enabled(enic
)) {
3227 pci_disable_sriov(pdev
);
3228 enic
->priv_flags
&= ~ENIC_SRIOV_ENABLED
;
3232 vnic_dev_unregister(enic
->vdev
);
3234 pci_release_regions(pdev
);
3235 pci_disable_device(pdev
);
3236 free_netdev(netdev
);
3240 static struct pci_driver enic_driver
= {
3242 .id_table
= enic_id_table
,
3243 .probe
= enic_probe
,
3244 .remove
= enic_remove
,
3247 module_pci_driver(enic_driver
);