2 * linux/drivers/net/ehea/ehea_main.c
4 * eHEA ethernet device driver for IBM eServer System p
6 * (C) Copyright IBM Corp. 2006
9 * Christoph Raisch <raisch@de.ibm.com>
10 * Jan-Bernd Themann <themann@de.ibm.com>
11 * Thomas Klein <tklein@de.ibm.com>
14 * This program is free software; you can redistribute it and/or modify
15 * it under the terms of the GNU General Public License as published by
16 * the Free Software Foundation; either version 2, or (at your option)
19 * This program is distributed in the hope that it will be useful,
20 * but WITHOUT ANY WARRANTY; without even the implied warranty of
21 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
22 * GNU General Public License for more details.
24 * You should have received a copy of the GNU General Public License
25 * along with this program; if not, write to the Free Software
26 * Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
31 #include <linux/tcp.h>
32 #include <linux/udp.h>
34 #include <linux/list.h>
35 #include <linux/if_ether.h>
36 #include <linux/notifier.h>
37 #include <linux/reboot.h>
38 #include <linux/memory.h>
39 #include <asm/kexec.h>
40 #include <linux/mutex.h>
46 #include "ehea_phyp.h"
49 MODULE_LICENSE("GPL");
50 MODULE_AUTHOR("Christoph Raisch <raisch@de.ibm.com>");
51 MODULE_DESCRIPTION("IBM eServer HEA Driver");
52 MODULE_VERSION(DRV_VERSION
);
55 static int msg_level
= -1;
56 static int rq1_entries
= EHEA_DEF_ENTRIES_RQ1
;
57 static int rq2_entries
= EHEA_DEF_ENTRIES_RQ2
;
58 static int rq3_entries
= EHEA_DEF_ENTRIES_RQ3
;
59 static int sq_entries
= EHEA_DEF_ENTRIES_SQ
;
62 static int lro_max_aggr
= EHEA_LRO_MAX_AGGR
;
63 static int num_tx_qps
= EHEA_NUM_TX_QP
;
64 static int prop_carrier_state
;
66 module_param(msg_level
, int, 0);
67 module_param(rq1_entries
, int, 0);
68 module_param(rq2_entries
, int, 0);
69 module_param(rq3_entries
, int, 0);
70 module_param(sq_entries
, int, 0);
71 module_param(prop_carrier_state
, int, 0);
72 module_param(use_mcs
, int, 0);
73 module_param(use_lro
, int, 0);
74 module_param(lro_max_aggr
, int, 0);
75 module_param(num_tx_qps
, int, 0);
77 MODULE_PARM_DESC(num_tx_qps
, "Number of TX-QPS");
78 MODULE_PARM_DESC(msg_level
, "msg_level");
79 MODULE_PARM_DESC(prop_carrier_state
, "Propagate carrier state of physical "
80 "port to stack. 1:yes, 0:no. Default = 0 ");
81 MODULE_PARM_DESC(rq3_entries
, "Number of entries for Receive Queue 3 "
82 "[2^x - 1], x = [6..14]. Default = "
83 __MODULE_STRING(EHEA_DEF_ENTRIES_RQ3
) ")");
84 MODULE_PARM_DESC(rq2_entries
, "Number of entries for Receive Queue 2 "
85 "[2^x - 1], x = [6..14]. Default = "
86 __MODULE_STRING(EHEA_DEF_ENTRIES_RQ2
) ")");
87 MODULE_PARM_DESC(rq1_entries
, "Number of entries for Receive Queue 1 "
88 "[2^x - 1], x = [6..14]. Default = "
89 __MODULE_STRING(EHEA_DEF_ENTRIES_RQ1
) ")");
90 MODULE_PARM_DESC(sq_entries
, " Number of entries for the Send Queue "
91 "[2^x - 1], x = [6..14]. Default = "
92 __MODULE_STRING(EHEA_DEF_ENTRIES_SQ
) ")");
93 MODULE_PARM_DESC(use_mcs
, " 0:NAPI, 1:Multiple receive queues, Default = 0 ");
95 MODULE_PARM_DESC(lro_max_aggr
, " LRO: Max packets to be aggregated. Default = "
96 __MODULE_STRING(EHEA_LRO_MAX_AGGR
));
97 MODULE_PARM_DESC(use_lro
, " Large Receive Offload, 1: enable, 0: disable, "
100 static int port_name_cnt
;
101 static LIST_HEAD(adapter_list
);
102 u64 ehea_driver_flags
;
103 struct work_struct ehea_rereg_mr_task
;
104 static DEFINE_MUTEX(dlpar_mem_lock
);
105 struct ehea_fw_handle_array ehea_fw_handles
;
106 struct ehea_bcmc_reg_array ehea_bcmc_regs
;
109 static int __devinit
ehea_probe_adapter(struct of_device
*dev
,
110 const struct of_device_id
*id
);
112 static int __devexit
ehea_remove(struct of_device
*dev
);
114 static struct of_device_id ehea_device_table
[] = {
117 .compatible
= "IBM,lhea",
121 MODULE_DEVICE_TABLE(of
, ehea_device_table
);
123 static struct of_platform_driver ehea_driver
= {
125 .match_table
= ehea_device_table
,
126 .probe
= ehea_probe_adapter
,
127 .remove
= ehea_remove
,
130 void ehea_dump(void *adr
, int len
, char *msg
)
133 unsigned char *deb
= adr
;
134 for (x
= 0; x
< len
; x
+= 16) {
135 printk(DRV_NAME
" %s adr=%p ofs=%04x %016lx %016lx\n", msg
,
136 deb
, x
, *((u64
*)&deb
[0]), *((u64
*)&deb
[8]));
141 void ehea_schedule_port_reset(struct ehea_port
*port
)
143 if (!test_bit(__EHEA_DISABLE_PORT_RESET
, &port
->flags
))
144 schedule_work(&port
->reset_task
);
147 static void ehea_update_firmware_handles(void)
149 struct ehea_fw_handle_entry
*arr
= NULL
;
150 struct ehea_adapter
*adapter
;
151 int num_adapters
= 0;
155 int num_fw_handles
, k
, l
;
157 /* Determine number of handles */
158 list_for_each_entry(adapter
, &adapter_list
, list
) {
161 for (k
= 0; k
< EHEA_MAX_PORTS
; k
++) {
162 struct ehea_port
*port
= adapter
->port
[k
];
164 if (!port
|| (port
->state
!= EHEA_PORT_UP
))
168 num_portres
+= port
->num_def_qps
+ port
->num_add_tx_qps
;
172 num_fw_handles
= num_adapters
* EHEA_NUM_ADAPTER_FW_HANDLES
+
173 num_ports
* EHEA_NUM_PORT_FW_HANDLES
+
174 num_portres
* EHEA_NUM_PORTRES_FW_HANDLES
;
176 if (num_fw_handles
) {
177 arr
= kzalloc(num_fw_handles
* sizeof(*arr
), GFP_KERNEL
);
179 return; /* Keep the existing array */
183 list_for_each_entry(adapter
, &adapter_list
, list
) {
184 for (k
= 0; k
< EHEA_MAX_PORTS
; k
++) {
185 struct ehea_port
*port
= adapter
->port
[k
];
187 if (!port
|| (port
->state
!= EHEA_PORT_UP
))
191 l
< port
->num_def_qps
+ port
->num_add_tx_qps
;
193 struct ehea_port_res
*pr
= &port
->port_res
[l
];
195 arr
[i
].adh
= adapter
->handle
;
196 arr
[i
++].fwh
= pr
->qp
->fw_handle
;
197 arr
[i
].adh
= adapter
->handle
;
198 arr
[i
++].fwh
= pr
->send_cq
->fw_handle
;
199 arr
[i
].adh
= adapter
->handle
;
200 arr
[i
++].fwh
= pr
->recv_cq
->fw_handle
;
201 arr
[i
].adh
= adapter
->handle
;
202 arr
[i
++].fwh
= pr
->eq
->fw_handle
;
203 arr
[i
].adh
= adapter
->handle
;
204 arr
[i
++].fwh
= pr
->send_mr
.handle
;
205 arr
[i
].adh
= adapter
->handle
;
206 arr
[i
++].fwh
= pr
->recv_mr
.handle
;
208 arr
[i
].adh
= adapter
->handle
;
209 arr
[i
++].fwh
= port
->qp_eq
->fw_handle
;
212 arr
[i
].adh
= adapter
->handle
;
213 arr
[i
++].fwh
= adapter
->neq
->fw_handle
;
215 if (adapter
->mr
.handle
) {
216 arr
[i
].adh
= adapter
->handle
;
217 arr
[i
++].fwh
= adapter
->mr
.handle
;
222 kfree(ehea_fw_handles
.arr
);
223 ehea_fw_handles
.arr
= arr
;
224 ehea_fw_handles
.num_entries
= i
;
227 static void ehea_update_bcmc_registrations(void)
229 struct ehea_bcmc_reg_entry
*arr
= NULL
;
230 struct ehea_adapter
*adapter
;
231 struct ehea_mc_list
*mc_entry
;
232 int num_registrations
= 0;
236 /* Determine number of registrations */
237 list_for_each_entry(adapter
, &adapter_list
, list
)
238 for (k
= 0; k
< EHEA_MAX_PORTS
; k
++) {
239 struct ehea_port
*port
= adapter
->port
[k
];
241 if (!port
|| (port
->state
!= EHEA_PORT_UP
))
244 num_registrations
+= 2; /* Broadcast registrations */
246 list_for_each_entry(mc_entry
, &port
->mc_list
->list
,list
)
247 num_registrations
+= 2;
250 if (num_registrations
) {
251 arr
= kzalloc(num_registrations
* sizeof(*arr
), GFP_ATOMIC
);
253 return; /* Keep the existing array */
257 list_for_each_entry(adapter
, &adapter_list
, list
) {
258 for (k
= 0; k
< EHEA_MAX_PORTS
; k
++) {
259 struct ehea_port
*port
= adapter
->port
[k
];
261 if (!port
|| (port
->state
!= EHEA_PORT_UP
))
264 arr
[i
].adh
= adapter
->handle
;
265 arr
[i
].port_id
= port
->logical_port_id
;
266 arr
[i
].reg_type
= EHEA_BCMC_BROADCAST
|
268 arr
[i
++].macaddr
= port
->mac_addr
;
270 arr
[i
].adh
= adapter
->handle
;
271 arr
[i
].port_id
= port
->logical_port_id
;
272 arr
[i
].reg_type
= EHEA_BCMC_BROADCAST
|
273 EHEA_BCMC_VLANID_ALL
;
274 arr
[i
++].macaddr
= port
->mac_addr
;
276 list_for_each_entry(mc_entry
,
277 &port
->mc_list
->list
, list
) {
278 arr
[i
].adh
= adapter
->handle
;
279 arr
[i
].port_id
= port
->logical_port_id
;
280 arr
[i
].reg_type
= EHEA_BCMC_SCOPE_ALL
|
281 EHEA_BCMC_MULTICAST
|
283 arr
[i
++].macaddr
= mc_entry
->macaddr
;
285 arr
[i
].adh
= adapter
->handle
;
286 arr
[i
].port_id
= port
->logical_port_id
;
287 arr
[i
].reg_type
= EHEA_BCMC_SCOPE_ALL
|
288 EHEA_BCMC_MULTICAST
|
289 EHEA_BCMC_VLANID_ALL
;
290 arr
[i
++].macaddr
= mc_entry
->macaddr
;
296 kfree(ehea_bcmc_regs
.arr
);
297 ehea_bcmc_regs
.arr
= arr
;
298 ehea_bcmc_regs
.num_entries
= i
;
301 static struct net_device_stats
*ehea_get_stats(struct net_device
*dev
)
303 struct ehea_port
*port
= netdev_priv(dev
);
304 struct net_device_stats
*stats
= &port
->stats
;
305 struct hcp_ehea_port_cb2
*cb2
;
306 u64 hret
, rx_packets
, tx_packets
;
309 memset(stats
, 0, sizeof(*stats
));
311 cb2
= kzalloc(PAGE_SIZE
, GFP_ATOMIC
);
313 ehea_error("no mem for cb2");
317 hret
= ehea_h_query_ehea_port(port
->adapter
->handle
,
318 port
->logical_port_id
,
319 H_PORT_CB2
, H_PORT_CB2_ALL
, cb2
);
320 if (hret
!= H_SUCCESS
) {
321 ehea_error("query_ehea_port failed");
325 if (netif_msg_hw(port
))
326 ehea_dump(cb2
, sizeof(*cb2
), "net_device_stats");
329 for (i
= 0; i
< port
->num_def_qps
; i
++)
330 rx_packets
+= port
->port_res
[i
].rx_packets
;
333 for (i
= 0; i
< port
->num_def_qps
+ port
->num_add_tx_qps
; i
++)
334 tx_packets
+= port
->port_res
[i
].tx_packets
;
336 stats
->tx_packets
= tx_packets
;
337 stats
->multicast
= cb2
->rxmcp
;
338 stats
->rx_errors
= cb2
->rxuerr
;
339 stats
->rx_bytes
= cb2
->rxo
;
340 stats
->tx_bytes
= cb2
->txo
;
341 stats
->rx_packets
= rx_packets
;
349 static void ehea_refill_rq1(struct ehea_port_res
*pr
, int index
, int nr_of_wqes
)
351 struct sk_buff
**skb_arr_rq1
= pr
->rq1_skba
.arr
;
352 struct net_device
*dev
= pr
->port
->netdev
;
353 int max_index_mask
= pr
->rq1_skba
.len
- 1;
354 int fill_wqes
= pr
->rq1_skba
.os_skbs
+ nr_of_wqes
;
358 pr
->rq1_skba
.os_skbs
= 0;
360 if (unlikely(test_bit(__EHEA_STOP_XFER
, &ehea_driver_flags
))) {
362 pr
->rq1_skba
.index
= index
;
363 pr
->rq1_skba
.os_skbs
= fill_wqes
;
367 for (i
= 0; i
< fill_wqes
; i
++) {
368 if (!skb_arr_rq1
[index
]) {
369 skb_arr_rq1
[index
] = netdev_alloc_skb(dev
,
371 if (!skb_arr_rq1
[index
]) {
372 pr
->rq1_skba
.os_skbs
= fill_wqes
- i
;
373 ehea_error("%s: no mem for skb/%d wqes filled",
379 index
&= max_index_mask
;
387 ehea_update_rq1a(pr
->qp
, adder
);
390 static int ehea_init_fill_rq1(struct ehea_port_res
*pr
, int nr_rq1a
)
393 struct sk_buff
**skb_arr_rq1
= pr
->rq1_skba
.arr
;
394 struct net_device
*dev
= pr
->port
->netdev
;
397 for (i
= 0; i
< pr
->rq1_skba
.len
; i
++) {
398 skb_arr_rq1
[i
] = netdev_alloc_skb(dev
, EHEA_L_PKT_SIZE
);
399 if (!skb_arr_rq1
[i
]) {
400 ehea_error("%s: no mem for skb/%d wqes filled",
407 ehea_update_rq1a(pr
->qp
, nr_rq1a
);
412 static int ehea_refill_rq_def(struct ehea_port_res
*pr
,
413 struct ehea_q_skb_arr
*q_skba
, int rq_nr
,
414 int num_wqes
, int wqe_type
, int packet_size
)
416 struct net_device
*dev
= pr
->port
->netdev
;
417 struct ehea_qp
*qp
= pr
->qp
;
418 struct sk_buff
**skb_arr
= q_skba
->arr
;
419 struct ehea_rwqe
*rwqe
;
420 int i
, index
, max_index_mask
, fill_wqes
;
424 fill_wqes
= q_skba
->os_skbs
+ num_wqes
;
427 if (unlikely(test_bit(__EHEA_STOP_XFER
, &ehea_driver_flags
))) {
428 q_skba
->os_skbs
= fill_wqes
;
432 index
= q_skba
->index
;
433 max_index_mask
= q_skba
->len
- 1;
434 for (i
= 0; i
< fill_wqes
; i
++) {
436 struct sk_buff
*skb
= netdev_alloc_skb(dev
, packet_size
);
438 ehea_error("%s: no mem for skb/%d wqes filled",
439 pr
->port
->netdev
->name
, i
);
440 q_skba
->os_skbs
= fill_wqes
- i
;
444 skb_reserve(skb
, NET_IP_ALIGN
);
446 skb_arr
[index
] = skb
;
447 tmp_addr
= ehea_map_vaddr(skb
->data
);
448 if (tmp_addr
== -1) {
450 q_skba
->os_skbs
= fill_wqes
- i
;
455 rwqe
= ehea_get_next_rwqe(qp
, rq_nr
);
456 rwqe
->wr_id
= EHEA_BMASK_SET(EHEA_WR_ID_TYPE
, wqe_type
)
457 | EHEA_BMASK_SET(EHEA_WR_ID_INDEX
, index
);
458 rwqe
->sg_list
[0].l_key
= pr
->recv_mr
.lkey
;
459 rwqe
->sg_list
[0].vaddr
= tmp_addr
;
460 rwqe
->sg_list
[0].len
= packet_size
;
461 rwqe
->data_segments
= 1;
464 index
&= max_index_mask
;
468 q_skba
->index
= index
;
475 ehea_update_rq2a(pr
->qp
, adder
);
477 ehea_update_rq3a(pr
->qp
, adder
);
483 static int ehea_refill_rq2(struct ehea_port_res
*pr
, int nr_of_wqes
)
485 return ehea_refill_rq_def(pr
, &pr
->rq2_skba
, 2,
486 nr_of_wqes
, EHEA_RWQE2_TYPE
,
487 EHEA_RQ2_PKT_SIZE
+ NET_IP_ALIGN
);
491 static int ehea_refill_rq3(struct ehea_port_res
*pr
, int nr_of_wqes
)
493 return ehea_refill_rq_def(pr
, &pr
->rq3_skba
, 3,
494 nr_of_wqes
, EHEA_RWQE3_TYPE
,
495 EHEA_MAX_PACKET_SIZE
+ NET_IP_ALIGN
);
498 static inline int ehea_check_cqe(struct ehea_cqe
*cqe
, int *rq_num
)
500 *rq_num
= (cqe
->type
& EHEA_CQE_TYPE_RQ
) >> 5;
501 if ((cqe
->status
& EHEA_CQE_STAT_ERR_MASK
) == 0)
503 if (((cqe
->status
& EHEA_CQE_STAT_ERR_TCP
) != 0) &&
504 (cqe
->header_length
== 0))
509 static inline void ehea_fill_skb(struct net_device
*dev
,
510 struct sk_buff
*skb
, struct ehea_cqe
*cqe
)
512 int length
= cqe
->num_bytes_transfered
- 4; /*remove CRC */
514 skb_put(skb
, length
);
515 skb
->ip_summed
= CHECKSUM_UNNECESSARY
;
516 skb
->protocol
= eth_type_trans(skb
, dev
);
519 static inline struct sk_buff
*get_skb_by_index(struct sk_buff
**skb_array
,
521 struct ehea_cqe
*cqe
)
523 int skb_index
= EHEA_BMASK_GET(EHEA_WR_ID_INDEX
, cqe
->wr_id
);
533 prefetchw(pref
+ EHEA_CACHE_LINE
);
535 pref
= (skb_array
[x
]->data
);
537 prefetch(pref
+ EHEA_CACHE_LINE
);
538 prefetch(pref
+ EHEA_CACHE_LINE
* 2);
539 prefetch(pref
+ EHEA_CACHE_LINE
* 3);
540 skb
= skb_array
[skb_index
];
541 skb_array
[skb_index
] = NULL
;
545 static inline struct sk_buff
*get_skb_by_index_ll(struct sk_buff
**skb_array
,
546 int arr_len
, int wqe_index
)
557 prefetchw(pref
+ EHEA_CACHE_LINE
);
559 pref
= (skb_array
[x
]->data
);
561 prefetchw(pref
+ EHEA_CACHE_LINE
);
563 skb
= skb_array
[wqe_index
];
564 skb_array
[wqe_index
] = NULL
;
568 static int ehea_treat_poll_error(struct ehea_port_res
*pr
, int rq
,
569 struct ehea_cqe
*cqe
, int *processed_rq2
,
574 if (cqe
->status
& EHEA_CQE_STAT_ERR_TCP
)
575 pr
->p_stats
.err_tcp_cksum
++;
576 if (cqe
->status
& EHEA_CQE_STAT_ERR_IP
)
577 pr
->p_stats
.err_ip_cksum
++;
578 if (cqe
->status
& EHEA_CQE_STAT_ERR_CRC
)
579 pr
->p_stats
.err_frame_crc
++;
583 skb
= get_skb_by_index(pr
->rq2_skba
.arr
, pr
->rq2_skba
.len
, cqe
);
585 } else if (rq
== 3) {
587 skb
= get_skb_by_index(pr
->rq3_skba
.arr
, pr
->rq3_skba
.len
, cqe
);
591 if (cqe
->status
& EHEA_CQE_STAT_FAT_ERR_MASK
) {
592 if (netif_msg_rx_err(pr
->port
)) {
593 ehea_error("Critical receive error for QP %d. "
594 "Resetting port.", pr
->qp
->init_attr
.qp_nr
);
595 ehea_dump(cqe
, sizeof(*cqe
), "CQE");
597 ehea_schedule_port_reset(pr
->port
);
604 static int get_skb_hdr(struct sk_buff
*skb
, void **iphdr
,
605 void **tcph
, u64
*hdr_flags
, void *priv
)
607 struct ehea_cqe
*cqe
= priv
;
611 /* non tcp/udp packets */
612 if (!cqe
->header_length
)
616 skb_reset_network_header(skb
);
618 if (iph
->protocol
!= IPPROTO_TCP
)
621 ip_len
= ip_hdrlen(skb
);
622 skb_set_transport_header(skb
, ip_len
);
623 *tcph
= tcp_hdr(skb
);
625 /* check if ip header and tcp header are complete */
626 if (ntohs(iph
->tot_len
) < ip_len
+ tcp_hdrlen(skb
))
629 *hdr_flags
= LRO_IPV4
| LRO_TCP
;
635 static void ehea_proc_skb(struct ehea_port_res
*pr
, struct ehea_cqe
*cqe
,
638 int vlan_extracted
= (cqe
->status
& EHEA_CQE_VLAN_TAG_XTRACT
)
643 lro_vlan_hwaccel_receive_skb(&pr
->lro_mgr
, skb
,
648 lro_receive_skb(&pr
->lro_mgr
, skb
, cqe
);
651 vlan_hwaccel_receive_skb(skb
, pr
->port
->vgrp
,
654 netif_receive_skb(skb
);
658 static int ehea_proc_rwqes(struct net_device
*dev
,
659 struct ehea_port_res
*pr
,
662 struct ehea_port
*port
= pr
->port
;
663 struct ehea_qp
*qp
= pr
->qp
;
664 struct ehea_cqe
*cqe
;
666 struct sk_buff
**skb_arr_rq1
= pr
->rq1_skba
.arr
;
667 struct sk_buff
**skb_arr_rq2
= pr
->rq2_skba
.arr
;
668 struct sk_buff
**skb_arr_rq3
= pr
->rq3_skba
.arr
;
669 int skb_arr_rq1_len
= pr
->rq1_skba
.len
;
670 int skb_arr_rq2_len
= pr
->rq2_skba
.len
;
671 int skb_arr_rq3_len
= pr
->rq3_skba
.len
;
672 int processed
, processed_rq1
, processed_rq2
, processed_rq3
;
673 int wqe_index
, last_wqe_index
, rq
, port_reset
;
675 processed
= processed_rq1
= processed_rq2
= processed_rq3
= 0;
678 cqe
= ehea_poll_rq1(qp
, &wqe_index
);
679 while ((processed
< budget
) && cqe
) {
683 if (netif_msg_rx_status(port
))
684 ehea_dump(cqe
, sizeof(*cqe
), "CQE");
686 last_wqe_index
= wqe_index
;
688 if (!ehea_check_cqe(cqe
, &rq
)) {
691 skb
= get_skb_by_index_ll(skb_arr_rq1
,
694 if (unlikely(!skb
)) {
695 if (netif_msg_rx_err(port
))
696 ehea_error("LL rq1: skb=NULL");
698 skb
= netdev_alloc_skb(dev
,
703 skb_copy_to_linear_data(skb
, ((char *)cqe
) + 64,
704 cqe
->num_bytes_transfered
- 4);
705 ehea_fill_skb(dev
, skb
, cqe
);
706 } else if (rq
== 2) {
708 skb
= get_skb_by_index(skb_arr_rq2
,
709 skb_arr_rq2_len
, cqe
);
710 if (unlikely(!skb
)) {
711 if (netif_msg_rx_err(port
))
712 ehea_error("rq2: skb=NULL");
715 ehea_fill_skb(dev
, skb
, cqe
);
719 skb
= get_skb_by_index(skb_arr_rq3
,
720 skb_arr_rq3_len
, cqe
);
721 if (unlikely(!skb
)) {
722 if (netif_msg_rx_err(port
))
723 ehea_error("rq3: skb=NULL");
726 ehea_fill_skb(dev
, skb
, cqe
);
730 ehea_proc_skb(pr
, cqe
, skb
);
731 dev
->last_rx
= jiffies
;
733 pr
->p_stats
.poll_receive_errors
++;
734 port_reset
= ehea_treat_poll_error(pr
, rq
, cqe
,
740 cqe
= ehea_poll_rq1(qp
, &wqe_index
);
743 lro_flush_all(&pr
->lro_mgr
);
745 pr
->rx_packets
+= processed
;
747 ehea_refill_rq1(pr
, last_wqe_index
, processed_rq1
);
748 ehea_refill_rq2(pr
, processed_rq2
);
749 ehea_refill_rq3(pr
, processed_rq3
);
754 static struct ehea_cqe
*ehea_proc_cqes(struct ehea_port_res
*pr
, int my_quota
)
757 struct ehea_cq
*send_cq
= pr
->send_cq
;
758 struct ehea_cqe
*cqe
;
759 int quota
= my_quota
;
765 cqe
= ehea_poll_cq(send_cq
);
766 while (cqe
&& (quota
> 0)) {
767 ehea_inc_cq(send_cq
);
771 if (cqe
->status
& EHEA_CQE_STAT_ERR_MASK
) {
772 ehea_error("Send Completion Error: Resetting port");
773 if (netif_msg_tx_err(pr
->port
))
774 ehea_dump(cqe
, sizeof(*cqe
), "Send CQE");
775 ehea_schedule_port_reset(pr
->port
);
779 if (netif_msg_tx_done(pr
->port
))
780 ehea_dump(cqe
, sizeof(*cqe
), "CQE");
782 if (likely(EHEA_BMASK_GET(EHEA_WR_ID_TYPE
, cqe
->wr_id
)
783 == EHEA_SWQE2_TYPE
)) {
785 index
= EHEA_BMASK_GET(EHEA_WR_ID_INDEX
, cqe
->wr_id
);
786 skb
= pr
->sq_skba
.arr
[index
];
788 pr
->sq_skba
.arr
[index
] = NULL
;
791 swqe_av
+= EHEA_BMASK_GET(EHEA_WR_ID_REFILL
, cqe
->wr_id
);
794 cqe
= ehea_poll_cq(send_cq
);
797 ehea_update_feca(send_cq
, cqe_counter
);
798 atomic_add(swqe_av
, &pr
->swqe_avail
);
800 spin_lock_irqsave(&pr
->netif_queue
, flags
);
802 if (pr
->queue_stopped
&& (atomic_read(&pr
->swqe_avail
)
803 >= pr
->swqe_refill_th
)) {
804 netif_wake_queue(pr
->port
->netdev
);
805 pr
->queue_stopped
= 0;
807 spin_unlock_irqrestore(&pr
->netif_queue
, flags
);
812 #define EHEA_NAPI_POLL_NUM_BEFORE_IRQ 16
813 #define EHEA_POLL_MAX_CQES 65535
815 static int ehea_poll(struct napi_struct
*napi
, int budget
)
817 struct ehea_port_res
*pr
= container_of(napi
, struct ehea_port_res
,
819 struct net_device
*dev
= pr
->port
->netdev
;
820 struct ehea_cqe
*cqe
;
821 struct ehea_cqe
*cqe_skb
= NULL
;
822 int force_irq
, wqe_index
;
825 force_irq
= (pr
->poll_counter
> EHEA_NAPI_POLL_NUM_BEFORE_IRQ
);
826 cqe_skb
= ehea_proc_cqes(pr
, EHEA_POLL_MAX_CQES
);
829 rx
+= ehea_proc_rwqes(dev
, pr
, budget
- rx
);
831 while ((rx
!= budget
) || force_irq
) {
832 pr
->poll_counter
= 0;
834 netif_rx_complete(dev
, napi
);
835 ehea_reset_cq_ep(pr
->recv_cq
);
836 ehea_reset_cq_ep(pr
->send_cq
);
837 ehea_reset_cq_n1(pr
->recv_cq
);
838 ehea_reset_cq_n1(pr
->send_cq
);
839 cqe
= ehea_poll_rq1(pr
->qp
, &wqe_index
);
840 cqe_skb
= ehea_poll_cq(pr
->send_cq
);
842 if (!cqe
&& !cqe_skb
)
845 if (!netif_rx_reschedule(dev
, napi
))
848 cqe_skb
= ehea_proc_cqes(pr
, EHEA_POLL_MAX_CQES
);
849 rx
+= ehea_proc_rwqes(dev
, pr
, budget
- rx
);
856 #ifdef CONFIG_NET_POLL_CONTROLLER
857 static void ehea_netpoll(struct net_device
*dev
)
859 struct ehea_port
*port
= netdev_priv(dev
);
862 for (i
= 0; i
< port
->num_def_qps
; i
++)
863 netif_rx_schedule(dev
, &port
->port_res
[i
].napi
);
867 static irqreturn_t
ehea_recv_irq_handler(int irq
, void *param
)
869 struct ehea_port_res
*pr
= param
;
871 netif_rx_schedule(pr
->port
->netdev
, &pr
->napi
);
876 static irqreturn_t
ehea_qp_aff_irq_handler(int irq
, void *param
)
878 struct ehea_port
*port
= param
;
879 struct ehea_eqe
*eqe
;
883 eqe
= ehea_poll_eq(port
->qp_eq
);
886 qp_token
= EHEA_BMASK_GET(EHEA_EQE_QP_TOKEN
, eqe
->entry
);
887 ehea_error("QP aff_err: entry=0x%lx, token=0x%x",
888 eqe
->entry
, qp_token
);
890 qp
= port
->port_res
[qp_token
].qp
;
891 ehea_error_data(port
->adapter
, qp
->fw_handle
);
892 eqe
= ehea_poll_eq(port
->qp_eq
);
895 ehea_schedule_port_reset(port
);
900 static struct ehea_port
*ehea_get_port(struct ehea_adapter
*adapter
,
905 for (i
= 0; i
< EHEA_MAX_PORTS
; i
++)
906 if (adapter
->port
[i
])
907 if (adapter
->port
[i
]->logical_port_id
== logical_port
)
908 return adapter
->port
[i
];
912 int ehea_sense_port_attr(struct ehea_port
*port
)
916 struct hcp_ehea_port_cb0
*cb0
;
918 /* may be called via ehea_neq_tasklet() */
919 cb0
= kzalloc(PAGE_SIZE
, GFP_ATOMIC
);
921 ehea_error("no mem for cb0");
926 hret
= ehea_h_query_ehea_port(port
->adapter
->handle
,
927 port
->logical_port_id
, H_PORT_CB0
,
928 EHEA_BMASK_SET(H_PORT_CB0_ALL
, 0xFFFF),
930 if (hret
!= H_SUCCESS
) {
936 port
->mac_addr
= cb0
->port_mac_addr
<< 16;
938 if (!is_valid_ether_addr((u8
*)&port
->mac_addr
)) {
939 ret
= -EADDRNOTAVAIL
;
944 switch (cb0
->port_speed
) {
946 port
->port_speed
= EHEA_SPEED_10M
;
947 port
->full_duplex
= 0;
950 port
->port_speed
= EHEA_SPEED_10M
;
951 port
->full_duplex
= 1;
954 port
->port_speed
= EHEA_SPEED_100M
;
955 port
->full_duplex
= 0;
958 port
->port_speed
= EHEA_SPEED_100M
;
959 port
->full_duplex
= 1;
962 port
->port_speed
= EHEA_SPEED_1G
;
963 port
->full_duplex
= 1;
966 port
->port_speed
= EHEA_SPEED_10G
;
967 port
->full_duplex
= 1;
970 port
->port_speed
= 0;
971 port
->full_duplex
= 0;
976 port
->num_mcs
= cb0
->num_default_qps
;
978 /* Number of default QPs */
980 port
->num_def_qps
= cb0
->num_default_qps
;
982 port
->num_def_qps
= 1;
984 if (!port
->num_def_qps
) {
989 port
->num_tx_qps
= num_tx_qps
;
991 if (port
->num_def_qps
>= port
->num_tx_qps
)
992 port
->num_add_tx_qps
= 0;
994 port
->num_add_tx_qps
= port
->num_tx_qps
- port
->num_def_qps
;
998 if (ret
|| netif_msg_probe(port
))
999 ehea_dump(cb0
, sizeof(*cb0
), "ehea_sense_port_attr");
1005 int ehea_set_portspeed(struct ehea_port
*port
, u32 port_speed
)
1007 struct hcp_ehea_port_cb4
*cb4
;
1011 cb4
= kzalloc(PAGE_SIZE
, GFP_KERNEL
);
1013 ehea_error("no mem for cb4");
1018 cb4
->port_speed
= port_speed
;
1020 netif_carrier_off(port
->netdev
);
1022 hret
= ehea_h_modify_ehea_port(port
->adapter
->handle
,
1023 port
->logical_port_id
,
1024 H_PORT_CB4
, H_PORT_CB4_SPEED
, cb4
);
1025 if (hret
== H_SUCCESS
) {
1026 port
->autoneg
= port_speed
== EHEA_SPEED_AUTONEG
? 1 : 0;
1028 hret
= ehea_h_query_ehea_port(port
->adapter
->handle
,
1029 port
->logical_port_id
,
1030 H_PORT_CB4
, H_PORT_CB4_SPEED
,
1032 if (hret
== H_SUCCESS
) {
1033 switch (cb4
->port_speed
) {
1035 port
->port_speed
= EHEA_SPEED_10M
;
1036 port
->full_duplex
= 0;
1039 port
->port_speed
= EHEA_SPEED_10M
;
1040 port
->full_duplex
= 1;
1042 case H_SPEED_100M_H
:
1043 port
->port_speed
= EHEA_SPEED_100M
;
1044 port
->full_duplex
= 0;
1046 case H_SPEED_100M_F
:
1047 port
->port_speed
= EHEA_SPEED_100M
;
1048 port
->full_duplex
= 1;
1051 port
->port_speed
= EHEA_SPEED_1G
;
1052 port
->full_duplex
= 1;
1055 port
->port_speed
= EHEA_SPEED_10G
;
1056 port
->full_duplex
= 1;
1059 port
->port_speed
= 0;
1060 port
->full_duplex
= 0;
1064 ehea_error("Failed sensing port speed");
1068 if (hret
== H_AUTHORITY
) {
1069 ehea_info("Hypervisor denied setting port speed");
1073 ehea_error("Failed setting port speed");
1076 if (!prop_carrier_state
|| (port
->phy_link
== EHEA_PHY_LINK_UP
))
1077 netif_carrier_on(port
->netdev
);
1084 static void ehea_parse_eqe(struct ehea_adapter
*adapter
, u64 eqe
)
1089 struct ehea_port
*port
;
1091 ec
= EHEA_BMASK_GET(NEQE_EVENT_CODE
, eqe
);
1092 portnum
= EHEA_BMASK_GET(NEQE_PORTNUM
, eqe
);
1093 port
= ehea_get_port(adapter
, portnum
);
1096 case EHEA_EC_PORTSTATE_CHG
: /* port state change */
1099 ehea_error("unknown portnum %x", portnum
);
1103 if (EHEA_BMASK_GET(NEQE_PORT_UP
, eqe
)) {
1104 if (!netif_carrier_ok(port
->netdev
)) {
1105 ret
= ehea_sense_port_attr(port
);
1107 ehea_error("failed resensing port "
1112 if (netif_msg_link(port
))
1113 ehea_info("%s: Logical port up: %dMbps "
1117 port
->full_duplex
==
1118 1 ? "Full" : "Half");
1120 netif_carrier_on(port
->netdev
);
1121 netif_wake_queue(port
->netdev
);
1124 if (netif_carrier_ok(port
->netdev
)) {
1125 if (netif_msg_link(port
))
1126 ehea_info("%s: Logical port down",
1127 port
->netdev
->name
);
1128 netif_carrier_off(port
->netdev
);
1129 netif_stop_queue(port
->netdev
);
1132 if (EHEA_BMASK_GET(NEQE_EXTSWITCH_PORT_UP
, eqe
)) {
1133 port
->phy_link
= EHEA_PHY_LINK_UP
;
1134 if (netif_msg_link(port
))
1135 ehea_info("%s: Physical port up",
1136 port
->netdev
->name
);
1137 if (prop_carrier_state
)
1138 netif_carrier_on(port
->netdev
);
1140 port
->phy_link
= EHEA_PHY_LINK_DOWN
;
1141 if (netif_msg_link(port
))
1142 ehea_info("%s: Physical port down",
1143 port
->netdev
->name
);
1144 if (prop_carrier_state
)
1145 netif_carrier_off(port
->netdev
);
1148 if (EHEA_BMASK_GET(NEQE_EXTSWITCH_PRIMARY
, eqe
))
1149 ehea_info("External switch port is primary port");
1151 ehea_info("External switch port is backup port");
1154 case EHEA_EC_ADAPTER_MALFUNC
:
1155 ehea_error("Adapter malfunction");
1157 case EHEA_EC_PORT_MALFUNC
:
1158 ehea_info("Port malfunction: Device: %s", port
->netdev
->name
);
1159 netif_carrier_off(port
->netdev
);
1160 netif_stop_queue(port
->netdev
);
1163 ehea_error("unknown event code %x, eqe=0x%lX", ec
, eqe
);
1168 static void ehea_neq_tasklet(unsigned long data
)
1170 struct ehea_adapter
*adapter
= (struct ehea_adapter
*)data
;
1171 struct ehea_eqe
*eqe
;
1174 eqe
= ehea_poll_eq(adapter
->neq
);
1175 ehea_debug("eqe=%p", eqe
);
1178 ehea_debug("*eqe=%lx", eqe
->entry
);
1179 ehea_parse_eqe(adapter
, eqe
->entry
);
1180 eqe
= ehea_poll_eq(adapter
->neq
);
1181 ehea_debug("next eqe=%p", eqe
);
1184 event_mask
= EHEA_BMASK_SET(NELR_PORTSTATE_CHG
, 1)
1185 | EHEA_BMASK_SET(NELR_ADAPTER_MALFUNC
, 1)
1186 | EHEA_BMASK_SET(NELR_PORT_MALFUNC
, 1);
1188 ehea_h_reset_events(adapter
->handle
,
1189 adapter
->neq
->fw_handle
, event_mask
);
1192 static irqreturn_t
ehea_interrupt_neq(int irq
, void *param
)
1194 struct ehea_adapter
*adapter
= param
;
1195 tasklet_hi_schedule(&adapter
->neq_tasklet
);
1200 static int ehea_fill_port_res(struct ehea_port_res
*pr
)
1203 struct ehea_qp_init_attr
*init_attr
= &pr
->qp
->init_attr
;
1205 ret
= ehea_init_fill_rq1(pr
, init_attr
->act_nr_rwqes_rq1
1206 - init_attr
->act_nr_rwqes_rq2
1207 - init_attr
->act_nr_rwqes_rq3
- 1);
1209 ret
|= ehea_refill_rq2(pr
, init_attr
->act_nr_rwqes_rq2
- 1);
1211 ret
|= ehea_refill_rq3(pr
, init_attr
->act_nr_rwqes_rq3
- 1);
1216 static int ehea_reg_interrupts(struct net_device
*dev
)
1218 struct ehea_port
*port
= netdev_priv(dev
);
1219 struct ehea_port_res
*pr
;
1223 snprintf(port
->int_aff_name
, EHEA_IRQ_NAME_SIZE
- 1, "%s-aff",
1226 ret
= ibmebus_request_irq(port
->qp_eq
->attr
.ist1
,
1227 ehea_qp_aff_irq_handler
,
1228 IRQF_DISABLED
, port
->int_aff_name
, port
);
1230 ehea_error("failed registering irq for qp_aff_irq_handler:"
1231 "ist=%X", port
->qp_eq
->attr
.ist1
);
1235 if (netif_msg_ifup(port
))
1236 ehea_info("irq_handle 0x%X for function qp_aff_irq_handler "
1237 "registered", port
->qp_eq
->attr
.ist1
);
1240 for (i
= 0; i
< port
->num_def_qps
+ port
->num_add_tx_qps
; i
++) {
1241 pr
= &port
->port_res
[i
];
1242 snprintf(pr
->int_send_name
, EHEA_IRQ_NAME_SIZE
- 1,
1243 "%s-queue%d", dev
->name
, i
);
1244 ret
= ibmebus_request_irq(pr
->eq
->attr
.ist1
,
1245 ehea_recv_irq_handler
,
1246 IRQF_DISABLED
, pr
->int_send_name
,
1249 ehea_error("failed registering irq for ehea_queue "
1250 "port_res_nr:%d, ist=%X", i
,
1254 if (netif_msg_ifup(port
))
1255 ehea_info("irq_handle 0x%X for function ehea_queue_int "
1256 "%d registered", pr
->eq
->attr
.ist1
, i
);
1264 u32 ist
= port
->port_res
[i
].eq
->attr
.ist1
;
1265 ibmebus_free_irq(ist
, &port
->port_res
[i
]);
1269 ibmebus_free_irq(port
->qp_eq
->attr
.ist1
, port
);
1270 i
= port
->num_def_qps
;
1276 static void ehea_free_interrupts(struct net_device
*dev
)
1278 struct ehea_port
*port
= netdev_priv(dev
);
1279 struct ehea_port_res
*pr
;
1284 for (i
= 0; i
< port
->num_def_qps
+ port
->num_add_tx_qps
; i
++) {
1285 pr
= &port
->port_res
[i
];
1286 ibmebus_free_irq(pr
->eq
->attr
.ist1
, pr
);
1287 if (netif_msg_intr(port
))
1288 ehea_info("free send irq for res %d with handle 0x%X",
1289 i
, pr
->eq
->attr
.ist1
);
1292 /* associated events */
1293 ibmebus_free_irq(port
->qp_eq
->attr
.ist1
, port
);
1294 if (netif_msg_intr(port
))
1295 ehea_info("associated event interrupt for handle 0x%X freed",
1296 port
->qp_eq
->attr
.ist1
);
1299 static int ehea_configure_port(struct ehea_port
*port
)
1303 struct hcp_ehea_port_cb0
*cb0
;
1306 cb0
= kzalloc(PAGE_SIZE
, GFP_KERNEL
);
1310 cb0
->port_rc
= EHEA_BMASK_SET(PXLY_RC_VALID
, 1)
1311 | EHEA_BMASK_SET(PXLY_RC_IP_CHKSUM
, 1)
1312 | EHEA_BMASK_SET(PXLY_RC_TCP_UDP_CHKSUM
, 1)
1313 | EHEA_BMASK_SET(PXLY_RC_VLAN_XTRACT
, 1)
1314 | EHEA_BMASK_SET(PXLY_RC_VLAN_TAG_FILTER
,
1315 PXLY_RC_VLAN_FILTER
)
1316 | EHEA_BMASK_SET(PXLY_RC_JUMBO_FRAME
, 1);
1318 for (i
= 0; i
< port
->num_mcs
; i
++)
1320 cb0
->default_qpn_arr
[i
] =
1321 port
->port_res
[i
].qp
->init_attr
.qp_nr
;
1323 cb0
->default_qpn_arr
[i
] =
1324 port
->port_res
[0].qp
->init_attr
.qp_nr
;
1326 if (netif_msg_ifup(port
))
1327 ehea_dump(cb0
, sizeof(*cb0
), "ehea_configure_port");
1329 mask
= EHEA_BMASK_SET(H_PORT_CB0_PRC
, 1)
1330 | EHEA_BMASK_SET(H_PORT_CB0_DEFQPNARRAY
, 1);
1332 hret
= ehea_h_modify_ehea_port(port
->adapter
->handle
,
1333 port
->logical_port_id
,
1334 H_PORT_CB0
, mask
, cb0
);
1336 if (hret
!= H_SUCCESS
)
1347 int ehea_gen_smrs(struct ehea_port_res
*pr
)
1350 struct ehea_adapter
*adapter
= pr
->port
->adapter
;
1352 ret
= ehea_gen_smr(adapter
, &adapter
->mr
, &pr
->send_mr
);
1356 ret
= ehea_gen_smr(adapter
, &adapter
->mr
, &pr
->recv_mr
);
1363 ehea_rem_mr(&pr
->send_mr
);
1365 ehea_error("Generating SMRS failed\n");
1369 int ehea_rem_smrs(struct ehea_port_res
*pr
)
1371 if ((ehea_rem_mr(&pr
->send_mr
))
1372 || (ehea_rem_mr(&pr
->recv_mr
)))
1378 static int ehea_init_q_skba(struct ehea_q_skb_arr
*q_skba
, int max_q_entries
)
1380 int arr_size
= sizeof(void *) * max_q_entries
;
1382 q_skba
->arr
= vmalloc(arr_size
);
1386 memset(q_skba
->arr
, 0, arr_size
);
1388 q_skba
->len
= max_q_entries
;
1390 q_skba
->os_skbs
= 0;
1395 static int ehea_init_port_res(struct ehea_port
*port
, struct ehea_port_res
*pr
,
1396 struct port_res_cfg
*pr_cfg
, int queue_token
)
1398 struct ehea_adapter
*adapter
= port
->adapter
;
1399 enum ehea_eq_type eq_type
= EHEA_EQ
;
1400 struct ehea_qp_init_attr
*init_attr
= NULL
;
1403 memset(pr
, 0, sizeof(struct ehea_port_res
));
1406 spin_lock_init(&pr
->xmit_lock
);
1407 spin_lock_init(&pr
->netif_queue
);
1409 pr
->eq
= ehea_create_eq(adapter
, eq_type
, EHEA_MAX_ENTRIES_EQ
, 0);
1411 ehea_error("create_eq failed (eq)");
1415 pr
->recv_cq
= ehea_create_cq(adapter
, pr_cfg
->max_entries_rcq
,
1417 port
->logical_port_id
);
1419 ehea_error("create_cq failed (cq_recv)");
1423 pr
->send_cq
= ehea_create_cq(adapter
, pr_cfg
->max_entries_scq
,
1425 port
->logical_port_id
);
1427 ehea_error("create_cq failed (cq_send)");
1431 if (netif_msg_ifup(port
))
1432 ehea_info("Send CQ: act_nr_cqes=%d, Recv CQ: act_nr_cqes=%d",
1433 pr
->send_cq
->attr
.act_nr_of_cqes
,
1434 pr
->recv_cq
->attr
.act_nr_of_cqes
);
1436 init_attr
= kzalloc(sizeof(*init_attr
), GFP_KERNEL
);
1439 ehea_error("no mem for ehea_qp_init_attr");
1443 init_attr
->low_lat_rq1
= 1;
1444 init_attr
->signalingtype
= 1; /* generate CQE if specified in WQE */
1445 init_attr
->rq_count
= 3;
1446 init_attr
->qp_token
= queue_token
;
1447 init_attr
->max_nr_send_wqes
= pr_cfg
->max_entries_sq
;
1448 init_attr
->max_nr_rwqes_rq1
= pr_cfg
->max_entries_rq1
;
1449 init_attr
->max_nr_rwqes_rq2
= pr_cfg
->max_entries_rq2
;
1450 init_attr
->max_nr_rwqes_rq3
= pr_cfg
->max_entries_rq3
;
1451 init_attr
->wqe_size_enc_sq
= EHEA_SG_SQ
;
1452 init_attr
->wqe_size_enc_rq1
= EHEA_SG_RQ1
;
1453 init_attr
->wqe_size_enc_rq2
= EHEA_SG_RQ2
;
1454 init_attr
->wqe_size_enc_rq3
= EHEA_SG_RQ3
;
1455 init_attr
->rq2_threshold
= EHEA_RQ2_THRESHOLD
;
1456 init_attr
->rq3_threshold
= EHEA_RQ3_THRESHOLD
;
1457 init_attr
->port_nr
= port
->logical_port_id
;
1458 init_attr
->send_cq_handle
= pr
->send_cq
->fw_handle
;
1459 init_attr
->recv_cq_handle
= pr
->recv_cq
->fw_handle
;
1460 init_attr
->aff_eq_handle
= port
->qp_eq
->fw_handle
;
1462 pr
->qp
= ehea_create_qp(adapter
, adapter
->pd
, init_attr
);
1464 ehea_error("create_qp failed");
1469 if (netif_msg_ifup(port
))
1470 ehea_info("QP: qp_nr=%d\n act_nr_snd_wqe=%d\n nr_rwqe_rq1=%d\n "
1471 "nr_rwqe_rq2=%d\n nr_rwqe_rq3=%d", init_attr
->qp_nr
,
1472 init_attr
->act_nr_send_wqes
,
1473 init_attr
->act_nr_rwqes_rq1
,
1474 init_attr
->act_nr_rwqes_rq2
,
1475 init_attr
->act_nr_rwqes_rq3
);
1477 pr
->sq_skba_size
= init_attr
->act_nr_send_wqes
+ 1;
1479 ret
= ehea_init_q_skba(&pr
->sq_skba
, pr
->sq_skba_size
);
1480 ret
|= ehea_init_q_skba(&pr
->rq1_skba
, init_attr
->act_nr_rwqes_rq1
+ 1);
1481 ret
|= ehea_init_q_skba(&pr
->rq2_skba
, init_attr
->act_nr_rwqes_rq2
+ 1);
1482 ret
|= ehea_init_q_skba(&pr
->rq3_skba
, init_attr
->act_nr_rwqes_rq3
+ 1);
1486 pr
->swqe_refill_th
= init_attr
->act_nr_send_wqes
/ 10;
1487 if (ehea_gen_smrs(pr
) != 0) {
1492 atomic_set(&pr
->swqe_avail
, init_attr
->act_nr_send_wqes
- 1);
1496 netif_napi_add(pr
->port
->netdev
, &pr
->napi
, ehea_poll
, 64);
1498 pr
->lro_mgr
.max_aggr
= pr
->port
->lro_max_aggr
;
1499 pr
->lro_mgr
.max_desc
= MAX_LRO_DESCRIPTORS
;
1500 pr
->lro_mgr
.lro_arr
= pr
->lro_desc
;
1501 pr
->lro_mgr
.get_skb_header
= get_skb_hdr
;
1502 pr
->lro_mgr
.features
= LRO_F_NAPI
| LRO_F_EXTRACT_VLAN_ID
;
1503 pr
->lro_mgr
.dev
= port
->netdev
;
1504 pr
->lro_mgr
.ip_summed
= CHECKSUM_UNNECESSARY
;
1505 pr
->lro_mgr
.ip_summed_aggr
= CHECKSUM_UNNECESSARY
;
1512 vfree(pr
->sq_skba
.arr
);
1513 vfree(pr
->rq1_skba
.arr
);
1514 vfree(pr
->rq2_skba
.arr
);
1515 vfree(pr
->rq3_skba
.arr
);
1516 ehea_destroy_qp(pr
->qp
);
1517 ehea_destroy_cq(pr
->send_cq
);
1518 ehea_destroy_cq(pr
->recv_cq
);
1519 ehea_destroy_eq(pr
->eq
);
1524 static int ehea_clean_portres(struct ehea_port
*port
, struct ehea_port_res
*pr
)
1528 ret
= ehea_destroy_qp(pr
->qp
);
1531 ehea_destroy_cq(pr
->send_cq
);
1532 ehea_destroy_cq(pr
->recv_cq
);
1533 ehea_destroy_eq(pr
->eq
);
1535 for (i
= 0; i
< pr
->rq1_skba
.len
; i
++)
1536 if (pr
->rq1_skba
.arr
[i
])
1537 dev_kfree_skb(pr
->rq1_skba
.arr
[i
]);
1539 for (i
= 0; i
< pr
->rq2_skba
.len
; i
++)
1540 if (pr
->rq2_skba
.arr
[i
])
1541 dev_kfree_skb(pr
->rq2_skba
.arr
[i
]);
1543 for (i
= 0; i
< pr
->rq3_skba
.len
; i
++)
1544 if (pr
->rq3_skba
.arr
[i
])
1545 dev_kfree_skb(pr
->rq3_skba
.arr
[i
]);
1547 for (i
= 0; i
< pr
->sq_skba
.len
; i
++)
1548 if (pr
->sq_skba
.arr
[i
])
1549 dev_kfree_skb(pr
->sq_skba
.arr
[i
]);
1551 vfree(pr
->rq1_skba
.arr
);
1552 vfree(pr
->rq2_skba
.arr
);
1553 vfree(pr
->rq3_skba
.arr
);
1554 vfree(pr
->sq_skba
.arr
);
1555 ret
= ehea_rem_smrs(pr
);
1561 * The write_* functions store information in swqe which is used by
1562 * the hardware to calculate the ip/tcp/udp checksum
1565 static inline void write_ip_start_end(struct ehea_swqe
*swqe
,
1566 const struct sk_buff
*skb
)
1568 swqe
->ip_start
= skb_network_offset(skb
);
1569 swqe
->ip_end
= (u8
)(swqe
->ip_start
+ ip_hdrlen(skb
) - 1);
1572 static inline void write_tcp_offset_end(struct ehea_swqe
*swqe
,
1573 const struct sk_buff
*skb
)
1576 (u8
)(swqe
->ip_end
+ 1 + offsetof(struct tcphdr
, check
));
1578 swqe
->tcp_end
= (u16
)skb
->len
- 1;
1581 static inline void write_udp_offset_end(struct ehea_swqe
*swqe
,
1582 const struct sk_buff
*skb
)
1585 (u8
)(swqe
->ip_end
+ 1 + offsetof(struct udphdr
, check
));
1587 swqe
->tcp_end
= (u16
)skb
->len
- 1;
1591 static void write_swqe2_TSO(struct sk_buff
*skb
,
1592 struct ehea_swqe
*swqe
, u32 lkey
)
1594 struct ehea_vsgentry
*sg1entry
= &swqe
->u
.immdata_desc
.sg_entry
;
1595 u8
*imm_data
= &swqe
->u
.immdata_desc
.immediate_data
[0];
1596 int skb_data_size
= skb
->len
- skb
->data_len
;
1599 /* Packet is TCP with TSO enabled */
1600 swqe
->tx_control
|= EHEA_SWQE_TSO
;
1601 swqe
->mss
= skb_shinfo(skb
)->gso_size
;
1602 /* copy only eth/ip/tcp headers to immediate data and
1603 * the rest of skb->data to sg1entry
1605 headersize
= ETH_HLEN
+ ip_hdrlen(skb
) + tcp_hdrlen(skb
);
1607 skb_data_size
= skb
->len
- skb
->data_len
;
1609 if (skb_data_size
>= headersize
) {
1610 /* copy immediate data */
1611 skb_copy_from_linear_data(skb
, imm_data
, headersize
);
1612 swqe
->immediate_data_length
= headersize
;
1614 if (skb_data_size
> headersize
) {
1615 /* set sg1entry data */
1616 sg1entry
->l_key
= lkey
;
1617 sg1entry
->len
= skb_data_size
- headersize
;
1619 ehea_map_vaddr(skb
->data
+ headersize
);
1620 swqe
->descriptors
++;
1623 ehea_error("cannot handle fragmented headers");
1626 static void write_swqe2_nonTSO(struct sk_buff
*skb
,
1627 struct ehea_swqe
*swqe
, u32 lkey
)
1629 int skb_data_size
= skb
->len
- skb
->data_len
;
1630 u8
*imm_data
= &swqe
->u
.immdata_desc
.immediate_data
[0];
1631 struct ehea_vsgentry
*sg1entry
= &swqe
->u
.immdata_desc
.sg_entry
;
1633 /* Packet is any nonTSO type
1635 * Copy as much as possible skb->data to immediate data and
1636 * the rest to sg1entry
1638 if (skb_data_size
>= SWQE2_MAX_IMM
) {
1639 /* copy immediate data */
1640 skb_copy_from_linear_data(skb
, imm_data
, SWQE2_MAX_IMM
);
1642 swqe
->immediate_data_length
= SWQE2_MAX_IMM
;
1644 if (skb_data_size
> SWQE2_MAX_IMM
) {
1645 /* copy sg1entry data */
1646 sg1entry
->l_key
= lkey
;
1647 sg1entry
->len
= skb_data_size
- SWQE2_MAX_IMM
;
1649 ehea_map_vaddr(skb
->data
+ SWQE2_MAX_IMM
);
1650 swqe
->descriptors
++;
1653 skb_copy_from_linear_data(skb
, imm_data
, skb_data_size
);
1654 swqe
->immediate_data_length
= skb_data_size
;
1658 static inline void write_swqe2_data(struct sk_buff
*skb
, struct net_device
*dev
,
1659 struct ehea_swqe
*swqe
, u32 lkey
)
1661 struct ehea_vsgentry
*sg_list
, *sg1entry
, *sgentry
;
1663 int nfrags
, sg1entry_contains_frag_data
, i
;
1665 nfrags
= skb_shinfo(skb
)->nr_frags
;
1666 sg1entry
= &swqe
->u
.immdata_desc
.sg_entry
;
1667 sg_list
= (struct ehea_vsgentry
*)&swqe
->u
.immdata_desc
.sg_list
;
1668 swqe
->descriptors
= 0;
1669 sg1entry_contains_frag_data
= 0;
1671 if ((dev
->features
& NETIF_F_TSO
) && skb_shinfo(skb
)->gso_size
)
1672 write_swqe2_TSO(skb
, swqe
, lkey
);
1674 write_swqe2_nonTSO(skb
, swqe
, lkey
);
1676 /* write descriptors */
1678 if (swqe
->descriptors
== 0) {
1679 /* sg1entry not yet used */
1680 frag
= &skb_shinfo(skb
)->frags
[0];
1682 /* copy sg1entry data */
1683 sg1entry
->l_key
= lkey
;
1684 sg1entry
->len
= frag
->size
;
1686 ehea_map_vaddr(page_address(frag
->page
)
1687 + frag
->page_offset
);
1688 swqe
->descriptors
++;
1689 sg1entry_contains_frag_data
= 1;
1692 for (i
= sg1entry_contains_frag_data
; i
< nfrags
; i
++) {
1694 frag
= &skb_shinfo(skb
)->frags
[i
];
1695 sgentry
= &sg_list
[i
- sg1entry_contains_frag_data
];
1697 sgentry
->l_key
= lkey
;
1698 sgentry
->len
= frag
->size
;
1700 ehea_map_vaddr(page_address(frag
->page
)
1701 + frag
->page_offset
);
1702 swqe
->descriptors
++;
1707 static int ehea_broadcast_reg_helper(struct ehea_port
*port
, u32 hcallid
)
1713 /* De/Register untagged packets */
1714 reg_type
= EHEA_BCMC_BROADCAST
| EHEA_BCMC_UNTAGGED
;
1715 hret
= ehea_h_reg_dereg_bcmc(port
->adapter
->handle
,
1716 port
->logical_port_id
,
1717 reg_type
, port
->mac_addr
, 0, hcallid
);
1718 if (hret
!= H_SUCCESS
) {
1719 ehea_error("%sregistering bc address failed (tagged)",
1720 hcallid
== H_REG_BCMC
? "" : "de");
1725 /* De/Register VLAN packets */
1726 reg_type
= EHEA_BCMC_BROADCAST
| EHEA_BCMC_VLANID_ALL
;
1727 hret
= ehea_h_reg_dereg_bcmc(port
->adapter
->handle
,
1728 port
->logical_port_id
,
1729 reg_type
, port
->mac_addr
, 0, hcallid
);
1730 if (hret
!= H_SUCCESS
) {
1731 ehea_error("%sregistering bc address failed (vlan)",
1732 hcallid
== H_REG_BCMC
? "" : "de");
1739 static int ehea_set_mac_addr(struct net_device
*dev
, void *sa
)
1741 struct ehea_port
*port
= netdev_priv(dev
);
1742 struct sockaddr
*mac_addr
= sa
;
1743 struct hcp_ehea_port_cb0
*cb0
;
1747 if (!is_valid_ether_addr(mac_addr
->sa_data
)) {
1748 ret
= -EADDRNOTAVAIL
;
1752 cb0
= kzalloc(PAGE_SIZE
, GFP_KERNEL
);
1754 ehea_error("no mem for cb0");
1759 memcpy(&(cb0
->port_mac_addr
), &(mac_addr
->sa_data
[0]), ETH_ALEN
);
1761 cb0
->port_mac_addr
= cb0
->port_mac_addr
>> 16;
1763 hret
= ehea_h_modify_ehea_port(port
->adapter
->handle
,
1764 port
->logical_port_id
, H_PORT_CB0
,
1765 EHEA_BMASK_SET(H_PORT_CB0_MAC
, 1), cb0
);
1766 if (hret
!= H_SUCCESS
) {
1771 memcpy(dev
->dev_addr
, mac_addr
->sa_data
, dev
->addr_len
);
1773 spin_lock(&ehea_bcmc_regs
.lock
);
1775 /* Deregister old MAC in pHYP */
1776 if (port
->state
== EHEA_PORT_UP
) {
1777 ret
= ehea_broadcast_reg_helper(port
, H_DEREG_BCMC
);
1782 port
->mac_addr
= cb0
->port_mac_addr
<< 16;
1784 /* Register new MAC in pHYP */
1785 if (port
->state
== EHEA_PORT_UP
) {
1786 ret
= ehea_broadcast_reg_helper(port
, H_REG_BCMC
);
1794 ehea_update_bcmc_registrations();
1795 spin_unlock(&ehea_bcmc_regs
.lock
);
1802 static void ehea_promiscuous_error(u64 hret
, int enable
)
1804 if (hret
== H_AUTHORITY
)
1805 ehea_info("Hypervisor denied %sabling promiscuous mode",
1806 enable
== 1 ? "en" : "dis");
1808 ehea_error("failed %sabling promiscuous mode",
1809 enable
== 1 ? "en" : "dis");
1812 static void ehea_promiscuous(struct net_device
*dev
, int enable
)
1814 struct ehea_port
*port
= netdev_priv(dev
);
1815 struct hcp_ehea_port_cb7
*cb7
;
1818 if ((enable
&& port
->promisc
) || (!enable
&& !port
->promisc
))
1821 cb7
= kzalloc(PAGE_SIZE
, GFP_ATOMIC
);
1823 ehea_error("no mem for cb7");
1827 /* Modify Pxs_DUCQPN in CB7 */
1828 cb7
->def_uc_qpn
= enable
== 1 ? port
->port_res
[0].qp
->fw_handle
: 0;
1830 hret
= ehea_h_modify_ehea_port(port
->adapter
->handle
,
1831 port
->logical_port_id
,
1832 H_PORT_CB7
, H_PORT_CB7_DUCQPN
, cb7
);
1834 ehea_promiscuous_error(hret
, enable
);
1838 port
->promisc
= enable
;
1844 static u64
ehea_multicast_reg_helper(struct ehea_port
*port
, u64 mc_mac_addr
,
1850 reg_type
= EHEA_BCMC_SCOPE_ALL
| EHEA_BCMC_MULTICAST
1851 | EHEA_BCMC_UNTAGGED
;
1853 hret
= ehea_h_reg_dereg_bcmc(port
->adapter
->handle
,
1854 port
->logical_port_id
,
1855 reg_type
, mc_mac_addr
, 0, hcallid
);
1859 reg_type
= EHEA_BCMC_SCOPE_ALL
| EHEA_BCMC_MULTICAST
1860 | EHEA_BCMC_VLANID_ALL
;
1862 hret
= ehea_h_reg_dereg_bcmc(port
->adapter
->handle
,
1863 port
->logical_port_id
,
1864 reg_type
, mc_mac_addr
, 0, hcallid
);
1869 static int ehea_drop_multicast_list(struct net_device
*dev
)
1871 struct ehea_port
*port
= netdev_priv(dev
);
1872 struct ehea_mc_list
*mc_entry
= port
->mc_list
;
1873 struct list_head
*pos
;
1874 struct list_head
*temp
;
1878 list_for_each_safe(pos
, temp
, &(port
->mc_list
->list
)) {
1879 mc_entry
= list_entry(pos
, struct ehea_mc_list
, list
);
1881 hret
= ehea_multicast_reg_helper(port
, mc_entry
->macaddr
,
1884 ehea_error("failed deregistering mcast MAC");
1894 static void ehea_allmulti(struct net_device
*dev
, int enable
)
1896 struct ehea_port
*port
= netdev_priv(dev
);
1899 if (!port
->allmulti
) {
1901 /* Enable ALLMULTI */
1902 ehea_drop_multicast_list(dev
);
1903 hret
= ehea_multicast_reg_helper(port
, 0, H_REG_BCMC
);
1907 ehea_error("failed enabling IFF_ALLMULTI");
1911 /* Disable ALLMULTI */
1912 hret
= ehea_multicast_reg_helper(port
, 0, H_DEREG_BCMC
);
1916 ehea_error("failed disabling IFF_ALLMULTI");
1920 static void ehea_add_multicast_entry(struct ehea_port
*port
, u8
*mc_mac_addr
)
1922 struct ehea_mc_list
*ehea_mcl_entry
;
1925 ehea_mcl_entry
= kzalloc(sizeof(*ehea_mcl_entry
), GFP_ATOMIC
);
1926 if (!ehea_mcl_entry
) {
1927 ehea_error("no mem for mcl_entry");
1931 INIT_LIST_HEAD(&ehea_mcl_entry
->list
);
1933 memcpy(&ehea_mcl_entry
->macaddr
, mc_mac_addr
, ETH_ALEN
);
1935 hret
= ehea_multicast_reg_helper(port
, ehea_mcl_entry
->macaddr
,
1938 list_add(&ehea_mcl_entry
->list
, &port
->mc_list
->list
);
1940 ehea_error("failed registering mcast MAC");
1941 kfree(ehea_mcl_entry
);
1945 static void ehea_set_multicast_list(struct net_device
*dev
)
1947 struct ehea_port
*port
= netdev_priv(dev
);
1948 struct dev_mc_list
*k_mcl_entry
;
1951 if (dev
->flags
& IFF_PROMISC
) {
1952 ehea_promiscuous(dev
, 1);
1955 ehea_promiscuous(dev
, 0);
1957 spin_lock(&ehea_bcmc_regs
.lock
);
1959 if (dev
->flags
& IFF_ALLMULTI
) {
1960 ehea_allmulti(dev
, 1);
1963 ehea_allmulti(dev
, 0);
1965 if (dev
->mc_count
) {
1966 ret
= ehea_drop_multicast_list(dev
);
1968 /* Dropping the current multicast list failed.
1969 * Enabling ALL_MULTI is the best we can do.
1971 ehea_allmulti(dev
, 1);
1974 if (dev
->mc_count
> port
->adapter
->max_mc_mac
) {
1975 ehea_info("Mcast registration limit reached (0x%lx). "
1977 port
->adapter
->max_mc_mac
);
1981 for (i
= 0, k_mcl_entry
= dev
->mc_list
; i
< dev
->mc_count
; i
++,
1982 k_mcl_entry
= k_mcl_entry
->next
)
1983 ehea_add_multicast_entry(port
, k_mcl_entry
->dmi_addr
);
1987 ehea_update_bcmc_registrations();
1988 spin_unlock(&ehea_bcmc_regs
.lock
);
1992 static int ehea_change_mtu(struct net_device
*dev
, int new_mtu
)
1994 if ((new_mtu
< 68) || (new_mtu
> EHEA_MAX_PACKET_SIZE
))
2000 static void ehea_xmit2(struct sk_buff
*skb
, struct net_device
*dev
,
2001 struct ehea_swqe
*swqe
, u32 lkey
)
2003 if (skb
->protocol
== htons(ETH_P_IP
)) {
2004 const struct iphdr
*iph
= ip_hdr(skb
);
2007 swqe
->tx_control
|= EHEA_SWQE_CRC
2008 | EHEA_SWQE_IP_CHECKSUM
2009 | EHEA_SWQE_TCP_CHECKSUM
2010 | EHEA_SWQE_IMM_DATA_PRESENT
2011 | EHEA_SWQE_DESCRIPTORS_PRESENT
;
2013 write_ip_start_end(swqe
, skb
);
2015 if (iph
->protocol
== IPPROTO_UDP
) {
2016 if ((iph
->frag_off
& IP_MF
)
2017 || (iph
->frag_off
& IP_OFFSET
))
2018 /* IP fragment, so don't change cs */
2019 swqe
->tx_control
&= ~EHEA_SWQE_TCP_CHECKSUM
;
2021 write_udp_offset_end(swqe
, skb
);
2022 } else if (iph
->protocol
== IPPROTO_TCP
) {
2023 write_tcp_offset_end(swqe
, skb
);
2026 /* icmp (big data) and ip segmentation packets (all other ip
2027 packets) do not require any special handling */
2030 /* Other Ethernet Protocol */
2031 swqe
->tx_control
|= EHEA_SWQE_CRC
2032 | EHEA_SWQE_IMM_DATA_PRESENT
2033 | EHEA_SWQE_DESCRIPTORS_PRESENT
;
2036 write_swqe2_data(skb
, dev
, swqe
, lkey
);
2039 static void ehea_xmit3(struct sk_buff
*skb
, struct net_device
*dev
,
2040 struct ehea_swqe
*swqe
)
2042 int nfrags
= skb_shinfo(skb
)->nr_frags
;
2043 u8
*imm_data
= &swqe
->u
.immdata_nodesc
.immediate_data
[0];
2047 if (skb
->protocol
== htons(ETH_P_IP
)) {
2048 const struct iphdr
*iph
= ip_hdr(skb
);
2051 write_ip_start_end(swqe
, skb
);
2053 if (iph
->protocol
== IPPROTO_TCP
) {
2054 swqe
->tx_control
|= EHEA_SWQE_CRC
2055 | EHEA_SWQE_IP_CHECKSUM
2056 | EHEA_SWQE_TCP_CHECKSUM
2057 | EHEA_SWQE_IMM_DATA_PRESENT
;
2059 write_tcp_offset_end(swqe
, skb
);
2061 } else if (iph
->protocol
== IPPROTO_UDP
) {
2062 if ((iph
->frag_off
& IP_MF
)
2063 || (iph
->frag_off
& IP_OFFSET
))
2064 /* IP fragment, so don't change cs */
2065 swqe
->tx_control
|= EHEA_SWQE_CRC
2066 | EHEA_SWQE_IMM_DATA_PRESENT
;
2068 swqe
->tx_control
|= EHEA_SWQE_CRC
2069 | EHEA_SWQE_IP_CHECKSUM
2070 | EHEA_SWQE_TCP_CHECKSUM
2071 | EHEA_SWQE_IMM_DATA_PRESENT
;
2073 write_udp_offset_end(swqe
, skb
);
2076 /* icmp (big data) and
2077 ip segmentation packets (all other ip packets) */
2078 swqe
->tx_control
|= EHEA_SWQE_CRC
2079 | EHEA_SWQE_IP_CHECKSUM
2080 | EHEA_SWQE_IMM_DATA_PRESENT
;
2083 /* Other Ethernet Protocol */
2084 swqe
->tx_control
|= EHEA_SWQE_CRC
| EHEA_SWQE_IMM_DATA_PRESENT
;
2086 /* copy (immediate) data */
2088 /* data is in a single piece */
2089 skb_copy_from_linear_data(skb
, imm_data
, skb
->len
);
2091 /* first copy data from the skb->data buffer ... */
2092 skb_copy_from_linear_data(skb
, imm_data
,
2093 skb
->len
- skb
->data_len
);
2094 imm_data
+= skb
->len
- skb
->data_len
;
2096 /* ... then copy data from the fragments */
2097 for (i
= 0; i
< nfrags
; i
++) {
2098 frag
= &skb_shinfo(skb
)->frags
[i
];
2100 page_address(frag
->page
) + frag
->page_offset
,
2102 imm_data
+= frag
->size
;
2105 swqe
->immediate_data_length
= skb
->len
;
2109 static inline int ehea_hash_skb(struct sk_buff
*skb
, int num_qps
)
2114 if ((skb
->protocol
== htons(ETH_P_IP
)) &&
2115 (ip_hdr(skb
)->protocol
== IPPROTO_TCP
)) {
2116 tcp
= (struct tcphdr
*)(skb_network_header(skb
) +
2117 (ip_hdr(skb
)->ihl
* 4));
2118 tmp
= (tcp
->source
+ (tcp
->dest
<< 16)) % 31;
2119 tmp
+= ip_hdr(skb
)->daddr
% 31;
2120 return tmp
% num_qps
;
2125 static int ehea_start_xmit(struct sk_buff
*skb
, struct net_device
*dev
)
2127 struct ehea_port
*port
= netdev_priv(dev
);
2128 struct ehea_swqe
*swqe
;
2129 unsigned long flags
;
2132 struct ehea_port_res
*pr
;
2134 pr
= &port
->port_res
[ehea_hash_skb(skb
, port
->num_tx_qps
)];
2136 if (!spin_trylock(&pr
->xmit_lock
))
2137 return NETDEV_TX_BUSY
;
2139 if (pr
->queue_stopped
) {
2140 spin_unlock(&pr
->xmit_lock
);
2141 return NETDEV_TX_BUSY
;
2144 swqe
= ehea_get_swqe(pr
->qp
, &swqe_index
);
2145 memset(swqe
, 0, SWQE_HEADER_SIZE
);
2146 atomic_dec(&pr
->swqe_avail
);
2148 if (skb
->len
<= SWQE3_MAX_IMM
) {
2149 u32 sig_iv
= port
->sig_comp_iv
;
2150 u32 swqe_num
= pr
->swqe_id_counter
;
2151 ehea_xmit3(skb
, dev
, swqe
);
2152 swqe
->wr_id
= EHEA_BMASK_SET(EHEA_WR_ID_TYPE
, EHEA_SWQE3_TYPE
)
2153 | EHEA_BMASK_SET(EHEA_WR_ID_COUNT
, swqe_num
);
2154 if (pr
->swqe_ll_count
>= (sig_iv
- 1)) {
2155 swqe
->wr_id
|= EHEA_BMASK_SET(EHEA_WR_ID_REFILL
,
2157 swqe
->tx_control
|= EHEA_SWQE_SIGNALLED_COMPLETION
;
2158 pr
->swqe_ll_count
= 0;
2160 pr
->swqe_ll_count
+= 1;
2163 EHEA_BMASK_SET(EHEA_WR_ID_TYPE
, EHEA_SWQE2_TYPE
)
2164 | EHEA_BMASK_SET(EHEA_WR_ID_COUNT
, pr
->swqe_id_counter
)
2165 | EHEA_BMASK_SET(EHEA_WR_ID_REFILL
, 1)
2166 | EHEA_BMASK_SET(EHEA_WR_ID_INDEX
, pr
->sq_skba
.index
);
2167 pr
->sq_skba
.arr
[pr
->sq_skba
.index
] = skb
;
2169 pr
->sq_skba
.index
++;
2170 pr
->sq_skba
.index
&= (pr
->sq_skba
.len
- 1);
2172 lkey
= pr
->send_mr
.lkey
;
2173 ehea_xmit2(skb
, dev
, swqe
, lkey
);
2174 swqe
->tx_control
|= EHEA_SWQE_SIGNALLED_COMPLETION
;
2176 pr
->swqe_id_counter
+= 1;
2178 if (port
->vgrp
&& vlan_tx_tag_present(skb
)) {
2179 swqe
->tx_control
|= EHEA_SWQE_VLAN_INSERT
;
2180 swqe
->vlan_tag
= vlan_tx_tag_get(skb
);
2183 if (netif_msg_tx_queued(port
)) {
2184 ehea_info("post swqe on QP %d", pr
->qp
->init_attr
.qp_nr
);
2185 ehea_dump(swqe
, 512, "swqe");
2188 if (unlikely(test_bit(__EHEA_STOP_XFER
, &ehea_driver_flags
))) {
2189 netif_stop_queue(dev
);
2190 swqe
->tx_control
|= EHEA_SWQE_PURGE
;
2193 ehea_post_swqe(pr
->qp
, swqe
);
2196 if (unlikely(atomic_read(&pr
->swqe_avail
) <= 1)) {
2197 spin_lock_irqsave(&pr
->netif_queue
, flags
);
2198 if (unlikely(atomic_read(&pr
->swqe_avail
) <= 1)) {
2199 pr
->p_stats
.queue_stopped
++;
2200 netif_stop_queue(dev
);
2201 pr
->queue_stopped
= 1;
2203 spin_unlock_irqrestore(&pr
->netif_queue
, flags
);
2205 dev
->trans_start
= jiffies
;
2206 spin_unlock(&pr
->xmit_lock
);
2208 return NETDEV_TX_OK
;
2211 static void ehea_vlan_rx_register(struct net_device
*dev
,
2212 struct vlan_group
*grp
)
2214 struct ehea_port
*port
= netdev_priv(dev
);
2215 struct ehea_adapter
*adapter
= port
->adapter
;
2216 struct hcp_ehea_port_cb1
*cb1
;
2221 cb1
= kzalloc(PAGE_SIZE
, GFP_KERNEL
);
2223 ehea_error("no mem for cb1");
2227 hret
= ehea_h_modify_ehea_port(adapter
->handle
, port
->logical_port_id
,
2228 H_PORT_CB1
, H_PORT_CB1_ALL
, cb1
);
2229 if (hret
!= H_SUCCESS
)
2230 ehea_error("modify_ehea_port failed");
2237 static void ehea_vlan_rx_add_vid(struct net_device
*dev
, unsigned short vid
)
2239 struct ehea_port
*port
= netdev_priv(dev
);
2240 struct ehea_adapter
*adapter
= port
->adapter
;
2241 struct hcp_ehea_port_cb1
*cb1
;
2245 cb1
= kzalloc(PAGE_SIZE
, GFP_KERNEL
);
2247 ehea_error("no mem for cb1");
2251 hret
= ehea_h_query_ehea_port(adapter
->handle
, port
->logical_port_id
,
2252 H_PORT_CB1
, H_PORT_CB1_ALL
, cb1
);
2253 if (hret
!= H_SUCCESS
) {
2254 ehea_error("query_ehea_port failed");
2259 cb1
->vlan_filter
[index
] |= ((u64
)(0x8000000000000000 >> (vid
& 0x3F)));
2261 hret
= ehea_h_modify_ehea_port(adapter
->handle
, port
->logical_port_id
,
2262 H_PORT_CB1
, H_PORT_CB1_ALL
, cb1
);
2263 if (hret
!= H_SUCCESS
)
2264 ehea_error("modify_ehea_port failed");
2270 static void ehea_vlan_rx_kill_vid(struct net_device
*dev
, unsigned short vid
)
2272 struct ehea_port
*port
= netdev_priv(dev
);
2273 struct ehea_adapter
*adapter
= port
->adapter
;
2274 struct hcp_ehea_port_cb1
*cb1
;
2278 vlan_group_set_device(port
->vgrp
, vid
, NULL
);
2280 cb1
= kzalloc(PAGE_SIZE
, GFP_KERNEL
);
2282 ehea_error("no mem for cb1");
2286 hret
= ehea_h_query_ehea_port(adapter
->handle
, port
->logical_port_id
,
2287 H_PORT_CB1
, H_PORT_CB1_ALL
, cb1
);
2288 if (hret
!= H_SUCCESS
) {
2289 ehea_error("query_ehea_port failed");
2294 cb1
->vlan_filter
[index
] &= ~((u64
)(0x8000000000000000 >> (vid
& 0x3F)));
2296 hret
= ehea_h_modify_ehea_port(adapter
->handle
, port
->logical_port_id
,
2297 H_PORT_CB1
, H_PORT_CB1_ALL
, cb1
);
2298 if (hret
!= H_SUCCESS
)
2299 ehea_error("modify_ehea_port failed");
2305 int ehea_activate_qp(struct ehea_adapter
*adapter
, struct ehea_qp
*qp
)
2311 struct hcp_modify_qp_cb0
*cb0
;
2313 cb0
= kzalloc(PAGE_SIZE
, GFP_KERNEL
);
2319 hret
= ehea_h_query_ehea_qp(adapter
->handle
, 0, qp
->fw_handle
,
2320 EHEA_BMASK_SET(H_QPCB0_ALL
, 0xFFFF), cb0
);
2321 if (hret
!= H_SUCCESS
) {
2322 ehea_error("query_ehea_qp failed (1)");
2326 cb0
->qp_ctl_reg
= H_QP_CR_STATE_INITIALIZED
;
2327 hret
= ehea_h_modify_ehea_qp(adapter
->handle
, 0, qp
->fw_handle
,
2328 EHEA_BMASK_SET(H_QPCB0_QP_CTL_REG
, 1), cb0
,
2329 &dummy64
, &dummy64
, &dummy16
, &dummy16
);
2330 if (hret
!= H_SUCCESS
) {
2331 ehea_error("modify_ehea_qp failed (1)");
2335 hret
= ehea_h_query_ehea_qp(adapter
->handle
, 0, qp
->fw_handle
,
2336 EHEA_BMASK_SET(H_QPCB0_ALL
, 0xFFFF), cb0
);
2337 if (hret
!= H_SUCCESS
) {
2338 ehea_error("query_ehea_qp failed (2)");
2342 cb0
->qp_ctl_reg
= H_QP_CR_ENABLED
| H_QP_CR_STATE_INITIALIZED
;
2343 hret
= ehea_h_modify_ehea_qp(adapter
->handle
, 0, qp
->fw_handle
,
2344 EHEA_BMASK_SET(H_QPCB0_QP_CTL_REG
, 1), cb0
,
2345 &dummy64
, &dummy64
, &dummy16
, &dummy16
);
2346 if (hret
!= H_SUCCESS
) {
2347 ehea_error("modify_ehea_qp failed (2)");
2351 hret
= ehea_h_query_ehea_qp(adapter
->handle
, 0, qp
->fw_handle
,
2352 EHEA_BMASK_SET(H_QPCB0_ALL
, 0xFFFF), cb0
);
2353 if (hret
!= H_SUCCESS
) {
2354 ehea_error("query_ehea_qp failed (3)");
2358 cb0
->qp_ctl_reg
= H_QP_CR_ENABLED
| H_QP_CR_STATE_RDY2SND
;
2359 hret
= ehea_h_modify_ehea_qp(adapter
->handle
, 0, qp
->fw_handle
,
2360 EHEA_BMASK_SET(H_QPCB0_QP_CTL_REG
, 1), cb0
,
2361 &dummy64
, &dummy64
, &dummy16
, &dummy16
);
2362 if (hret
!= H_SUCCESS
) {
2363 ehea_error("modify_ehea_qp failed (3)");
2367 hret
= ehea_h_query_ehea_qp(adapter
->handle
, 0, qp
->fw_handle
,
2368 EHEA_BMASK_SET(H_QPCB0_ALL
, 0xFFFF), cb0
);
2369 if (hret
!= H_SUCCESS
) {
2370 ehea_error("query_ehea_qp failed (4)");
2380 static int ehea_port_res_setup(struct ehea_port
*port
, int def_qps
,
2384 struct port_res_cfg pr_cfg
, pr_cfg_small_rx
;
2385 enum ehea_eq_type eq_type
= EHEA_EQ
;
2387 port
->qp_eq
= ehea_create_eq(port
->adapter
, eq_type
,
2388 EHEA_MAX_ENTRIES_EQ
, 1);
2391 ehea_error("ehea_create_eq failed (qp_eq)");
2395 pr_cfg
.max_entries_rcq
= rq1_entries
+ rq2_entries
+ rq3_entries
;
2396 pr_cfg
.max_entries_scq
= sq_entries
* 2;
2397 pr_cfg
.max_entries_sq
= sq_entries
;
2398 pr_cfg
.max_entries_rq1
= rq1_entries
;
2399 pr_cfg
.max_entries_rq2
= rq2_entries
;
2400 pr_cfg
.max_entries_rq3
= rq3_entries
;
2402 pr_cfg_small_rx
.max_entries_rcq
= 1;
2403 pr_cfg_small_rx
.max_entries_scq
= sq_entries
;
2404 pr_cfg_small_rx
.max_entries_sq
= sq_entries
;
2405 pr_cfg_small_rx
.max_entries_rq1
= 1;
2406 pr_cfg_small_rx
.max_entries_rq2
= 1;
2407 pr_cfg_small_rx
.max_entries_rq3
= 1;
2409 for (i
= 0; i
< def_qps
; i
++) {
2410 ret
= ehea_init_port_res(port
, &port
->port_res
[i
], &pr_cfg
, i
);
2414 for (i
= def_qps
; i
< def_qps
+ add_tx_qps
; i
++) {
2415 ret
= ehea_init_port_res(port
, &port
->port_res
[i
],
2416 &pr_cfg_small_rx
, i
);
2425 ehea_clean_portres(port
, &port
->port_res
[i
]);
2428 ehea_destroy_eq(port
->qp_eq
);
2432 static int ehea_clean_all_portres(struct ehea_port
*port
)
2437 for (i
= 0; i
< port
->num_def_qps
+ port
->num_add_tx_qps
; i
++)
2438 ret
|= ehea_clean_portres(port
, &port
->port_res
[i
]);
2440 ret
|= ehea_destroy_eq(port
->qp_eq
);
2445 static void ehea_remove_adapter_mr(struct ehea_adapter
*adapter
)
2447 if (adapter
->active_ports
)
2450 ehea_rem_mr(&adapter
->mr
);
2453 static int ehea_add_adapter_mr(struct ehea_adapter
*adapter
)
2455 if (adapter
->active_ports
)
2458 return ehea_reg_kernel_mr(adapter
, &adapter
->mr
);
2461 static int ehea_up(struct net_device
*dev
)
2464 struct ehea_port
*port
= netdev_priv(dev
);
2466 if (port
->state
== EHEA_PORT_UP
)
2469 mutex_lock(&ehea_fw_handles
.lock
);
2471 ret
= ehea_port_res_setup(port
, port
->num_def_qps
,
2472 port
->num_add_tx_qps
);
2474 ehea_error("port_res_failed");
2478 /* Set default QP for this port */
2479 ret
= ehea_configure_port(port
);
2481 ehea_error("ehea_configure_port failed. ret:%d", ret
);
2485 ret
= ehea_reg_interrupts(dev
);
2487 ehea_error("reg_interrupts failed. ret:%d", ret
);
2491 for (i
= 0; i
< port
->num_def_qps
+ port
->num_add_tx_qps
; i
++) {
2492 ret
= ehea_activate_qp(port
->adapter
, port
->port_res
[i
].qp
);
2494 ehea_error("activate_qp failed");
2499 for (i
= 0; i
< port
->num_def_qps
; i
++) {
2500 ret
= ehea_fill_port_res(&port
->port_res
[i
]);
2502 ehea_error("out_free_irqs");
2507 spin_lock(&ehea_bcmc_regs
.lock
);
2509 ret
= ehea_broadcast_reg_helper(port
, H_REG_BCMC
);
2515 port
->state
= EHEA_PORT_UP
;
2521 ehea_free_interrupts(dev
);
2524 ehea_clean_all_portres(port
);
2527 ehea_info("Failed starting %s. ret=%i", dev
->name
, ret
);
2529 ehea_update_bcmc_registrations();
2530 spin_unlock(&ehea_bcmc_regs
.lock
);
2532 ehea_update_firmware_handles();
2533 mutex_unlock(&ehea_fw_handles
.lock
);
2538 static void port_napi_disable(struct ehea_port
*port
)
2542 for (i
= 0; i
< port
->num_def_qps
+ port
->num_add_tx_qps
; i
++)
2543 napi_disable(&port
->port_res
[i
].napi
);
2546 static void port_napi_enable(struct ehea_port
*port
)
2550 for (i
= 0; i
< port
->num_def_qps
+ port
->num_add_tx_qps
; i
++)
2551 napi_enable(&port
->port_res
[i
].napi
);
2554 static int ehea_open(struct net_device
*dev
)
2557 struct ehea_port
*port
= netdev_priv(dev
);
2559 mutex_lock(&port
->port_lock
);
2561 if (netif_msg_ifup(port
))
2562 ehea_info("enabling port %s", dev
->name
);
2566 port_napi_enable(port
);
2567 netif_start_queue(dev
);
2570 mutex_unlock(&port
->port_lock
);
2575 static int ehea_down(struct net_device
*dev
)
2578 struct ehea_port
*port
= netdev_priv(dev
);
2580 if (port
->state
== EHEA_PORT_DOWN
)
2583 mutex_lock(&ehea_fw_handles
.lock
);
2585 spin_lock(&ehea_bcmc_regs
.lock
);
2586 ehea_drop_multicast_list(dev
);
2587 ehea_broadcast_reg_helper(port
, H_DEREG_BCMC
);
2589 ehea_free_interrupts(dev
);
2591 port
->state
= EHEA_PORT_DOWN
;
2593 ehea_update_bcmc_registrations();
2594 spin_unlock(&ehea_bcmc_regs
.lock
);
2596 ret
= ehea_clean_all_portres(port
);
2598 ehea_info("Failed freeing resources for %s. ret=%i",
2601 ehea_update_firmware_handles();
2602 mutex_unlock(&ehea_fw_handles
.lock
);
2607 static int ehea_stop(struct net_device
*dev
)
2610 struct ehea_port
*port
= netdev_priv(dev
);
2612 if (netif_msg_ifdown(port
))
2613 ehea_info("disabling port %s", dev
->name
);
2615 set_bit(__EHEA_DISABLE_PORT_RESET
, &port
->flags
);
2616 cancel_work_sync(&port
->reset_task
);
2617 mutex_lock(&port
->port_lock
);
2618 netif_stop_queue(dev
);
2619 port_napi_disable(port
);
2620 ret
= ehea_down(dev
);
2621 mutex_unlock(&port
->port_lock
);
2622 clear_bit(__EHEA_DISABLE_PORT_RESET
, &port
->flags
);
2626 static void ehea_purge_sq(struct ehea_qp
*orig_qp
)
2628 struct ehea_qp qp
= *orig_qp
;
2629 struct ehea_qp_init_attr
*init_attr
= &qp
.init_attr
;
2630 struct ehea_swqe
*swqe
;
2634 for (i
= 0; i
< init_attr
->act_nr_send_wqes
; i
++) {
2635 swqe
= ehea_get_swqe(&qp
, &wqe_index
);
2636 swqe
->tx_control
|= EHEA_SWQE_PURGE
;
2640 static void ehea_flush_sq(struct ehea_port
*port
)
2644 for (i
= 0; i
< port
->num_def_qps
+ port
->num_add_tx_qps
; i
++) {
2645 struct ehea_port_res
*pr
= &port
->port_res
[i
];
2646 int swqe_max
= pr
->sq_skba_size
- 2 - pr
->swqe_ll_count
;
2648 while (atomic_read(&pr
->swqe_avail
) < swqe_max
) {
2656 int ehea_stop_qps(struct net_device
*dev
)
2658 struct ehea_port
*port
= netdev_priv(dev
);
2659 struct ehea_adapter
*adapter
= port
->adapter
;
2660 struct hcp_modify_qp_cb0
*cb0
;
2668 cb0
= kzalloc(PAGE_SIZE
, GFP_KERNEL
);
2674 for (i
= 0; i
< (port
->num_def_qps
+ port
->num_add_tx_qps
); i
++) {
2675 struct ehea_port_res
*pr
= &port
->port_res
[i
];
2676 struct ehea_qp
*qp
= pr
->qp
;
2678 /* Purge send queue */
2681 /* Disable queue pair */
2682 hret
= ehea_h_query_ehea_qp(adapter
->handle
, 0, qp
->fw_handle
,
2683 EHEA_BMASK_SET(H_QPCB0_ALL
, 0xFFFF),
2685 if (hret
!= H_SUCCESS
) {
2686 ehea_error("query_ehea_qp failed (1)");
2690 cb0
->qp_ctl_reg
= (cb0
->qp_ctl_reg
& H_QP_CR_RES_STATE
) << 8;
2691 cb0
->qp_ctl_reg
&= ~H_QP_CR_ENABLED
;
2693 hret
= ehea_h_modify_ehea_qp(adapter
->handle
, 0, qp
->fw_handle
,
2694 EHEA_BMASK_SET(H_QPCB0_QP_CTL_REG
,
2696 &dummy64
, &dummy16
, &dummy16
);
2697 if (hret
!= H_SUCCESS
) {
2698 ehea_error("modify_ehea_qp failed (1)");
2702 hret
= ehea_h_query_ehea_qp(adapter
->handle
, 0, qp
->fw_handle
,
2703 EHEA_BMASK_SET(H_QPCB0_ALL
, 0xFFFF),
2705 if (hret
!= H_SUCCESS
) {
2706 ehea_error("query_ehea_qp failed (2)");
2710 /* deregister shared memory regions */
2711 dret
= ehea_rem_smrs(pr
);
2713 ehea_error("unreg shared memory region failed");
2725 void ehea_update_rqs(struct ehea_qp
*orig_qp
, struct ehea_port_res
*pr
)
2727 struct ehea_qp qp
= *orig_qp
;
2728 struct ehea_qp_init_attr
*init_attr
= &qp
.init_attr
;
2729 struct ehea_rwqe
*rwqe
;
2730 struct sk_buff
**skba_rq2
= pr
->rq2_skba
.arr
;
2731 struct sk_buff
**skba_rq3
= pr
->rq3_skba
.arr
;
2732 struct sk_buff
*skb
;
2733 u32 lkey
= pr
->recv_mr
.lkey
;
2739 for (i
= 0; i
< init_attr
->act_nr_rwqes_rq2
+ 1; i
++) {
2740 rwqe
= ehea_get_next_rwqe(&qp
, 2);
2741 rwqe
->sg_list
[0].l_key
= lkey
;
2742 index
= EHEA_BMASK_GET(EHEA_WR_ID_INDEX
, rwqe
->wr_id
);
2743 skb
= skba_rq2
[index
];
2745 rwqe
->sg_list
[0].vaddr
= ehea_map_vaddr(skb
->data
);
2748 for (i
= 0; i
< init_attr
->act_nr_rwqes_rq3
+ 1; i
++) {
2749 rwqe
= ehea_get_next_rwqe(&qp
, 3);
2750 rwqe
->sg_list
[0].l_key
= lkey
;
2751 index
= EHEA_BMASK_GET(EHEA_WR_ID_INDEX
, rwqe
->wr_id
);
2752 skb
= skba_rq3
[index
];
2754 rwqe
->sg_list
[0].vaddr
= ehea_map_vaddr(skb
->data
);
2758 int ehea_restart_qps(struct net_device
*dev
)
2760 struct ehea_port
*port
= netdev_priv(dev
);
2761 struct ehea_adapter
*adapter
= port
->adapter
;
2765 struct hcp_modify_qp_cb0
*cb0
;
2770 cb0
= kzalloc(PAGE_SIZE
, GFP_KERNEL
);
2776 for (i
= 0; i
< (port
->num_def_qps
+ port
->num_add_tx_qps
); i
++) {
2777 struct ehea_port_res
*pr
= &port
->port_res
[i
];
2778 struct ehea_qp
*qp
= pr
->qp
;
2780 ret
= ehea_gen_smrs(pr
);
2782 ehea_error("creation of shared memory regions failed");
2786 ehea_update_rqs(qp
, pr
);
2788 /* Enable queue pair */
2789 hret
= ehea_h_query_ehea_qp(adapter
->handle
, 0, qp
->fw_handle
,
2790 EHEA_BMASK_SET(H_QPCB0_ALL
, 0xFFFF),
2792 if (hret
!= H_SUCCESS
) {
2793 ehea_error("query_ehea_qp failed (1)");
2797 cb0
->qp_ctl_reg
= (cb0
->qp_ctl_reg
& H_QP_CR_RES_STATE
) << 8;
2798 cb0
->qp_ctl_reg
|= H_QP_CR_ENABLED
;
2800 hret
= ehea_h_modify_ehea_qp(adapter
->handle
, 0, qp
->fw_handle
,
2801 EHEA_BMASK_SET(H_QPCB0_QP_CTL_REG
,
2803 &dummy64
, &dummy16
, &dummy16
);
2804 if (hret
!= H_SUCCESS
) {
2805 ehea_error("modify_ehea_qp failed (1)");
2809 hret
= ehea_h_query_ehea_qp(adapter
->handle
, 0, qp
->fw_handle
,
2810 EHEA_BMASK_SET(H_QPCB0_ALL
, 0xFFFF),
2812 if (hret
!= H_SUCCESS
) {
2813 ehea_error("query_ehea_qp failed (2)");
2817 /* refill entire queue */
2818 ehea_refill_rq1(pr
, pr
->rq1_skba
.index
, 0);
2819 ehea_refill_rq2(pr
, 0);
2820 ehea_refill_rq3(pr
, 0);
2828 static void ehea_reset_port(struct work_struct
*work
)
2831 struct ehea_port
*port
=
2832 container_of(work
, struct ehea_port
, reset_task
);
2833 struct net_device
*dev
= port
->netdev
;
2836 mutex_lock(&port
->port_lock
);
2837 netif_stop_queue(dev
);
2839 port_napi_disable(port
);
2847 ehea_set_multicast_list(dev
);
2849 if (netif_msg_timer(port
))
2850 ehea_info("Device %s resetted successfully", dev
->name
);
2852 port_napi_enable(port
);
2854 netif_wake_queue(dev
);
2856 mutex_unlock(&port
->port_lock
);
2860 static void ehea_rereg_mrs(struct work_struct
*work
)
2863 struct ehea_adapter
*adapter
;
2865 mutex_lock(&dlpar_mem_lock
);
2866 ehea_info("LPAR memory enlarged - re-initializing driver");
2868 list_for_each_entry(adapter
, &adapter_list
, list
)
2869 if (adapter
->active_ports
) {
2870 /* Shutdown all ports */
2871 for (i
= 0; i
< EHEA_MAX_PORTS
; i
++) {
2872 struct ehea_port
*port
= adapter
->port
[i
];
2873 struct net_device
*dev
;
2880 if (dev
->flags
& IFF_UP
) {
2881 mutex_lock(&port
->port_lock
);
2882 netif_stop_queue(dev
);
2883 ehea_flush_sq(port
);
2884 ret
= ehea_stop_qps(dev
);
2886 mutex_unlock(&port
->port_lock
);
2889 port_napi_disable(port
);
2890 mutex_unlock(&port
->port_lock
);
2894 /* Unregister old memory region */
2895 ret
= ehea_rem_mr(&adapter
->mr
);
2897 ehea_error("unregister MR failed - driver"
2903 ehea_destroy_busmap();
2904 ret
= ehea_create_busmap();
2906 ehea_error("creating ehea busmap failed");
2910 clear_bit(__EHEA_STOP_XFER
, &ehea_driver_flags
);
2912 list_for_each_entry(adapter
, &adapter_list
, list
)
2913 if (adapter
->active_ports
) {
2914 /* Register new memory region */
2915 ret
= ehea_reg_kernel_mr(adapter
, &adapter
->mr
);
2917 ehea_error("register MR failed - driver"
2922 /* Restart all ports */
2923 for (i
= 0; i
< EHEA_MAX_PORTS
; i
++) {
2924 struct ehea_port
*port
= adapter
->port
[i
];
2927 struct net_device
*dev
= port
->netdev
;
2929 if (dev
->flags
& IFF_UP
) {
2930 mutex_lock(&port
->port_lock
);
2931 port_napi_enable(port
);
2932 ret
= ehea_restart_qps(dev
);
2934 netif_wake_queue(dev
);
2935 mutex_unlock(&port
->port_lock
);
2940 mutex_unlock(&dlpar_mem_lock
);
2941 ehea_info("re-initializing driver complete");
2946 static void ehea_tx_watchdog(struct net_device
*dev
)
2948 struct ehea_port
*port
= netdev_priv(dev
);
2950 if (netif_carrier_ok(dev
) &&
2951 !test_bit(__EHEA_STOP_XFER
, &ehea_driver_flags
))
2952 ehea_schedule_port_reset(port
);
2955 int ehea_sense_adapter_attr(struct ehea_adapter
*adapter
)
2957 struct hcp_query_ehea
*cb
;
2961 cb
= kzalloc(PAGE_SIZE
, GFP_KERNEL
);
2967 hret
= ehea_h_query_ehea(adapter
->handle
, cb
);
2969 if (hret
!= H_SUCCESS
) {
2974 adapter
->max_mc_mac
= cb
->max_mc_mac
- 1;
2983 int ehea_get_jumboframe_status(struct ehea_port
*port
, int *jumbo
)
2985 struct hcp_ehea_port_cb4
*cb4
;
2991 /* (Try to) enable *jumbo frames */
2992 cb4
= kzalloc(PAGE_SIZE
, GFP_KERNEL
);
2994 ehea_error("no mem for cb4");
2998 hret
= ehea_h_query_ehea_port(port
->adapter
->handle
,
2999 port
->logical_port_id
,
3001 H_PORT_CB4_JUMBO
, cb4
);
3002 if (hret
== H_SUCCESS
) {
3003 if (cb4
->jumbo_frame
)
3006 cb4
->jumbo_frame
= 1;
3007 hret
= ehea_h_modify_ehea_port(port
->adapter
->
3014 if (hret
== H_SUCCESS
)
3026 static ssize_t
ehea_show_port_id(struct device
*dev
,
3027 struct device_attribute
*attr
, char *buf
)
3029 struct ehea_port
*port
= container_of(dev
, struct ehea_port
, ofdev
.dev
);
3030 return sprintf(buf
, "%d", port
->logical_port_id
);
3033 static DEVICE_ATTR(log_port_id
, S_IRUSR
| S_IRGRP
| S_IROTH
, ehea_show_port_id
,
3036 static void __devinit
logical_port_release(struct device
*dev
)
3038 struct ehea_port
*port
= container_of(dev
, struct ehea_port
, ofdev
.dev
);
3039 of_node_put(port
->ofdev
.node
);
3042 static struct device
*ehea_register_port(struct ehea_port
*port
,
3043 struct device_node
*dn
)
3047 port
->ofdev
.node
= of_node_get(dn
);
3048 port
->ofdev
.dev
.parent
= &port
->adapter
->ofdev
->dev
;
3049 port
->ofdev
.dev
.bus
= &ibmebus_bus_type
;
3051 sprintf(port
->ofdev
.dev
.bus_id
, "port%d", port_name_cnt
++);
3052 port
->ofdev
.dev
.release
= logical_port_release
;
3054 ret
= of_device_register(&port
->ofdev
);
3056 ehea_error("failed to register device. ret=%d", ret
);
3060 ret
= device_create_file(&port
->ofdev
.dev
, &dev_attr_log_port_id
);
3062 ehea_error("failed to register attributes, ret=%d", ret
);
3063 goto out_unreg_of_dev
;
3066 return &port
->ofdev
.dev
;
3069 of_device_unregister(&port
->ofdev
);
3074 static void ehea_unregister_port(struct ehea_port
*port
)
3076 device_remove_file(&port
->ofdev
.dev
, &dev_attr_log_port_id
);
3077 of_device_unregister(&port
->ofdev
);
3080 struct ehea_port
*ehea_setup_single_port(struct ehea_adapter
*adapter
,
3081 u32 logical_port_id
,
3082 struct device_node
*dn
)
3085 struct net_device
*dev
;
3086 struct ehea_port
*port
;
3087 struct device
*port_dev
;
3090 /* allocate memory for the port structures */
3091 dev
= alloc_etherdev(sizeof(struct ehea_port
));
3094 ehea_error("no mem for net_device");
3099 port
= netdev_priv(dev
);
3101 mutex_init(&port
->port_lock
);
3102 port
->state
= EHEA_PORT_DOWN
;
3103 port
->sig_comp_iv
= sq_entries
/ 10;
3105 port
->adapter
= adapter
;
3107 port
->logical_port_id
= logical_port_id
;
3109 port
->msg_enable
= netif_msg_init(msg_level
, EHEA_MSG_DEFAULT
);
3111 port
->mc_list
= kzalloc(sizeof(struct ehea_mc_list
), GFP_KERNEL
);
3112 if (!port
->mc_list
) {
3114 goto out_free_ethdev
;
3117 INIT_LIST_HEAD(&port
->mc_list
->list
);
3119 ret
= ehea_sense_port_attr(port
);
3121 goto out_free_mc_list
;
3123 port_dev
= ehea_register_port(port
, dn
);
3125 goto out_free_mc_list
;
3127 SET_NETDEV_DEV(dev
, port_dev
);
3129 /* initialize net_device structure */
3130 memcpy(dev
->dev_addr
, &port
->mac_addr
, ETH_ALEN
);
3132 dev
->open
= ehea_open
;
3133 #ifdef CONFIG_NET_POLL_CONTROLLER
3134 dev
->poll_controller
= ehea_netpoll
;
3136 dev
->stop
= ehea_stop
;
3137 dev
->hard_start_xmit
= ehea_start_xmit
;
3138 dev
->get_stats
= ehea_get_stats
;
3139 dev
->set_multicast_list
= ehea_set_multicast_list
;
3140 dev
->set_mac_address
= ehea_set_mac_addr
;
3141 dev
->change_mtu
= ehea_change_mtu
;
3142 dev
->vlan_rx_register
= ehea_vlan_rx_register
;
3143 dev
->vlan_rx_add_vid
= ehea_vlan_rx_add_vid
;
3144 dev
->vlan_rx_kill_vid
= ehea_vlan_rx_kill_vid
;
3145 dev
->features
= NETIF_F_SG
| NETIF_F_FRAGLIST
| NETIF_F_TSO
3146 | NETIF_F_HIGHDMA
| NETIF_F_IP_CSUM
| NETIF_F_HW_VLAN_TX
3147 | NETIF_F_HW_VLAN_RX
| NETIF_F_HW_VLAN_FILTER
3149 dev
->tx_timeout
= &ehea_tx_watchdog
;
3150 dev
->watchdog_timeo
= EHEA_WATCH_DOG_TIMEOUT
;
3152 INIT_WORK(&port
->reset_task
, ehea_reset_port
);
3153 ehea_set_ethtool_ops(dev
);
3155 ret
= register_netdev(dev
);
3157 ehea_error("register_netdev failed. ret=%d", ret
);
3158 goto out_unreg_port
;
3161 port
->lro_max_aggr
= lro_max_aggr
;
3163 ret
= ehea_get_jumboframe_status(port
, &jumbo
);
3165 ehea_error("failed determining jumbo frame status for %s",
3166 port
->netdev
->name
);
3168 ehea_info("%s: Jumbo frames are %sabled", dev
->name
,
3169 jumbo
== 1 ? "en" : "dis");
3171 adapter
->active_ports
++;
3176 ehea_unregister_port(port
);
3179 kfree(port
->mc_list
);
3185 ehea_error("setting up logical port with id=%d failed, ret=%d",
3186 logical_port_id
, ret
);
3190 static void ehea_shutdown_single_port(struct ehea_port
*port
)
3192 struct ehea_adapter
*adapter
= port
->adapter
;
3193 unregister_netdev(port
->netdev
);
3194 ehea_unregister_port(port
);
3195 kfree(port
->mc_list
);
3196 free_netdev(port
->netdev
);
3197 adapter
->active_ports
--;
3200 static int ehea_setup_ports(struct ehea_adapter
*adapter
)
3202 struct device_node
*lhea_dn
;
3203 struct device_node
*eth_dn
= NULL
;
3205 const u32
*dn_log_port_id
;
3208 lhea_dn
= adapter
->ofdev
->node
;
3209 while ((eth_dn
= of_get_next_child(lhea_dn
, eth_dn
))) {
3211 dn_log_port_id
= of_get_property(eth_dn
, "ibm,hea-port-no",
3213 if (!dn_log_port_id
) {
3214 ehea_error("bad device node: eth_dn name=%s",
3219 if (ehea_add_adapter_mr(adapter
)) {
3220 ehea_error("creating MR failed");
3221 of_node_put(eth_dn
);
3225 adapter
->port
[i
] = ehea_setup_single_port(adapter
,
3228 if (adapter
->port
[i
])
3229 ehea_info("%s -> logical port id #%d",
3230 adapter
->port
[i
]->netdev
->name
,
3233 ehea_remove_adapter_mr(adapter
);
3240 static struct device_node
*ehea_get_eth_dn(struct ehea_adapter
*adapter
,
3241 u32 logical_port_id
)
3243 struct device_node
*lhea_dn
;
3244 struct device_node
*eth_dn
= NULL
;
3245 const u32
*dn_log_port_id
;
3247 lhea_dn
= adapter
->ofdev
->node
;
3248 while ((eth_dn
= of_get_next_child(lhea_dn
, eth_dn
))) {
3250 dn_log_port_id
= of_get_property(eth_dn
, "ibm,hea-port-no",
3253 if (*dn_log_port_id
== logical_port_id
)
3260 static ssize_t
ehea_probe_port(struct device
*dev
,
3261 struct device_attribute
*attr
,
3262 const char *buf
, size_t count
)
3264 struct ehea_adapter
*adapter
= dev
->driver_data
;
3265 struct ehea_port
*port
;
3266 struct device_node
*eth_dn
= NULL
;
3269 u32 logical_port_id
;
3271 sscanf(buf
, "%d", &logical_port_id
);
3273 port
= ehea_get_port(adapter
, logical_port_id
);
3276 ehea_info("adding port with logical port id=%d failed. port "
3277 "already configured as %s.", logical_port_id
,
3278 port
->netdev
->name
);
3282 eth_dn
= ehea_get_eth_dn(adapter
, logical_port_id
);
3285 ehea_info("no logical port with id %d found", logical_port_id
);
3289 if (ehea_add_adapter_mr(adapter
)) {
3290 ehea_error("creating MR failed");
3294 port
= ehea_setup_single_port(adapter
, logical_port_id
, eth_dn
);
3296 of_node_put(eth_dn
);
3299 for (i
= 0; i
< EHEA_MAX_PORTS
; i
++)
3300 if (!adapter
->port
[i
]) {
3301 adapter
->port
[i
] = port
;
3305 ehea_info("added %s (logical port id=%d)", port
->netdev
->name
,
3308 ehea_remove_adapter_mr(adapter
);
3312 return (ssize_t
) count
;
3315 static ssize_t
ehea_remove_port(struct device
*dev
,
3316 struct device_attribute
*attr
,
3317 const char *buf
, size_t count
)
3319 struct ehea_adapter
*adapter
= dev
->driver_data
;
3320 struct ehea_port
*port
;
3322 u32 logical_port_id
;
3324 sscanf(buf
, "%d", &logical_port_id
);
3326 port
= ehea_get_port(adapter
, logical_port_id
);
3329 ehea_info("removed %s (logical port id=%d)", port
->netdev
->name
,
3332 ehea_shutdown_single_port(port
);
3334 for (i
= 0; i
< EHEA_MAX_PORTS
; i
++)
3335 if (adapter
->port
[i
] == port
) {
3336 adapter
->port
[i
] = NULL
;
3340 ehea_error("removing port with logical port id=%d failed. port "
3341 "not configured.", logical_port_id
);
3345 ehea_remove_adapter_mr(adapter
);
3347 return (ssize_t
) count
;
3350 static DEVICE_ATTR(probe_port
, S_IWUSR
, NULL
, ehea_probe_port
);
3351 static DEVICE_ATTR(remove_port
, S_IWUSR
, NULL
, ehea_remove_port
);
3353 int ehea_create_device_sysfs(struct of_device
*dev
)
3355 int ret
= device_create_file(&dev
->dev
, &dev_attr_probe_port
);
3359 ret
= device_create_file(&dev
->dev
, &dev_attr_remove_port
);
3364 void ehea_remove_device_sysfs(struct of_device
*dev
)
3366 device_remove_file(&dev
->dev
, &dev_attr_probe_port
);
3367 device_remove_file(&dev
->dev
, &dev_attr_remove_port
);
3370 static int __devinit
ehea_probe_adapter(struct of_device
*dev
,
3371 const struct of_device_id
*id
)
3373 struct ehea_adapter
*adapter
;
3374 const u64
*adapter_handle
;
3377 if (!dev
|| !dev
->node
) {
3378 ehea_error("Invalid ibmebus device probed");
3381 mutex_lock(&ehea_fw_handles
.lock
);
3383 adapter
= kzalloc(sizeof(*adapter
), GFP_KERNEL
);
3386 dev_err(&dev
->dev
, "no mem for ehea_adapter\n");
3390 list_add(&adapter
->list
, &adapter_list
);
3392 adapter
->ofdev
= dev
;
3394 adapter_handle
= of_get_property(dev
->node
, "ibm,hea-handle",
3397 adapter
->handle
= *adapter_handle
;
3399 if (!adapter
->handle
) {
3400 dev_err(&dev
->dev
, "failed getting handle for adapter"
3401 " '%s'\n", dev
->node
->full_name
);
3406 adapter
->pd
= EHEA_PD_ID
;
3408 dev
->dev
.driver_data
= adapter
;
3411 /* initialize adapter and ports */
3412 /* get adapter properties */
3413 ret
= ehea_sense_adapter_attr(adapter
);
3415 dev_err(&dev
->dev
, "sense_adapter_attr failed: %d\n", ret
);
3419 adapter
->neq
= ehea_create_eq(adapter
,
3420 EHEA_NEQ
, EHEA_MAX_ENTRIES_EQ
, 1);
3421 if (!adapter
->neq
) {
3423 dev_err(&dev
->dev
, "NEQ creation failed\n");
3427 tasklet_init(&adapter
->neq_tasklet
, ehea_neq_tasklet
,
3428 (unsigned long)adapter
);
3430 ret
= ibmebus_request_irq(adapter
->neq
->attr
.ist1
,
3431 ehea_interrupt_neq
, IRQF_DISABLED
,
3432 "ehea_neq", adapter
);
3434 dev_err(&dev
->dev
, "requesting NEQ IRQ failed\n");
3438 ret
= ehea_create_device_sysfs(dev
);
3442 ret
= ehea_setup_ports(adapter
);
3444 dev_err(&dev
->dev
, "setup_ports failed\n");
3445 goto out_rem_dev_sysfs
;
3452 ehea_remove_device_sysfs(dev
);
3455 ibmebus_free_irq(adapter
->neq
->attr
.ist1
, adapter
);
3458 ehea_destroy_eq(adapter
->neq
);
3464 ehea_update_firmware_handles();
3465 mutex_unlock(&ehea_fw_handles
.lock
);
3469 static int __devexit
ehea_remove(struct of_device
*dev
)
3471 struct ehea_adapter
*adapter
= dev
->dev
.driver_data
;
3474 for (i
= 0; i
< EHEA_MAX_PORTS
; i
++)
3475 if (adapter
->port
[i
]) {
3476 ehea_shutdown_single_port(adapter
->port
[i
]);
3477 adapter
->port
[i
] = NULL
;
3480 ehea_remove_device_sysfs(dev
);
3482 flush_scheduled_work();
3484 mutex_lock(&ehea_fw_handles
.lock
);
3486 ibmebus_free_irq(adapter
->neq
->attr
.ist1
, adapter
);
3487 tasklet_kill(&adapter
->neq_tasklet
);
3489 ehea_destroy_eq(adapter
->neq
);
3490 ehea_remove_adapter_mr(adapter
);
3491 list_del(&adapter
->list
);
3494 ehea_update_firmware_handles();
3495 mutex_unlock(&ehea_fw_handles
.lock
);
3500 void ehea_crash_handler(void)
3504 if (ehea_fw_handles
.arr
)
3505 for (i
= 0; i
< ehea_fw_handles
.num_entries
; i
++)
3506 ehea_h_free_resource(ehea_fw_handles
.arr
[i
].adh
,
3507 ehea_fw_handles
.arr
[i
].fwh
,
3510 if (ehea_bcmc_regs
.arr
)
3511 for (i
= 0; i
< ehea_bcmc_regs
.num_entries
; i
++)
3512 ehea_h_reg_dereg_bcmc(ehea_bcmc_regs
.arr
[i
].adh
,
3513 ehea_bcmc_regs
.arr
[i
].port_id
,
3514 ehea_bcmc_regs
.arr
[i
].reg_type
,
3515 ehea_bcmc_regs
.arr
[i
].macaddr
,
3519 static int ehea_mem_notifier(struct notifier_block
*nb
,
3520 unsigned long action
, void *data
)
3524 ehea_info("memory has been removed");
3525 ehea_rereg_mrs(NULL
);
3533 static struct notifier_block ehea_mem_nb
= {
3534 .notifier_call
= ehea_mem_notifier
,
3537 static int ehea_reboot_notifier(struct notifier_block
*nb
,
3538 unsigned long action
, void *unused
)
3540 if (action
== SYS_RESTART
) {
3541 ehea_info("Reboot: freeing all eHEA resources");
3542 ibmebus_unregister_driver(&ehea_driver
);
3547 static struct notifier_block ehea_reboot_nb
= {
3548 .notifier_call
= ehea_reboot_notifier
,
3551 static int check_module_parm(void)
3555 if ((rq1_entries
< EHEA_MIN_ENTRIES_QP
) ||
3556 (rq1_entries
> EHEA_MAX_ENTRIES_RQ1
)) {
3557 ehea_info("Bad parameter: rq1_entries");
3560 if ((rq2_entries
< EHEA_MIN_ENTRIES_QP
) ||
3561 (rq2_entries
> EHEA_MAX_ENTRIES_RQ2
)) {
3562 ehea_info("Bad parameter: rq2_entries");
3565 if ((rq3_entries
< EHEA_MIN_ENTRIES_QP
) ||
3566 (rq3_entries
> EHEA_MAX_ENTRIES_RQ3
)) {
3567 ehea_info("Bad parameter: rq3_entries");
3570 if ((sq_entries
< EHEA_MIN_ENTRIES_QP
) ||
3571 (sq_entries
> EHEA_MAX_ENTRIES_SQ
)) {
3572 ehea_info("Bad parameter: sq_entries");
3579 static ssize_t
ehea_show_capabilities(struct device_driver
*drv
,
3582 return sprintf(buf
, "%d", EHEA_CAPABILITIES
);
3585 static DRIVER_ATTR(capabilities
, S_IRUSR
| S_IRGRP
| S_IROTH
,
3586 ehea_show_capabilities
, NULL
);
3588 int __init
ehea_module_init(void)
3592 printk(KERN_INFO
"IBM eHEA ethernet device driver (Release %s)\n",
3596 INIT_WORK(&ehea_rereg_mr_task
, ehea_rereg_mrs
);
3597 memset(&ehea_fw_handles
, 0, sizeof(ehea_fw_handles
));
3598 memset(&ehea_bcmc_regs
, 0, sizeof(ehea_bcmc_regs
));
3600 mutex_init(&ehea_fw_handles
.lock
);
3601 spin_lock_init(&ehea_bcmc_regs
.lock
);
3603 ret
= check_module_parm();
3607 ret
= ehea_create_busmap();
3611 ret
= register_reboot_notifier(&ehea_reboot_nb
);
3613 ehea_info("failed registering reboot notifier");
3615 ret
= register_memory_notifier(&ehea_mem_nb
);
3617 ehea_info("failed registering memory remove notifier");
3619 ret
= crash_shutdown_register(&ehea_crash_handler
);
3621 ehea_info("failed registering crash handler");
3623 ret
= ibmebus_register_driver(&ehea_driver
);
3625 ehea_error("failed registering eHEA device driver on ebus");
3629 ret
= driver_create_file(&ehea_driver
.driver
,
3630 &driver_attr_capabilities
);
3632 ehea_error("failed to register capabilities attribute, ret=%d",
3640 ibmebus_unregister_driver(&ehea_driver
);
3642 unregister_memory_notifier(&ehea_mem_nb
);
3643 unregister_reboot_notifier(&ehea_reboot_nb
);
3644 crash_shutdown_unregister(&ehea_crash_handler
);
3649 static void __exit
ehea_module_exit(void)
3653 flush_scheduled_work();
3654 driver_remove_file(&ehea_driver
.driver
, &driver_attr_capabilities
);
3655 ibmebus_unregister_driver(&ehea_driver
);
3656 unregister_reboot_notifier(&ehea_reboot_nb
);
3657 ret
= crash_shutdown_unregister(&ehea_crash_handler
);
3659 ehea_info("failed unregistering crash handler");
3660 unregister_memory_notifier(&ehea_mem_nb
);
3661 kfree(ehea_fw_handles
.arr
);
3662 kfree(ehea_bcmc_regs
.arr
);
3663 ehea_destroy_busmap();
3666 module_init(ehea_module_init
);
3667 module_exit(ehea_module_exit
);