3 * linux/drivers/s390/net/qeth_eddp.c ($Revision: 1.13 $)
5 * Enhanced Device Driver Packing (EDDP) support for the qeth driver.
7 * Copyright 2004 IBM Corporation
9 * Author(s): Thomas Spatzier <tspat@de.ibm.com>
11 * $Revision: 1.13 $ $Date: 2005/05/04 20:19:18 $
14 #include <linux/config.h>
15 #include <linux/errno.h>
17 #include <linux/inetdevice.h>
18 #include <linux/netdevice.h>
19 #include <linux/kernel.h>
20 #include <linux/tcp.h>
22 #include <linux/skbuff.h>
28 #include "qeth_eddp.h"
31 qeth_eddp_check_buffers_for_context(struct qeth_qdio_out_q
*queue
,
32 struct qeth_eddp_context
*ctx
)
34 int index
= queue
->next_buf_to_fill
;
35 int elements_needed
= ctx
->num_elements
;
36 int elements_in_buffer
;
38 int buffers_needed
= 0;
40 QETH_DBF_TEXT(trace
, 5, "eddpcbfc");
41 while(elements_needed
> 0) {
43 if (atomic_read(&queue
->bufs
[index
].state
) !=
47 elements_in_buffer
= QETH_MAX_BUFFER_ELEMENTS(queue
->card
) -
48 queue
->bufs
[index
].next_element_to_fill
;
49 skbs_in_buffer
= elements_in_buffer
/ ctx
->elements_per_skb
;
50 elements_needed
-= skbs_in_buffer
* ctx
->elements_per_skb
;
51 index
= (index
+ 1) % QDIO_MAX_BUFFERS_PER_Q
;
53 return buffers_needed
;
57 qeth_eddp_free_context(struct qeth_eddp_context
*ctx
)
61 QETH_DBF_TEXT(trace
, 5, "eddpfctx");
62 for (i
= 0; i
< ctx
->num_pages
; ++i
)
63 free_page((unsigned long)ctx
->pages
[i
]);
65 if (ctx
->elements
!= NULL
)
72 qeth_eddp_get_context(struct qeth_eddp_context
*ctx
)
74 atomic_inc(&ctx
->refcnt
);
78 qeth_eddp_put_context(struct qeth_eddp_context
*ctx
)
80 if (atomic_dec_return(&ctx
->refcnt
) == 0)
81 qeth_eddp_free_context(ctx
);
85 qeth_eddp_buf_release_contexts(struct qeth_qdio_out_buffer
*buf
)
87 struct qeth_eddp_context_reference
*ref
;
89 QETH_DBF_TEXT(trace
, 6, "eddprctx");
90 while (!list_empty(&buf
->ctx_list
)){
91 ref
= list_entry(buf
->ctx_list
.next
,
92 struct qeth_eddp_context_reference
, list
);
93 qeth_eddp_put_context(ref
->ctx
);
100 qeth_eddp_buf_ref_context(struct qeth_qdio_out_buffer
*buf
,
101 struct qeth_eddp_context
*ctx
)
103 struct qeth_eddp_context_reference
*ref
;
105 QETH_DBF_TEXT(trace
, 6, "eddprfcx");
106 ref
= kmalloc(sizeof(struct qeth_eddp_context_reference
), GFP_ATOMIC
);
109 qeth_eddp_get_context(ctx
);
111 list_add_tail(&ref
->list
, &buf
->ctx_list
);
116 qeth_eddp_fill_buffer(struct qeth_qdio_out_q
*queue
,
117 struct qeth_eddp_context
*ctx
,
120 struct qeth_qdio_out_buffer
*buf
= NULL
;
121 struct qdio_buffer
*buffer
;
122 int elements
= ctx
->num_elements
;
128 QETH_DBF_TEXT(trace
, 5, "eddpfibu");
129 while (elements
> 0) {
130 buf
= &queue
->bufs
[index
];
131 if (atomic_read(&buf
->state
) != QETH_QDIO_BUF_EMPTY
){
132 /* normally this should not happen since we checked for
133 * available elements in qeth_check_elements_for_context
138 PRINT_WARN("could only partially fill eddp "
143 /* check if the whole next skb fits into current buffer */
144 if ((QETH_MAX_BUFFER_ELEMENTS(queue
->card
) -
145 buf
->next_element_to_fill
)
146 < ctx
->elements_per_skb
){
147 /* no -> go to next buffer */
148 atomic_set(&buf
->state
, QETH_QDIO_BUF_PRIMED
);
149 index
= (index
+ 1) % QDIO_MAX_BUFFERS_PER_Q
;
151 /* new buffer, so we have to add ctx to buffer'ctx_list
152 * and increment ctx's refcnt */
158 if (qeth_eddp_buf_ref_context(buf
, ctx
)){
159 PRINT_WARN("no memory to create eddp context "
164 buffer
= buf
->buffer
;
165 /* fill one skb into buffer */
166 for (i
= 0; i
< ctx
->elements_per_skb
; ++i
){
167 buffer
->element
[buf
->next_element_to_fill
].addr
=
168 ctx
->elements
[element
].addr
;
169 buffer
->element
[buf
->next_element_to_fill
].length
=
170 ctx
->elements
[element
].length
;
171 buffer
->element
[buf
->next_element_to_fill
].flags
=
172 ctx
->elements
[element
].flags
;
173 buf
->next_element_to_fill
++;
179 if (!queue
->do_pack
) {
180 QETH_DBF_TEXT(trace
, 6, "fillbfnp");
181 /* set state to PRIMED -> will be flushed */
182 if (buf
->next_element_to_fill
> 0){
183 atomic_set(&buf
->state
, QETH_QDIO_BUF_PRIMED
);
187 #ifdef CONFIG_QETH_PERF_STATS
188 queue
->card
->perf_stats
.skbs_sent_pack
++;
190 QETH_DBF_TEXT(trace
, 6, "fillbfpa");
191 if (buf
->next_element_to_fill
>=
192 QETH_MAX_BUFFER_ELEMENTS(queue
->card
)) {
194 * packed buffer if full -> set state PRIMED
197 atomic_set(&buf
->state
, QETH_QDIO_BUF_PRIMED
);
206 qeth_eddp_create_segment_hdrs(struct qeth_eddp_context
*ctx
,
207 struct qeth_eddp_data
*eddp
, int data_len
)
213 struct qeth_eddp_element
*element
;
215 QETH_DBF_TEXT(trace
, 5, "eddpcrsh");
216 page
= ctx
->pages
[ctx
->offset
>> PAGE_SHIFT
];
217 page_offset
= ctx
->offset
% PAGE_SIZE
;
218 element
= &ctx
->elements
[ctx
->num_elements
];
219 pkt_len
= eddp
->nhl
+ eddp
->thl
+ data_len
;
220 /* FIXME: layer2 and VLAN !!! */
221 if (eddp
->qh
.hdr
.l2
.id
== QETH_HEADER_TYPE_LAYER2
)
223 if (eddp
->mac
.h_proto
== __constant_htons(ETH_P_8021Q
))
224 pkt_len
+= VLAN_HLEN
;
225 /* does complete packet fit in current page ? */
226 page_remainder
= PAGE_SIZE
- page_offset
;
227 if (page_remainder
< (sizeof(struct qeth_hdr
) + pkt_len
)){
228 /* no -> go to start of next page */
229 ctx
->offset
+= page_remainder
;
230 page
= ctx
->pages
[ctx
->offset
>> PAGE_SHIFT
];
233 memcpy(page
+ page_offset
, &eddp
->qh
, sizeof(struct qeth_hdr
));
234 element
->addr
= page
+ page_offset
;
235 element
->length
= sizeof(struct qeth_hdr
);
236 ctx
->offset
+= sizeof(struct qeth_hdr
);
237 page_offset
+= sizeof(struct qeth_hdr
);
238 /* add mac header (?) */
239 if (eddp
->qh
.hdr
.l2
.id
== QETH_HEADER_TYPE_LAYER2
){
240 memcpy(page
+ page_offset
, &eddp
->mac
, ETH_HLEN
);
241 element
->length
+= ETH_HLEN
;
242 ctx
->offset
+= ETH_HLEN
;
243 page_offset
+= ETH_HLEN
;
246 if (eddp
->mac
.h_proto
== __constant_htons(ETH_P_8021Q
)){
247 memcpy(page
+ page_offset
, &eddp
->vlan
, VLAN_HLEN
);
248 element
->length
+= VLAN_HLEN
;
249 ctx
->offset
+= VLAN_HLEN
;
250 page_offset
+= VLAN_HLEN
;
252 /* add network header */
253 memcpy(page
+ page_offset
, (u8
*)&eddp
->nh
, eddp
->nhl
);
254 element
->length
+= eddp
->nhl
;
255 eddp
->nh_in_ctx
= page
+ page_offset
;
256 ctx
->offset
+= eddp
->nhl
;
257 page_offset
+= eddp
->nhl
;
258 /* add transport header */
259 memcpy(page
+ page_offset
, (u8
*)&eddp
->th
, eddp
->thl
);
260 element
->length
+= eddp
->thl
;
261 eddp
->th_in_ctx
= page
+ page_offset
;
262 ctx
->offset
+= eddp
->thl
;
266 qeth_eddp_copy_data_tcp(char *dst
, struct qeth_eddp_data
*eddp
, int len
,
269 struct skb_frag_struct
*frag
;
274 QETH_DBF_TEXT(trace
, 5, "eddpcdtc");
275 if (skb_shinfo(eddp
->skb
)->nr_frags
== 0) {
276 memcpy(dst
, eddp
->skb
->data
+ eddp
->skb_offset
, len
);
277 *hcsum
= csum_partial(eddp
->skb
->data
+ eddp
->skb_offset
, len
,
279 eddp
->skb_offset
+= len
;
282 if (eddp
->frag
< 0) {
283 /* we're in skb->data */
284 left_in_frag
= (eddp
->skb
->len
- eddp
->skb
->data_len
)
286 src
= eddp
->skb
->data
+ eddp
->skb_offset
;
288 frag
= &skb_shinfo(eddp
->skb
)->
290 left_in_frag
= frag
->size
- eddp
->frag_offset
;
292 (page_to_pfn(frag
->page
) << PAGE_SHIFT
)+
293 frag
->page_offset
+ eddp
->frag_offset
);
295 if (left_in_frag
<= 0) {
297 eddp
->frag_offset
= 0;
300 copy_len
= min(left_in_frag
, len
);
301 memcpy(dst
, src
, copy_len
);
302 *hcsum
= csum_partial(src
, copy_len
, *hcsum
);
304 eddp
->frag_offset
+= copy_len
;
305 eddp
->skb_offset
+= copy_len
;
312 qeth_eddp_create_segment_data_tcp(struct qeth_eddp_context
*ctx
,
313 struct qeth_eddp_data
*eddp
, int data_len
,
319 struct qeth_eddp_element
*element
;
322 QETH_DBF_TEXT(trace
, 5, "eddpcsdt");
323 page
= ctx
->pages
[ctx
->offset
>> PAGE_SHIFT
];
324 page_offset
= ctx
->offset
% PAGE_SIZE
;
325 element
= &ctx
->elements
[ctx
->num_elements
];
327 page_remainder
= PAGE_SIZE
- page_offset
;
328 if (page_remainder
< data_len
){
329 qeth_eddp_copy_data_tcp(page
+ page_offset
, eddp
,
330 page_remainder
, &hcsum
);
331 element
->length
+= page_remainder
;
333 element
->flags
= SBAL_FLAGS_FIRST_FRAG
;
335 element
->flags
= SBAL_FLAGS_MIDDLE_FRAG
;
338 data_len
-= page_remainder
;
339 ctx
->offset
+= page_remainder
;
340 page
= ctx
->pages
[ctx
->offset
>> PAGE_SHIFT
];
342 element
->addr
= page
+ page_offset
;
344 qeth_eddp_copy_data_tcp(page
+ page_offset
, eddp
,
346 element
->length
+= data_len
;
348 element
->flags
= SBAL_FLAGS_LAST_FRAG
;
350 ctx
->offset
+= data_len
;
355 ((struct tcphdr
*)eddp
->th_in_ctx
)->check
= csum_fold(hcsum
);
359 qeth_eddp_check_tcp4_hdr(struct qeth_eddp_data
*eddp
, int data_len
)
361 u32 phcsum
; /* pseudo header checksum */
363 QETH_DBF_TEXT(trace
, 5, "eddpckt4");
364 eddp
->th
.tcp
.h
.check
= 0;
365 /* compute pseudo header checksum */
366 phcsum
= csum_tcpudp_nofold(eddp
->nh
.ip4
.h
.saddr
, eddp
->nh
.ip4
.h
.daddr
,
367 eddp
->thl
+ data_len
, IPPROTO_TCP
, 0);
368 /* compute checksum of tcp header */
369 return csum_partial((u8
*)&eddp
->th
, eddp
->thl
, phcsum
);
373 qeth_eddp_check_tcp6_hdr(struct qeth_eddp_data
*eddp
, int data_len
)
376 u32 phcsum
; /* pseudo header checksum */
378 QETH_DBF_TEXT(trace
, 5, "eddpckt6");
379 eddp
->th
.tcp
.h
.check
= 0;
380 /* compute pseudo header checksum */
381 phcsum
= csum_partial((u8
*)&eddp
->nh
.ip6
.h
.saddr
,
382 sizeof(struct in6_addr
), 0);
383 phcsum
= csum_partial((u8
*)&eddp
->nh
.ip6
.h
.daddr
,
384 sizeof(struct in6_addr
), phcsum
);
385 proto
= htonl(IPPROTO_TCP
);
386 phcsum
= csum_partial((u8
*)&proto
, sizeof(u32
), phcsum
);
390 static inline struct qeth_eddp_data
*
391 qeth_eddp_create_eddp_data(struct qeth_hdr
*qh
, u8
*nh
, u8 nhl
, u8
*th
, u8 thl
)
393 struct qeth_eddp_data
*eddp
;
395 QETH_DBF_TEXT(trace
, 5, "eddpcrda");
396 eddp
= kmalloc(sizeof(struct qeth_eddp_data
), GFP_ATOMIC
);
398 memset(eddp
, 0, sizeof(struct qeth_eddp_data
));
401 memcpy(&eddp
->qh
, qh
, sizeof(struct qeth_hdr
));
402 memcpy(&eddp
->nh
, nh
, nhl
);
403 memcpy(&eddp
->th
, th
, thl
);
404 eddp
->frag
= -1; /* initially we're in skb->data */
410 __qeth_eddp_fill_context_tcp(struct qeth_eddp_context
*ctx
,
411 struct qeth_eddp_data
*eddp
)
417 QETH_DBF_TEXT(trace
, 5, "eddpftcp");
418 eddp
->skb_offset
= sizeof(struct qeth_hdr
) + eddp
->nhl
+ eddp
->thl
;
419 tcph
= eddp
->skb
->h
.th
;
420 while (eddp
->skb_offset
< eddp
->skb
->len
) {
421 data_len
= min((int)skb_shinfo(eddp
->skb
)->tso_size
,
422 (int)(eddp
->skb
->len
- eddp
->skb_offset
));
423 /* prepare qdio hdr */
424 if (eddp
->qh
.hdr
.l2
.id
== QETH_HEADER_TYPE_LAYER2
){
425 eddp
->qh
.hdr
.l2
.pkt_length
= data_len
+ ETH_HLEN
+
426 eddp
->nhl
+ eddp
->thl
-
427 sizeof(struct qeth_hdr
);
428 #ifdef CONFIG_QETH_VLAN
429 if (eddp
->mac
.h_proto
== __constant_htons(ETH_P_8021Q
))
430 eddp
->qh
.hdr
.l2
.pkt_length
+= VLAN_HLEN
;
431 #endif /* CONFIG_QETH_VLAN */
433 eddp
->qh
.hdr
.l3
.length
= data_len
+ eddp
->nhl
+
436 if (eddp
->skb
->protocol
== ETH_P_IP
){
437 eddp
->nh
.ip4
.h
.tot_len
= data_len
+ eddp
->nhl
+
439 eddp
->nh
.ip4
.h
.check
= 0;
440 eddp
->nh
.ip4
.h
.check
=
441 ip_fast_csum((u8
*)&eddp
->nh
.ip4
.h
,
444 eddp
->nh
.ip6
.h
.payload_len
= data_len
+ eddp
->thl
;
445 /* prepare tcp hdr */
446 if (data_len
== (eddp
->skb
->len
- eddp
->skb_offset
)){
447 /* last segment -> set FIN and PSH flags */
448 eddp
->th
.tcp
.h
.fin
= tcph
->fin
;
449 eddp
->th
.tcp
.h
.psh
= tcph
->psh
;
451 if (eddp
->skb
->protocol
== ETH_P_IP
)
452 hcsum
= qeth_eddp_check_tcp4_hdr(eddp
, data_len
);
454 hcsum
= qeth_eddp_check_tcp6_hdr(eddp
, data_len
);
455 /* fill the next segment into the context */
456 qeth_eddp_create_segment_hdrs(ctx
, eddp
, data_len
);
457 qeth_eddp_create_segment_data_tcp(ctx
, eddp
, data_len
, hcsum
);
458 if (eddp
->skb_offset
>= eddp
->skb
->len
)
460 /* prepare headers for next round */
461 if (eddp
->skb
->protocol
== ETH_P_IP
)
463 eddp
->th
.tcp
.h
.seq
+= data_len
;
468 qeth_eddp_fill_context_tcp(struct qeth_eddp_context
*ctx
,
469 struct sk_buff
*skb
, struct qeth_hdr
*qhdr
)
471 struct qeth_eddp_data
*eddp
= NULL
;
473 QETH_DBF_TEXT(trace
, 5, "eddpficx");
474 /* create our segmentation headers and copy original headers */
475 if (skb
->protocol
== ETH_P_IP
)
476 eddp
= qeth_eddp_create_eddp_data(qhdr
, (u8
*)skb
->nh
.iph
,
478 (u8
*)skb
->h
.th
, skb
->h
.th
->doff
*4);
480 eddp
= qeth_eddp_create_eddp_data(qhdr
, (u8
*)skb
->nh
.ipv6h
,
481 sizeof(struct ipv6hdr
),
482 (u8
*)skb
->h
.th
, skb
->h
.th
->doff
*4);
485 QETH_DBF_TEXT(trace
, 2, "eddpfcnm");
488 if (qhdr
->hdr
.l2
.id
== QETH_HEADER_TYPE_LAYER2
) {
489 memcpy(&eddp
->mac
, eth_hdr(skb
), ETH_HLEN
);
490 #ifdef CONFIG_QETH_VLAN
491 if (eddp
->mac
.h_proto
== __constant_htons(ETH_P_8021Q
)) {
492 eddp
->vlan
[0] = __constant_htons(skb
->protocol
);
493 eddp
->vlan
[1] = htons(vlan_tx_tag_get(skb
));
495 #endif /* CONFIG_QETH_VLAN */
497 /* the next flags will only be set on the last segment */
498 eddp
->th
.tcp
.h
.fin
= 0;
499 eddp
->th
.tcp
.h
.psh
= 0;
501 /* begin segmentation and fill context */
502 __qeth_eddp_fill_context_tcp(ctx
, eddp
);
508 qeth_eddp_calc_num_pages(struct qeth_eddp_context
*ctx
, struct sk_buff
*skb
,
513 QETH_DBF_TEXT(trace
, 5, "eddpcanp");
514 /* can we put multiple skbs in one page? */
515 skbs_per_page
= PAGE_SIZE
/ (skb_shinfo(skb
)->tso_size
+ hdr_len
);
516 if (skbs_per_page
> 1){
517 ctx
->num_pages
= (skb_shinfo(skb
)->tso_segs
+ 1) /
519 ctx
->elements_per_skb
= 1;
521 /* no -> how many elements per skb? */
522 ctx
->elements_per_skb
= (skb_shinfo(skb
)->tso_size
+ hdr_len
+
523 PAGE_SIZE
) >> PAGE_SHIFT
;
524 ctx
->num_pages
= ctx
->elements_per_skb
*
525 (skb_shinfo(skb
)->tso_segs
+ 1);
527 ctx
->num_elements
= ctx
->elements_per_skb
*
528 (skb_shinfo(skb
)->tso_segs
+ 1);
531 static inline struct qeth_eddp_context
*
532 qeth_eddp_create_context_generic(struct qeth_card
*card
, struct sk_buff
*skb
,
535 struct qeth_eddp_context
*ctx
= NULL
;
539 QETH_DBF_TEXT(trace
, 5, "creddpcg");
540 /* create the context and allocate pages */
541 ctx
= kmalloc(sizeof(struct qeth_eddp_context
), GFP_ATOMIC
);
543 QETH_DBF_TEXT(trace
, 2, "ceddpcn1");
546 memset(ctx
, 0, sizeof(struct qeth_eddp_context
));
547 ctx
->type
= QETH_LARGE_SEND_EDDP
;
548 qeth_eddp_calc_num_pages(ctx
, skb
, hdr_len
);
549 if (ctx
->elements_per_skb
> QETH_MAX_BUFFER_ELEMENTS(card
)){
550 QETH_DBF_TEXT(trace
, 2, "ceddpcis");
554 ctx
->pages
= kmalloc(ctx
->num_pages
* sizeof(u8
*), GFP_ATOMIC
);
555 if (ctx
->pages
== NULL
){
556 QETH_DBF_TEXT(trace
, 2, "ceddpcn2");
560 memset(ctx
->pages
, 0, ctx
->num_pages
* sizeof(u8
*));
561 for (i
= 0; i
< ctx
->num_pages
; ++i
){
562 addr
= (u8
*)__get_free_page(GFP_ATOMIC
);
564 QETH_DBF_TEXT(trace
, 2, "ceddpcn3");
566 qeth_eddp_free_context(ctx
);
569 memset(addr
, 0, PAGE_SIZE
);
570 ctx
->pages
[i
] = addr
;
572 ctx
->elements
= kmalloc(ctx
->num_elements
*
573 sizeof(struct qeth_eddp_element
), GFP_ATOMIC
);
574 if (ctx
->elements
== NULL
){
575 QETH_DBF_TEXT(trace
, 2, "ceddpcn4");
576 qeth_eddp_free_context(ctx
);
579 memset(ctx
->elements
, 0,
580 ctx
->num_elements
* sizeof(struct qeth_eddp_element
));
581 /* reset num_elements; will be incremented again in fill_buffer to
582 * reflect number of actually used elements */
583 ctx
->num_elements
= 0;
587 static inline struct qeth_eddp_context
*
588 qeth_eddp_create_context_tcp(struct qeth_card
*card
, struct sk_buff
*skb
,
589 struct qeth_hdr
*qhdr
)
591 struct qeth_eddp_context
*ctx
= NULL
;
593 QETH_DBF_TEXT(trace
, 5, "creddpct");
594 if (skb
->protocol
== ETH_P_IP
)
595 ctx
= qeth_eddp_create_context_generic(card
, skb
,
596 sizeof(struct qeth_hdr
) + skb
->nh
.iph
->ihl
*4 +
598 else if (skb
->protocol
== ETH_P_IPV6
)
599 ctx
= qeth_eddp_create_context_generic(card
, skb
,
600 sizeof(struct qeth_hdr
) + sizeof(struct ipv6hdr
) +
603 QETH_DBF_TEXT(trace
, 2, "cetcpinv");
606 QETH_DBF_TEXT(trace
, 2, "creddpnl");
609 if (qeth_eddp_fill_context_tcp(ctx
, skb
, qhdr
)){
610 QETH_DBF_TEXT(trace
, 2, "ceddptfe");
611 qeth_eddp_free_context(ctx
);
614 atomic_set(&ctx
->refcnt
, 1);
618 struct qeth_eddp_context
*
619 qeth_eddp_create_context(struct qeth_card
*card
, struct sk_buff
*skb
,
620 struct qeth_hdr
*qhdr
)
622 QETH_DBF_TEXT(trace
, 5, "creddpc");
623 switch (skb
->sk
->sk_protocol
){
625 return qeth_eddp_create_context_tcp(card
, skb
, qhdr
);
627 QETH_DBF_TEXT(trace
, 2, "eddpinvp");