arm/xen: implement correctly pfn_to_mfn
[linux-2.6-block.git] / drivers / net / xen-netback / netback.c
CommitLineData
f942dc25
IC
1/*
2 * Back-end of the driver for virtual network devices. This portion of the
3 * driver exports a 'unified' network-device interface that can be accessed
4 * by any operating system that implements a compatible front end. A
5 * reference front-end implementation can be found in:
6 * drivers/net/xen-netfront.c
7 *
8 * Copyright (c) 2002-2005, K A Fraser
9 *
10 * This program is free software; you can redistribute it and/or
11 * modify it under the terms of the GNU General Public License version 2
12 * as published by the Free Software Foundation; or, when distributed
13 * separately from the Linux kernel or incorporated into other
14 * software packages, subject to the following license:
15 *
16 * Permission is hereby granted, free of charge, to any person obtaining a copy
17 * of this source file (the "Software"), to deal in the Software without
18 * restriction, including without limitation the rights to use, copy, modify,
19 * merge, publish, distribute, sublicense, and/or sell copies of the Software,
20 * and to permit persons to whom the Software is furnished to do so, subject to
21 * the following conditions:
22 *
23 * The above copyright notice and this permission notice shall be included in
24 * all copies or substantial portions of the Software.
25 *
26 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
27 * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
28 * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
29 * AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
30 * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING
31 * FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS
32 * IN THE SOFTWARE.
33 */
34
35#include "common.h"
36
37#include <linux/kthread.h>
38#include <linux/if_vlan.h>
39#include <linux/udp.h>
e3377f36 40#include <linux/highmem.h>
f942dc25
IC
41
42#include <net/tcp.h>
43
ca981633 44#include <xen/xen.h>
f942dc25
IC
45#include <xen/events.h>
46#include <xen/interface/memory.h>
a9fd60e2 47#include <xen/page.h>
f942dc25
IC
48
49#include <asm/xen/hypercall.h>
f942dc25 50
e1f00a69
WL
51/* Provide an option to disable split event channels at load time as
52 * event channels are limited resource. Split event channels are
53 * enabled by default.
54 */
c489dbb1 55bool separate_tx_rx_irq = true;
e1f00a69
WL
56module_param(separate_tx_rx_irq, bool, 0644);
57
f48da8b1
DV
58/* The time that packets can stay on the guest Rx internal queue
59 * before they are dropped.
09350788
ZK
60 */
61unsigned int rx_drain_timeout_msecs = 10000;
62module_param(rx_drain_timeout_msecs, uint, 0444);
09350788 63
ecf08d2d
DV
64/* The length of time before the frontend is considered unresponsive
65 * because it isn't providing Rx slots.
66 */
26c0e102 67unsigned int rx_stall_timeout_msecs = 60000;
ecf08d2d 68module_param(rx_stall_timeout_msecs, uint, 0444);
ecf08d2d 69
8d3d53b3
AB
70unsigned int xenvif_max_queues;
71module_param_named(max_queues, xenvif_max_queues, uint, 0644);
72MODULE_PARM_DESC(max_queues,
73 "Maximum number of queues per virtual interface");
74
2810e5b9
WL
75/*
76 * This is the maximum slots a skb can have. If a guest sends a skb
77 * which exceeds this limit it is considered malicious.
78 */
37641494
WL
79#define FATAL_SKB_SLOTS_DEFAULT 20
80static unsigned int fatal_skb_slots = FATAL_SKB_SLOTS_DEFAULT;
81module_param(fatal_skb_slots, uint, 0444);
82
7e5d7753
MC
83/* The amount to copy out of the first guest Tx slot into the skb's
84 * linear area. If the first slot has more data, it will be mapped
85 * and put into the first frag.
86 *
87 * This is sized to avoid pulling headers from the frags for most
88 * TCP/IP packets.
89 */
90#define XEN_NETBACK_TX_COPY_LEN 128
91
92
e9ce7cb6 93static void xenvif_idx_release(struct xenvif_queue *queue, u16 pending_idx,
7376419a
WL
94 u8 status);
95
e9ce7cb6 96static void make_tx_response(struct xenvif_queue *queue,
f942dc25
IC
97 struct xen_netif_tx_request *txp,
98 s8 st);
c8a4d299 99static void push_tx_responses(struct xenvif_queue *queue);
b3f980bd 100
e9ce7cb6 101static inline int tx_work_todo(struct xenvif_queue *queue);
b3f980bd 102
e9ce7cb6 103static struct xen_netif_rx_response *make_rx_response(struct xenvif_queue *queue,
f942dc25
IC
104 u16 id,
105 s8 st,
106 u16 offset,
107 u16 size,
108 u16 flags);
109
e9ce7cb6 110static inline unsigned long idx_to_pfn(struct xenvif_queue *queue,
ea066ad1 111 u16 idx)
f942dc25 112{
e9ce7cb6 113 return page_to_pfn(queue->mmap_pages[idx]);
f942dc25
IC
114}
115
e9ce7cb6 116static inline unsigned long idx_to_kaddr(struct xenvif_queue *queue,
ea066ad1 117 u16 idx)
f942dc25 118{
e9ce7cb6 119 return (unsigned long)pfn_to_kaddr(idx_to_pfn(queue, idx));
f942dc25
IC
120}
121
7aceb47a
ZK
122#define callback_param(vif, pending_idx) \
123 (vif->pending_tx_info[pending_idx].callback_struct)
124
f53c3fe8
ZK
125/* Find the containing VIF's structure from a pointer in pending_tx_info array
126 */
e9ce7cb6 127static inline struct xenvif_queue *ubuf_to_queue(const struct ubuf_info *ubuf)
3e2234b3 128{
f53c3fe8
ZK
129 u16 pending_idx = ubuf->desc;
130 struct pending_tx_info *temp =
131 container_of(ubuf, struct pending_tx_info, callback_struct);
132 return container_of(temp - pending_idx,
e9ce7cb6 133 struct xenvif_queue,
f53c3fe8 134 pending_tx_info[0]);
3e2234b3 135}
f53c3fe8 136
ea066ad1
IC
137static u16 frag_get_pending_idx(skb_frag_t *frag)
138{
139 return (u16)frag->page_offset;
140}
141
142static void frag_set_pending_idx(skb_frag_t *frag, u16 pending_idx)
143{
144 frag->page_offset = pending_idx;
145}
146
f942dc25
IC
147static inline pending_ring_idx_t pending_index(unsigned i)
148{
149 return i & (MAX_PENDING_REQS-1);
150}
151
e9ce7cb6 152bool xenvif_rx_ring_slots_available(struct xenvif_queue *queue, int needed)
f942dc25 153{
ca2f09f2 154 RING_IDX prod, cons;
f942dc25 155
ca2f09f2 156 do {
e9ce7cb6
WL
157 prod = queue->rx.sring->req_prod;
158 cons = queue->rx.req_cons;
f942dc25 159
ca2f09f2
PD
160 if (prod - cons >= needed)
161 return true;
f942dc25 162
e9ce7cb6 163 queue->rx.sring->req_event = prod + 1;
f942dc25 164
ca2f09f2
PD
165 /* Make sure event is visible before we check prod
166 * again.
167 */
168 mb();
e9ce7cb6 169 } while (queue->rx.sring->req_prod != prod);
f942dc25 170
ca2f09f2 171 return false;
f942dc25
IC
172}
173
f48da8b1
DV
174void xenvif_rx_queue_tail(struct xenvif_queue *queue, struct sk_buff *skb)
175{
176 unsigned long flags;
177
178 spin_lock_irqsave(&queue->rx_queue.lock, flags);
179
180 __skb_queue_tail(&queue->rx_queue, skb);
181
182 queue->rx_queue_len += skb->len;
183 if (queue->rx_queue_len > queue->rx_queue_max)
184 netif_tx_stop_queue(netdev_get_tx_queue(queue->vif->dev, queue->id));
185
186 spin_unlock_irqrestore(&queue->rx_queue.lock, flags);
187}
188
189static struct sk_buff *xenvif_rx_dequeue(struct xenvif_queue *queue)
190{
191 struct sk_buff *skb;
192
193 spin_lock_irq(&queue->rx_queue.lock);
194
195 skb = __skb_dequeue(&queue->rx_queue);
196 if (skb)
197 queue->rx_queue_len -= skb->len;
198
199 spin_unlock_irq(&queue->rx_queue.lock);
200
201 return skb;
202}
203
204static void xenvif_rx_queue_maybe_wake(struct xenvif_queue *queue)
205{
206 spin_lock_irq(&queue->rx_queue.lock);
207
208 if (queue->rx_queue_len < queue->rx_queue_max)
209 netif_tx_wake_queue(netdev_get_tx_queue(queue->vif->dev, queue->id));
210
211 spin_unlock_irq(&queue->rx_queue.lock);
212}
213
214
215static void xenvif_rx_queue_purge(struct xenvif_queue *queue)
216{
217 struct sk_buff *skb;
218 while ((skb = xenvif_rx_dequeue(queue)) != NULL)
219 kfree_skb(skb);
220}
221
222static void xenvif_rx_queue_drop_expired(struct xenvif_queue *queue)
223{
224 struct sk_buff *skb;
225
226 for(;;) {
227 skb = skb_peek(&queue->rx_queue);
228 if (!skb)
229 break;
230 if (time_before(jiffies, XENVIF_RX_CB(skb)->expires))
231 break;
232 xenvif_rx_dequeue(queue);
233 kfree_skb(skb);
234 }
235}
236
f942dc25
IC
237struct netrx_pending_operations {
238 unsigned copy_prod, copy_cons;
239 unsigned meta_prod, meta_cons;
240 struct gnttab_copy *copy;
b3f980bd 241 struct xenvif_rx_meta *meta;
f942dc25
IC
242 int copy_off;
243 grant_ref_t copy_gref;
244};
245
e9ce7cb6 246static struct xenvif_rx_meta *get_next_rx_buffer(struct xenvif_queue *queue,
b3f980bd 247 struct netrx_pending_operations *npo)
f942dc25 248{
b3f980bd 249 struct xenvif_rx_meta *meta;
f942dc25
IC
250 struct xen_netif_rx_request *req;
251
e9ce7cb6 252 req = RING_GET_REQUEST(&queue->rx, queue->rx.req_cons++);
f942dc25
IC
253
254 meta = npo->meta + npo->meta_prod++;
82cada22 255 meta->gso_type = XEN_NETIF_GSO_TYPE_NONE;
f942dc25
IC
256 meta->gso_size = 0;
257 meta->size = 0;
258 meta->id = req->id;
259
260 npo->copy_off = 0;
261 npo->copy_gref = req->gref;
262
263 return meta;
264}
265
33bc801d
WL
266/*
267 * Set up the grant operations for this fragment. If it's a flipping
268 * interface, we also set up the unmap request from here.
269 */
e9ce7cb6 270static void xenvif_gop_frag_copy(struct xenvif_queue *queue, struct sk_buff *skb,
7376419a
WL
271 struct netrx_pending_operations *npo,
272 struct page *page, unsigned long size,
c2677a6f 273 unsigned long offset, int *head)
f942dc25
IC
274{
275 struct gnttab_copy *copy_gop;
b3f980bd 276 struct xenvif_rx_meta *meta;
f942dc25 277 unsigned long bytes;
5bd07670 278 int gso_type = XEN_NETIF_GSO_TYPE_NONE;
f942dc25
IC
279
280 /* Data must not cross a page boundary. */
6a8ed462 281 BUG_ON(size + offset > PAGE_SIZE<<compound_order(page));
f942dc25
IC
282
283 meta = npo->meta + npo->meta_prod - 1;
284
6a8ed462
IC
285 /* Skip unused frames from start of page */
286 page += offset >> PAGE_SHIFT;
287 offset &= ~PAGE_MASK;
288
f942dc25 289 while (size > 0) {
c2677a6f
JH
290 struct xen_page_foreign *foreign;
291
6a8ed462 292 BUG_ON(offset >= PAGE_SIZE);
f942dc25
IC
293 BUG_ON(npo->copy_off > MAX_BUFFER_OFFSET);
294
1650d545
DV
295 if (npo->copy_off == MAX_BUFFER_OFFSET)
296 meta = get_next_rx_buffer(queue, npo);
6a8ed462 297
1650d545 298 bytes = PAGE_SIZE - offset;
6a8ed462
IC
299 if (bytes > size)
300 bytes = size;
301
f942dc25
IC
302 if (npo->copy_off + bytes > MAX_BUFFER_OFFSET)
303 bytes = MAX_BUFFER_OFFSET - npo->copy_off;
304
305 copy_gop = npo->copy + npo->copy_prod++;
306 copy_gop->flags = GNTCOPY_dest_gref;
b3f980bd
WL
307 copy_gop->len = bytes;
308
c2677a6f
JH
309 foreign = xen_page_foreign(page);
310 if (foreign) {
311 copy_gop->source.domid = foreign->domid;
312 copy_gop->source.u.ref = foreign->gref;
3e2234b3
ZK
313 copy_gop->flags |= GNTCOPY_source_gref;
314 } else {
315 copy_gop->source.domid = DOMID_SELF;
316 copy_gop->source.u.gmfn =
317 virt_to_mfn(page_address(page));
318 }
f942dc25 319 copy_gop->source.offset = offset;
f942dc25 320
e9ce7cb6 321 copy_gop->dest.domid = queue->vif->domid;
f942dc25
IC
322 copy_gop->dest.offset = npo->copy_off;
323 copy_gop->dest.u.ref = npo->copy_gref;
f942dc25
IC
324
325 npo->copy_off += bytes;
326 meta->size += bytes;
327
328 offset += bytes;
329 size -= bytes;
330
6a8ed462
IC
331 /* Next frame */
332 if (offset == PAGE_SIZE && size) {
333 BUG_ON(!PageCompound(page));
334 page++;
335 offset = 0;
336 }
337
f942dc25 338 /* Leave a gap for the GSO descriptor. */
5bd07670
AL
339 if (skb_is_gso(skb)) {
340 if (skb_shinfo(skb)->gso_type & SKB_GSO_TCPV4)
341 gso_type = XEN_NETIF_GSO_TYPE_TCPV4;
342 else if (skb_shinfo(skb)->gso_type & SKB_GSO_TCPV6)
343 gso_type = XEN_NETIF_GSO_TYPE_TCPV6;
344 }
82cada22 345
e9ce7cb6
WL
346 if (*head && ((1 << gso_type) & queue->vif->gso_mask))
347 queue->rx.req_cons++;
f942dc25 348
33bc801d 349 *head = 0; /* There must be something in this buffer now. */
f942dc25
IC
350
351 }
352}
353
354/*
355 * Prepare an SKB to be transmitted to the frontend.
356 *
357 * This function is responsible for allocating grant operations, meta
358 * structures, etc.
359 *
360 * It returns the number of meta structures consumed. The number of
361 * ring slots used is always equal to the number of meta slots used
362 * plus the number of GSO descriptors used. Currently, we use either
363 * zero GSO descriptors (for non-GSO packets) or one descriptor (for
364 * frontend-side LRO).
365 */
7376419a 366static int xenvif_gop_skb(struct sk_buff *skb,
e9ce7cb6
WL
367 struct netrx_pending_operations *npo,
368 struct xenvif_queue *queue)
f942dc25
IC
369{
370 struct xenvif *vif = netdev_priv(skb->dev);
371 int nr_frags = skb_shinfo(skb)->nr_frags;
372 int i;
373 struct xen_netif_rx_request *req;
b3f980bd 374 struct xenvif_rx_meta *meta;
f942dc25 375 unsigned char *data;
33bc801d 376 int head = 1;
f942dc25 377 int old_meta_prod;
82cada22 378 int gso_type;
f942dc25
IC
379
380 old_meta_prod = npo->meta_prod;
381
5bd07670
AL
382 gso_type = XEN_NETIF_GSO_TYPE_NONE;
383 if (skb_is_gso(skb)) {
384 if (skb_shinfo(skb)->gso_type & SKB_GSO_TCPV4)
385 gso_type = XEN_NETIF_GSO_TYPE_TCPV4;
386 else if (skb_shinfo(skb)->gso_type & SKB_GSO_TCPV6)
387 gso_type = XEN_NETIF_GSO_TYPE_TCPV6;
82cada22
PD
388 }
389
f942dc25 390 /* Set up a GSO prefix descriptor, if necessary */
a3314f3d 391 if ((1 << gso_type) & vif->gso_prefix_mask) {
e9ce7cb6 392 req = RING_GET_REQUEST(&queue->rx, queue->rx.req_cons++);
f942dc25 393 meta = npo->meta + npo->meta_prod++;
82cada22 394 meta->gso_type = gso_type;
5bd07670 395 meta->gso_size = skb_shinfo(skb)->gso_size;
f942dc25
IC
396 meta->size = 0;
397 meta->id = req->id;
398 }
399
e9ce7cb6 400 req = RING_GET_REQUEST(&queue->rx, queue->rx.req_cons++);
f942dc25
IC
401 meta = npo->meta + npo->meta_prod++;
402
82cada22
PD
403 if ((1 << gso_type) & vif->gso_mask) {
404 meta->gso_type = gso_type;
5bd07670 405 meta->gso_size = skb_shinfo(skb)->gso_size;
82cada22
PD
406 } else {
407 meta->gso_type = XEN_NETIF_GSO_TYPE_NONE;
f942dc25 408 meta->gso_size = 0;
82cada22 409 }
f942dc25
IC
410
411 meta->size = 0;
412 meta->id = req->id;
413 npo->copy_off = 0;
414 npo->copy_gref = req->gref;
415
416 data = skb->data;
417 while (data < skb_tail_pointer(skb)) {
418 unsigned int offset = offset_in_page(data);
419 unsigned int len = PAGE_SIZE - offset;
420
421 if (data + len > skb_tail_pointer(skb))
422 len = skb_tail_pointer(skb) - data;
423
e9ce7cb6 424 xenvif_gop_frag_copy(queue, skb, npo,
c2677a6f 425 virt_to_page(data), len, offset, &head);
f942dc25
IC
426 data += len;
427 }
428
429 for (i = 0; i < nr_frags; i++) {
e9ce7cb6 430 xenvif_gop_frag_copy(queue, skb, npo,
7376419a
WL
431 skb_frag_page(&skb_shinfo(skb)->frags[i]),
432 skb_frag_size(&skb_shinfo(skb)->frags[i]),
433 skb_shinfo(skb)->frags[i].page_offset,
c2677a6f 434 &head);
f942dc25
IC
435 }
436
437 return npo->meta_prod - old_meta_prod;
438}
439
440/*
7376419a 441 * This is a twin to xenvif_gop_skb. Assume that xenvif_gop_skb was
f942dc25
IC
442 * used to set up the operations on the top of
443 * netrx_pending_operations, which have since been done. Check that
444 * they didn't give any errors and advance over them.
445 */
7376419a
WL
446static int xenvif_check_gop(struct xenvif *vif, int nr_meta_slots,
447 struct netrx_pending_operations *npo)
f942dc25
IC
448{
449 struct gnttab_copy *copy_op;
450 int status = XEN_NETIF_RSP_OKAY;
451 int i;
452
453 for (i = 0; i < nr_meta_slots; i++) {
454 copy_op = npo->copy + npo->copy_cons++;
455 if (copy_op->status != GNTST_okay) {
456 netdev_dbg(vif->dev,
457 "Bad status %d from copy to DOM%d.\n",
458 copy_op->status, vif->domid);
459 status = XEN_NETIF_RSP_ERROR;
460 }
461 }
462
463 return status;
464}
465
e9ce7cb6 466static void xenvif_add_frag_responses(struct xenvif_queue *queue, int status,
7376419a
WL
467 struct xenvif_rx_meta *meta,
468 int nr_meta_slots)
f942dc25
IC
469{
470 int i;
471 unsigned long offset;
472
473 /* No fragments used */
474 if (nr_meta_slots <= 1)
475 return;
476
477 nr_meta_slots--;
478
479 for (i = 0; i < nr_meta_slots; i++) {
480 int flags;
481 if (i == nr_meta_slots - 1)
482 flags = 0;
483 else
484 flags = XEN_NETRXF_more_data;
485
486 offset = 0;
e9ce7cb6 487 make_rx_response(queue, meta[i].id, status, offset,
f942dc25
IC
488 meta[i].size, flags);
489 }
490}
491
e9ce7cb6 492void xenvif_kick_thread(struct xenvif_queue *queue)
b3f980bd 493{
e9ce7cb6 494 wake_up(&queue->wq);
b3f980bd
WL
495}
496
e9ce7cb6 497static void xenvif_rx_action(struct xenvif_queue *queue)
f942dc25 498{
f942dc25 499 s8 status;
e1f00a69 500 u16 flags;
f942dc25
IC
501 struct xen_netif_rx_response *resp;
502 struct sk_buff_head rxq;
503 struct sk_buff *skb;
504 LIST_HEAD(notify);
505 int ret;
f942dc25 506 unsigned long offset;
11b57f90 507 bool need_to_notify = false;
f942dc25
IC
508
509 struct netrx_pending_operations npo = {
e9ce7cb6
WL
510 .copy = queue->grant_copy_op,
511 .meta = queue->meta,
f942dc25
IC
512 };
513
514 skb_queue_head_init(&rxq);
515
f48da8b1
DV
516 while (xenvif_rx_ring_slots_available(queue, XEN_NETBK_RX_SLOTS_MAX)
517 && (skb = xenvif_rx_dequeue(queue)) != NULL) {
ecf08d2d
DV
518 queue->last_rx_time = jiffies;
519
e9ce7cb6 520 XENVIF_RX_CB(skb)->meta_slots_used = xenvif_gop_skb(skb, &npo, queue);
1425c7a4 521
f942dc25 522 __skb_queue_tail(&rxq, skb);
f942dc25
IC
523 }
524
e9ce7cb6 525 BUG_ON(npo.meta_prod > ARRAY_SIZE(queue->meta));
f942dc25
IC
526
527 if (!npo.copy_prod)
ca2f09f2 528 goto done;
f942dc25 529
ac3d5ac2 530 BUG_ON(npo.copy_prod > MAX_GRANT_COPY_OPS);
e9ce7cb6 531 gnttab_batch_copy(queue->grant_copy_op, npo.copy_prod);
f942dc25
IC
532
533 while ((skb = __skb_dequeue(&rxq)) != NULL) {
f942dc25 534
e9ce7cb6
WL
535 if ((1 << queue->meta[npo.meta_cons].gso_type) &
536 queue->vif->gso_prefix_mask) {
537 resp = RING_GET_RESPONSE(&queue->rx,
538 queue->rx.rsp_prod_pvt++);
f942dc25
IC
539
540 resp->flags = XEN_NETRXF_gso_prefix | XEN_NETRXF_more_data;
541
e9ce7cb6
WL
542 resp->offset = queue->meta[npo.meta_cons].gso_size;
543 resp->id = queue->meta[npo.meta_cons].id;
8f13dd96 544 resp->status = XENVIF_RX_CB(skb)->meta_slots_used;
f942dc25
IC
545
546 npo.meta_cons++;
8f13dd96 547 XENVIF_RX_CB(skb)->meta_slots_used--;
f942dc25
IC
548 }
549
550
e9ce7cb6
WL
551 queue->stats.tx_bytes += skb->len;
552 queue->stats.tx_packets++;
f942dc25 553
e9ce7cb6 554 status = xenvif_check_gop(queue->vif,
8f13dd96
ZK
555 XENVIF_RX_CB(skb)->meta_slots_used,
556 &npo);
f942dc25 557
8f13dd96 558 if (XENVIF_RX_CB(skb)->meta_slots_used == 1)
f942dc25
IC
559 flags = 0;
560 else
561 flags = XEN_NETRXF_more_data;
562
563 if (skb->ip_summed == CHECKSUM_PARTIAL) /* local packet? */
564 flags |= XEN_NETRXF_csum_blank | XEN_NETRXF_data_validated;
565 else if (skb->ip_summed == CHECKSUM_UNNECESSARY)
566 /* remote but checksummed. */
567 flags |= XEN_NETRXF_data_validated;
568
569 offset = 0;
e9ce7cb6 570 resp = make_rx_response(queue, queue->meta[npo.meta_cons].id,
f942dc25 571 status, offset,
e9ce7cb6 572 queue->meta[npo.meta_cons].size,
f942dc25
IC
573 flags);
574
e9ce7cb6
WL
575 if ((1 << queue->meta[npo.meta_cons].gso_type) &
576 queue->vif->gso_mask) {
f942dc25
IC
577 struct xen_netif_extra_info *gso =
578 (struct xen_netif_extra_info *)
e9ce7cb6
WL
579 RING_GET_RESPONSE(&queue->rx,
580 queue->rx.rsp_prod_pvt++);
f942dc25
IC
581
582 resp->flags |= XEN_NETRXF_extra_info;
583
e9ce7cb6
WL
584 gso->u.gso.type = queue->meta[npo.meta_cons].gso_type;
585 gso->u.gso.size = queue->meta[npo.meta_cons].gso_size;
f942dc25
IC
586 gso->u.gso.pad = 0;
587 gso->u.gso.features = 0;
588
589 gso->type = XEN_NETIF_EXTRA_TYPE_GSO;
590 gso->flags = 0;
591 }
592
e9ce7cb6
WL
593 xenvif_add_frag_responses(queue, status,
594 queue->meta + npo.meta_cons + 1,
8f13dd96 595 XENVIF_RX_CB(skb)->meta_slots_used);
f942dc25 596
e9ce7cb6 597 RING_PUSH_RESPONSES_AND_CHECK_NOTIFY(&queue->rx, ret);
f942dc25 598
11b57f90 599 need_to_notify |= !!ret;
b3f980bd 600
8f13dd96 601 npo.meta_cons += XENVIF_RX_CB(skb)->meta_slots_used;
f942dc25
IC
602 dev_kfree_skb(skb);
603 }
604
ca2f09f2 605done:
b3f980bd 606 if (need_to_notify)
e9ce7cb6 607 notify_remote_via_irq(queue->rx_irq);
f942dc25
IC
608}
609
e9ce7cb6 610void xenvif_napi_schedule_or_enable_events(struct xenvif_queue *queue)
f942dc25
IC
611{
612 int more_to_do;
613
e9ce7cb6 614 RING_FINAL_CHECK_FOR_REQUESTS(&queue->tx, more_to_do);
f942dc25
IC
615
616 if (more_to_do)
e9ce7cb6 617 napi_schedule(&queue->napi);
f942dc25
IC
618}
619
e9ce7cb6 620static void tx_add_credit(struct xenvif_queue *queue)
f942dc25
IC
621{
622 unsigned long max_burst, max_credit;
623
624 /*
625 * Allow a burst big enough to transmit a jumbo packet of up to 128kB.
626 * Otherwise the interface can seize up due to insufficient credit.
627 */
e9ce7cb6 628 max_burst = RING_GET_REQUEST(&queue->tx, queue->tx.req_cons)->size;
f942dc25 629 max_burst = min(max_burst, 131072UL);
e9ce7cb6 630 max_burst = max(max_burst, queue->credit_bytes);
f942dc25
IC
631
632 /* Take care that adding a new chunk of credit doesn't wrap to zero. */
e9ce7cb6
WL
633 max_credit = queue->remaining_credit + queue->credit_bytes;
634 if (max_credit < queue->remaining_credit)
f942dc25
IC
635 max_credit = ULONG_MAX; /* wrapped: clamp to ULONG_MAX */
636
e9ce7cb6 637 queue->remaining_credit = min(max_credit, max_burst);
f942dc25
IC
638}
639
edafc132 640void xenvif_tx_credit_callback(unsigned long data)
f942dc25 641{
e9ce7cb6
WL
642 struct xenvif_queue *queue = (struct xenvif_queue *)data;
643 tx_add_credit(queue);
644 xenvif_napi_schedule_or_enable_events(queue);
f942dc25
IC
645}
646
e9ce7cb6 647static void xenvif_tx_err(struct xenvif_queue *queue,
7376419a 648 struct xen_netif_tx_request *txp, RING_IDX end)
f942dc25 649{
e9ce7cb6 650 RING_IDX cons = queue->tx.req_cons;
f53c3fe8 651 unsigned long flags;
f942dc25
IC
652
653 do {
e9ce7cb6
WL
654 spin_lock_irqsave(&queue->response_lock, flags);
655 make_tx_response(queue, txp, XEN_NETIF_RSP_ERROR);
c8a4d299 656 push_tx_responses(queue);
e9ce7cb6 657 spin_unlock_irqrestore(&queue->response_lock, flags);
b9149729 658 if (cons == end)
f942dc25 659 break;
e9ce7cb6 660 txp = RING_GET_REQUEST(&queue->tx, cons++);
f942dc25 661 } while (1);
e9ce7cb6 662 queue->tx.req_cons = cons;
f942dc25
IC
663}
664
7376419a 665static void xenvif_fatal_tx_err(struct xenvif *vif)
48856286
IC
666{
667 netdev_err(vif->dev, "fatal error; disabling device\n");
e9d8b2c2 668 vif->disabled = true;
e9ce7cb6
WL
669 /* Disable the vif from queue 0's kthread */
670 if (vif->queues)
671 xenvif_kick_thread(&vif->queues[0]);
48856286
IC
672}
673
e9ce7cb6 674static int xenvif_count_requests(struct xenvif_queue *queue,
7376419a
WL
675 struct xen_netif_tx_request *first,
676 struct xen_netif_tx_request *txp,
677 int work_to_do)
f942dc25 678{
e9ce7cb6 679 RING_IDX cons = queue->tx.req_cons;
2810e5b9
WL
680 int slots = 0;
681 int drop_err = 0;
59ccb4eb 682 int more_data;
f942dc25
IC
683
684 if (!(first->flags & XEN_NETTXF_more_data))
685 return 0;
686
687 do {
59ccb4eb
WL
688 struct xen_netif_tx_request dropped_tx = { 0 };
689
2810e5b9 690 if (slots >= work_to_do) {
e9ce7cb6 691 netdev_err(queue->vif->dev,
2810e5b9
WL
692 "Asked for %d slots but exceeds this limit\n",
693 work_to_do);
e9ce7cb6 694 xenvif_fatal_tx_err(queue->vif);
35876b5f 695 return -ENODATA;
f942dc25
IC
696 }
697
2810e5b9
WL
698 /* This guest is really using too many slots and
699 * considered malicious.
700 */
37641494 701 if (unlikely(slots >= fatal_skb_slots)) {
e9ce7cb6 702 netdev_err(queue->vif->dev,
2810e5b9 703 "Malicious frontend using %d slots, threshold %u\n",
37641494 704 slots, fatal_skb_slots);
e9ce7cb6 705 xenvif_fatal_tx_err(queue->vif);
35876b5f 706 return -E2BIG;
f942dc25
IC
707 }
708
2810e5b9 709 /* Xen network protocol had implicit dependency on
37641494
WL
710 * MAX_SKB_FRAGS. XEN_NETBK_LEGACY_SLOTS_MAX is set to
711 * the historical MAX_SKB_FRAGS value 18 to honor the
712 * same behavior as before. Any packet using more than
713 * 18 slots but less than fatal_skb_slots slots is
714 * dropped
2810e5b9 715 */
37641494 716 if (!drop_err && slots >= XEN_NETBK_LEGACY_SLOTS_MAX) {
2810e5b9 717 if (net_ratelimit())
e9ce7cb6 718 netdev_dbg(queue->vif->dev,
2810e5b9 719 "Too many slots (%d) exceeding limit (%d), dropping packet\n",
37641494 720 slots, XEN_NETBK_LEGACY_SLOTS_MAX);
2810e5b9
WL
721 drop_err = -E2BIG;
722 }
723
59ccb4eb
WL
724 if (drop_err)
725 txp = &dropped_tx;
726
e9ce7cb6 727 memcpy(txp, RING_GET_REQUEST(&queue->tx, cons + slots),
f942dc25 728 sizeof(*txp));
03393fd5
WL
729
730 /* If the guest submitted a frame >= 64 KiB then
731 * first->size overflowed and following slots will
732 * appear to be larger than the frame.
733 *
734 * This cannot be fatal error as there are buggy
735 * frontends that do this.
736 *
737 * Consume all slots and drop the packet.
738 */
739 if (!drop_err && txp->size > first->size) {
740 if (net_ratelimit())
e9ce7cb6 741 netdev_dbg(queue->vif->dev,
03393fd5
WL
742 "Invalid tx request, slot size %u > remaining size %u\n",
743 txp->size, first->size);
744 drop_err = -EIO;
f942dc25
IC
745 }
746
747 first->size -= txp->size;
2810e5b9 748 slots++;
f942dc25
IC
749
750 if (unlikely((txp->offset + txp->size) > PAGE_SIZE)) {
68946159 751 netdev_err(queue->vif->dev, "Cross page boundary, txp->offset: %u, size: %u\n",
f942dc25 752 txp->offset, txp->size);
e9ce7cb6 753 xenvif_fatal_tx_err(queue->vif);
35876b5f 754 return -EINVAL;
f942dc25 755 }
59ccb4eb
WL
756
757 more_data = txp->flags & XEN_NETTXF_more_data;
758
759 if (!drop_err)
760 txp++;
761
762 } while (more_data);
2810e5b9
WL
763
764 if (drop_err) {
e9ce7cb6 765 xenvif_tx_err(queue, first, cons + slots);
2810e5b9
WL
766 return drop_err;
767 }
768
769 return slots;
f942dc25
IC
770}
771
8f13dd96
ZK
772
773struct xenvif_tx_cb {
774 u16 pending_idx;
775};
776
777#define XENVIF_TX_CB(skb) ((struct xenvif_tx_cb *)(skb)->cb)
778
e9ce7cb6 779static inline void xenvif_tx_create_map_op(struct xenvif_queue *queue,
9074ce24
ZK
780 u16 pending_idx,
781 struct xen_netif_tx_request *txp,
782 struct gnttab_map_grant_ref *mop)
f53c3fe8 783{
e9ce7cb6
WL
784 queue->pages_to_map[mop-queue->tx_map_ops] = queue->mmap_pages[pending_idx];
785 gnttab_set_map_op(mop, idx_to_kaddr(queue, pending_idx),
f53c3fe8 786 GNTMAP_host_map | GNTMAP_readonly,
e9ce7cb6 787 txp->gref, queue->vif->domid);
f53c3fe8 788
e9ce7cb6 789 memcpy(&queue->pending_tx_info[pending_idx].req, txp,
f53c3fe8
ZK
790 sizeof(*txp));
791}
792
e3377f36
ZK
793static inline struct sk_buff *xenvif_alloc_skb(unsigned int size)
794{
795 struct sk_buff *skb =
796 alloc_skb(size + NET_SKB_PAD + NET_IP_ALIGN,
797 GFP_ATOMIC | __GFP_NOWARN);
798 if (unlikely(skb == NULL))
799 return NULL;
800
801 /* Packets passed to netif_rx() must have some headroom. */
802 skb_reserve(skb, NET_SKB_PAD + NET_IP_ALIGN);
803
804 /* Initialize it here to avoid later surprises */
805 skb_shinfo(skb)->destructor_arg = NULL;
806
807 return skb;
808}
809
e9ce7cb6 810static struct gnttab_map_grant_ref *xenvif_get_requests(struct xenvif_queue *queue,
f53c3fe8
ZK
811 struct sk_buff *skb,
812 struct xen_netif_tx_request *txp,
2475b225
RL
813 struct gnttab_map_grant_ref *gop,
814 unsigned int frag_overflow,
815 struct sk_buff *nskb)
f942dc25
IC
816{
817 struct skb_shared_info *shinfo = skb_shinfo(skb);
818 skb_frag_t *frags = shinfo->frags;
8f13dd96 819 u16 pending_idx = XENVIF_TX_CB(skb)->pending_idx;
62bad319
ZK
820 int start;
821 pending_ring_idx_t index;
2475b225 822 unsigned int nr_slots;
2810e5b9 823
2810e5b9 824 nr_slots = shinfo->nr_frags;
f942dc25
IC
825
826 /* Skip first skb fragment if it is on same page as header fragment. */
ea066ad1 827 start = (frag_get_pending_idx(&shinfo->frags[0]) == pending_idx);
f942dc25 828
f53c3fe8
ZK
829 for (shinfo->nr_frags = start; shinfo->nr_frags < nr_slots;
830 shinfo->nr_frags++, txp++, gop++) {
e9ce7cb6
WL
831 index = pending_index(queue->pending_cons++);
832 pending_idx = queue->pending_ring[index];
833 xenvif_tx_create_map_op(queue, pending_idx, txp, gop);
f53c3fe8 834 frag_set_pending_idx(&frags[shinfo->nr_frags], pending_idx);
f942dc25
IC
835 }
836
e3377f36 837 if (frag_overflow) {
e3377f36
ZK
838
839 shinfo = skb_shinfo(nskb);
840 frags = shinfo->frags;
841
842 for (shinfo->nr_frags = 0; shinfo->nr_frags < frag_overflow;
843 shinfo->nr_frags++, txp++, gop++) {
e9ce7cb6
WL
844 index = pending_index(queue->pending_cons++);
845 pending_idx = queue->pending_ring[index];
846 xenvif_tx_create_map_op(queue, pending_idx, txp, gop);
e3377f36
ZK
847 frag_set_pending_idx(&frags[shinfo->nr_frags],
848 pending_idx);
849 }
850
851 skb_shinfo(skb)->frag_list = nskb;
852 }
2810e5b9 853
f942dc25
IC
854 return gop;
855}
856
e9ce7cb6 857static inline void xenvif_grant_handle_set(struct xenvif_queue *queue,
f53c3fe8
ZK
858 u16 pending_idx,
859 grant_handle_t handle)
860{
e9ce7cb6 861 if (unlikely(queue->grant_tx_handle[pending_idx] !=
f53c3fe8 862 NETBACK_INVALID_HANDLE)) {
e9ce7cb6 863 netdev_err(queue->vif->dev,
68946159 864 "Trying to overwrite active handle! pending_idx: 0x%x\n",
f53c3fe8
ZK
865 pending_idx);
866 BUG();
867 }
e9ce7cb6 868 queue->grant_tx_handle[pending_idx] = handle;
f53c3fe8
ZK
869}
870
e9ce7cb6 871static inline void xenvif_grant_handle_reset(struct xenvif_queue *queue,
f53c3fe8
ZK
872 u16 pending_idx)
873{
e9ce7cb6 874 if (unlikely(queue->grant_tx_handle[pending_idx] ==
f53c3fe8 875 NETBACK_INVALID_HANDLE)) {
e9ce7cb6 876 netdev_err(queue->vif->dev,
68946159 877 "Trying to unmap invalid handle! pending_idx: 0x%x\n",
f53c3fe8
ZK
878 pending_idx);
879 BUG();
880 }
e9ce7cb6 881 queue->grant_tx_handle[pending_idx] = NETBACK_INVALID_HANDLE;
f53c3fe8
ZK
882}
883
e9ce7cb6 884static int xenvif_tx_check_gop(struct xenvif_queue *queue,
7376419a 885 struct sk_buff *skb,
bdab8275
ZK
886 struct gnttab_map_grant_ref **gopp_map,
887 struct gnttab_copy **gopp_copy)
f942dc25 888{
9074ce24 889 struct gnttab_map_grant_ref *gop_map = *gopp_map;
8f13dd96 890 u16 pending_idx = XENVIF_TX_CB(skb)->pending_idx;
1a998d3e
ZK
891 /* This always points to the shinfo of the skb being checked, which
892 * could be either the first or the one on the frag_list
893 */
f942dc25 894 struct skb_shared_info *shinfo = skb_shinfo(skb);
1a998d3e
ZK
895 /* If this is non-NULL, we are currently checking the frag_list skb, and
896 * this points to the shinfo of the first one
897 */
898 struct skb_shared_info *first_shinfo = NULL;
f942dc25 899 int nr_frags = shinfo->nr_frags;
1b860da0
ZK
900 const bool sharedslot = nr_frags &&
901 frag_get_pending_idx(&shinfo->frags[0]) == pending_idx;
bdab8275 902 int i, err;
f942dc25
IC
903
904 /* Check status of header. */
bdab8275 905 err = (*gopp_copy)->status;
bdab8275
ZK
906 if (unlikely(err)) {
907 if (net_ratelimit())
e9ce7cb6 908 netdev_dbg(queue->vif->dev,
00aefceb 909 "Grant copy of header failed! status: %d pending_idx: %u ref: %u\n",
bdab8275
ZK
910 (*gopp_copy)->status,
911 pending_idx,
912 (*gopp_copy)->source.u.ref);
1b860da0
ZK
913 /* The first frag might still have this slot mapped */
914 if (!sharedslot)
915 xenvif_idx_release(queue, pending_idx,
916 XEN_NETIF_RSP_ERROR);
bdab8275 917 }
d8cfbfc4 918 (*gopp_copy)++;
f942dc25 919
e3377f36 920check_frags:
bdab8275 921 for (i = 0; i < nr_frags; i++, gop_map++) {
f942dc25 922 int j, newerr;
f942dc25 923
ea066ad1 924 pending_idx = frag_get_pending_idx(&shinfo->frags[i]);
f942dc25
IC
925
926 /* Check error status: if okay then remember grant handle. */
bdab8275 927 newerr = gop_map->status;
2810e5b9 928
f942dc25 929 if (likely(!newerr)) {
e9ce7cb6 930 xenvif_grant_handle_set(queue,
9074ce24
ZK
931 pending_idx,
932 gop_map->handle);
f942dc25 933 /* Had a previous error? Invalidate this fragment. */
1b860da0 934 if (unlikely(err)) {
e9ce7cb6 935 xenvif_idx_unmap(queue, pending_idx);
1b860da0
ZK
936 /* If the mapping of the first frag was OK, but
937 * the header's copy failed, and they are
938 * sharing a slot, send an error
939 */
940 if (i == 0 && sharedslot)
941 xenvif_idx_release(queue, pending_idx,
942 XEN_NETIF_RSP_ERROR);
943 else
944 xenvif_idx_release(queue, pending_idx,
945 XEN_NETIF_RSP_OKAY);
946 }
f942dc25
IC
947 continue;
948 }
949
950 /* Error on this fragment: respond to client with an error. */
bdab8275 951 if (net_ratelimit())
e9ce7cb6 952 netdev_dbg(queue->vif->dev,
00aefceb 953 "Grant map of %d. frag failed! status: %d pending_idx: %u ref: %u\n",
bdab8275
ZK
954 i,
955 gop_map->status,
956 pending_idx,
957 gop_map->ref);
1b860da0 958
e9ce7cb6 959 xenvif_idx_release(queue, pending_idx, XEN_NETIF_RSP_ERROR);
f942dc25
IC
960
961 /* Not the first error? Preceding frags already invalidated. */
962 if (err)
963 continue;
1b860da0
ZK
964
965 /* First error: if the header haven't shared a slot with the
966 * first frag, release it as well.
967 */
968 if (!sharedslot)
969 xenvif_idx_release(queue,
970 XENVIF_TX_CB(skb)->pending_idx,
971 XEN_NETIF_RSP_OKAY);
972
973 /* Invalidate preceding fragments of this skb. */
bdab8275 974 for (j = 0; j < i; j++) {
5ccb3ea7 975 pending_idx = frag_get_pending_idx(&shinfo->frags[j]);
e9ce7cb6 976 xenvif_idx_unmap(queue, pending_idx);
1b860da0
ZK
977 xenvif_idx_release(queue, pending_idx,
978 XEN_NETIF_RSP_OKAY);
f942dc25
IC
979 }
980
1a998d3e
ZK
981 /* And if we found the error while checking the frag_list, unmap
982 * the first skb's frags
983 */
984 if (first_shinfo) {
985 for (j = 0; j < first_shinfo->nr_frags; j++) {
986 pending_idx = frag_get_pending_idx(&first_shinfo->frags[j]);
987 xenvif_idx_unmap(queue, pending_idx);
1b860da0
ZK
988 xenvif_idx_release(queue, pending_idx,
989 XEN_NETIF_RSP_OKAY);
1a998d3e 990 }
f942dc25
IC
991 }
992
993 /* Remember the error: invalidate all subsequent fragments. */
994 err = newerr;
995 }
996
1a998d3e
ZK
997 if (skb_has_frag_list(skb) && !first_shinfo) {
998 first_shinfo = skb_shinfo(skb);
999 shinfo = skb_shinfo(skb_shinfo(skb)->frag_list);
e3377f36 1000 nr_frags = shinfo->nr_frags;
e3377f36
ZK
1001
1002 goto check_frags;
1003 }
1004
bdab8275 1005 *gopp_map = gop_map;
f942dc25
IC
1006 return err;
1007}
1008
e9ce7cb6 1009static void xenvif_fill_frags(struct xenvif_queue *queue, struct sk_buff *skb)
f942dc25
IC
1010{
1011 struct skb_shared_info *shinfo = skb_shinfo(skb);
1012 int nr_frags = shinfo->nr_frags;
1013 int i;
f53c3fe8
ZK
1014 u16 prev_pending_idx = INVALID_PENDING_IDX;
1015
f942dc25
IC
1016 for (i = 0; i < nr_frags; i++) {
1017 skb_frag_t *frag = shinfo->frags + i;
1018 struct xen_netif_tx_request *txp;
ea066ad1
IC
1019 struct page *page;
1020 u16 pending_idx;
f942dc25 1021
ea066ad1 1022 pending_idx = frag_get_pending_idx(frag);
f942dc25 1023
f53c3fe8 1024 /* If this is not the first frag, chain it to the previous*/
bdab8275 1025 if (prev_pending_idx == INVALID_PENDING_IDX)
f53c3fe8 1026 skb_shinfo(skb)->destructor_arg =
e9ce7cb6 1027 &callback_param(queue, pending_idx);
bdab8275 1028 else
e9ce7cb6
WL
1029 callback_param(queue, prev_pending_idx).ctx =
1030 &callback_param(queue, pending_idx);
f53c3fe8 1031
e9ce7cb6 1032 callback_param(queue, pending_idx).ctx = NULL;
f53c3fe8
ZK
1033 prev_pending_idx = pending_idx;
1034
e9ce7cb6
WL
1035 txp = &queue->pending_tx_info[pending_idx].req;
1036 page = virt_to_page(idx_to_kaddr(queue, pending_idx));
ea066ad1 1037 __skb_fill_page_desc(skb, i, page, txp->offset, txp->size);
f942dc25
IC
1038 skb->len += txp->size;
1039 skb->data_len += txp->size;
1040 skb->truesize += txp->size;
1041
f53c3fe8 1042 /* Take an extra reference to offset network stack's put_page */
e9ce7cb6 1043 get_page(queue->mmap_pages[pending_idx]);
f942dc25
IC
1044 }
1045}
1046
e9ce7cb6 1047static int xenvif_get_extras(struct xenvif_queue *queue,
f942dc25
IC
1048 struct xen_netif_extra_info *extras,
1049 int work_to_do)
1050{
1051 struct xen_netif_extra_info extra;
e9ce7cb6 1052 RING_IDX cons = queue->tx.req_cons;
f942dc25
IC
1053
1054 do {
1055 if (unlikely(work_to_do-- <= 0)) {
e9ce7cb6
WL
1056 netdev_err(queue->vif->dev, "Missing extra info\n");
1057 xenvif_fatal_tx_err(queue->vif);
f942dc25
IC
1058 return -EBADR;
1059 }
1060
e9ce7cb6 1061 memcpy(&extra, RING_GET_REQUEST(&queue->tx, cons),
f942dc25
IC
1062 sizeof(extra));
1063 if (unlikely(!extra.type ||
1064 extra.type >= XEN_NETIF_EXTRA_TYPE_MAX)) {
e9ce7cb6
WL
1065 queue->tx.req_cons = ++cons;
1066 netdev_err(queue->vif->dev,
f942dc25 1067 "Invalid extra type: %d\n", extra.type);
e9ce7cb6 1068 xenvif_fatal_tx_err(queue->vif);
f942dc25
IC
1069 return -EINVAL;
1070 }
1071
1072 memcpy(&extras[extra.type - 1], &extra, sizeof(extra));
e9ce7cb6 1073 queue->tx.req_cons = ++cons;
f942dc25
IC
1074 } while (extra.flags & XEN_NETIF_EXTRA_FLAG_MORE);
1075
1076 return work_to_do;
1077}
1078
7376419a
WL
1079static int xenvif_set_skb_gso(struct xenvif *vif,
1080 struct sk_buff *skb,
1081 struct xen_netif_extra_info *gso)
f942dc25
IC
1082{
1083 if (!gso->u.gso.size) {
48856286 1084 netdev_err(vif->dev, "GSO size must not be zero.\n");
7376419a 1085 xenvif_fatal_tx_err(vif);
f942dc25
IC
1086 return -EINVAL;
1087 }
1088
a9468587
PD
1089 switch (gso->u.gso.type) {
1090 case XEN_NETIF_GSO_TYPE_TCPV4:
1091 skb_shinfo(skb)->gso_type = SKB_GSO_TCPV4;
1092 break;
1093 case XEN_NETIF_GSO_TYPE_TCPV6:
1094 skb_shinfo(skb)->gso_type = SKB_GSO_TCPV6;
1095 break;
1096 default:
48856286 1097 netdev_err(vif->dev, "Bad GSO type %d.\n", gso->u.gso.type);
7376419a 1098 xenvif_fatal_tx_err(vif);
f942dc25
IC
1099 return -EINVAL;
1100 }
1101
1102 skb_shinfo(skb)->gso_size = gso->u.gso.size;
b89587a7 1103 /* gso_segs will be calculated later */
f942dc25
IC
1104
1105 return 0;
1106}
1107
e9ce7cb6 1108static int checksum_setup(struct xenvif_queue *queue, struct sk_buff *skb)
2eba61d5 1109{
2721637c 1110 bool recalculate_partial_csum = false;
2eba61d5
PD
1111
1112 /* A GSO SKB must be CHECKSUM_PARTIAL. However some buggy
1113 * peers can fail to set NETRXF_csum_blank when sending a GSO
1114 * frame. In this case force the SKB to CHECKSUM_PARTIAL and
1115 * recalculate the partial checksum.
1116 */
1117 if (skb->ip_summed != CHECKSUM_PARTIAL && skb_is_gso(skb)) {
e9ce7cb6 1118 queue->stats.rx_gso_checksum_fixup++;
2eba61d5 1119 skb->ip_summed = CHECKSUM_PARTIAL;
2721637c 1120 recalculate_partial_csum = true;
2eba61d5
PD
1121 }
1122
1123 /* A non-CHECKSUM_PARTIAL SKB does not require setup. */
1124 if (skb->ip_summed != CHECKSUM_PARTIAL)
1125 return 0;
1126
2721637c 1127 return skb_checksum_setup(skb, recalculate_partial_csum);
2eba61d5
PD
1128}
1129
e9ce7cb6 1130static bool tx_credit_exceeded(struct xenvif_queue *queue, unsigned size)
f942dc25 1131{
059dfa6a 1132 u64 now = get_jiffies_64();
e9ce7cb6
WL
1133 u64 next_credit = queue->credit_window_start +
1134 msecs_to_jiffies(queue->credit_usec / 1000);
f942dc25
IC
1135
1136 /* Timer could already be pending in rare cases. */
e9ce7cb6 1137 if (timer_pending(&queue->credit_timeout))
f942dc25
IC
1138 return true;
1139
1140 /* Passed the point where we can replenish credit? */
059dfa6a 1141 if (time_after_eq64(now, next_credit)) {
e9ce7cb6
WL
1142 queue->credit_window_start = now;
1143 tx_add_credit(queue);
f942dc25
IC
1144 }
1145
1146 /* Still too big to send right now? Set a callback. */
e9ce7cb6
WL
1147 if (size > queue->remaining_credit) {
1148 queue->credit_timeout.data =
1149 (unsigned long)queue;
e9ce7cb6 1150 mod_timer(&queue->credit_timeout,
f942dc25 1151 next_credit);
e9ce7cb6 1152 queue->credit_window_start = next_credit;
f942dc25
IC
1153
1154 return true;
1155 }
1156
1157 return false;
1158}
1159
e9ce7cb6 1160static void xenvif_tx_build_gops(struct xenvif_queue *queue,
bdab8275
ZK
1161 int budget,
1162 unsigned *copy_ops,
1163 unsigned *map_ops)
f942dc25 1164{
2475b225
RL
1165 struct gnttab_map_grant_ref *gop = queue->tx_map_ops;
1166 struct sk_buff *skb, *nskb;
f942dc25 1167 int ret;
2475b225 1168 unsigned int frag_overflow;
f942dc25 1169
e9ce7cb6 1170 while (skb_queue_len(&queue->tx_queue) < budget) {
f942dc25 1171 struct xen_netif_tx_request txreq;
37641494 1172 struct xen_netif_tx_request txfrags[XEN_NETBK_LEGACY_SLOTS_MAX];
f942dc25
IC
1173 struct xen_netif_extra_info extras[XEN_NETIF_EXTRA_TYPE_MAX-1];
1174 u16 pending_idx;
1175 RING_IDX idx;
1176 int work_to_do;
1177 unsigned int data_len;
1178 pending_ring_idx_t index;
1179
e9ce7cb6 1180 if (queue->tx.sring->req_prod - queue->tx.req_cons >
48856286 1181 XEN_NETIF_TX_RING_SIZE) {
e9ce7cb6 1182 netdev_err(queue->vif->dev,
48856286
IC
1183 "Impossible number of requests. "
1184 "req_prod %d, req_cons %d, size %ld\n",
e9ce7cb6 1185 queue->tx.sring->req_prod, queue->tx.req_cons,
48856286 1186 XEN_NETIF_TX_RING_SIZE);
e9ce7cb6 1187 xenvif_fatal_tx_err(queue->vif);
e9d8b2c2 1188 break;
48856286
IC
1189 }
1190
e9ce7cb6 1191 work_to_do = RING_HAS_UNCONSUMED_REQUESTS(&queue->tx);
b3f980bd
WL
1192 if (!work_to_do)
1193 break;
f942dc25 1194
e9ce7cb6 1195 idx = queue->tx.req_cons;
f942dc25 1196 rmb(); /* Ensure that we see the request before we copy it. */
e9ce7cb6 1197 memcpy(&txreq, RING_GET_REQUEST(&queue->tx, idx), sizeof(txreq));
f942dc25
IC
1198
1199 /* Credit-based scheduling. */
e9ce7cb6
WL
1200 if (txreq.size > queue->remaining_credit &&
1201 tx_credit_exceeded(queue, txreq.size))
b3f980bd 1202 break;
f942dc25 1203
e9ce7cb6 1204 queue->remaining_credit -= txreq.size;
f942dc25
IC
1205
1206 work_to_do--;
e9ce7cb6 1207 queue->tx.req_cons = ++idx;
f942dc25
IC
1208
1209 memset(extras, 0, sizeof(extras));
1210 if (txreq.flags & XEN_NETTXF_extra_info) {
e9ce7cb6 1211 work_to_do = xenvif_get_extras(queue, extras,
7376419a 1212 work_to_do);
e9ce7cb6 1213 idx = queue->tx.req_cons;
48856286 1214 if (unlikely(work_to_do < 0))
b3f980bd 1215 break;
f942dc25
IC
1216 }
1217
e9ce7cb6 1218 ret = xenvif_count_requests(queue, &txreq, txfrags, work_to_do);
48856286 1219 if (unlikely(ret < 0))
b3f980bd 1220 break;
48856286 1221
f942dc25
IC
1222 idx += ret;
1223
1224 if (unlikely(txreq.size < ETH_HLEN)) {
e9ce7cb6 1225 netdev_dbg(queue->vif->dev,
f942dc25 1226 "Bad packet size: %d\n", txreq.size);
e9ce7cb6 1227 xenvif_tx_err(queue, &txreq, idx);
b3f980bd 1228 break;
f942dc25
IC
1229 }
1230
1231 /* No crossing a page as the payload mustn't fragment. */
1232 if (unlikely((txreq.offset + txreq.size) > PAGE_SIZE)) {
e9ce7cb6 1233 netdev_err(queue->vif->dev,
68946159 1234 "txreq.offset: %u, size: %u, end: %lu\n",
f942dc25 1235 txreq.offset, txreq.size,
dc5e7a81 1236 (unsigned long)(txreq.offset&~PAGE_MASK) + txreq.size);
e9ce7cb6 1237 xenvif_fatal_tx_err(queue->vif);
b3f980bd 1238 break;
f942dc25
IC
1239 }
1240
e9ce7cb6
WL
1241 index = pending_index(queue->pending_cons);
1242 pending_idx = queue->pending_ring[index];
f942dc25 1243
7e5d7753 1244 data_len = (txreq.size > XEN_NETBACK_TX_COPY_LEN &&
37641494 1245 ret < XEN_NETBK_LEGACY_SLOTS_MAX) ?
7e5d7753 1246 XEN_NETBACK_TX_COPY_LEN : txreq.size;
f942dc25 1247
e3377f36 1248 skb = xenvif_alloc_skb(data_len);
f942dc25 1249 if (unlikely(skb == NULL)) {
e9ce7cb6 1250 netdev_dbg(queue->vif->dev,
f942dc25 1251 "Can't allocate a skb in start_xmit.\n");
e9ce7cb6 1252 xenvif_tx_err(queue, &txreq, idx);
f942dc25
IC
1253 break;
1254 }
1255
2475b225
RL
1256 skb_shinfo(skb)->nr_frags = ret;
1257 if (data_len < txreq.size)
1258 skb_shinfo(skb)->nr_frags++;
1259 /* At this point shinfo->nr_frags is in fact the number of
1260 * slots, which can be as large as XEN_NETBK_LEGACY_SLOTS_MAX.
1261 */
1262 frag_overflow = 0;
1263 nskb = NULL;
1264 if (skb_shinfo(skb)->nr_frags > MAX_SKB_FRAGS) {
1265 frag_overflow = skb_shinfo(skb)->nr_frags - MAX_SKB_FRAGS;
1266 BUG_ON(frag_overflow > MAX_SKB_FRAGS);
1267 skb_shinfo(skb)->nr_frags = MAX_SKB_FRAGS;
1268 nskb = xenvif_alloc_skb(0);
1269 if (unlikely(nskb == NULL)) {
1270 kfree_skb(skb);
1271 xenvif_tx_err(queue, &txreq, idx);
1272 if (net_ratelimit())
1273 netdev_err(queue->vif->dev,
1274 "Can't allocate the frag_list skb.\n");
1275 break;
1276 }
1277 }
1278
f942dc25
IC
1279 if (extras[XEN_NETIF_EXTRA_TYPE_GSO - 1].type) {
1280 struct xen_netif_extra_info *gso;
1281 gso = &extras[XEN_NETIF_EXTRA_TYPE_GSO - 1];
1282
e9ce7cb6 1283 if (xenvif_set_skb_gso(queue->vif, skb, gso)) {
7376419a 1284 /* Failure in xenvif_set_skb_gso is fatal. */
f942dc25 1285 kfree_skb(skb);
2475b225 1286 kfree_skb(nskb);
b3f980bd 1287 break;
f942dc25
IC
1288 }
1289 }
1290
8f13dd96 1291 XENVIF_TX_CB(skb)->pending_idx = pending_idx;
f942dc25
IC
1292
1293 __skb_put(skb, data_len);
e9ce7cb6
WL
1294 queue->tx_copy_ops[*copy_ops].source.u.ref = txreq.gref;
1295 queue->tx_copy_ops[*copy_ops].source.domid = queue->vif->domid;
1296 queue->tx_copy_ops[*copy_ops].source.offset = txreq.offset;
bdab8275 1297
e9ce7cb6 1298 queue->tx_copy_ops[*copy_ops].dest.u.gmfn =
bdab8275 1299 virt_to_mfn(skb->data);
e9ce7cb6
WL
1300 queue->tx_copy_ops[*copy_ops].dest.domid = DOMID_SELF;
1301 queue->tx_copy_ops[*copy_ops].dest.offset =
bdab8275
ZK
1302 offset_in_page(skb->data);
1303
e9ce7cb6
WL
1304 queue->tx_copy_ops[*copy_ops].len = data_len;
1305 queue->tx_copy_ops[*copy_ops].flags = GNTCOPY_source_gref;
bdab8275
ZK
1306
1307 (*copy_ops)++;
f942dc25 1308
f942dc25 1309 if (data_len < txreq.size) {
ea066ad1
IC
1310 frag_set_pending_idx(&skb_shinfo(skb)->frags[0],
1311 pending_idx);
e9ce7cb6 1312 xenvif_tx_create_map_op(queue, pending_idx, &txreq, gop);
bdab8275 1313 gop++;
f942dc25 1314 } else {
ea066ad1
IC
1315 frag_set_pending_idx(&skb_shinfo(skb)->frags[0],
1316 INVALID_PENDING_IDX);
e9ce7cb6 1317 memcpy(&queue->pending_tx_info[pending_idx].req, &txreq,
bdab8275 1318 sizeof(txreq));
f942dc25
IC
1319 }
1320
e9ce7cb6 1321 queue->pending_cons++;
f942dc25 1322
2475b225
RL
1323 gop = xenvif_get_requests(queue, skb, txfrags, gop,
1324 frag_overflow, nskb);
f942dc25 1325
e9ce7cb6 1326 __skb_queue_tail(&queue->tx_queue, skb);
1e0b6eac 1327
e9ce7cb6 1328 queue->tx.req_cons = idx;
f942dc25 1329
e9ce7cb6
WL
1330 if (((gop-queue->tx_map_ops) >= ARRAY_SIZE(queue->tx_map_ops)) ||
1331 (*copy_ops >= ARRAY_SIZE(queue->tx_copy_ops)))
f942dc25
IC
1332 break;
1333 }
1334
e9ce7cb6 1335 (*map_ops) = gop - queue->tx_map_ops;
bdab8275 1336 return;
f942dc25
IC
1337}
1338
e3377f36
ZK
1339/* Consolidate skb with a frag_list into a brand new one with local pages on
1340 * frags. Returns 0 or -ENOMEM if can't allocate new pages.
1341 */
e9ce7cb6 1342static int xenvif_handle_frag_list(struct xenvif_queue *queue, struct sk_buff *skb)
e3377f36
ZK
1343{
1344 unsigned int offset = skb_headlen(skb);
1345 skb_frag_t frags[MAX_SKB_FRAGS];
49d9991a 1346 int i, f;
e3377f36
ZK
1347 struct ubuf_info *uarg;
1348 struct sk_buff *nskb = skb_shinfo(skb)->frag_list;
1349
e9ce7cb6
WL
1350 queue->stats.tx_zerocopy_sent += 2;
1351 queue->stats.tx_frag_overflow++;
e3377f36 1352
e9ce7cb6 1353 xenvif_fill_frags(queue, nskb);
e3377f36
ZK
1354 /* Subtract frags size, we will correct it later */
1355 skb->truesize -= skb->data_len;
1356 skb->len += nskb->len;
1357 skb->data_len += nskb->len;
1358
1359 /* create a brand new frags array and coalesce there */
1360 for (i = 0; offset < skb->len; i++) {
1361 struct page *page;
1362 unsigned int len;
1363
1364 BUG_ON(i >= MAX_SKB_FRAGS);
44cc8ed1 1365 page = alloc_page(GFP_ATOMIC);
e3377f36
ZK
1366 if (!page) {
1367 int j;
1368 skb->truesize += skb->data_len;
1369 for (j = 0; j < i; j++)
1370 put_page(frags[j].page.p);
1371 return -ENOMEM;
1372 }
1373
1374 if (offset + PAGE_SIZE < skb->len)
1375 len = PAGE_SIZE;
1376 else
1377 len = skb->len - offset;
1378 if (skb_copy_bits(skb, offset, page_address(page), len))
1379 BUG();
1380
1381 offset += len;
1382 frags[i].page.p = page;
1383 frags[i].page_offset = 0;
1384 skb_frag_size_set(&frags[i], len);
1385 }
49d9991a 1386
b0c21bad
DV
1387 /* Copied all the bits from the frag list -- free it. */
1388 skb_frag_list_init(skb);
1389 xenvif_skb_zerocopy_prepare(queue, nskb);
1390 kfree_skb(nskb);
1391
49d9991a
DV
1392 /* Release all the original (foreign) frags. */
1393 for (f = 0; f < skb_shinfo(skb)->nr_frags; f++)
1394 skb_frag_unref(skb, f);
e3377f36 1395 uarg = skb_shinfo(skb)->destructor_arg;
a64bd934
WL
1396 /* increase inflight counter to offset decrement in callback */
1397 atomic_inc(&queue->inflight_packets);
e3377f36
ZK
1398 uarg->callback(uarg, true);
1399 skb_shinfo(skb)->destructor_arg = NULL;
1400
b0c21bad
DV
1401 /* Fill the skb with the new (local) frags. */
1402 memcpy(skb_shinfo(skb)->frags, frags, i * sizeof(skb_frag_t));
1403 skb_shinfo(skb)->nr_frags = i;
1404 skb->truesize += i * PAGE_SIZE;
e3377f36
ZK
1405
1406 return 0;
1407}
b3f980bd 1408
e9ce7cb6 1409static int xenvif_tx_submit(struct xenvif_queue *queue)
f942dc25 1410{
e9ce7cb6
WL
1411 struct gnttab_map_grant_ref *gop_map = queue->tx_map_ops;
1412 struct gnttab_copy *gop_copy = queue->tx_copy_ops;
f942dc25 1413 struct sk_buff *skb;
b3f980bd 1414 int work_done = 0;
f942dc25 1415
e9ce7cb6 1416 while ((skb = __skb_dequeue(&queue->tx_queue)) != NULL) {
f942dc25 1417 struct xen_netif_tx_request *txp;
f942dc25
IC
1418 u16 pending_idx;
1419 unsigned data_len;
1420
8f13dd96 1421 pending_idx = XENVIF_TX_CB(skb)->pending_idx;
e9ce7cb6 1422 txp = &queue->pending_tx_info[pending_idx].req;
f942dc25
IC
1423
1424 /* Check the remap error code. */
e9ce7cb6 1425 if (unlikely(xenvif_tx_check_gop(queue, skb, &gop_map, &gop_copy))) {
b42cc6e4
ZK
1426 /* If there was an error, xenvif_tx_check_gop is
1427 * expected to release all the frags which were mapped,
1428 * so kfree_skb shouldn't do it again
1429 */
f942dc25 1430 skb_shinfo(skb)->nr_frags = 0;
b42cc6e4
ZK
1431 if (skb_has_frag_list(skb)) {
1432 struct sk_buff *nskb =
1433 skb_shinfo(skb)->frag_list;
1434 skb_shinfo(nskb)->nr_frags = 0;
1435 }
f942dc25
IC
1436 kfree_skb(skb);
1437 continue;
1438 }
1439
1440 data_len = skb->len;
e9ce7cb6 1441 callback_param(queue, pending_idx).ctx = NULL;
f942dc25
IC
1442 if (data_len < txp->size) {
1443 /* Append the packet payload as a fragment. */
1444 txp->offset += data_len;
1445 txp->size -= data_len;
1446 } else {
1447 /* Schedule a response immediately. */
e9ce7cb6 1448 xenvif_idx_release(queue, pending_idx,
bdab8275 1449 XEN_NETIF_RSP_OKAY);
f942dc25
IC
1450 }
1451
1452 if (txp->flags & XEN_NETTXF_csum_blank)
1453 skb->ip_summed = CHECKSUM_PARTIAL;
1454 else if (txp->flags & XEN_NETTXF_data_validated)
1455 skb->ip_summed = CHECKSUM_UNNECESSARY;
1456
e9ce7cb6 1457 xenvif_fill_frags(queue, skb);
f942dc25 1458
e3377f36 1459 if (unlikely(skb_has_frag_list(skb))) {
e9ce7cb6 1460 if (xenvif_handle_frag_list(queue, skb)) {
e3377f36 1461 if (net_ratelimit())
e9ce7cb6 1462 netdev_err(queue->vif->dev,
e3377f36 1463 "Not enough memory to consolidate frag_list!\n");
a64bd934 1464 xenvif_skb_zerocopy_prepare(queue, skb);
e3377f36
ZK
1465 kfree_skb(skb);
1466 continue;
1467 }
1468 }
1469
e9ce7cb6 1470 skb->dev = queue->vif->dev;
f942dc25 1471 skb->protocol = eth_type_trans(skb, skb->dev);
f9ca8f74 1472 skb_reset_network_header(skb);
f942dc25 1473
e9ce7cb6
WL
1474 if (checksum_setup(queue, skb)) {
1475 netdev_dbg(queue->vif->dev,
f942dc25 1476 "Can't setup checksum in net_tx_action\n");
f53c3fe8
ZK
1477 /* We have to set this flag to trigger the callback */
1478 if (skb_shinfo(skb)->destructor_arg)
a64bd934 1479 xenvif_skb_zerocopy_prepare(queue, skb);
f942dc25
IC
1480 kfree_skb(skb);
1481 continue;
1482 }
1483
40893fd0 1484 skb_probe_transport_header(skb, 0);
f9ca8f74 1485
b89587a7
PD
1486 /* If the packet is GSO then we will have just set up the
1487 * transport header offset in checksum_setup so it's now
1488 * straightforward to calculate gso_segs.
1489 */
1490 if (skb_is_gso(skb)) {
1491 int mss = skb_shinfo(skb)->gso_size;
1492 int hdrlen = skb_transport_header(skb) -
1493 skb_mac_header(skb) +
1494 tcp_hdrlen(skb);
1495
1496 skb_shinfo(skb)->gso_segs =
1497 DIV_ROUND_UP(skb->len - hdrlen, mss);
1498 }
1499
e9ce7cb6
WL
1500 queue->stats.rx_bytes += skb->len;
1501 queue->stats.rx_packets++;
f942dc25 1502
b3f980bd
WL
1503 work_done++;
1504
f53c3fe8
ZK
1505 /* Set this flag right before netif_receive_skb, otherwise
1506 * someone might think this packet already left netback, and
1507 * do a skb_copy_ubufs while we are still in control of the
1508 * skb. E.g. the __pskb_pull_tail earlier can do such thing.
1509 */
1bb332af 1510 if (skb_shinfo(skb)->destructor_arg) {
a64bd934 1511 xenvif_skb_zerocopy_prepare(queue, skb);
e9ce7cb6 1512 queue->stats.tx_zerocopy_sent++;
1bb332af 1513 }
f53c3fe8 1514
b3f980bd 1515 netif_receive_skb(skb);
f942dc25 1516 }
b3f980bd
WL
1517
1518 return work_done;
f942dc25
IC
1519}
1520
3e2234b3
ZK
1521void xenvif_zerocopy_callback(struct ubuf_info *ubuf, bool zerocopy_success)
1522{
f53c3fe8
ZK
1523 unsigned long flags;
1524 pending_ring_idx_t index;
e9ce7cb6 1525 struct xenvif_queue *queue = ubuf_to_queue(ubuf);
f53c3fe8
ZK
1526
1527 /* This is the only place where we grab this lock, to protect callbacks
1528 * from each other.
1529 */
e9ce7cb6 1530 spin_lock_irqsave(&queue->callback_lock, flags);
f53c3fe8
ZK
1531 do {
1532 u16 pending_idx = ubuf->desc;
1533 ubuf = (struct ubuf_info *) ubuf->ctx;
e9ce7cb6 1534 BUG_ON(queue->dealloc_prod - queue->dealloc_cons >=
f53c3fe8 1535 MAX_PENDING_REQS);
e9ce7cb6
WL
1536 index = pending_index(queue->dealloc_prod);
1537 queue->dealloc_ring[index] = pending_idx;
f53c3fe8
ZK
1538 /* Sync with xenvif_tx_dealloc_action:
1539 * insert idx then incr producer.
1540 */
1541 smp_wmb();
e9ce7cb6 1542 queue->dealloc_prod++;
f53c3fe8 1543 } while (ubuf);
e9ce7cb6 1544 spin_unlock_irqrestore(&queue->callback_lock, flags);
f53c3fe8 1545
1bb332af 1546 if (likely(zerocopy_success))
e9ce7cb6 1547 queue->stats.tx_zerocopy_success++;
1bb332af 1548 else
e9ce7cb6 1549 queue->stats.tx_zerocopy_fail++;
a64bd934 1550 xenvif_skb_zerocopy_complete(queue);
f53c3fe8
ZK
1551}
1552
e9ce7cb6 1553static inline void xenvif_tx_dealloc_action(struct xenvif_queue *queue)
f53c3fe8
ZK
1554{
1555 struct gnttab_unmap_grant_ref *gop;
1556 pending_ring_idx_t dc, dp;
1557 u16 pending_idx, pending_idx_release[MAX_PENDING_REQS];
1558 unsigned int i = 0;
1559
e9ce7cb6
WL
1560 dc = queue->dealloc_cons;
1561 gop = queue->tx_unmap_ops;
f53c3fe8
ZK
1562
1563 /* Free up any grants we have finished using */
1564 do {
e9ce7cb6 1565 dp = queue->dealloc_prod;
f53c3fe8
ZK
1566
1567 /* Ensure we see all indices enqueued by all
1568 * xenvif_zerocopy_callback().
1569 */
1570 smp_rmb();
1571
1572 while (dc != dp) {
50c2e4dd 1573 BUG_ON(gop - queue->tx_unmap_ops >= MAX_PENDING_REQS);
f53c3fe8 1574 pending_idx =
e9ce7cb6 1575 queue->dealloc_ring[pending_index(dc++)];
f53c3fe8 1576
50c2e4dd 1577 pending_idx_release[gop - queue->tx_unmap_ops] =
f53c3fe8 1578 pending_idx;
50c2e4dd 1579 queue->pages_to_unmap[gop - queue->tx_unmap_ops] =
e9ce7cb6 1580 queue->mmap_pages[pending_idx];
f53c3fe8 1581 gnttab_set_unmap_op(gop,
e9ce7cb6 1582 idx_to_kaddr(queue, pending_idx),
f53c3fe8 1583 GNTMAP_host_map,
e9ce7cb6
WL
1584 queue->grant_tx_handle[pending_idx]);
1585 xenvif_grant_handle_reset(queue, pending_idx);
f53c3fe8
ZK
1586 ++gop;
1587 }
1588
e9ce7cb6 1589 } while (dp != queue->dealloc_prod);
f53c3fe8 1590
e9ce7cb6 1591 queue->dealloc_cons = dc;
f53c3fe8 1592
e9ce7cb6 1593 if (gop - queue->tx_unmap_ops > 0) {
f53c3fe8 1594 int ret;
e9ce7cb6 1595 ret = gnttab_unmap_refs(queue->tx_unmap_ops,
f53c3fe8 1596 NULL,
e9ce7cb6
WL
1597 queue->pages_to_unmap,
1598 gop - queue->tx_unmap_ops);
f53c3fe8 1599 if (ret) {
68946159 1600 netdev_err(queue->vif->dev, "Unmap fail: nr_ops %tu ret %d\n",
e9ce7cb6
WL
1601 gop - queue->tx_unmap_ops, ret);
1602 for (i = 0; i < gop - queue->tx_unmap_ops; ++i) {
f53c3fe8 1603 if (gop[i].status != GNTST_okay)
e9ce7cb6 1604 netdev_err(queue->vif->dev,
68946159 1605 " host_addr: 0x%llx handle: 0x%x status: %d\n",
f53c3fe8
ZK
1606 gop[i].host_addr,
1607 gop[i].handle,
1608 gop[i].status);
1609 }
1610 BUG();
1611 }
1612 }
1613
e9ce7cb6
WL
1614 for (i = 0; i < gop - queue->tx_unmap_ops; ++i)
1615 xenvif_idx_release(queue, pending_idx_release[i],
f53c3fe8 1616 XEN_NETIF_RSP_OKAY);
3e2234b3
ZK
1617}
1618
f53c3fe8 1619
f942dc25 1620/* Called after netfront has transmitted */
e9ce7cb6 1621int xenvif_tx_action(struct xenvif_queue *queue, int budget)
f942dc25 1622{
bdab8275 1623 unsigned nr_mops, nr_cops = 0;
f53c3fe8 1624 int work_done, ret;
f942dc25 1625
e9ce7cb6 1626 if (unlikely(!tx_work_todo(queue)))
b3f980bd
WL
1627 return 0;
1628
e9ce7cb6 1629 xenvif_tx_build_gops(queue, budget, &nr_cops, &nr_mops);
f942dc25 1630
bdab8275 1631 if (nr_cops == 0)
b3f980bd
WL
1632 return 0;
1633
e9ce7cb6 1634 gnttab_batch_copy(queue->tx_copy_ops, nr_cops);
bdab8275 1635 if (nr_mops != 0) {
e9ce7cb6 1636 ret = gnttab_map_refs(queue->tx_map_ops,
bdab8275 1637 NULL,
e9ce7cb6 1638 queue->pages_to_map,
bdab8275
ZK
1639 nr_mops);
1640 BUG_ON(ret);
1641 }
f942dc25 1642
e9ce7cb6 1643 work_done = xenvif_tx_submit(queue);
f942dc25 1644
b3f980bd 1645 return work_done;
f942dc25
IC
1646}
1647
e9ce7cb6 1648static void xenvif_idx_release(struct xenvif_queue *queue, u16 pending_idx,
7376419a 1649 u8 status)
f942dc25 1650{
f942dc25 1651 struct pending_tx_info *pending_tx_info;
f53c3fe8 1652 pending_ring_idx_t index;
f53c3fe8 1653 unsigned long flags;
2810e5b9 1654
e9ce7cb6 1655 pending_tx_info = &queue->pending_tx_info[pending_idx];
7fbb9d84 1656
e9ce7cb6 1657 spin_lock_irqsave(&queue->response_lock, flags);
7fbb9d84 1658
e9ce7cb6 1659 make_tx_response(queue, &pending_tx_info->req, status);
7fbb9d84
DV
1660
1661 /* Release the pending index before pusing the Tx response so
1662 * its available before a new Tx request is pushed by the
1663 * frontend.
1664 */
1665 index = pending_index(queue->pending_prod++);
e9ce7cb6 1666 queue->pending_ring[index] = pending_idx;
7fbb9d84 1667
c8a4d299 1668 push_tx_responses(queue);
7fbb9d84 1669
e9ce7cb6 1670 spin_unlock_irqrestore(&queue->response_lock, flags);
f942dc25
IC
1671}
1672
2810e5b9 1673
e9ce7cb6 1674static void make_tx_response(struct xenvif_queue *queue,
f942dc25
IC
1675 struct xen_netif_tx_request *txp,
1676 s8 st)
1677{
e9ce7cb6 1678 RING_IDX i = queue->tx.rsp_prod_pvt;
f942dc25 1679 struct xen_netif_tx_response *resp;
f942dc25 1680
e9ce7cb6 1681 resp = RING_GET_RESPONSE(&queue->tx, i);
f942dc25
IC
1682 resp->id = txp->id;
1683 resp->status = st;
1684
1685 if (txp->flags & XEN_NETTXF_extra_info)
e9ce7cb6 1686 RING_GET_RESPONSE(&queue->tx, ++i)->status = XEN_NETIF_RSP_NULL;
f942dc25 1687
e9ce7cb6 1688 queue->tx.rsp_prod_pvt = ++i;
f942dc25
IC
1689}
1690
c8a4d299
DV
1691static void push_tx_responses(struct xenvif_queue *queue)
1692{
1693 int notify;
1694
1695 RING_PUSH_RESPONSES_AND_CHECK_NOTIFY(&queue->tx, notify);
1696 if (notify)
1697 notify_remote_via_irq(queue->tx_irq);
1698}
1699
e9ce7cb6 1700static struct xen_netif_rx_response *make_rx_response(struct xenvif_queue *queue,
f942dc25
IC
1701 u16 id,
1702 s8 st,
1703 u16 offset,
1704 u16 size,
1705 u16 flags)
1706{
e9ce7cb6 1707 RING_IDX i = queue->rx.rsp_prod_pvt;
f942dc25
IC
1708 struct xen_netif_rx_response *resp;
1709
e9ce7cb6 1710 resp = RING_GET_RESPONSE(&queue->rx, i);
f942dc25
IC
1711 resp->offset = offset;
1712 resp->flags = flags;
1713 resp->id = id;
1714 resp->status = (s16)size;
1715 if (st < 0)
1716 resp->status = (s16)st;
1717
e9ce7cb6 1718 queue->rx.rsp_prod_pvt = ++i;
f942dc25
IC
1719
1720 return resp;
1721}
1722
e9ce7cb6 1723void xenvif_idx_unmap(struct xenvif_queue *queue, u16 pending_idx)
f53c3fe8
ZK
1724{
1725 int ret;
1726 struct gnttab_unmap_grant_ref tx_unmap_op;
1727
1728 gnttab_set_unmap_op(&tx_unmap_op,
e9ce7cb6 1729 idx_to_kaddr(queue, pending_idx),
f53c3fe8 1730 GNTMAP_host_map,
e9ce7cb6
WL
1731 queue->grant_tx_handle[pending_idx]);
1732 xenvif_grant_handle_reset(queue, pending_idx);
f53c3fe8
ZK
1733
1734 ret = gnttab_unmap_refs(&tx_unmap_op, NULL,
e9ce7cb6 1735 &queue->mmap_pages[pending_idx], 1);
7aceb47a 1736 if (ret) {
e9ce7cb6 1737 netdev_err(queue->vif->dev,
68946159 1738 "Unmap fail: ret: %d pending_idx: %d host_addr: %llx handle: 0x%x status: %d\n",
7aceb47a
ZK
1739 ret,
1740 pending_idx,
1741 tx_unmap_op.host_addr,
1742 tx_unmap_op.handle,
1743 tx_unmap_op.status);
1744 BUG();
1745 }
f53c3fe8
ZK
1746}
1747
e9ce7cb6 1748static inline int tx_work_todo(struct xenvif_queue *queue)
f942dc25 1749{
e9ce7cb6 1750 if (likely(RING_HAS_UNCONSUMED_REQUESTS(&queue->tx)))
f942dc25
IC
1751 return 1;
1752
1753 return 0;
1754}
1755
e9ce7cb6 1756static inline bool tx_dealloc_work_todo(struct xenvif_queue *queue)
f53c3fe8 1757{
e9ce7cb6 1758 return queue->dealloc_cons != queue->dealloc_prod;
f53c3fe8
ZK
1759}
1760
e9ce7cb6 1761void xenvif_unmap_frontend_rings(struct xenvif_queue *queue)
f942dc25 1762{
e9ce7cb6
WL
1763 if (queue->tx.sring)
1764 xenbus_unmap_ring_vfree(xenvif_to_xenbus_device(queue->vif),
1765 queue->tx.sring);
1766 if (queue->rx.sring)
1767 xenbus_unmap_ring_vfree(xenvif_to_xenbus_device(queue->vif),
1768 queue->rx.sring);
f942dc25
IC
1769}
1770
e9ce7cb6 1771int xenvif_map_frontend_rings(struct xenvif_queue *queue,
7376419a
WL
1772 grant_ref_t tx_ring_ref,
1773 grant_ref_t rx_ring_ref)
f942dc25 1774{
c9d63699 1775 void *addr;
f942dc25
IC
1776 struct xen_netif_tx_sring *txs;
1777 struct xen_netif_rx_sring *rxs;
1778
1779 int err = -ENOMEM;
1780
e9ce7cb6 1781 err = xenbus_map_ring_valloc(xenvif_to_xenbus_device(queue->vif),
ccc9d90a 1782 &tx_ring_ref, 1, &addr);
c9d63699 1783 if (err)
f942dc25
IC
1784 goto err;
1785
c9d63699 1786 txs = (struct xen_netif_tx_sring *)addr;
e9ce7cb6 1787 BACK_RING_INIT(&queue->tx, txs, PAGE_SIZE);
f942dc25 1788
e9ce7cb6 1789 err = xenbus_map_ring_valloc(xenvif_to_xenbus_device(queue->vif),
ccc9d90a 1790 &rx_ring_ref, 1, &addr);
c9d63699 1791 if (err)
f942dc25 1792 goto err;
f942dc25 1793
c9d63699 1794 rxs = (struct xen_netif_rx_sring *)addr;
e9ce7cb6 1795 BACK_RING_INIT(&queue->rx, rxs, PAGE_SIZE);
f942dc25
IC
1796
1797 return 0;
1798
1799err:
e9ce7cb6 1800 xenvif_unmap_frontend_rings(queue);
f942dc25
IC
1801 return err;
1802}
1803
ecf08d2d 1804static void xenvif_queue_carrier_off(struct xenvif_queue *queue)
ca2f09f2 1805{
ecf08d2d
DV
1806 struct xenvif *vif = queue->vif;
1807
1808 queue->stalled = true;
1809
1810 /* At least one queue has stalled? Disable the carrier. */
1811 spin_lock(&vif->lock);
1812 if (vif->stalled_queues++ == 0) {
1813 netdev_info(vif->dev, "Guest Rx stalled");
1814 netif_carrier_off(vif->dev);
1815 }
1816 spin_unlock(&vif->lock);
ca2f09f2
PD
1817}
1818
ecf08d2d 1819static void xenvif_queue_carrier_on(struct xenvif_queue *queue)
f34a4cf9 1820{
ecf08d2d 1821 struct xenvif *vif = queue->vif;
f34a4cf9 1822
ecf08d2d
DV
1823 queue->last_rx_time = jiffies; /* Reset Rx stall detection. */
1824 queue->stalled = false;
f34a4cf9 1825
ecf08d2d
DV
1826 /* All queues are ready? Enable the carrier. */
1827 spin_lock(&vif->lock);
1828 if (--vif->stalled_queues == 0) {
1829 netdev_info(vif->dev, "Guest Rx ready");
1830 netif_carrier_on(vif->dev);
1831 }
1832 spin_unlock(&vif->lock);
1833}
f34a4cf9 1834
ecf08d2d
DV
1835static bool xenvif_rx_queue_stalled(struct xenvif_queue *queue)
1836{
1837 RING_IDX prod, cons;
1838
1839 prod = queue->rx.sring->req_prod;
1840 cons = queue->rx.req_cons;
1841
1842 return !queue->stalled
1843 && prod - cons < XEN_NETBK_RX_SLOTS_MAX
1844 && time_after(jiffies,
26c0e102 1845 queue->last_rx_time + queue->vif->stall_timeout);
ecf08d2d
DV
1846}
1847
1848static bool xenvif_rx_queue_ready(struct xenvif_queue *queue)
1849{
1850 RING_IDX prod, cons;
1851
1852 prod = queue->rx.sring->req_prod;
1853 cons = queue->rx.req_cons;
1854
1855 return queue->stalled
1856 && prod - cons >= XEN_NETBK_RX_SLOTS_MAX;
1857}
1858
f48da8b1 1859static bool xenvif_have_rx_work(struct xenvif_queue *queue)
ca2f09f2 1860{
f48da8b1
DV
1861 return (!skb_queue_empty(&queue->rx_queue)
1862 && xenvif_rx_ring_slots_available(queue, XEN_NETBK_RX_SLOTS_MAX))
26c0e102
DV
1863 || (queue->vif->stall_timeout &&
1864 (xenvif_rx_queue_stalled(queue)
1865 || xenvif_rx_queue_ready(queue)))
f48da8b1
DV
1866 || kthread_should_stop()
1867 || queue->vif->disabled;
ca2f09f2
PD
1868}
1869
f48da8b1 1870static long xenvif_rx_queue_timeout(struct xenvif_queue *queue)
f34a4cf9 1871{
f48da8b1
DV
1872 struct sk_buff *skb;
1873 long timeout;
f34a4cf9 1874
f48da8b1
DV
1875 skb = skb_peek(&queue->rx_queue);
1876 if (!skb)
1877 return MAX_SCHEDULE_TIMEOUT;
f34a4cf9 1878
f48da8b1
DV
1879 timeout = XENVIF_RX_CB(skb)->expires - jiffies;
1880 return timeout < 0 ? 0 : timeout;
1881}
f34a4cf9 1882
f48da8b1
DV
1883/* Wait until the guest Rx thread has work.
1884 *
1885 * The timeout needs to be adjusted based on the current head of the
1886 * queue (and not just the head at the beginning). In particular, if
1887 * the queue is initially empty an infinite timeout is used and this
1888 * needs to be reduced when a skb is queued.
1889 *
1890 * This cannot be done with wait_event_timeout() because it only
1891 * calculates the timeout once.
1892 */
1893static void xenvif_wait_for_rx_work(struct xenvif_queue *queue)
1894{
1895 DEFINE_WAIT(wait);
1896
1897 if (xenvif_have_rx_work(queue))
1898 return;
1899
1900 for (;;) {
1901 long ret;
1902
1903 prepare_to_wait(&queue->wq, &wait, TASK_INTERRUPTIBLE);
1904 if (xenvif_have_rx_work(queue))
1905 break;
1906 ret = schedule_timeout(xenvif_rx_queue_timeout(queue));
1907 if (!ret)
1908 break;
f34a4cf9 1909 }
f48da8b1 1910 finish_wait(&queue->wq, &wait);
f34a4cf9
ZK
1911}
1912
121fa4b7 1913int xenvif_kthread_guest_rx(void *data)
b3f980bd 1914{
e9ce7cb6 1915 struct xenvif_queue *queue = data;
f48da8b1 1916 struct xenvif *vif = queue->vif;
b3f980bd 1917
26c0e102
DV
1918 if (!vif->stall_timeout)
1919 xenvif_queue_carrier_on(queue);
1920
f48da8b1
DV
1921 for (;;) {
1922 xenvif_wait_for_rx_work(queue);
e9d8b2c2 1923
f34a4cf9
ZK
1924 if (kthread_should_stop())
1925 break;
1926
e9d8b2c2
WL
1927 /* This frontend is found to be rogue, disable it in
1928 * kthread context. Currently this is only set when
1929 * netback finds out frontend sends malformed packet,
1930 * but we cannot disable the interface in softirq
e9ce7cb6
WL
1931 * context so we defer it here, if this thread is
1932 * associated with queue 0.
e9d8b2c2 1933 */
f48da8b1
DV
1934 if (unlikely(vif->disabled && queue->id == 0)) {
1935 xenvif_carrier_off(vif);
42b5212f 1936 break;
09350788
ZK
1937 }
1938
e9ce7cb6
WL
1939 if (!skb_queue_empty(&queue->rx_queue))
1940 xenvif_rx_action(queue);
b3f980bd 1941
ecf08d2d
DV
1942 /* If the guest hasn't provided any Rx slots for a
1943 * while it's probably not responsive, drop the
1944 * carrier so packets are dropped earlier.
1945 */
26c0e102
DV
1946 if (vif->stall_timeout) {
1947 if (xenvif_rx_queue_stalled(queue))
1948 xenvif_queue_carrier_off(queue);
1949 else if (xenvif_rx_queue_ready(queue))
1950 xenvif_queue_carrier_on(queue);
1951 }
ecf08d2d 1952
f48da8b1
DV
1953 /* Queued packets may have foreign pages from other
1954 * domains. These cannot be queued indefinitely as
1955 * this would starve guests of grant refs and transmit
1956 * slots.
1957 */
1958 xenvif_rx_queue_drop_expired(queue);
1959
1960 xenvif_rx_queue_maybe_wake(queue);
1961
b3f980bd
WL
1962 cond_resched();
1963 }
1964
ca2f09f2 1965 /* Bin any remaining skbs */
f48da8b1 1966 xenvif_rx_queue_purge(queue);
ca2f09f2 1967
b3f980bd
WL
1968 return 0;
1969}
1970
a64bd934
WL
1971static bool xenvif_dealloc_kthread_should_stop(struct xenvif_queue *queue)
1972{
1973 /* Dealloc thread must remain running until all inflight
1974 * packets complete.
1975 */
1976 return kthread_should_stop() &&
1977 !atomic_read(&queue->inflight_packets);
1978}
1979
f53c3fe8
ZK
1980int xenvif_dealloc_kthread(void *data)
1981{
e9ce7cb6 1982 struct xenvif_queue *queue = data;
f53c3fe8 1983
a64bd934 1984 for (;;) {
e9ce7cb6
WL
1985 wait_event_interruptible(queue->dealloc_wq,
1986 tx_dealloc_work_todo(queue) ||
a64bd934
WL
1987 xenvif_dealloc_kthread_should_stop(queue));
1988 if (xenvif_dealloc_kthread_should_stop(queue))
f53c3fe8
ZK
1989 break;
1990
e9ce7cb6 1991 xenvif_tx_dealloc_action(queue);
f53c3fe8
ZK
1992 cond_resched();
1993 }
1994
1995 /* Unmap anything remaining*/
e9ce7cb6
WL
1996 if (tx_dealloc_work_todo(queue))
1997 xenvif_tx_dealloc_action(queue);
f53c3fe8
ZK
1998
1999 return 0;
2000}
2001
f942dc25
IC
2002static int __init netback_init(void)
2003{
f942dc25 2004 int rc = 0;
f942dc25 2005
2a14b244 2006 if (!xen_domain())
f942dc25
IC
2007 return -ENODEV;
2008
8d3d53b3
AB
2009 /* Allow as many queues as there are CPUs, by default */
2010 xenvif_max_queues = num_online_cpus();
2011
37641494 2012 if (fatal_skb_slots < XEN_NETBK_LEGACY_SLOTS_MAX) {
383eda32
JP
2013 pr_info("fatal_skb_slots too small (%d), bump it to XEN_NETBK_LEGACY_SLOTS_MAX (%d)\n",
2014 fatal_skb_slots, XEN_NETBK_LEGACY_SLOTS_MAX);
37641494 2015 fatal_skb_slots = XEN_NETBK_LEGACY_SLOTS_MAX;
2810e5b9
WL
2016 }
2017
f942dc25
IC
2018 rc = xenvif_xenbus_init();
2019 if (rc)
2020 goto failed_init;
2021
f51de243
ZK
2022#ifdef CONFIG_DEBUG_FS
2023 xen_netback_dbg_root = debugfs_create_dir("xen-netback", NULL);
2024 if (IS_ERR_OR_NULL(xen_netback_dbg_root))
2025 pr_warn("Init of debugfs returned %ld!\n",
2026 PTR_ERR(xen_netback_dbg_root));
2027#endif /* CONFIG_DEBUG_FS */
2028
f942dc25
IC
2029 return 0;
2030
2031failed_init:
f942dc25 2032 return rc;
f942dc25
IC
2033}
2034
2035module_init(netback_init);
2036
b103f358
WL
2037static void __exit netback_fini(void)
2038{
f51de243
ZK
2039#ifdef CONFIG_DEBUG_FS
2040 if (!IS_ERR_OR_NULL(xen_netback_dbg_root))
2041 debugfs_remove_recursive(xen_netback_dbg_root);
2042#endif /* CONFIG_DEBUG_FS */
b103f358 2043 xenvif_xenbus_fini();
b103f358
WL
2044}
2045module_exit(netback_fini);
2046
f942dc25 2047MODULE_LICENSE("Dual BSD/GPL");
f984cec6 2048MODULE_ALIAS("xen-backend:vif");